/** * Sandbox-consuming bash executor. It wraps the exact local bash argv through * `ctx.sandbox`, inherits local process mechanics, and reports the selected * mode, enforcement, and denial facts. Runner failure means the command never * ran: foreground calls throw `SANDBOX_UNAVAILABLE`, while settled background * processes carry `runnerFailed`. The tool owns approval and passes per-call modes. * @module @deepseek-ai/dsh-bash-sandbox */ import { resolve } from 'node:path' import { Context } from 'cordis' import z from 'schemastery' import type { BashExecRequest, BashExecSpec, BashProcess, BashRunResult } from '@deepseek-ai/dsh-bash' import { SandboxUnavailableError } from '@deepseek-ai/dsh-sandbox' import type { ConfinedSandboxMode, SandboxEnforcement, SandboxMode } from '@deepseek-ai/dsh-sandbox' import { LocalBashExecutor } from '@deepseek-ai/dsh-bash-local' import type { Config as LocalConfig } from '@deepseek-ai/dsh-bash-local' import { classifyDenial, classifyRunnerFailure, matchesSignature, shellQuote } from './helpers.ts' /** * Plugin config: the local executor's knobs plus the sandbox policy. All * optional — `static Config` supplies the defaults (`mode: 'read-only'` is the * fail-safe default; an example that wants a workspace-writable agent opts in * explicitly). The runner choice is not configured here: which platform * backend confines the command is the `ctx.sandbox` provider's config. */ export interface Config extends LocalConfig { /** File-sandbox mode commands run under (default: `read-only`). */ mode?: SandboxMode /** * Root directory `workspace-write` mode may write under (default: the * executor's default working directory — `cwd`, else `process.cwd()`). */ workspaceRoot?: string } /** * Registers as `ctx.bash` in place of the local executor and requires a * `ctx.sandbox` provider; the tool layer is unchanged. The configured mode is * the fallback, while a session override or approved one-shot escalation may * select each call's mode. The prompt does not state the standing mode; * `result.sandbox` reports the mode and enforcement actually used. */ export class SandboxBashExecutor extends LocalBashExecutor { static inject = ['sandbox'] // The sandbox-specific fields intersect the local executor's Config as an // inline schema call: the config catalog walks `static Config` statically. static override Config: z = z.intersect([ LocalBashExecutor.Config, z.object({ mode: z.union(['read-only', 'workspace-write', 'danger-full-access'] as const).default('read-only'), workspaceRoot: z.string(), }), ]) private readonly mode: SandboxMode private readonly workspaceRoot: string /** * Per-process confinement facts retained until settlement. Providers may * vary enforcement and diagnostic dialect between overlapping calls, so a * shared latest-wrap value would classify a process against the wrong facts. * Unconfined processes have no entry. */ private readonly processFacts = new Map() constructor(ctx: Context, config: Config) { super(ctx, config) // Schemastery fills mode before construction; workspaceRoot and cwd retain runtime fallbacks. this.mode = config.mode as SandboxMode this.workspaceRoot = resolve(config.workspaceRoot ?? config.cwd ?? process.cwd()) } /** The configured default mode — the capability fact the tool layer reads. */ override get sandboxMode(): SandboxMode { return this.mode } /** * Stamp the effective mode onto the spec — the request's explicit override * (an approved escalation), else this executor's configured default — so * defaulting stays an explicit resolve step and `run()`/`start()` read the * spec, never the config. */ override resolve(request: BashExecRequest): BashExecSpec { return { ...super.resolve(request), sandboxMode: request.sandboxMode ?? this.mode } } override async run(spec: BashExecSpec): Promise { // resolve() always stamps the mode; the cast records that invariant // (mirrors the constructor's config casts). const mode = spec.sandboxMode as SandboxMode if (mode === 'danger-full-access') { const result = await super.run(spec) return { ...result, sandbox: { mode, denied: false } } } const confined = this.confine(spec.command, mode) const result = await super.run({ ...spec, command: confined.command }) // Runner failure outranks denial because the command did not run. Throw the // same fail-closed error as confine-time discovery with the first stderr line. if (classifyRunnerFailure(result, confined.runnerFailureSignatures)) { throw new SandboxUnavailableError(mode, result.stderr.text.trim().split('\n')[0]) } return { ...result, sandbox: { mode, denied: classifyDenial(result, confined.denialSignatures), enforcement: confined.enforcement } } } override start(spec: BashExecSpec): BashProcess { // Same stamped-by-resolve invariant as run(). const mode = spec.sandboxMode as SandboxMode if (mode === 'danger-full-access') return super.start(spec) // Install facts synchronously; promise settlement cannot run before start() returns. const confined = this.confine(spec.command, mode) const proc = super.start({ ...spec, command: confined.command }) const { enforcement, denialSignatures, runnerFailureSignatures } = confined this.processFacts.set(proc, { mode, enforcement, denialSignatures, runnerFailureSignatures }) return proc } /** * Stamp per-process sandbox facts before `done` settles. Full-access processes * have no facts; signal deaths are not denials. */ protected override onProcessDone(proc: BashProcess, stderr: string): void { const facts = this.processFacts.get(proc) if (facts !== undefined) { this.processFacts.delete(proc) // Runner failure outranks denial because its diagnostics may contain denial terms. const runnerFailed = matchesSignature(proc.exitCode, stderr, facts.runnerFailureSignatures) proc.sandbox = { mode: facts.mode, denied: !runnerFailed && matchesSignature(proc.exitCode, stderr, facts.denialSignatures), enforcement: facts.enforcement, ...(runnerFailed ? { runnerFailed } : {}), } } super.onProcessDone(proc, stderr) } /** * Wrap one shell command via the `ctx.sandbox` provider: hand over the * exact `['bash', '-c', command]` argv this executor would spawn, get back * the confined argv, and re-assemble it into the `exec …` command string * the inherited spawn path runs (the outer `bash -c` that `runBash` spawns * `exec`s into the runner, so no extra shell lingers). Provider errors * (fail-closed `SANDBOX_UNAVAILABLE`) propagate to the caller unchanged. */ private confine(command: string, mode: ConfinedSandboxMode): { command: string enforcement: SandboxEnforcement denialSignatures: readonly string[] runnerFailureSignatures: readonly string[] } { const confined = this.ctx.sandbox.confine(['bash', '-c', command], { mode, workspaceRoot: this.workspaceRoot }) return { command: `exec ${confined.argv.map(shellQuote).join(' ')}`, enforcement: confined.enforcement, denialSignatures: confined.denialSignatures, runnerFailureSignatures: confined.runnerFailureSignatures, } } } export default SandboxBashExecutor