Flatten multi-file arXiv LaTeX (\input/\include) in arxiv.fetch_source so the full body is assembled rather than just the primary file's include skeleton, and add section-aware chunking (tex.chunk_sections) so .tex chunks never span a \section boundary and are labelled by their real heading. The ingest .tex path now produces (section, chunk) pairs, quality-gated together so labels stay aligned; the stored 'section' column gains genuine signal instead of mostly 'body' (serves DQ-3 fidelity + audit R-12). Adds scripts/rc_tex_reingest.py to re-ingest arXiv papers from .tex (dry-run by default; replaces chunks). Tests: flatten_inputs, chunk_sections, multi-file fetch_source, section-label ingest, is_arxiv_id. Full suite 365 passed; ruff + mypy clean. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
166 lines
6.0 KiB
Python
166 lines
6.0 KiB
Python
"""Tests for codex.parsing.tex."""
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from __future__ import annotations
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import pytest
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from codex.parsing.tex import (
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chunk_sections,
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chunk_text,
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extract_sections,
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flatten_inputs,
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latex_to_text,
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)
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class TestExtractSections:
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def test_two_sections_returned(self) -> None:
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latex = r"\section{Intro}" + "\nHello \\cite{foo} world\n"
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latex += r"\section{Method}" + "\nResult"
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sections = extract_sections(latex)
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assert len(sections) == 2
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def test_section_titles(self) -> None:
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latex = r"\section{Intro}" + "\nHello\n" + r"\section{Method}" + "\nResult"
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sections = extract_sections(latex)
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assert sections[0][0] == "Intro"
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assert sections[1][0] == "Method"
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def test_cite_removed_from_text(self) -> None:
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latex = r"\section{Intro}" + "\nHello \\cite{foo} world\n"
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latex += r"\section{Method}" + "\nResult"
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sections = extract_sections(latex)
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body = sections[0][1]
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assert r"\cite" not in body
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assert "foo" not in body
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def test_no_sections_returns_empty(self) -> None:
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assert extract_sections("No sections here at all.") == []
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def test_subsection_recognised(self) -> None:
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latex = r"\subsection{Background}" + "\nSome text."
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sections = extract_sections(latex)
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assert len(sections) == 1
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assert sections[0][0] == "Background"
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def test_comments_stripped(self) -> None:
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latex = r"\section{A}" + "\nHello % this is a comment\nWorld"
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sections = extract_sections(latex)
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assert "%" not in sections[0][1]
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assert "comment" not in sections[0][1]
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def test_math_stripped(self) -> None:
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latex = r"\section{A}" + "\nLet $x = 1$ and $$y = 2$$ be numbers."
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sections = extract_sections(latex)
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body = sections[0][1]
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assert "$" not in body
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class TestChunkText:
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@pytest.fixture()
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def long_text(self) -> str:
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# Build a 600-word string with real sentences
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sentence = "The quick brown fox jumps over the lazy dog near the river. "
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words_per_sentence = len(sentence.split())
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repeats = (600 // words_per_sentence) + 1
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return (sentence * repeats).strip()
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def test_at_least_two_chunks(self, long_text: str) -> None:
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chunks = chunk_text(long_text, size=512, overlap=64)
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assert len(chunks) >= 2
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def test_each_chunk_within_size_bound(self, long_text: str) -> None:
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size, overlap = 512, 64
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chunks = chunk_text(long_text, size=size, overlap=overlap)
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for chunk in chunks:
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word_count = len(chunk.split())
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assert word_count <= size + overlap, (
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f"Chunk has {word_count} words, expected <= {size + overlap}"
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)
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def test_empty_text_returns_empty_list(self) -> None:
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assert chunk_text("") == []
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def test_short_text_returns_single_chunk(self) -> None:
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chunks = chunk_text("Hello world.", size=512, overlap=64)
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assert len(chunks) == 1
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def test_chunks_cover_all_content(self) -> None:
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# First chunk must start with first word, last chunk must end with last word
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text = " ".join(f"word{i}" for i in range(600))
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chunks = chunk_text(text, size=200, overlap=50)
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assert chunks[0].startswith("word0")
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assert chunks[-1].endswith("word599")
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class TestLatexToText:
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def test_no_percent_in_output(self) -> None:
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latex = r"\section{A}" + "\nSome % comment\ntext."
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result = latex_to_text(latex)
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assert "%" not in result
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def test_no_cite_in_output(self) -> None:
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latex = r"\section{A}" + "\nHello \\cite{bar} world."
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result = latex_to_text(latex)
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assert r"\cite" not in result
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assert "bar" not in result
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def test_returns_string(self) -> None:
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latex = r"\section{A}" + "\nSimple text."
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result = latex_to_text(latex)
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assert isinstance(result, str)
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assert len(result) > 0
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def test_no_section_fallback(self) -> None:
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latex = r"Some \cite{foo} text with % comment"
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result = latex_to_text(latex)
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assert r"\cite" not in result
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assert "%" not in result
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class TestFlattenInputs:
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def test_inlines_input_and_include(self) -> None:
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files = {
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"main.tex": r"Start \input{sec/intro} mid \include{proof} end",
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"sec/intro.tex": "INTRO BODY",
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"proof.tex": "PROOF BODY",
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}
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out = flatten_inputs(files["main.tex"], files)
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assert "INTRO BODY" in out
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assert "PROOF BODY" in out
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assert r"\input" not in out and r"\include" not in out
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def test_resolves_without_tex_suffix(self) -> None:
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# \input{intro} must resolve the archive member "intro.tex".
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files = {"main.tex": r"\input{intro}", "intro.tex": "BODY"}
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assert "BODY" in flatten_inputs(files["main.tex"], files)
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def test_recursive_includes(self) -> None:
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files = {"a.tex": r"X \input{b}", "b.tex": r"Y \input{c}", "c.tex": "Z"}
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out = flatten_inputs(files["a.tex"], files)
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assert "X" in out and "Y" in out and "Z" in out
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def test_unresolved_input_dropped(self) -> None:
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# A reference with no matching file is removed, not left as a directive.
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out = flatten_inputs(r"A \input{missing} B", {})
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assert r"\input" not in out
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assert "A" in out and "B" in out
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class TestChunkSections:
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def test_pairs_carry_section_titles(self) -> None:
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latex = (
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r"\section{Introduction}" + "\nIntro body text here.\n"
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r"\section{Proof}" + "\nProof body text here.\n"
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)
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pairs = chunk_sections(latex)
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titles = [t for t, _ in pairs]
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assert "Introduction" in titles
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assert "Proof" in titles
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# No chunk spans a section boundary: each chunk belongs to one title.
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assert all(isinstance(c, str) and c for _, c in pairs)
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def test_fallback_titleless_when_no_sections(self) -> None:
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pairs = chunk_sections("Plain text with no section commands at all here.")
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assert pairs and all(title is None for title, _ in pairs)
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