diff --git a/scripts/snapshots/translation-prompt-v4/request-response.expected.json b/scripts/snapshots/translation-prompt-v4/request-response.expected.json index 311b0ecc80..ec8c282b80 100644 --- a/scripts/snapshots/translation-prompt-v4/request-response.expected.json +++ b/scripts/snapshots/translation-prompt-v4/request-response.expected.json @@ -16,11 +16,11 @@ }, { "role": "user", - "content": "# Development guide\n\nEnglish | [中文](development.zh.md)\n\nThe setup tutorial takes a new contributor from prerequisites to a checked checkout. The contributor reference that follows covers repository layout, daily workflow, and CI shape. Design rationale and implementation details belong to the linked Agent Notes and scripts.\n\n## Setup tutorial\n\n### Prerequisites\n\n- Node.js supports 22.19+ and 24+. CI covers 22.19, 24, and 26; see the [Node engine floor Agent Note](../.agents/notes/implemented/process/2026-07-06-node-engine-floor.md).\n- Corepack-enabled pnpm. The repo pins `pnpm@11.7.0` in `package.json`; run `corepack enable` if `pnpm --version` does not resolve through Corepack.\n- Git 2.26 or newer; hook setup enables Git's worktree-specific configuration extension.\n- Optional: a DeepSeek API key for the Web, headless, and ACP automation demos and real-API e2e tests.\n\n### First-time setup\n\nInstall dependencies from the repo root:\n\n```sh\npnpm install\n```\n\nThe install also configures worktree-local Lefthook hooks and the `dsh-translation-pairing` Git merge driver through `scripts/install-lefthook.mjs`. The [worktree-local hooks Agent Note](../.agents/notes/implemented/process/2026-07-27-worktree-local-lefthook.md) owns the hook-path safety contract; the [automatic pairing merges Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) owns the merge driver.\n\nIf either integration is missing because dependencies were restored from cache or `postinstall` was skipped, install them manually:\n\n```sh\nnode scripts/install-lefthook.mjs\n```\n\nIf the wrapper rejects existing Git configuration or reports a stale lock, follow its diagnostic and the linked Agent Note rather than editing worktree metadata speculatively. After moving a checkout, rerun the wrapper to regenerate the owned path.\n\nRun typecheck once after a fresh clone:\n\n```sh\npnpm run typecheck\n```\n\nSetup is complete when `pnpm run typecheck` exits successfully.\n\n## Contributor reference\n\n### TypeScript project layout\n\nThe repository uses isolated Host and Client aggregates. An ordinary package is registered in exactly one aggregate: Host packages in `tsconfig.host.json` and Client packages in `tsconfig.client.json`.\n\n| File | Role | Forms a program? |\n|---|---|---|\n| `tsconfig.json` | Solution root: `extends` base, `files: []`, and references to the two aggregates. It is the tsserver discovery entry and the entry for explicitly running the complete Project Reference graph; through the inherited `paths`, it is also the resolution config for tsx running `examples/` and `scripts/`. | No |\n| `tsconfig.host.json` | Host aggregate: Host packages, examples, tests, scripts, website, and the exceptional Host project of `api/remotes`. | Yes |\n| `tsconfig.client.json` | Client aggregate: `packages/client/*` packages and their tests, `apps/web`, and the exceptional Client project of `api/remotes`. | Yes |\n| `tsconfig.base.json` | Shared compilerOptions and the source `paths` map. Also the resolution facade the vitest configs point vite-tsconfig-paths at: it has no `include`, so its `paths` apply to every importer. | No |\n| `tsconfig.base.client.json` | Browser compiler shape (`jsx`, DOM libs, `types: []`) extended by the Client aggregate and every `packages/client/*` package. | No |\n\nHost and Client stay two aggregate programs because both sides declaration-merge the cordis `Context` interface under the same keys with different services; one program seeing both merges reports a collision. The collision exists only inside a `ts.Program` — module resolution never triggers it — which is why the solution may reference both aggregates and one paths facade may span both sides. Three disciplines follow:\n\n- `tsconfig.base.json` never gains `include` or `files`: they would leak into every extending package project and narrow the facade's match-all scope.\n- A script that builds a repo-wide `ts.Program` seeds `tsconfig.host.json` or `tsconfig.client.json` explicitly — never the root solution, because flattening both aggregates into one program collides the `Context` merges.\n- A new package is registered in exactly one aggregate. Having both a Node loader entry and a browser entry is not a reason to split a package; an ordinary Client plugin produces both runtime artifacts during the Client build phase.\n\n`api/remotes` is the repository's only package with split Host and Client tsconfigs. Its Host entry must participate in the Host TypeRT graph, while its Client entry imports `/remote` declarations that Host tsdown must generate first. The package-root `tsconfig.json` is therefore only a solution, and the two aggregates and direct consumers reference `tsconfig.host.json` or `tsconfig.client.json` respectively. The workspace `constraints` gate walks the reachable Project Reference graph and checks each referencing project's own compiler face: a single-config target remains valid from either face, while a split target must name the matching leaf rather than its solution root or opposite leaf. Do not copy this structure to other packages; see the [`api-remotes` README](../packages/api/remotes/README.md) for the complete boundary.\n\nThe root build follows the generated dependency order:\n\n```sh\ntsc -b tsconfig.host.json\ntsdown --env.DSH_BUILD_FACE host\ntsc -b tsconfig.client.json\ntsdown --env.DSH_BUILD_FACE client\npnpm run build:web\n```\n\nBoth tsdown passes use the same complete workspace match. They neither scan build artifacts to discover Client packages nor maintain a Host/Client package filter list. Package-local tsdown configs select entries for the current phase through `DSH_BUILD_FACE`: an ordinary Client plugin produces both its Node loader and browser bundle during the Client phase; `api-remotes` uses `hostPhase: true` to produce its Host entry early and only its browser bundle during the Client phase. Tsdown consumes only the JavaScript emitted to `lib/types` by the preceding tsc phase.\n\nTypeRT runs only during Host tsdown, seeded by `tsconfig.host.json`. It analyzes Host types and generates both Host reflection artifacts and the Host-for-Client Remote projection; Client tsdown does not start TypeRT. Consequently, `pnpm run typecheck` runs the complete Host lib phase before Client tsc, while `pnpm run build` continues through Client tsdown and the Web build. The [API Remotes generated-contract build note](../.agents/notes/implemented/process/2026-08-08-api-remotes-generated-contract-build.md) records this ordering decision.\n\nStatic analysis and tests resolve workspace imports through the base `paths` map to `src` and must pass on a clean tree; gates that consume built `lib/` output declare that dependency explicitly. Generated Host-for-Client Remote declarations are the deliberate exception: the public `typecheck`, `lint`, and `doc-typecheck` commands generate them first, while internal `*:contracts-ready` scripts assume that an invoking public command or scheduler gate already owns an explicit dependency on the TypeRT contract pass or the complete build. See the [solution-root note](../.agents/notes/implemented/process/2026-07-22-tsconfig-solution-root-two-aggregates.md) for the two-aggregate topology, the [ts-build-config note](../.agents/notes/implemented/process/2026-06-17-ts-build-config.md) for tsc-first emit ownership, and the [TypeRT Remote note](../.agents/notes/implemented/architecture/2026-08-02-typert-remote-method-calls.md) for the gate-preparation contract.\n\nBusiness services declare callable methods on the Host with `@Remote` or `@RemoteScope`; the Host build generates Host-for-Client types and runtime contributions, and the Client's `api-remotes` composition loads those contributions under `ctx.remote` and scoped `agentCtx.remote` namespaces. See [API Gateway](api-gateway.md) for the generated artifacts on both sides, their assembly relationships, the SRC development fallback, and the Web build order.\n\nIf a relevant local check consumes built package output, build once first:\n\n```sh\npnpm run build\n```\n\n`pnpm run hygiene` includes `publint`, which validates package entrypoints against the built `lib/*.js` files, and `verify-node-next-types`, which validates built declarations against a temporary NodeNext consumer. A fresh worktree has no bundled JS or declarations until `pnpm run build` runs; ordinary commits and pushes do not require that build unless their selected checks consume it.\n\n### Environment variables\n\nThe real DeepSeek adapter and key-backed agent demos read credentials from the environment or from a gitignored `.env` at the repo root:\n\n```sh\nDEEPSEEK_API_KEY=sk-...\nDEEPSEEK_BASE_URL=https://... # optional\n```\n\n`DEEPSEEK_BASE_URL` is optional and defaults to the public API. Never commit real credentials. The real-API e2e suites self-skip when `DEEPSEEK_API_KEY` is not set.\n\n### Git integrations\n\nThe pairing merge driver derives a conflicted `.i18n.yaml` record from the confirmed ancestor, current, and other owner blobs when both language files use Git's default text strategy and merge cleanly. It fails closed on owner conflicts, non-text merge configuration, or invalid records; after an already-stopped merge, run `pnpm run resolve-translation-pairing-conflicts`, which stages every safe pairing record and exits unsuccessfully if other pairing conflicts still need manual work. See the [bilingual documentation contract](i18n/README.md#the-pairing-contract) for the exact boundary.\n\nlefthook is configured in `lefthook.yml` as a fast local checkpoint:\n\n- `pre-commit` verifies staged pairing records against the staged owner blobs, applies formatting-only ESLint fixes, validates the staged files with the project-free `.oxlintrc.staged.json` profile and applies Oxlint's native fixes, regenerates `THIRD_PARTY_NOTICES.md` when a staged file is one of its inputs, checks the staged diff for whitespace errors, and runs the vendor manifest guard.\n- `pre-merge-commit` performs the same index-backed pairing check before Git creates an automatic merge commit.\n- `pre-push` runs `pnpm run typecheck`, which completes the Host lib phase, including generated TypeRT contracts, before the Client TypeScript check.\n\nThe vendor manifest guard checks that changes under `vendor/*/src` are staged with the matching `vendor/README.md` manifest update. See `vendor/README.md` before editing vendored code.\n\nApart from the scoped staged-record verification, the hooks intentionally do not run tests, snapshots, documentation checks, builds, or hygiene. Contributors run the [checks relevant to the changed behavior](../AGENTS.md#run-relevant-checks-locally) once; CI owns exhaustive coverage, built-artifact smokes, and the Node 22.19, 24, and 26 compatibility matrix.\n\nContributors can opt into the comprehensive local gate set with `pnpm run check:all`. The command is independent of the Git hooks and is not an agent instruction.\n\n### CI gates\n\nThe keyless [CI workflow](../.github/workflows/ci.yml) groups independent gates into broad lanes and runs a smaller compatibility signal across supported Node versions. Artifact consumers wait for one build within their lane. The separate real-API workflow runs `pnpm run test:e2e` with its configured worker bound. See [scripts/run-gates.ts](../scripts/run-gates.ts) and the workflow files for the current gate and job inventory.\n\n### Daily commands\n\nThe root [contributor instructions](../AGENTS.md#commands) summarize common commands, while [`package.json`](../package.json) and [scripts/run-gates.ts](../scripts/run-gates.ts) own the current script and gate inventories. Select the smallest checks that cover the changed surface. Documentation changes use `pnpm run doc-sync`; package-public behavior changes also update the owning README or JSDoc, and built-artifact checks require `pnpm run build` first.\n\n### Demos\n\nThe one-shot Headless coding agent needs `DEEPSEEK_API_KEY` in the environment or repo-root `.env`:\n\n```sh\npnpm run demo:headless \"summarize this workspace\"\n```\n\nThe self-referential cordis demo can inspect and modify its live plugin runtime and needs the same credentials (`web` by default, or `acp`):\n\n```sh\npnpm run demo:cordis\n```\n\nThe ACP automation server exposes fresh agent sessions over JSON-RPC stdio and also needs `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:acp\n```\n\n### TODO markers\n\nUse one of three comment tags to flag known issues in the code, ordered by urgency:\n\n- `FIXME` — an issue that should block a new release. A release should not ship with an open `FIXME` unless reviewers explicitly agree the change can be merged anyway.\n- `TODO` — an issue that should be fixed soon, once we have the resources.\n- `XXX` — an issue that we may fix someday; lowest priority, no commitment.\n\nPick the tag that matches the urgency so anyone scanning the code can tell a release blocker from a someday-maybe.\n\n### Documenting types verbatim (`ts type-equiv`)\n\nThe [core data structures](core-data-structures/core.md) docs paste source-equivalent declarations together with their original JSDoc so a reader sees the exact shape and source contract. To keep a paste from drifting when source changes, fence it as ` ```ts type-equiv ` (instead of ` ```ts `) and register it in `scripts/type-equiv.manifest.json` with the source file and symbol it mirrors:\n\n```json\n{ \"doc\": \"docs/core-data-structures/session.md\", \"symbol\": \"SessionEvent\", \"source\": \"packages/core/session/src/types.ts\" }\n```\n\n`pnpm run verify-type-equiv` (part of `doc-sync`) then extracts that symbol's declaration and attached JSDoc from source via the TypeScript parser and asserts the block matches both. For a class whose implementation bodies do not belong in the catalog, use ` ```ts public-api ` and set `\"projection\": \"public-api\"`; the checked projection retains the public fields, constructor, accessors, methods, and original class/member JSDoc while omitting bodies and private or protected members. Comparison ignores whitespace and non-JSDoc comments but requires every original JSDoc comment, including member documentation, so readers see the source contract beside the exact shape. The gate enforces a 1:1 correspondence by document, symbol, and projection between primary blocks and manifest entries; a paired `.zh.md` block reuses its unsuffixed sibling's entry only when the whole tracked fence sequence is byte-identical and ordered identically. `doc-typecheck` applies the same derivative rule to compilable fences, while skipping both source-equivalence fence kinds from compilation and its opt-out ratio. When you change a documented declaration or its JSDoc, the gate fails until you update the paste; when you add or remove a primary block, update the manifest in the same change.\n" + "content": "# Development guide\n\nEnglish | [中文](development.zh.md)\n\nThe setup tutorial takes a new contributor from prerequisites to a checked checkout. The contributor reference that follows covers repository layout, daily workflow, and CI shape. Design rationale and implementation details belong to the linked Agent Notes and scripts.\n\n## Setup tutorial\n\n### Prerequisites\n\n- Node.js supports 22.19+ and 24+. CI covers 22.19, 24, and 26; see the [Node engine floor Agent Note](../.agents/notes/implemented/process/2026-07-06-node-engine-floor.md).\n- Corepack-enabled pnpm. The repo pins `pnpm@11.7.0` in `package.json`; run `corepack enable` if `pnpm --version` does not resolve through Corepack.\n- Git 2.26 or newer; hook setup enables Git's worktree-specific configuration extension.\n- Optional: a DeepSeek API key for the Web, headless, and ACP automation demos and real-API e2e tests.\n\n### First-time setup\n\nInstall dependencies from the repo root:\n\n```sh\npnpm install\n```\n\nThe install also configures worktree-local Lefthook hooks and the `dsh-translation-pairing` Git merge driver through `scripts/install-lefthook.mjs`. The [worktree-local hooks Agent Note](../.agents/notes/implemented/process/2026-07-27-worktree-local-lefthook.md) owns the hook-path safety contract; the [automatic pairing merges Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) owns the merge driver.\n\nIf either integration is missing because dependencies were restored from cache or `postinstall` was skipped, install them manually:\n\n```sh\nnode scripts/install-lefthook.mjs\n```\n\nIf the wrapper rejects existing Git configuration or reports a stale lock, follow its diagnostic and the linked Agent Note rather than editing worktree metadata speculatively. After moving a checkout, rerun the wrapper to regenerate the owned path.\n\nRun typecheck once after a fresh clone:\n\n```sh\npnpm run typecheck\n```\n\nSetup is complete when `pnpm run typecheck` exits successfully.\n\n## Contributor reference\n\n### TypeScript project layout\n\nThe repository uses isolated Host and Client aggregates. An ordinary package is registered in exactly one aggregate: Host packages in `tsconfig.host.json` and Client packages in `tsconfig.client.json`.\n\n| File | Role | Forms a program? |\n|---|---|---|\n| `tsconfig.json` | Solution root: `extends` base, `files: []`, and references to the two aggregates. It is the tsserver discovery entry and the entry for explicitly running the complete Project Reference graph; through the inherited `paths`, it is also the resolution config for tsx running `examples/` and `scripts/`. | No |\n| `tsconfig.host.json` | Host aggregate: Host packages, examples, tests, scripts, website, and the exceptional Host project of `api/remotes`. | Yes |\n| `tsconfig.client.json` | Client aggregate: `packages/client/*` packages and their tests, `apps/web`, and the exceptional Client project of `api/remotes`. | Yes |\n| `tsconfig.base.json` | Shared compilerOptions and the source `paths` map. Also the resolution facade the vitest configs point vite-tsconfig-paths at: it has no `include`, so its `paths` apply to every importer. | No |\n| `tsconfig.base.client.json` | Browser compiler shape (`jsx`, DOM libs, `types: []`) extended by the Client aggregate and every `packages/client/*` package. | No |\n\nHost and Client stay two aggregate programs because both sides declaration-merge the cordis `Context` interface under the same keys with different services; one program seeing both merges reports a collision. The collision exists only inside a `ts.Program` — module resolution never triggers it — which is why the solution may reference both aggregates and one paths facade may span both sides. Three disciplines follow:\n\n- `tsconfig.base.json` never gains `include` or `files`: they would leak into every extending package project and narrow the facade's match-all scope.\n- A script that builds a repo-wide `ts.Program` seeds `tsconfig.host.json` or `tsconfig.client.json` explicitly — never the root solution, because flattening both aggregates into one program collides the `Context` merges.\n- A new package is registered in exactly one aggregate. Having both a Node loader entry and a browser entry is not a reason to split a package; an ordinary Client plugin produces both runtime artifacts during the Client build phase.\n\n`api/remotes` is the repository's only package with split Host and Client tsconfigs. Its Host entry must participate in the Host TypeRT graph, while its Client entry imports `/remote` declarations that Host tsdown must generate first. The package-root `tsconfig.json` is therefore only a solution, and the two aggregates and direct consumers reference `tsconfig.host.json` or `tsconfig.client.json` respectively. The workspace `constraints` gate walks the reachable Project Reference graph and checks each referencing project's own compiler face: a single-config target remains valid from either face, while a split target must name the matching leaf rather than its solution root or opposite leaf. Do not copy this structure to other packages; see the [`api-remotes` README](../packages/api/remotes/README.md) for the complete boundary.\n\nThe root build follows the generated dependency order:\n\n```sh\ntsc -b tsconfig.host.json\ntsdown --env.DSH_BUILD_FACE host\ntsc -b tsconfig.client.json\ntsdown --env.DSH_BUILD_FACE client\npnpm run build:web\n```\n\nBoth tsdown passes use the same complete workspace match. They neither scan build artifacts to discover Client packages nor maintain a Host/Client package filter list. Package-local tsdown configs select entries for the current phase through `DSH_BUILD_FACE`: an ordinary Client plugin produces both its Node loader and browser bundle during the Client phase; `api-remotes` uses `hostPhase: true` to produce its Host entry early and only its browser bundle during the Client phase. Tsdown consumes only the JavaScript emitted to `lib/types` by the preceding tsc phase.\n\nTypeRT runs only during Host tsdown, seeded by `tsconfig.host.json`. It analyzes Host types and generates both Host reflection artifacts and the Host-for-Client Remote projection; Client tsdown does not start TypeRT. Consequently, `pnpm run typecheck` runs the complete Host lib phase before Client tsc, while `pnpm run build` continues through Client tsdown and the Web build. The [API Remotes generated-contract build note](../.agents/notes/implemented/process/2026-08-08-api-remotes-generated-contract-build.md) records this ordering decision.\n\nStatic analysis and tests resolve workspace imports through the base `paths` map to `src` and must pass on a clean tree; gates that consume built `lib/` output declare that dependency explicitly. Generated Host-for-Client Remote declarations are the deliberate exception: the public `typecheck`, `lint`, and `doc-typecheck` commands generate them first, while internal `*:contracts-ready` scripts assume that an invoking public command or scheduler gate already owns an explicit dependency on the TypeRT contract pass or the complete build. See the [solution-root note](../.agents/notes/implemented/process/2026-07-22-tsconfig-solution-root-two-aggregates.md) for the two-aggregate topology, the [ts-build-config note](../.agents/notes/implemented/process/2026-06-17-ts-build-config.md) for tsc-first emit ownership, and the [TypeRT Remote note](../.agents/notes/implemented/architecture/2026-08-02-typert-remote-method-calls.md) for the gate-preparation contract.\n\nBusiness services declare callable methods on the Host with `@Remote` or `@RemoteScope`; the Host build generates Host-for-Client types and runtime contributions, and the Client's `api-remotes` composition loads those contributions under `ctx.remote` and scoped `agentCtx.remote` namespaces. See [API Gateway](api-gateway.md) for the generated artifacts on both sides, their assembly relationships, the SRC development fallback, and the Web build order.\n\nIf a relevant local check consumes built package output, build once first:\n\n```sh\npnpm run build\n```\n\n`pnpm run hygiene` includes `publint`, which validates package entrypoints against the built `lib/*.js` files, and `verify-node-next-types`, which validates built declarations against a temporary NodeNext consumer. A fresh worktree has no bundled JS or declarations until `pnpm run build` runs; ordinary commits and pushes do not require that build unless their selected checks consume it.\n\n### Environment variables\n\nThe real DeepSeek adapter and key-backed agent demos read credentials from the environment or from a gitignored `.env` at the repo root:\n\n```sh\nDEEPSEEK_API_KEY=sk-...\nDEEPSEEK_BASE_URL=https://... # optional\n```\n\n`DEEPSEEK_BASE_URL` is optional and defaults to the public API. Never commit real credentials. The real-API e2e suites self-skip when `DEEPSEEK_API_KEY` is not set.\n\n### Git integrations\n\nThe pairing merge driver derives a conflicted `.i18n.yaml` record from the confirmed ancestor, current, and other owner blobs when both language files use Git's default text strategy and merge cleanly. It fails closed on owner conflicts, non-text merge configuration, or invalid records; after an already-stopped merge, run `pnpm run resolve-translation-pairing-conflicts`, which stages every safe pairing record and exits unsuccessfully if other pairing conflicts still need manual work. See the [bilingual documentation contract](i18n/README.md#the-pairing-contract) for the exact boundary.\n\nThe installer probes the exact Node/tsx driver entrypoint before publishing its worktree configuration. If that runtime later becomes unavailable, the Node-independent launcher writes Git's ordinary text result, leaves the sidecar unresolved, and prints the recovery path; restore dependencies and run `pnpm run resolve-translation-pairing-conflicts`, or run `git merge --abort`. If `pre-merge-commit` rejects an otherwise clean merge, Git leaves the complete result staged without a commit; repair the failure and run `git commit`, or abort. The [automatic pairing merges Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md#failure-contract) owns the exact index and `MERGE_HEAD` states.\n\nlefthook is configured in `lefthook.yml` as a fast local checkpoint:\n\n- `pre-commit` verifies staged pairing records against the staged owner blobs, applies formatting-only ESLint fixes, validates the staged files with the project-free `.oxlintrc.staged.json` profile and applies Oxlint's native fixes, regenerates `THIRD_PARTY_NOTICES.md` when a staged file is one of its inputs, checks the staged diff for whitespace errors, and runs the vendor manifest guard.\n- `pre-merge-commit` performs the same index-backed pairing check before Git creates an automatic merge commit.\n- `pre-push` runs `pnpm run typecheck`, which completes the Host lib phase, including generated TypeRT contracts, before the Client TypeScript check.\n\nThe vendor manifest guard checks that changes under `vendor/*/src` are staged with the matching `vendor/README.md` manifest update. See `vendor/README.md` before editing vendored code.\n\nApart from the scoped staged-record verification, the hooks intentionally do not run tests, snapshots, documentation checks, builds, or hygiene. Contributors run the [checks relevant to the changed behavior](../AGENTS.md#run-relevant-checks-locally) once; CI owns exhaustive coverage, built-artifact smokes, and the Node 22.19, 24, and 26 compatibility matrix.\n\nContributors can opt into the comprehensive local gate set with `pnpm run check:all`. The command is independent of the Git hooks and is not an agent instruction.\n\n### CI gates\n\nThe keyless [CI workflow](../.github/workflows/ci.yml) groups independent gates into broad lanes and runs a smaller compatibility signal across supported Node versions. Artifact consumers wait for one build within their lane. The separate real-API workflow runs `pnpm run test:e2e` with its configured worker bound. See [scripts/run-gates.ts](../scripts/run-gates.ts) and the workflow files for the current gate and job inventory.\n\n### Daily commands\n\nThe root [contributor instructions](../AGENTS.md#commands) summarize common commands, while [`package.json`](../package.json) and [scripts/run-gates.ts](../scripts/run-gates.ts) own the current script and gate inventories. Select the smallest checks that cover the changed surface. Documentation changes use `pnpm run doc-sync`; package-public behavior changes also update the owning README or JSDoc, and built-artifact checks require `pnpm run build` first.\n\n### Demos\n\nThe one-shot Headless coding agent needs `DEEPSEEK_API_KEY` in the environment or repo-root `.env`:\n\n```sh\npnpm run demo:headless \"summarize this workspace\"\n```\n\nThe self-referential cordis demo can inspect and modify its live plugin runtime and needs the same credentials (`web` by default, or `acp`):\n\n```sh\npnpm run demo:cordis\n```\n\nThe ACP automation server exposes fresh agent sessions over JSON-RPC stdio and also needs `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:acp\n```\n\n### TODO markers\n\nUse one of three comment tags to flag known issues in the code, ordered by urgency:\n\n- `FIXME` — an issue that should block a new release. A release should not ship with an open `FIXME` unless reviewers explicitly agree the change can be merged anyway.\n- `TODO` — an issue that should be fixed soon, once we have the resources.\n- `XXX` — an issue that we may fix someday; lowest priority, no commitment.\n\nPick the tag that matches the urgency so anyone scanning the code can tell a release blocker from a someday-maybe.\n\n### Documenting types verbatim (`ts type-equiv`)\n\nThe [core data structures](core-data-structures/core.md) docs paste source-equivalent declarations together with their original JSDoc so a reader sees the exact shape and source contract. To keep a paste from drifting when source changes, fence it as ` ```ts type-equiv ` (instead of ` ```ts `) and register it in `scripts/type-equiv.manifest.json` with the source file and symbol it mirrors:\n\n```json\n{ \"doc\": \"docs/core-data-structures/session.md\", \"symbol\": \"SessionEvent\", \"source\": \"packages/core/session/src/types.ts\" }\n```\n\n`pnpm run verify-type-equiv` (part of `doc-sync`) then extracts that symbol's declaration and attached JSDoc from source via the TypeScript parser and asserts the block matches both. For a class whose implementation bodies do not belong in the catalog, use ` ```ts public-api ` and set `\"projection\": \"public-api\"`; the checked projection retains the public fields, constructor, accessors, methods, and original class/member JSDoc while omitting bodies and private or protected members. Comparison ignores whitespace and non-JSDoc comments but requires every original JSDoc comment, including member documentation, so readers see the source contract beside the exact shape. The gate enforces a 1:1 correspondence by document, symbol, and projection between primary blocks and manifest entries; a paired `.zh.md` block reuses its unsuffixed sibling's entry only when the whole tracked fence sequence is byte-identical and ordered identically. `doc-typecheck` applies the same derivative rule to compilable fences, while skipping both source-equivalence fence kinds from compilation and its opt-out ratio. When you change a documented declaration or its JSDoc, the gate fails until you update the paste; when you add or remove a primary block, update the manifest in the same change.\n" }, { "role": "assistant", - "content": "# 开发指南\n\n[English](development.md) | 中文\n\n搭建教程引导新贡献者从准备前置条件开始,直到检出通过检查。后面的贡献者参考介绍仓库布局、日常工作流和 CI 形态。设计依据与实现细节属于链接的 Agent Note 和脚本。\n\n## 搭建教程\n\n### 前置条件\n\n- Node.js 支持 22.19+ 与 24+。CI 覆盖 22.19、24 和 26;见 [Node 引擎下限 Agent Note](../.agents/notes/implemented/process/2026-07-06-node-engine-floor.md)。\n- 启用了 Corepack 的 pnpm。仓库在 `package.json` 中固定使用 `pnpm@11.7.0`;如果 `pnpm --version` 无法通过 Corepack 解析,请先运行 `corepack enable`。\n- Git 2.26 或更高版本;钩子设置会启用 Git 的 worktree 专属配置扩展。\n- 可选:一个 DeepSeek API key,用于 Web、headless 和 ACP(Agent Client Protocol)自动化 agent(智能体)演示以及真实 API 的 e2e 测试。\n\n### 首次搭建\n\n在仓库根目录安装依赖:\n\n```sh\npnpm install\n```\n\n安装过程还会通过 `scripts/install-lefthook.mjs` 配置 worktree 本地的 Lefthook 钩子和 `dsh-translation-pairing` Git 合并驱动。[worktree 本地钩子 Agent Note](../.agents/notes/implemented/process/2026-07-27-worktree-local-lefthook.md) 负责钩子路径的安全契约;[自动配对合并 Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) 负责合并驱动。\n\n如果依赖是从缓存恢复或 `postinstall` 被跳过而导致任一集成缺失,请手动安装:\n\n```sh\nnode scripts/install-lefthook.mjs\n```\n\n如果包装脚本拒绝现有 Git 配置或报告陈旧锁,请遵循其诊断和所链接的 Agent Note,不要凭猜测编辑 worktree 元数据。移动检出目录后,请重新运行包装脚本以重新生成自有路径。\n\n新克隆后请先运行一次类型检查:\n\n```sh\npnpm run typecheck\n```\n\n`pnpm run typecheck` 成功退出即表示搭建完成。\n\n## 贡献者参考\n\n### TypeScript 项目布局\n\n仓库使用相互隔离的 Host 与 Client aggregate。普通 package 只登记进其中一个 aggregate;Host 包进入 `tsconfig.host.json`,Client 包进入 `tsconfig.client.json`。\n\n| 文件 | 角色 | 是否构成 program? |\n|---|---|---|\n| `tsconfig.json` | solution 根:`extends` base、`files: []`、引用两个 aggregate。它是 tsserver 发现入口,也是显式执行整张 Project Reference 图时的入口;经继承的 `paths` 充当 tsx 运行 `examples/` 与 `scripts/` 时的解析配置。 | 否 |\n| `tsconfig.host.json` | Host aggregate:Host package、示例、测试、脚本和 website,以及 `api/remotes` 的 Host 特例 project。 | 是 |\n| `tsconfig.client.json` | Client aggregate:`packages/client/*` package 及其测试、`apps/web`,以及 `api/remotes` 的 Client 特例 project。 | 是 |\n| `tsconfig.base.json` | 共享 compilerOptions 与源码 `paths` 映射。同时是各 vitest 配置让 vite-tsconfig-paths 指向的解析门面:它没有 `include`,因此其 `paths` 适用于任何 importer。 | 否 |\n| `tsconfig.base.client.json` | 浏览器编译形状(`jsx`、DOM lib、`types: []`),由 Client aggregate 和每个 `packages/client/*` package extends。 | 否 |\n\nHost 与 Client 保持两个 aggregate program,是因为两侧在相同键下以不同服务对 cordis `Context` 接口做声明合并;单一 program 同时看到两份合并会报冲突。这种冲突只存在于 `ts.Program` 内部——模块解析永远不会触发它——所以 solution 可以同时引用两个 aggregate,一个 paths 门面也可以横跨两侧。由此推出三条纪律:\n\n- `tsconfig.base.json` 永不添加 `include` 或 `files`:它们会泄漏进每个 extends 它的包项目,并收窄门面的全匹配范围。\n- 构造全仓 `ts.Program` 的脚本显式种子 `tsconfig.host.json` 或 `tsconfig.client.json`——永不种子根 solution,因为把两个 aggregate 展平进一个 program 会撞上 `Context` 合并冲突。\n- 新 package 只登记进一个 aggregate。包同时具有 Node loader 入口和 browser 入口并不构成拆分理由;普通 Client plugin 的两份运行时产物都在 Client 构建阶段生成。\n\n`api/remotes` 是唯一拆分 Host/Client tsconfig 的仓库特例。它的 Host 入口必须进入 Host TypeRT 图,而 Client 入口导入 Host tsdown 才会生成的 `/remote` 声明,因此本包根 `tsconfig.json` 只作为 solution,两个 aggregate 和直接消费方分别引用 `tsconfig.host.json` 或 `tsconfig.client.json`。workspace `constraints` 门禁遍历可达的 Project Reference 图,并按各引用 project 自身的 compiler face 检查:只有单一配置的目标可由任一 face 引用,拆分配置的目标则必须引用匹配的 leaf,不得引用 solution 根或另一侧 leaf。不要把该结构推广到其他包;完整边界见 [`api-remotes` README](../packages/api/remotes/README.md)。\n\n根构建按生成依赖排序:\n\n```sh\ntsc -b tsconfig.host.json\ntsdown --env.DSH_BUILD_FACE host\ntsc -b tsconfig.client.json\ntsdown --env.DSH_BUILD_FACE client\npnpm run build:web\n```\n\n两次 tsdown 都使用同一组完整 workspace 匹配,不扫描构建产物来发现 Client package,也不维护 Host/Client package 过滤表。包内 tsdown 配置根据 `DSH_BUILD_FACE` 决定当前阶段的入口:普通 Client plugin 在 Client 阶段同时生成 Node loader 与 browser bundle;`api-remotes` 通过 `hostPhase: true` 提前生成 Host 入口,再在 Client 阶段只生成 browser bundle。tsdown 只消费 `lib/types` 中由前置 tsc 发射的 JavaScript。\n\nTypeRT 只在 Host tsdown 中以 `tsconfig.host.json` 为种子运行。它分析 Host 类型并生成 Host 反射产物及 Host-for-Client Remote 投影;Client tsdown 不启动 TypeRT。`pnpm run typecheck` 因此先执行完整 Host lib 阶段,再运行 Client tsc;`pnpm run build` 继续执行 Client tsdown 和 Web 构建。该顺序的决策记录见 [API Remotes 生成契约构建 Note](../.agents/notes/implemented/process/2026-08-08-api-remotes-generated-contract-build.md)。\n\n静态分析和测试通过 base 的 `paths` 映射把工作区 import 解析到 `src`,且必须在干净树上通过;消费构建产物 `lib/` 的门禁显式声明该依赖。生成的 Host-for-Client Remote 声明是有意设置的例外:公共 `typecheck`、`lint` 和 `doc-typecheck` 命令会先生成这些声明,而内部 `*:contracts-ready` 脚本以调用它的公共命令或调度器门禁已经显式依赖 TypeRT 契约 pass 或完整构建为前提。双 aggregate 拓扑见 [solution-root Note](../.agents/notes/implemented/process/2026-07-22-tsconfig-solution-root-two-aggregates.md),tsc-first 发射职责见 [ts-build-config Note](../.agents/notes/implemented/process/2026-06-17-ts-build-config.md),门禁准备契约见 [TypeRT Remote Agent Note](../.agents/notes/implemented/architecture/2026-08-02-typert-remote-method-calls.md)。\n\n业务 Service 在 Host 使用 `@Remote` 或 `@RemoteScope` 声明可调用方法;Host 构建生成 Host-for-Client 类型与运行时贡献,Client 的 `api-remotes` 组合加载这些贡献并挂到 `ctx.remote` 与作用域 `agentCtx.remote` namespace。两侧的生成产物、装配关系、SRC 开发回退和 Web 构建顺序见 [API Gateway](api-gateway.md)。\n\n如果相关的本地检查需要使用构建后的包产物,请先构建一次:\n\n```sh\npnpm run build\n```\n\n`pnpm run hygiene` 包含 `publint`(用构建出的 `lib/*.js` 文件校验 package 入口点)和 `verify-node-next-types`(用一个临时的 NodeNext 消费方校验构建出的声明文件)。新 worktree 在 `pnpm run build` 运行之前没有打包的 JS 和声明文件;普通提交和推送无需构建,除非所选检查会使用这些产物。\n\n### 环境变量\n\n真实的 DeepSeek 适配器和需要密钥的 agent 演示从环境变量或仓库根目录一个被 gitignore 的 `.env` 文件读取凭证:\n\n```sh\nDEEPSEEK_API_KEY=sk-...\nDEEPSEEK_BASE_URL=https://... # optional\n```\n\n`DEEPSEEK_BASE_URL` 可选,默认为公开 API。请勿提交真实凭证。未设置 `DEEPSEEK_API_KEY` 时,真实 API 的 e2e 套件会自动跳过。\n\n### Git 集成\n\n当两种语言的文件都使用 Git 默认文本策略且能干净合并时,配对合并驱动会根据已确认的祖先、当前和另一侧的配对文档 blob,推导出发生冲突的 `.i18n.yaml` 记录。配对文档发生冲突、存在非文本合并配置或记录无效时,它会拒绝处理并保留冲突;如果合并已经因冲突而停止,请运行 `pnpm run resolve-translation-pairing-conflicts`,该命令会暂存每份可安全生成的配对记录;如果其他配对冲突仍需手工处理,则以非零状态退出。确切边界见[双语文档契约](i18n/README.md#the-pairing-contract)。\n\nlefthook 在 `lefthook.yml` 中配置,作为快速的本地检查点:\n\n- `pre-commit` 对照暂存的配对文档 blob 校验暂存的配对记录,应用仅用于格式化的 ESLint 修复,使用不加载项目的 `.oxlintrc.staged.json` 配置验证暂存文件并应用 Oxlint 的原生修复,在暂存文件属于 `THIRD_PARTY_NOTICES.md` 的输入时重新生成该文件,然后检查暂存 diff 中的空白错误,并运行 vendor manifest(元数据清单)守卫;\n- `pre-merge-commit` 在 Git 创建自动合并提交前执行同样以索引为准的配对检查;\n- `pre-push` 运行 `pnpm run typecheck`;该命令会先完成包含 TypeRT 契约生成的完整 Host lib 阶段,再运行 Client TypeScript 检查。\n\nvendor manifest 守卫检查 `vendor/*/src` 下的改动是否连同对应的 `vendor/README.md` manifest 更新一起暂存。请在编辑 vendor 代码前先阅读 `vendor/README.md`。\n\n除限定范围的暂存记录校验外,这些钩子有意不运行测试、快照、文档检查、构建或 `hygiene`。贡献者只运行一次[与改动行为相关的检查](../AGENTS.md#run-relevant-checks-locally);CI 负责全量覆盖率门禁、构建产物冒烟测试,以及 Node 22.19、24 和 26 兼容性矩阵。\n\n贡献者可以选择运行 `pnpm run check:all`,执行全面的本地门禁集。该命令独立于 Git 钩子,也不是对 agent 的指令。\n\n### CI 门禁\n\nkeyless [CI 工作流](../.github/workflows/ci.yml) 将独立门禁分组到若干宽粒度 lane,并在受支持的 Node 版本上运行一组较小的兼容性检查。产物消费方在各自 lane 内等待一次 build。单独的真实 API 工作流按其配置的 worker 上限运行 `pnpm run test:e2e`。当前门禁和 job 清单以 [scripts/run-gates.ts](../scripts/run-gates.ts) 和工作流文件为准。\n\n### 日常命令\n\n根目录的[贡献者说明](../AGENTS.md#commands)概述常用命令,[`package.json`](../package.json) 与 [scripts/run-gates.ts](../scripts/run-gates.ts) 则负责当前脚本和门禁清单。请选择覆盖变更表面的最小检查集。文档变更使用 `pnpm run doc-sync`;package 公开行为变更还需更新所属 README 或 JSDoc,而基于构建产物的检查需要先运行 `pnpm run build`。\n\n### 演示\n\n单次运行的 Headless coding agent 需要环境变量或仓库根目录 `.env` 中的 `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:headless \"summarize this workspace\"\n```\n\n自指的 cordis 演示可以检查并修改其实时插件运行时,并需要相同的凭证(默认 `web`,也可用 `acp`):\n\n```sh\npnpm run demo:cordis\n```\n\nACP 自动化服务器通过 JSON-RPC stdio 提供全新 agent 会话,同样需要 `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:acp\n```\n\n### TODO 标记\n\n请使用以下三种注释标签之一标记代码中的已知问题,按紧急程度排序:\n\n- `FIXME`:应当阻塞新版本发布的问题。除非评审者明确同意该更改可以合并,否则发布版本不应包含未解决的 `FIXME`;\n- `TODO`:应当尽快修复的问题,等资源到位即可处理;\n- `XXX`:也许某天会修复的问题,优先级最低,不作承诺。\n\n请选择与紧急程度匹配的标签,让浏览代码的人一眼分清「发布阻塞」和「有空再说」。\n\n### 逐字记录类型(`ts type-equiv`)\n\n[核心数据结构](core-data-structures/core.md)文档会把与源码等价的声明及其原始 JSDoc 一并粘贴,让读者看到确切形状和源码契约。为防止粘贴内容在源码变化时漂移,请将其围栏为 ` ```ts type-equiv `(而不是 ` ```ts `),并在 `scripts/type-equiv.manifest.json` 中登记它镜像的源文件和符号:\n\n```json\n{ \"doc\": \"docs/core-data-structures/session.md\", \"symbol\": \"SessionEvent\", \"source\": \"packages/core/session/src/types.ts\" }\n```\n\n`pnpm run verify-type-equiv`(`doc-sync` 的一环)随后通过 TypeScript 解析器从源码提取该符号的声明及其附带的 JSDoc,并断言代码块同时匹配两者。对于不应把实现体写进目录的类,请使用 ` ```ts public-api ` 并设置 `\"projection\": \"public-api\"`;门禁检查的投影会保留公共字段、构造函数、访问器、方法以及类和成员的原始 JSDoc,同时省略实现体和私有或受保护成员。比对会忽略空白和非 JSDoc 注释,但要求保留每条原始 JSDoc(包括成员文档),让读者同时看到源码契约和确切形状。该门禁按文档、符号和投影,在主块与 manifest 条目之间强制 1:1 对应;只有当配对 `.zh.md` 块的完整受跟踪围栏序列与其无后缀兄弟文件按字节一致且顺序相同时,才会复用后者的条目。`doc-typecheck` 对可编译围栏应用同一派生规则,同时跳过两种源码等价围栏的编译,并将其排除在 opt-out 比例之外。当你改动一个已记录的类型声明或其 JSDoc 时,门禁会失败直到你更新粘贴内容;当你增删一个主块时,请在同一个变更里更新 manifest。\n" + "content": "# 开发指南\n\n[English](development.md) | 中文\n\n搭建教程引导新贡献者从准备前置条件开始,直到检出通过检查。后面的贡献者参考介绍仓库布局、日常工作流和 CI 形态。设计依据与实现细节属于链接的 Agent Note 和脚本。\n\n## 搭建教程\n\n### 前置条件\n\n- Node.js 支持 22.19+ 与 24+。CI 覆盖 22.19、24 和 26;见 [Node 引擎下限 Agent Note](../.agents/notes/implemented/process/2026-07-06-node-engine-floor.md)。\n- 启用了 Corepack 的 pnpm。仓库在 `package.json` 中固定使用 `pnpm@11.7.0`;如果 `pnpm --version` 无法通过 Corepack 解析,请先运行 `corepack enable`。\n- Git 2.26 或更高版本;钩子设置会启用 Git 的 worktree 专属配置扩展。\n- 可选:一个 DeepSeek API key,用于 Web、headless 和 ACP(Agent Client Protocol)自动化 agent(智能体)演示以及真实 API 的 e2e 测试。\n\n### 首次搭建\n\n在仓库根目录安装依赖:\n\n```sh\npnpm install\n```\n\n安装过程还会通过 `scripts/install-lefthook.mjs` 配置 worktree 本地的 Lefthook 钩子和 `dsh-translation-pairing` Git 合并驱动。[worktree 本地钩子 Agent Note](../.agents/notes/implemented/process/2026-07-27-worktree-local-lefthook.md) 负责钩子路径的安全契约;[自动配对合并 Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) 负责合并驱动。\n\n如果依赖是从缓存恢复或 `postinstall` 被跳过而导致任一集成缺失,请手动安装:\n\n```sh\nnode scripts/install-lefthook.mjs\n```\n\n如果包装脚本拒绝现有 Git 配置或报告陈旧锁,请遵循其诊断和所链接的 Agent Note,不要凭猜测编辑 worktree 元数据。移动检出目录后,请重新运行包装脚本以重新生成自有路径。\n\n新克隆后请先运行一次类型检查:\n\n```sh\npnpm run typecheck\n```\n\n`pnpm run typecheck` 成功退出即表示搭建完成。\n\n## 贡献者参考\n\n### TypeScript 项目布局\n\n仓库使用相互隔离的 Host 与 Client aggregate。普通 package 只登记进其中一个 aggregate;Host 包进入 `tsconfig.host.json`,Client 包进入 `tsconfig.client.json`。\n\n| 文件 | 角色 | 是否构成 program? |\n|---|---|---|\n| `tsconfig.json` | solution 根:`extends` base、`files: []`、引用两个 aggregate。它是 tsserver 发现入口,也是显式执行整张 Project Reference 图时的入口;经继承的 `paths` 充当 tsx 运行 `examples/` 与 `scripts/` 时的解析配置。 | 否 |\n| `tsconfig.host.json` | Host aggregate:Host package、示例、测试、脚本和 website,以及 `api/remotes` 的 Host 特例 project。 | 是 |\n| `tsconfig.client.json` | Client aggregate:`packages/client/*` package 及其测试、`apps/web`,以及 `api/remotes` 的 Client 特例 project。 | 是 |\n| `tsconfig.base.json` | 共享 compilerOptions 与源码 `paths` 映射。同时是各 vitest 配置让 vite-tsconfig-paths 指向的解析门面:它没有 `include`,因此其 `paths` 适用于任何 importer。 | 否 |\n| `tsconfig.base.client.json` | 浏览器编译形状(`jsx`、DOM lib、`types: []`),由 Client aggregate 和每个 `packages/client/*` package extends。 | 否 |\n\nHost 与 Client 保持两个 aggregate program,是因为两侧在相同键下以不同服务对 cordis `Context` 接口做声明合并;单一 program 同时看到两份合并会报冲突。这种冲突只存在于 `ts.Program` 内部——模块解析永远不会触发它——所以 solution 可以同时引用两个 aggregate,一个 paths 门面也可以横跨两侧。由此推出三条纪律:\n\n- `tsconfig.base.json` 永不添加 `include` 或 `files`:它们会泄漏进每个 extends 它的包项目,并收窄门面的全匹配范围。\n- 构造全仓 `ts.Program` 的脚本显式种子 `tsconfig.host.json` 或 `tsconfig.client.json`——永不种子根 solution,因为把两个 aggregate 展平进一个 program 会撞上 `Context` 合并冲突。\n- 新 package 只登记进一个 aggregate。包同时具有 Node loader 入口和 browser 入口并不构成拆分理由;普通 Client plugin 的两份运行时产物都在 Client 构建阶段生成。\n\n`api/remotes` 是唯一拆分 Host/Client tsconfig 的仓库特例。它的 Host 入口必须进入 Host TypeRT 图,而 Client 入口导入 Host tsdown 才会生成的 `/remote` 声明,因此本包根 `tsconfig.json` 只作为 solution,两个 aggregate 和直接消费方分别引用 `tsconfig.host.json` 或 `tsconfig.client.json`。workspace `constraints` 门禁遍历可达的 Project Reference 图,并按各引用 project 自身的 compiler face 检查:只有单一配置的目标可由任一 face 引用,拆分配置的目标则必须引用匹配的 leaf,不得引用 solution 根或另一侧 leaf。不要把该结构推广到其他包;完整边界见 [`api-remotes` README](../packages/api/remotes/README.md)。\n\n根构建按生成依赖排序:\n\n```sh\ntsc -b tsconfig.host.json\ntsdown --env.DSH_BUILD_FACE host\ntsc -b tsconfig.client.json\ntsdown --env.DSH_BUILD_FACE client\npnpm run build:web\n```\n\n两次 tsdown 都使用同一组完整 workspace 匹配,不扫描构建产物来发现 Client package,也不维护 Host/Client package 过滤表。包内 tsdown 配置根据 `DSH_BUILD_FACE` 决定当前阶段的入口:普通 Client plugin 在 Client 阶段同时生成 Node loader 与 browser bundle;`api-remotes` 通过 `hostPhase: true` 提前生成 Host 入口,再在 Client 阶段只生成 browser bundle。tsdown 只消费 `lib/types` 中由前置 tsc 发射的 JavaScript。\n\nTypeRT 只在 Host tsdown 中以 `tsconfig.host.json` 为种子运行。它分析 Host 类型并生成 Host 反射产物及 Host-for-Client Remote 投影;Client tsdown 不启动 TypeRT。`pnpm run typecheck` 因此先执行完整 Host lib 阶段,再运行 Client tsc;`pnpm run build` 继续执行 Client tsdown 和 Web 构建。该顺序的决策记录见 [API Remotes 生成契约构建 Note](../.agents/notes/implemented/process/2026-08-08-api-remotes-generated-contract-build.md)。\n\n静态分析和测试通过 base 的 `paths` 映射把工作区 import 解析到 `src`,且必须在干净树上通过;消费构建产物 `lib/` 的门禁显式声明该依赖。生成的 Host-for-Client Remote 声明是有意设置的例外:公共 `typecheck`、`lint` 和 `doc-typecheck` 命令会先生成这些声明,而内部 `*:contracts-ready` 脚本以调用它的公共命令或调度器门禁已经显式依赖 TypeRT 契约 pass 或完整构建为前提。双 aggregate 拓扑见 [solution-root Note](../.agents/notes/implemented/process/2026-07-22-tsconfig-solution-root-two-aggregates.md),tsc-first 发射职责见 [ts-build-config Note](../.agents/notes/implemented/process/2026-06-17-ts-build-config.md),门禁准备契约见 [TypeRT Remote Agent Note](../.agents/notes/implemented/architecture/2026-08-02-typert-remote-method-calls.md)。\n\n业务 Service 在 Host 使用 `@Remote` 或 `@RemoteScope` 声明可调用方法;Host 构建生成 Host-for-Client 类型与运行时贡献,Client 的 `api-remotes` 组合加载这些贡献并挂到 `ctx.remote` 与作用域 `agentCtx.remote` namespace。两侧的生成产物、装配关系、SRC 开发回退和 Web 构建顺序见 [API Gateway](api-gateway.md)。\n\n如果相关的本地检查需要使用构建后的包产物,请先构建一次:\n\n```sh\npnpm run build\n```\n\n`pnpm run hygiene` 包含 `publint`(用构建出的 `lib/*.js` 文件校验 package 入口点)和 `verify-node-next-types`(用一个临时的 NodeNext 消费方校验构建出的声明文件)。新 worktree 在 `pnpm run build` 运行之前没有打包的 JS 和声明文件;普通提交和推送无需构建,除非所选检查会使用这些产物。\n\n### 环境变量\n\n真实的 DeepSeek 适配器和需要密钥的 agent 演示从环境变量或仓库根目录一个被 gitignore 的 `.env` 文件读取凭证:\n\n```sh\nDEEPSEEK_API_KEY=sk-...\nDEEPSEEK_BASE_URL=https://... # optional\n```\n\n`DEEPSEEK_BASE_URL` 可选,默认为公开 API。请勿提交真实凭证。未设置 `DEEPSEEK_API_KEY` 时,真实 API 的 e2e 套件会自动跳过。\n\n### Git 集成\n\n当两种语言的文件都使用 Git 默认文本策略且能干净合并时,配对合并驱动会根据已确认的祖先、当前和另一侧的配对文档 blob,推导出发生冲突的 `.i18n.yaml` 记录。配对文档发生冲突、存在非文本合并配置或记录无效时,它会拒绝处理并保留冲突;如果合并已经因冲突而停止,请运行 `pnpm run resolve-translation-pairing-conflicts`,该命令会暂存每份可安全生成的配对记录;如果其他配对冲突仍需手工处理,则以非零状态退出。确切边界见[双语文档契约](i18n/README.md#the-pairing-contract)。\n\n安装脚本在发布 worktree 配置前,会探测确切的 Node/tsx 驱动入口点。如果该运行时之后变得不可用,不依赖 Node 的启动器会写入 Git 的普通文本合并结果、让伴随文件保持未解决状态,并打印恢复路径;请恢复依赖后运行 `pnpm run resolve-translation-pairing-conflicts`,或运行 `git merge --abort`。如果 `pre-merge-commit` 拒绝原本能干净完成的合并,Git 会把完整结果留在暂存区但不创建提交;请修复失败后运行 `git commit`,或中止合并。确切的索引与 `MERGE_HEAD` 状态由[自动配对合并 Agent Note](../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md#failure-contract)负责记录。\n\nlefthook 在 `lefthook.yml` 中配置,作为快速的本地检查点:\n\n- `pre-commit` 对照暂存的配对文档 blob 校验暂存的配对记录,应用仅用于格式化的 ESLint 修复,使用不加载项目的 `.oxlintrc.staged.json` 配置验证暂存文件并应用 Oxlint 的原生修复,在暂存文件属于 `THIRD_PARTY_NOTICES.md` 的输入时重新生成该文件,然后检查暂存 diff 中的空白错误,并运行 vendor manifest(元数据清单)守卫;\n- `pre-merge-commit` 在 Git 创建自动合并提交前执行同样以索引为准的配对检查;\n- `pre-push` 运行 `pnpm run typecheck`;该命令会先完成包含 TypeRT 契约生成的完整 Host lib 阶段,再运行 Client TypeScript 检查。\n\nvendor manifest 守卫检查 `vendor/*/src` 下的改动是否连同对应的 `vendor/README.md` manifest 更新一起暂存。请在编辑 vendor 代码前先阅读 `vendor/README.md`。\n\n除限定范围的暂存记录校验外,这些钩子有意不运行测试、快照、文档检查、构建或 `hygiene`。贡献者只运行一次[与改动行为相关的检查](../AGENTS.md#run-relevant-checks-locally);CI 负责全量覆盖率门禁、构建产物冒烟测试,以及 Node 22.19、24 和 26 兼容性矩阵。\n\n贡献者可以选择运行 `pnpm run check:all`,执行全面的本地门禁集。该命令独立于 Git 钩子,也不是对 agent 的指令。\n\n### CI 门禁\n\nkeyless [CI 工作流](../.github/workflows/ci.yml) 将独立门禁分组到若干宽粒度 lane,并在受支持的 Node 版本上运行一组较小的兼容性检查。产物消费方在各自 lane 内等待一次 build。单独的真实 API 工作流按其配置的 worker 上限运行 `pnpm run test:e2e`。当前门禁和 job 清单以 [scripts/run-gates.ts](../scripts/run-gates.ts) 和工作流文件为准。\n\n### 日常命令\n\n根目录的[贡献者说明](../AGENTS.md#commands)概述常用命令,[`package.json`](../package.json) 与 [scripts/run-gates.ts](../scripts/run-gates.ts) 则负责当前脚本和门禁清单。请选择覆盖变更表面的最小检查集。文档变更使用 `pnpm run doc-sync`;package 公开行为变更还需更新所属 README 或 JSDoc,而基于构建产物的检查需要先运行 `pnpm run build`。\n\n### 演示\n\n单次运行的 Headless coding agent 需要环境变量或仓库根目录 `.env` 中的 `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:headless \"summarize this workspace\"\n```\n\n自指的 cordis 演示可以检查并修改其实时插件运行时,并需要相同的凭证(默认 `web`,也可用 `acp`):\n\n```sh\npnpm run demo:cordis\n```\n\nACP 自动化服务器通过 JSON-RPC stdio 提供全新 agent 会话,同样需要 `DEEPSEEK_API_KEY`:\n\n```sh\npnpm run demo:acp\n```\n\n### TODO 标记\n\n请使用以下三种注释标签之一标记代码中的已知问题,按紧急程度排序:\n\n- `FIXME`:应当阻塞新版本发布的问题。除非评审者明确同意该更改可以合并,否则发布版本不应包含未解决的 `FIXME`;\n- `TODO`:应当尽快修复的问题,等资源到位即可处理;\n- `XXX`:也许某天会修复的问题,优先级最低,不作承诺。\n\n请选择与紧急程度匹配的标签,让浏览代码的人一眼分清「发布阻塞」和「有空再说」。\n\n### 逐字记录类型(`ts type-equiv`)\n\n[核心数据结构](core-data-structures/core.md)文档会把与源码等价的声明及其原始 JSDoc 一并粘贴,让读者看到确切形状和源码契约。为防止粘贴内容在源码变化时漂移,请将其围栏为 ` ```ts type-equiv `(而不是 ` ```ts `),并在 `scripts/type-equiv.manifest.json` 中登记它镜像的源文件和符号:\n\n```json\n{ \"doc\": \"docs/core-data-structures/session.md\", \"symbol\": \"SessionEvent\", \"source\": \"packages/core/session/src/types.ts\" }\n```\n\n`pnpm run verify-type-equiv`(`doc-sync` 的一环)随后通过 TypeScript 解析器从源码提取该符号的声明及其附带的 JSDoc,并断言代码块同时匹配两者。对于不应把实现体写进目录的类,请使用 ` ```ts public-api ` 并设置 `\"projection\": \"public-api\"`;门禁检查的投影会保留公共字段、构造函数、访问器、方法以及类和成员的原始 JSDoc,同时省略实现体和私有或受保护成员。比对会忽略空白和非 JSDoc 注释,但要求保留每条原始 JSDoc(包括成员文档),让读者同时看到源码契约和确切形状。该门禁按文档、符号和投影,在主块与 manifest 条目之间强制 1:1 对应;只有当配对 `.zh.md` 块的完整受跟踪围栏序列与其无后缀兄弟文件按字节一致且顺序相同时,才会复用后者的条目。`doc-typecheck` 对可编译围栏应用同一派生规则,同时跳过两种源码等价围栏的编译,并将其排除在 opt-out 比例之外。当你改动一个已记录的类型声明或其 JSDoc 时,门禁会失败直到你更新粘贴内容;当你增删一个主块时,请在同一个变更里更新 manifest。\n" }, { "role": "user", diff --git a/scripts/translation-pairing-merge.spec.ts b/scripts/translation-pairing-merge.spec.ts index 26f13748ed..118a2023b9 100644 --- a/scripts/translation-pairing-merge.spec.ts +++ b/scripts/translation-pairing-merge.spec.ts @@ -58,6 +58,28 @@ function installFixtureRuntime(root: string): void { symlinkSync(join(workspaceRoot, 'scripts'), join(root, 'scripts'), linkType) } +function startMergeWithFakeNode( + fixture: Fixture, + nodeScript = '#!/bin/sh\nexit 72\n', +) { + const fakeBin = join(fixture.root, 'fake-bin') + const fakeNode = join(fakeBin, 'node') + write(fixture.root, 'fake-bin/node', nodeScript) + chmodSync(fakeNode, 0o755) + git(fixture, [ + 'config', + 'merge.dsh-translation-pairing.driver', + `${shellQuote(driverLauncher)} %O %A %B %P`, + ]) + return spawnSync('git', ['-C', fixture.root, 'merge', '--no-commit', 'master'], { + encoding: 'utf8', + env: { + ...fixture.env, + PATH: `${fakeBin}${delimiter}${fixture.env.PATH ?? ''}`, + }, + }) +} + function createFixture(attributes = true): Fixture { const root = mkdtempSync(join(tmpdir(), 'dsh-translation-pairing-merge-')) fixtures.push(root) @@ -327,24 +349,9 @@ describe('translation pairing merge composition', () => { it('leaves an ordinary recoverable conflict when the configured runtime is unavailable', () => { const fixture = createFixture() const records = createDivergedPair(fixture) - const fakeBin = join(fixture.root, 'fake-bin') - const fakeNode = join(fakeBin, 'node') - write(fixture.root, 'fake-bin/node', '#!/bin/sh\nexit 72\n') - chmodSync(fakeNode, 0o755) - const command = [ - shellQuote(driverLauncher), - '%O', '%A', '%B', '%P', - ].join(' ') - git(fixture, ['config', 'merge.dsh-translation-pairing.driver', command]) const headBefore = git(fixture, ['rev-parse', 'HEAD']) - const result = spawnSync('git', ['-C', fixture.root, 'merge', '--no-commit', 'master'], { - encoding: 'utf8', - env: { - ...fixture.env, - PATH: `${fakeBin}${delimiter}${fixture.env.PATH ?? ''}`, - }, - }) + const result = startMergeWithFakeNode(fixture) expect(result.status).toBe(1) expect(result.stderr).toContain('runtime is unavailable; leaving an ordinary text conflict') @@ -366,27 +373,10 @@ describe('translation pairing merge composition', () => { it('falls back before a broken driver entrypoint can replace the launcher', () => { const fixture = createFixture() createDivergedPair(fixture) - const fakeBin = join(fixture.root, 'fake-bin') - const fakeNode = join(fakeBin, 'node') - write( - fixture.root, - 'fake-bin/node', + const result = startMergeWithFakeNode( + fixture, '#!/bin/sh\nif [ "$3" = "--eval" ]; then exit 0; fi\nexit 72\n', ) - chmodSync(fakeNode, 0o755) - git(fixture, [ - 'config', - 'merge.dsh-translation-pairing.driver', - `${shellQuote(driverLauncher)} %O %A %B %P`, - ]) - - const result = spawnSync('git', ['-C', fixture.root, 'merge', '--no-commit', 'master'], { - encoding: 'utf8', - env: { - ...fixture.env, - PATH: `${fakeBin}${delimiter}${fixture.env.PATH ?? ''}`, - }, - }) expect(result.status).toBe(1) expect(result.stderr).toContain('runtime is unavailable; leaving an ordinary text conflict') @@ -398,23 +388,7 @@ describe('translation pairing merge composition', () => { it('keeps a clean text fallback unresolved until the explicit resolver confirms it', () => { const fixture = createFixture() createTextCleanDivergedPair(fixture) - const fakeBin = join(fixture.root, 'fake-bin') - const fakeNode = join(fakeBin, 'node') - write(fixture.root, 'fake-bin/node', '#!/bin/sh\nexit 72\n') - chmodSync(fakeNode, 0o755) - git(fixture, [ - 'config', - 'merge.dsh-translation-pairing.driver', - `${shellQuote(driverLauncher)} %O %A %B %P`, - ]) - - const result = spawnSync('git', ['-C', fixture.root, 'merge', '--no-commit', 'master'], { - encoding: 'utf8', - env: { - ...fixture.env, - PATH: `${fakeBin}${delimiter}${fixture.env.PATH ?? ''}`, - }, - }) + const result = startMergeWithFakeNode(fixture) expect(result.status).toBe(1) expect(git(fixture, ['diff', '--name-only', '--diff-filter=U'])).toBe('docs/guide.i18n.yaml')