5fede123e71f8bb15f7a3886520da3c2c922519d
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5fede123e7 |
fix(deps): take the patched quick-xml via plist 1.10
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 18m44s
🏗️ Build and Test JellyTau / Supply Chain (push) Successful in 31s
Publish Documentation / Build & publish docs to gitea-pages (push) Successful in 5m28s
Traceability Validation / Check Requirement Traces (push) Successful in 11s
🏗️ Build and Test JellyTau / Android Compile Check (push) Successful in 4m18s
cargo-deny went red on master with two quick-xml DoS advisories (RUSTSEC-2026-0194, RUSTSEC-2026-0195). They were absent before, and correctly so: quick-xml reached the graph only through plist on Apple targets, and deny.toml scopes the graph to the targets this project actually ships. The Tauri 2.11 upgrade changed that. plist is now pulled in by tauri-utils, which is a build-dependency of tauri-build, so it compiles on every target including Linux and the advisory became genuinely in scope. That is the gate behaving as designed -- silent while the crate was unreachable, loud the moment a dependency upgrade brought it into a build we ship. Fixed rather than ignored. plist 1.10.0 requires quick-xml ^0.41.0, which carries both patches, and tauri-utils accepts plist ^1, so the upgrade is a lockfile change with nothing else moving: plist 1.8.0 -> 1.10.0 quick-xml 0.38.4 -> 0.41.0 An ignore entry would have been easy to justify here -- build-time only, parsing files we generate, absent from every shipped binary -- and that is exactly why it would have been wrong: the justification would have outlived the reason for it, and the entry would still be sitting in deny.toml long after the upgrade became available. No release. quick-xml is a build dependency, so it is not inside any v0.10.1 artifact; this only restores master to green. Verified: cargo deny (advisories, bans, licences, sources all ok), cargo check, 765 tests, cargo fmt --check, clippy -D warnings. |
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edff6eedc9 |
fix(player): let the background-audio toggle govern backgrounding again
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 18m44s
🏗️ Build and Test JellyTau / Supply Chain (push) Failing after 49s
Publish Documentation / Build & publish docs to gitea-pages (push) Successful in 5m27s
Traceability Validation / Check Requirement Traces (push) Successful in 10s
Build & Release / Run Tests (push) Successful in 14m48s
🏗️ Build and Test JellyTau / Android Compile Check (push) Successful in 4m19s
Build & Release / Build Linux (push) Successful in 20m20s
Build & Release / Build Windows (push) Successful in 15m36s
Build & Release / Build Android (push) Successful in 30m46s
Build & Release / Create Release (push) Successful in 38s
Locking the screen kept a video's audio playing whether or not the background-audio button was on. Reported as "audio only mode is always active even if not selected". The button (UR-040) was built for the WebView <video> path, where losing visibility kills the decode: it chose between handing off to a native audio stream and letting playback stop. Native video then became the default renderer (DR-188), and on that path playback runs through ExoPlayer inside a MediaSessionService -- a foreground media service whose entire purpose is to keep playing while the app is hidden. Nothing stopped it, and nothing in the codebase paused on background. So the button governed a handoff that no longer had a gap to bridge. There was no interruption to paper over, and a user who never touched it got background playback anyway. The gating made it self-concealing: MainActivity.onStop only dispatched 'jellytau-background' when backgroundAudioEnabled was already true. The one notification that the app had gone away was itself conditional on the setting, so with the button OFF nothing could react even in principle. onStop and onStart now fire unconditionally and carry the two facts only the activity knows -- whether the toggle is armed, and whether Android put the window into picture-in-picture. What to do about it is decided in Rust (player/background_policy.rs), because it depends on whether the item has a picture to lose: video + toggle off -> Pause video + toggle on -> HandOffToAudio music, either -> KeepPlaying (no picture to give up) picture-in-picture -> KeepPlaying (the window is still on screen) It takes no renderer parameter on purpose. Two renderers with two behaviours and one toggle reaching only one of them is what produced the defect; a rule that cannot see the renderer cannot reproduce it. Two failure modes are deliberate. A decision call that fails leaves playback alone rather than risking silence mid-listen. An event with no detail -- older Kotlin against newer JS -- reads as "armed, not PiP", degrading to the previous behaviour instead of pausing unexpectedly. Foregrounding resumes only what backgrounding paused: a video the user paused themselves before locking stays paused. Written test-first per CLAUDE.md. The stub encoded today's behaviour (nothing ever pauses) and failed exactly as reported -- `left: KeepPlaying, right: Pause` -- before the rule was implemented. Verified on a device, R8-minified, both directions: [player_background_action] video=true armed=false pip=false -> Pause [player_background_action] video=true armed=true pip=false -> HandOffToAudio UR-040 / DR-224 / UT-211. |
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76a2d9609b |
fix(release): produce updater artifacts, and point the manifest at them
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 15m32s
🏗️ Build and Test JellyTau / Supply Chain (push) Failing after 29s
Publish Documentation / Build & publish docs to gitea-pages (push) Successful in 5m34s
Traceability Validation / Check Requirement Traces (push) Successful in 11s
Build & Release / Run Tests (push) Successful in 14m49s
🏗️ Build and Test JellyTau / Android Compile Check (push) Successful in 4m22s
Build & Release / Build Linux (push) Failing after 17m42s
Build & Release / Build Windows (push) Successful in 15m46s
Build & Release / Build Android (push) Successful in 30m54s
Build & Release / Create Release (push) Skipped
Two defects on the release path, both of which would have failed the v0.10.0 build after all three platforms had already compiled -- caught by running a real signed build locally instead of waiting for the tag. **createUpdaterArtifacts was never set.** Without it Tauri emits only the plain .AppImage and .exe: no signatures at all. The manifest step then finds none and aborts by design, so the release dies at Create Release having spent ~40 minutes building artifacts it cannot publish. **The manifest looked for the wrong filename.** Tauri v2 signs the .AppImage *itself* and writes <name>.AppImage.sig beside it. The .AppImage.tar.gz form this workflow globbed for only exists under createUpdaterArtifacts: "v1Compatible". A real signed build produced: 154M JellyTau_0.10.0_amd64.AppImage 420 JellyTau_0.10.0_amd64.AppImage.sig so the glob would have matched nothing and the step would have aborted for a second, entirely different reason. Both the artifact collection and the manifest now use the v2 names, and the AppImage and its .sig ship together -- a manifest referencing a signature that was never uploaded fails only on the user's machine. Verified before tagging rather than after: the manifest logic was run against the real artifacts (420-char minisign signature read correctly) and the resulting latest.json checked for validity and shape. The Windows side already used the correct pattern (<installer>.exe.sig), which is why only Linux needed the change. |
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30a9cb32f5 |
chore(release): v0.10.0
Publish Documentation / Build & publish docs to gitea-pages (push) Canceled after 0s
🏗️ Build and Test JellyTau / Run Tests (push) Skipped
🏗️ Build and Test JellyTau / Android Compile Check (push) Skipped
🏗️ Build and Test JellyTau / Supply Chain (push) Failing after 27s
Traceability Validation / Check Requirement Traces (push) Successful in 12s
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Build & Release / Build Linux (push) Failing after 17m37s
Build & Release / Build Windows (push) Successful in 15m36s
Build & Release / Build Android (push) Successful in 31m6s
Build & Release / Create Release (push) Skipped
Two user-visible features -- the app can update itself, and it can hand you a redacted diagnostics bundle -- plus the supply-chain, release integrity and build work behind them. A minor bump rather than a patch, matching how v0.9.0 was cut off v0.8.2 for a single new user requirement. This one carries two (UR-077, UR-078), both with UI in Settings. The CHANGELOG entry is the release body now: build-release.yml publishes the `## v0.10.0` section and fails if it is missing, instead of the fixed block of install instructions that every release from v0.0.1 to v0.9.1 carried verbatim. |
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214997144f |
feat(deps): upgrade Tauri to 2.11.5, and own the Android context it stopped setting
🏗️ Build and Test JellyTau / Run Tests (pull_request) Successful in 22m51s
🏗️ Build and Test JellyTau / Supply Chain (pull_request) Failing after 25s
Traceability Validation / Check Requirement Traces (pull_request) Successful in 14s
🏗️ Build and Test JellyTau / Android Compile Check (pull_request) Successful in 4m19s
The plugin versions could not be matched upward without this: both
tauri-plugin-log 2.9.0 and tauri-plugin-updater 2.10.1 require tauri
^2.10, and the tree was on 2.9.5. So the framework moves with them --
tauri 2.9.5 -> 2.11.5, tauri-build 2.5.3 -> 2.6.3, wry 0.53.5 -> 0.55.1
-- and every plugin's Rust crate and npm package is now pinned to the
same version on both sides.
That upgrade broke Android outright, and the breakage is the interesting
part.
Seven call sites in this crate reach JNI through
ndk_context::android_context(), which reads a process-global pair of
pointers. Nothing here ever set that global. `tao` did -- the windowing
layer under wry, three levels below anything this project names in
Cargo.toml. tao 0.34.5 called initialize_android_context() while starting
the activity and our code read what it left behind. tao 0.35.3 keeps the
same two pointers in a private struct and no longer publishes them.
The result, on every launch, was:
PANIC at ndk-context/src/lib.rs:72: android context was not initialized
8: ndk_context::android_context
9: jellytau_lib::run::{{closure}}
Not a crash in our code, and not a change to our code: an undocumented
side effect of a transitive dependency disappeared. Relying on someone
else to populate a global is a dependency that does not appear in
Cargo.toml and gives no warning when it goes.
src-tauri/src/android_context.rs now owns that invariant instead of
assuming it. JNI_OnLoad captures the JavaVM as the shared library loads
-- the earliest moment available, and nothing in tao, wry or tauri
defines one to collide with. The Context is resolved lazily via
ActivityThread.currentApplication() and pinned as a global reference for
the process lifetime, since ndk_context stores a bare pointer and does
not own it. It publishes the Application rather than the Activity:
SecureStorage.initialize() immediately reduces its argument to
applicationContext anyway, and an Application cannot outlive itself the
way a retained Activity would.
Restoring the global keeps all seven callers untouched. Threading a VM
and Context handle through five credential call sites would have been a
larger change with more risk, on the credential path.
Failure now degrades instead of aborting: it is logged and credentials
fall back to the encrypted-file path, which the app already supports.
Verified on a device, R8-minified, not merely compiled:
[INIT] Android JavaVM and Application published to ndk_context
Android SecureStorage initialized successfully
Android Keystore available via SecureStorage
[INIT] Using system keyring for credential storage
[CodecDetection] Detected 7 video codecs: av1,h263,h264,hevc,...
-- the real keystore path, not the fallback, and the app stays up. None
of this is reachable by CI: nothing there runs the app.
Also fixed here, both found the same way:
- `tauri android build --apk true` is now `--apk`. The CLI took a value
until 2.10; from 2.11 the stray `true` is a positional and the build
fails before starting. Three call sites in build-android.sh and one
in build-release.yml -- the latter builds the signed APK, by far the
most-downloaded artifact.
- scripts/build-android.sh ran `npm install` on its clean-build path in
a bun project, ignoring bun.lock and re-resolving the tree. That is
exactly how the plugin crate/package versions drift apart again.
scripts/check-tooling.sh now fails on any npm/yarn/pnpm invocation or
foreign lockfile, and runs in CI.
DR-222, DR-223.
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f3fa45f742 |
feat(diagnostics): persistent redacted logging and an exportable bundle
🏗️ Build and Test JellyTau / Run Tests (pull_request) Successful in 22m12s
🏗️ Build and Test JellyTau / Supply Chain (pull_request) Successful in 37s
Traceability Validation / Check Requirement Traces (pull_request) Successful in 11s
🏗️ Build and Test JellyTau / Android Compile Check (pull_request) Successful in 4m10s
The app forgot everything it did the moment it exited. The Rust half
logged through env_logger to stdout only -- invisible to anyone who
launched from a desktop icon, and on Android worse than that: stdout is
not logcat, so the backend produced no visible output at all on the
platform carrying this project's hardest bugs. The autoplay deadlock,
the truncated-stream restart and the background-audio stall were all
diagnosed by talking a user through `adb logcat`, because there was no
other way to see anything. A panic left nothing behind at all.
Logs now go to a size-capped rotating file, to logcat on Android, and to
the webview console in dev. A panic is recorded with its backtrace before
the process dies. The frontend's messages are forwarded into the same
file, so one timeline holds both halves of the app in order -- which is
what makes a race between them legible after the fact, and races between
them are the expensive bug class here.
Redaction runs in the log FORMATTER, not at export time. A credential
sitting in a file on the device is already a disclosure; stripping it on
the way out would be too late. The exporter redacts a second time to
cover files written by builds that predate this. api_key, X-Emby-Token,
Authorization, "AccessToken" and Token="..." all reduce to [REDACTED],
while host, item ids and filenames are deliberately kept -- a log scrubbed
of those is one nobody can debug anything from. Server URLs keep scheme
and host and drop any embedded user:pass@.
Two things the tests caught that review would not have:
- redact_headers recursed on its own output. The replacement keeps the
header NAME, so the next call matched the same header forever; the
test died with a stack overflow. It is a forward scan now.
- The frontend forwarder used `void plugin.error(...)`. `void` discards
a promise's value but not its rejection, so in any webview without
IPC -- a unit test, SSR, a browser preview -- every log line became an
unhandled rejection. 20 of them showed up the first time coverage
ran. Each call now attaches a catch.
Only info and above cross the IPC boundary: debug is per-tick player
state and forwarding it would be thousands of calls a minute for output
nobody reads. A failing forwarder never propagates and never prevents the
console write.
Nothing is transmitted anywhere. The export writes a zip and reports its
path; the user attaches it themselves, which is also what keeps this from
becoming telemetry. An Android share intent is explicitly out of scope --
it is Kotlin work that belongs with the other native code.
The panic hook chains to the previous hook rather than replacing it,
because utils/lock.rs installs a silencing hook around tests that provoke
poisoned locks on purpose.
Spec in docs/specs/diagnostics-and-logging.md; UR-078 / DR-218 / UT-209.
Verified: 1079 frontend tests and the coverage gate, 759 Rust tests,
clippy -D warnings, svelte-check 0 errors, and cargo check for
aarch64-linux-android.
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3211c96ecf |
feat(updater): in-app update on desktop, releases link on Android
Anyone who installed an AppImage or ran the Windows installer was frozen
on that version forever. Nothing in the app ever mentioned a new release
existed, and the release notes were the only announcement.
Desktop now checks a signed manifest, shows the version and its notes in
Settings, and installs and relaunches on request. The signature check is
the whole point: it is what stops a substituted download from being
installed by the app itself. Windows binaries stay unsigned for
SmartScreen purposes -- that is a code-signing certificate, a separate
problem -- but the update payload is verified against our own key.
Android is deliberately not wired to the updater. An app may not replace
its own APK; that is the package installer's job, and the plugin has no
Android implementation. It gets a link to the releases page instead of a
button that would throw.
The plugins are gated with a target-triple cfg rather than
cfg(desktop). Cargo only evaluates target cfgs in a [target.'cfg(..)']
table, so cfg(desktop) matches nothing, silently drops the dependency,
and fails much later with "Permission updater:default not found" -- which
is exactly what the first attempt here did.
Where the manifest lives took some finding. This Gitea serves
/releases/download/<tag>/<asset> but 404s on
/releases/latest/download/<asset> (verified against a real asset), so
there is no stable latest-release URL. The gitea-pages branch is
force-pushed wholesale by publish-docs.yml, so it cannot host the file
either. latest.json therefore gets its own orphan branch, read over the
raw-file URL, and is published from a scratch repo in RUNNER_TEMP rather
than by switching branches in the checkout -- doing that would have left
the following steps standing on a one-commit history, and the next step
but one runs release:notes against the real commit range.
Also fixed, all of it release-integrity:
- "appimage" is in bundle.targets. The release notes have advertised an
AppImage for months; tauri.conf.json never built one, the artifact
step globbed for *.AppImage, found nothing, and said nothing. The
step now fails instead.
- The .AppImage.tar.gz/.sig pair and the NSIS .sig are collected. A
manifest referencing a signature that was never uploaded fails only
on the user's machine, so the manifest step also refuses to write an
entry with an empty signature.
- Release notes are generated by release:notes from the traceability
graph, which is what CLAUDE.md has asked for all along, instead of a
fixed heredoc that said "see CHANGELOG.md for detailed changes" and
linked "GitHub Issues" on a Gitea-hosted project.
- The notes tell users how to verify a download with SHA256SUMS.
Requirements UR-077 / DR-217, tests UT-208 (12 cases over the version
comparison and the platform decision, including that a pre-release does
not offer itself as an upgrade to the matching release).
Verified: 1070 frontend tests, cargo check for both the host and
aarch64-linux-android (confirming the plugins are absent there), clippy
-D warnings, svelte-check 0 errors.
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f6653e6a8b |
ci(security): add a supply-chain gate, checksums and an SBOM
The project shipped signed Android builds and unsigned desktop binaries
with no vulnerability scanning of any kind. Nothing checked the ~500
crate Rust graph or the JS packages against an advisory feed, and nothing
checked that what we redistribute inside an MIT bundle permits it.
The first cargo-deny run found eight vulnerabilities and one
unsoundness -- bytes, four in rustls-webpki, time, two in quick-xml and
rand -- every one of them closed by a `cargo update` nobody had a reason
to run. That update is in this commit; 740 Rust tests and clippy
-D warnings pass on the new lockfile.
Two structural fixes matter as much as the gate itself:
- deny.toml scopes the graph to the targets we actually ship. Without
it the Apple targets pull in plist -> quick-xml and report two DoS
advisories against a crate that is in no binary we release. Ignoring
those by ID would silence them everywhere, including where they
would matter; scoping makes them correctly absent.
- libmpv is pinned by rev instead of branch = "master". A branch means
the revision is whatever Cargo.lock happens to hold and any
`cargo update` silently substitutes new upstream code -- in the one
dependency that is not from crates.io and that links a C library
into the player. The rev is the commit already locked, so this pins
current behaviour rather than changing it.
Licence findings are recorded rather than waved through. libmpv and
libmpv-sys are LGPL-2.1, satisfied here by dynamic linking against the
system library; deny.toml carries the two obligations that follow (keep
the linkage dynamic, ship libmpv's licence text with any bundle carrying
the .so). MPL-2.0 crates are file-level copyleft and fine unmodified.
Releases now publish SHA256SUMS (verified in-job with `sha256sum -c`
before upload) and a CycloneDX SBOM for both halves, so "does this
release contain <vulnerable crate>?" has an answer that is not "rebuild
the tag and re-resolve it".
Workflows pin jellytau-builder:2026.08 instead of :latest. While every
job said :latest, rebuilding the image changed what every build compiled
against, including rebuilds of old release tags.
Also folded in, because both were the same class of problem:
- publish-docs.yml downloaded mdBook from GitHub releases into
/usr/local/bin at job time -- a toolchain install in CI, which
CLAUDE.md explicitly forbids, and a hard dependency on GitHub's CDN
at publish time. It is in the builder image now.
- extract-traces.ts only ever read .ts/.svelte/.rs, so every
requirement implemented by *configuration* was invisible to the
matrix that measures it. DR-205, DR-206, DR-207 and DR-215 all carry
TRACES comments nothing read, and each counted as uncovered while
being covered. Coverage was really 90%, not 88%; MIN_THRESHOLD moves
to 89 accordingly. CI workflows stay excluded and there is a test
saying why: traceability-check.yml quotes "a TRACES: comment" beside
deliberately-undefined example IDs, which the extractor would read
as real traces and then fail its own dangling-ID check.
Supply-chain requirement is DR-216.
🔴 The builder image must be rebuilt and pushed
(scripts/build-builder-image.sh 2026.08) before this reaches master --
the workflows now name a tag and tools that do not exist in the registry
yet.
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32043a2152 |
docs: fold shipped specs into the architecture docs and delete them
A spec was a promise; sixteen of them had become descriptions of code that already shipped, sitting beside four that describe work still outstanding, with nothing in the file telling the two apart. Half the statuses were also wrong — audio-equalizer read "Accepted" with the EQ live on both platforms, the native video spec said the flag stays off after the default was flipped on. The shipped designs move into docs/architecture, which is the maintained description of the build, and the spec files go. Git history keeps the originals; what a future change still needs is carried across: - 01-rust-backend: favourites rewritten (the old section named a file that no longer exists and called shipped buttons "planned"), domain vocabulary owned by Rust (SearchScope, exclusions, the bitrate ladder), background workers - 02-svelte-frontend: app shell and chrome, library mosaic, series/episode navigation, downloaded browse, safe-area insets, native-video store, logging - 03-data-flow: locally-indexed search - 05-platform-backends: audio settings on ExoPlayer, the equalizer's band vocabulary, native video compositing, the background-audio handoff - 06-downloads-and-offline: one storage model, offline catalog visibility - 09-security: path confinement and input binding docs/specs/README.md now says what the directory is for and where each shipped design went. Deferred work the specs recorded is kept beside the code it concerns rather than lost: season-bounded autoplay, the two dead search commands, why indexing is a full crawl. requirements.md had fourteen stale statuses — Android audio parity still read "Linux only", DR-150 still said the native-video default was off, DR-190 was Proposed after DR-196 implemented it, and five tooling requirements were Proposed after landing. Three unbuilt specs suggested requirement ids that have since been allocated to other work; each now carries a warning. |
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16658889a2 |
fix(home): restart the hero banner timer on a manual change
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The rotation interval was installed once when the banner mounted and never touched again, so a swipe, arrow or dot tap inherited whatever was left of the running countdown — swiping 5.5s into a 6s interval moved the banner on half a second later. The timer moves into heroRotation.ts as a small restartable object so it can be unit-tested, and every manual navigation path restarts it from that moment. Verified red-first: with restart() reverted to leave a running timer alone, the regression test fails. Release 0.9.1. |
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20e2331560 |
chore(release): 0.9.0
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8fbf4d92cb |
ci: match release bundles by extension, and ship the rpm
Renaming the app to JellyTau renamed its bundles, and the release job globbed `bundle/deb/jellytau_*.deb`. The copy was wrapped in `if [ -f ... ]`, so the rename would have dropped the .deb from the release silently — a green build producing an incomplete release. Matching by extension removes the coupling between the product name and the pipeline, and an empty dist/linux now fails the job instead of passing quietly. That `if [ -f "dir/"*.ext ]` guard was also wrong on its own terms: with more than one match, test gets extra arguments and returns false. Found while verifying the rename: the rpm has been built by every release since deb+rpm became the bundle targets, and never copied, published or documented. It ships now. Also declares the package rename. Tauri kebab-cases productName into the Debian package name, so "JellyTau" produces `jelly-tau` — a different package from the `jellytau` earlier releases installed, which would have put a second copy alongside the old one. deb now declares Replaces/Conflicts/Provides and rpm Obsoletes/Provides, verified in the built control file. TRACES: | DR-214 |
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d32ca13d00 |
chore: give the project its own identity instead of the scaffold's
Cargo.toml still carried `description = "A Tauri App"` and `authors = ["you"]`, package.json's description was empty with no author or repository, and there was no LICENSE file at all despite package.json declaring MIT. The user-visible half matters more. productName was the scaffold's lowercase "jellytau", which is what the Android *release* build shows under its icon and what the deb/rpm/NSIS bundles carry as their display name. It went unnoticed because build.gradle.kts overrides the label to "JellyTau Debug" for the debug build type — the install a developer sees every day was the only correctly-cased one. mainBinaryName pins the executable filename to "jellytau" so build-windows-cross.sh and the Arch PKGBUILD, which both resolve it by name, need no change. strings.xml moves into the canonical android tree rather than being edited in gen/, since sync-android-sources.sh already copies res/values/*.xml — so the fix survives the next regeneration. Bundle metadata (publisher, copyright, category, descriptions, licence) was absent entirely, so the packages shipped with no maintainer or description. The hand-written PKGBUILD and .desktop had all of it; only the generated packaging was wrong. Adds .env.example: three scripts require signing vars from a gitignored .env and .gitignore already whitelists the example, but none existed. TRACES: | DR-214 |
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68ca1d585d |
chore: regenerate bindings and the traceability matrix
bindings.ts picks up the library-exclusion commands and types from tauri-specta. The matrix regenerates because validation.ts and its test are gone — the doc link checker caught the stale references, which is the first time that gate has paid for itself on a generated artifact rather than a hand-written link. Also drops exclusions::is_excluded: a wrapper over is_excluded_by that only a test called, while the trait impls hoist the snapshot themselves. The test now calls the same path production does. |
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0815445aa7 |
feat(library): exclude chosen folders from music browsing
Replaces a hardcoded filter that dropped anything named "Podcasts" from music results — one user's library layout compiled into the shipped product, keyed on an English literal, applied only at the six call sites someone had remembered. Exclusion is now a user setting stored in Rust and applied at the repository layer's convergence points, so scope is decided once and is the same on every screen. It matches on folder id rather than name: a title is not what an item is, which is why an album legitimately called "Podcasts" used to vanish. Deliberately not filtered: get_item (an id asked for by name was navigated to on purpose, and refusing it would break playback of anything inside a hidden folder), get_downloaded_items (hiding a download would leave the user unable to delete a file whose disk usage they can still see), and the offline cache (an exclusion is a view preference and must be reversible without a re-crawl). Also removes src/lib/utils/validation.ts — six exported validators with no caller outside their own test file, which made the module read as covered input validation while guarding nothing. TRACES: UR-076 | DR-209 | UT-203 |
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048c99ebcc |
fix(downloads): allow the deliberate join_absolute_paths lint in a test
The assertion documents that PathBuf::join discards its base when handed an absolute path — which is why confinement has to happen after the join, not instead of it. clippy::join_absolute_paths flags that shape, correctly for production code, so the lint is allowed here rather than the test weakened. Worth recording: this lint would not have caught the original defect. The real join sites pass a variable, and it only fires on a literal. |
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f83c7ed1f0 |
fix(downloads): confine download paths to the download root
file_path and target_dir reached PathBuf::join unchecked from the frontend, and mark_download_completed stored a caller-supplied path that is later fed to remove_file. A correct sanitiser already existed — download_item_and_start used it — but download_item is itself a command taking file_path raw, so the guard was simply routed around. It now lives inside download_item, alongside a join-then-confine check modelled on media_server::resolve_path. Sanitising is per path component, not whole-string: the latter would silently turn downloads/x.mp3 into downloads_x.mp3 and relocate every existing download. TRACES: | DR-211 | UT-205 |
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b313b61717 |
fix(repository): bind query parameters and encode URL values
Three consistency fixes, each one applying a pattern the same file already used a few lines away: the offline get_items type filter now binds placeholders like search at offline.rs:1786 does, build_get_items_endpoint percent-encodes its values like the Genres block below it does, and player_set_volume clamps NaN and out-of-range input at the command boundary rather than relying on each backend to do it. TRACES: | DR-212 | UT-206 |
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fb6bd5cae1 |
fix(thumbnails): confine cache writes to the cache directory
item_id and image_type reached the cache filename unsanitised while tag was already being sanitised, and Path::join neither folds .. nor keeps the base when handed an absolute path. Applies the tag's existing rule to all three parts and adds a starts_with(cache_dir) check at the point of use, modelled on media_server::resolve_path. Not exploitable as shipped — server URLs must be HTTPS (auth/mod.rs) and Android blocks cleartext, so the id would have to come from a server the user chose to trust. This makes the write path consistent with how the rest of the codebase already handles caller-supplied paths. TRACES: | DR-210 | UT-204 |
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da6b039b29 |
fix(downloads): confine download paths to the download root
Both halves of the path a download writes to arrived from the frontend
unchecked. `start_download` and the queue pump built their target as
`PathBuf::from(target_dir).join(file_path)`, and `mark_download_completed`
stored a frontend-supplied `file_path` on the row verbatim — the same
column that is later read back into `std::fs::remove_file` when a
download is deleted. A correct sanitiser already existed and
`download_item_and_start` used it, but `download_item` is a command in
its own right, so calling it directly routed the guard around.
The guard moves inside. `confine_to_root` folds `..` away lexically and
requires the result to sit inside the storage root, modelled on
`media_server::resolve_path` — the check comes after the join because
`Path::join` drops the base when the joined half is absolute, so an
absolute `file_path` is obeyed rather than folded. `confine_queued_path`
sanitises a queued path per component (so the already-safe name
`download_item_and_start` passes in is not sanitised into a second,
different one) and confines it. Applied in `download_item`, at both join
sites, and to what `mark_download_completed` writes.
Every path the app builds for itself is returned unchanged, including
the absolute ones `download_series`/`download_season` produce from
`${targetDir}/videos`, so no existing row or file on disk is orphaned.
The pump fails an offending row rather than skipping it, because the
pump re-queries and would otherwise not terminate.
Not a live vulnerability: reaching these commands with hostile input
needs script execution in a webview whose CSP is `script-src 'self'`.
This is hardening and consistency.
TRACES: DR-211 | UT-205
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080cdbf383 |
fix(player): clamp volume at the command boundary
player_set_volume passed `volume` through untouched. Each backend clamps to 0.0..=1.0 for itself, so local playback was already safe, but the remote branch reaches no backend: it converts with `(volume * 100.0) as i32`, which turns infinity into i32::MAX. NaN is handled explicitly since f32::clamp returns NaN for a NaN input and it then survives every comparison downstream. TRACES: DR-212 | UT-206 |
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6b7ce512ed |
fix(online): percent-encode query values and path ids
build_get_items_endpoint pasted ParentId, IncludeItemTypes, SortBy and SortOrder straight into the query string while the Genres parameter twenty lines below and the SearchTerm parameter both percent-encode theirs. Encode them the same way, per list element so the commas Jellyfin splits on survive. The per-call ids interpolated into request paths (item, person and playlist ids) get the same treatment; a Jellyfin GUID is unchanged by encoding, so this is consistency, not a behaviour change. self.user_id is left alone throughout, as it is at the endpoint builders already. TRACES: UR-007 | DR-212 | UT-206 |
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55b37ba2f4 |
ci: make clippy a hard gate
The advisory step existed because the tree carried a warning backlog. Measured on 1.97.1 — the pinned toolchain CI actually uses — that backlog is three warnings, not the ~51 the comment claimed: two unnecessary_sort_by in smart_cache and one redundant into_iter in offline. Fixed, so clippy now runs with -D warnings and a warning means new breakage. Worth recording why this took a toolchain pin to do safely: the same tree measured 0 warnings on 1.92.0 and 3 on 1.97.1. Flipping the flag on a local measurement, without the pin, would have reddened CI on the next push. TRACES: | DR-206 |
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d52470e0cd |
fix(offline): bind item-type filter as query parameters
get_items built its `AND i.item_type IN (…)` fragment by interpolating
each requested type into the SQL string, while `search`, `get_favorites`
and `prune_stale_catalog` in the same file bind the identical filter as
`?` placeholders. Follow the existing pattern so the listing query is
consistent with its neighbours.
The type values bind between the six parent-matching ids and the
favourites user id, matching where `{type_filter}` lands in the
statement.
TRACES: UR-065 | DR-212 | UT-206
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e12f0065a6 |
fix(thumbnails): confine cache writes to the cache directory
The thumbnail cache built its filename from `item_id`, `image_type` and `tag`, but only sanitised the tag. `Path::join` neither folds `..` nor keeps its base when handed an absolute path, so a malformed id could place a cache write outside the cache directory. Sanitise all three parts through one helper using the rule the tag already used (non-alphanumerics become `_`), so ids and types that were already safe keep producing exactly the same filename, and resolve the result against the cache dir with a lexical `..` fold plus a `starts_with` check, modelled on `media_server::resolve_path`. The database still stores the raw key and the resolved path, so the lookup in `get_cached_path` keeps matching what the caller asks for. |
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ac3cd67164 |
feat(library): exclude chosen folders from music browsing
Replaces `src/lib/utils/podcastFilter.ts` — a shipped personal workaround that dropped any item whose name, album, album artist or artist was literally "Podcasts" — with a real user setting applied in Rust. The old filter was wrong twice over: it hardcoded one user's folder layout keyed on an English literal, and it put a domain rule (what a query should return) in the presentation layer. It slipped past `check:boundary` only because it matched on names rather than on an item-type array. - `repository::exclusions` owns the rule and the process-wide id set, the same shape as `online::STREAMING_QUALITY` so it survives a repository being rebuilt on re-login. - `HybridRepository` applies it where the cache and server legs of every cache-first query converge (`parallel_race` / `race_with_refresh`), plus the bespoke `get_items` path and the server-only reads. Filtering before the "has content" check is what makes a cache page of nothing but hidden items fall through to the server. - Exclusion is by stable item id, never by name, and matches an item's own id or any container link it carries (parent, album, library, series, season, artist). - A direct `get_item` lookup and the Downloads surface are deliberately unfiltered: hiding those would break playback and file management of anything inside a hidden folder. - `LibrarySettings` persists to `app_settings` and is restored in the setup hook, alongside the streaming-quality cap. Default is an empty list — nobody inherits the old "Podcasts" behaviour. - New commands `library_get_settings`, `library_set_settings` and `library_get_exclusion_candidates`; the candidates read goes through `get_items_unfiltered` so an already-hidden folder still appears in the picker and the setting can be undone. - Settings page gains a "Hidden Folders" section that renders the backend's candidate list and sends back ticked ids; it decides nothing. TRACES: UR-076 | DR-209 | UT-203 |
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f5bee069c0 |
fix(desktop): give the window a real title and a usable default size
tauri.conf.json still carried the scaffold defaults: a lowercase "jellytau" title in an 800x600 window. The title is what the OS shows in the task switcher and window list, and 800x600 is too small for a media library grid with a mini player docked at the bottom. Now "JellyTau" at 1280x800, with minWidth/minHeight held at the old 800x600 so the layout still has a defined floor when a user drags the window small. |
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4af6ed0f98 |
build(rust): pin the toolchain to 1.97.1 for dev and CI
The Rust toolchain was unpinned on both sides, and the two sides had drifted five releases apart: the CI builder image ships rustc 1.97.1, the development machine was on 1.92.0. Clippy's lint set and rustfmt's output both change between releases, so a green `cargo clippy` / `cargo fmt --check` locally said nothing about CI and vice versa — which is the reason the clippy gate could not be trusted enough to turn on. src-tauri/rust-toolchain.toml pins channel 1.97.1 with the rustfmt and clippy components. Deliberately no `targets` list: that would make rustup fetch the Android and Windows std libraries on every plain `cargo test`, including on machines that never cross-compile. The image already has them. Dockerfile.builder installs that exact version instead of "latest stable at rebuild time", and prints rustc/clippy versions so a mismatch is visible in the build log. The pin only becomes authoritative once the image is rebuilt and pushed (scripts/build-builder-image.sh). Until then CI still runs whatever rustc the current image has, and if that is not 1.97.1 rustup will download the pinned toolchain at job time — a toolchain install in CI, which CLAUDE.md forbids. Both files carry that warning next to the version. Note: the clippy step in .gitea/workflows/build-and-test.yml is left advisory here; tightening it wants a warning count measured on 1.97.1 first. |
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61df2730bc |
chore(release): 0.8.2
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 24m47s
Publish Documentation / Build & publish docs to gitea-pages (push) Successful in 5m40s
Traceability Validation / Check Requirement Traces (push) Successful in 20s
Build & Release / Run Tests (push) Successful in 25m19s
🏗️ Build and Test JellyTau / Android Compile Check (push) Successful in 11m18s
Build & Release / Build Linux (push) Successful in 30m51s
Build & Release / Build Windows (push) Successful in 14m55s
Build & Release / Build Android (push) Successful in 32m54s
Build & Release / Create Release (push) Successful in 20s
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c18d79c656 |
fix(android): stop background audio rewinding to where it started
A video handed off to background audio (UR-040) streams a live mp3 transcode
over plain HTTP. That response is chunked, so there is no Content-Length, and a
live encode carries no Xing header, so the extractor establishes no duration —
on device every position tick reads "<position> / 0.0".
ProgressiveMediaPeriod.configureRetry resumes a failed load in place only when
the content length is known or the seek map has a duration. With neither it
assumes the source is live, sets pendingDeferredRetry, and when the sample
queues next run dry resets them and re-requests the URL from offset 0. Our URL
carries StartTimeTicks = the handoff point, so "offset 0" is where audio-only
mode began: a transient load error armed a retry that fired minutes later, when
the buffer finally drained, and playback resumed at the handoff point and ran
on from there. A successful retry raises no error and ends nothing, so neither
arm of DR-129 was consulted and no discontinuity handler existed — the only
trace was a position that went backwards, which is why it read as random, and
why the two earlier fixes for the same symptom (DR-129's phantom end, DR-159's
relative-timeline leak) left it standing.
A retry that can only restart the stream is worth less than no retry at all.
player_retry_restarts_stream marks a Remote audio-only video item,
loadWithMetadata carries the answer to Kotlin, and the pure StreamRetryDecision
holds it for a DefaultLoadErrorHandlingPolicy that returns C.TIME_UNSET —
making onLoadError answer DONT_RETRY_FATAL before it reaches configureRetry.
The rewind becomes a recoverable error, which recoverable_error_resume already
answers by re-opening at the position playback reached, StartTimeTicks
rewritten so the selected audio track survives. Every other source keeps the
player's retry: a static file and an HLS playlist declare their timeline and
are resumed where the load stopped. onPositionDiscontinuity is added for its
log line alone, loud for DISCONTINUITY_REASON_INTERNAL, which is the rewind's
own signature.
Verified on device (FP5), same procedure both runs — handoff, 60s to fill the
buffer, a 45s radio outage:
before 13:54:52 BUFFERING, then "Media ready! Duration: -9.22e15"
(C.TIME_UNSET) and position 1165.4s -> 840.349s, exactly the handoff
base, 3.5 minutes after the outage with nothing logged between
after 14:05:08 "declining the player's retry", playback undisturbed off the
buffer for 69s (a fatal load error is only raised when the renderer
next needs data), then ERROR_CODE_IO_NETWORK_CONNECTION_FAILED ->
re-opening at 785.6s -> READY, and no rewind in the following 7 min
Kotlin tests run with ./gradlew :app:testUniversalDebugUnitTest.
TRACES: UR-040, UR-004 | DR-203 | UT-200
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73dd0ef68b |
chore(release): 0.8.1
Publish Documentation / Build & publish docs to gitea-pages (push) Canceled after 0s
🏗️ Build and Test JellyTau / Run Tests (push) Failing after 17m3s
🏗️ Build and Test JellyTau / Android Compile Check (push) Skipped
Traceability Validation / Check Requirement Traces (push) Successful in 23s
Build & Release / Run Tests (push) Failing after 16m26s
Build & Release / Build Linux (push) Skipped
Build & Release / Build Windows (push) Skipped
Build & Release / Build Android (push) Skipped
Build & Release / Create Release (push) Skipped
Patch: one Android fix — the display no longer sleeps mid-video. |
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caebf2d139 |
fix(android): keep the display awake while video plays
Android counts its display timeout from the last user input, and watching
something is exactly the case where there is none — so the screen dimmed and
slept mid-playback unless the user kept tapping it.
Nothing held it. FLAG_KEEP_SCREEN_ON appeared nowhere in the app, and neither
renderer supplies a hold for free: ExoPlayer's setWakeMode is a CPU/wifi wake
lock that says nothing about the display, and it draws into the TextureView we
own (DR-192) rather than media3's PlayerView, which is the widget that would
otherwise set keepScreenOn itself; the webview <video> path is no better,
because the display wake lock Chrome takes for video lives in the browser layer
and not in an embedded WebView.
ScreenWakeManager toggles FLAG_KEEP_SCREEN_ON on the Activity window — window
scoped, so it stops applying the moment the app is not visible and cannot
outlive a crash the way an acquired PowerManager.WakeLock can, and it needs no
permission. The two rendering paths are independent holders OR-ed in the pure
ScreenWakeState: the native path follows onIsPlayingChanged plus surface
teardown, so the hold tracks what ExoPlayer reports rather than what the UI
intends, and the webview path reuses the setHtml5VideoState report the frontend
already sends for PiP. Audio is deliberately not a holder — screen-off music is
the point of that path.
Also the repo's first Kotlin JVM unit tests: ScreenWakeState is framework-free,
so the decision is testable off-device with
./gradlew :app:testUniversalDebugUnitTest
(note the variant — plain testDebugUnitTest is ambiguous here). sync-android
-sources.sh mirrors src/test into the gen tree alongside the main sources.
TRACES: UR-003, UR-004 | DR-202 | UT-199
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2c52077b1d |
chore(release): 0.8.0
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 25m14s
Publish Documentation / Build & publish docs to gitea-pages (push) Successful in 5m47s
Traceability Validation / Check Requirement Traces (push) Successful in 36s
Build & Release / Run Tests (push) Successful in 26m3s
🏗️ Build and Test JellyTau / Android Compile Check (push) Successful in 11m2s
Build & Release / Build Linux (push) Successful in 32m23s
Build & Release / Build Windows (push) Successful in 14m59s
Build & Release / Build Android (push) Successful in 31m22s
Build & Release / Create Release (push) Successful in 31s
Minor rather than patch: three user-visible behaviour changes — cloud/D2D backup disabled, the Android TV launcher entry withdrawn, and lockscreen skip scrubbing rather than advancing during background audio. |
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6dfc6b259a |
fix(player): lockscreen skip scrubs instead of advancing in background audio
onSkipToNext/onSkipToPrevious forwarded a bare next/previous to Rust, which always advanced the queue. Correct for music, wrong for a video whose audio is running through a background-audio handoff (UR-040): pressing skip to re-hear a line jumped to the next episode instead of scrubbing. resolve_skip_action in player/seek.rs maps the command to Advance or SeekTo, and is_background_audio_active() is the whole test — the handoff exists only for video, and an episode played through it reports MediaType::Audio, so media type cannot distinguish the case. Forward 30s, back 10s, both clamped to [0, duration] so a skip near either end cannot seek negative or read as EOF and advance. Routed through the same spawn-then-seek_absolute path as the scrubber, because a handoff seek re-opens the stream and must not run under the blocking lock (DR-159). Kotlin keeps sending the opaque command; it only gains FAST_FORWARD/ REWIND in the PlaybackStateCompat so the system stops drawing skip arrows for a control that scrubs. The remote-volume action block is deliberately untouched: the handoff never applies to cast sessions, where skip really does mean advance. Tests written first and watched fail (left: Advance, right: SeekTo). 706 Rust tests pass, clippy 0, coverage 90%. |
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889289286b |
merge: clear the clippy backlog and unify lock helpers (D1-warnings, D3)
51 clippy warnings -> 0, with 8 justified #[allow]s (IPC arity, specta wire types, and the 9 test-only await-holding-lock sites). 27 raw lock calls moved to the poison-tolerant helpers - all of them test code; production was already clean. Caught a non-neutral clippy --fix: removing the redundant 'use hostname;' in credentials.rs orphaned its #[cfg(target_os = "linux")] onto SERVICE_NAME, which would have cfg'd the constant out of every non-Linux build. Compiles clean on Linux, so only Windows/macOS CI would have caught it. |
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8500da1a42 |
chore(rust): clear the clippy backlog and finish the poison-tolerant lock sweep
`cargo clippy --all-targets` went from 51 warnings (23 in the lib) to zero. Most were mechanical — needless borrows, `assert_eq!` against a bool literal, `vec!` where an array does, `or_insert_with(Vec::new)`, a loop index used only to index — and were applied with `clippy --fix`, then reviewed line by line. That review caught one auto-fix that was *not* semantically neutral: dropping the redundant `use hostname;` left its `#[cfg(target_os = "linux")]` orphaned directly above `SERVICE_NAME`, which would have silently cfg'd the constant out of every non-Linux build. Removed the stray attribute with the import. Where a lint asked for a risky change rather than a better one, it is suppressed with a comment saying why: - `too_many_arguments` on five `#[tauri::command]` handlers and `ThumbnailCache::save_thumbnail` — most of the arity is `State<'_, _>` injection, and a parameter struct would change the IPC contract and the generated TypeScript for no readability gain. - `large_enum_variant` on `PlayerStatusEvent` and `AutoplayDecision` — both are serde + specta wire types emitted a handful of times a second, never bulk allocated; boxing would have to stay invisible to the generated bindings while every match arm gained a deref. - `await_holding_lock` on the `hybrid`/`offline` test modules — the guard is a test-only serialisation lock for the process-global `INCLUDE_CATALOG_BROWSE` flag, and the await it spans *is* the critical section. Each `#[tokio::test]` gets its own single-threaded runtime, so this is not the production deadlock class the lint targets; restructuring would reintroduce the flag race. Real fixes elsewhere: `JellyfinItem::to_media_item` takes `self` by value, so it is now `into_media_item`; the five-tuple episode row in the download commands has a named `EpisodeRow` alias; the mpv `PropertyChange` arm matches `name: "pause"` instead of guarding on it. Also converted the last 27 raw `.lock().unwrap()` call sites to `lock_safe()`, completing the `MutexSafe`/`RwLockSafe` convention. All of them turned out to be in test modules — production code was already clean — so this is consistency rather than a fix. The two raw locks in `utils/lock.rs` stay raw on purpose: those tests deliberately poison a mutex to prove the helpers recover from it. Pure refactoring: all 698 tests still pass. |
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88e15e3e12 |
merge: Android runtime security (B1, B3)
Correct the POST_NOTIFICATIONS mechanism: the lockscreen notification is exempt because of the MediaSession token, not because it belongs to a foreground service — FGS notifications are explicitly NOT exempt. So no permission prompt and no checkSelfPermission gate; instead both notification builders bind the token once and log loudly if it is ever null, turning a silent failure into a logcat line. Stop the webview undoing the network security config: mixedContentMode COMPATIBILITY, allowFileAccess/allowContentAccess false. Conflict resolution: this branch's DR-198 collided with the Tauri branch's, so it was renumbered DR-200 (3 TRACES in JellyTauPlaybackService.kt and the UR-006 matrix row updated). DR-199 was uncontested. Pinned counts summed to DR 191 / total 334; UR-071 takes both DR-198 and DR-199. |
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c9f33ae6a4 |
merge: restrictive CSP and narrowed asset scope (C1, C2)
Set a CSP with script-src 'self' (Tauri nonces the one inline bootstrap script), object-src/frame-src 'none', and necessarily-permissive img/media/connect for the user-supplied Jellyfin origin. Narrow assetProtocol $APPDATA/** -> thumbnails/**, which is convertFileSrc's only remaining caller. Conflict resolution: scripts/extract-traces.test.ts pinned counts summed rather than side-picked — DR-189 and DR-198 were added independently on two branches, so DR 187 -> 189 and total 330 -> 332. docs/traceability.md regenerated. |
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a93cee9241 |
merge: stop backing up credentials no key can ever open (B2, B4, B5)
allowBackup=false plus data_extraction_rules covering device-transfer, not just cloud-backup; treat an undecryptable credential blob as a logout rather than a hard error; drop the half-declared leanback/TV entries; jvmTarget 1.8 -> 17. |
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2d21f092d5 |
fix(android): stop the webview undoing the network security config
MainActivity set mixedContentMode = MIXED_CONTENT_ALWAYS_ALLOW together with allowFileAccess/allowContentAccess = true, which is a blanket cleartext opt-in reached by hand — the exact thing network_security_config.xml exists to prevent and its own comment warns against. Nothing needed any of the three: - file:// is never loaded. Cached thumbnails go through convertFileSrc, which on Android resolves to http://asset.localhost/... and is answered by wry's request interceptor rather than the filesystem; downloaded media goes over the loopback HTTP server (DR-137), which exists precisely because the asset/file route cannot stream a large file. - content:// is never loaded. The manifest's FileProvider is for outbound share intents, not webview navigation. - Mixed content never arises. Tauri serves the UI from http://tauri.localhost (use_https_scheme defaults false and is not set), and both 127.0.0.1 and asset.localhost are loopback/.localhost origins Chromium treats as potentially trustworthy. A plain-HTTP remote server would be mixed content, but the network security config already rejects it first — so ALWAYS_ALLOW bought nothing. COMPATIBILITY_MODE rather than NEVER_ALLOW is a deliberate hedge: the platform default at targetSdk 21+ is NEVER_ALLOW, so this is still one step looser, and it keeps passive content working if the analysis missed a path. The two files now cross-reference each other so the pair cannot drift apart again. Also records why POST_NOTIFICATIONS is declared but never requested. An audit read the missing runtime request as a threat to the lockscreen controls; it is not. A foreground-service notification is explicitly NOT exempt, but a media-session one is, and the platform predicate (Notification.isMediaNotification) requires MediaStyle AND a non-null session token. Confirmed on device: appops POST_NOTIFICATION: ignore with the transport notification live. So no permission prompt is added and startForeground stays ungated — a guard there would trade a cosmetic problem for the "did not then call Service.startForeground()" kill. What is added is the guard matching the real precondition: both builders bind the token once and log an error if it is ever null, since SystemUI's media carousel is gated on the same predicate and a token-less notification loses the lockscreen controls entirely, silently. TRACES: UR-006, UR-071 | DR-198, DR-199 |
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ebf9a99b80 |
docs(traces): tag the twelve "Done but untraced" requirements, and stop the matrix over-reporting
Twelve requirements were marked Done in docs/requirements.md with zero TRACES anywhere in the tree. The features work — the tags were simply never written — so the matrix over-reported on exactly the requirements a reviewer would most want to verify. Each is now tagged at the code that actually implements it: - JA-006 / JA-009 / JA-013 / JA-014 / JA-015 / JA-018 and IR-022 / IR-024 at their Jellyfin call sites in repository/online.rs (search, get_item's MediaStreams/People fields, Items/Resume, Shows/NextUp, FavoriteItems DELETE, get_person/get_items_by_person), plus the commands that expose them. - UR-006 / IR-006 across the lockscreen spine: JellyTauPlaybackService (the MediaSessionCompat owner), the nativeOnMediaCommand JNI intake, and LockscreenMetadata / update_lockscreen_metadata. - IR-008 at both audio-focus mechanisms — ExoPlayer-managed for audio, the manual AudioFocusRequest listener for video — and at the media-type string that chooses between them. - UR-037 (with DR-042, also untraced) on the video-library poster grid: LibraryGrid, MediaCard, and the tv/movies routes. Resolve contradictory statuses across layers, evidence first: - IR-018/IR-019 were Planned under Done URs because they were scoped to libmpv. MpvBackend is the audio-only backend and overrides neither set_subtitle_track nor set_audio_track — the trait's not_implemented() default still stands — so UR-020/UR-021 are met by ExoPlayer and by the HTML5 <video> path instead. Both IRs are re-scoped to those backends and marked Done; IT-008/IT-009 and the stale @req-planned markers in backend.rs follow. - IR-005 (MPRIS) stays Planned: there is no MPRIS/D-Bus code or dependency in the project and update_lockscreen_metadata is a no-op off Android. UR-006 is corrected to Done (Android) rather than the IR being marked Done. - A note under the IR table records where a UR is met by a different mechanism than its IR anticipated. Define the two dangling IDs the source already referenced: DR-189 (the control bar never auto-hid on a touchscreen, because its timer was armed only from onmousemove) and UT-188 (its rule test). The live-denominator assertion in extract-traces.test.ts moves 187/330 to 188/331 accordingly. Traced requirements 444 to 459; IR coverage 19/32 to 25/32. |
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38dd1129e5 |
feat(security): set a restrictive CSP and scope the asset protocol to thumbnails
`app.security.csp` was `null`, so the webview ran with no Content-Security-Policy
at all: any script that reached the web layer would have inherited the whole IPC
surface. There is no known injection path today (one app-owned `{@html}`, no
`innerHTML`/`eval`), so this is defence in depth rather than a fix for an open
hole.
`script-src 'self'` is the restrictive half — Tauri nonces SvelteKit's inline
bootstrap script at build time, so no `'unsafe-inline'` is needed — together with
`object-src`/`frame-src 'none'` and `base-uri 'self'`. `img-src`/`media-src`/
`connect-src` cannot be restrictive: the Jellyfin origin is typed in by the user
at run time and is routinely plain http on a LAN, so they allow `http:`/`https:`.
That is a wide grant for data, but it still bars `file:`/`filesystem:` and does
not touch script execution. A run-time policy naming the server exactly was
rejected: Tauri derives the header from immutable config when it serves the HTML,
so it would mean rebuilding config and reloading the webview on every server
change. `style-src` keeps `'unsafe-inline'` because Svelte compiles `style="…"`
attributes into markup; `worker-src`/`media-src` keep `blob:` for hls.js's
demuxer worker and its MSE object URL; `ipc:`/`http://ipc.localhost` keeps
`invoke` working. `devCsp` mirrors it with the eval/inline/websocket allowances
Vite's dev server needs.
The asset-protocol scope narrows from `$APPDATA/**` — the storage root holding
the SQLite database and the encrypted-token fallback file — to
`$APPDATA/thumbnails/**`. Since DR-137 moved downloaded media to the loopback
media server, `imageCache` is the only `convertFileSrc` caller left.
Needs manual verification on both platforms: thumbnails, online HLS video and
offline downloaded video cannot be exercised headlessly.
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4c9361d020 |
fix(android): stop backing up credentials no key can ever open
The app's data dir was eligible for Google cloud backup: the manifest set neither allowBackup nor any extraction rules, so the SQLite catalogue (library metadata, watch history) and the jellytau_secure_prefs credential blob were shipped to the user's Google account. Restoring that is worse than not having it — SecureStorage encrypts under an Android Keystore key, and Keystore keys are never backed up, so a restored install gets ciphertext with nothing to open it and fails auth silently while looking signed in. Backup and device-to-device transfer are both turned off. allowBackup ="false" covers API 24-30 outright and kills cloud backup on 31+; it does NOT stop D2D there, so @xml/data_extraction_rules excludes every domain from both channels. Nothing is lost: the catalogue is a rebuildable mirror of the Jellyfin server, and watch state lives on the server. The credential-load path degrades instead of erroring, because a device can still arrive at undecryptable ciphertext (an older install's backup, a Keystore key invalidated by a lockscreen change). Both backends now distinguish "nothing stored" from "stored but unreadable" and answer the second as the first: CredentialStore::load_credentials_file logs and returns an empty map rather than CredentialError::Encryption — which storage_get_access_token was turning into a hard Err and storage_get_active_session into a warning — and SecureStorage.getCredential discards the dead blob so it cannot fail every subsequent read. The result is a login screen rather than a broken session, and the next successful sign-in rewrites the store. Also removes the half-declared Android TV support: the manifest offered LEANBACK_LAUNCHER and the leanback uses-feature with no D-pad focus model, no TV layouts, and neither of the two declarations Play's TV validation also requires (touchscreen required="false", android:banner). That fails review while advertising the app to TV launchers. All four go back together when a focus pass is actually done. And raises jvmTarget from 1.8 to 17 under compileSdk 36, with matching compileOptions — AGP 8.11 already requires a JDK 17 toolchain, so 1.8 was only capping emitted bytecode. Nothing else in the build assumed 1.8. TRACES: UR-012 | IR-014 |
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73641e192c |
chore(release): 0.7.0
Publish Documentation / Build & publish docs to gitea-pages (push) Canceled after 0s
🏗️ Build and Test JellyTau / Run Tests (push) Successful in 21m50s
Traceability Validation / Check Requirement Traces (push) Successful in 44s
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Build & Release / Run Tests (push) Successful in 18m46s
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Version bumped across package.json, tauri.conf.json and Cargo.toml (+ lock), CHANGELOG entry written from the five commits in the range rather than from the trace extractor's output — VideoPlayer.svelte alone carries dozens of TRACES, so the generated draft named most of the app's requirements for a five-commit release. DR-188 is retargeted: it recorded the native-video default as waiting on the background-audio handoff, which is now fixed (DR-196), so it records the completed flip and the evidence for it instead. Minor, not patch: the rendering path changes underneath every Android user. |
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be907b4945 |
fix(home): stop Next Up repeating Continue Watching
Jellyfin's /Shows/NextUp defaults EnableResumable=true, which returns a
partially-watched episode as its own series' next up — precisely the
episode /Items/Resume already returns. Home's "Next Episode" row and the
TV landing's Next Up row therefore duplicated Continue Watching card for
card.
build_next_up_endpoint now sends EnableResumable=false, and because
servers predating that parameter ignore it, filterInProgressNextUpItems
also drops any next-up entry whose id appears in the resume list. It is
the mirror of DR-089 and sits beside it: presentation-layer de-duplication
over two lists the frontend already holds. The resume filter still reads
its frontier from the unfiltered Next Up list, so pruning in-progress
entries cannot resurrect a stale resume card.
The code changes were swept into
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5e8efa252e |
fix(player): restart the native renderer when returning from background audio
With native video on, coming back from background audio left a black screen: a play overlay pinned at 0:00, a seek bar at zero, and a play button that did nothing. Nothing crashed — the process stayed up and the frontend kept logging — the transition was simply dropped. The two render paths resume by different means, and exitBackgroundAudioHandoff only ever performed one of them. The webview <video> reloads off its stream URL: an $effect watches it, reinitialises HLS or sets element.src, and canplay drives the seek and play. ExoPlayer owns no element and nothing watches the URL on its behalf — native playback is only ever started by an explicit player_play_item plus adapter load, which the component issues once, from onMount. So reassigning the URL restarted precisely nothing, and since player_exit_background_audio had already stopped the handoff's audio player, the backend came back holding no item at all. That is why the play button was inert: there was nothing loaded to play. The return now re-issues that pair on the native path, in the same order as the initial load, carrying the position the audio reached. Subtitle configurations are reused from the ones resolved at mount — ExoPlayer sideloads them as MediaItem.SubtitleConfigurations and cannot accept one after prepare(). Which path to take is decided by planHandoffReturn, a pure helper in backgroundAudioHandoff.ts, so the branch is unit-testable without mounting the player. It also folds in shouldResumeOnForeground, so a pause taken on the lockscreen during the handoff still wins over the snapshot captured on the way out. Verified on device (HONOR ROD2-W09, Android 16): handoff to audio-only at 69:54, return restored native video playing at 70:18. Previously the same sequence left the player idle and black. The requirements count pin in extract-traces.test.ts moves with the new DR-196. |
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1285908733 |
fix(android): paint the letterbox bars, so stale pixels stop surviving in them
Native video left debris in the padding around the video: the "previous frame" flash on rotation, a ghost copy of the control bar stranded in the top bar, each new clock digit drawn over the one before it (35:42 with the 1 still showing through the 2), and the sleep/quality menus leaving their imprint after closing. One cause under all of it — nothing painted those bars. The window surface is opaque; the theme is not translucent and dumpsys window shows no translucency flag. For an opaque surface HWUI deliberately does NOT clear the damaged region before replaying a frame: it assumes the view hierarchy covers every pixel it owns. Here that hierarchy is window background → video TextureView → transparent WebView, and fitSurfaceToScreen sizes the TextureView to the letterboxed video rect. So the bars were the window background's alone to paint, and setTransparent(true) cleared it to TRANSPARENT — leaving them painted by nobody, with whatever was last in the framebuffer surviving there. The window background now stays opaque black while compositing. It cannot hide the video: the TextureView is drawn on top of it, and the WebView's own background is what lets the picture through. Three previous attempts missed because they aimed at the window's rotation animation and at TextureView frame-retention — two postOnAnimation hops, an onSurfaceTextureUpdated reveal, then ROTATION_ANIMATION_JUMPCUT with FLAG_FULLSCREEN to make it stick. The pixels were never the animation's, which is also why the artefact reproduces standing still, with no rotation involved. Those are removed. The alpha-hiding among them actively made things worse: it blanked the one view that reliably paints its own rect. FLAG_FULLSCREEN goes too — it fought edge-to-edge insets for no gain. Verified on device (HONOR ROD2-W09, Android 16): reproduced with native video on — ghost control bar in the top bar, doubled clock digit — then absent after the fix across playback, the control bar and a rotation round-trip. DR-194 is rewritten to record the real mechanism and marked Done. |
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440d7a01a9 |
chore(release): 0.6.0
🏗️ Build and Test JellyTau / Run Tests (push) Failing after 6m2s
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Publish Documentation / Build & publish docs to gitea-pages (push) Canceled after 32s
Traceability Validation / Check Requirement Traces (push) Successful in 13s
Build & Release / Run Tests (push) Failing after 6m7s
Build & Release / Build Linux (push) Skipped
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Android native video renders a picture, and its transport works. The path shipped once as audio with no picture and was reverted with the compositing named as the suspect. It was not the compositing: five independent defects sat between ExoPlayer and the screen, each able to produce that symptom on its own — the app shell painting over the surface through a CSS rule aimed at an attribute nothing set, a poster card with no way to lift on a path that renders no <video>, JS bridges racing the page load and losing permanently, a SurfaceView that was never detached, and a frontend that told Rust a webview element was playing when none existed, so every play/pause intent was aimed at something that was not there. Native video stays opt-in. Turning it on surfaced a further unverified path — the background-audio return is written only for the webview element — and rotation still needs device confirmation. Minor rather than patch: the player's touch behaviour changes for everyone (the control bar now auto-hides on touchscreens, and the system bars go away with the player), not only for those who opt into native video. |
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dccb5f53dd |
fix(android): stop the rotation cross-fade replaying the old video frame
Rotating with native video on shows the previous frame flashing in what become
the letterbox bars. It reads as a TextureView artefact — the view retains its
last frame, so between the rotation and fitSurfaceToScreen() landing that frame
sits at the old size — and two fixes were built on that reading:
1. reveal after two postOnAnimation hops. An animation frame is not a video
frame; at 24fps the next decoded frame can be several vsyncs away.
2. reveal on onSurfaceTextureUpdated, i.e. when a real frame lands. This meant
owning the SurfaceTextureListener and handing ExoPlayer the Surface directly
instead of via setVideoTextureView, which installs its own and leaves us
blind to frame arrival.
Neither stopped the flash. The mechanism is the WINDOW's rotation animation:
Android cross-fades a screenshot of the old orientation, that screenshot holds
the old video frame at the old size, and nothing at the TextureView level can
reach it. The app cannot pre-empt the screenshot either — onConfigurationChanged
fires after it is taken.
So the animation itself has to go: ROTATION_ANIMATION_JUMPCUT. That was accepted
and silently ignored, and the platform said why out loud —
"VRI[MainActivity]: setLayoutParams: not fullscreen" — because the attribute is
honoured only for a fullscreen window. FLAG_FULLSCREEN is therefore set with it,
scoped to while native compositing is active so the rest of the app keeps its
normal animation. After the change that complaint is gone from logcat.
The frame-arrival reveal is kept: it replaces a fixed-timeout guess with a real
signal, and its timeout is required rather than defensive — a resize while paused
means no new frame is ever coming, and revealing a stale frame beats a
permanently black player.
NOT CONFIRMED FIXED on device. The forced-rotation harness
(settings put system user_rotation) proved unreliable here, and screenrecord
fixes its canvas at start, so a rotation inside a recording never changes frame
dimensions — which defeated two separate attempts to measure this. DR-194 is
recorded as "Needs device verification" rather than Done.
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c142568230 |
fix(player): make transport reach the player that is actually rendering
Play/pause did nothing on the Android native video path — from the on-screen tap, from the control bar, and from a direct player_toggle invocation — while seek and skip kept working. That asymmetry was the whole clue: seek decides in player_seek_video, transport decides in toggle_playback. DR-195 is the cause. `html5_playing` is Rust's record of "a webview <video> is active and in this state", and toggle_playback/play/pause all route transport to that element whenever it is set. The player route mirrored element state into it UNCONDITIONALLY — from handleReportStart and, fatally, from handleReportProgress, which VideoPlayer calls on a 10-second interval. So on the native path the frontend re-declared every ten seconds that an element was playing when none existed, and every transport intent was emitted into the void. It also explains the flashing: the control bar and the JRay overlay both key off isPlaying, which was being contradicted on every tick. The mirror now lives in mirrorElementStateToRust() in VideoPlayer, gated on useHtml5Element — the only place that knows whether an element renders at all. The route cannot tell the paths apart, which is exactly how it came to lie. DR-193 hands transport authority back to the native backend when an item loads into it. Necessary but insufficient alone: the progress interval put the flag straight back, which is why the first device test after it still failed. DR-192 presents native video through a TextureView instead of a SurfaceView. A SurfaceView renders on its own layer outside the app window and punches a transparent region through it, and everything drawn above that hole — here, the entire Svelte UI — depends on that composition path. The overlay dropped its incremental damage: the DOM advanced (slider 476 -> 479 across three seconds) behind a screen showing neither, so the progress bar froze, controls would not fade and rotation lost the transport UI, while structural DOM changes got through, which is why the play overlay always appeared to work. It supersedes DR-191, which forced redraws in a loop and treated the symptom. DR-194 hides the video view across a resize and reveals it two frames later. A TextureView retains its last frame, so between a rotation and the re-fit landing that frame is stretched across the old rect and the previous frame flashes in what should be the letterbox bars. Verified on device (Honor ROD2-W09, Android 16) by driving ADB and reading the live DOM over the devtools socket: surface tap pauses (position frozen across 12 seconds, overlay raised, transport flipped) and resumes; the control bar does both. UT-189 drives the real 10-second interval under fake timers — an earlier version asserted on a freshly mounted player, passed with the guard deleted, and guarded nothing. Still open, and deliberately not claimed: DR-192's effect on the overlay repaint is unverified on device, DR-194's letterbox reset is untested, and the native default (DR-188) stays off pending DR-190, the background-audio return. |