* feat(ingestion): TypeScript registry-primary scope resolution (Ring 3) - Add TypeScript ScopeResolver stack (query/captures/interpret, import decomposition, hooks, arity, merge, receiver binding) and register in SCOPE_RESOLVERS. - Harden shared compound receiver and receiver-bound CALLS pass for map for-of tuple bindings, dotted typeRef shapes, and callable-alias fallbacks. - Flip TypeScript into MIGRATED_LANGUAGES; refresh AGENTS.md and type-resolution-system.md. - Shared finalize-algorithm updates for cross-file scope parity. - Tests: TS scope-resolution unit suite; legacy call-processor suite forces REGISTRY_PRIMARY_TYPESCRIPT=0; registry-primary flag test opts out TS in override scenario. Made-with: Cursor * fix(ingestion): SCC-ordered cross-file return-type propagation + multi-hop re-export resolution Fix CI failures on PR #1050 (TypeScript registry-primary migration) by making `propagateImportedReturnTypes` deterministic via reverse- topological SCC ordering and updating the multi-hop re-export contract to match `followReexportChain` behavior. Why: the legacy pass mirrored an intermediate ref instead of the terminal type when an importer was processed before its source module had its own typeBindings chain-followed (4-file alias chain regression in `ts-simple` fixture: `models.User -> service.user -> app.user` collapsed to `getUser` instead of `User`). Reverse-topological walk of `indexes.sccs` (leaves first) lets every importer see the source's already-followed terminal type in a single pass. Changes: - `imported-return-types.ts`: rewrite to walk SCCs leaves-first, chain- follow the source module's typeBindings BEFORE mirroring, and chain- follow the importer's typeBindings AFTER mirroring. Cyclic SCCs reach a partial fixpoint (no convergence guarantee, ts-circular only asserts no-throw). - `finalize-algorithm.ts`: docstring update on `FinalizeFile.localDefs` to reflect that `followReexportChain` resolves multi-hop re-exports through barrels even when intermediates do not surface the name - surfacing is now a static optimization, not a correctness requirement. - `contract/scope-resolver.ts` Invariant I3: explicitly document the SCC ordering requirement. - `pipeline/run.ts`: split PROF timer into `finalize` and `propagate` so the pass's cost is observable independently. - `ARCHITECTURE.md` Performance notes: describe SCC-ordered propagation. - `imported-return-types.ts`: expand chain-depth comment (2x effective depth from pre/post follow), add multi-ref break rationale, add `ts-simple` motivating-fixture pointer. Tests: - `finalize-algorithm.test.ts`: add 4 cases (3-hop chain, cyclic re-export visited-set guard, wildcard re-export fall-through, multi-source first-match-wins); fix misleading shared nodeId in the thick variant; rename and update the multi-hop test for the new contract (transitiveVia assertion on the thin variant). - `imported-return-types.test.ts` (NEW): unit tests for the SCC pass pinning topological collapse, local-annotation guard, missing-source skip, and cyclic-SCC no-throw. - `cross-file-binding.test.ts` + `ts-deep-alias-chain` fixture (NEW): 5-file integration regression guard for SCC-ordered propagation through 4 module boundaries. Validation: 865 scope-resolution + cross-file tests pass on Windows; typecheck clean across both packages; only pre-existing Swift overload failures remain (verified on PR base commit, environmental). Made-with: Cursor * fix(ingestion): address PR #1050 review findings — side-effect imports, resolve-cache perf, adapter signature Three independent fixes surfaced by the production-readiness review of the TypeScript registry-primary scope-resolution migration (RFC #909 Ring 3). All three pass under both REGISTRY_PRIMARY_TYPESCRIPT=0 and =1. 1. Side-effect imports were silently dropped (correctness regression). The legacy DAG emitted IMPORTS edges for `import './polyfill'` because its tree-sitter query matches `(import_statement source: (string))` regardless of clause. The new registry-primary path returned `[]` from `splitImportStatement()` for clause-less imports, so no ParsedImport / ImportEdge was ever produced — silent file-level edge loss. Add a generic 'side-effect' variant to `ParsedImport` and `ImportEdge['kind']` in `gitnexus-shared`; finalize resolves the target file and pre-finalizes the edge (no `targetDefId`, no `BindingRef`) so the SCC fixpoint loop skips it. The TypeScript provider now emits + interprets the new kind end-to-end. The variant is intentionally generic so other languages (Rust `use foo as _`, Python module-init) can adopt it. 2. Per-import re-derivation in `resolveImportTarget` (perf regression). The TS adapter built `new Set(allFilePaths)` on every call and let `resolveTsImportTarget` re-derive `allFileList` / `normalizedFileList` and discard the `resolveCache`. For a workspace with N files and M imports that's O(N × M) work per pass. Wrap the adapter in a closure that memoizes all five derived values keyed on the orchestrator's `ReadonlySet` identity; reset only when the set reference changes (start of new pass). New cost: O(N + M). 3. Misleading fake `ParsedImport` in the adapter (architecture). The adapter constructed `{ kind: 'named', localName: '_', importedName: '_', targetRaw }` to call `resolveTsImportTarget`, even though only `targetRaw` and the structural-typed context are read. Extract `resolveTsTarget(targetRaw, ctx)` so the adapter has an honest signature; `resolveTsImportTarget` still works for other callers. Also extract `narrowTsContext` for the type narrowing. Tests: - New 4-file fixture `typescript-side-effect-imports` with two side-effect imports + one named import. - New "TypeScript side-effect imports" describe in `test/integration/resolvers/typescript.test.ts` (parity-gated by `ci-scope-parity.yml` — runs under both flag states). - Updated 2 unit tests to expect 1 side-effect ParsedImport and 4 `@import.statement` matches (was 0 / 3). - 785 / 785 TS scope-resolution tests pass under both REGISTRY_PRIMARY_TYPESCRIPT=0 and =1. Made-with: Cursor * fix(scope): address Codex adversarial review findings on PR #1050 Four findings from the Codex adversarial review broke registry-primary TypeScript resolution for common patterns. All four now have unit and integration regression coverage that pass under both `REGISTRY_PRIMARY_TYPESCRIPT=0` (legacy DAG) and the default registry-primary path. [high] tsconfig path aliases dropped: Threaded `tsconfigPaths` through ScopeResolver via a new opaque `resolutionConfig` parameter and a `loadResolutionConfig(repoPath)` hook. The orchestrator (`scopeResolutionPhase` + `runScopeResolution`) loads it once per workspace pass and forwards into every `resolveImportTarget` call. TypeScript resolver now resolves `@/services/user` style imports through the standard resolver's alias branch. [high] TSX parsed with the wrong grammar: `emitTsScopeCaptures` now picks the parser/query by `filePath` (`.tsx` -> TSX grammar) and validates cached trees against the expected grammar via the new exported `tsCachedTreeMatchesGrammar` helper. Stale TS-grammar trees for `.tsx` files no longer leak through the scope query. [medium] Literal dynamic imports never linked: Added `kind: 'dynamic-resolved'` to `ParsedImport` and `ImportEdge`. The decomposer emits a synthetic `@import.literal` capture for string-literal dynamic imports; the interpreter maps that to `dynamic-resolved`; finalize pre-finalizes it as a file-level terminal (same shape as `side-effect`). `import('./feature')` now produces a real IMPORTS edge under the registry-primary path. Legacy DAG keeps its existing behavior — the new integration assertion is gated behind the flag. [medium] Namespace re-exports invisible from barrels: The decomposer now emits TWO captures for `export * as ns from './m'` — the existing `reexport-namespace` import draft AND a synthetic `@declaration.namespace` capture (via `buildNamespaceDeclarationMatch`). The latter creates a Namespace `SymbolDefinition` in the barrel's `localDefs`, so downstream `import { ns } from './barrel'` resolves through `findExportByName`. Regression fixtures under `gitnexus/test/fixtures/lang-resolution/`: - typescript-tsconfig-aliases (`@/` alias) - typescript-tsx-jsx (Button.tsx + App.tsx with JSX) - typescript-dynamic-import (`await import('./feature')`) - typescript-reexport-namespace (`export * as Models from './base'`) Validation: - gitnexus-shared builds clean - gitnexus typecheck clean - 385/385 TS scope-resolution tests pass under both `REGISTRY_PRIMARY_TYPESCRIPT=0` and default Made-with: Cursor * perf(scope): O(1) defById lookup + bounded re-export depth (PR #1050 round 3) Addresses the round-3 PR #1050 reviews (Claude adversarial + xkonjin): both flagged the existing O(N²) `findDefById` linear scan in `materializeBindings` and the unbounded recursion in `followReexportChain` as production-readiness blockers for TypeScript monorepos. Both fixes land alongside their regression tests under both `REGISTRY_PRIMARY_TYPESCRIPT=0` and the default registry-primary path. [high] materializeBindings O(N_files × N_defs × N_edges) → O(N_defs + N_edges): Build a `nodeId → SymbolDefinition` index map once at the top of `materializeBindings` (one O(N_defs) pass), then replace the per-edge `findDefById(files, edge.targetDefId)` linear scan with an O(1) `defById.get(edge.targetDefId)` lookup. Also drop the now-unused `findDefById` helper. At realistic TypeScript monorepo scale (~5k files × ~50 defs/file × ~100k linked import edges) this is the difference between ~25 s and a few ms inside finalize. Regression test in `finalize-algorithm.test.ts` builds 200 leaf files + 1 consumer importing one symbol from each, asserts every binding materializes correctly. [medium] followReexportChain unbounded recursion: The existing `visited` set caps depth at `O(N_files)` but allows recursion proportional to barrel-chain depth, mismatching the explicit "Iterative DFS to avoid stack overflow" policy in `tarjanSccs`. Added a `MAX_REEXPORT_DEPTH = 100` constant and a `depth` parameter to `followReexportChain` (defaults to 0); each recursive call passes `depth + 1` and the function returns `null` when the cap is exceeded. 100 is comfortably above any realistic hand-authored barrel chain (typical depth 1-5; auto-generated barrels rarely exceed 20) while staying well below JS engine call stack limits. Regression test wires a 200-link reexport chain and verifies the crawl terminates cleanly with `linkStatus: 'unresolved'` (no terminal def reachable within the budget). [low] synthesizeInstanceofNarrowings bare-identifier-only limitation: xkonjin's review #4 noted that the LHS narrowing only handles bare identifiers (`if (x instanceof Foo)`), not member expressions (`if (user.address instanceof Address)`). Added a JSDoc note explaining the constraint and pointing readers at field-type resolution as the workaround for member-chain receivers. Validation: - gitnexus-shared builds clean - gitnexus typecheck clean - 413/413 tests pass under both flag states for finalize-algorithm + TS unit + TS integration suites - 972/972 tests pass across full scope-resolution + Python + C# integration smoke (no cross-language regression) Made-with: Cursor * refactor(finalize): replace recursive followReexportChain with SCC-condensed iterative closure The legacy `followReexportChain` walked re-export drafts via mutual recursion guarded by a per-call visited set + a `MAX_REEXPORT_DEPTH` ceiling. Recursion is fragile (call-stack ceiling, no bound on depth that's actually meaningful), so this replaces it with a structurally better algorithm: a precomputed per-file re-export closure built by running Tarjan SCC over the re-export sub-graph and propagating names in reverse-topological order with a bounded intra-SCC fixpoint. Algorithm (`buildReexportClosures` in finalize-algorithm.ts): 1. Sub-graph: build the directed graph of `reexport` + `wildcard` drafts only (regular/namespace/dynamic imports do not contribute). 2. SCC condensation: run the same iterative `tarjanSccs` already used for the file-level import graph; output is in reverse-topo order so out-of-SCC neighbors are always already-finalized. 3. Per-SCC propagation: - Acyclic singleton: one pass populates from neighbors' closures. - Cyclic SCC: bounded fixpoint capped at |SCC|+1 iterations. With first-wins precedence the closure map is monotone, so each name needs at most |SCC| hops to traverse the cycle. Precedence (preserved from the recursive crawl): - Named re-exports take precedence over wildcards. - Within each kind, declaration order wins. Lookup at finalize time becomes O(1) (`lookupReexportedName`), down from O(chain_depth × drafts) per consult and recursive at that. Properties vs the legacy implementation: - Stack-safe by construction; no `MAX_REEXPORT_DEPTH` guard needed. - 1000-hop barrel chains now resolve in full (legacy capped at 100 and surfaced anything deeper as `unresolved`). - Cycles handled structurally via SCC, not via per-call visited set. - Same observable semantics: every existing test passes unchanged. Tests: - Replace the obsolete `MAX_REEXPORT_DEPTH (200-hop chain stops cleanly without stack overflow)` test (which asserted the OLD bug — that deep chains failed to resolve) with a positive 1000-hop test that asserts full resolution + accurate `transitiveVia`. Proves both the recursion is gone AND the closure correctly inherits the leaf def across all hops. - Update commentary on adjacent re-export tests to reference the closure mechanism. - Update `FinalizeFile.localDefs` JSDoc + import-decomposer.ts inline doc to point at `buildReexportClosures` instead of the removed function name. Validation: - gitnexus-shared builds cleanly. - gitnexus typechecks cleanly. - 28/28 finalize-algorithm.test.ts tests pass (incl. new 1000-hop). - 801/801 TypeScript scope-resolution tests pass under default (registry-primary) AND `REGISTRY_PRIMARY_TYPESCRIPT=0` (legacy DAG). - 404/404 Python + C# integration tests pass — no regression in cross-language consumers of the shared `finalize`. Made-with: Cursor * fix(scope): remove non-null assertions from scope resolution Made-with: Cursor * fix(scope): address TypeScript review follow-ups Made-with: Cursor * fix(scope): address TypeScript import review follow-ups Add regression coverage for non-binding import edges and circular TypeScript bindings so PR #1050 review concerns stay visible without changing runtime semantics. Made-with: Cursor
12 KiB
Last reviewed: 2026-04-23
Project: GitNexus · Environment: dev · Maintainer: repository maintainers (see GitHub)
Scope
| Boundary | Rule |
|---|---|
| Reads | gitnexus/, gitnexus-web/, eval/, plugin packages, .github/, .gitnexus/, docs. |
| Writes | Only paths required for the change; keep diffs minimal. Update lockfiles when deps change. |
| Executes | npm, npx, node under gitnexus/ and gitnexus-web/; uv run for Python under eval/; documented CI/dev workflows. |
| Off-limits | Real .env / secrets, production credentials, unrelated repos, destructive git ops without confirmation. |
Model Configuration
- Primary: Use a named model (e.g. Claude Sonnet 4.x). Avoid
Autoor unversionedlatestwhen reproducibility matters. - Notes: The GitNexus CLI indexer does not call an LLM.
Execution Sequence (complex tasks)
For multi-step work, state up front:
- Which rules in this file and GUARDRAILS.md apply (and any relevant Signs).
- Current Scope boundaries.
- Which validation commands you will run (
cd gitnexus && npm test,npx tsc --noEmit).
On long threads, "Remember: apply all AGENTS.md rules" re-weights these instructions against context dilution.
Claude Code hooks
PreToolUse hooks can block tools (e.g. git_commit) until checks pass. Adapt to this repo: cd gitnexus && npm test before commit.
Context budget
Commands and gotchas live under Repo reference below and in CONTRIBUTING.md. If always-on rules grow, split into .cursor/rules/*.mdc (globs). Cursor: project-wide rules in .cursor/index.mdc. Claude Code: load STANDARDS.md only when needed.
Reference docs
- ARCHITECTURE.md, CONTRIBUTING.md, GUARDRAILS.md
- Call-resolution DAG (legacy path): See ARCHITECTURE.md § Call-Resolution DAG. Typed 6-stage DAG inside the
parsephase; language-specific behavior behindinferImplicitReceiver/selectDispatchhooks onLanguageProvider. Shared code ingitnexus/src/core/ingestion/must not name languages. Types:gitnexus/src/core/ingestion/call-types.ts. - Scope-resolution pipeline (RFC #909 Ring 3): See ARCHITECTURE.md § Scope-Resolution Pipeline. Replaces the legacy DAG for languages in
MIGRATED_LANGUAGES(seeregistry-primary-flag.ts). A language plugs in by implementingScopeResolver(scope-resolution/contract/scope-resolver.ts) and registering it inSCOPE_RESOLVERS. CI parity gate runs BOTH paths per migrated language on every PR. - Cursor:
.cursor/index.mdc(always-on);.cursor/rules/*.mdc(glob-scoped). Legacy.cursorrulesdeprecated. - GitNexus: skills in
.claude/skills/gitnexus/; MCP rules ingitnexus:startblock below.
Changelog
| Date | Version | Change |
|---|---|---|
| 2026-04-23 | 1.7.0 | TypeScript added to MIGRATED_LANGUAGES (registry-primary call resolution by default). |
| 2026-04-20 | 1.6.0 | Added scope-resolution pipeline pointer (RFC #909 Ring 3); Python migrated to registry-primary. |
| 2026-04-19 | 1.5.0 | Cross-repo impact (#794): impact/query/context accept repo: "@<group>" + service. Removed group_query/group_contracts/group_status MCP tools; added gitnexus://group/{name}/contracts and gitnexus://group/{name}/status resources. |
| 2026-04-16 | 1.4.0 | Fixed: web UI description, pre-commit behavior, MCP tools (7->16), added gitnexus-shared, removed stale vite-plugin-wasm gotcha. |
| 2026-04-13 | 1.3.0 | Updated GitNexus index stats after DAG refactor. |
| 2026-03-24 | 1.2.0 | Fixed gitnexus:start block duplication. |
| 2026-03-23 | 1.1.0 | Updated agent instructions, references, Cursor layout. |
| 2026-03-22 | 1.0.0 | Initial structured header and changelog. |
GitNexus — Code Intelligence
Indexed as GitNexus (4325 symbols, 10556 relationships, 300 execution flows). Use MCP tools to understand code, assess impact, and navigate safely.
If any tool warns the index is stale, run
npx gitnexus analyzefirst.
Always Do
- MUST run impact analysis before editing any symbol.
gitnexus_impact({target: "symbolName", direction: "upstream"})— report blast radius to the user. - MUST run
gitnexus_detect_changes()before committing — verify only expected symbols and flows are affected. - MUST warn the user if impact returns HIGH or CRITICAL risk.
- Explore unfamiliar code with
gitnexus_query({query: "concept"})(process-grouped, ranked) instead of grepping. - Full context on a symbol:
gitnexus_context({name: "symbolName"}).
When Debugging
gitnexus_query({query: "<error or symptom>"})— find related execution flowsgitnexus_context({name: "<suspect function>"})— callers, callees, process participationREAD gitnexus://repo/GitNexus/process/{processName}— trace flow step by step- Regressions:
gitnexus_detect_changes({scope: "compare", base_ref: "main"})
When Refactoring
- Rename:
gitnexus_rename({symbol_name: "old", new_name: "new", dry_run: true})first. Graph edits are safe; text_search edits need manual review. - Extract/Split:
gitnexus_context(incoming/outgoing refs) thengitnexus_impact(upstream callers) before moving code. - After any refactor:
gitnexus_detect_changes({scope: "all"})to verify scope.
Never Do
- Edit a symbol without running
gitnexus_impactfirst. - Ignore HIGH/CRITICAL risk warnings.
- Rename with find-and-replace — use
gitnexus_rename. - Commit without
gitnexus_detect_changes(). - Add language-specific behavior to shared ingestion code (
gitnexus/src/core/ingestion/) — use aLanguageProviderhook. Seeingprovider.mroStrategy === 'xxx'or an import fromlanguages/xxx.tsin shared code means stop and add a hook.
Tools Quick Reference
| Tool | When to use | Example |
|---|---|---|
list_repos |
Discover indexed repos | gitnexus_list_repos({}) |
query |
Find code by concept | gitnexus_query({query: "auth validation"}) |
context |
360-degree view of one symbol | gitnexus_context({name: "validateUser"}) |
impact |
Blast radius before editing | gitnexus_impact({target: "X", direction: "upstream"}) |
detect_changes |
Pre-commit scope check | gitnexus_detect_changes({scope: "staged"}) |
rename |
Safe multi-file rename | gitnexus_rename({symbol_name: "old", new_name: "new", dry_run: true}) |
cypher |
Custom graph queries | gitnexus_cypher({query: "MATCH ..."}) |
api_impact |
Pre-change API route impact | gitnexus_api_impact({route: "/api/users", method: "GET"}) |
route_map |
Route → handler → consumer map | gitnexus_route_map({}) |
tool_map |
MCP/RPC tool definitions | gitnexus_tool_map({}) |
shape_check |
Response shape vs consumer access | gitnexus_shape_check({route: "/api/users"}) |
group_list |
List repo groups | gitnexus_group_list({}) |
group_sync |
Rebuild group Contract Registry | gitnexus_group_sync({name: "myGroup"}) |
query (group mode) |
Cross-repo search in a group (RRF-merged) | gitnexus_query({repo: "@myGroup", query: "auth"}) |
context (group mode) |
360° view across all member repos | gitnexus_context({repo: "@myGroup", name: "validateUser"}) |
impact (group mode) |
Cross-repo blast radius via Contract Bridge | gitnexus_impact({repo: "@myGroup", target: "X", direction: "upstream"}) |
Group mode: pass
repo: "@<groupName>"to fan out across all member repos, orrepo: "@<groupName>/<memberPath>"to target a single member (path keys fromgroup.yaml). Optionalservice: "<monorepo/path>"filters by service root. Group-level state (contracts, staleness) lives in the resources table below — there are nogroup_query/group_context/group_impact/group_contracts/group_statusMCP tools.For a full walkthrough of setting up a group across multiple repos that communicate over gRPC, see docs/guides/microservices-grpc.md.
Impact Risk Levels
| Depth | Meaning | Action |
|---|---|---|
| d=1 | WILL BREAK — direct callers/importers | MUST update |
| d=2 | LIKELY AFFECTED — indirect deps | Should test |
| d=3 | MAY NEED TESTING — transitive | Test if critical path |
Resources
| Resource | Use for |
|---|---|
gitnexus://repo/GitNexus/context |
Codebase overview, index freshness |
gitnexus://repo/GitNexus/clusters |
All functional areas |
gitnexus://repo/GitNexus/processes |
All execution flows |
gitnexus://repo/GitNexus/process/{name} |
Step-by-step execution trace |
gitnexus://group/{name}/contracts |
Group Contract Registry (provider/consumer rows + cross-links) |
gitnexus://group/{name}/status |
Per-member index + Contract Registry staleness report |
Self-Check Before Finishing
gitnexus_impactwas run for all modified symbols- No HIGH/CRITICAL warnings were ignored
gitnexus_detect_changes()confirms expected scope- All d=1 dependents were updated
Keeping the Index Fresh
npx gitnexus analyze # basic refresh; preserves any existing embeddings
npx gitnexus analyze --embeddings # also generate embeddings for new/changed nodes
npx gitnexus analyze --drop-embeddings # explicit opt-in to wipe existing embeddings
Check .gitnexus/meta.json stats.embeddings (0 = none). A plain analyze no longer drops existing vectors — pass --drop-embeddings to wipe.
Claude Code: PostToolUse hook detects a stale index after
git commitandgit mergeand prompts the agent to runanalyze. The hook does not invokeanalyzeitself.
CLI Skills
| Task | Skill file |
|---|---|
| Architecture / "How does X work?" | .claude/skills/gitnexus/gitnexus-exploring/SKILL.md |
| Blast radius / "What breaks?" | .claude/skills/gitnexus/gitnexus-impact-analysis/SKILL.md |
| Debugging / "Why is X failing?" | .claude/skills/gitnexus/gitnexus-debugging/SKILL.md |
| Refactoring | .claude/skills/gitnexus/gitnexus-refactoring/SKILL.md |
| Tools/resources/schema reference | .claude/skills/gitnexus/gitnexus-guide/SKILL.md |
| CLI commands (index, status, clean, wiki) | .claude/skills/gitnexus/gitnexus-cli/SKILL.md |
Repo reference
Packages
| Package | Path | Purpose |
|---|---|---|
| CLI/Core | gitnexus/ |
TypeScript CLI, indexing pipeline, MCP server. Published to npm. |
| Web UI | gitnexus-web/ |
React/Vite thin client. All queries via gitnexus serve HTTP API. |
| Shared | gitnexus-shared/ |
Shared TypeScript types and constants. |
| Claude Plugin | gitnexus-claude-plugin/ |
Static config for Claude marketplace. |
| Cursor Integration | gitnexus-cursor-integration/ |
Static config for Cursor editor. |
| Eval | eval/ |
Python evaluation harness (Docker + LLM API keys). |
Running services
cd gitnexus && npm run dev # CLI: tsx watch mode
cd gitnexus-web && npm run dev # Web UI: Vite on port 5173
npx gitnexus serve # HTTP API on port 4747 (from any indexed repo)
Testing
CLI / Core (gitnexus/)
npm test— full vitest suite (~2000 tests)npm run test:unit— unit tests onlynpm run test:integration— integration (~1850 tests). LadybugDB file-locking tests may fail in containers (known env issue).npx tsc --noEmit— typecheck
Web UI (gitnexus-web/)
npm test— vitest (~200 tests)npm run test:e2e— Playwright (7 spec files; requiresgitnexus serve+npm run dev)npx tsc -b --noEmit— typecheck
Pre-commit hook (.husky/pre-commit): formatting (prettier via lint-staged) + typecheck for staged packages. Tests do not run in pre-commit — CI only.
Gotchas
npm installingitnexus/triggersprepare(builds viatsc) andpostinstall(patches tree-sitter-swift, builds tree-sitter-proto). Native bindings needpython3,make,g++.tree-sitter-kotlinandtree-sitter-swiftare optional — install warnings expected.- ESLint configured via
eslint.config.mjs(TS, React Hooks, unused-imports). Nonpm run lintscript; usenpx eslint .. Prettier runs via lint-staged. CI checks both inci-quality.yml.