**Phase 118 final verification pass — complete.** All criteria verified; 4 pre-existing defects found and fixed.
- **Verified:** summary-seed wiring (`select_suggested` top-5 no-floor → summary blocks, no full text in HIGH prompt), all-doc markdown summaries + NULL backfill (`summary_backfilled`, no `sources_meta` bump), `read` adds full text with `read_docs`-only dedupe, `done.sources` = suggested+read / durable record = suggested+related+read + `suggested=N` log line (seen live in E2E), byte-locked PERSONA/LOW/TOOLS_SECTION, battery gate PASS recorded in `TOOL_CALLING_TESTING.md` §10 (turbo 2026-09-16: 1/2/4 GREEN, cond-3 reported 9/10 per A7, contract 21/21, caps 0).
- **Defects fixed (all pre-existing, none phase-118):** ① `ChatMessage` schema missing the phase-113 `related` key → `extra="forbid"` 422'd every done-time auto-save of grounded turns with a related tier, leaving `message_count=1` (root cause of `test_share_chat` 3F; browser-level instrumentation proved the PUT 422) — added the field + unit/integration pins; ② `test_theme_semantic_completion` pins stale vs phase-117 debox (border/chip removed) — re-targeted to assert border/chip *absence*; ③ `test_header_consistency` `<26`px pin red on 26.125px native date-input line — bound relaxed to `<34` (wrap-detection intent kept); ④ `test_navbar_refresh` bor.chat.v1 key set updated for `related`.
- **Test/lint/coverage:** `uv run pytest --cov=app --cov-report=term-missing` → **2506 passed, app/ 99%** (>90%); `uv run ruff check . && uv run pyright` → clean, 0 errors.
- **E2E:** new story suite in isolation → **2 passed**; full 103-suite matrix sweep (each isolated) → **all 103 green** after the fixes; `test_share_chat` 4 passed, `test_theme_semantic_completion` 8 passed, `test_header_consistency` 3 passed, `test_navbar_refresh` 7 passed.
- **Deviations:** none from LOCKED decisions. Note: orphaned diagnostic uvicorn processes briefly made E2E sessions exercise stale code — killed and re-verified; a sweep-regenerated tracked screenshot was restored. No commits made (harness commits).
- **Completion criteria:** all 7 ✅ (commit/phase-move is the harness's step).
- **Next pending phase:** none — `todo/` holds only this phase's overview pending the harness move.
945 lines
38 KiB
Python
945 lines
38 KiB
Python
"""Unit: retriever — ordering and dedup, no context cap (A7 revised) (fake rows).
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The SQL side of :func:`app.rag.retriever.retrieve` is exercised by the
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chat integration tests against real Postgres; the pure mapping logic in
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:func:`select_documents` is tested here with in-memory rows.
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"""
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from __future__ import annotations
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import uuid
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from types import SimpleNamespace
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import pytest
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from app.config import Settings
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from app.models import Document
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from app.rag import retriever
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from app.rag.retriever import (
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TRUNCATION_MARKER,
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RetrievedChunk,
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select_documents,
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select_documents_tiered,
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select_related,
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select_suggested,
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)
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def _doc(path: str, content: str, source: str = "Homelab", title: str | None = None) -> Document:
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return Document(
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id=uuid.uuid4(),
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source=source,
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path=path,
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full_path=f"/tmp/{path}",
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title=title or path,
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content=content,
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content_hash="0" * 64,
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)
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def _chunk(doc: Document, score: float, position: int = 0) -> RetrievedChunk:
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return RetrievedChunk(
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chunk_id=uuid.uuid4(),
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position=position,
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content=doc.content[:40],
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score=score,
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document=doc,
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)
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def test_ranks_by_best_chunk_score_not_first_hit() -> None:
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"""A doc whose *later* chunk scores highest must still rank first."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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c = _doc("c.md", "C" * 50)
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chunks = [
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_chunk(a, 0.4, position=0), # a's weak chunk comes first
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_chunk(b, 0.8),
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_chunk(a, 0.9, position=2), # a's best chunk comes last
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_chunk(c, 0.5),
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]
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docs = select_documents(chunks, n=3)
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assert [d.path for d in docs] == ["a.md", "b.md", "c.md"]
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def test_dedups_to_one_document_per_hit_set() -> None:
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a = _doc("a.md", "A" * 50)
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chunks = [_chunk(a, 0.2), _chunk(a, 0.7), _chunk(a, 0.5)]
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docs = select_documents(chunks, n=2)
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assert len(docs) == 1
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assert docs[0] is a
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def test_caps_at_n_documents() -> None:
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(4)]
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chunks = [_chunk(d, 0.5 - 0.1 * i) for i, d in enumerate(docs_in)]
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out = select_documents(chunks, n=2)
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assert [d.path for d in out] == ["d0.md", "d1.md"]
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def test_content_never_truncated_even_past_old_budget() -> None:
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"""Whole documents, never truncated (A7 revised, owner permission 2026-08-24).
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Two documents of 20 000 + 15 000 chars — 35 000 combined, well past
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the old 24 000 context budget — come back with content
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**byte-identical** to the originals, and the truncation marker is
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absent from both.
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"""
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big = _doc("big.md", "B" * 20_000)
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small = _doc("small.md", "S" * 15_000)
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chunks = [_chunk(big, 0.9), _chunk(small, 0.6)]
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out = select_documents(chunks, n=2)
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assert [d.path for d in out] == ["big.md", "small.md"]
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assert out[0].content == "B" * 20_000
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assert out[1].content == "S" * 15_000
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assert TRUNCATION_MARKER not in out[0].content
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assert TRUNCATION_MARKER not in out[1].content
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def test_empty_hits_yield_no_documents() -> None:
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assert select_documents([], n=2) == []
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# ---------------------------------------------------------------------------
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# Phase 113 — the usefulness bar: cited vs related tiers
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# ---------------------------------------------------------------------------
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def _cos_chunk(doc: Document, score: float, cosine: float, position: int = 0) -> RetrievedChunk:
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"""A candidate with *score* (fused rank key) and *cosine* (gate input) decoupled."""
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return RetrievedChunk(
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chunk_id=uuid.uuid4(),
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position=position,
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content=doc.content[:40],
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score=score,
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document=doc,
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cosine=cosine,
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)
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def test_tiered_both_clear_floor_both_cited() -> None:
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"""Both docs clear the bar → both cited, nothing related."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [_cos_chunk(a, 0.9, 0.50), _cos_chunk(b, 0.8, 0.40)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert [d.path for d in cited] == ["a.md", "b.md"]
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assert related == []
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def test_tiered_strong_plus_weak_one_cited_one_related() -> None:
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"""The recurring incident shape: a strong 1st doc and a weak 2nd — the
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weak doc loses its citation slot and lands in the related tier."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [_cos_chunk(a, 0.9, 0.50), _cos_chunk(b, 0.8, 0.10)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert [d.path for d in cited] == ["a.md"]
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assert [d.path for d in related] == ["b.md"]
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def test_tiered_both_weak_zero_cited_all_related() -> None:
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"""Neither doc clears the bar → no citation slot at all (the bar
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filters, it never backfills), the weak hits become the related tier."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [_cos_chunk(a, 0.9, 0.20), _cos_chunk(b, 0.8, 0.15)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert cited == []
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assert [d.path for d in related] == ["a.md", "b.md"] # rank order kept
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def test_tiered_related_cap_respected() -> None:
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"""The related tier is capped (related_max_docs) in rank order."""
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(3)]
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chunks = [_cos_chunk(d, 0.9 - 0.1 * i, 0.10 - 0.02 * i) for i, d in enumerate(docs_in)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert cited == []
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assert [d.path for d in related] == ["d0.md", "d1.md"]
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def test_tiered_n_is_ceiling_not_quota() -> None:
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"""A single strong doc yields ONE cited doc — the bar never pads the
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cited tier up to ``n`` (LOCKED A2). And docs that clear the bar but
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exceed the ceiling fall through to the related tier (the next docs in
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rank order, never overlapping cited)."""
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only = _doc("only.md", "O" * 50)
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cited, related = select_documents_tiered(
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[_cos_chunk(only, 0.9, 0.80)], n=2, floor=0.35, related_cap=2
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)
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assert [d.path for d in cited] == ["only.md"]
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assert related == []
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(4)]
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chunks = [_cos_chunk(d, 0.9 - 0.1 * i, 0.8 - 0.05 * i) for i, d in enumerate(docs_in)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert [d.path for d in cited] == ["d0.md", "d1.md"] # the ceiling
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assert [d.path for d in related] == ["d2.md", "d3.md"] # the next in rank order
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def test_tiered_bar_skips_weak_rank_one() -> None:
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"""A weak rank-1 doc does not consume a citation slot: the next-ranked
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bar-clearing docs take it (the bar filters, it does not backfill)."""
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w = _doc("w.md", "W" * 50)
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s1 = _doc("s1.md", "1" * 50)
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s2 = _doc("s2.md", "2" * 50)
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chunks = [
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_cos_chunk(w, 0.9, 0.20), # rank 1 — below the bar
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_cos_chunk(s1, 0.8, 0.90),
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_cos_chunk(s2, 0.7, 0.80),
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]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.5, related_cap=2)
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assert [d.path for d in cited] == ["s1.md", "s2.md"]
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assert [d.path for d in related] == ["w.md"]
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def test_tiered_tracks_best_chunk_cosine_across_a_docs_chunks() -> None:
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"""The bar is on the doc's BEST hit-chunk cosine — a weak first chunk
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(rank 1) does not sink a doc whose later chunk is vector-strong."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [
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_cos_chunk(a, 0.9, 0.10, position=0), # a's weak chunk ranks first
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_cos_chunk(a, 0.5, 0.90, position=2), # a's strong chunk
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_cos_chunk(b, 0.4, 0.0), # lexical-only b
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]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert [d.path for d in cited] == ["a.md"]
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assert [d.path for d in related] == ["b.md"]
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def test_tiered_lexical_only_hit_goes_to_related_above_zero_floor() -> None:
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"""A lexical-only doc (cosine 0.0 by construction) is vector-unsupported
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by definition: above a zero floor it never earns a cited slot (LOCKED A2)."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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lexical_only = RetrievedChunk(
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chunk_id=uuid.uuid4(),
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position=0,
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content="X" * 10,
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score=0.9, # top fused rank (the FTS hit)
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document=a,
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cosine=0.0, # no vector rank — lexical-only
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fts_hit=True,
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)
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chunks = [lexical_only, _cos_chunk(b, 0.8, 0.5)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
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assert [d.path for d in cited] == ["b.md"]
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assert [d.path for d in related] == ["a.md"]
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def test_tiered_floor_zero_is_no_bar() -> None:
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"""A zero floor admits every scored document — lexical-only (cosine
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0.0) and weak alike — so the bar can be disabled per deployment."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [_cos_chunk(a, 0.9, 0.0), _cos_chunk(b, 0.8, 0.1)]
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cited, related = select_documents_tiered(chunks, n=2, floor=0.0, related_cap=2)
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assert [d.path for d in cited] == ["a.md", "b.md"]
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assert related == []
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def test_tiered_empty_chunks_yield_empty_tiers() -> None:
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assert select_documents_tiered([], n=2, floor=0.35, related_cap=2) == ([], [])
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def test_select_documents_wrapper_is_legacy_tiering() -> None:
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"""The wrapper (floor 0.0, cap 0) is the legacy "any score, top-N"
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selection — byte-identical for the shapes the existing callers see:
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rank order, dedupe, multi-chunk docs, ties, lexical-only hits."""
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(5)]
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chunks = [
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_chunk(docs_in[0], 0.5), # cosine 0.0 (lexical-only)
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_cos_chunk(docs_in[0], 0.9, 0.4, position=1),
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_chunk(docs_in[1], 0.8),
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_cos_chunk(docs_in[1], 0.8, 0.2, position=1), # fused tie across docs
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||
_cos_chunk(docs_in[2], 0.7, 0.0),
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_cos_chunk(docs_in[3], 0.6, 0.1),
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_chunk(docs_in[4], 0.1),
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]
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for n in (1, 2, 3, 10):
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assert select_documents(chunks, n=n) == select_documents_tiered(
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chunks, n, 0.0, 0
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)[0]
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# ---------------------------------------------------------------------------
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# Phase 118 — select_suggested: the top-N "start here" tier, NO floor (A3)
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# ---------------------------------------------------------------------------
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def test_suggested_rank_order_by_first_seen_chunk() -> None:
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"""The SAME stable walk as ``select_documents_tiered``: a document's
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rank is fixed by its FIRST seen chunk in score-descending order — a
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doc whose best chunk appears later in the input list still ranks
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where that chunk falls."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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c = _doc("c.md", "C" * 50)
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chunks = [
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_chunk(a, 0.4, position=0), # a's weak chunk comes first
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_chunk(b, 0.8),
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_chunk(a, 0.9, position=2), # a's best chunk comes last
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_chunk(c, 0.5),
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]
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out = select_suggested(chunks, n=5)
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assert [d.path for d in out] == ["a.md", "b.md", "c.md"]
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# The rows carry the full content byte-identical (A6: the content is
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# what ``read`` serves later — never truncated).
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assert out[0].content == "A" * 50
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assert TRUNCATION_MARKER not in out[0].content
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def test_suggested_dedupes_multiple_chunks_to_one_row() -> None:
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"""Multiple hit chunks of one document collapse to a single row."""
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a = _doc("a.md", "A" * 50)
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b = _doc("b.md", "B" * 50)
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chunks = [
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_chunk(a, 0.2),
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_chunk(b, 0.7),
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_chunk(a, 0.9, position=2),
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_chunk(a, 0.5),
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]
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out = select_suggested(chunks, n=5)
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assert [d.path for d in out] == ["a.md", "b.md"] # one row per document
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assert out[0] is a
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|
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def test_suggested_caps_at_n_in_rank_order() -> None:
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(7)]
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chunks = [_chunk(d, 0.9 - 0.1 * i) for i, d in enumerate(docs_in)]
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out = select_suggested(chunks, n=3)
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assert [d.path for d in out] == ["d0.md", "d1.md", "d2.md"]
|
||
|
||
|
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def test_suggested_default_cap_is_the_settings_value(
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monkeypatch: pytest.MonkeyPatch,
|
||
) -> None:
|
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"""``n`` omitted → ``BOR_SUGGESTED_DOCS`` caps the walk — default 5
|
||
(LOCKED A3, the top-5 "start here" directive, TODO L3) — and the cap
|
||
is the setting's LIVE value, not a frozen constant."""
|
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docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(7)]
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||
chunks = [_chunk(d, 0.9 - 0.1 * i) for i, d in enumerate(docs_in)]
|
||
settings = Settings(_env_file=None) # pyright: ignore[reportCallIssue]
|
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assert settings.suggested_docs == 5 # the production default
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monkeypatch.setattr(retriever, "get_settings", lambda: settings)
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assert [d.path for d in select_suggested(chunks)] == [
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f"d{i}.md" for i in range(5)
|
||
]
|
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small = Settings(_env_file=None, suggested_docs=2) # pyright: ignore[reportCallIssue]
|
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monkeypatch.setattr(retriever, "get_settings", lambda: small)
|
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assert [d.path for d in select_suggested(chunks)] == ["d0.md", "d1.md"]
|
||
|
||
|
||
def test_suggested_never_filters_on_cosine_floor() -> None:
|
||
"""NO floor (LOCKED A3): a lexical-only hit (cosine 0.0 by
|
||
construction) is a suggestion when it ranks — the contrast pin
|
||
against ``select_documents_tiered``'s floored cited tier on the SAME
|
||
input, which demotes it to the related tier."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
lexical_only = RetrievedChunk(
|
||
chunk_id=uuid.uuid4(),
|
||
position=0,
|
||
content="X" * 10,
|
||
score=0.9, # top fused rank (the FTS hit)
|
||
document=a,
|
||
cosine=0.0, # no vector rank — lexical-only
|
||
fts_hit=True,
|
||
)
|
||
chunks = [lexical_only, _cos_chunk(b, 0.8, 0.5)]
|
||
# Suggested: the floor never filters — a leads, b follows in rank order.
|
||
assert [d.path for d in select_suggested(chunks, n=5)] == ["a.md", "b.md"]
|
||
# Contrast: the same input through the phase-113 cited tier — the
|
||
# 0.35 usefulness bar demotes the lexical-only doc to related.
|
||
cited, related = select_documents_tiered(chunks, n=2, floor=0.35, related_cap=2)
|
||
assert [d.path for d in cited] == ["b.md"]
|
||
assert [d.path for d in related] == ["a.md"]
|
||
|
||
|
||
def test_suggested_tie_break_inherited_from_fused_order() -> None:
|
||
"""Equal fused scores keep the input (fused) order — the stable
|
||
score-only walk inherits ``fuse()``'s (-score, -cosine, path,
|
||
position) tie-break; the selector never re-sorts it away."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
chunks = [_cos_chunk(a, 0.7, 0.5), _cos_chunk(b, 0.7, 0.4)] # a wins on cosine
|
||
assert [d.path for d in select_suggested(chunks, n=5)] == ["a.md", "b.md"]
|
||
# A FULL tie (score AND cosine): the input position — ``fuse()``'s
|
||
# path/position tie-break already applied — decides. ``m.md`` sorts
|
||
# AFTER ``b2.md`` alphabetically, so any re-sort by path would flip
|
||
# the order; the fused input order must win.
|
||
m = _doc("m.md", "M" * 50)
|
||
b2 = _doc("b2.md", "B" * 50)
|
||
chunks = [_cos_chunk(m, 0.7, 0.4), _cos_chunk(b2, 0.7, 0.4)]
|
||
assert [d.path for d in select_suggested(chunks, n=5)] == ["m.md", "b2.md"]
|
||
|
||
|
||
def test_suggested_empty_chunks_yield_no_documents() -> None:
|
||
assert select_suggested([], n=5) == []
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# Phase 118, task 05 — select_related: the rank-6+ tier after the suggested set
|
||
# ---------------------------------------------------------------------------
|
||
|
||
|
||
def test_related_walk_order_after_excluded_set() -> None:
|
||
"""The SAME stable score-descending walk as ``select_suggested``:
|
||
a document's rank is fixed by its FIRST seen chunk; documents in
|
||
*excluded_ids* (the suggested set) are skipped and the rest come
|
||
back in rank order."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
c = _doc("c.md", "C" * 50)
|
||
d = _doc("d.md", "D" * 50)
|
||
chunks = [
|
||
_chunk(a, 0.4, position=0), # a's weak chunk comes first
|
||
_chunk(b, 0.8),
|
||
_chunk(a, 0.9, position=2), # a's best chunk last — a ranks first
|
||
_chunk(c, 0.5),
|
||
_chunk(d, 0.3),
|
||
]
|
||
out = select_related(chunks, {a.id, b.id}, cap=2)
|
||
assert [x.path for x in out] == ["c.md", "d.md"]
|
||
|
||
|
||
def test_related_skips_excluded_documents() -> None:
|
||
"""Every document in *excluded_ids* is skipped, even when it would
|
||
rank inside the cap — the suggested set never rides the related row."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
c = _doc("c.md", "C" * 50)
|
||
chunks = [_chunk(a, 0.9), _chunk(b, 0.8), _chunk(c, 0.5)]
|
||
out = select_related(chunks, {a.id, b.id}, cap=5)
|
||
assert out == [c]
|
||
# Every doc excluded → empty, even with room left in the cap.
|
||
assert select_related(chunks, {a.id, b.id, c.id}, cap=5) == []
|
||
|
||
|
||
def test_related_caps_at_cap_in_rank_order() -> None:
|
||
"""The phase-118 turn wiring on 9 docs: suggested = the top 5,
|
||
related = rank 6–7 (capped at 2), disjoint from the suggested set."""
|
||
docs_in = [_doc(f"d{i}.md", "X" * 20) for i in range(9)]
|
||
chunks = [_chunk(d, 0.9 - 0.1 * i) for i, d in enumerate(docs_in)]
|
||
suggested = select_suggested(chunks, n=5)
|
||
out = select_related(chunks, {d.id for d in suggested}, cap=2)
|
||
assert [x.path for x in out] == ["d5.md", "d6.md"] # rank 6–7, capped
|
||
suggested_paths = {d.path for d in suggested}
|
||
assert suggested_paths.isdisjoint({x.path for x in out})
|
||
|
||
|
||
def test_related_cap_zero_yields_empty() -> None:
|
||
"""cap=0 is the kill switch (related_max_docs=0): no related docs,
|
||
the pre-phase-113 visibility."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
c = _doc("c.md", "C" * 50)
|
||
chunks = [_chunk(a, 0.9), _chunk(b, 0.8), _chunk(c, 0.5)]
|
||
assert select_related(chunks, {a.id}, cap=0) == []
|
||
|
||
|
||
def test_related_never_filters_on_cosine_floor() -> None:
|
||
"""NO floor: a lexical-only (cosine 0.0) doc is related when it
|
||
ranks after the excluded set — the related tier is visibility, not
|
||
citation (phase 118 applies no cosine floor to it)."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
lexical_only = RetrievedChunk(
|
||
chunk_id=uuid.uuid4(),
|
||
position=0,
|
||
content="X" * 10,
|
||
score=0.9, # top fused rank (the FTS hit)
|
||
document=a,
|
||
cosine=0.0, # no vector rank — lexical-only
|
||
fts_hit=True,
|
||
)
|
||
chunks = [lexical_only, _cos_chunk(b, 0.8, 0.5)]
|
||
out = select_related(chunks, set(), cap=5)
|
||
assert [x.path for x in out] == ["a.md", "b.md"]
|
||
|
||
|
||
def test_related_dedupes_multiple_chunks_to_one_row() -> None:
|
||
"""Multiple hit chunks of one document collapse to a single row
|
||
(first-seen-chunk rank, dedupe by document.id — the shared walk)."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
chunks = [_chunk(a, 0.2), _chunk(b, 0.7), _chunk(a, 0.9, position=2)]
|
||
out = select_related(chunks, set(), cap=5)
|
||
assert [x.path for x in out] == ["a.md", "b.md"] # one row per document
|
||
assert out[0] is a
|
||
|
||
|
||
def test_related_tie_break_inherited_from_fused_order() -> None:
|
||
"""Equal fused scores keep the input (fused) order — the stable
|
||
score-only walk inherits ``fuse()``'s (-score, -cosine, path,
|
||
position) tie-break; the selector never re-sorts it away."""
|
||
a = _doc("a.md", "A" * 50)
|
||
b = _doc("b.md", "B" * 50)
|
||
chunks = [_cos_chunk(a, 0.7, 0.5), _cos_chunk(b, 0.7, 0.4)] # a wins on cosine
|
||
assert [x.path for x in select_related(chunks, set(), cap=5)] == ["a.md", "b.md"]
|
||
m = _doc("m.md", "M" * 50)
|
||
b2 = _doc("b2.md", "B" * 50)
|
||
chunks = [_cos_chunk(m, 0.7, 0.4), _cos_chunk(b2, 0.7, 0.4)] # full tie
|
||
assert [x.path for x in select_related(chunks, set(), cap=5)] == ["m.md", "b2.md"]
|
||
|
||
|
||
def test_related_empty_chunks_yield_no_documents() -> None:
|
||
assert select_related([], set(), cap=5) == []
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# Hybrid retrieval (A7): RRF fusion + lexical tsquery
|
||
# ---------------------------------------------------------------------------
|
||
|
||
from app.rag.retriever import fuse, lexical_tsquery # noqa: E402
|
||
|
||
|
||
def _rc(
|
||
doc_path: str, cosine: float = 0.0, fts_hit: bool = False, position: int = 0,
|
||
is_summary: bool = False,
|
||
) -> RetrievedChunk:
|
||
return RetrievedChunk(
|
||
chunk_id=uuid.uuid4(),
|
||
position=position,
|
||
content="x" * 20,
|
||
score=0.0,
|
||
document=_doc(doc_path, "x" * 20),
|
||
cosine=cosine,
|
||
fts_hit=fts_hit,
|
||
is_summary=is_summary,
|
||
)
|
||
|
||
|
||
def test_lexical_tsquery_tokens_lowercased_deduped_in_order() -> None:
|
||
assert lexical_tsquery("How did I Install GITLAB gitlab?") == "how | did | i | install | gitlab"
|
||
|
||
|
||
def test_lexical_tsquery_punctuation_and_umlauts_ignored() -> None:
|
||
assert lexical_tsquery("c3-r00t? -- what's up!") == "c3 | r00t | what | s | up"
|
||
|
||
|
||
def test_lexical_tsquery_pure_symbols_return_none() -> None:
|
||
assert lexical_tsquery("??? ???") is None
|
||
assert lexical_tsquery("") is None
|
||
|
||
|
||
def test_lexical_tsquery_stopwords_left_to_postgres() -> None:
|
||
# lexical_tsquery passes raw tokens through; Postgres's to_tsquery
|
||
# lexing drops the stopwords (verified against real PG in
|
||
# test_retrieve_empty_kb / integration tests).
|
||
assert lexical_tsquery("how do i") == "how | do | i"
|
||
|
||
|
||
def test_lexical_tsquery_dotted_tokens_kept_whole() -> None:
|
||
"""The 2026-09-05 incident: the default parser lexes dotted words
|
||
as ONE lexeme ("llama.cpp" → 'llama.cpp', "Qwen 3.8" → '3.8'), so
|
||
the query carries them whole — split tokens (llama | cpp) can never
|
||
match the document side."""
|
||
assert lexical_tsquery(
|
||
"What are the correct llama.cpp arguments for Qwen 3.8?"
|
||
) == "what | are | the | correct | llama.cpp | arguments | for | qwen | 3.8"
|
||
# The dash still splits (only dots group): ai | internal.network.
|
||
assert lexical_tsquery("how did I set up ai-internal.network?") == (
|
||
"how | did | i | set | up | ai | internal.network"
|
||
)
|
||
|
||
|
||
def test_fuse_combines_both_lists_for_double_hits() -> None:
|
||
v1 = _rc("a.md", cosine=0.9)
|
||
v2 = _rc("b.md", cosine=0.5)
|
||
l1 = _rc("a.md", cosine=0.1) # same chunk id -> matched in place
|
||
a_id = v1.chunk_id
|
||
l1.chunk_id = a_id
|
||
out = fuse([v1, v2], [l1], k=60)
|
||
by_id = {rc.chunk_id: rc for rc in out}
|
||
# a: 1/61 (vector rank 1) + 1/61 (lexical rank 1); b: 1/62 only.
|
||
assert by_id[a_id].score == pytest.approx(2 / 61)
|
||
assert by_id[a_id].fts_hit is True
|
||
assert by_id[v2.chunk_id].score == pytest.approx(1 / 62)
|
||
assert by_id[v2.chunk_id].fts_hit is False
|
||
assert [rc.chunk_id for rc in out] == [a_id, v2.chunk_id]
|
||
|
||
|
||
def test_fuse_lexical_only_chunks_enter_with_zero_cosine() -> None:
|
||
vector = [_rc("a.md", cosine=0.8)]
|
||
lexical = [_rc("b.md", cosine=0.0, fts_hit=True)]
|
||
out = fuse(vector, lexical, k=60)
|
||
assert len(out) == 2
|
||
b = next(rc for rc in out if rc.document.path == "b.md")
|
||
assert b.cosine == 0.0
|
||
assert b.fts_hit is True
|
||
# Still ranked by its (only) RRF term.
|
||
assert b.score == pytest.approx(1 / 61)
|
||
|
||
|
||
def test_fuse_orders_by_score_then_cosine_then_path() -> None:
|
||
# Two chunks share an RRF score (both rank 1 in different lists):
|
||
# the higher-cosine one must sort first.
|
||
hi = _rc("z.md", cosine=0.9)
|
||
lo = _rc("a.md", cosine=0.2)
|
||
out = fuse([hi], [lo], k=60)
|
||
assert [rc.document.path for rc in out] == ["z.md", "a.md"]
|
||
# Equal score AND cosine -> path order.
|
||
p1 = _rc("b.md", cosine=0.5)
|
||
p2 = _rc("a.md", cosine=0.5)
|
||
out = fuse([p1], [p2], k=60)
|
||
assert [rc.document.path for rc in out] == ["a.md", "b.md"]
|
||
# Equal score, cosine, path -> position order.
|
||
s1 = _rc("a.md", cosine=0.5, position=1)
|
||
s2 = _rc("a.md", cosine=0.5, position=0)
|
||
out = fuse([s1], [s2], k=60)
|
||
assert [rc.position for rc in out] == [0, 1]
|
||
|
||
|
||
def test_fuse_rejects_nonpositive_k() -> None:
|
||
with pytest.raises(ValueError):
|
||
fuse([], [], k=0)
|
||
with pytest.raises(ValueError):
|
||
fuse([], [], k=-1)
|
||
|
||
|
||
def test_fuse_empty_lists() -> None:
|
||
assert fuse([], [], k=60) == []
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# Phase 30: is_summary survives both candidate lists and the fusion
|
||
# ---------------------------------------------------------------------------
|
||
|
||
from app.models import Chunk # noqa: E402
|
||
from app.rag.retriever import ( # noqa: E402
|
||
NAME_HIT_LIMIT,
|
||
_lexical_candidates,
|
||
_name_hit_chunks,
|
||
_normalize_name,
|
||
_vector_candidates,
|
||
name_hit_tokens,
|
||
)
|
||
|
||
|
||
class _FakeResult:
|
||
"""Stands in for SQLAlchemy's RowMapping result (``.all()`` only)."""
|
||
|
||
def __init__(self, rows: list) -> None:
|
||
self._rows = rows
|
||
|
||
def all(self) -> list:
|
||
return self._rows
|
||
|
||
|
||
class _FakeSession:
|
||
"""Returns canned rows from ``execute`` without touching Postgres.
|
||
|
||
One list of rows (legacy form) is returned for EVERY call; several
|
||
lists (one per successive ``execute``) model a query sequence — the
|
||
name-hit lexical path (2026-09-05) issues the document-projection
|
||
query and, when hits exist, the LATERAL chunk query, BEFORE the FTS
|
||
query.
|
||
"""
|
||
|
||
def __init__(self, *rowsets: list) -> None:
|
||
if len(rowsets) == 1 and not (
|
||
rowsets[0] and isinstance(rowsets[0][0], list)
|
||
):
|
||
rowsets = (rowsets[0],) # the single-rowset legacy form
|
||
self._rowsets = rowsets
|
||
self._call = 0
|
||
self.statements: list = []
|
||
|
||
def execute(self, stmt, params: dict | None = None) -> _FakeResult:
|
||
self.statements.append((stmt, params))
|
||
rows = self._rowsets[min(self._call, len(self._rowsets) - 1)]
|
||
self._call += 1
|
||
return _FakeResult(rows)
|
||
|
||
|
||
def _chunk_row(is_summary: bool) -> Chunk:
|
||
doc = _doc("summary-src.yaml", "RAW_YAML_CONTENT")
|
||
return Chunk(
|
||
id=uuid.uuid4(),
|
||
document_id=doc.id,
|
||
position=-1, # the summary chunk's position (phase 30)
|
||
content="Summary text",
|
||
is_summary=is_summary,
|
||
)
|
||
|
||
|
||
def test_vector_candidates_carry_is_summary_flag() -> None:
|
||
"""The vector list copies ``Chunk.is_summary`` onto each candidate."""
|
||
doc = _doc("summary-src.yaml", "RAW_YAML_CONTENT")
|
||
summary = _chunk_row(is_summary=True)
|
||
ordinary = _chunk_row(is_summary=False)
|
||
ordinary.position = 0
|
||
ordinary.content = "ordinary content"
|
||
rows = [
|
||
(summary, 0.123456, doc),
|
||
(ordinary, 0.2, doc),
|
||
]
|
||
out = _vector_candidates(_FakeSession(rows), [0.0] * 768, limit=5) # pyright: ignore[reportArgumentType]
|
||
assert len(out) == 2
|
||
by_pos = {rc.position: rc for rc in out}
|
||
assert by_pos[-1].is_summary is True # the summary chunk (position −1)
|
||
assert by_pos[0].is_summary is False # ordinary content chunk
|
||
assert by_pos[-1].cosine == pytest.approx(0.876544) # 1 − distance, still rounded
|
||
|
||
|
||
def test_vector_candidates_default_is_summary_false_for_legacy_chunks() -> None:
|
||
"""Pre-phase-30 rows have ``is_summary=false`` — candidates stay False."""
|
||
doc = _doc("legacy.md", "LEGACY")
|
||
legacy = Chunk(
|
||
id=uuid.uuid4(),
|
||
document_id=doc.id,
|
||
position=0,
|
||
content="legacy content",
|
||
is_summary=False,
|
||
)
|
||
out = _vector_candidates(_FakeSession([(legacy, 0.5, doc)]), [0.0] * 768, limit=5) # pyright: ignore[reportArgumentType]
|
||
assert out[0].is_summary is False
|
||
|
||
|
||
def _lexical_row(is_summary: bool, doc_path: str) -> object:
|
||
"""One row of ``_LEXICAL_SQL`` (attribute access, as SQLAlchemy returns)."""
|
||
doc = _doc(doc_path, "DOC_BODY")
|
||
return SimpleNamespace(
|
||
chunk_id=uuid.uuid4(),
|
||
position=-1 if is_summary else 0,
|
||
content="summary chunk text" if is_summary else "content chunk text",
|
||
doc_id=doc.id,
|
||
source=doc.source,
|
||
path=doc.path,
|
||
full_path=doc.full_path,
|
||
title=doc.title,
|
||
doc_content=doc.content,
|
||
content_hash=doc.content_hash,
|
||
indexed_at=None,
|
||
created_at=None,
|
||
is_summary=is_summary,
|
||
rank=0.33,
|
||
)
|
||
|
||
|
||
def test_lexical_candidates_carry_is_summary_flag() -> None:
|
||
"""The lexical list reads ``c.is_summary`` from the raw row.
|
||
|
||
The question carries no digit-bearing name token (no bare, no
|
||
numeric-join), so the name-hit path issues NO queries at all — the
|
||
single FTS rowset answers the only (FTS) call, and the list is the
|
||
plain FTS rows: the pre-name-hit behavior, unchanged.
|
||
"""
|
||
rows = [_lexical_row(True, "summary-src.yaml"), _lexical_row(False, "other.md")]
|
||
out = _lexical_candidates(
|
||
_FakeSession(rows), "how do i configure the thing", limit=10 # pyright: ignore[reportArgumentType]
|
||
)
|
||
assert len(out) == 2
|
||
by_path = {rc.document.path: rc for rc in out}
|
||
assert by_path["summary-src.yaml"].is_summary is True
|
||
assert by_path["summary-src.yaml"].position == -1
|
||
assert by_path["other.md"].is_summary is False
|
||
assert all(rc.fts_hit is True for rc in out)
|
||
|
||
|
||
def test_fuse_keeps_is_summary_on_double_hit() -> None:
|
||
"""A summary chunk in both lists keeps the flag after fusion."""
|
||
v1 = _rc("s.yaml", cosine=0.9, is_summary=True)
|
||
l1 = _rc("s.yaml", cosine=0.9, is_summary=True) # lexical copy of the same chunk
|
||
l1.chunk_id = v1.chunk_id
|
||
out = fuse([v1], [l1], k=60)
|
||
assert len(out) == 1
|
||
assert out[0].is_summary is True
|
||
assert out[0].fts_hit is True
|
||
assert out[0].score == pytest.approx(2 / 61)
|
||
|
||
|
||
def test_fuse_keeps_is_summary_on_lexical_only_hit() -> None:
|
||
"""A summary-only lexical hit (no vector rank) keeps the flag."""
|
||
out = fuse([], [_rc("s.yaml", is_summary=True)], k=60)
|
||
assert len(out) == 1
|
||
assert out[0].is_summary is True
|
||
assert out[0].fts_hit is True
|
||
assert out[0].cosine == 0.0
|
||
|
||
|
||
def test_fuse_default_is_summary_stays_false_for_legacy_chunks() -> None:
|
||
"""Neither list flagged ⇒ fusion never invents a summary flag."""
|
||
out = fuse([_rc("a.md", cosine=0.8)], [_rc("b.md")], k=60)
|
||
assert len(out) == 2
|
||
assert all(rc.is_summary is False for rc in out)
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# Name-hit lexical signal (the 2026-09-05 incident — the versioned-name
|
||
# case the default parser lexes incompatibly: "Qwen 3.8" → qwen/3/8 can
|
||
# never match a document's qwen3/8/27b tokens)
|
||
# ---------------------------------------------------------------------------
|
||
|
||
INCIDENT_QUESTION = "What are the correct llama.cpp arguments for Qwen 3.8?"
|
||
|
||
|
||
def test_normalize_name() -> None:
|
||
assert _normalize_name("Qwen 3.8") == "qwen38"
|
||
assert _normalize_name("qwen3.8-27b-juggernaut-vulkan") == "qwen3827bjuggernautvulkan"
|
||
assert _normalize_name("Mixed CASE-99") == "mixedcase99"
|
||
assert _normalize_name("!!!") == ""
|
||
|
||
|
||
def test_name_hit_tokens_incident_question() -> None:
|
||
"""The incident question yields EXACTLY the versioned join
|
||
``qwen38`` — the token the document names actually carry. Plain
|
||
prose words (``what``, ``llamacpp``, ``arguments``, ``server`` —
|
||
no digit) never name-match (the precision guard); the single
|
||
digits ("3", "8") and the bare "38" are < 4 chars; the
|
||
digit-leading ``38show`` boundary artifact is dropped."""
|
||
tokens = name_hit_tokens(INCIDENT_QUESTION)
|
||
assert tokens == ["qwen38"]
|
||
for absent in ("what", "qwen", "llamacpp", "arguments", "3", "8", "38", "38show", "server"):
|
||
assert absent not in tokens
|
||
|
||
|
||
def test_name_hit_tokens_no_digit_question_returns_empty() -> None:
|
||
"""A question with no digit-bearing token (bare or joined) yields
|
||
no name candidates — prose joins like ``correctllama`` never count."""
|
||
assert name_hit_tokens("what is the correct caddy config") == []
|
||
assert name_hit_tokens("a e i o u 3 8") == []
|
||
|
||
|
||
def test_name_hit_tokens_bare_digit_bearing_token() -> None:
|
||
"""A single written token that carries a digit (``1panel``) is a
|
||
name candidate on its own — no join needed."""
|
||
tokens = name_hit_tokens("what is my 1panel dashboard setup")
|
||
assert tokens == ["1panel"]
|
||
|
||
|
||
def _name_row(doc: Document) -> tuple:
|
||
"""One row of the name-hit document projection (catalog order)."""
|
||
return (doc.id, doc.source, doc.path, doc.title)
|
||
|
||
|
||
def _name_hit_lateral_row(doc: Document, is_summary: bool = False) -> SimpleNamespace:
|
||
"""One row of the name-hit LATERAL chunk query."""
|
||
return SimpleNamespace(
|
||
doc_id=doc.id,
|
||
source=doc.source,
|
||
path=doc.path,
|
||
full_path=doc.full_path,
|
||
title=doc.title,
|
||
doc_content=doc.content,
|
||
content_hash=doc.content_hash,
|
||
indexed_at=None,
|
||
created_at=None,
|
||
chunk_id=uuid.uuid4(),
|
||
position=-1 if is_summary else 0,
|
||
content="summary chunk" if is_summary else "content chunk",
|
||
is_summary=is_summary,
|
||
)
|
||
|
||
|
||
def test_name_hit_chunks_no_tokens_skips_all_queries() -> None:
|
||
"""A question with no name tokens issues no queries at all."""
|
||
session = _FakeSession([]) # any call would surface a statement
|
||
assert _name_hit_chunks(session, "a e i o u 3 8") == [] # pyright: ignore[reportArgumentType]
|
||
assert session.statements == []
|
||
|
||
|
||
def test_name_hit_chunks_no_matching_doc_returns_empty() -> None:
|
||
"""Name tokens exist but no document name carries one: the
|
||
projection runs, the LATERAL fetch does not."""
|
||
doc = _doc("quadlets/other.container", "body")
|
||
name_rows = [_name_row(doc)]
|
||
session = _FakeSession(name_rows, [])
|
||
assert _name_hit_chunks(session, INCIDENT_QUESTION) == [] # pyright: ignore[reportArgumentType]
|
||
assert len(session.statements) == 1 # projection only — no LATERAL fetch
|
||
|
||
|
||
def test_name_hit_chunks_ranked_by_count_length_catalog() -> None:
|
||
"""A two-candidate question (``qwen38`` + ``1panel``): the document
|
||
whose name carries BOTH (2 matches, 12 total chars) leads; the two
|
||
single-match documents tie on (1, 6) and fall to catalog order
|
||
(``dashboards/1panel-notes.md`` before ``quadlets/qwen3.8…``).
|
||
Hits carry ``fts_hit=True`` (the A8 gate answers), ``cosine=0.0``,
|
||
and the summary flag of their representative chunk."""
|
||
both = _doc("dashboards/1panel-qwen3.8.md", "body", title="1Panel Qwen 3.8")
|
||
panel = _doc("dashboards/1panel-notes.md", "body")
|
||
q38 = _doc("quadlets/qwen3.8-27b-juggernaut-vulkan.container", "body")
|
||
name_rows = [_name_row(d) for d in (panel, both, q38)] # catalog order
|
||
question = "what are the correct llama.cpp arguments for qwen 3.8 and the 1panel dashboard?"
|
||
lateral_rows = [
|
||
_name_hit_lateral_row(q38, is_summary=True), # LATERAL may return any order
|
||
_name_hit_lateral_row(both),
|
||
_name_hit_lateral_row(panel),
|
||
]
|
||
session = _FakeSession(name_rows, lateral_rows)
|
||
out = _name_hit_chunks(session, question) # pyright: ignore[reportArgumentType]
|
||
assert [rc.document.path for rc in out] == [
|
||
"dashboards/1panel-qwen3.8.md", # 2 matched tokens — leads
|
||
"dashboards/1panel-notes.md", # (1, 6) — catalog order
|
||
"quadlets/qwen3.8-27b-juggernaut-vulkan.container", # (1, 6) — after
|
||
]
|
||
assert all(rc.fts_hit is True for rc in out) # the lexical signal
|
||
assert all(rc.cosine == 0.0 for rc in out) # no vector rank
|
||
assert all(rc.score == 0.0 for rc in out) # fuse fills the score
|
||
by_path = {rc.document.path: rc for rc in out}
|
||
assert by_path["quadlets/qwen3.8-27b-juggernaut-vulkan.container"].is_summary is True
|
||
assert by_path["quadlets/qwen3.8-27b-juggernaut-vulkan.container"].position == -1
|
||
assert by_path["dashboards/1panel-notes.md"].is_summary is False
|
||
|
||
|
||
def test_name_hit_chunks_capped_at_limit() -> None:
|
||
"""Twelve tied name hits (one matched token each) yield exactly
|
||
``NAME_HIT_LIMIT`` of them — catalog order (the deterministic
|
||
tie-break)."""
|
||
docs = [_doc(f"quadlets/m{i:02d}.container", "body") for i in range(12)]
|
||
for d in docs: # give every document a name that carries the token
|
||
d.title = "qwen38 model i"
|
||
name_rows = [_name_row(d) for d in docs]
|
||
# Only the ten winners (catalog order — the deterministic tie-break
|
||
# of the twelve identical scores) reach the LATERAL fetch; the fake
|
||
# answers with exactly those rows.
|
||
lateral_rows = [_name_hit_lateral_row(d) for d in docs[:NAME_HIT_LIMIT]]
|
||
session = _FakeSession(name_rows, lateral_rows)
|
||
out = _name_hit_chunks(
|
||
session, "tell me about the qwen 3.8 models" # pyright: ignore[reportArgumentType]
|
||
)
|
||
assert len(out) == NAME_HIT_LIMIT
|
||
assert [rc.document.path for rc in out] == [f"quadlets/m{i:02d}.container" for i in range(10)]
|
||
|
||
|
||
def test_lexical_candidates_name_hits_lead_and_dedupe_with_fts() -> None:
|
||
"""The full lexical list: name hits LEAD (their representative
|
||
chunks), the FTS rows follow, and an FTS row sharing the name hit's
|
||
chunk id appears exactly once (deduped)."""
|
||
q38 = _doc("quadlets/qwen3.8-27b-juggernaut-vulkan.container", "body")
|
||
other = _doc("quadlets/qwen38-other.container", "body") # 1 matched token
|
||
name_rows = [_name_row(q38), _name_row(other)]
|
||
q38_chunk = uuid.uuid4()
|
||
|
||
def _lateral(doc: Document) -> SimpleNamespace:
|
||
row = _name_hit_lateral_row(doc)
|
||
if doc is q38:
|
||
row.chunk_id = q38_chunk
|
||
return row
|
||
|
||
lateral_rows = [_lateral(q38), _lateral(other)]
|
||
fts_rows = [
|
||
# an FTS hit on the SAME chunk as the q38 name hit (deduped away)
|
||
SimpleNamespace(
|
||
chunk_id=q38_chunk, position=1, content="c", doc_id=q38.id,
|
||
source=q38.source, path=q38.path, full_path=q38.full_path,
|
||
title=q38.title, doc_content=q38.content, content_hash=q38.content_hash,
|
||
indexed_at=None, created_at=None, is_summary=False, rank=0.1,
|
||
),
|
||
# an FTS hit on a different chunk of the OTHER doc (kept)
|
||
_lexical_row(False, "quadlets/qwen38-other.container"),
|
||
]
|
||
session = _FakeSession(name_rows, lateral_rows, fts_rows)
|
||
out = _lexical_candidates(session, INCIDENT_QUESTION, limit=10) # pyright: ignore[reportArgumentType]
|
||
assert len(out) == 3 # q38 (once), other (name hit), other (FTS chunk)
|
||
# Both name hits tie on (1, 6) — catalog order: "qwen3." (ASCII 46)
|
||
# sorts before "qwen38" (ASCII 56).
|
||
assert out[0].document.path == "quadlets/qwen3.8-27b-juggernaut-vulkan.container"
|
||
assert out[1].document.path == "quadlets/qwen38-other.container"
|
||
assert out[0].chunk_id == q38_chunk # the name-hit representative row
|
||
assert {
|
||
rc.chunk_id for rc in out
|
||
} == {q38_chunk, fts_rows[1].chunk_id, lateral_rows[1].chunk_id}
|
||
assert all(rc.fts_hit is True for rc in out)
|