420 lines
20 KiB
Python
420 lines
20 KiB
Python
"""Subbaustein-Qualität: Varianten-Konsens, Seed-Garantie, Nachfass, Outline-Review."""
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import json
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import re
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import numpy as np
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import pytest
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import blocks as blx
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from pipeline import GenContext
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TOPIC = "t"
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_MD_PATH = re.compile(r"(/\S+\.md)")
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# ── _variant_clusters (pure) ─────────────────────────────────────────────────────────
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def _sims(pairs, n):
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m = np.eye(n)
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for i, j, v in pairs:
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m[i][j] = m[j][i] = v
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return m
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def test_variant_clusters_folds_paraphrases():
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titles = ["Harte Umbrüche brauchen Marker", "Harte Umbrüche erfordern explizite Marker!",
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"Tabs werden expandiert"]
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cl = blx._variant_clusters(titles, [1, 1, 1], _sims([(0, 1, 0.95)], 3))
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by_rep = {c["rep"]: c for c in cl}
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assert by_rep[1]["mentions"] == 2 and sorted(by_rep[1]["members"]) == [0, 1] # longest wins
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assert by_rep[2]["mentions"] == 1
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def test_variant_clusters_negation_guard():
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titles = ["Fenced können Absätze unterbrechen", "Fenced können Absätze nicht unterbrechen"]
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cl = blx._variant_clusters(titles, [1, 1], _sims([(0, 1, 0.95)], 2))
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assert len(cl) == 2 # antonyms never merge, no matter the cosine
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# ── _subblocks_block integration (fake race + fake embeddings) ──────────────────────
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def _fake_sims(texts):
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"""Markertoken matrix: same first word → 0.95, else 0."""
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n = len(texts)
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m = np.eye(n)
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key = lambda t: t.split()[0].casefold()
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for i in range(n):
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for j in range(n):
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if i != j and key(texts[i]) == key(texts[j]):
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m[i][j] = 0.95
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return m
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def _mk_race(finder_by_agent):
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"""Key-routed _race fake. Finder round 1 → scripted per-agent subs; later finder and
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catch-up rounds → nothing; clarify judges echo the consensus lines from their prompt."""
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prompts = []
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async def fake_race(topic, label, slots, quorum, timeout, provider, on_update=None,
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cancelled=None, *, grace=None, min_runtime=None, max_runtime=None):
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outs = []
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for slot in slots:
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key, prompt = slot["key"], slot["prompt"]
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prompts.append((key, prompt))
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fake_race.slots_seen.append(slot)
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if "-subblock-final-" in key:
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# no-tool judges reply as TEXT; the payload sink writes the j-file itself
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kons = re.search(r"Konsens \(≥2 finders\):\n(.*?)\nUnsicher", prompt, re.S)
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subs = [l[2:] for l in (kons.group(1).splitlines() if kons else [])
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if l.startswith("- ") and l != "- (keiner)"]
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if subs:
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text = "<!-- block: Alpha -->\n" + "\n".join(f"- {s}" for s in subs)
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outs.append(slot["payload"]((0, text, "")))
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continue
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if "-r1-" in key:
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agent = int(key.rsplit("-", 1)[1])
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subs = finder_by_agent.get(agent) or []
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if subs and (m := _MD_PATH.search(prompt)):
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text = "<!-- block: Alpha -->\n" + "\n".join(f"- {s}" for s in subs)
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with open(m.group(1), "w", encoding="utf-8") as f:
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f.write(text)
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outs.append(slot["payload"](None))
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outs = [o for o in outs if o]
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return outs or None
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fake_race.slots_seen = []
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return fake_race, prompts
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@pytest.fixture
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def sub_env(testdb, tmp_path, monkeypatch):
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monkeypatch.setattr(blx, "EMBEDDING_AKTIV", True)
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monkeypatch.setattr(blx.embedding, "available", lambda: True)
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monkeypatch.setattr(blx.embedding, "embed_sims", _fake_sims)
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ctx = GenContext(topic=TOPIC, provider="claude", is_cancelled=lambda: False)
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files = {"arbeit": tmp_path}
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return testdb, ctx, files
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async def _run(ctx, files, monkeypatch, finder_by_agent, seeds=None):
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fake, prompts = _mk_race(finder_by_agent)
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monkeypatch.setattr(blx, "_race", fake)
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raw = await blx._subblocks_block(ctx, lambda *a, **k: None, files, {1: "Alpha — Grundkonzept"},
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"", wipe=False, ns="x-", seeds=seeds)
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return raw, prompts
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async def test_variant_consensus_end_to_end(sub_env, monkeypatch):
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"""3 Einzelfunde in 3 Formulierungen → EIN consensus-Repräsentant; Varianten gehen
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nicht als „Unsicher" ins Panel."""
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db, ctx, files = sub_env
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raw, prompts = await _run(ctx, files, monkeypatch, {
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1: ["Umbruch braucht Marker"],
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2: ["Umbruch erfordert explizite Marker!"],
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3: ["Umbruch verlangt zwei Leerzeichen als Marker"],
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})
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assert raw == {"Alpha": ["Umbruch verlangt zwei Leerzeichen als Marker"]} # longest = rep
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rows = await db.list_subblocks(TOPIC, "alpha")
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status = sorted(r["status"] for r in rows)
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assert status == ["consensus", "variant", "variant"]
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clarify_prompts = [p for k, p in prompts if "-subblock-final-" in k]
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assert clarify_prompts and "Umbruch braucht Marker" not in clarify_prompts[0]
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async def test_seed_promotes_single_find(sub_env, monkeypatch):
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"""Seed deckt einen verworfenen Einzelfund lexikalisch → Promotion zu consensus."""
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db, ctx, files = sub_env
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raw, _ = await _run(ctx, files, monkeypatch, {
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1: ["Alpha Grundlagen", "Zeilenumbruch Regeln im Detail"],
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2: ["Alpha Grundlagen"],
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}, seeds=["Zeilenumbruch Regeln"])
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assert "Zeilenumbruch Regeln im Detail" in raw["Alpha"]
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row = next(r for r in await db.list_subblocks(TOPIC, "alpha")
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if r["sub_norm"] == "zeilenumbruch regeln im detail")
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assert row["status"] == "consensus"
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async def test_seed_inserted_when_nothing_found(sub_env, monkeypatch):
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"""Seed ohne jeden Fund wird als eigener consensus-Sub eingefügt (Facts-Gate prüft später)."""
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db, ctx, files = sub_env
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raw, _ = await _run(ctx, files, monkeypatch, {
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1: ["Alpha Grundlagen"], 2: ["Alpha Grundlagen"],
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}, seeds=["Fußnoten Syntax"])
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assert "Fußnoten Syntax" in raw["Alpha"]
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row = next(r for r in await db.list_subblocks(TOPIC, "alpha")
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if r["sub_title"] == "Fußnoten Syntax")
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assert row["status"] == "consensus"
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async def test_seed_covered_no_duplicate(sub_env, monkeypatch):
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"""Seed lexikalisch von einem consensus-Sub abgedeckt → nichts eingefügt."""
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db, ctx, files = sub_env
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raw, _ = await _run(ctx, files, monkeypatch, {
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1: ["Tabs werden zu Leerzeichen expandiert"], 2: ["Tabs werden zu Leerzeichen expandiert"],
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}, seeds=["Tabs"])
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assert raw == {"Alpha": ["Tabs werden zu Leerzeichen expandiert"]}
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async def test_wipe_false_is_idempotent(sub_env, monkeypatch):
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"""Zweiter Karten-Lauf kumuliert keine Mentions (per-Block-Wipe)."""
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db, ctx, files = sub_env
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await _run(ctx, files, monkeypatch, {1: ["Alpha Grundlagen"], 2: ["Alpha Grundlagen"]})
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first = {r["sub_norm"]: r["mentions"] for r in await db.list_subblocks(TOPIC, "alpha")}
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await _run(ctx, files, monkeypatch, {1: ["Alpha Grundlagen"], 2: ["Alpha Grundlagen"]})
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second = {r["sub_norm"]: r["mentions"] for r in await db.list_subblocks(TOPIC, "alpha")}
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assert first == second
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async def test_catchup_adds_and_stops(sub_env, monkeypatch, tmp_path):
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"""Block unter SUBBLOCK_MIN: Nachfass-Runde findet Neues → eigenes Final-File,
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Konsens wächst; zweite Runde ohne Neues → Ende."""
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db, ctx, files = sub_env
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fake, prompts = _mk_race({1: ["Alpha Grundlagen"], 2: ["Alpha Grundlagen"]})
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base = fake
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hit = {"n": 0}
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async def with_catchup(topic, label, slots, *a, **k):
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if any("-subblock-x" in s["key"] for s in slots):
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hit["n"] += 1
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if hit["n"] == 1: # first catch-up round: both agents agree on one new sub
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for slot in slots[:2]:
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m = _MD_PATH.search(slot["prompt"])
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with open(m.group(1), "w", encoding="utf-8") as f:
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f.write("<!-- block: Alpha -->\n- Vertiefung der Konzepte")
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return [slot["payload"](None) for slot in slots[:2]]
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return None
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return await base(topic, label, slots, *a, **k)
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monkeypatch.setattr(blx, "_race", with_catchup)
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raw = await blx._subblocks_block(ctx, lambda *a, **k: None, files, {1: "Alpha — Grundkonzept"},
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"", wipe=False, ns="x-")
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assert set(raw["Alpha"]) == {"Alpha Grundlagen", "Vertiefung der Konzepte"}
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assert (tmp_path / "subblock-final-c1-x1.md").exists()
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assert hit["n"] == 2 # round 2 ran, found nothing, loop ended
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# ── Outline-Review ───────────────────────────────────────────────────────────────────
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def test_outline_review_schema():
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valid = {1, 2, 3, 4, 5, 6}
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ok = blx._outline_review_schema({"moves": {"3": 2}}, valid, 2, 6)
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assert ok == {3: 2}
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assert blx._outline_review_schema({"moves": {}}, valid, 2, 6) == {}
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assert blx._outline_review_schema({"moves": {"9": 1}}, valid, 2, 6) is None # unknown block
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assert blx._outline_review_schema({"moves": {"1": 5}}, valid, 2, 6) is None # chapter range
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assert blx._outline_review_schema({"moves": {"1": 2, "2": 2, "3": 2}}, valid, 2, 6) is None # mass move
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assert blx._outline_review_schema({"chapters": []}, valid, 2, 6) is None
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async def test_outline_review_moves_block(testdb, tmp_path, monkeypatch):
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"""Review verschiebt einen fehlplatzierten Block; kaputtes Review lässt den Plan unverändert."""
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entries = {i: f"Block {i} — d" for i in range(1, 7)}
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slots = [tmp_path / f"outline-{i}.json" for i in (1, 2, 3)]
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plan_a = {"chapters": [{"title": "K1", "numbers": [1, 2, 6]}, {"title": "K2", "numbers": [3, 4, 5]}]}
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for p in slots[:2]:
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p.write_text(json.dumps(plan_a), encoding="utf-8")
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files = {"arbeit": tmp_path, "outline": tmp_path / "outline.json", "outline_slots": slots,
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"facts": tmp_path / "facts.json"}
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review_out = {"val": {"moves": {"6": 2}}}
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async def fake_slot(ctx, label, *, key, prompt, role, capabilities, payload, timeout, on_line=None):
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out = None
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if key.endswith("outline-prereqs"):
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out = {"prereqs": {}}
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elif key.endswith("outline-judge"):
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out = plan_a
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elif key.endswith("outline-review"):
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out = review_out["val"]
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if out is not None:
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m = re.search(r"(/\S+\.json)", prompt)
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with open(m.group(1), "w", encoding="utf-8") as f:
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json.dump(out, f)
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return "ok", payload(None)
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monkeypatch.setattr(blx, "run_single_slot", fake_slot)
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ctx = GenContext(topic=TOPIC, provider="claude", is_cancelled=lambda: False)
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plan = await blx._outline_block(ctx, lambda *a, **k: None, files, entries, "")
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assert plan["chapters"][0]["numbers"] == [1, 2]
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assert plan["chapters"][1]["numbers"] == [3, 4, 5, 6]
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# broken review (mass move) → schema rejects, plan unchanged
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review_out["val"] = {"moves": {"1": 2, "2": 2, "3": 1}}
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(tmp_path / "outline-review.json").unlink()
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(tmp_path / "outline.json").unlink()
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plan2 = await blx._outline_block(ctx, lambda *a, **k: None, files, entries, "")
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assert plan2["chapters"][0]["numbers"] == [1, 2, 6]
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async def test_paraphrase_saturation_stops_early(sub_env, monkeypatch):
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"""Runde 2 liefert nur eine Paraphrase → zählt nicht als neu, Schleife endet ohne r3.
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Die Paraphrase liegt trotzdem in der DB (Mention fürs Cluster-Voting)."""
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db, ctx, files = sub_env
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base_fake, prompts = _mk_race({1: ["Umbruch braucht Marker"], 2: ["Umbruch braucht Marker"]})
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async def with_r2(topic, label, slots, *a, **k):
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if any("-r2-" in s["key"] for s in slots):
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outs = []
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for slot in slots[:2]:
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m = _MD_PATH.search(slot["prompt"])
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with open(m.group(1), "w", encoding="utf-8") as f:
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f.write("<!-- block: Alpha -->\n- Umbruch erfordert explizite Marker!")
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outs.append(slot["payload"](None))
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return outs
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return await base_fake(topic, label, slots, *a, **k)
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monkeypatch.setattr(blx, "_race", with_r2)
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raw = await blx._subblocks_block(ctx, lambda *a, **k: None, files, {1: "Alpha — Grundkonzept"},
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"", wipe=False, ns="x-")
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assert raw["Alpha"] # Konsens steht
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assert not any("-r3-" in k for k, _ in prompts) # Paraphrase hielt die Schleife NICHT am Leben
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rows = await db.list_subblocks(TOPIC, "alpha")
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assert any(r["sub_title"] == "Umbruch erfordert explizite Marker!" for r in rows)
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async def test_round_cap_stops_endless_finders(sub_env, monkeypatch):
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"""Jede Runde ein echt neues Konzept → hartes Cap stoppt bei SUBBLOCK_MAX_ROUNDS."""
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db, ctx, files = sub_env
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_, prompts = _mk_race({})
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async def endless(topic, label, slots, *a, **k):
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if "-subblock-final-" in slots[0]["key"]:
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return None # panel fails → consensus fallback
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outs = []
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import re as _re
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rn = _re.search(r"-r(\d+)-", slots[0]["key"])
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n = rn.group(1) if rn else "x"
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for slot in slots[:2]:
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m = _MD_PATH.search(slot["prompt"])
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with open(m.group(1), "w", encoding="utf-8") as f:
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f.write(f"<!-- block: Alpha -->\n- Konzept{n} ist eigenständig")
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prompts.append((slot["key"], slot["prompt"]))
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outs.append(slot["payload"](None))
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return outs
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monkeypatch.setattr(blx, "_race", endless)
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await blx._subblocks_block(ctx, lambda *a, **k: None, files, {1: "Alpha — Grundkonzept"},
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"", wipe=False, ns="x-")
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max_round = max(int(k.split("-r")[1].split("-")[0]) for k, _ in prompts if "-r" in k and "-subblock-c" in k)
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assert max_round == blx.SUBBLOCK_MAX_ROUNDS
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# ── Inline-Evidenz für Judges (Token-Umbau) ──────────────────────────────────────────
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def _corpus(tmp_path):
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d = tmp_path / "korpus"
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d.mkdir()
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(d / "Skript.txt").write_text(
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"Kapitel 1\nAlpha Grundlagen: der Kernbegriff.\nMehr Text dazu.\n\n"
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"Kapitel 2\nGamma Randnotiz ohne Bezug.\n", encoding="utf-8")
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(d / "Aufgaben.txt").write_text("Übung 1\nAlpha Vertiefung der Konzepte.\n", encoding="utf-8")
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return d
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def test_evidence_pack_selects_matching_sections(tmp_path):
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d = _corpus(tmp_path)
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pack = blx._evidence_pack(d, None, ["Alpha Grundlagen"])
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assert "── Skript.txt" in pack and "Kernbegriff" in pack
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pack2 = blx._evidence_pack(d, ["Aufgaben.txt"], ["Alpha"]) # genannte Quellen engen ein
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assert "Skript.txt" not in pack2 and "Aufgaben.txt" in pack2
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assert blx._evidence_pack(None, None, ["x"]) == "" # kein Korpus → Selbst-Recherche bleibt
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def test_evidence_pack_budget_and_guarantee(tmp_path):
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d = tmp_path / "korpus"
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d.mkdir()
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(d / "A.txt").write_text("Alpha wichtig. " * 50, encoding="utf-8")
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(d / "B.txt").write_text("Beta anderes Thema. " * 50, encoding="utf-8")
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pack = blx._evidence_pack(d, None, ["Alpha"], budget=10)
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assert "Alpha" in pack # Abdeckungs-Garantie schlägt das Budget
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assert "Beta" not in pack # Top-up respektiert das Budget
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def test_cite_ref_parses_positions(tmp_path):
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d = _corpus(tmp_path)
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files = blx._corpus_files(d, None)
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f, lo, hi = blx._cite_ref("Skript.txt, Übung 6.47, Z.2-3", files)
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assert f.name == "Skript.txt" and (lo, hi) == (2, 3)
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f2, lo2, hi2 = blx._cite_ref("Aufgaben.txt Zeile 2", files)
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assert f2.name == "Aufgaben.txt" and lo2 == hi2 == 2
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assert blx._cite_ref("Skript.txt, Übung 6.47", files) is None # keine Zeilenangabe
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assert blx._cite_ref("Z.5 irgendwo", files) is None # keine Datei
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# englische Zitierformen (Quellen sind nicht immer deutsch)
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f3, lo3, hi3 = blx._cite_ref("Skript.txt, line 2", files)
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assert f3.name == "Skript.txt" and lo3 == hi3 == 2
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f4, lo4, hi4 = blx._cite_ref("Aufgaben.txt, lines 1-2", files)
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assert f4.name == "Aufgaben.txt" and (lo4, hi4) == (1, 2)
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def test_cited_evidence_lines_and_fallback(tmp_path):
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d = _corpus(tmp_path)
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ev = blx._cited_evidence(d, None, ["Skript.txt, Z.2"], ["Alpha"])
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assert "── Skript.txt · Z." in ev and "Kernbegriff" in ev
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ev2 = blx._cited_evidence(d, None, ["ohne Position"], ["Alpha Grundlagen"])
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assert "Kernbegriff" in ev2 # Keyword-Fallback
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def test_sink_json_writes_only_valid(tmp_path):
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p = tmp_path / "level-final-c1.json"
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ok = blx._sink_json((0, 'Vorab {"levels": {"1": "beginner"}} nach', ""), p,
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lambda d: blx._levels_schema(d, {1}))
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assert ok == {1: "beginner"}
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assert json.loads(p.read_text(encoding="utf-8"))["levels"]["1"] == "beginner"
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bad = blx._sink_json((0, "kein json", ""), tmp_path / "x.json", lambda d: d)
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assert bad is None and not (tmp_path / "x.json").exists()
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async def test_clarify_inline_evidence_no_tools(sub_env, monkeypatch, tmp_path):
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"""Mit Korpus: Judges bekommen Auszüge inline und laufen ohne Tools (Text-Antwort);
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die j-Datei schreibt die Engine. Finder bleiben unverändert bei capabilities=files."""
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db, ctx, files = sub_env
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d = _corpus(tmp_path)
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monkeypatch.setattr(blx, "source_folder", lambda t: d)
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monkeypatch.setattr(blx, "load_source", lambda t: {"type": "uni"})
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fake, prompts = _mk_race({1: ["Alpha Grundlagen"], 2: ["Alpha Grundlagen"]})
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monkeypatch.setattr(blx, "_race", fake)
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raw = await blx._subblocks_block(ctx, lambda *a, **k: None, files, {1: "Alpha — Grundkonzept"},
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"", wipe=False, ns="x-", sources=["Skript.txt"])
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assert raw == {"Alpha": ["Alpha Grundlagen"]}
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judges = [s for s in fake.slots_seen if "-subblock-final-" in s["key"]]
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finders = [s for s in fake.slots_seen if "-r1-" in s["key"]]
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assert judges and all(s["capabilities"] == "none" for s in judges)
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assert "── Skript.txt" in judges[0]["prompt"]
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assert "ls/find" not in judges[0]["prompt"] # keine Selbst-Recherche-Anweisung mehr
|
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assert finders and all(s["capabilities"] == "files" for s in finders)
|
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assert list(tmp_path.glob("subblock-final-*-j*.md")) # Engine persistiert die Judge-Antwort
|
|
|
|
|
|
async def test_facts_check_inline_cited_evidence(sub_env, monkeypatch, tmp_path):
|
|
"""Facts-Check: zitierte Zeilenbereiche gehen inline mit, Judge läuft ohne Tools,
|
|
die Check-Datei schreibt die Engine aus der Text-Antwort."""
|
|
db, ctx, files = sub_env
|
|
d = _corpus(tmp_path)
|
|
facts = {"facts": [{"block": "Alpha", "subblock": "Sub Eins", "key_points": ["k"],
|
|
"prerequisites": "", "hurdles": "",
|
|
"cited_facts": [{"text": "T", "source": "Skript.txt, Z.2"}],
|
|
"example_idea": ""}]}
|
|
|
|
async def fake_slot(ctx2, label, *, key, prompt, role, capabilities, payload, timeout, on_line=None):
|
|
if "-facts-erg-" in key:
|
|
return blx.FAILED, None
|
|
(tmp_path / "facts-c0.json").write_text(json.dumps(facts), encoding="utf-8")
|
|
return blx.OK, None
|
|
|
|
seen = []
|
|
|
|
async def fake_agent(key, prompt, timeout, provider="", role="", capabilities="", scope=None, label="", **kw):
|
|
seen.append((key, capabilities, prompt))
|
|
return (0, '{"ok": true}', "")
|
|
|
|
monkeypatch.setattr(blx, "run_single_slot", fake_slot)
|
|
monkeypatch.setattr(blx, "run_agent", fake_agent)
|
|
res = await blx._facts_block(ctx, lambda *a, **k: None, {"arbeit": tmp_path},
|
|
{"Alpha": ["Sub Eins"]}, {"type": "uni"}, d, "", ns="x-")
|
|
assert res is not None
|
|
facts_map, discarded = res
|
|
assert "Alpha" in facts_map and not discarded
|
|
assert len(seen) == blx.FACTS_CHECK_PANEL
|
|
key, caps, prompt = seen[0]
|
|
assert caps == "none" and "── Skript.txt · Z." in prompt
|
|
assert (tmp_path / "facts-check-c0-j1.json").exists() # Engine persistiert die Antwort
|