"""Structured-source adapter protocol and shared fetch helpers (``docs/02`` §4). A *structured source* is a C1 source whose gold authority is a machine-checkable certificate built from a structured world (PlotQA, Geometry3K) rather than a human label. Each source ships an adapter implementing :class:`StructuredSourceAdapter`: * :meth:`iter_base_items` — stream joined native records for one split, deterministically ordered, with image bytes attached so ``normalize`` is a pure function. * :meth:`normalize` — map one raw record to a schema-conforming :class:`~explicit_learning.ingest.base.NormalizedItem` (policy ``c1_train_candidate`` / ``c1_certified_eval_candidate``). * :meth:`build_world` — emit the source's structured world (``plot_world_v1`` / ``geometry_world_v1``) with channel provenance. P1 builds the *structure*; the typed DSL AST (P2) and executor (P3) come later. * :meth:`official_answer` — the released/canonical answer (executor-tolerance reproduction is a P3 gate, not P1). * :meth:`source_certificate_tier` — ``C1_SOURCE_NATIVE`` for both C1 sources. Fetch helpers here download pinned archives idempotently and verify SHA-256. A failed fetch is a hard :class:`AdapterError` — a blocked source is skipped, never substituted (runbook). """ from __future__ import annotations import io import urllib.request import zipfile from collections.abc import Iterator, Mapping from dataclasses import dataclass from pathlib import Path from typing import Any, Literal, Protocol, runtime_checkable from ..hashing import is_sha256, sha256_file from ..ingest.base import ImageStore, IngestError, NormalizedItem # A structured world is a plain JSON-serializable mapping (``plot_world_v1`` / # ``geometry_world_v1``); the typed AST lives in the DSL layer (P2). World = dict[str, Any] CertificateTier = Literal["C1_SOURCE_NATIVE", "C2_DUAL_COMPILED"] # Provenance channel for a world constraint (``docs/02`` §6.2): a fact stated in # the question/problem text is ``text``; a fact only visible in the diagram is # ``visual``; stated in both is ``redundant``. Interventions alter only the # ``visual`` channel, so an executor can still recover the value from ``text``. Channel = Literal["text", "visual", "redundant"] class AdapterError(IngestError): """Raised when a structured source cannot be fetched or parsed. Fetch/parse failures are hard errors: the runbook skips a blocked source rather than substituting another, and never fakes success. """ @dataclass(frozen=True) class RawItem: """One joined native record ready for :meth:`StructuredSourceAdapter.normalize`. ``payload`` is the source-specific joined record (e.g. Geometry3K ``data.json`` + annotated logic forms, or PlotQA QA pair + plot annotation). ``images`` maps a stable reference name to its raw bytes in source order, so ``normalize`` can content-address images through an :class:`~explicit_learning.ingest.base.ImageStore` without touching the filesystem — keeping adapters unit-testable with in-memory inputs. """ source: str split: str source_revision: str native_id: str payload: Mapping[str, Any] images: Mapping[str, bytes] @runtime_checkable class StructuredSourceAdapter(Protocol): """One C1/C2 structured source (``docs/02`` §4).""" def __init__(self, raw_dir: Path, store: ImageStore, *, revision: str) -> None: ... def iter_base_items(self, split: str) -> Iterator[RawItem]: ... def normalize(self, raw: RawItem) -> NormalizedItem: ... def build_world(self, item: NormalizedItem) -> World: ... def get_or_compile_program(self, item: NormalizedItem) -> Any: """Compile the canonical question program (P2 DSL). Not yet implemented.""" ... def official_answer(self, item: NormalizedItem) -> Any: ... def source_certificate_tier(self, item: NormalizedItem) -> CertificateTier: ... @classmethod def is_materialized(cls, raw_dir: Path, split: str) -> bool: ... @classmethod def materialize( cls, raw_dir: Path, split: str, *, source_config: Mapping[str, Any], expected_sha256: Mapping[str, str] | None = None, ) -> Path: ... # --- fetch helpers --------------------------------------------------------- def _verify(path: Path, expected_sha256: str | None) -> None: if expected_sha256 is None: return if not is_sha256(expected_sha256): raise AdapterError(f"invalid expected sha256 for {path}: {expected_sha256!r}") actual = sha256_file(path) if actual != expected_sha256: raise AdapterError(f"{path} sha256 mismatch: expected {expected_sha256}, got {actual}") def http_download( url: str, dst: Path, *, expected_sha256: str | None = None, timeout: float = 120.0, ) -> Path: """Download ``url`` to ``dst`` atomically; verify SHA-256 if given. Idempotent: an existing file with a matching hash is left untouched. A mismatched existing file is re-downloaded. Network/size errors raise :class:`AdapterError` (never a silent skip). """ dst = Path(dst) if dst.exists() and expected_sha256 is not None: try: _verify(dst, expected_sha256) return dst except AdapterError: dst.unlink() # stale/corrupt — re-download dst.parent.mkdir(parents=True, exist_ok=True) tmp = dst.with_suffix(dst.suffix + ".part") try: req = urllib.request.Request(url, headers={"User-Agent": "explicit-learning"}) with ( urllib.request.urlopen(req, timeout=timeout) as resp, # noqa: S310 tmp.open("wb") as handle, ): while True: chunk = resp.read(1 << 20) if not chunk: break handle.write(chunk) except OSError as exc: # pragma: no cover - network path tmp.unlink(missing_ok=True) raise AdapterError(f"download failed for {url}: {exc}") from exc tmp.replace(dst) _verify(dst, expected_sha256) return dst def github_raw_url(repo_id: str, revision: str, path: str) -> str: """Build a pinned raw.githubusercontent URL for one file in a repo.""" return f"https://raw.githubusercontent.com/{repo_id}/{revision}/{path}" def extract_zip(zip_path: Path, dest_dir: Path) -> Path: """Extract ``zip_path`` into ``dest_dir``; return ``dest_dir``. Idempotent: extraction is skipped if a marker file recording the archive's sha256 already indicates a complete prior extraction. """ zip_path = Path(zip_path) dest_dir = Path(dest_dir) dest_dir.mkdir(parents=True, exist_ok=True) marker = dest_dir / f".{zip_path.stem}.extracted" digest = sha256_file(zip_path) if marker.exists() and marker.read_text().strip() == digest: return dest_dir try: with zipfile.ZipFile(zip_path) as archive: archive.extractall(dest_dir) except (zipfile.BadZipFile, OSError) as exc: raise AdapterError(f"cannot extract {zip_path}: {exc}") from exc marker.write_text(digest) return dest_dir def read_zip_member(zip_path: Path, member: str) -> bytes: """Read one member from a zip without extracting the whole archive.""" try: with zipfile.ZipFile(zip_path) as archive, archive.open(member) as handle: return handle.read() except (KeyError, zipfile.BadZipFile, OSError) as exc: raise AdapterError(f"cannot read {member!r} from {zip_path}: {exc}") from exc def gdrive_download( file_id: str, dst: Path, *, expected_sha256: str | None = None, ) -> Path: """Download a Google Drive file via ``gdown`` (PlotQA data is Drive-hosted). The Drive file id is not git-pinned, so SHA-256 is the integrity anchor and is recorded in the ingest manifest. ``gdown`` is imported lazily; its absence is a hard :class:`AdapterError`, not a silent skip. """ dst = Path(dst) if dst.exists() and expected_sha256 is not None: try: _verify(dst, expected_sha256) return dst except AdapterError: dst.unlink() try: import gdown except ImportError as exc: # pragma: no cover - environment path raise AdapterError( "gdown is required to fetch Google-Drive-hosted sources " "(PlotQA); install it into the data venv" ) from exc dst.parent.mkdir(parents=True, exist_ok=True) try: # pragma: no cover - network path gdown.download(id=file_id, output=str(dst), quiet=True, fuzzy=True) except Exception as exc: # noqa: BLE001 - gdown raises varied types raise AdapterError(f"gdown download failed for file id {file_id}: {exc}") from exc _verify(dst, expected_sha256) return dst def in_memory_zip(members: Mapping[str, bytes]) -> bytes: """Build an in-memory zip from ``{member: bytes}`` (for unit-test fixtures).""" buf = io.BytesIO() with zipfile.ZipFile(buf, "w", zipfile.ZIP_DEFLATED) as archive: for name, data in members.items(): archive.writestr(name, data) return buf.getvalue() def store_images( store: ImageStore, images: Mapping[str, bytes] ) -> tuple[tuple[str, ...], tuple[str, ...]]: """Content-address every image in source order; return (paths, sha256).""" paths: list[str] = [] shas: list[str] = [] for _ref, data in images.items(): rel, sha = store.store(data) paths.append(rel) shas.append(sha) return tuple(paths), tuple(shas) __all__ = [ "ADAPTERS", "AdapterError", "CertificateTier", "Channel", "RawItem", "StructuredSourceAdapter", "World", "extract_zip", "gdrive_download", "github_raw_url", "http_download", "in_memory_zip", "read_zip_member", "store_images", ] # Registry is populated by ``sources/__init__.py`` after the concrete adapters # import their dependencies, to avoid a circular import through this module. ADAPTERS: dict[str, type[StructuredSourceAdapter]] = {}