Files
deusdata--codebase-memory-mcp/scripts
Martin Vogel 7b4533b67d fix(ci): finish the three-candidate wiring and restore full-surface VT scanning
Two things, both found by the dry-run and by sweeping what it exposed.

1. The three-candidate change was incomplete. The dry-run failed at
   stage-release-candidates.py, which carries its OWN copy of the transform
   validation that the previous commit only fixed in the selector:

     stage-release-candidates: candidate linux-amd64/debug-stripped has
     invalid transform: 'strip-debug'

   Sweeping for that assumption found it in six places, not two:
   stage-release-candidates.py, select-release-candidates.py,
   verify-release-selection.py, append-vt-notes.sh and two contract-test
   fixtures — as hardcoded 16s, `len(TARGETS) * 2`, two-entry VARIANTS tuples
   and two-key truth tables. All are now derived from len(VARIANTS).

   Field prefixes needed care: the variant NAME keeps its hyphen because it is
   the on-disk directory, while the evidence columns use underscores, so
   `debug-stripped` reads `debug_stripped_sha256`. Every lookup now goes through
   an explicit FIELD_KEY map instead of interpolating the variant directly.

   The selection contract test now covers the truth table EXHAUSTIVELY: three
   variants x two tolerated classifications is exactly eight combinations, and
   there are exactly eight targets, so every case is exercised once.

2. Full-surface VirusTotal scanning is restored. This PR had moved scanning
   upstream to the candidates and deleted the post-package pass, which silently
   narrowed coverage from everything we ship to executables only. The 42 runtime
   files across the 14 containers — install.sh, install.ps1, LICENSE,
   THIRD_PARTY_NOTICES.md, the MCPB manifest.json and the unpacked UI assets —
   were still extracted, structurally verified and strings-audited, but no
   longer scanned at all. install.sh and install.ps1 are the highest-consequence
   non-executable bytes we publish; users pipe them straight into a shell.

   The verify job scans every extracted object again, under the same policy.
   Re-submitting the selected executables alongside them is close to free
   because VirusTotal is content-addressed and answers for identical bytes from
   its own record — the same property that made the analysis-id equality check
   untenable two commits ago.

   The gate-chain contract asserted the opposite ("duplicate post-package
   VirusTotal path remains"). That assertion is inverted: the pass is required,
   and it is not a duplicate, since it covers a strictly larger set. README and
   SECURITY.md updated from "archive containers are checksummed rather than
   redundantly rescanned" to state the full covered surface.

All five release/VT contract tests pass.

Signed-off-by: Martin Vogel <martin.vogel.tech@gmail.com>
2026-08-14 00:21:31 +02:00
..

scripts/ — the canonical leg entries

The doctrine (enforced, not advisory): a venue may provision a machine; only a canonical leg script may exercise the product. Local CI, PR CI, the dry run and the release all call the SAME files below — venues differ only in host specs, architecture and inputs, never in what a leg does. Platform differences (arm64 sanitizer flags, native Windows behavior, the Linux portable binary) live INSIDE these scripts, once, never per-venue. tests/test_venue_parity_contract.sh (run as Step 0j of every test leg) turns any violation — inline harness logic in a workflow, a bypassed wrapper, a missing --help — into a red build.

Every entry answers --help (authoritative, agent-oriented: modes, env, exit codes) and rejects unknown flags with exit 2 + Please consult --help.

The legs

leg entry what a run gives you
test test.sh DEFAULT = the venue leg: static contracts (Step 0a0r) + CLEAN ASan+UBSan build + all suites via the parallel harness + prod-binary guards. --suites a,b = iteration mode (incremental rebuild, subset, seconds). --tsan = the ThreadSanitizer leg. CLANGARM64 gets CI's trap-UBSan flags automatically.
package wrappers ci/test-package-wrappers.sh Go, npm, and PyPI runtime-set publication/lock suites on the current host. CI runs the same entry on Linux and Windows so both platform lock implementations gate.
build build.sh CLEAN production runtime set (native executable + authenticated integration asset; --with-ui adds one content-addressed UI pack). ccache via env.sh makes repeats fast; CCACHE_COMPILERCHECK=content guarantees a hit is byte-identical to a cold compile — never stale. --version, STATIC=1, BUILD_DIR=.
lint lint.sh clang-tidy + cppcheck + clang-format (+ no-skips policy). --ci = the CI gate set (no clang-tidy). Drives the same make targets as make lint/lint-ci.
smoke (unix) smoke-local.sh Stages a full release fixture, serves it on a kernel-assigned port, runs smoke-test.sh (ALL phases incl. download/install/update E2E) inside a disposable HOME/XDG/TMP sandbox. ui variant makes a missing verified UI pack a FAILURE. CBM_SMOKE_ARTIFACT_DIR = smoke an extracted release artifact verbatim (release mode).
smoke (windows) ../test-infrastructure/vm/vm-smoke.sh Same verified runtime-set contract on the real Windows VM, plus the user-PATH registry guard (prepare/verify/cleanup).
smoke-invariants smoke-invariants.sh Production-path resilience battery (MCP handshake, all tools invocable, malformed-input handling, supervised crash/hang recovery) — no fixture server or install E2E. smoke.yml runs an explicitly seam-enabled build on the WIDEST source matrix; release artifacts remain seam-free and use the release-shaped smoke legs above.
soak soak-legs.sh The release-gating soak SEQUENCE: quick then query-leak (the #581 detector — never reindexes, so RSS growth = query-path leak), each guarded by a completion-summary check. --legs quick for the ASan single-leg variant. Duration is per leg.

Internal harnesses — never called directly by a venue (the contract forbids it): smoke-test.sh (phases; wrappers provide fixture server + sandbox), soak-test.sh (one soak run; soak-legs.sh provides the sequence + guards), run-tests-parallel.sh (reached through test.sh).

Conventions

  • Exit codes: 0 = pass · 2 = usage error · 90 = guard (a run died without its completion summary — never counts as green) · anything else = the leg's real failure.
  • Iteration is a flag, not a side-tool: the fast paths (--suites, --legs) are modes of the SAME entry the gates run, so a dev loop can never drift from the venue behaviour.
  • Env sandboxing: the smoke wrappers neutralize every agent-config destination override; a smoke can never scribble on your real config.
  • Iterating on a change: scripts/test.sh --suites <suite> (seconds, incremental, same ASan+UBSan flags as the gate). List suites: build/c/test-runner --list-suites. Debugging a Windows-on-ARM trap: re-run with SANITIZE= for a plain build, or use the emulated win.sh ubsan-* pair for full diagnostics.
  • Before any push (the 3-OS ladder): scripts/test.sh (macOS, full) → ./test-infrastructure/run.sh full (Linux + TSan + smoke) → test-infrastructure/vm/win.sh test-par + guards + smoke-install (+ soak when the change touches memory/daemon paths).
  • Concurrency-touching change: add scripts/test.sh --tsan early — the same leg CI gates on.
  • Release-shaped verification: CBM_SMOKE_ARTIFACT_DIR=<extracted artifact> scripts/smoke-local.sh <binary> [ui] smokes exactly what would ship.
  • A leg is red in CI but green locally: first suspect environment shape, not code — the preflights (win.sh automatic; scripts/ci/preflight-docker.sh) and test-infrastructure/README.md's residuals list cover the knowable differences.

See scripts/ci/README.md for the CI plumbing and test-infrastructure/README.md for the venue map.