rootDir was ./src while include also matched bin/**/*, which is TS6059: tsc refuses to emit at all when a compiled file sits outside rootDir. rootDir is now the repository root, which is the smallest change that makes the two agree and leaves the source layout the README documents alone. Output keeps the shape of the source tree, so main and types move to dist/src/index.js and dist/src/index.d.ts while bin.quak stays at dist/bin/quak.js. The alternative, moving the CLI body into src/ behind a shim in bin/, would hold main at dist/index.js at the cost of churning the CLI and contradicting the layout diagram in the README. Clearing TS6059 exposed two type errors that had never been reached, because the config error aborts before checking: StateAddress was read as a namespace member off the default import, and the secretstream pull was called without the additional-data argument, which libsodium does not make optional. The type is now taken from the module's named export and the pull passes null for ad, matching the null already passed on the push side in encryptBlob. Neither changes what runs. noEmitOnError stops a failed build from leaving output behind. It emitted despite the error before, which is how a stale bin/quak.js came to sit next to bin/quak.ts in a working tree, where eslint then read it and failed make check on a generated file. script/build compiles and then checks that the files package.json advertises are among the ones the compiler wrote, since tsc knows nothing about the manifest and a green build could still ship a package whose main resolves to nothing. It also sets the executable bit on the bin entries, which tsc does not carry over from the source even though it does copy the shebang. The Makefile target is now a shim over it, as the other targets are, and package.json's build script points at it so yarn build gets the same checks. The Dockerfile runs make build after make check, so a branch that does not compile cannot reach main. What make check itself runs is unchanged. package.json gains a quak script, so the yarn quak commands the README's Getting Started block has always listed resolve to the built CLI.
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quak
quak is a WTFPL-licensed TypeScript client library and CLI by @sneak for the Ente end-to-end encrypted photo hosting service. It logs in, enumerates collections and files, and downloads individual images while decrypting them on the way to disk.
quak also includes a resilient backup command that downloads every file in the account into a deduplicated local directory tree, skipping files that already exist on disk and continuing past individual download failures instead of crashing. It decrypts and persists all three metadata layers (basic, private magic, public magic) per file, including camera info, GPS coordinates, captions, and any face/keyword labels the Ente clients have added. A helper subcommand can detect and regenerate missing thumbnails, encrypting and uploading them back to the server.
Getting Started
git clone https://git.eeqj.de/sneak/quak.git
cd quak
yarn install
yarn build
# Log in (prompts for email, password, and OTP/TOTP if required).
yarn quak login
# List the user's collections (albums).
yarn quak collections
# List files in a collection.
yarn quak files --collection 12345
# Download and decrypt a single file.
yarn quak get 67890 --out ./photo.jpg
# Back up every file in the account.
yarn quak backup ./my-backup
For library use:
import { Client } from "quak";
const client = await Client.login({
email: "you@example.com",
password: "your-password",
});
for (const c of await client.listCollections()) {
console.log(c.id, c.name);
const files = await client.listFiles(c.id, c.key);
for (const f of files) {
console.log(` ${f.metadata.title} [${f.metadata.fileType}]`);
}
}
// Download a file
const files = await client.listFiles(collectionID, collectionKey);
await client.downloadFile(files[0], "./photo.jpg");
// Serialize session for later (consumer handles persistence)
const snapshot = client.toJSON();
// ... later:
const restored = Client.fromJSON(snapshot);
Entrypoints
This repository adheres to the
Scripts to Rule Them All
standard: normalized scripts in script/ are the entrypoints for the
development workflow, and the Makefile targets are thin shims that call them.
The scripts are POSIX sh (not bash) so they run in minimal containers such as
alpine. We provide:
script/bootstrap— install all dependencies (node/yarn if missing, thenyarn install --frozen-lockfile)script/setup— set up the repo for development after a fresh clone: runsscript/bootstrap, thenscript/install-precommitscript/projectname— output the project name (our own extension); used byscript/dockerfor the image tagscript/build— compile the TypeScript sources intodist/, then verify that the entrypointspackage.jsondeclares (main,types,bin) are among the files the compiler wrote, and make the CLI executable (our own extension)script/test— run the test suite (vitest, hard-capped at 30s wheretimeoutis available, verbose rerun on failure)script/lint— run eslint and a prettier checkscript/fmt— format all files with prettier (writes)script/fmt-check— check formatting (read-only)script/check— run all checks:test,lint,fmt-check(our own extension)script/docker— build the Docker image, tagged viascript/projectname(byte-identical across repos)script/cibuild— cd to the repo root anddocker build .(what CI runs; the image build runsmake checkandmake build)script/precommit— run by the git pre-commit hook (our own extension); runsscript/lintandscript/fmt-checkbut deliberately not the tests, so the TDD red-phase commit can landscript/install-precommit— installs the git pre-commit hook (our own extension);make hooksshims to it
make hooks installs the pre-commit hook that runs script/precommit.
Rationale
Ente is one of very few photo services with a credible end-to-end encryption story. The shipping clients (mobile Flutter, web React, desktop Electron, and Go CLI) work, but they are slow, buggy, and difficult to script against. The Flutter app fails to sync reliably. The web app is heavy. The desktop app is the web app inside a slow Electron wrapper. The Go CLI is the closest thing to a usable tool, but it is awkward to integrate from anything that is not a shell. The Go CLI's backup mode crashes entirely when a single file download fails, which makes it useless as an actual backup tool.
quak fixes these problems. This repo ships a correct, well-tested implementation of Ente's cryptographic protocol and API surface, plus a CLI that proves the library is enough to do real work without a UI. The backup command is resilient by design: per-file errors are logged and the run continues.
The longer-term goal of this project is a simple desktop client for Ente, built on this library in Electron (or a comparable runtime), with two priorities above everything else: correctness and stability. Performance and simplicity follow from those. Features will be added only after the protocol layer is correct, the local cache is reliable, and the UI is responsive on a five-year-old laptop.
Development workflow
All work on quak is test-driven. No exceptions.
- Every change starts on a feature branch off
main. - The first commit on the branch is the test suite for what is being added or changed. Those tests must fail at that commit; the branch is red until the implementation lands.
- Subsequent commits add the implementation and any refactors needed to make the tests pass.
- A feature branch can only be merged into
mainwhenmake checkis green.mainis always green. The Dockerfile runsmake checkandmake build, so neither a red branch nor one that does not compile can pass CI. - Tests are the canonical API documentation for this library. Every test file is commented thoroughly enough that a reader who has never seen quak can learn how to use it from the tests alone. Comments explain why a behavior matters, not just what the assertion checks.
- Test fixtures (cryptographic vectors, recorded HTTP responses, sample files)
are committed alongside their tests. Where possible they are generated by
deterministic helpers in the
test/tree so any reviewer can reproduce them by running the helper. git rebase -iis allowed on a feature branch before merge to clean up the test-then-implementation sequence into reviewable commits, but the final history must still show tests landing before (or with) the matching implementation.- The pre-commit hook installed by
make hooksrunsscript/precommit, which runs the lint and format checks but not the fullmake check. This is deliberate so the TDD red-phase commit (failing tests, no implementation yet) can land. The fullmake checkruns as part ofdocker build ., which is what CI executes, so a red branch still cannot reachmain.
Design
quak is a TypeScript library with a thin CLI wrapper. The library does the work; the CLI is for humans.
Layout
quak/
src/
crypto/ libsodium primitives (boxes, secretstreams, KDF, SRP)
api/ HTTP client (ApiClient class)
auth/ login flow (SRP + email OTP + TOTP), key unwrap
model/ decrypted Collection, File, Metadata types + decrypt fns
download/ streaming file/thumbnail download + decryption
backup.ts resilient full-account backup with dedup
errors.ts error types shared across layers
retry.ts retry classifier + exponential backoff with jitter
thumbnails.ts detect + regenerate missing thumbnails
client.ts high-level Client class assembled from the above
index.ts public library exports
bin/
quak.ts CLI entrypoint (commander.js)
test/ unit + integration tests (vitest)
Makefile
Dockerfile
package.json
tsconfig.json
make build compiles that tree into dist/, preserving its shape: the library
lands in dist/src/ and the CLI in dist/bin/quak.js, which is what
package.json points main, types and bin at. The compiler's rootDir is
the repository root rather than src/, because bin/ is compiled too and
rootDir has to contain everything that is compiled.
Cryptography
All cryptography is done by libsodium-wrappers-sumo (the "sumo" build is
required for crypto_pwhash / Argon2id). No hand-rolled crypto.
The key hierarchy, derived during login, is:
- The user enters their password.
- Argon2id (
crypto_pwhash) over the password and a server-issuedkekSalt, with server-issuedmemLimitandopsLimit, produces a 32-byte Key Encryption Key (KEK). - SRP login: a 16-byte SRP login subkey is derived from the KEK using
crypto_kdf_derive_from_key(BLAKE2b) with subkey id 1 and contextloginctx. That 16-byte value is the SRP password. - After SRP completes (or after email-OTP fallback), the server returns a blob of "key attributes" plus an encrypted auth token.
crypto_secretbox_open_easyover the encrypted master key with the KEK yields the 32-byte master key.crypto_secretbox_open_easyover the encrypted secret key with the master key yields the user's X25519 private key. The matching public key is delivered in cleartext.crypto_box_seal_openover the encrypted token with the user's keypair yields the URL-safe base64 auth token used inX-Auth-Tokenfor all subsequent calls.
Per-collection keys are decrypted with crypto_secretbox_open_easy using the
master key (for owned collections). Per-file keys are decrypted with
crypto_secretbox_open_easy using the collection key. File metadata is a
secretstream blob (single chunk, TAG_FINAL) under the file key. File content is
a chunked crypto_secretstream_xchacha20poly1305 stream under the file key,
with a 4 MiB plaintext chunk size and a 17-byte authentication overhead per
chunk. Thumbnails use the same secretstream blob format as metadata.
For upload (thumbnail repair), encryptBlob performs the push side: a single
secretstream chunk with TAG_FINAL, returning the header and ciphertext.
HTTP API
Production endpoints:
- API:
https://api.ente.io - File download CDN:
https://files.ente.io/?fileID=<id> - Thumbnail CDN:
https://thumbnails.ente.io/?fileID=<id>
A custom API endpoint is configurable for self-hosted servers via the
constructor option apiOrigin. When set, file downloads route through
<apiOrigin>/files/download/<id> instead of the dedicated CDN host.
Required request headers on every authenticated call:
X-Auth-Token: the decrypted auth token from login.X-Client-Package: identifies the client. quak usesberlin.sneak.quak.
Endpoints used:
GET /users/srp/attributes?email=<email>: fetch SRP and KDF parameters.POST /users/srp/create-session: begin SRP handshake.POST /users/srp/verify-session: complete SRP, receive 2FA challenge or the encrypted token plus key attributes.POST /users/ottandPOST /users/verify-email: email OTP fallback path.POST /users/two-factor/verify: TOTP second factor.GET /collections/v2?sinceTime=<usec>: list collections changed since microsecond timestamp; pass 0 for a full enumeration.GET /collections/v2/diff?collectionID=<id>&sinceTime=<usec>: list files in a collection; paginate whilehasMoreis true.GET https://files.ente.io/?fileID=<id>: download encrypted file bytes.POST /files/upload-url: mint a presigned upload URL (for thumbnail repair).PUT /files/thumbnail: register an uploaded thumbnail's object key.
Retries and timeouts
Every request in the library goes through one policy, in src/retry.ts. A
request is repeated only when repeating it could produce a different answer:
ApiErrorwith a 5xx status: retried. So are408and429, the two 4xx codes that are statements about timing rather than about the request.- Every other 4xx: not retried. A 404 in particular is an answer, and
listMissingThumbnailsdepends on getting it promptly and once. - Transport failures — a
fetchrejection,ECONNRESET,ETIMEDOUT, a DNS or TLS failure — and deadline aborts: retried. The errno is looked for in the error'scausechain, because that is where Node'sfetchputs it. - A truncated download: retried.
- Anything else, including a secretstream authentication failure that is not truncation: not retried. The default answer is no. For a backup tool, retrying a permanent failure spends round trips and delays every remaining file, while declining to retry a transient one costs a single file that the next run picks up.
Backoff is exponential with full jitter: the delay before retry n is
random() * min(maxDelayMs, baseDelayMs * 2 ** (n - 1)). The exponential term
is the ceiling and the wait is drawn below it, so a client that lost many
parallel downloads to one CDN blip does not send them all again at the same
instant. Defaults, configurable through ApiClientOptions.retry:
| Option | Default | Meaning |
|---|---|---|
attempts |
4 |
total calls, not retries |
baseDelayMs |
500 |
ceiling for the first retry's delay |
maxDelayMs |
10000 |
upper bound on that ceiling |
With those defaults a file that is going to fail gives up after at most three
and a half seconds of waiting. sleep and random are injectable through the
same option, which is how the test suite exercises the whole policy without
waiting.
Two deadlines, applied with AbortSignal.timeout() and renewed for each
attempt:
| Option | Default | Applies to |
|---|---|---|
requestTimeoutMs |
30000 |
getJSON, postJSON, putJSON, putFile |
downloadTimeoutMs |
600000 |
file and thumbnail body transfers |
They are separate because one number cannot serve both: a value short enough to
keep a hung API call from stalling a backup would cancel a legitimate
multi-gigabyte download. The download deadline covers the body, not just the
headers — getFileStream returns as soon as headers arrive, so a deadline that
only guarded the initial request would leave the same hang one layer down.
Non-idempotent requests are not blindly replayed. postJSON and putJSON
reach /users/srp/create-session, /users/two-factor/verify — which consumes
one of a small number of second-factor attempts — and /files/thumbnail. They
are retried only on the three failures that establish no TCP connection to the
server ever existed, so no request byte can have been transmitted: ENOTFOUND
and EAI_AGAIN (name resolution produced no address) and ECONNREFUSED (the
peer refused the connection). A 5xx, a mid-flight reset and a deadline are all
left to the caller, because each of them can happen after the server has already
acted. The routing errnos EHOSTUNREACH, ENETUNREACH and ENETDOWN are
excluded for the same reason, despite looking like connect-time failures: on
Linux an ICMP unreachable arriving mid-flight, or a local interface going down
after the request was written, delivers them on an already-established socket.
They stay retryable for the idempotent calls. putFile is exempt: a presigned
PUT stores one whole object at one key in one request, so replaying it has no
partial state to damage.
A download is retried as a whole — request, stream consumption, and decryption —
because a socket reset after the response headers have arrived surfaces in the
download layer rather than in ApiClient, and that is the common failure for
multi-megabyte photos over a CDN. The secretstream pull state is not resumable
and these endpoints have no Range support, so a retry starts the file over. The
atomic write stays outside the retry, so a download that needed three attempts
still performs exactly one write and one rename. runBackup and
runMetadataBackup are unchanged: the retry sits below them, and a file that
fails after exhausting it is still logged, counted, and stepped over.
One imprecision is deliberate and worth knowing about. When a body ends part-way through a secretstream chunk, Poly1305 fails and carries no framing signal, so a cut connection and genuinely corrupt bytes are indistinguishable. quak reports that as truncation, which means it is retried. For a body of more than one chunk the distinction is real — a chunk that failed while the stream carried on past it stays an authentication failure and is not retried — but for a single-chunk body, which is most thumbnails and every small file, a wrong key, server-side corruption and a mid-chunk cutoff all present alike and all get retried. The cost is bounded by the attempt count, and it buys never silently keeping a truncated file.
Session handling
The Client class holds the auth token, master key, secret key, and public key
in memory. There is no on-disk session store in the library; the consumer
decides how to persist sessions.
client.toJSON() returns a ClientSnapshot (a plain serializable object with
base64-encoded keys) that the consumer can write to disk, a database, or
whatever else fits their use case. Client.fromJSON(snapshot) restores a
working client from that snapshot without re-authenticating.
The CLI stores the snapshot at the platform-appropriate data directory via
env-paths: ~/Library/Application Support/quak/session.json on macOS,
$XDG_DATA_HOME/quak/session.json on Linux. The file is written with mode
0600. The key material is stored in cleartext in the JSON; treat this file as
you would treat the password itself.
CLI surface
quak login interactive or QUAK_EMAIL/QUAK_PASSWORD
quak whoami print logged-in account as JSON
quak logout delete saved session
quak collections [--json] list all collections
quak files --collection <id> [--json] list files in a collection
quak get <fileID> [--out path] [--collection] download and decrypt a file
quak get-thumb <fileID> [--out] [--collection] download and decrypt a thumbnail
quak backup <dir> [--json] full incremental backup
quak helper list-missing-thumbnails [--json] find files with missing thumbnails
quak helper fix-missing-thumbnails [--file ids] generate + upload missing thumbnails
get and get-thumb search all collections for the file ID when --collection
is not specified. All listing and backup commands support --json for
machine-readable output.
Backup layout
quak backup <dir> produces:
<dir>/
originals/
<fileID>.<ext> actual file content (one per unique file)
<fileID>.json all decrypted metadata for that file
collections/
<name>/
<title> -> ../../originals/<fileID>.<ext> (symlink)
<name>.json collection metadata + file list
Each file is downloaded exactly once regardless of how many collections it appears in. On subsequent runs, existing originals are skipped. If a download fails, the error is logged and the backup continues with the next file. The exit code is non-zero if any files failed.
TODO
- Retry policy: no retry on 4xx, exponential backoff on 5xx and network errors
- Update the API reference section below to match the current implementation
make dockergreen- Tag
v1.0.0
Future (desktop client, separate repo):
- Electron app skeleton consuming this library
- Local cache (SQLite) keyed on
(collectionID, fileID, updationTime) - Background sync worker that streams new files into the cache
- Gallery UI: thumbnails, full-image view, basic search
- Upload, delete, and share operations in the library
API reference
The API reference section below is from an earlier draft and does not fully
reflect the current implementation. The authoritative API documentation is in
the test files, particularly test/client/usage.test.ts which is a literate
tutorial walking through every operation. Run yarn test to verify the examples
are correct.
The key types and their actual signatures can be found in:
src/client.ts:Client,LoginOptions,ClientSnapshotsrc/api/client.ts:ApiClient,ApiClientOptions,ApiError,StreamOptionssrc/errors.ts:ApiError,TruncatedStreamErrorsrc/retry.ts:withRetry,isRetryable,isSafeToReplay,RetryOptionssrc/auth/types.ts:KeyAttributes,SRPAttributes,AuthorizationResponse,LoginChallengesrc/model/types.ts:Collection,EnteFile,FileMetadata,FileBlob,RawCollection,RawEnteFile,RawMagicMetadatasrc/download/index.ts:DownloadResultsrc/backup.ts:BackupResult,BackupErrorsrc/thumbnails.ts:MissingThumbnailInfo,ThumbnailFixResult
Source attribution
The cryptographic protocol and wire format implemented here are Ente's, taken
from the Ente open source clients at https://github.com/ente-io/ente. No code
is imported or vendored from those projects; any reference code that is copied
is rewritten in TypeScript in this repository. Protocol fidelity is verified
against the upstream implementations in web/packages/base/,
mobile/apps/photos/lib/, and cli/.
For LLMs
If you are an LLM agent working on this repository, read and follow these documents:
-
REPO_POLICIES.mdin the repo root. It is copied from https://git.eeqj.de/sneak/prompts and covers repository structure, tooling, Makefile targets, Dockerfile conventions, dependency pinning, and commit hygiene. All external dependencies must be pinned by cryptographic hash inyarn.lock. Nevergit add -A. Never force-push to main. -
The "Development workflow" section above. All changes go on feature branches. Tests are written first and committed in a failing state before the implementation. Tests are the canonical API documentation and must be commented thoroughly.
mainis always green. -
Required checks before every commit:
make lint(eslint + prettier check) andmake fmt-checkmust pass. The pre-commit hook enforces this.make check(which also runs tests) must pass before merging tomain. -
Formatting: prettier with 4-space indents and
proseWrap: alwaysfor markdown. Usemake fmtto format. Useyarnnotnpm. -
Testing: vitest. Tests go in
test/mirroring thesrc/structure.make testmust complete in under 20 seconds. UsemkdtempSyncfor temporary directories, never manual timestamp paths. -
Code style:
constfor everything,letif reassignment is needed, nevervar. Avoid unnecessary comments. No hand-rolled crypto. TheLLM_PROSE_TELLS.mddocument in the prompts repo applies to any prose written in this repository (README, comments, commit messages).
License
WTFPL. See LICENSE.