Files
serato-doctor/serato_doctor/crate_parser.py
2026-07-01 08:06:19 -07:00

122 lines
3.7 KiB
Python

from pathlib import Path
from typing import Iterable, Tuple
from serato_doctor.models.crate import Crate, CrateKind
from serato_doctor.models.reference import TrackReference
def read_crate_text(crate_path: Path) -> str:
return crate_path.read_bytes().decode("utf-16-le", errors="ignore").replace("\x00", "")
def clean_path(raw: str) -> str:
# Common Serato decode artifacts where final extension char gets merged.
raw = raw.replace(".mp漳", ".mp3")
raw = raw.replace(".MP漳", ".MP3")
raw = raw.replace(".m4愠", ".m4a")
raw = raw.replace(".M4愠", ".M4A")
raw = raw.replace(".wa瘠", ".wav")
raw = raw.replace(".WA瘠", ".WAV")
raw = raw.replace(".ai映", ".aif")
raw = raw.replace(".AI映", ".AIF")
return raw.strip()
DEFAULT_PATH_MARKERS = ("Users/", "Volumes/")
def path_markers(reference_roots: Iterable[Path]) -> Tuple[str, ...]:
configured = tuple(
root.expanduser().as_posix().strip("/") + "/" for root in reference_roots
)
return configured or DEFAULT_PATH_MARKERS
def classify_crate(crate_path: Path) -> CrateKind:
parent_names = {parent.name.casefold() for parent in crate_path.parents}
if "smartcrates" in parent_names:
return CrateKind.SMART
if crate_path.name.casefold() == "compatible by key.crate":
return CrateKind.SMART
if "subcrates" in parent_names:
return CrateKind.STATIC
return CrateKind.UNKNOWN
def load_crate(crate_path: Path, reference_roots: Iterable[Path] = ()) -> Crate:
text = read_crate_text(crate_path)
refs = []
# Serato record markers seen after paths in UTF-16-LE decoded crate data.
stop_markers = ["牴k", "otrk", "ptrk", "tvcn", "ovct"]
for marker in path_markers(reference_roots):
for part in text.split(marker)[1:]:
candidate = marker + part
stops = [
candidate.find(stop)
for stop in stop_markers
if candidate.find(stop) != -1
]
if not stops:
continue
raw_path = "/" + candidate[: min(stops)]
raw_path = clean_path(raw_path)
path = Path(raw_path)
refs.append(
TrackReference(
source=crate_path,
path=path,
filename=path.name,
)
)
return Crate(
path=crate_path,
references=tuple(refs),
kind=classify_crate(crate_path),
)
def parse_crate(
crate_path: Path, reference_roots: Iterable[Path] = ()
) -> list[TrackReference]:
"""Parse references from one crate, preserving the prototype API."""
return list(load_crate(crate_path, reference_roots).references)
def parse_crates(
root: Path, reference_roots: Iterable[Path] = ()
) -> list[TrackReference]:
refs = []
reference_roots = tuple(reference_roots)
for crate in root.rglob("*.crate"):
refs.extend(parse_crate(crate, reference_roots))
return refs
def load_library_crates(
serato_root: Path, reference_roots: Iterable[Path] = ()
) -> Tuple[Crate, ...]:
reference_roots = tuple(reference_roots)
if not serato_root.is_dir():
return ()
crates = []
folder_patterns = {
"subcrates": ("*.crate",),
"smartcrates": ("*.scrate", "*.crate"),
}
for folder in serato_root.iterdir():
patterns = folder_patterns.get(folder.name.casefold())
if patterns is None or not folder.is_dir():
continue
for pattern in patterns:
for crate_path in folder.rglob(pattern):
crates.append(load_crate(crate_path, reference_roots))
return tuple(sorted(crates, key=lambda crate: str(crate.path)))