deepseek-harness/packages/core/tools/README.md

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Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
# dsh-tools
2026-07-26 05:03:53 +08:00
English | [中文](README.zh.md)
Tool registry and execution pipeline. Tool plugins register their schemas and executors; the agent loop executes each call through `tools/pre-execute` (the extensible allow/deny gate) → monotonic registered guards → `tools/execute` (an around-dispatch wrapper for timeout/retry/metrics plugins) → `tools/post-execute` (inspect/replace the result, attach context) → the definition-owned `finalizeContent` boundary → the observe-only `tools/result` notification. The registry also owns HOW its tools are presented to the model — its `mode` config selects native function calling, [Code Mode](#code-mode), or both, and one agent shadows that default for itself with `presentAs`.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
## Service: `ToolRegistry` (ctx key: `tools`)
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
2026-07-08 12:58:23 +08:00
### Config
```yaml
tools:
mode: native # native (default) | code | both
```
`native` contributes visible tools as function definitions. `code` contributes the reserved `run_code` transport and generated `tools:sdk` section; `both` contributes both forms. This is the default for agents that declare none of their own — an agent preset selects its own with [`dsh-agent-tool-mode`](../agent-tool-mode/README.md). The reserved transport cannot be registered, shadowed, restricted, or removed, and its name is reserved whatever the configured mode, because any agent may select a code mode. Non-native modes require a `ctx.codeRuntime` whose `language` has a registered SDK renderer — TypeScript ships via [`dsh-code-runtime-worker`](../../code-runtime/code-runtime-worker/README.md); a Python renderer is built in and drives any runtime that reports `language: 'python'` (a first-party `dsh-code-runtime-python` backend is delivered separately). A runtime language with no renderer fails prompt assembly loudly, and a `systemPrompt.toolOrder` entry for a tool the mode does not contribute rejects prompt assembly. A `system-prompt/assemble` listener may replace the registry's contributions; its returned assembly is authoritative, so that listener owns preserving a usable Code Mode protocol.
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
2026-07-08 12:58:23 +08:00
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Public API
- `ctx.tools.register(definition: ToolDefinition): () => void` Register a trusted typed same-process definition with a mandatory canonical `output` declaration. The layer is the calling context's scope: a plain plugin context registers globally; an agent's `agent.ctx` registers for that agent alone, shadowing a same-named global tool there. Duplicate names within one layer throw; non-native modes also reject the reserved `run_code` transport name. Missing or unsupported output declarations and a non-positive or non-finite `timeoutMs` fail at registration. The optional synchronous `finalizeContent` callback is snapshotted when a call starts and may replace only final model-facing content after every pipeline outcome is normalized, including an error discovered while materializing another result field. Disposed with the calling fiber.
- `ctx.tools.presentAs(mode: ToolPresentationMode): () => void` selects this agent's model-facing presentation, shadowing the `mode` config for that agent alone; it throws from a plain context (a process-wide presentation is the config field) and from a second declaration in the same scope. A code mode also registers that agent's own `tools:sdk` section. The catalog is unchanged — `schemas(agent)` still reports the agent's capabilities; only the assembly's tools collapse. Disposed with the calling fiber.
fix(tools): restrict what a scope inherits, not just the global layer A restriction was compiled against the global tool layer alone: only global-layer tools were tested against `admits()`, and every chain-layer tool was overlaid unfiltered afterward. That read the exempt set as "the global layer" when what it means is "what this scope registers itself" — two descriptions of the same set only while every model-facing tool sat in the host composition. Moving those rows onto the agent plane separated them. A preset's tools are an ANCESTOR contribution to a joined agent, so a subagent's `toolFilter` stopped constraining anything it was given; and with the global layer empty `restrict()` rejected every name it received as unknown, failing the child outright. With the same tools in the global layer the filter still admits and applies normally, which is what makes this a regression of the move rather than a standing limitation. `view()` now filters everything a scope inherits — the global layer and every ancestor layer on its chain — and exempts only the layer the scope owns. That exemption is load-bearing rather than incidental: the delegation runtime registers a child's `report` and structured-output tools into the child's own layer, and a filter naming the capabilities the child may use must not strip the machinery it answers through. Tool order, and with it prefix-cache reuse, is unchanged: inherited names keep their global-then- ancestor position and own-layer names still come last. The diagnostic said "unknown global tool" while listing what is really the inherited surface; it now names the surface it checks and says why an own-layer name is not restrictable. Fixes #2185
2026-08-10 20:34:45 +08:00
- `ctx.tools.restrict(filter)` applies an agent-scoped allow/deny mask to the tools that scope INHERITS — the global layer and every ancestor scope on its chain — and throws from a plain context. The scope's OWN registrations are exempt and merge afterwards, which is what keeps a delegated child's reporting and structured-output tools alive under a filter naming only the capabilities it may use. The filter is snapshotted at registration; multiple masks intersect, and a mask on an ancestor reaches every scope nested inside it. Deny masks admit later unnamed inherited tools, while allow masks exclude later names. Unknown, own-layer, or reserved names and empty filters reject. This is live visibility composition, not an authority boundary; see the [scope security non-goal](../../../.agents/notes/implemented/architecture/2026-07-08-agent-scope-contexts.md#security-and-authority-are-non-goals).
- `ctx.tools.get(name: string, scope?: ScopeKey): ToolDefinition | undefined` Resolution as one scope sees it (shadowing applied; a restricted-away global reads as absent) — presenters pass the calling agent so the card matches what executed.
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- `ctx.tools.schemas(scope?: ScopeKey): ToolSchema[]` Schemas of everything the scope can see (without the `execute` functions). The shipped tools' schemas are catalogued in [docs/tool-catalog.md](../../../docs/tool-catalog.md), generated by booting each tool plugin and harvesting this method (see [the tool-schema-catalog Agent Note](../../../.agents/notes/implemented/process/2026-07-02-tool-schema-catalog.md)).
- `ctx.tools.guard(guard: ToolGuard): () => void` Register a monotonic synchronous execution guard after `tools/pre-execute`: returning a reason denies the call, while `undefined` leaves it unchanged. A plain-context guard applies globally; an `agent.ctx` guard applies only to that agent. Later waterfall listeners cannot turn a guard denial back into permission. Disposed with the calling fiber.
- `ctx.tools.execute(exec)` losslessly snapshots and freezes arguments, assigns an opaque token, runs the complete policy/dispatch/result pipeline, then independently snapshots the authoritative outcome before final observation. Invalid arguments use the same result path without reaching policy or the body. Around wrappers may replace only `signal`; the registry re-fuses the original caller signal immediately before the body.
2026-07-18 14:59:26 +08:00
- `ctx.tools.executionMode(exec)` returns `parallel` only when the visible definition's `isConcurrencySafe(exec.arguments)` classifier returns exactly `true`; unknown, hidden, undeclared, invalid, or throwing classifications are exclusive.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Injected services
`SystemPrompt` — the registry automatically feeds its tool schemas into the system-prompt assembly via `ctx.systemPrompt.tools()`. The approval seam is consumed opportunistically instead (`ctx.get('approval')`, no static inject): a deployment without it keeps the ask→deny degrade, and the registry stays active either way.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Cancellation
Cancellation is cooperative and quiescent. Every typed invocation supplies a caller-owned `AbortSignal`; tool bodies receive it as required readonly `exec.signal`, while only `tools/execute` wrappers may temporarily replace the required signal. The registry preserves caller cancellation through replacement and never races away from a started same-process promise. Cancellation before body invocation is `ABORTED_BEFORE_DISPATCH`; cancellation after invocation can replace only a successful outcome with `ABORTED`. A denial, wrapper failure, tool failure, post-policy failure, or timeout-owned `TOOL_TIMEOUT` remains more specific. A pre-aborted entry materializes and freezes arguments, then skips every policy and dispatch phase and publishes one result. Every async tool must observe or forward the signal and settle only after owned work stops. The [tool-cancellation Agent Note](../../../.agents/notes/implemented/architecture/2026-07-19-cooperative-tool-cancellation.md) owns the full contract and hard-termination limit.
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### Live events
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
2026-08-09 15:27:21 +08:00
The live registry pipeline has three transformable waterfalls, then the definition-owned content finalizer, then the observe-only `tools/result` event; registry changes are deliberately unfiltered shared-state notifications. Exact signatures, dispatch modes, scope filtering, and failure containment contracts live in the generated region of [tools.md](../../../docs/subsystems/tools.md#cordis-surface), while the complete ordering is visualized in the generated [tool execution pipeline](../../../docs/tool-execution-pipeline.md). `tools/result` is live; the similarly named `tool/result` is the durable session event the agent loop appends afterwards.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Key types
- `ToolDefinition` — `ToolSchema` + mandatory `output { schema, render, presentationMeta? }` + `execute(args, exec)`, optional final-content and presentation callbacks, cooperative `timeoutMs`, and optional per-call `isConcurrencySafe(args)` classification. A body returns only the canonical JSON value declared by the output schema and cooperatively stops through `exec.signal`. `finalizeContent(exec, result)` runs exactly once for every normalized result, including failures that bypass post-policy, and can replace only `content`; it must be synchronous and total.
- `ToolExecutionInput` — the caller-supplied call description: `{ callId, name, arguments, signal, agent?, parent? }`; `signal` is required and readonly, callers may pass an enclosing execution's opaque token as `parent`, and callers never choose the new execution's own token.
- `ToolExecutionToken` — a fresh branded `Symbol` assigned by the registry. It supports equality correlation only and never crosses a model, log, or worker boundary.
- `ToolExecution` — the readonly pipeline view: immutable `{ token, callId, name, arguments, signal, agent?, parent? }`; the registry separately retains and re-fuses the original caller signal. `ToolDispatchExecution` is the `tools/execute`-only view whose required signal is mutable, so a wrapper may replace and restore it but cannot delete it. A nested call's `parent` is a `ToolExecutionToken`, not an execution object.
- `ToolRunContext` — the execution passed to a tool body, extending `ToolExecution` with `deferContext(context)`. It defers one context until the tool's final result reaches the loop — typically a nested-dispatch context ferried by a composite tool, or a fresh plugin-sourced instruction minted by a leaf tool (`tool-goal`'s wrap-up) — even when the tool later throws or cancellation wins; it never injects immediately.
- `ToolExecutionResult` — discriminated execution-local outcome. Success is `{ isError:false, value:JsonValue, content, meta?, additionalContexts? }`; failure is `{ isError:true, error:{ message, info? }, content, meta?, additionalContexts? }` and has no value. Call identity stays on the immutable `ToolExecution`. The registry snapshots, validates, and freezes the canonical value before rendering, then materializes the durable presentation fields before final observation. `ToolFailure.info` carries an internal `{ name, code }` for a `HarnessError`; `additionalContexts` preserves every deferred or post-execute identified `UserMessage` for the loop's post-result FIFO.
- `PreToolDecision` — `{kind:'allow'}` | `{kind:'deny', reason}` | `{kind:'ask', reason?}`. Input rewrite is deliberately not offered; `ask` is serviced by [`ctx.approval`](../../interaction/user-approval/README.md) when mounted and otherwise degrades to deny.
2026-07-21 03:08:35 +08:00
- `PostToolDecision` — accept may replace `content` or `value`, never both, and may attach `additionalContexts`; block turns feedback into a valueless failure. Content replacement preserves the canonical value and metadata. Value replacement is revalidated and rerenders content/metadata. Accept preserves tool-deferred contexts before decision contexts; block discards tool-deferred contexts and exposes only contexts explicitly supplied by the blocking decision.
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- `ToolGuard` — `(execution) => string | undefined`; the returned string is a final monotonic denial reason evaluated after the reorderable pre-execute waterfall and before dispatch.
- `ToolCallView` / `ToolResultView` — provider-neutral `card`-tagged render intents a tool returns from `presentCall` / `presentResult` to own how a UI renders ITS calls (see "Tool-owned UI presentation").
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Extension points
- Tool plugins call `ctx.tools.register()` — schemas flow into the assembly automatically.
- `tools/pre-execute` is the reorderable allow/deny/ask gate; `ctx.tools.guard()` adds monotonic owner policy after it.
- `tools/execute` wraps normalized canonical dispatch for timeout, retry, or metrics. Wrappers may replace only the operational signal; a wrapper-authored success is normalized through the resolved tool's output declaration. Each canonical result belongs to one immutable dispatch token, so a cached result from another call or tool is revalidated under the active declaration.
- `tools/post-execute` may replace presentation content, replace the canonical value, block with feedback, or attach ordered contexts. A definition's optional `finalizeContent` then owns its last content-only invariant across normal results and outer pipeline failures; `tools/result` observes the immutable final outcome. Content replacement is not a confidentiality boundary: block or replace the value when programmatic consumers must not receive it.
- Exact signatures and ordering live in the generated region of [tools.md](../../../docs/subsystems/tools.md#cordis-surface) and [pipeline](../../../docs/tool-execution-pipeline.md).
- MCP servers: one plugin per server, discover tools, call `ctx.tools.register()` with the server's schemas.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
### Typed tool parameter schemas
First-party plugin authors can use the `defineTool()` helper (exported from this package) for typed tool parameter schemas:
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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```ts
import { readFile } from 'node:fs/promises'
build(vendor): rescope the vendored Cordis packages into @deepseek-ai Machine-produced by `pnpm run rescope-vendor --apply` plus the regeneration it prints: `pnpm install` for the lockfile, `pnpm run gen-third-party-notices`, `verify-translation-pairing --write` for the touched bilingual pairs, `gen-doc-graphs`, and one typert snapshot whose ids embed character offsets. `pnpm run rescope-vendor --check` verifies the result. Renames nine vendored packages (cordis, cosmokit, schemastery and the six @cordisjs plugins) and every reference that resolves them: manifest names and dependency keys, module specifiers including declare-module merges, cordis.yml plugin names, tsconfig paths, every Markdown fence, and `docs/` prose. Directory names, upstream versions, and dependency ranges are unchanged, so vendor/README.md still reads as an upstream snapshot; its manifest table gains an upstream-name column so THIRD_PARTY_NOTICES keeps MIT attribution pointed at each fork's origin. The tutorial tier follows the rename end to end: its yaml fences named plugins the Loader can no longer resolve, its `ts ignore-check` fences disagreed with the compiled fences beside them, and its prose quoted both. The contracts that told readers to keep upstream names — the root convention and the vendoring cookbook's tree comment and manifest invariant — now say to rescope instead. Two rules read `@deepseek-ai/` as "another workspace plugin": the client bundle purity gate now names the vendored libraries a browser bundle inlines, and the files where a bare `cordis` is an agent-preset id keep that product data.
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import type { Context } from '@deepseek-ai/cordis'
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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import { defineTool } from '@deepseek-ai/dsh-tools'
declare const ctx: Context
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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ctx.tools.register(defineTool({
name: 'read_file',
description: 'Read a file from disk.',
parameters: {
path: { type: 'string', required: true, description: 'Absolute file path' },
offset: { type: 'number' },
limit: { type: 'number' },
},
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output: {
schema: { type: 'string' },
render: (_args, value) => [{ type: 'text', text: value }],
},
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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async execute(args, exec) {
// args is typed: { path: string; offset?: number; limit?: number }
return readFile(args.path, { encoding: 'utf8', signal: exec.signal })
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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},
}))
```
The unified schema DSL uses `ParameterSchemaSpec` for the implicit open parameter object and `ValueSchemaSpec` for any JSON-value root. It supports `string`, `number`, `integer`, `boolean`, `null`, `array`, `object`, author-only `json`, and exact-one `oneOf`; scalar `enum`/`const` values are type-correct. Every explicit DSL object declares `additionalProperties: true | false`, while the implicit parameter root and raw JSON Schema keep the standard open default. Schema records accept only own enumerable string keys, and schema arrays must be dense ordinary arrays. Compilation, validation, registry detachment, and schema-to-TypeScript rendering use explicit work stacks, so runtime processing of valid deep schemas is memory-bounded rather than call-stack-bounded; `InferValue` preserves exact types through 16 container levels and then falls back to `JsonValue` so TypeScript itself remains stack-safe.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
A `defineTool` definition validates model arguments before execution and turns missing required values, wrong primitives, invalid enum members, and nested violations into `ToolArgsError` (`INVALID_ARGS`) for the normal error-result path. It also infers the body return and pure output projectors from `output.schema`; the registry snapshots and validates the returned lossless JSON before presentation. The implicit parameter root is open; an explicit object accepts extra keys only with `additionalProperties: true`, and a closed object with no declared properties accepts only `{}`. Raw JSON Schema objects remain open unless they explicitly set `additionalProperties: false`. Defaults are not applied; open objects without `properties` and arrays without `items` receive only a container type check. Raw-registered tools own input validation but still declare and receive registry-enforced output.
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See `defineTool`, `validateArgs`, `ToolArgsError`, `ValueSchemaSpec`, `ParameterSchemaSpec`, `InferValue`, `InferArgs`, `valueSchemaSpecToJsonSchema`, and `parameterSchemaSpecToJsonSchema` in the public API for details.
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
2026-06-11 12:39:27 +08:00
Optional `timeoutMs` must be positive and finite; it is policy metadata, not model-visible schema.
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Optional `isConcurrencySafe(args)` receives typed, softly validated arguments. Exact `true` permits concurrent dispatch/body execution; invalid input and all other outcomes remain exclusive. Opted-in bodies do not mutate parent-owned state, and shared-state races must commute or fail closed. The [parallel tool-call Agent Note](../../../.agents/notes/implemented/feature/2026-07-10-parallel-tool-call-execution.md) owns the full safety contract.
2026-07-21 01:11:55 +08:00
### Enforced raw JSON Schema subset
Structured output on the subagent seam: schema subset, capture runtime, spawn/fork support Carved out of #170 per review feedback — the foundation the workflow tool builds on, now standing alone on master: - dsh-tools: the structured-output JSON Schema subset (StructuredOutputSchema, assertSupportedOutputSchema, validateStructuredValue) — rejects loud outside the enforced subset, listing every violation - dsh-subagent: SubagentStartRequest.outputSchema / SubagentResult.structured become a real capability; the service rejects a schema'd request whose provider lacks it - dsh-subagent-inprocess: the shared structured runtime — one global structured_output capture tool, a prepend final-assembly listener that strips the placeholder for plain agents and swaps in the run's own schema (plus the calling instruction as a trailing section) for structured children, an agent/turn-continuation veto once captured, and the capture/nudge loop in the run driver (structuredNudgeRetries, cancellation honored mid-nudge); lifetime refcounted by backends and live runs - subagent-spawn / subagent-fork flip outputSchema: true One deliberate divergence from the #170 revision: the backends do NOT add 'tools' to their plugin inject. Doing so deferred their apply past the todo plugin, and the delegation tool mirrors provider lifecycle — so the model-visible tool order of every existing prompt changed, invalidating every recorded snapshot fixture. The runtime now gates its capture-tool registration on tools availability itself (sync when live, a scoped inject fiber when the Loader starts the backend first), keeping this PR byte-invisible to existing transcripts: all 35 snapshot scenarios pass against master's fixtures unchanged.
2026-07-06 23:29:08 +08:00
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`JsonSchemaNode` is the raw counterpart shared by tool outputs, Code Mode generation, subagents, and workflows. It permits any JSON root, an annotation-only unconstrained JSON node, and exact-one `oneOf`; annotations must remain lossless JSON. `assertSupportedJsonSchema()` rejects unsupported constructs, while `validateJsonSchemaValue()` returns path-qualified violations. Subagents and workflows retain their caller-defined object-root requirement through `assertObjectJsonSchema()` and `ObjectJsonSchema`, not through a limitation in the shared vocabulary.
Structured output on the subagent seam: schema subset, capture runtime, spawn/fork support Carved out of #170 per review feedback — the foundation the workflow tool builds on, now standing alone on master: - dsh-tools: the structured-output JSON Schema subset (StructuredOutputSchema, assertSupportedOutputSchema, validateStructuredValue) — rejects loud outside the enforced subset, listing every violation - dsh-subagent: SubagentStartRequest.outputSchema / SubagentResult.structured become a real capability; the service rejects a schema'd request whose provider lacks it - dsh-subagent-inprocess: the shared structured runtime — one global structured_output capture tool, a prepend final-assembly listener that strips the placeholder for plain agents and swaps in the run's own schema (plus the calling instruction as a trailing section) for structured children, an agent/turn-continuation veto once captured, and the capture/nudge loop in the run driver (structuredNudgeRetries, cancellation honored mid-nudge); lifetime refcounted by backends and live runs - subagent-spawn / subagent-fork flip outputSchema: true One deliberate divergence from the #170 revision: the backends do NOT add 'tools' to their plugin inject. Doing so deferred their apply past the todo plugin, and the delegation tool mirrors provider lifecycle — so the model-visible tool order of every existing prompt changed, invalidating every recorded snapshot fixture. The runtime now gates its capture-tool registration on tools availability itself (sync when live, a scoped inject fiber when the Loader starts the backend first), keeping this PR byte-invisible to existing transcripts: all 35 snapshot scenarios pass against master's fixtures unchanged.
2026-07-06 23:29:08 +08:00
feat(acp): tool-owned tool-call UI presentation (title/command/output) In Zed the tool-call card showed only "bash" — the bare tool name — instead of what the command does. Fix it by letting each TOOL own how its calls render, rather than the bridge special-casing names. dsh-tools: add an optional two-state presentation seam to ToolDefinition / defineTool — `presentCall(args)` (pending: title, kind, rawInput) and `presentResult(args, result)` (completed: title?, content?). Provider-neutral `ToolCallKind`/`ToolCallPresentation`/`ToolResultPresentation` vocabulary so tools never depend on ACP. defineTool soft-validates args (display runs on log replay, so a malformed/old shape returns undefined instead of throwing). dsh-tool-bash: bash declares presentCall (model `description` → title, exact `command` → rawInput, kind execute) and presentResult (wrap output in a fenced ```console block — a UI-only affordance kept out of the model-facing result); bash_output/bash_kill present task-scoped titles. dsh-acp: inject `tools`; a per-session `ToolPresenter` looks the tool up by name and maps its neutral presentation to the ACP tool_call/tool_call_update wire shape, with a generic fallback (title = name) for tools that declare nothing. Because the `tool/result` event carries only {callId, content, isError}, the presenter keeps a small bridge-local map of ONLY in-flight calls' (name, args), keyed by callId and removed as each result is presented — no event-schema or core change. Replay uses a throwaway presenter so loaded sessions render identically to live ones. Tests: dsh-tools defineTool presenters (typed args, soft-validate), tool-bash bash/bash_output/bash_kill presenters, acp ToolPresenter (tool-owned mapping, unknown-callId fallback, in-flight-only map), and an end-to-end turn through the bridge. The key-gated e2e now asserts a real bash call's title is the model description (not "bash") and rawInput is the command — verified against the real DeepSeek model. The test harness derives its inject from the bridge's exported `inject` so it can't drift again.
2026-06-18 09:01:36 +08:00
### Tool-owned UI presentation
Tools optionally own pure `presentCall()` and `presentResult()` render intents, so UIs do not special-case tool names:
feat(acp): tool-owned tool-call UI presentation (title/command/output) In Zed the tool-call card showed only "bash" — the bare tool name — instead of what the command does. Fix it by letting each TOOL own how its calls render, rather than the bridge special-casing names. dsh-tools: add an optional two-state presentation seam to ToolDefinition / defineTool — `presentCall(args)` (pending: title, kind, rawInput) and `presentResult(args, result)` (completed: title?, content?). Provider-neutral `ToolCallKind`/`ToolCallPresentation`/`ToolResultPresentation` vocabulary so tools never depend on ACP. defineTool soft-validates args (display runs on log replay, so a malformed/old shape returns undefined instead of throwing). dsh-tool-bash: bash declares presentCall (model `description` → title, exact `command` → rawInput, kind execute) and presentResult (wrap output in a fenced ```console block — a UI-only affordance kept out of the model-facing result); bash_output/bash_kill present task-scoped titles. dsh-acp: inject `tools`; a per-session `ToolPresenter` looks the tool up by name and maps its neutral presentation to the ACP tool_call/tool_call_update wire shape, with a generic fallback (title = name) for tools that declare nothing. Because the `tool/result` event carries only {callId, content, isError}, the presenter keeps a small bridge-local map of ONLY in-flight calls' (name, args), keyed by callId and removed as each result is presented — no event-schema or core change. Replay uses a throwaway presenter so loaded sessions render identically to live ones. Tests: dsh-tools defineTool presenters (typed args, soft-validate), tool-bash bash/bash_output/bash_kill presenters, acp ToolPresenter (tool-owned mapping, unknown-callId fallback, in-flight-only map), and an end-to-end turn through the bridge. The key-gated e2e now asserts a real bash call's title is the model description (not "bash") and rawInput is the command — verified against the real DeepSeek model. The test harness derives its inject from the bridge's exported `inject` so it can't drift again.
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- Call views are `{ card: 'generic', title, kind?, rawInput?, content?, locations? }`, `{ card: 'terminal', title, description?, cwd? }`, or `{ card: 'diff', title, diffs, locations? }`.
- Result views are `{ card: 'generic', title?, content? }`, `{ card: 'terminal', title?, output?, exitCode?, signal? }`, `{ card: 'diff', title?, diffs }`, `{ card: 'search', shape, title?, truncated, total, … }` (a completed discovery search — grouped-by-file matches for `shape: 'matches'` (grep) or a flat path list for `shape: 'paths'` (glob), with `truncated`/`total` so a UI never presents a capped result as complete; the view carries no result text and a search has no `card: 'search'` call-time analogue), `{ card: 'read', title?, path, offset, lines, totalLines, lang?, content? }` (a completed file read → a line-numbered, optionally syntax-highlighted code view; `offset` is the 1-based first line the window requested, kept even when `lines` is empty; `lines` is `{ number, text }[]` keeping each file line number, and `content` is the envelope-stripped text a UI without read support falls back to), or `{ card: 'web', kind: 'search' | 'fetch', title?, … }` (a completed web retrieval; the `kind` arms carry the structured search sources or the fetch summary, and a UI without the `web` capability falls back to the raw result content).
feat(acp): tool-owned tool-call UI presentation (title/command/output) In Zed the tool-call card showed only "bash" — the bare tool name — instead of what the command does. Fix it by letting each TOOL own how its calls render, rather than the bridge special-casing names. dsh-tools: add an optional two-state presentation seam to ToolDefinition / defineTool — `presentCall(args)` (pending: title, kind, rawInput) and `presentResult(args, result)` (completed: title?, content?). Provider-neutral `ToolCallKind`/`ToolCallPresentation`/`ToolResultPresentation` vocabulary so tools never depend on ACP. defineTool soft-validates args (display runs on log replay, so a malformed/old shape returns undefined instead of throwing). dsh-tool-bash: bash declares presentCall (model `description` → title, exact `command` → rawInput, kind execute) and presentResult (wrap output in a fenced ```console block — a UI-only affordance kept out of the model-facing result); bash_output/bash_kill present task-scoped titles. dsh-acp: inject `tools`; a per-session `ToolPresenter` looks the tool up by name and maps its neutral presentation to the ACP tool_call/tool_call_update wire shape, with a generic fallback (title = name) for tools that declare nothing. Because the `tool/result` event carries only {callId, content, isError}, the presenter keeps a small bridge-local map of ONLY in-flight calls' (name, args), keyed by callId and removed as each result is presented — no event-schema or core change. Replay uses a throwaway presenter so loaded sessions render identically to live ones. Tests: dsh-tools defineTool presenters (typed args, soft-validate), tool-bash bash/bash_output/bash_kill presenters, acp ToolPresenter (tool-owned mapping, unknown-callId fallback, in-flight-only map), and an end-to-end turn through the bridge. The key-gated e2e now asserts a real bash call's title is the model description (not "bash") and rawInput is the command — verified against the real DeepSeek model. The test harness derives its inject from the bridge's exported `inject` so it can't drift again.
2026-06-18 09:01:36 +08:00
2026-07-21 03:08:35 +08:00
Returning `undefined` selects generic fallback. Presenters depend only on their arguments and the durable result because UIs call them during live streaming and log replay. `output.presentationMeta(args, value)` derives JSON metadata for direct surface calls; that metadata persists with `tool/result` and returns to `presentResult`, while the canonical value itself remains execution-local and is never replayed. Nested Code dispatches do not compute metadata. `defineTool` soft-validates older logged arguments and falls back instead of crashing replay. `dsh-tool-bash` and `dsh-tool-fs` are the reference implementations; the [canonical-output Agent Note](../../../.agents/notes/implemented/architecture/2026-07-20-canonical-tool-output-contract.md) owns the value/presentation split and the [render-intent Agent Note](../../../.agents/notes/implemented/architecture/2026-07-02-tool-render-intent-union.md) owns card vocabulary.
feat(acp): tool-owned tool-call UI presentation (title/command/output) In Zed the tool-call card showed only "bash" — the bare tool name — instead of what the command does. Fix it by letting each TOOL own how its calls render, rather than the bridge special-casing names. dsh-tools: add an optional two-state presentation seam to ToolDefinition / defineTool — `presentCall(args)` (pending: title, kind, rawInput) and `presentResult(args, result)` (completed: title?, content?). Provider-neutral `ToolCallKind`/`ToolCallPresentation`/`ToolResultPresentation` vocabulary so tools never depend on ACP. defineTool soft-validates args (display runs on log replay, so a malformed/old shape returns undefined instead of throwing). dsh-tool-bash: bash declares presentCall (model `description` → title, exact `command` → rawInput, kind execute) and presentResult (wrap output in a fenced ```console block — a UI-only affordance kept out of the model-facing result); bash_output/bash_kill present task-scoped titles. dsh-acp: inject `tools`; a per-session `ToolPresenter` looks the tool up by name and maps its neutral presentation to the ACP tool_call/tool_call_update wire shape, with a generic fallback (title = name) for tools that declare nothing. Because the `tool/result` event carries only {callId, content, isError}, the presenter keeps a small bridge-local map of ONLY in-flight calls' (name, args), keyed by callId and removed as each result is presented — no event-schema or core change. Replay uses a throwaway presenter so loaded sessions render identically to live ones. Tests: dsh-tools defineTool presenters (typed args, soft-validate), tool-bash bash/bash_output/bash_kill presenters, acp ToolPresenter (tool-owned mapping, unknown-callId fallback, in-flight-only map), and an end-to-end turn through the bridge. The key-gated e2e now asserts a real bash call's title is the model description (not "bash") and rawInput is the command — verified against the real DeepSeek model. The test harness derives its inject from the bridge's exported `inject` so it can't drift again.
2026-06-18 09:01:36 +08:00
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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### Code Mode
Under `code` or `both`, the registry exposes the reserved `run_code` transport and a deterministic SDK for the current scope, generated in the loaded runtime's language — the registry selects the renderer by `ctx.codeRuntime.language` (`typescript` → the TypeScript SDK below, `python` → the Python SDK). Only the program's outer logs and return value re-enter model context. The SDK declares exact per-tool argument and canonical-output types for every visible tool (`ToolArgsMap`/`ToolOutputMap` in TypeScript, named `TypedDict`s in Python), and each binding resolves to the tool's canonical JSON value. Each lossless-JSON binding call re-enters the complete tool pipeline under the native scheduling contract (concurrency-safe calls may overlap up to `maxParallelSubCalls`; exclusive calls run alone as ordering barriers) with logged correlation to the outer call. Denials and other failed results reject with the real program-visible `ToolCallError` carrying only `toolName` and `message`; Native content and internal error codes stay outside the Code contract. Ordinary side effects are not rolled back, and sub-call `additionalContexts` are deferred through the parent result to preserve call/result adjacency. Run settlement aborts and drains outstanding bindings; runtime failures surface as `CodeRunFailedError`. See the [Code Mode foundation](../../../.agents/notes/implemented/feature/2026-06-15-code-mode.md), [typed-return contract](../../../.agents/notes/implemented/feature/2026-07-20-code-mode-typed-tool-returns.md), and [code-runtime seam](../../code-runtime/README.md). Try `pnpm run demo:code-mode`.
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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- **The SDK section** (`tools:sdk`, order 150): a lazy prompt section regenerating the language-appropriate SDK text at each assembly. In the TypeScript flavor it emits `JsonValue`, exact `ToolArgsMap` / `ToolOutputMap`, `ToolName`, the `ToolCallError` declaration, and a mapped `tools` namespace for the calling scope's visible end capabilities (exotic names via quoted keys), plus fixed usage instructions; the Python flavor (`ctx.codeRuntime.language === 'python'`) emits the equivalent named `TypedDict`s and a `tools` object with matching usage instructions. Deterministic — lexicographic tool order, byte-identical text for an unchanged tool set (prefix-cache-friendly). Both codegens are exported and never throw during prompt assembly: `jsonSchemaToTs` handles every unified schema construct and degrades unsupported raw constructs to `unknown`; `jsonSchemaToPy` does the same, degrading to `Any` (and a whole object to `dict[str, Any]` when a field name is not a legal `TypedDict` attribute, or whenever it is called outside the SDK render, which supplies the naming context a `TypedDict` declaration needs).
- **The dispatch bridge** (`run_code`'s execute): every binding call is snapshotted as lossless JSON before dispatch (`undefined`, `BigInt`, cycles, sparse arrays, `-0`, and exotic objects reject that one call), scheduled through a per-run pool that reuses the native concurrency contract — calls start strictly in submission order, consecutive `isConcurrencySafe` calls overlap up to the validated `maxParallelSubCalls` config (default 10; `1` restores serial dispatch), and an exclusive-classified call drains the pool, runs alone, and bars later calls — given the outer execution's opaque token as `parent`, and run through the complete pre-execute → guards → execute → post-execute → result pipeline. A success returns the final canonical value after policy; a failure reaches the worker as one message and becomes `ToolCallError(toolName, message)`. Each started sub-call logs a `tool/code-dispatch-start` event (deterministic id `<parent>:code:<n>`, numbered by submission) at pipeline entry and settles with one `tool/code-dispatch` event carrying the complete model-facing `content`/`isError` outcome (the `tool/result` vocabulary, so UIs render sub-calls through the native path — the pair's `time` fields carry per-sub-call timing); a queued call abandoned by run settlement logs neither. `deriveMessages()` surfaces neither event nor persists the canonical value. Token correlation lets commit-style observers defer an inner success until the final `run_code` result without exposing the live outer execution; ordinary tool side effects are not rolled back. Every sub-call `additionalContexts` entry is deferred through the outer `ToolRunContext` in dispatch order; the loop appends those contexts only after the parent `run_code` result, preserving adjacency and retaining each source/meta even when the program later fails.
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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- **Settlement discipline**: the bridge owns a run-scoped abort that follows the outer signal in and fires when the run settles for any reason, so a budget expiry aborts an in-flight sub-tool instead of orphaning it; the bridge then drains its queue BEFORE returning, so every `tool/code-dispatch` lands inside the open turn. A failed run throws `CodeRunFailedError` (`code: 'CODE_RUN_FAILED'`, message = the failure kind + captured logs), which the pipeline converts to a structured `isError` the model self-corrects from.
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- **Result size**: intermediate binding values cross the worker process whole and have no per-binding byte cap. `run_code` returns canonical `{ logs: string[], result?: JsonValue }`; strings render raw, every other present JSON root renders through a stack-safe pretty JSON traversal whose total indentation is capped at ten characters (deeper subtrees stay compact), `null` remains explicit, and absent `result` means the program returned `undefined`. The worker's configurable `maxOutputBytes` (default 64 MiB) applies only to the combined serialized outer log-array, completion-value, or failure-message payloads; fixed result-envelope syntax and presentation whitespace are outside that limit. Invalid and over-limit completions fail explicitly, and only this outer result is eligible for ordinary spill.
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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### Parallel execution
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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The agent loop groups consecutive `parallel` calls into a bounded rolling pool and treats each `exclusive` call as an ordering barrier. Only dispatch/body overlaps; policy, durable results, and context retain model order. Code Mode bindings reuse the same classification through the bridge's own pool. The [parallel tool-call Agent Note](../../../.agents/notes/implemented/feature/2026-07-10-parallel-tool-call-execution.md) owns the shipped declarations and rationale.
feat: Code Mode — the registry's mode config, the SDK codegen, and the run_code bridge The dsh-tools half of the Code Mode RFC (its fourth, final change): the registry gains its first config — mode: native | code | both — and OWNS how its tools reach the model. 'code' contributes exactly one wire tool, run_code, plus a lazy tools:sdk prompt section declaring every other tool as a generated TypeScript API (jsonSchemaToTs: total over the defineTool subset, unknown degradation, lexicographic byte-identical rendering); 'both' ships both representations; 'native' is byte-for-byte the old behavior. Non-native modes fail every assembly loudly without a typescript-language ctx.codeRuntime. run_code's dispatch bridge: JSON-normalizes each binding argument before dispatch (what dispatches is what the tool/code-dispatch event logs — the append can never fail on payload shape; BigInt/circulars reject that one call), serializes all program tool calls through a per-run queue (even Promise.all — no concurrency-safety metadata yet), routes every sub-call through tools/pre-execute → tools/post-execute (a deny rejects the program-side promise), drops sub-call additionalContext (no safe outlet mid-run; pinned), owns a run-scoped abort that follows the outer signal in and fires on settlement (in-flight sub-dispatch aborted, queued abandoned, queue drained before returning), and converts a failed run into CodeRunFailedError → a structured isError carrying kind + captured logs. tool/code-dispatch joins SessionEventMap by declaration merging (log-only; deriveMessages ignores it). The composed surface: the tools config forwards through agent-core and both app packages; examples/code-agent + demo:code run the worker runtime under mode code (keyless boot smoke + a with-key e2e proving the collapsed [run_code] header, the dispatch events, and the file the program wrote); two new snapshot scenarios (code-mode-turn, both-mode-turn) record the SDK section, collapsed header, dispatch events, and result card — each its own header-pinning class (the harness gains per-scenario config overlays and per-class pins). Catalogs, graphs, cookbook, hooks-bridge notes, and the RFC (moved to implemented/, restructured to decision-era headings) updated in the same change.
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## Model Experience
Document the codebase thoroughly and tighten type safety Docs: per-folder README.md for packages/ (family overview + one per package: service, events, API, extension points, TODOs), examples/, and examples/echo-agent/; folder-level AGENTS.md (+ CLAUDE.md symlinks) for packages/ and vendor/; module-level doc comments in every packages/*/src file; richer JSDoc on all exported API (event side effects, disposal contracts, error behavior). Root AGENTS.md gains a "Type Safety and Documentation" policy section: the codebase aims to be very type-safe and well documented; type gymnastics are acceptable in core packages when they improve plugin-author DX; verbose docs are fine as long as they stay strictly in sync with the code. Type safety: removed the upstream-inherited "noImplicitAny": false from tsconfig.base.json — packages/* now compile under full strict mode; vendor/loader and vendor/include set it locally (vendor/cordis already did). Eliminated every `: any` / `as any` from packages and examples (catch clauses use unknown + a CodedError narrowing type; event data access uses discriminated-union narrowing). Typed tool schemas: new @deepseek-ai/dsh-tools schema DSL — SchemaSpec with per-property `required: true` booleans, type-level InferArgs<S>, a runtime SchemaSpec → JSON Schema converter, and defineTool() so first-party tools get typed execute(args) with zero casts (raw JSON Schema still accepted for MCP interop; chosen over schemastery because it targets JSON Schema generation directly). echo-tool and all test tools migrated; +7 tests.
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### Normal tool schemas
#### What the model sees
In normal mode the model sees each visible definition's exact name, description, and JSON schema; the shipped definitions are recorded in the generated [tool package map and schema sections](../../../docs/tool-catalog.md#tool-package-map). Agent-scoped restrictions, shadows, and extension registrations change that agent's end-tool set.
#### Token effect
Fixed per-request cost proportional to the visible definitions. Restrictions that hide tools remove their entire schema cost for that agent.
#### KV Cache effect
Prefix-stable while visible definitions and their order are unchanged. Registration, disposal, or scoped restriction may invalidate reuse from the first changed schema token.
### Code Mode schema and system prompt
#### What the model sees
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Code Mode exposes the generated [`run_code` schema](../../../docs/tool-catalog.md#deepseek-aidsh-tools), the SDK instructions below, and the generated exact SDK block for the loaded runtime's language (the TypeScript `declare const tools` block, or the Python `tools` declaration). `both` exposes normal schemas and this Code Mode API. The instructions and SDK block match the loaded runtime's language; the TypeScript version (via [`dsh-code-runtime-worker`](../../code-runtime/code-runtime-worker/README.md)) is shown below, and the Python version (for any runtime reporting `language: 'python'`) has the same operations and types in Python syntax (`await tools.name(args)`, subscript access for exotic names, `print(...)` and top-level `return`).
##### Code Mode SDK instructions
```markdown
## Writing code for run_code
Pass `run_code` the body of an async TypeScript function (erasable syntax only — no `enum` or namespaces; type annotations are advisory, the code runs type-stripped). Inside the program:
- Call tools as `await tools.name(args)` — quoted access for exotic names: `tools["my-tool"](args)`. Every call resolves to the tool's typed canonical JSON value. Tool arguments must be lossless JSON.
- A FAILED tool call rejects with `ToolCallError`, whose `toolName` identifies the failed tool and whose `message` is human-readable — `try/catch` it to handle and continue.
- Independent read-only calls MAY overlap under `Promise.all` (safe calls run concurrently; mutating calls run alone, in submission order). Sequence dependent work with `await`.
- Emit results with `return` and/or `console.log(...)`. ONLY what you print or return comes back to you — intermediate tool results never enter the conversation, so extract just what you need.
The available tools:
```
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#### Token effect
Fixed per-request cost proportional to the visible definitions. Code Mode trades end-tool schemas for generated SDK text plus one transport schema rather than promising a universal reduction.
#### KV Cache effect
Prefix-stable while the Code Mode selection, generated SDK, transport schema, and visible tool set are unchanged. Mode or filter changes may invalidate reuse from the first changed prompt or schema token.
### Tool-call history and results
#### What the model sees
The loop retains model-emitted arguments and the registry's final content. Any thrown or denied call becomes exactly `Error: <message>`. Code Mode returns only the outer program's printed lines and rendered return value, `(run_code completed with no output)` when both are empty, or `Error: code run failed (<kind>): <message>` followed conditionally by `Captured output:` and the captured lines. Inner dispatch events stay log-only; post-execute listeners may append source-attributed context after the result.
#### Token effect
Arguments, results, and additional context are data-dependent and resent until compaction. Restrictions that hide tools also remove their schemas before the model can call them.
#### KV Cache effect
Append-only; newly visible content follows the reusable request prefix and does not invalidate existing KV-cache entries.
Add a gated Known Limitations and Deferred Work section to every package README Every packages/*/* README now carries a canonical '## Known Limitations and Deferred Work' section: condensed, evidence-backed bullets for consumer-visible gaps (unimplemented features, platform caveats, MVP cuts) and consciously postponed work (TODO/FIXME/XXX markers, RFC deferrals still open). The ten pre-existing ad-hoc variants ('What is NOT here (TODO)', 'Deferred', 'Limitations (MVP)', 'Known limitations (tracked TODOs)', ...) are normalized into the canonical heading. A new doc-sync gate, scripts/verify-readme-limitations.ts, enforces the shape: exactly one limitations-like heading per package README, byte-equal to the canonical h2, with at least one bullet; near-miss headings fail so variants cannot creep back. Packages with genuinely nothing to declare (dsh-brand, dsh-timeout, dsh-subagent-mock, dsh-app-boot) are whitelisted in the script and must NOT carry the section; whitelist entries are validated against the scanned package set so a rename fails loud. Wired into the doc-sync chain (package.json) and the run-gates doc-sync leaf set; the standing rule lands in packages/AGENTS.md and the adding-a-package cookbook; decision record in docs/rfc/implemented/process/2026-07-10-readme-known-limitations-gate.md (RFC index regenerated). Also fixes two stale '(deferred)' markers claiming dsh-compact-basic is unimplemented (the dsh-compact seam README's package table and the seam's module doc comment).
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## Known Limitations and Deferred Work
- **Concurrency policy is not an event gate** — `executionMode()` reads the resolved tool definition directly; plugins can only declare a classifier on definitions they own.
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- **`tools/pre-execute` deliberately cannot rewrite `exec.arguments`** — logged and rendered args would desync from what ran; the rewrite design is [a proposed Agent Note](../../../.agents/notes/proposed/feature/2026-06-30-pre-tool-input-rewrite.md).
- **Caller-defined subagent and workflow structured outputs remain object-rooted** — this is a consumer-level guard; the shared schema vocabulary and tool outputs support every JSON root.
Add a gated Known Limitations and Deferred Work section to every package README Every packages/*/* README now carries a canonical '## Known Limitations and Deferred Work' section: condensed, evidence-backed bullets for consumer-visible gaps (unimplemented features, platform caveats, MVP cuts) and consciously postponed work (TODO/FIXME/XXX markers, RFC deferrals still open). The ten pre-existing ad-hoc variants ('What is NOT here (TODO)', 'Deferred', 'Limitations (MVP)', 'Known limitations (tracked TODOs)', ...) are normalized into the canonical heading. A new doc-sync gate, scripts/verify-readme-limitations.ts, enforces the shape: exactly one limitations-like heading per package README, byte-equal to the canonical h2, with at least one bullet; near-miss headings fail so variants cannot creep back. Packages with genuinely nothing to declare (dsh-brand, dsh-timeout, dsh-subagent-mock, dsh-app-boot) are whitelisted in the script and must NOT carry the section; whitelist entries are validated against the scanned package set so a rename fails loud. Wired into the doc-sync chain (package.json) and the run-gates doc-sync leaf set; the standing rule lands in packages/AGENTS.md and the adding-a-package cookbook; decision record in docs/rfc/implemented/process/2026-07-10-readme-known-limitations-gate.md (RFC index regenerated). Also fixes two stale '(deferred)' markers claiming dsh-compact-basic is unimplemented (the dsh-compact seam README's package table and the seam's module doc comment).
2026-07-10 01:51:50 +08:00
- **`timeoutMs` on a definition is declarative only** — the registry never enforces deadlines; enforcement requires the `@deepseek-ai/dsh-timeout-policy` wrapper.
- **Code Mode's SDK language follows the one loaded runtime, and a presentation is per agent rather than per tool** — `mode: code`/`both` rejects prompt assembly unless `ctx.codeRuntime.language` has a registered SDK renderer (TypeScript or Python); scoped restrictions/shadows and `presentAs` choose each agent's visible bindings and their form, but within one agent no tool can be native-only while another is code-only.
- **Code Mode intermediate values are execution-local and unbounded by bytes** — the canonical typed values cannot be reconstructed from session replay and may exhaust process or worker memory; only the outer `run_code` output has the worker's configurable hard cap. The durable log copy of each sub-call IS bounded: the `tools/code-dispatch-log` waterfall lets the spill policy replace an oversized `tool/code-dispatch` content with a preview + locator ([rationale](../../../.agents/notes/implemented/feature/2026-07-26-code-dispatch-log-spill.md)).
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- **`run_code` state is fresh per run** — a persistent REPL-style kernel is rejected for the MVP (cross-call state would be invisible to the log); see [the Code Mode Agent Note](../../../.agents/notes/implemented/feature/2026-06-15-code-mode.md).