Closes #000008 with status `closed · landed in4f2b5a6` per the docs/TICKETS.md convention. The preflight guard mechanism + bench cycle + default flip all shipped 2026-05-03; the design log stays in place. Opens #000009 — Quantifier preflight run-DAG node binding. Splits the Phase 5 follow-up out of #000008 §11.11 into its own ticket. Scope: bind the classifier output + policy decision into `run_dag_root` so audit replay can distinguish guard-on vs guard-off, cap-applied vs not, reminder-injected vs skipped. Currently those appear on the result dict but are NOT in the run-DAG hash. Required to close the audit-replay gap that blocks the §9.5 Merkle-AGI-DAG framing from fully holding. Estimated 3-4h. Awaiting go/no-go. Makefile shortcuts for the #000008 CLI flags (operator ergonomics): BROAD=1 → --apply-quantifier-caps (flip cap apply-gate) REJECT_BROAD=1 → --reject-broad (preflight rejection) ALLOW_BROAD=1 → --allow-broad (emergent search) Available on both `make query` and `make query-dry`. Default behavior unchanged: ANSWER_MODE=claim_lattice (JSON), reminder ON for lattice modes, cap operator-opt-in. Smoke-tested: $ make query-dry Q="winners of all major sports?" BROAD=1 → cap applies on JSON; classifier reports ALL/unbounded $ make query-dry Q="winners of all major sports?" REJECT_BROAD=1 → preflight rejection, exit-1 (consistent with UNGROUNDED) TICKETS.md index: #000008 closed · landed in `4f2b5a6` #000009 open · awaiting go/no-go (D3, D4) Next ID bumped 000009 → 000010
518 lines
25 KiB
Makefile
518 lines
25 KiB
Makefile
# aborist — Makefile entry points
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# Every workflow lives behind a `make` target. Bare python commands are not
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# the user interface.
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# Tools and config
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PYTHON ?= python3
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VENV ?= .venv
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PIP := $(VENV)/bin/pip
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PY := $(VENV)/bin/python
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ABORIST := $(VENV)/bin/aborist
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# Data + DB
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DATA_DIR ?= data
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WP_BASE_URL ?= https://dumps.wikimedia.org/archive/2003/2003-05-16/en
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WP_CUR := $(DATA_DIR)/20030516_cur_tablesql.bz2
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WP_OLD_1 := $(DATA_DIR)/old_tablesqlbz2.1
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WP_OLD_2 := $(DATA_DIR)/old_tablesqlbz2.2
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WP_OLD := $(DATA_DIR)/20030516_old_tablesql.bz2
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# Back-compat alias (older callers used WP_DUMP for the cur snapshot).
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WP_DUMP := $(WP_CUR)
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DB ?= $(HOME)/.aborist/aborist.db
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# Smoke-test caps so make all stays fast
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INGEST_LIMIT ?= 500
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VERIFY_N ?= 10
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SEARCH_Q ?= computer
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.PHONY: all bootstrap fetch fetch-cur fetch-old fetch-xml fetch-abstract \
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ingest ingest-cur ingest-old ingest-xml ingest-xml-history \
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ingest-xml-attached ingest-abstract \
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ingest-grok ingest-grok-media \
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ingest-self ingest-self-providence ingest-git ingest-hg \
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verify search stats test test-live docs chain-check chain-check-shards \
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falsify burn burn-kindergarten inspect bootstrap-crawler test-crawler crawl-ingest \
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recrawl-check bench-qa clean clean-db clean-data help
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all: bootstrap fetch-cur ingest-cur verify stats ## bootstrap → fetch cur → ingest cur → verify → stats
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help: ## show this help
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@awk 'BEGIN{FS=":.*##"} /^[a-zA-Z0-9_-]+:.*##/{printf " %-16s %s\n", $$1, $$2}' $(MAKEFILE_LIST)
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$(VENV)/bin/activate: pyproject.toml
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$(PYTHON) -m venv $(VENV)
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$(PIP) install --upgrade pip wheel
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$(PIP) install -e '.[dev]'
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@touch $(VENV)/bin/activate
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bootstrap: $(VENV)/bin/activate ## create venv and install editable package
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$(DATA_DIR):
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mkdir -p $(DATA_DIR)
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$(WP_CUR): | $(DATA_DIR)
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@echo ">> fetching $(WP_BASE_URL)/$$(basename $@)"
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curl -fL --retry 3 -o $@ "$(WP_BASE_URL)/$$(basename $@)"
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$(WP_OLD_1): | $(DATA_DIR)
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@echo ">> fetching $(WP_BASE_URL)/$$(basename $@)"
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curl -fL --retry 3 -o $@ "$(WP_BASE_URL)/$$(basename $@)"
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$(WP_OLD_2): | $(DATA_DIR)
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@echo ">> fetching $(WP_BASE_URL)/$$(basename $@)"
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curl -fL --retry 3 -o $@ "$(WP_BASE_URL)/$$(basename $@)"
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# The two old_tablesqlbz2.{1,2} parts are split halves of a single bzip2
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# stream (.1 is exactly 640 MiB). Concatenate to get a working bz2 file.
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$(WP_OLD): $(WP_OLD_1) $(WP_OLD_2)
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@echo ">> concatenating old dump parts"
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cat $(WP_OLD_1) $(WP_OLD_2) > $@
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fetch-cur: $(WP_CUR) ## download cur table dump (~82 MB)
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fetch-old: $(WP_OLD) ## download old (revision history) parts and concatenate (~893 MB)
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fetch: fetch-cur fetch-old ## download all 3 files (cur + old.1 + old.2 + concat)
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ingest-cur: bootstrap fetch-cur ## ingest INGEST_LIMIT cur articles
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$(ABORIST) --db $(DB) ingest --source wikipedia_cur --path $(WP_CUR) --limit $(INGEST_LIMIT)
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ingest-old: bootstrap fetch-old ## ingest INGEST_LIMIT old (history) revisions
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$(ABORIST) --db $(DB) ingest --source wikipedia_old --path $(WP_OLD) --limit $(INGEST_LIMIT)
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# Phase 1b: parallel shards into ONE shared SQLite. Workers parallelize
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# parser CPU; writes serialize at the WAL writer-lock. ~1.3x wall on 4 cores.
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SHARDS ?= 4
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ingest-cur-parallel: bootstrap fetch-cur ## ingest cur with SHARDS=N processes -> one shared DB
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@for i in $$(seq 0 $$(($(SHARDS) - 1))); do \
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$(ABORIST) --db $(DB) ingest --source wikipedia_cur --path $(WP_CUR) \
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--shard $$i/$(SHARDS) & \
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done; wait
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ingest-old-parallel: bootstrap fetch-old ## ingest old history with SHARDS=N processes -> one shared DB
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@for i in $$(seq 0 $$(($(SHARDS) - 1))); do \
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$(ABORIST) --db $(DB) ingest --source wikipedia_old --path $(WP_OLD) \
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--shard $$i/$(SHARDS) & \
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done; wait
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# Phase 2: attach-forever sharding. Each shard owns its own SQLite file —
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# no WAL contention. Reads via `aborist --shards-dir <dir> <cmd>` attach
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# all shards as UNION views. "Merge cost" = 0.
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SHARDS_DIR ?= $(HOME)/.aborist/shards
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ingest-cur-attached: bootstrap fetch-cur ## sharded ingest, no WAL contention (Phase 2)
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@mkdir -p $(SHARDS_DIR)
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@for i in $$(seq 0 $$(($(SHARDS) - 1))); do \
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$(ABORIST) ingest --source wikipedia_cur --path $(WP_CUR) \
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--shards-dir $(SHARDS_DIR) --shard $$i/$(SHARDS) & \
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done; wait
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ingest-old-attached: bootstrap fetch-old ## sharded ingest of old history (Phase 2)
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@mkdir -p $(SHARDS_DIR)
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@for i in $$(seq 0 $$(($(SHARDS) - 1))); do \
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$(ABORIST) ingest --source wikipedia_old --path $(WP_OLD) \
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--shards-dir $(SHARDS_DIR) --shard $$i/$(SHARDS) & \
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done; wait
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stats-shards: bootstrap ## cross-shard stats via UNION views over $(SHARDS_DIR)
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$(ABORIST) --shards-dir $(SHARDS_DIR) stats
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ACTIVITY_LIMIT ?= 10
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activity: bootstrap ## recent Q&A + freshly cached docs (agent timeline)
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$(ABORIST) --shards-dir $(SHARDS_DIR) activity --limit $(ACTIVITY_LIMIT)
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inspect: bootstrap ## sidecar diagnose unverified spans for a cache_key: make inspect KEY=hex [JSON=1]
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@if [ -z "$(KEY)" ]; then echo "usage: make inspect KEY=<cache_key> [JSON=1]" >&2; exit 2; fi
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$(ABORIST) --shards-dir $(SHARDS_DIR) inspect --cache-key $(KEY) $(if $(JSON),--json,)
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falsify: bootstrap ## mark a cached answer wrong: make falsify KEY=hex REASON='why'
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@if [ -z "$(KEY)" ]; then echo "usage: make falsify KEY=<cache_key> REASON='why'" >&2; exit 2; fi
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$(ABORIST) --shards-dir $(SHARDS_DIR) providence --falsify $(KEY) --reason "$(REASON)"
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burn: bootstrap ## delete a leaf with no children. providence: KEY=<cache_key>; document/core: KIND=document|core ROOT=<hex>. REASON='why' [FORCE=1]
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@kind="$${KIND:-providence}"; \
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if [ "$$kind" = "providence" ]; then \
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if [ -z "$(KEY)" ]; then echo "usage: make burn KEY=<cache_key> REASON='why' [FORCE=1]" >&2; exit 2; fi; \
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$(ABORIST) --shards-dir $(SHARDS_DIR) burn --kind providence --cache-key $(KEY) --reason "$(REASON)" $(if $(FORCE),--force,); \
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elif [ "$$kind" = "document" ] || [ "$$kind" = "core" ]; then \
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if [ -z "$(ROOT)" ]; then echo "usage: make burn KIND=$$kind ROOT=<document_root> REASON='why' [FORCE=1]" >&2; exit 2; fi; \
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$(ABORIST) --shards-dir $(SHARDS_DIR) burn --kind $$kind --root $(ROOT) --reason "$(REASON)" $(if $(FORCE),--force,); \
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else \
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echo "unknown KIND: $$kind (expected: providence|document|core)" >&2; exit 2; \
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fi
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# Mass-burn providence_cache rows younger than the kindergarten window.
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# Mirrors mesh sync's kindergarten so what's still un-broadcast is what's
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# safe to bust without confusing peers. Useful while iterating on
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# retrieval/verifier tunings — wipe recent test runs in one shot.
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KG_SECONDS ?= 3600
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burn-kindergarten: bootstrap ## bust providence rows < SECONDS old [SECONDS=3600 FORCE=1 DRY_RUN=1 REASON='why']
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$(ABORIST) --shards-dir $(SHARDS_DIR) burn-kindergarten \
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--kindergarten-seconds $(KG_SECONDS) \
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$(if $(REASON),--reason "$(REASON)",) \
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$(if $(FORCE),--force,) \
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$(if $(DRY_RUN),--dry-run,)
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# Multi-source RAG query against the shard cluster.
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# Usage: make query Q="What is anarcho-capitalism?"
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QUERY_TOP_K ?= 8
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# G0 / CTI — pointer-mode is the testing default. Library DEFAULT_POLICY
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# stays "quote" so Python callers aren't surprised; the Makefile
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# harness ships pointer-mode-on so `make query` exercises the new path
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# end-to-end. ANSWER_MODE default flipped to claim_lattice (JSON) on
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# 2026-04-30 after the post-retry bench showed it leading on
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# strict-rate (50%) and grounded count (54) with 0 errors. Override
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# with ANSWER_MODE=claim_lattice_pointer for prose-distribution path
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# (Hermes-3 8B reflexive output without grammar guidance), or
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# ANSWER_MODE=quote for the legacy substring verifier. ANSWER_MODE=
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# (empty) defers to DEFAULT_QUERY_POLICY.
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ANSWER_MODE ?= claim_lattice
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# BROAD=1 → flip on the Ticket #000008 quantifier-cap apply-gate for
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# this call. Default-off per §10.11.3 dry-run discipline; operator
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# opts in here for broad-quantifier shapes (winners-of-all,
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# tell-me-everything-about-X). Pairs cleanly with the broad-
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# quantifier reminder which is default-on for lattice modes.
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# Bench (#000008 §12.10): cap-on JSON wins +14pp on STRICT-rate.
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# REJECT_BROAD=1 → strict reject for ALL/COMPREHENSIVE/OPEN_REQUEST
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# unbounded shapes; returns UNGROUNDED before the LLM call.
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# ALLOW_BROAD=1 → emergent search; classifier on, caps off.
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query: bootstrap ## ask the corpus a question [JSON=1 BURN=1 REPAIR=1 REPROMPTS=N K="extra retrieval keywords" ANSWER_MODE=claim_lattice|claim_lattice_pointer|quote BROAD=1 REJECT_BROAD=1 ALLOW_BROAD=1]; JSON by default
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@if [ -z "$$Q" ] && [ -z "$(Q)" ]; then \
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echo "usage: make query Q=\"your question\" [JSON=1 BURN=1 REPAIR=1 REPROMPTS=N K=\"extra retrieval keywords\" ANSWER_MODE=claim_lattice|claim_lattice_pointer|quote BROAD=1 REJECT_BROAD=1 ALLOW_BROAD=1]"; exit 2; \
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fi
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$(ABORIST) --shards-dir $(SHARDS_DIR) query --top-k $(QUERY_TOP_K) $(if $(JSON),--json,) $(if $(BURN),--burn,) $(if $(REPAIR),--repair,) $(if $(REPROMPTS),--repair-reprompts $(REPROMPTS),) $(if $(ANSWER_MODE),--answer-mode $(ANSWER_MODE),) $(if $(K),--retrieval-keywords "$(K)",) $(if $(BROAD),--apply-quantifier-caps,) $(if $(REJECT_BROAD),--reject-broad,) $(if $(ALLOW_BROAD),--allow-broad,) "$(Q)"
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query-dry: bootstrap ## like 'make query' but skip the LLM call (dry-run) [JSON=1 BURN=1 ANSWER_MODE=... BROAD=1 REJECT_BROAD=1 ALLOW_BROAD=1]
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@if [ -z "$$Q" ] && [ -z "$(Q)" ]; then \
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echo "usage: make query-dry Q=\"your question\" [JSON=1 BURN=1 ANSWER_MODE=claim_lattice|claim_lattice_pointer|quote BROAD=1 REJECT_BROAD=1 ALLOW_BROAD=1]"; exit 2; \
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fi
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$(ABORIST) --shards-dir $(SHARDS_DIR) query --top-k $(QUERY_TOP_K) --dry-run $(if $(JSON),--json,) $(if $(BURN),--burn,) $(if $(ANSWER_MODE),--answer-mode $(ANSWER_MODE),) $(if $(BROAD),--apply-quantifier-caps,) $(if $(REJECT_BROAD),--reject-broad,) $(if $(ALLOW_BROAD),--allow-broad,) "$(Q)"
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BENCH_QA_QUESTIONS ?= bench/qa_questions.txt
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BENCH_QA_OUT ?= bench/qa_results
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BENCH_QA_MODES ?= quote,claim_lattice_pointer,claim_lattice
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BENCH_QA_LIMIT ?= 0
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BENCH_QA_N ?= 3
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BENCH_QA_CONCURRENCY ?= 4
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bench-qa: bootstrap ## QA-quality sweep: questions × modes × N samples [BENCH_QA_N=3 BENCH_QA_LIMIT=N BENCH_QA_MODES=... BENCH_QA_CONCURRENCY=4]
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PYTHONUNBUFFERED=1 $(PY) bench/qa_sweep.py \
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--questions $(BENCH_QA_QUESTIONS) \
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--shards-dir $(SHARDS_DIR) \
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--out-dir $(BENCH_QA_OUT) \
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--top-k $(QUERY_TOP_K) \
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--modes $(BENCH_QA_MODES) \
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--limit $(BENCH_QA_LIMIT) \
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--n $(BENCH_QA_N) \
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--concurrency $(BENCH_QA_CONCURRENCY)
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# Smoke fixture: 5 questions, all anchor classes, all currently failing
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# pointer mode 100% while JSON aces 100%. Inner loop for prompt iteration.
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# ~30s wall-clock at concurrency=4. Use this between full sweeps.
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bench-qa-smoke: bootstrap ## quick 5-question smoke (all anchor classes; ~30s)
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PYTHONUNBUFFERED=1 $(PY) bench/qa_sweep.py \
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--questions bench/qa_questions_smoke.txt \
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--shards-dir $(SHARDS_DIR) \
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--out-dir $(BENCH_QA_OUT) \
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--top-k $(QUERY_TOP_K) \
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--modes $(BENCH_QA_MODES) \
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--n 1 \
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--concurrency $(BENCH_QA_CONCURRENCY)
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test-live: bootstrap ## live QA quality tests against Hermes (gated; -n auto parallel)
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ABORIST_LIVE_TESTS=1 ABORIST_LIVE_SHARDS_DIR=$(SHARDS_DIR) \
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.venv/bin/pytest tests/test_qa_quality_live.py -v -n auto
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# Concept-layer backfill targets. Each runs an extractor across every
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# wiki shard; per-shard work is independent so we use GNU-parallel-
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# style concurrency with `xargs -P` to overlap the slow paths
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# (link_reciprocity ~50s/shard, token_idf ~12s/shard, documents_fts
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# ~3s/shard). Total wall-clock with -P 4 vs serial:
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# serial: link 200s + idf 50s + fts 10s = 260s
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# parallel: link 50s + idf 12s + fts 3s ≈ 65s (~4× speedup)
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CONCEPTS_WORKERS ?= 4
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backfill-concepts: bootstrap ## backfill all concept extractors in parallel across shards
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PYTHONUNBUFFERED=1 $(PY) scripts/backfill_concepts.py \
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--shards-dir $(SHARDS_DIR) \
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--workers $(CONCEPTS_WORKERS)
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# Quick bench mode — 1 sample, smoke fixture, all 3 modes. ~10s.
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# For pure smoke after a code change before the longer bench-qa-smoke.
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# Emergent stress-test: random word triangulation. Pick 3 words from
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# /usr/share/dict/words, ask Hermes @ temp=0.8 to weave them into a
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# creative question, send to aborist, append the journey to
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# bench/emergent_log.jsonl. Designed for blue-moon cadence — surfaces
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# combinatoric failure modes the curated bench-qa fixture set can't.
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# Teacher review (Opus) runs separately via `--print-pending`; fox
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# brings entries here & gets back guidance to append to the log.
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EMERGENT_N ?= 10
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EMERGENT_SEED ?=
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bench-emergent: bootstrap ## blue-moon emergent stress test (3-word triangulation; N=10)
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PYTHONUNBUFFERED=1 $(PY) scripts/bench_emergent.py \
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--n $(EMERGENT_N) \
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$(if $(EMERGENT_SEED),--seed $(EMERGENT_SEED),) \
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--shards-dir $(SHARDS_DIR) \
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--qa-db $(SHARDS_DIR)/qa.db
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bench-emergent-pending: bootstrap ## print log entries awaiting teacher review
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$(PY) scripts/bench_emergent.py --print-pending
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bench-qa-quick: bootstrap ## fastest bench (1 sample × 5 questions × 3 modes; ~10s)
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PYTHONUNBUFFERED=1 $(PY) bench/qa_sweep.py \
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--questions bench/qa_questions_smoke.txt \
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--shards-dir $(SHARDS_DIR) \
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--out-dir $(BENCH_QA_OUT) \
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--top-k $(QUERY_TOP_K) \
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--modes $(BENCH_QA_MODES) \
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--n 1 \
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--concurrency $(BENCH_QA_CONCURRENCY)
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verify-shards: bootstrap ## cross-shard Merkle round-trip on a random sample
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$(ABORIST) --shards-dir $(SHARDS_DIR) verify -n $(VERIFY_N)
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analyze-shards: bootstrap ## cross-shard compression spectrum + audit integrity
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$(ABORIST) --shards-dir $(SHARDS_DIR) analyze
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# Audit-chain integrity probe: counts dangling prev_event_hash references.
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# Faster than `analyze` and trivially scriptable. 0 = chain intact.
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define CHAIN_CHECK_SQL
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SELECT COUNT(*) AS chain_breaks FROM audit_events a1
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LEFT JOIN audit_events a2 ON a2.event_hash = a1.prev_event_hash
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WHERE a1.prev_event_hash IS NOT NULL AND a2.event_hash IS NULL
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endef
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export CHAIN_CHECK_SQL
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chain-check: ## audit-chain break count for $(DB) (0 = intact)
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@printf '%s ' "$(DB)"; sqlite3 $(DB) "$$CHAIN_CHECK_SQL"
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chain-check-shards: ## audit-chain break count for every *.db in $(SHARDS_DIR)
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@for db in $(SHARDS_DIR)/*.db; do \
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printf '%s ' "$$db"; sqlite3 "$$db" "$$CHAIN_CHECK_SQL"; \
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done
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# Sequential per-shard distill (one process iterates all shards).
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distill-shards: bootstrap ## distill every shard in $(SHARDS_DIR), surface -> depth=1 cores
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$(ABORIST) --shards-dir $(SHARDS_DIR) distill --process first-sentence-v1 --kind surface
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# Parallel per-shard distill: one process per shard. No DB contention
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# because each shard is its own file.
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distill-shards-parallel: bootstrap ## one distill process per shard (parallel)
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@for shard in $(SHARDS_DIR)/*.db; do \
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$(ABORIST) --db $$shard distill --process first-sentence-v1 --kind surface & \
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done; wait
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# TF-IDF cores serve as enriched titles for retrieval — distinctive
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# low-frequency terms that surface in body text get promoted into
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# something queryable without a real title match.
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distill-shards-tfidf-parallel: bootstrap ## TF-IDF cores per shard, in parallel
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@for shard in $(SHARDS_DIR)/*.db; do \
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$(ABORIST) --db $$shard distill --process tfidf-keywords-v1 --kind surface & \
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done; wait
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ingest: ingest-cur ## default ingest = cur (use ingest-old or *-parallel for full)
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# Grok account-export ETL.
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# Point GROK_EXPORT at the directory xAI delivered (the one containing
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# `ttl/30d/export_data/<user-id>/prod-grok-backend.json`). The source class
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# auto-walks down to find the JSON.
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GROK_EXPORT ?= $(HOME)/Downloads/ab8ef1f0-0d08-4f87-89c2-d4509e18115b
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ingest-grok: bootstrap ## ingest Grok conversations into $(DB) (single-DB mode)
|
||
$(ABORIST) --db $(DB) ingest --source grok_export --path $(GROK_EXPORT)
|
||
|
||
ingest-grok-media: bootstrap ## ingest Grok media-generation prompts into $(DB)
|
||
$(ABORIST) --db $(DB) ingest --source grok_media --path $(GROK_EXPORT)
|
||
|
||
# Grok lives in its own shard inside the attach-forever cluster so cross-
|
||
# shard queries (`make query`) see it alongside the Wikipedia 2003 corpus.
|
||
# Single shard (rank 0/1) — Grok conversations are private and small.
|
||
GROK_SHARD := $(SHARDS_DIR)/grok.db
|
||
ingest-grok-attached: bootstrap ## ingest Grok conversations into $(GROK_SHARD)
|
||
@mkdir -p $(SHARDS_DIR)
|
||
$(ABORIST) --db $(GROK_SHARD) ingest --source grok_export --path $(GROK_EXPORT) --resume
|
||
|
||
ingest-grok-media-attached: bootstrap ## ingest Grok media prompts into $(GROK_SHARD)
|
||
@mkdir -p $(SHARDS_DIR)
|
||
$(ABORIST) --db $(GROK_SHARD) ingest --source grok_media --path $(GROK_EXPORT) --resume
|
||
|
||
# ----------------------------------------------------------------------------
|
||
# Phase IV (2006+) Wikipedia XML dumps. Drop-in for any dated snapshot in
|
||
# the dumps.wikimedia.org/archive tree by overriding WP_XML_YEAR/MONTH/DATE
|
||
# (and WP_XML_LANG for non-English wikis).
|
||
#
|
||
# Defaults point at enwiki 20101011 (2010-11 archive), the largest snapshot
|
||
# in the archive — 6.2 GB compressed, ~3.4M articles.
|
||
# Other useful snapshots:
|
||
# make fetch-xml WP_XML_YEAR=2006 WP_XML_MONTH=2006-07 WP_XML_DATE=20061104
|
||
# make fetch-xml WP_XML_YEAR=2006 WP_XML_MONTH=2006-12 WP_XML_DATE=20061130
|
||
# ----------------------------------------------------------------------------
|
||
WP_XML_LANG ?= en
|
||
WP_XML_YEAR ?= 2010
|
||
WP_XML_MONTH ?= 2010-11
|
||
WP_XML_DATE ?= 20101011
|
||
WP_XML_BASE_URL ?= https://dumps.wikimedia.org/archive/$(WP_XML_YEAR)/$(WP_XML_MONTH)/$(WP_XML_LANG)wiki/$(WP_XML_DATE)
|
||
WP_XML_FILE ?= $(WP_XML_LANG)wiki-$(WP_XML_DATE)-pages-articles.xml.bz2
|
||
WP_XML := $(DATA_DIR)/$(WP_XML_FILE)
|
||
WP_ABSTRACT_FILE ?= $(WP_XML_LANG)wiki-$(WP_XML_DATE)-abstract.xml
|
||
WP_ABSTRACT := $(DATA_DIR)/$(WP_ABSTRACT_FILE)
|
||
|
||
$(WP_XML): | $(DATA_DIR)
|
||
@echo ">> fetching $(WP_XML_BASE_URL)/$(WP_XML_FILE)"
|
||
curl -fL --retry 3 -o $@ "$(WP_XML_BASE_URL)/$(WP_XML_FILE)"
|
||
|
||
$(WP_ABSTRACT): | $(DATA_DIR)
|
||
@echo ">> fetching $(WP_XML_BASE_URL)/$(WP_ABSTRACT_FILE)"
|
||
curl -fL --retry 3 -o $@ "$(WP_XML_BASE_URL)/$(WP_ABSTRACT_FILE)"
|
||
|
||
fetch-xml: $(WP_XML) ## download Phase IV XML cur dump (default: enwiki 20101011, 6.2 GB)
|
||
|
||
fetch-abstract: $(WP_ABSTRACT) ## download Phase IV abstract.xml (default: enwiki 20101011, ~3 GB)
|
||
|
||
ingest-xml: bootstrap fetch-xml ## ingest INGEST_LIMIT pages from $(WP_XML)
|
||
$(ABORIST) --db $(DB) ingest --source wikipedia_xml --path $(WP_XML) --limit $(INGEST_LIMIT)
|
||
|
||
ingest-xml-history: bootstrap ## ingest every revision (multi-revision mode); set WP_XML to a pages-meta-history file
|
||
$(ABORIST) --db $(DB) ingest --source wikipedia_xml_history --path $(WP_XML) --limit $(INGEST_LIMIT)
|
||
|
||
# Sharded XML ingest into the attach-forever cluster — same pattern as
|
||
# ingest-cur-attached. One process per shard, one SQLite file per shard,
|
||
# zero WAL contention.
|
||
ingest-xml-attached: bootstrap fetch-xml ## sharded XML ingest, one process per shard
|
||
@mkdir -p $(SHARDS_DIR)
|
||
@for i in $$(seq 0 $$(($(SHARDS) - 1))); do \
|
||
$(ABORIST) ingest --source wikipedia_xml --path $(WP_XML) \
|
||
--shards-dir $(SHARDS_DIR) --shard $$i/$(SHARDS) & \
|
||
done; wait
|
||
|
||
ingest-abstract: bootstrap fetch-abstract ## ingest INGEST_LIMIT abstract docs from $(WP_ABSTRACT)
|
||
$(ABORIST) --db $(DB) ingest --source wikipedia_abstract --path $(WP_ABSTRACT) --limit $(INGEST_LIMIT)
|
||
|
||
# ----------------------------------------------------------------------------
|
||
# Self-ingest: aborist consults its own source code as a queryable corpus.
|
||
# Re-running picks up new commits — same path + new content gets a fresh
|
||
# document_root chained to the prior version via a `supersedes` edge, so the
|
||
# audit chain grows as the repo grows. Lands in a dedicated shard file so it
|
||
# doesn't compete with the wikipedia/grok shards' WAL writer lock.
|
||
#
|
||
# Override SELF_REPO to ingest a different repo's tree.
|
||
# ----------------------------------------------------------------------------
|
||
SELF_REPO ?= $(CURDIR)
|
||
SELF_SHARD := $(SHARDS_DIR)/aborist-self.db
|
||
|
||
ingest-self: bootstrap ## ingest this repo's HEAD into a dedicated shard
|
||
@mkdir -p $(SHARDS_DIR)
|
||
$(ABORIST) --db $(SELF_SHARD) ingest --source git_repo --path $(SELF_REPO)
|
||
|
||
# Self-reference: promote STRICT live providence records past the
|
||
# kindergarten window into each shard's documents table. Each shard
|
||
# self-promotes only its own records; cross-shard sharing happens
|
||
# via the existing shards-dir UNION at retrieval time. Run on a cron
|
||
# (e.g. hourly) to keep the substrate fresh.
|
||
# See docs/self-reference-thought-chains-design.md.
|
||
KG_SECONDS ?= 3600
|
||
ingest-self-providence: bootstrap ## promote STRICT live providence records into the document corpus [KG_SECONDS=3600]
|
||
@mkdir -p $(SHARDS_DIR)
|
||
@for db in $(SHARDS_DIR)/*.db; do \
|
||
echo ">> promoting providence records: $$db"; \
|
||
$(ABORIST) --db $$db ingest --source providence --kindergarten-seconds $(KG_SECONDS); \
|
||
done
|
||
|
||
# Generic git-repo ingest: aim it at any local clone via GIT_REPO=...
|
||
GIT_REPO ?= $(CURDIR)
|
||
GIT_SHARD := $(SHARDS_DIR)/$(notdir $(GIT_REPO))-git.db
|
||
ingest-git: bootstrap ## ingest GIT_REPO=<path> into its own shard
|
||
@mkdir -p $(SHARDS_DIR)
|
||
$(ABORIST) --db $(GIT_SHARD) ingest --source git_repo --path $(GIT_REPO)
|
||
|
||
# Generic hg-repo ingest. HG_REPO=<path>.
|
||
HG_REPO ?=
|
||
HG_SHARD := $(SHARDS_DIR)/$(notdir $(HG_REPO))-hg.db
|
||
ingest-hg: bootstrap ## ingest HG_REPO=<path> (mercurial) into its own shard
|
||
@if [ -z "$(HG_REPO)" ]; then echo "usage: make ingest-hg HG_REPO=/path/to/repo" >&2; exit 2; fi
|
||
@mkdir -p $(SHARDS_DIR)
|
||
$(ABORIST) --db $(HG_SHARD) ingest --source hg_repo --path $(HG_REPO)
|
||
|
||
verify: bootstrap ## round-trip Merkle proofs for VERIFY_N random documents
|
||
$(ABORIST) --db $(DB) verify -n $(VERIFY_N)
|
||
|
||
search: bootstrap ## keyword search; override SEARCH_Q (or pass Q=...)
|
||
$(ABORIST) --db $(DB) search '$(if $(Q),$(Q),$(SEARCH_Q))'
|
||
|
||
stats: bootstrap ## counts: documents, chunks, edges, audit chain
|
||
$(ABORIST) --db $(DB) stats
|
||
|
||
test: bootstrap ## run pytest suite (excludes opt-in crawler tests)
|
||
$(VENV)/bin/pytest -q --ignore=tests/crawler -n auto
|
||
|
||
# Crawler tests are off-by-default — they hit the network in many cases
|
||
# and require the heavy [crawler] extras (aiohttp, bs4, lxml, etc.).
|
||
# Bootstrap installs the extras into the existing venv idempotently.
|
||
bootstrap-crawler: bootstrap ## install [crawler] extras into the venv
|
||
$(PIP) install -e '.[crawler]'
|
||
|
||
test-crawler: bootstrap-crawler ## run only the lifted crawler tests
|
||
$(VENV)/bin/pytest -q tests/crawler
|
||
|
||
# Bridge target: BFS a seed URL, ingest discovered pages into a shard,
|
||
# capture ETag/Last-Modified for each so recrawl-check can do conditional
|
||
# HEAD requests later. URL is required; DEPTH and MAX have safe defaults.
|
||
CRAWL_DEPTH ?= 2
|
||
CRAWL_MAX ?= 0
|
||
# Per-domain shard so `make query` (which reads $(SHARDS_DIR)) sees the
|
||
# crawled content. Shard filename derived from the seed URL's hostname:
|
||
# https://russell.ballestrini.net -> $(SHARDS_DIR)/crawl_russell_ballestrini_net.db
|
||
# Override with CRAWL_SHARD=... when you want a custom path.
|
||
crawl-ingest: bootstrap-crawler ## crawl URL=https://x.com [DEPTH=2 MAX=0 FAST=1] into $(SHARDS_DIR)/crawl_<domain>.db
|
||
@if [ -z "$(URL)" ]; then echo "usage: make crawl-ingest URL=https://example.com [DEPTH=2 MAX=0 FAST=1 CRAWL_SHARD=path]" >&2; exit 2; fi
|
||
@mkdir -p $(SHARDS_DIR)
|
||
@shard="$(CRAWL_SHARD)"; \
|
||
if [ -z "$$shard" ]; then \
|
||
domain=$$(echo "$(URL)" | sed -E 's,^https?://([^/]+).*$$,\1,' | tr '.' '_'); \
|
||
shard="$(SHARDS_DIR)/crawl_$${domain}.db"; \
|
||
fi; \
|
||
echo " shard: $$shard" >&2; \
|
||
$(ABORIST) --db "$$shard" crawl --seed-url "$(URL)" --depth $(CRAWL_DEPTH) --max-pages $(CRAWL_MAX) $(if $(FAST),--fast,) --ingest
|
||
|
||
# Fast freshness probe: conditional HEAD per doc, classify fresh/stale/gone.
|
||
# Send only If-None-Match + If-Modified-Since headers — server returns 304
|
||
# with no body when content unchanged.
|
||
RECRAWL_LIMIT ?= 100
|
||
# By default check every shard under $(SHARDS_DIR). Pass CRAWL_SHARD=path
|
||
# to scope to one. DOMAIN= filters to URLs containing the substring.
|
||
recrawl-check: bootstrap-crawler ## conditional HEAD per ingested doc [DOMAIN=x.com LIMIT=100 CRAWL_SHARD=path]
|
||
@if [ -n "$(CRAWL_SHARD)" ]; then \
|
||
$(ABORIST) --db $(CRAWL_SHARD) crawler recrawl-check $(if $(DOMAIN),--domain $(DOMAIN),) --limit $(RECRAWL_LIMIT); \
|
||
else \
|
||
for db in $(SHARDS_DIR)/*.db; do \
|
||
case "$$(basename $$db)" in qa.db|snapshots.db) continue;; esac; \
|
||
echo " shard: $$db" >&2; \
|
||
$(ABORIST) --db "$$db" crawler recrawl-check $(if $(DOMAIN),--domain $(DOMAIN),) --limit $(RECRAWL_LIMIT); \
|
||
done; \
|
||
fi
|
||
|
||
DOT_SRCS := $(wildcard docs/diagrams/*.dot)
|
||
DOT_PNGS := $(DOT_SRCS:.dot=.png)
|
||
DOT_SVGS := $(DOT_SRCS:.dot=.svg)
|
||
|
||
docs/diagrams/%.png: docs/diagrams/%.dot
|
||
dot -Tpng $< -o $@
|
||
|
||
docs/diagrams/%.svg: docs/diagrams/%.dot
|
||
dot -Tsvg $< -o $@
|
||
|
||
docs: $(DOT_PNGS) $(DOT_SVGS) ## render docs/diagrams/*.dot -> .png + .svg via graphviz
|
||
|
||
# Reproducible micro-benchmark over a fixed slice of cur. Lets you compare
|
||
# ETL throughput across configs and catches regressions on optimization
|
||
# work. Override BENCH_DOCS=N (default 5000).
|
||
BENCH_DOCS ?= 5000
|
||
BENCH_DIR := /tmp/aborist-bench
|
||
bench: bootstrap fetch-cur ## benchmark serial vs parallel-shared vs attached at $(BENCH_DOCS) docs
|
||
@bash bench/run.sh $(BENCH_DOCS)
|
||
|
||
clean: ## remove venv + caches (keeps fetched data and db)
|
||
rm -rf $(VENV) .pytest_cache **/__pycache__ aborist.egg-info
|
||
find . -type d -name __pycache__ -prune -exec rm -rf {} +
|
||
|
||
clean-db: ## drop the aborist db (keeps fetched data and venv)
|
||
rm -f $(DB) $(DB)-journal $(DB)-wal $(DB)-shm
|
||
|
||
clean-data: ## remove fetched dumps
|
||
rm -rf $(DATA_DIR)
|