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protocolServerHandler.test|title=ProtocolServerHandler OTLP logs channel unrecognised ahp-otlp URIs do not crash subscribe|occurrence=1

Exact test identity: mocha:v1|namespace=vscode@05c208e9e28d8c1c723fa08f85e2b7a96092e8e5|file=vs/platform/agentHost/test/node/protocolServerHandler.test|title=ProtocolServerHandler OTLP logs channel unrecognised ahp-otlp URIs do not crash subscribe|occurrence=1

Package
mocha:v1|namespace=vscode@05c208e9e28d8c1c723fa08f85e2b7a96092e8e5|file=vs/platform/agentHost/test/node
Suite / test hierarchy
protocolServerHandler.test|title=ProtocolServerHandler OTLP logs channel unrecognised ahp-otlp URIs do not crash subscribe|occurrence=1
Test
protocolServerHandler.test|title=ProtocolServerHandler OTLP logs channel unrecognised ahp-otlp URIs do not crash subscribe|occurrence=1
Introduced at
protocolServerHandler.ts ×2 Frontier kind: Joint frontier
Covered ranges
2736
Covered lines
28604
Covered files
148

Covered source

Expand a file to inspect source; the > gutter marks covered lines.

src/vs/platform/agentHost/common/agentService.ts 2049 covered LOC · 15 ranges

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1 > /*--------------------------------------------------------------------------------------------- agentService.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import type { CancellationToken } from '../../../base/common/cancellation.js';
7 > import { Event } from '../../../base/common/event.js';
8 > import { IReference } from '../../../base/common/lifecycle.js';
9 > import { truncate } from '../../../base/common/strings.js';
10 > import { IAuthorizationProtectedResourceMetadata } from '../../../base/common/oauth.js';
11 > import type { IObservable } from '../../../base/common/observable.js';
12 > import { URI } from '../../../base/common/uri.js';
13 > import type { IConfigurationChangeEvent, IConfigurationService } from '../../configuration/common/configuration.js';
14 > import { createDecorator } from '../../instantiation/common/instantiation.js';
15 > import type { IAgentServerToolHost } from './agentServerTools.js';
16 > import type { IActiveSubscriptionInfo, IAgentSubscription } from './state/agentSubscription.js';
17 > import type { IRemoteWatchHandle } from './agentHostFileSystemProvider.js';
18 > import type { CompletionsParams, CompletionsResult, CreateTerminalParams, ResolveSessionConfigResult, SessionConfigCompletionsResult } from './state/protocol/commands.js';
19 > import type { InitializeResult } from './state/protocol/common/commands.js';
20 > import type { InvokeChangesetOperationParams, InvokeChangesetOperationResult } from './state/protocol/channels-changeset/commands.js';
21 > import { ProtectedResourceMetadata, type Changeset, type ConfigSchema, type MessageAttachment, type ModelSelection, type AgentSelection, type SessionActiveClient, type ToolCallPendingConfirmationState, type ToolDefinition, ChangesSummary } from './state/protocol/state.js';
22 > import type { ActionEnvelope, AuthRequiredParams, INotification, IRootConfigChangedAction, SessionAction, ChatAction, TerminalAction, ClientAnnotationsAction, ClientChangesetAction } from './state/sessionActions.js';
23 > import type { ResourceCopyParams, ResourceCopyResult, ResourceDeleteParams, ResourceDeleteResult, ResourceListResult, ResourceMkdirParams, ResourceMkdirResult, ResourceMoveParams, ResourceMoveResult, ResourceReadResult, ResourceResolveParams, ResourceResolveResult, ResourceWatchState, ResourceWriteParams, ResourceWriteResult, CreateResourceWatchParams, CreateResourceWatchResult, IStateSnapshot } from './state/sessionProtocol.js';
24 > import { ComponentToState, ChatInputResponseKind, SessionStatus, StateComponents, buildSubagentChatUri, parseRequiredSessionUriFromChatUri, type AgentCapabilities, type ClientPluginCustomization, type Customization, type PendingMessage, type RootState, type ChatInputAnswer, type SessionMeta, type ToolCallResult, type Turn, type PolicyState } from './state/sessionState.js';
25 >
26 > // IPC contract between the renderer and the agent host utility process.
27 > // Defines all serializable event types, the IAgent provider interface,
28 > // and the IAgentService / IAgentHostService service decorators.
29 >
30 > export const enum AgentHostIpcChannels {
31 > /** Channel for the agent host service on the main-process side */
32 > AgentHost = 'agentHost',
33 > /** Channel for log forwarding from the agent host process */
34 > Logger = 'agentHostLogger',
35 > /** Channel for WebSocket client connection count (server process management only) */
36 > ConnectionTracker = 'agentHostConnectionTracker',
37 > /** Channel carrying raw Agent Host Protocol frames over a MessagePort. */
38 > Protocol = 'agentHostProtocol',
39 > /** Narrow local management channel that remains outside of the AHP data plane. */
40 > Management = 'agentHostManagement',
41 > /**
42 > * Channel registered by the remote server that proxies AHP JSON-RPC
43 > * frames between a renderer and the agent host running on the server.
44 > * Pairs with `AgentHostIpcChannelTransport` on the renderer side.
45 > */
46 > RemoteProxy = 'agentHostProxy',
47 > }
48 >
49 > /** Configuration key that controls whether AHP JSONL logs are written for agent host transports. */
50 > export const AgentHostAhpJsonlLoggingSettingId = 'chat.agentHost.ahpJsonlLoggingEnabled';
51 >
52 > /** Configuration key controlling automatic OS system proxy discovery for agent-host Copilot sessions. */
53 > export const AgentHostSystemProxyEnabledSettingId = 'chat.agentHost.systemProxy.enabled';
54 >
55 > // The Copilot-CLI-specific setting IDs (`customTerminalTool`, `opus48Prompt`,
56 > // `reasoningEffortOverride`, `modelCapabilityOverrides`) live with their
57 > // root-config keys in `copilotCliConfig.ts`.
58 >
59 > /**
60 > * Configuration key controlling whether the Claude provider is registered in
61 > * the agent host process. When `false`, the agent host skips registering the
62 > * Claude provider regardless of SDK availability. Defaults to `true`.
63 > *
64 > * Independent of {@link ClaudePreferAgentHostAgentsSettingId} /
65 > * {@link ClaudePreferAgentHostEditorSettingId}, which control whether the
66 > * workbench surfaces the agent host's Claude provider (vs. the GitHub Copilot
67 > * Chat extension's). This setting is strictly about whether the agent host
68 > * advertises Claude at all. The agent host process must be restarted for
69 > * changes to take effect.
70 > */
71 > export const AgentHostClaudeAgentEnabledSettingId = 'chat.agentHost.claudeAgent.enabled';
72 >
73 > /**
74 > * Configuration key controlling whether the Codex provider is registered in
75 > * the agent host process. When `false` (the default), the agent host skips
76 > * registering the Codex provider regardless of SDK availability. The agent
77 > * host process must be restarted for changes to take effect.
78 > */
79 > export const AgentHostCodexAgentEnabledSettingId = 'chat.agentHost.codexAgent.enabled';
80 >
81 > /**
82 > * Configuration key controlling whether the agent host *wires up* the BYOK
83 > * ("bring your own key") language-model bridge: the renderer LM handler, the
84 > * reverse-RPC channel, and the per-connection link to the node-side OpenAI
85 > * proxy + bridge registry. When `true` (the default), the renderer's BYOK
86 > * server channel and the per-connection bridge are wired so extension-provided
87 > * BYOK models are reachable from agent-host sessions. When `false`, the proxy
88 > * and registry are still constructed but stay inert — the BYOK server channel
89 > * and the per-connection bridge are not wired, so the registry stays empty and
90 > * extension-provided BYOK models are never reachable from agent-host sessions.
91 > * The agent host process must be restarted for changes to take effect.
92 > */
93 > export const AgentHostByokModelsEnabledSettingId = 'chat.agentHost.byokModels.enabled';
94 >
95 > /**
96 > * Optional override that points at an **SDK root directory** containing a
97 > * `node_modules/@anthropic-ai/claude-agent-sdk` subtree. When set, the agent
98 > * host loads the Claude SDK from that path instead of the bare import (which
99 > * resolves via this repo's `node_modules` in dev) or the on-demand download
100 > * from `product.agentSdks.claude` (built products). Mainly exists for the
101 > * remote server's `--claude-sdk-root` CLI flag and for one-off developer
102 > * overrides pointing at an out-of-tree SDK build.
103 > */
104 > export const AgentHostClaudeSdkRootEnvVar = 'VSCODE_AGENT_HOST_CLAUDE_SDK_ROOT';
105 >
106 > /**
107 > * Environment variable form of {@link AgentHostClaudeAgentEnabledSettingId}.
108 > * Set by the agent host starters from the setting. Accepts `'true'` /
109 > * `'false'`; absent means "default" (`true` for Claude, `false` for Codex).
110 > */
111 > export const AgentHostClaudeAgentEnabledEnvVar = 'VSCODE_AGENT_HOST_CLAUDE_AGENT_ENABLED';
112 >
113 > /**
114 > * Environment variable form of {@link AgentHostCodexAgentEnabledSettingId}.
115 > * Set by the agent host starters from the setting. Accepts `'true'` /
116 > * `'false'`; absent means "default" (`false`).
117 > */
118 > export const AgentHostCodexAgentEnabledEnvVar = 'VSCODE_AGENT_HOST_CODEX_AGENT_ENABLED';
119 >
120 > /**
121 > * Environment variable form of {@link AgentHostByokModelsEnabledSettingId}.
122 > * Set by the agent host starters from the setting. Accepts `'true'` /
123 > * `'false'`; absent means "default" (`true`).
124 > */
125 > export const AgentHostByokModelsEnabledEnvVar = 'VSCODE_AGENT_HOST_BYOK_MODELS_ENABLED';
126 >
127 > /**
128 > * Overrides the grace period (in milliseconds) before an idle, fully
129 > * unsubscribed session is released from memory. Defaults to 30_000. Primarily a
130 > * test hook so real-SDK integration tests can force a prompt release without
131 > * waiting the full production grace; production does not set it.
132 > */
133 > export const AgentHostSessionReleaseGraceMsEnvVar = 'VSCODE_AGENT_HOST_SESSION_RELEASE_GRACE_MS';
134 >
135 > /**
136 > * Resolves the effective enable state for a Claude/Codex provider from the
137 > * env-var value forwarded by the starter. Recognized values (case- and
138 > * whitespace-insensitive):
139 > *
140 > * - `'true'` / `'1'` → enabled
141 > * - `'false'` / `'0'` → disabled
142 > * - `undefined`, empty string, or any other value → falls through to
143 > * {@link defaultEnabled}
144 > */
145 > export function isAgentEnabled(envValue: string | undefined, defaultEnabled: boolean): boolean {
146 if (envValue === undefined || envValue === '') {
147 return defaultEnabled;
156 return defaultEnabled;
157 }
159 > /**
160 > * Configuration key that controls the sandbox mode for the Copilot SDK's built-in
161 > * shell tool (the path taken when `AgentHostCustomTerminalToolEnabledSettingId`
162 > * is `false`). Values mirror {@link AgentSandboxEnabledValue}:
163 > *
164 > * - `'off'` (the default): no sandbox policy is forwarded for the SDK shell
165 > * path \u2014 commands run unsandboxed.
166 > * - `'on'`: the Agent Host runs the SDK\u2019s shell tool inside a sandbox
167 > * using the user's `chat.agent.sandbox.fileSystem.*` filesystem policy.
168 > * Outbound network is enforced via the user's allow/deny host lists.
169 > * - `'allowNetwork'`: same as `'on'` but with unrestricted outbound network.
170 > *
171 > * Has no effect when `AgentHostCustomTerminalToolEnabledSettingId` is
172 > * `true` \u2014 the host\u2019s own terminal sandbox engine then handles shell
173 > * commands and reads `chat.agent.sandbox.enabled` directly.
174 > */
175 > export const AgentHostSdkSandboxEnabledSettingId = 'chat.agentHost.sdkSandbox.enabled';
176 >
177 > /**
178 > * Selects which Claude integration fulfills Claude sessions opened from the
179 > * **Agents Window**:
180 > * - `true` — Claude is provided by the agent host process.
181 > * - `false` (default) — Claude is provided by the GitHub Copilot Chat extension.
182 > *
183 > * The agent host always registers Claude when its SDK is reachable; this
184 > * setting only controls whether the per-window bridge in
185 > * `AgentHostContribution` actually surfaces the AH provider in the Agents
186 > * Window. The extension's `chatSessions` contribution mirrors the rule
187 > * declaratively (its `when` clause hides the EH provider when this is `true`),
188 > * so flipping the setting takes effect live without a window reload.
189 > *
190 > * Paired with {@link ClaudePreferAgentHostEditorSettingId} which governs the
191 > * regular workbench (sidebar). EXP-backed (`experiment: { mode: 'startup' }`).
192 > */
193 > export const ClaudePreferAgentHostAgentsSettingId = 'chat.agents.claude.preferAgentHost';
194 >
195 > /**
196 > * Sibling of {@link ClaudePreferAgentHostAgentsSettingId} that selects the
197 > * Claude implementation for the **regular workbench** (sidebar chat in a
198 > * non-Agents-Window window). Same shape, same semantics — just a different
199 > * surface scope.
200 > */
201 > export const ClaudePreferAgentHostEditorSettingId = 'chat.editor.claude.preferAgentHost';
202 >
203 > /**
204 > * Selects whether the regular workbench surfaces Codex from the agent host
205 > * instead of the OpenAI extension.
206 > */
207 > export const CodexPreferAgentHostEditorSettingId = 'chat.editor.codex.preferAgentHost';
208 >
209 > export function claudePreferAgentHostSettingId(isSessionsWindow: boolean): string {
210 return isSessionsWindow
211 ? ClaudePreferAgentHostAgentsSettingId
212 : ClaudePreferAgentHostEditorSettingId;
213 }
215 > export function affectsAgentHostProviderPreference(event: IConfigurationChangeEvent, isSessionsWindow: boolean): boolean {
216 return event.affectsConfiguration(claudePreferAgentHostSettingId(isSessionsWindow))
217 || event.affectsConfiguration(isSessionsWindow ? AgentHostCodexAgentEnabledSettingId : CodexPreferAgentHostEditorSettingId);
218 }
220 > export function shouldSurfaceLocalAgentHostProvider(provider: AgentProvider, configurationService: IConfigurationService, isSessionsWindow: boolean): boolean {
221 switch (provider) {
222 case CLAUDE_AGENT_PROVIDER_ID:
228 }
229 }
231 > // -- Codex agent settings --------------------------------------------------------
232 > //
233 > // Codex is opt-in via `chat.agentHost.codexAgent.sdkRoot`. The setting points
234 > // at an absolute path to a directory containing a `node_modules/@openai/codex`
235 > // subtree (the same shape `npm install @openai/codex` produces, and the same
236 > // shape the agent host downloads on demand from `product.agentSdks.codex`).
237 > // The agent host spawns the native codex binary from inside that tree as a
238 > // long-lived child process and speaks JSON-RPC over stdio. The binary is not
239 > // bundled with VS Code; users either install codex themselves (typically via
240 > // `npm install -g @openai/codex` or a platform package manager) or rely on
241 > // the on-demand download.
242 >
243 > /**
244 > * Absolute path to the **SDK root directory** containing a
245 > * `node_modules/@openai/codex` subtree. When non-empty, the agent host treats
246 > * it as a dev override and skips the on-demand download from
247 > * `product.agentSdks.codex`. Empty (the default) falls through to product
248 > * config; if neither is present, the provider is not registered.
249 > */
250 > export const AgentHostCodexAgentSdkRootSettingId = 'chat.agentHost.codexAgent.sdkRoot';
251 >
252 > /**
253 > * Optional override for `$CODEX_HOME`. When set, the codex app-server child
254 > * process inherits this value, controlling where rollouts and config live.
255 > */
256 > export const AgentHostCodexAgentCodexHomeSettingId = 'chat.agentHost.codexAgent.codexHome';
257 >
258 > /**
259 > * Additional command-line arguments passed to `codex app-server`. Mainly for
260 > * debugging (e.g. `--log-level=debug`).
261 > */
262 > export const AgentHostCodexAgentBinaryArgsSettingId = 'chat.agentHost.codexAgent.binaryArgs';
263 >
264 > /**
265 > * Environment variable form of {@link AgentHostCodexAgentSdkRootSettingId}.
266 > * Forwarded by the starters from the setting.
267 > */
268 > export const AgentHostCodexAgentSdkRootEnvVar = 'VSCODE_AGENT_HOST_CODEX_SDK_ROOT';
269 >
270 > /** Forwarded `$CODEX_HOME`. */
271 > export const AgentHostCodexAgentCodexHomeEnvVar = 'CODEX_HOME';
272 >
273 > /** Forwarded extra args for `codex app-server` (JSON-encoded string[]). */
274 > export const AgentHostCodexAgentBinaryArgsEnvVar = 'VSCODE_AGENT_HOST_CODEX_APP_SERVER_ARGS';
275 >
276 > // -- OpenTelemetry settings ------------------------------------------------------
277 > //
278 > // The `chat.agentHost.otel.*` namespace surfaces the same exporter knobs the CLI
279 > // runtime documents in `extensions/copilot/docs/monitoring/agent_monitoring.md`,
280 > // but routes them through the agent host process so the user's settings stay in
281 > // VS Code instead of leaking via shell env.
282 > //
283 > // `chat.agentHost.otel.dbSpanExporter.enabled` switches on the in-process
284 > // loopback receiver + persistent SQLite span store; the other settings still
285 > // apply because the user's external sink (when configured) is then fed by an
286 > // outbound forwarder rather than by the SDK directly.
287 >
288 > /** Master toggle for agent-host OTel. Explicit opt-in; other settings imply this when set. */
289 > export const AgentHostOTelEnabledSettingId = 'chat.agentHost.otel.enabled';
290 > /** Exporter type for the SDK's OTel pipeline. One of: `otlp-http`, `otlp-grpc`, `console`, `file`. */
291 > export const AgentHostOTelExporterTypeSettingId = 'chat.agentHost.otel.exporterType';
292 > /**
293 > * OTLP wire protocol (`http/json`, `http/protobuf`, `grpc`). Policy-only delivery slot (no user UI):
294 > * carries the enterprise-managed `telemetry.protocol` so it can be threaded into the agent host's
295 > * `OTEL_EXPORTER_OTLP_PROTOCOL` env, which the runtime needs to distinguish protobuf from json
296 > * (the `exporterType` setting only models transport, not the HTTP wire encoding).
297 > */
298 > export const AgentHostOTelOtlpProtocolSettingId = 'chat.agentHost.otel.otlpProtocol';
299 > /** OTLP endpoint URL when `exporterType` is `otlp-http` or `otlp-grpc`. */
300 > export const AgentHostOTelOtlpEndpointSettingId = 'chat.agentHost.otel.otlpEndpoint';
301 > /** Whether to include prompt/response content in span attributes (privacy-sensitive). */
302 > export const AgentHostOTelCaptureContentSettingId = 'chat.agentHost.otel.captureContent';
303 > /** Output path when `exporterType` is `file`. */
304 > export const AgentHostOTelOutfileSettingId = 'chat.agentHost.otel.outfile';
305 > /** Policy-only delivery slot for the enterprise-managed OTel `service.name` (no user UI). */
306 > export const AgentHostOTelServiceNameSettingId = 'chat.agentHost.otel.serviceName';
307 > /** Policy-only delivery slot for enterprise-managed OTel resource attributes (no user UI). */
308 > export const AgentHostOTelResourceAttributesSettingId = 'chat.agentHost.otel.resourceAttributes';
309 > /** When true, ALL spans are persisted to a local SQLite store regardless of `exporterType`. */
310 > export const AgentHostOTelDbSpanExporterEnabledSettingId = 'chat.agentHost.otel.dbSpanExporter.enabled';
311 >
312 > /**
313 > * Path of the local SQLite span database, relative to `INativeEnvironmentService.userDataPath`.
314 > * Kept here so both the renderer-side export action and the agent-host-side service
315 > * use the same on-disk location.
316 > */
317 > export const AgentHostOTelSpansDbSubPath = 'agent-host/otel/agent-host-traces.db';
318 >
319 > /**
320 > * Environment variables consumed by `AgentHostOTelService` inside the agent host
321 > * process. The workbench-side agent-host starters translate the corresponding
322 > * `chat.agentHost.otel.*` settings into these variables (settings → env), while
323 > * any value already present on the parent process's env wins (developer override).
324 > *
325 > * These names match the conventions documented in
326 > * `extensions/copilot/docs/monitoring/agent_monitoring.md` so the same external
327 > * tooling and `OTEL_EXPORTER_OTLP_*` config recipes work unchanged.
328 > */
329 > export const AgentHostOTelEnvVars = Object.freeze({
330 > Enabled: 'COPILOT_OTEL_ENABLED',
331 > ExporterType: 'COPILOT_OTEL_EXPORTER_TYPE',
332 > OtlpEndpoint: 'OTEL_EXPORTER_OTLP_ENDPOINT',
333 > OtlpEndpointAlt: 'COPILOT_OTEL_ENDPOINT',
334 > OtlpProtocol: 'OTEL_EXPORTER_OTLP_PROTOCOL',
335 > OtlpTracesProtocol: 'OTEL_EXPORTER_OTLP_TRACES_PROTOCOL',
336 > OtlpMetricsProtocol: 'OTEL_EXPORTER_OTLP_METRICS_PROTOCOL',
337 > OtlpHeaders: 'OTEL_EXPORTER_OTLP_HEADERS',
338 > CaptureContent: 'OTEL_INSTRUMENTATION_GENAI_CAPTURE_MESSAGE_CONTENT',
339 > FilePath: 'COPILOT_OTEL_FILE_EXPORTER_PATH',
340 > SourceName: 'COPILOT_OTEL_SOURCE_NAME',
341 > ServiceName: 'OTEL_SERVICE_NAME',
342 > ResourceAttributes: 'OTEL_RESOURCE_ATTRIBUTES',
343 > DbSpanExporterEnabled: 'COPILOT_OTEL_DB_SPAN_EXPORTER_ENABLED',
344 > } as const);
345 >
346 > /**
347 > * Snapshot of the `chat.agentHost.otel.*` settings; produced by the workbench-side
348 > * starters and merged with the parent process's env (env wins on key collision).
349 > */
350 > export interface IAgentHostOTelSettings {
351 > readonly enabled?: boolean;
352 > readonly exporterType?: string;
353 > readonly otlpProtocol?: string;
354 > readonly otlpEndpoint?: string;
355 > readonly captureContent?: boolean;
356 > readonly outfile?: string;
357 > readonly serviceName?: string;
358 > readonly resourceAttributes?: Record<string, string>;
359 > readonly dbSpanExporterEnabled?: boolean;
360 > }
361 >
362 > /**
363 > * IPC channel (renderer -> main) the desktop agent-host path uses to hand the
364 > * enterprise-resolved `chat.agentHost.otel.*` policy to `ElectronAgentHostStarter`.
365 > *
366 > * The main-process configuration service does NOT include the renderer-only
367 > * `AccountPolicyService` (managed settings: server / native-MDM / file channels), so a
368 > * starter running in the main process sees `policyValue === undefined` for these keys.
369 > * The renderer — whose policy layer does include managed settings — forwards the resolved
370 > * values here just before requesting the agent-host connection, so the host is spawned with
371 > * the managed OTel env. See {@link readAgentHostOTelPolicySettings}.
372 > */
373 > export const AgentHostOTelPolicyIpcChannel = 'vscode:agentHostOTelPolicy';
374 >
375 > /**
376 > * Resolve the enterprise-policy values for the `chat.agentHost.otel.*` settings from a
377 > * configuration service whose policy layer includes managed settings (i.e. the renderer's).
378 > * Each field is `undefined` when no policy is set. Intended as the `policySettings` argument
379 > * of {@link buildAgentHostOTelEnv}.
380 > */
381 > export function readAgentHostOTelPolicySettings(configurationService: IConfigurationService): IAgentHostOTelSettings {
382 const policyValue = <T>(key: string): T | undefined => configurationService.inspect<T>(key).policyValue;
383 return {
392 };
393 }
395 > /**
396 > * Validate/normalize an {@link IAgentHostOTelSettings} received over IPC, keeping only
397 > * well-typed fields. Defends the main process against a malformed payload before the values
398 > * are turned into agent-host process env vars.
399 > */
400 > export function sanitizeAgentHostOTelPolicySettings(raw: unknown): IAgentHostOTelSettings {
401 if (!raw || typeof raw !== 'object') {
402 return {};
431 };
432 }
434 > /**
435 > * Serialize an OTel resource-attribute map into the `OTEL_RESOURCE_ATTRIBUTES` env-var format
436 > * (`key1=value1,key2=value2`, W3C Baggage style). Returns `undefined` for an empty/absent map so
437 > * callers can skip emitting the env var. Empty keys and non-string values are dropped.
438 > */
439 function serializeResourceAttributes(attributes: Record<string, string> | undefined): string | undefined {
440 if (!attributes) {
446 return parts.length > 0 ? parts.join(',') : undefined;
447 }
449 > /**
450 > * Build the env-var overlay for the agent host process from user settings and
451 > * inherited env. Settings are translated to env vars, but if the same env var is
452 > * already present on `inheritedEnv` it wins (developer override).
453 > *
454 > * Only sets a key when the underlying setting was explicitly configured — empty
455 > * string / undefined settings are dropped so they don't shadow inherited env.
456 > */
457 > export function buildAgentHostOTelEnv(
458 settings: IAgentHostOTelSettings,
459 inheritedEnv: Readonly<Record<string, string | undefined>>,
527 return out;
528 }
530 > /**
531 > * Settings -> env-var fan-out for the Claude/Codex SDK overrides that the
532 > * agent host process consumes. Shared by both starters
533 > * (`nodeAgentHostStarter.ts`, `electronAgentHostStarter.ts`) so they don't
534 > * drift the next time someone adds a setting.
535 > *
536 > * The shape mirrors {@link buildAgentHostOTelEnv}: only set a key when the
537 > * underlying setting has a non-empty value AND the inherited env doesn't
538 > * already define it (developer override wins). Returns a partial env map
539 > * the caller spreads into the spawned child's environment.
540 > */
541 > export interface IAgentSdkStarterSettings {
542 > readonly codexSdkRoot?: string;
543 > readonly codexHome?: string;
544 > readonly codexBinaryArgs?: readonly string[];
545 > readonly claudeAgentEnabled?: boolean;
546 > readonly codexAgentEnabled?: boolean;
547 > readonly byokModelsEnabled?: boolean;
548 > }
549 >
550 > export function buildAgentSdkEnv(
551 settings: IAgentSdkStarterSettings,
552 inheritedEnv: Readonly<Record<string, string | undefined>>,
575 return out;
576 }
578 > /** Result of starting the agent host WebSocket server on-demand. */
579 > export interface IAgentHostSocketInfo {
580 > readonly socketPath: string;
581 > }
582 >
583 > /** Inspector listener information for the agent host process. */
584 > export interface IAgentHostInspectInfo {
585 > readonly host: string;
586 > readonly port: number;
587 > /** A `devtools://` URL that can be opened with `INativeHostService.openDevToolsWindow`. */
588 > readonly devtoolsUrl: string;
589 > }
590 >
591 > /** A network endpoint the agent host suggests probing, listed on {@link IAgentHostNetworkDiagnosticsInfo.endpoints}. */
592 > export interface IAgentHostNetworkEndpoint {
593 > /** Human-readable name of the endpoint (e.g. "GitHub API"). */
594 > readonly name: string;
595 > /** The URL to probe. */
596 > readonly url: string;
597 > /** Substring the response body is expected to contain; when set, the probe reads the body and fails the check if it is absent. */
598 > readonly expectedContent?: string;
599 > /** HTTP status code the probe treats as success. Defaults to `200` when omitted. */
600 > readonly expectedStatus?: number;
601 > }
602 >
603 > /** Host-level network context for diagnostics, produced by {@link IAgentConnection.getNetworkDiagnosticsInfo}. */
604 > export interface IAgentHostNetworkDiagnosticsInfo {
605 > /** Agent host product version. */
606 > readonly version: string;
607 > /** Operating system platform of the agent host process (`process.platform`). */
608 > readonly os: string;
609 > /** CPU architecture of the agent host process (`process.arch`). */
610 > readonly arch: string;
611 > /** Authenticated GitHub account login, when known. */
612 > readonly account?: string;
613 > /** VS Code `http.*` proxy settings observed by the agent host, keyed by setting id (only those that are set). */
614 > readonly proxySettings: Readonly<Record<string, string>>;
615 > /** Proxy-related environment variables observed by the agent host process, keyed by name (only those that are set). */
616 > readonly proxyEnv: Readonly<Record<string, string>>;
617 > /** Endpoints the agent host suggests probing via {@link IAgentConnection.diagnosticsFetch}. */
618 > readonly endpoints: readonly IAgentHostNetworkEndpoint[];
619 > }
620 >
621 > export interface IAgentHostManagedSettingsSnapshot {
622 > readonly account?: string;
623 > readonly source: 'server' | 'device' | 'none';
624 > readonly serverManaged: boolean;
625 > readonly deviceManaged: boolean;
626 > readonly failClosed: boolean;
627 > readonly bypassPermissionsDisabled: boolean;
628 > readonly permissionsAllowIntersected?: boolean;
629 > readonly managedKeys: readonly string[];
630 > readonly settings?: Readonly<Record<string, unknown>>;
631 > }
632 >
633 > export interface IAgentHostManagedSettingsDiagnostics {
634 > readonly provider: AgentProvider;
635 > readonly snapshot?: IAgentHostManagedSettingsSnapshot;
636 > readonly error?: string;
637 > }
638 >
639 > /** Result of a DNS lookup for a single address family, part of {@link IAgentHostNetworkFetchResult}. */
640 > export interface IAgentHostDnsResult {
641 > /** The resolved address, when the lookup succeeded. */
642 > readonly address?: string;
643 > /** Time taken by the lookup, in milliseconds. */
644 > readonly durationMs?: number;
645 > /** Lookup error message, when it failed. */
646 > readonly error?: string;
647 > }
648 >
649 > /** Result of a single connectivity probe, produced by {@link IAgentConnection.diagnosticsFetch}. */
650 > export interface IAgentHostNetworkFetchResult {
651 > /** The URL that was probed. */
652 > readonly url: string;
653 > /** The resolved proxy URL for this endpoint, or `undefined` for a direct connection. */
654 > readonly proxyUrl?: string;
655 > /** IPv4 DNS lookup result for the host. */
656 > readonly dnsIpv4?: IAgentHostDnsResult;
657 > /** IPv6 DNS lookup result for the host. */
658 > readonly dnsIpv6?: IAgentHostDnsResult;
659 > /** HTTP status code from the probe, when a response arrived. */
660 > readonly statusCode?: number;
661 > /** HTTP status message from the probe, when a response arrived. */
662 > readonly statusMessage?: string;
663 > /** Response body text (possibly truncated), when a response arrived. Callers use it to check expected content. */
664 > readonly body?: string;
665 > /** Time taken by the reachability probe, in milliseconds. */
666 > readonly durationMs?: number;
667 > /** Probe error message, when the connection failed. */
668 > readonly error?: string;
669 > }
670 >
671 > /**
672 > * IPC service exposed on the {@link AgentHostIpcChannels.ConnectionTracker}
673 > * channel. Used by the server process for lifetime management and by the
674 > * shared process to request a local WebSocket listener on-demand.
675 > */
676 > export interface IConnectionTrackerService {
677 > readonly onDidChangeConnectionCount: Event<number>;
678 >
679 > /**
680 > * Request the agent host to start a WebSocket server on a local
681 > * pipe/socket. Returns the socket path.
682 > * If a server is already running, returns the existing info.
683 > */
684 > startWebSocketServer(): Promise<IAgentHostSocketInfo>;
685 >
686 > /**
687 > * Get inspector listener info for the agent host process. If the inspector
688 > * is not currently active and `tryEnable` is true, opens the inspector on
689 > * a random local port. Returns `undefined` if the inspector cannot be
690 > * enabled (e.g. running in an environment without `node:inspector`).
691 > */
692 > getInspectInfo(tryEnable: boolean): Promise<IAgentHostInspectInfo | undefined>;
693 > }
694 >
695 > /**
696 > * Narrow renderer-to-local-agent-host control surface. All stateful agent
697 > * operations travel over {@link AgentHostIpcChannels.Protocol}.
698 > */
699 > export interface IAgentHostManagementService {
700 > readonly _serviceBrand: undefined;
701 >
702 > /**
703 > * Local-only compatibility path for session fields not yet represented by
704 > * AHP `createSession` (`model`, `agent`, and `importConversation`).
705 > */
706 > createSessionWithExtensions(config: IAgentCreateSessionConfig): Promise<URI>;
707 > /**
708 > * Local-only compatibility path for chat fields not yet represented by AHP
709 > * `createChat` (`title` and `model`).
710 > */
711 > createChatWithExtensions(session: URI, chat: URI, options: IAgentCreateChatOptions): Promise<void>;
712 > shutdown(): Promise<void>;
713 > getNetworkDiagnosticsInfo(): Promise<IAgentHostNetworkDiagnosticsInfo>;
714 > getManagedSettingsDiagnostics(): Promise<readonly IAgentHostManagedSettingsDiagnostics[]>;
715 > diagnosticsFetch(url: string): Promise<IAgentHostNetworkFetchResult>;
716 > startWebSocketServer(): Promise<IAgentHostSocketInfo>;
717 > getInspectInfo(tryEnable: boolean): Promise<IAgentHostInspectInfo | undefined>;
718 > }
719 >
720 > // ---- IPC data types (serializable across MessagePort) -----------------------
721 >
722 > export interface IAgentSessionMetadata {
723 > readonly session: URI;
724 > readonly startTime: number;
725 > readonly modifiedTime: number;
726 > readonly project?: IAgentSessionProjectInfo;
727 > readonly summary?: string;
728 > readonly status?: SessionStatus;
729 > /** Human-readable description of what the session is currently doing. */
730 > readonly activity?: string;
731 > readonly workingDirectory?: URI;
732 > readonly isRead?: boolean;
733 > readonly isArchived?: boolean;
734 > /**
735 > * Aggregate counts (additions / deletions / files) describing the
736 > * `changeKind: 'session'` changeset for this session — the chip
737 > * aggregate previously embedded in the catalogue entry. Mirrors
738 > * `SessionSummary.changes`.
739 > */
740 > readonly changes?: ChangesSummary;
741 > /**
742 > * Catalogue of changesets the agent can produce for this session — the
743 > * {@link Changeset | catalogue} that travels on
744 > * `SessionSummary.changesets`. Lightweight summary entries (id / label /
745 > * URI template / aggregate counts) without per-file detail; clients
746 > * subscribe to a specific expanded changeset URI when they need the full
747 > * file list.
748 > */
749 > readonly changesets?: readonly Changeset[];
750 > /**
751 > * Side-channel metadata mirroring {@link SessionState._meta}, propagated
752 > * to clients via per-session state subscriptions and the root-channel
753 > * session summary (the host treats the session-state and session-summary
754 > * `_meta` as the same bag). Producers SHOULD use namespaced keys; consumers
755 > * MUST ignore unknown keys. Use the typed accessors in `sessionState.ts`
756 > * (e.g. `readSessionGitState`, `readSessionGitHubState`) for well-known
757 > * slots.
758 > */
759 > readonly _meta?: SessionMeta;
760 > }
761 >
762 > export interface IAgentSessionProjectInfo {
763 > readonly uri: URI;
764 > readonly displayName: string;
765 > }
766 >
767 > export interface IAgentCreateSessionResult {
768 > readonly session: URI;
769 > readonly project?: IAgentSessionProjectInfo;
770 > /** The resolved working directory, which may differ from the requested one (e.g. worktree). */
771 > readonly workingDirectory?: URI;
772 > /**
773 > * `true` when the agent only allocated an in-memory placeholder for this
774 > * session (no SDK session, no worktree, no on-disk state). Materialization
775 > * happens lazily on the first {@link IAgentChats.sendMessage}, at which point
776 > * the agent fires {@link IAgent.onDidMaterializeSession}. The
777 > * {@link IAgentService} uses this flag to defer the `sessionAdded` protocol
778 > * notification so observers don't see the session in their list until it
779 > * has been persisted.
780 > */
781 > readonly provisional?: boolean;
782 > }
783 >
784 > /**
785 > * Payload of {@link IAgent.onDidMaterializeSession}. Fired once per session
786 > * when a previously {@link IAgentCreateSessionResult.provisional} session has
787 > * its SDK session, worktree (if any), and on-disk metadata in place.
788 > */
789 > export interface IAgentMaterializeSessionEvent {
790 > readonly session: URI;
791 > readonly workingDirectory: URI | undefined;
792 > readonly project: IAgentSessionProjectInfo | undefined;
793 > }
794 >
795 > export type AgentProvider = string;
796 >
797 > /** Well-known agent provider id for the Claude agent-host backend. */
798 > export const CLAUDE_AGENT_PROVIDER_ID = 'claude' as const;
799 >
800 > /** Well-known agent provider id for the Codex agent-host backend. */
801 > export const CODEX_AGENT_PROVIDER_ID = 'codex' as const;
802 >
803 > /**
804 > * Static capability facts an agent backend advertises about itself. Each flag
805 > * is opt-in (absent means unsupported) so single-chat agents (e.g. Codex) can omit
806 > * the bag entirely. Discovered over IPC alongside the rest of
807 > * {@link IAgentDescriptor} and surfaced to the sessions UI so features are
808 > * capability-gated instead of switched on the provider id.
809 > *
810 > * This is the IPC contract alias of the protocol-visible {@link AgentCapabilities}
811 > * type (defined in the root-state protocol); both share a single canonical shape
812 > * so a new flag added in one place is automatically reflected in the other.
813 > */
814 > export type IAgentCapabilities = AgentCapabilities;
815 >
816 > /** Metadata describing an agent backend, discovered over IPC. */
817 > export interface IAgentDescriptor {
818 > readonly provider: AgentProvider;
819 > readonly displayName: string;
820 > readonly description: string;
821 > /** Static capability flags the agent advertises (see {@link IAgentCapabilities}). */
822 > readonly capabilities?: IAgentCapabilities;
823 > }
824 >
825 >
826 > // ---- Auth types (RFC 9728 / RFC 6750 inspired) -----------------------------
827 >
828 > /**
829 > * Parameters for the `authenticate` command.
830 > * Analogous to sending `Authorization: Bearer <token>` (RFC 6750 section 2.1).
831 > */
832 > export interface AuthenticateParams {
833 > /**
834 > * The `resource` identifier from the server's
835 > * {@link IAuthorizationProtectedResourceMetadata} that this token targets.
836 > */
837 > readonly resource: string;
838 > /**
839 > * Scopes that were used to acquire the token. Omitted for legacy clients
840 > * that can only identify tokens by protected resource.
841 > */
842 > readonly scopes?: readonly string[];
843 >
844 > /** The bearer token value (RFC 6750). */
845 > readonly token: string;
846 > }
847 >
848 > /** Request for a previously accepted bearer token. */
849 > export interface IAgentHostAuthTokenRequest {
850 > /** Protected resource identifier from {@link ProtectedResourceMetadata.resource}. */
851 > readonly resource: string;
852 > /** Required token scopes, when the caller needs a scope-specific token. */
853 > readonly scopes?: readonly string[];
854 > }
855 >
856 > /**
857 > * Result of the `authenticate` command.
858 > */
859 > export interface AuthenticateResult {
860 > /** Whether the token was accepted. */
861 > readonly authenticated: boolean;
862 > }
863 >
864 > /**
865 > * Canonical {@link ProtectedResourceMetadata} for the GitHub Copilot
866 > * resource. Shared between every agent provider that consumes a GitHub
867 > * Copilot bearer token (e.g. Copilot CLI, Claude) so they advertise an
868 > * identical resource identifier to the auth flow — clients dispatch by
869 > * `resource`, and divergent metadata would silently route the same
870 > * token down separate code paths.
871 > */
872 > export const GITHUB_COPILOT_PROTECTED_RESOURCE: ProtectedResourceMetadata = {
873 > resource: 'https://api.github.com',
874 > resource_name: 'GitHub Copilot',
875 > authorization_servers: ['https://github.com/login/oauth'],
876 > scopes_supported: ['read:user', 'user:email'],
877 > required: true,
878 > };
879 >
880 > /**
881 > * Canonical {@link ProtectedResourceMetadata} for GitHub repository write
882 > * operations (e.g. creating a pull request). Distinct from
883 > * {@link GITHUB_COPILOT_PROTECTED_RESOURCE} so that the broader `repo`
884 > * scope is only requested when a session actually needs it (e.g. when a
885 > * changeset operation handler throws `AHP_AUTH_REQUIRED` with this
886 > * resource), rather than at session create for every agent.
887 > *
888 > * `required: false` reflects that the resource is only needed on demand —
889 > * agents do not have to advertise it eagerly. The workbench-side auth
890 > * contributor resolves it lazily in response to operation invocations.
891 > */
892 > export const GITHUB_REPO_PROTECTED_RESOURCE: ProtectedResourceMetadata = {
893 > resource: 'https://api.github.com/repos',
894 > resource_name: 'GitHub Repository',
895 > authorization_servers: ['https://github.com/login/oauth'],
896 > scopes_supported: ['repo'],
897 > required: false,
898 > };
899 >
900 > export interface IAgentCreateSessionConfig {
901 > readonly provider?: AgentProvider;
902 > readonly model?: ModelSelection;
903 > /**
904 > * Initial custom agent selection for the new session. Omit to start with
905 > * no custom agent selected (provider default behavior).
906 > */
907 > readonly agent?: AgentSelection;
908 > readonly session?: URI;
909 > readonly workingDirectory?: URI;
910 > readonly config?: Record<string, unknown>;
911 > /**
912 > * Eagerly claim the active client role for the new session. When provided,
913 > * the server initializes the session with this client as the active
914 > * client, equivalent to dispatching a `session/activeClientSet`
915 > * action immediately after creation. The `clientId` MUST match the
916 > * connection's own `clientId`.
917 > */
918 > readonly activeClient?: SessionActiveClient;
919 > /** Fork from an existing session at a specific turn. */
920 > readonly fork?: {
921 > readonly session: URI;
922 > readonly turnIndex: number;
923 > readonly turnId: string;
924 > /**
925 > * Maps old protocol turn IDs to new protocol turn IDs.
926 > * Populated by the service layer after generating fresh UUIDs
927 > * for the forked session's turns. Used by the agent to remap
928 > * per-turn data (e.g. SDK event ID mappings) in the session database.
929 > */
930 > readonly turnIdMapping?: ReadonlyMap<string, string>;
931 > };
932 > /**
933 > * Import an existing (e.g. local) conversation into a brand-new session as
934 > * real, editable turns. The provider translates {@link turns} into a
935 > * Copilot event log seeded on disk and resumes the session so the turns are
936 > * reconstituted as genuine backend events (editable / forkable / truncatable).
937 > *
938 > * The service layer assigns fresh UUID turn ids before handing the turns to
939 > * the provider so the seeded event ids and the seeded protocol turns stay
940 > * aligned. Mutually exclusive with {@link fork}.
941 > */
942 > readonly importConversation?: {
943 > readonly turns: readonly Turn[];
944 > readonly model?: ModelSelection;
945 > };
946 > /**
947 > * MCP-style opt-in progress token from the client's `createSession`. When
948 > * set, the service reports any long-running session bring-up work — chiefly
949 > * the lazy first-use SDK download — as `progress` notifications carrying
950 > * this token, so the client can correlate them to this call.
951 > */
952 > readonly progressToken?: string;
953 > }
954 >
955 > /** Options for creating an additional chat within a session. */
956 > export interface IAgentCreateChatOptions {
957 > /** Optional display title for the new chat. */
958 > readonly title?: string;
959 > /** Optional model override; defaults to the session's model. */
960 > readonly model?: ModelSelection;
961 > /**
962 > * Fork an existing chat into this new chat. The new chat starts
963 > * pre-populated with the source chat's turns up to and including
964 > * {@link IAgentCreateChatForkSource.turnId}, and its backing chat
965 > * is forked from the source so it can continue independently.
966 > */
967 > readonly fork?: IAgentCreateChatForkSource;
968 > /**
969 > * Create this new chat as a side chat branching from a turn in an existing
970 > * chat (via `/btw`). Unlike {@link fork}, inherited context is provider-owned
971 > * and must not appear in the chat's visible history.
972 > */
973 > readonly sideChat?: IAgentCreateChatSideChatSource;
974 > }
975 >
976 > /** Identifies a source chat and turn to fork a new chat from. */
977 > export interface IAgentCreateChatForkSource {
978 > /** URI of the existing chat to fork from. */
979 > readonly source: URI;
980 > /** Turn ID in the source chat; content up to and including this turn is copied. */
981 > readonly turnId: string;
982 > /**
983 > * Maps old source turn IDs to fresh turn IDs for the forked chat. Populated
984 > * by the agent service so the agent can remap per-turn data (e.g. SDK event
985 > * ID mappings) in the forked chat's database.
986 > */
987 > readonly turnIdMapping?: ReadonlyMap<string, string>;
988 > }
989 >
990 > /** Immutable selected-text snapshot captured when a side chat is created. */
991 > export interface IAgentCreateChatSideChatSelection {
992 > /** Exact selected-text snapshot captured at side-chat creation time. */
993 > readonly text: string;
994 > /** Optional provenance for the response part that contained {@link text}. */
995 > readonly responsePartId?: string;
996 > }
997 >
998 > /** Identifies a source chat and turn a side chat (`/btw`) branches from. */
999 > export interface IAgentCreateChatSideChatSource {
1000 > /** URI of the existing chat the side chat branches from. */
1001 > readonly source: URI;
1002 > /** Turn ID in the source chat the side chat records as its provenance. */
1003 > readonly turnId: string;
1004 > /** Optional selected-text snapshot captured from the source chat transcript. */
1005 > readonly selection?: IAgentCreateChatSideChatSelection;
1006 > /** Concrete provider turn ID to fork/resume from when `turnId` names a host-only local turn. */
1007 > readonly providerAnchorTurnId?: string;
1008 > /** Bounded source-chat context captured from host state when the provider transcript lags. */
1009 > readonly sourceContext?: string;
1010 > /** User-visible assistant text captured while the source turn was active. */
1011 > readonly partialResponse?: string;
1012 > }
1013 >
1014 > /** Result of {@link IAgentChats.createChat}: the opaque blob to persist for restore. */
1015 > export interface IAgentCreateChatResult {
1016 > /**
1017 > * Opaque, agent-owned token the orchestrator persists verbatim in the chat
1018 > * catalog and hands back to {@link IAgent.materializeChat} on
1019 > * restore. The orchestrator never parses it. `undefined` means nothing to
1020 > * persist (e.g. the agent keeps no resumable backing).
1021 > */
1022 > readonly providerData?: string;
1023 > /**
1024 > * The SDK-level session URI that backs this peer chat, when the agent mints
1025 > * one in the same session store its own {@link IAgent.listSessions} enumerates
1026 > * (e.g. Claude). First-class and non-opaque — unlike {@link providerData} the
1027 > * orchestrator reads it to correlate and suppress the backing session so it
1028 > * never surfaces as a top-level session. `undefined` when the agent keeps no
1029 > * separately-enumerable backing session.
1030 > */
1031 > readonly backingSession?: URI;
1032 > }
1033 >
1034 > /** Payload of {@link IAgent.onDidChangeChatData}. */
1035 > export interface IAgentChatDataChange {
1036 > /** The peer chat whose backing chat's blob changed. */
1037 > readonly chat: URI;
1038 > /** The new opaque blob to persist (replaces any previously stored value). */
1039 > readonly providerData: string;
1040 > }
1041 >
1042 > /** A legacy peer chat enumerated by {@link IAgent.listLegacyChats} for one-time migration. */
1043 > export interface IAgentLegacyChat {
1044 > /** The peer chat's channel URI (see {@link buildChatUri}). */
1045 > readonly uri: URI;
1046 > /** The opaque, agent-owned backing blob, encoded as {@link materializeChat} expects. */
1047 > readonly providerData?: string;
1048 > }
1049 >
1050 > /**
1051 > * Identifies the parent that spawned a chat. The orchestrator records
1052 > * it as the spawned chat's {@link ChatOriginKind.Tool} origin so clients can
1053 > * render the parent/child relationship (e.g. a sub-agent "team" member spawned
1054 > * by a tool call in the parent chat).
1055 > */
1056 > export interface IAgentSpawnedChatParent {
1057 > /** The parent chat (chat) URI whose tool call performed the spawn. */
1058 > readonly chat: URI;
1059 > /** The id of the tool call in the parent that spawned this chat. */
1060 > readonly toolCallId: string;
1061 > }
1062 >
1063 > /**
1064 > * Payload of {@link IAgent.onDidSpawnChat}: a new chat the
1065 > * agent spawned itself (e.g. a sub-agent delegated by a tool call), as opposed
1066 > * to a user-driven chat created via
1067 > * {@link IAgentChats.createChat}.
1068 > */
1069 > export interface IAgentSpawnChatEvent {
1070 > /** The session URI the spawned chat belongs to. */
1071 > readonly session: URI;
1072 > /** The spawned chat's channel URI (the new chat). */
1073 > readonly chat: URI;
1074 > /**
1075 > * The parent that spawned it, when the spawn was delegated by a tool call.
1076 > * Recorded as the chat's tool origin in the catalog. Absent for a
1077 > * top-level, agent-initiated chat with no spawning tool call.
1078 > */
1079 > readonly parent?: IAgentSpawnedChatParent;
1080 > /** Optional display title for the spawned chat. */
1081 > readonly title?: string;
1082 > }
1083 >
1084 > /** Max characters for a subagent tab title before it is ellipsized. */
1085 > const SUBAGENT_CHAT_TITLE_MAX_LENGTH = 60;
1086 >
1087 > /**
1088 > * Builds the tab title for a subagent peer chat. Prefers the concise
1089 > * per-task description (so two subagents of the same type still get
1090 > * distinct, meaningful names), truncating it so an over-long value never
1091 > * blows out the tab strip or the Subagents dropdown; falls back to the
1092 > * agent type's display name, then a generic label. Shared by the live
1093 > * spawn path and the restore path so both name subagent tabs identically.
1094 > */
1095 > export function subagentChatTitle(taskDescription: string | undefined, agentDisplayName: string | undefined): string {
1096 const task = taskDescription?.trim();
1097 if (task) {
1100 return agentDisplayName?.trim() || 'Subagent';
1101 }
1103 > /**
1104 > * Maps agent `subagent_*` signals to the unified chat catalog's
1105 > * spawn/end events. Shared by the agents' spawn bridges and the orchestrator so
1106 > * subagent membership has one derivation.
1107 > */
1108 > export namespace SubagentChatSignal {
1109 >
1110 > /**
1111 > * Derives the {@link IAgentSpawnChatEvent} for a `subagent_started` signal,
1112 > * addressing the subagent by the stable {@link buildSubagentChatUri} and
1113 > * recording the spawning tool call as its parent edge. Returns `undefined`
1114 > * for any other signal (or an unmappable chat URI).
1115 > */
1116 > export function toSpawnEvent(signal: AgentSignal): IAgentSpawnChatEvent | undefined {
1117 if (signal.kind !== 'subagent_started') {
1118 return undefined;
1135 };
1136 }
1137 > } agentService.ts
1138 >
1139 > // ---- Chat surface --------------------------------------------------
1140 >
1141 > /**
1142 > * The chat-addressed operation surface an agent exposes for the chats
1143 > * within a session.
1144 > *
1145 > * Every operation method addresses a chat by a concrete chat channel URI:
1146 > * the default chat channel for a session's DEFAULT chat, or an additional
1147 > * chat's own channel URI. The orchestrator ({@link IAgentService}) owns the
1148 > * feature-level `(session, chat)` to chat-channel mapping and only ever calls
1149 > * these operations with a concrete chat URI. This replaces the legacy
1150 > * `(session, chat?)` parameter pairs and the per-agent default-chat handling on
1151 > * {@link IAgent}.
1152 > *
1153 > * Optional on {@link IAgent}: agents implement this incrementally (waves
1154 > * C2/C3/C4). Until an agent exposes it, {@link IAgentService} falls back to the
1155 > * agent's legacy `(session, chat?)` methods via a thin adapter.
1156 > */
1157 > export interface IAgentChats {
1158 > /**
1159 > * Create a fresh additional chat within the session the `chat` URI belongs
1160 > * to, sharing the session's working directory, model, agent, and
1161 > * customizations. `chat` is the client-chosen channel URI the new chat is
1162 > * addressed by; its parent session is derived from it.
1163 > * Returns the opaque {@link IAgentCreateChatResult} blob to persist for
1164 > * restore (or `void` when the agent keeps no resumable backing).
1165 > */
1166 > createChat(chat: URI, options?: IAgentCreateChatOptions): Promise<IAgentCreateChatResult | void>;
1167 >
1168 > /**
1169 > * Fork a new chat from an existing one. The new `chat`
1170 > * inherits `source`'s backing up to and including
1171 > * {@link IAgentCreateChatForkSource.turnId} and then continues
1172 > * independently. The new chat's parent session is derived from its URI.
1173 > */
1174 > fork(chat: URI, source: IAgentCreateChatForkSource, options?: IAgentCreateChatOptions): Promise<IAgentCreateChatResult | void>;
1175 >
1176 > /**
1177 > * Dispose an additional chat created via
1178 > * {@link createChat}/{@link fork}, freeing its backing. A session's
1179 > * default chat cannot be disposed in isolation; it lives and dies
1180 > * with the session.
1181 > */
1182 > disposeChat(chat: URI): Promise<void>;
1183 >
1184 > /**
1185 > * Send a user message into `chat`; on first send, the host passes the resolved
1186 > * working directory (or `undefined` for workspace-less sessions).
1187 > */
1188 > sendMessage(chat: URI, prompt: string, workingDirectory: URI | undefined, attachments?: readonly MessageAttachment[], turnId?: string, senderClientId?: string): Promise<void>;
1189 >
1190 > /** Abort the in-flight turn for `chat`. */
1191 > abort(chat: URI): Promise<void>;
1192 >
1193 > /** Change the model for `chat`. */
1194 > changeModel(chat: URI, model: ModelSelection): Promise<void>;
1195 >
1196 > /**
1197 > * Change (or clear) the selected custom agent for `chat`. Passing
1198 > * `undefined` clears the selection (provider default behavior).
1199 > */
1200 > changeAgent(chat: URI, agent: AgentSelection | undefined): Promise<void>;
1201 >
1202 > /** Reconstruct the turns for `chat` (used on restore). */
1203 > getMessages(chat: URI): Promise<readonly Turn[]>;
1204 > }
1205 >
1206 > export interface IAgentResolveSessionConfigParams {
1207 > readonly provider?: AgentProvider;
1208 > readonly workingDirectory?: URI;
1209 > readonly config?: Record<string, unknown>;
1210 > }
1211 >
1212 > export interface IAgentSessionConfigCompletionsParams extends IAgentResolveSessionConfigParams {
1213 > readonly property: string;
1214 > readonly query?: string;
1215 > }
1216 >
1217 > /** Serializable model information from the agent host. */
1218 > export interface IAgentModelInfo {
1219 > readonly provider: AgentProvider;
1220 > readonly id: string;
1221 > readonly name: string;
1222 > readonly maxContextWindow?: number;
1223 > readonly maxOutputTokens?: number;
1224 > readonly maxPromptTokens?: number;
1225 > readonly supportsVision: boolean;
1226 > readonly configSchema?: ConfigSchema;
1227 > readonly policyState?: PolicyState;
1228 > readonly _meta?: Record<string, unknown>;
1229 > }
1230 >
1231 > // ---- Agent signals (sent via IAgent.onDidSessionProgress) -------------------
1232 >
1233 > /**
1234 > * A signal emitted by an agent during session execution.
1235 > *
1236 > * Most signals carry a protocol {@link SessionAction} directly via the
1237 > * `kind: 'action'` shape, eliminating a parallel event ontology. A small
1238 > * number of cases that have no clean protocol action (permission
1239 > * auto-approval, subagent session creation, steering message
1240 > * acknowledgment) remain as discriminated non-action signals so the host
1241 > * can perform side effects before — or instead of — dispatching an action.
1242 > */
1243 > export type AgentSignal =
1244 > | IAgentActionSignal
1245 > | IAgentToolPendingConfirmationSignal
1246 > | IAgentSubagentStartedSignal
1247 > | IAgentSubagentCompletedSignal
1248 > | IAgentSteeringConsumedSignal;
1249 >
1250 > /**
1251 > * Carries a protocol {@link SessionAction} produced by an agent. The host
1252 > * dispatches the action through the state manager after routing via
1253 > * {@link IAgentActionSignal.parentToolCallId} (if set).
1254 > *
1255 > * Agents are responsible for populating the target channel and any `turnId` /
1256 > * `partId` fields on the action.
1257 > */
1258 > export interface IAgentActionSignal {
1259 > readonly kind: 'action';
1260 > /** Target session or chat channel URI. For inner subagent events this is the parent session — see {@link parentToolCallId}. */
1261 > readonly resource: URI;
1262 > /** Protocol action to dispatch. */
1263 > readonly action: SessionAction | ChatAction;
1264 > /** If set, route the action to the subagent session belonging to this tool call. */
1265 > readonly parentToolCallId?: string;
1266 > }
1267 >
1268 > /**
1269 > * A tool has finished collecting parameters and needs the host to decide
1270 > * whether it should run (or, mid-execution, re-confirm). The host applies
1271 > * auto-approval logic over {@link permissionKind} / {@link permissionPath}
1272 > * (see `SessionPermissionManager.getAutoApproval`) and then dispatches the
1273 > * appropriate `ChatToolCallReady` action — with confirmation options
1274 > * baked in when the user must approve, or with `confirmed: NotNeeded` when
1275 > * the host auto-approved.
1276 > *
1277 > * Kept as a non-action signal because the host owns this approval policy;
1278 > * the agent only describes the tool call and the kind of permission being
1279 > * requested. The {@link state} field carries the protocol-shaped tool-call
1280 > * state and is dispatched verbatim into the action.
1281 > */
1282 > export interface IAgentToolPendingConfirmationSignal {
1283 > readonly kind: 'pending_confirmation';
1284 > /** Target chat channel URI containing the tool call. */
1285 > readonly chat: URI;
1286 > /** Protocol-shaped pending-confirmation state, dispatched verbatim into `ChatToolCallReady`. */
1287 > readonly state: ToolCallPendingConfirmationState;
1288 > /** Host-only auto-approval kind (not part of the dispatched action). */
1289 > readonly permissionKind?: 'shell' | 'write' | 'mcp' | 'read' | 'url' | 'skill' | 'custom-tool' | 'hook' | 'memory' | 'extension-management' | 'extension-permission-access';
1290 > /** Host-only auto-approval path target (not part of the dispatched action). */
1291 > readonly permissionPath?: string;
1292 > /**
1293 > * Host-only flag (not part of the dispatched action): the model requested
1294 > * this shell command run OUTSIDE the sandbox (and the host opted in via
1295 > * `sandbox.allowBypass`).
1296 > */
1297 > readonly requestSandboxBypass?: boolean;
1298 > /**
1299 > * If set, the tool call belongs to the subagent rooted at this
1300 > * parent tool call. Used by the host to route the resulting
1301 > * `ChatToolCallReady` to the subagent session — otherwise the
1302 > * action would land on the parent session, where there is no
1303 > * matching `ChatToolCallStart`.
1304 > */
1305 > readonly parentToolCallId?: string;
1306 > }
1307 >
1308 > /**
1309 > * A subagent was spawned by a tool call. The host creates a child session
1310 > * silently and routes subsequent inner-tool events to it.
1311 > *
1312 > * Kept as a non-action signal because subagent session creation has no
1313 > * protocol action — it's a host-side composition primitive.
1314 > */
1315 > export interface IAgentSubagentStartedSignal {
1316 > readonly kind: 'subagent_started';
1317 > readonly chat: URI;
1318 > readonly toolCallId: string;
1319 > readonly agentName: string;
1320 > readonly agentDisplayName: string;
1321 > readonly agentDescription?: string;
1322 > /**
1323 > * The spawning Task tool's short (typically 3-5 word) `description`
1324 > * input, e.g. "Review package.json structure". Distinct from
1325 > * {@link agentDescription} (the agent *type*'s long role blurb) and
1326 > * {@link agentDisplayName} (the agent type's name). Preferred as the
1327 > * peer chat's tab title because it is concise and per-task, so two
1328 > * subagents of the same type still get distinct, meaningful names.
1329 > * Absent when the harness does not surface a task description.
1330 > */
1331 > readonly taskDescription?: string;
1332 > /**
1333 > * The full delegated instruction the parent handed the subagent (the
1334 > * spawning tool's `prompt` input). Populated by each provider at emit
1335 > * time from its own native source, so the shared orchestrator never
1336 > * parses a provider-specific tool-input shape. Seeds the subagent peer
1337 > * chat's opening request. Distinct from {@link taskDescription} (a short
1338 > * tab-title label). Absent when the harness does not surface a prompt.
1339 > */
1340 > readonly taskPrompt?: string;
1341 > /**
1342 > * If set, the spawning tool call ({@link toolCallId}) itself lives
1343 > * inside another subagent's chat — this is the tool call **one level up**
1344 > * from the spawning tool (its parent), i.e. the tool that spawned the
1345 > * immediate parent chat. The host uses it to route the
1346 > * subagent-discovery side effect (the `ChatToolCallContentChanged`
1347 > * block that lets clients find the child chat) to that immediate parent
1348 > * chat rather than the top-level {@link chat}. Because subagent chats
1349 > * are flat (all keyed off the root session + the spawning tool id),
1350 > * this single one-hop reference resolves the correct parent chat at
1351 > * ANY nesting depth — no per-level chain is needed. Absent for a
1352 > * top-level subagent, whose spawning tool call lives directly in
1353 > * {@link chat}.
1354 > */
1355 > readonly parentToolCallId?: string;
1356 > }
1357 >
1358 > /**
1359 > * A subagent has finished — either successfully or with an error. The host
1360 > * uses this to tear down the child session after all of its events have been
1361 > * routed. The parent tool call completing is not a reliable signal for this
1362 > * because background subagents (e.g. Copilot's `mode: background` task) keep
1363 > * emitting events after their parent tool call returns immediately.
1364 > */
1365 > export interface IAgentSubagentCompletedSignal {
1366 > readonly kind: 'subagent_completed';
1367 > readonly chat: URI;
1368 > readonly toolCallId: string;
1369 > }
1370 >
1371 > /** A steering message was consumed (sent to the model). */
1372 > export interface IAgentSteeringConsumedSignal {
1373 > readonly kind: 'steering_consumed';
1374 > readonly chat: URI;
1375 > readonly id: string;
1376 > }
1377 >
1378 > // ---- Session URI helpers ----------------------------------------------------
1379 >
1380 > export namespace AgentSession {
1381 >
1382 > /**
1383 > * Creates a session URI from a provider name and raw session ID.
1384 > * The URI scheme is the provider name (e.g., `copilot:/<rawId>`).
1385 > */
1386 > export function uri(provider: AgentProvider, rawSessionId: string): URI {
1387 return URI.from({ scheme: provider, path: `/${rawSessionId}` });
1388 }
1390 > /**
1391 > * Extracts the raw session ID from a session URI (the path without leading slash).
1392 > * Accepts both a URI object and a URI string.
1393 > */
1394 > export function id(session: URI | string): string {
1395 const parsed = typeof session === 'string' ? URI.parse(session) : session;
1396 return parsed.path.substring(1);
1397 }
1399 > /**
1400 > * Extracts the provider name from a session URI scheme.
1401 > * Accepts both a URI object and a URI string.
1402 > */
1403 > export function provider(session: URI | string): AgentProvider | undefined {
1404 const parsed = typeof session === 'string' ? URI.parse(session) : session;
1405 return parsed.scheme || undefined;
1406 }
1407 > } agentService.ts
1408 >
1409 > // ---- Agent provider interface -----------------------------------------------
1410 >
1411 > /**
1412 > * A notification originating from an MCP server, routed back to the AHP
1413 > * client through the `mcp://` side channel. `channel` is the channel
1414 > * URI advertised on the owning
1415 > * {@link McpServerCustomization.channel | McpServerCustomization}; the
1416 > * client uses it to fan the notification out to the appropriate App.
1417 > * `method` and `params` follow the underlying MCP notification spec
1418 > * (e.g. `notifications/tools/list_changed`).
1419 > */
1420 > export interface IMcpNotification {
1421 > readonly channel: string;
1422 > readonly method: string;
1423 > readonly params?: Record<string, unknown>;
1424 > }
1425 >
1426 > /**
1427 > * A subagent child session discovered in a parent session's event log,
1428 > * returned by {@link IAgent.getSubagentSessions} so a parent restore can
1429 > * register the child's state up-front.
1430 > */
1431 > export interface IRestoredSubagentSession {
1432 > /** Child subagent session URI (subscribable by clients). */
1433 > readonly resource: URI;
1434 > /** Parent tool call id that spawned the subagent. */
1435 > readonly toolCallId: string;
1436 > /** Display title for the subagent session. */
1437 > readonly title: string;
1438 > /** Reconstructed turns for the subagent's transcript. */
1439 > readonly turns: readonly Turn[];
1440 > }
1441 >
1442 > /**
1443 > * A per-session handle for one active client's contributions (tools and
1444 > * plugin customizations) to an agent session, obtained via
1445 > * {@link IAgent.getOrCreateActiveClient}.
1446 > *
1447 > * `tools` and `customizations` are mutable accessor properties: assigning a
1448 > * new array replaces this client's contribution wholesale and triggers the
1449 > * agent's internal reaction (refreshing the merged tool set exposed to the
1450 > * model, or kicking off an asynchronous customization sync). The arrays are
1451 > * `readonly` so callers cannot mutate them in place and silently bypass the
1452 > * setter. The agent merges the contributions of all active clients on a
1453 > * session, deduplicating as needed.
1454 > */
1455 > export interface IActiveClient {
1456 > /** Client identifier (matches `clientId` from `initialize`). */
1457 > readonly clientId: string;
1458 > /** Human-readable client name (e.g. `"VS Code"`), if provided. */
1459 > readonly displayName: string | undefined;
1460 > /** This client's tools. Assigning replaces the set (full replacement). */
1461 > tools: readonly ToolDefinition[];
1462 > /** This client's plugin customizations. Assigning replaces the set and starts an internal sync. */
1463 > customizations: readonly ClientPluginCustomization[];
1464 > }
1465 >
1466 > /**
1467 > * Implemented by each agent backend (e.g. Copilot SDK).
1468 > * The {@link IAgentService} dispatches to the appropriate agent based on
1469 > * the agent id.
1470 > */
1471 > export interface IAgent {
1472 > /** Unique identifier for this provider (e.g. `'copilot'`). */
1473 > readonly id: AgentProvider;
1474 >
1475 > /** Fires when the provider streams progress for a session. */
1476 > readonly onDidSessionProgress: Event<AgentSignal>;
1477 >
1478 > /**
1479 > * Fires once when a previously
1480 > * {@link IAgentCreateSessionResult.provisional} session has been
1481 > * materialized — i.e. its SDK session, worktree (if any), and on-disk
1482 > * metadata are all in place. The {@link IAgentService} uses this event
1483 > * to fire the deferred `sessionAdded` notification with the now-final
1484 > * summary.
1485 > */
1486 > readonly onDidMaterializeSession?: Event<IAgentMaterializeSessionEvent>;
1487 >
1488 > /**
1489 > * Provides the agent host's server-tool host so the provider can advertise
1490 > * and execute the agent host's server tools (feedback "comments" today, more
1491 > * in the future) against a session's state. Optional: providers that do not
1492 > * support server-side tools simply omit it. Called once during registration
1493 > * with the {@link IAgentService}.
1494 > */
1495 > setServerToolHost?(host: IAgentServerToolHost): void;
1496 >
1497 > // ---- Chat surface ------------------------------------------------------
1498 > //
1499 > // `chats` is the chat-addressed operation surface. Its chats are addressed
1500 > // by concrete chat channel URIs. The orchestrator ({@link IAgentService})
1501 > // owns the feature-level `(session, chat)` to chat-channel mapping.
1502 >
1503 > /**
1504 > * Chat-addressed surface for the chats within a session (send/abort/
1505 > * change model/agent, create/fork/dispose chats, read history).
1506 > */
1507 > readonly chats: IAgentChats;
1508 >
1509 > // ---- Session lifecycle / configuration ---------------------------------
1510 >
1511 > /** Create a new session. Host-owned worktree fields are omitted from `config.config`. */
1512 > createSession(config?: IAgentCreateSessionConfig): Promise<IAgentCreateSessionResult>;
1513 >
1514 > /** Resolve provider-owned session configuration; host-owned worktree fields are omitted. */
1515 > resolveSessionConfig(params: IAgentResolveSessionConfigParams): Promise<ResolveSessionConfigResult>;
1516 >
1517 > /** Return dynamic completions for a provider-owned session configuration property. */
1518 > sessionConfigCompletions(params: IAgentSessionConfigCompletionsParams): Promise<SessionConfigCompletionsResult>;
1519 >
1520 > /**
1521 > * Re-attach an agent's in-memory backing for a peer chat on session
1522 > * restore, decoding the opaque `providerData` produced earlier by
1523 > * {@link IAgentChats.createChat} (or the latest
1524 > * {@link onDidChangeChatData}). After this resolves the agent MUST
1525 > * be able to serve {@link getSessionMessages}/
1526 > * {@link IAgentChats.sendMessage} for `chat`.
1527 > * Best-effort: implementations SHOULD NOT throw on a corrupt/unknown blob —
1528 > * log and no-op so the orchestrator restores the chat with history but no
1529 > * live backing. `providerData` is `undefined` only for legacy entries with
1530 > * no stored blob, in which case the agent MAY consult its own legacy
1531 > * persistence once to recover the backing.
1532 > */
1533 > materializeChat?(chat: URI, providerData: string | undefined): Promise<void>;
1534 >
1535 > /**
1536 > * Migration-only enumeration of a session's peer chats persisted in the
1537 > * agent's OWN legacy format (predating the orchestrator-owned catalog). The
1538 > * orchestrator calls this once, when its own catalog is absent, to drain the
1539 > * legacy chats into {@link PEER_CHATS_METADATA_KEY}; subsequent restores read
1540 > * the orchestrator catalog and never consult this again. Each entry's
1541 > * `providerData` uses the same encoding {@link IAgentChats.createChat}
1542 > * produces and {@link materializeChat} decodes. Agents with no legacy
1543 > * format (e.g. Codex) omit this method.
1544 > */
1545 > listLegacyChats?(session: URI): Promise<readonly IAgentLegacyChat[]>;
1546 >
1547 > /**
1548 > * Fires when a peer chat's opaque `providerData` changes after creation
1549 > * (e.g. per-chat model switch, fork remap). The orchestrator re-persists the
1550 > * blob. Agents whose blob is immutable never fire this.
1551 > */
1552 > readonly onDidChangeChatData?: Event<IAgentChatDataChange>;
1553 >
1554 > // ---- Spawned chat (membership) channel -------------------------
1555 > //
1556 > // First-class membership channel for chats the agent spawns itself
1557 > // (e.g. sub-agent / "team" member chats delegated by a tool call),
1558 > // as opposed to user-driven chats created via
1559 > // {@link IAgentChats.createChat}. The orchestrator
1560 > // ({@link IAgentService}) routes these straight into the chat catalog
1561 > // (addChat/removeChat) so harness-spawned and user-driven chats share ONE
1562 > // membership path. Agents that never spawn chats omit both events.
1563 >
1564 > /**
1565 > * Fires when the agent spawns a new chat within a session (e.g. a
1566 > * sub-agent delegated by a tool call). The orchestrator records it in the
1567 > * chat catalog, preserving the {@link IAgentSpawnChatEvent.parent}
1568 > * spawn edge as the chat's {@link ChatOriginKind.Tool} origin.
1569 > */
1570 > readonly onDidSpawnChat?: Event<IAgentSpawnChatEvent>;
1571 >
1572 > /**
1573 > * Called when a chat's pending (steering) message changes.
1574 > * The agent harness decides how to react — e.g. inject steering
1575 > * mid-turn via `mode: 'immediate'`. Steering is always addressed by a
1576 > * concrete chat channel URI — the session's default chat or an additional
1577 > * peer chat — so it never leaks into a sibling chat of the same session.
1578 > *
1579 > * Queued messages are consumed on the server side and are not
1580 > * forwarded to the agent; `queuedMessages` will always be empty.
1581 > */
1582 > setPendingMessages?(chat: URI, steeringMessage: PendingMessage | undefined, queuedMessages: readonly PendingMessage[]): void;
1583 >
1584 > /**
1585 > * Retrieve the reconstructed turns for a session, used when restoring
1586 > * sessions from persistent storage. Each agent owns the conversion from
1587 > * its SDK-specific event log to protocol {@link Turn}s, including
1588 > * subagent sessions (callers pass the subagent URI to retrieve the
1589 > * child session's turns).
1590 > */
1591 > getSessionMessages(session: URI): Promise<readonly Turn[]>;
1592 >
1593 > /**
1594 > * Returns the subagent child sessions discoverable in a session's event
1595 > * log so a parent restore can eagerly register them in a single pass.
1596 > * Without this, every child is restored separately by re-fetching and
1597 > * re-reconstructing the full parent event log (one pass per subagent).
1598 > * Agents that serve this from the same reconstruction they already
1599 > * produced for the parent turns avoid that redundant work entirely.
1600 > * Optional; agents without subagents omit it.
1601 > */
1602 > getSubagentSessions?(session: URI): Promise<readonly IRestoredSubagentSession[]>;
1603 >
1604 > /** Dispose a session, freeing resources. */
1605 > disposeSession(session: URI): Promise<void>;
1606 >
1607 > /**
1608 > * Release a session's in-memory resources (SDK session/connection, cached
1609 > * per-session state) without deleting any durable data. Unlike
1610 > * {@link disposeSession}, this is non-destructive: the on-disk session log,
1611 > * session database, and worktree are all preserved so the session can be
1612 > * transparently resumed later. Used by idle-session eviction to bound
1613 > * memory in long-lived host processes. Optional; providers that hold no
1614 > * releasable in-memory state simply omit it.
1615 > */
1616 > releaseSession?(session: URI): Promise<void>;
1617 >
1618 > /** Respond to a pending permission request from the SDK. */
1619 > respondToPermissionRequest(requestId: string, approved: boolean): void;
1620 >
1621 > /** Respond to a pending user input request from the SDK's ask_user tool. */
1622 > respondToUserInputRequest(requestId: string, response: ChatInputResponseKind, answers?: Record<string, ChatInputAnswer>): void;
1623 >
1624 > /** Return the descriptor for this agent. */
1625 > getDescriptor(): IAgentDescriptor;
1626 >
1627 > /** Available models from this provider. */
1628 > readonly models: IObservable<readonly IAgentModelInfo[]>;
1629 >
1630 > /**
1631 > * Re-enumerate this provider's model list and publish the result to
1632 > * {@link models}. Called both on provider-owned triggers (authentication,
1633 > * transport changes) and periodically by the host's model-refresh
1634 > * scheduler, so implementations MUST coalesce concurrent calls into a
1635 > * single backend request and MUST NOT reject: a failed refresh is logged
1636 > * and leaves the last known-good list in place.
1637 > *
1638 > * Optional so providers without a dynamic model catalog (mocks, test
1639 > * agents) need not implement it.
1640 > */
1641 > refreshModels?(): Promise<void>;
1642 >
1643 > /** List persisted sessions from this provider. */
1644 > listSessions(): Promise<IAgentSessionMetadata[]>;
1645 >
1646 > /** Retrieve metadata for a single persisted session, without enumerating the provider catalog. */
1647 > getSessionMetadata?(session: URI): Promise<IAgentSessionMetadata | undefined>;
1648 >
1649 > /** Declare protected resources this agent requires auth for (RFC 9728). */
1650 > getProtectedResources(): ProtectedResourceMetadata[];
1651 >
1652 > /**
1653 > * Endpoints this provider uses and recommends probing in network
1654 > * diagnostics. Optional.
1655 > */
1656 > getNetworkDiagnosticsEndpoints?(): Promise<readonly IAgentHostNetworkEndpoint[]>;
1657 >
1658 > /** Authenticated account name to display in network diagnostics, when known. */
1659 > getNetworkDiagnosticsAccount?(): Promise<string | undefined>;
1660 >
1661 > /** Resolve the provider's own effective enterprise managed-settings snapshot. */
1662 > getManagedSettingsDiagnostics?(): Promise<IAgentHostManagedSettingsSnapshot>;
1663 >
1664 > /**
1665 > * Fires when the agent's host-owned customizations change
1666 > * (loading state, resolution results, etc.), so infrastructure
1667 > * can republish {@link AgentInfo} and session customization state.
1668 > */
1669 > readonly onDidCustomizationsChange?: Event<void>;
1670 >
1671 > /**
1672 > * Fires when this agent needs the client to (re-)authenticate a
1673 > * protected resource — for example after a runtime transport-mode flip
1674 > * makes a previously-unneeded credential required. The host stamps the
1675 > * root channel and forwards it verbatim as an `auth/required`
1676 > * notification; clients respond via {@link authenticate}.
1677 > */
1678 > readonly onDidRequireAuth?: Event<Omit<AuthRequiredParams, 'channel'>>;
1679 >
1680 > /**
1681 > * Returns the host-owned customizations this agent currently exposes.
1682 > *
1683 > * Used to publish baseline customization metadata on {@link AgentInfo}.
1684 > * Always container customizations ({@link PluginCustomization} or
1685 > * {@link DirectoryCustomization}).
1686 > */
1687 > getCustomizations?(): readonly Customization[];
1688 >
1689 > /**
1690 > * Returns the effective customization list for a session, including
1691 > * source, enablement, and loading/error status.
1692 > */
1693 > getSessionCustomizations?(session: URI): Promise<readonly Customization[]>;
1694 >
1695 > /**
1696 > * Authenticate for a specific resource. Returns true if accepted.
1697 > * The `resource` matches {@link IAuthorizationProtectedResourceMetadata.resource}.
1698 > */
1699 > authenticate(resource: string, token: string): Promise<boolean>;
1700 >
1701 > /**
1702 > * Optional hook for provider-owned session resources that are not advertised
1703 > * as root agent protected resources, such as MCP server OAuth challenges.
1704 > */
1705 > handleAuthenticationToken?(params: AuthenticateParams): Promise<boolean>;
1706 >
1707 > /**
1708 > * Truncate a chat's history. If `turnId` is provided, keeps turns up to
1709 > * and including that turn. If omitted, all turns are removed.
1710 > *
1711 > * `chat` identifies which chat to truncate: the session's default chat
1712 > * (addressed by the session's default chat URI) or a peer (non-default)
1713 > * chat, which has its own backing.
1714 > *
1715 > * Optional — not all providers support truncation.
1716 > */
1717 > truncateSession?(session: URI, turnId: string | undefined, chat: URI): Promise<void>;
1718 >
1719 > /**
1720 > * Notifies the provider that a session's archived state has changed.
1721 > * Providers may use this to clean up or restore per-session resources
1722 > * (for example, removing a session-owned worktree on archive and
1723 > * recreating it on unarchive). Optional.
1724 > */
1725 > onArchivedChanged?(session: URI, isArchived: boolean): Promise<void>;
1726 >
1727 > /**
1728 > * Notifies the provider that a **client** (user) changed this session's
1729 > * config — e.g. via an approvals/model picker. `values` is the post-reducer
1730 > * merged config. Lets the provider propagate a session-mutable change (such
1731 > * as Claude's `permissionMode`) to a running SDK mid-turn. Fires only for
1732 > * client-originated changes; internal server-side config writes (e.g. a tool
1733 > * persisting a mode) do NOT trigger it, so a provider can forward freely
1734 > * without re-entering its own SDK callbacks. Optional.
1735 > */
1736 > onSessionConfigChanged?(session: URI, values: Record<string, unknown>): void;
1737 >
1738 > /**
1739 > * Get (or lazily create) the per-session handle for an active client,
1740 > * identified by `clientId`. Mutating the returned {@link IActiveClient}'s
1741 > * `tools` / `customizations` updates only that client's contribution; the
1742 > * agent merges the contributions of all active clients when exposing them
1743 > * to the model. A session MAY have several active clients at once.
1744 > *
1745 > * @param session The session URI this client contributes to.
1746 > * @param client The client's `clientId` and optional human-readable name.
1747 > */
1748 > getOrCreateActiveClient(session: URI, client: { readonly clientId: string; readonly displayName?: string }): IActiveClient;
1749 >
1750 > /**
1751 > * Remove an active client from a session, clearing its tool and
1752 > * customization contributions. No-op when no active client matches
1753 > * `clientId`.
1754 > *
1755 > * @param session The session the client is leaving.
1756 > * @param clientId The client to remove.
1757 > */
1758 > removeActiveClient(session: URI, clientId: string): void;
1759 >
1760 > /**
1761 > * Called when a client completes a client-provided tool call.
1762 > * Resolves the tool handler's deferred promise so the SDK can continue.
1763 > *
1764 > * @param session The session the tool call belongs to.
1765 > * @param chat The chat channel the tool call was issued on, when known.
1766 > * Agents that track peer chats separately from the default chat (e.g.
1767 > * copilot) use this to route the completion to the right chat;
1768 > * agents without peer chats ignore it and resolve by `session`.
1769 > * @param toolCallId The id of the tool call being completed.
1770 > * @param result The result of the tool call.
1771 > */
1772 > onClientToolCallComplete(session: URI, chat: URI, toolCallId: string, result: ToolCallResult): void;
1773 >
1774 > /** Request a session MCP server start/restart by customization id. */
1775 > startMcpServer?(session: URI, id: string): Promise<void>;
1776 >
1777 > /** Request a session MCP server stop by customization id. */
1778 > stopMcpServer?(session: URI, id: string): Promise<void>;
1779 >
1780 > /** Gracefully shut down all sessions. */
1781 > shutdown(): Promise<void>;
1782 >
1783 > /**
1784 > * Routes a request received on an `mcp://` side channel to the agent's
1785 > * MCP server implementation. The channel carries raw MCP JSON-RPC
1786 > * methods (e.g. `tools/list`, `tools/call`, `resources/read`) tagged
1787 > * with the routing envelope; the protocol server decodes the envelope
1788 > * and forwards `(session, serverName, method, params)` here.
1789 > *
1790 > * The agent MUST reject unknown methods with an error whose message
1791 > * begins with `Method not found` so the protocol server can map it to
1792 > * a JSON-RPC `-32601`.
1793 > *
1794 > * Optional — agents that don't surface any MCP servers (or don't
1795 > * advertise `mcpApp` capabilities) can omit this.
1796 > */
1797 > handleMcpRequest?(session: URI, serverName: string, method: string, params: Record<string, unknown> | undefined): Promise<unknown>;
1798 >
1799 > /**
1800 > * Fires when an MCP server owned by this agent emits a notification
1801 > * that should be forwarded to AHP clients over the `mcp://` side
1802 > * channel. Today this is exclusively
1803 > * `notifications/tools/list_changed` and
1804 > * `notifications/resources/list_changed`. The protocol server
1805 > * fans the notification out to every connected client.
1806 > *
1807 > * Optional — agents that don't expose MCP servers can omit this.
1808 > */
1809 > readonly onMcpNotification?: Event<IMcpNotification>;
1810 >
1811 > /** Dispose this provider and all its resources. */
1812 > dispose(): void;
1813 > }
1814 >
1815 > // ---- Service interfaces -----------------------------------------------------
1816 >
1817 > export const IAgentService = createDecorator<IAgentService>('agentService');
1818 >
1819 > /**
1820 > * Service contract for communicating with the agent host process. Methods here
1821 > * are proxied across MessagePort via `ProxyChannel`.
1822 > *
1823 > * State is synchronized via the subscribe/unsubscribe/dispatchAction protocol.
1824 > * Clients observe root state (agents, models) and session state via subscriptions,
1825 > * and mutate state by dispatching actions (e.g. session/turnStarted, session/turnCancelled).
1826 > */
1827 > export interface IAgentService {
1828 > readonly _serviceBrand: undefined;
1829 >
1830 > /**
1831 > * Authenticate for a protected resource on the server.
1832 > * The {@link AuthenticateParams.resource} must match a resource from
1833 > * the agent's protectedResources in root state. Analogous to RFC 6750
1834 > * bearer token delivery.
1835 > */
1836 > authenticate(params: AuthenticateParams): Promise<AuthenticateResult>;
1837 >
1838 > /** Return a bearer token previously supplied via {@link authenticate}. */
1839 > getAuthToken(request: IAgentHostAuthTokenRequest): string | undefined;
1840 >
1841 > /** List all available sessions from the Copilot CLI. */
1842 > listSessions(): Promise<IAgentSessionMetadata[]>;
1843 >
1844 > /** Create a new session. Returns the session URI. */
1845 > createSession(config?: IAgentCreateSessionConfig): Promise<URI>;
1846 >
1847 > /**
1848 > * Create an additional chat within an existing session. Spins up the
1849 > * backing chat in the harness (sharing the session's session) and
1850 > * registers the chat in the session's catalog so subscribers observe a
1851 > * `session/chatAdded` action. The `chat` URI is the client-chosen channel.
1852 > */
1853 > createChat(session: URI, chat: URI, options?: IAgentCreateChatOptions): Promise<void>;
1854 >
1855 > /** Dispose an additional chat created via {@link createChat}. */
1856 > disposeChat(session: URI, chat: URI): Promise<void>;
1857 >
1858 > /** Resolve the dynamic configuration schema for creating a session. */
1859 > resolveSessionConfig(params: IAgentResolveSessionConfigParams): Promise<ResolveSessionConfigResult>;
1860 >
1861 > /** Return dynamic completions for a session configuration property. */
1862 > sessionConfigCompletions(params: IAgentSessionConfigCompletionsParams): Promise<SessionConfigCompletionsResult>;
1863 >
1864 > /**
1865 > * Return completion items for a partially-typed input (e.g. an `@`-mention
1866 > * inside a user message the user is composing). Delegates to a pluggable
1867 > * set of {@link IAgentHostCompletionItemProvider}s registered with the
1868 > * agent host.
1869 > *
1870 > * Note: this method does not accept a {@link CancellationToken} because
1871 > * `CancellationToken`s do not round-trip through the IPC boundary today
1872 > * (the deserialised value lacks the prototype methods used by
1873 > * subscribers). Callers that need cancellation should race the returned
1874 > * promise on their own side.
1875 > */
1876 > completions(params: CompletionsParams): Promise<CompletionsResult>;
1877 >
1878 > /**
1879 > * Returns the set of characters that, when typed in a {@link UserMessage}
1880 > * input, SHOULD cause the client to issue a `completions` request.
1881 > * Aggregated from every registered {@link IAgentHostCompletionItemProvider}.
1882 > */
1883 > getCompletionTriggerCharacters(): Promise<readonly string[]>;
1884 >
1885 > /** Dispose a session in the agent host, freeing SDK resources. */
1886 > disposeSession(session: URI): Promise<void>;
1887 >
1888 > /** Create a new terminal on the agent host. */
1889 > createTerminal(params: CreateTerminalParams): Promise<void>;
1890 >
1891 > /** Dispose a terminal and kill its process if still running. */
1892 > disposeTerminal(terminal: URI): Promise<void>;
1893 >
1894 > /** Invoke a server-defined changeset operation. */
1895 > invokeChangesetOperation(params: InvokeChangesetOperationParams): Promise<InvokeChangesetOperationResult>;
1896 >
1897 > /**
1898 > * Routes a request received on an `mcp://` AHP side channel to the
1899 > * MCP server implementation owned by the appropriate agent. The
1900 > * channel URI shape is `mcp://<providerId>/<sessionId>/<serverName>`
1901 > * (the latter two segments URL-encoded), matching the
1902 > * {@link McpServerCustomization.channel | channel} the agent host
1903 > * advertises while the server is in
1904 > * {@link McpServerStatus.Ready | `Ready`}.
1905 > *
1906 > * `method` is the raw MCP JSON-RPC method (e.g. `tools/list`,
1907 > * `tools/call`, `resources/read`); `params` are the JSON-RPC params
1908 > * (still carrying the routing envelope's `channel` field, which the
1909 > * agent may ignore). Rejects with an `Error` whose message begins
1910 > * with `Method not found` when the channel is unknown or the agent
1911 > * doesn't recognise the method — the protocol server translates that
1912 > * into a JSON-RPC `-32601`.
1913 > */
1914 > handleMcpRequest(channel: string, method: string, params: Record<string, unknown> | undefined): Promise<unknown>;
1915 >
1916 > /**
1917 > * Aggregated stream of MCP notifications across every agent. The
1918 > * protocol server subscribes once and broadcasts each notification as
1919 > * a JSON-RPC notification to all connected clients (the routing
1920 > * envelope's `channel` field is sufficient for client-side dispatch,
1921 > * so no per-subscription fanout is required).
1922 > */
1923 > readonly onMcpNotification: Event<IMcpNotification>;
1924 >
1925 > /** Gracefully shut down all sessions and the underlying client. */
1926 > shutdown(): Promise<void>;
1927 >
1928 > /**
1929 > * Host-level network context for diagnostics — agent host version, OS/arch,
1930 > * account, proxy settings/env, and the endpoints worth probing (which
1931 > * callers probe via {@link diagnosticsFetch}, plus any additional URLs).
1932 > */
1933 > getNetworkDiagnosticsInfo(): Promise<IAgentHostNetworkDiagnosticsInfo>;
1934 >
1935 > /** Resolve managed settings through each provider's native SDK/runtime implementation. */
1936 > getManagedSettingsDiagnostics(): Promise<readonly IAgentHostManagedSettingsDiagnostics[]>;
1937 >
1938 > /**
1939 > * Probe connectivity from the agent host process to a single `url`,
1940 > * resolving the proxy and timing DNS + reachability. Used by the "Network
1941 > * Diagnostics" developer command.
1942 > */
1943 > diagnosticsFetch(url: string): Promise<IAgentHostNetworkFetchResult>;
1944 >
1945 > // ---- Protocol methods (sessions process protocol) ----------------------
1946 >
1947 > /**
1948 > * Subscribe to state at the given URI. Returns a snapshot of the current
1949 > * state and the serverSeq at snapshot time. Subsequent actions for this
1950 > * resource arrive via {@link onDidAction}. Registers `clientId` against
1951 > * the resource so the server-side refcount knows who is watching, so the
1952 > * caller does not need to invoke {@link addSubscriber} separately. Pair
1953 > * with {@link unsubscribe} when the subscription is released.
1954 > */
1955 > subscribe(resource: URI, clientId: string): Promise<IStateSnapshot>;
1956 >
1957 > /**
1958 > * Counterpart to {@link subscribe}. Drops `clientId` from the refcount
1959 > * for `resource`; when the last subscriber is removed, idle session state
1960 > * for `resource` may be evicted from the server.
1961 > */
1962 > unsubscribe(resource: URI, clientId: string): void;
1963 >
1964 > /**
1965 > * Register `clientId` against `resource` without going through
1966 > * {@link subscribe}. Only needed by callers that hand out snapshots
1967 > * synchronously (e.g. the JSON-RPC handshake serving `initialSubscriptions`
1968 > * out of the in-memory state cache); regular subscribers should call
1969 > * {@link subscribe} instead. Counterpart cleanup is {@link unsubscribe}.
1970 > */
1971 > addSubscriber(resource: URI, clientId: string): void;
1972 >
1973 > /**
1974 > * Fires when the server applies an action to subscribable state.
1975 > * Clients use this alongside {@link subscribe} to keep their local
1976 > * state in sync.
1977 > */
1978 > readonly onDidAction: Event<ActionEnvelope>;
1979 >
1980 > /**
1981 > * Fires when the server broadcasts an ephemeral notification
1982 > * (e.g. sessionAdded, sessionRemoved).
1983 > */
1984 > readonly onDidNotification: Event<INotification>;
1985 >
1986 > /**
1987 > * Dispatch a client-originated action to the server. The server applies
1988 > * it to state, triggers side effects, and echoes it back via
1989 > * {@link onDidAction} with the client's origin for reconciliation.
1990 > *
1991 > * `channel` is the protocol URI string identifying the channel the action
1992 > * targets (a session URI for session actions, terminal URI for terminal
1993 > * actions, or {@link ROOT_STATE_URI} for root actions). Strings are used
1994 > * rather than {@link URI} objects so that authority-less scheme URIs
1995 > * like `ahp-root://` survive the wire format without normalization.
1996 > */
1997 > dispatchAction(channel: string, action: SessionAction | ChatAction | TerminalAction | ClientChangesetAction | ClientAnnotationsAction | IRootConfigChangedAction, clientId: string, clientSeq: number): void;
1998 >
1999 > /**
2000 > * List the contents of a directory on the agent host's filesystem.
2001 > * Used by the client to drive a remote folder picker before session creation.
2002 > */
2003 > resourceList(uri: URI): Promise<ResourceListResult>;
2004 >
2005 > /**
2006 > * Read stored content by URI from the agent host (e.g. file edit snapshots,
2007 > * or reading files from the remote filesystem).
2008 > */
2009 > resourceRead(uri: URI): Promise<ResourceReadResult>;
2010 >
2011 > /**
2012 > * Write content to a file on the agent host's filesystem.
2013 > * Used for undo/redo operations on file edits.
2014 > */
2015 > resourceWrite(params: ResourceWriteParams): Promise<ResourceWriteResult>;
2016 >
2017 > /**
2018 > * Copy a resource from one URI to another on the agent host's filesystem.
2019 > */
2020 > resourceCopy(params: ResourceCopyParams): Promise<ResourceCopyResult>;
2021 >
2022 > /**
2023 > * Delete a resource at a URI on the agent host's filesystem.
2024 > */
2025 > resourceDelete(params: ResourceDeleteParams): Promise<ResourceDeleteResult>;
2026 >
2027 > /**
2028 > * Move (rename) a resource from one URI to another on the agent host's filesystem.
2029 > */
2030 > resourceMove(params: ResourceMoveParams): Promise<ResourceMoveResult>;
2031 >
2032 > /**
2033 > * Resolve a resource (stat + realpath) on the agent host's filesystem.
2034 > */
2035 > resourceResolve(params: ResourceResolveParams): Promise<ResourceResolveResult>;
2036 >
2037 > /**
2038 > * Create a directory (mkdir -p semantics) on the agent host's filesystem.
2039 > */
2040 > resourceMkdir(params: ResourceMkdirParams): Promise<ResourceMkdirResult>;
2041 >
2042 > /**
2043 > * Create a resource watcher on the agent host's filesystem. Returns the
2044 > * `ahp-resource-watch:/<id>` channel URI the caller subscribes to in
2045 > * order to receive `resourceWatch/changed` events. The watcher is
2046 > * tied to the subscriber refcount on that channel — the implementation
2047 > * MUST hold the underlying file-system watcher for a short grace
2048 > * period after the last unsubscribe so reconnects don't drop events.
2049 > */
2050 > createResourceWatch(params: CreateResourceWatchParams): Promise<CreateResourceWatchResult>;
2051 >
2052 > /**
2053 > * Notify the agent service that a client subscribed to the given
2054 > * `ahp-resource-watch:` channel so the per-watch refcount is bumped
2055 > * (and the underlying {@link IFileService} watcher attached on the
2056 > * first subscriber). Returns the decoded watch descriptor when the
2057 > * channel parses successfully and the watcher is live; returns
2058 > * `undefined` for unknown channels so the caller can surface a
2059 > * not-found error.
2060 > */
2061 > onResourceWatchSubscribed(channel: string): ResourceWatchState | undefined;
2062 >
2063 > /**
2064 > * Counterpart to {@link onResourceWatchSubscribed}. Decrements the
2065 > * per-watch refcount; on the last drop the watcher is held for a
2066 > * short grace period before disposal.
2067 > */
2068 > onResourceWatchUnsubscribed(channel: string): boolean;
2069 > }
2070 >
2071 > /**
2072 > * Consumer-facing connection to an agent host. Session handlers, terminal
2073 > * contributions, and other features program against this interface.
2074 > *
2075 > * Implementations wrap an {@link IAgentService} and layer subscription
2076 > * management and optimistic write-ahead on top.
2077 > */
2078 > export interface IAgentConnection {
2079 >
2080 > readonly clientId: string;
2081 >
2082 > // ---- State subscriptions ------------------------------------------------
2083 > readonly rootState: IAgentSubscription<RootState>;
2084 > /**
2085 > * Acquire a refcounted subscription to `resource`. `owner` names the
2086 > * caller holding the reference so inspection surfaces can attribute who
2087 > * is retaining a subscription; use a stable identifier such as the
2088 > * acquiring class name.
2089 > */
2090 > getSubscription<T extends StateComponents>(kind: T, resource: URI, owner: string): IReference<IAgentSubscription<ComponentToState[T]>>;
2091 > getSubscriptionUnmanaged<T extends StateComponents>(kind: T, resource: URI): IAgentSubscription<ComponentToState[T]> | undefined;
2092 >
2093 > /**
2094 > * Returns the in-flight `createSession` Promise for `resource`, or `undefined` if no create is pending. Callers
2095 > * that need to gate work on a racing eager `createSession` (e.g. before deciding whether to fall through to a
2096 > * duplicate create) should await this first.
2097 > */
2098 > getInflightSessionCreate(resource: URI): Promise<unknown> | undefined;
2099 >
2100 > /**
2101 > * Read-only descriptors of every active resource subscription on this
2102 > * connection, for inspection/debug surfaces. Excludes the always-live
2103 > * {@link rootState}.
2104 > */
2105 > getActiveSubscriptions(): readonly IActiveSubscriptionInfo[];
2106 >
2107 > // ---- Action dispatch ----------------------------------------------------
2108 > /**
2109 > * Dispatch a client-originated action. `channel` is the protocol URI
2110 > * string identifying the channel the action targets (a session URI for
2111 > * session actions, terminal URI for terminal actions, or
2112 > * `ROOT_STATE_URI` for root-config actions). Strings are used rather
2113 > * than {@link URI} objects so authority-less scheme URIs like
2114 > * `ahp-root://` survive the wire format without normalization.
2115 > */
2116 > dispatch(channel: string, action: SessionAction | ChatAction | TerminalAction | ClientChangesetAction | ClientAnnotationsAction | IRootConfigChangedAction): void;
2117 >
2118 > // ---- Events (connection-level) ------------------------------------------
2119 > readonly onDidNotification: Event<INotification>;
2120 > readonly onDidAction: Event<ActionEnvelope>;
2121 > /**
2122 > * Fires when the host forwards an MCP server notification (e.g.
2123 > * `notifications/tools/list_changed`) over the `mcp://` side channel.
2124 > * The `channel` field on the notification routes the payload to the
2125 > * matching {@link McpServerCustomization}.
2126 > */
2127 > readonly onMcpNotification: Event<IMcpNotification>;
2128 >
2129 > // ---- MCP side-channel ---------------------------------------------------
2130 > /**
2131 > * Send a request on an `mcp://` AHP side channel. `channel` is the
2132 > * `mcp://` URI advertised by the matching {@link McpServerCustomization}
2133 > * (only available while the server is `ready`). `method` is the raw MCP
2134 > * JSON-RPC method (e.g. `tools/call`, `resources/read`,
2135 > * `sampling/createMessage`); `params` are the JSON-RPC params (the
2136 > * connection adds the routing envelope's `channel` field automatically).
2137 > *
2138 > * Rejects with an `Error` whose message begins with `Method not found`
2139 > * when the channel is unknown or the host doesn't recognise the method.
2140 > */
2141 > handleMcpRequest(channel: string, method: string, params: Record<string, unknown> | undefined): Promise<unknown>;
2142 >
2143 > // ---- Session lifecycle --------------------------------------------------
2144 > authenticate(params: AuthenticateParams): Promise<AuthenticateResult>;
2145 > listSessions(): Promise<IAgentSessionMetadata[]>;
2146 > createSession(config?: IAgentCreateSessionConfig): Promise<URI>;
2147 > resolveSessionConfig(params: IAgentResolveSessionConfigParams): Promise<ResolveSessionConfigResult>;
2148 > sessionConfigCompletions(params: IAgentSessionConfigCompletionsParams): Promise<SessionConfigCompletionsResult>;
2149 > completions(params: CompletionsParams): Promise<CompletionsResult>;
2150 >
2151 > /**
2152 > * Trigger characters announced by the connected agent host that should
2153 > * cause the client to issue a `completions` request when typed in a
2154 > * user-message input. Resolves once on first request and is cached.
2155 > */
2156 > getCompletionTriggerCharacters(): Promise<readonly string[]>;
2157 >
2158 > /**
2159 > * The host's `initialize` handshake result, exposed observably so callers
2160 > * can derive advertised capabilities (e.g. {@link InitializeResult.terminalCommandPrefix},
2161 > * {@link InitializeResult.completionTriggerCharacters}). `undefined` until
2162 > * the handshake completes.
2163 > */
2164 > readonly initializeResult: IObservable<InitializeResult | undefined>;
2165 > disposeSession(session: URI): Promise<void>;
2166 >
2167 > /**
2168 > * Host-level network context for diagnostics (version, OS/arch, account,
2169 > * proxy settings/env, endpoints). Runs on the agent host process (local or
2170 > * remote), so the result reflects the environment the Copilot SDK actually
2171 > * runs in.
2172 > */
2173 > getNetworkDiagnosticsInfo(): Promise<IAgentHostNetworkDiagnosticsInfo>;
2174 >
2175 > /** Resolve managed settings through each provider's native SDK/runtime implementation. */
2176 > getManagedSettingsDiagnostics(): Promise<readonly IAgentHostManagedSettingsDiagnostics[]>;
2177 >
2178 > /**
2179 > * Probe connectivity from the agent host to a single `url`. Runs on the
2180 > * agent host process (local or remote), so the result reflects the
2181 > * environment the Copilot SDK actually runs in.
2182 > */
2183 > diagnosticsFetch(url: string): Promise<IAgentHostNetworkFetchResult>;
2184 >
2185 > /**
2186 > * Create an additional peer chat inside an existing session. `chat` is a
2187 > * client-chosen chat URI (see {@link buildChatUri}). The host adds the
2188 > * chat to the session's catalog and publishes `session/chatAdded`.
2189 > */
2190 > createChat(session: URI, chat: URI, options?: IAgentCreateChatOptions): Promise<void>;
2191 > /** Dispose an additional chat created via {@link createChat}. */
2192 > disposeChat(chat: URI): Promise<void>;
2193 >
2194 > // ---- Terminal lifecycle -------------------------------------------------
2195 > createTerminal(params: CreateTerminalParams): Promise<void>;
2196 > disposeTerminal(terminal: URI): Promise<void>;
2197 >
2198 > // ---- Changeset operations -----------------------------------------------
2199 > invokeChangesetOperation(params: InvokeChangesetOperationParams): Promise<InvokeChangesetOperationResult>;
2200 >
2201 > // ---- Filesystem operations ----------------------------------------------
2202 > resourceList(uri: URI): Promise<ResourceListResult>;
2203 > resourceRead(uri: URI): Promise<ResourceReadResult>;
2204 > resourceWrite(params: ResourceWriteParams): Promise<ResourceWriteResult>;
2205 > resourceCopy(params: ResourceCopyParams): Promise<ResourceCopyResult>;
2206 > resourceDelete(params: ResourceDeleteParams): Promise<ResourceDeleteResult>;
2207 > resourceMove(params: ResourceMoveParams): Promise<ResourceMoveResult>;
2208 > resourceResolve(params: ResourceResolveParams): Promise<ResourceResolveResult>;
2209 > resourceMkdir(params: ResourceMkdirParams): Promise<ResourceMkdirResult>;
2210 > createResourceWatch(params: CreateResourceWatchParams): Promise<CreateResourceWatchResult>;
2211 > /**
2212 > * Convenience method that bundles
2213 > * {@link createResourceWatch} + {@link subscribe} + a typed
2214 > * {@link IFileChange}[] event stream, so consumers (notably
2215 > * `AHPFileSystemProvider.watch`) can drive a watcher without
2216 > * understanding the underlying channel protocol. Disposing the
2217 > * returned handle unsubscribes.
2218 > */
2219 > watchResource(params: CreateResourceWatchParams): Promise<IRemoteWatchHandle>;
2220 > }
2221 >
2222 > export const IAgentHostService = createDecorator<IAgentHostService>('agentHostService');
2223 >
2224 > /**
2225 > * The local wrapper around the agent host process (manages lifecycle, restart,
2226 > * exposes the proxied service). Consumed by the main process and workbench.
2227 > */
2228 > export interface IAgentHostService extends IAgentConnection {
2229 >
2230 > readonly _serviceBrand: undefined;
2231 >
2232 > readonly onAgentHostExit: Event<number>;
2233 > readonly onAgentHostStart: Event<void>;
2234 >
2235 > /**
2236 > * `true` while we are in the middle of authenticating against the local
2237 > * agent host (resolving tokens for any advertised `protectedResources` and
2238 > * pushing them via {@link authenticate}). Defaults to `true` at startup so
2239 > * that the period before the first auth pass is also covered.
2240 > *
2241 > * Producers (the workbench `AgentHostContribution`) flip this around their
2242 > * auth pass; consumers (e.g. the local sessions provider) read it to mark
2243 > * sessions as still loading.
2244 > */
2245 > readonly authenticationPending: IObservable<boolean>;
2246 >
2247 > /** Update {@link authenticationPending}. Internal — only the auth driver should call this. */
2248 > setAuthenticationPending(pending: boolean): void;
2249 >
2250 > restartAgentHost(): Promise<void>;
2251 >
2252 > startWebSocketServer(): Promise<IAgentHostSocketInfo>;
2253 >
2254 > /**
2255 > * Get inspector listener info for the agent host process. If the inspector
2256 > * is not currently active and `tryEnable` is true, opens the inspector on
2257 > * a random local port. Returns `undefined` if the inspector cannot be
2258 > * enabled.
2259 > */
2260 > getInspectInfo(tryEnable: boolean): Promise<IAgentHostInspectInfo | undefined>;
2261 > }
src/vs/platform/agentHost/common/state/protocol/channels-chat/state.ts 1557 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { ModelSelection } from '../channels-root/state.js';
10 > import type { AgentSelection, McpAuthRequirement, SessionStatus } from '../channels-session/state.js';
11 > import type { ContentRef, ErrorInfo, FileEdit, StringOrMarkdown, TextRange, TextSelection, URI, UsageInfo } from '../common/state.js';
12 >
13 > // ─── Chat State ──────────────────────────────────────────────────────────────
14 >
15 > /**
16 > * Full state for a single chat, loaded when a client subscribes to the chat's
17 > * URI.
18 > *
19 > * The lightweight catalog representation of a chat is {@link ChatSummary},
20 > * carried in {@link SessionState.chats | `SessionState.chats`}. `ChatState`
21 > * **denormalizes** every {@link ChatSummary} field directly onto itself so
22 > * subscribers receive one flat object instead of having to merge a nested
23 > * `summary` sub-object. Producers MUST keep the two representations
24 > * consistent: any change to the inlined fields below SHOULD also be
25 > * announced on the parent session via the matching
26 > * {@link SessionChatUpdatedAction | `session/chatUpdated`} action.
27 > *
28 > * @category Chat State
29 > */
30 > export interface ChatState {
31 > // ── Summary fields (denormalized from ChatSummary) ─────────────────
32 > /** Chat URI */
33 > resource: URI;
34 > /** Chat title */
35 > title: string;
36 > /** Current chat status (reuses SessionStatus shape) */
37 > status: SessionStatus;
38 > /** Human-readable description of what the chat is currently doing */
39 > activity?: string;
40 > /** Last modification timestamp (ISO 8601, e.g. `"2025-03-10T18:42:03.123Z"`) */
41 > modifiedAt: string;
42 > /** How this chat came into existence */
43 > origin?: ChatOrigin;
44 > /**
45 > * How the user can interact with this chat. See {@link ChatInteractivity}.
46 > *
47 > * Supports agent-team patterns where worker chats are read-only or hidden.
48 > * Absence defaults to {@link ChatInteractivity.Full} for backward
49 > * compatibility.
50 > */
51 > interactivity?: ChatInteractivity;
52 > /**
53 > * The subset of the session's
54 > * {@link SessionState.workingDirectories | `workingDirectories`} that this
55 > * chat's agent has tool access to. Every entry MUST be present in the owning
56 > * session's `workingDirectories`; servers MUST reject a
57 > * `chat/workingDirectorySet` action that violates this constraint.
58 > *
59 > * When absent, the chat inherits the full session set. When present but empty
60 > * (not recommended), the chat has no working-directory tool access at all.
61 > *
62 > * Dispatch `chat/workingDirectorySet` / `chat/workingDirectoryRemoved` to
63 > * update the subset on a running chat.
64 > */
65 > workingDirectories?: URI[];
66 > /**
67 > * The chat's primary working directory — the distinguished root this chat is
68 > * centered on (e.g. the agent's process root for this chat, the default
69 > * location for relative paths). MUST be one of this chat's effective working
70 > * directories ({@link workingDirectories}, or the session's set when that is
71 > * absent). Present when the agent advertises
72 > * {@link MultipleWorkingDirectoriesCapability.requiresPrimary}.
73 > *
74 > * **Read-only and fixed at creation.** It is set from
75 > * {@link CreateChatParams.primaryWorkingDirectory} (or, for the session's
76 > * default chat, {@link CreateSessionParams.primaryWorkingDirectory}) and does
77 > * not change over the chat's lifetime — there is no action to mutate it, and
78 > * it does not participate in `session/chatUpdated`.
79 > */
80 > primaryWorkingDirectory?: URI;
81 >
82 > // ── Conversation contents ──────────────────────────────────────────
83 > /** Completed turns */
84 > turns: Turn[];
85 > /**
86 > * Cursor for loading older completed turns into this chat state.
87 > *
88 > * Presence means `turns` is a tail window and more historical turns are
89 > * available. Pass this opaque cursor to `fetchTurns`; the host MUST insert
90 > * the loaded turns into state and update or clear this cursor before
91 > * responding. Absence means the state contains all retained turns.
92 > */
93 > turnsNextCursor?: string;
94 > /** Currently in-progress turn */
95 > activeTurn?: ActiveTurn;
96 > /** Message to inject into the current turn at a convenient point */
97 > steeringMessage?: PendingMessage;
98 > /** Messages to send automatically as new turns after the current turn finishes */
99 > queuedMessages?: PendingMessage[];
100 > /**
101 > * The user's in-progress draft input for this chat — the message they are
102 > * composing but have not sent yet, including its
103 > * {@link Message.model | model} / {@link Message.agent | agent} selection
104 > * and attachments.
105 > *
106 > * Clients MAY periodically sync their local input state into this field so
107 > * a draft survives reloads and is visible to other clients viewing the same
108 > * chat. Eager syncing is **not** required — clients SHOULD debounce and MAY
109 > * sync only at convenient points. When presenting input UI for an existing
110 > * chat, clients SHOULD use any `draft` to initialize their input state.
111 > * Cleared (set to `undefined`) once the message is sent.
112 > */
113 > draft?: Message;
114 > /**
115 > * Additional provider-specific metadata for this chat.
116 > */
117 > _meta?: Record<string, unknown>;
118 > }
119 >
120 > /**
121 > * Lightweight catalog entry for a chat, carried in
122 > * {@link SessionState.chats | `SessionState.chats`}. The full conversation
123 > * lives in {@link ChatState}, which inlines (denormalizes) every field below.
124 > *
125 > * @category Chat State
126 > */
127 > export interface ChatSummary {
128 > /** Chat URI */
129 > resource: URI;
130 > /** Chat title */
131 > title: string;
132 > /** Current chat status (reuses SessionStatus shape) */
133 > status: SessionStatus;
134 > /** Human-readable description of what the chat is currently doing */
135 > activity?: string;
136 > /** Last modification timestamp (ISO 8601, e.g. `"2025-03-10T18:42:03.123Z"`) */
137 > modifiedAt: string;
138 > /** How this chat came into existence */
139 > origin?: ChatOrigin;
140 > /**
141 > * How the user can interact with this chat. See {@link ChatInteractivity}.
142 > *
143 > * Supports agent-team patterns where worker chats are read-only or hidden.
144 > * Absence defaults to {@link ChatInteractivity.Full} for backward
145 > * compatibility.
146 > */
147 > interactivity?: ChatInteractivity;
148 > /**
149 > * The subset of the session's working directories this chat uses.
150 > * See {@link ChatState.workingDirectories} for the full semantics.
151 > */
152 > workingDirectories?: URI[];
153 > /**
154 > * The chat's primary working directory.
155 > * See {@link ChatState.primaryWorkingDirectory} for the full semantics.
156 > */
157 > primaryWorkingDirectory?: URI;
158 > }
159 >
160 > /**
161 > * Discriminant for {@link ChatOrigin} — how a chat came into existence.
162 > *
163 > * @category Chat State
164 > */
165 > export const enum ChatOriginKind {
166 > /** User created the chat explicitly (e.g. via the host UI). */
167 > User = 'user',
168 > /** Forked from an existing chat at a specific turn. */
169 > Fork = 'fork',
170 > /** Created as an independent side conversation from a specific turn. */
171 > SideChat = 'sideChat',
172 > /** Spawned by a tool call running in another chat (e.g. a sub-agent delegation). */
173 > Tool = 'tool',
174 > }
175 >
176 > /**
177 > * Immutable selected-text snapshot captured when a side chat is created.
178 > *
179 > * The host records this exact text when it accepts `createChat`; later changes
180 > * to the source chat do not alter it.
181 > *
182 > * @category Chat State
183 > */
184 > export interface SideChatSelection {
185 > /**
186 > * Exact selected-text snapshot captured at `createChat` acceptance.
187 > *
188 > * MUST be non-empty.
189 > */
190 > text: string;
191 > /**
192 > * Optional provenance for the response part that contained {@link text} when
193 > * the host took the snapshot.
194 > *
195 > * Advisory only: this is not a live range or offset and MUST NOT be used to
196 > * recompute `text`.
197 > */
198 > responsePartId?: string;
199 > }
200 >
201 > /**
202 > * How a chat came into existence. Clients MAY use it to render
203 > * contextual UI (parent indicators, fork markers, "spawned by tool" badges).
204 > *
205 > * Fork and side-chat origins both carry a stable top-level `turnId` alongside
206 > * their discriminated `kind` value instead of snapshotting whether that turn
207 > * was active or historical at creation time. Consumers resolve the identifier
208 > * against the
209 > * source chat's current `activeTurn` or retained `turns` as needed.
210 > *
211 > * When a host accepts side-chat creation from the source chat's current active
212 > * turn, it snapshots the retained history plus that turn's current user
213 > * message and any partial assistant response already available. Later
214 > * source-turn deltas do not retroactively change the created side chat's
215 > * starting context, and once the source turn completes it is still referenced
216 > * by the same `turnId`. Side-chat origins MAY also retain an immutable
217 > * {@link SideChatSelection | selected-text snapshot} captured at acceptance
218 > * time; any `responsePartId` there is provenance only, not a range.
219 > *
220 > * The `tool` variant records a tool-spawned worker from the worker's side: its
221 > * `chat`/`toolCallId` identify the spawning tool call in the parent chat. This
222 > * is the canonical record of the spawn relationship. The same edge is surfaced
223 > * from the parent's side by {@link ToolResultSubagentContent}, whose `resource`
224 > * is this chat's URI; hosts MUST keep the two consistent.
225 > *
226 > * @category Chat State
227 > */
228 > export type ChatOrigin =
229 > | { kind: ChatOriginKind.User }
230 > | { kind: ChatOriginKind.Fork; chat: URI; turnId: string }
231 > | { kind: ChatOriginKind.SideChat; chat: URI; turnId: string; selection?: SideChatSelection }
232 > | { kind: ChatOriginKind.Tool; chat: URI; toolCallId: string };
233 >
234 > /**
235 > * How a user can interact with a chat.
236 > *
237 > * - `Full` — user can send messages and watch (default when absent)
238 > * - `ReadOnly` — user can watch but not send messages (e.g. agent team workers)
239 > * - `Hidden` — internal worker not shown in UI at all
240 > *
241 > * Supports the agent-team pattern where a lead chat is fully interactive and
242 > * worker chats are read-only (visible for observability) or hidden (internal
243 > * implementation detail). The harness sets this based on the chat's role;
244 > * the UI uses it to show appropriate controls.
245 > *
246 > * @category Chat State
247 > */
248 > export const enum ChatInteractivity {
249 > /** User can send messages and watch (default when absent) */
250 > Full = 'full',
251 > /** User can watch but not send messages */
252 > ReadOnly = 'read-only',
253 > /** Internal worker not shown in UI at all */
254 > Hidden = 'hidden',
255 > }
256 >
257 > // ─── Pending Message Types ───────────────────────────────────────────────────
258 >
259 > /**
260 > * Discriminant for pending message kinds.
261 > *
262 > * @category Pending Message Types
263 > */
264 > export const enum PendingMessageKind {
265 > /** Injected into the current turn at a convenient point */
266 > Steering = 'steering',
267 > /** Sent automatically as a new turn after the current turn finishes */
268 > Queued = 'queued',
269 > }
270 >
271 > /**
272 > * A message queued for future delivery to the agent.
273 > *
274 > * Steering messages are injected into the current turn mid-flight.
275 > * Queued messages are automatically started as new turns after the
276 > * current turn naturally finishes.
277 > *
278 > * @category Pending Message Types
279 > */
280 > export interface PendingMessage {
281 > /** Unique identifier for this pending message */
282 > id: string;
283 > /** The message that will start the next turn */
284 > message: Message;
285 > }
286 >
287 >
288 > // ─── Chat Input Types ────────────────────────────────────────────────────
289 >
290 > /**
291 > * How a client completed an input request.
292 > *
293 > * @category Chat Input Types
294 > */
295 > export const enum ChatInputResponseKind {
296 > Accept = 'accept',
297 > Decline = 'decline',
298 > Cancel = 'cancel',
299 > }
300 >
301 > /**
302 > * Question/input control kind.
303 > *
304 > * @category Chat Input Types
305 > */
306 > export const enum ChatInputQuestionKind {
307 > Text = 'text',
308 > Number = 'number',
309 > Integer = 'integer',
310 > Boolean = 'boolean',
311 > SingleSelect = 'single-select',
312 > MultiSelect = 'multi-select',
313 > }
314 >
315 > /**
316 > * A choice in a select-style question.
317 > *
318 > * @category Chat Input Types
319 > */
320 > export interface ChatInputOption {
321 > /** Stable option identifier; for MCP enum values this is the enum string */
322 > id: string;
323 > /** Display label */
324 > label: string;
325 > /** Optional secondary text */
326 > description?: string;
327 > /** Whether this option is the recommended/default choice */
328 > recommended?: boolean;
329 > }
330 >
331 > interface ChatInputQuestionBase {
332 > /** Stable question identifier used as the key in `answers` */
333 > id: string;
334 > /** Short display title */
335 > title?: string;
336 > /** Prompt shown to the user */
337 > message: string;
338 > /** Whether the user must answer this question to accept the request */
339 > required?: boolean;
340 > }
341 >
342 > /** Text question within a chat input request. */
343 > export interface ChatInputTextQuestion extends ChatInputQuestionBase {
344 > kind: ChatInputQuestionKind.Text;
345 > /** Format hint for text questions, such as `email`, `uri`, `date`, or `date-time` */
346 > format?: string;
347 > /** Minimum string length */
348 > min?: number;
349 > /** Maximum string length */
350 > max?: number;
351 > /** Default text */
352 > defaultValue?: string;
353 > }
354 >
355 > /** Numeric question within a chat input request. */
356 > export interface ChatInputNumberQuestion extends ChatInputQuestionBase {
357 > kind: ChatInputQuestionKind.Number | ChatInputQuestionKind.Integer;
358 > /**
359 > * Minimum value
360 > * @format float
361 > */
362 > min?: number;
363 > /**
364 > * Maximum value
365 > * @format float
366 > */
367 > max?: number;
368 > /**
369 > * Default numeric value
370 > * @format float
371 > */
372 > defaultValue?: number;
373 > }
374 >
375 > /** Boolean question within a chat input request. */
376 > export interface ChatInputBooleanQuestion extends ChatInputQuestionBase {
377 > kind: ChatInputQuestionKind.Boolean;
378 > /** Default boolean value */
379 > defaultValue?: boolean;
380 > }
381 >
382 > /** Single-select question within a chat input request. */
383 > export interface ChatInputSingleSelectQuestion extends ChatInputQuestionBase {
384 > kind: ChatInputQuestionKind.SingleSelect;
385 > /** Options the user may select from */
386 > options: ChatInputOption[];
387 > /** Whether the user may enter text instead of selecting an option */
388 > allowFreeformInput?: boolean;
389 > }
390 >
391 > /** Multi-select question within a chat input request. */
392 > export interface ChatInputMultiSelectQuestion extends ChatInputQuestionBase {
393 > kind: ChatInputQuestionKind.MultiSelect;
394 > /** Options the user may select from */
395 > options: ChatInputOption[];
396 > /** Whether the user may enter text in addition to selecting options */
397 > allowFreeformInput?: boolean;
398 > /** Minimum selected item count */
399 > min?: number;
400 > /** Maximum selected item count */
401 > max?: number;
402 > }
403 >
404 > /**
405 > * One question within a chat input request.
406 > *
407 > * @category Chat Input Types
408 > */
409 > export type ChatInputQuestion = ChatInputTextQuestion
410 > | ChatInputNumberQuestion
411 > | ChatInputBooleanQuestion
412 > | ChatInputSingleSelectQuestion
413 > | ChatInputMultiSelectQuestion;
414 >
415 > /**
416 > * The request payload carried by an {@link InputRequestResponsePart}.
417 > *
418 > * The server creates or replaces the containing response part with
419 > * `chat/inputRequested`. Clients sync drafts with `chat/inputAnswerChanged`
420 > * and submit responses with `chat/inputCompleted`.
421 > *
422 > * @category Chat Input Types
423 > */
424 > export interface ChatInputRequest {
425 > /** Stable request identifier */
426 > id: string;
427 > /** Display message for the request as a whole */
428 > message?: string;
429 > /** URL the user should review or open, for URL-style elicitations */
430 > url?: URI;
431 > /** Ordered questions to ask the user */
432 > questions?: ChatInputQuestion[];
433 > /** Current draft or submitted answers, keyed by question ID */
434 > answers?: Record<string, ChatInputAnswer>;
435 > }
436 >
437 > /**
438 > * Answer value kind.
439 > *
440 > * @category Chat Input Types
441 > */
442 > export const enum ChatInputAnswerValueKind {
443 > Text = 'text',
444 > Number = 'number',
445 > Boolean = 'boolean',
446 > Selected = 'selected',
447 > SelectedMany = 'selected-many',
448 > }
449 >
450 > /**
451 > * Value captured for one answer.
452 > *
453 > * @category Chat Input Types
454 > */
455 > export interface ChatInputTextAnswerValue {
456 > kind: ChatInputAnswerValueKind.Text;
457 > value: string;
458 > }
459 >
460 > export interface ChatInputNumberAnswerValue {
461 > kind: ChatInputAnswerValueKind.Number;
462 > /** @format float */
463 > value: number;
464 > }
465 >
466 > export interface ChatInputBooleanAnswerValue {
467 > kind: ChatInputAnswerValueKind.Boolean;
468 > value: boolean;
469 > }
470 >
471 > export interface ChatInputSelectedAnswerValue {
472 > kind: ChatInputAnswerValueKind.Selected;
473 > value: string;
474 > /** Free-form text entered instead of selecting an option */
475 > freeformValues?: string[];
476 > }
477 >
478 > export interface ChatInputSelectedManyAnswerValue {
479 > kind: ChatInputAnswerValueKind.SelectedMany;
480 > value: string[];
481 > /** Free-form text entered in addition to selected options */
482 > freeformValues?: string[];
483 > }
484 >
485 > export type ChatInputAnswerValue = ChatInputTextAnswerValue
486 > | ChatInputNumberAnswerValue
487 > | ChatInputBooleanAnswerValue
488 > | ChatInputSelectedAnswerValue
489 > | ChatInputSelectedManyAnswerValue;
490 >
491 > export interface ChatInputAnswered {
492 > /** Answer state */
493 > state: ChatInputAnswerState.Draft | ChatInputAnswerState.Submitted;
494 > /** Answer value */
495 > value: ChatInputAnswerValue;
496 > }
497 >
498 > export interface ChatInputSkipped {
499 > /** Answer state */
500 > state: ChatInputAnswerState.Skipped;
501 > /** Free-form reason or value captured while skipping, if any */
502 > freeformValues?: string[];
503 > }
504 >
505 > /**
506 > * Answer lifecycle state.
507 > *
508 > * @category Chat Input Types
509 > */
510 > export const enum ChatInputAnswerState {
511 > Draft = 'draft',
512 > Submitted = 'submitted',
513 > Skipped = 'skipped',
514 > }
515 >
516 > /**
517 > * Draft, submitted, or skipped answer for one question.
518 > *
519 > * @category Chat Input Types
520 > */
521 > export type ChatInputAnswer = ChatInputAnswered | ChatInputSkipped;
522 >
523 >
524 > // ─── Turn Types ──────────────────────────────────────────────────────────────
525 >
526 > /**
527 > * How a turn ended.
528 > *
529 > * @category Turn Types
530 > */
531 > export const enum TurnState {
532 > Complete = 'complete',
533 > Cancelled = 'cancelled',
534 > Error = 'error',
535 > }
536 >
537 > /**
538 > * Discriminant for {@link MessageAttachment} variants.
539 > *
540 > * @category Turn Types
541 > */
542 > export const enum MessageAttachmentKind {
543 > /** A simple, opaque attachment whose representation is described by the producer. */
544 > Simple = 'simple',
545 > /** An attachment whose data is embedded inline as a base64 string. */
546 > EmbeddedResource = 'embeddedResource',
547 > /** An attachment that references a resource by URI. */
548 > Resource = 'resource',
549 > /** An attachment that references annotations on an annotations channel. */
550 > Annotations = 'annotations',
551 > /** An attachment that references a bounded transcript from another chat. */
552 > Chat = 'chat',
553 > }
554 >
555 > /**
556 > * A completed request/response cycle.
557 > *
558 > * @category Turn Types
559 > */
560 > export interface Turn {
561 > /** Turn identifier */
562 > id: string;
563 > /** ISO 8601 timestamp when this turn started. */
564 > startedAt?: string;
565 > /** Turn duration in milliseconds. */
566 > duration?: number;
567 > /** The message that initiated the turn */
568 > message: Message;
569 > /**
570 > * All response content in stream order: text, tool calls, reasoning, and content refs.
571 > *
572 > * Consumers should derive display text by concatenating markdown parts,
573 > * and find tool calls by filtering for `ToolCall` parts.
574 > */
575 > responseParts: ResponsePart[];
576 > /** Token usage info */
577 > usage: UsageInfo | undefined;
578 > /** How the turn ended */
579 > state: TurnState;
580 > /** Error details if state is `'error'` */
581 > error?: ErrorInfo;
582 > }
583 >
584 > /**
585 > * An in-progress turn — the assistant is actively streaming.
586 > *
587 > * @category Turn Types
588 > */
589 > export interface ActiveTurn {
590 > /** Turn identifier */
591 > id: string;
592 > /** ISO 8601 timestamp when this turn started. */
593 > startedAt: string;
594 > /** The message that initiated the turn */
595 > message: Message;
596 > /**
597 > * All response content in stream order: text, tool calls, reasoning, and content refs.
598 > *
599 > * Tool call parts include `pendingPermissions` when permissions are awaiting user approval.
600 > */
601 > responseParts: ResponsePart[];
602 > /** Token usage info */
603 > usage: UsageInfo | undefined;
604 > }
605 >
606 > /**
607 > * Discriminant for {@link MessageOrigin} — identifies who produced a message.
608 > *
609 > * @category Turn Types
610 > */
611 > export enum MessageKind {
612 > /** Sent directly by the user. */
613 > User = 'user',
614 > /**
615 > * Produced by the agent itself rather than the user — for example, an agent
616 > * that seeds the first message of a chat it spawned.
617 > */
618 > Agent = 'agent',
619 > /**
620 > * Produced by a tool rather than the user — for example, a tool that spawns a
621 > * worker chat whose first message carries a seed prompt.
622 > */
623 > Tool = 'tool',
624 > /** A system-generated notification rather than a direct user message. */
625 > SystemNotification = 'systemNotification',
626 > }
627 >
628 > /**
629 > * Identifies the origin of a {@link Message} — who produced it. For the message
630 > * that initiates a turn ({@link Turn.message}), this is also the origin of the
631 > * turn; for steering or queued messages it is just the origin of that message.
632 > *
633 > * @category Turn Types
634 > */
635 > export interface MessageOrigin {
636 > /** The kind of actor that produced the message. */
637 > kind: MessageKind;
638 > }
639 >
640 > /**
641 > * A message that initiates or steers a turn. Messages can originate from the
642 > * user, the agent, a tool, or be system-generated (see {@link MessageOrigin}).
643 > *
644 > * Attachments MAY be referenced inside {@link Message.text} via their
645 > * {@link MessageAttachmentBase.range} field. Attachments without a range are
646 > * still associated with the message but do not correspond to a specific span
647 > * in the text.
648 > *
649 > * @category Turn Types
650 > */
651 > export interface Message {
652 > /** Message text */
653 > text: string;
654 > /** The origin of the message */
655 > origin: MessageOrigin;
656 > /** File/selection attachments */
657 > attachments?: MessageAttachment[];
658 > /**
659 > * The model this message was, or will be, sent with.
660 > *
661 > * For historic user/agent messages this records the model actually used, so
662 > * a client editing or resending the message can retain that selection. For a
663 > * {@link ChatState.draft | draft} it carries the model the user picked for
664 > * the message they are composing. Absent means the agent host's default
665 > * model applies.
666 > */
667 > model?: ModelSelection;
668 > /**
669 > * The custom agent this message was, or will be, sent with.
670 > *
671 > * For historic messages this records the agent actually used; for a
672 > * {@link ChatState.draft | draft} it carries the agent the user picked.
673 > * Absent means no custom agent — the provider's default behavior applies.
674 > */
675 > agent?: AgentSelection;
676 > /**
677 > * Additional provider-specific metadata for this message.
678 > *
679 > * Clients MAY look for well-known keys here to provide enhanced UI, and
680 > * agent hosts MAY use it to carry context that does not fit any other
681 > * field. Mirrors the MCP `_meta` convention.
682 > */
683 > _meta?: Record<string, unknown>;
684 > }
685 >
686 > /**
687 > * Common fields shared by all {@link MessageAttachment} variants.
688 > *
689 > * @category Turn Types
690 > */
691 > export interface MessageAttachmentBase {
692 > /**
693 > * A human-readable label for the attachment (e.g. the filename of a file
694 > * attachment). Used for display in UI.
695 > */
696 > label: string;
697 >
698 > /**
699 > * If defined, the range in {@link Message.text} that references this
700 > * attachment. This is a text range, not a byte range.
701 > */
702 > range?: TextRange;
703 >
704 > /**
705 > * Advisory display hint for clients rendering this attachment. Recognized
706 > * values include:
707 > *
708 > * - `'image'`: the attachment is an image
709 > * - `'document'`: the attachment is a textual document
710 > * - `'symbol'`: the attachment is a code symbol (e.g. a function or class)
711 > * - `'directory'`: the attachment is a folder
712 > * - `'selection'`: the attachment is a selection within a document
713 > *
714 > * Implementations MAY provide additional values; clients SHOULD fall back
715 > * to a reasonable default when an unknown value is encountered.
716 > */
717 > displayKind?: string;
718 >
719 > /**
720 > * Additional implementation-defined metadata for the attachment.
721 > *
722 > * If the attachment was produced by the `completions` command, the client
723 > * MUST preserve every property of `_meta` originally returned by the agent
724 > * host when sending the user message containing the accepted completion.
725 > */
726 > _meta?: Record<string, unknown>;
727 > }
728 >
729 > /**
730 > * A simple, opaque attachment whose model representation is described by
731 > * the producer.
732 > *
733 > * @category Turn Types
734 > */
735 > export interface SimpleMessageAttachment extends MessageAttachmentBase {
736 > /** Discriminant */
737 > type: MessageAttachmentKind.Simple;
738 >
739 > /**
740 > * Representation of the attachment as it should be shown to the model.
741 > *
742 > * If the attachment was produced by the client, this property MUST be
743 > * defined so the agent host can correctly interpret the attachment. This
744 > * property MAY be omitted when the attachment originated from a
745 > * `completions` response.
746 > */
747 > modelRepresentation?: string;
748 > }
749 >
750 > /**
751 > * An attachment whose data is embedded inline as a base64 string.
752 > *
753 > * Use this for small binary payloads (e.g. a pasted image) that should be
754 > * delivered with the user message itself rather than fetched separately.
755 > *
756 > * @category Turn Types
757 > */
758 > export interface MessageEmbeddedResourceAttachment extends MessageAttachmentBase {
759 > /** Discriminant */
760 > type: MessageAttachmentKind.EmbeddedResource;
761 > /** Base64-encoded binary data */
762 > data: string;
763 > /** Content MIME type (e.g. `"image/png"`, `"application/pdf"`) */
764 > contentType: string;
765 > /**
766 > * Optional selection within the attached textual resource.
767 > *
768 > * Only meaningful for textual resources.
769 > */
770 > selection?: TextSelection;
771 > }
772 >
773 > /**
774 > * An attachment that references a resource by URI. The content is not
775 > * delivered inline; consumers can fetch it via `resourceRead` when needed.
776 > *
777 > * @category Turn Types
778 > */
779 > export interface MessageResourceAttachment extends MessageAttachmentBase, ContentRef {
780 > /** Discriminant */
781 > type: MessageAttachmentKind.Resource;
782 > /**
783 > * Optional selection within the referenced textual resource.
784 > *
785 > * Only meaningful for textual resources.
786 > */
787 > selection?: TextSelection;
788 > }
789 >
790 > /**
791 > * An attachment that references annotations on a session's annotations
792 > * channel (see {@link AnnotationsState}).
793 > *
794 > * When {@link annotationIds} is omitted the attachment references every
795 > * annotation on the channel; when present it references only the listed
796 > * {@link Annotation.id | annotation ids}.
797 > *
798 > * @category Turn Types
799 > */
800 > export interface MessageAnnotationsAttachment extends MessageAttachmentBase {
801 > /** Discriminant */
802 > type: MessageAttachmentKind.Annotations;
803 > /**
804 > * The annotations channel URI (typically `ahp-session:/<uuid>/annotations`).
805 > * Matches {@link AnnotationsSummary.resource}.
806 > */
807 > resource: URI;
808 > /**
809 > * Specific {@link Annotation.id | annotation ids} to reference. When
810 > * omitted, the attachment references all annotations on the channel.
811 > */
812 > annotationIds?: string[];
813 > }
814 >
815 > /**
816 > * An attachment that references a chat transcript through a fixed completed
817 > * turn.
818 > *
819 > * The referenced chat MUST belong to the same session as the message's chat.
820 > * The host resolves the transcript from its first retained turn through
821 > * `endTurn`, inclusive, when accepting the message. Later turns do not
822 > * change the context represented by an already-sent attachment.
823 > *
824 > * Hosts MUST NOT recursively expand chat attachments found inside the
825 > * referenced transcript. Clients SHOULD keep rendering `label` if the
826 > * referenced chat is later pruned, and treat opening `resource` as best-effort.
827 > *
828 > * @category Turn Types
829 > */
830 > export interface MessageChatAttachment extends MessageAttachmentBase {
831 > /** Discriminant */
832 > type: MessageAttachmentKind.Chat;
833 > /** URI of the referenced chat. */
834 > resource: URI;
835 > /** Last completed turn included in the referenced transcript. */
836 > endTurn: string;
837 > }
838 >
839 > /**
840 > * An attachment associated with a {@link Message}.
841 > *
842 > * @category Turn Types
843 > */
844 > export type MessageAttachment =
845 > | SimpleMessageAttachment
846 > | MessageEmbeddedResourceAttachment
847 > | MessageResourceAttachment
848 > | MessageAnnotationsAttachment
849 > | MessageChatAttachment;
850 >
851 > // ─── Response Parts ──────────────────────────────────────────────────────────
852 >
853 > /**
854 > * Discriminant for response part types.
855 > *
856 > * @category Response Parts
857 > */
858 > export const enum ResponsePartKind {
859 > Markdown = 'markdown',
860 > ContentRef = 'contentRef',
861 > ToolCall = 'toolCall',
862 > Reasoning = 'reasoning',
863 > SystemNotification = 'systemNotification',
864 > InputRequest = 'inputRequest',
865 > }
866 >
867 > /**
868 > * @category Response Parts
869 > */
870 > export interface MarkdownResponsePart {
871 > /** Discriminant */
872 > kind: ResponsePartKind.Markdown;
873 > /** Part identifier, used by `chat/delta` to target this part for content appends */
874 > id: string;
875 > /** Markdown content */
876 > content: string;
877 > }
878 >
879 > /**
880 > * A content part that's a reference to large content stored outside the state tree.
881 > *
882 > * @category Response Parts
883 > */
884 > export interface ResourceReponsePart extends ContentRef {
885 > /** Discriminant */
886 > kind: ResponsePartKind.ContentRef;
887 > }
888 >
889 > /**
890 > * A tool call represented as a response part.
891 > *
892 > * Tool calls are part of the response stream, interleaved with text and
893 > * reasoning. The `toolCall.toolCallId` serves as the part identifier for
894 > * actions that target this part.
895 > *
896 > * @category Response Parts
897 > */
898 > export interface ToolCallResponsePart {
899 > /** Discriminant */
900 > kind: ResponsePartKind.ToolCall;
901 > /** Full tool call lifecycle state */
902 > toolCall: ToolCallState;
903 > }
904 >
905 > /**
906 > * Reasoning/thinking content from the model.
907 > *
908 > * @category Response Parts
909 > */
910 > export interface ReasoningResponsePart {
911 > /** Discriminant */
912 > kind: ResponsePartKind.Reasoning;
913 > /** Part identifier, used by `chat/reasoning` to target this part for content appends */
914 > id: string;
915 > /** Accumulated reasoning text */
916 > content: string;
917 > }
918 >
919 > /**
920 > * @category Response Parts
921 > */
922 > export type ResponsePart =
923 > | MarkdownResponsePart
924 > | ResourceReponsePart
925 > | ToolCallResponsePart
926 > | ReasoningResponsePart
927 > | SystemNotificationResponsePart
928 > | InputRequestResponsePart;
929 >
930 > /**
931 > * A live or resolved input request (elicitation) in the turn response stream.
932 > *
933 > * The server inserts the part with `chat/inputRequested`. While
934 > * {@link response} is absent, clients can update answer drafts with
935 > * `chat/inputAnswerChanged` and submit a response with `chat/inputCompleted`.
936 > * Completion updates this part in place so its stream position is stable and
937 > * the full interaction remains durable and backfillable via `fetchTurns`.
938 > *
939 > * If the turn ends without a submitted response, the unresolved part remains
940 > * in the completed turn transcript with {@link response} absent.
941 > *
942 > * @category Response Parts
943 > */
944 > export interface InputRequestResponsePart {
945 > /** Discriminant */
946 > kind: ResponsePartKind.InputRequest;
947 > /**
948 > * The request, carrying its `id`, `message`, `url`, `questions`, and current
949 > * draft or submitted `answers`.
950 > */
951 > request: ChatInputRequest;
952 > /**
953 > * How the request was resolved. Absent until a client submits `accept`,
954 > * `decline`, or `cancel` with `chat/inputCompleted`.
955 > */
956 > response?: ChatInputResponseKind;
957 > }
958 >
959 > /**
960 > * A system notification surfaced as part of the response stream.
961 > *
962 > * System notifications are messages authored by the agent harness
963 > * that need to be visible to both the agent (for situational awareness) and
964 > * the user (for transcript continuity). Examples include "background subagent
965 > * X completed" or "task Y was cancelled".
966 > *
967 > * @category Response Parts
968 > */
969 > export interface SystemNotificationResponsePart {
970 > /** Discriminant */
971 > kind: ResponsePartKind.SystemNotification;
972 > /** The text of the system notification */
973 > content: StringOrMarkdown;
974 > /**
975 > * Additional provider-specific metadata for this notification.
976 > *
977 > * A host MAY attach a machine-readable descriptor of what triggered the
978 > * notification so clients can categorize, icon, group, filter, or localize
979 > * it without parsing `content`. Clients MAY look for well-known keys here to
980 > * provide enhanced UI, and MUST render coherently from `content` alone when
981 > * `_meta` is absent or unrecognized.
982 > */
983 > _meta?: Record<string, unknown>;
984 > }
985 >
986 >
987 > // ─── Tool Call Types ─────────────────────────────────────────────────────────
988 >
989 > /**
990 > * Status of a tool call in the lifecycle state machine.
991 > *
992 > * @category Tool Call Types
993 > */
994 > export const enum ToolCallStatus {
995 > Streaming = 'streaming',
996 > PendingConfirmation = 'pending-confirmation',
997 > Running = 'running',
998 > /**
999 > * Running paused because the MCP server backing this call needs
1000 > * authentication (typically step-up auth for insufficient scope,
1001 > * surfacing mid-execution). See {@link ToolCallAuthRequiredState}.
1002 > */
1003 > AuthRequired = 'auth-required',
1004 > PendingResultConfirmation = 'pending-result-confirmation',
1005 > Completed = 'completed',
1006 > Cancelled = 'cancelled',
1007 > }
1008 >
1009 > /**
1010 > * How a tool call was confirmed for execution.
1011 > *
1012 > * - `NotNeeded` — No confirmation required (auto-approved)
1013 > * - `UserAction` — User explicitly approved
1014 > * - `Setting` — Approved by a persistent user setting
1015 > *
1016 > * @category Tool Call Types
1017 > */
1018 > export const enum ToolCallConfirmationReason {
1019 > NotNeeded = 'not-needed',
1020 > UserAction = 'user-action',
1021 > Setting = 'setting',
1022 > }
1023 >
1024 > /**
1025 > * Identifies a model judge as the source of a confirmation requirement.
1026 > *
1027 > * @category Tool Call Types
1028 > */
1029 > export const enum ToolCallRiskAssessmentKind {
1030 > Judge = 'judge',
1031 > }
1032 >
1033 > /**
1034 > * Lifecycle status of an asynchronous model-judge confirmation decision.
1035 > *
1036 > * @category Tool Call Types
1037 > */
1038 > export const enum ToolCallRiskAssessmentStatus {
1039 > Loading = 'loading',
1040 > Complete = 'complete',
1041 > }
1042 >
1043 > interface ToolCallRiskAssessmentBase {
1044 > kind: ToolCallRiskAssessmentKind;
1045 > }
1046 >
1047 > /**
1048 > * The model judge is still evaluating the tool call.
1049 > *
1050 > * @category Tool Call Types
1051 > */
1052 > export interface ToolCallRiskAssessmentLoadingState extends ToolCallRiskAssessmentBase {
1053 > status: ToolCallRiskAssessmentStatus.Loading;
1054 > }
1055 >
1056 > /**
1057 > * The model judge has completed its evaluation.
1058 > *
1059 > * @category Tool Call Types
1060 > */
1061 > export interface ToolCallRiskAssessmentCompleteState extends ToolCallRiskAssessmentBase {
1062 > status: ToolCallRiskAssessmentStatus.Complete;
1063 > reason: StringOrMarkdown;
1064 > /**
1065 > * The judge's normalized safety score, where `0` is unsafe and `1` is safe.
1066 > * @format float
1067 > */
1068 > safety: number;
1069 > }
1070 >
1071 > export type ToolCallRiskAssessment =
1072 > | ToolCallRiskAssessmentLoadingState
1073 > | ToolCallRiskAssessmentCompleteState;
1074 >
1075 > /**
1076 > * Why a tool call was cancelled.
1077 > *
1078 > * @category Tool Call Types
1079 > */
1080 > export const enum ToolCallCancellationReason {
1081 > Denied = 'denied',
1082 > Skipped = 'skipped',
1083 > ResultDenied = 'result-denied',
1084 > }
1085 >
1086 > /**
1087 > * Whether a confirmation option represents an approval or denial action.
1088 > *
1089 > * @category Tool Call Types
1090 > */
1091 > export const enum ConfirmationOptionKind {
1092 > Approve = 'approve',
1093 > Deny = 'deny',
1094 > }
1095 >
1096 > /**
1097 > * A confirmation option that the server offers for a tool call awaiting
1098 > * approval. Allows richer choices beyond simple approve/deny — for example,
1099 > * "Approve in this Session" or "Deny with reason."
1100 > *
1101 > * @category Tool Call Types
1102 > */
1103 > export interface ConfirmationOption {
1104 > /** Unique identifier for the option, returned in the confirmed action */
1105 > id: string;
1106 > /** Human-readable label displayed to the user */
1107 > label: string;
1108 > /** Whether this option represents an approval or denial */
1109 > kind: ConfirmationOptionKind;
1110 > /**
1111 > * Logical group number for visual categorisation.
1112 > *
1113 > * Clients SHOULD display options in the order they are defined and MAY
1114 > * use differing group numbers to insert dividers between logical clusters
1115 > * of options.
1116 > */
1117 > group?: number;
1118 > }
1119 >
1120 > export const enum ToolCallContributorKind {
1121 > Client = 'client',
1122 > MCP = 'mcp',
1123 > }
1124 >
1125 > export interface ToolCallClientContributor {
1126 > kind: ToolCallContributorKind.Client;
1127 > /**
1128 > * If this tool is provided by a client, the `clientId` of the owning client.
1129 > * Absent for server-side tools.
1130 > *
1131 > * When set, the identified client is responsible for executing the tool and
1132 > * dispatching `chat/toolCallComplete` with the result.
1133 > */
1134 > clientId: string;
1135 > }
1136 >
1137 > export interface ToolCallMcpContributor {
1138 > kind: ToolCallContributorKind.MCP;
1139 > /**
1140 > * Customization ID of the corresponding MCP server in {@link SessionState.customizations}.
1141 > */
1142 > customizationId: string;
1143 > }
1144 >
1145 > export type ToolCallContributor = ToolCallClientContributor | ToolCallMcpContributor;
1146 >
1147 > /**
1148 > * Metadata common to all tool call states.
1149 > *
1150 > * @category Tool Call Types
1151 > * @remarks
1152 > * Fields like `toolName` carry agent-specific identifiers on the wire despite the
1153 > * agent-agnostic design principle. These exist for debugging and logging purposes.
1154 > * A future version may move these to a separate diagnostic channel or namespace them
1155 > * more clearly.
1156 > */
1157 > interface ToolCallBase {
1158 > /** Unique tool call identifier */
1159 > toolCallId: string;
1160 > /** Internal tool name (for debugging/logging) */
1161 > toolName: string;
1162 > /** Human-readable tool name */
1163 > displayName: string;
1164 > /** Human-readable description of what the tool invocation intends to do */
1165 > intention?: string;
1166 > /**
1167 > * Reference to the contributor of the tool being called.
1168 > */
1169 > contributor?: ToolCallContributor;
1170 > /**
1171 > * Additional provider-specific metadata for this tool call.
1172 > *
1173 > * This MAY include a `ui` field corresponding to the MCP Apps (SEP-1865)
1174 > * `McpUiToolMeta` found in MCP tool calls, which may be used in combination
1175 > * with the {@link contributor} to serve MCP Apps.
1176 > */
1177 > _meta?: Record<string, unknown>;
1178 > }
1179 >
1180 > /**
1181 > * Properties available once tool call parameters are fully received.
1182 > *
1183 > * @category Tool Call Types
1184 > */
1185 > interface ToolCallParameterFields {
1186 > /** Message describing what the tool will do */
1187 > invocationMessage: StringOrMarkdown;
1188 > /** Raw tool input */
1189 > toolInput?: string;
1190 > }
1191 >
1192 > /**
1193 > * Tool execution result details, available after execution completes.
1194 > *
1195 > * @category Tool Call Types
1196 > */
1197 > export interface ToolCallResult {
1198 > /** Whether the tool succeeded */
1199 > success: boolean;
1200 > /** Past-tense description of what the tool did */
1201 > pastTenseMessage: StringOrMarkdown;
1202 > /**
1203 > * Unstructured result content blocks.
1204 > *
1205 > * This mirrors the `content` field of MCP `CallToolResult`.
1206 > */
1207 > content?: ToolResultContent[];
1208 > /**
1209 > * Optional structured result object.
1210 > *
1211 > * This mirrors the `structuredContent` field of MCP `CallToolResult`.
1212 > */
1213 > structuredContent?: Record<string, unknown>;
1214 > /** Error details if the tool failed */
1215 > error?: { message: string; code?: string };
1216 > }
1217 >
1218 > /**
1219 > * LM is streaming the tool call parameters.
1220 > *
1221 > * @category Tool Call Types
1222 > */
1223 > export interface ToolCallStreamingState extends ToolCallBase {
1224 > status: ToolCallStatus.Streaming;
1225 > /** Partial parameters accumulated so far */
1226 > partialInput?: string;
1227 > /** Progress message shown while parameters are streaming */
1228 > invocationMessage?: StringOrMarkdown;
1229 > }
1230 >
1231 > /**
1232 > * Parameters are complete, or a running tool requires re-confirmation
1233 > * (e.g. a mid-execution permission check).
1234 > *
1235 > * @category Tool Call Types
1236 > */
1237 > export interface ToolCallPendingConfirmationState extends ToolCallBase, ToolCallParameterFields {
1238 > status: ToolCallStatus.PendingConfirmation;
1239 > /** Short title for the confirmation prompt (e.g. `"Run in terminal"`, `"Write file"`) */
1240 > confirmationTitle?: StringOrMarkdown;
1241 > /** Risk assessment that informed the confirmation requirement. */
1242 > riskAssessment?: ToolCallRiskAssessment;
1243 > /** File edits that this tool call will perform, for preview before confirmation */
1244 > edits?: { items: FileEdit[] };
1245 > /** Whether the agent host allows the client to edit the tool's input parameters before confirming */
1246 > editable?: boolean;
1247 > /**
1248 > * Options the server offers for this confirmation. When present, the client
1249 > * SHOULD render these instead of a plain approve/deny UI. Each option
1250 > * belongs to a {@link ConfirmationOptionGroup} so the client can still
1251 > * categorise the choices.
1252 > */
1253 > options?: ConfirmationOption[];
1254 > }
1255 >
1256 > /**
1257 > * Fields present on every tool call state that exists **after** confirmation
1258 > * has been resolved: {@link ToolCallRunningState}, {@link ToolCallAuthRequiredState},
1259 > * {@link ToolCallPendingResultConfirmationState}, and {@link ToolCallCompletedState}.
1260 > * `ToolCallPendingConfirmationState` (not yet confirmed) and
1261 > * `ToolCallCancelledState` (the denial path — never ran) don't satisfy this
1262 > * invariant, so they keep their own `selectedOption` field independently
1263 > * rather than extending this one.
1264 > *
1265 > * @category Tool Call Types
1266 > */
1267 > interface ToolCallPostConfirmationFields {
1268 > /** How the tool was confirmed for execution */
1269 > confirmed: ToolCallConfirmationReason;
1270 > /** The confirmation option the user selected, if confirmation options were provided */
1271 > selectedOption?: ConfirmationOption;
1272 > }
1273 >
1274 > /**
1275 > * Tool is actively executing.
1276 > *
1277 > * @category Tool Call Types
1278 > */
1279 > export interface ToolCallRunningState extends ToolCallBase, ToolCallParameterFields, ToolCallPostConfirmationFields {
1280 > status: ToolCallStatus.Running;
1281 > /**
1282 > * Partial content produced while the tool is still executing.
1283 > *
1284 > * For example, a terminal content block lets clients subscribe to live
1285 > * output before the tool completes.
1286 > */
1287 > content?: ToolResultContent[];
1288 > }
1289 >
1290 > /**
1291 > * A running tool call is paused because the MCP server backing it needs
1292 > * authentication — most commonly {@link McpAuthRequirement.reason |
1293 > * `insufficientScope`} step-up auth triggered by the `tools/call` request
1294 > * itself. Only ever reached from {@link ToolCallRunningState}, and normally
1295 > * returns there once authenticated: `running` → `auth-required` → `running`
1296 > * → …. A client MAY instead cancel the invocation without authenticating by
1297 > * dispatching a `chat/toolCallComplete` with a **failed** result, always
1298 > * moving straight to {@link ToolCallCompletedState} —
1299 > * `requiresResultConfirmation` is ignored on this path, so it can never
1300 > * enter {@link ToolCallPendingResultConfirmationState}. A **successful**
1301 > * result dispatched from this state is invalid and MUST be rejected/ignored
1302 > * as a no-op by the reducer, since execution never resumed after the
1303 > * challenge.
1304 > *
1305 > * This is the tool-call-level counterpart to
1306 > * {@link McpServerAuthRequiredState} — that state means the MCP *server*
1307 > * cannot serve any request; this one means *this specific invocation* is
1308 > * waiting on the same kind of challenge. The two are dispatched
1309 > * independently and MAY be true at the same time, or not: an
1310 > * `insufficientScope` challenge triggered by a single tool call, for
1311 > * example, need not block the whole server.
1312 > *
1313 > * Because the challenge is always resolved by pushing a token via the
1314 > * existing `authenticate` command, this state can only originate from a
1315 > * tool call {@link ToolCallContributorKind.MCP | contributed by an MCP
1316 > * server} — `contributor` is narrowed accordingly (unlike the optional,
1317 > * multi-kind `contributor` on other tool call states).
1318 > *
1319 > * @category Tool Call Types
1320 > */
1321 > export interface ToolCallAuthRequiredState extends ToolCallBase, ToolCallParameterFields, ToolCallPostConfirmationFields {
1322 > status: ToolCallStatus.AuthRequired;
1323 > /** The MCP server that contributed this tool call — always MCP, never a client tool. */
1324 > contributor: ToolCallMcpContributor;
1325 > /** The authentication challenge blocking this invocation. */
1326 > auth: McpAuthRequirement;
1327 > /** Partial content produced before the call paused for authentication. */
1328 > content?: ToolResultContent[];
1329 > }
1330 >
1331 > /**
1332 > * Tool finished executing, waiting for client to approve the result.
1333 > *
1334 > * @category Tool Call Types
1335 > */
1336 > export interface ToolCallPendingResultConfirmationState extends ToolCallBase, ToolCallParameterFields, ToolCallResult, ToolCallPostConfirmationFields {
1337 > status: ToolCallStatus.PendingResultConfirmation;
1338 > }
1339 >
1340 > /**
1341 > * Tool completed successfully or with an error.
1342 > *
1343 > * @category Tool Call Types
1344 > */
1345 > export interface ToolCallCompletedState extends ToolCallBase, ToolCallParameterFields, ToolCallResult, ToolCallPostConfirmationFields {
1346 > status: ToolCallStatus.Completed;
1347 > }
1348 >
1349 > /**
1350 > * Tool call was cancelled before execution.
1351 > *
1352 > * @category Tool Call Types
1353 > */
1354 > export interface ToolCallCancelledState extends ToolCallBase, ToolCallParameterFields {
1355 > status: ToolCallStatus.Cancelled;
1356 > /** Why the tool was cancelled */
1357 > reason: ToolCallCancellationReason;
1358 > /** Optional message explaining the cancellation */
1359 > reasonMessage?: StringOrMarkdown;
1360 > /** What the user suggested doing instead */
1361 > userSuggestion?: Message;
1362 > /** The confirmation option the user selected, if confirmation options were provided */
1363 > selectedOption?: ConfirmationOption;
1364 > }
1365 >
1366 > /**
1367 > * Discriminated union of all tool call lifecycle states.
1368 > *
1369 > * See the [state model guide](/guide/state-model.html#tool-call-lifecycle)
1370 > * for the full state machine diagram.
1371 > *
1372 > * @category Tool Call Types
1373 > */
1374 > export type ToolCallState =
1375 > | ToolCallStreamingState
1376 > | ToolCallPendingConfirmationState
1377 > | ToolCallRunningState
1378 > | ToolCallAuthRequiredState
1379 > | ToolCallPendingResultConfirmationState
1380 > | ToolCallCompletedState
1381 > | ToolCallCancelledState;
1382 >
1383 > /**
1384 > * The two tool-call states that block on a client confirmation: parameter
1385 > * confirmation before execution ({@link ToolCallPendingConfirmationState}) and
1386 > * result confirmation after execution
1387 > * ({@link ToolCallPendingResultConfirmationState}).
1388 > *
1389 > * {@link ToolCallAuthRequiredState} is intentionally **not** part of this
1390 > * union: it doesn't block on a `chat/toolCallConfirmed`-style client
1391 > * decision, it blocks on the client completing an OAuth flow and calling
1392 > * `authenticate`. See {@link SessionToolAuthenticationRequest} for its
1393 > * session-level surfacing.
1394 > *
1395 > * Surfaced at the session level by {@link SessionToolConfirmationRequest}.
1396 > *
1397 > * @category Tool Call Types
1398 > */
1399 > export type ToolCallConfirmationState =
1400 > | ToolCallPendingConfirmationState
1401 > | ToolCallPendingResultConfirmationState;
1402 >
1403 >
1404 > // ─── Tool Result Content ─────────────────────────────────────────────────────
1405 >
1406 > /**
1407 > * Discriminant for tool result content types.
1408 > *
1409 > * @category Tool Result Content
1410 > */
1411 > export const enum ToolResultContentType {
1412 > Text = 'text',
1413 > EmbeddedResource = 'embeddedResource',
1414 > Resource = 'resource',
1415 > FileEdit = 'fileEdit',
1416 > Terminal = 'terminal',
1417 > Subagent = 'subagent',
1418 > }
1419 >
1420 > /**
1421 > * Text content in a tool result.
1422 > *
1423 > * Mirrors MCP `TextContent`.
1424 > *
1425 > * @category Tool Result Content
1426 > */
1427 > export interface ToolResultTextContent {
1428 > type: ToolResultContentType.Text;
1429 > /** The text content */
1430 > text: string;
1431 > }
1432 >
1433 > /**
1434 > * Base64-encoded binary content embedded in a tool result.
1435 > *
1436 > * Mirrors MCP `EmbeddedResource` for inline binary data.
1437 > *
1438 > * @category Tool Result Content
1439 > */
1440 > export interface ToolResultEmbeddedResourceContent {
1441 > type: ToolResultContentType.EmbeddedResource;
1442 > /** Base64-encoded data */
1443 > data: string;
1444 > /** Content type (e.g. `"image/png"`, `"application/pdf"`) */
1445 > contentType: string;
1446 > }
1447 >
1448 > /**
1449 > * A reference to a resource stored outside the tool result.
1450 > *
1451 > * Wraps {@link ContentRef} for lazy-loading large results.
1452 > *
1453 > * @category Tool Result Content
1454 > */
1455 > export interface ToolResultResourceContent extends ContentRef {
1456 > type: ToolResultContentType.Resource;
1457 > }
1458 >
1459 > /**
1460 > * Describes a file modification performed by a tool.
1461 > *
1462 > * @category Tool Result Content
1463 > */
1464 > export interface ToolResultFileEditContent extends FileEdit {
1465 > type: ToolResultContentType.FileEdit;
1466 > }
1467 >
1468 > /**
1469 > * A reference to a terminal whose output is relevant to this tool result.
1470 > *
1471 > * Clients can subscribe to the terminal's URI to stream its output in real
1472 > * time, providing live feedback while a tool is executing.
1473 > *
1474 > * When the command exits, {@link result} is filled in on the completed
1475 > * result, retaining the outcome for clients that did not subscribe. This
1476 > * records the command's exit, not the terminal's — the terminal may keep
1477 > * running afterwards.
1478 > *
1479 > * @category Tool Result Content
1480 > */
1481 > export interface ToolResultTerminalContent {
1482 > type: ToolResultContentType.Terminal;
1483 > /** Terminal URI (subscribable for full terminal state) */
1484 > resource: URI;
1485 > /** Display title for the terminal content */
1486 > title: string;
1487 > /**
1488 > * Whether this terminal-style resource is backed by a pseudoterminal.
1489 > * When `false`, output is plain text and clients do not need to parse
1490 > * VT sequences.
1491 > */
1492 > isPty?: boolean;
1493 > /** Outcome of the command, present once it has exited. */
1494 > result?: TerminalCommandResult;
1495 > }
1496 >
1497 > /**
1498 > * Outcome of a command run in a terminal-style tool, filled in on
1499 > * {@link ToolResultTerminalContent.result} once the command exits.
1500 > *
1501 > * @category Tool Result Content
1502 > */
1503 > export interface TerminalCommandResult {
1504 > /** Exit code from the completed command, if reported by the runtime */
1505 > exitCode?: number;
1506 > /**
1507 > * Preview of the command's output, for clients that are not subscribed
1508 > * to the terminal or that arrive after it is disposed. When `isPty` is
1509 > * `true` the preview may contain VT sequences; when `false` it is plain
1510 > * text.
1511 > */
1512 > preview?: string;
1513 > /** Whether `preview` is known to be incomplete or truncated */
1514 > truncated?: boolean;
1515 > }
1516 >
1517 > /**
1518 > * A reference, embedded in a tool result, to a worker chat spawned by the tool
1519 > * call (a sub-agent delegation), referenced by a chat URI (`ahp-chat:/...`).
1520 > *
1521 > * This is the spawning tool call's forward view of the worker. The worker chat
1522 > * records the same edge in reverse via its {@link ChatOrigin} (`kind: 'tool'`),
1523 > * whose `toolCallId` identifies the tool call that emitted this content.
1524 > *
1525 > * @category Tool Result Content
1526 > */
1527 > export interface ToolResultSubagentContent {
1528 > type: ToolResultContentType.Subagent;
1529 > /** Worker chat URI (subscribable for full chat state) */
1530 > resource: URI;
1531 > /** Display title for the subagent */
1532 > title: string;
1533 > /** Internal agent name */
1534 > agentName?: string;
1535 > /** Human-readable description of the subagent's task */
1536 > description?: string;
1537 > }
1538 >
1539 > /**
1540 > * Content block in a tool result.
1541 > *
1542 > * Mirrors the content blocks in MCP `CallToolResult.content`, plus
1543 > * `ToolResultResourceContent` for lazy-loading large results,
1544 > * `ToolResultFileEditContent` for file edit diffs,
1545 > * `ToolResultTerminalContent` for live terminal output and
1546 > * command completion metadata, and
1547 > * `ToolResultSubagentContent` for tool-spawned worker chats (AHP extensions).
1548 > *
1549 > * @category Tool Result Content
1550 > */
1551 > export type ToolResultContent =
1552 > | ToolResultTextContent
1553 > | ToolResultEmbeddedResourceContent
1554 > | ToolResultResourceContent
1555 > | ToolResultFileEditContent
1556 > | ToolResultTerminalContent
1557 > | ToolResultSubagentContent;
src/vs/platform/files/common/files.ts 1360 covered LOC · 44 ranges

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1 > /*--------------------------------------------------------------------------------------------- files.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { VSBuffer, VSBufferReadable, VSBufferReadableStream } from '../../../base/common/buffer.js';
7 > import { CancellationToken } from '../../../base/common/cancellation.js';
8 > import { Event } from '../../../base/common/event.js';
9 > import { IExpression, IRelativePattern } from '../../../base/common/glob.js';
10 > import { IDisposable } from '../../../base/common/lifecycle.js';
11 > import { TernarySearchTree } from '../../../base/common/ternarySearchTree.js';
12 > import { sep } from '../../../base/common/path.js';
13 > import { ReadableStreamEvents } from '../../../base/common/stream.js';
14 > import { startsWithIgnoreCase } from '../../../base/common/strings.js';
15 > import { isNumber } from '../../../base/common/types.js';
16 > import { URI } from '../../../base/common/uri.js';
17 > import { localize } from '../../../nls.js';
18 > import { createDecorator } from '../../instantiation/common/instantiation.js';
19 > import { isWeb } from '../../../base/common/platform.js';
20 > import { Schemas } from '../../../base/common/network.js';
21 > import { IMarkdownString } from '../../../base/common/htmlContent.js';
22 > import { Lazy } from '../../../base/common/lazy.js';
23 >
24 > //#region file service & providers
25 >
26 > export const IFileService = createDecorator<IFileService>('fileService');
27 >
28 > export interface IFileService {
29 >
30 > readonly _serviceBrand: undefined;
31 >
32 > /**
33 > * An event that is fired when a file system provider is added or removed
34 > */
35 > readonly onDidChangeFileSystemProviderRegistrations: Event<IFileSystemProviderRegistrationEvent>;
36 >
37 > /**
38 > * An event that is fired when a registered file system provider changes its capabilities.
39 > */
40 > readonly onDidChangeFileSystemProviderCapabilities: Event<IFileSystemProviderCapabilitiesChangeEvent>;
41 >
42 > /**
43 > * An event that is fired when a file system provider is about to be activated. Listeners
44 > * can join this event with a long running promise to help in the activation process.
45 > */
46 > readonly onWillActivateFileSystemProvider: Event<IFileSystemProviderActivationEvent>;
47 >
48 > /**
49 > * Registers a file system provider for a certain scheme.
50 > */
51 > registerProvider(scheme: string, provider: IFileSystemProvider): IDisposable;
52 >
53 > /**
54 > * Returns a file system provider for a certain scheme.
55 > */
56 > getProvider(scheme: string): IFileSystemProvider | undefined;
57 >
58 > /**
59 > * Tries to activate a provider with the given scheme.
60 > */
61 > activateProvider(scheme: string): Promise<void>;
62 >
63 > /**
64 > * Checks if this file service can handle the given resource by
65 > * first activating any extension that wants to be activated
66 > * on the provided resource scheme to include extensions that
67 > * contribute file system providers for the given resource.
68 > */
69 > canHandleResource(resource: URI): Promise<boolean>;
70 >
71 > /**
72 > * Checks if the file service has a registered provider for the
73 > * provided resource.
74 > *
75 > * Note: this does NOT account for contributed providers from
76 > * extensions that have not been activated yet. To include those,
77 > * consider to call `await fileService.canHandleResource(resource)`.
78 > */
79 > hasProvider(resource: URI): boolean;
80 >
81 > /**
82 > * Checks if the provider for the provided resource has the provided file system capability.
83 > */
84 > hasCapability(resource: URI, capability: FileSystemProviderCapabilities): boolean;
85 >
86 > /**
87 > * List the schemes and capabilities for registered file system providers
88 > */
89 > listCapabilities(): Iterable<{ scheme: string; capabilities: FileSystemProviderCapabilities }>;
90 >
91 > /**
92 > * Allows to listen for file changes. The event will fire for every file within the opened workspace
93 > * (if any) as well as all files that have been watched explicitly using the #watch() API.
94 > */
95 > readonly onDidFilesChange: Event<FileChangesEvent>;
96 >
97 > /**
98 > * An event that is fired upon successful completion of a certain file operation.
99 > */
100 > readonly onDidRunOperation: Event<FileOperationEvent>;
101 >
102 > /**
103 > * Resolve the properties of a file/folder identified by the resource. For a folder, children
104 > * information is resolved as well depending on the provided options. Use `stat()` method if
105 > * you do not need children information.
106 > *
107 > * If the optional parameter "resolveTo" is specified in options, the stat service is asked
108 > * to provide a stat object that should contain the full graph of folders up to all of the
109 > * target resources.
110 > *
111 > * If the optional parameter "resolveSingleChildDescendants" is specified in options,
112 > * the stat service is asked to automatically resolve child folders that only
113 > * contain a single element.
114 > *
115 > * If the optional parameter "resolveMetadata" is specified in options,
116 > * the stat will contain metadata information such as size, mtime and etag.
117 > */
118 > resolve(resource: URI, options: IResolveMetadataFileOptions): Promise<IFileStatWithMetadata>;
119 > resolve(resource: URI, options?: IResolveFileOptions): Promise<IFileStat>;
120 >
121 > /**
122 > * Same as `resolve()` but supports resolving multiple resources in parallel.
123 > *
124 > * If one of the resolve targets fails to resolve returns a fake `IFileStat` instead of
125 > * making the whole call fail.
126 > */
127 > resolveAll(toResolve: { resource: URI; options: IResolveMetadataFileOptions }[]): Promise<IFileStatResult[]>;
128 > resolveAll(toResolve: { resource: URI; options?: IResolveFileOptions }[]): Promise<IFileStatResult[]>;
129 >
130 > /**
131 > * Same as `resolve()` but without resolving the children of a folder if the
132 > * resource is pointing to a folder.
133 > */
134 > stat(resource: URI): Promise<IFileStatWithPartialMetadata>;
135 >
136 > /**
137 > * Attempts to resolve the real path of the provided resource. The real path can be
138 > * different from the resource path for example when it is a symlink.
139 > *
140 > * Will return `undefined` if the real path cannot be resolved.
141 > */
142 > realpath(resource: URI): Promise<URI | undefined>;
143 >
144 > /**
145 > * Finds out if a file/folder identified by the resource exists.
146 > */
147 > exists(resource: URI): Promise<boolean>;
148 >
149 > /**
150 > * Read the contents of the provided resource unbuffered.
151 > */
152 > readFile(resource: URI, options?: IReadFileOptions, token?: CancellationToken): Promise<IFileContent>;
153 >
154 > /**
155 > * Read the contents of the provided resource buffered as stream.
156 > */
157 > readFileStream(resource: URI, options?: IReadFileStreamOptions, token?: CancellationToken): Promise<IFileStreamContent>;
158 >
159 > /**
160 > * Updates the content replacing its previous value.
161 > * If `options.append` is true, appends content to the end of the file instead.
162 > *
163 > * Emits a `FileOperation.WRITE` file operation event when successful.
164 > */
165 > writeFile(resource: URI, bufferOrReadableOrStream: VSBuffer | VSBufferReadable | VSBufferReadableStream, options?: IWriteFileOptions): Promise<IFileStatWithMetadata>;
166 >
167 > /**
168 > * Moves the file/folder to a new path identified by the resource.
169 > *
170 > * The optional parameter overwrite can be set to replace an existing file at the location.
171 > *
172 > * Emits a `FileOperation.MOVE` file operation event when successful.
173 > */
174 > move(source: URI, target: URI, overwrite?: boolean): Promise<IFileStatWithMetadata>;
175 >
176 > /**
177 > * Find out if a move operation is possible given the arguments. No changes on disk will
178 > * be performed. Returns an Error if the operation cannot be done.
179 > */
180 > canMove(source: URI, target: URI, overwrite?: boolean): Promise<Error | true>;
181 >
182 > /**
183 > * Copies the file/folder to a path identified by the resource. A folder is copied
184 > * recursively.
185 > *
186 > * Emits a `FileOperation.COPY` file operation event when successful.
187 > */
188 > copy(source: URI, target: URI, overwrite?: boolean): Promise<IFileStatWithMetadata>;
189 >
190 > /**
191 > * Find out if a copy operation is possible given the arguments. No changes on disk will
192 > * be performed. Returns an Error if the operation cannot be done.
193 > */
194 > canCopy(source: URI, target: URI, overwrite?: boolean): Promise<Error | true>;
195 >
196 > /**
197 > * Clones a file to a path identified by the resource. Folders are not supported.
198 > *
199 > * If the target path exists, it will be overwritten.
200 > */
201 > cloneFile(source: URI, target: URI): Promise<void>;
202 >
203 > /**
204 > * Creates a new file with the given path and optional contents. The returned promise
205 > * will have the stat model object as a result.
206 > *
207 > * The optional parameter content can be used as value to fill into the new file.
208 > *
209 > * Emits a `FileOperation.CREATE` file operation event when successful.
210 > */
211 > createFile(resource: URI, bufferOrReadableOrStream?: VSBuffer | VSBufferReadable | VSBufferReadableStream, options?: ICreateFileOptions): Promise<IFileStatWithMetadata>;
212 >
213 > /**
214 > * Find out if a file create operation is possible given the arguments. No changes on disk will
215 > * be performed. Returns an Error if the operation cannot be done.
216 > */
217 > canCreateFile(resource: URI, options?: ICreateFileOptions): Promise<Error | true>;
218 >
219 > /**
220 > * Creates a new folder with the given path. The returned promise
221 > * will have the stat model object as a result.
222 > *
223 > * Emits a `FileOperation.CREATE` file operation event when successful.
224 > */
225 > createFolder(resource: URI): Promise<IFileStatWithMetadata>;
226 >
227 > /**
228 > * Deletes the provided file. The optional useTrash parameter allows to
229 > * move the file to trash. The optional recursive parameter allows to delete
230 > * non-empty folders recursively.
231 > *
232 > * Emits a `FileOperation.DELETE` file operation event when successful.
233 > */
234 > del(resource: URI, options?: Partial<IFileDeleteOptions>): Promise<void>;
235 >
236 > /**
237 > * Find out if a delete operation is possible given the arguments. No changes on disk will
238 > * be performed. Returns an Error if the operation cannot be done.
239 > */
240 > canDelete(resource: URI, options?: Partial<IFileDeleteOptions>): Promise<Error | true>;
241 >
242 > /**
243 > * An event that signals an error when watching for file changes.
244 > */
245 > readonly onDidWatchError: Event<Error>;
246 >
247 > /**
248 > * Allows to start a watcher that reports file/folder change events on the provided resource.
249 > *
250 > * The watcher runs correlated and thus, file events will be reported on the returned
251 > * `IFileSystemWatcher` and not on the generic `IFileService.onDidFilesChange` event.
252 > *
253 > * Note: only non-recursive file watching supports event correlation for now.
254 > */
255 > createWatcher(resource: URI, options: IWatchOptionsWithoutCorrelation & { recursive: false }): IFileSystemWatcher;
256 >
257 > /**
258 > * Allows to start a watcher that reports file/folder change events on the provided resource.
259 > *
260 > * The watcher runs uncorrelated and thus will report all events from `IFileService.onDidFilesChange`.
261 > * This means, most listeners in the application will receive your events. It is encouraged to
262 > * use correlated watchers (via `IWatchOptionsWithCorrelation`) to limit events to your listener.
263 > */
264 > watch(resource: URI, options?: IWatchOptionsWithoutCorrelation): IDisposable;
265 >
266 > /**
267 > * Frees up any resources occupied by this service.
268 > */
269 > dispose(): void;
270 > }
271 >
272 > export interface IFileOverwriteOptions {
273 >
274 > /**
275 > * Set to `true` to overwrite a file if it exists. Will
276 > * throw an error otherwise if the file does exist.
277 > */
278 > readonly overwrite: boolean;
279 > }
280 >
281 > export interface IFileUnlockOptions {
282 >
283 > /**
284 > * Set to `true` to try to remove any write locks the file might
285 > * have. A file that is write locked will throw an error for any
286 > * attempt to write to unless `unlock: true` is provided.
287 > */
288 > readonly unlock: boolean;
289 > }
290 >
291 > export interface IFileAtomicReadOptions {
292 >
293 > /**
294 > * The optional `atomic` flag can be used to make sure
295 > * the `readFile` method is not running in parallel with
296 > * any `write` operations in the same process.
297 > *
298 > * Typically you should not need to use this flag but if
299 > * for example you are quickly reading a file right after
300 > * a file event occurred and the file changes a lot, there
301 > * is a chance that a read returns an empty or partial file
302 > * because a pending write has not finished yet.
303 > *
304 > * Note: this does not prevent the file from being written
305 > * to from a different process. If you need such atomic
306 > * operations, you better use a real database as storage.
307 > */
308 > readonly atomic: boolean;
309 > }
310 >
311 > export interface IFileAtomicOptions {
312 >
313 > /**
314 > * The postfix is used to create a temporary file based
315 > * on the original resource. The resulting temporary
316 > * file will be in the same folder as the resource and
317 > * have `postfix` appended to the resource name.
318 > *
319 > * Example: given a file resource `file:///some/path/foo.txt`
320 > * and a postfix `.vsctmp`, the temporary file will be
321 > * created as `file:///some/path/foo.txt.vsctmp`.
322 > */
323 > readonly postfix: string;
324 > }
325 >
326 > export interface IFileAtomicWriteOptions {
327 >
328 > /**
329 > * The optional `atomic` flag can be used to make sure
330 > * the `writeFile` method updates the target file atomically
331 > * by first writing to a temporary file in the same folder
332 > * and then renaming it over the target.
333 > */
334 > readonly atomic: IFileAtomicOptions | false;
335 > }
336 >
337 > export interface IFileAtomicDeleteOptions {
338 >
339 > /**
340 > * The optional `atomic` flag can be used to make sure
341 > * the `delete` method deletes the target atomically by
342 > * first renaming it to a temporary resource in the same
343 > * folder and then deleting it.
344 > */
345 > readonly atomic: IFileAtomicOptions | false;
346 > }
347 >
348 > export interface IFileReadLimits {
349 >
350 > /**
351 > * If the file exceeds the given size, an error of kind
352 > * `FILE_TOO_LARGE` will be thrown.
353 > */
354 > size?: number;
355 > }
356 >
357 > export interface IFileReadStreamOptions {
358 >
359 > /**
360 > * Is an integer specifying where to begin reading from in the file. If position is undefined,
361 > * data will be read from the current file position.
362 > */
363 > readonly position?: number;
364 >
365 > /**
366 > * Is an integer specifying how many bytes to read from the file. By default, all bytes
367 > * will be read.
368 > */
369 > readonly length?: number;
370 >
371 > /**
372 > * If provided, the size of the file will be checked against the limits
373 > * and an error will be thrown if any limit is exceeded.
374 > */
375 > readonly limits?: IFileReadLimits;
376 > }
377 >
378 > export interface IFileWriteOptions extends IFileOverwriteOptions, IFileUnlockOptions, IFileAtomicWriteOptions {
379 >
380 > /**
381 > * Set to `true` to create a file when it does not exist. Will
382 > * throw an error otherwise if the file does not exist.
383 > */
384 > readonly create: boolean;
385 >
386 > /**
387 > * Set to `true` to append content to the end of the file. Implies `create: true`,
388 > * and set only when the corresponding `FileAppend` capability is defined.
389 > */
390 > readonly append?: boolean;
391 > }
392 >
393 > export type IFileOpenOptions = IFileOpenForReadOptions | IFileOpenForWriteOptions;
394 >
395 > export function isFileOpenForWriteOptions(options: IFileOpenOptions): options is IFileOpenForWriteOptions {
396 return options.create === true;
397 }
398 > files.ts
399 > export interface IFileOpenForReadOptions {
400 >
401 > /**
402 > * A hint that the file should be opened for reading only.
403 > */
404 > readonly create: false;
405 > }
406 >
407 > export interface IFileOpenForWriteOptions extends IFileUnlockOptions {
408 >
409 > /**
410 > * A hint that the file should be opened for reading and writing.
411 > */
412 > readonly create: true;
413 >
414 > /**
415 > * Open the file in append mode. This will write data to the
416 > * end of the file.
417 > */
418 > readonly append?: boolean;
419 > }
420 >
421 > export interface IFileDeleteOptions {
422 >
423 > /**
424 > * Set to `true` to recursively delete any children of the file. This
425 > * only applies to folders and can lead to an error unless provided
426 > * if the folder is not empty.
427 > */
428 > readonly recursive: boolean;
429 >
430 > /**
431 > * Set to `true` to attempt to move the file to trash
432 > * instead of deleting it permanently from disk.
433 > *
434 > * This option maybe not be supported on all providers.
435 > */
436 > readonly useTrash: boolean;
437 >
438 > /**
439 > * The optional `atomic` flag can be used to make sure
440 > * the `delete` method deletes the target atomically by
441 > * first renaming it to a temporary resource in the same
442 > * folder and then deleting it.
443 > *
444 > * This option maybe not be supported on all providers.
445 > */
446 > readonly atomic: IFileAtomicOptions | false;
447 > }
448 >
449 > export enum FileType {
450 >
451 > /**
452 > * File is unknown (neither file, directory nor symbolic link).
453 > */
454 > Unknown = 0,
455 >
456 > /**
457 > * File is a normal file.
458 > */
459 > File = 1,
460 >
461 > /**
462 > * File is a directory.
463 > */
464 > Directory = 2,
465 >
466 > /**
467 > * File is a symbolic link.
468 > *
469 > * Note: even when the file is a symbolic link, you can test for
470 > * `FileType.File` and `FileType.Directory` to know the type of
471 > * the target the link points to.
472 > */
473 > SymbolicLink = 64
474 > }
475 >
476 > export enum FilePermission {
477 >
478 > /**
479 > * File is readonly. Components like editors should not
480 > * offer to edit the contents.
481 > */
482 > Readonly = 1,
483 >
484 > /**
485 > * File is locked. Components like editors should offer
486 > * to edit the contents and ask the user upon saving to
487 > * remove the lock.
488 > */
489 > Locked = 2,
490 >
491 > /**
492 > * File is executable. Relevant for Unix-like systems where
493 > * the executable bit determines if a file can be run.
494 > */
495 > Executable = 4
496 > }
497 >
498 > export interface IStat {
499 >
500 > /**
501 > * The file type.
502 > */
503 > readonly type: FileType;
504 >
505 > /**
506 > * The last modification date represented as millis from unix epoch.
507 > */
508 > readonly mtime: number;
509 >
510 > /**
511 > * The creation date represented as millis from unix epoch.
512 > */
513 > readonly ctime: number;
514 >
515 > /**
516 > * The size of the file in bytes.
517 > */
518 > readonly size: number;
519 >
520 > /**
521 > * The file permissions.
522 > */
523 > readonly permissions?: FilePermission;
524 > }
525 >
526 > export interface IWatchOptionsWithoutCorrelation {
527 >
528 > /**
529 > * Set to `true` to watch for changes recursively in a folder
530 > * and all of its children.
531 > */
532 > recursive: boolean;
533 >
534 > /**
535 > * A set of glob patterns or paths to exclude from watching.
536 > * Paths can be relative or absolute and when relative are
537 > * resolved against the watched folder. Glob patterns are
538 > * always matched relative to the watched folder.
539 > */
540 > excludes: string[];
541 >
542 > /**
543 > * An optional set of glob patterns or paths to include for
544 > * watching. If not provided, all paths are considered for
545 > * events.
546 > * Paths can be relative or absolute and when relative are
547 > * resolved against the watched folder. Glob patterns are
548 > * always matched relative to the watched folder.
549 > */
550 > includes?: Array<string | IRelativePattern>;
551 >
552 > /**
553 > * If provided, allows to filter the events that the watcher should consider
554 > * for emitting. If not provided, all events are emitted.
555 > *
556 > * For example, to emit added and updated events, set to:
557 > * `FileChangeFilter.ADDED | FileChangeFilter.UPDATED`.
558 > */
559 > filter?: FileChangeFilter;
560 > }
561 >
562 > export interface IWatchOptions extends IWatchOptionsWithoutCorrelation {
563 >
564 > /**
565 > * If provided, file change events from the watcher that
566 > * are a result of this watch request will carry the same
567 > * id.
568 > */
569 > readonly correlationId?: number;
570 > }
571 >
572 > export const enum FileChangeFilter {
573 > UPDATED = 1 << 1,
574 > ADDED = 1 << 2,
575 > DELETED = 1 << 3
576 > }
577 >
578 > export interface IWatchOptionsWithCorrelation extends IWatchOptions {
579 > readonly correlationId: number;
580 > }
581 >
582 > export interface IFileSystemWatcher extends IDisposable {
583 >
584 > /**
585 > * An event which fires on file/folder change only for changes
586 > * that correlate to the watch request with matching correlation
587 > * identifier.
588 > */
589 > readonly onDidChange: Event<FileChangesEvent>;
590 > }
591 >
592 > export function isFileSystemWatcher(thing: unknown): thing is IFileSystemWatcher {
593 const candidate = thing as IFileSystemWatcher | undefined;
594
595 return !!candidate && typeof candidate.onDidChange === 'function';
596 }
597 > files.ts
598 > export const enum FileSystemProviderCapabilities {
599 >
600 > /**
601 > * No capabilities.
602 > */
603 > None = 0,
604 >
605 > /**
606 > * Provider supports unbuffered read/write.
607 > */
608 > FileReadWrite = 1 << 1,
609 >
610 > /**
611 > * Provider supports open/read/write/close low level file operations.
612 > */
613 > FileOpenReadWriteClose = 1 << 2,
614 >
615 > /**
616 > * Provider supports stream based reading.
617 > */
618 > FileReadStream = 1 << 4,
619 >
620 > /**
621 > * Provider supports copy operation.
622 > */
623 > FileFolderCopy = 1 << 3,
624 >
625 > /**
626 > * Provider is path case sensitive.
627 > */
628 > PathCaseSensitive = 1 << 10,
629 >
630 > /**
631 > * All files of the provider are readonly.
632 > */
633 > Readonly = 1 << 11,
634 >
635 > /**
636 > * Provider supports to delete via trash.
637 > */
638 > Trash = 1 << 12,
639 >
640 > /**
641 > * Provider support to unlock files for writing.
642 > */
643 > FileWriteUnlock = 1 << 13,
644 >
645 > /**
646 > * Provider support to read files atomically. This implies the
647 > * provider provides the `FileReadWrite` capability too.
648 > */
649 > FileAtomicRead = 1 << 14,
650 >
651 > /**
652 > * Provider support to write files atomically. This implies the
653 > * provider provides the `FileReadWrite` capability too.
654 > */
655 > FileAtomicWrite = 1 << 15,
656 >
657 > /**
658 > * Provider support to delete atomically.
659 > */
660 > FileAtomicDelete = 1 << 16,
661 >
662 > /**
663 > * Provider support to clone files atomically.
664 > */
665 > FileClone = 1 << 17,
666 >
667 > /**
668 > * Provider support to resolve real paths.
669 > */
670 > FileRealpath = 1 << 18,
671 >
672 > /**
673 > * Provider support to append to files.
674 > */
675 > FileAppend = 1 << 19
676 > }
677 >
678 > export interface IFileSystemProvider {
679 >
680 > readonly capabilities: FileSystemProviderCapabilities;
681 > readonly onDidChangeCapabilities: Event<void>;
682 >
683 > readonly onDidChangeFile: Event<readonly IFileChange[]>;
684 > readonly onDidWatchError?: Event<string>;
685 > watch(resource: URI, opts: IWatchOptions): IDisposable;
686 >
687 > stat(resource: URI): Promise<IStat>;
688 > mkdir(resource: URI): Promise<void>;
689 > readdir(resource: URI): Promise<[string, FileType][]>;
690 > delete(resource: URI, opts: IFileDeleteOptions): Promise<void>;
691 >
692 > rename(from: URI, to: URI, opts: IFileOverwriteOptions): Promise<void>;
693 > copy?(from: URI, to: URI, opts: IFileOverwriteOptions): Promise<void>;
694 >
695 > readFile?(resource: URI): Promise<Uint8Array>;
696 > writeFile?(resource: URI, content: Uint8Array, opts: IFileWriteOptions): Promise<void>;
697 >
698 > readFileStream?(resource: URI, opts: IFileReadStreamOptions, token: CancellationToken): ReadableStreamEvents<Uint8Array>;
699 >
700 > open?(resource: URI, opts: IFileOpenOptions): Promise<number>;
701 > close?(fd: number): Promise<void>;
702 > read?(fd: number, pos: number, data: Uint8Array, offset: number, length: number): Promise<number>;
703 > write?(fd: number, pos: number, data: Uint8Array, offset: number, length: number): Promise<number>;
704 >
705 > cloneFile?(from: URI, to: URI): Promise<void>;
706 > }
707 >
708 > export interface IFileSystemProviderWithFileReadWriteCapability extends IFileSystemProvider {
709 > readFile(resource: URI): Promise<Uint8Array>;
710 > writeFile(resource: URI, content: Uint8Array, opts: IFileWriteOptions): Promise<void>;
711 > }
712 >
713 > export function hasReadWriteCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileReadWriteCapability {
714 return !!(provider.capabilities & FileSystemProviderCapabilities.FileReadWrite);
715 }
716 > files.ts
717 > export function hasFileAppendCapability(provider: IFileSystemProvider): boolean {
718 return !!(provider.capabilities & FileSystemProviderCapabilities.FileAppend);
719 }
720 > files.ts
721 > export interface IFileSystemProviderWithFileFolderCopyCapability extends IFileSystemProvider {
722 > copy(from: URI, to: URI, opts: IFileOverwriteOptions): Promise<void>;
723 > }
724 >
725 > export function hasFileFolderCopyCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileFolderCopyCapability {
726 return !!(provider.capabilities & FileSystemProviderCapabilities.FileFolderCopy);
727 }
728 > files.ts
729 > export interface IFileSystemProviderWithFileCloneCapability extends IFileSystemProvider {
730 > cloneFile(from: URI, to: URI): Promise<void>;
731 > }
732 >
733 > export function hasFileCloneCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileCloneCapability {
734 return !!(provider.capabilities & FileSystemProviderCapabilities.FileClone);
735 }
736 > files.ts
737 > export interface IFileSystemProviderWithFileRealpathCapability extends IFileSystemProvider {
738 > realpath(resource: URI): Promise<string>;
739 > }
740 >
741 > export function hasFileRealpathCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileRealpathCapability {
742 return !!(provider.capabilities & FileSystemProviderCapabilities.FileRealpath);
743 }
744 > files.ts
745 > export interface IFileSystemProviderWithOpenReadWriteCloseCapability extends IFileSystemProvider {
746 > open(resource: URI, opts: IFileOpenOptions): Promise<number>;
747 > close(fd: number): Promise<void>;
748 > read(fd: number, pos: number, data: Uint8Array, offset: number, length: number): Promise<number>;
749 > write(fd: number, pos: number, data: Uint8Array, offset: number, length: number): Promise<number>;
750 > }
751 >
752 > export function hasOpenReadWriteCloseCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithOpenReadWriteCloseCapability {
753 return !!(provider.capabilities & FileSystemProviderCapabilities.FileOpenReadWriteClose);
754 }
755 > files.ts
756 > export interface IFileSystemProviderWithFileReadStreamCapability extends IFileSystemProvider {
757 > readFileStream(resource: URI, opts: IFileReadStreamOptions, token: CancellationToken): ReadableStreamEvents<Uint8Array>;
758 > }
759 >
760 > export function hasFileReadStreamCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileReadStreamCapability {
761 return !!(provider.capabilities & FileSystemProviderCapabilities.FileReadStream);
762 }
763 > files.ts
764 > export interface IFileSystemProviderWithFileAtomicReadCapability extends IFileSystemProvider {
765 > readFile(resource: URI, opts?: IFileAtomicReadOptions): Promise<Uint8Array>;
766 > enforceAtomicReadFile?(resource: URI): boolean;
767 > }
768 >
769 > export function hasFileAtomicReadCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileAtomicReadCapability {
770 if (!hasReadWriteCapability(provider)) {
771 return false; // we require the `FileReadWrite` capability too
774 return !!(provider.capabilities & FileSystemProviderCapabilities.FileAtomicRead);
775 }
776 > files.ts
777 > export interface IFileSystemProviderWithFileAtomicWriteCapability extends IFileSystemProvider {
778 > writeFile(resource: URI, contents: Uint8Array, opts?: IFileAtomicWriteOptions): Promise<void>;
779 > enforceAtomicWriteFile?(resource: URI): IFileAtomicOptions | false;
780 > }
781 >
782 > export function hasFileAtomicWriteCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileAtomicWriteCapability {
783 if (!hasReadWriteCapability(provider)) {
784 return false; // we require the `FileReadWrite` capability too
787 return !!(provider.capabilities & FileSystemProviderCapabilities.FileAtomicWrite);
788 }
789 > files.ts
790 > export interface IFileSystemProviderWithFileAtomicDeleteCapability extends IFileSystemProvider {
791 > delete(resource: URI, opts: IFileAtomicDeleteOptions): Promise<void>;
792 > enforceAtomicDelete?(resource: URI): IFileAtomicOptions | false;
793 > }
794 >
795 > export function hasFileAtomicDeleteCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithFileAtomicDeleteCapability {
796 return !!(provider.capabilities & FileSystemProviderCapabilities.FileAtomicDelete);
797 }
798 > files.ts
799 > export interface IFileSystemProviderWithReadonlyCapability extends IFileSystemProvider {
800 >
801 > readonly capabilities: FileSystemProviderCapabilities.Readonly & FileSystemProviderCapabilities;
802 >
803 > /**
804 > * An optional message to show in the UI to explain why the file system is readonly.
805 > */
806 > readonly readOnlyMessage?: IMarkdownString;
807 > }
808 >
809 > export function hasReadonlyCapability(provider: IFileSystemProvider): provider is IFileSystemProviderWithReadonlyCapability {
810 return !!(provider.capabilities & FileSystemProviderCapabilities.Readonly);
811 }
812 > files.ts
813 > export enum FileSystemProviderErrorCode {
814 > FileExists = 'EntryExists',
815 > FileNotFound = 'EntryNotFound',
816 > FileNotADirectory = 'EntryNotADirectory',
817 > FileIsADirectory = 'EntryIsADirectory',
818 > FileExceedsStorageQuota = 'EntryExceedsStorageQuota',
819 > FileTooLarge = 'EntryTooLarge',
820 > FileWriteLocked = 'EntryWriteLocked',
821 > NoPermissions = 'NoPermissions',
822 > Unavailable = 'Unavailable',
823 > Unknown = 'Unknown'
824 > }
825 >
826 > export interface IFileSystemProviderError extends Error {
827 > readonly name: string;
828 > readonly code: FileSystemProviderErrorCode;
829 > }
830 >
831 > export class FileSystemProviderError extends Error implements IFileSystemProviderError {
832 >
833 > static create(error: Error | string, code: FileSystemProviderErrorCode): FileSystemProviderError {
834 > const providerError = new FileSystemProviderError(error.toString(), code);
835 > markAsFileSystemProviderError(providerError, code);
836 >
837 > return providerError;
838 > }
839 >
840 > private constructor(message: string, readonly code: FileSystemProviderErrorCode) {
841 super(message);
842 }
843 > } files.ts
844 >
845 > export function createFileSystemProviderError(error: Error | string, code: FileSystemProviderErrorCode): FileSystemProviderError {
846 return FileSystemProviderError.create(error, code);
847 }
848 > files.ts
849 > export function ensureFileSystemProviderError(error?: Error): Error {
850 if (!error) {
851 return createFileSystemProviderError(localize('unknownError', "Unknown Error"), FileSystemProviderErrorCode.Unknown); // https://github.com/microsoft/vscode/issues/72798
854 return error;
855 }
856 > files.ts
857 > export function markAsFileSystemProviderError(error: Error, code: FileSystemProviderErrorCode): Error {
858 error.name = code ? `${code} (FileSystemError)` : `FileSystemError`;
859
860 return error;
861 }
862 > files.ts
863 > export function toFileSystemProviderErrorCode(error: Error | undefined | null): FileSystemProviderErrorCode {
864
865 // Guard against abuse
893 return FileSystemProviderErrorCode.Unknown;
894 }
895 > files.ts
896 > export function toFileOperationResult(error: Error): FileOperationResult {
897
898 // FileSystemProviderError comes with the result already
921 }
922 }
923 > files.ts
924 > export interface IFileSystemProviderRegistrationEvent {
925 > readonly added: boolean;
926 > readonly scheme: string;
927 > readonly provider?: IFileSystemProvider;
928 > }
929 >
930 > export interface IFileSystemProviderCapabilitiesChangeEvent {
931 > readonly provider: IFileSystemProvider;
932 > readonly scheme: string;
933 > }
934 >
935 > export interface IFileSystemProviderActivationEvent {
936 > readonly scheme: string;
937 > join(promise: Promise<void>): void;
938 > }
939 >
940 > export const enum FileOperation {
941 > CREATE,
942 > DELETE,
943 > MOVE,
944 > COPY,
945 > WRITE
946 > }
947 >
948 > export interface IFileOperationEvent {
949 >
950 > readonly resource: URI;
951 > readonly operation: FileOperation;
952 >
953 > isOperation(operation: FileOperation.DELETE | FileOperation.WRITE): boolean;
954 > isOperation(operation: FileOperation.CREATE | FileOperation.MOVE | FileOperation.COPY): this is IFileOperationEventWithMetadata;
955 > }
956 >
957 > export interface IFileOperationEventWithMetadata extends IFileOperationEvent {
958 > readonly target: IFileStatWithMetadata;
959 > }
960 >
961 > export class FileOperationEvent implements IFileOperationEvent {
962 >
963 > constructor(resource: URI, operation: FileOperation.DELETE | FileOperation.WRITE);
964 > constructor(resource: URI, operation: FileOperation.CREATE | FileOperation.MOVE | FileOperation.COPY, target: IFileStatWithMetadata);
965 > constructor(readonly resource: URI, readonly operation: FileOperation, readonly target?: IFileStatWithMetadata) { }
966 >
967 > isOperation(operation: FileOperation.DELETE | FileOperation.WRITE): boolean;
968 > isOperation(operation: FileOperation.CREATE | FileOperation.MOVE | FileOperation.COPY): this is IFileOperationEventWithMetadata;
969 > isOperation(operation: FileOperation): boolean {
970 return this.operation === operation;
971 }
972 > } files.ts
973 >
974 > /**
975 > * Possible changes that can occur to a file.
976 > */
977 > export const enum FileChangeType {
978 > UPDATED,
979 > ADDED,
980 > DELETED
981 > }
982 >
983 > /**
984 > * Identifies a single change in a file.
985 > */
986 > export interface IFileChange {
987 >
988 > /**
989 > * The type of change that occurred to the file.
990 > */
991 > type: FileChangeType;
992 >
993 > /**
994 > * The unified resource identifier of the file that changed.
995 > */
996 > readonly resource: URI;
997 >
998 > /**
999 > * If provided when starting the file watcher, the correlation
1000 > * identifier will match the original file watching request as
1001 > * a way to identify the original component that is interested
1002 > * in the change.
1003 > */
1004 > readonly cId?: number;
1005 > }
1006 >
1007 > export class FileChangesEvent {
1008 >
1009 > private static readonly MIXED_CORRELATION = null;
1010 >
1011 > private readonly correlationId: number | undefined | typeof FileChangesEvent.MIXED_CORRELATION = undefined;
1012 >
1013 > constructor(changes: readonly IFileChange[], private readonly ignorePathCasing: boolean) {
1014 for (const change of changes) {
1015
1043 }
1044 }
1045 > files.ts
1046 > private readonly added = new Lazy(() => {
1047 > const added = TernarySearchTree.forUris<boolean>(() => this.ignorePathCasing); files.ts
1048 > added.fill(this.rawAdded.map(resource => [resource, true]));
1049 >
1050 > return added;
1051 > }); files.ts
1052 >
1053 > private readonly updated = new Lazy(() => {
1054 > const updated = TernarySearchTree.forUris<boolean>(() => this.ignorePathCasing); files.ts
1055 > updated.fill(this.rawUpdated.map(resource => [resource, true]));
1056 >
1057 > return updated;
1058 > }); files.ts
1059 >
1060 > private readonly deleted = new Lazy(() => {
1061 > const deleted = TernarySearchTree.forUris<boolean>(() => this.ignorePathCasing); files.ts
1062 > deleted.fill(this.rawDeleted.map(resource => [resource, true]));
1063 >
1064 > return deleted;
1065 > }); files.ts
1066 >
1067 > /**
1068 > * Find out if the file change events match the provided resource.
1069 > *
1070 > * Note: when passing `FileChangeType.DELETED`, we consider a match
1071 > * also when the parent of the resource got deleted.
1072 > */
1073 > contains(resource: URI, ...types: FileChangeType[]): boolean {
1074 return this.doContains(resource, { includeChildren: false }, ...types);
1075 }
1076 > files.ts
1077 > /**
1078 > * Find out if the file change events either match the provided
1079 > * resource, or contain a child of this resource.
1080 > */
1081 > affects(resource: URI, ...types: FileChangeType[]): boolean {
1082 return this.doContains(resource, { includeChildren: true }, ...types);
1083 }
1084 > files.ts
1085 > private doContains(resource: URI, options: { includeChildren: boolean }, ...types: FileChangeType[]): boolean {
1086 if (!resource) {
1087 return false;
1125 return false;
1126 }
1127 > files.ts
1128 > /**
1129 > * Returns if this event contains added files.
1130 > */
1131 > gotAdded(): boolean {
1132 return this.rawAdded.length > 0;
1133 }
1134 > files.ts
1135 > /**
1136 > * Returns if this event contains deleted files.
1137 > */
1138 > gotDeleted(): boolean {
1139 return this.rawDeleted.length > 0;
1140 }
1141 > files.ts
1142 > /**
1143 > * Returns if this event contains updated files.
1144 > */
1145 > gotUpdated(): boolean {
1146 return this.rawUpdated.length > 0;
1147 }
1148 > files.ts
1149 > /**
1150 > * Returns if this event contains changes that correlate to the
1151 > * provided `correlationId`.
1152 > *
1153 > * File change event correlation is an advanced watch feature that
1154 > * allows to identify from which watch request the events originate
1155 > * from. This correlation allows to route events specifically
1156 > * only to the requestor and not emit them to all listeners.
1157 > */
1158 > correlates(correlationId: number): boolean {
1159 return this.correlationId === correlationId;
1160 }
1161 > files.ts
1162 > /**
1163 > * Figure out if the event contains changes that correlate to one
1164 > * correlation identifier.
1165 > *
1166 > * File change event correlation is an advanced watch feature that
1167 > * allows to identify from which watch request the events originate
1168 > * from. This correlation allows to route events specifically
1169 > * only to the requestor and not emit them to all listeners.
1170 > */
1171 > hasCorrelation(): boolean {
1172 return typeof this.correlationId === 'number';
1173 }
1174 > files.ts
1175 > /**
1176 > * @deprecated use the `contains` or `affects` method to efficiently find
1177 > * out if the event relates to a given resource. these methods ensure:
1178 > * - that there is no expensive lookup needed (by using a `TernarySearchTree`)
1179 > * - correctly handles `FileChangeType.DELETED` events
1180 > */
1181 > readonly rawAdded: URI[] = [];
1182 >
1183 > /**
1184 > * @deprecated use the `contains` or `affects` method to efficiently find
1185 > * out if the event relates to a given resource. these methods ensure:
1186 > * - that there is no expensive lookup needed (by using a `TernarySearchTree`)
1187 > * - correctly handles `FileChangeType.DELETED` events
1188 > */
1189 > readonly rawUpdated: URI[] = [];
1190 >
1191 > /**
1192 > * @deprecated use the `contains` or `affects` method to efficiently find
1193 > * out if the event relates to a given resource. these methods ensure:
1194 > * - that there is no expensive lookup needed (by using a `TernarySearchTree`)
1195 > * - correctly handles `FileChangeType.DELETED` events
1196 > */
1197 > readonly rawDeleted: URI[] = [];
1198 > }
1199 >
1200 > export function isParent(path: string, candidate: string, ignoreCase?: boolean): boolean {
1201 if (!path || !candidate || path === candidate) {
1202 return false;
1217 return path.indexOf(candidate) === 0;
1218 }
1219 > files.ts
1220 > export interface IBaseFileStat {
1221 >
1222 > /**
1223 > * The unified resource identifier of this file or folder.
1224 > */
1225 > readonly resource: URI;
1226 >
1227 > /**
1228 > * The name which is the last segment
1229 > * of the {{path}}.
1230 > */
1231 > readonly name: string;
1232 >
1233 > /**
1234 > * The size of the file.
1235 > *
1236 > * The value may or may not be resolved as
1237 > * it is optional.
1238 > */
1239 > readonly size?: number;
1240 >
1241 > /**
1242 > * The last modification date represented as millis from unix epoch.
1243 > *
1244 > * The value may or may not be resolved as
1245 > * it is optional.
1246 > */
1247 > readonly mtime?: number;
1248 >
1249 > /**
1250 > * The creation date represented as millis from unix epoch.
1251 > *
1252 > * The value may or may not be resolved as
1253 > * it is optional.
1254 > */
1255 > readonly ctime?: number;
1256 >
1257 > /**
1258 > * A unique identifier that represents the
1259 > * current state of the file or directory.
1260 > *
1261 > * The value may or may not be resolved as
1262 > * it is optional.
1263 > */
1264 > readonly etag?: string;
1265 >
1266 > /**
1267 > * File is readonly. Components like editors should not
1268 > * offer to edit the contents.
1269 > */
1270 > readonly readonly?: boolean;
1271 >
1272 > /**
1273 > * File is locked. Components like editors should offer
1274 > * to edit the contents and ask the user upon saving to
1275 > * remove the lock.
1276 > */
1277 > readonly locked?: boolean;
1278 >
1279 > /**
1280 > * File is executable. Relevant for Unix-like systems where
1281 > * the executable bit determines if a file can be run.
1282 > */
1283 > readonly executable?: boolean;
1284 > }
1285 >
1286 > export interface IBaseFileStatWithMetadata extends Required<IBaseFileStat> { }
1287 >
1288 > /**
1289 > * A file resource with meta information and resolved children if any.
1290 > */
1291 > export interface IFileStat extends IBaseFileStat {
1292 >
1293 > /**
1294 > * The resource is a file.
1295 > */
1296 > readonly isFile: boolean;
1297 >
1298 > /**
1299 > * The resource is a directory.
1300 > */
1301 > readonly isDirectory: boolean;
1302 >
1303 > /**
1304 > * The resource is a symbolic link. Note: even when the
1305 > * file is a symbolic link, you can test for `FileType.File`
1306 > * and `FileType.Directory` to know the type of the target
1307 > * the link points to.
1308 > */
1309 > readonly isSymbolicLink: boolean;
1310 >
1311 > /**
1312 > * The children of the file stat or undefined if none.
1313 > */
1314 > children: IFileStat[] | undefined;
1315 > }
1316 >
1317 > export interface IFileStatWithMetadata extends IFileStat, IBaseFileStatWithMetadata {
1318 > readonly mtime: number;
1319 > readonly ctime: number;
1320 > readonly etag: string;
1321 > readonly size: number;
1322 > readonly readonly: boolean;
1323 > readonly locked: boolean;
1324 > readonly executable: boolean;
1325 > readonly children: IFileStatWithMetadata[] | undefined;
1326 > }
1327 >
1328 > export interface IFileStatResult {
1329 > readonly stat?: IFileStat;
1330 > readonly success: boolean;
1331 > }
1332 >
1333 > export interface IFileStatResultWithMetadata extends IFileStatResult {
1334 > readonly stat?: IFileStatWithMetadata;
1335 > }
1336 >
1337 > export interface IFileStatWithPartialMetadata extends Omit<IFileStatWithMetadata, 'children'> { }
1338 >
1339 > export interface IFileContent extends IBaseFileStatWithMetadata {
1340 >
1341 > /**
1342 > * The content of a file as buffer.
1343 > */
1344 > readonly value: VSBuffer;
1345 > }
1346 >
1347 > export interface IFileStreamContent extends IBaseFileStatWithMetadata {
1348 >
1349 > /**
1350 > * The content of a file as stream.
1351 > */
1352 > readonly value: VSBufferReadableStream;
1353 > }
1354 >
1355 > export interface IBaseReadFileOptions extends IFileReadStreamOptions {
1356 >
1357 > /**
1358 > * The optional etag parameter allows to return early from resolving the resource if
1359 > * the contents on disk match the etag. This prevents accumulated reading of resources
1360 > * that have been read already with the same etag.
1361 > * It is the task of the caller to makes sure to handle this error case from the promise.
1362 > */
1363 > readonly etag?: string;
1364 > }
1365 >
1366 > export interface IReadFileStreamOptions extends IBaseReadFileOptions { }
1367 >
1368 > export interface IReadFileOptions extends IBaseReadFileOptions {
1369 >
1370 > /**
1371 > * The optional `atomic` flag can be used to make sure
1372 > * the `readFile` method is not running in parallel with
1373 > * any `write` operations in the same process.
1374 > *
1375 > * Typically you should not need to use this flag but if
1376 > * for example you are quickly reading a file right after
1377 > * a file event occurred and the file changes a lot, there
1378 > * is a chance that a read returns an empty or partial file
1379 > * because a pending write has not finished yet.
1380 > *
1381 > * Note: this does not prevent the file from being written
1382 > * to from a different process. If you need such atomic
1383 > * operations, you better use a real database as storage.
1384 > */
1385 > readonly atomic?: boolean;
1386 > }
1387 >
1388 > export interface IWriteFileOptions {
1389 >
1390 > /**
1391 > * The last known modification time of the file. This can be used to prevent dirty writes.
1392 > */
1393 > readonly mtime?: number;
1394 >
1395 > /**
1396 > * The etag of the file. This can be used to prevent dirty writes.
1397 > */
1398 > readonly etag?: string;
1399 >
1400 > /**
1401 > * Whether to attempt to unlock a file before writing.
1402 > */
1403 > readonly unlock?: boolean;
1404 >
1405 > /**
1406 > * The optional `atomic` flag can be used to make sure
1407 > * the `writeFile` method updates the target file atomically
1408 > * by first writing to a temporary file in the same folder
1409 > * and then renaming it over the target.
1410 > */
1411 > readonly atomic?: IFileAtomicOptions | false;
1412 >
1413 > /**
1414 > * If set to true, will append to the end of the file instead of
1415 > * replacing its contents. Will create the file if it doesn't exist.
1416 > */
1417 > readonly append?: boolean;
1418 > }
1419 >
1420 > export interface IResolveFileOptions {
1421 >
1422 > /**
1423 > * Automatically continue resolving children of a directory until the provided resources
1424 > * are found.
1425 > */
1426 > readonly resolveTo?: readonly URI[];
1427 >
1428 > /**
1429 > * Automatically continue resolving children of a directory if the number of children is 1.
1430 > */
1431 > readonly resolveSingleChildDescendants?: boolean;
1432 >
1433 > /**
1434 > * Will resolve mtime, ctime, size and etag of files if enabled. This can have a negative impact
1435 > * on performance and thus should only be used when these values are required.
1436 > */
1437 > readonly resolveMetadata?: boolean;
1438 > }
1439 >
1440 > export interface IResolveMetadataFileOptions extends IResolveFileOptions {
1441 > readonly resolveMetadata: true;
1442 > }
1443 >
1444 > export interface ICreateFileOptions {
1445 >
1446 > /**
1447 > * Overwrite the file to create if it already exists on disk. Otherwise
1448 > * an error will be thrown (FILE_MODIFIED_SINCE).
1449 > */
1450 > readonly overwrite?: boolean;
1451 > }
1452 >
1453 > export class FileOperationError extends Error {
1454 > constructor(
1455 message: string,
1456 readonly fileOperationResult: FileOperationResult,
1459 super(message);
1460 }
1461 > } files.ts
1462 >
1463 > export class TooLargeFileOperationError extends FileOperationError {
1464 > constructor(
1465 message: string,
1466 override readonly fileOperationResult: FileOperationResult.FILE_TOO_LARGE,
1470 super(message, fileOperationResult, options);
1471 }
1472 > } files.ts
1473 >
1474 > export class NotModifiedSinceFileOperationError extends FileOperationError {
1475 >
1476 > constructor(
1477 message: string,
1478 readonly stat: IFileStatWithMetadata,
1481 super(message, FileOperationResult.FILE_NOT_MODIFIED_SINCE, options);
1482 }
1483 > } files.ts
1484 >
1485 > export const enum FileOperationResult {
1486 > FILE_IS_DIRECTORY,
1487 > FILE_NOT_FOUND,
1488 > FILE_NOT_MODIFIED_SINCE,
1489 > FILE_MODIFIED_SINCE,
1490 > FILE_MOVE_CONFLICT,
1491 > FILE_WRITE_LOCKED,
1492 > FILE_PERMISSION_DENIED,
1493 > FILE_TOO_LARGE,
1494 > FILE_INVALID_PATH,
1495 > FILE_NOT_DIRECTORY,
1496 > FILE_OTHER_ERROR
1497 > }
1498 >
1499 > //#endregion
1500 >
1501 > //#region Settings
1502 >
1503 > export const AutoSaveConfiguration = {
1504 > OFF: 'off',
1505 > AFTER_DELAY: 'afterDelay',
1506 > ON_FOCUS_CHANGE: 'onFocusChange',
1507 > ON_WINDOW_CHANGE: 'onWindowChange'
1508 > };
1509 >
1510 > export const HotExitConfiguration = {
1511 > OFF: 'off',
1512 > ON_EXIT: 'onExit',
1513 > ON_EXIT_AND_WINDOW_CLOSE: 'onExitAndWindowClose'
1514 > };
1515 >
1516 > export const FILES_ASSOCIATIONS_CONFIG = 'files.associations';
1517 > export const FILES_EXCLUDE_CONFIG = 'files.exclude';
1518 > export const FILES_READONLY_INCLUDE_CONFIG = 'files.readonlyInclude';
1519 > export const FILES_READONLY_EXCLUDE_CONFIG = 'files.readonlyExclude';
1520 > export const FILES_READONLY_FROM_PERMISSIONS_CONFIG = 'files.readonlyFromPermissions';
1521 >
1522 > export interface IGlobPatterns {
1523 > [filepattern: string]: boolean;
1524 > }
1525 >
1526 > export interface IFilesConfiguration {
1527 > files?: IFilesConfigurationNode;
1528 > }
1529 >
1530 > export interface IFilesConfigurationNode {
1531 > associations: { [filepattern: string]: string };
1532 > exclude: IExpression;
1533 > watcherExclude: IGlobPatterns;
1534 > watcherInclude: string[];
1535 > encoding: string;
1536 > autoGuessEncoding: boolean;
1537 > candidateGuessEncodings: string[];
1538 > defaultLanguage: string;
1539 > trimTrailingWhitespace: boolean;
1540 > autoSave: string;
1541 > autoSaveDelay: number;
1542 > autoSaveWorkspaceFilesOnly: boolean;
1543 > autoSaveWhenNoErrors: boolean;
1544 > eol: string;
1545 > enableTrash: boolean;
1546 > hotExit: string;
1547 > saveConflictResolution: 'askUser' | 'overwriteFileOnDisk';
1548 > readonlyInclude: IGlobPatterns;
1549 > readonlyExclude: IGlobPatterns;
1550 > readonlyFromPermissions: boolean;
1551 > }
1552 >
1553 > //#endregion
1554 >
1555 > //#region Utilities
1556 >
1557 > export enum FileKind {
1558 > FILE,
1559 > FOLDER,
1560 > ROOT_FOLDER
1561 > }
1562 >
1563 > /**
1564 > * A hint to disable etag checking for reading/writing.
1565 > */
1566 > export const ETAG_DISABLED = '';
1567 >
1568 > export function etag(stat: { mtime: number; size: number }): string;
1569 > export function etag(stat: { mtime: number | undefined; size: number | undefined }): string | undefined;
1570 > export function etag(stat: { mtime: number | undefined; size: number | undefined }): string | undefined {
1571 if (typeof stat.size !== 'number' || typeof stat.mtime !== 'number') {
1572 return undefined;
1575 return stat.mtime.toString(29) + stat.size.toString(31);
1576 }
1577 > files.ts
1578 export async function whenProviderRegistered(file: URI, fileService: IFileService): Promise<void> {
1579 if (fileService.hasProvider(URI.from({ scheme: file.scheme }))) {
1590 });
1591 }
1592 > files.ts
1593 > /**
1594 > * Helper to format a raw byte size into a human readable label.
1595 > */
1596 > export class ByteSize {
1597 >
1598 > static readonly KB = 1024;
1599 > static readonly MB = ByteSize.KB * ByteSize.KB;
1600 > static readonly GB = ByteSize.MB * ByteSize.KB;
1601 > static readonly TB = ByteSize.GB * ByteSize.KB;
1602 >
1603 > static formatSize(size: number): string {
1604 if (!isNumber(size)) {
1605 size = 0;
1624 return localize('sizeTB', "{0}TB", (size / ByteSize.TB).toFixed(2));
1625 }
1626 > } files.ts
1627 >
1628 > // File limits
1629 >
1630 > export function getLargeFileConfirmationLimit(remoteAuthority?: string): number;
1631 > export function getLargeFileConfirmationLimit(uri?: URI): number;
1632 > export function getLargeFileConfirmationLimit(arg?: string | URI): number {
1633 const isRemote = typeof arg === 'string' || arg?.scheme === Schemas.vscodeRemote;
1634 const isLocal = typeof arg !== 'string' && arg?.scheme === Schemas.file;
1655 return 1024 * ByteSize.MB;
1656 }
1657 > files.ts
1658 > //#endregion
src/vs/platform/agentHost/common/state/protocol/channels-session/state.ts 1351 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { Changeset } from '../channels-changeset/state.js';
10 > import type { AnnotationsSummary } from '../channels-annotations/state.js';
11 > import type { ChatSummary, ChatInputRequest, ToolCallConfirmationState, ToolCallState, ToolCallAuthRequiredState } from '../channels-chat/state.js';
12 > import type { ConfigPropertySchema, ErrorInfo, Icon, ProtectedResourceMetadata, TextRange, URI } from '../common/state.js';
13 >
14 > // ─── Session State ───────────────────────────────────────────────────────────
15 >
16 > /**
17 > * Session initialization state.
18 > *
19 > * @category Session State
20 > */
21 > export const enum SessionLifecycle {
22 > Creating = 'creating',
23 > Ready = 'ready',
24 > CreationFailed = 'creationFailed',
25 > }
26 >
27 > /**
28 > * Bitset of summary-level session status flags.
29 > *
30 > * Use bitwise checks instead of equality for non-terminal activity. For example,
31 > * `status & SessionStatus.InProgress` matches both ordinary in-progress turns
32 > * and turns that are paused waiting for input.
33 > *
34 > * @category Session State
35 > */
36 > export const enum SessionStatus {
37 > /** Session is idle — no turn is active. */
38 > Idle = 1,
39 > /** Session ended with an error. */
40 > Error = 1 << 1,
41 > /** A turn is actively streaming. */
42 > InProgress = 1 << 3,
43 > /** A turn is in progress but blocked waiting for user input or tool confirmation. */
44 > InputNeeded = (1 << 3) | (1 << 4),
45 > /** The client has viewed this session since its last modification. */
46 > IsRead = 1 << 5,
47 > /** The session has been archived by the client. */
48 > IsArchived = 1 << 6,
49 > }
50 >
51 > /**
52 > * Metadata shared between the full {@link SessionState} (delivered when a
53 > * client subscribes to a session's URI) and the lightweight
54 > * {@link SessionSummary} (carried in the root-channel session catalog).
55 > *
56 > * These fields describe the session at a glance and appear in both places.
57 > * `SessionState` owns the authoritative values for a subscribed session;
58 > * `SessionSummary` mirrors them into the catalog so clients that only render a
59 > * session list don't have to subscribe to every session URI. The host keeps
60 > * the catalog in sync via `root/sessionSummaryChanged`.
61 > *
62 > * @category Session State
63 > */
64 > export interface SessionMetadata {
65 > /** Agent provider ID */
66 > provider: string;
67 > /** Session title */
68 > title: string;
69 > /** Current session status */
70 > status: SessionStatus;
71 > /** Human-readable description of what the session is currently doing */
72 > activity?: string;
73 > /** Server-owned project for this session */
74 > project?: ProjectInfo;
75 > /**
76 > * The working directories the session's agent has tool access to, as
77 > * maintained by the `session/workingDirectorySet` /
78 > * `session/workingDirectoryRemoved` actions. Directories are **equal peers** —
79 > * the session has no primary. Individual chats MAY restrict to a subset via
80 > * {@link ChatSummary.workingDirectories | their own `workingDirectories`} and
81 > * designate one of their own directories as primary (see
82 > * {@link ChatState.primaryWorkingDirectory}); a chat that sets no subset
83 > * operates against this full set.
84 > */
85 > workingDirectories?: URI[];
86 > /**
87 > * Lightweight summary of this session's inline annotations channel
88 > * (`ahp-session:/<uuid>/annotations`). Surfaced so badge UI can render
89 > * annotation / entry counts without subscribing. Absent when the session
90 > * does not expose an annotations channel.
91 > */
92 > annotations?: AnnotationsSummary;
93 > }
94 >
95 > /**
96 > * Full state for a single session, loaded when a client subscribes to the session's URI.
97 > *
98 > * Inlines (denormalizes) every {@link SessionMetadata} field directly onto
99 > * itself so subscribers receive one flat object instead of a nested summary.
100 > * The lightweight catalog representation is {@link SessionSummary}, surfaced on
101 > * the root channel; the host keeps the two in sync via
102 > * `root/sessionSummaryChanged`.
103 > *
104 > * @category Session State
105 > */
106 > export interface SessionState extends SessionMetadata {
107 > /** Session initialization state */
108 > lifecycle: SessionLifecycle;
109 > /** Error details if creation failed */
110 > creationError?: ErrorInfo;
111 > /** Tools provided by the server (agent host) for this session */
112 > serverTools?: ToolDefinition[];
113 > /**
114 > * The clients currently providing tools and interactive capabilities to this
115 > * session. If multiple tools or customizations are provided by the same
116 > * active client, an agent host MAY deduplicate them when exposed to a model,
117 > * with a preference given to the client that started the turn.
118 > *
119 > * Membership is host-managed: clients add (or refresh) themselves with
120 > * `session/activeClientSet`, and the host removes them with
121 > * `session/activeClientRemoved` when they unsubscribe, disconnect without
122 > * reconnecting in time, or reconnect without resubscribing to the session.
123 > */
124 > activeClients: SessionActiveClient[];
125 > /** Catalog of chats in this session. */
126 > chats: ChatSummary[];
127 > /**
128 > * The chat that receives input when the user addresses the session without
129 > * selecting a specific chat. This is a UI routing hint, not a hierarchy
130 > * marker — chats remain equal peers at the protocol level. Hosts MAY change
131 > * this over the session's lifetime.
132 > */
133 > defaultChat?: URI;
134 > /** Session configuration schema and current values */
135 > config?: SessionConfigState;
136 > /**
137 > * Top-level customizations active in this session.
138 > *
139 > * Always one of the {@link Customization} variants:
140 > *
141 > * - Container customizations ({@link PluginCustomization},
142 > * {@link DirectoryCustomization}) whose children — agents, skills,
143 > * prompts, rules, hooks, MCP servers — live in each container's
144 > * {@link ContainerCustomizationBase.children | `children`} array.
145 > * - Top-level {@link McpServerCustomization} entries the host
146 > * surfaces directly (for example a globally-configured MCP server
147 > * that isn't bundled in a plugin or directory). MCP servers may
148 > * also appear as children of a container.
149 > *
150 > * Client-published plugins arrive via
151 > * {@link SessionActiveClient.customizations | `activeClients[].customizations`}
152 > * and the host propagates them into this list (typically with the
153 > * container's `clientId` set and `children` populated). Clients
154 > * publish in container shape only; bare MCP servers at the top level
155 > * are server-originated.
156 > */
157 > customizations?: Customization[];
158 > /**
159 > * Catalogue of changesets the server can produce for this session. Each
160 > * entry advertises a subscribable view of file changes (uncommitted,
161 > * session-wide, per-turn, etc.) and the URI template the client expands
162 > * before subscribing. See {@link Changeset} for the full shape and
163 > * {@link /guide/changesets | Changesets} for an overview of the model.
164 > */
165 > changesets?: Changeset[];
166 > /**
167 > * Outstanding input the session is blocked on, aggregated across every chat
168 > * so a client can discover and answer it from the session channel alone,
169 > * without subscribing to individual chats.
170 > *
171 > * Each entry is self-sufficient: it carries the owning chat's URI plus every
172 > * identifier the client needs to respond. A client answers by dispatching the
173 > * ordinary `chat/*` action to that chat's channel — see
174 > * {@link SessionInputRequest} for the per-variant response path. A present,
175 > * non-empty list implies {@link SessionStatus.InputNeeded} on
176 > * {@link SessionSummary.status}.
177 > *
178 > * Host-managed: the host upserts entries with `session/inputNeededSet` as
179 > * chats raise requests and removes them with `session/inputNeededRemoved`
180 > * once the underlying request resolves.
181 > */
182 > inputNeeded?: SessionInputRequest[];
183 > /**
184 > * Additional provider-specific metadata for this session.
185 > *
186 > * Clients MAY look for well-known keys here to provide enhanced UI.
187 > * For example, a `git` key may provide extra git metadata about the session's
188 > * working directories.
189 > */
190 > _meta?: Record<string, unknown>;
191 > }
192 >
193 > /**
194 > * A client currently providing tools and interactive capabilities to a session.
195 > *
196 > * A session MAY have several active clients at once; entries in
197 > * {@link SessionState.activeClients} are keyed by `clientId`. The server SHOULD
198 > * automatically remove an active client when that client disconnects.
199 > *
200 > * @category Session State
201 > */
202 > export interface SessionActiveClient {
203 > /** Client identifier (matches `clientId` from `initialize`) */
204 > clientId: string;
205 > /** Human-readable client name (e.g. `"VS Code"`) */
206 > displayName?: string;
207 > /** Tools this client provides to the session */
208 > tools: ToolDefinition[];
209 > /**
210 > * Plugin customizations this client contributes to the session.
211 > *
212 > * Clients publish in [Open Plugins](https://open-plugins.com/) format
213 > * — i.e. always container-shaped plugins. They MAY synthesize virtual
214 > * plugins in memory and rely on the host to expand them into concrete
215 > * children inside {@link SessionState.customizations}.
216 > */
217 > customizations?: ClientPluginCustomization[];
218 > }
219 >
220 > // ─── Session Input Requests ──────────────────────────────────────────────────
221 >
222 > /**
223 > * Discriminant for the kinds of outstanding input a session can surface in
224 > * {@link SessionState.inputNeeded}.
225 > *
226 > * This is a general/typological union (not a lifecycle), so the discriminant is
227 > * a `*Kind`.
228 > *
229 > * @category Session Input Types
230 > */
231 > export const enum SessionInputRequestKind {
232 > /** A user-facing elicitation mirrored from an unresolved chat response part. */
233 > ChatInput = 'chatInput',
234 > /** A tool call awaiting parameter- or result-confirmation. */
235 > ToolConfirmation = 'toolConfirmation',
236 > /** A running tool the session wants an active client to execute. */
237 > ToolClientExecution = 'toolClientExecution',
238 > /** A tool call blocked on MCP authentication mid-execution. */
239 > ToolAuthentication = 'toolAuthentication',
240 > }
241 >
242 > /**
243 > * Fields common to every {@link SessionInputRequest} variant.
244 > *
245 > * @category Session Input Types
246 > */
247 > interface SessionInputRequestBase {
248 > /**
249 > * Stable key for this entry, unique within the session's
250 > * {@link SessionState.inputNeeded} list. The host derives it however it likes
251 > * (for example from the chat URI plus the underlying request or tool-call
252 > * id); consumers MUST treat it as opaque. It is the key for the
253 > * `session/inputNeededSet` / `session/inputNeededRemoved` upsert convention.
254 > */
255 > id: string;
256 > /**
257 > * The chat the underlying request lives in. This is the channel a client
258 > * dispatches its response to — it does not need to have subscribed to that
259 > * chat first.
260 > */
261 > chat: URI;
262 > }
263 >
264 > /**
265 > * A user-input elicitation surfaced at the session level, mirroring the request
266 > * from an unresolved {@link InputRequestResponsePart} in the owning chat.
267 > *
268 > * Respond by dispatching `chat/inputCompleted` (or syncing drafts with
269 > * `chat/inputAnswerChanged`) to {@link SessionInputRequestBase.chat | `chat`},
270 > * keyed by {@link ChatInputRequest.id | `request.id`}.
271 > *
272 > * @category Session Input Types
273 > */
274 > export interface SessionChatInputRequest extends SessionInputRequestBase {
275 > kind: SessionInputRequestKind.ChatInput;
276 > /** The mirrored chat input request. */
277 > request: ChatInputRequest;
278 > }
279 >
280 > /**
281 > * A tool call blocked on confirmation — either parameter confirmation before
282 > * execution or result confirmation after — surfaced at the session level.
283 > *
284 > * Respond by dispatching `chat/toolCallConfirmed` (for
285 > * {@link ToolCallPendingConfirmationState}) or `chat/toolCallResultConfirmed`
286 > * (for {@link ToolCallPendingResultConfirmationState}) to
287 > * {@link SessionInputRequestBase.chat | `chat`}, keyed by `turnId` and
288 > * `toolCall.toolCallId`.
289 > *
290 > * @category Session Input Types
291 > */
292 > export interface SessionToolConfirmationRequest extends SessionInputRequestBase {
293 > kind: SessionInputRequestKind.ToolConfirmation;
294 > /** The turn the tool call belongs to. */
295 > turnId: string;
296 > /** The tool call awaiting confirmation. */
297 > toolCall: ToolCallConfirmationState;
298 > }
299 >
300 > /**
301 > * A running tool whose execution is delegated to an active client. Surfaced so
302 > * a client that provides the tool can pick up the work without subscribing to
303 > * the owning chat.
304 > *
305 > * The {@link toolCall} is always a {@link ToolCallRunningState} (a
306 > * {@link ToolCallState} in `running` status) whose
307 > * {@link ToolCallRunningState.contributor | `contributor`} is a client
308 > * {@link ToolCallClientContributor} whose `clientId` matches the denormalized
309 > * {@link clientId} here. Execute and report the result by dispatching
310 > * `chat/toolCallComplete` (and optionally streaming with
311 > * `chat/toolCallContentChanged`) to {@link SessionInputRequestBase.chat |
312 > * `chat`}, keyed by `turnId` and `toolCall.toolCallId`.
313 > *
314 > * @category Session Input Types
315 > */
316 > export interface SessionToolClientExecutionRequest extends SessionInputRequestBase {
317 > kind: SessionInputRequestKind.ToolClientExecution;
318 > /** The turn the tool call belongs to. */
319 > turnId: string;
320 > /**
321 > * The `clientId` expected to execute the tool. Matches the `clientId` of the
322 > * tool call's client {@link ToolCallContributor}.
323 > */
324 > clientId: string;
325 > /**
326 > * The running tool call the session wants the owning client to execute. The
327 > * host only ever populates this with a {@link ToolCallRunningState} (i.e. a
328 > * {@link ToolCallState} in `running` status).
329 > */
330 > toolCall: ToolCallState;
331 > }
332 >
333 > /**
334 > * A tool call blocked on MCP authentication mid-execution, surfaced at the
335 > * session level.
336 > *
337 > * The {@link toolCall} is always a {@link ToolCallAuthRequiredState} (a
338 > * {@link ToolCallState} in `auth-required` status). Unlike
339 > * {@link SessionToolConfirmationRequest}, this is **not** answered by
340 > * dispatching a `chat/*` action directly: the client obtains a token for
341 > * {@link ToolCallAuthRequiredState.auth | `toolCall.auth`}`.resource` and
342 > * pushes it via the existing `authenticate` command (see
343 > * {@link /specification/authentication | Authentication}). The host resumes
344 > * the tool call and dispatches `chat/toolCallAuthResolved` once the token is
345 > * accepted, at which point it also removes this entry with
346 > * `session/inputNeededRemoved`.
347 > *
348 > * @category Session Input Types
349 > */
350 > export interface SessionToolAuthenticationRequest extends SessionInputRequestBase {
351 > kind: SessionInputRequestKind.ToolAuthentication;
352 > /** The turn the tool call belongs to. */
353 > turnId: string;
354 > /** The tool call awaiting authentication. */
355 > toolCall: ToolCallAuthRequiredState;
356 > }
357 >
358 > /**
359 > * One outstanding piece of input a session is blocked on, aggregated across all
360 > * chats in {@link SessionState.inputNeeded}.
361 > *
362 > * Each entry is self-sufficient: it carries the owning
363 > * {@link SessionInputRequestBase.chat | `chat`} URI plus every identifier needed
364 > * to construct the response, so a client can answer by dispatching the ordinary
365 > * `chat/*` action (`chat/inputCompleted`, `chat/toolCallConfirmed`,
366 > * `chat/toolCallComplete`, …) to that chat's channel **without having subscribed
367 > * to the chat** — except {@link SessionToolAuthenticationRequest}, which is
368 > * resolved via the `authenticate` command instead. The host removes the entry
369 > * with `session/inputNeededRemoved` once the underlying request resolves.
370 > *
371 > * @category Session Input Types
372 > */
373 > export type SessionInputRequest =
374 > | SessionChatInputRequest
375 > | SessionToolConfirmationRequest
376 > | SessionToolClientExecutionRequest
377 > | SessionToolAuthenticationRequest;
378 >
379 > /**
380 > * Server-owned project metadata for a session.
381 > *
382 > * @category Session State
383 > */
384 > export interface ProjectInfo {
385 > /** Project URI */
386 > uri: URI;
387 > /** Human-readable project name */
388 > displayName: string;
389 > }
390 >
391 > /**
392 > * Lightweight catalog entry summarizing one session. Surfaced via
393 > * {@link RootChannelCommands.listSessions | `root/listSessions`} and
394 > * `root/sessionAdded`/`root/sessionSummaryChanged` notifications.
395 > *
396 > * **Aggregation across chats.** Once a session contains more than one chat,
397 > * several `SessionSummary` fields are derived from the underlying
398 > * {@link SessionState.chats | chat catalog}. Producers SHOULD follow these
399 > * rules so clients that only consume the session summary (e.g. a session
400 > * list) still see meaningful state:
401 > *
402 > * - `status`: take the activity bits (`Idle` / `InProgress` / `InputNeeded` /
403 > * `Error` — bits 0–4) from the
404 > * {@link SessionState.defaultChat | default chat} when present, else from
405 > * the most recently modified chat. **Promote** `InputNeeded` whenever any
406 > * chat in the session needs input, and **promote** `Error` whenever any
407 > * chat is in an error state — both override the default-chat bits. The
408 > * orthogonal flag bits (`IsRead`, `IsArchived`) remain session-scoped.
409 > * - `activity`: mirror the activity string of the default chat, or of the
410 > * chat currently driving the promoted status bits when a non-default chat
411 > * wins (e.g. the chat that raised `InputNeeded`).
412 > * - `modifiedAt`: the max of all chats' `modifiedAt`.
413 > * - `workingDirectories`: the session-level set. Individual chats MAY restrict
414 > * to a subset via {@link ChatSummary.workingDirectories}; aggregating these
415 > * up is meaningless and SHOULD NOT be attempted.
416 > * - `changes`: optional roll-up across all chats. Producers MAY sum the
417 > * per-chat changeset stats or report the most expensive chat's stats —
418 > * whichever is cheaper for the host to compute.
419 > *
420 > * Sessions with a single chat trivially satisfy all of the above (the chat's
421 > * values pass through unchanged). The rules only matter once a session
422 > * carries multiple chats.
423 > *
424 > * @category Session State
425 > */
426 > export interface SessionSummary extends SessionMetadata {
427 > /** Session URI */
428 > resource: URI;
429 > /** Creation timestamp (ISO 8601, e.g. `"2025-03-10T18:42:03.123Z"`) */
430 > createdAt: string;
431 > /** Last modification timestamp (ISO 8601, e.g. `"2025-03-10T18:42:03.123Z"`) */
432 > modifiedAt: string;
433 > /**
434 > * Aggregate summary of file changes associated with this session. Servers
435 > * may populate this to give clients a quick at-a-glance view of the
436 > * session's footprint (e.g., for list rendering) without requiring the
437 > * client to subscribe to a changeset.
438 > */
439 > changes?: ChangesSummary;
440 > /**
441 > * Lightweight server-defined metadata clients may use for the session
442 > * presentation. The protocol does not interpret these values; producers
443 > * SHOULD keep the payload small because summaries appear in session lists
444 > * and session notifications.
445 > */
446 > _meta?: Record<string, unknown>;
447 > }
448 >
449 > /**
450 > * Aggregate counts describing the file changes associated with a session.
451 > *
452 > * All fields are optional so servers can populate only the metrics they
453 > * cheaply have available.
454 > *
455 > * @category Session State
456 > */
457 > export interface ChangesSummary {
458 > /** Total number of inserted lines across all changed files. */
459 > additions?: number;
460 > /** Total number of deleted lines across all changed files. */
461 > deletions?: number;
462 > /** Number of files that have changes. */
463 > files?: number;
464 > }
465 >
466 > // ─── Agent Selection ─────────────────────────────────────────────────────────
467 >
468 > /**
469 > * A selected custom agent for a session.
470 > *
471 > * The `uri` identifies a specific custom agent (matching an
472 > * {@link AgentCustomization.uri | `AgentCustomization.uri`} exposed via
473 > * the session's effective customizations). Consumers resolve the agent's
474 > * display name by looking up `uri` in the session's customization tree.
475 > *
476 > * A message with no `agent` selected uses the provider's default behavior.
477 > *
478 > * @category Session State
479 > */
480 > export interface AgentSelection {
481 > /** Stable agent URI (matches an {@link AgentCustomization.uri}). */
482 > uri: URI;
483 > }
484 >
485 > // ─── Session Config Types ────────────────────────────────────────────────────
486 >
487 > /**
488 > * A session configuration property descriptor.
489 > *
490 > * Extends the generic {@link ConfigPropertySchema} with session-specific
491 > * display extensions.
492 > *
493 > * @category Session Config Types
494 > */
495 > export interface SessionConfigPropertySchema extends ConfigPropertySchema {
496 > /**
497 > * Display extension: when `true`, the full set of allowed values is too large
498 > * to enumerate statically. The client SHOULD use `sessionConfigCompletions`
499 > * to fetch matching values based on user input. Any values in `enum` are
500 > * seed/recent values for initial display.
501 > */
502 > enumDynamic?: boolean;
503 > /** When `true`, the user may change this property after session creation */
504 > sessionMutable?: boolean;
505 > }
506 >
507 > /**
508 > * A JSON Schema object describing available session configuration metadata.
509 > *
510 > * @category Session Config Types
511 > */
512 > export interface SessionConfigSchema {
513 > /** JSON Schema: always `'object'` */
514 > type: 'object';
515 > /** JSON Schema: property descriptors keyed by property id */
516 > properties: Record<string, SessionConfigPropertySchema>;
517 > /** JSON Schema: list of required property ids */
518 > required?: string[];
519 > }
520 >
521 > /**
522 > * Live session configuration metadata.
523 > *
524 > * The schema describes the available configuration properties and the values
525 > * contain the current value for each resolved property.
526 > *
527 > * @category Session Config Types
528 > */
529 > export interface SessionConfigState {
530 > /** JSON Schema describing available configuration properties */
531 > schema: SessionConfigSchema;
532 > /** Current configuration values */
533 > values: Record<string, unknown>;
534 > }
535 >
536 > // ─── Tool Definition Types ───────────────────────────────────────────────────
537 >
538 > /**
539 > * Describes a tool available in a session, provided by either the server or the active client.
540 > *
541 > * @category Tool Definition Types
542 > */
543 > export interface ToolDefinition {
544 > /** Unique tool identifier */
545 > name: string;
546 > /** Human-readable display name */
547 > title?: string;
548 > /** Description of what the tool does */
549 > description?: string;
550 > /**
551 > * JSON Schema defining the expected input parameters.
552 > *
553 > * Optional because client-provided tools may not have formal schemas.
554 > * Mirrors MCP `Tool.inputSchema`.
555 > */
556 > inputSchema?: {
557 > type: 'object';
558 > properties?: Record<string, object>;
559 > required?: string[];
560 > };
561 > /**
562 > * JSON Schema defining the structure of the tool's output.
563 > *
564 > * Mirrors MCP `Tool.outputSchema`.
565 > */
566 > outputSchema?: {
567 > type: 'object';
568 > properties?: Record<string, object>;
569 > required?: string[];
570 > };
571 > /** Behavioral hints about the tool. All properties are advisory. */
572 > annotations?: ToolAnnotations;
573 > /**
574 > * Additional provider-specific metadata.
575 > *
576 > * Mirrors the MCP `_meta` convention.
577 > */
578 > _meta?: Record<string, unknown>;
579 > }
580 >
581 > /**
582 > * Behavioral hints about a tool. All properties are advisory and not
583 > * guaranteed to faithfully describe tool behavior.
584 > *
585 > * Mirrors MCP `ToolAnnotations` from the Model Context Protocol specification.
586 > *
587 > * @category Tool Definition Types
588 > */
589 > export interface ToolAnnotations {
590 > /** Alternate human-readable title */
591 > title?: string;
592 > /** Tool does not modify its environment (default: false) */
593 > readOnlyHint?: boolean;
594 > /** Tool may perform destructive updates (default: true) */
595 > destructiveHint?: boolean;
596 > /** Repeated calls with the same arguments have no additional effect (default: false) */
597 > idempotentHint?: boolean;
598 > /** Tool may interact with external entities (default: true) */
599 > openWorldHint?: boolean;
600 > }
601 >
602 > // ─── Customization Types ─────────────────────────────────────────────────────
603 >
604 > /**
605 > * Discriminant for the kind of customization.
606 > *
607 > * Top-level entries in {@link SessionState.customizations} and
608 > * {@link AgentInfo.customizations} are either container customizations
609 > * ({@link CustomizationType.Plugin | `Plugin`} or
610 > * {@link CustomizationType.Directory | `Directory`}) or
611 > * {@link CustomizationType.McpServer | `McpServer`} entries surfaced
612 > * directly by the host. The remaining types appear only as children of
613 > * a container.
614 > *
615 > * @category Customization Types
616 > */
617 > export const enum CustomizationType {
618 > Plugin = 'plugin',
619 > Directory = 'directory',
620 > Agent = 'agent',
621 > Skill = 'skill',
622 > Prompt = 'prompt',
623 > Rule = 'rule',
624 > Hook = 'hook',
625 > McpServer = 'mcpServer',
626 > }
627 >
628 > /**
629 > * Customization types that appear as children of a
630 > * {@link PluginCustomization} or {@link DirectoryCustomization}.
631 > *
632 > * @category Customization Types
633 > */
634 > export type ChildCustomizationType =
635 > | CustomizationType.Agent
636 > | CustomizationType.Skill
637 > | CustomizationType.Prompt
638 > | CustomizationType.Rule
639 > | CustomizationType.Hook
640 > | CustomizationType.McpServer;
641 >
642 > /**
643 > * Fields shared by every customization variant.
644 > *
645 > * @category Customization Types
646 > */
647 > interface CustomizationBase {
648 > /**
649 > * Session-unique opaque identifier. Used by every action that targets a
650 > * specific customization. Minted by whoever publishes the customization
651 > * (typically the agent host).
652 > */
653 > id: string;
654 > /**
655 > * Source URI for this customization. A plugin URL, a file URI, or a
656 > * directory URI.
657 > *
658 > * For declarations that live inside a larger file — e.g. an MCP
659 > * server declared inline in a `plugins.json` manifest — `uri` points
660 > * to the containing file and {@link CustomizationBase.range | `range`}
661 > * narrows it to the declaration's span.
662 > */
663 > uri: URI;
664 > /** Human-readable name. */
665 > name: string;
666 > /** Icons for UI display. */
667 > icons?: Icon[];
668 > /**
669 > * Optional span within {@link CustomizationBase.uri | `uri`} when this
670 > * customization is a subset of a larger file (for example, one entry
671 > * in an inline `mcpServers` block of a `plugins.json` manifest).
672 > * Absent when the customization covers the whole resource.
673 > */
674 > range?: TextRange;
675 > /**
676 > * Additional provider-specific metadata for this customization.
677 > *
678 > * Mirrors the MCP `_meta` convention. Optional and opaque to the
679 > * protocol; producers and consumers agree on its contents
680 > * out-of-band.
681 > */
682 > _meta?: Record<string, unknown>;
683 > }
684 >
685 > /**
686 > * Discriminant values for {@link CustomizationLoadState}.
687 > *
688 > * @category Customization Types
689 > */
690 > export const enum CustomizationLoadStatus {
691 > Loading = 'loading',
692 > Loaded = 'loaded',
693 > Degraded = 'degraded',
694 > Error = 'error',
695 > }
696 >
697 > /**
698 > * Container is being loaded by the host.
699 > *
700 > * @category Customization Types
701 > */
702 > export interface CustomizationLoadingState {
703 > kind: CustomizationLoadStatus.Loading;
704 > }
705 >
706 > /**
707 > * Container loaded successfully.
708 > *
709 > * @category Customization Types
710 > */
711 > export interface CustomizationLoadedState {
712 > kind: CustomizationLoadStatus.Loaded;
713 > }
714 >
715 > /**
716 > * Container partially loaded but has warnings.
717 > *
718 > * @category Customization Types
719 > */
720 > export interface CustomizationDegradedState {
721 > kind: CustomizationLoadStatus.Degraded;
722 > /** Human-readable description of the warning. */
723 > message: string;
724 > }
725 >
726 > /**
727 > * Container failed to load.
728 > *
729 > * @category Customization Types
730 > */
731 > export interface CustomizationErrorState {
732 > kind: CustomizationLoadStatus.Error;
733 > /** Human-readable error message. */
734 > message: string;
735 > }
736 >
737 > /**
738 > * Discriminated load state for a container customization
739 > * ({@link PluginCustomization} or {@link DirectoryCustomization}).
740 > *
741 > * @category Customization Types
742 > */
743 > export type CustomizationLoadState =
744 > | CustomizationLoadingState
745 > | CustomizationLoadedState
746 > | CustomizationDegradedState
747 > | CustomizationErrorState;
748 >
749 > /**
750 > * Fields shared by container customizations.
751 > *
752 > * @category Customization Types
753 > */
754 > interface ContainerCustomizationBase extends CustomizationBase {
755 > /** Whether this container is currently enabled. */
756 > enabled: boolean;
757 > /**
758 > * `clientId` of the client that contributed this container. Absent for
759 > * server-originated entries.
760 > */
761 > clientId?: string;
762 > /**
763 > * Host-reported load state. Absent means the host has not yet reported
764 > * a load state for this container.
765 > */
766 > load?: CustomizationLoadState;
767 > /**
768 > * Children discovered inside this container.
769 > *
770 > * Absent means the host has not parsed this container yet. An empty
771 > * array means the host parsed the container and it contributes
772 > * nothing.
773 > */
774 > children?: ChildCustomization[];
775 > }
776 >
777 > /**
778 > * An [Open Plugins](https://open-plugins.com/) plugin.
779 > *
780 > * @category Customization Types
781 > */
782 > export interface PluginCustomization extends ContainerCustomizationBase {
783 > type: CustomizationType.Plugin;
784 > /**
785 > * Version of the plugin, sourced from the
786 > * [Open Plugins](https://open-plugins.com/) manifest's optional
787 > * `version` field (semver, e.g. `"1.2.0"`). Absent when the manifest
788 > * declares no version — the field is optional there — or the source
789 > * has no version concept. Provenance / display only: the host neither
790 > * parses nor enforces it.
791 > */
792 > version?: string;
793 > }
794 >
795 > /**
796 > * A {@link PluginCustomization} as published by a client. Extends the
797 > * server-facing shape with an opaque `nonce` so the host can detect when
798 > * the client's view of a plugin has changed and re-parse only as needed.
799 > *
800 > * Clients SHOULD include a `nonce`. Server-side fields like
801 > * {@link ContainerCustomizationBase.children | `children`} and
802 > * {@link ContainerCustomizationBase.load | `load`} are typically left
803 > * absent on publication and populated by the host when the resolved
804 > * plugin appears in {@link SessionState.customizations}.
805 > *
806 > * @category Customization Types
807 > */
808 > export interface ClientPluginCustomization extends PluginCustomization {
809 > /** Opaque version token used by the host to detect changes. */
810 > nonce?: string;
811 > }
812 >
813 > /**
814 > * A directory the host watches for this session.
815 > *
816 > * Presence in the customization list signals that the host may discover
817 > * customizations from this directory. When `writable` is `true`, clients
818 > * MAY persist new customizations into the directory using
819 > * [`resourceWrite`](/reference/common#resourcewrite); the host will
820 > * then surface the resulting child via the customization actions.
821 > *
822 > * The directory may not yet exist on disk.
823 > *
824 > * @category Customization Types
825 > */
826 > export interface DirectoryCustomization extends ContainerCustomizationBase {
827 > type: CustomizationType.Directory;
828 > /** Which child customization type this directory holds. */
829 > contents: ChildCustomizationType;
830 > /** Whether clients may write into this directory. */
831 > writable: boolean;
832 > }
833 >
834 > /**
835 > * Fields shared by the leaf child customizations that live inside a
836 > * container — {@link AgentCustomization}, {@link SkillCustomization},
837 > * {@link PromptCustomization}, {@link RuleCustomization}, and
838 > * {@link HookCustomization}.
839 > *
840 > * {@link McpServerCustomization} is also a child but does not extend this
841 > * base: it always carries an explicit {@link McpServerCustomization.enabled}
842 > * because it can appear as a top-level customization too.
843 > *
844 > * @category Customization Types
845 > */
846 > interface ChildCustomizationBase extends CustomizationBase {
847 > /**
848 > * Whether this child is individually enabled. Absent means enabled, so a
849 > * producer only needs to set it to surface a child that exists but is
850 > * turned off on its own.
851 > *
852 > * This flag is independent of the parent container's: the **effective**
853 > * enabled state of a child is
854 > * `container.enabled && (child.enabled ?? true)`, so a disabled container
855 > * disables every child regardless of each child's own flag.
856 > *
857 > * A child is turned on or off by id with
858 > * {@link SessionCustomizationToggledAction | `session/customizationToggled`}.
859 > */
860 > enabled?: boolean;
861 > }
862 >
863 > /**
864 > * A custom agent contributed by a plugin or directory.
865 > *
866 > * Mirrors the [Open Plugins agent](https://open-plugins.com/agent-builders/components/agents)
867 > * format: a markdown file with YAML frontmatter, where the body is the
868 > * agent's system prompt.
869 > *
870 > * @category Customization Types
871 > */
872 > export interface AgentCustomization extends ChildCustomizationBase {
873 > type: CustomizationType.Agent;
874 > /**
875 > * Short description of what the agent specializes in and when to
876 > * invoke it. Sourced from the agent file's frontmatter `description`.
877 > */
878 > description?: string;
879 > /**
880 > * Model the agent is pinned to, sourced from the agent file's
881 > * frontmatter `model`. Absent means the agent inherits the session's
882 > * default model.
883 > */
884 > model?: string;
885 > /**
886 > * Allowlist of tool names the agent is scoped to, sourced from the
887 > * agent file's frontmatter `tools`. A non-empty list restricts the
888 > * agent to exactly those tools. Absent — or an empty list — imposes no
889 > * restriction beyond the session default: the agent may use any
890 > * available tool. Producers express "no restriction" by omitting the
891 > * field rather than sending an empty array, so an empty list carries no
892 > * meaning distinct from absence.
893 > */
894 > tools?: string[];
895 > /**
896 > * When `true`, the agent will not auto-delegate to this custom agent
897 > * as a sub-agent; it can only be selected by the user. Absent or
898 > * `false` means the agent may delegate to it.
899 > */
900 > disableModelInvocation?: boolean;
901 > /**
902 > * When `true`, the user cannot select this custom agent (for example,
903 > * in a picker); it remains available for the agent to auto-delegate
904 > * to. Absent or `false` means the user may select it.
905 > */
906 > disableUserInvocation?: boolean;
907 > }
908 >
909 > /**
910 > * A skill contributed by a plugin or directory.
911 > *
912 > * Covers both [Open Plugins skill formats](https://open-plugins.com/agent-builders/components/skills)
913 > * — the `skills/` directory layout (one subdirectory per skill, each with
914 > * a `SKILL.md`) and the flatter `commands/` directory of slash-command
915 > * skills.
916 > *
917 > * @category Customization Types
918 > */
919 > export interface SkillCustomization extends ChildCustomizationBase {
920 > type: CustomizationType.Skill;
921 > /**
922 > * Short description used for help text and auto-invocation matching.
923 > * Sourced from the skill's frontmatter `description`.
924 > */
925 > description?: string;
926 > /**
927 > * When `true`, only the user can invoke this skill — the agent will not
928 > * auto-invoke it. Sourced from the command skill's frontmatter
929 > * `disable-model-invocation` flag.
930 > */
931 > disableModelInvocation?: boolean;
932 > /**
933 > * When `true`, the user cannot directly invoke this skill (for example,
934 > * as a slash command); it remains available for the agent to
935 > * auto-invoke. Absent or `false` means the user may invoke it.
936 > */
937 > disableUserInvocation?: boolean;
938 > }
939 >
940 > /**
941 > * A prompt contributed by a plugin or directory.
942 > *
943 > * @category Customization Types
944 > */
945 > export interface PromptCustomization extends ChildCustomizationBase {
946 > type: CustomizationType.Prompt;
947 > /** Short description of what the prompt does. */
948 > description?: string;
949 > }
950 >
951 > /**
952 > * A rule contributed by a plugin or directory.
953 > *
954 > * Mirrors the [Open Plugins rule](https://open-plugins.com/agent-builders/components/rules)
955 > * format: a markdown file (e.g. `.mdc`) whose body is injected into
956 > * context while the rule is active. This type also covers tool-specific
957 > * "instruction" formats (e.g. VS Code Copilot's
958 > * `.github/instructions/*.md`), which differ only in naming — they
959 > * share the same semantics of `description`, optional always-on
960 > * activation, and optional glob scoping.
961 > *
962 > * @category Customization Types
963 > */
964 > export interface RuleCustomization extends ChildCustomizationBase {
965 > type: CustomizationType.Rule;
966 > /**
967 > * Description of what the rule enforces.
968 > */
969 > description?: string;
970 > /**
971 > * When `true`, the rule is always active (subject to `globs` if any).
972 > * When `false` or absent, the agent or user decides whether to apply
973 > * the rule.
974 > */
975 > alwaysApply?: boolean;
976 > /**
977 > * Glob patterns the rule applies to. When present, the rule is only
978 > * active for matching files.
979 > */
980 > globs?: string[];
981 > }
982 >
983 > /**
984 > * A hook manifest contributed by a plugin or directory.
985 > *
986 > * @category Customization Types
987 > */
988 > export interface HookCustomization extends ChildCustomizationBase {
989 > type: CustomizationType.Hook;
990 > }
991 >
992 > /**
993 > * An MCP server contributed by a plugin or directory.
994 > *
995 > * When the server is declared inline in the containing plugin manifest,
996 > * `uri` points at the manifest file and
997 > * {@link CustomizationBase.range | `range`} narrows it to the
998 > * declaration's span.
999 > *
1000 > * The MCP server customization also reflects its current status.
1001 > *
1002 > * @category Customization Types
1003 > */
1004 > export interface McpServerCustomization extends CustomizationBase {
1005 > type: CustomizationType.McpServer;
1006 > /**
1007 > * Whether this MCP server is currently enabled.
1008 > */
1009 > enabled: boolean;
1010 > /**
1011 > * Current lifecycle state of the MCP server.
1012 > */
1013 > state: McpServerState;
1014 > /**
1015 > * An `mcp://`-protocol channel the client uses to side-channel traffic
1016 > * into the upstream MCP server itself. The channel is NOT a fresh raw MCP
1017 > * connection: it piggybacks on the AHP transport
1018 > * and skips the MCP `initialize` sequence.
1019 > *
1020 > * The agent host MAY only serve a subset of MCP on this
1021 > * channel; the served subset is described by domain-specific
1022 > * capabilities such as those in
1023 > * {@link McpServerCustomizationApps.capabilities}.
1024 > *
1025 > * The channel URI SHOULD be stable across the server's lifetime, but
1026 > * the agent host MAY change it (for example across a restart) and
1027 > * MAY only expose it while the server is in
1028 > * {@link McpServerStatus.Ready | `Ready`}. Absence means no
1029 > * side-channel is currently available.
1030 > */
1031 > channel?: URI;
1032 > /**
1033 > * MCP App support. This property SHOULD be advertised for MCP servers
1034 > * which support apps.
1035 > */
1036 > mcpApp?: McpServerCustomizationApps;
1037 > }
1038 >
1039 > /**
1040 > * Information from the agent host needed to render MCP Apps served
1041 > * by this MCP server.
1042 > *
1043 > * @category MCP Server State
1044 > */
1045 > export interface McpServerCustomizationApps {
1046 > /**
1047 > * The subset of MCP App
1048 > * [`HostCapabilities`](https://github.com/modelcontextprotocol/ext-apps/blob/main/specification/draft/apps.mdx)
1049 > * the AHP host can satisfy for Views backed by this server. The
1050 > * client feeds these straight through into the `hostCapabilities` of
1051 > * the `ui/initialize` response delivered to the View.
1052 > */
1053 > capabilities: AhpMcpUiHostCapabilities;
1054 > }
1055 >
1056 > /**
1057 > * The subset of MCP App
1058 > * [`HostCapabilities`](https://github.com/modelcontextprotocol/ext-apps/blob/main/specification/draft/apps.mdx)
1059 > * an AHP host can derive from the upstream MCP server (and from AHP's own
1060 > * forwarding plumbing). Advertised on
1061 > * {@link McpServerCustomizationApps.capabilities} so clients can pass it
1062 > * through into the `hostCapabilities` of the `ui/initialize` response
1063 > * delivered to an MCP App View.
1064 > *
1065 > * Field names mirror the MCP Apps spec exactly, so the AHP-side producer
1066 > * can pass them straight through into the `hostCapabilities` of the
1067 > * `ui/initialize` response delivered to the View.
1068 > *
1069 > * Capabilities outside this set (`openLinks`, `downloadFile`, `sandbox`,
1070 > * `experimental`) are decided locally by whichever AHP client renders the
1071 > * View and are NOT part of this AHP-level advertisement — only the
1072 > * server-derived subset is.
1073 > *
1074 > * An agent host MUST only advertise a capability when it actually accepts the
1075 > * corresponding methods/notifications on the `mcp://` channel:
1076 > *
1077 > * - {@link serverTools}: host proxies `tools/list` and `tools/call` to
1078 > * the MCP server. When `listChanged` is `true`, the host also forwards
1079 > * `notifications/tools/list_changed`.
1080 > * - {@link serverResources}: host proxies `resources/read`,
1081 > * `resources/list`, and `resources/templates/list` to the MCP server.
1082 > * When `listChanged` is `true`, the host also forwards
1083 > * `notifications/resources/list_changed`.
1084 > * - {@link logging}: host accepts `notifications/message` log entries
1085 > * from the App and forwards them via `mcpNotification` (and forwards
1086 > * `logging/setLevel` calls to the server).
1087 > * - {@link sampling}: host serves `sampling/createMessage` via
1088 > * `mcpMethodCall`. When `sampling.tools` is present, the host also
1089 > * accepts SEP-1577 `tools` / `toolChoice` / `tool_use` content blocks
1090 > * inside `CreateMessageRequest`.
1091 > *
1092 > * @category MCP Server State
1093 > * @see {@link https://github.com/modelcontextprotocol/ext-apps/blob/main/specification/draft/apps.mdx | MCP Apps spec (SEP-1865)}
1094 > */
1095 > export interface AhpMcpUiHostCapabilities {
1096 > /** Producer proxies the MCP `tools/*` methods to the upstream server. */
1097 > serverTools?: {
1098 > /** Producer forwards `notifications/tools/list_changed` from the server. */
1099 > listChanged?: boolean;
1100 > };
1101 > /** Producer proxies the MCP `resources/*` methods to the upstream server. */
1102 > serverResources?: {
1103 > /** Producer forwards `notifications/resources/list_changed` from the server. */
1104 > listChanged?: boolean;
1105 > };
1106 > /** Producer accepts `notifications/message` log entries from the App via `mcpNotification`. */
1107 > logging?: Record<string, never>;
1108 > /** Producer serves `sampling/createMessage` via `mcpMethodCall`. */
1109 > sampling?: {
1110 > /**
1111 > * Producer accepts SEP-1577 `tools` / `toolChoice` / `tool_use` content
1112 > * blocks inside `CreateMessageRequest`.
1113 > */
1114 > tools?: Record<string, never>;
1115 > };
1116 > }
1117 >
1118 > /**
1119 > * Child customizations that live inside a {@link PluginCustomization} or
1120 > * {@link DirectoryCustomization}.
1121 > *
1122 > * @category Customization Types
1123 > */
1124 > export type ChildCustomization =
1125 > | AgentCustomization
1126 > | SkillCustomization
1127 > | PromptCustomization
1128 > | RuleCustomization
1129 > | HookCustomization
1130 > | McpServerCustomization;
1131 >
1132 > /**
1133 > * A top-level customization active in a session. Either a container
1134 > * ({@link PluginCustomization} or {@link DirectoryCustomization}) whose
1135 > * leaf customizations live in its
1136 > * {@link ContainerCustomizationBase.children | `children`} array, or a
1137 > * bare {@link McpServerCustomization} surfaced directly by the host.
1138 > *
1139 > * @category Customization Types
1140 > */
1141 > export type Customization =
1142 > | PluginCustomization
1143 > | DirectoryCustomization
1144 > | McpServerCustomization;
1145 >
1146 >
1147 > // ─── MCP Server State ────────────────────────────────────────────────────────
1148 >
1149 > /**
1150 > * Discriminant for the {@link McpServerState} union.
1151 > *
1152 > * @category MCP Server State
1153 > */
1154 > export const enum McpServerStatus {
1155 > /** Server has been registered but is not yet running. */
1156 > Starting = 'starting',
1157 > /** Server is running and serving requests. */
1158 > Ready = 'ready',
1159 > /**
1160 > * Server is reachable but requires additional authentication before it
1161 > * can start, or before it can serve a particular request. Carries the
1162 > * RFC 9728 Protected Resource Metadata the client needs to obtain a
1163 > * token; the client then pushes the token via the existing
1164 > * `authenticate` command.
1165 > */
1166 > AuthRequired = 'authRequired',
1167 > /** Server failed to start, crashed, or otherwise transitioned to a fatal error. */
1168 > Error = 'error',
1169 > /** Server has been shut down. */
1170 > Stopped = 'stopped',
1171 > }
1172 >
1173 > /**
1174 > * Why an MCP server is currently in the {@link McpServerStatus.AuthRequired}
1175 > * state. Mirrors the three failure modes defined by the
1176 > * [MCP authorization spec](https://modelcontextprotocol.io/specification/2025-11-25/basic/authorization.md).
1177 > *
1178 > * @category MCP Server State
1179 > */
1180 > export const enum McpAuthRequiredReason {
1181 > /** No token has been provided yet (HTTP 401, no prior token). */
1182 > Required = 'required',
1183 > /** A previously valid token expired or was revoked (HTTP 401). */
1184 > Expired = 'expired',
1185 > /**
1186 > * Step-up auth: a token is present but its scopes are insufficient for
1187 > * the requested operation (HTTP 403 with
1188 > * `WWW-Authenticate: Bearer error="insufficient_scope"`).
1189 > *
1190 > * Unlike {@link Required} and {@link Expired} — which typically surface
1191 > * before any tool work is in flight — `InsufficientScope` is almost
1192 > * always triggered by an MCP request issued mid-turn (a `tools/call`,
1193 > * `resources/read`, etc.). The host SHOULD pair the
1194 > * {@link McpServerAuthRequiredState} transition with
1195 > * {@link SessionStatus.InputNeeded} on
1196 > * {@link SessionSummary.status | the session} so the activity becomes
1197 > * visible at the session-summary level, and clients SHOULD watch for
1198 > * this kind on any
1199 > * {@link McpServerCustomization | MCP server} backing a running tool
1200 > * call so they can present an explicit "grant more access" affordance
1201 > * tied to the blocked tool call.
1202 > */
1203 > InsufficientScope = 'insufficientScope',
1204 > }
1205 >
1206 > /**
1207 > * Server is registered with the host but has not yet started.
1208 > *
1209 > * @category MCP Server State
1210 > */
1211 > export interface McpServerStartingState {
1212 > kind: McpServerStatus.Starting;
1213 > }
1214 >
1215 > /**
1216 > * Server is running and serving requests.
1217 > *
1218 > * @category MCP Server State
1219 > */
1220 > export interface McpServerReadyState {
1221 > kind: McpServerStatus.Ready;
1222 > }
1223 >
1224 > /**
1225 > * A pre-registered OAuth client that clients use instead of dynamic client
1226 > * registration when resolving an MCP authentication challenge.
1227 > *
1228 > * @category MCP Server State
1229 > */
1230 > export interface McpOAuthClient {
1231 > /** OAuth client identifier registered with the authorization server. */
1232 > clientId: string;
1233 > /**
1234 > * OAuth client secret for a confidential client. Absence means the client is
1235 > * public and uses a secretless flow such as authorization code with PKCE.
1236 > */
1237 > clientSecret?: string;
1238 > }
1239 >
1240 > /**
1241 > * Reusable MCP authentication challenge — the RFC 9728 discovery info a
1242 > * client needs to obtain a token and push it via the `authenticate` command.
1243 > * Deliberately carries **no token**: this describes what is being asked for,
1244 > * never the ****** itself.
1245 > *
1246 > * Shared by two independent state machines that describe the same OAuth
1247 > * challenge from different vantage points:
1248 > *
1249 > * - {@link McpServerAuthRequiredState} — the MCP server itself cannot serve
1250 > * *any* request until the client authenticates.
1251 > * - {@link ToolCallAuthRequiredState} — a specific in-flight tool call is
1252 > * paused pending authentication (typically
1253 > * {@link McpAuthRequiredReason.InsufficientScope} step-up auth
1254 > * mid-execution). The server state and the tool-call state remain
1255 > * separate on purpose: the server saying "I need auth" and a tool
1256 > * invocation saying "I am waiting on that auth" are different facts that
1257 > * can be true independently.
1258 > *
1259 > * @category MCP Server State
1260 > */
1261 > export interface McpAuthRequirement {
1262 > /** Why authentication is required. */
1263 > reason: McpAuthRequiredReason;
1264 > /**
1265 > * Pre-registered OAuth client to use for authorization. When present, clients
1266 > * MUST use these credentials instead of dynamic client registration.
1267 > */
1268 > oauthClient?: McpOAuthClient;
1269 > /**
1270 > * RFC 9728 Protected Resource Metadata. The `resource` field is the
1271 > * canonical MCP server URI per RFC 8707, used as the OAuth `resource`
1272 > * indicator. `authorization_servers` is REQUIRED by the MCP
1273 > * authorization spec.
1274 > */
1275 > resource: ProtectedResourceMetadata;
1276 > /**
1277 > * Scopes required for the current challenge, parsed from the
1278 > * `WWW-Authenticate: ******"…"` header (or `scopes_supported`
1279 > * fallback). Authoritative for the next authorization request — clients
1280 > * MUST NOT assume any subset/superset relationship to
1281 > * `resource.scopes_supported`.
1282 > */
1283 > requiredScopes?: string[];
1284 > /** Human-readable hint, typically from the OAuth `error_description`. */
1285 > description?: string;
1286 > }
1287 >
1288 > /**
1289 > * Server is reachable but cannot serve requests until the client
1290 > * authenticates. Mirrors the discovery flow defined by
1291 > * [RFC 9728](https://datatracker.ietf.org/doc/html/rfc9728)
1292 > * (Protected Resource Metadata) and the OAuth 2.1 / RFC 6750 challenge
1293 > * semantics required by the MCP authorization spec.
1294 > *
1295 > * Clients react to this state by calling the existing `authenticate`
1296 > * command with the {@link ProtectedResourceMetadata.resource | resource}
1297 > * carried here. There is **no** `notify/authRequired` notification for
1298 > * MCP servers — the action stream is the single source of truth.
1299 > *
1300 > * When the transition is triggered by a request issued during a turn
1301 > * — most commonly
1302 > * {@link McpAuthRequiredReason.InsufficientScope | `InsufficientScope`}
1303 > * surfacing mid-tool-call — the host SHOULD also raise
1304 > * {@link SessionStatus.InputNeeded} on the session so the block is
1305 > * visible at the summary level. Clients SHOULD watch this status on
1306 > * any MCP server backing a running tool call and surface an explicit
1307 > * affordance (e.g. a "grant additional access" prompt) tied to that
1308 > * tool call, rather than relying on the user to notice the
1309 > * customization’s status badge.
1310 > *
1311 > * @category MCP Server State
1312 > */
1313 > export interface McpServerAuthRequiredState extends McpAuthRequirement {
1314 > kind: McpServerStatus.AuthRequired;
1315 > }
1316 >
1317 > /**
1318 > * Server failed to start, crashed, or otherwise transitioned to a
1319 > * non-recoverable error. Use {@link McpServerStatus.AuthRequired}
1320 > * for authentication failures.
1321 > *
1322 > * @category MCP Server State
1323 > */
1324 > export interface McpServerErrorState {
1325 > kind: McpServerStatus.Error;
1326 > /** Error details. */
1327 > error: ErrorInfo;
1328 > }
1329 >
1330 > /**
1331 > * Server has been shut down. The host MAY remove the server from the
1332 > * session entirely shortly after this state.
1333 > *
1334 > * @category MCP Server State
1335 > */
1336 > export interface McpServerStoppedState {
1337 > kind: McpServerStatus.Stopped;
1338 > }
1339 >
1340 > /**
1341 > * Discriminated union of all MCP server lifecycle states.
1342 > * Discriminated by `kind` (a {@link McpServerStatus} value).
1343 > *
1344 > * @category MCP Server State
1345 > */
1346 > export type McpServerState =
1347 > | McpServerStartingState
1348 > | McpServerReadyState
1349 > | McpServerAuthRequiredState
1350 > | McpServerErrorState
1351 > | McpServerStoppedState;
src/vs/base/common/async.ts 1250 covered LOC · 207 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- async.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancellationToken, CancellationTokenSource } from './cancellation.js';
7 > import { BugIndicatingError, CancellationError, isCancellationError } from './errors.js';
8 > import { Emitter, Event } from './event.js';
9 > import { Disposable, DisposableMap, DisposableStore, IDisposable, isDisposable, MutableDisposable, toDisposable } from './lifecycle.js';
10 > import { extUri as defaultExtUri, IExtUri } from './resources.js';
11 > import { URI } from './uri.js';
12 > import { setTimeout0 } from './platform.js';
13 > import { MicrotaskDelay } from './symbols.js';
14 > import { Lazy } from './lazy.js';
15 >
16 > export function isThenable<T>(obj: unknown): obj is Promise<T> {
17 return !!obj && typeof (obj as unknown as Promise<T>).then === 'function';
18 }
19 > async.ts
20 > export interface CancelablePromise<T> extends Promise<T> {
21 > cancel(): void;
22 > }
23 >
24 > /**
25 > * Returns a promise that can be cancelled using the provided cancellation token.
26 > *
27 > * @remarks When cancellation is requested, the promise will be rejected with a {@link CancellationError}.
28 > * If the promise resolves to a disposable object, it will be automatically disposed when cancellation
29 > * is requested.
30 > *
31 > * @param callback A function that accepts a cancellation token and returns a promise
32 > * @returns A promise that can be cancelled
33 > */
34 > export function createCancelablePromise<T>(callback: (token: CancellationToken) => Promise<T>): CancelablePromise<T> {
35 const source = new CancellationTokenSource();
36
80 };
81 }
82 > async.ts
83 > /**
84 > * Returns a promise that resolves with `undefined` as soon as the passed token is cancelled.
85 > * @see {@link raceCancellationError}
86 > */
87 > export function raceCancellation<T>(promise: Promise<T>, token: CancellationToken): Promise<T | undefined>;
88 >
89 > /**
90 > * Returns a promise that resolves with `defaultValue` as soon as the passed token is cancelled.
91 > * @see {@link raceCancellationError}
92 > */
93 > export function raceCancellation<T>(promise: Promise<T>, token: CancellationToken, defaultValue: T): Promise<T>;
94 >
95 > export function raceCancellation<T>(promise: Promise<T>, token: CancellationToken, defaultValue?: T): Promise<T | undefined> {
96 return new Promise((resolve, reject) => {
97 const ref = token.onCancellationRequested(() => {
102 });
103 }
104 > async.ts
105 > /**
106 > * Returns a promise that rejects with an {@CancellationError} as soon as the passed token is cancelled.
107 > * @see {@link raceCancellation}
108 > */
109 > export function raceCancellationError<T>(promise: Promise<T>, token: CancellationToken): Promise<T> {
110 return new Promise((resolve, reject) => {
111 const ref = token.onCancellationRequested(() => {
116 });
117 }
118 > async.ts
119 > export function rejectIfNotCanceled(err: unknown): undefined {
120 if (isCancellationError(err)) {
121 return undefined;
123 return Promise.reject(err) as never;
124 }
125 > async.ts
126 > /**
127 > * Wraps a cancellable promise such that it is no cancellable. Can be used to
128 > * avoid issues with shared promises that would normally be returned as
129 > * cancellable to consumers.
130 > */
131 > export function notCancellablePromise<T>(promise: CancelablePromise<T>): Promise<T> {
132 return new Promise<T>((resolve, reject) => {
133 promise.then(resolve, reject);
134 });
135 }
136 > async.ts
137 > /**
138 > * Returns as soon as one of the promises resolves or rejects and cancels remaining promises
139 > */
140 > export function raceCancellablePromises<T>(cancellablePromises: (CancelablePromise<T> | Promise<T>)[]): CancelablePromise<T> {
141 let resolvedPromiseIndex = -1;
142 const promises = cancellablePromises.map((promise, index) => promise.then(result => { resolvedPromiseIndex = index; return result; }));
154 return promise;
155 }
156 > async.ts
157 > export function raceTimeout<T>(promise: Promise<T>, timeout: number, onTimeout?: () => void): Promise<T | undefined> {
158 let promiseResolve: ((value: T | undefined) => void) | undefined = undefined;
159
168 ]);
169 }
170 > async.ts
171 > export function asPromise<T>(callback: () => T | Thenable<T>): Promise<T> {
172 return new Promise<T>((resolve, reject) => {
173 const item = callback();
179 });
180 }
181 > async.ts
182 > /**
183 > * Creates and returns a new promise, plus its `resolve` and `reject` callbacks.
184 > *
185 > * Replace with standardized [`Promise.withResolvers`](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Promise/withResolvers) once it is supported
186 > */
187 > export function promiseWithResolvers<T>(): { promise: Promise<T>; resolve: (value: T | PromiseLike<T>) => void; reject: (err?: any) => void } {
188 let resolve: (value: T | PromiseLike<T>) => void;
189 let reject: (reason?: any) => void;
194 return { promise, resolve: resolve!, reject: reject! };
195 }
196 > async.ts
197 > export interface ITask<T> {
198 > (): T;
199 > }
200 >
201 > export interface ICancellableTask<T> {
202 > (token: CancellationToken): T;
203 > }
204 >
205 > /**
206 > * A helper to prevent accumulation of sequential async tasks.
207 > *
208 > * Imagine a mail man with the sole task of delivering letters. As soon as
209 > * a letter submitted for delivery, he drives to the destination, delivers it
210 > * and returns to his base. Imagine that during the trip, N more letters were submitted.
211 > * When the mail man returns, he picks those N letters and delivers them all in a
212 > * single trip. Even though N+1 submissions occurred, only 2 deliveries were made.
213 > *
214 > * The throttler implements this via the queue() method, by providing it a task
215 > * factory. Following the example:
216 > *
217 > * const throttler = new Throttler();
218 > * const letters = [];
219 > *
220 > * function deliver() {
221 > * const lettersToDeliver = letters;
222 > * letters = [];
223 > * return makeTheTrip(lettersToDeliver);
224 > * }
225 > *
226 > * function onLetterReceived(l) {
227 > * letters.push(l);
228 > * throttler.queue(deliver);
229 > * }
230 > */
231 > export class Throttler implements IDisposable {
232 >
233 > private activePromise: Promise<any> | null;
234 > private queuedPromise: Promise<any> | null;
235 > private queuedPromiseFactory: ICancellableTask<Promise<any>> | null;
236 > private cancellationTokenSource: CancellationTokenSource;
237 >
238 > constructor() {
239 this.activePromise = null;
240 this.queuedPromise = null;
243 this.cancellationTokenSource = new CancellationTokenSource();
244 }
245 > async.ts
246 > queue<T>(promiseFactory: ICancellableTask<Promise<T>>): Promise<T> {
247 if (this.cancellationTokenSource.token.isCancellationRequested) {
248 return Promise.reject(new Error('Throttler is disposed'));
288 });
289 }
290 > async.ts
291 > dispose(): void {
292 this.cancellationTokenSource.cancel();
293 }
294 > } async.ts
295 >
296 > export class Sequencer {
297
298 private current: Promise<unknown> = Promise.resolve(null);
299 > async.ts
300 > queue<T>(promiseTask: ITask<Promise<T>>): Promise<T> {
301 return this.current = this.current.then(() => promiseTask(), () => promiseTask());
302 }
303 > } async.ts
304 >
305 > /**
306 > * A {@link Throttler} per key. Calls for the same key coalesce (only the most
307 > * recently queued task runs after the active one settles); calls for different
308 > * keys are independent. Idle keys are cleaned up automatically.
309 > */
310 > export class ThrottlerByKey<TKey> implements IDisposable {
311
312 private readonly throttlers = new Map<TKey, { throttler: Throttler; count: number }>();
313 > async.ts
314 > queue<T>(key: TKey, task: ITask<Promise<T>>): Promise<T> {
315 let entry = this.throttlers.get(key);
316 if (!entry) {
327 });
328 }
329 > async.ts
330 > dispose(): void {
331 for (const { throttler } of this.throttlers.values()) {
332 throttler.dispose();
334 this.throttlers.clear();
335 }
336 > } async.ts
337 >
338 > export class SequencerByKey<TKey> {
339
340 private promiseMap = new Map<TKey, Promise<unknown>>();
341 > async.ts
342 > queue<T>(key: TKey, promiseTask: ITask<Promise<T>>): Promise<T> {
343 const runningPromise = this.promiseMap.get(key) ?? Promise.resolve();
344 const newPromise = runningPromise
353 return newPromise;
354 }
355 > async.ts
356 > peek(key: TKey): Promise<unknown> | undefined {
357 return this.promiseMap.get(key) || undefined;
358 }
359 > async.ts
360 > keys(): IterableIterator<TKey> {
361 return this.promiseMap.keys();
362 }
363 > } async.ts
364 >
365 > interface IScheduledLater extends IDisposable {
366 > isTriggered(): boolean;
367 > }
368 >
369 > const timeoutDeferred = (timeout: number, fn: () => void): IScheduledLater => {
370 let scheduled = true;
371 const handle = setTimeout(() => {
381 };
382 };
383 > async.ts
384 > const microtaskDeferred = (fn: () => void): IScheduledLater => {
385 let scheduled = true;
386 queueMicrotask(() => {
396 };
397 };
398 > async.ts
399 > /**
400 > * A helper to delay (debounce) execution of a task that is being requested often.
401 > *
402 > * Following the throttler, now imagine the mail man wants to optimize the number of
403 > * trips proactively. The trip itself can be long, so he decides not to make the trip
404 > * as soon as a letter is submitted. Instead he waits a while, in case more
405 > * letters are submitted. After said waiting period, if no letters were submitted, he
406 > * decides to make the trip. Imagine that N more letters were submitted after the first
407 > * one, all within a short period of time between each other. Even though N+1
408 > * submissions occurred, only 1 delivery was made.
409 > *
410 > * The delayer offers this behavior via the trigger() method, into which both the task
411 > * to be executed and the waiting period (delay) must be passed in as arguments. Following
412 > * the example:
413 > *
414 > * const delayer = new Delayer(WAITING_PERIOD);
415 > * const letters = [];
416 > *
417 > * function letterReceived(l) {
418 > * letters.push(l);
419 > * delayer.trigger(() => { return makeTheTrip(); });
420 > * }
421 > */
422 > export class Delayer<T> implements IDisposable {
423 >
424 > private deferred: IScheduledLater | null;
425 > private completionPromise: Promise<any> | null;
426 > private doResolve: ((value?: any | Promise<any>) => void) | null;
427 > private doReject: ((err: unknown) => void) | null;
428 > private task: ITask<T | Promise<T>> | null;
429 >
430 > constructor(public defaultDelay: number | typeof MicrotaskDelay) {
431 this.deferred = null;
432 this.completionPromise = null;
435 this.task = null;
436 }
437 > async.ts
438 > trigger(task: ITask<T | Promise<T>>, delay = this.defaultDelay): Promise<T> {
439 this.task = task;
440 this.cancelTimeout();
465 return this.completionPromise;
466 }
467 > async.ts
468 > isTriggered(): boolean {
469 return !!this.deferred?.isTriggered();
470 }
471 > async.ts
472 > cancel(): void {
473 this.cancelTimeout();
474
478 }
479 }
480 > async.ts
481 > private cancelTimeout(): void {
482 this.deferred?.dispose();
483 this.deferred = null;
484 }
485 > async.ts
486 > dispose(): void {
487 this.cancel();
488 }
489 > } async.ts
490 >
491 > /**
492 > * A helper to delay execution of a task that is being requested often, while
493 > * preventing accumulation of consecutive executions, while the task runs.
494 > *
495 > * The mail man is clever and waits for a certain amount of time, before going
496 > * out to deliver letters. While the mail man is going out, more letters arrive
497 > * and can only be delivered once he is back. Once he is back the mail man will
498 > * do one more trip to deliver the letters that have accumulated while he was out.
499 > */
500 > export class ThrottledDelayer<T> {
501 >
502 > private delayer: Delayer<Promise<T>>;
503 > private throttler: Throttler;
504 >
505 > constructor(defaultDelay: number) {
506 this.delayer = new Delayer(defaultDelay);
507 this.throttler = new Throttler();
508 }
509 > async.ts
510 > trigger(promiseFactory: ICancellableTask<Promise<T>>, delay?: number): Promise<T> {
511 return this.delayer.trigger(() => this.throttler.queue(promiseFactory), delay) as unknown as Promise<T>;
512 }
513 > async.ts
514 > isTriggered(): boolean {
515 return this.delayer.isTriggered();
516 }
517 > async.ts
518 > cancel(): void {
519 this.delayer.cancel();
520 }
521 > async.ts
522 > dispose(): void {
523 this.delayer.dispose();
524 this.throttler.dispose();
525 }
526 > } async.ts
527 >
528 > /**
529 > * A barrier that is initially closed and then becomes opened permanently.
530 > */
531 > export class Barrier {
532 > private _isOpen: boolean;
533 > private _promise: Promise<boolean>;
534 > private _completePromise!: (v: boolean) => void;
535 >
536 > constructor() {
537 this._isOpen = false;
538 this._promise = new Promise<boolean>((c, e) => {
540 });
541 }
542 > async.ts
543 > isOpen(): boolean {
544 return this._isOpen;
545 }
546 > async.ts
547 > open(): void {
548 this._isOpen = true;
549 this._completePromise(true);
550 }
551 > async.ts
552 > wait(): Promise<boolean> {
553 return this._promise;
554 }
555 > } async.ts
556 >
557 > /**
558 > * A barrier that is initially closed and then becomes opened permanently after a certain period of
559 > * time or when open is called explicitly
560 > */
561 > export class AutoOpenBarrier extends Barrier {
562 >
563 > private readonly _timeout: Timeout;
564 >
565 > constructor(autoOpenTimeMs: number) {
566 super();
567 this._timeout = setTimeout(() => this.open(), autoOpenTimeMs);
568 }
569 > async.ts
570 > override open(): void {
571 clearTimeout(this._timeout);
572 super.open();
573 }
574 > } async.ts
575 >
576 > export function timeout(millis: number): CancelablePromise<void>;
577 > export function timeout(millis: number, token: CancellationToken): Promise<void>;
578 > export function timeout(millis: number, token?: CancellationToken): CancelablePromise<void> | Promise<void> {
579 if (!token) {
580 return createCancelablePromise(token => timeout(millis, token));
593 });
594 }
595 > async.ts
596 > /**
597 > * Creates a timeout that can be disposed using its returned value.
598 > * @param handler The timeout handler.
599 > * @param timeout An optional timeout in milliseconds.
600 > * @param store An optional {@link DisposableStore} that will have the timeout disposable managed automatically.
601 > *
602 > * @example
603 > * const store = new DisposableStore;
604 > * // Call the timeout after 1000ms at which point it will be automatically
605 > * // evicted from the store.
606 > * const timeoutDisposable = disposableTimeout(() => {}, 1000, store);
607 > *
608 > * if (foo) {
609 > * // Cancel the timeout and evict it from store.
610 > * timeoutDisposable.dispose();
611 > * }
612 > */
613 > export function disposableTimeout(handler: () => void, timeout = 0, store?: DisposableStore): IDisposable {
614 const timer = setTimeout(() => {
615 handler();
625 return disposable;
626 }
627 > async.ts
628 > /**
629 > * The largest delay (in milliseconds) a single `setTimeout` can represent.
630 > * Larger values overflow its internal 32-bit signed integer and fire (almost)
631 > * immediately instead of waiting.
632 > */
633 > export const MAX_TIMEOUT_DELAY = 2 ** 31 - 1; // ~24.8 days
634 >
635 > /**
636 > * Like {@link disposableTimeout}, but supports delays larger than
637 > * {@link MAX_TIMEOUT_DELAY} (~24.8 days), which a single `setTimeout` cannot
638 > * represent. The wait is split into chunks and re-armed until the target time is
639 > * reached, so the handler fires at approximately `Date.now() + timeout`.
640 > *
641 > * Note: like `setTimeout`, firing is best-effort and may drift across system
642 > * sleep or wall-clock changes; do not rely on it for precise scheduling.
643 > *
644 > * @param handler The timeout handler.
645 > * @param timeout The timeout in milliseconds. May exceed {@link MAX_TIMEOUT_DELAY}.
646 > * @param store An optional {@link DisposableStore} that will have the timeout disposable managed automatically.
647 > */
648 > export function disposableLongTimeout(handler: () => void, timeout: number, store?: DisposableStore): IDisposable {
649 const target = Date.now() + timeout;
650 let timer: Timeout;
671 return disposable;
672 }
673 > async.ts
674 > /**
675 > * Runs the provided list of promise factories in sequential order. The returned
676 > * promise will complete to an array of results from each promise.
677 > */
678 >
679 > export function sequence<T>(promiseFactories: ITask<Promise<T>>[]): Promise<T[]> {
680 const results: T[] = [];
681 let index = 0;
701 return Promise.resolve(null).then(thenHandler);
702 }
703 > async.ts
704 > export function first<T>(promiseFactories: ITask<Promise<T>>[], shouldStop: (t: T) => boolean = t => !!t, defaultValue: T | null = null): Promise<T | null> {
705 let index = 0;
706 const len = promiseFactories.length;
725 return loop();
726 }
727 > async.ts
728 > /**
729 > * Returns the result of the first promise that matches the "shouldStop",
730 > * running all promises in parallel. Supports cancelable promises.
731 > */
732 > export function firstParallel<T>(promiseList: Promise<T>[], shouldStop?: (t: T) => boolean, defaultValue?: T | null): Promise<T | null>;
733 > export function firstParallel<T, R extends T>(promiseList: Promise<T>[], shouldStop: (t: T) => t is R, defaultValue?: R | null): Promise<R | null>;
734 > export function firstParallel<T>(promiseList: Promise<T>[], shouldStop: (t: T) => boolean = t => !!t, defaultValue: T | null = null) {
735 if (promiseList.length === 0) {
736 return Promise.resolve(defaultValue);
764 });
765 }
766 > async.ts
767 > interface ILimitedTaskFactory<T> {
768 > factory: ITask<Promise<T>>;
769 > c: (value: T | Promise<T>) => void;
770 > e: (error?: unknown) => void;
771 > }
772 >
773 > export interface ILimiter<T> {
774 >
775 > readonly size: number;
776 >
777 > queue(factory: ITask<Promise<T>>): Promise<T>;
778 >
779 > clear(): void;
780 > }
781 >
782 > /**
783 > * A helper to queue N promises and run them all with a max degree of parallelism. The helper
784 > * ensures that at any time no more than M promises are running at the same time.
785 > */
786 > export class Limiter<T> implements ILimiter<T> {
787 >
788 > private _size = 0;
789 > private _isDisposed = false;
790 > private runningPromises: number;
791 > private readonly maxDegreeOfParalellism: number;
792 > private readonly outstandingPromises: ILimitedTaskFactory<T>[];
793 > private readonly _onDrained: Emitter<void>;
794 >
795 > constructor(maxDegreeOfParalellism: number) {
796 this.maxDegreeOfParalellism = maxDegreeOfParalellism;
797 this.outstandingPromises = [];
799 this._onDrained = new Emitter<void>();
800 }
801 > async.ts
802 > /**
803 > *
804 > * @returns A promise that resolved when all work is done (onDrained) or when
805 > * there is nothing to do
806 > */
807 > whenIdle(): Promise<void> {
808 return this.size > 0
809 ? Event.toPromise(this.onDrained)
810 : Promise.resolve();
811 }
812 > async.ts
813 > get onDrained(): Event<void> {
814 return this._onDrained.event;
815 }
816 > async.ts
817 > get size(): number {
818 return this._size;
819 }
820 > async.ts
821 > queue(factory: ITask<Promise<T>>): Promise<T> {
822 if (this._isDisposed) {
823 throw new Error('Object has been disposed');
830 });
831 }
832 > async.ts
833 > private consume(): void {
834 while (this.outstandingPromises.length && this.runningPromises < this.maxDegreeOfParalellism) {
835 const iLimitedTask = this.outstandingPromises.shift()!;
841 }
842 }
843 > async.ts
844 > private consumed(): void {
845 if (this._isDisposed) {
846 return;
855 }
856 }
857 > async.ts
858 > clear(): void {
859 if (this._isDisposed) {
860 throw new Error('Object has been disposed');
863 this._size = this.runningPromises;
864 }
865 > async.ts
866 > dispose(): void {
867 this._isDisposed = true;
868 this.outstandingPromises.length = 0; // stop further processing
870 this._onDrained.dispose();
871 }
872 > } async.ts
873 >
874 > /**
875 > * A queue is handles one promise at a time and guarantees that at any time only one promise is executing.
876 > */
877 > export class Queue<T> extends Limiter<T> {
878 >
879 > constructor() {
880 super(1);
881 }
882 > } async.ts
883 >
884 > /**
885 > * Same as `Queue`, ensures that only 1 task is executed at the same time. The difference to `Queue` is that
886 > * there is only 1 task about to be scheduled next. As such, calling `queue` while a task is executing will
887 > * replace the currently queued task until it executes.
888 > *
889 > * As such, the returned promise may not be from the factory that is passed in but from the next factory that
890 > * is running after having called `queue`.
891 > */
892 > export class LimitedQueue {
893
894 private readonly sequentializer = new TaskSequentializer();
895
896 private tasks = 0;
897 > async.ts
898 > queue(factory: ITask<Promise<void>>): Promise<void> {
899 if (!this.sequentializer.isRunning()) {
900 return this.sequentializer.run(this.tasks++, factory());
905 });
906 }
907 > } async.ts
908 >
909 > /**
910 > * A helper to organize queues per resource. The ResourceQueue makes sure to manage queues per resource
911 > * by disposing them once the queue is empty.
912 > */
913 > export class ResourceQueue implements IDisposable {
914
915 private readonly queues = new Map<string, Queue<void>>();
919 private drainListeners: DisposableMap<number> | undefined = undefined;
920 private drainListenerCount = 0;
921 > async.ts
922 > async whenDrained(): Promise<void> {
923 if (this.isDrained()) {
924 return;
930 return promise.p;
931 }
932 > async.ts
933 > private isDrained(): boolean {
934 for (const [, queue] of this.queues) {
935 if (queue.size > 0) {
940 return true;
941 }
942 > async.ts
943 > queueSize(resource: URI, extUri: IExtUri = defaultExtUri): number {
944 const key = extUri.getComparisonKey(resource);
945
946 return this.queues.get(key)?.size ?? 0;
947 }
948 > async.ts
949 > queueFor(resource: URI, factory: ITask<Promise<void>>, extUri: IExtUri = defaultExtUri): Promise<void> {
950 const key = extUri.getComparisonKey(resource);
951
977 return queue.queue(factory);
978 }
979 > async.ts
980 > private onDidQueueDrain(): void {
981 if (!this.isDrained()) {
982 return; // not done yet
985 this.releaseDrainers();
986 }
987 > async.ts
988 > private releaseDrainers(): void {
989 for (const drainer of this.drainers) {
990 drainer.complete();
993 this.drainers.clear();
994 }
995 > async.ts
996 > dispose(): void {
997 for (const [, queue] of this.queues) {
998 queue.dispose();
1011 this.drainListeners?.dispose();
1012 }
1013 > } async.ts
1014 >
1015 > export type Task<T = void> = () => (Promise<T> | T);
1016 >
1017 > /**
1018 > * Wrap a type in an optional promise. This can be useful to avoid the runtime
1019 > * overhead of creating a promise.
1020 > */
1021 > export type MaybePromise<T> = Promise<T> | T;
1022 >
1023 > /**
1024 > * Processes tasks in the order they were scheduled.
1025 > */
1026 > export class TaskQueue {
1027 private _runningTask: Task<any> | undefined = undefined;
1028 private _pendingTasks: { task: Task<any>; deferred: DeferredPromise<any>; setUndefinedWhenCleared: boolean }[] = [];
1029 > async.ts
1030 > /**
1031 > * Waits for the current and pending tasks to finish, then runs and awaits the given task.
1032 > * If the task is skipped because of clearPending, the promise is rejected with a CancellationError.
1033 > */
1034 > public schedule<T>(task: Task<T>): Promise<T> {
1035 const deferred = new DeferredPromise<T>();
1036 this._pendingTasks.push({ task, deferred, setUndefinedWhenCleared: false });
1038 return deferred.p;
1039 }
1040 > async.ts
1041 > /**
1042 > * Waits for the current and pending tasks to finish, then runs and awaits the given task.
1043 > * If the task is skipped because of clearPending, the promise is resolved with undefined.
1044 > */
1045 > public scheduleSkipIfCleared<T>(task: Task<T>): Promise<T | undefined> {
1046 const deferred = new DeferredPromise<T>();
1047 this._pendingTasks.push({ task, deferred, setUndefinedWhenCleared: true });
1049 return deferred.p;
1050 }
1051 > async.ts
1052 > private _runIfNotRunning(): void {
1053 if (this._runningTask === undefined) {
1054 this._processQueue();
1055 }
1056 }
1057 > async.ts
1058 > private async _processQueue(): Promise<void> {
1059 if (this._pendingTasks.length === 0) {
1060 return;
1082 }
1083 }
1084 > async.ts
1085 > /**
1086 > * Clears all pending tasks. Does not cancel the currently running task.
1087 > */
1088 > public clearPending(): void {
1089 const tasks = this._pendingTasks;
1090 this._pendingTasks = [];
1097 }
1098 }
1099 > } async.ts
1100 >
1101 > export class TimeoutTimer implements IDisposable {
1102 > private _token: Timeout | undefined;
1103 > private _isDisposed = false;
1104 >
1105 > constructor();
1106 > constructor(runner: () => void, timeout: number);
1107 > constructor(runner?: () => void, timeout?: number) {
1108 this._token = undefined;
1109
1112 }
1113 }
1114 > async.ts
1115 > dispose(): void {
1116 this.cancel();
1117 this._isDisposed = true;
1118 }
1119 > async.ts
1120 > cancel(): void {
1121 if (this._token !== undefined) {
1122 clearTimeout(this._token);
1124 }
1125 }
1126 > async.ts
1127 > cancelAndSet(runner: () => void, timeout: number): void {
1128 if (this._isDisposed) {
1129 throw new BugIndicatingError(`Calling 'cancelAndSet' on a disposed TimeoutTimer`);
1136 }, timeout);
1137 }
1138 > async.ts
1139 > setIfNotSet(runner: () => void, timeout: number): void {
1140 if (this._isDisposed) {
1141 throw new BugIndicatingError(`Calling 'setIfNotSet' on a disposed TimeoutTimer`);
1151 }, timeout);
1152 }
1153 > } async.ts
1154 >
1155 > export class IntervalTimer implements IDisposable {
1156
1157 private disposable: IDisposable | undefined = undefined;
1158 private isDisposed = false;
1159 > async.ts
1160 > cancel(): void {
1161 this.disposable?.dispose();
1162 this.disposable = undefined;
1163 }
1164 > async.ts
1165 > cancelAndSet(runner: () => void, interval: number, context = globalThis): void {
1166 if (this.isDisposed) {
1167 throw new BugIndicatingError(`Calling 'cancelAndSet' on a disposed IntervalTimer`);
1178 });
1179 }
1180 > async.ts
1181 > dispose(): void {
1182 this.cancel();
1183 this.isDisposed = true;
1184 }
1185 > } async.ts
1186 >
1187 > export class RunOnceScheduler<Runner extends (...args: any[]) => any = () => any> implements IDisposable {
1188 >
1189 > protected runner: Runner | null;
1190 >
1191 > private timeoutToken: Timeout | undefined;
1192 > private timeout: number;
1193 > private timeoutHandler: () => void;
1194 >
1195 > constructor(runner: Runner, delay: number) {
1196 > this.timeoutToken = undefined; async.ts
1197 > this.runner = runner;
1198 > this.timeout = delay;
1199 > this.timeoutHandler = this.onTimeout.bind(this);
1200 > }
1201 > async.ts
1202 > /**
1203 > * Dispose RunOnceScheduler
1204 > */
1205 > dispose(): void {
1206 > this.cancel(); async.ts
1207 > this.runner = null;
1208 > }
1209 > async.ts
1210 > /**
1211 > * Cancel current scheduled runner (if any).
1212 > */
1213 > cancel(): void {
1214 > if (this.isScheduled()) { async.ts
1215 clearTimeout(this.timeoutToken);
1216 this.timeoutToken = undefined;
1217 }
1218 > } async.ts
1219 > async.ts
1220 > /**
1221 > * Cancel previous runner (if any) & schedule a new runner.
1222 > */
1223 > schedule(delay = this.timeout): void {
1224 this.cancel();
1225 this.timeoutToken = setTimeout(this.timeoutHandler, delay);
1226 }
1227 > async.ts
1228 > get delay(): number {
1229 return this.timeout;
1230 }
1231 > async.ts
1232 > set delay(value: number) {
1233 this.timeout = value;
1234 }
1235 > async.ts
1236 > /**
1237 > * Returns true if scheduled.
1238 > */
1239 > isScheduled(): boolean {
1240 > return this.timeoutToken !== undefined; async.ts
1241 > }
1242 > async.ts
1243 > flush(): void {
1244 if (this.isScheduled()) {
1245 this.cancel();
1247 }
1248 }
1249 > async.ts
1250 > private onTimeout() {
1251 this.timeoutToken = undefined;
1252 if (this.runner) {
1254 }
1255 }
1256 > async.ts
1257 > protected doRun(): void {
1258 this.runner?.();
1259 }
1260 > } async.ts
1261 >
1262 > /**
1263 > * Same as `RunOnceScheduler`, but doesn't count the time spent in sleep mode.
1264 > * > **NOTE**: Only offers 1s resolution.
1265 > *
1266 > * When calling `setTimeout` with 3hrs, and putting the computer immediately to sleep
1267 > * for 8hrs, `setTimeout` will fire **as soon as the computer wakes from sleep**. But
1268 > * this scheduler will execute 3hrs **after waking the computer from sleep**.
1269 > */
1270 > export class ProcessTimeRunOnceScheduler {
1271 >
1272 > private runner: (() => void) | null;
1273 > private timeout: number;
1274 >
1275 > private counter: number;
1276 > private intervalToken: Timeout | undefined;
1277 > private intervalHandler: () => void;
1278 >
1279 > constructor(runner: () => void, delay: number) {
1280 if (delay % 1000 !== 0) {
1281 console.warn(`ProcessTimeRunOnceScheduler resolution is 1s, ${delay}ms is not a multiple of 1000ms.`);
1287 this.intervalHandler = this.onInterval.bind(this);
1288 }
1289 > async.ts
1290 > dispose(): void {
1291 this.cancel();
1292 this.runner = null;
1293 }
1294 > async.ts
1295 > cancel(): void {
1296 if (this.isScheduled()) {
1297 clearInterval(this.intervalToken);
1299 }
1300 }
1301 > async.ts
1302 > /**
1303 > * Cancel previous runner (if any) & schedule a new runner.
1304 > */
1305 > schedule(delay = this.timeout): void {
1306 if (delay % 1000 !== 0) {
1307 console.warn(`ProcessTimeRunOnceScheduler resolution is 1s, ${delay}ms is not a multiple of 1000ms.`);
1311 this.intervalToken = setInterval(this.intervalHandler, 1000);
1312 }
1313 > async.ts
1314 > /**
1315 > * Returns true if scheduled.
1316 > */
1317 > isScheduled(): boolean {
1318 return this.intervalToken !== undefined;
1319 }
1320 > async.ts
1321 > private onInterval() {
1322 this.counter--;
1323 if (this.counter > 0) {
1331 this.runner?.();
1332 }
1333 > } async.ts
1334 >
1335 > export class RunOnceWorker<T> extends RunOnceScheduler<(units: T[]) => void> {
1336 >
1337 > private units: T[] = [];
1338 >
1339 > constructor(runner: (units: T[]) => void, timeout: number) {
1340 super(runner, timeout);
1341 }
1342 > async.ts
1343 > work(unit: T): void {
1344 this.units.push(unit);
1345
1348 }
1349 }
1350 > async.ts
1351 > protected override doRun(): void {
1352 const units = this.units;
1353 this.units = [];
1355 this.runner?.(units);
1356 }
1357 > async.ts
1358 > override dispose(): void {
1359 this.units = [];
1360
1361 super.dispose();
1362 }
1363 > } async.ts
1364 >
1365 > export interface IThrottledWorkerOptions {
1366 >
1367 > /**
1368 > * maximum of units the worker will pass onto handler at once
1369 > */
1370 > maxWorkChunkSize: number;
1371 >
1372 > /**
1373 > * maximum of units the worker will keep in memory for processing
1374 > */
1375 > maxBufferedWork: number | undefined;
1376 >
1377 > /**
1378 > * delay before processing the next round of chunks when chunk size exceeds limits
1379 > */
1380 > throttleDelay: number;
1381 >
1382 > /**
1383 > * When enabled will guarantee that two distinct calls to `work()` are not executed
1384 > * without throttle delay between them.
1385 > * Otherwise if the worker isn't currently throttling it will execute work immediately.
1386 > */
1387 > waitThrottleDelayBetweenWorkUnits?: boolean;
1388 > }
1389 >
1390 > /**
1391 > * The `ThrottledWorker` will accept units of work `T`
1392 > * to handle. The contract is:
1393 > * * there is a maximum of units the worker can handle at once (via `maxWorkChunkSize`)
1394 > * * there is a maximum of units the worker will keep in memory for processing (via `maxBufferedWork`)
1395 > * * after having handled `maxWorkChunkSize` units, the worker needs to rest (via `throttleDelay`)
1396 > */
1397 > export class ThrottledWorker<T> extends Disposable {
1398 >
1399 > private readonly pendingWork: T[] = [];
1400 >
1401 > private readonly throttler = this._register(new MutableDisposable<RunOnceScheduler>());
1402 > private disposed = false;
1403 > private lastExecutionTime = 0;
1404 >
1405 > constructor(
1406 private options: IThrottledWorkerOptions,
1407 private readonly handler: (units: T[]) => void
1409 super();
1410 }
1411 > async.ts
1412 > /**
1413 > * The number of work units that are pending to be processed.
1414 > */
1415 > get pending(): number { return this.pendingWork.length; }
1416 >
1417 > /**
1418 > * Add units to be worked on. Use `pending` to figure out
1419 > * how many units are not yet processed after this method
1420 > * was called.
1421 > *
1422 > * @returns whether the work was accepted or not. If the
1423 > * worker is disposed, it will not accept any more work.
1424 > * If the number of pending units would become larger
1425 > * than `maxPendingWork`, more work will also not be accepted.
1426 > */
1427 > work(units: readonly T[]): boolean {
1428 if (this.disposed) {
1429 return false; // work not accepted: disposed
1469 return true; // work accepted
1470 }
1471 > async.ts
1472 > private doWork(): void {
1473 this.lastExecutionTime = Date.now();
1474
1481 }
1482 }
1483 > async.ts
1484 > private scheduleThrottler(delay = this.options.throttleDelay): void {
1485 this.throttler.value = new RunOnceScheduler(() => {
1486 this.throttler.clear();
1490 this.throttler.value.schedule();
1491 }
1492 > async.ts
1493 > override dispose(): void {
1494 super.dispose();
1495
1497 this.disposed = true;
1498 }
1499 > } async.ts
1500 >
1501 > //#region -- run on idle tricks ------------
1502 >
1503 > export interface IdleDeadline {
1504 > readonly didTimeout: boolean;
1505 > timeRemaining(): number;
1506 > }
1507 >
1508 > type IdleApi = Pick<typeof globalThis, 'requestIdleCallback' | 'cancelIdleCallback'>;
1509 >
1510 >
1511 > /**
1512 > * Execute the callback the next time the browser is idle, returning an
1513 > * {@link IDisposable} that will cancel the callback when disposed. This wraps
1514 > * [requestIdleCallback] so it will fallback to [setTimeout] if the environment
1515 > * doesn't support it.
1516 > *
1517 > * @param callback The callback to run when idle, this includes an
1518 > * [IdleDeadline] that provides the time alloted for the idle callback by the
1519 > * browser. Not respecting this deadline will result in a degraded user
1520 > * experience.
1521 > * @param timeout A timeout at which point to queue no longer wait for an idle
1522 > * callback but queue it on the regular event loop (like setTimeout). Typically
1523 > * this should not be used.
1524 > *
1525 > * [IdleDeadline]: https://developer.mozilla.org/en-US/docs/Web/API/IdleDeadline
1526 > * [requestIdleCallback]: https://developer.mozilla.org/en-US/docs/Web/API/Window/requestIdleCallback
1527 > * [setTimeout]: https://developer.mozilla.org/en-US/docs/Web/API/Window/setTimeout
1528 > *
1529 > * **Note** that there is `dom.ts#runWhenWindowIdle` which is better suited when running inside a browser
1530 > * context
1531 > */
1532 > export let runWhenGlobalIdle: (callback: (idle: IdleDeadline) => void, timeout?: number) => IDisposable;
1533 >
1534 > export let _runWhenIdle: (targetWindow: IdleApi, callback: (idle: IdleDeadline) => void, timeout?: number) => IDisposable;
1535 >
1536 > (function () {
1537 > const safeGlobal: any = globalThis;
1538 > if (typeof safeGlobal.requestIdleCallback !== 'function' || typeof safeGlobal.cancelIdleCallback !== 'function') {
1539 > _runWhenIdle = (_targetWindow, runner, timeout?) => {
1540 setTimeout0(() => {
1541 if (disposed) {
1561 };
1562 };
1563 > } else { async.ts
1564 _runWhenIdle = (targetWindow: typeof safeGlobal, runner, timeout?) => {
1565 const handle: number = targetWindow.requestIdleCallback(runner, typeof timeout === 'number' ? { timeout } : undefined);
1576 };
1577 }
1578 > runWhenGlobalIdle = (runner, timeout) => _runWhenIdle(globalThis, runner, timeout); async.ts
1579 > })();
1580 >
1581 > export function installFakeRunWhenIdle(fakeImpl: typeof _runWhenIdle): IDisposable {
1582 const origRunWhenIdle = _runWhenIdle;
1583 const origRunWhenGlobalIdle = runWhenGlobalIdle;
1589 });
1590 }
1591 > async.ts
1592 > export abstract class AbstractIdleValue<T> {
1593 >
1594 > private readonly _executor: () => void;
1595 > private readonly _handle: IDisposable;
1596 >
1597 > private _didRun: boolean = false;
1598 > private _value?: T;
1599 > private _error: unknown;
1600 >
1601 > constructor(targetWindow: IdleApi, executor: () => T) {
1602 this._executor = () => {
1603 try {
1611 this._handle = _runWhenIdle(targetWindow, () => this._executor());
1612 }
1613 > async.ts
1614 > dispose(): void {
1615 this._handle.dispose();
1616 }
1617 > async.ts
1618 > get value(): T {
1619 if (!this._didRun) {
1620 this._handle.dispose();
1626 return this._value!;
1627 }
1628 > async.ts
1629 > get isInitialized(): boolean {
1630 return this._didRun;
1631 }
1632 > } async.ts
1633 >
1634 > /**
1635 > * An `IdleValue` that always uses the current window (which might be throttled or inactive)
1636 > *
1637 > * **Note** that there is `dom.ts#WindowIdleValue` which is better suited when running inside a browser
1638 > * context
1639 > */
1640 > export class GlobalIdleValue<T> extends AbstractIdleValue<T> {
1641 >
1642 > constructor(executor: () => T) {
1643 super(globalThis, executor);
1644 }
1645 > } async.ts
1646 >
1647 > //#endregion
1648 >
1649 export async function retry<T>(task: ITask<Promise<T>>, delay: number, retries: number): Promise<T> {
1650 let lastError: Error | undefined;
1662 throw lastError;
1663 }
1664 > async.ts
1665 > //#region Task Sequentializer
1666 >
1667 > interface IRunningTask {
1668 > readonly taskId: number;
1669 > readonly cancel: () => void;
1670 > readonly promise: Promise<void>;
1671 > }
1672 >
1673 > interface IQueuedTask {
1674 > readonly promise: Promise<void>;
1675 > readonly promiseResolve: () => void;
1676 > readonly promiseReject: (error: Error) => void;
1677 > run: ITask<Promise<void>>;
1678 > }
1679 >
1680 > export interface ITaskSequentializerWithRunningTask {
1681 > readonly running: Promise<void>;
1682 > }
1683 >
1684 > export interface ITaskSequentializerWithQueuedTask {
1685 > readonly queued: IQueuedTask;
1686 > }
1687 >
1688 > /**
1689 > * @deprecated use `LimitedQueue` instead for an easier to use API
1690 > */
1691 > export class TaskSequentializer {
1692 >
1693 > private _running?: IRunningTask;
1694 > private _queued?: IQueuedTask;
1695 >
1696 > isRunning(taskId?: number): this is ITaskSequentializerWithRunningTask {
1697 if (typeof taskId === 'number') {
1698 return this._running?.taskId === taskId;
1701 return !!this._running;
1702 }
1703 > async.ts
1704 > get running(): Promise<void> | undefined {
1705 return this._running?.promise;
1706 }
1707 > async.ts
1708 > cancelRunning(): void {
1709 this._running?.cancel();
1710 }
1711 > async.ts
1712 > run(taskId: number, promise: Promise<void>, onCancel?: () => void,): Promise<void> {
1713 this._running = { taskId, cancel: () => onCancel?.(), promise };
1714
1717 return promise;
1718 }
1719 > async.ts
1720 > private doneRunning(taskId: number): void {
1721 if (this._running && taskId === this._running.taskId) {
1722
1728 }
1729 }
1730 > async.ts
1731 > private runQueued(): void {
1732 if (this._queued) {
1733 const queued = this._queued;
1738 }
1739 }
1740 > async.ts
1741 > /**
1742 > * Note: the promise to schedule as next run MUST itself call `run`.
1743 > * Otherwise, this sequentializer will report `false` for `isRunning`
1744 > * even when this task is running. Missing this detail means that
1745 > * suddenly multiple tasks will run in parallel.
1746 > */
1747 > queue(run: ITask<Promise<void>>): Promise<void> {
1748
1749 // this is our first queued task, so we create associated promise with it
1767 return this._queued.promise;
1768 }
1769 > async.ts
1770 > hasQueued(): this is ITaskSequentializerWithQueuedTask {
1771 return !!this._queued;
1772 }
1773 > async.ts
1774 > async join(): Promise<void> {
1775 return this._queued?.promise ?? this._running?.promise;
1776 }
1777 > } async.ts
1778 >
1779 > //#endregion
1780 >
1781 > //#region
1782 >
1783 > /**
1784 > * The `IntervalCounter` allows to count the number
1785 > * of calls to `increment()` over a duration of
1786 > * `interval`. This utility can be used to conditionally
1787 > * throttle a frequent task when a certain threshold
1788 > * is reached.
1789 > */
1790 > export class IntervalCounter {
1791 >
1792 > private lastIncrementTime = 0;
1793 >
1794 > private value = 0;
1795 >
1796 > constructor(private readonly interval: number, private readonly nowFn = () => Date.now()) { }
1797 >
1798 > increment(): number {
1799 const now = this.nowFn();
1800
1810 return this.value;
1811 }
1812 > } async.ts
1813 >
1814 > //#endregion
1815 >
1816 > //#region
1817 >
1818 > export type ValueCallback<T = unknown> = (value: T | Promise<T>) => void;
1819 >
1820 > const enum DeferredOutcome {
1821 > Resolved,
1822 > Rejected
1823 > }
1824 >
1825 > /**
1826 > * Creates a promise whose resolution or rejection can be controlled imperatively.
1827 > */
1828 > export class DeferredPromise<T> {
1829 >
1830 > public static fromPromise<T>(promise: Promise<T>): DeferredPromise<T> {
1831 const deferred = new DeferredPromise<T>();
1832 deferred.settleWith(promise);
1833 return deferred;
1834 }
1835 > async.ts
1836 > private completeCallback!: ValueCallback<T>;
1837 > private errorCallback!: (err: unknown) => void;
1838 > private outcome?: { outcome: DeferredOutcome.Rejected; value: unknown } | { outcome: DeferredOutcome.Resolved; value: T };
1839 >
1840 > public get isRejected() {
1841 return this.outcome?.outcome === DeferredOutcome.Rejected;
1842 }
1843 > async.ts
1844 > public get isResolved() {
1845 return this.outcome?.outcome === DeferredOutcome.Resolved;
1846 }
1847 > async.ts
1848 > public get isSettled() {
1849 return !!this.outcome;
1850 }
1851 > async.ts
1852 > public get value() {
1853 return this.outcome?.outcome === DeferredOutcome.Resolved ? this.outcome?.value : undefined;
1854 }
1855 > async.ts
1856 > public readonly p: Promise<T>;
1857 >
1858 > constructor() {
1859 this.p = new Promise<T>((c, e) => {
1860 this.completeCallback = c;
1862 });
1863 }
1864 > async.ts
1865 > public complete(value: T) {
1866 if (this.isSettled) {
1867 return Promise.resolve();
1874 });
1875 }
1876 > async.ts
1877 > public error(err: unknown) {
1878 if (this.isSettled) {
1879 return Promise.resolve();
1886 });
1887 }
1888 > async.ts
1889 > public settleWith(promise: Promise<T>): Promise<void> {
1890 return promise.then(
1891 value => this.complete(value),
1893 );
1894 }
1895 > async.ts
1896 > public cancel() {
1897 return this.error(new CancellationError());
1898 }
1899 > } async.ts
1900 >
1901 > //#endregion
1902 >
1903 > //#region Promises
1904 >
1905 > export namespace Promises {
1906 >
1907 > /**
1908 > * A drop-in replacement for `Promise.all` with the only difference
1909 > * that the method awaits every promise to either fulfill or reject.
1910 > *
1911 > * Similar to `Promise.all`, only the first error will be returned
1912 > * if any.
1913 > */
1914 > export async function settled<T>(promises: Promise<T>[]): Promise<T[]> {
1915 let firstError: Error | undefined = undefined;
1916
1929 return result as unknown as T[]; // cast is needed and protected by the `throw` above
1930 }
1931 > async.ts
1932 > /**
1933 > * A helper to create a new `Promise<T>` with a body that is a promise
1934 > * itself. By default, an error that raises from the async body will
1935 > * end up as a unhandled rejection, so this utility properly awaits the
1936 > * body and rejects the promise as a normal promise does without async
1937 > * body.
1938 > *
1939 > * This method should only be used in rare cases where otherwise `async`
1940 > * cannot be used (e.g. when callbacks are involved that require this).
1941 > */
1942 > export function withAsyncBody<T, E = Error>(bodyFn: (resolve: (value: T) => unknown, reject: (error: E) => unknown) => Promise<unknown>): Promise<T> {
1943 // eslint-disable-next-line no-async-promise-executor
1944 return new Promise<T>(async (resolve, reject) => {
1950 });
1951 }
1952 > } async.ts
1953 >
1954 > export class StatefulPromise<T> {
1955 > private _value: T | undefined = undefined;
1956 > get value(): T | undefined { return this._value; }
1957 >
1958 > private _error: unknown = undefined;
1959 > get error(): unknown { return this._error; }
1960 >
1961 > private _isResolved = false;
1962 > get isResolved() { return this._isResolved; }
1963 >
1964 > public readonly promise: Promise<T>;
1965 >
1966 > constructor(promise: Promise<T>) {
1967 this.promise = promise.then(
1968 value => {
1978 );
1979 }
1980 > async.ts
1981 > /**
1982 > * Returns the resolved value.
1983 > * Throws if the promise is not resolved yet.
1984 > */
1985 > public requireValue(): T {
1986 if (!this._isResolved) {
1987 throw new BugIndicatingError('Promise is not resolved yet');
1992 return this._value!;
1993 }
1994 > } async.ts
1995 >
1996 > export class LazyStatefulPromise<T> {
1997 > private readonly _promise = new Lazy(() => new StatefulPromise(this._compute()));
1998 >
1999 > constructor(
2000 private readonly _compute: () => Promise<T>,
2001 ) { }
2002 > async.ts
2003 > /**
2004 > * Returns the resolved value.
2005 > * Throws if the promise is not resolved yet.
2006 > */
2007 > public requireValue(): T {
2008 return this._promise.value.requireValue();
2009 }
2010 > async.ts
2011 > /**
2012 > * Returns the promise (and triggers a computation of the promise if not yet done so).
2013 > */
2014 > public getPromise(): Promise<T> {
2015 return this._promise.value.promise;
2016 }
2017 > async.ts
2018 > /**
2019 > * Reads the current value without triggering a computation of the promise.
2020 > */
2021 > public get currentValue(): T | undefined {
2022 return this._promise.rawValue?.value;
2023 }
2024 > } async.ts
2025 >
2026 > //#endregion
2027 >
2028 > //#region
2029 >
2030 > const enum AsyncIterableSourceState {
2031 > Initial,
2032 > DoneOK,
2033 > DoneError,
2034 > }
2035 >
2036 > /**
2037 > * An object that allows to emit async values asynchronously or bring the iterable to an error state using `reject()`.
2038 > * This emitter is valid only for the duration of the executor (until the promise returned by the executor settles).
2039 > */
2040 > export interface AsyncIterableEmitter<T> {
2041 > /**
2042 > * The value will be appended at the end.
2043 > *
2044 > * **NOTE** If `reject()` has already been called, this method has no effect.
2045 > */
2046 > emitOne(value: T): void;
2047 > /**
2048 > * The values will be appended at the end.
2049 > *
2050 > * **NOTE** If `reject()` has already been called, this method has no effect.
2051 > */
2052 > emitMany(values: T[]): void;
2053 > /**
2054 > * Writing an error will permanently invalidate this iterable.
2055 > * The current users will receive an error thrown, as will all future users.
2056 > *
2057 > * **NOTE** If `reject()` have already been called, this method has no effect.
2058 > */
2059 > reject(error: Error): void;
2060 > }
2061 >
2062 > /**
2063 > * An executor for the `AsyncIterableObject` that has access to an emitter.
2064 > */
2065 > export interface AsyncIterableExecutor<T> {
2066 > /**
2067 > * @param emitter An object that allows to emit async values valid only for the duration of the executor.
2068 > */
2069 > (emitter: AsyncIterableEmitter<T>): unknown | Promise<unknown>;
2070 > }
2071 >
2072 > /**
2073 > * A rich implementation for an `AsyncIterable<T>`.
2074 > */
2075 > export class AsyncIterableObject<T> implements AsyncIterable<T> {
2076 >
2077 > public static fromArray<T>(items: T[]): AsyncIterableObject<T> {
2078 > return new AsyncIterableObject<T>((writer) => {
2079 > writer.emitMany(items);
2080 > });
2081 > }
2082 >
2083 > public static fromPromise<T>(promise: Promise<T[]>): AsyncIterableObject<T> {
2084 return new AsyncIterableObject<T>(async (emitter) => {
2085 emitter.emitMany(await promise);
2086 });
2087 }
2088 > async.ts
2089 > public static fromPromisesResolveOrder<T>(promises: Promise<T>[]): AsyncIterableObject<T> {
2090 return new AsyncIterableObject<T>(async (emitter) => {
2091 await Promise.all(promises.map(async (p) => emitter.emitOne(await p)));
2092 });
2093 }
2094 > async.ts
2095 > public static merge<T>(iterables: AsyncIterable<T>[]): AsyncIterableObject<T> {
2096 return new AsyncIterableObject(async (emitter) => {
2097 await Promise.all(iterables.map(async (iterable) => {
2102 });
2103 }
2104 > async.ts
2105 > public static EMPTY = AsyncIterableObject.fromArray<any>([]);
2106 >
2107 > private _state: AsyncIterableSourceState;
2108 > private _results: T[];
2109 > private _error: Error | null;
2110 > private readonly _onReturn?: () => void | Promise<void>;
2111 > private readonly _onStateChanged: Emitter<void>;
2112 >
2113 > constructor(executor: AsyncIterableExecutor<T>, onReturn?: () => void | Promise<void>) {
2114 > this._state = AsyncIterableSourceState.Initial;
2115 > this._results = [];
2116 > this._error = null;
2117 > this._onReturn = onReturn;
2118 > this._onStateChanged = new Emitter<void>();
2119 >
2120 > queueMicrotask(async () => {
2121 > const writer: AsyncIterableEmitter<T> = {
2122 > emitOne: (item) => this.emitOne(item),
2123 > emitMany: (items) => this.emitMany(items),
2124 > reject: (error) => this.reject(error)
2125 > };
2126 > try {
2127 > await Promise.resolve(executor(writer));
2128 > this.resolve();
2129 > } catch (err) {
2130 this.reject(err);
2131 > } finally { async.ts
2132 > // The executor has settled; emitting afterwards must be a no-op per the
2133 > // documented "no effect after resolve()/reject()" contract (see emitOne).
2134 > writer.emitOne = () => { };
2135 > writer.emitMany = () => { };
2136 > writer.reject = () => { };
2137 > }
2138 > });
2139 > }
2140 >
2141 > [Symbol.asyncIterator](): AsyncIterator<T, undefined, undefined> {
2142 let i = 0;
2143 return {
2162 };
2163 }
2164 > async.ts
2165 > public static map<T, R>(iterable: AsyncIterable<T>, mapFn: (item: T) => R): AsyncIterableObject<R> {
2166 return new AsyncIterableObject<R>(async (emitter) => {
2167 for await (const item of iterable) {
2170 });
2171 }
2172 > async.ts
2173 > public map<R>(mapFn: (item: T) => R): AsyncIterableObject<R> {
2174 return AsyncIterableObject.map(this, mapFn);
2175 }
2176 > async.ts
2177 > public static filter<T>(iterable: AsyncIterable<T>, filterFn: (item: T) => boolean): AsyncIterableObject<T> {
2178 return new AsyncIterableObject<T>(async (emitter) => {
2179 for await (const item of iterable) {
2184 });
2185 }
2186 > async.ts
2187 > public filter<T2 extends T>(filterFn: (item: T) => item is T2): AsyncIterableObject<T2>;
2188 > public filter(filterFn: (item: T) => boolean): AsyncIterableObject<T>;
2189 > public filter(filterFn: (item: T) => boolean): AsyncIterableObject<T> {
2190 return AsyncIterableObject.filter(this, filterFn);
2191 }
2192 > async.ts
2193 > public static coalesce<T>(iterable: AsyncIterable<T | undefined | null>): AsyncIterableObject<T> {
2194 return <AsyncIterableObject<T>>AsyncIterableObject.filter(iterable, item => !!item);
2195 }
2196 > async.ts
2197 > public coalesce(): AsyncIterableObject<NonNullable<T>> {
2198 return AsyncIterableObject.coalesce(this) as AsyncIterableObject<NonNullable<T>>;
2199 }
2200 > async.ts
2201 > public static async toPromise<T>(iterable: AsyncIterable<T>): Promise<T[]> {
2202 const result: T[] = [];
2203 for await (const item of iterable) {
2206 return result;
2207 }
2208 > async.ts
2209 > public toPromise(): Promise<T[]> {
2210 return AsyncIterableObject.toPromise(this);
2211 }
2212 > async.ts
2213 > /**
2214 > * The value will be appended at the end.
2215 > *
2216 > * **NOTE** If `resolve()` or `reject()` have already been called, this method has no effect.
2217 > */
2218 > private emitOne(value: T): void {
2219 if (this._state !== AsyncIterableSourceState.Initial) {
2220 return;
2225 this._onStateChanged.fire();
2226 }
2227 > async.ts
2228 > /**
2229 > * The values will be appended at the end.
2230 > *
2231 > * **NOTE** If `resolve()` or `reject()` have already been called, this method has no effect.
2232 > */
2233 > private emitMany(values: T[]): void {
2234 > if (this._state !== AsyncIterableSourceState.Initial) {
2235 return;
2236 }
2237 > // it is important to add new values at the end, async.ts
2238 > // as we may have iterators already running on the array
2239 > this._results = this._results.concat(values);
2240 > this._onStateChanged.fire();
2241 > }
2242 >
2243 > /**
2244 > * Calling `resolve()` will mark the result array as complete.
2245 > *
2246 > * **NOTE** `resolve()` must be called, otherwise all consumers of this iterable will hang indefinitely, similar to a non-resolved promise.
2247 > * **NOTE** If `resolve()` or `reject()` have already been called, this method has no effect.
2248 > */
2249 > private resolve(): void {
2250 > if (this._state !== AsyncIterableSourceState.Initial) {
2251 return;
2252 }
2253 > this._state = AsyncIterableSourceState.DoneOK; async.ts
2254 > this._onStateChanged.fire();
2255 > }
2256 >
2257 > /**
2258 > * Writing an error will permanently invalidate this iterable.
2259 > * The current users will receive an error thrown, as will all future users.
2260 > *
2261 > * **NOTE** If `resolve()` or `reject()` have already been called, this method has no effect.
2262 > */
2263 > private reject(error: Error) {
2264 if (this._state !== AsyncIterableSourceState.Initial) {
2265 return;
2269 this._onStateChanged.fire();
2270 }
2271 > } async.ts
2272 >
2273 >
2274 > export function createCancelableAsyncIterableProducer<T>(callback: (token: CancellationToken) => AsyncIterable<T>): CancelableAsyncIterableProducer<T> {
2275 const source = new CancellationTokenSource();
2276 const innerIterable = callback(source.token);
2299 });
2300 }
2301 > async.ts
2302 > export class AsyncIterableSource<T> {
2303 >
2304 > private readonly _deferred = new DeferredPromise<void>();
2305 > private readonly _asyncIterable: AsyncIterableObject<T>;
2306 >
2307 > private _errorFn: (error: Error) => void;
2308 > private _emitOneFn: (item: T) => void;
2309 > private _emitManyFn: (item: T[]) => void;
2310 >
2311 > /**
2312 > *
2313 > * @param onReturn A function that will be called when consuming the async iterable
2314 > * has finished by the consumer, e.g the for-await-loop has be existed (break, return) early.
2315 > * This is NOT called when resolving this source by its owner.
2316 > */
2317 > constructor(onReturn?: () => Promise<void> | void) {
2318 this._asyncIterable = new AsyncIterableObject(emitter => {
2319
2354 };
2355 }
2356 > async.ts
2357 > get asyncIterable(): AsyncIterableObject<T> {
2358 return this._asyncIterable;
2359 }
2360 > async.ts
2361 > resolve(): void {
2362 this._deferred.complete();
2363 }
2364 > async.ts
2365 > reject(error: Error): void {
2366 this._errorFn(error);
2367 this._deferred.complete();
2368 }
2369 > async.ts
2370 > emitOne(item: T): void {
2371 this._emitOneFn(item);
2372 }
2373 > async.ts
2374 > emitMany(items: T[]) {
2375 this._emitManyFn(items);
2376 }
2377 > } async.ts
2378 >
2379 > export function cancellableIterable<T>(iterableOrIterator: AsyncIterator<T> | AsyncIterable<T>, token: CancellationToken): AsyncIterableIterator<T> {
2380 const iterator = Symbol.asyncIterator in iterableOrIterator ? iterableOrIterator[Symbol.asyncIterator]() : iterableOrIterator;
2381
2395 };
2396 }
2397 > async.ts
2398 > type ProducerConsumerValue<T> = {
2399 > ok: true;
2400 > value: T;
2401 > } | {
2402 > ok: false;
2403 > error: Error;
2404 > };
2405 >
2406 > class ProducerConsumer<T> {
2407 > private readonly _unsatisfiedConsumers: DeferredPromise<T>[] = [];
2408 > private readonly _unconsumedValues: ProducerConsumerValue<T>[] = [];
2409 > private _finalValue: ProducerConsumerValue<T> | undefined;
2410 >
2411 > public get hasFinalValue(): boolean {
2412 > return !!this._finalValue;
2413 > }
2414 >
2415 > produce(value: ProducerConsumerValue<T>): void {
2416 this._ensureNoFinalValue();
2417 if (this._unsatisfiedConsumers.length > 0) {
2422 }
2423 }
2424 > async.ts
2425 > produceFinal(value: ProducerConsumerValue<T>): void {
2426 > this._ensureNoFinalValue();
2427 > this._finalValue = value;
2428 > for (const deferred of this._unsatisfiedConsumers) {
2429 this._resolveOrRejectDeferred(deferred, value);
2430 }
2431 > this._unsatisfiedConsumers.length = 0; async.ts
2432 > }
2433 >
2434 > private _ensureNoFinalValue(): void {
2435 > if (this._finalValue) {
2436 throw new BugIndicatingError('ProducerConsumer: cannot produce after final value has been set');
2437 }
2438 > } async.ts
2439 >
2440 > private _resolveOrRejectDeferred(deferred: DeferredPromise<T>, value: ProducerConsumerValue<T>): void {
2441 if (value.ok) {
2442 deferred.complete(value.value);
2445 }
2446 }
2447 > async.ts
2448 > consume(): Promise<T> {
2449 if (this._unconsumedValues.length > 0 || this._finalValue) {
2450 const value = this._unconsumedValues.length > 0 ? this._unconsumedValues.shift()! : this._finalValue!;
2460 }
2461 }
2462 > } async.ts
2463 >
2464 > /**
2465 > * Important difference to AsyncIterableObject:
2466 > * If it is iterated two times, the second iterator will not see the values emitted by the first iterator.
2467 > */
2468 > export class AsyncIterableProducer<T> implements AsyncIterable<T> {
2469 > private readonly _producerConsumer = new ProducerConsumer<IteratorResult<T>>();
2470 >
2471 > constructor(executor: AsyncIterableExecutor<T>, private readonly _onReturn?: () => void) {
2472 > queueMicrotask(async () => {
2473 > const p = executor({
2474 > emitOne: value => this._producerConsumer.produce({ ok: true, value: { done: false, value: value } }),
2475 > emitMany: values => {
2476 > for (const value of values) {
2477 this._producerConsumer.produce({ ok: true, value: { done: false, value: value } });
2478 }
2479 > }, async.ts
2480 > reject: error => this._finishError(error),
2481 > });
2482 >
2483 > if (!this._producerConsumer.hasFinalValue) {
2484 > try {
2485 > await p;
2486 > this._finishOk();
2487 > } catch (error) {
2488 this._finishError(error);
2489 }
2490 > } async.ts
2491 > });
2492 > }
2493 >
2494 > public static fromArray<T>(items: T[]): AsyncIterableProducer<T> {
2495 > return new AsyncIterableProducer<T>((writer) => {
2496 > writer.emitMany(items);
2497 > });
2498 > }
2499 >
2500 > public static fromPromise<T>(promise: Promise<T[]>): AsyncIterableProducer<T> {
2501 return new AsyncIterableProducer<T>(async (emitter) => {
2502 emitter.emitMany(await promise);
2503 });
2504 }
2505 > async.ts
2506 > public static fromPromisesResolveOrder<T>(promises: Promise<T>[]): AsyncIterableProducer<T> {
2507 return new AsyncIterableProducer<T>(async (emitter) => {
2508 await Promise.all(promises.map(async (p) => emitter.emitOne(await p)));
2509 });
2510 }
2511 > async.ts
2512 > public static merge<T>(iterables: AsyncIterable<T>[]): AsyncIterableProducer<T> {
2513 return new AsyncIterableProducer(async (emitter) => {
2514 await Promise.all(iterables.map(async (iterable) => {
2519 });
2520 }
2521 > async.ts
2522 > public static EMPTY = AsyncIterableProducer.fromArray<any>([]);
2523 >
2524 > public static map<T, R>(iterable: AsyncIterable<T>, mapFn: (item: T) => R): AsyncIterableProducer<R> {
2525 return new AsyncIterableProducer<R>(async (emitter) => {
2526 for await (const item of iterable) {
2529 });
2530 }
2531 > async.ts
2532 > public static tee<T>(iterable: AsyncIterable<T>): [AsyncIterableProducer<T>, AsyncIterableProducer<T>] {
2533 let emitter1: AsyncIterableEmitter<T> | undefined;
2534 let emitter2: AsyncIterableEmitter<T> | undefined;
2565 return [p1, p2];
2566 }
2567 > async.ts
2568 > public map<R>(mapFn: (item: T) => R): AsyncIterableProducer<R> {
2569 return AsyncIterableProducer.map(this, mapFn);
2570 }
2571 > async.ts
2572 > public static coalesce<T>(iterable: AsyncIterable<T | undefined | null>): AsyncIterableProducer<T> {
2573 return <AsyncIterableProducer<T>>AsyncIterableProducer.filter(iterable, item => !!item);
2574 }
2575 > async.ts
2576 > public coalesce(): AsyncIterableProducer<NonNullable<T>> {
2577 return AsyncIterableProducer.coalesce(this) as AsyncIterableProducer<NonNullable<T>>;
2578 }
2579 > async.ts
2580 > public static filter<T>(iterable: AsyncIterable<T>, filterFn: (item: T) => boolean): AsyncIterableProducer<T> {
2581 return new AsyncIterableProducer<T>(async (emitter) => {
2582 for await (const item of iterable) {
2587 });
2588 }
2589 > async.ts
2590 > public filter<T2 extends T>(filterFn: (item: T) => item is T2): AsyncIterableProducer<T2>;
2591 > public filter(filterFn: (item: T) => boolean): AsyncIterableProducer<T>;
2592 > public filter(filterFn: (item: T) => boolean): AsyncIterableProducer<T> {
2593 return AsyncIterableProducer.filter(this, filterFn);
2594 }
2595 > async.ts
2596 > private _finishOk(): void {
2597 > if (!this._producerConsumer.hasFinalValue) {
2598 > this._producerConsumer.produceFinal({ ok: true, value: { done: true, value: undefined } });
2599 > }
2600 > }
2601 >
2602 > private _finishError(error: Error): void {
2603 if (!this._producerConsumer.hasFinalValue) {
2604 this._producerConsumer.produceFinal({ ok: false, error: error });
2606 // Warning: this can cause to dropped errors.
2607 }
2608 > async.ts
2609 > private readonly _iterator: AsyncIterator<T, void, void> = {
2610 > next: () => this._producerConsumer.consume(),
2611 > return: () => {
2612 this._onReturn?.();
2613 return Promise.resolve({ done: true, value: undefined });
2614 },
2615 > throw: async (e) => { async.ts
2616 this._finishError(e);
2617 return { done: true, value: undefined };
2618 },
2619 > }; async.ts
2620 >
2621 > [Symbol.asyncIterator](): AsyncIterator<T, void, void> {
2622 return this._iterator;
2623 }
2624 > } async.ts
2625 >
2626 > export class CancelableAsyncIterableProducer<T> extends AsyncIterableProducer<T> {
2627 > constructor(
2628 private readonly _source: CancellationTokenSource,
2629 executor: AsyncIterableExecutor<T>
2631 super(executor);
2632 }
2633 > async.ts
2634 > cancel(): void {
2635 this._source.cancel();
2636 }
2637 > } async.ts
2638 >
2639 > //#endregion
2640 >
2641 > export const AsyncReaderEndOfStream = Symbol('AsyncReaderEndOfStream');
2642 >
2643 > export class AsyncReader<T> {
2644 > private _buffer: T[] = [];
2645 > private _atEnd = false;
2646 >
2647 > public get endOfStream(): boolean { return this._buffer.length === 0 && this._atEnd; }
2648 > private _extendBufferPromise: Promise<void> | undefined;
2649 >
2650 > constructor(
2651 private readonly _source: AsyncIterator<T>
2652 ) {
2653 }
2654 > async.ts
2655 > public async read(): Promise<T | typeof AsyncReaderEndOfStream> {
2656 if (this._buffer.length === 0 && !this._atEnd) {
2657 await this._extendBuffer();
2662 return this._buffer.shift()!;
2663 }
2664 > async.ts
2665 > public async readWhile(predicate: (value: T) => boolean, callback: (element: T) => unknown): Promise<void> {
2666 do {
2667 const piece = await this.peek();
2676 } while (true);
2677 }
2678 > async.ts
2679 > public readBufferedOrThrow(): T | typeof AsyncReaderEndOfStream {
2680 const value = this.peekBufferedOrThrow();
2681 this._buffer.shift();
2682 return value;
2683 }
2684 > async.ts
2685 > public async consumeToEnd(): Promise<void> {
2686 while (!this.endOfStream) {
2687 await this.read();
2688 }
2689 }
2690 > async.ts
2691 > public async peek(): Promise<T | typeof AsyncReaderEndOfStream> {
2692 if (this._buffer.length === 0 && !this._atEnd) {
2693 await this._extendBuffer();
2698 return this._buffer[0];
2699 }
2700 > async.ts
2701 > public peekBufferedOrThrow(): T | typeof AsyncReaderEndOfStream {
2702 if (this._buffer.length === 0) {
2703 if (this._atEnd) {
2709 return this._buffer[0];
2710 }
2711 > async.ts
2712 > public async peekTimeout(timeoutMs: number): Promise<T | typeof AsyncReaderEndOfStream | undefined> {
2713 if (this._buffer.length === 0 && !this._atEnd) {
2714 await raceTimeout(this._extendBuffer(), timeoutMs);
2722 return this._buffer[0];
2723 }
2724 > async.ts
2725 > private _extendBuffer(): Promise<void> {
2726 if (this._atEnd) {
2727 return Promise.resolve();
2742 return this._extendBufferPromise;
2743 }
2744 > } async.ts
2745 >
2746 > export function createTimeout(ms: number, cb: () => void): IDisposable {
2747 const t = setTimeout(cb, ms);
2748 return toDisposable(() => clearTimeout(t));
src/vs/platform/agentHost/common/state/protocol/common/commands.ts 1071 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- commands.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI, Snapshot } from './state.js';
10 > import type { ActionEnvelope, StateAction } from './actions.js';
11 > import type { TelemetryCapabilities } from '../channels-otlp/state.js';
12 >
13 > // ─── BaseParams ──────────────────────────────────────────────────────────────
14 >
15 > /**
16 > * Base shape every command's params extends.
17 > *
18 > * `channel` identifies the channel the command targets, mirroring the
19 > * `channel` field on every protocol notification. For commands that operate
20 > * on a specific channel (a session, terminal, or changeset), `channel` is
21 > * that channel's URI. For commands that are connection-level rather than
22 > * channel-scoped (e.g. {@link InitializeParams | `initialize`},
23 > * {@link PingParams | `ping`}, {@link ListSessionsParams | `listSessions`},
24 > * the `resource*` filesystem commands, and {@link AuthenticateParams |
25 > * `authenticate`}), the params type narrows `channel` to the literal
26 > * root URI `'ahp-root://'`.
27 > *
28 > * This invariant lets implementations route every incoming message —
29 > * request, response, or notification — by inspecting `params.channel`
30 > * without needing to know the per-method param shape.
31 > *
32 > * @category Commands
33 > */
34 > export interface BaseParams {
35 > /** Channel URI this command targets. */
36 > channel: URI;
37 > }
38 >
39 > // ─── Pagination ──────────────────────────────────────────────────────────────
40 >
41 > /**
42 > * Cursor-based pagination inputs, mixed into the params of any list command
43 > * that can page a large result set (e.g. {@link ListSessionsParams |
44 > * `listSessions`}). The paired output is {@link PaginatedResult}.
45 > *
46 > * Pagination is **opaque and cursor-based**, mirroring the shape `fetchTurns`
47 > * already uses for chat history: the server owns the ordering and keyset, and
48 > * the client walks pages by echoing the cursor from the previous
49 > * {@link PaginatedResult.nextCursor} back on the next request.
50 > *
51 > * The contract every paginated command shares:
52 > *
53 > * - To fetch the first page, omit `cursor`. Supply `limit` to bound the page.
54 > * - If the result carries a {@link PaginatedResult.nextCursor}, more entries
55 > * exist — pass it back as `cursor` to fetch the following page. A missing
56 > * `nextCursor` signals the end of the collection.
57 > * - Cursors are **server-defined and opaque**: clients MUST NOT parse, modify,
58 > * or persist them across connections. An unrecognised cursor SHOULD be
59 > * rejected with an `InvalidParams` error.
60 > * - Pagination is **fully additive**: a client that omits `limit`/`cursor` and
61 > * ignores `nextCursor` sees the pre-pagination behaviour (subject to any
62 > * server-imposed cap), and a server that does not paginate ignores the inputs
63 > * and returns everything in a single page.
64 > *
65 > * @category Commands
66 > */
67 > export interface PaginatedParams {
68 > /**
69 > * Maximum number of entries to return in this page. The server SHOULD respect
70 > * this bound but MAY return fewer entries and MAY impose its own upper cap.
71 > * Omit to let the server choose the page size.
72 > */
73 > limit?: number;
74 > /**
75 > * Opaque pagination cursor from a previous {@link PaginatedResult.nextCursor}.
76 > * Omit to fetch the first page. Cursors are server-defined and MUST be treated
77 > * as opaque — do not parse, modify, or persist them across connections. An
78 > * unrecognised cursor SHOULD be rejected with an `InvalidParams` error.
79 > */
80 > cursor?: string;
81 > }
82 >
83 > /**
84 > * Cursor-based pagination output, extended by the result of any list command
85 > * that can page a large result set (e.g. {@link ListSessionsResult |
86 > * `listSessions`}). See {@link PaginatedParams} for the full pagination
87 > * contract shared by every paginated command.
88 > *
89 > * @category Commands
90 > */
91 > export interface PaginatedResult {
92 > /**
93 > * Opaque cursor for the next page. Present when more entries exist beyond the
94 > * returned page; absent signals the end of the collection. Pass it back as
95 > * {@link PaginatedParams.cursor} to fetch the following page.
96 > */
97 > nextCursor?: string;
98 > }
99 >
100 > // ─── initialize ──────────────────────────────────────────────────────────────
101 >
102 > /**
103 > * Identifies a protocol implementation — the software (and build) on one end
104 > * of the connection, as distinct from the {@link AgentInfo | agent persona} it
105 > * hosts. Carried as {@link InitializeParams.clientInfo | `clientInfo`} on the
106 > * client side and {@link InitializeResult.serverInfo | `serverInfo`} on the
107 > * server side, mirroring LSP's `clientInfo`/`serverInfo` and MCP's
108 > * `Implementation`.
109 > *
110 > * This is **informational only**: it exists for logging, telemetry, an
111 > * about/status affordance, and — as a last resort — a known-issue workaround
112 > * for a specific buggy build. It is **not** a feature-detection mechanism.
113 > * Feature availability stays with the capability model
114 > * ({@link ClientCapabilities} and the various `*.capabilities` declarations);
115 > * implementations SHOULD NOT gate protocol behaviour on parsing
116 > * {@link Implementation.version | `version`}.
117 > *
118 > * @category Commands
119 > */
120 > export interface Implementation {
121 > /** Implementation name, e.g. a product or package identifier. */
122 > name: string;
123 > /**
124 > * Implementation version. A [SemVer](https://semver.org) string is
125 > * recommended but not required.
126 > */
127 > version?: string;
128 > /** Optional human-readable display name. */
129 > title?: string;
130 > }
131 >
132 > /**
133 > * Establishes a new connection and negotiates the protocol version.
134 > * This MUST be the first message sent by the client.
135 > *
136 > * @category Commands
137 > * @method initialize
138 > * @direction Client → Server
139 > * @messageType Request
140 > * @version 1
141 > * @see {@link /specification/lifecycle | Lifecycle} for the full handshake flow.
142 > */
143 > export interface InitializeParams extends BaseParams {
144 > channel: 'ahp-root://';
145 > /**
146 > * Protocol versions the client is willing to speak, ordered from most
147 > * preferred to least preferred. Each entry is a [SemVer](https://semver.org)
148 > * `MAJOR.MINOR.PATCH` string (e.g. `"0.1.0"`).
149 > *
150 > * The server selects one entry and returns it as `InitializeResult.protocolVersion`.
151 > * If the server cannot speak any of the offered versions, it MUST return
152 > * error code `-32005` (`UnsupportedProtocolVersion`).
153 > */
154 > protocolVersions: string[];
155 > /** Unique client identifier */
156 > clientId: string;
157 > /**
158 > * Optional identity of the client implementation (name and version).
159 > * Informational only — see {@link Implementation} for how it may and may not
160 > * be used. Distinct from {@link InitializeParams.clientId | `clientId`},
161 > * which is an opaque per-connection identifier used for reconnection, not a
162 > * human-readable implementation name.
163 > */
164 > clientInfo?: Implementation;
165 > /** URIs to subscribe to during handshake */
166 > initialSubscriptions?: URI[];
167 > /**
168 > * IETF BCP 47 language tag indicating the client's preferred locale
169 > * (e.g. `"en-US"`, `"ja"`). The server SHOULD use this to localise
170 > * user-facing strings such as confirmation option labels.
171 > */
172 > locale?: string;
173 > /**
174 > * Optional client capability declarations.
175 > *
176 > * Servers SHOULD only advertise features whose corresponding client
177 > * capability is set here. Absent means "not declared" — the server
178 > * MUST assume the client does not support the feature.
179 > */
180 > capabilities?: ClientCapabilities;
181 > }
182 >
183 > /**
184 > * Optional capabilities a client declares during `initialize`.
185 > *
186 > * Each field is a presence flag: an empty object `{}` means "supported",
187 > * absence means "not supported". Sub-fields on individual capabilities
188 > * are reserved for future per-capability options.
189 > *
190 > * @category Commands
191 > */
192 > export interface ClientCapabilities {
193 > /**
194 > * Client can render
195 > * [MCP Apps](https://github.com/modelcontextprotocol/ext-apps) — i.e.
196 > * it can host the View sandbox, run the `ui/*` protocol against it,
197 > * and forward `mcp://`-channel traffic on the App's behalf.
198 > *
199 > * Hosts SHOULD only populate
200 > * {@link McpServerCustomization.mcpApp | `McpServerCustomization.mcpApp`}
201 > * (and expose the corresponding
202 > * {@link McpServerCustomization.channel | `mcp://` channel}) when this
203 > * capability is declared. Clients that omit it MUST treat
204 > * App-bearing tool calls as ordinary MCP tool calls.
205 > */
206 > mcpApps?: Record<string, never>;
207 > }
208 >
209 > /**
210 > * Result of the `initialize` command.
211 > *
212 > * `protocolVersion` is the version the server has selected from the client's
213 > * `protocolVersions` list. The client and server MUST use this version for
214 > * the rest of the connection. If the server cannot speak any of the offered
215 > * versions it MUST return error code `-32005` (`UnsupportedProtocolVersion`)
216 > * instead of a result.
217 > */
218 > export interface InitializeResult {
219 > /**
220 > * Protocol version selected by the server. MUST be one of the entries in
221 > * `InitializeParams.protocolVersions`. Formatted as a [SemVer](https://semver.org)
222 > * `MAJOR.MINOR.PATCH` string (e.g. `"0.1.0"`).
223 > */
224 > protocolVersion: string;
225 > /** Current server sequence number */
226 > serverSeq: number;
227 > /**
228 > * Optional identity of the server implementation (name and version).
229 > * Informational only — see {@link Implementation} for how it may and may not
230 > * be used. Whereas {@link InitializeResult.protocolVersion | `protocolVersion`}
231 > * identifies the negotiated protocol, `serverInfo` identifies the host
232 > * software behind it.
233 > */
234 > serverInfo?: Implementation;
235 > /** Snapshots for each `initialSubscriptions` URI */
236 > snapshots: Snapshot[];
237 > /** Suggested default directory for remote filesystem browsing */
238 > defaultDirectory?: URI;
239 > /**
240 > * Characters that, when typed in a {@link Message} input, SHOULD cause
241 > * the client to issue a `completions` request with
242 > * {@link CompletionItemKind.UserMessage}. Typically includes characters like
243 > * `'@'` or `'/'`.
244 > */
245 > completionTriggerCharacters?: string[];
246 > /**
247 > * Prefix that the host recognizes at the start of a user {@link Message.text}
248 > * as a shorthand for executing the remainder as a terminal command. Currently
249 > * the standardized convention is `"!"`; absence means the host does not
250 > * support command prefixes.
251 > */
252 > terminalCommandPrefix?: string;
253 > /**
254 > * OTLP telemetry channels the host emits, if any. Each populated field is
255 > * either a literal `ahp-otlp:` channel URI or an RFC 6570 URI template a
256 > * client expands before subscribing (currently only the `logs` channel
257 > * defines a template variable, `{level}`, for subscriber-side severity
258 > * filtering). Clients MAY ignore signals they cannot process.
259 > *
260 > * @see {@link /specification/telemetry-channel | Telemetry Channel}
261 > */
262 > telemetry?: TelemetryCapabilities;
263 > }
264 >
265 > // ─── ping ────────────────────────────────────────────────────────────────────
266 >
267 > /**
268 > * Verifies that the AHP connection is still alive and keeps it from being
269 > * closed by idle-timeout intermediaries (proxies, load balancers, etc.).
270 > *
271 > * The server MUST respond regardless of whether the client has completed
272 > * `initialize` or holds any subscriptions. Ping carries no payload in either
273 > * direction; the response itself is the signal.
274 > *
275 > * @category Commands
276 > * @method ping
277 > * @direction Client → Server
278 > * @messageType Request
279 > * @version 1
280 > */
281 > export interface PingParams extends BaseParams {
282 > channel: 'ahp-root://';
283 > }
284 >
285 > // ─── reconnect ───────────────────────────────────────────────────────────────
286 >
287 > /**
288 > * Discriminant for reconnect result types.
289 > *
290 > * @category Commands
291 > */
292 > export const enum ReconnectResultType {
293 > Replay = 'replay',
294 > Snapshot = 'snapshot',
295 > }
296 >
297 > /**
298 > * Re-establishes a dropped connection. The server replays missed actions or
299 > * provides fresh snapshots.
300 > *
301 > * @category Commands
302 > * @method reconnect
303 > * @direction Client → Server
304 > * @messageType Request
305 > * @version 1
306 > * @see {@link /specification/lifecycle | Lifecycle} for details.
307 > */
308 > export interface ReconnectParams extends BaseParams {
309 > channel: 'ahp-root://';
310 > /** Client identifier from the original connection */
311 > clientId: string;
312 > /** Last `serverSeq` the client received */
313 > lastSeenServerSeq: number;
314 > /** URIs the client was subscribed to */
315 > subscriptions: URI[];
316 > }
317 >
318 > /**
319 > * Reconnect result when the server can replay from the requested sequence.
320 > *
321 > * The server MUST include all replayed data in the response.
322 > */
323 > export interface ReconnectReplayResult {
324 > /** Discriminant */
325 > type: ReconnectResultType.Replay;
326 > /** Missed action envelopes since `lastSeenServerSeq` */
327 > actions: ActionEnvelope[];
328 > /**
329 > * URIs from `ReconnectParams.subscriptions` that the server cannot resume.
330 > * This includes resources that no longer exist (e.g. disposed sessions or
331 > * terminals) as well as resources the client is no longer permitted to
332 > * observe. Clients SHOULD drop these from their local subscription set.
333 > */
334 > missing: URI[];
335 > }
336 >
337 > /**
338 > * Reconnect result when the gap exceeds the replay buffer.
339 > */
340 > export interface ReconnectSnapshotResult {
341 > /** Discriminant */
342 > type: ReconnectResultType.Snapshot;
343 > /** Fresh snapshots for each subscription */
344 > snapshots: Snapshot[];
345 > }
346 >
347 > /** Result of the `reconnect` command. */
348 > export type ReconnectResult = ReconnectReplayResult | ReconnectSnapshotResult;
349 >
350 > // ─── subscribe ───────────────────────────────────────────────────────────────
351 >
352 > /**
353 > * Subscribe to a URI-identified channel.
354 > *
355 > * A channel MAY have state associated with it (e.g. root, sessions,
356 > * terminals) or be stateless (pure pub/sub for streaming data). For
357 > * state-bearing channels the result includes a snapshot; for stateless
358 > * channels `snapshot` is omitted.
359 > *
360 > * @category Commands
361 > * @method subscribe
362 > * @direction Client → Server
363 > * @messageType Request
364 > * @version 1
365 > * @see {@link /specification/subscriptions | Subscriptions}
366 > */
367 > export interface SubscribeParams extends BaseParams {
368 > /**
369 > * Optional delivery preferences for this subscription.
370 > *
371 > * Servers MAY use these preferences to buffer and coalesce high-frequency
372 > * updates while preserving the same reduced state. Omit this field for the
373 > * server's default delivery behavior.
374 > */
375 > delivery?: SubscriptionDeliveryOptions;
376 > /**
377 > * Optional client-requested shape for the returned snapshot.
378 > *
379 > * Servers that do not understand a requested view ignore it and return their
380 > * default snapshot. Clients MUST tolerate receiving more state than requested.
381 > */
382 > view?: SubscribeView;
383 > }
384 >
385 > /**
386 > * Optional client-requested shape for a subscription snapshot.
387 > *
388 > * @category Commands
389 > */
390 > export interface SubscribeView {
391 > /**
392 > * Advisory number of most-recent completed turns to expose in a chat
393 > * snapshot.
394 > *
395 > * Servers MAY return more or fewer turns than requested. When omitted, the
396 > * host MUST return all retained turns. When older turns remain available, the
397 > * returned {@link ChatState} carries `turnsNextCursor`; clients pass that
398 > * cursor to `fetchTurns` to ask the host to page more turns into the chat
399 > * state.
400 > */
401 > turns?: number;
402 > }
403 >
404 > /**
405 > * Advisory delivery preferences for a single subscription.
406 > *
407 > * @category Commands
408 > */
409 > export interface SubscriptionDeliveryOptions {
410 > /**
411 > * Maximum time, in milliseconds, that the server may intentionally delay
412 > * delivery while buffering/coalescing updates for this subscription.
413 > *
414 > * A value of `0` requests immediate delivery with no intentional coalescing.
415 > */
416 > maxLatencyMs?: number;
417 > }
418 >
419 > /**
420 > * Result of the `subscribe` command.
421 > *
422 > * `snapshot` is present when the subscribed channel has associated state, and
423 > * absent for stateless channels.
424 > */
425 > export interface SubscribeResult {
426 > /** Snapshot of the subscribed channel's state (omitted for stateless channels) */
427 > snapshot?: Snapshot;
428 > }
429 >
430 > // ─── unsubscribe ─────────────────────────────────────────────────────────────
431 >
432 > /**
433 > * Stop receiving updates for a channel.
434 > *
435 > * @category Commands
436 > * @method unsubscribe
437 > * @direction Client → Server
438 > * @messageType Notification
439 > * @version 1
440 > * @see {@link /specification/subscriptions | Subscriptions}
441 > */
442 > export interface UnsubscribeParams {
443 > /** Channel URI to unsubscribe from */
444 > channel: URI;
445 > }
446 >
447 > // ─── dispatchAction ──────────────────────────────────────────────────────────
448 >
449 > /**
450 > * Fire-and-forget action dispatch (write-ahead). The client applies actions
451 > * optimistically to local state and the server echoes them back as an
452 > * {@link ActionEnvelope} once accepted.
453 > *
454 > * The client → server method is named `dispatchAction`; the server's reply
455 > * arrives on the server → client `action` notification (params:
456 > * {@link ActionEnvelope}).
457 > *
458 > * @category Commands
459 > * @method dispatchAction
460 > * @direction Client → Server
461 > * @messageType Notification
462 > * @version 1
463 > * @see {@link /guide/actions | Actions} for the full list of client-dispatchable actions.
464 > */
465 > export interface DispatchActionParams {
466 > /** Channel URI this action targets */
467 > channel: URI;
468 > /** Client sequence number */
469 > clientSeq: number;
470 > /** The action to dispatch */
471 > action: StateAction;
472 > }
473 >
474 > // ─── resourceRead ────────────────────────────────────────────────────────
475 >
476 > /**
477 > * Encoding of fetched content data.
478 > *
479 > * @category Commands
480 > */
481 > export const enum ContentEncoding {
482 > Base64 = 'base64',
483 > Utf8 = 'utf-8',
484 > }
485 >
486 > /**
487 > * Reads the content of a resource by URI.
488 > *
489 > * Content references keep the state tree small by storing large data (images,
490 > * long tool outputs) by reference rather than inline.
491 > *
492 > * Binary content (images, etc.) MUST use `base64` encoding. Text content MAY
493 > * use `utf-8` encoding.
494 > *
495 > * Like all `resource*` methods, `resourceRead` is symmetrical and MAY be
496 > * sent in either direction. Hosts use it to fetch content from a
497 > * client-published URI (e.g. `virtual://my-client/...` plugins); clients
498 > * use it to read host-side files. The receiver enforces access via the
499 > * same permission/`resourceRequest` flow regardless of which peer initiated.
500 > *
501 > * @category Commands
502 > * @method resourceRead
503 > * @direction Client ↔ Server
504 > * @messageType Request
505 > * @version 1
506 > * @throws `NotFound` (`-32008`) if the URI does not exist.
507 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to read the URI.
508 > * @example
509 > * ```jsonc
510 > * // Client → Server
511 > * { "jsonrpc": "2.0", "id": 10, "method": "resourceRead",
512 > * "params": { "uri": "ahp-session:/<uuid>/content/img-1" } }
513 > *
514 > * // Server → Client
515 > * { "jsonrpc": "2.0", "id": 10, "result": {
516 > * "data": "iVBORw0KGgo...",
517 > * "encoding": "base64",
518 > * "contentType": "image/png"
519 > * }}
520 > * ```
521 > */
522 > export interface ResourceReadParams extends BaseParams {
523 > channel: 'ahp-root://';
524 > /** Content URI from a `ContentRef` */
525 > uri: string;
526 > /** Preferred encoding for the returned data (default: server-chosen) */
527 > encoding?: ContentEncoding;
528 > }
529 >
530 > /**
531 > * Result of the `resourceRead` command.
532 > *
533 > * The server SHOULD honor the `encoding` requested in the params. If the
534 > * server cannot provide the requested encoding, it MUST fall back to either
535 > * `base64` or `utf-8`.
536 > */
537 > export interface ResourceReadResult {
538 > /** Content encoded as a string */
539 > data: string;
540 > /** How `data` is encoded */
541 > encoding: ContentEncoding;
542 > /** Content type (e.g. `"image/png"`, `"text/plain"`) */
543 > contentType?: string;
544 > }
545 >
546 > // ─── resourceWrite ───────────────────────────────────────────────────────────
547 >
548 > /**
549 > * How {@link ResourceWriteParams.data} is placed within the target file.
550 > *
551 > * Each mode interprets {@link ResourceWriteParams.position} differently:
552 > *
553 > * - `truncate` (default): rooted at the **start** of the file. The file is
554 > * truncated at `position` (0 by default) and `data` is written from that
555 > * offset, so the resulting file is `existing[0..position] + data`. With
556 > * `position` omitted this is a full overwrite.
557 > * - `append`: rooted at the **end** of the file. `position` counts bytes
558 > * backwards from EOF, so `position: 0` (the default) writes at EOF —
559 > * POSIX append — and `position: 5` inserts `data` 5 bytes before the
560 > * current EOF, shifting those trailing 5 bytes after the inserted region.
561 > * The server MUST evaluate the effective EOF and write atomically with
562 > * respect to other appenders so concurrent `append` writes do not
563 > * clobber each other.
564 > * - `insert`: rooted at the **start** of the file. `position` (0 by default)
565 > * is the byte offset at which `data` is spliced in; bytes at or after
566 > * `position` are shifted right by `data.length`. `insert` always grows
567 > * the file — use `truncate` to overwrite bytes in place.
568 > *
569 > * @category Commands
570 > */
571 > export const enum ResourceWriteMode {
572 > Truncate = 'truncate',
573 > Append = 'append',
574 > Insert = 'insert',
575 > }
576 >
577 > /**
578 > * Writes content to a file on the server's filesystem.
579 > *
580 > * Binary content (images, etc.) MUST use `base64` encoding. Text content MAY
581 > * use `utf-8` encoding.
582 > *
583 > * If the file does not exist, it is created. If the file already exists, the
584 > * effect on existing bytes depends on {@link ResourceWriteParams.mode}:
585 > * `truncate` (default) overwrites from the chosen offset onward, `append`
586 > * preserves all existing bytes and adds `data` at a position rooted at EOF,
587 > * and `insert` preserves all existing bytes and splices `data` in at an
588 > * offset rooted at the start of the file.
589 > *
590 > * Like all `resource*` methods, `resourceWrite` is symmetrical and MAY be
591 > * sent in either direction.
592 > *
593 > * @category Commands
594 > * @method resourceWrite
595 > * @direction Client ↔ Server
596 > * @messageType Request
597 > * @version 1
598 > * @throws `NotFound` (`-32008`) if the parent directory does not exist.
599 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to write to the path.
600 > * @throws `AlreadyExists` (`-32010`) if `createOnly` is set and the file already exists.
601 > * @throws `Conflict` (`-32011`) if `ifMatch` is set and the current `etag` does not match.
602 > * @example
603 > * ```jsonc
604 > * // Client → Server
605 > * { "jsonrpc": "2.0", "id": 11, "method": "resourceWrite",
606 > * "params": { "uri": "file:///workspace/hello.txt", "data": "SGVsbG8=",
607 > * "encoding": "base64", "contentType": "text/plain" } }
608 > *
609 > * // Server → Client
610 > * { "jsonrpc": "2.0", "id": 11, "result": {} }
611 > * ```
612 > */
613 > export interface ResourceWriteParams extends BaseParams {
614 > channel: 'ahp-root://';
615 > /** Target file URI on the server filesystem */
616 > uri: URI;
617 > /** Content encoded as a string */
618 > data: string;
619 > /** How `data` is encoded */
620 > encoding: ContentEncoding;
621 > /** Content type (e.g. `"text/plain"`, `"image/png"`) */
622 > contentType?: string;
623 > /**
624 > * If `true`, the server MUST fail if the file already exists instead of
625 > * overwriting it. Useful for safe creation of new files.
626 > */
627 > createOnly?: boolean;
628 > /**
629 > * How `data` is placed within the target file. Defaults to `'truncate'`
630 > * (full overwrite) when omitted. See {@link ResourceWriteMode} for the
631 > * meaning of each mode and how it interprets {@link position}.
632 > */
633 > mode?: ResourceWriteMode;
634 > /**
635 > * Byte offset interpreted according to {@link mode}. Defaults to `0`.
636 > * - `truncate`: offset from the start of the file at which to truncate
637 > * before writing.
638 > * - `append`: bytes back from EOF at which to insert `data`.
639 > * - `insert`: offset from the start of the file at which to splice in
640 > * `data`.
641 > */
642 > position?: number;
643 > /**
644 > * Optimistic-concurrency token previously returned by
645 > * {@link ResourceResolveResult.etag}. When set, the server MUST fail with
646 > * `Conflict` if the current `etag` does not match — preventing lost
647 > * updates between a `resourceResolve` and a subsequent `resourceWrite`.
648 > */
649 > ifMatch?: string;
650 > }
651 >
652 > /**
653 > * Result of the `resourceWrite` command.
654 > *
655 > * An empty object on success.
656 > */
657 > export interface ResourceWriteResult {
658 > }
659 >
660 > // ─── resourceList ────────────────────────────────────────────────────────
661 >
662 > /**
663 > * Lists directory entries at a file URI on the server's filesystem.
664 > *
665 > * This is intended for remote folder pickers and similar UI that needs to let
666 > * users navigate the server's local filesystem.
667 > *
668 > * The server MUST return success only if the target exists and is a directory.
669 > * If the target does not exist, is not a directory, or cannot be accessed, the
670 > * server MUST return a JSON-RPC error.
671 > *
672 > * Like all `resource*` methods, `resourceList` is symmetrical and MAY be
673 > * sent in either direction.
674 > *
675 > * @category Commands
676 > * @method resourceList
677 > * @direction Client ↔ Server
678 > * @messageType Request
679 > * @version 1
680 > * @throws `NotFound` (`-32008`) if the directory does not exist.
681 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to browse the directory.
682 > */
683 > export interface ResourceListParams extends BaseParams {
684 > channel: 'ahp-root://';
685 > /** Directory URI on the server filesystem */
686 > uri: URI;
687 > }
688 >
689 > /**
690 > * Directory entry returned by `resourceList`.
691 > */
692 > export interface DirectoryEntry {
693 > /** Base name of the entry */
694 > name: string;
695 > /** Whether the entry is a file or directory */
696 > type: 'file' | 'directory';
697 > }
698 >
699 > /**
700 > * Result of the `resourceList` command.
701 > */
702 > export interface ResourceListResult {
703 > /** Entries directly contained in the requested directory */
704 > entries: DirectoryEntry[];
705 > }
706 >
707 > // ─── resourceCopy ────────────────────────────────────────────────────────────
708 >
709 > /**
710 > * Copies a resource from one URI to another on the server's filesystem.
711 > *
712 > * If the destination already exists, it is overwritten unless `failIfExists`
713 > * is set.
714 > *
715 > * Like all `resource*` methods, `resourceCopy` is symmetrical and MAY be
716 > * sent in either direction.
717 > *
718 > * @category Commands
719 > * @method resourceCopy
720 > * @direction Client ↔ Server
721 > * @messageType Request
722 > * @version 1
723 > * @throws `NotFound` (`-32008`) if the source does not exist.
724 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to read the source or write to the destination.
725 > * @throws `AlreadyExists` (`-32010`) if `failIfExists` is set and the destination already exists.
726 > */
727 > export interface ResourceCopyParams extends BaseParams {
728 > channel: 'ahp-root://';
729 > /** Source URI to copy from */
730 > source: URI;
731 > /** Destination URI to copy to */
732 > destination: URI;
733 > /**
734 > * If `true`, the server MUST fail if the destination already exists instead
735 > * of overwriting it.
736 > */
737 > failIfExists?: boolean;
738 > }
739 >
740 > /**
741 > * Result of the `resourceCopy` command.
742 > *
743 > * An empty object on success.
744 > */
745 > export interface ResourceCopyResult {
746 > }
747 >
748 > // ─── resourceDelete ──────────────────────────────────────────────────────────
749 >
750 > /**
751 > * Deletes a resource at a URI on the server's filesystem.
752 > *
753 > * Like all `resource*` methods, `resourceDelete` is symmetrical and MAY be
754 > * sent in either direction.
755 > *
756 > * @category Commands
757 > * @method resourceDelete
758 > * @direction Client ↔ Server
759 > * @messageType Request
760 > * @version 1
761 > * @throws `NotFound` (`-32008`) if the resource does not exist.
762 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to delete the resource.
763 > */
764 > export interface ResourceDeleteParams extends BaseParams {
765 > channel: 'ahp-root://';
766 > /** URI of the resource to delete */
767 > uri: URI;
768 > /**
769 > * If `true` and the target is a directory, delete it and all its contents
770 > * recursively. If `false` (default), deleting a non-empty directory MUST fail.
771 > */
772 > recursive?: boolean;
773 > }
774 >
775 > /**
776 > * Result of the `resourceDelete` command.
777 > *
778 > * An empty object on success.
779 > */
780 > export interface ResourceDeleteResult {
781 > }
782 >
783 > // ─── resourceRequest ─────────────────────────────────────────────────────────
784 >
785 > /**
786 > * Requests permission to access a resource on the receiver's filesystem.
787 > *
788 > * `resourceRequest` is symmetrical and MAY be sent in either direction: a
789 > * client asks the server to grant access to a server-side resource, or a
790 > * server asks the client to grant access to a client-side resource. The
791 > * receiver decides whether to allow, deny, or prompt the user for the
792 > * requested access.
793 > *
794 > * If the receiver denies access, it MUST respond with `PermissionDenied`
795 > * (-32009). The error data MAY include a `ResourceRequestParams` value
796 > * describing the access the caller would need to be granted for the
797 > * operation to succeed; see `PermissionDeniedErrorData` in
798 > * `types/errors.ts`.
799 > *
800 > * After a successful `resourceRequest`, the caller MAY use the corresponding
801 > * `resource*` commands (e.g. `resourceRead`, `resourceWrite`) to perform the
802 > * operation. Receivers MAY rescind access at any time by returning
803 > * `PermissionDenied` on subsequent operations.
804 > *
805 > * Either `read`, `write`, or both SHOULD be set to `true`. A request with
806 > * neither flag set is treated as `read: true` by receivers.
807 > *
808 > * @category Commands
809 > * @method resourceRequest
810 > * @direction Client ↔ Server
811 > * @messageType Request
812 > * @version 1
813 > * @throws `PermissionDenied` (`-32009`) if access is denied.
814 > */
815 > export interface ResourceRequestParams extends BaseParams {
816 > channel: 'ahp-root://';
817 > /**
818 > * Resource URI being requested. Typically a `file:` URI on the receiver's
819 > * filesystem, but any URI scheme that the receiver mediates access to is
820 > * allowed.
821 > */
822 > uri: URI;
823 > /** Whether the caller needs read access to the resource. */
824 > read?: boolean;
825 > /** Whether the caller needs write access to the resource. */
826 > write?: boolean;
827 > }
828 >
829 > /**
830 > * Result of the `resourceRequest` command.
831 > *
832 > * An empty object on success.
833 > */
834 > export interface ResourceRequestResult {
835 > }
836 >
837 > // ─── resourceMove ────────────────────────────────────────────────────────────
838 >
839 > /**
840 > * Moves (renames) a resource from one URI to another on the server's filesystem.
841 > *
842 > * If the destination already exists, it is overwritten unless `failIfExists`
843 > * is set.
844 > *
845 > * Like all `resource*` methods, `resourceMove` is symmetrical and MAY be
846 > * sent in either direction.
847 > *
848 > * @category Commands
849 > * @method resourceMove
850 > * @direction Client ↔ Server
851 > * @messageType Request
852 > * @version 1
853 > * @throws `NotFound` (`-32008`) if the source does not exist.
854 > * @throws `PermissionDenied` (`-32009`) if the client is not permitted to move the resource.
855 > * @throws `AlreadyExists` (`-32010`) if `failIfExists` is set and the destination already exists.
856 > */
857 > export interface ResourceMoveParams extends BaseParams {
858 > channel: 'ahp-root://';
859 > /** Source URI to move from */
860 > source: URI;
861 > /** Destination URI to move to */
862 > destination: URI;
863 > /**
864 > * If `true`, the server MUST fail if the destination already exists instead
865 > * of overwriting it.
866 > */
867 > failIfExists?: boolean;
868 > }
869 >
870 > /**
871 > * Result of the `resourceMove` command.
872 > *
873 > * An empty object on success.
874 > */
875 > export interface ResourceMoveResult {
876 > }
877 >
878 > // ─── resourceResolve ─────────────────────────────────────────────────────────
879 >
880 > /**
881 > * Discriminant for {@link ResourceResolveResult.type}.
882 > *
883 > * @category Commands
884 > */
885 > export const enum ResourceType {
886 > File = 'file',
887 > Directory = 'directory',
888 > Symlink = 'symlink',
889 > }
890 >
891 > /**
892 > * Resolves a resource — the combination of POSIX `stat` and `realpath`.
893 > *
894 > * `resourceResolve` returns metadata about the resource together with its
895 > * canonical URI after symlink resolution. Use this in place of any
896 > * `resourceExists` shim: a missing resource MUST surface as a `NotFound`
897 > * JSON-RPC error rather than a success with a sentinel value. Callers that
898 > * truly need a boolean check should attempt `resourceResolve` and treat
899 > * `NotFound` as "does not exist".
900 > *
901 > * Like all `resource*` methods, `resourceResolve` is symmetrical and MAY be
902 > * sent in either direction.
903 > *
904 > * @category Commands
905 > * @method resourceResolve
906 > * @direction Client ↔ Server
907 > * @messageType Request
908 > * @version 1
909 > * @throws `NotFound` (`-32008`) if the resource does not exist.
910 > * @throws `PermissionDenied` (`-32009`) if the caller is not permitted to stat the URI.
911 > * @example
912 > * ```jsonc
913 > * // Client → Server
914 > * { "jsonrpc": "2.0", "id": 20, "method": "resourceResolve",
915 > * "params": { "channel": "ahp-root://", "uri": "file:///workspace/hello.txt" } }
916 > *
917 > * // Server → Client
918 > * { "jsonrpc": "2.0", "id": 20, "result": {
919 > * "uri": "file:///workspace/hello.txt",
920 > * "type": "file",
921 > * "size": 5,
922 > * "mtime": "2026-01-15T12:34:56.789Z",
923 > * "etag": "W/\"5-abc123\""
924 > * }}
925 > * ```
926 > */
927 > export interface ResourceResolveParams extends BaseParams {
928 > channel: 'ahp-root://';
929 > /** URI to resolve */
930 > uri: URI;
931 > /**
932 > * When `true` (default), follow symlinks and report the metadata of the
933 > * link target — and set `uri` in the result to the canonical (realpath)
934 > * URI. When `false`, stat the link itself (lstat semantics) and report
935 > * `type: 'symlink'`.
936 > */
937 > followSymlinks?: boolean;
938 > }
939 >
940 > /**
941 > * Result of the `resourceResolve` command.
942 > */
943 > export interface ResourceResolveResult {
944 > /**
945 > * Canonical URI after symlink resolution. Equal to the requested URI when
946 > * `followSymlinks` is `false` or the URI does not traverse a symlink.
947 > */
948 > uri: URI;
949 > /** Resource kind. */
950 > type: ResourceType;
951 > /**
952 > * Size in bytes. Omitted for directories when the provider cannot
953 > * cheaply compute it.
954 > */
955 > size?: number;
956 > /** Last-modified time in ISO 8601 format, when known. */
957 > mtime?: string;
958 > /** Creation time in ISO 8601 format, when known. */
959 > ctime?: string;
960 > /** Sniffed MIME type, when known (e.g. `"text/plain"`, `"image/png"`). */
961 > contentType?: string;
962 > /**
963 > * Opaque per-provider version token. When present, pass it as
964 > * {@link ResourceWriteParams.ifMatch} on a subsequent `resourceWrite` to
965 > * detect concurrent modifications.
966 > */
967 > etag?: string;
968 > }
969 >
970 > // ─── resourceMkdir ───────────────────────────────────────────────────────────
971 >
972 > /**
973 > * Creates a directory on the server's filesystem with `mkdir -p` semantics.
974 > *
975 > * The server MUST create any missing parent directories. Creating a
976 > * directory that already exists is a no-op success. If `uri` already
977 > * exists but is **not** a directory, the server MUST fail with
978 > * `AlreadyExists`.
979 > *
980 > * Like all `resource*` methods, `resourceMkdir` is symmetrical and MAY be
981 > * sent in either direction.
982 > *
983 > * @category Commands
984 > * @method resourceMkdir
985 > * @direction Client ↔ Server
986 > * @messageType Request
987 > * @version 1
988 > * @throws `PermissionDenied` (`-32009`) if the caller is not permitted to create the directory.
989 > * @throws `AlreadyExists` (`-32010`) if `uri` already exists as a non-directory.
990 > */
991 > export interface ResourceMkdirParams extends BaseParams {
992 > channel: 'ahp-root://';
993 > /** Directory URI to create (parents created as needed). */
994 > uri: URI;
995 > }
996 >
997 > /**
998 > * Result of the `resourceMkdir` command.
999 > *
1000 > * An empty object on success.
1001 > */
1002 > export interface ResourceMkdirResult {
1003 > }
1004 >
1005 > // ─── authenticate ────────────────────────────────────────────────────────────
1006 >
1007 > /**
1008 > * Pushes a ****** for a protected resource. The `resource` field MUST
1009 > * match a protected-resource identifier the client has discovered from the
1010 > * server — whether declared statically in `AgentInfo.protectedResources`,
1011 > * or discovered dynamically from a live `McpServerAuthRequiredState.resource`
1012 > * or `ToolCallAuthRequiredState.auth.resource` (both surfaced only once the
1013 > * corresponding MCP server or tool call actually challenges for auth).
1014 > * Servers MUST accept any `resource` value they have themselves advertised
1015 > * through one of these three mechanisms.
1016 > *
1017 > * Tokens are delivered using [RFC 6750](https://datatracker.ietf.org/doc/html/rfc6750)
1018 > * (****** Usage) semantics. The client obtains the token from the
1019 > * authorization server(s) listed in the resource's metadata and pushes it
1020 > * to the server via this command.
1021 > *
1022 > * @category Commands
1023 > * @method authenticate
1024 > * @direction Client → Server
1025 > * @messageType Request
1026 > * @version 1
1027 > * @see {@link /specification/authentication | Authentication}
1028 > * @example
1029 > * ```jsonc
1030 > * // Client → Server
1031 > * { "jsonrpc": "2.0", "id": 3, "method": "authenticate",
1032 > * "params": { "channel": "ahp-root://", "resource": "https://api.github.com", "token": "gho_xxxx" } }
1033 > *
1034 > * // Server → Client (success)
1035 > * { "jsonrpc": "2.0", "id": 3, "result": {} }
1036 > *
1037 > * // Server → Client (failure — invalid token)
1038 > * { "jsonrpc": "2.0", "id": 3, "error": { "code": -32007, "message": "Invalid token" } }
1039 > * ```
1040 > */
1041 > export interface AuthenticateParams extends BaseParams {
1042 > channel: 'ahp-root://';
1043 > /**
1044 > * The protected resource identifier. MUST match a `resource` value the
1045 > * server has advertised — via `ProtectedResourceMetadata` in
1046 > * `AgentInfo.protectedResources`, or via a live
1047 > * `McpServerAuthRequiredState.resource` / `ToolCallAuthRequiredState.auth.resource`.
1048 > */
1049 > resource: string;
1050 > /** ****** obtained from the resource's authorization server */
1051 > token: string;
1052 > /**
1053 > * OAuth scopes the token grants, when known. Lets the server determine
1054 > * whether a specific challenge — e.g. the `requiredScopes` on a live
1055 > * `McpServerAuthRequiredState` or `ToolCallAuthRequiredState.auth` — is
1056 > * satisfied without decoding the (opaque, server-specific) token itself.
1057 > * Omit when the client doesn't track granted scopes separately from the
1058 > * token.
1059 > */
1060 > scopes?: string[];
1061 > }
1062 >
1063 > /**
1064 > * Result of the `authenticate` command.
1065 > *
1066 > * An empty object on success. If the token is invalid or the resource is
1067 > * unrecognized, the server MUST return a JSON-RPC error (e.g. `AuthRequired`
1068 > * `-32007` or `InvalidParams` `-32602`).
1069 > */
1070 > export interface AuthenticateResult {
1071 > }
src/vs/base/common/event.ts 1001 covered LOC · 151 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- event.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancelablePromise } from './async.js';
7 > import { CancellationToken } from './cancellation.js';
8 > import { diffSets } from './collections.js';
9 > import { onUnexpectedError } from './errors.js';
10 > import { createSingleCallFunction } from './functional.js';
11 > import { combinedDisposable, Disposable, DisposableMap, DisposableStore, IDisposable, toDisposable } from './lifecycle.js';
12 > import { LinkedList } from './linkedList.js';
13 > import { IObservable, IObservableWithChange, IObserver } from './observable.js';
14 > import { env } from './process.js';
15 > import { StopWatch } from './stopwatch.js';
16 > import { MicrotaskDelay } from './symbols.js';
17 >
18 >
19 > // -----------------------------------------------------------------------------------------------------------------------
20 > // Uncomment the next line to print warnings whenever an emitter with listeners is disposed. That is a sign of code smell.
21 > // -----------------------------------------------------------------------------------------------------------------------
22 > const _enableDisposeWithListenerWarning = false
23 > // || Boolean("TRUE") // causes a linter warning so that it cannot be pushed
24 > ;
25 >
26 >
27 > // -----------------------------------------------------------------------------------------------------------------------
28 > // Uncomment the next line to print warnings whenever a snapshotted event is used repeatedly without cleanup.
29 > // See https://github.com/microsoft/vscode/issues/142851
30 > // -----------------------------------------------------------------------------------------------------------------------
31 > const _enableSnapshotPotentialLeakWarning = false
32 > // || Boolean("TRUE") // causes a linter warning so that it cannot be pushed
33 > ;
34 >
35 >
36 > const _bufferLeakWarnCountThreshold = 100;
37 > const _bufferLeakWarnTimeThreshold = 60_000; // 1 minute
38 >
39 function _isBufferLeakWarningEnabled(): boolean {
40 return !!env['VSCODE_DEV'];
41 }
42 > event.ts
43 > /**
44 > * An event with zero or one parameters that can be subscribed to. The event is a function itself.
45 > */
46 > export interface Event<T> {
47 > (listener: (e: T) => unknown, thisArgs?: any, disposables?: IDisposable[] | DisposableStore): IDisposable;
48 > }
49 >
50 > export namespace Event {
51 > export const None: Event<any> = () => Disposable.None;
52 >
53 > function _addLeakageTraceLogic(options: EmitterOptions) {
54 > if (_enableSnapshotPotentialLeakWarning) { event.ts
55 const { onDidAddListener: origListenerDidAdd } = options;
56 const stack = Stacktrace.create();
64 };
65 }
66 > } event.ts
67 > event.ts
68 > /**
69 > * Given an event, returns another event which debounces calls and defers the listeners to a later task via a shared
70 > * `setTimeout`. The event is converted into a signal (`Event<void>`) to avoid additional object creation as a
71 > * result of merging events and to try prevent race conditions that could arise when using related deferred and
72 > * non-deferred events.
73 > *
74 > * This is useful for deferring non-critical work (eg. general UI updates) to ensure it does not block critical work
75 > * (eg. latency of keypress to text rendered).
76 > *
77 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
78 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
79 > * returned event causes this utility to leak a listener on the original event.
80 > *
81 > * @param event The event source for the new event.
82 > * @param flushOnListenerRemove Whether to fire all debounced events when a listener is removed. If this is not
83 > * specified, some events could go missing. Use this if it's important that all events are processed, even if the
84 > * listener gets disposed before the debounced event fires.
85 > * @param disposable A disposable store to add the new EventEmitter to.
86 > */
87 > export function defer(event: Event<unknown>, flushOnListenerRemove?: boolean, disposable?: DisposableStore): Event<void> {
88 return debounce<unknown, void>(event, () => void 0, 0, undefined, flushOnListenerRemove ?? true, undefined, disposable);
89 }
90 > event.ts
91 > /**
92 > * Given an event, returns another event which only fires once.
93 > *
94 > * @param event The event source for the new event.
95 > */
96 > export function once<T>(event: Event<T>): Event<T> {
97 > return (listener, thisArgs = null, disposables?) => { event.ts
98 > // we need this, in case the event fires during the listener call
99 > let didFire = false;
100 > let result: IDisposable | undefined = undefined;
101 > result = event(e => {
102 > if (didFire) { event.ts
103 return;
104 > } else if (result) { event.ts
105 > result.dispose(); event.ts
106 > } else { event.ts
107 didFire = true;
108 }
109 > event.ts
110 > return listener.call(thisArgs, e);
111 > }, null, disposables); event.ts
112 >
113 > if (didFire) {
114 result.dispose();
115 }
116 > event.ts
117 > return result;
118 > };
119 > }
120 > event.ts
121 > /**
122 > * Given an event, returns another event which only fires once, and only when the condition is met.
123 > *
124 > * @param event The event source for the new event.
125 > */
126 > export function onceIf<T>(event: Event<T>, condition: (e: T) => boolean): Event<T> {
127 return Event.once(Event.filter(event, condition));
128 }
129 > event.ts
130 > /**
131 > * Maps an event of one type into an event of another type using a mapping function, similar to how
132 > * `Array.prototype.map` works.
133 > *
134 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
135 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
136 > * returned event causes this utility to leak a listener on the original event.
137 > *
138 > * @param event The event source for the new event.
139 > * @param map The mapping function.
140 > * @param disposable A disposable store to add the new EventEmitter to.
141 > */
142 > export function map<I, O>(event: Event<I>, map: (i: I) => O, disposable?: DisposableStore): Event<O> {
143 return snapshot((listener, thisArgs = null, disposables?) => event(i => listener.call(thisArgs, map(i)), null, disposables), disposable);
144 }
145 > event.ts
146 > /**
147 > * Wraps an event in another event that performs some function on the event object before firing.
148 > *
149 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
150 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
151 > * returned event causes this utility to leak a listener on the original event.
152 > *
153 > * @param event The event source for the new event.
154 > * @param each The function to perform on the event object.
155 > * @param disposable A disposable store to add the new EventEmitter to.
156 > */
157 > export function forEach<I>(event: Event<I>, each: (i: I) => void, disposable?: DisposableStore): Event<I> {
158 return snapshot((listener, thisArgs = null, disposables?) => event(i => { each(i); listener.call(thisArgs, i); }, null, disposables), disposable);
159 }
160 > event.ts
161 > /**
162 > * Wraps an event in another event that fires only when some condition is met.
163 > *
164 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
165 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
166 > * returned event causes this utility to leak a listener on the original event.
167 > *
168 > * @param event The event source for the new event.
169 > * @param filter The filter function that defines the condition. The event will fire for the object if this function
170 > * returns true.
171 > * @param disposable A disposable store to add the new EventEmitter to.
172 > */
173 > export function filter<T, U>(event: Event<T | U>, filter: (e: T | U) => e is T, disposable?: DisposableStore): Event<T>;
174 > export function filter<T>(event: Event<T>, filter: (e: T) => boolean, disposable?: DisposableStore): Event<T>;
175 > export function filter<T, R>(event: Event<T | R>, filter: (e: T | R) => e is R, disposable?: DisposableStore): Event<R>;
176 > export function filter<T>(event: Event<T>, filter: (e: T) => boolean, disposable?: DisposableStore): Event<T> {
177 > return snapshot((listener, thisArgs = null, disposables?) => event(e => filter(e) && listener.call(thisArgs, e), null, disposables), disposable); event.ts
178 > }
179 > event.ts
180 > /**
181 > * Given an event, returns the same event but typed as `Event<void>`.
182 > */
183 > export function signal<T>(event: Event<T>): Event<void> {
184 return event as Event<any> as Event<void>;
185 }
186 > event.ts
187 > /**
188 > * Given a collection of events, returns a single event which emits whenever any of the provided events emit.
189 > */
190 > export function any<T>(...events: Event<T>[]): Event<T>;
191 > export function any(...events: Event<any>[]): Event<void>;
192 > export function any<T>(...events: Event<T>[]): Event<T> {
193 return (listener, thisArgs = null, disposables?) => {
194 const disposable = combinedDisposable(...events.map(event => event(e => listener.call(thisArgs, e))));
196 };
197 }
198 > event.ts
199 > /**
200 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
201 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
202 > * returned event causes this utility to leak a listener on the original event.
203 > */
204 > export function reduce<I, O>(event: Event<I>, merge: (last: O | undefined, event: I) => O, initial?: O, disposable?: DisposableStore): Event<O> {
205 let output: O | undefined = initial;
206
210 }, disposable);
211 }
212 > event.ts
213 > function snapshot<T>(event: Event<T>, disposable: DisposableStore | undefined): Event<T> {
214 > let listener: IDisposable | undefined; event.ts
215 >
216 > const options: EmitterOptions | undefined = {
217 > onWillAddFirstListener() {
218 > listener = event(emitter.fire, emitter); event.ts
219 > },
220 > onDidRemoveLastListener() { event.ts
221 > listener?.dispose(); event.ts
222 > }
223 > }; event.ts
224 >
225 > if (!disposable) {
226 > _addLeakageTraceLogic(options); event.ts
227 > }
228 > event.ts
229 > const emitter = new Emitter<T>(options);
230 >
231 > disposable?.add(emitter);
232 >
233 > return emitter.event;
234 > }
235 > event.ts
236 > /**
237 > * Adds the IDisposable to the store if it's set, and returns it. Useful to
238 > * Event function implementation.
239 > */
240 > function addAndReturnDisposable<T extends IDisposable>(d: T, store: DisposableStore | IDisposable[] | undefined): T {
241 if (store instanceof Array) {
242 store.push(d);
246 return d;
247 }
248 > event.ts
249 > /**
250 > * Given an event, creates a new emitter that event that will debounce events based on {@link delay} and give an
251 > * array event object of all events that fired.
252 > *
253 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
254 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
255 > * returned event causes this utility to leak a listener on the original event.
256 > *
257 > * @param event The original event to debounce.
258 > * @param merge A function that reduces all events into a single event.
259 > * @param delay The number of milliseconds to debounce.
260 > * @param leading Whether to fire a leading event without debouncing.
261 > * @param flushOnListenerRemove Whether to fire all debounced events when a listener is removed. If this is not
262 > * specified, some events could go missing. Use this if it's important that all events are processed, even if the
263 > * listener gets disposed before the debounced event fires.
264 > * @param leakWarningThreshold See {@link EmitterOptions.leakWarningThreshold}.
265 > * @param disposable A disposable store to register the debounce emitter to.
266 > */
267 > export function debounce<T>(event: Event<T>, merge: (last: T | undefined, event: T) => T, delay?: number | typeof MicrotaskDelay, leading?: boolean, flushOnListenerRemove?: boolean, leakWarningThreshold?: number, disposable?: DisposableStore): Event<T>;
268 > export function debounce<I, O>(event: Event<I>, merge: (last: O | undefined, event: I) => O, delay?: number | typeof MicrotaskDelay, leading?: boolean, flushOnListenerRemove?: boolean, leakWarningThreshold?: number, disposable?: DisposableStore): Event<O>;
269 > export function debounce<I, O>(event: Event<I>, merge: (last: O | undefined, event: I) => O, delay: number | typeof MicrotaskDelay = 100, leading = false, flushOnListenerRemove = false, leakWarningThreshold?: number, disposable?: DisposableStore): Event<O> {
270 let subscription: IDisposable;
271 let output: O | undefined = undefined;
330 return emitter.event;
331 }
332 > event.ts
333 > /**
334 > * Debounces an event, firing after some delay (default=0) with an array of all event original objects.
335 > *
336 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
337 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
338 > * returned event causes this utility to leak a listener on the original event.
339 > *
340 > * @param event The event source for the new event.
341 > * @param delay The number of milliseconds to debounce.
342 > * @param flushOnListenerRemove Whether to fire all debounced events when a listener is removed. If this is not
343 > * specified, some events could go missing. Use this if it's important that all events are processed, even if the
344 > * listener gets disposed before the debounced event fires.
345 > * @param disposable A disposable store to add the new EventEmitter to.
346 > */
347 > export function accumulate<T>(event: Event<T>, delay: number | typeof MicrotaskDelay = 0, flushOnListenerRemove?: boolean, disposable?: DisposableStore): Event<T[]> {
348 return Event.debounce<T, T[]>(event, (last, e) => {
349 if (!last) {
354 }, delay, undefined, flushOnListenerRemove ?? true, undefined, disposable);
355 }
356 > event.ts
357 > /**
358 > * Throttles an event, ensuring the event is fired at most once during the specified delay period.
359 > * Unlike debounce, throttle will fire immediately on the leading edge and/or after the delay on the trailing edge.
360 > *
361 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
362 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
363 > * returned event causes this utility to leak a listener on the original event.
364 > *
365 > * @param event The event source for the new event.
366 > * @param merge An accumulator function that merges events if multiple occur during the throttle period.
367 > * @param delay The number of milliseconds to throttle.
368 > * @param leading Whether to fire on the leading edge (immediately on first event).
369 > * @param trailing Whether to fire on the trailing edge (after delay with the last value).
370 > * @param leakWarningThreshold See {@link EmitterOptions.leakWarningThreshold}.
371 > * @param disposable A disposable store to register the throttle emitter to.
372 > */
373 > export function throttle<T>(event: Event<T>, merge: (last: T | undefined, event: T) => T, delay?: number | typeof MicrotaskDelay, leading?: boolean, trailing?: boolean, leakWarningThreshold?: number, disposable?: DisposableStore): Event<T>;
374 > export function throttle<I, O>(event: Event<I>, merge: (last: O | undefined, event: I) => O, delay?: number | typeof MicrotaskDelay, leading?: boolean, trailing?: boolean, leakWarningThreshold?: number, disposable?: DisposableStore): Event<O>;
375 > export function throttle<I, O>(event: Event<I>, merge: (last: O | undefined, event: I) => O, delay: number | typeof MicrotaskDelay = 100, leading = true, trailing = true, leakWarningThreshold?: number, disposable?: DisposableStore): Event<O> {
376 let subscription: IDisposable;
377 let output: O | undefined = undefined;
437 return emitter.event;
438 }
439 > event.ts
440 > /**
441 > * Filters an event such that some condition is _not_ met more than once in a row, effectively ensuring duplicate
442 > * event objects from different sources do not fire the same event object.
443 > *
444 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
445 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
446 > * returned event causes this utility to leak a listener on the original event.
447 > *
448 > * @param event The event source for the new event.
449 > * @param equals The equality condition.
450 > * @param disposable A disposable store to add the new EventEmitter to.
451 > *
452 > * @example
453 > * ```
454 > * // Fire only one time when a single window is opened or focused
455 > * Event.latch(Event.any(onDidOpenWindow, onDidFocusWindow))
456 > * ```
457 > */
458 > export function latch<T>(event: Event<T>, equals: (a: T, b: T) => boolean = (a, b) => a === b, disposable?: DisposableStore): Event<T> {
459 let firstCall = true;
460 let cache: T;
467 }, disposable);
468 }
469 > event.ts
470 > /**
471 > * Splits an event whose parameter is a union type into 2 separate events for each type in the union.
472 > *
473 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
474 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
475 > * returned event causes this utility to leak a listener on the original event.
476 > *
477 > * @example
478 > * ```
479 > * const event = new EventEmitter<number | undefined>().event;
480 > * const [numberEvent, undefinedEvent] = Event.split(event, isUndefined);
481 > * ```
482 > *
483 > * @param event The event source for the new event.
484 > * @param isT A function that determines what event is of the first type.
485 > * @param disposable A disposable store to add the new EventEmitter to.
486 > */
487 > export function split<T, U>(event: Event<T | U>, isT: (e: T | U) => e is T, disposable?: DisposableStore): [Event<T>, Event<U>] {
488 return [
489 Event.filter(event, isT, disposable),
491 ];
492 }
493 > event.ts
494 > /**
495 > * Buffers an event until it has a listener attached.
496 > *
497 > * *NOTE* that this function returns an `Event` and it MUST be called with a `DisposableStore` whenever the returned
498 > * event is accessible to "third parties", e.g the event is a public property. Otherwise a leaked listener on the
499 > * returned event causes this utility to leak a listener on the original event.
500 > *
501 > * @param event The event source for the new event.
502 > * @param debugName A name for this buffer, used in leak detection warnings.
503 > * @param flushAfterTimeout Determines whether to flush the buffer after a timeout immediately or after a
504 > * `setTimeout` when the first event listener is added.
505 > * @param _buffer Internal: A source event array used for tests.
506 > *
507 > * @example
508 > * ```
509 > * // Start accumulating events, when the first listener is attached, flush
510 > * // the event after a timeout such that multiple listeners attached before
511 > * // the timeout would receive the event
512 > * this.onInstallExtension = Event.buffer(service.onInstallExtension, 'onInstallExtension', true);
513 > * ```
514 > */
515 > export function buffer<T>(event: Event<T>, debugName: string, flushAfterTimeout = false, _buffer: T[] = [], disposable?: DisposableStore): Event<T> {
516 let buffer: T[] | null = _buffer.slice();
517
600 return emitter.event;
601 }
602 > /** event.ts
603 > * Wraps the event in an {@link IChainableEvent}, allowing a more functional programming style.
604 > *
605 > * @example
606 > * ```
607 > * // Normal
608 > * const onEnterPressNormal = Event.filter(
609 > * Event.map(onKeyPress.event, e => new StandardKeyboardEvent(e)),
610 > * e.keyCode === KeyCode.Enter
611 > * ).event;
612 > *
613 > * // Using chain
614 > * const onEnterPressChain = Event.chain(onKeyPress.event, $ => $
615 > * .map(e => new StandardKeyboardEvent(e))
616 > * .filter(e => e.keyCode === KeyCode.Enter)
617 > * );
618 > * ```
619 > */
620 > export function chain<T, R>(event: Event<T>, sythensize: ($: IChainableSythensis<T>) => IChainableSythensis<R>): Event<R> {
621 const fn: Event<R> = (listener, thisArgs, disposables) => {
622 const cs = sythensize(new ChainableSynthesis()) as ChainableSynthesis;
631 return fn;
632 }
633 > event.ts
634 > const HaltChainable = Symbol('HaltChainable');
635 >
636 > class ChainableSynthesis implements IChainableSythensis<any> {
637 private readonly steps: ((input: any) => unknown)[] = [];
638 > event.ts
639 > map<O>(fn: (i: any) => O): this {
640 this.steps.push(fn);
641 return this;
642 }
643 > event.ts
644 > forEach(fn: (i: any) => void): this {
645 this.steps.push(v => {
646 fn(v);
649 return this;
650 }
651 > event.ts
652 > filter(fn: (e: any) => boolean): this {
653 this.steps.push(v => fn(v) ? v : HaltChainable);
654 return this;
655 }
656 > event.ts
657 > reduce<R>(merge: (last: R | undefined, event: any) => R, initial?: R | undefined): this {
658 let last = initial;
659 this.steps.push(v => {
663 return this;
664 }
665 > event.ts
666 > latch(equals: (a: any, b: any) => boolean = (a, b) => a === b): ChainableSynthesis {
667 let firstCall = true;
668 let cache: any;
676 return this;
677 }
678 > event.ts
679 > public evaluate(value: any) {
680 for (const step of this.steps) {
681 value = step(value);
687 return value;
688 }
689 > } event.ts
690 >
691 > export interface IChainableSythensis<T> {
692 > map<O>(fn: (i: T) => O): IChainableSythensis<O>;
693 > forEach(fn: (i: T) => void): IChainableSythensis<T>;
694 > filter<R extends T>(fn: (e: T) => e is R): IChainableSythensis<R>;
695 > filter(fn: (e: T) => boolean): IChainableSythensis<T>;
696 > reduce<R>(merge: (last: R, event: T) => R, initial: R): IChainableSythensis<R>;
697 > reduce<R>(merge: (last: R | undefined, event: T) => R): IChainableSythensis<R>;
698 > latch(equals?: (a: T, b: T) => boolean): IChainableSythensis<T>;
699 > }
700 >
701 > export interface NodeEventEmitter {
702 > on(event: string | symbol, listener: Function): unknown;
703 > removeListener(event: string | symbol, listener: Function): unknown;
704 > }
705 >
706 > /**
707 > * Creates an {@link Event} from a node event emitter.
708 > */
709 > export function fromNodeEventEmitter<T>(emitter: NodeEventEmitter, eventName: string, map: (...args: any[]) => T = id => id): Event<T> {
710 const fn = (...args: unknown[]) => result.fire(map(...args));
711 const onFirstListenerAdd = () => emitter.on(eventName, fn);
715 return result.event;
716 }
717 > event.ts
718 > export interface DOMEventEmitter {
719 > addEventListener(event: string | symbol, listener: Function): void;
720 > removeEventListener(event: string | symbol, listener: Function): void;
721 > }
722 >
723 > /**
724 > * Creates an {@link Event} from a DOM event emitter.
725 > */
726 > export function fromDOMEventEmitter<T>(emitter: DOMEventEmitter, eventName: string, map: (...args: any[]) => T = id => id): Event<T> {
727 const fn = (...args: unknown[]) => result.fire(map(...args));
728 const onFirstListenerAdd = () => emitter.addEventListener(eventName, fn);
732 return result.event;
733 }
734 > event.ts
735 > /**
736 > * Creates a promise out of an event, using the {@link Event.once} helper.
737 > */
738 > export function toPromise<T>(event: Event<T>, disposables?: IDisposable[] | DisposableStore): CancelablePromise<T> {
739 > let cancelRef: () => void; event.ts
740 > let listener: IDisposable;
741 > const promise = new Promise((resolve) => {
742 > listener = once(event)(resolve);
743 > addToDisposables(listener, disposables);
744 >
745 > // not resolved, matching the behavior of a normal disposal
746 > cancelRef = () => {
747 disposeAndRemove(listener, disposables);
748 };
749 > }) as CancelablePromise<T>; event.ts
750 > promise.cancel = cancelRef!;
751 >
752 > if (disposables) {
753 promise.finally(() => disposeAndRemove(listener, disposables));
754 }
755 > event.ts
756 > return promise;
757 > }
758 > event.ts
759 > /**
760 > * A convenience function for forwarding an event to another emitter which
761 > * improves readability.
762 > *
763 > * This is similar to {@link Relay} but allows instantiating and forwarding
764 > * on a single line and also allows for multiple source events.
765 > * @param from The event to forward.
766 > * @param to The emitter to forward the event to.
767 > * @example
768 > * Event.forward(event, emitter);
769 > * // equivalent to
770 > * event(e => emitter.fire(e));
771 > * // equivalent to
772 > * event(emitter.fire, emitter);
773 > */
774 > export function forward<T>(from: Event<T>, to: Emitter<T>): IDisposable {
775 return from(e => to.fire(e));
776 }
777 > event.ts
778 > /**
779 > * Adds a listener to an event and calls the listener immediately with undefined as the event object.
780 > *
781 > * @example
782 > * ```
783 > * // Initialize the UI and update it when dataChangeEvent fires
784 > * runAndSubscribe(dataChangeEvent, () => this._updateUI());
785 > * ```
786 > */
787 > export function runAndSubscribe<T>(event: Event<T>, handler: (e: T) => unknown, initial: T): IDisposable;
788 > export function runAndSubscribe<T>(event: Event<T>, handler: (e: T | undefined) => unknown): IDisposable;
789 > export function runAndSubscribe<T>(event: Event<T>, handler: (e: T | undefined) => unknown, initial?: T): IDisposable {
790 handler(initial);
791 return event(e => handler(e));
792 }
793 > event.ts
794 > class EmitterObserver<T> implements IObserver {
795 >
796 > readonly emitter: Emitter<T>;
797 >
798 > private _counter = 0;
799 > private _hasChanged = false;
800 >
801 > constructor(readonly _observable: IObservable<T>, store: DisposableStore | undefined) {
802 const options: EmitterOptions = {
803 onWillAddFirstListener: () => {
819 }
820 }
821 > event.ts
822 > beginUpdate<T>(_observable: IObservable<T>): void {
823 // assert(_observable === this.obs);
824 this._counter++;
825 }
826 > event.ts
827 > handlePossibleChange<T>(_observable: IObservable<T>): void {
828 // assert(_observable === this.obs);
829 }
830 > event.ts
831 > handleChange<T, TChange>(_observable: IObservableWithChange<T, TChange>, _change: TChange): void {
832 // assert(_observable === this.obs);
833 this._hasChanged = true;
834 }
835 > event.ts
836 > endUpdate<T>(_observable: IObservable<T>): void {
837 // assert(_observable === this.obs);
838 this._counter--;
845 }
846 }
847 > } event.ts
848 >
849 > /**
850 > * Creates an event emitter that is fired when the observable changes.
851 > * Each listeners subscribes to the emitter.
852 > */
853 > export function fromObservable<T>(obs: IObservable<T>, store?: DisposableStore): Event<T> {
854 const observer = new EmitterObserver(obs, store);
855 return observer.emitter.event;
856 }
857 > event.ts
858 > /**
859 > * Each listener is attached to the observable directly.
860 > */
861 > export function fromObservableLight(observable: IObservable<unknown>): Event<void> {
862 return (listener, thisArgs, disposables) => {
863 let count = 0;
897 };
898 }
899 > } event.ts
900 >
901 > export interface EmitterOptions {
902 > /**
903 > * Optional function that's called *before* the very first listener is added
904 > */
905 > onWillAddFirstListener?: Function;
906 > /**
907 > * Optional function that's called *after* the very first listener is added
908 > */
909 > onDidAddFirstListener?: Function;
910 > /**
911 > * Optional function that's called after a listener is added
912 > */
913 > onDidAddListener?: Function;
914 > /**
915 > * Optional function that's called *after* remove the very last listener
916 > */
917 > onDidRemoveLastListener?: Function;
918 > /**
919 > * Optional function that's called *before* a listener is removed
920 > */
921 > onWillRemoveListener?: Function;
922 > /**
923 > * Optional function that's called when a listener throws an error. Defaults to
924 > * {@link onUnexpectedError}
925 > */
926 > onListenerError?: (e: any) => void;
927 > /**
928 > * Number of listeners that are allowed before assuming a leak. Default to
929 > * a globally configured value
930 > *
931 > * @see setGlobalLeakWarningThreshold
932 > */
933 > leakWarningThreshold?: number;
934 > /**
935 > * Human-readable name for the emitter, included in leak warning error
936 > * messages to help identify which emitter is leaking in telemetry.
937 > */
938 > leakWarningName?: string;
939 > /**
940 > * Pass in a delivery queue, which is useful for ensuring
941 > * in order event delivery across multiple emitters.
942 > */
943 > deliveryQueue?: EventDeliveryQueue;
944 >
945 > /** ONLY enable this during development */
946 > _profName?: string;
947 > }
948 >
949 >
950 > export class EventProfiling {
951 >
952 > static readonly all = new Set<EventProfiling>();
953 >
954 > private static _idPool = 0;
955 >
956 > readonly name: string;
957 > public listenerCount: number = 0;
958 > public invocationCount = 0;
959 > public elapsedOverall = 0;
960 > public durations: number[] = [];
961 >
962 > private _stopWatch?: StopWatch;
963 >
964 > constructor(name: string) {
965 this.name = `${name}_${EventProfiling._idPool++}`;
966 EventProfiling.all.add(this);
967 }
968 > event.ts
969 > start(listenerCount: number): void {
970 this._stopWatch = new StopWatch();
971 this.listenerCount = listenerCount;
972 }
973 > event.ts
974 > stop(): void {
975 if (this._stopWatch) {
976 const elapsed = this._stopWatch.elapsed();
981 }
982 }
983 > } event.ts
984 >
985 > let _globalLeakWarningThreshold = -1;
986 > export function setGlobalLeakWarningThreshold(n: number): IDisposable {
987 const oldValue = _globalLeakWarningThreshold;
988 _globalLeakWarningThreshold = n;
993 };
994 }
995 > event.ts
996 > class LeakageMonitor {
997 >
998 > private static _idPool = 1;
999 >
1000 > private _stacks: Map<string, number> | undefined;
1001 > private _warnCountdown: number = 0;
1002 >
1003 > constructor(
1004 private readonly _errorHandler: (err: Error) => void,
1005 readonly threshold: number,
1006 readonly name: string = (LeakageMonitor._idPool++).toString(16).padStart(3, '0')
1007 ) { }
1008 > event.ts
1009 > dispose(): void {
1010 this._stacks?.clear();
1011 }
1012 > event.ts
1013 > check(stack: Stacktrace, listenerCount: number): undefined | (() => void) {
1014
1015 const threshold = this.threshold;
1046 };
1047 }
1048 > event.ts
1049 > getMostFrequentStack(): [string, number] | undefined {
1050 if (!this._stacks) {
1051 return undefined;
1061 return topStack;
1062 }
1063 > } event.ts
1064 >
1065 > class Stacktrace {
1066 >
1067 > static create() {
1068 > const err = new Error();
1069 > return new Stacktrace(err.stack ?? '');
1070 > }
1071 >
1072 > private constructor(readonly value: string) { }
1073 >
1074 > print() {
1075 console.warn(this.value.split('\n').slice(2).join('\n'));
1076 }
1077 > } event.ts
1078 >
1079 > // error that is logged when going over the configured listener threshold
1080 > export class ListenerLeakError extends Error {
1081 > readonly kind: string;
1082 > readonly listenerCount: number;
1083 > /**
1084 > * The detailed message including listener count and most frequent stack.
1085 > * Available locally for debugging but intentionally not used as the error
1086 > * `message`. When `emitterName` is provided, errors group by emitter name
1087 > * and kind in telemetry; otherwise they group by kind alone.
1088 > */
1089 > readonly details: string;
1090 > constructor(kind: 'dominated' | 'popular', details: string, stack: string, listenerCount: number, emitterName?: string) {
1091 super(emitterName
1092 ? `[${emitterName}] potential listener LEAK detected, ${kind}`
1098 this.stack = stack;
1099 }
1100 > event.ts
1101 > static is(err: unknown): err is ListenerLeakError {
1102 return err instanceof ListenerLeakError
1103 || (err instanceof Error && typeof (err as Error & { kind: unknown; listenerCount: unknown }).kind === 'string' && typeof (err as Error & { kind: unknown; listenerCount: unknown }).listenerCount === 'number');
1104 }
1105 > } event.ts
1106 >
1107 > // SEVERE error that is logged when having gone way over the configured listener
1108 > // threshold so that the emitter refuses to accept more listeners
1109 > export class ListenerRefusalError extends ListenerLeakError {
1110 > constructor(kind: 'dominated' | 'popular', details: string, stack: string, listenerCount: number, emitterName?: string) {
1111 super(kind, details, stack, listenerCount, emitterName);
1112 this.name = 'ListenerRefusalError';
1113 }
1114 > } event.ts
1115 >
1116 > let id = 0;
1117 > class UniqueContainer<T> {
1118 > stack?: Stacktrace;
1119 > public id = id++;
1120 > constructor(public readonly value: T) { }
1121 > }
1122 > const compactionThreshold = 2;
1123 >
1124 > type ListenerContainer<T> = UniqueContainer<(data: T) => void>;
1125 > type ListenerOrListeners<T> = (ListenerContainer<T> | undefined)[] | ListenerContainer<T>;
1126 >
1127 > const forEachListener = <T>(listeners: ListenerOrListeners<T>, fn: (c: ListenerContainer<T>) => void) => {
1128 if (listeners instanceof UniqueContainer) {
1129 fn(listeners);
1137 }
1138 };
1139 > event.ts
1140 > /**
1141 > * The Emitter can be used to expose an Event to the public
1142 > * to fire it from the insides.
1143 > * Sample:
1144 > class Document {
1145 >
1146 > private readonly _onDidChange = new Emitter<(value:string)=>any>();
1147 >
1148 > public onDidChange = this._onDidChange.event;
1149 >
1150 > // getter-style
1151 > // get onDidChange(): Event<(value:string)=>any> {
1152 > // return this._onDidChange.event;
1153 > // }
1154 >
1155 > private _doIt() {
1156 > //...
1157 > this._onDidChange.fire(value);
1158 > }
1159 > }
1160 > */
1161 > export class Emitter<T> {
1162 >
1163 > private readonly _options?: EmitterOptions;
1164 > private readonly _leakageMon?: LeakageMonitor;
1165 > private readonly _perfMon?: EventProfiling;
1166 > private _disposed?: true;
1167 > private _event?: Event<T>;
1168 >
1169 > /**
1170 > * A listener, or list of listeners. A single listener is the most common
1171 > * for event emitters (#185789), so we optimize that special case to avoid
1172 > * wrapping it in an array (just like Node.js itself.)
1173 > *
1174 > * A list of listeners never 'downgrades' back to a plain function if
1175 > * listeners are removed, for two reasons:
1176 > *
1177 > * 1. That's complicated (especially with the deliveryQueue)
1178 > * 2. A listener with >1 listener is likely to have >1 listener again at
1179 > * some point, and swapping between arrays and functions may[citation needed]
1180 > * introduce unnecessary work and garbage.
1181 > *
1182 > * The array listeners can be 'sparse', to avoid reallocating the array
1183 > * whenever any listener is added or removed. If more than `1 / compactionThreshold`
1184 > * of the array is empty, only then is it resized.
1185 > */
1186 > protected _listeners?: ListenerOrListeners<T>;
1187 >
1188 > /**
1189 > * Always to be defined if _listeners is an array. It's no longer a true
1190 > * queue, but holds the dispatching 'state'. If `fire()` is called on an
1191 > * emitter, any work left in the _deliveryQueue is finished first.
1192 > */
1193 > private _deliveryQueue?: EventDeliveryQueuePrivate;
1194 > protected _size = 0;
1195 >
1196 > constructor(options?: EmitterOptions) {
1197 > this._options = options; event.ts
1198 > this._leakageMon = (_globalLeakWarningThreshold > 0 || this._options?.leakWarningThreshold)
1199 ? new LeakageMonitor(options?.onListenerError ?? onUnexpectedError, this._options?.leakWarningThreshold ?? _globalLeakWarningThreshold, this._options?.leakWarningName) :
1200 > undefined; event.ts
1201 > this._perfMon = this._options?._profName ? new EventProfiling(this._options._profName) : undefined;
1202 > this._deliveryQueue = this._options?.deliveryQueue as EventDeliveryQueuePrivate | undefined;
1203 > }
1204 > event.ts
1205 > dispose() {
1206 > if (!this._disposed) { event.ts
1207 > this._disposed = true;
1208 >
1209 > // It is bad to have listeners at the time of disposing an emitter, it is worst to have listeners keep the emitter
1210 > // alive via the reference that's embedded in their disposables. Therefore we loop over all remaining listeners and
1211 > // unset their subscriptions/disposables. Looping and blaming remaining listeners is done on next tick because the
1212 > // the following programming pattern is very popular:
1213 > //
1214 > // const someModel = this._disposables.add(new ModelObject()); // (1) create and register model
1215 > // this._disposables.add(someModel.onDidChange(() => { ... }); // (2) subscribe and register model-event listener
1216 > // ...later...
1217 > // this._disposables.dispose(); disposes (1) then (2): don't warn after (1) but after the "overall dispose" is done
1218 >
1219 > if (this._deliveryQueue?.current === this) {
1220 this._deliveryQueue.reset();
1221 }
1222 > if (this._listeners) { event.ts
1223 > if (_enableDisposeWithListenerWarning) { event.ts
1224 const listeners = this._listeners;
1225 queueMicrotask(() => {
1227 });
1228 }
1229 > event.ts
1230 > this._listeners = undefined;
1231 > this._size = 0;
1232 > }
1233 > this._options?.onDidRemoveLastListener?.(); event.ts
1234 > this._leakageMon?.dispose();
1235 > }
1236 > }
1237 > event.ts
1238 > /**
1239 > * For the public to allow to subscribe
1240 > * to events from this Emitter
1241 > */
1242 > get event(): Event<T> {
1243 > this._event ??= (callback: (e: T) => unknown, thisArgs?: any, disposables?: IDisposable[] | DisposableStore) => { event.ts
1244 > if (this._leakageMon && this._size > this._leakageMon.threshold ** 2) { event.ts
1245 const message = `[${this._leakageMon.name}] REFUSES to accept new listeners because it exceeded its threshold by far (${this._size} vs ${this._leakageMon.threshold})`;
1246 console.warn(message);
1254 return Disposable.None;
1255 }
1256 > event.ts
1257 > if (this._disposed) {
1258 // todo: should we warn if a listener is added to a disposed emitter? This happens often
1259 return Disposable.None;
1260 }
1261 > event.ts
1262 > if (thisArgs) {
1263 callback = callback.bind(thisArgs);
1264 }
1265 > event.ts
1266 > const contained = new UniqueContainer(callback);
1267 >
1268 > let removeMonitor: Function | undefined;
1269 > let stack: Stacktrace | undefined;
1270 > if (this._leakageMon && this._size >= Math.ceil(this._leakageMon.threshold * 0.2)) {
1271 // check and record this emitter for potential leakage
1272 contained.stack = Stacktrace.create();
1273 removeMonitor = this._leakageMon.check(contained.stack, this._size + 1);
1274 }
1275 > event.ts
1276 > if (_enableDisposeWithListenerWarning) {
1277 contained.stack = stack ?? Stacktrace.create();
1278 }
1279 > event.ts
1280 > if (!this._listeners) {
1281 > this._options?.onWillAddFirstListener?.(this);
1282 > this._listeners = contained;
1283 > this._options?.onDidAddFirstListener?.(this);
1284 > } else if (this._listeners instanceof UniqueContainer) {
1285 this._deliveryQueue ??= new EventDeliveryQueuePrivate();
1286 this._listeners = [this._listeners, contained];
1288 this._listeners.push(contained);
1289 }
1290 > this._options?.onDidAddListener?.(this); event.ts
1291 >
1292 > this._size++;
1293 >
1294 >
1295 > const result = toDisposable(() => {
1296 > removeMonitor?.(); event.ts
1297 > this._removeListener(contained);
1298 > }); event.ts
1299 > addToDisposables(result, disposables);
1300 >
1301 > return result;
1302 > };
1303 > event.ts
1304 > return this._event;
1305 > }
1306 > event.ts
1307 > private _removeListener(listener: ListenerContainer<T>) {
1308 > this._options?.onWillRemoveListener?.(this); event.ts
1309 >
1310 > if (!this._listeners) {
1311 > return; // expected if a listener gets disposed event.ts
1312 > }
1313 > event.ts
1314 > if (this._size === 1) {
1315 > this._listeners = undefined; event.ts
1316 > this._options?.onDidRemoveLastListener?.(this);
1317 > this._size = 0;
1318 > return;
1319 > }
1320
1321 // size > 1 which requires that listeners be a list:
1348 listeners.length = n;
1349 }
1350 > } event.ts
1351 > event.ts
1352 > private _deliver(listener: undefined | UniqueContainer<(value: T) => void>, value: T) {
1353 > if (!listener) { event.ts
1354 return;
1355 }
1356 > event.ts
1357 > const errorHandler = this._options?.onListenerError || onUnexpectedError;
1358 > if (!errorHandler) {
1359 listener.value(value);
1360 return;
1361 }
1362 > event.ts
1363 > try {
1364 > listener.value(value);
1365 > } catch (e) {
1366 errorHandler(e);
1367 }
1368 > } event.ts
1369 > event.ts
1370 > /** Delivers items in the queue. Assumes the queue is ready to go. */
1371 > private _deliverQueue(dq: EventDeliveryQueuePrivate) {
1372 const listeners = dq.current!._listeners! as (ListenerContainer<T> | undefined)[];
1373 while (dq.i < dq.end) {
1377 dq.reset();
1378 }
1379 > event.ts
1380 > /**
1381 > * To be kept private to fire an event to
1382 > * subscribers
1383 > */
1384 > fire(event: T): void {
1385 > if (this._deliveryQueue?.current) { event.ts
1386 this._deliverQueue(this._deliveryQueue);
1387 this._perfMon?.stop(); // last fire() will have starting perfmon, stop it before starting the next dispatch
1388 }
1389 > event.ts
1390 > this._perfMon?.start(this._size);
1391 >
1392 > if (!this._listeners) {
1393 > // no-op event.ts
1394 > } else if (this._listeners instanceof UniqueContainer) { event.ts
1395 > this._deliver(this._listeners, event); event.ts
1396 > } else { event.ts
1397 const dq = this._deliveryQueue!;
1398 dq.enqueue(this, event, this._listeners.length);
1399 this._deliverQueue(dq);
1400 }
1401 > event.ts
1402 > this._perfMon?.stop();
1403 > }
1404 > event.ts
1405 > hasListeners(): boolean {
1406 return this._size > 0;
1407 }
1408 > } event.ts
1409 >
1410 > export interface EventDeliveryQueue {
1411 > _isEventDeliveryQueue: true;
1412 > }
1413 >
1414 > export const createEventDeliveryQueue = (): EventDeliveryQueue => new EventDeliveryQueuePrivate();
1415 >
1416 class EventDeliveryQueuePrivate implements EventDeliveryQueue {
1417 declare _isEventDeliveryQueue: true;
1426 */
1427 public end = 0;
1428 > event.ts
1429 > /**
1430 > * Emitter currently being dispatched on. Emitter._listeners is always an array.
1431 > */
1432 > public current?: Emitter<any>;
1433 > /**
1434 > * Currently emitting value. Defined whenever `current` is.
1435 > */
1436 > public value?: unknown;
1437 >
1438 > public enqueue<T>(emitter: Emitter<T>, value: T, end: number) {
1439 this.i = 0;
1440 this.end = end;
1442 this.value = value;
1443 }
1444 > event.ts
1445 > public reset() {
1446 this.i = this.end; // force any current emission loop to stop, mainly for during dispose
1447 this.current = undefined;
1448 this.value = undefined;
1449 }
1450 > } event.ts
1451 >
1452 > export interface IWaitUntil {
1453 > token: CancellationToken;
1454 > waitUntil(thenable: Promise<unknown>): void;
1455 > }
1456 >
1457 > export type IWaitUntilData<T> = Omit<Omit<T, 'waitUntil'>, 'token'>;
1458 >
1459 > export class AsyncEmitter<T extends IWaitUntil> extends Emitter<T> {
1460 >
1461 > private _asyncDeliveryQueue?: LinkedList<[(ev: T) => void, IWaitUntilData<T>]>;
1462 >
1463 > async fireAsync(data: IWaitUntilData<T>, token: CancellationToken, promiseJoin?: (p: Promise<unknown>, listener: Function) => Promise<unknown>): Promise<void> {
1464 if (!this._listeners) {
1465 return;
1512 }
1513 }
1514 > } event.ts
1515 >
1516 >
1517 > export class PauseableEmitter<T> extends Emitter<T> {
1518 >
1519 > private _isPaused = 0;
1520 > protected _eventQueue = new LinkedList<T>();
1521 > private _mergeFn?: (input: T[]) => T;
1522 >
1523 > public get isPaused(): boolean {
1524 > return this._isPaused !== 0;
1525 > }
1526 >
1527 > constructor(options?: EmitterOptions & { merge?: (input: T[]) => T }) {
1528 super(options);
1529 this._mergeFn = options?.merge;
1530 }
1531 > event.ts
1532 > pause(): void {
1533 this._isPaused++;
1534 }
1535 > event.ts
1536 > resume(): void {
1537 if (this._isPaused !== 0 && --this._isPaused === 0) {
1538 if (this._mergeFn) {
1554 }
1555 }
1556 > event.ts
1557 > override fire(event: T): void {
1558 if (this._size) {
1559 if (this._isPaused !== 0) {
1564 }
1565 }
1566 > } event.ts
1567 >
1568 > export class DebounceEmitter<T> extends PauseableEmitter<T> {
1569 >
1570 > private readonly _delay: number;
1571 > private _handle: Timeout | undefined;
1572 >
1573 > constructor(options: EmitterOptions & { merge: (input: T[]) => T; delay?: number }) {
1574 super(options);
1575 this._delay = options.delay ?? 100;
1576 }
1577 > event.ts
1578 > override fire(event: T): void {
1579 if (!this._handle) {
1580 this.pause();
1586 super.fire(event);
1587 }
1588 > } event.ts
1589 >
1590 > /**
1591 > * An emitter which queue all events and then process them at the
1592 > * end of the event loop.
1593 > */
1594 > export class MicrotaskEmitter<T> extends Emitter<T> {
1595 > private _queuedEvents: T[] = [];
1596 > private _mergeFn?: (input: T[]) => T;
1597 >
1598 > constructor(options?: EmitterOptions & { merge?: (input: T[]) => T }) {
1599 super(options);
1600 this._mergeFn = options?.merge;
1601 }
1602 > override fire(event: T): void { event.ts
1603
1604 if (!this.hasListeners()) {
1618 }
1619 }
1620 > } event.ts
1621 >
1622 > /**
1623 > * An event emitter that multiplexes many events into a single event.
1624 > *
1625 > * @example Listen to the `onData` event of all `Thing`s, dynamically adding and removing `Thing`s
1626 > * to the multiplexer as needed.
1627 > *
1628 > * ```typescript
1629 > * const anythingDataMultiplexer = new EventMultiplexer<{ data: string }>();
1630 > *
1631 > * const thingListeners = DisposableMap<Thing, IDisposable>();
1632 > *
1633 > * thingService.onDidAddThing(thing => {
1634 > * thingListeners.set(thing, anythingDataMultiplexer.add(thing.onData);
1635 > * });
1636 > * thingService.onDidRemoveThing(thing => {
1637 > * thingListeners.deleteAndDispose(thing);
1638 > * });
1639 > *
1640 > * anythingDataMultiplexer.event(e => {
1641 > * console.log('Something fired data ' + e.data)
1642 > * });
1643 > * ```
1644 > */
1645 > export class EventMultiplexer<T> implements IDisposable {
1646 >
1647 > private readonly emitter: Emitter<T>;
1648 > private hasListeners = false;
1649 > private events: { event: Event<T>; listener: IDisposable | null }[] = [];
1650 >
1651 > constructor() {
1652 this.emitter = new Emitter<T>({
1653 onWillAddFirstListener: () => this.onFirstListenerAdd(),
1655 });
1656 }
1657 > event.ts
1658 > get event(): Event<T> {
1659 return this.emitter.event;
1660 }
1661 > event.ts
1662 > add(event: Event<T>): IDisposable {
1663 const e = { event: event, listener: null };
1664 this.events.push(e);
1679 return toDisposable(createSingleCallFunction(dispose));
1680 }
1681 > event.ts
1682 > private onFirstListenerAdd(): void {
1683 this.hasListeners = true;
1684 this.events.forEach(e => this.hook(e));
1685 }
1686 > event.ts
1687 > private onLastListenerRemove(): void {
1688 this.hasListeners = false;
1689 this.events.forEach(e => this.unhook(e));
1690 }
1691 > event.ts
1692 > private hook(e: { event: Event<T>; listener: IDisposable | null }): void {
1693 e.listener = e.event(r => this.emitter.fire(r));
1694 }
1695 > event.ts
1696 > private unhook(e: { event: Event<T>; listener: IDisposable | null }): void {
1697 e.listener?.dispose();
1698 e.listener = null;
1699 }
1700 > event.ts
1701 > dispose(): void {
1702 this.emitter.dispose();
1703
1707 this.events = [];
1708 }
1709 > } event.ts
1710 >
1711 > export interface IDynamicListEventMultiplexer<TEventType> extends IDisposable {
1712 > readonly event: Event<TEventType>;
1713 > }
1714 > export class DynamicListEventMultiplexer<TItem, TEventType> implements IDynamicListEventMultiplexer<TEventType> {
1715 > private readonly _store = new DisposableStore();
1716 >
1717 > readonly event: Event<TEventType>;
1718 >
1719 > constructor(
1720 items: TItem[],
1721 onAddItem: Event<TItem>,
1747 this.event = multiplexer.event;
1748 }
1749 > event.ts
1750 > dispose() {
1751 this._store.dispose();
1752 }
1753 > } event.ts
1754 >
1755 > /**
1756 > * The EventBufferer is useful in situations in which you want
1757 > * to delay firing your events during some code.
1758 > * You can wrap that code and be sure that the event will not
1759 > * be fired during that wrap.
1760 > *
1761 > * ```
1762 > * const emitter: Emitter;
1763 > * const delayer = new EventDelayer();
1764 > * const delayedEvent = delayer.wrapEvent(emitter.event);
1765 > *
1766 > * delayedEvent(console.log);
1767 > *
1768 > * delayer.bufferEvents(() => {
1769 > * emitter.fire(); // event will not be fired yet
1770 > * });
1771 > *
1772 > * // event will only be fired at this point
1773 > * ```
1774 > */
1775 > export class EventBufferer {
1776
1777 private data: { buffers: Function[] }[] = [];
1778 > event.ts
1779 > wrapEvent<T>(event: Event<T>): Event<T>;
1780 > wrapEvent<T>(event: Event<T>, reduce: (last: T | undefined, event: T) => T): Event<T>;
1781 > wrapEvent<T, O>(event: Event<T>, reduce: (last: O | undefined, event: T) => O, initial: O): Event<O>;
1782 > wrapEvent<T, O>(event: Event<T>, reduce?: (last: T | O | undefined, event: T) => T | O, initial?: O): Event<O | T> {
1783 return (listener, thisArgs?, disposables?) => {
1784 return event(i => {
1832 };
1833 }
1834 > event.ts
1835 > bufferEvents<R = void>(fn: () => R): R {
1836 const data = { buffers: new Array<Function>() };
1837 this.data.push(data);
1841 return r;
1842 }
1843 > } event.ts
1844 >
1845 > /**
1846 > * A Relay is an event forwarder which functions as a replugabble event pipe.
1847 > * Once created, you can connect an input event to it and it will simply forward
1848 > * events from that input event through its own `event` property. The `input`
1849 > * can be changed at any point in time.
1850 > */
1851 > export class Relay<T> implements IDisposable {
1852
1853 private listening = false;
1867
1868 readonly event: Event<T> = this.emitter.event;
1869 > event.ts
1870 > set input(event: Event<T>) {
1871 this.inputEvent = event;
1872
1876 }
1877 }
1878 > event.ts
1879 > dispose() {
1880 this.inputEventListener.dispose();
1881 this.emitter.dispose();
1882 }
1883 > } event.ts
1884 >
1885 > export interface IValueWithChangeEvent<T> {
1886 > readonly onDidChange: Event<void>;
1887 > get value(): T;
1888 > }
1889 >
1890 > export class ValueWithChangeEvent<T> implements IValueWithChangeEvent<T> {
1891 > public static const<T>(value: T): IValueWithChangeEvent<T> {
1892 > return new ConstValueWithChangeEvent(value);
1893 > }
1894 >
1895 > private readonly _onDidChange = new Emitter<void>();
1896 > readonly onDidChange: Event<void> = this._onDidChange.event;
1897 >
1898 > constructor(private _value: T) { }
1899 >
1900 > get value(): T {
1901 return this._value;
1902 }
1903 > event.ts
1904 > set value(value: T) {
1905 if (value !== this._value) {
1906 this._value = value;
1908 }
1909 }
1910 > } event.ts
1911 >
1912 > class ConstValueWithChangeEvent<T> implements IValueWithChangeEvent<T> {
1913 > public readonly onDidChange: Event<void> = Event.None;
1914 >
1915 > constructor(readonly value: T) { }
1916 > }
1917 >
1918 > /**
1919 > * @param handleItem Is called for each item in the set (but only the first time the item is seen in the set).
1920 > * The returned disposable is disposed if the item is no longer in the set.
1921 > */
1922 > export function trackSetChanges<T>(getData: () => ReadonlySet<T>, onDidChangeData: Event<unknown>, handleItem: (d: T) => IDisposable): IDisposable {
1923 const map = new DisposableMap<T, IDisposable>();
1924 let oldData = new Set(getData());
1942 return store;
1943 }
1944 > event.ts
1945 >
1946 > function addToDisposables(result: IDisposable, disposables: DisposableStore | IDisposable[] | undefined) { event.ts
1947 > if (disposables instanceof DisposableStore) {
1948 disposables.add(result);
1949 > } else if (Array.isArray(disposables)) { event.ts
1950 disposables.push(result);
1951 }
1952 > } event.ts
1953 > event.ts
1954 function disposeAndRemove(result: IDisposable, disposables: DisposableStore | IDisposable[] | undefined) {
1955 if (disposables instanceof DisposableStore) {
src/vs/platform/agentHost/common/state/sessionState.ts 840 covered LOC · 64 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- sessionState.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Immutable state types for the sessions process protocol.
7 > // See protocol.md for the full design rationale.
8 > //
9 > // Most types are imported from the auto-generated protocol layer
10 > // (synced from the agent-host-protocol repo). This file adds VS Code-specific
11 > // helpers and re-exports.
12 >
13 > import { decodeBase64, encodeBase64, VSBuffer } from '../../../../base/common/buffer.js';
14 > import { hasKey, type Mutable } from '../../../../base/common/types.js';
15 > import { URI as ResourceURI } from '../../../../base/common/uri.js';
16 > import type { IProductService } from '../../../product/common/productService.js';
17 > import { readToolCallMeta } from '../meta/agentToolCallMeta.js';
18 > import {
19 > ResponsePartKind,
20 > SessionStatus,
21 > ToolCallStatus,
22 > SessionLifecycle,
23 > TerminalState,
24 > ToolResultContentType,
25 > ToolResultFileEditContent,
26 > ChatOriginKind,
27 > ChatInteractivity,
28 > type ActiveTurn,
29 > type ChangesetState,
30 > type ChatState,
31 > type ChatSummary,
32 > type PendingMessage,
33 > type Turn,
34 > type AnnotationsState,
35 > type URI as ProtocolURI,
36 > type RootState,
37 > type SessionState,
38 > type SessionSummary,
39 > type TextRange,
40 > type ToolCallCancelledState,
41 > type ToolCallCompletedState,
42 > type ToolCallResult,
43 > type ToolCallState,
44 > type ToolResultContent,
45 > type ToolResultSubagentContent,
46 > type ToolResultTextContent,
47 > type UsageInfo,
48 > type Message,
49 > } from './protocol/state.js';
50 >
51 > // Re-export everything from the protocol state module
52 > export {
53 > ChangesetOperationScope, ChangesetOperationStatus, ChangesetStatus, CustomizationLoadStatus,
54 > CustomizationType, MessageAttachmentKind, MessageKind,
55 > PendingMessageKind,
56 > PolicyState,
57 > ResponsePartKind,
58 > ChatInputAnswerState as SessionInputAnswerState,
59 > ChatInputAnswerValueKind as SessionInputAnswerValueKind,
60 > ChatInputQuestionKind as SessionInputQuestionKind,
61 > ChatInputResponseKind as SessionInputResponseKind,
62 > ChatInteractivity,
63 > ChatOriginKind,
64 > SessionLifecycle,
65 > SessionStatus, ToolCallCancellationReason, ToolCallConfirmationReason, ToolCallContributorKind, ToolCallRiskAssessmentKind, ToolCallRiskAssessmentStatus, ToolCallStatus,
66 > ToolResultContentType,
67 > TurnState, type ActiveTurn, type AgentCustomization, type AgentCapabilities, type AgentInfo, type AgentSelection, type Annotation, type AnnotationEntry, type AnnotationsState, type AnnotationsSummary, type Changeset, type ChangesetFile,
68 > type ChangesetOperation, type ChangesetState, type ChatState, type ChatSummary, type ChatOrigin, type ChildCustomization, type ClientPluginCustomization, type ConfigPropertySchema,
69 > type ConfigSchema,
70 > type ContentRef, type Customization, type CustomizationDegradedState,
71 > type CustomizationErrorState, type CustomizationLoadedState, type CustomizationLoadingState, type CustomizationLoadState, type DirectoryCustomization, type ErrorInfo, type HookCustomization, type FileEdit as ISessionFileDiff, type ToolResultEmbeddedResourceContent as IToolResultBinaryContent, type MarkdownResponsePart, type McpServerCustomization, type MessageAttachment,
72 > type MessageResourceAttachment, type MessageEmbeddedResourceAttachment, type MessageAnnotationsAttachment, type ModelSelection, type PendingMessage, type PluginCustomization, type ProjectInfo, type PromptCustomization, type ReasoningResponsePart,
73 > type ResponsePart,
74 > type RootState, type RuleCustomization, type SessionActiveClient,
75 > type SessionConfigState, type ChatInputAnswer as SessionInputAnswer,
76 > type ChatInputOption as SessionInputOption, type ChatInputQuestion as SessionInputQuestion, type ChatInputRequest as SessionInputRequest, type SessionModelInfo,
77 > type SessionState,
78 > type SessionSummary, type SkillCustomization, type Snapshot, type StringOrMarkdown, type TerminalState, type TextRange,
79 > type ToolAnnotations,
80 > type ToolCallCancelledState,
81 > type ToolCallCompletedState,
82 > type ToolCallPendingConfirmationState,
83 > type ToolCallPendingResultConfirmationState,
84 > type ToolCallResponsePart,
85 > type ToolCallResult,
86 > type ToolCallRiskAssessment,
87 > type ToolCallRiskAssessmentCompleteState,
88 > type ToolCallRiskAssessmentLoadingState,
89 > type ToolCallRunningState,
90 > type ToolCallState,
91 > type ToolCallStreamingState,
92 > type ToolCallContributor,
93 > type ToolDefinition, type ToolResultContent,
94 > type ToolResultFileEditContent,
95 > type TerminalCommandResult,
96 > type ToolResultSubagentContent,
97 > type ToolResultTerminalContent,
98 > type ToolResultTextContent,
99 > type Turn, type URI, type UsageInfo,
100 > type Message
101 > } from './protocol/state.js';
102 >
103 > /**
104 > * Well-known keys that may appear on {@link UsageInfo._meta}.
105 > * Clients MAY read these to provide enhanced UI (e.g. credit cost display).
106 > */
107 > export interface UsageInfoMeta {
108 > /** Per-turn credit cost reported by the backend. */
109 > cost?: number;
110 > /** The concrete model selected by Copilot Auto and the routing explanation. */
111 > autoModeResolved?: IAutoModeResolvedInfo;
112 > /** Copilot-specific usage breakdown, including nano-AIU totals. */
113 > copilotUsage?: {
114 > totalNanoAiu?: number;
115 > [key: string]: unknown;
116 > };
117 > /**
118 > * Per-category account quota snapshots reported by the backend on the
119 > * model-call usage event, keyed by quota type (e.g. `chat`,
120 > * `premium_interactions`). Clients MAY use these to keep the account quota
121 > * UI current without a separate quota fetch.
122 > */
123 > quotaSnapshots?: {
124 > [quotaType: string]: {
125 > readonly isUnlimitedEntitlement?: boolean;
126 > readonly entitlementRequests?: number;
127 > readonly usedRequests?: number;
128 > readonly remainingPercentage?: number;
129 > readonly overage?: number;
130 > readonly overageAllowedWithExhaustedQuota?: boolean;
131 > /** ISO 8601 date when the quota resets, if applicable. */
132 > readonly resetDate?: string;
133 > } | undefined;
134 > };
135 > /**
136 > * Per-source context-window attribution breakdown reported by the SDK's
137 > * `session.rpc.metadata.getContextAttribution()`. Populated asynchronously
138 > * after each usage event and piped to the context-usage widget as
139 > * `promptTokenDetails`.
140 > */
141 > contextAttribution?: IContextAttributionData;
142 > [key: string]: unknown;
143 > }
144 >
145 > export interface IAutoModeResolvedInfo {
146 > readonly chosenModel: string;
147 > readonly reasoningBucket?: 'low' | 'medium' | 'high';
148 > readonly categoryScores?: Readonly<Record<string, number | undefined>>;
149 > readonly predictedLabel?: string;
150 > readonly confidence?: number;
151 > readonly candidateModels?: readonly string[];
152 > }
153 >
154 > /**
155 > * Mirrors the SDK's `SessionContextAttribution` shape — a flat list of
156 > * per-source entries describing what occupies the session's context window.
157 > */
158 > export interface IContextAttributionData {
159 > readonly totalTokens: number;
160 > readonly entries: readonly IContextAttributionEntry[];
161 > readonly compactions: { readonly count: number };
162 > }
163 >
164 > export interface IContextAttributionEntry {
165 > readonly kind: string;
166 > readonly id: string;
167 > readonly label: string;
168 > readonly tokens: number;
169 > readonly parentId?: string;
170 > readonly attributes?: Readonly<Record<string, string | undefined>>;
171 > }
172 >
173 > type AccountQuotaSnapshot = NonNullable<NonNullable<UsageInfoMeta['quotaSnapshots']>[string]>;
174 >
175 function readAccountQuotaSnapshot(value: unknown): AccountQuotaSnapshot | undefined {
176 if (!value || typeof value !== 'object' || Array.isArray(value)) {
188 return snapshot;
189 }
191 > /**
192 > * Reads the well-known {@link UsageInfoMeta} keys from a usage report's open
193 > * `_meta` bag, ignoring unrelated provider-specific keys and validating each
194 > * field's type. Always read {@link UsageInfo._meta} through this helper rather
195 > * than casting the bag to {@link UsageInfoMeta}, so a malformed or partial bag
196 > * degrades to absent fields instead of producing values of the wrong runtime
197 > * type. Returns an empty object when the bag is absent.
198 > */
199 > export function readUsageInfoMeta(usage: UsageInfo | undefined): UsageInfoMeta {
200 const meta = usage?._meta;
201 if (!meta) {
227 return result;
228 }
230 function readAutoModeResolvedInfo(value: unknown): IAutoModeResolvedInfo | undefined {
231 if (!value || typeof value !== 'object' || Array.isArray(value)) {
258 return result;
259 }
261 function readContextAttribution(value: unknown): IContextAttributionData | undefined {
262 if (!value || typeof value !== 'object' || Array.isArray(value)) {
295 return { totalTokens: raw['totalTokens'] as number, entries, compactions };
296 }
298 function filterStringAttributes(raw: Record<string, unknown>): Record<string, string | undefined> {
299 const result: Record<string, string | undefined> = {};
305 return result;
306 }
308 > export {
309 > ChangesetOperationTargetKind, type ChangesetOperationFollowUp, type ChangesetOperationTarget
310 > } from './protocol/commands.js';
311 >
312 > // Canonical chat-input type names (the protocol renamed the former
313 > // `SessionInput*` types to `ChatInput*` when input requests moved onto the
314 > // chat channel). Re-exported here so consumers can import them from the glue
315 > // layer alongside the legacy `SessionInput*` aliases above.
316 > export {
317 > ChatInputAnswerState,
318 > ChatInputAnswerValueKind,
319 > ChatInputQuestionKind,
320 > ChatInputResponseKind,
321 > type ChatInputAnswer,
322 > type ChatInputOption,
323 > type ChatInputQuestion,
324 > type ChatInputRequest,
325 > type InputRequestResponsePart,
326 > } from './protocol/state.js';
327 >
328 > // ---- File edit kind ---------------------------------------------------------
329 >
330 > /**
331 > * The kind of file edit operation. Derived from the presence/absence of
332 > * `before`/`after` in {@link ToolResultFileEditContent}.
333 > */
334 > export const enum FileEditKind {
335 > /** Content edit (same file URI, different content). */
336 > Edit = 'edit',
337 > /** File creation (no before state). */
338 > Create = 'create',
339 > /** File deletion (no after state). */
340 > Delete = 'delete',
341 > /** File rename/move (different before and after URIs). */
342 > Rename = 'rename',
343 > }
344 >
345 > // ---- Well-known URIs --------------------------------------------------------
346 >
347 > /** URI for the root state subscription. */
348 > export const ROOT_STATE_URI = 'ahp-root://';
349 >
350 > /** Scheme used by {@link ROOT_STATE_URI}. */
351 > export const AHP_ROOT_SCHEME = 'ahp-root';
352 >
353 > /** Scheme used by resource-watch channel URIs (`ahp-resource-watch:/<encoded>`). */
354 > export const AHP_RESOURCE_WATCH_SCHEME = 'ahp-resource-watch';
355 >
356 > /**
357 > * Encode a resource-watch descriptor into its canonical channel URI. The
358 > * descriptor is serialised into the URI path so the receiver can recover
359 > * the watch parameters without any server-side bookkeeping — subscribe is
360 > * the only point where state is materialised (an `IFileService` watcher
361 > * is attached on the first subscriber and held through a grace window
362 > * after the last drops).
363 > */
364 > export function buildResourceWatchChannelUri(descriptor: {
365 readonly root: string;
366 readonly recursive?: boolean;
380 return `${AHP_RESOURCE_WATCH_SCHEME}://r/${json}`;
381 }
383 > /**
384 > * Inverse of {@link buildResourceWatchChannelUri}. Returns `undefined` if
385 > * `uri` is not a well-formed `ahp-resource-watch:` URI — callers should
386 > * surface that as a not-found error to the client.
387 > */
388 > export function parseResourceWatchChannelUri(uri: string): {
389 root: string;
390 recursive: boolean;
421 }
422 }
424 > /** Returns `true` when `uri` identifies a resource-watch channel. */
425 > export function isAhpResourceWatchChannel(uri: string): boolean {
426 try {
427 return ResourceURI.parse(uri).scheme === AHP_RESOURCE_WATCH_SCHEME;
430 }
431 }
433 > /**
434 > * Returns `true` when `uri` identifies the root channel, regardless of
435 > * whether the caller passes the canonical wire form (`'ahp-root://'`) or a
436 > * variant that has been round-tripped through the workbench {@link URI} class
437 > * (which normalizes the authority-less form to `'ahp-root:'`). Always prefer
438 > * this helper over a direct `=== ROOT_STATE_URI` comparison so the two
439 > * spellings stay interchangeable.
440 > */
441 > export function isAhpRootChannel(uri: string): boolean {
442 if (uri === ROOT_STATE_URI) {
443 return true;
449 }
450 }
452 > /**
453 > * Mints a session-unique opaque id for a customization, derived from its
454 > * source URI and (when present) its `range` within the source. Plugins MAY
455 > * declare multiple children (e.g. MCP servers, hooks) inside the same
456 > * manifest file; including the range disambiguates them without an extra
457 > * mapping table.
458 > *
459 > * The range is appended as a reserved `#range=` query-style suffix; any
460 > * existing `#` in the URI is percent-encoded first so a source URI that
461 > * already contains a fragment cannot collide with a ranged id.
462 > */
463 > export function customizationId(uri: string, range?: TextRange): string {
464 if (!range) {
465 return uri;
468 return `${safeUri}#range=${range.start.line}:${range.start.character}-${range.end.line}:${range.end.character}`;
469 }
471 > // ---- VS Code-specific derived types -----------------------------------------
472 >
473 > /**
474 > * A tool call in a terminal state, stored in completed turns.
475 > */
476 > export type ICompletedToolCall = ToolCallCompletedState | ToolCallCancelledState;
477 >
478 > /**
479 > * Derived status type for the tool call lifecycle.
480 > */
481 > export type ToolCallStatusString = ToolCallState['status'];
482 >
483 > // ---- Tool output helper -----------------------------------------------------
484 >
485 > /**
486 > * Extracts a plain-text tool output string from a tool call result's `content`
487 > * array. Joins all text-type content parts into a single string.
488 > *
489 > * Returns `undefined` if there are no text content parts.
490 > */
491 > export function getToolOutputText(result: ToolCallResult): string | undefined {
492 if (!result.content || result.content.length === 0) {
493 return undefined;
504 return textParts.map(p => p.text).join('\n');
505 }
507 > /**
508 > * Extracts file edit content entries from a tool call result's `content` array.
509 > * Returns an empty array if there are no file edit content parts.
510 > */
511 > export function getToolFileEdits(result: ToolCallResult): ToolResultFileEditContent[] {
512 if (!result.content || result.content.length === 0) {
513 return [];
521 return edits;
522 }
524 > /**
525 > * Extracts the first subagent content entry from a tool call's `content` array.
526 > * Works with both completed tool call results and running tool call states.
527 > * Returns `undefined` if there are no subagent content parts.
528 > */
529 > export function getToolSubagentContent(result: { content?: readonly ToolResultContent[] }): ToolResultSubagentContent | undefined {
530 if (!result.content || result.content.length === 0) {
531 return undefined;
538 return undefined;
539 }
541 > // ---- Subagent URI helpers ---------------------------------------------------
542 >
543 > const SUBAGENT_URI_SEGMENT = 'subagent';
544 > const SUBAGENT_URI_MARKER = `/${SUBAGENT_URI_SEGMENT}/`;
545 > const SUBAGENT_URI_PATH_REGEX = /^(?<parentPath>.+)\/subagent\/(?<toolCallId>.+)$/;
546 >
547 function asResourceUri(uri: ProtocolURI | ResourceURI): ResourceURI {
548 return typeof uri === 'string' ? ResourceURI.parse(uri) : uri;
549 }
551 function getSubagentBasePath(parentSession: ProtocolURI | ResourceURI): { parent: ResourceURI; path: string } {
552 const parent = asResourceUri(parentSession);
554 return { parent, path: `${parentPath}${SUBAGENT_URI_MARKER}` };
555 }
557 > /**
558 > * Builds a subagent session URI from a parent session URI and tool call ID.
559 > * Convention: `{parentSessionUri}/subagent/{toolCallId}`
560 > */
561 > export function buildSubagentSessionUri(parentSession: ProtocolURI | ResourceURI, toolCallId: string): string {
562 const { parent, path } = getSubagentBasePath(parentSession);
563 return parent.with({ path: `${path}${toolCallId}` }).toString();
564 }
566 > /**
567 > * Parses a subagent session URI into its parent session URI and tool call ID.
568 > * Returns `undefined` if the URI does not follow the subagent convention.
569 > */
570 > export function parseSubagentSessionUri(uri: ProtocolURI | ResourceURI): { parentSession: ResourceURI; toolCallId: string } | undefined {
571 const resource = asResourceUri(uri);
572 const match = SUBAGENT_URI_PATH_REGEX.exec(resource.path);
579 };
580 }
582 > /**
583 > * Returns whether a session URI represents a subagent session.
584 > */
585 > export function isSubagentSession(uri: ProtocolURI | ResourceURI): boolean {
586 return parseSubagentSessionUri(uri) !== undefined;
587 }
589 > /**
590 > * Builds the string prefix used by the state manager for cached subagent sessions.
591 > */
592 > export function buildSubagentSessionUriPrefix(parentSession: ProtocolURI | ResourceURI): string {
593 const { parent, path } = getSubagentBasePath(parentSession);
594 return parent.with({ path }).toString();
595 }
597 > // ---- Factory helpers --------------------------------------------------------
598 >
599 > export function createRootState(): RootState {
600 > return { sessionState.ts
601 > agents: [],
602 > activeSessions: 0,
603 > };
604 > }
606 > /**
607 > * Creates the initial flat {@link SessionState} for a session from its
608 > * root-channel {@link SessionSummary} catalog entry. Session metadata
609 > * ({@link SessionMetadata}) — and the shared `_meta` bag — are inlined directly
610 > * onto the state.
611 > */
612 > export function createSessionState(summary: SessionSummary): SessionState {
613 const state: SessionState = {
614 provider: summary.provider,
627 return state;
628 }
630 > /**
631 > * Creates an empty {@link ChatState} for a chat. The summary fields are
632 > * denormalized onto the chat state per the protocol contract; callers pass
633 > * the chat's catalog summary and this seeds an empty conversation.
634 > */
635 > export function createChatState(summary: ChatSummary): ChatState {
636 return {
637 resource: summary.resource,
648 };
649 }
651 > /**
652 > * Derives the default-chat {@link ChatSummary} for a session from its
653 > * {@link SessionSummary}. The default chat inherits the session's title,
654 > * status, activity and working directory, and is marked as a
655 > * {@link ChatOriginKind.User | user-originated} chat. Both the session and
656 > * chat `modifiedAt` are ISO-8601 strings, so it is carried over directly.
657 > */
658 > export function createDefaultChatSummary(session: SessionSummary, chatUri: ProtocolURI): ChatSummary {
659 const summary: ChatSummary = {
660 resource: chatUri,
675 return summary;
676 }
678 > /** Activity bits (0-4) of {@link SessionStatus}; the high bits carry orthogonal flags (IsRead / IsArchived). */
679 > const STATUS_ACTIVITY_MASK = (1 << 5) - 1;
680 >
681 > /** Whether the active turn has a `PendingConfirmation` tool call auto-approved by the session's bypass setting. */
682 function hasAutoApprovedPendingConfirmation(state: ChatState): boolean {
683 return !!state.activeTurn?.responseParts.some(part =>
687 );
688 }
690 > /** Whether the chat is genuinely blocked on user input (an open input request, an auth-required tool, or a non-auto-approved confirmation gate). */
691 function chatAwaitsUserInput(state: ChatState): boolean {
692 return !!state.activeTurn?.responseParts.some(part => {
708 });
709 }
711 > /**
712 > * Projects a chat's status for session-summary aggregation, demoting an
713 > * `InputNeeded` back to `InProgress` only when it is caused solely by an
714 > * auto-approved confirmation — otherwise a session with bypass approvals flashes
715 > * "input needed" in the sessions list while an auto-approved tool runs.
716 > */
717 function chatSummaryStatus(state: ChatState): SessionStatus {
718 const status = state.status;
728 return status;
729 }
731 > /**
732 > * Derives a {@link ChatSummary} from a fully-populated {@link ChatState} by
733 > * projecting out the denormalized summary fields. Used to keep the parent
734 > * session's `chats` catalog in sync with a chat's denormalized state.
735 > */
736 > export function chatSummaryFromState(state: ChatState): ChatSummary {
737 const summary: ChatSummary = {
738 resource: state.resource,
748 return summary;
749 }
751 > /**
752 > * The effective interactivity of a chat given its session's archived state.
753 > *
754 > * `interactivity` is the general read-only mechanism (e.g. subagent worker
755 > * chats are `ReadOnly`). An archived session is read-only too, so its
756 > * interactive chats are downgraded to `ReadOnly`. `Hidden` chats stay hidden —
757 > * archiving only downgrades `Full` chats. Absent interactivity defaults to
758 > * `Full` for backward compatibility.
759 > *
760 > * The host uses this to enforce read-only turns off a single signal
761 > * ({@link isChatReadOnly}) rather than special-casing archived; the same rule
762 > * is mirrored client-side to hide the composer.
763 > */
764 > export function effectiveChatInteractivity(interactivity: ChatInteractivity | undefined, sessionArchived: boolean): ChatInteractivity {
765 if (interactivity === ChatInteractivity.Hidden) {
766 return ChatInteractivity.Hidden;
771 return interactivity ?? ChatInteractivity.Full;
772 }
774 > /**
775 > * Whether a chat rejects user-dispatched turns, given its own interactivity and
776 > * its session's archived state. `true` for `ReadOnly` chats (including archived
777 > * sessions' interactive chats). See {@link effectiveChatInteractivity}.
778 > */
779 > export function isChatReadOnly(interactivity: ChatInteractivity | undefined, sessionArchived: boolean): boolean {
780 return effectiveChatInteractivity(interactivity, sessionArchived) === ChatInteractivity.ReadOnly;
781 }
783 > export function createActiveTurn(id: string, message: Message, startedAt: string): ActiveTurn {
784 return {
785 id,
790 };
791 }
793 > export const enum StateComponents {
794 > Root,
795 > Session,
796 > Chat,
797 > Terminal,
798 > Changeset,
799 > Annotations,
800 > }
801 >
802 > export type ComponentToState = {
803 > [StateComponents.Root]: RootState;
804 > [StateComponents.Session]: SessionState;
805 > [StateComponents.Chat]: ChatState;
806 > [StateComponents.Terminal]: TerminalState;
807 > [StateComponents.Changeset]: ChangesetState;
808 > [StateComponents.Annotations]: AnnotationsState;
809 > };
810 >
811 > // ---- Default chat URI helpers ----------------------------------------------
812 >
813 > /** Scheme used by chat channel URIs (`ahp-chat://...`). */
814 > export const AHP_CHAT_SCHEME = 'ahp-chat';
815 >
816 > /** Chat id of the default chat that every session owns. */
817 > export const DEFAULT_CHAT_ID = 'default';
818 >
819 > /**
820 > * Derives the deterministic channel URI for a chat within a session. Every chat
821 > * — the default chat and any additional peer chats — encodes its owning session
822 > * URI into the path so producers and consumers can recover the session without a
823 > * lookup table (see {@link parseChatUri}). The chat id is carried in the URI
824 > * authority.
825 > *
826 > * `ahp-chat://<chatId>/<base64(sessionUri)>`
827 > */
828 > export function buildChatUri(sessionUri: ProtocolURI | ResourceURI, chatId: string): string {
829 > const session = typeof sessionUri === 'string' ? sessionUri : sessionUri.toString(); sessionState.ts
830 > const encoded = encodeBase64(VSBuffer.fromString(session), false, true);
831 > return `${AHP_CHAT_SCHEME}://${chatId}/${encoded}`;
832 > }
834 > /**
835 > * Derives the deterministic default-chat channel URI for a session. While the
836 > * protocol allows a session to contain many chats, every session always owns a
837 > * default chat whose URI is derived from the owning session URI so producers and
838 > * consumers can compute it without a lookup table.
839 > *
840 > * The session URI is encoded into the path so {@link parseChatUri} can recover
841 > * it.
842 > */
843 > export function buildDefaultChatUri(sessionUri: ProtocolURI | ResourceURI): string {
844 > return buildChatUri(sessionUri, DEFAULT_CHAT_ID); sessionState.ts
845 > }
847 > const SUBAGENT_CHAT_ID = 'subagent';
848 >
849 > export function isSubagentChatUri(uri: ProtocolURI | ResourceURI): boolean {
850 const parsed = typeof uri === 'string' ? ResourceURI.parse(uri) : uri;
851 return parsed.scheme === AHP_CHAT_SCHEME && parsed.authority === SUBAGENT_CHAT_ID;
852 }
854 > export function buildSubagentChatUri(sessionUri: ProtocolURI | ResourceURI, toolCallId: string): string {
855 const session = typeof sessionUri === 'string' ? sessionUri : sessionUri.toString();
856 const encoded = encodeBase64(VSBuffer.fromString(session), false, true);
857 return `${AHP_CHAT_SCHEME}://${SUBAGENT_CHAT_ID}/${encoded}/${encodeURIComponent(toolCallId)}`;
858 }
860 > /**
861 > * Inverse of {@link buildChatUri}: recovers the owning session URI and chat id
862 > * from any chat channel URI. Returns `undefined` when `uri` is not a well-formed
863 > * chat URI.
864 > */
865 > export function parseChatUri(uri: ProtocolURI | ResourceURI): { session: string; chatId: string } | undefined {
866 let parsed: ResourceURI;
867 try {
891 }
892 }
894 > /**
895 > * Inverse of {@link buildDefaultChatUri}: recovers the owning session URI from a
896 > * chat channel URI. Returns `undefined` when `uri` is not a well-formed chat URI.
897 > * Accepts any chat URI (default or additional) so callers that only need the
898 > * parent session can use it uniformly.
899 > */
900 > export function parseDefaultChatUri(uri: ProtocolURI | ResourceURI): string | undefined {
901 return parseChatUri(uri)?.session;
902 }
904 > export function parseRequiredSessionUriFromChatUri(uri: ProtocolURI | ResourceURI): string {
905 const session = parseDefaultChatUri(uri);
906 if (session === undefined) {
909 return session;
910 }
912 > /** Returns `true` when `uri` is the default chat of its session. */
913 > export function isDefaultChatUri(uri: ProtocolURI | ResourceURI): boolean {
914 return parseChatUri(uri)?.chatId === DEFAULT_CHAT_ID;
915 }
917 > /**
918 > * Resolves a feature-level `(session, chat)` pair to the single chat URI used by
919 > * the agent session/chat surface. A session always owns a DEFAULT chat addressed
920 > * by the session URI itself; additional (peer) chats are addressed by their own
921 > * chat channel URIs. This is the one place default-chat resolution lives so
922 > * agents never re-derive "is this the default chat?".
923 > */
924 > export function resolveChatUri(session: ResourceURI, chat: ResourceURI): ResourceURI {
925 return isDefaultChatUri(chat) ? session : chat;
926 }
928 > /** Returns `true` when `uri` identifies a chat channel. */
929 > export function isAhpChatChannel(uri: string): boolean {
930 try {
931 return ResourceURI.parse(uri).scheme === AHP_CHAT_SCHEME;
934 }
935 }
937 > // ---- Session + default-chat composite --------------------------------------
938 >
939 > /**
940 > * A single chat's effective session context: the shared {@link SessionState}
941 > * (working directories, active clients, config, customizations/MCP scope, …)
942 > * resolved for one chat and merged with that chat's conversation contents.
943 > *
944 > * The protocol moved turns and pending state off the session and onto a
945 > * per-chat channel, and lets a chat override the session's working directories
946 > * with a subset (e.g. {@link ChatState.workingDirectories}) and carry its own
947 > * read-only {@link ChatState.primaryWorkingDirectory | primary} (fixed at chat
948 > * creation — the session has no primary). This composite recombines the session
949 > * with one of its chats — default or peer — so consumers read the chat's
950 > * effective context and conversation through one object without walking back to
951 > * the session to re-derive shared state. The {@link ISessionWithDefaultChat.workingDirectories}
952 > * carry the chat's *effective* working directories (its own subset override when
953 > * present, else the session's full set); {@link ISessionWithDefaultChat.primaryWorkingDirectory}
954 > * is the chat's own primary.
955 > */
956 > export interface ISessionWithDefaultChat extends SessionState {
957 > /** The chat's read-only primary working directory (fixed at chat creation). */
958 > primaryWorkingDirectory?: ProtocolURI;
959 > /** Completed turns of this chat. */
960 > turns: Turn[];
961 > /** Currently in-progress turn of this chat. */
962 > activeTurn?: ActiveTurn;
963 > /** Steering message pending on this chat. */
964 > steeringMessage?: PendingMessage;
965 > /** Queued messages pending on this chat. */
966 > queuedMessages?: PendingMessage[];
967 > /** Draft input of this chat. */
968 > draft?: Message;
969 > }
970 >
971 > /**
972 > * Projects a {@link SessionState} and one of its {@link ChatState | chats}
973 > * (default or peer) into that chat's {@link ISessionWithDefaultChat | effective
974 > * session context}. Per-chat overrides (the working-directories subset and the
975 > * chat's own primary) are layered over the session defaults, and the
976 > * conversation fields are taken from the chat. When the chat state is absent
977 > * (e.g. not yet hydrated) the conversation fields default to empty and the
978 > * session defaults apply.
979 > */
980 > export function mergeSessionWithDefaultChat(session: SessionState, chat: ChatState | undefined): ISessionWithDefaultChat {
981 return {
982 ...session,
990 };
991 }
993 > /**
994 > * Resolves the active turn of a session's default chat, if any.
995 > */
996 > export function getActiveTurn(chat: ChatState | undefined): ActiveTurn | undefined {
997 return chat?.activeTurn;
998 }
1000 > /**
1001 > * Resolves the default chat's catalog summary from a session, if present.
1002 > */
1003 > export function getDefaultChat(session: SessionState): ChatSummary | undefined {
1004 if (session.defaultChat !== undefined) {
1005 const match = session.chats.find(c => c.resource === session.defaultChat);
1010 return session.chats[0];
1011 }
1013 > // ---- SessionMeta accessors -------------------------------------------------
1014 >
1015 > /**
1016 > * VS Code-side alias for the protocol's open `_meta` property bag on
1017 > * {@link SessionState}. Keys SHOULD be namespaced (e.g. `git`, `vscode.foo`)
1018 > * to avoid collisions; values MUST be JSON-serializable.
1019 > */
1020 > export type SessionMeta = Record<string, unknown>;
1021 >
1022 > /**
1023 > * VS Code-side alias for the protocol's open `_meta` property bag on
1024 > * {@link SessionSummary}. Keys SHOULD be namespaced (e.g. `git`, `vscode.foo`)
1025 > * to avoid collisions; values MUST be JSON-serializable.
1026 > */
1027 > export type SessionSummaryMeta = Record<string, unknown>;
1028 >
1029 > /**
1030 > * Reserved key under {@link SessionMeta} for the well-known git-state
1031 > * payload. Value at this key, when present, MUST be shaped like
1032 > * {@link ISessionGitState}. This is a VS Code-specific convention layered
1033 > * on top of the protocol's generic `_meta` bag — the protocol itself does
1034 > * not know about git state.
1035 > */
1036 > export const SESSION_META_GIT_KEY = 'git';
1037 >
1038 > /**
1039 > * Reserved key under {@link SessionMeta} for the well-known GitHub-state
1040 > * payload. Value at this key, when present, MUST be shaped like
1041 > * {@link ISessionGitHubState}. This is a VS Code-specific convention layered
1042 > * on top of the protocol's generic `_meta` bag — the protocol itself does
1043 > * not know about GitHub state.
1044 > */
1045 > export const SESSION_META_GITHUB_KEY = 'github';
1046 >
1047 > export const SESSION_META_PROMPT_CACHE_KEY = 'vscode.promptCache';
1048 >
1049 > /** Latest known prompt-cache state for the model active in an agent session. */
1050 > export interface ISessionPromptCacheState {
1051 > readonly modelId: string;
1052 > readonly cacheExpiresAt: string;
1053 > }
1054 >
1055 > /** Reads the latest known prompt-cache state from session metadata. */
1056 > export function readSessionPromptCacheState(meta: SessionMeta | undefined): ISessionPromptCacheState | undefined {
1057 const value = meta?.[SESSION_META_PROMPT_CACHE_KEY];
1058 if (!value || typeof value !== 'object' || Array.isArray(value)) {
1064 : undefined;
1065 }
1067 > /** Returns session metadata with the prompt-cache slot updated or removed. */
1068 > export function withSessionPromptCacheState(meta: SessionMeta | undefined, promptCache: ISessionPromptCacheState | undefined): SessionMeta | undefined {
1069 const next: SessionMeta = { ...meta };
1070 if (promptCache) {
1075 return Object.keys(next).length > 0 ? next : undefined;
1076 }
1078 > /**
1079 > * Git state of a session's working directory, carried under
1080 > * {@link SessionMeta} at {@link SESSION_META_GIT_KEY}. Used by clients to
1081 > * drive source-control affordances (e.g. PR/merge buttons in the Agents
1082 > * app).
1083 > *
1084 > * All fields are optional — agents that do not track a particular field
1085 > * should omit it rather than send a placeholder, so clients can distinguish
1086 > * "unknown" from "known to be zero".
1087 > */
1088 > export interface ISessionGitState {
1089 > /** Whether the working directory has a `github.com` git remote. */
1090 > readonly hasGitHubRemote?: boolean;
1091 > /** Current branch name. */
1092 > readonly branchName?: string;
1093 > /** Base branch the work targets (e.g. `main`). */
1094 > readonly baseBranchName?: string;
1095 > /** Upstream tracking branch (e.g. `origin/feature`). */
1096 > readonly upstreamBranchName?: string;
1097 > /** Number of commits the upstream branch has ahead of the local branch. */
1098 > readonly incomingChanges?: number;
1099 > /** Number of commits the local branch has ahead of the upstream branch. */
1100 > readonly outgoingChanges?: number;
1101 > /** Number of files with uncommitted changes. */
1102 > readonly uncommittedChanges?: number;
1103 > /** GitHub repository owner parsed from the working copy's GitHub remote (preferring `origin`, falling back to the first GitHub remote). */
1104 > readonly githubOwner?: string;
1105 > /** GitHub repository name parsed from the working copy's GitHub remote (preferring `origin`, falling back to the first GitHub remote). */
1106 > readonly githubRepo?: string;
1107 > }
1108 >
1109 > /**
1110 > * GitHub state of a session, carried under {@link SessionMeta} at
1111 > * {@link SESSION_META_GITHUB_KEY}. Used by clients to drive GitHub-specific
1112 > * affordances (e.g. PR/merge buttons in the Agents app).
1113 > *
1114 > * All fields are optional — agents that do not track a particular field
1115 > * should omit it rather than send a placeholder, so clients can distinguish
1116 > * "unknown" from "known to be zero".
1117 > */
1118 > export interface ISessionGitHubState {
1119 > /** The owner of the GitHub repository. */
1120 > readonly owner?: string;
1121 > /** The name of the GitHub repository. */
1122 > readonly repo?: string;
1123 > /** The URL of the GitHub pull request. */
1124 > readonly pullRequestUrl?: string;
1125 > }
1126 >
1127 > /**
1128 > * Reads the well-known git-state payload from {@link SessionMeta}, if
1129 > * present. Returns `undefined` when the meta bag is absent or the value at
1130 > * the git key is not a plain object (e.g. an array or a primitive).
1131 > * Individual fields with wrong types are silently dropped so partial state
1132 > * still propagates.
1133 > *
1134 > * Unlike the other typed readers, this takes the raw {@link SessionMeta} value
1135 > * rather than its parent {@link SessionState}: the sessions provider stores and
1136 > * reads a detached meta snapshot without retaining the owning state.
1137 > */
1138 > export function readSessionGitState(meta: SessionMeta | undefined): ISessionGitState | undefined {
1139 const value = meta?.[SESSION_META_GIT_KEY];
1140 if (!value || typeof value !== 'object' || Array.isArray(value)) {
1164 return result;
1165 }
1167 > /**
1168 > * Returns a new {@link SessionMeta} with the git-state payload set to
1169 > * `gitState`, or with the git slot removed if `gitState` is `undefined`.
1170 > * Returns `undefined` if the result would be empty.
1171 > */
1172 > export function withSessionGitState(meta: SessionMeta | undefined, gitState: ISessionGitState | undefined): SessionMeta | undefined {
1173 const next: { [key: string]: unknown } = { ...meta };
1174 if (gitState !== undefined) {
1179 return Object.keys(next).length > 0 ? next : undefined;
1180 }
1182 > /**
1183 > * Reads the well-known GitHub state payload from {@link SessionSummaryMeta}, if
1184 > * present. Returns `undefined` when the meta bag is absent or the value at the
1185 > * GitHub key is not a plain object (e.g. an array or a primitive).
1186 > * Individual fields with wrong types are silently dropped so partial state
1187 > * still propagates.
1188 > *
1189 > * Unlike the other typed readers, this takes the raw {@link SessionSummaryMeta}
1190 > * value rather than its parent {@link SessionState}: the sessions provider stores and
1191 > * reads a detached meta snapshot without retaining the owning state.
1192 > */
1193 > export function readSessionGitHubState(meta: SessionSummaryMeta | undefined): ISessionGitHubState | undefined {
1194 const value = meta?.[SESSION_META_GITHUB_KEY];
1195 if (!value || typeof value !== 'object' || Array.isArray(value)) {
1208 return result;
1209 }
1211 > /**
1212 > * Returns a new {@link SessionSummaryMeta} with the GitHub-state payload set to
1213 > * `gitHubState`, or with the GitHub slot removed if `gitHubState` is `undefined`.
1214 > * Returns `undefined` if the result would be empty.
1215 > */
1216 > export function withSessionGitHubState(meta: SessionSummaryMeta | undefined, gitHubState: ISessionGitHubState | undefined): SessionSummaryMeta | undefined {
1217 const next: { [key: string]: unknown } = { ...meta };
1218 if (gitHubState !== undefined) {
1223 return Object.keys(next).length > 0 ? next : undefined;
1224 }
1226 > /**
1227 > * Reserved key under {@link SessionSummaryMeta} recording how deeply a session
1228 > * was spawned via the `create_session` host tool (0 for a top-level, user-created
1229 > * session). Used to bound recursive session creation. VS Code-specific convention
1230 > * layered on top of the protocol's generic `_meta` bag.
1231 > */
1232 > export const SESSION_META_SPAWN_DEPTH_KEY = 'agentHost/sessionSpawnDepth';
1233 >
1234 > /**
1235 > * Reads the `create_session` spawn depth from a {@link SessionSummaryMeta} bag,
1236 > * returning `0` when the key is absent or not a finite number.
1237 > */
1238 > export function readSessionSpawnDepth(meta: SessionSummaryMeta | undefined): number {
1239 const value = meta?.[SESSION_META_SPAWN_DEPTH_KEY];
1240 return typeof value === 'number' && Number.isFinite(value) ? value : 0;
1241 }
1243 > /**
1244 > * Returns a new {@link SessionSummaryMeta} with the `create_session` spawn depth
1245 > * set to `depth`, preserving any other keys in the bag.
1246 > */
1247 > export function withSessionSpawnDepth(meta: SessionSummaryMeta | undefined, depth: number): SessionSummaryMeta {
1248 return { ...meta, [SESSION_META_SPAWN_DEPTH_KEY]: depth };
1249 }
1251 > /**
1252 > * Reserved key under {@link SessionSummaryMeta} marking a session as
1253 > * workspace-less: a session with no workspace/folder binding (surfaced in the
1254 > * UI as a "Quick Chat"). Carried on the summary bag (not the full state) so
1255 > * clients can group/style such sessions in session lists without subscribing to
1256 > * full session state. VS Code-specific convention layered on the protocol's
1257 > * generic `_meta` bag.
1258 > */
1259 > export const SESSION_META_WORKSPACELESS_KEY = 'workspaceless';
1260 >
1261 > /**
1262 > * Session-database metadata key recording whether a session is workspace-less (a
1263 > * workspace-less chat). Owned by the AH service: `AgentService` writes it centrally at
1264 > * create/materialize and overlays it onto every agent's summary `_meta` in
1265 > * `listSessions`; agents only read it (e.g. to pick the workspace-less system prompt
1266 > * on resume) and never persist it themselves.
1267 > */
1268 > export const AH_META_WORKSPACELESS_DB_KEY = 'agentHost.workspaceless';
1269 >
1270 > /**
1271 > * Session-database metadata key recording whether a session is archived. Written by
1272 > * the AH orchestrator (`AgentSideEffects` on `SessionIsArchivedChanged`) and read by
1273 > * both the orchestrator (`AgentService` restore/list) and agents (e.g. `CopilotAgent`
1274 > * decides whether to recreate a missing worktree vs. resume read-only for history).
1275 > * {@link AH_META_IS_DONE_DB_KEY} is the legacy name kept for sessions persisted before
1276 > * the rename; readers fall back to it when {@link AH_META_IS_ARCHIVED_DB_KEY} is absent.
1277 > */
1278 > export const AH_META_IS_ARCHIVED_DB_KEY = 'isArchived';
1279 >
1280 > /** Legacy metadata key for the archived flag; see {@link AH_META_IS_ARCHIVED_DB_KEY}. */
1281 > export const AH_META_IS_DONE_DB_KEY = 'isDone';
1282 >
1283 > /**
1284 > * Reads the workspace-less marker from {@link SessionSummaryMeta}. Returns
1285 > * `true` only when the well-known key is present and set to boolean `true`.
1286 > */
1287 > export function readSessionWorkspaceless(meta: SessionSummaryMeta | undefined): boolean {
1288 return meta?.[SESSION_META_WORKSPACELESS_KEY] === true;
1289 }
1291 > /**
1292 > * Returns a new {@link SessionSummaryMeta} with the workspace-less marker set,
1293 > * or with the slot removed when `workspaceless` is `false`. Returns `undefined`
1294 > * if the result would be empty.
1295 > */
1296 > export function withSessionWorkspaceless(meta: SessionSummaryMeta | undefined, workspaceless: boolean): SessionSummaryMeta | undefined {
1297 const next: { [key: string]: unknown } = { ...meta };
1298 if (workspaceless) {
1303 return Object.keys(next).length > 0 ? next : undefined;
1304 }
1306 > // ---- RootState _meta accessors ---------------------------------------------
1307 >
1308 > /**
1309 > * VS Code-side alias for the protocol's open `_meta` property bag on
1310 > * {@link RootState}. Keys SHOULD be namespaced to avoid collisions; values MUST
1311 > * be JSON-serializable.
1312 > */
1313 > export type RootMeta = Record<string, unknown>;
1314 >
1315 > /**
1316 > * Reserved key under {@link RootMeta} for the well-known host-build payload.
1317 > * Value at this key, when present, MUST be shaped like {@link IHostBuildInfo}.
1318 > * This is a VS Code-specific convention layered on top of the protocol's
1319 > * generic `_meta` bag — the protocol itself does not know about build info.
1320 > */
1321 > export const ROOT_META_HOST_BUILD_KEY = 'hostBuild';
1322 >
1323 > /**
1324 > * Build information about the program hosting the agent host (the VS Code CLI),
1325 > * carried under {@link RootMeta} at {@link ROOT_META_HOST_BUILD_KEY}. Lets a
1326 > * client see which build is hosting it — useful when inspecting the output of a
1327 > * remote agent host.
1328 > *
1329 > * All fields except {@link version} are optional — a build that does not track
1330 > * a particular field should omit it.
1331 > */
1332 > export interface IHostBuildInfo {
1333 > /** Product version (e.g. `1.96.0`). */
1334 > readonly version: string;
1335 > /** Commit SHA of the build, if known. */
1336 > readonly commit?: string;
1337 > /** Build date (ISO 8601), if known. */
1338 > readonly date?: string;
1339 > /** Release quality (e.g. `stable`, `insider`), if known. */
1340 > readonly quality?: string;
1341 > }
1342 >
1343 > /**
1344 > * Derives {@link IHostBuildInfo} from the host's {@link IProductService}.
1345 > */
1346 > export function hostBuildInfoFromProduct(productService: IProductService): IHostBuildInfo {
1347 return {
1348 version: productService.version,
1352 };
1353 }
1355 > /**
1356 > * Reads the well-known host-build payload from {@link RootMeta}, if present.
1357 > * Returns `undefined` when the meta bag is absent or the value at the host-build
1358 > * key is not a plain object with a string `version`. Optional fields with wrong
1359 > * types are silently dropped.
1360 > */
1361 > export function readHostBuildInfo(state: RootState | undefined): IHostBuildInfo | undefined {
1362 const meta = state?._meta;
1363 const value = meta?.[ROOT_META_HOST_BUILD_KEY];
1377 return result;
1378 }
1380 > /**
1381 > * Returns a new {@link RootMeta} with the host-build payload set to
1382 > * `buildInfo`, or with the slot removed if `buildInfo` is `undefined`. Returns
1383 > * `undefined` if the result would be empty.
1384 > */
1385 > export function withHostBuildInfo(meta: RootMeta | undefined, buildInfo: IHostBuildInfo | undefined): RootMeta | undefined {
1386 > const next: { [key: string]: unknown } = { ...meta }; sessionState.ts
1387 > if (buildInfo !== undefined) {
1388 next[ROOT_META_HOST_BUILD_KEY] = buildInfo;
1389 > } else { sessionState.ts
1390 > delete next[ROOT_META_HOST_BUILD_KEY]; sessionState.ts
1391 > }
1392 > return Object.keys(next).length > 0 ? next : undefined; sessionState.ts
1393 > }
1395 > /**
1396 > * Formats {@link IHostBuildInfo} as a short single-line human-readable string,
1397 > * e.g. `1.96.0 (commit abc1234, 2024-01-02T03:04:05Z, insider)`.
1398 > */
1399 > export function formatHostBuildInfo(info: IHostBuildInfo): string {
1400 const details: string[] = [];
1401 if (info.commit) { details.push(`commit ${info.commit}`); }
src/vs/platform/contextkey/common/contextkey.ts 832 covered LOC · 218 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- contextkey.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CharCode } from '../../../base/common/charCode.js';
7 > import { Event } from '../../../base/common/event.js';
8 > import { isChrome, isEdge, isFirefox, isLinux, isMacintosh, isSafari, isWeb, isWindows } from '../../../base/common/platform.js';
9 > import { isFalsyOrWhitespace } from '../../../base/common/strings.js';
10 > import { Scanner, LexingError, Token, TokenType } from './scanner.js';
11 > import { createDecorator } from '../../instantiation/common/instantiation.js';
12 > import { localize } from '../../../nls.js';
13 > import { IDisposable } from '../../../base/common/lifecycle.js';
14 > import { illegalArgument } from '../../../base/common/errors.js';
15 >
16 > const CONSTANT_VALUES = new Map<string, boolean>();
17 > CONSTANT_VALUES.set('false', false);
18 > CONSTANT_VALUES.set('true', true);
19 > CONSTANT_VALUES.set('isMac', isMacintosh);
20 > CONSTANT_VALUES.set('isLinux', isLinux);
21 > CONSTANT_VALUES.set('isWindows', isWindows);
22 > CONSTANT_VALUES.set('isWeb', isWeb);
23 > CONSTANT_VALUES.set('isMacNative', isMacintosh && !isWeb);
24 > CONSTANT_VALUES.set('isEdge', isEdge);
25 > CONSTANT_VALUES.set('isFirefox', isFirefox);
26 > CONSTANT_VALUES.set('isChrome', isChrome);
27 > CONSTANT_VALUES.set('isSafari', isSafari);
28 >
29 > /** allow register constant context keys that are known only after startup; requires running `substituteConstants` on the context key - https://github.com/microsoft/vscode/issues/174218#issuecomment-1437972127 */
30 > export function setConstant(key: string, value: boolean) {
31 if (CONSTANT_VALUES.get(key) !== undefined) { throw illegalArgument('contextkey.setConstant(k, v) invoked with already set constant `k`'); }
32
33 CONSTANT_VALUES.set(key, value);
34 }
36 > const hasOwnProperty = Object.prototype.hasOwnProperty;
37 >
38 > export const enum ContextKeyExprType {
39 > False = 0,
40 > True = 1,
41 > Defined = 2,
42 > Not = 3,
43 > Equals = 4,
44 > NotEquals = 5,
45 > And = 6,
46 > Regex = 7,
47 > NotRegex = 8,
48 > Or = 9,
49 > In = 10,
50 > NotIn = 11,
51 > Greater = 12,
52 > GreaterEquals = 13,
53 > Smaller = 14,
54 > SmallerEquals = 15,
55 > }
56 >
57 > export interface IContextKeyExprMapper {
58 > mapDefined(key: string): ContextKeyExpression;
59 > mapNot(key: string): ContextKeyExpression;
60 > mapEquals(key: string, value: any): ContextKeyExpression;
61 > mapNotEquals(key: string, value: any): ContextKeyExpression;
62 > mapGreater(key: string, value: any): ContextKeyExpression;
63 > mapGreaterEquals(key: string, value: any): ContextKeyExpression;
64 > mapSmaller(key: string, value: any): ContextKeyExpression;
65 > mapSmallerEquals(key: string, value: any): ContextKeyExpression;
66 > mapRegex(key: string, regexp: RegExp | null): ContextKeyRegexExpr;
67 > mapIn(key: string, valueKey: string): ContextKeyInExpr;
68 > mapNotIn(key: string, valueKey: string): ContextKeyNotInExpr;
69 > }
70 >
71 > export interface IContextKeyExpression {
72 > cmp(other: ContextKeyExpression): number;
73 > equals(other: ContextKeyExpression): boolean;
74 > substituteConstants(): ContextKeyExpression | undefined;
75 > evaluate(context: IContext): boolean;
76 > serialize(): string;
77 > keys(): string[];
78 > map(mapFnc: IContextKeyExprMapper): ContextKeyExpression;
79 > negate(): ContextKeyExpression;
80 >
81 > }
82 >
83 > export type ContextKeyExpression = (
84 > ContextKeyFalseExpr | ContextKeyTrueExpr | ContextKeyDefinedExpr | ContextKeyNotExpr
85 > | ContextKeyEqualsExpr | ContextKeyNotEqualsExpr | ContextKeyRegexExpr
86 > | ContextKeyNotRegexExpr | ContextKeyAndExpr | ContextKeyOrExpr | ContextKeyInExpr
87 > | ContextKeyNotInExpr | ContextKeyGreaterExpr | ContextKeyGreaterEqualsExpr
88 > | ContextKeySmallerExpr | ContextKeySmallerEqualsExpr
89 > );
90 >
91 >
92 > /*
93 >
94 > Syntax grammar:
95 >
96 > ```ebnf
97 >
98 > expression ::= or
99 >
100 > or ::= and { '||' and }*
101 >
102 > and ::= term { '&&' term }*
103 >
104 > term ::=
105 > | '!' (KEY | true | false | parenthesized)
106 > | primary
107 >
108 > primary ::=
109 > | 'true'
110 > | 'false'
111 > | parenthesized
112 > | KEY '=~' REGEX
113 > | KEY [ ('==' | '!=' | '<' | '<=' | '>' | '>=' | 'not' 'in' | 'in') value ]
114 >
115 > parenthesized ::=
116 > | '(' expression ')'
117 >
118 > value ::=
119 > | 'true'
120 > | 'false'
121 > | 'in' // we support `in` as a value because there's an extension that uses it, ie "when": "languageId == in"
122 > | VALUE // matched by the same regex as KEY; consider putting the value in single quotes if it's a string (e.g., with spaces)
123 > | SINGLE_QUOTED_STR
124 > | EMPTY_STR // this allows "when": "foo == " which's used by existing extensions
125 >
126 > ```
127 > */
128 >
129 > export type ParserConfig = {
130 > /**
131 > * with this option enabled, the parser can recover from regex parsing errors, e.g., unescaped slashes: `/src//` is accepted as `/src\//` would be
132 > */
133 > regexParsingWithErrorRecovery: boolean;
134 > };
135 >
136 > const defaultConfig: ParserConfig = {
137 > regexParsingWithErrorRecovery: true
138 > };
139 >
140 > export type ParsingError = {
141 > message: string;
142 > offset: number;
143 > lexeme: string;
144 > additionalInfo?: string;
145 > };
146 >
147 > const errorEmptyString = localize('contextkey.parser.error.emptyString', "Empty context key expression");
148 > const hintEmptyString = localize('contextkey.parser.error.emptyString.hint', "Did you forget to write an expression? You can also put 'false' or 'true' to always evaluate to false or true, respectively.");
149 > const errorNoInAfterNot = localize('contextkey.parser.error.noInAfterNot', "'in' after 'not'.");
150 > const errorClosingParenthesis = localize('contextkey.parser.error.closingParenthesis', "closing parenthesis ')'");
151 > const errorUnexpectedToken = localize('contextkey.parser.error.unexpectedToken', "Unexpected token");
152 > const hintUnexpectedToken = localize('contextkey.parser.error.unexpectedToken.hint', "Did you forget to put && or || before the token?");
153 > const errorUnexpectedEOF = localize('contextkey.parser.error.unexpectedEOF', "Unexpected end of expression");
154 > const hintUnexpectedEOF = localize('contextkey.parser.error.unexpectedEOF.hint', "Did you forget to put a context key?");
155 >
156 > /**
157 > * A parser for context key expressions.
158 > *
159 > * Example:
160 > * ```ts
161 > * const parser = new Parser();
162 > * const expr = parser.parse('foo == "bar" && baz == true');
163 > *
164 > * if (expr === undefined) {
165 > * // there were lexing or parsing errors
166 > * // process lexing errors with `parser.lexingErrors`
167 > * // process parsing errors with `parser.parsingErrors`
168 > * } else {
169 > * // expr is a valid expression
170 > * }
171 > * ```
172 > */
173 > export class Parser {
174 > // Note: this doesn't produce an exact syntax tree but a normalized one
175 > // ContextKeyExpression's that we use as AST nodes do not expose constructors that do not normalize
176 >
177 > private static _parseError = new Error();
178 >
179 > // lifetime note: `_scanner` lives as long as the parser does, i.e., is not reset between calls to `parse`
180 > private readonly _scanner = new Scanner();
181 >
182 > // lifetime note: `_tokens`, `_current`, and `_parsingErrors` must be reset between calls to `parse`
183 > private _tokens: Token[] = [];
184 > private _current = 0; // invariant: 0 <= this._current < this._tokens.length ; any incrementation of this value must first call `_isAtEnd`
185 > private _parsingErrors: ParsingError[] = [];
186 >
187 > get lexingErrors(): Readonly<LexingError[]> {
188 return this._scanner.errors;
189 }
191 > get parsingErrors(): Readonly<ParsingError[]> {
192 return this._parsingErrors;
193 }
195 > constructor(private readonly _config: ParserConfig = defaultConfig) {
196 > }
197 >
198 > /**
199 > * Parse a context key expression.
200 > *
201 > * @param input the expression to parse
202 > * @returns the parsed expression or `undefined` if there's an error - call `lexingErrors` and `parsingErrors` to see the errors
203 > */
204 > parse(input: string): ContextKeyExpression | undefined {
205
206 if (input === '') {
231 }
232 }
234 > private _expr(): ContextKeyExpression | undefined {
235 return this._or();
236 }
238 > private _or(): ContextKeyExpression | undefined {
239 const expr = [this._and()];
240
246 return expr.length === 1 ? expr[0] : ContextKeyExpr.or(...expr);
247 }
249 > private _and(): ContextKeyExpression | undefined {
250 const expr = [this._term()];
251
257 return expr.length === 1 ? expr[0] : ContextKeyExpr.and(...expr);
258 }
260 > private _term(): ContextKeyExpression | undefined {
261 if (this._matchOne(TokenType.Neg)) {
262 const peek = this._peek();
283 return this._primary();
284 }
286 > private _primary(): ContextKeyExpression | undefined {
287
288 const peek = this._peek();
498 }
499 }
501 > private _value(): string {
502 const token = this._peek();
503 switch (token.type) {
521 }
522 }
524 > private _flagsGYRe = /g|y/g;
525 > private _removeFlagsGY(flags: string): string {
526 return flags.replaceAll(this._flagsGYRe, '');
527 }
529 > // careful: this can throw if current token is the initial one (ie index = 0)
530 > private _previous() {
531 return this._tokens[this._current - 1];
532 }
534 > private _matchOne(token: TokenType) {
535 if (this._check(token)) {
536 this._advance();
540 return false;
541 }
543 > private _advance() {
544 if (!this._isAtEnd()) {
545 this._current++;
547 return this._previous();
548 }
550 > private _consume(type: TokenType, message: string) {
551 if (this._check(type)) {
552 return this._advance();
555 throw this._errExpectedButGot(message, this._peek());
556 }
558 > private _errExpectedButGot(expected: string, got: Token, additionalInfo?: string) {
559 const message = localize('contextkey.parser.error.expectedButGot', "Expected: {0}\nReceived: '{1}'.", expected, Scanner.getLexeme(got));
560 const offset = got.offset;
563 return Parser._parseError;
564 }
566 > private _check(type: TokenType) {
567 return this._peek().type === type;
568 }
570 > private _peek() {
571 return this._tokens[this._current];
572 }
574 > private _isAtEnd() {
575 return this._peek().type === TokenType.EOF;
576 }
577 > } contextkey.ts
578 >
579 > export abstract class ContextKeyExpr {
580 >
581 > public static false(): ContextKeyExpression {
582 return ContextKeyFalseExpr.INSTANCE;
583 }
584 > public static true(): ContextKeyExpression { contextkey.ts
585 return ContextKeyTrueExpr.INSTANCE;
586 }
587 > public static has(key: string): ContextKeyExpression { contextkey.ts
588 return ContextKeyDefinedExpr.create(key);
589 }
590 > public static equals(key: string, value: any): ContextKeyExpression { contextkey.ts
591 return ContextKeyEqualsExpr.create(key, value);
592 }
593 > public static notEquals(key: string, value: any): ContextKeyExpression { contextkey.ts
594 return ContextKeyNotEqualsExpr.create(key, value);
595 }
596 > public static regex(key: string, value: RegExp): ContextKeyExpression { contextkey.ts
597 return ContextKeyRegexExpr.create(key, value);
598 }
599 > public static in(key: string, value: string): ContextKeyExpression { contextkey.ts
600 return ContextKeyInExpr.create(key, value);
601 }
602 > public static notIn(key: string, value: string): ContextKeyExpression { contextkey.ts
603 return ContextKeyNotInExpr.create(key, value);
604 }
605 > public static not(key: string): ContextKeyExpression { contextkey.ts
606 return ContextKeyNotExpr.create(key);
607 }
608 > public static and(...expr: Array<ContextKeyExpression | undefined | null>): ContextKeyExpression | undefined { contextkey.ts
609 return ContextKeyAndExpr.create(expr, null, true);
610 }
611 > public static or(...expr: Array<ContextKeyExpression | undefined | null>): ContextKeyExpression | undefined { contextkey.ts
612 return ContextKeyOrExpr.create(expr, null, true);
613 }
614 > public static greater(key: string, value: number): ContextKeyExpression { contextkey.ts
615 return ContextKeyGreaterExpr.create(key, value);
616 }
617 > public static greaterEquals(key: string, value: number): ContextKeyExpression { contextkey.ts
618 return ContextKeyGreaterEqualsExpr.create(key, value);
619 }
620 > public static smaller(key: string, value: number): ContextKeyExpression { contextkey.ts
621 return ContextKeySmallerExpr.create(key, value);
622 }
623 > public static smallerEquals(key: string, value: number): ContextKeyExpression { contextkey.ts
624 return ContextKeySmallerEqualsExpr.create(key, value);
625 }
627 > private static _parser = new Parser({ regexParsingWithErrorRecovery: false });
628 > public static deserialize(serialized: string | null | undefined): ContextKeyExpression | undefined {
629 if (serialized === undefined || serialized === null) { // an empty string needs to be handled by the parser to get a corresponding parsing error reported
630 return undefined;
634 return expr;
635 }
637 > }
638 >
639 >
640 > export function validateWhenClauses(whenClauses: string[]): any {
641
642 const parser = new Parser({ regexParsingWithErrorRecovery: false }); // we run with no recovery to guide users to use correct regexes
664 });
665 }
667 > export function expressionsAreEqualWithConstantSubstitution(a: ContextKeyExpression | null | undefined, b: ContextKeyExpression | null | undefined): boolean {
668 const aExpr = a ? a.substituteConstants() : undefined;
669 const bExpr = b ? b.substituteConstants() : undefined;
676 return aExpr.equals(bExpr);
677 }
679 function cmp(a: ContextKeyExpression, b: ContextKeyExpression): number {
680 return a.cmp(b);
681 }
683 > export class ContextKeyFalseExpr implements IContextKeyExpression {
684 > public static INSTANCE = new ContextKeyFalseExpr();
685 >
686 > public readonly type = ContextKeyExprType.False;
687 >
688 > protected constructor() {
689 > }
690 >
691 > public cmp(other: ContextKeyExpression): number {
692 return this.type - other.type;
693 }
695 > public equals(other: ContextKeyExpression): boolean {
696 return (other.type === this.type);
697 }
699 > public substituteConstants(): ContextKeyExpression | undefined {
700 return this;
701 }
703 > public evaluate(context: IContext): boolean {
704 return false;
705 }
707 > public serialize(): string {
708 return 'false';
709 }
711 > public keys(): string[] {
712 return [];
713 }
715 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
716 return this;
717 }
719 > public negate(): ContextKeyExpression {
720 return ContextKeyTrueExpr.INSTANCE;
721 }
722 > } contextkey.ts
723 >
724 > export class ContextKeyTrueExpr implements IContextKeyExpression {
725 > public static INSTANCE = new ContextKeyTrueExpr();
726 >
727 > public readonly type = ContextKeyExprType.True;
728 >
729 > protected constructor() {
730 > }
731 >
732 > public cmp(other: ContextKeyExpression): number {
733 return this.type - other.type;
734 }
736 > public equals(other: ContextKeyExpression): boolean {
737 return (other.type === this.type);
738 }
740 > public substituteConstants(): ContextKeyExpression | undefined {
741 return this;
742 }
744 > public evaluate(context: IContext): boolean {
745 return true;
746 }
748 > public serialize(): string {
749 return 'true';
750 }
752 > public keys(): string[] {
753 return [];
754 }
756 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
757 return this;
758 }
760 > public negate(): ContextKeyExpression {
761 return ContextKeyFalseExpr.INSTANCE;
762 }
763 > } contextkey.ts
764 >
765 > export class ContextKeyDefinedExpr implements IContextKeyExpression {
766 > public static create(key: string, negated: ContextKeyExpression | null = null): ContextKeyExpression {
767 > const constantValue = CONSTANT_VALUES.get(key);
768 > if (typeof constantValue === 'boolean') {
769 > return constantValue ? ContextKeyTrueExpr.INSTANCE : ContextKeyFalseExpr.INSTANCE; contextkey.ts
770 > }
771 > return new ContextKeyDefinedExpr(key, negated); contextkey.ts
772 > }
773 >
774 > public readonly type = ContextKeyExprType.Defined;
775 >
776 > protected constructor(
777 > readonly key: string, contextkey.ts
778 > private negated: ContextKeyExpression | null
779 > ) {
780 > }
782 > public cmp(other: ContextKeyExpression): number {
783 if (other.type !== this.type) {
784 return this.type - other.type;
786 return cmp1(this.key, other.key);
787 }
789 > public equals(other: ContextKeyExpression): boolean {
790 if (other.type === this.type) {
791 return (this.key === other.key);
793 return false;
794 }
796 > public substituteConstants(): ContextKeyExpression | undefined {
797 const constantValue = CONSTANT_VALUES.get(this.key);
798 if (typeof constantValue === 'boolean') {
801 return this;
802 }
804 > public evaluate(context: IContext): boolean {
805 return (!!context.getValue(this.key));
806 }
808 > public serialize(): string {
809 return this.key;
810 }
812 > public keys(): string[] {
813 return [this.key];
814 }
816 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
817 return mapFnc.mapDefined(this.key);
818 }
820 > public negate(): ContextKeyExpression {
821 if (!this.negated) {
822 this.negated = ContextKeyNotExpr.create(this.key, this);
824 return this.negated;
825 }
826 > } contextkey.ts
827 >
828 > export class ContextKeyEqualsExpr implements IContextKeyExpression {
829 >
830 > public static create(key: string, value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
831 > if (typeof value === 'boolean') {
832 > return (value ? ContextKeyDefinedExpr.create(key, negated) : ContextKeyNotExpr.create(key, negated)); contextkey.ts
833 > }
834 > const constantValue = CONSTANT_VALUES.get(key); contextkey.ts
835 > if (typeof constantValue === 'boolean') {
836 > const trueValue = constantValue ? 'true' : 'false'; contextkey.ts
837 > return (value === trueValue ? ContextKeyTrueExpr.INSTANCE : ContextKeyFalseExpr.INSTANCE);
838 > }
839 > return new ContextKeyEqualsExpr(key, value, negated); contextkey.ts
840 > } contextkey.ts
841 >
842 > public readonly type = ContextKeyExprType.Equals;
843 >
844 > private constructor(
845 private readonly key: string,
846 private readonly value: any,
848 ) {
849 }
851 > public cmp(other: ContextKeyExpression): number {
852 if (other.type !== this.type) {
853 return this.type - other.type;
855 return cmp2(this.key, this.value, other.key, other.value);
856 }
858 > public equals(other: ContextKeyExpression): boolean {
859 if (other.type === this.type) {
860 return (this.key === other.key && this.value === other.value);
862 return false;
863 }
865 > public substituteConstants(): ContextKeyExpression | undefined {
866 const constantValue = CONSTANT_VALUES.get(this.key);
867 if (typeof constantValue === 'boolean') {
871 return this;
872 }
874 > public evaluate(context: IContext): boolean {
875 // Intentional ==
876 // eslint-disable-next-line eqeqeq
877 return (context.getValue(this.key) == this.value);
878 }
880 > public serialize(): string {
881 return `${this.key} == '${this.value}'`;
882 }
884 > public keys(): string[] {
885 return [this.key];
886 }
888 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
889 return mapFnc.mapEquals(this.key, this.value);
890 }
892 > public negate(): ContextKeyExpression {
893 if (!this.negated) {
894 this.negated = ContextKeyNotEqualsExpr.create(this.key, this.value, this);
896 return this.negated;
897 }
898 > } contextkey.ts
899 >
900 > export class ContextKeyInExpr implements IContextKeyExpression {
901 >
902 > public static create(key: string, valueKey: string): ContextKeyInExpr {
903 > return new ContextKeyInExpr(key, valueKey);
904 > }
905 >
906 > public readonly type = ContextKeyExprType.In;
907 > private negated: ContextKeyExpression | null = null;
908 >
909 > private constructor(
910 private readonly key: string,
911 private readonly valueKey: string,
912 ) {
913 }
915 > public cmp(other: ContextKeyExpression): number {
916 if (other.type !== this.type) {
917 return this.type - other.type;
919 return cmp2(this.key, this.valueKey, other.key, other.valueKey);
920 }
922 > public equals(other: ContextKeyExpression): boolean {
923 if (other.type === this.type) {
924 return (this.key === other.key && this.valueKey === other.valueKey);
926 return false;
927 }
929 > public substituteConstants(): ContextKeyExpression | undefined {
930 return this;
931 }
933 > public evaluate(context: IContext): boolean {
934 const source = context.getValue(this.valueKey);
935
964 return false;
965 }
967 > public serialize(): string {
968 return `${this.key} in '${this.valueKey}'`;
969 }
971 > public keys(): string[] {
972 return [this.key, this.valueKey];
973 }
975 > public map(mapFnc: IContextKeyExprMapper): ContextKeyInExpr {
976 return mapFnc.mapIn(this.key, this.valueKey);
977 }
979 > public negate(): ContextKeyExpression {
980 if (!this.negated) {
981 this.negated = ContextKeyNotInExpr.create(this.key, this.valueKey);
983 return this.negated;
984 }
985 > } contextkey.ts
986 >
987 > export class ContextKeyNotInExpr implements IContextKeyExpression {
988 >
989 > public static create(key: string, valueKey: string): ContextKeyNotInExpr {
990 > return new ContextKeyNotInExpr(key, valueKey);
991 > }
992 >
993 > public readonly type = ContextKeyExprType.NotIn;
994 >
995 > private readonly _negated: ContextKeyInExpr;
996 >
997 > private constructor(
998 private readonly key: string,
999 private readonly valueKey: string,
1001 this._negated = ContextKeyInExpr.create(key, valueKey);
1002 }
1003 > contextkey.ts
1004 > public cmp(other: ContextKeyExpression): number {
1005 if (other.type !== this.type) {
1006 return this.type - other.type;
1008 return this._negated.cmp(other._negated);
1009 }
1010 > contextkey.ts
1011 > public equals(other: ContextKeyExpression): boolean {
1012 if (other.type === this.type) {
1013 return this._negated.equals(other._negated);
1015 return false;
1016 }
1017 > contextkey.ts
1018 > public substituteConstants(): ContextKeyExpression | undefined {
1019 return this;
1020 }
1021 > contextkey.ts
1022 > public evaluate(context: IContext): boolean {
1023 return !this._negated.evaluate(context);
1024 }
1025 > contextkey.ts
1026 > public serialize(): string {
1027 return `${this.key} not in '${this.valueKey}'`;
1028 }
1029 > contextkey.ts
1030 > public keys(): string[] {
1031 return this._negated.keys();
1032 }
1033 > contextkey.ts
1034 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1035 return mapFnc.mapNotIn(this.key, this.valueKey);
1036 }
1037 > contextkey.ts
1038 > public negate(): ContextKeyExpression {
1039 return this._negated;
1040 }
1041 > } contextkey.ts
1042 >
1043 > export class ContextKeyNotEqualsExpr implements IContextKeyExpression {
1044 >
1045 > public static create(key: string, value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1046 > if (typeof value === 'boolean') {
1047 > if (value) { contextkey.ts
1048 > return ContextKeyNotExpr.create(key, negated); contextkey.ts
1049 > }
1050 > return ContextKeyDefinedExpr.create(key, negated); contextkey.ts
1051 > }
1052 > const constantValue = CONSTANT_VALUES.get(key); contextkey.ts
1053 > if (typeof constantValue === 'boolean') {
1054 > const falseValue = constantValue ? 'true' : 'false'; contextkey.ts
1055 > return (value === falseValue ? ContextKeyFalseExpr.INSTANCE : ContextKeyTrueExpr.INSTANCE);
1056 > }
1057 > return new ContextKeyNotEqualsExpr(key, value, negated); contextkey.ts
1058 > } contextkey.ts
1059 >
1060 > public readonly type = ContextKeyExprType.NotEquals;
1061 >
1062 > private constructor(
1063 private readonly key: string,
1064 private readonly value: any,
1066 ) {
1067 }
1068 > contextkey.ts
1069 > public cmp(other: ContextKeyExpression): number {
1070 if (other.type !== this.type) {
1071 return this.type - other.type;
1073 return cmp2(this.key, this.value, other.key, other.value);
1074 }
1075 > contextkey.ts
1076 > public equals(other: ContextKeyExpression): boolean {
1077 if (other.type === this.type) {
1078 return (this.key === other.key && this.value === other.value);
1080 return false;
1081 }
1082 > contextkey.ts
1083 > public substituteConstants(): ContextKeyExpression | undefined {
1084 const constantValue = CONSTANT_VALUES.get(this.key);
1085 if (typeof constantValue === 'boolean') {
1089 return this;
1090 }
1091 > contextkey.ts
1092 > public evaluate(context: IContext): boolean {
1093 // Intentional !=
1094 // eslint-disable-next-line eqeqeq
1095 return (context.getValue(this.key) != this.value);
1096 }
1097 > contextkey.ts
1098 > public serialize(): string {
1099 return `${this.key} != '${this.value}'`;
1100 }
1101 > contextkey.ts
1102 > public keys(): string[] {
1103 return [this.key];
1104 }
1105 > contextkey.ts
1106 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1107 return mapFnc.mapNotEquals(this.key, this.value);
1108 }
1109 > contextkey.ts
1110 > public negate(): ContextKeyExpression {
1111 if (!this.negated) {
1112 this.negated = ContextKeyEqualsExpr.create(this.key, this.value, this);
1114 return this.negated;
1115 }
1116 > } contextkey.ts
1117 >
1118 > export class ContextKeyNotExpr implements IContextKeyExpression {
1119 >
1120 > public static create(key: string, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1121 > const constantValue = CONSTANT_VALUES.get(key);
1122 > if (typeof constantValue === 'boolean') {
1123 > return (constantValue ? ContextKeyFalseExpr.INSTANCE : ContextKeyTrueExpr.INSTANCE); contextkey.ts
1124 > }
1125 > return new ContextKeyNotExpr(key, negated); contextkey.ts
1126 > }
1127 >
1128 > public readonly type = ContextKeyExprType.Not;
1129 >
1130 > private constructor(
1131 private readonly key: string,
1132 private negated: ContextKeyExpression | null
1133 ) {
1134 }
1135 > contextkey.ts
1136 > public cmp(other: ContextKeyExpression): number {
1137 if (other.type !== this.type) {
1138 return this.type - other.type;
1140 return cmp1(this.key, other.key);
1141 }
1142 > contextkey.ts
1143 > public equals(other: ContextKeyExpression): boolean {
1144 if (other.type === this.type) {
1145 return (this.key === other.key);
1147 return false;
1148 }
1149 > contextkey.ts
1150 > public substituteConstants(): ContextKeyExpression | undefined {
1151 const constantValue = CONSTANT_VALUES.get(this.key);
1152 if (typeof constantValue === 'boolean') {
1155 return this;
1156 }
1157 > contextkey.ts
1158 > public evaluate(context: IContext): boolean {
1159 return (!context.getValue(this.key));
1160 }
1161 > contextkey.ts
1162 > public serialize(): string {
1163 return `!${this.key}`;
1164 }
1165 > contextkey.ts
1166 > public keys(): string[] {
1167 return [this.key];
1168 }
1169 > contextkey.ts
1170 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1171 return mapFnc.mapNot(this.key);
1172 }
1173 > contextkey.ts
1174 > public negate(): ContextKeyExpression {
1175 if (!this.negated) {
1176 this.negated = ContextKeyDefinedExpr.create(this.key, this);
1178 return this.negated;
1179 }
1180 > } contextkey.ts
1181 >
1182 function withFloatOrStr<T extends ContextKeyExpression>(value: any, callback: (value: number | string) => T): T | ContextKeyFalseExpr {
1183 if (typeof value === 'string') {
1192 return ContextKeyFalseExpr.INSTANCE;
1193 }
1194 > contextkey.ts
1195 > export class ContextKeyGreaterExpr implements IContextKeyExpression {
1196 >
1197 > public static create(key: string, _value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1198 > return withFloatOrStr(_value, (value) => new ContextKeyGreaterExpr(key, value, negated));
1199 > }
1200 >
1201 > public readonly type = ContextKeyExprType.Greater;
1202 >
1203 > private constructor(
1204 private readonly key: string,
1205 private readonly value: number | string,
1206 private negated: ContextKeyExpression | null
1207 ) { }
1208 > contextkey.ts
1209 > public cmp(other: ContextKeyExpression): number {
1210 if (other.type !== this.type) {
1211 return this.type - other.type;
1213 return cmp2(this.key, this.value, other.key, other.value);
1214 }
1215 > contextkey.ts
1216 > public equals(other: ContextKeyExpression): boolean {
1217 if (other.type === this.type) {
1218 return (this.key === other.key && this.value === other.value);
1220 return false;
1221 }
1222 > contextkey.ts
1223 > public substituteConstants(): ContextKeyExpression | undefined {
1224 return this;
1225 }
1226 > contextkey.ts
1227 > public evaluate(context: IContext): boolean {
1228 if (typeof this.value === 'string') {
1229 return false;
1231 return (parseFloat(context.getValue<any>(this.key)) > this.value);
1232 }
1233 > contextkey.ts
1234 > public serialize(): string {
1235 return `${this.key} > ${this.value}`;
1236 }
1237 > contextkey.ts
1238 > public keys(): string[] {
1239 return [this.key];
1240 }
1241 > contextkey.ts
1242 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1243 return mapFnc.mapGreater(this.key, this.value);
1244 }
1245 > contextkey.ts
1246 > public negate(): ContextKeyExpression {
1247 if (!this.negated) {
1248 this.negated = ContextKeySmallerEqualsExpr.create(this.key, this.value, this);
1250 return this.negated;
1251 }
1252 > } contextkey.ts
1253 >
1254 > export class ContextKeyGreaterEqualsExpr implements IContextKeyExpression {
1255 >
1256 > public static create(key: string, _value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1257 > return withFloatOrStr(_value, (value) => new ContextKeyGreaterEqualsExpr(key, value, negated));
1258 > }
1259 >
1260 > public readonly type = ContextKeyExprType.GreaterEquals;
1261 >
1262 > private constructor(
1263 private readonly key: string,
1264 private readonly value: number | string,
1265 private negated: ContextKeyExpression | null
1266 ) { }
1267 > contextkey.ts
1268 > public cmp(other: ContextKeyExpression): number {
1269 if (other.type !== this.type) {
1270 return this.type - other.type;
1272 return cmp2(this.key, this.value, other.key, other.value);
1273 }
1274 > contextkey.ts
1275 > public equals(other: ContextKeyExpression): boolean {
1276 if (other.type === this.type) {
1277 return (this.key === other.key && this.value === other.value);
1279 return false;
1280 }
1281 > contextkey.ts
1282 > public substituteConstants(): ContextKeyExpression | undefined {
1283 return this;
1284 }
1285 > contextkey.ts
1286 > public evaluate(context: IContext): boolean {
1287 if (typeof this.value === 'string') {
1288 return false;
1290 return (parseFloat(context.getValue<any>(this.key)) >= this.value);
1291 }
1292 > contextkey.ts
1293 > public serialize(): string {
1294 return `${this.key} >= ${this.value}`;
1295 }
1296 > contextkey.ts
1297 > public keys(): string[] {
1298 return [this.key];
1299 }
1300 > contextkey.ts
1301 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1302 return mapFnc.mapGreaterEquals(this.key, this.value);
1303 }
1304 > contextkey.ts
1305 > public negate(): ContextKeyExpression {
1306 if (!this.negated) {
1307 this.negated = ContextKeySmallerExpr.create(this.key, this.value, this);
1309 return this.negated;
1310 }
1311 > } contextkey.ts
1312 >
1313 > export class ContextKeySmallerExpr implements IContextKeyExpression {
1314 >
1315 > public static create(key: string, _value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1316 > return withFloatOrStr(_value, (value) => new ContextKeySmallerExpr(key, value, negated));
1317 > }
1318 >
1319 > public readonly type = ContextKeyExprType.Smaller;
1320 >
1321 > private constructor(
1322 private readonly key: string,
1323 private readonly value: number | string,
1325 ) {
1326 }
1327 > contextkey.ts
1328 > public cmp(other: ContextKeyExpression): number {
1329 if (other.type !== this.type) {
1330 return this.type - other.type;
1332 return cmp2(this.key, this.value, other.key, other.value);
1333 }
1334 > contextkey.ts
1335 > public equals(other: ContextKeyExpression): boolean {
1336 if (other.type === this.type) {
1337 return (this.key === other.key && this.value === other.value);
1339 return false;
1340 }
1341 > contextkey.ts
1342 > public substituteConstants(): ContextKeyExpression | undefined {
1343 return this;
1344 }
1345 > contextkey.ts
1346 > public evaluate(context: IContext): boolean {
1347 if (typeof this.value === 'string') {
1348 return false;
1350 return (parseFloat(context.getValue<any>(this.key)) < this.value);
1351 }
1352 > contextkey.ts
1353 > public serialize(): string {
1354 return `${this.key} < ${this.value}`;
1355 }
1356 > contextkey.ts
1357 > public keys(): string[] {
1358 return [this.key];
1359 }
1360 > contextkey.ts
1361 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1362 return mapFnc.mapSmaller(this.key, this.value);
1363 }
1364 > contextkey.ts
1365 > public negate(): ContextKeyExpression {
1366 if (!this.negated) {
1367 this.negated = ContextKeyGreaterEqualsExpr.create(this.key, this.value, this);
1369 return this.negated;
1370 }
1371 > } contextkey.ts
1372 >
1373 > export class ContextKeySmallerEqualsExpr implements IContextKeyExpression {
1374 >
1375 > public static create(key: string, _value: any, negated: ContextKeyExpression | null = null): ContextKeyExpression {
1376 > return withFloatOrStr(_value, (value) => new ContextKeySmallerEqualsExpr(key, value, negated));
1377 > }
1378 >
1379 > public readonly type = ContextKeyExprType.SmallerEquals;
1380 >
1381 > private constructor(
1382 private readonly key: string,
1383 private readonly value: number | string,
1385 ) {
1386 }
1387 > contextkey.ts
1388 > public cmp(other: ContextKeyExpression): number {
1389 if (other.type !== this.type) {
1390 return this.type - other.type;
1392 return cmp2(this.key, this.value, other.key, other.value);
1393 }
1394 > contextkey.ts
1395 > public equals(other: ContextKeyExpression): boolean {
1396 if (other.type === this.type) {
1397 return (this.key === other.key && this.value === other.value);
1399 return false;
1400 }
1401 > contextkey.ts
1402 > public substituteConstants(): ContextKeyExpression | undefined {
1403 return this;
1404 }
1405 > contextkey.ts
1406 > public evaluate(context: IContext): boolean {
1407 if (typeof this.value === 'string') {
1408 return false;
1410 return (parseFloat(context.getValue<any>(this.key)) <= this.value);
1411 }
1412 > contextkey.ts
1413 > public serialize(): string {
1414 return `${this.key} <= ${this.value}`;
1415 }
1416 > contextkey.ts
1417 > public keys(): string[] {
1418 return [this.key];
1419 }
1420 > contextkey.ts
1421 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1422 return mapFnc.mapSmallerEquals(this.key, this.value);
1423 }
1424 > contextkey.ts
1425 > public negate(): ContextKeyExpression {
1426 if (!this.negated) {
1427 this.negated = ContextKeyGreaterExpr.create(this.key, this.value, this);
1429 return this.negated;
1430 }
1431 > } contextkey.ts
1432 >
1433 > export class ContextKeyRegexExpr implements IContextKeyExpression {
1434 >
1435 > public static create(key: string, regexp: RegExp | null): ContextKeyRegexExpr {
1436 > return new ContextKeyRegexExpr(key, regexp);
1437 > }
1438 >
1439 > public readonly type = ContextKeyExprType.Regex;
1440 > private negated: ContextKeyExpression | null = null;
1441 >
1442 > private constructor(
1443 private readonly key: string,
1444 private readonly regexp: RegExp | null
1446 //
1447 }
1448 > contextkey.ts
1449 > public cmp(other: ContextKeyExpression): number {
1450 if (other.type !== this.type) {
1451 return this.type - other.type;
1467 return 0;
1468 }
1469 > contextkey.ts
1470 > public equals(other: ContextKeyExpression): boolean {
1471 if (other.type === this.type) {
1472 const thisSource = this.regexp ? this.regexp.source : '';
1476 return false;
1477 }
1478 > contextkey.ts
1479 > public substituteConstants(): ContextKeyExpression | undefined {
1480 return this;
1481 }
1482 > contextkey.ts
1483 > public evaluate(context: IContext): boolean {
1484 const value = context.getValue<any>(this.key);
1485 return this.regexp ? this.regexp.test(value) : false;
1486 }
1487 > contextkey.ts
1488 > public serialize(): string {
1489 const value = this.regexp
1490 ? `/${this.regexp.source}/${this.regexp.flags}`
1492 return `${this.key} =~ ${value}`;
1493 }
1494 > contextkey.ts
1495 > public keys(): string[] {
1496 return [this.key];
1497 }
1498 > contextkey.ts
1499 > public map(mapFnc: IContextKeyExprMapper): ContextKeyRegexExpr {
1500 return mapFnc.mapRegex(this.key, this.regexp);
1501 }
1502 > contextkey.ts
1503 > public negate(): ContextKeyExpression {
1504 if (!this.negated) {
1505 this.negated = ContextKeyNotRegexExpr.create(this);
1507 return this.negated;
1508 }
1509 > } contextkey.ts
1510 >
1511 > export class ContextKeyNotRegexExpr implements IContextKeyExpression {
1512 >
1513 > public static create(actual: ContextKeyRegexExpr): ContextKeyExpression {
1514 > return new ContextKeyNotRegexExpr(actual);
1515 > }
1516 >
1517 > public readonly type = ContextKeyExprType.NotRegex;
1518 >
1519 > private constructor(private readonly _actual: ContextKeyRegexExpr) {
1520 //
1521 }
1522 > contextkey.ts
1523 > public cmp(other: ContextKeyExpression): number {
1524 if (other.type !== this.type) {
1525 return this.type - other.type;
1527 return this._actual.cmp(other._actual);
1528 }
1529 > contextkey.ts
1530 > public equals(other: ContextKeyExpression): boolean {
1531 if (other.type === this.type) {
1532 return this._actual.equals(other._actual);
1534 return false;
1535 }
1536 > contextkey.ts
1537 > public substituteConstants(): ContextKeyExpression | undefined {
1538 return this;
1539 }
1540 > contextkey.ts
1541 > public evaluate(context: IContext): boolean {
1542 return !this._actual.evaluate(context);
1543 }
1544 > contextkey.ts
1545 > public serialize(): string {
1546 return `!(${this._actual.serialize()})`;
1547 }
1548 > contextkey.ts
1549 > public keys(): string[] {
1550 return this._actual.keys();
1551 }
1552 > contextkey.ts
1553 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1554 return new ContextKeyNotRegexExpr(this._actual.map(mapFnc));
1555 }
1556 > contextkey.ts
1557 > public negate(): ContextKeyExpression {
1558 return this._actual;
1559 }
1560 > } contextkey.ts
1561 >
1562 > /**
1563 > * @returns the same instance if nothing changed.
1564 > */
1565 function eliminateConstantsInArray(arr: ContextKeyExpression[]): (ContextKeyExpression | undefined)[] {
1566 // Allocate array only if there is a difference
1591 return newArr;
1592 }
1593 > contextkey.ts
1594 > export class ContextKeyAndExpr implements IContextKeyExpression {
1595 >
1596 > public static create(_expr: ReadonlyArray<ContextKeyExpression | null | undefined>, negated: ContextKeyExpression | null, extraRedundantCheck: boolean): ContextKeyExpression | undefined {
1597 > return ContextKeyAndExpr._normalizeArr(_expr, negated, extraRedundantCheck);
1598 > }
1599 >
1600 > public readonly type = ContextKeyExprType.And;
1601 >
1602 > private constructor(
1603 public readonly expr: ContextKeyExpression[],
1604 private negated: ContextKeyExpression | null
1605 ) {
1606 }
1607 > contextkey.ts
1608 > public cmp(other: ContextKeyExpression): number {
1609 if (other.type !== this.type) {
1610 return this.type - other.type;
1624 return 0;
1625 }
1626 > contextkey.ts
1627 > public equals(other: ContextKeyExpression): boolean {
1628 if (other.type === this.type) {
1629 if (this.expr.length !== other.expr.length) {
1639 return false;
1640 }
1641 > contextkey.ts
1642 > public substituteConstants(): ContextKeyExpression | undefined {
1643 const exprArr = eliminateConstantsInArray(this.expr);
1644 if (exprArr === this.expr) {
1648 return ContextKeyAndExpr.create(exprArr, this.negated, false);
1649 }
1650 > contextkey.ts
1651 > public evaluate(context: IContext): boolean {
1652 for (let i = 0, len = this.expr.length; i < len; i++) {
1653 if (!this.expr[i].evaluate(context)) {
1657 return true;
1658 }
1659 > contextkey.ts
1660 > private static _normalizeArr(arr: ReadonlyArray<ContextKeyExpression | null | undefined>, negated: ContextKeyExpression | null, extraRedundantCheck: boolean): ContextKeyExpression | undefined {
1661 const expr: ContextKeyExpression[] = [];
1662 let hasTrue = false;
1762 return new ContextKeyAndExpr(expr, negated);
1763 }
1764 > contextkey.ts
1765 > public serialize(): string {
1766 return this.expr.map(e => e.serialize()).join(' && ');
1767 }
1768 > contextkey.ts
1769 > public keys(): string[] {
1770 const result: string[] = [];
1771 for (const expr of this.expr) {
1774 return result;
1775 }
1776 > contextkey.ts
1777 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1778 return new ContextKeyAndExpr(this.expr.map(expr => expr.map(mapFnc)), null);
1779 }
1780 > contextkey.ts
1781 > public negate(): ContextKeyExpression {
1782 if (!this.negated) {
1783 const result: ContextKeyExpression[] = [];
1789 return this.negated;
1790 }
1791 > } contextkey.ts
1792 >
1793 > export class ContextKeyOrExpr implements IContextKeyExpression {
1794 >
1795 > public static create(_expr: ReadonlyArray<ContextKeyExpression | null | undefined>, negated: ContextKeyExpression | null, extraRedundantCheck: boolean): ContextKeyExpression | undefined {
1796 > return ContextKeyOrExpr._normalizeArr(_expr, negated, extraRedundantCheck);
1797 > }
1798 >
1799 > public readonly type = ContextKeyExprType.Or;
1800 >
1801 > private constructor(
1802 public readonly expr: ContextKeyExpression[],
1803 private negated: ContextKeyExpression | null
1804 ) {
1805 }
1806 > contextkey.ts
1807 > public cmp(other: ContextKeyExpression): number {
1808 if (other.type !== this.type) {
1809 return this.type - other.type;
1823 return 0;
1824 }
1825 > contextkey.ts
1826 > public equals(other: ContextKeyExpression): boolean {
1827 if (other.type === this.type) {
1828 if (this.expr.length !== other.expr.length) {
1838 return false;
1839 }
1840 > contextkey.ts
1841 > public substituteConstants(): ContextKeyExpression | undefined {
1842 const exprArr = eliminateConstantsInArray(this.expr);
1843 if (exprArr === this.expr) {
1847 return ContextKeyOrExpr.create(exprArr, this.negated, false);
1848 }
1849 > contextkey.ts
1850 > public evaluate(context: IContext): boolean {
1851 for (let i = 0, len = this.expr.length; i < len; i++) {
1852 if (this.expr[i].evaluate(context)) {
1856 return false;
1857 }
1858 > contextkey.ts
1859 > private static _normalizeArr(arr: ReadonlyArray<ContextKeyExpression | null | undefined>, negated: ContextKeyExpression | null, extraRedundantCheck: boolean): ContextKeyExpression | undefined {
1860 let expr: ContextKeyExpression[] = [];
1861 let hasFalse = false;
1932 return new ContextKeyOrExpr(expr, negated);
1933 }
1934 > contextkey.ts
1935 > public serialize(): string {
1936 return this.expr.map(e => e.serialize()).join(' || ');
1937 }
1938 > contextkey.ts
1939 > public keys(): string[] {
1940 const result: string[] = [];
1941 for (const expr of this.expr) {
1944 return result;
1945 }
1946 > contextkey.ts
1947 > public map(mapFnc: IContextKeyExprMapper): ContextKeyExpression {
1948 return new ContextKeyOrExpr(this.expr.map(expr => expr.map(mapFnc)), null);
1949 }
1950 > contextkey.ts
1951 > public negate(): ContextKeyExpression {
1952 if (!this.negated) {
1953 const result: ContextKeyExpression[] = [];
1976 return this.negated;
1977 }
1978 > } contextkey.ts
1979 >
1980 > export interface ContextKeyInfo {
1981 > readonly key: string;
1982 > readonly type?: string;
1983 > readonly description?: string;
1984 > }
1985 >
1986 > export class RawContextKey<T extends ContextKeyValue> extends ContextKeyDefinedExpr {
1987 >
1988 > private static _info: ContextKeyInfo[] = [];
1989 >
1990 > static all(): IterableIterator<ContextKeyInfo> {
1991 return RawContextKey._info.values();
1992 }
1993 > contextkey.ts
1994 > private readonly _defaultValue: T | undefined;
1995 >
1996 > constructor(key: string, defaultValue: T | undefined, metaOrHide?: string | true | { type: string; description: string }) {
1997 > super(key, null); contextkey.ts
1998 > this._defaultValue = defaultValue;
1999 >
2000 > // collect all context keys into a central place
2001 > if (typeof metaOrHide === 'object') {
2002 RawContextKey._info.push({ ...metaOrHide, key });
2003 > } else if (metaOrHide !== true) { contextkey.ts
2004 > RawContextKey._info.push({ key, description: metaOrHide, type: defaultValue !== null && defaultValue !== undefined ? typeof defaultValue : undefined }); contextkey.ts
2005 > }
2006 > } contextkey.ts
2007 > contextkey.ts
2008 > public bindTo(target: IContextKeyService): IContextKey<T> {
2009 return target.createKey(this.key, this._defaultValue);
2010 }
2011 > contextkey.ts
2012 > public getValue(target: IContextKeyService): T | undefined {
2013 return target.getContextKeyValue<T>(this.key);
2014 }
2015 > contextkey.ts
2016 > public toNegated(): ContextKeyExpression {
2017 return this.negate();
2018 }
2019 > contextkey.ts
2020 > public isEqualTo(value: any): ContextKeyExpression {
2021 return ContextKeyEqualsExpr.create(this.key, value);
2022 }
2023 > contextkey.ts
2024 > public notEqualsTo(value: any): ContextKeyExpression {
2025 return ContextKeyNotEqualsExpr.create(this.key, value);
2026 }
2027 > contextkey.ts
2028 > public greater(value: any): ContextKeyExpression {
2029 return ContextKeyGreaterExpr.create(this.key, value);
2030 }
2031 > } contextkey.ts
2032 >
2033 > export type ContextKeyValue = null | undefined | boolean | number | string
2034 > | Array<null | undefined | boolean | number | string>
2035 > | Record<string, null | undefined | boolean | number | string>;
2036 >
2037 > export interface IContext {
2038 > getValue<T extends ContextKeyValue = ContextKeyValue>(key: string): T | undefined;
2039 > }
2040 >
2041 > export interface IContextKey<T extends ContextKeyValue = ContextKeyValue> {
2042 > set(value: T): void;
2043 > reset(): void;
2044 > get(): T | undefined;
2045 > }
2046 >
2047 > export interface IContextKeyServiceTarget {
2048 > parentElement: IContextKeyServiceTarget | null;
2049 > setAttribute(attr: string, value: string): void;
2050 > removeAttribute(attr: string): void;
2051 > hasAttribute(attr: string): boolean;
2052 > getAttribute(attr: string): string | null;
2053 > }
2054 >
2055 > export const IContextKeyService = createDecorator<IContextKeyService>('contextKeyService');
2056 >
2057 > export interface IReadableSet<T> {
2058 > has(value: T): boolean;
2059 > }
2060 >
2061 > export interface IContextKeyChangeEvent {
2062 > affectsSome(keys: IReadableSet<string>): boolean;
2063 > allKeysContainedIn(keys: IReadableSet<string>): boolean;
2064 > }
2065 >
2066 > export type IScopedContextKeyService = IContextKeyService & IDisposable;
2067 >
2068 > export interface IContextKeyService {
2069 > readonly _serviceBrand: undefined;
2070 >
2071 > readonly onDidChangeContext: Event<IContextKeyChangeEvent>;
2072 > bufferChangeEvents(callback: Function): void;
2073 >
2074 > createKey<T extends ContextKeyValue>(key: string, defaultValue: T | undefined): IContextKey<T>;
2075 > contextMatchesRules(rules: ContextKeyExpression | undefined): boolean;
2076 > getContextKeyValue<T>(key: string): T | undefined;
2077 >
2078 > createScoped(target: IContextKeyServiceTarget): IScopedContextKeyService;
2079 > createOverlay(overlay: Iterable<[string, any]>): IContextKeyService;
2080 > getContext(target: IContextKeyServiceTarget | null): IContext;
2081 >
2082 > updateParent(parentContextKeyService: IContextKeyService): void;
2083 > }
2084 >
2085 function cmp1(key1: string, key2: string): number {
2086 if (key1 < key2) {
2092 return 0;
2093 }
2094 > contextkey.ts
2095 function cmp2(key1: string, value1: any, key2: string, value2: any): number {
2096 if (key1 < key2) {
2108 return 0;
2109 }
2110 > contextkey.ts
2111 > /**
2112 > * Returns true if it is provable `p` implies `q`.
2113 > */
2114 > export function implies(p: ContextKeyExpression, q: ContextKeyExpression): boolean {
2115
2116 if (p.type === ContextKeyExprType.False || q.type === ContextKeyExprType.True) {
2152 return p.equals(q);
2153 }
2154 > contextkey.ts
2155 > /**
2156 > * Returns true if all elements in `p` are also present in `q`.
2157 > * The two arrays are assumed to be sorted
2158 > */
2159 function allElementsIncluded(p: ContextKeyExpression[], q: ContextKeyExpression[]): boolean {
2160 let pIndex = 0;
2175 return (pIndex === p.length);
2176 }
2177 > contextkey.ts
2178 function getTerminals(node: ContextKeyExpression) {
2179 if (node.type === ContextKeyExprType.Or) {
src/vs/platform/agentHost/node/protocolServerHandler.ts 757 covered LOC · 127 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- protocolServerHandler.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { disposableTimeout } from '../../../base/common/async.js';
7 > import { Emitter } from '../../../base/common/event.js';
8 > import { isJsonRpcResponse } from '../../../base/common/jsonRpcProtocol.js';
9 > import { Disposable, DisposableMap, DisposableStore } from '../../../base/common/lifecycle.js';
10 > import { hasKey } from '../../../base/common/types.js';
11 > import { URI } from '../../../base/common/uri.js';
12 > import { ILogService } from '../../log/common/log.js';
13 > import { AHPFileSystemProvider } from '../common/agentHostFileSystemProvider.js';
14 > import { AgentSession, type IAgentCreateChatOptions, type IAgentService, type IMcpNotification } from '../common/agentService.js';
15 > import { isActionEnvelopeRelevantToSubscriptionUris } from '../common/state/agentSubscription.js';
16 > import { ChatSourceKind } from '../common/state/protocol/channels-chat/commands.js';
17 > import type { CommandMap } from '../common/state/protocol/messages.js';
18 > import { ActionEnvelope, ActionType, INotification, isAnnotationsAction, isChangesetAction, isChatAction, isSessionAction, isTerminalAction, type ChatAction, type ClientAnnotationsAction, type ClientChangesetAction, type IRootConfigChangedAction, type SessionAction, type TerminalAction } from '../common/state/sessionActions.js';
19 > import { PROTOCOL_VERSION } from '../common/state/protocol/version/registry.js';
20 > import { negotiateProtocolVersion } from '../common/state/protocol/version/negotiation.js';
21 > import { VSCODE_UPGRADE_METHOD, type UnsupportedProtocolVersionErrorDataEx } from '../common/state/protocolUpgrade.js';
22 > import { getAgentHostManagementSocketPath, requestAgentHostUpgrade } from './agentHostUpgradeChannel.js';
23 > import {
24 > AHP_AUTH_REQUIRED,
25 > AhpErrorCodes,
26 > AHP_PROVIDER_NOT_FOUND,
27 > AHP_SESSION_NOT_FOUND,
28 > AHP_UNSUPPORTED_PROTOCOL_VERSION,
29 > JsonRpcRequest,
30 > isJsonRpcNotification,
31 > isJsonRpcRequest,
32 > JSON_RPC_INTERNAL_ERROR,
33 > JsonRpcErrorCodes,
34 > ProtocolError,
35 > type AhpServerNotification,
36 > type InitializeParams,
37 > type JsonRpcResponse,
38 > type ReconnectParams,
39 > type IStateSnapshot,
40 > type SubscribeResult,
41 > type ListSessionsResult,
42 > } from '../common/state/sessionProtocol.js';
43 > import { isAhpResourceWatchChannel, isAhpRootChannel, ResponsePartKind, SessionStatus, ToolCallConfirmationReason, ToolCallContributorKind, ToolCallStatus, ToolResultContentType, buildDefaultChatUri, isAhpChatChannel, parseChatUri, parseRequiredSessionUriFromChatUri, type ISessionWithDefaultChat, type SessionState } from '../common/state/sessionState.js';
44 > import type { IProtocolServer, IProtocolTransport } from '../common/state/sessionTransport.js';
45 > import { AgentHostStateManager } from './agentHostStateManager.js';
46 > import {
47 > buildOtlpLogsChannelUri,
48 > extractLevelFromOtlpLogsUri,
49 > levelToSeverityNumber,
50 > OTLP_CHANNEL_SCHEME,
51 > OTLP_LOGS_CHANNEL_TEMPLATE,
52 > OtlpLogEmitter,
53 > toResourceLogsPayload,
54 > type IOtlpLogRecord,
55 > type OtlpLogLevelName,
56 > } from '../common/otlp/otlpLogEmitter.js';
57 > import { isFileResourceRead } from '../common/resourceReadLogging.js';
58 >
59 > /** Default capacity of the server-side action replay buffer. */
60 > const REPLAY_BUFFER_CAPACITY = 1000;
61 >
62 > const CLIENT_TOOL_CALL_DISCONNECT_TIMEOUT = 30_000;
63 >
64 > /**
65 > * Client-dispatchable actions that are declared in the protocol but not yet
66 > * operational in this build. The multiroot working-directory mutations
67 > * (`session|chat/workingDirectorySet|Removed`) would mutate the synchronized
68 > * working-directory set without reconfiguring the agent's actual directory
69 > * access, so they are rejected in the dispatch path until capability-backed
70 > * multiroot support lands.
71 > */
72 > const UNSUPPORTED_CLIENT_ACTION_TYPES: ReadonlySet<ActionType> = new Set([
73 > ActionType.SessionWorkingDirectorySet,
74 > ActionType.SessionWorkingDirectoryRemoved,
75 > ActionType.ChatWorkingDirectorySet,
76 > ActionType.ChatWorkingDirectoryRemoved,
77 > ]);
78 >
79 > /** A client tool call in any of these statuses is still awaiting its result. */
80 function isPendingToolCallStatus(status: ToolCallStatus): boolean {
81 return status === ToolCallStatus.Streaming
83 || status === ToolCallStatus.PendingConfirmation;
84 }
86 > /** Build a JSON-RPC success response suitable for transport.send(). */
87 > function jsonRpcSuccess(id: number, result: unknown): JsonRpcResponse { protocolServerHandler.ts
88 > return { jsonrpc: '2.0', id, result };
89 > }
91 > /** Build a JSON-RPC error response suitable for transport.send(). */
92 function jsonRpcError(id: number, code: number, message: string, data?: unknown): JsonRpcResponse {
93 return { jsonrpc: '2.0', id, error: { code, message, ...(data !== undefined ? { data } : {}) } };
94 }
96 > /** Build a JSON-RPC error response from an unknown thrown value, preserving {@link ProtocolError} fields. */
97 function jsonRpcErrorFrom(id: number, err: unknown): JsonRpcResponse {
98 if (err instanceof ProtocolError) {
102 return jsonRpcError(id, JSON_RPC_INTERNAL_ERROR, message);
103 }
105 function shouldLogFailedRequest(method: string, params: unknown, err: unknown): boolean {
106 if (!(err instanceof ProtocolError) || err.code !== AhpErrorCodes.NotFound || !isFileResourceRead(method, params)) {
109 return false;
110 }
112 > /** True when `value` is a non-null params object (as opposed to an array or primitive). */
113 function isParamsObject(value: unknown): value is Record<string, unknown> {
114 return typeof value === 'object' && value !== null && !Array.isArray(value);
115 }
117 > /**
118 > * Returns the `channel` URI carried on a request's params when it is an
119 > * `mcp://` channel — the AHP routing envelope for raw MCP requests
120 > * tunnelled over the JSON-RPC connection. Returns `undefined` for any
121 > * other params shape.
122 > */
123 function readMcpChannel(params: unknown): string | undefined {
124 if (!isParamsObject(params)) {
131 return channel;
132 }
134 > /**
135 > * Methods handled by the request dispatcher. Excludes `initialize`,
136 > * `reconnect`, and `ping`, which are handled directly during message
137 > * dispatch without requiring an established client context.
138 > */
139 > type RequestMethod = Exclude<keyof CommandMap, 'initialize' | 'reconnect' | 'ping'>;
140 >
141 > /**
142 > * Typed handler map: each key is a request method, each value is a handler
143 > * that receives the correctly-typed params and must return the correctly-typed
144 > * result. The compiler will error if a handler returns the wrong shape.
145 > */
146 > type RequestHandlerMap = {
147 > [M in RequestMethod]: (client: IConnectedClient, params: CommandMap[M]['params']) => Promise<CommandMap[M]['result']>;
148 > };
149 >
150 > /**
151 > * Discriminant for {@link ChannelSubscription}. Distinguishes a regular
152 > * state-bearing channel (root, session, terminal, changeset) from the
153 > * stateless OTLP signal channels so each subscribe/unsubscribe path can
154 > * dispatch through a single typed lookup.
155 > */
156 > const enum ChannelKind {
157 > /**
158 > * Subscribed via {@link IAgentService.subscribe} and tracked by the
159 > * server-side refcount. Carries replayable state, participates in
160 > * action broadcasts ({@link _broadcastAction}) and reconnect
161 > * snapshot/replay.
162 > */
163 > State = 'state',
164 > /**
165 > * Resource-watch channels (`ahp-resource-watch:/<id>`). Tracked
166 > * separately so subscribe/unsubscribe routes through the agent
167 > * service's per-watch refcount + grace timer rather than the
168 > * session-shaped {@link IAgentService.subscribe} path.
169 > */
170 > ResourceWatch = 'resource-watch',
171 > /**
172 > * Subscribed against the OTLP logs channel template advertised in
173 > * {@link InitializeResult.telemetry}. Stateless — no snapshot, no
174 > * agent-service refcount. The `level` field records the minimum
175 > * severity the client asked to receive.
176 > */
177 > OtlpLogs = 'otlp-logs',
178 > }
179 >
180 > /**
181 > * Per-channel server-side subscription record. Stored on every
182 > * {@link IConnectedClient} so each subscribed channel can be routed by
183 > * its `kind` without re-deriving it from the URI on every dispatch.
184 > *
185 > * `uri` is the canonical channel URI string used everywhere a subscription
186 > * is referenced — the same string is broadcast on outbound notifications
187 > * and persists across reconnects.
188 > */
189 > type ChannelSubscription =
190 > | { readonly kind: ChannelKind.State; readonly uri: string }
191 > | { readonly kind: ChannelKind.ResourceWatch; readonly uri: string }
192 > | { readonly kind: ChannelKind.OtlpLogs; readonly uri: string; readonly level: OtlpLogLevelName };
193 >
194 > /**
195 > * Represents a connected protocol client with its subscription state.
196 > */
197 > interface IConnectedClient {
198 > readonly clientId: string;
199 > readonly protocolVersion: string;
200 > readonly transport: IProtocolTransport;
201 > /**
202 > * Every channel the client is currently subscribed to, keyed by the
203 > * canonical channel URI. OTLP channel URIs are canonicalised to
204 > * `buildOtlpLogsChannelUri(level)` so URI variants that resolve to
205 > * the same logical channel collapse to one entry.
206 > */
207 > readonly subscriptions: Map<string, ChannelSubscription>;
208 > readonly disposables: DisposableStore;
209 > }
210 >
211 > /**
212 > * Per-client server-side record, keyed by clientId in
213 > * {@link ProtocolServerHandler._clients}. Unlike {@link IConnectedClient},
214 > * the record OUTLIVES individual transports: multiple overlapping transports
215 > * for the same logical client are held oldest-first, with the active transport
216 > * at the end. When the last transport disconnects, the record is retained
217 > * (until pruned) so the tool-call disconnect-grace machinery can compute the
218 > * remaining window and hold any armed timeouts.
219 > *
220 > * A client is in exactly one of two states, which makes the core invariant
221 > * unrepresentable in the wrong shape: a client either has one or more live
222 > * transports ({@link IActiveClientRecord}, never any disconnect-grace timers)
223 > * or has no transport and is within its disconnect-grace window
224 > * ({@link IGraceClientRecord}, never any connections). Transitions happen only
225 > * in {@link ProtocolServerHandler._attachConnection} (→ active, which disposes
226 > * any grace timers) and the transport `onClose` handler (→ grace, once the last
227 > * transport is gone).
228 > */
229 > type IClientRecord = IActiveClientRecord | IGraceClientRecord;
230 >
231 > interface IActiveClientRecord {
232 > readonly state: 'active';
233 > /**
234 > * Live transports for this client, oldest first. The active connection is
235 > * the last entry (most recent wins). Older entries are kept so that if a
236 > * reconnecting client registers `A`, then `B`, then `B` closes first, we can
237 > * fall back to `A` instead of treating the client as disconnected. Never
238 > * empty: removing the last transport promotes the record to a grace record.
239 > */
240 > readonly connections: IConnectedClient[];
241 > }
242 >
243 > interface IGraceClientRecord {
244 > readonly state: 'grace';
245 > /**
246 > * Epoch ms when the client last had a live transport, or when this record
247 > * was created for a never-connected orphan tool-call stamp. Pins the grace
248 > * clock so re-arms triggered by later orphaned tool calls shrink the
249 > * remaining window instead of resetting it. Drives the disconnect-timeout
250 > * delay (residual window from this instant).
251 > */
252 > lastSeenAt: number;
253 > /**
254 > * Pending tool-call disconnect timeouts owned by this client, keyed by
255 > * session URI. Armed when the client owns a pending client tool call but is
256 > * not connected; fires a failing completion if it does not (re)connect
257 > * within the grace window. Reconnecting promotes the record to active and
258 > * disposes these timers (the grace window no longer applies once a transport
259 > * is live). Disposing an entry (or the whole map) clears the timer.
260 > */
261 > readonly disconnectTimeouts: DisposableMap<string>;
262 > }
263 >
264 > /**
265 > * Classifies a raw channel URI string into its {@link ChannelKind} and
266 > * returns the canonical URI to key subscriptions by. Returns `undefined`
267 > * when the channel is OTLP-flavoured but the URI does not parse into a
268 > * supported shape (unknown level, missing path) so the caller can
269 > * silently drop the subscribe rather than installing a broken entry.
270 > *
271 > * For state channels the canonical URI is just the input verbatim — the
272 > * agent service is the authoritative deduplication point and tolerates
273 > * whatever URI form the client sent.
274 > */
275 > function classifyChannel(channel: string): ChannelSubscription | undefined { protocolServerHandler.ts
276 > if (channel.toLowerCase().startsWith(`${OTLP_CHANNEL_SCHEME}:`)) {
277 > const level = extractLevelFromOtlpLogsUri(channel); protocolServerHandler.ts
278 > if (!level) {
279 > return undefined; protocolServerHandler.ts
280 > }
281 return { kind: ChannelKind.OtlpLogs, uri: buildOtlpLogsChannelUri(level), level };
282 }
286 return { kind: ChannelKind.State, uri: channel };
287 }
289 > /**
290 > * Configuration for protocol-level concerns outside of IAgentService.
291 > */
292 > export interface IProtocolServerConfig {
293 > /** Default directory returned to clients during the initialize handshake. */
294 > readonly defaultDirectory?: string;
295 > /**
296 > * Whether to expose VS Code extension methods outside the Agent Host Protocol.
297 > * Defaults to `true` for existing remote listeners.
298 > */
299 > readonly allowExtensionMethods?: boolean;
300 > /**
301 > * Characters that, when typed in a {@link UserMessage} input, SHOULD
302 > * cause the client to issue a `completions` request. Announced to
303 > * clients in the `initialize` response.
304 > */
305 > readonly completionTriggerCharacters?: readonly string[];
306 > /**
307 > * Prefix that marks a user message as a host terminal command.
308 > */
309 > readonly terminalCommandPrefix?: string;
310 > /**
311 > * Optional emitter to use as the source for the OTLP logs channel
312 > * advertised via `InitializeResult.telemetry.logs`. When present, this
313 > * handler will route `subscribe`/`unsubscribe` requests on
314 > * `ahp-otlp:` channels to its internal OTLP subscription registry and
315 > * broadcast every record fed into the emitter as an
316 > * `otlp/exportLogs` notification. When absent, the OTLP channel is
317 > * not advertised and any inbound `ahp-otlp:` subscribe request is
318 > * rejected.
319 > */
320 > readonly otlpLogEmitter?: OtlpLogEmitter;
321 > }
322 >
323 > /**
324 > * Server-side handler that manages protocol connections, routes JSON-RPC
325 > * messages to the agent service, and broadcasts actions/notifications
326 > * to subscribed clients.
327 > */
328 > export class ProtocolServerHandler extends Disposable {
329 >
330 > /**
331 > * Per-client records keyed by clientId. Holds both connected clients
332 > * (`connections` non-empty) and recently-disconnected ones retained for the
333 > * tool-call disconnect-grace window (`connections.length === 0`). See
334 > * {@link IClientRecord}.
335 > */
336 > private readonly _clients = new Map<string, IClientRecord>();
337 > private readonly _replayBuffer: ActionEnvelope[] = [];
338 >
339 > private readonly _onDidChangeConnectionCount = this._register(new Emitter<number>());
340 >
341 > /** Fires with the current client count whenever a client connects or disconnects. */
342 > readonly onDidChangeConnectionCount = this._onDidChangeConnectionCount.event;
343 >
344 > constructor(
345 > private readonly _agentService: IAgentService,
346 > private readonly _stateManager: AgentHostStateManager,
347 > private readonly _server: IProtocolServer,
348 > private readonly _config: IProtocolServerConfig,
349 > private readonly _clientFileSystemProvider: AHPFileSystemProvider,
350 > @ILogService private readonly _logService: ILogService,
351 > ) {
352 > super();
353 >
354 > this._register(this._server.onConnection(transport => {
355 > this._handleNewConnection(transport); protocolServerHandler.ts
357 >
358 > this._register(this._stateManager.onDidEmitEnvelope(envelope => {
359 this._replayBuffer.push(envelope);
360 if (this._replayBuffer.length > REPLAY_BUFFER_CAPACITY) {
376 this._checkOrphanedClientToolCalls(parseRequiredSessionUriFromChatUri(envelope.channel), envelope.channel);
377 }
379 >
380 > this._register(this._stateManager.onDidEmitNotification(notification => {
381 this._broadcastNotification(notification);
383 >
384 > this._register(this._agentService.onMcpNotification(notification => {
385 this._broadcastMcpNotification(notification);
387 >
388 > if (this._config.otlpLogEmitter) {
389 > this._register(this._config.otlpLogEmitter.onDidLog(record => this._broadcastOtlpLog(record))); protocolServerHandler.ts
390 > }
392 >
393 > // ---- Connection handling -------------------------------------------------
394 >
395 > private _handleNewConnection(transport: IProtocolTransport): void {
396 > const disposables = new DisposableStore(); protocolServerHandler.ts
397 > let client: IConnectedClient | undefined;
398 >
399 > disposables.add(transport.onMessage(msg => {
400 > if (isJsonRpcRequest(msg)) {
401 > this._logService.trace(`[ProtocolServer] request: method=${msg.method} id=${msg.id}`);
402 >
403 > // Ping is stateless and MUST be answerable regardless of whether
404 > // the connection has been initialized. Carries no payload — the
405 > // round-trip itself is the liveness signal.
406 > if (msg.method === 'ping') {
407 transport.send(jsonRpcSuccess(msg.id, null));
408 return;
409 }
411 > // Handle initialize/reconnect as requests that set up the client
412 > if (!client && msg.method === 'initialize') { protocolServerHandler.ts
414 > const result = this._handleInitialize(msg.params, transport, disposables);
415 > client = result.client;
416 > transport.send(jsonRpcSuccess(msg.id, result.response));
417 > } catch (err) {
418 transport.send(jsonRpcErrorFrom(msg.id, err));
419 }
420 > return; protocolServerHandler.ts
421 > }
422 > if (!client && msg.method === 'reconnect') { protocolServerHandler.ts
423 let responsePromise: Promise<unknown>;
424 try {
436 return;
437 }
439 > // The VS Code upgrade request rides on the same transport but
440 > // is callable pre-`initialize`: by definition we get here when
441 > // the client's protocol version was rejected, so the client
442 > // never managed to complete the handshake.
443 > if ((msg.method as string) === VSCODE_UPGRADE_METHOD) {
444 this._handleVscodeUpgrade(msg.id, transport);
445 return;
446 }
448 > if (!client) {
449 transport.send(jsonRpcError(msg.id, JsonRpcErrorCodes.MethodNotFound, `Method not found: ${msg.method}`));
450 return;
451 }
452 > this._handleRequest(client, msg.method, msg.params, msg.id); protocolServerHandler.ts
453 > } else if (isJsonRpcNotification(msg)) { protocolServerHandler.ts
454 this._logService.trace(`[ProtocolServer] notification: method=${msg.method}`);
455 // Notification — fire-and-forget
501 }
502 }
504 >
505 > disposables.add(transport.onClose(() => {
506 const record = client ? this._clients.get(client.clientId) : undefined;
507 if (client && record?.state === 'active') {
521 }
522 disposables.dispose();
524 >
525 > disposables.add(transport);
526 > }
528 > // ---- Handshake handlers ----------------------------------------------------
529 >
530 > private _handleInitialize(
531 > params: InitializeParams, protocolServerHandler.ts
532 > transport: IProtocolTransport,
533 > disposables: DisposableStore,
534 > ): { client: IConnectedClient; response: unknown } {
535 > const offered = Array.isArray(params.protocolVersions) ? params.protocolVersions : [];
536 > this._logService.info(`[ProtocolServer] Initialize: clientId=${params.clientId}, protocolVersions=[${offered.join(', ')}]`);
537 >
538 > const negotiated = negotiateProtocolVersion(offered, PROTOCOL_VERSION);
539 > if (!negotiated) {
540 const data: UnsupportedProtocolVersionErrorDataEx = {
541 supportedVersions: [`^${PROTOCOL_VERSION}`],
555 );
556 }
558 > const client: IConnectedClient = {
559 > clientId: params.clientId,
560 > protocolVersion: negotiated,
561 > transport,
562 > subscriptions: new Map(),
563 > disposables,
564 > };
565 > this._attachConnection(params.clientId, client);
566 >
567 > this._registerClientFileSystemAuthority(params.clientId, disposables);
568 >
569 >
570 > const snapshots: IStateSnapshot[] = [];
571 > if (params.initialSubscriptions) {
572 for (const uri of params.initialSubscriptions) {
573 const snapshot = this._addInitialSubscription(client, uri.toString());
577 }
578 }
580 > return {
581 > client,
582 > response: {
583 > protocolVersion: negotiated,
584 > serverSeq: this._stateManager.serverSeq,
585 > snapshots,
586 > defaultDirectory: this._config.defaultDirectory,
587 > completionTriggerCharacters: this._config.completionTriggerCharacters,
588 > terminalCommandPrefix: this._config.terminalCommandPrefix,
589 > telemetry: this._config.otlpLogEmitter ? { logs: OTLP_LOGS_CHANNEL_TEMPLATE } : undefined, protocolServerHandler.ts
590 > },
591 > };
592 > }
594 > /**
595 > * Helper for `initialize` and `reconnect` initial-subscription
596 > * processing: classify `channel`, install the matching subscription
597 > * on the client, and return the snapshot to include in the handshake
598 > * response (or `undefined` for stateless channels and missing state).
599 > *
600 > * Side effects:
601 > * - State channels: register with the agent service and clear any
602 > * pending tool-call disconnect timeout.
603 > * - OTLP channels: install the canonical entry on the client's
604 > * {@link IConnectedClient.subscriptions} map.
605 > *
606 > * Channels with unsupported shapes (e.g. `ahp-otlp://logs/verbose`
607 > * with no recognised level, or a state channel the state manager
608 > * does not know about) are silently dropped.
609 > */
610 > private _addInitialSubscription(client: IConnectedClient, channel: string): IStateSnapshot | undefined {
611 const sub = classifyChannel(channel);
612 if (!sub) {
630 return snapshot;
631 }
633 > /**
634 > * Forwards a client's upgrade request to the hosting VS Code CLI's
635 > * HTTP management API (advertised via the {@link VSCODE_AGENT_HOST_MANAGEMENT_SOCKET_ENV}).
636 > * Returns the CLI's parsed response verbatim so the client can render
637 > * a meaningful status (already up-to-date, restart scheduled, etc.).
638 > *
639 > * When the server was not spawned by a managing CLI, responds with
640 > * `MethodNotFound` — the upgrade method is only meaningfully callable
641 > * on CLI-hosted servers.
642 > */
643 > private _handleVscodeUpgrade(id: number, transport: IProtocolTransport): void {
644 const socketPath = getAgentHostManagementSocketPath();
645 if (!socketPath) {
659 );
660 }
662 > private _handleReconnect(
663 params: ReconnectParams,
664 transport: IProtocolTransport,
692 return { client, responsePromise };
693 }
695 > /**
696 > * Wires the reverse-RPC filesystem callbacks for `clientId` and binds
697 > * the unregister to `disposables` (the transport's per-connection
698 > * store). The callbacks dispatch through {@link _sendReverseRequest},
699 > * which looks up the *current* connected client by id — so re-binding
700 > * after a reconnect picks up the new transport without rebuilding the
701 > * closures.
702 > */
703 > private _registerClientFileSystemAuthority(clientId: string, disposables: DisposableStore): void {
704 > disposables.add(this._clientFileSystemProvider.registerAuthority(clientId, { protocolServerHandler.ts
705 > resourceList: (uri) => this._sendReverseRequest(clientId, 'resourceList', { uri: uri.toString() }),
706 > resourceRead: (uri) => this._sendReverseRequest(clientId, 'resourceRead', { uri: uri.toString() }),
707 > resourceWrite: (params_) => this._sendReverseRequest(clientId, 'resourceWrite', params_),
708 > resourceCopy: (params_) => this._sendReverseRequest(clientId, 'resourceCopy', params_),
709 > resourceDelete: (params_) => this._sendReverseRequest(clientId, 'resourceDelete', params_),
710 > resourceMove: (params_) => this._sendReverseRequest(clientId, 'resourceMove', params_),
711 > resourceRequest: (params_) => this._sendReverseRequest(clientId, 'resourceRequest', params_),
712 > resourceResolve: (params_) => this._sendReverseRequest(clientId, 'resourceResolve', params_),
713 > resourceMkdir: (params_) => this._sendReverseRequest(clientId, 'resourceMkdir', params_),
714 > }));
715 > }
717 > /**
718 > * Re-establish each of the client's prior subscriptions on the server side.
719 > * Uses {@link IAgentService.subscribe} (rather than a bare `addSubscriber`
720 > * + `getSnapshot`) so any session state that was evicted while the client
721 > * was disconnected is restored. Returns the appropriate reconnect response
722 > * payload — `replay` actions when the client's last-seen seq is still in
723 > * the buffer, otherwise fresh `snapshot`s.
724 > */
725 > private async _restoreReconnectSubscriptions(
726 client: IConnectedClient,
727 params: ReconnectParams,
785 return { type: 'snapshot', snapshots: snapshots.filter((s): s is IStateSnapshot => s !== undefined) };
786 }
788 > /**
789 > * Release a client from every session where it is still an active client
790 > * but did not resubscribe during a reconnect. The set of resubscribed
791 > * sessions is gathered from every live connection the client currently
792 > * holds (not just the reconnecting one) so an overlapping connection that
793 > * still subscribes to a session keeps the client active there.
794 > */
795 > private _reconcileActiveClientsAfterReconnect(client: IConnectedClient): void {
796 const record = this._clients.get(client.clientId);
797 const resubscribed = new Set<string>();
814 }
815 }
817 > private _handleClientDisconnected(clientId: string): void {
818 for (const session of this._stateManager.getSessionUris()) {
819 const state = this._stateManager.getSessionState(session);
832 }
833 }
835 > /** Whether `clientId` is one of the session's active clients. */
836 > private _isActiveClient(state: SessionState, clientId: string): boolean {
837 return state.activeClients.some(c => c.clientId === clientId);
838 }
840 > /**
841 > * Remove `clientId` from a session's active clients, if present. Dispatched
842 > * as a server action so the removal is reflected in state and broadcast to
843 > * the remaining subscribers.
844 > */
845 > private _removeActiveClient(session: string, clientId: string): void {
846 const state = this._stateManager.getSessionState(session);
847 if (state && this._isActiveClient(state, clientId)) {
852 }
853 }
855 > /**
856 > * Release a client from a session: clear its pending disconnect timeout,
857 > * fail any client tool calls it still owns, and remove it from the active
858 > * clients. Used by the explicit-unsubscribe and reconnect-reconciliation
859 > * paths to drop a client that has left a session.
860 > */
861 > private _releaseActiveClientForSession(session: string, clientId: string, chatChannel: string): void {
862 this._clearClientToolCallDisconnectTimeout(clientId, chatChannel);
863 this._completeDisconnectedClientToolCalls(clientId, session, chatChannel);
864 this._removeActiveClient(session, clientId);
865 }
867 > /**
868 > * Yields every still-pending client-contributed tool call in `state`'s
869 > * active turn, paired with its owning `clientId`. Single source of truth
870 > * for the disconnect-grace machinery: detect ownership
871 > * ({@link _hasPendingClientToolCall}), arm timeouts
872 > * ({@link _checkOrphanedClientToolCalls}), and fail orphaned calls
873 > * ({@link _completeDisconnectedClientToolCalls}).
874 > */
875 > private *_pendingClientToolCalls(state: ISessionWithDefaultChat | undefined) {
876 const activeTurn = state?.activeTurn;
877 if (!activeTurn) {
889 }
890 }
892 > private _hasPendingClientToolCall(state: ISessionWithDefaultChat | undefined, clientId: string): boolean {
893 for (const pending of this._pendingClientToolCalls(state)) {
894 if (pending.clientId === clientId) {
898 return false;
899 }
901 > private _hasReplacementActiveClientTool(state: SessionState, clientId: string, toolName: string): boolean {
902 return state.activeClients.some(client =>
903 client.clientId !== clientId
904 && client.tools.some(tool => tool.name === toolName));
905 }
907 > /**
908 > * Arm (or re-arm) the per-(clientId, session) timeout that fails pending
909 > * client tool calls owned by `clientId` if it does not reconnect before the
910 > * grace window elapses. Only meaningful for a client with no live transport:
911 > * a connected client is handled by {@link _attachConnection}, which disposes
912 > * any armed timers, so this is a no-op when the client is active. The delay
913 > * is the remaining grace measured from when the client disconnected — so a
914 > * client that disconnected a while before the call was issued gets the
915 > * residual window rather than a fresh one, and a stamp from a long-disconnected
916 > * client fails promptly. Re-arms triggered by later orphaned tool calls in the
917 > * same session shrink the remaining window instead of resetting it.
918 > */
919 > private _startClientToolCallDisconnectTimeout(clientId: string, session: string, chatChannel: string): void {
920 const record = this._ensureGraceRecord(clientId);
921 if (!record) {
930 }, delay));
931 }
933 > /**
934 > * Scan a chat for pending client tool calls owned by a disconnected client
935 > * of this protocol server, and arm the disconnect timeout for each owner.
936 > * Called when a `ChatToolCallStart` / `ChatToolCallReady` envelope is
937 > * observed — covering calls issued for an already-gone client, which the
938 > * live disconnect path never sees. Ownerless client tool calls (no client
939 > * connected at stamp time) are failed immediately by the provider, so they
940 > * never reach a pending state here. Unknown client ids are ignored because
941 > * they may belong to another transport such as local IPC.
942 > */
943 > private _checkOrphanedClientToolCalls(session: string, chatChannel: string): void {
944 const state = this._stateManager.getSessionState(chatChannel);
945 const orphanOwners = new Set<string>();
954 }
955 }
957 > /**
958 > * Register a freshly connected (or reconnected) transport for `clientId`,
959 > * promoting the record to {@link IActiveClientRecord}. Promoting a grace
960 > * record back to active disposes its pending disconnect timers: the
961 > * disconnect-grace window only applies while the client has no live
962 > * transport. This is the single place that maintains the "active records
963 > * hold no grace timers" invariant.
964 > */
965 > private _attachConnection(clientId: string, client: IConnectedClient): void {
966 > const existing = this._clients.get(clientId); protocolServerHandler.ts
967 > if (existing?.state === 'active') {
968 existing.connections.push(client);
969 > } else { protocolServerHandler.ts
970 > existing?.disconnectTimeouts.dispose();
971 > this._clients.set(clientId, { state: 'active', connections: [client] });
972 > }
973 > this._pruneClientRecords();
974 > this._onDidChangeConnectionCount.fire(this._connectedClientCount);
975 > }
977 > /**
978 > * Return the existing grace record for `clientId`, creating one for a
979 > * never-connected client (an orphan tool-call stamp). Returns `undefined`
980 > * when the client is currently active — the grace machinery does not apply
981 > * to a connected client. A newly created record pins its grace clock to now.
982 > */
983 > private _ensureGraceRecord(clientId: string): IGraceClientRecord | undefined {
984 const record = this._clients.get(clientId);
985 if (record?.state === 'active') {
993 return created;
994 }
996 > private _getActiveClient(clientId: string): IConnectedClient | undefined {
997 return this._getActiveClientFromRecord(this._clients.get(clientId));
998 }
1000 > private _getActiveClientFromRecord(record: IClientRecord | undefined): IConnectedClient | undefined {
1001 > if (record?.state !== 'active') { protocolServerHandler.ts
1002 return undefined;
1003 }
1004 > return record.connections[record.connections.length - 1]; protocolServerHandler.ts
1007 > private _releaseClientSubscriptions(client: IConnectedClient, record: IActiveClientRecord): void {
1008 for (const sub of client.subscriptions.values()) {
1009 if (sub.kind === ChannelKind.State) {
1018 client.subscriptions.clear();
1019 }
1021 > private _hasSubscriptionInOtherConnection(record: IClientRecord, client: IConnectedClient, uri: string): boolean {
1022 if (record.state !== 'active') {
1023 return false;
1030 return false;
1031 }
1033 > /** Number of clients that currently have a live connection. */
1034 > private get _connectedClientCount(): number {
1035 > let count = 0; protocolServerHandler.ts
1036 > for (const record of this._clients.values()) {
1037 > if (record.state === 'active') {
1038 > count++;
1039 > }
1040 > }
1041 > return count;
1042 > }
1044 > /**
1045 > * Drop grace records whose timers have all fired and whose last-seen time is
1046 > * stale beyond the retention window (10× the disconnect timeout). This
1047 > * covers both genuinely-disconnected clients and never-connected orphan
1048 > * stamps. Bounds {@link _clients} without tracking liveness precisely — a
1049 > * pruned-then-resurfacing stamp simply falls back to the full grace window.
1050 > * Active records are never pruned; they persist until their last transport
1051 > * closes.
1052 > */
1053 > private _pruneClientRecords(): void {
1054 > const cutoff = Date.now() - CLIENT_TOOL_CALL_DISCONNECT_TIMEOUT * 10; protocolServerHandler.ts
1055 > for (const [clientId, record] of this._clients) {
1056 > if (record.state === 'grace'
1057 && record.disconnectTimeouts.size === 0
1058 > && record.lastSeenAt < cutoff) { protocolServerHandler.ts
1059 this._clients.delete(clientId);
1060 }
1062 > }
1064 > private _clearClientToolCallDisconnectTimeout(clientId: string, channel: string): void {
1065 const record = this._clients.get(clientId);
1066 if (record?.state === 'grace') {
1068 }
1069 }
1071 > private _completeDisconnectedClientToolCalls(clientId: string, session: string, chatChannel: string): void {
1072 const state = this._stateManager.getSessionState(chatChannel);
1073 const activeTurn = state?.activeTurn;
1102 }
1103 }
1105 > // ---- Requests (expect a response) ---------------------------------------
1106 >
1107 > /**
1108 > * Methods handled by the request dispatcher (excludes initialize/reconnect
1109 > * which are handled during the handshake phase).
1110 > */
1111 > private readonly _requestHandlers: RequestHandlerMap = {
1112 > subscribe: async (client, params) => {
1113 > const classified = classifyChannel(params.channel); protocolServerHandler.ts
1114 > if (!classified) {
1115 > // OTLP-flavoured URI we don't understand (e.g. unknown protocolServerHandler.ts
1116 > // level). Acknowledge as stateless so the client doesn't
1117 > // hang, but install nothing.
1118 > return {};
1119 > }
1120 if (classified.kind === ChannelKind.OtlpLogs) {
1121 if (!this._config.otlpLogEmitter) {
1154 throw new ProtocolError(AHP_SESSION_NOT_FOUND, `Resource not found: ${params.channel}`);
1155 }
1157 > createSession: async (_client, params) => { protocolServerHandler.ts
1158 let createdSession: URI;
1159 // Resolve fork turnId to a 0-based index using the source session's
1198 return null;
1199 },
1200 > disposeSession: async (_client, params) => { protocolServerHandler.ts
1201 await this._agentService.disposeSession(URI.parse(params.channel));
1202 return null;
1203 },
1204 > createChat: async (_client, params) => { protocolServerHandler.ts
1205 const state = this._stateManager.getSessionState(params.channel);
1206 if (!state) {
1240 return null;
1241 },
1242 > disposeChat: async (_client, params) => { protocolServerHandler.ts
1243 const chat = URI.parse(params.channel);
1244 const parsed = parseChatUri(chat);
1249 return null;
1250 },
1251 > resourceWrite: async (_client, params) => { protocolServerHandler.ts
1252 return this._agentService.resourceWrite(params);
1253 },
1254 > listSessions: async () => { protocolServerHandler.ts
1255 const sessions = await this._agentService.listSessions();
1256 const items = sessions.map(s => {
1282 return { items };
1283 },
1284 > resolveSessionConfig: async (_client, params) => { protocolServerHandler.ts
1285 return this._agentService.resolveSessionConfig({
1286 provider: params.provider,
1289 });
1290 },
1291 > sessionConfigCompletions: async (_client, params) => { protocolServerHandler.ts
1292 return this._agentService.sessionConfigCompletions({
1293 provider: params.provider,
1298 });
1299 },
1300 > completions: async (_client, params) => { protocolServerHandler.ts
1301 return this._agentService.completions(params);
1302 },
1303 > fetchTurns: async (_client, params) => { protocolServerHandler.ts
1304 const state = this._stateManager.getChatState(params.channel);
1305 if (!state) {
1315 return {};
1316 },
1317 > resourceList: async (_client, params) => { protocolServerHandler.ts
1318 return this._agentService.resourceList(URI.parse(params.uri));
1319 },
1320 > resourceRead: async (_client, params) => { protocolServerHandler.ts
1321 return this._agentService.resourceRead(URI.parse(params.uri));
1322 },
1323 > resourceCopy: async (_client, params) => { protocolServerHandler.ts
1324 return this._agentService.resourceCopy(params);
1325 },
1326 > resourceDelete: async (_client, params) => { protocolServerHandler.ts
1327 return this._agentService.resourceDelete(params);
1328 },
1329 > resourceMove: async (_client, params) => { protocolServerHandler.ts
1330 return this._agentService.resourceMove(params);
1331 },
1332 > resourceResolve: async (_client, params) => { protocolServerHandler.ts
1333 return this._agentService.resourceResolve(params);
1334 },
1335 > resourceMkdir: async (_client, params) => { protocolServerHandler.ts
1336 return this._agentService.resourceMkdir(params);
1337 },
1338 > createResourceWatch: async (_client, params) => { protocolServerHandler.ts
1339 return this._agentService.createResourceWatch(params);
1340 },
1341 > resourceRequest: async (_client, _params) => { protocolServerHandler.ts
1342 // The local agent host does not yet enforce per-resource grants
1343 // for client → server access. Always grant; receivers MAY rescind
1345 return {};
1346 },
1347 > authenticate: async (_client, params) => { protocolServerHandler.ts
1348 const result = await this._agentService.authenticate(params);
1349 if (!result.authenticated) {
1352 return {};
1353 },
1354 > createTerminal: async (_client, params) => { protocolServerHandler.ts
1355 await this._agentService.createTerminal(params);
1356 return null;
1357 },
1358 > disposeTerminal: async (_client, params) => { protocolServerHandler.ts
1359 await this._agentService.disposeTerminal(URI.parse(params.channel));
1360 return null;
1361 },
1362 > invokeChangesetOperation: async (_client, params) => { protocolServerHandler.ts
1363 return this._agentService.invokeChangesetOperation(params);
1364 },
1366 >
1367 >
1368 > // ---- Reverse RPC (server → client requests) ----------------------------
1369 >
1370 > private _reverseRequestId = 0;
1371 > private readonly _pendingReverseRequests = new Map<number, { client: IConnectedClient; resolve: (value: unknown) => void; reject: (reason: unknown) => void }>();
1372 >
1373 > /**
1374 > * Sends a JSON-RPC request to a connected client and waits for the response.
1375 > * Used for reverse-RPC operations like reading client-side files.
1376 > * Rejects if the client disconnects or the server is disposed.
1377 > */
1378 > private _sendReverseRequest<T>(clientId: string, method: string, params: unknown): Promise<T> {
1379 const client = this._getActiveClient(clientId);
1380 if (!client) {
1388 });
1389 }
1391 > /**
1392 > * Rejects and clears all pending reverse-RPC requests sent over a given
1393 > * connection.
1394 > */
1395 > private _rejectPendingReverseRequestsForConnection(client: IConnectedClient): void {
1396 for (const [id, pending] of this._pendingReverseRequests) {
1397 if (pending.client === client) {
1401 }
1402 }
1404 > private _handleRequest(client: IConnectedClient, method: string, params: unknown, id: number): void {
1405 > const handler = this._requestHandlers.hasOwnProperty(method) ? this._requestHandlers[method as RequestMethod] : undefined; protocolServerHandler.ts
1406 > if (handler) {
1407 > (handler as (client: IConnectedClient, params: unknown) => Promise<unknown>)(client, params).then(result => { protocolServerHandler.ts
1408 > this._logService.trace(`[ProtocolServer] Request '${method}' id=${id} succeeded`); protocolServerHandler.ts
1409 > client.transport.send(jsonRpcSuccess(id, result ?? null));
1410 > }).catch(err => { protocolServerHandler.ts
1411 if (shouldLogFailedRequest(method, params, err)) {
1412 this._logService.error(`[ProtocolServer] Request '${method}' failed`, err);
1413 }
1414 client.transport.send(jsonRpcErrorFrom(id, err));
1416 > return;
1417 > }
1418
1419 // VS Code extension methods (not in the typed protocol maps yet)
1451
1452 client.transport.send(jsonRpcError(id, JsonRpcErrorCodes.MethodNotFound, `Method not found: ${method}`));
1455 > /**
1456 > * Handle VS Code extension methods that are not yet part of the typed
1457 > * protocol. Returns a Promise if the method was recognized, undefined
1458 > * otherwise.
1459 > */
1460 > private _handleExtensionRequest(method: string, params: unknown): Promise<unknown> | undefined {
1461 if (this._config.allowExtensionMethods === false) {
1462 return undefined;
1476 }
1477 }
1479 > // ---- Broadcasting -------------------------------------------------------
1480 >
1481 > private _broadcastAction(envelope: ActionEnvelope): void {
1482 this._logService.trace(`[ProtocolServer] Broadcasting action: ${envelope.action.type}`);
1483 const msg: AhpServerNotification<'action'> = { jsonrpc: '2.0', method: 'action', params: envelope };
1489 }
1490 }
1492 > private _broadcastNotification(notification: INotification): void {
1493 // Each protocol notification now ships as its own top-level method. The
1494 // `type` discriminant on our local {@link ProtocolNotification} union is
1501 }
1502 }
1504 > /**
1505 > * Forward an MCP server-originated notification (e.g.
1506 > * `notifications/tools/list_changed`) over the AHP transport. The
1507 > * `channel` field on `params` is the AHP routing envelope; the
1508 > * receiving client demultiplexes by it. Notifications are broadcast
1509 > * to every connected client — per-channel subscription filtering is
1510 > * left to the client, since MCP notifications are cheap and the
1511 > * client already knows which channels it cares about.
1512 > */
1513 > private _broadcastMcpNotification(notification: IMcpNotification): void {
1514 const params: Record<string, unknown> = { ...(notification.params ?? {}), channel: notification.channel };
1515 // MCP notifications don't share a discriminated `method` literal
1522 }
1523 }
1525 > /**
1526 > * Drop a subscription identified by `channel` from `client`. Handles
1527 > * canonicalisation for OTLP URIs (so an `unsubscribe` with a URI
1528 > * variant collapses to the same entry as the original `subscribe`)
1529 > * and tears down the agent-service refcount for state channels.
1530 > */
1531 > private _removeSubscription(client: IConnectedClient, channel: string): void {
1532 const classified = classifyChannel(channel);
1533 if (!classified) {
1559 }
1560 }
1562 > /**
1563 > * Fan out an OTLP log record to every connected client that has
1564 > * subscribed to a logs channel whose `{level}` band includes the
1565 > * record's `severityNumber`. The notification's `channel` field is
1566 > * the canonical URI the client subscribed against — clients can
1567 > * route by URI without re-deriving the level.
1568 > */
1569 > private _broadcastOtlpLog(record: IOtlpLogRecord): void {
1570 > const payload = toResourceLogsPayload(record); protocolServerHandler.ts
1571 > for (const clientRecord of this._clients.values()) {
1572 > const client = this._getActiveClientFromRecord(clientRecord);
1573 > if (!client) {
1574 continue;
1575 }
1576 > for (const sub of client.subscriptions.values()) { protocolServerHandler.ts
1577 if (sub.kind !== ChannelKind.OtlpLogs) {
1578 continue;
1588 client.transport.send(msg);
1589 }
1593 > private _isRelevantToClient(client: IConnectedClient, envelope: ActionEnvelope): boolean {
1594 const sub = client.subscriptions.get(envelope.channel);
1595 if (sub?.kind === ChannelKind.State || sub?.kind === ChannelKind.ResourceWatch) {
1601 return isActionEnvelopeRelevantToSubscriptionUris(envelope, this._stateAndResourceWatchUris(client));
1602 }
1604 > private *_stateAndResourceWatchUris(client: IConnectedClient): Iterable<string> {
1605 for (const sub of client.subscriptions.values()) {
1606 if (sub.kind === ChannelKind.State || sub.kind === ChannelKind.ResourceWatch) {
1609 }
1610 }
1612 > override dispose(): void {
1613 > for (const record of this._clients.values()) {
1614 > if (record.state === 'active') { protocolServerHandler.ts
1615 > for (const connection of [...record.connections]) { protocolServerHandler.ts
1616 > connection.disposables.dispose();
1617 > }
1618 > } else { protocolServerHandler.ts
1619 record.disconnectTimeouts.dispose();
1620 }
1622 > this._clients.clear(); protocolServerHandler.ts
1623 > for (const [, pending] of this._pendingReverseRequests) {
1624 pending.reject(new Error('ProtocolServerHandler disposed'));
1625 }
1626 > this._pendingReverseRequests.clear(); protocolServerHandler.ts
1627 > this._replayBuffer.length = 0;
1628 > super.dispose();
1629 > }
1630 > }
src/vs/platform/agentHost/node/agentHostStateManager.ts 711 covered LOC · 65 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentHostStateManager.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { RunOnceScheduler } from '../../../base/common/async.js';
7 > import { Emitter, Event } from '../../../base/common/event.js';
8 > import { Disposable } from '../../../base/common/lifecycle.js';
9 > import { equals } from '../../../base/common/objects.js';
10 > import { ILogService } from '../../log/common/log.js';
11 > import { createDecorator } from '../../instantiation/common/instantiation.js';
12 > import { TelemetryLevel } from '../../telemetry/common/telemetry.js';
13 > import { ActionType, ActionEnvelope, ActionOrigin, INotification, IRootConfigChangedAction, SessionAction, ChatAction, RootAction, StateAction, TerminalAction, ChangesetAction, ClientChangesetAction, AnnotationsAction, ClientAnnotationsAction, isRootAction, isSessionAction, isChatAction, isChangesetAction, isAnnotationsAction, type AuthRequiredParams, type ProgressParams } from '../common/state/sessionActions.js';
14 > import type { IStateSnapshot } from '../common/state/sessionProtocol.js';
15 > import { rootReducer, sessionReducer, chatReducer, changesetReducer, annotationsReducer } from '../common/state/sessionReducers.js';
16 > import { createRootState, createSessionState, createChatState, createDefaultChatSummary, chatSummaryFromState, buildDefaultChatUri, parseDefaultChatUri, parseRequiredSessionUriFromChatUri, isAhpChatChannel, isDefaultChatUri, mergeSessionWithDefaultChat, isAhpRootChannel, SessionLifecycle, withHostBuildInfo, type Changeset, type ChangesetState, type AnnotationsState, type ChatState, type ChatSummary, type Customization, type ISessionWithDefaultChat, type Message, type RootState, type SessionConfigState, type SessionMeta, type SessionState, type SessionSummary, type Turn, type URI, ROOT_STATE_URI, ChangesetStatus, IHostBuildInfo, SessionStatus } from '../common/state/sessionState.js';
17 > import { AgentHostTelemetryLevelConfigKey, IPermissionsValue, platformRootSchema, telemetryLevelToAgentHostConfigValue } from '../common/agentHostSchema.js';
18 > import { SessionConfigKey } from '../common/sessionConfigKeys.js';
19 > import { parseChangesetUri } from '../common/changesetUri.js';
20 > import { buildAnnotationsUri, isAnnotationsUri } from '../common/annotationsUri.js';
21 > import { AgentHostChangesetStateCache, type IAgentHostChangesetStateRetentionOptions } from './agentHostChangesetStateCache.js';
22 > import { ChangesSummary, ChatInteractivity, type ChatOrigin } from '../common/state/protocol/state.js';
23 > import { arrayEquals, structuralEquals } from '../../../base/common/equals.js';
24 > import { preserveProviderBackedRootConfigValues } from '../common/agentCustomizationSettings.js';
25 >
26 > export interface IAgentHostStateManagerOptions {
27 > readonly changesetStateRetention?: IAgentHostChangesetStateRetentionOptions;
28 > /**
29 > * Build information about the program hosting the agent host. When
30 > * provided, it is published on {@link RootState._meta} so clients can see
31 > * which build is hosting them.
32 > */
33 > readonly hostBuildInfo?: IHostBuildInfo;
34 > }
35 >
36 > /**
37 > * Authoritative per-session record held by the state manager. Bundles the flat
38 > * {@link SessionState} with the {@link SessionSummary} catalog-only fields that
39 > * do not live on the state. The session URI (catalog `resource`) is the map
40 > * key, and the catalog `_meta` is the same object as {@link SessionState._meta},
41 > * so the only extra fields the record carries are the timestamps and the
42 > * aggregate change counts.
43 > */
44 > interface ISessionEntry {
45 > state: SessionState;
46 > /** Creation timestamp (ISO 8601). Catalog-only; immutable after creation. */
47 > readonly createdAt: string;
48 > /** Last modification timestamp (ISO 8601). Catalog-only; derived from chat aggregation. */
49 > modifiedAt: string;
50 > /** Aggregate file-change counts for the session-wide changeset. Catalog-only. */
51 > changes?: ChangesSummary;
52 > }
53 >
54 > /**
55 > * Encapsulates the root-channel summary-notification bookkeeping for the
56 > * {@link AgentHostStateManager}: the last {@link SessionSummary} announced to
57 > * clients per session (the diff baseline) and the set of sessions whose summary
58 > * changed since the last debounced flush. The snapshot map and the dirty set
59 > * are always mutated in lockstep, so keeping them together — rather than as two
60 > * loose fields on the manager — keeps the diffing state cohesive.
61 > *
62 > * The current summary for a session is sourced via the injected `getSummary`
63 > * callback; diff-based `root/sessionSummaryChanged` notifications are emitted
64 > * through `emit`.
65 > */
66 > class SessionSummaryNotifier extends Disposable {
67 >
68 > /** Last summary announced to clients (via sessionAdded or sessionSummaryChanged). */
69 > private readonly _lastNotified = new Map<string, SessionSummary>();
70 >
71 > /** Sessions whose summary changed since the last flush. */
72 > private readonly _dirty = new Set<string>();
73 >
74 > private readonly _scheduler = this._register(new RunOnceScheduler(() => this._flushAll(), 100));
75 >
76 > constructor(
77 > private readonly _getSummary: (session: string) => SessionSummary | undefined, agentHostStateManager.ts
78 > private readonly _emit: (session: string, changes: Partial<SessionSummary>) => void,
79 > ) {
80 > super();
81 > }
83 > /** Records `summary` as the last value announced to clients for `session`. */
84 > announce(session: string, summary: SessionSummary): void {
85 this._lastNotified.set(session, summary);
86 }
88 > /** Whether `session` has already been announced to clients. */
89 > isAnnounced(session: string): boolean {
90 return this._lastNotified.has(session);
91 }
93 > /** Marks `session` dirty and schedules a debounced flush. */
94 > markDirty(session: string): void {
95 this._dirty.add(session);
96 this._scheduler.schedule();
97 }
99 > /** Whether `session` has a pending (unflushed) summary change. */
100 > isDirty(session: string): boolean {
101 return this._dirty.has(session);
102 }
104 > /** Drops the pending dirty flag for `session` without flushing it. */
105 > clearDirty(session: string): void {
106 this._dirty.delete(session);
107 }
109 > /** Drops all notification bookkeeping for `session`. */
110 > remove(session: string): void {
111 this._lastNotified.delete(session);
112 this._dirty.delete(session);
113 }
115 > private _flushAll(): void {
116 for (const session of this._dirty) {
117 this.flush(session);
119 this._dirty.clear();
120 }
122 > /**
123 > * Emits a `root/sessionSummaryChanged` notification for `session` if its
124 > * current summary differs from the last announced one, then advances the
125 > * snapshot. Does NOT clear the dirty flag — callers own that bookkeeping.
126 > */
127 > flush(session: string): void {
128 const current = this._getSummary(session);
129 const lastNotified = this._lastNotified.get(session);
148 }
149 }
151 >
152 > /**
153 > * Server-side state manager for the sessions process protocol.
154 > *
155 > * Maintains the authoritative state tree (root + per-session), applies actions
156 > * through pure reducers, assigns monotonic sequence numbers, and emits
157 > * {@link ActionEnvelope}s for subscribed clients.
158 > */
159 > export const IAgentHostStateManager = createDecorator<AgentHostStateManager>('agentHostStateManager');
160 >
161 > export class AgentHostStateManager extends Disposable {
162 > declare readonly _serviceBrand: undefined;
163 >
164 > private _serverSeq = 0;
165 >
166 > private _rootState: RootState;
167 >
168 > /**
169 > * Authoritative per-session state, keyed by session URI string. Each entry
170 > * bundles the flat {@link SessionState} with the catalog-only fields that
171 > * are not part of the state (`createdAt`, `modifiedAt`, `changes`). The
172 > * root-channel {@link SessionSummary} catalog view is derived on demand from
173 > * an entry via {@link getSessionSummary} (its `_meta` is the same object as
174 > * {@link SessionState._meta}); the host streams catalog deltas via
175 > * `root/sessionSummaryChanged`.
176 > */
177 > private readonly _sessionStates = new Map<string, ISessionEntry>();
178 >
179 > /**
180 > * Authoritative per-chat conversation state, keyed by chat channel URI.
181 > * The protocol moved turns/activeTurn/pending state off the session and
182 > * onto a per-chat channel. VS Code currently models every session as
183 > * having exactly one chat — its default chat — whose URI is derived
184 > * deterministically from the session URI via {@link buildDefaultChatUri}.
185 > */
186 > private readonly _chatStates = new Map<string, ChatState>();
187 >
188 > /**
189 > * Opaque, agent-owned `providerData` blobs keyed by peer-chat channel URI.
190 > *
191 > * Each entry is the verbatim token the owning agent produced for a peer
192 > * chat (see {@link IAgentCreateChatResult.providerData}). The orchestrator
193 > * persists it with the session and hands it back to the agent on restore so
194 > * the agent can re-materialize its SDK conversation; the StateManager itself
195 > * **never parses, validates, or mutates it** — it stores and returns the
196 > * string as-is. The map is kept separate from the protocol-visible
197 > * {@link ChatState}/{@link ChatSummary} catalog so the private blob is not
198 > * streamed to clients. The default chat carries no `providerData`, so it
199 > * never appears here.
200 > */
201 > private readonly _chatProviderData = new Map<string, string>();
202 >
203 > /** Expanded changeset states, separated from protocol sequencing so cache policy stays local. */
204 > private readonly _changesets: AgentHostChangesetStateCache;
205 >
206 > /**
207 > * Per-channel annotation states for the `<session>/annotations` channel.
208 > * Unlike changesets (server-owned), annotation actions are
209 > * client-dispatchable and lazily create their state on first write.
210 > */
211 > private readonly _annotations = new Map<string, AnnotationsState>();
212 >
213 > /**
214 > * Active turns per session, keyed by session URI string with the value
215 > * being the set of that session's chat channel URIs that currently have an
216 > * active turn. A session is "active" while at least one of its chats is
217 > * streaming — this stays correct for multi-chat sessions whose chats can run
218 > * concurrent turns (e.g. agent-team / sub-agent workers), where the previous
219 > * single-flag-per-session model would clear too early. Active state is
220 > * derived from `state.activeTurn` (the source of truth maintained by the
221 > * session reducer) — never from raw action turn-ids — so that mismatched or
222 > * out-of-order turn lifecycle actions can't desync it from reality. The
223 > * session count (`size`) drives `RootActiveSessionsChanged` and
224 > * `hasActiveSessions`, which together gate `--enable-remote-auto-shutdown`.
225 > */
226 > private readonly _sessionsWithActiveTurn = new Map<string, Set<string>>();
227 >
228 > /**
229 > * Root-channel summary notification bookkeeping: the diff baseline (last
230 > * announced summary per session) and the dirty set, debounced into
231 > * `root/sessionSummaryChanged` notifications. Assigned in the constructor
232 > * since it closes over {@link _toSummary} and {@link _onDidEmitNotification}.
233 > */
234 > private readonly _summaryNotifier: SessionSummaryNotifier;
235 >
236 > private readonly _onDidEmitEnvelope = this._register(new Emitter<ActionEnvelope>());
237 > readonly onDidEmitEnvelope: Event<ActionEnvelope> = this._onDidEmitEnvelope.event;
238 >
239 > private readonly _onDidEmitNotification = this._register(new Emitter<INotification>());
240 > readonly onDidEmitNotification: Event<INotification> = this._onDidEmitNotification.event;
241 > private readonly _onDidChangeSessionActiveTurn = this._register(new Emitter<{ session: string; active: boolean }>());
242 > readonly onDidChangeSessionActiveTurn: Event<{ session: string; active: boolean }> = this._onDidChangeSessionActiveTurn.event;
243 >
244 > constructor(
245 > @ILogService private readonly _logService: ILogService, agentHostStateManager.ts
246 > options: IAgentHostStateManagerOptions = {},
247 > ) {
248 > super();
249 > this._changesets = new AgentHostChangesetStateCache(options.changesetStateRetention);
250 > this._rootState = createRootState();
251 > // Seed the host-level configuration schema + default values so that
252 > // RootConfigChanged actions can merge into it, and clients see the
253 > // schema immediately upon subscribing to `agenthost:/root`. See
254 > // `platformRootSchema` for the set of platform-owned properties.
255 > this._rootState = {
256 > ...this._rootState,
257 > config: {
258 > schema: platformRootSchema.toProtocol(),
259 > values: platformRootSchema.validateOrDefault({}, {
260 > [SessionConfigKey.Permissions]: { allow: [], deny: [] } satisfies IPermissionsValue,
261 > [AgentHostTelemetryLevelConfigKey]: telemetryLevelToAgentHostConfigValue(TelemetryLevel.USAGE),
262 > }),
263 > },
264 > _meta: withHostBuildInfo(this._rootState._meta, options.hostBuildInfo),
265 > };
266 > this._summaryNotifier = this._register(new SessionSummaryNotifier(
267 > session => {
268 const entry = this._sessionStates.get(session);
269 return entry ? this._toSummary(session, entry) : undefined;
270 },
271 > (session, changes) => this._onDidEmitNotification.fire({ agentHostStateManager.ts
272 type: 'root/sessionSummaryChanged',
273 channel: ROOT_STATE_URI,
275 changes,
276 }),
278 > }
279 > private readonly _log = (msg: string) => this._logService.warn(`[AgentHostStateManager] ${msg}`); agentHostStateManager.ts
280 >
281 > get hasActiveSessions(): boolean {
282 return this._sessionsWithActiveTurn.size > 0;
283 }
285 > /**
286 > * Whether the given session currently has an active turn — i.e. a request is
287 > * in progress on any of its chats. Stays `true` while at least one chat is
288 > * streaming, so it remains correct for multi-chat sessions running
289 > * concurrent turns.
290 > */
291 > hasActiveTurn(sessionKey: string): boolean {
292 return this._sessionsWithActiveTurn.has(sessionKey);
293 }
295 > // ---- State accessors ----------------------------------------------------
296 >
297 > get rootState(): RootState {
298 return this._rootState;
299 }
301 > getSessionState(sessionOrChat: URI): ISessionWithDefaultChat | undefined {
302 // Accept either a session URI or one of its chat channel URIs. When a
303 // chat URI is given the conversation contents are taken from that chat,
315 return mergeSessionWithDefaultChat(entry.state, this._chatStates.get(chatUri));
316 }
318 > /**
319 > * Returns the root-channel {@link SessionSummary} catalog entry for a
320 > * session, or `undefined` when the session is unknown. The summary is
321 > * derived on demand from the session's {@link ISessionEntry}: its metadata
322 > * fields and `_meta` come straight off the live {@link SessionState}, while
323 > * the catalog-only `resource` / `createdAt` / `modifiedAt` / `changes` come
324 > * from the entry.
325 > */
326 > getSessionSummary(session: URI): SessionSummary | undefined {
327 const entry = this._sessionStates.get(session);
328 return entry ? this._toSummary(session, entry) : undefined;
329 }
331 > /**
332 > * Projects an {@link ISessionEntry} into its root-channel
333 > * {@link SessionSummary}. The summary's `_meta` is the same object as
334 > * {@link SessionState._meta} — the host treats the two as identical.
335 > */
336 > private _toSummary(session: string, entry: ISessionEntry): SessionSummary {
337 const { state } = entry;
338 const summary: SessionSummary = {
352 return summary;
353 }
355 > /**
356 > * Whether the {@link SessionSummary}-relevant fields of two session states
357 > * are field-equal. Used to decide whether a session action mutated anything
358 > * the root-channel catalog cares about.
359 > */
360 > private _summaryFieldsEqual(a: SessionState, b: SessionState): boolean {
361 return a.title === b.title
362 && a.status === b.status
367 && a._meta === b._meta;
368 }
370 > /**
371 > * Returns the authoritative {@link ChatState} for a session's default
372 > * chat, or `undefined` when the session is unknown. Use this when the
373 > * caller specifically needs conversation contents (turns, activeTurn,
374 > * pending/input state) rather than the session summary.
375 > */
376 > getDefaultChatState(session: URI): ChatState | undefined {
377 return this._chatStates.get(buildDefaultChatUri(session));
378 }
380 > /** Returns the authoritative {@link ChatState} for a chat channel URI. */
381 > getChatState(chat: URI): ChatState | undefined {
382 return this._chatStates.get(chat);
383 }
385 > /**
386 > * Returns the opaque, agent-owned `providerData` blob previously recorded
387 > * for a peer chat via {@link addChat} or {@link restoreChat}, or `undefined`
388 > * when none was stored (e.g. the default chat, or a peer chat the agent had
389 > * nothing resumable to persist for). The value is returned verbatim — the
390 > * StateManager never interprets it; callers persist it with the session and
391 > * hand it back to the owning agent on restore.
392 > */
393 > getChatProviderData(chat: URI): string | undefined {
394 return this._chatProviderData.get(chat);
395 }
397 > /**
398 > * Seeds the conversation contents (turns) of a session's default chat.
399 > * Used by the fork flow, which materializes a new session pre-populated
400 > * with a slice of the source session's turns.
401 > */
402 > seedDefaultChatTurns(session: URI, turns: Turn[]): void {
403 const chatState = this._chatStates.get(buildDefaultChatUri(session));
404 if (chatState) {
406 }
407 }
409 > get serverSeq(): number {
410 > return this._serverSeq; agentHostStateManager.ts
411 > }
413 > getSessionUris(): string[] {
414 return [...this._sessionStates.keys()];
415 }
417 > /**
418 > * Summaries eligible to be overlaid onto a provider's `listSessions`
419 > * snapshot when that snapshot is missing them. A session qualifies if it
420 > * has materialized (lifecycle !== {@link SessionLifecycle.Creating}) — this
421 > * covers the transient-drop case where a provider briefly omits a
422 > * just-materialized session — or if it is still provisional but has had any
423 > * turn activity (an in-flight turn, or a completed turn whose materialize
424 > * event has not landed yet; the first turn can start before materialization
425 > * completes). Idle provisional sessions (created but not yet materialized
426 > * and with no turn activity, e.g. the new-session composer's eagerly-created
427 > * session before its first message) are excluded so they don't leak into
428 > * the session list (#321269).
429 > */
430 > getOverlaySessionSummaries(): SessionSummary[] {
431 const summaries: SessionSummary[] = [];
432 for (const [key, entry] of this._sessionStates) {
441 return summaries;
442 }
444 > /**
445 > * Returns all session URIs whose keys start with the given prefix.
446 > * Used to discover subagent sessions for a given parent.
447 > */
448 > getSessionUrisWithPrefix(prefix: string): string[] {
449 const result: string[] = [];
450 for (const key of this._sessionStates.keys()) {
455 return result;
456 }
458 > // ---- Snapshots ----------------------------------------------------------
459 >
460 > /**
461 > * Returns a state snapshot for a given resource URI.
462 > * The `fromSeq` in the snapshot is the current serverSeq at snapshot time;
463 > * the client should process subsequent envelopes with serverSeq > fromSeq.
464 > */
465 > getSnapshot(resource: URI): IStateSnapshot | undefined {
466 if (isAhpRootChannel(resource)) {
467 return {
519 };
520 }
522 > /** Read-only accessor for callers that only need to inspect a changeset (not subscribe). */
523 > getChangesetState(changeset: URI): ChangesetState | undefined {
524 return this._changesets.get(changeset);
525 }
527 > /** Reconsiders changeset state retention after subscribers or computes release their pins. */
528 > onChangesetLivenessChanged(): void {
529 this._changesets.trimEvictableEntries();
530 }
532 > // ---- Session lifecycle --------------------------------------------------
533 >
534 > /**
535 > * Creates a new session in state with `lifecycle: 'creating'`.
536 > * Returns the initial session state.
537 > *
538 > * By default a {@link NotificationType.SessionAdded} notification is
539 > * emitted so clients see the new session immediately. Pass
540 > * `options.emitNotification: false` to defer the notification — a typical
541 > * use is for **provisional** sessions that exist on the server but should
542 > * not appear in client session lists until they have been persisted by
543 > * the agent (e.g. on the first message that materializes an SDK session
544 > * and writes its on-disk metadata). Call {@link markSessionPersisted}
545 > * afterwards to fire the deferred notification.
546 > */
547 > createSession(summary: SessionSummary, options?: { readonly emitNotification?: boolean }): SessionState {
548 const key = summary.resource;
549 const existing = this._sessionStates.get(key);
574 return state;
575 }
577 > /** Builds the authoritative {@link ISessionEntry} for a freshly seeded state. */
578 > private _newEntry(state: SessionState, summary: SessionSummary): ISessionEntry {
579 return { state, createdAt: summary.createdAt, modifiedAt: summary.modifiedAt, changes: summary.changes };
580 }
582 > /**
583 > * Fire a {@link NotificationType.SessionAdded} notification for a session
584 > * whose creation was deferred via `createSession({ emitNotification: false })`.
585 > *
586 > * Propagates the materialization-resolved catalog fields (`project`,
587 > * `workingDirectory`, `modifiedAt`, `changes`) from the supplied summary
588 > * onto the session entry so subscribers see them. The reducer-owned metadata
589 > * (`title`, `status`, `activity`) is intentionally NOT copied back — the live
590 > * state is authoritative for those. No-ops for sessions that were already
591 > * announced (idempotent).
592 > */
593 > markSessionPersisted(session: URI, summary: SessionSummary): void {
594 const key = session.toString();
595 const entry = this._sessionStates.get(key);
621 });
622 }
624 > /**
625 > * Restores a session from a previous server lifetime into the state manager
626 > * with pre-populated turns. The session is created in `ready` lifecycle
627 > * state since it already exists on the backend.
628 > *
629 > * Unlike {@link createSession}, this does NOT emit a `sessionAdded`
630 > * notification because the session is already known to clients via
631 > * `listSessions`.
632 > */
633 > restoreSession(summary: SessionSummary, turns: Turn[], options?: { readonly draft?: Message; readonly defaultChatTitle?: string }): SessionState {
634 const key = summary.resource;
635 const existing = this._sessionStates.get(key);
651 return state;
652 }
654 > /**
655 > * Creates the default {@link ChatState} for a session and records it as
656 > * the session's single chat. VS Code models every session as having
657 > * exactly one chat — its default chat — whose URI is derived
658 > * deterministically from the session URI. The chat is seeded with any
659 > * pre-populated `turns` (used by {@link restoreSession}).
660 > *
661 > * The session's `chats` catalog and `defaultChat` pointer are updated
662 > * in place rather than via dispatched actions: there are no subscribers
663 > * at creation/restore time, so the snapshot a client later receives on
664 > * subscribe already reflects the default chat.
665 > */
666 > private _ensureDefaultChat(sessionKey: string, summary: SessionSummary, turns?: Turn[], draft?: Message, defaultChatTitle?: string): void {
667 const chatUri = buildDefaultChatUri(sessionKey);
668 // Empty title means "inherit the session title"; a persisted independent
682 }
683 }
685 > /**
686 > * Adds an additional (non-default) chat to an existing session. Creates
687 > * the chat's authoritative {@link ChatState}, registers it in the session's
688 > * catalog via a dispatched {@link ActionType.SessionChatAdded} action (so
689 > * live subscribers refresh), and returns the new chat's summary.
690 > *
691 > * The chat inherits the session's model/agent/working-directory scope. It
692 > * is a no-op (returning the existing summary) when a chat with the same URI
693 > * already exists.
694 > *
695 > * When `options.providerData` is supplied it is recorded verbatim as the
696 > * peer chat's opaque, agent-owned restore blob (see
697 > * {@link getChatProviderData}); the StateManager never parses it. The
698 > * default chat never carries `providerData`.
699 > */
700 > addChat(session: URI, chatUri: URI, options?: { readonly title?: string; readonly turns?: Turn[]; readonly origin?: ChatOrigin; readonly providerData?: string; readonly interactivity?: ChatInteractivity }): ChatSummary | undefined {
701 const entry = this._sessionStates.get(session);
702 if (!entry) {
735 return chatSummary;
736 }
738 > /**
739 > * Re-registers an additional (non-default) peer chat when a session is
740 > * restored from persistent storage, seeding its {@link ChatState} with the
741 > * supplied turns. Unlike {@link addChat} this does not snapshot the session
742 > * title onto the default chat (the default chat's persisted title is
743 > * restored independently) and it seeds history. The catalog entry is added
744 > * in place so the object identity returned by {@link restoreSession} stays
745 > * live; no {@link ActionType.SessionChatAdded} is dispatched because restore
746 > * runs before clients subscribe.
747 > *
748 > * When `options.providerData` is supplied it is recorded verbatim as the
749 > * peer chat's opaque, agent-owned restore blob (see
750 > * {@link getChatProviderData}); the StateManager never parses it.
751 > */
752 > restoreChat(session: URI, chatUri: URI, options: { readonly title?: string; readonly turns: Turn[]; readonly draft?: Message; readonly providerData?: string; readonly origin?: ChatOrigin }): void {
753 const entry = this._sessionStates.get(session);
754 if (!entry) {
772 sessionState.chats = [...sessionState.chats, chatSummary];
773 }
775 > /**
776 > * Removes an additional chat from a session. Deletes its
777 > * {@link ChatState}, dispatches {@link ActionType.SessionChatRemoved}, and
778 > * — if the removed chat was the default — repoints `defaultChat` to the
779 > * first remaining chat. The default chat itself cannot be removed in
780 > * isolation; it lives and dies with its session.
781 > */
782 > removeChat(session: URI, chatUri: URI): void {
783 const entry = this._sessionStates.get(session);
784 if (!entry || !entry.state.chats.some(c => c.resource === chatUri)) {
801 this.dispatchServerAction(session, { type: ActionType.SessionChatRemoved, chat: chatUri });
802 }
804 > /**
805 > * Renames a single chat within a session independently of the session
806 > * title. Updates the chat's authoritative {@link ChatState} title (so
807 > * later `chatSummaryFromState` projections stay consistent) and dispatches
808 > * a {@link ActionType.SessionChatUpdated} so the session's catalog entry and
809 > * live subscribers reflect the new title. Works for the default chat too —
810 > * giving it a non-empty title that no longer inherits the session title.
811 > */
812 > updateChatTitle(session: URI, chatUri: URI, title: string): void {
813 const chatState = this._chatStates.get(chatUri);
814 if (chatState) {
817 this.dispatchServerAction(session, { type: ActionType.SessionChatUpdated, chat: chatUri, changes: { title } });
818 }
820 > /**
821 > * Removes a session from in-memory state without emitting a
822 > * {@link NotificationType.SessionRemoved} notification.
823 > * Use {@link deleteSession} when the session is being permanently deleted
824 > * and clients need to be notified of its removal.
825 > *
826 > * Any pending summary change is flushed synchronously before the session is
827 > * torn down, so clients receive the final status (e.g. Idle after a turn
828 > * completes) even when the session is evicted before the scheduler fires.
829 > * A {@link NotificationType.SessionSummaryChanged} notification may therefore
830 > * be emitted as a side-effect of this call.
831 > *
832 > * Per-session changesets are intentionally NOT torn down here: this method
833 > * is also used as an idle-eviction (LRU) hook (see
834 > * `AgentService._maybeEvictIdleSession`) and the session list view keeps a
835 > * changeset subscription open per visible row to render the diff chip.
836 > * Tearing down on eviction would clear the chip on the list while the row
837 > * is still on screen. Permanent-delete paths (`deleteSession`,
838 > * `removeSubagentSessions`) call `disposeSessionChangesets` explicitly
839 > * before invoking `removeSession`.
840 > */
841 > removeSession(session: URI): void {
842 const entry = this._sessionStates.get(session);
843 if (!entry) {
874 this._logService.trace(`[AgentHostStateManager] Removed session: ${session}`);
875 }
877 > /**
878 > * Permanently deletes a session from state and emits a
879 > * {@link NotificationType.SessionRemoved} notification so that clients
880 > * know the session is no longer accessible.
881 > *
882 > * Sessions whose creation was deferred via
883 > * `createSession({ emitNotification: false })` and never persisted via
884 > * {@link markSessionPersisted} are removed silently — no client knows
885 > * about them, so a `SessionRemoved` would be noise (or worse, would
886 > * cause clients to drop a session URI they had eagerly subscribed to).
887 > */
888 > deleteSession(session: URI): void {
889 const wasAnnounced = this._summaryNotifier.isAnnounced(session);
890 // Drop any pending summary diff: the forthcoming SessionRemoved notification
908 }
909 }
911 > // ---- Session meta -------------------------------------------------------
912 >
913 > /**
914 > * Replaces `state._meta` on a session by dispatching a
915 > * {@link ActionType.SessionMetaChanged} action so the change flows
916 > * through the action envelope (and thus to all live subscribers).
917 > *
918 > * The full `_meta` object is replaced (not merged) so callers stay in
919 > * control of the convention for their own keys; use the `withSessionXxx`
920 > * helpers in `sessionState.ts` to combine slots.
921 > */
922 > setSessionMeta(session: URI, meta: SessionMeta | undefined): void {
923 this.dispatchServerAction(session, { type: ActionType.SessionMetaChanged, _meta: meta });
924 }
926 > /**
927 > * Seeds or replaces a session's resolved {@link SessionConfigState} on the
928 > * live session state. Unlike mid-session {@link ActionType.SessionConfigChanged}
929 > * updates (which merge values onto an existing config), this establishes
930 > * the initial config and is therefore an in-place mutation of the
931 > * authoritative state object so the value is present in the first snapshot
932 > * a subscriber receives. Use this from create/restore flows where the
933 > * config is resolved asynchronously after the session state already exists
934 > * in the map — reading back through {@link getSessionState} would return a
935 > * detached composite copy and stranding the mutation there.
936 > */
937 > setSessionConfig(session: URI, config: SessionConfigState | undefined): void {
938 const entry = this._sessionStates.get(session);
939 if (!entry) {
943 entry.state.config = config;
944 }
946 > /**
947 > * Seeds or replaces the session's effective customizations directly on the
948 > * authoritative in-memory state. Used by create/restore flows to ensure the
949 > * first snapshot already contains customizations.
950 > */
951 > setSessionCustomizations(session: URI, customizations: readonly Customization[] | undefined): void {
952 const entry = this._sessionStates.get(session);
953 if (!entry) {
957 entry.state.customizations = customizations ? [...customizations] : undefined;
958 }
960 > // ---- Changeset registry -------------------------------------------------
961 >
962 > /**
963 > * Registers a server-side changeset so that subscribers can attach to its
964 > * URI. The changeset is created with the supplied initial status (default
965 > * {@link ChangesetStatus.Computing}); subsequent file/operation/status
966 > * mutations flow through {@link dispatchChangesetAction} on the
967 > * canonical `<sessionUri>/changeset/<changesetId>` URI.
968 > *
969 > * Idempotent: a second call with the same URI is a no-op so producers
970 > * can safely re-register on session resume without double-creating
971 > * state.
972 > *
973 > * Callers construct `changesetUri` via {@link buildSessionChangesetUri}
974 > * for the session-wide entry, or {@link buildChangesetUri} for any
975 > * other catalogue entry.
976 > *
977 > * Returns the supplied changeset URI for caller convenience.
978 > */
979 > registerChangeset(changesetUri: URI, initialStatus: ChangesetStatus = ChangesetStatus.Computing): URI {
980 this._changesets.register(changesetUri, initialStatus);
981 return changesetUri;
982 }
984 > /**
985 > * Updates the aggregate `changes` for a session.
986 > *
987 > * There is no dedicated action for this field: the value is purely
988 > * informational (chip rendering on the session list), so the write
989 > * piggybacks on the existing `sessionSummaryChanged` notification
990 > * path. We update the session entry, mark the session dirty, and let
991 > * the summary notifier's flush pick the new value up via its
992 > * `current.changes !== lastNotified.changes` diff.
993 > */
994 > setSessionSummaryChanges(session: URI, changes: ChangesSummary | undefined): void {
995 const entry = this._sessionStates.get(session);
996 if (!entry) {
1006 this._summaryNotifier.markDirty(session);
1007 }
1009 > /**
1010 > * Replaces the catalogue entries on `state.changesets` for `session` by
1011 > * dispatching a {@link ActionType.SessionChangesetsChanged} action.
1012 > * Subscribers see the mutation in the standard session action stream —
1013 > * the catalogue lives on session state and is not its own subscribable
1014 > * resource. Aggregate `changes` counts (additions / deletions /
1015 > * files) are propagated separately via {@link setSessionSummaryChanges}.
1016 > *
1017 > * Producers call this after each compute pass to keep the list of
1018 > * available changesets (with their `changeKind`) in sync so observers
1019 > * can render the correct entries without subscribing to each one.
1020 > */
1021 > setSessionChangesets(session: URI, changesets: readonly Changeset[] | undefined): void {
1022 const entry = this._sessionStates.get(session);
1023 if (!entry) {
1042 });
1043 }
1045 > /**
1046 > * Tear down a changeset. Dispatches {@link ActionType.ChangesetCleared}
1047 > * so subscribers see an empty file list, then deletes the local state
1048 > * so a fresh `getChangesetState` returns `undefined` and forces the
1049 > * producer to re-create the changeset on next subscribe.
1050 > *
1051 > * Per the spec, the server SHOULD also unsubscribe its clients after
1052 > * dispatching this action; for VS Code-internal clients that happens
1053 > * via the `notify/sessionRemoved` notification, which the workbench-side
1054 > * provider correlates to release any held subscriptions.
1055 > *
1056 > * Safe to call for a URI that was never registered: producers typically
1057 > * iterate over a candidate set on session disposal and emit dispose
1058 > * actions defensively.
1059 > */
1060 > disposeChangeset(changeset: URI): void {
1061 if (!this._changesets.has(changeset)) {
1062 return;
1067 this._changesets.delete(changeset);
1068 }
1070 > /**
1071 > * Disposes every changeset whose URI is nested under `session` (i.e.
1072 > * matches `<session>/changeset/...`). Used to cascade cleanup when a
1073 > * session itself is removed.
1074 > */
1075 > disposeSessionChangesets(session: URI): void {
1076 // Collect first because `disposeChangeset` mutates the underlying
1077 // map via its envelope handler.
1087 }
1088 }
1090 > /**
1091 > * Drops the annotation state nested under `session` (i.e. the
1092 > * `<session>/annotations` channel). Used to cascade cleanup when a
1093 > * session itself is removed. Subscriptions are released via the
1094 > * forthcoming `sessionRemoved` notification.
1095 > */
1096 > disposeSessionAnnotations(session: URI): void {
1097 this._annotations.delete(buildAnnotationsUri(session));
1098 }
1100 > // ---- Turn tracking ------------------------------------------------------
1101 >
1102 > /**
1103 > * Registers a mapping from turnId to session URI so that incoming
1104 > * provider events (which carry only session URI) can be associated
1105 > * with the correct active turn.
1106 > */
1107 > getActiveTurnId(sessionOrChat: URI): string | undefined {
1108 const chatUri = isAhpChatChannel(sessionOrChat) ? sessionOrChat : buildDefaultChatUri(sessionOrChat);
1109 return this._chatStates.get(chatUri)?.activeTurn?.id;
1110 }
1112 > // ---- Action dispatch ----------------------------------------------------
1113 >
1114 > /**
1115 > * Dispatch a server-originated action (from the agent backend).
1116 > * The action is applied to state via the reducer and emitted as an
1117 > * envelope with no origin (server-produced).
1118 > *
1119 > * `channel` identifies the channel the action targets — `ROOT_STATE_URI`
1120 > * for root actions, a session URI for session actions, a terminal URI
1121 > * for terminal actions, an expanded changeset URI for changeset actions.
1122 > */
1123 > dispatchServerAction(channel: URI, action: StateAction): void {
1124 this._applyAndEmit(channel, action, undefined);
1125 }
1127 > /**
1128 > * Dispatch a client-originated action (write-ahead from a renderer).
1129 > * The action is applied to state and emitted with the client's origin
1130 > * so the originating client can reconcile.
1131 > */
1132 > dispatchClientAction(channel: URI, action: SessionAction | ChatAction | TerminalAction | ClientChangesetAction | ClientAnnotationsAction | IRootConfigChangedAction, origin: ActionOrigin): unknown {
1133 return this._applyAndEmit(channel, action, origin);
1134 }
1136 > /**
1137 > * Reject a client-originated action without applying it to state. Emits an
1138 > * {@link ActionEnvelope} that carries the original {@link ActionOrigin} and a
1139 > * {@link ActionEnvelope.rejectionReason | rejectionReason} so the originating
1140 > * client can reconcile (roll back) its optimistic write-ahead action through
1141 > * the normal path instead of leaving it pending until reconnect. The reducer
1142 > * is deliberately NOT run, so no synchronized state changes.
1143 > */
1144 > rejectClientAction(channel: URI, action: StateAction, origin: ActionOrigin, reason: string): void {
1145 const envelope: ActionEnvelope = {
1146 channel,
1153 this._onDidEmitEnvelope.fire(envelope);
1154 }
1156 > // ---- Internal -----------------------------------------------------------
1157 >
1158 > private _applyAndEmit(channel: URI, action: StateAction, origin: ActionOrigin | undefined): unknown {
1159 let resultingState: unknown = undefined;
1160 if (action.type === ActionType.RootConfigChanged && action.replace) {
1270 return resultingState;
1271 }
1273 > /**
1274 > * Removes a single chat from its session's active-turn set, firing the
1275 > * session-level active flip ({@link onDidChangeSessionActiveTurn} +
1276 > * {@link ActionType.RootActiveSessionsChanged}) when this clears the
1277 > * session's last active chat. Safe to call for chats that aren't currently
1278 > * tracked as active — it is a no-op in that case. Used both when a turn
1279 > * ends and when a chat is removed mid-turn, so the session can't be
1280 > * stranded as permanently "active".
1281 > */
1282 > private _removeChatActiveTurn(sessionKey: string, chatUri: string): void {
1283 const activeChats = this._sessionsWithActiveTurn.get(sessionKey);
1284 if (!activeChats || !activeChats.delete(chatUri)) {
1292 }
1293 }
1295 > /**
1296 > * Bridges a default-chat state transition back onto its owning session.
1297 > *
1298 > * The protocol moved turn lifecycle (and therefore the derived
1299 > * activity status) onto the chat channel. To preserve VS Code's
1300 > * single-chat behaviour we:
1301 > * - track active-turn transitions (driving `RootActiveSessionsChanged`
1302 > * and `hasActiveSessions`, which gate `--enable-remote-auto-shutdown`),
1303 > * keyed by the owning session URI;
1304 > * - mirror the chat's denormalized `status`/`activity`/`modifiedAt`
1305 > * onto the session summary so the session list reflects progress;
1306 > * - forward the chat's own `status` to the session `chats` catalog (via a
1307 > * {@link ActionType.SessionChatUpdated}) so per-chat tabs reflect that
1308 > * chat's progress, not just the aggregated session summary; and
1309 > * - keep the session's `chats` catalog entry in sync.
1310 > */
1311 > private _onChatStateChanged(sessionKey: string, chatUri: string, prev: ChatState, next: ChatState): void {
1312 // Active turn tracking — derive from the reducer's view of state,
1313 // never from raw action turn-ids, so out-of-order lifecycle actions
1381 }
1382 }
1384 > /**
1385 > * Aggregates a session's chat catalog into the derived session-summary
1386 > * fields per the protocol rules: activity bits come from the default chat
1387 > * (else the most recently modified chat) with `InputNeeded`/`Error`/
1388 > * `InProgress` promoted whenever any chat raises them; the `activity` string
1389 > * follows the chat driving the resulting status; `modifiedAt` is the max
1390 > * across chats. Promotion precedence is `InputNeeded` > `Error` >
1391 > * `InProgress`, so a running peer (sub) chat surfaces as `InProgress` on the
1392 > * session even when the default chat is idle.
1393 > */
1394 > private _aggregateChatSummaries(chats: readonly ChatSummary[], defaultChat: URI | undefined): { status?: SessionStatus; activity?: string; modifiedAt?: number } {
1395 if (chats.length === 0) {
1396 return {};
1419 return { status, activity: driver.activity, modifiedAt };
1420 }
1422 > /**
1423 > * Combines the chat's activity status bits with the session summary's
1424 > * own metadata flags (IsRead / IsArchived) which live in the high bits
1425 > * of {@link SessionStatus} and are owned by the session, not the chat.
1426 > */
1427 > private _mergeSessionStatus(sessionStatus: SessionStatus, chatStatus: SessionStatus): SessionStatus {
1428 const metaFlags = sessionStatus & (SessionStatus.IsRead | SessionStatus.IsArchived);
1429 const activityBits = chatStatus & ~(SessionStatus.IsRead | SessionStatus.IsArchived);
1430 return activityBits | metaFlags;
1431 }
1433 > /**
1434 > * Emit a generic progress notification on the root channel, correlated to
1435 > * the originating request by {@link ProgressParams.progressToken}. Routed to
1436 > * clients through the same {@link onDidEmitNotification} path as session
1437 > * notifications, so both the local (IPC proxy) and remote (WebSocket
1438 > * {@link ProtocolServerHandler}) renderers receive it without any
1439 > * transport-specific special casing. Progress for host-level work (e.g. a
1440 > * shared SDK download) rides the root channel rather than a per-session one.
1441 > */
1442 > emitProgress(progress: Omit<ProgressParams, 'channel'>): void {
1443 this._onDidEmitNotification.fire({
1444 type: 'root/progress',
1447 });
1448 }
1450 > /**
1451 > * Emit an `auth/required` notification on the root channel, asking the
1452 > * client to obtain a fresh token and push it via `authenticate`. Rides the
1453 > * same {@link onDidEmitNotification} path as {@link emitProgress}, so both
1454 > * local (IPC proxy) and remote (WebSocket) renderers receive it. Used for
1455 > * host-level auth requirements (e.g. an agent whose transport flip makes a
1456 > * credential newly required) rather than a per-session one.
1457 > */
1458 > emitAuthRequired(params: Omit<AuthRequiredParams, 'channel'>): void {
1459 this._onDidEmitNotification.fire({
1460 type: 'auth/required',
src/vs/platform/agentHost/common/state/agentSubscription.ts 576 covered LOC · 81 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentSubscription.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { assertNever } from '../../../../base/common/assert.js';
7 > import { Emitter, Event } from '../../../../base/common/event.js';
8 > import { Disposable, IReference } from '../../../../base/common/lifecycle.js';
9 > import { ResourceMap } from '../../../../base/common/map.js';
10 > import { IObservable, observableFromEvent } from '../../../../base/common/observable.js';
11 > import { URI } from '../../../../base/common/uri.js';
12 > import { ActionEnvelope, ActionType, ChangesetAction, ChatAction, AnnotationsAction, ClientAnnotationsAction, ClientChangesetAction, IRootConfigChangedAction, SessionAction, StateAction, isChangesetAction, isChatAction, isAnnotationsAction, isSessionAction } from './sessionActions.js';
13 > import { changesetReducer, chatReducer, annotationsReducer, rootReducer, sessionReducer } from './sessionReducers.js';
14 > import { terminalReducer } from './protocol/reducers.js';
15 > import type { RootAction, SessionAction as IProtocolSessionAction, ChatAction as IProtocolChatAction, TerminalAction } from './protocol/action-origin.generated.js';
16 > import type { AnnotationsState, ChangesetState, ChatState, RootState, SessionState, TerminalState } from './protocol/state.js';
17 > import type { IStateSnapshot } from './sessionProtocol.js';
18 > import { isAhpRootChannel, ROOT_STATE_URI, StateComponents } from './sessionState.js';
19 >
20 > // --- Public API --------------------------------------------------------------
21 >
22 > /**
23 > * A read-only subscription to an agent host resource (root, session, or terminal).
24 > *
25 > * Subscriptions are hydrated from an initial server snapshot and kept in sync
26 > * via action envelopes. Session subscriptions support write-ahead
27 > * reconciliation — optimistic state is layered on top of confirmed state.
28 > */
29 > export interface IAgentSubscription<T> {
30 > /**
31 > * The current state value. For write-ahead subscriptions (sessions) this
32 > * reflects the optimistic state (confirmed + pending replayed). For
33 > * server-only subscriptions (root, terminal) this equals `verifiedValue`.
34 > *
35 > * `undefined` until the first snapshot arrives. An `Error` if subscription
36 > * failed.
37 > */
38 > readonly value: T | Error | undefined;
39 >
40 > /**
41 > * The server-confirmed state with no pending optimistic actions applied.
42 > * `undefined` until the first snapshot arrives.
43 > */
44 > readonly verifiedValue: T | undefined;
45 >
46 > /** Fires when {@link value} changes (optimistic or confirmed). */
47 > readonly onDidChange: Event<T>;
48 >
49 > /** Fires when the subscription enters an error state. */
50 > readonly onDidError?: Event<Error>;
51 >
52 > /** Fires before a server-originated action is applied to this subscription's state. */
53 > readonly onWillApplyAction: Event<ActionEnvelope>;
54 >
55 > /** Fires after a server-originated action is applied to this subscription's state. */
56 > readonly onDidApplyAction: Event<ActionEnvelope>;
57 > }
58 >
59 > /**
60 > * Read-only snapshot describing a single active resource subscription. Used by
61 > * inspection/debug surfaces that enumerate everything a connection is currently
62 > * subscribed to. Does not include the always-live root state.
63 > */
64 > export interface IActiveSubscriptionInfo {
65 > /** The protocol resource URI subscribed to. */
66 > readonly resource: URI;
67 > /** Which state component this subscription tracks. */
68 > readonly kind: StateComponents;
69 > /** Number of outstanding {@link IReference} holders. */
70 > readonly refCount: number;
71 > /**
72 > * The named owners currently holding a reference to this subscription,
73 > * with how many references each holds. Names come from the `owner`
74 > * argument passed to {@link AgentSubscriptionManager.getSubscription}.
75 > */
76 > readonly holders: readonly IActiveSubscriptionHolder[];
77 > /**
78 > * Lifecycle status derived from the subscription's value:
79 > * `pending` before the first snapshot, `error` if it failed, otherwise
80 > * `snapshot`.
81 > */
82 > readonly status: 'pending' | 'snapshot' | 'error';
83 > }
84 >
85 > /** A named owner holding one or more references to a subscription. */
86 > export interface IActiveSubscriptionHolder {
87 > readonly owner: string;
88 > readonly count: number;
89 > }
90 >
91 > // --- Base Implementation -----------------------------------------------------
92 >
93 > /**
94 > * Base class for agent subscriptions. Handles envelope reception, confirmed
95 > * state management, and action event emission.
96 > *
97 > * Subclasses provide the reducer and optionally override reconciliation
98 > * behavior.
99 > */
100 > abstract class BaseAgentSubscription<T> extends Disposable implements IAgentSubscription<T> {
101 >
102 > protected _confirmedState: T | undefined;
103 > private _error: Error | undefined;
104 > private _bufferedEnvelopes: ActionEnvelope[] | undefined;
105 >
106 > protected readonly _onDidChange = this._register(new Emitter<T>());
107 > readonly onDidChange: Event<T> = this._onDidChange.event;
108 >
109 > protected readonly _onDidError = this._register(new Emitter<Error>());
110 > readonly onDidError: Event<Error> = this._onDidError.event;
111 >
112 > protected readonly _onWillApplyAction = this._register(new Emitter<ActionEnvelope>());
113 > readonly onWillApplyAction: Event<ActionEnvelope> = this._onWillApplyAction.event;
114 >
115 > protected readonly _onDidApplyAction = this._register(new Emitter<ActionEnvelope>());
116 > readonly onDidApplyAction: Event<ActionEnvelope> = this._onDidApplyAction.event;
117 >
118 > protected readonly _clientId: string;
119 > protected readonly _log: (msg: string) => void;
120 >
121 > constructor(clientId: string, log: (msg: string) => void) {
122 super();
123 this._clientId = clientId;
124 this._log = log;
125 }
127 > get value(): T | Error | undefined {
128 if (this._error) {
129 return this._error;
131 return this._getOptimisticState() ?? this._confirmedState;
132 }
134 > get verifiedValue(): T | undefined {
135 return this._confirmedState;
136 }
138 > /**
139 > * Apply an initial snapshot from the server.
140 > */
141 > handleSnapshot(state: T, fromSeq: number): void {
142 this._confirmedState = state;
143 this._error = undefined;
145 this._onDidChange.fire(this.value as T);
146 }
148 > /**
149 > * Mark this subscription as failed.
150 > */
151 > setError(error: Error): void {
152 this._error = error;
153 this._onDidError.fire(error);
154 }
156 > /**
157 > * Process an incoming action envelope. The subscription determines
158 > * whether the action is relevant via {@link _isRelevantEnvelope}.
159 > */
160 > receiveEnvelope(envelope: ActionEnvelope): void {
161 if (!this._isRelevantEnvelope(envelope)) {
162 return;
180 this._onDidApplyAction.fire(envelope);
181 }
183 > /** Apply the reducer to confirmed state. Subclasses must implement. */
184 > protected abstract _applyReducer(state: T, action: StateAction): T;
185 >
186 > /** Whether the given envelope targets this subscription. */
187 > protected abstract _isRelevantEnvelope(envelope: ActionEnvelope): boolean;
188 >
189 > /** Return optimistic state if write-ahead is active, otherwise `undefined`. */
190 > protected _getOptimisticState(): T | undefined {
191 return undefined; // No write-ahead by default
192 }
194 > /** Hook called after a snapshot is applied. Replays buffered actions. */
195 > protected _onSnapshotApplied(_fromSeq: number): void {
196 // Replay any actions that arrived before the snapshot
197 const buffered = this._bufferedEnvelopes;
207 }
208 }
210 > /**
211 > * Default reconciliation: apply to confirmed, fire change event.
212 > * Session subscriptions override this for write-ahead.
213 > */
214 > protected _reconcile(envelope: ActionEnvelope, _isOwnAction: boolean): void {
215 this._confirmedState = this._applyReducer(this._confirmedState!, envelope.action);
216 this._onDidChange.fire(this.value as T);
217 }
219 >
220 > // --- Root State Subscription -------------------------------------------------
221 >
222 > /**
223 > * Subscription to the root state at `agenthost:/root`.
224 > * Server-only mutations — no write-ahead.
225 > */
226 > export class RootStateSubscription extends BaseAgentSubscription<RootState> {
227 >
228 > protected override _applyReducer(state: RootState, action: StateAction): RootState {
229 return rootReducer(state, action as RootAction, this._log);
230 }
232 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
233 return isAhpRootChannel(envelope.channel) && envelope.action.type.startsWith('root/');
234 }
236 >
237 > // --- Session State Subscription ----------------------------------------------
238 >
239 > interface IPendingAction {
240 > readonly clientSeq: number;
241 > readonly action: SessionAction;
242 > }
243 >
244 > /**
245 > * A pending optimistic action awaiting server confirmation, paired with the
246 > * channel it was dispatched to so it can be replayed across a reconnect. The
247 > * channel is a session channel for {@link SessionStateSubscription} actions and
248 > * a chat channel for {@link ChatStateSubscription} actions.
249 > */
250 > export interface IPendingDispatchAction {
251 > readonly clientSeq: number;
252 > /** The optimistic action awaiting confirmation. */
253 > readonly action: SessionAction | ChatAction;
254 > /** URI of the channel this action targets, as stored on the subscription. */
255 > readonly channel: string;
256 > }
257 >
258 > /**
259 > * Subscription to a session at `copilot:/<uuid>`.
260 > * Supports write-ahead reconciliation for client-dispatchable actions.
261 > */
262 > export class SessionStateSubscription extends BaseAgentSubscription<SessionState> {
263 >
264 > private readonly _pendingActions: IPendingAction[] = [];
265 > private _optimisticState: SessionState | undefined;
266 > private readonly _sessionUri: string;
267 > private readonly _seqAllocator: () => number;
268 >
269 > constructor(
270 sessionUri: string,
271 clientId: string,
277 this._seqAllocator = seqAllocator;
278 }
280 > /**
281 > * Optimistically apply a session action. Returns the clientSeq to send
282 > * to the server so it can echo back for reconciliation.
283 > */
284 > applyOptimistic(action: SessionAction): number {
285 const clientSeq = this._seqAllocator();
286 this._pendingActions.push({ clientSeq, action });
293 return clientSeq;
294 }
296 > protected override _getOptimisticState(): SessionState | undefined {
297 return this._optimisticState;
298 }
300 > protected override _applyReducer(state: SessionState, action: StateAction): SessionState {
301 return sessionReducer(state, action as IProtocolSessionAction, this._log);
302 }
304 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
305 return isSessionAction(envelope.action) && envelope.channel === this._sessionUri;
306 }
308 > protected override _onSnapshotApplied(fromSeq: number): void {
309 // Replay buffered actions first
310 super._onSnapshotApplied(fromSeq);
312 this._recomputeOptimistic();
313 }
315 > protected override _reconcile(envelope: ActionEnvelope, isOwnAction: boolean): void {
316 // A rejected envelope must never mutate confirmed state — it only rolls
317 // back the originating client's matching optimistic action. Guarding all
333 this._recomputeOptimistic();
334 }
336 > private _confirmedApply(action: StateAction): void {
337 if (this._confirmedState) {
338 this._confirmedState = this._applyReducer(this._confirmedState, action);
339 }
340 }
342 > private _recomputeOptimistic(): void {
343 const confirmed = this._confirmedState;
344 if (!confirmed) {
360 this._onDidChange.fire(state);
361 }
363 > /**
364 > * Clear pending actions for this session (e.g., on unsubscribe).
365 > */
366 > clearPending(): void {
367 this._pendingActions.length = 0;
368 this._optimisticState = undefined;
369 }
371 > /**
372 > * Snapshot of the currently-pending optimistic actions, with the session
373 > * URI included so callers can re-issue them across a reconnect. The
374 > * actions remain in the subscription so the optimistic state continues
375 > * to reflect them — the client must explicitly drop entries echoed back
376 > * by the server.
377 > */
378 > getPendingActions(): IPendingDispatchAction[] {
379 return this._pendingActions.map(p => ({ clientSeq: p.clientSeq, action: p.action, channel: this._sessionUri }));
380 }
382 > /**
383 > * Drop the pending entry whose `clientSeq` matches the supplied value.
384 > * Used during reconnect to evict actions the server already echoed back
385 > * in the replay buffer so they're not resent.
386 > */
387 > dropPendingByClientSeq(clientSeq: number): boolean {
388 const idx = this._pendingActions.findIndex(p => p.clientSeq === clientSeq);
389 if (idx === -1) {
393 return true;
394 }
396 >
397 > // --- Chat State Subscription -------------------------------------------------
398 >
399 > interface IPendingChatAction {
400 > readonly clientSeq: number;
401 > readonly action: ChatAction;
402 > }
403 >
404 > /**
405 > * Subscription to a chat channel (e.g. a session's default chat URI). Turns,
406 > * tool calls and pending/input state moved off the session onto the chat
407 > * channel in the multi-chat protocol, so this subscription carries the
408 > * conversation contents. Supports write-ahead reconciliation for
409 > * client-dispatchable chat actions (turn starts, confirmations, etc.).
410 > */
411 > export class ChatStateSubscription extends BaseAgentSubscription<ChatState> {
412 >
413 > private readonly _pendingActions: IPendingChatAction[] = [];
414 > private _optimisticState: ChatState | undefined;
415 > private readonly _chatUri: string;
416 > private readonly _seqAllocator: () => number;
417 >
418 > constructor(
419 chatUri: string,
420 clientId: string,
426 this._seqAllocator = seqAllocator;
427 }
429 > /**
430 > * Optimistically apply a chat action. Returns the clientSeq to send to
431 > * the server so it can echo back for reconciliation.
432 > */
433 > applyOptimistic(action: ChatAction): number {
434 const clientSeq = this._seqAllocator();
435 this._pendingActions.push({ clientSeq, action });
441 return clientSeq;
442 }
444 > protected override _getOptimisticState(): ChatState | undefined {
445 return this._optimisticState;
446 }
448 > protected override _applyReducer(state: ChatState, action: StateAction): ChatState {
449 return chatReducer(state, action as IProtocolChatAction, this._log);
450 }
452 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
453 return isChatAction(envelope.action) && envelope.channel === this._chatUri;
454 }
456 > protected override _onSnapshotApplied(fromSeq: number): void {
457 super._onSnapshotApplied(fromSeq);
458 this._recomputeOptimistic();
459 }
461 > protected override _reconcile(envelope: ActionEnvelope, isOwnAction: boolean): void {
462 // A rejected envelope must never mutate confirmed state — it only rolls
463 // back the originating client's matching optimistic action. Guarding all
480 this._recomputeOptimistic();
481 }
483 > private _promotePendingTurnStartIfTerminal(action: StateAction): void {
484 // A backend-originated terminal turn action may arrive without the clientSeq
485 // that would normally confirm our optimistic turn start. Promote that start
500 }
501 }
503 > private _confirmedApply(action: StateAction): void {
504 if (this._confirmedState) {
505 this._confirmedState = this._applyReducer(this._confirmedState, action);
506 }
507 }
509 > private _recomputeOptimistic(): void {
510 const confirmed = this._confirmedState;
511 if (!confirmed) {
525 this._onDidChange.fire(state);
526 }
528 > clearPending(): void {
529 this._pendingActions.length = 0;
530 this._optimisticState = undefined;
531 }
533 > getPendingActions(): IPendingDispatchAction[] {
534 return this._pendingActions.map(p => ({ clientSeq: p.clientSeq, action: p.action, channel: this._chatUri }));
535 }
537 > dropPendingByClientSeq(clientSeq: number): boolean {
538 const idx = this._pendingActions.findIndex(p => p.clientSeq === clientSeq);
539 if (idx === -1) {
543 return true;
544 }
546 >
547 > // --- Terminal State Subscription ---------------------------------------------
548 >
549 > /**
550 > * Subscription to a terminal at an agent-host terminal URI.
551 > * Server-only mutations — no write-ahead (terminal I/O is side-effect-only).
552 > */
553 > export class TerminalStateSubscription extends BaseAgentSubscription<TerminalState> {
554 >
555 > private readonly _terminalUri: string;
556 >
557 > constructor(terminalUri: string, clientId: string, log: (msg: string) => void) {
558 super(clientId, log);
559 this._terminalUri = terminalUri;
560 }
562 > protected override _applyReducer(state: TerminalState, action: StateAction): TerminalState {
563 return terminalReducer(state, action as TerminalAction, this._log);
564 }
566 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
567 return envelope.action.type.startsWith('terminal/') && envelope.channel === this._terminalUri;
568 }
570 >
571 > // --- Changeset State Subscription --------------------------------------------
572 >
573 > /**
574 > * Subscription to a changeset at an expanded changeset URI (e.g.
575 > * `<sessionUri>/changeset/session`).
576 > *
577 > * Changeset review actions are client-dispatchable, so this subscription
578 > * supports write-ahead reconciliation.
579 > */
580 > export class ChangesetStateSubscription extends BaseAgentSubscription<ChangesetState> {
581 >
582 > private readonly _pendingActions: { readonly clientSeq: number; readonly action: ClientChangesetAction }[] = [];
583 > private _optimisticState: ChangesetState | undefined;
584 > private readonly _changesetUri: string;
585 > private readonly _seqAllocator: () => number;
586 >
587 > constructor(changesetUri: string, clientId: string, seqAllocator: () => number, log: (msg: string) => void) {
588 super(clientId, log);
589 this._changesetUri = changesetUri;
590 this._seqAllocator = seqAllocator;
591 }
593 > /**
594 > * Optimistically apply a changeset action and return its client sequence.
595 > */
596 > applyOptimistic(action: ClientChangesetAction): number {
597 const clientSeq = this._seqAllocator();
598 this._pendingActions.push({ clientSeq, action });
604 return clientSeq;
605 }
607 > protected override _getOptimisticState(): ChangesetState | undefined {
608 return this._optimisticState;
609 }
611 > protected override _applyReducer(state: ChangesetState, action: StateAction): ChangesetState {
612 return changesetReducer(state, action as ChangesetAction, this._log);
613 }
615 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
616 return isChangesetAction(envelope.action) && envelope.channel === this._changesetUri;
617 }
619 > protected override _onSnapshotApplied(fromSeq: number): void {
620 super._onSnapshotApplied(fromSeq);
621 this._recomputeOptimistic();
622 }
624 > protected override _reconcile(envelope: ActionEnvelope, isOwnAction: boolean): void {
625 if (isOwnAction && envelope.origin) {
626 const index = this._pendingActions.findIndex(pending => pending.clientSeq === envelope.origin!.clientSeq);
638 this._recomputeOptimistic();
639 }
641 > private _confirmedApply(action: StateAction): void {
642 if (this._confirmedState) {
643 this._confirmedState = this._applyReducer(this._confirmedState, action);
644 }
645 }
647 > private _recomputeOptimistic(): void {
648 const confirmed = this._confirmedState;
649 if (!confirmed) {
665 this._onDidChange.fire(state);
666 }
668 >
669 > type ManagedSubscription = SessionStateSubscription | ChatStateSubscription | TerminalStateSubscription | ChangesetStateSubscription | AnnotationsStateSubscription;
670 >
671 > // --- Annotations State Subscription ------------------------------------------
672 >
673 > interface IPendingAnnotationsAction {
674 > readonly clientSeq: number;
675 > readonly action: AnnotationsAction;
676 > }
677 >
678 > /**
679 > * Subscription to a session's annotations channel (e.g.
680 > * `<sessionUri>/annotations`).
681 > *
682 > * Annotations actions are client-dispatchable, so this subscription supports
683 > * write-ahead reconciliation: optimistic state is layered on top of confirmed
684 > * state and reconciled as the server echoes the client's own actions back.
685 > *
686 > * Like {@link ChangesetStateSubscription}, the subscription does NOT
687 > * self-tear-down on lifecycle events; cleanup is driven externally by the
688 > * holder releasing its `IReference`.
689 > */
690 > export class AnnotationsStateSubscription extends BaseAgentSubscription<AnnotationsState> {
691 >
692 > private readonly _pendingActions: IPendingAnnotationsAction[] = [];
693 > private _optimisticState: AnnotationsState | undefined;
694 > private readonly _annotationsUri: string;
695 > private readonly _seqAllocator: () => number;
696 >
697 > constructor(annotationsUri: string, clientId: string, seqAllocator: () => number, log: (msg: string) => void) {
698 super(clientId, log);
699 this._annotationsUri = annotationsUri;
700 this._seqAllocator = seqAllocator;
701 }
703 > /**
704 > * Optimistically apply an annotations action. Returns the clientSeq to
705 > * send to the server so it can echo back for reconciliation.
706 > */
707 > applyOptimistic(action: AnnotationsAction): number {
708 const clientSeq = this._seqAllocator();
709 this._pendingActions.push({ clientSeq, action });
715 return clientSeq;
716 }
718 > protected override _getOptimisticState(): AnnotationsState | undefined {
719 return this._optimisticState;
720 }
722 > protected override _applyReducer(state: AnnotationsState, action: StateAction): AnnotationsState {
723 return annotationsReducer(state, action as AnnotationsAction, this._log);
724 }
726 > protected override _isRelevantEnvelope(envelope: ActionEnvelope): boolean {
727 return isAnnotationsAction(envelope.action) && envelope.channel === this._annotationsUri;
728 }
730 > protected override _onSnapshotApplied(fromSeq: number): void {
731 super._onSnapshotApplied(fromSeq);
732 this._recomputeOptimistic();
733 }
735 > protected override _reconcile(envelope: ActionEnvelope, isOwnAction: boolean): void {
736 if (isOwnAction && envelope.origin) {
737 const idx = this._pendingActions.findIndex(p => p.clientSeq === envelope.origin!.clientSeq);
749 this._recomputeOptimistic();
750 }
752 > private _confirmedApply(action: StateAction): void {
753 if (this._confirmedState) {
754 this._confirmedState = this._applyReducer(this._confirmedState, action);
755 }
756 }
758 > private _recomputeOptimistic(): void {
759 const confirmed = this._confirmedState;
760 if (!confirmed) {
776 this._onDidChange.fire(state);
777 }
779 >
780 > type ManagedSubscriptionEntry = { sub: ManagedSubscription; kind: StateComponents; refCount: number; holders: Map<number, string> };
781 >
782 > // --- Subscription Manager ----------------------------------------------------
783 >
784 >
785 > /**
786 > * Manages the lifecycle of resource subscriptions for an agent connection.
787 > *
788 > * Provides refcounted access via {@link getSubscription} — the subscription
789 > * is created on first acquire, subscribes to the server, and stays alive
790 > * until the last reference is disposed.
791 > *
792 > * The connection feeds action envelopes to all active subscriptions via
793 > * {@link receiveEnvelope}.
794 > */
795 > export class AgentSubscriptionManager extends Disposable {
796 >
797 > private readonly _subscriptions = new ResourceMap<ManagedSubscriptionEntry>();
798 > private readonly _inflightCreates = new ResourceMap<Promise<unknown>>();
799 > private _referenceOwnerIds = 0;
800 > private readonly _rootState: RootStateSubscription;
801 > private readonly _clientId: string;
802 > private readonly _seqAllocator: () => number;
803 > private readonly _log: (msg: string) => void;
804 > private readonly _subscribe: (resource: URI) => Promise<IStateSnapshot>;
805 > private readonly _unsubscribe: (resource: URI) => void;
806 >
807 > constructor(
808 clientId: string,
809 seqAllocator: () => number,
820 this._rootState = this._register(new RootStateSubscription(clientId, log));
821 }
823 > /** The always-live root state subscription. */
824 > get rootState(): IAgentSubscription<RootState> {
825 return this._rootState;
826 }
828 > /**
829 > * Initialize the root state from a snapshot received during the
830 > * connection handshake.
831 > */
832 > handleRootSnapshot(state: RootState, fromSeq: number): void {
833 this._rootState.handleSnapshot(state, fromSeq);
834 }
836 > /**
837 > * Returns an existing subscription without affecting its refcount.
838 > * Returns `undefined` if no subscription is active for the given resource.
839 > */
840 > getSubscriptionUnmanaged<T>(resource: URI): IAgentSubscription<T> | undefined {
841 const entry = this._subscriptions.get(resource);
842 return entry?.sub as IAgentSubscription<T> | undefined;
843 }
845 > /**
846 > * Returns the in-flight `createSession` Promise for this URI, or `undefined` if no create is pending. Used by
847 > * callers that need to gate their own work on a still-running eager `createSession` (e.g. the chat handler awaits
848 > * this before deciding whether the sessions provider's eager-create raced first send).
849 > */
850 > getInflightSessionCreate(resource: URI): Promise<unknown> | undefined {
851 return this._inflightCreates.get(resource);
852 }
854 > /**
855 > * Register an in-flight `createSession` Promise for a session URI. Any
856 > * subscribe issued for this resource while the create is pending waits
857 > * for the Promise before issuing the wire-level subscribe.
858 > */
859 > trackSessionCreate(resource: URI, promise: Promise<unknown>): void {
860 this._inflightCreates.set(resource, promise);
861 // This branch only observes settlement to evict the inflight entry; the
870 }).catch(() => { });
871 }
873 > /**
874 > * Get or create a refcounted subscription to any resource. Disposing
875 > * the returned reference decrements the refcount; when it reaches zero
876 > * the subscription is torn down and the server is notified.
877 > *
878 > * `owner` names the caller holding the reference so inspection surfaces
879 > * (see {@link getActiveSubscriptions}) can attribute who is retaining a
880 > * subscription. Use a stable, human-readable identifier such as the
881 > * acquiring class name.
882 > */
883 > getSubscription<T>(kind: StateComponents, resource: URI, owner: string): IReference<IAgentSubscription<T>> {
884 const existing = this._subscriptions.get(resource);
885 if (existing) {
929 return this._acquireReference<T>(resource, entry, owner);
930 }
932 > /**
933 > * Register `owner` as a holder of `entry` and return a reference whose
934 > * disposal removes that holder and releases the subscription. The
935 > * caller is responsible for the matching refcount increment (a fresh
936 > * entry starts at 1; an existing entry is bumped before calling this).
937 > */
938 > private _acquireReference<T>(resource: URI, entry: ManagedSubscriptionEntry, owner: string): IReference<IAgentSubscription<T>> {
939 const ownerId = ++this._referenceOwnerIds;
940 entry.holders.set(ownerId, owner);
953 };
954 }
956 > private _disposeSubscriptionEntry(resource: URI, entry: ManagedSubscriptionEntry): void {
957 this._tryUnsubscribe(resource);
958 if (entry.sub instanceof SessionStateSubscription || entry.sub instanceof ChatStateSubscription) {
961 entry.sub.dispose();
962 }
964 > private _tryUnsubscribe(resource: URI): void {
965 try {
966 this._unsubscribe(resource);
970 }
971 }
973 > /**
974 > * Route an incoming action envelope to all active subscriptions.
975 > */
976 > receiveEnvelope(envelope: ActionEnvelope): void {
977 // Root state gets all root actions
978 this._rootState.receiveEnvelope(envelope);
982 }
983 }
985 > /**
986 > * Dispatch a client action. Applies optimistically to the relevant
987 > * subscription if applicable, then returns the clientSeq.
988 > *
989 > * `channel` is the protocol URI string identifying the channel the
990 > * action targets (a session URI for session actions, etc.).
991 > */
992 > dispatchOptimistic(channel: string, action: SessionAction | ChatAction | TerminalAction | ClientChangesetAction | ClientAnnotationsAction | IRootConfigChangedAction): number {
993 if (isSessionAction(action)) {
994 const entry = this._subscriptions.get(URI.parse(channel));
1014 return this._seqAllocator();
1015 }
1017 > /**
1018 > * URIs currently subscribed to via {@link getSubscription}. Used to
1019 > * build the `subscriptions` payload for a `reconnect` RPC so the
1020 > * server can restore them in one round-trip.
1021 > *
1022 > * Does NOT include the always-live root state, which the protocol
1023 > * client manages separately.
1024 > */
1025 > currentSubscriptionUris(): URI[] {
1026 return [...this._subscriptions.keys()];
1027 }
1029 > /**
1030 > * Read-only descriptors of every active resource subscription, for
1031 > * inspection/debug surfaces. Does NOT include the always-live root
1032 > * state, which the connection exposes separately via {@link rootState}.
1033 > */
1034 > getActiveSubscriptions(): readonly IActiveSubscriptionInfo[] {
1035 const out: IActiveSubscriptionInfo[] = [];
1036 for (const [resource, entry] of this._subscriptions) {
1041 return out;
1042 }
1044 > /** Group an entry's holders by owner name, sorted by descending count. */
1045 > private _summarizeHolders(entry: ManagedSubscriptionEntry): IActiveSubscriptionHolder[] {
1046 const counts = new Map<string, number>();
1047 for (const owner of entry.holders.values()) {
1052 .sort((a, b) => b.count - a.count);
1053 }
1055 > /**
1056 > * Snapshot of every pending optimistic action across all session
1057 > * subscriptions. Callers use this to replay actions after a transport
1058 > * reconnect; entries are kept on their subscriptions until they're
1059 > * either echoed back by the server or explicitly dropped via
1060 > * {@link dropPendingSessionAction}.
1061 > */
1062 > getPendingSessionActions(): IPendingDispatchAction[] {
1063 const out: IPendingDispatchAction[] = [];
1064 for (const { sub } of this._subscriptions.values()) {
1069 return out;
1070 }
1072 > /**
1073 > * Remove a single pending optimistic action for a session by its
1074 > * `clientSeq`. Used during reconnect to evict actions the server
1075 > * already processed (and replayed back to us) so they're not resent.
1076 > */
1077 > dropPendingSessionAction(sessionUri: string, clientSeq: number): void {
1078 const entry = this._subscriptions.get(URI.parse(sessionUri));
1079 if (entry?.sub instanceof SessionStateSubscription || entry?.sub instanceof ChatStateSubscription) {
1081 }
1082 }
1084 > /**
1085 > * Apply a fresh snapshot to a subscribed resource — used when the server
1086 > * responds to a `reconnect` request with `type: 'snapshot'` because the
1087 > * replay buffer no longer covers the client's gap. Routes to the root
1088 > * subscription when {@link ROOT_STATE_URI} matches, otherwise reseats the
1089 > * matching entry in {@link _subscriptions}. Unknown resources are ignored.
1090 > */
1091 > applyReconnectSnapshot(resource: string, state: unknown, fromSeq: number): void {
1092 if (isAhpRootChannel(resource)) {
1093 this._rootState.handleSnapshot(state as RootState, fromSeq);
1106 entry.sub.handleSnapshot(state as never, fromSeq);
1107 }
1109 > /**
1110 > * Mark a set of subscriptions as no longer resumable on the server
1111 > * (reported via `ReconnectReplayResult.missing`). The subscriptions
1112 > * themselves stay alive so consumers continue to hold valid references,
1113 > * but their value transitions to an `Error` until they're recreated.
1114 > */
1115 > markSubscriptionsMissing(missing: readonly URI[]): void {
1116 for (const resource of missing) {
1117 const entry = this._subscriptions.get(resource);
1124 }
1125 }
1127 > private _createSubscription(kind: StateComponents, key: string): ManagedSubscription {
1128 switch (kind) {
1129 case StateComponents.Session:
1143 }
1144 }
1146 > private _releaseSubscription(resource: URI, expected?: ManagedSubscriptionEntry): void {
1147 const entry = this._subscriptions.get(resource);
1148 // A failed subscription can be evicted and replaced while old references
1157 }
1158 }
1160 > override dispose(): void {
1161 for (const [resource, entry] of this._subscriptions) {
1162 this._tryUnsubscribe(resource);
1166 super.dispose();
1167 }
1169 >
1170 > /** Returns whether an action envelope targets one of the subscribed channel URIs. */
1171 > export function isActionEnvelopeRelevantToSubscriptionUris(envelope: ActionEnvelope, subscribedUris: Iterable<string>): boolean {
1172 if (isAhpRootChannel(envelope.channel)) {
1173 for (const uri of subscribedUris) {
1185 return false;
1186 }
1188 > // --- Observable Adapter ------------------------------------------------------
1189 >
1190 > /**
1191 > * Adapts an {@link IAgentSubscription} into an {@link IObservable} of the
1192 > * subscription's value. Errors and the pre-snapshot phase are surfaced as
1193 > * `undefined`; consumers that need the error itself should read
1194 > * {@link IAgentSubscription.value} directly.
1195 > */
1196 > export function observableFromSubscription<T>(owner: object | undefined, sub: IAgentSubscription<T>): IObservable<T | undefined> {
1197 return observableFromEvent(owner, sub.onDidChange, () => {
1198 const v = sub.value;
src/vs/platform/agentHost/common/agentHostSchema.ts 574 covered LOC · 32 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentHostSchema.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { localize } from '../../../nls.js';
7 > import { structuralEquals } from '../../../base/common/equals.js';
8 > import { ConfigurationTarget, type IConfigurationService, type IConfigurationValue } from '../../configuration/common/configuration.js';
9 > import type { IMcpServerConfiguration } from '../../mcp/common/mcpPlatformTypes.js';
10 > import { TelemetryConfiguration, TelemetryLevel } from '../../telemetry/common/telemetry.js';
11 > import { SessionConfigKey } from './sessionConfigKeys.js';
12 > import type { SessionConfigPropertySchema, SessionConfigSchema } from './state/protocol/commands.js';
13 > import { JsonRpcErrorCodes, ProtocolError } from './state/sessionProtocol.js';
14 >
15 > // ---- Schema builder --------------------------------------------------------
16 >
17 > /**
18 > * A schema property with a phantom TypeScript type and a precomputed
19 > * runtime validator.
20 > *
21 > * The `<T>` type parameter is the developer's assertion about the
22 > * property's runtime shape; the validator derived from `protocol`
23 > * (`type`, `enum`, `items`, `properties`, `required`) enforces it at
24 > * runtime.
25 > */
26 > export interface ISchemaProperty<T> {
27 > readonly protocol: SessionConfigPropertySchema;
28 > /**
29 > * Returns `true` iff `value` conforms to {@link protocol}. Narrows
30 > * the type to `T` for callers. The boolean form is preferred for
31 > * control flow; use {@link assertValid} when you want a descriptive
32 > * error for the offending path.
33 > */
34 > validate(value: unknown): value is T;
35 > /**
36 > * Throws a {@link ProtocolError} with `JsonRpcErrorCodes.InvalidParams`
37 > * describing the offending path (e.g. `'permissions.allow[2]'`) when
38 > * `value` does not conform to {@link protocol}. Otherwise returns and
39 > * narrows the type to `T`.
40 > *
41 > * @param path Dotted path prefix to embed in error messages. Defaults
42 > * to empty (the value itself).
43 > */
44 > assertValid(value: unknown, path?: string): asserts value is T;
45 > }
46 >
47 > /**
48 > * Defines a strongly-typed schema property whose runtime validator is
49 > * derived from the supplied JSON-schema descriptor.
50 > */
51 > export function schemaProperty<T>(protocol: SessionConfigPropertySchema): ISchemaProperty<T> {
52 > const assertFn = buildAssert(protocol);
53 > const assertValid = (value: unknown, path: string = ''): asserts value is T => assertFn(value, path);
54 > const validate = (value: unknown): value is T => {
55 try {
56 assertFn(value, '');
60 }
61 };
62 > return { protocol, validate, assertValid }; agentHostSchema.ts
63 > }
64 >
65 > // eslint-disable-next-line @typescript-eslint/no-explicit-any
66 > export type SchemaDefinition = Record<string, ISchemaProperty<any>>;
67 >
68 > export type SchemaValue<P> = P extends ISchemaProperty<infer T> ? T : never;
69 >
70 > export type SchemaValues<D extends SchemaDefinition> = {
71 > [K in keyof D]?: SchemaValue<D[K]>;
72 > };
73 >
74 > /**
75 > * A bundle of named schema properties plus helpers for serializing to the
76 > * protocol shape, validating a values bag at write sites, and validating
77 > * a single key at read sites.
78 > */
79 > export interface ISchema<D extends SchemaDefinition> {
80 > readonly definition: D;
81 > /** Returns the protocol-serializable schema for this bundle. */
82 > toProtocol(): SessionConfigSchema;
83 > /**
84 > * Validates each known key in `values` against its schema and returns
85 > * a new plain record. Throws a {@link ProtocolError} with a path like
86 > * `'permissions.allow[2]'` when any supplied value fails validation.
87 > * Unknown keys are passed through untouched for forward-compatibility.
88 > */
89 > values(values: SchemaValues<D>): Record<string, unknown>;
90 > /**
91 > * Returns `true` iff `value` validates against the schema for `key`.
92 > * Unknown keys return `false`.
93 > */
94 > validate<K extends keyof D & string>(key: K, value: unknown): value is SchemaValue<D[K]>;
95 > /**
96 > * Throws a {@link ProtocolError} describing the offending path when
97 > * `value` does not validate against the schema for `key`, or when
98 > * `key` is not defined in the schema.
99 > */
100 > assertValid<K extends keyof D & string>(key: K, value: unknown): asserts value is SchemaValue<D[K]>;
101 > /**
102 > * Returns a fully-typed values bag by validating each key of the
103 > * schema against `values` and falling back to the default when
104 > * the incoming value is missing or fails validation.
105 > *
106 > * Semantics: for every key declared in the schema `definition`:
107 > * - if `values[key]` validates, it is kept;
108 > * - else if `key` is present in `defaults`, the default is used;
109 > * - else the key is omitted from the result.
110 > *
111 > * This means callers MAY supply defaults for only a subset of the
112 > * schema — keys not present in `defaults` are simply left unset
113 > * when the incoming value is missing or invalid. This is useful
114 > * when some properties (e.g. per-session `permissions`) should be
115 > * inherited from a higher scope rather than materialized on every
116 > * new session.
117 > *
118 > * Intended for sanitizing untrusted input at protocol boundaries
119 > * (e.g. `resolveSessionConfig`). Keys that fail validation are
120 > * silently replaced with their default or dropped; use
121 > * {@link values} or {@link assertValid} when you want a descriptive
122 > * {@link ProtocolError} instead.
123 > */
124 > validateOrDefault<T extends Partial<{ [K in keyof D]: SchemaValue<D[K]> }>>(values: { [K in keyof T]?: unknown } | undefined, defaults: T): T;
125 > }
126 >
127 > export function createSchema<D extends SchemaDefinition>(definition: D): ISchema<D> {
128 > return {
129 > definition,
130 > toProtocol(): SessionConfigSchema {
131 > const properties: Record<string, SessionConfigPropertySchema> = {}; agentHostSchema.ts
132 > for (const key of Object.keys(definition)) {
133 > properties[key] = definition[key].protocol;
134 > }
135 > return { type: 'object', properties };
136 > },
137 > values(values) { agentHostSchema.ts
138 const raw = values as Record<string, unknown>;
139 for (const key of Object.keys(definition)) {
149 return { ...raw };
150 },
151 > validate<K extends keyof D & string>(key: K, value: unknown): value is SchemaValue<D[K]> { agentHostSchema.ts
152 const prop = definition[key];
153 return prop ? prop.validate(value) : false;
154 },
155 > assertValid<K extends keyof D & string>(key: K, value: unknown): asserts value is SchemaValue<D[K]> { agentHostSchema.ts
156 const prop: ISchemaProperty<unknown> | undefined = definition[key];
157 if (!prop) {
163 narrowed.assertValid(value, key);
164 },
165 > validateOrDefault<T extends Partial<{ [K in keyof D]: SchemaValue<D[K]> }>>(values: { [K in keyof T]?: unknown } | undefined, defaults: T): T { agentHostSchema.ts
166 > const result: Record<string, unknown> = {}; agentHostSchema.ts
167 > const raw: { [K in keyof T]?: unknown } = values ?? {};
168 > for (const key of Object.keys(definition)) {
169 > const prop = definition[key];
170 > const candidate = raw[key];
171 > if (candidate !== undefined && prop.validate(candidate)) {
172 result[key] = candidate;
173 > } else if (Object.prototype.hasOwnProperty.call(defaults, key)) { agentHostSchema.ts
174 > result[key] = (defaults as Record<string, unknown>)[key]; agentHostSchema.ts
175 > }
176 > // else: key not in defaults and incoming value missing/invalid agentHostSchema.ts
177 > // → leave unset so higher-scope defaults can fill in.
178 > }
179 > return result as T;
180 > },
182 > }
183 >
184 > // ---- Validator derivation --------------------------------------------------
185 >
186 > /**
187 > * A validator that throws a {@link ProtocolError} annotated with the
188 > * offending path when `value` does not conform, or returns normally
189 > * when it does.
190 > */
191 > type AssertValidator = (value: unknown, path: string) => void;
192 >
193 > function buildAssert(schema: SessionConfigPropertySchema): AssertValidator {
194 > if (schema.type === 'object' && schema.properties) {
195 > const propAsserts: Record<string, AssertValidator> = {};
196 > for (const key of Object.keys(schema.properties)) {
197 > propAsserts[key] = buildAssert(schema.properties[key] as SessionConfigPropertySchema);
198 > }
199 > const required = new Set(schema.required ?? []);
200 > return (value, path) => {
201 if (typeof value !== 'object' || value === null || Array.isArray(value)) {
202 throw invalidParams(path, 'object', value);
214 }
215 };
217 > if (schema.type === 'array' && schema.items) {
218 > const itemAssert = buildAssert(schema.items as SessionConfigPropertySchema);
219 > return (value, path) => {
220 if (!Array.isArray(value)) {
221 throw invalidParams(path, 'array', value);
225 }
226 };
228 > return buildPrimitiveAssert(schema);
229 > }
230 >
231 > function buildPrimitiveAssert(schema: SessionConfigPropertySchema): AssertValidator {
232 > const enumDynamic = schema.enumDynamic === true;
233 > return (value, path) => {
234 switch (schema.type) {
235 case 'string': if (typeof value !== 'string') { throw invalidParams(path, 'string', value); } break;
243 }
244 };
246 >
247 function invalidParams(path: string, expected: string, value: unknown): ProtocolError {
248 return new ProtocolError(JsonRpcErrorCodes.InvalidParams, `Invalid value at '${path || '<root>'}': expected ${expected}, got ${safeStringify(value)}`);
249 }
251 function joinPath(parent: string, key: string): string {
252 return parent ? `${parent}.${key}` : key;
253 }
255 function safeStringify(value: unknown): string {
256 try {
260 }
261 }
263 > // ---- Platform-owned schema -------------------------------------------------
264 >
265 > export type AutoApproveLevel = 'default' | 'assisted' | 'autoApprove';
266 >
267 > export type SessionMode = 'interactive' | 'plan' | 'autopilot';
268 >
269 > export interface IPermissionsValue {
270 > readonly allow: readonly string[];
271 > readonly deny: readonly string[];
272 > }
273 >
274 > const permissionsProperty = schemaProperty<IPermissionsValue>({
275 > type: 'object',
276 > title: localize('agentHost.sessionConfig.permissions', "Permissions"),
277 > description: localize('agentHost.sessionConfig.permissionsDescription', "Per-tool session permissions. Updated automatically when approving a tool \"in this Session\"."),
278 > properties: {
279 > allow: {
280 > type: 'array',
281 > title: localize('agentHost.sessionConfig.permissions.allow', "Allowed tools"),
282 > items: {
283 > type: 'string',
284 > title: localize('agentHost.sessionConfig.permissions.toolName', "Tool name"),
285 > },
286 > },
287 > deny: {
288 > type: 'array',
289 > title: localize('agentHost.sessionConfig.permissions.deny', "Denied tools"),
290 > items: {
291 > type: 'string',
292 > title: localize('agentHost.sessionConfig.permissions.toolName', "Tool name"),
293 > },
294 > },
295 > },
296 > default: { allow: [], deny: [] },
297 > sessionMutable: true,
298 > });
299 >
300 > /**
301 > * Session-config properties owned by the platform itself — i.e. consumed
302 > * by the agent host rather than by any particular agent.
303 > *
304 > * Agents extend this schema by spreading `platformSessionSchema.definition`
305 > * into their own {@link createSchema} call together with any
306 > * provider-specific properties.
307 > */
308 > export const platformSessionSchema = createSchema({
309 > [SessionConfigKey.AutoApprove]: schemaProperty<AutoApproveLevel>({
310 > type: 'string',
311 > title: localize('agentHost.sessionConfig.autoApprove', "Approvals"),
312 > description: localize('agentHost.sessionConfig.autoApproveDescription', "Tool approval behavior for this session"),
313 > enum: ['default', 'assisted', 'autoApprove'],
314 > enumLabels: [
315 > localize('agentHost.sessionConfig.autoApprove.default', "Default approvals"),
316 > localize('agentHost.sessionConfig.autoApprove.assisted', "Assisted permissions"),
317 > localize('agentHost.sessionConfig.autoApprove.bypass', "Allow all"),
318 > ],
319 > enumDescriptions: [
320 > localize('agentHost.sessionConfig.autoApprove.defaultDescription', "Asks when approval settings don't apply"),
321 > localize('agentHost.sessionConfig.autoApprove.assistedDescription', "Evaluates risk before running tools"),
322 > localize('agentHost.sessionConfig.autoApprove.bypassDescription', "Runs tool calls without asking"),
323 > ],
324 > default: 'default',
325 > sessionMutable: true,
326 > }),
327 > [SessionConfigKey.Permissions]: permissionsProperty,
328 > [SessionConfigKey.Mode]: schemaProperty<SessionMode>({
329 > type: 'string',
330 > title: localize('agentHost.sessionConfig.mode', "Agent Mode"),
331 > description: localize('agentHost.sessionConfig.modeDescription', "How the agent should approach this turn"),
332 > enum: ['interactive', 'plan', 'autopilot'],
333 > enumLabels: [
334 > localize('agentHost.sessionConfig.mode.interactive', "Interactive"),
335 > localize('agentHost.sessionConfig.mode.plan', "Plan"),
336 > localize('agentHost.sessionConfig.mode.autopilot', "Autopilot"),
337 > ],
338 > enumDescriptions: [
339 > localize('agentHost.sessionConfig.mode.interactiveDescription', "Step-by-step collaboration"),
340 > localize('agentHost.sessionConfig.mode.planDescription', "Plan first, execute when ready"),
341 > localize('agentHost.sessionConfig.mode.autopilotDescription', "Autonomously iterates from start to finish"),
342 > ],
343 > default: 'interactive',
344 > sessionMutable: true,
345 > }),
346 > });
347 >
348 > /**
349 > * Rewrites a legacy `autoApprove='autopilot'` config value — used before
350 > * Autopilot moved from the `autoApprove` axis onto the orthogonal `mode`
351 > * axis — into the current two-axis shape:
352 > *
353 > * - `autoApprove='autopilot'` + `mode='plan'` → `mode='plan'`, `autoApprove='default'`
354 > * (legacy `plan` took precedence over autopilot when resolving the SDK mode).
355 > * - `autoApprove='autopilot'` + any other mode → `mode='autopilot'`, `autoApprove='default'`.
356 > *
357 > * Returns a shallow copy with the migration applied, or the original
358 > * reference unchanged when no legacy value is present. Safe to call on
359 > * `undefined`.
360 > *
361 > * Without this, a session persisted (or a "remembered" picker value seeded)
362 > * with `autoApprove='autopilot'` would fail the new schema's enum validation
363 > * and silently fall back to `default`, downgrading the session from
364 > * autonomous Autopilot to manual per-tool confirmation.
365 > */
366 > export function migrateLegacyAutopilotConfig<T extends Record<string, unknown> | undefined>(config: T): T {
367 if (!config || config[SessionConfigKey.AutoApprove] !== 'autopilot') {
368 return config;
375 return migrated as T;
376 }
378 > /**
379 > * Root (agent host) config properties owned by the platform itself.
380 > *
381 > * Root config acts as the baseline that applies to every session:
382 > *
383 > * - {@link SessionConfigKey.Permissions} — host-wide allow/deny lists
384 > * unioned with each session's own permissions when evaluating tool
385 > * auto-approval. See `SessionPermissionManager` for the evaluation
386 > * rules.
387 > */
388 > export const AgentHostTelemetryLevelConfigKey = 'telemetryLevel';
389 >
390 > /** Legacy Copilot Chat debug switch that disables `request.repoInfo` collection. */
391 > export const AgentHostDisableRepoInfoTelemetryConfigKey = 'disableRepoInfoTelemetry';
392 >
393 > /** VS Code setting forwarded into {@link AgentHostDisableRepoInfoTelemetryConfigKey}. */
394 > export const DISABLE_REPO_INFO_TELEMETRY_SETTING_ID = 'chat.advanced.debug.disableRepoInfoTelemetry';
395 >
396 > /**
397 > * Root config key forwarded from the renderer when VS Code's
398 > * `chat.sessionSync.enabled` setting changes. Controls the `remote` flag
399 > * passed to the copilot-sdk `CopilotClientOptions`.
400 > */
401 > export const AgentHostSessionSyncEnabledConfigKey = 'sessionSyncEnabled';
402 >
403 > /**
404 > * Root config key forwarded from the renderer carrying the experiment-aware
405 > * value of `chat.agentHost.codexAgent.enabled`. The host registers the Codex
406 > * provider when this is `true`; disabling requires an agent host restart.
407 > */
408 > export const AgentHostCodexEnabledConfigKey = 'codexAgentEnabled';
409 >
410 > /**
411 > * Root config key forwarded from the renderer when VS Code's
412 > * `chat.tools.terminal.enableAutoApprove` setting changes. Controls whether
413 > * agent-host shell permission checks may apply terminal auto-approve rules.
414 > */
415 > export const AgentHostTerminalAutoApproveEnabledConfigKey = 'terminalAutoApproveEnabled';
416 >
417 > /**
418 > * The VS Code setting ID for terminal auto approve enablement. Defined here so
419 > * renderer-side agent-host clients can forward it without importing from
420 > * workbench terminal contributions.
421 > */
422 > export const TERMINAL_AUTO_APPROVE_ENABLED_SETTING_ID = 'chat.tools.terminal.enableAutoApprove';
423 >
424 > /**
425 > * Root config key forwarded from the renderer when VS Code's
426 > * `chat.tools.global.autoApprove` setting changes. When `true`, the global
427 > * auto-approve ("approve everything") setting is enabled and the agent host
428 > * treats every tool call as auto-approved — equivalent to a session running
429 > * with Allow all.
430 > */
431 > export const AgentHostGlobalAutoApproveEnabledConfigKey = 'globalAutoApproveEnabled';
432 >
433 > /**
434 > * The VS Code setting ID for global auto approve. Defined here so renderer-side
435 > * agent-host clients can forward it without importing from `workbench/contrib/chat`.
436 > */
437 > export const GLOBAL_AUTO_APPROVE_SETTING_ID = 'chat.tools.global.autoApprove';
438 >
439 > /**
440 > * Root config key forwarded from the renderer when VS Code's `chat.autoReply`
441 > * setting changes. When `true`, the agent host auto-answers `ask_user`
442 > * questions instead of blocking on the user — the user is treated as
443 > * unavailable and the agent is told to use its best judgment, mirroring the
444 > * behavior of `autopilot` mode.
445 > */
446 > export const AgentHostAutoReplyEnabledConfigKey = 'autoReplyEnabled';
447 >
448 > /**
449 > * The VS Code setting ID for auto-reply. Defined here so renderer-side
450 > * agent-host clients can forward it without importing from `workbench/contrib/chat`.
451 > */
452 > export const AUTO_REPLY_SETTING_ID = 'chat.autoReply';
453 >
454 > // Root config key forwarded from the renderer when Copilot Chat's `github.copilot.chat.preferLongContext.enabled` setting changes.
455 > export const AgentHostPreferLongContextEnabledConfigKey = 'preferLongContextEnabled';
456 >
457 > // The Copilot Chat setting ID for preferring long context, forwarded into the agent host root config.
458 > export const PREFER_LONG_CONTEXT_SETTING_ID = 'github.copilot.chat.preferLongContext.enabled';
459 >
460 > /** Root config key forwarded from the renderer for automatic OS system proxy discovery. */
461 > export const AgentHostSystemProxyEnabledConfigKey = 'systemProxyEnabled';
462 >
463 > /**
464 > * Root config key forwarded from the renderer when VS Code's
465 > * `chat.tools.terminal.autoApprove` setting changes. Holds the effective
466 > * terminal auto-approve rule object for agent-host shell permission checks.
467 > */
468 > export const AgentHostTerminalAutoApproveRulesConfigKey = 'terminalAutoApproveRules';
469 >
470 > export interface IAgentHostTerminalAutoApproveRule {
471 > readonly approve: boolean;
472 > readonly matchCommandLine?: boolean;
473 > }
474 >
475 > export type AgentHostTerminalAutoApproveRuleValue = boolean | null | IAgentHostTerminalAutoApproveRule;
476 > export type AgentHostTerminalAutoApproveRules = Record<string, AgentHostTerminalAutoApproveRuleValue>;
477 >
478 > /**
479 > * The VS Code setting IDs for terminal auto approve rules. Defined here so
480 > * renderer-side agent-host clients can forward them without importing from
481 > * workbench terminal contributions.
482 > */
483 > export const TERMINAL_AUTO_APPROVE_SETTING_ID = 'chat.tools.terminal.autoApprove';
484 > export const TERMINAL_IGNORE_DEFAULT_AUTO_APPROVE_RULES_SETTING_ID = 'chat.tools.terminal.ignoreDefaultAutoApproveRules';
485 >
486 > export function getAgentHostTerminalAutoApproveRulesConfig(configurationService: IConfigurationService): AgentHostTerminalAutoApproveRules {
487 const config = configurationService.getValue<AgentHostTerminalAutoApproveRules | undefined>(TERMINAL_AUTO_APPROVE_SETTING_ID);
488 const configInspectValue = configurationService.inspect<Readonly<AgentHostTerminalAutoApproveRules>>(TERMINAL_AUTO_APPROVE_SETTING_ID);
490 return normalizeAgentHostTerminalAutoApproveRulesConfig(config, configInspectValue, ignoreDefaults);
491 }
493 > export function normalizeAgentHostTerminalAutoApproveRulesConfig(config: AgentHostTerminalAutoApproveRules | undefined, configInspectValue: IConfigurationValue<Readonly<AgentHostTerminalAutoApproveRules>>, ignoreDefaults: boolean): AgentHostTerminalAutoApproveRules {
494 if (!config) {
495 return {};
505 return rules;
506 }
508 function isDefaultOnlyAutoApproveRule(key: string, value: AgentHostTerminalAutoApproveRuleValue, configInspectValue: IConfigurationValue<Readonly<AgentHostTerminalAutoApproveRules>>): boolean {
509 const defaultValue = configInspectValue.default?.value;
517 return sourceTarget === ConfigurationTarget.DEFAULT;
518 }
520 function getAutoApproveRuleSourceTarget(key: string, value: AgentHostTerminalAutoApproveRuleValue, configInspectValue: IConfigurationValue<Readonly<AgentHostTerminalAutoApproveRules>>): ConfigurationTarget {
521 if (hasMatchingRule(configInspectValue.workspaceFolderValue, key, value)) {
539 return ConfigurationTarget.DEFAULT;
540 }
542 function hasMatchingRule(config: Readonly<AgentHostTerminalAutoApproveRules> | undefined, key: string, value: AgentHostTerminalAutoApproveRuleValue): boolean {
543 return !!config && Object.prototype.hasOwnProperty.call(config, key) && structuralEquals(config[key], value);
544 }
546 > /**
547 > * Root config key holding agent-host-level MCP server definitions.
548 > *
549 > * The value is a map of server name → {@link IMcpServerConfiguration}
550 > * (the same `servers` shape used by `mcp.json`). These servers are
551 > * exposed to every session created by the host, merged with any
552 > * plugin-provided MCP servers when launching the copilot-sdk client.
553 > */
554 > export const AgentHostMcpServersConfigKey = 'mcpServers';
555 >
556 > /**
557 > * Map of server name → MCP server configuration, as stored in the
558 > * {@link AgentHostMcpServersConfigKey} root config value.
559 > */
560 > export type AgentHostMcpServers = Record<string, IMcpServerConfiguration>;
561 >
562 > /**
563 > * The VS Code setting ID for session sync. Defined here so the platform
564 > * layer (renderer-side forwarding) can reference it without importing from
565 > * `workbench/contrib/chat`.
566 > */
567 > export const SESSION_SYNC_ENABLED_SETTING_ID = 'chat.sessionSync.enabled';
568 >
569 > export function telemetryLevelToAgentHostConfigValue(telemetryLevel: TelemetryLevel): TelemetryConfiguration {
570 > switch (telemetryLevel) { agentHostSchema.ts
571 > case TelemetryLevel.NONE:
572 return TelemetryConfiguration.OFF;
573 > case TelemetryLevel.CRASH: agentHostSchema.ts
574 return TelemetryConfiguration.CRASH;
575 > case TelemetryLevel.ERROR: agentHostSchema.ts
576 return TelemetryConfiguration.ERROR;
577 > case TelemetryLevel.USAGE: agentHostSchema.ts
578 > return TelemetryConfiguration.ON; agentHostSchema.ts
580 > }
582 > export function agentHostConfigValueToTelemetryLevel(value: unknown): TelemetryLevel | undefined {
583 switch (value) {
584 case TelemetryConfiguration.OFF:
594 }
595 }
597 > /**
598 > * Field descriptors for a single MCP server entry, shared by the stdio and
599 > * http shapes. The agent-host config schema has no `oneOf`, so both variants'
600 > * fields are described together; `type` selects which fields apply
601 > * (`stdio` uses `command`/`args`/`env`/`cwd`, `http` uses `url`/`headers`).
602 > */
603 > const mcpServerConfigProperties: Record<string, SessionConfigPropertySchema> = {
604 > type: {
605 > type: 'string',
606 > title: localize('agentHost.config.mcpServers.type.title', "Server Type"),
607 > description: localize('agentHost.config.mcpServers.type.description', "The transport used to reach the server: `stdio` for a local command, `http` for a remote endpoint."),
608 > enum: ['stdio', 'http'],
609 > },
610 > command: {
611 > type: 'string',
612 > title: localize('agentHost.config.mcpServers.command.title', "Command"),
613 > description: localize('agentHost.config.mcpServers.command.description', "For `stdio` servers, the executable to spawn."),
614 > },
615 > args: {
616 > type: 'array',
617 > title: localize('agentHost.config.mcpServers.args.title', "Arguments"),
618 > description: localize('agentHost.config.mcpServers.args.description', "For `stdio` servers, the arguments passed to the command."),
619 > items: { type: 'string', title: localize('agentHost.config.mcpServers.arg.title', "Argument") },
620 > },
621 > env: {
622 > type: 'object',
623 > title: localize('agentHost.config.mcpServers.env.title', "Environment"),
624 > description: localize('agentHost.config.mcpServers.env.description', "For `stdio` servers, environment variables set on the spawned process."),
625 > },
626 > cwd: {
627 > type: 'string',
628 > title: localize('agentHost.config.mcpServers.cwd.title', "Working Directory"),
629 > description: localize('agentHost.config.mcpServers.cwd.description', "For `stdio` servers, the working directory the command runs in."),
630 > },
631 > url: {
632 > type: 'string',
633 > title: localize('agentHost.config.mcpServers.url.title', "URL"),
634 > description: localize('agentHost.config.mcpServers.url.description', "For `http` servers, the endpoint URL of the MCP server."),
635 > },
636 > headers: {
637 > type: 'object',
638 > title: localize('agentHost.config.mcpServers.headers.title', "Headers"),
639 > description: localize('agentHost.config.mcpServers.headers.description', "For `http` servers, HTTP headers sent with every request."),
640 > },
641 > };
642 >
643 > /**
644 > * Documents the value shape of the {@link AgentHostMcpServersConfigKey} map.
645 > *
646 > * The config value is a map of server name → server config. The schema
647 > * language has no `additionalProperties`, so the per-entry shape is attached
648 > * under a placeholder key (`<serverName>`) rather than at the map level —
649 > * this keeps the field descriptions discoverable without the runtime
650 > * validator mistaking a real server named e.g. `command` for the `command`
651 > * field. Real entries (keyed by actual server names) are passed through.
652 > */
653 > const mcpServersValueProperties: Record<string, SessionConfigPropertySchema> = {
654 > '<serverName>': {
655 > type: 'object',
656 > title: localize('agentHost.config.mcpServers.entry.title', "MCP Server"),
657 > description: localize('agentHost.config.mcpServers.entry.description', "A single MCP server entry. The property key is the server name."),
658 > properties: mcpServerConfigProperties,
659 > },
660 > };
661 >
662 > export const platformRootSchema = createSchema({
663 > [SessionConfigKey.Permissions]: permissionsProperty,
664 > [AgentHostDisableRepoInfoTelemetryConfigKey]: schemaProperty<boolean>({
665 > type: 'boolean',
666 > title: localize('agentHost.config.disableRepoInfoTelemetry.title', "Disable Repository Information Telemetry"),
667 > description: localize('agentHost.config.disableRepoInfoTelemetry.description', "Whether repository information telemetry is disabled for Agent Host sessions."),
668 > default: false,
669 > }),
670 > [AgentHostTelemetryLevelConfigKey]: schemaProperty<TelemetryConfiguration>({
671 > type: 'string',
672 > title: localize('agentHost.config.telemetryLevel.title', "Telemetry Level"),
673 > description: localize('agentHost.config.telemetryLevel.description', "Most restrictive telemetry level requested by connected clients."),
674 > enum: [TelemetryConfiguration.ON, TelemetryConfiguration.ERROR, TelemetryConfiguration.CRASH, TelemetryConfiguration.OFF],
675 > default: TelemetryConfiguration.ON,
676 > }),
677 > [AgentHostSessionSyncEnabledConfigKey]: schemaProperty<boolean>({
678 > type: 'boolean',
679 > title: localize('agentHost.config.sessionSyncEnabled.title', "Session Sync"),
680 > description: localize('agentHost.config.sessionSyncEnabled.description', "Whether remote session sync is enabled for the copilot-sdk CLI."),
681 > default: false,
682 > }),
683 > [AgentHostCodexEnabledConfigKey]: schemaProperty<boolean>({
684 > type: 'boolean',
685 > title: localize('agentHost.config.codexAgentEnabled.title', "Codex Agent"),
686 > description: localize('agentHost.config.codexAgentEnabled.description', "Whether the Codex provider is enabled."),
687 > default: false,
688 > }),
689 > [AgentHostTerminalAutoApproveEnabledConfigKey]: schemaProperty<boolean>({
690 > type: 'boolean',
691 > title: localize('agentHost.config.terminalAutoApproveEnabled.title', "Terminal Auto Approve"),
692 > description: localize('agentHost.config.terminalAutoApproveEnabled.description', "Whether terminal auto-approve rules forwarded by the connected client are allowed to apply to agent-host shell permission requests."),
693 > default: true,
694 > }),
695 > [AgentHostGlobalAutoApproveEnabledConfigKey]: schemaProperty<boolean>({
696 > type: 'boolean',
697 > title: localize('agentHost.config.globalAutoApproveEnabled.title', "Global Auto Approve"),
698 > description: localize('agentHost.config.globalAutoApproveEnabled.description', "Whether VS Code's global auto-approve setting is enabled. When `true`, every tool call is auto-approved, equivalent to a session using Allow all."),
699 > default: false,
700 > }),
701 > [AgentHostAutoReplyEnabledConfigKey]: schemaProperty<boolean>({
702 > type: 'boolean',
703 > title: localize('agentHost.config.autoReplyEnabled.title', "Auto Reply"),
704 > description: localize('agentHost.config.autoReplyEnabled.description', "Whether VS Code's auto-reply setting is enabled. When `true`, `ask_user` questions are auto-answered instead of blocking on the user, mirroring autopilot mode."),
705 > default: false,
706 > }),
707 > [AgentHostPreferLongContextEnabledConfigKey]: schemaProperty<boolean>({
708 > type: 'boolean',
709 > title: localize('agentHost.config.preferLongContextEnabled.title', "Prefer Long Context"),
710 > description: localize('agentHost.config.preferLongContextEnabled.description', "Whether Copilot Chat's prefer-long-context setting is enabled. When `true`, models with a free long context window only show the long context option in the picker. When `false` (default), the smaller default context option stays selectable."),
711 > default: false,
712 > }),
713 > [AgentHostSystemProxyEnabledConfigKey]: schemaProperty<boolean>({
714 > type: 'boolean',
715 > title: localize('agentHost.config.systemProxyEnabled.title', "System Proxy Discovery"),
716 > description: localize('agentHost.config.systemProxyEnabled.description', "Whether Copilot sessions automatically discover and use the operating system's proxy configuration."),
717 > default: true,
718 > }),
719 > [AgentHostTerminalAutoApproveRulesConfigKey]: schemaProperty<AgentHostTerminalAutoApproveRules>({
720 > type: 'object',
721 > title: localize('agentHost.config.terminalAutoApproveRules.title', "Terminal Auto Approve Rules"),
722 > description: localize('agentHost.config.terminalAutoApproveRules.description', "Terminal auto-approve rules forwarded by the connected client for agent-host shell permission checks."),
723 > default: {},
724 > }),
725 > [AgentHostMcpServersConfigKey]: schemaProperty<AgentHostMcpServers>({
726 > type: 'object',
727 > title: localize('agentHost.config.mcpServers.title', "MCP Servers"),
728 > description: localize('agentHost.config.mcpServers.description', "Agent-host-level MCP servers exposed to every session, keyed by server name. Each value is a server configuration (see `<serverName>`)."),
729 > properties: mcpServersValueProperties,
730 > default: {},
731 > }),
732 > });
src/vs/base/common/lifecycle.ts 561 covered LOC · 129 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- lifecycle.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { compareBy, numberComparator } from './arrays.js';
7 > import { groupBy } from './collections.js';
8 > import { SetMap, ResourceMap } from './map.js';
9 > import { URI } from './uri.js';
10 > import { createSingleCallFunction } from './functional.js';
11 > import { Iterable } from './iterator.js';
12 > import { BugIndicatingError, onUnexpectedError } from './errors.js';
13 >
14 > // #region Disposable Tracking
15 >
16 > /**
17 > * Enables logging of potentially leaked disposables.
18 > *
19 > * A disposable is considered leaked if it is not disposed or not registered as the child of
20 > * another disposable. This tracking is very simple an only works for classes that either
21 > * extend Disposable or use a DisposableStore. This means there are a lot of false positives.
22 > */
23 > const TRACK_DISPOSABLES = false;
24 > let disposableTracker: IDisposableTracker | null = null;
25 >
26 > export interface IDisposableTracker {
27 > /**
28 > * Is called on construction of a disposable.
29 > */
30 > trackDisposable(disposable: IDisposable): void;
31 >
32 > /**
33 > * Is called when a disposable is registered as child of another disposable (e.g. {@link DisposableStore}).
34 > * If parent is `null`, the disposable is removed from its former parent.
35 > */
36 > setParent(child: IDisposable, parent: IDisposable | null): void;
37 >
38 > /**
39 > * Is called after a disposable is disposed.
40 > */
41 > markAsDisposed(disposable: IDisposable): void;
42 >
43 > /**
44 > * Indicates that the given object is a singleton which does not need to be disposed.
45 > */
46 > markAsSingleton(disposable: IDisposable): void;
47 > }
48 >
49 > export class GCBasedDisposableTracker implements IDisposableTracker {
50
51 private readonly _registry = new FinalizationRegistry<string>(heldValue => {
52 console.warn(`[LEAKED DISPOSABLE] ${heldValue}`);
53 });
55 > trackDisposable(disposable: IDisposable): void {
56 const stack = new Error('CREATED via:').stack!;
57 this._registry.register(disposable, stack, disposable);
58 }
60 > setParent(child: IDisposable, parent: IDisposable | null): void {
61 if (parent) {
62 this._registry.unregister(child);
65 }
66 }
68 > markAsDisposed(disposable: IDisposable): void {
69 this._registry.unregister(disposable);
70 }
72 > markAsSingleton(disposable: IDisposable): void {
73 this._registry.unregister(disposable);
74 }
75 > } lifecycle.ts
76 >
77 > export interface DisposableInfo {
78 > value: IDisposable;
79 > source: string | null;
80 > parent: IDisposable | null;
81 > isSingleton: boolean;
82 > idx: number;
83 > }
84 >
85 > export class DisposableTracker implements IDisposableTracker {
86 > private static idx = 0; lifecycle.ts
87 >
88 > private readonly livingDisposables = new Map<IDisposable, DisposableInfo>();
90 > private getDisposableData(d: IDisposable): DisposableInfo {
91 > let val = this.livingDisposables.get(d); lifecycle.ts
92 > if (!val) {
93 > val = { parent: null, source: null, isSingleton: false, value: d, idx: DisposableTracker.idx++ };
94 > this.livingDisposables.set(d, val);
95 > }
96 > return val;
97 > }
99 > trackDisposable(d: IDisposable): void {
100 > const data = this.getDisposableData(d); lifecycle.ts
101 > if (!data.source) {
102 > data.source =
103 > new Error().stack!;
104 > }
105 > }
106 > lifecycle.ts
107 > setParent(child: IDisposable, parent: IDisposable | null): void {
108 > const data = this.getDisposableData(child); lifecycle.ts
109 > data.parent = parent;
110 > }
111 > lifecycle.ts
112 > markAsDisposed(x: IDisposable): void {
113 > this.livingDisposables.delete(x); lifecycle.ts
114 > }
115 > lifecycle.ts
116 > markAsSingleton(disposable: IDisposable): void {
117 this.getDisposableData(disposable).isSingleton = true;
118 }
119 > lifecycle.ts
120 > private getRootParent(data: DisposableInfo, cache: Map<DisposableInfo, DisposableInfo>): DisposableInfo {
121 const cacheValue = cache.get(data);
122 if (cacheValue) {
128 return result;
129 }
130 > lifecycle.ts
131 > getTrackedDisposables(): IDisposable[] {
132 const rootParentCache = new Map<DisposableInfo, DisposableInfo>();
133
138 return leaking;
139 }
140 > lifecycle.ts
141 > computeLeakingDisposables(maxReported = 10, preComputedLeaks?: DisposableInfo[]): { leaks: DisposableInfo[]; details: string } | undefined {
142 > let uncoveredLeakingObjs: DisposableInfo[] | undefined; lifecycle.ts
143 > if (preComputedLeaks) {
144 uncoveredLeakingObjs = preComputedLeaks;
145 > } else { lifecycle.ts
146 > const rootParentCache = new Map<DisposableInfo, DisposableInfo>();
147 >
148 > const leakingObjects = [...this.livingDisposables.values()]
149 > .filter((info) => info.source !== null && !this.getRootParent(info, rootParentCache).isSingleton);
150 >
151 > if (leakingObjects.length === 0) {
152 > return; lifecycle.ts
153 > }
154 const leakingObjsSet = new Set(leakingObjects.map(o => o.value));
155
162 throw new Error('There are cyclic diposable chains!');
163 }
164 > } lifecycle.ts
165
166 if (!uncoveredLeakingObjs) {
224
225 return { leaks: uncoveredLeakingObjs, details: message };
226 > } lifecycle.ts
227 > } lifecycle.ts
228 >
229 > export function setDisposableTracker(tracker: IDisposableTracker | null): void {
230 > disposableTracker = tracker; lifecycle.ts
231 > }
232 > lifecycle.ts
233 > if (TRACK_DISPOSABLES) {
234 const __is_disposable_tracked__ = '__is_disposable_tracked__';
235 setDisposableTracker(new class implements IDisposableTracker {
268 });
269 }
270 > lifecycle.ts
271 > export function trackDisposable<T extends IDisposable>(x: T): T {
272 > disposableTracker?.trackDisposable(x); lifecycle.ts
273 > return x;
274 > }
275 > lifecycle.ts
276 > export function markAsDisposed(disposable: IDisposable): void {
277 > disposableTracker?.markAsDisposed(disposable); lifecycle.ts
278 > }
279 > lifecycle.ts
280 > function setParentOfDisposable(child: IDisposable, parent: IDisposable | null): void { lifecycle.ts
281 > disposableTracker?.setParent(child, parent);
282 > }
283 > lifecycle.ts
284 function setParentOfDisposables(children: IDisposable[], parent: IDisposable | null): void {
285 if (!disposableTracker) {
290 }
291 }
292 > lifecycle.ts
293 > /**
294 > * Indicates that the given object is a singleton which does not need to be disposed.
295 > */
296 > export function markAsSingleton<T extends IDisposable>(singleton: T): T {
297 disposableTracker?.markAsSingleton(singleton);
298 return singleton;
299 }
300 > lifecycle.ts
301 > // #endregion
302 >
303 > /**
304 > * An object that performs a cleanup operation when `.dispose()` is called.
305 > *
306 > * Some examples of how disposables are used:
307 > *
308 > * - An event listener that removes itself when `.dispose()` is called.
309 > * - A resource such as a file system watcher that cleans up the resource when `.dispose()` is called.
310 > * - The return value from registering a provider. When `.dispose()` is called, the provider is unregistered.
311 > */
312 > export interface IDisposable {
313 > dispose(): void;
314 > }
315 >
316 > /**
317 > * Check if `thing` is {@link IDisposable disposable}.
318 > */
319 > export function isDisposable<E>(thing: E): thing is E & IDisposable {
320 // eslint-disable-next-line local/code-no-any-casts
321 return typeof thing === 'object' && thing !== null && typeof (<IDisposable><any>thing).dispose === 'function' && (<IDisposable><any>thing).dispose.length === 0;
322 }
323 > lifecycle.ts
324 > /**
325 > * Disposes of the value(s) passed in.
326 > */
327 > export function dispose<T extends IDisposable>(disposable: T): T;
328 > export function dispose<T extends IDisposable>(disposable: T | undefined): T | undefined;
329 > export function dispose<T extends IDisposable, A extends Iterable<T> = Iterable<T>>(disposables: A): A;
330 > export function dispose<T extends IDisposable>(disposables: Array<T>): Array<T>;
331 > export function dispose<T extends IDisposable>(disposables: ReadonlyArray<T>): ReadonlyArray<T>;
332 > export function dispose<T extends IDisposable>(arg: T | Iterable<T> | undefined): any {
333 > if (Iterable.is(arg)) { lifecycle.ts
334 > const errors: any[] = []; lifecycle.ts
335 >
336 > for (const d of arg) {
337 > if (d) { lifecycle.ts
338 > try {
339 > d.dispose();
340 > } catch (e) {
341 errors.push(e);
342 }
343 > } lifecycle.ts
344 > }
345 > lifecycle.ts
346 > if (errors.length === 1) {
347 throw errors[0];
348 > } else if (errors.length > 1) { lifecycle.ts
349 throw new AggregateError(errors, 'Encountered errors while disposing of store');
350 }
351 > lifecycle.ts
352 > return Array.isArray(arg) ? [] : arg; lifecycle.ts
353 > } else if (arg) { lifecycle.ts
354 arg.dispose();
355 return arg;
356 }
357 > } lifecycle.ts
358 > lifecycle.ts
359 > export function disposeIfDisposable<T extends IDisposable | object>(disposables: Array<T>): Array<T> {
360 for (const d of disposables) {
361 if (isDisposable(d)) {
365 return [];
366 }
367 > lifecycle.ts
368 > /**
369 > * Combine multiple disposable values into a single {@link IDisposable}.
370 > */
371 > export function combinedDisposable(...disposables: IDisposable[]): IDisposable {
372 const parent = toDisposable(() => dispose(disposables));
373 setParentOfDisposables(disposables, parent);
374 return parent;
375 }
376 > lifecycle.ts
377 > class FunctionDisposable implements IDisposable {
378 > private _isDisposed: boolean;
379 > private readonly _fn: () => void;
380 >
381 > constructor(fn: () => void) {
382 > this._isDisposed = false; lifecycle.ts
383 > this._fn = fn;
384 > trackDisposable(this);
385 > }
386 > lifecycle.ts
387 > dispose() {
388 > if (this._isDisposed) { lifecycle.ts
389 return;
390 }
391 > if (!this._fn) { lifecycle.ts
392 throw new Error(`Unbound disposable context: Need to use an arrow function to preserve the value of this`);
393 }
394 > this._isDisposed = true; lifecycle.ts
395 > markAsDisposed(this);
396 > this._fn();
397 > }
398 > } lifecycle.ts
399 >
400 > /**
401 > * Turn a function that implements dispose into an {@link IDisposable}.
402 > *
403 > * @param fn Clean up function, guaranteed to be called only **once**.
404 > */
405 > export function toDisposable(fn: () => void): IDisposable {
406 > return new FunctionDisposable(fn); lifecycle.ts
407 > }
408 > lifecycle.ts
409 > /**
410 > * Manages a collection of disposable values.
411 > *
412 > * This is the preferred way to manage multiple disposables. A `DisposableStore` is safer to work with than an
413 > * `IDisposable[]` as it considers edge cases, such as registering the same value multiple times or adding an item to a
414 > * store that has already been disposed of.
415 > */
416 > export class DisposableStore implements IDisposable {
417 >
418 > static DISABLE_DISPOSED_WARNING = false;
419 >
420 > private readonly _toDispose = new Set<IDisposable>();
421 > private _isDisposed = false;
422 >
423 > constructor() {
424 > trackDisposable(this); lifecycle.ts
425 > }
426 > lifecycle.ts
427 > /**
428 > * Dispose of all registered disposables and mark this object as disposed.
429 > *
430 > * Any future disposables added to this object will be disposed of on `add`.
431 > */
432 > public dispose(): void {
433 > if (this._isDisposed) { lifecycle.ts
434 return;
435 }
436 > lifecycle.ts
437 > markAsDisposed(this);
438 > this._isDisposed = true;
439 > this.clear();
440 > }
441 > lifecycle.ts
442 > /**
443 > * @return `true` if this object has been disposed of.
444 > */
445 > public get isDisposed(): boolean {
446 return this._isDisposed;
447 }
448 > lifecycle.ts
449 > /**
450 > * Dispose of all registered disposables but do not mark this object as disposed.
451 > */
452 > public clear(): void {
453 > if (this._toDispose.size === 0) { lifecycle.ts
454 > return; lifecycle.ts
455 > }
456 > lifecycle.ts
457 > try {
458 > dispose(this._toDispose);
459 > } finally {
460 > this._toDispose.clear();
461 > }
462 > } lifecycle.ts
463 > lifecycle.ts
464 > /**
465 > * Add a new {@link IDisposable disposable} to the collection.
466 > */
467 > public add<T extends IDisposable>(o: T): T {
468 > if (!o || o === Disposable.None) { lifecycle.ts
469 return o;
470 }
471 > if ((o as unknown as DisposableStore) === this) { lifecycle.ts
472 throw new Error('Cannot register a disposable on itself!');
473 }
474 > lifecycle.ts
475 > setParentOfDisposable(o, this);
476 > if (this._isDisposed) {
477 if (!DisposableStore.DISABLE_DISPOSED_WARNING) {
478 console.warn(new Error('Trying to add a disposable to a DisposableStore that has already been disposed of. The added object will be leaked!').stack);
479 }
480 > } else { lifecycle.ts
481 > this._toDispose.add(o);
482 > }
483 >
484 > return o;
485 > } lifecycle.ts
486 > lifecycle.ts
487 > /**
488 > * Deletes a disposable from store and disposes of it. This will not throw or warn and proceed to dispose the
489 > * disposable even when the disposable is not part in the store.
490 > */
491 > public delete<T extends IDisposable>(o: T): void {
492 if (!o) {
493 return;
499 o.dispose();
500 }
501 > lifecycle.ts
502 > /**
503 > * Deletes the value from the store, but does not dispose it.
504 > */
505 > public deleteAndLeak<T extends IDisposable>(o: T): void {
506 if (!o) {
507 return;
511 }
512 }
513 > lifecycle.ts
514 > public assertNotDisposed(): void {
515 if (this._isDisposed) {
516 onUnexpectedError(new BugIndicatingError('Object disposed'));
517 }
518 }
519 > } lifecycle.ts
520 >
521 > /**
522 > * Abstract base class for a {@link IDisposable disposable} object.
523 > *
524 > * Subclasses can {@linkcode _register} disposables that will be automatically cleaned up when this object is disposed of.
525 > */
526 > export abstract class Disposable implements IDisposable {
527 >
528 > /**
529 > * A disposable that does nothing when it is disposed of.
530 > *
531 > * TODO: This should not be a static property.
532 > */
533 > static readonly None = Object.freeze<IDisposable>({ dispose() { } });
534 >
535 > protected readonly _store = new DisposableStore();
536 >
537 > constructor() {
538 > trackDisposable(this); lifecycle.ts
539 > setParentOfDisposable(this._store, this);
540 > }
541 > lifecycle.ts
542 > public dispose(): void {
543 > markAsDisposed(this); lifecycle.ts
544 >
545 > this._store.dispose();
546 > }
547 > lifecycle.ts
548 > /**
549 > * Adds `o` to the collection of disposables managed by this object.
550 > */
551 > protected _register<T extends IDisposable>(o: T): T {
552 > if ((o as unknown as Disposable) === this) { lifecycle.ts
553 throw new Error('Cannot register a disposable on itself!');
554 }
555 > return this._store.add(o); lifecycle.ts
556 > }
557 > } lifecycle.ts
558 >
559 > /**
560 > * Manages the lifecycle of a disposable value that may be changed.
561 > *
562 > * This ensures that when the disposable value is changed, the previously held disposable is disposed of. You can
563 > * also register a `MutableDisposable` on a `Disposable` to ensure it is automatically cleaned up.
564 > */
565 > export class MutableDisposable<T extends IDisposable> implements IDisposable {
566 > private _value?: T;
567 > private _isDisposed = false;
568 >
569 > constructor() {
570 > trackDisposable(this); lifecycle.ts
571 > }
572 > lifecycle.ts
573 > /**
574 > * Get the currently held disposable value, or `undefined` if this MutableDisposable has been disposed
575 > */
576 > get value(): T | undefined {
577 return this._isDisposed ? undefined : this._value;
578 }
579 > lifecycle.ts
580 > /**
581 > * Set a new disposable value.
582 > *
583 > * Behaviour:
584 > * - If the MutableDisposable has been disposed, the setter is a no-op.
585 > * - If the new value is strictly equal to the current value, the setter is a no-op.
586 > * - Otherwise the previous value (if any) is disposed and the new value is stored.
587 > *
588 > * Related helpers:
589 > * - clear() resets the value to `undefined` (and disposes the previous value).
590 > * - clearAndLeak() returns the old value without disposing it and removes its parent.
591 > */
592 > set value(value: T | undefined) {
593 if (this._isDisposed || value === this._value) {
594 return;
601 this._value = value;
602 }
603 > lifecycle.ts
604 > /**
605 > * Resets the stored value and disposed of the previously stored value.
606 > */
607 > clear(): void {
608 this.value = undefined;
609 }
610 > lifecycle.ts
611 > dispose(): void {
612 > this._isDisposed = true; lifecycle.ts
613 > markAsDisposed(this);
614 > this._value?.dispose();
615 > this._value = undefined;
616 > }
617 > lifecycle.ts
618 > /**
619 > * Clears the value, but does not dispose it.
620 > * The old value is returned.
621 > */
622 > clearAndLeak(): T | undefined {
623 const oldValue = this._value;
624 this._value = undefined;
628 return oldValue;
629 }
630 > } lifecycle.ts
631 >
632 > /**
633 > * Manages the lifecycle of a disposable value that may be changed like {@link MutableDisposable}, but the value must
634 > * exist and cannot be undefined.
635 > */
636 > export class MandatoryMutableDisposable<T extends IDisposable> implements IDisposable {
637 > private readonly _disposable = new MutableDisposable<T>();
638 > private _isDisposed = false;
639 >
640 > constructor(initialValue: T) {
641 this._disposable.value = initialValue;
642 }
643 > lifecycle.ts
644 > get value(): T {
645 return this._disposable.value!;
646 }
647 > lifecycle.ts
648 > set value(value: T) {
649 if (this._isDisposed || value === this._disposable.value) {
650 return;
652 this._disposable.value = value;
653 }
654 > lifecycle.ts
655 > dispose() {
656 this._isDisposed = true;
657 this._disposable.dispose();
658 }
659 > } lifecycle.ts
660 >
661 > export class RefCountedDisposable {
662 >
663 > private _counter: number = 1;
664 >
665 > constructor(
666 private readonly _disposable: IDisposable,
667 ) { }
668 > lifecycle.ts
669 > acquire() {
670 this._counter++;
671 return this;
672 }
673 > lifecycle.ts
674 > release() {
675 if (--this._counter === 0) {
676 this._disposable.dispose();
678 return this;
679 }
680 > } lifecycle.ts
681 >
682 > export interface IReference<T> extends IDisposable {
683 > readonly object: T;
684 > }
685 >
686 > export abstract class ReferenceCollection<T> {
687
688 private readonly references: Map<string, { readonly object: T; counter: number }> = new Map();
689 > lifecycle.ts
690 > acquire(key: string, ...args: unknown[]): IReference<T> {
691 let reference = this.references.get(key);
692
708 return { object, dispose };
709 }
710 > lifecycle.ts
711 > protected abstract createReferencedObject(key: string, ...args: unknown[]): T;
712 > protected abstract destroyReferencedObject(key: string, object: T): void;
713 > }
714 >
715 > /**
716 > * Unwraps a reference collection of promised values. Makes sure
717 > * references are disposed whenever promises get rejected.
718 > */
719 > export class AsyncReferenceCollection<T> {
720 >
721 > constructor(private referenceCollection: ReferenceCollection<Promise<T>>) { }
722 >
723 > async acquire(key: string, ...args: unknown[]): Promise<IReference<T>> {
724 const ref = this.referenceCollection.acquire(key, ...args);
725
736 }
737 }
738 > } lifecycle.ts
739 >
740 > export class ImmortalReference<T> implements IReference<T> {
741 > constructor(public object: T) { }
742 > dispose(): void { /* noop */ }
743 > }
744 >
745 > export function disposeOnReturn(fn: (store: DisposableStore) => void): void {
746 const store = new DisposableStore();
747 try {
751 }
752 }
753 > lifecycle.ts
754 > /**
755 > * A map the manages the lifecycle of the values that it stores.
756 > */
757 > export class DisposableMap<K, V extends IDisposable = IDisposable> implements IDisposable {
758 >
759 > private readonly _store: Map<K, V>;
760 > private _isDisposed = false;
761 >
762 > constructor(store: Map<K, V> = new Map<K, V>()) {
763 this._store = store;
764 trackDisposable(this);
765 }
766 > lifecycle.ts
767 > /**
768 > * Disposes of all stored values and mark this object as disposed.
769 > *
770 > * Trying to use this object after it has been disposed of is an error.
771 > */
772 > dispose(): void {
773 markAsDisposed(this);
774 this._isDisposed = true;
775 this.clearAndDisposeAll();
776 }
777 > lifecycle.ts
778 > /**
779 > * Disposes of all stored values and clear the map, but DO NOT mark this object as disposed.
780 > */
781 > clearAndDisposeAll(): void {
782 if (!this._store.size) {
783 return;
790 }
791 }
792 > lifecycle.ts
793 > has(key: K): boolean {
794 return this._store.has(key);
795 }
796 > lifecycle.ts
797 > get size(): number {
798 return this._store.size;
799 }
800 > lifecycle.ts
801 > get(key: K): V | undefined {
802 return this._store.get(key);
803 }
804 > lifecycle.ts
805 > set(key: K, value: V, skipDisposeOnOverwrite = false): void {
806 if (this._isDisposed) {
807 console.warn(new Error('Trying to add a disposable to a DisposableMap that has already been disposed of. The added object will be leaked!').stack);
815 setParentOfDisposable(value, this);
816 }
817 > lifecycle.ts
818 > /**
819 > * Delete the value stored for `key` from this map and also dispose of it.
820 > */
821 > deleteAndDispose(key: K): void {
822 this._store.get(key)?.dispose();
823 this._store.delete(key);
824 }
825 > lifecycle.ts
826 > /**
827 > * Delete the value stored for `key` from this map but return it. The caller is
828 > * responsible for disposing of the value.
829 > */
830 > deleteAndLeak(key: K): V | undefined {
831 const value = this._store.get(key);
832 if (value) {
836 return value;
837 }
838 > lifecycle.ts
839 > keys(): IterableIterator<K> {
840 return this._store.keys();
841 }
842 > lifecycle.ts
843 > values(): IterableIterator<V> {
844 return this._store.values();
845 }
846 > lifecycle.ts
847 > [Symbol.iterator](): IterableIterator<[K, V]> {
848 return this._store[Symbol.iterator]();
849 }
850 > } lifecycle.ts
851 >
852 > /**
853 > * A set that manages the lifecycle of the values that it stores.
854 > */
855 > export class DisposableSet<V extends IDisposable = IDisposable> implements IDisposable {
856 >
857 > private readonly _store: Set<V>;
858 > private _isDisposed = false;
859 >
860 > constructor(store: Set<V> = new Set<V>()) {
861 this._store = store;
862 trackDisposable(this);
863 }
864 > lifecycle.ts
865 > /**
866 > * Disposes of all stored values and mark this object as disposed.
867 > *
868 > * Trying to use this object after it has been disposed of is an error.
869 > */
870 > dispose(): void {
871 markAsDisposed(this);
872 this._isDisposed = true;
873 this.clearAndDisposeAll();
874 }
875 > lifecycle.ts
876 > /**
877 > * Disposes of all stored values and clear the set, but DO NOT mark this object as disposed.
878 > */
879 > clearAndDisposeAll(): void {
880 if (!this._store.size) {
881 return;
888 }
889 }
890 > lifecycle.ts
891 > has(value: V): boolean {
892 return this._store.has(value);
893 }
894 > lifecycle.ts
895 > get size(): number {
896 return this._store.size;
897 }
898 > lifecycle.ts
899 > add(value: V): void {
900 if (this._isDisposed) {
901 console.warn(new Error('Trying to add a disposable to a DisposableSet that has already been disposed of. The added object will be leaked!').stack);
905 setParentOfDisposable(value, this);
906 }
907 > lifecycle.ts
908 > /**
909 > * Delete the value from this set and also dispose of it.
910 > */
911 > deleteAndDispose(value: V): void {
912 if (this._store.delete(value)) {
913 value.dispose();
914 }
915 }
916 > lifecycle.ts
917 > /**
918 > * Delete the value from this set but return it. The caller is
919 > * responsible for disposing of the value.
920 > */
921 > deleteAndLeak(value: V): V | undefined {
922 if (this._store.delete(value)) {
923 setParentOfDisposable(value, null);
926 return undefined;
927 }
928 > lifecycle.ts
929 > values(): IterableIterator<V> {
930 return this._store.values();
931 }
932 > lifecycle.ts
933 > [Symbol.iterator](): IterableIterator<V> {
934 return this._store[Symbol.iterator]();
935 }
936 > } lifecycle.ts
937 >
938 > /**
939 > * Call `then` on a Promise, unless the returned disposable is disposed.
940 > */
941 > export function thenIfNotDisposed<T>(promise: Promise<T>, then: (result: T) => void): IDisposable {
942 let disposed = false;
943 promise.then(result => {
951 });
952 }
953 > lifecycle.ts
954 > /**
955 > * Call `then` on a promise that resolves to a {@link IDisposable}, then either register the
956 > * disposable or register it to the {@link DisposableStore}, depending on whether the store is
957 > * disposed or not.
958 > */
959 > export function thenRegisterOrDispose<T extends IDisposable>(promise: Promise<T>, store: DisposableStore): Promise<T> {
960 return promise.then(disposable => {
961 if (store.isDisposed) {
967 });
968 }
969 > lifecycle.ts
970 > export class DisposableResourceMap<V extends IDisposable = IDisposable> extends DisposableMap<URI, V> {
971 > constructor() {
972 super(new ResourceMap());
973 }
974 > } lifecycle.ts
src/vs/base/common/strings.ts 454 covered LOC · 101 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- strings.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { LRUCachedFunction } from './cache.js';
7 > import { CharCode } from './charCode.js';
8 > import { Lazy } from './lazy.js';
9 > import { Constants } from './uint.js';
10 >
11 > export function isFalsyOrWhitespace(str: string | undefined): boolean {
12 if (!str || typeof str !== 'string') {
13 return true;
15 return str.trim().length === 0;
16 }
17 > strings.ts
18 > const _formatRegexp = /{(\d+)}/g;
19 >
20 > /**
21 > * Helper to produce a string with a variable number of arguments. Insert variable segments
22 > * into the string using the {n} notation where N is the index of the argument following the string.
23 > * @param value string to which formatting is applied
24 > * @param args replacements for {n}-entries
25 > */
26 > // eslint-disable-next-line @typescript-eslint/no-explicit-any
27 > export function format(value: string, ...args: any[]): string {
28 if (args.length === 0) {
29 return value;
36 });
37 }
38 > strings.ts
39 > const _format2Regexp = /{([^}]+)}/g;
40 >
41 > /**
42 > * Helper to create a string from a template and a string record.
43 > * Similar to `format` but with objects instead of positional arguments.
44 > */
45 > export function format2(template: string, values: Record<string, unknown>): string {
46 if (Object.keys(values).length === 0) {
47 return template;
49 return template.replace(_format2Regexp, (match, group) => (values[group] ?? match) as string);
50 }
51 > strings.ts
52 > /**
53 > * Encodes the given value so that it can be used as literal value in html attributes.
54 > *
55 > * In other words, computes `$val`, such that `attr` in `<div attr="$val" />` has the runtime value `value`.
56 > * This prevents XSS injection.
57 > */
58 > export function htmlAttributeEncodeValue(value: string): string {
59 return value.replace(/[<>"'&]/g, ch => {
60 switch (ch) {
68 });
69 }
70 > strings.ts
71 > /**
72 > * Converts HTML characters inside the string to use entities instead. Makes the string safe from
73 > * being used e.g. in HTMLElement.innerHTML.
74 > */
75 > export function escape(html: string): string {
76 return html.replace(/[<>&]/g, function (match) {
77 switch (match) {
83 });
84 }
85 > strings.ts
86 > /**
87 > * Escapes regular expression characters in a given string
88 > */
89 > export function escapeRegExpCharacters(value: string): string {
90 return value.replace(/[\\\{\}\*\+\?\|\^\$\.\[\]\(\)]/g, '\\$&');
91 }
92 > strings.ts
93 > /**
94 > * Counts how often `substr` occurs inside `value`.
95 > */
96 > export function count(value: string, substr: string): number {
97 let result = 0;
98 let index = value.indexOf(substr);
103 return result;
104 }
105 > strings.ts
106 > export function truncate(value: string, maxLength: number, suffix = Ellipsis): string {
107 if (value.length <= maxLength) {
108 return value;
111 return `${value.substr(0, maxLength)}${suffix}`;
112 }
113 > strings.ts
114 > export function truncateMiddle(value: string, maxLength: number, suffix = Ellipsis): string {
115 if (value.length <= maxLength) {
116 return value;
122 return `${value.substr(0, prefixLength)}${suffix}${value.substr(value.length - suffixLength)}`;
123 }
124 > strings.ts
125 > /**
126 > * Removes all occurrences of needle from the beginning and end of haystack.
127 > * @param haystack string to trim
128 > * @param needle the thing to trim (default is a blank)
129 > */
130 > export function trim(haystack: string, needle: string = ' '): string {
131 const trimmed = ltrim(haystack, needle);
132 return rtrim(trimmed, needle);
133 }
134 > strings.ts
135 > /**
136 > * Removes all occurrences of needle from the beginning of haystack.
137 > * @param haystack string to trim
138 > * @param needle the thing to trim
139 > */
140 > export function ltrim(haystack: string, needle: string): string {
141 if (!haystack || !needle) {
142 return haystack;
157 return haystack.substring(offset);
158 }
159 > strings.ts
160 > /**
161 > * Removes all occurrences of needle from the end of haystack.
162 > * @param haystack string to trim
163 > * @param needle the thing to trim
164 > */
165 > export function rtrim(haystack: string, needle: string): string {
166 if (!haystack || !needle) {
167 return haystack;
187 return haystack.substring(0, offset);
188 }
189 > strings.ts
190 > export function convertSimple2RegExpPattern(pattern: string): string {
191 return pattern.replace(/[\-\\\{\}\+\?\|\^\$\.\,\[\]\(\)\#\s]/g, '\\$&').replace(/[\*]/g, '.*');
192 }
193 > strings.ts
194 > export interface RegExpOptions {
195 > matchCase?: boolean;
196 > wholeWord?: boolean;
197 > multiline?: boolean;
198 > global?: boolean;
199 > unicode?: boolean;
200 > }
201 >
202 > export function createRegExp(searchString: string, isRegex: boolean, options: RegExpOptions = {}): RegExp {
203 if (!searchString) {
204 throw new Error('Cannot create regex from empty string');
231 return new RegExp(searchString, modifiers);
232 }
233 > strings.ts
234 > export function regExpLeadsToEndlessLoop(regexp: RegExp): boolean {
235 // Exit early if it's one of these special cases which are meant to match
236 // against an empty string
244 return !!(match && regexp.lastIndex === 0);
245 }
246 > strings.ts
247 > export function joinStrings(items: (string | undefined | null | false)[], separator: string): string {
248 return items.filter(item => item !== undefined && item !== null && item !== false).join(separator);
249 }
250 > strings.ts
251 > export function splitLines(str: string): string[] {
252 return str.split(/\r\n|\r|\n/);
253 }
254 > strings.ts
255 > export function splitLinesIncludeSeparators(str: string): string[] {
256 const linesWithSeparators: string[] = [];
257 const splitLinesAndSeparators = str.split(/(\r\n|\r|\n)/);
261 return linesWithSeparators;
262 }
263 > strings.ts
264 > export function indexOfPattern(str: string, re: RegExp) {
265 const match = re.exec(str);
266 if (match) {
269 return -1;
270 }
271 > strings.ts
272 > /**
273 > * Returns first index of the string that is not whitespace.
274 > * If string is empty or contains only whitespaces, returns -1
275 > */
276 > export function firstNonWhitespaceIndex(str: string): number {
277 for (let i = 0, len = str.length; i < len; i++) {
278 const chCode = str.charCodeAt(i);
283 return -1;
284 }
285 > strings.ts
286 > /**
287 > * Returns the leading whitespace of the string.
288 > * If the string contains only whitespaces, returns entire string
289 > */
290 > export function getLeadingWhitespace(str: string, start: number = 0, end: number = str.length): string {
291 for (let i = start; i < end; i++) {
292 const chCode = str.charCodeAt(i);
297 return str.substring(start, end);
298 }
299 > strings.ts
300 > /**
301 > * Returns last index of the string that is not whitespace.
302 > * If string is empty or contains only whitespaces, returns -1
303 > */
304 > export function lastNonWhitespaceIndex(str: string, startIndex: number = str.length - 1): number {
305 for (let i = startIndex; i >= 0; i--) {
306 const chCode = str.charCodeAt(i);
311 return -1;
312 }
313 > strings.ts
314 > export function getIndentationLength(str: string): number {
315 const idx = firstNonWhitespaceIndex(str);
316 if (idx === -1) { return str.length; }
317 return idx;
318 }
319 > strings.ts
320 > /**
321 > * Function that works identically to String.prototype.replace, except, the
322 > * replace function is allowed to be async and return a Promise.
323 > */
324 > export function replaceAsync(str: string, search: RegExp, replacer: (match: string, ...args: unknown[]) => Promise<string>): Promise<string> {
325 const parts: (string | Promise<string>)[] = [];
326
340 return Promise.all(parts).then(p => p.join(''));
341 }
342 > strings.ts
343 > export function compare(a: string, b: string): number {
344 if (a < b) {
345 return -1;
350 }
351 }
352 > strings.ts
353 > export function compareSubstring(a: string, b: string, aStart: number = 0, aEnd: number = a.length, bStart: number = 0, bEnd: number = b.length): number {
354 for (; aStart < aEnd && bStart < bEnd; aStart++, bStart++) {
355 const codeA = a.charCodeAt(aStart);
370 return 0;
371 }
372 > strings.ts
373 > export function compareIgnoreCase(a: string, b: string): number {
374 return compareSubstringIgnoreCase(a, b, 0, a.length, 0, b.length);
375 }
376 > strings.ts
377 > export function compareSubstringIgnoreCase(a: string, b: string, aStart: number = 0, aEnd: number = a.length, bStart: number = 0, bEnd: number = b.length): number {
378
379 for (; aStart < aEnd && bStart < bEnd; aStart++, bStart++) {
421 return 0;
422 }
423 > strings.ts
424 > export function isAsciiDigit(code: number): boolean {
425 return code >= CharCode.Digit0 && code <= CharCode.Digit9;
426 }
427 > strings.ts
428 > export function isLowerAsciiLetter(code: number): boolean {
429 return code >= CharCode.a && code <= CharCode.z;
430 }
431 > strings.ts
432 > export function isUpperAsciiLetter(code: number): boolean {
433 return code >= CharCode.A && code <= CharCode.Z;
434 }
435 > strings.ts
436 > export function equalsIgnoreCase(a: string, b: string): boolean {
437 return a.length === b.length && compareSubstringIgnoreCase(a, b) === 0;
438 }
439 > strings.ts
440 > export function equals(a: string | undefined, b: string | undefined, ignoreCase?: boolean): boolean {
441 return a === b || (!!ignoreCase && a !== undefined && b !== undefined && equalsIgnoreCase(a, b));
442 }
443 > strings.ts
444 > export function startsWithIgnoreCase(str: string, candidate: string): boolean {
445 const len = candidate.length;
446 return len <= str.length && compareSubstringIgnoreCase(str, candidate, 0, len) === 0;
447 }
448 > strings.ts
449 > export function endsWithIgnoreCase(str: string, candidate: string): boolean {
450 const len = str.length;
451 const start = len - candidate.length;
452 return start >= 0 && compareSubstringIgnoreCase(str, candidate, start, len) === 0;
453 }
454 > strings.ts
455 > /**
456 > * @returns the length of the common prefix of the two strings.
457 > */
458 > export function commonPrefixLength(a: string, b: string): number {
459
460 const len = Math.min(a.length, b.length);
469 return len;
470 }
471 > strings.ts
472 > /**
473 > * @returns the length of the common suffix of the two strings.
474 > */
475 > export function commonSuffixLength(a: string, b: string): number {
476
477 const len = Math.min(a.length, b.length);
489 return len;
490 }
491 > strings.ts
492 > /**
493 > * See http://en.wikipedia.org/wiki/Surrogate_pair
494 > */
495 > export function isHighSurrogate(charCode: number): boolean {
496 return (0xD800 <= charCode && charCode <= 0xDBFF);
497 }
498 > strings.ts
499 > /**
500 > * See http://en.wikipedia.org/wiki/Surrogate_pair
501 > */
502 > export function isLowSurrogate(charCode: number): boolean {
503 return (0xDC00 <= charCode && charCode <= 0xDFFF);
504 }
505 > strings.ts
506 > /**
507 > * See http://en.wikipedia.org/wiki/Surrogate_pair
508 > */
509 > export function computeCodePoint(highSurrogate: number, lowSurrogate: number): number {
510 return ((highSurrogate - 0xD800) << 10) + (lowSurrogate - 0xDC00) + 0x10000;
511 }
512 > strings.ts
513 > /**
514 > * get the code point that begins at offset `offset`
515 > */
516 > export function getNextCodePoint(str: string, len: number, offset: number): number {
517 const charCode = str.charCodeAt(offset);
518 if (isHighSurrogate(charCode) && offset + 1 < len) {
524 return charCode;
525 }
526 > strings.ts
527 > /**
528 > * get the code point that ends right before offset `offset`
529 > */
530 function getPrevCodePoint(str: string, offset: number): number {
531 const charCode = str.charCodeAt(offset - 1);
538 return charCode;
539 }
540 > strings.ts
541 > export class CodePointIterator {
542 >
543 > private readonly _str: string;
544 > private readonly _len: number;
545 > private _offset: number;
546 >
547 > public get offset(): number {
548 return this._offset;
549 }
550 > strings.ts
551 > constructor(str: string, offset: number = 0) {
552 this._str = str;
553 this._len = str.length;
554 this._offset = offset;
555 }
556 > strings.ts
557 > public setOffset(offset: number): void {
558 this._offset = offset;
559 }
560 > strings.ts
561 > public prevCodePoint(): number {
562 const codePoint = getPrevCodePoint(this._str, this._offset);
563 this._offset -= (codePoint >= Constants.UNICODE_SUPPLEMENTARY_PLANE_BEGIN ? 2 : 1);
564 return codePoint;
565 }
566 > strings.ts
567 > public nextCodePoint(): number {
568 const codePoint = getNextCodePoint(this._str, this._len, this._offset);
569 this._offset += (codePoint >= Constants.UNICODE_SUPPLEMENTARY_PLANE_BEGIN ? 2 : 1);
570 return codePoint;
571 }
572 > strings.ts
573 > public eol(): boolean {
574 return (this._offset >= this._len);
575 }
576 > } strings.ts
577 >
578 > export class GraphemeIterator {
579 >
580 > private readonly _iterator: CodePointIterator;
581 >
582 > public get offset(): number {
583 return this._iterator.offset;
584 }
585 > strings.ts
586 > constructor(str: string, offset: number = 0) {
587 this._iterator = new CodePointIterator(str, offset);
588 }
589 > strings.ts
590 > public nextGraphemeLength(): number {
591 const graphemeBreakTree = GraphemeBreakTree.getInstance();
592 const iterator = this._iterator;
606 return (iterator.offset - initialOffset);
607 }
608 > strings.ts
609 > public prevGraphemeLength(): number {
610 const graphemeBreakTree = GraphemeBreakTree.getInstance();
611 const iterator = this._iterator;
625 return (initialOffset - iterator.offset);
626 }
627 > strings.ts
628 > public eol(): boolean {
629 return this._iterator.eol();
630 }
631 > } strings.ts
632 >
633 > export function nextCharLength(str: string, initialOffset: number): number {
634 const iterator = new GraphemeIterator(str, initialOffset);
635 return iterator.nextGraphemeLength();
636 }
637 > strings.ts
638 > export function prevCharLength(str: string, initialOffset: number): number {
639 const iterator = new GraphemeIterator(str, initialOffset);
640 return iterator.prevGraphemeLength();
641 }
642 > strings.ts
643 > export function getCharContainingOffset(str: string, offset: number): [number, number] {
644 if (offset > 0 && isLowSurrogate(str.charCodeAt(offset))) {
645 offset--;
649 return [startOffset, endOffset];
650 }
651 > strings.ts
652 > export function charCount(str: string): number {
653 const iterator = new GraphemeIterator(str);
654 let length = 0;
659 return length;
660 }
661 > strings.ts
662 > let CONTAINS_RTL: RegExp | undefined = undefined;
663 >
664 function makeContainsRtl() {
665 // Generated using https://github.com/alexdima/unicode-utils/blob/main/rtl-test.js
666 return /(?:[\u05BE\u05C0\u05C3\u05C6\u05D0-\u05F4\u0608\u060B\u060D\u061B-\u064A\u066D-\u066F\u0671-\u06D5\u06E5\u06E6\u06EE\u06EF\u06FA-\u0710\u0712-\u072F\u074D-\u07A5\u07B1-\u07EA\u07F4\u07F5\u07FA\u07FE-\u0815\u081A\u0824\u0828\u0830-\u0858\u085E-\u088E\u08A0-\u08C9\u200F\uFB1D\uFB1F-\uFB28\uFB2A-\uFD3D\uFD50-\uFDC7\uFDF0-\uFDFC\uFE70-\uFEFC]|\uD802[\uDC00-\uDD1B\uDD20-\uDE00\uDE10-\uDE35\uDE40-\uDEE4\uDEEB-\uDF35\uDF40-\uDFFF]|\uD803[\uDC00-\uDD23\uDE80-\uDEA9\uDEAD-\uDF45\uDF51-\uDF81\uDF86-\uDFF6]|\uD83A[\uDC00-\uDCCF\uDD00-\uDD43\uDD4B-\uDFFF]|\uD83B[\uDC00-\uDEBB])/;
667 }
668 > strings.ts
669 > /**
670 > * Returns true if `str` contains any Unicode character that is classified as "R" or "AL".
671 > */
672 > export function containsRTL(str: string): boolean {
673 if (!CONTAINS_RTL) {
674 CONTAINS_RTL = makeContainsRtl();
677 return CONTAINS_RTL.test(str);
678 }
679 > strings.ts
680 > const IS_BASIC_ASCII = /^[\t\n\r\x20-\x7E]*$/;
681 > /**
682 > * Returns true if `str` contains only basic ASCII characters in the range 32 - 126 (including 32 and 126) or \n, \r, \t
683 > */
684 > export function isBasicASCII(str: string): boolean {
685 return IS_BASIC_ASCII.test(str);
686 }
687 > strings.ts
688 > export const UNUSUAL_LINE_TERMINATORS = /[\u2028\u2029]/; // LINE SEPARATOR (LS) or PARAGRAPH SEPARATOR (PS)
689 > /**
690 > * Returns true if `str` contains unusual line terminators, like LS or PS
691 > */
692 > export function containsUnusualLineTerminators(str: string): boolean {
693 return UNUSUAL_LINE_TERMINATORS.test(str);
694 }
695 > strings.ts
696 > export function isFullWidthCharacter(charCode: number): boolean {
697 // Do a cheap trick to better support wrapping of wide characters, treat them as 2 columns
698 // http://jrgraphix.net/research/unicode_blocks.php
741 );
742 }
743 > strings.ts
744 > /**
745 > * A fast function (therefore imprecise) to check if code points are emojis.
746 > * Generated using https://github.com/alexdima/unicode-utils/blob/main/emoji-test.js
747 > */
748 > export function isEmojiImprecise(x: number): boolean {
749 return (
750 (x >= 0x1F1E6 && x <= 0x1F1FF) || (x === 8986) || (x === 8987) || (x === 9200)
755 );
756 }
757 > strings.ts
758 > /**
759 > * Given a string and a max length returns a shorted version. Shorting
760 > * happens at favorable positions - such as whitespace or punctuation characters.
761 > * The return value can be longer than the given value of `n`. Leading whitespace is always trimmed.
762 > */
763 > export function lcut(text: string, n: number, prefix = ''): string {
764 const trimmed = text.trimStart();
765
785 return prefix + trimmed.substring(i).trimStart();
786 }
787 > strings.ts
788 > /**
789 > * Given a string and a max length returns a shortened version keeping the beginning.
790 > * Shortening happens at favorable positions - such as whitespace or punctuation characters.
791 > * Trailing whitespace is always trimmed.
792 > */
793 > export function rcut(text: string, n: number, suffix = ''): string {
794 const trimmed = text.trimEnd();
795
832 return result + suffix;
833 }
834 > strings.ts
835 > // Defacto standard: https://invisible-island.net/xterm/ctlseqs/ctlseqs.html
836 > const CSI_SEQUENCE = /(?:\x1b\[|\x9b)[=?>!]?[\d;:]*["$#'* ]?[a-zA-Z@^`{}|~]/;
837 > const OSC_SEQUENCE = /(?:\x1b\]|\x9d).*?(?:\x1b\\|\x07|\x9c)/;
838 > const ESC_SEQUENCE = /\x1b(?:[ #%\(\)\*\+\-\.\/]?[a-zA-Z0-9\|}~@])/;
839 > const CONTROL_SEQUENCES = new RegExp('(?:' + [
840 > CSI_SEQUENCE.source,
841 > OSC_SEQUENCE.source,
842 > ESC_SEQUENCE.source,
843 > ].join('|') + ')', 'g');
844 >
845 > /** Iterates over parts of a string with CSI sequences */
846 > export function* forAnsiStringParts(str: string) {
847 let last = 0;
848 for (const match of str.matchAll(CONTROL_SEQUENCES)) {
859 }
860 }
861 > strings.ts
862 > /**
863 > * Strips ANSI escape sequences from a string.
864 > * @param str The dastringa stringo strip the ANSI escape sequences from.
865 > *
866 > * @example
867 > * removeAnsiEscapeCodes('\u001b[31mHello, World!\u001b[0m');
868 > * // 'Hello, World!'
869 > */
870 > export function removeAnsiEscapeCodes(str: string): string {
871 if (str) {
872 str = str.replace(CONTROL_SEQUENCES, '');
875 return str;
876 }
877 > strings.ts
878 > const PROMPT_NON_PRINTABLE = /\\\[.*?\\\]/g;
879 >
880 > /**
881 > * Strips ANSI escape sequences from a UNIX-style prompt string (eg. `$PS1`).
882 > * @param str The string to strip the ANSI escape sequences from.
883 > *
884 > * @example
885 > * removeAnsiEscapeCodesFromPrompt('\n\\[\u001b[01;34m\\]\\w\\[\u001b[00m\\]\n\\[\u001b[1;32m\\]> \\[\u001b[0m\\]');
886 > * // '\n\\w\n> '
887 > */
888 > export function removeAnsiEscapeCodesFromPrompt(str: string): string {
889 return removeAnsiEscapeCodes(str).replace(PROMPT_NON_PRINTABLE, '');
890 }
891 > strings.ts
892 >
893 > // -- UTF-8 BOM
894 >
895 > export const UTF8_BOM_CHARACTER = String.fromCharCode(CharCode.UTF8_BOM);
896 >
897 > export function startsWithUTF8BOM(str: string): boolean {
898 return !!(str && str.length > 0 && str.charCodeAt(0) === CharCode.UTF8_BOM);
899 }
900 > strings.ts
901 > export function stripUTF8BOM(str: string): string {
902 return startsWithUTF8BOM(str) ? str.substr(1) : str;
903 }
904 > strings.ts
905 > /**
906 > * Checks if the characters of the provided query string are included in the
907 > * target string. The characters do not have to be contiguous within the string.
908 > */
909 > export function fuzzyContains(target: string, query: string): boolean {
910 if (!target || !query) {
911 return false; // return early if target or query are undefined
936 return true;
937 }
938 > strings.ts
939 > export function containsUppercaseCharacter(target: string, ignoreEscapedChars = false): boolean {
940 if (!target) {
941 return false;
948 return target.toLowerCase() !== target;
949 }
950 > strings.ts
951 > export function uppercaseFirstLetter(str: string): string {
952 return str.charAt(0).toUpperCase() + str.slice(1);
953 }
954 > strings.ts
955 > export function getNLines(str: string, n = 1): string {
956 if (n === 0) {
957 return '';
974 return str.substr(0, idx);
975 }
976 > strings.ts
977 > /**
978 > * Produces 'a'-'z', followed by 'A'-'Z'... followed by 'a'-'z', etc.
979 > */
980 > export function singleLetterHash(n: number): string {
981 const LETTERS_CNT = (CharCode.Z - CharCode.A + 1);
982
989 return String.fromCharCode(CharCode.A + n - LETTERS_CNT);
990 }
991 > strings.ts
992 > //#region Unicode Grapheme Break
993 >
994 > export function getGraphemeBreakType(codePoint: number): GraphemeBreakType {
995 const graphemeBreakTree = GraphemeBreakTree.getInstance();
996 return graphemeBreakTree.getGraphemeBreakType(codePoint);
997 }
998 > strings.ts
999 function breakBetweenGraphemeBreakType(breakTypeA: GraphemeBreakType, breakTypeB: GraphemeBreakType): boolean {
1000 // http://www.unicode.org/reports/tr29/#Grapheme_Cluster_Boundary_Rules
1076 return true;
1077 }
1078 > strings.ts
1079 > export const enum GraphemeBreakType {
1080 > Other = 0,
1081 > Prepend = 1,
1082 > CR = 2,
1083 > LF = 3,
1084 > Control = 4,
1085 > Extend = 5,
1086 > Regional_Indicator = 6,
1087 > SpacingMark = 7,
1088 > L = 8,
1089 > V = 9,
1090 > T = 10,
1091 > LV = 11,
1092 > LVT = 12,
1093 > ZWJ = 13,
1094 > Extended_Pictographic = 14
1095 > }
1096 >
1097 > class GraphemeBreakTree {
1098 >
1099 > private static _INSTANCE: GraphemeBreakTree | null = null;
1100 > public static getInstance(): GraphemeBreakTree {
1101 if (!GraphemeBreakTree._INSTANCE) {
1102 GraphemeBreakTree._INSTANCE = new GraphemeBreakTree();
1104 return GraphemeBreakTree._INSTANCE;
1105 }
1106 > strings.ts
1107 > private readonly _data: number[];
1108 >
1109 > constructor() {
1110 this._data = getGraphemeBreakRawData();
1111 }
1112 > strings.ts
1113 > public getGraphemeBreakType(codePoint: number): GraphemeBreakType {
1114 // !!! Let's make 7bit ASCII a bit faster: 0..31
1115 if (codePoint < 32) {
1145 return GraphemeBreakType.Other;
1146 }
1147 > } strings.ts
1148 >
1149 function getGraphemeBreakRawData(): number[] {
1150 // generated using https://github.com/alexdima/unicode-utils/blob/main/grapheme-break.js
1151 return 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1152 }
1153 > strings.ts
1154 > //#endregion
1155 >
1156 > /**
1157 > * Computes the offset after performing a left delete on the given string,
1158 > * while considering unicode grapheme/emoji rules.
1159 > */
1160 > export function getLeftDeleteOffset(offset: number, str: string): number {
1161 if (offset === 0) {
1162 return 0;
1174 return iterator.offset;
1175 }
1176 > strings.ts
1177 function getOffsetBeforeLastEmojiComponent(initialOffset: number, str: string): number | undefined {
1178 // See https://www.unicode.org/reports/tr51/tr51-14.html#EBNF_and_Regex for the
1210 return resultOffset;
1211 }
1212 > strings.ts
1213 function isEmojiModifier(codePoint: number): boolean {
1214 return 0x1F3FB <= codePoint && codePoint <= 0x1F3FF;
1215 }
1216 > strings.ts
1217 > const enum CodePoint {
1218 > zwj = 0x200D,
1219 >
1220 > /**
1221 > * Variation Selector-16 (VS16)
1222 > */
1223 > emojiVariantSelector = 0xFE0F,
1224 >
1225 > /**
1226 > * Combining Enclosing Keycap
1227 > */
1228 > enclosingKeyCap = 0x20E3,
1229 >
1230 > space = 0x0020,
1231 > }
1232 >
1233 > export const noBreakWhitespace = '\xa0';
1234 >
1235 > export class AmbiguousCharacters {
1236 > private static readonly ambiguousCharacterData = new Lazy<
1237 > Record<
1238 > string | '_common' | '_default',
1239 > /* code point -> ascii code point */ number[]
1240 > >
1241 > >(() => {
1242 // Generated using https://github.com/hediet/vscode-unicode-data
1243 // Stored as key1, value1, key2, value2, ...
1245 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1246 );
1247 > }); strings.ts
1248 >
1249 > private static readonly cache = new LRUCachedFunction<string, AmbiguousCharacters>((localesStr) => {
1250 const locales = localesStr.split(',');
1251
1304
1305 return new AmbiguousCharacters(map);
1306 > }); strings.ts
1307 >
1308 > public static getInstance(locales: Iterable<string>): AmbiguousCharacters {
1309 return AmbiguousCharacters.cache.get(Array.from(locales).join(','));
1310 }
1311 > strings.ts
1312 > private static _locales = new Lazy<string[]>(() =>
1313 Object.keys(AmbiguousCharacters.ambiguousCharacterData.value).filter(
1314 (k) => !k.startsWith('_')
1315 )
1316 > ); strings.ts
1317 > public static getLocales(): string[] {
1318 return AmbiguousCharacters._locales.value;
1319 }
1320 > strings.ts
1321 > private constructor(
1322 private readonly confusableDictionary: Map<number, number>
1323 ) { }
1324 > strings.ts
1325 > public isAmbiguous(codePoint: number): boolean {
1326 return this.confusableDictionary.has(codePoint);
1327 }
1328 > strings.ts
1329 > public containsAmbiguousCharacter(str: string): boolean {
1330 for (let i = 0; i < str.length; i++) {
1331 const codePoint = str.codePointAt(i);
1336 return false;
1337 }
1338 > strings.ts
1339 > /**
1340 > * Returns the non basic ASCII code point that the given code point can be confused,
1341 > * or undefined if such code point does note exist.
1342 > */
1343 > public getPrimaryConfusable(codePoint: number): number | undefined {
1344 return this.confusableDictionary.get(codePoint);
1345 }
1346 > strings.ts
1347 > public getConfusableCodePoints(): ReadonlySet<number> {
1348 return new Set(this.confusableDictionary.keys());
1349 }
1350 > } strings.ts
1351 >
1352 > export class InvisibleCharacters {
1353 > private static getRawData(): Record<string | '_common', number[]> {
1354 // Generated using https://github.com/hediet/vscode-unicode-data
1355 return JSON.parse('{\"_common\":[11,12,13,127,847,1564,4447,4448,6068,6069,6155,6156,6157,6158,7355,7356,8192,8193,8194,8195,8196,8197,8198,8199,8200,8201,8202,8204,8205,8206,8207,8234,8235,8236,8237,8238,8239,8287,8288,8289,8290,8291,8292,8293,8294,8295,8296,8297,8298,8299,8300,8301,8302,8303,10240,12644,65024,65025,65026,65027,65028,65029,65030,65031,65032,65033,65034,65035,65036,65037,65038,65039,65279,65440,65520,65521,65522,65523,65524,65525,65526,65527,65528,65532,78844,119155,119156,119157,119158,119159,119160,119161,119162,917504,917505,917506,917507,917508,917509,917510,917511,917512,917513,917514,917515,917516,917517,917518,917519,917520,917521,917522,917523,917524,917525,917526,917527,917528,917529,917530,917531,917532,917533,917534,917535,917536,917537,917538,917539,917540,917541,917542,917543,917544,917545,917546,917547,917548,917549,917550,917551,917552,917553,917554,917555,917556,917557,917558,917559,917560,917561,917562,917563,917564,917565,917566,917567,917568,917569,917570,917571,917572,917573,917574,917575,917576,917577,917578,917579,917580,917581,917582,917583,917584,917585,917586,917587,917588,917589,917590,917591,917592,917593,917594,917595,917596,917597,917598,917599,917600,917601,917602,917603,917604,917605,917606,917607,917608,917609,917610,917611,917612,917613,917614,917615,917616,917617,917618,917619,917620,917621,917622,917623,917624,917625,917626,917627,917628,917629,917630,917631,917760,917761,917762,917763,917764,917765,917766,917767,917768,917769,917770,917771,917772,917773,917774,917775,917776,917777,917778,917779,917780,917781,917782,917783,917784,917785,917786,917787,917788,917789,917790,917791,917792,917793,917794,917795,917796,917797,917798,917799,917800,917801,917802,917803,917804,917805,917806,917807,917808,917809,917810,917811,917812,917813,917814,917815,917816,917817,917818,917819,917820,917821,917822,917823,917824,917825,917826,917827,917828,917829,917830,917831,917832,917833,917834,917835,917836,917837,917838,917839,917840,917841,917842,917843,917844,917845,917846,917847,917848,917849,917850,917851,917852,917853,917854,917855,917856,917857,917858,917859,917860,917861,917862,917863,917864,917865,917866,917867,917868,917869,917870,917871,917872,917873,917874,917875,917876,917877,917878,917879,917880,917881,917882,917883,917884,917885,917886,917887,917888,917889,917890,917891,917892,917893,917894,917895,917896,917897,917898,917899,917900,917901,917902,917903,917904,917905,917906,917907,917908,917909,917910,917911,917912,917913,917914,917915,917916,917917,917918,917919,917920,917921,917922,917923,917924,917925,917926,917927,917928,917929,917930,917931,917932,917933,917934,917935,917936,917937,917938,917939,917940,917941,917942,917943,917944,917945,917946,917947,917948,917949,917950,917951,917952,917953,917954,917955,917956,917957,917958,917959,917960,917961,917962,917963,917964,917965,917966,917967,917968,917969,917970,917971,917972,917973,917974,917975,917976,917977,917978,917979,917980,917981,917982,917983,917984,917985,917986,917987,917988,917989,917990,917991,917992,917993,917994,917995,917996,917997,917998,917999],\"cs\":[173,8203,12288],\"de\":[173,8203,12288],\"es\":[8203,12288],\"fr\":[173,8203,12288],\"it\":[160,173,12288],\"ja\":[173],\"ko\":[173,12288],\"pl\":[173,8203,12288],\"pt-BR\":[173,8203,12288],\"qps-ploc\":[160,173,8203,12288],\"ru\":[173,12288],\"tr\":[160,173,8203,12288],\"zh-hans\":[160,173,8203,12288],\"zh-hant\":[173,12288]}');
1356 }
1357 > strings.ts
1358 > private static _data: Set<number> | undefined = undefined;
1359 >
1360 > private static getData() {
1361 if (!this._data) {
1362 this._data = new Set([...Object.values(InvisibleCharacters.getRawData())].flat());
1364 return this._data;
1365 }
1366 > strings.ts
1367 > public static isInvisibleCharacter(codePoint: number): boolean {
1368 return InvisibleCharacters.getData().has(codePoint);
1369 }
1370 > strings.ts
1371 > public static containsInvisibleCharacter(str: string): boolean {
1372 for (let i = 0; i < str.length; i++) {
1373 const codePoint = str.codePointAt(i);
1378 return false;
1379 }
1380 > strings.ts
1381 > public static get codePoints(): ReadonlySet<number> {
1382 return InvisibleCharacters.getData();
1383 }
1384 > } strings.ts
1385 >
1386 > export const Ellipsis = '\u2026';
1387 >
1388 > /**
1389 > * Convert a Unicode string to a string in which each 16-bit unit occupies only one byte
1390 > *
1391 > * From https://developer.mozilla.org/en-US/docs/Web/API/WindowOrWorkerGlobalScope/btoa
1392 > */
1393 function toBinary(str: string): string {
1394 const codeUnits = new Uint16Array(str.length);
1403 return binary;
1404 }
1405 > strings.ts
1406 > /**
1407 > * Version of the global `btoa` function that handles multi-byte characters instead
1408 > * of throwing an exception.
1409 > */
1410 >
1411 > export function multibyteAwareBtoa(str: string): string {
1412 return btoa(toBinary(str));
1413 }
src/vs/base/common/charCode.ts 450 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- charCode.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Names from https://blog.codinghorror.com/ascii-pronunciation-rules-for-programmers/
7 >
8 > /**
9 > * An inlined enum containing useful character codes (to be used with String.charCodeAt).
10 > * Please leave the const keyword such that it gets inlined when compiled to JavaScript!
11 > */
12 > export const enum CharCode {
13 > Null = 0,
14 > /**
15 > * The `\b` character.
16 > */
17 > Backspace = 8,
18 > /**
19 > * The `\t` character.
20 > */
21 > Tab = 9,
22 > /**
23 > * The `\n` character.
24 > */
25 > LineFeed = 10,
26 > /**
27 > * The `\r` character.
28 > */
29 > CarriageReturn = 13,
30 > Space = 32,
31 > /**
32 > * The `!` character.
33 > */
34 > ExclamationMark = 33,
35 > /**
36 > * The `"` character.
37 > */
38 > DoubleQuote = 34,
39 > /**
40 > * The `#` character.
41 > */
42 > Hash = 35,
43 > /**
44 > * The `$` character.
45 > */
46 > DollarSign = 36,
47 > /**
48 > * The `%` character.
49 > */
50 > PercentSign = 37,
51 > /**
52 > * The `&` character.
53 > */
54 > Ampersand = 38,
55 > /**
56 > * The `'` character.
57 > */
58 > SingleQuote = 39,
59 > /**
60 > * The `(` character.
61 > */
62 > OpenParen = 40,
63 > /**
64 > * The `)` character.
65 > */
66 > CloseParen = 41,
67 > /**
68 > * The `*` character.
69 > */
70 > Asterisk = 42,
71 > /**
72 > * The `+` character.
73 > */
74 > Plus = 43,
75 > /**
76 > * The `,` character.
77 > */
78 > Comma = 44,
79 > /**
80 > * The `-` character.
81 > */
82 > Dash = 45,
83 > /**
84 > * The `.` character.
85 > */
86 > Period = 46,
87 > /**
88 > * The `/` character.
89 > */
90 > Slash = 47,
91 >
92 > Digit0 = 48,
93 > Digit1 = 49,
94 > Digit2 = 50,
95 > Digit3 = 51,
96 > Digit4 = 52,
97 > Digit5 = 53,
98 > Digit6 = 54,
99 > Digit7 = 55,
100 > Digit8 = 56,
101 > Digit9 = 57,
102 >
103 > /**
104 > * The `:` character.
105 > */
106 > Colon = 58,
107 > /**
108 > * The `;` character.
109 > */
110 > Semicolon = 59,
111 > /**
112 > * The `<` character.
113 > */
114 > LessThan = 60,
115 > /**
116 > * The `=` character.
117 > */
118 > Equals = 61,
119 > /**
120 > * The `>` character.
121 > */
122 > GreaterThan = 62,
123 > /**
124 > * The `?` character.
125 > */
126 > QuestionMark = 63,
127 > /**
128 > * The `@` character.
129 > */
130 > AtSign = 64,
131 >
132 > A = 65,
133 > B = 66,
134 > C = 67,
135 > D = 68,
136 > E = 69,
137 > F = 70,
138 > G = 71,
139 > H = 72,
140 > I = 73,
141 > J = 74,
142 > K = 75,
143 > L = 76,
144 > M = 77,
145 > N = 78,
146 > O = 79,
147 > P = 80,
148 > Q = 81,
149 > R = 82,
150 > S = 83,
151 > T = 84,
152 > U = 85,
153 > V = 86,
154 > W = 87,
155 > X = 88,
156 > Y = 89,
157 > Z = 90,
158 >
159 > /**
160 > * The `[` character.
161 > */
162 > OpenSquareBracket = 91,
163 > /**
164 > * The `\` character.
165 > */
166 > Backslash = 92,
167 > /**
168 > * The `]` character.
169 > */
170 > CloseSquareBracket = 93,
171 > /**
172 > * The `^` character.
173 > */
174 > Caret = 94,
175 > /**
176 > * The `_` character.
177 > */
178 > Underline = 95,
179 > /**
180 > * The ``(`)`` character.
181 > */
182 > BackTick = 96,
183 >
184 > a = 97,
185 > b = 98,
186 > c = 99,
187 > d = 100,
188 > e = 101,
189 > f = 102,
190 > g = 103,
191 > h = 104,
192 > i = 105,
193 > j = 106,
194 > k = 107,
195 > l = 108,
196 > m = 109,
197 > n = 110,
198 > o = 111,
199 > p = 112,
200 > q = 113,
201 > r = 114,
202 > s = 115,
203 > t = 116,
204 > u = 117,
205 > v = 118,
206 > w = 119,
207 > x = 120,
208 > y = 121,
209 > z = 122,
210 >
211 > /**
212 > * The `{` character.
213 > */
214 > OpenCurlyBrace = 123,
215 > /**
216 > * The `|` character.
217 > */
218 > Pipe = 124,
219 > /**
220 > * The `}` character.
221 > */
222 > CloseCurlyBrace = 125,
223 > /**
224 > * The `~` character.
225 > */
226 > Tilde = 126,
227 >
228 > /**
229 > * The &nbsp; (no-break space) character.
230 > * Unicode Character 'NO-BREAK SPACE' (U+00A0)
231 > */
232 > NoBreakSpace = 160,
233 >
234 > U_Combining_Grave_Accent = 0x0300, // U+0300 Combining Grave Accent
235 > U_Combining_Acute_Accent = 0x0301, // U+0301 Combining Acute Accent
236 > U_Combining_Circumflex_Accent = 0x0302, // U+0302 Combining Circumflex Accent
237 > U_Combining_Tilde = 0x0303, // U+0303 Combining Tilde
238 > U_Combining_Macron = 0x0304, // U+0304 Combining Macron
239 > U_Combining_Overline = 0x0305, // U+0305 Combining Overline
240 > U_Combining_Breve = 0x0306, // U+0306 Combining Breve
241 > U_Combining_Dot_Above = 0x0307, // U+0307 Combining Dot Above
242 > U_Combining_Diaeresis = 0x0308, // U+0308 Combining Diaeresis
243 > U_Combining_Hook_Above = 0x0309, // U+0309 Combining Hook Above
244 > U_Combining_Ring_Above = 0x030A, // U+030A Combining Ring Above
245 > U_Combining_Double_Acute_Accent = 0x030B, // U+030B Combining Double Acute Accent
246 > U_Combining_Caron = 0x030C, // U+030C Combining Caron
247 > U_Combining_Vertical_Line_Above = 0x030D, // U+030D Combining Vertical Line Above
248 > U_Combining_Double_Vertical_Line_Above = 0x030E, // U+030E Combining Double Vertical Line Above
249 > U_Combining_Double_Grave_Accent = 0x030F, // U+030F Combining Double Grave Accent
250 > U_Combining_Candrabindu = 0x0310, // U+0310 Combining Candrabindu
251 > U_Combining_Inverted_Breve = 0x0311, // U+0311 Combining Inverted Breve
252 > U_Combining_Turned_Comma_Above = 0x0312, // U+0312 Combining Turned Comma Above
253 > U_Combining_Comma_Above = 0x0313, // U+0313 Combining Comma Above
254 > U_Combining_Reversed_Comma_Above = 0x0314, // U+0314 Combining Reversed Comma Above
255 > U_Combining_Comma_Above_Right = 0x0315, // U+0315 Combining Comma Above Right
256 > U_Combining_Grave_Accent_Below = 0x0316, // U+0316 Combining Grave Accent Below
257 > U_Combining_Acute_Accent_Below = 0x0317, // U+0317 Combining Acute Accent Below
258 > U_Combining_Left_Tack_Below = 0x0318, // U+0318 Combining Left Tack Below
259 > U_Combining_Right_Tack_Below = 0x0319, // U+0319 Combining Right Tack Below
260 > U_Combining_Left_Angle_Above = 0x031A, // U+031A Combining Left Angle Above
261 > U_Combining_Horn = 0x031B, // U+031B Combining Horn
262 > U_Combining_Left_Half_Ring_Below = 0x031C, // U+031C Combining Left Half Ring Below
263 > U_Combining_Up_Tack_Below = 0x031D, // U+031D Combining Up Tack Below
264 > U_Combining_Down_Tack_Below = 0x031E, // U+031E Combining Down Tack Below
265 > U_Combining_Plus_Sign_Below = 0x031F, // U+031F Combining Plus Sign Below
266 > U_Combining_Minus_Sign_Below = 0x0320, // U+0320 Combining Minus Sign Below
267 > U_Combining_Palatalized_Hook_Below = 0x0321, // U+0321 Combining Palatalized Hook Below
268 > U_Combining_Retroflex_Hook_Below = 0x0322, // U+0322 Combining Retroflex Hook Below
269 > U_Combining_Dot_Below = 0x0323, // U+0323 Combining Dot Below
270 > U_Combining_Diaeresis_Below = 0x0324, // U+0324 Combining Diaeresis Below
271 > U_Combining_Ring_Below = 0x0325, // U+0325 Combining Ring Below
272 > U_Combining_Comma_Below = 0x0326, // U+0326 Combining Comma Below
273 > U_Combining_Cedilla = 0x0327, // U+0327 Combining Cedilla
274 > U_Combining_Ogonek = 0x0328, // U+0328 Combining Ogonek
275 > U_Combining_Vertical_Line_Below = 0x0329, // U+0329 Combining Vertical Line Below
276 > U_Combining_Bridge_Below = 0x032A, // U+032A Combining Bridge Below
277 > U_Combining_Inverted_Double_Arch_Below = 0x032B, // U+032B Combining Inverted Double Arch Below
278 > U_Combining_Caron_Below = 0x032C, // U+032C Combining Caron Below
279 > U_Combining_Circumflex_Accent_Below = 0x032D, // U+032D Combining Circumflex Accent Below
280 > U_Combining_Breve_Below = 0x032E, // U+032E Combining Breve Below
281 > U_Combining_Inverted_Breve_Below = 0x032F, // U+032F Combining Inverted Breve Below
282 > U_Combining_Tilde_Below = 0x0330, // U+0330 Combining Tilde Below
283 > U_Combining_Macron_Below = 0x0331, // U+0331 Combining Macron Below
284 > U_Combining_Low_Line = 0x0332, // U+0332 Combining Low Line
285 > U_Combining_Double_Low_Line = 0x0333, // U+0333 Combining Double Low Line
286 > U_Combining_Tilde_Overlay = 0x0334, // U+0334 Combining Tilde Overlay
287 > U_Combining_Short_Stroke_Overlay = 0x0335, // U+0335 Combining Short Stroke Overlay
288 > U_Combining_Long_Stroke_Overlay = 0x0336, // U+0336 Combining Long Stroke Overlay
289 > U_Combining_Short_Solidus_Overlay = 0x0337, // U+0337 Combining Short Solidus Overlay
290 > U_Combining_Long_Solidus_Overlay = 0x0338, // U+0338 Combining Long Solidus Overlay
291 > U_Combining_Right_Half_Ring_Below = 0x0339, // U+0339 Combining Right Half Ring Below
292 > U_Combining_Inverted_Bridge_Below = 0x033A, // U+033A Combining Inverted Bridge Below
293 > U_Combining_Square_Below = 0x033B, // U+033B Combining Square Below
294 > U_Combining_Seagull_Below = 0x033C, // U+033C Combining Seagull Below
295 > U_Combining_X_Above = 0x033D, // U+033D Combining X Above
296 > U_Combining_Vertical_Tilde = 0x033E, // U+033E Combining Vertical Tilde
297 > U_Combining_Double_Overline = 0x033F, // U+033F Combining Double Overline
298 > U_Combining_Grave_Tone_Mark = 0x0340, // U+0340 Combining Grave Tone Mark
299 > U_Combining_Acute_Tone_Mark = 0x0341, // U+0341 Combining Acute Tone Mark
300 > U_Combining_Greek_Perispomeni = 0x0342, // U+0342 Combining Greek Perispomeni
301 > U_Combining_Greek_Koronis = 0x0343, // U+0343 Combining Greek Koronis
302 > U_Combining_Greek_Dialytika_Tonos = 0x0344, // U+0344 Combining Greek Dialytika Tonos
303 > U_Combining_Greek_Ypogegrammeni = 0x0345, // U+0345 Combining Greek Ypogegrammeni
304 > U_Combining_Bridge_Above = 0x0346, // U+0346 Combining Bridge Above
305 > U_Combining_Equals_Sign_Below = 0x0347, // U+0347 Combining Equals Sign Below
306 > U_Combining_Double_Vertical_Line_Below = 0x0348, // U+0348 Combining Double Vertical Line Below
307 > U_Combining_Left_Angle_Below = 0x0349, // U+0349 Combining Left Angle Below
308 > U_Combining_Not_Tilde_Above = 0x034A, // U+034A Combining Not Tilde Above
309 > U_Combining_Homothetic_Above = 0x034B, // U+034B Combining Homothetic Above
310 > U_Combining_Almost_Equal_To_Above = 0x034C, // U+034C Combining Almost Equal To Above
311 > U_Combining_Left_Right_Arrow_Below = 0x034D, // U+034D Combining Left Right Arrow Below
312 > U_Combining_Upwards_Arrow_Below = 0x034E, // U+034E Combining Upwards Arrow Below
313 > U_Combining_Grapheme_Joiner = 0x034F, // U+034F Combining Grapheme Joiner
314 > U_Combining_Right_Arrowhead_Above = 0x0350, // U+0350 Combining Right Arrowhead Above
315 > U_Combining_Left_Half_Ring_Above = 0x0351, // U+0351 Combining Left Half Ring Above
316 > U_Combining_Fermata = 0x0352, // U+0352 Combining Fermata
317 > U_Combining_X_Below = 0x0353, // U+0353 Combining X Below
318 > U_Combining_Left_Arrowhead_Below = 0x0354, // U+0354 Combining Left Arrowhead Below
319 > U_Combining_Right_Arrowhead_Below = 0x0355, // U+0355 Combining Right Arrowhead Below
320 > U_Combining_Right_Arrowhead_And_Up_Arrowhead_Below = 0x0356, // U+0356 Combining Right Arrowhead And Up Arrowhead Below
321 > U_Combining_Right_Half_Ring_Above = 0x0357, // U+0357 Combining Right Half Ring Above
322 > U_Combining_Dot_Above_Right = 0x0358, // U+0358 Combining Dot Above Right
323 > U_Combining_Asterisk_Below = 0x0359, // U+0359 Combining Asterisk Below
324 > U_Combining_Double_Ring_Below = 0x035A, // U+035A Combining Double Ring Below
325 > U_Combining_Zigzag_Above = 0x035B, // U+035B Combining Zigzag Above
326 > U_Combining_Double_Breve_Below = 0x035C, // U+035C Combining Double Breve Below
327 > U_Combining_Double_Breve = 0x035D, // U+035D Combining Double Breve
328 > U_Combining_Double_Macron = 0x035E, // U+035E Combining Double Macron
329 > U_Combining_Double_Macron_Below = 0x035F, // U+035F Combining Double Macron Below
330 > U_Combining_Double_Tilde = 0x0360, // U+0360 Combining Double Tilde
331 > U_Combining_Double_Inverted_Breve = 0x0361, // U+0361 Combining Double Inverted Breve
332 > U_Combining_Double_Rightwards_Arrow_Below = 0x0362, // U+0362 Combining Double Rightwards Arrow Below
333 > U_Combining_Latin_Small_Letter_A = 0x0363, // U+0363 Combining Latin Small Letter A
334 > U_Combining_Latin_Small_Letter_E = 0x0364, // U+0364 Combining Latin Small Letter E
335 > U_Combining_Latin_Small_Letter_I = 0x0365, // U+0365 Combining Latin Small Letter I
336 > U_Combining_Latin_Small_Letter_O = 0x0366, // U+0366 Combining Latin Small Letter O
337 > U_Combining_Latin_Small_Letter_U = 0x0367, // U+0367 Combining Latin Small Letter U
338 > U_Combining_Latin_Small_Letter_C = 0x0368, // U+0368 Combining Latin Small Letter C
339 > U_Combining_Latin_Small_Letter_D = 0x0369, // U+0369 Combining Latin Small Letter D
340 > U_Combining_Latin_Small_Letter_H = 0x036A, // U+036A Combining Latin Small Letter H
341 > U_Combining_Latin_Small_Letter_M = 0x036B, // U+036B Combining Latin Small Letter M
342 > U_Combining_Latin_Small_Letter_R = 0x036C, // U+036C Combining Latin Small Letter R
343 > U_Combining_Latin_Small_Letter_T = 0x036D, // U+036D Combining Latin Small Letter T
344 > U_Combining_Latin_Small_Letter_V = 0x036E, // U+036E Combining Latin Small Letter V
345 > U_Combining_Latin_Small_Letter_X = 0x036F, // U+036F Combining Latin Small Letter X
346 >
347 > /**
348 > * Unicode Character 'LINE SEPARATOR' (U+2028)
349 > * http://www.fileformat.info/info/unicode/char/2028/index.htm
350 > */
351 > LINE_SEPARATOR = 0x2028,
352 > /**
353 > * Unicode Character 'PARAGRAPH SEPARATOR' (U+2029)
354 > * http://www.fileformat.info/info/unicode/char/2029/index.htm
355 > */
356 > PARAGRAPH_SEPARATOR = 0x2029,
357 > /**
358 > * Unicode Character 'NEXT LINE' (U+0085)
359 > * http://www.fileformat.info/info/unicode/char/0085/index.htm
360 > */
361 > NEXT_LINE = 0x0085,
362 >
363 > // http://www.fileformat.info/info/unicode/category/Sk/list.htm
364 > U_CIRCUMFLEX = 0x005E, // U+005E CIRCUMFLEX
365 > U_GRAVE_ACCENT = 0x0060, // U+0060 GRAVE ACCENT
366 > U_DIAERESIS = 0x00A8, // U+00A8 DIAERESIS
367 > U_MACRON = 0x00AF, // U+00AF MACRON
368 > U_ACUTE_ACCENT = 0x00B4, // U+00B4 ACUTE ACCENT
369 > U_CEDILLA = 0x00B8, // U+00B8 CEDILLA
370 > U_MODIFIER_LETTER_LEFT_ARROWHEAD = 0x02C2, // U+02C2 MODIFIER LETTER LEFT ARROWHEAD
371 > U_MODIFIER_LETTER_RIGHT_ARROWHEAD = 0x02C3, // U+02C3 MODIFIER LETTER RIGHT ARROWHEAD
372 > U_MODIFIER_LETTER_UP_ARROWHEAD = 0x02C4, // U+02C4 MODIFIER LETTER UP ARROWHEAD
373 > U_MODIFIER_LETTER_DOWN_ARROWHEAD = 0x02C5, // U+02C5 MODIFIER LETTER DOWN ARROWHEAD
374 > U_MODIFIER_LETTER_CENTRED_RIGHT_HALF_RING = 0x02D2, // U+02D2 MODIFIER LETTER CENTRED RIGHT HALF RING
375 > U_MODIFIER_LETTER_CENTRED_LEFT_HALF_RING = 0x02D3, // U+02D3 MODIFIER LETTER CENTRED LEFT HALF RING
376 > U_MODIFIER_LETTER_UP_TACK = 0x02D4, // U+02D4 MODIFIER LETTER UP TACK
377 > U_MODIFIER_LETTER_DOWN_TACK = 0x02D5, // U+02D5 MODIFIER LETTER DOWN TACK
378 > U_MODIFIER_LETTER_PLUS_SIGN = 0x02D6, // U+02D6 MODIFIER LETTER PLUS SIGN
379 > U_MODIFIER_LETTER_MINUS_SIGN = 0x02D7, // U+02D7 MODIFIER LETTER MINUS SIGN
380 > U_BREVE = 0x02D8, // U+02D8 BREVE
381 > U_DOT_ABOVE = 0x02D9, // U+02D9 DOT ABOVE
382 > U_RING_ABOVE = 0x02DA, // U+02DA RING ABOVE
383 > U_OGONEK = 0x02DB, // U+02DB OGONEK
384 > U_SMALL_TILDE = 0x02DC, // U+02DC SMALL TILDE
385 > U_DOUBLE_ACUTE_ACCENT = 0x02DD, // U+02DD DOUBLE ACUTE ACCENT
386 > U_MODIFIER_LETTER_RHOTIC_HOOK = 0x02DE, // U+02DE MODIFIER LETTER RHOTIC HOOK
387 > U_MODIFIER_LETTER_CROSS_ACCENT = 0x02DF, // U+02DF MODIFIER LETTER CROSS ACCENT
388 > U_MODIFIER_LETTER_EXTRA_HIGH_TONE_BAR = 0x02E5, // U+02E5 MODIFIER LETTER EXTRA-HIGH TONE BAR
389 > U_MODIFIER_LETTER_HIGH_TONE_BAR = 0x02E6, // U+02E6 MODIFIER LETTER HIGH TONE BAR
390 > U_MODIFIER_LETTER_MID_TONE_BAR = 0x02E7, // U+02E7 MODIFIER LETTER MID TONE BAR
391 > U_MODIFIER_LETTER_LOW_TONE_BAR = 0x02E8, // U+02E8 MODIFIER LETTER LOW TONE BAR
392 > U_MODIFIER_LETTER_EXTRA_LOW_TONE_BAR = 0x02E9, // U+02E9 MODIFIER LETTER EXTRA-LOW TONE BAR
393 > U_MODIFIER_LETTER_YIN_DEPARTING_TONE_MARK = 0x02EA, // U+02EA MODIFIER LETTER YIN DEPARTING TONE MARK
394 > U_MODIFIER_LETTER_YANG_DEPARTING_TONE_MARK = 0x02EB, // U+02EB MODIFIER LETTER YANG DEPARTING TONE MARK
395 > U_MODIFIER_LETTER_UNASPIRATED = 0x02ED, // U+02ED MODIFIER LETTER UNASPIRATED
396 > U_MODIFIER_LETTER_LOW_DOWN_ARROWHEAD = 0x02EF, // U+02EF MODIFIER LETTER LOW DOWN ARROWHEAD
397 > U_MODIFIER_LETTER_LOW_UP_ARROWHEAD = 0x02F0, // U+02F0 MODIFIER LETTER LOW UP ARROWHEAD
398 > U_MODIFIER_LETTER_LOW_LEFT_ARROWHEAD = 0x02F1, // U+02F1 MODIFIER LETTER LOW LEFT ARROWHEAD
399 > U_MODIFIER_LETTER_LOW_RIGHT_ARROWHEAD = 0x02F2, // U+02F2 MODIFIER LETTER LOW RIGHT ARROWHEAD
400 > U_MODIFIER_LETTER_LOW_RING = 0x02F3, // U+02F3 MODIFIER LETTER LOW RING
401 > U_MODIFIER_LETTER_MIDDLE_GRAVE_ACCENT = 0x02F4, // U+02F4 MODIFIER LETTER MIDDLE GRAVE ACCENT
402 > U_MODIFIER_LETTER_MIDDLE_DOUBLE_GRAVE_ACCENT = 0x02F5, // U+02F5 MODIFIER LETTER MIDDLE DOUBLE GRAVE ACCENT
403 > U_MODIFIER_LETTER_MIDDLE_DOUBLE_ACUTE_ACCENT = 0x02F6, // U+02F6 MODIFIER LETTER MIDDLE DOUBLE ACUTE ACCENT
404 > U_MODIFIER_LETTER_LOW_TILDE = 0x02F7, // U+02F7 MODIFIER LETTER LOW TILDE
405 > U_MODIFIER_LETTER_RAISED_COLON = 0x02F8, // U+02F8 MODIFIER LETTER RAISED COLON
406 > U_MODIFIER_LETTER_BEGIN_HIGH_TONE = 0x02F9, // U+02F9 MODIFIER LETTER BEGIN HIGH TONE
407 > U_MODIFIER_LETTER_END_HIGH_TONE = 0x02FA, // U+02FA MODIFIER LETTER END HIGH TONE
408 > U_MODIFIER_LETTER_BEGIN_LOW_TONE = 0x02FB, // U+02FB MODIFIER LETTER BEGIN LOW TONE
409 > U_MODIFIER_LETTER_END_LOW_TONE = 0x02FC, // U+02FC MODIFIER LETTER END LOW TONE
410 > U_MODIFIER_LETTER_SHELF = 0x02FD, // U+02FD MODIFIER LETTER SHELF
411 > U_MODIFIER_LETTER_OPEN_SHELF = 0x02FE, // U+02FE MODIFIER LETTER OPEN SHELF
412 > U_MODIFIER_LETTER_LOW_LEFT_ARROW = 0x02FF, // U+02FF MODIFIER LETTER LOW LEFT ARROW
413 > U_GREEK_LOWER_NUMERAL_SIGN = 0x0375, // U+0375 GREEK LOWER NUMERAL SIGN
414 > U_GREEK_TONOS = 0x0384, // U+0384 GREEK TONOS
415 > U_GREEK_DIALYTIKA_TONOS = 0x0385, // U+0385 GREEK DIALYTIKA TONOS
416 > U_GREEK_KORONIS = 0x1FBD, // U+1FBD GREEK KORONIS
417 > U_GREEK_PSILI = 0x1FBF, // U+1FBF GREEK PSILI
418 > U_GREEK_PERISPOMENI = 0x1FC0, // U+1FC0 GREEK PERISPOMENI
419 > U_GREEK_DIALYTIKA_AND_PERISPOMENI = 0x1FC1, // U+1FC1 GREEK DIALYTIKA AND PERISPOMENI
420 > U_GREEK_PSILI_AND_VARIA = 0x1FCD, // U+1FCD GREEK PSILI AND VARIA
421 > U_GREEK_PSILI_AND_OXIA = 0x1FCE, // U+1FCE GREEK PSILI AND OXIA
422 > U_GREEK_PSILI_AND_PERISPOMENI = 0x1FCF, // U+1FCF GREEK PSILI AND PERISPOMENI
423 > U_GREEK_DASIA_AND_VARIA = 0x1FDD, // U+1FDD GREEK DASIA AND VARIA
424 > U_GREEK_DASIA_AND_OXIA = 0x1FDE, // U+1FDE GREEK DASIA AND OXIA
425 > U_GREEK_DASIA_AND_PERISPOMENI = 0x1FDF, // U+1FDF GREEK DASIA AND PERISPOMENI
426 > U_GREEK_DIALYTIKA_AND_VARIA = 0x1FED, // U+1FED GREEK DIALYTIKA AND VARIA
427 > U_GREEK_DIALYTIKA_AND_OXIA = 0x1FEE, // U+1FEE GREEK DIALYTIKA AND OXIA
428 > U_GREEK_VARIA = 0x1FEF, // U+1FEF GREEK VARIA
429 > U_GREEK_OXIA = 0x1FFD, // U+1FFD GREEK OXIA
430 > U_GREEK_DASIA = 0x1FFE, // U+1FFE GREEK DASIA
431 >
432 > U_IDEOGRAPHIC_FULL_STOP = 0x3002, // U+3002 IDEOGRAPHIC FULL STOP
433 > U_LEFT_CORNER_BRACKET = 0x300C, // U+300C LEFT CORNER BRACKET
434 > U_RIGHT_CORNER_BRACKET = 0x300D, // U+300D RIGHT CORNER BRACKET
435 > U_LEFT_BLACK_LENTICULAR_BRACKET = 0x3010, // U+3010 LEFT BLACK LENTICULAR BRACKET
436 > U_RIGHT_BLACK_LENTICULAR_BRACKET = 0x3011, // U+3011 RIGHT BLACK LENTICULAR BRACKET
437 >
438 >
439 > U_OVERLINE = 0x203E, // Unicode Character 'OVERLINE'
440 >
441 > /**
442 > * UTF-8 BOM
443 > * Unicode Character 'ZERO WIDTH NO-BREAK SPACE' (U+FEFF)
444 > * http://www.fileformat.info/info/unicode/char/feff/index.htm
445 > */
446 > UTF8_BOM = 65279,
447 >
448 > U_FULLWIDTH_SEMICOLON = 0xFF1B, // U+FF1B FULLWIDTH SEMICOLON
449 > U_FULLWIDTH_COMMA = 0xFF0C, // U+FF0C FULLWIDTH COMMA
450 > }
src/vs/platform/log/common/log.ts 447 covered LOC · 73 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- log.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import * as nls from '../../../nls.js';
7 > import { toErrorMessage } from '../../../base/common/errorMessage.js';
8 > import { Emitter, Event } from '../../../base/common/event.js';
9 > import { hash } from '../../../base/common/hash.js';
10 > import { Disposable, IDisposable, toDisposable } from '../../../base/common/lifecycle.js';
11 > import { ResourceMap } from '../../../base/common/map.js';
12 > import { isWindows } from '../../../base/common/platform.js';
13 > import { joinPath } from '../../../base/common/resources.js';
14 > import { Mutable, isNumber, isString } from '../../../base/common/types.js';
15 > import { URI } from '../../../base/common/uri.js';
16 > import { ILocalizedString } from '../../action/common/action.js';
17 > import { RawContextKey } from '../../contextkey/common/contextkey.js';
18 > import { IEnvironmentService } from '../../environment/common/environment.js';
19 > import { createDecorator } from '../../instantiation/common/instantiation.js';
20 >
21 > export const ILogService = createDecorator<ILogService>('logService');
22 > export const ILoggerService = createDecorator<ILoggerService>('loggerService');
23 >
24 function now(): string {
25 return new Date().toISOString();
26 }
27 > log.ts
28 > export function isLogLevel(thing: unknown): thing is LogLevel {
29 return isNumber(thing);
30 }
31 > log.ts
32 > export enum LogLevel {
33 > Off,
34 > Trace,
35 > Debug,
36 > Info,
37 > Warning,
38 > Error
39 > }
40 >
41 > export const DEFAULT_LOG_LEVEL: LogLevel = LogLevel.Info;
42 >
43 > export interface ILogger extends IDisposable {
44 > readonly onDidChangeLogLevel: Event<LogLevel>;
45 > getLevel(): LogLevel;
46 > setLevel(level: LogLevel): void;
47 >
48 > trace(message: string, ...args: unknown[]): void;
49 > debug(message: string, ...args: unknown[]): void;
50 > info(message: string, ...args: unknown[]): void;
51 > warn(message: string, ...args: unknown[]): void;
52 > error(message: string | Error, ...args: unknown[]): void;
53 >
54 > /**
55 > * An operation to flush the contents. Can be synchronous.
56 > */
57 > flush(): void;
58 > }
59 >
60 > export function canLog(loggerLevel: LogLevel, messageLevel: LogLevel): boolean {
61 return loggerLevel !== LogLevel.Off && loggerLevel <= messageLevel;
62 }
63 > log.ts
64 > export function log(logger: ILogger, level: LogLevel, message: string): void {
65 switch (level) {
66 case LogLevel.Trace: logger.trace(message); break;
73 }
74 }
75 > log.ts
76 > type ConsoleMethod = 'debug' | 'error' | 'info' | 'log' | 'warn';
77 > type ConsoleMethodFn = (...args: unknown[]) => void;
78 >
79 > /**
80 > * Flag to enable forwarding of console.* calls to the log service in development.
81 > * This is intended for the use of agents to quickly instrument the code with console.logs
82 > * which will end up in the log service's file outputs.
83 > */
84 > export const isDevConsoleLogForwardingEnabled = false
85 > // || Boolean("true") // done "weirdly" so that a lint warning prevents you from pushing this
86 > ;
87 >
88 > let isConsoleForwarding = false;
89 > let isLogServiceConsoleEcho = false;
90 >
91 function getConsoleMethod(method: ConsoleMethod): ConsoleMethodFn {
92 switch (method) {
98 }
99 }
100 > log.ts
101 function setConsoleMethod(method: ConsoleMethod, fn: ConsoleMethodFn): void {
102 switch (method) {
108 }
109 }
110 > log.ts
111 function logToConsole(method: ConsoleMethod, ...args: unknown[]): void {
112 if (isConsoleForwarding) {
120 }
121 }
122 > log.ts
123 > export function registerDevConsoleLogForwarder(logService: ILogService): IDisposable {
124 const originalConsoleMethods: Record<ConsoleMethod, ConsoleMethodFn> = {
125 debug: console.debug,
177 });
178 }
179 > log.ts
180 > export function format(args: any, verbose: boolean = false): string {
181 let result = '';
182
199 return result;
200 }
201 > log.ts
202 > export type LoggerGroup = {
203 > readonly id: string;
204 > readonly name: string;
205 > };
206 >
207 > export interface ILogService extends ILogger {
208 > readonly _serviceBrand: undefined;
209 > }
210 >
211 > export interface ILoggerOptions {
212 >
213 > /**
214 > * Id of the logger.
215 > */
216 > id?: string;
217 >
218 > /**
219 > * Name of the logger.
220 > */
221 > name?: string;
222 >
223 > /**
224 > * Do not create rotating files if max size exceeds.
225 > */
226 > donotRotate?: boolean;
227 >
228 > /**
229 > * Do not use formatters.
230 > */
231 > donotUseFormatters?: boolean;
232 >
233 > /**
234 > * When to log. Set to `always` to log always.
235 > */
236 > logLevel?: 'always' | LogLevel;
237 >
238 > /**
239 > * Whether the log should be hidden from the user.
240 > */
241 > hidden?: boolean;
242 >
243 > /**
244 > * Condition which must be true to show this logger
245 > */
246 > when?: string;
247 >
248 > /**
249 > * Id of the extension that created this logger.
250 > */
251 > extensionId?: string;
252 >
253 > /**
254 > * Group of the logger.
255 > */
256 > group?: LoggerGroup;
257 > }
258 >
259 > export interface ILoggerResource {
260 > readonly resource: URI;
261 > readonly id: string;
262 > readonly name?: string;
263 > readonly logLevel?: LogLevel;
264 > readonly hidden?: boolean;
265 > readonly when?: string;
266 > readonly extensionId?: string;
267 > readonly group?: LoggerGroup;
268 > }
269 >
270 > export type DidChangeLoggersEvent = {
271 > readonly added: Iterable<ILoggerResource>;
272 > readonly removed: Iterable<ILoggerResource>;
273 > };
274 >
275 > export interface ILoggerService {
276 >
277 > readonly _serviceBrand: undefined;
278 >
279 > /**
280 > * Creates a logger for the given resource, or gets one if it already exists.
281 > *
282 > * This will also register the logger with the logger service.
283 > */
284 > createLogger(resource: URI, options?: ILoggerOptions): ILogger;
285 >
286 > /**
287 > * Creates a logger with the given id in the logs folder, or gets one if it already exists.
288 > *
289 > * This will also register the logger with the logger service.
290 > */
291 > createLogger(id: string, options?: Omit<ILoggerOptions, 'id'>): ILogger;
292 >
293 > /**
294 > * Gets an existing logger, if any.
295 > */
296 > getLogger(resourceOrId: URI | string): ILogger | undefined;
297 >
298 > /**
299 > * An event which fires when the log level of a logger has changed
300 > */
301 > readonly onDidChangeLogLevel: Event<LogLevel | [URI, LogLevel]>;
302 >
303 > /**
304 > * Set default log level.
305 > */
306 > setLogLevel(level: LogLevel): void;
307 >
308 > /**
309 > * Set log level for a logger.
310 > */
311 > setLogLevel(resource: URI, level: LogLevel): void;
312 >
313 > /**
314 > * Get log level for a logger or the default log level.
315 > */
316 > getLogLevel(resource?: URI): LogLevel;
317 >
318 > /**
319 > * An event which fires when the visibility of a logger has changed
320 > */
321 > readonly onDidChangeVisibility: Event<[URI, boolean]>;
322 >
323 > /**
324 > * Set the visibility of a logger.
325 > */
326 > setVisibility(resourceOrId: URI | string, visible: boolean): void;
327 >
328 > /**
329 > * An event which fires when the logger resources are changed
330 > */
331 > readonly onDidChangeLoggers: Event<DidChangeLoggersEvent>;
332 >
333 > /**
334 > * Register a logger with the logger service.
335 > *
336 > * Note that this will not create a logger, but only register it.
337 > *
338 > * Use `createLogger` to create a logger and register it.
339 > *
340 > * Use it when you want to register a logger that is not created by the logger service.
341 > */
342 > registerLogger(resource: ILoggerResource): void;
343 >
344 > /**
345 > * Deregister the logger for the given resource.
346 > */
347 > deregisterLogger(idOrResource: URI | string): void;
348 >
349 > /**
350 > * Get all registered loggers
351 > */
352 > getRegisteredLoggers(): Iterable<ILoggerResource>;
353 >
354 > /**
355 > * Get the registered logger for the given resource.
356 > */
357 > getRegisteredLogger(resource: URI): ILoggerResource | undefined;
358 > }
359 >
360 > export abstract class AbstractLogger extends Disposable implements ILogger {
361
362 private level: LogLevel = DEFAULT_LOG_LEVEL;
363 private readonly _onDidChangeLogLevel: Emitter<LogLevel> = this._register(new Emitter<LogLevel>());
364 > get onDidChangeLogLevel(): Event<LogLevel> { return this._onDidChangeLogLevel.event; } log.ts
365 >
366 > setLevel(level: LogLevel): void {
367 if (this.level !== level) {
368 this.level = level;
370 }
371 }
372 > log.ts
373 > getLevel(): LogLevel {
374 return this.level;
375 }
376 > log.ts
377 > protected checkLogLevel(level: LogLevel): boolean {
378 return canLog(this.level, level);
379 }
380 > log.ts
381 > protected canLog(level: LogLevel): boolean {
382 if (this._store.isDisposed) {
383 return false;
385 return this.checkLogLevel(level);
386 }
387 > log.ts
388 > abstract trace(message: string, ...args: unknown[]): void;
389 > abstract debug(message: string, ...args: unknown[]): void;
390 > abstract info(message: string, ...args: unknown[]): void;
391 > abstract warn(message: string, ...args: unknown[]): void;
392 > abstract error(message: string | Error, ...args: unknown[]): void;
393 > abstract flush(): void;
394 > }
395 >
396 > export abstract class AbstractMessageLogger extends AbstractLogger implements ILogger {
397 >
398 > constructor(private readonly logAlways?: boolean) {
399 super();
400 }
401 > log.ts
402 > protected override checkLogLevel(level: LogLevel): boolean {
403 return this.logAlways || super.checkLogLevel(level);
404 }
405 > log.ts
406 > trace(message: string, ...args: unknown[]): void {
407 if (this.canLog(LogLevel.Trace)) {
408 this.log(LogLevel.Trace, format([message, ...args], true));
409 }
410 }
411 > log.ts
412 > debug(message: string, ...args: unknown[]): void {
413 if (this.canLog(LogLevel.Debug)) {
414 this.log(LogLevel.Debug, format([message, ...args]));
415 }
416 }
417 > log.ts
418 > info(message: string, ...args: unknown[]): void {
419 if (this.canLog(LogLevel.Info)) {
420 this.log(LogLevel.Info, format([message, ...args]));
421 }
422 }
423 > log.ts
424 > warn(message: string, ...args: unknown[]): void {
425 if (this.canLog(LogLevel.Warning)) {
426 this.log(LogLevel.Warning, format([message, ...args]));
427 }
428 }
429 > log.ts
430 > error(message: string | Error, ...args: unknown[]): void {
431 if (this.canLog(LogLevel.Error)) {
432 if (message instanceof Error) {
439 }
440 }
441 > log.ts
442 > flush(): void { }
443 >
444 > protected abstract log(level: LogLevel, message: string): void;
445 > }
446 >
447 >
448 > export class ConsoleMainLogger extends AbstractLogger implements ILogger {
449 >
450 > private useColors: boolean;
451 >
452 > constructor(logLevel: LogLevel = DEFAULT_LOG_LEVEL) {
453 super();
454 this.setLevel(logLevel);
455 this.useColors = !isWindows;
456 }
457 > log.ts
458 > trace(message: string, ...args: unknown[]): void {
459 if (this.canLog(LogLevel.Trace)) {
460 if (this.useColors) {
465 }
466 }
467 > log.ts
468 > debug(message: string, ...args: unknown[]): void {
469 if (this.canLog(LogLevel.Debug)) {
470 if (this.useColors) {
475 }
476 }
477 > log.ts
478 > info(message: string, ...args: unknown[]): void {
479 if (this.canLog(LogLevel.Info)) {
480 if (this.useColors) {
485 }
486 }
487 > log.ts
488 > warn(message: string | Error, ...args: unknown[]): void {
489 if (this.canLog(LogLevel.Warning)) {
490 if (this.useColors) {
495 }
496 }
497 > log.ts
498 > error(message: string, ...args: unknown[]): void {
499 if (this.canLog(LogLevel.Error)) {
500 if (this.useColors) {
505 }
506 }
507 > log.ts
508 > flush(): void {
509 // noop
510 }
511 > log.ts
512 > }
513 >
514 > export class ConsoleLogger extends AbstractLogger implements ILogger {
515 >
516 > constructor(logLevel: LogLevel = DEFAULT_LOG_LEVEL, private readonly useColors: boolean = true) {
517 super();
518 this.setLevel(logLevel);
519 }
520 > log.ts
521 > trace(message: string, ...args: unknown[]): void {
522 if (this.canLog(LogLevel.Trace)) {
523 if (this.useColors) {
528 }
529 }
530 > log.ts
531 > debug(message: string, ...args: unknown[]): void {
532 if (this.canLog(LogLevel.Debug)) {
533 if (this.useColors) {
538 }
539 }
540 > log.ts
541 > info(message: string, ...args: unknown[]): void {
542 if (this.canLog(LogLevel.Info)) {
543 if (this.useColors) {
548 }
549 }
550 > log.ts
551 > warn(message: string | Error, ...args: unknown[]): void {
552 if (this.canLog(LogLevel.Warning)) {
553 if (this.useColors) {
558 }
559 }
560 > log.ts
561 > error(message: string, ...args: unknown[]): void {
562 if (this.canLog(LogLevel.Error)) {
563 if (this.useColors) {
568 }
569 }
570 > log.ts
571 >
572 > flush(): void {
573 // noop
574 }
575 > } log.ts
576 >
577 > export class AdapterLogger extends AbstractLogger implements ILogger {
578 >
579 > constructor(private readonly adapter: { log: (logLevel: LogLevel, args: any[]) => void }, logLevel: LogLevel = DEFAULT_LOG_LEVEL) {
580 super();
581 this.setLevel(logLevel);
582 }
583 > log.ts
584 > trace(message: string, ...args: unknown[]): void {
585 if (this.canLog(LogLevel.Trace)) {
586 this.adapter.log(LogLevel.Trace, [this.extractMessage(message), ...args]);
587 }
588 }
589 > log.ts
590 > debug(message: string, ...args: unknown[]): void {
591 if (this.canLog(LogLevel.Debug)) {
592 this.adapter.log(LogLevel.Debug, [this.extractMessage(message), ...args]);
593 }
594 }
595 > log.ts
596 > info(message: string, ...args: unknown[]): void {
597 if (this.canLog(LogLevel.Info)) {
598 this.adapter.log(LogLevel.Info, [this.extractMessage(message), ...args]);
599 }
600 }
601 > log.ts
602 > warn(message: string | Error, ...args: unknown[]): void {
603 if (this.canLog(LogLevel.Warning)) {
604 this.adapter.log(LogLevel.Warning, [this.extractMessage(message), ...args]);
605 }
606 }
607 > log.ts
608 > error(message: string | Error, ...args: unknown[]): void {
609 if (this.canLog(LogLevel.Error)) {
610 this.adapter.log(LogLevel.Error, [this.extractMessage(message), ...args]);
611 }
612 }
613 > log.ts
614 > private extractMessage(msg: string | Error): string {
615 if (typeof msg === 'string') {
616 return msg;
619 return toErrorMessage(msg, this.canLog(LogLevel.Trace));
620 }
621 > log.ts
622 > flush(): void {
623 // noop
624 }
625 > } log.ts
626 >
627 > export class MultiplexLogger extends AbstractLogger implements ILogger {
628 >
629 > constructor(private readonly loggers: ReadonlyArray<ILogger>) {
630 super();
631 if (loggers.length) {
633 }
634 }
635 > log.ts
636 > override setLevel(level: LogLevel): void {
637 for (const logger of this.loggers) {
638 logger.setLevel(level);
640 super.setLevel(level);
641 }
642 > log.ts
643 > trace(message: string, ...args: unknown[]): void {
644 for (const logger of this.loggers) {
645 logger.trace(message, ...args);
646 }
647 }
648 > log.ts
649 > debug(message: string, ...args: unknown[]): void {
650 for (const logger of this.loggers) {
651 logger.debug(message, ...args);
652 }
653 }
654 > log.ts
655 > info(message: string, ...args: unknown[]): void {
656 for (const logger of this.loggers) {
657 logger.info(message, ...args);
658 }
659 }
660 > log.ts
661 > warn(message: string, ...args: unknown[]): void {
662 for (const logger of this.loggers) {
663 logger.warn(message, ...args);
664 }
665 }
666 > log.ts
667 > error(message: string | Error, ...args: unknown[]): void {
668 for (const logger of this.loggers) {
669 logger.error(message, ...args);
670 }
671 }
672 > log.ts
673 > flush(): void {
674 for (const logger of this.loggers) {
675 logger.flush();
676 }
677 }
678 > log.ts
679 > override dispose(): void {
680 for (const logger of this.loggers) {
681 logger.dispose();
683 super.dispose();
684 }
685 > } log.ts
686 >
687 > type LoggerEntry = { logger: ILogger | undefined; info: Mutable<ILoggerResource> };
688 >
689 > export abstract class AbstractLoggerService extends Disposable implements ILoggerService {
690 >
691 > declare readonly _serviceBrand: undefined;
692 >
693 > private readonly _loggers = new ResourceMap<LoggerEntry>();
694 >
695 > private _onDidChangeLoggers = this._register(new Emitter<{ added: ILoggerResource[]; removed: ILoggerResource[] }>);
696 > readonly onDidChangeLoggers = this._onDidChangeLoggers.event;
697 >
698 > private _onDidChangeLogLevel = this._register(new Emitter<LogLevel | [URI, LogLevel]>);
699 > readonly onDidChangeLogLevel = this._onDidChangeLogLevel.event;
700 >
701 > private _onDidChangeVisibility = this._register(new Emitter<[URI, boolean]>);
702 > readonly onDidChangeVisibility = this._onDidChangeVisibility.event;
703 >
704 > constructor(
705 protected logLevel: LogLevel,
706 private readonly logsHome: URI,
714 }
715 }
716 > log.ts
717 > private getLoggerEntry(resourceOrId: URI | string): LoggerEntry | undefined {
718 if (isString(resourceOrId)) {
719 return [...this._loggers.values()].find(logger => logger.info.id === resourceOrId);
721 return this._loggers.get(resourceOrId);
722 }
723 > log.ts
724 > getLogger(resourceOrId: URI | string): ILogger | undefined {
725 return this.getLoggerEntry(resourceOrId)?.logger;
726 }
727 > log.ts
728 > createLogger(idOrResource: URI | string, options?: ILoggerOptions): ILogger {
729 const resource = this.toResource(idOrResource);
730 const id = isString(idOrResource) ? idOrResource : (options?.id ?? hash(resource.toString()).toString(16));
752 return logger;
753 }
754 > log.ts
755 > protected toResource(idOrResource: string | URI): URI {
756 return isString(idOrResource) ? joinPath(this.logsHome, `${idOrResource.replace(/[\\/:\*\?"<>\|]/g, '')}.log`) : idOrResource;
757 }
758 > log.ts
759 > setLogLevel(logLevel: LogLevel): void;
760 > setLogLevel(resource: URI, logLevel: LogLevel): void;
761 > setLogLevel(arg1: any, arg2?: any): void {
762 if (URI.isUri(arg1)) {
763 const resource = arg1;
780 }
781 }
782 > log.ts
783 > setVisibility(resourceOrId: URI | string, visibility: boolean): void {
784 const logger = this.getLoggerEntry(resourceOrId);
785 if (logger && visibility !== !logger.info.hidden) {
789 }
790 }
791 > log.ts
792 > getLogLevel(resource?: URI): LogLevel {
793 let logLevel;
794 if (resource) {
797 return logLevel ?? this.logLevel;
798 }
799 > log.ts
800 > registerLogger(resource: ILoggerResource): void {
801 const existing = this._loggers.get(resource.resource);
802 if (existing) {
809 }
810 }
811 > log.ts
812 > deregisterLogger(idOrResource: URI | string): void {
813 const resource = this.toResource(idOrResource);
814 const existing = this._loggers.get(resource);
821 }
822 }
823 > log.ts
824 > *getRegisteredLoggers(): Iterable<ILoggerResource> {
825 for (const entry of this._loggers.values()) {
826 yield entry.info;
827 }
828 }
829 > log.ts
830 > getRegisteredLogger(resource: URI): ILoggerResource | undefined {
831 return this._loggers.get(resource)?.info;
832 }
833 > log.ts
834 > override dispose(): void {
835 this._loggers.forEach(logger => logger.logger?.dispose());
836 this._loggers.clear();
837 super.dispose();
838 }
839 > log.ts
840 > protected abstract doCreateLogger(resource: URI, logLevel: LogLevel, options?: ILoggerOptions): ILogger;
841 > }
842 >
843 > export class NullLogger implements ILogger {
844 > readonly onDidChangeLogLevel: Event<LogLevel> = new Emitter<LogLevel>().event; log.ts
845 > setLevel(level: LogLevel): void { } log.ts
846 > getLevel(): LogLevel { return LogLevel.Info; }
847 > trace(message: string, ...args: unknown[]): void { }
848 > debug(message: string, ...args: unknown[]): void { }
849 > info(message: string, ...args: unknown[]): void { }
850 > warn(message: string, ...args: unknown[]): void { }
851 > error(message: string | Error, ...args: unknown[]): void { }
852 > critical(message: string | Error, ...args: unknown[]): void { }
853 > dispose(): void { }
854 > flush(): void { }
855 > }
856 >
857 > export class NullLogService extends NullLogger implements ILogService {
858 > declare readonly _serviceBrand: undefined;
859 > }
860 >
861 > export class NullLoggerService extends AbstractLoggerService {
862 > constructor() {
863 super(LogLevel.Off, URI.parse('log:///log'));
864 }
865 > protected override doCreateLogger(resource: URI, logLevel: LogLevel, options?: ILoggerOptions): ILogger { log.ts
866 return new NullLogger();
867 }
868 > } log.ts
869 >
870 > export function getLogLevel(environmentService: IEnvironmentService): LogLevel {
871 if (environmentService.verbose) {
872 return LogLevel.Trace;
880 return DEFAULT_LOG_LEVEL;
881 }
882 > log.ts
883 > export function LogLevelToString(logLevel: LogLevel): string {
884 > switch (logLevel) {
885 > case LogLevel.Trace: return 'trace';
886 > case LogLevel.Debug: return 'debug';
887 > case LogLevel.Info: return 'info';
888 > case LogLevel.Warning: return 'warn';
889 > case LogLevel.Error: return 'error';
890 > case LogLevel.Off: return 'off';
891 > }
892 > }
893 >
894 > export function LogLevelToLocalizedString(logLevel: LogLevel): ILocalizedString {
895 switch (logLevel) {
896 case LogLevel.Trace: return { original: 'Trace', value: nls.localize('trace', "Trace") };
902 }
903 }
904 > log.ts
905 > export function parseLogLevel(logLevel: string): LogLevel | undefined {
906 switch (logLevel) {
907 case 'trace':
922 return undefined;
923 }
924 > log.ts
925 > // Contexts
926 > export const CONTEXT_LOG_LEVEL = new RawContextKey<string>('logLevel', LogLevelToString(LogLevel.Info));
src/vs/base/common/uri.ts 428 covered LOC · 76 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- uri.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CharCode } from './charCode.js';
7 > import { MarshalledId } from './marshallingIds.js';
8 > import * as paths from './path.js';
9 > import { isWindows } from './platform.js';
10 >
11 > const _schemePattern = /^\w[\w\d+.-]*$/;
12 > const _singleSlashStart = /^\//;
13 > const _doubleSlashStart = /^\/\//;
14 >
15 > function _validateUri(ret: URI, _strict?: boolean): void { uri.ts
16 >
17 > // scheme, must be set
18 > if (!ret.scheme && _strict) {
19 throw new Error(`[UriError]: Scheme is missing: {scheme: "", authority: "${ret.authority}", path: "${ret.path}", query: "${ret.query}", fragment: "${ret.fragment}"}`);
20 }
21 > uri.ts
22 > // scheme, https://tools.ietf.org/html/rfc3986#section-3.1
23 > // ALPHA *( ALPHA / DIGIT / "+" / "-" / "." )
24 > if (ret.scheme && !_schemePattern.test(ret.scheme)) { uri.ts
25 const matches = [...ret.scheme.matchAll(/[^\w\d+.-]/gu)];
26 const detail = matches.length > 0
29 throw new Error(`[UriError]: Scheme contains illegal characters.${detail} (len:${ret.scheme.length})`);
30 }
31 > uri.ts
32 > // path, http://tools.ietf.org/html/rfc3986#section-3.3
33 > // If a URI contains an authority component, then the path component
34 > // must either be empty or begin with a slash ("/") character. If a URI
35 > // does not contain an authority component, then the path cannot begin
36 > // with two slash characters ("//").
37 > if (ret.path) {
38 > if (ret.authority) { uri.ts
39 if (!_singleSlashStart.test(ret.path)) {
40 throw new Error('[UriError]: If a URI contains an authority component, then the path component must either be empty or begin with a slash ("/") character');
41 }
42 > } else { uri.ts
43 > if (_doubleSlashStart.test(ret.path)) { uri.ts
44 throw new Error('[UriError]: If a URI does not contain an authority component, then the path cannot begin with two slash characters ("//")');
45 }
46 > } uri.ts
47 > } uri.ts
48 > } uri.ts
49 > uri.ts
50 > // for a while we allowed uris *without* schemes and this is the migration
51 > // for them, e.g. an uri without scheme and without strict-mode warns and falls
52 > // back to the file-scheme. that should cause the least carnage and still be a
53 > // clear warning
54 > function _schemeFix(scheme: string, _strict: boolean): string { uri.ts
55 > if (!scheme && !_strict) {
56 return 'file';
57 }
58 > return scheme; uri.ts
59 > }
60 > uri.ts
61 > // implements a bit of https://tools.ietf.org/html/rfc3986#section-5
62 > function _referenceResolution(scheme: string, path: string): string { uri.ts
63 >
64 > // the slash-character is our 'default base' as we don't
65 > // support constructing URIs relative to other URIs. This
66 > // also means that we alter and potentially break paths.
67 > // see https://tools.ietf.org/html/rfc3986#section-5.1.4
68 > switch (scheme) {
69 > case 'https':
70 > case 'http':
71 > case 'file':
72 > if (!path) { uri.ts
73 path = _slash;
74 > } else if (path[0] !== _slash) { uri.ts
75 path = _slash + path;
76 }
77 > break; uri.ts
78 > } uri.ts
79 > return path;
80 > }
81 > uri.ts
82 > const _empty = '';
83 > const _slash = '/';
84 > const _regexp = /^(([^:/?#]+?):)?(\/\/([^/?#]*))?([^?#]*)(\?([^#]*))?(#(.*))?/;
85 >
86 > /**
87 > * Uniform Resource Identifier (URI) http://tools.ietf.org/html/rfc3986.
88 > * This class is a simple parser which creates the basic component parts
89 > * (http://tools.ietf.org/html/rfc3986#section-3) with minimal validation
90 > * and encoding.
91 > *
92 > * ```txt
93 > * foo://example.com:8042/over/there?name=ferret#nose
94 > * \_/ \______________/\_________/ \_________/ \__/
95 > * | | | | |
96 > * scheme authority path query fragment
97 > * | _____________________|__
98 > * / \ / \
99 > * urn:example:animal:ferret:nose
100 > * ```
101 > */
102 > export class URI implements UriComponents {
103 >
104 > static isUri(thing: unknown): thing is URI {
105 if (thing instanceof URI) {
106 return true;
118 && typeof (<URI>thing).toString === 'function';
119 }
120 > uri.ts
121 > /**
122 > * scheme is the 'http' part of 'http://www.example.com/some/path?query#fragment'.
123 > * The part before the first colon.
124 > */
125 > readonly scheme: string;
126 >
127 > /**
128 > * authority is the 'www.example.com' part of 'http://www.example.com/some/path?query#fragment'.
129 > * The part between the first double slashes and the next slash.
130 > */
131 > readonly authority: string;
132 >
133 > /**
134 > * path is the '/some/path' part of 'http://www.example.com/some/path?query#fragment'.
135 > */
136 > readonly path: string;
137 >
138 > /**
139 > * query is the 'query' part of 'http://www.example.com/some/path?query#fragment'.
140 > */
141 > readonly query: string;
142 >
143 > /**
144 > * fragment is the 'fragment' part of 'http://www.example.com/some/path?query#fragment'.
145 > */
146 > readonly fragment: string;
147 >
148 > /**
149 > * @internal
150 > */
151 > protected constructor(scheme: string, authority?: string, path?: string, query?: string, fragment?: string, _strict?: boolean);
152 >
153 > /**
154 > * @internal
155 > */
156 > protected constructor(components: UriComponents);
157 >
158 > /**
159 > * @internal
160 > */
161 > protected constructor(schemeOrData: string | UriComponents, authority?: string, path?: string, query?: string, fragment?: string, _strict: boolean = false) {
162 > uri.ts
163 > if (typeof schemeOrData === 'object') {
164 this.scheme = schemeOrData.scheme || _empty;
165 this.authority = schemeOrData.authority || _empty;
170 // that creates uri components.
171 // _validateUri(this);
172 > } else { uri.ts
173 > this.scheme = _schemeFix(schemeOrData, _strict);
174 > this.authority = authority || _empty;
175 > this.path = _referenceResolution(this.scheme, path || _empty);
176 > this.query = query || _empty;
177 > this.fragment = fragment || _empty;
178 >
179 > _validateUri(this, _strict);
180 > }
181 > }
182 > uri.ts
183 > // ---- filesystem path -----------------------
184 >
185 > /**
186 > * Returns a string representing the corresponding file system path of this URI.
187 > * Will handle UNC paths, normalizes windows drive letters to lower-case, and uses the
188 > * platform specific path separator.
189 > *
190 > * * Will *not* validate the path for invalid characters and semantics.
191 > * * Will *not* look at the scheme of this URI.
192 > * * The result shall *not* be used for display purposes but for accessing a file on disk.
193 > *
194 > *
195 > * The *difference* to `URI#path` is the use of the platform specific separator and the handling
196 > * of UNC paths. See the below sample of a file-uri with an authority (UNC path).
197 > *
198 > * ```ts
199 > const u = URI.parse('file://server/c$/folder/file.txt')
200 > u.authority === 'server'
201 > u.path === '/shares/c$/file.txt'
202 > u.fsPath === '\\server\c$\folder\file.txt'
203 > ```
204 > *
205 > * Using `URI#path` to read a file (using fs-apis) would not be enough because parts of the path,
206 > * namely the server name, would be missing. Therefore `URI#fsPath` exists - it's sugar to ease working
207 > * with URIs that represent files on disk (`file` scheme).
208 > */
209 > get fsPath(): string {
210 // if (this.scheme !== 'file') {
211 // console.warn(`[UriError] calling fsPath with scheme ${this.scheme}`);
213 return uriToFsPath(this, false);
214 }
215 > uri.ts
216 > // ---- modify to new -------------------------
217 >
218 > with(change: { scheme?: string; authority?: string | null; path?: string | null; query?: string | null; fragment?: string | null }): URI {
219
220 if (!change) {
260 return new Uri(scheme, authority, path, query, fragment);
261 }
262 > uri.ts
263 > // ---- parse & validate ------------------------
264 >
265 > /**
266 > * Creates a new URI from a string, e.g. `http://www.example.com/some/path`,
267 > * `file:///usr/home`, or `scheme:with/path`.
268 > *
269 > * @param value A string which represents an URI (see `URI#toString`).
270 > */
271 > static parse(value: string, _strict: boolean = false): URI {
272 const match = _regexp.exec(value);
273 if (!match) {
283 );
284 }
285 > uri.ts
286 > /**
287 > * Creates a new URI from a file system path, e.g. `c:\my\files`,
288 > * `/usr/home`, or `\\server\share\some\path`.
289 > *
290 > * The *difference* between `URI#parse` and `URI#file` is that the latter treats the argument
291 > * as path, not as stringified-uri. E.g. `URI.file(path)` is **not the same as**
292 > * `URI.parse('file://' + path)` because the path might contain characters that are
293 > * interpreted (# and ?). See the following sample:
294 > * ```ts
295 > const good = URI.file('/coding/c#/project1');
296 > good.scheme === 'file';
297 > good.path === '/coding/c#/project1';
298 > good.fragment === '';
299 > const bad = URI.parse('file://' + '/coding/c#/project1');
300 > bad.scheme === 'file';
301 > bad.path === '/coding/c'; // path is now broken
302 > bad.fragment === '/project1';
303 > ```
304 > *
305 > * @param path A file system path (see `URI#fsPath`)
306 > */
307 > static file(path: string): URI {
308 > uri.ts
309 > let authority = _empty;
310 >
311 > // normalize to fwd-slashes on windows,
312 > // on other systems bwd-slashes are valid
313 > // filename character, eg /f\oo/ba\r.txt
314 > if (isWindows) {
315 path = path.replace(/\\/g, _slash);
316 }
317 > uri.ts
318 > // check for authority as used in UNC shares
319 > // or use the path as given
320 > if (path[0] === _slash && path[1] === _slash) {
321 const idx = path.indexOf(_slash, 2);
322 if (idx === -1) {
328 }
329 }
330 > uri.ts
331 > return new Uri('file', authority, path, _empty, _empty);
332 > }
333 > uri.ts
334 > /**
335 > * Creates new URI from uri components.
336 > *
337 > * Unless `strict` is `true` the scheme is defaults to be `file`. This function performs
338 > * validation and should be used for untrusted uri components retrieved from storage,
339 > * user input, command arguments etc
340 > */
341 > static from(components: UriComponents, strict?: boolean): URI {
342 > const result = new Uri( uri.ts
343 > components.scheme,
344 > components.authority,
345 > components.path,
346 > components.query,
347 > components.fragment,
348 > strict
349 > );
350 > return result;
351 > }
352 > uri.ts
353 > /**
354 > * Join a URI path with path fragments and normalizes the resulting path.
355 > *
356 > * @param uri The input URI.
357 > * @param pathFragment The path fragment to add to the URI path.
358 > * @returns The resulting URI.
359 > */
360 > static joinPath(uri: URI, ...pathFragment: string[]): URI {
361 if (!uri.path) {
362 throw new Error(`[UriError]: cannot call joinPath on URI without path: ${uri.toString()}`);
370 return uri.with({ path: newPath });
371 }
372 > uri.ts
373 > // ---- printing/externalize ---------------------------
374 >
375 > /**
376 > * Creates a string representation for this URI. It's guaranteed that calling
377 > * `URI.parse` with the result of this function creates an URI which is equal
378 > * to this URI.
379 > *
380 > * * The result shall *not* be used for display purposes but for externalization or transport.
381 > * * The result will be encoded using the percentage encoding and encoding happens mostly
382 > * ignore the scheme-specific encoding rules.
383 > *
384 > * @param skipEncoding Do not encode the result, default is `false`
385 > */
386 > toString(skipEncoding: boolean = false): string {
387 return _asFormatted(this, skipEncoding);
388 }
389 > uri.ts
390 > toJSON(): UriComponents {
391 return this;
392 }
393 > uri.ts
394 > /**
395 > * A helper function to revive URIs.
396 > *
397 > * **Note** that this function should only be used when receiving URI#toJSON generated data
398 > * and that it doesn't do any validation. Use {@link URI.from} when received "untrusted"
399 > * uri components such as command arguments or data from storage.
400 > *
401 > * @param data The URI components or URI to revive.
402 > * @returns The revived URI or undefined or null.
403 > */
404 > static revive(data: UriComponents | URI): URI;
405 > static revive(data: UriComponents | URI | undefined): URI | undefined;
406 > static revive(data: UriComponents | URI | null): URI | null;
407 > static revive(data: UriComponents | URI | undefined | null): URI | undefined | null;
408 > static revive(data: UriComponents | URI | undefined | null): URI | undefined | null {
409 if (!data) {
410 return data;
418 }
419 }
420 > uri.ts
421 > [Symbol.for('debug.description')]() {
422 return `URI(${this.toString()})`;
423 }
424 > } uri.ts
425 >
426 > export interface UriComponents {
427 > scheme: string;
428 > authority?: string;
429 > path?: string;
430 > query?: string;
431 > fragment?: string;
432 > }
433 >
434 > export function isUriComponents(thing: unknown): thing is UriComponents {
435 if (!thing || typeof thing !== 'object') {
436 return false;
442 && (typeof (<UriComponents>thing).fragment === 'string' || typeof (<UriComponents>thing).fragment === 'undefined');
443 }
444 > uri.ts
445 > interface UriState extends UriComponents {
446 > $mid: MarshalledId.Uri;
447 > external?: string;
448 > fsPath?: string;
449 > _sep?: 1;
450 > }
451 >
452 > const _pathSepMarker = isWindows ? 1 : undefined;
453 >
454 > // This class exists so that URI is compatible with vscode.Uri (API).
455 > class Uri extends URI { uri.ts
456 >
457 > _formatted: string | null = null;
458 > _fsPath: string | null = null;
459 > uri.ts
460 > override get fsPath(): string {
461 if (!this._fsPath) {
462 this._fsPath = uriToFsPath(this, false);
464 return this._fsPath;
465 }
466 > uri.ts
467 > override toString(skipEncoding: boolean = false): string {
468 > if (!skipEncoding) { uri.ts
469 > if (!this._formatted) { uri.ts
470 > this._formatted = _asFormatted(this, false);
471 > }
472 > return this._formatted;
473 > } else { uri.ts
474 // we don't cache that
475 return _asFormatted(this, true);
476 }
477 > } uri.ts
478 > uri.ts
479 > override toJSON(): UriComponents {
480 // eslint-disable-next-line local/code-no-dangerous-type-assertions
481 const res = <UriState>{
512 return res;
513 }
514 > } uri.ts
515 >
516 > // reserved characters: https://tools.ietf.org/html/rfc3986#section-2.2
517 > const encodeTable: { [ch: number]: string } = {
518 > [CharCode.Colon]: '%3A', // gen-delims
519 > [CharCode.Slash]: '%2F',
520 > [CharCode.QuestionMark]: '%3F',
521 > [CharCode.Hash]: '%23',
522 > [CharCode.OpenSquareBracket]: '%5B',
523 > [CharCode.CloseSquareBracket]: '%5D',
524 > [CharCode.AtSign]: '%40',
525 >
526 > [CharCode.ExclamationMark]: '%21', // sub-delims
527 > [CharCode.DollarSign]: '%24',
528 > [CharCode.Ampersand]: '%26',
529 > [CharCode.SingleQuote]: '%27',
530 > [CharCode.OpenParen]: '%28',
531 > [CharCode.CloseParen]: '%29',
532 > [CharCode.Asterisk]: '%2A',
533 > [CharCode.Plus]: '%2B',
534 > [CharCode.Comma]: '%2C',
535 > [CharCode.Semicolon]: '%3B',
536 > [CharCode.Equals]: '%3D',
537 >
538 > [CharCode.Space]: '%20',
539 > };
540 >
541 > function encodeURIComponentFast(uriComponent: string, isPath: boolean, isAuthority: boolean): string { uri.ts
542 > let res: string | undefined = undefined;
543 > let nativeEncodePos = -1;
544 >
545 > for (let pos = 0; pos < uriComponent.length; pos++) {
546 > const code = uriComponent.charCodeAt(pos);
547 >
548 > // unreserved characters: https://tools.ietf.org/html/rfc3986#section-2.3
549 > if (
550 > (code >= CharCode.a && code <= CharCode.z)
551 > || (code >= CharCode.A && code <= CharCode.Z) uri.ts
552 > || (code >= CharCode.Digit0 && code <= CharCode.Digit9)
553 > || code === CharCode.Dash uri.ts
554 > || code === CharCode.Period uri.ts
555 > || code === CharCode.Underline
556 > || code === CharCode.Tilde
557 > || (isPath && code === CharCode.Slash)
558 || (isAuthority && code === CharCode.OpenSquareBracket)
559 || (isAuthority && code === CharCode.CloseSquareBracket)
560 || (isAuthority && code === CharCode.Colon)
561 > ) { uri.ts
562 > // check if we are delaying native encode
563 > if (nativeEncodePos !== -1) {
564 res += encodeURIComponent(uriComponent.substring(nativeEncodePos, pos));
565 nativeEncodePos = -1;
566 }
567 > // check if we write into a new string (by default we try to return the param) uri.ts
568 > if (res !== undefined) {
569 res += uriComponent.charAt(pos);
570 }
571 > uri.ts
572 > } else {
573 // encoding needed, we need to allocate a new string
574 if (res === undefined) {
594 }
595 }
596 > } uri.ts
597 >
598 > if (nativeEncodePos !== -1) {
599 res += encodeURIComponent(uriComponent.substring(nativeEncodePos));
600 }
601 > uri.ts
602 > return res !== undefined ? res : uriComponent;
603 > }
604 > uri.ts
605 function encodeURIComponentMinimal(path: string): string {
606 let res: string | undefined = undefined;
620 return res !== undefined ? res : path;
621 }
622 > uri.ts
623 > /**
624 > * Compute `fsPath` for the given uri
625 > */
626 > export function uriToFsPath(uri: URI, keepDriveLetterCasing: boolean): string {
627
628 let value: string;
650 return value;
651 }
652 > uri.ts
653 > /**
654 > * Create the external version of a uri
655 > */
656 > function _asFormatted(uri: URI, skipEncoding: boolean): string { uri.ts
657 >
658 > const encoder = !skipEncoding
659 > ? encodeURIComponentFast uri.ts
660 : encodeURIComponentMinimal;
661 > uri.ts
662 > let res = '';
663 > let { scheme, authority, path, query, fragment } = uri;
664 > if (scheme) {
665 > res += scheme;
666 > res += ':';
667 > }
668 > if (authority || scheme === 'file') {
669 > res += _slash; uri.ts
670 > res += _slash;
671 > }
672 > if (authority) { uri.ts
673 let idx = authority.indexOf('@');
674 if (idx !== -1) {
697 }
698 }
699 > if (path) { uri.ts
700 > // lower-case windows drive letters in /C:/fff or C:/fff uri.ts
701 > if (path.length >= 3 && path.charCodeAt(0) === CharCode.Slash && path.charCodeAt(2) === CharCode.Colon) {
702 const code = path.charCodeAt(1);
703 if (code >= CharCode.A && code <= CharCode.Z) {
704 path = `/${String.fromCharCode(code + 32)}:${path.substr(3)}`; // "/c:".length === 3
705 }
706 > } else if (path.length >= 2 && path.charCodeAt(1) === CharCode.Colon) { uri.ts
707 const code = path.charCodeAt(0);
708 if (code >= CharCode.A && code <= CharCode.Z) {
710 }
711 }
712 > // encode the rest of the path uri.ts
713 > res += encoder(path, true, false);
714 > }
715 > if (query) { uri.ts
716 res += '?';
717 res += encoder(query, false, false);
718 }
719 > if (fragment) { uri.ts
720 res += '#';
721 res += !skipEncoding ? encodeURIComponentFast(fragment, false, false) : fragment;
722 }
723 > return res; uri.ts
724 > }
725 > uri.ts
726 > // --- decode
727 >
728 function decodeURIComponentGraceful(str: string): string {
729 try {
737 }
738 }
739 > uri.ts
740 > const _rEncodedAsHex = /(%[0-9A-Za-z][0-9A-Za-z])+/g;
741 >
742 function percentDecode(str: string): string {
743 if (!str.match(_rEncodedAsHex)) {
746 return str.replace(_rEncodedAsHex, (match) => decodeURIComponentGraceful(match));
747 }
748 > uri.ts
749 > /**
750 > * Mapped-type that replaces all occurrences of URI with UriComponents
751 > */
752 > export type UriDto<T> = { [K in keyof T]: T[K] extends URI
753 > ? UriComponents
754 > : UriDto<T[K]> };
src/vs/base/common/arrays.ts 408 covered LOC · 75 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- arrays.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { findFirstIdxMonotonousOrArrLen } from './arraysFind.js';
7 > import { CancellationToken } from './cancellation.js';
8 > import { CancellationError } from './errors.js';
9 > import { ISplice } from './sequence.js';
10 >
11 > /**
12 > * Returns the last entry and the initial N-1 entries of the array, as a tuple of [rest, last].
13 > *
14 > * The array must have at least one element.
15 > *
16 > * @param arr The input array
17 > * @returns A tuple of [rest, last] where rest is all but the last element and last is the last element
18 > * @throws Error if the array is empty
19 > */
20 > export function tail<T>(arr: T[]): [T[], T] {
21 if (arr.length === 0) {
22 throw new Error('Invalid tail call');
25 return [arr.slice(0, arr.length - 1), arr[arr.length - 1]];
26 }
27 > arrays.ts
28 > export function equals<T>(one: ReadonlyArray<T> | undefined, other: ReadonlyArray<T> | undefined, itemEquals: (a: T, b: T) => boolean = (a, b) => a === b): boolean {
29 if (one === other) {
30 return true;
47 return true;
48 }
49 > arrays.ts
50 > /**
51 > * Remove the element at `index` by replacing it with the last element. This is faster than `splice`
52 > * but changes the order of the array
53 > */
54 > export function removeFastWithoutKeepingOrder<T>(array: T[], index: number) {
55 const last = array.length - 1;
56 if (index < last) {
59 array.pop();
60 }
61 > arrays.ts
62 > /**
63 > * Performs a binary search algorithm over a sorted array.
64 > *
65 > * @param array The array being searched.
66 > * @param key The value we search for.
67 > * @param comparator A function that takes two array elements and returns zero
68 > * if they are equal, a negative number if the first element precedes the
69 > * second one in the sorting order, or a positive number if the second element
70 > * precedes the first one.
71 > * @return See {@link binarySearch2}
72 > */
73 > export function binarySearch<T>(array: ReadonlyArray<T>, key: T, comparator: (op1: T, op2: T) => number): number {
74 return binarySearch2(array.length, i => comparator(array[i], key));
75 }
76 > arrays.ts
77 > /**
78 > * Performs a binary search algorithm over a sorted collection. Useful for cases
79 > * when we need to perform a binary search over something that isn't actually an
80 > * array, and converting data to an array would defeat the use of binary search
81 > * in the first place.
82 > *
83 > * @param length The collection length.
84 > * @param compareToKey A function that takes an index of an element in the
85 > * collection and returns zero if the value at this index is equal to the
86 > * search key, a negative number if the value precedes the search key in the
87 > * sorting order, or a positive number if the search key precedes the value.
88 > * @return A non-negative index of an element, if found. If not found, the
89 > * result is -(n+1) (or ~n, using bitwise notation), where n is the index
90 > * where the key should be inserted to maintain the sorting order.
91 > */
92 > export function binarySearch2(length: number, compareToKey: (index: number) => number): number {
93 let low = 0,
94 high = length - 1;
107 return -(low + 1);
108 }
109 > arrays.ts
110 > type Compare<T> = (a: T, b: T) => number;
111 >
112 > /**
113 > * Finds the nth smallest element in the array using quickselect algorithm.
114 > * The data does not need to be sorted.
115 > *
116 > * @param nth The zero-based index of the element to find (0 = smallest, 1 = second smallest, etc.)
117 > * @param data The unsorted array
118 > * @param compare A comparator function that defines the sort order
119 > * @returns The nth smallest element
120 > * @throws TypeError if nth is >= data.length
121 > */
122 > export function quickSelect<T>(nth: number, data: T[], compare: Compare<T>): T {
123
124 nth = nth | 0;
152 }
153 }
154 > arrays.ts
155 > export function groupBy<T>(data: ReadonlyArray<T>, compare: (a: T, b: T) => number): T[][] {
156 const result: T[][] = [];
157 let currentGroup: T[] | undefined = undefined;
166 return result;
167 }
168 > arrays.ts
169 > /**
170 > * Splits the given items into a list of (non-empty) groups.
171 > * `shouldBeGrouped` is used to decide if two consecutive items should be in the same group.
172 > * The order of the items is preserved.
173 > */
174 > export function* groupAdjacentBy<T>(items: Iterable<T>, shouldBeGrouped: (item1: T, item2: T) => boolean): Iterable<T[]> {
175 let currentGroup: T[] | undefined;
176 let last: T | undefined;
190 }
191 }
192 > arrays.ts
193 > export function forEachAdjacent<T>(arr: T[], f: (item1: T | undefined, item2: T | undefined) => void): void {
194 for (let i = 0; i <= arr.length; i++) {
195 f(i === 0 ? undefined : arr[i - 1], i === arr.length ? undefined : arr[i]);
196 }
197 }
198 > arrays.ts
199 > export function forEachWithNeighbors<T>(arr: T[], f: (before: T | undefined, element: T, after: T | undefined) => void): void {
200 for (let i = 0; i < arr.length; i++) {
201 f(i === 0 ? undefined : arr[i - 1], arr[i], i + 1 === arr.length ? undefined : arr[i + 1]);
202 }
203 }
204 > arrays.ts
205 > export function concatArrays<T extends any[]>(...arrays: T): T[number][number][] {
206 return [].concat(...arrays);
207 }
208 > arrays.ts
209 > interface IMutableSplice<T> extends ISplice<T> {
210 > readonly toInsert: T[];
211 > deleteCount: number;
212 > }
213 >
214 > /**
215 > * Diffs two *sorted* arrays and computes the splices which apply the diff.
216 > */
217 > export function sortedDiff<T>(before: ReadonlyArray<T>, after: ReadonlyArray<T>, compare: (a: T, b: T) => number): ISplice<T>[] {
218 const result: IMutableSplice<T>[] = [];
219
266 return result;
267 }
268 > arrays.ts
269 > /**
270 > * Takes two *sorted* arrays and computes their delta (removed, added elements).
271 > * Finishes in `Math.min(before.length, after.length)` steps.
272 > */
273 > export function delta<T>(before: ReadonlyArray<T>, after: ReadonlyArray<T>, compare: (a: T, b: T) => number): { removed: T[]; added: T[] } {
274 const splices = sortedDiff(before, after, compare);
275 const removed: T[] = [];
283 return { removed, added };
284 }
285 > arrays.ts
286 > /**
287 > * Returns the top N elements from the array.
288 > *
289 > * Faster than sorting the entire array when the array is a lot larger than N.
290 > *
291 > * @param array The unsorted array.
292 > * @param compare A sort function for the elements.
293 > * @param n The number of elements to return.
294 > * @return The first n elements from array when sorted with compare.
295 > */
296 > export function top<T>(array: ReadonlyArray<T>, compare: (a: T, b: T) => number, n: number): T[] {
297 if (n === 0) {
298 return [];
302 return result;
303 }
304 > arrays.ts
305 > /**
306 > * Asynchronous variant of `top()` allowing for splitting up work in batches between which the event loop can run.
307 > *
308 > * Returns the top N elements from the array.
309 > *
310 > * Faster than sorting the entire array when the array is a lot larger than N.
311 > *
312 > * @param array The unsorted array.
313 > * @param compare A sort function for the elements.
314 > * @param n The number of elements to return.
315 > * @param batch The number of elements to examine before yielding to the event loop.
316 > * @return The first n elements from array when sorted with compare.
317 > */
318 > export function topAsync<T>(array: T[], compare: (a: T, b: T) => number, n: number, batch: number, token?: CancellationToken): Promise<T[]> {
319 if (n === 0) {
320 return Promise.resolve([]);
339 });
340 }
341 > arrays.ts
342 function topStep<T>(array: ReadonlyArray<T>, compare: (a: T, b: T) => number, result: T[], i: number, m: number): void {
343 for (const n = result.length; i < m; i++) {
350 }
351 }
352 > arrays.ts
353 > /**
354 > * @returns New array with all falsy values removed. The original array IS NOT modified.
355 > */
356 > export function coalesce<T>(array: ReadonlyArray<T | undefined | null>): T[] {
357 return array.filter((e): e is T => !!e);
358 }
359 > arrays.ts
360 > /**
361 > * Remove all falsy values from `array`. The original array IS modified.
362 > */
363 > export function coalesceInPlace<T>(array: Array<T | undefined | null>): asserts array is Array<T> {
364 let to = 0;
365 for (let i = 0; i < array.length; i++) {
371 array.length = to;
372 }
373 > arrays.ts
374 > /**
375 > * @deprecated Use `Array.copyWithin` instead
376 > */
377 > export function move(array: unknown[], from: number, to: number): void {
378 array.splice(to, 0, array.splice(from, 1)[0]);
379 }
380 > arrays.ts
381 > /**
382 > * @returns false if the provided object is an array and not empty.
383 > */
384 > export function isFalsyOrEmpty(obj: unknown): boolean {
385 return !Array.isArray(obj) || obj.length === 0;
386 }
387 > arrays.ts
388 > /**
389 > * @returns True if the provided object is an array and has at least one element.
390 > */
391 > export function isNonEmptyArray<T>(obj: T[] | undefined | null): obj is T[];
392 > export function isNonEmptyArray<T>(obj: readonly T[] | undefined | null): obj is readonly T[];
393 > export function isNonEmptyArray<T>(obj: T[] | readonly T[] | undefined | null): obj is T[] | readonly T[] {
394 return Array.isArray(obj) && obj.length > 0;
395 }
396 > arrays.ts
397 > /**
398 > * Removes duplicates from the given array. The optional keyFn allows to specify
399 > * how elements are checked for equality by returning an alternate value for each.
400 > */
401 > export function distinct<T>(array: ReadonlyArray<T>, keyFn: (value: T) => unknown = value => value): T[] {
402 const seen = new Set<any>();
403
411 });
412 }
413 > arrays.ts
414 > export function uniqueFilter<T, R>(keyFn: (t: T) => R): (t: T) => boolean {
415 const seen = new Set<R>();
416
426 };
427 }
428 > arrays.ts
429 > export function commonPrefixLength<T>(one: ReadonlyArray<T>, other: ReadonlyArray<T>, equals: (a: T, b: T) => boolean = (a, b) => a === b): number {
430 let result = 0;
431
436 return result;
437 }
438 > arrays.ts
439 > export function range(to: number): number[];
440 > export function range(from: number, to: number): number[];
441 > export function range(arg: number, to?: number): number[] {
442 let from = typeof to === 'number' ? arg : 0;
443
463 return result;
464 }
465 > arrays.ts
466 > export function index<T>(array: ReadonlyArray<T>, indexer: (t: T) => string): { [key: string]: T };
467 > export function index<T, R>(array: ReadonlyArray<T>, indexer: (t: T) => string, mapper: (t: T) => R): { [key: string]: R };
468 > export function index<T, R>(array: ReadonlyArray<T>, indexer: (t: T) => string, mapper?: (t: T) => R): { [key: string]: R } {
469 return array.reduce((r, t) => {
470 r[indexer(t)] = mapper ? mapper(t) : t;
472 }, Object.create(null));
473 }
474 > arrays.ts
475 > /**
476 > * Inserts an element into an array. Returns a function which, when
477 > * called, will remove that element from the array.
478 > *
479 > * @deprecated In almost all cases, use a `Set<T>` instead.
480 > */
481 > export function insert<T>(array: T[], element: T): () => void {
482 array.push(element);
483
484 return () => remove(array, element);
485 }
486 > arrays.ts
487 > /**
488 > * Removes an element from an array if it can be found.
489 > *
490 > * @deprecated In almost all cases, use a `Set<T>` instead.
491 > */
492 > export function remove<T>(array: T[], element: T): T | undefined {
493 const index = array.indexOf(element);
494 if (index > -1) {
500 return undefined;
501 }
502 > arrays.ts
503 > /**
504 > * Insert `insertArr` inside `target` at `insertIndex`.
505 > * Please don't touch unless you understand https://jsperf.com/inserting-an-array-within-an-array
506 > */
507 > export function arrayInsert<T>(target: T[], insertIndex: number, insertArr: T[]): T[] {
508 const before = target.slice(0, insertIndex);
509 const after = target.slice(insertIndex);
510 return before.concat(insertArr, after);
511 }
512 > arrays.ts
513 > /**
514 > * Uses Fisher-Yates shuffle to shuffle the given array
515 > */
516 > export function shuffle<T>(array: T[], _seed?: number): void {
517 let rand: () => number;
518
536 }
537 }
538 > arrays.ts
539 > /**
540 > * Pushes an element to the start of the array, if found.
541 > */
542 > export function pushToStart<T>(arr: T[], value: T): void {
543 const index = arr.indexOf(value);
544
548 }
549 }
550 > arrays.ts
551 > /**
552 > * Pushes an element to the end of the array, if found.
553 > */
554 > export function pushToEnd<T>(arr: T[], value: T): void {
555 const index = arr.indexOf(value);
556
560 }
561 }
562 > arrays.ts
563 > export function pushMany<T>(arr: T[], items: ReadonlyArray<T>): void {
564 for (const item of items) {
565 arr.push(item);
566 }
567 }
568 > arrays.ts
569 > export function mapArrayOrNot<T, U>(items: T | T[], fn: (_: T) => U): U | U[] {
570 return Array.isArray(items) ?
571 items.map(fn) :
572 fn(items);
573 }
574 > arrays.ts
575 > export function mapFilter<T, U>(array: ReadonlyArray<T>, fn: (t: T) => U | undefined): U[] {
576 const result: U[] = [];
577 for (const item of array) {
583 return result;
584 }
585 > arrays.ts
586 > export function withoutDuplicates<T>(array: ReadonlyArray<T>): T[] {
587 const s = new Set(array);
588 return Array.from(s);
589 }
590 > arrays.ts
591 > export function asArray<T>(x: T | T[]): T[];
592 > export function asArray<T>(x: T | readonly T[]): readonly T[];
593 > export function asArray<T>(x: T | T[]): T[] {
594 return Array.isArray(x) ? x : [x];
595 }
596 > arrays.ts
597 > export function getRandomElement<T>(arr: T[]): T | undefined {
598 return arr[Math.floor(Math.random() * arr.length)];
599 }
600 > arrays.ts
601 > /**
602 > * Insert the new items in the array.
603 > * @param array The original array.
604 > * @param start The zero-based location in the array from which to start inserting elements.
605 > * @param newItems The items to be inserted
606 > */
607 > export function insertInto<T>(array: T[], start: number, newItems: T[]): void {
608 const startIdx = getActualStartIndex(array, start);
609 const originalLength = array.length;
619 }
620 }
621 > arrays.ts
622 > /**
623 > * Removes elements from an array and inserts new elements in their place, returning the deleted elements. Alternative to the native Array.splice method, it
624 > * can only support limited number of items due to the maximum call stack size limit.
625 > * @param array The original array.
626 > * @param start The zero-based location in the array from which to start removing elements.
627 > * @param deleteCount The number of elements to remove.
628 > * @returns An array containing the elements that were deleted.
629 > */
630 > export function splice<T>(array: T[], start: number, deleteCount: number, newItems: T[]): T[] {
631 const index = getActualStartIndex(array, start);
632 let result = array.splice(index, deleteCount);
638 return result;
639 }
640 > arrays.ts
641 > /**
642 > * Determine the actual start index (same logic as the native splice() or slice())
643 > * If greater than the length of the array, start will be set to the length of the array. In this case, no element will be deleted but the method will behave as an adding function, adding as many element as item[n*] provided.
644 > * If negative, it will begin that many elements from the end of the array. (In this case, the origin -1, meaning -n is the index of the nth last element, and is therefore equivalent to the index of array.length - n.) If array.length + start is less than 0, it will begin from index 0.
645 > * @param array The target array.
646 > * @param start The operation index.
647 > */
648 function getActualStartIndex<T>(array: T[], start: number): number {
649 return start < 0 ? Math.max(start + array.length, 0) : Math.min(start, array.length);
650 }
651 > arrays.ts
652 >
653 >
654 > /**
655 > * When comparing two values,
656 > * a negative number indicates that the first value is less than the second,
657 > * a positive number indicates that the first value is greater than the second,
658 > * and zero indicates that neither is the case.
659 > */
660 > export type CompareResult = number;
661 >
662 > export namespace CompareResult {
663 > export function isLessThan(result: CompareResult): boolean {
664 return result < 0;
665 }
666 > arrays.ts
667 > export function isLessThanOrEqual(result: CompareResult): boolean {
668 return result <= 0;
669 }
670 > arrays.ts
671 > export function isGreaterThan(result: CompareResult): boolean {
672 return result > 0;
673 }
674 > arrays.ts
675 > export function isNeitherLessOrGreaterThan(result: CompareResult): boolean {
676 return result === 0;
677 }
678 > arrays.ts
679 > export const greaterThan = 1;
680 > export const lessThan = -1;
681 > export const neitherLessOrGreaterThan = 0;
682 > }
683 >
684 > /**
685 > * A comparator `c` defines a total order `<=` on `T` as following:
686 > * `c(a, b) <= 0` iff `a` <= `b`.
687 > * We also have `c(a, b) == 0` iff `c(b, a) == 0`.
688 > */
689 > export type Comparator<T> = (a: T, b: T) => CompareResult;
690 >
691 > export function compareBy<TItem, TCompareBy>(selector: (item: TItem) => TCompareBy, comparator: Comparator<TCompareBy>): Comparator<TItem> {
692 > return (a, b) => comparator(selector(a), selector(b)); arrays.ts
693 > }
694 > arrays.ts
695 > export function tieBreakComparators<TItem>(...comparators: Comparator<TItem>[]): Comparator<TItem> {
696 > return (item1, item2) => { arrays.ts
697 for (const comparator of comparators) {
698 const result = comparator(item1, item2);
703 return CompareResult.neitherLessOrGreaterThan;
704 };
705 > } arrays.ts
706 > arrays.ts
707 > /**
708 > * The natural order on numbers.
709 > */
710 > export const numberComparator: Comparator<number> = (a, b) => a - b;
711 >
712 > export const booleanComparator: Comparator<boolean> = (a, b) => numberComparator(a ? 1 : 0, b ? 1 : 0);
713 >
714 > export function reverseOrder<TItem>(comparator: Comparator<TItem>): Comparator<TItem> {
715 return (a, b) => -comparator(a, b);
716 }
717 > arrays.ts
718 > /**
719 > * Returns a new comparator that treats `undefined` as the smallest value.
720 > * All other values are compared using the given comparator.
721 > */
722 > export function compareUndefinedSmallest<T>(comparator: Comparator<T>): Comparator<T | undefined> {
723 return (a, b) => {
724 if (a === undefined) {
731 };
732 }
733 > arrays.ts
734 > export class ArrayQueue<T> {
735 > private readonly items: readonly T[];
736 > private firstIdx = 0;
737 > private lastIdx: number;
738 >
739 > /**
740 > * Constructs a queue that is backed by the given array. Runtime is O(1).
741 > */
742 > constructor(items: readonly T[]) {
743 this.items = items;
744 this.lastIdx = this.items.length - 1;
745 }
746 > arrays.ts
747 > get length(): number {
748 return this.lastIdx - this.firstIdx + 1;
749 }
750 > arrays.ts
751 > /**
752 > * Consumes elements from the beginning of the queue as long as the predicate returns true.
753 > * If no elements were consumed, `null` is returned. Has a runtime of O(result.length).
754 > */
755 > takeWhile(predicate: (value: T) => boolean): T[] | null {
756 // P(k) := k <= this.lastIdx && predicate(this.items[k])
757 // Find s := min { k | k >= this.firstIdx && !P(k) } and return this.data[this.firstIdx...s)
765 return result;
766 }
767 > arrays.ts
768 > /**
769 > * Consumes elements from the end of the queue as long as the predicate returns true.
770 > * If no elements were consumed, `null` is returned.
771 > * The result has the same order as the underlying array!
772 > */
773 > takeFromEndWhile(predicate: (value: T) => boolean): T[] | null {
774 // P(k) := this.firstIdx >= k && predicate(this.items[k])
775 // Find s := max { k | k <= this.lastIdx && !P(k) } and return this.data(s...this.lastIdx]
783 return result;
784 }
785 > arrays.ts
786 > peek(): T | undefined {
787 if (this.length === 0) {
788 return undefined;
790 return this.items[this.firstIdx];
791 }
792 > arrays.ts
793 > peekLast(): T | undefined {
794 if (this.length === 0) {
795 return undefined;
797 return this.items[this.lastIdx];
798 }
799 > arrays.ts
800 > dequeue(): T | undefined {
801 const result = this.items[this.firstIdx];
802 this.firstIdx++;
803 return result;
804 }
805 > arrays.ts
806 > removeLast(): T | undefined {
807 const result = this.items[this.lastIdx];
808 this.lastIdx--;
809 return result;
810 }
811 > arrays.ts
812 > takeCount(count: number): T[] {
813 const result = this.items.slice(this.firstIdx, this.firstIdx + count);
814 this.firstIdx += count;
815 return result;
816 }
817 > } arrays.ts
818 >
819 > /**
820 > * This class is faster than an iterator and array for lazy computed data.
821 > */
822 > export class CallbackIterable<T> {
823 > public static readonly empty = new CallbackIterable<never>(_callback => { });
824 >
825 > constructor(
826 > /**
827 > * Calls the callback for every item.
828 > * Stops when the callback returns false.
829 > */
830 > public readonly iterate: (callback: (item: T) => boolean) => void
831 > ) {
832 > }
833 >
834 > forEach(handler: (item: T) => void) {
835 this.iterate(item => { handler(item); return true; });
836 }
837 > arrays.ts
838 > toArray(): T[] {
839 const result: T[] = [];
840 this.iterate(item => { result.push(item); return true; });
841 return result;
842 }
843 > arrays.ts
844 > filter(predicate: (item: T) => boolean): CallbackIterable<T> {
845 return new CallbackIterable(cb => this.iterate(item => predicate(item) ? cb(item) : true));
846 }
847 > arrays.ts
848 > map<TResult>(mapFn: (item: T) => TResult): CallbackIterable<TResult> {
849 return new CallbackIterable<TResult>(cb => this.iterate(item => cb(mapFn(item))));
850 }
851 > arrays.ts
852 > some(predicate: (item: T) => boolean): boolean {
853 let result = false;
854 this.iterate(item => { result = predicate(item); return !result; });
855 return result;
856 }
857 > arrays.ts
858 > findFirst(predicate: (item: T) => boolean): T | undefined {
859 let result: T | undefined;
860 this.iterate(item => {
867 return result;
868 }
869 > arrays.ts
870 > findLast(predicate: (item: T) => boolean): T | undefined {
871 let result: T | undefined;
872 this.iterate(item => {
878 return result;
879 }
880 > arrays.ts
881 > findLastMaxBy(comparator: Comparator<T>): T | undefined {
882 let result: T | undefined;
883 let first = true;
891 return result;
892 }
893 > } arrays.ts
894 >
895 > /**
896 > * Represents a re-arrangement of items in an array.
897 > */
898 > export class Permutation {
899 > constructor(private readonly _indexMap: readonly number[]) { }
900 >
901 > /**
902 > * Returns a permutation that sorts the given array according to the given compare function.
903 > */
904 > public static createSortPermutation<T>(arr: readonly T[], compareFn: (a: T, b: T) => number): Permutation {
905 const sortIndices = Array.from(arr.keys()).sort((index1, index2) => compareFn(arr[index1], arr[index2]));
906 return new Permutation(sortIndices);
907 }
908 > arrays.ts
909 > /**
910 > * Returns a new array with the elements of the given array re-arranged according to this permutation.
911 > */
912 > apply<T>(arr: readonly T[]): T[] {
913 return arr.map((_, index) => arr[this._indexMap[index]]);
914 }
915 > arrays.ts
916 > /**
917 > * Returns a new permutation that undoes the re-arrangement of this permutation.
918 > */
919 > inverse(): Permutation {
920 const inverseIndexMap = this._indexMap.slice();
921 for (let i = 0; i < this._indexMap.length; i++) {
924 return new Permutation(inverseIndexMap);
925 }
926 > } arrays.ts
927 >
928 > /**
929 > * Asynchronous variant of `Array.find()`, returning the first element in
930 > * the array for which the predicate returns true.
931 > *
932 > * This implementation does not bail early and waits for all promises to
933 > * resolve before returning.
934 > */
935 export async function findAsync<T>(array: readonly T[], predicate: (element: T, index: number) => Promise<boolean>): Promise<T | undefined> {
936 const results = await Promise.all(array.map(
940 return results.find(r => r.ok)?.element;
941 }
942 > arrays.ts
943 > export function sum(array: readonly number[]): number {
944 return array.reduce((acc, value) => acc + value, 0);
945 }
946 > arrays.ts
947 > export function sumBy<T>(array: readonly T[], selector: (value: T) => number): number {
948 return array.reduce((acc, value) => acc + selector(value), 0);
949 }
src/vs/platform/agentHost/common/state/protocol/action-origin.generated.ts 365 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- action-origin.generated.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > // Generated from types/actions.ts — do not edit
10 > // Run `npm run generate` to regenerate.
11 >
12 > import { ActionType, type StateAction, type RootAgentsChangedAction, type RootActiveSessionsChangedAction, type RootTerminalsChangedAction, type RootConfigChangedAction, type SessionReadyAction, type SessionCreationFailedAction, type SessionChatAddedAction, type SessionChatRemovedAction, type SessionChatUpdatedAction, type SessionDefaultChatChangedAction, type SessionTitleChangedAction, type SessionServerToolsChangedAction, type SessionActiveClientSetAction, type SessionActiveClientRemovedAction, type SessionWorkingDirectorySetAction, type SessionWorkingDirectoryRemovedAction, type SessionInputNeededSetAction, type SessionInputNeededRemovedAction, type SessionCustomizationsChangedAction, type SessionCustomizationToggledAction, type SessionCustomizationUpdatedAction, type SessionCustomizationRemovedAction, type SessionMcpServerStateChangedAction, type SessionMcpServerStartRequestedAction, type SessionMcpServerStopRequestedAction, type SessionIsReadChangedAction, type SessionIsArchivedChangedAction, type SessionActivityChangedAction, type SessionChangesetsChangedAction, type SessionConfigChangedAction, type SessionMetaChangedAction, type ChatTurnStartedAction, type ChatDeltaAction, type ChatResponsePartAction, type ChatToolCallStartAction, type ChatToolCallDeltaAction, type ChatToolCallReadyAction, type ChatToolCallConfirmedAction, type ChatToolCallCompleteAction, type ChatToolCallResultConfirmedAction, type ChatToolCallContentChangedAction, type ChatToolCallAuthRequiredAction, type ChatToolCallAuthResolvedAction, type ChatTurnCompleteAction, type ChatTurnCancelledAction, type ChatErrorAction, type ChatActivityChangedAction, type ChatWorkingDirectorySetAction, type ChatWorkingDirectoryRemovedAction, type ChatUsageAction, type ChatReasoningAction, type ChatPendingMessageSetAction, type ChatPendingMessageRemovedAction, type ChatQueuedMessagesReorderedAction, type ChatDraftChangedAction, type ChatInputRequestedAction, type ChatInputAnswerChangedAction, type ChatInputCompletedAction, type ChatTruncatedAction, type ChatTurnsLoadedAction, type ChangesetStatusChangedAction, type ChangesetFileSetAction, type ChangesetFileRemovedAction, type ChangesetFilesReviewChangedAction, type ChangesetContentChangedAction, type ChangesetOperationsChangedAction, type ChangesetOperationStatusChangedAction, type ChangesetClearedAction, type AnnotationsSetAction, type AnnotationsUpdatedAction, type AnnotationsRemovedAction, type AnnotationsEntrySetAction, type AnnotationsEntryRemovedAction, type TerminalDataAction, type TerminalInputAction, type TerminalResizedAction, type TerminalClaimedAction, type TerminalTitleChangedAction, type TerminalCwdChangedAction, type TerminalExitedAction, type TerminalClearedAction, type TerminalCommandDetectionAvailableAction, type TerminalCommandExecutedAction, type TerminalCommandFinishedAction, type ResourceWatchChangedAction } from './actions.js';
13 >
14 >
15 > // ─── Root vs Session vs Chat vs Terminal vs Changeset Action Unions ─────────────────
16 >
17 > /** Union of all root-scoped actions. */
18 > export type RootAction =
19 > | RootAgentsChangedAction
20 > | RootActiveSessionsChangedAction
21 > | RootTerminalsChangedAction
22 > | RootConfigChangedAction
23 > ;
24 >
25 > /** Union of root actions that clients may dispatch. */
26 > export type ClientRootAction =
27 > | RootConfigChangedAction
28 > ;
29 >
30 > /** Union of root actions that only the server may produce. */
31 > export type ServerRootAction =
32 > | RootAgentsChangedAction
33 > | RootActiveSessionsChangedAction
34 > | RootTerminalsChangedAction
35 > ;
36 >
37 > /** Union of all session-scoped actions. */
38 > export type SessionAction =
39 > | SessionReadyAction
40 > | SessionCreationFailedAction
41 > | SessionChatAddedAction
42 > | SessionChatRemovedAction
43 > | SessionChatUpdatedAction
44 > | SessionDefaultChatChangedAction
45 > | SessionTitleChangedAction
46 > | SessionServerToolsChangedAction
47 > | SessionActiveClientSetAction
48 > | SessionActiveClientRemovedAction
49 > | SessionWorkingDirectorySetAction
50 > | SessionWorkingDirectoryRemovedAction
51 > | SessionInputNeededSetAction
52 > | SessionInputNeededRemovedAction
53 > | SessionCustomizationsChangedAction
54 > | SessionCustomizationToggledAction
55 > | SessionCustomizationUpdatedAction
56 > | SessionCustomizationRemovedAction
57 > | SessionMcpServerStateChangedAction
58 > | SessionMcpServerStartRequestedAction
59 > | SessionMcpServerStopRequestedAction
60 > | SessionIsReadChangedAction
61 > | SessionIsArchivedChangedAction
62 > | SessionActivityChangedAction
63 > | SessionChangesetsChangedAction
64 > | SessionConfigChangedAction
65 > | SessionMetaChangedAction
66 > ;
67 >
68 > /** Union of session actions that clients may dispatch. */
69 > export type ClientSessionAction =
70 > | SessionTitleChangedAction
71 > | SessionActiveClientSetAction
72 > | SessionActiveClientRemovedAction
73 > | SessionWorkingDirectorySetAction
74 > | SessionWorkingDirectoryRemovedAction
75 > | SessionCustomizationToggledAction
76 > | SessionMcpServerStartRequestedAction
77 > | SessionMcpServerStopRequestedAction
78 > | SessionIsReadChangedAction
79 > | SessionIsArchivedChangedAction
80 > | SessionConfigChangedAction
81 > ;
82 >
83 > /** Union of session actions that only the server may produce. */
84 > export type ServerSessionAction =
85 > | SessionReadyAction
86 > | SessionCreationFailedAction
87 > | SessionChatAddedAction
88 > | SessionChatRemovedAction
89 > | SessionChatUpdatedAction
90 > | SessionDefaultChatChangedAction
91 > | SessionServerToolsChangedAction
92 > | SessionInputNeededSetAction
93 > | SessionInputNeededRemovedAction
94 > | SessionCustomizationsChangedAction
95 > | SessionCustomizationUpdatedAction
96 > | SessionCustomizationRemovedAction
97 > | SessionMcpServerStateChangedAction
98 > | SessionActivityChangedAction
99 > | SessionChangesetsChangedAction
100 > | SessionMetaChangedAction
101 > ;
102 >
103 > /** Union of all chat-scoped actions. */
104 > export type ChatAction =
105 > | ChatTurnStartedAction
106 > | ChatDeltaAction
107 > | ChatResponsePartAction
108 > | ChatToolCallStartAction
109 > | ChatToolCallDeltaAction
110 > | ChatToolCallReadyAction
111 > | ChatToolCallConfirmedAction
112 > | ChatToolCallCompleteAction
113 > | ChatToolCallResultConfirmedAction
114 > | ChatToolCallContentChangedAction
115 > | ChatToolCallAuthRequiredAction
116 > | ChatToolCallAuthResolvedAction
117 > | ChatTurnCompleteAction
118 > | ChatTurnCancelledAction
119 > | ChatErrorAction
120 > | ChatActivityChangedAction
121 > | ChatWorkingDirectorySetAction
122 > | ChatWorkingDirectoryRemovedAction
123 > | ChatUsageAction
124 > | ChatReasoningAction
125 > | ChatPendingMessageSetAction
126 > | ChatPendingMessageRemovedAction
127 > | ChatQueuedMessagesReorderedAction
128 > | ChatDraftChangedAction
129 > | ChatInputRequestedAction
130 > | ChatInputAnswerChangedAction
131 > | ChatInputCompletedAction
132 > | ChatTruncatedAction
133 > | ChatTurnsLoadedAction
134 > ;
135 >
136 > /** Union of chat actions that clients may dispatch. */
137 > export type ClientChatAction =
138 > | ChatTurnStartedAction
139 > | ChatToolCallConfirmedAction
140 > | ChatToolCallCompleteAction
141 > | ChatToolCallResultConfirmedAction
142 > | ChatToolCallContentChangedAction
143 > | ChatTurnCancelledAction
144 > | ChatWorkingDirectorySetAction
145 > | ChatWorkingDirectoryRemovedAction
146 > | ChatPendingMessageSetAction
147 > | ChatPendingMessageRemovedAction
148 > | ChatQueuedMessagesReorderedAction
149 > | ChatDraftChangedAction
150 > | ChatInputAnswerChangedAction
151 > | ChatInputCompletedAction
152 > | ChatTruncatedAction
153 > ;
154 >
155 > /** Union of chat actions that only the server may produce. */
156 > export type ServerChatAction =
157 > | ChatDeltaAction
158 > | ChatResponsePartAction
159 > | ChatToolCallStartAction
160 > | ChatToolCallDeltaAction
161 > | ChatToolCallReadyAction
162 > | ChatToolCallAuthRequiredAction
163 > | ChatToolCallAuthResolvedAction
164 > | ChatTurnCompleteAction
165 > | ChatErrorAction
166 > | ChatActivityChangedAction
167 > | ChatUsageAction
168 > | ChatReasoningAction
169 > | ChatInputRequestedAction
170 > | ChatTurnsLoadedAction
171 > ;
172 >
173 > /** Union of all terminal-scoped actions. */
174 > export type TerminalAction =
175 > | TerminalDataAction
176 > | TerminalInputAction
177 > | TerminalResizedAction
178 > | TerminalClaimedAction
179 > | TerminalTitleChangedAction
180 > | TerminalCwdChangedAction
181 > | TerminalExitedAction
182 > | TerminalClearedAction
183 > | TerminalCommandDetectionAvailableAction
184 > | TerminalCommandExecutedAction
185 > | TerminalCommandFinishedAction
186 > ;
187 >
188 > /** Union of terminal actions that clients may dispatch. */
189 > export type ClientTerminalAction =
190 > | TerminalInputAction
191 > | TerminalResizedAction
192 > | TerminalClaimedAction
193 > | TerminalTitleChangedAction
194 > | TerminalClearedAction
195 > ;
196 >
197 > /** Union of terminal actions that only the server may produce. */
198 > export type ServerTerminalAction =
199 > | TerminalDataAction
200 > | TerminalCwdChangedAction
201 > | TerminalExitedAction
202 > | TerminalCommandDetectionAvailableAction
203 > | TerminalCommandExecutedAction
204 > | TerminalCommandFinishedAction
205 > ;
206 >
207 > /** Union of all changeset-scoped actions. */
208 > export type ChangesetAction =
209 > | ChangesetStatusChangedAction
210 > | ChangesetFileSetAction
211 > | ChangesetFileRemovedAction
212 > | ChangesetFilesReviewChangedAction
213 > | ChangesetContentChangedAction
214 > | ChangesetOperationsChangedAction
215 > | ChangesetOperationStatusChangedAction
216 > | ChangesetClearedAction
217 > ;
218 >
219 > /** Union of changeset actions that clients may dispatch. */
220 > export type ClientChangesetAction =
221 > | ChangesetFilesReviewChangedAction
222 > ;
223 >
224 > /** Union of changeset actions that only the server may produce. */
225 > export type ServerChangesetAction =
226 > | ChangesetStatusChangedAction
227 > | ChangesetFileSetAction
228 > | ChangesetFileRemovedAction
229 > | ChangesetContentChangedAction
230 > | ChangesetOperationsChangedAction
231 > | ChangesetOperationStatusChangedAction
232 > | ChangesetClearedAction
233 > ;
234 >
235 > /** Union of all annotations-scoped actions. */
236 > export type AnnotationsAction =
237 > | AnnotationsSetAction
238 > | AnnotationsUpdatedAction
239 > | AnnotationsRemovedAction
240 > | AnnotationsEntrySetAction
241 > | AnnotationsEntryRemovedAction
242 > ;
243 >
244 > /** Union of annotations actions that clients may dispatch. */
245 > export type ClientAnnotationsAction =
246 > | AnnotationsSetAction
247 > | AnnotationsUpdatedAction
248 > | AnnotationsRemovedAction
249 > | AnnotationsEntrySetAction
250 > | AnnotationsEntryRemovedAction
251 > ;
252 >
253 > /** Union of annotations actions that only the server may produce. */
254 > export type ServerAnnotationsAction =
255 > never
256 > ;
257 >
258 > /** Union of all resource-watch-scoped actions. */
259 > export type ResourceWatchAction =
260 > | ResourceWatchChangedAction
261 > ;
262 >
263 > /** Union of resource-watch actions that clients may dispatch. */
264 > export type ClientResourceWatchAction =
265 > never
266 > ;
267 >
268 > /** Union of resource-watch actions that only the server may produce. */
269 > export type ServerResourceWatchAction =
270 > | ResourceWatchChangedAction
271 > ;
272 >
273 > // ─── Client-Dispatchable Map ─────────────────────────────────────────────────
274 >
275 > /**
276 > * Exhaustive map indicating which action types may be dispatched by clients.
277 > * Adding a new action to StateAction without adding it here is a compile error.
278 > */
279 > export const IS_CLIENT_DISPATCHABLE: { readonly [K in StateAction['type']]: boolean } = {
280 > [ActionType.RootAgentsChanged]: false,
281 > [ActionType.RootActiveSessionsChanged]: false,
282 > [ActionType.RootTerminalsChanged]: false,
283 > [ActionType.RootConfigChanged]: true,
284 > [ActionType.SessionReady]: false,
285 > [ActionType.SessionCreationFailed]: false,
286 > [ActionType.SessionChatAdded]: false,
287 > [ActionType.SessionChatRemoved]: false,
288 > [ActionType.SessionChatUpdated]: false,
289 > [ActionType.SessionDefaultChatChanged]: false,
290 > [ActionType.SessionTitleChanged]: true,
291 > [ActionType.SessionServerToolsChanged]: false,
292 > [ActionType.SessionActiveClientSet]: true,
293 > [ActionType.SessionActiveClientRemoved]: true,
294 > [ActionType.SessionWorkingDirectorySet]: true,
295 > [ActionType.SessionWorkingDirectoryRemoved]: true,
296 > [ActionType.SessionInputNeededSet]: false,
297 > [ActionType.SessionInputNeededRemoved]: false,
298 > [ActionType.SessionCustomizationsChanged]: false,
299 > [ActionType.SessionCustomizationToggled]: true,
300 > [ActionType.SessionCustomizationUpdated]: false,
301 > [ActionType.SessionCustomizationRemoved]: false,
302 > [ActionType.SessionMcpServerStateChanged]: false,
303 > [ActionType.SessionMcpServerStartRequested]: true,
304 > [ActionType.SessionMcpServerStopRequested]: true,
305 > [ActionType.SessionIsReadChanged]: true,
306 > [ActionType.SessionIsArchivedChanged]: true,
307 > [ActionType.SessionActivityChanged]: false,
308 > [ActionType.SessionChangesetsChanged]: false,
309 > [ActionType.SessionConfigChanged]: true,
310 > [ActionType.SessionMetaChanged]: false,
311 > [ActionType.ChatTurnStarted]: true,
312 > [ActionType.ChatDelta]: false,
313 > [ActionType.ChatResponsePart]: false,
314 > [ActionType.ChatToolCallStart]: false,
315 > [ActionType.ChatToolCallDelta]: false,
316 > [ActionType.ChatToolCallReady]: false,
317 > [ActionType.ChatToolCallConfirmed]: true,
318 > [ActionType.ChatToolCallComplete]: true,
319 > [ActionType.ChatToolCallResultConfirmed]: true,
320 > [ActionType.ChatToolCallContentChanged]: true,
321 > [ActionType.ChatToolCallAuthRequired]: false,
322 > [ActionType.ChatToolCallAuthResolved]: false,
323 > [ActionType.ChatTurnComplete]: false,
324 > [ActionType.ChatTurnCancelled]: true,
325 > [ActionType.ChatError]: false,
326 > [ActionType.ChatActivityChanged]: false,
327 > [ActionType.ChatWorkingDirectorySet]: true,
328 > [ActionType.ChatWorkingDirectoryRemoved]: true,
329 > [ActionType.ChatUsage]: false,
330 > [ActionType.ChatReasoning]: false,
331 > [ActionType.ChatPendingMessageSet]: true,
332 > [ActionType.ChatPendingMessageRemoved]: true,
333 > [ActionType.ChatQueuedMessagesReordered]: true,
334 > [ActionType.ChatDraftChanged]: true,
335 > [ActionType.ChatInputRequested]: false,
336 > [ActionType.ChatInputAnswerChanged]: true,
337 > [ActionType.ChatInputCompleted]: true,
338 > [ActionType.ChatTruncated]: true,
339 > [ActionType.ChatTurnsLoaded]: false,
340 > [ActionType.ChangesetStatusChanged]: false,
341 > [ActionType.ChangesetFileSet]: false,
342 > [ActionType.ChangesetFileRemoved]: false,
343 > [ActionType.ChangesetFilesReviewChanged]: true,
344 > [ActionType.ChangesetContentChanged]: false,
345 > [ActionType.ChangesetOperationsChanged]: false,
346 > [ActionType.ChangesetOperationStatusChanged]: false,
347 > [ActionType.ChangesetCleared]: false,
348 > [ActionType.AnnotationsSet]: true,
349 > [ActionType.AnnotationsUpdated]: true,
350 > [ActionType.AnnotationsRemoved]: true,
351 > [ActionType.AnnotationsEntrySet]: true,
352 > [ActionType.AnnotationsEntryRemoved]: true,
353 > [ActionType.TerminalData]: false,
354 > [ActionType.TerminalInput]: true,
355 > [ActionType.TerminalResized]: true,
356 > [ActionType.TerminalClaimed]: true,
357 > [ActionType.TerminalTitleChanged]: true,
358 > [ActionType.TerminalCwdChanged]: false,
359 > [ActionType.TerminalExited]: false,
360 > [ActionType.TerminalCleared]: true,
361 > [ActionType.TerminalCommandDetectionAvailable]: false,
362 > [ActionType.TerminalCommandExecuted]: false,
363 > [ActionType.TerminalCommandFinished]: false,
364 > [ActionType.ResourceWatchChanged]: false,
365 > };
src/vs/base/common/stream.ts 325 covered LOC · 29 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- stream.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancellationToken } from './cancellation.js';
7 > import { onUnexpectedError } from './errors.js';
8 > import { DisposableStore, toDisposable } from './lifecycle.js';
9 >
10 > /**
11 > * The payload that flows in readable stream events.
12 > */
13 > export type ReadableStreamEventPayload<T> = T | Error | 'end';
14 >
15 > export interface ReadableStreamEvents<T> {
16 >
17 > /**
18 > * The 'data' event is emitted whenever the stream is
19 > * relinquishing ownership of a chunk of data to a consumer.
20 > *
21 > * NOTE: PLEASE UNDERSTAND THAT ADDING A DATA LISTENER CAN
22 > * TURN THE STREAM INTO FLOWING MODE. IT IS THEREFOR THE
23 > * LAST LISTENER THAT SHOULD BE ADDED AND NOT THE FIRST
24 > *
25 > * Use `listenStream` as a helper method to listen to
26 > * stream events in the right order.
27 > */
28 > on(event: 'data', callback: (data: T) => void): void;
29 >
30 > /**
31 > * Emitted when any error occurs.
32 > */
33 > on(event: 'error', callback: (err: Error) => void): void;
34 >
35 > /**
36 > * The 'end' event is emitted when there is no more data
37 > * to be consumed from the stream. The 'end' event will
38 > * not be emitted unless the data is completely consumed.
39 > */
40 > on(event: 'end', callback: () => void): void;
41 > }
42 >
43 > /**
44 > * A interface that emulates the API shape of a node.js readable
45 > * stream for use in native and web environments.
46 > */
47 > export interface ReadableStream<T> extends ReadableStreamEvents<T> {
48 >
49 > /**
50 > * Stops emitting any events until resume() is called.
51 > */
52 > pause(): void;
53 >
54 > /**
55 > * Starts emitting events again after pause() was called.
56 > */
57 > resume(): void;
58 >
59 > /**
60 > * Destroys the stream and stops emitting any event.
61 > */
62 > destroy(): void;
63 >
64 > /**
65 > * Allows to remove a listener that was previously added.
66 > */
67 > removeListener(event: string, callback: Function): void;
68 > }
69 >
70 > /**
71 > * A interface that emulates the API shape of a node.js readable
72 > * for use in native and web environments.
73 > */
74 > export interface Readable<T> {
75 >
76 > /**
77 > * Read data from the underlying source. Will return
78 > * null to indicate that no more data can be read.
79 > */
80 > read(): T | null;
81 > }
82 >
83 > export function isReadable<T>(obj: unknown): obj is Readable<T> {
84 const candidate = obj as Readable<T> | undefined;
85 if (!candidate) {
89 return typeof candidate.read === 'function';
90 }
91 > stream.ts
92 > /**
93 > * A interface that emulates the API shape of a node.js writeable
94 > * stream for use in native and web environments.
95 > */
96 > export interface WriteableStream<T> extends ReadableStream<T> {
97 >
98 > /**
99 > * Writing data to the stream will trigger the on('data')
100 > * event listener if the stream is flowing and buffer the
101 > * data otherwise until the stream is flowing.
102 > *
103 > * If a `highWaterMark` is configured and writing to the
104 > * stream reaches this mark, a promise will be returned
105 > * that should be awaited on before writing more data.
106 > * Otherwise there is a risk of buffering a large number
107 > * of data chunks without consumer.
108 > */
109 > write(data: T): void | Promise<void>;
110 >
111 > /**
112 > * Signals an error to the consumer of the stream via the
113 > * on('error') handler if the stream is flowing.
114 > *
115 > * NOTE: call `end` to signal that the stream has ended,
116 > * this DOES NOT happen automatically from `error`.
117 > */
118 > error(error: Error): void;
119 >
120 > /**
121 > * Signals the end of the stream to the consumer. If the
122 > * result is provided, will trigger the on('data') event
123 > * listener if the stream is flowing and buffer the data
124 > * otherwise until the stream is flowing.
125 > */
126 > end(result?: T): void;
127 > }
128 >
129 > /**
130 > * A stream that has a buffer already read. Returns the original stream
131 > * that was read as well as the chunks that got read.
132 > *
133 > * The `ended` flag indicates if the stream has been fully consumed.
134 > */
135 > export interface ReadableBufferedStream<T> {
136 >
137 > /**
138 > * The original stream that is being read.
139 > */
140 > stream: ReadableStream<T>;
141 >
142 > /**
143 > * An array of chunks already read from this stream.
144 > */
145 > buffer: T[];
146 >
147 > /**
148 > * Signals if the stream has ended or not. If not, consumers
149 > * should continue to read from the stream until consumed.
150 > */
151 > ended: boolean;
152 > }
153 >
154 > export function isReadableStream<T>(obj: unknown): obj is ReadableStream<T> {
155 const candidate = obj as ReadableStream<T> | undefined;
156 if (!candidate) {
160 return [candidate.on, candidate.pause, candidate.resume, candidate.destroy].every(fn => typeof fn === 'function');
161 }
162 > stream.ts
163 > export function isReadableBufferedStream<T>(obj: unknown): obj is ReadableBufferedStream<T> {
164 const candidate = obj as ReadableBufferedStream<T> | undefined;
165 if (!candidate) {
169 return isReadableStream(candidate.stream) && Array.isArray(candidate.buffer) && typeof candidate.ended === 'boolean';
170 }
171 > stream.ts
172 > export interface IReducer<T, R = T> {
173 > (data: T[]): R;
174 > }
175 >
176 > export interface IDataTransformer<Original, Transformed> {
177 > (data: Original): Transformed;
178 > }
179 >
180 > export interface IErrorTransformer {
181 > (error: Error): Error;
182 > }
183 >
184 > export interface ITransformer<Original, Transformed> {
185 > data: IDataTransformer<Original, Transformed>;
186 > error?: IErrorTransformer;
187 > }
188 >
189 > export function newWriteableStream<T>(reducer: IReducer<T> | null, options?: WriteableStreamOptions): WriteableStream<T> {
190 return new WriteableStreamImpl<T>(reducer, options);
191 }
192 > stream.ts
193 > export interface WriteableStreamOptions {
194 >
195 > /**
196 > * The number of objects to buffer before WriteableStream#write()
197 > * signals back that the buffer is full. Can be used to reduce
198 > * the memory pressure when the stream is not flowing.
199 > */
200 > highWaterMark?: number;
201 > }
202 >
203 > class WriteableStreamImpl<T> implements WriteableStream<T> {
204 >
205 > private readonly state = {
206 > flowing: false,
207 > ended: false,
208 > destroyed: false
209 > };
210 >
211 > private readonly buffer = {
212 > data: [] as T[],
213 > error: [] as Error[]
214 > };
215 >
216 > private readonly listeners = {
217 > data: [] as { (data: T): void }[],
218 > error: [] as { (error: Error): void }[],
219 > end: [] as { (): void }[]
220 > };
221 >
222 > private readonly pendingWritePromises: Function[] = [];
223 >
224 > /**
225 > * @param reducer a function that reduces the buffered data into a single object;
226 > * because some objects can be complex and non-reducible, we also
227 > * allow passing the explicit `null` value to skip the reduce step
228 > * @param options stream options
229 > */
230 > constructor(private reducer: IReducer<T> | null, private options?: WriteableStreamOptions) { }
231 >
232 > pause(): void {
233 if (this.state.destroyed) {
234 return;
237 this.state.flowing = false;
238 }
239 > stream.ts
240 > resume(): void {
241 if (this.state.destroyed) {
242 return;
252 }
253 }
254 > stream.ts
255 > write(data: T): void | Promise<void> {
256 if (this.state.destroyed) {
257 return;
273 }
274 }
275 > stream.ts
276 > error(error: Error): void {
277 if (this.state.destroyed) {
278 return;
289 }
290 }
291 > stream.ts
292 > end(result?: T): void {
293 if (this.state.destroyed) {
294 return;
312 }
313 }
314 > stream.ts
315 > private emitData(data: T): void {
316 this.listeners.data.slice(0).forEach(listener => listener(data)); // slice to avoid listener mutation from delivering event
317 }
318 > stream.ts
319 > private emitError(error: Error): void {
320 if (this.listeners.error.length === 0) {
321 onUnexpectedError(error); // nobody listened to this error so we log it as unexpected
324 }
325 }
326 > stream.ts
327 > private emitEnd(): void {
328 this.listeners.end.slice(0).forEach(listener => listener()); // slice to avoid listener mutation from delivering event
329 }
330 > stream.ts
331 > on(event: 'data', callback: (data: T) => void): void;
332 > on(event: 'error', callback: (err: Error) => void): void;
333 > on(event: 'end', callback: () => void): void;
334 > on(event: 'data' | 'error' | 'end', callback: ((data: T) => void) | ((err: Error) => void) | (() => void)): void {
335 if (this.state.destroyed) {
336 return;
372 }
373 }
374 > stream.ts
375 > removeListener(event: string, callback: Function): void {
376 if (this.state.destroyed) {
377 return;
401 }
402 }
403 > stream.ts
404 > private flowData(): void {
405 // if buffer is empty, nothing to do
406 if (this.buffer.data.length === 0) {
428 pendingWritePromises.forEach(pendingWritePromise => pendingWritePromise());
429 }
430 > stream.ts
431 > private flowErrors(): void {
432 if (this.listeners.error.length > 0) {
433 for (const error of this.buffer.error) {
438 }
439 }
440 > stream.ts
441 > private flowEnd(): boolean {
442 if (this.state.ended) {
443 this.emitEnd();
448 return false;
449 }
450 > stream.ts
451 > destroy(): void {
452 if (!this.state.destroyed) {
453 this.state.destroyed = true;
464 }
465 }
466 > } stream.ts
467 >
468 > /**
469 > * Helper to fully read a T readable into a T.
470 > */
471 > export function consumeReadable<T>(readable: Readable<T>, reducer: IReducer<T>): T {
472 const chunks: T[] = [];
473
479 return reducer(chunks);
480 }
481 > stream.ts
482 > /**
483 > * Helper to read a T readable up to a maximum of chunks. If the limit is
484 > * reached, will return a readable instead to ensure all data can still
485 > * be read.
486 > */
487 > export function peekReadable<T>(readable: Readable<T>, reducer: IReducer<T>, maxChunks: number): T | Readable<T> {
488 const chunks: T[] = [];
489
527 };
528 }
529 > stream.ts
530 > /**
531 > * Helper to fully read a T stream into a T or consuming
532 > * a stream fully, awaiting all the events without caring
533 > * about the data.
534 > */
535 > export function consumeStream<T, R = T>(stream: ReadableStreamEvents<T>, reducer: IReducer<T, R>): Promise<R>;
536 > export function consumeStream(stream: ReadableStreamEvents<unknown>): Promise<undefined>;
537 > export function consumeStream<T, R = T>(stream: ReadableStreamEvents<T>, reducer?: IReducer<T, R>): Promise<R | undefined> {
538 return new Promise((resolve, reject) => {
539 const chunks: T[] = [];
562 });
563 }
564 > stream.ts
565 > export interface IStreamListener<T> {
566 >
567 > /**
568 > * The 'data' event is emitted whenever the stream is
569 > * relinquishing ownership of a chunk of data to a consumer.
570 > */
571 > onData(data: T): void;
572 >
573 > /**
574 > * Emitted when any error occurs.
575 > */
576 > onError(err: Error): void;
577 >
578 > /**
579 > * The 'end' event is emitted when there is no more data
580 > * to be consumed from the stream. The 'end' event will
581 > * not be emitted unless the data is completely consumed.
582 > */
583 > onEnd(): void;
584 > }
585 >
586 > /**
587 > * Helper to listen to all events of a T stream in proper order.
588 > */
589 > export function listenStream<T>(stream: ReadableStreamEvents<T>, listener: IStreamListener<T>, token?: CancellationToken): void {
590
591 stream.on('error', error => {
610 });
611 }
612 > stream.ts
613 > /**
614 > * Helper to peek up to `maxChunks` into a stream. The return type signals if
615 > * the stream has ended or not. If not, caller needs to add a `data` listener
616 > * to continue reading.
617 > */
618 > export function peekStream<T>(stream: ReadableStream<T>, maxChunks: number): Promise<ReadableBufferedStream<T>> {
619 return new Promise((resolve, reject) => {
620 const streamListeners = new DisposableStore();
666 });
667 }
668 > stream.ts
669 > /**
670 > * Helper to create a readable stream from an existing T.
671 > */
672 > export function toStream<T>(t: T, reducer: IReducer<T>): ReadableStream<T> {
673 const stream = newWriteableStream<T>(reducer);
674
677 return stream;
678 }
679 > stream.ts
680 > /**
681 > * Helper to create an empty stream
682 > */
683 > export function emptyStream(): ReadableStream<never> {
684 const stream = newWriteableStream<never>(() => { throw new Error('not supported'); });
685 stream.end();
687 return stream;
688 }
689 > stream.ts
690 > /**
691 > * Helper to convert a T into a Readable<T>.
692 > */
693 > export function toReadable<T>(t: T): Readable<T> {
694 let consumed = false;
695
706 };
707 }
708 > stream.ts
709 > /**
710 > * Helper to transform a readable stream into another stream.
711 > */
712 > export function transform<Original, Transformed>(stream: ReadableStreamEvents<Original>, transformer: ITransformer<Original, Transformed>, reducer: IReducer<Transformed>): ReadableStream<Transformed> {
713 const target = newWriteableStream<Transformed>(reducer);
714
721 return target;
722 }
723 > stream.ts
724 > /**
725 > * Helper to take an existing readable that will
726 > * have a prefix injected to the beginning.
727 > */
728 > export function prefixedReadable<T>(prefix: T, readable: Readable<T>, reducer: IReducer<T>): Readable<T> {
729 let prefixHandled = false;
730
751 };
752 }
753 > stream.ts
754 > /**
755 > * Helper to take an existing stream that will
756 > * have a prefix injected to the beginning.
757 > */
758 > export function prefixedStream<T>(prefix: T, stream: ReadableStream<T>, reducer: IReducer<T>): ReadableStream<T> {
759 let prefixHandled = false;
760
src/vs/platform/agentHost/common/state/protocol/channels-session/commands.ts 323 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- commands.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from '../common/state.js';
10 > import type { BaseParams } from '../common/commands.js';
11 > import type { SessionActiveClient } from './state.js';
12 > import type { MessageAttachment } from '../channels-chat/state.js';
13 >
14 > // ─── createSession ───────────────────────────────────────────────────────────
15 >
16 > /**
17 > * Creates a new session with the specified agent provider.
18 > *
19 > * If the session URI already exists, the server MUST return an error with code
20 > * `-32003` (`SessionAlreadyExists`).
21 > *
22 > * After creation, the client should subscribe to the session URI to receive state
23 > * updates. The server also broadcasts a `root/sessionAdded` notification to all
24 > * clients.
25 > *
26 > * @category Commands
27 > * @method createSession
28 > * @direction Client → Server
29 > * @messageType Request
30 > * @version 1
31 > * @example
32 > * ```jsonc
33 > * // Client → Server
34 > * { "jsonrpc": "2.0", "id": 2, "method": "createSession",
35 > * "params": { "channel": "ahp-session:/<uuid>", "provider": "copilot" } }
36 > *
37 > * // Server → Client (success)
38 > * { "jsonrpc": "2.0", "id": 2, "result": null }
39 > *
40 > * // Server → Client (failure — provider not found)
41 > * { "jsonrpc": "2.0", "id": 2, "error": { "code": -32002, "message": "No agent for provider" } }
42 > *
43 > * // Server → Client (failure — session already exists)
44 > * { "jsonrpc": "2.0", "id": 2, "error": { "code": -32003, "message": "Session already exists" } }
45 > * ```
46 > */
47 > /**
48 > * Identifies a source session and turn to fork from.
49 > *
50 > * When provided in `createSession`, the server populates the new session with
51 > * content from the source session up to and including the response of the
52 > * specified turn.
53 > */
54 > export interface SessionForkSource {
55 > /** URI of the existing session to fork from */
56 > session: URI;
57 > /** Turn ID in the source session; content up to and including this turn's response is copied */
58 > turnId: string;
59 > }
60 >
61 > export interface CreateSessionParams extends BaseParams {
62 > /** Session URI (client-chosen, e.g. `ahp-session:/<uuid>`) */
63 > channel: URI;
64 > /** Agent provider ID */
65 > provider?: string;
66 > /**
67 > * The working directories the session's agent is granted tool access to.
68 > * A session may span multiple directories; they are equal peers except when
69 > * the agent advertises
70 > * {@link MultipleWorkingDirectoriesCapability.requiresPrimary}, in which case
71 > * one of them should be designated the primary via
72 > * {@link primaryWorkingDirectory}.
73 > *
74 > * A client MUST NOT supply more than one entry unless the agent advertises
75 > * {@link AgentCapabilities.multipleWorkingDirectories}; a server without that
76 > * capability treats only the first entry as the session's working directory
77 > * and ignores the rest. Dispatch `session/workingDirectorySet` /
78 > * `session/workingDirectoryRemoved` to change the set after the session has
79 > * started.
80 > *
81 > * Ignored for forked sessions — a fork inherits its working directories
82 > * from the source session identified by `fork`.
83 > */
84 > workingDirectories?: URI[];
85 > /**
86 > * The primary working directory for the session's **default chat**.
87 > *
88 > * A session has no primary of its own — primary is a per-chat notion (see
89 > * {@link ChatState.primaryWorkingDirectory}). But `createSession` implicitly
90 > * creates the session's default chat, and there is no separate `createChat`
91 > * call to carry that chat's create-time fields. This field is therefore the
92 > * only place a client can designate the **default chat's** primary at birth;
93 > * it is copied into that chat's read-only `primaryWorkingDirectory`. For any
94 > * non-default chat, pass {@link CreateChatParams.primaryWorkingDirectory}
95 > * instead.
96 > *
97 > * When set, it MUST be one of {@link workingDirectories}. A client SHOULD
98 > * supply this when the agent advertises
99 > * {@link MultipleWorkingDirectoriesCapability.requiresPrimary}; a host MAY
100 > * reject creation that omits it, or fall back to the first entry of
101 > * `workingDirectories`. Ignored for forked sessions (a fork inherits the
102 > * source session's chats and their primaries).
103 > */
104 > primaryWorkingDirectory?: URI;
105 > /**
106 > * Fork from an existing session. The new session is populated with content
107 > * from the source session up to and including the specified turn's response.
108 > */
109 > fork?: SessionForkSource;
110 > /**
111 > * Agent-specific configuration values collected via `resolveSessionConfig`.
112 > * Keys and values correspond to the schema returned by the server.
113 > */
114 > config?: Record<string, unknown>;
115 > /**
116 > * Eagerly claim an active client role for the new session.
117 > *
118 > * When provided, the server initializes the session with this client as an
119 > * active client, equivalent to dispatching a `session/activeClientSet`
120 > * action immediately after creation. The `clientId` MUST match the
121 > * `clientId` the creating client supplied in `initialize`.
122 > */
123 > activeClient?: SessionActiveClient;
124 > /**
125 > * Opt-in progress token. When set, the client is offering to receive
126 > * `progress` notifications (see `ProgressParams`) for any long-running work
127 > * the server does to bring this session up — most notably the lazy,
128 > * first-use download of the provider's native SDK. The server echoes this
129 > * exact token on every `progress` frame so the client can correlate it to
130 > * this `createSession` call (and the UI awaiting it).
131 > *
132 > * The token MUST be unique across the client's active requests. The server
133 > * MAY ignore it (e.g. when nothing long-running is needed), in which case no
134 > * `progress` notifications are emitted.
135 > */
136 > progressToken?: string;
137 > }
138 >
139 > // ─── disposeSession ──────────────────────────────────────────────────────────
140 >
141 > /**
142 > * Disposes a session and cleans up server-side resources.
143 > *
144 > * The server broadcasts a `root/sessionRemoved` notification to all clients.
145 > *
146 > * @category Commands
147 > * @method disposeSession
148 > * @direction Client → Server
149 > * @messageType Request
150 > * @version 1
151 > */
152 > export interface DisposeSessionParams extends BaseParams { }
153 >
154 > // ─── fetchTurns ──────────────────────────────────────────────────────────────
155 >
156 > /**
157 > * Requests that the host load older historical turns into a chat state.
158 > *
159 > * The command result does not carry turns. Instead, before responding, the host
160 > * MUST dispatch `chat/turnsLoaded` to insert any loaded turns into the chat
161 > * channel's `turns` state, ahead of the already-loaded window, and update or
162 > * clear `turnsNextCursor`.
163 > *
164 > * Before applying any operation that references a turn outside the currently
165 > * loaded window, the host MUST eagerly load enough older turns into state for
166 > * that operation to reduce against valid state.
167 > *
168 > * @category Commands
169 > * @method fetchTurns
170 > * @direction Client → Server
171 > * @messageType Request
172 > * @version 1
173 > * @example
174 > * ```jsonc
175 > * // Client → Server (load the next page indicated by ChatState.turnsNextCursor)
176 > * { "jsonrpc": "2.0", "id": 8, "method": "fetchTurns",
177 > * "params": { "channel": "ahp-chat:/<uuid>", "cursor": "opaque-cursor" } }
178 > *
179 > * // Server updates chat state, then responds
180 > * { "jsonrpc": "2.0", "id": 8, "result": {} }
181 > * ```
182 > */
183 > export interface FetchTurnsParams extends BaseParams {
184 > /** Chat URI */
185 > channel: URI;
186 > /**
187 > * Opaque cursor from `ChatState.turnsNextCursor`.
188 > *
189 > * The host MUST reject unrecognised cursors with `InvalidParams`. Omit only
190 > * when asking the host to opportunistically load its next older page for the
191 > * chat, if any.
192 > */
193 > cursor?: string;
194 > }
195 >
196 > /**
197 > * Result of the `fetchTurns` command.
198 > */
199 > export interface FetchTurnsResult { }
200 >
201 > // ─── completions ─────────────────────────────────────────────────────────────
202 >
203 > /**
204 > * The kind of completion items being requested.
205 > *
206 > * @category Commands
207 > */
208 > export const enum CompletionItemKind {
209 > /**
210 > * Completions for the text of a {@link Message} the user is composing.
211 > * Each returned item carries an attachment that gets associated with the
212 > * message when accepted.
213 > */
214 > UserMessage = 'userMessage',
215 > }
216 >
217 > /**
218 > * Requests completion items for a partially-typed input (e.g. a user message
219 > * the user is currently composing). Used to power `@`-mention pickers,
220 > * file/symbol references, and similar inline-completion experiences.
221 > *
222 > * Servers SHOULD treat this command as best-effort and return promptly. The
223 > * client SHOULD debounce calls to avoid flooding the server with requests on
224 > * every keystroke.
225 > *
226 > * @category Commands
227 > * @method completions
228 > * @direction Client → Server
229 > * @messageType Request
230 > * @version 1
231 > * @example
232 > * ```jsonc
233 > * // User has typed "look at @foo" and the cursor is just after "@foo".
234 > * // Client → Server
235 > * { "jsonrpc": "2.0", "id": 12, "method": "completions",
236 > * "params": { "kind": "userMessage", "channel": "ahp-chat:/<uuid>",
237 > * "text": "look at @foo", "offset": 12 } }
238 > *
239 > * // Server → Client
240 > * { "jsonrpc": "2.0", "id": 12, "result": {
241 > * "items": [
242 > * {
243 > * "insertText": "@foo.ts",
244 > * "rangeStart": 8,
245 > * "rangeEnd": 12,
246 > * "attachment": {
247 > * "type": "resource",
248 > * "label": "foo.ts",
249 > * "displayKind": "document",
250 > * "uri": "file:///workspace/foo.ts"
251 > * }
252 > * }
253 > * ]
254 > * }}
255 > * ```
256 > */
257 > export interface CompletionsParams extends BaseParams {
258 > /** What kind of completion is being requested. */
259 > kind: CompletionItemKind;
260 > /** The chat URI the completion is being requested for. */
261 > channel: URI;
262 > /**
263 > * The complete text of the input being completed (e.g. the full user
264 > * message text typed so far).
265 > */
266 > text: string;
267 > /**
268 > * The character offset within `text` at which the completion is requested,
269 > * measured in UTF-16 code units. MUST satisfy `0 <= offset <= text.length`.
270 > */
271 > offset: number;
272 > }
273 >
274 > /**
275 > * A single completion item returned by the `completions` command.
276 > *
277 > * When the user accepts an item, the client SHOULD:
278 > * 1. Replace the range `[rangeStart, rangeEnd)` in the input with `insertText`
279 > * (or insert `insertText` at the cursor when the range is omitted).
280 > * 2. Associate the item's `attachment` with the resulting {@link Message}.
281 > *
282 > * @category Commands
283 > */
284 > export interface CompletionItem {
285 > /**
286 > * The text inserted into the input when this item is accepted.
287 > */
288 > insertText: string;
289 >
290 > /**
291 > * If defined, the start of the range in the input's `text` that is replaced
292 > * by `insertText`. The range is the half-open interval
293 > * `[rangeStart, rangeEnd)` of character offsets, measured in UTF-16 code
294 > * units.
295 > *
296 > * When omitted, the client SHOULD insert `insertText` at the cursor.
297 > *
298 > * Note: this range refers to positions in the *current* input. The
299 > * attachment's own `rangeStart`/`rangeEnd` (when present) refer to
300 > * positions in the final {@link Message.text} after the item is
301 > * accepted.
302 > */
303 > rangeStart?: number;
304 >
305 > /**
306 > * The end of the range in the input's `text` that is replaced by
307 > * `insertText`. See {@link rangeStart}.
308 > */
309 > rangeEnd?: number;
310 >
311 > /**
312 > * The attachment associated with this completion item.
313 > */
314 > attachment: MessageAttachment;
315 > }
316 >
317 > /**
318 > * Result of the `completions` command.
319 > */
320 > export interface CompletionsResult {
321 > /** The completion items, in the order the server suggests displaying them. */
322 > items: CompletionItem[];
323 > }
src/vs/base/common/map.ts 319 covered LOC · 98 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- map.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { URI } from './uri.js';
7 >
8 > export function getOrSet<K, V>(map: Map<K, V>, key: K, value: V): V {
9 let result = map.get(key);
10 if (result === undefined) {
15 return result;
16 }
17 > map.ts
18 > export function mapToString<K, V>(map: Map<K, V>): string {
19 const entries: string[] = [];
20 map.forEach((value, key) => {
24 return `Map(${map.size}) {${entries.join(', ')}}`;
25 }
26 > map.ts
27 > export function setToString<K>(set: Set<K>): string {
28 const entries: K[] = [];
29 set.forEach(value => {
33 return `Set(${set.size}) {${entries.join(', ')}}`;
34 }
35 > map.ts
36 > interface ResourceMapKeyFn {
37 > (resource: URI): string;
38 > }
39 >
40 > class ResourceMapEntry<T> {
41 > constructor(readonly uri: URI, readonly value: T) { }
42 > }
43 >
44 function isEntries<T>(arg: ResourceMap<T> | ResourceMapKeyFn | readonly (readonly [URI, T])[] | undefined): arg is readonly (readonly [URI, T])[] {
45 return Array.isArray(arg);
46 }
47 > map.ts
48 > export class ResourceMap<T> implements Map<URI, T> {
49 >
50 > private static readonly defaultToKey = (resource: URI) => resource.toString();
51 >
52 > readonly [Symbol.toStringTag] = 'ResourceMap';
53 >
54 > private readonly map: Map<string, ResourceMapEntry<T>>;
55 > private readonly toKey: ResourceMapKeyFn;
56 >
57 > /**
58 > *
59 > * @param toKey Custom uri identity function, e.g use an existing `IExtUri#getComparison`-util
60 > */
61 > constructor(toKey?: ResourceMapKeyFn);
62 >
63 > /**
64 > *
65 > * @param other Another resource which this maps is created from
66 > * @param toKey Custom uri identity function, e.g use an existing `IExtUri#getComparison`-util
67 > */
68 > constructor(other?: ResourceMap<T>, toKey?: ResourceMapKeyFn);
69 >
70 > /**
71 > *
72 > * @param other Another resource which this maps is created from
73 > * @param toKey Custom uri identity function, e.g use an existing `IExtUri#getComparison`-util
74 > */
75 > constructor(entries?: readonly (readonly [URI, T])[], toKey?: ResourceMapKeyFn);
76 >
77 > constructor(arg?: ResourceMap<T> | ResourceMapKeyFn | readonly (readonly [URI, T])[], toKey?: ResourceMapKeyFn) {
78 if (arg instanceof ResourceMap) {
79 this.map = new Map(arg.map);
91 }
92 }
93 > map.ts
94 > set(resource: URI, value: T): this {
95 this.map.set(this.toKey(resource), new ResourceMapEntry(resource, value));
96 return this;
97 }
98 > map.ts
99 > get(resource: URI): T | undefined {
100 return this.map.get(this.toKey(resource))?.value;
101 }
102 > map.ts
103 > has(resource: URI): boolean {
104 return this.map.has(this.toKey(resource));
105 }
106 > map.ts
107 > get size(): number {
108 return this.map.size;
109 }
110 > map.ts
111 > clear(): void {
112 this.map.clear();
113 }
114 > map.ts
115 > delete(resource: URI): boolean {
116 return this.map.delete(this.toKey(resource));
117 }
118 > map.ts
119 > forEach(clb: (value: T, key: URI, map: Map<URI, T>) => void, thisArg?: object): void {
120 if (typeof thisArg !== 'undefined') {
121 clb = clb.bind(thisArg);
125 }
126 }
127 > map.ts
128 > *values(): MapIterator<T> {
129 for (const entry of this.map.values()) {
130 yield entry.value;
131 }
132 }
133 > map.ts
134 > *keys(): MapIterator<URI> {
135 for (const entry of this.map.values()) {
136 yield entry.uri;
137 }
138 }
139 > map.ts
140 > *entries(): MapIterator<[URI, T]> {
141 for (const entry of this.map.values()) {
142 yield [entry.uri, entry.value];
143 }
144 }
145 > map.ts
146 > *[Symbol.iterator](): MapIterator<[URI, T]> {
147 for (const [, entry] of this.map) {
148 yield [entry.uri, entry.value];
149 }
150 }
151 > } map.ts
152 >
153 > export class ResourceSet implements Set<URI> {
154 >
155 > readonly [Symbol.toStringTag]: string = 'ResourceSet';
156 >
157 > private readonly _map: ResourceMap<URI>;
158 >
159 > constructor(toKey?: ResourceMapKeyFn);
160 > constructor(entries: readonly URI[], toKey?: ResourceMapKeyFn);
161 > constructor(entriesOrKey?: readonly URI[] | ResourceMapKeyFn, toKey?: ResourceMapKeyFn) {
162 if (!entriesOrKey || typeof entriesOrKey === 'function') {
163 this._map = new ResourceMap(entriesOrKey);
167 }
168 }
169 > map.ts
170 >
171 > get size(): number {
172 return this._map.size;
173 }
174 > map.ts
175 > add(value: URI): this {
176 this._map.set(value, value);
177 return this;
178 }
179 > map.ts
180 > clear(): void {
181 this._map.clear();
182 }
183 > map.ts
184 > delete(value: URI): boolean {
185 return this._map.delete(value);
186 }
187 > map.ts
188 > forEach(callbackfn: (value: URI, value2: URI, set: Set<URI>) => void, thisArg?: unknown): void {
189 this._map.forEach((_value, key) => callbackfn.call(thisArg, key, key, this));
190 }
191 > map.ts
192 > has(value: URI): boolean {
193 return this._map.has(value);
194 }
195 > map.ts
196 > entries(): SetIterator<[URI, URI]> {
197 return this._map.entries() as unknown as SetIterator<[URI, URI]>;
198 }
199 > map.ts
200 > keys(): SetIterator<URI> {
201 return this._map.keys() as unknown as SetIterator<URI>;
202 }
203 > map.ts
204 > values(): SetIterator<URI> {
205 return this._map.keys() as unknown as SetIterator<URI>;
206 }
207 > map.ts
208 > [Symbol.iterator](): SetIterator<URI> {
209 return this.keys();
210 }
211 > } map.ts
212 >
213 >
214 > interface Item<K, V> {
215 > previous: Item<K, V> | undefined;
216 > next: Item<K, V> | undefined;
217 > key: K;
218 > value: V;
219 > }
220 >
221 > export const enum Touch {
222 > None = 0,
223 > AsOld = 1,
224 > AsNew = 2
225 > }
226 >
227 > export class LinkedMap<K, V> implements Map<K, V> {
228 >
229 > readonly [Symbol.toStringTag] = 'LinkedMap';
230 >
231 > private _map: Map<K, Item<K, V>>;
232 > private _head: Item<K, V> | undefined;
233 > private _tail: Item<K, V> | undefined;
234 > private _size: number;
235 >
236 > private _state: number;
237 >
238 > constructor() {
239 > this._map = new Map<K, Item<K, V>>(); map.ts
240 > this._head = undefined;
241 > this._tail = undefined;
242 > this._size = 0;
243 > this._state = 0;
244 > }
245 > map.ts
246 > clear(): void {
247 this._map.clear();
248 this._head = undefined;
251 this._state++;
252 }
253 > map.ts
254 > isEmpty(): boolean {
255 return !this._head && !this._tail;
256 }
257 > map.ts
258 > get size(): number {
259 return this._size;
260 }
261 > map.ts
262 > get first(): V | undefined {
263 return this._head?.value;
264 }
265 > map.ts
266 > get last(): V | undefined {
267 return this._tail?.value;
268 }
269 > map.ts
270 > has(key: K): boolean {
271 return this._map.has(key);
272 }
273 > map.ts
274 > get(key: K, touch: Touch = Touch.None): V | undefined {
275 const item = this._map.get(key);
276 if (!item) {
282 return item.value;
283 }
284 > map.ts
285 > set(key: K, value: V, touch: Touch = Touch.None): this {
286 let item = this._map.get(key);
287 if (item) {
311 return this;
312 }
313 > map.ts
314 > delete(key: K): boolean {
315 return !!this.remove(key);
316 }
317 > map.ts
318 > remove(key: K): V | undefined {
319 const item = this._map.get(key);
320 if (!item) {
326 return item.value;
327 }
328 > map.ts
329 > shift(): V | undefined {
330 if (!this._head && !this._tail) {
331 return undefined;
340 return item.value;
341 }
342 > map.ts
343 > forEach(callbackfn: (value: V, key: K, map: Map<K, V>) => void, thisArg?: unknown): void {
344 const state = this._state;
345 let current = this._head;
356 }
357 }
358 > map.ts
359 > keys(): MapIterator<K> {
360 const map = this;
361 const state = this._state;
381 return iterator;
382 }
383 > map.ts
384 > values(): MapIterator<V> {
385 const map = this;
386 const state = this._state;
406 return iterator;
407 }
408 > map.ts
409 > entries(): MapIterator<[K, V]> {
410 const map = this;
411 const state = this._state;
431 return iterator;
432 }
433 > map.ts
434 > [Symbol.iterator](): MapIterator<[K, V]> {
435 return this.entries();
436 }
437 > map.ts
438 > protected trimOld(newSize: number) {
439 if (newSize >= this.size) {
440 return;
458 this._state++;
459 }
460 > map.ts
461 > protected trimNew(newSize: number) {
462 if (newSize >= this.size) {
463 return;
481 this._state++;
482 }
483 > map.ts
484 > private addItemFirst(item: Item<K, V>): void {
485 // First time Insert
486 if (!this._head && !this._tail) {
495 this._state++;
496 }
497 > map.ts
498 > private addItemLast(item: Item<K, V>): void {
499 // First time Insert
500 if (!this._head && !this._tail) {
509 this._state++;
510 }
511 > map.ts
512 > private removeItem(item: Item<K, V>): void {
513 if (item === this._head && item === this._tail) {
514 this._head = undefined;
546 this._state++;
547 }
548 > map.ts
549 > private touch(item: Item<K, V>, touch: Touch): void {
550 if (!this._head || !this._tail) {
551 throw new Error('Invalid list');
608 }
609 }
610 > map.ts
611 > toJSON(): [K, V][] {
612 const data: [K, V][] = [];
613
618 return data;
619 }
620 > map.ts
621 > fromJSON(data: [K, V][]): void {
622 this.clear();
623
626 }
627 }
628 > } map.ts
629 >
630 > abstract class Cache<K, V> extends LinkedMap<K, V> {
631 >
632 > protected _limit: number;
633 > protected _ratio: number;
634 >
635 > constructor(limit: number, ratio: number = 1) {
636 super();
637 this._limit = limit;
638 this._ratio = Math.min(Math.max(0, ratio), 1);
639 }
640 > map.ts
641 > get limit(): number {
642 return this._limit;
643 }
644 > map.ts
645 > set limit(limit: number) {
646 this._limit = limit;
647 this.checkTrim();
648 }
649 > map.ts
650 > get ratio(): number {
651 return this._ratio;
652 }
653 > map.ts
654 > set ratio(ratio: number) {
655 this._ratio = Math.min(Math.max(0, ratio), 1);
656 this.checkTrim();
657 }
658 > map.ts
659 > override get(key: K, touch: Touch = Touch.AsNew): V | undefined {
660 return super.get(key, touch);
661 }
662 > map.ts
663 > peek(key: K): V | undefined {
664 return super.get(key, Touch.None);
665 }
666 > map.ts
667 > override set(key: K, value: V): this {
668 super.set(key, value, Touch.AsNew);
669 return this;
670 }
671 > map.ts
672 > protected checkTrim() {
673 if (this.size > this._limit) {
674 this.trim(Math.round(this._limit * this._ratio));
675 }
676 }
677 > map.ts
678 > protected abstract trim(newSize: number): void;
679 > }
680 >
681 > export class LRUCache<K, V> extends Cache<K, V> {
682 >
683 > constructor(limit: number, ratio: number = 1) {
684 super(limit, ratio);
685 }
686 > map.ts
687 > protected override trim(newSize: number) {
688 this.trimOld(newSize);
689 }
690 > map.ts
691 > override set(key: K, value: V): this {
692 super.set(key, value);
693 this.checkTrim();
694 return this;
695 }
696 > } map.ts
697 >
698 > export class MRUCache<K, V> extends Cache<K, V> {
699 >
700 > constructor(limit: number, ratio: number = 1) {
701 super(limit, ratio);
702 }
703 > map.ts
704 > protected override trim(newSize: number) {
705 this.trimNew(newSize);
706 }
707 > map.ts
708 > override set(key: K, value: V): this {
709 if (this._limit <= this.size && !this.has(key)) {
710 this.trim(Math.round(this._limit * this._ratio) - 1);
714 return this;
715 }
716 > } map.ts
717 >
718 > export class CounterSet<T> {
719
720 private map = new Map<T, number>();
721 > map.ts
722 > add(value: T): CounterSet<T> {
723 this.map.set(value, (this.map.get(value) || 0) + 1);
724 return this;
725 }
726 > map.ts
727 > delete(value: T): boolean {
728 let counter = this.map.get(value) || 0;
729
742 return true;
743 }
744 > map.ts
745 > has(value: T): boolean {
746 return this.map.has(value);
747 }
748 > } map.ts
749 >
750 > /**
751 > * A map that allows access both by keys and values.
752 > * **NOTE**: values need to be unique.
753 > */
754 > export class BidirectionalMap<K, V> {
755 >
756 > private readonly _m1 = new Map<K, V>();
757 > private readonly _m2 = new Map<V, K>();
758 >
759 > constructor(entries?: readonly (readonly [K, V])[]) {
760 if (entries) {
761 for (const [key, value] of entries) {
764 }
765 }
766 > map.ts
767 > clear(): void {
768 this._m1.clear();
769 this._m2.clear();
770 }
771 > map.ts
772 > set(key: K, value: V): void {
773 this._m1.set(key, value);
774 this._m2.set(value, key);
775 }
776 > map.ts
777 > get(key: K): V | undefined {
778 return this._m1.get(key);
779 }
780 > map.ts
781 > getKey(value: V): K | undefined {
782 return this._m2.get(value);
783 }
784 > map.ts
785 > delete(key: K): boolean {
786 const value = this._m1.get(key);
787 if (value === undefined) {
792 return true;
793 }
794 > map.ts
795 > forEach(callbackfn: (value: V, key: K, map: BidirectionalMap<K, V>) => void, thisArg?: unknown): void {
796 this._m1.forEach((value, key) => {
797 callbackfn.call(thisArg, value, key, this);
798 });
799 }
800 > map.ts
801 > keys(): IterableIterator<K> {
802 return this._m1.keys();
803 }
804 > map.ts
805 > values(): IterableIterator<V> {
806 return this._m1.values();
807 }
808 > } map.ts
809 >
810 > export class SetMap<K, V> {
811
812 private map = new Map<K, Set<V>>();
813 > map.ts
814 > add(key: K, value: V): void {
815 let values = this.map.get(key);
816
822 values.add(value);
823 }
824 > map.ts
825 > delete(key: K, value: V): void {
826 const values = this.map.get(key);
827
836 }
837 }
838 > map.ts
839 > forEach(key: K, fn: (value: V) => void): void {
840 const values = this.map.get(key);
841
846 values.forEach(fn);
847 }
848 > map.ts
849 > get(key: K): ReadonlySet<V> {
850 const values = this.map.get(key);
851 if (!values) {
854 return values;
855 }
856 > } map.ts
857 >
858 > export function mapsStrictEqualIgnoreOrder(a: Map<unknown, unknown>, b: Map<unknown, unknown>): boolean {
859 if (a === b) {
860 return true;
879 return true;
880 }
881 > map.ts
882 > /**
883 > * A map that is addressable with an arbitrary number of keys. This is useful in high performance
884 > * scenarios where creating a composite key whenever the data is accessed is too expensive. For
885 > * example for a very hot function, constructing a string like `first-second-third` for every call
886 > * will cause a significant hit to performance.
887 > */
888 > export class NKeyMap<TValue, TKeys extends (string | boolean | number)[]> {
889 private _data: Map<any, any> = new Map();
890 > map.ts
891 > /**
892 > * Sets a value on the map. Note that unlike a standard `Map`, the first argument is the value.
893 > * This is because the spread operator is used for the keys and must be last..
894 > * @param value The value to set.
895 > * @param keys The keys for the value.
896 > */
897 > public set(value: TValue, ...keys: [...TKeys]): void {
898 let currentMap = this._data;
899 for (let i = 0; i < keys.length - 1; i++) {
907 currentMap.set(keys[keys.length - 1], value);
908 }
909 > map.ts
910 > public get(...keys: [...TKeys]): TValue | undefined {
911 let currentMap = this._data;
912 for (let i = 0; i < keys.length - 1; i++) {
919 return currentMap.get(keys[keys.length - 1]);
920 }
921 > map.ts
922 > public delete(...keys: [...TKeys]): boolean {
923 const maps: Map<any, any>[] = [this._data];
924 let currentMap = this._data;
939 return deleted;
940 }
941 > map.ts
942 > public deleteAll(...keys: Partial<TKeys>): boolean {
943 if (keys.length === 0) {
944 const hadData = this._data.size > 0;
964 return deleted;
965 }
966 > map.ts
967 > public clear(): void {
968 this._data.clear();
969 }
970 > map.ts
971 > public *getAll(...keys: Partial<TKeys>): IterableIterator<TValue> {
972 let currentMap = this._data;
973 for (const key of keys) {
980 yield* this._values(currentMap);
981 }
982 > map.ts
983 > public *values(): IterableIterator<TValue> {
984 yield* this._values(this._data);
985 }
986 > map.ts
987 > private *_values(map: Map<any, any>): IterableIterator<TValue> {
988 for (const value of map.values()) {
989 if (value instanceof Map) {
994 }
995 }
996 > map.ts
997 > /**
998 > * Get a textual representation of the map for debugging purposes.
999 > */
1000 > public toString(): string {
1001 const printMap = (map: Map<any, any>, depth: number): string => {
1002 let result = '';
1014 return printMap(this._data, 0);
1015 }
1016 > } map.ts
src/vs/base/common/network.ts 292 covered LOC · 20 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- network.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import * as errors from './errors.js';
7 > import * as platform from './platform.js';
8 > import { equalsIgnoreCase, startsWithIgnoreCase } from './strings.js';
9 > import { URI } from './uri.js';
10 > import * as paths from './path.js';
11 >
12 > export namespace Schemas {
13 >
14 > /**
15 > * A schema that is used for models that exist in memory
16 > * only and that have no correspondence on a server or such.
17 > */
18 > export const inMemory = 'inmemory';
19 >
20 > /**
21 > * A schema that is used for setting files
22 > */
23 > export const vscode = 'vscode';
24 >
25 > /**
26 > * A schema that is used for internal private files
27 > */
28 > export const internal = 'private';
29 >
30 > /**
31 > * A walk-through document.
32 > */
33 > export const walkThrough = 'walkThrough';
34 >
35 > /**
36 > * An embedded code snippet.
37 > */
38 > export const walkThroughSnippet = 'walkThroughSnippet';
39 >
40 > export const http = 'http';
41 >
42 > export const https = 'https';
43 >
44 > export const file = 'file';
45 >
46 > export const mailto = 'mailto';
47 >
48 > export const untitled = 'untitled';
49 >
50 > export const data = 'data';
51 >
52 > export const command = 'command';
53 >
54 > export const vscodeRemote = 'vscode-remote';
55 >
56 > export const vscodeRemoteResource = 'vscode-remote-resource';
57 >
58 > export const vscodeManagedRemoteResource = 'vscode-managed-remote-resource';
59 >
60 > export const vscodeUserData = 'vscode-userdata';
61 >
62 > export const vscodeCustomEditor = 'vscode-custom-editor';
63 >
64 > export const vscodeNotebookCell = 'vscode-notebook-cell';
65 > export const vscodeNotebookCellMetadata = 'vscode-notebook-cell-metadata';
66 > export const vscodeNotebookCellMetadataDiff = 'vscode-notebook-cell-metadata-diff';
67 > export const vscodeNotebookCellOutput = 'vscode-notebook-cell-output';
68 > export const vscodeNotebookCellOutputDiff = 'vscode-notebook-cell-output-diff';
69 > export const vscodeNotebookMetadata = 'vscode-notebook-metadata';
70 > export const vscodeInteractiveInput = 'vscode-interactive-input';
71 >
72 > export const vscodeSettings = 'vscode-settings';
73 >
74 > export const vscodeWorkspaceTrust = 'vscode-workspace-trust';
75 >
76 > export const vscodeTerminal = 'vscode-terminal';
77 >
78 > /** Scheme used for the image carousel editor. */
79 > export const vscodeImageCarousel = 'vscode-image-carousel';
80 >
81 > /** Scheme used for code blocks in chat. */
82 > export const vscodeChatCodeBlock = 'vscode-chat-code-block';
83 >
84 > /** Scheme used for LHS of code compare (aka diff) blocks in chat. */
85 > export const vscodeChatCodeCompareBlock = 'vscode-chat-code-compare-block';
86 >
87 > /** Scheme used for the chat input editor. */
88 > export const vscodeChatEditor = 'vscode-chat-editor';
89 >
90 > /** Scheme used for the chat input part */
91 > export const vscodeChatInput = 'chatSessionInput';
92 >
93 > /** Scheme used for local chat session content */
94 > export const vscodeLocalChatSession = 'vscode-chat-session';
95 >
96 > /**
97 > * Scheme used internally for webviews that aren't linked to a resource (i.e. not custom editors)
98 > */
99 > export const webviewPanel = 'webview-panel';
100 >
101 > /**
102 > * Scheme used for loading the wrapper html and script in webviews.
103 > */
104 > export const vscodeWebview = 'vscode-webview';
105 >
106 > /**
107 > * Scheme used for integrated browser tabs using WebContentsView.
108 > */
109 > export const vscodeBrowser = 'vscode-browser';
110 >
111 > /**
112 > * Scheme used for extension pages
113 > */
114 > export const extension = 'extension';
115 >
116 > /**
117 > * Scheme used as a replacement of `file` scheme to load
118 > * files with our custom protocol handler (desktop only).
119 > */
120 > export const vscodeFileResource = 'vscode-file';
121 >
122 > /**
123 > * Scheme used for temporary resources
124 > */
125 > export const tmp = 'tmp';
126 >
127 > /**
128 > * Scheme used vs live share
129 > */
130 > export const vsls = 'vsls';
131 >
132 > /**
133 > * Scheme used for the Source Control commit input's text document
134 > */
135 > export const vscodeSourceControl = 'vscode-scm';
136 >
137 > /**
138 > * Scheme used for input box for creating comments.
139 > */
140 > export const commentsInput = 'comment';
141 >
142 > /**
143 > * Scheme used for special rendering of settings in the release notes
144 > */
145 > export const codeSetting = 'code-setting';
146 >
147 > /**
148 > * Scheme used for output panel resources
149 > */
150 > export const outputChannel = 'output';
151 >
152 > /**
153 > * Scheme used for the accessible view
154 > */
155 > export const accessibleView = 'accessible-view';
156 >
157 > /**
158 > * Used for snapshots of chat edits
159 > */
160 > export const chatEditingSnapshotScheme = 'chat-editing-snapshot-text-model';
161 > export const chatEditingModel = 'chat-editing-text-model';
162 >
163 > /**
164 > * Used for rendering multidiffs in copilot agent sessions
165 > */
166 > export const copilotPr = 'copilot-pr';
167 > }
168 >
169 > export function matchesScheme(target: URI | string, scheme: string): boolean {
170 if (URI.isUri(target)) {
171 return equalsIgnoreCase(target.scheme, scheme);
174 }
175 }
176 > network.ts
177 > export function matchesSomeScheme(target: URI | string, ...schemes: string[]): boolean {
178 return schemes.some(scheme => matchesScheme(target, scheme));
179 }
180 > network.ts
181 > export const connectionTokenCookieName = 'vscode-tkn';
182 > export const connectionTokenQueryName = 'tkn';
183 >
184 > class RemoteAuthoritiesImpl {
185 > private readonly _hosts: { [authority: string]: string | undefined } = Object.create(null);
186 > private readonly _ports: { [authority: string]: number | undefined } = Object.create(null);
187 > private readonly _connectionTokens: { [authority: string]: string | undefined } = Object.create(null);
188 > private _preferredWebSchema: 'http' | 'https' = 'http';
189 > private _delegate: ((uri: URI) => URI) | null = null;
190 > private _serverRootPath: string = '/';
191 >
192 > setPreferredWebSchema(schema: 'http' | 'https') {
193 this._preferredWebSchema = schema;
194 }
195 > network.ts
196 > setDelegate(delegate: (uri: URI) => URI): void {
197 this._delegate = delegate;
198 }
199 > network.ts
200 > setServerRootPath(product: { quality?: string; commit?: string }, serverBasePath: string | undefined): void {
201 this._serverRootPath = paths.posix.join(serverBasePath ?? '/', getServerProductSegment(product));
202 }
203 > network.ts
204 > getServerRootPath(): string {
205 return this._serverRootPath;
206 }
207 > network.ts
208 > private get _remoteResourcesPath(): string {
209 return paths.posix.join(this._serverRootPath, Schemas.vscodeRemoteResource);
210 }
211 > network.ts
212 > set(authority: string, host: string, port: number): void {
213 this._hosts[authority] = host;
214 this._ports[authority] = port;
215 }
216 > network.ts
217 > setConnectionToken(authority: string, connectionToken: string): void {
218 this._connectionTokens[authority] = connectionToken;
219 }
220 > network.ts
221 > getPreferredWebSchema(): 'http' | 'https' {
222 return this._preferredWebSchema;
223 }
224 > network.ts
225 > rewrite(uri: URI): URI {
226 if (this._delegate) {
227 try {
250 });
251 }
252 > } network.ts
253 >
254 > export const RemoteAuthorities = new RemoteAuthoritiesImpl();
255 >
256 > export function getServerProductSegment(product: { quality?: string; commit?: string }) {
257 return `${product.quality ?? 'oss'}-${product.commit ?? 'dev'}`;
258 }
259 > network.ts
260 > /**
261 > * A string pointing to a path inside the app. It should not begin with ./ or ../
262 > */
263 > export type AppResourcePath = (
264 > `a${string}` | `b${string}` | `c${string}` | `d${string}` | `e${string}` | `f${string}`
265 > | `g${string}` | `h${string}` | `i${string}` | `j${string}` | `k${string}` | `l${string}`
266 > | `m${string}` | `n${string}` | `o${string}` | `p${string}` | `q${string}` | `r${string}`
267 > | `s${string}` | `t${string}` | `u${string}` | `v${string}` | `w${string}` | `x${string}`
268 > | `y${string}` | `z${string}`
269 > );
270 >
271 > export const builtinExtensionsPath: AppResourcePath = 'vs/../../extensions';
272 > export const nodeModulesPath: AppResourcePath = 'vs/../../node_modules';
273 > export const nodeModulesAsarPath: AppResourcePath = 'vs/../../node_modules.asar';
274 > export const nodeModulesAsarUnpackedPath: AppResourcePath = 'vs/../../node_modules.asar.unpacked';
275 >
276 > export const VSCODE_AUTHORITY = 'vscode-app';
277 >
278 > class FileAccessImpl {
279 >
280 > private static readonly FALLBACK_AUTHORITY = VSCODE_AUTHORITY;
281 >
282 > /**
283 > * Returns a URI to use in contexts where the browser is responsible
284 > * for loading (e.g. fetch()) or when used within the DOM.
285 > *
286 > * **Note:** use `dom.ts#asCSSUrl` whenever the URL is to be used in CSS context.
287 > */
288 > asBrowserUri(resourcePath: AppResourcePath | ''): URI {
289 const uri = this.toUri(resourcePath);
290 return this.uriToBrowserUri(uri);
291 }
292 > network.ts
293 > /**
294 > * Returns a URI to use in contexts where the browser is responsible
295 > * for loading (e.g. fetch()) or when used within the DOM.
296 > *
297 > * **Note:** use `dom.ts#asCSSUrl` whenever the URL is to be used in CSS context.
298 > */
299 > uriToBrowserUri(uri: URI): URI {
300 // Handle remote URIs via `RemoteAuthorities`
301 if (uri.scheme === Schemas.vscodeRemote) {
328 return uri;
329 }
330 > network.ts
331 > /**
332 > * Returns the `file` URI to use in contexts where node.js
333 > * is responsible for loading.
334 > */
335 > asFileUri(resourcePath: AppResourcePath | ''): URI {
336 const uri = this.toUri(resourcePath);
337 return this.uriToFileUri(uri);
338 }
339 > network.ts
340 > /**
341 > * Returns the `file` URI to use in contexts where node.js
342 > * is responsible for loading.
343 > */
344 > uriToFileUri(uri: URI): URI {
345 // Only convert the URI if it is `vscode-file:` scheme
346 if (uri.scheme === Schemas.vscodeFileResource) {
358 return uri;
359 }
360 > network.ts
361 > private toUri(uriOrModule: URI | string): URI {
362 if (URI.isUri(uriOrModule)) {
363 return uriOrModule;
379 throw new Error('Cannot determine URI for module id!');
380 }
381 > } network.ts
382 >
383 > export const FileAccess = new FileAccessImpl();
384 >
385 > export const CacheControlheaders: Record<string, string> = Object.freeze({
386 > 'Cache-Control': 'no-cache, no-store'
387 > });
388 >
389 > export const DocumentPolicyheaders: Record<string, string> = Object.freeze({
390 > 'Document-Policy': 'include-js-call-stacks-in-crash-reports'
391 > });
392 >
393 > export namespace COI {
394 >
395 > const coiHeaders = new Map<'3' | '2' | '1' | string, Record<string, string>>([
396 > ['1', { 'Cross-Origin-Opener-Policy': 'same-origin' }],
397 > ['2', { 'Cross-Origin-Embedder-Policy': 'require-corp' }],
398 > ['3', { 'Cross-Origin-Opener-Policy': 'same-origin', 'Cross-Origin-Embedder-Policy': 'require-corp' }],
399 > ]);
400 >
401 > export const CoopAndCoep = Object.freeze(coiHeaders.get('3'));
402 >
403 > const coiSearchParamName = 'vscode-coi';
404 >
405 > /**
406 > * Extract desired headers from `vscode-coi` invocation
407 > */
408 > export function getHeadersFromQuery(url: string | URI | URL): Record<string, string> | undefined {
409 let params: URLSearchParams | undefined;
410 if (typeof url === 'string') {
421 return coiHeaders.get(value);
422 }
423 > network.ts
424 > /**
425 > * Add the `vscode-coi` query attribute based on wanting `COOP` and `COEP`. Will be a noop when `crossOriginIsolated`
426 > * isn't enabled the current context
427 > */
428 > export function addSearchParam(urlOrSearch: URLSearchParams | Record<string, string>, coop: boolean, coep: boolean): void {
429 if (!(globalThis as typeof globalThis & { crossOriginIsolated?: boolean }).crossOriginIsolated) {
430 // depends on the current context being COI
src/vs/base/common/types.ts 284 covered LOC · 24 ranges

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1 > /*--------------------------------------------------------------------------------------------- types.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { assert } from './assert.js';
7 >
8 > /**
9 > * @returns whether the provided parameter is a JavaScript String or not.
10 > */
11 > export function isString(str: unknown): str is string {
12 return (typeof str === 'string');
13 }
14 > types.ts
15 > /**
16 > * @returns whether the provided parameter is a JavaScript Array and each element in the array is a string.
17 > */
18 > export function isStringArray(value: unknown): value is string[] {
19 return isArrayOf(value, isString);
20 }
21 > types.ts
22 > /**
23 > * @returns whether the provided parameter is a JavaScript Array and each element in the array satisfies the provided type guard.
24 > */
25 > export function isArrayOf<T>(value: unknown, check: (item: unknown) => item is T): value is T[] {
26 return Array.isArray(value) && value.every(check);
27 }
28 > types.ts
29 > /**
30 > * @returns whether the provided parameter is of type `object` but **not**
31 > * `null`, an `array`, a `regexp`, nor a `date`.
32 > */
33 > export function isObject(obj: unknown): obj is Object {
34 // The method can't do a type cast since there are type (like strings) which
35 // are subclasses of any put not positvely matched by the function. Hence type
41 && !(obj instanceof Date);
42 }
43 > types.ts
44 > /**
45 > * @returns whether the provided parameter is of type `Buffer` or Uint8Array dervived type
46 > */
47 > export function isTypedArray(obj: unknown): obj is Object {
48 const TypedArray = Object.getPrototypeOf(Uint8Array);
49 return typeof obj === 'object'
50 && obj instanceof TypedArray;
51 }
52 > types.ts
53 > /**
54 > * In **contrast** to just checking `typeof` this will return `false` for `NaN`.
55 > * @returns whether the provided parameter is a JavaScript Number or not.
56 > */
57 > export function isNumber(obj: unknown): obj is number {
58 return (typeof obj === 'number' && !isNaN(obj));
59 }
60 > types.ts
61 > /**
62 > * @returns whether the provided parameter is an Iterable, casting to the given generic
63 > */
64 > export function isIterable<T>(obj: unknown): obj is Iterable<T> {
65 // eslint-disable-next-line local/code-no-any-casts
66 return !!obj && typeof (obj as any)[Symbol.iterator] === 'function';
67 }
68 > types.ts
69 > /**
70 > * @returns whether the provided parameter is an Iterable, casting to the given generic
71 > */
72 > export function isAsyncIterable<T>(obj: unknown): obj is AsyncIterable<T> {
73 // eslint-disable-next-line local/code-no-any-casts
74 return !!obj && typeof (obj as any)[Symbol.asyncIterator] === 'function';
75 }
76 > types.ts
77 > /**
78 > * @returns whether the provided parameter is a JavaScript Boolean or not.
79 > */
80 > export function isBoolean(obj: unknown): obj is boolean {
81 return (obj === true || obj === false);
82 }
83 > types.ts
84 > /**
85 > * @returns whether the provided parameter is undefined.
86 > */
87 > export function isUndefined(obj: unknown): obj is undefined {
88 return (typeof obj === 'undefined');
89 }
90 > types.ts
91 > /**
92 > * @returns whether the provided parameter is defined.
93 > */
94 > export function isDefined<T>(arg: T | null | undefined): arg is T {
95 return !isUndefinedOrNull(arg);
96 }
97 > types.ts
98 > /**
99 > * @returns whether the provided parameter is undefined or null.
100 > */
101 > export function isUndefinedOrNull(obj: unknown): obj is undefined | null {
102 return (isUndefined(obj) || obj === null);
103 }
104 > types.ts
105 >
106 > export function assertType(condition: unknown, type?: string): asserts condition {
107 if (!condition) {
108 throw new Error(type ? `Unexpected type, expected '${type}'` : 'Unexpected type');
109 }
110 }
111 > types.ts
112 > /**
113 > * Asserts that the argument passed in is neither undefined nor null.
114 > *
115 > * @see {@link assertDefined} for a similar utility that leverages TS assertion functions to narrow down the type of `arg` to be non-nullable.
116 > */
117 > export function assertReturnsDefined<T>(arg: T | null | undefined): NonNullable<T> {
118 assert(
119 arg !== null && arg !== undefined,
123 return arg;
124 }
125 > types.ts
126 > /**
127 > * Asserts that a provided `value` is `defined` - not `null` or `undefined`,
128 > * throwing an error with the provided error or error message, while also
129 > * narrowing down the type of the `value` to be `NonNullable` using TS
130 > * assertion functions.
131 > *
132 > * @throws if the provided `value` is `null` or `undefined`.
133 > *
134 > * ## Examples
135 > *
136 > * ```typescript
137 > * // an assert with an error message
138 > * assertDefined('some value', 'String constant is not defined o_O.');
139 > *
140 > * // `throws!` the provided error
141 > * assertDefined(null, new Error('Should throw this error.'));
142 > *
143 > * // narrows down the type of `someValue` to be non-nullable
144 > * const someValue: string | undefined | null = blackbox();
145 > * assertDefined(someValue, 'Some value must be defined.');
146 > * console.log(someValue.length); // now type of `someValue` is `string`
147 > * ```
148 > *
149 > * @see {@link assertReturnsDefined} for a similar utility but without assertion.
150 > * @see {@link https://www.typescriptlang.org/docs/handbook/release-notes/typescript-3-7.html#assertion-functions typescript-3-7.html#assertion-functions}
151 > */
152 > export function assertDefined<T>(value: T, error: string | NonNullable<Error>): asserts value is NonNullable<T> {
153 if (value === null || value === undefined) {
154 const errorToThrow = typeof error === 'string' ? new Error(error) : error;
157 }
158 }
159 > types.ts
160 > /**
161 > * Asserts that each argument passed in is neither undefined nor null.
162 > */
163 > export function assertReturnsAllDefined<T1, T2>(t1: T1 | null | undefined, t2: T2 | null | undefined): [T1, T2];
164 > export function assertReturnsAllDefined<T1, T2, T3>(t1: T1 | null | undefined, t2: T2 | null | undefined, t3: T3 | null | undefined): [T1, T2, T3];
165 > export function assertReturnsAllDefined<T1, T2, T3, T4>(t1: T1 | null | undefined, t2: T2 | null | undefined, t3: T3 | null | undefined, t4: T4 | null | undefined): [T1, T2, T3, T4];
166 > export function assertReturnsAllDefined(...args: (unknown | null | undefined)[]): unknown[] {
167 const result = [];
168
179 return result;
180 }
181 > types.ts
182 > /**
183 > * Checks if the provided value is one of the vales in the provided list.
184 > *
185 > * ## Examples
186 > *
187 > * ```typescript
188 > * // note! item type is a `subset of string`
189 > * type TItem = ':' | '.' | '/';
190 > *
191 > * // note! item is type of `string` here
192 > * const item: string = ':';
193 > * // list of the items to check against
194 > * const list: TItem[] = [':', '.'];
195 > *
196 > * // ok
197 > * assert(
198 > * isOneOf(item, list),
199 > * 'Must succeed.',
200 > * );
201 > *
202 > * // `item` is of `TItem` type now
203 > * ```
204 > */
205 > export const isOneOf = <TType, TSubtype extends TType>(
206 value: TType,
207 validValues: readonly TSubtype[],
211 return validValues.includes(<TSubtype>value);
212 };
213 > types.ts
214 > /**
215 > * Compile-time type check of a variable.
216 > */
217 > export function typeCheck<T = never>(_thing: NoInfer<T>): void { }
218 >
219 > const hasOwnProperty = Object.prototype.hasOwnProperty;
220 >
221 > /**
222 > * @returns whether the provided parameter is an empty JavaScript Object or not.
223 > */
224 > export function isEmptyObject(obj: unknown): obj is object {
225 if (!isObject(obj)) {
226 return false;
235 return true;
236 }
237 > types.ts
238 > /**
239 > * @returns whether the provided parameter is a JavaScript Function or not.
240 > */
241 > export function isFunction(obj: unknown): obj is Function {
242 return (typeof obj === 'function');
243 }
244 > types.ts
245 > /**
246 > * @returns whether the provided parameters is are JavaScript Function or not.
247 > */
248 > export function areFunctions(...objects: unknown[]): boolean {
249 return objects.length > 0 && objects.every(isFunction);
250 }
251 > types.ts
252 > export type TypeConstraint = string | Function;
253 >
254 > export function validateConstraints(args: unknown[], constraints: Array<TypeConstraint | undefined>): void {
255 const len = Math.min(args.length, constraints.length);
256 for (let i = 0; i < len; i++) {
258 }
259 }
260 > types.ts
261 > export function validateConstraint(arg: unknown, constraint: TypeConstraint | undefined): void {
262
263 if (isString(constraint)) {
283 }
284 }
285 > types.ts
286 > /**
287 > * Helper type assertion that safely upcasts a type to a supertype.
288 > *
289 > * This can be used to make sure the argument correctly conforms to the subtype while still being able to pass it
290 > * to contexts that expects the supertype.
291 > */
292 > export function upcast<Base, Sub extends Base = Base>(x: Sub): Base {
293 return x;
294 }
295 > types.ts
296 > type AddFirstParameterToFunction<T, TargetFunctionsReturnType, FirstParameter> = T extends (...args: any[]) => TargetFunctionsReturnType ?
297 > // Function: add param to function
298 > (firstArg: FirstParameter, ...args: Parameters<T>) => ReturnType<T> :
299 >
300 > // Else: just leave as is
301 > T;
302 >
303 > /**
304 > * Allows to add a first parameter to functions of a type.
305 > */
306 > export type AddFirstParameterToFunctions<Target, TargetFunctionsReturnType, FirstParameter> = {
307 > // For every property
308 > [K in keyof Target]: AddFirstParameterToFunction<Target[K], TargetFunctionsReturnType, FirstParameter>;
309 > };
310 >
311 > /**
312 > * Given an object with all optional properties, requires at least one to be defined.
313 > * i.e. AtLeastOne<MyObject>;
314 > */
315 > export type AtLeastOne<T, U = { [K in keyof T]: Pick<T, K> }> = Partial<T> & U[keyof U];
316 >
317 > /**
318 > * Only picks the non-optional properties of a type.
319 > */
320 > export type OmitOptional<T> = { [K in keyof T as T[K] extends Required<T>[K] ? K : never]: T[K] };
321 >
322 > /**
323 > * A type that removed readonly-less from all properties of `T`
324 > */
325 > export type Mutable<T> = {
326 > -readonly [P in keyof T]: T[P]
327 > };
328 >
329 > /**
330 > * A type that adds readonly to all properties of T, recursively.
331 > */
332 > export type DeepImmutable<T> = T extends (infer U)[]
333 > ? ReadonlyArray<DeepImmutable<U>>
334 > : T extends ReadonlyArray<infer U>
335 > ? ReadonlyArray<DeepImmutable<U>>
336 > : T extends Map<infer K, infer V>
337 > ? ReadonlyMap<K, DeepImmutable<V>>
338 > : T extends Set<infer U>
339 > ? ReadonlySet<DeepImmutable<U>>
340 > : T extends object
341 > ? {
342 > readonly [K in keyof T]: DeepImmutable<T[K]>;
343 > }
344 > : T;
345 >
346 > /**
347 > * A single object or an array of the objects.
348 > */
349 > export type SingleOrMany<T> = T | T[];
350 >
351 > /**
352 > * Given a `type X = { foo?: string }` checking that an object `satisfies X`
353 > * will ensure each property was explicitly defined, ensuring no properties
354 > * are omitted or forgotten.
355 > */
356 > export type WithDefinedProps<T> = { [K in keyof Required<T>]: T[K] };
357 >
358 >
359 > /**
360 > * A type that recursively makes all properties of `T` required
361 > */
362 > export type DeepRequiredNonNullable<T> = {
363 > [P in keyof T]-?: T[P] extends object ? DeepRequiredNonNullable<T[P]> : Required<NonNullable<T[P]>>;
364 > };
365 >
366 >
367 > /**
368 > * Represents a type that is a partial version of a given type `T`, where all properties are optional and can be deeply nested.
369 > */
370 > export type DeepPartial<T> = {
371 > [P in keyof T]?: T[P] extends object ? DeepPartial<T[P]> : Partial<T[P]>;
372 > };
373 >
374 > /**
375 > * Represents a type that is a partial version of a given type `T`, except a subset.
376 > */
377 > export type PartialExcept<T, K extends keyof T> = Partial<Omit<T, K>> & Pick<T, K>;
378 >
379 >
380 > type KeysOfUnionType<T> = T extends T ? keyof T : never;
381 > type FilterType<T, TTest> = T extends TTest ? T : never;
382 > type MakeOptionalAndTrue<T extends object> = { [K in keyof T]?: true };
383 >
384 > /**
385 > * Type guard that checks if an object has specific keys and narrows the type accordingly.
386 > *
387 > * @param x - The object to check
388 > * @param key - An object with boolean values indicating which keys to check for
389 > * @returns true if all specified keys exist in the object, false otherwise
390 > *
391 > * @example
392 > * ```typescript
393 > * type A = { a: string };
394 > * type B = { b: number };
395 > * const obj: A | B = getObject();
396 > *
397 > * if (hasKey(obj, { a: true })) {
398 > * // obj is now narrowed to type A
399 > * console.log(obj.a);
400 > * }
401 > * ```
402 > */
403 > export function hasKey<T extends object, TKeys extends MakeOptionalAndTrue<T>>(x: T, key: TKeys): x is FilterType<T, { [K in KeysOfUnionType<T> & keyof TKeys]: unknown }> {
404 for (const k in key) {
405 if (!(k in x)) {
src/vs/platform/agentHost/common/agentHostFileSystemProvider.ts 282 covered LOC · 33 ranges

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1 > /*--------------------------------------------------------------------------------------------- agentHostFileSystemProvider.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { decodeBase64, VSBuffer } from '../../../base/common/buffer.js';
7 > import { disposableTimeout } from '../../../base/common/async.js';
8 > import { Emitter, Event } from '../../../base/common/event.js';
9 > import { Disposable, DisposableStore, IDisposable, MutableDisposable, toDisposable } from '../../../base/common/lifecycle.js';
10 > import { URI } from '../../../base/common/uri.js';
11 > import { createFileSystemProviderError, FileChangeType, FilePermission, FileSystemProviderCapabilities, FileSystemProviderErrorCode, FileType, IFileChange, IFileDeleteOptions, IFileOverwriteOptions, IFileSystemProvider, IFileSystemProviderWithFileRealpathCapability, IFileWriteOptions, IStat, IWatchOptions } from '../../files/common/files.js';
12 > import { fromAgentHostUri, toAgentHostUri } from './agentHostUri.js';
13 > import { ContentEncoding, type CreateResourceWatchParams, type DirectoryEntry, type ResourceCopyParams, type ResourceCopyResult, type ResourceDeleteParams, type ResourceDeleteResult, type ResourceListResult, type ResourceMkdirParams, type ResourceMkdirResult, type ResourceMoveParams, type ResourceMoveResult, type ResourceReadResult, type ResourceRequestParams, type ResourceRequestResult, type ResourceResolveParams, type ResourceResolveResult, type ResourceWriteParams, type ResourceWriteResult } from './state/protocol/commands.js';
14 > import { AhpErrorCodes } from './state/protocol/errors.js';
15 > import { ProtocolError } from './state/sessionProtocol.js';
16 > import { ActionType, type ActionEnvelope } from './state/sessionActions.js';
17 > import { ROOT_STATE_URI } from './state/sessionState.js';
18 >
19 > /**
20 > * Interface for performing resource operations on a remote endpoint.
21 > *
22 > * Both {@link IAgentConnection} (client→server) and client-exposed
23 > * filesystems (server→client) satisfy this contract.
24 > */
25 > export interface IRemoteFilesystemConnection {
26 > resourceList(uri: URI): Promise<ResourceListResult>;
27 > resourceRead(uri: URI): Promise<ResourceReadResult>;
28 > resourceWrite(params: ResourceWriteParams): Promise<ResourceWriteResult>;
29 > resourceDelete(params: ResourceDeleteParams): Promise<ResourceDeleteResult>;
30 > resourceMove(params: ResourceMoveParams): Promise<ResourceMoveResult>;
31 > /** Copy a resource on the remote endpoint. */
32 > resourceCopy(params: ResourceCopyParams): Promise<ResourceCopyResult>;
33 > /**
34 > * Negotiate access to a resource the receiver mediates. Optional because
35 > * not every connection in the codebase carries one — only the agent-host
36 > * server-to-client direction needs to send `resourceRequest` today.
37 > */
38 > resourceRequest?(params: ResourceRequestParams): Promise<ResourceRequestResult>;
39 > /** Resolve (stat + realpath) a resource on the remote endpoint. */
40 > resourceResolve(params: ResourceResolveParams): Promise<ResourceResolveResult>;
41 > /** Create a directory on the remote endpoint (mkdir -p semantics). */
42 > resourceMkdir(params: ResourceMkdirParams): Promise<ResourceMkdirResult>;
43 > /**
44 > * Start a file-system watcher on the remote endpoint and return a
45 > * handle whose `onDidChange` event fires for every change the remote
46 > * reports under the watched root. Disposing the handle unsubscribes
47 > * the watch (subject to the receiver's grace window).
48 > *
49 > * Optional: implementations without subscription machinery omit it; the
50 > * filesystem provider degrades to a no-op `watch()` in that case.
51 > */
52 > watchResource?(params: CreateResourceWatchParams): Promise<IRemoteWatchHandle>;
53 > }
54 >
55 > /**
56 > * Handle for a remote file-system watcher returned by
57 > * {@link IRemoteFilesystemConnection.watchResource}. Mirrors the shape
58 > * of `IFileSystemWatcher` from `../../files/common/files.js` so the FS
59 > * provider can plug events straight into its own `onDidChangeFile`
60 > * emitter.
61 > */
62 > export interface IRemoteWatchHandle extends IDisposable {
63 > readonly onDidChange: Event<readonly IFileChange[]>;
64 > }
65 >
66 > /**
67 > * Shared implementation of {@link IAgentConnection.watchResource} —
68 > * bundles `createResourceWatch` + `subscribe` + a per-channel listener
69 > * on the action stream into an {@link IRemoteWatchHandle}. Used by
70 > * every transport that exposes those four primitives so we don't need
71 > * to duplicate the wire bookkeeping in each `IAgentConnection`
72 > * implementation.
73 > */
74 export async function createRemoteWatchHandle(
75 primitives: {
119 };
120 }
122 > /**
123 > * Build a {@link AGENT_HOST_SCHEME} URI for a given connection authority
124 > * and remote path. Assumes the remote path is a `file://` resource.
125 > */
126 > export function agentHostUri(authority: string, path: string): URI {
127 return toAgentHostUri(URI.file(path), authority);
128 }
130 > /**
131 > * Extract the remote filesystem path from a {@link AGENT_HOST_SCHEME} URI.
132 > */
133 > export function agentHostRemotePath(uri: URI): string {
134 return fromAgentHostUri(uri).path;
135 }
137 > // ---- Abstract base ----------------------------------------------------------
138 >
139 > interface IAuthorityEntry {
140 > /**
141 > * All currently-registered connections for this authority, oldest
142 > * first. The active connection is the last entry (most recent
143 > * registration wins). Older registrations are kept so that if a
144 > * caller registers `A`, then `B`, then disposes `B`, we transparently
145 > * fall back to `A` instead of entering a grace window.
146 > *
147 > * Empty while the entry is inside the grace window.
148 > */
149 > connections: IRemoteFilesystemConnection[];
150 > /**
151 > * Pending eviction timer; armed while {@link connections} is empty,
152 > * cleared on re-registration or eviction.
153 > */
154 > readonly expiry: MutableDisposable<IDisposable>;
155 > }
156 >
157 > /**
158 > * {@link IFileSystemProvider} that proxies filesystem operations
159 > * through a {@link IRemoteFilesystemConnection}.
160 > *
161 > * URIs encode the original scheme and authority in the path so any remote
162 > * resource can be represented. Subclasses provide the URI decode function
163 > * and scheme-specific helpers.
164 > *
165 > * Individual connections are identified by the URI's authority component.
166 > */
167 > export abstract class AHPFileSystemProvider extends Disposable implements IFileSystemProvider, IFileSystemProviderWithFileRealpathCapability {
168 >
169 > readonly capabilities =
170 > FileSystemProviderCapabilities.PathCaseSensitive |
171 > FileSystemProviderCapabilities.FileReadWrite |
172 > FileSystemProviderCapabilities.FileFolderCopy |
173 > FileSystemProviderCapabilities.FileRealpath;
174 >
175 > private readonly _onDidChangeCapabilities = this._register(new Emitter<void>());
176 > readonly onDidChangeCapabilities = this._onDidChangeCapabilities.event;
177 >
178 > private readonly _onDidChangeFile = this._register(new Emitter<readonly IFileChange[]>());
179 > readonly onDidChangeFile = this._onDidChangeFile.event;
180 > private readonly _onDidWatchError = this._register(new Emitter<string>());
181 > readonly onDidWatchError = this._onDidWatchError.event;
182 >
183 > /**
184 > * Per-authority registration slot. We keep the slot alive for a brief
185 > * grace period after the last registration is disposed, so an
186 > * operation issued during a reconnection window can wait for the
187 > * replacement registration instead of failing immediately.
188 > */
189 > private readonly _authorities = new Map<string, IAuthorityEntry>();
190 >
191 > /**
192 > * Fires the authority whose active connection has changed: added,
193 > * replaced, fallen back to an older registration, entered the grace
194 > * window (no active connection), or evicted. Long-lived consumers
195 > * (e.g. {@link watch}) subscribe here so they continue to receive
196 > * notifications across full entry eviction + later re-creation —
197 > * something a per-entry emitter cannot offer.
198 > */
199 > private readonly _onDidChangeConnection = this._register(new Emitter<string>());
200 >
201 > /**
202 > * Grace period during which {@link _getConnection} will await a new
203 > * registration after the previous one is disposed. Covers the window
204 > * where a transport is briefly torn down and re-registered (e.g. an
205 > * agent-host client reconnect that races a plugin sync). 5s matches
206 > * the typical reconnect timeout. Consumers should still implement
207 > * logical retries for longer reconnection latencies, but this is a
208 > * low level, best-effort mechanism.
209 > *
210 > * Tests can override this via the constructor parameter.
211 > */
212 > private static readonly _DEFAULT_CONNECTION_GRACE_MS = 5000;
213 >
214 > constructor(
215 > private readonly _connectionGraceMs: number = AHPFileSystemProvider._DEFAULT_CONNECTION_GRACE_MS, agentHostFileSystemProvider.ts
216 > ) {
217 > super();
218 > }
220 > /**
221 > * Register a mapping from a URI authority to a connection.
222 > * Returns a disposable that unregisters the mapping. Multiple
223 > * concurrent registrations for the same authority are supported;
224 > * the most recent registration wins, and disposing it falls back to
225 > * the previous one (if any). After the *last* registration is
226 > * disposed the entry is held open for {@link _connectionGraceMs} so
227 > * that a reconnect can replace it without orphaning in-flight
228 > * operations.
229 > */
230 > registerAuthority(authority: string, connection: IRemoteFilesystemConnection): IDisposable {
231 > let entry = this._authorities.get(authority); agentHostFileSystemProvider.ts
232 > if (!entry) {
233 > entry = {
234 > connections: [connection],
235 > expiry: new MutableDisposable<IDisposable>(),
236 > };
237 > this._authorities.set(authority, entry);
238 > } else {
239 entry.expiry.clear();
240 entry.connections.push(connection);
241 }
242 > const adopted = entry; agentHostFileSystemProvider.ts
243 > this._onDidChangeConnection.fire(authority);
244 >
245 > return toDisposable(() => {
246 > const idx = adopted.connections.indexOf(connection);
247 > if (idx === -1) {
249 > }
250 const wasActive = idx === adopted.connections.length - 1;
251 adopted.connections.splice(idx, 1);
261 this._onDidChangeConnection.fire(authority); // Falling back to an older connection — surface the change.
262 }
264 > }
266 > private _expireAuthority(authority: string, entry: IAuthorityEntry): void {
267 // A re-registration may have landed between scheduling and
268 // firing — bail in that case.
274 this._onDidChangeConnection.fire(authority);
275 }
277 > override dispose(): void {
278 > for (const entry of this._authorities.values()) { agentHostFileSystemProvider.ts
279 > entry.expiry.dispose(); agentHostFileSystemProvider.ts
280 > entry.connections.length = 0;
281 > }
282 > this._authorities.clear(); agentHostFileSystemProvider.ts
283 > super.dispose();
284 > }
286 > /** Decode a provider URI back to the original URI for the remote endpoint. */
287 > protected abstract _decodeUri(resource: URI): URI;
288 >
289 > /** Encode a remote URI back into a provider URI with the given authority. */
290 > protected abstract _encodeUri(resource: URI, authority: string): URI;
291 >
292 > watch(resource: URI, opts: IWatchOptions): IDisposable {
293 // `IFileSystemProvider.watch` is synchronous, but acquiring a
294 // connection may have to wait for a (re)registration and the
416 }
417 }
419 > async realpath(resource: URI): Promise<string> {
420 const path = resource.path;
421 // Synthetic roots and virtual content schemes have no distinct
439 }
440 }
442 > async readdir(resource: URI): Promise<[string, FileType][]> {
443 const entries = await this._listDirectory(resource.authority, resource);
444 return entries.map(e => [e.name, e.type === 'directory' ? FileType.Directory : FileType.File]);
445 }
447 > async readFile(resource: URI): Promise<Uint8Array> {
448 const connection = await this._getConnection(resource.authority);
449 try {
458 }
459 }
461 > async writeFile(resource: URI, content: Uint8Array, _opts: IFileWriteOptions): Promise<void> {
462 const connection = await this._getConnection(resource.authority);
463 try {
473 }
474 }
476 > async mkdir(resource: URI): Promise<void> {
477 const connection = await this._getConnection(resource.authority);
478 try {
483 }
484 }
486 > async delete(resource: URI, opts: IFileDeleteOptions): Promise<void> {
487 const connection = await this._getConnection(resource.authority);
488 try {
493 }
494 }
496 > async rename(from: URI, to: URI, opts: IFileOverwriteOptions): Promise<void> {
497 const connection = await this._getConnection(from.authority);
498 try {
504 }
505 }
507 > async copy(from: URI, to: URI, opts: IFileOverwriteOptions): Promise<void> {
508 const connection = await this._getConnection(from.authority);
509 try {
515 }
516 }
518 > /**
519 > * Negotiate access to {@link resource} with the receiver, asking for the
520 > * granted modes in {@link opts}. Used after a `NoPermissions` failure to
521 > * prompt the receiver to grant access; the caller can then retry.
522 > *
523 > * Resolves on success. Rejects if the receiver denies, the connection
524 > * is missing, or the connection doesn't implement `resourceRequest`.
525 > */
526 > async requestResourceAccess(resource: URI, opts: { readonly read?: boolean; readonly write?: boolean }): Promise<void> {
527 const connection = await this._getConnection(resource.authority);
528 if (!connection.resourceRequest) {
544 }
545 }
547 > // ---- Internals ----------------------------------------------------------
548 >
549 > private _getConnection(authority: string): Promise<IRemoteFilesystemConnection> {
550 const entry = this._authorities.get(authority);
551 if (!entry) {
591 });
592 }
594 > /**
595 > * Translate a thrown error from a {@link IRemoteFilesystemConnection}
596 > * into a {@link FileSystemProviderError}. Preserves `PermissionDenied`
597 > * (-32009) as `NoPermissions` so callers can distinguish a
598 > * permission failure from `NotFound` and decide whether to negotiate
599 > * via {@link requestResourceAccess}.
600 > */
601 > private _mapError(err: unknown, defaultCode: FileSystemProviderErrorCode): Error {
602 if (err instanceof ProtocolError && err.code === AhpErrorCodes.PermissionDenied) {
603 return createFileSystemProviderError(err.message, FileSystemProviderErrorCode.NoPermissions);
608 );
609 }
611 > /**
612 > * Resolve a decoded resource over {@link connection}. Shared by
613 > * {@link stat} and {@link realpath}.
614 > */
615 > private _resolve(connection: IRemoteFilesystemConnection, decoded: URI): Promise<ResourceResolveResult> {
616 return connection.resourceResolve({ channel: ROOT_STATE_URI, uri: decoded.toString() });
617 }
619 > private async _listDirectory(authority: string, resource: URI): Promise<readonly DirectoryEntry[]> {
620 const connection = await this._getConnection(authority);
621 try {
627 }
628 }
630 >
631 > // ---- Agent Host filesystem (client reads agent host files) ------------------
632 >
633 > /**
634 > * Filesystem provider for accessing agent host files from the
635 > * client side. Registered under the `vscode-agent-host` scheme.
636 > *
637 > * ```
638 > * vscode-agent-host://[connectionAuthority]/[originalScheme]/[originalAuthority]/[originalPath]
639 > * ```
640 > */
641 > export class AgentHostFileSystemProvider extends AHPFileSystemProvider {
642 > protected _decodeUri(resource: URI): URI {
643 return fromAgentHostUri(resource);
644 }
646 > protected _encodeUri(resource: URI, authority: string): URI {
647 return toAgentHostUri(resource, authority);
648 }
src/vs/platform/agentHost/common/otlp/otlpLogEmitter.ts 277 covered LOC · 36 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- otlpLogEmitter.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Emitter, Event } from '../../../../base/common/event.js';
7 > import { Disposable } from '../../../../base/common/lifecycle.js';
8 > import { AbstractMessageLogger, format, LogLevel } from '../../../log/common/log.js';
9 >
10 > /**
11 > * Channel URI template advertised by an agent host that has an
12 > * {@link OtlpLogEmitter} attached. Clients expand `{level}` to one of the
13 > * short OTLP severity names (`trace`/`debug`/`info`/`warn`/`error`/`fatal`)
14 > * and subscribe to the resulting concrete URI.
15 > *
16 > * Kept as a constant so producer (host) and consumer (workbench) cannot
17 > * drift out of sync.
18 > */
19 > export const OTLP_LOGS_CHANNEL_TEMPLATE = 'ahp-otlp://logs/{level}';
20 >
21 > /**
22 > * Scheme used by every OTLP channel URI. Lets routers tell them apart from
23 > * `ahp-*` state channels by URI alone.
24 > */
25 > export const OTLP_CHANNEL_SCHEME = 'ahp-otlp';
26 >
27 > /**
28 > * Short OTLP severity names defined by the protocol's `{level}` template
29 > * variable. Listed in ascending order so a numeric index can act as a
30 > * coarse "minimum severity" bucket.
31 > */
32 > export const OTLP_LOG_LEVELS = ['trace', 'debug', 'info', 'warn', 'error', 'fatal'] as const;
33 > export type OtlpLogLevelName = typeof OTLP_LOG_LEVELS[number];
34 >
35 > /**
36 > * Lowest [OTLP `SeverityNumber`](https://opentelemetry.io/docs/specs/otel/logs/data-model/#field-severitynumber)
37 > * within each named severity band. A record is delivered when its
38 > * `severityNumber >= levelToSeverityNumber(subscribed level)`.
39 > */
40 > export function levelToSeverityNumber(level: OtlpLogLevelName): number {
41 switch (level) {
42 case 'trace': return 1;
48 }
49 }
51 > /**
52 > * Parse one of {@link OTLP_LOG_LEVELS} from an arbitrary (case-insensitive)
53 > * string. Returns `undefined` for anything that is not a recognised name so
54 > * callers can decide how to handle unknown levels.
55 > */
56 > export function parseOtlpLogLevel(value: string): OtlpLogLevelName | undefined {
57 > const lower = value.toLowerCase(); otlpLogEmitter.ts
58 > return (OTLP_LOG_LEVELS as readonly string[]).includes(lower) ? lower as OtlpLogLevelName : undefined;
59 > }
61 > /**
62 > * Map a VS Code {@link LogLevel} onto the corresponding OTLP
63 > * `SeverityNumber` and short name.
64 > */
65 > export function logLevelToOtlpSeverity(level: LogLevel): { severityNumber: number; severityText: OtlpLogLevelName } {
66 switch (level) {
67 case LogLevel.Trace: return { severityNumber: 1, severityText: 'trace' };
76 }
77 }
79 > /**
80 > * Map a VS Code {@link LogLevel} onto the matching OTLP level name used in
81 > * the protocol's `{level}` template. Returns `undefined` for
82 > * {@link LogLevel.Off} since "no logs" is represented by not subscribing
83 > * at all.
84 > */
85 > export function logLevelToOtlpLevelName(level: LogLevel): OtlpLogLevelName | undefined {
86 if (level === LogLevel.Off) {
87 return undefined;
89 return logLevelToOtlpSeverity(level).severityText;
90 }
92 > /**
93 > * Reverse of {@link logLevelToOtlpSeverity}: returns the closest VS Code
94 > * log level for a given OTLP `SeverityNumber`. Used on the client side to
95 > * pick which `ILogger.{trace,debug,...}` call to route an incoming record
96 > * through.
97 > */
98 > export function severityNumberToLogLevel(severityNumber: number): LogLevel {
99 if (severityNumber >= 17) { return LogLevel.Error; }
100 if (severityNumber >= 13) { return LogLevel.Warning; }
103 return LogLevel.Trace;
104 }
106 > /**
107 > * Scalar value types accepted for a structured log attribute. Mirrors the
108 > * subset of OTLP `AnyValue` we serialise on the wire
109 > * (`stringValue`/`intValue`/`doubleValue`/`boolValue`).
110 > */
111 > export type OtelAttributeValue = string | number | boolean;
112 >
113 > /**
114 > * Structured metadata a log call can carry alongside its human-readable
115 > * message. Pass an instance as the final argument to any `ILogger` method
116 > * (e.g. `logService.info('MCP server started', new OtelData({ server: 'github' }))`).
117 > *
118 > * - For the regular file logger the value is rendered via {@link toJSON}
119 > * using the usual log formatting (`JSON.stringify`), so it appears as a
120 > * compact object after the message.
121 > * - For the {@link OtlpEmitterLogger} the attributes are lifted out of the
122 > * message and emitted as spec-conformant OTLP `LogRecord.attributes`,
123 > * keeping the body free of serialised JSON.
124 > */
125 > export class OtelData {
126 > constructor(readonly attributes: Readonly<Record<string, OtelAttributeValue>>) { }
127 >
128 > toJSON(): Readonly<Record<string, OtelAttributeValue>> {
129 return this.attributes;
130 }
132 >
133 > /**
134 > * A single log record produced by an {@link OtlpEmitterLogger}. The shape
135 > * mirrors the relevant fields from the OTLP/JSON `LogRecord` spec but is
136 > * kept intentionally small — only what we need to populate a
137 > * spec-conformant `ExportLogsServiceRequest` envelope.
138 > */
139 > export interface IOtlpLogRecord {
140 > /**
141 > * Time the record was produced, in nanoseconds since the Unix epoch.
142 > * Encoded as a string because JS numbers cannot losslessly represent
143 > * 64-bit nanosecond timestamps (this matches the OTLP/JSON wire format).
144 > */
145 > readonly timeUnixNano: string;
146 > /** OTLP `SeverityNumber` in the range 1..24 (see {@link levelToSeverityNumber}). */
147 > readonly severityNumber: number;
148 > /** Short severity name (`trace`/`debug`/...) matching the protocol's `{level}` vocabulary. */
149 > readonly severityText: OtlpLogLevelName;
150 > /**
151 > * Pre-formatted log body. We send the same string the existing
152 > * `ILogger` printed to the file logger — the OTLP spec models this as
153 > * `body: { stringValue }`.
154 > */
155 > readonly body: string;
156 > /**
157 > * Optional structured metadata carried by an {@link OtelData} argument
158 > * on the originating log call. Serialised to OTLP `LogRecord.attributes`
159 > * and absent when the call had no {@link OtelData}.
160 > */
161 > readonly attributes?: Readonly<Record<string, OtelAttributeValue>>;
162 > }
163 >
164 > /**
165 > * Connection-process-wide hub that {@link OtlpEmitterLogger} writes to and
166 > * the protocol server reads from. Decouples log production (which happens
167 > * via {@link ILogger}) from protocol broadcast (which needs awareness of
168 > * connected clients and their subscribed severity).
169 > */
170 > export class OtlpLogEmitter extends Disposable {
172 > private readonly _onDidLog = this._register(new Emitter<IOtlpLogRecord>());
173 > readonly onDidLog: Event<IOtlpLogRecord> = this._onDidLog.event;
175 > emit(record: IOtlpLogRecord): void {
176 > this._onDidLog.fire(record); otlpLogEmitter.ts
177 > }
179 >
180 > /**
181 > * `AbstractMessageLogger` that converts each `log(level, message)` call
182 > * into an {@link IOtlpLogRecord} and emits it on the shared
183 > * {@link OtlpLogEmitter}. Designed to be installed alongside the regular
184 > * file logger via `new LogService(primary, [otlpLogger])` so every log
185 > * call is mirrored to OTLP subscribers without duplicating call sites.
186 > */
187 > export class OtlpEmitterLogger extends AbstractMessageLogger {
188 >
189 > constructor(
190 private readonly _emitter: OtlpLogEmitter,
191 initialLevel: LogLevel = LogLevel.Trace,
198 this.setLevel(initialLevel);
199 }
201 > override trace(message: string, ...args: unknown[]): void {
202 if (this.canLog(LogLevel.Trace)) {
203 this._emit(LogLevel.Trace, message, args, true);
204 }
205 }
207 > override debug(message: string, ...args: unknown[]): void {
208 if (this.canLog(LogLevel.Debug)) {
209 this._emit(LogLevel.Debug, message, args);
210 }
211 }
213 > override info(message: string, ...args: unknown[]): void {
214 if (this.canLog(LogLevel.Info)) {
215 this._emit(LogLevel.Info, message, args);
216 }
217 }
219 > override warn(message: string, ...args: unknown[]): void {
220 if (this.canLog(LogLevel.Warning)) {
221 this._emit(LogLevel.Warning, message, args);
222 }
223 }
225 > override error(message: string | Error, ...args: unknown[]): void {
226 if (this.canLog(LogLevel.Error)) {
227 const head = message instanceof Error ? message.stack ?? message.message : message;
229 }
230 }
232 > protected override log(level: LogLevel, message: string): void {
233 if (level === LogLevel.Off) {
234 return;
236 this._emit(level, message, []);
237 }
239 > /**
240 > * Formats `message` + `args` into the OTLP record body, lifting any
241 > * {@link OtelData} argument out into structured `attributes` so the
242 > * metadata is emitted over the channel rather than serialised into the
243 > * body. Mirrors the formatting the base `AbstractMessageLogger` would
244 > * apply (including the verbose flag for `trace`).
245 > */
246 > private _emit(level: LogLevel, message: string, args: unknown[], verbose = false): void {
247 let attributes: Readonly<Record<string, OtelAttributeValue>> | undefined;
248 const index = args.findIndex(arg => arg instanceof OtelData);
260 });
261 }
263 >
264 > /**
265 > * Build an OTLP/JSON `ExportLogsServiceRequest` envelope from a single
266 > * record. The payload is the minimum the spec allows: one `ResourceLogs` →
267 > * one `ScopeLogs` → one `LogRecord`.
268 > *
269 > * Callers that want to batch multiple records can use
270 > * {@link toResourceLogsPayloadBatch}.
271 > */
272 > export function toResourceLogsPayload(record: IOtlpLogRecord): Record<string, unknown> {
273 > return toResourceLogsPayloadBatch([record]); otlpLogEmitter.ts
274 > }
276 > /**
277 > * Build an OTLP/JSON `ExportLogsServiceRequest` envelope from a batch of
278 > * records. All records share the same `ResourceLogs`/`ScopeLogs` parent —
279 > * which is fine since this emitter only ever runs inside a single agent
280 > * host process and instrumentation scope.
281 > */
282 > export function toResourceLogsPayloadBatch(records: readonly IOtlpLogRecord[]): Record<string, unknown> {
283 > return { otlpLogEmitter.ts
284 > resourceLogs: [
285 > {
286 > resource: { attributes: [] },
287 > scopeLogs: [
288 > {
289 > scope: { name: 'vscode.agentHost' },
290 > logRecords: records.map(r => ({
291 > timeUnixNano: r.timeUnixNano,
292 > observedTimeUnixNano: r.timeUnixNano,
293 > severityNumber: r.severityNumber,
294 > severityText: r.severityText,
295 > body: { stringValue: r.body },
296 > ...(r.attributes ? { attributes: attributesToOtlp(r.attributes) } : undefined),
297 > })),
298 > },
299 > ],
300 > },
301 > ],
302 > };
303 > }
305 > /**
306 > * Walk an OTLP/JSON `ExportLogsServiceRequest` payload and yield each
307 > * embedded `LogRecord` in a shape matching {@link IOtlpLogRecord}. Used by
308 > * clients to decode incoming `otlp/exportLogs` notifications without
309 > * dragging in an OpenTelemetry SDK.
310 > *
311 > * Anything that does not look like a log record is silently skipped —
312 > * the OTLP spec gives hosts considerable freedom and we don't want a
313 > * malformed nested object to bring down the entire batch.
314 > */
315 > export function* iterateOtlpLogRecords(payload: unknown): IterableIterator<IOtlpLogRecord> {
316 if (!payload || typeof payload !== 'object') {
317 return;
346 }
347 }
349 function coerceLogRecord(raw: unknown): IOtlpLogRecord | undefined {
350 if (!raw || typeof raw !== 'object') {
364 : { timeUnixNano, severityNumber, severityText, body };
365 }
367 > /**
368 > * Serialise a flat attribute map into the OTLP `KeyValue[]` shape, mapping
369 > * each JS scalar onto the matching `AnyValue` variant.
370 > */
371 function attributesToOtlp(attributes: Readonly<Record<string, OtelAttributeValue>>): Array<{ key: string; value: Record<string, unknown> }> {
372 return Object.entries(attributes).map(([key, value]) => ({ key, value: toAnyValue(value) }));
373 }
375 function toAnyValue(value: OtelAttributeValue): Record<string, unknown> {
376 switch (typeof value) {
380 }
381 }
383 > /**
384 > * Reverse of {@link attributesToOtlp}: decode an OTLP `KeyValue[]` back into
385 > * a flat attribute map. Returns `undefined` when there are no usable
386 > * attributes so callers can omit the field entirely.
387 > */
388 function otlpToAttributes(raw: unknown): Record<string, OtelAttributeValue> | undefined {
389 if (!Array.isArray(raw)) {
406 return Object.keys(result).length > 0 ? result : undefined;
407 }
409 function fromAnyValue(value: unknown): OtelAttributeValue | undefined {
410 if (!value || typeof value !== 'object') {
422 return undefined;
423 }
425 function severityNameFromNumber(n: number): OtlpLogLevelName {
426 if (n >= 21) { return 'fatal'; }
431 return 'trace';
432 }
434 function extractBody(body: unknown): string {
435 if (typeof body === 'string') {
444 return '';
445 }
447 > /**
448 > * Convert a millisecond Unix timestamp to a string-encoded nanosecond
449 > * Unix timestamp (the OTLP/JSON wire format). We don't have sub-millisecond
450 > * precision on the producer side, so we just pad with `'000000'`.
451 > */
452 function msToUnixNano(ms: number): string {
453 // Avoid `BigInt` so this works in renderers and worker environments
455 return `${ms}000000`;
456 }
458 > /**
459 > * Parse an `ahp-otlp:` channel URI string and extract the `{level}` path
460 > * segment (if present). Returns the parsed level — or `undefined` if the
461 > * URI does not encode one or the encoded value is not a recognised name.
462 > *
463 > * The URI shape advertised by this host implementation is
464 > * `ahp-otlp://logs/<level>` where `<level>` is one of {@link OTLP_LOG_LEVELS}.
465 > */
466 > export function extractLevelFromOtlpLogsUri(uri: string): OtlpLogLevelName | undefined {
467 > // Strip the scheme + authority prefix; the level is the last path otlpLogEmitter.ts
468 > // segment. We avoid `URI.parse` here so this helper can run in
469 > // environments that haven't pulled in the URI module (e.g. tests).
470 > const match = /^ahp-otlp:\/\/logs\/([^/?#]+)/i.exec(uri);
471 > if (!match) {
472 return undefined;
473 }
474 > return parseOtlpLogLevel(match[1]); otlpLogEmitter.ts
475 > }
477 > /**
478 > * Build the concrete `ahp-otlp:` channel URI a client subscribes to for a
479 > * given minimum severity. Used both by clients deciding which URI to send
480 > * with `subscribe` and by hosts deciding which URI to put on outbound
481 > * notifications.
482 > */
483 > export function buildOtlpLogsChannelUri(level: OtlpLogLevelName): string {
484 return `ahp-otlp://logs/${level}`;
485 }
src/vs/platform/agentHost/common/state/protocol/channels-changeset/state.ts 277 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { StringOrMarkdown, FileEdit, ErrorInfo } from '../common/state.js';
10 >
11 > // ─── Changesets ──────────────────────────────────────────────────────────────
12 >
13 > /**
14 > * Catalogue entry describing one changeset the server can produce for a
15 > * session.
16 > *
17 > * Catalogue entries are intentionally lightweight — just enough to render a
18 > * chip or list row without subscribing. Full per-changeset detail
19 > * ({@link ChangesetState}) lives on the subscribable URI obtained by
20 > * expanding {@link uriTemplate}.
21 > *
22 > * @category Changesets
23 > */
24 > export interface Changeset {
25 > /** Human-readable label, e.g. `"Uncommitted Changes"`. */
26 > label: string;
27 > /**
28 > * RFC 6570 URI template. Clients parse the variables directly out of the
29 > * template using the standard `{name}` syntax — they are not redeclared
30 > * here.
31 > *
32 > * Only the following template shapes are defined by this protocol; any
33 > * other variable name MUST be ignored by clients (there is no
34 > * protocol-defined way to obtain values for unknown variables):
35 > *
36 > * | Variables in template | Meaning |
37 > * | ------------------------------------------- | ------------------------------------------------------------------------------------ |
38 > * | _(none)_ | A static, session-wide changeset. The template is itself a subscribable URI. |
39 > * | `{turnId}` | Per-turn slice. Expand with a `Turn.id` from the session. |
40 > * | `{originalTurnId}` and `{modifiedTurnId}` | Diff between two turns. Both variables MUST be present. |
41 > *
42 > * Future protocol versions MAY add new well-known variables.
43 > */
44 > uriTemplate: string;
45 > /** Optional longer description. */
46 > description?: string;
47 > /**
48 > * Advisory hint describing what kind of changeset this is, so clients can
49 > * group, sort, or render an appropriate icon without parsing
50 > * {@link uriTemplate}. Recognized values include:
51 > *
52 > * - `'session'`: a static, session-wide changeset covering all changes the
53 > * agent has produced in this session.
54 > * - `'branch'`: changes relative to a base branch (e.g. a feature branch
55 > * diffed against `main`).
56 > * - `'uncommitted'`: the workspace's current uncommitted changes.
57 > * - `'turn'`: changes produced by a single turn. Typically paired with a
58 > * `{turnId}` variable in {@link uriTemplate}.
59 > * - `'compare-turns'`: a diff between two turns. Typically paired with
60 > * `{originalTurnId}` and `{modifiedTurnId}` variables in
61 > * {@link uriTemplate}.
62 > *
63 > * Implementations MAY provide additional values; clients SHOULD fall back
64 > * to a reasonable default when an unknown value is encountered.
65 > */
66 > changeKind: string;
67 > /**
68 > * Optional capability declarations for this changeset. Absent (or an empty
69 > * object) means the changeset advertises no optional capabilities.
70 > *
71 > * Because the catalogue entry is delivered up-front on
72 > * {@link ChangesetState | the session's changeset list}, clients can decide
73 > * whether to surface capability-gated UI (such as review checkboxes) without
74 > * first subscribing to the changeset URI. Mirrors the presence-flag
75 > * convention of `ClientCapabilities`.
76 > */
77 > capabilities?: ChangesetCapabilities;
78 > }
79 >
80 > /**
81 > * Optional capabilities a changeset advertises on its catalogue
82 > * {@link Changeset} entry.
83 > *
84 > * Each field is a presence flag: an empty object `{}` means "supported",
85 > * absence means "not supported". Sub-fields on individual capabilities are
86 > * reserved for future per-capability options.
87 > *
88 > * @category Changesets
89 > */
90 > export interface ChangesetCapabilities {
91 > /**
92 > * The changeset supports the per-file **review** workflow. When declared,
93 > * clients MAY surface a GitHub-style "Viewed" toggle per file and dispatch
94 > * {@link ChangesetFilesReviewChangedAction | `changeset/filesReviewChanged`} to
95 > * set each file's {@link ChangesetFile.reviewed} flag. Clients that omit
96 > * handling MUST treat the changeset as non-reviewable.
97 > */
98 > review?: Record<string, never>;
99 > }
100 >
101 > /**
102 > * Computation lifecycle of a {@link ChangesetState}.
103 > *
104 > * @category Changesets
105 > */
106 > export const enum ChangesetStatus {
107 > /** The server is still computing the contents of this changeset. */
108 > Computing = 'computing',
109 > /** The changeset has been fully computed and is up-to-date. */
110 > Ready = 'ready',
111 > /**
112 > * Computation failed. The cause is described by
113 > * {@link ChangesetState.error}.
114 > */
115 > Error = 'error',
116 > }
117 >
118 > /**
119 > * Full state for a single changeset, returned when a client subscribes to
120 > * an expanded changeset URI.
121 > *
122 > * The client already knows the URI it subscribed to, so this state does
123 > * not redundantly carry it (or the catalogue's `id`, `label`, etc.).
124 > * Aggregate counts (`additions`, `deletions`, `files`) are likewise
125 > * omitted: clients trivially compute them from `files[].edit.diff`.
126 > *
127 > * @category Changesets
128 > */
129 > export interface ChangesetState {
130 > /** Computation lifecycle. */
131 > status: ChangesetStatus;
132 > /** Present iff `status === ChangesetStatus.Error`. */
133 > error?: ErrorInfo;
134 > /** Files in this changeset, keyed by {@link ChangesetFile.id}. */
135 > files: ChangesetFile[];
136 > /**
137 > * Operations the client may invoke against this changeset. Omit when no
138 > * operations are available.
139 > */
140 > operations?: ChangesetOperation[];
141 > }
142 >
143 > /**
144 > * One file entry within a {@link ChangesetState}.
145 > *
146 > * @category Changesets
147 > */
148 > export interface ChangesetFile {
149 > /**
150 > * Stable identifier within the changeset. Typically `after.uri`
151 > * (or `before.uri` for deletions).
152 > */
153 > id: string;
154 > /**
155 > * Reuses the existing {@link FileEdit} shape. Clients derive line
156 > * additions, deletions, and rename/create/delete semantics from this.
157 > */
158 > edit: FileEdit;
159 > /**
160 > * Whether a reviewer has marked this file as reviewed (the GitHub-style
161 > * "Viewed" checkbox). Absent is equivalent to `false` — clients MUST treat
162 > * a missing value as not-yet-reviewed.
163 > *
164 > * Requires the changeset to advertise {@link ChangesetCapabilities.review}.
165 > * Clients toggle it by dispatching
166 > * {@link ChangesetFilesReviewChangedAction | `changeset/filesReviewChanged`};
167 > * the server MAY also originate it (e.g. an agent self-reviewing its own
168 > * output).
169 > *
170 > * There is no content version in the protocol, so review is **not** reset
171 > * automatically when a file's contents change under a stable id. The server,
172 > * which is the authority on what changed, resets review explicitly — either
173 > * by re-emitting the file (via {@link ChangesetFileSetAction} or
174 > * {@link ChangesetContentChangedAction}) without `reviewed: true`, or by
175 > * dispatching `changeset/filesReviewChanged` with `reviewed: false`.
176 > */
177 > reviewed?: boolean;
178 > /**
179 > * Server-defined opaque metadata, surfaced to operations and tooling
180 > * but not interpreted by the protocol.
181 > */
182 > _meta?: Record<string, unknown>;
183 > }
184 >
185 > /**
186 > * Execution lifecycle of a {@link ChangesetOperation}.
187 > *
188 > * An operation is invoked imperatively via `invokeChangesetOperation`, but
189 > * its progress and outcome are reflected back into changeset state so that
190 > * every subscriber observes a consistent view (e.g. a spinner on a "Create
191 > * Pull Request" button, or an inline error after a failed "revert").
192 > *
193 > * @category Changesets
194 > */
195 > export const enum ChangesetOperationStatus {
196 > /**
197 > * The operation is ready to be invoked. This is the default when
198 > * {@link ChangesetOperation.status} is omitted.
199 > */
200 > Idle = 'idle',
201 > /** An invocation of this operation is currently in flight. */
202 > Running = 'running',
203 > /**
204 > * The most recent invocation failed. The cause is described by
205 > * {@link ChangesetOperation.error}.
206 > */
207 > Error = 'error',
208 > /**
209 > * The operation is currently disabled and cannot be invoked.
210 > */
211 > Disabled = 'disabled',
212 > }
213 >
214 > /**
215 > * Where a {@link ChangesetOperation} can be invoked.
216 > *
217 > * @category Changesets
218 > */
219 > export const enum ChangesetOperationScope {
220 > /** Applies to the whole changeset. */
221 > Changeset = 'changeset',
222 > /** Applies to a single file within the changeset. */
223 > Resource = 'resource',
224 > /** Applies to a line range within a single file. */
225 > Range = 'range',
226 > }
227 >
228 > /**
229 > * A server-declared invokable verb the client can run against a
230 > * changeset, a file, or a range — `"stage"`, `"revert"`, `"create-pr"`,
231 > * and so on.
232 > *
233 > * The term "operation" is used deliberately to avoid colliding with the
234 > * protocol-level [Actions](/guide/actions) that mutate state.
235 > *
236 > * @category Changesets
237 > */
238 > export interface ChangesetOperation {
239 > /** Stable identifier, unique within this changeset. */
240 > id: string;
241 > /** Human-readable button/menu label. */
242 > label: string;
243 > /** Optional longer description shown on hover or in tooltips. */
244 > description?: string;
245 > /** Where this operation can be invoked. */
246 > scopes: ChangesetOperationScope[];
247 > /**
248 > * Optional confirmation prompt to show before invoking. When present,
249 > * the client MUST display this message to the user (typically in a
250 > * confirmation dialog) and only invoke the operation after the user
251 > * accepts. The presence of this field also signals that the operation
252 > * is destructive — clients SHOULD style the affirmative button
253 > * accordingly (e.g. with a warning colour).
254 > */
255 > confirmation?: StringOrMarkdown;
256 > /** Optional generic icon hint, e.g. `"check"`, `"trash"`. */
257 > icon?: string;
258 > /** Optional group identifier, used to group related operations together. */
259 > group?: string;
260 > /**
261 > * Current execution status. The server sets
262 > * {@link ChangesetOperationStatus.Running | Running} while an invocation
263 > * is in flight, {@link ChangesetOperationStatus.Error | Error} when the
264 > * most recent invocation failed, and
265 > * {@link ChangesetOperationStatus.Idle | Idle} otherwise.
266 > *
267 > * Clients SHOULD reflect this state in the UI — e.g. disabling the
268 > * control or showing a spinner while `Running`, and surfacing
269 > * {@link error} while `Error`.
270 > */
271 > status: ChangesetOperationStatus;
272 > /**
273 > * Cause of failure. Present iff
274 > * `status === ChangesetOperationStatus.Error`; otherwise omitted.
275 > */
276 > error?: ErrorInfo;
277 > }
src/vs/base/common/resources.ts 253 covered LOC · 23 ranges

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1 > /*--------------------------------------------------------------------------------------------- resources.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CharCode } from './charCode.js';
7 > import * as extpath from './extpath.js';
8 > import { Schemas } from './network.js';
9 > import * as paths from './path.js';
10 > import { isLinux, isWindows } from './platform.js';
11 > import { compare as strCompare, equalsIgnoreCase } from './strings.js';
12 > import { URI, uriToFsPath } from './uri.js';
13 >
14 > export function originalFSPath(uri: URI): string {
15 return uriToFsPath(uri, true);
16 }
18 > //#region IExtUri
19 >
20 > export interface IExtUri {
21 >
22 > // --- identity
23 >
24 > /**
25 > * Compares two uris.
26 > *
27 > * @param uri1 Uri
28 > * @param uri2 Uri
29 > * @param ignoreFragment Ignore the fragment (defaults to `false`)
30 > */
31 > compare(uri1: URI, uri2: URI, ignoreFragment?: boolean): number;
32 >
33 > /**
34 > * Tests whether two uris are equal
35 > *
36 > * @param uri1 Uri
37 > * @param uri2 Uri
38 > * @param ignoreFragment Ignore the fragment (defaults to `false`)
39 > */
40 > isEqual(uri1: URI | undefined, uri2: URI | undefined, ignoreFragment?: boolean): boolean;
41 >
42 > /**
43 > * Tests whether a `candidate` URI is a parent or equal of a given `base` URI.
44 > *
45 > * @param base A uri which is "longer" or at least same length as `parentCandidate`
46 > * @param parentCandidate A uri which is "shorter" or up to same length as `base`
47 > * @param ignoreFragment Ignore the fragment (defaults to `false`)
48 > */
49 > isEqualOrParent(base: URI, parentCandidate: URI, ignoreFragment?: boolean): boolean;
50 >
51 > /**
52 > * Creates a key from a resource URI to be used to resource comparison and for resource maps.
53 > * @see {@link ResourceMap}
54 > * @param uri Uri
55 > * @param ignoreFragment Ignore the fragment (defaults to `false`)
56 > */
57 > getComparisonKey(uri: URI, ignoreFragment?: boolean): string;
58 >
59 > /**
60 > * Whether the casing of the path-component of the uri should be ignored.
61 > */
62 > ignorePathCasing(uri: URI): boolean;
63 >
64 > // --- path math
65 >
66 > basenameOrAuthority(resource: URI): string;
67 >
68 > /**
69 > * Returns the basename of the path component of an uri.
70 > * @param resource
71 > */
72 > basename(resource: URI): string;
73 >
74 > /**
75 > * Returns the extension of the path component of an uri.
76 > * @param resource
77 > */
78 > extname(resource: URI): string;
79 > /**
80 > * Return a URI representing the directory of a URI path.
81 > *
82 > * @param resource The input URI.
83 > * @returns The URI representing the directory of the input URI.
84 > */
85 > dirname(resource: URI): URI;
86 > /**
87 > * Join a URI path with path fragments and normalizes the resulting path.
88 > *
89 > * @param resource The input URI.
90 > * @param pathFragment The path fragment to add to the URI path.
91 > * @returns The resulting URI.
92 > */
93 > joinPath(resource: URI, ...pathFragment: string[]): URI;
94 > /**
95 > * Normalizes the path part of a URI: Resolves `.` and `..` elements with directory names.
96 > *
97 > * @param resource The URI to normalize the path.
98 > * @returns The URI with the normalized path.
99 > */
100 > normalizePath(resource: URI): URI;
101 > /**
102 > *
103 > * @param from
104 > * @param to
105 > */
106 > relativePath(from: URI, to: URI): string | undefined;
107 > /**
108 > * Resolves an absolute or relative path against a base URI.
109 > * The path can be relative or absolute posix or a Windows path
110 > */
111 > resolvePath(base: URI, path: string): URI;
112 >
113 > // --- misc
114 >
115 > /**
116 > * Returns true if the URI path is absolute.
117 > */
118 > isAbsolutePath(resource: URI): boolean;
119 > /**
120 > * Tests whether the two authorities are the same
121 > */
122 > isEqualAuthority(a1: string, a2: string): boolean;
123 > /**
124 > * Returns true if the URI path has a trailing path separator
125 > */
126 > hasTrailingPathSeparator(resource: URI, sep?: string): boolean;
127 > /**
128 > * Removes a trailing path separator, if there's one.
129 > * Important: Doesn't remove the first slash, it would make the URI invalid
130 > */
131 > removeTrailingPathSeparator(resource: URI, sep?: string): URI;
132 > /**
133 > * Adds a trailing path separator to the URI if there isn't one already.
134 > * For example, c:\ would be unchanged, but c:\users would become c:\users\
135 > */
136 > addTrailingPathSeparator(resource: URI, sep?: string): URI;
137 > }
138 >
139 > export class ExtUri implements IExtUri {
140 >
141 > constructor(private _ignorePathCasing: (uri: URI) => boolean) { }
142 >
143 > compare(uri1: URI, uri2: URI, ignoreFragment: boolean = false): number {
144 if (uri1 === uri2) {
145 return 0;
147 return strCompare(this.getComparisonKey(uri1, ignoreFragment), this.getComparisonKey(uri2, ignoreFragment));
148 }
149 > resources.ts
150 > isEqual(uri1: URI | undefined, uri2: URI | undefined, ignoreFragment: boolean = false): boolean {
151 if (uri1 === uri2) {
152 return true;
157 return this.getComparisonKey(uri1, ignoreFragment) === this.getComparisonKey(uri2, ignoreFragment);
158 }
159 > resources.ts
160 > getComparisonKey(uri: URI, ignoreFragment: boolean = false): string {
161 return uri.with({
162 path: this._ignorePathCasing(uri) ? uri.path.toLowerCase() : undefined,
164 }).toString();
165 }
166 > resources.ts
167 > ignorePathCasing(uri: URI): boolean {
168 return this._ignorePathCasing(uri);
169 }
170 > resources.ts
171 > isEqualOrParent(base: URI, parentCandidate: URI, ignoreFragment: boolean = false): boolean {
172 if (base.scheme === parentCandidate.scheme) {
173 if (base.scheme === Schemas.file) {
180 return false;
181 }
182 > resources.ts
183 > // --- path math
184 >
185 > joinPath(resource: URI, ...pathFragment: string[]): URI {
186 return URI.joinPath(resource, ...pathFragment);
187 }
188 > resources.ts
189 > basenameOrAuthority(resource: URI): string {
190 return basename(resource) || resource.authority;
191 }
192 > resources.ts
193 > basename(resource: URI, suffix?: string): string {
194 return paths.posix.basename(resource.path, suffix);
195 }
196 > resources.ts
197 > extname(resource: URI): string {
198 return paths.posix.extname(resource.path);
199 }
200 > resources.ts
201 > dirname(resource: URI): URI {
202 if (resource.path.length === 0) {
203 return resource;
217 });
218 }
219 > resources.ts
220 > normalizePath(resource: URI): URI {
221 if (!resource.path.length) {
222 return resource;
232 });
233 }
234 > resources.ts
235 > relativePath(from: URI, to: URI): string | undefined {
236 if (from.scheme !== to.scheme || !isEqualAuthority(from.authority, to.authority)) {
237 return undefined;
257 return paths.posix.relative(fromPath, toPath);
258 }
259 > resources.ts
260 > resolvePath(base: URI, path: string): URI {
261 if (base.scheme === Schemas.file) {
262 const newURI = URI.file(paths.resolve(originalFSPath(base), path));
271 });
272 }
273 > resources.ts
274 > // --- misc
275 >
276 > isAbsolutePath(resource: URI): boolean {
277 return !!resource.path && resource.path[0] === '/';
278 }
279 > resources.ts
280 > isEqualAuthority(a1: string | undefined, a2: string | undefined) {
281 return a1 === a2 || (a1 !== undefined && a2 !== undefined && equalsIgnoreCase(a1, a2));
282 }
283 > resources.ts
284 > hasTrailingPathSeparator(resource: URI, sep: string = paths.sep): boolean {
285 if (resource.scheme === Schemas.file) {
286 const fsp = originalFSPath(resource);
291 }
292 }
293 > resources.ts
294 > removeTrailingPathSeparator(resource: URI, sep: string = paths.sep): URI {
295 // Make sure that the path isn't a drive letter. A trailing separator there is not removable.
296 if (hasTrailingPathSeparator(resource, sep)) {
299 return resource;
300 }
301 > resources.ts
302 > addTrailingPathSeparator(resource: URI, sep: string = paths.sep): URI {
303 let isRootSep: boolean = false;
304 if (resource.scheme === Schemas.file) {
315 return resource;
316 }
317 > } resources.ts
318 >
319 >
320 > /**
321 > * Unbiased utility that takes uris "as they are". This means it can be interchanged with
322 > * uri#toString() usages. The following is true
323 > * ```
324 > * assertEqual(aUri.toString() === bUri.toString(), exturi.isEqual(aUri, bUri))
325 > * ```
326 > */
327 > export const extUri = new ExtUri(() => false);
328 >
329 > /**
330 > * BIASED utility that _mostly_ ignored the case of urs paths. ONLY use this util if you
331 > * understand what you are doing.
332 > *
333 > * This utility is INCOMPATIBLE with `uri.toString()`-usages and both CANNOT be used interchanged.
334 > *
335 > * When dealing with uris from files or documents, `extUri` (the unbiased friend)is sufficient
336 > * because those uris come from a "trustworthy source". When creating unknown uris it's always
337 > * better to use `IUriIdentityService` which exposes an `IExtUri`-instance which knows when path
338 > * casing matters.
339 > */
340 > export const extUriBiasedIgnorePathCase = new ExtUri(uri => {
341 // A file scheme resource is in the same platform as code, so ignore case for non linux platforms
342 // Resource can be from another platform. Lowering the case as an hack. Should come from File system provider
343 return uri.scheme === Schemas.file ? !isLinux : true;
344 });
345 > resources.ts
346 >
347 > /**
348 > * BIASED utility that always ignores the casing of uris paths. ONLY use this util if you
349 > * understand what you are doing.
350 > *
351 > * This utility is INCOMPATIBLE with `uri.toString()`-usages and both CANNOT be used interchanged.
352 > *
353 > * When dealing with uris from files or documents, `extUri` (the unbiased friend)is sufficient
354 > * because those uris come from a "trustworthy source". When creating unknown uris it's always
355 > * better to use `IUriIdentityService` which exposes an `IExtUri`-instance which knows when path
356 > * casing matters.
357 > */
358 > export const extUriIgnorePathCase = new ExtUri(_ => true);
359 >
360 > export const isEqual = extUri.isEqual.bind(extUri);
361 > export const isEqualOrParent = extUri.isEqualOrParent.bind(extUri);
362 > export const getComparisonKey = extUri.getComparisonKey.bind(extUri);
363 > export const basenameOrAuthority = extUri.basenameOrAuthority.bind(extUri);
364 > export const basename = extUri.basename.bind(extUri);
365 > export const extname = extUri.extname.bind(extUri);
366 > export const dirname = extUri.dirname.bind(extUri);
367 > export const joinPath = extUri.joinPath.bind(extUri);
368 > export const normalizePath = extUri.normalizePath.bind(extUri);
369 > export const relativePath = extUri.relativePath.bind(extUri);
370 > export const resolvePath = extUri.resolvePath.bind(extUri);
371 > export const isAbsolutePath = extUri.isAbsolutePath.bind(extUri);
372 > export const isEqualAuthority = extUri.isEqualAuthority.bind(extUri);
373 > export const hasTrailingPathSeparator = extUri.hasTrailingPathSeparator.bind(extUri);
374 > export const removeTrailingPathSeparator = extUri.removeTrailingPathSeparator.bind(extUri);
375 > export const addTrailingPathSeparator = extUri.addTrailingPathSeparator.bind(extUri);
376 >
377 > //#endregion
378 >
379 > export function distinctParents<T>(items: T[], resourceAccessor: (item: T) => URI): T[] {
380 const distinctParents: T[] = [];
381 for (let i = 0; i < items.length; i++) {
396 return distinctParents;
397 }
398 > resources.ts
399 > /**
400 > * Data URI related helpers.
401 > */
402 > export namespace DataUri {
403 >
404 > export const META_DATA_LABEL = 'label';
405 > export const META_DATA_DESCRIPTION = 'description';
406 > export const META_DATA_SIZE = 'size';
407 > export const META_DATA_MIME = 'mime';
408 >
409 > export function parseMetaData(dataUri: URI): Map<string, string> {
410 const metadata = new Map<string, string>();
411
429 return metadata;
430 }
431 > } resources.ts
432 >
433 > export function toLocalResource(resource: URI, authority: string | undefined, localScheme: string): URI {
434 if (authority) {
435 let path = resource.path;
src/vs/platform/agentHost/common/state/protocol/channels-root/state.ts 244 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { ConfigSchema, JsonPrimitive, ProtectedResourceMetadata } from '../common/state.js';
10 > import type { TerminalInfo } from '../channels-terminal/state.js';
11 > import type { Customization } from '../channels-session/state.js';
12 >
13 > // ─── Root State ──────────────────────────────────────────────────────────────
14 >
15 > /**
16 > * Policy configuration state for a model.
17 > *
18 > * @category Root State
19 > */
20 > export const enum PolicyState {
21 > Enabled = 'enabled',
22 > Disabled = 'disabled',
23 > Unconfigured = 'unconfigured',
24 > }
25 >
26 > /**
27 > * Global state shared with every client subscribed to `ahp-root://`.
28 > *
29 > * @category Root State
30 > */
31 > export interface RootState {
32 > /** Available agent backends and their models */
33 > agents: AgentInfo[];
34 > /** Number of active (non-disposed) sessions on the server */
35 > activeSessions?: number;
36 > /** Known terminals on the server. Subscribe to individual terminal URIs for full state. */
37 > terminals?: TerminalInfo[];
38 > /** Agent host configuration schema and current values */
39 > config?: RootConfigState;
40 > /**
41 > * Additional implementation-defined metadata about the agent host itself.
42 > *
43 > * Clients MAY look for well-known keys here to provide enhanced UI.
44 > */
45 > _meta?: Record<string, unknown>;
46 > }
47 >
48 > /**
49 > * @category Root State
50 > */
51 > export interface AgentInfo {
52 > /** Agent provider ID (e.g. `'copilot'`) */
53 > provider: string;
54 > /** Human-readable name */
55 > displayName: string;
56 > /** Description string */
57 > description: string;
58 > /** Available models for this agent */
59 > models: SessionModelInfo[];
60 > /**
61 > * Protected resources this agent requires authentication for.
62 > *
63 > * Each entry describes an OAuth 2.0 protected resource using
64 > * [RFC 9728](https://datatracker.ietf.org/doc/html/rfc9728) semantics.
65 > * Clients should obtain tokens from the declared `authorization_servers`
66 > * and push them via the `authenticate` command before creating sessions
67 > * with this agent.
68 > *
69 > * @see {@link /specification/authentication | Authentication}
70 > */
71 > protectedResources?: ProtectedResourceMetadata[];
72 > /**
73 > * Customizations associated with this agent.
74 > *
75 > * Either container customizations —
76 > * {@link PluginCustomization | `PluginCustomization`} entries the agent
77 > * bundles, plus {@link DirectoryCustomization | `DirectoryCustomization`}
78 > * entries it watches in any workspace it's used with — or top-level
79 > * {@link McpServerCustomization | `McpServerCustomization`} entries
80 > * the agent host declares directly. When a session is created with
81 > * this agent, these entries are augmented (e.g. directory URIs are
82 > * resolved against the workspace, children are parsed) and propagated
83 > * into the session's `customizations` list.
84 > */
85 > customizations?: Customization[];
86 > /**
87 > * Static capabilities the agent advertises about itself. Clients use these
88 > * to gate features (multi-chat, fork) instead of switching on the provider
89 > * id.
90 > */
91 > capabilities?: AgentCapabilities;
92 > }
93 >
94 > /**
95 > * Static capabilities an {@link AgentInfo} advertises. Modelled after MCP
96 > * capabilities: each field is opt-in and its presence (an empty object `{}`)
97 > * signals support, while absence means the feature is unsupported and the
98 > * corresponding client commands MUST NOT be used. Sub-fields carry
99 > * per-capability options.
100 > *
101 > * @category Root State
102 > */
103 > export interface AgentCapabilities {
104 > /**
105 > * The agent can host more than one concurrent chat per session. When absent,
106 > * clients MUST NOT call `createChat` to open chats beyond the default one the
107 > * session starts with. An empty object `{}` advertises multi-chat without
108 > * source-based creation; set {@link MultipleChatsCapability.fork} or
109 > * {@link MultipleChatsCapability.sideChat} to allow the corresponding mode.
110 > */
111 > multipleChats?: MultipleChatsCapability;
112 > /**
113 > * The session's agent can be granted tool access to more than one working
114 > * directory. The directories are treated as equal peers except where the
115 > * agent advertises {@link MultipleWorkingDirectoriesCapability.requiresPrimary}
116 > * (some backends need one directory designated as a primary root).
117 > *
118 > * When absent, clients MUST NOT mutate a session's or chat's working-directory
119 > * set and MUST NOT set more than one entry in
120 > * {@link CreateSessionParams.workingDirectories}.
121 > */
122 > multipleWorkingDirectories?: MultipleWorkingDirectoriesCapability;
123 > }
124 >
125 > /**
126 > * Options for the {@link AgentCapabilities.multipleChats} capability.
127 > *
128 > * @category Root State
129 > */
130 > export interface MultipleChatsCapability {
131 > /**
132 > * The agent can fork a chat from a specific turn. When absent or `false`,
133 > * clients MUST NOT pass a {@link ChatSource} with `kind: "fork"` to
134 > * `createChat`.
135 > * Forking always implies multi-chat support.
136 > */
137 > fork?: boolean;
138 > /**
139 > * The agent can create a side chat from a specific turn. When absent or
140 > * `false`, clients MUST NOT pass a {@link ChatSource} with
141 > * `kind: "sideChat"` to `createChat`.
142 > *
143 > * A side chat receives the source turn as context without copying the source
144 > * transcript into its own visible history. The source is identified by a
145 > * stable `turnId`, which the host resolves against the source chat's current
146 > * `activeTurn` or retained history. When it names the current active turn,
147 > * the host snapshots the available partial assistant response at creation
148 > * time. Side-chat support always implies multi-chat support.
149 > */
150 > sideChat?: boolean;
151 > }
152 >
153 > /**
154 > * Options for the {@link AgentCapabilities.multipleWorkingDirectories} capability.
155 > *
156 > * @category Root State
157 > */
158 > export interface MultipleWorkingDirectoriesCapability {
159 > /**
160 > * The agent requires each chat to designate one of its working directories as
161 > * the **primary** — a distinguished root the chat is centered on (e.g. the
162 > * agent's process root for that chat, the default location for relative
163 > * paths). Primary is a **per-chat** notion, fixed at chat creation. When
164 > * `true`, a client SHOULD supply {@link CreateChatParams.primaryWorkingDirectory}
165 > * (and {@link CreateSessionParams.primaryWorkingDirectory}, which seeds the
166 > * session's default chat); a host MAY reject creation that omits it, or fall
167 > * back to the first entry of the chat's working directories. The chosen
168 > * primary is reported (read-only) on {@link ChatState.primaryWorkingDirectory}.
169 > *
170 > * When absent or `false`, the agent has no primary — all directories are
171 > * equal peers and clients need not designate one.
172 > */
173 > requiresPrimary?: boolean;
174 > }
175 >
176 > /**
177 > * @category Root State
178 > */
179 > export interface SessionModelInfo {
180 > /** Model identifier */
181 > id: string;
182 > /** Provider this model belongs to */
183 > provider: string;
184 > /** Human-readable model name */
185 > name: string;
186 > /** Maximum context window size */
187 > maxContextWindow?: number;
188 > /** Maximum number of output tokens the model can generate */
189 > maxOutputTokens?: number;
190 > /** Maximum number of prompt (input) tokens the model accepts */
191 > maxPromptTokens?: number;
192 > /** Whether the model supports vision */
193 > supportsVision?: boolean;
194 > /** Policy configuration state */
195 > policyState?: PolicyState;
196 > /**
197 > * Configuration schema describing model-specific options (e.g. thinking
198 > * level). Clients present this as a form and pass the resolved values in
199 > * {@link ModelSelection.config} when creating or changing sessions.
200 > */
201 > configSchema?: ConfigSchema;
202 > /**
203 > * Additional provider-specific metadata for this model.
204 > *
205 > * Clients MAY look for well-known keys here to provide enhanced UI.
206 > * For example, a `pricing` key may carry model pricing metadata.
207 > */
208 > _meta?: Record<string, unknown>;
209 > }
210 >
211 > /**
212 > * A model selection: the chosen model ID together with any model-specific
213 > * configuration values whose keys correspond to the model's
214 > * {@link SessionModelInfo.configSchema}.
215 > *
216 > * @category Root State
217 > */
218 > export interface ModelSelection {
219 > /** Model identifier */
220 > id: string;
221 > /**
222 > * Model-specific configuration values. Values are JSON primitives: most
223 > * pickers produce strings, but some (e.g. a numeric context-size picker)
224 > * produce numbers or booleans, which are carried through as-is.
225 > */
226 > config?: Record<string, JsonPrimitive>;
227 > }
228 >
229 > // ─── Root Config Types ───────────────────────────────────────────────────────
230 >
231 > /**
232 > * Live agent-host configuration metadata.
233 > *
234 > * The schema describes the available configuration properties and the values
235 > * contain the current value for each resolved property.
236 > *
237 > * @category Root State
238 > */
239 > export interface RootConfigState {
240 > /** JSON Schema describing available configuration properties */
241 > schema: ConfigSchema;
242 > /** Current configuration values */
243 > values: Record<string, unknown>;
244 > }
src/vs/platform/agentHost/common/state/protocol/common/actions.ts 238 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- actions.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from './state.js';
10 >
11 > import type { RootAgentsChangedAction, RootActiveSessionsChangedAction, RootTerminalsChangedAction, RootConfigChangedAction } from '../channels-root/actions.js';
12 >
13 > import type { SessionReadyAction, SessionCreationFailedAction, SessionChatAddedAction, SessionChatRemovedAction, SessionChatUpdatedAction, SessionDefaultChatChangedAction, SessionTitleChangedAction, SessionServerToolsChangedAction, SessionActiveClientSetAction, SessionActiveClientRemovedAction, SessionWorkingDirectorySetAction, SessionWorkingDirectoryRemovedAction, SessionInputNeededSetAction, SessionInputNeededRemovedAction, SessionCustomizationsChangedAction, SessionCustomizationToggledAction, SessionCustomizationUpdatedAction, SessionCustomizationRemovedAction, SessionMcpServerStateChangedAction, SessionMcpServerStartRequestedAction, SessionMcpServerStopRequestedAction, SessionIsReadChangedAction, SessionIsArchivedChangedAction, SessionActivityChangedAction, SessionChangesetsChangedAction, SessionConfigChangedAction, SessionMetaChangedAction } from '../channels-session/actions.js';
14 >
15 > import type { ChatTurnStartedAction, ChatDeltaAction, ChatResponsePartAction, ChatToolCallStartAction, ChatToolCallDeltaAction, ChatToolCallReadyAction, ChatToolCallConfirmedAction, ChatToolCallCompleteAction, ChatToolCallResultConfirmedAction, ChatToolCallContentChangedAction, ChatToolCallAuthRequiredAction, ChatToolCallAuthResolvedAction, ChatTurnCompleteAction, ChatTurnCancelledAction, ChatErrorAction, ChatActivityChangedAction, ChatWorkingDirectorySetAction, ChatWorkingDirectoryRemovedAction, ChatUsageAction, ChatReasoningAction, ChatPendingMessageSetAction, ChatPendingMessageRemovedAction, ChatQueuedMessagesReorderedAction, ChatDraftChangedAction, ChatInputRequestedAction, ChatInputAnswerChangedAction, ChatInputCompletedAction, ChatTruncatedAction, ChatTurnsLoadedAction } from '../channels-chat/actions.js';
16 >
17 > import type { ChangesetStatusChangedAction, ChangesetFileSetAction, ChangesetFileRemovedAction, ChangesetFilesReviewChangedAction, ChangesetContentChangedAction, ChangesetOperationsChangedAction, ChangesetOperationStatusChangedAction, ChangesetClearedAction } from '../channels-changeset/actions.js';
18 >
19 > import type { AnnotationsSetAction, AnnotationsUpdatedAction, AnnotationsRemovedAction, AnnotationsEntrySetAction, AnnotationsEntryRemovedAction } from '../channels-annotations/actions.js';
20 >
21 > import type { TerminalDataAction, TerminalInputAction, TerminalResizedAction, TerminalClaimedAction, TerminalTitleChangedAction, TerminalCwdChangedAction, TerminalExitedAction, TerminalClearedAction, TerminalCommandDetectionAvailableAction, TerminalCommandExecutedAction, TerminalCommandFinishedAction } from '../channels-terminal/actions.js';
22 >
23 > import type { ResourceWatchChangedAction } from '../channels-resource-watch/actions.js';
24 >
25 > // ─── Action Type Enum ────────────────────────────────────────────────────────
26 >
27 > /**
28 > * Discriminant values for all state actions.
29 > *
30 > * @category Actions
31 > */
32 > export const enum ActionType {
33 > RootAgentsChanged = 'root/agentsChanged',
34 > RootActiveSessionsChanged = 'root/activeSessionsChanged',
35 > SessionReady = 'session/ready',
36 > SessionCreationFailed = 'session/creationFailed',
37 > SessionChatAdded = 'session/chatAdded',
38 > SessionChatRemoved = 'session/chatRemoved',
39 > SessionChatUpdated = 'session/chatUpdated',
40 > SessionDefaultChatChanged = 'session/defaultChatChanged',
41 > ChatTurnStarted = 'chat/turnStarted',
42 > ChatDelta = 'chat/delta',
43 > ChatResponsePart = 'chat/responsePart',
44 > ChatToolCallStart = 'chat/toolCallStart',
45 > ChatToolCallDelta = 'chat/toolCallDelta',
46 > ChatToolCallReady = 'chat/toolCallReady',
47 > ChatToolCallConfirmed = 'chat/toolCallConfirmed',
48 > ChatToolCallComplete = 'chat/toolCallComplete',
49 > ChatToolCallResultConfirmed = 'chat/toolCallResultConfirmed',
50 > ChatToolCallContentChanged = 'chat/toolCallContentChanged',
51 > ChatToolCallAuthRequired = 'chat/toolCallAuthRequired',
52 > ChatToolCallAuthResolved = 'chat/toolCallAuthResolved',
53 > ChatTurnComplete = 'chat/turnComplete',
54 > ChatTurnCancelled = 'chat/turnCancelled',
55 > ChatError = 'chat/error',
56 > ChatActivityChanged = 'chat/activityChanged',
57 > ChatWorkingDirectorySet = 'chat/workingDirectorySet',
58 > ChatWorkingDirectoryRemoved = 'chat/workingDirectoryRemoved',
59 > SessionTitleChanged = 'session/titleChanged',
60 > ChatUsage = 'chat/usage',
61 > ChatReasoning = 'chat/reasoning',
62 > SessionServerToolsChanged = 'session/serverToolsChanged',
63 > SessionActiveClientSet = 'session/activeClientSet',
64 > SessionActiveClientRemoved = 'session/activeClientRemoved',
65 > SessionWorkingDirectorySet = 'session/workingDirectorySet',
66 > SessionWorkingDirectoryRemoved = 'session/workingDirectoryRemoved',
67 > SessionInputNeededSet = 'session/inputNeededSet',
68 > SessionInputNeededRemoved = 'session/inputNeededRemoved',
69 > ChatPendingMessageSet = 'chat/pendingMessageSet',
70 > ChatPendingMessageRemoved = 'chat/pendingMessageRemoved',
71 > ChatQueuedMessagesReordered = 'chat/queuedMessagesReordered',
72 > ChatDraftChanged = 'chat/draftChanged',
73 > ChatInputRequested = 'chat/inputRequested',
74 > ChatInputAnswerChanged = 'chat/inputAnswerChanged',
75 > ChatInputCompleted = 'chat/inputCompleted',
76 > SessionCustomizationsChanged = 'session/customizationsChanged',
77 > SessionCustomizationToggled = 'session/customizationToggled',
78 > SessionCustomizationUpdated = 'session/customizationUpdated',
79 > SessionCustomizationRemoved = 'session/customizationRemoved',
80 > SessionMcpServerStateChanged = 'session/mcpServerStateChanged',
81 > SessionMcpServerStartRequested = 'session/mcpServerStartRequested',
82 > SessionMcpServerStopRequested = 'session/mcpServerStopRequested',
83 > ChatTruncated = 'chat/truncated',
84 > ChatTurnsLoaded = 'chat/turnsLoaded',
85 > SessionIsReadChanged = 'session/isReadChanged',
86 > SessionIsArchivedChanged = 'session/isArchivedChanged',
87 > SessionActivityChanged = 'session/activityChanged',
88 > SessionChangesetsChanged = 'session/changesetsChanged',
89 > SessionConfigChanged = 'session/configChanged',
90 > SessionMetaChanged = 'session/metaChanged',
91 > ChangesetStatusChanged = 'changeset/statusChanged',
92 > ChangesetFileSet = 'changeset/fileSet',
93 > ChangesetFileRemoved = 'changeset/fileRemoved',
94 > ChangesetFilesReviewChanged = 'changeset/filesReviewChanged',
95 > ChangesetContentChanged = 'changeset/contentChanged',
96 > ChangesetOperationsChanged = 'changeset/operationsChanged',
97 > ChangesetOperationStatusChanged = 'changeset/operationStatusChanged',
98 > ChangesetCleared = 'changeset/cleared',
99 > AnnotationsSet = 'annotations/set',
100 > AnnotationsUpdated = 'annotations/updated',
101 > AnnotationsRemoved = 'annotations/removed',
102 > AnnotationsEntrySet = 'annotations/entrySet',
103 > AnnotationsEntryRemoved = 'annotations/entryRemoved',
104 > RootTerminalsChanged = 'root/terminalsChanged',
105 > RootConfigChanged = 'root/configChanged',
106 > TerminalData = 'terminal/data',
107 > TerminalInput = 'terminal/input',
108 > TerminalResized = 'terminal/resized',
109 > TerminalClaimed = 'terminal/claimed',
110 > TerminalTitleChanged = 'terminal/titleChanged',
111 > TerminalCwdChanged = 'terminal/cwdChanged',
112 > TerminalExited = 'terminal/exited',
113 > TerminalCleared = 'terminal/cleared',
114 > TerminalCommandDetectionAvailable = 'terminal/commandDetectionAvailable',
115 > TerminalCommandExecuted = 'terminal/commandExecuted',
116 > TerminalCommandFinished = 'terminal/commandFinished',
117 > ResourceWatchChanged = 'resourceWatch/changed',
118 > }
119 >
120 > // ─── Action Envelope ─────────────────────────────────────────────────────────
121 >
122 > /**
123 > * Identifies the client that originally dispatched an action.
124 > */
125 > export interface ActionOrigin {
126 > clientId: string;
127 > clientSeq: number;
128 > }
129 >
130 > /**
131 > * Every action is wrapped in an `ActionEnvelope`.
132 > *
133 > * The envelope identifies the channel the action belongs to (e.g.
134 > * `ahp-root://` for root actions, the session URI for session actions, the
135 > * terminal URI for terminal actions). Individual action payloads carry only
136 > * fields that are intrinsic to the action; the channel comes from the
137 > * envelope so that any subscribable resource can route its actions uniformly.
138 > */
139 > export interface ActionEnvelope {
140 > /** Channel URI this action belongs to. */
141 > readonly channel: URI;
142 > readonly action: StateAction;
143 > readonly serverSeq: number;
144 > readonly origin: ActionOrigin | undefined;
145 > readonly rejectionReason?: string;
146 > }
147 >
148 > // ─── Discriminated Union ─────────────────────────────────────────────────────
149 >
150 > /**
151 > * Discriminated union of all state actions.
152 > */
153 > export type StateAction =
154 > | RootAgentsChangedAction
155 > | RootActiveSessionsChangedAction
156 > | RootTerminalsChangedAction
157 > | RootConfigChangedAction
158 > | SessionReadyAction
159 > | SessionCreationFailedAction
160 > | SessionChatAddedAction
161 > | SessionChatRemovedAction
162 > | SessionChatUpdatedAction
163 > | SessionDefaultChatChangedAction
164 > | SessionTitleChangedAction
165 > | SessionServerToolsChangedAction
166 > | SessionActiveClientSetAction
167 > | SessionActiveClientRemovedAction
168 > | SessionWorkingDirectorySetAction
169 > | SessionWorkingDirectoryRemovedAction
170 > | SessionInputNeededSetAction
171 > | SessionInputNeededRemovedAction
172 > | SessionCustomizationsChangedAction
173 > | SessionCustomizationToggledAction
174 > | SessionCustomizationUpdatedAction
175 > | SessionCustomizationRemovedAction
176 > | SessionMcpServerStateChangedAction
177 > | SessionMcpServerStartRequestedAction
178 > | SessionMcpServerStopRequestedAction
179 > | SessionIsReadChangedAction
180 > | SessionIsArchivedChangedAction
181 > | SessionActivityChangedAction
182 > | SessionChangesetsChangedAction
183 > | SessionConfigChangedAction
184 > | SessionMetaChangedAction
185 > | ChatTurnStartedAction
186 > | ChatDeltaAction
187 > | ChatResponsePartAction
188 > | ChatToolCallStartAction
189 > | ChatToolCallDeltaAction
190 > | ChatToolCallReadyAction
191 > | ChatToolCallConfirmedAction
192 > | ChatToolCallCompleteAction
193 > | ChatToolCallResultConfirmedAction
194 > | ChatToolCallContentChangedAction
195 > | ChatToolCallAuthRequiredAction
196 > | ChatToolCallAuthResolvedAction
197 > | ChatTurnCompleteAction
198 > | ChatTurnCancelledAction
199 > | ChatErrorAction
200 > | ChatActivityChangedAction
201 > | ChatWorkingDirectorySetAction
202 > | ChatWorkingDirectoryRemovedAction
203 > | ChatUsageAction
204 > | ChatReasoningAction
205 > | ChatPendingMessageSetAction
206 > | ChatPendingMessageRemovedAction
207 > | ChatQueuedMessagesReorderedAction
208 > | ChatDraftChangedAction
209 > | ChatInputRequestedAction
210 > | ChatInputAnswerChangedAction
211 > | ChatInputCompletedAction
212 > | ChatTruncatedAction
213 > | ChatTurnsLoadedAction
214 > | ChangesetStatusChangedAction
215 > | ChangesetFileSetAction
216 > | ChangesetFileRemovedAction
217 > | ChangesetFilesReviewChangedAction
218 > | ChangesetContentChangedAction
219 > | ChangesetOperationsChangedAction
220 > | ChangesetOperationStatusChangedAction
221 > | ChangesetClearedAction
222 > | AnnotationsSetAction
223 > | AnnotationsUpdatedAction
224 > | AnnotationsRemovedAction
225 > | AnnotationsEntrySetAction
226 > | AnnotationsEntryRemovedAction
227 > | TerminalDataAction
228 > | TerminalInputAction
229 > | TerminalResizedAction
230 > | TerminalClaimedAction
231 > | TerminalTitleChangedAction
232 > | TerminalCwdChangedAction
233 > | TerminalExitedAction
234 > | TerminalClearedAction
235 > | TerminalCommandDetectionAvailableAction
236 > | TerminalCommandExecutedAction
237 > | TerminalCommandFinishedAction
238 > | ResourceWatchChangedAction;
src/vs/base/test/common/virtualScheduling/processor.ts 215 covered LOC · 19 ranges

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1 > /*--------------------------------------------------------------------------------------------- processor.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancellationToken } from '../../../common/cancellation.js';
7 > import { Disposable, DisposableStore, IDisposable } from '../../../common/lifecycle.js';
8 > import { Embedding, nextMacrotask } from './embedding.js';
9 > import { TimeApi } from './timeApi.js';
10 > import { ROOT_TRACE, TraceContext } from './trace.js';
11 > import { EventSource, VirtualClock, VirtualEvent, VirtualTime } from './virtualClock.js';
12 >
13 > // ============================================================================
14 > // Termination policy
15 > // ============================================================================
16 >
17 > /**
18 > * When a {@link Run} should terminate.
19 > *
20 > * Greenfield design choice: termination is *always* explicit. There is no
21 > * "bare run()" that terminates on first empty queue, because that creates a
22 > * race with the caller's microtask chain (the run can resolve before the
23 > * caller's `.then` has had a chance to schedule).
24 > */
25 > export type TerminationPolicy =
26 > /** Resolve as soon as the virtual queue is empty. */
27 > | { readonly kind: 'idle' }
28 > /** Resolve when the token is cancelled AND the queue is empty. */
29 > | { readonly kind: 'token'; readonly token: CancellationToken }
30 > /** Resolve when virtual time has reached `time` and all events scheduled
31 > * at or before `time` have been processed. A sentinel event at `time`
32 > * is scheduled by the processor so virtual time always reaches it. */
33 > | { readonly kind: 'time'; readonly time: VirtualTime };
34 >
35 > export const untilIdle: TerminationPolicy = { kind: 'idle' };
36 > export function untilToken(token: CancellationToken): TerminationPolicy { return { kind: 'token', token }; }
37 > export function untilTime(time: VirtualTime): TerminationPolicy { return { kind: 'time', time }; }
38 >
39 > export interface RunOptions {
40 > readonly until: TerminationPolicy;
41 > /** Maximum number of virtual events this run will execute. Default: 100. */
42 > readonly maxEvents?: number;
43 > /** Maximum causal-trace depth this run will tolerate. Useful for catching
44 > * runaway self-rescheduling timers. */
45 > readonly maxTraceDepth?: number;
46 > }
47 >
48 > // ============================================================================
49 > // Run — internal state for a single processor.run() invocation
50 > // ============================================================================
51 >
52 > type RunStatus = 'continue' | 'done' | { readonly error: Error };
53 >
54 > class Run {
55 > private static _idCounter = 0;
56 > public readonly id = ++Run._idCounter;
57 >
58 > public readonly promise: Promise<void>;
59 > private _resolve!: () => void;
60 > private _reject!: (e: Error) => void;
61 > private _settled = false;
62 > public get settled(): boolean { return this._settled; }
63 >
64 > constructor(
65 public readonly options: RunOptions,
66 public readonly executedAtStart: number,
69 this.promise = new Promise<void>((res, rej) => { this._resolve = res; this._reject = rej; });
70 }
72 > settle(error?: Error): void {
73 if (this._settled) { return; }
74 this._settled = true;
75 if (error) { this._reject(error); } else { this._resolve(); }
76 }
78 > evaluate(clock: VirtualClock, executedTotal: number, makeOverflow: () => Error): RunStatus {
79 const local = executedTotal - this.executedAtStart;
80 if (local >= this.maxEvents && clock.hasEvents) {
98 }
99 }
100 > } processor.ts
101 >
102 > // ============================================================================
103 > // Step outcome — what the pure state machine tells the trampoline
104 > // ============================================================================
105 >
106 > type StepOutcome =
107 > /** Either a virtual event was executed, or a run was rejected for a
108 > * bookkeeping reason (depth/event overflow). The trampoline should let
109 > * the embedding decide how to reach the next step. */
110 > | 'progress'
111 > /** No actionable event under any active deadline. The trampoline should
112 > * park until something wakes the processor. */
113 > | 'park'
114 > /** No active runs. The trampoline should stop driving. */
115 > | 'quiesce';
116 >
117 > // ============================================================================
118 > // VirtualTimeProcessor
119 > // ============================================================================
120 >
121 > export interface VirtualTimeProcessorOptions {
122 > readonly defaultMaxEvents?: number;
123 > }
124 >
125 > /**
126 > * # VirtualTimeProcessor
127 > *
128 > * Drives a {@link VirtualClock} from the host event loop. This is the
129 > * **embedding** of a small virtual event loop into the host event loop.
130 > *
131 > * ## Responsibilities, separated
132 > *
133 > * - {@link _step} is a *pure* state-machine advance. It reads the clock,
134 > * decides what to do, optionally executes one virtual event, and returns
135 > * a {@link StepOutcome}. It never touches host time.
136 > *
137 > * - {@link _drive} is the *trampoline*. It calls `_step` and lets the
138 > * {@link Embedding} decide whether to loop in place (`'continueSync'`)
139 > * or schedule the next iteration on the host (`'cbScheduled'`). It is
140 > * the only code that touches host time.
141 > *
142 > * - {@link Run} carries the user's termination predicate. Runs are pure
143 > * over `_step`'s observations; they never schedule.
144 > *
145 > * ## Invariants
146 > *
147 > * 1. **Single driver.** At any moment at most one `_drive` invocation is
148 > * active per processor (the `_inDrive` guard).
149 > *
150 > * 2. **Step is pure w.r.t. host time.** `_step` only reads the clock,
151 > * mutates the run set via settling, and synchronously runs at most one
152 > * virtual event. It never calls into a host time API.
153 > *
154 > * 3. **Embedding chooses the host primitive.** Whether the next step runs
155 > * inline, after a microtask drain, or on a paint frame is entirely the
156 > * embedding's decision — *per event*.
157 > *
158 > * 4. **Park is breakable.** While parked, the processor wakes on
159 > * {@link VirtualClock.onEventScheduled}, on a token cancellation, and
160 > * on a new run being added.
161 > *
162 > * 5. **Disposal is terminal.** After dispose, all runs are rejected and
163 > * `_step`/`_drive` short-circuit to `'quiesce'`.
164 > *
165 > * ## On the trace-reset sink
166 > *
167 > * The trace context's deferred reset (see {@link TraceContext.runAsHandler})
168 > * needs a "fire after the microtask closure" primitive. The processor passes
169 > * its *own* {@link nextMacrotask} as that sink, so the reset goes through
170 > * the same primitive the embedding uses for its own host hops. This removes
171 > * any race between the processor's hops and the trace-reset timer.
172 > */
173 > export class VirtualTimeProcessor extends Disposable {
174 >
175 > private readonly _runs = new Map<Run, IDisposable>();
176 > private readonly _history: VirtualEvent[] = [];
177 > private _executedTotal = 0;
178 > private _disposed = false;
179 >
180 > private _inDrive = false;
181 > private _parkCleanup: IDisposable | undefined;
182 >
183 > private readonly _defaultMaxEvents: number;
184 >
185 > public get history(): readonly VirtualEvent[] { return this._history; }
186 > public get executedTotal(): number { return this._executedTotal; }
187 >
188 > constructor(
189 private readonly _clock: VirtualClock,
190 private readonly _embedding: Embedding,
196 this._register({ dispose: () => this._onDispose() });
197 }
198 > processor.ts
199 > // ---- Public API -----------------------------------------------------
200 >
201 > /** Start a run with the given termination policy. */
202 > run(options: RunOptions): Promise<void> {
203 const run = new Run(options, this._executedTotal, options.maxEvents ?? this._defaultMaxEvents);
204 const cleanup = new DisposableStore();
226 return run.promise;
227 }
228 > processor.ts
229 > // ---- The pure step --------------------------------------------------
230 >
231 > private _step(): StepOutcome {
232 if (this._disposed) { return 'quiesce'; }
233
254 return 'progress';
255 }
256 > processor.ts
257 > private _executeOne(event: VirtualEvent): void {
258 try {
259 TraceContext.instance.runAsHandler(
280 }
281 }
282 > processor.ts
283 > // ---- The trampoline -------------------------------------------------
284 >
285 > private readonly _drive = (): void => {
286 > if (this._inDrive) { return; }
287 > this._inDrive = true;
288 > try {
289 > while (true) {
290 > const outcome = this._step();
291 > if (outcome === 'quiesce') { return; }
292 > if (outcome === 'park') { this._park(); return; } processor.ts
293 >
294 > // 'progress': read the next event so the embedding can pick a
295 > // per-event primitive. If there is none, loop and let the next
296 > // `_step` decide between 'park' and 'quiesce'.
297 > const next = this._clock.peekNext();
298 > if (next === undefined) { continue; }
299 > processor.ts
300 > const choice = this._embedding(next, this._drive);
301 > if (choice === 'cbScheduled') { return; }
302 > // 'continueSync': loop in place. processor.ts
303 > }
304 > } finally {
305 > this._inDrive = false;
306 > }
307 > };
308 >
309 > // ---- Park & wake ----------------------------------------------------
310 >
311 > private _park(): void {
312 this._unpark();
313 const store = new DisposableStore();
315 this._parkCleanup = store;
316 }
317 > processor.ts
318 > private _unpark(): void {
319 this._parkCleanup?.dispose();
320 this._parkCleanup = undefined;
321 }
322 > processor.ts
323 > private _wake(): void {
324 if (this._disposed) { return; }
325 this._unpark();
337 nextMacrotask(this._realApi, this._drive);
338 }
339 > processor.ts
340 > // ---- Run lifecycle --------------------------------------------------
341 >
342 > private _settleFinishedRuns(): void {
343 for (const run of [...this._runs.keys()]) {
344 if (run.settled) { continue; }
351 }
352 }
353 > processor.ts
354 > private _settleRun(run: Run, error?: Error): void {
355 const cleanup = this._runs.get(run);
356 if (!cleanup) { return; }
359 run.settle(error);
360 }
361 > processor.ts
362 > private _buildOverflow(run: Run): Error {
363 const local = this._executedTotal - run.executedAtStart;
364 return new Error(
367 );
368 }
369 > processor.ts
370 > private _buildDepthOverflow(run: Run, depth: number): Error {
371 return new Error(
372 `[VirtualTimeProcessor] Run #${run.id} exceeded maxTraceDepth (${run.options.maxTraceDepth}) — ` +
375 );
376 }
377 > processor.ts
378 > private _onDispose(): void {
379 this._disposed = true;
380 this._unpark();
382 for (const run of [...this._runs.keys()]) { this._settleRun(run, err); }
383 }
384 > } processor.ts
src/vs/platform/agentHost/common/state/protocol/common/errors.ts 215 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- errors.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { ProtectedResourceMetadata } from './state.js';
10 > import type { ResourceRequestParams } from './commands.js';
11 >
12 > // ─── Standard JSON-RPC Codes ─────────────────────────────────────────────────
13 >
14 > /**
15 > * Standard JSON-RPC 2.0 error codes.
16 > *
17 > * @category Standard JSON-RPC Codes
18 > */
19 > export const JsonRpcErrorCodes = {
20 > /** Invalid JSON */
21 > ParseError: -32700,
22 > /** Not a valid JSON-RPC request */
23 > InvalidRequest: -32600,
24 > /** Unknown method name */
25 > MethodNotFound: -32601,
26 > /** Invalid method parameters */
27 > InvalidParams: -32602,
28 > /** Unspecified server error */
29 > InternalError: -32603,
30 > } as const;
31 >
32 > // ─── AHP Application Codes ──────────────────────────────────────────────────
33 >
34 > /**
35 > * AHP application-specific error codes.
36 > *
37 > * @category AHP Application Codes
38 > * @version 1
39 > */
40 > export const AhpErrorCodes = {
41 > /** The referenced session URI does not exist */
42 > SessionNotFound: -32001,
43 > /** The requested agent provider is not registered */
44 > ProviderNotFound: -32002,
45 > /** A session with the given URI already exists */
46 > SessionAlreadyExists: -32003,
47 > /** The operation requires no active turn, but one is in progress */
48 > TurnInProgress: -32004,
49 > /**
50 > * The server cannot speak any of the protocol versions offered by the
51 > * client in `InitializeParams.protocolVersions`. The `data` field of the
52 > * JSON-RPC error MAY be an `UnsupportedProtocolVersionErrorData` advertising
53 > * the protocol versions the server is willing to speak.
54 > */
55 > UnsupportedProtocolVersion: -32005,
56 > /** The requested content URI does not exist */
57 > ContentNotFound: -32006,
58 > /**
59 > * A command failed because the client has not authenticated for a required
60 > * protected resource. The `data` field of the JSON-RPC error MUST be an
61 > * `AuthRequiredErrorData` describing the resources that require
62 > * authentication.
63 > *
64 > * @see {@link /specification/authentication | Authentication}
65 > */
66 > AuthRequired: -32007,
67 > /** The requested file, folder, or URI does not exist */
68 > NotFound: -32008,
69 > /**
70 > * The client is not permitted to access the requested resource.
71 > *
72 > * Servers SHOULD return this when a client attempts to read or browse
73 > * a path outside the allowed set (e.g. outside the session's working
74 > * directory or workspace roots).
75 > *
76 > * The `data` field of the JSON-RPC error MAY be a
77 > * `PermissionDeniedErrorData` advertising a `resourceRequest` that, if
78 > * granted, would unlock the operation.
79 > */
80 > PermissionDenied: -32009,
81 > /**
82 > * The target resource already exists and the operation does not allow
83 > * overwriting (e.g. `resourceWrite` with `createOnly: true`).
84 > */
85 > AlreadyExists: -32010,
86 > /**
87 > * An optimistic-concurrency precondition failed.
88 > *
89 > * Returned when a request carries a precondition token that no longer
90 > * matches the receiver's current state — for example, `resourceWrite`
91 > * with an `ifMatch` etag that has been superseded by a concurrent
92 > * write. Callers SHOULD re-read the resource (e.g. via
93 > * `resourceResolve`) and decide whether to retry the operation with the
94 > * fresh token or surface the conflict to the user.
95 > */
96 > Conflict: -32011,
97 > } as const;
98 >
99 > /** Union type of all AHP application error codes. */
100 > export type AhpErrorCode = (typeof AhpErrorCodes)[keyof typeof AhpErrorCodes];
101 >
102 > /** Union type of all JSON-RPC error codes. */
103 > export type JsonRpcErrorCode = (typeof JsonRpcErrorCodes)[keyof typeof JsonRpcErrorCodes];
104 >
105 > // ─── Error Detail Types ──────────────────────────────────────────────────────
106 >
107 > /**
108 > * Details carried in the `data` field of an `AuthRequired` (-32007) error.
109 > *
110 > * Wraps the protected resource list in `{ resources: [...] }` rather than
111 > * returning a bare array, so additional fields can be added in future
112 > * versions without breaking the wire shape.
113 > *
114 > * @category Error Details
115 > * @version 1
116 > */
117 > export interface AuthRequiredErrorData {
118 > /** Protected resources that require authentication. */
119 > resources: ProtectedResourceMetadata[];
120 > }
121 >
122 > /**
123 > * Details carried in the `data` field of a `PermissionDenied` (-32009) error.
124 > *
125 > * The receiver MAY advertise a `resourceRequest` payload describing the
126 > * access that, if granted, would unlock the operation. The caller MAY then
127 > * issue `resourceRequest` with that payload to negotiate access.
128 > *
129 > * @category Error Details
130 > * @version 1
131 > */
132 > export interface PermissionDeniedErrorData {
133 > /**
134 > * The resource access that, if granted via `resourceRequest`, would unlock
135 > * the operation. Omitted when no specific access grant would resolve the
136 > * denial (for example, when the resource is fundamentally inaccessible).
137 > */
138 > request?: ResourceRequestParams;
139 > }
140 >
141 > /**
142 > * Details carried in the `data` field of an `UnsupportedProtocolVersion`
143 > * (-32005) error.
144 > *
145 > * @category Error Details
146 > * @version 1
147 > */
148 > export interface UnsupportedProtocolVersionErrorData {
149 > /**
150 > * Protocol versions the server is willing to speak.
151 > *
152 > * Each entry is either a [SemVer](https://semver.org) `MAJOR.MINOR.PATCH`
153 > * string (e.g. `"0.1.0"`) or a [SemVer range](https://semver.org/#spec-item-11)
154 > * constraint (e.g. `">=0.1.0 <0.3.0"` or `"^0.2.0"`).
155 > */
156 > supportedVersions: string[];
157 > }
158 >
159 > /**
160 > * Maps each AHP error code that carries structured `data` to the type of
161 > * that data.
162 > *
163 > * Error codes not present in this map either have no `data` payload or
164 > * carry an unspecified payload that callers SHOULD treat as `unknown`.
165 > *
166 > * @category Error Details
167 > * @version 1
168 > */
169 > export interface AhpErrorDetailsMap {
170 > [AhpErrorCodes.AuthRequired]: AuthRequiredErrorData;
171 > [AhpErrorCodes.PermissionDenied]: PermissionDeniedErrorData;
172 > [AhpErrorCodes.UnsupportedProtocolVersion]: UnsupportedProtocolVersionErrorData;
173 > }
174 >
175 > /** AHP error codes that carry a structured `data` payload. */
176 > export type AhpErrorCodeWithData = keyof AhpErrorDetailsMap;
177 >
178 > /**
179 > * A typed JSON-RPC error object whose `data` is narrowed by `code`.
180 > *
181 > * Distributes over the `AhpErrorCode` union so narrowing on `code` reveals
182 > * the precise `data` type. For codes listed in {@link AhpErrorDetailsMap}
183 > * `data` is required; for all other codes `data` is an optional `unknown`.
184 > *
185 > * ```ts
186 > * function handle(err: AhpError) {
187 > * if (err.code === AhpErrorCodes.PermissionDenied) {
188 > * err.data.request; // typed as ResourceRequestParams | undefined
189 > * }
190 > * }
191 > * ```
192 > *
193 > * @category Error Details
194 > * @version 1
195 > */
196 > export type AhpError<C extends AhpErrorCode = AhpErrorCode> =
197 > C extends AhpErrorCode
198 > ? C extends keyof AhpErrorDetailsMap
199 > ? {
200 > /** The error code. */
201 > readonly code: C;
202 > /** Human-readable error message. */
203 > readonly message: string;
204 > /** Structured detail payload mandated by `AhpErrorDetailsMap`. */
205 > readonly data: AhpErrorDetailsMap[C];
206 > }
207 > : {
208 > /** The error code. */
209 > readonly code: C;
210 > /** Human-readable error message. */
211 > readonly message: string;
212 > /** Optional, unspecified detail payload. */
213 > readonly data?: unknown;
214 > }
215 > : never;
src/vs/platform/agentHost/common/state/sessionActions.ts 210 covered LOC · 6 ranges

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1 > /*--------------------------------------------------------------------------------------------- sessionActions.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Action and notification types for the sessions process protocol.
7 > // Re-exports from the auto-generated protocol layer with local aliases.
8 > //
9 > // VS Code-specific additions:
10 > // - IToolCallStartAction extends protocol with `toolKind` and `language`
11 > // - isRootAction / isSessionAction type guards
12 > // - INotification alias for ProtocolNotification
13 >
14 > // ---- Re-exports from protocol -----------------------------------------------
15 >
16 > export {
17 > ActionType,
18 > type ActionEnvelope,
19 > type ActionOrigin,
20 > type RootAgentsChangedAction,
21 > type RootActiveSessionsChangedAction,
22 > type SessionCreationFailedAction,
23 > type SessionChatAddedAction,
24 > type SessionChatRemovedAction,
25 > type SessionChatUpdatedAction,
26 > type SessionDefaultChatChangedAction,
27 > type ChatDeltaAction,
28 > type ChatErrorAction,
29 > type SessionReadyAction,
30 > type ChatReasoningAction,
31 > type ChatResponsePartAction,
32 > type ChatToolCallCompleteAction,
33 > type ChatToolCallConfirmedAction,
34 > type ChatToolCallApprovedAction,
35 > type ChatToolCallDeniedAction,
36 > type ChatToolCallDeltaAction,
37 > type ChatToolCallReadyAction,
38 > type ChatToolCallResultConfirmedAction,
39 > type ChatToolCallStartAction,
40 > type SessionTitleChangedAction,
41 > type ChatTurnCancelledAction,
42 > type ChatTurnCompleteAction,
43 > type ChatTurnStartedAction,
44 > type ChatUsageAction,
45 > type SessionServerToolsChangedAction,
46 > type SessionActiveClientSetAction,
47 > type SessionActiveClientRemovedAction,
48 > type SessionCustomizationsChangedAction,
49 > type SessionCustomizationToggledAction,
50 > type ChatPendingMessageSetAction,
51 > type ChatPendingMessageRemovedAction,
52 > type ChatQueuedMessagesReorderedAction,
53 > type ChatInputRequestedAction,
54 > type ChatInputCompletedAction,
55 > type ChatInputAnswerChangedAction,
56 > type SessionIsReadChangedAction,
57 > type SessionIsArchivedChangedAction,
58 > type ChatToolCallContentChangedAction,
59 > type ChatTruncatedAction,
60 > type ChangesetStatusChangedAction,
61 > type ChangesetFileSetAction,
62 > type ChangesetFileRemovedAction,
63 > type ChangesetContentChangedAction,
64 > type ChangesetOperationsChangedAction,
65 > type ChangesetClearedAction,
66 > type AnnotationsSetAction,
67 > type AnnotationsUpdatedAction,
68 > type AnnotationsRemovedAction,
69 > type AnnotationsEntrySetAction,
70 > type AnnotationsEntryRemovedAction,
71 > type ResourceWatchChangedAction,
72 > type StateAction,
73 > } from './protocol/actions.js';
74 >
75 > export {
76 > AuthRequiredReason,
77 > type SessionAddedParams,
78 > type SessionRemovedParams,
79 > type SessionSummaryChangedParams,
80 > type ProgressParams,
81 > type AuthRequiredParams,
82 > } from './protocol/notifications.js';
83 >
84 > /**
85 > * String discriminants for the protocol notification methods that previously
86 > * lived inside a `notification` wrapper. These values are the JSON-RPC method
87 > * names sent over the wire by a channels-era server; they are also the `type`
88 > * discriminant on {@link ProtocolNotification} variants.
89 > */
90 > export const NotificationType = {
91 > SessionAdded: 'root/sessionAdded',
92 > SessionRemoved: 'root/sessionRemoved',
93 > SessionSummaryChanged: 'root/sessionSummaryChanged',
94 > Progress: 'root/progress',
95 > AuthRequired: 'auth/required',
96 > } as const;
97 > export type NotificationType = typeof NotificationType[keyof typeof NotificationType];
98 >
99 > // ---- Local aliases for short names ------------------------------------------
100 > // Consumers use these shorter names; they're type-only aliases.
101 >
102 > import type {
103 > RootAgentsChangedAction,
104 > RootActiveSessionsChangedAction,
105 > ChatDeltaAction,
106 > ChatReasoningAction,
107 > ChatResponsePartAction,
108 > ChatToolCallApprovedAction,
109 > ChatToolCallCompleteAction,
110 > ChatToolCallConfirmedAction,
111 > ChatToolCallDeniedAction,
112 > ChatToolCallDeltaAction,
113 > ChatToolCallReadyAction,
114 > ChatToolCallResultConfirmedAction,
115 > ChatToolCallStartAction,
116 > SessionTitleChangedAction,
117 > ChatTurnCancelledAction,
118 > ChatTurnCompleteAction,
119 > ChatTurnStartedAction,
120 > ChatErrorAction,
121 > ChatUsageAction,
122 > ChatToolCallContentChangedAction,
123 > StateAction,
124 > ChatPendingMessageSetAction,
125 > ChatPendingMessageRemovedAction,
126 > ChatQueuedMessagesReorderedAction,
127 > SessionIsReadChangedAction,
128 > SessionIsArchivedChangedAction,
129 > RootConfigChangedAction,
130 > } from './protocol/actions.js';
131 >
132 > import type { SessionAddedParams, SessionRemovedParams, SessionSummaryChangedParams, ProgressParams, AuthRequiredParams } from './protocol/notifications.js';
133 > import type { RootAction as IRootAction_, SessionAction as ISessionAction_, ChatAction as IChatAction_, ClientSessionAction as IClientSessionAction_, ServerSessionAction as IServerSessionAction_, ClientChatAction as IClientChatAction_, ServerChatAction as IServerChatAction_, TerminalAction as ITerminalAction_, ClientTerminalAction as IClientTerminalAction_, ChangesetAction as IChangesetAction_, ClientChangesetAction as IClientChangesetAction_, AnnotationsAction as IAnnotationsAction_, ClientAnnotationsAction as IClientAnnotationsAction_ } from './protocol/action-origin.generated.js';
134 >
135 > /**
136 > * Discriminated union of all server→client protocol notifications other than
137 > * the action envelope. Each variant carries its protocol `method` so callers
138 > * can switch on `type` the same way they did against the old `NotificationType`
139 > * enum.
140 > */
141 > export type ProtocolNotification =
142 > | ({ type: 'root/sessionAdded' } & SessionAddedParams)
143 > | ({ type: 'root/sessionRemoved' } & SessionRemovedParams)
144 > | ({ type: 'root/sessionSummaryChanged' } & SessionSummaryChangedParams)
145 > | ({ type: 'root/progress' } & ProgressParams)
146 > | ({ type: 'auth/required' } & AuthRequiredParams);
147 >
148 > export type RootAction = IRootAction_;
149 > export type SessionAction = ISessionAction_;
150 > export type ChatAction = IChatAction_;
151 > export type ClientSessionAction = IClientSessionAction_;
152 > export type ServerSessionAction = IServerSessionAction_;
153 > export type ClientChatAction = IClientChatAction_;
154 > export type ServerChatAction = IServerChatAction_;
155 > export type TerminalAction = ITerminalAction_;
156 > export type ClientTerminalAction = IClientTerminalAction_;
157 > export type ChangesetAction = IChangesetAction_;
158 > export type ClientChangesetAction = IClientChangesetAction_;
159 > export type AnnotationsAction = IAnnotationsAction_;
160 > export type ClientAnnotationsAction = IClientAnnotationsAction_;
161 >
162 > // Root actions
163 > export type IAgentsChangedAction = RootAgentsChangedAction;
164 > export type IActiveSessionsChangedAction = RootActiveSessionsChangedAction;
165 > export type IRootConfigChangedAction = RootConfigChangedAction;
166 >
167 > // Chat/turn actions — short aliases (turns now live on the chat channel)
168 > export type ITurnStartedAction = ChatTurnStartedAction;
169 > export type IDeltaAction = ChatDeltaAction;
170 > export type IResponsePartAction = ChatResponsePartAction;
171 > export type IToolCallStartAction = ChatToolCallStartAction;
172 > export type IToolCallDeltaAction = ChatToolCallDeltaAction;
173 > export type IToolCallReadyAction = ChatToolCallReadyAction;
174 > export type IToolCallApprovedAction = ChatToolCallApprovedAction;
175 > export type IToolCallDeniedAction = ChatToolCallDeniedAction;
176 > export type IToolCallConfirmedAction = ChatToolCallConfirmedAction;
177 > export type IToolCallCompleteAction = ChatToolCallCompleteAction;
178 > export type IToolCallResultConfirmedAction = ChatToolCallResultConfirmedAction;
179 > export type ITurnCompleteAction = ChatTurnCompleteAction;
180 > export type ITurnCancelledAction = ChatTurnCancelledAction;
181 > export type ITitleChangedAction = SessionTitleChangedAction;
182 > export type IUsageAction = ChatUsageAction;
183 > export type IReasoningAction = ChatReasoningAction;
184 > export type IErrorAction = ChatErrorAction;
185 > export type IToolCallContentChangedAction = ChatToolCallContentChangedAction;
186 > export type ICustomizationsChangedAction = import('./protocol/actions.js').SessionCustomizationsChangedAction;
187 > export type ICustomizationToggledAction = import('./protocol/actions.js').SessionCustomizationToggledAction;
188 >
189 > export type IPendingMessageSetAction = ChatPendingMessageSetAction;
190 > export type IPendingMessageRemovedAction = ChatPendingMessageRemovedAction;
191 > export type IQueuedMessagesReorderedAction = ChatQueuedMessagesReorderedAction;
192 > export type IIsReadChangedAction = SessionIsReadChangedAction;
193 > export type IIsArchivedChangedAction = SessionIsArchivedChangedAction;
194 >
195 > // Notifications
196 > export type INotification = ProtocolNotification;
197 >
198 > // ---- Type guards ------------------------------------------------------------
199 >
200 > export function isRootAction(action: StateAction): action is RootAction {
201 return action.type.startsWith('root/');
202 }
204 > export function isSessionAction(action: StateAction): action is SessionAction {
205 return action.type.startsWith('session/');
206 }
208 > export function isChatAction(action: StateAction): action is ChatAction {
209 return action.type.startsWith('chat/');
210 }
212 > export function isTerminalAction(action: StateAction): action is TerminalAction {
213 return action.type.startsWith('terminal/');
214 }
216 > export function isChangesetAction(action: StateAction): action is ChangesetAction {
217 return action.type.startsWith('changeset/');
218 }
220 > export function isAnnotationsAction(action: StateAction): action is AnnotationsAction {
221 return action.type.startsWith('annotations/');
222 }
src/vs/base/common/observableInternal/base.ts 206 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- base.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { DisposableStore, onUnexpectedError } from './commonFacade/deps.js';
7 >
8 > /**
9 > * Represents an observable value.
10 > *
11 > * @template T The type of the values the observable can hold.
12 > */
13 > // This interface exists so that, for example for string observables,
14 > // typescript renders the type as `IObservable<string>` instead of `IObservable<string, unknown>`.
15 > export interface IObservable<T> extends IObservableWithChange<T, unknown> { }
16 >
17 > /**
18 > * Represents an observable value.
19 > *
20 > * @template T The type of the values the observable can hold.
21 > * @template TChange The type used to describe value changes
22 > * (usually `void` and only used in advanced scenarios).
23 > * While observers can miss temporary values of an observable,
24 > * they will receive all change values (as long as they are subscribed)!
25 > */
26 > export interface IObservableWithChange<T, TChange = unknown> {
27 > /**
28 > * Returns the current value.
29 > *
30 > * Calls {@link IObserver.handleChange} if the observable notices that the value changed.
31 > * Must not be called from {@link IObserver.handleChange}!
32 > */
33 > get(): T;
34 >
35 > /**
36 > * Forces the observable to check for changes and report them.
37 > *
38 > * Has the same effect as calling {@link IObservable.get}, but does not force the observable
39 > * to actually construct the value, e.g. if change deltas are used.
40 > * Calls {@link IObserver.handleChange} if the observable notices that the value changed.
41 > * Must not be called from {@link IObserver.handleChange}!
42 > */
43 > reportChanges(): void;
44 >
45 > /**
46 > * Adds the observer to the set of subscribed observers.
47 > * This method is idempotent.
48 > */
49 > addObserver(observer: IObserver): void;
50 >
51 > /**
52 > * Removes the observer from the set of subscribed observers.
53 > * This method is idempotent.
54 > */
55 > removeObserver(observer: IObserver): void;
56 >
57 > // #region These members have a standard implementation and are only part of the interface for convenience.
58 >
59 > /**
60 > * Reads the current value and subscribes the reader to this observable.
61 > *
62 > * Calls {@link IReader.readObservable} if a reader is given, otherwise {@link IObservable.get}
63 > * (see {@link ConvenientObservable.read} for the implementation).
64 > */
65 > read(reader: IReader | undefined): T;
66 >
67 > /**
68 > * Makes sure this value is computed eagerly.
69 > */
70 > recomputeInitiallyAndOnChange(store: DisposableStore, handleValue?: (value: T) => void): IObservable<T>;
71 >
72 > /**
73 > * Makes sure this value is cached.
74 > */
75 > keepObserved(store: DisposableStore): IObservable<T>;
76 >
77 > /**
78 > * Creates a derived observable that depends on this observable.
79 > * Use the reader to read other observables
80 > * (see {@link ConvenientObservable.map} for the implementation).
81 > */
82 > map<TNew>(fn: (value: T, reader: IReader) => TNew): IObservable<TNew>;
83 > map<TNew>(owner: object, fn: (value: T, reader: IReader) => TNew): IObservable<TNew>;
84 >
85 > flatten<TNew>(this: IObservable<IObservable<TNew>>): IObservable<TNew>;
86 >
87 > /**
88 > * ONLY FOR DEBUGGING!
89 > * Logs computations of this derived.
90 > */
91 > log(): IObservableWithChange<T, TChange>;
92 >
93 > /**
94 > * A human-readable name for debugging purposes.
95 > */
96 > readonly debugName: string;
97 >
98 > /**
99 > * This property captures the type of the change object. Do not use it at runtime!
100 > */
101 > readonly TChange: TChange;
102 >
103 > // #endregion
104 > }
105 >
106 > /**
107 > * Represents an observer that can be subscribed to an observable.
108 > *
109 > * If an observer is subscribed to an observable and that observable didn't signal
110 > * a change through one of the observer methods, the observer can assume that the
111 > * observable didn't change.
112 > * If an observable reported a possible change, {@link IObservable.reportChanges} forces
113 > * the observable to report an actual change if there was one.
114 > */
115 > export interface IObserver {
116 > /**
117 > * Signals that the given observable might have changed and a transaction potentially modifying that observable started.
118 > * Before the given observable can call this method again, is must call {@link IObserver.endUpdate}.
119 > *
120 > * Implementations must not get/read the value of other observables, as they might not have received this event yet!
121 > * The method {@link IObservable.reportChanges} can be used to force the observable to report the changes.
122 > */
123 > beginUpdate<T>(observable: IObservable<T>): void;
124 >
125 > /**
126 > * Signals that the transaction that potentially modified the given observable ended.
127 > * This is a good place to react to (potential) changes.
128 > */
129 > endUpdate<T>(observable: IObservable<T>): void;
130 >
131 > /**
132 > * Signals that the given observable might have changed.
133 > * The method {@link IObservable.reportChanges} can be used to force the observable to report the changes.
134 > *
135 > * Implementations must not get/read the value of other observables, as they might not have received this event yet!
136 > * The change should be processed lazily or in {@link IObserver.endUpdate}.
137 > */
138 > handlePossibleChange<T>(observable: IObservable<T>): void;
139 >
140 > /**
141 > * Signals that the given {@link observable} changed.
142 > *
143 > * Implementations must not get/read the value of other observables, as they might not have received this event yet!
144 > * The change should be processed lazily or in {@link IObserver.endUpdate}.
145 > *
146 > * @param change Indicates how or why the value changed.
147 > */
148 > handleChange<T, TChange>(observable: IObservableWithChange<T, TChange>, change: TChange): void;
149 > }
150 >
151 > /**
152 > * A reader allows code to track what it depends on, so the caller knows when the computed value or produced side-effect is no longer valid.
153 > * Use `derived(reader => ...)` to turn code that needs a reader into an observable value.
154 > */
155 > export interface IReader {
156 > /**
157 > * Reads the value of an observable and subscribes to it.
158 > */
159 > readObservable<T>(observable: IObservableWithChange<T, any>): T;
160 > }
161 >
162 > export interface ISettable<T, TChange = void> {
163 > /**
164 > * Sets the value of the observable.
165 > * Use a transaction to batch multiple changes (with a transaction, observers only react at the end of the transaction).
166 > *
167 > * @param transaction When given, value changes are handled on demand or when the transaction ends.
168 > * @param change Describes how or why the value changed.
169 > */
170 > set(value: T, transaction: ITransaction | undefined, change: TChange): void;
171 > }
172 >
173 > export interface ITransaction {
174 > /**
175 > * Calls {@link Observer.beginUpdate} immediately
176 > * and {@link Observer.endUpdate} when the transaction ends.
177 > */
178 > updateObserver(observer: IObserver, observable: IObservableWithChange<any, any>): void;
179 > }
180 >
181 > /**
182 > * This function is used to indicate that the caller recovered from an error that indicates a bug.
183 > */
184 > export function handleBugIndicatingErrorRecovery(message: string) {
185 const err = new Error('BugIndicatingErrorRecovery: ' + message);
186 onUnexpectedError(err);
187 console.error('recovered from an error that indicates a bug', err);
188 }
189 > base.ts
190 > /**
191 > * A settable observable.
192 > */
193 > export interface ISettableObservable<T, TChange = void> extends IObservableWithChange<T, TChange>, ISettable<T, TChange> {
194 > }
195 >
196 > export interface IReaderWithStore extends IReader {
197 > /**
198 > * Items in this store get disposed just before the observable recomputes/reruns or when it becomes unobserved.
199 > */
200 > get store(): DisposableStore;
201 >
202 > /**
203 > * Items in this store get disposed just after the observable recomputes/reruns or when it becomes unobserved.
204 > * This is important if the current run needs the undisposed result from the last run.
205 > *
206 > * Warning: Items in this store might still get disposed before dependents (that read the now disposed value in the past) are recomputed with the new (undisposed) value!
207 > * A clean solution for this is ref counting.
208 > */
209 > get delayedStore(): DisposableStore;
210 > }
src/vs/base/common/observableInternal/logging/debugger/devToolsLogger.ts 204 covered LOC · 24 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- devToolsLogger.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { AutorunObserver, AutorunState } from '../../reactions/autorunImpl.js';
7 > import { TransactionImpl } from '../../transaction.js';
8 > import { IChangeInformation, IObservableLogger } from '../logging.js';
9 > import { formatValue } from '../consoleObservableLogger.js';
10 > import { ObsDebuggerApi, IObsDeclaration, ObsInstanceId, ObsStateUpdate, ITransactionState, ObserverInstanceState } from './debuggerApi.js';
11 > import { registerDebugChannel } from './debuggerRpc.js';
12 > import { deepAssign, deepAssignDeleteNulls, Throttler } from './utils.js';
13 > import { isDefined } from '../../../types.js';
14 > import { FromEventObservable } from '../../observables/observableFromEvent.js';
15 > import { BugIndicatingError, onUnexpectedError } from '../../../errors.js';
16 > import { IObservable, IObserver } from '../../base.js';
17 > import { BaseObservable } from '../../observables/baseObservable.js';
18 > import { Derived, DerivedState } from '../../observables/derivedImpl.js';
19 > import { ObservableValue } from '../../observables/observableValue.js';
20 > import { DebugLocation } from '../../debugLocation.js';
21 >
22 > interface IInstanceInfo {
23 > declarationId: number;
24 > instanceId: number;
25 > }
26 >
27 > interface IObservableInfo extends IInstanceInfo {
28 > listenerCount: number;
29 > lastValue: string | undefined;
30 > updateCount: number;
31 > changedObservables: Set<IObservable<any>>;
32 > }
33 >
34 > interface IAutorunInfo extends IInstanceInfo {
35 > updateCount: number;
36 > changedObservables: Set<IObservable<any>>;
37 > }
38 >
39 > export class DevToolsLogger implements IObservableLogger {
40 > private static _instance: DevToolsLogger | undefined = undefined;
41 > public static getInstance(): DevToolsLogger {
42 if (DevToolsLogger._instance === undefined) {
43 DevToolsLogger._instance = new DevToolsLogger();
45 return DevToolsLogger._instance;
46 }
48 > private _declarationId = 0;
49 > private _instanceId = 0;
50 >
51 > private readonly _declarations = new Map</* declarationId + type */string, IObsDeclaration>();
52 > private readonly _instanceInfos = new WeakMap<object, IObservableInfo | IAutorunInfo>();
53 > private readonly _aliveInstances = new Map<ObsInstanceId, IObservable<any> | AutorunObserver>();
54 > private readonly _activeTransactions = new Set<TransactionImpl>();
55 >
56 > private readonly _channel = registerDebugChannel<ObsDebuggerApi>('observableDevTools', () => {
57 > return {
58 > notifications: {
59 > setDeclarationIdFilter: declarationIds => {
60 >
61 > },
62 > logObservableValue: (observableId) => {
63 > console.log('logObservableValue', observableId);
64 > },
65 > flushUpdates: () => {
66 > this._flushUpdates();
67 > },
68 > resetUpdates: () => {
69 > this._pendingChanges = null;
70 > this._channel.api.notifications.handleChange(this._fullState, true);
71 > },
72 > },
73 > requests: {
74 > getDeclarations: () => {
75 > const result: Record<string, IObsDeclaration> = {};
76 > for (const decl of this._declarations.values()) {
77 > result[decl.id] = decl;
78 > }
79 > return { decls: result };
80 > },
81 > getSummarizedInstances: () => {
82 > return null!;
83 > },
84 > getObservableValueInfo: instanceId => {
85 > const obs = this._aliveInstances.get(instanceId) as BaseObservable<any>;
86 > return {
87 > observers: [...obs.debugGetObservers()].map(d => this._formatObserver(d)).filter(isDefined),
88 > };
89 > },
90 > getDerivedInfo: instanceId => {
91 > const d = this._aliveInstances.get(instanceId) as Derived<any>;
92 > return {
93 > dependencies: [...d.debugGetState().dependencies].map(d => this._formatObservable(d)).filter(isDefined),
94 > observers: [...d.debugGetObservers()].map(d => this._formatObserver(d)).filter(isDefined),
95 > };
96 > },
97 > getAutorunInfo: instanceId => {
98 > const obs = this._aliveInstances.get(instanceId) as AutorunObserver;
99 > return {
100 > dependencies: [...obs.debugGetState().dependencies].map(d => this._formatObservable(d)).filter(isDefined),
101 > };
102 > },
103 > getTransactionState: () => {
104 > return this.getTransactionState();
105 > },
106 > setValue: (instanceId, jsonValue) => {
107 > const obs = this._aliveInstances.get(instanceId) as BaseObservable<any>;
108 >
109 > if (obs instanceof Derived) {
110 > obs.debugSetValue(jsonValue);
111 > } else if (obs instanceof ObservableValue) {
112 > obs.debugSetValue(jsonValue);
113 > } else if (obs instanceof FromEventObservable) {
114 > obs.debugSetValue(jsonValue);
115 > } else {
116 > throw new BugIndicatingError('Observable is not supported');
117 > }
118 >
119 > const observers = [...obs.debugGetObservers()];
120 > for (const d of observers) {
121 > d.beginUpdate(obs);
122 > }
123 > for (const d of observers) {
124 > d.handleChange(obs, undefined);
125 > }
126 > for (const d of observers) {
127 > d.endUpdate(obs);
128 > }
129 > },
130 > getValue: instanceId => {
131 > const obs = this._aliveInstances.get(instanceId) as BaseObservable<any>;
132 > if (obs instanceof Derived) {
133 > return formatValue(obs.debugGetState().value, 200);
134 > } else if (obs instanceof ObservableValue) {
135 > return formatValue(obs.debugGetState().value, 200);
136 > }
137 >
138 > return undefined;
139 > },
140 > logValue: (instanceId) => {
141 > const obs = this._aliveInstances.get(instanceId);
142 > if (obs && 'get' in obs) {
143 > console.log('Logged Value:', obs.get());
144 > } else {
145 > throw new BugIndicatingError('Observable is not supported');
146 > }
147 > },
148 > rerun: (instanceId) => {
149 > const obs = this._aliveInstances.get(instanceId);
150 > if (obs instanceof Derived) {
151 > obs.debugRecompute();
152 > } else if (obs instanceof AutorunObserver) {
153 > obs.debugRerun();
154 > } else {
155 > throw new BugIndicatingError('Observable is not supported');
156 > }
157 > },
158 > }
159 > };
160 > });
161 >
162 > private getTransactionState(): ITransactionState | undefined {
163 const affected: ObserverInstanceState[] = [];
164 const txs = [...this._activeTransactions];
188 return { names: txs.map(t => t.getDebugName() ?? 'tx'), affected };
189 }
191 > private _getObservableInfo(observable: IObservable<any>): IObservableInfo | undefined {
192 const info = this._instanceInfos.get(observable);
193 if (!info) {
197 return info as IObservableInfo;
198 }
200 > private _getAutorunInfo(autorun: AutorunObserver): IAutorunInfo | undefined {
201 const info = this._instanceInfos.get(autorun);
202 if (!info) {
206 return info as IAutorunInfo;
207 }
209 > private _getInfo(observer: IObserver, queue: (observer: IObserver) => void): ObserverInstanceState | undefined {
210 if (observer instanceof Derived) {
211 const observersToUpdate = [...observer.debugGetObservers()];
255 return undefined;
256 }
258 > private _formatObservable(obs: IObservable<any>): { name: string; instanceId: ObsInstanceId } | undefined {
259 const info = this._getObservableInfo(obs);
260 if (!info) { return undefined; }
261 return { name: obs.debugName, instanceId: info.instanceId };
262 }
264 > private _formatObserver(obs: IObserver): { name: string; instanceId: ObsInstanceId } | undefined {
265 if (obs instanceof Derived) {
266 return { name: obs.toString(), instanceId: this._getObservableInfo(obs)?.instanceId! };
273 return undefined;
274 }
276 > private constructor() {
277 DebugLocation.enable();
278 }
280 > private _pendingChanges: ObsStateUpdate | null = null;
281 > private readonly _changeThrottler = new Throttler();
282 >
283 > private readonly _fullState = {};
284 >
285 > private _handleChange(update: ObsStateUpdate): void {
286 deepAssignDeleteNulls(this._fullState, update);
287
294 this._changeThrottler.throttle(this._flushUpdates, 10);
295 }
297 > private readonly _flushUpdates = () => {
298 > if (this._pendingChanges !== null) {
299 > this._channel.api.notifications.handleChange(this._pendingChanges, false);
300 > this._pendingChanges = null;
301 > }
302 > };
303 >
304 > private _getDeclarationId(type: IObsDeclaration['type'], location: DebugLocation): number {
305 if (!location) {
306 return -1;
322 return decInfo.id;
323 }
325 > handleObservableCreated(observable: IObservable<any>, location: DebugLocation): void {
326 const declarationId = this._getDeclarationId('observable/value', location);
327
336 this._instanceInfos.set(observable, info);
337 }
339 > handleOnListenerCountChanged(observable: IObservable<any>, newCount: number): void {
340 const info = this._getObservableInfo(observable);
341 if (!info) { return; }
364 info.listenerCount = newCount;
365 }
367 > handleObservableUpdated(observable: IObservable<any>, changeInfo: IChangeInformation): void {
368 if (observable instanceof Derived) {
369 this._handleDerivedRecomputed(observable, changeInfo);
383 }
384 }
386 > handleAutorunCreated(autorun: AutorunObserver, location: DebugLocation): void {
387 const declarationId = this._getDeclarationId('autorun', location);
388 const info: IAutorunInfo = {
408 }
409 }
410 > handleAutorunDisposed(autorun: AutorunObserver): void { devToolsLogger.ts
411 const info = this._getAutorunInfo(autorun);
412 if (!info) { return; }
418 this._aliveInstances.delete(info.instanceId);
419 }
420 > handleAutorunDependencyChanged(autorun: AutorunObserver, observable: IObservable<any>, change: unknown): void { devToolsLogger.ts
421 const info = this._getAutorunInfo(autorun);
422 if (!info) { return; }
424 info.changedObservables.add(observable);
425 }
426 > handleAutorunStarted(autorun: AutorunObserver): void { devToolsLogger.ts
427
428 }
429 > handleAutorunFinished(autorun: AutorunObserver): void { devToolsLogger.ts
430 const info = this._getAutorunInfo(autorun);
431 if (!info) { return; }
437 });
438 }
440 > handleDerivedDependencyChanged(derived: Derived<any>, observable: IObservable<any>, change: unknown): void {
441 const info = this._getObservableInfo(derived);
442 if (info) {
444 }
445 }
446 > _handleDerivedRecomputed(observable: Derived<any>, changeInfo: IChangeInformation): void { devToolsLogger.ts
447 const info = this._getObservableInfo(observable);
448 if (!info) { return; }
459 }
460 }
461 > handleDerivedCleared(observable: Derived<any>): void { devToolsLogger.ts
462 const info = this._getObservableInfo(observable);
463 if (!info) { return; }
475 }
476 }
477 > handleBeginTransaction(transaction: TransactionImpl): void { devToolsLogger.ts
478 this._activeTransactions.add(transaction);
479 }
480 > handleEndTransaction(transaction: TransactionImpl): void { devToolsLogger.ts
481 this._activeTransactions.delete(transaction);
482 }
src/vs/platform/agentHost/common/state/protocol/version/registry.ts 204 covered LOC · 7 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- registry.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType, type StateAction } from '../actions.js';
10 > import type { ServerNotificationMap } from '../messages.js';
11 >
12 > // ─── Protocol Version Constants ──────────────────────────────────────────────
13 >
14 > /**
15 > * The current protocol version that new code speaks.
16 > *
17 > * Formatted as a [SemVer](https://semver.org) `MAJOR.MINOR.PATCH` string.
18 > */
19 > export const PROTOCOL_VERSION = '0.7.0';
20 >
21 > /**
22 > * Every protocol version a client built from this source tree is willing
23 > * to negotiate via the `initialize` handshake. Ordered **most preferred
24 > * first** so a server picking the first acceptable entry honors the
25 > * client's preference (see [versioning](../../docs/specification/versioning.md)).
26 > *
27 > * The first entry MUST equal {@link PROTOCOL_VERSION} — the version
28 > * "new code speaks" is by definition the most preferred one. Older
29 > * versions may be appended if a client retains the ability to fall back
30 > * to them; today only one version is advertised.
31 > *
32 > * Every generated client (Rust, Kotlin, Swift) re-exports this constant
33 > * verbatim. The TypeScript client consumes it directly. The per-client
34 > * `release-metadata.json` files are validated against this list by
35 > * `scripts/verify-release-metadata.ts`.
36 > */
37 > export const SUPPORTED_PROTOCOL_VERSIONS: readonly string[] = Object.freeze([
38 > '0.7.0',
39 > '0.6.0',
40 > '0.5.2',
41 > '0.5.1',
42 > ]);
43 >
44 > // ─── SemVer Comparison ───────────────────────────────────────────────────────
45 >
46 > /**
47 > * Parses a `MAJOR.MINOR.PATCH` SemVer string into its three numeric
48 > * components. Pre-release and build metadata are not supported and MUST NOT
49 > * be present in protocol version strings.
50 > *
51 > * Throws if `version` is not a well-formed `MAJOR.MINOR.PATCH` string.
52 > */
53 > function parseSemver(version: string): readonly [number, number, number] { registry.ts
54 > const match = /^(\d+)\.(\d+)\.(\d+)$/.exec(version);
55 > if (!match) {
56 throw new Error(`Invalid protocol version: ${version}`);
57 }
58 > return [Number(match[1]), Number(match[2]), Number(match[3])] as const; registry.ts
59 > }
61 > /**
62 > * Compares two `MAJOR.MINOR.PATCH` SemVer strings.
63 > *
64 > * Returns a negative number if `a < b`, zero if `a === b`, and a positive
65 > * number if `a > b`.
66 > */
67 > export function compareProtocolVersions(a: string, b: string): number {
68 > const [aMajor, aMinor, aPatch] = parseSemver(a); registry.ts
69 > const [bMajor, bMinor, bPatch] = parseSemver(b);
70 > return (aMajor - bMajor) || (aMinor - bMinor) || (aPatch - bPatch);
71 > }
73 > // ─── Exhaustive Action → Version Map ─────────────────────────────────────────
74 >
75 > /**
76 > * Maps every action type to the protocol version that introduced it.
77 > * Adding a new action to `StateAction` without adding it here is a compile error.
78 > *
79 > * Versions are SemVer `MAJOR.MINOR.PATCH` strings (see `PROTOCOL_VERSION`).
80 > */
81 > export const ACTION_INTRODUCED_IN: { readonly [K in StateAction['type']]: string } = {
82 > [ActionType.RootAgentsChanged]: '0.1.0',
83 > [ActionType.RootActiveSessionsChanged]: '0.1.0',
84 > [ActionType.SessionReady]: '0.1.0',
85 > [ActionType.SessionCreationFailed]: '0.1.0',
86 > [ActionType.SessionChatAdded]: '0.4.0',
87 > [ActionType.SessionChatRemoved]: '0.4.0',
88 > [ActionType.SessionChatUpdated]: '0.4.0',
89 > [ActionType.SessionDefaultChatChanged]: '0.4.0',
90 > [ActionType.SessionTitleChanged]: '0.1.0',
91 > [ActionType.SessionServerToolsChanged]: '0.1.0',
92 > [ActionType.SessionActiveClientSet]: '0.5.0',
93 > [ActionType.SessionActiveClientRemoved]: '0.5.0',
94 > [ActionType.SessionWorkingDirectorySet]: '0.7.0',
95 > [ActionType.SessionWorkingDirectoryRemoved]: '0.7.0',
96 > [ActionType.SessionInputNeededSet]: '0.5.1',
97 > [ActionType.SessionInputNeededRemoved]: '0.5.1',
98 > [ActionType.SessionCustomizationsChanged]: '0.1.0',
99 > [ActionType.SessionCustomizationToggled]: '0.1.0',
100 > [ActionType.SessionCustomizationUpdated]: '0.1.0',
101 > [ActionType.SessionCustomizationRemoved]: '0.2.0',
102 > [ActionType.SessionMcpServerStateChanged]: '0.3.0',
103 > [ActionType.SessionMcpServerStartRequested]: '0.5.2',
104 > [ActionType.SessionMcpServerStopRequested]: '0.5.2',
105 > [ActionType.SessionIsReadChanged]: '0.1.0',
106 > [ActionType.SessionIsArchivedChanged]: '0.1.0',
107 > [ActionType.SessionActivityChanged]: '0.1.0',
108 > [ActionType.SessionChangesetsChanged]: '0.2.0',
109 > [ActionType.SessionConfigChanged]: '0.1.0',
110 > [ActionType.SessionMetaChanged]: '0.1.0',
111 > [ActionType.ChatTurnStarted]: '0.4.0',
112 > [ActionType.ChatDelta]: '0.4.0',
113 > [ActionType.ChatResponsePart]: '0.4.0',
114 > [ActionType.ChatToolCallStart]: '0.4.0',
115 > [ActionType.ChatToolCallDelta]: '0.4.0',
116 > [ActionType.ChatToolCallReady]: '0.4.0',
117 > [ActionType.ChatToolCallConfirmed]: '0.4.0',
118 > [ActionType.ChatToolCallComplete]: '0.4.0',
119 > [ActionType.ChatToolCallResultConfirmed]: '0.4.0',
120 > [ActionType.ChatToolCallContentChanged]: '0.4.0',
121 > [ActionType.ChatToolCallAuthRequired]: '0.6.0',
122 > [ActionType.ChatToolCallAuthResolved]: '0.6.0',
123 > [ActionType.ChatTurnComplete]: '0.4.0',
124 > [ActionType.ChatTurnCancelled]: '0.4.0',
125 > [ActionType.ChatError]: '0.4.0',
126 > [ActionType.ChatActivityChanged]: '0.5.0',
127 > [ActionType.ChatWorkingDirectorySet]: '0.7.0',
128 > [ActionType.ChatWorkingDirectoryRemoved]: '0.7.0',
129 > [ActionType.ChatUsage]: '0.4.0',
130 > [ActionType.ChatReasoning]: '0.4.0',
131 > [ActionType.ChatPendingMessageSet]: '0.4.0',
132 > [ActionType.ChatPendingMessageRemoved]: '0.4.0',
133 > [ActionType.ChatQueuedMessagesReordered]: '0.4.0',
134 > [ActionType.ChatDraftChanged]: '0.5.0',
135 > [ActionType.ChatInputRequested]: '0.4.0',
136 > [ActionType.ChatInputAnswerChanged]: '0.4.0',
137 > [ActionType.ChatInputCompleted]: '0.4.0',
138 > [ActionType.ChatTruncated]: '0.4.0',
139 > [ActionType.ChatTurnsLoaded]: '0.5.1',
140 > [ActionType.ChangesetStatusChanged]: '0.2.0',
141 > [ActionType.ChangesetFileSet]: '0.2.0',
142 > [ActionType.ChangesetFileRemoved]: '0.2.0',
143 > [ActionType.ChangesetFilesReviewChanged]: '0.6.0',
144 > [ActionType.ChangesetContentChanged]: '0.4.0',
145 > [ActionType.ChangesetOperationsChanged]: '0.2.0',
146 > [ActionType.ChangesetOperationStatusChanged]: '0.3.0',
147 > [ActionType.ChangesetCleared]: '0.2.0',
148 > [ActionType.AnnotationsSet]: '0.4.0',
149 > [ActionType.AnnotationsUpdated]: '0.4.0',
150 > [ActionType.AnnotationsRemoved]: '0.4.0',
151 > [ActionType.AnnotationsEntrySet]: '0.4.0',
152 > [ActionType.AnnotationsEntryRemoved]: '0.4.0',
153 > [ActionType.RootTerminalsChanged]: '0.1.0',
154 > [ActionType.RootConfigChanged]: '0.1.0',
155 > [ActionType.TerminalData]: '0.1.0',
156 > [ActionType.TerminalInput]: '0.1.0',
157 > [ActionType.TerminalResized]: '0.1.0',
158 > [ActionType.TerminalClaimed]: '0.1.0',
159 > [ActionType.TerminalTitleChanged]: '0.1.0',
160 > [ActionType.TerminalCwdChanged]: '0.1.0',
161 > [ActionType.TerminalExited]: '0.1.0',
162 > [ActionType.TerminalCleared]: '0.1.0',
163 > [ActionType.TerminalCommandDetectionAvailable]: '0.1.0',
164 > [ActionType.TerminalCommandExecuted]: '0.1.0',
165 > [ActionType.TerminalCommandFinished]: '0.1.0',
166 > [ActionType.ResourceWatchChanged]: '0.2.0',
167 > };
168 >
169 > /**
170 > * Returns whether the given action type is known to the specified protocol version.
171 > */
172 > export function isActionKnownToVersion(action: StateAction, clientVersion: string): boolean {
173 return compareProtocolVersions(ACTION_INTRODUCED_IN[action.type], clientVersion) <= 0;
174 }
175 > registry.ts
176 > // ─── Exhaustive Notification Method → Version Map ──────────────────────────
177 >
178 > /**
179 > * Server → client notification method names that are part of the AHP
180 > * protocol surface. The set is a subset of {@link ServerNotificationMap}
181 > * keys that excludes `action` (the action envelope) since action versions
182 > * are tracked via {@link ACTION_INTRODUCED_IN}.
183 > */
184 > export type ProtocolNotificationMethod = Exclude<keyof ServerNotificationMap, 'action'>;
185 >
186 > /**
187 > * Maps every server → client protocol notification method to the protocol
188 > * version that introduced it. Adding a new notification method to
189 > * {@link ServerNotificationMap} without adding it here is a compile error.
190 > *
191 > * Versions are SemVer `MAJOR.MINOR.PATCH` strings (see `PROTOCOL_VERSION`).
192 > */
193 > export const NOTIFICATION_INTRODUCED_IN: { readonly [K in ProtocolNotificationMethod]: string } = {
194 > 'root/sessionAdded': '0.1.0',
195 > 'root/sessionRemoved': '0.1.0',
196 > 'root/sessionSummaryChanged': '0.1.0',
197 > 'root/progress': '0.5.0',
198 > 'auth/required': '0.1.0',
199 > 'otlp/exportLogs': '0.2.0',
200 > 'otlp/exportTraces': '0.2.0',
201 > 'otlp/exportMetrics': '0.2.0',
202 > };
203 >
204 > /**
205 > * Returns whether the given notification method is known to the specified
206 > * protocol version.
207 > */
208 > export function isNotificationKnownToVersion(method: ProtocolNotificationMethod, clientVersion: string): boolean {
209 return compareProtocolVersions(NOTIFICATION_INTRODUCED_IN[method], clientVersion) <= 0;
210 }
src/vs/platform/configuration/common/configuration.ts 203 covered LOC · 12 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- configuration.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { assertNever } from '../../../base/common/assert.js';
7 > import { IStringDictionary } from '../../../base/common/collections.js';
8 > import { Event } from '../../../base/common/event.js';
9 > import * as types from '../../../base/common/types.js';
10 > import { URI, UriComponents } from '../../../base/common/uri.js';
11 > import { createDecorator } from '../../instantiation/common/instantiation.js';
12 > import { IWorkspaceFolder } from '../../workspace/common/workspace.js';
13 >
14 > export const IConfigurationService = createDecorator<IConfigurationService>('configurationService');
15 >
16 > export function isConfigurationOverrides(obj: unknown): obj is IConfigurationOverrides {
17 const thing = obj as IConfigurationOverrides;
18 return thing
21 && (!thing.resource || thing.resource instanceof URI);
22 }
24 > export interface IConfigurationOverrides {
25 > overrideIdentifier?: string | null;
26 > resource?: URI | null;
27 > }
28 >
29 > export function isConfigurationUpdateOverrides(obj: unknown): obj is IConfigurationUpdateOverrides {
30 const thing = obj as IConfigurationUpdateOverrides | IConfigurationOverrides;
31 return thing
35 && (!thing.resource || thing.resource instanceof URI);
36 }
38 > export type IConfigurationUpdateOverrides = Omit<IConfigurationOverrides, 'overrideIdentifier'> & { overrideIdentifiers?: string[] | null };
39 >
40 > export const enum ConfigurationTarget {
41 > APPLICATION = 1,
42 > USER,
43 > USER_LOCAL,
44 > USER_REMOTE,
45 > WORKSPACE,
46 > WORKSPACE_FOLDER,
47 > DEFAULT,
48 > MEMORY
49 > }
50 > export function ConfigurationTargetToString(configurationTarget: ConfigurationTarget) {
51 switch (configurationTarget) {
52 case ConfigurationTarget.APPLICATION: return 'APPLICATION';
60 }
61 }
63 > export interface IConfigurationChange {
64 > keys: string[];
65 > overrides: [string, string[]][];
66 > }
67 >
68 > export interface IConfigurationChangeEvent {
69 >
70 > readonly source: ConfigurationTarget;
71 > readonly affectedKeys: ReadonlySet<string>;
72 > readonly change: IConfigurationChange;
73 >
74 > affectsConfiguration(configuration: string, overrides?: IConfigurationOverrides): boolean;
75 > }
76 >
77 > export interface IInspectValue<T> {
78 > readonly value?: T;
79 > readonly override?: T;
80 > readonly overrides?: { readonly identifiers: string[]; readonly value: T }[];
81 > }
82 >
83 > export interface IConfigurationValue<T> {
84 >
85 > readonly defaultValue?: T;
86 > readonly applicationValue?: T;
87 > readonly userValue?: T;
88 > readonly userLocalValue?: T;
89 > readonly userRemoteValue?: T;
90 > readonly workspaceValue?: T;
91 > readonly workspaceFolderValue?: T;
92 > readonly memoryValue?: T;
93 > readonly policyValue?: T;
94 > readonly value?: T;
95 >
96 > readonly default?: IInspectValue<T>;
97 > readonly application?: IInspectValue<T>;
98 > readonly user?: IInspectValue<T>;
99 > readonly userLocal?: IInspectValue<T>;
100 > readonly userRemote?: IInspectValue<T>;
101 > readonly workspace?: IInspectValue<T>;
102 > readonly workspaceFolder?: IInspectValue<T>;
103 > readonly memory?: IInspectValue<T>;
104 > readonly policy?: { value?: T };
105 >
106 > readonly overrideIdentifiers?: string[];
107 > }
108 >
109 > export function getConfigValueInTarget<T>(configValue: IConfigurationValue<T>, scope: ConfigurationTarget): T | undefined {
110 switch (scope) {
111 case ConfigurationTarget.APPLICATION:
129 }
130 }
132 > export function isConfigured<T>(configValue: IConfigurationValue<T>): configValue is IConfigurationValue<T> & { value: T } {
133 return configValue.applicationValue !== undefined ||
134 configValue.userValue !== undefined ||
138 configValue.workspaceFolderValue !== undefined;
139 }
141 > export interface IConfigurationUpdateOptions {
142 > /**
143 > * If `true`, do not notifies the error to user by showing the message box. Default is `false`.
144 > */
145 > donotNotifyError?: boolean;
146 > /**
147 > * How to handle dirty file when updating the configuration.
148 > */
149 > handleDirtyFile?: 'save' | 'revert';
150 > }
151 >
152 > export interface IConfigurationService {
153 > readonly _serviceBrand: undefined;
154 >
155 > readonly onDidChangeConfiguration: Event<IConfigurationChangeEvent>;
156 >
157 > getConfigurationData(): IConfigurationData | null;
158 >
159 > /**
160 > * Fetches the value of the section for the given overrides.
161 > * Value can be of native type or an object keyed off the section name.
162 > *
163 > * @param section - Section of the configuration. Can be `null` or `undefined`.
164 > * @param overrides - Overrides that has to be applied while fetching
165 > *
166 > */
167 > getValue<T>(): T;
168 > getValue<T>(section: string): T;
169 > getValue<T>(overrides: IConfigurationOverrides): T;
170 > getValue<T>(section: string, overrides: IConfigurationOverrides): T;
171 >
172 > /**
173 > * Update a configuration value.
174 > *
175 > * Use `target` to update the configuration in a specific `ConfigurationTarget`.
176 > *
177 > * Use `overrides` to update the configuration for a resource or for override identifiers or both.
178 > *
179 > * Passing a resource through overrides will update the configuration in the workspace folder containing that resource.
180 > *
181 > * *Note 1:* Updating configuration to a default value will remove the configuration from the requested target. If not target is passed, it will be removed from all writeable targets.
182 > *
183 > * *Note 2:* Use `undefined` value to remove the configuration from the given target. If not target is passed, it will be removed from all writeable targets.
184 > *
185 > * Use `donotNotifyError` and set it to `true` to surpresss errors.
186 > *
187 > * @param key setting to be updated
188 > * @param value The new value
189 > */
190 > updateValue(key: string, value: unknown): Promise<void>;
191 > updateValue(key: string, value: unknown, target: ConfigurationTarget): Promise<void>;
192 > updateValue(key: string, value: unknown, overrides: IConfigurationOverrides | IConfigurationUpdateOverrides): Promise<void>;
193 > updateValue(key: string, value: unknown, overrides: IConfigurationOverrides | IConfigurationUpdateOverrides, target: ConfigurationTarget, options?: IConfigurationUpdateOptions): Promise<void>;
194 >
195 > inspect<T>(key: string, overrides?: IConfigurationOverrides): IConfigurationValue<Readonly<T>>;
196 >
197 > reloadConfiguration(target?: ConfigurationTarget | IWorkspaceFolder): Promise<void>;
198 >
199 > keys(): {
200 > default: string[];
201 > policy: string[];
202 > user: string[];
203 > workspace: string[];
204 > workspaceFolder: string[];
205 > memory?: string[];
206 > };
207 > }
208 >
209 > export interface IConfigurationModel {
210 > contents: IStringDictionary<unknown>;
211 > keys: string[];
212 > overrides: IOverrides[];
213 > raw?: ReadonlyArray<IStringDictionary<unknown>> | IStringDictionary<unknown>;
214 > }
215 >
216 > export interface IOverrides {
217 > keys: string[];
218 > contents: IStringDictionary<unknown>;
219 > identifiers: string[];
220 > }
221 >
222 > export interface IConfigurationData {
223 > defaults: IConfigurationModel;
224 > policy: IConfigurationModel;
225 > application: IConfigurationModel;
226 > userLocal: IConfigurationModel;
227 > userRemote: IConfigurationModel;
228 > workspace: IConfigurationModel;
229 > folders: [UriComponents, IConfigurationModel][];
230 > }
231 >
232 > export interface IConfigurationCompareResult {
233 > added: string[];
234 > removed: string[];
235 > updated: string[];
236 > overrides: [string, string[]][];
237 > }
238 >
239 > export function toValuesTree(properties: IStringDictionary<unknown>, conflictReporter: (message: string) => void): IStringDictionary<unknown> {
240 const root = Object.create(null);
241
246 return root;
247 }
249 > export function addToValueTree(settingsTreeRoot: IStringDictionary<unknown>, key: string, value: unknown, conflictReporter: (message: string) => void): void {
250 const segments = key.split('.');
251 const last = segments.pop()!;
282 }
283 }
285 > export function removeFromValueTree(valueTree: IStringDictionary<unknown>, key: string): void {
286 const segments = key.split('.');
287 doRemoveFromValueTree(valueTree, segments);
288 }
290 function doRemoveFromValueTree(valueTree: IStringDictionary<unknown> | unknown, segments: string[]): void {
291 if (!valueTree) {
311 }
312 }
314 > /**
315 > * A helper function to get the configuration value with a specific settings path (e.g. config.some.setting)
316 > */
317 > export function getConfigurationValue<T>(config: IStringDictionary<unknown>, settingPath: string): T | undefined;
318 > export function getConfigurationValue<T>(config: IStringDictionary<unknown>, settingPath: string, defaultValue: T): T;
319 > export function getConfigurationValue<T>(config: IStringDictionary<unknown>, settingPath: string, defaultValue?: T): T | undefined {
320 function accessSetting(config: IStringDictionary<unknown>, path: string[]): unknown {
321 let current: unknown = config;
334 return typeof result === 'undefined' ? defaultValue : result as T;
335 }
337 > export function merge(base: IStringDictionary<unknown>, add: IStringDictionary<unknown>, overwrite: boolean): void {
338 Object.keys(add).forEach(key => {
339 if (key !== '__proto__') {
350 });
351 }
353 > export function getLanguageTagSettingPlainKey(settingKey: string) {
354 return settingKey
355 .replace(/^\[/, '')
src/vs/platform/contextkey/common/scanner.ts 203 covered LOC · 58 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- scanner.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CharCode } from '../../../base/common/charCode.js';
7 > import { illegalState } from '../../../base/common/errors.js';
8 > import { localize } from '../../../nls.js';
9 >
10 > export const enum TokenType {
11 > LParen,
12 > RParen,
13 > Neg,
14 > Eq,
15 > NotEq,
16 > Lt,
17 > LtEq,
18 > Gt,
19 > GtEq,
20 > RegexOp,
21 > RegexStr,
22 > True,
23 > False,
24 > In,
25 > Not,
26 > And,
27 > Or,
28 > Str,
29 > QuotedStr,
30 > Error,
31 > EOF,
32 > }
33 >
34 > export type Token =
35 > | { type: TokenType.LParen; offset: number }
36 > | { type: TokenType.RParen; offset: number }
37 > | { type: TokenType.Neg; offset: number }
38 > | { type: TokenType.Eq; offset: number; isTripleEq: boolean }
39 > | { type: TokenType.NotEq; offset: number; isTripleEq: boolean }
40 > | { type: TokenType.Lt; offset: number }
41 > | { type: TokenType.LtEq; offset: number }
42 > | { type: TokenType.Gt; offset: number }
43 > | { type: TokenType.GtEq; offset: number }
44 > | { type: TokenType.RegexOp; offset: number }
45 > | { type: TokenType.RegexStr; offset: number; lexeme: string }
46 > | { type: TokenType.True; offset: number }
47 > | { type: TokenType.False; offset: number }
48 > | { type: TokenType.In; offset: number }
49 > | { type: TokenType.Not; offset: number }
50 > | { type: TokenType.And; offset: number }
51 > | { type: TokenType.Or; offset: number }
52 > | { type: TokenType.Str; offset: number; lexeme: string }
53 > | { type: TokenType.QuotedStr; offset: number; lexeme: string }
54 > | { type: TokenType.Error; offset: number; lexeme: string }
55 > | { type: TokenType.EOF; offset: number };
56 >
57 > type KeywordTokenType = TokenType.Not | TokenType.In | TokenType.False | TokenType.True;
58 > type TokenTypeWithoutLexeme =
59 > TokenType.LParen |
60 > TokenType.RParen |
61 > TokenType.Neg |
62 > TokenType.Lt |
63 > TokenType.LtEq |
64 > TokenType.Gt |
65 > TokenType.GtEq |
66 > TokenType.RegexOp |
67 > TokenType.True |
68 > TokenType.False |
69 > TokenType.In |
70 > TokenType.Not |
71 > TokenType.And |
72 > TokenType.Or |
73 > TokenType.EOF;
74 >
75 > /**
76 > * Example:
77 > * `foo == bar'` - note how single quote doesn't have a corresponding closing quote,
78 > * so it's reported as unexpected
79 > */
80 > export type LexingError = {
81 > offset: number; /** note that this doesn't take into account escape characters from the original encoding of the string, e.g., within an extension manifest file's JSON encoding */
82 > lexeme: string;
83 > additionalInfo?: string;
84 > };
85 >
86 function hintDidYouMean(...meant: string[]) {
87 switch (meant.length) {
96 }
97 }
98 > scanner.ts
99 > const hintDidYouForgetToOpenOrCloseQuote = localize('contextkey.scanner.hint.didYouForgetToOpenOrCloseQuote', "Did you forget to open or close the quote?");
100 > const hintDidYouForgetToEscapeSlash = localize('contextkey.scanner.hint.didYouForgetToEscapeSlash', "Did you forget to escape the '/' (slash) character? Put two backslashes before it to escape, e.g., '\\\\/\'.");
101 >
102 > /**
103 > * A simple scanner for context keys.
104 > *
105 > * Example:
106 > *
107 > * ```ts
108 > * const scanner = new Scanner().reset('resourceFileName =~ /docker/ && !config.docker.enabled');
109 > * const tokens = [...scanner];
110 > * if (scanner.errorTokens.length > 0) {
111 > * scanner.errorTokens.forEach(err => console.error(`Unexpected token at ${err.offset}: ${err.lexeme}\nHint: ${err.additional}`));
112 > * } else {
113 > * // process tokens
114 > * }
115 > * ```
116 > */
117 > export class Scanner {
118 >
119 > static getLexeme(token: Token): string {
120 > switch (token.type) {
121 > case TokenType.LParen:
122 > return '('; scanner.ts
123 > case TokenType.RParen: scanner.ts
124 > return ')'; scanner.ts
125 > case TokenType.Neg: scanner.ts
126 > return '!'; scanner.ts
127 > case TokenType.Eq: scanner.ts
128 > return token.isTripleEq ? '===' : '=='; scanner.ts
129 > case TokenType.NotEq: scanner.ts
130 > return token.isTripleEq ? '!==' : '!='; scanner.ts
131 > case TokenType.Lt: scanner.ts
132 > return '<'; scanner.ts
133 > case TokenType.LtEq: scanner.ts
134 > return '<='; scanner.ts
135 > case TokenType.Gt: scanner.ts
136 > return '>'; scanner.ts
137 > case TokenType.GtEq: scanner.ts
138 > return '>='; scanner.ts
139 > case TokenType.RegexOp: scanner.ts
140 > return '=~'; scanner.ts
141 > case TokenType.RegexStr: scanner.ts
142 > return token.lexeme; scanner.ts
143 > case TokenType.True: scanner.ts
144 > return 'true'; scanner.ts
145 > case TokenType.False: scanner.ts
146 > return 'false'; scanner.ts
147 > case TokenType.In: scanner.ts
148 > return 'in'; scanner.ts
149 > case TokenType.Not: scanner.ts
150 > return 'not'; scanner.ts
151 > case TokenType.And: scanner.ts
152 > return '&&'; scanner.ts
153 > case TokenType.Or: scanner.ts
154 > return '||'; scanner.ts
155 > case TokenType.Str: scanner.ts
156 > return token.lexeme; scanner.ts
157 > case TokenType.QuotedStr: scanner.ts
158 > return token.lexeme; scanner.ts
159 > case TokenType.Error: scanner.ts
160 > return token.lexeme; scanner.ts
161 > case TokenType.EOF: scanner.ts
162 > return 'EOF'; scanner.ts
163 > default: scanner.ts
164 > throw illegalState(`unhandled token type: ${JSON.stringify(token)}; have you forgotten to add a case?`); scanner.ts
165 > } scanner.ts
166 > }
167 >
168 > private static _regexFlags = new Set(['i', 'g', 's', 'm', 'y', 'u'].map(ch => ch.charCodeAt(0)));
169 >
170 > private static _keywords = new Map<string, KeywordTokenType>([
171 > ['not', TokenType.Not],
172 > ['in', TokenType.In],
173 > ['false', TokenType.False],
174 > ['true', TokenType.True],
175 > ]);
176 >
177 > private _input: string = '';
178 > private _start: number = 0;
179 > private _current: number = 0;
180 > private _tokens: Token[] = [];
181 > private _errors: LexingError[] = [];
182 >
183 > get errors(): Readonly<LexingError[]> {
184 return this._errors;
185 }
186 > scanner.ts
187 > reset(value: string) {
188 this._input = value;
189
195 return this;
196 }
197 > scanner.ts
198 > scan() {
199 while (!this._isAtEnd()) {
200
267 return Array.from(this._tokens);
268 }
269 > scanner.ts
270 > private _match(expected: number): boolean {
271 if (this._isAtEnd()) {
272 return false;
278 return true;
279 }
280 > scanner.ts
281 > private _advance(): number {
282 return this._input.charCodeAt(this._current++);
283 }
284 > scanner.ts
285 > private _peek(): number {
286 return this._isAtEnd() ? CharCode.Null : this._input.charCodeAt(this._current);
287 }
288 > scanner.ts
289 > private _addToken(type: TokenTypeWithoutLexeme) {
290 this._tokens.push({ type, offset: this._start });
291 }
292 > scanner.ts
293 > private _error(additional?: string) {
294 const offset = this._start;
295 const lexeme = this._input.substring(this._start, this._current);
298 this._tokens.push(errToken);
299 }
300 > scanner.ts
301 > // u - unicode, y - sticky // TODO@ulugbekna: we accept double quotes as part of the string rather than as a delimiter (to preserve old parser's behavior)
302 > private stringRe = /[a-zA-Z0-9_<>\-\./\\:\*\?\+\[\]\^,#@;"%\$\p{L}-]+/uy;
303 > private _string() {
304 this.stringRe.lastIndex = this._start;
305 const match = this.stringRe.exec(this._input);
315 }
316 }
317 > scanner.ts
318 > // captures the lexeme without the leading and trailing '
319 > private _quotedString() {
320 while (this._peek() !== CharCode.SingleQuote && !this._isAtEnd()) { // TODO@ulugbekna: add support for escaping ' ?
321 this._advance();
332 this._tokens.push({ type: TokenType.QuotedStr, lexeme: this._input.substring(this._start + 1, this._current - 1), offset: this._start + 1 });
333 }
334 > scanner.ts
335 > /*
336 > * Lexing a regex expression: /.../[igsmyu]*
337 > * Based on https://github.com/microsoft/TypeScript/blob/9247ef115e617805983740ba795d7a8164babf89/src/compiler/scanner.ts#L2129-L2181
338 > *
339 > * Note that we want slashes within a regex to be escaped, e.g., /file:\\/\\/\\// should match `file:///`
340 > */
341 > private _regex() {
342 let p = this._current;
343
378 this._tokens.push({ type: TokenType.RegexStr, lexeme, offset: this._start });
379 }
380 > scanner.ts
381 > private _isAtEnd() {
382 return this._current >= this._input.length;
383 }
384 > } scanner.ts
src/vs/nls.ts 201 covered LOC · 13 ranges

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1 > /*--------------------------------------------------------------------------------------------- nls.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export function getNLSMessages(): string[] {
7 return globalThis._VSCODE_NLS_MESSAGES;
8 }
9 > nls.ts
10 > export function getNLSLanguage(): string | undefined {
11 > return globalThis._VSCODE_NLS_LANGUAGE;
12 > }
13 >
14 > declare const document: { location?: { hash?: string } } | undefined;
15 > const isPseudo = getNLSLanguage() === 'pseudo' || (typeof document !== 'undefined' && document.location && typeof document.location.hash === 'string' && document.location.hash.indexOf('pseudo=true') >= 0);
16 >
17 > export interface ILocalizeInfo {
18 > key: string;
19 > comment: string[];
20 > }
21 >
22 > export interface ILocalizedString {
23 > original: string;
24 > value: string;
25 > }
26 >
27 > function _format(message: string, args: (string | number | boolean | undefined | null)[]): string { nls.ts
28 > let result: string;
29 >
30 > if (args.length === 0) {
31 > result = message; nls.ts
32 > } else { nls.ts
33 result = message.replace(/\{(\d+)\}/g, (match, rest) => {
34 const index = rest[0];
43 });
44 }
45 > nls.ts
46 > if (isPseudo) {
47 // FF3B and FF3D is the Unicode zenkaku representation for [ and ]
48 result = '\uFF3B' + result.replace(/[aouei]/g, '$&$&') + '\uFF3D';
49 }
50 > nls.ts
51 > return result;
52 > }
53 > nls.ts
54 > /**
55 > * Marks a string to be localized. Returns the localized string.
56 > *
57 > * @param info The {@linkcode ILocalizeInfo} which describes the id and comments associated with the localized string.
58 > * @param message The string to localize
59 > * @param args The arguments to the string
60 > *
61 > * @note `message` can contain `{n}` notation where it is replaced by the nth value in `...args`
62 > * @example `localize({ key: 'sayHello', comment: ['Welcomes user'] }, 'hello {0}', name)`
63 > *
64 > * @returns string The localized string.
65 > */
66 > export function localize(info: ILocalizeInfo, message: string, ...args: (string | number | boolean | undefined | null)[]): string;
67 >
68 > /**
69 > * Marks a string to be localized. Returns the localized string.
70 > *
71 > * @param key The key to use for localizing the string
72 > * @param message The string to localize
73 > * @param args The arguments to the string
74 > *
75 > * @note `message` can contain `{n}` notation where it is replaced by the nth value in `...args`
76 > * @example For example, `localize('sayHello', 'hello {0}', name)`
77 > *
78 > * @returns string The localized string.
79 > */
80 > export function localize(key: string, message: string, ...args: (string | number | boolean | undefined | null)[]): string;
81 >
82 > /**
83 > * @skipMangle
84 > */
85 > export function localize(data: ILocalizeInfo | string /* | number when built */, message: string /* | null when built */, ...args: (string | number | boolean | undefined | null)[]): string {
86 > if (typeof data === 'number') { nls.ts
87 return _format(lookupMessage(data, message), args);
88 }
89 > return _format(message, args); nls.ts
90 > }
91 > nls.ts
92 > /**
93 > * Only used when built: Looks up the message in the global NLS table.
94 > * This table is being made available as a global through bootstrapping
95 > * depending on the target context.
96 > */
97 function lookupMessage(index: number, fallback: string | null): string {
98 const message = getNLSMessages()?.[index];
105 return message;
106 }
107 > nls.ts
108 > /**
109 > * Marks a string to be localized. Returns an {@linkcode ILocalizedString}
110 > * which contains the localized string and the original string.
111 > *
112 > * @param info The {@linkcode ILocalizeInfo} which describes the id and comments associated with the localized string.
113 > * @param message The string to localize
114 > * @param args The arguments to the string
115 > *
116 > * @note `message` can contain `{n}` notation where it is replaced by the nth value in `...args`
117 > * @example `localize2({ key: 'sayHello', comment: ['Welcomes user'] }, 'hello {0}', name)`
118 > *
119 > * @returns ILocalizedString which contains the localized string and the original string.
120 > */
121 > export function localize2(info: ILocalizeInfo, message: string, ...args: (string | number | boolean | undefined | null)[]): ILocalizedString;
122 >
123 > /**
124 > * Marks a string to be localized. Returns an {@linkcode ILocalizedString}
125 > * which contains the localized string and the original string.
126 > *
127 > * @param key The key to use for localizing the string
128 > * @param message The string to localize
129 > * @param args The arguments to the string
130 > *
131 > * @note `message` can contain `{n}` notation where it is replaced by the nth value in `...args`
132 > * @example `localize('sayHello', 'hello {0}', name)`
133 > *
134 > * @returns ILocalizedString which contains the localized string and the original string.
135 > */
136 > export function localize2(key: string, message: string, ...args: (string | number | boolean | undefined | null)[]): ILocalizedString;
137 >
138 > /**
139 > * @skipMangle
140 > */
141 > export function localize2(data: ILocalizeInfo | string /* | number when built */, originalMessage: string, ...args: (string | number | boolean | undefined | null)[]): ILocalizedString {
142 let message: string;
143 if (typeof data === 'number') {
154 };
155 }
156 > nls.ts
157 > export interface INLSLanguagePackConfiguration {
158 >
159 > /**
160 > * The path to the translations config file that contains pointers to
161 > * all message bundles for `main` and extensions.
162 > */
163 > readonly translationsConfigFile: string;
164 >
165 > /**
166 > * The path to the file containing the translations for this language
167 > * pack as flat string array.
168 > */
169 > readonly messagesFile: string;
170 >
171 > /**
172 > * The path to the file that can be used to signal a corrupt language
173 > * pack, for example when reading the `messagesFile` fails. This will
174 > * instruct the application to re-create the cache on next startup.
175 > */
176 > readonly corruptMarkerFile: string;
177 > }
178 >
179 > export interface INLSConfiguration {
180 >
181 > /**
182 > * Locale as defined in `argv.json` or `app.getLocale()`.
183 > */
184 > readonly userLocale: string;
185 >
186 > /**
187 > * Locale as defined by the OS (e.g. `app.getPreferredSystemLanguages()`).
188 > */
189 > readonly osLocale: string;
190 >
191 > /**
192 > * The actual language of the UI that ends up being used considering `userLocale`
193 > * and `osLocale`.
194 > */
195 > readonly resolvedLanguage: string;
196 >
197 > /**
198 > * Defined if a language pack is used that is not the
199 > * default english language pack. This requires a language
200 > * pack to be installed as extension.
201 > */
202 > readonly languagePack?: INLSLanguagePackConfiguration;
203 >
204 > /**
205 > * The path to the file containing the default english messages
206 > * as flat string array. The file is only present in built
207 > * versions of the application.
208 > */
209 > readonly defaultMessagesFile: string;
210 >
211 > /**
212 > * Below properties are deprecated and only there to continue support
213 > * for `vscode-nls` module that depends on them.
214 > * Refs https://github.com/microsoft/vscode-nls/blob/main/src/node/main.ts#L36-L46
215 > */
216 > /** @deprecated */
217 > readonly locale: string;
218 > /** @deprecated */
219 > readonly availableLanguages: Record<string, string>;
220 > /** @deprecated */
221 > readonly _languagePackSupport?: boolean;
222 > /** @deprecated */
223 > readonly _languagePackId?: string;
224 > /** @deprecated */
225 > readonly _translationsConfigFile?: string;
226 > /** @deprecated */
227 > readonly _cacheRoot?: string;
228 > /** @deprecated */
229 > readonly _resolvedLanguagePackCoreLocation?: string;
230 > /** @deprecated */
231 > readonly _corruptedFile?: string;
232 > }
233 >
234 > export interface ILanguagePack {
235 > readonly hash: string;
236 > readonly label: string | undefined;
237 > readonly extensions: {
238 > readonly extensionIdentifier: { readonly id: string; readonly uuid?: string };
239 > readonly version: string;
240 > }[];
241 > readonly translations: Record<string, string | undefined>;
242 > }
243 >
244 > export type ILanguagePacks = Record<string, ILanguagePack | undefined>;
src/vs/base/common/ternarySearchTree.ts 193 covered LOC · 60 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- ternarySearchTree.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { shuffle } from './arrays.js';
7 > import { assert } from './assert.js';
8 > import { CharCode } from './charCode.js';
9 > import { compare, compareIgnoreCase, compareSubstring, compareSubstringIgnoreCase } from './strings.js';
10 > import { URI } from './uri.js';
11 >
12 > export interface IKeyIterator<K> {
13 > reset(key: K): this;
14 > next(): this;
15 >
16 > hasNext(): boolean;
17 > cmp(a: string): number;
18 > value(): string;
19 > }
20 >
21 > export class StringIterator implements IKeyIterator<string> {
22
23 private _value: string = '';
24 private _pos: number = 0;
26 > reset(key: string): this {
27 this._value = key;
28 this._pos = 0;
29 return this;
30 }
32 > next(): this {
33 this._pos += 1;
34 return this;
35 }
37 > hasNext(): boolean {
38 return this._pos < this._value.length - 1;
39 }
41 > cmp(a: string): number {
42 const aCode = a.charCodeAt(0);
43 const thisCode = this._value.charCodeAt(this._pos);
44 return aCode - thisCode;
45 }
47 > value(): string {
48 return this._value[this._pos];
49 }
51 >
52 > export class ConfigKeysIterator implements IKeyIterator<string> {
53 >
54 > private _value!: string;
55 > private _from!: number;
56 > private _to!: number;
57 >
58 > constructor(
59 private readonly _caseSensitive: boolean = true
60 ) { }
62 > reset(key: string): this {
63 this._value = key;
64 this._from = 0;
66 return this.next();
67 }
69 > hasNext(): boolean {
70 return this._to < this._value.length;
71 }
73 > next(): this {
74 // this._data = key.split(/[\\/]/).filter(s => !!s);
75 this._from = this._to;
89 return this;
90 }
92 > cmp(a: string): number {
93 return this._caseSensitive
94 ? compareSubstring(a, this._value, 0, a.length, this._from, this._to)
95 : compareSubstringIgnoreCase(a, this._value, 0, a.length, this._from, this._to);
96 }
98 > value(): string {
99 return this._value.substring(this._from, this._to);
100 }
102 >
103 > export class PathIterator implements IKeyIterator<string> {
104 >
105 > private _value!: string;
106 > private _valueLen!: number;
107 > private _from!: number;
108 > private _to!: number;
109 >
110 > constructor(
111 private readonly _splitOnBackslash: boolean = true,
112 private readonly _caseSensitive: boolean = true
113 ) { }
115 > reset(key: string): this {
116 this._from = 0;
117 this._to = 0;
127 return this.next();
128 }
130 > hasNext(): boolean {
131 return this._to < this._valueLen;
132 }
134 > next(): this {
135 // this._data = key.split(/[\\/]/).filter(s => !!s);
136 this._from = this._to;
150 return this;
151 }
153 > cmp(a: string): number {
154 return this._caseSensitive
155 ? compareSubstring(a, this._value, 0, a.length, this._from, this._to)
156 : compareSubstringIgnoreCase(a, this._value, 0, a.length, this._from, this._to);
157 }
159 > value(): string {
160 return this._value.substring(this._from, this._to);
161 }
163 >
164 > const enum UriIteratorState {
165 > Scheme = 1, Authority = 2, Path = 3, Query = 4, Fragment = 5
166 > }
167 >
168 > export class UriIterator implements IKeyIterator<URI> {
169 >
170 > private _pathIterator!: PathIterator;
171 > private _value!: URI;
172 > private _states: UriIteratorState[] = [];
173 > private _stateIdx: number = 0;
174 >
175 > constructor(
176 private readonly _ignorePathCasing: (uri: URI) => boolean,
177 private readonly _ignoreQueryAndFragment: (uri: URI) => boolean) { }
179 > reset(key: URI): this {
180 this._value = key;
181 this._states = [];
204 return this;
205 }
207 > next(): this {
208 if (this._states[this._stateIdx] === UriIteratorState.Path && this._pathIterator.hasNext()) {
209 this._pathIterator.next();
213 return this;
214 }
216 > hasNext(): boolean {
217 return (this._states[this._stateIdx] === UriIteratorState.Path && this._pathIterator.hasNext())
218 || this._stateIdx < this._states.length - 1;
219 }
221 > cmp(a: string): number {
222 if (this._states[this._stateIdx] === UriIteratorState.Scheme) {
223 return compareIgnoreCase(a, this._value.scheme);
233 throw new Error();
234 }
236 > value(): string {
237 if (this._states[this._stateIdx] === UriIteratorState.Scheme) {
238 return this._value.scheme;
248 throw new Error();
249 }
251 >
252 > abstract class Undef {
253 >
254 > static readonly Val: unique symbol = Symbol('undefined_placeholder');
255 >
256 > static wrap<V>(value: V | undefined): V | typeof Undef.Val {
257 return value === undefined ? Undef.Val : value;
258 }
260 > static unwrap<V>(value: V | typeof Undef.Val): V | undefined {
261 return value === Undef.Val ? undefined : value;
262 }
264 >
265 class TernarySearchTreeNode<K, V> {
266 height: number = 1;
271 mid: TernarySearchTreeNode<K, V> | undefined = undefined;
272 right: TernarySearchTreeNode<K, V> | undefined = undefined;
274 > isEmpty(): boolean {
275 return !this.left && !this.mid && !this.right && this.value === undefined;
276 }
278 > rotateLeft() {
279 const tmp = this.right!;
280 this.right = tmp.left;
284 return tmp;
285 }
287 > rotateRight() {
288 const tmp = this.left!;
289 this.left = tmp.right;
293 return tmp;
294 }
296 > updateHeight() {
297 this.height = 1 + Math.max(this.heightLeft, this.heightRight);
298 }
300 > balanceFactor() {
301 return this.heightRight - this.heightLeft;
302 }
304 > get heightLeft() {
305 return this.left?.height ?? 0;
306 }
308 > get heightRight() {
309 return this.right?.height ?? 0;
310 }
312 >
313 > const enum Dir {
314 > Left = -1,
315 > Mid = 0,
316 > Right = 1
317 > }
318 >
319 > export class TernarySearchTree<K, V> {
320 >
321 > static forUris<E>(ignorePathCasing: (key: URI) => boolean = () => false, ignoreQueryAndFragment: (key: URI) => boolean = () => false): TernarySearchTree<URI, E> {
322 return new TernarySearchTree<URI, E>(new UriIterator(ignorePathCasing, ignoreQueryAndFragment));
323 }
325 > static forPaths<E>(ignorePathCasing = false): TernarySearchTree<string, E> {
326 return new TernarySearchTree<string, E>(new PathIterator(undefined, !ignorePathCasing));
327 }
329 > static forStrings<E>(): TernarySearchTree<string, E> {
330 return new TernarySearchTree<string, E>(new StringIterator());
331 }
333 > static forConfigKeys<E>(): TernarySearchTree<string, E> {
334 return new TernarySearchTree<string, E>(new ConfigKeysIterator());
335 }
337 > private _iter: IKeyIterator<K>;
338 > private _root: TernarySearchTreeNode<K, V> | undefined;
339 >
340 > constructor(segments: IKeyIterator<K>) {
341 this._iter = segments;
342 }
344 > clear(): void {
345 this._root = undefined;
346 }
348 > /**
349 > * Fill the tree with the same value of the given keys
350 > */
351 > fill(element: V, keys: readonly K[]): void;
352 > /**
353 > * Fill the tree with given [key,value]-tuples
354 > */
355 > fill(values: readonly [K, V][]): void;
356 > fill(values: readonly [K, V][] | V, keys?: readonly K[]): void {
357 if (keys) {
358 const arr = keys.slice(0);
369 }
370 }
372 > set(key: K, element: V): V | undefined {
373 const iter = this._iter.reset(key);
374 let node: TernarySearchTreeNode<K, V>;
476 return oldElement;
477 }
479 > get(key: K): V | undefined {
480 return Undef.unwrap(this._getNode(key)?.value);
481 }
483 > private _getNode(key: K) {
484 const iter = this._iter.reset(key);
485 let node = this._root;
502 return node;
503 }
505 > has(key: K): boolean {
506 const node = this._getNode(key);
507 return !(node?.value === undefined && node?.mid === undefined);
508 }
510 > delete(key: K): void {
511 return this._delete(key, false);
512 }
514 > deleteSuperstr(key: K): void {
515 return this._delete(key, true);
516 }
518 > private _delete(key: K, superStr: boolean): void {
519 const iter = this._iter.reset(key);
520 const stack: [Dir, TernarySearchTreeNode<K, V>][] = [];
620 this._root = this._balanceByStack(stack) ?? this._root;
621 }
623 > private _min(node: TernarySearchTreeNode<K, V>, stack: [Dir, TernarySearchTreeNode<K, V>][]): TernarySearchTreeNode<K, V> {
624 while (node.left) {
625 stack.push([Dir.Left, node]);
628 return node;
629 }
631 > private _balanceByStack(stack: [Dir, TernarySearchTreeNode<K, V>][]) {
632
633 for (let i = stack.length - 1; i >= 0; i--) {
679 return undefined;
680 }
682 > findSubstr(key: K): V | undefined {
683 const iter = this._iter.reset(key);
684 let node = this._root;
703 return node && Undef.unwrap(node.value) || candidate;
704 }
706 > findSuperstr(key: K): IterableIterator<[K, V]> | undefined {
707 return this._findSuperstrOrElement(key, false);
708 }
710 > private _findSuperstrOrElement(key: K, allowValue: true): IterableIterator<[K, V]> | V | undefined;
711 > private _findSuperstrOrElement(key: K, allowValue: false): IterableIterator<[K, V]> | undefined;
712 > private _findSuperstrOrElement(key: K, allowValue: boolean): IterableIterator<[K, V]> | V | undefined {
713 const iter = this._iter.reset(key);
714 let node = this._root;
740 return undefined;
741 }
743 > hasElementOrSubtree(key: K): boolean {
744 return this._findSuperstrOrElement(key, true) !== undefined;
745 }
747 > forEach(callback: (value: V, index: K) => unknown): void {
748 for (const [key, value] of this) {
749 callback(value, key);
750 }
751 }
753 > *[Symbol.iterator](): IterableIterator<[K, V]> {
754 yield* this._entries(this._root);
755 }
757 > private _entries(node: TernarySearchTreeNode<K, V> | undefined): IterableIterator<[K, V]> {
758 const result: [K, V][] = [];
759 this._dfsEntries(node, result);
760 return result[Symbol.iterator]();
761 }
763 > private _dfsEntries(node: TernarySearchTreeNode<K, V> | undefined, bucket: [K, V][]) {
764 // DFS
765 if (!node) {
779 }
780 }
782 > // for debug/testing
783 > _isBalanced(): boolean {
784 const nodeIsBalanced = (node: TernarySearchTreeNode<unknown, unknown> | undefined): boolean => {
785 if (!node) {
src/vs/base/common/platform.ts 189 covered LOC · 12 ranges

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1 > /*--------------------------------------------------------------------------------------------- platform.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import * as nls from '../../nls.js';
7 >
8 > export const LANGUAGE_DEFAULT = 'en';
9 >
10 > let _isWindows = false;
11 > let _isMacintosh = false;
12 > let _isLinux = false;
13 > let _isLinuxSnap = false;
14 > let _isNative = false;
15 > let _isWeb = false;
16 > let _isElectron = false;
17 > let _isIOS = false;
18 > let _isCI = false;
19 > let _isMobile = false;
20 > let _locale: string | undefined = undefined;
21 > let _language: string = LANGUAGE_DEFAULT;
22 > let _platformLocale: string = LANGUAGE_DEFAULT;
23 > let _translationsConfigFile: string | undefined = undefined;
24 > let _userAgent: string | undefined = undefined;
25 >
26 > export interface IProcessEnvironment {
27 > [key: string]: string | undefined;
28 > }
29 >
30 > /**
31 > * This interface is intentionally not identical to node.js
32 > * process because it also works in sandboxed environments
33 > * where the process object is implemented differently. We
34 > * define the properties here that we need for `platform`
35 > * to work and nothing else.
36 > */
37 > export interface INodeProcess {
38 > platform: string;
39 > arch: string;
40 > env: IProcessEnvironment;
41 > versions?: {
42 > node?: string;
43 > electron?: string;
44 > chrome?: string;
45 > };
46 > type?: string;
47 > cwd: () => string;
48 > }
49 >
50 > declare const process: INodeProcess;
51 >
52 > const $globalThis: any = globalThis;
53 >
54 > let nodeProcess: INodeProcess | undefined = undefined;
55 > if (typeof $globalThis.vscode !== 'undefined' && typeof $globalThis.vscode.process !== 'undefined') {
56 // Native environment (sandboxed)
57 nodeProcess = $globalThis.vscode.process;
58 > } else if (typeof process !== 'undefined' && typeof process?.versions?.node === 'string') { platform.ts
59 > // Native environment (non-sandboxed)
60 > nodeProcess = process;
61 > }
62 >
63 > const isElectronProcess = typeof nodeProcess?.versions?.electron === 'string';
64 > const isElectronRenderer = isElectronProcess && nodeProcess?.type === 'renderer';
65 >
66 > interface INavigator {
67 > userAgent: string;
68 > maxTouchPoints?: number;
69 > language: string;
70 > }
71 > declare const navigator: INavigator;
72 >
73 > // Native environment
74 > if (typeof nodeProcess === 'object') {
75 > _isWindows = (nodeProcess.platform === 'win32');
76 > _isMacintosh = (nodeProcess.platform === 'darwin');
77 > _isLinux = (nodeProcess.platform === 'linux');
78 > _isLinuxSnap = _isLinux && !!nodeProcess.env['SNAP'] && !!nodeProcess.env['SNAP_REVISION'];
79 > _isElectron = isElectronProcess;
80 > _isCI = !!nodeProcess.env['CI'] || !!nodeProcess.env['BUILD_ARTIFACTSTAGINGDIRECTORY'] || !!nodeProcess.env['GITHUB_WORKSPACE'];
81 > _locale = LANGUAGE_DEFAULT;
82 > _language = LANGUAGE_DEFAULT;
83 > const rawNlsConfig = nodeProcess.env['VSCODE_NLS_CONFIG'];
84 > if (rawNlsConfig) {
85 try {
86 const nlsConfig: nls.INLSConfiguration = JSON.parse(rawNlsConfig);
113 console.error('Unable to resolve platform.');
114 }
115 > platform.ts
116 > export const enum Platform {
117 > Web,
118 > Mac,
119 > Linux,
120 > Windows
121 > }
122 > export type PlatformName = 'Web' | 'Windows' | 'Mac' | 'Linux';
123 >
124 > export function PlatformToString(platform: Platform): PlatformName {
125 switch (platform) {
126 case Platform.Web: return 'Web';
130 }
131 }
132 > platform.ts
133 > let _platform: Platform = Platform.Web;
134 > if (_isMacintosh) {
135 _platform = Platform.Mac;
136 > } else if (_isWindows) { platform.ts
137 _platform = Platform.Windows;
138 > } else if (_isLinux) { platform.ts
139 > _platform = Platform.Linux;
140 > }
141 >
142 > export const isWindows = _isWindows;
143 > export const isMacintosh = _isMacintosh;
144 > export const isLinux = _isLinux;
145 > export const isLinuxSnap = _isLinuxSnap;
146 > export const isNative = _isNative;
147 > export const isElectron = _isElectron;
148 > export const isWeb = _isWeb;
149 > export const isWebWorker = (_isWeb && typeof $globalThis.importScripts === 'function');
150 > export const webWorkerOrigin = isWebWorker ? $globalThis.origin : undefined;
151 > export const isIOS = _isIOS;
152 > export const isMobile = _isMobile;
153 > /**
154 > * Whether we run inside a CI environment, such as
155 > * GH actions or Azure Pipelines.
156 > */
157 > export const isCI = _isCI;
158 > export const platform = _platform;
159 > export const userAgent = _userAgent;
160 >
161 > /**
162 > * The language used for the user interface. The format of
163 > * the string is all lower case (e.g. zh-tw for Traditional
164 > * Chinese or de for German)
165 > */
166 > export const language = _language;
167 >
168 > export namespace Language {
169 >
170 > export function value(): string {
171 return language;
172 }
173 > platform.ts
174 > export function isDefaultVariant(): boolean {
175 if (language.length === 2) {
176 return language === 'en';
181 }
182 }
183 > platform.ts
184 > export function isDefault(): boolean {
185 return language === 'en';
186 }
187 > } platform.ts
188 >
189 > /**
190 > * Desktop: The OS locale or the locale specified by --locale or `argv.json`.
191 > * Web: matches `platformLocale`.
192 > *
193 > * The UI is not necessarily shown in the provided locale.
194 > */
195 > export const locale = _locale;
196 >
197 > /**
198 > * This will always be set to the OS/browser's locale regardless of
199 > * what was specified otherwise. The format of the string is all
200 > * lower case (e.g. zh-tw for Traditional Chinese). The UI is not
201 > * necessarily shown in the provided locale.
202 > */
203 > export const platformLocale = _platformLocale;
204 >
205 > /**
206 > * The translations that are available through language packs.
207 > */
208 > export const translationsConfigFile = _translationsConfigFile;
209 >
210 > export const setTimeout0IsFaster = (typeof $globalThis.postMessage === 'function' && !$globalThis.importScripts);
211 >
212 > /**
213 > * See https://html.spec.whatwg.org/multipage/timers-and-user-prompts.html#:~:text=than%204%2C%20then-,set%20timeout%20to%204,-.
214 > *
215 > * Works similarly to `setTimeout(0)` but doesn't suffer from the 4ms artificial delay
216 > * that browsers set when the nesting level is > 5.
217 > */
218 > export const setTimeout0 = (() => {
219 > if (setTimeout0IsFaster) {
220 interface IQueueElement {
221 id: number;
246 };
247 }
248 > return (callback: () => void) => setTimeout(callback); platform.ts
249 > })();
250 >
251 > export const enum OperatingSystem {
252 > Windows = 1,
253 > Macintosh = 2,
254 > Linux = 3
255 > }
256 > export const OS = (_isMacintosh || _isIOS ? OperatingSystem.Macintosh : (_isWindows ? OperatingSystem.Windows : OperatingSystem.Linux));
257 >
258 > let _isLittleEndian = true;
259 > let _isLittleEndianComputed = false;
260 > export function isLittleEndian(): boolean {
261 if (!_isLittleEndianComputed) {
262 _isLittleEndianComputed = true;
269 return _isLittleEndian;
270 }
271 > platform.ts
272 > export const isChrome = !!(userAgent && userAgent.indexOf('Chrome') >= 0);
273 > export const isFirefox = !!(userAgent && userAgent.indexOf('Firefox') >= 0);
274 > export const isSafari = !!(!isChrome && (userAgent && userAgent.indexOf('Safari') >= 0));
275 > export const isEdge = !!(userAgent && userAgent.indexOf('Edg/') >= 0);
276 > export const isAndroid = !!(userAgent && userAgent.indexOf('Android') >= 0);
277 > export const hasElectronUserAgent = !!(userAgent && userAgent.indexOf('Electron') >= 0);
278 >
279 > export function isTahoeOrNewer(osVersion: string): boolean {
280 return parseFloat(osVersion) >= 25;
281 }
src/vs/base/common/buffer.ts 188 covered LOC · 50 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- buffer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Lazy } from './lazy.js';
7 > import * as streams from './stream.js';
8 >
9 > interface NodeBuffer {
10 > allocUnsafe(size: number): Uint8Array;
11 > isBuffer(obj: unknown): obj is NodeBuffer;
12 > from(arrayBuffer: ArrayBufferLike, byteOffset?: number, length?: number): Uint8Array;
13 > from(data: string): Uint8Array;
14 > }
15 >
16 > declare const Buffer: NodeBuffer;
17 >
18 > const hasBuffer = (typeof Buffer !== 'undefined');
19 > const indexOfTable = new Lazy(() => new Uint8Array(256));
20 >
21 > let textEncoder: { encode: (input: string) => Uint8Array } | null;
22 > let textDecoder: { decode: (input: Uint8Array) => string } | null;
23 >
24 > export class VSBuffer {
25 >
26 > /**
27 > * When running in a nodejs context, the backing store for the returned `VSBuffer` instance
28 > * might use a nodejs Buffer allocated from node's Buffer pool, which is not transferrable.
29 > */
30 > static alloc(byteLength: number): VSBuffer {
31 if (hasBuffer) {
32 return new VSBuffer(Buffer.allocUnsafe(byteLength));
35 }
36 }
37 > buffer.ts
38 > /**
39 > * When running in a nodejs context, if `actual` is not a nodejs Buffer, the backing store for
40 > * the returned `VSBuffer` instance might use a nodejs Buffer allocated from node's Buffer pool,
41 > * which is not transferrable.
42 > */
43 > static wrap(actual: Uint8Array): VSBuffer {
44 if (hasBuffer && !(Buffer.isBuffer(actual))) {
45 // https://nodejs.org/dist/latest-v10.x/docs/api/buffer.html#buffer_class_method_buffer_from_arraybuffer_byteoffset_length
49 return new VSBuffer(actual);
50 }
51 > buffer.ts
52 > /**
53 > * When running in a nodejs context, the backing store for the returned `VSBuffer` instance
54 > * might use a nodejs Buffer allocated from node's Buffer pool, which is not transferrable.
55 > */
56 > static fromString(source: string, options?: { dontUseNodeBuffer?: boolean }): VSBuffer {
57 > const dontUseNodeBuffer = options?.dontUseNodeBuffer || false; buffer.ts
58 > if (!dontUseNodeBuffer && hasBuffer) {
59 > return new VSBuffer(Buffer.from(source));
60 > } else {
61 if (!textEncoder) {
62 textEncoder = new TextEncoder();
64 return new VSBuffer(textEncoder.encode(source));
65 }
66 > } buffer.ts
67 > buffer.ts
68 > /**
69 > * When running in a nodejs context, the backing store for the returned `VSBuffer` instance
70 > * might use a nodejs Buffer allocated from node's Buffer pool, which is not transferrable.
71 > */
72 > static fromByteArray(source: number[]): VSBuffer {
73 const result = VSBuffer.alloc(source.length);
74 for (let i = 0, len = source.length; i < len; i++) {
77 return result;
78 }
79 > buffer.ts
80 > /**
81 > * When running in a nodejs context, the backing store for the returned `VSBuffer` instance
82 > * might use a nodejs Buffer allocated from node's Buffer pool, which is not transferrable.
83 > */
84 > static concat(buffers: VSBuffer[], totalLength?: number): VSBuffer {
85 if (typeof totalLength === 'undefined') {
86 totalLength = 0;
100 return ret;
101 }
102 > buffer.ts
103 > static isNativeBuffer(buffer: unknown): boolean {
104 return hasBuffer && Buffer.isBuffer(buffer);
105 }
106 > buffer.ts
107 > readonly buffer: Uint8Array;
108 > readonly byteLength: number;
109 >
110 > private constructor(buffer: Uint8Array) {
111 > this.buffer = buffer; buffer.ts
112 > this.byteLength = this.buffer.byteLength;
113 > }
114 > buffer.ts
115 > /**
116 > * When running in a nodejs context, the backing store for the returned `VSBuffer` instance
117 > * might use a nodejs Buffer allocated from node's Buffer pool, which is not transferrable.
118 > */
119 > clone(): VSBuffer {
120 const result = VSBuffer.alloc(this.byteLength);
121 result.set(this);
122 return result;
123 }
124 > buffer.ts
125 > toString(): string {
126 if (hasBuffer) {
127 return this.buffer.toString();
133 }
134 }
135 > buffer.ts
136 > slice(start?: number, end?: number): VSBuffer {
137 // IMPORTANT: use subarray instead of slice because TypedArray#slice
138 // creates shallow copy and NodeBuffer#slice doesn't. The use of subarray
140 return new VSBuffer(this.buffer.subarray(start, end));
141 }
142 > buffer.ts
143 > set(array: VSBuffer, offset?: number): void;
144 > set(array: Uint8Array, offset?: number): void;
145 > set(array: ArrayBuffer, offset?: number): void;
146 > set(array: ArrayBufferView, offset?: number): void;
147 > set(array: VSBuffer | Uint8Array | ArrayBuffer | ArrayBufferView, offset?: number): void;
148 > set(array: VSBuffer | Uint8Array | ArrayBuffer | ArrayBufferView, offset?: number): void {
149 if (array instanceof VSBuffer) {
150 this.buffer.set(array.buffer, offset);
159 }
160 }
161 > buffer.ts
162 > readUInt32BE(offset: number): number {
163 return readUInt32BE(this.buffer, offset);
164 }
165 > buffer.ts
166 > writeUInt32BE(value: number, offset: number): void {
167 writeUInt32BE(this.buffer, value, offset);
168 }
169 > buffer.ts
170 > readUInt32LE(offset: number): number {
171 return readUInt32LE(this.buffer, offset);
172 }
173 > buffer.ts
174 > writeUInt32LE(value: number, offset: number): void {
175 writeUInt32LE(this.buffer, value, offset);
176 }
177 > buffer.ts
178 > readUInt8(offset: number): number {
179 return readUInt8(this.buffer, offset);
180 }
181 > buffer.ts
182 > writeUInt8(value: number, offset: number): void {
183 writeUInt8(this.buffer, value, offset);
184 }
185 > buffer.ts
186 > indexOf(subarray: VSBuffer | Uint8Array, offset = 0) {
187 return binaryIndexOf(this.buffer, subarray instanceof VSBuffer ? subarray.buffer : subarray, offset);
188 }
189 > buffer.ts
190 > equals(other: VSBuffer): boolean {
191 if (this === other) {
192 return true;
199 return this.buffer.every((value, index) => value === other.buffer[index]);
200 }
201 > } buffer.ts
202 >
203 > /**
204 > * Like String.indexOf, but works on Uint8Arrays.
205 > * Uses the boyer-moore-horspool algorithm to be reasonably speedy.
206 > */
207 > export function binaryIndexOf(haystack: Uint8Array, needle: Uint8Array, offset = 0): number {
208 const needleLen = needle.byteLength;
209 const haystackLen = haystack.byteLength;
248 return result;
249 }
250 > buffer.ts
251 > export function readUInt16LE(source: Uint8Array, offset: number): number {
252 return (
253 ((source[offset + 0] << 0) >>> 0) |
255 );
256 }
257 > buffer.ts
258 > export function writeUInt16LE(destination: Uint8Array, value: number, offset: number): void {
259 destination[offset + 0] = (value & 0b11111111);
260 value = value >>> 8;
261 destination[offset + 1] = (value & 0b11111111);
262 }
263 > buffer.ts
264 > export function readUInt32BE(source: Uint8Array, offset: number): number {
265 return (
266 source[offset] * 2 ** 24
270 );
271 }
272 > buffer.ts
273 > export function writeUInt32BE(destination: Uint8Array, value: number, offset: number): void {
274 destination[offset + 3] = value;
275 value = value >>> 8;
280 destination[offset] = value;
281 }
282 > buffer.ts
283 > export function readUInt32LE(source: Uint8Array, offset: number): number {
284 return (
285 ((source[offset + 0] << 0) >>> 0) |
289 );
290 }
291 > buffer.ts
292 > export function writeUInt32LE(destination: Uint8Array, value: number, offset: number): void {
293 destination[offset + 0] = (value & 0b11111111);
294 value = value >>> 8;
299 destination[offset + 3] = (value & 0b11111111);
300 }
301 > buffer.ts
302 > export function readUInt8(source: Uint8Array, offset: number): number {
303 return source[offset];
304 }
305 > buffer.ts
306 > export function writeUInt8(destination: Uint8Array, value: number, offset: number): void {
307 destination[offset] = value;
308 }
309 > buffer.ts
310 > export interface VSBufferReadable extends streams.Readable<VSBuffer> { }
311 >
312 > export interface VSBufferReadableStream extends streams.ReadableStream<VSBuffer> { }
313 >
314 > export interface VSBufferWriteableStream extends streams.WriteableStream<VSBuffer> { }
315 >
316 > export interface VSBufferReadableBufferedStream extends streams.ReadableBufferedStream<VSBuffer> { }
317 >
318 > export function readableToBuffer(readable: VSBufferReadable): VSBuffer {
319 return streams.consumeReadable<VSBuffer>(readable, chunks => VSBuffer.concat(chunks));
320 }
321 > buffer.ts
322 > export function bufferToReadable(buffer: VSBuffer): VSBufferReadable {
323 return streams.toReadable<VSBuffer>(buffer);
324 }
325 > buffer.ts
326 > export function streamToBuffer(stream: streams.ReadableStream<VSBuffer>): Promise<VSBuffer> {
327 return streams.consumeStream<VSBuffer>(stream, chunks => VSBuffer.concat(chunks));
328 }
329 > buffer.ts
330 export async function bufferedStreamToBuffer(bufferedStream: streams.ReadableBufferedStream<VSBuffer>): Promise<VSBuffer> {
331 if (bufferedStream.ended) {
342 ]);
343 }
344 > buffer.ts
345 > export function bufferToStream(buffer: VSBuffer): streams.ReadableStream<VSBuffer> {
346 return streams.toStream<VSBuffer>(buffer, chunks => VSBuffer.concat(chunks));
347 }
348 > buffer.ts
349 > export function streamToBufferReadableStream(stream: streams.ReadableStreamEvents<Uint8Array | string>): streams.ReadableStream<VSBuffer> {
350 return streams.transform<Uint8Array | string, VSBuffer>(stream, { data: data => typeof data === 'string' ? VSBuffer.fromString(data) : VSBuffer.wrap(data) }, chunks => VSBuffer.concat(chunks));
351 }
352 > buffer.ts
353 > export function newWriteableBufferStream(options?: streams.WriteableStreamOptions): streams.WriteableStream<VSBuffer> {
354 return streams.newWriteableStream<VSBuffer>(chunks => VSBuffer.concat(chunks), options);
355 }
356 > buffer.ts
357 > export function prefixedBufferReadable(prefix: VSBuffer, readable: VSBufferReadable): VSBufferReadable {
358 return streams.prefixedReadable(prefix, readable, chunks => VSBuffer.concat(chunks));
359 }
360 > buffer.ts
361 > export function prefixedBufferStream(prefix: VSBuffer, stream: VSBufferReadableStream): VSBufferReadableStream {
362 return streams.prefixedStream(prefix, stream, chunks => VSBuffer.concat(chunks));
363 }
364 > buffer.ts
365 > /** Decodes base64 to a uint8 array. URL-encoded and unpadded base64 is allowed. */
366 > export function decodeBase64(encoded: string) {
367 let building = 0;
368 let remainder = 0;
424 return VSBuffer.wrap(buffer).slice(0, unpadded);
425 }
426 > buffer.ts
427 > const base64Alphabet = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
428 > const base64UrlSafeAlphabet = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_';
429 >
430 > /** Encodes a buffer to a base64 string. */
431 > export function encodeBase64({ buffer }: VSBuffer, padded = true, urlSafe = false) {
432 > const dictionary = urlSafe ? base64UrlSafeAlphabet : base64Alphabet; buffer.ts
433 > let output = '';
434 >
435 > const remainder = buffer.byteLength % 3;
436 >
437 > let i = 0;
438 > for (; i < buffer.byteLength - remainder; i += 3) {
439 > const a = buffer[i + 0]; buffer.ts
440 > const b = buffer[i + 1];
441 > const c = buffer[i + 2];
442 >
443 > output += dictionary[a >>> 2];
444 > output += dictionary[(a << 4 | b >>> 4) & 0b111111];
445 > output += dictionary[(b << 2 | c >>> 6) & 0b111111];
446 > output += dictionary[c & 0b111111];
447 > }
448 > buffer.ts
449 > if (remainder === 1) {
450 const a = buffer[i + 0];
451 output += dictionary[a >>> 2];
452 output += dictionary[(a << 4) & 0b111111];
453 if (padded) { output += '=='; }
454 > } else if (remainder === 2) { buffer.ts
455 const a = buffer[i + 0];
456 const b = buffer[i + 1];
460 if (padded) { output += '='; }
461 }
462 > buffer.ts
463 > return output;
464 > }
465 > buffer.ts
466 > const hexChars = '0123456789abcdef';
467 > export function encodeHex({ buffer }: VSBuffer): string {
468 let result = '';
469 for (let i = 0; i < buffer.length; i++) {
474 return result;
475 }
476 > buffer.ts
477 > export function decodeHex(hex: string): VSBuffer {
478 if (hex.length % 2 !== 0) {
479 throw new SyntaxError('Hex string must have an even length');
485 return VSBuffer.wrap(out);
486 }
487 > buffer.ts
488 function decodeHexChar(str: string, position: number) {
489 const s = str.charCodeAt(position);
src/vs/platform/agentHost/common/changesetUri.ts 185 covered LOC · 16 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- changesetUri.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { localize } from '../../../nls.js';
7 > import { readSessionGitState, readSessionWorkspaceless, SessionLifecycle, type Changeset, type ISessionGitState, type ISessionWithDefaultChat, type URI } from './state/sessionState.js';
8 >
9 > /**
10 > * Helpers for building / parsing the URI clients subscribe to in order to
11 > * receive a {@link import('./state/protocol/state.js').ChangesetState}.
12 > *
13 > * Shapes recognised by this module:
14 > *
15 > * <sessionUri>/changeset/uncommitted
16 > * <sessionUri>/changeset/session
17 > * <sessionUri>/changeset/turn/<turnId>
18 > * <sessionUri>/changeset/compare/<originalTurnId>/<modifiedTurnId>
19 > *
20 > * Catalogue entries on `summary.changesets` may also advertise the
21 > * URI-template forms `<sessionUri>/changeset/turn/{turnId}` and
22 > * `<sessionUri>/changeset/compare/{originalTurnId}/{modifiedTurnId}`;
23 > * clients expand the template before subscribing.
24 > *
25 > * Keeping changeset URIs nested under the session URI namespace lets the
26 > * server cleanly tear down every changeset for a session when that session
27 > * is disposed (the reverse-lookup is just a string-prefix scan).
28 > */
29 >
30 > /** /** Stable id of the catalogue entry for the branch changeset. */
31 > const BRANCH_CHANGESET_ID = 'branch';
32 >
33 > /** Stable id of the catalogue entry for the uncommitted-changes changeset. */
34 > const UNCOMMITTED_CHANGESET_ID = 'uncommitted';
35 >
36 > /** Stable id of the catalogue entry for the session-wide changeset. */
37 > const SESSION_CHANGESET_ID = 'session';
38 >
39 > /** Path prefix used by per-turn changeset URIs (`turn/<turnId>`). */
40 > const TURN_CHANGESET_PREFIX = 'turn/';
41 >
42 > /** Template variable name used inside the per-turn URI template. */
43 > const TURN_TEMPLATE_VARIABLE = '{turnId}';
44 >
45 > /** Path prefix used by compare-turns changeset URIs (`compare/<originalTurnId>/<modifiedTurnId>`). */
46 > const COMPARE_CHANGESET_PREFIX = 'compare/';
47 >
48 > /** Template variable name for the original turn in the compare-turns URI template. */
49 > const COMPARE_ORIGINAL_TEMPLATE_VARIABLE = '{originalTurnId}';
50 >
51 > /** Template variable name for the modified turn in the compare-turns URI template. */
52 > const COMPARE_MODIFIED_TEMPLATE_VARIABLE = '{modifiedTurnId}';
53 >
54 > /** Localized human-readable label for the branch changeset entry. */
55 > export const branchChangesetLabel = (): string => localize('branchChangeset.label', "Branch Changes");
56 >
57 > /** Localized human-readable label for the session-wide changeset entry. */
58 > export const sessionChangesetLabel = (): string => localize('sessionChangeset.label', "All Changes");
59 >
60 > /** Localized human-readable description for the session-wide changeset entry. */
61 > export const sessionChangesetDescription = (): string => localize('sessionChangeset.description', "Show all changes made in this session");
62 >
63 > /** Localized human-readable label for the uncommitted-changes changeset entry. */
64 > export const uncommittedChangesetLabel = (): string => localize('uncommittedChangeset.label', "Uncommitted Changes");
65 >
66 > /** Localized human-readable description for the uncommitted-changes changeset entry. */
67 > export const uncommittedChangesetDescription = (): string => localize('uncommittedChangeset.description', "Show uncommitted changes in this session");
68 >
69 > /** Localized human-readable label for the per-turn changeset template entry. */
70 > export const thisTurnChangesetLabel = (): string => localize('thisTurnChangeset.label', "This Turn");
71 >
72 > /** Localized human-readable description for the per-turn changeset template entry. */
73 > export const thisTurnChangesetDescription = (): string => localize('thisTurnChangeset.description', "Show changes made in this turn");
74 >
75 > /** Localized human-readable label for the compare-turns changeset template entry. */
76 > export const compareTurnsChangesetLabel = (): string => localize('compareTurnsChangeset.label', "Compare Turns");
77 >
78 > /** Localized human-readable description for the compare-turns changeset template entry. */
79 > export const compareTurnsChangesetDescription = (): string => localize('compareTurnsChangeset.description', "Show changes made between different turns");
80 >
81 > /**
82 > * Returns the description shown next to the `Branch Changes` catalogue
83 > * entry. Prefers `${branchName} → ${baseBranchName}` when both values
84 > * are known (typical worktree-isolation case). If `baseBranchName` is
85 > * unknown, falls back to `${branchName} → ${upstreamBranchName}` when an
86 > * upstream is available. Finally falls back to `branchName` alone.
87 > * Returns `undefined` only when no branch name is known at all, so
88 > * callers can omit the description entirely.
89 > */
90 > export function formatBranchChangesetDescription(gitState: ISessionGitState): string | undefined {
91 const { baseBranchName, branchName, upstreamBranchName } = gitState;
92
103 return branchName;
104 }
106 > /** Marker injected into a changeset URI's path. */
107 > const CHANGESET_PATH_SEGMENT = '/changeset/';
108 >
109 > /** Discriminates the well-known changeset URI shapes. */
110 > export const enum ChangesetKind {
111 > Branch = 'branch',
112 > Uncommitted = 'uncommitted',
113 > Session = 'session',
114 > Turn = 'turn',
115 > Compare = 'compare-turns',
116 > /** Producer-defined id we don't recognise (single-segment only). */
117 > Unknown = 'unknown',
118 > }
119 >
120 > export function buildBranchChangesetUri(sessionUri: URI): URI {
121 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${BRANCH_CHANGESET_ID}`;
122 }
124 > /** Returns the subscribable URI for the session-wide changeset. */
125 > export function buildSessionChangesetUri(sessionUri: URI): URI {
126 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${SESSION_CHANGESET_ID}`;
127 }
129 > /** Returns the subscribable URI for the uncommitted-changes changeset. */
130 > export function buildUncommittedChangesetUri(sessionUri: URI): URI {
131 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${UNCOMMITTED_CHANGESET_ID}`;
132 }
134 > /**
135 > * Returns the URI _template_ that catalogue entries advertise for the
136 > * per-turn changeset; clients expand `{turnId}` to build the
137 > * subscribable URI via {@link buildTurnChangesetUri}.
138 > */
139 > export function buildTurnChangesetUriTemplate(sessionUri: URI): URI {
140 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${TURN_CHANGESET_PREFIX}${TURN_TEMPLATE_VARIABLE}`;
141 }
143 > /** Returns the subscribable URI for the per-turn changeset of `turnId`. */
144 > export function buildTurnChangesetUri(sessionUri: URI, turnId: string): URI {
145 if (!turnId || turnId.includes('/')) {
146 throw new Error(`buildTurnChangesetUri: turnId must be non-empty and not contain '/' (got ${JSON.stringify(turnId)})`);
148 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${TURN_CHANGESET_PREFIX}${turnId}`;
149 }
151 > /**
152 > * Returns the URI _template_ that catalogue entries advertise for the
153 > * compare-turns changeset; clients expand both `{originalTurnId}` and
154 > * `{modifiedTurnId}` to build the subscribable URI via
155 > * {@link buildCompareTurnsChangesetUri}.
156 > */
157 > export function buildCompareTurnsChangesetUriTemplate(sessionUri: URI): URI {
158 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${COMPARE_CHANGESET_PREFIX}${COMPARE_ORIGINAL_TEMPLATE_VARIABLE}/${COMPARE_MODIFIED_TEMPLATE_VARIABLE}`;
159 }
161 > /**
162 > * Returns the subscribable URI for the compare-turns changeset between
163 > * `originalTurnId` (the "from" endpoint) and `modifiedTurnId` (the "to"
164 > * endpoint). Diff direction is `originalTurnId → modifiedTurnId`.
165 > */
166 > export function buildCompareTurnsChangesetUri(sessionUri: URI, originalTurnId: string, modifiedTurnId: string): URI {
167 if (!originalTurnId || originalTurnId.includes('/')) {
168 throw new Error(`buildCompareTurnsChangesetUri: originalTurnId must be non-empty and not contain '/' (got ${JSON.stringify(originalTurnId)})`);
173 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${COMPARE_CHANGESET_PREFIX}${originalTurnId}/${modifiedTurnId}`;
174 }
176 > /**
177 > * Returns the subscribable URI for an opaque, producer-defined
178 > * `changesetId`. The id must not contain `/` — well-known multi-segment
179 > * shapes have dedicated builders (e.g. {@link buildTurnChangesetUri}).
180 > */
181 > export function buildChangesetUri(sessionUri: URI, changesetId: string): URI {
182 if (!changesetId) {
183 throw new Error('buildChangesetUri: changesetId must be non-empty');
188 return `${sessionUri}${CHANGESET_PATH_SEGMENT}${changesetId}`;
189 }
191 > /**
192 > * Parses a changeset URI back into `(sessionUri, changesetId, kind)`,
193 > * or returns `undefined` if `uri` is not a changeset URI we recognise.
194 > */
195 > export function parseChangesetUri(uri: URI): { sessionUri: URI; changesetId: string; kind: ChangesetKind; turnId?: string; originalTurnId?: string; modifiedTurnId?: string } | undefined {
196 const idx = uri.lastIndexOf(CHANGESET_PATH_SEGMENT);
197 if (idx < 0) {
241 return { sessionUri, changesetId, kind: ChangesetKind.Unknown };
242 }
244 > /** Returns `true` iff `uri` looks like a changeset URI we recognise. */
245 > export function isChangesetUri(uri: URI): boolean {
246 return parseChangesetUri(uri) !== undefined;
247 }
249 > /** Returns `true` iff `uri` is the session-wide changeset URI. */
250 > export function isSessionChangesetUri(uri: URI): boolean {
251 return parseChangesetUri(uri)?.kind === ChangesetKind.Session;
252 }
254 > /** Returns `true` iff `uri` is the uncommitted-changes changeset URI. */
255 > export function isUncommittedChangesetUri(uri: URI): boolean {
256 return parseChangesetUri(uri)?.kind === ChangesetKind.Uncommitted;
257 }
259 > /** Returns the parsed turn id when `uri` is a per-turn changeset URI. */
260 > export function parseTurnChangesetUri(uri: URI): { sessionUri: URI; turnId: string } | undefined {
261 const parsed = parseChangesetUri(uri);
262 if (parsed?.kind !== ChangesetKind.Turn || parsed.turnId === undefined) {
265 return { sessionUri: parsed.sessionUri, turnId: parsed.turnId };
266 }
268 > /** Returns the parsed turn ids when `uri` is a compare-turns changeset URI. */
269 > export function parseCompareTurnsChangesetUri(uri: URI): { sessionUri: URI; originalTurnId: string; modifiedTurnId: string } | undefined {
270 const parsed = parseChangesetUri(uri);
271 if (parsed?.kind !== ChangesetKind.Compare || parsed.originalTurnId === undefined || parsed.modifiedTurnId === undefined) {
274 return { sessionUri: parsed.sessionUri, originalTurnId: parsed.originalTurnId, modifiedTurnId: parsed.modifiedTurnId };
275 }
277 > /**
278 > * Builds the default ordered `summary.changesets` catalogue for a
279 > * session (`Branch Changes`, `Uncommitted Changes`, `This Turn`) with
280 > * label + uriTemplate only. Aggregate counts are filled in later by the
281 > * diff producer as compute passes complete.
282 > *
283 > * The first two entries (`Branch Changes`, `Uncommitted Changes`) are
284 > * git-only; `AgentService._attachGitState` strips them asynchronously
285 > * for sessions whose working directory is not a git repo. The backing
286 > * per-changeset states are still registered for every session — only
287 > * the catalogue advertisements are stripped.
288 > *
289 > * The compare-turns changeset (built by
290 > * {@link buildCompareTurnsChangesetUri}) is intentionally NOT included
291 > * in the default catalogue: it is subscribe-only. Clients that want
292 > * compare-turns diffs construct the URI themselves from two known
293 > * turn ids and subscribe directly.
294 > */
295 > export function buildDefaultChangesetCatalog(sessionUri: URI, state?: ISessionWithDefaultChat): Changeset[] {
296 // Session that failed to create
297 if (!state || state.lifecycle === SessionLifecycle.CreationFailed) {
src/vs/base/common/errors.ts 183 covered LOC · 32 ranges

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1 > /*--------------------------------------------------------------------------------------------- errors.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export interface ErrorListenerCallback {
7 > (error: any): void;
8 > }
9 >
10 > export interface ErrorListenerUnbind {
11 > (): void;
12 > }
13 >
14 > // Avoid circular dependency on EventEmitter by implementing a subset of the interface.
15 > export class ErrorHandler {
16 > private unexpectedErrorHandler: (e: any) => void;
17 > private listeners: ErrorListenerCallback[];
18 >
19 > constructor() {
20 >
21 > this.listeners = [];
22 >
23 > this.unexpectedErrorHandler = function (e: any) {
24 setTimeout(() => {
25 if (e.stack) {
34 }, 0);
35 };
36 > } errors.ts
37 >
38 > addListener(listener: ErrorListenerCallback): ErrorListenerUnbind {
39 this.listeners.push(listener);
40
43 };
44 }
45 > errors.ts
46 > private emit(e: any): void {
47 this.listeners.forEach((listener) => {
48 listener(e);
49 });
50 }
51 > errors.ts
52 > private _removeListener(listener: ErrorListenerCallback): void {
53 this.listeners.splice(this.listeners.indexOf(listener), 1);
54 }
55 > errors.ts
56 > setUnexpectedErrorHandler(newUnexpectedErrorHandler: (e: any) => void): void {
57 > this.unexpectedErrorHandler = newUnexpectedErrorHandler;
58 > }
59 >
60 > getUnexpectedErrorHandler(): (e: any) => void {
61 return this.unexpectedErrorHandler;
62 }
63 > errors.ts
64 > onUnexpectedError(e: any): void {
65 this.unexpectedErrorHandler(e);
66 this.emit(e);
67 }
68 > errors.ts
69 > // For external errors, we don't want the listeners to be called
70 > onUnexpectedExternalError(e: any): void {
71 this.unexpectedErrorHandler(e);
72 }
73 > } errors.ts
74 >
75 > export const errorHandler = new ErrorHandler();
76 >
77 > /** @skipMangle */
78 > export function setUnexpectedErrorHandler(newUnexpectedErrorHandler: (e: any) => void): void {
79 > errorHandler.setUnexpectedErrorHandler(newUnexpectedErrorHandler);
80 > }
81 >
82 > /**
83 > * Returns if the error is a SIGPIPE error. SIGPIPE errors should generally be
84 > * logged at most once, to avoid a loop.
85 > *
86 > * @see https://github.com/microsoft/vscode-remote-release/issues/6481
87 > */
88 > export function isSigPipeError(e: unknown): e is Error {
89 if (!e || typeof e !== 'object') {
90 return false;
94 return cast.code === 'EPIPE' && cast.syscall?.toUpperCase() === 'WRITE';
95 }
96 > errors.ts
97 > /**
98 > * This function should only be called with errors that indicate a bug in the product.
99 > * E.g. buggy extensions/invalid user-input/network issues should not be able to trigger this code path.
100 > * If they are, this indicates there is also a bug in the product.
101 > */
102 > export function onBugIndicatingError(e: any): undefined {
103 errorHandler.onUnexpectedError(e);
104 return undefined;
105 }
106 > errors.ts
107 > export function onUnexpectedError(e: any): undefined {
108 // ignore errors from cancelled promises
109 if (!isCancellationError(e)) {
112 return undefined;
113 }
114 > errors.ts
115 > export function onUnexpectedExternalError(e: any): undefined {
116 // ignore errors from cancelled promises
117 if (!isCancellationError(e)) {
120 return undefined;
121 }
122 > errors.ts
123 > type ObjectWithCode = {
124 > readonly code: unknown;
125 > };
126 >
127 function hasErrorCode(error: object): error is ObjectWithCode {
128 return Object.hasOwn(error, 'code');
129 }
130 > errors.ts
131 > export function getErrorCode(error: unknown): string | undefined {
132 if (!error || typeof error !== 'object' || !hasErrorCode(error)) {
133 return undefined;
136 return typeof code === 'string' || typeof code === 'number' ? String(code) : undefined;
137 }
138 > errors.ts
139 > export interface SerializedError {
140 > readonly $isError: true;
141 > readonly name: string;
142 > readonly message: string;
143 > readonly stack: string;
144 > readonly noTelemetry: boolean;
145 > readonly code?: string;
146 > readonly cause?: SerializedError;
147 > }
148 >
149 > type ErrorWithCode = Error & {
150 > code: string | undefined;
151 > };
152 >
153 > export function transformErrorForSerialization(error: Error): SerializedError;
154 > export function transformErrorForSerialization(error: any): any;
155 > export function transformErrorForSerialization(error: any): any {
156 if (error instanceof Error) {
157 const { name, message, cause } = error;
172 return error;
173 }
174 > errors.ts
175 > export function transformErrorFromSerialization(data: SerializedError): Error {
176 let error: Error;
177 if (data.noTelemetry) {
191 return error;
192 }
193 > errors.ts
194 > // see https://github.com/v8/v8/wiki/Stack%20Trace%20API#basic-stack-traces
195 > export interface V8CallSite {
196 > getThis(): unknown;
197 > getTypeName(): string | null;
198 > getFunction(): Function | undefined;
199 > getFunctionName(): string | null;
200 > getMethodName(): string | null;
201 > getFileName(): string | null;
202 > getLineNumber(): number | null;
203 > getColumnNumber(): number | null;
204 > getEvalOrigin(): string | undefined;
205 > isToplevel(): boolean;
206 > isEval(): boolean;
207 > isNative(): boolean;
208 > isConstructor(): boolean;
209 > toString(): string;
210 > }
211 >
212 > export const canceledName = 'Canceled';
213 >
214 > /**
215 > * Checks if the given error is a promise in canceled state
216 > */
217 > export function isCancellationError(error: any): boolean {
218 if (error instanceof CancellationError) {
219 return true;
221 return error instanceof Error && error.name === canceledName && error.message === canceledName;
222 }
223 > errors.ts
224 > // !!!IMPORTANT!!!
225 > // Do NOT change this class because it is also used as an API-type.
226 > export class CancellationError extends Error {
227 > constructor() {
228 super(canceledName);
229 this.name = this.message;
230 }
231 > } errors.ts
232 >
233 > export class PendingMigrationError extends Error {
234 >
235 > private static readonly _name = 'PendingMigrationError';
236 >
237 > static is(error: unknown): error is PendingMigrationError {
238 return error instanceof PendingMigrationError || (error instanceof Error && error.name === PendingMigrationError._name);
239 }
240 > errors.ts
241 > constructor(message: string) {
242 super(message);
243 this.name = PendingMigrationError._name;
244 }
245 > } errors.ts
246 >
247 > /**
248 > * @deprecated use {@link CancellationError `new CancellationError()`} instead
249 > */
250 > export function canceled(): Error {
251 const error = new Error(canceledName);
252 error.name = error.message;
253 return error;
254 }
255 > errors.ts
256 > export function illegalArgument(name?: string): Error {
257 if (name) {
258 return new Error(`Illegal argument: ${name}`);
261 }
262 }
263 > errors.ts
264 > export function illegalState(name?: string): Error {
265 if (name) {
266 return new Error(`Illegal state: ${name}`);
269 }
270 }
271 > errors.ts
272 > export class ReadonlyError extends TypeError {
273 > constructor(name?: string) {
274 super(name ? `${name} is read-only and cannot be changed` : 'Cannot change read-only property');
275 }
276 > } errors.ts
277 >
278 > export function getErrorMessage(err: any): string {
279 if (!err) {
280 return 'Error';
291 return String(err);
292 }
293 > errors.ts
294 > export class NotImplementedError extends Error {
295 > constructor(message?: string) {
296 super('NotImplemented');
297 if (message) {
299 }
300 }
301 > } errors.ts
302 >
303 > export class NotSupportedError extends Error {
304 > constructor(message?: string) {
305 super('NotSupported');
306 if (message) {
308 }
309 }
310 > } errors.ts
311 >
312 > export class ExpectedError extends Error {
313 readonly isExpected = true;
314 > } errors.ts
315 >
316 > /**
317 > * Error that when thrown won't be logged in telemetry as an unhandled error.
318 > */
319 > export class ErrorNoTelemetry extends Error {
320 > override readonly name: string;
321 >
322 > constructor(msg?: string) {
323 super(msg);
324 this.name = 'CodeExpectedError';
325 }
326 > errors.ts
327 > public static fromError(err: Error): ErrorNoTelemetry {
328 if (err instanceof ErrorNoTelemetry) {
329 return err;
335 return result;
336 }
337 > errors.ts
338 > public static isErrorNoTelemetry(err: Error): err is ErrorNoTelemetry {
339 return err.name === 'CodeExpectedError';
340 }
341 > } errors.ts
342 >
343 > /**
344 > * This error indicates a bug.
345 > * Do not throw this for invalid user input.
346 > * Only catch this error to recover gracefully from bugs.
347 > */
348 > export class BugIndicatingError extends Error {
349 > constructor(message?: string) {
350 super(message || 'An unexpected bug occurred.');
351 Object.setPrototypeOf(this, BugIndicatingError.prototype);
src/vs/base/common/path.ts 177 covered LOC · 31 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- path.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // NOTE: VSCode's copy of nodejs path library to be usable in common (non-node) namespace
7 > // Copied from: https://github.com/nodejs/node/commits/v22.15.0/lib/path.js
8 > // Excluding: the change that adds primordials
9 > // (https://github.com/nodejs/node/commit/187a862d221dec42fa9a5c4214e7034d9092792f and others)
10 > // Excluding: the change that adds glob matching
11 > // (https://github.com/nodejs/node/commit/57b8b8e18e5e2007114c63b71bf0baedc01936a6)
12 >
13 > /**
14 > * Copyright Joyent, Inc. and other Node contributors.
15 > *
16 > * Permission is hereby granted, free of charge, to any person obtaining a
17 > * copy of this software and associated documentation files (the
18 > * "Software"), to deal in the Software without restriction, including
19 > * without limitation the rights to use, copy, modify, merge, publish,
20 > * distribute, sublicense, and/or sell copies of the Software, and to permit
21 > * persons to whom the Software is furnished to do so, subject to the
22 > * following conditions:
23 > *
24 > * The above copyright notice and this permission notice shall be included
25 > * in all copies or substantial portions of the Software.
26 > *
27 > * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
28 > * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
29 > * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
30 > * NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
31 > * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
32 > * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
33 > * USE OR OTHER DEALINGS IN THE SOFTWARE.
34 > */
35 >
36 > import * as process from './process.js';
37 >
38 > const CHAR_UPPERCASE_A = 65;/* A */
39 > const CHAR_LOWERCASE_A = 97; /* a */
40 > const CHAR_UPPERCASE_Z = 90; /* Z */
41 > const CHAR_LOWERCASE_Z = 122; /* z */
42 > const CHAR_DOT = 46; /* . */
43 > const CHAR_FORWARD_SLASH = 47; /* / */
44 > const CHAR_BACKWARD_SLASH = 92; /* \ */
45 > const CHAR_COLON = 58; /* : */
46 > const CHAR_QUESTION_MARK = 63; /* ? */
47 >
48 > class ErrorInvalidArgType extends Error {
49 > code: 'ERR_INVALID_ARG_TYPE';
50 > constructor(name: string, expected: string, actual: unknown) {
51 // determiner: 'must be' or 'must not be'
52 let determiner;
66 this.code = 'ERR_INVALID_ARG_TYPE';
67 }
68 > } path.ts
69 >
70 function validateObject(pathObject: object, name: string) {
71 if (pathObject === null || typeof pathObject !== 'object') {
73 }
74 }
75 > path.ts
76 function validateString(value: string, name: string) {
77 if (typeof value !== 'string') {
79 }
80 }
81 > path.ts
82 > const platformIsWin32 = (process.platform === 'win32');
83 >
84 function isPathSeparator(code: number | undefined) {
85 return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
86 }
87 > path.ts
88 function isPosixPathSeparator(code: number | undefined) {
89 return code === CHAR_FORWARD_SLASH;
90 }
91 > path.ts
92 function isWindowsDeviceRoot(code: number) {
93 return (code >= CHAR_UPPERCASE_A && code <= CHAR_UPPERCASE_Z) ||
94 (code >= CHAR_LOWERCASE_A && code <= CHAR_LOWERCASE_Z);
95 }
96 > path.ts
97 > // Resolves . and .. elements in a path with directory names
98 function normalizeString(path: string, allowAboveRoot: boolean, separator: string, isPathSeparator: (code?: number) => boolean) {
99 let res = '';
163 return res;
164 }
165 > path.ts
166 function formatExt(ext: string): string {
167 return ext ? `${ext[0] === '.' ? '' : '.'}${ext}` : '';
168 }
169 > path.ts
170 function _format(sep: string, pathObject: ParsedPath) {
171 validateObject(pathObject, 'pathObject');
178 return dir === pathObject.root ? `${dir}${base}` : `${dir}${sep}${base}`;
179 }
180 > path.ts
181 > export interface ParsedPath {
182 > root: string;
183 > dir: string;
184 > base: string;
185 > ext: string;
186 > name: string;
187 > }
188 >
189 > export interface IPath {
190 > normalize(path: string): string;
191 > isAbsolute(path: string): boolean;
192 > join(...paths: string[]): string;
193 > resolve(...pathSegments: string[]): string;
194 > relative(from: string, to: string): string;
195 > dirname(path: string): string;
196 > basename(path: string, suffix?: string): string;
197 > extname(path: string): string;
198 > format(pathObject: ParsedPath): string;
199 > parse(path: string): ParsedPath;
200 > toNamespacedPath(path: string): string;
201 > sep: '\\' | '/';
202 > delimiter: string;
203 > win32: IPath | null;
204 > posix: IPath | null;
205 > }
206 >
207 > export const win32: IPath = {
208 > // path.resolve([from ...], to)
209 > resolve(...pathSegments: string[]): string {
210 let resolvedDevice = '';
211 let resolvedTail = '';
343 `${resolvedDevice}${resolvedTail}` || '.';
344 },
345 > path.ts
346 > normalize(path: string): string {
347 validateString(path, 'path');
348 const len = path.length;
450 return isAbsolute ? `${device}\\${tail}` : `${device}${tail}`;
451 },
452 > path.ts
453 > isAbsolute(path: string): boolean {
454 validateString(path, 'path');
455 const len = path.length;
466 isPathSeparator(path.charCodeAt(2)));
467 },
468 > path.ts
469 > join(...paths: string[]): string {
470 if (paths.length === 0) {
471 return '.';
536 return win32.normalize(joined);
537 },
538 > path.ts
539 >
540 > // It will solve the relative path from `from` to `to`, for instance:
541 > // from = 'C:\\orandea\\test\\aaa'
542 > // to = 'C:\\orandea\\impl\\bbb'
543 > // The output of the function should be: '..\\..\\impl\\bbb'
544 > relative(from: string, to: string): string {
545 validateString(from, 'from');
546 validateString(to, 'to');
699 return toOrig.slice(toStart, toEnd);
700 },
701 > path.ts
702 > toNamespacedPath(path: string): string {
703 // Note: this will *probably* throw somewhere.
704 if (typeof path !== 'string' || path.length === 0) {
730 return resolvedPath;
731 },
732 > path.ts
733 > dirname(path: string): string {
734 validateString(path, 'path');
735 const len = path.length;
818 return path.slice(0, end);
819 },
820 > path.ts
821 > basename(path: string, suffix?: string): string {
822 if (suffix !== undefined) {
823 validateString(suffix, 'suffix');
906 return path.slice(start, end);
907 },
908 > path.ts
909 > extname(path: string): string {
910 validateString(path, 'path');
911 let start = 0;
972 return path.slice(startDot, end);
973 },
974 > path.ts
975 > format: _format.bind(null, '\\'),
976 >
977 > parse(path) {
978 validateString(path, 'path');
979
1126 return ret;
1127 },
1128 > path.ts
1129 > sep: '\\',
1130 > delimiter: ';',
1131 > win32: null,
1132 > posix: null
1133 > };
1134 >
1135 > const posixCwd = (() => {
1136 > if (platformIsWin32) {
1137 // Converts Windows' backslash path separators to POSIX forward slashes
1138 // and truncates any drive indicator
1143 };
1144 }
1145 > path.ts
1146 > // We're already on POSIX, no need for any transformations
1147 > return () => process.cwd();
1148 > })();
1149 >
1150 > export const posix: IPath = {
1151 > // path.resolve([from ...], to)
1152 > resolve(...pathSegments: string[]): string {
1153 let resolvedPath = '';
1154 let resolvedAbsolute = false;
1186 return resolvedPath.length > 0 ? resolvedPath : '.';
1187 },
1188 > path.ts
1189 > normalize(path: string): string {
1190 validateString(path, 'path');
1191
1213 return isAbsolute ? `/${path}` : path;
1214 },
1215 > path.ts
1216 > isAbsolute(path: string): boolean {
1217 validateString(path, 'path');
1218 return path.length > 0 && path.charCodeAt(0) === CHAR_FORWARD_SLASH;
1219 },
1220 > path.ts
1221 > join(...paths: string[]): string {
1222 if (paths.length === 0) {
1223 return '.';
1239 return posix.normalize(path.join('/'));
1240 },
1241 > path.ts
1242 > relative(from: string, to: string): string {
1243 validateString(from, 'from');
1244 validateString(to, 'to');
1312 return `${out}${to.slice(toStart + lastCommonSep)}`;
1313 },
1314 > path.ts
1315 > toNamespacedPath(path: string): string {
1316 // Non-op on posix systems
1317 return path;
1318 },
1319 > path.ts
1320 > dirname(path: string): string {
1321 validateString(path, 'path');
1322 if (path.length === 0) {
1346 return path.slice(0, end);
1347 },
1348 > path.ts
1349 > basename(path: string, suffix?: string): string {
1350 if (suffix !== undefined) {
1351 validateString(suffix, 'suffix');
1426 return path.slice(start, end);
1427 },
1428 > path.ts
1429 > extname(path: string): string {
1430 validateString(path, 'path');
1431 let startDot = -1;
1480 return path.slice(startDot, end);
1481 },
1482 > path.ts
1483 > format: _format.bind(null, '/'),
1484 >
1485 > parse(path: string): ParsedPath {
1486 validateString(path, 'path');
1487
1565 return ret;
1566 },
1567 > path.ts
1568 > sep: '/',
1569 > delimiter: ':',
1570 > win32: null,
1571 > posix: null
1572 > };
1573 >
1574 > posix.win32 = win32.win32 = win32;
1575 > posix.posix = win32.posix = posix;
1576 >
1577 > export const normalize = (platformIsWin32 ? win32.normalize : posix.normalize);
1578 > export const isAbsolute = (platformIsWin32 ? win32.isAbsolute : posix.isAbsolute);
1579 > export const join = (platformIsWin32 ? win32.join : posix.join);
1580 > export const resolve = (platformIsWin32 ? win32.resolve : posix.resolve);
1581 > export const relative = (platformIsWin32 ? win32.relative : posix.relative);
1582 > export const dirname = (platformIsWin32 ? win32.dirname : posix.dirname);
1583 > export const basename = (platformIsWin32 ? win32.basename : posix.basename);
1584 > export const extname = (platformIsWin32 ? win32.extname : posix.extname);
1585 > export const format = (platformIsWin32 ? win32.format : posix.format);
1586 > export const parse = (platformIsWin32 ? win32.parse : posix.parse);
1587 > export const toNamespacedPath = (platformIsWin32 ? win32.toNamespacedPath : posix.toNamespacedPath);
1588 > export const sep = (platformIsWin32 ? win32.sep : posix.sep);
1589 > export const delimiter = (platformIsWin32 ? win32.delimiter : posix.delimiter);
src/vs/platform/agentHost/common/state/protocol/channels-terminal/state.ts 173 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from '../common/state.js';
10 >
11 > // ─── Terminal Types ──────────────────────────────────────────────────────────
12 >
13 > /**
14 > * Lightweight terminal metadata exposed on the root state.
15 > *
16 > * @category Terminal Types
17 > */
18 > export interface TerminalInfo {
19 > /** Terminal URI (subscribable for full terminal state) */
20 > resource: URI;
21 > /** Human-readable terminal title */
22 > title: string;
23 > /** Who currently holds this terminal */
24 > claim: TerminalClaim;
25 > /** Process exit code, if the terminal process has exited */
26 > exitCode?: number;
27 > }
28 >
29 > /**
30 > * Discriminant for terminal claim kinds.
31 > *
32 > * @category Terminal Types
33 > */
34 > export const enum TerminalClaimKind {
35 > Client = 'client',
36 > Session = 'session',
37 > }
38 >
39 > /**
40 > * A terminal claimed by a connected client.
41 > *
42 > * @category Terminal Types
43 > */
44 > export interface TerminalClientClaim {
45 > /** Discriminant */
46 > kind: TerminalClaimKind.Client;
47 > /** The `clientId` of the claiming client */
48 > clientId: string;
49 > }
50 >
51 > /**
52 > * A terminal claimed by a session, optionally scoped to a specific turn or tool call.
53 > *
54 > * @category Terminal Types
55 > */
56 > export interface TerminalSessionClaim {
57 > /** Discriminant */
58 > kind: TerminalClaimKind.Session;
59 > /** Session URI that claimed the terminal */
60 > session: URI;
61 > /** Optional turn identifier within the session */
62 > turnId?: string;
63 > /** Optional tool call identifier within the turn */
64 > toolCallId?: string;
65 > }
66 >
67 > /**
68 > * Describes who currently holds a terminal. A terminal may be claimed by
69 > * either a connected client or a session (e.g. during a tool call).
70 > *
71 > * @category Terminal Types
72 > */
73 > export type TerminalClaim = TerminalClientClaim | TerminalSessionClaim;
74 >
75 > /**
76 > * Full state for a single terminal, loaded when a client subscribes to the terminal's URI.
77 > *
78 > * @category Terminal Types
79 > */
80 > export interface TerminalState {
81 > /** Human-readable terminal title */
82 > title: string;
83 > /** Current working directory of the terminal process */
84 > cwd?: URI;
85 > /** Terminal width in columns */
86 > cols?: number;
87 > /** Terminal height in rows */
88 > rows?: number;
89 > /**
90 > * Typed content parts, replacing the flat `content: string`.
91 > *
92 > * Naive consumers that only need the raw VT stream can reconstruct it with:
93 > * `content.map(p => p.type === 'command' ? p.output : p.value).join('')`
94 > *
95 > * Consumers that need command boundaries can filter by part type.
96 > */
97 > content: TerminalContentPart[];
98 > /** Process exit code, set when the terminal process exits */
99 > exitCode?: number;
100 > /** Who currently holds this terminal */
101 > claim: TerminalClaim;
102 > /**
103 > * Whether this terminal emits `terminal/commandExecuted` and
104 > * `terminal/commandFinished` actions and populates `command`-typed parts.
105 > *
106 > * Clients MUST check this flag before relying on command detection.
107 > * Do NOT use the presence of a `command` part as a feature flag — parts
108 > * are absent in the normal idle state.
109 > */
110 > supportsCommandDetection?: boolean;
111 > /**
112 > * Whether this terminal-style resource is backed by a pseudoterminal.
113 > * When `false`, output is plain text and clients do not need to parse
114 > * VT sequences.
115 > */
116 > isPty?: boolean;
117 > }
118 >
119 > // ─── Terminal Content Parts ──────────────────────────────────────────────────
120 >
121 > /**
122 > * A content part within terminal output.
123 > *
124 > * @category Terminal Types
125 > */
126 > export type TerminalContentPart =
127 > | TerminalUnclassifiedPart
128 > | TerminalCommandPart;
129 >
130 > /**
131 > * Unstructured terminal output — content before, between, or after commands,
132 > * or from terminals that do not support command detection.
133 > *
134 > * @category Terminal Types
135 > */
136 > export interface TerminalUnclassifiedPart {
137 > type: 'unclassified';
138 > /** Accumulated VT output. Appended to by `terminal/data` when no command is executing. */
139 > value: string;
140 > }
141 >
142 > /**
143 > * A single command: its command line and the output it produced.
144 > *
145 > * While `isComplete` is false the command is still executing; `output` grows
146 > * as `terminal/data` actions arrive. At `terminal/commandFinished` the part
147 > * is mutated in-place with `isComplete: true` and the completion metadata.
148 > *
149 > * @category Terminal Types
150 > */
151 > export interface TerminalCommandPart {
152 > type: 'command';
153 > /**
154 > * Stable id matching the `commandId` on the corresponding
155 > * `terminal/commandExecuted` and `terminal/commandFinished` actions.
156 > */
157 > commandId: string;
158 > /** The command line submitted to the shell. */
159 > commandLine: string;
160 > /**
161 > * Accumulated VT output. Appended to by `terminal/data` while `isComplete`
162 > * is false. Shell integration escape sequences are stripped by the server.
163 > */
164 > output: string;
165 > /** Unix timestamp (ms) when execution started, as reported by the server. */
166 > timestamp: number;
167 > /** Whether the command has finished. */
168 > isComplete: boolean;
169 > /** Shell exit code. Set at completion. `undefined` if unknown. */
170 > exitCode?: number;
171 > /** Wall-clock duration in milliseconds. Set at completion. */
172 > durationMs?: number;
173 > }
src/vs/platform/agentHost/common/state/protocol/channels-chat/commands.ts 147 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- commands.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from '../common/state.js';
10 > import type { BaseParams } from '../common/commands.js';
11 > import type { Message, SideChatSelection } from './state.js';
12 >
13 > // ─── createChat ──────────────────────────────────────────────────────────────
14 >
15 > /**
16 > * How a new chat uses its source chat and turn.
17 > */
18 > export const enum ChatSourceKind {
19 > /** Copy source history through the referenced turn into the new chat. */
20 > Fork = 'fork',
21 > /** Supply source context without copying it into the new chat's visible history. */
22 > SideChat = 'sideChat',
23 > }
24 >
25 > /**
26 > * Copies source history through a completed turn into the new chat.
27 > */
28 > export interface ForkChatSource {
29 > /** Discriminant */
30 > kind: ChatSourceKind.Fork;
31 > /** URI of the existing source chat. */
32 > chat: URI;
33 > /**
34 > * Completed turn identifier in the source chat.
35 > *
36 > * Content through this turn is copied into the new chat's visible `turns`.
37 > */
38 > turnId: string;
39 > }
40 >
41 > /**
42 > * Supplies source context to a new side chat without copying it into the side
43 > * chat's visible history.
44 > */
45 > export interface SideChatSource {
46 > /** Discriminant */
47 > kind: ChatSourceKind.SideChat;
48 > /** URI of the existing source chat. */
49 > chat: URI;
50 > /**
51 > * Stable source-turn identifier in the source chat.
52 > *
53 > * Hosts resolve this id against the source chat's current `activeTurn` or its
54 > * retained `turns` when accepting `createChat`. If it names the current
55 > * active turn, the host snapshots the source chat's retained history plus
56 > * that turn's current user message and any partial assistant response already
57 > * available. Once that turn later becomes historical, it is still referenced
58 > * by this same identifier.
59 > */
60 > turnId: string;
61 > /**
62 > * Optional immutable selected-text snapshot to carry into the created side
63 > * chat's origin.
64 > *
65 > * When present, the host MUST snapshot and preserve this exact selection when
66 > * it accepts `createChat`; later source-turn deltas do not alter it.
67 > */
68 > selection?: SideChatSelection;
69 > }
70 >
71 > /**
72 > * Identifies a source chat for a new chat.
73 > */
74 > export type ChatSource =
75 > | ForkChatSource
76 > | SideChatSource;
77 >
78 > /**
79 > * Creates a new chat within a session.
80 > *
81 > * @category Commands
82 > * @method createChat
83 > * @direction Client → Server
84 > * @messageType Request
85 > * @version 1
86 > */
87 > export interface CreateChatParams extends BaseParams {
88 > /** Session URI containing the new chat. */
89 > channel: URI;
90 > /** Chat URI (client-chosen, e.g. `ahp-chat:/<uuid>`). */
91 > chat: URI;
92 > /** Optional initial message for the new chat. */
93 > initialMessage?: Message;
94 > /**
95 > * Optional source chat and source turn.
96 > *
97 > * The source chat MUST belong to this session. Clients MUST only request
98 > * `kind: "fork"` when the selected agent advertises
99 > * `capabilities.multipleChats.fork`, and `kind: "sideChat"` when the
100 > * selected agent advertises `capabilities.multipleChats.sideChat`. Both
101 > * source forms carry a stable top-level `turnId`. Forks target completed
102 > * turns. Side chats also carry a stable `turnId`, which the host resolves
103 > * against the source chat's current active turn or retained history. If it
104 > * resolves to the active turn, the host snapshots the currently available
105 > * partial response when accepting `createChat`. When
106 > * `source.kind === "sideChat"` and `source.selection` is present, the host
107 > * also snapshots and preserves that exact selected text in the created chat's
108 > * origin; any `responsePartId` there is provenance only, not a live range.
109 > */
110 > source?: ChatSource;
111 > /**
112 > * Initial working-directory subset for this chat. Every entry MUST be
113 > * present in the owning session's `workingDirectories`; the server MUST
114 > * reject any entry that is not. When absent, the chat inherits the full
115 > * session set. Forked chats (those whose `source.kind` is `"fork"`) inherit
116 > * the source chat's `workingDirectories`; this field is ignored for forks.
117 > *
118 > * A client MUST NOT supply this field unless the agent advertises
119 > * {@link AgentCapabilities.multipleWorkingDirectories}.
120 > */
121 > workingDirectories?: URI[];
122 > /**
123 > * The chat's primary working directory — the distinguished root this chat is
124 > * centered on. When set, it MUST be one of the chat's effective working
125 > * directories ({@link workingDirectories}, or the session's set when that is
126 > * omitted). A client SHOULD supply this when the agent advertises
127 > * {@link MultipleWorkingDirectoriesCapability.requiresPrimary}; a host MAY
128 > * reject creation that omits it, or fall back to the first of the chat's
129 > * directories. Fixed at creation and reported (read-only) on
130 > * {@link ChatState.primaryWorkingDirectory}. Ignored for forks (a chat whose
131 > * `source.kind` is `"fork"` inherits the source chat's primary).
132 > */
133 > primaryWorkingDirectory?: URI;
134 > }
135 >
136 > // ─── disposeChat ─────────────────────────────────────────────────────────────
137 >
138 > /**
139 > * Disposes a chat and cleans up server-side resources.
140 > *
141 > * @category Commands
142 > * @method disposeChat
143 > * @direction Client → Server
144 > * @messageType Request
145 > * @version 1
146 > */
147 > export interface DisposeChatParams extends BaseParams { }
src/vs/platform/agentHost/common/state/sessionProtocol.ts 146 covered LOC · 8 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- sessionProtocol.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Protocol messages using JSON-RPC 2.0 framing for the sessions process.
7 > // See protocol.md for the full design.
8 > //
9 > // Most types are re-exported from the auto-generated protocol layer.
10 > // This file adds VS Code-specific additions (ISetAuthTokenParams, ProtocolError)
11 > // and backward-compatible aliases.
12 >
13 > // ---- Re-exports from protocol -----------------------------------------------
14 >
15 > // JSON-RPC base types
16 > export type {
17 > JsonRpcErrorResponse,
18 > JsonRpcNotification,
19 > JsonRpcParseErrorResponse,
20 > JsonRpcRequest,
21 > JsonRpcResponse,
22 > JsonRpcSuccessResponse,
23 > } from './protocol/messages.js';
24 >
25 > // Typed message unions
26 > export type {
27 > AhpClientNotification,
28 > AhpNotification,
29 > AhpRequest,
30 > AhpResponse,
31 > AhpServerNotification,
32 > AhpSuccessResponse,
33 > CommandMap,
34 > ClientNotificationMap,
35 > ProtocolMessage,
36 > ServerNotificationMap,
37 > } from './protocol/messages.js';
38 >
39 > // Command params and results
40 > export type {
41 > CreateSessionParams,
42 > DirectoryEntry,
43 > DispatchActionParams,
44 > DisposeSessionParams,
45 > FetchTurnsParams,
46 > FetchTurnsResult,
47 > InitializeParams,
48 > InitializeResult,
49 > ListSessionsParams,
50 > ListSessionsResult,
51 > ReconnectParams,
52 > ReconnectReplayResult,
53 > ReconnectResult,
54 > ReconnectSnapshotResult,
55 > ResourceCopyParams,
56 > ResourceCopyResult,
57 > ResourceDeleteParams,
58 > ResourceDeleteResult,
59 > ResourceListParams,
60 > ResourceListResult,
61 > ResourceMkdirParams,
62 > ResourceMkdirResult,
63 > ResourceMoveParams,
64 > ResourceMoveResult,
65 > ResourceReadParams,
66 > ResourceReadResult,
67 > ResourceResolveParams,
68 > ResourceResolveResult,
69 > ResourceWriteParams,
70 > ResourceWriteResult,
71 > SubscribeParams,
72 > SubscribeResult,
73 > UnsubscribeParams,
74 > } from './protocol/commands.js';
75 >
76 > export type {
77 > CreateResourceWatchParams,
78 > CreateResourceWatchResult,
79 > } from './protocol/channels-resource-watch/commands.js';
80 >
81 > export { ContentEncoding, ReconnectResultType, ResourceType, ResourceWriteMode } from './protocol/commands.js';
82 > export { ResourceChangeType } from './protocol/channels-resource-watch/state.js';
83 > export type { ResourceChange, ResourceWatchState } from './protocol/channels-resource-watch/state.js';
84 >
85 > // Error codes
86 > export { AhpErrorCodes, JsonRpcErrorCodes } from './protocol/errors.js';
87 > export type { AhpErrorCode, JsonRpcErrorCode } from './protocol/errors.js';
88 >
89 > // Snapshot type (re-exported from state). The generated `Snapshot.state`
90 > // union now includes `ChatState`, so per-chat snapshots type-check directly.
91 > import type { Snapshot as ProtocolSnapshot } from './protocol/state.js';
92 > export type IStateSnapshot = ProtocolSnapshot;
93 >
94 > // ---- Backward-compatible error code aliases ---------------------------------
95 >
96 > export const JSON_RPC_PARSE_ERROR = -32700 as const;
97 > export const JSON_RPC_INTERNAL_ERROR = -32603 as const;
98 > export const AHP_SESSION_NOT_FOUND = -32001 as const;
99 > export const AHP_PROVIDER_NOT_FOUND = -32002 as const;
100 > export const AHP_SESSION_ALREADY_EXISTS = -32003 as const;
101 > export const AHP_TURN_IN_PROGRESS = -32004 as const;
102 > export const AHP_UNSUPPORTED_PROTOCOL_VERSION = -32005 as const;
103 > export const AHP_CONTENT_NOT_FOUND = -32006 as const;
104 > export const AHP_AUTH_REQUIRED = -32007 as const;
105 >
106 > // ---- Type guards -----------------------------------------------------------
107 >
108 > import type { AhpRequest, AhpNotification, AhpSuccessResponse, ProtocolMessage, JsonRpcErrorResponse } from './protocol/messages.js';
109 >
110 > export function isJsonRpcRequest(msg: ProtocolMessage): msg is AhpRequest {
111 > return 'method' in msg && 'id' in msg; sessionProtocol.ts
112 > }
114 > export function isJsonRpcNotification(msg: ProtocolMessage): msg is AhpNotification {
115 > return 'method' in msg && !('id' in msg); sessionProtocol.ts
116 > }
118 > export function isJsonRpcResponse(msg: ProtocolMessage): msg is AhpSuccessResponse | JsonRpcErrorResponse {
119 > return 'id' in msg && !('method' in msg); sessionProtocol.ts
120 > }
122 > // ---- VS Code-specific types ------------------------------------------------
123 >
124 > /**
125 > * Error with a JSON-RPC error code for protocol-level failures.
126 > * Optionally carries a `data` payload for structured error details.
127 > */
128 > export class ProtocolError extends Error {
129 > constructor(readonly code: number, message: string, readonly data?: unknown) {
130 super(message);
131 }
133 >
134 > /**
135 > * VS Code-specific extension: set the auth token on the server.
136 > * Not yet part of the official protocol.
137 > */
138 > export interface ISetAuthTokenParams {
139 > readonly token: string;
140 > }
141 >
142 > // ---- Server → Client notification param aliases (backward compat) -----------
143 >
144 > import type { INotification } from './sessionActions.js';
145 >
146 > export interface INotificationBroadcastParams {
147 > readonly notification: INotification;
148 > }
src/vs/base/test/common/virtualScheduling/trace.ts 122 covered LOC · 7 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- trace.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { BugIndicatingError } from '../../../common/errors.js';
7 >
8 > /**
9 > * # Trace — causal-chain attribution for scheduled work
10 > *
11 > * A {@link Trace} is an immutable value identifying a causal chain. Every
12 > * non-root trace carries a `parent`; the head of the chain has no parent.
13 > * Use {@link child} to extend a chain when scheduling follow-up work.
14 > *
15 > * Traces are used to answer "who caused this?" for any virtual event:
16 > * useful for debugging, for per-owner termination, and for attribution in
17 > * error messages.
18 > */
19 > export class Trace {
20 > private static _idCounter = 0;
21 > public readonly id: number = ++Trace._idCounter;
22 > public readonly root: Trace;
23 > public readonly depth: number;
24 >
25 > constructor(
26 > public readonly parent: Trace | undefined,
27 > public readonly label: string,
28 > public readonly stack: string | undefined = undefined,
29 > ) {
30 > this.root = parent?.root ?? this;
31 > this.depth = (parent?.depth ?? -1) + 1;
32 > }
33 >
34 > child(label: string, stack?: string): Trace {
35 return new Trace(this, label, stack);
36 }
37 > trace.ts
38 > /** "#id label ← #id label ← … ← #id label" */
39 > describe(): string {
40 const parts: string[] = [];
41 for (let t: Trace | undefined = this; t; t = t.parent) {
44 return parts.join(' ← ');
45 }
46 > trace.ts
47 > toString(): string { return this.describe(); }
48 > }
49 >
50 > /** Sentinel for "no known causal predecessor". */
51 > export const ROOT_TRACE: Trace = new Trace(undefined, '<root>');
52 >
53 > export function createTraceRoot(label: string, stack?: string): Trace {
54 return new Trace(undefined, label, stack);
55 }
56 > trace.ts
57 > interface Frame {
58 > readonly trace: Trace;
59 > readonly prev: Frame | undefined;
60 > }
61 >
62 > const ROOT_FRAME: Frame = { trace: ROOT_TRACE, prev: undefined };
63 >
64 > /**
65 > * Options for {@link TraceContext.runAsHandler}.
66 > *
67 > * # Why this is a per-call option
68 > *
69 > * `runAsHandler` cannot restore the previous trace synchronously: microtasks
70 > * enqueued by `fn` (including awaited continuations) must observe the new
71 > * trace. So the reset is deferred — but it must fire after the *closure* of
72 > * the microtask queue (the current microtask plus every microtask it
73 > * recursively enqueues), not just one drain.
74 > *
75 > * Per spec, the host doesn't run a macrotask until the microtask queue is
76 > * empty, so any macrotask primitive (`setTimeout(0)`, `setImmediate`, the
77 > * `setTimeout0` shim) achieves this. Letting the *caller* supply the sink
78 > * means:
79 > *
80 > * - the {@link VirtualTimeProcessor} can route the reset through the same
81 > * primitive its embedding uses for its own host hops, eliminating any
82 > * race between the processor's hops and the trace-reset timer;
83 > *
84 > * - production code without a processor can still use a real
85 > * `setTimeout(0)`-based sink and get the same semantics;
86 > *
87 > * - tests can install a deterministic sink (e.g. a hand-driven queue) for
88 > * fully synchronous assertions.
89 > */
90 > export interface RunAsHandlerOptions {
91 > /**
92 > * Sink for the deferred trace-reset.
93 > *
94 > * Must invoke `reset` after the microtask closure that follows the
95 > * `runAsHandler` call returns — i.e. on the next host macrotask.
96 > */
97 > readonly afterMicrotaskClosure: (reset: () => void) => void;
98 > }
99 >
100 > /**
101 > * Holds the mutable "current trace frame" slot. Construct fresh instances
102 > * for test isolation, or use {@link TraceContext.instance} for shared state.
103 > */
104 > export class TraceContext {
105 > public static readonly instance = new TraceContext();
106 >
107 > private _current: Frame = ROOT_FRAME;
108 > private _isHandlerRunning = false;
109 >
110 > currentTrace(): Trace { return this._current.trace; }
111 >
112 > /**
113 > * Install `t` as current for the synchronous duration of `fn`, then
114 > * restore. Nestable. Microtasks enqueued by fn that run after fn returns
115 > * see the *restored* trace — use {@link runAsHandler} when continuation
116 > * inheritance is wanted.
117 > */
118 > runWithTrace<T>(t: Trace, fn: () => T): T {
119 const prev = this._current;
120 const next: Frame = { trace: t, prev };
132 }
133 }
134 > trace.ts
135 > /**
136 > * Install `t` as current and run `fn`. The trace stays current through
137 > * the microtask closure that follows `fn`, so awaited continuations
138 > * inside fn observe `t`. The reset is dispatched via
139 > * `opts.afterMicrotaskClosure`.
140 > *
141 > * Throws on synchronous re-entry: timer callbacks never nest on the
142 > * same JS stack frame, so this only fires for misuse.
143 > */
144 > runAsHandler<T>(t: Trace, fn: () => T, opts: RunAsHandlerOptions): T {
145 if (this._isHandlerRunning) {
146 throw new Error(
165 }
166 }
167 > trace.ts
168 > _resetForTesting(): void {
169 this._current = ROOT_FRAME;
170 this._isHandlerRunning = false;
171 }
172 > } trace.ts
src/vs/platform/instantiation/common/instantiation.ts 121 covered LOC · 9 ranges

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1 > /*--------------------------------------------------------------------------------------------- instantiation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { DisposableStore } from '../../../base/common/lifecycle.js';
7 > import * as descriptors from './descriptors.js';
8 > import { ServiceCollection } from './serviceCollection.js';
9 >
10 > // ------ internal util
11 >
12 > export namespace _util {
13 >
14 > export const serviceIds = new Map<string, ServiceIdentifier<any>>();
15 >
16 > export const DI_TARGET = '$di$target';
17 > export const DI_DEPENDENCIES = '$di$dependencies';
18 >
19 > export function getServiceDependencies(ctor: DI_TARGET_OBJ): { id: ServiceIdentifier<any>; index: number }[] {
20 return ctor[DI_DEPENDENCIES] || [];
21 }
23 > export interface DI_TARGET_OBJ extends Function {
24 > [DI_TARGET]: Function;
25 > [DI_DEPENDENCIES]: { id: ServiceIdentifier<any>; index: number }[];
26 > }
27 > }
28 >
29 > // --- interfaces ------
30 >
31 > export type BrandedService = { _serviceBrand: undefined };
32 >
33 > export interface IConstructorSignature<T, Args extends any[] = []> {
34 > new <Services extends BrandedService[]>(...args: [...Args, ...Services]): T;
35 > }
36 >
37 > export interface ServicesAccessor {
38 > get<T>(id: ServiceIdentifier<T>): T;
39 > }
40 >
41 > export const IInstantiationService = createDecorator<IInstantiationService>('instantiationService');
42 >
43 > /**
44 > * Given a list of arguments as a tuple, attempt to extract the leading, non-service arguments
45 > * to their own tuple.
46 > */
47 > export type GetLeadingNonServiceArgs<TArgs extends any[]> =
48 > TArgs extends [] ? []
49 > : TArgs extends [...infer TFirst, BrandedService] ? GetLeadingNonServiceArgs<TFirst>
50 > : TArgs;
51 >
52 > export interface IInstantiationService {
53 >
54 > readonly _serviceBrand: undefined;
55 >
56 > /**
57 > * Synchronously creates an instance that is denoted by the descriptor
58 > */
59 > createInstance<T>(descriptor: descriptors.SyncDescriptor0<T>): T;
60 > createInstance<Ctor extends new (...args: any[]) => unknown, R extends InstanceType<Ctor>>(ctor: Ctor, ...args: GetLeadingNonServiceArgs<ConstructorParameters<Ctor>>): R;
61 >
62 > /**
63 > * Calls a function with a service accessor.
64 > */
65 > invokeFunction<R, TS extends any[] = []>(fn: (accessor: ServicesAccessor, ...args: TS) => R, ...args: TS): R;
66 >
67 > /**
68 > * Creates a child of this service which inherits all current services
69 > * and adds/overwrites the given services.
70 > *
71 > * NOTE that the returned child is `disposable` and should be disposed when not used
72 > * anymore. This will also dispose all the services that this service has created.
73 > */
74 > createChild(services: ServiceCollection, store?: DisposableStore): IInstantiationService;
75 >
76 > /**
77 > * Disposes this instantiation service.
78 > *
79 > * - Will dispose all services that this instantiation service has created.
80 > * - Will dispose all its children but not its parent.
81 > * - Will NOT dispose services-instances that this service has been created with
82 > * - Will NOT dispose consumer-instances this service has created
83 > */
84 > dispose(): void;
85 > }
86 >
87 >
88 > /**
89 > * Identifies a service of type `T`.
90 > */
91 > export interface ServiceIdentifier<T> {
92 > (...args: any[]): void;
93 > type: T;
94 > }
95 >
96 >
97 > function storeServiceDependency(id: ServiceIdentifier<unknown>, target: Function, index: number): void { instantiation.ts
98 > if ((target as _util.DI_TARGET_OBJ)[_util.DI_TARGET] === target) {
99 (target as _util.DI_TARGET_OBJ)[_util.DI_DEPENDENCIES].push({ id, index });
100 > } else { instantiation.ts
101 > (target as _util.DI_TARGET_OBJ)[_util.DI_DEPENDENCIES] = [{ id, index }];
102 > (target as _util.DI_TARGET_OBJ)[_util.DI_TARGET] = target;
103 > }
104 > }
106 > /**
107 > * The *only* valid way to create a {{ServiceIdentifier}}.
108 > */
109 > export function createDecorator<T>(serviceId: string): ServiceIdentifier<T> {
110 >
111 > if (_util.serviceIds.has(serviceId)) {
112 return _util.serviceIds.get(serviceId)!;
113 }
115 > const id = function (target: Function, key: string, index: number) {
116 > if (arguments.length !== 3) { instantiation.ts
117 throw new Error('@IServiceName-decorator can only be used to decorate a parameter');
118 }
119 > storeServiceDependency(id, target, index); instantiation.ts
120 > } as ServiceIdentifier<T>;
122 > id.toString = () => serviceId;
123 >
124 > _util.serviceIds.set(serviceId, id);
125 > return id;
126 > }
127 >
128 > export function refineServiceDecorator<T1, T extends T1>(serviceIdentifier: ServiceIdentifier<T1>): ServiceIdentifier<T> {
129 return <ServiceIdentifier<T>>serviceIdentifier;
130 }
src/vs/base/common/jsonRpcProtocol.ts 115 covered LOC · 17 ranges

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1 > /*--------------------------------------------------------------------------------------------- jsonRpcProtocol.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { DeferredPromise } from './async.js';
7 > import { CancellationToken, CancellationTokenSource } from './cancellation.js';
8 > import { CancellationError } from './errors.js';
9 > import { Disposable, toDisposable } from './lifecycle.js';
10 > import { hasKey } from './types.js';
11 >
12 > export type JsonRpcId = string | number;
13 >
14 > export interface IJsonRpcError {
15 > code: number;
16 > message: string;
17 > data?: unknown;
18 > }
19 >
20 > export interface IJsonRpcRequest {
21 > jsonrpc: '2.0';
22 > id: JsonRpcId;
23 > method: string;
24 > params?: unknown;
25 > }
26 >
27 > export interface IJsonRpcNotification {
28 > jsonrpc: '2.0';
29 > method: string;
30 > params?: unknown;
31 > }
32 >
33 > export interface IJsonRpcSuccessResponse {
34 > jsonrpc: '2.0';
35 > id: JsonRpcId;
36 > result: unknown;
37 > }
38 >
39 > export interface IJsonRpcErrorResponse {
40 > jsonrpc: '2.0';
41 > id?: JsonRpcId;
42 > error: IJsonRpcError;
43 > }
44 >
45 > export type JsonRpcMessage = IJsonRpcRequest | IJsonRpcNotification | IJsonRpcSuccessResponse | IJsonRpcErrorResponse;
46 > export type JsonRpcResponse = IJsonRpcSuccessResponse | IJsonRpcErrorResponse;
47 >
48 > interface IPendingRequest {
49 > promise: DeferredPromise<unknown>;
50 > cts: CancellationTokenSource;
51 > }
52 >
53 > export interface IJsonRpcProtocolHandlers {
54 > handleRequest?(request: IJsonRpcRequest, token: CancellationToken): Promise<unknown> | unknown;
55 > handleNotification?(notification: IJsonRpcNotification): void;
56 > }
57 >
58 > export class JsonRpcError extends Error {
59 > constructor(
60 public readonly code: number,
61 message: string,
64 super(message);
65 }
67 >
68 > /**
69 > * Generic JSON-RPC 2.0 protocol helper.
70 > */
71 > export class JsonRpcProtocol extends Disposable {
72 > private static readonly ParseError = -32700;
73 > private static readonly MethodNotFound = -32601;
74 > private static readonly InternalError = -32603;
75 >
76 > private _nextRequestId = 1;
77 > private readonly _pendingRequests = new Map<JsonRpcId, IPendingRequest>();
78 >
79 > constructor(
80 private readonly _send: (message: JsonRpcMessage) => void,
81 private readonly _handlers: IJsonRpcProtocolHandlers,
83 super();
84 }
86 > public sendNotification(notification: Omit<IJsonRpcNotification, 'jsonrpc'>): void {
87 this._send({
88 jsonrpc: '2.0',
90 });
91 }
93 > public sendRequest<T = unknown>(request: Omit<IJsonRpcRequest, 'jsonrpc' | 'id'>, token: CancellationToken = CancellationToken.None, onCancel?: (id: JsonRpcId) => void): Promise<T> {
94 if (this._store.isDisposed) {
95 return Promise.reject(new CancellationError());
123 }) as Promise<T>;
124 }
126 > /**
127 > * Handles one or more incoming JSON-RPC messages.
128 > *
129 > * Returns an array of JSON-RPC response objects generated for any incoming
130 > * requests in the message(s). Notifications and responses to our own
131 > * outgoing requests do not produce return values. For batch inputs, the
132 > * returned responses are in the same order as the corresponding requests.
133 > *
134 > * Note: responses are also emitted via the `_send` callback, so callers
135 > * that rely on the return value should not re-send them.
136 > */
137 > public async handleMessage(message: JsonRpcMessage | JsonRpcMessage[]): Promise<JsonRpcResponse[]> {
138 if (Array.isArray(message)) {
139 const replies: JsonRpcResponse[] = [];
150 return reply ? [reply] : [];
151 }
153 > public cancelPendingRequest(id: JsonRpcId): void {
154 const request = this._pendingRequests.get(id);
155 if (request) {
160 }
161 }
163 > public cancelAllRequests(): void {
164 for (const [id, pending] of this._pendingRequests) {
165 this._pendingRequests.delete(id);
169 }
170 }
172 > private async _handleMessage(message: JsonRpcMessage): Promise<JsonRpcResponse | undefined> {
173 if (isJsonRpcResponse(message)) {
174 if (hasKey(message, { result: true })) {
190 return undefined;
191 }
193 > private _handleResult(response: IJsonRpcSuccessResponse): void {
194 const request = this._pendingRequests.get(response.id);
195 if (request) {
199 }
200 }
202 > private _handleError(response: IJsonRpcErrorResponse): void {
203 if (response.id === undefined) {
204 return;
212 }
213 }
215 > private async _handleRequest(request: IJsonRpcRequest): Promise<JsonRpcResponse> {
216 if (!this._handlers.handleRequest) {
217 const response: IJsonRpcErrorResponse = {
268 }
269 }
271 > public override dispose(): void {
272 this.cancelAllRequests();
273 super.dispose();
274 }
276 > public static createParseError(message: string, data?: unknown): IJsonRpcErrorResponse {
277 return {
278 jsonrpc: '2.0',
284 };
285 }
287 >
288 > export function isJsonRpcRequest(message: JsonRpcMessage): message is IJsonRpcRequest {
289 return 'method' in message && 'id' in message && (typeof message.id === 'string' || typeof message.id === 'number');
290 }
292 > export function isJsonRpcResponse(message: JsonRpcMessage): message is IJsonRpcSuccessResponse | IJsonRpcErrorResponse {
293 return hasKey(message, { id: true, result: true }) || hasKey(message, { id: true, error: true });
294 }
296 > export function isJsonRpcNotification(message: JsonRpcMessage): message is IJsonRpcNotification {
297 return hasKey(message, { method: true }) && !hasKey(message, { id: true });
298 }
300 >
301 function isThenable<T>(value: T | Promise<T>): value is Promise<T> {
302 return typeof value === 'object' && value !== null && 'then' in value && typeof value.then === 'function';
src/vs/platform/telemetry/common/telemetry.ts 115 covered LOC · 3 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- telemetry.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { createDecorator } from '../../instantiation/common/instantiation.js';
7 > import { ClassifiedEvent, IGDPRProperty, OmitMetadata, StrictPropertyCheck } from './gdprTypings.js';
8 >
9 > export const ITelemetryService = createDecorator<ITelemetryService>('telemetryService');
10 >
11 > export interface ITelemetryData {
12 > from?: string;
13 > target?: string;
14 > [key: string]: string | unknown | undefined;
15 > }
16 >
17 > export interface ITelemetryService {
18 >
19 > readonly _serviceBrand: undefined;
20 >
21 > readonly telemetryLevel: TelemetryLevel;
22 >
23 > readonly sessionId: string;
24 > readonly machineId: string;
25 > readonly sqmId: string;
26 > readonly devDeviceId: string;
27 > readonly firstSessionDate: string;
28 > readonly msftInternal?: boolean;
29 >
30 > /**
31 > * Whether error telemetry will get sent. If false, `publicLogError` will no-op.
32 > */
33 > readonly sendErrorTelemetry: boolean;
34 >
35 > /**
36 > * @deprecated Use publicLog2 and the typescript GDPR annotation where possible
37 > */
38 > publicLog(eventName: string, data?: ITelemetryData): void;
39 >
40 > /**
41 > * Sends a telemetry event that has been privacy approved.
42 > * Do not call this unless you have been given approval.
43 > */
44 > publicLog2<E extends ClassifiedEvent<OmitMetadata<T>> = never, T extends IGDPRProperty = never>(eventName: string, data?: StrictPropertyCheck<T, E>): void;
45 >
46 > /**
47 > * @deprecated Use publicLogError2 and the typescript GDPR annotation where possible
48 > */
49 > publicLogError(errorEventName: string, data?: ITelemetryData): void;
50 >
51 > publicLogError2<E extends ClassifiedEvent<OmitMetadata<T>> = never, T extends IGDPRProperty = never>(eventName: string, data?: StrictPropertyCheck<T, E>): void;
52 >
53 > setExperimentProperty(name: string, value: string): void;
54 >
55 > /**
56 > * Sets a common property that will be attached to all telemetry events.
57 > * Common properties are added after PII cleaning and cannot be overridden by event data.
58 > */
59 > setCommonProperty(name: string, value: string | boolean): void;
60 > }
61 >
62 > export function telemetryLevelEnabled(service: ITelemetryService, level: TelemetryLevel): boolean {
63 return service.telemetryLevel >= level;
64 }
66 > /**
67 > * Replaces `/` and `\` with `|` in model identifiers to prevent the
68 > * telemetry pipeline from redacting them as file paths.
69 > */
70 > export function escapeModelIdForTelemetry(modelId: string | undefined): string | undefined {
71 return modelId?.replace(/[\/\\]/g, '|');
72 }
74 > export interface ITelemetryEndpoint {
75 > id: string;
76 > aiKey: string;
77 > sendErrorTelemetry: boolean;
78 > }
79 >
80 > export const ICustomEndpointTelemetryService = createDecorator<ICustomEndpointTelemetryService>('customEndpointTelemetryService');
81 >
82 > export interface ICustomEndpointTelemetryService {
83 > readonly _serviceBrand: undefined;
84 >
85 > publicLog(endpoint: ITelemetryEndpoint, eventName: string, data?: ITelemetryData): void;
86 > publicLogError(endpoint: ITelemetryEndpoint, errorEventName: string, data?: ITelemetryData): void;
87 > }
88 >
89 > // Keys
90 > export const currentSessionDateStorageKey = 'telemetry.currentSessionDate';
91 > export const firstSessionDateStorageKey = 'telemetry.firstSessionDate';
92 > export const lastSessionDateStorageKey = 'telemetry.lastSessionDate';
93 > export const machineIdKey = 'telemetry.machineId';
94 > export const sqmIdKey = 'telemetry.sqmId';
95 > export const devDeviceIdKey = 'telemetry.devDeviceId';
96 >
97 > // Configuration Keys
98 > export const TELEMETRY_SECTION_ID = 'telemetry';
99 > export const TELEMETRY_SETTING_ID = 'telemetry.telemetryLevel';
100 > export const TELEMETRY_CRASH_REPORTER_SETTING_ID = 'telemetry.enableCrashReporter';
101 > export const TELEMETRY_OLD_SETTING_ID = 'telemetry.enableTelemetry';
102 >
103 > export const enum TelemetryLevel {
104 > NONE = 0,
105 > CRASH = 1,
106 > ERROR = 2,
107 > USAGE = 3
108 > }
109 >
110 > export const enum TelemetryConfiguration {
111 > OFF = 'off',
112 > CRASH = 'crash',
113 > ERROR = 'error',
114 > ON = 'all'
115 > }
116 >
117 > export interface ICommonProperties {
118 > [name: string]: string | boolean | undefined;
119 > }
src/vs/base/common/observableInternal/observables/derivedImpl.ts 112 covered LOC · 23 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- derivedImpl.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IObservableWithChange, IObserver, IReaderWithStore, ISettableObservable, ITransaction, } from '../base.js';
7 > import { BaseObservable } from './baseObservable.js';
8 > import { DebugNameData } from '../debugName.js';
9 > import { BugIndicatingError, DisposableStore, EqualityComparer, assertFn, onBugIndicatingError } from '../commonFacade/deps.js';
10 > import { getLogger } from '../logging/logging.js';
11 > import { IChangeTracker } from '../changeTracker.js';
12 > import { DebugLocation } from '../debugLocation.js';
13 >
14 > export interface IDerivedReader<TChange = void> extends IReaderWithStore {
15 > /**
16 > * Call this to report a change delta or to force report a change, even if the new value is the same as the old value.
17 > */
18 > reportChange(change: TChange): void;
19 > }
20 >
21 > export const enum DerivedState {
22 > /** Initial state, no previous value, recomputation needed */
23 > initial = 0,
24 >
25 > /**
26 > * A dependency could have changed.
27 > * We need to explicitly ask them if at least one dependency changed.
28 > */
29 > dependenciesMightHaveChanged = 1,
30 >
31 > /**
32 > * A dependency changed and we need to recompute.
33 > * After recomputation, we need to check the previous value to see if we changed as well.
34 > */
35 > stale = 2,
36 >
37 > /**
38 > * No change reported, our cached value is up to date.
39 > */
40 > upToDate = 3,
41 > }
42 >
43 function derivedStateToString(state: DerivedState): string {
44 switch (state) {
50 }
51 }
53 > export class Derived<T, TChangeSummary = any, TChange = void> extends BaseObservable<T, TChange> implements IDerivedReader<TChange>, IObserver {
54 > private _state = DerivedState.initial;
55 > private _value: T | undefined = undefined;
56 > private _updateCount = 0;
57 > private _dependencies = new Set<IObservable<any>>();
58 > private _dependenciesToBeRemoved = new Set<IObservable<any>>();
59 > private _changeSummary: TChangeSummary | undefined = undefined;
60 > private _isUpdating = false;
61 > private _isComputing = false;
62 > private _didReportChange = false;
63 > private _isInBeforeUpdate = false;
64 > private _isReaderValid = false;
65 > private _store: DisposableStore | undefined = undefined;
66 > private _delayedStore: DisposableStore | undefined = undefined;
67 > private _removedObserverToCallEndUpdateOn: Set<IObserver> | null = null;
68 >
69 > public override get debugName(): string {
70 > return this._debugNameData.getDebugName(this) ?? '(anonymous)';
71 > }
72 >
73 > constructor(
74 public readonly _debugNameData: DebugNameData,
75 public readonly _computeFn: (reader: IDerivedReader<TChange>, changeSummary: TChangeSummary) => T,
82 this._changeSummary = this._changeTracker?.createChangeSummary(undefined);
83 }
85 > protected override onLastObserverRemoved(): void {
86 /**
87 * We are not tracking changes anymore, thus we have to assume
107 this._handleLastObserverRemoved?.();
108 }
110 > public override get(): T {
111 const checkEnabled = false; // TODO set to true
112 if (this._isComputing && checkEnabled) {
164 }
165 }
167 > private _recompute() {
168 let didChange = false;
169 this._isComputing = true;
238 }
239 }
241 > public override toString(): string {
242 return `LazyDerived<${this.debugName}>`;
243 }
245 > // IObserver Implementation
246 >
247 > public beginUpdate<T>(_observable: IObservable<T>): void {
248 if (this._isUpdating) {
249 throw new BugIndicatingError('Cyclic deriveds are not supported yet!');
272 }
273 }
275 > public endUpdate<T>(_observable: IObservable<T>): void {
276 this._updateCount--;
277 if (this._updateCount === 0) {
291 assertFn(() => this._updateCount >= 0);
292 }
294 > public handlePossibleChange<T>(observable: IObservable<T>): void {
295 // In all other states, observers already know that we might have changed.
296 if (this._state === DerivedState.upToDate && this._dependencies.has(observable) && !this._dependenciesToBeRemoved.has(observable)) {
301 }
302 }
304 > public handleChange<T, TChange>(observable: IObservableWithChange<T, TChange>, change: TChange): void {
305 if (this._dependencies.has(observable) && !this._dependenciesToBeRemoved.has(observable) || this._isInBeforeUpdate) {
306 getLogger()?.handleDerivedDependencyChanged(this, observable, change);
329 }
330 }
332 > // IReader Implementation
333 >
334 > private _ensureReaderValid(): void {
335 if (!this._isReaderValid) { throw new BugIndicatingError('The reader object cannot be used outside its compute function!'); }
336 }
338 > public readObservable<T>(observable: IObservable<T>): T {
339 this._ensureReaderValid();
340
348 return value;
349 }
351 > public reportChange(change: TChange): void {
352 this._ensureReaderValid();
353
358 }
359 }
361 > get store(): DisposableStore {
362 this._ensureReaderValid();
363
367 return this._store;
368 }
370 > get delayedStore(): DisposableStore {
371 this._ensureReaderValid();
372
376 return this._delayedStore;
377 }
379 > public override addObserver(observer: IObserver): void {
380 const shouldCallBeginUpdate = !this._observers.has(observer) && this._updateCount > 0;
381 super.addObserver(observer);
387 }
388 }
390 > public override removeObserver(observer: IObserver): void {
391 if (this._observers.has(observer) && this._updateCount > 0) {
392 if (!this._removedObserverToCallEndUpdateOn) {
397 super.removeObserver(observer);
398 }
400 > public debugGetState() {
401 return {
402 state: this._state,
408 };
409 }
411 > public debugSetValue(newValue: unknown) {
412 // eslint-disable-next-line local/code-no-any-casts
413 this._value = newValue as any;
414 }
416 > public debugRecompute(): void {
417 this.beginUpdate(this);
418 try {
426 }
427 }
429 > public setValue(newValue: T, tx: ITransaction, change: TChange): void {
430 this._value = newValue;
431 const observers = this._observers;
435 }
436 }
437 > } derivedImpl.ts
438 >
439 >
440 > export class DerivedWithSetter<T, TChangeSummary = any, TOutChanges = any> extends Derived<T, TChangeSummary, TOutChanges> implements ISettableObservable<T, TOutChanges> {
441 > constructor(
442 debugNameData: DebugNameData,
443 computeFn: (reader: IDerivedReader<TOutChanges>, changeSummary: TChangeSummary) => T,
src/vs/base/common/equals.ts 108 covered LOC · 14 ranges

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1 > /*--------------------------------------------------------------------------------------------- equals.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import * as arrays from './arrays.js';
7 >
8 > /*
9 > * Each function in this file which offers an equality comparison, has an accompanying
10 > * `*C` variant which returns an EqualityComparer function.
11 > *
12 > * The `*C` variant allows for easier composition of equality comparers and improved type-inference.
13 > */
14 >
15 >
16 > /** Represents a function that decides if two values are equal. */
17 > export type EqualityComparer<T> = (a: T, b: T) => boolean;
18 >
19 > export interface IEquatable<T> {
20 > equals(other: T): boolean;
21 > }
22 >
23 > /**
24 > * Compares two items for equality using strict equality.
25 > */
26 > export function strictEquals<T>(a: T, b: T): boolean {
27 return a === b;
28 }
29 > equals.ts
30 > export function strictEqualsC<T>(): EqualityComparer<T> {
31 return (a, b) => a === b;
32 }
33 > equals.ts
34 > /**
35 > * Checks if the items of two arrays are equal.
36 > * By default, strict equality is used to compare elements, but a custom equality comparer can be provided.
37 > */
38 > export function arrayEquals<T>(a: readonly T[], b: readonly T[], itemEquals?: EqualityComparer<T>): boolean {
39 return arrays.equals(a, b, itemEquals ?? strictEquals);
40 }
41 > equals.ts
42 > /**
43 > * Checks if the items of two arrays are equal.
44 > * By default, strict equality is used to compare elements, but a custom equality comparer can be provided.
45 > */
46 > export function arrayEqualsC<T>(itemEquals?: EqualityComparer<T>): EqualityComparer<readonly T[]> {
47 return (a, b) => arrays.equals(a, b, itemEquals ?? strictEquals);
48 }
49 > equals.ts
50 > /**
51 > * Drills into arrays (items ordered) and objects (keys unordered) and uses strict equality on everything else.
52 > */
53 > export function structuralEquals<T>(a: T, b: T): boolean {
54 if (a === b) {
55 return true;
95 return false;
96 }
97 > equals.ts
98 > export function structuralEqualsC<T>(): EqualityComparer<T> {
99 return (a, b) => structuralEquals(a, b);
100 }
101 > equals.ts
102 > /**
103 > * `getStructuralKey(a) === getStructuralKey(b) <=> structuralEquals(a, b)`
104 > * (assuming that a and b are not cyclic structures and nothing extends globalThis Array).
105 > */
106 > export function getStructuralKey(t: unknown): string {
107 return JSON.stringify(toNormalizedJsonStructure(t));
108 }
109 > equals.ts
110 > let objectId = 0;
111 > const objIds = new WeakMap<object, number>();
112 >
113 function toNormalizedJsonStructure(t: unknown): unknown {
114 if (Array.isArray(t)) {
136 return t;
137 }
138 > equals.ts
139 >
140 > /**
141 > * Two items are considered equal, if their stringified representations are equal.
142 > */
143 > export function jsonStringifyEquals<T>(a: T, b: T): boolean {
144 return JSON.stringify(a) === JSON.stringify(b);
145 }
146 > equals.ts
147 > /**
148 > * Two items are considered equal, if their stringified representations are equal.
149 > */
150 > export function jsonStringifyEqualsC<T>(): EqualityComparer<T> {
151 return (a, b) => JSON.stringify(a) === JSON.stringify(b);
152 }
153 > equals.ts
154 > /**
155 > * Uses `item.equals(other)` to determine equality.
156 > */
157 > export function thisEqualsC<T extends IEquatable<T>>(): EqualityComparer<T> {
158 return (a, b) => a.equals(b);
159 }
160 > equals.ts
161 > /**
162 > * Checks if two items are both null or undefined, or are equal according to the provided equality comparer.
163 > */
164 > export function equalsIfDefined<T>(v1: T | undefined | null, v2: T | undefined | null, equals: EqualityComparer<T>): boolean {
165 if (v1 === undefined || v1 === null || v2 === undefined || v2 === null) {
166 return v2 === v1;
168 return equals(v1, v2);
169 }
170 > equals.ts
171 > /**
172 > * Returns an equality comparer that checks if two items are both null or undefined, or are equal according to the provided equality comparer.
173 > */
174 > export function equalsIfDefinedC<T>(equals: EqualityComparer<T>): EqualityComparer<T | undefined | null> {
175 return (v1, v2) => {
176 if (v1 === undefined || v1 === null || v2 === undefined || v2 === null) {
180 };
181 }
182 > equals.ts
183 > /**
184 > * Each function in this file which offers an equality comparison, has an accompanying
185 > * `*C` variant which returns an EqualityComparer function.
186 > *
187 > * The `*C` variant allows for easier composition of equality comparers and improved type-inference.
188 > */
189 > export namespace equals {
190 > export const strict = strictEquals;
191 > export const strictC = strictEqualsC;
192 >
193 > export const array = arrayEquals;
194 > export const arrayC = arrayEqualsC;
195 >
196 > export const structural = structuralEquals;
197 > export const structuralC = structuralEqualsC;
198 >
199 > export const jsonStringify = jsonStringifyEquals;
200 > export const jsonStringifyC = jsonStringifyEqualsC;
201 >
202 > export const thisC = thisEqualsC;
203 >
204 > export const ifDefined = equalsIfDefined;
205 > export const ifDefinedC = equalsIfDefinedC;
206 > }
src/vs/platform/agentHost/common/state/protocol/channels-changeset/commands.ts 105 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- commands.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI, ContentRef, StringOrMarkdown, TextRange } from '../common/state.js';
10 > import type { BaseParams } from '../common/commands.js';
11 >
12 > // ─── invokeChangesetOperation ────────────────────────────────────────────────
13 >
14 > /**
15 > * Discriminator for {@link ChangesetOperationTarget}. Mirrors the
16 > * non-`Changeset` members of {@link ChangesetOperationScope} — the
17 > * `Changeset` scope has no target.
18 > *
19 > * @category Commands
20 > */
21 > export const enum ChangesetOperationTargetKind {
22 > /** Operation acts on a single file. */
23 > Resource = 'resource',
24 > /** Operation acts on a line range within a single file. */
25 > Range = 'range',
26 > }
27 >
28 > /**
29 > * Identifies the file or range a {@link ChangesetOperation} should act on.
30 > *
31 > * The `kind` MUST match one of the operation's declared
32 > * {@link ChangesetOperation.scopes}.
33 > *
34 > * @category Commands
35 > */
36 > export type ChangesetOperationTarget =
37 > | { kind: ChangesetOperationTargetKind.Resource; resource: URI; side?: 'before' | 'after' }
38 > | { kind: ChangesetOperationTargetKind.Range; resource: URI; side?: 'before' | 'after'; range: TextRange };
39 >
40 > /**
41 > * Optional follow-up surfaced by the server after an operation completes —
42 > * a {@link ContentRef} the client can fetch and display.
43 > *
44 > * Set `external` to `true` to open the content in the user's preferred
45 > * external handler (e.g. browser); otherwise the client is expected to
46 > * surface it inline.
47 > *
48 > * @category Commands
49 > */
50 > export interface ChangesetOperationFollowUp {
51 > content: ContentRef;
52 > /** When `true`, open in an external handler rather than inline. */
53 > external?: boolean;
54 > }
55 >
56 > /**
57 > * Invokes a server-defined {@link ChangesetOperation} against a changeset,
58 > * a single file, or a line range.
59 > *
60 > * The server validates that `operationId` exists in the changeset's
61 > * current `operations` list and that the requested `target.kind` is
62 > * contained in the operation's `scopes`. Invalid combinations result in a
63 > * JSON-RPC error.
64 > *
65 > * State changes resulting from invocation flow back through the normal
66 > * `changeset/*` action stream on the relevant changeset URIs. Clients
67 > * SHOULD NOT synthesise local optimistic changes for invocations unless
68 > * the server explicitly opts in via a future capability.
69 > *
70 > * @category Commands
71 > * @method invokeChangesetOperation
72 > * @direction Client → Server
73 > * @messageType Request
74 > * @version 2
75 > */
76 > export interface InvokeChangesetOperationParams extends BaseParams {
77 > /** The expanded changeset URI. */
78 > channel: URI;
79 > /** Matches {@link ChangesetOperation.id} from the changeset's `operations` list. */
80 > operationId: string;
81 > /**
82 > * Target of the operation. Required iff the chosen scope is
83 > * `'resource'` or `'range'`. Omit for changeset-scoped operations.
84 > */
85 > target?: ChangesetOperationTarget;
86 > }
87 >
88 > /**
89 > * Result of the {@link InvokeChangesetOperationParams | `invokeChangesetOperation`}
90 > * command.
91 > *
92 > * Success is implicit: the server returns this result when it accepted
93 > * the operation. Failure is signalled by rejecting the JSON-RPC request
94 > * with an appropriate error code, not by any field on this result. The
95 > * operation MAY still produce subsequent failure feedback through the
96 > * {@link ChangesetStatusChangedAction | `changeset/statusChanged`} stream.
97 > *
98 > * @category Commands
99 > */
100 > export interface InvokeChangesetOperationResult {
101 > /** Optional human-readable message describing the result. */
102 > message?: StringOrMarkdown;
103 > /** Optional follow-up: a URI to open (e.g. a PR), a content ref, etc. */
104 > followUp?: ChangesetOperationFollowUp;
105 > }
src/vs/base/common/observableInternal/observables/baseObservable.ts 104 covered LOC · 17 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- baseObservable.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservableWithChange, IObserver, IReader, IObservable } from '../base.js';
7 > import { DisposableStore } from '../commonFacade/deps.js';
8 > import { DebugLocation } from '../debugLocation.js';
9 > import { DebugOwner, getFunctionName } from '../debugName.js';
10 > import { debugGetObservableGraph } from '../logging/debugGetDependencyGraph.js';
11 > import { getLogger, logObservable } from '../logging/logging.js';
12 > import type { keepObserved, recomputeInitiallyAndOnChange } from '../utils/utils.js';
13 > import { derivedOpts } from './derived.js';
14 >
15 > let _derived: typeof derivedOpts;
16 > /**
17 > * @internal
18 > * This is to allow splitting files.
19 > */
20 > export function _setDerivedOpts(derived: typeof _derived) {
21 > _derived = derived;
22 > }
23 >
24 > let _recomputeInitiallyAndOnChange: typeof recomputeInitiallyAndOnChange;
25 > export function _setRecomputeInitiallyAndOnChange(recomputeInitiallyAndOnChange: typeof _recomputeInitiallyAndOnChange) {
26 > _recomputeInitiallyAndOnChange = recomputeInitiallyAndOnChange;
27 > }
28 >
29 > let _keepObserved: typeof keepObserved;
30 > export function _setKeepObserved(keepObserved: typeof _keepObserved) {
31 > _keepObserved = keepObserved;
32 > }
33 >
34 > let _debugGetObservableGraph: typeof debugGetObservableGraph;
35 > export function _setDebugGetObservableGraph(debugGetObservableGraph: typeof _debugGetObservableGraph) {
36 > _debugGetObservableGraph = debugGetObservableGraph;
37 > }
38 >
39 > export abstract class ConvenientObservable<T, TChange> implements IObservableWithChange<T, TChange> {
40 > get TChange(): TChange { return null!; }
41 >
42 > public abstract get(): T;
43 >
44 > public reportChanges(): void {
45 this.get();
46 }
48 > public abstract addObserver(observer: IObserver): void;
49 > public abstract removeObserver(observer: IObserver): void;
50 >
51 > /** @sealed */
52 > public read(reader: IReader | undefined): T {
53 if (reader) {
54 return reader.readObservable(this);
57 }
58 }
60 > /** @sealed */
61 > public map<TNew>(fn: (value: T, reader: IReader) => TNew): IObservable<TNew>;
62 > public map<TNew>(owner: DebugOwner, fn: (value: T, reader: IReader) => TNew): IObservable<TNew>;
63 > public map<TNew>(fnOrOwner: DebugOwner | ((value: T, reader: IReader) => TNew), fnOrUndefined?: (value: T, reader: IReader) => TNew, debugLocation: DebugLocation = DebugLocation.ofCaller()): IObservable<TNew> {
64 const owner = fnOrUndefined === undefined ? undefined : fnOrOwner as DebugOwner;
65 const fn = fnOrUndefined === undefined ? fnOrOwner as (value: T, reader: IReader) => TNew : fnOrUndefined;
91 );
92 }
94 > public abstract log(): IObservableWithChange<T, TChange>;
95 >
96 > /**
97 > * @sealed
98 > * Converts an observable of an observable value into a direct observable of the value.
99 > */
100 > public flatten<TNew>(this: IObservable<IObservableWithChange<TNew, any>>): IObservable<TNew> {
101 return _derived(
102 {
107 );
108 }
110 > public recomputeInitiallyAndOnChange(store: DisposableStore, handleValue?: (value: T) => void): IObservable<T> {
111 store.add(_recomputeInitiallyAndOnChange!(this, handleValue));
112 return this;
113 }
115 > /**
116 > * Ensures that this observable is observed. This keeps the cache alive.
117 > * However, in case of deriveds, it does not force eager evaluation (only when the value is read/get).
118 > * Use `recomputeInitiallyAndOnChange` for eager evaluation.
119 > */
120 > public keepObserved(store: DisposableStore): IObservable<T> {
121 store.add(_keepObserved!(this));
122 return this;
123 }
125 > public abstract get debugName(): string;
126 >
127 > protected get debugValue() {
128 return this.get();
129 }
131 > get debug(): DebugHelper {
132 return new DebugHelper(this);
133 }
135 >
136 > class DebugHelper {
137 > constructor(public readonly observable: IObservableWithChange<any, any>) {
138 }
140 > getDependencyGraph(): string {
141 return _debugGetObservableGraph(this.observable, { type: 'dependencies' });
142 }
144 > getObserverGraph(): string {
145 return _debugGetObservableGraph(this.observable, { type: 'observers' });
146 }
148 >
149 > export abstract class BaseObservable<T, TChange = void> extends ConvenientObservable<T, TChange> {
150 > protected readonly _observers = new Set<IObserver>();
151 >
152 > constructor(debugLocation: DebugLocation) {
153 super();
154 getLogger()?.handleObservableCreated(this, debugLocation);
155 }
157 > public addObserver(observer: IObserver): void {
158 const len = this._observers.size;
159 this._observers.add(observer);
165 }
166 }
168 > public removeObserver(observer: IObserver): void {
169 const deleted = this._observers.delete(observer);
170 if (deleted && this._observers.size === 0) {
175 }
176 }
178 > protected onFirstObserverAdded(): void { }
179 > protected onLastObserverRemoved(): void { }
180 >
181 > public override log(): IObservableWithChange<T, TChange> {
182 const hadLogger = !!getLogger();
183 logObservable(this);
src/vs/base/common/observableInternal/utils/promise.ts 104 covered LOC · 12 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- promise.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 > import { DisposableStore } from '../../lifecycle.js';
6 > import { IObservable, ISettableObservable } from '../base.js';
7 > import { autorun } from '../reactions/autorun.js';
8 > import { transaction } from '../transaction.js';
9 > import { derived } from '../observables/derived.js';
10 > import { observableValue } from '../observables/observableValue.js';
11 >
12 > export class ObservableLazy<T> {
13 > private readonly _value = observableValue<T | undefined>(this, undefined);
14 >
15 > /**
16 > * The cached value.
17 > * Does not force a computation of the value.
18 > */
19 > public get cachedValue(): IObservable<T | undefined> { return this._value; }
20 >
21 > constructor(private readonly _computeValue: () => T) {
22 }
23 > promise.ts
24 > /**
25 > * Returns the cached value.
26 > * Computes the value if the value has not been cached yet.
27 > */
28 > public getValue(): T {
29 let v = this._value.get();
30 if (!v) {
34 return v;
35 }
36 > } promise.ts
37 >
38 > /**
39 > * A promise whose state is observable.
40 > */
41 > export class ObservablePromise<T> {
42 > public static fromFn<T>(fn: () => Promise<T>): ObservablePromise<T> {
43 > return new ObservablePromise(fn());
44 > }
45 >
46 > public static resolved<T>(value: T): ObservablePromise<T> {
47 return new ObservablePromise(Promise.resolve(value));
48 }
49 > promise.ts
50 > private readonly _value = observableValue<PromiseResult<T> | undefined>(this, undefined);
51 >
52 > /**
53 > * The promise that this object wraps.
54 > */
55 > public readonly promise: Promise<T>;
56 >
57 > /**
58 > * The current state of the promise.
59 > * Is `undefined` if the promise didn't resolve yet.
60 > */
61 > public readonly promiseResult: IObservable<PromiseResult<T> | undefined> = this._value;
62 >
63 > constructor(promise: Promise<T>) {
64 this.promise = promise.then(value => {
65 transaction(tx => {
76 });
77 }
78 > promise.ts
79 > public readonly resolvedValue = derived(this, reader => {
80 > const result = this.promiseResult.read(reader); promise.ts
81 > if (!result) {
82 > return undefined;
83 > }
84 > return result.getDataOrThrow();
85 > }); promise.ts
86 > }
87 >
88 > export class PromiseResult<T> {
89 > constructor(
90 /**
91 * The value of the resolved promise.
101 ) {
102 }
103 > promise.ts
104 > /**
105 > * Returns the value if the promise resolved, otherwise throws the error.
106 > */
107 > public getDataOrThrow(): T {
108 if (this.error) {
109 throw this.error;
111 return this.data!;
112 }
113 > } promise.ts
114 >
115 > /**
116 > * Tracks a changing {@link ObservablePromise}, exposing the last resolved value
117 > * and whether a newer promise is still pending.
118 > */
119 > export class ObservableResolvedPromise<T> {
120 > private readonly _lastResolved: ISettableObservable<T>;
121 > public readonly lastResolved: IObservable<T>;
122 >
123 > private readonly _isResolving = observableValue<boolean>(this, false);
124 > public readonly isResolving: IObservable<boolean> = this._isResolving;
125 >
126 > private _runningPromise: ObservablePromise<T> | undefined;
127 >
128 > constructor(
129 source: IObservable<ObservablePromise<T>>,
130 initialValue: T,
149 }));
150 }
151 > } promise.ts
152 >
153 > /**
154 > * A lazy promise whose state is observable.
155 > */
156 > export class ObservableLazyPromise<T> {
157 > private readonly _lazyValue = new ObservableLazy(() => new ObservablePromise(this._computePromise()));
158 >
159 > /**
160 > * Does not enforce evaluation of the promise compute function.
161 > * Is undefined if the promise has not been computed yet.
162 > */
163 > public readonly cachedPromiseResult = derived(this, reader => this._lazyValue.cachedValue.read(reader)?.promiseResult.read(reader));
164 >
165 > constructor(private readonly _computePromise: () => Promise<T>) {
166 }
167 > promise.ts
168 > public getPromise(): Promise<T> {
169 return this._lazyValue.getValue().promise;
170 }
171 > } promise.ts
src/vs/platform/agentHost/common/agentHostUri.ts 102 covered LOC · 5 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentHostUri.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { decodeBase64, encodeBase64, VSBuffer } from '../../../base/common/buffer.js';
7 > import { Schemas } from '../../../base/common/network.js';
8 > import { URI } from '../../../base/common/uri.js';
9 > import type { ResourceLabelFormatter } from '../../label/common/label.js';
10 >
11 > /**
12 > * The URI scheme for accessing files on a remote agent host.
13 > *
14 > * The original file path is kept verbatim as the URI path so resource
15 > * labels, language detection, and path comparisons see a real path. The
16 > * original scheme, authority, and query are carried in a single
17 > * url-safe-base64 `_ah` query parameter so any remote resource can be
18 > * represented without assuming `file://`:
19 > *
20 > * ```
21 > * vscode-agent-host://[connectionAuthority][originalPath]?_ah=[meta]#[originalFragment]
22 > * ```
23 > *
24 > * where `meta` is {@link IAgentHostUriMeta} as url-safe-base64-encoded
25 > * JSON. Encoding the metadata as a single opaque parameter (rather than
26 > * raw JSON) keeps the query a well-formed parameter list, so unrelated
27 > * query parameters such as `vscodeLinkType` can coexist on the wrapped
28 > * URI without corrupting the metadata. For example,
29 > * `file:///home/user/foo.ts` on remote `my-server` becomes:
30 > * ```
31 > * vscode-agent-host://my-server/home/user/foo.ts?_ah=eyJzY2hlbWUiOiJmaWxlIn0
32 > * ```
33 > */
34 > export const AGENT_HOST_SCHEME = 'vscode-agent-host';
35 >
36 > /**
37 > * Query parameter that carries the {@link IAgentHostUriMeta} payload.
38 > */
39 > const AGENT_HOST_META_PARAM = '_ah';
40 >
41 > /**
42 > * Metadata carried in the query of a {@link AGENT_HOST_SCHEME} URI so the
43 > * original URI can be reconstructed while keeping the path label-friendly.
44 > */
45 > interface IAgentHostUriMeta {
46 > /** Original URI scheme (e.g. `file`, `git-blob`). */
47 > readonly scheme: string;
48 > /** Original URI authority, omitted when empty. */
49 > readonly authority?: string;
50 > /** Original URI query, omitted when empty. */
51 > readonly query?: string;
52 > }
53 >
54 > /**
55 > * Wraps a remote URI into a {@link AGENT_HOST_SCHEME} URI that can be
56 > * resolved through the agent host filesystem provider.
57 > *
58 > * @param originalUri The URI on the remote (e.g. `file:///path` or
59 > * `agenthost-content:///sessionId/...`)
60 > * @param connectionAuthority The sanitized connection identifier used as
61 > * the URI authority (from {@link agentHostAuthority}).
62 > */
63 > export function toAgentHostUri(originalUri: URI, connectionAuthority: string): URI {
64 if (connectionAuthority === 'local' && originalUri.scheme === Schemas.file) {
65 return originalUri;
81 });
82 }
84 > /**
85 > * Extracts the original URI from a {@link AGENT_HOST_SCHEME} URI.
86 > *
87 > * The inverse of {@link toAgentHostUri}.
88 > */
89 > export function fromAgentHostUri(agentHostUri: URI): URI {
90 if (agentHostUri.scheme !== AGENT_HOST_SCHEME) {
91 return agentHostUri;
116 });
117 }
119 > /**
120 > * Strips the redundant `ws://` scheme from an address. The transport layer
121 > * already defaults to `ws://`, so only `wss://` needs to be preserved.
122 > */
123 > export function normalizeRemoteAgentHostAddress(address: string): string {
124 if (address.startsWith('ws://')) {
125 return address.slice('ws://'.length);
127 return address;
128 }
130 > /**
131 > * Encode a remote address into an identifier that is safe for use in
132 > * both URI schemes and URI authorities, and is collision-free.
133 > *
134 > * Three tiers:
135 > * 1. Purely alphanumeric addresses are returned as-is.
136 > * 2. "Normal" addresses containing only `[a-zA-Z0-9.:-]` get colons
137 > * replaced with `__` (double underscore) for human readability.
138 > * Addresses containing `_` skip this tier to keep the encoding
139 > * collision-free (`__` can only appear from colon replacement).
140 > * 3. Everything else is url-safe base64-encoded with a `b64-` prefix.
141 > */
142 > export function agentHostAuthority(address: string): string {
143 const normalized = normalizeRemoteAgentHostAddress(address);
144 if (/^[a-zA-Z0-9]+$/.test(normalized)) {
150 return `b64-${encodeBase64(VSBuffer.fromString(normalized), false, true)}`;
151 }
153 > /**
154 > * Label formatter for {@link AGENT_HOST_SCHEME} URIs. The URI path is
155 > * already the original resource path, so the label is the path verbatim.
156 > */
157 > export const AGENT_HOST_LABEL_FORMATTER: ResourceLabelFormatter = {
158 > scheme: AGENT_HOST_SCHEME,
159 > formatting: {
160 > label: '${path}',
161 > separator: '/',
162 > },
163 > };
src/vs/base/common/arraysFind.ts 95 covered LOC · 16 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- arraysFind.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Comparator } from './arrays.js';
7 >
8 > export function findLast<T, R extends T>(array: readonly T[], predicate: (item: T, index: number) => item is R, fromIndex?: number): R | undefined;
9 > export function findLast<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex?: number): T | undefined;
10 > export function findLast<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex = array.length - 1): T | undefined {
11 const idx = findLastIdx(array, predicate, fromIndex);
12 if (idx === -1) {
15 return array[idx];
16 }
18 > export function findLastIdx<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex = array.length - 1): number {
19 for (let i = fromIndex; i >= 0; i--) {
20 const element = array[i];
27 return -1;
28 }
30 > export function findFirst<T, R extends T>(array: readonly T[], predicate: (item: T, index: number) => item is R, fromIndex?: number): R | undefined;
31 > export function findFirst<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex?: number): T | undefined;
32 > export function findFirst<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex = 0): T | undefined {
33 const idx = findFirstIdx(array, predicate, fromIndex);
34 if (idx === -1) {
37 return array[idx];
38 }
40 > export function findFirstIdx<T>(array: readonly T[], predicate: (item: T, index: number) => unknown, fromIndex = 0): number {
41 for (let i = fromIndex; i < array.length; i++) {
42 const element = array[i];
49 return -1;
50 }
52 > /**
53 > * Finds the last item where predicate is true using binary search.
54 > * `predicate` must be monotonous, i.e. `arr.map(predicate)` must be like `[true, ..., true, false, ..., false]`!
55 > *
56 > * @returns `undefined` if no item matches, otherwise the last item that matches the predicate.
57 > */
58 > export function findLastMonotonous<T>(array: readonly T[], predicate: (item: T) => boolean): T | undefined {
59 const idx = findLastIdxMonotonous(array, predicate);
60 return idx === -1 ? undefined : array[idx];
61 }
63 > /**
64 > * Finds the last item where predicate is true using binary search.
65 > * `predicate` must be monotonous, i.e. `arr.map(predicate)` must be like `[true, ..., true, false, ..., false]`!
66 > *
67 > * @returns `startIdx - 1` if predicate is false for all items, otherwise the index of the last item that matches the predicate.
68 > */
69 > export function findLastIdxMonotonous<T>(array: readonly T[], predicate: (item: T) => boolean, startIdx = 0, endIdxEx = array.length): number {
70 let i = startIdx;
71 let j = endIdxEx;
80 return i - 1;
81 }
83 > /**
84 > * Finds the first item where predicate is true using binary search.
85 > * `predicate` must be monotonous, i.e. `arr.map(predicate)` must be like `[false, ..., false, true, ..., true]`!
86 > *
87 > * @returns `undefined` if no item matches, otherwise the first item that matches the predicate.
88 > */
89 > export function findFirstMonotonous<T>(array: readonly T[], predicate: (item: T) => boolean): T | undefined {
90 const idx = findFirstIdxMonotonousOrArrLen(array, predicate);
91 return idx === array.length ? undefined : array[idx];
92 }
94 > /**
95 > * Finds the first item where predicate is true using binary search.
96 > * `predicate` must be monotonous, i.e. `arr.map(predicate)` must be like `[false, ..., false, true, ..., true]`!
97 > *
98 > * @returns `endIdxEx` if predicate is false for all items, otherwise the index of the first item that matches the predicate.
99 > */
100 > export function findFirstIdxMonotonousOrArrLen<T>(array: readonly T[], predicate: (item: T) => boolean, startIdx = 0, endIdxEx = array.length): number {
101 let i = startIdx;
102 let j = endIdxEx;
111 return i;
112 }
114 > export function findFirstIdxMonotonous<T>(array: readonly T[], predicate: (item: T) => boolean, startIdx = 0, endIdxEx = array.length): number {
115 const idx = findFirstIdxMonotonousOrArrLen(array, predicate, startIdx, endIdxEx);
116 return idx === array.length ? -1 : idx;
117 }
119 > /**
120 > * Use this when
121 > * * You have a sorted array
122 > * * You query this array with a monotonous predicate to find the last item that has a certain property.
123 > * * You query this array multiple times with monotonous predicates that get weaker and weaker.
124 > */
125 > export class MonotonousArray<T> {
126 > public static assertInvariants = false;
127 >
128 > private _findLastMonotonousLastIdx = 0;
129 > private _prevFindLastPredicate: ((item: T) => boolean) | undefined;
130 >
131 > constructor(private readonly _array: readonly T[]) {
132 }
134 > /**
135 > * The predicate must be monotonous, i.e. `arr.map(predicate)` must be like `[true, ..., true, false, ..., false]`!
136 > * For subsequent calls, current predicate must be weaker than (or equal to) the previous predicate, i.e. more entries must be `true`.
137 > */
138 > findLastMonotonous(predicate: (item: T) => boolean): T | undefined {
139 if (MonotonousArray.assertInvariants) {
140 if (this._prevFindLastPredicate) {
152 return idx === -1 ? undefined : this._array[idx];
153 }
154 > } arraysFind.ts
155 >
156 > /**
157 > * Returns the first item that is equal to or greater than every other item.
158 > */
159 > export function findFirstMax<T>(array: readonly T[], comparator: Comparator<T>): T | undefined {
160 if (array.length === 0) {
161 return undefined;
171 return max;
172 }
174 > /**
175 > * Returns the last item that is equal to or greater than every other item.
176 > */
177 > export function findLastMax<T>(array: readonly T[], comparator: Comparator<T>): T | undefined {
178 if (array.length === 0) {
179 return undefined;
189 return max;
190 }
192 > /**
193 > * Returns the first item that is equal to or less than every other item.
194 > */
195 > export function findFirstMin<T>(array: readonly T[], comparator: Comparator<T>): T | undefined {
196 return findFirstMax(array, (a, b) => -comparator(a, b));
197 }
199 > export function findMaxIdx<T>(array: readonly T[], comparator: Comparator<T>): number {
200 if (array.length === 0) {
201 return -1;
211 return maxIdx;
212 }
214 > /**
215 > * Returns the first mapped value of the array which is not undefined.
216 > */
217 > export function mapFindFirst<T, R>(items: Iterable<T>, mapFn: (value: T) => R | undefined): R | undefined {
218 for (const value of items) {
219 const mapped = mapFn(value);
src/vs/base/test/common/virtualScheduling/virtualClock.ts 94 covered LOC · 7 ranges

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1 > /*--------------------------------------------------------------------------------------------- virtualClock.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { compareBy, numberComparator, tieBreakComparators } from '../../../common/arrays.js';
7 > import { Emitter } from '../../../common/event.js';
8 > import { IDisposable } from '../../../common/lifecycle.js';
9 > import { Trace } from './trace.js';
10 >
11 > export type VirtualTime = number;
12 >
13 > /** Debug source description for an event. */
14 > export interface EventSource {
15 > toString(): string;
16 > readonly stackTrace?: string;
17 > }
18 >
19 > /**
20 > * A unit of work scheduled at a point in virtual time.
21 > *
22 > * Timer callbacks are events. External completions (e.g. fake fs reads) can
23 > * also be modelled as events whose virtual completion time is chosen by a
24 > * scheduling policy — to the {@link VirtualClock} they are indistinguishable.
25 > */
26 > export interface VirtualEvent {
27 > readonly time: VirtualTime;
28 > readonly source: EventSource;
29 > readonly trace?: Trace;
30 > /**
31 > * Hint for the {@link Embedding}: this event prefers to run on a real
32 > * animation frame (e.g. so DOM measurements after it observe a real
33 > * reflow). Pure-time tests can ignore the hint.
34 > */
35 > readonly preferRealAnimationFrame?: boolean;
36 > run(): void;
37 > }
38 >
39 > interface QueuedEvent extends VirtualEvent { readonly id: number }
40 >
41 > const eventComparator = tieBreakComparators<QueuedEvent>(
42 > compareBy(e => e.time, numberComparator),
43 > compareBy(e => e.id, numberComparator),
44 > );
45 >
46 > /**
47 > * A pure data structure: a virtual clock + a priority queue of events.
48 > *
49 > * The clock has no concept of "real time". It is advanced exclusively by
50 > * {@link runNext}, which sets `now` to the next event's `time` before running
51 > * it. The {@link VirtualTimeProcessor} is the only intended driver, but the
52 > * clock is useful in isolation (e.g. for unit-testing a scheduler or for
53 > * stepping a scenario manually).
54 > */
55 > export class VirtualClock {
56 > private _now: VirtualTime;
57 > private _idCounter = 0;
58 > private readonly _queue = new SimplePriorityQueue<QueuedEvent>(eventComparator);
59 > private readonly _onEventScheduled = new Emitter<VirtualEvent>();
60 >
61 > public readonly onEventScheduled = this._onEventScheduled.event;
62 >
63 > constructor(startTime: VirtualTime = 0) {
64 this._now = startTime;
65 }
67 > get now(): VirtualTime { return this._now; }
68 > get hasEvents(): boolean { return this._queue.length > 0; }
69 >
70 > schedule(event: VirtualEvent): IDisposable {
71 if (event.time < this._now) {
72 throw new Error(`Scheduled time (${event.time}) must be >= now (${this._now}).`);
77 return { dispose: () => this._queue.remove(queued) };
78 }
80 > peekNext(): VirtualEvent | undefined { return this._queue.getMin(); }
81 >
82 > runNext(): VirtualEvent | undefined {
83 const e = this._queue.removeMin();
84 if (e) {
88 return e;
89 }
91 > getEvents(): readonly VirtualEvent[] { return this._queue.toSortedArray(); }
92 > }
93 >
94 > class SimplePriorityQueue<T> {
95 > private _items: T[] = [];
96 > private _sorted = true;
97 >
98 > constructor(private readonly _compare: (a: T, b: T) => number) { }
99 >
100 > get length(): number { return this._items.length; }
101 >
102 > add(value: T): void {
103 this._items.push(value);
104 this._sorted = false;
105 }
107 > remove(value: T): void {
108 const i = this._items.indexOf(value);
109 if (i !== -1) { this._items.splice(i, 1); }
110 }
112 > getMin(): T | undefined { this._ensureSorted(); return this._items[0]; }
113 > removeMin(): T | undefined { this._ensureSorted(); return this._items.shift(); }
114 > toSortedArray(): T[] { this._ensureSorted(); return [...this._items]; }
115 >
116 > private _ensureSorted(): void {
117 if (this._sorted) { return; }
118 this._items.sort(this._compare);
119 this._sorted = true;
120 }
121 > } virtualClock.ts
src/vs/platform/agentHost/common/state/protocolUpgrade.ts 94 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- protocolUpgrade.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import type { UnsupportedProtocolVersionErrorData } from './protocol/errors.js';
7 > import type { Mutable } from '../../../../base/common/types.js';
8 >
9 > /**
10 > * Name of the JSON-RPC method that, when invoked on an agent host spawned
11 > * by the VS Code CLI, asks the CLI to check for a server upgrade and
12 > * restart the running server if a newer build is available.
13 > *
14 > * Servers advertise this method through {@link UnsupportedProtocolVersionErrorMeta.vscodeUpgradeMethod}
15 > * in the `_meta` payload of an `UnsupportedProtocolVersion` error so the
16 > * client can offer an "Update server" action without hard-coding the method
17 > * name on the renderer side.
18 > */
19 > export const VSCODE_UPGRADE_METHOD = '_vscodeUpgrade' as const;
20 >
21 > /**
22 > * Status payload returned by the {@link VSCODE_UPGRADE_METHOD} RPC. The
23 > * agent host server forwards the CLI's `POST /upgrade` response back to
24 > * the client unchanged, so the UI can describe what happened (e.g.
25 > * "already on the latest version" vs "upgrade scheduled, please reconnect").
26 > */
27 > export interface IVscodeUpgradeResult {
28 > /** Whether the CLI accepted the request without an internal error. */
29 > readonly ok: boolean;
30 > /** Whether the running server is older than the latest known release. */
31 > readonly upgradeNeeded?: boolean;
32 > /**
33 > * Whether the CLI committed to actually performing the upgrade. When
34 > * `true`, the client SHOULD reconnect after at least
35 > * {@link restartDelayMs} milliseconds; the existing transport will be
36 > * torn down by the CLI.
37 > */
38 > readonly upgradeStarted?: boolean;
39 > /** Commit of the currently running server, or `null` if no server is running. */
40 > readonly runningCommit?: string | null;
41 > /** Latest known release commit at the time of the call. */
42 > readonly latestCommit?: string;
43 > /**
44 > * Milliseconds the client should wait before attempting to reconnect.
45 > * The CLI deliberately delays the kill+restart so this HTTP response
46 > * can drain back through the proxy first; reconnecting immediately
47 > * would land on the still-running pre-upgrade server. Populated only
48 > * when {@link upgradeStarted} is `true`.
49 > */
50 > readonly restartDelayMs?: number;
51 > /** Human-readable error when {@link ok} is `false`. */
52 > readonly error?: string;
53 > }
54 >
55 > /**
56 > * Optional `_meta` side-channel on the `UnsupportedProtocolVersion` error
57 > * data payload. Servers that are spawned by the VS Code CLI populate this
58 > * to let the renderer offer a one-click upgrade flow; servers without a
59 > * managing CLI omit it.
60 > *
61 > * The MCP `_meta` convention is followed: this is an open-ended record so
62 > * future versions can carry additional fields without bumping the wire
63 > * shape of the error.
64 > */
65 > export interface UnsupportedProtocolVersionErrorMeta {
66 > /**
67 > * JSON-RPC method name the client MAY invoke on the same transport to
68 > * ask the server to upgrade itself. Currently always {@link VSCODE_UPGRADE_METHOD}.
69 > */
70 > readonly vscodeUpgradeMethod?: string;
71 > }
72 >
73 > /**
74 > * `UnsupportedProtocolVersionErrorData` augmented with the local `_meta`
75 > * extension used by VS Code-hosted agent hosts.
76 > *
77 > * Kept out of the auto-generated `errors.ts` so the synced types stay
78 > * untouched. Read at runtime as a best-effort field — older servers
79 > * simply won't set it.
80 > */
81 > export interface UnsupportedProtocolVersionErrorDataEx extends UnsupportedProtocolVersionErrorData {
82 > readonly _meta?: UnsupportedProtocolVersionErrorMeta;
83 > }
84 >
85 > /**
86 > * Reads the well-known {@link UnsupportedProtocolVersionErrorMeta} from the open
87 > * `_meta` bag on an `UnsupportedProtocolVersion` error's data payload. `data` is
88 > * the raw, untrusted `ProtocolError.data` (typed `unknown`); this validates that
89 > * it carries a `_meta` object with a string {@link
90 > * UnsupportedProtocolVersionErrorMeta.vscodeUpgradeMethod} and returns
91 > * `undefined` otherwise. Always read the upgrade `_meta` through this helper
92 > * rather than casting the error data to a shape that includes `_meta`.
93 > */
94 > export function readUnsupportedProtocolVersionErrorMeta(data: unknown): UnsupportedProtocolVersionErrorMeta | undefined {
95 if (!data || typeof data !== 'object') {
96 return undefined;
src/vs/platform/agentHost/common/meta/agentToolCallMeta.ts 92 covered LOC · 5 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentToolCallMeta.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import type { Mutable } from '../../../../base/common/types.js';
7 >
8 > /** Anything carrying a tool call's `_meta` bag (persisted state or wire actions). */
9 > interface IHasToolCallMeta {
10 > readonly _meta?: Record<string, unknown>;
11 > }
12 >
13 > /**
14 > * Well-known typed view over a tool call's open `_meta` bag. Producers and
15 > * consumers agree on these keys here so the two sides can't drift; always read
16 > * the bag through {@link readToolCallMeta}, which validates each field and drops
17 > * wrong-typed values.
18 > */
19 > export interface IToolCallMeta {
20 > /**
21 > * VS Code rendering hint. `terminal` routes the call to the command/output
22 > * renderer, `subagent` to the subagent UI, `search` to the search renderer;
23 > * everything else falls through to the generic invocation renderer. Set by
24 > * the agent adapter, never matched on raw tool name by the renderer.
25 > */
26 > readonly toolKind?: ToolKind;
27 > /** Shell language for a `terminal` tool call (drives syntax highlighting). */
28 > readonly language?: string;
29 > /** Short task description for a `subagent` tool call (e.g. "Find related files"). */
30 > readonly subagentDescription?: string;
31 > /** Agent name for a `subagent` tool call (e.g. "explore"). */
32 > readonly subagentAgentName?: string;
33 > /** Chat URI of the subagent this tool call spawns, stamped by the host (see {@link buildSubagentChatUri}); the resource may not be registered yet. */
34 > readonly subagentChatUri?: string;
35 > /** Raw, pre-stringified tool arguments captured for display/debugging. */
36 > readonly toolArguments?: unknown;
37 > /** Originating MCP server name, when the call came from an MCP server. */
38 > readonly mcpServerName?: string;
39 > /** Originating MCP tool name, when the call came from an MCP server. */
40 > readonly mcpToolName?: string;
41 > /** MCP App render data, when the call exposes an interactive App surface. */
42 > readonly ui?: IToolCallUiMeta;
43 > /**
44 > * Set by the host's side-effect layer when the call was auto-approved
45 > * because of an `autoApprove` session-config setting (rather than an
46 > * explicit user action), so the client can render it as setting-driven.
47 > */
48 > readonly autoApproveBySetting?: boolean;
49 > /** Transient runtime corpus for the local client tool-search invocation. */
50 > readonly toolSearchCandidates?: readonly IToolSearchCandidate[];
51 > }
52 >
53 > /** Minimal metadata needed to embed and rank a deferred tool. */
54 > export interface IToolSearchCandidate {
55 > readonly name: string;
56 > readonly description: string;
57 > }
58 >
59 > /**
60 > * The set of VS Code-recognized tool-call rendering kinds. Add a new value here
61 > * (and teach the renderer to handle it) rather than matching on tool name.
62 > */
63 > export type ToolKind = 'terminal' | 'subagent' | 'search';
64 >
65 > /**
66 > * MCP App render data carried under {@link IToolCallMeta.ui}. Clients gate
67 > * mounting the App webview on both a `resourceUri` and a `channel` being
68 > * present.
69 > */
70 > export interface IToolCallUiMeta {
71 > /** The MCP App's UI resource URI (an `ui://` resource the App renders). */
72 > readonly resourceUri: string;
73 > /** AHP `mcp://` channel the App's sub-RPCs route back through, when ready. */
74 > readonly channel?: string;
75 > }
76 >
77 function isToolKind(value: unknown): value is ToolKind {
78 return value === 'terminal' || value === 'subagent' || value === 'search';
79 }
81 function readToolCallUiMeta(value: unknown): IToolCallUiMeta | undefined {
82 if (!value || typeof value !== 'object' || Array.isArray(value)) {
93 return result;
94 }
96 function readToolSearchCandidates(value: unknown): readonly IToolSearchCandidate[] | undefined {
97 if (!Array.isArray(value)) {
114 return result;
115 }
117 > /**
118 > * Reads the well-known {@link IToolCallMeta} keys from a tool call's `_meta`
119 > * bag, dropping unknown keys and wrong-typed values.
120 > */
121 > export function readToolCallMeta(source: IHasToolCallMeta): IToolCallMeta {
122 const meta = source._meta;
123 if (!meta) {
140 return result;
141 }
143 > /**
144 > * Serializes a typed {@link IToolCallMeta} into the `_meta` record, dropping
145 > * `undefined` entries and returning `undefined` when empty. Build a tool call's
146 > * `_meta` through this so producers stay in lock-step with
147 > * {@link readToolCallMeta}.
148 > */
149 > export function toToolCallMeta(meta: IToolCallMeta): Record<string, unknown> | undefined {
150 const result: Record<string, unknown> = {};
151 for (const [key, value] of Object.entries(meta)) {
src/vs/base/common/extpath.ts 91 covered LOC · 17 ranges

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1 > /*--------------------------------------------------------------------------------------------- extpath.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CharCode } from './charCode.js';
7 > import { isAbsolute, join, normalize, posix, sep } from './path.js';
8 > import { isWindows } from './platform.js';
9 > import { equalsIgnoreCase, rtrim, startsWithIgnoreCase } from './strings.js';
10 > import { isNumber } from './types.js';
11 >
12 > export function isPathSeparator(code: number) {
13 return code === CharCode.Slash || code === CharCode.Backslash;
14 }
15 > extpath.ts
16 > /**
17 > * Takes a Windows OS path and changes backward slashes to forward slashes.
18 > * This should only be done for OS paths from Windows (or user provided paths potentially from Windows).
19 > * Using it on a Linux or MaxOS path might change it.
20 > */
21 > export function toSlashes(osPath: string) {
22 return osPath.replace(/[\\/]/g, posix.sep);
23 }
24 > extpath.ts
25 > /**
26 > * Takes a Windows OS path (using backward or forward slashes) and turns it into a posix path:
27 > * - turns backward slashes into forward slashes
28 > * - makes it absolute if it starts with a drive letter
29 > * This should only be done for OS paths from Windows (or user provided paths potentially from Windows).
30 > * Using it on a Linux or MaxOS path might change it.
31 > */
32 > export function toPosixPath(osPath: string) {
33 if (osPath.indexOf('/') === -1) {
34 osPath = toSlashes(osPath);
39 return osPath;
40 }
41 > extpath.ts
42 > /**
43 > * Computes the _root_ this path, like `getRoot('c:\files') === c:\`,
44 > * `getRoot('files:///files/path') === files:///`,
45 > * or `getRoot('\\server\shares\path') === \\server\shares\`
46 > */
47 > export function getRoot(path: string, sep: string = posix.sep): string {
48 if (!path) {
49 return '';
111 return '';
112 }
113 > extpath.ts
114 > /**
115 > * Check if the path follows this pattern: `\\hostname\sharename`.
116 > *
117 > * @see https://msdn.microsoft.com/en-us/library/gg465305.aspx
118 > * @return A boolean indication if the path is a UNC path, on none-windows
119 > * always false.
120 > */
121 > export function isUNC(path: string): boolean {
122 if (!isWindows) {
123 // UNC is a windows concept
162 return true;
163 }
164 > extpath.ts
165 > // Reference: https://en.wikipedia.org/wiki/Filename
166 > const WINDOWS_INVALID_FILE_CHARS = /[\\/:\*\?"<>\|]/g;
167 > const UNIX_INVALID_FILE_CHARS = /[/]/g;
168 > const WINDOWS_FORBIDDEN_NAMES = /^(con|prn|aux|clock\$|nul|lpt[0-9]|com[0-9])(\.(.*?))?$/i;
169 > export function isValidBasename(name: string | null | undefined, isWindowsOS: boolean = isWindows): boolean {
170 const invalidFileChars = isWindowsOS ? WINDOWS_INVALID_FILE_CHARS : UNIX_INVALID_FILE_CHARS;
171
201 return true;
202 }
203 > extpath.ts
204 > /**
205 > * @deprecated please use `IUriIdentityService.extUri.isEqual` instead. If you are
206 > * in a context without services, consider to pass down the `extUri` from the outside
207 > * or use `extUriBiasedIgnorePathCase` if you know what you are doing.
208 > */
209 > export function isEqual(pathA: string, pathB: string, ignoreCase?: boolean): boolean {
210 const identityEquals = (pathA === pathB);
211 if (!ignoreCase || identityEquals) {
219 return equalsIgnoreCase(pathA, pathB);
220 }
221 > extpath.ts
222 > /**
223 > * @deprecated please use `IUriIdentityService.extUri.isEqualOrParent` instead. If
224 > * you are in a context without services, consider to pass down the `extUri` from the
225 > * outside, or use `extUriBiasedIgnorePathCase` if you know what you are doing.
226 > */
227 > export function isEqualOrParent(base: string, parentCandidate: string, ignoreCase?: boolean, forcePosixSemantics = false): boolean {
228 const separator = forcePosixSemantics ? posix.sep : sep;
229
272 return base.indexOf(parentCandidate) === 0;
273 }
274 > extpath.ts
275 > export function isWindowsDriveLetter(char0: number): boolean {
276 return char0 >= CharCode.A && char0 <= CharCode.Z || char0 >= CharCode.a && char0 <= CharCode.z;
277 }
278 > extpath.ts
279 > export function sanitizeFilePath(candidate: string, cwd: string): string {
280
281 // Special case: allow to open a drive letter without trailing backslash
295 return removeTrailingPathSeparator(candidate);
296 }
297 > extpath.ts
298 > export function removeTrailingPathSeparator(candidate: string): string {
299 if (isWindows) {
300 candidate = rtrim(candidate, sep);
316 return candidate;
317 }
318 > extpath.ts
319 > export function isRootOrDriveLetter(path: string): boolean {
320 const pathNormalized = normalize(path);
321
331 return pathNormalized === posix.sep;
332 }
333 > extpath.ts
334 > export function hasDriveLetter(path: string, isWindowsOS: boolean = isWindows): boolean {
335 if (isWindowsOS) {
336 return isWindowsDriveLetter(path.charCodeAt(0)) && path.charCodeAt(1) === CharCode.Colon;
339 return false;
340 }
341 > extpath.ts
342 > export function getDriveLetter(path: string, isWindowsOS: boolean = isWindows): string | undefined {
343 return hasDriveLetter(path, isWindowsOS) ? path[0] : undefined;
344 }
345 > extpath.ts
346 > export function indexOfPath(path: string, candidate: string, ignoreCase?: boolean): number {
347 if (candidate.length > path.length) {
348 return -1;
360 return path.indexOf(candidate);
361 }
362 > extpath.ts
363 > export interface IPathWithLineAndColumn {
364 > path: string;
365 > line?: number;
366 > column?: number;
367 > }
368 >
369 > export function parseLineAndColumnAware(rawPath: string): IPathWithLineAndColumn {
370 const segments = rawPath.split(':'); // C:\file.txt:<line>:<column>
371
395 };
396 }
397 > extpath.ts
398 > const pathChars = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789';
399 > const windowsSafePathFirstChars = 'BDEFGHIJKMOQRSTUVWXYZbdefghijkmoqrstuvwxyz0123456789';
400 >
401 > export function randomPath(parent?: string, prefix?: string, randomLength = 8): string {
402 let suffix = '';
403 for (let i = 0; i < randomLength; i++) {
src/vs/base/common/observableInternal/reactions/autorun.ts 91 covered LOC · 10 ranges

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1 > /*--------------------------------------------------------------------------------------------- autorun.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IReaderWithStore, IReader, IObservable, ISettableObservable } from '../base.js';
7 > import { IChangeTracker } from '../changeTracker.js';
8 > import { DisposableStore, IDisposable, toDisposable } from '../commonFacade/deps.js';
9 > import { DebugNameData, IDebugNameData } from '../debugName.js';
10 > import { AutorunObserver } from './autorunImpl.js';
11 > import { DebugLocation } from '../debugLocation.js';
12 > import { observableValue } from '../observables/observableValue.js';
13 > import { transaction } from '../transaction.js';
14 >
15 > /**
16 > * Runs immediately and whenever a transaction ends and an observed observable changed.
17 > * {@link fn} should start with a JS Doc using `@description` to name the autorun.
18 > */
19 > export function autorun(fn: (reader: IReaderWithStore) => void, debugLocation = DebugLocation.ofCaller()): IDisposable {
20 return new AutorunObserver(
21 new DebugNameData(undefined, undefined, fn),
25 );
26 }
27 > autorun.ts
28 > /**
29 > * Runs immediately and whenever a transaction ends and an observed observable changed.
30 > * {@link fn} should start with a JS Doc using `@description` to name the autorun.
31 > */
32 > export function autorunOpts(options: IDebugNameData & {}, fn: (reader: IReaderWithStore) => void, debugLocation = DebugLocation.ofCaller()): IDisposable {
33 return new AutorunObserver(
34 new DebugNameData(options.owner, options.debugName, options.debugReferenceFn ?? fn),
38 );
39 }
40 > autorun.ts
41 > /**
42 > * Runs immediately and whenever a transaction ends and an observed observable changed.
43 > * {@link fn} should start with a JS Doc using `@description` to name the autorun.
44 > *
45 > * Use `changeTracker.createChangeSummary` to create a "change summary" that can collect the changes.
46 > * Use `changeTracker.handleChange` to add a reported change to the change summary.
47 > * The run function is given the last change summary.
48 > * The change summary is discarded after the run function was called.
49 > *
50 > * @see autorun
51 > */
52 > export function autorunHandleChanges<TChangeSummary>(
53 options: IDebugNameData & {
54 changeTracker: IChangeTracker<TChangeSummary>;
64 );
65 }
66 > autorun.ts
67 > /**
68 > * @see autorunHandleChanges (but with a disposable store that is cleared before the next run or on dispose)
69 > */
70 > export function autorunWithStoreHandleChanges<TChangeSummary>(
71 options: IDebugNameData & {
72 changeTracker: IChangeTracker<TChangeSummary>;
92 });
93 }
94 > autorun.ts
95 > /**
96 > * @see autorun (but with a disposable store that is cleared before the next run or on dispose)
97 > *
98 > * @deprecated Use `autorun(reader => { reader.store.add(...) })` instead!
99 > */
100 > export function autorunWithStore(fn: (reader: IReader, store: DisposableStore) => void): IDisposable {
101 const store = new DisposableStore();
102 const disposable = autorunOpts(
116 });
117 }
118 > autorun.ts
119 > export function autorunDelta<T>(
120 observable: IObservable<T>,
121 handler: (args: { lastValue: T | undefined; newValue: T }) => void
129 });
130 }
131 > autorun.ts
132 > export function autorunIterableDelta<T>(
133 getValue: (reader: IReader) => Iterable<T>,
134 handler: (args: { addedValues: T[]; removedValues: T[] }) => void,
157 });
158 }
159 > autorun.ts
160 > /**
161 > * For each key-stable item in {@link items}, runs {@link setup} once when the
162 > * key is first observed and disposes the per-key {@link DisposableStore} when
163 > * the key is no longer present in the array (or when the returned disposable
164 > * is disposed).
165 > *
166 > * The {@link IObservable} handed to {@link setup} fires whenever the array
167 > * still contains an item with the same key but the item value itself has
168 > * changed (e.g. because the upstream state is immutable and produced a new
169 > * object with the same id). All per-key value updates triggered by a single
170 > * change to {@link items} are batched into one transaction, so dependent
171 > * autoruns observe a consistent snapshot.
172 > *
173 > * Per-key state should be stored in closures or in disposables registered
174 > * against the per-key {@link DisposableStore}. {@link setup} should not call
175 > * `.read()` on the outer {@link items} observable from its body (use the
176 > * provided per-key value observable, or create inner autoruns).
177 > */
178 > export function autorunPerKeyedItem<TIn, TKey>(
179 items: IObservable<readonly TIn[]>,
180 keyFn: (input: TIn) => TKey,
227 });
228 }
229 > autorun.ts
230 > export interface IReaderWithDispose extends IReaderWithStore, IDisposable { }
231 >
232 > /**
233 > * An autorun with a `dispose()` method on its `reader` which cancels the autorun.
234 > * It it safe to call `dispose()` synchronously.
235 > * @deprecated Use autorunSelfDisposable2
236 > */
237 > export function autorunSelfDisposable(fn: (reader: IReaderWithDispose) => void, debugLocation = DebugLocation.ofCaller()): IDisposable {
238 let ar: IDisposable | undefined;
239 let disposed = false;
258 return ar;
259 }
260 > autorun.ts
261 >
262 > /**
263 > * An autorun with a `dispose()` method on its `reader` which cancels the autorun.
264 > * It it safe to call `dispose()` synchronously.
265 > * TODO@hediet/copilot: rename to delete autorunSelfDisposable, and rename autorunSelfDisposable2 to autorunSelfDisposable.
266 > */
267 > export function registerAutorunSelfDisposable(store: DisposableStore, fn: (reader: IReaderWithDispose) => void, debugLocation = DebugLocation.ofCaller()): void {
268 let ar: IDisposable | undefined;
269 let disposeSync = false;
src/vs/base/common/cancellation.ts 90 covered LOC · 18 ranges

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1 > /*--------------------------------------------------------------------------------------------- cancellation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Emitter, Event } from './event.js';
7 > import { DisposableStore, IDisposable } from './lifecycle.js';
8 >
9 > export interface CancellationToken {
10 >
11 > /**
12 > * A flag signalling is cancellation has been requested.
13 > */
14 > readonly isCancellationRequested: boolean;
15 >
16 > /**
17 > * An event which fires when cancellation is requested. This event
18 > * only ever fires `once` as cancellation can only happen once. Listeners
19 > * that are registered after cancellation will be called (next event loop run),
20 > * but also only once.
21 > *
22 > * @event
23 > */
24 > readonly onCancellationRequested: (listener: (e: void) => unknown, thisArgs?: unknown, disposables?: IDisposable[]) => IDisposable;
25 > }
26 >
27 > const shortcutEvent: Event<void> = Object.freeze(function (callback, context?): IDisposable {
28 const handle = setTimeout(callback.bind(context), 0);
29 return { dispose() { clearTimeout(handle); } };
30 });
32 > export namespace CancellationToken {
33 >
34 > export function isCancellationToken(thing: unknown): thing is CancellationToken {
35 if (thing === CancellationToken.None || thing === CancellationToken.Cancelled) {
36 return true;
45 && typeof (thing as CancellationToken).onCancellationRequested === 'function';
46 }
48 >
49 > export const None = Object.freeze<CancellationToken>({
50 > isCancellationRequested: false,
51 > onCancellationRequested: Event.None
52 > });
53 >
54 > export const Cancelled = Object.freeze<CancellationToken>({
55 > isCancellationRequested: true,
56 > onCancellationRequested: shortcutEvent
57 > });
58 > }
59 >
60 class MutableToken implements CancellationToken {
61
62 private _isCancelled: boolean = false;
63 private _emitter: Emitter<void> | null = null;
65 > public cancel() {
66 if (!this._isCancelled) {
67 this._isCancelled = true;
72 }
73 }
75 > get isCancellationRequested(): boolean {
76 return this._isCancelled;
77 }
79 > get onCancellationRequested(): Event<void> {
80 if (this._isCancelled) {
81 return shortcutEvent;
86 return this._emitter.event;
87 }
89 > public dispose(): void {
90 if (this._emitter) {
91 this._emitter.dispose();
93 }
94 }
96 >
97 > export class CancellationTokenSource {
98 >
99 > private _token?: CancellationToken = undefined;
100 > private _parentListener?: IDisposable = undefined;
101 >
102 > constructor(parent?: CancellationToken) {
103 this._parentListener = parent && parent.onCancellationRequested(this.cancel, this);
104 }
106 > get token(): CancellationToken {
107 if (!this._token) {
108 // be lazy and create the token only when
112 return this._token;
113 }
115 > cancel(): void {
116 if (!this._token) {
117 // save an object by returning the default
125 }
126 }
128 > dispose(cancel: boolean = false): void {
129 if (cancel) {
130 this.cancel();
140 }
141 }
142 > } cancellation.ts
143 >
144 > export function cancelOnDispose(store: DisposableStore): CancellationToken {
145 const source = new CancellationTokenSource();
146 store.add({ dispose() { source.cancel(); } });
147 return source.token;
148 }
150 > /**
151 > * A pool that aggregates multiple cancellation tokens. The pool's own token
152 > * (accessible via `pool.token`) is cancelled only after every token added
153 > * to the pool has been cancelled. Adding tokens after the pool token has
154 > * been cancelled has no effect.
155 > */
156 > export class CancellationTokenPool {
157
158 private readonly _source = new CancellationTokenSource();
162 private _cancelled: number = 0;
163 private _isDone: boolean = false;
165 > get token(): CancellationToken {
166 return this._source.token;
167 }
169 > /**
170 > * Add a token to the pool. If the token is already cancelled it is counted
171 > * immediately. Tokens added after the pool token has been cancelled are ignored.
172 > */
173 > add(token: CancellationToken): void {
174 if (this._isDone) {
175 return;
191 this._listeners.add(d);
192 }
194 > private _check(): void {
195 if (!this._isDone && this._total > 0 && this._total === this._cancelled) {
196 this._isDone = true;
src/vs/base/common/observableInternal/utils/utils.ts 89 covered LOC · 21 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- utils.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { autorun } from '../reactions/autorun.js';
7 > import { IObservable, IObservableWithChange, IObserver, IReader, ITransaction } from '../base.js';
8 > import { observableValue } from '../observables/observableValue.js';
9 > import { DebugOwner } from '../debugName.js';
10 > import { DisposableStore, Event, IDisposable, toDisposable } from '../commonFacade/deps.js';
11 > import { derived, derivedOpts } from '../observables/derived.js';
12 > import { observableFromEvent } from '../observables/observableFromEvent.js';
13 > import { observableSignal } from '../observables/observableSignal.js';
14 > import { _setKeepObserved, _setRecomputeInitiallyAndOnChange } from '../observables/baseObservable.js';
15 > import { DebugLocation } from '../debugLocation.js';
16 >
17 > export function observableFromPromise<T>(promise: Promise<T>): IObservable<{ value?: T }> {
18 const observable = observableValue<{ value?: T }>('promiseValue', {});
19 promise.then((value) => {
22 return observable;
23 }
24 > utils.ts
25 > export function signalFromObservable<T>(owner: DebugOwner | undefined, observable: IObservable<T>): IObservable<void> {
26 return derivedOpts({
27 owner,
31 });
32 }
33 > utils.ts
34 > /**
35 > * Creates an observable that debounces the input observable.
36 > */
37 > export function debouncedObservable<T>(observable: IObservable<T>, debounceMs: number | ((lastValue: T | undefined, newValue: T) => number), debugLocation = DebugLocation.ofCaller()): IObservable<T> {
38 let hasValue = false;
39 let lastValue: T | undefined;
79 }, debugLocation);
80 }
81 > utils.ts
82 > /**
83 > * Creates an observable that throttles the input observable.
84 > * Unlike {@link debouncedObservable}, the timer starts on the first change
85 > * and is not reset by subsequent changes, preventing starvation.
86 > */
87 > export function throttledObservable<T>(observable: IObservable<T>, throttleMs: number, debugLocation = DebugLocation.ofCaller()): IObservable<T> {
88 let hasValue = false;
89 let lastValue: T | undefined;
126 }, debugLocation);
127 }
128 > utils.ts
129 > /**
130 > * Creates an observable that debounces the input observable.
131 > */
132 > export function debouncedObservable2<T>(observable: IObservable<T>, debounceMs: number | ((currentValue: T | undefined, newValue: T) => number), debugLocation = DebugLocation.ofCaller()): IObservable<T> {
133 const s = observableSignal('handleTimeout');
134
167 return d;
168 }
169 > utils.ts
170 > export function wasEventTriggeredRecently(event: Event<any>, timeoutMs: number, disposableStore: DisposableStore): IObservable<boolean> {
171 const observable = observableValue('triggeredRecently', false);
172
186 return observable;
187 }
188 > utils.ts
189 > /**
190 > * This makes sure the observable is being observed and keeps its cache alive.
191 > */
192 > export function keepObserved<T>(observable: IObservable<T>): IDisposable {
193 const o = new KeepAliveObserver(false, undefined);
194 observable.addObserver(o);
197 });
198 }
199 > utils.ts
200 > _setKeepObserved(keepObserved);
201 >
202 > /**
203 > * This converts the given observable into an autorun.
204 > */
205 > export function recomputeInitiallyAndOnChange<T>(observable: IObservable<T>, handleValue?: (value: T) => void): IDisposable {
206 const o = new KeepAliveObserver(true, handleValue);
207 observable.addObserver(o);
216 });
217 }
218 > utils.ts
219 > _setRecomputeInitiallyAndOnChange(recomputeInitiallyAndOnChange);
220 >
221 > export class KeepAliveObserver implements IObserver {
222 > private _counter = 0;
223 >
224 > constructor(
225 private readonly _forceRecompute: boolean,
226 private readonly _handleValue: ((value: any) => void) | undefined,
227 ) { }
228 > utils.ts
229 > beginUpdate<T>(observable: IObservable<T>): void {
230 this._counter++;
231 }
232 > utils.ts
233 > endUpdate<T>(observable: IObservable<T>): void {
234 if (this._counter === 1 && this._forceRecompute) {
235 if (this._handleValue) {
241 this._counter--;
242 }
243 > utils.ts
244 > handlePossibleChange<T>(observable: IObservable<T>): void {
245 // NO OP
246 }
247 > utils.ts
248 > handleChange<T, TChange>(observable: IObservableWithChange<T, TChange>, change: TChange): void {
249 // NO OP
250 }
251 > } utils.ts
252 >
253 > export function derivedObservableWithCache<T>(owner: DebugOwner, computeFn: (reader: IReader, lastValue: T | undefined) => T): IObservable<T> {
254 let lastValue: T | undefined = undefined;
255 const observable = derivedOpts({ owner, debugReferenceFn: computeFn }, reader => {
259 return observable;
260 }
261 > utils.ts
262 > export function derivedObservableWithWritableCache<T>(owner: object, computeFn: (reader: IReader, lastValue: T | undefined) => T): IObservable<T>
263 & { clearCache(transaction: ITransaction): void; setCache(newValue: T | undefined, tx: ITransaction | undefined): void } {
264 let lastValue: T | undefined = undefined;
280 });
281 }
282 > utils.ts
283 > /**
284 > * When the items array changes, referential equal items are not mapped again.
285 > */
286 > export function mapObservableArrayCached<TIn, TOut, TKey = TIn>(owner: DebugOwner, items: IObservable<readonly TIn[]>, map: (input: TIn, store: DisposableStore) => TOut, keySelector?: (input: TIn) => TKey): IObservable<readonly TOut[]> {
287 let m = new ArrayMap(map, keySelector);
288 const self = derivedOpts({
300 return self;
301 }
302 > utils.ts
303 > class ArrayMap<TIn, TOut, TKey> implements IDisposable {
304 > private readonly _cache = new Map<TKey, { out: TOut; store: DisposableStore }>();
305 > private _items: TOut[] = [];
306 > constructor(
307 private readonly _map: (input: TIn, store: DisposableStore) => TOut,
308 private readonly _keySelector?: (input: TIn) => TKey,
309 ) {
310 }
311 > utils.ts
312 > public dispose(): void {
313 this._cache.forEach(entry => entry.store.dispose());
314 this._cache.clear();
315 }
316 > utils.ts
317 > public setItems(items: readonly TIn[]): void {
318 const newItems: TOut[] = [];
319 const itemsToRemove = new Set(this._cache.keys());
342 this._items = newItems;
343 }
344 > utils.ts
345 > public getItems(): TOut[] {
346 return this._items;
347 }
348 > } utils.ts
349 >
350 > export function isObservable<T>(obj: unknown): obj is IObservable<T> {
351 return !!obj && (<IObservable<T>>obj).read !== undefined && (<IObservable<T>>obj).reportChanges !== undefined;
352 }
src/vs/base/common/cache.ts 88 covered LOC · 9 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- cache.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancellationToken, CancellationTokenSource } from './cancellation.js';
7 > import { IDisposable } from './lifecycle.js';
8 >
9 > export interface CacheResult<T> extends IDisposable {
10 > promise: Promise<T>;
11 > }
12 >
13 > export class Cache<T> {
14 >
15 > private result: CacheResult<T> | null = null;
16 > constructor(private task: (ct: CancellationToken) => Promise<T>) { }
17 >
18 > get(): CacheResult<T> {
19 if (this.result) {
20 return this.result;
35 return this.result;
36 }
37 > } cache.ts
38 >
39 > export function identity<T>(t: T): T {
40 return t;
41 }
42 > cache.ts
43 > interface ICacheOptions<TArg> {
44 > /**
45 > * The cache key is used to identify the cache entry.
46 > * Strict equality is used to compare cache keys.
47 > */
48 > getCacheKey: (arg: TArg) => unknown;
49 > }
50 >
51 > /**
52 > * Uses a LRU cache to make a given parametrized function cached.
53 > * Caches just the last key/value.
54 > */
55 > export class LRUCachedFunction<TArg, TComputed> {
56 > private lastCache: TComputed | undefined = undefined;
57 > private lastArgKey: unknown | undefined = undefined;
58 >
59 > private readonly _fn: (arg: TArg) => TComputed;
60 > private readonly _computeKey: (arg: TArg) => unknown;
61 >
62 > constructor(fn: (arg: TArg) => TComputed);
63 > constructor(options: ICacheOptions<TArg>, fn: (arg: TArg) => TComputed);
64 > constructor(arg1: ICacheOptions<TArg> | ((arg: TArg) => TComputed), arg2?: (arg: TArg) => TComputed) {
65 > if (typeof arg1 === 'function') {
66 > this._fn = arg1;
67 > this._computeKey = identity;
68 > } else {
69 this._fn = arg2!;
70 this._computeKey = arg1.getCacheKey;
71 }
72 > } cache.ts
73 >
74 > public get(arg: TArg): TComputed {
75 const key = this._computeKey(arg);
76 if (this.lastArgKey !== key) {
80 return this.lastCache!;
81 }
82 > } cache.ts
83 >
84 > /**
85 > * Uses an unbounded cache to memoize the results of the given function.
86 > */
87 > export class CachedFunction<TArg, TComputed> {
88 > private readonly _map = new Map<TArg, TComputed>();
89 > private readonly _map2 = new Map<unknown, TComputed>();
90 > public get cachedValues(): ReadonlyMap<TArg, TComputed> {
91 > return this._map;
92 > }
93 >
94 > private readonly _fn: (arg: TArg) => TComputed;
95 > private readonly _computeKey: (arg: TArg) => unknown;
96 >
97 > constructor(fn: (arg: TArg) => TComputed);
98 > constructor(options: ICacheOptions<TArg>, fn: (arg: TArg) => TComputed);
99 > constructor(arg1: ICacheOptions<TArg> | ((arg: TArg) => TComputed), arg2?: (arg: TArg) => TComputed) {
100 if (typeof arg1 === 'function') {
101 this._fn = arg1;
106 }
107 }
108 > cache.ts
109 > public get(arg: TArg): TComputed {
110 const key = this._computeKey(arg);
111 if (this._map2.has(key)) {
118 return value;
119 }
120 > } cache.ts
121 >
122 > /**
123 > * Uses an unbounded cache to memoize the results of the given function.
124 > */
125 > export class WeakCachedFunction<TArg, TComputed> {
126 > private readonly _map = new WeakMap<WeakKey, TComputed>();
127 >
128 > private readonly _fn: (arg: TArg) => TComputed;
129 > private readonly _computeKey: (arg: TArg) => unknown;
130 >
131 > constructor(fn: (arg: TArg) => TComputed);
132 > constructor(options: ICacheOptions<TArg>, fn: (arg: TArg) => TComputed);
133 > constructor(arg1: ICacheOptions<TArg> | ((arg: TArg) => TComputed), arg2?: (arg: TArg) => TComputed) {
134 if (typeof arg1 === 'function') {
135 this._fn = arg1;
140 }
141 }
142 > cache.ts
143 > public get(arg: TArg): TComputed {
144 const key = this._computeKey(arg) as WeakKey;
145 if (this._map.has(key)) {
151 return value;
152 }
153 > } cache.ts
src/vs/base/common/observableInternal/reactions/autorunImpl.ts 78 covered LOC · 18 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- autorunImpl.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IObservableWithChange, IObserver, IReaderWithStore } from '../base.js';
7 > import { DebugNameData } from '../debugName.js';
8 > import { assertFn, BugIndicatingError, DisposableStore, IDisposable, markAsDisposed, onBugIndicatingError, trackDisposable } from '../commonFacade/deps.js';
9 > import { getLogger } from '../logging/logging.js';
10 > import { IChangeTracker } from '../changeTracker.js';
11 > import { DebugLocation } from '../debugLocation.js';
12 >
13 > export const enum AutorunState {
14 > /**
15 > * A dependency could have changed.
16 > * We need to explicitly ask them if at least one dependency changed.
17 > */
18 > dependenciesMightHaveChanged = 1,
19 >
20 > /**
21 > * A dependency changed and we need to recompute.
22 > */
23 > stale = 2,
24 > upToDate = 3,
25 > }
26 >
27 function autorunStateToString(state: AutorunState): string {
28 switch (state) {
33 }
34 }
36 > export class AutorunObserver<TChangeSummary = any> implements IObserver, IReaderWithStore, IDisposable {
37 > private _state = AutorunState.stale;
38 > private _updateCount = 0;
39 > private _disposed = false;
40 > private _dependencies = new Set<IObservable<any>>();
41 > private _dependenciesToBeRemoved = new Set<IObservable<any>>();
42 > private _changeSummary: TChangeSummary | undefined;
43 > private _isRunning = false;
44 > private _iteration = 0;
45 >
46 > public get debugName(): string {
47 > return this._debugNameData.getDebugName(this) ?? '(anonymous)';
48 > }
49 >
50 > constructor(
51 public readonly _debugNameData: DebugNameData,
52 public readonly _runFn: (reader: IReaderWithStore, changeSummary: TChangeSummary) => void,
60 trackDisposable(this);
61 }
63 > public dispose(): void {
64 if (this._disposed) {
65 return;
81 markAsDisposed(this);
82 }
84 > private _run() {
85 const emptySet = this._dependenciesToBeRemoved;
86 this._dependenciesToBeRemoved = this._dependencies;
130 }
131 }
133 > public toString(): string {
134 return `Autorun<${this.debugName}>`;
135 }
137 > // IObserver implementation
138 > public beginUpdate(_observable: IObservable<any>): void {
139 if (this._state === AutorunState.upToDate) {
140 this._checkIterations();
143 this._updateCount++;
144 }
146 > public endUpdate(_observable: IObservable<any>): void {
147 try {
148 if (this._updateCount === 1) {
175 assertFn(() => this._updateCount >= 0);
176 }
178 > public handlePossibleChange(observable: IObservable<any>): void {
179 if (this._state === AutorunState.upToDate && this._isDependency(observable)) {
180 this._checkIterations();
182 }
183 }
185 > public handleChange<T, TChange>(observable: IObservableWithChange<T, TChange>, change: TChange): void {
186 if (this._isDependency(observable)) {
187 getLogger()?.handleAutorunDependencyChanged(this, observable, change);
203 }
204 }
206 > private _isDependency(observable: IObservableWithChange<any, any>): boolean {
207 return this._dependencies.has(observable) && !this._dependenciesToBeRemoved.has(observable);
208 }
210 > // IReader implementation
211 >
212 > private _ensureNoRunning(): void {
213 if (!this._isRunning) { throw new BugIndicatingError('The reader object cannot be used outside its compute function!'); }
214 }
216 > public readObservable<T>(observable: IObservable<T>): T {
217 this._ensureNoRunning();
218
228 return value;
229 }
231 > private _store: DisposableStore | undefined = undefined;
232 > get store(): DisposableStore {
233 this._ensureNoRunning();
234 if (this._disposed) {
241 return this._store;
242 }
244 > private _delayedStore: DisposableStore | undefined = undefined;
245 > get delayedStore(): DisposableStore {
246 this._ensureNoRunning();
247 if (this._disposed) {
254 return this._delayedStore;
255 }
257 > public debugGetState() {
258 return {
259 isRunning: this._isRunning,
264 };
265 }
267 > public debugRerun(): void {
268 if (!this._isRunning) {
269 this._run();
272 }
273 }
275 > private _checkIterations(): boolean {
276 if (this._iteration > 100) {
277 onBugIndicatingError(new BugIndicatingError(`Autorun '${this.debugName}' is stuck in an infinite update loop.`));
src/vs/platform/agentHost/node/agentHostChangesetStateCache.ts 78 covered LOC · 12 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentHostChangesetStateCache.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { LinkedMap, Touch } from '../../../base/common/map.js';
7 > import { ChangesetStatus, type ChangesetState, type URI } from '../common/state/sessionState.js';
8 >
9 > /**
10 > * Default number of expanded changeset states kept hot in memory.
11 > *
12 > * This cache only stores the subscribable `ChangesetState` payloads. The
13 > * lightweight catalogue on `SessionSummary.changesets` remains on the session
14 > * summary, and static changesets can be rehydrated from persisted metadata or
15 > * recomputed on demand. The limit is intentionally a soft cap: subscribed or
16 > * actively-computing changesets may pin the cache above this value until they
17 > * become evictable.
18 > */
19 > const DEFAULT_CHANGESET_STATE_SOFT_LIMIT = 500;
20 >
21 > export interface IAgentHostChangesetStateRetentionOptions {
22 > /**
23 > * Number of expanded changeset states kept hot in memory. The limit is soft:
24 > * entries for which {@link canEvict} returns false may temporarily keep the
25 > * cache above this value.
26 > */
27 > readonly softLimit?: number;
28 >
29 > /**
30 > * Returns whether a changeset state can be silently evicted from the cache.
31 > * Production callers should provide this from `AgentService`, which owns
32 > * protocol subscription refcounts and can ask the changeset service about
33 > * active producers. Return false for changesets that are subscribed or have
34 > * an active producer that may still publish into the changeset URI.
35 > */
36 > readonly canEvict?: (changeset: URI) => boolean;
37 > }
38 >
39 > /**
40 > * Owns the memory policy for expanded changeset states.
41 > *
42 > * The state manager owns protocol sequencing and reducer application; this
43 > * helper owns the cache mechanics needed to keep dormant changesets bounded.
44 > * Eviction here is deliberately silent: protocol-visible teardown still goes
45 > * through `AgentHostStateManager.disposeChangeset`, which emits
46 > * `ChangesetCleared` before removing state.
47 > */
48 > export class AgentHostChangesetStateCache {
49 >
50 > private readonly _states = new Map<string, ChangesetState>();
51 > private readonly _lru = new LinkedMap<string, true>();
52 > private readonly _softLimit: number;
53 > private readonly _canEvict: (changeset: URI) => boolean;
54 >
55 > constructor(options: IAgentHostChangesetStateRetentionOptions = {}) {
56 > this._softLimit = Math.max(0, options.softLimit ?? DEFAULT_CHANGESET_STATE_SOFT_LIMIT); agentHostChangesetStateCache.ts
57 > this._canEvict = options.canEvict ?? (() => true);
58 > }
60 > keys(): IterableIterator<string> {
61 return this._states.keys();
62 }
64 > has(changeset: URI): boolean {
65 return this._states.has(changeset);
66 }
68 > get(changeset: URI): ChangesetState | undefined {
69 this._touch(changeset);
70 return this._states.get(changeset);
71 }
73 > set(changeset: URI, state: ChangesetState): void {
74 this._states.set(changeset, state);
75 this._touch(changeset);
76 this._evictIfOverLimit();
77 }
79 > delete(changeset: URI): void {
80 this._states.delete(changeset);
81 this._lru.delete(changeset);
82 }
84 > register(changeset: URI, initialStatus: ChangesetStatus = ChangesetStatus.Computing): void {
85 if (this._states.has(changeset)) {
86 this._touch(changeset);
89 this.set(changeset, { status: initialStatus, files: [] });
90 }
92 > /** Re-runs eviction after external liveness changes, such as unsubscribe or compute completion. */
93 > trimEvictableEntries(): void {
94 this._evictIfOverLimit();
95 }
97 > private _touch(changeset: URI): void {
98 if (this._states.has(changeset)) {
99 this._lru.set(changeset, true, Touch.AsNew);
100 }
101 }
103 > private _evictIfOverLimit(): void {
104 if (this._softLimit === 0) {
105 for (const changeset of [...this._lru.keys()]) {
src/vs/base/test/common/virtualScheduling/embedding.ts 76 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- embedding.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { setTimeout0, setTimeout0IsFaster } from '../../../common/platform.js';
7 > import { TimeApi } from './timeApi.js';
8 > import { VirtualEvent } from './virtualClock.js';
9 >
10 > /**
11 > * # The processor/host embedding
12 > *
13 > * An {@link Embedding} is the contract between the processor's pure state
14 > * machine and the host event loop. It is invoked once per virtual step that
15 > * produced progress, and decides *how* the processor reaches the host before
16 > * the next step.
17 > *
18 > * ## Contract
19 > *
20 > * On each invocation the embedding MUST do exactly one of:
21 > *
22 > * 1. Return `'continueSync'` **without** calling `then`. The processor will
23 > * loop in place on the same host stack frame.
24 > *
25 > * 2. Schedule `then` on a host primitive (microtask, macrotask, paint frame)
26 > * and return `'cbScheduled'`. The processor will return and wait for the
27 > * callback to re-enter the trampoline.
28 > *
29 > * The embedding MUST NOT call `then` synchronously and also return
30 > * `'cbScheduled'` (that would re-enter the trampoline before this call
31 > * completed). Likewise, returning `'continueSync'` while having scheduled
32 > * `then` async would cause `then` to fire after the trampoline already
33 > * looped — also a bug.
34 > *
35 > * ## Why a callback contract instead of async/await
36 > *
37 > * Every `await` is an implicit microtask hop. For code whose job is to
38 > * decide host hops, that's the wrong abstraction: the reader has to mentally
39 > * compile the `await` to a boundary. With this contract, every host hop is
40 > * a named call to a single primitive (`api.setTimeout`, `setTimeout0`,
41 > * `api.requestAnimationFrame`, …) at exactly one site in this file.
42 > */
43 > export type Embedding = (
44 > nextEvent: VirtualEvent,
45 > then: () => void,
46 > ) => 'continueSync' | 'cbScheduled';
47 >
48 > /**
49 > * Tasks never schedule via promise chains. The processor runs virtual events
50 > * back-to-back on a single host stack frame — fastest possible, but starves
51 > * the host event loop for the duration of the run.
52 > *
53 > * Use only for tests where no `await` / `.then` chains are involved between
54 > * scheduling and execution of virtual events.
55 > */
56 > export const syncEmbedding: Embedding = () => 'continueSync';
57 >
58 > /**
59 > * Tasks may schedule via `await` / `.then`. Between virtual events, yield to
60 > * the host so the *microtask closure* — the current microtask plus every
61 > * microtask it transitively enqueues — drains before the next event runs.
62 > *
63 > * This is the embedding to use for almost all integration-style tests.
64 > */
65 > export function drainMicrotasksEmbedding(realApi: TimeApi): Embedding {
66 return (next, then) => {
67 if (next.preferRealAnimationFrame && realApi.requestAnimationFrame) {
73 };
74 }
76 > /**
77 > * Schedule `cb` after the closure of the current microtask queue: `cb`
78 > * fires only after the current microtask AND every microtask it
79 > * (recursively, transitively) enqueues has settled.
80 > *
81 > * Per the HTML spec, a macrotask runs only when the microtask queue is
82 > * empty, so any macrotask primitive achieves this. We pick the fastest
83 > * one available on the host.
84 > */
85 > export function nextMacrotask(api: TimeApi, cb: () => void): void {
86 if (setTimeout0IsFaster) { setTimeout0(cb); return; }
87 if (api.setImmediate) { api.setImmediate(cb); return; }
src/vs/base/common/observableInternal/logging/debugGetDependencyGraph.ts 75 covered LOC · 10 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- debugGetDependencyGraph.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IObserver } from '../base.js';
7 > import { Derived } from '../observables/derivedImpl.js';
8 > import { FromEventObservable } from '../observables/observableFromEvent.js';
9 > import { ObservableValue } from '../observables/observableValue.js';
10 > import { AutorunObserver } from '../reactions/autorunImpl.js';
11 > import { formatValue } from './consoleObservableLogger.js';
12 >
13 > interface IOptions {
14 > type: 'dependencies' | 'observers';
15 > debugNamePostProcessor?: (name: string) => string;
16 > }
17 >
18 > export function debugGetObservableGraph(obs: IObservable<any> | IObserver, options: IOptions): string {
19 const debugNamePostProcessor = options?.debugNamePostProcessor ?? ((str: string) => str);
20 const info = Info.from(obs, debugNamePostProcessor);
31 }
32 }
34 function formatObservableInfoWithDependencies(info: Info, indentLevel: number, alreadyListed: Set<IObservable<any> | IObserver>, options: IOptions): string {
35 const indent = '\t\t'.repeat(indentLevel);
58 return lines.join('\n');
59 }
61 function formatObservableInfoWithObservers(info: Info, indentLevel: number, alreadyListed: Set<IObservable<any> | IObserver>, options: IOptions): string {
62 const indent = '\t\t'.repeat(indentLevel);
85 return lines.join('\n');
86 }
88 > class Info {
89 > public static from(obs: IObservable<any> | IObserver, debugNamePostProcessor: (name: string) => string): Info | undefined {
90 > if (obs instanceof AutorunObserver) {
91 > const state = obs.debugGetState(); debugGetDependencyGraph.ts
92 > return new Info(
93 > obs,
94 > debugNamePostProcessor(obs.debugName),
95 > 'autorun',
96 > undefined,
97 > state.stateStr,
98 > Array.from(state.dependencies),
99 > []
100 > );
101 > } else if (obs instanceof Derived) { debugGetDependencyGraph.ts
102 > const state = obs.debugGetState();
103 > return new Info(
104 > obs,
105 > debugNamePostProcessor(obs.debugName),
106 > 'derived',
107 > state.value,
108 > state.stateStr,
109 > Array.from(state.dependencies),
110 > Array.from(obs.debugGetObservers())
111 > );
112 > } else if (obs instanceof ObservableValue) {
113 > const state = obs.debugGetState();
114 > return new Info(
115 > obs,
116 > debugNamePostProcessor(obs.debugName),
117 > 'observableValue',
118 > state.value,
119 > 'upToDate',
120 > [],
121 > Array.from(obs.debugGetObservers())
122 > );
123 > } else if (obs instanceof FromEventObservable) {
124 > const state = obs.debugGetState(); debugGetDependencyGraph.ts
125 > return new Info(
126 > obs,
127 > debugNamePostProcessor(obs.debugName),
128 > 'fromEvent',
129 > state.value,
130 > state.hasValue ? 'upToDate' : 'initial',
131 > [],
132 > Array.from(obs.debugGetObservers())
133 > );
134 > }
135 > return undefined;
137 >
138 > public static unknown(obs: IObservable<any> | IObserver): Info {
139 return new Info(
140 obs,
147 );
148 }
150 > constructor(
151 public readonly sourceObj: IObservable<any> | IObserver,
152 public readonly name: string,
src/vs/base/common/collections.ts 74 covered LOC · 18 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- collections.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * An interface for a JavaScript object that
8 > * acts a dictionary. The keys are strings.
9 > */
10 > export type IStringDictionary<V> = Record<string, V>;
11 >
12 > /**
13 > * An interface for a JavaScript object that
14 > * acts a dictionary. The keys are numbers.
15 > */
16 > export type INumberDictionary<V> = Record<number, V>;
17 >
18 > /**
19 > * Groups the collection into a dictionary based on the provided
20 > * group function.
21 > */
22 > export function groupBy<K extends string | number | symbol, V>(data: readonly V[], groupFn: (element: V) => K): Partial<Record<K, V[]>> {
23 const result: Partial<Record<K, V[]>> = Object.create(null);
24 for (const element of data) {
32 return result;
33 }
35 > export function groupByMap<K, V>(data: V[], groupFn: (element: V) => K): Map<K, V[]> {
36 const result = new Map<K, V[]>();
37 for (const element of data) {
46 return result;
47 }
49 > export function diffSets<T>(before: ReadonlySet<T>, after: ReadonlySet<T>): { removed: T[]; added: T[] } {
50 const removed: T[] = [];
51 const added: T[] = [];
62 return { removed, added };
63 }
65 > /**
66 > * Checks whether two sets contain exactly the same elements.
67 > *
68 > * @param a - The first set.
69 > * @param b - The second set.
70 > * @returns `true` if both sets have the same size and every element of `a` is also in `b`.
71 > */
72 > export function equalSets<T>(a: ReadonlySet<T>, b: ReadonlySet<T>): boolean {
73 if (a === b) {
74 return true;
84 return true;
85 }
87 > export function diffMaps<K, V>(before: Map<K, V>, after: Map<K, V>): { removed: V[]; added: V[] } {
88 const removed: V[] = [];
89 const added: V[] = [];
100 return { removed, added };
101 }
103 > /**
104 > * Computes the intersection of two sets.
105 > *
106 > * @param setA - The first set.
107 > * @param setB - The second iterable.
108 > * @returns A new set containing the elements that are in both `setA` and `setB`.
109 > */
110 > export function intersection<T>(setA: Set<T>, setB: Iterable<T>): Set<T> {
111 const result = new Set<T>();
112 for (const elem of setB) {
117 return result;
118 }
120 > export class SetWithKey<T> implements Set<T> {
121 > private _map = new Map<unknown, T>();
122 >
123 > constructor(values: T[], private toKey: (t: T) => unknown) {
124 for (const value of values) {
125 this.add(value);
126 }
127 }
129 > get size(): number {
130 return this._map.size;
131 }
133 > add(value: T): this {
134 const key = this.toKey(value);
135 this._map.set(key, value);
136 return this;
137 }
139 > delete(value: T): boolean {
140 return this._map.delete(this.toKey(value));
141 }
143 > has(value: T): boolean {
144 return this._map.has(this.toKey(value));
145 }
147 > *entries(): SetIterator<[T, T]> {
148 for (const entry of this._map.values()) {
149 yield [entry, entry];
150 }
151 }
153 > keys(): SetIterator<T> {
154 return this.values();
155 }
157 > *values(): SetIterator<T> {
158 for (const entry of this._map.values()) {
159 yield entry;
160 }
161 }
163 > clear(): void {
164 this._map.clear();
165 }
167 > forEach(callbackfn: (value: T, value2: T, set: Set<T>) => void, thisArg?: unknown): void {
168 this._map.forEach(entry => callbackfn.call(thisArg, entry, entry, this));
169 }
171 > [Symbol.iterator](): SetIterator<T> {
172 return this.values();
173 }
175 > [Symbol.toStringTag]: string = 'SetWithKey';
176 > }
src/vs/base/common/hash.ts 74 covered LOC · 17 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- hash.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { encodeHex, VSBuffer } from './buffer.js';
7 > import * as strings from './strings.js';
8 >
9 > type NotSyncHashable = ArrayBufferLike | ArrayBufferView;
10 >
11 > /**
12 > * Return a hash value for an object.
13 > *
14 > * Note that this should not be used for binary data types. Instead,
15 > * prefer {@link hashAsync}.
16 > */
17 > export function hash<T>(obj: T extends NotSyncHashable ? never : T): number {
18 return doHash(obj, 0);
19 }
20 > hash.ts
21 > export function doHash(obj: unknown, hashVal: number): number {
22 switch (typeof obj) {
23 case 'object':
40 }
41 }
42 > hash.ts
43 > export function numberHash(val: number, initialHashVal: number): number {
44 return (((initialHashVal << 5) - initialHashVal) + val) | 0; // hashVal * 31 + ch, keep as int32
45 }
46 > hash.ts
47 function booleanHash(b: boolean, initialHashVal: number): number {
48 return numberHash(b ? 433 : 863, initialHashVal);
49 }
50 > hash.ts
51 > export function stringHash(s: string, hashVal: number) {
52 hashVal = numberHash(149417, hashVal);
53 for (let i = 0, length = s.length; i < length; i++) {
56 return hashVal;
57 }
58 > hash.ts
59 function arrayHash(arr: unknown[], initialHashVal: number): number {
60 initialHashVal = numberHash(104579, initialHashVal);
61 return arr.reduce<number>((hashVal, item) => doHash(item, hashVal), initialHashVal);
62 }
63 > hash.ts
64 function objectHash(obj: object, initialHashVal: number): number {
65 initialHashVal = numberHash(181387, initialHashVal);
69 }, initialHashVal);
70 }
71 > hash.ts
72 >
73 >
74 > /** Hashes the input as SHA-1, returning a hex-encoded string. */
75 > export const hashAsync = (input: string | ArrayBufferView | VSBuffer) => {
76 // Note: I would very much like to expose a streaming interface for hashing
77 // generally, but this is not available in web crypto yet, see
96 return crypto.subtle.digest('sha-1', buff as ArrayBufferView<ArrayBuffer>).then(toHexString); // CodeQL [SM04514] we use sha1 here for validating old stored client state, not for security
97 };
98 > hash.ts
99 > const enum SHA1Constant {
100 > BLOCK_SIZE = 64, // 512 / 8
101 > UNICODE_REPLACEMENT = 0xFFFD,
102 > }
103 >
104 function leftRotate(value: number, bits: number, totalBits: number = 32): number {
105 // delta + bits = totalBits
112 return ((value << bits) | ((mask & value) >>> delta)) >>> 0;
113 }
114 > hash.ts
115 > function toHexString(buffer: ArrayBuffer): string;
116 > function toHexString(value: number, bitsize?: number): string;
117 function toHexString(bufferOrValue: ArrayBuffer | number, bitsize: number = 32): string {
118 if (bufferOrValue instanceof ArrayBuffer) {
122 return (bufferOrValue >>> 0).toString(16).padStart(bitsize / 4, '0');
123 }
124 > hash.ts
125 > /**
126 > * A SHA1 implementation that works with strings and does not allocate.
127 > *
128 > * Prefer to use {@link hashAsync} in async contexts
129 > */
130 > export class StringSHA1 {
131 > private static _bigBlock32 = new DataView(new ArrayBuffer(320)); // 80 * 4 = 320
132 >
133 > private _h0 = 0x67452301;
134 > private _h1 = 0xEFCDAB89;
135 > private _h2 = 0x98BADCFE;
136 > private _h3 = 0x10325476;
137 > private _h4 = 0xC3D2E1F0;
138 >
139 > private readonly _buff: Uint8Array;
140 > private readonly _buffDV: DataView;
141 > private _buffLen: number;
142 > private _totalLen: number;
143 > private _leftoverHighSurrogate: number;
144 > private _finished: boolean;
145 >
146 > constructor() {
147 this._buff = new Uint8Array(SHA1Constant.BLOCK_SIZE + 3 /* to fit any utf-8 */);
148 this._buffDV = new DataView(this._buff.buffer);
152 this._finished = false;
153 }
154 > hash.ts
155 > public update(str: string): void {
156 const strLen = str.length;
157 if (strLen === 0) {
208 this._leftoverHighSurrogate = leftoverHighSurrogate;
209 }
210 > hash.ts
211 > private _push(buff: Uint8Array, buffLen: number, codePoint: number): number {
212 if (codePoint < 0x0080) {
213 buff[buffLen++] = codePoint;
238 return buffLen;
239 }
240 > hash.ts
241 > public digest(): string {
242 if (!this._finished) {
243 this._finished = true;
253 return toHexString(this._h0) + toHexString(this._h1) + toHexString(this._h2) + toHexString(this._h3) + toHexString(this._h4);
254 }
255 > hash.ts
256 > private _wrapUp(): void {
257 this._buff[this._buffLen++] = 0x80;
258 this._buff.subarray(this._buffLen).fill(0);
271 this._step();
272 }
273 > hash.ts
274 > private _step(): void {
275 const bigBlock32 = StringSHA1._bigBlock32;
276 const data = this._buffDV;
322 this._h4 = (this._h4 + e) & 0xffffffff;
323 }
324 > } hash.ts
src/vs/platform/agentHost/common/state/protocol/channels-resource-watch/state.ts 73 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from '../common/state.js';
10 >
11 > // ─── Resource Watch Types ────────────────────────────────────────────────────
12 >
13 > /**
14 > * Full state for a single resource watch, returned when a client subscribes
15 > * to an `ahp-resource-watch:` URI.
16 > *
17 > * Watches are otherwise stateless: the watcher exists to deliver
18 > * {@link ResourceWatchChangedAction} events. The state carries only the
19 > * descriptor of what is being watched so a re-subscribing client can
20 > * recover the watch configuration after reconnecting.
21 > *
22 > * @category Resource Watch Types
23 > */
24 > export interface ResourceWatchState {
25 > /**
26 > * The URI being watched. For recursive watches this is the root of the
27 > * subtree; for non-recursive watches this is the single file or
28 > * directory.
29 > */
30 > root: URI;
31 > /**
32 > * `true` if the watcher reports changes for descendants of `root`;
33 > * `false` if it only reports changes to `root` itself (and, when
34 > * `root` is a directory, its direct children).
35 > */
36 > recursive: boolean;
37 > /**
38 > * Optional glob patterns or paths relative to `root` to exclude from
39 > * change reporting.
40 > */
41 > excludes?: { items: string[] };
42 > /**
43 > * Optional glob patterns or paths relative to `root` to restrict
44 > * change reporting to. Omit to report every change under `root`
45 > * subject to `excludes`.
46 > */
47 > includes?: { items: string[] };
48 > }
49 >
50 > // ─── Resource Change ─────────────────────────────────────────────────────────
51 >
52 > /**
53 > * Discriminant for {@link ResourceChange.type}.
54 > *
55 > * @category Resource Watch Types
56 > */
57 > export const enum ResourceChangeType {
58 > Added = 'added',
59 > Updated = 'updated',
60 > Deleted = 'deleted',
61 > }
62 >
63 > /**
64 > * A single change observed by a resource watcher.
65 > *
66 > * @category Resource Watch Types
67 > */
68 > export interface ResourceChange {
69 > /** The URI of the resource that changed. */
70 > uri: URI;
71 > /** The kind of change observed. */
72 > type: ResourceChangeType;
73 > }
src/vs/platform/agentHost/common/state/protocol/channels-chat/reducer.ts 70 covered LOC · 14 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import { TurnState, ToolCallStatus, ToolCallConfirmationReason, ToolCallCancellationReason, ToolCallContributorKind, ResponsePartKind, PendingMessageKind, type ChatState, type ToolCallState, type ResponsePart, type ToolCallResponsePart, type InputRequestResponsePart, type Turn, type PendingMessage, type ConfirmationOption } from './state.js';
11 > import { SessionStatus } from '../channels-session/state.js';
12 > import type { ChatAction } from '../action-origin.generated.js';
13 > import { softAssertNever } from '../common/reducer-helpers.js';
14 >
15 > // ─── Helpers ─────────────────────────────────────────────────────────────────
16 >
17 > /** Extracts the common base fields shared by all tool call lifecycle states. */
18 function tcBase(tc: ToolCallState) {
19 return {
26 };
27 }
28 > reducer.ts
29 function tcBaseWithMeta(tc: ToolCallState, meta: Record<string, unknown> | undefined) {
30 return {
33 };
34 }
35 > reducer.ts
36 > /** Resolves a selected option from the confirmation options array by ID. */
37 function resolveSelectedOption(options: ConfirmationOption[] | undefined, id: string | undefined): ConfirmationOption | undefined {
38 if (!id || !options) {
41 return options.find(o => o.id === id);
42 }
43 > reducer.ts
44 > /**
45 > * Returns `true` if the active turn has any tool call blocking on something
46 > * external to the turn itself — a pending confirmation/result-confirmation,
47 > * or a tool call paused on MCP authentication.
48 > */
49 function hasBlockingToolCall(state: ChatState): boolean {
50 if (!state.activeTurn) {
58 );
59 }
60 > reducer.ts
61 > /** Returns whether the active turn contains an input request awaiting submission. */
62 function hasOpenInputRequest(state: ChatState): boolean {
63 return state.activeTurn?.responseParts.some(part =>
65 ) ?? false;
66 }
67 > reducer.ts
68 function findOpenInputRequestPart(
69 responseParts: readonly ResponsePart[],
81 return part.kind === ResponsePartKind.InputRequest ? { index, part } : undefined;
82 }
83 > reducer.ts
84 > /** Bitmask covering the mutually-exclusive activity bits (bits 0–4). */
85 > const STATUS_ACTIVITY_MASK = (1 << 5) - 1;
86 >
87 > /** Sets or clears a metadata flag on a status value. */
88 function withStatusFlag(status: SessionStatus, flag: SessionStatus, set: boolean): SessionStatus {
89 return set ? status | flag : status & ~flag;
90 }
91 > reducer.ts
92 > /** Derives the summary status from live session work, preserving orthogonal flags. */
93 function summaryStatus(state: ChatState, terminalStatus?: SessionStatus.Error): SessionStatus {
94 let activity: SessionStatus;
105 return state.status & ~STATUS_ACTIVITY_MASK | activity;
106 }
107 > reducer.ts
108 > /**
109 > * Returns a state with `status` recomputed. Use this after reducers
110 > * that change data which feeds into {@link summaryStatus} (e.g. tool call
111 > * lifecycle transitions that may enter or leave a pending-confirmation state).
112 > */
113 function refreshSummaryStatus(state: ChatState): ChatState {
114 const status = summaryStatus(state);
118 return { ...state, status };
119 }
120 > reducer.ts
121 > /**
122 > * Ends the active turn, finalizing it into a completed turn record.
123 > *
124 > * Tool call parts with non-terminal states are forced to cancelled.
125 > * Pending permissions are stripped from tool call parts.
126 > */
127 function endTurn(
128 state: ChatState,
183 };
184 }
185 > reducer.ts
186 function upsertInputRequestPart(state: ChatState, request: InputRequestResponsePart['request']): ChatState {
187 const activeTurn = state.activeTurn;
213 return { ...next, status: withStatusFlag(summaryStatus(next), SessionStatus.IsRead, false), modifiedAt: new Date(Date.now()).toISOString() };
214 }
215 > reducer.ts
216 > /**
217 > * Immutably updates the tool call inside a `ToolCall` response part in the
218 > * active turn's `responseParts` array. Returns `state` unchanged if the
219 > * active turn or tool call doesn't match.
220 > */
221 function updateToolCallInParts(
222 state: ChatState,
252 };
253 }
254 > reducer.ts
255 > /**
256 > * Immutably updates a response part by `partId` in the active turn.
257 > * For markdown/reasoning parts, matches on `id`. For tool call parts,
258 > * matches on `toolCall.toolCallId`.
259 > */
260 function updateResponsePart(
261 state: ChatState,
292 };
293 }
294 > reducer.ts
295 >
296 > // ─── Chat Reducer ────────────────────────────────────────────────────────────
297 >
298 > /**
299 > * Pure reducer for chat state. Handles all {@link ChatAction} variants.
300 > */
301 > export function chatReducer(state: ChatState, action: ChatAction, log?: (msg: string) => void): ChatState {
302 switch (action.type) {
303 // ── Turn Lifecycle ────────────────────────────────────────────────────
src/vs/base/common/observableInternal/logging/logging.ts 67 covered LOC · 17 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- logging.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { AutorunObserver } from '../reactions/autorunImpl.js';
7 > import { IObservable } from '../base.js';
8 > import { TransactionImpl } from '../transaction.js';
9 > import type { Derived } from '../observables/derivedImpl.js';
10 > import { DebugLocation } from '../debugLocation.js';
11 >
12 > let globalObservableLogger: IObservableLogger | undefined;
13 >
14 > export function addLogger(logger: IObservableLogger): void {
15 if (!globalObservableLogger) {
16 globalObservableLogger = logger;
21 }
22 }
23 > logging.ts
24 > export function getLogger(): IObservableLogger | undefined {
25 return globalObservableLogger;
26 }
27 > logging.ts
28 > let globalObservableLoggerFn: ((obs: IObservable<any>) => void) | undefined = undefined;
29 > export function setLogObservableFn(fn: (obs: IObservable<any>) => void): void {
30 > globalObservableLoggerFn = fn;
31 > }
32 >
33 > export function logObservable(obs: IObservable<any>): void {
34 if (globalObservableLoggerFn) {
35 globalObservableLoggerFn(obs);
36 }
37 }
38 > logging.ts
39 > export interface IChangeInformation {
40 > oldValue: unknown;
41 > newValue: unknown;
42 > change: unknown;
43 > didChange: boolean;
44 > hadValue: boolean;
45 > }
46 >
47 > export interface IObservableLogger {
48 > handleObservableCreated(observable: IObservable<any>, location: DebugLocation): void;
49 > handleOnListenerCountChanged(observable: IObservable<any>, newCount: number): void;
50 >
51 > handleObservableUpdated(observable: IObservable<any>, info: IChangeInformation): void;
52 >
53 > handleAutorunCreated(autorun: AutorunObserver, location: DebugLocation): void;
54 > handleAutorunDisposed(autorun: AutorunObserver): void;
55 > handleAutorunDependencyChanged(autorun: AutorunObserver, observable: IObservable<any>, change: unknown): void;
56 > handleAutorunStarted(autorun: AutorunObserver): void;
57 > handleAutorunFinished(autorun: AutorunObserver): void;
58 >
59 > handleDerivedDependencyChanged(derived: Derived<any, any, any>, observable: IObservable<any>, change: unknown): void;
60 > handleDerivedCleared(observable: Derived<any, any, any>): void;
61 >
62 > handleBeginTransaction(transaction: TransactionImpl): void;
63 > handleEndTransaction(transaction: TransactionImpl): void;
64 > }
65 >
66 > class ComposedLogger implements IObservableLogger {
67 > constructor(
68 public readonly loggers: IObservableLogger[],
69 ) { }
70 > logging.ts
71 > handleObservableCreated(observable: IObservable<any>, location: DebugLocation): void {
72 for (const logger of this.loggers) {
73 logger.handleObservableCreated(observable, location);
74 }
75 }
76 > handleOnListenerCountChanged(observable: IObservable<any>, newCount: number): void { logging.ts
77 for (const logger of this.loggers) {
78 logger.handleOnListenerCountChanged(observable, newCount);
79 }
80 }
81 > handleObservableUpdated(observable: IObservable<any>, info: IChangeInformation): void { logging.ts
82 for (const logger of this.loggers) {
83 logger.handleObservableUpdated(observable, info);
84 }
85 }
86 > handleAutorunCreated(autorun: AutorunObserver, location: DebugLocation): void { logging.ts
87 for (const logger of this.loggers) {
88 logger.handleAutorunCreated(autorun, location);
89 }
90 }
91 > handleAutorunDisposed(autorun: AutorunObserver): void { logging.ts
92 for (const logger of this.loggers) {
93 logger.handleAutorunDisposed(autorun);
94 }
95 }
96 > handleAutorunDependencyChanged(autorun: AutorunObserver, observable: IObservable<any>, change: unknown): void { logging.ts
97 for (const logger of this.loggers) {
98 logger.handleAutorunDependencyChanged(autorun, observable, change);
99 }
100 }
101 > handleAutorunStarted(autorun: AutorunObserver): void { logging.ts
102 for (const logger of this.loggers) {
103 logger.handleAutorunStarted(autorun);
104 }
105 }
106 > handleAutorunFinished(autorun: AutorunObserver): void { logging.ts
107 for (const logger of this.loggers) {
108 logger.handleAutorunFinished(autorun);
109 }
110 }
111 > handleDerivedDependencyChanged(derived: Derived<any>, observable: IObservable<any>, change: unknown): void { logging.ts
112 for (const logger of this.loggers) {
113 logger.handleDerivedDependencyChanged(derived, observable, change);
114 }
115 }
116 > handleDerivedCleared(observable: Derived<any>): void { logging.ts
117 for (const logger of this.loggers) {
118 logger.handleDerivedCleared(observable);
119 }
120 }
121 > handleBeginTransaction(transaction: TransactionImpl): void { logging.ts
122 for (const logger of this.loggers) {
123 logger.handleBeginTransaction(transaction);
124 }
125 }
126 > handleEndTransaction(transaction: TransactionImpl): void { logging.ts
127 for (const logger of this.loggers) {
128 logger.handleEndTransaction(transaction);
129 }
130 }
131 > } logging.ts
src/vs/base/common/iterator.ts 65 covered LOC · 23 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- iterator.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { isIterable } from './types.js';
7 >
8 > export namespace Iterable {
9 >
10 > export function is<T = unknown>(thing: unknown): thing is Iterable<T> {
11 > return !!thing && typeof thing === 'object' && typeof (thing as Iterable<T>)[Symbol.iterator] === 'function'; iterator.ts
12 > }
14 > const _empty: Iterable<never> = Object.freeze([]);
15 > export function empty<T = never>(): readonly never[] {
16 return _empty as readonly never[];
17 }
19 > export function* single<T>(element: T): Iterable<T> {
20 yield element;
21 }
23 > export function wrap<T>(iterableOrElement: Iterable<T> | T): Iterable<T> {
24 if (is(iterableOrElement)) {
25 return iterableOrElement;
28 }
29 }
31 > export function from<T>(iterable: Iterable<T> | undefined | null): Iterable<T> {
32 return iterable ?? (_empty as Iterable<T>);
33 }
35 > export function* reverse<T>(array: ReadonlyArray<T>): Iterable<T> {
36 for (let i = array.length - 1; i >= 0; i--) {
37 yield array[i];
38 }
39 }
41 > export function isEmpty<T>(iterable: Iterable<T> | undefined | null): boolean {
42 return !iterable || iterable[Symbol.iterator]().next().done === true;
43 }
45 > export function first<T>(iterable: Iterable<T>): T | undefined {
46 return iterable[Symbol.iterator]().next().value;
47 }
49 > export function some<T>(iterable: Iterable<T>, predicate: (t: T, i: number) => unknown): boolean {
50 let i = 0;
51 for (const element of iterable) {
56 return false;
57 }
59 > export function every<T>(iterable: Iterable<T>, predicate: (t: T, i: number) => unknown): boolean {
60 let i = 0;
61 for (const element of iterable) {
66 return true;
67 }
69 > export function find<T, R extends T>(iterable: Iterable<T>, predicate: (t: T) => t is R): R | undefined;
70 > export function find<T>(iterable: Iterable<T>, predicate: (t: T) => boolean): T | undefined;
71 > export function find<T>(iterable: Iterable<T>, predicate: (t: T) => boolean): T | undefined {
72 for (const element of iterable) {
73 if (predicate(element)) {
78 return undefined;
79 }
81 > export function filter<T, R extends T>(iterable: Iterable<T>, predicate: (t: T) => t is R): Iterable<R>;
82 > export function filter<T>(iterable: Iterable<T>, predicate: (t: T) => boolean): Iterable<T>;
83 > export function* filter<T>(iterable: Iterable<T>, predicate: (t: T) => boolean): Iterable<T> {
84 for (const element of iterable) {
85 if (predicate(element)) {
88 }
89 }
91 > export function* map<T, R>(iterable: Iterable<T>, fn: (t: T, index: number) => R): Iterable<R> {
92 let index = 0;
93 for (const element of iterable) {
95 }
96 }
98 > export function* flatMap<T, R>(iterable: Iterable<T>, fn: (t: T, index: number) => Iterable<R>): Iterable<R> {
99 let index = 0;
100 for (const element of iterable) {
102 }
103 }
104 > iterator.ts
105 > export function* concat<T>(...iterables: (Iterable<T> | T)[]): Iterable<T> {
106 for (const item of iterables) {
107 if (isIterable(item)) {
112 }
113 }
114 > iterator.ts
115 > export function reduce<T, R>(iterable: Iterable<T>, reducer: (previousValue: R, currentValue: T) => R, initialValue: R): R {
116 let value = initialValue;
117 for (const element of iterable) {
120 return value;
121 }
122 > iterator.ts
123 > export function length<T>(iterable: Iterable<T>): number {
124 let count = 0;
125 for (const _ of iterable) {
128 return count;
129 }
130 > iterator.ts
131 > /**
132 > * Returns an iterable slice of the array, with the same semantics as `array.slice()`.
133 > */
134 > export function* slice<T>(arr: ReadonlyArray<T>, from: number, to = arr.length): Iterable<T> {
135 if (from < -arr.length) {
136 from = 0;
150 }
151 }
152 > iterator.ts
153 > /**
154 > * Consumes `atMost` elements from iterable and returns the consumed elements,
155 > * and an iterable for the rest of the elements.
156 > */
157 > export function consume<T>(iterable: Iterable<T>, atMost: number = Number.POSITIVE_INFINITY): [T[], Iterable<T>] {
158 const consumed: T[] = [];
159
176 return [consumed, { [Symbol.iterator]() { return iterator; } }];
177 }
178 > iterator.ts
179 > export async function asyncToArray<T>(iterable: AsyncIterable<T>): Promise<T[]> {
180 const result: T[] = [];
181 for await (const item of iterable) {
184 return result;
185 }
186 > iterator.ts
187 > export async function asyncToArrayFlat<T>(iterable: AsyncIterable<T[]>): Promise<T[]> {
188 let result: T[] = [];
189 for await (const item of iterable) {
src/vs/base/common/objects.ts 65 covered LOC · 13 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- objects.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { isTypedArray, isObject, isUndefinedOrNull } from './types.js';
7 >
8 > export function deepClone<T>(obj: T): T {
9 if (!obj || typeof obj !== 'object') {
10 return obj;
19 return result;
20 }
21 > objects.ts
22 > export function deepFreeze<T>(obj: T): T {
23 if (!obj || typeof obj !== 'object') {
24 return obj;
39 return obj;
40 }
41 > objects.ts
42 > const _hasOwnProperty = Object.prototype.hasOwnProperty;
43 >
44 >
45 > export function cloneAndChange(obj: any, changer: (orig: any) => any): any {
46 return _cloneAndChange(obj, changer, new Set());
47 }
48 > objects.ts
49 function _cloneAndChange(obj: any, changer: (orig: any) => any, seen: Set<any>): any {
50 if (isUndefinedOrNull(obj)) {
82 return obj;
83 }
84 > objects.ts
85 > /**
86 > * Copies all properties of source into destination. The optional parameter "overwrite" allows to control
87 > * if existing properties on the destination should be overwritten or not. Defaults to true (overwrite).
88 > */
89 > export function mixin(destination: any, source: any, overwrite: boolean = true): any {
90 if (!isObject(destination)) {
91 return source;
109 return destination;
110 }
111 > objects.ts
112 > export function equals(one: any, other: any): boolean {
113 if (one === other) {
114 return true;
162 return true;
163 }
164 > objects.ts
165 > /**
166 > * Calls `JSON.Stringify` with a replacer to break apart any circular references.
167 > * This prevents `JSON`.stringify` from throwing the exception
168 > * "Uncaught TypeError: Converting circular structure to JSON"
169 > */
170 > export function safeStringify(obj: any): string {
171 const seen = new Set<any>();
172 return JSON.stringify(obj, (key, value) => {
184 });
185 }
186 > objects.ts
187 > /**
188 > * Like `JSON.stringify`, but with deterministic ordering of object keys so that
189 > * structurally equal inputs always produce the same string. Useful for cache
190 > * keys derived from arbitrary object payloads.
191 > *
192 > * - Object keys are sorted at every level of nesting.
193 > * - Properties whose value is `undefined` are omitted (matching `JSON.stringify`).
194 > * - Circular references are replaced with the string `"[Circular]"` to avoid
195 > * throwing.
196 > * - A top-level `undefined` returns the string `'undefined'`; any other
197 > * stringification failure returns the empty string.
198 > */
199 > export function stableStringify(value: unknown): string {
200 if (value === undefined) {
201 return 'undefined';
207 }
208 }
209 > objects.ts
210 function _stableStringify(value: unknown, seen: WeakSet<object>): string {
211 if (value === null || typeof value !== 'object') {
230 return '{' + parts.join(',') + '}';
231 }
232 > objects.ts
233 > type obj = { [key: string]: any };
234 > /**
235 > * Returns an object that has keys for each value that is different in the base object. Keys
236 > * that do not exist in the target but in the base object are not considered.
237 > *
238 > * Note: This is not a deep-diffing method, so the values are strictly taken into the resulting
239 > * object if they differ.
240 > *
241 > * @param base the object to diff against
242 > * @param obj the object to use for diffing
243 > */
244 > export function distinct(base: obj, target: obj): obj {
245 const result = Object.create(null);
246
261 return result;
262 }
263 > objects.ts
264 > export function getCaseInsensitive(target: obj, key: string): unknown {
265 const lowercaseKey = key.toLowerCase();
266 const equivalentKey = Object.keys(target).find(k => k.toLowerCase() === lowercaseKey);
267 return equivalentKey ? target[equivalentKey] : target[key];
268 }
269 > objects.ts
270 > export function filter(obj: obj, predicate: (key: string, value: any) => boolean): obj {
271 const result = Object.create(null);
272 for (const [key, value] of Object.entries(obj)) {
277 return result;
278 }
279 > objects.ts
280 > export function mapValues<T extends {}, R>(obj: T, fn: (value: T[keyof T], key: string) => R): { [K in keyof T]: R } {
281 const result: { [key: string]: R } = {};
282 for (const [key, value] of Object.entries(obj)) {
src/vs/platform/agentHost/common/state/protocol/common/notifications.ts 63 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- notifications.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import type { URI } from './state.js';
10 >
11 > /**
12 > * Reason why authentication is required.
13 > *
14 > * @category Protocol Notifications
15 > */
16 > export const enum AuthRequiredReason {
17 > /** The client has not yet authenticated for the resource */
18 > Required = 'required',
19 > /** A previously valid token has expired or been revoked */
20 > Expired = 'expired',
21 > }
22 >
23 > // ─── auth/required ───────────────────────────────────────────────────────────
24 >
25 > /**
26 > * Sent by the server when a protected resource requires (re-)authentication.
27 > *
28 > * This notification MAY be associated with any channel — for example, an
29 > * agent advertised on the root channel, or a per-session resource. The
30 > * `channel` field identifies the subscription the auth requirement belongs
31 > * to; the `resource` field carries the OAuth-protected resource identifier
32 > * (per RFC 9728).
33 > *
34 > * Clients should obtain a fresh token and push it via the `authenticate`
35 > * command.
36 > *
37 > * @category Protocol Notifications
38 > * @method auth/required
39 > * @direction Server → Client
40 > * @messageType Notification
41 > * @version 1
42 > * @see {@link /specification/authentication | Authentication}
43 > * @example
44 > * ```json
45 > * {
46 > * "jsonrpc": "2.0",
47 > * "method": "auth/required",
48 > * "params": {
49 > * "channel": "ahp-root://",
50 > * "resource": "https://api.github.com",
51 > * "reason": "expired"
52 > * }
53 > * }
54 > * ```
55 > */
56 > export interface AuthRequiredParams {
57 > /** Channel URI this notification belongs to */
58 > channel: URI;
59 > /** The protected resource identifier that requires authentication */
60 > resource: string;
61 > /** Why authentication is required */
62 > reason?: AuthRequiredReason;
63 > }
src/vs/platform/agentHost/common/state/protocol/version/negotiation.ts 59 covered LOC · 13 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- negotiation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { compareProtocolVersions } from './registry.js';
7 >
8 > /**
9 > * Parses a `MAJOR.MINOR.PATCH` SemVer string. Returns `undefined` if the
10 > * string is not well-formed. Pre-release / build metadata are not allowed.
11 > */
12 > function tryParseSemver(version: string): readonly [number, number, number] | undefined { negotiation.ts
13 > const match = /^(\d+)\.(\d+)\.(\d+)$/.exec(version);
14 > if (!match) {
15 return undefined;
16 }
17 > return [Number(match[1]), Number(match[2]), Number(match[3])] as const; negotiation.ts
18 > }
20 > /**
21 > * Returns whether `offered` is semver-compatible with the server's
22 > * `current` version, using caret semantics:
23 > *
24 > * - majors must match
25 > * - when `major === 0`, minors must also match (because in 0.x semver,
26 > * every minor bump is breaking)
27 > * - the offered version MUST NOT be greater than `current` — a server that
28 > * only knows `0.1.0` cannot pretend to speak `0.1.5`
29 > *
30 > * Invalid version strings return `false`.
31 > */
32 > export function isCompatibleProtocolVersion(offered: string, current: string): boolean {
33 > const a = tryParseSemver(offered); negotiation.ts
34 > const b = tryParseSemver(current);
35 > if (!a || !b) {
36 return false;
37 }
38 > if (a[0] !== b[0]) { negotiation.ts
39 return false;
40 }
41 > if (a[0] === 0 && a[1] !== b[1]) { negotiation.ts
42 return false;
43 }
44 > return compareProtocolVersions(offered, current) <= 0; negotiation.ts
45 > }
47 > /**
48 > * Picks the best version from the client's offered list that this server
49 > * (speaking `current`) can faithfully implement. "Best" means the most
50 > * specific compatible version — i.e. the highest one that is still
51 > * compatible with `current`.
52 > *
53 > * `offered` is expected to be the client's `InitializeParams.protocolVersions`
54 > * (client-preference-ordered, but order is ignored here since we deterministically
55 > * pick the highest compatible entry). Returns `undefined` when no offered
56 > * version is compatible.
57 > */
58 > export function negotiateProtocolVersion(offered: readonly string[], current: string): string | undefined {
59 > let best: string | undefined; negotiation.ts
60 > for (const v of offered) {
61 > if (!isCompatibleProtocolVersion(v, current)) {
62 continue;
63 }
64 > if (best === undefined || compareProtocolVersions(v, best) > 0) { negotiation.ts
65 > best = v; negotiation.ts
66 > }
68 > return best;
69 > }
src/vs/base/common/observableInternal/observables/observableValue.ts 58 covered LOC · 12 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- observableValue.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { ISettableObservable, ITransaction } from '../base.js';
7 > import { TransactionImpl } from '../transaction.js';
8 > import { BaseObservable } from './baseObservable.js';
9 > import { EqualityComparer, IDisposable, strictEquals } from '../commonFacade/deps.js';
10 > import { DebugNameData } from '../debugName.js';
11 > import { getLogger } from '../logging/logging.js';
12 > import { DebugLocation } from '../debugLocation.js';
13 >
14 > /**
15 > * Creates an observable value.
16 > * Observers get informed when the value changes.
17 > * @template TChange An arbitrary type to describe how or why the value changed. Defaults to `void`.
18 > * Observers will receive every single change value.
19 > */
20 >
21 > export function observableValue<T, TChange = void>(name: string, initialValue: T): ISettableObservable<T, TChange>;
22 > export function observableValue<T, TChange = void>(owner: object, initialValue: T): ISettableObservable<T, TChange>;
23 > export function observableValue<T, TChange = void>(nameOrOwner: string | object, initialValue: T, debugLocation = DebugLocation.ofCaller()): ISettableObservable<T, TChange> {
24 let debugNameData: DebugNameData;
25 if (typeof nameOrOwner === 'string') {
30 return new ObservableValue(debugNameData, initialValue, strictEquals, debugLocation);
31 }
33 > export class ObservableValue<T, TChange = void>
34 > extends BaseObservable<T, TChange>
35 > implements ISettableObservable<T, TChange> {
36 > protected _value: T;
37 >
38 > get debugName() {
39 > return this._debugNameData.getDebugName(this) ?? 'ObservableValue';
40 > }
41 >
42 > constructor(
43 private readonly _debugNameData: DebugNameData,
44 initialValue: T,
51 getLogger()?.handleObservableUpdated(this, { hadValue: false, newValue: initialValue, change: undefined, didChange: true, oldValue: undefined });
52 }
53 > public override get(): T { observableValue.ts
54 return this._value;
55 }
57 > public set(value: T, tx: ITransaction | undefined, change: TChange): void {
58 if (change === undefined && this._equalityComparator(this._value, value)) {
59 return;
79 }
80 }
82 > override toString(): string {
83 return `${this.debugName}: ${this._value}`;
84 }
86 > protected _setValue(newValue: T): void {
87 this._value = newValue;
88 }
90 > public debugGetState() {
91 return {
92 value: this._value,
93 };
94 }
96 > public debugSetValue(value: unknown) {
97 this._value = value as T;
98 }
100 > /**
101 > * A disposable observable. When disposed, its value is also disposed.
102 > * When a new value is set, the previous value is disposed.
103 > */
104 >
105 > export function disposableObservableValue<T extends IDisposable | undefined, TChange = void>(nameOrOwner: string | object, initialValue: T, debugLocation = DebugLocation.ofCaller()): ISettableObservable<T, TChange> & IDisposable {
106 let debugNameData: DebugNameData;
107 if (typeof nameOrOwner === 'string') {
112 return new DisposableObservableValue(debugNameData, initialValue, strictEquals, debugLocation);
113 }
115 > export class DisposableObservableValue<T extends IDisposable | undefined, TChange = void> extends ObservableValue<T, TChange> implements IDisposable {
116 > protected override _setValue(newValue: T): void {
117 if (this._value === newValue) {
118 return;
src/vs/base/common/observableInternal/index.ts 57 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- index.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // This is a facade for the observable implementation. Only import from here!
7 >
8 > export { observableValueOpts } from './observables/observableValueOpts.js';
9 > export { autorun, autorunDelta, autorunHandleChanges, autorunOpts, autorunWithStore, autorunWithStoreHandleChanges, autorunIterableDelta, autorunPerKeyedItem, autorunSelfDisposable, registerAutorunSelfDisposable } from './reactions/autorun.js';
10 > export { type IObservable, type IObservableWithChange, type IObserver, type IReader, type ISettable, type IReaderWithStore, type ISettableObservable, type ITransaction } from './base.js';
11 > export { disposableObservableValue } from './observables/observableValue.js';
12 > export { derived, derivedDisposable, derivedHandleChanges, derivedOpts, derivedWithSetter, derivedWithStore } from './observables/derived.js';
13 > export { type IDerivedReader } from './observables/derivedImpl.js';
14 > export { ObservableLazy, ObservableLazyPromise, ObservablePromise, ObservableResolvedPromise, PromiseResult, } from './utils/promise.js';
15 > export { derivedWithCancellationToken, waitForState } from './utils/utilsCancellation.js';
16 > export {
17 > debouncedObservable, debouncedObservable2, derivedObservableWithCache,
18 > derivedObservableWithWritableCache, keepObserved, mapObservableArrayCached, observableFromPromise,
19 > recomputeInitiallyAndOnChange,
20 > signalFromObservable, throttledObservable, wasEventTriggeredRecently,
21 > isObservable,
22 > } from './utils/utils.js';
23 > export { type DebugOwner } from './debugName.js';
24 > export { type IChangeContext, type IChangeTracker, recordChanges, recordChangesLazy } from './changeTracker.js';
25 > export { constObservable } from './observables/constObservable.js';
26 > export { type IObservableSignal, observableSignal } from './observables/observableSignal.js';
27 > export { observableFromEventOpts } from './observables/observableFromEvent.js';
28 > export { observableSignalFromEvent } from './observables/observableSignalFromEvent.js';
29 > export { asyncTransaction, globalTransaction, subtransaction, transaction, TransactionImpl } from './transaction.js';
30 > export { observableFromValueWithChangeEvent, ValueWithChangeEventFromObservable } from './utils/valueWithChangeEvent.js';
31 > export { runOnChange, runOnChangeWithCancellationToken, runOnChangeWithStore, type RemoveUndefined } from './utils/runOnChange.js';
32 > export { derivedConstOnceDefined, latestChangedValue } from './experimental/utils.js';
33 > export { observableFromEvent } from './observables/observableFromEvent.js';
34 > export { observableValue } from './observables/observableValue.js';
35 >
36 > export { ObservableSet } from './set.js';
37 > export { ObservableMap } from './map.js';
38 > export { DebugLocation } from './debugLocation.js';
39 >
40 > import { addLogger, setLogObservableFn } from './logging/logging.js';
41 > import { ConsoleObservableLogger, logObservableToConsole } from './logging/consoleObservableLogger.js';
42 > import { DevToolsLogger } from './logging/debugger/devToolsLogger.js';
43 > import { env } from '../process.js';
44 > import { _setDebugGetObservableGraph } from './observables/baseObservable.js';
45 > import { debugGetObservableGraph } from './logging/debugGetDependencyGraph.js';
46 >
47 > _setDebugGetObservableGraph(debugGetObservableGraph);
48 > setLogObservableFn(logObservableToConsole);
49 >
50 > // Remove "//" in the next line to enable logging
51 > const enableLogging = false
52 > // || Boolean("true") // done "weirdly" so that a lint warning prevents you from pushing this
53 > ;
54 >
55 > if (enableLogging) {
56 addLogger(new ConsoleObservableLogger());
57 }
58 > index.ts
59 > if (env && env['VSCODE_DEV_DEBUG_OBSERVABLES']) {
60 // To debug observables you also need the extension "ms-vscode.debug-value-editor"
61 addLogger(DevToolsLogger.getInstance());
src/vs/base/common/observableInternal/observables/derived.ts 57 covered LOC · 6 ranges

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1 > /*--------------------------------------------------------------------------------------------- derived.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IReader, ITransaction, ISettableObservable, IObservableWithChange } from '../base.js';
7 > import { IChangeTracker } from '../changeTracker.js';
8 > import { DisposableStore, EqualityComparer, IDisposable, strictEquals } from '../commonFacade/deps.js';
9 > import { DebugLocation } from '../debugLocation.js';
10 > import { DebugOwner, DebugNameData, IDebugNameData } from '../debugName.js';
11 > import { _setDerivedOpts } from './baseObservable.js';
12 > import { IDerivedReader, Derived, DerivedWithSetter } from './derivedImpl.js';
13 >
14 > /**
15 > * Creates an observable that is derived from other observables.
16 > * The value is only recomputed when absolutely needed.
17 > *
18 > * {@link computeFn} should start with a JS Doc using `@description` to name the derived.
19 > */
20 > export function derived<T, TChange = void>(computeFn: (reader: IDerivedReader<TChange>, debugLocation?: DebugLocation) => T): IObservableWithChange<T, TChange>;
21 > export function derived<T, TChange = void>(owner: DebugOwner, computeFn: (reader: IDerivedReader<TChange>) => T, debugLocation?: DebugLocation): IObservableWithChange<T, TChange>;
22 > export function derived<T, TChange = void>(
23 computeFnOrOwner: ((reader: IDerivedReader<TChange>) => T) | DebugOwner,
24 computeFn?: ((reader: IDerivedReader<TChange>) => T) | undefined,
46 );
47 }
48 > derived.ts
49 > export function derivedWithSetter<T>(owner: DebugOwner | undefined, computeFn: (reader: IReader) => T, setter: (value: T, transaction: ITransaction | undefined) => void, debugLocation = DebugLocation.ofCaller()): ISettableObservable<T> {
50 return new DerivedWithSetter(
51 new DebugNameData(owner, undefined, computeFn),
58 );
59 }
60 > derived.ts
61 > export function derivedOpts<T>(
62 options: IDebugNameData & {
63 equalsFn?: EqualityComparer<T>;
76 );
77 }
78 > _setDerivedOpts(derivedOpts); derived.ts
79 >
80 > /**
81 > * Represents an observable that is derived from other observables.
82 > * The value is only recomputed when absolutely needed.
83 > *
84 > * {@link computeFn} should start with a JS Doc using `@description` to name the derived.
85 > *
86 > * Use `createEmptyChangeSummary` to create a "change summary" that can collect the changes.
87 > * Use `handleChange` to add a reported change to the change summary.
88 > * The compute function is given the last change summary.
89 > * The change summary is discarded after the compute function was called.
90 > *
91 > * @see derived
92 > */
93 > export function derivedHandleChanges<T, TDelta, TChangeSummary>(
94 options: IDebugNameData & {
95 changeTracker: IChangeTracker<TChangeSummary>;
108 );
109 }
110 > derived.ts
111 > /**
112 > * @deprecated Use `derived(reader => { reader.store.add(...) })` instead!
113 > */
114 > export function derivedWithStore<T>(computeFn: (reader: IReader, store: DisposableStore) => T): IObservable<T>;
115 >
116 > /**
117 > * @deprecated Use `derived(reader => { reader.store.add(...) })` instead!
118 > */
119 > export function derivedWithStore<T>(owner: DebugOwner, computeFn: (reader: IReader, store: DisposableStore) => T): IObservable<T>;
120 > export function derivedWithStore<T>(computeFnOrOwner: ((reader: IReader, store: DisposableStore) => T) | DebugOwner, computeFnOrUndefined?: ((reader: IReader, store: DisposableStore) => T), debugLocation = DebugLocation.ofCaller()): IObservable<T> {
121 let computeFn: (reader: IReader, store: DisposableStore) => T;
122 let owner: DebugOwner;
151 );
152 }
153 > derived.ts
154 > export function derivedDisposable<T extends IDisposable | undefined>(computeFn: (reader: IReader) => T): IObservable<T>;
155 > export function derivedDisposable<T extends IDisposable | undefined>(owner: DebugOwner, computeFn: (reader: IReader) => T): IObservable<T>;
156 > export function derivedDisposable<T extends IDisposable | undefined>(computeFnOrOwner: ((reader: IReader) => T) | DebugOwner, computeFnOrUndefined?: ((reader: IReader) => T), debugLocation = DebugLocation.ofCaller()): IObservable<T> {
157 let computeFn: (reader: IReader) => T;
158 let owner: DebugOwner;
src/vs/base/test/common/utils.ts 56 covered LOC · 13 ranges

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1 > /*--------------------------------------------------------------------------------------------- utils.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { DisposableStore, DisposableTracker, IDisposable, setDisposableTracker } from '../../common/lifecycle.js';
7 > import { join } from '../../common/path.js';
8 > import { isWindows } from '../../common/platform.js';
9 > import { URI } from '../../common/uri.js';
10 >
11 > export type ValueCallback<T = any> = (value: T | Promise<T>) => void;
12 >
13 > export function toResource(this: any, path: string): URI {
14 if (isWindows) {
15 return URI.file(join('C:\\', btoa(this.test.fullTitle()), path));
18 return URI.file(join('/', btoa(this.test.fullTitle()), path));
19 }
20 > utils.ts
21 > export function suiteRepeat(n: number, description: string, callback: (this: any) => void): void {
22 for (let i = 0; i < n; i++) {
23 suite(`${description} (iteration ${i})`, callback);
24 }
25 }
26 > utils.ts
27 > export function testRepeat(n: number, description: string, callback: (this: any) => any): void {
28 for (let i = 0; i < n; i++) {
29 test(`${description} (iteration ${i})`, callback);
30 }
31 }
32 > utils.ts
33 export async function assertThrowsAsync(block: () => any, message: string | Error = 'Missing expected exception'): Promise<void> {
34 try {
41 throw err;
42 }
43 > utils.ts
44 > /**
45 > * Use this function to ensure that all disposables are cleaned up at the end of each test in the current suite.
46 > *
47 > * Use `markAsSingleton` if disposable singletons are created lazily that are allowed to outlive the test.
48 > * Make sure that the singleton properly registers all child disposables so that they are excluded too.
49 > *
50 > * @returns A {@link DisposableStore} that can optionally be used to track disposables in the test.
51 > * This will be automatically disposed on test teardown.
52 > */
53 > export function ensureNoDisposablesAreLeakedInTestSuite(): Pick<DisposableStore, 'add'> {
54 > let tracker: DisposableTracker | undefined;
55 > let store: DisposableStore;
56 > setup(() => {
57 > store = new DisposableStore(); utils.ts
58 > tracker = new DisposableTracker();
59 > setDisposableTracker(tracker);
60 > }); utils.ts
61 >
62 > teardown(function (this: import('mocha').Context) {
63 > store.dispose(); utils.ts
64 > setDisposableTracker(null);
65 > if (this.currentTest?.state !== 'failed') {
66 > const result = tracker!.computeLeakingDisposables();
67 > if (result) {
68 console.error(result.details);
69 throw new Error(`There are ${result.leaks.length} undisposed disposables!${result.details}`);
70 }
71 > } utils.ts
72 > }); utils.ts
73 >
74 > // Wrap store as the suite function is called before it's initialized
75 > const testContext = {
76 > add<T extends IDisposable>(o: T): T {
77 return store.add(o);
78 }
79 > }; utils.ts
80 > return testContext;
81 > }
82 >
83 > export function throwIfDisposablesAreLeaked(body: () => void, logToConsole = true): void {
84 const tracker = new DisposableTracker();
85 setDisposableTracker(tracker);
88 computeLeakingDisposables(tracker, logToConsole);
89 }
90 > utils.ts
91 export async function throwIfDisposablesAreLeakedAsync(body: () => Promise<void>): Promise<void> {
92 const tracker = new DisposableTracker();
96 computeLeakingDisposables(tracker);
97 }
98 > utils.ts
99 function computeLeakingDisposables(tracker: DisposableTracker, logToConsole = true) {
100 const result = tracker.computeLeakingDisposables();
src/vs/base/common/observableInternal/logging/debugger/rpc.ts 53 covered LOC · 3 ranges

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1 > /*--------------------------------------------------------------------------------------------- rpc.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export type ChannelFactory = (handler: IChannelHandler) => IChannel;
7 >
8 > export interface IChannel {
9 > sendNotification(data: unknown): void;
10 > sendRequest(data: unknown): Promise<RpcRequestResult>;
11 > }
12 >
13 > export interface IChannelHandler {
14 > handleNotification(notificationData: unknown): void;
15 > handleRequest(requestData: unknown): Promise<RpcRequestResult> | RpcRequestResult;
16 > }
17 >
18 > export type RpcRequestResult = { type: 'result'; value: unknown } | { type: 'error'; value: unknown };
19 >
20 > export type API = {
21 > host: Side;
22 > client: Side;
23 > };
24 >
25 > export type Side = {
26 > notifications: Record<string, (...args: any[]) => void>;
27 > requests: Record<string, (...args: any[]) => Promise<unknown> | unknown>;
28 > };
29 >
30 > type MakeAsyncIfNot<TFn> = TFn extends (...args: infer TArgs) => infer TResult ? TResult extends Promise<unknown> ? TFn : (...args: TArgs) => Promise<TResult> : never;
31 >
32 > export type MakeSideAsync<T extends Side> = {
33 > notifications: T['notifications'];
34 > requests: { [K in keyof T['requests']]: MakeAsyncIfNot<T['requests'][K]> };
35 > };
36 >
37 > export class SimpleTypedRpcConnection<T extends Side> {
38 > public static createHost<T extends API>(channelFactory: ChannelFactory, getHandler: () => T['host']): SimpleTypedRpcConnection<MakeSideAsync<T['client']>> {
39 > return new SimpleTypedRpcConnection(channelFactory, getHandler);
40 > }
41 >
42 > public static createClient<T extends API>(channelFactory: ChannelFactory, getHandler: () => T['client']): SimpleTypedRpcConnection<MakeSideAsync<T['host']>> {
43 return new SimpleTypedRpcConnection(channelFactory, getHandler);
44 }
45 > rpc.ts
46 > public readonly api: T;
47 > private readonly _channel: IChannel;
48 >
49 > private constructor(
50 private readonly _channelFactory: ChannelFactory,
51 private readonly _getHandler: () => Side,
95 this.api = { notifications: notifications, requests: requests } as any;
96 }
97 > } rpc.ts
98 >
99 > type OutgoingMessage = [
100 > method: string,
101 > args: unknown[],
102 > ];
src/vs/base/common/process.ts 53 covered LOC · 3 ranges

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1 > /*--------------------------------------------------------------------------------------------- process.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { INodeProcess, isMacintosh, isWindows } from './platform.js';
7 >
8 > let safeProcess: Omit<INodeProcess, 'arch'> & { arch: string | undefined };
9 > declare const process: INodeProcess;
10 >
11 > // Native sandbox environment
12 > const vscodeGlobal = (globalThis as { vscode?: { process?: INodeProcess } }).vscode;
13 > if (typeof vscodeGlobal !== 'undefined' && typeof vscodeGlobal.process !== 'undefined') {
14 const sandboxProcess: INodeProcess = vscodeGlobal.process;
15 safeProcess = {
20 };
21 }
22 > process.ts
23 > // Native node.js environment
24 > else if (typeof process !== 'undefined' && typeof process?.versions?.node === 'string') {
25 > safeProcess = {
26 > get platform() { return process.platform; },
27 > get arch() { return process.arch; },
28 > get env() { return process.env; },
29 > cwd() { return process.env['VSCODE_CWD'] || process.cwd(); }
30 > };
31 }
32
44 };
45 }
46 > process.ts
47 > /**
48 > * Provides safe access to the `cwd` property in node.js, sandboxed or web
49 > * environments.
50 > *
51 > * Note: in web, this property is hardcoded to be `/`.
52 > *
53 > * @skipMangle
54 > */
55 > export const cwd = safeProcess.cwd;
56 >
57 > /**
58 > * Provides safe access to the `env` property in node.js, sandboxed or web
59 > * environments.
60 > *
61 > * Note: in web, this property is hardcoded to be `{}`.
62 > */
63 > export const env = safeProcess.env;
64 >
65 > /**
66 > * Provides safe access to the `platform` property in node.js, sandboxed or web
67 > * environments.
68 > */
69 > export const platform = safeProcess.platform;
70 >
71 > /**
72 > * Provides safe access to the `arch` method in node.js, sandboxed or web
73 > * environments.
74 > * Note: `arch` is `undefined` in web
75 > */
76 > export const arch = safeProcess.arch;
src/vs/base/common/observableInternal/debugName.ts 52 covered LOC · 8 ranges

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1 > /*--------------------------------------------------------------------------------------------- debugName.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export interface IDebugNameData {
7 > /**
8 > * The owner object of an observable.
9 > * Used for debugging only, such as computing a name for the observable by iterating over the fields of the owner.
10 > */
11 > readonly owner?: DebugOwner | undefined;
12 >
13 > /**
14 > * A string or function that returns a string that represents the name of the observable.
15 > * Used for debugging only.
16 > */
17 > readonly debugName?: DebugNameSource | undefined;
18 >
19 > /**
20 > * A function that points to the defining function of the object.
21 > * Used for debugging only.
22 > */
23 > readonly debugReferenceFn?: Function | undefined;
24 > }
25 >
26 > export class DebugNameData {
27 > constructor(
28 public readonly owner: DebugOwner | undefined,
29 public readonly debugNameSource: DebugNameSource | undefined,
30 public readonly referenceFn: Function | undefined,
31 ) { }
33 > public getDebugName(target: object): string | undefined {
34 return getDebugName(target, this);
35 }
36 > } debugName.ts
37 >
38 > /**
39 > * The owning object of an observable.
40 > * Is only used for debugging purposes, such as computing a name for the observable by iterating over the fields of the owner.
41 > */
42 > export type DebugOwner = object | undefined;
43 > export type DebugNameSource = string | (() => string | undefined);
44 >
45 > const countPerName = new Map<string, number>();
46 > const cachedDebugName = new WeakMap<object, string>();
47 >
48 > export function getDebugName(target: object, data: DebugNameData): string | undefined {
49 const cached = cachedDebugName.get(target);
50 if (cached) {
63 return undefined;
64 }
66 function computeDebugName(self: object, data: DebugNameData): string | undefined {
67 const cached = cachedDebugName.get(self);
101 return undefined;
102 }
103 > debugName.ts
104 function findKey(obj: object, value: object): string | undefined {
105 for (const key in obj) {
110 return undefined;
111 }
112 > debugName.ts
113 > const countPerClassName = new Map<string, number>();
114 > const ownerId = new WeakMap<object, string>();
115 >
116 function formatOwner(owner: object): string {
117 const id = ownerId.get(owner);
127 return result;
128 }
129 > debugName.ts
130 > export function getClassName(obj: object): string | undefined {
131 const ctor = obj.constructor;
132 if (ctor) {
138 return undefined;
139 }
140 > debugName.ts
141 > export function getFunctionName(fn: Function): string | undefined {
142 const fnSrc = fn.toString();
143 // Pattern: /** @description ... */
src/vs/base/common/observableInternal/logging/consoleObservableLogger.ts 52 covered LOC · 20 ranges

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1 > /*--------------------------------------------------------------------------------------------- consoleObservableLogger.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable } from '../base.js';
7 > import { TransactionImpl } from '../transaction.js';
8 > import { IObservableLogger, IChangeInformation, addLogger } from './logging.js';
9 > import { FromEventObservable } from '../observables/observableFromEvent.js';
10 > import { getClassName } from '../debugName.js';
11 > import { Derived } from '../observables/derivedImpl.js';
12 > import { AutorunObserver } from '../reactions/autorunImpl.js';
13 >
14 > let consoleObservableLogger: ConsoleObservableLogger | undefined;
15 >
16 > export function logObservableToConsole(obs: IObservable<any>): void {
17 if (!consoleObservableLogger) {
18 consoleObservableLogger = new ConsoleObservableLogger();
21 consoleObservableLogger.addFilteredObj(obs);
22 }
24 > export class ConsoleObservableLogger implements IObservableLogger {
25 private indentation = 0;
26
118
119 private readonly changedObservablesSets = new WeakMap<object, Set<IObservable<any>>>();
121 > formatChanges(changes: Set<IObservable<any>>): ConsoleText | undefined {
122 if (changes.size === 0) {
123 return undefined;
130 );
131 }
133 > handleDerivedDependencyChanged(derived: Derived<any>, observable: IObservable<any>, change: unknown): void {
134 if (!this._isIncluded(derived)) { return; }
135
136 this.changedObservablesSets.get(derived)?.add(observable);
137 }
139 > _handleDerivedRecomputed(derived: Derived<unknown>, info: IChangeInformation): void {
140 if (!this._isIncluded(derived)) { return; }
141
151 changedObservables.clear();
152 }
154 > handleDerivedCleared(derived: Derived<unknown>): void {
155 if (!this._isIncluded(derived)) { return; }
156
160 ]));
161 }
163 > handleFromEventObservableTriggered(observable: FromEventObservable<any, any>, info: IChangeInformation): void {
164 if (!this._isIncluded(observable)) { return; }
165
171 ]));
172 }
174 > handleAutorunCreated(autorun: AutorunObserver): void {
175 if (!this._isIncluded(autorun)) { return; }
176
177 this.changedObservablesSets.set(autorun, new Set());
178 }
180 > handleAutorunDisposed(autorun: AutorunObserver): void {
181 }
183 > handleAutorunDependencyChanged(autorun: AutorunObserver, observable: IObservable<any>, change: unknown): void {
184 if (!this._isIncluded(autorun)) { return; }
185
186 this.changedObservablesSets.get(autorun)!.add(observable);
187 }
189 > handleAutorunStarted(autorun: AutorunObserver): void {
190 const changedObservables = this.changedObservablesSets.get(autorun);
191 if (!changedObservables) { return; }
202 this.indentation++;
203 }
205 > handleAutorunFinished(autorun: AutorunObserver): void {
206 this.indentation--;
207 }
209 > handleBeginTransaction(transaction: TransactionImpl): void {
210 let transactionName = transaction.getDebugName();
211 if (transactionName === undefined) {
221 this.indentation++;
222 }
224 > handleEndTransaction(): void {
225 this.indentation--;
226 }
228 > type ConsoleText = (ConsoleText | undefined)[] |
229 > { text: string; style: string; data?: unknown[] } |
230 > { data: unknown[] };
231 function consoleTextToArgs(text: ConsoleText): unknown[] {
232 const styles = new Array<any>();
294 };
295 }
297 > export function formatValue(value: unknown, availableLen: number): string {
298 switch (typeof value) {
299 case 'number':
325 }
326 }
328 function formatArray(value: unknown[], availableLen: number): string {
329 let result = '[ ';
343 return result;
344 }
346 function formatObject(value: object, availableLen: number): string {
347 if (typeof value.toString === 'function' && value.toString !== Object.prototype.toString) {
371 return result;
372 }
374 function repeat(str: string, count: number): string {
375 let result = '';
379 return result;
380 }
382 function padStr(str: string, length: number): string {
383 while (str.length < length) {
src/vs/platform/agentHost/common/sessionConfigKeys.ts 52 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- sessionConfigKeys.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * Well-known keys used in the agent-host configuration value bag.
8 > *
9 > * The Agent Host Protocol's config schema is intentionally generic — agents
10 > * are free to advertise any property names. These constants capture the
11 > * names that the platform itself consumes (e.g. {@link SessionConfigKey.AutoApprove}
12 > * drives tool auto-approval) or that clients interpret via convention
13 > * (e.g. {@link SessionConfigKey.Branch}, {@link SessionConfigKey.Isolation}).
14 > *
15 > * Provider-owned platform properties use these names in an agent's
16 > * `resolveSessionConfig` response. Worktree properties are owned and
17 > * contributed by the host and are not passed to agents.
18 > */
19 > export const enum SessionConfigKey {
20 > /** `'autoApprove'` — tool auto-approval level. */
21 > AutoApprove = 'autoApprove',
22 > /** `'permissions'` — per-tool session allow/deny lists. */
23 > Permissions = 'permissions',
24 > /** `'isolation'` — host-owned `'folder'` or `'worktree'` selection. */
25 > Isolation = 'isolation',
26 > /** `'branch'` — host-owned base branch to work from. */
27 > Branch = 'branch',
28 > /** `'mode'` — agent execution mode (interactive / plan / autopilot). */
29 > Mode = 'mode',
30 > /** `'worktreeBranchPrefix'` — host-owned prefix for the worktree branch name. */
31 > WorktreeBranchPrefix = 'worktreeBranchPrefix',
32 > /** `'worktreeIncludeFiles'` — host-owned glob patterns for files copied into a new worktree. */
33 > WorktreeIncludeFiles = 'worktreeIncludeFiles',
34 > }
35 >
36 > /**
37 > * The set of enum values the unified permission picker *tolerates* for the
38 > * {@link SessionConfigKey.AutoApprove} property when deciding whether a
39 > * session's schema is "well-known" (and therefore handled by the dedicated
40 > * permission picker rather than the generic per-property fallback).
41 > *
42 > * `default` is the required baseline level; `assisted` and `autoApprove` are
43 > * offered elevated levels. `autopilot` is retained for backward compatibility
44 > * with sessions created before it moved onto the mode axis.
45 > */
46 > export const KNOWN_AUTO_APPROVE_VALUES: ReadonlySet<string> = new Set(['default', 'assisted', 'autoApprove', 'autopilot']);
47 >
48 > /**
49 > * The set of enum values understood for the {@link SessionConfigKey.Mode}
50 > * property: the agent execution mode axis.
51 > */
52 > export const KNOWN_MODE_VALUES: ReadonlySet<string> = new Set(['interactive', 'plan', 'autopilot']);
src/vs/base/common/observableInternal/observables/observableFromEvent.ts 51 covered LOC · 9 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- observableFromEvent.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, ITransaction } from '../base.js';
7 > import { subtransaction } from '../transaction.js';
8 > import { EqualityComparer, Event, IDisposable, strictEquals } from '../commonFacade/deps.js';
9 > import { DebugOwner, DebugNameData, IDebugNameData } from '../debugName.js';
10 > import { getLogger } from '../logging/logging.js';
11 > import { BaseObservable } from './baseObservable.js';
12 > import { DebugLocation } from '../debugLocation.js';
13 >
14 >
15 > export function observableFromEvent<T, TArgs = unknown>(
16 > owner: DebugOwner,
17 > event: Event<TArgs>,
18 > getValue: (args: TArgs | undefined) => T,
19 > debugLocation?: DebugLocation,
20 > ): IObservable<T>;
21 > export function observableFromEvent<T, TArgs = unknown>(
22 > event: Event<TArgs>,
23 > getValue: (args: TArgs | undefined) => T,
24 > ): IObservable<T>;
25 > export function observableFromEvent(...args:
26 [owner: DebugOwner, event: Event<any>, getValue: (args: any | undefined) => any, debugLocation?: DebugLocation] |
27 [event: Event<any>, getValue: (args: any | undefined) => any]
45 );
46 }
48 > export function observableFromEventOpts<T, TArgs = unknown>(
49 options: IDebugNameData & {
50 equalsFn?: EqualityComparer<T>;
64 );
65 }
67 > export class FromEventObservable<TArgs, T> extends BaseObservable<T> {
68 > public static globalTransaction: ITransaction | undefined;
69 >
70 > private _value: T | undefined;
71 > private _hasValue = false;
72 > private _subscription: IDisposable | undefined;
73 >
74 > constructor(
75 private readonly _debugNameData: DebugNameData,
76 private readonly event: Event<TArgs>,
131 }
132 };
134 > protected override onLastObserverRemoved(): void {
135 this._subscription!.dispose();
136 this._subscription = undefined;
138 this._value = undefined;
139 }
141 > public get(): T {
142 if (this._subscription) {
143 if (!this._hasValue) {
151 }
152 }
154 > public debugSetValue(value: unknown): void {
155 // eslint-disable-next-line local/code-no-any-casts
156 this._value = value as any;
157 }
159 > public debugGetState() {
160 return { value: this._value, hasValue: this._hasValue };
161 }
163 >
164 > export namespace observableFromEvent {
165 > export const Observer = FromEventObservable;
166 >
167 > export function batchEventsGlobally(tx: ITransaction, fn: () => void): void {
168 let didSet = false;
169 if (FromEventObservable.globalTransaction === undefined) {
src/vs/base/common/observableInternal/observables/lazyObservableValue.ts 49 covered LOC · 11 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- lazyObservableValue.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { EqualityComparer } from '../commonFacade/deps.js';
7 > import { IObserver, ISettableObservable, ITransaction } from '../base.js';
8 > import { TransactionImpl } from '../transaction.js';
9 > import { DebugNameData } from '../debugName.js';
10 > import { getLogger } from '../logging/logging.js';
11 > import { BaseObservable } from './baseObservable.js';
12 > import { DebugLocation } from '../debugLocation.js';
13 >
14 > /**
15 > * Holds off updating observers until the value is actually read.
16 > */
17 > export class LazyObservableValue<T, TChange = void>
18 > extends BaseObservable<T, TChange>
19 > implements ISettableObservable<T, TChange> {
20 > protected _value: T;
21 > private _isUpToDate = true;
22 > private readonly _deltas: TChange[] = [];
23 >
24 > get debugName() {
25 > return this._debugNameData.getDebugName(this) ?? 'LazyObservableValue';
26 > }
27 >
28 > constructor(
29 private readonly _debugNameData: DebugNameData,
30 initialValue: T,
35 this._value = initialValue;
36 }
38 > public override get(): T {
39 this._update();
40 return this._value;
41 }
43 > private _update(): void {
44 if (this._isUpToDate) {
45 return;
62 }
63 }
65 > private _updateCounter = 0;
66 >
67 > private _beginUpdate(): void {
68 this._updateCounter++;
69 if (this._updateCounter === 1) {
73 }
74 }
76 > private _endUpdate(): void {
77 this._updateCounter--;
78 if (this._updateCounter === 0) {
86 }
87 }
89 > public override addObserver(observer: IObserver): void {
90 const shouldCallBeginUpdate = !this._observers.has(observer) && this._updateCounter > 0;
91 super.addObserver(observer);
95 }
96 }
98 > public override removeObserver(observer: IObserver): void {
99 const shouldCallEndUpdate = this._observers.has(observer) && this._updateCounter > 0;
100 super.removeObserver(observer);
105 }
106 }
108 > public set(value: T, tx: ITransaction | undefined, change: TChange): void {
109 if (change === undefined && this._equalityComparator(this._value, value)) {
110 return;
src/vs/platform/agentHost/node/agentHostUpgradeChannel.ts 49 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- agentHostUpgradeChannel.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * Environment variable populated by the VS Code CLI when it spawns the
8 > * agent host server. Its value is the path of a unix-domain socket
9 > * (POSIX) or named pipe (Windows) on which the CLI is serving its HTTP
10 > * management API. Presence of the variable also serves as the "I was
11 > * spawned by a managing CLI" marker that decides whether the server
12 > * advertises an in-band upgrade method to clients.
13 > */
14 > export const VSCODE_AGENT_HOST_MANAGEMENT_SOCKET_ENV = 'VSCODE_AGENT_HOST_MANAGEMENT_SOCKET';
15 >
16 > /**
17 > * Status payload returned by the CLI's `POST /upgrade` endpoint. Sent
18 > * back verbatim to the agent host client so the UI can surface it.
19 > */
20 > export interface IUpgradeRequestResponse {
21 > readonly ok: boolean;
22 > /** Whether the running server is older than the latest known release. */
23 > readonly upgradeNeeded?: boolean;
24 > /** Whether the CLI committed to performing the upgrade (true => kill+respawn was scheduled). */
25 > readonly upgradeStarted?: boolean;
26 > /** Commit hash of the currently running server, or `null` if none. */
27 > readonly runningCommit?: string | null;
28 > /** Commit hash of the latest known release at the time of the call. */
29 > readonly latestCommit?: string;
30 > /** Milliseconds the client should wait before reconnecting (only set when upgrade started). */
31 > readonly restartDelayMs?: number;
32 > /** Human-readable error message when `ok` is false. */
33 > readonly error?: string;
34 > }
35 >
36 > /**
37 > * Returns the management socket path advertised by the hosting CLI, or
38 > * `undefined` when the current process was not spawned by one.
39 > */
40 > export function getAgentHostManagementSocketPath(): string | undefined {
41 const value = process.env[VSCODE_AGENT_HOST_MANAGEMENT_SOCKET_ENV];
42 return value && value.length > 0 ? value : undefined;
43 }
45 > /**
46 > * Ask the hosting CLI to check for an update and (if needed) restart this
47 > * server. Sends `POST /upgrade` to the management socket and returns the
48 > * CLI's parsed JSON response.
49 > *
50 > * Rejects when no management socket is advertised, when the connection
51 > * fails, on non-2xx responses, or when the response body cannot be parsed.
52 > */
53 export async function requestAgentHostUpgrade(socketPath = getAgentHostManagementSocketPath()): Promise<IUpgradeRequestResponse> {
54 const http = await import('http');
src/vs/base/common/assert.ts 48 covered LOC · 7 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- assert.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { BugIndicatingError, onUnexpectedError } from './errors.js';
7 >
8 > /**
9 > * Throws an error with the provided message if the provided value does not evaluate to a true Javascript value.
10 > *
11 > * @deprecated Use `assert(...)` instead.
12 > * This method is usually used like this:
13 > * ```ts
14 > * import * as assert from 'vs/base/common/assert';
15 > * assert.ok(...);
16 > * ```
17 > *
18 > * However, `assert` in that example is a user chosen name.
19 > * There is no tooling for generating such an import statement.
20 > * Thus, the `assert(...)` function should be used instead.
21 > */
22 > export function ok(value?: unknown, message?: string) {
23 if (!value) {
24 throw new Error(message ? `Assertion failed (${message})` : 'Assertion Failed');
25 }
26 }
27 > assert.ts
28 > export function assertNever(value: never, message = 'Unreachable'): never {
29 throw new Error(message);
30 }
31 > assert.ts
32 > export function softAssertNever(value: never): void {
33 // no-op
34 }
35 > assert.ts
36 > /**
37 > * Asserts that a condition is `truthy`.
38 > *
39 > * @throws provided {@linkcode messageOrError} if the {@linkcode condition} is `falsy`.
40 > *
41 > * @param condition The condition to assert.
42 > * @param messageOrError An error message or error object to throw if condition is `falsy`.
43 > */
44 > export function assert(
45 condition: boolean,
46 messageOrError: string | Error = 'unexpected state',
55 }
56 }
57 > assert.ts
58 > /**
59 > * Like assert, but doesn't throw.
60 > */
61 > export function softAssert(condition: boolean, message = 'Soft Assertion Failed'): void {
62 if (!condition) {
63 onUnexpectedError(new BugIndicatingError(message));
64 }
65 }
66 > assert.ts
67 > /**
68 > * condition must be side-effect free!
69 > */
70 > export function assertFn(condition: () => boolean): void {
71 if (!condition()) {
72 // eslint-disable-next-line no-debugger
77 }
78 }
79 > assert.ts
80 > export function checkAdjacentItems<T>(items: readonly T[], predicate: (item1: T, item2: T) => boolean): boolean {
81 let i = 0;
82 while (i < items.length - 1) {
src/vs/base/test/common/virtualScheduling/timeApi.ts 48 covered LOC · 1 range

Open complete file

1 > /*--------------------------------------------------------------------------------------------- timeApi.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export interface TimeoutId { readonly _timeoutIdBrand: void }
7 > export interface IntervalId { readonly _intervalIdBrand: void }
8 > export interface ImmediateId { readonly _immediateIdBrand: void }
9 > export type AnimationFrameId = number & { readonly _animationFrameIdBrand: void };
10 >
11 > /**
12 > * The subset of host time APIs the processor and embeddings need.
13 > *
14 > * Used both for the real host API (captured via {@link captureGlobalTimeApi})
15 > * and for the virtual replacement that runs through a {@link VirtualClock}.
16 > *
17 > * Keeping this as a plain interface means the processor never reaches into
18 > * `globalThis` directly: the boundary between "real time" and "virtual time"
19 > * is exactly which `TimeApi` instance is in use.
20 > */
21 > export interface TimeApi {
22 > setTimeout(handler: () => void, timeout?: number): TimeoutId;
23 > clearTimeout(id: TimeoutId): void;
24 > setInterval(handler: () => void, interval: number): IntervalId;
25 > clearInterval(id: IntervalId): void;
26 > setImmediate?: ((handler: () => void) => ImmediateId);
27 > clearImmediate?: ((id: ImmediateId) => void);
28 > requestAnimationFrame?: ((cb: (time: number) => void) => AnimationFrameId);
29 > cancelAnimationFrame?: ((id: AnimationFrameId) => void);
30 > Date: DateConstructor;
31 > }
32 >
33 > export function captureGlobalTimeApi(): TimeApi {
34 > return {
35 > setTimeout: globalThis.setTimeout.bind(globalThis) as unknown as TimeApi['setTimeout'],
36 > clearTimeout: globalThis.clearTimeout.bind(globalThis) as unknown as TimeApi['clearTimeout'],
37 > setInterval: globalThis.setInterval.bind(globalThis) as unknown as TimeApi['setInterval'],
38 > clearInterval: globalThis.clearInterval.bind(globalThis) as unknown as TimeApi['clearInterval'],
39 > setImmediate: globalThis.setImmediate?.bind(globalThis) as unknown as TimeApi['setImmediate'],
40 > clearImmediate: globalThis.clearImmediate?.bind(globalThis) as unknown as TimeApi['clearImmediate'],
41 > requestAnimationFrame: globalThis.requestAnimationFrame?.bind(globalThis) as unknown as TimeApi['requestAnimationFrame'],
42 > cancelAnimationFrame: globalThis.cancelAnimationFrame?.bind(globalThis) as unknown as TimeApi['cancelAnimationFrame'],
43 > Date: globalThis.Date,
44 > };
45 > }
46 >
47 > /** A snapshot of the real host time API at module-load time. */
48 > export const realTimeApi: TimeApi = captureGlobalTimeApi();
src/vs/base/test/common/virtualScheduling/traceLogger.ts 47 covered LOC · 3 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- traceLogger.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { LogEntryLike } from '../executionGraph.js';
7 > import { Trace, TraceContext } from './trace.js';
8 >
9 > /**
10 > * A minimal logger for tests that captures the active {@link Trace} at log
11 > * time so messages can later be woven into a swimlane diagram next to the
12 > * timer events that produced them.
13 > */
14 > export interface ITraceLogger {
15 > log(message: string): void;
16 > warn(message: string): void;
17 > error(message: string): void;
18 > /**
19 > * Run `fn` synchronously and log it as a marker in the trace. The
20 > * marker text is `fn.toString()` so call sites read naturally as e.g.
21 > * `logger.logRun(() => model.trigger())`. Returns whatever `fn`
22 > * returns.
23 > */
24 > logRun<T>(fn: () => T): T;
25 > }
26 >
27 > /**
28 > * One log entry produced by an {@link ITraceLogger}. Extends
29 > * {@link LogEntryLike} (consumed by `buildHistoryFromTasks`) with a level so
30 > * renderers can differentiate `log` / `warn` / `error`.
31 > */
32 > export interface ITraceLogEntry extends LogEntryLike {
33 > readonly trace: Trace;
34 > readonly level: 'log' | 'warn' | 'error';
35 > }
36 >
37 > /**
38 > * Build an {@link ITraceLogger} that pushes every call into `buffer`,
39 > * tagging each entry with the trace that's current at call time.
40 > *
41 > * Pass the same `buffer` to `buildHistoryFromTasks(history, startTime,
42 > * buffer)` to interleave log lines with the timer swimlane.
43 > */
44 > export function createTraceLogger(buffer: ITraceLogEntry[]): ITraceLogger {
45 const make = (level: 'log' | 'warn' | 'error') => (message: string) => {
46 buffer.push({
61 };
62 }
64 > /** Best-effort one-line description of `fn` for trace log markers. */
65 function _describeFn(fn: () => unknown): string {
66 const src = fn.toString();
72 return _collapseWhitespace(src);
73 }
75 function _collapseWhitespace(s: string): string {
76 return s.replace(/\s+/g, ' ').trim();
src/vs/platform/agentHost/common/agentCustomizationSettings.ts 46 covered LOC · 7 ranges

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1 > /*--------------------------------------------------------------------------------------------- agentCustomizationSettings.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import type { ConfigPropertySchema, RootState } from './state/protocol/state.js';
7 >
8 > export const AGENT_CUSTOMIZATION_SETTINGS_META_KEY = 'vscode.agentCustomizationSettings';
9 >
10 > export interface IAgentCustomizationSettingDescriptor {
11 > readonly key: string;
12 > readonly group: string;
13 > readonly kind?: 'multiline';
14 > readonly saveLabel?: string;
15 > }
16 >
17 > export interface IAgentCustomizationSettingsDescriptor {
18 > readonly provider: string;
19 > readonly title: string;
20 > readonly description: string;
21 > readonly settings: readonly IAgentCustomizationSettingDescriptor[];
22 > readonly configurationFile?: {
23 > readonly resource: string;
24 > readonly title: string;
25 > readonly description: string;
26 > readonly openLabel: string;
27 > readonly documentationUrl?: string;
28 > readonly documentationLabel?: string;
29 > };
30 > }
31 >
32 > export interface IAgentCustomizationSettingsRegistration extends IAgentCustomizationSettingsDescriptor {
33 > readonly properties: Readonly<Record<string, ConfigPropertySchema>>;
34 > }
35 >
36 function isAgentCustomizationSettingDescriptor(value: unknown): value is IAgentCustomizationSettingDescriptor {
37 if (!value || typeof value !== 'object') {
44 && (setting.saveLabel === undefined || typeof setting.saveLabel === 'string');
45 }
47 function isAgentCustomizationSettingsDescriptor(value: unknown): value is IAgentCustomizationSettingsDescriptor {
48 if (!value || typeof value !== 'object') {
62 && (file.documentationLabel === undefined || typeof file.documentationLabel === 'string'));
63 }
65 > export function getAgentCustomizationSettingsEntries(state: RootState | undefined): readonly IAgentCustomizationSettingsDescriptor[] {
66 const meta = state?._meta;
67 const value = meta?.[AGENT_CUSTOMIZATION_SETTINGS_META_KEY];
68 return Array.isArray(value) ? value.filter(isAgentCustomizationSettingsDescriptor) : [];
69 }
71 > export function withAgentCustomizationSettings(state: RootState | undefined, entries: readonly IAgentCustomizationSettingsDescriptor[]): Record<string, unknown> {
72 return { ...state?._meta, [AGENT_CUSTOMIZATION_SETTINGS_META_KEY]: entries };
73 }
75 > export function readAgentCustomizationSettings(state: RootState | undefined, provider: string): IAgentCustomizationSettingsDescriptor | undefined {
76 return getAgentCustomizationSettingsEntries(state).find(entry => entry.provider === provider);
77 }
79 > export function getProviderBackedRootConfigKeys(state: RootState | undefined): ReadonlySet<string> {
80 return new Set(getAgentCustomizationSettingsEntries(state).flatMap(entry => entry.settings.map(setting => setting.key)));
81 }
83 > export function preserveProviderBackedRootConfigValues(state: RootState | undefined, replacement: Readonly<Record<string, unknown>>): Record<string, unknown> {
84 const values = { ...replacement };
85 const current = state?.config?.values;
src/vs/base/test/common/virtualScheduling/virtualTimeApi.ts 45 covered LOC · 3 ranges

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1 > /*--------------------------------------------------------------------------------------------- virtualTimeApi.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IDisposable } from '../../../common/lifecycle.js';
7 > import { realTimeApi, TimeApi } from './timeApi.js';
8 > import { ROOT_TRACE, TraceContext } from './trace.js';
9 > import { VirtualClock } from './virtualClock.js';
10 >
11 > // V8 default `Error.stackTraceLimit` of 10 swallows everything past the
12 > // first async boundary in the stacks we capture for trace diagnostics.
13 > // Bump it so swimlane callers actually see the user code that scheduled a
14 > // timer rather than just the Promise wrapper.
15 > if (typeof Error.stackTraceLimit === 'number' && Error.stackTraceLimit < 50) {
16 > Error.stackTraceLimit = 50;
17 > }
18 >
19 > /** Virtual timer IDs are `IDisposable`s. Recover one from an opaque id. */
20 function asDisposable(id: unknown): IDisposable | undefined {
21 if (id === null || typeof id !== 'object') { return undefined; }
23 return typeof maybe.dispose === 'function' ? id as IDisposable : undefined;
24 }
26 > export interface CreateVirtualTimeApiOptions {
27 > /**
28 > * If `true`, `requestAnimationFrame` is faked: callbacks are scheduled
29 > * onto the virtual queue at `now + 16ms` and the resulting event hints
30 > * the embedding to use a real `requestAnimationFrame` so the host can
31 > * reflow before the callback runs. Useful for fixtures that need DOM
32 > * measurements after rAF callbacks.
33 > *
34 > * If `false` (default), `requestAnimationFrame` is left to the host.
35 > */
36 > readonly fakeRequestAnimationFrame?: boolean;
37 > }
38 >
39 > /**
40 > * Build a {@link TimeApi} that schedules every timer call into `clock`'s
41 > * virtual queue, capturing the current trace at schedule time so that
42 > * causal chains (`setTimeout` → `setTimeout`, etc.) are preserved.
43 > *
44 > * The returned API is suitable to install with {@link pushGlobalTimeApi},
45 > * which is what {@link runWithFakedTimers} does internally.
46 > */
47 > export function createVirtualTimeApi(
48 clock: VirtualClock,
49 options?: CreateVirtualTimeApiOptions,
190 return api;
191 }
193 > // Re-exported for convenience: many tests want to install both at once.
194 > export { pushGlobalTimeApi } from './globalTimeApi.js';
src/vs/base/common/linkedList.ts 44 covered LOC · 13 ranges

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1 > /*--------------------------------------------------------------------------------------------- linkedList.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > class Node<E> {
7 >
8 > static readonly Undefined = new Node<unknown>(undefined);
9 >
10 > element: E;
11 > next: Node<E> | typeof Node.Undefined;
12 > prev: Node<E> | typeof Node.Undefined;
13 >
14 > constructor(element: E) {
15 > this.element = element;
16 > this.next = Node.Undefined;
17 > this.prev = Node.Undefined;
18 > }
19 > }
20 >
21 > export class LinkedList<E> {
22
23 private _first: Node<E> | typeof Node.Undefined = Node.Undefined;
24 private _last: Node<E> | typeof Node.Undefined = Node.Undefined;
25 private _size: number = 0;
27 > get size(): number {
28 return this._size;
29 }
31 > isEmpty(): boolean {
32 return this._first === Node.Undefined;
33 }
35 > clear(): void {
36 let node = this._first;
37 while (node !== Node.Undefined) {
46 this._size = 0;
47 }
49 > unshift(element: E): () => void {
50 return this._insert(element, false);
51 }
53 > push(element: E): () => void {
54 return this._insert(element, true);
55 }
57 > private _insert(element: E, atTheEnd: boolean): () => void {
58 const newNode = new Node(element);
59 if (this._first === Node.Undefined) {
85 };
86 }
88 > shift(): E | undefined {
89 if (this._first === Node.Undefined) {
90 return undefined;
95 }
96 }
98 > pop(): E | undefined {
99 if (this._last === Node.Undefined) {
100 return undefined;
105 }
106 }
108 > peek(): E | undefined {
109 if (this._last === Node.Undefined) {
110 return undefined;
114 }
115 }
117 > private _remove(node: Node<E> | typeof Node.Undefined): void {
118 if (node.prev !== Node.Undefined && node.next !== Node.Undefined) {
119 // middle
141 this._size -= 1;
142 }
144 > *[Symbol.iterator](): Iterator<E> {
145 let node = this._first;
146 while (node !== Node.Undefined) {
src/vs/base/test/common/virtualScheduling/runWithFakedTimers.ts 44 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- runWithFakedTimers.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { CancellationTokenSource } from '../../../common/cancellation.js';
7 > import { drainMicrotasksEmbedding } from './embedding.js';
8 > import { pushGlobalTimeApi } from './globalTimeApi.js';
9 > import { realTimeApi } from './timeApi.js';
10 > import { untilToken, VirtualTimeProcessor } from './processor.js';
11 > import { createRecordingRealTimeApi, RecordedTimerEvent } from './recordingTimeApi.js';
12 > import { VirtualClock } from './virtualClock.js';
13 > import { createVirtualTimeApi } from './virtualTimeApi.js';
14 >
15 > export interface RunWithFakedTimersOptions {
16 > readonly startTime?: number;
17 > /** Default `true`. Set `false` to bypass virtual time entirely (for
18 > * cases where the same test is parameterised over real/virtual time). */
19 > readonly useFakeTimers?: boolean;
20 > /** No effect in the new processor; accepted for legacy compatibility.
21 > * The drain-microtasks embedding picks the fastest available macrotask
22 > * primitive automatically. */
23 > readonly useSetImmediate?: boolean;
24 > /** Maximum number of virtual events the run is allowed to execute
25 > * before being rejected. Default 100. */
26 > readonly maxTaskCount?: number;
27 > /**
28 > * If set, called once `fn` resolves with the recorded timer events.
29 > * In virtual mode the events come from the {@link VirtualTimeProcessor}'s
30 > * own history; in real mode a recording wrapper around the host time
31 > * API is installed for the duration of `fn`. Useful for swimlane
32 > * diagnostics.
33 > */
34 > readonly onHistory?: (history: readonly RecordedTimerEvent[]) => void;
35 > }
36 >
37 > /**
38 > * Run `fn` with a virtual clock installed as the global time API.
39 > *
40 > * After `fn` resolves, the virtual queue is drained (so any timers `fn`
41 > * scheduled and `await`ed for, transitively, complete deterministically).
42 > * If `fn` throws, the queue is *not* drained — the original error is
43 > * re-thrown immediately.
44 > */
45 export async function runWithFakedTimers<T>(
46 options: RunWithFakedTimersOptions,
src/vs/platform/agentHost/node/messagePortProtocolServer.ts 44 covered LOC · 13 ranges

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1 > /*--------------------------------------------------------------------------------------------- messagePortProtocolServer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Emitter, Event } from '../../../base/common/event.js';
7 > import { Disposable } from '../../../base/common/lifecycle.js';
8 > import { IServerChannel } from '../../../base/parts/ipc/common/ipc.js';
9 > import { JSON_RPC_PARSE_ERROR, type AhpServerNotification, type JsonRpcNotification, type JsonRpcParseErrorResponse, type JsonRpcRequest, type JsonRpcResponse, type ProtocolMessage } from '../common/state/sessionProtocol.js';
10 > import type { IProtocolServer, IProtocolTransport } from '../common/state/sessionTransport.js';
11 >
12 > /**
13 > * Adapts MessagePort IPC clients to Agent Host Protocol transports.
14 > *
15 > * Consumers must call {@link closeClient} when a UtilityProcessServer client
16 > * connection disappears.
17 > */
18 > export class MessagePortProtocolServer<TContext> extends Disposable implements IProtocolServer, IServerChannel<TContext> {
19
20 private readonly _onConnection = this._register(new Emitter<IProtocolTransport>());
24
25 private readonly _transports = new Map<TContext, MessagePortProtocolTransport>();
27 > listen<T>(ctx: TContext, event: string): Event<T> {
28 switch (event) {
29 case 'frame':
35 throw new Error(`Invalid listen: ${event}`);
36 }
38 > async call<T>(ctx: TContext, command: string, arg?: unknown): Promise<T> {
39 switch (command) {
40 case 'connect': {
65 throw new Error(`Invalid call: ${command}`);
66 }
68 > /**
69 > * Closes a client's transport after its owning IPC connection disappears.
70 > */
71 > closeClient(ctx: TContext): void {
72 const transport = this._transports.get(ctx);
73 if (!transport) {
78 transport.dispose();
79 }
81 > override dispose(): void {
82 const transports = [...this._transports.values()];
83 this._transports.clear();
87 super.dispose();
88 }
90 > private _getOrCreateTransport(ctx: TContext): MessagePortProtocolTransport {
91 if (this._store.isDisposed) {
92 throw new Error('MessagePortProtocolServer is disposed');
108 return transport;
109 }
111 >
112 class MessagePortProtocolTransport extends Disposable implements IProtocolTransport {
113
123 private _isConnected = false;
124 private _isClosed = false;
126 > get isConnected(): boolean {
127 return this._isConnected && !this._isClosed;
128 }
130 > connect(): boolean {
131 if (this._isClosed || this._isConnected) {
132 return false;
136 return true;
137 }
139 > acceptFrame(frame: string): void {
140 try {
141 this._onMessage.fire(JSON.parse(frame) as ProtocolMessage);
144 }
145 }
147 > send(message: ProtocolMessage | AhpServerNotification | JsonRpcNotification | JsonRpcParseErrorResponse | JsonRpcResponse | JsonRpcRequest): void {
148 if (!this.isConnected) {
149 return;
152 this._onFrame.fire(JSON.stringify(message));
153 }
155 > override dispose(): void {
156 if (this._isClosed) {
157 return;
src/vs/base/common/uint.ts 43 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- uint.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export const enum Constants {
7 > /**
8 > * MAX SMI (SMall Integer) as defined in v8.
9 > * one bit is lost for boxing/unboxing flag.
10 > * one bit is lost for sign flag.
11 > * See https://thibaultlaurens.github.io/javascript/2013/04/29/how-the-v8-engine-works/#tagged-values
12 > */
13 > MAX_SAFE_SMALL_INTEGER = 1 << 30,
14 >
15 > /**
16 > * MIN SMI (SMall Integer) as defined in v8.
17 > * one bit is lost for boxing/unboxing flag.
18 > * one bit is lost for sign flag.
19 > * See https://thibaultlaurens.github.io/javascript/2013/04/29/how-the-v8-engine-works/#tagged-values
20 > */
21 > MIN_SAFE_SMALL_INTEGER = -(1 << 30),
22 >
23 > /**
24 > * Max unsigned integer that fits on 8 bits.
25 > */
26 > MAX_UINT_8 = 255, // 2^8 - 1
27 >
28 > /**
29 > * Max unsigned integer that fits on 16 bits.
30 > */
31 > MAX_UINT_16 = 65535, // 2^16 - 1
32 >
33 > /**
34 > * Max unsigned integer that fits on 32 bits.
35 > */
36 > MAX_UINT_32 = 4294967295, // 2^32 - 1
37 >
38 > UNICODE_SUPPLEMENTARY_PLANE_BEGIN = 0x010000
39 > }
40 >
41 > export function toUint8(v: number): number {
42 if (v < 0) {
43 return 0;
48 return v | 0;
49 }
50 > uint.ts
51 > export function toUint32(v: number): number {
52 if (v < 0) {
53 return 0;
src/vs/base/common/observableInternal/debugLocation.ts 42 covered LOC · 4 ranges

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1 > /*--------------------------------------------------------------------------------------------- debugLocation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export type DebugLocation = DebugLocationImpl | undefined;
7 >
8 > export namespace DebugLocation {
9 > let enabled = false;
10 >
11 > export function enable(): void {
12 enabled = true;
13 }
15 > export function ofCaller(): DebugLocation {
16 if (!enabled) {
17 return undefined;
26 return DebugLocationImpl.fromStack(stack, 2);
27 }
29 >
30 > class DebugLocationImpl implements ILocation {
31 > public static fromStack(stack: string, parentIdx: number): DebugLocationImpl | undefined {
32 > const lines = stack.split('\n');
33 > const location = parseLine(lines[parentIdx + 1]);
34 > if (location) {
35 > return new DebugLocationImpl(
36 > location.fileName,
37 > location.line,
38 > location.column,
39 > location.id
40 > );
41 > } else {
42 > return undefined;
43 > }
44 > }
45 >
46 > constructor(
47 public readonly fileName: string,
48 public readonly line: number,
51 ) {
52 }
54 >
55 >
56 > export interface ILocation {
57 > fileName: string;
58 > line: number;
59 > column: number;
60 > id: string;
61 > }
62 >
63 function parseLine(stackLine: string): ILocation | undefined {
64 const match = stackLine.match(/\((.*):(\d+):(\d+)\)/);
src/vs/base/test/common/virtualScheduling/globalTimeApi.ts 42 covered LOC · 3 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- globalTimeApi.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IDisposable } from '../../../common/lifecycle.js';
7 > import { captureGlobalTimeApi, realTimeApi, TimeApi } from './timeApi.js';
8 >
9 > /** Cast through `unknown` so we don't widen our typed `TimeApi` shapes to `any`. */
10 > type AsGlobal<K extends keyof typeof globalThis> = (typeof globalThis)[K];
11 >
12 > /**
13 > * Ensure `fn` carries an `originalFn` back-door pointing at the real
14 > * (non-virtual) `setTimeout`. We prefer the existing tag on `fn`, then a tag
15 > * inherited from `previousFn` (which may itself be a wrapper that already
16 > * carried the back-door), and finally fall back to `realTimeApi.setTimeout`
17 > * — which has its own `originalFn` set at module load.
18 > */
19 function ensureSetTimeoutOriginalFn(fn: TimeApi['setTimeout'], previousFn: TimeApi['setTimeout']): TimeApi['setTimeout'] {
20 const tagged = fn as TimeApi['setTimeout'] & { originalFn?: TimeApi['setTimeout'] };
26 return tagged;
27 }
29 > /**
30 > * Replace the global time APIs (`setTimeout`, `setInterval`, …, `Date`,
31 > * optionally `requestAnimationFrame`) with the ones from `api`. Returns a
32 > * disposable that restores the previous globals.
33 > *
34 > * The previous globals are captured *at install time*, so nested installs
35 > * compose correctly (the disposable restores to whatever was current when
36 > * this call was made, not to the original real values).
37 > *
38 > * `setTimeout.originalFn` is preserved on the installed function so callers
39 > * like the component-explorer host can escape virtual time when polling.
40 > * If `api.setTimeout` does not already carry `originalFn`, it is copied from
41 > * the previous global (or defaulted to the real `setTimeout`) so wrapping
42 > * APIs such as a logging wrapper don't drop the back-door.
43 > */
44 > export function pushGlobalTimeApi(api: TimeApi): IDisposable {
45 const previous = captureGlobalTimeApi();
46
74 };
75 }
77 > // One-shot tag on the *real* setTimeout: lets callers (e.g. the
78 > // component-explorer host's polling loop) escape virtual time even after
79 > // pushGlobalTimeApi has installed a virtual version on top. The `originalFn`
80 > // property is not on the `setTimeout` signature by design — it's a back-door
81 > // convention shared with the polling code.
82 > (realTimeApi.setTimeout as unknown as { originalFn: TimeApi['setTimeout'] }).originalFn = realTimeApi.setTimeout;
src/vs/base/common/lazy.ts 39 covered LOC · 4 ranges

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1 > /*--------------------------------------------------------------------------------------------- lazy.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > enum LazyValueState {
7 > Uninitialized,
8 > Running,
9 > Completed,
10 > }
11 >
12 > export class Lazy<T> {
13 >
14 > private _state = LazyValueState.Uninitialized;
15 > private _value?: T;
16 > private _error: Error | undefined;
17 >
18 > constructor(
19 > private readonly executor: () => T, lazy.ts
20 > ) { }
21 > lazy.ts
22 > /**
23 > * True if the lazy value has been resolved.
24 > */
25 > get hasValue(): boolean { return this._state === LazyValueState.Completed; }
26 >
27 > /**
28 > * Get the wrapped value.
29 > *
30 > * This will force evaluation of the lazy value if it has not been resolved yet. Lazy values are only
31 > * resolved once. `getValue` will re-throw exceptions that are hit while resolving the value
32 > */
33 > get value(): T {
34 if (this._state === LazyValueState.Uninitialized) {
35 this._state = LazyValueState.Running;
50 return this._value!;
51 }
52 > lazy.ts
53 > /**
54 > * Get the wrapped value without forcing evaluation.
55 > */
56 > get rawValue(): T | undefined { return this._value; }
57 > }
src/vs/base/common/observableInternal/transaction.ts 39 covered LOC · 10 ranges

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1 > /*--------------------------------------------------------------------------------------------- transaction.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { handleBugIndicatingErrorRecovery, IObservable, IObserver, ITransaction } from './base.js';
7 > import { getFunctionName } from './debugName.js';
8 > import { getLogger } from './logging/logging.js';
9 >
10 > /**
11 > * Starts a transaction in which many observables can be changed at once.
12 > * {@link fn} should start with a JS Doc using `@description` to give the transaction a debug name.
13 > * Reaction run on demand or when the transaction ends.
14 > */
15 >
16 > export function transaction(fn: (tx: ITransaction) => void, getDebugName?: () => string): void {
17 const tx = new TransactionImpl(fn, getDebugName);
18 try {
22 }
23 }
24 > let _globalTransaction: ITransaction | undefined = undefined; transaction.ts
25 >
26 > export function globalTransaction(fn: (tx: ITransaction) => void) {
27 if (_globalTransaction) {
28 fn(_globalTransaction);
40 }
41 }
42 > /** @deprecated */ transaction.ts
43 >
44 export async function asyncTransaction(fn: (tx: ITransaction) => Promise<void>, getDebugName?: () => string): Promise<void> {
45 const tx = new TransactionImpl(fn, getDebugName);
50 }
51 }
52 > /** transaction.ts
53 > * Allows to chain transactions.
54 > */
55 >
56 > export function subtransaction(tx: ITransaction | undefined, fn: (tx: ITransaction) => void, getDebugName?: () => string): void {
57 if (!tx) {
58 transaction(fn, getDebugName);
60 fn(tx);
61 }
62 > } export class TransactionImpl implements ITransaction { transaction.ts
63 > private _updatingObservers: { observer: IObserver; observable: IObservable<any> }[] | null = [];
64 >
65 > constructor(public readonly _fn: Function, private readonly _getDebugName?: () => string) {
66 getLogger()?.handleBeginTransaction(this);
67 }
69 > public getDebugName(): string | undefined {
70 if (this._getDebugName) {
71 return this._getDebugName();
73 return getFunctionName(this._fn);
74 }
76 > public updateObserver(observer: IObserver, observable: IObservable<any>): void {
77 if (!this._updatingObservers) {
78 // This happens when a transaction is used in a callback or async function.
90 observer.beginUpdate(observable);
91 }
93 > public finish(): void {
94 const updatingObservers = this._updatingObservers;
95 if (!updatingObservers) {
106 getLogger()?.handleEndTransaction(this);
107 }
109 > public debugGetUpdatingObservers() {
110 return this._updatingObservers;
111 }
112 > } transaction.ts
113
src/vs/base/common/observableInternal/observables/observableSignalFromEvent.ts 38 covered LOC · 8 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- observableSignalFromEvent.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable } from '../base.js';
7 > import { transaction } from '../transaction.js';
8 > import { Event, IDisposable } from '../commonFacade/deps.js';
9 > import { DebugOwner, DebugNameData } from '../debugName.js';
10 > import { BaseObservable } from './baseObservable.js';
11 > import { DebugLocation } from '../debugLocation.js';
12 >
13 > export function observableSignalFromEvent(
14 owner: DebugOwner | string,
15 event: Event<any>,
18 return new FromEventObservableSignal(typeof owner === 'string' ? owner : new DebugNameData(owner, undefined, undefined), event, debugLocation);
19 }
21 > class FromEventObservableSignal extends BaseObservable<void> {
22 > private subscription: IDisposable | undefined;
23 >
24 > public readonly debugName: string;
25 > constructor(
26 debugNameDataOrName: DebugNameData | string,
27 private readonly event: Event<any>,
33 : debugNameDataOrName.getDebugName(this) ?? 'Observable Signal From Event';
34 }
36 > protected override onFirstObserverAdded(): void {
37 this.subscription = this.event(this.handleEvent);
38 }
40 > private readonly handleEvent = () => {
41 > transaction( observableSignalFromEvent.ts
42 > (tx) => {
43 > for (const o of this._observers) {
44 > tx.updateObserver(o, this);
45 > o.handleChange(this, undefined);
46 > }
47 > },
48 > () => this.debugName
49 > );
50 > };
52 > protected override onLastObserverRemoved(): void {
53 this.subscription!.dispose();
54 this.subscription = undefined;
55 }
57 > public override get(): void {
58 // NO OP
59 }
src/vs/base/common/observableInternal/observables/observableSignal.ts 37 covered LOC · 6 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- observableSignal.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservableWithChange, ITransaction } from '../base.js';
7 > import { transaction } from '../transaction.js';
8 > import { DebugNameData } from '../debugName.js';
9 > import { BaseObservable } from './baseObservable.js';
10 > import { DebugLocation } from '../debugLocation.js';
11 >
12 > /**
13 > * Creates a signal that can be triggered to invalidate observers.
14 > * Signals don't have a value - when they are triggered they indicate a change.
15 > * However, signals can carry a delta that is passed to observers.
16 > */
17 > export function observableSignal<TDelta = void>(debugName: string): IObservableSignal<TDelta>;
18 > export function observableSignal<TDelta = void>(owner: object): IObservableSignal<TDelta>;
19 > export function observableSignal<TDelta = void>(debugNameOrOwner: string | object, debugLocation = DebugLocation.ofCaller()): IObservableSignal<TDelta> {
20 if (typeof debugNameOrOwner === 'string') {
21 return new ObservableSignal<TDelta>(debugNameOrOwner, undefined, debugLocation);
24 }
25 }
27 > export interface IObservableSignal<TChange> extends IObservableWithChange<void, TChange> {
28 > trigger(tx: ITransaction | undefined, change: TChange): void;
29 > }
30 >
31 > class ObservableSignal<TChange> extends BaseObservable<void, TChange> implements IObservableSignal<TChange> {
32 > public get debugName() {
33 > return new DebugNameData(this._owner, this._debugName, undefined).getDebugName(this) ?? 'Observable Signal';
34 > }
35 >
36 > public override toString(): string {
37 return this.debugName;
38 }
40 > constructor(
41 private readonly _debugName: string | undefined,
42 private readonly _owner: object | undefined,
45 super(debugLocation);
46 }
48 > public trigger(tx: ITransaction | undefined, change: TChange): void {
49 if (!tx) {
50 transaction(tx => {
src/vs/platform/agentHost/common/state/protocol/channels-session/reducer.ts 37 covered LOC · 4 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import { SessionLifecycle, SessionStatus, CustomizationType, McpServerStatus, type SessionState, type SessionInputRequest, type McpServerCustomization } from './state.js';
11 > import type { SessionAction } from '../action-origin.generated.js';
12 > import { softAssertNever } from '../common/reducer-helpers.js';
13 >
14 > // ─── Helpers ─────────────────────────────────────────────────────────────────
15 >
16 > /** Bitmask covering the mutually-exclusive activity bits (bits 0–4). */
17 > const STATUS_ACTIVITY_MASK = (1 << 5) - 1;
18 >
19 > /** Sets or clears a metadata flag on a status value. */
20 function withStatusFlag(status: SessionStatus, flag: SessionStatus, set: boolean): SessionStatus {
21 return set ? status | flag : status & ~flag;
22 }
23 > reducer.ts
24 > /**
25 > * Reflects the session-level {@link SessionState.inputNeeded | input queue}
26 > * into the activity bits of `status`. A non-empty queue promotes the activity
27 > * to {@link SessionStatus.InputNeeded}; emptying it clears the
28 > * input-needed-specific bit. Since `InputNeeded` implies
29 > * {@link SessionStatus.InProgress}, an unblocked turn falls back to
30 > * `InProgress` while an already-idle session stays idle. Orthogonal flags
31 > * (`IsRead` / `IsArchived`) are preserved.
32 > */
33 function withInputNeededStatus(status: SessionStatus, inputNeeded: readonly SessionInputRequest[]): SessionStatus {
34 if (inputNeeded.length > 0) {
37 return status & ~(SessionStatus.InputNeeded & ~SessionStatus.InProgress);
38 }
39 > reducer.ts
40 function updateMcpServerCustomization(
41 state: SessionState,
84 return { ...state, customizations: updated };
85 }
86 > reducer.ts
87 > // ─── Session Reducer ─────────────────────────────────────────────────────────
88 >
89 > /**
90 > * Pure reducer for session state. Handles all {@link SessionAction} variants.
91 > */
92 > export function sessionReducer(state: SessionState, action: SessionAction, log?: (msg: string) => void): SessionState {
93 switch (action.type) {
94 // ── Lifecycle ──────────────────────────────────────────────────────────
src/vs/base/test/common/virtualScheduling/index.ts 36 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- index.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Greenfield virtual scheduling primitives.
7 > //
8 > // This folder is the new home for virtual-time scheduling. It supersedes
9 > // `timeTravelScheduler.ts` and `traceableTimeApi.ts`, both of which are
10 > // retained as @deprecated re-export shims.
11 >
12 > export type { TimeApi } from './timeApi.js';
13 > export { captureGlobalTimeApi, realTimeApi } from './timeApi.js';
14 >
15 > export type { EventSource, VirtualEvent, VirtualTime } from './virtualClock.js';
16 > export { VirtualClock } from './virtualClock.js';
17 >
18 > export type { RunAsHandlerOptions } from './trace.js';
19 > export { ROOT_TRACE, Trace, TraceContext, createTraceRoot } from './trace.js';
20 >
21 > export type { Embedding } from './embedding.js';
22 > export { drainMicrotasksEmbedding, nextMacrotask, syncEmbedding } from './embedding.js';
23 >
24 > export type { RunOptions, TerminationPolicy, VirtualTimeProcessorOptions } from './processor.js';
25 > export { VirtualTimeProcessor, untilIdle, untilTime, untilToken } from './processor.js';
26 >
27 > export { pushGlobalTimeApi } from './globalTimeApi.js';
28 > export type { CreateVirtualTimeApiOptions } from './virtualTimeApi.js';
29 > export { createVirtualTimeApi } from './virtualTimeApi.js';
30 > export { createLoggingTimeApi } from './loggingTimeApi.js';
31 > export type { RecordedTimerEvent } from './recordingTimeApi.js';
32 > export { createRecordingRealTimeApi } from './recordingTimeApi.js';
33 > export type { ITraceLogEntry, ITraceLogger } from './traceLogger.js';
34 > export { createTraceLogger } from './traceLogger.js';
35 > export type { RunWithFakedTimersOptions } from './runWithFakedTimers.js';
36 > export { runWithFakedTimers } from './runWithFakedTimers.js';
src/vs/base/common/observableInternal/changeTracker.ts 35 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- changeTracker.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { BugIndicatingError } from './commonFacade/deps.js';
7 > import { IObservableWithChange, IReader } from './base.js';
8 >
9 > export interface IChangeTracker<TChangeSummary> {
10 > createChangeSummary(previousChangeSummary: TChangeSummary | undefined): TChangeSummary;
11 > handleChange(ctx: IChangeContext, change: TChangeSummary): boolean;
12 > beforeUpdate?(reader: IReader, change: TChangeSummary): void;
13 > }
14 >
15 > export interface IChangeContext {
16 > readonly changedObservable: IObservableWithChange<any, any>;
17 > readonly change: unknown;
18 >
19 > /**
20 > * Returns if the given observable caused the change.
21 > */
22 > didChange<T, TChange>(observable: IObservableWithChange<T, TChange>): this is { change: TChange };
23 > }
24 >
25 > /**
26 > * Subscribes to and records changes and the last value of the given observables.
27 > * Don't use the key "changes", as it is reserved for the changes array!
28 > */
29 > export function recordChanges<TObs extends Record<any, IObservableWithChange<any, any>>>(obs: TObs):
30 IChangeTracker<{ [TKey in keyof TObs]: ReturnType<TObs[TKey]['get']> }
31 & { changes: readonly ({ [TKey in keyof TObs]: { key: TKey; change: TObs[TKey]['TChange'] } }[keyof TObs])[] }> {
56 };
57 }
59 > /**
60 > * Subscribes to and records changes and the last value of the given observables.
61 > * Don't use the key "changes", as it is reserved for the changes array!
62 > */
63 > export function recordChangesLazy<TObs extends Record<any, IObservableWithChange<any, any>>>(getObs: () => TObs):
64 IChangeTracker<{ [TKey in keyof TObs]: ReturnType<TObs[TKey]['get']> }
65 & { changes: readonly ({ [TKey in keyof TObs]: { key: TKey; change: TObs[TKey]['TChange'] } }[keyof TObs])[] }> {
src/vs/base/common/observableInternal/map.ts 35 covered LOC · 14 ranges

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1 > /*--------------------------------------------------------------------------------------------- map.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, ITransaction } from '../observable.js';
7 > import { observableValueOpts } from './observables/observableValueOpts.js';
8 >
9 >
10 > export class ObservableMap<K, V> implements Map<K, V> {
11 private readonly _data = new Map<K, V>();
12
14
15 readonly observable: IObservable<Map<K, V>> = this._obs;
16 > map.ts
17 > get size(): number {
18 return this._data.size;
19 }
20 > map.ts
21 > has(key: K): boolean {
22 return this._data.has(key);
23 }
24 > map.ts
25 > get(key: K): V | undefined {
26 return this._data.get(key);
27 }
28 > map.ts
29 > set(key: K, value: V, tx?: ITransaction): this {
30 const hadKey = this._data.has(key);
31 const oldValue = this._data.get(key);
36 return this;
37 }
38 > map.ts
39 > delete(key: K, tx?: ITransaction): boolean {
40 const result = this._data.delete(key);
41 if (result) {
44 return result;
45 }
46 > map.ts
47 > clear(tx?: ITransaction): void {
48 if (this._data.size > 0) {
49 this._data.clear();
51 }
52 }
53 > map.ts
54 > forEach(callbackfn: (value: V, key: K, map: Map<K, V>) => void, thisArg?: unknown): void {
55 this._data.forEach((value, key, _map) => {
56 callbackfn.call(thisArg, value, key, this);
57 });
58 }
59 > map.ts
60 > *entries(): MapIterator<[K, V]> {
61 yield* this._data.entries();
62 }
63 > map.ts
64 > *keys(): MapIterator<K> {
65 yield* this._data.keys();
66 }
67 > map.ts
68 > *values(): MapIterator<V> {
69 yield* this._data.values();
70 }
71 > map.ts
72 > [Symbol.iterator](): MapIterator<[K, V]> {
73 return this.entries();
74 }
75 > map.ts
76 > get [Symbol.toStringTag](): string {
77 return 'ObservableMap';
78 }
79 > } map.ts
src/vs/base/test/common/timeTravelScheduler.ts 35 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- timeTravelScheduler.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * @deprecated The contents of this file have moved to
8 > * `./virtualScheduling/index.js`. This re-export is kept for backwards
9 > * compatibility and will be removed once all callers have migrated.
10 > *
11 > * Notes for migration:
12 > * - `TimeTravelScheduler` is now {@link VirtualClock} (same constructor).
13 > * - `AsyncSchedulerProcessor` is now {@link VirtualTimeProcessor}; its
14 > * constructor takes an explicit {@link Embedding}, and {@link Run.options}
15 > * use `until` (a {@link TerminationPolicy}) instead of the implicit
16 > * "drain queue" behaviour. See {@link runWithFakedTimers} for a
17 > * drop-in helper.
18 > * - `originalGlobalValues` is now {@link realTimeApi}.
19 > */
20 >
21 > export {
22 > captureGlobalTimeApi,
23 > createLoggingTimeApi,
24 > createVirtualTimeApi,
25 > pushGlobalTimeApi,
26 > realTimeApi as originalGlobalValues,
27 > runWithFakedTimers,
28 > VirtualClock as TimeTravelScheduler,
29 > } from './virtualScheduling/index.js';
30 >
31 > export type {
32 > CreateVirtualTimeApiOptions,
33 > RunWithFakedTimersOptions,
34 > TimeApi,
35 > } from './virtualScheduling/index.js';
src/vs/platform/agentHost/common/annotationsUri.ts 35 covered LOC · 3 ranges

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1 > /*--------------------------------------------------------------------------------------------- annotationsUri.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import type { URI } from './state/sessionState.js';
7 >
8 > /**
9 > * Helpers for building / parsing the URI clients subscribe to in order to
10 > * receive an {@link import('./state/protocol/state.js').AnnotationsState}.
11 > *
12 > * Each session exposes exactly one annotations channel, nested under the
13 > * session URI namespace:
14 > *
15 > * <sessionUri>/annotations
16 > *
17 > * Keeping the annotations URI nested under the session URI lets the server
18 > * cleanly tear down a session's annotations when that session is disposed
19 > * (the reverse-lookup is just a string-prefix scan, mirroring changesets).
20 > */
21 >
22 > /** Marker injected into an annotations channel URI's path. */
23 > const ANNOTATIONS_PATH_SEGMENT = '/annotations';
24 >
25 > /** Returns the subscribable URI for a session's annotations channel. */
26 > export function buildAnnotationsUri(sessionUri: URI): URI {
27 return `${sessionUri}${ANNOTATIONS_PATH_SEGMENT}`;
28 }
30 > /**
31 > * Parses an annotations channel URI back into its owning `sessionUri`, or
32 > * returns `undefined` if `uri` is not an annotations channel URI.
33 > */
34 > export function parseAnnotationsUri(uri: URI): { sessionUri: URI } | undefined {
35 if (!uri.endsWith(ANNOTATIONS_PATH_SEGMENT)) {
36 return undefined;
42 return { sessionUri };
43 }
45 > /** Returns `true` iff `uri` is a session's annotations channel URI. */
46 > export function isAnnotationsUri(uri: URI): boolean {
47 return parseAnnotationsUri(uri) !== undefined;
48 }
src/vs/base/common/marshallingIds.ts 33 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- marshallingIds.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export const enum MarshalledId {
7 > Uri = 1,
8 > Regexp,
9 > ScmResource,
10 > ScmResourceGroup,
11 > ScmProvider,
12 > CommentController,
13 > CommentThread,
14 > CommentThreadInstance,
15 > CommentThreadReply,
16 > CommentNode,
17 > CommentThreadNode,
18 > TimelineActionContext,
19 > NotebookCellActionContext,
20 > NotebookActionContext,
21 > TerminalContext,
22 > TestItemContext,
23 > Date,
24 > TestMessageMenuArgs,
25 > ChatViewContext,
26 > LanguageModelToolResult,
27 > LanguageModelTextPart,
28 > LanguageModelThinkingPart,
29 > LanguageModelPromptTsxPart,
30 > LanguageModelDataPart,
31 > AgentSessionContext,
32 > ChatResponsePullRequestPart,
33 > }
src/vs/base/test/common/virtualScheduling/recordingTimeApi.ts 33 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- recordingTimeApi.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { realTimeApi, TimeApi } from './timeApi.js';
7 > import { Trace, TraceContext } from './trace.js';
8 > import { EventSource } from './virtualClock.js';
9 >
10 > /**
11 > * One entry in a real-time trace recording. Structurally compatible with
12 > * `VirtualEvent` (and `ScheduledTaskLike` consumed by
13 > * `buildHistoryFromTasks`), so the same swimlane renderer can plot both.
14 > */
15 > export interface RecordedTimerEvent {
16 > readonly time: number;
17 > readonly source: EventSource;
18 > readonly trace?: Trace;
19 > }
20 >
21 > /**
22 > * Wrap the real host time API so every `setTimeout` / `setInterval` /
23 > * `requestAnimationFrame` call is tagged with a child {@link Trace} and
24 > * pushes a {@link RecordedTimerEvent} into `history` when the handler
25 > * actually runs.
26 > *
27 > * Handlers are invoked through {@link TraceContext.runAsHandler} so causal
28 > * chains carry across awaits inside a handler. Note: because each handler's
29 > * deferred trace-reset fires as its own real macrotask, attribution can
30 > * drift slightly when many handlers fire in quick succession — accurate
31 > * enough for diagnostics, not for assertions.
32 > */
33 > export function createRecordingRealTimeApi(history: RecordedTimerEvent[]): TimeApi {
34 const realSetTimeout = realTimeApi.setTimeout;
35
src/vs/base/common/observableInternal/set.ts 32 covered LOC · 13 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- set.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, ITransaction } from '../observable.js';
7 > import { observableValueOpts } from './observables/observableValueOpts.js';
8 >
9 > export class ObservableSet<T> implements Set<T> {
10
11 private readonly _data = new Set<T>();
14
15 readonly observable: IObservable<Set<T>> = this._obs;
16 > set.ts
17 > get size(): number {
18 return this._data.size;
19 }
20 > set.ts
21 > has(value: T): boolean {
22 return this._data.has(value);
23 }
24 > set.ts
25 > add(value: T, tx?: ITransaction): this {
26 const hadValue = this._data.has(value);
27 if (!hadValue) {
31 return this;
32 }
33 > set.ts
34 > delete(value: T, tx?: ITransaction): boolean {
35 const result = this._data.delete(value);
36 if (result) {
39 return result;
40 }
41 > set.ts
42 > clear(tx?: ITransaction): void {
43 if (this._data.size > 0) {
44 this._data.clear();
46 }
47 }
48 > set.ts
49 > forEach(callbackfn: (value: T, value2: T, set: Set<T>) => void, thisArg?: unknown): void {
50 this._data.forEach((value, value2, _set) => {
51 callbackfn.call(thisArg, value, value2, this);
52 });
53 }
54 > set.ts
55 > *entries(): SetIterator<[T, T]> {
56 for (const value of this._data) {
57 yield [value, value];
58 }
59 }
60 > set.ts
61 > *keys(): SetIterator<T> {
62 yield* this._data.keys();
63 }
64 > set.ts
65 > *values(): SetIterator<T> {
66 yield* this._data.values();
67 }
68 > set.ts
69 > [Symbol.iterator](): SetIterator<T> {
70 return this.values();
71 }
72 > set.ts
73 > get [Symbol.toStringTag](): string {
74 return 'ObservableSet';
75 }
76 > } set.ts
src/vs/platform/agentHost/common/state/protocol/channels-resource-watch/reducer.ts 31 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import type { ResourceWatchState } from './state.js';
11 > import type { ResourceWatchAction } from '../action-origin.generated.js';
12 >
13 > /**
14 > * Pure reducer for resource-watch state. Handles every
15 > * {@link ResourceWatchAction} variant.
16 > *
17 > * Watches are intentionally event-pass-through: change events are
18 > * delivered via `resourceWatch/changed` actions but the reducer keeps no
19 > * history of them. The state therefore tracks only the watch descriptor,
20 > * which is set at subscription time and never mutates over the life of
21 > * the watch.
22 > *
23 > * The reducer uses an `if`/else shape rather than `switch`/`softAssertNever`
24 > * because `ResourceWatchAction` currently has a single variant — TypeScript
25 > * does not narrow single-variant discriminated unions to `never` after the
26 > * sole case branch, so the usual exhaustiveness pattern would not compile.
27 > * Unknown action types degrade gracefully (mirroring `softAssertNever`'s
28 > * runtime behaviour) so a client speaking an older protocol stays correct
29 > * if the server adds new `resourceWatch/*` actions in a future version.
30 > */
31 > export function resourceWatchReducer(state: ResourceWatchState, action: ResourceWatchAction, log?: (msg: string) => void): ResourceWatchState {
32 if (action.type === ActionType.ResourceWatchChanged) {
33 return state;
src/vs/base/common/errorMessage.ts 29 covered LOC · 6 ranges

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1 > /*--------------------------------------------------------------------------------------------- errorMessage.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import * as arrays from './arrays.js';
7 > import * as types from './types.js';
8 > import * as nls from '../../nls.js';
9 > import { IAction } from './actions.js';
10 >
11 function exceptionToErrorMessage(exception: any, verbose: boolean): string {
12 if (verbose && (exception.stack || exception.stacktrace)) {
16 return detectSystemErrorMessage(exception);
17 }
19 function stackToString(stack: string[] | string | undefined): string | undefined {
20 if (Array.isArray(stack)) {
24 return stack;
25 }
27 function detectSystemErrorMessage(exception: any): string {
28
39 return exception.message || nls.localize('error.defaultMessage', "An unknown error occurred. Please consult the log for more details.");
40 }
42 > /**
43 > * Tries to generate a human readable error message out of the error. If the verbose parameter
44 > * is set to true, the error message will include stacktrace details if provided.
45 > *
46 > * @returns A string containing the error message.
47 > */
48 > export function toErrorMessage(error: any = null, verbose: boolean = false): string {
49 if (!error) {
50 return nls.localize('error.defaultMessage', "An unknown error occurred. Please consult the log for more details.");
88 return nls.localize('error.defaultMessage', "An unknown error occurred. Please consult the log for more details.");
89 }
91 >
92 > export interface IErrorWithActions extends Error {
93 > actions: IAction[];
94 > }
95 >
96 > export function isErrorWithActions(obj: unknown): obj is IErrorWithActions {
97 const candidate = obj as IErrorWithActions | undefined;
98
99 return candidate instanceof Error && Array.isArray(candidate.actions);
100 }
102 > export function createErrorWithActions(messageOrError: string | Error, actions: IAction[]): IErrorWithActions {
103 let error: IErrorWithActions;
104 if (typeof messageOrError === 'string') {
src/vs/platform/agentHost/common/state/protocol/channels-annotations/reducer.ts 29 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import type { AnnotationEntry, Annotation, AnnotationsState } from './state.js';
11 > import type { AnnotationsAction } from '../action-origin.generated.js';
12 > import { softAssertNever } from '../common/reducer-helpers.js';
13 >
14 > /**
15 > * Pure reducer for annotations state. Handles every {@link AnnotationsAction}
16 > * variant.
17 > *
18 > * Per the spec, every annotations action is client-dispatchable; the reducer
19 > * runs identically on the client (optimistic, write-ahead) and the server. It
20 > * preserves the dispatch order of annotations (and of entries within an
21 > * annotation): new entries are appended; `*Set` actions with a matching id
22 > * replace in place, while actions whose target id is unknown are no-ops
23 > * (mirroring `changeset/fileRemoved` semantics). The single-entry
24 > * minimum invariant is enforced by producers, not the reducer — removing an
25 > * annotation's last entry via {@link AnnotationsEntryRemovedAction} (instead
26 > * of {@link AnnotationsRemovedAction}) would leave an empty annotation,
27 > * which is observable but not catastrophic.
28 > */
29 > export function annotationsReducer(state: AnnotationsState, action: AnnotationsAction, log?: (msg: string) => void): AnnotationsState {
30 switch (action.type) {
31 case ActionType.AnnotationsSet: {
src/vs/platform/agentHost/common/state/protocol/common/reducer-helpers.ts 29 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- reducer-helpers.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { IS_CLIENT_DISPATCHABLE, type RootAction, type ClientRootAction, type SessionAction, type ClientSessionAction, type TerminalAction, type ClientTerminalAction, type ChangesetAction, type ClientChangesetAction, type AnnotationsAction, type ClientAnnotationsAction } from '../action-origin.generated.js';
10 >
11 > /**
12 > * Soft assertion for exhaustiveness checking. Place in the `default` branch of
13 > * a switch on a discriminated union so the compiler errors when a new variant
14 > * is added but not handled.
15 > *
16 > * At runtime, logs a warning instead of throwing so that forward-compatible
17 > * clients receiving unknown actions from a newer server degrade gracefully.
18 > */
19 > export function softAssertNever(value: never, log?: (msg: string) => void): void {
20 const msg = `Unhandled action type: ${JSON.stringify(value)}`;
21 (log ?? console.warn)(msg);
22 }
24 > // ─── Dispatch Validation ─────────────────────────────────────────────────────
25 >
26 > /**
27 > * Type guard that checks whether an action may be dispatched by a client.
28 > *
29 > * Servers SHOULD call this to validate incoming `dispatchAction` requests
30 > * and reject any action the client is not allowed to originate.
31 > */
32 > export function isClientDispatchable(action: RootAction | SessionAction | TerminalAction | ChangesetAction | AnnotationsAction): action is ClientRootAction | ClientSessionAction | ClientTerminalAction | ClientChangesetAction | ClientAnnotationsAction {
33 return IS_CLIENT_DISPATCHABLE[action.type];
34 }
src/vs/base/common/observableInternal/experimental/utils.ts 26 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- utils.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IReader } from '../base.js';
7 > import { BugIndicatingError, DisposableStore } from '../commonFacade/deps.js';
8 > import { DebugOwner, getDebugName, DebugNameData } from '../debugName.js';
9 > import { observableFromEvent } from '../observables/observableFromEvent.js';
10 > import { autorunOpts } from '../reactions/autorun.js';
11 > import { derivedObservableWithCache } from '../utils/utils.js';
12 >
13 > /**
14 > * Creates an observable that has the latest changed value of the given observables.
15 > * Initially (and when not observed), it has the value of the last observable.
16 > * When observed and any of the observables change, it has the value of the last changed observable.
17 > * If multiple observables change in the same transaction, the last observable wins.
18 > */
19 > export function latestChangedValue<T extends IObservable<any>[]>(owner: DebugOwner, observables: T): IObservable<ReturnType<T[number]['get']>> {
20 if (observables.length === 0) {
21 throw new BugIndicatingError();
50 return result;
51 }
52 > utils.ts
53 > /**
54 > * Works like a derived.
55 > * However, if the value is not undefined, it is cached and will not be recomputed anymore.
56 > * In that case, the derived will unsubscribe from its dependencies.
57 > */
58 > export function derivedConstOnceDefined<T>(owner: DebugOwner, fn: (reader: IReader) => T): IObservable<T | undefined> {
59 return derivedObservableWithCache<T | undefined>(owner, (reader, lastValue) => lastValue ?? fn(reader));
60 }
src/vs/base/common/observableInternal/observables/constObservable.ts 26 covered LOC · 9 ranges

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1 > /*--------------------------------------------------------------------------------------------- constObservable.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable, IObserver, IObservableWithChange } from '../base.js';
7 > import { ConvenientObservable } from './baseObservable.js';
8 >
9 > /**
10 > * Represents an efficient observable whose value never changes.
11 > */
12 >
13 > export function constObservable<T>(value: T): IObservable<T> {
14 return new ConstObservable(value);
15 }
16 > class ConstObservable<T> extends ConvenientObservable<T, void> { constObservable.ts
17 > constructor(private readonly value: T) {
18 super();
19 }
21 > public override get debugName(): string {
22 return this.toString();
23 }
25 > public get(): T {
26 return this.value;
27 }
28 > public addObserver(observer: IObserver): void { constObservable.ts
29 // NO OP
30 }
31 > public removeObserver(observer: IObserver): void { constObservable.ts
32 // NO OP
33 }
35 > override log(): IObservableWithChange<T, void> {
36 return this;
37 }
39 > override toString(): string {
40 return `Const: ${this.value}`;
41 }
src/vs/base/common/stopwatch.ts 25 covered LOC · 6 ranges

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1 > /*--------------------------------------------------------------------------------------------- stopwatch.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > declare const globalThis: { performance: { now(): number } };
7 > const performanceNow = globalThis.performance.now.bind(globalThis.performance);
8 >
9 > export class StopWatch {
10 >
11 > private _startTime: number;
12 > private _stopTime: number;
13 >
14 > private readonly _now: () => number;
15 >
16 > public static create(highResolution?: boolean): StopWatch {
17 return new StopWatch(highResolution);
18 }
20 > constructor(highResolution?: boolean) {
21 this._now = highResolution === false ? Date.now : performanceNow;
22 this._startTime = this._now();
23 this._stopTime = -1;
24 }
26 > public stop(): void {
27 this._stopTime = this._now();
28 }
30 > public reset(): void {
31 this._startTime = this._now();
32 this._stopTime = -1;
33 }
35 > public elapsed(): number {
36 if (this._stopTime !== -1) {
37 return this._stopTime - this._startTime;
39 return this._now() - this._startTime;
40 }
41 > } stopwatch.ts
src/vs/base/common/observableInternal/logging/debugger/utils.ts 24 covered LOC · 8 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- utils.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IDisposable } from '../../../lifecycle.js';
7 >
8 > export class Debouncer implements IDisposable {
9 private _timeout: Timeout | undefined = undefined;
10 > utils.ts
11 > public debounce(fn: () => void, timeoutMs: number): void {
12 if (this._timeout !== undefined) {
13 clearTimeout(this._timeout);
18 }, timeoutMs);
19 }
20 > utils.ts
21 > dispose(): void {
22 if (this._timeout !== undefined) {
23 clearTimeout(this._timeout);
24 }
25 }
26 > } utils.ts
27 >
28 > export class Throttler implements IDisposable {
29 private _timeout: Timeout | undefined = undefined;
30 > utils.ts
31 > public throttle(fn: () => void, timeoutMs: number): void {
32 if (this._timeout === undefined) {
33 this._timeout = setTimeout(() => {
37 }
38 }
39 > utils.ts
40 > dispose(): void {
41 if (this._timeout !== undefined) {
42 clearTimeout(this._timeout);
43 }
44 }
45 > } utils.ts
46 >
47 > export function deepAssign<T>(target: T, source: T): void {
48 for (const key in source) {
49 if (!!target[key] && typeof target[key] === 'object' && !!source[key] && typeof source[key] === 'object') {
54 }
55 }
56 > utils.ts
57 > export function deepAssignDeleteNulls<T>(target: T, source: T): void {
58 for (const key in source) {
59 if (source[key] === null) {
src/vs/base/common/observableInternal/utils/utilsCancellation.ts 24 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- utilsCancellation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IReader, IObservable } from '../base.js';
7 > import { DebugOwner, DebugNameData } from '../debugName.js';
8 > import { CancellationError, CancellationToken, CancellationTokenSource } from '../commonFacade/cancellation.js';
9 > import { strictEquals } from '../commonFacade/deps.js';
10 > import { autorun } from '../reactions/autorun.js';
11 > import { Derived } from '../observables/derivedImpl.js';
12 > import { DebugLocation } from '../debugLocation.js';
13 >
14 > /**
15 > * Resolves the promise when the observables state matches the predicate.
16 > */
17 > export function waitForState<T>(observable: IObservable<T | null | undefined>): Promise<T>;
18 > export function waitForState<T, TState extends T>(observable: IObservable<T>, predicate: (state: T) => state is TState, isError?: (state: T) => boolean | unknown | undefined, cancellationToken?: CancellationToken): Promise<TState>;
19 > export function waitForState<T>(observable: IObservable<T>, predicate: (state: T) => boolean, isError?: (state: T) => boolean | unknown | undefined, cancellationToken?: CancellationToken): Promise<T>;
20 > export function waitForState<T>(observable: IObservable<T>, predicate?: (state: T) => boolean, isError?: (state: T) => boolean | unknown | undefined, cancellationToken?: CancellationToken): Promise<T> {
21 if (!predicate) {
22 predicate = state => state !== null && state !== undefined;
69 });
70 }
72 > export function derivedWithCancellationToken<T>(computeFn: (reader: IReader, cancellationToken: CancellationToken) => T): IObservable<T>;
73 > export function derivedWithCancellationToken<T>(owner: object, computeFn: (reader: IReader, cancellationToken: CancellationToken) => T): IObservable<T>;
74 > export function derivedWithCancellationToken<T>(computeFnOrOwner: ((reader: IReader, cancellationToken: CancellationToken) => T) | object, computeFnOrUndefined?: ((reader: IReader, cancellationToken: CancellationToken) => T)): IObservable<T> {
75 let computeFn: (reader: IReader, store: CancellationToken) => T;
76 let owner: DebugOwner;
src/vs/platform/agentHost/common/state/protocol/channels-changeset/reducer.ts 24 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import { ChangesetStatus, ChangesetOperationStatus, type ChangesetState, type ChangesetFile, type ChangesetOperation } from './state.js';
11 > import type { ChangesetAction } from '../action-origin.generated.js';
12 > import { softAssertNever } from '../common/reducer-helpers.js';
13 >
14 > /**
15 > * Pure reducer for changeset state. Handles all {@link ChangesetAction}
16 > * variants.
17 > *
18 > * The reducer preserves a stable file order by appending new files via
19 > * {@link ActionType.ChangesetFileSet} when the id is unknown, and replacing in
20 > * place when it matches an existing entry. Per-file review lives on
21 > * {@link ChangesetFile.reviewed} and is toggled (per file, in batches) by the
22 > * client-dispatchable {@link ActionType.ChangesetFilesReviewChanged}.
23 > */
24 > export function changesetReducer(state: ChangesetState, action: ChangesetAction, log?: (msg: string) => void): ChangesetState {
25 switch (action.type) {
26 case ActionType.ChangesetStatusChanged: {
src/vs/platform/agentHost/node/compositeProtocolServer.ts 21 covered LOC · 2 ranges

Open complete file

1 > /*--------------------------------------------------------------------------------------------- compositeProtocolServer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Emitter } from '../../../base/common/event.js';
7 > import { Disposable } from '../../../base/common/lifecycle.js';
8 > import type { IProtocolServer, IProtocolTransport } from '../common/state/sessionTransport.js';
9 >
10 > /**
11 > * Presents multiple protocol listeners as one server.
12 > */
13 > export class CompositeProtocolServer extends Disposable implements IProtocolServer {
14 >
15 > private readonly _onConnection = this._register(new Emitter<IProtocolTransport>());
16 > readonly onConnection = this._onConnection.event;
17 >
18 > readonly address = undefined;
19 >
20 > constructor(servers: readonly IProtocolServer[]) {
21 super();
22
src/vs/platform/agentHost/common/state/sessionReducers.ts 20 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- sessionReducers.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // Re-exports the protocol reducers and adds VS Code-specific helpers.
7 > // The actual reducer logic lives in the auto-generated protocol layer.
8 >
9 > // Re-export reducers from the protocol layer
10 > export { rootReducer, sessionReducer, chatReducer, changesetReducer, annotationsReducer, softAssertNever, isClientDispatchable } from './protocol/reducers.js';
11 >
12 > import { readToolCallMeta, type ToolKind } from '../meta/agentToolCallMeta.js';
13 > import type { ICompletedToolCall, ToolCallState } from './sessionState.js';
14 >
15 > /**
16 > * Extracts the VS Code-specific `toolKind` hint from a tool call's `_meta`
17 > * bag. This is not part of the protocol and is injected by the agent adapter
18 > * (e.g. `copilotEventMapper`).
19 > */
20 > export function getToolKind(tc: ToolCallState | ICompletedToolCall): ToolKind | undefined {
21 return readToolCallMeta(tc).toolKind;
22 }
src/vs/base/common/observableInternal/utils/valueWithChangeEvent.ts 19 covered LOC · 4 ranges

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1 > /*--------------------------------------------------------------------------------------------- valueWithChangeEvent.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservable } from '../base.js';
7 > import { Event, IValueWithChangeEvent } from '../commonFacade/deps.js';
8 > import { DebugOwner } from '../debugName.js';
9 > import { observableFromEvent } from '../observables/observableFromEvent.js';
10 >
11 > export class ValueWithChangeEventFromObservable<T> implements IValueWithChangeEvent<T> {
12 > constructor(public readonly observable: IObservable<T>) {
13 }
15 > get onDidChange(): Event<void> {
16 return Event.fromObservableLight(this.observable);
17 }
19 > get value(): T {
20 return this.observable.get();
21 }
23 >
24 > export function observableFromValueWithChangeEvent<T>(owner: DebugOwner, value: IValueWithChangeEvent<T>): IObservable<T> {
25 if (value instanceof ValueWithChangeEventFromObservable) {
26 return value.observable;
src/vs/base/common/observableInternal/logging/debugger/debuggerRpc.ts 17 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- debuggerRpc.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { ChannelFactory, IChannelHandler, API, SimpleTypedRpcConnection, MakeSideAsync } from './rpc.js';
7 >
8 > export function registerDebugChannel<T extends { channelId: string } & API>(
9 channelId: T['channelId'],
10 createClient: () => T['client'],
43 });
44 }
46 > interface GlobalObj {
47 > $$debugValueEditor_debugChannels: Record<string, (host: IHost) => { handleRequest: (data: unknown) => unknown }>;
48 > }
49 >
50 > interface IHost {
51 > sendNotification: (data: unknown) => void;
52 > }
53 >
54 function createChannelFactoryFromDebugChannel(host: IHost): { channel: ChannelFactory; handler: { handleRequest: (data: unknown) => unknown } } {
55 let h: IChannelHandler | undefined;
src/vs/base/common/observableInternal/utils/runOnChange.ts 17 covered LOC · 3 ranges

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1 > /*--------------------------------------------------------------------------------------------- runOnChange.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { IObservableWithChange } from '../base.js';
7 > import { CancellationToken, cancelOnDispose } from '../commonFacade/cancellation.js';
8 > import { DisposableStore, IDisposable } from '../commonFacade/deps.js';
9 > import { autorunWithStoreHandleChanges } from '../reactions/autorun.js';
10 >
11 > export type RemoveUndefined<T> = T extends undefined ? never : T;
12 >
13 > export function runOnChange<T, TChange>(observable: IObservableWithChange<T, TChange>, cb: (value: T, previousValue: T, deltas: RemoveUndefined<TChange>[]) => void): IDisposable {
14 let _previousValue: T | undefined;
15 let _firstRun = true;
42 });
43 }
45 > export function runOnChangeWithStore<T, TChange>(observable: IObservableWithChange<T, TChange>, cb: (value: T, previousValue: T, deltas: RemoveUndefined<TChange>[], store: DisposableStore) => void): IDisposable {
46 const store = new DisposableStore();
47 const disposable = runOnChange(observable, (value, previousValue: T, deltas) => {
56 };
57 }
59 > export function runOnChangeWithCancellationToken<T, TChange>(observable: IObservableWithChange<T, TChange>, cb: (value: T, previousValue: T, deltas: RemoveUndefined<TChange>[], token: CancellationToken) => Promise<void>): IDisposable {
60 return runOnChangeWithStore(observable, (value, previousValue, deltas, store) => {
61 cb(value, previousValue, deltas, cancelOnDispose(store));
src/vs/platform/agentHost/common/state/protocol/channels-root/reducer.ts 17 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import type { RootState } from './state.js';
11 > import type { RootAction } from '../action-origin.generated.js';
12 > import { softAssertNever } from '../common/reducer-helpers.js';
13 >
14 > /**
15 > * Pure reducer for root state. Handles all {@link RootAction} variants.
16 > */
17 > export function rootReducer(state: RootState, action: RootAction, log?: (msg: string) => void): RootState {
18 switch (action.type) {
19 case ActionType.RootAgentsChanged:
src/vs/platform/agentHost/common/state/protocol/channels-terminal/reducer.ts 17 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducer.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > import { ActionType } from '../common/actions.js';
10 > import type { TerminalState, TerminalContentPart } from './state.js';
11 > import type { TerminalAction } from '../action-origin.generated.js';
12 > import { softAssertNever } from '../common/reducer-helpers.js';
13 >
14 > /**
15 > * Pure reducer for terminal state. Handles all {@link TerminalAction} variants.
16 > */
17 > export function terminalReducer(state: TerminalState, action: TerminalAction, log?: (msg: string) => void): TerminalState {
18 switch (action.type) {
19 case ActionType.TerminalData: {
src/vs/platform/agentHost/common/state/protocol/state.ts 17 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- state.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export * from './common/state.js';
10 > export * from './channels-root/state.js';
11 > export * from './channels-session/state.js';
12 > export * from './channels-chat/state.js';
13 > export * from './channels-terminal/state.js';
14 > export * from './channels-changeset/state.js';
15 > export * from './channels-annotations/state.js';
16 > export * from './channels-otlp/state.js';
17 > export * from './channels-resource-watch/state.js';
src/vs/platform/agentHost/common/state/protocol/actions.ts 16 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- actions.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export * from './common/actions.js';
10 > export * from './channels-root/actions.js';
11 > export * from './channels-session/actions.js';
12 > export * from './channels-chat/actions.js';
13 > export * from './channels-terminal/actions.js';
14 > export * from './channels-changeset/actions.js';
15 > export * from './channels-annotations/actions.js';
16 > export * from './channels-resource-watch/actions.js';
src/vs/platform/agentHost/common/state/protocol/reducers.ts 16 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- reducers.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export { rootReducer } from './channels-root/reducer.js';
10 > export { sessionReducer } from './channels-session/reducer.js';
11 > export { chatReducer } from './channels-chat/reducer.js';
12 > export { terminalReducer } from './channels-terminal/reducer.js';
13 > export { changesetReducer } from './channels-changeset/reducer.js';
14 > export { annotationsReducer } from './channels-annotations/reducer.js';
15 > export { resourceWatchReducer } from './channels-resource-watch/reducer.js';
16 > export { softAssertNever, isClientDispatchable } from './common/reducer-helpers.js';
src/vs/base/test/common/virtualScheduling/loggingTimeApi.ts 15 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- loggingTimeApi.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { TimeApi } from './timeApi.js';
7 >
8 > /**
9 > * Wrap `underlying` so that every call to `setTimeout`, `setInterval`,
10 > * `setImmediate` or `requestAnimationFrame` invokes `onCall` first.
11 > *
12 > * Useful for diagnostics — e.g. logging timer registrations made outside of
13 > * virtual time, to find leaks of real-time scheduling into a fixture.
14 > */
15 > export function createLoggingTimeApi(
16 underlying: TimeApi,
17 onCall: (name: string, stack: string | undefined, handler?: () => void) => void,
src/vs/platform/agentHost/common/state/protocol/commands.ts 15 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- commands.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export * from './common/commands.js';
10 > export * from './channels-root/commands.js';
11 > export * from './channels-session/commands.js';
12 > export * from './channels-chat/commands.js';
13 > export * from './channels-terminal/commands.js';
14 > export * from './channels-changeset/commands.js';
15 > export * from './channels-resource-watch/commands.js';
src/vs/base/common/observableInternal/observables/observableValueOpts.ts 13 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- observableValueOpts.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { ISettableObservable } from '../base.js';
7 > import { DebugNameData, IDebugNameData } from '../debugName.js';
8 > import { EqualityComparer, strictEquals } from '../commonFacade/deps.js';
9 > import { ObservableValue } from './observableValue.js';
10 > import { LazyObservableValue } from './lazyObservableValue.js';
11 > import { DebugLocation } from '../debugLocation.js';
12 >
13 > export function observableValueOpts<T, TChange = void>(
14 options: IDebugNameData & {
15 equalsFn?: EqualityComparer<T>;
src/vs/platform/agentHost/common/resourceReadLogging.ts 11 covered LOC · 2 ranges

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1 > /*--------------------------------------------------------------------------------------------- resourceReadLogging.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > import { Schemas } from '../../../base/common/network.js';
7 > import { hasKey } from '../../../base/common/types.js';
8 > import { URI } from '../../../base/common/uri.js';
9 >
10 > export function isFileResourceRead(method: string, params: unknown): boolean {
11 if (method !== 'resourceRead' || !hasUriParam(params)) {
12 return false;
22 }
23 }
25 function hasUriParam(params: unknown): params is { readonly uri: unknown } {
26 return typeof params === 'object' && params !== null && hasKey(params, { uri: true });
src/vs/platform/agentHost/common/state/protocol/notifications.ts 11 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- notifications.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export * from './common/notifications.js';
10 > export * from './channels-root/notifications.js';
11 > export * from './channels-otlp/notifications.js';
src/vs/base/common/observableInternal/commonFacade/deps.ts 10 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- deps.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export { assertFn } from '../../assert.js';
7 > export { type EqualityComparer, strictEquals } from '../../equals.js';
8 > export { BugIndicatingError, onBugIndicatingError, onUnexpectedError } from '../../errors.js';
9 > export { Event, type IValueWithChangeEvent } from '../../event.js';
10 > export { DisposableStore, type IDisposable, markAsDisposed, toDisposable, trackDisposable } from '../../lifecycle.js';
src/vs/base/common/functional.ts 9 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- functional.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * Given a function, returns a function that is only calling that function once.
8 > */
9 > export function createSingleCallFunction<T extends Function>(this: unknown, fn: T, fnDidRunCallback?: () => void): T {
10 const _this = this;
11 let didCall = false;
src/vs/base/common/symbols.ts 9 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- symbols.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > /**
7 > * Can be passed into the Delayed to defer using a microtask
8 > * */
9 > export const MicrotaskDelay = Symbol('MicrotaskDelay');
src/vs/platform/agentHost/common/state/protocol/errors.ts 9 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- errors.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // allow-any-unicode-comment-file
7 > // DO NOT EDIT -- auto-generated by scripts/sync-agent-host-protocol.ts
8 >
9 > export * from './common/errors.js';
src/vs/base/common/observable.ts 8 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- observable.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > // This is a facade for the observable implementation. Only import from here!
7 >
8 > export * from './observableInternal/index.js';
src/vs/base/common/observableInternal/commonFacade/cancellation.ts 7 covered LOC · 1 range

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1 > /*--------------------------------------------------------------------------------------------- cancellation.ts
2 > * Copyright (c) Microsoft Corporation. All rights reserved.
3 > * Licensed under the MIT License. See License.txt in the project root for license information.
4 > *--------------------------------------------------------------------------------------------*/
5 >
6 > export { CancellationError } from '../../errors.js';
7 > export { CancellationToken, CancellationTokenSource, cancelOnDispose } from '../../cancellation.js';