# Conflicts: # docs/AGENTS.md # docs/config-catalog.md # packages/bash/bash-sandbox/src/index.ts # packages/bash/bash/src/session-mode.ts # packages/bash/tool-bash/README.md # packages/code-runtime/code-runtime-worker/README.md # packages/compact/compact/src/index.ts # packages/core/agent-core/README.md # packages/hooks/hooks-claude/src/config.ts # packages/hooks/hooks-claude/src/index.ts # packages/hooks/hooks-codex/src/config.ts # packages/hooks/hooks-codex/src/index.ts # packages/llm/llm/README.md # packages/session-persistence/session-persistence-jsonl/README.md # packages/session-persistence/session-persistence/README.md # packages/skill/skill-local/README.md # packages/support/acp-snapshot/README.md # packages/support/invariants/src/index.ts # packages/ui/acp/README.md # packages/ui/jsonrpc-agent/README.md # packages/ui/jsonrpc/README.md # packages/ui/permission/README.md # packages/ui/user-approval/README.md # packages/ui/user-interaction/README.md # packages/web/web-search-deepseek/README.md
482 lines
23 KiB
TypeScript
482 lines
23 KiB
TypeScript
/**
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* Model-facing `bash`, `bash_output`, and `bash_kill` tools over the executor
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* seam. Background tasks are fenced by owning session, completion injects a
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* durable notice, and confining executors add one-shot approval-based escalation.
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* Notices do not wake idle agents. Ownership is stored with the executor task so
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* it survives this plugin's reload; per-call authority is escalation grant,
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* session override, then executor default. See the package README for the tool contract.
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* @module @deepseek-ai/dsh-tool-bash
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*/
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import type { Context } from 'cordis'
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import { isAbsolute, resolve as resolvePath } from 'node:path'
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import { defineTool } from '@deepseek-ai/dsh-tools'
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import type { GenericCallView, TerminalCallView, ToolExecution, ToolResult, ToolResultView } from '@deepseek-ai/dsh-tools'
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import type { Agent } from '@deepseek-ai/dsh-agent'
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import { assertNever } from '@deepseek-ai/dsh-llm'
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import type {} from '@deepseek-ai/dsh-system-prompt'
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// Side-effect type import: declaration-merges `ctx.approval`, consumed
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// opportunistically by the escalation gate (`ctx.get('approval')` — the seam
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// stays optional at runtime, same pattern as dsh-tools' ask routing).
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import type {} from '@deepseek-ai/dsh-user-approval'
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import type { SandboxMode } from '@deepseek-ai/dsh-sandbox'
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import { BashTaskId, OwnerToken, effectiveSandboxMode } from '@deepseek-ai/dsh-bash'
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import type { BashRunResult, BashTask, CollectedOutput } from '@deepseek-ai/dsh-bash'
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export const name = 'tool-bash'
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export const inject = ['tools', 'bash', 'systemPrompt']
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/**
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* Validate value constraints absent from SchemaSpec: non-empty strings, a
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* positive finite timeout, and paired escalation mode and justification.
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*/
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function validateBashArgs(args: BashToolArgs): void {
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if (args.command.trim().length === 0) {
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throw new Error('invalid command: expected a non-empty string')
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}
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if (args.description.trim().length === 0) {
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throw new Error('invalid description: expected a non-empty string')
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}
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if (args.timeoutMs !== undefined && (!Number.isFinite(args.timeoutMs) || args.timeoutMs <= 0)) {
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throw new Error(`invalid timeoutMs: expected a positive number, got ${JSON.stringify(args.timeoutMs)}`)
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}
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if (args.sandbox_permissions !== undefined && args.justification === undefined) {
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throw new Error('invalid escalation: sandbox_permissions requires a justification')
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}
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if (args.justification !== undefined && args.sandbox_permissions === undefined) {
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throw new Error('invalid escalation: justification is only valid together with sandbox_permissions')
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}
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if (args.justification !== undefined && args.justification.trim().length === 0) {
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throw new Error('invalid justification: expected a non-empty sentence')
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}
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}
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/**
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* Reject an empty `task_id`; SchemaSpec already validates type and presence.
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*/
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function validateTaskId(value: string): BashTaskId {
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if (value.length === 0) {
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throw new Error(`invalid task_id: expected a string, got ${JSON.stringify(value)}`)
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}
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return BashTaskId(value)
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}
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/**
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* Validated bash arguments. Escalation fields are advertised only when the
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* mounted executor reports a confining mode.
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*/
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interface BashToolArgs {
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command: string
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description: string
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timeoutMs?: number
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workdir?: string
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run_in_background?: boolean
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sandbox_permissions?: string
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justification?: string
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}
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/**
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* Strictly wider modes for each effective mode. Execution checks this table
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* because the schema is global while the effective mode is per call.
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*/
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const WIDER_MODES: Record<string, readonly SandboxMode[]> = {
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'read-only': ['workspace-write', 'danger-full-access'],
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'workspace-write': ['danger-full-access'],
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}
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/**
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* All possible escalation targets. Advertise the global set because a session
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* override may be narrower than the executor default; execution rejects a
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* target that is not wider for that call.
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*/
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const ESCALATION_TARGETS: readonly SandboxMode[] = ['workspace-write', 'danger-full-access']
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/**
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* The bash tool's byte-stable base description. Escalation guidance is added
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* only when the mounted executor can honor it, as the one exception to the
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* ordinary no-retry guidance.
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*/
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function bashDescription(escalationModes: readonly SandboxMode[]): string {
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const base = 'Execute a bash command (`bash -c`) and return its stdout/stderr. '
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+ 'Each call runs in a fresh shell: no state (cwd, variables, functions) persists between calls — '
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+ 'pass `workdir` instead of using `cd`. Non-zero exits are reported as `[exit code: N]`. '
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+ 'Commands may run under a file sandbox; a blocked file operation is reported as `[sandbox: file access denied under <mode> mode]` — a policy denial, not a bug in the command; do not retry another way (a background task reports the same marker via bash_output once it has finished). '
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+ 'Long output is truncated to its tail; the full output is saved to a file whose path is reported when available. '
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+ 'Set `run_in_background: true` for long-running commands: the call returns a task id immediately; '
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+ 'poll it with `bash_output` and stop it with `bash_kill`.'
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if (escalationModes.length === 0) return base
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return base + ' Attempting a command the sandbox may deny is safe and expected: run it and read the '
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+ 'marker rather than assuming the denial. When a command is denied and a wider mode would let it '
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+ 'succeed, escalate immediately in the same turn — the one sanctioned exception to a denial: retry '
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+ 'the exact same command once with `sandbox_permissions` (the narrowest wider mode that suffices) '
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+ 'plus a one-sentence `justification`. Do not detour through chat to ask permission first — the '
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+ 'approval prompt raised by that retry is how the user consents. If the session states approval '
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+ 'prompts are disabled, there is no exception: a denial is final — do not set `sandbox_permissions`. '
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+ 'Never escalate speculatively: ground the request in a real denial — normally the one this command '
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+ 'just hit; escalating up front is fine only when this session already denied the same access. '
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+ 'A rejected escalation is final for that command — stop and explain, never work around '
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+ 'it — but it does not forbid attempting or escalating other commands later.'
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}
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/** Append the truncation notice (with the full-output spill path) to a stream's text. */
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function streamText(output: CollectedOutput): string {
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if (!output.truncated) return output.text
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return `${output.text}\n[output truncated; full output: ${output.spillPath ?? '(unavailable)'}]`
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}
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/**
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* Shape one finished run into model-visible stdout, marked stderr, and status
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* facts. Non-zero exits and sandbox denials remain ordinary results; only
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* infrastructure failure or abort makes the tool call itself fail.
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*
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* @param result - the completed foreground run from the executor.
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* @param escalationModes - the escalation targets this composition advertises; non-empty
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* adds the same-turn escalation hint after a denial marker (default `[]`: no hint).
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* @returns the model-facing text: output body (or `(no output)`), then any
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* timeout/signal/exit markers, each on its own line.
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*/
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export function renderResult(
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result: BashRunResult,
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escalationModes: readonly SandboxMode[] = [],
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): string {
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const out = streamText(result.stdout)
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const err = streamText(result.stderr)
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let body = out
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if (err.length > 0) {
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// Single newline between sections (stdout usually ends with one already).
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if (body.length > 0 && !body.endsWith('\n')) body += '\n'
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body += `[stderr]\n${err}`
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}
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if (body.length === 0) body = '(no output)'
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const markers: string[] = []
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// Keep `[exit code: N]` last so parseExitStatus() can recover it. A denial,
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// like a timeout, remains a reported fact for the model to handle.
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if (result.sandbox?.denied) {
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markers.push(`[sandbox: file access denied under ${result.sandbox.mode} mode]`)
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// Add the retry hint only when the schema advertises escalation, before
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// the final exit marker.
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if (escalationModes.length > 0) {
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markers.push('[sandbox: escalation available — retry this exact command once with sandbox_permissions (the narrowest wider mode that suffices) + justification; the approval prompt asks the user]')
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}
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}
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// Timeout is reported independently of how the process actually ended: a
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// command can trap SIGTERM and exit 0 after our timer fired (e.g.
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// `trap "exit 0" TERM; sleep 60`), giving timedOut:true / exitCode:0 /
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// signal:null — the model must still see that the command was cut short.
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if (result.timedOut) markers.push(`[timed out after ${result.timeoutMs}ms]`)
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if (result.signal !== null) {
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markers.push(`[killed by signal: ${result.signal}]`)
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} else if (result.exitCode !== 0) {
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markers.push(`[exit code: ${result.exitCode}]`)
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}
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if (markers.length === 0) return body
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if (!body.endsWith('\n')) body += '\n'
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return body + markers.join('\n')
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}
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// Pure tool-owned presentation used for both live events and replay.
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/**
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* Present foreground calls as terminals and background starts as generic cards.
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*/
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type BashCallArgs = { command: string; description: string; workdir?: string; run_in_background?: boolean }
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function presentBashCall(args: BashCallArgs): GenericCallView | TerminalCallView {
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// A background start is not an interactive terminal — a generic execute card
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// with the command as rawInput and the description as a content block.
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if (args.run_in_background === true) {
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return {
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card: 'generic',
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title: args.command,
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kind: 'execute',
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rawInput: args.command,
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content: [{ type: 'text', text: args.description }],
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}
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}
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// A foreground run is a terminal; an explicit workdir supplies its cwd.
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return {
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card: 'terminal',
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title: args.command,
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description: args.description,
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...args.workdir !== undefined ? { cwd: args.workdir } : {},
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}
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}
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/**
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* Present completed foreground output as a terminal; background acknowledgements
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* and execution errors use generic fenced output without an exit-status pill.
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*/
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function presentBashResult(args: unknown, result: ToolResult): ToolResultView | undefined {
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const block = result.content.length === 1 ? result.content[0] : undefined
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if (block === undefined || block.type !== 'text') return undefined
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const raw = block.text
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const isBackground = typeof args === 'object' && args !== null && (args as { run_in_background?: unknown }).run_in_background === true
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// A background ack or an errored run is not a real terminal exit: render the
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// fenced ```console fallback as generic content (no exit pill).
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if (isBackground || result.isError) {
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return { card: 'generic', content: [{ type: 'text', text: `\`\`\`console\n${raw.replace(/\n+$/, '')}\n\`\`\`` }] }
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}
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// A finished foreground run supplies raw output and parsed exit status.
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// The bridge derives the no-capability fenced fallback from `output`.
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return { card: 'terminal', output: raw, ...parseExitStatus(raw) }
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}
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/**
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* Recover exit status from the final marked line emitted by {@link renderResult}.
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* A program whose own final line exactly mimics a marker remains ambiguous for UI display.
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*/
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function parseExitStatus(text: string): { exitCode: number } | { signal: string } {
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const signal = /\n\[killed by signal: ([^\]\n]+)\]$/.exec(text)
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if (signal?.[1] !== undefined) return { signal: signal[1] }
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const exit = /\n\[exit code: (\d+)\]$/.exec(text)
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if (exit?.[1] !== undefined) return { exitCode: Number(exit[1]) }
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return { exitCode: 0 }
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}
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/** Pending-state presentation for `bash_output`/`bash_kill` (background-task tools). */
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function presentTaskCall(verb: string, args: { task_id: string }): GenericCallView {
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return { card: 'generic', title: `${verb} background task ${args.task_id}`, kind: 'execute', rawInput: args.task_id }
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}
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/**
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* Resolve an explicit workdir first, making a relative one session-cwd-relative;
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* otherwise use the session cwd and leave executor defaulting as the fallback.
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*/
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function resolveWorkdir(modelWorkdir: string | undefined, exec: { agent?: Agent }): string | undefined {
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const sessionCwd = exec.agent?.session.header.cwd
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if (modelWorkdir === undefined) return sessionCwd
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if (sessionCwd !== undefined && !isAbsolute(modelWorkdir)) {
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return resolvePath(sessionCwd, modelWorkdir)
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}
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return modelWorkdir
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}
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/** Status line for background task reads. */
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function statusLine(task: BashTask): string {
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switch (task.status) {
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case 'running': return '[status: running]'
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case 'killed': return `[status: killed${task.signal !== null ? ` by ${task.signal}` : ''}]`
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case 'completed': return `[status: completed, exit code: ${task.exitCode ?? 0}]`
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}
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}
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export function apply(ctx: Context): void {
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// Cross-call guidance belongs in the prompt rather than one tool description.
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ctx.systemPrompt.section({
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name: 'tool:bash',
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order: 105,
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text: 'Check the [exit code: N] marker on every bash result; investigate failures before moving on.',
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})
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/**
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* Return the canonical session-header id used by ACP and persistence as the
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* task owner, or undefined for a non-agent caller.
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*/
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const callerToken = (exec: { agent?: Agent }): OwnerToken | undefined =>
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exec.agent ? OwnerToken(exec.agent.session.header.id) : undefined
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/**
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* Reject access when a task has a different session owner. Unowned tasks are
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* allowed; unknown ids still fail in the subsequent read or kill.
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*/
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const assertTaskAccess = (taskId: BashTaskId, exec: { agent?: Agent }): void => {
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const owner = ctx.bash.ownerOf(taskId)
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if (owner !== undefined && owner !== callerToken(exec)) {
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throw new Error(`task ${taskId} belongs to another session`)
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}
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}
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// Completion runs on the bash fiber, so use topology-independent lookup and
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// match the executor's stored session-owner token to a live agent.
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ctx.bash.onTaskDone((task) => {
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const ownerToken = ctx.bash.ownerOf(task.id)
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if (ownerToken === undefined) return
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const agent = ctx.get('agents')?.list().find(a => OwnerToken(a.session.header.id) === ownerToken)
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if (!agent) return
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try {
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agent.inject(
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[{ type: 'text', text: `background bash task ${task.id} finished ${statusLine(task)}. Read its output with bash_output.` }],
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{ source: { kind: 'plugin', plugin: 'tool-bash' } },
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)
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} catch (error: unknown) {
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// The one expected failure: the agent was disposed between task completion and this
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// injection (ReactLoopAgent.inject throws `agent "<id>" is disposed`).
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if (error instanceof Error && error.message.includes('is disposed')) return
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throw error
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}
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})
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// The escalation surface exists whenever the mounted executor confines.
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// Advertise the closed target vocabulary globally, then enforce strict
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// widening against each call's effective session mode.
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const defaultMode = ctx.bash.sandboxMode
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const escalationModes: readonly SandboxMode[] = defaultMode === undefined ? [] : ESCALATION_TARGETS
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/**
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* Return the calling session's folded standing mode. Approval outranks this
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* value and the executor default applies when it is absent; non-sandboxing
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* and agent-less calls have no override.
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*/
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const sessionOverride = (exec: ToolExecution): SandboxMode | undefined =>
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defaultMode === undefined || exec.agent === undefined ? undefined : effectiveSandboxMode(exec.agent.session.events)
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/**
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* Request one-shot escalation before execution. Missing approval context,
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* rejection, cancellation, and unavailable answers throw without running the
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* command; the optional seam is resolved per call through `ctx.get`.
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*/
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const approveEscalation = async (mode: string, justification: string, exec: ToolExecution): Promise<SandboxMode> => {
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// Reject an unadvertised escalation before prompting for a nonexistent sandbox.
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if (escalationModes.length === 0) {
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throw new Error('sandbox_permissions is not available in this composition (no sandboxing executor to escalate)')
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}
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// Reject sandbox widening against the call's effective mode before requesting approval.
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const effectiveMode = (sessionOverride(exec) ?? defaultMode) as SandboxMode
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if (!(WIDER_MODES[effectiveMode] ?? []).includes(mode as SandboxMode)) {
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throw new Error(`sandbox escalation to "${mode}" is not strictly wider than this call's current "${effectiveMode}" mode`)
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}
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const approval = ctx.get('approval')
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if (approval === undefined) {
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throw new Error(`sandbox escalation to "${mode}" requires approval, but no approval service is composed`)
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}
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if (exec.agent === undefined) {
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throw new Error(`sandbox escalation to "${mode}" requires approval, but the call has no agent to route it through`)
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}
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const outcome = await approval.request({
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agent: exec.agent,
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toolName: 'bash',
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callId: exec.callId,
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// Self-contained for the audit trail: approval/asked stores this
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// reason, and the target mode is part of the grant's identity.
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reason: `escalate sandbox to ${mode}: ${justification}`,
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...exec.signal ? { signal: exec.signal } : {},
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})
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switch (outcome) {
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// Schema validation pins the vocabulary; the per-call check proves widening.
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case 'allowed-once': return mode as SandboxMode
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case 'rejected': throw new Error(`the user rejected escalating this command to "${mode}"`)
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case 'cancelled': throw new Error(`approval for escalating to "${mode}" was cancelled`)
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case 'unavailable': throw new Error(`sandbox escalation to "${mode}" requires approval, but no approval channel is available`)
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default: return assertNever(outcome, 'ApprovalOutcome')
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}
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}
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ctx.tools.register(defineTool({
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name: 'bash',
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description: bashDescription(escalationModes),
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parameters: {
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command: { type: 'string', required: true, description: 'The bash command to execute.' },
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description: {
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type: 'string',
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required: true,
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description: 'Clear, concise description of what this command does in active voice, '
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+ '5-10 words (shown in the UI). Examples: "ls" → "List files in current directory"; '
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+ '"git status" → "Show working tree status"; "npm install" → "Install package dependencies".',
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},
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timeoutMs: { type: 'number', description: 'Timeout in milliseconds. The executor applies its configured default and cap, and kills the command on expiry.' },
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workdir: { type: 'string', description: 'Working directory for this command. Defaults to the session workspace; a relative path is resolved against it.' },
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run_in_background: { type: 'boolean', description: 'Run in the background and return a task id immediately. No timeout applies.' },
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...escalationModes.length > 0 ? {
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sandbox_permissions: {
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type: 'string' as const,
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enum: [...escalationModes],
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description: 'The wider sandbox mode this command needs. Only valid as a one-shot retry '
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+ 'of a command the sandbox just denied; requires justification and user approval.',
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},
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justification: {
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type: 'string' as const,
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description: 'Required with sandbox_permissions: one sentence for the user explaining '
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+ 'why this exact command needs the wider access.',
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},
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} : {},
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},
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async execute(args: BashToolArgs, exec) {
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validateBashArgs(args)
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// `description` is display/logging metadata only. Escalation approval
|
|
// completes before execution; grant > session override > executor default.
|
|
const sandboxMode = args.sandbox_permissions !== undefined && args.justification !== undefined
|
|
? await approveEscalation(args.sandbox_permissions, args.justification, exec)
|
|
: sessionOverride(exec)
|
|
// Default the workdir to the calling agent's session cwd so each ACP
|
|
// session runs in its own workspace (see resolveWorkdir); an explicit
|
|
// model workdir still wins.
|
|
const workdir = resolveWorkdir(args.workdir, exec)
|
|
const request = {
|
|
command: args.command,
|
|
...workdir !== undefined ? { workdir } : {},
|
|
...args.timeoutMs !== undefined ? { timeoutMs: args.timeoutMs } : {},
|
|
...exec.signal ? { signal: exec.signal } : {},
|
|
...sandboxMode !== undefined ? { sandboxMode } : {},
|
|
}
|
|
if (args.run_in_background === true) {
|
|
// Store the session owner on the task for bash_output/bash_kill isolation.
|
|
const task = ctx.bash.start(ctx.bash.resolve({ ...request, owner: callerToken(exec) }))
|
|
return [{ type: 'text', text: `started background task ${task.id}` }]
|
|
}
|
|
const result = await ctx.bash.run(ctx.bash.resolve(request))
|
|
if (result.aborted) throw new Error('command aborted')
|
|
return [{ type: 'text', text: renderResult(result, escalationModes) }]
|
|
},
|
|
presentCall: presentBashCall,
|
|
presentResult: presentBashResult,
|
|
}))
|
|
|
|
ctx.tools.register(defineTool({
|
|
name: 'bash_output',
|
|
description: 'Read new output from a background bash task started with `bash` + `run_in_background`. '
|
|
+ 'Returns only output produced since the previous bash_output call, plus the task status. '
|
|
+ 'Tasks keep running while you do other work; poll again later for more output.',
|
|
parameters: {
|
|
task_id: { type: 'string', required: true, description: 'Task id returned by the bash tool.' },
|
|
},
|
|
// execute is synchronous (registry reads + string shaping) but the
|
|
// ToolDefinition contract wants a Promise — hence resolve(), not async.
|
|
execute(args, exec) {
|
|
const id = validateTaskId(args.task_id)
|
|
assertTaskAccess(id, exec)
|
|
const read = ctx.bash.readOutput(id)
|
|
let text = read.delta.length > 0 ? read.delta : '(no new output)'
|
|
if (read.lossy) {
|
|
const paths = [read.stdoutSpillPath, read.stderrSpillPath].filter((p): p is string => p !== undefined)
|
|
const fullOutput = paths.length > 0 ? paths.join(', ') : '(unavailable)'
|
|
text += `\n[some output was dropped from memory; full output: ${fullOutput}]`
|
|
}
|
|
text += `\n${statusLine(read.task)}`
|
|
if (read.task.sandbox?.runnerFailed) {
|
|
// Background settlement carries the runner-failure fact that a
|
|
// foreground call exposes as SANDBOX_UNAVAILABLE.
|
|
text += `\n[sandbox: the sandbox runner itself failed under ${read.task.sandbox.mode} mode — the command did not run; this is a sandbox problem, not a command failure]`
|
|
} else if (read.task.sandbox?.denied) {
|
|
// Mirrors the foreground result marker (and its same-turn escalation hint).
|
|
text += `\n[sandbox: file access denied under ${read.task.sandbox.mode} mode]`
|
|
if (escalationModes.length > 0) {
|
|
text += '\n[sandbox: escalation available — retry this exact command once with sandbox_permissions (the narrowest wider mode that suffices) + justification; the approval prompt asks the user]'
|
|
}
|
|
}
|
|
return Promise.resolve([{ type: 'text', text }])
|
|
},
|
|
presentCall: args => presentTaskCall('Read output from', args),
|
|
}))
|
|
|
|
ctx.tools.register(defineTool({
|
|
name: 'bash_kill',
|
|
description: 'Ask the executor to kill a running background bash task by task id.',
|
|
parameters: {
|
|
task_id: { type: 'string', required: true, description: 'Task id returned by the bash tool.' },
|
|
},
|
|
execute(args, exec) {
|
|
const id = validateTaskId(args.task_id)
|
|
assertTaskAccess(id, exec)
|
|
const killed = ctx.bash.kill(id)
|
|
return Promise.resolve([{
|
|
type: 'text',
|
|
text: killed ? `killed background task ${id}` : `task ${id} had already finished`,
|
|
}])
|
|
},
|
|
presentCall: args => presentTaskCall('Kill', args),
|
|
}))
|
|
}
|