126 plikow (md, yaml, sh, py) odwolywalo sie do sciezek sprzed migracji.
15 markdown-linkow [..](..) -> policzona sciezka WZGLEDNA wobec pliku
odsylajacego (wczesniej czesc z nich byla repo-root-relative i nie
rozwiazywala sie z katalogu, w ktorym lezala)
200 odwolan tekstowych (backticki, proza, yaml, importy w kodzie)
-> nowa sciezka repo-root-relative, zgodnie z konwencja repo
5 linkow rodzenstwa (gole nazwy plikow, np. "](DEPLOY.md)") — dzialaly
tylko w starym katalogu; przeliczone recznie
Objete m.in.: CLAUDE.md (scripts/onboard/README.md -> kb/runbooks/
node-onboarding-tool.md, docs/backlog.md -> kb/phases/backlog.md),
README.md, .claude/skills/, 20 session logow, kod jobow.
Ostatnie 5 odwolan pochodzi z tresci wciagnietej rebasem z origin/master
(session log 2026-07-31, override node-agenta na SOLARII, dwie pozycje
backlogu) — wskazywaly na docs/incidents/, docs/kb/modules/ i
services/narty27/README.md sprzed migracji.
Dodany wzajemny link miedzy kb/services/control-plane.md (stub kodu)
a kb/subsystems/control-plane.md (opis, deprecated) — dwa dokumenty o tym
samym systemie, latwe do pomylenia.
Weryfikacja na 790 plikach: 0 odwolan do starych sciezek,
0 martwych linkow markdown. Lint OKF: 190/190 plikow ZGODNE.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
479 lines
22 KiB
Markdown
479 lines
22 KiB
Markdown
---
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okf: "0.1"
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type: phase
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visibility: private
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status: active
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updated: 2026-07-30
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links:
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- ../services/job-documents-ingest.md
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- ../runbooks/documents-ingest-run.md
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---
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# documents-ingest — fazy 2 i 3
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## Phase 2 — `documents-ingest-paperless` (Paperless -> envelope adapter)
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Module 5, phase 2 (`kb/phases/kb-m5-faza2.md`, §4.2-4.3, §6 step 5).
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Reads documents from the **Paperless REST API** (read-only — GET only, never
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writes to Paperless) and inserts them as `source='paperless'` rows into the
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`envelope` table on kb-postgres, reusing `kb_mail.envelope.Envelope` /
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`kb_mail.db.insert_envelope` from `packages/kb-mail` (untouched by this
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change — see plan §1.6). Existing `source='gmail'` rows and `document_chunk`
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are never touched; this job only ever `INSERT`s new `paperless` rows.
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### Cross-source link (`source_mail`)
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Per plan §1.9/§4.2, the deterministic join uses no heuristics: a document's
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`original_file_name` (from the Paperless API) is matched against
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`consume_name` in this job's **phase-1 registry**
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(`/opt/homelab/data/documents-ingest/registry.json`, produced by
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`extractor.py` — see above). A match appends a `source_mail` entity pointing
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back at the originating mail envelope; no match means the document was added
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outside the faktury-1 pipeline, and the entity is simply omitted — not an
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error.
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### Install
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```bash
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pip install -e packages/kb-mail/
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pip install -e jobs/documents-ingest/
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```
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### Usage
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```bash
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# Dry run (default) — fetch from Paperless, map, count; no DB writes:
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documents-ingest-paperless --dsn postgresql://kb:<pw>@localhost:5433/kb \
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--paperless-token <token>
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# Real run — insert new envelope rows:
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documents-ingest-paperless --dsn ... --paperless-token ... --apply
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# Smoke-test slice:
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documents-ingest-paperless --dsn ... --paperless-token ... --limit 5
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```
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`--dsn` can come from `KB_DSN`, `--paperless-token` from `PAPERLESS_API_TOKEN`,
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`--paperless-url` from `PAPERLESS_URL` (defaults to Paperless' fixed LAN
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address, `http://192.168.31.5:8210`). No `--offset`: unlike the 225 030-row
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header backfill, a full re-scan of Paperless' ~186 documents is cheap and
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already idempotent, so there is no need for resumable partitioning — `--limit`
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exists only to cap a run for smoke-testing.
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### Mapping (plan §4.3)
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```
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id = f"paperless:{document_id}" -- prefixed: Paperless doc-ids are small
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-- sequential ints that would otherwise
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-- collide with any future source's ids
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ts = documents_document.created -- Paperless-detected date (content/filename),
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-- not filesystem mtime
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geo = NULL
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raw_ref = str(document_id) -- REFERENCE — Paperless is the source of truth,
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-- no bytes are copied
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entities = content, correspondent, tag(s), filename, content_type,
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and source_mail when the registry join hits (plan §4.2)
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```
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`correspondent`/`tag` are resolved from Paperless' `/api/correspondents/` and
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`/api/tags/` (fetched once, cached in memory for the run) and kept purely as
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informational metadata — nothing in this pipeline depends on them being
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non-null (plan decision 4). A document with empty OCR content (Paperless OCR
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sometimes produces none) still gets a normal envelope with `"text": ""` — not
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skipped, not an error, just counted (`empty_content`).
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### Idempotency
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A pre-fetched set of existing `source='paperless'` envelope ids (one query at
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the start of each run) skips documents already inserted; `insert_envelope`'s
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own `ON CONFLICT (id) DO NOTHING` is the second line of defense. Re-running
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`--apply` immediately after a successful run reports `inserted: 0` and
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`already_in_db` equal to the previous run's `inserted` count.
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### Stats must balance
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```
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fetched = already_in_db + inserted + errors
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```
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`source_mail_linked` and `empty_content` are informational subsets of
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`fetched`, not separate outcome buckets. A per-document mapping failure
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(e.g. an unparseable `created` date) is isolated, logged, and counted as
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`errors` — it never aborts the run. `main()` exits 1 on non-zero `errors`
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or if the balance invariant above doesn't hold (mirrors
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`gmail-bulk-import`'s exit-code convention) — a clean run always exits 0.
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### Tests
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```bash
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pip install -e packages/kb-mail/
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pip install -e jobs/documents-ingest/
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cd jobs/documents-ingest && pytest
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```
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Pure unit tests, no DB or real HTTP — `run()` is tested by monkeypatching
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`asyncpg.connect` (fake connection) and `aiohttp.ClientSession` (fake session
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serving canned JSON pages). Covers: mapping shape (content, correspondent,
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tag(s), filename, content_type, source_mail), the registry join (hit and
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miss), pagination (both the documents list and the correspondents/tags lookup
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tables), `--limit`, idempotency (pre-existing ids skipped, a second `--apply`
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run inserts nothing new), isolated per-document mapping errors, and the
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stats-balance invariant.
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### Definition of Done
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Per `CLAUDE.md`: smoke run is `documents-ingest-paperless --dsn ...
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--paperless-token ... --limit 5` (dry-run first) against kb-postgres@PIHA and
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the live Paperless API, over SSH — **not executed as part of this change**
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without operator confirmation (this job reads production Paperless data and
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writes production envelope rows on `--apply`). `pytest` passes locally before
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this commit.
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---
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## Phase 2 step 6 — `documents-ingest-embed` (chunk + embed)
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Module 5, phase 2, plan step 6 (`kb/phases/kb-m5-faza2.md`, §6 step 6,
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§2 decision 3). Reads `entities[type=content].text` off every `source='paperless'`
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envelope, chunks it, calls Ollama (`POST /api/embeddings`, model `bge-m3`) for
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each chunk, and inserts the result into `document_chunk`
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(`services/kb-postgres/init/002_chunks.sql`). This job only ever `INSERT`s into
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`document_chunk` — `envelope` is read-only here, and `services/ollama/` is
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untouched.
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### Where it runs
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**On SOLARIA** (that's where Ollama lives), against kb-postgres@PIHA over
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Tailscale — the reverse of the other jobs in this package, which run on PIHA.
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`--ollama-url` defaults to `http://localhost:11434` (Ollama on the same node);
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`--dsn` needs PIHA's Tailscale address, e.g.
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`postgresql://kb:<pw>@piha:5433/kb`.
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### Install
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```bash
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pip install -e packages/kb-mail/
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pip install -e jobs/documents-ingest/
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```
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### Usage
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```bash
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# Dry run (default) — chunk and count only, no Ollama calls, no DB writes:
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documents-ingest-embed --dsn postgresql://kb:<pw>@piha:5433/kb
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# Smoke-test slice:
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documents-ingest-embed --dsn ... --apply --limit 10
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# Full run:
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documents-ingest-embed --dsn ... --apply
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```
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### Chunking (plan §2 decision 3)
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Paragraph-preferring: splits on blank-line boundaries, greedily packs
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paragraphs up to `--chunk-size` characters (default 2400, ≈600 tokens at a
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~4 chars/token heuristic — no local bge-m3 tokenizer available offline),
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`--chunk-overlap` characters of trailing context carried into the next chunk
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(default 600, ≈150 tokens). A paragraph that alone exceeds `--chunk-size`
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falls back to a hard character-based sliding window — Paperless OCR text has
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no page-break markers (plan §1.2), so there's nothing else to split large,
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unbroken text on. A document with empty OCR content (the 26 `empty_content`
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documents from phase 2 step 5) yields zero chunks and is counted separately,
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not as an error.
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### Idempotency
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A pre-fetched set of `(envelope_id, chunk_index)` pairs already embedded with
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`--model` skips re-embedding on rerun — no wasted Ollama calls.
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`document_chunk`'s own `UNIQUE (envelope_id, chunk_index)` +
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`ON CONFLICT DO NOTHING` is the second line of defense; `insert_chunk`'s
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command tag is checked so a silently-skipped row is counted as
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`chunks_conflict_skipped`, never miscounted as `chunks_inserted`. Note that
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uniqueness is on `(envelope_id, chunk_index)` only, not `model` —
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re-embedding with a *different* model hits this path and that embedding is
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discarded (wasted work, correctly reported via `chunks_conflict_skipped`,
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but not persisted). Out of scope for this single-model pilot; the real fix
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for whoever indexes a second model later is `UNIQUE (envelope_id,
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chunk_index, model)` at the schema layer.
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A DB write failure for one chunk (dropped connection, unexpected bytes) is
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isolated the same way an embed failure is — counted as `chunks_errors`,
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never aborting the rest of the run.
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### Dimension guard
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Every embedding response's length is checked against
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`document_chunk.embedding`'s `VECTOR(1024)` column. A mismatch raises
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`EmbeddingDimensionError` and aborts the whole run immediately — never
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silently indexes vectors of the wrong dimension.
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### Chunk size/overlap validation
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`--chunk-overlap` must be smaller than `--chunk-size` — the sliding-window
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hard-split fallback advances by `chunk_size - chunk_overlap` per step, so an
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overlap `>=` size would never advance and hang. `main()` rejects this
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combination before opening a DB connection; `hard_split()` itself also
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raises `ValueError` as a second line of defense for direct callers.
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### Stats must balance
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```
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documents_fetched = empty_content + documents_chunked
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chunks_total = chunks_already_embedded + chunks_inserted
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+ chunks_conflict_skipped + chunks_errors
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```
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`main()` exits 1 on `chunks_errors > 0`, `chunks_conflict_skipped > 0`, or if
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either balance breaks. The summary line also reports
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`avg_embed_seconds_per_chunk` — CPU-only Ollama timing, the input for
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deciding whether/how to scale this to the mail corpus later (plan §7).
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### Tests
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```bash
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pip install -e packages/kb-mail/
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pip install -e jobs/documents-ingest/
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cd jobs/documents-ingest && pytest
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```
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Pure unit tests, no DB or real HTTP — `run()` is tested by monkeypatching
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`asyncpg.connect` (fake connection) and `aiohttp.ClientSession` (fake session
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serving a canned embedding vector, or a 500 for a chosen prompt to exercise
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error isolation). Covers: chunking (paragraph boundaries, overlap, empty
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document, document shorter than one chunk, oversized paragraph hard-fallback,
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the overlap-must-be-smaller-than-size guard), `extract_content`, idempotency
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(pre-existing keys skipped, no Ollama calls made for them, a second `--apply`
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run embeds nothing new, existing keys are correctly scoped to `--model`),
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dimension-mismatch abort, isolated per-chunk embed and insert errors,
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`ON CONFLICT` no-ops counted separately from real inserts, and the
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stats-balance invariant.
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### Known limitation — Ollama context-length rejections on pathological chunks
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Ollama's *runtime* context window for a model can be smaller than the
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model's advertised max (bge-m3 supports 8192 tokens, but Ollama's default
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`num_ctx` is lower) — and some OCR text tokenizes far more densely than the
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~4-chars/token heuristic this job uses to size chunks. Concretely: a table-
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of-contents page made almost entirely of dot-leader formatting
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(`". . . . . . ."`, repeated hundreds of times) hit this on the pilot run —
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Ollama returned `500 {"error":"the input length exceeds the context
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length"}` for one 2400-char chunk that should have been well within budget
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by character count alone. The job isolates this exactly like any other embed
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failure (`chunks_errors`, logged, run continues), so it never crashes a
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run — but it also never automatically shrinks and retries the offending
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chunk. Given how rare this was (1 chunk out of 2684 in the full pilot, all
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from one document's dot-leader ToC), it's left as a known gap rather than
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fixed here; a real fix would be either a smaller/adaptive chunk size for
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low-character-entropy text, or a shrink-and-retry loop on this specific
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Ollama error.
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### Definition of Done
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Per `CLAUDE.md`: `pytest` passes locally (101 tests). Smoke-tested and then
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run to completion live on SOLARIA against the real Ollama instance and
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kb-postgres@PIHA:
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- Dry-run: 186 fetched, 26 `empty_content`, 2684 chunks planned — matches
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the known phase-2-step-5 figures exactly.
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- `--apply --limit 10`: 64 chunks embedded, 0 errors, avg ≈0.83s/chunk on CPU.
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- Re-run of the same slice: fully idempotent — 0 Ollama calls, 0 inserts.
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- Full `--apply` (all 186 documents): **2683/2684 chunks inserted, 1 isolated
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error** (see "Known limitation" above) — `chunks_errors=1` correctly
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produced a non-zero exit rather than silently reporting success.
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`document_chunk` ends at 2683 rows across 160 distinct envelopes, matching
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`documents_chunked`. A `document_chunk_envelope_idx`-backed count and an
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`ORDER BY embedding <=> ...` nearest-neighbor sanity query both look
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correct (top match is the reference chunk itself at distance 0; next
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nearest are chunks of the same source document).
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- **Timing (CPU-only, no GPU driver on SOLARIA)**: ≈0.79s/chunk average
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across 2683 real embeddings (2115.8s total embed time), ≈13.2s/document
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average across the 160 chunked documents, ≈35 minutes wall-clock for the
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full 186-document pilot. This is the real-world input for scaling this
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pipeline to the much larger mail corpus later (plan §7 assumed GPU-based
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"minutes for the whole pilot"; SOLARIA's Ollama ran CPU-only for this pilot
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per the then-disabled GPU reservation). The 186-document pilot's
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≈13.2s/document average is dominated by Paperless' long OCR text (≈22k
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chars/doc average, per plan §1.2) — 225 030 mail envelopes will have a
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very different, likely much shorter, per-envelope chunk count (email
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bodies vs. scanned multi-page PDFs), so this number doesn't extrapolate
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directly to a mail-corpus estimate. What it does establish: at
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≈0.79s/chunk sequential CPU embedding, any corpus with a non-trivial
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average chunk count per item will need either a GPU driver fix,
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concurrent/batched Ollama calls, or both, before a full mail-corpus run
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is practical — flagged for whoever picks up the mail-indexer phase.
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- **GPU (RTX 4070 Ti SUPER, driver 595-open, restored 2026-07-16)**: 207ms/embed
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(50 sekwencyjnych wywołań /api/embeddings, ~600-tok prompt) vs 790ms/chunk CPU
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baseline — ~3.8× szybciej sekwencyjnie; przy pojedynczych requestach dominuje
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overhead HTTP/tokenizacji, realny skok da dopiero batching (backlog).
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---
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## Phase 3 step 4 — retrieval cascade (`documents_ingest.retrieval`) + quality gate
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Module 5, phase 3, plan step 4 (`kb/phases/kb-m5-faza3.md`, §6). Two retrieval
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paths, both `query_text -> chunk hits (dist, source)` — the intended clean API surface for
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phase 4's kb-query, not just this eval:
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- `flat_query` — baseline: rank every active `document_chunk` row directly. Formalizes the
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phase-2 pilot's ad hoc `/tmp/kbq.sh` query into a tested module.
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- `cascade_query` — pre-filter to the top-N `document_summary` envelopes (one `model`,
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default `claude-haiku-4-5` — plan §2 decision 3, resolved 2026-07-17) before ranking
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`document_chunk` within just those envelopes. Both share **one** query embedding call;
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the cascade only adds one extra SQL query (stage 1), never an extra Ollama call.
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`envelope`, `document_chunk`, and `document_summary` are read-only — this module only ever
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`SELECT`s.
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### Quality gate
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`eval/queries.yaml` — 7 queries transcribed 1:1 from the phase-2 pilot baseline
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(`kb/phases/kb-m5-eval-retrieval-pilot.md`, left untouched — this is its versioned working
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copy) with expected envelope / kind (`hit`, `grey_zone`, `negative_control`,
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`negative_control_borderline`) per query.
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`eval/retrieval_eval.py` — read-only integration script against the live DB + live Ollama,
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**not collected by pytest** (same reasoning as the plan: an eval gate against live data isn't
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a mocked unit test). Runs every query through both tracks across an N sweep and checks the
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plan's three gate criteria (no flat hit degrades, hit@3 cascade ≥ flat, negative controls
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stay > 0.55). Exits 0 on PASS, 1 on FAIL.
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```bash
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pip install -e packages/kb-mail/ -e jobs/documents-ingest/
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python eval/retrieval_eval.py --dsn postgresql://kb:<pw>@piha:5433/kb \
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--ollama-url http://solaria:11434 --n-sweep 5,10,20
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```
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`--transport http --base-url http://<kb-query-host>:8230` (module 5 phase 4 plan §2 decision 6 /
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§9) calls a live `kb-query`'s `/search` instead of embedding+querying locally — no `--dsn`
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needed, `--n-sweep` is ignored (kb-query serves one server-side default N per request). Gate
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criterion: `dist` must be **identical** to the same run with `--transport direct` against the
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same live SOLARIA (same DB, same retrieval code — HTTP is only a wrapper).
|
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**Result (2026-07-17, live run)**: PASS at N=10, k=5 — see plan §6.3 for the full table,
|
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the N-sweep calibration (N=5 is the measured safety floor; the plan's N=10 default carries a
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2× margin), and the cost/improvement analysis. `cascade_query` (N=10, k=5,
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`summary_model='claude-haiku-4-5'`) is now the default retrieval path for phase 4's kb-query;
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`flat_query` stays as the baseline/fallback.
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|
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### Tests
|
||
|
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```bash
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pip install -e packages/kb-mail/
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pip install -e jobs/documents-ingest/
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cd jobs/documents-ingest && pytest
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```
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|
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`tests/test_retrieval.py` — pure unit tests, no DB or real HTTP. Covers: flat ranking across
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all envelopes, cascade stage-1-narrows-stage-2, an envelope whose summary exists but has no
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active chunks, N larger than the number of summarized envelopes, the no-summaries
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short-circuit (stage 2 never queried), and both query entry points embedding exactly once.
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---
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## Phase 3 step 5 — cyclic ingest (`documents-ingest-cyclic`) + systemd timer
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|
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Module 5, phase 3, plan step 5 (`kb/phases/kb-m5-faza3.md`, §7). Orchestrates one
|
||
run of the recurring ingest pipeline: `paperless_adapter.run()` (new `source='paperless'`
|
||
envelopes) → `chunk_embed.run()` (new `document_chunk` rows) →
|
||
`summarize.run_summarize(backend='anthropic')` (new `document_summary` rows,
|
||
`model='claude-haiku-4-5'` — plan §2 decision 3) → `summarize.run_embed_summaries()`
|
||
(embeds those summaries). All four are the same job functions used elsewhere in this
|
||
package, called directly — no changes to `paperless_adapter.py` / `chunk_embed.py` /
|
||
`summarize.py`, no new CLI flags on them.
|
||
|
||
### Ollama-offline tolerance
|
||
|
||
SOLARIA has `availability_target: medium` (planned power-off, plan §1.3). The wrapper
|
||
probes `GET {OLLAMA_URL}/api/tags` before the two embed stages (chunk embedding, summary
|
||
embedding); unreachable means **skip, not fail** — both embed passes are idempotent, so
|
||
new chunks/summaries left unembedded this tick are picked up whole on the next one. A
|
||
growing backlog is what `kb_ingest_embed_backlog` + the `KbEmbedBacklogGrowing` alert are
|
||
for, not this wrapper's exit code.
|
||
|
||
Anything else failing **is** a hard failure: Paperless unreachable, a DB error, a non-zero
|
||
job error counter, a broken stats-balance invariant, the Anthropic API failing. Each
|
||
stage's pass/fail predicate mirrors that job's own `main()` exit check 1:1 (see
|
||
`cyclic_ingest.py`'s module docstring). Stages are isolated, not fail-fast — an earlier
|
||
stage failing never skips a later one, mirroring the per-row isolation the underlying jobs
|
||
already use.
|
||
|
||
### Usage
|
||
|
||
```bash
|
||
# Dry run (default) — same idempotent counting as every other job in this family, no writes:
|
||
documents-ingest-cyclic --dsn postgresql://kb:<pw>@localhost:5433/kb \
|
||
--paperless-token <token> --anthropic-api-key <key>
|
||
|
||
# Real run (what the timer invokes):
|
||
documents-ingest-cyclic --dsn ... --paperless-token ... --anthropic-api-key ... --apply
|
||
```
|
||
|
||
`--dsn`/`--paperless-token`/`--anthropic-api-key` also read from `KB_DSN` /
|
||
`PAPERLESS_API_TOKEN` / `ANTHROPIC_API_KEY` env vars — never logged. `--ollama-url`
|
||
defaults to `http://solaria:11434` (this wrapper always runs on PIHA, unlike
|
||
`chunk_embed`/`summarize`'s own CLI defaults which assume co-location with Ollama).
|
||
|
||
### Metrics (Prometheus textfile collector)
|
||
|
||
Every run — success or failure — writes `--prom-path`
|
||
(default `/opt/homelab/state/node-exporter/kb-ingest.prom`) atomically (tmp + rename):
|
||
|
||
| Metric | Meaning |
|
||
|---|---|
|
||
| `kb_ingest_last_run_timestamp` | Unix ts of the last run, success or failure |
|
||
| `kb_ingest_last_success_timestamp` | Unix ts of the last run with no hard failure — carried forward from the previous file on a failing run, never reset to 0/now |
|
||
| `kb_ingest_last_exit_code` | 0 or 1 |
|
||
| `kb_ingest_documents_inserted` | New envelope rows this run |
|
||
| `kb_ingest_chunks_inserted` | New document_chunk rows this run (0 if the embed stage was skipped) |
|
||
| `kb_ingest_summaries_inserted` | New document_summary rows this run |
|
||
| `kb_ingest_embed_skipped` | 1 if Ollama was unreachable this run (both embed stages skipped), 0 otherwise |
|
||
| `kb_ingest_embed_backlog` | Active chunks (`excluded_reason IS NULL`) still missing an embedding |
|
||
|
||
Scraped by fleet-prometheus via node_exporter's textfile collector on PIHA
|
||
(`hosts/piha/runtime/node_exporter/docker-compose.override.yml`); alert rules in
|
||
`services/fleet-prometheus/rules/kb-ingest.yml`.
|
||
|
||
### Install (PIHA)
|
||
|
||
1. Dedicated venv (per plan §7.1 — not the ad hoc rsync-to-`/tmp` pattern used for the
|
||
one-shot jobs elsewhere in this README; this is a permanent, recurring installation):
|
||
```bash
|
||
python3 -m venv /opt/homelab/kb/venv
|
||
/opt/homelab/kb/venv/bin/pip install -e packages/kb-mail -e jobs/documents-ingest
|
||
```
|
||
(run from a checkout of this repo on PIHA — the checkout is used as an install source
|
||
only, per CLAUDE.md's "deploy-only" rule; no development happens there).
|
||
2. Secrets in `/opt/homelab/kb/.env` (already holds `PAPERLESS_API_TOKEN`; add
|
||
`KB_DSN=postgresql://kb:<pw>@localhost:5433/kb` and `ANTHROPIC_API_KEY=<key>`),
|
||
`chmod 600`, never in Git.
|
||
3. Copy `jobs/documents-ingest/systemd/kb-ingest-run.sh` to `/opt/homelab/kb/` and
|
||
`chmod +x` it.
|
||
4. Copy (or symlink) `kb-ingest.service` and `kb-ingest.timer` to `/etc/systemd/system/`,
|
||
then:
|
||
```bash
|
||
systemctl daemon-reload
|
||
systemctl enable --now kb-ingest.timer
|
||
```
|
||
5. Verify: `systemctl list-timers kb-ingest.timer`, `journalctl -u kb-ingest.service`,
|
||
`/opt/homelab/logs/kb-ingest/run-YYYYMMDD.log`, and
|
||
`/opt/homelab/state/node-exporter/kb-ingest.prom` after the first run (manual
|
||
`systemctl start kb-ingest.service` to trigger one immediately without waiting for
|
||
03:30).
|
||
|
||
### Tests
|
||
|
||
```bash
|
||
pip install -e packages/kb-mail/
|
||
pip install -e jobs/documents-ingest/
|
||
cd jobs/documents-ingest && pytest
|
||
```
|
||
|
||
`tests/test_cyclic_ingest.py` — pure unit tests, no DB or real HTTP/Ollama/Anthropic; every
|
||
stage function and the Ollama probe are monkeypatched. Covers: each stage's failure
|
||
predicate (pinned against its source job's own exit check), the Ollama-down skip path
|
||
(chunk_embed/embed_summaries never even called), stage isolation (an earlier stage failing
|
||
never skips a later one, whether via a failed predicate or a raised exception), `.prom`
|
||
rendering, atomic write, `last_success_timestamp` carry-forward across a failing run, and
|
||
`main()`'s CLI guardrails + exit-code propagation.
|