* build(test): make spec tsconfigs resolve what Jest resolves Lib spec tsconfigs used module: commonjs with node10 resolution, which cannot see Angular's exports-only secondary entry points, and dropped global.d.ts, so tsc reported thousands of resolution errors and no window.electron typing. Switch them to module: preserve with bundler resolution (ts-jest still forces CommonJS emit outside ESM mode), add global.d.ts to every spec program, type jest.unstable_mockModule for the ESM workspace, include the ui-epg and ui-playback specs that jest.web-esm.workspace.ts runs under the web spec config, and drop the snack-bar stub that shadowed the real Material types. Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com> * ci(test): gate spec type-checking with typecheck:spec Add tools/typecheck/spec-typecheck.mjs, which runs tsc --noEmit over every tsconfig.spec.json with a small pool and fails on any diagnostic, wire it into the unit-and-typecheck job after typecheck:ci, and document the gate and the spec tsconfig conventions in the validation map. Also bring the non-Tier-A spec configs (remote-control-web, ui-remote-control, stalker-mock-server) to the same conventions so the gate covers the whole workspace. Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com> * test: fix the spec type errors surfaced by typecheck:spec With the spec programs resolving modules and ambient typings correctly, tsc reported 432 genuine errors across the Tier A projects: read-only capability flags assigned on Partial<> doubles, signal-store values used as types, fixtures missing required fields, index-signature property access, partial bridge doubles cast through incompatible shapes, and deferred resolvers narrowed to never. Type the doubles instead of casting to any: writable mapped types for capability flags, InstanceType<typeof StalkerStore>, typed jest.fn signatures, protectedState: false on test signal stores, and completed fixtures. Production changes are limited to bracket access for index-signature properties under the libs' noPropertyAccessFromIndexSignature setting and two narrowing guards in the global favorites loader. Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com> * test(playback): use the ESM setup's jest global in the controls fixtures The fixture imported jest from @jest/globals, which is not a direct dependency. Jest provides that module at runtime, so tests passed, but on a clean pnpm install tsc cannot resolve it and typecheck:spec failed in CI. The ESM test setup already installs import.meta.jest as the global, typed by @types/jest, as the other ESM specs use it. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com> * test: type the parental lock doubles merged since the gate was written The parental lock feature (#1601) and the Stalker actor route landed on master with spec doubles declared as zero-argument jest.fn()s that the tests then drive with the real arguments, plus a copy of the ResizableDirective override imported from a library that does not export it. Give the doubles the lock service's real signatures, drop the dead override as in the sibling layout specs, use bracket access for the actor route's personId param, and keep the Stalker layout spec within the 1200-line limit. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com> --------- Co-authored-by: 4gray <fourgray@proton.me> Co-authored-by: Claude Fable 5.1 <noreply@anthropic.com>
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Validation Map
This map records the lowest-cost validation commands agents should reach for before broad CI-sized runs.
Discovery
pnpm nx show projects --withTarget test
pnpm nx show projects --withTarget lint
pnpm nx show projects --withTarget e2e
Manual CI Runs
When a PR event does not start checks for the current head, dispatch CI and E2E
with gh workflow run ci.yml --ref <branch> and
gh workflow run e2e-tests.yaml --ref <branch>. CodeQL also supports
gh workflow run codeql-analysis.yml --ref <branch>; this analyzes the selected
branch commit instead of the PR merge commit. Verify each run's head SHA before
using its result as evidence. Docker validation can use
gh workflow run docker.yml --ref <branch> -f push=false.
Unit And Type Checks
| Area | Command |
|---|---|
| Angular renderer entry points | pnpm run typecheck:web |
| Electron main process entry points | pnpm run typecheck:backend |
| Jest spec programs | pnpm run typecheck:spec |
| Full unit suite (all projects) | pnpm run test:unit:ci |
| EPG data access | pnpm nx test epg-data-access |
| Workspace shell utilities | pnpm nx test workspace-shell-util |
| Shared SQLite schema/connection | pnpm nx test database |
| Packaging metadata | pnpm nx test packaging |
typecheck:spec (tools/typecheck/spec-typecheck.mjs) runs tsc --noEmit
over every tsconfig.spec.json under apps/, libs/ and tools/, a few
programs at a time (--concurrency=N or SPEC_TYPECHECK_CONCURRENCY; a
positional argument filters by path), and fails on any diagnostic. ts-jest
transpiles with isolatedModules, so this is the only check that catches a
spec whose types drifted from the code it exercises. CI runs it in the
unit-and-typecheck job after typecheck:ci. Conventions the gate relies on:
- Spec tsconfigs use
module: preservewithmoduleResolution: bundler, the same as the library's owntsconfig.json; ts-jest forces CommonJS emit outside ESM mode, so the setting only affects type-checking, andnode10resolution cannot see Angular'sexports-only secondary entry points. - Each spec program lists
global.d.tsinfilessowindow.electronand the other ambient declarations resolve. - Libraries tested through
tools/testing/run-web-esm-lib-tests.mjsare type-checked byapps/web/tsconfig.spec.json, the configjest.web-esm.workspace.tshands to ts-jest; add a new ESM-tested library's spec globs there.apps/web/src/jest-esm.d.tstypesjest.unstable_mockModule. - Type test doubles instead of casting to
any:jest.Mocked<T>,InstanceType<typeof SomeStore>for signal stores, andObject.definePropertyor a writable mapped type for read-only capability flags.
Lint
pnpm run lint # nx run-many --target=lint --all
pnpm nx lint <project> # single project
The CI workflow (.github/workflows/ci.yml) lints affected projects on PRs
(nx affected) and every project on master pushes.
This enforces @nx/enforce-module-boundaries (scope/domain/type tag
constraints), the legacy bare-alias ban, and the max-lines file-size rule
(hard maximum 400 lines for production TypeScript, 1200 for tests; blank lines
and comments are not counted). The limits live in
tools/eslint/max-lines-config.mjs, which both eslint.config.mjs and the
generator import. Files that predate the max-lines rule are baselined in
tools/eslint/max-lines-baseline.mjs; after splitting a baselined file below
the limit, regenerate the list with
node tools/eslint/generate-max-lines-baseline.mjs. Never add new files to
the baseline.
Coverage Tiers
Use tools/coverage/coverage-policy.json as the source of truth for coverage
ownership. Every project with a test target must be classified in a tier;
pnpm run coverage:policy:check (part of coverage:ci) fails CI when a new
project is missing from the policy, a listed project no longer exists, or a
Tier A entry has no test target. CI runs Tier A with coverage (uploaded to
Codecov) and each Tier B/C project's validationCommand (falling back to
nx test) without coverage; projects with an e2e target are skipped there
because the E2E workflow already runs them on every PR that touches app code.
Docs-only changes (Markdown, docs/, .plans/, .codex/, .claude/) and
apps/website/** changes skip the E2E workflow via paths-ignore — for those
PRs no E2E validation runs in CI, which is intentional: they cannot affect app
behavior.
Tier A coverage is fail-closed. coverage:unit:ci relays Jest output but exits
nonzero on a Failed to collect coverage marker, a missing or invalid project
report, or a runtime-owning production TypeScript file absent from that report.
It runs projects a few at a time, largest first, with a bounded Jest worker
count per project (defaults: min(3, cores - 1) in flight and
ceil(cores / concurrency) workers each; override with --concurrency=N,
--max-workers=N or TIER_A_CONCURRENCY / TIER_A_MAX_WORKERS). Each
project's output is printed as one block when it finishes, and the run ends
with the wall-clock total and the longest projects. Spec tsconfigs set
isolatedModules: true, so ts-jest transpiles files one at a time instead of
type-checking each through a language service (the web configs already ran
with diagnostics: false); isolatedModules-incompatible syntax such as a
type re-export without export type still fails at load time, and spec type
errors are caught by typecheck:spec (see Unit And Type Checks).
In CI, a pull request skips the Tier A suite (and the merged-coverage upload)
when every changed file is outside Tier A test inputs:
tools/coverage/unit-coverage-scope.mjs holds the allowlist (Markdown, docs/,
notes and plans, agent guidance, workflows other than ci.yml and
build-and-make.yaml, the website, E2E and mock-server apps,
release/packaging/skills/performance tooling, and a package.json edit
confined to non-coverage:* scripts). Anything else, including files no Nx
project owns such as jest.preset.js or tsconfig.base.json, and every
{workspaceRoot} input a Tier A test target declares, runs the full suite;
master pushes always run it. nx affected is deliberately not used for this
decision because a change to an unowned file affects no project. A node test
parses every Tier A source for string literals that point at repository files
outside the owning project (tier-a-external-references.mjs) and fails if the
allowlist would skip any of them, so a new cross-project read cannot be
silently exempted.
Jest's transform cache is kept in JEST_CACHE_DIRECTORY and persisted with
actions/cache: pull requests restore it, while only master pushes (starting
from an empty cache, so it holds exactly the current tree) and maintainer
dispatches save it. A shared Nx task cache is not used: Nx indexes its local
cache in a machine-specific database, so a restored cache folder is never hit,
and sharing it safely needs Nx Cloud or another supported remote cache.
coverage:merge requires every configured Tier A report before replacing the
merged output. Strict health validation also requires the merged Istanbul map
itself to contain usable instrumentation for every runtime-owning Tier A file,
recomputes its summary, and then applies aggregate and selected critical-file
ratchets.
Runtime-owning files are discovered from the TypeScript AST. Specs,
declarations, test setup and stubs, generated and environment files, index.ts,
type-only files, and pure re-export shims are excluded. Ratchets live under
reporting.coverageRatchet in tools/coverage/coverage-policy.json; update
them only from a fresh full coverage:ci report when every value stays level
or rises, and never lower one to accept a regression. The only exception is an
explicitly reviewed production source shrink: minimumCovered may follow a
lower total statement count when the PR documents the removed executable
statements and fresh coverage proves that the corresponding
minimumPercent, every aggregate ratchet, and the remaining behavioral
coverage do not decrease.
| Tier | Rule | Validation |
|---|---|---|
| A | Product/runtime Angular, Electron, backend, data-access, portal, playlist, workspace, playback, EPG, and shared UI code collects source coverage. | pnpm run coverage:ci |
| B | Validate behavior without percentage coverage, such as website, packaging, and Playwright E2E projects. |
pnpm nx test website, pnpm nx test packaging, or the closest E2E target |
| C | Excluded from the source coverage baseline, such as mock servers, test helper libraries, and untested feature shells. | Validate through dependent flows, or add focused tests when changing behavior directly |
apps/website is an Astro marketing site. Its useful signal is a successful
static build plus targeted output checks, not a merged code coverage percentage.
Projects with a test target but no specs, such as remote-control-web and
remote-control today, should not be in Tier A until focused specs exist.
For local coverage inspection:
pnpm run coverage:tools:test
pnpm run coverage:unit:ci
pnpm run coverage:merge
pnpm run coverage:health -- --require-report
The merged report is written to coverage/merged/ as HTML, LCOV, Cobertura,
and JSON summary output. CI uploads the merged Tier A report to Codecov with the
unit flag and keeps the HTML report as a GitHub artifact.
E2E
| Area | Command |
|---|---|
| Web app browser flows | pnpm nx run web-e2e:e2e -- --project=chromium |
| Electron flows | pnpm nx run electron-backend-e2e:e2e |
| VOD multi-source | pnpm nx run electron-backend-e2e:e2e-ci--src/vod-multi-source.e2e.ts |
Use atomized E2E targets when available, for example
pnpm nx run web-e2e:e2e-ci--src/xtream.e2e.ts.
Playwright coverage is measured semantically by tags and critical journeys, not
by a source-line percentage. E2E reports should use tags such as @critical,
@electron, @web, @xtream, @stalker, @m3u, @search, @epg,
@persistence, @settings, @pwa, and @self-hosted.
After an E2E run, generate the semantic summary with:
pnpm run coverage:e2e:summary
CI runs the Electron suite as Playwright shards (--shard=<n>/<total>, split
by spec file because the suite is sequential): three shards on Ubuntu and
Windows, two on macOS, whose runners are the scarcest and queued longest. Each
shard uploads playwright-report-electron-<os>-<n>; the follow-up
Electron E2E summary job downloads the shards of each OS into their own
directory and runs the summary per OS with --input=<directory> and
--output-dir=coverage/e2e/<os>. A directory input merges every
results.json beneath it and fails when a shard is missing or duplicated, so
the summary never reports a partial run as complete. Tests for that merge live
in tools/coverage/e2e-shard-reports.test.mjs (pnpm run coverage:tools:test).
For local investigation only, Chromium browser V8 coverage can be explored with:
pnpm run coverage:e2e:v8:web
I18n
pnpm run i18n:check
The i18n check is non-mutating. It compares every locale file in
apps/web/src/assets/i18n/ against en.json and fails on missing or extra keys.
Identical English fallback values are reported as warnings by default; use
node tools/i18n/check-drift.mjs --fail-on-identical for a stricter translation
audit.
Performance
pnpm nx build web
pnpm run perf:initial-bytes # breakdown only
pnpm run perf:initial-bytes:check # measure, then compare with the committed baseline
pnpm nx test performance-tools
pnpm run perf:journeys # J1 launch benchmark, writes dist/performance/journeys/<timestamp>/summary.json
perf:initial-bytes reads the built dist/apps/web/index.html and sums the
bytes on the initial path (the J1 counter renderer.initialBytes).
perf:initial-bytes:check then fails if the value exceeds
tools/performance/journey-baselines.json; baselines only move down. CI runs
the same check in the Initial bytes ratchet job of ci.yml for PRs that
target master and for master pushes (dispatch it with
gh workflow run ci.yml --ref <branch> for a stacked branch). perf:journeys builds the electron-performance configuration and runs the
J1 launch benchmark against the Xtream mock; its probe specs run with
pnpm nx run electron-backend-e2e:test-performance-harness. The contract, what
counts and how to add a counter or a journey are in the
performance journeys document.
Logging
Runtime playback and EPG debug logs should use the existing logger or trace
helpers instead of unconditional console.log. Electron external-player traces
are gated by:
IPTVNATOR_TRACE_PLAYER=1 pnpm run serve:backend
Test impact and completion
Before finishing a feature, bug fix, data-flow or UI workflow change, identify the affected projects and choose unit, integration, E2E, build, lint and manual checks. Bug fixes normally include regression coverage that fails before the fix. If automation is impractical, explain why and report the strongest manual validation. Update fixtures, mocks, routes and E2E flows when behavior changes. Prefer extending the closest existing suite to introducing a parallel suite.
Run targeted unit checks first, then affected E2E for workflows, routing, persistence, playback, portals, settings or import flows. Electron IPC, SQLite, packaged runtime, external players, native files and Electron-only routes require Electron E2E where available, otherwise CDP/manual verification using the debugging guide. Prefer atomized E2E targets before broad suites. Final reports name tests changed, commands/results, and skipped validation with reasons. Docs-only changes need Markdown validation, not app unit/E2E. Tooling validation still requires its own focused tests.
Agent guidance checks
pnpm run agents:validate checks root instruction budgets/imports and guidance
navigation links/anchors. pnpm run skills:validate checks skill frontmatter,
length, paths and release mirrors. Both tooling suites run through
pnpm nx test repository-skills; syntax checks use
pnpm nx lint repository-skills. The CI guidance check runs regardless of the
Nx affected set. Semantic preservation of moved contracts is a review task;
link validation alone cannot prove it.