* feat(install): toolchain-free tree-sitter via vendored GitNexus-built prebuilds
Eliminate the C/C++-toolchain requirement at install for the at-risk grammars
(dart, proto, kotlin) by generating + vendoring native prebuilds, mirroring the
existing vendored tree-sitter-swift. The 10 grammars that already ship 6 upstream
prebuilds stay npm dependencies (toolchain-free AND dependency-review-tracked).
- .github/workflows/build-tree-sitter-prebuilds.yml: a registry-parameterized
workflow that builds {dart,proto,kotlin} x {linux,darwin,win32}-{x64,arm64}
prebuilds natively, validates each loads + parses on its arch, and opens a PR
vendoring them. A `guard` job gates the heavy matrix to run ONLY on dispatch
or a real grammar-version change — ordinary code PRs cost zero matrix minutes.
- dart/proto: prefer a committed prebuild; fall back to today's source build
when none matches (no behavior change until prebuilds are vendored).
- kotlin: vendor it (Swift parity) instead of compiling the third-party
optionalDependency from source at the user's install — supersedes #2110's
optionalDependency mechanism. The ~23 MB parser.c is NOT vendored (the
workflow builds from the published package); only node-types + bindings +
prebuilds are. Removed from optionalDependencies; lock regenerated; probe,
parser-loader note, README/.devcontainer docs, and the #2110 tests updated.
DO NOT MERGE until vendor/tree-sitter-kotlin/prebuilds/ is populated by the
build-tree-sitter-prebuilds workflow: until then Kotlin is unavailable (vendored
with no source-build fallback). dart/proto remain fully functional throughout.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* test(install): guard 6/6 N-API prebuild coverage for every grammar
Regression guard so a toolchain-less install can never silently lose a tree-sitter
language on a supported platform-arch:
- Vendored grammars (vendor/tree-sitter-*): every one MUST ship a loadable N-API
prebuild for all 6 tuples {linux,darwin,win32}-{x64,arm64}. Asserts the
napi_register_module_v1 entry symbol in each .node (cross-platform, no need to
run the binary). Currently RED for dart/proto/kotlin until the
build-tree-sitter-prebuilds workflow populates their prebuilds/ — this is the
must-fill-before-merge gate (swift already passes 6/6).
- npm-dependency grammars: asserts upstream ships 6/6 N-API too, catching a
future platform drop. tree-sitter-c is allow-listed at 4/6 (missing
linux-arm64/win32-arm64) pending #2116; the guard also fails if that gap is
silently closed (prompting allow-list removal).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(install): vendor tree-sitter-c at 0.21.4 with GitNexus-built prebuilds (#2116)
tree-sitter-c is the one grammar dependency upstream ships incomplete prebuilds
for (4/6 — no linux-arm64/win32-arm64), AND it is a REQUIRED grammar: its own
`install` (node-gyp-build) compiles from source when no prebuild matches and
exits non-zero, so on a toolchain-less ARM host `npm install gitnexus` HARD-FAILS
at the c step — during npm's dependency phase, before any GitNexus postinstall
runs (so a postinstall "supplement" can't help).
Fix: vendor c prebuild-only at the pinned 0.21.4 (Kotlin pattern), with all six
prebuilds GitNexus-cross-built, and drop it from `dependencies`:
- vendor/tree-sitter-c/ (bindings + node-types + manifest + prebuilds); build
probe scripts/build-tree-sitter-c.cjs; added to the build workflow registry
(kind 'npm' — built from c@0.21.4 source).
- materialize-vendor-grammars.cjs: c is REQUIRED, so it is always materialized,
even under GITNEXUS_SKIP_OPTIONAL_GRAMMARS (it needs no toolchain).
- Removed from package.json dependencies + lockfile (nothing else needs npm c —
tree-sitter-cpp's dep on c is dev-only and not installed). Preserves the #1242
ABI pin: vendoring 0.21.4 keeps the good ABI while closing the ARM gap.
- parser-loader note + the prebuild-coverage guard + a cli-commands assertion
updated; c moves from the npm-gap allow-list into the vendored 6/6 cohort.
Verified: tsc clean, 31 unit tests pass, c loads/parses; the guard is RED for
c/dart/proto/kotlin until the workflow populates prebuilds (the must-fill gate).
Closes the operational risk in #2116.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ci): source-build fallback for vendored c/kotlin so CI is healthy pre-prebuilds
The vendored prebuild-only grammars (c, kotlin) had empty prebuilds/ until the
build-tree-sitter-prebuilds workflow runs, so they could not load in CI — and
C is hard-required by cross-platform tests (tree-sitter-languages/parsing on
ubuntu+macos+windows), which I cannot pre-build for macos/windows locally. The
robust fix is a source-build fallback that works on every CI runner (all have a
toolchain), mirroring dart/proto:
- Vendor the grammar source (binding.gyp + src/) for c and kotlin; their build
scripts now PREFER a committed prebuild (toolchain-free) and fall back to
`node-gyp rebuild` from the vendored source when no prebuild matches. Verified
both compile against the hoisted node-addon-api@^8 and the runtime loads.
- prebuild-coverage guard is now bootstrap-tolerant: a grammar that vendors its
source (binding.gyp) may have an incomplete prebuild set (the workflow fills
it); a prebuild-only grammar (swift) still must ship all six. Any present
prebuild must still be N-API. Guard goes green; it re-tightens per-grammar as
the workflow populates prebuilds.
- actionlint: silence a false-positive SC2016 (JS template literals inside the
single-quoted `node -e` validate block).
Note: kotlin's generated parser.c is large (~23 MB on disk; compresses heavily
in git). Once the workflow populates all six kotlin prebuilds, the source serves
only as the fallback and could be slimmed if desired.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(docker): re-materialize+rebuild vendored grammars after npm prune
`npm prune --omit=dev` in the gitnexus CLI image drops anything not in
package.json's dependency tree — including the VENDORED tree-sitter grammars
(materialized by postinstall, not declared deps) and their built bindings. The
`serve` image analyzes/parses repos at runtime, so re-run the grammar postinstall
after the prune (in the toolchain-equipped builder) to restore them. Load-bearing
for tree-sitter-c, a core REQUIRED grammar now vendored (#2116): as a former
dependency it survived prune; vendored, it would not. Also restores
swift/dart/proto/kotlin, which were silently pruned from the image before.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(grammars): unify tree-sitter-swift with the vendored-source build pipeline
Swift was the last grammar handled differently — it shipped only upstream
prebuilds, while c/dart/proto/kotlin vendor their grammar source and use a
prefer-prebuild -> source-build-fallback activation script. Vendor swift's
source so all five are handled identically (one uniform build path).
- vendor/tree-sitter-swift: add binding.gyp (win-hardened), bindings/node/
binding.cc, src/parser.c (ABI-14 default, ~18 MB), src/scanner.c, and
src/tree_sitter/ headers. The 6/6 prebuilds are retained. The legacy
parser_abi13.c alternate is intentionally not vendored.
- build-tree-sitter-swift.cjs: rewrite the prebuild probe into the dart-style
prefer-prebuild then source-build fallback (keeps the GITNEXUS_SKIP gate and
the never-exit-non-zero postinstall invariant).
- build-tree-sitter-prebuilds.yml: register swift (kind 'vendored'); add its
package.json to the version-gated pull_request paths and a validate snippet.
- prebuild-coverage guard auto-moves swift into the source-fallback cohort
(binding.gyp now present); refresh the stale "swift is prebuild-only" comments.
- tests: add build-tree-sitter-swift-probe.test.ts; fix the pre-existing
build-tree-sitter-kotlin-probe.test.ts breakage (it still asserted the old
probe strings after kotlin's dart-style conversion); assert swift's vendored
source in cli-commands.test.ts.
- docs: README / .devcontainer / kotlin vendor README — swift's prebuilds are
now GitNexus-cross-built from vendored source like the rest, not upstream-only.
Verified: swift source-builds against node-addon-api@8 -> N-API binary -> loads
against the pinned tree-sitter@0.21.1 (ABI 14) -> parses cleanly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(publish): gate a lean prebuilds-only npm tarball behind a coverage guard
Vendoring grammar source (parser.c) alongside the prebuilds means the npm
tarball now carries ~50 MB of generated source it almost never compiles (every
supported platform-arch has a prebuild). Prepare to drop it from the published
package once all prebuilds exist — safely.
- .npmignore: add a GATED, commented-out "lean publish" block that excludes the
source-build inputs (parser.c/scanner.c/tree_sitter/binding.gyp/binding.cc) but
keeps prebuilds/ + the runtime files. Uncommenting ships prebuilds-only.
- scripts/assert-publish-grammar-coverage.cjs: a prepack guard that refuses to
pack/publish if the source exclusion is active while any vendored grammar still
lacks 6/6 prebuilds (which would ship a grammar with no loadable binding). Wired
into `prepack` (runs on npm pack + publish, incl. the publish.yml dry-run) and
exposed as `npm run assert-publish-coverage`.
- test: pure-core decision cases + a real-repo publish-safety check that fails CI
if .npmignore is activated prematurely.
Net: the prebuilds already publish today (files: ["vendor"]); this makes the
future switch to a prebuilds-only tarball a one-line uncomment that can't ship a
dead grammar. The guard currently reports "source + prebuilds" (only swift has
6/6 prebuilds so far) and passes.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* refactor(grammars): consolidate the 5 build-tree-sitter-*.cjs into one
The per-grammar activation scripts (c/dart/proto/swift/kotlin) were ~95%
identical — same prefer-prebuild → source-build → never-fail flow, differing only
in name, target_name, required-vs-optional, and the display label in warnings.
- scripts/build-tree-sitter-grammars.cjs: one registry-driven script. Bare call
builds all (postinstall); `... <name>` builds only the named grammars (so the
probe test can isolate one). c is `required: true` (ignores the opt-out gate);
the rest honor GITNEXUS_SKIP_OPTIONAL_GRAMMARS. Per-grammar try/catch + a final
process.exit(0) preserve the postinstall never-exit-non-zero invariant.
- package.json: postinstall is now `materialize && build-tree-sitter-grammars.cjs`
(was five chained `build-tree-sitter-<name>.cjs` calls).
- tests: replace the two near-identical *-probe.test.ts files with one
parameterized build-tree-sitter-grammars-probe.test.ts that also covers the
required-vs-optional opt-out split and an unknown-grammar arg.
- update cli-commands.test.ts postinstall assertions + the vendor c/kotlin/swift
README + swift provenance to reference the consolidated script.
Behavior is preserved (warnings normalized to one consistent format). Removes 5
scripts + 1 test file; adds 1 script + 1 test.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ingestion): lazy-load tree-sitter-c to prevent module-load crash
tree-sitter-c is now vendored prebuild-only (#2116) with 0/6 committed
prebuilds, so on a toolchain-less or `--ignore-scripts` install C has no native
binding. Three modules loaded it via a hard top-level `import C from
'tree-sitter-c'`, which throws ERR_MODULE_NOT_FOUND at module-load — crashing
`analyze` before parser-loader's optional/severity:error degradation can run.
This is the #2091/#2093 bug class (previously fixed for swift/dart/kotlin); C was
left static because it used to be an always-present npm dependency.
- languages/c/query.ts: load via the lazy guarded getLanguageGrammar(C), mirroring
swift/query.ts; the main-thread isLanguageAvailable filter ensures the getters
are reached only when C is present.
- workers/parse-worker.ts: guarded `_require('tree-sitter-c')` + conditional
languageMap spread, like swift/dart/kotlin.
- group/extractors/include-extractor.ts: guarded `_require`; getLanguageForFile
returns null for .c/.h when absent, so C include-extraction degrades to a no-op
(C++ unaffected).
- extend the registry-import-closure regression test (#2091/#2093) to assert C
also loads lazily at registry static-import time.
* fix(ci): repin attest-build-provenance to the real v2.4.0 SHA
The workflow pinned actions/attest-build-provenance@bd77c077… commented
`# v2.4.0`, but v2.4.0 is e8998f94… (verified via the GitHub API); bd77c077…
is an untagged mid-stream commit, so the SLSA-attestation step ran unvetted
action code and the comment misrepresented what runs. Repin to the real
v2.4.0 commit and drop the `# PLACEHOLDER-PIN` markers on both this line and
the setup-python pin (a26af69b… is already the correct v5.6.0 — only its
comment was stale). Update the header NOTE accordingly.
* fix(ci): skip the prebuild-PR aggregate when release App secrets are absent
The aggregate job mints a GitHub App token as its first step; with
RELEASE_APP_ID/RELEASE_APP_PRIVATE_KEY unset it hard-failed AFTER a full
(up-to-6-runner) native build. Since the `secrets` context isn't available in
a job-level `if:`, the guard job now computes a `release_app` boolean output
(a step can read secrets) and emits an actionable `::notice::`; aggregate
gates on it and skips cleanly, while the build job's artifacts still upload
(run with open_pr=false for artifacts-only).
* chore(ci): drop package-lock.json from the prebuild paths filter; widen build timeout
`gitnexus/package-lock.json` changes on nearly every dependency PR, so it
fired the prebuild workflow's guard job on unrelated churn (the matrix stayed
correctly skipped — `gitnexus/package.json` already covers the transition-window
pin, so removing the lock only drops guard noise). Also bump the native build
job timeout 30 -> 45 min for headroom compiling the 23 MB kotlin / 18 MB swift
parser.c, especially under arm emulation.
* fix(ci): event-gate the aggregate open-PR condition explicitly
`inputs.open_pr` is null on pull_request events, and the prior
`inputs.open_pr != false` leg relied on GHA's direction-ambiguous null
coercion (Codex F4) to decide whether to open the prebuild PR. Gate
explicitly on the event: a non-fork pull_request that bumped a grammar
version opens the prebuild PR (the documented flow), and `open_pr` is only
consulted on workflow_dispatch — so a manual run with open_pr=false stays
artifacts-only and no event's behavior rests on coercion.
* fix(publish): validate the effective npm-pack contents in the coverage guard
The publish guard inferred "is source shipped?" from a single .npmignore toggle
line, which a partial/out-of-order edit could defeat (exclude binding.gyp but
leave parser.c → unbuildable yet "source-shipping"). It now inspects the
EFFECTIVE tarball via `npm pack --dry-run --ignore-scripts --json` (the
--ignore-scripts avoids re-entering this guard through prepack): a grammar
"ships source" only when EVERY on-disk source-build input (binding.gyp +
binding.cc + parser.c + scanner.c when present + a tree_sitter header) is
actually in the packed file list.
This also surfaced that the gated lean-publish .npmignore block was inert:
package.json's `files: ["vendor"]` allow-list overrides .npmignore for the
vendored subtree, so those exclusion lines never dropped anything. Replace the
dead toggle with documentation of the real mechanism (narrow the `files` field)
and note the guard enforces safety on the effective pack regardless of how the
slim is done.
* test(prebuild): hard-gate declared-fully-prebuilt grammars on 6/6 coverage
The strict 6/6 prebuild assertion was dormant whenever a grammar vendors source
(binding.gyp) — which is every grammar — so a dropped prebuild passed CI
silently. Add a FULLY_PREBUILT allowlist of grammars GitNexus has committed 6/6
for (today: swift); those must keep all six even with a source fallback, so
losing one now fails CI. Grammars graduate into the set as the
build-tree-sitter-prebuilds workflow lands their binaries. (The static-import
degradation smoke is covered by the registry-import-closure regression test
extended in the C lazy-load commit.)
* chore(deps): promote node-gyp-build/node-addon-api to regular dependencies
Every vendored grammar's index.js does `require("node-gyp-build")` at runtime
to load even a prebuilt .node, so node-gyp-build is runtime-load-critical (and
node-addon-api is needed for the source-build fallback). They were
optionalDependencies, surviving `--omit=optional` only via the required
tree-sitter's transitive edge — correct today but fragile. Promote both to
regular dependencies so the contract is explicit (optionalDependencies is now
empty and removed). Lock the contract with a cli-commands assertion.
* chore(vendor): add Windows cflags parity block to tree-sitter-c/binding.gyp
c's binding.gyp used an unconditional `cflags_c: ["-std=c11"]`, while
kotlin/swift gate MSVC flags behind an `OS=='win'` condition (/std:c11 /utf-8).
Inert today (no non-ASCII bytes in c's parser.c, and node-gyp ignores cflags_c
on MSVC anyway), but align the three so a future source-build fallback on
Windows behaves consistently.
* docs(agents): correct stale optional-grammar / postinstall notes
AGENTS.md still said postinstall "patches tree-sitter-swift, builds
tree-sitter-proto" and that only kotlin/swift are "optional". Update to the
vendored-uniform model: postinstall materializes the vendored grammars and
prefers a committed prebuild (source-build only when none matches); c is
required while dart/proto/swift/kotlin are optional + skippable via
GITNEXUS_SKIP_OPTIONAL_GRAMMARS=1, with non-fatal warnings only on a
toolchain-less host with no matching prebuild.
* fix(install): preserve the backup and warn loudly on a failed materialize rollback
If renameSync(partial, dest) failed AND the rollback renameSync(backup, dest)
also failed, the grammar was left unmaterialized (node_modules/<name> missing)
with only a generic "could not materialize" warning — the recoverable backup at
<dest>.materialize-bak was unmentioned. Emit a CRITICAL warning naming the
backup path and the recovery command on that double-failure, and document that
the fail-soft catch removes only the scratch `partial`, never the `backup`
(which may be the sole recoverable copy). Never-throw / exit-0 contract intact.
* fix(publish): make the coverage guard's npm-pack inspection script-safe
The prepack guard shelled out to `npm pack --dry-run --ignore-scripts --json`,
but the `--ignore-scripts` flag is not reliably honored by npm pack's
prepare/prepack lifecycle on the CI npm — so build.js ran, polluted the --json
stdout with `[build] …`, and the guard's JSON.parse threw. That broke every
`npm pack` (packaged-install-smoke on ubuntu+windows) and failed the guard's own
real-repo unit test (the only coverage-job failure). Force script-skipping via
the reliable `npm_config_ignore_scripts` env config (also removes the prepack
re-entry/recursion risk) and parse defensively from the JSON-array start.
* fix(publish): make the coverage guard deterministic — read `files`, not `npm pack`
The npm-pack-based guard timed out in CI: `npm pack`'s prepare/prepack lifecycle
is not skipped by `--ignore-scripts` (flag or env config) on the CI npm, so the
inner pack ran the full build (~20s+) — fine for the slow smoke job, but it blew
past vitest's 30s test timeout in the coverage job (and risked re-entering this
prepack guard).
Replace it with a deterministic, fast (~0.1s) check that needs no subprocess:
since `files: ["vendor"]` OVERRIDES `.npmignore` for the vendored subtree (so
`.npmignore` can never drop vendored source — verified), the ONLY lever that can
exclude source is narrowing the package.json `files` field. The guard now reads
`files` directly: a grammar "ships source" iff `files` includes the vendor
subtree AND the grammar carries a buildable source set on disk. A lean publish
that narrows `files` while a grammar lacks 6/6 prebuilds still fails the gate.
* feat(ci): vendored tree-sitter grammar update monitor
Adds a weekly (+ dispatchable) workflow that checks each vendored grammar against
its source-of-origin (npm for swift/kotlin, the GitHub default branch for
dart/proto; c is excluded — held at 0.21.4 for ABI safety) and opens a PR
re-vendoring any update that is ABI-COMPATIBLE with the pinned tree-sitter@0.21.1
(LANGUAGE_VERSION 13-14).
ABI awareness is the point: most upstreams have moved to ABI 15 (newer
tree-sitter), so a blind "bump to latest" would open PRs that can't build. The
monitor fetches the candidate source, reads its parser.c LANGUAGE_VERSION, and
only re-vendors 13/14 — incompatible updates are reported (notice + job summary),
never applied. (Confirmed live: dart/proto upstreams are ABI 15 today and are
correctly held; swift/kotlin are current.)
The re-vendor refreshes only the source-build inputs + runtime entrypoints,
preserving the GitNexus-hardened binding.gyp / README / prebuilds; the version
bump then triggers build-tree-sitter-prebuilds.yml, whose ABI-validation is the
final safety net so a subtly-wrong re-vendor can't silently ship. PR creation is
gated on the RELEASE_APP secret (skips with a notice if absent), mirroring the
build aggregate. Unit test locks the ABI gate; the script is import-safe.
* feat(ci): monitor tree-sitter-c too (report-only, ABI-pinned)
c was excluded from the update monitor, so an upstream c update went unnoticed.
Include it, but as report-only via a `hold`: c is ABI-pinned at 0.21.4
(#1242/#858) and must not auto-bump without a tree-sitter runtime upgrade, so an
available c update is detected + surfaced (notice + job summary) but never
auto-PR'd — even if it were ABI-13/14. `--apply c` refuses defensively. (Live:
upstream c is 0.24.1 / ABI 15 today, so c is doubly held — reported, not applied.)
* fix(ci): drop the shell in the grammar monitor's github fetch (CodeQL)
CodeQL flagged the GitHub-tarball fetch — it used `bash -c "gh api …/tarball/$ref
> src.tgz && tar xzf src.tgz"`, interpolating the API-derived ref into a shell
command (the shell-command-injection family: "this shell command depends on an
uncontrolled file name"). Replace it with a shell-free path: capture `gh api`'s
binary tarball as a Buffer via execFileSync, write it to a fixed file, and
extract with execFileSync('tar', …). No shell, no injection surface. Verified the
dart/proto fetch + ABI read still work.
---------
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
|
||
|---|---|---|
| .. | ||
| .claude | ||
| bench | ||
| hooks | ||
| scripts | ||
| skills | ||
| src | ||
| test | ||
| vendor | ||
| .env.example | ||
| .npmignore | ||
| CHANGELOG.md | ||
| Dockerfile.test | ||
| package-lock.json | ||
| package.json | ||
| README.md | ||
| tsconfig.json | ||
| tsconfig.test.json | ||
| vitest.config.ts | ||
GitNexus
Graph-powered code intelligence for AI agents. Index any codebase into a knowledge graph, then query it via MCP or CLI.
Works with Cursor, Claude Code, Antigravity (Google), Codex, Windsurf, Cline, OpenCode, and any MCP-compatible tool.
Why?
AI coding tools don't understand your codebase structure. They edit a function without knowing 47 other functions depend on it. GitNexus fixes this by precomputing every dependency, call chain, and relationship into a queryable graph.
Three commands to give your AI agent full codebase awareness.
Quick Start
# Index your repo (run from repo root)
npx gitnexus analyze
That's it. This indexes the codebase, installs agent skills, registers Claude Code hooks, and creates AGENTS.md / CLAUDE.md context files — all in one command.
On npm 11.x?
npxcan crash during install (Cannot destructure property 'package' of 'node.target'). Use the pnpm form instead:pnpm --allow-build=@ladybugdb/core --allow-build=gitnexus --allow-build=tree-sitter dlx gitnexus@latest analyzeSee Troubleshooting →
npx gitnexuscrashes withnode.target is null(npm 11) for the full matrix (global install, npm downgrade).
To configure MCP for your editor, run npx gitnexus setup once — or set it up manually below.
gitnexus setup auto-detects your editors and writes the correct global MCP config. You only need to run it once.
Editor Support
| Editor | MCP | Skills | Hooks (auto-augment) | Support |
|---|---|---|---|---|
| Claude Code | Yes | Yes | Yes (PreToolUse) | Full |
| Cursor | Yes | Yes | Yes (postToolUse, manual install) | Full |
| Antigravity (Google) | Yes | Yes | Yes (AfterTool, Gemini CLI hooks schema) | Full |
| Codex | Yes | Yes | — | MCP + Skills |
| Windsurf | Yes | — | — | MCP |
| OpenCode | Yes | Yes | — | MCP + Skills |
Claude Code gets the deepest integration: MCP tools + agent skills + PreToolUse hooks that automatically enrich grep/glob/bash calls with knowledge graph context.
Community Integrations
| Agent | Install | Source |
|---|---|---|
| pi | pi install npm:pi-gitnexus |
pi-gitnexus |
MCP Setup (manual)
If you prefer to configure manually instead of using gitnexus setup:
Claude Code (full support — MCP + skills + hooks)
# macOS / Linux
claude mcp add gitnexus -- npx -y gitnexus@latest mcp
# Windows
claude mcp add gitnexus -- cmd /c npx -y gitnexus@latest mcp
Codex (full support — MCP + skills)
codex mcp add gitnexus -- npx -y gitnexus@latest mcp
Cursor / Windsurf
Add to ~/.cursor/mcp.json (global — works for all projects):
{
"mcpServers": {
"gitnexus": {
"command": "npx",
"args": ["-y", "gitnexus@latest", "mcp"]
}
}
}
OpenCode
Add to ~/.config/opencode/config.json:
{
"mcp": {
"gitnexus": {
"command": "npx",
"args": ["-y", "gitnexus@latest", "mcp"]
}
}
}
How It Works
GitNexus builds a complete knowledge graph of your codebase through a multi-phase indexing pipeline:
- Structure — Walks the file tree and maps folder/file relationships
- Parsing — Extracts functions, classes, methods, and interfaces using Tree-sitter ASTs
- Resolution — Resolves imports and function calls across files with language-aware logic
- Field & Property Type Resolution — Tracks field types across classes and interfaces for deep chain resolution (e.g.,
user.address.city.getName()) - Return-Type-Aware Variable Binding — Infers variable types from function return types, enabling accurate call-result binding
- Field & Property Type Resolution — Tracks field types across classes and interfaces for deep chain resolution (e.g.,
- Clustering — Groups related symbols into functional communities
- Processes — Traces execution flows from entry points through call chains
- Search — Builds hybrid search indexes for fast retrieval
The result is a LadybugDB graph database stored locally in .gitnexus/ with full-text search and semantic embeddings.
MCP Tools
Your AI agent gets these tools automatically:
| Tool | What It Does | repo Param |
|---|---|---|
list_repos |
Discover all indexed repositories | — |
query |
Process-grouped hybrid search (BM25 + semantic + RRF) | Optional |
context |
360-degree symbol view — categorized refs, process participation | Optional |
impact |
Blast radius analysis with depth grouping and confidence | Optional |
detect_changes |
Git-diff impact — maps changed lines to affected processes | Optional |
rename |
Multi-file coordinated rename with graph + text search | Optional |
cypher |
Raw Cypher graph queries | Optional |
With one indexed repo, the
repoparam is optional. With multiple, specify which:query({query: "auth", repo: "my-app"}).
MCP Resources
| Resource | Purpose |
|---|---|
gitnexus://repos |
List all indexed repositories (read first) |
gitnexus://repo/{name}/context |
Codebase stats, staleness check, and available tools |
gitnexus://repo/{name}/clusters |
All functional clusters with cohesion scores |
gitnexus://repo/{name}/cluster/{name} |
Cluster members and details |
gitnexus://repo/{name}/processes |
All execution flows |
gitnexus://repo/{name}/process/{name} |
Full process trace with steps |
gitnexus://repo/{name}/schema |
Graph schema for Cypher queries |
MCP Prompts
| Prompt | What It Does |
|---|---|
detect_impact |
Pre-commit change analysis — scope, affected processes, risk level |
generate_map |
Architecture documentation from the knowledge graph with mermaid diagrams |
CLI Commands
gitnexus setup # Configure MCP for your editors (one-time)
gitnexus uninstall # Preview removal of GitNexus MCP/skills/hooks (add --force to apply)
gitnexus analyze [path] # Index a repository (or update stale index)
gitnexus analyze --repair-fts # Fast path: rebuild/verify only FTS indexes on existing index data
gitnexus analyze --force # Full rebuild: re-parse + graph rebuild + FTS rebuild
gitnexus analyze --embeddings # Enable embedding generation (slower, better search)
gitnexus analyze --skip-agents-md # Preserve custom AGENTS.md/CLAUDE.md gitnexus section edits
gitnexus analyze --verbose # Log skipped files when parsers are unavailable
gitnexus analyze --max-file-size 1024 # Skip files larger than N KB (default: 512, cap: 32768)
gitnexus analyze --worker-timeout 60 # Increase worker idle timeout for slow parses
gitnexus analyze --wal-checkpoint-threshold 67108864 # 64 MiB. Control LadybugDB WAL auto-checkpoint threshold (default: 67108864 = 64 MiB; -1 keeps Ladybug stock ~16 MiB)
gitnexus mcp # Start MCP server (stdio) — serves all indexed repos
gitnexus serve # Start local HTTP server (multi-repo) for web UI
gitnexus index # Register an existing .gitnexus/ folder into the global registry
gitnexus list # List all indexed repositories
gitnexus status # Show index status for current repo
gitnexus clean # Delete index for current repo
gitnexus clean --all --force # Delete all indexes
gitnexus wiki [path] # Generate LLM-powered docs from knowledge graph
gitnexus wiki --model <model> # Wiki with custom LLM model (default: gpt-4o-mini)
# Direct graph queries — the same tools the MCP server exposes, no MCP daemon needed
gitnexus query "<concept>" # Process-grouped hybrid search
gitnexus context <symbol> [--uid <uid> | --file <path>] # 360° symbol view; flags disambiguate a shared name
gitnexus impact <symbol> [--uid <uid> | --file <path> | --kind <kind>] # Blast radius; flags disambiguate a shared name
gitnexus detect-changes # Map the working-tree diff to affected symbols and execution flows
gitnexus cypher "<query>" # Run a raw Cypher query against the knowledge graph
# Repository groups (multi-repo / monorepo service tracking)
gitnexus group create <name> # Create a repository group
gitnexus group add <group> <groupPath> <registryName> # Add a repo to a group. <groupPath> is a hierarchy path (e.g. hr/hiring/backend); <registryName> is the repo's name from the registry (see `gitnexus list`)
gitnexus group remove <group> <groupPath> # Remove a repo from a group by its hierarchy path
gitnexus group list [name] # List groups, or show one group's config
gitnexus group sync <name> # Extract contracts and match across repos/services
gitnexus group contracts <name> # Inspect extracted contracts and cross-links
gitnexus group query <name> <q> # Search execution flows across all repos in a group
gitnexus group status <name> # Check staleness of repos in a group
gitnexus uninstallreversesgitnexus setup— it removes the GitNexus MCP entries, hooks, and skill directories it added to each detected editor. Skill directories are identified by bundled gitnexus skill name (e.g.gitnexus-cli/), so if you customized files inside an installed skill directory, back them up first. It is a dry-run preview by default and prints the exact paths it would remove; pass--forceto apply. Per-repo indexes (gitnexus clean --all) and the global npm package (npm uninstall -g gitnexus) are left for you to remove.
Remote Embeddings
Set these env vars to use a remote OpenAI-compatible /v1/embeddings endpoint instead of the local model:
export GITNEXUS_EMBEDDING_URL=http://your-server:8080/v1
export GITNEXUS_EMBEDDING_MODEL=BAAI/bge-large-en-v1.5
export GITNEXUS_EMBEDDING_DIMS=1024 # optional, default 384
export GITNEXUS_EMBEDDING_API_KEY=your-key # optional, default: "unused"
gitnexus analyze . --embeddings
Works with Infinity, vLLM, TEI, llama.cpp, Ollama, LM Studio, or OpenAI. When unset, local embeddings are used unchanged.
Multi-Repo Support
GitNexus supports indexing multiple repositories. Each gitnexus analyze registers the repo in a global registry (~/.gitnexus/registry.json). The MCP server serves all indexed repos automatically.
Supported Languages
TypeScript, JavaScript, Python, Java, C, C++, C#, Go, Rust, PHP, Kotlin, Swift, Ruby
Language Feature Matrix
| Language | Imports | Named Bindings | Exports | Heritage | Type Annotations | Constructor Inference | Config | Frameworks | Entry Points |
|---|---|---|---|---|---|---|---|---|---|
| TypeScript | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ |
| JavaScript | ✓ | ✓ | ✓ | ✓ | — | ✓ | ✓ | ✓ | ✓ |
| Python | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ |
| Java | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | — | ✓ | ✓ |
| Kotlin | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | — | ✓ | ✓ |
| C# | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ |
| Go | ✓ | — | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ |
| Rust | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | — | ✓ | ✓ |
| PHP | ✓ | ✓ | ✓ | — | ✓ | ✓ | ✓ | ✓ | ✓ |
| Ruby | ✓ | — | ✓ | ✓ | — | ✓ | — | ✓ | ✓ |
| Swift | — | — | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ | ✓ |
| C | — | — | ✓ | — | ✓ | ✓ | — | ✓ | ✓ |
| C++ | — | — | ✓ | ✓ | ✓ | ✓ | — | ✓ | ✓ |
Imports — cross-file import resolution · Named Bindings — import { X as Y } / re-export tracking · Exports — public/exported symbol detection · Heritage — class inheritance, interfaces, mixins · Type Annotations — explicit type extraction for receiver resolution · Constructor Inference — infer receiver type from constructor calls (self/this resolution included for all languages) · Config — language toolchain config parsing (tsconfig, go.mod, etc.) · Frameworks — AST-based framework pattern detection · Entry Points — entry point scoring heuristics
Agent Skills
GitNexus ships with skill files that teach AI agents how to use the tools effectively:
- Exploring — Navigate unfamiliar code using the knowledge graph
- Debugging — Trace bugs through call chains
- Impact Analysis — Analyze blast radius before changes
- Refactoring — Plan safe refactors using dependency mapping
Installed automatically by both gitnexus analyze (per-repo) and gitnexus setup (global).
Requirements
- Node.js >= 18
- Git repository (uses git for commit tracking)
Release candidates
Stable releases publish to the default latest dist-tag. When a pull request
with non-documentation changes merges into main, an automated workflow also
publishes a prerelease build under the rc dist-tag, so early adopters can
try in-flight fixes without waiting for the next stable cut. (Docs-only
merges are skipped.)
# Try the latest release candidate (pre-stable — may change at any time)
npm install -g gitnexus@rc
# — or —
npx gitnexus@rc analyze
Release-candidate versions follow the standard semver prerelease format
X.Y.Z-rc.N, where X.Y.Z is the next stable target (bumped from the
current latest by patch by default; minor or major when kicking off a
bigger cycle) and N increments per published rc. Example sequence:
1.6.2-rc.1, 1.6.2-rc.2, …, then once 1.6.2 ships stable,
1.6.3-rc.1. See the Releases page
for the full list; stable latest is unaffected.
Troubleshooting
Cannot destructure property 'package' of 'node.target' as it is null
This error comes from npm 11.x's arborist while installing gitnexus (often via npx), before gitnexus code runs. It is triggered by platform-filtered optionalDependencies in native packages such as onnxruntime-node / @huggingface/transformers (used when indexing with --embeddings). GitNexus cannot catch it at runtime — use one of these workarounds:
pnpm --allow-build=@ladybugdb/core --allow-build=gitnexus --allow-build=tree-sitter dlx gitnexus@latest analyze # auto-selected when pnpm + npm 11+
npm install -g gitnexus@latest # global install avoids per-run npx reify
gitnexus analyze # if already installed globally
On pnpm 10+, lifecycle scripts are blocked unless explicitly allowed — the resolver adds --allow-build for @ladybugdb/core, gitnexus, and tree-sitter automatically when it picks pnpm dlx.
If you must stay on npm 11.x without pnpm, downgrade npm toolchain-wide (last resort):
npm install -g npm@10.9.0
See #1939 and the original #819 thread. An older variant of this crash (tree-sitter-dart tarball URL) was fixed in gitnexus v1.6.2+ (#820); if you still see install failures after upgrading, clear cache:
npm cache clean --force
npx gitnexus@latest analyze
ERR_DLOPEN_FAILED / lbugjs.node missing (pnpm dlx, pnpx)
GitNexus depends on @ladybugdb/core, whose native database addon
(lbugjs.node) is placed by a postinstall script. pnpm dlx, pnpx, and any
install run with --ignore-scripts skip lifecycle scripts, so the addon is
never put in place and the runtime crashes with ERR_DLOPEN_FAILED:
Error: dlopen(.../@ladybugdb/core/lbugjs.node, ...): tried: '...' (no such file)
code: 'ERR_DLOPEN_FAILED'
Options that run install scripts:
# pnpm dlx with explicit build permission (one-off, no global install required)
pnpm --allow-build=@ladybugdb/core --allow-build=gitnexus --allow-build=tree-sitter \
dlx gitnexus@latest serve
# npm: global install (recommended on npm 11+; bare npx may crash — see section above)
npm install -g gitnexus@latest
gitnexus serve
# npx (npm < 11, or after upgrading npm)
npx gitnexus@latest serve
# pnpm: global install with build scripts allowed (pnpm 10.2+; no approve-builds -g on pnpm 11+)
pnpm add -g --allow-build=@ladybugdb/core --allow-build=gitnexus --allow-build=tree-sitter gitnexus
gitnexus serve
Installation fails with native module errors
Some optional language grammars (Dart, Kotlin, Swift) require native compilation. If they fail, GitNexus still works — those languages will be skipped.
If npm install -g gitnexus fails on native modules:
# Ensure build tools are available (Linux/macOS)
# Ubuntu/Debian: sudo apt install python3 make g++
# macOS: xcode-select --install
# Retry installation
npm install -g gitnexus
Analyze warns about unavailable FTS or VECTOR extensions
GitNexus uses optional DuckDB extensions for BM25 and vector search. The gitnexus serve and MCP read paths only ever try to LOAD the extensions — they never block on a network install. The analyze command, by default, attempts one bounded out-of-process INSTALL if LOAD fails and proceeds even when that install times out, so the index is always written to disk; BM25/vector search degrade gracefully until the extensions become available.
Configure the behavior with two environment variables:
| Variable | Values | Default | Effect |
|---|---|---|---|
GITNEXUS_LBUG_EXTENSION_INSTALL |
auto, load-only, never |
auto |
auto runs one bounded INSTALL if LOAD fails. load-only only uses already-installed extensions (recommended for offline / firewalled environments). never skips optional extensions entirely. |
GITNEXUS_LBUG_EXTENSION_INSTALL_TIMEOUT_MS |
positive integer | 15000 |
Wall-clock budget for the out-of-process INSTALL child before it is killed. |
GITNEXUS_WAL_CHECKPOINT_THRESHOLD |
integer >= -1 |
67108864 (64 MiB) |
LadybugDB WAL auto-checkpoint threshold during analyze (bytes). Auto-checkpoint remains enabled; -1 keeps Ladybug's stock ~16 MiB. Larger thresholds reduce checkpoint frequency but increase the WAL size at rotation time — choose a smaller value on disk-constrained environments. |
# Offline/airgapped: never reach the network for extensions
GITNEXUS_LBUG_EXTENSION_INSTALL=load-only npx gitnexus analyze
# Slow network: give extension downloads more time
GITNEXUS_LBUG_EXTENSION_INSTALL_TIMEOUT_MS=30000 npx gitnexus analyze
Analysis runs out of memory
For very large repositories:
# Increase Node.js heap size
NODE_OPTIONS="--max-old-space-size=16384" npx gitnexus analyze
# Exclude large directories
echo "vendor/" >> .gitnexusignore
echo "dist/" >> .gitnexusignore
Large files are being skipped
By default the walker skips files larger than 512 KB (see log line Skipped N large files (>512KB)). Raise the threshold via either the CLI flag or the environment variable — both accept a value in KB:
# CLI flag (takes precedence over the env var)
npx gitnexus analyze --max-file-size 2048 # skip only files > 2 MB
# Environment variable (persists across commands)
export GITNEXUS_MAX_FILE_SIZE=2048
npx gitnexus analyze
Values above 32768 KB (32 MB) are clamped to the tree-sitter parser ceiling; invalid values fall back to the 512 KB default with a one-time warning. When an override is active, analyze prints the effective threshold in its startup banner (e.g. GITNEXUS_MAX_FILE_SIZE: effective threshold 2048KB (default 512KB)).
Analyze reports a worker timeout
Worker parse timeouts are recoverable. GitNexus retries stalled worker jobs with backoff, splits large jobs to isolate slow files, and quarantines a file that repeatedly crashes its worker (respawning the slot so the pool keeps going). If a large repository needs more time per worker job, use either:
# CLI flag, in seconds
npx gitnexus analyze --worker-timeout 60
# Environment variable, in milliseconds
export GITNEXUS_WORKER_SUB_BATCH_TIMEOUT_MS=60000
npx gitnexus analyze
For repositories with very large source files, GITNEXUS_WORKER_SUB_BATCH_MAX_BYTES controls the worker job byte budget. The default is 8388608 bytes (8 MB).
Worker pool resilience tuning
Three env vars expose the pool's resilience layers (respawn budget, cumulative-timeout cap, circuit breaker). Defaults are tuned for typical repos; bump them when an analyze legitimately needs more retries, or lower them to fail-fast on a known-bad shape.
| Variable | Default | Effect |
|---|---|---|
GITNEXUS_WORKER_MAX_RESPAWNS_PER_SLOT |
3 |
Max replacement spawns per slot before the slot is dropped from the active rotation. |
GITNEXUS_WORKER_MAX_CUMULATIVE_TIMEOUT_MS |
5 × subBatchTimeoutMs |
Total retry wall-time budget per job before quarantining. Bounds exponentially-growing retry waits. |
GITNEXUS_WORKER_CONSECUTIVE_FAILURE_THRESHOLD |
max(3, poolSize) |
Per-slot consecutive deaths before the pool's circuit breaker trips. After tripping, dispatches require a fresh pool. |
Graph cleanup tuning
After scope resolution, analyze prunes inert block-local value symbols (a function-local const/let/var that ends up with only its structural File→DEFINES edge) to keep the graph focused on cross-symbol relationships. Module/file-scope symbols, class members, and any local with a real edge are always kept.
| Variable | Default | Effect |
|---|---|---|
GITNEXUS_KEEP_LOCAL_VALUE_SYMBOLS |
unset | Set to 1/true to keep inert block-local value symbols instead of pruning them. |
Programmatic callers can pass keepLocalValueSymbols: true in PipelineOptions instead of setting the env var.
Privacy
- All processing happens locally on your machine
- No code is sent to any server
- Index stored in
.gitnexus/inside your repo (gitignored) - Global registry at
~/.gitnexus/stores only paths and metadata
Web UI
GitNexus also has a browser-based UI at gitnexus.vercel.app — 100% client-side, your code never leaves the browser.
Local Backend Mode: Run gitnexus serve and open the web UI locally — it auto-detects the server and shows all your indexed repos, with full AI chat support. No need to re-upload or re-index. The agent's tools (Cypher queries, search, code navigation) route through the backend HTTP API automatically.
License
Free for non-commercial use. Contact for commercial licensing.