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chopratejas--headroom/benchmarks/text_crusher_quality_eval.py
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chore: import upstream snapshot with attribution
2026-07-13 12:03:20 +08:00

222 lines
8.0 KiB
Python

#!/usr/bin/env python3
"""Quality eval for TextCrusher (Phase 2, #1171): does extractive compression
preserve the answer-bearing content? No LLM/API calls -- fully local.
Part A -- SQuAD answer-retention (the strong, labeled metric): bury a real QA
answer in a haystack of distractor paragraphs, compress to a target ratio, and
measure whether the gold answer SURVIVES. TextCrusher (query-aware) vs truncate
(keep-recent) vs random baselines. Mirrors kompress's published
must_keep_recall (0.977 on its own labeled set).
Part B -- real-transcript fidelity: compress large text blocks from a real
Claude Code transcript (ANONYMIZED), measuring ratio, speed, and salient-token
retention (identifiers/numbers/errors -- the must-keep info in coding contexts).
Only aggregate metrics are printed; raw content is never echoed.
Usage: python benchmarks/text_crusher_quality_eval.py [squad_dev.json] [transcript.jsonl]
"""
from __future__ import annotations
import glob
import json
import os
import random
import re
import sys
import time
from headroom.transforms.text_crusher import TextCrusher
_SEG = re.compile(r"(?<=[.!?])\s+|\n+")
_SALIENT = re.compile(
r"\b(?:error|exception|fail(?:ed|ure)?|warning|traceback|assert|todo|fixme)\b"
r"|\b[A-Z]{2,}\b|\b[A-Za-z_][A-Za-z0-9_]*\.[A-Za-z_][A-Za-z0-9_]*\b|\b\d+\b"
)
# --- anonymization (脱敏): scrub before any processing; never echo raw content ---
_REDACT = [
(re.compile(r"/Users/[^/\s]+"), "/Users/USER"),
(re.compile(r"\b[\w.+-]+@[\w-]+\.[\w.-]+\b"), "EMAIL"),
(re.compile(r"\b(?:sk|pk|ghp|gho|xox[baprs])-[A-Za-z0-9_-]{10,}\b"), "TOKEN"),
(re.compile(r"\bBearer\s+[A-Za-z0-9._-]{10,}"), "Bearer TOKEN"),
(re.compile(r"\b[A-Fa-f0-9]{40,}\b"), "HEX"),
]
def anon(t: str) -> str:
for rx, rep in _REDACT:
t = rx.sub(rep, t)
return t
def norm(s: str) -> str:
return re.sub(r"\s+", " ", s.lower()).strip()
def _segs(text: str) -> list[str]:
return [s for s in _SEG.split(text) if s.strip()]
def truncate_keep_last(text: str, ratio: float) -> str:
segs = _segs(text)
budget = int(sum(len(s) for s in segs) * ratio)
kept: list[str] = []
c = 0
for s in reversed(segs):
if c >= budget:
break
kept.append(s)
c += len(s)
return "\n".join(reversed(kept))
def random_keep(text: str, ratio: float, seed: int) -> str:
segs = _segs(text)
idx = list(range(len(segs)))
random.Random(seed).shuffle(idx)
budget = int(sum(len(s) for s in segs) * ratio)
kept: set[int] = set()
c = 0
for i in idx:
if c >= budget:
break
kept.add(i)
c += len(segs[i])
return "\n".join(segs[i] for i in sorted(kept))
def eval_squad(path: str, n: int = 200, n_distract: int = 40, ratio: float = 0.3, seed: int = 0):
data = json.load(open(path))
paras = [(p["context"], p["qas"]) for a in data["data"] for p in a["paragraphs"]]
all_ctx = [c for c, _ in paras]
examples = [
(ctx, qas[0]["question"], qas[0]["answers"][0]["text"])
for ctx, qas in paras
if qas and qas[0]["answers"]
]
rnd = random.Random(seed)
rnd.shuffle(examples)
examples = examples[:n]
tc = TextCrusher()
hit = {"text_crusher": 0, "truncate": 0, "random": 0}
tc_ratios: list[float] = []
for gold_ctx, q, ans in examples:
docs = rnd.sample(all_ctx, n_distract) + [gold_ctx]
rnd.shuffle(docs)
haystack = "\n\n".join(docs)
a = norm(ans)
out_tc = tc.compress(haystack, context=q, target_ratio=ratio).compressed
hit["text_crusher"] += a in norm(out_tc)
hit["truncate"] += a in norm(truncate_keep_last(haystack, ratio))
hit["random"] += a in norm(random_keep(haystack, ratio, seed))
tc_ratios.append(len(out_tc) / max(1, len(haystack)))
nn = len(examples)
print(
f"\n=== Part A: SQuAD answer-retention (n={nn}, distractors={n_distract}, target_ratio={ratio}) ==="
)
print(
f" TextCrusher (query-aware): {hit['text_crusher'] / nn:6.1%} answer survives compression"
)
print(f" Truncate (keep recent): {hit['truncate'] / nn:6.1%}")
print(f" Random keep: {hit['random'] / nn:6.1%}")
print(
f" TextCrusher mean char-ratio: {sum(tc_ratios) / nn:.2f} (kept ~{sum(tc_ratios) / nn:.0%} of bytes)"
)
print(" reference: kompress published must_keep_recall = 0.977 (its own labeled set)")
def _block_texts(jsonl_path: str, min_words: int, limit: int) -> list[str]:
out: list[str] = []
with open(jsonl_path) as fh:
for line in fh:
try:
o = json.loads(line)
except json.JSONDecodeError:
continue
m = o.get("message") or {}
c = m.get("content")
parts = (
[c]
if isinstance(c, str)
else [
p["text"] for p in c if isinstance(p, dict) and isinstance(p.get("text"), str)
]
if isinstance(c, list)
else []
)
for t in parts:
if len(t.split()) >= min_words:
out.append(anon(t))
if len(out) >= limit:
break
return out[:limit]
def eval_transcript(jsonl_path: str, ratio: float = 0.4, min_words: int = 1500, limit: int = 40):
blocks = _block_texts(jsonl_path, min_words, limit)
if not blocks:
print(
f"\n=== Part B: no text blocks >= {min_words} words in {os.path.basename(jsonl_path)} ==="
)
return
tc = TextCrusher()
ratios: list[float] = []
times: list[float] = []
retentions: list[float] = []
for b in blocks:
sal_before = set(_SALIENT.findall(b))
t0 = time.perf_counter()
out = tc.compress(b, target_ratio=ratio).compressed
times.append((time.perf_counter() - t0) * 1000)
sal_after = set(_SALIENT.findall(out))
retentions.append(len(sal_before & sal_after) / max(1, len(sal_before)))
ratios.append(len(out.split()) / max(1, len(b.split())))
n = len(blocks)
print(
f"\n=== Part B: real transcript fidelity (n={n} large blocks, anonymized, target_ratio={ratio}) ==="
)
print(f" mean token-ratio kept: {sum(ratios) / n:.2f}")
print(f" mean speed: {sum(times) / n:.1f} ms/block")
print(
f" salient-token retention: {sum(retentions) / n:6.1%} (identifiers/numbers/errors kept)"
)
print(
f" -> keeps salient info at {sum(retentions) / n:.0%} while dropping to {sum(ratios) / n:.0%} of tokens"
)
def eval_speed(scale_words: int = 250_000):
# Reproducible throughput on a large synthetic prose block (no external data).
text = " ".join(
f"Sentence {i} discusses subsystem {i} and its failure mode {i % 7} in detail."
for i in range(scale_words // 9)
)
nwords = len(text.split())
tc = TextCrusher()
t0 = time.perf_counter()
out = tc.compress(text, target_ratio=0.3)
ms = (time.perf_counter() - t0) * 1000
print(f"\n=== Part C: speed (synthetic, {nwords:,} words, fully reproducible) ===")
print(f" TextCrusher compress: {ms:.0f} ms ({nwords / max(ms / 1000, 1e-6):,.0f} words/sec)")
print(f" kept ratio: {out.compressed_tokens / max(1, out.original_tokens):.2f}")
print(" reference: kompress (ModernBERT ONNX) ~272s for ~1M tokens (measured, query-blind)")
print(" -> fast-vs-slow CONTRAST, not a same-input side-by-side run")
if __name__ == "__main__":
eval_speed()
squad = sys.argv[1] if len(sys.argv) > 1 else "/tmp/squad_dev.json"
tx = sys.argv[2] if len(sys.argv) > 2 else None
if os.path.exists(squad):
eval_squad(squad)
else:
print(f"SQuAD not found at {squad}; skipping Part A")
if tx is None:
found = glob.glob(os.path.expanduser("~/.claude/projects/*headroom*/*.jsonl"))
tx = max(found, key=os.path.getsize) if found else None
if tx and os.path.exists(tx):
eval_transcript(tx)
else:
print("no transcript jsonl found; skipping Part B")