# Bash Executor The bash execution seam is split across interface ([dsh-bash](../../packages/bash/bash), `ctx.bash`), implementations ([dsh-bash-local](../../packages/bash/bash-local) and [dsh-bash-sandbox](../../packages/bash/bash-sandbox)), and consumer ([dsh-tool-bash](../../packages/bash/tool-bash), the `bash` schema). Generic background-task ids, ownership, and controls live in [tasks.md](tasks.md); this seam returns a task-free process handle. Source: [`packages/bash/bash/src/types.ts`](../../packages/bash/bash/src/types.ts) ## Managed shell environment namespace `DSH_*` variables are Harness-owned child-process facts. The model-facing bash tool collects them through `ctx.bashEnv` and passes them through `BashExecRequest.dshEnv`; executors remove inherited `DSH_*` names before merging the current snapshot. ```ts type-equiv /** One environment key inside the managed {@link DSH_ENV_PREFIX} namespace. */ type DshEnvironmentKey = `${typeof DSH_ENV_PREFIX}${string}` ``` ```ts type-equiv /** Trusted DeepSeek Harness variables for one bash execution. */ type DshEnvironment = Readonly> ``` ## Request vs. spec: the `resolve()` split The seam separates the **model-/plugin-facing request** (optional `workdir`/`timeoutMs`/`stdoutMaxBytes`, filled from config or request policy) from the **fully-resolved spec** the executor acts on (those fields required). The tool layer calls `ctx.bash.resolve(request)` between them — this is the repo's "explicit > implicit at package seams" rule made concrete: the reader of a `BashExecSpec` never wonders where the working directory or output budget came from. ```ts type-equiv /** * A caller's execution REQUEST: `workdir` and `timeoutMs` are optional and * filled by {@link BashExecutor.resolve} from the implementation's config. * This is the model-/plugin-facing shape; pass it to `resolve()` to obtain a * fully-resolved {@link BashExecSpec}. */ interface BashExecRequest { command: string /** Working directory override (default: implementation-configured). */ workdir?: string | undefined /** Timeout override in milliseconds (implementations cap it). */ timeoutMs?: number | undefined /** * Foreground stdout capture budget in bytes. Absent uses the executor's * default output cap. Trusted in-process consumers use this when they must * parse complete stdout up to their own bounded limit; the model-facing bash * tool does not expose it as a parameter. */ stdoutMaxBytes?: number | undefined /** Abort signal — implementations kill the command when it fires. */ signal?: AbortSignal | undefined /** * Bytes to write to the command's stdin, then close it. Absent leaves stdin * closed/empty (the default for model-driven tool calls). Set by in-process * plugins (e.g. the hooks bridges, which write a hook command's JSON payload * to its stdin); the model-facing bash tool does not expose it as a parameter * (a model that needs stdin uses shell syntax like a heredoc or a pipe). */ stdin?: string | undefined /** * Ordinary environment entries for the command, merged after the credential * scrub. `DSH_*` is reserved for {@link dshEnv} and implementations reject it * here. Set by in-process plugins (the hooks bridges set * `CLAUDE_PROJECT_DIR`, `CLAUDE_PLUGIN_ROOT`, …); the model-facing bash tool * does not expose it as a parameter. */ env?: Record | undefined /** * Harness-owned `DSH_*` variables for this execution. Executors discard * ambient `DSH_*` entries before merging this snapshot, so an unavailable * current fact cannot inherit a stale value from the harness process, and * reject non-`DSH_*` names supplied through this managed channel. */ dshEnv?: DshEnvironment | undefined /** Fully resolved per-call sandbox policy; sandboxing executors default it. */ sandboxPolicy?: SandboxExecutionPolicy | undefined } ``` ```ts type-equiv /** * A resolved execution spec. {@link BashExecutor.resolve} fills and caps the * required fields; {@link BashExecutor.start} ignores `timeoutMs` because * background processes have no executor timeout. */ interface BashExecSpec { command: string workdir: string timeoutMs: number /** * Resolved foreground stdout capture budget in bytes. `run()` uses it for * stdout; background tasks and stderr keep the executor's own output cap. */ stdoutMaxBytes: number /** Abort signal — implementations kill the command when it fires. */ signal?: AbortSignal | undefined /** Bytes to write to stdin before closing it; absent means no stdin. */ stdin?: string | undefined /** * Ordinary environment entries carried through from * {@link BashExecRequest.env}. `DSH_*` remains reserved for {@link dshEnv}. * OPTIONAL on the spec for the same reason as `stdin`: absent means no * ordinary extra environment. */ env?: Record | undefined /** Managed `DSH_*` snapshot; implementations reject ordinary names. */ dshEnv?: DshEnvironment | undefined /** Resolved sandbox policy; ignored by executors that do not confine. */ sandboxPolicy: SandboxExecutionPolicy | undefined } ``` `stdin` and `env` are trusted in-process plugin inputs and are not exposed by `dsh-tool-bash`. The local executor scrubs ambient credentials before merging explicit caller-supplied env. See [the bash-stdin-env Agent Note](../../.agents/notes/implemented/architecture/2026-06-30-bash-stdin-env-trusted-plugin-surface.md). `stdoutMaxBytes` is also trusted-plugin-only. It lets a foreground consumer request complete stdout up to a bounded parser budget without changing stderr, background tasks, or the model-facing bash tool's ordinary output cap. ## Foreground runs: `BashRunResult` The outcome of one completed (or killed) foreground run. Orthogonal outcomes are reported **independently** — a process can both time out AND exit 0 because it trapped the signal — so `timedOut`, `aborted`, `signal`, and `exitCode` are each their own field; a caller never reads a cut-short run as a clean success. ```ts type-equiv /** The outcome of one completed (or killed) foreground run. */ interface BashRunResult { /** Exit code; null when the process died from a signal. */ exitCode: number | null /** Terminating signal (e.g. 'SIGTERM'); null on normal exit. */ signal: NodeJS.Signals | null /** * True when the executor's own timeout was the FIRST cause to cut the command * short. Mutually exclusive with {@link aborted}: one fused deadline drives * both the timeout and the caller's cancellation, so a timeout and an abort * racing before process close report the single first-abort cause, not both * (see the [timeout-library Agent Note](../../../../.agents/notes/implemented/architecture/2026-07-06-timeout-deadline-library.md)). */ timedOut: boolean /** * True when the caller's `AbortSignal` was the FIRST cause to kill the command * (and it was not the executor's own timeout). Mutually exclusive with * {@link timedOut} — see there for the first-cause classification. */ aborted: boolean /** The effective timeout applied to this run (after defaulting/capping). */ timeoutMs: number stdout: CollectedOutput stderr: CollectedOutput /** Sandbox execution facts, absent for an unsandboxed executor. */ sandbox?: BashSandboxInfo } ``` Each stream is a `CollectedOutput` — the (possibly truncated) text plus recovery info. When truncated, `text` is the **tail** and the complete stream spills to a private file: ```ts type-equiv /** One captured stream: the (possibly truncated) text plus recovery info. */ interface CollectedOutput { /** Collected text — the TAIL of the stream when truncated. */ text: string /** True when bytes were dropped from `text`. */ truncated: boolean /** Path to a file holding the COMPLETE stream, when truncated and available. */ spillPath?: string } ``` ## File sandbox: `BashSandboxInfo` A sandbox-consuming executor exposes its configured mode fallback through `BashExecutor.sandboxMode`. The tool layer asks [`@deepseek-ai/dsh-sandbox-policy`](../../packages/sandbox/sandbox-policy/README.md) to resolve each calling session's durable `sandbox/mode` override and immutable cwd into `BashExecRequest.sandboxPolicy`; a user-approved strictly wider call replaces only the mode. The mode/root/enforcement vocabulary is owned by the [`@deepseek-ai/dsh-sandbox` seam](sandbox.md); modes govern file effects only. A sandboxed run reports its mode, conservative denial classification, and enforcement completeness. `runnerFailed` marks a sandbox runner failure before the command ran; foreground execution throws `SANDBOX_UNAVAILABLE`, while a settled background process has only its facts channel. ```ts type-equiv /** * Sandbox facts for one run, present iff a sandboxing executor handled it. * Facts are reported independently of process exit status so callers can * distinguish command failures from policy denials and runner failures. */ interface BashSandboxInfo { /** The mode the command actually ran under. */ mode: SandboxMode /** Whether the sandbox denied a file operation. */ denied: boolean /** How completely the selected runner enforced the requested mode. */ enforcement?: SandboxEnforcement /** Whether the sandbox runner failed before the command could run. */ runnerFailed?: boolean } ``` One more piece completes the vocabulary: the `SANDBOX_UNAVAILABLE` error code (owned by the [sandbox seam](sandbox.md)) is what the `ctx.sandbox` provider throws — and the executor propagates — when a confined mode has no usable backend. A selected runner refusing its profile reaches the same fail-closed foreground error; a settled background task records `runnerFailed`. The model receives denial/runner facts in results, learns the effective mode only when a denial marker names it, and can request a one-shot strictly wider retry through `sandbox_permissions` plus `justification`; `ctx.approval` must grant that exact call before anything executes. The complete policy and switching design is the [sandbox Agent Note](../../.agents/notes/implemented/feature/2026-07-06-sandbox.md). ## Background processes: `BashProcess` `start()` returns a handle with no id or owner. `dsh-tool-bash` adapts it into `ctx.tasks.start()` hooks; the generic runtime then owns task identity and lifecycle. `done` resolves when the process closes and never rejects, reads remain valid after settlement, and sandbox facts are stamped before `done` resolves. ```ts type-equiv /** * A background process handle returned by {@link BashExecutor.start}. It is the * only access path; buffered output remains readable after exit. Executor * disposal kills running processes and awaits {@link done}. */ interface BashProcess { /** Process lifecycle state (settled exactly once). */ status: BashProcessStatus /** Exit code once finished (null = killed by signal / still running). */ exitCode: number | null /** Terminating signal name, when signal-killed. */ signal: NodeJS.Signals | null /** Resolves when the underlying process closes (never rejects — a spawn failure settles as `killed` with the error on stderr). */ readonly done: Promise /** Sandbox facts, stamped once a confined process settles. */ sandbox?: BashSandboxInfo /** * Read output produced since the previous read (consuming — consecutive * reads never re-deliver). Reads that lost data flag `lossy` and point at * full-stream spill files when available. */ readOutput(): BashProcessRead /** * Kill the process group. Returns false when it had already finished * (no-op); idempotent. */ kill(): boolean } ``` `readOutput()` returns the incremental delta and spill recovery facts: ```ts type-equiv /** One incremental {@link BashProcess.readOutput} read. */ interface BashProcessRead { /** Output produced since the previous read (stderr in a marked section). */ delta: string /** True when truncation dropped unread bytes the delta cannot include. */ lossy: boolean /** Full stdout spill file, when stdout truncation occurred and a safe path is available. */ stdoutSpillPath?: string /** Full stderr spill file, when stderr truncation occurred and a safe path is available. */ stderrSpillPath?: string } ``` ## The service `BashExecutor` owns `resolve`, foreground `run`, background-process `start`, and the `sandboxMode` capability fact. `dsh-bash-local` owns process groups, timeout/abort handling, bounded collectors, spill files, credential scrubbing, and disposal quiescence. `dsh-tool-bash` owns model-facing rendering and adapts background handles into the [generic task runtime](tasks.md).