029692945ee5720867f61ac368530565b221fe00
3
Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
|
|
a49e7ed2af |
fix(plugin): the hooks need no jq and no tac (#4107)
CI & Build / Python lint (push) Successful in 2s
CI & Build / Plugin hooks (push) Successful in 9s
CI & Build / integration (push) Successful in 49s
CI & Build / TypeScript typecheck (push) Successful in 57s
CI & Build / Python tests (push) Failing after 1m7s
CI & Build / Build & push image (push) Skipped
Every hook opened `command -v jq >/dev/null 2>&1 || exit 0`, so on a machine without jq the operator got no session context, no rules, no prior art and no process sync — and not one word saying why, because `exit 0` is indistinguishable from "ran fine, nothing to say". jq is absent by default on macOS, on the Debian/Ubuntu slim images, on Alpine and in most CI containers. That is not a prerequisite to document; it is the plugin handing its own packaging problem to whoever installs it. `tac` was worse: GNU-only, so the prior-art hook's enclosing-definition arm did nothing at all on every Mac, silently, from the day it shipped. It is not replaced but removed — scribe_defs judges each line independently, so extracting forward and taking `tail -1` is the same answer as reversing and taking the head, and it drops the early-exit `head` that #4042 was filed for. No server contract changed, so a lagging plugin cache keeps working. scribe_json.awk JSON -> IDX<TAB>PATH<TAB>VALUE. Two modes: `whole` for an event or a response body, `lines` for a transcript, where an unparseable record is dropped and the rest still read — the `map(try fromjson catch empty)` the jq program opened with. Arrays also report their LENGTH at `[#]`, which is what keeps "zero notes" distinct from "no answer" (#2932). scribe_turn.awk the turn-bounding program, replacing the thirty lines of jq in the Stop hook. scribe_defs.sh scribe_json_flat / _pick / _list / _len / _list_minus read, scribe_json_out writes the envelope (five copies of one shape, gone), scribe_urlenc replaces `jq -sRr '@uri'`. Percent-encoding goes through `od -tu1` rather than an awk character loop on purpose: awk's idea of a character follows the locale, so gawk reads an accented letter as one and mawk as two, and an encoder built on substr() would emit a different URL depending on which awk is installed. Encoding is defined on bytes. Verified byte-identical to `jq -sRr '@uri'`. Measured, not assumed. The per-event path costs 8ms against jq's 3ms. The transcript path was 70x slower until two fixes: the Stop hook now finds where the turn starts with a fixed-string grep before parsing (a needle carrying unescaped quotes cannot occur inside a JSON string, so it matches only at a record's top level — checked against a full JSON parse of a 27MB transcript: 152 prompt records, 152 matches, no misses, no extras), and the parser reads each token out of a 1024-byte window instead of copying the rest of the buffer per token, which was quadratic in line length on the 400KB tool results a transcript carries. Differential-tested against the jq program it replaces over 724 windows cut from three real transcripts — 724 identical, 0 mismatched, 45 of them exercising a real task close and a real reply. That sweep is what caught `scribe_turn.awk` never setting FS, which truncated every multi-word reply at its first space and was invisible to a test whose replies were all empty. check_plugin.py's `jq -R` lint becomes a guard against either binary coming back, and three smoke checks lose their `shutil.which("jq")` skip. jq is not in `ci-python` either, so those three announced a skip on every CI run and had never once run there: removing the dependency from the product also closed a permanent hole in its verification. They pass now across all ten hooks. tests/test_hook_json_reader.py is a differential against Python's `json` over nested objects, arrays, unicode, escapes, control characters, empty cases and a value longer than the token window, plus the envelope, the encoder and the turn analyzer. 139 cases. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
||
|
|
f1e63d207f |
fix(plugin): the sweep missed the arm that fires most — two ledger directories (#4101)
CI & Build / Python lint (push) Successful in 3s
CI & Build / Plugin hooks (push) Successful in 9s
CI & Build / integration (push) Successful in 42s
CI & Build / TypeScript typecheck (push) Successful in 53s
CI & Build / Python tests (push) Failing after 1m46s
CI & Build / Build & push image (push) Skipped
CI caught two things in
|
||
|
|
1cfbf43ccd |
fix(plugin): the rule ledger clears when the context it describes is destroyed (#3749)
CI & Build / Python lint (push) Successful in 3s
CI & Build / Plugin hooks (push) Failing after 8s
CI & Build / TypeScript typecheck (push) Successful in 11s
CI & Build / integration (push) Successful in 36s
CI & Build / Python tests (push) Successful in 1m6s
CI & Build / Build & push image (push) Successful in 21s
The prior-art and tool-rule hooks record every rule id they have named in <state>/<sid>.rules.ids and hand it back as exclude_rule_ids, so a rule is surfaced once per session and then goes quiet. That is correct while the session still HOLDS what it was told. A compaction breaks it in the worst available way: it summarizes the earlier injections out of context and does not touch the filesystem. The rule ends up absent from context AND still excluded — unreachable for the rest of the session. The compaction banner this hook already prints tells the model to re-pull its ALWAYS-ON rules, but a rule an arm surfaced is conditional and is not in that set, so it has no other way back. The rules most likely to be in that state are the ones that fire most often. The stale ledger is genuinely found again rather than orphaned: the etag marker further down this same hook is rewritten on `compact` and keyed by session_id, which is only meaningful if the id survives a compaction. CLEARED ON THE SOURCES THAT DESTROY CONTEXT, AND ONLY THOSE. `compact` and `clear` destroy it while the file survives. `resume` does not — the context came back intact, so clearing there would re-surface every rule after a restore that lost nothing, which is the same defect from the other side. `startup` is a no-op against a new session id. `fork` keeps it, and the answer holds whichever way forks are keyed: a fork carries the conversation, so an inherited id means an accurate ledger and a new id means an empty file. Only the RULE ledger. The same directory holds .ids / .sync.ids / .derive.ids for the note arms; whether a surfaced note should return after a compaction is a different question with a different answer, and a `rm` glob would have decided it silently. The guard pins the DISCRIMINATION, not the deletion: the whole source table is asserted in one statement, so a blanket delete (all False) and a no-op (all True) both fail, and neither can be made to pass by editing one case. A second test pins the scope against that glob, and a third proves an event with no session id clears nothing rather than falling back to a wildcard. Runs with no SCRIBE_URL/SCRIBE_TOKEN on purpose — the clear is local, keyless and networkless, and must still happen against an unreachable instance. That is also why it sits above the config read rather than inside the dynamic tier. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |