Updated readme

This commit is contained in:
Ultradesu
2026-07-26 02:41:08 +03:00
parent c069ed9135
commit 9aefaa364e
8 changed files with 2173 additions and 1 deletions
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use super::*;
use crate::library::models::{ArtistCard, ArtistDetail, TrackItem};
fn with_artists(n: usize) -> AppState {
let mut state = AppState::default();
state.global.artists = (0..n)
.map(|i| ArtistCard {
id: i as i64,
name: format!("artist {i}"),
image_path: None,
release_count: 1,
track_count: 2,
availability: crate::library::models::Availability::Local,
})
.collect();
state
}
fn test_track(id: i64) -> TrackItem {
TrackItem {
id,
title: format!("t{id}"),
track_number: None,
disc_number: None,
duration_seconds: 1.0,
artists: vec![],
featured_artists: vec![],
release_id: 1,
release_title: "r".into(),
release_year: None,
cover_path: None,
file_path: format!("/s/{id}"),
content_id: Some(format!("b3:{id:064x}")),
audio_format: None,
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: None,
play_count: 0,
fed: None,
}
}
#[test]
fn quit_needs_double_press() {
let mut state = AppState::default();
update(&mut state, Action::Quit);
assert!(!state.should_quit);
assert_eq!(state.status_message.as_deref(), Some(QUIT_CONFIRM_HINT));
update(&mut state, Action::Quit);
assert!(state.should_quit);
}
#[test]
fn other_action_disarms_quit() {
let mut state = AppState::default();
update(&mut state, Action::Quit);
update(&mut state, Action::NextTab);
update(&mut state, Action::Quit);
assert!(!state.should_quit);
}
#[test]
fn expired_quit_confirmation_rearms() {
let mut state = AppState::default();
update(&mut state, Action::Quit);
state.quit_armed_until = Some(Instant::now() - Duration::from_secs(1));
update(&mut state, Action::Quit);
assert!(!state.should_quit);
assert_eq!(state.status_message.as_deref(), Some(QUIT_CONFIRM_HINT));
}
#[test]
fn tab_cycling_wraps() {
let mut state = AppState::default();
update(&mut state, Action::PrevTab);
assert_eq!(state.active_tab, Tab::Logs);
update(&mut state, Action::NextTab);
assert_eq!(state.active_tab, Tab::Global);
}
#[test]
fn volume_clamps() {
let mut state = AppState::default();
for _ in 0..30 {
update(&mut state, Action::VolumeUp);
}
assert_eq!(state.player.volume, 100);
for _ in 0..30 {
update(&mut state, Action::VolumeDown);
}
assert_eq!(state.player.volume, 0);
}
#[test]
fn library_filters_popup_opens_on_library_screens() {
let mut state = AppState::default();
update(&mut state, Action::OpenLibraryFilters);
assert!(matches!(
state.popup,
Some(crate::app::state::Popup::LibraryFilters { .. })
));
state.popup = None;
state.global.stack.push(GlobalView::Search { cursor: 0 });
update(&mut state, Action::OpenLibraryFilters);
assert!(matches!(
state.popup,
Some(crate::app::state::Popup::LibraryFilters { .. })
));
state.popup = None;
state.active_tab = Tab::Queue;
update(&mut state, Action::OpenLibraryFilters);
assert!(state.popup.is_none());
}
#[test]
fn back_closes_help_first() {
let mut state = AppState::default();
update(&mut state, Action::ToggleHelp);
assert!(state.help_visible);
update(&mut state, Action::Back);
assert!(!state.help_visible);
}
#[test]
fn grid_movement_clamps_and_wraps_rows() {
let mut state = with_artists(10);
let cols = grid_columns();
update(&mut state, Action::MoveDown);
assert_eq!(state.global.selected, cols.min(9));
update(&mut state, Action::MoveUp);
assert_eq!(state.global.selected, 0);
update(&mut state, Action::MoveLeft);
assert_eq!(state.global.selected, 0);
update(&mut state, Action::MoveRight);
assert_eq!(state.global.selected, 1);
}
#[test]
fn table_mode_moves_one_row() {
let mut state = with_artists(10);
state.global.view = ViewMode::Table;
update(&mut state, Action::MoveDown);
assert_eq!(state.global.selected, 1);
// Left/right are meaningless in the table.
update(&mut state, Action::MoveRight);
assert_eq!(state.global.selected, 1);
}
#[test]
fn page_down_moves_a_page_and_clamps() {
let mut state = with_artists(200);
let cols = grid_columns() as isize;
let expected = (page_step(&state) * cols).min(199) as usize;
update(&mut state, Action::PageDown);
assert_eq!(state.global.selected, expected);
update(&mut state, Action::PageUp);
assert_eq!(state.global.selected, 0);
state.global.view = ViewMode::Table;
update(&mut state, Action::PageDown);
assert_eq!(state.global.selected, page_step(&state).min(199) as usize);
}
#[test]
fn jump_first_last() {
let mut state = with_artists(10);
update(&mut state, Action::SelectLast);
assert_eq!(state.global.selected, 9);
update(&mut state, Action::SelectFirst);
assert_eq!(state.global.selected, 0);
}
#[test]
fn artist_tiles_move_by_visual_rows_across_groups() {
use crate::library::models::{ArtistDetail, ReleaseCard};
let release = |id: i64, kind: &str| ReleaseCard {
id,
title: format!("r{id}"),
release_type: kind.to_string(),
year: None,
cover_path: None,
track_count: 1,
availability: crate::library::models::Availability::Local,
};
let columns = grid_columns();
// The terminal size can be visible to tests. Build enough albums to
// force a short second album row for whichever width this run has.
let detail = ArtistDetail {
id: 1,
name: "a".into(),
image_path: None,
total_track_count: 0,
total_play_count: 0,
top_tracks: vec![],
featured_tracks: vec![],
releases: (0..=columns)
.map(|index| release(10 + index as i64, "album"))
.chain((0..2).map(|index| release(100 + index, "compilation")))
.collect(),
};
let mut state = AppState::default();
state.artist_views.insert(1, Loadable::Ready(detail));
state.global.stack.push(GlobalView::Artist {
id: 1,
cursor: columns + 1,
});
// Up from the first compilation lands on the album row directly
// above, not one flat grid-width jump back.
update(&mut state, Action::MoveUp);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Artist {
id: 1,
cursor: columns
})
);
// And back down returns to the compilation row, same column.
update(&mut state, Action::MoveDown);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Artist {
id: 1,
cursor: columns + 1
})
);
// Up from the second compilation clamps to the single tile above.
state.global.stack.pop();
state.global.stack.push(GlobalView::Artist {
id: 1,
cursor: columns + 2,
});
update(&mut state, Action::MoveUp);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Artist {
id: 1,
cursor: columns
})
);
}
#[test]
fn select_opens_artist_and_back_returns() {
let mut state = with_artists(3);
state.global.selected = 2;
update(&mut state, Action::Select);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Artist { id: 2, cursor: 0 })
);
update(&mut state, Action::Back);
assert!(state.global.stack.is_empty());
assert_eq!(state.global.selected, 2);
}
#[test]
fn back_from_search_resets_search_state() {
let mut state = AppState::default();
state.global.stack.push(GlobalView::Search { cursor: 0 });
state.search.query = "abc".to_string();
update(&mut state, Action::Back);
assert!(state.global.stack.is_empty());
assert!(state.search.query.is_empty());
}
#[test]
fn queue_advances_and_respects_repeat() {
use crate::app::state::RepeatMode;
use crate::library::models::TrackItem;
let track = |id: i64| TrackItem {
id,
title: format!("t{id}"),
track_number: None,
disc_number: None,
duration_seconds: 1.0,
artists: vec![],
featured_artists: vec![],
release_id: 1,
release_title: "r".into(),
release_year: None,
cover_path: None,
file_path: format!("/api/player/stream/{id}"),
content_id: None,
audio_format: None,
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: None,
play_count: 0,
fed: None,
};
let mut state = AppState::default();
state.player.queue = vec![track(1), track(2)];
state.player.playing = true;
// Track 1 finishes → play track 2.
assert_eq!(advance_after_finish(&mut state), Some(Effect::PlayCurrent));
assert_eq!(state.player.queue_pos, 1);
// Last track, repeat off → stop.
assert_eq!(advance_after_finish(&mut state), Some(Effect::StopPlayback));
assert!(!state.player.playing);
// Repeat all wraps to the start.
state.player.playing = true;
state.player.repeat = RepeatMode::All;
assert_eq!(advance_after_finish(&mut state), Some(Effect::PlayCurrent));
assert_eq!(state.player.queue_pos, 0);
// Repeat one replays the same position.
state.player.repeat = RepeatMode::One;
assert_eq!(advance_after_finish(&mut state), Some(Effect::PlayCurrent));
assert_eq!(state.player.queue_pos, 0);
}
#[test]
fn same_tab_number_resets_to_root() {
let mut state = with_artists(3);
update(&mut state, Action::Select);
assert!(!state.global.stack.is_empty());
update(&mut state, Action::GoToTab(0));
assert!(state.global.stack.is_empty());
state.playlists.opened = Some(OpenedPlaylist {
id: crate::app::state::LIKES_PLAYLIST_ID,
cursor: 0,
});
update(&mut state, Action::GoToTab(1));
assert_eq!(state.active_tab, Tab::Playlists);
assert!(state.playlists.opened.is_some());
update(&mut state, Action::GoToTab(1));
assert!(state.playlists.opened.is_none());
}
#[test]
fn queue_tab_select_and_clear() {
use crate::library::models::TrackItem;
let track = |id: i64| TrackItem {
id,
title: format!("t{id}"),
track_number: None,
disc_number: None,
duration_seconds: 1.0,
artists: vec![],
featured_artists: vec![],
release_id: 1,
release_title: "r".into(),
release_year: None,
cover_path: None,
file_path: format!("/s/{id}"),
content_id: None,
audio_format: None,
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: None,
play_count: 0,
fed: None,
};
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = vec![track(1), track(2), track(3)];
state.player.queue_pos = 2;
// Cursor moves independently; enter rewinds playback to that track
// without dropping anything from the queue.
update(&mut state, Action::MoveUp);
update(&mut state, Action::MoveUp);
assert_eq!(state.queue_tab.cursor, 0);
assert_eq!(
update(&mut state, Action::Select),
Some(Effect::PlayCurrent)
);
assert_eq!(state.player.queue_pos, 0);
assert_eq!(state.player.queue.len(), 3);
assert_eq!(
update(&mut state, Action::ClearQueue),
Some(Effect::StopPlayback)
);
assert!(state.player.queue.is_empty());
assert!(!state.player.playing);
}
#[test]
fn current_track_info_uses_now_playing_track() {
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = vec![test_track(1), test_track(2)];
state.queue_tab.cursor = 0;
state.player.current = Some(test_track(2));
assert_eq!(update(&mut state, Action::OpenCurrentTrackInfo), None);
match &state.popup {
Some(crate::app::state::Popup::TrackInfo { tracks, .. }) => {
assert_eq!(
tracks.iter().map(|track| track.id).collect::<Vec<_>>(),
vec![2]
);
}
other => panic!("expected track info popup, got {other:?}"),
}
}
#[test]
fn visualizer_requires_current_track() {
let mut state = AppState::default();
assert_eq!(update(&mut state, Action::ToggleVisualizer), None);
assert!(!state.visualizer.active);
assert_eq!(
state.status_message.as_deref(),
Some("nothing playing — start a track first")
);
}
#[test]
fn visualizer_toggles_and_back_closes_it() {
let mut state = AppState::default();
state.player.current = Some(test_track(7));
state.help_visible = true;
assert_eq!(update(&mut state, Action::ToggleVisualizer), None);
assert!(state.visualizer.active);
assert!(state.visualizer.started_at.is_some());
assert!(!state.help_visible);
assert_eq!(update(&mut state, Action::Back), None);
assert!(!state.visualizer.active);
assert!(state.visualizer.started_at.is_none());
}
#[test]
fn add_to_playlist_from_release_carries_selected_track() {
use crate::app::state::{PlaylistAddTarget, Popup};
use crate::library::models::ReleaseDetail;
let mut state = AppState::default();
state
.global
.stack
.push(GlobalView::Release { id: 1, cursor: 1 });
state.release_views.insert(
1,
Loadable::Ready(ReleaseDetail {
id: 1,
title: "r".into(),
release_type: "album".into(),
year: None,
cover_path: None,
artists: vec![],
tracks: vec![test_track(1), test_track(2)],
}),
);
assert_eq!(update(&mut state, Action::AddToPlaylist), None);
match &state.popup {
Some(Popup::AddToPlaylist {
target: PlaylistAddTarget::Local(tracks),
..
}) => {
assert_eq!(
tracks.iter().map(|track| track.id).collect::<Vec<_>>(),
vec![2]
);
}
other => panic!("expected add-to-playlist popup with selected track, got {other:?}"),
}
}
#[test]
fn add_to_playlist_from_non_track_view_uses_current_track() {
use crate::app::state::{PlaylistAddTarget, Popup};
let mut state = AppState {
active_tab: Tab::Logs,
..AppState::default()
};
state.player.current = Some(test_track(7));
assert_eq!(update(&mut state, Action::AddToPlaylist), None);
match &state.popup {
Some(Popup::AddToPlaylist {
target: PlaylistAddTarget::Local(tracks),
..
}) => {
assert_eq!(
tracks.iter().map(|track| track.id).collect::<Vec<_>>(),
vec![7]
);
}
other => panic!("expected add-to-playlist popup with current track, got {other:?}"),
}
}
#[test]
fn visual_selection_removes_queue_range() {
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = (1..=4).map(test_track).collect();
state.queue_tab.cursor = 1;
assert_eq!(update(&mut state, Action::ToggleTrackSelection), None);
update(&mut state, Action::MoveDown);
let selected: Vec<i64> = selected_tracks(&state)
.into_iter()
.map(|track| track.id)
.collect();
assert_eq!(selected, vec![2, 3]);
assert_eq!(
update(&mut state, Action::RemoveFromQueue),
Some(Effect::RemoveQueueIndices {
indices: vec![1, 2],
restart_paused: None,
stop: false,
})
);
let remaining: Vec<i64> = state.player.queue.iter().map(|track| track.id).collect();
assert_eq!(remaining, vec![1, 4]);
assert!(!state.track_selection.is_active());
}
#[test]
fn artist_top_track_selection_queues_all_selected_tracks() {
let mut state = AppState::default();
state
.global
.stack
.push(GlobalView::Artist { id: 9, cursor: 0 });
state.artist_views.insert(
9,
Loadable::Ready(ArtistDetail {
id: 9,
name: "artist".into(),
image_path: None,
total_track_count: 3,
total_play_count: 0,
top_tracks: (1..=3).map(test_track).collect(),
releases: vec![],
featured_tracks: vec![],
}),
);
update(&mut state, Action::ToggleTrackSelection);
update(&mut state, Action::MoveDown);
assert_eq!(
update(&mut state, Action::QueueAddLast),
Some(Effect::PlaybackQueueChanged),
);
let queued: Vec<i64> = state.player.queue.iter().map(|track| track.id).collect();
assert_eq!(queued, vec![1, 2]);
assert!(!state.track_selection.is_active());
}
#[test]
fn removing_current_queue_track_requests_paused_restart() {
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = (1..=3).map(test_track).collect();
state.player.queue_pos = 1;
state.queue_tab.cursor = 1;
state.player.current = Some(test_track(2));
state.player.playing = true;
state.player.paused = true;
assert_eq!(
update(&mut state, Action::RemoveFromQueue),
Some(Effect::RemoveQueueIndices {
indices: vec![1],
restart_paused: Some(true),
stop: false,
})
);
let remaining: Vec<i64> = state.player.queue.iter().map(|track| track.id).collect();
assert_eq!(remaining, vec![1, 3]);
assert_eq!(state.player.queue_pos, 1);
assert_eq!(state.player.current.as_ref().map(|track| track.id), Some(3));
}
#[test]
fn bulk_like_targets_only_tracks_that_need_toggle() {
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = (1..=3).map(test_track).collect();
state.likes.insert(format!("b3:{:064x}", 1));
update(&mut state, Action::ToggleTrackSelection);
update(&mut state, Action::SelectLast);
assert_eq!(
update(&mut state, Action::ToggleLike),
Some(Effect::ToggleLikes {
track_ids: vec![2, 3],
fed_tracks: vec![],
})
);
state.likes = [1, 2, 3]
.into_iter()
.map(|id| format!("b3:{id:064x}"))
.collect();
assert_eq!(
update(&mut state, Action::ToggleLike),
Some(Effect::ToggleLikes {
track_ids: vec![1, 2, 3],
fed_tracks: vec![],
})
);
}
#[test]
fn shuffle_reorders_tail_and_restores() {
use crate::library::models::TrackItem;
let track = |id: i64| TrackItem {
id,
title: format!("t{id}"),
track_number: None,
disc_number: None,
duration_seconds: 1.0,
artists: vec![],
featured_artists: vec![],
release_id: 1,
release_title: "r".into(),
release_year: None,
cover_path: None,
file_path: format!("/s/{id}"),
content_id: None,
audio_format: None,
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: None,
play_count: 0,
fed: None,
};
let mut state = AppState::default();
state.player.queue = (1..=8).map(track).collect();
state.player.queue_pos = 2;
state.player.current = Some(track(3));
update(&mut state, Action::ToggleShuffle);
assert!(state.player.shuffle);
// Played part and the current track stay in place.
let ids: Vec<i64> = state.player.queue.iter().map(|t| t.id).collect();
assert_eq!(&ids[..3], &[1, 2, 3]);
// The tail is a permutation of the original tail.
let mut tail = ids[3..].to_vec();
tail.sort_unstable();
assert_eq!(tail, vec![4, 5, 6, 7, 8]);
update(&mut state, Action::ToggleShuffle);
assert!(!state.player.shuffle);
let restored: Vec<i64> = state.player.queue.iter().map(|t| t.id).collect();
assert_eq!(restored, vec![1, 2, 3, 4, 5, 6, 7, 8]);
assert!(state.player.original_order.is_none());
}
#[test]
fn shift_j_opens_release_from_queue() {
use crate::library::models::{ReleaseDetail, TrackItem};
let track = |id: i64, release_id: i64| TrackItem {
id,
title: format!("t{id}"),
track_number: None,
disc_number: None,
duration_seconds: 1.0,
artists: vec![],
featured_artists: vec![],
release_id,
release_title: "r".into(),
release_year: None,
cover_path: None,
file_path: format!("/s/{id}"),
content_id: None,
audio_format: None,
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: None,
play_count: 0,
fed: None,
};
let mut state = AppState {
active_tab: Tab::Queue,
..AppState::default()
};
state.player.queue = vec![track(1, 7), track(2, 7)];
state.queue_tab.cursor = 1;
// Release not loaded yet → jump queued as pending focus.
update(&mut state, Action::GoToRelease);
assert_eq!(state.active_tab, Tab::Global);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Release { id: 7, cursor: 0 })
);
assert_eq!(state.pending_release_focus, Some((7, 2)));
// Esc returns to the origin tab, not to the Global grid.
update(&mut state, Action::Back);
assert_eq!(state.active_tab, Tab::Queue);
assert!(state.global.stack.is_empty());
assert!(state.jump_origin.is_none());
// With the release cached, the cursor lands on the track directly.
state.global.stack.clear();
state.pending_release_focus = None;
state.release_views.insert(
7,
Loadable::Ready(ReleaseDetail {
id: 7,
title: "r".into(),
release_type: "album".into(),
year: None,
cover_path: None,
artists: vec![],
tracks: vec![track(1, 7), track(2, 7)],
}),
);
state.active_tab = Tab::Queue;
update(&mut state, Action::GoToRelease);
assert_eq!(
state.global.stack.last(),
Some(&GlobalView::Release { id: 7, cursor: 1 })
);
assert!(state.pending_release_focus.is_none());
}
#[test]
fn view_toggle() {
let mut state = AppState::default();
update(&mut state, Action::ToggleViewMode);
assert_eq!(state.global.view, ViewMode::Table);
update(&mut state, Action::ToggleViewMode);
assert_eq!(state.global.view, ViewMode::Tiles);
}
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use super::*;
static NEXT_TEST_DB: std::sync::atomic::AtomicU64 = std::sync::atomic::AtomicU64::new(1);
fn test_sync() -> DeviceSync {
let conn = Connection::open_in_memory().unwrap();
init_schema(&conn).unwrap();
let unique = NEXT_TEST_DB.fetch_add(1, std::sync::atomic::Ordering::Relaxed);
let library_path = std::env::temp_dir().join(format!(
"furumi-devices-test-{}-{}-{}.sqlite3",
std::process::id(),
now_ms(),
unique
));
let sync = DeviceSync {
conn: Arc::new(std::sync::Mutex::new(conn)),
library: Arc::new(Library::open(&library_path).unwrap()),
event_tx: Arc::new(std::sync::Mutex::new(None)),
playback: Arc::new(std::sync::Mutex::new(PlaybackShared::default())),
};
sync.ensure_identity().unwrap();
sync
}
fn device_revoked(sync: &DeviceSync, device_id: &str) -> bool {
let conn = lock(&sync.conn);
conn.query_row(
"SELECT revoked_at_ms IS NOT NULL
FROM sync_devices
WHERE device_id = ?1",
[device_id],
|row| row.get::<_, i64>(0),
)
.optional()
.unwrap()
.unwrap_or(0)
!= 0
}
fn device_known(sync: &DeviceSync, device_id: &str) -> bool {
let conn = lock(&sync.conn);
conn.query_row(
"SELECT 1 FROM sync_devices WHERE device_id = ?1",
[device_id],
|row| row.get::<_, i64>(0),
)
.optional()
.unwrap()
.is_some()
}
fn test_fed_track(content_id: &str) -> crate::federation::FedTrack {
crate::federation::FedTrack {
item_id: "fed_item_1".to_string(),
owner: "fed_owner_1".to_string(),
own: false,
title: "Remote Song".to_string(),
artist_names: vec!["Remote Artist".to_string()],
featured_artist_names: Vec::new(),
year: Some(2026),
duration_seconds: Some(123),
content_id: Some(content_id.to_string()),
release_title: Some("Remote Release".to_string()),
track_number: Some(1),
disc_number: Some(1),
}
}
#[test]
fn base64url_round_trip_without_padding() {
for input in [b"".as_slice(), b"a", b"ab", b"abc", b"abcdef"] {
let encoded = base64url_encode(input);
assert!(!encoded.contains('='));
assert_eq!(base64url_decode(&encoded).unwrap(), input);
}
}
#[test]
fn tombstone_detection() {
assert!(
SyncOpPayload::TrackLikeSet {
content_id: "b3:0".into(),
liked: false,
fed: None,
}
.is_tombstone()
);
assert!(
!SyncOpPayload::TrackLikeSet {
content_id: "b3:0".into(),
liked: true,
fed: None,
}
.is_tombstone()
);
}
#[test]
fn playback_tracks_do_not_sync_device_local_paths() {
let source = TrackItem {
id: 7,
title: "Local Song".to_string(),
track_number: Some(1),
disc_number: Some(1),
duration_seconds: 180.0,
artists: vec![ArtistRef {
id: 1,
name: "Local Artist".to_string(),
}],
featured_artists: Vec::new(),
release_id: 2,
release_title: "Local Release".to_string(),
release_year: Some(2026),
file_path: r"C:\Users\me\Music\song.mp3".to_string(),
content_id: Some(format!("b3:{}", "a".repeat(64))),
cover_path: None,
audio_format: Some("mp3".to_string()),
audio_bitrate: Some(320),
audio_sample_rate: Some(44_100),
audio_bit_depth: None,
file_size_bytes: Some(123_456),
play_count: 3,
fed: None,
};
let wire = PlaybackTrack::from_track(&source);
assert!(wire.file_path.is_empty());
let mut legacy_wire = wire.clone();
legacy_wire.file_path = "/Users/me/Music/song.mp3".to_string();
let restored = legacy_wire.to_track_item();
assert!(restored.id < 0);
assert_ne!(restored.id, source.id);
assert!(restored.file_path.is_empty());
assert_eq!(restored.content_id, source.content_id);
}
#[test]
fn compacted_device_revoke_removes_device_row() {
let sync = test_sync();
let device_id = "dev_old";
sync.apply_device_trusted(device_id, 10).unwrap();
assert!(device_known(&sync, device_id));
sync.revoke_device(device_id).unwrap();
assert!(!device_known(&sync, device_id));
}
#[test]
fn leave_group_self_revokes_then_resets_to_new_group() {
let sync = test_sync();
let identity = sync.ensure_identity().unwrap();
let old_group = identity.group_id.clone();
sync.apply_device_trusted("dev_peer", 10).unwrap();
let op_id = sync.record_leave_group_revoke().unwrap();
assert!(device_revoked(&sync, &identity.device_id));
{
let conn = lock(&sync.conn);
let payload_json: String = conn
.query_row(
"SELECT payload_json FROM sync_ops WHERE op_id = ?1",
[&op_id],
|row| row.get(0),
)
.unwrap();
let payload: SyncOpPayload = serde_json::from_str(&payload_json).unwrap();
match payload {
SyncOpPayload::DeviceRevoked {
target_device_id,
target_max_seq_seen,
} => {
assert_eq!(target_device_id, identity.device_id);
assert_eq!(target_max_seq_seen, 1);
}
other => panic!("unexpected payload: {other:?}"),
}
}
let new_group = sync.finish_leave_group_reset().unwrap();
assert_ne!(old_group, new_group);
let status = sync.status();
assert_eq!(status.group_id, new_group);
assert_eq!(status.active_devices, 1);
assert_eq!(status.devices.len(), 1);
assert!(status.devices[0].is_self);
assert!(!status.devices[0].revoked);
assert_eq!(status.ops_total, 0);
assert_eq!(status.outbox_ops, 0);
assert!(!device_known(&sync, "dev_peer"));
}
#[test]
fn playback_command_is_targeted_and_deduplicated() {
let sync = test_sync();
let identity = sync.ensure_identity().unwrap();
let (tx, mut rx) = tokio::sync::mpsc::unbounded_channel();
sync.set_event_tx(tx);
let command = PlaybackCommand::SetState {
state: PlaybackStateWire {
queue: Vec::new(),
queue_pos: 0,
playing: false,
paused: false,
idle_since_ms: None,
position_secs: 0.0,
volume: 42,
shuffle: false,
repeat: PlaybackRepeat::Off,
},
seek: false,
};
sync.apply_playback_command("dev_other", &command, "op_other")
.unwrap();
assert!(rx.try_recv().is_err());
sync.apply_playback_command(&identity.device_id, &command, "op_1")
.unwrap();
assert!(matches!(
rx.try_recv().unwrap(),
crate::app::event::AppEvent::PlaybackCommand(_)
));
sync.apply_playback_command(&identity.device_id, &command, "op_1")
.unwrap();
assert!(rx.try_recv().is_err());
}
#[test]
fn newer_device_trust_reactivates_revoked_device() {
let sync = test_sync();
let device_id = "dev_readd";
sync.apply_device_trusted(device_id, 10).unwrap();
assert!(!device_revoked(&sync, device_id));
sync.apply_device_revoked(device_id, 20, "dev_owner", 0)
.unwrap();
assert!(device_revoked(&sync, device_id));
sync.apply_device_trusted(device_id, 30).unwrap();
assert!(!device_revoked(&sync, device_id));
sync.apply_device_revoked(device_id, 25, "dev_owner", 0)
.unwrap();
assert!(!device_revoked(&sync, device_id));
sync.apply_device_profile(
&DeviceProfileWire {
device_id: device_id.to_string(),
name: "readded".to_string(),
client_version: CLIENT_VERSION.to_string(),
protocol_version: PROTOCOL_VERSION,
endpoint_id: String::new(),
endpoint_ticket: String::new(),
revoked: true,
revoke_cutoff_seq: Some(0),
updated_at_ms: 20,
},
false,
)
.unwrap();
assert!(!device_revoked(&sync, device_id));
}
#[test]
fn tombstone_gc_waits_for_every_active_remote_ack() {
let sync = test_sync();
let origin = sync.ensure_identity().unwrap().device_id;
sync.apply_device_trusted("dev_a", 1).unwrap();
sync.apply_device_trusted("dev_b", 1).unwrap();
sync.record_local_op(SyncOpPayload::PlaylistDeleted {
playlist_id: "pl_deleted".to_string(),
})
.unwrap();
{
let conn = lock(&sync.conn);
let tombstones: i64 = conn
.query_row(
"SELECT COUNT(*) FROM sync_ops WHERE tombstone = 1",
[],
|row| row.get(0),
)
.unwrap();
assert_eq!(tombstones, 1);
}
let ack = BTreeMap::from([(origin, 1)]);
sync.note_peer_vector("dev_a", &ack).unwrap();
sync.gc_tombstones().unwrap();
{
let conn = lock(&sync.conn);
let tombstones: i64 = conn
.query_row(
"SELECT COUNT(*) FROM sync_ops WHERE tombstone = 1",
[],
|row| row.get(0),
)
.unwrap();
assert_eq!(tombstones, 1);
}
sync.note_peer_vector("dev_b", &ack).unwrap();
sync.gc_tombstones().unwrap();
let conn = lock(&sync.conn);
let tombstones: i64 = conn
.query_row(
"SELECT COUNT(*) FROM sync_ops WHERE tombstone = 1",
[],
|row| row.get(0),
)
.unwrap();
assert_eq!(tombstones, 0);
}
#[test]
fn snapshot_carries_deleted_playlists_to_repair_stale_peers() {
let source = test_sync();
let source_playlist = source.library.create_playlist("Gone").unwrap();
let playlist_sync_id = source
.library
.ensure_playlist_sync_id(source_playlist.id)
.unwrap();
source
.apply_playlist_state(&playlist_sync_id, "Gone", false, 10, "dev_remote:1")
.unwrap();
source
.apply_playlist_state(&playlist_sync_id, "", true, 20, "dev_remote:2")
.unwrap();
let snapshot = source.snapshot().unwrap();
assert!(
snapshot
.deleted_playlists
.iter()
.any(|playlist| playlist.playlist_id == playlist_sync_id)
);
let peer = test_sync();
let peer_playlist = peer
.library
.upsert_synced_playlist(&playlist_sync_id, "Gone")
.unwrap();
assert!(peer.library.playlist(peer_playlist).is_ok());
peer.apply_snapshot(snapshot).unwrap();
assert!(
!peer
.library
.playlists()
.unwrap()
.iter()
.any(|playlist| playlist.title == "Gone")
);
}
#[test]
fn synced_fed_like_metadata_repairs_existing_like_state() {
let sync = test_sync();
let content_id = format!("b3:{}", "a".repeat(64));
let fed = test_fed_track(&content_id);
let synced = SyncedFedTrack::from_fed(&fed).unwrap();
assert!(
sync.apply_like_state(&content_id, true, None, 10, "dev_remote:1")
.unwrap()
);
assert!(sync.library.fed_like_ids().unwrap().is_empty());
assert!(
sync.apply_like_state(&content_id, true, Some(&synced), 10, "dev_remote:1")
.unwrap()
);
let keys = sync.library.fed_like_ids().unwrap();
assert!(keys.contains(&fed.item_id));
assert!(keys.contains(&content_id));
assert!(
sync.apply_like_state(&content_id, false, None, 11, "dev_remote:2")
.unwrap()
);
assert!(sync.library.fed_like_ids().unwrap().is_empty());
}
#[test]
fn synced_fed_likes_are_ordered_by_hlc_not_receive_time() {
let sync = test_sync();
let old_content_id = format!("b3:{}", "c".repeat(64));
let new_content_id = format!("b3:{}", "d".repeat(64));
let mut old_fed = test_fed_track(&old_content_id);
old_fed.item_id = "fed_old".to_string();
old_fed.title = "Old Fed".to_string();
let mut new_fed = test_fed_track(&new_content_id);
new_fed.item_id = "fed_new".to_string();
new_fed.title = "New Fed".to_string();
let new_synced = SyncedFedTrack::from_fed(&new_fed).unwrap();
let old_synced = SyncedFedTrack::from_fed(&old_fed).unwrap();
sync.apply_like_state(&new_content_id, true, Some(&new_synced), 20, "dev_remote:2")
.unwrap();
sync.apply_like_state(&old_content_id, true, Some(&old_synced), 10, "dev_remote:1")
.unwrap();
let titles: Vec<String> = sync
.library
.playlist(crate::library::LIKES_PLAYLIST_ID)
.unwrap()
.tracks
.into_iter()
.map(|track| track.title)
.collect();
assert_eq!(titles, vec!["New Fed", "Old Fed"]);
}
#[test]
fn synced_playlist_item_metadata_creates_pending_fed_track() {
let sync = test_sync();
let playlist = sync.library.create_playlist("Remote Mix").unwrap();
let playlist_sync_id = sync.library.ensure_playlist_sync_id(playlist.id).unwrap();
let content_id = format!("b3:{}", "b".repeat(64));
let fed = test_fed_track(&content_id);
let synced = SyncedFedTrack::from_fed(&fed).unwrap();
assert!(
sync.apply_playlist_item_state(
&playlist_sync_id,
&content_id,
true,
3,
Some(&synced),
10,
"dev_remote:2",
)
.unwrap()
);
let detail = sync.library.playlist(playlist.id).unwrap();
assert_eq!(detail.tracks.len(), 1);
assert!(detail.tracks[0].is_fed_pending());
assert_eq!(detail.tracks[0].title, fed.title);
let conn = lock(&sync.conn);
assert_eq!(
sync.unresolved_playlist_item_count_with_conn(&conn)
.unwrap(),
0
);
drop(conn);
assert!(
sync.apply_playlist_item_state(
&playlist_sync_id,
&content_id,
false,
0,
None,
11,
"dev_remote:3",
)
.unwrap()
);
assert_eq!(sync.library.playlist(playlist.id).unwrap().tracks.len(), 0);
}
#[test]
fn stale_synced_playlist_item_metadata_repairs_pending_fed_track() {
let sync = test_sync();
let playlist = sync.library.create_playlist("Remote Mix").unwrap();
let playlist_sync_id = sync.library.ensure_playlist_sync_id(playlist.id).unwrap();
let content_id = format!("b3:{}", "e".repeat(64));
let fed = test_fed_track(&content_id);
let synced = SyncedFedTrack::from_fed(&fed).unwrap();
assert!(
sync.apply_playlist_item_state(
&playlist_sync_id,
&content_id,
true,
7,
None,
10,
"dev_remote:2",
)
.unwrap()
);
assert_eq!(sync.library.playlist(playlist.id).unwrap().tracks.len(), 0);
assert!(
sync.apply_playlist_item_state(
&playlist_sync_id,
&content_id,
true,
7,
Some(&synced),
10,
"dev_remote:2",
)
.unwrap()
);
let detail = sync.library.playlist(playlist.id).unwrap();
assert_eq!(detail.tracks.len(), 1);
assert!(detail.tracks[0].is_fed_pending());
assert_eq!(detail.tracks[0].title, fed.title);
}
+95
View File
@@ -0,0 +1,95 @@
use super::*;
fn test_owner() -> EndpointId {
music_dht::SecretKey::from_bytes(&[7; 32]).public()
}
fn dht_track(main: &[&str], featured: &[&str]) -> LibraryItem {
let owner = test_owner();
LibraryItem {
id: music_dht::ItemId::derive(&owner, ItemKind::Track, "track:1"),
owner,
kind: ItemKind::Track,
name: "Guest Verse".into(),
normalized_name: music_dht::normalize_name("Guest Verse"),
artist_names: main.iter().map(|name| name.to_string()).collect(),
featured_artist_names: featured.iter().map(|name| name.to_string()).collect(),
year: Some(2024),
release_type: Some("album".into()),
release_title: Some("Host Album".into()),
track_number: Some(2),
disc_number: Some(1),
duration_seconds: Some(180.0),
content_id: Some(
"b3:0123456789abcdef0123456789abcdef0123456789abcdef0123456789abcdef".into(),
),
revision: 1,
deleted: false,
updated_at_ms: 0,
}
}
#[test]
fn dht_appearance_requires_explicit_featured_artist() {
let normalized = music_dht::normalize_name("Guest");
assert!(dht_appearance_hit(&dht_track(&["Guest"], &[]), &normalized, "Guest").is_none());
let hit = dht_appearance_hit(&dht_track(&["Host"], &["Guest"]), &normalized, "Guest").unwrap();
assert_eq!(hit.release_title, "Host Album");
assert_eq!(hit.release_type, "album");
assert_eq!(hit.year, Some(2024));
assert_eq!(hit.track.artists, vec!["Host"]);
assert_eq!(hit.track.featured_artists, vec!["Guest"]);
assert_eq!(hit.track.track_number, Some(2));
assert_eq!(hit.track.disc_number, Some(1));
}
#[test]
fn federation_search_ranks_exact_names_first() {
let normalized = music_dht::normalize_name("ежемесячные");
let mut artists = vec![
FedArtistHit {
name: "Booker".into(),
peers: 3,
},
FedArtistHit {
name: "Ежемесячные".into(),
peers: 1,
},
];
let mut tracks = vec![
FedTrack {
item_id: "a".into(),
owner: "peer-a".into(),
own: false,
title: "Гость".into(),
artist_names: vec!["Other".into()],
featured_artist_names: vec!["Ежемесячные".into()],
year: None,
duration_seconds: None,
content_id: None,
release_title: None,
track_number: None,
disc_number: None,
},
FedTrack {
item_id: "b".into(),
owner: "peer-b".into(),
own: false,
title: "Ежемесячные".into(),
artist_names: vec!["Other".into()],
featured_artist_names: Vec::new(),
year: None,
duration_seconds: None,
content_id: None,
release_title: None,
track_number: None,
disc_number: None,
},
];
rank_fed_search_results(&mut artists, &mut tracks, &normalized);
assert_eq!(artists[0].name, "Ежемесячные");
assert_eq!(tracks[0].title, "Ежемесячные");
}
+509
View File
@@ -0,0 +1,509 @@
use super::*;
fn test_library() -> Library {
let conn = Connection::open_in_memory().unwrap();
conn.pragma_update(None, "foreign_keys", "ON").unwrap();
register_norm_function(&conn).unwrap();
conn.execute_batch(SCHEMA).unwrap();
Library {
conn: Mutex::new(conn),
db_path: std::env::temp_dir().join("furumi-test-library.db"),
covers_dir: std::env::temp_dir().join("furumi-test-covers-unused"),
}
}
fn add_track(lib: &Library, title: &str, artist: &str, album: &str) -> i64 {
add_track_with_featured(lib, title, artist, &[], album)
}
fn add_track_with_featured(
lib: &Library,
title: &str,
artist: &str,
featured: &[&str],
album: &str,
) -> i64 {
let import = import::TrackImport {
release_type: None,
file_path: format!("/music/{artist}/{album}/{title}.mp3"),
title: title.to_string(),
artists: vec![artist.to_string()],
featured_artists: featured.iter().map(|name| (*name).to_string()).collect(),
album_artists: vec![artist.to_string()],
release_title: album.to_string(),
year: Some(2020),
track_number: None,
disc_number: None,
duration_seconds: 60.0,
audio_format: Some("mp3".into()),
audio_bitrate: Some(320),
audio_sample_rate: Some(44100),
audio_bit_depth: None,
file_size_bytes: Some(1),
cover: None,
};
let id = import::upsert_track(lib, &import).unwrap().0;
let content_id = format!("b3:{}", blake3::hash(import.file_path.as_bytes()).to_hex());
lib.lock()
.execute(
"UPDATE tracks SET content_id = ?2 WHERE id = ?1",
params![id, content_id],
)
.unwrap();
id
}
fn artist_filters(hide_featured_only: bool) -> crate::config::settings::LibraryFilters {
crate::config::settings::LibraryFilters {
hide_featured_only,
..Default::default()
}
}
#[test]
fn local_stats_counts_library_rows_and_audio_bytes() {
let lib = test_library();
add_track(&lib, "One", "Artist", "First");
add_track(&lib, "Two", "Artist", "Second");
let stats = lib.local_stats().unwrap();
assert_eq!(stats.artist_count, 1);
assert_eq!(stats.release_count, 2);
assert_eq!(stats.track_count, 2);
assert_eq!(stats.audio_bytes, 2);
assert_eq!(stats.tracks_without_size, 0);
}
#[test]
fn artists_page_prioritizes_releases_then_tracks() {
let lib = test_library();
add_track(&lib, "Solo", "Zed", "Zed Album");
add_track_with_featured(&lib, "Guest One", "A Host", &["Guest"], "A Host Album");
add_track_with_featured(&lib, "Guest Two", "B Host", &["Guest"], "B Host Album");
let page = lib.artists(1, 10, artist_filters(false)).unwrap();
let zed_pos = page
.items
.iter()
.position(|artist| artist.name == "Zed")
.unwrap();
let guest_pos = page
.items
.iter()
.position(|artist| artist.name == "Guest")
.unwrap();
let guest = &page.items[guest_pos];
assert_eq!(guest.release_count, 0);
assert_eq!(guest.track_count, 2);
assert!(zed_pos < guest_pos);
let filtered = lib.artists(1, 10, artist_filters(true)).unwrap();
assert!(filtered.items.iter().all(|artist| artist.release_count > 0));
assert!(!filtered.items.iter().any(|artist| artist.name == "Guest"));
}
#[test]
fn network_artist_image_hint_becomes_local_image_after_fetch() {
let lib = test_library();
let artist_key = music_dht::normalize_name("Remote Artist");
lib.replace_network_artist_cache(
"peer-a",
"personal",
&[NetworkArtistPreview {
artist_key: artist_key.clone(),
name: "Remote Artist".into(),
image_path: Some("peer-local/image.jpg".into()),
release_count: 1,
track_count: 3,
}],
true,
)
.unwrap();
let filters = crate::config::settings::LibraryFilters {
source_mode: crate::config::settings::LibrarySourceMode::My,
..Default::default()
};
let page = lib.artists(1, 10, filters).unwrap();
assert_eq!(page.items[0].image_path, None);
let requests = lib
.network_artist_image_requests(filters, &["Remote Artist".into()], 8)
.unwrap();
assert_eq!(requests.len(), 1);
assert_eq!(requests[0].source_id, "peer-a");
assert_eq!(requests[0].artist_key, artist_key);
lib.set_network_artist_image("peer-a", &artist_key, "/tmp/remote-artist.jpg")
.unwrap();
let page = lib.artists(1, 10, filters).unwrap();
assert_eq!(
page.items[0].image_path.as_deref(),
Some("/tmp/remote-artist.jpg")
);
}
#[test]
fn import_creates_artist_release_track() {
let lib = test_library();
let track_id = add_track(&lib, "Song", "Artist", "Album");
let page = lib.artists(1, 10, artist_filters(false)).unwrap();
assert_eq!(page.total, 1);
assert_eq!(page.items[0].name, "Artist");
assert_eq!(page.items[0].track_count, 1);
let detail = lib.artist(page.items[0].id).unwrap();
assert_eq!(detail.releases.len(), 1);
assert_eq!(detail.top_tracks.len(), 1);
let release = lib.release(detail.releases[0].id).unwrap();
assert_eq!(release.tracks.len(), 1);
assert_eq!(release.tracks[0].id, track_id);
assert_eq!(release.tracks[0].artists[0].name, "Artist");
}
#[test]
fn reimport_updates_instead_of_duplicating() {
let lib = test_library();
let first = add_track(&lib, "Song", "Artist", "Album");
let second = add_track(&lib, "Song", "Artist", "Album");
assert_eq!(first, second);
let page = lib.artists(1, 10, artist_filters(false)).unwrap();
assert_eq!(page.items[0].track_count, 1);
}
#[test]
fn content_id_backfill_hashes_missing_track_ids() {
let lib = test_library();
let path = std::env::temp_dir().join(format!(
"furumi-content-id-test-{}-{}.bin",
std::process::id(),
std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap()
.as_nanos()
));
std::fs::write(&path, b"portable content id").unwrap();
let file_path = path.to_string_lossy().into_owned();
let import = import::TrackImport {
release_type: None,
file_path: file_path.clone(),
title: "Portable".to_string(),
artists: vec!["Artist".to_string()],
featured_artists: Vec::new(),
album_artists: vec!["Artist".to_string()],
release_title: "Album".to_string(),
year: Some(2026),
track_number: None,
disc_number: None,
duration_seconds: 60.0,
audio_format: Some("bin".into()),
audio_bitrate: None,
audio_sample_rate: None,
audio_bit_depth: None,
file_size_bytes: Some(19),
cover: None,
};
let track_id = import::upsert_track(&lib, &import).unwrap().0;
let expected = audio_content_id(&file_path).unwrap();
{
let conn = lib.lock();
conn.execute(
"UPDATE tracks SET content_id = NULL WHERE id = ?1",
[track_id],
)
.unwrap();
}
let stats = lib.backfill_missing_content_ids().unwrap();
assert_eq!(stats.hashed, 1);
assert_eq!(stats.updated(), 1);
assert_eq!(
lib.track_content_id_by_id(track_id).unwrap().as_deref(),
Some(expected.as_str())
);
let _ = std::fs::remove_file(path);
}
#[test]
fn search_finds_all_kinds() {
let lib = test_library();
add_track(&lib, "Neon Lights", "Neon Artist", "Neon Album");
let results = lib.search("neon", 10).unwrap();
assert_eq!(results.artists.len(), 1);
assert_eq!(results.releases.len(), 1);
assert_eq!(results.tracks.len(), 1);
// LIKE wildcards in the query must not match everything.
assert_eq!(lib.search("%", 10).unwrap().len(), 0);
}
#[test]
fn search_ranks_exact_names_first() {
let lib = test_library();
add_track(&lib, "A Needle", "A Needle Artist", "A Needle Album");
add_track(&lib, "Needle", "Needle", "Needle");
let results = lib.search("needle", 10).unwrap();
assert_eq!(results.artists[0].name, "Needle");
assert_eq!(results.releases[0].title, "Needle");
assert_eq!(results.tracks[0].title, "Needle");
}
#[test]
fn search_folds_case_beyond_ascii() {
let lib = test_library();
add_track(&lib, "Nothing Else Matters", "Металлика", "Чёрный альбом");
// SQLite's LIKE/NOCASE only fold ASCII; norm() folds every script.
assert_eq!(lib.search("металлика", 10).unwrap().artists.len(), 1);
assert_eq!(lib.search("МЕТАЛЛИКА", 10).unwrap().artists.len(), 1);
assert_eq!(lib.search("чёрный", 10).unwrap().releases.len(), 1);
assert_eq!(lib.search("matters", 10).unwrap().tracks.len(), 1);
}
#[test]
fn playlists_and_likes_round_trip() {
let lib = test_library();
let track_id = add_track(&lib, "Song", "Artist", "Album");
let playlist = lib.create_playlist("Mix").unwrap();
lib.add_tracks_to_playlist(playlist.id, &[track_id])
.unwrap();
assert_eq!(lib.playlist(playlist.id).unwrap().tracks.len(), 1);
let content_id = lib.track_content_id_by_id(track_id).unwrap().unwrap();
assert!(lib.toggle_like_by_content_id(&content_id).unwrap());
assert_eq!(lib.liked_content_ids().unwrap(), vec![content_id.clone()]);
assert_eq!(lib.playlist(LIKES_PLAYLIST_ID).unwrap().tracks.len(), 1);
assert!(!lib.toggle_like_by_content_id(&content_id).unwrap());
lib.remove_tracks_from_playlist(playlist.id, &[track_id])
.unwrap();
assert_eq!(lib.playlist(playlist.id).unwrap().tracks.len(), 0);
lib.delete_playlist(playlist.id).unwrap();
// Only the virtual Likes playlist remains.
assert_eq!(lib.playlists().unwrap().len(), 1);
}
#[test]
fn likes_playlist_orders_local_and_federated_by_liked_at() {
let lib = test_library();
let old_id = add_track(&lib, "Old Local", "Artist", "Album");
let new_id = add_track(&lib, "New Local", "Artist", "Album");
let old_content_id = lib.track_content_id_by_id(old_id).unwrap().unwrap();
let new_content_id = lib.track_content_id_by_id(new_id).unwrap().unwrap();
let content_id = format!("b3:{}", "c".repeat(64));
let fed = crate::federation::FedTrack {
item_id: "fed_item_order".to_string(),
owner: "fed_owner_order".to_string(),
own: false,
title: "Middle Fed".to_string(),
artist_names: vec!["Remote Artist".to_string()],
featured_artist_names: Vec::new(),
year: Some(2026),
duration_seconds: Some(123),
content_id: Some(content_id),
release_title: Some("Remote Release".to_string()),
track_number: Some(1),
disc_number: Some(1),
};
assert!(lib.toggle_like_by_content_id(&old_content_id).unwrap());
assert!(lib.toggle_like_by_content_id(&new_content_id).unwrap());
assert!(lib.toggle_fed_like(&fed).unwrap());
{
let conn = lib.lock();
conn.execute(
"UPDATE likes SET liked_at = ?2 WHERE track_id = ?1",
params![old_id, "2026-01-01 00:00:00"],
)
.unwrap();
conn.execute(
"UPDATE likes SET liked_at = ?2 WHERE track_id = ?1",
params![new_id, "2026-01-02 00:00:00"],
)
.unwrap();
conn.execute(
"UPDATE fed_likes SET liked_at = ?2 WHERE item_id = ?1",
params![fed.item_id, "2026-01-03 00:00:00"],
)
.unwrap();
}
let titles: Vec<String> = lib
.playlist(LIKES_PLAYLIST_ID)
.unwrap()
.tracks
.into_iter()
.map(|track| track.title)
.collect();
assert_eq!(titles, vec!["Middle Fed", "New Local", "Old Local"]);
assert!(!lib.toggle_like_by_content_id(&old_content_id).unwrap());
assert!(lib.toggle_like_by_content_id(&old_content_id).unwrap());
{
let conn = lib.lock();
conn.execute(
"UPDATE likes SET liked_at = ?2 WHERE track_id = ?1",
params![old_id, "2026-01-04 00:00:00"],
)
.unwrap();
}
let titles: Vec<String> = lib
.playlist(LIKES_PLAYLIST_ID)
.unwrap()
.tracks
.into_iter()
.map(|track| track.title)
.collect();
assert_eq!(titles, vec!["Old Local", "Middle Fed", "New Local"]);
}
#[test]
fn synced_playlist_can_show_federated_pending_tracks() {
let lib = test_library();
let playlist = lib.create_playlist("Remote Mix").unwrap();
let sync_id = lib.ensure_playlist_sync_id(playlist.id).unwrap();
let content_id = format!("b3:{}", "a".repeat(64));
let fed = crate::federation::FedTrack {
item_id: "fed_item_1".to_string(),
owner: "fed_owner_1".to_string(),
own: false,
title: "Remote Song".to_string(),
artist_names: vec!["Remote Artist".to_string()],
featured_artist_names: vec!["Remote Guest".to_string()],
year: Some(2026),
duration_seconds: Some(123),
content_id: Some(content_id.clone()),
release_title: Some("Remote Release".to_string()),
track_number: Some(2),
disc_number: Some(1),
};
assert!(lib.upsert_fed_playlist_track(&sync_id, &fed, 4).unwrap());
assert!(
lib.has_playlist_content_reference(&sync_id, &content_id)
.unwrap()
);
let detail = lib.playlist(playlist.id).unwrap();
assert_eq!(detail.tracks.len(), 1);
let track = &detail.tracks[0];
assert!(track.is_fed_pending());
assert_eq!(track.title, "Remote Song");
assert_eq!(track.artist_line(), "Remote Artist feat. Remote Guest");
assert_eq!(track.release_title, "Remote Release");
assert_eq!(track.content_id.as_deref(), Some(content_id.as_str()));
let card = lib
.playlists()
.unwrap()
.into_iter()
.find(|card| card.id == playlist.id)
.unwrap();
assert_eq!(card.track_count, 1);
lib.remove_content_ids_from_playlist(playlist.id, std::slice::from_ref(&content_id))
.unwrap();
assert_eq!(lib.playlist(playlist.id).unwrap().tracks.len(), 0);
assert!(
lib.fed_playlist_track_by_content_id(&sync_id, &content_id)
.unwrap()
.is_none()
);
}
#[test]
fn add_federated_pending_track_to_playlist_records_position() {
let lib = test_library();
let local_id = add_track(&lib, "Local Song", "Artist", "Album");
let playlist = lib.create_playlist("Remote Mix").unwrap();
let content_id = format!("b3:{}", "b".repeat(64));
let fed = crate::federation::FedTrack {
item_id: "fed_item_2".to_string(),
owner: "fed_owner_2".to_string(),
own: false,
title: "Remote Song".to_string(),
artist_names: vec!["Remote Artist".to_string()],
featured_artist_names: Vec::new(),
year: Some(2026),
duration_seconds: Some(123),
content_id: Some(content_id.clone()),
release_title: Some("Remote Release".to_string()),
track_number: Some(2),
disc_number: Some(1),
};
lib.add_tracks_to_playlist(playlist.id, &[local_id])
.unwrap();
lib.add_fed_tracks_to_playlist(playlist.id, std::slice::from_ref(&fed))
.unwrap();
let position = lib
.playlist_content_position(playlist.id, &content_id)
.unwrap();
assert_eq!(position, Some(1));
let detail = lib.playlist(playlist.id).unwrap();
assert_eq!(
detail
.tracks
.into_iter()
.map(|track| track.title)
.collect::<Vec<_>>(),
vec!["Local Song", "Remote Song"]
);
}
#[test]
fn track_edit_relinks_artists() {
let lib = test_library();
let track_id = add_track(&lib, "Song", "Artist", "Album");
lib.update_track(
track_id,
&TrackEdit {
title: "Renamed".into(),
artists: vec!["Other".into()],
featured_artists: vec!["Guest".into()],
track_number: Some(2),
disc_number: None,
cover_path: None,
},
)
.unwrap();
let track = lib.tracks_by_ids(&[track_id]).unwrap().remove(0);
assert_eq!(track.title, "Renamed");
assert_eq!(track.artists[0].name, "Other");
assert_eq!(track.featured_artists[0].name, "Guest");
assert_eq!(track.track_number, Some(2));
}
#[test]
fn deleting_artist_cleans_up_own_content() {
let lib = test_library();
add_track(&lib, "Song", "Solo", "Solo Album");
let page = lib.artists(1, 10, artist_filters(false)).unwrap();
lib.delete_artist(page.items[0].id).unwrap();
assert_eq!(lib.artists(1, 10, artist_filters(false)).unwrap().total, 0);
assert_eq!(lib.search("Song", 10).unwrap().len(), 0);
}
#[test]
fn delete_track_drops_empty_release() {
let lib = test_library();
let track_id = add_track(&lib, "Only", "Artist", "Album");
lib.delete_track(track_id).unwrap();
let detail = lib
.artist(lib.artists(1, 10, artist_filters(false)).unwrap().items[0].id)
.unwrap();
assert!(detail.releases.is_empty());
}
#[test]
fn history_counts_completed_plays() {
let lib = test_library();
let track_id = add_track(&lib, "Song", "Artist", "Album");
lib.add_history(track_id, None, 60, true).unwrap();
lib.add_history(track_id, None, 10, false).unwrap();
let track = lib.tracks_by_ids(&[track_id]).unwrap().remove(0);
assert_eq!(track.play_count, 1);
}