Merge origin/master into feature/shared-cli-config-foundation
This commit is contained in:
@@ -116,7 +116,7 @@ One governance implementation runs on both sides of the wire; the browser-specif
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Costs accepted: the vendored Loader carries idle machinery in the browser (EntryTree persistence is a no-op, groups/isolation unused); every plugin edit in dev pays a bundle rebuild plus fiber remount; graph `inject` rows are informational — activation truth is service-level — so a mismatch surfaces at the settled sweep, not at graph validation; and the three not-yet-promoted libraries keep their static-import export surface until their DI conversions land.
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Roster endgame (landed 2026-07-25 with the config-tree boot move): the roster lives in `apps/cli/web.cordis.yml`, `mountWebPlugins` and the `CLIENT_PACKAGES` constant are gone, and recomposing a deployment means swapping the yml/overlay. The graph composer moved from a webserver-side registry into the `dsh-client-modules` node half (the package upgraded to dual-face per this note's promotion rule — its consumer now reaches it through cordis DI), and the transport split landed alongside: the webserver became a plain route-registration plugin, `/api/*` binding moved to the connection node half over the upgraded `api-gateway` plugin (`dsh-host-apiproxy` providing `ctx.apiProxy`), and the dev bundle watch + SSE channel moved to the hmr node half.
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Roster endgame (landed 2026-07-25 with the config-tree boot move): the roster lives in `apps/cli/config/web.cordis.yml`, `mountWebPlugins` and the `CLIENT_PACKAGES` constant are gone, and recomposing a deployment means swapping the yml/overlay. The graph composer moved from a webserver-side registry into the `dsh-client-modules` node half (the package upgraded to dual-face per this note's promotion rule — its consumer now reaches it through cordis DI), and the transport split landed alongside: the webserver became a plain route-registration plugin, `/api/*` binding moved to the connection node half over the upgraded `api-gateway` plugin (`dsh-host-apiproxy` providing `ctx.apiProxy`), and the dev bundle watch + SSE channel moved to the hmr node half.
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## Alternatives considered
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@@ -116,7 +116,7 @@ wire 两侧跑着同一份治理实现;浏览器特有的表面只是一套模
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接受的代价:vendored Loader 在浏览器里背着闲置机件(EntryTree 持久化是 no-op,分组/隔离未用);开发期每次修改插件都要付一次 bundle 重建加 fiber 重挂;图中 `inject` 行仅是信息性说明——激活的真相在服务层——因此不匹配会在 settled 扫描时浮出,而不是在图校验时被拦下;三个尚未升格的库在各自的 DI 转换落地之前保持静态 import 的导出面。
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名册的终局(2026-07-25 随配置树 boot 迁移落地):名册住 `apps/cli/base.cordis.yml` 与 `apps/cli/web.cordis.yml`,`mountWebPlugins` 与 `CLIENT_PACKAGES` 常量已消失,重组一次部署等于换 yml/overlay。图的组合器从 webserver 侧的注册表迁进 `dsh-client-modules` 的 node 半(该包按本 note 的升级法则升格为双面——其消费方现经 cordis DI 到达),传输拆分同轮落地:webserver 变为朴素路由注册插件,`/api/*` 绑定迁到 connection 的 node 半、走升格后的 `api-gateway` 插件(`dsh-host-apiproxy` 提供 `ctx.apiProxy`),dev 的 bundle 监视与 SSE 通道迁到 hmr 的 node 半。
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名册的终局(2026-07-25 随配置树 boot 迁移落地):名册住 `apps/cli/config/base.cordis.yml` 与 `apps/cli/config/web.cordis.yml`,`mountWebPlugins` 与 `CLIENT_PACKAGES` 常量已消失,重组一次部署等于换 yml/overlay。图的组合器从 webserver 侧的注册表迁进 `dsh-client-modules` 的 node 半(该包按本 note 的升级法则升格为双面——其消费方现经 cordis DI 到达),传输拆分同轮落地:webserver 变为朴素路由注册插件,`/api/*` 绑定迁到 connection 的 node 半、走升格后的 `api-gateway` 插件(`dsh-host-apiproxy` 提供 `ctx.apiProxy`),dev 的 bundle 监视与 SSE 通道迁到 hmr 的 node 半。
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## Alternatives considered
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@@ -12,7 +12,7 @@ English | [中文](2026-07-24-web-config-tree-boot-and-transport-layering.zh.md)
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## Decision
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**Composition is one flat assembled tree.** `apps/cli/base.cordis.yml` plus `apps/cli/web.cordis.yml` holds every row — the host runtime (32 rows), the `api-gateway` row, the `webserver` row, and the `dshClient` rows (the browser roster; the modules row is simultaneously a host row). No spine bundle: every plugin is one row and every config field is yml-editable. That stance later became repository-wide, with the rows both surfaces share factored into `apps/cli/base.cordis.yml` and each surface reduced to an overlay ([shared-base overlays](../simplification/2026-07-29-shared-base-config-overlays.md)). `--dev` appends the `dsh-client-hmr` row in code before the settle sweep — prod and dev differ by exactly that row. Row order carries no load semantics; activation is service-availability driven, and the boot compensates with a fail-loud triple: `assertEntriesLoaded` (import failures), `installFailLoud` (late apply rejections), and an all-ACTIVE sweep (PENDING fibers — cordis inject waiting has no timeout).
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**Composition is one flat assembled tree.** `apps/cli/config/base.cordis.yml` plus `apps/cli/config/web.cordis.yml` holds every row — the host runtime (32 rows), the `api-gateway` row, the `webserver` row, and the `dshClient` rows (the browser roster; the modules row is simultaneously a host row). No spine bundle: every plugin is one row and every config field is yml-editable. That stance later became repository-wide, with the rows both surfaces share factored into `apps/cli/config/base.cordis.yml` and each surface reduced to an overlay ([shared-base overlays](../simplification/2026-07-29-shared-base-config-overlays.md)). `--dev` appends the `dsh-client-hmr` row in code before the settle sweep — prod and dev differ by exactly that row. Row order carries no load semantics; activation is service-availability driven, and the boot compensates with a fail-loud triple: `assertEntriesLoaded` (import failures), `installFailLoud` (late apply rejections), and an all-ACTIVE sweep (PENDING fibers — cordis inject waiting has no timeout).
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**Boot glue is a class pair.** `AppCLIEntry` (apps/cli) and `AppWebEntry` (the shell kernel) hold only what must exist independently of cordis: argv facts, the composed patch set, the parsed boot manifest, the module system instance, loading-page handles — everything else lives in plugins. `AppCLIEntry.run()` is three stages: layered env (ambient > cwd `.env` > `$DSH_HOME/.env`, closing the defect above) → patch composition → Loader include boot plus the triple. `AppWebEntry.run()` mirrors it browser-side: parse `window.__DSH_BOOT__` into a `BootManifest` (two views: npm-package rows for the module table, cordis-plugin rows for entry composition; malformed wire throws), build the module system, render the loading page, prefetch the `immediately` tier in parallel with Context/Loader setup, **await the prefetch before creating entries** (materialization is `tree.import`'s synchronous require, unprotected by fiber inject waiting; cross-package require edges such as i18n → runtime/client need every immediately-tier factory registered first — an empirically found 10–25% boot race otherwise), adopt the modules entry, create the graph rows, settle, sweep.
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@@ -12,7 +12,7 @@ Status: implemented
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## 决策
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**组合结果是一棵平铺配置树。** `apps/cli/base.cordis.yml` 与 `apps/cli/web.cordis.yml` 共同持有全部行——host runtime(32 行)、`api-gateway` 行、`webserver` 行、`dshClient` 行(浏览器 roster;modules 行同时是 host 行)。不做 spine bundle:每插件一行、每个 config 字段 yml 可改。这一立场后来推广到全仓:两个 surface 共享的配置项被抽取进 `apps/cli/base.cordis.yml`,各 surface 则收敛为一份 overlay([共享 base overlay](../simplification/2026-07-29-shared-base-config-overlays.md))。`--dev` 在 settle sweep 之前由代码追加 `dsh-client-hmr` 行——prod 与 dev 的全部差异就是这一行。行序无装载语义;激活由服务可用性驱动,boot 以 fail-loud 三件套补偿:`assertEntriesLoaded`(import 失败)、`installFailLoud`(迟到的 apply 拒绝)、all-ACTIVE sweep(PENDING fiber——cordis inject 等待没有超时)。
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**组合结果是一棵平铺配置树。** `apps/cli/config/base.cordis.yml` 与 `apps/cli/config/web.cordis.yml` 共同持有全部行——host runtime(32 行)、`api-gateway` 行、`webserver` 行、`dshClient` 行(浏览器 roster;modules 行同时是 host 行)。不做 spine bundle:每插件一行、每个 config 字段 yml 可改。这一立场后来推广到全仓:两个 surface 共享的配置项被抽取进 `apps/cli/config/base.cordis.yml`,各 surface 则收敛为一份 overlay([共享 base overlay](../simplification/2026-07-29-shared-base-config-overlays.md))。`--dev` 在 settle sweep 之前由代码追加 `dsh-client-hmr` 行——prod 与 dev 的全部差异就是这一行。行序无装载语义;激活由服务可用性驱动,boot 以 fail-loud 三件套补偿:`assertEntriesLoaded`(import 失败)、`installFailLoud`(迟到的 apply 拒绝)、all-ACTIVE sweep(PENDING fiber——cordis inject 等待没有超时)。
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**boot 胶水是一对 class。** `AppCLIEntry`(apps/cli)与 `AppWebEntry`(壳内核)只持有独立于 cordis 必须提前存在的东西:argv 事实、合成的 patch 集、解析出的 boot manifest、模块系统实例、loading 页句柄——其余一律进插件。`AppCLIEntry.run()` 三段:分层 env(ambient > cwd `.env` > `$DSH_HOME/.env`,顺手关掉上述缺陷)→ patch 合成 → Loader include boot 加三件套。`AppWebEntry.run()` 在浏览器侧镜像它:把 `window.__DSH_BOOT__` 解析成 `BootManifest`(双视角:npm 包行给模块表、cordis 插件行给 entry 组合;畸形 wire 大声抛)、建模块系统、渲染 loading 页、immediately 层预取与 Context/Loader 准备并行、**create entry 之前等预取齐**(物化是 `tree.import` 的同步 require,不受 fiber inject 等待保护;i18n → runtime/client 这类跨包 require 边要求 immediately 层工厂全部注册完——否则有实测 10–25% 的 boot 竞态)、收编 modules entry、逐图行 create、settle、sweep。
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@@ -0,0 +1,6 @@
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# Bilingual-pair consistency record (docs/i18n/README.md): the git blob hash of each
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# side as of the last confirmed-consistent state. Both languages carry equal authority;
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# after editing either side, bring the other along and re-record with:
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# pnpm run verify-translation-pairing --write
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2026-07-27-compiler-independent-typert-model.md: 338476924dfb5d9832d0b64bf01b8d3c297cd6d6
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2026-07-27-compiler-independent-typert-model.zh.md: a88f4dbba50696071552ea12a63b69ecac202418
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@@ -0,0 +1,53 @@
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# Agent Note: Compiler-independent Typert type model
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Status: implemented
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English | [中文](2026-07-27-compiler-independent-typert-model.zh.md)
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## Problem
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Constructing Zod and reflection text directly from the TypeScript AST couples type analysis and business-semantic recognition to a single generation target. Such a generator can answer only “can this syntax be generated?” It cannot provide a canonical representation of packages, faces, public exports, services, events, objects, and their type relationships, nor can static checks and later generation targets reuse it.
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The host and client are independent TypeScript projects; placing both in one `ts.Program` merges conflicting Cordis `Context` and `Events` declarations. At the same time, client types still need to reference host types explicitly, so neither complete isolation nor duplicating types on both sides can express the actual dependencies.
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## Decision
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[`dsh-typert-generator`](../../../../packages/typert/generator/README.md) builds separate `ts.Program` instances from the host and client projects and uses compiler nodes, symbols, and checkers only as extraction tools. After analysis, every generator and scanner consumes only Typert's own `WorkspaceModel`, `FaceModel`, and `TypeGraph`; the model retains no AST or checker objects. The generator has no dependency on `@deepseek-ai/dsh-typert-registry`.
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TypeGraph preserves the developer-authored, pre-evaluation type structure, including generic parameters and applications, explicit inheritance, conditional and mapped types, recursive references, and JSDoc. A reachable type that cannot be represented losslessly causes analysis to fail. If an emitter cannot handle an already modeled node, that emitter fails instead of flattening the type or degrading it to `unknown`.
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Each face independently owns a PackageModel and TypeGraph. Direct project references from `tsconfig.host.json` and `tsconfig.client.json` determine a package's face membership, while `package.json#exports` defines its public boundary. Cross-face relationships come only from explicit imports or re-exports in source and remain separate links; external npm types are recorded as External without reading or copying their declarations.
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PackageModel recognizes Cordis services, events, `@typert object` reference objects, and `@typert schema` data roots. Services and objects expose only public instance members, excluding constructors and static, private, and protected members; inheritance edges remain in TypeGraph instead of being copied into flattened members. When a public property, parameter, or return type lacks an annotation, `check` mode reports an error, while `write` mode writes the checker-inferred result, rebuilds the project, and analyzes it again in strict mode.
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[`dsh-typert-registry`](../../../../packages/typert/registry/README.md) provides `ctx.typert` and handles runtime registration only: one contribution atomically carries package-face reflection and an optional Zod schema, and Cordis effect disposal revokes it. The registry neither analyzes TypeScript nor merges the two faces. JSON Schema is an on-demand projection of registered Zod schemas.
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Package artifact publication is explicit opt-in. When invoked, `WorkspaceTypertGenerator` validates that each requested host face exposes the user-facing subpath `package/typert` from the root artifact `package/lib/typert.host.{js,d.ts}`, or that each requested client face exposes `package/client/typert` from `package/lib/typert.client.{js,d.ts}`. It neither edits exports nor runs as part of the ordinary root build or typecheck, so those commands do not generate whole-workspace Typert artifacts. Generated declarations keep `TYPERT` typed as `unknown`, so business packages do not depend on the registry.
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At build time, `CordisCatalogProjector` consumes the analyzed `FaceModel` and `TypeGraph` once to generate `docs/cordis-catalog/events.md`, `docs/cordis-catalog/services.md`, and the static `SERVICE_API`, `EVENT_API`, and `TYPE_API` catalog committed for `tool-cordis`. `tool-cordis` reads that static catalog and has no runtime dependency on `ctx.typert`. [`dsh-typert-loader`](../../../../packages/typert/loader/README.md) and the registry remain an independent runtime path: the loader follows Cordis Loader entry lifecycle events, imports an explicitly published `./typert` host artifact, and registers it through `ctx.typert`; neither component supplies the current `cordis_inspect` catalog.
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## Verification contract
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A small two-face project in the repository snapshots the complete type model, including its source declaration index. Batched workspace analysis and direct focused analysis must produce model-equivalent `FaceModel` and `TypeGraph` results for the same faces. Compile-time exhaustive maps and runtime set comparisons ensure that every node, target, declaration, and member discriminant is exercised by source-authored TypeScript syntax; a field-semantics matrix covers every keyword, type operator, and literal value category, plus every state of generics, parameters, tuples, mapped modifiers, import attributes, abstract forms, predicates, and enum initializers.
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For every property in `SyntaxZoo`, the TypeScript printer normalizes the source type, which must exactly match the TypeGraph rendering; TypeScript then recompiles every rendered declaration. This layer checks that each node's internal information is preserved losslessly, including no-substitution template literals, type queries with type arguments, and constrained `infer`, without substituting discriminant coverage or code coverage for structural equivalence.
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Boundary cases pin explicit package imports within and across faces, cross-face named re-exports, exact export aliases, qualified `import()` links, and the External classification of global `@types` declarations; they reject TypeScript diagnostics originating in package-owned files, relative-path boundary crossings, references outside `package.json#exports`, and cross-face namespace re-exports without a model target. Interface declaration merging explicitly preserves every authored part; other merges that cannot be represented losslessly fail.
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For each supported node kind and literal category, Zod emitter tests run both successful and failing parses; for each unsupported kind, they assert an explicit `TypertEmitError`. Emitter fixtures snapshot generated Zod JavaScript and `.d.ts` text, execute the JavaScript, and typecheck the declarations. `dsh-typert-registry` tests pin atomic registration, queries, JSON Schema, and effect disposal; `dsh-typert-loader` tests also prove delayed mounting, unloading, and disposal while a dynamic import remains pending. A real `dsh-tools` vertical slice generates a contribution from the model, loads it through the runtime registry, and compares its service, event, and related-type records with the committed static `SERVICE_API`, `EVENT_API`, and `TYPE_API`. A full-workspace projector test regenerates the two Cordis catalog documents and the `tool-cordis` API catalog and requires all three texts to be byte-for-byte identical to the committed artifacts.
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## Alternatives considered
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**Retain the TypeScript AST directly.** The AST preserves source syntax, but it would make every consumer depend on the compiler lifecycle, node identity, and checker context, preventing a stable architectural boundary. It is therefore used only during extraction.
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**Generate final types from the checker.** A flattened `ts.Type` is easy to traverse directly, but it loses the developer's expression of generics, conditional and mapped types, and alias applications, so it cannot support reflection and later generation needs.
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**Merge the host/client projects or duplicate host types.** Merging would contaminate Cordis declaration merging; duplication would create a second source of truth for types. Independent faces with explicit cross-face links preserve project isolation and actual reference relationships.
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**Make `dsh-typert-registry` responsible for type resolution and cross-package composition.** That would recouple the TypeScript compiler, Cordis lifecycle, and a specific schema policy. The registry remains a lifecycle container for generated artifacts, while the build-time model retains complex analysis.
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## Consequences
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New generation targets and static checks can reuse the same TypeGraph, and business categories can extend PackageModel without parsing the AST again. Preserving pre-evaluation types and independent faces makes the model more complex than a flattened schema; emitters must explicitly declare their supported scope and fail on missing capabilities.
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Explicit opt-in keeps artifact publication and package exports under package ownership, while ordinary root builds and typechecks incur no whole-workspace Typert generation phase. The static Cordis catalogs remain reproducible from the canonical model without coupling `tool-cordis` to runtime registry state. `ctx.typert` reflects only artifacts mounted in the current runtime, and unloading does not control Zod instances that consumers retain after importing them directly.
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# Agent Note: 编译器无关的 Typert 类型模型
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Status: implemented
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[English](2026-07-27-compiler-independent-typert-model.md) | 中文
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## Problem
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直接从 TypeScript AST 拼接 Zod 和反射文本,会把类型分析、业务语义识别与单个生成目标绑在一起。这样的生成器只能回答“这段语法能否生成”,无法提供包、face、公开导出、service、event、对象及其类型关系的标准表示,也无法供静态检查和后续生成目标复用。
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host 与 client 属于独立 TypeScript project;把两者放进同一个 `ts.Program` 会合并冲突的 Cordis `Context` 与 `Events` 声明。与此同时,client 类型仍需显式引用 host 类型,因此完全隔离或在两边复制类型都不能表达真实依赖。
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## Decision
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[`dsh-typert-generator`](../../../../packages/typert/generator/README.md) 分别从 host 和 client project 建立 `ts.Program`,只把 compiler node、symbol 和 checker 当作提取工具。分析结束后,所有生成器和扫描器只消费 Typert 自有的 `WorkspaceModel`、`FaceModel` 与 `TypeGraph`,模型中不保留 AST 或 checker 对象。生成器不依赖 `@deepseek-ai/dsh-typert-registry`。
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TypeGraph 保存开发者写下的计算前类型结构,包括泛型参数与应用、显式继承、conditional、mapped、递归引用和 JSDoc。无法无损表示的可达类型使分析失败;某个 emitter 无法处理已经建模的节点时由该 emitter 失败,而不是把类型展平或降级为 `unknown`。
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每个 face 独立拥有 PackageModel 和 TypeGraph。`tsconfig.host.json` 与 `tsconfig.client.json` 的直接 project references 决定 package 的 face 归属,`package.json#exports` 决定公开边界。跨 face 关系只来自源码中的显式 import 或 re-export,并作为独立 link 保留;外部 npm 类型记录为 External,不读取或复制其声明。
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PackageModel 识别 Cordis service、event、`@typert object` 引用对象和 `@typert schema` 数据根。service 与 object 只暴露 public instance member,排除 constructor、static、private 和 protected;继承边保留在 TypeGraph 中,不复制为扁平成员。缺少 public property、parameter 或 return 类型标注时,`check` 模式报错,`write` 模式写入 checker 推断结果后重建 project 并再次以严格模式分析。
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[`dsh-typert-registry`](../../../../packages/typert/registry/README.md) 提供 `ctx.typert`,且只负责运行时注册:一个 contribution 原子携带 package-face reflection 与可选 Zod schema,并随 Cordis effect 撤销。注册表不分析 TypeScript,也不合并两个 face。JSON Schema 是对已注册 Zod schema 的按需投影。
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包产物发布采用显式 opt-in。`WorkspaceTypertGenerator` 仅在被调用时校验所请求 face 的根目录产物协议:host face 必须通过面向用户的 subpath `package/typert` 暴露 `package/lib/typert.host.{js,d.ts}`,client face 必须通过 `package/client/typert` 暴露 `package/lib/typert.client.{js,d.ts}`。它既不修改 exports,也不作为根目录普通 build 或 typecheck 的一部分运行,因此这些命令不会生成全仓 Typert 产物。生成的声明将 `TYPERT` 类型保持为 `unknown`,因此业务包不依赖注册表。
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构建期的 `CordisCatalogProjector` 一次消费分析后的 `FaceModel` 与 `TypeGraph`,生成 `docs/cordis-catalog/events.md`、`docs/cordis-catalog/services.md`,以及为 `tool-cordis` 提交的静态 `SERVICE_API`、`EVENT_API` 和 `TYPE_API` catalog。`tool-cordis` 读取该静态 catalog,运行时不依赖 `ctx.typert`。[`dsh-typert-loader`](../../../../packages/typert/loader/README.md) 与注册表仍是独立的运行时路径:loader 监听 Cordis Loader 配置项生命周期事件,导入显式发布的 `./typert` host 产物,并通过 `ctx.typert` 注册;两者都不是当前 `cordis_inspect` catalog 的数据源。
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## Verification contract
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|
||||
提交内的小型双 face project 对完整类型模型及其源码声明索引做 snapshot。全仓分批分析与直接聚焦分析必须为相同 face 生成模型等价的 `FaceModel` 与 `TypeGraph`。类型级全集和运行时集合比较保证每种 node、target、declaration 与 member discriminant 都来自真实 TypeScript syntax;字段语义矩阵覆盖所有 keyword、type operator、literal value 类目,以及泛型、参数、tuple、mapped modifier、import attributes、abstract、predicate 和 enum initializer 的各个状态。
|
||||
|
||||
`SyntaxZoo` 中每个 property 的源码类型经 TypeScript printer 标准化后,必须与 TypeGraph 渲染结果逐项相等,随后所有渲染 declaration 再交给 TypeScript 编译。这一层检查节点内部信息是否无损,包括无插值 template literal、带 type argument 的 type query 和受约束 `infer`,不以 discriminant 覆盖或代码覆盖率代替结构等价。
|
||||
|
||||
边界用例固定同 face 与跨 face 的显式包导入、跨 face 命名 re-export、精确 export alias、qualified `import()` link 和全局 `@types` External 归属,并拒绝 package 自有 TypeScript 诊断、相对路径越界、`package.json#exports` 之外的引用,以及尚无模型 target 的跨 face namespace re-export。interface declaration merging 显式保留每个 authored part,无法无损表示的其他 merge 失败。
|
||||
|
||||
Zod emitter 对支持的节点和各类 literal 逐类执行成功与失败 parse,对不支持的节点逐类断言明确的 `TypertEmitError`。Emitter fixture 对生成的 Zod JavaScript 与 `.d.ts` 文本做快照,执行 JavaScript,并对声明做类型检查。`dsh-typert-registry` 测试固定原子注册、查询、JSON Schema 和 effect 撤销,`dsh-typert-loader` 测试还证明延迟挂载、卸载及未完成 dynamic import 的释放行为。真实 `dsh-tools` 纵切从模型生成 contribution,经运行时注册表加载后,将其服务、事件与关联类型记录同已提交的静态 `SERVICE_API`、`EVENT_API` 和 `TYPE_API` 对照。全仓 projector 测试重新生成两份 Cordis catalog 文档与 `tool-cordis` API catalog,并要求三份文本同已提交产物逐字节一致。
|
||||
|
||||
## Alternatives considered
|
||||
|
||||
**直接保存 TypeScript AST。** AST 能保留源码写法,但会让每个消费者依赖 compiler 生命周期、node identity 和 checker 上下文,无法形成稳定的架构边界,因此只在提取阶段使用。
|
||||
|
||||
**基于 checker 的最终类型生成。** 展平后的 `ts.Type` 便于直接遍历,却丢失泛型、conditional、mapped 和 alias application 的开发者表达,无法满足反射与后续生成需要。
|
||||
|
||||
**合并 host/client project 或复制 host 类型。** 合并会污染 Cordis declaration merging;复制会产生第二份类型事实源。独立 face 加显式 cross-face link 保留了 project 隔离与真实引用关系。
|
||||
|
||||
**让 `dsh-typert-registry` 承担类型解析和跨包合成。** 这会把 TypeScript compiler、Cordis 生命周期和具体 schema 策略重新耦合。注册表保持为生成 artifact 的生命周期容器,复杂分析留在构建期模型。
|
||||
|
||||
## Consequences
|
||||
|
||||
新增生成目标或静态检查可复用同一 TypeGraph,业务类目也可在 PackageModel 上扩展,而无需再次解析 AST。保留计算前类型和独立 face 的代价是模型比打平后的 schema 更复杂,emitter 必须显式声明支持范围并对缺失能力失败。
|
||||
|
||||
显式 opt-in 使产物发布与 package exports 由各包自行管理,根目录普通 build 和 typecheck 不会引入全仓 Typert 生成阶段。静态 Cordis catalog 可从标准模型复现,同时不把 `tool-cordis` 与运行时注册表状态耦合。`ctx.typert` 只反映当前运行时中已挂载的产物;对于消费方直接导入后仍持有的 Zod 实例,卸载流程无法控制。
|
||||
@@ -20,7 +20,7 @@ The `dsh` TUI, Web, and headless source launches use `node --experimental-transf
|
||||
|
||||
`scripts/tspath-loader.ts` registers only a module resolve hook. It uses `TSX_TSCONFIG_PATH` when set (resolving relative values from the invoking cwd) and otherwise reads the root `tsconfig.json`; `TsconfigPathsResolver` follows that config's `extends` chain through the repository's existing TypeScript development tool, selects exact or wildcard `paths` entries according to tsconfig rules, and maps matching workspace bare specifiers to `.ts`/`.mts`/`.cts` source files or directory index files. Node remains solely responsible for code transformation. The source-only loader is not part of the built CLI and `apps/cli` does not declare `typescript` as a runtime dependency.
|
||||
|
||||
Source imports are redirected only when the target package is either the nearest package manifest's own name or one of that manifest's declared runtime dependencies. The Cordis Loader uses the configuration directory URL as the import parent; the resolver then searches upward for the workspace manifest that declares the plugin, so dependency ownership for the shipped `apps/cli/base.cordis.yml` plus its surface overlay lies with `apps/cli/package.json`. Specifiers that do not match tsconfig paths, refer to undeclared dependencies, or are not bare all fall back to Node's default resolution.
|
||||
Source imports are redirected only when the target package is either the nearest package manifest's own name or one of that manifest's declared runtime dependencies. The Cordis Loader uses the configuration directory URL as the import parent; the resolver then searches upward for the workspace manifest that declares the plugin, so dependency ownership for the shipped `apps/cli/config/base.cordis.yml` plus its surface overlay lies with `apps/cli/package.json`. Specifiers that do not match tsconfig paths, refer to undeclared dependencies, or are not bare all fall back to Node's default resolution.
|
||||
|
||||
`verify-cordis-config` performs a one-way completeness check on the resolver manifest: every bare plugin package in a configuration must appear in the corresponding manifest's `dependencies`, while the manifest may contain extra dependencies not referenced by that configuration. The root `AGENTS.md` makes updating the configuration and dependencies together a standing rule.
|
||||
|
||||
|
||||
@@ -20,7 +20,7 @@ Cordis 配置还引入了另一条解析边界。`cordis.yml` 中的 bare plugin
|
||||
|
||||
`scripts/tspath-loader.ts` 只注册一个模块 resolve hook。设置 `TSX_TSCONFIG_PATH` 时,它会使用该路径(相对路径从调用方的 cwd 解析),否则读取根 `tsconfig.json`;`TsconfigPathsResolver` 使用仓库已有的 TypeScript 开发工具沿该配置的 `extends` 链解析,按 tsconfig 规则选择精确或 wildcard `paths` 条目,并将命中的 workspace bare specifier 映射到 `.ts`/`.mts`/`.cts` 源文件或目录 index 文件。代码转换始终只由 Node 负责。该源码专用 loader 不属于构建后的 CLI,`apps/cli` 也不会把 `typescript` 声明为运行时依赖。
|
||||
|
||||
只有当目标包是最近 package manifest 的自身名称或其已声明的运行时依赖时,源码 import 才会重定向。Cordis Loader 使用配置目录 URL 作为 import parent;此时 resolver 会向上查找声明该插件的 workspace manifest。因此,已交付的 `apps/cli/base.cordis.yml` 及其界面覆盖层所需依赖由 `apps/cli/package.json` 持有。未命中 tsconfig paths、引用未声明依赖或不是 bare specifier 的说明符全部交回 Node 默认解析。
|
||||
只有当目标包是最近 package manifest 的自身名称或其已声明的运行时依赖时,源码 import 才会重定向。Cordis Loader 使用配置目录 URL 作为 import parent;此时 resolver 会向上查找声明该插件的 workspace manifest。因此,已交付的 `apps/cli/config/base.cordis.yml` 及其界面覆盖层所需依赖由 `apps/cli/package.json` 持有。未命中 tsconfig paths、引用未声明依赖或不是 bare specifier 的说明符全部交回 Node 默认解析。
|
||||
|
||||
`verify-cordis-config` 对该解析方 manifest 执行单向完整性检查:配置中的每个 bare plugin package 都必须出现在对应 manifest 的 `dependencies` 中,manifest 可以包含该配置未引用的额外依赖。根 `AGENTS.md` 将同步更新配置和依赖定为常驻规则。
|
||||
|
||||
|
||||
@@ -37,7 +37,7 @@ The TUI owns rendering, not wording: it applies `displayText` before its own `pa
|
||||
|
||||
**Keep the keys and add built-in defaults in the app bundle.** Rejected: a default in code survives an overlay, but two ways to state one fact remain, and a config author can still set the key wrong — which is exactly how the stale `process.env.RESUME_SESSION_ID` line disabled resume.
|
||||
|
||||
**Merge the app bundle into `apps/cli` and delete the slot entirely.** Rejected here, then [adopted later](../simplification/2026-07-29-shared-base-config-overlays.md) in a form this note did not consider: the composition moved into flat config files (`apps/cli/base.cordis.yml` plus a per-surface overlay) rather than into CLI code, so it never entered the `v8 ignore` process-wiring block, and the overlay extension points survive as ordinary row patches. The slot itself was not deleted — it moved to `dsh-agent-loop`, because a launcher fact still cannot travel through a replaceable config key.
|
||||
**Merge the app bundle into `apps/cli` and delete the slot entirely.** Rejected here, then [adopted later](../simplification/2026-07-29-shared-base-config-overlays.md) in a form this note did not consider: the composition moved into flat config files (`apps/cli/config/base.cordis.yml` plus a per-surface overlay) rather than into CLI code, so it never entered the `v8 ignore` process-wiring block, and the overlay extension points survive as ordinary row patches. The slot itself was not deleted — it moved to `dsh-agent-loop`, because a launcher fact still cannot travel through a replaceable config key.
|
||||
|
||||
**Put the goodbye message on `TuiResumeHost`.** Rejected: an exit line is not a handoff capability, and a host that cannot replace its process may still want to print one. They are independent slots.
|
||||
|
||||
|
||||
@@ -37,7 +37,7 @@ TUI 持有渲染,而非措辞:它在自己的 `palette.muted` 之前先应
|
||||
|
||||
**保留这些键,并在应用组合包中加入内建默认值。** 拒绝:代码中的默认值能在 overlay 下存活,但表达同一事实的两种途径依然并存,而配置作者仍可把键设错——这正是那行陈旧的 `process.env.RESUME_SESSION_ID` 使 resume 失效的方式。
|
||||
|
||||
**把应用组合包合并进 `apps/cli` 并彻底删除该槽位。** 此处拒绝,但后来以本 note 未曾设想的形式[被采纳](../simplification/2026-07-29-shared-base-config-overlays.md):组合被搬进平铺的配置文件(`apps/cli/base.cordis.yml` 加各 surface 一份 overlay),而非搬进 CLI 代码,因此从未进入 `v8 ignore` 进程接线块,overlay 的扩展点也作为普通配置项 patch 保留了下来。槽位本身并未被删除——它迁移到了 `dsh-agent-loop`,因为启动器的事实依然不能经由一个可被整体替换的配置键传递。
|
||||
**把应用组合包合并进 `apps/cli` 并彻底删除该槽位。** 此处拒绝,但后来以本 note 未曾设想的形式[被采纳](../simplification/2026-07-29-shared-base-config-overlays.md):组合被搬进平铺的配置文件(`apps/cli/config/base.cordis.yml` 加各 surface 一份 overlay),而非搬进 CLI 代码,因此从未进入 `v8 ignore` 进程接线块,overlay 的扩展点也作为普通配置项 patch 保留了下来。槽位本身并未被删除——它迁移到了 `dsh-agent-loop`,因为启动器的事实依然不能经由一个可被整体替换的配置键传递。
|
||||
|
||||
**把 goodbye 消息放到 `TuiResumeHost` 上。** 拒绝:退出行不是一项移交能力,而一个无法替换自身进程的宿主仍可能想要打印一行。它们是相互独立的槽位。
|
||||
|
||||
|
||||
@@ -14,7 +14,7 @@ The interactive channel must remain a Cordis plugin over the same agent, session
|
||||
|
||||
DeepSeek Harness ships [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) as a dedicated Cordis plugin. It owns terminal input and presentation only; agent lifecycle, session persistence, tool execution, and the model-facing question tool remain separate composition entries. The plugin requires both stdin and stdout to be TTYs and fails instead of silently changing to line-oriented behavior.
|
||||
|
||||
There is one terminal front door. `@deepseek-ai/dsh-tui` mounts before the configured agent, and `apps/cli/tui.cordis.yml` — an overlay over the shared `base.cordis.yml` — owns the interactive coding composition, with the Code Mode overlay in `examples/code-mode`. Non-interactive tasks use `@deepseek-ai/dsh-cli-demo`; ACP remains a separate automation protocol.
|
||||
There is one terminal front door. `@deepseek-ai/dsh-tui` mounts before the configured agent, and `apps/cli/config/tui.cordis.yml` — an overlay over the shared `base.cordis.yml` — owns the interactive coding composition, with the Code Mode overlay in `examples/code-mode`. Non-interactive tasks use `@deepseek-ai/dsh-cli-demo`; ACP remains a separate automation protocol.
|
||||
|
||||
The selected front door receives the exact generated or resumed `SessionId` used by the pre-created agent. It mounts before the agent composition, waits for the matching root agent, and enters full-screen mode only after that agent exists. A matching `agent-loop/config-start-failed` event is therefore reported before screen takeover and exits with status 1.
|
||||
|
||||
|
||||
@@ -14,7 +14,7 @@ Status: implemented
|
||||
|
||||
DeepSeek Harness 将 [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) 作为独立的 Cordis 插件交付。该插件只负责终端输入与呈现;agent 生命周期、会话持久化、工具执行以及模型可见的提问工具仍由不同组合项负责。插件要求 stdin 和 stdout 均为 TTY;条件不满足时会失败,不会静默切换为逐行输出。
|
||||
|
||||
只有一个终端入口。`@deepseek-ai/dsh-tui` 在已配置 agent 之前挂载,而 `apps/cli/tui.cordis.yml`——叠加在共享 `base.cordis.yml` 之上的 overlay——拥有交互式 coding 组装,Code Mode overlay 则位于 `examples/code-mode`。非交互任务使用 `@deepseek-ai/dsh-cli-demo`;ACP 仍是独立的自动化协议。
|
||||
只有一个终端入口。`@deepseek-ai/dsh-tui` 在已配置 agent 之前挂载,而 `apps/cli/config/tui.cordis.yml`——叠加在共享 `base.cordis.yml` 之上的 overlay——拥有交互式 coding 组装,Code Mode overlay 则位于 `examples/code-mode`。非交互任务使用 `@deepseek-ai/dsh-cli-demo`;ACP 仍是独立的自动化协议。
|
||||
|
||||
所选入口接收预创建 agent 使用的同一个新建或恢复 `SessionId`。入口先于 agent 组合挂载,等待相符的根 agent 出现,然后才进入全屏模式。因此,相符的 `agent-loop/config-start-failed` 事件会在接管屏幕前报告,并以状态码 1 退出。
|
||||
|
||||
|
||||
@@ -18,7 +18,7 @@ The browser `ModelService` owns one `ModelDirectory` per live session. Its snaps
|
||||
|
||||
`@deepseek-ai/dsh-client-ui-conversation` declares the session-scoped single slot `conversation.input.model` as a child of its composer-bar entry. InputBar renders the seat in its trailing controls immediately before the pending indicator and primary button; the seat receives the bar's `locked` owner prop and session scope. `@deepseek-ai/dsh-client-ui-model` occupies that seat and also contributes `/model` over the same directory. Its compact trigger displays the catalog model name and effective reasoning label, falling back to ids when metadata is absent. The upward menu first offers Model and, when the current exact model supports it, Effort; Model drills into provider groups, while Effort drills into the adapter-ordered levels. The provider-default row appears only when the adapter does not configure a model default.
|
||||
|
||||
The production browser roster is assembled from `apps/cli/base.cordis.yml` plus `apps/cli/web.cordis.yml`; the model feature is one `dshClient` row rather than a package hardcoded in Web boot code. Its package manifest orders it after the runtime and command feature, while Cordis service injection waits for the conversation slot before registering the composer occupant.
|
||||
The production browser roster is assembled from `apps/cli/config/base.cordis.yml` plus `apps/cli/config/web.cordis.yml`; the model feature is one `dshClient` row rather than a package hardcoded in Web boot code. Its package manifest orders it after the runtime and command feature, while Cordis service injection waits for the conversation slot before registering the composer occupant.
|
||||
|
||||
## Alternatives considered
|
||||
|
||||
|
||||
@@ -18,7 +18,7 @@ Web Host 为每个新建或恢复的 agent(智能体)复用 `installAgentLlm
|
||||
|
||||
`@deepseek-ai/dsh-client-ui-conversation` 将会话作用域的单实例 slot `conversation.input.model` 声明为其输入栏 entry 的子 slot。InputBar 在尾部控件区将该 seat 渲染于 pending 指示器与主按钮之前;该 seat 接收输入栏的 `locked` owner prop 与会话作用域。`@deepseek-ai/dsh-client-ui-model` 占用该 seat,并在同一目录上提供 `/model`。其紧凑型触发器显示目录中的模型名称与生效的推理强度标签;元数据缺失时则回退到相应 ID。向上展开的菜单首先提供 Model,并在当前精确模型支持时提供 Effort;Model 可深入提供方分组,Effort 可深入适配器排序的级别。仅当适配器没有配置模型默认值时,才显示提供方默认值行。
|
||||
|
||||
生产环境的浏览器名册由 `apps/cli/base.cordis.yml` 与 `apps/cli/web.cordis.yml` 共同组装;模型功能对应其中一行 `dshClient` 配置项,而不是 Web boot 代码中硬编码的包。其包 manifest(元数据清单)将加载顺序置于运行时与命令功能之后;Cordis 服务注入则等待 conversation slot 可用,再注册 composer 占用方。
|
||||
生产环境的浏览器名册由 `apps/cli/config/base.cordis.yml` 与 `apps/cli/config/web.cordis.yml` 共同组装;模型功能对应其中一行 `dshClient` 配置项,而不是 Web boot 代码中硬编码的包。其包 manifest(元数据清单)将加载顺序置于运行时与命令功能之后;Cordis 服务注入则等待 conversation slot 可用,再注册 composer 占用方。
|
||||
|
||||
## 考虑过的替代方案
|
||||
|
||||
|
||||
@@ -20,7 +20,7 @@ The dsh launcher supplies one session root under its Harness home through a boot
|
||||
|
||||
**Storage.** `dsh-paths` owns the location as `resolveSessionsRoot()` (`sessions` under the Harness home, by `resolveDshHome`'s precedence), but only the launcher assumes it: shared-store policy is the dsh CLI's, never a plugin's. The TUI surface provides the root through the `SESSIONS_ROOT_KEY` boot slot (`ctx.provide` before Loader entries mount) and `dsh web` patches the same root in `apps/cli/src/app-cli-entry.ts`. Two CLI surfaces computing that path independently is exactly the failure this change fixes — disjoint stores — so the fact gets one home rather than a `join` per caller, alongside the existing `registryRoot()` precedent for `run`.
|
||||
|
||||
The shared base states that precedence in the row itself: `apps/cli/base.cordis.yml`'s `session-persistence-jsonl` row reads `root: !!js launcherSessionsRoot ?? './.sessions'`, so the launcher slot wins and a bare boot without one keeps the project-local default. Expressing it as the row's own `!!js` value rather than a schemastery `.default()` matters for the same reason it did in the bundle: a schema default would materialize before the slot could be read. An overlay or personal patch that states an explicit root always wins, which remains the correct choice for a hermetic deployment.
|
||||
The shared base states that precedence in the row itself: `apps/cli/config/base.cordis.yml`'s `session-persistence-jsonl` row reads `root: !!js launcherSessionsRoot ?? './.sessions'`, so the launcher slot wins and a bare boot without one keeps the project-local default. Expressing it as the row's own `!!js` value rather than a schemastery `.default()` matters for the same reason it did in the bundle: a schema default would materialize before the slot could be read. An overlay or personal patch that states an explicit root always wins, which remains the correct choice for a hermetic deployment.
|
||||
|
||||
**Scope, not exclusion.** A workspace other than the current one is a display scope rather than a disabled reason. `showResume()` summarizes every record and the `ResumePicker` owns a `scope` of `'workspace' | 'all'`, defaulting to the current workspace so the common case is unchanged. Tab toggles; the scope line names the active scope and the count the other holds; each row in the all-workspaces scope reports its own workspace, and that label joins the searchable text only in the scope that shows it. A toggle clears the query and selection so the highlighted row always belongs to the visible list, and the per-row workspace line makes a row one terminal row taller in that scope, which the visible-count budget accounts for.
|
||||
|
||||
|
||||
@@ -20,7 +20,7 @@ dsh 启动器通过启动槽位提供其 Harness home 下的同一个会话根
|
||||
|
||||
**存储。** `dsh-paths` 以 `resolveSessionsRoot()` 拥有该位置(按 `resolveDshHome` 的优先级,取 Harness home 下的 `sessions`),但只有启动器假定它:共享存储策略属于 dsh CLI,绝不属于插件。TUI 界面通过 `SESSIONS_ROOT_KEY` 启动槽位(在 Loader 条目挂载前 `ctx.provide`)提供该根目录,`dsh web` 则在 `apps/cli/src/app-cli-entry.ts` 中为同一根目录打补丁。CLI 的两处界面各自独立计算该路径,正是本次改动所修复的那种失败——互不相交的存储——因此这项事实只有一个归属,而不是每个调用方各做一次 `join`,这与 `run` 已有的 `registryRoot()` 先例一致。
|
||||
|
||||
共享 base 直接在配置项自身表达这一优先级:`apps/cli/base.cordis.yml` 的 `session-persistence-jsonl` 配置项写作 `root: !!js launcherSessionsRoot ?? './.sessions'`,因此启动器槽位优先,而没有槽位的裸启动则保留项目本地默认值。把它写成配置项自身的 `!!js` 取值、而不是 schemastery 的 `.default()`,其原因与在组合包中相同:schema 默认值会在能够读取槽位之前就物化。若 overlay 或个人 patch 显式声明了根目录,则始终以其为准——对于要求自洽封闭的部署,这仍是正确选择。
|
||||
共享 base 直接在配置项自身表达这一优先级:`apps/cli/config/base.cordis.yml` 的 `session-persistence-jsonl` 配置项写作 `root: !!js launcherSessionsRoot ?? './.sessions'`,因此启动器槽位优先,而没有槽位的裸启动则保留项目本地默认值。把它写成配置项自身的 `!!js` 取值、而不是 schemastery 的 `.default()`,其原因与在组合包中相同:schema 默认值会在能够读取槽位之前就物化。若 overlay 或个人 patch 显式声明了根目录,则始终以其为准——对于要求自洽封闭的部署,这仍是正确选择。
|
||||
|
||||
**是范围,不是排除。** 当前 workspace 之外的 workspace 是一种展示范围,而不是禁用理由。`showResume()` 汇总每一条记录,`ResumePicker` 持有一个 `'workspace' | 'all'` 的 `scope`,默认为当前 workspace,因此常见场景毫无变化。Tab 切换范围;范围行会说明当前生效的范围,以及另一个范围下的数量;在全 workspace 范围中每一行都报告自己的 workspace,而该标签只在展示它的范围里才加入可搜索文本。切换范围会清空查询和选中项,使高亮行始终属于可见列表;而逐行的 workspace 行会让该范围下的每一行在终端里多占一行,可见条数预算已经把这一点计入。
|
||||
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
# Bilingual-pair consistency record (docs/i18n/README.md): the git blob hash of each
|
||||
# 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
|
||||
2026-06-11-quality-gates.md: e1af110387936d644208dc1829fde4a4fdf8a3f9
|
||||
2026-06-11-quality-gates.zh.md: a4e57b7a08ecf20babb33b55d8c94414df1b10b1
|
||||
# pnpm run verify-translation-pairing --write .agents/notes/implemented/process/2026-06-11-quality-gates.md
|
||||
2026-06-11-quality-gates.md: 60db7ba5cfa8184c0fcce764aa027f32a9b721ab
|
||||
2026-06-11-quality-gates.zh.md: a5ac7cd831255d479f7a1d75586785e546877fba
|
||||
|
||||
@@ -15,11 +15,11 @@ This codebase is developed primarily by coding agents. Agents follow enforced ga
|
||||
Every mechanically checkable AGENTS.md promise gets a command that exits non-zero. CI invokes the exhaustive set, while Git hooks reserve their latency budget for cheap local defects:
|
||||
|
||||
- Max-strict TypeScript (`noUncheckedIndexedAccess`, `exactOptionalPropertyTypes`, …); examples, tests, and scripts typecheck in CI via the root no-emit `tsconfig.json` while package/vendor code stays behind its own project-reference boundary.
|
||||
- ESLint strict-type-checked + @stylistic (the house style, enforced), including file-local duplicated logic checks; vendored code excluded.
|
||||
- [Oxlint](2026-07-29-oxlint-linter.md) with type-aware TypeScript rules plus the @stylistic and SonarJS compatibility plugins, enforcing the house style and file-local duplicated-logic checks; vendored code excluded.
|
||||
- jscpd detects cross-file clones in package production TypeScript and repository scripts; narrow source-range exceptions document deliberately parallel implementations.
|
||||
- Per-file 100% coverage on `packages/*/*/src` (v8); unreachable defensive guards carry `/* v8 ignore */ ` with stated reasons instead of deletion.
|
||||
- knip (dead code/deps), publint (package correctness), workspace constraints (workspace rules: private, cordis peer+dev, uniform version, ESM), and a NodeNext consumer typecheck for built package declarations.
|
||||
- lefthook pre-commit fixes staged lint, rejects staged whitespace, and checks the vendor manifest; pre-push runs incremental typecheck. CI runs the full matrix on node 22.19/24/26 plus built application smokes for the Headless, TUI, ACP, JSON-RPC, workflow, and code-runtime entry paths.
|
||||
- lefthook pre-commit applies formatting-only ESLint fixes before Oxlint validation and native fixes, rejects staged whitespace, and checks the vendor manifest; pre-push runs incremental typecheck. CI runs the full matrix on node 22.19/24/26 plus built application smokes for the Headless, TUI, ACP, JSON-RPC, workflow, and code-runtime entry paths.
|
||||
|
||||
## Consequences
|
||||
|
||||
|
||||
@@ -15,11 +15,11 @@ Status: implemented
|
||||
每条可机械检查的 AGENTS.md 承诺都有一个以非零状态退出的命令。CI 执行完整集合,而 Git 钩子将延迟预算留给可低成本发现的本地缺陷:
|
||||
|
||||
- 最严格的 TypeScript 配置(`noUncheckedIndexedAccess`、`exactOptionalPropertyTypes` 等);示例、测试和脚本通过根目录的 no-emit `tsconfig.json` 在 CI 中进行类型检查,而包(package)/vendor 代码保持在各自 project-reference 边界之后。
|
||||
- ESLint strict-type-checked + @stylistic(作为强制执行的统一代码风格),包括文件内重复逻辑检查;vendor 代码排除在外。
|
||||
- [Oxlint](2026-07-29-oxlint-linter.md) 配合类型感知的 TypeScript 规则以及 @stylistic 和 SonarJS 兼容插件,强制执行统一代码风格和文件内重复逻辑检查;vendor 代码排除在外。
|
||||
- jscpd 检测包的生产 TypeScript 代码与仓库脚本中的跨文件克隆;窄范围的源码区间例外用于记录有意为之的并行实现。
|
||||
- `packages/*/*/src` 下按文件 100% 覆盖率(v8);不可达的防御性守卫使用 `/* v8 ignore */ ` 并注明理由,而非删除。
|
||||
- knip(死代码/依赖)、publint(包的正确性)、workspace 约束(workspace 规则:private、cordis peer+dev、统一版本、ESM),以及对构建出的包声明文件进行 NodeNext 消费方类型检查。
|
||||
- lefthook pre-commit 修复已暂存文件的 lint 问题、拒绝已暂存的空白问题并检查 vendor manifest;pre-push 运行增量类型检查。CI 在 Node 22.19/24/26 上运行完整矩阵,并对 Headless、TUI、ACP(Agent Client Protocol)、JSON-RPC、工作流和代码运行时入口路径执行已构建应用的冒烟测试。
|
||||
- lefthook pre-commit 先应用仅用于格式化的 ESLint 修复,再执行 Oxlint 验证和原生修复,拒绝已暂存的空白问题并检查 vendor manifest;pre-push 运行增量类型检查。CI 在 Node 22.19/24/26 上运行完整矩阵,并对 Headless、TUI、ACP(Agent Client Protocol)、JSON-RPC、工作流和代码运行时入口路径执行已构建应用的冒烟测试。
|
||||
|
||||
## 后果
|
||||
|
||||
|
||||
@@ -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/2026-07-06-parallel-pre-push-gates.md
|
||||
2026-07-06-parallel-pre-push-gates.md: d86642b7feb82908ec792db0c6a3da403cfc79fd
|
||||
2026-07-06-parallel-pre-push-gates.zh.md: 0425cf1a01b56604a07be366dd46d3920c5fb487
|
||||
2026-07-06-parallel-pre-push-gates.md: 538e52c5318fb6d4eab2e8786513a08c1ff0ec55
|
||||
2026-07-06-parallel-pre-push-gates.zh.md: e93eec8757c20c8154703d9bdfd2f0c805e6a26c
|
||||
|
||||
@@ -14,7 +14,7 @@ Aggregate jobs such as documentation synchronization hide long sequential chains
|
||||
|
||||
[scripts/run-gates.ts](../../../../scripts/run-gates.ts) owns the bounded scheduler used by CI, `doc-sync`, and the opt-in `check:all` command. It expands named modes into leaf gates, rejects empty or ambiguous dependency graphs before starting a child, respects artifact dependencies, buffers attributable output, reports exit and signal outcomes independently, and accepts `DSH_GATE_CONCURRENCY` when a caller needs a different worker bound.
|
||||
|
||||
The Node 24 consumer job is one seven-gate mode rather than a shell-owned process pool. Its default worker count equals its gate count while dependencies control readiness: `publint` precedes built-package invariant validation, and snapshot replay, NodeNext type checks, built-bin smokes, and lint wait for that validation. Lint waits because the invariant verifier temporarily stages package views that ESLint must not traverse; source compatibility checks can overlap the validation chain.
|
||||
The Node 24 consumer job is one seven-gate mode rather than a shell-owned process pool. Its default worker count equals its gate count while dependencies control readiness: `publint` precedes built-package invariant validation, and snapshot replay, NodeNext type checks, built-bin smokes, and lint wait for that validation. Lint waits because the invariant verifier temporarily stages package views that the linter must not traverse; source compatibility checks can overlap the validation chain.
|
||||
|
||||
[scripts/publint-all.ts](../../../../scripts/publint-all.ts) discovers packages from `packages/<group>/<pkg>` and runs `publint` with a worker pool sized from `availableParallelism()`. `DSH_PUBLINT_CONCURRENCY` can cap or raise the worker count for local machines and CI runners with different resource profiles. Results are buffered per package and printed in deterministic package order, so parallel execution does not scramble each package's log block.
|
||||
|
||||
|
||||
@@ -14,7 +14,7 @@ Status: implemented
|
||||
|
||||
[scripts/run-gates.ts](../../../../scripts/run-gates.ts) 拥有 CI、`doc-sync` 和选择启用的 `check:all` 命令所使用的有界调度器。它将具名模式展开为叶子门禁,在启动子进程前拒绝空的或有歧义的依赖图,遵守产物依赖,缓冲可归因的输出,分别报告退出结果与信号结果,并在调用方需要不同 worker 上限时接受 `DSH_GATE_CONCURRENCY`。
|
||||
|
||||
Node 24 消费方 job 采用单个包含七道门禁的模式,而非由 shell 管理的进程池。其默认 worker 数等于门禁数,但门禁是否就绪由依赖关系控制:`publint` 先于已构建包不变式验证运行,快照回放、NodeNext 类型检查、built-bin 冒烟测试和 lint 则等待该验证完成。lint 之所以等待,是因为不变式验证器会临时暂存包视图,而 ESLint 不得遍历这些视图;源码兼容性检查可以与这条验证链重叠运行。
|
||||
Node 24 消费方 job 采用单个包含七道门禁的模式,而非由 shell 管理的进程池。其默认 worker 数等于门禁数,但门禁是否就绪由依赖关系控制:`publint` 先于已构建包不变式验证运行,快照回放、NodeNext 类型检查、built-bin 冒烟测试和 lint 则等待该验证完成。lint 之所以等待,是因为不变式验证器会临时暂存包视图,而 linter 不得遍历这些视图;源码兼容性检查可以与这条验证链重叠运行。
|
||||
|
||||
[scripts/publint-all.ts](../../../../scripts/publint-all.ts) 从 `packages/<group>/<pkg>` 发现包,并以根据 `availableParallelism()` 确定大小的 worker 池运行 `publint`。`DSH_PUBLINT_CONCURRENCY` 可以针对资源配置不同的本地机器和 CI runner 限制或提高 worker 数量。结果按包缓冲,并按确定性的包顺序打印,因此并行执行不会打乱各包的日志块。
|
||||
|
||||
|
||||
@@ -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/2026-07-22-evidence-based-larger-hosted-runners.md
|
||||
2026-07-22-evidence-based-larger-hosted-runners.md: 67fc7ded5cffc6a219665f135a4c9e1cc4752691
|
||||
2026-07-22-evidence-based-larger-hosted-runners.zh.md: 71c5c067361b57fab5aae9e9ffa3850a30609db3
|
||||
2026-07-22-evidence-based-larger-hosted-runners.md: 983d5520bd73fc3cf82c37bf0d4a9ff1c6e6f51c
|
||||
2026-07-22-evidence-based-larger-hosted-runners.zh.md: a86dcf2c60d7b950e7557e84ef6993e712a2ce09
|
||||
|
||||
@@ -18,7 +18,7 @@ The required primary path depends on those enterprise pools. Standard GitHub-hos
|
||||
|
||||
The former gate-level and coarse primary shard jobs are absent from the workflow. Their static, lint, coverage, snapshot, and scenario shard selectors are also absent from the repository, so an unused diagnostic path cannot preserve a second CI architecture.
|
||||
|
||||
Linux primary work uses three independent 32-core jobs. Coverage runs alone with its own worker bound, and the static scheduler runs alone so its result has no post-build consumer tail. After static gates finish, that job publishes its emitted `apps/*/lib`, `packages/*/*/lib`, and `vendor/*/lib` tree as a run-scoped artifact. The third job restores that exact tree, then starts lint, Node 24 runtime compatibility, build-backed snapshots, and all artifact consumers without repeating the build. Generated NodeNext consumer directories are excluded from ESLint discovery because the artifact check removes them while these processes overlap. The pnpm store and ESLint cache are restored without putting cache uploads on the pull-request critical path. Performance reports use each job's `startedAt` to `completedAt` interval; runner queue delay is capacity evidence, not repository execution time.
|
||||
Linux primary work uses three independent 32-core jobs. Coverage runs alone with its own worker bound, and the static scheduler runs alone so its result has no post-build consumer tail. After static gates finish, that job publishes its emitted `apps/*/lib`, `packages/*/*/lib`, and `vendor/*/lib` tree as a run-scoped artifact. The third job restores that exact tree, then starts lint, Node 24 runtime compatibility, build-backed snapshots, and all artifact consumers without repeating the build. Generated NodeNext consumer directories are excluded from Oxlint discovery because the artifact check removes them while these processes overlap. The pnpm store is restored without putting cache uploads on the pull-request critical path; Oxlint has no repository-managed result cache. Performance reports use each job's `startedAt` to `completedAt` interval; runner queue delay is capacity evidence, not repository execution time.
|
||||
|
||||
The gate dependencies remain explicit. Coverage consumes source and does not wait for build. Documentation typechecking builds its complete project-reference graph once. Snapshot replay and publication consumers wait for emitted output, while Node-version compatibility jobs exercise runtime-sensitive source loading without repeating the primary source-graph typecheck. PTY and subprocess suites keep their bounded inner concurrency rather than inheriting the runner's core count.
|
||||
|
||||
|
||||
@@ -18,7 +18,7 @@ Status: implemented
|
||||
|
||||
原有的门禁级和粗粒度主流程分片作业已从工作流中移除。相应的静态、lint、覆盖率、快照和场景分片选择器也已从仓库中移除,因此未使用的诊断路径无法继续维系第二套 CI 架构。
|
||||
|
||||
Linux 主流程使用 3 个相互独立的 32 核作业。覆盖率单独运行,并设有自己的工作线程上限;静态调度器也单独运行,因此构建后的消费方不会拖延其结果。静态门禁完成后,该作业将其生成的 `apps/*/lib`、`packages/*/*/lib` 和 `vendor/*/lib` 目录树作为仅供本次运行使用的产物发布。第三个作业恢复完全相同的目录树,再让 lint、Node 24 运行时兼容性、依赖构建产物的快照和所有产物消费方基于构建完成后的工作树启动,而不重复构建。生成的 NodeNext 消费方目录不会纳入 ESLint 的文件发现范围,因为这些进程重叠执行时,产物检查会删除这些目录。pnpm store 和 ESLint 缓存会得到恢复,但缓存上传不会进入拉取请求关键路径。性能报告采用每个作业从 `startedAt` 到 `completedAt` 的区间;运行器排队延迟是容量证据,而非仓库执行时间。
|
||||
Linux 主流程使用 3 个相互独立的 32 核作业。覆盖率单独运行,并设有自己的工作线程上限;静态调度器也单独运行,因此构建后的消费方不会拖延其结果。静态门禁完成后,该作业将其生成的 `apps/*/lib`、`packages/*/*/lib` 和 `vendor/*/lib` 目录树作为仅供本次运行使用的产物发布。第三个作业恢复完全相同的目录树,再让 lint、Node 24 运行时兼容性、依赖构建产物的快照和所有产物消费方基于构建完成后的工作树启动,而不重复构建。生成的 NodeNext 消费方目录不会纳入 Oxlint 的文件发现范围,因为这些进程重叠执行时,产物检查会删除这些目录。pnpm store 会得到恢复,但缓存上传不会进入拉取请求关键路径;Oxlint 没有由仓库管理的结果缓存。性能报告采用每个作业从 `startedAt` 到 `completedAt` 的区间;运行器排队延迟是容量证据,而非仓库执行时间。
|
||||
|
||||
门禁依赖关系保持显式。覆盖率消费源码,不等待构建。文档类型检查只构建一次完整的 project-reference 图。快照回放和发布消费方等待生成的输出,而 Node 版本兼容性作业会验证对运行时敏感的源码加载,且不重复主源码项目图的类型检查。PTY 和子进程套件继续使用自身有界的内部并发,不继承运行器的核心数。
|
||||
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
# Bilingual-pair consistency record (docs/i18n/README.md): the git blob hash of each
|
||||
# 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
|
||||
2026-07-22-fast-local-git-hooks.md: a07af1cd424c86f7fa80ea946cd5012362cc66eb
|
||||
2026-07-22-fast-local-git-hooks.zh.md: 78d4ea8980476609a9140737a75152eba123b308
|
||||
# pnpm run verify-translation-pairing --write .agents/notes/implemented/process/2026-07-22-fast-local-git-hooks.md
|
||||
2026-07-22-fast-local-git-hooks.md: 838024c4293372b1430d357774feb06cd9742b9b
|
||||
2026-07-22-fast-local-git-hooks.zh.md: 460acf5270c075a808c6a4dc42635a808c7cd192
|
||||
|
||||
@@ -12,7 +12,7 @@ Fast hooks still need to reject cheap, high-confidence defects before work leave
|
||||
|
||||
## Decision
|
||||
|
||||
[lefthook.yml](../../../../lefthook.yml) keeps both hooks as bounded local checkpoints. Pre-commit runs sequentially: ESLint fixes and re-stages changed JavaScript and TypeScript, `git diff --cached --check` rejects staged whitespace errors, and the vendor manifest guard checks vendored-source metadata. Pre-push invokes the repository TypeScript binary directly in incremental build mode.
|
||||
[lefthook.yml](../../../../lefthook.yml) keeps both hooks as bounded local checkpoints. Pre-commit runs sequentially: a formatting-only ESLint config fixes and re-stages changed JavaScript and TypeScript, [Oxlint](2026-07-29-oxlint-linter.md) validates those files and applies native safe fixes, `git diff --cached --check` rejects staged whitespace errors, and the vendor manifest guard checks vendored-source metadata. Pre-push invokes the repository TypeScript binary directly in incremental build mode.
|
||||
|
||||
Neither hook runs tests, snapshots, documentation checks, builds, hygiene, or the gate scheduler. The opt-in `check:all` package script selects the `check-all` scheduler inventory in [scripts/run-gates.ts](../../../../scripts/run-gates.ts) independently of the hooks; it is a contributor command, not an agent instruction.
|
||||
|
||||
@@ -27,10 +27,10 @@ This decision supersedes the local-hook portion of [Parallel pre-push gates](202
|
||||
- **Keep the full pre-push suite and optimize its scheduler** — preserves the earliest exhaustive signal but still repeats agent-selected evidence and CI, while unrelated failures continue blocking publication.
|
||||
- **Remove pre-push entirely** — makes pushes cheapest but loses the fast cross-file guarantee that TypeScript provides after several commits.
|
||||
- **Keep typecheck in pre-commit** — catches type errors earlier but charges every intermediate commit instead of one push; staged lint already covers the commit-local syntax and style boundary.
|
||||
- **Make staged lint check-only** — avoids hook-side mutation, but contributors intentionally retain the existing auto-fix workflow; Lefthook's `stage_fixed` owns re-staging so the command does not duplicate `git add`.
|
||||
- **Make staged lint check-only** — avoids hook-side mutation, but contributors intentionally retain the auto-fix workflow; the formatting-only pass and Lefthook's `stage_fixed` preserve it without making ESLint a repository correctness runner or duplicating `git add`.
|
||||
|
||||
## Consequences
|
||||
|
||||
Normal commits take the staged-file lint critical path, and warm pushes take the incremental typecheck critical path. Contributors retain a one-command opt-in rehearsal without widening the hook critical paths or the agent-required validation set. Hook latency is observed in development and PR evidence rather than enforced by a timing test whose result would depend on host load and cache state.
|
||||
Normal commits take the staged formatter-and-lint critical path, and warm pushes take the incremental typecheck critical path. Contributors retain a one-command opt-in rehearsal without widening the hook critical paths or the agent-required validation set. Hook latency is observed in development and PR evidence rather than enforced by a timing test whose result would depend on host load and cache state.
|
||||
|
||||
Local publication no longer proves the exhaustive repository matrix. Agents must select relevant behavioral evidence, reviewers must evaluate whether that selection matches the diff, and CI supplies the comprehensive signal once per pushed revision.
|
||||
|
||||
@@ -12,7 +12,7 @@ agent(智能体)已经会运行能够覆盖自身改动的测试和检查,
|
||||
|
||||
## 决策
|
||||
|
||||
[lefthook.yml](../../../../lefthook.yml) 将两个钩子都保留为有界的本地检查点。Pre-commit 按顺序运行:ESLint 修复改动过的 JavaScript 和 TypeScript 文件并重新暂存,`git diff --cached --check` 拒绝暂存 diff 中的空白错误,vendor manifest(元数据清单)守卫检查 vendor 源码元数据。Pre-push 直接调用仓库内的 TypeScript 二进制,并启用增量构建模式。
|
||||
[lefthook.yml](../../../../lefthook.yml) 将两个钩子都保留为有界的本地检查点。Pre-commit 按顺序运行:仅用于格式化的 ESLint 配置修复改动过的 JavaScript 和 TypeScript 文件并重新暂存,[Oxlint](2026-07-29-oxlint-linter.md) 验证这些文件并应用原生安全修复,`git diff --cached --check` 拒绝暂存 diff 中的空白错误,vendor manifest(元数据清单)守卫检查 vendor 源码元数据。Pre-push 直接调用仓库内的 TypeScript 二进制,并启用增量构建模式。
|
||||
|
||||
两个钩子都不运行测试、快照、文档检查、构建、`hygiene` 或门禁调度器。可选运行的 `check:all` 包脚本独立于这些钩子,从 [scripts/run-gates.ts](../../../../scripts/run-gates.ts) 中选择 `check-all` 调度器清单;它是贡献者命令,而非对 agent 的指令。
|
||||
|
||||
@@ -27,10 +27,10 @@ agent 检查待推送的 diff,并仅运行一次能够覆盖其行为的最小
|
||||
- **保留全量 pre-push 套件并优化其调度器**——能够最早提供全面信号,但仍会重复 agent 已选取的证据和 CI,且无关失败仍会阻塞推送。
|
||||
- **完全移除 pre-push**——推送成本最低,但会失去 TypeScript 在多个提交之后提供的快速跨文件保证。
|
||||
- **在 pre-commit 中保留类型检查**——更早捕获类型错误,但每次中间提交都要承担开销,而不是只在推送时运行一次;暂存文件 lint 已经覆盖提交本身的语法与风格边界。
|
||||
- **将暂存文件 lint 设为仅检查模式**——避免钩子修改文件,但贡献者有意保留现有的自动修复工作流;Lefthook 的 `stage_fixed` 负责重新暂存,因此命令无需重复执行 `git add`。
|
||||
- **将暂存文件 lint 设为仅检查模式**——避免钩子修改文件,但贡献者有意保留自动修复工作流;仅用于格式化的流程和 Lefthook 的 `stage_fixed` 会保留该工作流,而不会让 ESLint 成为仓库正确性检查运行器,也无需重复执行 `git add`。
|
||||
|
||||
## 结果
|
||||
|
||||
普通提交的关键路径是暂存文件 lint,缓存已预热时推送的关键路径是增量类型检查。贡献者仍可选择用一条命令完整演练,且不会扩展钩子关键路径或 agent 必须运行的验证集合。钩子耗时只作为开发观察数据和 PR(Pull Request)证据记录,不设置会受主机负载与缓存状态影响的计时测试。
|
||||
普通提交的关键路径是暂存文件格式化与 lint,缓存已预热时推送的关键路径是增量类型检查。贡献者仍可选择用一条命令完整演练,且不会扩展钩子关键路径或 agent 必须运行的验证集合。钩子耗时只作为开发观察数据和 PR(Pull Request)证据记录,不设置会受主机负载与缓存状态影响的计时测试。
|
||||
|
||||
从本地推送成功不再能证明仓库完整矩阵已通过。agent 必须选择相关的行为证据,评审人必须判断该选择是否与 diff 相符,CI 则对每个推送版本提供一次全面信号。
|
||||
|
||||
@@ -0,0 +1,6 @@
|
||||
# Bilingual-pair consistency record (docs/i18n/README.md): the git blob hash of each
|
||||
# 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/2026-07-29-oxlint-linter.md
|
||||
2026-07-29-oxlint-linter.md: 41a50a9d08819809f954aa99007081f270692f38
|
||||
2026-07-29-oxlint-linter.zh.md: 1ad72a00cb921ed688363583d56634f52b355b4e
|
||||
@@ -0,0 +1,45 @@
|
||||
# Agent Note: Oxlint as the repository linter
|
||||
|
||||
Status: implemented
|
||||
|
||||
English | [中文](2026-07-29-oxlint-linter.zh.md)
|
||||
|
||||
## Problem
|
||||
|
||||
The repository needs type-aware TypeScript correctness rules, consistent formatting, and file-local duplicate-logic checks across its owned source. ESLint supplied those checks through a JavaScript parser, a project service, and multiple plugins, but a clean lint run spent about one minute on the local migration baseline and required an 8 GiB Node heap, CI result caches, and separately tuned ESLint concurrency.
|
||||
|
||||
A faster runner cannot justify losing rules. The migration must preserve the strict type-checked preset, repository overrides, inline suppressions, @stylistic fixes, SonarJS checks, host/client TypeScript separation, and the vendor exclusion.
|
||||
|
||||
## Decision
|
||||
|
||||
The root [`.oxlintrc.json`](../../../../.oxlintrc.json) is the authoritative repository lint configuration. The `lint` package script, gate scheduler, CI, and lefthook invoke Oxlint through [`scripts/run-oxlint.ts`](../../../../scripts/run-oxlint.ts) for repository-wide, type-aware, or staged validation. The `lint:fix` script and lefthook first invoke the formatting-only [`eslint.format.config.mjs`](../../../../eslint.format.config.mjs), then run Oxlint. The direct `eslint` and `@typescript-eslint/parser` development dependencies exist only for this parser-without-project formatting pass; their exact versions pin the tested parser/fixer pairing, and that config contains no correctness or type-aware rules.
|
||||
|
||||
`options.typeAware` enables `oxlint-tsgolint`. Its backend performs per-file TypeScript-project discovery: package sources use their package projects, host tests/examples/website use `tsconfig.host.json`, and client tests plus `scripts/client-bundle-purity.spec.ts` use `tsconfig.client.json`. The program-less root solution is never flattened. Oxlint's `--tsconfig` override affects import resolution but is ignored by type-aware linting, so this repository does not set it. The configuration explicitly carries the migrated strict-type-checked rules and repository overrides instead of enabling broad Oxlint categories whose contents may change. `typescript/no-unnecessary-condition` remains enabled from Oxlint's nursery set because it was an enforced repository rule before migration.
|
||||
|
||||
Oxlint's JavaScript-plugin compatibility layer runs `@stylistic/eslint-plugin` and `eslint-plugin-sonarjs` so the existing formatting and file-local duplicate-logic rules remain enforced. The compatibility layer reports `@stylistic` violations but does not execute their fixers, so the formatting-only ESLint pass owns only the corresponding auto-fixes; an executable parity check keeps those fixable rule definitions aligned while `max-len` remains validation-only. Owned-source suppressions use `oxlint-*` directives and the `typescript/*` namespace, and unused directives remain warnings; vendored sources keep their upstream directives because Oxlint excludes `vendor/**`.
|
||||
|
||||
CI does not restore or save a lint-result cache. `DSH_OXLINT_THREADS` makes the shared runner pass the same bound to Oxlint's `--threads` option and the type-aware backend's `GOMAXPROCS` environment variable; ordinary local runs use both defaults. Pre-commit applies the formatting-only ESLint fixes, runs Oxlint validation and native safe fixes, accepts selections containing only ignored files, and re-stages the result through lefthook.
|
||||
|
||||
## Verification
|
||||
|
||||
The migrated configuration reports the same clean owned-source baseline after resolving two analyzer differences: one redundant test assertion was removed, while one structural cast required by `tsc` carries a narrow Oxlint suppression. A one-time audit against the exact deleted ESLint configuration blob established source 88-to-88, examples 87-to-87, and tests 83-to-83 after the rule-name translations. The committed fingerprint pins those audited Oxlint profiles and the complete override shape; it neither executes the deleted configuration nor propagates later upstream preset changes. Evaluating `typescript-eslint@8.61.0` also confirms that `strictTypeChecked` did not enable `@typescript-eslint/no-empty-function`; the deleted tests-only `off` entry was inert.
|
||||
|
||||
Executable contract tests require type-aware diagnostics from the package, host, and client projects; assert the client-only script's project; reject unmatched fallback analysis; and exercise the Stylistic, SonarJS, and nursery compatibility paths. They also pin unused-suppression reporting, ignored-only staged selections, formatter/validator rule parity, and final formatted bytes. Runner tests pin both worker controls, and typecheck confirms that migration-driven source edits preserve the TypeScript programs.
|
||||
|
||||
## Alternatives considered
|
||||
|
||||
**Run both linters repository-wide.** Every correctness rule is available through Oxlint's native rules, nursery rule, or JavaScript-plugin compatibility layer. A repository-wide ESLint fallback would preserve the slower project-service setup and two correctness configurations without adding a check; the retained ESLint pass is deliberately limited to project-free staged formatting.
|
||||
|
||||
**Rely on compatibility-layer fixes.** The layer reports the established `@stylistic` rules but does not apply their fixes under either Oxlint fix mode. Keeping the narrow staged formatter preserves the contributor contract without broadening ESLint back into a repository linter.
|
||||
|
||||
**Drop @stylistic or SonarJS rules that are not native.** This would remove dependencies but weaken the mechanical quality contract. The compatibility layer preserves those rules until native replacements can be evaluated as a separate decision.
|
||||
|
||||
**Replace @stylistic with Oxfmt during the migration.** A formatter migration would change output beyond the lint-engine boundary and create a repository-wide formatting diff. Keeping the established rules makes this change reviewable and leaves formatter selection independent.
|
||||
|
||||
## Consequences
|
||||
|
||||
Local migration measurements reduced a clean type-aware lint run from about 61 seconds to about 8 seconds without a result cache. The exact ratio is host-dependent and is not a performance guarantee.
|
||||
|
||||
Type-aware diagnostics now come from the TypeScript Go analyzer bundled through `oxlint-tsgolint`, so edge-case inference can differ from typescript-eslint even when `tsc` accepts the same program. Lint and typecheck remain separate required evidence.
|
||||
|
||||
The JavaScript-plugin compatibility API and staged formatter are additional boundaries to maintain. Commits pay one project-free ESLint startup before Oxlint, and the root development graph retains ESLint plus the TypeScript parser. Repository-wide validation, type-aware analysis, cache policy, worker control, and inline directives remain Oxlint-owned.
|
||||
@@ -0,0 +1,45 @@
|
||||
# Agent Note: 使用 Oxlint 作为仓库 linter
|
||||
|
||||
Status: implemented
|
||||
|
||||
[English](2026-07-29-oxlint-linter.md) | 中文
|
||||
|
||||
## 问题
|
||||
|
||||
仓库的自有源码需要类型感知的 TypeScript 正确性规则、一致的格式,以及文件内重复逻辑检查。ESLint 通过 JavaScript 解析器、项目服务和多个插件提供这些检查,但在本地迁移基线上,一次无问题的 lint 运行约需 1 分钟,并且需要 8 GiB Node 堆、CI 结果缓存和单独调优的 ESLint 并发度。
|
||||
|
||||
不能以提高运行速度为由丢失规则。迁移必须保留严格类型检查预设、仓库覆盖配置、内联抑制指令、@stylistic 修复、SonarJS 检查、host/client TypeScript 隔离和 vendor 排除规则。
|
||||
|
||||
## 决策
|
||||
|
||||
根目录的 [`.oxlintrc.json`](../../../../.oxlintrc.json) 是仓库 lint 配置的权威来源。`lint` 包(package)脚本、门禁调度器、CI 和 lefthook 通过 [`scripts/run-oxlint.ts`](../../../../scripts/run-oxlint.ts) 调用 Oxlint,进行全仓库、类型感知或暂存验证。`lint:fix` 脚本和 lefthook 先调用仅用于格式化的 [`eslint.format.config.mjs`](../../../../eslint.format.config.mjs),再运行 Oxlint。直接的 `eslint` 和 `@typescript-eslint/parser` 开发依赖仅用于这次不加载项目的格式化流程;其精确版本锁定经过测试的解析器与修复器配对,该配置不包含正确性规则或类型感知规则。
|
||||
|
||||
`options.typeAware` 启用 `oxlint-tsgolint`。其后端按文件发现 TypeScript 项目:包源码使用各自的包项目,host 测试、示例和网站使用 `tsconfig.host.json`,client 测试及 `scripts/client-bundle-purity.spec.ts` 使用 `tsconfig.client.json`。不含程序的根解决方案绝不会被扁平化。Oxlint 的 `--tsconfig` 覆盖项会影响导入解析,但类型感知 lint 会忽略它,因此本仓库不设置该选项。该配置显式载入迁移后的严格类型检查规则和仓库覆盖配置,而不启用内容可能发生变化的 Oxlint 宽泛类别。`typescript/no-unnecessary-condition` 仍从 Oxlint 的 nursery 规则集中启用,因为它在迁移前就是仓库强制执行的规则。
|
||||
|
||||
Oxlint 的 JavaScript 插件兼容层运行 `@stylistic/eslint-plugin` 和 `eslint-plugin-sonarjs`,从而继续强制执行现有的格式和文件内重复逻辑规则。兼容层会报告 `@stylistic` 违规,但不会执行其修复器,因此仅用于格式化的 ESLint 流程只负责相应的自动修复;一项可执行检查确保这些可修复规则定义保持一致,而 `max-len` 仅用于验证。自有源码中的抑制指令使用 `oxlint-*` 指令和 `typescript/*` 命名空间,未使用的指令仍作为警告报告;vendor 源码保留其上游指令,因为 Oxlint 会排除 `vendor/**`。
|
||||
|
||||
CI 不恢复或保存 lint 结果缓存。`DSH_OXLINT_THREADS` 使共享运行器将同一上限传给 Oxlint 的 `--threads` 选项和类型感知后端的 `GOMAXPROCS` 环境变量;普通本地运行对两者均采用默认值。Pre-commit 应用仅用于格式化的 ESLint 修复,运行 Oxlint 验证和原生安全修复,接受仅含已忽略文件的文件选择,并通过 lefthook 重新暂存结果。
|
||||
|
||||
## 验证
|
||||
|
||||
解决两处分析器差异后,迁移后的配置报告与迁移前一致的自有源码无问题基线:移除了一项冗余测试断言,而 `tsc` 要求的一处结构性类型转换使用了窄范围的 Oxlint 抑制指令。以已删除 ESLint 配置的精确 blob 为基准进行的一次性审核在完成规则名映射后确认:源码为 88 项对 88 项,示例为 87 项对 87 项,测试为 83 项对 83 项。已提交的指纹锁定这些经审核的 Oxlint 规则配置及完整的覆盖结构;它既不执行已删除的配置,也不纳入后续的上游预设变更。对 `typescript-eslint@8.61.0` 的评估还确认,`strictTypeChecked` 并未启用 `@typescript-eslint/no-empty-function`;已删除、仅用于测试的 `off` 条目不起作用。
|
||||
|
||||
可执行契约测试要求包、host 和 client 项目产生类型感知诊断,断言 client 专用脚本所用的项目,拒绝未匹配的回退分析,并检验 Stylistic、SonarJS 和 nursery 兼容路径。它们还锁定未使用抑制指令的报告行为、仅选择已忽略暂存文件的情况、格式化器与验证器之间的规则一致性,以及最终格式化后的字节。运行器测试锁定两项工作线程控制,类型检查则确认迁移引发的源码改动没有破坏 TypeScript 程序。
|
||||
|
||||
## 考虑过的替代方案
|
||||
|
||||
**在全仓库范围内同时运行两个 linter。** 所有正确性规则均可通过 Oxlint 原生规则、nursery 规则或 JavaScript 插件兼容层获得。在全仓库范围启用 ESLint 回退会保留较慢的项目服务初始化和两套正确性配置,却不会增加任何检查;保留的 ESLint 流程被刻意限制为不加载项目的暂存文件格式化。
|
||||
|
||||
**依赖兼容层修复。** 兼容层会报告既有的 `@stylistic` 规则,但在 Oxlint 的两种修复模式下都不会应用这些规则的修复。保留窄范围的暂存文件格式化器,可以在不将 ESLint 扩张回仓库 linter 的情况下维持贡献者契约。
|
||||
|
||||
**移除尚无原生实现的 @stylistic 或 SonarJS 规则。** 这会移除依赖,但也会削弱机械质量契约。兼容层会保留这些规则,直到能够通过单独决策评估原生替代规则。
|
||||
|
||||
**迁移期间用 Oxfmt 替换 @stylistic。** 格式化器迁移会产生超出 lint 引擎边界的输出变化,并带来全仓库格式 diff。保留既有规则可使本次变更便于评审,并让格式化器选择保持独立。
|
||||
|
||||
## 结果
|
||||
|
||||
本地迁移测量显示,不使用结果缓存时,一次无问题的类型感知 lint 运行从约 61 秒缩短至约 8 秒。确切比例因主机而异,不构成性能保证。
|
||||
|
||||
类型感知诊断现在来自通过 `oxlint-tsgolint` 捆绑的 TypeScript Go 分析器,因此即使 `tsc` 接受同一程序,边界场景下的类型推断也可能与 typescript-eslint 不同。lint 与类型检查仍是两项相互独立的必要证据。
|
||||
|
||||
JavaScript 插件兼容 API 和暂存文件格式化器是需要维护的额外边界。每次提交在 Oxlint 之前需要启动一次不加载项目的 ESLint,根目录开发依赖图仍保留 ESLint 和 TypeScript 解析器。全仓库验证、类型感知分析、缓存政策、工作线程控制和内联指令仍由 Oxlint 负责。
|
||||
@@ -18,7 +18,7 @@ The stdio and Echo agents are removed without compatibility packages, modes, com
|
||||
|
||||
The remaining application roles are explicit:
|
||||
|
||||
- [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) owns terminal-interactive execution. It rejects non-TTY streams before Loader boot; `apps/cli/base.cordis.yml` plus the `tui.cordis.yml` overlay own the complete coding composition, with the Code Mode overlay in `examples/code-mode` and PTY plus terminal-snapshot coverage in `apps/cli/tests/`.
|
||||
- [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) owns terminal-interactive execution. It rejects non-TTY streams before Loader boot; `apps/cli/config/base.cordis.yml` plus the `tui.cordis.yml` overlay own the complete coding composition, with the Code Mode overlay in `examples/code-mode` and PTY plus terminal-snapshot coverage in `apps/cli/tests/`.
|
||||
- [`@deepseek-ai/dsh-cli-demo`](../../../../packages/examples/cli-demo/README.md) owns non-interactive execution, including pipes. `examples/headless-agent` owns the real-model one-shot composition, replay snapshots, generic real-agent suites, and test-only keyless Loader fixtures.
|
||||
- [`@deepseek-ai/dsh-acp-demo`](../../../../packages/examples/acp-demo/README.md) and `@deepseek-ai/dsh-jsonrpc` own their framed protocol integrations.
|
||||
|
||||
|
||||
@@ -16,7 +16,7 @@ The duplication was the load-bearing problem. Of the 43 shared rows, 38 were byt
|
||||
|
||||
One shared base, one overlay per surface, composed as sibling patch lists.
|
||||
|
||||
`apps/cli/base.cordis.yml` holds the 43 rows both surfaces mount. `apps/cli/tui.cordis.yml` and `apps/cli/web.cordis.yml` are **patch lists**, not trees: each states the handful of rows whose value is surface-specific and inserts its own rows. The launcher includes the base once and applies every overlay as a sibling patch list at **one** include level, because include patches never cross an include boundary — stacking overlays as nested includes would silently stop reaching base rows.
|
||||
`apps/cli/config/base.cordis.yml` holds the 43 rows both surfaces mount. `apps/cli/config/tui.cordis.yml` and `apps/cli/config/web.cordis.yml` are **patch lists**, not trees: each states the handful of rows whose value is surface-specific and inserts its own rows. The launcher includes the base once and applies every overlay as a sibling patch list at **one** include level, because include patches never cross an include boundary — stacking overlays as nested includes would silently stop reaching base rows.
|
||||
|
||||
Precedence is list order, last write winning per row: base, then the surface overlay, then either a `--config` overlay or the personal `~/.dsh/config.yaml`, then the launcher's own flag and profile patches.
|
||||
|
||||
|
||||
@@ -16,7 +16,7 @@ Status: implemented
|
||||
|
||||
一份共享 base,每个 surface 一份 overlay,以平级 patch 列表的形式组合。
|
||||
|
||||
`apps/cli/base.cordis.yml` 持有两个 surface 都会挂载的 43 个配置项。`apps/cli/tui.cordis.yml` 与 `apps/cli/web.cordis.yml` 是 **patch 列表**,不是配置树:各自声明少数取值因 surface 而异的配置项,并 insert 自己的配置项。启动器只 include base 一次,并把每个 overlay 作为**同一** include 层级上的平级 patch 列表应用——因为 include patch 不会跨越 include 边界,把 overlay 堆叠成嵌套 include 会使其静默地无法触达 base 配置项。
|
||||
`apps/cli/config/base.cordis.yml` 持有两个 surface 都会挂载的 43 个配置项。`apps/cli/config/tui.cordis.yml` 与 `apps/cli/config/web.cordis.yml` 是 **patch 列表**,不是配置树:各自声明少数取值因 surface 而异的配置项,并 insert 自己的配置项。启动器只 include base 一次,并把每个 overlay 作为**同一** include 层级上的平级 patch 列表应用——因为 include patch 不会跨越 include 边界,把 overlay 堆叠成嵌套 include 会使其静默地无法触达 base 配置项。
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优先级即列表顺序,逐配置项后写者胜:base,然后是 surface overlay,接着是 `--config` overlay 或个人 `~/.dsh/config.yaml`,最后是启动器自身的 flag 与 profile patch。
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@@ -16,7 +16,7 @@ The web GUI ships as a real assembled chain — chromium page → client plugin
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A plain shared-fixture module (the [testing-policy sanctioned shape](../../../../docs/testing.md)), not a package: the gate-worthy logic — replay derivation, session parsing, log scrubbing, persistence — lives in the gated packages `dsh-llm-replay`, `dsh-acp-snapshot`, and `dsh-session-persistence-jsonl`; what remains is boot wiring and browser glue, and chromium-driving code cannot hold per-file 100% coverage on the browserless coverage runners.
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||||
`launchWebScaffold()` boots the real web composition from the shipped `apps/cli/base.cordis.yml` plus `apps/cli/web.cordis.yml` through the vendored Loader's include mechanism — the same tree and mechanism `AppCLIEntry` drives for `dsh web`. Divergences ride include patches over that tree, the ACP `cordis.snapshot.yml` pattern expressed in-process: temp `persistenceRoot`, `workspace-context` disabled (recorded fixtures must not embed this repo's AGENTS.md), `session-title-llm` disabled (its fire-and-forget title call would race the loop for the session's replay cursor), the webserver row pinned to port 0 with the built dist, and in keyless modes `llm-deepseek` disabled. A patch id that stops matching a row fails the boot sweep loudly instead of drifting. The boot runs `chdir`'d to the temp workspace so the api-gateway's `process.cwd()` session default, tool cwds, and fixtures agree; the `dsh web` bin's own glue (argv, profile json, AppCLIEntry) stays held by the keyless CLI smokes in `smoke-real.e2e.ts`. Setup rollback and ordinary close both dispose the Cordis tree before removing the two owned temp roots, attempt every cleanup independently, and report cleanup failures without masking the setup failure.
|
||||
`launchWebScaffold()` boots the real web composition from the shipped `apps/cli/config/base.cordis.yml` plus `apps/cli/config/web.cordis.yml` through the vendored Loader's include mechanism — the same tree and mechanism `AppCLIEntry` drives for `dsh web`. Divergences ride include patches over that tree, the ACP `cordis.snapshot.yml` pattern expressed in-process: temp `persistenceRoot`, `workspace-context` disabled (recorded fixtures must not embed this repo's AGENTS.md), `session-title-llm` disabled (its fire-and-forget title call would race the loop for the session's replay cursor), the webserver row pinned to port 0 with the built dist, and in keyless modes `llm-deepseek` disabled. A patch id that stops matching a row fails the boot sweep loudly instead of drifting. The boot runs `chdir`'d to the temp workspace so the api-gateway's `process.cwd()` session default, tool cwds, and fixtures agree; the `dsh web` bin's own glue (argv, profile json, AppCLIEntry) stays held by the keyless CLI smokes in `smoke-real.e2e.ts`. Setup rollback and ordinary close both dispose the Cordis tree before removing the two owned temp roots, attempt every cleanup independently, and report cleanup failures without masking the setup failure.
|
||||
|
||||
Keyless model displacement is the disabled adapter row plus `installLlmReplay` filling the open seam on the settled root ctx in providers-catalog mode — never catch-all: with the adapter row disabled no adapter exists, so catch-all would leave `resolveModelInfo` unroutable and `compact-basic`'s post-step pressure check would warn every step instead of being provably inert (the published 128k `contextWindow` keeps it inert for small fixtures). The direct install rather than an inserted replay plugin row is deliberate: it returns the `ReplayHandle` the teardown consumption check needs. A scenario with no fixture leaves the seam empty, so a stray stream fails loud with NO_ADAPTER.
|
||||
|
||||
@@ -66,7 +66,7 @@ Surveyed AI-chat/agent web UIs and mocking layers (LibreChat, vercel/ai-chatbot
|
||||
|
||||
**A committed normalized-session-log golden as a second expected surface.** Rejected: the log surface is pinned by the ACP/headless/TUI suites through the same loop and persistence; here it would double refresh cost and re-test lower tiers. Inline world-state assertions on root-context events keep the world-verification duty.
|
||||
|
||||
**Spawning the `dsh web` bin with a `DSH_SNAPSHOT` replay branch.** Rejected: it needs a test-only replay branch plus environment plumbing in the shipped CLI. The in-process scaffold already loads the same `apps/cli/base.cordis.yml` plus `apps/cli/web.cordis.yml`; only argv, profile JSON, and `AppCLIEntry` glue remain outside it, and the keyless CLI smokes cover those paths.
|
||||
**Spawning the `dsh web` bin with a `DSH_SNAPSHOT` replay branch.** Rejected: it needs a test-only replay branch plus environment plumbing in the shipped CLI. The in-process scaffold already loads the same `apps/cli/config/base.cordis.yml` plus `apps/cli/config/web.cordis.yml`; only argv, profile JSON, and `AppCLIEntry` glue remain outside it, and the keyless CLI smokes cover those paths.
|
||||
|
||||
**Changing the wire protocol for testability.** Rejected: the contract already has a first-class keyless isomorphic seam (`InProcessApiClient(toFetchHandler(api))`), the per-event unbatched SSE is exactly what makes replay observable in a browser, and testing a wire we no longer ship would invert the tier's purpose.
|
||||
|
||||
|
||||
@@ -16,7 +16,7 @@ Web GUI 以一条真实组装链交付——chromium 页面 → client 插件 bu
|
||||
|
||||
一个普通的共享 fixture 模块([测试政策认可的形态](../../../../docs/testing.md)),不是包:值得门禁把守的逻辑——回放推导、会话解析、日志脱敏、持久化——都在已受门禁的包 `dsh-llm-replay`、`dsh-acp-snapshot`、`dsh-session-persistence-jsonl` 中;剩下的只是启动接线和浏览器胶水,而驱动 chromium 的源码在无浏览器的覆盖率 runner 上无法诚实保持逐文件 100% 覆盖率。
|
||||
|
||||
`launchWebScaffold()` 通过 vendored Loader 的 include 机制,从交付的 `apps/cli/base.cordis.yml` 与 `apps/cli/web.cordis.yml` 启动真实 web 组合——与 `AppCLIEntry` 为 `dsh web` 驱动的是同一棵树、同一套机制。差异全部经 include patch 覆盖在这棵树上,即 ACP `cordis.snapshot.yml` 模式的进程内表达:临时 `persistenceRoot`;禁用 `workspace-context`(录制的 fixture 不得嵌入本仓库的 AGENTS.md);禁用 `session-title-llm`(其发后不管的标题调用会与循环争抢会话的回放游标);webserver 行钉到端口 0 加已构建 dist;无密钥模式下禁用 `llm-deepseek`。patch 的 id 一旦不再匹配任何行,boot 扫描会大声失败而不是漂移。boot 在临时工作区 `chdir` 下运行,使 api-gateway 的 `process.cwd()` 会话默认值、工具 cwd 与 fixture 一致;`dsh web` bin 自身的胶水(argv、profile json、AppCLIEntry)仍由 `smoke-real.e2e.ts` 中的无密钥 CLI 冒烟把守。初始化回滚和正常关闭都会先对 Cordis 树执行 dispose(资源释放),再删除 scaffold 持有的两个临时根目录;每项清理都会独立尝试,并会报告清理失败而不掩盖初始化失败。
|
||||
`launchWebScaffold()` 通过 vendored Loader 的 include 机制,从交付的 `apps/cli/config/base.cordis.yml` 与 `apps/cli/config/web.cordis.yml` 启动真实 web 组合——与 `AppCLIEntry` 为 `dsh web` 驱动的是同一棵树、同一套机制。差异全部经 include patch 覆盖在这棵树上,即 ACP `cordis.snapshot.yml` 模式的进程内表达:临时 `persistenceRoot`;禁用 `workspace-context`(录制的 fixture 不得嵌入本仓库的 AGENTS.md);禁用 `session-title-llm`(其发后不管的标题调用会与循环争抢会话的回放游标);webserver 行钉到端口 0 加已构建 dist;无密钥模式下禁用 `llm-deepseek`。patch 的 id 一旦不再匹配任何行,boot 扫描会大声失败而不是漂移。boot 在临时工作区 `chdir` 下运行,使 api-gateway 的 `process.cwd()` 会话默认值、工具 cwd 与 fixture 一致;`dsh web` bin 自身的胶水(argv、profile json、AppCLIEntry)仍由 `smoke-real.e2e.ts` 中的无密钥 CLI 冒烟把守。初始化回滚和正常关闭都会先对 Cordis 树执行 dispose(资源释放),再删除 scaffold 持有的两个临时根目录;每项清理都会独立尝试,并会报告清理失败而不掩盖初始化失败。
|
||||
|
||||
无密钥的模型替换 = 禁用适配器行的 patch 加 `installLlmReplay` 在停稳的根 ctx 上以提供方目录(providers-catalog)模式填充开放的 seam——绝不用 catch-all:适配器行被禁用后不存在任何适配器,catch-all 会让 `resolveModelInfo` 无路由可走,`compact-basic` 的步后压力检查将步步告警,而不是被可证明地闲置(发布的 128k `contextWindow` 使该路径对小 fixture 保持闲置)。选择直接安装而非插入回放插件行是刻意的:直接安装返回收尾消费检查所需的 `ReplayHandle`。没有 fixture 的场景让 seam 保持空置,任何离群的流式调用都会以 NO_ADAPTER 大声失败。
|
||||
|
||||
@@ -66,7 +66,7 @@ Web GUI 以一条真实组装链交付——chromium 页面 → client 插件 bu
|
||||
|
||||
**第二份提交的规范化会话日志预期输出。** 已否决:日志表面已由 ACP/headless/TUI 套件经同一循环与持久化钉住;在此只会翻倍刷新成本并重复测试下层。内联在根上下文事件上的世界状态断言保住了验证世界的义务。
|
||||
|
||||
**以 `DSH_SNAPSHOT` 回放分支拉起 `dsh web` bin。** 已否决:它需要在交付的 CLI 中增加测试专用回放分支和环境变量管道。进程内 scaffold 已加载同一份 `apps/cli/base.cordis.yml` 与 `apps/cli/web.cordis.yml`;只剩 argv、profile JSON 和 `AppCLIEntry` 胶水不在其覆盖范围内,而这些路径已由无密钥 CLI 冒烟覆盖。
|
||||
**以 `DSH_SNAPSHOT` 回放分支拉起 `dsh web` bin。** 已否决:它需要在交付的 CLI 中增加测试专用回放分支和环境变量管道。进程内 scaffold 已加载同一份 `apps/cli/config/base.cordis.yml` 与 `apps/cli/config/web.cordis.yml`;只剩 argv、profile JSON 和 `AppCLIEntry` 胶水不在其覆盖范围内,而这些路径已由无密钥 CLI 冒烟覆盖。
|
||||
|
||||
**为可测试性改 wire 协议。** 已否决:契约已有第一等的无密钥同构 seam(`InProcessApiClient(toFetchHandler(api))`),逐事件不合批的 SSE 恰是回放在浏览器中可观测的原因,测试一条不再交付的 wire 会颠倒该层的存在意义。
|
||||
|
||||
|
||||
Reference in New Issue
Block a user