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clawbot 6dd22bcb73 exif() returns every EXIF tag in the file (closes #156)
check / check (push) Failing after 49s
`photo.exif()` returns `ExifTags`: every EXIF tag exifreader reads from the file, keyed by tag name, each with exifreader's `id`, `value`, `description` and `computed`. The embedded thumbnail's tags are under `Thumbnail`, without the thumbnail image. A file with no EXIF, or a video, gives `{}`.

The thirteen typed methods stay. Each picks its field from the tags `exif()` returns through `readPhotoExif`, which now takes the tags instead of the bytes. GPS latitude and longitude are worked out from their tags and reference tags, since exifreader's computed position is not among the tags.

Also closes #148.

Model: opus-5-5
2026-10-02 02:25:28 +00:00
clawbot 0c995a8c4f Remove the content cache's handling of an earlier version's live-photo ZIP (closes #151)
check / check (push) Failing after 44s
quak is pre-1.0 and keeps no handling of old data. The content cache no longer recognises or removes a live photo that an earlier quak version cached as one ZIP. A live-photo download no longer removes what was at its destination before renaming the image and video into place; the rename already replaces it. The README sentences and the tests about that old ZIP are gone. The two removed tests that also covered current behaviour are replaced by tests with no ZIP: the cache re-fetching a live photo recorded with no video, and the library telling the cache which files are live photos when it opens.

Model: opus-5-5
2026-10-02 04:14:30 +02:00
12 geänderte Dateien mit 368 neuen und 220 gelöschten Zeilen
+20 -18
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@@ -101,7 +101,8 @@ requires one, and writes:
photo its image, its video and the `.livephoto.json` file naming them
- beside each original, a JSON file named after it with `.json` added, for
example `2026-03-01.12345.jpg.json`: the photo's record (`photo.record()`)
without its cache paths, and its EXIF fields (`photo.exif()`) under `exif`
without its cache paths, and every EXIF tag of the photo (`photo.exif()`)
under `exif`
- `albums/<collectionID>.json` for each album: its `collectionID`, its `name`,
and under `savePaths` the save paths of its photos relative to `dir`, newest
first
@@ -773,21 +774,25 @@ These async methods may download:
- `await photo.thumbnail(opts?)` → `{ path, bytes }`.
- `await photo.content(opts?)` → `Uint8Array` — the original's bytes, read
through `original()`; for a live photo, its image's.
- `await photo.exif(opts?)` → `PhotoExif` — `make`, `model`, `lensModel`,
`dateTimeOriginal`, `offsetTimeOriginal`, `exposureTime`, `fNumber`, `iso`,
`focalLength`, `orientation`, `gpsLatitude`, `gpsLongitude` and `gpsAltitude`,
each absent when the file lacks it. GPS values are signed decimal degrees and
metres. `dateTimeOriginal` is the camera's clock reading held in the `Date`'s
UTC fields; `offsetTimeOriginal`, when present, is that clock's offset from
UTC. EXIF is read from any image format exifreader reads (such as JPEG,
HEIC/HEIF, AVIF, PNG, WebP and TIFF), a live photo's image included. Any other
original gives `{}`, and a video gives `{}` without being downloaded.
- `await photo.exif(opts?)` → `ExifTags` — every EXIF tag in the file, keyed by
tag name, each as exifreader decodes it, with its `id`, `value`, `description`
and `computed` value: for example `Make` is
`{ id: 271, value: ["Canon"], description: "Canon", computed: "Canon" }`. A
tag exifreader has no name for is keyed `undefined-<tag number>`. The embedded
thumbnail's tags are under `Thumbnail`, so they cannot hide the main image's
tags of the same name; the thumbnail image itself is left out. EXIF is read
from any image format exifreader reads (such as JPEG, HEIC/HEIF, AVIF, PNG,
WebP and TIFF), a live photo's image included. Any other original gives `{}`,
and a video gives `{}` without being downloaded.
- `await photo.make(opts?)`, and likewise `model()`, `lensModel()`,
`dateTimeOriginal()`, `offsetTimeOriginal()`, `exposureTime()`, `fNumber()`,
`iso()`, `focalLength()`, `orientation()`, `gpsLatitude()`, `gpsLongitude()`
and `gpsAltitude()` → one field of `exif()` each, typed as in `PhotoExif`, or
`undefined` when the file lacks it. Each calls `exif()` with its `opts`, so
each call reads the original again.
and `gpsAltitude()` → one common field each, picked from the tags `exif()`
returns and typed as in `PhotoExif`, or `undefined` when the file lacks it.
GPS values are signed decimal degrees and metres. `dateTimeOriginal()` is the
camera's clock reading held in the `Date`'s UTC fields;
`offsetTimeOriginal()`, when present, is that clock's offset from UTC. Each
calls `exif()` with its `opts`, so each call reads the original again.
They serve from the on-disk content cache when the bytes are present and
otherwise fetch through the pools; `original()`, `content()` and `exif()` also
@@ -879,10 +884,7 @@ current account's records name.
A live photo's original is cached as at its save path: its image and its video,
each `originals/<fileID>.<ext>` with its own extension, and
`originals/<fileID>.livephoto.json` naming them; the two are evicted together. A
live photo that an earlier version cached as its ZIP is not served: the library
removes the ZIP when it opens the cache, and fetches the two files when the
photo is next read or precached.
`originals/<fileID>.livephoto.json` naming them; the two are evicted together.
A stored file appears only via an atomic temp-then-rename, so its presence means
it is complete. Every downloaded original (by `quak get`, the cache, or
@@ -907,7 +909,7 @@ from a very old client, is stored unchecked.
- `src/library/records.ts`: `PhotoRecord`, `AlbumRecord`, `LibrarySnapshot`,
`LibraryChange`
- `src/library/mlsearch.ts`: `MLDataAPI`, `SimilarResult`
- `src/exif.ts`: `PhotoExif`
- `src/exif.ts`: `ExifTags`, `PhotoExif`
- `src/library/pools.ts`: `RequestPools`, `RequestPoolsOptions`, `BoundedPool`
- `src/backup.ts`: `BackupOptions`, `BackupResult`, `BackupError`
- `src/client.ts`: `Client`, `LoginOptions`, `ClientSnapshot`
+11
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@@ -25,6 +25,17 @@ declares one.
# Completed Steps
- 2026-10-02: `photo.exif()` returns every EXIF tag in the file as `ExifTags`,
keyed by tag name, each as exifreader decodes it, not only the thirteen common
fields (issue 156). The embedded thumbnail's tags are under `Thumbnail`,
without the thumbnail image. The thirteen typed methods stay, each picking its
field from the tags `exif()` returns, typed as in `PhotoExif`. The example
script's JSON files now carry every tag.
- 2026-10-01: The content cache no longer looks for a live photo that an earlier
version cached as one ZIP (issue 151). When the cache opens, a live photo's
file that no JSON file names is now always left alone.
- 2026-10-01: `examples/download-albums.ts` logs in, opens the library, and for
every album downloads each photo to its save path, writes the photo's record
and EXIF fields to a JSON file beside it, and writes the album's photos to
+3 -5
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@@ -361,8 +361,8 @@ const openPart = async (
// written unpacked: each part is named `destination` with the extension
// replaced by its own entry's, and the two must differ ignoring case. When the
// file records a hash, `<imageHash>:<videoHash>` must match it, each over that
// part's own bytes. Only then is whatever was at `destination` removed and the
// image, then the video, renamed into place; on any failure neither is stored.
// part's own bytes. Only then are the image, then the video, renamed into
// place; on any failure neither is stored.
//
// The ZIP is chosen by its uploader and may expand enormously, so each part is
// written as it decompresses and never held, and the ZIP is refused once the
@@ -486,7 +486,6 @@ const decryptLivePhoto = async (
await part.handle.sync();
await part.handle.close();
}
await rm(destination, { force: true });
await rename(image.tmpPath, path);
try {
await rename(video.tmpPath, videoPath);
@@ -570,8 +569,7 @@ const fetchAndDecrypt = async (
}, api.getRetryOptions());
// Write `file`'s original to `outPath`. A live photo is written as its image
// and its video beside `outPath` instead, and whatever was at `outPath` is
// removed (see `decryptLivePhoto`).
// and its video beside `outPath` instead (see `decryptLivePhoto`).
export const downloadFile = async (
api: ApiClient,
file: EnteFile,
+80 -31
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@@ -1,19 +1,19 @@
// EXIF in an original's bytes, read with exifreader, which reads it from JPEG,
// HEIC/HEIF, AVIF, PNG, WebP and the other image formats it supports.
// `backup-metadata --exif` records every EXIF tag it finds except the
// thumbnail's; `Photo.exif()` returns the common fields picked from them here.
// thumbnail's. `Photo.exif()` returns every tag, the thumbnail's included, and
// `Photo`'s typed methods return the common fields picked from them here.
import ExifReader, { type ExpandedTags } from "exifreader";
// The EXIF tags in `bytes` (`exif`), the GPS position exifreader computes from
// them (`gps`), and where the EXIF block lies in `bytes` (`metadataRange`).
// The EXIF tags in `bytes` (`exif`), the embedded thumbnail's tags
// (`Thumbnail`), and where the EXIF block lies in `bytes` (`metadataRange`).
// Undefined when exifreader cannot read the file at all, such as a video. An
// EXIF block it finds but reads no tag from comes back as an empty `exif`.
// `exif` holds every tag except the thumbnail's; a tag exifreader has no name
// for is keyed `undefined-<tag number>`. Each tag's `computed` holds its value
// as a string or number, or as an array of them for a tag with several values,
// such as `GPSLatitude`'s `[40, 26, 46]`. A fraction with a zero denominator
// computes to null.
// EXIF block it finds but reads no tag from comes back as an empty `exif`. A
// tag exifreader has no name for is keyed `undefined-<tag number>`. Each tag's
// `computed` holds its value as a string or number, or as an array of them for
// a tag with several values, such as `GPSLatitude`'s `[40, 26, 46]`. A
// fraction with a zero denominator computes to null.
export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
try {
return ExifReader.loadView(
@@ -23,7 +23,7 @@ export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
computed: true,
includeOffsets: true,
includeUnknown: true,
includeTags: { exif: true, gps: true },
includeTags: { exif: true, thumbnail: true },
},
);
} catch {
@@ -31,7 +31,35 @@ export const readExifTags = (bytes: Uint8Array): ExpandedTags | undefined => {
}
};
// The common EXIF fields of an original. Each is absent when the file lacks it.
// Every EXIF tag of an original, keyed by name, each as exifreader decodes it
// (see `readExifTags`). The embedded thumbnail's own tags are under
// `Thumbnail`, so its `Orientation` or `ImageWidth` cannot hide the main
// image's.
export type ExifTags = Omit<NonNullable<ExpandedTags["exif"]>, "Thumbnail"> & {
Thumbnail?: Omit<
NonNullable<ExpandedTags["Thumbnail"]>,
"type" | "image" | "base64"
>;
};
// Every EXIF tag in `bytes`: `{}` when the file has no EXIF, exifreader cannot
// read its EXIF, or it is not an image exifreader reads.
export const readAllExifTags = (bytes: Uint8Array): ExifTags => {
const tags = readExifTags(bytes);
if (!tags?.Thumbnail) return tags?.exif ?? {};
// exifreader puts the thumbnail's JPEG image beside its tags, as `type`,
// `image` and `base64`. The image is not a tag, so it is left out.
const {
type: _type,
image: _image,
base64: _base64,
...thumbnail
} = tags.Thumbnail;
return { ...tags.exif, Thumbnail: thumbnail };
};
// The common EXIF fields of an original, one for each of `Photo`'s typed
// methods. Each is absent when the file lacks it.
export interface PhotoExif {
make?: string;
model?: string;
@@ -80,30 +108,51 @@ const asDate = (v: unknown): Date | undefined => {
return Number.isNaN(date.getTime()) ? undefined : date;
};
// The common fields of an original's EXIF: `{}` when the file has no EXIF,
// exifreader cannot read its EXIF, or it is not an image exifreader reads.
export const readPhotoExif = (bytes: Uint8Array): PhotoExif => {
const tags = readExifTags(bytes);
const exif = tags?.exif;
const gps = tags?.gps;
const altitude = asNumber(exif?.GPSAltitude?.computed);
// GPSLatitude and GPSLongitude hold degrees, minutes and seconds, computed as
// three numbers. This is them in decimal degrees, negative when `ref`, the
// GPSLatitudeRef or GPSLongitudeRef tag, is `negativeRef` ("S" or "W").
// Without that tag the hemisphere is unknown, so it is undefined.
const asDegrees = (
dms: unknown,
ref: unknown,
negativeRef: string,
): number | undefined => {
if (!Array.isArray(dms) || ref === undefined) return undefined;
const [d, m, s] = dms.map(asNumber);
if (d === undefined || m === undefined || s === undefined) return undefined;
const degrees = d + m / 60 + s / 3600;
return ref === negativeRef ? -degrees : degrees;
};
// The common fields picked from an original's EXIF tags, `readAllExifTags`'s
// result: `{}` when there are none.
export const readPhotoExif = (tags: ExifTags): PhotoExif => {
const altitude = asNumber(tags.GPSAltitude?.computed);
const fields: PhotoExif = {
make: asString(exif?.Make?.computed),
model: asString(exif?.Model?.computed),
lensModel: asString(exif?.LensModel?.computed),
dateTimeOriginal: asDate(exif?.DateTimeOriginal?.computed),
offsetTimeOriginal: asString(exif?.OffsetTimeOriginal?.computed),
exposureTime: asNumber(exif?.ExposureTime?.computed),
fNumber: asNumber(exif?.FNumber?.computed),
make: asString(tags.Make?.computed),
model: asString(tags.Model?.computed),
lensModel: asString(tags.LensModel?.computed),
dateTimeOriginal: asDate(tags.DateTimeOriginal?.computed),
offsetTimeOriginal: asString(tags.OffsetTimeOriginal?.computed),
exposureTime: asNumber(tags.ExposureTime?.computed),
fNumber: asNumber(tags.FNumber?.computed),
// Only when the tag holds a single number, as most cameras write it.
iso: asNumber(exif?.ISOSpeedRatings?.computed),
focalLength: asNumber(exif?.FocalLength?.computed),
orientation: asNumber(exif?.Orientation?.computed),
gpsLatitude: asNumber(gps?.Latitude),
gpsLongitude: asNumber(gps?.Longitude),
iso: asNumber(tags.ISOSpeedRatings?.computed),
focalLength: asNumber(tags.FocalLength?.computed),
orientation: asNumber(tags.Orientation?.computed),
gpsLatitude: asDegrees(
tags.GPSLatitude?.computed,
tags.GPSLatitudeRef?.computed,
"S",
),
gpsLongitude: asDegrees(
tags.GPSLongitude?.computed,
tags.GPSLongitudeRef?.computed,
"W",
),
// A GPSAltitudeRef of 1 means the altitude is below sea level.
gpsAltitude:
altitude !== undefined && exif?.GPSAltitudeRef?.value === 1
altitude !== undefined && tags.GPSAltitudeRef?.value === 1
? -altitude
: altitude,
};
+1 -1
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@@ -85,7 +85,7 @@ export type {
LibrarySnapshot,
LibraryChange,
} from "./library/records.js";
export type { PhotoExif } from "./exif.js";
export type { ExifTags, PhotoExif } from "./exif.js";
export { decryptCollection, decryptFile } from "./model/index.js";
export { downloadFile, downloadThumbnail } from "./download/index.js";
export type {
+8 -38
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@@ -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
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@@ -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 {
+75 -8
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@@ -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({});
});
});
-9
Datei anzeigen
@@ -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);
+6 -20
Datei anzeigen
@@ -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`.
+103 -28
Datei anzeigen
@@ -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);
+30 -37
Datei anzeigen
@@ -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) => {