The guard could not read back what this library WRITES. At 1.2.0,
`okf.parse_frontmatter` refused the OKF v0.2 golden outright --
`OKFFrontmatterError: value begins with a disallowed YAML indicator '['`
against `sources: [{ id: golden-v0-2-sales, resource: fixture }]`. Flow is
the only form this library can emit, because its own line-oriented parser
cannot round-trip the block form at all, so a gate that refuses flow
refuses everything Door A produces under `OKF_V0_2`.
The control was run BEFORE the bump, which is the only moment it exists:
the probe raised on 1.2.0, so the new test discriminates rather than
merely passes. `[project.dependencies]` already said `>=1.2,<2.0` and is
unchanged; only `[tool.uv.sources]` and `uv.lock` move.
TWO gate rows moved, not the one the work was scoped around, which is why
the whole documented probe was re-run instead of just the `sources` case:
the BLOCK form of `sources` now passes too, retiring G30. That changes
nothing about what we emit -- our own parser is still the binding
constraint on writing flow -- and `docs/okf-nokkelinventar.md` now carries
a `guard 1.3.0` column beside the 1.2.0 measurement rather than
overwriting it. A third row kept its verdict but changed its reason, so
the quoted message was corrected too.
The Door C boundary is unmoved, verified with a known-positive:
`resource` is allowlisted only inside a `sources` entry, so section
10.2's `executor.resource` and `attester.resource` are still rejected
("not on the OKF mapping allowlist under 'executor'") while top-level
`resource` passes.
`uv.lock` also gains `pypandoc-binary==1.17`. That is a stale lockfile
being corrected, not a new dependency: it was already declared in the
`[extract]` extra, and `uv lock --check` reports the lockfile out of date
on the untouched tree. Core keeps exactly one runtime dependency.
Not addressed, and recorded rather than built: the guard reports that
`sources[].resource` is scanned as text but never URL-validated, because
SPEC 5.1 permits bundle-relative paths and scope descriptions. No
consumer has asked for a gate there.
Guard 1.3.0 installed from 44e2b31, verified anonymously over https
against the remote tag. 1054 -> 1055 tests. `mypy --strict` clean, `ruff`
clean.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
139 lines
6.9 KiB
TOML
139 lines
6.9 KiB
TOML
[build-system]
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requires = ["hatchling"]
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build-backend = "hatchling.build"
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[project]
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name = "llm-ingestion-okf"
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version = "0.5.0a2"
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description = "Shared OKF (Open Knowledge Format) ingestion library: spec-based connectors, bundle inbox, and external-bundle import, with security delegated to llm-ingestion-guard."
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readme = "README.md"
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license = "MIT"
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requires-python = ">=3.10"
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authors = [{ name = "Kjell Tore Guttormsen" }]
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classifiers = [
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"Development Status :: 3 - Alpha",
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"Intended Audience :: Developers",
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"Operating System :: OS Independent",
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"Programming Language :: Python :: 3",
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"Programming Language :: Python :: 3.10",
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]
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# Exactly one runtime dependency, ever: the security boundary. Everything
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# else is stdlib. The version range is the real pin — it resolves normally
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# against a package index, and is satisfied today by the git+https tag
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# install documented in the README (a direct reference is an install-time
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# channel, not a dependency declaration).
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#
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# Floor 1.2, not the 1.0.0 freeze: this library needs the flow-mapping
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# frontmatter support (`generated: { by: x, at: y }`) that landed in the
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# guard's 1.2.0, without which Door C fail-secures every concept carrying
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# it. Ceiling <2.0, not a narrower minor: the guard's own 1.0.0 release
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# promises no exported name is removed, renamed or given a different
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# meaning short of a 2.0.0 — calibration (severities, dispositions) is
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# explicitly free to move within 1.x under that same promise, so a tighter
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# ceiling here would claim a stability guarantee the guard does not need to
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# keep and we do not need to demand.
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dependencies = ["llm-ingestion-guard>=1.2,<2.0"]
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[project.optional-dependencies]
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# Binary file-type extraction parsers. OPT-IN ONLY: this extra pulls binary
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# wheels (pillow, pypdfium2) and a transitive tree that core must never have —
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# the "exactly one runtime dependency" rule above covers the default install,
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# and this extra is outside it by construction.
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#
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# The extra names the parsers it actually ships, so a consumer installing it
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# gets what the error message promised and nothing else. It ships two: a `pdf`
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# reader, and a converter that reaches the office types.
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#
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# WHY pdfplumber, and why the floor is not free (measured 2026-08-21,
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# docs/2026-08-21-g2-pdf-extraction-measurement.md): on a real Vegnormalene
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# requirement table pdfplumber keeps 4 of 4 rows with label and value on the
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# same line; pypdf, pdfminer.six and pymupdf each keep 0 of 4, emitting all
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# labels then all values, which a downstream reader can only re-pair by
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# guessing. In a `krav` document that is a wrong answer that looks right.
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# pymupdf is additionally out on LICENSE (AGPL-3.0 or commercial) — this
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# package is MIT and an extra must not hand a consumer copyleft they did not
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# choose.
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#
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# PARSER VERSION IS PART OF THE OUTPUT CONTRACT. pdfplumber pins
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# `pdfminer.six==20260107` exactly, and pdfminer.six ships date-stamped
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# releases with no stability contract. Extraction is deterministic WITHIN a
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# parser version (measured, 5 configurations) and NOT guaranteed across one.
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# `tests/test_extract.py` holds that promise against a committed fixture, so
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# widening this range makes a test go red instead of letting extracted text
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# drift silently. See tests/fixtures/README.md.
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#
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# WHY THE CONVERTER BINARY IS VENDORED RATHER THAN FOUND ON PATH. The `xlsx`
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# and `pptx` readers exist only from pandoc 3.8.3. Debian 12 ships 2.17.1.1
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# and Ubuntu 24.04 ships 3.1.3, so a PATH binary cannot deliver two of the
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# five office formats on current stable distributions -- and a library whose
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# output depends on which pandoc a host happens to carry is not deterministic
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# in the sense the rest of this package means it.
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#
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# `pypandoc-binary` carries the binary inside the wheel (7 platform wheels at
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# 1.17, including macosx x86_64/arm64, manylinux and musllinux x86_64/aarch64,
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# and win_amd64 -- measured on the PyPI JSON API 2026-09-02). The pin is
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# EXACT, not a range, because the binary's version is part of the output
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# contract in the same way pdfminer.six's is: extraction is deterministic
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# within a converter version and not across one.
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#
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# This does not widen the runtime dependency surface. The rule above governs
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# `project.dependencies`, which still names the guard alone; the extra is
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# outside it by construction, and the test below now pins its contents so a
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# third entry cannot arrive unexamined.
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extract = ["pdfplumber>=0.11.10,<0.12", "pypandoc-binary==1.17"]
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[dependency-groups]
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dev = ["pytest>=8", "mypy>=1.14", "ruff>=0.9"]
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[tool.hatch.build.targets.wheel]
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packages = ["src/llm_ingestion_okf"]
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[tool.ruff]
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line-length = 100
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target-version = "py310"
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[tool.mypy]
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strict = true
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python_version = "3.10"
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# llm-ingestion-guard ships no py.typed marker, so its symbols arrive as Any.
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# The adapter coerces every value it carries across the seam to a concrete
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# type, which is what keeps --strict meaningful on this side of it.
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[[tool.mypy.overrides]]
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module = ["llm_ingestion_guard", "llm_ingestion_guard.*"]
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ignore_missing_imports = true
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# `pypandoc` ships no py.typed marker either. Only `_pandoc.py` imports it, and
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# every value it hands back is coerced to `str`/`Path` there before it reaches
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# the rest of the package -- the same discipline as the guard adapter above.
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[[tool.mypy.overrides]]
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module = ["pypandoc", "pypandoc.*"]
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ignore_missing_imports = true
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# Install CHANNEL for the guard, which is not on a package index yet. It is
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# uv-specific, and it reaches further than a dev-only setting: a consumer
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# installing this package from git WITH UV picks the guard up from this tag
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# automatically, because uv reads this file when it builds from the source
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# tree. Measured against an empty cache 2026-07-25, 2026-08-20, and
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# 2026-08-21 on uv 0.9.8. The 08-21 run also measured the TRANSITIVE form: a
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# separate consumer project naming only this package still resolves the guard
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# from the entry below, because this package reaches it as a git source.
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#
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# That source is the whole reach. A wheel carries Requires-Dist and nothing
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# else, so this entry cannot survive an index install — and while the guard is
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# off-index, removing it would break the one-command uv path the README
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# documents.
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#
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# pip does not read it at all: it resolves [project.dependencies] alone and
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# fails with "No matching distribution found for llm-ingestion-guard" until
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# the guard is installed from its own tag first (README; measured 2026-08-21,
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# both the failure and the two-command recovery).
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#
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# Either way the range above stays the pin, and the pin is per-tree: a wheel
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# built from THIS tree carries `Requires-Dist: llm-ingestion-guard<2.0,>=1.2`,
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# measured 2026-08-23 against the built wheel. The `<0.4,>=0.3` this comment
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# carried before was the `v0.3.4` tag's range — still true of that tag, never
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# true of this tree. Reading a range off one and installing it against the
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# other is the one combination that fails.
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[tool.uv.sources]
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llm-ingestion-guard = { git = "https://git.fromaitochitta.com/open/llm-ingestion-pipeline-security.git", tag = "v1.3.0" }
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