mirror of
https://github.com/deepseek-ai/deepseek-harness
synced 2026-08-15 21:04:50 +00:00
Beyond the mechanical conflicts (provider capability lines vs master's new inheritsParentContext field; generated catalogs regenerated rather than hand-merged; knip/lockfile), three master-side reworks required semantic adaptation of this branch: - The persona rework removed AgentOptions.systemPrompt, which was the structured-output instruction's channel. The instruction now rides the SAME final-request enforcement listener that injects the schema'd tool: appended per request to final.system (per-request wire state, not agent prompt state). Tests assert the wire request (adapter.requests) instead of child.options; the bare-direct-dispatch test pins the no-system arm. - Tool guidance moved out of deployment prompts into per-tool prompt sections; the examples' workflow paragraph became a tool:<toolName> section contributed by dsh-tool-workflow (explicit-ask-only policy), and both example personas resolve to master's minimal identity+behavior form. tool-workflow gains inject: systemPrompt (+ peer dep, tsconfig ref); the export-shape guard updated. - The uniform-RFC-format gate: the dynamic-workflows RFC restructured to the implemented/ skeleton (bare Status line; Proposal -> Decision; What-was-rejected -> Alternatives considered; new Consequences), and the overall-run-timeout deferral is now recorded in the RFC's Deferred list. The doc-graphs atlas classification gains the workflows seam (workflow-vm implementation, tool-workflow consumer). Master's harness-identity section made "empty assembled prompt" states unreachable through the loop, so the instruction-append is a plain undefined-ternary and the structured tests assert append-not-replace. All snapshot goldens (including workflow-run) replay unchanged. Full local CI-equivalent gate sequence green on the merged tree.
350 lines
17 KiB
TypeScript
350 lines
17 KiB
TypeScript
/**
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* Generate (and verify) the tool-schema catalog in docs/tool-catalog/tools.md.
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*
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* The catalog is the MODEL-FACING TOOL reference: every tool a shipped plugin
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* contributes to `ctx.tools`, with the exact `name` / `description` / JSON-Schema
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* `parameters` the model receives via the system-prompt assembly. It complements
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* the cordis events/services catalog (the wiring a plugin author works against)
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* and the core-data-structures catalog (the vocabulary those signatures move):
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* this page is the TOOLS the agent is offered.
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*
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* `tsx scripts/gen-tool-catalog.ts` → write the catalog
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* `tsx scripts/gen-tool-catalog.ts --check` → exit 1 if the committed file
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* is stale (CI / pre-push gate)
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*
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* Why this generator BOOTS PLUGINS instead of parsing source (unlike its AST
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* sibling `gen-cordis-catalog.ts`): a tool's schema is not statically knowable.
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* `tool-todo` writes `enum: [...STATUSES]` (a runtime spread), descriptions are
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* built by string concatenation, `tool-subagent`'s tool name is `config.toolName`,
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* and an MCP plugin can register RAW JSON Schema without `defineTool` at all. The
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* faithful source of truth is therefore the SHIPPED schema: mount each tool
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* plugin on a real cordis Context and read `ctx.tools.schemas()` — exactly the
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* `ToolSchema[]` the model is sent. See
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* docs/rfc/implemented/process/2026-07-02-tool-schema-catalog.md.
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*
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* Booting sacrifices the AST pass's structural "nothing can be silently omitted"
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* property (there is no source declaration to enumerate), so a COMPLETENESS GUARD
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* restores it: the generator globs every `tool-*` package under `packages/` and
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* hard-errors if any such package is absent from the boot manifest below. A new
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* tool package fails the generator — and thus the freshness gate — until it is
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* registered here, mirroring how a new event appears in the cordis regenerate.
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*
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* Schema blocks use a plain ` ```json ` fence: doc-typecheck only extracts `ts*`
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* fences, so no BlockKind wiring is needed there.
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*/
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import { globSync, readFileSync, writeFileSync } from 'node:fs'
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import { basename, resolve } from 'node:path'
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import { Context } from 'cordis'
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import type { ToolSchema } from '@deepseek-ai/dsh-llm'
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import SystemPrompt from '@deepseek-ai/dsh-system-prompt'
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import ToolRegistry from '@deepseek-ai/dsh-tools'
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import LocalBashExecutor from '@deepseek-ai/dsh-bash-local'
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import LocalFileSystem from '@deepseek-ai/dsh-fs-local'
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import WebService from '@deepseek-ai/dsh-web'
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import * as WebSearchExa from '@deepseek-ai/dsh-web-search-exa'
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import * as WebFetchLocal from '@deepseek-ai/dsh-web-fetch-local'
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import SubagentService from '@deepseek-ai/dsh-subagent'
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import * as SubagentMock from '@deepseek-ai/dsh-subagent-mock'
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import * as ToolBash from '@deepseek-ai/dsh-tool-bash'
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import * as ToolFs from '@deepseek-ai/dsh-tool-fs'
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import * as ToolTodo from '@deepseek-ai/dsh-tool-todo'
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import * as ToolSubagent from '@deepseek-ai/dsh-tool-subagent'
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import * as ToolWeb from '@deepseek-ai/dsh-tool-web'
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import VmWorkflowEngine from '@deepseek-ai/dsh-workflow-vm'
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import * as ToolWorkflow from '@deepseek-ai/dsh-tool-workflow'
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const root = resolve(import.meta.dirname, '..')
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const OUT = 'docs/tool-catalog/tools.md'
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/**
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* One tool-plugin package to boot. `mount` is a per-entry recipe (async): it
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* plugs the injected seams the plugin's `apply` reads (an executor for
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* `ctx.bash`, a provider for `ctx.subagents`) BEFORE the tool plugin itself.
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* `SystemPrompt` + `ToolRegistry` are mounted for every entry by the caller
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* (`ToolRegistry` injects `systemPrompt`), so `mount` only handles the extras.
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*
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* The recipe is irreducible policy — WHICH seams a given tool needs and with
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* WHAT config is not derivable from the package layout — so it stays a hand-
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* maintained closure. The `dir` field is what the completeness guard matches
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* against the on-disk `tool-*` package glob, so a NEW tool package cannot be
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* silently omitted (see the module doc).
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*/
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interface ToolPackage {
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/** The npm package name, used as the catalog section heading. */
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pkg: string
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/** The `packages/<group>/<dir>` leaf name — matched by the completeness guard. */
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dir: string
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/** Repo-relative source path linked from the catalog entry. */
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source: string
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/** Services or owning runtime surfaces the package requires at execution time. */
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requires: string[]
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/** Session events or other visible state the tools write or affect. */
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writes: string[]
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/** Additional model-visible names shipped by example/app config. */
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shippedNames?: string[]
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/** Plug the injected seams + the tool plugin onto a context that already
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* carries `systemPrompt` + `tools`. */
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mount: (ctx: Context) => Promise<void>
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/**
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* A deployment note rendered after the package's tools, for a fact that
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* booting the package alone cannot show. The registered tool NAME can be a
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* load-time config (`tool-subagent`'s `toolName`), so one package may surface
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* under several names across deployments — the boot yields the package
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* DEFAULT, and this note records the shipped alternatives the model sees.
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*/
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note?: string
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}
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/**
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* The boot manifest: every shipped tool package (a `tool-*` leaf under
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* `packages/`). Ordered by package name (the render order); the completeness
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* guard proves it is exhaustive against the on-disk glob.
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*/
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const TOOL_PACKAGES: ToolPackage[] = [
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{
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pkg: '@deepseek-ai/dsh-tool-bash',
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dir: 'tool-bash',
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source: 'packages/bash/tool-bash/src/index.ts',
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requires: ['ctx.tools', 'ctx.bash'],
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writes: ['tool/call', 'tool/result', 'context/message via agent.inject() for background completion notices'],
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async mount(ctx) {
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await ctx.plugin(LocalBashExecutor)
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await ctx.plugin(ToolBash)
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},
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note:
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'The bash/bash_output/bash_kill tools are model-facing consumers of the bash executor seam.',
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},
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{
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pkg: '@deepseek-ai/dsh-tool-fs',
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dir: 'tool-fs',
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source: 'packages/fs/tool-fs/src/index.ts',
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requires: ['ctx.tools', 'ctx.fs', 'ctx.systemPrompt'],
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writes: ['tool/call', 'fs/write-intent or fs/edit-intent for mutations', 'fs/observed after successful file operations', 'tool/result'],
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async mount(ctx) {
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// The tool injects `fs`; boot the local backend to satisfy it. The schemas
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// do not depend on the policy plugin (an event gate that changes behavior,
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// not tool shape), so the bare provider is enough to harvest them.
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await ctx.plugin(LocalFileSystem)
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await ctx.plugin(ToolFs)
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},
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note:
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'The read-before-write/edit policy is added by `@deepseek-ai/dsh-fs-policy` (an `fs/*` event-gate plugin, no schema change); a deployment that loads these tools is expected to also load it. The tool schemas above are identical with or without the policy plugin.',
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},
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{
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pkg: '@deepseek-ai/dsh-tool-subagent',
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dir: 'tool-subagent',
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source: 'packages/subagent/tool-subagent/src/index.ts',
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requires: ['ctx.tools', 'ctx.subagents'],
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writes: ['tool/call', 'tool/result', 'child session events through the chosen provider'],
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shippedNames: ['subagent', 'subagent_fork'],
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async mount(ctx) {
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await ctx.plugin(SubagentService)
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// Register a scripted provider under the name the tool delegates to.
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await ctx.plugin(SubagentMock, { name: 'mock' })
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await ctx.plugin(ToolSubagent, { provider: 'mock' })
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},
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note:
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'The registered tool name is the load-time `toolName` config (default `subagent`); the schema above is that default. The shipped example agents load this package once per subagent backend, so the model additionally sees `subagent_fork` (bound to the fork backend) with an identical schema — see `examples/coding-agent/cordis.yml` and `examples/acp-agent/cordis.yml`.',
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},
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{
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pkg: '@deepseek-ai/dsh-tool-todo',
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dir: 'tool-todo',
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source: 'packages/todo/tool-todo/src/index.ts',
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requires: ['ctx.tools', 'owning Agent session'],
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writes: ['tool/call', 'todo/write', 'tool/result'],
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async mount(ctx) {
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await ctx.plugin(ToolTodo)
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},
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note:
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'todo_write is session-owned state; UIs render the latest todo/write event as a checklist or ACP plan.',
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},
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{
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pkg: '@deepseek-ai/dsh-tool-workflow',
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dir: 'tool-workflow',
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source: 'packages/workflow/tool-workflow/src/index.ts',
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requires: ['ctx.tools', 'ctx.workflows', 'ctx.systemPrompt', 'a calling Agent (exec.agent parents the script children)'],
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writes: ['tool/call', 'tool/result'],
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async mount(ctx) {
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// The tool injects `workflows`; boot the vm engine over a scripted
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// subagent provider to satisfy it. The schema does not depend on which
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// provider backs the engine.
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await ctx.plugin(SubagentService)
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await ctx.plugin(SubagentMock, { name: 'mock' })
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await ctx.plugin(VmWorkflowEngine, { provider: 'mock' })
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await ctx.plugin(ToolWorkflow)
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},
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},
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{
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pkg: '@deepseek-ai/dsh-tool-web',
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dir: 'tool-web',
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source: 'packages/web/tool-web/src/index.ts',
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requires: ['ctx.tools', 'ctx.web', 'ctx.systemPrompt'],
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writes: ['tool/call', 'tool/result'],
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async mount(ctx) {
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// The tools inject `web`; boot the seam plus one search and one fetch
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// provider so both `web_search` and `web_fetch` register. The schemas do
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// not depend on which provider backs the seam (or on it being available),
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// so any registered provider is enough to harvest them.
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await ctx.plugin(WebService)
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await ctx.plugin(WebSearchExa)
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await ctx.plugin(WebFetchLocal)
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await ctx.plugin(ToolWeb)
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},
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note:
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'web_search and web_fetch keep provider selection behind ctx.web so model-visible schemas stay stable across backend swaps.',
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},
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]
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/** One package's contribution to the catalog: its schemas plus attribution. */
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interface CatalogPackage {
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pkg: string
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source: string
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requires: string[]
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writes: string[]
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shippedNames?: string[]
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schemas: ToolSchema[]
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/** A deployment note (see {@link ToolPackage.note}), rendered after the tools. */
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note?: string
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}
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/** The whole catalog: one entry per booted tool package, in manifest order. */
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export type ToolCatalog = CatalogPackage[]
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/**
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* Assert the boot manifest covers every shipped tool package on disk (a
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* `tool-*` leaf under `packages/`).
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* Booting has no source declaration to enumerate, so this glob restores the
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* "a new tool cannot be silently undocumented" guarantee: an unlisted package
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* fails the generator (and the freshness gate) until it is added to
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* {@link TOOL_PACKAGES}. Exported for a direct negative test.
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*
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* `scanRoot` defaults to the repo root; a test may point it at a fixture tree.
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*/
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export function assertManifestComplete(packages: ToolPackage[] = TOOL_PACKAGES, scanRoot: string = root): void {
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const onDisk = globSync('packages/*/tool-*', { cwd: scanRoot }).map(p => basename(p)).sort()
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const listed = new Set(packages.map(p => p.dir))
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const missing = onDisk.filter(dir => !listed.has(dir))
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if (missing.length > 0) {
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throw new Error(
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`gen-tool-catalog: ${missing.length} tool package(s) not in the boot manifest: ${missing.join(', ')}. `
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+ 'Add each to TOOL_PACKAGES in scripts/gen-tool-catalog.ts so its schema is catalogued.',
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)
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}
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}
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/**
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* Boot each tool package on a fresh Context and harvest its model-facing
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* schemas. A fresh Context per package keeps attribution clean (each entry's
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* schemas come from exactly that package) and isolates a boot failure to its
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* own entry. Disposed after harvest so no executor/provider outlives the run.
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*/
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export async function collectToolCatalog(packages: ToolPackage[] = TOOL_PACKAGES): Promise<ToolCatalog> {
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assertManifestComplete(packages)
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const catalog: ToolCatalog = []
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for (const entry of packages) {
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const ctx = new Context()
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// Dispose in `finally` so a throw from `mount`/`schemas()` after earlier
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// plugins mounted still tears the context down (no leaked executor/provider
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// fiber) — the repo's "dispose must reach quiescence" rule.
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try {
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await ctx.plugin(SystemPrompt)
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await ctx.plugin(ToolRegistry)
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await entry.mount(ctx)
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const schemas = ctx.tools.schemas().sort((a, b) => a.name.localeCompare(b.name))
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catalog.push({
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pkg: entry.pkg,
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source: entry.source,
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requires: entry.requires,
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writes: entry.writes,
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schemas,
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...entry.shippedNames !== undefined ? { shippedNames: entry.shippedNames } : {},
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...entry.note !== undefined ? { note: entry.note } : {},
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})
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} finally {
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await ctx.fiber.dispose()
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}
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}
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return catalog
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}
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/** Render one tool's entry: name, description, JSON-Schema parameters, source. */
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function renderTool(schema: ToolSchema, source: string): string[] {
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const out = [`### \`${schema.name}\``, '']
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if (schema.description) out.push(schema.description, '')
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out.push('```json', JSON.stringify(schema.parameters, null, 2), '```', '')
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out.push(`Source: [\`${source}\`](../../${source})`, '')
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return out
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}
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function codeList(values: string[] | undefined): string {
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return values?.length ? values.map(value => `\`${value}\``).join(', ') : '-'
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}
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function tableCell(value: string | undefined): string {
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return value ? value.replace(/\|/g, '\\|').replace(/\n/g, '<br>') : '-'
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}
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/** Render the full catalog (pure, deterministic given the manifest-ordered input). */
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export function render(catalog: ToolCatalog): string {
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const lines: string[] = [
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'<!-- Generated by scripts/gen-tool-catalog.ts — do not edit by hand.',
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' Run `pnpm run gen-tool-catalog` to regenerate. -->',
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'',
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'# Tool Schema Catalog',
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'',
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'Every model-facing tool a shipped plugin contributes to `ctx.tools`: the `name`, `description`, and JSON-Schema `parameters` the model receives via the system-prompt assembly. It complements the cordis [events](../cordis-catalog/events.md) & [services](../cordis-catalog/services.md) catalogs (the wiring a plugin listens to and calls) and [core-data-structures/](../core-data-structures/core.md) (the types those signatures move) — this page is the *tools* the agent is offered.',
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'',
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'This file is GENERATED and verified fresh by `pnpm run verify-tool-catalog` (part of `doc-sync`) — do not edit it by hand. Unlike the cordis catalog (a pure source-AST pass), this generator BOOTS each tool plugin on a real context and reads `ctx.tools.schemas()`, because a tool schema is not statically knowable (runtime-spread enums, concatenated descriptions, config-driven names, raw-JSON-Schema MCP tools). A completeness guard globs `packages/*/tool-*` and fails if any package is missing from the generator\'s boot manifest, so a new tool cannot be silently undocumented. See [the tool-schema-catalog RFC](../rfc/implemented/process/2026-07-02-tool-schema-catalog.md).',
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'',
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'Scope: shipped product tools under `packages/*/tool-*`, each booted with its DEFAULT config. The registered tool NAME can be a load-time config (e.g. `tool-subagent`\'s `toolName`), so a deployment may surface a package under a different or additional name — a per-package note records those shipped aliases where they exist. The `examples/` demo tools (e.g. `echo`) are excluded, matching the cordis catalog\'s packages-only scope.',
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'',
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'## Tool Package Map',
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'',
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'This table connects model-visible tool names to the plugin package and service seams behind them. Exact JSON Schemas follow in the package sections below.',
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'',
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'| Tool package | Model-visible names | Requires | Writes / affects | Shipped aliases | Deployment note |',
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'| --- | --- | --- | --- | --- | --- |',
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...catalog.map(entry => `| \`${entry.pkg}\` | ${codeList(entry.schemas.map(schema => schema.name))} | ${codeList(entry.requires)} | ${codeList(entry.writes)} | ${codeList(entry.shippedNames)} | ${tableCell(entry.note)} |`),
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'',
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]
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for (const entry of catalog) {
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lines.push(`## \`${entry.pkg}\``, '')
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for (const schema of entry.schemas) lines.push(...renderTool(schema, entry.source))
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if (entry.note) lines.push(entry.note, '')
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}
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return lines.join('\n')
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}
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/** CLI entry: default writes the catalog, `--check` fails if the committed copy
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* is stale. Guarded behind an entry-point check so importing this module for
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* tests neither regenerates the committed file nor calls process.exit. */
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async function main(): Promise<void> {
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const content = render(await collectToolCatalog())
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if (process.argv.includes('--check')) {
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let committed: string | null = null
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try {
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committed = readFileSync(resolve(root, OUT), 'utf8')
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} catch {
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// Only ENOENT (not yet generated) is expected; a present-but-unreadable
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// file is not a state this repo produces. Either way the remedy is the
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// same — regenerate — so treat a read failure as "stale".
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committed = null
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}
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if (committed === content) {
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console.log(`gen-tool-catalog: ${OUT} is up to date.`)
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process.exit(0)
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}
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console.error(`gen-tool-catalog: ${OUT} is stale. Run \`pnpm run gen-tool-catalog\` and commit ${OUT}.`)
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process.exit(1)
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}
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writeFileSync(resolve(root, OUT), content)
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console.log(`gen-tool-catalog: wrote ${OUT}.`)
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}
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// Run only when invoked as a script, not when imported by a test.
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if (process.argv[1] && import.meta.filename === resolve(process.argv[1])) {
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await main()
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}
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