Compare commits

..

7 Commits

Author SHA1 Message Date
Philip Guzman 6449c7de6a Add duplicate filename diagnostics 2026-06-30 18:52:16 -07:00
Philip Guzman d764f910e4 Merge feature/crate-classification into develop 2026-06-30 18:50:42 -07:00
Philip Guzman 35713bbbb3 Classify static and smart crates 2026-06-30 18:20:05 -07:00
Philip Guzman c92d929f37 Merge feature/analyze-command into develop 2026-06-30 18:17:20 -07:00
Philip Guzman e6f313d98a Add read-only analyze command 2026-06-30 17:55:45 -07:00
Philip Guzman 22424d0b5c Merge feature/health-engine into develop 2026-06-30 17:54:20 -07:00
Philip Guzman b8bf9ec6e1 Add transparent library health engine 2026-06-30 17:47:54 -07:00
21 changed files with 703 additions and 30 deletions
+37
View File
@@ -0,0 +1,37 @@
# Serato Doctor
Serato Doctor is a read-only-first toolkit for inspecting and eventually repairing
DJ libraries. Serato is the first supported engine.
## Analyze a Library
```shell
serato-doctor analyze \
--serato ~/Music/_Serato_ \
--music ~/Music/Jukebox
```
Analysis prints a transparent reference-integrity score plus broken references,
duplicate filenames, unused tracks, and suggested filename matches. It does not
modify the library or create report files.
If crates contain an older library root, supply it explicitly:
```shell
serato-doctor analyze --reference-root /Users/old-user/OneDrive/Jukebox
```
## Generate Detailed Reports
Running without a command preserves the original scanner behavior and writes CSV
and text reports:
```shell
serato-doctor --serato ~/Music/_Serato_ --music ~/Music/Jukebox
```
Use `--verbose` for progress on standard error or `--log-file PATH` for an
aggregate diagnostic log.
Serato Doctor never repairs files without an explicit future repair workflow,
preview, backup, and rollback path.
+4 -3
View File
@@ -17,13 +17,14 @@
## v0.2 — Diagnostics ## v0.2 — Diagnostics
- [ ] Duplicate filename detection - [x] `serato-doctor analyze` command
- [x] Duplicate filename detection
- [ ] Duplicate audio hash detection - [ ] Duplicate audio hash detection
- [ ] Broken symlink detection - [ ] Broken symlink detection
- [ ] Orphaned audio detection - [ ] Orphaned audio detection
- [ ] OneDrive rename detection - [ ] OneDrive rename detection
- [ ] Crate classification: static vs smart/dynamic - [x] Crate classification: static vs smart/dynamic
- [ ] Library health score - [x] Library health score
## v0.3 — Safe Repair ## v0.3 — Safe Repair
+27
View File
@@ -0,0 +1,27 @@
# Analyze Command
## Problem
The health and matching engines are only Python APIs. Users need one safe command
that summarizes library integrity without first interpreting CSV files.
## Architecture
`serato-doctor analyze` reuses the existing configured crate parser and filesystem
scanner, then prints the immutable health report. The original no-command mode is
retained as the report-producing scan workflow.
Analyze mode does not create CSV or text reports. Both modes remain read-only with
respect to Serato crates, databases, and music files.
## Edge Cases
- A library with no references displays `Not assessed` rather than a false score.
- Historical roots continue to work through repeatable `--reference-root` flags.
- Normal output remains separate from optional diagnostic logging.
- Existing scripts that invoke the CLI without a subcommand remain compatible.
## Verification
Tests prove the legacy five-line output and reports remain unchanged, while analyze
prints health metrics and does not create output files.
+33
View File
@@ -0,0 +1,33 @@
# Crate Classification
## Problem
Static crates are manually maintained track lists. Smart crates are dynamic views
generated from rules, so stale-looking entries in them should not be presented as
broken manual references or given the same health-score weight.
## Architecture
Crates carry a `static`, `smart`, or `unknown` kind. Folder provenance is the
primary signal: Serato stores regular definitions in `Subcrates` and smart
definitions in `Smartcrates`. `Compatible by key.crate` is also treated as smart
when encountered in `Subcrates`, based on the original migration case study.
The library loader reads both folders. Health analysis reports all references but
scores only non-smart references. Unknown crates remain scoreable so incomplete
classification cannot silently hide potential problems.
Serato documents the folder distinction in [What is in the _Serato_ folder?](https://support.serato.com/hc/en-us/articles/204022904-What-is-in-the-Serato-folder)
and explains that smart crates are populated from rules in [Crates in Serato DJ](https://support.serato.com/hc/en-us/articles/227561407-Crates-in-Serato-DJ-Pro-Serato-DJ-Lite).
## Edge Cases
- The known `Compatible by key` dynamic crate in the `Subcrates` folder.
- Crate fixtures outside a recognized Serato folder.
- Libraries containing both static and smart references to the same track.
- Dynamic references whose current materialized paths appear missing.
## Verification
Tests cover all three kinds, both Serato folders, the known dynamic fallback, the
synthetic five-static/two-smart library, and exclusion from health scoring.
+32
View File
@@ -0,0 +1,32 @@
# Duplicate Filename Detection
## Problem
Two files with the same filename may be ordinary copies, while names such as
`Track.mp3` and `Track 2.mp3` may indicate a OneDrive conflict. These cases need
review, but neither is sufficient evidence for deletion.
## Architecture
The duplicate detector emits immutable groups of two kinds:
- `exact_name` groups filenames after case and Unicode normalization.
- `cloud_conflict` groups names after additionally removing a trailing numeric
suffix from the stem.
Groups contain every path, a stable comparison key, a display name, and the number
of files beyond the first. Health analysis reports exact and suspected-conflict
counts separately. Neither category changes the health score.
## Edge Cases
- Same filename in different folders.
- Case-only and Unicode representation differences.
- Multiple conflict suffixes such as `Track 2.mp3` and `Track 3.mp3`.
- Legitimate numbered titles, which remain explicitly labeled as suspected.
- A single file, which is never reported as a duplicate.
## Verification
Tests cover exact, normalized, conflict-family, unrelated, and deterministic-order
behavior, plus integration with health analysis. Detection is read-only.
+32
View File
@@ -0,0 +1,32 @@
# Library Health Engine
## Problem
Raw missing-reference counts do not provide a compact view of library integrity,
but an opaque blended score would imply confidence the current data cannot support.
## Architecture
The health engine produces an immutable report from the core `Library`. Its score
is only the percentage of non-dynamic crate references resolved by exact filename.
Smart-crate references are counted but excluded because their contents are derived
from rules. The report also exposes missing references, unique missing filenames,
duplicate filename groups, extra duplicate files, unused tracks, and missing
references with matching candidates.
Duplicate, unused, and candidate counts are informational. They do not affect the
score until the project has a documented and validated weighting policy. An empty
library has no score rather than a misleading 0% or 100%.
## Edge Cases
- The same missing filename referenced by several crates.
- Several disk files sharing a filename.
- Conflict-suffixed files that are unused but may be match candidates.
- Libraries with no crate references.
- Tracks referenced by filename from more than one crate.
## Verification
Tests assert every metric, the disclosed score basis, candidate integration, and
empty-library behavior. Analysis remains entirely read-only.
+8 -2
View File
@@ -18,8 +18,7 @@ def build_sample(output: Optional[Path] = None) -> Path:
root = output or SAMPLE_ROOT / "generated" root = output or SAMPLE_ROOT / "generated"
manifest = load_manifest() manifest = load_manifest()
music_root = root / "Music" music_root = root / "Music"
crate_root = root / "Serato" / "_Serato_" / "Subcrates" serato_root = root / "Serato" / "_Serato_"
crate_root.mkdir(parents=True, exist_ok=True)
for relative_path in manifest["tracks"]: for relative_path in manifest["tracks"]:
track_path = music_root / relative_path track_path = music_root / relative_path
@@ -29,6 +28,13 @@ def build_sample(output: Optional[Path] = None) -> Path:
) )
for crate in manifest["crates"]: for crate in manifest["crates"]:
folder_name = "Smartcrates" if crate["type"] == "smart" else "Subcrates"
crate_root = serato_root / folder_name
crate_root.mkdir(parents=True, exist_ok=True)
other_folder = "Subcrates" if folder_name == "Smartcrates" else "Smartcrates"
stale_path = serato_root / other_folder / crate["name"]
if stale_path.exists():
stale_path.unlink()
records = "".join( records = "".join(
f"{SERATO_PATH_PREFIX}{relative_path}otrk" f"{SERATO_PATH_PREFIX}{relative_path}otrk"
for relative_path in crate["references"] for relative_path in crate["references"]
+60 -18
View File
@@ -2,7 +2,8 @@ from pathlib import Path
import argparse import argparse
from serato_doctor.config import ScanConfig from serato_doctor.config import ScanConfig
from serato_doctor.crate_parser import parse_crates from serato_doctor.crate_parser import load_library_crates
from serato_doctor.health import analyze_health
from serato_doctor.logging import configure_logging from serato_doctor.logging import configure_logging
from serato_doctor.models.library import Library from serato_doctor.models.library import Library
from serato_doctor.scanner import scan_audio from serato_doctor.scanner import scan_audio
@@ -11,10 +12,23 @@ from serato_doctor.report import write_csv, write_missing_report
def main(): def main():
parser = argparse.ArgumentParser(prog="serato-doctor") parser = argparse.ArgumentParser(prog="serato-doctor")
parser.add_argument(
"command", nargs="?", choices=("scan", "analyze"), default="scan"
)
parser.add_argument("--serato", default=str(Path.home() / "Music/_Serato_")) parser.add_argument("--serato", default=str(Path.home() / "Music/_Serato_"))
parser.add_argument("--music", default=str(Path.home() / "Library/CloudStorage/OneDrive-Personal/Jukebox")) parser.add_argument(
parser.add_argument("--out", default=str(Path.home() / "Desktop/serato_doctor_scan.csv")) "--music",
parser.add_argument("--report", default=str(Path.home() / "Desktop/serato_doctor_missing_report.txt")) default=str(
Path.home() / "Library/CloudStorage/OneDrive-Personal/Jukebox"
),
)
parser.add_argument(
"--out", default=str(Path.home() / "Desktop/serato_doctor_scan.csv")
)
parser.add_argument(
"--report",
default=str(Path.home() / "Desktop/serato_doctor_missing_report.txt"),
)
parser.add_argument( parser.add_argument(
"--reference-root", "--reference-root",
action="append", action="append",
@@ -37,14 +51,13 @@ def main():
log_file=Path(args.log_file) if args.log_file else None, log_file=Path(args.log_file) if args.log_file else None,
) )
logger = configure_logging(config.verbose, config.log_file) logger = configure_logging(config.verbose, config.log_file)
logger.info("Starting read-only library scan") logger.info("Starting read-only library inspection")
logger.debug("Serato directory: %s", config.serato) logger.debug("Serato directory: %s", config.serato)
logger.debug("Music directory: %s", config.music) logger.debug("Music directory: %s", config.music)
library = Library.build( crates = load_library_crates(config.serato, config.reference_roots)
references=parse_crates( library = Library.from_crates(
config.serato / "Subcrates", config.reference_roots crates=crates,
),
tracks=scan_audio(config.music), tracks=scan_audio(config.music),
) )
results = library.reconcile_by_filename() results = library.reconcile_by_filename()
@@ -53,15 +66,44 @@ def main():
logger.info("Scanned %d disk tracks", len(library.tracks)) logger.info("Scanned %d disk tracks", len(library.tracks))
logger.info("Found %d references missing by filename", missing_count) logger.info("Found %d references missing by filename", missing_count)
write_csv(results, config.out) if args.command == "analyze":
write_missing_report(results, config.report) health = analyze_health(library)
logger.info("Wrote CSV and missing-reference reports") score = f"{health.score:.1f}%" if health.score is not None else "Not assessed"
logger.info("Calculated library health: %s", score)
print(f"Crate references: {len(library.references)}") print(f"Overall Health: {score}")
print(f"Disk tracks: {len(library.tracks)}") print(f"Score Basis: {health.score_basis}")
print(f"Missing by filename: {missing_count}") print(f"Tracks: {health.disk_tracks}")
print(f"CSV: {config.out}") print(f"Crate References: {health.total_references}")
print(f"Report: {config.report}") print(f"References Scored: {health.scored_references}")
print(f"Healthy References: {health.healthy_references}")
print(f"Broken References: {health.missing_references}")
print(f"Unique Missing Filenames: {health.unique_missing_filenames}")
print(f"Duplicate Filename Groups: {health.duplicate_filename_groups}")
print(f"Duplicate Files: {health.duplicate_files}")
print(
"Suspected Cloud Conflict Groups: "
f"{health.suspected_cloud_conflict_groups}"
)
print(
"Suspected Cloud Conflict Files: "
f"{health.suspected_cloud_conflict_files}"
)
print(f"Unused Tracks: {health.unused_tracks}")
print(f"Suggested Matches: {health.suggested_matches}")
print(f"Static Crates: {health.static_crates}")
print(f"Smart Crates: {health.smart_crates}")
print(
f"Dynamic References Excluded: {health.dynamic_references_excluded}"
)
else:
write_csv(results, config.out)
write_missing_report(results, config.report)
logger.info("Wrote CSV and missing-reference reports")
print(f"Crate references: {len(library.references)}")
print(f"Disk tracks: {len(library.tracks)}")
print(f"Missing by filename: {missing_count}")
print(f"CSV: {config.out}")
print(f"Report: {config.report}")
if __name__ == "__main__": if __name__ == "__main__":
+29 -2
View File
@@ -1,7 +1,7 @@
from pathlib import Path from pathlib import Path
from typing import Iterable, Tuple from typing import Iterable, Tuple
from serato_doctor.models.crate import Crate from serato_doctor.models.crate import Crate, CrateKind
from serato_doctor.models.reference import TrackReference from serato_doctor.models.reference import TrackReference
@@ -32,6 +32,17 @@ def path_markers(reference_roots: Iterable[Path]) -> Tuple[str, ...]:
return configured or DEFAULT_PATH_MARKERS 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: def load_crate(crate_path: Path, reference_roots: Iterable[Path] = ()) -> Crate:
text = read_crate_text(crate_path) text = read_crate_text(crate_path)
refs = [] refs = []
@@ -63,7 +74,11 @@ def load_crate(crate_path: Path, reference_roots: Iterable[Path] = ()) -> Crate:
) )
) )
return Crate(path=crate_path, references=tuple(refs)) return Crate(
path=crate_path,
references=tuple(refs),
kind=classify_crate(crate_path),
)
def parse_crate( def parse_crate(
@@ -82,3 +97,15 @@ def parse_crates(
for crate in root.rglob("*.crate"): for crate in root.rglob("*.crate"):
refs.extend(parse_crate(crate, reference_roots)) refs.extend(parse_crate(crate, reference_roots))
return refs return refs
def load_library_crates(
serato_root: Path, reference_roots: Iterable[Path] = ()
) -> Tuple[Crate, ...]:
reference_roots = tuple(reference_roots)
crates = []
for folder_name in ("Subcrates", "Smartcrates"):
folder = serato_root / folder_name
for crate_path in folder.rglob("*.crate"):
crates.append(load_crate(crate_path, reference_roots))
return tuple(sorted(crates, key=lambda crate: str(crate.path)))
+41
View File
@@ -0,0 +1,41 @@
from collections import defaultdict
from typing import DefaultDict, Iterable, List, Tuple
from serato_doctor.matching import cloud_conflict_name, normalize
from serato_doctor.models.duplicate import DuplicateGroup, DuplicateKind
from serato_doctor.models.track import DiskTrack
def find_duplicate_groups(
tracks: Iterable[DiskTrack],
) -> Tuple[DuplicateGroup, ...]:
"""Find exact-name duplicates and suspected numeric conflict copies."""
track_tuple = tuple(tracks)
by_name: DefaultDict[str, List[DiskTrack]] = defaultdict(list)
by_conflict_name: DefaultDict[str, List[DiskTrack]] = defaultdict(list)
for track in track_tuple:
by_name[normalize(track.filename)].append(track)
by_conflict_name[cloud_conflict_name(track.filename)].append(track)
groups = []
for key, matches in by_name.items():
if len(matches) > 1:
groups.append(_group(DuplicateKind.EXACT_NAME, key, matches))
for key, matches in by_conflict_name.items():
distinct_names = {normalize(track.filename) for track in matches}
if len(distinct_names) > 1:
groups.append(_group(DuplicateKind.CLOUD_CONFLICT, key, matches))
return tuple(
sorted(groups, key=lambda group: (group.kind.value, group.comparison_key))
)
def _group(
kind: DuplicateKind, key: str, tracks: Iterable[DiskTrack]
) -> DuplicateGroup:
ordered = tuple(sorted(tracks, key=lambda track: str(track.path)))
return DuplicateGroup(kind, key, ordered)
+79
View File
@@ -0,0 +1,79 @@
from serato_doctor.duplicates import find_duplicate_groups
from serato_doctor.matching import MatchingEngine
from serato_doctor.models.crate import CrateKind
from serato_doctor.models.duplicate import DuplicateKind
from serato_doctor.models.health import HealthReport
from serato_doctor.models.library import Library
def analyze_health(library: Library) -> HealthReport:
"""Calculate defensible health metrics without changing the library."""
dynamic_sources = {
crate.path for crate in library.crates if crate.kind is CrateKind.SMART
}
results = tuple(
result
for result in library.reconcile_by_filename()
if result.reference.source not in dynamic_sources
)
missing = [result for result in results if not result.exists_by_filename]
healthy_count = len(results) - len(missing)
score = (
round(healthy_count / len(results) * 100, 1) if results else None
)
duplicate_groups = find_duplicate_groups(library.tracks)
exact_duplicates = [
group
for group in duplicate_groups
if group.kind is DuplicateKind.EXACT_NAME
]
cloud_conflicts = [
group
for group in duplicate_groups
if group.kind is DuplicateKind.CLOUD_CONFLICT
]
referenced_names = {reference.filename for reference in library.references}
unused_count = sum(
1 for track in library.tracks if track.filename not in referenced_names
)
matcher = MatchingEngine(library.tracks)
suggested_count = sum(
bool(matcher.candidates_for(result.reference)) for result in missing
)
return HealthReport(
score=score,
total_references=len(library.references),
scored_references=len(results),
healthy_references=healthy_count,
missing_references=len(missing),
unique_missing_filenames=len(
{result.reference.filename for result in missing}
),
disk_tracks=len(library.tracks),
duplicate_filename_groups=len(exact_duplicates),
duplicate_files=sum(group.extra_files for group in exact_duplicates),
suspected_cloud_conflict_groups=len(cloud_conflicts),
suspected_cloud_conflict_files=sum(
group.extra_files for group in cloud_conflicts
),
unused_tracks=unused_count,
suggested_matches=suggested_count,
static_crates=sum(
crate.kind is CrateKind.STATIC for crate in library.crates
),
smart_crates=sum(
crate.kind is CrateKind.SMART for crate in library.crates
),
unknown_crates=sum(
crate.kind is CrateKind.UNKNOWN for crate in library.crates
),
dynamic_references_excluded=sum(
len(crate.references)
for crate in library.crates
if crate.kind is CrateKind.SMART
),
)
+7 -1
View File
@@ -1,4 +1,6 @@
from serato_doctor.models.crate import Crate from serato_doctor.models.crate import Crate, CrateKind
from serato_doctor.models.duplicate import DuplicateGroup, DuplicateKind
from serato_doctor.models.health import HealthReport
from serato_doctor.models.library import Library from serato_doctor.models.library import Library
from serato_doctor.models.match import MatchEvidence, TrackMatch from serato_doctor.models.match import MatchEvidence, TrackMatch
from serato_doctor.models.reference import ReferenceResult, TrackReference from serato_doctor.models.reference import ReferenceResult, TrackReference
@@ -6,7 +8,11 @@ from serato_doctor.models.track import DiskTrack
__all__ = [ __all__ = [
"Crate", "Crate",
"CrateKind",
"DiskTrack", "DiskTrack",
"DuplicateGroup",
"DuplicateKind",
"HealthReport",
"Library", "Library",
"MatchEvidence", "MatchEvidence",
"ReferenceResult", "ReferenceResult",
+8
View File
@@ -1,13 +1,21 @@
from dataclasses import dataclass from dataclasses import dataclass
from enum import Enum
from pathlib import Path from pathlib import Path
from typing import Tuple from typing import Tuple
from serato_doctor.models.reference import TrackReference from serato_doctor.models.reference import TrackReference
class CrateKind(str, Enum):
STATIC = "static"
SMART = "smart"
UNKNOWN = "unknown"
@dataclass(frozen=True) @dataclass(frozen=True)
class Crate: class Crate:
"""A Serato crate and the track references parsed from it.""" """A Serato crate and the track references parsed from it."""
path: Path path: Path
references: Tuple[TrackReference, ...] references: Tuple[TrackReference, ...]
kind: CrateKind = CrateKind.UNKNOWN
+30
View File
@@ -0,0 +1,30 @@
from dataclasses import dataclass
from enum import Enum
from typing import Tuple
from serato_doctor.models.track import DiskTrack
class DuplicateKind(str, Enum):
EXACT_NAME = "exact_name"
CLOUD_CONFLICT = "cloud_conflict"
@dataclass(frozen=True)
class DuplicateGroup:
"""A deterministic group of files that warrants duplicate review."""
kind: DuplicateKind
comparison_key: str
tracks: Tuple[DiskTrack, ...]
@property
def extra_files(self) -> int:
return max(0, len(self.tracks) - 1)
@property
def display_name(self) -> str:
return min(
(track.filename for track in self.tracks),
key=lambda name: (len(name), name.casefold()),
)
+29
View File
@@ -0,0 +1,29 @@
from dataclasses import dataclass
from typing import Optional
@dataclass(frozen=True)
class HealthReport:
"""Transparent aggregate findings from a read-only library analysis."""
score: Optional[float]
total_references: int
scored_references: int
healthy_references: int
missing_references: int
unique_missing_filenames: int
disk_tracks: int
duplicate_filename_groups: int
duplicate_files: int
suspected_cloud_conflict_groups: int
suspected_cloud_conflict_files: int
unused_tracks: int
suggested_matches: int
static_crates: int
smart_crates: int
unknown_crates: int
dynamic_references_excluded: int
@property
def score_basis(self) -> str:
return "Resolved non-dynamic references / non-dynamic references scored"
+14
View File
@@ -1,6 +1,7 @@
from dataclasses import dataclass from dataclasses import dataclass
from typing import Iterable, Tuple from typing import Iterable, Tuple
from serato_doctor.models.crate import Crate
from serato_doctor.models.reference import ReferenceResult, TrackReference from serato_doctor.models.reference import ReferenceResult, TrackReference
from serato_doctor.models.track import DiskTrack from serato_doctor.models.track import DiskTrack
@@ -11,6 +12,7 @@ class Library:
references: Tuple[TrackReference, ...] references: Tuple[TrackReference, ...]
tracks: Tuple[DiskTrack, ...] tracks: Tuple[DiskTrack, ...]
crates: Tuple[Crate, ...] = ()
@classmethod @classmethod
def build( def build(
@@ -20,6 +22,18 @@ class Library:
) -> "Library": ) -> "Library":
return cls(tuple(references), tuple(tracks)) return cls(tuple(references), tuple(tracks))
@classmethod
def from_crates(
cls, crates: Iterable[Crate], tracks: Iterable[DiskTrack]
) -> "Library":
crate_tuple = tuple(crates)
references = tuple(
reference
for crate in crate_tuple
for reference in crate.references
)
return cls(references, tuple(tracks), crate_tuple)
def reconcile_by_filename(self) -> Tuple[ReferenceResult, ...]: def reconcile_by_filename(self) -> Tuple[ReferenceResult, ...]:
disk_names = {track.filename for track in self.tracks} disk_names = {track.filename for track in self.tracks}
return tuple( return tuple(
+45
View File
@@ -84,3 +84,48 @@ def test_cli_accepts_old_reference_root(tmp_path, monkeypatch, capsys):
output = capsys.readouterr().out output = capsys.readouterr().out
assert "Crate references: 1" in output assert "Crate references: 1" in output
assert "Missing by filename: 0" in output assert "Missing by filename: 0" in output
def test_analyze_prints_health_without_writing_reports(tmp_path, monkeypatch, capsys):
serato = tmp_path / "serato"
subcrates = serato / "Subcrates"
music = tmp_path / "music"
subcrates.mkdir(parents=True)
music.mkdir()
crate_text = (
"Users/sample-user/Jukebox/Found.mp3otrk"
"Users/sample-user/Jukebox/Missing.mp3otrk"
)
(subcrates / "Test.crate").write_bytes(crate_text.encode("utf-16-le"))
(music / "Found.mp3").write_bytes(b"synthetic audio")
csv_path = tmp_path / "scan.csv"
report_path = tmp_path / "report.txt"
monkeypatch.setattr(
sys,
"argv",
[
"serato-doctor",
"analyze",
"--serato",
str(serato),
"--music",
str(music),
"--out",
str(csv_path),
"--report",
str(report_path),
],
)
main()
output = capsys.readouterr().out
assert "Overall Health: 50.0%" in output
assert "Tracks: 1" in output
assert "Crate References: 2" in output
assert "References Scored: 2" in output
assert "Healthy References: 1" in output
assert "Broken References: 1" in output
assert "Unused Tracks: 0" in output
assert not csv_path.exists()
assert not report_path.exists()
+17
View File
@@ -3,12 +3,14 @@ from pathlib import Path
import pytest import pytest
from serato_doctor.crate_parser import ( from serato_doctor.crate_parser import (
classify_crate,
clean_path, clean_path,
load_crate, load_crate,
parse_crate, parse_crate,
parse_crates, parse_crates,
path_markers, path_markers,
) )
from serato_doctor.models.crate import CrateKind
@pytest.mark.parametrize( @pytest.mark.parametrize(
@@ -84,3 +86,18 @@ def test_parse_crates_reuses_configured_roots_for_every_crate(tmp_path):
"First.mp3", "First.mp3",
"Second.mp3", "Second.mp3",
} }
@pytest.mark.parametrize(
("relative_path", "expected"),
[
("_Serato_/Subcrates/House.crate", CrateKind.STATIC),
("_Serato_/Smartcrates/Warmup.crate", CrateKind.SMART),
("_Serato_/Subcrates/Compatible by key.crate", CrateKind.SMART),
("fixtures/Unknown.crate", CrateKind.UNKNOWN),
],
)
def test_classify_crate_uses_provenance_and_known_dynamic_name(
tmp_path, relative_path, expected
):
assert classify_crate(tmp_path / relative_path) is expected
+57
View File
@@ -0,0 +1,57 @@
from pathlib import Path
from serato_doctor.duplicates import find_duplicate_groups
from serato_doctor.models.duplicate import DuplicateKind
from serato_doctor.models.track import DiskTrack
def track(path):
path = Path(path)
return DiskTrack(path, path.name, 100, path.suffix.lower())
def test_exact_names_in_different_folders_form_a_group():
groups = find_duplicate_groups(
[track("/A/Song.mp3"), track("/B/Song.mp3")]
)
assert len(groups) == 1
assert groups[0].kind is DuplicateKind.EXACT_NAME
assert groups[0].display_name == "Song.mp3"
assert groups[0].extra_files == 1
def test_case_only_difference_is_an_exact_name_duplicate():
groups = find_duplicate_groups(
[track("/A/SONG.MP3"), track("/B/song.mp3")]
)
assert groups[0].kind is DuplicateKind.EXACT_NAME
def test_numeric_suffixes_form_a_suspected_cloud_conflict_group():
groups = find_duplicate_groups(
[
track("/A/Track.mp3"),
track("/B/Track 2.mp3"),
track("/C/Track 3.mp3"),
]
)
assert len(groups) == 1
assert groups[0].kind is DuplicateKind.CLOUD_CONFLICT
assert groups[0].display_name == "Track.mp3"
assert groups[0].extra_files == 2
assert [item.path for item in groups[0].tracks] == [
Path("/A/Track.mp3"),
Path("/B/Track 2.mp3"),
Path("/C/Track 3.mp3"),
]
def test_unrelated_and_single_files_are_not_reported():
groups = find_duplicate_groups(
[track("/A/First.mp3"), track("/B/Second.mp3")]
)
assert groups == ()
+106
View File
@@ -0,0 +1,106 @@
from pathlib import Path
from serato_doctor.health import analyze_health
from serato_doctor.models.crate import Crate, CrateKind
from serato_doctor.models.library import Library
from serato_doctor.models.reference import TrackReference
from serato_doctor.models.track import DiskTrack
def reference(filename):
return TrackReference(
Path("Test.crate"), Path("/old/House") / filename, filename
)
def track(filename, folder="House"):
path = Path("/new") / folder / filename
return DiskTrack(path, filename, 100, path.suffix.lower())
def test_health_report_exposes_each_metric():
library = Library.build(
[
reference("Found.mp3"),
reference("Conflict.mp3"),
reference("Absent.mp3"),
],
[
track("Found.mp3"),
track("Conflict 2.mp3"),
track("Conflict 2.mp3", "Backup"),
track("Unused.mp3"),
],
)
report = analyze_health(library)
assert report.score == 33.3
assert report.score_basis == (
"Resolved non-dynamic references / non-dynamic references scored"
)
assert report.total_references == 3
assert report.scored_references == 3
assert report.healthy_references == 1
assert report.missing_references == 2
assert report.unique_missing_filenames == 2
assert report.disk_tracks == 4
assert report.duplicate_filename_groups == 1
assert report.duplicate_files == 1
assert report.unused_tracks == 3
assert report.suggested_matches == 1
def test_empty_library_has_no_health_score():
report = analyze_health(Library.build([], []))
assert report.score is None
assert report.total_references == 0
assert report.scored_references == 0
def test_smart_crate_references_are_reported_but_not_scored():
static_reference = reference("Found.mp3")
smart_reference = TrackReference(
Path("Smartcrates/Dynamic.crate"),
Path("/old/House/Dynamic.mp3"),
"Dynamic.mp3",
)
crates = [
Crate(Path("Subcrates/Static.crate"), (static_reference,), CrateKind.STATIC),
Crate(
Path("Smartcrates/Dynamic.crate"),
(smart_reference,),
CrateKind.SMART,
),
]
library = Library.from_crates(crates, [track("Found.mp3")])
report = analyze_health(library)
assert report.score == 100.0
assert report.total_references == 2
assert report.scored_references == 1
assert report.missing_references == 0
assert report.static_crates == 1
assert report.smart_crates == 1
assert report.dynamic_references_excluded == 1
def test_health_reports_cloud_conflicts_separately_from_exact_duplicates():
library = Library.build(
[],
[
track("Track.mp3", "Original"),
track("Track 2.mp3", "Conflict"),
track("Copy.mp3", "First"),
track("Copy.mp3", "Second"),
],
)
report = analyze_health(library)
assert report.duplicate_filename_groups == 1
assert report.duplicate_files == 1
assert report.suspected_cloud_conflict_groups == 1
assert report.suspected_cloud_conflict_files == 1
+8 -4
View File
@@ -1,7 +1,8 @@
import runpy import runpy
from pathlib import Path from pathlib import Path
from serato_doctor.crate_parser import parse_crates from serato_doctor.crate_parser import load_library_crates
from serato_doctor.models.crate import CrateKind
from serato_doctor.models.library import Library from serato_doctor.models.library import Library
from serato_doctor.scanner import scan_audio from serato_doctor.scanner import scan_audio
@@ -13,9 +14,10 @@ def test_generated_sample_library_has_expected_scenario(tmp_path):
build_sample = runpy.run_path(str(generator_path))["build_sample"] build_sample = runpy.run_path(str(generator_path))["build_sample"]
sample_root = build_sample(tmp_path / "sample") sample_root = build_sample(tmp_path / "sample")
references = parse_crates(sample_root / "Serato" / "_Serato_" / "Subcrates") crates = load_library_crates(sample_root / "Serato" / "_Serato_")
tracks = scan_audio(sample_root / "Music") tracks = scan_audio(sample_root / "Music")
results = Library.build(references, tracks).reconcile_by_filename() library = Library.from_crates(crates, tracks)
results = library.reconcile_by_filename()
missing = { missing = {
result.reference.filename result.reference.filename
for result in results for result in results
@@ -23,6 +25,8 @@ def test_generated_sample_library_has_expected_scenario(tmp_path):
} }
assert len(list((sample_root / "Serato").rglob("*.crate"))) == 7 assert len(list((sample_root / "Serato").rglob("*.crate"))) == 7
assert len(references) == 13 assert len(library.references) == 13
assert len(tracks) == 10 assert len(tracks) == 10
assert missing == {"Missing.mp3", "Old Name.mp3"} assert missing == {"Missing.mp3", "Old Name.mp3"}
assert sum(crate.kind is CrateKind.STATIC for crate in crates) == 5
assert sum(crate.kind is CrateKind.SMART for crate in crates) == 2