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6dd22bcb73
| Author | SHA1 | Date | |
|---|---|---|---|
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6dd22bcb73 | ||
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0c995a8c4f |
@@ -101,7 +101,8 @@ requires one, and writes:
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photo its image, its video and the `.livephoto.json` file naming them
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- beside each original, a JSON file named after it with `.json` added, for
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example `2026-03-01.12345.jpg.json`: the photo's record (`photo.record()`)
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without its cache paths, and its EXIF fields (`photo.exif()`) under `exif`
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without its cache paths, and every EXIF tag of the photo (`photo.exif()`)
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under `exif`
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- `albums/<collectionID>.json` for each album: its `collectionID`, its `name`,
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and under `savePaths` the save paths of its photos relative to `dir`, newest
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first
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@@ -773,21 +774,25 @@ These async methods may download:
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- `await photo.thumbnail(opts?)` → `{ path, bytes }`.
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- `await photo.content(opts?)` → `Uint8Array` — the original's bytes, read
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through `original()`; for a live photo, its image's.
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- `await photo.exif(opts?)` → `PhotoExif` — `make`, `model`, `lensModel`,
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`dateTimeOriginal`, `offsetTimeOriginal`, `exposureTime`, `fNumber`, `iso`,
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`focalLength`, `orientation`, `gpsLatitude`, `gpsLongitude` and `gpsAltitude`,
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each absent when the file lacks it. GPS values are signed decimal degrees and
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metres. `dateTimeOriginal` is the camera's clock reading held in the `Date`'s
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UTC fields; `offsetTimeOriginal`, when present, is that clock's offset from
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UTC. EXIF is read from any image format exifreader reads (such as JPEG,
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HEIC/HEIF, AVIF, PNG, WebP and TIFF), a live photo's image included. Any other
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original gives `{}`, and a video gives `{}` without being downloaded.
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- `await photo.exif(opts?)` → `ExifTags` — every EXIF tag in the file, keyed by
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tag name, each as exifreader decodes it, with its `id`, `value`, `description`
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and `computed` value: for example `Make` is
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`{ id: 271, value: ["Canon"], description: "Canon", computed: "Canon" }`. A
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tag exifreader has no name for is keyed `undefined-<tag number>`. The embedded
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thumbnail's tags are under `Thumbnail`, so they cannot hide the main image's
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tags of the same name; the thumbnail image itself is left out. EXIF is read
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from any image format exifreader reads (such as JPEG, HEIC/HEIF, AVIF, PNG,
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WebP and TIFF), a live photo's image included. Any other original gives `{}`,
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and a video gives `{}` without being downloaded.
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- `await photo.make(opts?)`, and likewise `model()`, `lensModel()`,
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`dateTimeOriginal()`, `offsetTimeOriginal()`, `exposureTime()`, `fNumber()`,
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`iso()`, `focalLength()`, `orientation()`, `gpsLatitude()`, `gpsLongitude()`
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and `gpsAltitude()` → one field of `exif()` each, typed as in `PhotoExif`, or
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`undefined` when the file lacks it. Each calls `exif()` with its `opts`, so
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each call reads the original again.
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and `gpsAltitude()` → one common field each, picked from the tags `exif()`
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returns and typed as in `PhotoExif`, or `undefined` when the file lacks it.
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GPS values are signed decimal degrees and metres. `dateTimeOriginal()` is the
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camera's clock reading held in the `Date`'s UTC fields;
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`offsetTimeOriginal()`, when present, is that clock's offset from UTC. Each
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calls `exif()` with its `opts`, so each call reads the original again.
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They serve from the on-disk content cache when the bytes are present and
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otherwise fetch through the pools; `original()`, `content()` and `exif()` also
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@@ -879,10 +884,7 @@ current account's records name.
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A live photo's original is cached as at its save path: its image and its video,
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each `originals/<fileID>.<ext>` with its own extension, and
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`originals/<fileID>.livephoto.json` naming them; the two are evicted together. A
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live photo that an earlier version cached as its ZIP is not served: the library
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removes the ZIP when it opens the cache, and fetches the two files when the
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photo is next read or precached.
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`originals/<fileID>.livephoto.json` naming them; the two are evicted together.
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A stored file appears only via an atomic temp-then-rename, so its presence means
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it is complete. Every downloaded original (by `quak get`, the cache, or
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@@ -907,7 +909,7 @@ from a very old client, is stored unchecked.
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- `src/library/records.ts`: `PhotoRecord`, `AlbumRecord`, `LibrarySnapshot`,
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`LibraryChange`
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- `src/library/mlsearch.ts`: `MLDataAPI`, `SimilarResult`
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- `src/exif.ts`: `PhotoExif`
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- `src/exif.ts`: `ExifTags`, `PhotoExif`
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- `src/library/pools.ts`: `RequestPools`, `RequestPoolsOptions`, `BoundedPool`
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- `src/backup.ts`: `BackupOptions`, `BackupResult`, `BackupError`
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- `src/client.ts`: `Client`, `LoginOptions`, `ClientSnapshot`
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@@ -25,6 +25,17 @@ declares one.
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# Completed Steps
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- 2026-10-02: `photo.exif()` returns every EXIF tag in the file as `ExifTags`,
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keyed by tag name, each as exifreader decodes it, not only the thirteen common
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fields (issue 156). The embedded thumbnail's tags are under `Thumbnail`,
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without the thumbnail image. The thirteen typed methods stay, each picking its
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field from the tags `exif()` returns, typed as in `PhotoExif`. The example
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script's JSON files now carry every tag.
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- 2026-10-01: The content cache no longer looks for a live photo that an earlier
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version cached as one ZIP (issue 151). When the cache opens, a live photo's
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file that no JSON file names is now always left alone.
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- 2026-10-01: `examples/download-albums.ts` logs in, opens the library, and for
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every album downloads each photo to its save path, writes the photo's record
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and EXIF fields to a JSON file beside it, and writes the album's photos to
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@@ -361,8 +361,8 @@ const openPart = async (
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// written unpacked: each part is named `destination` with the extension
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// replaced by its own entry's, and the two must differ ignoring case. When the
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// file records a hash, `<imageHash>:<videoHash>` must match it, each over that
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// part's own bytes. Only then is whatever was at `destination` removed and the
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// image, then the video, renamed into place; on any failure neither is stored.
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// part's own bytes. Only then are the image, then the video, renamed into
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// place; on any failure neither is stored.
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//
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// The ZIP is chosen by its uploader and may expand enormously, so each part is
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// written as it decompresses and never held, and the ZIP is refused once the
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@@ -486,7 +486,6 @@ const decryptLivePhoto = async (
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await part.handle.sync();
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await part.handle.close();
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}
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await rm(destination, { force: true });
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await rename(image.tmpPath, path);
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try {
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await rename(video.tmpPath, videoPath);
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@@ -570,8 +569,7 @@ const fetchAndDecrypt = async (
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}, api.getRetryOptions());
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// Write `file`'s original to `outPath`. A live photo is written as its image
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// and its video beside `outPath` instead, and whatever was at `outPath` is
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// removed (see `decryptLivePhoto`).
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// and its video beside `outPath` instead (see `decryptLivePhoto`).
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export const downloadFile = async (
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api: ApiClient,
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file: EnteFile,
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+80
-31
@@ -1,19 +1,19 @@
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// EXIF in an original's bytes, read with exifreader, which reads it from JPEG,
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// HEIC/HEIF, AVIF, PNG, WebP and the other image formats it supports.
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// `backup-metadata --exif` records every EXIF tag it finds except the
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// thumbnail's; `Photo.exif()` returns the common fields picked from them here.
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// thumbnail's. `Photo.exif()` returns every tag, the thumbnail's included, and
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// `Photo`'s typed methods return the common fields picked from them here.
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import ExifReader, { type ExpandedTags } from "exifreader";
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// The EXIF tags in `bytes` (`exif`), the GPS position exifreader computes from
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// them (`gps`), and where the EXIF block lies in `bytes` (`metadataRange`).
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// The EXIF tags in `bytes` (`exif`), the embedded thumbnail's tags
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// (`Thumbnail`), and where the EXIF block lies in `bytes` (`metadataRange`).
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// Undefined when exifreader cannot read the file at all, such as a video. An
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// EXIF block it finds but reads no tag from comes back as an empty `exif`.
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// `exif` holds every tag except the thumbnail's; a tag exifreader has no name
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// for is keyed `undefined-<tag number>`. Each tag's `computed` holds its value
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// as a string or number, or as an array of them for a tag with several values,
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// such as `GPSLatitude`'s `[40, 26, 46]`. A fraction with a zero denominator
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// computes to null.
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// EXIF block it finds but reads no tag from comes back as an empty `exif`. A
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// tag exifreader has no name for is keyed `undefined-<tag number>`. Each tag's
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// `computed` holds its value as a string or number, or as an array of them for
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// a tag with several values, such as `GPSLatitude`'s `[40, 26, 46]`. A
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// fraction with a zero denominator computes to null.
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export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
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try {
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return ExifReader.loadView(
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@@ -23,7 +23,7 @@ export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
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computed: true,
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includeOffsets: true,
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includeUnknown: true,
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includeTags: { exif: true, gps: true },
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includeTags: { exif: true, thumbnail: true },
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},
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);
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} catch {
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@@ -31,7 +31,35 @@ export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
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}
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};
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// The common EXIF fields of an original. Each is absent when the file lacks it.
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// Every EXIF tag of an original, keyed by name, each as exifreader decodes it
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// (see `readExifTags`). The embedded thumbnail's own tags are under
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// `Thumbnail`, so its `Orientation` or `ImageWidth` cannot hide the main
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// image's.
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export type ExifTags = Omit<NonNullable<ExpandedTags["exif"]>, "Thumbnail"> & {
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Thumbnail?: Omit<
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NonNullable<ExpandedTags["Thumbnail"]>,
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"type" | "image" | "base64"
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>;
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};
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// Every EXIF tag in `bytes`: `{}` when the file has no EXIF, exifreader cannot
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// read its EXIF, or it is not an image exifreader reads.
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export const readAllExifTags = (bytes: Uint8Array): ExifTags => {
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const tags = readExifTags(bytes);
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if (!tags?.Thumbnail) return tags?.exif ?? {};
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// exifreader puts the thumbnail's JPEG image beside its tags, as `type`,
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// `image` and `base64`. The image is not a tag, so it is left out.
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const {
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type: _type,
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image: _image,
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base64: _base64,
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...thumbnail
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} = tags.Thumbnail;
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return { ...tags.exif, Thumbnail: thumbnail };
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};
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// The common EXIF fields of an original, one for each of `Photo`'s typed
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// methods. Each is absent when the file lacks it.
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export interface PhotoExif {
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make?: string;
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model?: string;
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@@ -80,30 +108,51 @@ const asDate = (v: unknown): Date | undefined => {
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return Number.isNaN(date.getTime()) ? undefined : date;
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};
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// The common fields of an original's EXIF: `{}` when the file has no EXIF,
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// exifreader cannot read its EXIF, or it is not an image exifreader reads.
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export const readPhotoExif = (bytes: Uint8Array): PhotoExif => {
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const tags = readExifTags(bytes);
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const exif = tags?.exif;
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const gps = tags?.gps;
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const altitude = asNumber(exif?.GPSAltitude?.computed);
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// GPSLatitude and GPSLongitude hold degrees, minutes and seconds, computed as
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// three numbers. This is them in decimal degrees, negative when `ref`, the
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// GPSLatitudeRef or GPSLongitudeRef tag, is `negativeRef` ("S" or "W").
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// Without that tag the hemisphere is unknown, so it is undefined.
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const asDegrees = (
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dms: unknown,
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ref: unknown,
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negativeRef: string,
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): number | undefined => {
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if (!Array.isArray(dms) || ref === undefined) return undefined;
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const [d, m, s] = dms.map(asNumber);
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if (d === undefined || m === undefined || s === undefined) return undefined;
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const degrees = d + m / 60 + s / 3600;
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return ref === negativeRef ? -degrees : degrees;
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};
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// The common fields picked from an original's EXIF tags, `readAllExifTags`'s
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// result: `{}` when there are none.
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export const readPhotoExif = (tags: ExifTags): PhotoExif => {
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const altitude = asNumber(tags.GPSAltitude?.computed);
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const fields: PhotoExif = {
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make: asString(exif?.Make?.computed),
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model: asString(exif?.Model?.computed),
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lensModel: asString(exif?.LensModel?.computed),
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dateTimeOriginal: asDate(exif?.DateTimeOriginal?.computed),
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offsetTimeOriginal: asString(exif?.OffsetTimeOriginal?.computed),
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exposureTime: asNumber(exif?.ExposureTime?.computed),
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fNumber: asNumber(exif?.FNumber?.computed),
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make: asString(tags.Make?.computed),
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model: asString(tags.Model?.computed),
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lensModel: asString(tags.LensModel?.computed),
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dateTimeOriginal: asDate(tags.DateTimeOriginal?.computed),
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offsetTimeOriginal: asString(tags.OffsetTimeOriginal?.computed),
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exposureTime: asNumber(tags.ExposureTime?.computed),
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fNumber: asNumber(tags.FNumber?.computed),
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// Only when the tag holds a single number, as most cameras write it.
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iso: asNumber(exif?.ISOSpeedRatings?.computed),
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focalLength: asNumber(exif?.FocalLength?.computed),
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orientation: asNumber(exif?.Orientation?.computed),
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gpsLatitude: asNumber(gps?.Latitude),
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gpsLongitude: asNumber(gps?.Longitude),
|
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iso: asNumber(tags.ISOSpeedRatings?.computed),
|
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focalLength: asNumber(tags.FocalLength?.computed),
|
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orientation: asNumber(tags.Orientation?.computed),
|
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gpsLatitude: asDegrees(
|
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tags.GPSLatitude?.computed,
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tags.GPSLatitudeRef?.computed,
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"S",
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),
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gpsLongitude: asDegrees(
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tags.GPSLongitude?.computed,
|
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tags.GPSLongitudeRef?.computed,
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"W",
|
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),
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// A GPSAltitudeRef of 1 means the altitude is below sea level.
|
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gpsAltitude:
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altitude !== undefined && exif?.GPSAltitudeRef?.value === 1
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altitude !== undefined && tags.GPSAltitudeRef?.value === 1
|
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? -altitude
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: altitude,
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};
|
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|
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+1
-1
@@ -85,7 +85,7 @@ export type {
|
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LibrarySnapshot,
|
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LibraryChange,
|
||||
} from "./library/records.js";
|
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export type { PhotoExif } from "./exif.js";
|
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export type { ExifTags, PhotoExif } from "./exif.js";
|
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export { decryptCollection, decryptFile } from "./model/index.js";
|
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export { downloadFile, downloadThumbnail } from "./download/index.js";
|
||||
export type {
|
||||
|
||||
+8
-38
@@ -29,14 +29,7 @@
|
||||
// the cache does not count as saved there, but is copied there rather than
|
||||
// fetched again.
|
||||
|
||||
import {
|
||||
closeSync,
|
||||
existsSync,
|
||||
openSync,
|
||||
readFileSync,
|
||||
readSync,
|
||||
statSync,
|
||||
} from "node:fs";
|
||||
import { existsSync, readFileSync, statSync } from "node:fs";
|
||||
import {
|
||||
chmod,
|
||||
copyFile,
|
||||
@@ -281,25 +274,6 @@ const fileSize = (path: string): number | undefined => {
|
||||
const hasContent = (path: string | undefined): boolean =>
|
||||
path !== undefined && (fileSize(path) ?? 0) > 0;
|
||||
|
||||
// Whether the file at `path` begins as a ZIP does, with `PK\x03\x04`. False
|
||||
// when it cannot be read.
|
||||
const isZip = (path: string): boolean => {
|
||||
try {
|
||||
const fd = openSync(path, "r");
|
||||
try {
|
||||
const head = Buffer.alloc(4);
|
||||
return (
|
||||
readSync(fd, head, 0, 4, 0) === 4 &&
|
||||
head.toString("latin1") === "PK\x03\x04"
|
||||
);
|
||||
} finally {
|
||||
closeSync(fd);
|
||||
}
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
};
|
||||
|
||||
// A live photo's image and video are named with the extensions from inside its
|
||||
// ZIP, so their names alone do not say which is which. Wherever the cache or a
|
||||
// save path stores one, a JSON file of this name beside them names both.
|
||||
@@ -713,8 +687,10 @@ export class ContentCache implements PhotoContent, ThumbnailsAPI {
|
||||
await this.touch(cached.path);
|
||||
return { ...cached, bytes: size, cached: true };
|
||||
}
|
||||
// A recorded file that has since gone, or a live photo an earlier
|
||||
// version stored as one ZIP, re-fetches below.
|
||||
// A recorded file that has since gone re-fetches below. So does a
|
||||
// live photo recorded with no video: the cache opened before the
|
||||
// library's records said it is a live photo, while its image and
|
||||
// video had no JSON file beside them yet.
|
||||
known.delete(fileID);
|
||||
}
|
||||
|
||||
@@ -983,20 +959,14 @@ export class ContentCache implements PhotoContent, ThumbnailsAPI {
|
||||
if (id === undefined || !existsSync(path)) continue;
|
||||
// A live photo's image and video are one entry, as the JSON file
|
||||
// beside them names them. A live photo's file with no such JSON
|
||||
// file is not its original. If it is a ZIP, it is the one an
|
||||
// earlier version stored under the image's name, and is removed.
|
||||
// Any other is left alone: another process may have just stored
|
||||
// it and not yet written the JSON file.
|
||||
// file is not its original and is left alone: another process may
|
||||
// have just stored it and not yet written the JSON file.
|
||||
const livePhoto = names.has(livePhotoJSONName(String(id)))
|
||||
? readLivePhotoJSON(dir, String(id))
|
||||
: undefined;
|
||||
if (livePhoto !== undefined) {
|
||||
into.set(id, livePhoto);
|
||||
} else if (isLivePhoto(id)) {
|
||||
if (isZip(path)) {
|
||||
await rm(path, { force: true }).catch(() => undefined);
|
||||
}
|
||||
} else {
|
||||
} else if (!isLivePhoto(id)) {
|
||||
into.set(id, { path });
|
||||
}
|
||||
}
|
||||
|
||||
+31
-25
@@ -13,14 +13,19 @@
|
||||
//
|
||||
// A `Photo` also fetches its own bytes: `original()`, `thumbnail()`,
|
||||
// `download()`, `content()`, `exif()` and the methods that each return one
|
||||
// field of `exif()` go through the on-disk content cache (issue #46), and are
|
||||
// EXIF field go through the on-disk content cache (issue #46), and are
|
||||
// the one place in this module that may touch the network. A library opened
|
||||
// without a content source leaves that cache absent, and those methods then
|
||||
// throw. `savePath` and `isLocal` look only at the disk and need no cache.
|
||||
|
||||
import { readFile } from "node:fs/promises";
|
||||
|
||||
import { readPhotoExif, type PhotoExif } from "../exif.js";
|
||||
import {
|
||||
readAllExifTags,
|
||||
readPhotoExif,
|
||||
type ExifTags,
|
||||
type PhotoExif,
|
||||
} from "../exif.js";
|
||||
import type { CollectionType, EnteFile, FileType } from "../model/types.js";
|
||||
import type { ContentOptions, ContentResult, PhotoContent } from "./content.js";
|
||||
import type { AlbumRecord, PhotoRecord, DerivedRecords } from "./records.js";
|
||||
@@ -156,74 +161,75 @@ export class Photo implements PhotoExifMethods {
|
||||
return readFile(path);
|
||||
}
|
||||
|
||||
// The common EXIF fields of the original, read from `content()`, so this
|
||||
// may download it. EXIF is read from any image format exifreader reads,
|
||||
// JPEG and HEIC/HEIF among them; any other file gives `{}`, and a video
|
||||
// gives it without fetching anything. Like the other content methods, it
|
||||
// throws when there is no content cache, video or not.
|
||||
async exif(opts?: ContentOptions): Promise<PhotoExif> {
|
||||
// Every EXIF tag of the original, keyed by name (see `ExifTags`), read
|
||||
// from `content()`, so this may download it. EXIF is read from any image
|
||||
// format exifreader reads, JPEG and HEIC/HEIF among them; any other file
|
||||
// gives `{}`, and a video gives it without fetching anything. Like the
|
||||
// other content methods, it throws when there is no content cache, video
|
||||
// or not.
|
||||
async exif(opts?: ContentOptions): Promise<ExifTags> {
|
||||
this.cacheOrThrow();
|
||||
if (this.rec.fileType === "video") return {};
|
||||
return readPhotoExif(await this.content(opts));
|
||||
return readAllExifTags(await this.content(opts));
|
||||
}
|
||||
|
||||
// One field of `exif()` each, named and typed as in `PhotoExif`, and
|
||||
// undefined when the file lacks it. Each call runs `exif()`, which reads
|
||||
// the original again.
|
||||
// One field each, named and typed as in `PhotoExif`, picked from the tags
|
||||
// `exif()` returns, and undefined when the file lacks it. Each call runs
|
||||
// `exif()`, which reads the original again.
|
||||
async make(opts?: ContentOptions): Promise<PhotoExif["make"]> {
|
||||
return (await this.exif(opts)).make;
|
||||
return readPhotoExif(await this.exif(opts)).make;
|
||||
}
|
||||
async model(opts?: ContentOptions): Promise<PhotoExif["model"]> {
|
||||
return (await this.exif(opts)).model;
|
||||
return readPhotoExif(await this.exif(opts)).model;
|
||||
}
|
||||
async lensModel(opts?: ContentOptions): Promise<PhotoExif["lensModel"]> {
|
||||
return (await this.exif(opts)).lensModel;
|
||||
return readPhotoExif(await this.exif(opts)).lensModel;
|
||||
}
|
||||
async dateTimeOriginal(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["dateTimeOriginal"]> {
|
||||
return (await this.exif(opts)).dateTimeOriginal;
|
||||
return readPhotoExif(await this.exif(opts)).dateTimeOriginal;
|
||||
}
|
||||
async offsetTimeOriginal(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["offsetTimeOriginal"]> {
|
||||
return (await this.exif(opts)).offsetTimeOriginal;
|
||||
return readPhotoExif(await this.exif(opts)).offsetTimeOriginal;
|
||||
}
|
||||
async exposureTime(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["exposureTime"]> {
|
||||
return (await this.exif(opts)).exposureTime;
|
||||
return readPhotoExif(await this.exif(opts)).exposureTime;
|
||||
}
|
||||
async fNumber(opts?: ContentOptions): Promise<PhotoExif["fNumber"]> {
|
||||
return (await this.exif(opts)).fNumber;
|
||||
return readPhotoExif(await this.exif(opts)).fNumber;
|
||||
}
|
||||
async iso(opts?: ContentOptions): Promise<PhotoExif["iso"]> {
|
||||
return (await this.exif(opts)).iso;
|
||||
return readPhotoExif(await this.exif(opts)).iso;
|
||||
}
|
||||
async focalLength(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["focalLength"]> {
|
||||
return (await this.exif(opts)).focalLength;
|
||||
return readPhotoExif(await this.exif(opts)).focalLength;
|
||||
}
|
||||
async orientation(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["orientation"]> {
|
||||
return (await this.exif(opts)).orientation;
|
||||
return readPhotoExif(await this.exif(opts)).orientation;
|
||||
}
|
||||
async gpsLatitude(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["gpsLatitude"]> {
|
||||
return (await this.exif(opts)).gpsLatitude;
|
||||
return readPhotoExif(await this.exif(opts)).gpsLatitude;
|
||||
}
|
||||
async gpsLongitude(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["gpsLongitude"]> {
|
||||
return (await this.exif(opts)).gpsLongitude;
|
||||
return readPhotoExif(await this.exif(opts)).gpsLongitude;
|
||||
}
|
||||
async gpsAltitude(
|
||||
opts?: ContentOptions,
|
||||
): Promise<PhotoExif["gpsAltitude"]> {
|
||||
return (await this.exif(opts)).gpsAltitude;
|
||||
return readPhotoExif(await this.exif(opts)).gpsAltitude;
|
||||
}
|
||||
|
||||
private cacheOrThrow(): PhotoContent {
|
||||
|
||||
@@ -3,14 +3,18 @@
|
||||
* `quak backup-metadata --exif` records.
|
||||
*
|
||||
* The originals come from users' libraries, so a truncated or corrupt file
|
||||
* must neither hang the read nor throw out of it: `readPhotoExif` gives `{}`,
|
||||
* must neither hang the read nor throw out of it: `readAllExifTags` gives `{}`,
|
||||
* and `backup-metadata` tells an EXIF block it cannot read apart from a file
|
||||
* that simply has no EXIF, carrying the reason in `exifError`. Each JPEG below
|
||||
* is a short hand-built byte array; the HEIC is a real file.
|
||||
*/
|
||||
|
||||
import { describe, expect, it } from "vitest";
|
||||
import { readPhotoExif } from "../../src/exif.js";
|
||||
import {
|
||||
readAllExifTags,
|
||||
readExifTags,
|
||||
readPhotoExif,
|
||||
} from "../../src/exif.js";
|
||||
import { extractImageMetadata } from "../../src/metadata-backup.js";
|
||||
import { HEIC_WITH_EXIF } from "../exif-heic.js";
|
||||
|
||||
@@ -87,6 +91,27 @@ const TIFF_UNNAMED_TAG = [
|
||||
...[0x00, 0x00, 0x00, 0x00],
|
||||
];
|
||||
|
||||
// A big-endian TIFF block holding Orientation 6, and a thumbnail IFD holding
|
||||
// its own Orientation 1 and a 4-byte JPEG thumbnail.
|
||||
const TIFF_WITH_THUMBNAIL = [
|
||||
...[0x4d, 0x4d, 0x00, 0x2a, 0x00, 0x00, 0x00, 0x08], // the first IFD at 8
|
||||
// The first IFD, at 8: one entry, then the thumbnail IFD at 26.
|
||||
...[0x00, 0x01],
|
||||
// Orientation (0x0112), SHORT, 6.
|
||||
...[0x01, 0x12, 0x00, 0x03, 0x00, 0x00, 0x00, 0x01, 0x00, 0x06, 0x00, 0x00],
|
||||
...[0x00, 0x00, 0x00, 0x1a],
|
||||
// The thumbnail IFD, at 26: three entries, then no next IFD.
|
||||
...[0x00, 0x03],
|
||||
// Orientation (0x0112), SHORT, 1.
|
||||
...[0x01, 0x12, 0x00, 0x03, 0x00, 0x00, 0x00, 0x01, 0x00, 0x01, 0x00, 0x00],
|
||||
// JPEGInterchangeFormat (0x0201), LONG: the thumbnail is at 68.
|
||||
...[0x02, 0x01, 0x00, 0x04, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x44],
|
||||
// JPEGInterchangeFormatLength (0x0202), LONG: 4 bytes.
|
||||
...[0x02, 0x02, 0x00, 0x04, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x04],
|
||||
...[0x00, 0x00, 0x00, 0x00],
|
||||
...[0xff, 0xd8, 0xff, 0xd9], // the thumbnail, at 68: an empty JPEG
|
||||
];
|
||||
|
||||
// An APP1 segment whose length field matches its data.
|
||||
const app1 = (data: number[]): number[] => {
|
||||
const len = data.length + 2;
|
||||
@@ -96,31 +121,72 @@ const app1 = (data: number[]): number[] => {
|
||||
const bytes = (...parts: number[][]): Uint8Array =>
|
||||
new Uint8Array(parts.flat());
|
||||
|
||||
describe("readAllExifTags", () => {
|
||||
it("keys a tag exifreader has no name for by its number", () => {
|
||||
const data = [...EXIF_HEADER, ...TIFF_UNNAMED_TAG];
|
||||
expect(readAllExifTags(bytes(SOI, app1(data), SOS))).toStrictEqual({
|
||||
"undefined-49152": {
|
||||
id: 49152,
|
||||
value: 7,
|
||||
description: 7,
|
||||
computed: 7,
|
||||
},
|
||||
});
|
||||
});
|
||||
|
||||
it("puts the thumbnail's tags under Thumbnail, without its image", () => {
|
||||
const input = bytes(
|
||||
SOI,
|
||||
app1([...EXIF_HEADER, ...TIFF_WITH_THUMBNAIL]),
|
||||
SOS,
|
||||
);
|
||||
// exifreader finds the thumbnail's image.
|
||||
expect(readExifTags(input)?.Thumbnail?.type).toBe("image/jpeg");
|
||||
const tags = readAllExifTags(input);
|
||||
expect(tags.Orientation?.value).toBe(6);
|
||||
expect(Object.keys(tags.Thumbnail ?? {}).sort()).toEqual([
|
||||
"JPEGInterchangeFormat",
|
||||
"JPEGInterchangeFormatLength",
|
||||
"Orientation",
|
||||
]);
|
||||
expect(tags.Thumbnail?.Orientation?.value).toBe(1);
|
||||
expect(readPhotoExif(tags)).toStrictEqual({ orientation: 6 });
|
||||
});
|
||||
});
|
||||
|
||||
describe("readPhotoExif", () => {
|
||||
it("reads the common fields of a valid JPEG", () => {
|
||||
const data = [...EXIF_HEADER, ...TIFF_ORIENTATION_6];
|
||||
expect(readPhotoExif(bytes(SOI, app1(data), SOS))).toStrictEqual({
|
||||
expect(
|
||||
readPhotoExif(readAllExifTags(bytes(SOI, app1(data), SOS))),
|
||||
).toStrictEqual({
|
||||
orientation: 6,
|
||||
});
|
||||
});
|
||||
|
||||
it("gives no dateTimeOriginal for a DateTimeOriginal of 0000:00:00 00:00:00", () => {
|
||||
const data = [...EXIF_HEADER, ...TIFF_UNSET_DATE];
|
||||
expect(readPhotoExif(bytes(SOI, app1(data), SOS))).toStrictEqual({
|
||||
expect(
|
||||
readPhotoExif(readAllExifTags(bytes(SOI, app1(data), SOS))),
|
||||
).toStrictEqual({
|
||||
orientation: 6,
|
||||
});
|
||||
});
|
||||
|
||||
it("reads a GPSAltitude without GPSAltitudeRef as above sea level", () => {
|
||||
const data = [...EXIF_HEADER, ...TIFF_ALTITUDE_WITHOUT_REF];
|
||||
expect(readPhotoExif(bytes(SOI, app1(data), SOS))).toStrictEqual({
|
||||
expect(
|
||||
readPhotoExif(readAllExifTags(bytes(SOI, app1(data), SOS))),
|
||||
).toStrictEqual({
|
||||
gpsAltitude: 12.5,
|
||||
});
|
||||
});
|
||||
|
||||
it("gives no make for a Make whose value lies past the end of the file", () => {
|
||||
const data = [...EXIF_HEADER, ...TIFF_MAKE_PAST_END];
|
||||
expect(readPhotoExif(bytes(SOI, app1(data), SOS))).toStrictEqual({
|
||||
expect(
|
||||
readPhotoExif(readAllExifTags(bytes(SOI, app1(data), SOS))),
|
||||
).toStrictEqual({
|
||||
orientation: 6,
|
||||
});
|
||||
});
|
||||
@@ -175,8 +241,9 @@ describe("readPhotoExif", () => {
|
||||
"an EXIF block that cannot be parsed",
|
||||
bytes(SOI, app1([...EXIF_HEADER, 0x58, 0x58]), SOS),
|
||||
],
|
||||
])("returns no fields for %s", (_, input) => {
|
||||
expect(readPhotoExif(input)).toStrictEqual({});
|
||||
])("returns no tags and no fields for %s", (_, input) => {
|
||||
expect(readAllExifTags(input)).toStrictEqual({});
|
||||
expect(readPhotoExif(readAllExifTags(input))).toStrictEqual({});
|
||||
});
|
||||
});
|
||||
|
||||
|
||||
@@ -1883,15 +1883,6 @@ describe("downloadFile live photos", () => {
|
||||
expect(readdirSync(t.dir).sort()).toEqual(["f.JPG", "f.bin"]);
|
||||
});
|
||||
|
||||
it("replaces what was at the destination, such as an earlier ZIP of the two", async () => {
|
||||
const t = setup(livePhotoZip(), livePhoto);
|
||||
writeFileSync(t.outPath, livePhotoZip());
|
||||
|
||||
await t.run();
|
||||
|
||||
expect(readdirSync(t.dir).sort()).toEqual(["f.heic", "f.mov"]);
|
||||
});
|
||||
|
||||
it("renames the image and then the video into place, each from its own temp file", async () => {
|
||||
const t = setup(livePhotoZip(), livePhoto);
|
||||
|
||||
|
||||
@@ -29,6 +29,7 @@ import { downloadAlbums } from "../../examples/download-albums.js";
|
||||
import { Library, type ContentSource } from "../../src/index.js";
|
||||
import type { CollectionsPage, FilesPage } from "../../src/client.js";
|
||||
import type { Collection, EnteFile } from "../../src/model/types.js";
|
||||
import { readAllExifTags } from "../../src/exif.js";
|
||||
import { HEIC_WITH_EXIF } from "../exif-heic.js";
|
||||
import {
|
||||
asLivePhoto,
|
||||
@@ -201,11 +202,10 @@ describe("examples/download-albums.ts", () => {
|
||||
Buffer.from(VIDEO),
|
||||
);
|
||||
|
||||
// The metadata is the photo's record and its EXIF fields. The
|
||||
// originals of photos 1 and 2 are not image data, so they have no
|
||||
// EXIF fields. Photo 3's image holds a camera, an exposure and a
|
||||
// position, and the date it was taken is written as an ISO 8601
|
||||
// string. `record` holds the fields the three records share.
|
||||
// The metadata is the photo's record and its EXIF tags. The originals
|
||||
// of photos 1 and 2 are not image data, so they have no EXIF tags.
|
||||
// Photo 3's are every tag of its image, as `photo.exif()` returns
|
||||
// them. `record` holds the fields the three records share.
|
||||
const record = {
|
||||
takenAt: TAKEN_MS,
|
||||
modifiedAt: TAKEN_MS,
|
||||
@@ -234,21 +234,7 @@ describe("examples/download-albums.ts", () => {
|
||||
title: "file-3.jpg",
|
||||
fileType: "livePhoto",
|
||||
hash: livePhotoHash(HEIC_WITH_EXIF, VIDEO),
|
||||
exif: {
|
||||
make: "Canon",
|
||||
model: "EOS R5",
|
||||
lensModel: "RF50mm F1.8 STM",
|
||||
dateTimeOriginal: "2021-07-15T14:30:00.000Z",
|
||||
offsetTimeOriginal: "+02:00",
|
||||
exposureTime: 1 / 250,
|
||||
fNumber: 2.8,
|
||||
iso: 400,
|
||||
focalLength: 50,
|
||||
orientation: 6,
|
||||
gpsLatitude: 40 + 26 / 60 + 46 / 3600,
|
||||
gpsLongitude: -(79 + 58 / 60 + 56 / 3600),
|
||||
gpsAltitude: -12.5,
|
||||
},
|
||||
exif: readAllExifTags(HEIC_WITH_EXIF),
|
||||
});
|
||||
|
||||
// Each album's photos, newest first, by save path relative to `dir`.
|
||||
|
||||
@@ -7,7 +7,7 @@
|
||||
* a cached path shows up on the projected record. A library opened without a
|
||||
* content source leaves those methods throwing rather than silently doing
|
||||
* nothing. It also covers a `Photo`'s `savePath`, `isLocal`, `download()`,
|
||||
* `content()`, `exif()` and the methods that each return one field of `exif()`.
|
||||
* `content()`, `exif()` and the methods that each return one EXIF field.
|
||||
*/
|
||||
|
||||
import { describe, it, expect, beforeEach, afterEach, vi } from "vitest";
|
||||
@@ -27,7 +27,7 @@ import { Library, type LibraryOptions } from "../../src/library/index.js";
|
||||
import type { ContentSource } from "../../src/library/content.js";
|
||||
import type { CollectionsPage, FilesPage } from "../../src/client.js";
|
||||
import type { Collection, EnteFile } from "../../src/model/types.js";
|
||||
import type { PhotoExif } from "../../src/exif.js";
|
||||
import { readPhotoExif, type PhotoExif } from "../../src/exif.js";
|
||||
import { HEIC_WITH_EXIF } from "../exif-heic.js";
|
||||
import {
|
||||
asLivePhoto,
|
||||
@@ -176,7 +176,7 @@ describe("Library content wiring", () => {
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
it("removes a live photo's ZIP an earlier version cached when it opens, and precaches its image and video", async () => {
|
||||
it("does not take a live photo's image or video with no JSON file as its original when it opens, and precaches both", async () => {
|
||||
const { file: live, body } = await asLivePhoto(file(1, 1));
|
||||
class LiveClient extends MockClient {
|
||||
override async filesSince(): Promise<FilesPage> {
|
||||
@@ -197,7 +197,8 @@ describe("Library content wiring", () => {
|
||||
// A first run records the library, so the next one knows that file 1
|
||||
// is a live photo when it opens the cache.
|
||||
await (await open({})).close();
|
||||
writeFileSync(join(originals, "1.jpg"), livePhotoZip());
|
||||
writeFileSync(join(originals, "1.heic"), "an image");
|
||||
writeFileSync(join(originals, "1.mov"), "a video");
|
||||
|
||||
let precached!: () => void;
|
||||
const done = new Promise<void>((r) => (precached = r));
|
||||
@@ -208,7 +209,9 @@ describe("Library content wiring", () => {
|
||||
precached();
|
||||
},
|
||||
});
|
||||
expect(existsSync(join(originals, "1.jpg"))).toBe(false);
|
||||
expect(
|
||||
lib.photos.byID({ fileID: 1 })!.record().originalPath,
|
||||
).toBeUndefined();
|
||||
await done;
|
||||
|
||||
expect(readdirSync(originals).sort()).toEqual([
|
||||
@@ -216,6 +219,17 @@ describe("Library content wiring", () => {
|
||||
"1.livephoto.json",
|
||||
"1.mov",
|
||||
]);
|
||||
expect(readFileSync(join(originals, "1.heic"))).toEqual(
|
||||
Buffer.from(IMAGE),
|
||||
);
|
||||
expect(readFileSync(join(originals, "1.mov"))).toEqual(
|
||||
Buffer.from(VIDEO),
|
||||
);
|
||||
expect(
|
||||
JSON.parse(
|
||||
readFileSync(join(originals, "1.livephoto.json"), "utf-8"),
|
||||
),
|
||||
).toEqual({ image: "1.heic", video: "1.mov" });
|
||||
expect(lib.photos.byID({ fileID: 1 })!.record().originalPath).toBe(
|
||||
join(originals, "1.heic"),
|
||||
);
|
||||
@@ -259,10 +273,10 @@ const entry = (
|
||||
value: number[],
|
||||
): number[] => [...u16(tag), ...u16(type), ...u32(count), ...value];
|
||||
|
||||
// The TIFF block of a JPEG's EXIF segment, holding every field `exif()` picks:
|
||||
// the camera in the first IFD, the exposure in the Exif IFD, and a GPS position
|
||||
// of 40°26'46" N, 79°58'56" W, 12.5 m below sea level. Offsets count from the
|
||||
// start of this block.
|
||||
// The TIFF block of a JPEG's EXIF segment, holding every field `Photo`'s typed
|
||||
// methods return: the camera in the first IFD, the exposure in the Exif IFD,
|
||||
// and a GPS position of 40°26'46" N, 79°58'56" W, 12.5 m below sea level.
|
||||
// Offsets count from the start of this block.
|
||||
const TIFF = [
|
||||
...[0x4d, 0x4d, 0x00, 0x2a], // big-endian TIFF
|
||||
...u32(8), // the first IFD's offset
|
||||
@@ -623,9 +637,72 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
it("reads the common EXIF fields of a JPEG original", async () => {
|
||||
// Every tag in JPEG_WITH_EXIF, by name, in the order of its IFDs.
|
||||
const jpegTags = [
|
||||
"Make",
|
||||
"Model",
|
||||
"Orientation",
|
||||
"Exif IFD Pointer",
|
||||
"GPS Info IFD Pointer",
|
||||
"ExposureTime",
|
||||
"FNumber",
|
||||
"ISOSpeedRatings",
|
||||
"DateTimeOriginal",
|
||||
"OffsetTimeOriginal",
|
||||
"FocalLength",
|
||||
"LensModel",
|
||||
"GPSLatitudeRef",
|
||||
"GPSLatitude",
|
||||
"GPSLongitudeRef",
|
||||
"GPSLongitude",
|
||||
"GPSAltitudeRef",
|
||||
"GPSAltitude",
|
||||
];
|
||||
// HEIC_WITH_EXIF holds those and the tags exiftool adds to every file.
|
||||
const heicTags = [
|
||||
...jpegTags,
|
||||
"YCbCrPositioning",
|
||||
"ExifVersion",
|
||||
"ComponentsConfiguration",
|
||||
"ColorSpace",
|
||||
"GPSVersionID",
|
||||
];
|
||||
|
||||
it.each([
|
||||
[
|
||||
"JPEG",
|
||||
JPEG_WITH_EXIF,
|
||||
jpegTags,
|
||||
{
|
||||
"Exif IFD Pointer": { value: 88 },
|
||||
GPSLatitudeRef: { value: ["N"], description: "North latitude" },
|
||||
},
|
||||
],
|
||||
[
|
||||
"HEIC",
|
||||
HEIC_WITH_EXIF,
|
||||
heicTags,
|
||||
{
|
||||
ColorSpace: { value: 0xffff, description: "Uncalibrated" },
|
||||
ExifVersion: { description: "0232" },
|
||||
},
|
||||
],
|
||||
])(
|
||||
"returns every EXIF tag of a %s original, by name",
|
||||
async (_, bytes, names, others) => {
|
||||
const lib = await open({ contentSource: stubSource(bytes) });
|
||||
const exif = await lib.photos.byID({ fileID: 1 })!.exif();
|
||||
expect(Object.keys(exif).sort()).toEqual([...names].sort());
|
||||
// Tags outside the thirteen fields, as exifreader decodes them.
|
||||
expect(exif).toMatchObject(others);
|
||||
await lib.close();
|
||||
},
|
||||
);
|
||||
|
||||
it("picks the common EXIF fields from a JPEG original's tags", async () => {
|
||||
const lib = await open({ contentSource: stubSource(JPEG_WITH_EXIF) });
|
||||
expect(await lib.photos.byID({ fileID: 1 })!.exif()).toStrictEqual({
|
||||
const exif = await lib.photos.byID({ fileID: 1 })!.exif();
|
||||
expect(readPhotoExif(exif)).toStrictEqual({
|
||||
make: "Canon",
|
||||
model: "EOS R5",
|
||||
lensModel: "RF50mm F1.8 STM",
|
||||
@@ -644,8 +721,8 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
// What exif() returns for HEIC_WITH_EXIF, and for JPEG_WITH_EXIF, which
|
||||
// holds the same values.
|
||||
// The fields picked from HEIC_WITH_EXIF's tags, and from JPEG_WITH_EXIF's,
|
||||
// which hold the same values.
|
||||
const heicFields: PhotoExif = {
|
||||
make: "Canon",
|
||||
model: "EOS R5",
|
||||
@@ -662,11 +739,10 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
gpsAltitude: -12.5,
|
||||
};
|
||||
|
||||
it("reads the same common EXIF fields from a HEIC original", async () => {
|
||||
it("picks the same common EXIF fields from a HEIC original's tags", async () => {
|
||||
const lib = await open({ contentSource: stubSource(HEIC_WITH_EXIF) });
|
||||
expect(await lib.photos.byID({ fileID: 1 })!.exif()).toStrictEqual(
|
||||
heicFields,
|
||||
);
|
||||
const exif = await lib.photos.byID({ fileID: 1 })!.exif();
|
||||
expect(readPhotoExif(exif)).toStrictEqual(heicFields);
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
@@ -680,28 +756,27 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
client: new FilesClient([live]),
|
||||
contentSource: cdnSource(new Map([[1, body]])),
|
||||
});
|
||||
expect(await lib.photos.byID({ fileID: 1 })!.exif()).toStrictEqual(
|
||||
heicFields,
|
||||
);
|
||||
const exif = await lib.photos.byID({ fileID: 1 })!.exif();
|
||||
expect(readPhotoExif(exif)).toStrictEqual(heicFields);
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
// The build's type check, not this test, makes sure `Photo` has a method
|
||||
// for every `PhotoExif` field, whatever the fixtures hold: `Photo`
|
||||
// implements a type with one method per field. This test checks that each
|
||||
// method gives the same value as exif().
|
||||
// method gives the field picked from the tags exif() returns.
|
||||
it.each([
|
||||
["JPEG", JPEG_WITH_EXIF],
|
||||
["HEIC", HEIC_WITH_EXIF],
|
||||
])(
|
||||
"has a method for each field exif() returns, giving the same value, for a %s",
|
||||
"has a method for each field, agreeing with the tags exif() returns, for a %s",
|
||||
async (_, bytes) => {
|
||||
const lib = await open({ contentSource: stubSource(bytes) });
|
||||
const photo = lib.photos.byID({ fileID: 1 })!;
|
||||
const exif = await photo.exif();
|
||||
const fields = readPhotoExif(await photo.exif());
|
||||
// The file holds every field, so every method is checked.
|
||||
expect(exif).toStrictEqual(heicFields);
|
||||
for (const [field, value] of Object.entries(exif)) {
|
||||
expect(fields).toStrictEqual(heicFields);
|
||||
for (const [field, value] of Object.entries(fields)) {
|
||||
expect(await photo[field as keyof PhotoExif]()).toStrictEqual(
|
||||
value,
|
||||
);
|
||||
@@ -710,7 +785,7 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
},
|
||||
);
|
||||
|
||||
it("returns no EXIF fields for an original that is not an image", async () => {
|
||||
it("returns no EXIF tags for an original that is not an image", async () => {
|
||||
const lib = await open();
|
||||
const photo = lib.photos.byID({ fileID: 1 })!;
|
||||
expect(await photo.exif()).toStrictEqual({});
|
||||
@@ -718,7 +793,7 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
it("returns no EXIF fields for a JPEG whose EXIF cannot be parsed", async () => {
|
||||
it("returns no EXIF tags for a JPEG whose EXIF cannot be parsed", async () => {
|
||||
const lib = await open({
|
||||
contentSource: stubSource(JPEG_WITH_BAD_EXIF),
|
||||
});
|
||||
@@ -739,7 +814,7 @@ describe("Photo save path, local copy, content and EXIF", () => {
|
||||
await lib.close();
|
||||
});
|
||||
|
||||
it("returns no EXIF fields for a video, without fetching it", async () => {
|
||||
it("returns no EXIF tags for a video, without fetching it", async () => {
|
||||
const video = file(1, 1);
|
||||
video.metadata.fileType = "video";
|
||||
const source = stubSource(JPEG_WITH_EXIF);
|
||||
|
||||
@@ -566,43 +566,6 @@ describe("ContentCache live photos", () => {
|
||||
expect(events).toEqual(["skipped"]);
|
||||
});
|
||||
|
||||
it("replaces a live photo an earlier version stored as a ZIP under the image's name", async () => {
|
||||
const { file: live, body } = await asLivePhoto(file(5, "IMG_5.HEIC"));
|
||||
mkdirSync(originals(), { recursive: true });
|
||||
writeFileSync(join(originals(), "5.HEIC"), livePhotoZip());
|
||||
const cache = cacheOf([live], new Map([[5, body]]));
|
||||
// Opened without being told that file 5 is a live photo, the cache
|
||||
// records the ZIP, and does not serve it.
|
||||
await cache.open();
|
||||
|
||||
const result = await cache.original(5);
|
||||
|
||||
expect(result.videoPath).toBe(join(originals(), "5.mov"));
|
||||
expect(readdirSync(originals()).sort()).toEqual([
|
||||
"5.heic",
|
||||
"5.livephoto.json",
|
||||
"5.mov",
|
||||
]);
|
||||
});
|
||||
|
||||
it("removes a live photo's ZIP an earlier version stored when it opens, so the precache fetches the image and video", async () => {
|
||||
const { file: live, body } = await asLivePhoto(file(5, "IMG_5.HEIC"));
|
||||
mkdirSync(originals(), { recursive: true });
|
||||
writeFileSync(join(originals(), "5.HEIC"), livePhotoZip());
|
||||
const cache = cacheOf([live], new Map([[5, body]]));
|
||||
|
||||
await cache.open((fileID) => fileID === 5);
|
||||
|
||||
expect(readdirSync(originals())).toEqual([]);
|
||||
expect(cache.pathsFor(5)).toEqual({});
|
||||
const [fetched] = await cache.ensureOriginals({ fileIDs: [5] });
|
||||
expect(fetched).toEqual({
|
||||
fileID: 5,
|
||||
path: join(originals(), "5.heic"),
|
||||
});
|
||||
expect(cache.pathsFor(5)).toEqual({ originalPath: fetched!.path });
|
||||
});
|
||||
|
||||
it("leaves the image and video another process has just stored when it opens before their JSON file is written", async () => {
|
||||
const { file: live, body } = await asLivePhoto(file(5, "IMG_5.HEIC"));
|
||||
const server = cdnSource(new Map([[5, body]]));
|
||||
@@ -633,6 +596,36 @@ describe("ContentCache live photos", () => {
|
||||
expect(second!.pathsFor(5)).toEqual({});
|
||||
});
|
||||
|
||||
it("fetches a live photo's image and video again when the cache opened before knowing it is a live photo and no JSON file names them", async () => {
|
||||
const { file: live, body } = await asLivePhoto(file(5, "IMG_5.HEIC"));
|
||||
mkdirSync(originals(), { recursive: true });
|
||||
writeFileSync(join(originals(), "5.heic"), "an image");
|
||||
writeFileSync(join(originals(), "5.mov"), "a video");
|
||||
const cache = cacheOf([live], new Map([[5, body]]));
|
||||
// Opened without being told that file 5 is a live photo, the cache
|
||||
// records one of the two files as its original, with no video.
|
||||
await cache.open();
|
||||
|
||||
const events: string[] = [];
|
||||
const result = await cache.original(5, {
|
||||
onProgress: (e) => events.push(e.status),
|
||||
});
|
||||
|
||||
expect(events.at(-1)).toBe("done");
|
||||
expect(result).toEqual({
|
||||
path: join(originals(), "5.heic"),
|
||||
videoPath: join(originals(), "5.mov"),
|
||||
bytes: IMAGE.length,
|
||||
});
|
||||
expect(readFileSync(result.path)).toEqual(Buffer.from(IMAGE));
|
||||
expect(readFileSync(result.videoPath!)).toEqual(Buffer.from(VIDEO));
|
||||
expect(
|
||||
JSON.parse(
|
||||
readFileSync(join(originals(), "5.livephoto.json"), "utf-8"),
|
||||
),
|
||||
).toEqual({ image: "5.heic", video: "5.mov" });
|
||||
});
|
||||
|
||||
it.each(["missing", "empty"])(
|
||||
"fetches a live photo again when the video its JSON file names is %s",
|
||||
async (state) => {
|
||||
|
||||
Reference in New Issue
Block a user