llm-ingestion-okf/tests/test_error_codes.py
Kjell Tore Guttormsen 55a09d6c8e feat(profiles): a profile may name a per-suffix renderer
Arm E, capability only. A profile MAY name a renderer per suffix; no
domain-aware renderer is written here, that stays a Non-Goal, and `_RENDERERS`
is empty on purpose so the emptiness reads as a decision rather than an
omission.

THE LAYERING IS THE DESIGN, not an implementation detail. `extract.py` is the
extraction registry and must not import the contract layer, or the dependency
runs backwards and the registry stops standing on its own. So `extract_text`
gains a keyword-only `renderer: Callable[[str], str] | None`, knowing nothing
about profiles, and `inbox.py` -- which already holds the profile at that call
site -- resolves a NAME to a function. A test asserts extract.py still contains
no reference to the profile layer, because that constraint is the whole reason
the parameter is shaped this way.

The renderer runs AFTER extraction, never instead of it, so it never has to
re-implement a reader and the two cannot drift. The default is identity, which
is what keeps the five byte-pinned goldens byte-pinned -- asserted per suffix
rather than once.

An unknown renderer NAME is refused rather than falling back to identity: a
silent fallback would produce a bundle that looks rendered and is not, which is
the failure mode this arm exists to make visible. That needed a registered code
(`unknown_renderer`) and its test -- slightly beyond the step's named files,
but the capability cannot ship without defining what an unknown name does.

`tests/test_profile.py`'s exact-field-set assertion went red, as the plan's risk
table predicted. Updated deliberately with the reason recorded: that assertion
exists so a field cannot arrive without someone deciding it should, and its red
run is the mechanism working.

Suite 917 -> 926. All five goldens byte-identical.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-02 14:19:18 +02:00

687 lines
24 KiB
Python

"""Stable error codes: `IngestError.code` is the machine-readable API.
Every raise site carries a documented, stable code so consumers can assert
on sub-causes without binding message wording (messages may improve freely;
codes may not change). One test per code — this file IS the registry's
conformance suite.
"""
from __future__ import annotations
import hashlib
import importlib.util
import json
import sqlite3
import sys
import urllib.error
from pathlib import Path
from typing import Any
import pytest
import llm_ingestion_okf.connectors as connectors
from llm_ingestion_okf.connectors import read_csv, read_http, read_sql, safe_resolve
from llm_ingestion_okf.errors import (
ExtractionError,
IngestError,
ManifestError,
MaterializationError,
NetworkGateError,
RenderError,
SegmentationError,
SourceError,
)
from llm_ingestion_okf.extract import extract_text
from llm_ingestion_okf.importer import (
BundleDecision,
ImportDecision,
import_bundle,
import_filename,
import_slug,
)
from llm_ingestion_okf.inbox import (
GateDecision,
inbox_filename,
inbox_slug,
process_inbox,
render_inbox_concept,
)
from llm_ingestion_okf.manifest import load_manifest, load_manifest_bytes
from llm_ingestion_okf.materialize import materialize_bundle
from llm_ingestion_okf.profiles import DEFAULT, SEGMENTED_V1
from llm_ingestion_okf.render import sql_value_to_text
from llm_ingestion_okf.segmentation import assert_plan_applies, parse_segmentation_plan
INGESTED_AT = "2026-07-17T12:00:00Z"
FIXTURES = Path(__file__).parent / "fixtures"
# The two pdf-parser codes are only reachable with the optional extra
# installed; the rejection code that replaces them without it is asserted
# unconditionally in tests/test_extract.py.
requires_extract = pytest.mark.skipif(
importlib.util.find_spec("pdfplumber") is None,
reason="the optional [extract] extra is not installed",
)
def inbox_concept(**overrides: Any) -> str:
"""A valid inbox concept render, one field at a time made invalid."""
kwargs: dict[str, Any] = {
"okf_type": "note",
"title": "Note",
"source_file": "note.md",
"source_bytes": b"x",
"ingested_at": INGESTED_AT,
}
kwargs.update(overrides)
return render_inbox_concept("body", **kwargs)
def manifest_data(**overrides: Any) -> dict[str, Any]:
data: dict[str, Any] = {
"manifest_version": 1,
"source": {"type": "file", "id": "src-1", "root": "data"},
"bundle_summary": "A bundle.",
"extractions": [
{
"id": "orders",
"title": "Orders",
"query": "orders.csv",
"okf_type": "dataset",
"max_rows": 100,
}
],
}
data.update(overrides)
return data
def load(data: dict[str, Any]) -> None:
load_manifest_bytes(json.dumps(data).encode("utf-8"))
def code_of(excinfo: pytest.ExceptionInfo[IngestError]) -> str:
return excinfo.value.code
# --- the attribute itself ---
def test_bare_ingest_error_defaults_to_unspecified() -> None:
assert IngestError("something").code == "unspecified"
def test_code_does_not_change_the_message() -> None:
exc = SourceError("the message", code="max_rows_exceeded")
assert str(exc) == "the message"
assert exc.code == "max_rows_exceeded"
# --- ManifestError codes ---
def test_manifest_unreadable(tmp_path: Path) -> None:
with pytest.raises(ManifestError) as excinfo:
load_manifest(tmp_path / "nope.json")
assert code_of(excinfo) == "manifest_unreadable"
def test_manifest_unreadable_via_materialize(tmp_path: Path) -> None:
with pytest.raises(ManifestError) as excinfo:
materialize_bundle(tmp_path / "nope.json", tmp_path / "bundle", INGESTED_AT)
assert code_of(excinfo) == "manifest_unreadable"
@pytest.mark.parametrize("raw", [b"\xff\xfe", b"not json"])
def test_manifest_invalid_json(raw: bytes) -> None:
with pytest.raises(ManifestError) as excinfo:
load_manifest_bytes(raw)
assert code_of(excinfo) == "manifest_invalid_json"
def test_manifest_version_unsupported() -> None:
with pytest.raises(ManifestError) as excinfo:
load(manifest_data(manifest_version=2))
assert code_of(excinfo) == "manifest_version_unsupported"
def test_source_type_unknown() -> None:
with pytest.raises(ManifestError) as excinfo:
load(manifest_data(source={"type": "ftp", "id": "x"}))
assert code_of(excinfo) == "source_type_unknown"
def test_credential_embedded_in_base_url() -> None:
source = {"type": "http", "id": "api-1", "base_url": "https://user:pw@example.test"}
with pytest.raises(ManifestError) as excinfo:
load(manifest_data(source=source))
assert code_of(excinfo) == "credential_embedded"
def test_extraction_id_duplicate() -> None:
extraction = manifest_data()["extractions"][0]
with pytest.raises(ManifestError) as excinfo:
load(manifest_data(extractions=[extraction, dict(extraction)]))
assert code_of(excinfo) == "extraction_id_duplicate"
def test_okf_type_reserved() -> None:
extraction = dict(manifest_data()["extractions"][0], okf_type="verdict")
with pytest.raises(ManifestError) as excinfo:
load(manifest_data(extractions=[extraction]))
assert code_of(excinfo) == "okf_type_reserved"
@pytest.mark.parametrize(
"data",
[
"not an object",
manifest_data(bundle_summary=None),
{k: v for k, v in manifest_data().items() if k != "source"},
manifest_data(surprise="unknown field"),
manifest_data(extractions=[]),
manifest_data(source={"type": "file", "id": "UPPER", "root": "data"}),
manifest_data(extractions=[dict(manifest_data()["extractions"][0], title="two\nlines")]),
manifest_data(extractions=[dict(manifest_data()["extractions"][0], title="link [x]")]),
manifest_data(extractions=[dict(manifest_data()["extractions"][0], max_rows=0)]),
manifest_data(extractions=[dict(manifest_data()["extractions"][0], query="")]),
],
)
def test_manifest_schema_violations_share_one_code(data: Any) -> None:
with pytest.raises(ManifestError) as excinfo:
load_manifest_bytes(json.dumps(data).encode("utf-8"))
assert code_of(excinfo) == "manifest_schema"
# --- SourceError codes ---
def test_path_escape(tmp_path: Path) -> None:
with pytest.raises(SourceError) as excinfo:
safe_resolve(tmp_path, "../outside")
assert code_of(excinfo) == "path_escape"
def test_path_escape_covers_embedded_null(tmp_path: Path) -> None:
# A NUL byte makes the OS path syscalls raise ValueError before any
# boundary check runs. SourceError promises "always typed, never a
# leaked OSError" — an untyped ValueError breaks that contract, so a
# malformed target must fail closed under the same code as any other
# target that cannot resolve inside the root.
with pytest.raises(SourceError) as excinfo:
safe_resolve(tmp_path, "bad\x00.md")
assert code_of(excinfo) == "path_escape"
def test_source_root_missing(tmp_path: Path) -> None:
with pytest.raises(SourceError) as excinfo:
read_csv(tmp_path / "nope", "a.csv", max_rows=1)
assert code_of(excinfo) == "source_root_missing"
def test_source_file_missing(tmp_path: Path) -> None:
with pytest.raises(SourceError) as excinfo:
read_csv(tmp_path, "nope.csv", max_rows=1)
assert code_of(excinfo) == "source_file_missing"
def test_csv_no_header(tmp_path: Path) -> None:
(tmp_path / "empty.csv").write_text("", encoding="utf-8")
with pytest.raises(SourceError) as excinfo:
read_csv(tmp_path, "empty.csv", max_rows=1)
assert code_of(excinfo) == "csv_no_header"
def test_csv_ragged_row(tmp_path: Path) -> None:
(tmp_path / "ragged.csv").write_text("a,b\n1\n", encoding="utf-8", newline="")
with pytest.raises(SourceError) as excinfo:
read_csv(tmp_path, "ragged.csv", max_rows=10)
assert code_of(excinfo) == "csv_ragged_row"
def test_max_rows_exceeded_csv(tmp_path: Path) -> None:
(tmp_path / "big.csv").write_text("a\n1\n2\n", encoding="utf-8", newline="")
with pytest.raises(SourceError) as excinfo:
read_csv(tmp_path, "big.csv", max_rows=1)
assert code_of(excinfo) == "max_rows_exceeded"
def test_max_rows_exceeded_sql(tmp_path: Path, monkeypatch: pytest.MonkeyPatch) -> None:
db = tmp_path / "fixture.db"
with sqlite3.connect(db) as conn:
conn.execute("CREATE TABLE t (id INTEGER)")
conn.executemany("INSERT INTO t VALUES (?)", [(1,), (2,)])
monkeypatch.setenv("OKF_TEST_DB", str(db))
with pytest.raises(SourceError) as excinfo:
read_sql("OKF_TEST_DB", "SELECT id FROM t", max_rows=1)
assert code_of(excinfo) == "max_rows_exceeded"
def test_max_rows_exceeded_http() -> None:
with pytest.raises(SourceError) as excinfo:
read_http("https://example.test", "/x", max_rows=1, get=lambda url, cred: "a\nb\n")
assert code_of(excinfo) == "max_rows_exceeded"
def test_connection_ref_unset(monkeypatch: pytest.MonkeyPatch) -> None:
monkeypatch.delenv("OKF_TEST_DB", raising=False)
with pytest.raises(SourceError) as excinfo:
read_sql("OKF_TEST_DB", "SELECT 1", max_rows=1)
assert code_of(excinfo) == "connection_ref_unset"
def test_database_missing(tmp_path: Path, monkeypatch: pytest.MonkeyPatch) -> None:
monkeypatch.setenv("OKF_TEST_DB", str(tmp_path / "nope.db"))
with pytest.raises(SourceError) as excinfo:
read_sql("OKF_TEST_DB", "SELECT 1", max_rows=1)
assert code_of(excinfo) == "database_missing"
def test_sql_no_columns(tmp_path: Path, monkeypatch: pytest.MonkeyPatch) -> None:
db = tmp_path / "fixture.db"
sqlite3.connect(db).close()
monkeypatch.setenv("OKF_TEST_DB", str(db))
# BEGIN succeeds read-only and yields no result columns.
with pytest.raises(SourceError) as excinfo:
read_sql("OKF_TEST_DB", "BEGIN", max_rows=1)
assert code_of(excinfo) == "sql_no_columns"
def test_sql_failed(tmp_path: Path, monkeypatch: pytest.MonkeyPatch) -> None:
db = tmp_path / "fixture.db"
sqlite3.connect(db).close()
monkeypatch.setenv("OKF_TEST_DB", str(db))
with pytest.raises(SourceError) as excinfo:
read_sql("OKF_TEST_DB", "SELECT nope FROM missing", max_rows=1)
assert code_of(excinfo) == "sql_failed"
def test_credential_ref_unset(monkeypatch: pytest.MonkeyPatch) -> None:
monkeypatch.delenv("OKF_TEST_TOKEN", raising=False)
with pytest.raises(SourceError) as excinfo:
read_http(
"https://example.test",
"/x",
max_rows=1,
credential_ref="OKF_TEST_TOKEN",
get=lambda url, cred: "",
)
assert code_of(excinfo) == "credential_ref_unset"
def test_http_transport(monkeypatch: pytest.MonkeyPatch) -> None:
def refuse(request: Any) -> Any:
raise urllib.error.URLError("refused")
monkeypatch.setattr(connectors, "urlopen", refuse)
with pytest.raises(SourceError) as excinfo:
connectors.urllib_get("https://example.test/x", None)
assert code_of(excinfo) == "http_transport"
def test_fence_marker_in_body() -> None:
with pytest.raises(SourceError) as excinfo:
read_http("https://example.test", "/x", max_rows=10, get=lambda url, cred: "```\n")
assert code_of(excinfo) == "fence_marker_in_body"
# --- RenderError codes ---
@pytest.mark.parametrize("value", [True, b"bytes"])
def test_unsupported_cell_type(value: object) -> None:
with pytest.raises(RenderError) as excinfo:
sql_value_to_text(value)
assert code_of(excinfo) == "unsupported_cell_type"
def test_unknown_renderer() -> None:
from dataclasses import replace
from llm_ingestion_okf.inbox import _resolve_renderer
from llm_ingestion_okf.profiles import DEFAULT
profile = replace(DEFAULT, renderers={".md": "no-such-renderer"})
with pytest.raises(MaterializationError) as excinfo:
_resolve_renderer(profile, "note.md")
assert code_of(excinfo) == "unknown_renderer"
# --- ExtractionError codes ---
def test_extractor_unknown() -> None:
with pytest.raises(ExtractionError) as excinfo:
extract_text("archive.zip", b"")
assert code_of(excinfo) == "extractor_unknown"
def test_extractor_extra_missing(monkeypatch: pytest.MonkeyPatch) -> None:
# The import probe rather than a suffix: `docx` proved this code reachable
# only while the extra shipped no parser for it. Once it gains a converter,
# `_UNPARSED_OPTIONAL_EXTENSIONS` empties and the membership branch becomes
# unreachable — the probe is the path that survives.
monkeypatch.setitem(sys.modules, "pdfplumber", None)
with pytest.raises(ExtractionError) as excinfo:
extract_text("report.pdf", b"%PDF-1.4")
assert code_of(excinfo) == "extractor_extra_missing"
# The four converter codes are registered here BEFORE anything raises them, so
# no later step invents a spelling. Until the converter lands (the resolver in
# `_pandoc.py`, then the seam in `extract.py`), the falsifiable claim is exactly
# this: the code is documented in the registry and an `ExtractionError` carries
# it unchanged. Those steps replace each of these with a behavioural raise-site
# test; a code that never gains one would show up here as a test that still
# only reads a docstring.
@pytest.mark.parametrize(
"code",
[
"extractor_binary_missing",
"extractor_binary_version",
"extractor_convert_error",
"extractor_empty_conversion",
],
)
def test_converter_code_is_registered_and_carried(code: str) -> None:
registry = ExtractionError.__doc__ or ""
assert f"`{code}`" in registry, f"{code} is not documented in the registry"
assert ExtractionError("x", code=code).code == code
@requires_extract
def test_extractor_empty_pdf() -> None:
with pytest.raises(ExtractionError) as excinfo:
extract_text("scan.pdf", (FIXTURES / "no-text-layer.pdf").read_bytes())
assert code_of(excinfo) == "extractor_empty_pdf"
@requires_extract
def test_extractor_pdf_error() -> None:
with pytest.raises(ExtractionError) as excinfo:
extract_text("broken.pdf", b"not a pdf at all")
assert code_of(excinfo) == "extractor_pdf_error"
def test_extractor_decode_error() -> None:
with pytest.raises(ExtractionError) as excinfo:
extract_text("note.txt", b"\xffbad")
assert code_of(excinfo) == "extractor_decode_error"
def test_extractor_empty_csv() -> None:
with pytest.raises(ExtractionError) as excinfo:
extract_text("empty.csv", b"")
assert code_of(excinfo) == "extractor_empty_csv"
# --- MaterializationError codes ---
def test_ingested_at_invalid(tmp_path: Path) -> None:
with pytest.raises(MaterializationError) as excinfo:
materialize_bundle(tmp_path / "m.json", tmp_path / "bundle", "2026-07-17")
assert code_of(excinfo) == "ingested_at_invalid"
def test_collision_unstamped(tmp_path: Path) -> None:
src = tmp_path / "src"
src.mkdir()
(src / "manifest.json").write_text(json.dumps(manifest_data()), encoding="utf-8")
(src / "data").mkdir()
(src / "data" / "orders.csv").write_text("a\n1\n", encoding="utf-8", newline="")
bundle = tmp_path / "bundle"
bundle.mkdir()
(bundle / "ingest-orders.md").write_text("curated, no stamp\n", encoding="utf-8")
with pytest.raises(MaterializationError) as excinfo:
materialize_bundle(src / "manifest.json", bundle, INGESTED_AT)
assert code_of(excinfo) == "collision_unstamped"
def test_inbox_slug_empty() -> None:
with pytest.raises(MaterializationError) as excinfo:
inbox_slug("!!!.md")
assert code_of(excinfo) == "inbox_slug_empty"
def test_inbox_slug_too_long() -> None:
with pytest.raises(MaterializationError) as excinfo:
inbox_filename("a" * 247)
assert code_of(excinfo) == "inbox_slug_too_long"
def test_inbox_slug_collision(tmp_path: Path) -> None:
# Two dropped names reducing to one generated filename: reported per file,
# so this code surfaces in InboxResult.failed rather than as a raise.
inbox = tmp_path / "inbox"
inbox.mkdir()
(inbox / "note.md").write_text("a\n", encoding="utf-8")
(inbox / "note.txt").write_text("b\n", encoding="utf-8")
result = process_inbox(
inbox,
tmp_path / "bundle",
INGESTED_AT,
okf_type="note",
gate=lambda text: GateDecision(sanitized_text=text, disposition="warn"),
)
assert {entry.error.code for entry in result.failed} == {"inbox_slug_collision"}
def test_inbox_title_invalid() -> None:
with pytest.raises(MaterializationError) as excinfo:
inbox_concept(title="broken [link]")
assert code_of(excinfo) == "inbox_title_invalid"
def test_inbox_source_file_invalid() -> None:
with pytest.raises(MaterializationError) as excinfo:
inbox_concept(source_file="two\nlines.md")
assert code_of(excinfo) == "inbox_source_file_invalid"
def test_okf_type_reserved_at_the_inbox_door() -> None:
# Same reserved layer as the manifest code above, enforced at Door B.
with pytest.raises(MaterializationError) as excinfo:
inbox_concept(okf_type="verdict")
assert code_of(excinfo) == "okf_type_reserved"
# --- MaterializationError codes at Door C ---
def approve_all(bundle: dict[str, str], *, origin: str, channel: str) -> BundleDecision:
"""A gate that clears every concept at the non-blocking floor."""
return BundleDecision(
concepts=tuple(ImportDecision(path=path, disposition="warn") for path in sorted(bundle))
)
def place(source: Path, relpath: str, content: str = "body\n") -> None:
path = source / relpath
path.parent.mkdir(parents=True, exist_ok=True)
path.write_text(content, encoding="utf-8", newline="")
def run_import(tmp_path: Path, **overrides: Any) -> Any:
kwargs: dict[str, Any] = {"origin": "external", "channel": "automatic", "gate": approve_all}
kwargs.update(overrides)
return import_bundle(tmp_path / "source", tmp_path / "bundle", INGESTED_AT, **kwargs)
def test_import_path_empty() -> None:
with pytest.raises(MaterializationError) as excinfo:
import_slug("!!!.md")
assert code_of(excinfo) == "import_path_empty"
def test_import_path_too_long() -> None:
with pytest.raises(MaterializationError) as excinfo:
import_filename("a" * 250)
assert code_of(excinfo) == "import_path_too_long"
def test_import_slug_collision(tmp_path: Path) -> None:
# Two concept paths reducing to one generated filename: reported per
# concept, so this code surfaces in ImportResult.failed rather than as a raise.
place(tmp_path / "source", "a/b.md")
place(tmp_path / "source", "a-b.md")
result = run_import(tmp_path)
assert {entry.error.code for entry in result.failed} == {"import_slug_collision"}
def test_import_label_invalid(tmp_path: Path) -> None:
place(tmp_path / "source", "report [v2].md")
result = run_import(tmp_path)
assert [entry.error.code for entry in result.failed] == ["import_label_invalid"]
def test_collision_unstamped_at_the_import_door(tmp_path: Path) -> None:
# Same code as Door A's stamp collision: the generated name is occupied by
# content this library cannot prove is its own to replace.
bundle = tmp_path / "bundle"
bundle.mkdir()
(bundle / "import-note.md").write_text("curated\n", encoding="utf-8")
place(tmp_path / "source", "note.md")
result = run_import(tmp_path)
assert [entry.error.code for entry in result.failed] == ["collision_unstamped"]
@pytest.mark.parametrize(("origin", "channel"), [("nope", "automatic"), ("external", "nope")])
def test_import_provenance_invalid(tmp_path: Path, origin: str, channel: str) -> None:
place(tmp_path / "source", "a.md")
with pytest.raises(MaterializationError) as excinfo:
run_import(tmp_path, origin=origin, channel=channel)
assert code_of(excinfo) == "import_provenance_invalid"
# --- NetworkGateError codes ---
def test_network_opt_in_missing(tmp_path: Path) -> None:
src = tmp_path / "src"
src.mkdir()
data = manifest_data(source={"type": "http", "id": "api-1", "base_url": "https://x.test"})
data["extractions"][0]["query"] = "/orders"
(src / "manifest.json").write_text(json.dumps(data), encoding="utf-8")
with pytest.raises(NetworkGateError) as excinfo:
materialize_bundle(src / "manifest.json", tmp_path / "bundle", INGESTED_AT)
assert code_of(excinfo) == "network_opt_in_missing"
# --- SegmentationError codes ---
#
# These arrived during the 1-to-N voyage, when the byte-stability pin over
# `tests/` was the verification mechanism and editing this file would have
# broken it, so they were covered in the new segmentation modules instead. The
# pin was released by the end-to-end gate run of 2026-09-01, and the registry
# convention above applies again: one test per code, and this file is where a
# reader confirms the registry is complete. The behavioural tests in
# `tests/test_segmentation.py` and `tests/test_segmented_inbox.py` stay where
# they are -- they exercise the parser and the door, which is a different
# question from whether every documented code has a raise site.
def segmentation_entry(**overrides: Any) -> dict[str, Any]:
payload: dict[str, Any] = {
"segment_id": "s1",
"path": "krav/3-1/brannkonsept.md",
"title": "Brannkonsept",
"okf_type": "requirement",
"span": [0, 40],
"ingested_at": INGESTED_AT,
}
payload.update(overrides)
return payload
def segmentation_payload(**overrides: Any) -> dict[str, Any]:
payload: dict[str, Any] = {
"version": "1",
"source_sha256": "a" * 64,
"extractor_id": "text",
"extractor_version": "1.0.0",
"adjudicated_at": INGESTED_AT,
"entries": [segmentation_entry()],
}
payload.update(overrides)
return payload
def parse_segmentation_fails(payload: dict[str, Any]) -> str:
with pytest.raises(SegmentationError) as excinfo:
parse_segmentation_plan(payload)
return excinfo.value.code
def run_segmented_inbox(tmp_path: Path, *, plan_overrides: dict[str, Any], **kwargs: Any) -> None:
inbox = tmp_path / "round"
inbox.mkdir(parents=True, exist_ok=True)
body = "Brannkonsept: krav til seksjonering.\n"
(inbox / "n500.md").write_text(body, encoding="utf-8", newline="")
payload = segmentation_payload(
source_sha256=hashlib.sha256(body.encode("utf-8")).hexdigest(),
entries=[segmentation_entry(span=[0, len(body)])],
)
payload.update(plan_overrides)
process_inbox(
inbox,
tmp_path / "bundle",
INGESTED_AT,
okf_type="requirement",
gate=lambda text: GateDecision(sanitized_text=text, disposition="warn"),
segmentation=parse_segmentation_plan(payload),
**kwargs,
)
def test_segmentation_plan_invalid() -> None:
assert parse_segmentation_fails(segmentation_payload(entries=[])) == "segmentation_plan_invalid"
def test_segmentation_path_invalid() -> None:
payload = segmentation_payload(entries=[segmentation_entry(path="/krav/absolutt.md")])
assert parse_segmentation_fails(payload) == "segmentation_path_invalid"
def test_segmentation_span_invalid() -> None:
payload = segmentation_payload(entries=[segmentation_entry(span=[40, 40])])
assert parse_segmentation_fails(payload) == "segmentation_span_invalid"
def test_segmentation_duplicate_id() -> None:
payload = segmentation_payload(
entries=[segmentation_entry(), segmentation_entry(path="krav/3-2/roemning.md")]
)
assert parse_segmentation_fails(payload) == "segmentation_duplicate_id"
def test_segmentation_extractor_mismatch() -> None:
plan = parse_segmentation_plan(segmentation_payload())
with pytest.raises(SegmentationError) as excinfo:
assert_plan_applies(
plan,
source_sha256="b" * 64,
extractor_id=plan.extractor_id,
extractor_version=plan.extractor_version,
)
assert code_of(excinfo) == "segmentation_extractor_mismatch"
def test_segmentation_unsupported_profile(tmp_path: Path) -> None:
with pytest.raises(SegmentationError) as excinfo:
run_segmented_inbox(tmp_path, plan_overrides={}, profile=DEFAULT)
assert code_of(excinfo) == "segmentation_unsupported_profile"
def test_segmentation_plan_unmatched(tmp_path: Path) -> None:
with pytest.raises(SegmentationError) as excinfo:
run_segmented_inbox(
tmp_path,
plan_overrides={"source_sha256": "0" * 64},
profile=SEGMENTED_V1,
root_frontmatter_values={"bundle_id": "b-1"},
)
assert code_of(excinfo) == "segmentation_plan_unmatched"