206c553143
- PipelineConfig: YAML-driven configuration with family_ratios, retry, concurrency, dedup threshold, and heavy sampling rate - _assign_slots: deterministic round-robin slot assignment across videos with per-family weighted random selection - _process_one_slot: full retry loop (generate → postprocess → gates → dedup) with reject-reason feedback to VLM on retry - _heavy_check_one: blind LLM agent trial-answer for difficulty_steps - run_pipeline_v2: orchestration with semaphore-bounded concurrency, progress/resume support, and store integration - is_duplicate: cosine similarity dedup against embedding pool Tests: 11 integration tests covering slot assignment, retry behavior, max-retries exhaustion, full pipeline flow, progress resume, heavy sampling, and store record completeness. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
651 lines
20 KiB
Python
651 lines
20 KiB
Python
"""v2 出题管线集成测试 — 覆盖 slot 分配、重出循环、重量抽检与完整编排。
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测试策略:使用受控 mock VLM/LLM 返回,验证管线逻辑正确性。
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"""
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from __future__ import annotations
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import asyncio
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import json
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import random
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from typing import TYPE_CHECKING, Any
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if TYPE_CHECKING:
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from pathlib import Path
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import numpy as np
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import pytest
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from app.question_gen.families import ALL_FAMILIES
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from app.question_gen.pipeline_v2 import (
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PipelineConfig,
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PipelineResult,
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SlotAssignment,
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_assign_slots,
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_process_one_slot,
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run_pipeline_v2,
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)
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from app.tree.index import (
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IndexMeta,
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L1Card,
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L1Node,
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L2Card,
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L2Node,
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L3Card,
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L3Node,
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TreeIndex,
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)
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from core.types import LLMResponse
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# ---------------------------------------------------------------------------
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# 测试用 fixtures
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# ---------------------------------------------------------------------------
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def _make_llm_response(content: str) -> LLMResponse:
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"""构造标准 LLMResponse。"""
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return LLMResponse(
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content=content,
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thinking="",
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model="test-model",
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provider="test",
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prompt_tokens=10,
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completion_tokens=20,
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latency_ms=100,
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ttft_ms=50.0,
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max_inter_token_ms=10.0,
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cache_hit=False,
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call_id="call-001",
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)
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def _make_gate_pass_response() -> str:
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"""门控全部通过的 JSON 响应。"""
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return json.dumps({"verdict": "pass", "reason": "looks good"})
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def _make_gate_fail_response(reason: str = "quality issue") -> str:
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"""门控失败的 JSON 响应。"""
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return json.dumps({"verdict": "fail", "reason": reason})
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def _make_candidate_json(
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question: str = "What happened next?",
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answer: str = "A",
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) -> str:
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"""构造 VLM 返回的候选题 JSON。"""
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return json.dumps(
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{
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"question": question,
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"options": [
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"A. The cat jumped",
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"B. The dog ran",
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"C. Nothing happened",
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"D. It rained",
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],
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"answer": answer,
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"difficulty": "medium",
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}
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)
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def _make_tree() -> TreeIndex:
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"""构造最小合法三层树。"""
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l3_nodes = [
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L3Node(
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id=f"vid_L1_000_L2_000_L3_{i:03d}",
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card=L3Card(
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frame_summary=f"Frame {i} shows activity",
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visible_entities=["person", "object"],
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ongoing_actions=["walking"],
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visible_text=[],
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spatial_layout="center",
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visual_attributes={},
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subtitle=f"Subtitle sentence {i} with some unique content here",
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),
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timestamp=float(i * 2),
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frame_path=f"frames/L1_000_L2_000_L3_{i:03d}.jpg",
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)
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for i in range(5)
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]
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l2 = L2Node(
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id="vid_L1_000_L2_000",
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card=L2Card(
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event_description="A person walks through the park",
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entities=["person", "park"],
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actions=["walking"],
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action_subjects=["person"],
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visible_text=[],
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spatial_relations="person in center of park",
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state_changes=None,
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subtitle="Person walking in park doing activities",
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),
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children=l3_nodes,
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)
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l2_b = L2Node(
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id="vid_L1_000_L2_001",
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card=L2Card(
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event_description="A dog runs across the field",
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entities=["dog", "field"],
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actions=["running"],
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action_subjects=["dog"],
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visible_text=[],
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spatial_relations="dog in the field",
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state_changes=None,
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subtitle="Dog running across the field",
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),
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children=[
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L3Node(
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id=f"vid_L1_000_L2_001_L3_{i:03d}",
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card=L3Card(
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frame_summary=f"Dog frame {i}",
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visible_entities=["dog"],
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ongoing_actions=["running"],
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visible_text=[],
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spatial_layout="wide",
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visual_attributes={},
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subtitle=f"Dog subtitle {i}",
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),
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timestamp=float(10 + i * 2),
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frame_path=f"frames/L1_000_L2_001_L3_{i:03d}.jpg",
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)
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for i in range(4)
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],
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)
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l1 = L1Node(
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id="vid_L1_000",
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card=L1Card(
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scene_summary="Outdoor activities in a park",
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main_setting="outdoor park",
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key_entities=["person", "dog"],
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main_actions=["walking", "running"],
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topic_keywords=["outdoor", "activity"],
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visible_text=[],
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temporal_flow="sequential activities",
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),
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children=[l2, l2_b],
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)
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meta = IndexMeta(source_path="test_video.mp4", modality="video")
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return TreeIndex(metadata=meta, roots=[l1])
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class MockVLM:
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"""受控 VLM mock — 每次调用返回候选题 JSON。"""
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def __init__(self, responses: list[str] | None = None) -> None:
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self._responses = responses or [_make_candidate_json()]
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self._call_count = 0
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async def chat_with_images(
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self,
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messages: list[dict[str, Any]],
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images: list[str | Path],
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*,
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session_id: str | None = None,
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parent_call_id: str | None = None,
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) -> LLMResponse:
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idx = min(self._call_count, len(self._responses) - 1)
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self._call_count += 1
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return _make_llm_response(self._responses[idx])
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class MockLLM:
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"""受控 LLM mock — 支持配置门控 pass/fail 序列。"""
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def __init__(self, responses: list[str] | None = None) -> None:
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self._responses = responses or [_make_gate_pass_response()]
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self._call_count = 0
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async def chat(
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self,
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messages: list[dict[str, Any]],
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*,
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session_id: str | None = None,
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parent_call_id: str | None = None,
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) -> LLMResponse:
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idx = min(self._call_count, len(self._responses) - 1)
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self._call_count += 1
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return _make_llm_response(self._responses[idx])
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def _mock_embed_fn(text: str) -> np.ndarray:
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"""确定性 embedding:基于文本 hash 生成向量。"""
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rng = np.random.default_rng(hash(text) % (2**32))
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vec = rng.standard_normal(64).astype(np.float32)
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return vec / np.linalg.norm(vec)
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@pytest.fixture
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def tree() -> TreeIndex:
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return _make_tree()
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@pytest.fixture
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def default_config(tmp_path: Path) -> PipelineConfig:
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return PipelineConfig(
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family_ratios={
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"RETRIEVAL": 0.30,
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"REASONING": 0.25,
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"ENUMERATION": 0.20,
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"VISUAL": 0.15,
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"SPATIAL": 0.10,
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},
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per_type=2,
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retry_limit=3,
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heavy_sample_rate=0.15,
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dedup_threshold=0.85,
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concurrency=2,
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seed=42,
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output_dir=tmp_path / "output",
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gate_models={
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"blind_answer_model": "gpt-4.1-mini",
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"leak_test_model": "gpt-4.1-mini",
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"key_verify_model": "gpt-4.1-mini",
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"multi_true_model": "gpt-4.1-mini",
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},
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heavy_agent_model="gpt-4.1-mini",
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)
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@pytest.fixture
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def store(tmp_path: Path):
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from app.question_gen.run_store import QuestionGenStore
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db_path = tmp_path / "test_qgen.db"
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s = QuestionGenStore(db_path=db_path)
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yield s
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s.close()
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# ---------------------------------------------------------------------------
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# TestSlotAssignment
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# ---------------------------------------------------------------------------
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class TestSlotAssignment:
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"""_assign_slots 单元测试。"""
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def test_per_type_count(self):
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"""验证生成的 slot 总数 = len(task_types) * per_type。"""
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video_ids = ["vid_001", "vid_002"]
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task_types = ["Action Recognition", "Object Recognition", "Causal Reasoning"]
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per_type = 4
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family_ratios = {"RETRIEVAL": 0.5, "VISUAL": 0.5}
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rng = random.Random(42)
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slots = _assign_slots(video_ids, task_types, per_type, family_ratios, rng)
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assert len(slots) == len(task_types) * per_type
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def test_family_distribution(self):
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"""验证家族分配来自 get_family_for_slot(合法 family 与 task_type 匹配)。"""
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video_ids = ["vid_001", "vid_002", "vid_003"]
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task_types = ["Action Recognition"]
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per_type = 20
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family_ratios = {"RETRIEVAL": 0.5, "VISUAL": 0.5}
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rng = random.Random(42)
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slots = _assign_slots(video_ids, task_types, per_type, family_ratios, rng)
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for slot in slots:
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assert slot.task_type == "Action Recognition"
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# Family 必须是 task_type 合法的家族之一
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family = slot.family
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assert slot.task_type in family.legal_task_types
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def test_round_robin_across_videos(self):
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"""验证 slot 在视频间轮转分配。"""
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video_ids = ["vid_A", "vid_B"]
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task_types = ["Action Recognition"]
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per_type = 4
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family_ratios = {"RETRIEVAL": 1.0}
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rng = random.Random(42)
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slots = _assign_slots(video_ids, task_types, per_type, family_ratios, rng)
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video_assignments = [s.video_id for s in slots]
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# 应该轮转分配
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assert video_assignments.count("vid_A") == 2
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assert video_assignments.count("vid_B") == 2
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def test_deterministic_with_seed(self):
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"""相同 seed 产出相同 slot 序列。"""
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video_ids = ["vid_001", "vid_002"]
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task_types = ["Action Recognition", "Causal Reasoning"]
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per_type = 3
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family_ratios = {"RETRIEVAL": 0.5, "REASONING": 0.5}
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rng1 = random.Random(99)
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slots1 = _assign_slots(video_ids, task_types, per_type, family_ratios, rng1)
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rng2 = random.Random(99)
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slots2 = _assign_slots(video_ids, task_types, per_type, family_ratios, rng2)
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for s1, s2 in zip(slots1, slots2, strict=True):
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assert s1.slot_id == s2.slot_id
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assert s1.video_id == s2.video_id
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assert s1.family.name == s2.family.name
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# ---------------------------------------------------------------------------
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# TestProcessOneSlot
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# ---------------------------------------------------------------------------
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class TestProcessOneSlot:
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"""_process_one_slot 集成测试。"""
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@pytest.mark.asyncio
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async def test_happy_path(self, tree, default_config, store, tmp_path):
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"""首次生成即通过门控 → 返回 GeneratedQuestion。"""
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vlm = MockVLM()
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llm = MockLLM([_make_gate_pass_response()] * 4)
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sem = asyncio.Semaphore(2)
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used_node_ids: set[str] = set()
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rng = random.Random(42)
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family = ALL_FAMILIES[0] # RETRIEVAL
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slot = SlotAssignment(
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slot_id="slot_001",
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video_id="vid_L1_000",
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task_type="Action Recognition",
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family=family,
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seq=1,
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)
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run_id = "test-run-001"
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store.record_run_start(run_id, "abc123", "{}")
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result = await _process_one_slot(
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slot=slot,
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tree=tree,
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vlm=vlm,
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llm=llm,
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embed_fn=_mock_embed_fn,
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embed_pool=[],
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store=store,
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config=default_config,
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used_node_ids=used_node_ids,
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rng=rng,
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sem=sem,
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session_id="sess-001",
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run_id=run_id,
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)
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assert result is not None
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assert result.question_id
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assert result.skill_target == family.skill_target
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@pytest.mark.asyncio
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async def test_retry_on_fail(self, tree, default_config, store, tmp_path):
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"""第一次门控失败,第二次通过 → 重出成功。"""
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vlm = MockVLM(
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[
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_make_candidate_json("First question?"),
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_make_candidate_json("Second better question?"),
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]
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)
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# 第一轮 4 个门有一个 fail,第二轮 4 个门全 pass
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llm_responses = [
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_make_gate_fail_response("answer not grounded"),
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_make_gate_pass_response(),
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_make_gate_pass_response(),
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_make_gate_pass_response(),
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# 第二轮
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_make_gate_pass_response(),
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_make_gate_pass_response(),
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_make_gate_pass_response(),
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_make_gate_pass_response(),
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]
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llm = MockLLM(llm_responses)
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sem = asyncio.Semaphore(2)
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used_node_ids: set[str] = set()
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rng = random.Random(42)
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family = ALL_FAMILIES[0] # RETRIEVAL
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slot = SlotAssignment(
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slot_id="slot_002",
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video_id="vid_L1_000",
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task_type="Action Recognition",
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family=family,
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seq=2,
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)
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run_id = "test-run-002"
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store.record_run_start(run_id, "abc123", "{}")
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result = await _process_one_slot(
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slot=slot,
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tree=tree,
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vlm=vlm,
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llm=llm,
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embed_fn=_mock_embed_fn,
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embed_pool=[],
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store=store,
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config=default_config,
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used_node_ids=used_node_ids,
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rng=rng,
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sem=sem,
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session_id="sess-002",
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run_id=run_id,
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)
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assert result is not None
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# 确认第二个问题被接受
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assert "Second" in result.question or result.question_id is not None
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@pytest.mark.asyncio
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async def test_max_retries_none(self, tree, default_config, store, tmp_path):
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"""所有重试均失败 → 返回 None。"""
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vlm = MockVLM([_make_candidate_json()] * 5)
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# 所有门控均失败
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llm = MockLLM([_make_gate_fail_response("always fails")] * 20)
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sem = asyncio.Semaphore(2)
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used_node_ids: set[str] = set()
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rng = random.Random(42)
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family = ALL_FAMILIES[0] # RETRIEVAL
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slot = SlotAssignment(
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slot_id="slot_003",
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video_id="vid_L1_000",
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task_type="Action Recognition",
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family=family,
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seq=3,
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)
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run_id = "test-run-003"
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store.record_run_start(run_id, "abc123", "{}")
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result = await _process_one_slot(
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slot=slot,
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tree=tree,
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vlm=vlm,
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llm=llm,
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embed_fn=_mock_embed_fn,
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embed_pool=[],
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store=store,
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config=default_config,
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used_node_ids=used_node_ids,
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rng=rng,
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sem=sem,
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session_id="sess-003",
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run_id=run_id,
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)
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assert result is None
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# ---------------------------------------------------------------------------
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# TestPipelineV2
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# ---------------------------------------------------------------------------
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class TestPipelineV2:
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"""run_pipeline_v2 完整流程测试。"""
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@pytest.mark.asyncio
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async def test_full_flow(self, tree, default_config, store, tmp_path):
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"""完整管线运行,产出 PipelineResult。"""
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vlm = MockVLM([_make_candidate_json(f"Question {i}?") for i in range(50)])
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llm = MockLLM([_make_gate_pass_response()] * 200)
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config = PipelineConfig(
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family_ratios=default_config.family_ratios,
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per_type=2,
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retry_limit=2,
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heavy_sample_rate=0.5, # 高比例便于测试
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dedup_threshold=0.85,
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concurrency=2,
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seed=42,
|
||
output_dir=tmp_path / "out",
|
||
gate_models=default_config.gate_models,
|
||
heavy_agent_model="gpt-4.1-mini",
|
||
)
|
||
|
||
# 只用一个 task_type 确保树能满足采样
|
||
result = await run_pipeline_v2(
|
||
video_ids=["vid_L1_000"],
|
||
trees={"vid_L1_000": tree},
|
||
vlm=vlm,
|
||
llm=llm,
|
||
embed_fn=_mock_embed_fn,
|
||
store=store,
|
||
config=config,
|
||
task_types=["Action Recognition"],
|
||
)
|
||
|
||
assert isinstance(result, PipelineResult)
|
||
assert result.rejected_count >= 0
|
||
# 至少一题被接受(VLM 和 LLM 全部正常返回)
|
||
assert len(result.accepted) > 0
|
||
|
||
@pytest.mark.asyncio
|
||
async def test_progress_resume(self, tree, default_config, store, tmp_path):
|
||
"""传入 progress dict → 已处理 slot 被跳过。"""
|
||
llm = MockLLM([_make_gate_pass_response()] * 100)
|
||
|
||
config = PipelineConfig(
|
||
family_ratios=default_config.family_ratios,
|
||
per_type=2,
|
||
retry_limit=2,
|
||
heavy_sample_rate=0.0, # 不做 heavy check
|
||
dedup_threshold=0.85,
|
||
concurrency=2,
|
||
seed=42,
|
||
output_dir=tmp_path / "out",
|
||
gate_models=default_config.gate_models,
|
||
heavy_agent_model="gpt-4.1-mini",
|
||
)
|
||
|
||
# 用相同 seed 计算 slot_ids(_assign_slots 是确定性的)
|
||
rng_preview = random.Random(config.seed)
|
||
preview_slots = _assign_slots(
|
||
["vid_L1_000"],
|
||
["Action Recognition"],
|
||
config.per_type,
|
||
config.family_ratios,
|
||
rng_preview,
|
||
)
|
||
# 构造 progress 标记所有 slot 已完成
|
||
progress = {s.slot_id: "accepted" for s in preview_slots}
|
||
|
||
# 用 progress 跑管线 → 所有 slot 被跳过
|
||
vlm2 = MockVLM([_make_candidate_json()] * 20)
|
||
|
||
result2 = await run_pipeline_v2(
|
||
video_ids=["vid_L1_000"],
|
||
trees={"vid_L1_000": tree},
|
||
vlm=vlm2,
|
||
llm=llm,
|
||
embed_fn=_mock_embed_fn,
|
||
store=store,
|
||
config=config,
|
||
task_types=["Action Recognition"],
|
||
progress=progress,
|
||
)
|
||
|
||
# 所有 slot 在 progress 中 → VLM 零调用
|
||
assert vlm2._call_count == 0
|
||
assert len(result2.accepted) == 0
|
||
|
||
@pytest.mark.asyncio
|
||
async def test_heavy_check_samples(self, tree, default_config, store, tmp_path):
|
||
"""heavy_sample_rate > 0 时有题被抽检。"""
|
||
# LLM 响应:前面是 gate pass,后面增加 heavy check 的步骤响应
|
||
heavy_response = json.dumps(
|
||
{
|
||
"steps": [
|
||
{"thought": "step 1"},
|
||
{"thought": "step 2"},
|
||
{"thought": "step 3"},
|
||
],
|
||
"answer": "A",
|
||
}
|
||
)
|
||
llm = MockLLM([_make_gate_pass_response()] * 100 + [heavy_response] * 20)
|
||
vlm = MockVLM([_make_candidate_json(f"Q{i}?") for i in range(20)])
|
||
|
||
config = PipelineConfig(
|
||
family_ratios=default_config.family_ratios,
|
||
per_type=2,
|
||
retry_limit=2,
|
||
heavy_sample_rate=1.0, # 100% 抽检
|
||
dedup_threshold=0.85,
|
||
concurrency=2,
|
||
seed=42,
|
||
output_dir=tmp_path / "out",
|
||
gate_models=default_config.gate_models,
|
||
heavy_agent_model="gpt-4.1-mini",
|
||
)
|
||
|
||
result = await run_pipeline_v2(
|
||
video_ids=["vid_L1_000"],
|
||
trees={"vid_L1_000": tree},
|
||
vlm=vlm,
|
||
llm=llm,
|
||
embed_fn=_mock_embed_fn,
|
||
store=store,
|
||
config=config,
|
||
task_types=["Action Recognition"],
|
||
)
|
||
|
||
# 100% 抽检 → heavy_sampled 等于 accepted 数
|
||
if result.accepted:
|
||
assert len(result.heavy_sampled) == len(result.accepted)
|
||
|
||
@pytest.mark.asyncio
|
||
async def test_store_records_all(self, tree, default_config, store, tmp_path):
|
||
"""验证 store 中记录了每道题的生成与门控结果。"""
|
||
vlm = MockVLM([_make_candidate_json()] * 10)
|
||
llm = MockLLM([_make_gate_pass_response()] * 50)
|
||
|
||
config = PipelineConfig(
|
||
family_ratios=default_config.family_ratios,
|
||
per_type=2,
|
||
retry_limit=2,
|
||
heavy_sample_rate=0.0,
|
||
dedup_threshold=0.85,
|
||
concurrency=1,
|
||
seed=42,
|
||
output_dir=tmp_path / "out",
|
||
gate_models=default_config.gate_models,
|
||
heavy_agent_model="gpt-4.1-mini",
|
||
)
|
||
|
||
result = await run_pipeline_v2(
|
||
video_ids=["vid_L1_000"],
|
||
trees={"vid_L1_000": tree},
|
||
vlm=vlm,
|
||
llm=llm,
|
||
embed_fn=_mock_embed_fn,
|
||
store=store,
|
||
config=config,
|
||
task_types=["Action Recognition"],
|
||
)
|
||
|
||
# 查询 store 中的 items
|
||
cursor = store._conn.execute("SELECT COUNT(*) FROM question_gen_items")
|
||
item_count = cursor.fetchone()[0]
|
||
# 至少有 accepted 数量的记录
|
||
assert item_count >= len(result.accepted)
|