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clawmem

ClawMem operational reference for agents at query time — the 3-rule escalation gate, MCP tool routing, the 4 query-optimization levers, pipeline behavior (query vs intent_search), composite scoring, and memory lifecycle (pin/snooze/forget). Use when tuning retrieval, troubleshooting recall quality, or any ClawMem operation beyond the routing already in your global CLAUDE.md / this repo's AGENTS.md. NOT for setup — install / inference-server config / env vars / systemd / indexing config / internals live in AGENTS.md + docs/.

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name clawmem description ClawMem operational reference for agents at query time — the 3-rule escalation gate, MCP tool routing, the 4 query-optimization levers, pipeline behavior (query vs intent_search), composite scoring, and memory lifecycle (pin/snooze/forget). Use when tuning retrieval, troubleshooting recall quality, or any ClawMem operation beyond the routing already in your global CLAUDE.md / this repo's AGENTS.md. NOT for setup — install / inference-server config / env vars / systemd / indexing config / internals live in AGENTS.md + docs/. allowed-tools mcp__clawmem__* metadata {"author":"yoloshii","version":"2.0.0"} ClawMem Operational Reference Scope: agent-time operations only — escalation, tool routing, query tuning, pipeline reasoning, composite scoring, lifecycle. Setup, inference-server config, env vars, systemd units, indexing/collection config, graph internals, and the OpenClaw/Hermes plugins are deliberately not here — they live in this repo's AGENTS.md + docs/ (e.g. docs/guides/inference-services.md , docs/reference/configuration.md , docs/troubleshooting.md , docs/internals/ ). Kept out to avoid drift between this skill and the package. Routine memory needs neither this skill nor manual MCP calls — hooks + the ClawMem routing already in AGENTS.md / your global CLAUDE.md handle ~90%. Reach for this skill (and Tier-3 tools) only when that isn't enough. Architecture (one-liner) Two tiers: hooks = automatic context flow (surfacing, extraction, compaction survival); MCP tools = explicit recall / write / lifecycle. Substrate: QMD retrieval (BM25 + vector + RRF + cross-encoder rerank + query expansion), with SAME (composite scoring), MAGMA (intent + graph), and A-MEM (self-evolving notes) layered on top. Do not call standalone QMD tools. Tier 2 — Automatic retrieval (hooks) Hooks handle ~90% of retrieval at zero agent effort. Hook Trigger Does context-surfacing UserPromptSubmit retrieval gate → profile-driven hybrid search → FTS supplement → file-aware search → snooze/noise filters → spreading activation → memory-type diversification → tiered injection → <vault-context> (+ optional <vault-facts> / <vault-routing> ). Budget/results/timeout/threshold driven by CLAWMEM_PROFILE . postcompact-inject SessionStart (compact) re-injects authoritative state after compaction → <vault-postcompact> curator-nudge SessionStart surfaces curator actions; nudges when the report is stale precompact-extract PreCompact extracts decisions / file paths / open questions before compaction decision-extractor Stop LLM → observations + causal links + contradiction detection + SPO triples handoff-generator Stop LLM session summary → handoffs feedback-loop Stop tracks referenced notes → confidence boosts, co-activations, utility signals Default behavior: read injected <vault-context> first; if sufficient, answer immediately. Hook blind spots (by design): hooks filter _clawmem/ artifacts, enforce score thresholds, and cap token budget — absence in <vault-context> does NOT mean absence in memory. If expected memory wasn't surfaced, escalate to Tier 3. Note the MCP retrieval tools themselves exclude _clawmem by default since v0.21.0 — pass includeInternal: true when system-internal memory (observations/handoffs/deductions) is the target. Profiles: speed / balanced (default) / deep set the kept-score ratio (65% / 55% / 45%) and an activation floor. Only deep adds query expansion + reranking to the hook path. Profile and the hook timeout are set in ~/.claude/settings.json — see Operational gotchas for timeout tuning. Tier 3 — Agent-initiated retrieval (MCP tools) 3-rule escalation gate Escalate to MCP tools ONLY when one of these fires: Low-specificity injection — <vault-context> is empty or lacks the specific fact the task requires. Cross-session question — "why did we decide X", "what changed since last time", "when did we start Y". Pre-irreversible check — about to make a destructive / hard-to-reverse change; check the vault for prior decisions first. All other retrieval is handled by Tier 2 hooks. Do NOT call MCP tools speculatively. Tool routing PREFERRED: memory_retrieve(query) — auto-classifies and routes to the optimal backend (query / intent_search / session_log / find_similar / query_plan). Use this instead of manually choosing. 1a. General recall -> query(query, compact=true, limit=20) Full hybrid: BM25 + vector + expansion + deep rerank. Supports compact, collection, intent, candidateLimit. BM25 strong-signal bypass skips expansion when top hit >= 0.85 with gap >= 0.15 (disabled when intent is provided). 1b. Causal/why/when/entity -> intent_search(query, enable_graph_traversal=true) MAGMA intent classification + intent-weighted RRF + multi-hop graph traversal + a bounded one-hop causal step in BOTH directions (v0.32.0 — the only backward cause→effect reach). Use DIRECTLY (not as a fallback) for "why" / "when" / "how did X lead to Y" / entity links. Override: force_intent="WHY"|"WHEN"|"ENTITY"|"WHAT". (1a vs 1b are parallel options, chosen by query type — not sequential. memory_retrieve's causal mode runs the SAME shared pipeline since v0.32.0, default-filtered plus a WHY observation lane, so auto-routing is no longer weaker than calling intent_search directly; one-hop hits carry causal: [{anchorDocid, direction}].) 1c. Multi-topic -> query_plan(query, compact=true) Decomposes into 2-4 typed clauses (bm25/vector/graph), runs them in parallel, merges via RRF. 2. Progressive disclosure -> multi_get("path1,path2") for full content of top hits 3. Spot checks -> search(query) (BM25, 0 GPU) or vsearch(query) (vector, 1 GPU) 4. Chain tracing -> find_causal_links(docid, direction="both", depth=5) 5. Entity facts -> kg_query(entity) (SPO triples; different from intent_search's reasoning chains) 6. Temporal context -> timeline(docid, before=5, after=5) 7. Ranking diagnosis -> memory_rank(query) ("why did X outrank Y": per-factor composite breakdown + raw-vs-composite rank shifts; diagnostic, not retrieval) All MCP tools Tool Purpose memory_retrieve Preferred. Auto-classifies + routes. Use instead of choosing manually. query Full hybrid (BM25 + vector + rerank). General-purpose. WRONG for "why" (→ intent_search ) or cross-session (→ session_log ). intent_search "why did we decide X" / "what caused Y" / "who worked on Z". Classifies intent, traverses graph edges — returns decision chains query can't find. query_plan Multi-topic queries ("X and also Y", "compare A with B"). Splits + routes each clause. search BM25 keyword — exact terms, config names, error codes. Fast, 0 GPU. vsearch Vector semantic — conceptual/fuzzy when vocabulary unknown. ~100ms, 1 GPU. get / multi_get Single doc by path/ #docid / multiple by glob or comma-list. find_similar "what else relates to X" — k-NN vector neighbors beyond keyword overlap. find_causal_links Trace decision chains ("what led to X") over observation docs. kg_query Entity SPO triples with temporal validity + per-fact evidence ( evidenceCount , up to 5 sources; v0.32.0). Entity facts, NOT causal "why" (use intent_search ). session_log "last time" / "yesterday" / "what did we do". Do NOT use query for cross-session. profile User profile (static facts + dynamic context). memory_pin Lifecycle retention + priority among relevance-equivalent results (+0.3 composite boost on composite surfaces; exact-tie precedence on raw routes — vector + search non-recency). Use PROACTIVELY for constraints, architecture decisions, corrections. memory_snooze Use PROACTIVELY when <vault-context> surfaces noise — snooze 30 days. memory_forget Deactivate a memory by closest match. Sparingly — prefer snooze. Weak matches return a disambiguation list instead of acting (v0.23.0). build_graphs Temporal backbone + semantic graph after bulk ingestion. NOT after every reindex. Reports N new edge(s), M total — 0 new on a rebuild is correct, not an empty graph. timeline Temporal neighborhood around a doc. Progressive disclosure: search → timeline → get. memory_evolution_status How a doc's A-MEM metadata evolved over time. lifecycle_status / lifecycle_sweep / lifecycle_restore Lifecycle stats / archive stale (dry-run default, archives only — ClawMem never deletes rows) / restore auto-archived. index_stats / status / reindex Doc counts + embedding coverage / quick health / force re-index (does NOT embed). memory_stats Lifecycle + ranking-metadata aggregates per collection: origin×active cross-tabs, pinned, accrual, access/confidence/quality/effective-age distributions. Deeper than index_stats . memory_rank "Why did X outrank Y" — real-pipeline composite breakdown (weights, multipliers, signed pinΔ, co-activation) + raw-vs-composite rank shifts. Diagnostic, not retrieval. beads_sync / vault_sync / list_vaults Beads issues from Dolt / index a dir into a named vault / list vaults. Multi-vault: all tools accept an optional vault param (omit for single-vault mode). Progressive disclosure: ALWAYS compact=true first → review snippets/scores → get / multi_get for full content. Query optimization (4 levers) The pipeline autonomously generates lex/vec/hyde variants, fuses BM25 + vector via RRF, and reranks with a cross-encoder — you do NOT choose search types. Your levers are tool selection, query string quality, intent, and candidateLimit. Lever 1 — Tool selection (highest impact) Pick the lightest tool that satisfies the need: Tool Cost When search(q, compact=true) BM25 only, 0 GPU Know exact terms, spot-check vsearch(q, compact=true) Vector only, 1 GPU Conceptual/fuzzy, vocabulary unknown query(q, compact=true) Full hybrid, 3+ GPU General recall, need best results intent_search(q) Hybrid + graph Why/entity chains, when queries query_plan(q, compact=true) Hybrid + decomposition Complex multi-topic Lever 2 — Query string quality The query string feeds BM25 (probes first, can short-circuit the pipeline) and anchors the 2×-weighted original signal in RRF — the single biggest determinant of result quality. Keyword recall (BM25): 2–5 precise terms, no filler. Code identifiers work ( handleError async ). BM25 ANDs all terms as prefix matches ( perf matches "performance") — no phrase search or negation. A strong hit (≥ 0.85, gap ≥ 0.15) skips expansion. Semantic recall (vector): full natural-language question, be specific — "in the payment service, how are refunds processed" > "refunds" . Do NOT write hypothetical-answer-style queries — the expansion LLM already generates hyde variants; a long hypothetical dilutes BM25 and duplicates the pipeline. Lever 3 — Intent (disambiguation) Steers 5 autonomous stages (expansion, reranking, chunk selection, snippet extraction, strong-signal bypass). query("performance", intent="web page load times and Core Web Vitals") . Provide when: the term is polysemous in the vault, or the domain is known but the query alone is ambiguous. Skip when: the query is already specific, single-domain vault, or using search / vsearch (intent only affects query ). Intent disables the BM25 strong-signal bypass (forces full expansion+rerank) — correct, since intent signals ambiguity. Lever 4 — candidateLimit How many RRF candidates reach the cross-encoder reranker (default 30). Lower ( 15 ) for high-confidence/speed/small-vault; higher ( 50 ) for broad topics/large vault/recall-over-speed. Pipeline behavior query (default Tier 3 workhorse) Query + optional intent -> Temporal extraction (date ranges from "last week"/"March 2026") -> BM25 probe -> strong-signal check (skip expansion if top >= 0.85, gap >= 0.15; off when intent given) -> Query expansion (LLM text variants; intent steers the prompt) -> Parallel typed legs: BM25(orig) + Vector(orig) + BM25(lex exp) + Vector(vec/hyde exp) [+ temporal/entity if signalled] -> RRF (k=60; original lists get 2x positional weight, expanded 1x; top candidateLimit) -> Intent-aware chunk selection -> cross-encoder rerank (4000-char ctx; chunk dedup) -> rerank/RRF blend (0.9 reranker + 0.1 RRF tiebreaker; falls back to RRF if reranker down) -> composite scoring -> MMR diversity (Jaccard bigram > 0.6 demoted, not removed) intent_search (specialist for causal chains) Query -> intent classification (WHY/WHEN/ENTITY/WHAT) -> BM25 + Vector (intent-weighted RRF: BM25 for WHEN, vector for WHY) -> Graph traversal (WHY/ENTITY; multi-hop over memory_relations; outbound all edge types, inbound semantic+entity) -> cross-encoder rerank (200-char ctx) -> composite scoring MPFP fusion is max-score, NOT RRF. The graph stage runs meta-path patterns ( [semantic,causal] , [entity,temporal] , …) via Forward Push (α=0.15) and fuses by max-score ("best supporting path wins"), because propagation magnitude carries signal. This is distinct from the outer retrieval, which DOES fuse BM25+vector via RRF — two layers, two fusion rules, by design. Key differences Aspect query intent_search Query expansion Yes (skipped on strong BM25) No Intent intent param steers 5 stages Auto-detected (WHY/WHEN/ENTITY/WHAT) Rerank context 4000 chars/doc 200 chars/doc Graph traversal No Yes (WHY/ENTITY, multi-hop) MMR diversity Yes No compact / collection / candidateLimit Yes No Best for most queries, progressive disclosure causal chains across docs force_intent: WHY ("why", "what led to", "rationale", "tradeoff") · ENTITY (named component/person/service needing cross-doc linkage) · WHEN (timelines, first/last, "when did this change") — for WHEN start with enable_graph_traversal=false , fall back to query() if recall drifts. Composite scoring (how ranking works)
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