fix(ci): windows coverage runs zero-build like the linux lane
The windows-coverage job built the workspace before running the same ci-coverage gates as Linux, but the instrumented corpus resolves workspace imports to src through the tsconfig paths map and never consumes lib/; the two lib-consuming suites (webworker-packer image-loadable, session-persistence-sqlite built-package) self-skip on unbuilt checkouts, exactly how the Linux lane already runs them. Remove the build step so both lanes behave identically, and pin the zero-build invariant in ci-workflow.spec.ts (red before this change, green after). Agent Notes updated in place: corrected the build-wait rationale and the wrong attribution of the packer assertions to the instrumented suite.
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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 .agents/notes/implemented/process/2026-08-08-native-windows-pull-request-ci.md
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2026-08-08-native-windows-pull-request-ci.md: cf656ab2c82fb43b4172a07b6b68fa53a62ef8a3
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2026-08-08-native-windows-pull-request-ci.zh.md: 81ed390d27d7f7918c540a56a2d1fac1c094a447
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2026-08-08-native-windows-pull-request-ci.md: 34df41f0db9f09a60ec20c989df054f0b200fb0b
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2026-08-08-native-windows-pull-request-ci.zh.md: 379c5a6200769a80b3d543873ebd172ffaad0b7d
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@ -18,9 +18,9 @@ Every pull request also starts four independent native jobs on the organization-
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`windows-build` and `windows-native-tests` are dependencies of `all checks passed`; their workspace-build and targeted native-process results are blocking. `windows-coverage` remains an ordinary job but is absent from aggregate `needs`, so its 100%-per-file result stays red and visible without delaying the required verdict. `windows-observational` is also absent from aggregate `needs` and uses `continue-on-error` because Linux owns the blocking static, documentation, package, and built-artifact verdicts.
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`windows-coverage` completes a workspace build before [in-job partitioned coverage](2026-08-18-in-job-partitioned-coverage.md) starts four single-worker instrumented shards beside a two-worker exempt-heavy gate. Both coverage gates set Vitest's default per-test and polling budgets to 30 seconds. `windows-observational` owns its own workspace build and production-site validation, starts the independent static gates together, and caps `publint` at eight workers. Its built-bin smoke starts only after every other observational gate settles; the smoke's `needs` edge still requires a successful build, while its `after` edges preserve the diagnostic after another gate fails. This keeps bounded real-application startup measurements from competing with tool-catalog, NodeNext, package, and documentation processes. The SQLite busy-journal pacing fixture injects two busy results followed by success under the normal busy budget and observes each inter-attempt delay, keeping schema-setup scheduling outside its timing assertion. The script-only translation-pairing merge suite runs in the exempt-heavy gate because it imports only `scripts/` sources and child processes; V8 instrumentation contributes no threshold coverage there but magnifies Git-process latency. Lefthook concurrency fixtures retain their outcomes with 30-second case budgets and a 10-second process-ready probe, while the installer allows five seconds for a preempted lock owner to publish its record after exclusive creation. Directory-picker composition gives its debounced config write an explicit 15-second poll budget; workspace-context composition fixtures use a test-owned signal without an unrelated one-second deadline. The LSP sources and the ACL-sandbox sources remain in the Windows denominator: stub-based failure-path suites carry every in-process ACL-sandbox file to 100%, and only the runner entry stays excluded — it executes exclusively as a spawned child outside the instrumented run, its behavior pinned end-to-end by the runner suite. Narrow annotated V8 ignores cover only unreachable branches (peer-platform arms and lifecycle-unreachable guards), with their behavior tests retained on the owning platform.
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`windows-coverage` runs [in-job partitioned coverage](2026-08-18-in-job-partitioned-coverage.md) without a preceding build, matching the Linux coverage lane: four single-worker instrumented shards beside a two-worker exempt-heavy gate; workspace imports resolve to `src` through the tsconfig paths map, and the lib-consuming suites self-skip on unbuilt checkouts. Both coverage gates raise Vitest's per-test, expect.poll, and hook budgets through `DSH_COVERAGE_TEST_TIMEOUT_MS=90000`. `windows-observational` owns its own workspace build and production-site validation, starts the independent static gates together, and caps `publint` at eight workers. Its built-bin smoke starts only after every other observational gate settles; the smoke's `needs` edge still requires a successful build, while its `after` edges preserve the diagnostic after another gate fails. This keeps bounded real-application startup measurements from competing with tool-catalog, NodeNext, package, and documentation processes. The SQLite busy-journal pacing fixture injects two busy results followed by success under the normal busy budget and observes each inter-attempt delay, keeping schema-setup scheduling outside its timing assertion. The script-only translation-pairing merge suite runs in the exempt-heavy gate because it imports only `scripts/` sources and child processes; V8 instrumentation contributes no threshold coverage there but magnifies Git-process latency. Lefthook concurrency fixtures retain their outcomes with 30-second case budgets and a 10-second process-ready probe, while the installer allows five seconds for a preempted lock owner to publish its record after exclusive creation. Directory-picker composition gives its debounced config write an explicit 15-second poll budget; workspace-context composition fixtures use a test-owned signal without an unrelated one-second deadline. The LSP sources and the ACL-sandbox sources remain in the Windows denominator: stub-based failure-path suites carry every in-process ACL-sandbox file to 100%, and only the runner entry stays excluded — it executes exclusively as a spawned child outside the instrumented run, its behavior pinned end-to-end by the runner suite. Narrow annotated V8 ignores cover only unreachable branches (peer-platform arms and lifecycle-unreachable guards), with their behavior tests retained on the owning platform.
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The 16-core allocation is the measured capacity point for this inventory. Six-worker coverage trials produced complete passes in 6 minutes 27 seconds and 7 minutes 50 seconds, while exact-head trials with four, three, and two concurrent workers inside one instrumented Vitest process exposed unreliable fixtures and worker exits. Separate single-worker child processes retain process isolation. Historical sixteen-shard samples reduced instrumented coverage to 112.66–122.01 seconds. The pull-request coverage job schedules four instrumented children plus two exempt workers after the build, while the self-hosted complete reference runs its unsharded coverage gates serially with one worker. A six-partition pull-request profile creates enough process and type-aware lint contention to violate bounded test deadlines. Sixteen instrumented shards plus two exempt workers would exceed a 16-core allocation before system overhead. A 32-core comparison reduced aggregate gate time by only 1.47 seconds and still triggered the CJS-lexer fatal inside a fork worker, so additional cores did not provide a reliable wall-clock improvement.
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The 16-core allocation is the measured capacity point for this inventory. Six-worker coverage trials produced complete passes in 6 minutes 27 seconds and 7 minutes 50 seconds, while exact-head trials with four, three, and two concurrent workers inside one instrumented Vitest process exposed unreliable fixtures and worker exits. Separate single-worker child processes retain process isolation. Historical sixteen-shard samples reduced instrumented coverage to 112.66–122.01 seconds. The pull-request coverage job schedules four instrumented children plus two exempt workers without a preceding build, while the self-hosted complete reference runs its unsharded coverage gates serially with one worker. A six-partition pull-request profile creates enough process and type-aware lint contention to violate bounded test deadlines. Sixteen instrumented shards plus two exempt workers would exceed a 16-core allocation before system overhead. A 32-core comparison reduced aggregate gate time by only 1.47 seconds and still triggered the CJS-lexer fatal inside a fork worker, so additional cores did not provide a reliable wall-clock improvement.
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The first native run exposed two failures hidden by the compatibility lane. Documentation projection tests derived an image basename by splitting only on `/`; they now use Node's platform basename. Chokidar consumers received `%TEMP%` through the `C:\\Users\\RUNNER~1` 8.3 alias while libuv returned the long directory name, tripping its Windows event-path assertion. Shared settings and credentials watchers, plus Cordis module and exact-config HMR, now canonicalize the existing native watch base or deepest existing ancestor before opening the watcher and preserve a missing suffix, while file access and diagnostics retain the configured path. Module HMR attaches listeners and awaits the main watcher's ready event before plugin startup settles, so an immediate post-boot edit cannot race the initial scan. HMR acceptance derives expected identities through the same asynchronous native realpath operation, avoiding a synchronous Windows spelling that can retain the 8.3 alias.
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@ -52,6 +52,6 @@ Shiki disables lazy TextMate-regex compilation and warms each boot grammar befor
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Wine preserves the required aggregate's existing critical path and job identity. Native coverage and observational results can still be pending or red when `all checks passed` turns green, so branch protection consumes Wine plus the targeted native build and process checks while reviewers and follow-up automation consume the remaining native results.
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Every pull request nevertheless receives a real NT kernel, NTFS, PowerShell, Windows process, native addon, and supported-source coverage signal. The native jobs duplicate setup and repeat builds across the build, coverage, and observational workspaces, but they lower each job's process count and expose path, watcher, lifecycle, and fixture defects hidden by the compatibility lane.
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Every pull request nevertheless receives a real NT kernel, NTFS, PowerShell, Windows process, native addon, and supported-source coverage signal. The native jobs duplicate setup across the build, coverage, and observational workspaces and repeat builds in the build and observational ones, but they lower each job's process count and expose path, watcher, lifecycle, and fixture defects hidden by the compatibility lane.
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Maintainers must preserve two intentional execution topologies: the Wine snapshot uses Linux installation plus a hoisted layout to reach win32 binaries, while the native jobs use separate immutable workspaces on the organization-owned 16-core Windows runner. A failure unique to either topology must be classified against that boundary rather than weakened or silently skipped.
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@ -18,9 +18,9 @@ Status: implemented
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`windows-build` 与 `windows-native-tests` 是 `all checks passed` 的依赖项;其工作区构建和定向原生进程结果具有阻断性。`windows-coverage` 仍是常规作业,但不在聚合流程的 `needs` 中,因此逐文件 100% 覆盖率结果会保持红灯并可见,却不会延迟必需判定。`windows-observational` 同样不在聚合流程的 `needs` 中,并使用 `continue-on-error`,因为静态检查、文档、包与构建产物的阻断性判定由 Linux 负责。
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`windows-coverage` 会先完成一次工作区构建,再由[job 内分区覆盖率](2026-08-18-in-job-partitioned-coverage.zh.md)启动 4 个单 worker 插桩分片,并与一个双 worker 的豁免重型门禁并行运行。两项覆盖率门禁都将 Vitest 默认的单测试和轮询时间预算设为 30 秒。`windows-observational` 拥有自己的工作区构建和生产网站验证,会一起启动相互独立的静态门禁,并将 `publint` 限制为最多 8 个 worker。其 built-bin 冒烟测试只在其他所有观测性门禁结算后启动;冒烟测试的 `needs` 边仍要求构建成功,而 `after` 边会在其他门禁失败后保留这项诊断。这可避免有界的真实应用启动测量与 tool-catalog、NodeNext、包及文档进程争抢资源。SQLite busy-journal 节奏 fixture 会在普通 busy 预算内先注入两次 busy 结果,再返回成功,并观察每次尝试之间的延迟,使 schema 设置的调度时间不进入该断言。translation-pairing 合并套件只导入 `scripts/` 源码和子进程,因此放入豁免重型套件门禁;V8 插桩不会为它贡献任何阈值覆盖率,却会放大 Git 进程延迟。Lefthook 并发 fixture 保留原有结果,采用 30 秒单用例预算与 10 秒进程就绪探测;安装器则允许被抢占的 lock 持有者在独占创建后用 5 秒发布记录。directory-picker 组合为防抖配置写入提供显式的 15 秒轮询预算;workspace-context 组合 fixture 使用测试自有、没有无关 1 秒截止时间的信号。LSP 源码与 ACL 沙箱源码仍计入 Windows 分母:基于 stub 的失败路径套件把每个进程内 ACL 沙箱文件都带到 100%,只有 runner 入口保持排除——它只作为 spawn 出的子进程在插桩运行之外执行,其行为由 runner 套件端到端钉住。窄范围且带注释的 V8 ignore 只覆盖不可达分支(另一平台专属分支、生命周期内不可达的防御守卫),其行为测试仍保留在所属平台。
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`windows-coverage` 与 Linux 覆盖率通道一致,不先构建工作区就运行[job 内分区覆盖率](2026-08-18-in-job-partitioned-coverage.zh.md):4 个单 worker 插桩分片与一个双 worker 的豁免重型门禁并行运行;工作区导入通过 tsconfig paths 映射解析到 `src`,消费构建产物的套件在未构建的检出上会自跳。两项覆盖率门禁都通过 `DSH_COVERAGE_TEST_TIMEOUT_MS=90000` 提高 Vitest 的单测试、expect.poll 与 hook 预算。`windows-observational` 拥有自己的工作区构建和生产网站验证,会一起启动相互独立的静态门禁,并将 `publint` 限制为最多 8 个 worker。其 built-bin 冒烟测试只在其他所有观测性门禁结算后启动;冒烟测试的 `needs` 边仍要求构建成功,而 `after` 边会在其他门禁失败后保留这项诊断。这可避免有界的真实应用启动测量与 tool-catalog、NodeNext、包及文档进程争抢资源。SQLite busy-journal 节奏 fixture 会在普通 busy 预算内先注入两次 busy 结果,再返回成功,并观察每次尝试之间的延迟,使 schema 设置的调度时间不进入该断言。translation-pairing 合并套件只导入 `scripts/` 源码和子进程,因此放入豁免重型套件门禁;V8 插桩不会为它贡献任何阈值覆盖率,却会放大 Git 进程延迟。Lefthook 并发 fixture 保留原有结果,采用 30 秒单用例预算与 10 秒进程就绪探测;安装器则允许被抢占的 lock 持有者在独占创建后用 5 秒发布记录。directory-picker 组合为防抖配置写入提供显式的 15 秒轮询预算;workspace-context 组合 fixture 使用测试自有、没有无关 1 秒截止时间的信号。LSP 源码与 ACL 沙箱源码仍计入 Windows 分母:基于 stub 的失败路径套件把每个进程内 ACL 沙箱文件都带到 100%,只有 runner 入口保持排除——它只作为 spawn 出的子进程在插桩运行之外执行,其行为由 runner 套件端到端钉住。窄范围且带注释的 V8 ignore 只覆盖不可达分支(另一平台专属分支、生命周期内不可达的防御守卫),其行为测试仍保留在所属平台。
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16 核配置是这项清单经实测选定的容量规格。使用 6 个 coverage worker 的试验分别以 6 分 27 秒和 7 分 50 秒跑出完整通过结果,而在单个插桩 Vitest 进程内使用 4 个、3 个和 2 个并发 worker 的分支头精确试验暴露出不稳定的 fixture 与 worker 退出。相互独立的单 worker 子进程保留进程隔离。历史上的 16 分片样本把插桩覆盖率缩短到 112.66–122.01 秒。拉取请求覆盖率作业会在构建后调度 4 个插桩子进程和 2 个豁免 worker,而自托管完整参考流程会用 1 个 worker 串行运行未分片的覆盖率门禁。拉取请求若采用 6 分片配置,就会产生足以违反有界测试截止时间的进程与类型感知 lint 争用。16 个插桩分片加 2 个豁免 worker 会在计入系统开销前就超过 16 核分配。32 核对比仅将聚合门禁时间缩短 1.47 秒,且仍在 fork worker 内触发 CJS lexer 致命故障,因此增加核心数没有带来可靠的墙钟时间改善。
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16 核配置是这项清单经实测选定的容量规格。使用 6 个 coverage worker 的试验分别以 6 分 27 秒和 7 分 50 秒跑出完整通过结果,而在单个插桩 Vitest 进程内使用 4 个、3 个和 2 个并发 worker 的分支头精确试验暴露出不稳定的 fixture 与 worker 退出。相互独立的单 worker 子进程保留进程隔离。历史上的 16 分片样本把插桩覆盖率缩短到 112.66–122.01 秒。拉取请求覆盖率作业会在没有前置构建的情况下调度 4 个插桩子进程和 2 个豁免 worker,而自托管完整参考流程会用 1 个 worker 串行运行未分片的覆盖率门禁。拉取请求若采用 6 分片配置,就会产生足以违反有界测试截止时间的进程与类型感知 lint 争用。16 个插桩分片加 2 个豁免 worker 会在计入系统开销前就超过 16 核分配。32 核对比仅将聚合门禁时间缩短 1.47 秒,且仍在 fork worker 内触发 CJS lexer 致命故障,因此增加核心数没有带来可靠的墙钟时间改善。
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首次原生运行暴露出两项被兼容性通道掩盖的故障。文档投影测试此前只按 `/` 拆分来派生图片 basename;现在改为使用 Node 根据平台计算的 basename。Chokidar 消费方收到的 `%TEMP%` 以 `C:\\Users\\RUNNER~1` 这个 8.3 别名表示,而 libuv 返回的是长目录名,导致其 Windows 事件路径断言失败。共享的设置 watcher 与凭据 watcher,以及 Cordis 的模块 HMR(热模块替换)与精确配置 HMR,现在都会在打开 watcher 前规范化现有的原生监听基准路径或层级最深的现有祖先路径,并保留尚不存在的后缀;文件访问和诊断仍使用配置路径。模块 HMR 会挂接监听器并等待主 watcher 的 ready 事件,之后插件启动才会完成,因此启动后立即发生的编辑无法与初始扫描形成竞态。HMR 验收通过相同的异步原生 realpath 操作派生预期身份,避免同步 Windows 路径写法仍保留 8.3 别名。
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@ -52,6 +52,6 @@ Shiki 会禁用 TextMate 正则的延迟编译,并在用户内容进入保持
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Wine 保留必需聚合流程现有的关键路径和作业身份。`all checks passed` 变绿时,原生覆盖率与观测性结果仍可能处于待处理或红灯状态,因此分支保护采用 Wine 加定向原生构建和进程检查,而评审者和后续自动化采用其余原生结果。
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尽管如此,每个拉取请求都会获得真实 NT 内核、NTFS、PowerShell、Windows 进程、原生插件和受支持源码覆盖率信号。原生作业会重复设置流程,并在构建、覆盖率与观测性工作区中重复构建,但它们会降低每个作业的进程数,并暴露兼容性通道掩盖的路径、watcher、生命周期与 fixture 缺陷。
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尽管如此,每个拉取请求都会获得真实 NT 内核、NTFS、PowerShell、Windows 进程、原生插件和受支持源码覆盖率信号。原生作业会在构建、覆盖率与观测性工作区中重复设置流程,并在构建与观测性工作区中重复构建,但它们会降低每个作业的进程数,并暴露兼容性通道掩盖的路径、watcher、生命周期与 fixture 缺陷。
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维护者必须保留两种有意设计的执行拓扑:Wine 快照使用 Linux 安装加 hoisted 布局来触达 win32 二进制文件,而原生作业在组织自有的 16 核 Windows 运行器上使用相互独立的不可变工作区。任一拓扑独有的失败都必须依据该边界分类,不得削弱或静默跳过。
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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 .agents/notes/implemented/process/2026-08-18-in-job-partitioned-coverage.md
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2026-08-18-in-job-partitioned-coverage.md: 33824f0aa6f3541df8ca2e0cc8c417b40b5d7933
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2026-08-18-in-job-partitioned-coverage.zh.md: c32738462f7e33d9377d314a9ded5f82cebe9db3
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2026-08-18-in-job-partitioned-coverage.md: 2bde2a8ea1144543cac2e44bc30828ae9b52b5b4
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2026-08-18-in-job-partitioned-coverage.zh.md: 95f6ccdeedf1117fe8ea769d7555361b285c368c
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The coordinator waits for every child, validates that the blob directory contains exactly the expected files, and then runs one `vitest --merge-reports ... --coverage` command. Only that merged command applies the repository's per-file statement, branch, function, and line thresholds, so a partition is never judged against an intentionally partial inventory.
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`DSH_COVERAGE_MAX_WORKERS` continues to size the uninstrumented exempt gate and the ordinary non-partitioned path; it does not resize partition children. Native Windows gives the exempt gate two workers and admits four concurrent outer gates. The workspace build and production-site validation start immediately; both coverage gates wait for the complete build. The instrumented suite contains packer assertions over built `lib/` output, so this dependency prevents it from reading a partially emitted package closure, while also preventing the exempt gate's temporary Oxlint probes from racing source compilation. The observational inventory waits only for both coverage gates to settle, so it still runs after a coverage failure; each gate's `needs` dependencies remain pass-required. Linux overlaps four instrumented partition processes with two exempt workers, restoring the ordinary path's former four-way instrumented concurrency while keeping every instrumented process single-worker.
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`DSH_COVERAGE_MAX_WORKERS` continues to size the uninstrumented exempt gate and the ordinary non-partitioned path; it does not resize partition children. Native Windows gives the exempt gate two workers and admits four concurrent outer gates. In the complete reference, the workspace build and production-site validation start immediately and both coverage gates wait for the complete build; the wait also keeps the exempt gate's temporary Oxlint probes from racing source compilation. The pull-request coverage job runs the same zero-build coverage as Linux: workspace imports resolve to `src` through the tsconfig paths map, and the lib-consuming suites — the exempt gate's packer image assertions and the instrumented corpus's built-package check — self-skip on unbuilt checkouts. The observational inventory waits only for both coverage gates to settle, so it still runs after a coverage failure; each gate's `needs` dependencies remain pass-required. Linux overlaps four instrumented partition processes with two exempt workers, restoring the ordinary path's former four-way instrumented concurrency while keeping every instrumented process single-worker.
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## Failure and output semantics
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Coverage pays one Vitest startup/configuration cost per partition and one report-merge cost, but it avoids another workflow topology and keeps one final threshold verdict. Partition output may interleave, while the partition start labels and Vitest file identities retain attribution.
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Linux and Windows use the same coordinator with platform-specific partition counts and surrounding worker budgets. Native Windows starts both coverage gates after the complete build because its instrumented corpus can consume built artifacts; Linux's dedicated coverage job does not share a workspace with a concurrent build. Local coverage stays simple unless a caller explicitly chooses the partitioned package script and supplies a valid count greater than one.
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Linux and Windows use the same coordinator with platform-specific partition counts and surrounding worker budgets. Both pull-request coverage lanes run without a preceding build; the complete reference (serial-windows standby) still starts its coverage gates after the build gate so the lib-consuming suites execute against real artifacts. Local coverage stays simple unless a caller explicitly chooses the partitioned package script and supplies a valid count greater than one.
|
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|
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Future tuning starts from completed runs at one fixed configuration. Slow progress alone never raises partition count or outer concurrency, because repeated restarts would erase the only evidence needed to choose a stable setting.
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|
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@ -18,7 +18,7 @@ Status: implemented
|
|||
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协调器等待全部子进程结束,验证 blob 目录只包含预期文件,然后执行一次 `vitest --merge-reports ... --coverage`。只有这条合并命令应用仓库的逐文件语句、分支、函数与行阈值,因此系统不会拿有意不完整的测试清单单独判定任一分区。
|
||||
|
||||
`DSH_COVERAGE_MAX_WORKERS` 继续控制无插桩豁免门禁和普通非分区路径的规模,不会调整分区子进程。原生 Windows 为豁免门禁分配 2 个 worker,并允许 4 道外层门禁并发。工作区构建与生产网站验证会立即启动;两道覆盖率门禁都等待完整构建。插桩套件包含针对已构建 `lib/` 输出的打包器断言,因此这项依赖可避免它读取只完成部分产出的包闭包,也可避免豁免门禁的临时 Oxlint 探针与源码编译竞态。观测性清单只等待两道覆盖率门禁结算,因此在覆盖率失败后仍会运行;各门禁自身的 `needs` 依赖仍要求前置门禁通过。Linux 让 4 个插桩分区进程与 2 个豁免 worker 重叠运行,在保持每个插桩进程只有 1 个 worker 的同时,恢复普通路径原有的 4 路插桩并发。
|
||||
`DSH_COVERAGE_MAX_WORKERS` 继续控制无插桩豁免门禁和普通非分区路径的规模,不会调整分区子进程。原生 Windows 为豁免门禁分配 2 个 worker,并允许 4 道外层门禁并发。在完整参考流程中,工作区构建与生产网站验证会立即启动,两道覆盖率门禁都等待完整构建;这次等待也能避免豁免门禁的临时 Oxlint 探针与源码编译竞态。拉取请求覆盖率 job 与 Linux 一样以零构建方式运行:工作区导入通过 tsconfig paths 映射解析到 `src`,而消费构建产物的套件——豁免门禁的打包器镜像断言与插桩语料的 built-package 校验——在未构建的检出上会自跳。观测性清单只等待两道覆盖率门禁结算,因此在覆盖率失败后仍会运行;各门禁自身的 `needs` 依赖仍要求前置门禁通过。Linux 让 4 个插桩分区进程与 2 个豁免 worker 重叠运行,在保持每个插桩进程只有 1 个 worker 的同时,恢复普通路径原有的 4 路插桩并发。
|
||||
|
||||
## 失败与输出语义
|
||||
|
||||
|
|
@ -46,6 +46,6 @@ Status: implemented
|
|||
|
||||
每个分区都要支付 1 次 Vitest 启动与配置开销,最后还要执行 1 次报告合并,但它不引入另一套工作流拓扑,并保留唯一的最终阈值判定。分区输出可能交错,但分区启动标签和 Vitest 文件标识仍可用于归因。
|
||||
|
||||
Linux 与 Windows 使用相同的协调器,并各自设置分区数量与外围 worker 预算。原生 Windows 会在完整构建之后启动两道覆盖率门禁,因为其插桩语料可能消费构建产物;Linux 的专用覆盖率 job 不会与同一工作区中的并发构建共享目录。本地覆盖率默认保持简单;只有调用方显式选择分区包脚本并提供大于 1 的合法数量时,才启用分区。
|
||||
Linux 与 Windows 使用相同的协调器,并各自设置分区数量与外围 worker 预算。两条拉取请求覆盖率通道都以零构建方式运行;完整参考流程(serial-windows standby)仍在构建门禁之后启动其覆盖率门禁,使消费构建产物的套件对真实产物执行。本地覆盖率默认保持简单;只有调用方显式选择分区包脚本并提供大于 1 的合法数量时,才启用分区。
|
||||
|
||||
未来调优从一个固定配置的完整运行开始。进度缓慢本身绝不会提高分区数量或外层并发,因为反复重启会抹掉选择稳定设置所需的唯一证据。
|
||||
|
|
|
|||
7
.github/workflows/ci.yml
vendored
7
.github/workflows/ci.yml
vendored
|
|
@ -512,9 +512,10 @@ jobs:
|
|||
} else {
|
||||
pnpm install --frozen-lockfile
|
||||
}
|
||||
- name: Build before coverage
|
||||
shell: pwsh
|
||||
run: pnpm run build
|
||||
# No build before coverage, matching the Linux lane: workspace imports
|
||||
# resolve to src through the tsconfig paths map, and the lib-consuming
|
||||
# suites (webworker-packer image-loadable, session-persistence-sqlite
|
||||
# built-package) self-skip on unbuilt checkouts.
|
||||
- name: Run Windows coverage
|
||||
shell: pwsh
|
||||
run: pnpm run check:ci:coverage
|
||||
|
|
|
|||
|
|
@ -154,6 +154,11 @@ describe('CI workflow', () => {
|
|||
isRecord(step) && typeof step.run === 'string'
|
||||
))
|
||||
expect(coverageCommands.map(step => step.run)).toContain('pnpm run check:ci:coverage')
|
||||
// Windows coverage runs zero-build like the Linux lane: workspace imports
|
||||
// resolve to src through the tsconfig paths map, and the lib-consuming
|
||||
// suites (webworker-packer image-loadable, session-persistence-sqlite
|
||||
// built-package) self-skip on unbuilt checkouts.
|
||||
expect(coverageCommands.map(step => step.run)).not.toContain('pnpm run build')
|
||||
|
||||
// windows-native-tests runs the Windows-specific specs.
|
||||
expect(windowsNativeTests.name).toBe('windows node 24 / native tests')
|
||||
|
|
|
|||
Loading…
Add table
Reference in a new issue