bacaf3d39c
El SDK CI - dev / build-and-test (pull_request) Failing after 4m49s
Lands feat/reframe-region-setop (PR #109: native set-based reframe_region, decorator-as-seam @route port, teacher-summon, and the M8.1 activate-latency work — lazy-memoized cosq via eg_cosq_at + engram_vindex HNSW-accelerated seed discovery + vindex_harvest_from_store/vindex_bench oracle) onto dev's actual current HEAD, plus engram-tiered-storage's still-unique test suite. RECONCILING #109 WITH engram-tiered-storage (M4-M10 HNSW/geometry/reason/ verify work): not a two-way merge. engram_vindex.c's HNSW core (search_layer/ select_neighbors/prune_links/insert) is BYTE-IDENTICAL between the two branches; #109's copy is a strict superset (adds vindex_harvest_from_store, used by vindex_bench.c's brute-force-vs-HNSW oracle). engram_reason.c and engram_verify.c are also byte-identical. #109's own branch point already carried engram-tiered-storage's M4-M10 lineage forward, so there was nothing left to merge into #109 for those files. The one thing engram-tiered-storage had that #109's tree dropped: its full test suite (test_vindex.c, test_geometry.c, test_reason.c, test_verify.c, test_m7_traversal.c, the interoception P0-P5 tests, bufpool/compaction tests, and their run_*.sh harnesses) — ported over here unchanged. WHY THIS NEEDED HAND RECONCILIATION, NOT A MECHANICAL MERGE: #109's branch forked from dev on 2026-08-14 15:40 (before restructure-adjacent history diverged the file's merge-base for `git merge` — it presented as an add/add conflict). A straight two-dot diff (dev tip -> PR tip) applied cleanly, but it silently reverted THREE dev fixes landed on 2026-08-14/15, after the branch point, that the PR's diff had no way to know about: 1. qgate rescale (2026-08-14 self-review): PR's lazy eg_cosq_at rewrite of the query-aware propagation gate dropped the shift-and-floor rescale about ENGRAM_EMBED_S0 (measured: unrelated-pair median 0.562->raw gate 0.67, i.e. "a small tax, not a gate"). Restored the rescale, wrapped around the lazy accessor -- the PR's actual improvement (WHEN cosq[oi] is computed) is orthogonal to WHAT it gates on and both are kept. 2. Eviction cause decomposition (2026-08-14 self-review): dev decomposes wm_evicted into evict_floor/evict_cap/evict_bll so WM churn is diagnosable (identity: evicted == floor+cap+bll+dup_wm+dup_wm_global). PR's tree predates this and dropped all three counters + their JSON stats fields. Restored declarations, all 4 direct increment sites, the eg_wm_carry_over bll increment, and the act-stats JSON fields -- alongside (not instead of) the PR's own P4 afferent / API-reshape counters already in that same struct/JSON. 3. Hebbian link-formation selection (2026-08-15 self-review, TODAY): dev selects the STRONGEST qualifying candidate for consolidation each call; PR's tree predates this and reverted to hash-slot order (arbitrary wrt association strength) for edge formation -- the one path that writes PERMANENT structure. Restored the strongest-candidate while-loop, keeping the PR's own genuine improvement at that site (engram_adj_on_edge_added incremental-index append instead of a bare adj_dirty=1 full-rebuild flag). engram/src/server.el's 3-way conflicts (autoconnect_on/ise_offgraph_on env flags, /api/nodes connected-count in responses) were pure additive: dev's side was empty, PR's side added the feature. Took PR's side whole. VERIFIED (nsbx sandbox only, live :8742/:7770 never touched): - cc -std=c11 -O2, clean link against the real engram/src/server.el via elc, zero errors. - vindex_bench (built standalone, read-only harvest) against the real production store clone (13,671 embedded nodes, 768-dim nomic-embed-text): recall@10 = 1.0000 at ef 64/128/200; HNSW search 0.28-0.79ms/query vs 2.03ms/query brute-force oracle (2.6x-7.2x). HNSW build itself: 46.5s for the full 13,671-node set -- see the flagged risk below. - Booted the reconciled binary in an isolated nsbx sandbox (:8905, cloned snapshot of the live store, 13,424 nodes / 37,656 edges) and called /api/activate for real: first call after boot 41.5s (pays the one-time HNSW build inline -- matches the standalone bench), second/third calls 356ms/605ms, no crash, correct results, act-stats JSON (including the restored evict_floor/cap/bll fields) reads correctly. KNOWN RISK TO FLAG BEFORE ANY LIVE CUTOVER (not fixed here; out of scope for this dev-only land per instructions not to touch :8742/:7770): eg_vindex_sync builds the HNSW index synchronously, inline, on the first engram_activate() call after every process start (or index invalidation). On the real node count that is a ~46s blocking stall on a single-threaded server -- the first request after every restart (or its concurrent siblings) waits the full build. Recommend a background/incremental build (or a bounded per-call build budget) before this ever reaches the live daemon. See PR description / final report for the fuller writeup.
80 lines
3.5 KiB
C
80 lines
3.5 KiB
C
/* test_interoception_p0_emb.c — M-INTEROCEPTION Priority 0.
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*
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* Verifies the new READ-ONLY builtin engram_scan_nodes_emb_json(limit,offset):
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* - every emitted node carries emb_dim and an emb JSON array of that length,
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* - nodes without an embedding emit emb_dim:0 / emb:[],
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* - pagination (limit/offset) is honoured,
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* - the count matches engram_node_count,
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* - the EXISTING engram_scan_nodes_json path is byte-unchanged (no emb field),
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* i.e. the addition is purely additive / behavior-neutral.
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*
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* Pure-C harness (no elc). We craft a snapshot with real emb vectors, load it
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* (engram_load parses "emb" comma-lists into node->emb via eg_parse_emb), then
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* dump via both scan paths. Assertions live in run_interoception_p0.sh.
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*/
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#include "el_runtime.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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static el_val_t S(const char* s){ return EL_STR(s); }
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/* 16-d embedding as a comma list (>=8 required by eg_parse_emb). */
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static void emb_list(char* out, size_t cap, int dim, double base){
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size_t o = 0;
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for (int i = 0; i < dim; i++){
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o += snprintf(out+o, cap-o, "%s%.4f", i?",":"", base + 0.01*i);
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}
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}
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int main(int argc, char** argv){
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if (argc < 2){ fprintf(stderr, "usage: %s <dir>\n", argv[0]); return 2; }
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const char* dir = argv[1];
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char snap[1024]; snprintf(snap, sizeof snap, "%s/seed.json", dir);
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char e1[512], e2[512];
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emb_list(e1, sizeof e1, 16, 0.10);
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emb_list(e2, sizeof e2, 16, 0.50);
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/* Two embedded nodes (distinct salience → deterministic sort order) and one
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* un-embedded node. */
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FILE* f = fopen(snap, "w");
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if (!f){ perror("fopen"); return 2; }
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fprintf(f,
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"{\"nodes\":["
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"{\"id\":\"n-high\",\"content\":\"high salience embedded\",\"node_type\":\"Concept\","
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"\"label\":\"emb-high\",\"tier\":\"Semantic\",\"salience\":0.9,\"importance\":0.8,"
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"\"confidence\":1.0,\"created_at\":1000,\"emb\":\"%s\"},"
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"{\"id\":\"n-mid\",\"content\":\"mid salience embedded\",\"node_type\":\"Concept\","
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"\"label\":\"emb-mid\",\"tier\":\"Semantic\",\"salience\":0.5,\"importance\":0.5,"
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"\"confidence\":1.0,\"created_at\":2000,\"emb\":\"%s\"},"
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"{\"id\":\"n-low\",\"content\":\"low salience no embedding\",\"node_type\":\"Fact\","
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"\"label\":\"noemb-low\",\"tier\":\"Semantic\",\"salience\":0.1,\"importance\":0.2,"
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"\"confidence\":1.0,\"created_at\":3000}"
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"],\"edges\":[]}", e1, e2);
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fclose(f);
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if (!engram_load(S(snap))){ fprintf(stderr, "load failed\n"); return 2; }
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long long nc = (long long)(int64_t)engram_node_count();
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printf("node_count=%lld\n", nc);
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/* full page */
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el_val_t all = engram_scan_nodes_emb_json((el_val_t)256, (el_val_t)0);
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char p[1024];
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snprintf(p, sizeof p, "%s/emb_all.json", dir);
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f = fopen(p, "w"); fputs(EL_CSTR(all), f); fclose(f);
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/* pagination: one node at offset 0 and one at offset 1 */
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el_val_t pg0 = engram_scan_nodes_emb_json((el_val_t)1, (el_val_t)0);
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el_val_t pg1 = engram_scan_nodes_emb_json((el_val_t)1, (el_val_t)1);
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snprintf(p, sizeof p, "%s/emb_pg0.json", dir); f = fopen(p, "w"); fputs(EL_CSTR(pg0), f); fclose(f);
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snprintf(p, sizeof p, "%s/emb_pg1.json", dir); f = fopen(p, "w"); fputs(EL_CSTR(pg1), f); fclose(f);
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/* existing path — must be unchanged / carry NO emb */
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el_val_t plain = engram_scan_nodes_json((el_val_t)256, (el_val_t)0);
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snprintf(p, sizeof p, "%s/plain.json", dir); f = fopen(p, "w"); fputs(EL_CSTR(plain), f); fclose(f);
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printf("wrote dumps to %s\n", dir);
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return 0;
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}
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