fix(skill): enforce manual invocation policy

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Tianyi Cui authored and Turtle committed 2026-08-10 18:04:26 +08:00
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@@ -2,5 +2,5 @@
# side as of the last confirmed-consistent state. Both languages carry equal authority;
# after editing either side, bring the other along and re-record with:
# pnpm run verify-translation-pairing --write .agents/notes/implemented/process/2026-08-08-lightweight-routine-documentation-translation.md
2026-08-08-lightweight-routine-documentation-translation.md: 713c2f14541aff49411b6f7d8b6bf5b4e02fa667
2026-08-08-lightweight-routine-documentation-translation.zh.md: 7cb13e9fcaa8b8a4d38ab6c0050eec99c1025b46
2026-08-08-lightweight-routine-documentation-translation.md: ff4d6005588b562018bf1ee40d6dabb5569766f0
2026-08-08-lightweight-routine-documentation-translation.zh.md: fe809d328e739c2c869d5597cf6786198864bd56
@@ -10,8 +10,8 @@ Routine bilingual edits automatically selected the full [translation skill](../.
## Decision
- **Routine translation is one shot and one pass.** The active agent loads [terminology.md](../../../../docs/i18n/terminology.md), translates only the changed content directly, preserves reviewed counterpart prose outside the change, and re-records the pair. It does not invoke a translation skill, generate a briefing, start a separate translation-review pass, or delegate translation to a subagent.
- **The extended workflow is manual-only.** [dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md) retains its briefing, delegated prose, whole-document, and scoped-verification paths. Claude Code sees `disable-model-invocation: true` with `user-invocable: true` in `SKILL.md`; Codex sees `policy.allow_implicit_invocation: false` in `agents/openai.yaml`. The repository's `.claude/skills` symlink projects the same skill directory to Claude Code, so both products share one committed workflow while enforcing their own invocation metadata.
- **Routine translation is one shot and one pass.** The active agent loads [terminology.md](../../../../docs/i18n/terminology.md), translates only the changed content directly, moves a terminology annotation when the true first occurrence crosses the edit boundary, otherwise preserves reviewed counterpart prose outside the change, and re-records the pair. It does not invoke a translation skill, generate a briefing, start a separate translation-review pass, or delegate translation to a subagent.
- **The extended workflow is manual-only.** [dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md) retains its briefing, delegated prose, whole-document, and scoped-verification paths. The [Claude Code skill contract](https://code.claude.com/docs/en/skills#control-who-invokes-a-skill) reads `disable-model-invocation: true` with `user-invocable: true` in `SKILL.md`; Codex reads `policy.allow_implicit_invocation: false` in `agents/openai.yaml`. The repository's `.claude/skills` symlink projects the same skill directory to Claude Code, so both products share one committed workflow while enforcing their own invocation metadata. The `doc-sync` skill-invocation-metadata gate keeps those independent policies aligned.
- **Automatic workflows do not chain into the manual skill.** Root and documentation instructions own the lightweight default. Documentation, website-sync, prose, and code-review skills link to those instructions or the i18n contracts instead of loading `dsh-translate-docs` from an inferred bilingual change.
- **The pairing and review contracts stay intact.** Both language files still update together, untouched counterpart wording remains stable, terminology stays binding, the consistency record is rewritten only after the active agent confirms the pair, and `doc-sync` retains the corpus-wide mechanical checks. Human review still owns semantic translation quality.
@@ -27,4 +27,4 @@ Routine bilingual edits automatically selected the full [translation skill](../.
- Ordinary development pays for the changed source text, its local counterpart context, and the terminology table rather than the extended workflow's briefing and subagent context.
- The active agent owns the final routine translation in the same turn. The lightweight path deliberately gives up the extended workflow's generated alignment, delegated isolation, and separate prose-verification pass.
- Explicit users can still invoke the full workflow through `/dsh-translate-docs` in Claude Code or `$dsh-translate-docs` in Codex.
- The Claude Code frontmatter and Codex policy file are separate product contracts and must remain aligned when the skill's invocation policy changes.
- The Claude Code frontmatter and Codex policy file are separate product contracts; `doc-sync` rejects a skill that becomes manual-only on only one product or becomes unavailable to the Claude Code user as well as the model.
@@ -10,8 +10,8 @@ Status: implemented
## 决策
- **日常翻译一次完成,只处理一遍。** 当前 agent(智能体)加载 [terminology.md](../../../../docs/i18n/terminology.md),直接翻译发生改动的内容,保留改动之外已经评审的对侧文件行文,并重新记录配对。它不会调用翻译 skill、生成简报、启动单独的翻译评审轮次,也不会把翻译委派给 subagent。
- **扩展工作流仅限手动调用。** [dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md) 保留简报、行文翻译委派、整篇文档和按范围核验路径。在 `SKILL.md` 中,Claude Code 读取 `disable-model-invocation: true` 和 `user-invocable: true`;在 `agents/openai.yaml` 中,Codex 读取 `policy.allow_implicit_invocation: false`。仓库的 `.claude/skills` 符号链接把同一个 skill 目录映射给 Claude Code,因此两个产品共享同一份提交到仓库的工作流,同时分别执行各自的调用元数据契约。
- **日常翻译一次完成,只处理一遍。** 当前 agent(智能体)加载 [terminology.md](../../../../docs/i18n/terminology.md),直接翻译发生改动的内容;如果术语的实际首现位置跨过了编辑边界,则移动相应括注,否则保留改动之外已经评审的对侧文件行文;最后重新记录配对。它不会调用翻译 skill、生成简报、启动单独的翻译评审轮次,也不会把翻译委派给 subagent。
- **扩展工作流仅限手动调用。** [dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md) 保留简报、行文翻译委派、整篇文档和按范围核验路径。[Claude Code skill 契约](https://code.claude.com/docs/en/skills#control-who-invokes-a-skill)读取 `SKILL.md` 中的 `disable-model-invocation: true` 和 `user-invocable: true`;Codex 读取 `agents/openai.yaml` 中的 `policy.allow_implicit_invocation: false`。仓库的 `.claude/skills` 符号链接把同一个 skill 目录映射给 Claude Code,因此两个产品共享同一份提交到仓库的工作流,同时分别执行各自的调用元数据契约。`doc-sync` 中的 skill 调用元数据门禁会让这两份独立策略保持一致。
- **自动工作流不会串联调用这项仅限手动调用的 skill。** 轻量默认行为由根级指令和文档指令定义。文档、网站同步、行文和代码评审 skill 会链接这些指令或 i18n 契约,而不会因为推断到双语改动就加载 `dsh-translate-docs`。
- **配对契约与评审契约保持不变。** 两种语言文件仍会一并更新;未触及的对侧文件措辞保持稳定;术语约束仍然有效;只有当前 agent 确认配对后,才会重写一致性记录;`doc-sync`(文档同步门禁)继续执行全语料机械检查。语义层面的翻译质量仍由人工评审负责。
@@ -27,4 +27,4 @@ Status: implemented
- 普通开发的成本来自发生改动的源文本、其局部对侧文件上下文和术语表,不再来自扩展工作流的简报与 subagent 上下文。
- 当前 agent 在同一轮次内对日常翻译的最终结果负责。轻量路径有意放弃扩展工作流提供的自动生成对齐信息、委派所提供的隔离,以及单独的行文核验轮次。
- 用户仍可在 Claude Code 中通过 `/dsh-translate-docs`,或在 Codex 中通过 `$dsh-translate-docs` 显式调用完整工作流。
- Claude Code frontmatter 与 Codex 策略文件是彼此独立的产品契约;skill 调用策略变更时,两者必须保持一致。
- Claude Code frontmatter 与 Codex 策略文件是彼此独立的产品契约;如果某项 skill 仅在一个产品中变为手动调用,或者在 Claude Code 中对模型和用户都不可用,`doc-sync` 会拒绝该状态。
@@ -49,6 +49,7 @@ When translations need to be written from scratch, the orchestrating agent does
- **Pass 1 — write, don't transpose.** Read a semantic unit, then restate it as a native technical author in the nearest [style sample's](../../../docs/i18n/style-samples.md) register. Preserve the required frame without forcing sentence-by-sentence correspondence.
- **Pass 2 — verify against the source, clause by clause.** Fidelity is checked here, not written in: confirm nothing was added or dropped, every term follows the table, and each code span survived verbatim. Fix by rewriting the sentence natively, not by patching words into it.
- **Read the completed counterpart alone.** After the source comparison, read the translated file without the source beside it and rewrite phrasing whose awkwardness only becomes visible in isolation.
- Write only the final text to the file, never drafts or notes.
- Every term in [terminology.md](../../../docs/i18n/terminology.md) renders exactly as specified. For a Chinese target, use the Chinese and first-occurrence columns; an unlisted term needs a citable Chinese OSS/vendor precedent or stays English under 「待定术语」. For an English target, use the English column and an established English technical term; preserve an ambiguous source term with a short gloss and list it as pending. Never invent a rendering inline.
- Code blocks are byte-identical across the pair, comments included. Relative links keep their `.md` targets; only the switcher line links `.zh.md`.
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@@ -40,7 +40,7 @@ Placement: bugs → postmortems; rationale → Agent Notes; procedures → cookb
- **One physical line per paragraph** (`verify-md-wrap`): use editor soft-wrap. Code blocks, tables, and list structure keep their formatting; code comments stay under the linter's column limit.
- **Fenced `ts` blocks must compile** (`doc-typecheck`); a pasted type declaration and its original JSDoc use ` ```ts type-equiv `, while a body-stripped public class declaration uses ` ```ts public-api `; register either in the manifest so neither can drift ([mechanics](development.md#documenting-types-verbatim-ts-type-equiv)).
- **The owning [subsystems page](subsystems/README.md) updates in the same change** that reshapes a documented type. `verify-type-equiv` catches drifted pastes, not never-documented new types; a type is documented on its declaring package group's page ([page scoping](../.agents/notes/implemented/process/2026-08-03-package-anchored-subsystem-pages.md)).
- **Bilingual pairs update together**: load [terminology](i18n/terminology.md), translate changed content one-shot and one-pass in the active agent, preserve untouched counterpart prose, and re-record. Only explicit user invocation may run `dsh-translate-docs` ([contract](i18n/README.md)).
- **Pairs update together**: [Terminology-guided](i18n/terminology.md), single-pass active-agent work repositions first-use annotations, preserves untouched prose, and re-records; `dsh-translate-docs` remains user-invoked ([contract](i18n/README.md)).
- **Comments and JSDoc state complete contracts, not reasoning transcripts.** Preserve behavior, failure, timing, ownership, modality, exceptions, consequences, and non-obvious orientation; delete narration, test walkthroughs, review analysis, and code restatement. Keep the local contract and link its rationale. Use [dsh-prose-standard](../.agents/skills/dsh-prose-standard/SKILL.md) for details.
- Write directly: name actors and facts ([decision](../.agents/notes/implemented/process/2026-08-09-concrete-prose-names-actors-and-recorded-facts.md)). Reserve `seam` for the defined capability. Name the exact check, type, API, operation, or behavior instead of metaphorical "gate", "vocabulary", or "surface".
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@@ -77,6 +77,7 @@
"verify-agent-note-format": "tsx scripts/verify-agent-note-format.ts",
"verify-archived-agent-notes": "tsx scripts/verify-archived-agent-notes.ts",
"verify-type-equiv": "tsx scripts/verify-type-equiv.ts",
"verify-skill-invocation-metadata": "tsx scripts/verify-skill-invocation-metadata.ts",
"verify-translation-prompt": "tsx scripts/verify-translation-prompt.ts",
"verify-translation-pairing": "tsx scripts/verify-translation-pairing.ts",
"resolve-translation-pairing-conflicts": "tsx scripts/merge-translation-pairing.ts --resolve",
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@@ -599,6 +599,7 @@ function docSyncLeafGates(options: {
pnpmScript('agent-note-format', 'verify-agent-note-format', { label: 'agent note format' }),
pnpmScript('archived-agent-notes', 'verify-archived-agent-notes', { label: 'archived agent notes' }),
pnpmScript('type-equivalence', 'verify-type-equiv', { label: 'type equivalence' }),
pnpmScript('skill-invocation-metadata', 'verify-skill-invocation-metadata', { label: 'skill invocation metadata' }),
pnpmScript('translation-prompt', 'verify-translation-prompt', { label: 'translation prompt' }),
pnpmScript('translation-pairing', 'verify-translation-pairing', { label: 'translation pairing' }),
pnpmScript('doc-budgets', 'verify-doc-budgets', { label: 'doc budgets' }),
@@ -24,19 +24,11 @@
},
{
"role": "user",
<<<<<<< HEAD
"content": "# Bilingual documentation\n\nEnglish | [中文](README.zh.md)\n\nThis repo's documentation is read by people and agents both inside and outside the company, so every document in scope is maintained in English and Simplified Chinese. This page defines the pairing contract, checks, scope, and exclusions; [translation-rules.md](translation-rules.md) defines how to translate; [terminology.md](terminology.md) is the terminology source of truth. The committed agent workflow lives in [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md).\n\n## The pairing contract\n\n- **Both languages carry equal authority.** A document may be authored and reviewed in either language first — a Chinese-first Agent Note is as legitimate as an English-first one — and the counterpart is translated from it. Neither file outranks the other; what binds them is that they must say the same thing.\n- **A pair is three sibling files.** The English `foo.md`, the Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`, all in the same directory. No locale directories, no separate translation repo, no interleaved bilingual files. Pairs merge whole: a PR never lands one language without the other two files.\n- **The consistency record.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last time the two were confirmed to say the same thing:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. `--write` stores those snapshots in the local Git object database before recording them, including uncommitted working-tree contents, and pins every distinct stored blob under a content-addressed `refs/dsh/translation-pairing/snapshots/` ref so garbage collection cannot invalidate a recorded recovery pointer. The recorded hashes therefore recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. `pnpm run gen-translation-brief <pair>` assembles that update's working set mechanically at the narrowest safely aligned granularity — changed Markdown units, then heading sections, then whole document — with the edited side's diff since last confirmation, each changed span's three-way text, the terminology rows the change touches, and the binding update rules; a change confined to the pair's byte-identical code fences is computed outright, and `--apply` splices it into the counterpart after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write <pair>` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form).\n\n When two branches contain valid confirmations of the same pair, the installed `dsh-translation-pairing` Git merge driver composes a new record only if Git's default text merge succeeds for both recorded owner-blob triplets and the merged pair retains its required switchers and structural signature. The Chinese file must retain its English backlink; an authored English source must retain its Chinese link, while a listed generated English source is exempt. Any structure the driver cannot verify remains an ordinary conflict; `pnpm run resolve-translation-pairing-conflicts` applies the same fail-closed operation to a merge that has already stopped, stages every safe pairing record, and exits unsuccessfully when other pairing conflicts remain. The [automatic pairing merges Agent Note](../../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) owns the mechanism and alternatives.\n- **Language switcher.** The Chinese file always links back immediately after its H1 heading with `[English](foo.md) | 中文`. An authored English file reciprocates there with `English | [中文](foo.zh.md)`; a listed generated English source omits that line so it remains byte-identical to generator output.\n- **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`).\n\n## The gate: verify-translation-pairing\n\n`pnpm run verify-translation-pairing` (part of `doc-sync`, which contributors run locally for documentation changes and CI runs exhaLine truncated
"content": "# Bilingual documentation\n\nEnglish | [中文](README.zh.md)\n\nThis repo's documentation is read by people and agents both inside and outside the company, so every document in scope is maintained in English and Simplified Chinese. This page defines the pairing contract, checks, scope, and exclusions; [translation-rules.md](translation-rules.md) defines how to translate; [terminology.md](terminology.md) is the terminology source of truth. Routine agent work follows the lightweight path in [docs/AGENTS.md](../AGENTS.md); the extended [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) workflow is available only through explicit user invocation.\n\n## The pairing contract\n\n- **Both languages carry equal authority.** A document may be authored and reviewed in either language first — a Chinese-first Agent Note is as legitimate as an English-first one — and the counterpart is translated from it. Neither file outranks the other; what binds them is that they must say the same thing.\n- **A pair is three sibling files.** The English `foo.md`, the Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`, all in the same directory. No locale directories, no separate translation repo, no interleaved bilingual files. Pairs merge whole: a PR never lands one language without the other two files.\n- **The consistency record.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last time the two were confirmed to say the same thing:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. `--write` stores those snapshots in the local Git object database before recording them, including uncommitted working-tree contents, and pins every distinct stored blob under a content-addressed `refs/dsh/translation-pairing/snapshots/` ref so garbage collection cannot invalidate a recorded recovery pointer. The recorded hashes therefore recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. Routine work makes that patch directly; when the user explicitly invokes the extended workflow, `pnpm run gen-translation-brief <pair>` can instead assemble the update at the narrowest safely aligned granularity and `--apply` can splice a code-fence-only change after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write <pair>` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form).\n\n When two branches contain valid confirmations of the same pair, the installed `dsh-translation-pairing` Git merge driver composes a new record only if Git's default text merge succeeds for both recorded owner-blob triplets and the merged pair retains its required switchers and structural signature. The Chinese file must retain its English backlink; an authored English source must retain its Chinese link, while a listed generated English source is exempt. Any structure the driver cannot verify remains an ordinary conflict; `pnpm run resolve-translation-pairing-conflicts` applies the same fail-closed operation to a merge that has already stopped, stages every safe pairing record, and exits unsuccessfully when other pairing conflicts remain. The [automatic pairing merges Agent Note](../../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) owns the mechanism and alternatives.\n- **Language switcher.** The Chinese file always links back immediately after its H1 heading with `[English](foo.md) | 中文`. An authored English file reciprocates there with `English | [中文](foo.zh.md)`; a listed generated English source omits that line so it remains byte-identical to generator output.\n- **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`).\n\n## The gate: verify-translation-pairing\n\n`pnpm run verify-translation-pairing` (part of `doc-sync`, which contributors run locally for documentation changes and CI runs exhaustively) enforces the contract mechanically:\n\n1. Every document in scope has a complete pair. README discovery iLine truncated
},
{
"role": "assistant",
"content": "# 双语文档\n\n[English](README.md) | 中文\n\n本仓库的文档会被公司内外的人和 agent(智能体)阅读,因此范围内的每篇文档都以英文和简体中文维护。本页定义配对约定、检查、范围与排除规则;[translation-rules.md](translation-rules.md) 定义如何翻译;[terminology.md](terminology.md) 是术语真源。仓库内置的 agent 工作流见 [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md)。\n\n## 配对约定\n\n- **两种语言同权。** 一篇文档可以先用任一语言撰写和评审(先写中文的 Agent Note 与先写英文的一样正当),另一侧由它翻译而来。两个文件谁也不高于谁;约束它们的是二者必须说同样的话。\n- **一对文档是三个同目录文件。** 英文 `foo.md`、中文 `foo.zh.md`,加一份一致性记录 `foo.i18n.yaml`,都在同一目录。不用语言目录,不用独立翻译仓库,不用中英混排的单文件。配对必须整体合并:PR(Pull Request)永远不会只带一种语言而缺其余两个文件。\n- **一致性记录。**`foo.i18n.yaml` 保存两侧文件在上一次被确认「说同样的话」时各自的完整 git blob hash:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。`--write` 会先把这些快照存入本地 Git 对象库再写下记录,未提交的工作树内容也不例外;它还会在内容寻址的 `refs/dsh/translation-pairing/snapshots/` ref 下固定每个不同的已存 blob,使垃圾回收无法让已记录的恢复指针失效。因此记录的 hash 能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。`pnpm run gen-translation-brief <pair>` 会以能安全对齐的最窄粒度——先是有改动的 Markdown 单元,再是标题小节,最后是整篇文档——机械地汇集这次更新的工作集:被改一侧自上次确认以来的 diff、每个改动块的三方文本、改动触及的术语表行,以及有约束力的更新规则;仅落在配对中逐字节一致的围栏代码块内的改动可以直接算出,`--apply` 则经结构签名校验后把它拼接进对侧文件([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write <pair>` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。\n\n 当两个分支都包含同一配对的有效确认时,已安装的 `dsh-translation-pairing` Git 合并驱动只会在 Git 默认文本合并能分别干净合并记录所指向的英文三方 blob 与中文三方 blob,且合并后的配对仍保留必需的语言切换行和结构签名时,组合出一份新记录。中文文件必须保留指向英文的反向链接;普通撰写的英文源必须保留指向中文的链接,而清单内的生成英文源不作此要求。任何合并驱动无法验证的结构都保留为普通冲突;`pnpm run resolve-translation-pairing-conflicts` 会对已经停止的合并执行同一套遇错即保留冲突的操作,暂存每份可安全生成的配对记录,并在还有其他配对冲突时以非零状态退出。[自动配对合并 Agent Note](../../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) 负责记录该机制与备选方案。\n- **语言切换行。** 中文文件一律在 H1 标题后立即以 `[English](foo.md) | 中文` 链回英文。普通撰写的英文文件在同一位置以 `English | [中文](foo.zh.md)` 互链;清单内的生成英文源省略此行,以便与生成器输出逐字节一致。\n- **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。\n\n## 门禁:verify-translation-pairing\n\n`pnpm run verify-translation-pairing`(`doc-sync`(文档同步门禁)的一环,贡献者会针对文档变更在本地运行,CI 则会完整运行)机械地强制执行这份约定:\n\n1. 范围内的每篇文档都有完整配对。发现 README 时,basename 不区分大小写,因此 `missions/readme.md` 与其他文档根一样属于范围。\n2. 任何已存在的配对产Line truncated
=======
"content": "# Bilingual documentation\n\nEnglish | [中文](README.zh.md)\n\nThis repo's documentation is read by people and agents both inside and outside the company, so every document in scope is maintained in English and Simplified Chinese. This page defines the pairing contract, enforcement gate, scope, and exclusions; [translation-rules.md](translation-rules.md) defines how to translate; [terminology.md](terminology.md) is the terminology source of truth. Routine agent work follows the lightweight path in [docs/AGENTS.md](../AGENTS.md); the extended [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) workflow is available only through explicit user invocation.\n\n## The pairing contract\n\n- **Both languages carry equal authority.** A document may be authored and reviewed in either language first — a Chinese-first Agent Note is as legitimate as an English-first one — and the counterpart is translated from it. Neither file outranks the other; what binds them is that they must say the same thing.\n- **A pair is three sibling files.** The English `foo.md`, the Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`, all in the same directory. No locale directories, no separate translation repo, no interleaved bilingual files. Pairs merge whole: a PR never lands one language without the other two files.\n- **The consistency record.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last time the two were confirmed to say the same thing:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n Blob hashes, not commit hashes, so the record is computable for files edited in the same PR (`git hash-object foo.md`) and consistency is a pure content comparison. `--write` stores those snapshots in the local Git object database before recording them, including uncommitted working-tree contents, and pins every distinct stored blob under a content-addressed `refs/dsh/translation-pairing/snapshots/` ref so garbage collection cannot invalidate a recorded recovery pointer. The recorded hashes therefore recover the exact last-confirmed text of either side, so an out-of-sync pair is updated by patching the counterpart minimally against the edited side's diff — never by re-translating whole files. Routine work makes that patch directly; when the user explicitly invokes the extended workflow, `pnpm run gen-translation-brief <pair>` can instead assemble the update at the narrowest safely aligned granularity and `--apply` can splice a code-fence-only change after structural validation ([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md)). After bringing the pair back in line, `pnpm run verify-translation-pairing --write <pair>` re-records both hashes; that yaml diff is the reviewable act of confirming consistency, which is why `--write` requires naming the pairs you confirmed (`--write --all` is the explicit corpus-wide form).\n- **Language switcher.** Both files link to each other immediately after their H1 heading: the English file carries `English | [中文](foo.zh.md)` and the Chinese file carries `[English](foo.md) | 中文`.\n- **Structure mirrors the counterpart.** Heading depths and order, list kinds, ordered-list starts, list item counts, table row and column counts, link targets, and verbatim code blocks match one to one across the pair — see [translation-rules.md](translation-rules.md) for the full preservation rules. Existing Markdown gates apply to `.zh.md` files unchanged (`verify-md-wrap`, `verify-md-links`).\n\n## The gate: verify-translation-pairing\n\n`pnpm run verify-translation-pairing` (part of `doc-sync`, which contributors run locally for documentation changes and CI runs exhaustively) enforces the contract mechanically:\n\n1. Every document in scope has a complete pair. README discovery is case-insensitive on the basename, so `missions/readme.md` is in scope alongside the other documentation roots.\n2. Every pair artifact that exists at all is complete and consistent: all three files present, each side's current blob hash equals the recorded one (editing either side without re-confirming the pair goes red), both sides carry the language switcher, and the structural signatures match in order — heading depths, verbatim code blocks (info string and content), table row and column counts, list kinds, ordered-list starts, item counts, and every link target apart from the switcher.\n3. Files listed as `excluded` have no `.zh.md` and no `.i18n.yaml` at all. Frozen Agent Notes under `.agents/notes/archived/` are outside this evolving gate; their dedicated verifier requires and seals the complete existing triplet instead.\n\nSource-oriented code gates consume an exact `.zh.md` fence sequence as a derivative of its unsuffixed sibling instead of compiling or manifesting the same code twice. The sLine truncated
},
{
"role": "assistant",
"content": "# 双语文档\n\n[English](README.md) | 中文\n\n本仓库的文档会被公司内外的人和 agent(智能体)阅读,因此范围内的每篇文档都以英文和简体中文维护。本页定义配对契约、强制门禁、范围与排除规则;[translation-rules.md](translation-rules.md) 定义如何翻译;[terminology.md](terminology.md) 是术语真源。agent 的日常工作遵循 [docs/AGENTS.md](../AGENTS.md) 中的轻量路径;扩展版 [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) 工作流仅在用户显式调用时可用。\n\n## 配对契约\n\n- **两种语言同权。** 一篇文档可以先用任一语言撰写和评审(先写中文的 Agent Note 与先写英文的一样正当),另一侧由它翻译而来。两个文件谁也不高于谁;约束它们的是二者必须说同样的话。\n- **一对文档是三个同目录文件。** 英文 `foo.md`、中文 `foo.zh.md`,加一份一致性记录 `foo.i18n.yaml`,都在同一目录。不用语言目录,不用独立翻译仓库,不用中英混排的单文件。配对必须整体合并:PR(Pull Request)永远不会只带一种语言而缺其余两个文件。\n- **一致性记录。**`foo.i18n.yaml` 保存两侧文件在上一次被确认「说同样的话」时各自的完整 git blob hash:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。`--write` 会先把这些快照存入本地 Git 对象库再写下记录,未提交的工作树内容也不例外;它还会在内容寻址的 `refs/dsh/translation-pairing/snapshots/` ref 下固定每个不同的已存 blob,使垃圾回收无法让已记录的恢复指针失效。因此记录的 hash 能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。日常工作会直接完成这份修补;用户显式调用扩展工作流时,可改由 `pnpm run gen-translation-brief <pair>` 以能安全对齐的最窄粒度汇集这次更新,并由 `--apply` 在结构校验后拼接仅涉及围栏代码块的改动([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write <pair>` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。\n- **语言切换行。** 两个文件在各自 H1 标题之后立即互链:英文文件带 `English | [中文](foo.zh.md)`,中文文件带 `[English](foo.md) | 中文`。\n- **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。\n\n## 门禁:verify-translation-pairing\n\n`pnpm run verify-translation-pairing`(`doc-sync`(文档同步门禁)的一环,贡献者会针对文档变更在本地运行,CI 则会完整运行)机械地强制执行这份契约:\n\n1. 范围内的每篇文档都有完整配对。发现 README 时,basename 不区分大小写,因此 `missions/readme.md` 与其他文档根一样属于范围。\n2. 任何已存在的配对产物都完整且一致:三个文件齐全、每一侧的当前 blob hash 等于记录值(改了任一侧而没重新确认配对就变红)、双方都带语言切换行、结构签名按序一致:标题深度、逐字节一致的代码块(信息字符串与内容)、表格行列数、列表类型、有序列表起始编号、列表项数量,以及除切换行之外的每个链接目标。\n3. 列为 `excluded` 的文件完全没有 `.zh.md`,也没有 `.i18n.yaml`。`.agents/notes/archived/` 下冻结的 Agent Note 不受这个持续演进的门禁约束;专用校验器会要求其现有的三个配对文件完整,并将其封存。\n\n面向源码的代码门禁会把精确的 `.zh.md` 围栏序列视为其无后缀兄弟文件的派生内容,而不会再次编译相同代码或在 manifest 中重复登记。该序列必须在长度、顺序、围栏类型和按字节精确的正文上一致;否则两份副本仍会独立受检,配对门禁也会报告结构不匹配。\n\n`pnpm run verify-translation-pairing --list` 打印范围内每篇文档的当前配对状态(missing、out-of-sync 或 ok)。它从不失败;其中 missing 与 out-of-sync 行Line truncated
>>>>>>> 45777c7624 (test(snapshot): refresh translation prompt fixture)
"content": "# 双语文档\n\n[English](README.md) | 中文\n\n本仓库的文档会被公司内外的人和 agent(智能体)阅读,因此范围内的每篇文档都以英文和简体中文维护。本页定义配对约定、检查、范围与排除规则;[translation-rules.md](translation-rules.md) 定义如何翻译;[terminology.md](terminology.md) 是术语真源。agent 的日常工作遵循 [docs/AGENTS.md](../AGENTS.md) 中的轻量路径;扩展版 [.agents/skills/dsh-translate-docs](../../.agents/skills/dsh-translate-docs/SKILL.md) 工作流仅在用户显式调用时可用。\n\n## 配对约定\n\n- **两种语言同权。** 一篇文档可以先用任一语言撰写和评审(先写中文的 Agent Note 与先写英文的一样正当),另一侧由它翻译而来。两个文件谁也不高于谁;约束它们的是二者必须说同样的话。\n- **一对文档是三个同目录文件。** 英文 `foo.md`、中文 `foo.zh.md`,加一份一致性记录 `foo.i18n.yaml`,都在同一目录。不用语言目录,不用独立翻译仓库,不用中英混排的单文件。配对必须整体合并:PR(Pull Request)永远不会只带一种语言而缺其余两个文件。\n- **一致性记录。**`foo.i18n.yaml` 保存两侧文件在上一次被确认「说同样的话」时各自的完整 git blob hash:\n\n ```yaml\n foo.md: 3f786850e387550fdab836ed7e6dc881de23001b\n foo.zh.md: 89e6c98d92887913cadf06b2adb97f26cde4849b\n ```\n\n 用 blob hash 而不是 commit hash,这样同一个 PR 里改动的文件也能算出记录(`git hash-object foo.md`),一致性是纯内容比较。`--write` 会先把这些快照存入本地 Git 对象库再写下记录,未提交的工作树内容也不例外;它还会在内容寻址的 `refs/dsh/translation-pairing/snapshots/` ref 下固定每个不同的已存 blob,使垃圾回收无法让已记录的恢复指针失效。因此记录的 hash 能还原任一侧上次确认时的确切文本,所以失去同步的配对是「按被改一侧的 diff 最小化地修补另一侧」,从不整篇重译。日常工作会直接完成这份修补;用户显式调用扩展工作流时,可改由 `pnpm run gen-translation-brief <pair>` 以能安全对齐的最窄粒度汇集这次更新,并由 `--apply` 在结构校验后拼接仅涉及围栏代码块的改动([briefed-updates Agent Note](../../.agents/notes/implemented/process/2026-07-26-briefed-minimal-translation-updates.md))。两侧对齐后,`pnpm run verify-translation-pairing --write <pair>` 重新记录两个 hash;那份 yaml diff 就是「确认一致」这个动作本身,可以被评审,也正因如此,`--write` 要求点名你确认过的配对(`--write --all` 是显式的全语料形式)。\n\n 当两个分支都包含同一配对的有效确认时,已安装的 `dsh-translation-pairing` Git 合并驱动只会在 Git 默认文本合并能分别干净合并记录所指向的英文三方 blob 与中文三方 blob,且合并后的配对仍保留必需的语言切换行和结构签名时,组合出一份新记录。中文文件必须保留指向英文的反向链接;普通撰写的英文源必须保留指向中文的链接,而清单内的生成英文源不作此要求。任何合并驱动无法验证的结构都保留为普通冲突;`pnpm run resolve-translation-pairing-conflicts` 会对已经停止的合并执行同一套遇错即保留冲突的操作,暂存每份可安全生成的配对记录,并在还有其他配对冲突时以非零状态退出。[自动配对合并 Agent Note](../../.agents/notes/implemented/process/2026-08-08-automatic-translation-pairing-merges.md) 负责记录该机制与备选方案。\n- **语言切换行。** 中文文件一律在 H1 标题后立即以 `[English](foo.md) | 中文` 链回英文。普通撰写的英文文件在同一位置以 `English | [中文](foo.zh.md)` 互链;清单内的生成英文源省略此行,以便与生成器输出逐字节一致。\n- **结构与另一侧一一对应。** 标题深度与顺序、列表类型、有序列表起始编号、列表项数量、表格行列数、链接目标与逐字节一致的代码块在配对两侧一一对应;完整保持规则见 [translation-rules.md](translation-rules.md)。既有 Markdown 门禁对 `.zh.md` 文件原样生效(`verify-md-wrap`、`verify-md-links`)。\n\n## 门禁:verify-translation-pairing\n\n`pnpm run verify-translation-pairing`(`doc-sync`(文档同步门禁)的一环,贡献者会针对文档变更在本地运行,CI 则会完整运行)机械地强制执行这份约定:\n\n1. 范围内的每篇文档都有完整配对。发现 README 时,basename 不区分大小写,因此 `missions/readme.md` 与其他文档根一样属于范围。\n2. 任何已存在的配对产物都完整且一致:三个文件齐全、每一侧的当前 blob hash 等于记录值(改了任一侧而没重新确认配对就变红)Line truncated
},
{
"role": "user",
@@ -48,19 +40,11 @@
},
{
"role": "user",
<<<<<<< HEAD
"content": "# Agent Note: Bilingual documentation via paired sibling files and a pairing gate\n\nStatus: implemented\n\nEnglish | [中文](2026-07-02-bilingual-docs-and-pairing-gate.zh.md)\n\n## Problem\n\nThis repo's documentation corpus is read by people and agents inside and outside the company, in both English and Chinese. Maintaining a second language by hand, with no mechanism, is how translations rot: one side moves on, the other silently lies, and no gate notices. The repo's standing answer to invariants of this kind is to encode them as a mechanical check (see [quality gates](2026-06-11-quality-gates.md) and [doc-sync enforcement](../../archived/process/2026-06-11-doc-sync-enforcement.md)), so the bilingual policy ships with one.\n\n## Decision\n\n- **Paired sibling files with equal authority.** A documentation pair is three sibling files: English `foo.md`, Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`. Neither language is canonical — a document may be authored and reviewed Chinese-first and translated to English afterwards, or the reverse; what binds the pair is that both sides must say the same thing, and pairs merge whole (both languages plus the record, never one alone). Policy: [docs/i18n/README.md](../../../../docs/i18n/README.md); translation rules: [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md); terminology source of truth: [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md).\n- **A sidecar record of both blob hashes makes consistency checkable.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last confirmed-consistent state. An edit to either side without re-confirming the pair is then mechanically detectable as a pure content comparison — no history lookup — and the hashes are computable for files edited in the same PR, which a commit-hash record is not. Re-recording (`verify-translation-pairing --write <pair>`, which requires naming the confirmed pairs — bulk re-record is an explicit `--write --all`) produces a reviewable yaml diff: confirming consistency is an explicit, visible act in the PR.\n- **`verify-translation-pairing` joins `doc-sync`.** The gate ([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts)) enforces: every discovered, non-excluded source has a complete pair; every existing pair is complete (all three files) and consistent (both hashes match, the Chinese side and every authored English source carry their switchers while listed generated English sources are exempt, structural signatures identical); and excluded generated, instruction, or bilingual-by-construction files stay unpaired. [scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) contains only explicit exclusions, so no requirement can bypass discovery and receive a weaker check. Source-oriented code gates consume a `.zh.md` fence sequence as a derivative only when its unsuffixed sibling has the same tracked fences in the same order with byte-identical bodies; an incomplete, reordered, reclassified, or changed sequence stays independent, so the owning code gate or pairing gate reports the mismatch.\n- **One corpus-wide requirement.** Every document in scope requires a complete pair from creation; the policy has no per-file rollout state, date cutoff, or README-specific class. README discovery covers every case-insensitive README basename outside vendored, dependency, and ignored build-output trees, including future top-level directories. A site-published pair uses `pairedPages()` so the root locale projects `.zh.md` and `/en/` projects `.md`; creating a counterpart alone does not publish it.\n- **Pairing records are metadata, not Cordis Loader configuration.** Cordis configuration discovery accepts actual `.cordis.yml` and `.cordis.yaml` files while excluding `*.i18n.yaml`, even when the document name contains `cordis`. This preserves validation of executable Loader entries without parsing translation hashes as configuration.\n- **Translation is agent work with human review.** The committed workflow is [.agents/skills/dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md), following the same pattern as [dsh-code-review](../../../skills/dsh-code-review/SKILL.md): the skill carries the workflow and defers to the docs as sources of truth. The skill directs the orchestrating agent to delegate translation writing to a subagent.\n\n## Verification\n\nThe verification contract covers each boundary independently. `verify-translation-pairing` pins pair completeness, hashes, switchers, and structure; [`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) pins locale-specific source selection for published pairs; [`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) pins discovery of Loader YAML and exclusion of translation records; and the [translation-prompt runnable snapshot](../../../../sLine truncated
"content": "# Agent Note: Bilingual documentation via paired sibling files and a pairing gate\n\nStatus: implemented\n\nEnglish | [中文](2026-07-02-bilingual-docs-and-pairing-gate.zh.md)\n\n## Problem\n\nThis repo's documentation corpus is read by people and agents inside and outside the company, in both English and Chinese. Maintaining a second language by hand, with no mechanism, is how translations rot: one side moves on, the other silently lies, and no gate notices. The repo's standing answer to invariants of this kind is to encode them as a mechanical check (see [quality gates](2026-06-11-quality-gates.md) and [doc-sync enforcement](../../archived/process/2026-06-11-doc-sync-enforcement.md)), so the bilingual policy ships with one.\n\n## Decision\n\n- **Paired sibling files with equal authority.** A documentation pair is three sibling files: English `foo.md`, Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`. Neither language is canonical — a document may be authored and reviewed Chinese-first and translated to English afterwards, or the reverse; what binds the pair is that both sides must say the same thing, and pairs merge whole (both languages plus the record, never one alone). Policy: [docs/i18n/README.md](../../../../docs/i18n/README.md); translation rules: [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md); terminology source of truth: [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md).\n- **A sidecar record of both blob hashes makes consistency checkable.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last confirmed-consistent state. An edit to either side without re-confirming the pair is then mechanically detectable as a pure content comparison — no history lookup — and the hashes are computable for files edited in the same PR, which a commit-hash record is not. Re-recording (`verify-translation-pairing --write <pair>`, which requires naming the confirmed pairs — bulk re-record is an explicit `--write --all`) produces a reviewable yaml diff: confirming consistency is an explicit, visible act in the PR.\n- **`verify-translation-pairing` joins `doc-sync`.** The gate ([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts)) enforces: every discovered, non-excluded source has a complete pair; every existing pair is complete (all three files) and consistent (both hashes match, the Chinese side and every authored English source carry their switchers while listed generated English sources are exempt, structural signatures identical); and excluded generated, instruction, or bilingual-by-construction files stay unpaired. [scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) contains only explicit exclusions, so no requirement can bypass discovery and receive a weaker check. Source-oriented code gates consume a `.zh.md` fence sequence as a derivative only when its unsuffixed sibling has the same tracked fences in the same order with byte-identical bodies; an incomplete, reordered, reclassified, or changed sequence stays independent, so the owning code gate or pairing gate reports the mismatch.\n- **One corpus-wide requirement.** Every document in scope requires a complete pair from creation; the policy has no per-file rollout state, date cutoff, or README-specific class. README discovery covers every case-insensitive README basename outside vendored, dependency, and ignored build-output trees, including future top-level directories. A site-published pair uses `pairedPages()` so the root locale projects `.zh.md` and `/en/` projects `.md`; creating a counterpart alone does not publish it.\n- **Pairing records are metadata, not Cordis Loader configuration.** Cordis configuration discovery accepts actual `.cordis.yml` and `.cordis.yaml` files while excluding `*.i18n.yaml`, even when the document name contains `cordis`. This preserves validation of executable Loader entries without parsing translation hashes as configuration.\n- **Translation is agent work with human review.** Routine changes use the direct one-pass path owned by the [lightweight-translation decision](2026-08-08-lightweight-routine-documentation-translation.md). The [extended translation skill](../../../skills/dsh-translate-docs/SKILL.md) retains delegated translation and the other heavier mechanisms for explicit user invocation; both paths defer to the documentation contracts as their sources of truth.\n\n## Verification\n\nThe verification contract covers each boundary independently. `verify-translation-pairing` pins pair completeness, hashes, switchers, and structure; [`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) pins locale-specific source selection for published pairs; [`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) pins discovery of Loader YAML and exclusion of translation records; and the [translation-pLine truncated
},
{
"role": "assistant",
"content": "# Agent Note: 通过配对兄弟文件与配对门禁实现双语文档\n\nStatus: implemented\n\n[English](2026-07-02-bilingual-docs-and-pairing-gate.md) | 中文\n\n## 问题\n\n本仓库的文档语料会被公司内外的人和 agent(智能体)以中英两种语言阅读。在没有机制的情况下纯靠手工维护第二语言,正是译文腐烂的根源:一侧持续演进,另一侧默默失实,而没有门禁会注意到。对于这类不变式,本仓库一贯的做法是将其编码为机械检查(见[质量门禁](2026-06-11-quality-gates.md)与 [doc-sync 强制](../../archived/process/2026-06-11-doc-sync-enforcement.md)),因此双语政策随附一道门禁一起交付。\n\n## 决策\n\n- **配对兄弟文件,两种语言同权。** 一对文档由三个兄弟文件组成:英文 `foo.md`、中文 `foo.zh.md`,以及一份一致性记录 `foo.i18n.yaml`。没有哪种语言是正典:一篇文档可以先用中文撰写和评审、之后再译成英文,反之亦可;约束配对的是:两侧必须表达相同的内容,且配对整体合并(两种语言加记录,绝不单独落一侧)。政策见 [docs/i18n/README.md](../../../../docs/i18n/README.md);翻译规则见 [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md);术语真源见 [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md)。\n- **伴随记录保存两侧 blob hash,使一致性可检查。** `foo.i18n.yaml` 保存两侧文件在上一次确认一致时各自的完整 git blob hash。此后修改了任一侧而未重新确认配对,都能被机械检测出来(纯内容比较,无需查询历史),而且同一个 PR(Pull Request)内改动的文件也能计算出 hash,commit hash 式的记录做不到这一点。重新记录(`verify-translation-pairing --write <pair>`,要求点名所确认的配对;批量重新记录是显式的 `--write --all`)会产生一份可评审的 yaml diff:确认一致在 PR 中是一个显式、可见的动作。\n- **`verify-translation-pairing` 加入 `doc-sync`。** 门禁([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts))强制执行以下规则:每个已发现且未排除的源文档都有完整配对;每个现有配对都完整(三个文件齐全)且一致(两个 hash 匹配、中文侧和所有普通撰写的英文源都带切换行而清单内的生成英文源除外、结构签名一致);被排除的生成文档、指令文档或本身即双语的文档不得配对。[scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) 只包含显式排除项,因此任何要求都无法绕过发现流程而接受较弱的检查。只有当 `.zh.md` 围栏序列与其无后缀兄弟文件拥有顺序相同、正文按字节一致的同一组受跟踪围栏时,面向源码的代码门禁才会将其作为派生内容消费;不完整、顺序变更、重分类或已改动的序列仍会独立受检,因此由其所属的代码门禁或配对门禁报告不匹配。\n- **全语料统一要求。** 范围内的每篇文档从创建起就必须有完整配对;政策没有逐文件推进状态、日期分界或 README 专用类别。README 发现会覆盖 vendor 源码、依赖目录与被忽略的构建产物目录之外所有文件名不区分大小写匹配 README 的文件,包括今后新增的顶层目录。发布到文档站的配对使用 `pairedPages()`,由根 locale 投影 `.zh.md`,由 `/en/` 投影 `.md`;仅创建对侧文件并不会发布它。\n- **配对记录是元数据,而不是 Cordis Loader 配置。** Cordis 配置发现会接受实际的 `.cordis.yml` 和 `.cordis.yaml` 文件,同时排除 `*.i18n.yaml`,即使文档名中包含 `cordis` 也不例外。这样既能继续校验可执行的 Loader 配置项,又不会把翻译 hash 当作配置来解析。\n- **翻译是 agent 的工作,由人评审。** 仓库内置的工作流是 [.agents/skills/dsh-translate-docs](../../../skills/dsh-translate-docs/SKILL.md),与 [dsh-code-review](../../../skills/dsh-code-review/SKILL.md) 模式相同:skill(技能)承载工作流,并将文档作为真源。该 skill 要求编排 agent 把翻译写作委派给 subagent。\n\n## 验证\n\n验证约定分别覆盖每个边界。`verify-translation-pairing` 固定配对完整性、hash、切换行和结构;[`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) 固定已发布配对按 locale 选择对应源文件;[`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) 固定 Loader YAML 的发现以及翻译记录的排除;[翻译提示词可运行快照](../../../../scripts/translation-prompt.snapshot.ts)则固定渲染后的系统消息、五对经评审的示例、源请求和响应消费结果。这些检查共同使配对漂移、发布漂移、配置误分Line truncated
=======
"content": "# Agent Note: Bilingual documentation via paired sibling files and a pairing gate\n\nStatus: implemented\n\nEnglish | [中文](2026-07-02-bilingual-docs-and-pairing-gate.zh.md)\n\n## Problem\n\nThis repo's documentation corpus is read by people and agents inside and outside the company, in both English and Chinese. Maintaining a second language by hand, with no mechanism, is how translations rot: one side moves on, the other silently lies, and no gate notices. The repo's standing answer to invariants of this kind is to encode them as a mechanical check (see [quality gates](2026-06-11-quality-gates.md) and [doc-sync enforcement](../../archived/process/2026-06-11-doc-sync-enforcement.md)), so the bilingual policy ships with one.\n\n## Decision\n\n- **Paired sibling files with equal authority.** A documentation pair is three sibling files: English `foo.md`, Chinese `foo.zh.md`, and a consistency record `foo.i18n.yaml`. Neither language is canonical — a document may be authored and reviewed Chinese-first and translated to English afterwards, or the reverse; what binds the pair is that both sides must say the same thing, and pairs merge whole (both languages plus the record, never one alone). Policy: [docs/i18n/README.md](../../../../docs/i18n/README.md); translation rules: [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md); terminology source of truth: [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md).\n- **A sidecar record of both blob hashes makes consistency checkable.** `foo.i18n.yaml` holds the full git blob hash of each side as of the last confirmed-consistent state. An edit to either side without re-confirming the pair is then mechanically detectable as a pure content comparison — no history lookup — and the hashes are computable for files edited in the same PR, which a commit-hash record is not. Re-recording (`verify-translation-pairing --write <pair>`, which requires naming the confirmed pairs — bulk re-record is an explicit `--write --all`) produces a reviewable yaml diff: confirming consistency is an explicit, visible act in the PR.\n- **`verify-translation-pairing` joins `doc-sync`.** The gate ([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts)) enforces: every discovered, non-excluded source has a complete pair; every existing pair is complete (all three files) and consistent (both hashes match, switcher links both ways, structural signatures identical); and excluded generated, instruction, or bilingual-by-construction files stay unpaired. [scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) contains only explicit exclusions, so no requirement can bypass discovery and receive a weaker check. Source-oriented code gates consume a `.zh.md` fence sequence as a derivative only when its unsuffixed sibling has the same tracked fences in the same order with byte-identical bodies; an incomplete, reordered, reclassified, or changed sequence stays independent, so the owning code gate or pairing gate reports the mismatch.\n- **One corpus-wide requirement.** Every document in scope requires a complete pair from creation; the policy has no per-file rollout state, date cutoff, or README-specific class. README discovery covers every case-insensitive README basename outside vendored, dependency, and ignored build-output trees, including future top-level directories. A site-published pair uses `pairedPages()` so the root locale projects `.zh.md` and `/en/` projects `.md`; creating a counterpart alone does not publish it.\n- **Pairing records are metadata, not Cordis Loader configuration.** Cordis configuration discovery accepts actual `.cordis.yml` and `.cordis.yaml` files while excluding `*.i18n.yaml`, even when the document name contains `cordis`. This preserves validation of executable Loader entries without parsing translation hashes as configuration.\n- **Translation is agent work with human review.** Routine changes use the direct one-pass path owned by the [lightweight-translation decision](2026-08-08-lightweight-routine-documentation-translation.md). The [extended translation skill](../../../skills/dsh-translate-docs/SKILL.md) retains delegated translation and the other heavier mechanisms for explicit user invocation; both paths defer to the documentation contracts as their sources of truth.\n\n## Verification\n\nThe verification contract covers each boundary independently. `verify-translation-pairing` pins pair completeness, hashes, switchers, and structure; [`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) pins locale-specific source selection for published pairs; [`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) pins discovery of Loader YAML and exclusion of translation records; and the [translation-prompt runnable snapshot](../../../../scripts/translation-prompt.snapshot.ts) pins the rendered sysLine truncated
},
{
"role": "assistant",
"content": "# Agent Note: 通过配对兄弟文件与配对门禁实现双语文档\n\nStatus: implemented\n\n[English](2026-07-02-bilingual-docs-and-pairing-gate.md) | 中文\n\n## 问题\n\n本仓库的文档语料会被公司内外的人和 agent(智能体)以中英两种语言阅读。在没有机制的情况下纯靠手工维护第二语言,正是译文腐烂的根源:一侧持续演进,另一侧默默失实,而没有门禁会注意到。对于这类不变式,本仓库一贯的做法是将其编码为机械检查(见[质量门禁](2026-06-11-quality-gates.md)与 [doc-sync 强制](../../archived/process/2026-06-11-doc-sync-enforcement.md)),因此双语政策随附一道门禁一起交付。\n\n## 决策\n\n- **配对兄弟文件,两种语言同权。** 一对文档由三个兄弟文件组成:英文 `foo.md`、中文 `foo.zh.md`,以及一份一致性记录 `foo.i18n.yaml`。没有哪种语言是正典:一篇文档可以先用中文撰写和评审、之后再译成英文,反之亦可;约束配对的是:两侧必须表达相同的内容,且配对整体合并(两种语言加记录,绝不单独落一侧)。政策见 [docs/i18n/README.md](../../../../docs/i18n/README.md);翻译规则见 [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md);术语真源见 [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md)。\n- **伴随记录保存两侧 blob hash,使一致性可检查。** `foo.i18n.yaml` 保存两侧文件在上一次确认一致时各自的完整 git blob hash。此后修改了任一侧而未重新确认配对,都能被机械检测出来(纯内容比较,无需查询历史),而且同一个 PR(Pull Request)内改动的文件也能计算出 hash,commit hash 式的记录做不到这一点。重新记录(`verify-translation-pairing --write <pair>`,要求点名所确认的配对;批量重新记录是显式的 `--write --all`)会产生一份可评审的 yaml diff:确认一致在 PR 中是一个显式、可见的动作。\n- **`verify-translation-pairing` 加入 `doc-sync`。** 门禁([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts))强制执行以下规则:每个已发现且未排除的源文档都有完整配对;每个现有配对都完整(三个文件齐全)且一致(两个 hash 匹配、切换行双向互链、结构签名一致);被排除的生成文档、指令文档或本身即双语的文档不得配对。[scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) 只包含显式排除项,因此任何要求都无法绕过发现流程而接受较弱的检查。只有当 `.zh.md` 围栏序列与其无后缀兄弟文件拥有顺序相同、正文按字节一致的同一组受跟踪围栏时,面向源码的代码门禁才会将其作为派生内容消费;不完整、顺序变更、重分类或已改动的序列仍会独立受检,因此由其所属的代码门禁或配对门禁报告不匹配。\n- **全语料统一要求。** 范围内的每篇文档从创建起就必须有完整配对;政策没有逐文件推进状态、日期分界或 README 专用类别。README 发现会覆盖 vendor 源码、依赖目录与被忽略的构建产物目录之外所有文件名不区分大小写匹配 README 的文件,包括今后新增的顶层目录。发布到文档站的配对使用 `pairedPages()`,由根 locale 投影 `.zh.md`,由 `/en/` 投影 `.md`;仅创建对侧文件并不会发布它。\n- **配对记录是元数据,而不是 Cordis Loader 配置。** Cordis 配置发现会接受实际的 `.cordis.yml` 和 `.cordis.yaml` 文件,同时排除 `*.i18n.yaml`,即使文档名中包含 `cordis` 也不例外。这样既能继续校验可执行的 Loader 配置项,又不会把翻译 hash 当作配置来解析。\n- **翻译是 agent 的工作,由人评审。** 常规改动采用由[轻量翻译决策](2026-08-08-lightweight-routine-documentation-translation.md)确立的直接单遍路径。[扩展翻译 skill(技能)](../../../skills/dsh-translate-docs/SKILL.md)保留委派翻译和其他较重机制,供用户显式调用;两条路径均以文档契约为真源。\n\n## 验证\n\n验证契约分别覆盖每个边界。`verify-translation-pairing` 固定配对完整性、hash、切换行和结构;[`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) 固定已发布配对按 locale 选择对应源文件;[`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) 固定 Loader YAML 的发现以及翻译记录的排除;[翻译提示词可运行快照](../../../../scripts/translation-prompt.snapshot.ts)则固定渲染后的系统消息、五对经评审的示例、源请求和响应消费结果。这些检查共同使配对漂移、发布漂移、配置误分类和模型可见提示词漂移都可在评审中看见。\n\n## 曾考Line truncated
>>>>>>> 45777c7624 (test(snapshot): refresh translation prompt fixture)
"content": "# Agent Note: 通过配对兄弟文件与配对门禁实现双语文档\n\nStatus: implemented\n\n[English](2026-07-02-bilingual-docs-and-pairing-gate.md) | 中文\n\n## 问题\n\n本仓库的文档语料会被公司内外的人和 agent(智能体)以中英两种语言阅读。在没有机制的情况下纯靠手工维护第二语言,正是译文腐烂的根源:一侧持续演进,另一侧默默失实,而没有门禁会注意到。对于这类不变式,本仓库一贯的做法是将其编码为机械检查(见[质量门禁](2026-06-11-quality-gates.md)与 [doc-sync 强制](../../archived/process/2026-06-11-doc-sync-enforcement.md)),因此双语政策随附一道门禁一起交付。\n\n## 决策\n\n- **配对兄弟文件,两种语言同权。** 一对文档由三个兄弟文件组成:英文 `foo.md`、中文 `foo.zh.md`,以及一份一致性记录 `foo.i18n.yaml`。没有哪种语言是正典:一篇文档可以先用中文撰写和评审、之后再译成英文,反之亦可;约束配对的是:两侧必须表达相同的内容,且配对整体合并(两种语言加记录,绝不单独落一侧)。政策见 [docs/i18n/README.md](../../../../docs/i18n/README.md);翻译规则见 [docs/i18n/translation-rules.md](../../../../docs/i18n/translation-rules.md);术语真源见 [docs/i18n/terminology.md](../../../../docs/i18n/terminology.md)。\n- **伴随记录保存两侧 blob hash,使一致性可检查。** `foo.i18n.yaml` 保存两侧文件在上一次确认一致时各自的完整 git blob hash。此后修改了任一侧而未重新确认配对,都能被机械检测出来(纯内容比较,无需查询历史),而且同一个 PR(Pull Request)内改动的文件也能计算出 hash,commit hash 式的记录做不到这一点。重新记录(`verify-translation-pairing --write <pair>`,要求点名所确认的配对;批量重新记录是显式的 `--write --all`)会产生一份可评审的 yaml diff:确认一致在 PR 中是一个显式、可见的动作。\n- **`verify-translation-pairing` 加入 `doc-sync`。** 门禁([scripts/verify-translation-pairing.ts](../../../../scripts/verify-translation-pairing.ts))强制执行以下规则:每个已发现且未排除的源文档都有完整配对;每个现有配对都完整(三个文件齐全)且一致(两个 hash 匹配、中文侧和所有普通撰写的英文源都带切换行而清单内的生成英文源除外、结构签名一致);被排除的生成文档、指令文档或本身即双语的文档不得配对。[scripts/translation-pairing.manifest.json](../../../../scripts/translation-pairing.manifest.json) 只包含显式排除项,因此任何要求都无法绕过发现流程而接受较弱的检查。只有当 `.zh.md` 围栏序列与其无后缀兄弟文件拥有顺序相同、正文按字节一致的同一组受跟踪围栏时,面向源码的代码门禁才会将其作为派生内容消费;不完整、顺序变更、重分类或已改动的序列仍会独立受检,因此由其所属的代码门禁或配对门禁报告不匹配。\n- **全语料统一要求。** 范围内的每篇文档从创建起就必须有完整配对;政策没有逐文件推进状态、日期分界或 README 专用类别。README 发现会覆盖 vendor 源码、依赖目录与被忽略的构建产物目录之外所有文件名不区分大小写匹配 README 的文件,包括今后新增的顶层目录。发布到文档站的配对使用 `pairedPages()`,由根 locale 投影 `.zh.md`,由 `/en/` 投影 `.md`;仅创建对侧文件并不会发布它。\n- **配对记录是元数据,而不是 Cordis Loader 配置。** Cordis 配置发现会接受实际的 `.cordis.yml` 和 `.cordis.yaml` 文件,同时排除 `*.i18n.yaml`,即使文档名中包含 `cordis` 也不例外。这样既能继续校验可执行的 Loader 配置项,又不会把翻译 hash 当作配置来解析。\n- **翻译是 agent 的工作,由人评审。** 常规改动采用由[轻量翻译决策](2026-08-08-lightweight-routine-documentation-translation.md)确立的直接单遍路径。[扩展翻译 skill(技能)](../../../skills/dsh-translate-docs/SKILL.md)保留委派翻译和其他较重机制,供用户显式调用;两条路径均以文档契约为真源。\n\n## 验证\n\n验证约定分别覆盖每个边界。`verify-translation-pairing` 固定配对完整性、hash、切换行和结构;[`project-doc-site.spec.ts`](../../../../scripts/project-doc-site.spec.ts) 固定已发布配对按 locale 选择对应源文件;[`cordis-config-files.spec.ts`](../../../../scripts/cordis-config-files.spec.ts) 固定 Loader YAML 的发现以及翻译记录的排除;[翻译提示词可运行快照](../../../../scripts/translation-prompt.snapshot.ts)则固定渲染后的系统消息、五对经评审的示例、源请求和响应消费结果。这些检查共同使配对漂移、发布漂移、配置误分Line truncated
},
{
"role": "user",
@@ -0,0 +1,53 @@
import { mkdirSync, mkdtempSync, rmSync, writeFileSync } from 'node:fs'
import { tmpdir } from 'node:os'
import { join } from 'node:path'
import { afterEach, describe, expect, it } from 'vitest'
import { collectSkillInvocationMetadataViolations } from './verify-skill-invocation-metadata.ts'
const roots: string[] = []
afterEach(() => {
for (const root of roots.splice(0)) rmSync(root, { recursive: true, force: true })
})
function fixtureRoot(): string {
const root = mkdtempSync(join(tmpdir(), 'dsh-skill-invocation-metadata-'))
roots.push(root)
return root
}
function writeSkill(root: string, name: string, frontmatter: string, policy = ''): void {
const directory = join(root, '.agents/skills', name)
mkdirSync(join(directory, 'agents'), { recursive: true })
writeFileSync(join(directory, 'SKILL.md'), `---\nname: ${name}\ndescription: Test skill\n${frontmatter}---\n\nTest.\n`)
writeFileSync(
join(directory, 'agents/openai.yaml'),
`interface:\n display_name: "Test"\n${policy}`,
)
}
describe('cross-product skill invocation metadata gate', () => {
it('accepts aligned default and manual-only policies', () => {
const root = fixtureRoot()
writeSkill(root, 'default-skill', '')
writeSkill(
root,
'manual-skill',
'disable-model-invocation: true\nuser-invocable: true\n',
'policy:\n allow_implicit_invocation: false\n',
)
expect(collectSkillInvocationMetadataViolations(root)).toEqual([])
})
it('rejects either direction of a manual-only policy mismatch', () => {
const root = fixtureRoot()
writeSkill(root, 'claude-only', 'disable-model-invocation: true\n')
writeSkill(root, 'codex-only', '', 'policy:\n allow_implicit_invocation: false\n')
expect(collectSkillInvocationMetadataViolations(root)).toEqual([
'.agents/skills/claude-only: Claude Code manual-only=true but Codex manual-only=false',
'.agents/skills/codex-only: Claude Code manual-only=false but Codex manual-only=true',
])
})
})
+122
View File
@@ -0,0 +1,122 @@
/**
* Keep Claude Code and Codex invocation metadata aligned for repository skills.
* @module scripts/verify-skill-invocation-metadata
*/
import { existsSync, readFileSync, readdirSync } from 'node:fs'
import { resolve } from 'node:path'
import { load } from 'js-yaml'
const ROOT = resolve(import.meta.dirname, '..')
/** Return an object-shaped YAML value, or undefined for every other shape. */
function asRecord(value: unknown): Record<string, unknown> | undefined {
return typeof value === 'object' && value !== null && !Array.isArray(value)
? value as Record<string, unknown>
: undefined
}
/** Parse a skill's YAML frontmatter as an object. */
function parseSkillFrontmatter(source: string): Record<string, unknown> {
const lines = source.split('\n')
if (lines[0] !== '---') throw new Error('SKILL.md must start with YAML frontmatter')
const end = lines.indexOf('---', 1)
if (end < 0) throw new Error('SKILL.md frontmatter is not closed')
const metadata = asRecord(load(lines.slice(1, end).join('\n')))
if (metadata === undefined) throw new Error('SKILL.md frontmatter must be a YAML object')
return metadata
}
/** Find repository skill directories that carry Codex product metadata. */
function skillDirectories(root: string): string[] {
const skillsRoot = resolve(root, '.agents/skills')
if (!existsSync(skillsRoot)) return []
return readdirSync(skillsRoot, { withFileTypes: true })
.filter(entry => entry.isDirectory() && existsSync(resolve(skillsRoot, entry.name, 'agents/openai.yaml')))
.map(entry => entry.name)
.sort()
}
/**
* Report cross-product invocation-policy mismatches for repository skills.
* @param root - Repository root containing `.agents/skills`.
* @returns diagnostics for malformed metadata or policies that expose a skill differently.
*/
export function collectSkillInvocationMetadataViolations(root: string): string[] {
const violations: string[] = []
for (const skill of skillDirectories(root)) {
const relativeRoot = `.agents/skills/${skill}`
const skillFile = resolve(root, relativeRoot, 'SKILL.md')
const openaiFile = resolve(root, relativeRoot, 'agents/openai.yaml')
if (!existsSync(skillFile)) {
violations.push(`${relativeRoot}: agents/openai.yaml has no sibling SKILL.md`)
continue
}
let frontmatter: Record<string, unknown>
let openai: Record<string, unknown>
try {
frontmatter = parseSkillFrontmatter(readFileSync(skillFile, 'utf8'))
}
catch (error) {
violations.push(`${relativeRoot}/SKILL.md: ${error instanceof Error ? error.message : String(error)}`)
continue
}
try {
const parsed = asRecord(load(readFileSync(openaiFile, 'utf8')))
if (parsed === undefined) throw new Error('agents/openai.yaml must be a YAML object')
openai = parsed
}
catch (error) {
violations.push(`${relativeRoot}/agents/openai.yaml: ${error instanceof Error ? error.message : String(error)}`)
continue
}
const disableModelInvocation = frontmatter['disable-model-invocation']
if (disableModelInvocation !== undefined && typeof disableModelInvocation !== 'boolean') {
violations.push(`${relativeRoot}/SKILL.md: disable-model-invocation must be a boolean`)
continue
}
const userInvocable = frontmatter['user-invocable']
if (userInvocable !== undefined && typeof userInvocable !== 'boolean') {
violations.push(`${relativeRoot}/SKILL.md: user-invocable must be a boolean`)
continue
}
const policy = asRecord(openai.policy)
const allowImplicitInvocation = policy?.allow_implicit_invocation
if (allowImplicitInvocation !== undefined && typeof allowImplicitInvocation !== 'boolean') {
violations.push(`${relativeRoot}/agents/openai.yaml: policy.allow_implicit_invocation must be a boolean`)
continue
}
const claudeManualOnly = disableModelInvocation === true
const codexManualOnly = allowImplicitInvocation === false
if (claudeManualOnly !== codexManualOnly) {
violations.push(
`${relativeRoot}: Claude Code manual-only=${String(claudeManualOnly)}`
+ ` but Codex manual-only=${String(codexManualOnly)}`,
)
}
if (claudeManualOnly && userInvocable === false) {
violations.push(`${relativeRoot}/SKILL.md: a manual-only skill must remain user-invocable`)
}
}
return violations
}
if (process.argv[1] && import.meta.filename === resolve(process.argv[1])) {
const skills = skillDirectories(ROOT)
const violations = collectSkillInvocationMetadataViolations(ROOT)
if (violations.length > 0) {
process.stderr.write('verify-skill-invocation-metadata: violations found:\n')
for (const violation of violations) process.stderr.write(` ${violation}\n`)
process.exit(1)
}
process.stdout.write(
`verify-skill-invocation-metadata: ${String(skills.length)} cross-product skill policy pair(s) aligned.\n`,
)
}