Plan 007 phase 4 is verified by measurement, not by assertion, and there was no way to produce a number: the fixture library is a few dozen tracks and cannot show any of the findings. - `cmd/gentestdata -bulk N` (`make bulkdata`) writes a ~50 000-track library in 11 s / 466 MB by encoding six clips once and copying them, while still tagging every file through `backend/tagwriter` — a library the app cannot read back measures nothing. - `make sandbox-seed-bulk` seeds from it through the same script and the same discipline as any other seed: by running the app and waiting for the real scan. - `e2e/perf/measure.mjs` (`make perf LABEL=x`, `make perf-compare`) takes fourteen measurements against a running app and writes them to a gitignored `.dev/perf/<label>.json`. It wraps every bound Go method, so "did that refetch the library" is a fact rather than an inference, and records `longtask` entries, which is where a 25 MB JSON parse on the main thread shows up and nowhere else. It is not a spec and does not run in CI.
158 lines
4.3 KiB
Go
158 lines
4.3 KiB
Go
package main
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import (
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"crypto/sha256"
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"encoding/hex"
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"encoding/json"
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"fmt"
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"os"
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"path/filepath"
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)
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// manifestVersion is bumped when the manifest's shape changes in a way
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// that older readers cannot handle.
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const manifestVersion = 1
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// manifestTrack records what a fixture is supposed to be, so a test can
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// assert against the spec rather than against whatever happens to be on
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// disk.
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type manifestTrack struct {
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Path string `json:"path"`
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Case string `json:"case"`
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Format string `json:"format"`
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DurationMS int64 `json:"durationMs"`
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FreqHz float64 `json:"freqHz"`
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Cover string `json:"cover,omitempty"`
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CoverSHA string `json:"coverSha,omitempty"`
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Tags map[string]any `json:"tags"`
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}
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// manifest describes a generated fixture library.
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//
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// Hash covers the *logical* spec — paths, formats, durations, tags,
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// cover identity — and deliberately not the encoded bytes: ffmpeg
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// stamps its own encoder strings, so byte hashes differ between ffmpeg
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// builds while the fixtures they describe are identical.
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type manifest struct {
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Version int `json:"version"`
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Generator string `json:"generator"`
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Hash string `json:"hash"`
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LibraryRoot string `json:"libraryRoot"`
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BrokenRoot string `json:"brokenRoot"`
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// TrackCount is written by the bulk library, which has tens of
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// thousands of tracks and no reason to describe each one: nothing
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// selects a bulk track by name, only the total matters.
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TrackCount int `json:"trackCount,omitempty"`
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Cases map[string][]string `json:"cases"`
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Tracks []manifestTrack `json:"tracks"`
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Extras []string `json:"extras"`
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Broken []string `json:"broken"`
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}
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// buildManifest derives the manifest from the spec alone. It runs
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// before any file is written, which is what lets generation be skipped
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// when the on-disk manifest already matches.
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func buildManifest(libraryRoot, brokenRoot string) (*manifest, error) {
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m := &manifest{
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Version: manifestVersion,
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Generator: "gentestdata",
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LibraryRoot: filepath.ToSlash(libraryRoot),
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BrokenRoot: filepath.ToSlash(brokenRoot),
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Cases: map[string][]string{},
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Tracks: make([]manifestTrack, 0, len(libraryFixtures)),
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}
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for _, f := range libraryFixtures {
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track := manifestTrack{
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Path: f.Rel,
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Case: f.Case,
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Format: string(f.Format),
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DurationMS: f.Duration.Milliseconds(),
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FreqHz: f.FreqHz,
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Cover: f.Cover,
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Tags: f.Tags.changes(),
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}
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if f.Cover != "" {
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img, err := coverJPEG(f.Cover)
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if err != nil {
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return nil, err
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}
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sum := sha256.Sum256(img)
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track.CoverSHA = hex.EncodeToString(sum[:])
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}
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m.Tracks = append(m.Tracks, track)
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m.Cases[f.Case] = append(m.Cases[f.Case], f.Rel)
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}
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for _, e := range libraryExtras {
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m.Extras = append(m.Extras, e.Rel)
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}
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for _, b := range brokenFiles {
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m.Broken = append(m.Broken, b.Rel)
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m.Cases[caseBroken] = append(m.Cases[caseBroken], b.Rel)
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}
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hash, err := hashManifest(m)
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if err != nil {
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return nil, err
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}
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m.Hash = hash
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return m, nil
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}
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// hashManifest hashes everything except the hash field itself.
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func hashManifest(m *manifest) (string, error) {
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clone := *m
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clone.Hash = ""
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raw, err := json.Marshal(clone)
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if err != nil {
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return "", fmt.Errorf("marshal manifest for hashing: %w", err)
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}
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sum := sha256.Sum256(raw)
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return hex.EncodeToString(sum[:]), nil
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}
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// writeManifest persists the manifest next to (not inside) the library
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// root, so the scanner never sees it as a stray file.
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func writeManifest(path string, m *manifest) error {
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raw, err := json.MarshalIndent(m, "", " ")
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if err != nil {
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return fmt.Errorf("marshal manifest: %w", err)
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}
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if err := os.MkdirAll(filepath.Dir(path), dirPerm); err != nil {
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return fmt.Errorf("mkdir %s: %w", filepath.Dir(path), err)
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}
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if err := os.WriteFile(path, append(raw, '\n'), filePerm); err != nil {
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return fmt.Errorf("write manifest %s: %w", path, err)
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}
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return nil
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}
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// readManifestHash returns the hash recorded in an existing manifest,
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// or "" when there is no readable manifest at path.
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func readManifestHash(path string) string {
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raw, err := os.ReadFile(path)
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if err != nil {
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return ""
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}
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var m manifest
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if err := json.Unmarshal(raw, &m); err != nil {
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return ""
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}
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return m.Hash
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}
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