Everything is verified green. Final report: **Phase 106 — Document dates (final verification pass; all 10 tasks already complete)** - Verified all phase artifacts: alembic `0020` (dev DB at `0020`), `doc_dates.py`, git `file_commit_dates`, importer `doc_dates_by_root`/`dates_updated`, both entry-point wirings, date APIs + tree `created_at`/`updated_at`, LLM surfaces (prompt block, `read` line 2, appended `ls` field), `apply_recency_boost` in `retrieve()`, UI columns/badge, admin editor, mock-LLM regex — all present and correct; no defects found, no fixes needed. - `uv run pytest --cov=app --cov-report=term-missing` → **2299 passed, TOTAL 99%** (>90% ✓) - `uv run pytest tests/e2e/test_document_dates.py -v --no-cov` → **6/6 passed** in isolation (DB up) - 12 regression E2E suites (retrieval_quality, whole_document_context, agent_document_tools, ls_tree_drilldown, read_truncation_cap, kb_tree, kb_tree_nav, document_viewer, edit_summaries, import_documents, sync_button, hidden_folders_toggle, smoke) → **all green in isolation** - `uv run ruff check .` → clean; `uv run pyright` → **0 errors, 0 warnings** **Completion criteria:** 1) non-null `created_at` + 0020 upgrade/downgrade on dev DB ✓ (real-Alembic integration tests) 2) sync refresh/older/manual-persists/content-reset/no sources_meta bump ✓ 3) zip/tar mtime + future→today ✓ 4) LLM date surfaces + cross-check ✓ 5) UI Created/Updated/badge positions ✓ 6) admin editor set+revert round-trip ✓ 7) old-correct-beats-new-similar (defaults & boost-off) + near-tie + `BOR_RECENCY_BOOST=0` byte-identical ✓ 8) full gate ✓ 9) commit/phase-move — left to harness per instructions. - **Notable:** recency default tuned 0.001 → **0.0007** (task 07 step 5 explicitly permits; measured margins recorded in `test_recency_boost.py` docstring). - **Next pending phase:** none — `todo/` holds only this phase.
496 lines
20 KiB
Python
496 lines
20 KiB
Python
"""The 2026-09-05 incident E2E (Playwright, mock-only): the
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grep-regex-teaching self-correction loop through the real UI.
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Context: the sample question "What are the correct llama.cpp arguments
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for Qwen 3.8?" failed repeatedly against the live KB. The harness
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prior is that ``grep(pattern)`` takes a REGEX (pi.dev's grep, ripgrep,
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grep itself); this app's grep is a case-insensitive fixed substring
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(owner-locked A5 — the contract does not change). A regex-shaped
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first grep (``qwen.*3\\.8``) can therefore NEVER match, and the bare
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"no matches" result made the turbo model trust the miss and end the
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turn with a wrong "I searched the entire knowledge base" refusal.
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The fix under test (``app.rag.agent``): a no-match for a regex-shaped
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pattern is the TEACHING line (``NO_MATCHES_REGEX`` /
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``NO_MATCHES_REGEX_SCOPED``) — the plain-substring contract stated,
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the ``plain_form`` retry hint handed over — so the model self-corrects
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in one round.
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Run in isolation (DB must be up: ``podman compose up -d db``):
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uv run pytest tests/e2e/test_grep_regex_teaching.py -v --no-cov
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MOCK-ONLY suite: ``E2E_REAL_LLM=1`` is not supported — the gate is the
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deterministic GREP-TEACH flow in ``tests/e2e/mock_llm.py``
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(``GREP_TEACH_TRIGGER`` — "what are the correct llama.cpp arguments"
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— + the HIGH prompt's ``<tools>`` section): the incident's regex-
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shaped first grep (``grep`` with ``{"pattern": "qwen.*3\\.8"}``, id
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``call_0``) → the agent's TEACHING no-match line (the mock's plain
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step keys on the marker ``grep matches a plain substring``) → the
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plain-form retry (``grep`` with ``{"pattern": "qwen3.8"}``, id
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``call_1``) → the match → the ``read`` of the first match line's
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document (id ``call_2``) → the deterministic echo answer.
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KB fixture (TRUNCATE-then-seed, house pattern): ONE source with TWO
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documents of known ``source``/``path``/``title`` (catalog order =
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``(source, path)``, so the first match line is deterministic):
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* ``Homelab/llama-server-args.md`` — the CATALOG-FIRST document,
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indexed WITHOUT chunks (catalog-only; never in the retrieval
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context, so the flow's ``read`` of it is NOT deduped as
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already-in-context). It carries the literal line the plain grep
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finds (``qwen3.8-27b`` — NOT the regex-shaped ``qwen.*3\\.8``,
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which can never match a fixed-substring grep) and the search-flow
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sentinel line (the no-regression turn). Its FIRST line is longer
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than 80 chars, so the mock's first-80-chars quote stays
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newline-free.
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* ``Homelab/ai-stack-notes.md`` — the retrievable document: one chunk
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whose embedding is the mock's own bag-of-words vector (the trigger
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question cosines well past the E2E 0.30 threshold → grounded, the
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``<tools>`` section rides along). It carries NO ``qwen3.8`` line
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(the plain grep's match is the catalog-first document alone) and
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its name carries no name-hit token (it stays the vector seed only).
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Test → phase mapping (Playwright Mapping Rule):
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1. ``test_regex_grep_self_corrects_to_plain_form`` — the grounded
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GREP-TEACH turn: the turn settles (composer re-enables, ``done``
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observed), the answer bubble carries the read document's echo
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(``Read Homelab/llama-server-args.md. <first 80 chars>``), the UI
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shows the three tool lines (two ``Searching for`` lines + the
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``Reading`` line), and no error banner. Wire level: the ``tool``
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frames arrive in order — ``grep`` ``qwen.*3\\.8`` → ``grep``
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``qwen3.8`` → ``read`` the combined identity — and there is NO
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fourth ``tool`` frame (the loop ended in one correction, not at
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the round cap).
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2. ``test_plain_search_flow_not_swallowed_by_new_trigger`` — in the
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SAME session, the GREP-TEACH turn settles and a follow-up question
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carrying ``SEARCH_TRIGGER`` still settles with the search flow's
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``Found …`` answer (the new flow did not swallow the existing
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trigger).
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"""
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from __future__ import annotations
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import hashlib
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import json
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import re
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import time
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from datetime import UTC, datetime
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from pathlib import Path
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from playwright.sync_api import Page, expect
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from sqlalchemy import text
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from sqlalchemy.orm import Session
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from app.db import SessionLocal
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from app.models import Chunk, Document
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from e2e.auth_helpers import login
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from tests.e2e.mock_llm import (
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GREP_TEACH_MARKER,
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GREP_TEACH_PATTERN,
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GREP_TEACH_PLAIN,
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GREP_TEACH_TRIGGER,
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SEARCH_PATTERN,
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SEARCH_TRIGGER,
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embed_text,
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)
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REPO = Path(__file__).resolve().parents[2]
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# --------------------------------------------------------------------------
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# The one-source, two-document fixture (see the module docstring)
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# --------------------------------------------------------------------------
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SEED_SOURCE = "Homelab"
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DOC1_PATH = "llama-server-args.md"
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DOC1_TITLE = "Llama Server Args"
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DOC1_SP = f"{SEED_SOURCE}/{DOC1_PATH}"
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DOC2_PATH = "ai-stack-notes.md"
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DOC2_TITLE = "AI Stack Notes"
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DOC2_SP = f"{SEED_SOURCE}/{DOC2_PATH}"
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#: The catalog-first document (catalog order = (source, path) — DOC1
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#: sorts before DOC2): the plain grep's ONLY match, and the document
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#: the flow reads (so it must NOT be the seed — a seed read dedupes to
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#: "Already in your context.", which the mock flow does not model).
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#: Indexed WITHOUT chunks: catalog-only, never in the retrieval
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#: context. Line 1 (the read quote) is >80 chars and newline-free; it
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#: carries the literal ``qwen3.8-27b`` text (NEVER the regex-shaped
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#: ``qwen.*3\.8`` — that is the whole point of the incident).
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DOC1_CONTENT = (
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"The llama.cpp server launch line for the qwen3.8-27b juggernaut "
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"deployment pins the sampling and speculative-decoding flags.\n"
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"Server command (verbatim): --port 8000 -ctk q8_0 -ctv q8_0 "
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"--kv-unified -fa on --n-gpu-layers all --jinja.\n"
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"Model file: /models/qwen3.8-27b/Qwen3.8-27B-UD-Q6_K.gguf with "
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"the mmproj-BF16.gguf projector and the custom jinja template.\n"
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f"Regression sentinel line: {SEARCH_PATTERN} must stay findable "
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"by the plain search flow.\n"
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)
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assert "\n" not in DOC1_CONTENT[:63] # the read quote's content part stays one line
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assert GREP_TEACH_PLAIN in DOC1_CONTENT # the plain grep matches DOC1
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assert GREP_TEACH_PATTERN not in DOC1_CONTENT # the regex never matches
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assert GREP_TEACH_MARKER not in DOC1_CONTENT # the marker stays tool-side
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#: The retrievable document (the grounded seed context): repeated lines
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#: carry the trigger question's key tokens (llama, cpp, arguments,
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#: qwen) — well past the E2E 0.30 cosine threshold — but NO literal
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#: ``qwen3.8`` line (the plain grep's match stays DOC1 alone) and the
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#: name carries no name-hit token (the seed stays the vector side
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#: only). FIRST line >80 chars, newline-free (the seed context stays
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#: one clean line).
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DOC2_CONTENT = (
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"Notes on the self-hosted ai stack: the llama cpp server arguments "
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"for every qwen model are kept next to the quadlet files.\n"
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+ (
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"The llama cpp server arguments — sampling, context, kv cache "
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"quantization — are documented per model in the quadlet notes.\n"
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)
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* 10
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+ "\n## Server notes\n\n"
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"Every qwen deployment shares the same llama cpp sampling "
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"defaults; the per-model file overrides the speculative flags.\n"
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)
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assert "\n" not in DOC2_CONTENT[:80]
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assert GREP_TEACH_PLAIN not in DOC2_CONTENT # the match stays DOC1 alone
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#: Carries ``GREP_TEACH_TRIGGER`` (the incident's sample question,
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#: near-verbatim) and nothing else — no other mock marker.
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GREP_TEACH_QUESTION = (
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"What are the correct llama.cpp arguments for Qwen 3.8? Show me "
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"the exact server launch line from my notes."
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)
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assert GREP_TEACH_TRIGGER in GREP_TEACH_QUESTION.lower()
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for _other in (
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"use your tools",
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"read two documents",
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"search your documents",
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"list the files in this directory",
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"emit raw tool markup",
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"always emit raw tool markup",
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"show me a table",
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"think in paragraphs",
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"think out loud then hesitate",
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"think out loud",
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"show the end of your notes",
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"write a long answer",
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"fail then answer",
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"always fail",
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"embed fail once",
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"pretend to think slowly",
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):
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assert _other not in GREP_TEACH_QUESTION.lower(), _other
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#: Carries ``SEARCH_TRIGGER`` (the phase-68 search flow) and nothing
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#: else — the no-regression follow-up question in the same session.
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SEARCH_QUESTION = (
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"Search your documents for the reese-sentinel-42 marker and tell "
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"me the line that carries it."
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)
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assert SEARCH_TRIGGER in SEARCH_QUESTION.lower()
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for _other in (
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GREP_TEACH_TRIGGER,
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"use your tools",
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"read two documents",
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"list the files in this directory",
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"emit raw tool markup",
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"always emit raw tool markup",
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"show me a table",
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"think in paragraphs",
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"think out loud then hesitate",
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"think out loud",
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"show the end of your notes",
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"write a long answer",
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"fail then answer",
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"always fail",
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"embed fail once",
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"pretend to think slowly",
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):
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assert _other not in SEARCH_QUESTION.lower(), _other
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#: The mock's deterministic read echo (the read document reached the
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#: model and landed in the answer) — the flow reads DOC1 (the plain
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#: grep's first — only — match line). Phase 106 (D5): the read result's
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#: ``date:`` SECOND line rides into the first-80-chars quote — the
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#: date line (the fixture's fixed ``created_at`` UTC date part, 17
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#: chars; its trailing newline renders as a markdown soft break — no
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#: text between the date and the content) + the first 63 content chars
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#: (80 − 17).
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READ_ANSWER_PREFIX = f"Read {DOC1_SP}."
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READ_ANSWER_QUOTE = "date: 2024-06-15" + DOC1_CONTENT[:63]
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def _seed_fixture(db: Session) -> None:
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"""The one-source, two-document fixture (see the module docstring).
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DOC1 (catalog-first, the grep match, the read target) is indexed
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WITHOUT chunks; DOC2 carries the single chunk (the mock's own
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embedding → the trigger question cosines well past the E2E 0.30
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threshold → grounded, the ``<tools>`` section rides along).
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"""
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# Phase 106 (D5): explicit dates — byte-stable prompts/quotes (the
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# mock's first-80-chars read quote carries the date line).
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db.add(
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Document(
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source=SEED_SOURCE,
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path=DOC1_PATH,
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full_path=f"/tmp/{DOC1_PATH}",
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title=DOC1_TITLE,
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content=DOC1_CONTENT,
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content_hash=hashlib.sha256(DOC1_CONTENT.encode()).hexdigest(),
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indexed_at=datetime.now(UTC),
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created_at=datetime(2024, 6, 15, tzinfo=UTC),
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)
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)
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doc2 = Document(
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source=SEED_SOURCE,
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path=DOC2_PATH,
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full_path=f"/tmp/{DOC2_PATH}",
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title=DOC2_TITLE,
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content=DOC2_CONTENT,
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content_hash=hashlib.sha256(DOC2_CONTENT.encode()).hexdigest(),
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indexed_at=datetime.now(UTC),
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created_at=datetime(2024, 6, 15, tzinfo=UTC),
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)
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db.add(doc2)
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db.flush()
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db.add(
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Chunk(
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document_id=doc2.id,
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position=0,
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content=DOC2_CONTENT,
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embedding=embed_text(DOC2_CONTENT),
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)
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)
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def _reset_db_fixture() -> None:
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"""Truncate the KB (plus the prompt-shaping tables), then seed the
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one-source, two-document fixture. ``steering_notes`` /
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``kb_overview`` are truncated too, so the HIGH prompt is exactly
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``<relevance>`` + ``<documents>`` + ``<tools>`` — byte-stable
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prompts, byte-stable answers."""
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with SessionLocal() as db:
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db.execute(
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text("TRUNCATE chunks, documents, query_log, steering_notes, kb_overview")
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)
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db.commit()
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_seed_fixture(db)
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db.commit()
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# --------------------------------------------------------------------------
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# Page helpers (the house pattern — cf. test_tool_path_teaching.py)
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# --------------------------------------------------------------------------
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#: Captures the raw SSE ``data:`` payloads of the /api/chat stream
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#: (a response clone read in the background) — wire-level assertions
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#: for the ``tool`` frames, independent of the UI rendering.
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SSE_HOOK = """
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() => {
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if (window.__sseInstalled) return;
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window.__sseInstalled = true;
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window.__sseFrames = [];
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const origFetch = window.fetch;
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window.fetch = async function (...args) {
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const res = await origFetch.apply(this, args);
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try {
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const url = typeof args[0] === 'string' ? args[0] : args[0].url;
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if (url.includes('/api/chat')) {
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res.clone().text().then((bodyText) => {
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for (const block of bodyText.split('\\n\\n')) {
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const line = block.trim();
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if (line.startsWith('data: ')) {
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window.__sseFrames.push(line.slice(6));
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}
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}
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});
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}
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} catch (e) { /* non-clonable responses: ignored */ }
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return res;
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};
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}
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"""
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def _install_sse_hook(page: Page) -> None:
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page.evaluate(SSE_HOOK)
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def _drain_frames(page: Page) -> list[dict]:
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"""One turn's SSE frames: wait for that turn's ``done`` frame, then
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return EVERY frame captured since the last drain (the hook's
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background read appends the whole stream at once after it closes, so
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clearing-and-reading is race-free per turn)."""
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deadline = time.monotonic() + 10.0
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while True:
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raw = page.evaluate(
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"() => { const f = window.__sseFrames || []; "
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"window.__sseFrames = []; return f; }"
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)
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parsed = [json.loads(line) for line in raw if line]
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if any(f.get("type") == "done" for f in parsed):
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return parsed
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if time.monotonic() > deadline:
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raise AssertionError(
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f"SSE hook captured no `done` frame (frames so far: "
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f"{len(parsed)}) — hook install failed?"
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)
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time.sleep(0.05)
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def _tool_frames(frames: list[dict]) -> list[dict]:
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return [f for f in frames if f.get("type") == "tool"]
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def _submit(page: Page, question: str) -> None:
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page.fill("#message-input", question)
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page.click("#send-btn")
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expect(page.locator(".msg.user .bubble").last).to_contain_text(question)
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def _wait_settled(page: Page) -> None:
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"""The turn is complete: answer text in the bubble, button recovered.
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Phase 48: the label assertion carries the settle wait with an
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explicit timeout — the in-flight button is the enabled Stop control
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(never disabled), so ``to_be_enabled`` no longer blocks until the
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turn settles."""
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expect(page.locator(".msg.brain .bubble").last).not_to_have_text("", timeout=30_000)
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expect(page.locator("#send-btn")).to_be_enabled(timeout=30_000)
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expect(page.locator("#send-label")).to_have_text("Send", timeout=30_000)
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def _assert_no_error_banner(page: Page) -> None:
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"""The turn settled through the normal done path — never the red
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role=alert error banner (the KB-offline banner is a separate,
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health-driven state the db_ready fixture keeps away)."""
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banner = page.locator("#kb-banner")
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expect(banner).to_be_hidden()
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expect(banner).not_to_have_attribute("role", "alert")
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expect(banner).not_to_have_class(re.compile(r"is-error"))
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# --------------------------------------------------------------------------
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# 1. The grounded GREP-TEACH turn: the incident's regex-shaped first
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# grep → the teaching no-match line → the plain-form retry → the
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# match → the read → the echo answer — the loop settles in ONE
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# correction (three tool rounds), pinned on the SSE wire
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# --------------------------------------------------------------------------
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def test_regex_grep_self_corrects_to_plain_form(
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page: Page, app_url: str, mock_llm: int, db_ready: None
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) -> None:
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page.set_default_timeout(30_000)
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_reset_db_fixture()
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login(page, app_url, next="/")
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_install_sse_hook(page)
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_submit(page, GREP_TEACH_QUESTION)
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_wait_settled(page)
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# Self-correction: the answer quotes the READ document — the plain
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# grep's match was located, the document reached the model, and the
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# echo landed in the answer (the wrong-deflection end state — no
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# tool success, an "I searched everything" refusal — is impossible
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# on this wire: the done frame below is not deflected).
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bubble = page.locator(".msg.brain .bubble").last
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expect(bubble).to_contain_text(READ_ANSWER_PREFIX)
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expect(bubble).to_contain_text(READ_ANSWER_QUOTE)
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_assert_no_error_banner(page)
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# The UI shows the three tool lines in order: the regex-shaped
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# first grep (Searching for <code>qwen.*3\.8</code>), the
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# plain-form retry (Searching for <code>qwen3.8</code>), the read
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||
# of the combined identity.
|
||
lines = page.locator(".msg.brain .tool-call")
|
||
expect(lines).to_have_count(3)
|
||
expect(lines.nth(0)).to_contain_text("Searching for")
|
||
expect(lines.nth(0).locator("code")).to_have_text(GREP_TEACH_PATTERN)
|
||
expect(lines.nth(1)).to_contain_text("Searching for")
|
||
expect(lines.nth(1).locator("code")).to_have_text(GREP_TEACH_PLAIN)
|
||
expect(lines.nth(2)).to_contain_text("Reading")
|
||
expect(lines.nth(2).locator("code")).to_have_text(DOC1_SP)
|
||
|
||
# Three rounds on the wire: the tool frames arrive in order —
|
||
# grep qwen.*3\.8 (the incident's regex-shaped first call), grep
|
||
# qwen3.8 (the plain-form correction the teaching line triggered),
|
||
# read the combined identity — and there is NO fourth tool frame:
|
||
# the loop ended in one correction, not at the round cap.
|
||
frames = _drain_frames(page)
|
||
assert _tool_frames(frames) == [
|
||
{"type": "tool", "name": "grep", "argument": GREP_TEACH_PATTERN},
|
||
{"type": "tool", "name": "grep", "argument": GREP_TEACH_PLAIN},
|
||
{"type": "tool", "name": "read", "argument": DOC1_SP},
|
||
]
|
||
first_delta = next(i for i, f in enumerate(frames) if f.get("type") == "delta")
|
||
assert all(
|
||
i < first_delta for i, f in enumerate(frames) if f.get("type") == "tool"
|
||
)
|
||
done = next(f for f in frames if f.get("type") == "done")
|
||
assert done["deflected"] is False
|
||
assert not [f for f in frames if f.get("type") == "error"]
|
||
|
||
|
||
# --------------------------------------------------------------------------
|
||
# 2. No regression to the plain search flow — the SAME session: after
|
||
# the GREP-TEACH turn, the SEARCH_TRIGGER follow-up (the phase-68
|
||
# search flow) still settles with the "Found …" answer
|
||
# --------------------------------------------------------------------------
|
||
|
||
|
||
def test_plain_search_flow_not_swallowed_by_new_trigger(
|
||
page: Page, app_url: str, mock_llm: int, db_ready: None
|
||
) -> None:
|
||
page.set_default_timeout(30_000)
|
||
_reset_db_fixture()
|
||
login(page, app_url, next="/")
|
||
_install_sse_hook(page)
|
||
|
||
# Turn 1 — the GREP-TEACH flow (the incident's regex-shaped first
|
||
# grep → the teaching line → the plain-form retry → the read → the
|
||
# echo answer).
|
||
_submit(page, GREP_TEACH_QUESTION)
|
||
_wait_settled(page)
|
||
teach_frames = _drain_frames(page)
|
||
assert _tool_frames(teach_frames) == [
|
||
{"type": "tool", "name": "grep", "argument": GREP_TEACH_PATTERN},
|
||
{"type": "tool", "name": "grep", "argument": GREP_TEACH_PLAIN},
|
||
{"type": "tool", "name": "read", "argument": DOC1_SP},
|
||
]
|
||
expect(
|
||
page.locator(".msg.brain .bubble").last
|
||
).to_contain_text(READ_ANSWER_PREFIX)
|
||
|
||
# Turn 2 — the SAME session: the phase-68 search flow on
|
||
# SEARCH_TRIGGER. The new flow must not have swallowed the existing
|
||
# trigger: the follow-up settles with the search flow's answer
|
||
# (grep the sentinel → "Found <first matched line>").
|
||
_submit(page, SEARCH_QUESTION)
|
||
_wait_settled(page)
|
||
|
||
second_msg = page.locator(".msg.brain").last
|
||
lines = second_msg.locator(".tool-call")
|
||
expect(lines).to_have_count(1)
|
||
expect(lines.nth(0)).to_contain_text("Searching for")
|
||
expect(lines.nth(0).locator("code")).to_have_text(SEARCH_PATTERN)
|
||
|
||
# The answer is the search flow's echo: "Found <first matched
|
||
# line's content up to 80 chars>" — the sentinel line from DOC1.
|
||
sentinel_line = next(
|
||
line for line in DOC1_CONTENT.splitlines() if SEARCH_PATTERN in line
|
||
)
|
||
bubble = second_msg.locator(".bubble").last
|
||
expect(bubble).to_contain_text(f"Found {sentinel_line[:80]}")
|
||
_assert_no_error_banner(page)
|
||
|
||
# Wire level for the follow-up: one grep of the sentinel pattern —
|
||
# the search flow, unchanged.
|
||
frames = _drain_frames(page)
|
||
assert _tool_frames(frames) == [
|
||
{"type": "tool", "name": "grep", "argument": SEARCH_PATTERN},
|
||
]
|
||
done = next(f for f in frames if f.get("type") == "done")
|
||
assert done["deflected"] is False
|
||
assert not [f for f in frames if f.get("type") == "error"]
|