fix(review): sample last page, document flags-vs-routing, add flag-path tests
Address PR #855 review (all non-blocking): - classifier: _sample_indices now always includes the first AND last page (the old evenly-spaced sample missed the tail, e.g. last sampled index 95 on a 100-page doc -- a scanned tail could be missed). - classifier + metrics: document that flags are diagnostic and fire independently of routing (image_heavy on ANY page vs the ocr route needing a page FRACTION), so flag{image_heavy} is expected to exceed classified{ocr}. - classifier: clarify the text-quality whitespace comment (caps at 12%) and note the image double-count approximation (min() caps coverage). - tests: add the scanned (no text layer) and bad_text_layer (junk text over an image) flag paths, and a test pinning first/last-page sampling. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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co-authored by
Claude Opus 4.8
parent
044c1da750
commit
0347e96679
@@ -82,7 +82,8 @@ def _text_quality(text: str) -> float:
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whitespace_ratio = sum(c.isspace() for c in text) / len(text)
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mean_token_len = sum(len(t) for t in tokens) / len(tokens)
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overlong_frac = sum(len(t) > 20 for t in tokens) / len(tokens)
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# Clean prose: ~15-20% whitespace, mean token ~4-6 chars, ~no overlong tokens.
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# Caps at 1.0 from 12% whitespace (conservative; clean prose runs 15-20%),
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# mean token ~4-6 chars, ~no overlong tokens.
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ws_score = min(whitespace_ratio / 0.12, 1.0)
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len_score = (
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1.0 if mean_token_len <= 10 else max(0.0, 1.0 - (mean_token_len - 10) / 15)
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@@ -94,9 +95,13 @@ def _text_quality(text: str) -> float:
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def _sample_indices(page_count: int) -> list[int]:
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if page_count <= MAX_SAMPLED_PAGES:
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return list(range(page_count))
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# Evenly spaced sample across the document.
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step = page_count / MAX_SAMPLED_PAGES
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return sorted({int(i * step) for i in range(MAX_SAMPLED_PAGES)})
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# Evenly spaced sample that always includes the first AND last page, so a
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# scanned tail on an otherwise-digital doc isn't missed. Rounding collisions
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# just yield a slightly smaller (still bounded) sample.
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last = page_count - 1
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return sorted(
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{round(i * last / (MAX_SAMPLED_PAGES - 1)) for i in range(MAX_SAMPLED_PAGES)}
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)
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def classify_pdf(content: bytes) -> DocClassification:
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@@ -122,6 +127,9 @@ def classify_pdf(content: bytes) -> DocClassification:
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for img in page.get_images(full=True):
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for rect in page.get_image_rects(img[0]):
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img_area += abs(rect.width * rect.height)
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# Approximate: an image placed multiple times (tiled backgrounds) is
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# double-counted, so img_area can exceed page_area -- the min() caps
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# coverage at 1.0, which is all the scanned/digital split needs.
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coverage = min(img_area / page_area, 1.0)
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# A page that is mostly a raster image is a scan/photo: its content
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# (handwriting, stamps, figure text) is not fully in any text layer,
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@@ -143,6 +151,11 @@ def classify_pdf(content: bytes) -> DocClassification:
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)
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ocr_frac = (sum(p.needs_ocr for p in pages) / sampled) if sampled else 0.0
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# Flags are diagnostic signals, intentionally independent of the routing
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# verdict: image_heavy fires if ANY page is image-heavy, while the OCR route
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# needs a FRACTION of pages (OCR_PAGE_FRACTION). So a mostly-digital doc with
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# one full-page photo is flagged image_heavy yet still routes "fast" -- the
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# flag_total{image_heavy} count is expected to exceed classified{ocr}.
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flags: set[str] = set()
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if any(p.image_coverage >= IMAGE_COVERAGE_SCANNED for p in pages):
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flags.add("image_heavy")
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@@ -285,6 +285,9 @@ document_classified_total = Counter(
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)
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document_classifier_flag_total = Counter(
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# Diagnostic flags, independent of the routing verdict: image_heavy fires if
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# ANY page is image-heavy whereas the ocr route needs a fraction of pages,
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# so flag{image_heavy} is expected to exceed classified{recommended_tier=ocr}.
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"astrolabe_document_classifier_flag_total",
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"Tier-0 classifier flags raised on documents",
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["flag"], # image_heavy | scanned | bad_text_layer
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@@ -84,3 +84,45 @@ def test_large_doc_is_sampled():
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c = clf.classify_pdf(_digital_pdf(pages=120))
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assert c.page_count == 120
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assert c.sampled_pages <= clf.MAX_SAMPLED_PAGES
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def test_sample_indices_includes_first_and_last_page():
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idx = clf._sample_indices(100)
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assert idx[0] == 0
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assert idx[-1] == 99 # last page must be sampled (scanned-tail case)
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assert len(idx) <= clf.MAX_SAMPLED_PAGES
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# --- flag paths --------------------------------------------------------------
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def _image_with_mashed_text_pdf(pages: int = 2) -> bytes:
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# Full-page image with a junk (mashed/space-less) text layer over it -- a
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# scan whose OCR'd text layer is unusable.
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doc = pymupdf.open()
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pix = pymupdf.Pixmap(pymupdf.csRGB, pymupdf.IRect(0, 0, 600, 850))
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pix.clear_with(255)
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img = pix.tobytes("png")
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mashed = "01322234567mobileoutstandingresilienceacademicachievement " * 3
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for _ in range(pages):
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page = doc.new_page(width=595, height=842)
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page.insert_image(page.rect, stream=img)
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page.insert_text((50, 60), mashed)
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data: bytes = doc.tobytes()
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doc.close()
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return data
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def test_scanned_flag_when_no_text_layer():
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c = clf.classify_pdf(_full_page_image_pdf())
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assert c.total_chars == 0
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assert "scanned" in c.flags
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assert c.recommended_tier == "ocr"
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def test_bad_text_layer_flag_on_image_with_junk_text():
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c = clf.classify_pdf(_image_with_mashed_text_pdf())
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assert c.total_chars > 0
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assert c.mean_text_quality < clf.MIN_TEXT_QUALITY
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assert "bad_text_layer" in c.flags
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assert c.recommended_tier == "ocr"
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