Commit Graph

2 Commits

Author SHA1 Message Date
cproudlock
55a6f1b8d3 ADR-013 Phase 2: fix four bypasses found by adversarial review
An adversarial security review of the Phase 2 trust model found four real
bypasses (two remote-triggerable to in-process code execution). Root cause for
three: the set of bytes verification covered was smaller than the set that
determined execution. Fixes:

1. Bytecode-cache blind spot (CRITICAL). verify_dir excluded __pycache__/.pyc,
   so a planted cache ran while escaping the hash map. verify_dir now flags any
   bytecode as an unexpected file; the loader strips bytecode before verify and
   imports under sys.dont_write_bytecode, so only verified source executes.

2. Unauthenticated verify-at-load bypass (CRITICAL). load_plugin_class imported
   plugin.py with no gate, reachable via discover_available / an anonymous GET
   /api/plugins. The verify+strip gate moved INTO load_plugin_class - the single
   import choke point every path flows through - so an unsigned/tampered plugin
   is never imported. discover_available skips a refused plugin instead of 500.

3. Ungated migration entrypoints (HIGH). downgrade_plugin and get_current_head
   (ScriptDirectory imports version modules) ran plugin code with no check. All
   alembic-invoking methods now pass through _verify_ok (strip + verify) first
   and run under no-bytecode.

4. Revocation/content bypass (HIGH). The signed index bound a filename, not
   content; adopt did not bind the delivered bytes to the resolved version, so
   revoked bytes could be served under a live filename. The index now records a
   per-artifact SHA-256; adopt verifies the on-disk digest and requires the
   artifact's own signed manifest version to equal the resolved version.

Enforcement stays default-off; strip/no-bytecode run only under enforcement, so
the unsigned path is unchanged. 6 regression tests (planted bytecode, the
discover import path, downgrade gate, version-swap). 1054 pass, naming green.
2026-07-18 21:06:27 -04:00
cproudlock
86f5f1be68 ADR-013 Phase 1: signed plugin artifacts (pack/validate/keygen)
Packaging + provenance for the plugin marketplace. No runtime behavior change
yet - verification is available on demand; enforcing it at plugin load/migrate
and pulling from a shelf are Phase 2.

- signing.py: ed25519 key pairs + provenance. Provenance is a sorted per-file
  SHA-256 map plus metadata; the detached signature covers the exact
  serialized provenance bytes, so verifying is re-hash files, re-serialize,
  check signature. verify() accepts any of several trusted keys (rotation).
  Uses cryptography (already a dependency).
- packaging.py: pack() builds a signed <name>-<version>.shopdbplugin (zip +
  PROVENANCE.json + PROVENANCE.sig). verify_artifact()/verify_dir() re-hash
  and check the signature, and flag a tampered file, an unexpected file, a
  wrong/absent key - all fail closed.
- CLI: `flask plugin keygen` (publisher key pair), `flask plugin pack <name>
  --key` (validates then signs), and `flask plugin validate` extended to a
  signed artifact by path (--pubkey, else PLUGIN_TRUSTED_KEYS).
- config PLUGIN_TRUSTED_KEYS: os.pathsep-separated public-key PEM paths,
  delivered with the site config, never read from the shelf. .env.example
  documents it.
- docs/PLUGIN-SIGNING.md: curator flow (keygen offline, review, pack, publish,
  pin keys, rotate).

The signature proves an artifact is exactly what a curator signed, not that the
code is safe - human review before signing is the control. 11 tests: sign/verify
round trip, wrong key, provenance excludes noise, serialize determinism, pack +
verify, tamper -> hash mismatch, extra file, no-key fail-closed, verify_dir.
1028 pass, naming green.
2026-07-18 20:21:57 -04:00