Executive summary
Preview (pre-1.0). This repo hasn't declared a stable release, so it's judged against a relaxed, pre-production bar.
The system holds a strong overall standing at 67%, indicating a well-structured asset that is largely healthy but carries specific operational risks. While the codebase is small and inexpensive to rebuild, its current configuration leaves it vulnerable to deployment errors and dependency issues that could disrupt business continuity. The primary concern is not the quality of the code itself, but the lack of safeguards around how it is released and maintained.
The most significant risk lies in production readiness, which scores only 62%. This lens measures whether the system is safe to operate, tested, and observable. Without adequate release gates, there is no mechanism to pause a bad build before it reaches users. This exposes the business to potential outages and customer-facing defects, directly impacting reliability and trust. The cost of fixing this is low, but the risk of inaction is high for a system that serves as a critical touchpoint.
A secondary theme is dependency management. The system relies on external libraries that are not automatically monitored for security updates or breaking changes. This creates a hidden liability where known vulnerabilities or compatibility issues could go unnoticed until they cause a failure. Addressing this requires minimal effort but provides immediate protection against common security threats and technical debt accumulation.
On the positive side, the code health and architecture are strong, with scores of 82% and 89% respectively. The domain modeling is mature, and the event sourcing pattern is fully implemented, suggesting a solid foundation for future changes. The small size of the codebase means that any necessary modifications can be made quickly and with low risk.
Focus first on enabling automated dependency updates and implementing a release gate. These actions offer the highest leverage, protecting the business from immediate operational risks with minimal investment. By securing the release process and keeping dependencies current, the organization can maintain the system’s strong foundation while mitigating the most pressing threats to its stability and security.
Raise Readiness 62 → 70 (the Healthy floor) ⇒ headline 67 → ~70.
New since the last scan (4+)
- D6 · Low cohesion: AppConfig (LCOM4 4) spotify_player/src/config/mod.rs
- D22 · Ambiguous overlap between search and retrieval. 'search_songs' implies finding metadata/links, while 'get_lyric' implies fetching the content. However, both accept a raw string query. It is unclear if 'get_lyric' performs a search internally and then fetches, or if it expects a specific format. More critically, 'retrieve_lyric' exists which takes a URL, suggesting a separation of concerns (Search -> Retrieve) that 'get_lyric' bypasses or duplicates without clear distinction.
- D30 · REDACTED
- PF3 · Sync-over-async blocking spotify_player/src/main.rs
Rebuild cost & value ~ Modeled — €7,000–€35,000
| Cost to rebuild | €7,000–€35,000 |
|---|---|
| Domain complexity | Standard |
| Quality factor | 0.9× (at 67% quality) |
| Size & shape | Small · effort split not classified (source measured from disk; the effort-tier breakdown is a C#-only syntax walk) |
This codebase represents roughly ~0.1 person-years of build effort (about ~€21,000 to rebuild). Its weakest lens is Readiness at 62% — the part of that asset most exposed by the findings below.
Top priorities
Diagnosis — what's actually going on
Architecture — module dependency matrix
| depends on → | 1 lyric_finder.search | 2 spotify_player.client.request | 3 spotify_player.state.ui.page | 4 spotify_player.state.ui.popup | 5 lyric_finder | 6 lyric_finder.parse | 7 spotify_player | 8 spotify_player.cli | 9 spotify_player.client.spotify | 10 spotify_player.config.theme | 11 spotify_player.media_control | 12 spotify_player.media_control.windows | 13 spotify_player.state.model | 14 spotify_player.ui | 15 spotify_player.ui.cover_image | 16 spotify_player.cli.commands | 17 spotify_player.client.middleware | 18 spotify_player.command | 19 spotify_player.event.clipboard | 20 spotify_player.key | 21 spotify_player.log_layer | 22 spotify_player.state.data | 23 spotify_player.state.queue | 24 spotify_player.ui.streaming | 25 spotify_player.config.keymap | 26 spotify_player.event | 27 spotify_player.event.page | 28 spotify_player.event.popup | 29 spotify_player.event.window | 30 spotify_player.state.player | 31 spotify_player.state.ui | 32 spotify_player.config | 33 spotify_player.state | 34 spotify_player.auth | 35 spotify_player.cli.handlers | 36 spotify_player.ui.playback | 37 spotify_player.client | 38 spotify_player.cli.client | 39 spotify_player.client.handlers | 40 spotify_player.streaming |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 lyric_finder.search | ||||||||||||||||||||||||||||||||||||||||
| 2 spotify_player.client.request | ||||||||||||||||||||||||||||||||||||||||
| 3 spotify_player.state.ui.page | ||||||||||||||||||||||||||||||||||||||||
| 4 spotify_player.state.ui.popup | ||||||||||||||||||||||||||||||||||||||||
| 5 lyric_finder | 1 | |||||||||||||||||||||||||||||||||||||||
| 6 lyric_finder.parse | 1 | |||||||||||||||||||||||||||||||||||||||
| 7 spotify_player | 1 | |||||||||||||||||||||||||||||||||||||||
| 8 spotify_player.cli | 1 | |||||||||||||||||||||||||||||||||||||||
| 9 spotify_player.client.spotify | 1 | |||||||||||||||||||||||||||||||||||||||
| 10 spotify_player.config.theme | 3 | |||||||||||||||||||||||||||||||||||||||
| 11 spotify_player.media_control | 1 | |||||||||||||||||||||||||||||||||||||||
| 12 spotify_player.media_control.windows | 1 | |||||||||||||||||||||||||||||||||||||||
| 13 spotify_player.state.model | 9 | |||||||||||||||||||||||||||||||||||||||
| 14 spotify_player.ui | 1 | |||||||||||||||||||||||||||||||||||||||
| 15 spotify_player.ui.cover_image | 2 | |||||||||||||||||||||||||||||||||||||||
| 16 spotify_player.cli.commands | 1 | |||||||||||||||||||||||||||||||||||||||
| 17 spotify_player.client.middleware | 5 | 1 | ||||||||||||||||||||||||||||||||||||||
| 18 spotify_player.command | 13 | |||||||||||||||||||||||||||||||||||||||
| 19 spotify_player.event.clipboard | 5 | 1 | ||||||||||||||||||||||||||||||||||||||
| 20 spotify_player.key | 2 | 1 | ||||||||||||||||||||||||||||||||||||||
| 21 spotify_player.log_layer | 1 | |||||||||||||||||||||||||||||||||||||||
| 22 spotify_player.state.data | 1 | 11 | ||||||||||||||||||||||||||||||||||||||
| 23 spotify_player.state.queue | 1 | |||||||||||||||||||||||||||||||||||||||
| 24 spotify_player.ui.streaming | 2 | |||||||||||||||||||||||||||||||||||||||
| 25 spotify_player.config.keymap | 2 | 2 | 3 | 3 | ||||||||||||||||||||||||||||||||||||
| 26 spotify_player.event | 1 | 1 | 1 | 3 | ||||||||||||||||||||||||||||||||||||
| 27 spotify_player.event.page | 1 | 1 | 1 | 1 | 1 | |||||||||||||||||||||||||||||||||||
| 28 spotify_player.event.popup | 1 | 1 | 1 | 1 | ||||||||||||||||||||||||||||||||||||
| 29 spotify_player.event.window | 1 | 1 | 2 | 1 | ||||||||||||||||||||||||||||||||||||
| 30 spotify_player.state.player | 4 | 1 | ||||||||||||||||||||||||||||||||||||||
| 31 spotify_player.state.ui | 1 | 1 | 1 | 1 | 1 | 1 | 1 | |||||||||||||||||||||||||||||||||
| 32 spotify_player.config | 5 | 1 | 1 | 1 | ||||||||||||||||||||||||||||||||||||
| 33 spotify_player.state | 1 | 1 | 1 | 1 | ||||||||||||||||||||||||||||||||||||
| 34 spotify_player.auth | 2 | 2 | 1 | |||||||||||||||||||||||||||||||||||||
| 35 spotify_player.cli.handlers | 1 | 2 | 1 | |||||||||||||||||||||||||||||||||||||
| 36 spotify_player.ui.playback | 1 | 1 | ||||||||||||||||||||||||||||||||||||||
| 37 spotify_player.client | 2 | 2 | 1 | 1 | 2 | 6 | 1 | |||||||||||||||||||||||||||||||||
| 38 spotify_player.cli.client | 2 | 6 | 1 | |||||||||||||||||||||||||||||||||||||
| 39 spotify_player.client.handlers | 1 | 1 | ||||||||||||||||||||||||||||||||||||||
| 40 spotify_player.streaming | 2 | 1 | 1 |
5→1 lyric_finder depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in lyric_finder → type in lyric_finder.search) reference.
- Which types
lyric_finder.Client→lyric_finder.search.Result
- Direction
- lyric_finder uses lyric_finder.search. Changing lyric_finder.search can break lyric_finder, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
6→1 lyric_finder.parse depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in lyric_finder.parse → type in lyric_finder.search) reference.
- Which types
lyric_finder.parse.parse$module→lyric_finder.search.Result
- Direction
- lyric_finder.parse uses lyric_finder.search. Changing lyric_finder.search can break lyric_finder.parse, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
7→1 spotify_player depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player → type in lyric_finder.search) reference.
- Which types
spotify_player.spotify_player$module→lyric_finder.search.Result
- Direction
- spotify_player uses lyric_finder.search. Changing lyric_finder.search can break spotify_player, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
8→1 spotify_player.cli depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.cli → type in lyric_finder.search) reference.
- Which types
spotify_player.cli.cli$module→lyric_finder.search.Result
- Direction
- spotify_player.cli uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.cli, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
9→1 spotify_player.client.spotify depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.client.spotify → type in lyric_finder.search) reference.
- Which types
spotify_player.client.spotify.Spotify→lyric_finder.search.Result
- Direction
- spotify_player.client.spotify uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.client.spotify, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
10→1 spotify_player.config.theme depends on lyric_finder.search✕
- Type pairs
- 3 distinct (type in spotify_player.config.theme → type in lyric_finder.search) references.
- Which types
spotify_player.config.theme.Color→lyric_finder.search.Resultspotify_player.config.theme.StyleColor→lyric_finder.search.Resultspotify_player.config.theme.ThemeConfig→lyric_finder.search.Result
- Direction
- spotify_player.config.theme uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.config.theme, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
11→1 spotify_player.media_control depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.media_control → type in lyric_finder.search) reference.
- Which types
spotify_player.media_control.media_control$module→lyric_finder.search.Result
- Direction
- spotify_player.media_control uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.media_control, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
12→1 spotify_player.media_control.windows depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.media_control.windows → type in lyric_finder.search) reference.
- Which types
spotify_player.media_control.windows.DummyWindow→lyric_finder.search.Result
- Direction
- spotify_player.media_control.windows uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.media_control.windows, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
13→1 spotify_player.state.model depends on lyric_finder.search✕
- Type pairs
- 9 distinct (type in spotify_player.state.model → type in lyric_finder.search) references.
- Which types
spotify_player.state.model.Album→lyric_finder.search.Resultspotify_player.state.model.Artist→lyric_finder.search.Resultspotify_player.state.model.Category→lyric_finder.search.Resultspotify_player.state.model.Episode→lyric_finder.search.Resultspotify_player.state.model.Playlist→lyric_finder.search.Resultspotify_player.state.model.PlaylistFolder→lyric_finder.search.Resultspotify_player.state.model.PlaylistFolderItem→lyric_finder.search.Resultspotify_player.state.model.Show→lyric_finder.search.Resultspotify_player.state.model.Track→lyric_finder.search.Result
- Direction
- spotify_player.state.model uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.state.model, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
14→1 spotify_player.ui depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.ui → type in lyric_finder.search) reference.
- Which types
spotify_player.ui.ui$module→lyric_finder.search.Result
- Direction
- spotify_player.ui uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
15→1 spotify_player.ui.cover_image depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.ui.cover_image → type in lyric_finder.search) references.
- Which types
spotify_player.ui.cover_image.CoverImage→lyric_finder.search.Resultspotify_player.ui.cover_image.cover_image$module→lyric_finder.search.Result
- Direction
- spotify_player.ui.cover_image uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.ui.cover_image, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
16→8 spotify_player.cli.commands depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.cli.commands → type in spotify_player.cli) reference.
- Which types
spotify_player.cli.commands.commands$module→spotify_player.cli.Command
- Direction
- spotify_player.cli.commands uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.cli.commands, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
17→1 spotify_player.client.middleware depends on lyric_finder.search✕
- Type pairs
- 5 distinct (type in spotify_player.client.middleware → type in lyric_finder.search) references.
- Which types
spotify_player.client.middleware.CachedResponse→lyric_finder.search.Responsespotify_player.client.middleware.CachedResponse→lyric_finder.search.Resultspotify_player.client.middleware.SpotifyApiMiddleware→lyric_finder.search.Responsespotify_player.client.middleware.SpotifyApiMiddleware→lyric_finder.search.Resultspotify_player.client.middleware.SpotifyApiRequestManager→lyric_finder.search.Result
- Direction
- spotify_player.client.middleware uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.client.middleware, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
17→8 spotify_player.client.middleware depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.client.middleware → type in spotify_player.cli) reference.
- Which types
spotify_player.client.middleware.SpotifyApiMiddleware→spotify_player.cli.Request
- Direction
- spotify_player.client.middleware uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.client.middleware, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
18→13 spotify_player.command depends on spotify_player.state.model✕
- Type pairs
- 13 distinct (type in spotify_player.command → type in spotify_player.state.model) references.
- Which types
spotify_player.command.ActionContext→spotify_player.state.model.Albumspotify_player.command.ActionContext→spotify_player.state.model.Artistspotify_player.command.ActionContext→spotify_player.state.model.Episodespotify_player.command.ActionContext→spotify_player.state.model.Playlistspotify_player.command.ActionContext→spotify_player.state.model.PlaylistFolderItemspotify_player.command.ActionContext→spotify_player.state.model.Showspotify_player.command.ActionContext→spotify_player.state.model.Trackspotify_player.command.command$module→spotify_player.state.model.Albumspotify_player.command.command$module→spotify_player.state.model.Artistspotify_player.command.command$module→spotify_player.state.model.Episodespotify_player.command.command$module→spotify_player.state.model.Playlistspotify_player.command.command$module→spotify_player.state.model.Showspotify_player.command.command$module→spotify_player.state.model.Track
- Direction
- spotify_player.command uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.command, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
19→1 spotify_player.event.clipboard depends on lyric_finder.search✕
- Type pairs
- 5 distinct (type in spotify_player.event.clipboard → type in lyric_finder.search) references.
- Which types
spotify_player.event.clipboard.ClipboardProvider→lyric_finder.search.Resultspotify_player.event.clipboard.CommandProvider→lyric_finder.search.Resultspotify_player.event.clipboard.NopProvider→lyric_finder.search.Resultspotify_player.event.clipboard.WindowsProvider→lyric_finder.search.Resultspotify_player.event.clipboard.clipboard$module→lyric_finder.search.Result
- Direction
- spotify_player.event.clipboard uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.event.clipboard, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
19→8 spotify_player.event.clipboard depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.event.clipboard → type in spotify_player.cli) reference.
- Which types
spotify_player.event.clipboard.CommandProvider→spotify_player.cli.Command
- Direction
- spotify_player.event.clipboard uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.event.clipboard, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
20→1 spotify_player.key depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.key → type in lyric_finder.search) references.
- Which types
spotify_player.key.Key→lyric_finder.search.Resultspotify_player.key.KeySequence→lyric_finder.search.Result
- Direction
- spotify_player.key uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.key, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
20→8 spotify_player.key depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.key → type in spotify_player.cli) reference.
- Which types
spotify_player.key.KeySequence→spotify_player.cli.Key
- Direction
- spotify_player.key uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.key, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
21→13 spotify_player.log_layer depends on spotify_player.state.model✕
- Type pairs
- 1 distinct (type in spotify_player.log_layer → type in spotify_player.state.model) reference.
- Which types
spotify_player.log_layer.BufferLayer→spotify_player.state.model.Context
- Direction
- spotify_player.log_layer uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.log_layer, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
22→1 spotify_player.state.data depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.state.data → type in lyric_finder.search) reference.
- Which types
spotify_player.state.data.data$module→lyric_finder.search.Result
- Direction
- spotify_player.state.data uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.state.data, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
22→13 spotify_player.state.data depends on spotify_player.state.model✕
- Type pairs
- 11 distinct (type in spotify_player.state.data → type in spotify_player.state.model) references.
- Which types
spotify_player.state.data.AppData→spotify_player.state.model.ContextIdspotify_player.state.data.AppData→spotify_player.state.model.Trackspotify_player.state.data.BrowseData→spotify_player.state.model.Categoryspotify_player.state.data.MemoryCaches→spotify_player.state.model.SearchResultsspotify_player.state.data.UserData→spotify_player.state.model.Albumspotify_player.state.data.UserData→spotify_player.state.model.Artistspotify_player.state.data.UserData→spotify_player.state.model.Playlistspotify_player.state.data.UserData→spotify_player.state.model.PlaylistFolderItemspotify_player.state.data.UserData→spotify_player.state.model.PlaylistFolderNodespotify_player.state.data.UserData→spotify_player.state.model.Showspotify_player.state.data.UserData→spotify_player.state.model.Track
- Direction
- spotify_player.state.data uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.state.data, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
23→13 spotify_player.state.queue depends on spotify_player.state.model✕
- Type pairs
- 1 distinct (type in spotify_player.state.queue → type in spotify_player.state.model) reference.
- Which types
spotify_player.state.queue.CustomQueue→spotify_player.state.model.ContextId
- Direction
- spotify_player.state.queue uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.state.queue, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
24→10 spotify_player.ui.streaming depends on spotify_player.config.theme✕
- Type pairs
- 2 distinct (type in spotify_player.ui.streaming → type in spotify_player.config.theme) references.
- Which types
spotify_player.ui.streaming.streaming$module→spotify_player.config.theme.Colorspotify_player.ui.streaming.streaming$module→spotify_player.config.theme.Theme
- Direction
- spotify_player.ui.streaming uses spotify_player.config.theme. Changing spotify_player.config.theme can break spotify_player.ui.streaming, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
25→1 spotify_player.config.keymap depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.config.keymap → type in lyric_finder.search) references.
- Which types
spotify_player.config.keymap.Keymap→lyric_finder.search.Resultspotify_player.config.keymap.KeymapConfig→lyric_finder.search.Result
- Direction
- spotify_player.config.keymap uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.config.keymap, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
25→8 spotify_player.config.keymap depends on spotify_player.cli✕
- Type pairs
- 2 distinct (type in spotify_player.config.keymap → type in spotify_player.cli) references.
- Which types
spotify_player.config.keymap.Keymap→spotify_player.cli.Commandspotify_player.config.keymap.KeymapConfig→spotify_player.cli.Command
- Direction
- spotify_player.config.keymap uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.config.keymap, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
25→18 spotify_player.config.keymap depends on spotify_player.command✕
- Type pairs
- 3 distinct (type in spotify_player.config.keymap → type in spotify_player.command) references.
- Which types
spotify_player.config.keymap.ActionMap→spotify_player.command.Actionspotify_player.config.keymap.ActionMap→spotify_player.command.ActionTargetspotify_player.config.keymap.KeymapConfig→spotify_player.command.CommandOrAction
- Direction
- spotify_player.config.keymap uses spotify_player.command. Changing spotify_player.command can break spotify_player.config.keymap, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
25→20 spotify_player.config.keymap depends on spotify_player.key✕
- Type pairs
- 3 distinct (type in spotify_player.config.keymap → type in spotify_player.key) references.
- Which types
spotify_player.config.keymap.ActionMap→spotify_player.key.KeySequencespotify_player.config.keymap.Keymap→spotify_player.key.KeySequencespotify_player.config.keymap.KeymapConfig→spotify_player.key.KeySequence
- Direction
- spotify_player.config.keymap uses spotify_player.key. Changing spotify_player.key can break spotify_player.config.keymap, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
26→1 spotify_player.event depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.event → type in lyric_finder.search) reference.
- Which types
spotify_player.event.event$module→lyric_finder.search.Result
- Direction
- spotify_player.event uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.event, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
26→8 spotify_player.event depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.event → type in spotify_player.cli) reference.
- Which types
spotify_player.event.event$module→spotify_player.cli.Command
- Direction
- spotify_player.event uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.event, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
26→13 spotify_player.event depends on spotify_player.state.model✕
- Type pairs
- 1 distinct (type in spotify_player.event → type in spotify_player.state.model) reference.
- Which types
spotify_player.event.event$module→spotify_player.state.model.Artist
- Direction
- spotify_player.event uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.event, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
26→18 spotify_player.event depends on spotify_player.command✕
- Type pairs
- 3 distinct (type in spotify_player.event → type in spotify_player.command) references.
- Which types
spotify_player.event.event$module→spotify_player.command.Actionspotify_player.event.event$module→spotify_player.command.ActionContextspotify_player.event.event$module→spotify_player.command.ActionTarget
- Direction
- spotify_player.event uses spotify_player.command. Changing spotify_player.command can break spotify_player.event, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
27→1 spotify_player.event.page depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.event.page → type in lyric_finder.search) reference.
- Which types
spotify_player.event.page.page$module→lyric_finder.search.Result
- Direction
- spotify_player.event.page uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.event.page, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
27→3 spotify_player.event.page depends on spotify_player.state.ui.page✕
- Type pairs
- 1 distinct (type in spotify_player.event.page → type in spotify_player.state.ui.page) reference.
- Which types
spotify_player.event.page.page$module→spotify_player.state.ui.page.PageState
- Direction
- spotify_player.event.page uses spotify_player.state.ui.page. Changing spotify_player.state.ui.page can break spotify_player.event.page, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
27→8 spotify_player.event.page depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.event.page → type in spotify_player.cli) reference.
- Which types
spotify_player.event.page.page$module→spotify_player.cli.Command
- Direction
- spotify_player.event.page uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.event.page, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
27→18 spotify_player.event.page depends on spotify_player.command✕
- Type pairs
- 1 distinct (type in spotify_player.event.page → type in spotify_player.command) reference.
- Which types
spotify_player.event.page.page$module→spotify_player.command.Action
- Direction
- spotify_player.event.page uses spotify_player.command. Changing spotify_player.command can break spotify_player.event.page, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
27→20 spotify_player.event.page depends on spotify_player.key✕
- Type pairs
- 1 distinct (type in spotify_player.event.page → type in spotify_player.key) reference.
- Which types
spotify_player.event.page.page$module→spotify_player.key.KeySequence
- Direction
- spotify_player.event.page uses spotify_player.key. Changing spotify_player.key can break spotify_player.event.page, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
28→1 spotify_player.event.popup depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.event.popup → type in lyric_finder.search) reference.
- Which types
spotify_player.event.popup.popup$module→lyric_finder.search.Result
- Direction
- spotify_player.event.popup uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.event.popup, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
28→4 spotify_player.event.popup depends on spotify_player.state.ui.popup✕
- Type pairs
- 1 distinct (type in spotify_player.event.popup → type in spotify_player.state.ui.popup) reference.
- Which types
spotify_player.event.popup.popup$module→spotify_player.state.ui.popup.ConfirmableAction
- Direction
- spotify_player.event.popup uses spotify_player.state.ui.popup. Changing spotify_player.state.ui.popup can break spotify_player.event.popup, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
28→8 spotify_player.event.popup depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.event.popup → type in spotify_player.cli) reference.
- Which types
spotify_player.event.popup.popup$module→spotify_player.cli.Command
- Direction
- spotify_player.event.popup uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.event.popup, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
28→20 spotify_player.event.popup depends on spotify_player.key✕
- Type pairs
- 1 distinct (type in spotify_player.event.popup → type in spotify_player.key) reference.
- Which types
spotify_player.event.popup.popup$module→spotify_player.key.KeySequence
- Direction
- spotify_player.event.popup uses spotify_player.key. Changing spotify_player.key can break spotify_player.event.popup, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
29→1 spotify_player.event.window depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.event.window → type in lyric_finder.search) reference.
- Which types
spotify_player.event.window.window$module→lyric_finder.search.Result
- Direction
- spotify_player.event.window uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.event.window, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
29→8 spotify_player.event.window depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.event.window → type in spotify_player.cli) reference.
- Which types
spotify_player.event.window.window$module→spotify_player.cli.Command
- Direction
- spotify_player.event.window uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.event.window, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
29→13 spotify_player.event.window depends on spotify_player.state.model✕
- Type pairs
- 2 distinct (type in spotify_player.event.window → type in spotify_player.state.model) references.
- Which types
spotify_player.event.window.PlaylistTrackSelection→spotify_player.state.model.Trackspotify_player.event.window.window$module→spotify_player.state.model.ContextId
- Direction
- spotify_player.event.window uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.event.window, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
29→18 spotify_player.event.window depends on spotify_player.command✕
- Type pairs
- 1 distinct (type in spotify_player.event.window → type in spotify_player.command) reference.
- Which types
spotify_player.event.window.window$module→spotify_player.command.Action
- Direction
- spotify_player.event.window uses spotify_player.command. Changing spotify_player.command can break spotify_player.event.window, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
30→13 spotify_player.state.player depends on spotify_player.state.model✕
- Type pairs
- 4 distinct (type in spotify_player.state.player → type in spotify_player.state.model) references.
- Which types
spotify_player.state.player.PlayerState→spotify_player.state.model.ContextIdspotify_player.state.player.PlayerState→spotify_player.state.model.Devicespotify_player.state.player.PlayerState→spotify_player.state.model.PlaybackMetadataspotify_player.state.player.PlayerState→spotify_player.state.model.TracksId
- Direction
- spotify_player.state.player uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.state.player, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
30→23 spotify_player.state.player depends on spotify_player.state.queue✕
- Type pairs
- 1 distinct (type in spotify_player.state.player → type in spotify_player.state.queue) reference.
- Which types
spotify_player.state.player.PlayerState→spotify_player.state.queue.CustomQueue
- Direction
- spotify_player.state.player uses spotify_player.state.queue. Changing spotify_player.state.queue can break spotify_player.state.player, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→1 spotify_player.state.ui depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in lyric_finder.search) reference.
- Which types
spotify_player.state.ui.ImageRenderInfo→lyric_finder.search.Result
- Direction
- spotify_player.state.ui uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→3 spotify_player.state.ui depends on spotify_player.state.ui.page✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.state.ui.page) reference.
- Which types
spotify_player.state.ui.UIState→spotify_player.state.ui.page.PageState
- Direction
- spotify_player.state.ui uses spotify_player.state.ui.page. Changing spotify_player.state.ui.page can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→4 spotify_player.state.ui depends on spotify_player.state.ui.popup✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.state.ui.popup) reference.
- Which types
spotify_player.state.ui.UIState→spotify_player.state.ui.popup.PopupState
- Direction
- spotify_player.state.ui uses spotify_player.state.ui.popup. Changing spotify_player.state.ui.popup can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→10 spotify_player.state.ui depends on spotify_player.config.theme✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.config.theme) reference.
- Which types
spotify_player.state.ui.UIState→spotify_player.config.theme.Theme
- Direction
- spotify_player.state.ui uses spotify_player.config.theme. Changing spotify_player.config.theme can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→14 spotify_player.state.ui depends on spotify_player.ui✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.ui) reference.
- Which types
spotify_player.state.ui.UIState→spotify_player.ui.Orientation
- Direction
- spotify_player.state.ui uses spotify_player.ui. Changing spotify_player.ui can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→15 spotify_player.state.ui depends on spotify_player.ui.cover_image✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.ui.cover_image) reference.
- Which types
spotify_player.state.ui.ImageRenderInfo→spotify_player.ui.cover_image.CoverImage
- Direction
- spotify_player.state.ui uses spotify_player.ui.cover_image. Changing spotify_player.ui.cover_image can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
31→20 spotify_player.state.ui depends on spotify_player.key✕
- Type pairs
- 1 distinct (type in spotify_player.state.ui → type in spotify_player.key) reference.
- Which types
spotify_player.state.ui.UIState→spotify_player.key.KeySequence
- Direction
- spotify_player.state.ui uses spotify_player.key. Changing spotify_player.key can break spotify_player.state.ui, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
32→1 spotify_player.config depends on lyric_finder.search✕
- Type pairs
- 5 distinct (type in spotify_player.config → type in lyric_finder.search) references.
- Which types
spotify_player.config.AppConfig→lyric_finder.search.Resultspotify_player.config.Command→lyric_finder.search.Resultspotify_player.config.Configs→lyric_finder.search.Resultspotify_player.config.LayoutConfig→lyric_finder.search.Resultspotify_player.config.config$module→lyric_finder.search.Result
- Direction
- spotify_player.config uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.config, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
32→8 spotify_player.config depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.config → type in spotify_player.cli) reference.
- Which types
spotify_player.config.AppConfig→spotify_player.cli.Command
- Direction
- spotify_player.config uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.config, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
32→10 spotify_player.config depends on spotify_player.config.theme✕
- Type pairs
- 1 distinct (type in spotify_player.config → type in spotify_player.config.theme) reference.
- Which types
spotify_player.config.Configs→spotify_player.config.theme.ThemeConfig
- Direction
- spotify_player.config uses spotify_player.config.theme. Changing spotify_player.config.theme can break spotify_player.config, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
32→25 spotify_player.config depends on spotify_player.config.keymap✕
- Type pairs
- 1 distinct (type in spotify_player.config → type in spotify_player.config.keymap) reference.
- Which types
spotify_player.config.Configs→spotify_player.config.keymap.KeymapConfig
- Direction
- spotify_player.config uses spotify_player.config.keymap. Changing spotify_player.config.keymap can break spotify_player.config, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
33→22 spotify_player.state depends on spotify_player.state.data✕
- Type pairs
- 1 distinct (type in spotify_player.state → type in spotify_player.state.data) reference.
- Which types
spotify_player.state.State→spotify_player.state.data.AppData
- Direction
- spotify_player.state uses spotify_player.state.data. Changing spotify_player.state.data can break spotify_player.state, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
33→24 spotify_player.state depends on spotify_player.ui.streaming✕
- Type pairs
- 1 distinct (type in spotify_player.state → type in spotify_player.ui.streaming) reference.
- Which types
spotify_player.state.State→spotify_player.ui.streaming.VisBands
- Direction
- spotify_player.state uses spotify_player.ui.streaming. Changing spotify_player.ui.streaming can break spotify_player.state, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
33→30 spotify_player.state depends on spotify_player.state.player✕
- Type pairs
- 1 distinct (type in spotify_player.state → type in spotify_player.state.player) reference.
- Which types
spotify_player.state.State→spotify_player.state.player.PlayerState
- Direction
- spotify_player.state uses spotify_player.state.player. Changing spotify_player.state.player can break spotify_player.state, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
33→31 spotify_player.state depends on spotify_player.state.ui✕
- Type pairs
- 1 distinct (type in spotify_player.state → type in spotify_player.state.ui) reference.
- Which types
spotify_player.state.State→spotify_player.state.ui.UIState
- Direction
- spotify_player.state uses spotify_player.state.ui. Changing spotify_player.state.ui can break spotify_player.state, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
34→1 spotify_player.auth depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.auth → type in lyric_finder.search) references.
- Which types
spotify_player.auth.AuthConfig→lyric_finder.search.Resultspotify_player.auth.auth$module→lyric_finder.search.Result
- Direction
- spotify_player.auth uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.auth, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
34→9 spotify_player.auth depends on spotify_player.client.spotify✕
- Type pairs
- 2 distinct (type in spotify_player.auth → type in spotify_player.client.spotify) references.
- Which types
spotify_player.auth.auth$module→spotify_player.client.spotify.PkceWebApiClientspotify_player.auth.auth$module→spotify_player.client.spotify.WebApiClient
- Direction
- spotify_player.auth uses spotify_player.client.spotify. Changing spotify_player.client.spotify can break spotify_player.auth, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
34→32 spotify_player.auth depends on spotify_player.config✕
- Type pairs
- 1 distinct (type in spotify_player.auth → type in spotify_player.config) reference.
- Which types
spotify_player.auth.AuthConfig→spotify_player.config.Configs
- Direction
- spotify_player.auth uses spotify_player.config. Changing spotify_player.config can break spotify_player.auth, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
35→1 spotify_player.cli.handlers depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.cli.handlers → type in lyric_finder.search) reference.
- Which types
spotify_player.cli.handlers.handlers$module→lyric_finder.search.Result
- Direction
- spotify_player.cli.handlers uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.cli.handlers, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
35→8 spotify_player.cli.handlers depends on spotify_player.cli✕
- Type pairs
- 2 distinct (type in spotify_player.cli.handlers → type in spotify_player.cli) references.
- Which types
spotify_player.cli.handlers.handlers$module→spotify_player.cli.IdOrNamespotify_player.cli.handlers.handlers$module→spotify_player.cli.Request
- Direction
- spotify_player.cli.handlers uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.cli.handlers, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
35→32 spotify_player.cli.handlers depends on spotify_player.config✕
- Type pairs
- 1 distinct (type in spotify_player.cli.handlers → type in spotify_player.config) reference.
- Which types
spotify_player.cli.handlers.handlers$module→spotify_player.config.Configs
- Direction
- spotify_player.cli.handlers uses spotify_player.config. Changing spotify_player.config can break spotify_player.cli.handlers, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
36→13 spotify_player.ui.playback depends on spotify_player.state.model✕
- Type pairs
- 1 distinct (type in spotify_player.ui.playback → type in spotify_player.state.model) reference.
- Which types
spotify_player.ui.playback.playback$module→spotify_player.state.model.PlaybackMetadata
- Direction
- spotify_player.ui.playback uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.ui.playback, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
36→32 spotify_player.ui.playback depends on spotify_player.config✕
- Type pairs
- 1 distinct (type in spotify_player.ui.playback → type in spotify_player.config) reference.
- Which types
spotify_player.ui.playback.playback$module→spotify_player.config.Configs
- Direction
- spotify_player.ui.playback uses spotify_player.config. Changing spotify_player.config can break spotify_player.ui.playback, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→1 spotify_player.client depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.client → type in lyric_finder.search) references.
- Which types
spotify_player.client.AppClient→lyric_finder.search.Resultspotify_player.client.client$module→lyric_finder.search.Result
- Direction
- spotify_player.client uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→2 spotify_player.client depends on spotify_player.client.request✕
- Type pairs
- 2 distinct (type in spotify_player.client → type in spotify_player.client.request) references.
- Which types
spotify_player.client.AppClient→spotify_player.client.request.ClientRequestspotify_player.client.AppClient→spotify_player.client.request.PlayerRequest
- Direction
- spotify_player.client uses spotify_player.client.request. Changing spotify_player.client.request can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→5 spotify_player.client depends on lyric_finder✕
- Type pairs
- 1 distinct (type in spotify_player.client → type in lyric_finder) reference.
- Which types
spotify_player.client.AppClient→lyric_finder.Client
- Direction
- spotify_player.client uses lyric_finder. Changing lyric_finder can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→8 spotify_player.client depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.client → type in spotify_player.cli) reference.
- Which types
spotify_player.client.AppClient→spotify_player.cli.ItemId
- Direction
- spotify_player.client uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→9 spotify_player.client depends on spotify_player.client.spotify✕
- Type pairs
- 2 distinct (type in spotify_player.client → type in spotify_player.client.spotify) references.
- Which types
spotify_player.client.AppClient→spotify_player.client.spotify.Spotifyspotify_player.client.AppClient→spotify_player.client.spotify.WebApiClient
- Direction
- spotify_player.client uses spotify_player.client.spotify. Changing spotify_player.client.spotify can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→13 spotify_player.client depends on spotify_player.state.model✕
- Type pairs
- 6 distinct (type in spotify_player.client → type in spotify_player.state.model) references.
- Which types
spotify_player.client.AppClient→spotify_player.state.model.Albumspotify_player.client.AppClient→spotify_player.state.model.Devicespotify_player.client.AppClient→spotify_player.state.model.Itemspotify_player.client.AppClient→spotify_player.state.model.Playbackspotify_player.client.AppClient→spotify_player.state.model.PlaybackMetadataspotify_player.client.client$module→spotify_player.state.model.Track
- Direction
- spotify_player.client uses spotify_player.state.model. Changing spotify_player.state.model can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
37→34 spotify_player.client depends on spotify_player.auth✕
- Type pairs
- 1 distinct (type in spotify_player.client → type in spotify_player.auth) reference.
- Which types
spotify_player.client.AppClient→spotify_player.auth.AuthConfig
- Direction
- spotify_player.client uses spotify_player.auth. Changing spotify_player.auth can break spotify_player.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
38→1 spotify_player.cli.client depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.cli.client → type in lyric_finder.search) references.
- Which types
spotify_player.cli.client.client$module→lyric_finder.search.Responsespotify_player.cli.client.client$module→lyric_finder.search.Result
- Direction
- spotify_player.cli.client uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.cli.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
38→8 spotify_player.cli.client depends on spotify_player.cli✕
- Type pairs
- 6 distinct (type in spotify_player.cli.client → type in spotify_player.cli) references.
- Which types
spotify_player.cli.client.client$module→spotify_player.cli.Commandspotify_player.cli.client.client$module→spotify_player.cli.IdOrNamespotify_player.cli.client.client$module→spotify_player.cli.ItemTypespotify_player.cli.client.client$module→spotify_player.cli.Keyspotify_player.cli.client.client$module→spotify_player.cli.PlaylistCommandspotify_player.cli.client.client$module→spotify_player.cli.Request
- Direction
- spotify_player.cli.client uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.cli.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
38→37 spotify_player.cli.client depends on spotify_player.client✕
- Type pairs
- 1 distinct (type in spotify_player.cli.client → type in spotify_player.client) reference.
- Which types
spotify_player.cli.client.client$module→spotify_player.client.AppClient
- Direction
- spotify_player.cli.client uses spotify_player.client. Changing spotify_player.client can break spotify_player.cli.client, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
39→1 spotify_player.client.handlers depends on lyric_finder.search✕
- Type pairs
- 1 distinct (type in spotify_player.client.handlers → type in lyric_finder.search) reference.
- Which types
spotify_player.client.handlers.handlers$module→lyric_finder.search.Result
- Direction
- spotify_player.client.handlers uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.client.handlers, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
39→37 spotify_player.client.handlers depends on spotify_player.client✕
- Type pairs
- 1 distinct (type in spotify_player.client.handlers → type in spotify_player.client) reference.
- Which types
spotify_player.client.handlers.handlers$module→spotify_player.client.AppClient
- Direction
- spotify_player.client.handlers uses spotify_player.client. Changing spotify_player.client can break spotify_player.client.handlers, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
40→1 spotify_player.streaming depends on lyric_finder.search✕
- Type pairs
- 2 distinct (type in spotify_player.streaming → type in lyric_finder.search) references.
- Which types
spotify_player.streaming.PlayerEvent→lyric_finder.search.Resultspotify_player.streaming.streaming$module→lyric_finder.search.Result
- Direction
- spotify_player.streaming uses lyric_finder.search. Changing lyric_finder.search can break spotify_player.streaming, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
40→8 spotify_player.streaming depends on spotify_player.cli✕
- Type pairs
- 1 distinct (type in spotify_player.streaming → type in spotify_player.cli) reference.
- Which types
spotify_player.streaming.streaming$module→spotify_player.cli.Command
- Direction
- spotify_player.streaming uses spotify_player.cli. Changing spotify_player.cli can break spotify_player.streaming, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
40→37 spotify_player.streaming depends on spotify_player.client✕
- Type pairs
- 1 distinct (type in spotify_player.streaming → type in spotify_player.client) reference.
- Which types
spotify_player.streaming.streaming$module→spotify_player.client.AppClient
- Direction
- spotify_player.streaming uses spotify_player.client. Changing spotify_player.client can break spotify_player.streaming, not the reverse.
- Position
- Below the diagonal — points down the layering, which is what you want.
At a glance — Code Health
At a glance — Architecture
At a glance — Maturity
At a glance — Readiness
At a glance — Security
At a glance — Event Sourcing
At a glance — Performance
Security & Compliance — OWASP Top-10 mapping
| OWASP category | Findings | Severity |
|---|---|---|
| A03:2021 — Injection | 21 | High / Critical |
| A06:2021 — Vulnerable & Outdated Components | 6 | Medium |
| A05:2021 — Security Misconfiguration | 5 | High / Critical |
Roadmap
First, enable automated dependency scanning and security checks to proactively identify vulnerabilities and performance regressions. Second, implement a release gating mechanism, such as draft releases or manual approval, to prevent faulty builds from reaching users and ensure safe rollback capabilities. Third, maintain a clear changelog for every release to track shipped changes and improve transparency. Finally, adopt OpenTelemetry for comprehensive observability and establish a health-check endpoint to monitor system status, while documenting key architectural decisions in a dedicated directory to preserve institutional knowledge.
| Do this | Helps | Effort | Dimension |
|---|---|---|---|
| Resolve the 1 No ADRs found finding(s) in ADR Quality. | +3.7 pts | Low | ADR Quality |
| Enable Dependabot/Renovate or a dependency-review gate. | +5.1 pts | Medium | Security & performance tooling |
| Nothing pauses a release for a human: publish as a draft release (or gate the release job on a protected tag/manual dispatch) so a bad build can be stopped before users can download it. | +5.1 pts | Medium | Deployment & Rollback |
| Keep a changelog (e.g. Keep-a-Changelog) recording what shipped in each release. | +5.1 pts | Medium | Release Hygiene |
| Consider OpenTelemetry tracing/metrics (opentelemetry with tracing-opentelemetry) and a health-check endpoint (a /health route on your axum/actix router) for operability. | +4.9 pts | Medium | Observability |
| Record significant decisions one document per decision — dated, stating the context, the decision and its consequences — and keep them together wherever your design docs already live (a conventional `docs/adr/` tree, with each file named `NNNN-title` in whatever markup those docs already use, is the most discoverable form). | +3.8 pts | Medium | Architecture documentation |
| Add a 'Testing' section to the root README — how to run the test suite. | +3.7 pts | Medium | Documentation (README) |
| Resolve the 4 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED (2), REDACTED, REDACTED. | +1.0 pts | Low | Static Analysis (SAST) |
File quality
| File | Score | Band | Worst signal |
|---|---|---|---|
| REDACTED | 2.3 | Slop | Static Analysis (SAST): High: REDACTED |
| REDACTED | 2.7 | Slop | IaC & Container Security: High IaC: REDACTED |
| REDACTED | 4.5 | Mixed | Static Analysis (SAST): High: REDACTED |
| REDACTED | 4.8 | Mixed | Static Analysis (SAST): High: REDACTED |
| REDACTED | 5.1 | Mixed | Static Analysis (SAST): High: REDACTED |
| REDACTED | 5.9 | Mixed | Dependency Vulnerabilities: Medium CVE: REDACTED |
| spotify_player/src/event/mod.rs | 6.0 | Mixed | Explicit Debt: TodoComment |
| spotify_player/src/client/mod.rs | 6.0 | Mixed | Explicit Debt: TodoComment |
| spotify_player/src/ui/page.rs | 7.0 | Near-clean | Cyclomatic Complexity: spotify_player::ui::page::render_search_page (cyclomatic 27) |
| spotify_player/src/cli/client.rs | 7.0 | Near-clean | Cyclomatic Complexity: spotify_player::cli::client::handle_playback_request (cyclomatic 23) |
| spotify_player/src/config/mod.rs | 7.0 | Near-clean | God Classes: TooManyFields: AppConfig |
| spotify_player/src/event/window.rs | 7.0 | Near-clean | Cyclomatic Complexity: spotify_player::event::window::handle_command_for_focused_context_window (cyclomatic 19) |
| spotify_player/src/ui/playback.rs | 7.0 | Near-clean | Cyclomatic Complexity: spotify_player::ui::playback::construct_playback_text (cyclomatic 35) |
| spotify_player/src/event/popup.rs | 7.1 | Near-clean | Cyclomatic Complexity: spotify_player::event::popup::handle_key_sequence_for_popup (cyclomatic 26) |
| REDACTED | 7.2 | Near-clean | IaC & Container Security: High IaC: REDACTED |
| spotify_player/src/command.rs | 7.3 | Near-clean | Explicit Debt: TodoComment |
| spotify_player/src/event/page.rs | 7.4 | Near-clean | Cyclomatic Complexity: spotify_player::event::page::handle_key_sequence_for_search_page (cyclomatic 32) |
| spotify_player/src/streaming.rs | 7.8 | Near-clean | Cyclomatic Complexity: spotify_player::streaming::new_connection (cyclomatic 20) |
| spotify_player/src/client/handlers.rs | 7.8 | Near-clean | Cyclomatic Complexity: spotify_player::client::handlers::handle_page_change_event (cyclomatic 17) |
| spotify_player/src/state/queue.rs | 7.8 | Near-clean | Cognitive Complexity: CustomQueue::set_shuffle_mode (cognitive 17) |
How the grades work
A definite problem that already costs you something and drags the score down: a missing authorisation check, a dependency with a known exploit, a build that does not reproduce. Failure here tends to cause failures elsewhere.
Likely wrong, but not failing yet. It degrades the codebase over a longer horizon and can cause failures elsewhere — not urgent this week, not something to carry for two years either.
Recorded, with no effect on how the codebase functions. Present so the survey is complete, not because it needs doing.
Something this survey could not settle from the outside, and which could be critical or serious. Either a control was required and no positive evidence of it exists in the repository — a backup job that nothing shows was ever restored from proves nothing about restores — or our own analysis could not run over that part of the tree. This is not a clean result. These are excluded from the score rather than awarded a pass, so the number on the cover neither rewards nor penalises them: if you act on this survey without resolving them, you carry that risk yourself. Each one is named under Limitations.
Methodology & how to trust this report
Watchdog is a deep, periodic assessment — run each sprint, monthly, or quarterly, taking the time to go wider and deeper than a quick check and surfacing in one coherent report what you'd otherwise piece together from a dozen separate tools. It scores deterministically: the same commit yields the same score, every run. 36 of 41 evaluated dimensions are computed purely by tools and static analysis (confidence 1.0); 5 documentation/naming judgement(s) are LLM-assisted and labelled advisory. Overall confidence is 0.9 — the weighted average across measured dimensions; it falls as more of the score leans on LLM-assisted judgement and rises when it's fully tool-backed.
What we checked — 41 dimensions across the health lenses
- Can you open the finding? Real findings cite a repo-relative file and line you can open at the cited line — never an absolute scratch path. Here, 146 of 159 do; the remainder are repo-wide signals — a dimension-level measurement, not a single line.
- Is there a tool behind the number? Every score below names the method that produced it — Roslyn, git, a scanner, or (for a handful of documentation/naming dimensions) an LLM labelled sampled · advisory — not a narrative.
- Does re-running give the same result? Run it again on the same commit and the score — and this report, byte for byte — is identical. A report whose numbers move between runs is describing the run, not the code.
Tools & methods
| Method | Backs | Version | Evaluator |
|---|---|---|---|
| Roslyn static analysis | Complexity, cohesion, coupling, dead code, API surface, layering | 5.3.0 | ✓ deterministic |
| Native secret scanner | Hardcoded secrets / credentials | 1.0.0 | ✓ deterministic |
| Watchdog duplication detector (in-process) | Code duplication | 1.0.0 | ✓ deterministic |
| Coverage (coverlet / dotnet-coverage) | Line & branch coverage | 10.0.400 | ✓ deterministic |
| NuGet / dotnet | Outdated, vulnerable & deprecated dependencies | 10.0.400 | ✓ deterministic |
| git / LibGit2Sharp | Churn hotspots, knowledge concentration, history | 2.43.0 · 0.31.0 | ✓ deterministic |
| gitleaks · semgrep · trivy · checkov | Secrets in history, SAST, CVEs, IaC & container, PII / GDPR | 1.86.0 · 0.69.3 · 3.2.533 | ✓ deterministic |
| LLM (sampled · advisory) | Documentation quality, ADR conformance, naming — sampled over a bounded sample; advisory, never a deterministic measurement | Local LLM | ◐ LLM · sampled · advisory |
Run transparency — what happened this run
- D8 Code Coverage — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Coverage NOT MEASURED: test source is present (.rs) but the built-in coverage collector has no runner for this repository's ecosystem — so this suite was never executed by it. Not scored — this is a gap in the analyzer's language coverage, not a defect in the repo. To have real coverage read, produce a coverage report in a standard format (lcov — `cargo install cargo-llvm-cov`, then `cargo llvm-cov --lcov --output-path lcov.info`) and commit it — a hosted scan measures a clone of the repository, so a report that exists only in a working tree, a CI runner's or your own, never reaches it; the artefact is commonly gitignored, so `git add -f` that one file (or un-ignore its path) and commit it alongside the code it measures. You can widen what we reach: optional: produce a coverage report in a standard format (lcov — `cargo install cargo-llvm-cov`, then `cargo llvm-cov --lcov --output-path lcov.info`) and commit it — a hosted scan measures a clone of the repository, so a report that exists only in a working tree, a CI runner's or your own, never reaches it; the artefact is commonly gitignored, so `git add -f` that one file (or un-ignore its path) and commit it alongside the code it measures — then the real number is read on the next scan.
- D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test source is present (.rs) and this repository declares a Cargo test suite (repository root, 6 test files), but it was not re-run: no test result was produced. Not scored — this is a gap in the analyzer's language coverage, not a finding about this repository.
- D12 Dependency Hygiene — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Not scored — 53 direct Cargo declaration(s) were read, but the outdated signal needs crates.io, which could not be reached on this run, so this dimension's own question is only partly answered. NOT a finding that these dependencies are current or healthy.
- D14 License Compliance — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. License Compliance couldn't be assessed within its 15-minute budget on a solution this large — not included in this run.
- D44 Platform End-of-Life — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This dimension reads a project's own statement about the platform it runs on: a TargetFramework in a .NET project file, a .nvmrc or .python-version, a capped requires-python, a Rust toolchain file or Cargo.toml rust-version, a .go-version, .java-version, .ruby-version, .tool-versions or .sdkmanrc, a go.mod go directive, a Maven or Gradle Java level or toolchain, a Gemfile's ruby directive, a mix.exs elixir requirement, a rebar.config minimum_otp_vsn, a pubspec.yaml SDK constraint, a build.sbt scalaVersion, or a framework major pinned by a dependency constraint. This repository carries none of them, so nothing about its platform was established. That is a gap in this analyzer's coverage, NOT a finding that the platform is supported — a language whose runtime is declared elsewhere (Package.swift, a REDACTED) is simply not read here yet.
- AX1 Captive dependencies — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check reads Microsoft.Extensions.DependencyInjection registrations in C# and Spring beans in Java/Kotlin only, and no container it models, or knows cannot hold a captive, was found in this repository's source, so it had nothing of this repository's product to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- AX6 Interface segregation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is computed over the public interfaces this run's compilations declare, and none was loaded, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- C1 Data Protection — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These personal data controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks personal data controls.
- C2 Access Controls — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These authorization controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks authorization controls.
- C3 Audit Trail — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These audit controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks audit controls.
- C4 Data Retention — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These retention controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks retention controls.
- C5 Data-Subject Rights — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These data-subject rights controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks data-subject rights controls.
- ED5 Idempotency — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check finds retry-prone mutations by walking the repository's declared types, and NONE was loaded on this run, so it had nothing to look at. That is a limit of the analyzer's reach — it reads .NET projects — not a finding that this repository has no command handlers or message consumers.
- GD1 Unfinished & placeholder code — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- IC1 Incompleteness & stubs — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- P5 DR & Backup — not measured this run — This is a true statement about the repository that carries nothing for its owner to act on, so it is reported here rather than as a defect in their code. No backup/snapshot/replication config, RTO/RPO or restore-procedure documentation was found — and no production persistence was detected either (no data-access packages, no data-store services, no database resources), so there is nothing in this repository whose loss a DR control would recover. If this system's data lives in a platform or ops repo we can't see, that's where the DR evidence belongs.
- S1 Web-Security Posture — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These web-security controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks web-security controls.
- X1 Async correctness — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X12 Unreachable branch — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X13 Undrained process stream — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X14 Bypassable address classification — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X15 Unvalidated length from an untrusted reader — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X16 Unfloored truncation loop — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X17 Uncapped recursion over a caller-supplied document — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X18 Disposal-pattern correctness — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X19 Unrestored process-global state — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X2 Cancellation propagation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X20 Mistyped argument guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X21 Side-effecting pattern guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X22 Contradicted release guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X23 Unguarded diagnostic materialisation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X24 Document value interpolated into markup unescaped — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X25 Inert configuration knob — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X26 Unsynchronised callback handoff — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X27 Collection changed while being enumerated — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X28 Index access outside its own emptiness guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X29 Per-element action decided by a fixed element — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X3 Exception handling — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X30 Support guard that admits what it rejects — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X32 Type resolved by simple name across every loaded assembly — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X4 Structured logging — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X5 Nullable reference types — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
- X7 Silent fallback defaults — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check reads C# and Python syntax only, and no C# or Python was loaded for this repository, so it had nothing of this repository's product to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
Limitations & what we did not check
Watchdog assesses the repository exactly as committed, and only the repository. By design it does not reach outside the source tree: the live cloud account, the running CI/CD pipeline, the host's branch-protection and approval rules, the production configuration, or a restore actually exercised against a backup are all out of scope. That boundary is a feature, not a gap — a repo-relative, deterministic scan re-runs identically on any commit and every finding opens at a real file and line, where a live audit can neither be reproduced nor traced. The visible consequence is that controls which leave no in-repo evidence are reported as "not evidenced" and excluded from the score rather than awarded a number a static scan cannot justify.
Per-dimension blind spots
- D1 Cyclomatic Complexity: Cyclomatic complexity counts branches statically — it cannot tell an essential decision tree from accidental tangle, nor see complexity that lives in data or configuration (large switch-case token tables, DSL lexers/parsers, data-as-code rule tables) rather than control flow: a tokenizer's many single-character cases read as high complexity though each branch is trivial.
- D2 Cognitive Complexity: Cognitive-complexity heuristics approximate how hard code is to follow; genuine domain difficulty and well-named intent that eases reading are not captured.
- D3 God Classes: "God class" is sized by members and responsibilities visible in the type — a deliberately broad facade over a coherent subsystem can read the same as an accidental grab-bag. For front-end JS the file-length check is cohesion-aware (a single-responsibility module — one class/IIFE — earns a 3× threshold), but cohesion is approximated from top-level declarations, not true dependency structure.
- D4 Code Duplication: Duplication is token-similarity — an in-process token-stream comparison over sliding windows, with type-aware normalization — so it finds copy-paste, not semantic duplication expressed differently. Committed machine-written code (scaffolded migrations, designer/codegen output, protobuf/OpenAPI stubs, model snapshots) is EXCLUDED — its repetition is the tool's, not the team's — so the score reflects hand-written duplication only.
- D5 Coupling: Coupling is measured between projects/assemblies — runtime coupling through DI, reflection, messaging or shared databases is invisible to a static reference graph.
- D6 Cohesion (LCOM4): LCOM4 cohesion is syntactic — it infers connectivity from which methods touch which fields/methods by name, not from real runtime behaviour or intent.
- D9 Test Distribution: The test-pyramid shape is inferred from project/folder naming and references, with a single test host bucketed per-file by its path tier and content signals — a suite that names tiers unconventionally and gives no per-file signal can still be mis-bucketed.
- D13 Secret Scanning: Secret detection is signature- and entropy-based on the current tree — a secret that does not match a known pattern, or one already rotated, will not be flagged (a clean scan is "nothing matched", not "no secrets exist").
- D15 Churn × Complexity Hotspots: Churn hotspots come from git history — a freshly imported or squashed repository has no churn signal, and recent rewrites can mask a historically risky file.
- D16 Bus Factor: Bus-factor is a time-decayed model of commit attribution (who has recently, repeatedly worked a file), not comprehension — pairing, review and reading-without-committing spread knowledge it can't see; bot commits and shared accounts still distort it.
- D17 Explicit Debt: Acknowledged-debt signals (TODO/FIXME, suppressions, dead code) are textual — undocumented debt that nobody marked, and debt that lives in design rather than annotations, is invisible. Committed machine-written code (scaffolded migrations, designer/codegen output, generated stubs) is excluded — it is never the team's dead code to delete.
- D19 Documentation Quality: Documentation quality is judged by an LLM over a bounded sample of docs — it reads what is written, not whether the docs match the running system, and it is advisory, not a measurement. Its critique rows are drawn from a closed category vocabulary and each row means the same thing in every run, so two scans can be compared row by row; the SET that fires is still a sample, and does not repeat exactly. Measured on one frozen input, six scans at one engine SHA: 2-5 critique rows per scan, 8 distinct rows across the six, 3 of those 8 seen in only one scan. So a D19 row is evidence about the documentation, but a COUNT of D19 rows is not a quantity — never read a change in it as an improvement or a regression.
- D20 ADR Quality: ADR quality is an LLM read of the decision records present — it cannot know about decisions made and never recorded, and its verdict is sampled and advisory.
- D21 Naming Consistency: Naming quality is an LLM judgement over a bounded sample — it assesses clarity/consistency of the names it sees, not domain-correctness, and is advisory.
- D22 Internal API Consistency: API-surface coherence is an LLM judgement over a sample of the public surface — consistency of intent across the whole API is approximated, not exhaustively verified.
- D26 Project Cohesion: Project focus is sized from members/namespaces per project — a project that is broad by deliberate design reads the same as one that has sprawled.
- D28 Secrets (history): Secret-history scanning sweeps the git log for known patterns — a secret that predates the available history, or never matched a signature, is not found (clean means "nothing matched in the history we can see").
- D29 Static Analysis (SAST): SAST findings are pattern-based (semgrep) — it finds classes of bug it has rules for; logic flaws, auth/authorization gaps and issues needing runtime context are out of reach (and clean means "no rule matched").
- D30 Dependency Vulnerabilities: CVE matching depends on accurate package/version metadata and on the advisory databases — a vulnerability with no published advisory, or in code not declared as a dependency, is not seen. Coverage needs a RESOLVED graph: an unpinned requirements.txt, or a pom without a resolved build, yields partial coverage rather than a clean verdict. An ecosystem the analyzer cannot scan is reported as unmeasured, never as clean.
- D31 IaC & Container Security: IaC scanning checks Dockerfiles/Terraform/Kubernetes against best-practice rules — it cannot see the live cloud account, runtime configuration, or drift between the committed config and what is actually deployed.
- D34 Knowledge Freshness: Freshness is decayed commit RECENCY, not comprehension — code read often but rarely committed reads as orphaned, and stable code that genuinely needs no changes is penalised the same as forgotten code; bot/squash commits distort it like the bus factor.
- D35 Change Coupling: Change coupling is co-change in COMMITS — files split across separate commits, or coupled only through a shared config/build step, read as uncoupled, and a sweeping commit (rename/format) is excluded so it doesn't couple everything. It shows that files change together, not WHY: a high coupling can be a healthy cohesive pair as readily as a hidden leak.
- D43 Malicious Dependencies: Only packages some vulnerability database has already NAMED as malicious are seen — a compromise published in the last hours, or never reported at all, is invisible here, and this dimension reading 10 is not evidence that a dependency is trustworthy. There is no typosquat or dependency-confusion analysis: a package nobody has reported is simply absent from the feeds. Coverage is the dependency scan's: an ecosystem that could not be scanned is disclosed as unmeasured, never as clean.
- AX10 Code composition: Role is inferred from namespace/folder convention, not semantics — a domain concept living in a folder named "Services" reads as application, and the split is lines-of-code, not business value. The business-logic-share score is a SOFT, FLOORED signal: it contributes to the Architecture lens but is floored at the Critical gate, so an infrastructure-heavy design (a gateway, an ETL, a driver) is legitimately low without being nuked to zero.
- AX9 CQS / query purity: Handlers are found by interface/name convention — a query handler using neither is not seen. Mutation is a resolved write/publish invocation (SaveChanges/repository/bus), so a write hidden behind a hand-rolled wrapper, reflection, or a string-keyed service locator resolves to a non-persistence type and isn't flagged; it detects that a query writes state, not whether the write is a legitimate read-side cache update. Clean means "no resolved write/publish in a query body", not a proof of CQS purity.
- M4 Documentation accuracy: Onboarding quality is an LLM read of the docs/setup present — it cannot run the onboarding or measure how long a real new joiner takes; the verdict is sampled and advisory.
- P4 Deployment & Rollback: Approval/branch-protection rules live in repository settings the scan cannot see — only their in-repo evidence (config files, workflows) is checked, so a control enforced purely in the host's settings reads as "not evidenced".
- P6 Release Hygiene: Rollback/observability controls are inferred from repo artefacts (pipelines, dashboards-as-code) — controls configured in external tooling, with no in-repo trace, cannot be credited.
The LLM boundary
Dimensions
D1 · Cyclomatic Complexity
18 function(s) exceeded the cyclomatic complexity threshold of 15; the worst was spotify_player::event::handle_global_command at 61. A further 5 function(s) were over the threshold but excluded as flat dispatchers (a long switch/match over independent cases: many branches, almost no nesting), the largest being Command::desc at 62 — they are counted neither in the figure above nor in this dimension's score. 3 files carry no cyclomatic complexity row at all for this reason — every one of their over-threshold functions was excluded, so the exclusion is disclosed nowhere in the file itself: spotify_player/src/command.rs (Command::desc at 62), spotify_player/src/key.rs (Key::parse_key_code at 31), spotify_player/src/config/theme.rs (StyleColor::deserialize at 20). They are named here because the per-file figures other dimensions report are taken BEFORE this exclusion, so such a file can show a high maximum complexity elsewhere in this report and nothing here, with nothing to reconcile the two.
What to do
- Resolve the 14 spotify_player finding(s) in Cyclomatic Complexity — start with client.rs (3), mod.rs (2), playback.rs (2). — One of this dimension's main actionable groups (14 warning-level).
- Resolve the 3 AppClient finding(s) in Cyclomatic Complexity — start with mod.rs (3). — One of this dimension's main actionable groups (3 warning-level).
- Resolve the 1 PageState finding(s) in Cyclomatic Complexity — start with page.rs. — One of this dimension's main actionable groups (1 warning-level).
- Enforce Cyclomatic Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.
D2 · Cognitive Complexity
31 function(s) exceeded the cognitive complexity threshold of 15; the worst was spotify_player::ui::playback::construct_playback_text at 57.
What to do
- Resolve the 22 spotify_player finding(s) in Cognitive Complexity — start with client.rs (6), page.rs (4), mod.rs (4). — One of this dimension's main actionable groups (22 warning-level).
- Resolve the 5 AppClient finding(s) in Cognitive Complexity — start with mod.rs (5). — One of this dimension's main actionable groups (5 warning-level).
- Resolve the 1 VisualizationSink finding(s) in Cognitive Complexity — start with streaming.rs. — One of this dimension's main actionable groups (1 warning-level).
- Enforce Cognitive Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.
D3 · God Classes
24 over-large unit(s) detected — types, modules or files that carry too much.
What to do
- Resolve the 14 FunctionTooLong finding(s) in God Classes — start with page.rs (5), client.rs (3), mod.rs (2). — One of this dimension's main actionable groups (14 warning-level).
- Resolve the 5 FileTooLong finding(s) in God Classes — start with mod.rs (2), page.rs, client.rs. — One of this dimension's main actionable groups (5 warning-level).
- Resolve the 2 MethodTooLong finding(s) in God Classes — start with keymap.rs, mod.rs. — One of this dimension's main actionable groups (2 warning-level).
- Enforce God Classes in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.
D4 · Code Duplication
27 duplicated block group(s) detected. One further row reports members as variants of one another; it aggregates block groups already counted above and is not itself counted.
What to do
- Resolve the 6 Duplicated block (10 lines × 2) finding(s) in Code Duplication — start with mod.rs (3), model.rs, client.rs. — One of this dimension's main actionable groups (6 warning-level).
- Resolve the 3 Duplicated block (12 lines × 2) finding(s) in Code Duplication — start with page.rs (2), data.rs. — One of this dimension's main actionable groups (3 warning-level).
- Resolve the 3 Duplicated block (11 lines × 2) finding(s) in Code Duplication — start with mod.rs, popup.rs, playback.rs. — One of this dimension's main actionable groups (3 warning-level).
- Enforce Code Duplication in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.
D5 · Coupling
2 production modules (Cargo), 0 dependency cycle(s), 0 unstable depended-on module(s). Read from the build's own module declarations; 0 module(s) off the main sequence.
D6 · Cohesion (LCOM4)
1 of 30 classes have LCOM4 above 3.
What to do
- Resolve the 1 Low cohesion finding(s) in Cohesion (LCOM4) — start with mod.rs. — One of this dimension's main actionable groups (1 warning-level).
- Enforce Cohesion (LCOM4) in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.
D9 · Test Distribution
45 test methods: 45 unit, 0 integration, 0 BDD, 0 e2e. The Rust suite contributes 45 `#[test]` function(s) across 6 file(s) declaring at least one; its unit/integration split is Cargo's own — 0 of those file(s) are integration-test targets under a crate's tests/ directory, and the rest are #[test] functions compiled into the crate they test.
D13 · Secret Scanning
Secret scan ran and found no leaked secrets.
D15 · Churn × Complexity Hotspots
Top hotspots: spotify_player/src/client/mod.rs (13×40=520); spotify_player/src/event/page.rs (5×32=160); spotify_player/src/ui/page.rs (5×27=135)
What to do
- Resolve the 5 Hotspot finding(s) in Churn × Complexity Hotspots — start with page.rs (2), mod.rs, playback.rs. — One of this dimension's main actionable groups (5 warning-level).
D16 · Bus Factor
4 source file(s) have their living knowledge concentrated in one author (≥90% of recent, decayed contribution). The largest is spotify_player/src/client/spotify.rs. Counted over 40 of the 45 production source files in this repository: the rest are under the ~2,400-byte size floor this dimension measures over.
What to do
- Resolve the 1 Off-boarding risk finding(s) in Bus Factor. — One of this dimension's main actionable groups (1 recommendation-level).
D17 · Explicit Debt
6 deducted task-comment markers across 16985 LoC (0.0/KLoC) → score 9.9. Task comments only: this repository's language is read without a compiler, so D17's suppression, dead-code and commented-out-code arms did not run and this score counts fewer marker kinds than a .NET repository's would.
What to do
- Resolve the 6 TodoComment finding(s) in Explicit Debt — start with command.rs (2), mod.rs (2), main.rs. — One of this dimension's main actionable groups (6 warning-level).
- Enforce Explicit Debt in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.
D19 · Documentation Quality
The repository's root README is clear and complete: it documents the project (spotify_player), lists a full table of contents with an overview, installation, authentication, features, commands, configurations, caches, acknowledgements, and links to examples/README.md and docs/config.md. The examples directory README is focused on its own demos and does not contradict the root's scope; the architecture/design documentation is present (docs/config.md).
D20 · ADR Quality
No architecture decision records were found.
What to do
- Resolve the 1 No ADRs found finding(s) in ADR Quality. — One of this dimension's main actionable groups (1 recommendation-level).
D21 · Naming Consistency
0 naming inconsistencies across 0 sampled symbols.
D22 · Internal API Consistency
1 API inconsistencies across 3 exposed types.
What to do
- Resolve the 1 Ambiguous overlap between search and retrieval. 'search_songs' implies… finding(s) in Internal API Consistency. — One of this dimension's main actionable groups (1 warning-level).
D26 · Project Cohesion
1 of 2 build units (Cargo) flagged as possibly oversized/incoherent.
What to do
- Resolve the 1 Projects may be oversized for their cohesion finding(s) in Project Cohesion. — One of this dimension's main actionable groups (1 recommendation-level).
D28 · Secrets (history)
gitleaks scanned the full history AND the current working tree and found no secrets.
D29 · Static Analysis (SAST)
21 finding(s): 0 critical, 20 high, 1 medium, 0 low. 16 unpinned-GitHub-Actions row(s) are reported here but scored by D36 (supply-chain provenance), which measures that posture as `pinned_actions` — one pinning decision is charged once, not once per lens. Separately, one or more rules could not re-parse an embedded snippet in 1 file(s) (e.g. a workflow `run:` block read as shell). Those files WERE scanned and their other rows are unaffected; only those rules' view of those snippets is missing.
What to do
- Resolve the 4 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED (2), REDACTED, REDACTED. — One of this dimension's main actionable groups (4 issue-level).
- Resolve the 1 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED. — One of this dimension's main actionable groups (1 warning-level).
- No action in Static Analysis (SAST) — all 16 REDACTED finding(s) are reported here at file:line but scored by D36 (supply-chain provenance), so none is charged to this dimension. — One of this dimension's main actionable groups (16 issue-level, 0 of them charged here).
D30 · Dependency Vulnerabilities
6 finding(s): 0 critical, 0 high, 6 medium, 0 low.
What to do
- Resolve the 3 Medium advisory (unmaintained) finding(s) in Dependency Vulnerabilities — start with REDACTED (3). — One of this dimension's main actionable groups (3 warning-level).
- Resolve the 2 Medium vulnerability finding(s) in Dependency Vulnerabilities — start with REDACTED (2). — One of this dimension's main actionable groups (2 warning-level).
- Resolve the 1 Medium CVE finding(s) in Dependency Vulnerabilities — start with REDACTED. — One of this dimension's main actionable groups (1 warning-level).
D31 · IaC & Container Security
5 finding(s): 0 critical, 3 high, 2 medium, 0 low.
What to do
- Resolve the 3 High IaC finding(s) in IaC & Container Security — start with REDACTED (2), REDACTED. — One of this dimension's main actionable groups (3 issue-level).
- Resolve the 2 Medium IaC finding(s) in IaC & Container Security — start with REDACTED (2). — One of this dimension's main actionable groups (2 warning-level).
D34 · Knowledge Freshness
Every significant source file has living knowledge — recently and meaningfully worked. Counted over 40 of the 45 production source files in this repository: the rest are under the ~2,400-byte size floor this dimension measures over.
D35 · Change Coupling
No strong hidden change-coupling between production files.
D36 · Supply-chain Provenance & Signing
0/4 supply-chain integrity signals present (provenance, signing, SBOM, pinned actions).
What to do
- Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 warning-level).
- Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 warning-level).
- Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 recommendation-level).
D43 · Malicious Dependencies
No dependency in any ecosystem this repository declares is published as malicious.
Frontend & cross-cutting dimensions
AX10 · Code composition
What to do
- The domain core is a small share of production code, but most of the rest matched no layer vocabulary at all — so this is not yet an anemic-domain finding. The namespace/path convention could not place that code, which makes the composition above a statement about the naming, not about the design. Name the layers (or check that the repository's conventions differ from the ones this check knows) before reading a thin domain into it.
AX3 · Project dependency cycles
AX4 · Dependency direction
AX9 · CQS / query purity
ES1 · Fold determinism
ES2 · Immutable events
M1 · Documentation (README)
What to do
- Add a 'Testing' section to the root README — how to run the test suite.
- Add an 'Architecture' / 'How it works' section to the root README — the high-level shape.
- Add a README to the 2 of 2 project(s) that lack one — worth up to 2 pts.
M2 · Architecture documentation
- No Architecture Decision Records found — no conventional ADR directory, no numbered `NNNN-title` documents in any markup this check reads, and nothing ADR-shaped by content. Design rationale recorded elsewhere (a design-notes tree, a mailing list, pull-request discussion) is not visible to this check and is not re-findable per decision, so a future maintainer cannot ask why one choice was made and get an answer.
What to do
- Record significant decisions one document per decision — dated, stating the context, the decision and its consequences — and keep them together wherever your design docs already live (a conventional `docs/adr/` tree, with each file named `NNNN-title` in whatever markup those docs already use, is the most discoverable form).
M3 · Folder & project structure
M4 · Documentation accuracy
P1 · CI/CD gates
P10 · Library API & versioning
P2 · Observability
What to do
- Consider OpenTelemetry tracing/metrics (opentelemetry with tracing-opentelemetry) and a health-check endpoint (a /health route on your axum/actix router) for operability.
P3 · Security & performance tooling
What to do
- Enable Dependabot/Renovate or a dependency-review gate.
- Add gitleaks/trufflehog in CI to block PRs that introduce committed secrets.
P4 · Deployment & Rollback
- The release is automated and no gate that pauses it for a human is DECLARED IN THIS REPOSITORY'S PIPELINE FILES. What was read: every file under `.github/workflows/`, `.forgejo/workflows/`, `.gitea/workflows/`, `.azuredevops/` and `.azure-pipelines/`, plus `.gitlab-ci*` and `azure-pipelines*` — with comment text stripped, so documenting a gate is not declaring one. What would have counted: GitLab's `when: manual`, CircleCI's `type: approval`, an Azure `ManualValidation@` task or an `approvals:` block, a Jenkins `input` step, a `uses:` step naming an approval action, an `environment:` paired with `reviewers` / `required_reviewers` / `protection` / `wait-timer` / `deployment_branch_policy`, a draft-release step, a `workflow_dispatch` promotion, or a release-event gate. ★ What this cannot see, because none of it is a file: a GitHub environment whose required reviewers are configured in repo SETTINGS, a branch protection rule, or an organisation deployment policy — all of them real, enforced gates that live outside the repository. If yours is one of those, this row is wrong and nothing in the tree could have told us. Otherwise: whatever the release trigger points at is published to users unreviewed, so a mistagged or unverified commit ships and the only remedy is a follow-up release.
What to do
- Nothing pauses a release for a human: publish as a draft release (or gate the release job on a protected tag/manual dispatch) so a bad build can be stopped before users can download it.
P6 · Release Hygiene
- No CHANGELOG/HISTORY/RELEASES file — what shipped when isn't easy to reconstruct for support or audit. (Versioning/tagging makes releases traceable, but a changelog records the what.)
What to do
- Keep a changelog (e.g. Keep-a-Changelog) recording what shipped in each release.
PF3 · Async & latency hygiene
- `start_app` is async and calls thread::sleep — a blocking call inside async code stalls the executor thread, and every task scheduled on it for as long as it runs. — spotify_player/src/main.rs:79
What to do
- Rust: `.await` the future instead of `block_on` (on a Tokio runtime thread it panics outright) and use `tokio::time::sleep(..).await` instead of `std::thread::sleep`; where synchronous code must run, move it to `tokio::task::spawn_blocking` or `block_in_place`.
Reference — by lens
| Lens | Score | Rating | Impact |
|---|---|---|---|
| Code Health | 82% | Strong | Solid. |
| Architecture | 89% | Adequate — gated by D26 | Capped at Fair by a Critical contributor — resolve it before relying on this lens. |
| Maturity | 64% | Adequate — gated by M2 | Capped at Fair by a Critical contributor — resolve it before relying on this lens. |
| Readiness | 62% | Adequate | Largest drag on the score — prioritise here. |
| Security | 71% | Adequate — gated by D36 | Capped at Fair by a Critical contributor — resolve it before relying on this lens. |
| Event Sourcing | 100% | Exemplary | Strongest area. |
| Performance | 85% | Exemplary | Solid. |
Not evidenced — 4 control(s) we could not find positive evidence for
- C3 Audit Trail — Not assessed: these audit controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks audit controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- C4 Data Retention — Not assessed: these retention controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks retention controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- C5 Data-Subject Rights — Not assessed: these data-subject rights controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks data-subject rights controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- P5 DR & Backup — not evidenced — repo shows no backup/RTO/RPO controls; absence of evidence is not evidence of a working control
Not included — 76 check(s) not relevant to this codebase
- AC1 Text alternatives — No web markup found — accessibility is not applicable to this repository.
- AC2 Forms & labels — No web markup found — accessibility is not applicable to this repository.
- AC3 Page structure — No web markup found — accessibility is not applicable to this repository.
- AC4 Keyboard semantics — No web markup found — accessibility is not applicable to this repository.
- AC5 ARIA correctness — No web markup found — accessibility is not applicable to this repository.
- AC6 Visual & motion safety — No web markup found — accessibility is not applicable to this repository.
- AC7 A11y enforcement — No web markup found — accessibility is not applicable to this repository.
- AX1 Captive dependencies — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- AX2 Stateful singletons — Not applicable: Rust's compiler refuses unsynchronised shared mutation — a value shared across threads must be Sync — so the race this check looks for cannot be written.
- AX5 Architecture & structure — not assessed — architecture style/structure is computed from a project graph (projects, types, module namespaces) that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- AX6 Interface segregation — not assessed — interface segregation is computed over a type surface that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- AX7 Slice cohesion — not applicable — not a vertical-slice architecture
- AX8 Test isolation — no test/production split to check
- AXB2 Runtime readiness — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
- AXR1 Runtime accessibility — docker build failed (exit 1) — DEPRECATED: The legacy builder is deprecated and will be removed in a future release. Install the buildx component to build images with BuildKit: https://docs.docker.com/go/bui…; runtime evidence skipped This is a statement about this run, not a statement about your application: nothing here says the surface is inaccessible, only that it was never rendered.
- C1 Data Protection — Not assessed: these personal data controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks personal data controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- C2 Access Controls — Not assessed: these authorization controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks authorization controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- D10 Test Quality — ~25 lines of test source are present (.rs) but no test cases reached the test census for this repository — no test root we could resolve declared them, or the files we read declare no cases in a test framework we recognise — so skipped/assertion-free tests couldn't be counted. Not scored — this is a gap in the analyzer, not a finding about this repository.
- D11 Test Reliability — Test reliability not included — the .rs suite was found but not re-run
- D12 Dependency Hygiene — Not scored — 53 direct Cargo declaration(s) were read, but the outdated signal needs crates.io, which could not be reached on this run, so this dimension's own question is only partly answered. NOT a finding that these dependencies are current or healthy.
- D14 License Compliance — License Compliance not included (time budget)
- D18 Solution Shape — D18 scores the shape of a .NET solution; this repository has no .NET solution or project files, so the dimension does not apply.
- D23 Boundary Type-Coupling — No bounded-context organisation was detected either — neither a context-shaped layout nor 2+ sibling source directories each declaring an aggregate root. Declaring this codebase's bounded contexts (≥2) would let cross-boundary type coupling be assessed. Declare them in `.codehealth/config.yaml` at the repository root (create it if absent), mapping each context name to the module-path or namespace prefixes that belong to it — e.g. `architecture:` → `contexts:` → `Billing: ["src/billing", "Acme.Billing"]`, `Catalog: ["src/catalog", "Acme.Catalog"]`.
- D24 Comment Value — No inline comments to assess — comment value is not applicable here.
- D25 ADR Conformance — no ADRs to check
- D27 Navigability — symbol resolution incomplete — navigability not assessed
- D32 Data Compliance (PII/GDPR) — No personal data was found crossing a boundary the PII/GDPR ruleset checks — nothing written to a log or console sink, placed in a URL or query string, or persisted to browser storage. That is a clean result for the LEAK surface only: this ruleset detects personal data escaping, it does not inventory the personal data a repository holds, so it is not evidence that this repository has no personal-data surface. The personal-data map (Appendix C) and the C1-C5 compliance cards are what speak to that.
- D37 Vulnerability-disclosure Policy — No vulnerability-disclosure policy file found (SECURITY.md/.markdown/.rst/.txt at root or under .github/.forgejo/.gitea/docs, .well-known/security.txt). A coordinated-disclosure policy may live off-repo, so this is not evidenced rather than failed.
- D39 IL Efficiency — D39 measures the IL emitted by a .NET build; this repository has no .NET solution or project files, so the dimension does not apply.
- D40 Network Egress Confinement — No Kubernetes/orchestration workloads found in the repository manifests; network egress policy is a cluster-native control that may live at the platform/firewall layer, so there is nothing to assess here.
- D41 Kernel & Syscall Confinement — No Kubernetes/orchestration workloads found in the repository manifests; seccomp/AppArmor/SELinux confinement is a workload-level control, so there is nothing to assess here.
- D42 Runtime Threat Enforcement — No Kubernetes/orchestration workloads found in the repository manifests; runtime threat-detection and admission-control policy are cluster-level controls, so there is nothing to assess here.
- D44 Platform End-of-Life — Platform end-of-life not assessed — this repository declares no platform this pass reads
- D7 Architectural Integrity — no checkable ADRs, and no project-reference graph for the cycle pass to read — so this dimension makes no claim about dependency cycles in either direction (where this repository's language has an import-cycle lens, cycles are reported there). Architectural integrity not assessed
- D8 Code Coverage — Coverage not included — suite not readable by the collector
- DM1 Domain Modelling — applicable but not scored (2 of 3 signals for this style — below the bar we score at): 1 value object(s); 1 domain event(s); its domain events are published by services or handlers — no domain entity raises one
- ED2 Event/command shape — not scored — deciding whether a command has more than one competing handler requires resolving the call graph, and a call made through an inferred or generic receiver has no resolvable owner in the source. Reported as guidance rather than measured
- ED5 Idempotency — This check finds retry-prone mutations (command handlers and message/event consumers) by walking the repository's declared types, and none was loaded here, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- GD1 Unfinished & placeholder code — no source files were read — this check reads C# syntax, and none was loaded for this repository. That is a limit of the analyzer, not a finding about your code.
- IC1 Incompleteness & stubs — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- P12 CI test-gate honesty — Reported, not scored — and nothing was matched here. The coverage check applies to any stack, and the automatic-re-run check to any GitHub-Actions workflow, but the checks for excluded tests, skipped tests and sleep-based synchronisation currently recognise only some ecosystems' test-runner idioms, so on a repository built with another stack the zeros below mean 'not checked', not 'clean'.
- P7 Outbound HTTP resilience — not applicable — no HTTP server, API framework or worker entry point was found in the Rust source, so there is no service whose uptime a failing dependency could take down
- P8 Schema migrations — no ORM, schema-migration tool or schema auto-create was found in this repository's dependency manifests or source, so there is no database schema for this check to judge
- P9 Domain vs controller coverage — no coverage report found on disk — produce a coverage report in a standard format (lcov — `cargo install cargo-llvm-cov`, then `cargo llvm-cov --lcov --output-path lcov.info`) and commit it — a hosted scan measures a clone of the repository, so a report that exists only in a working tree, a CI runner's or your own, never reaches it; the artefact is commonly gitignored, so `git add -f` that one file (or un-ignore its path) and commit it alongside the code it measures, or wire coverage collection into CI, to enable this cross-layer check
- PF1 Benchmark discipline — Not applicable: no benchmark suite was found. This check searched for `#[bench]`, criterion's `bench_function`/`bench_with_input`, `#[divan::bench]` or `#[library_benchmark]` in any `.rs` file, or criterion, divan, iai or a `[[bench]]` target in a Cargo.toml, and for a `*benchmark*` script that this repository's CI runs. Benchmarks are credited as a bonus, so their absence is neither scored nor deducted.
- PF2 Allocation hygiene — Not applicable: Rust spells out every heap allocation and makes borrowed slices (&[T], &str) its ordinary parameter types, so the allocation-aware style this card rewards elsewhere is the language's baseline rather than a rung to climb.
- S1 Web-Security Posture — Not assessed: these web-security controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks web-security controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
- X1 Async correctness — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X10 Duplicated predicate — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
- X12 Unreachable branch — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X13 Undrained process stream — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X14 Bypassable address classification — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X15 Unvalidated length from an untrusted reader — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X16 Unfloored truncation loop — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X17 Uncapped recursion over a caller-supplied document — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X18 Disposal-pattern correctness — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X19 Unrestored process-global state — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X2 Cancellation propagation — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X20 Mistyped argument guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X21 Side-effecting pattern guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X22 Contradicted release guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X23 Unguarded diagnostic materialisation — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X24 Document value interpolated into markup unescaped — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X25 Inert configuration knob — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X26 Unsynchronised callback handoff — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X27 Collection changed while being enumerated — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X28 Index access outside its own emptiness guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X29 Per-element action decided by a fixed element — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X3 Exception handling — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X30 Support guard that admits what it rejects — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X32 Type resolved by simple name across every loaded assembly — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
- X4 Structured logging — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X5 Nullable reference types — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X6 Hand-rolled structured-format parsing — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
- X7 Silent fallback defaults — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
- X9 Subsumed condition operand — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
Appendix A — Findings (grouped)
Critical — 23 finding(s)
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Serious — 126 finding(s)
- spotify_player::ui::playback::construct_playback_text (cognitive 57) spotify_player/src/ui/playback.rs:224
- spotify_player::ui::playback::render_playback_window (cognitive 49) spotify_player/src/ui/playback.rs:19
- spotify_player::event::page::handle_key_sequence_for_search_page (cognitive 47) spotify_player/src/event/page.rs:197
- spotify_player::event::handle_global_command (cognitive 45) spotify_player/src/event/mod.rs:573
- spotify_player::cli::client::handle_playlist_request (cognitive 43) spotify_player/src/cli/client.rs:489
- spotify_player::streaming::new_connection (cognitive 42) spotify_player/src/streaming.rs:151
- spotify_player::cli::client::get_spotify_id (cognitive 41) spotify_player/src/cli/client.rs:243
- spotify_player::ui::page::render_search_page (cognitive 38) spotify_player/src/ui/page.rs:37
- spotify_player::event::handle_action_in_context (cognitive 32) spotify_player/src/event/mod.rs:198
- spotify_player::client::handlers::handle_page_change_event (cognitive 29) spotify_player/src/client/handlers.rs:123
- spotify_player::ui::page::render_track_table (cognitive 27) spotify_player/src/ui/page.rs:1065
- spotify_player::cli::client::playlist_import (cognitive 23) spotify_player/src/cli/client.rs:722
- spotify_player::event::popup::handle_key_sequence_for_playlist_search_popup (cognitive 22) spotify_player/src/event/popup.rs:575
- spotify_player::event::handle_mouse_event (cognitive 20) spotify_player/src/event/mod.rs:65
- spotify_player::event::window::handle_command_for_focused_context_window (cognitive 19) spotify_player/src/event/window.rs:109
- spotify_player::ui::page::render_episode_table (cognitive 19) spotify_player/src/ui/page.rs:1231
- spotify_player::event::handle_key_event (cognitive 19) spotify_player/src/event/mod.rs:121
- spotify_player::event::popup::handle_key_sequence_for_popup (cognitive 19) spotify_player/src/event/popup.rs:7
- spotify_player::cli::client::handle_playback_request (cognitive 19) spotify_player/src/cli/client.rs:347
- spotify_player::cli::client::handle_socket_request (cognitive 17) spotify_player/src/cli/client.rs:132
- spotify_player::event::window::handle_command_for_track_table_window (cognitive 16) spotify_player/src/event/window.rs:282
- spotify_player::cli::client::start_socket (cognitive 16) spotify_player/src/cli/client.rs:33
- spotify_player::event::handle_global_command (cyclomatic 61) spotify_player/src/event/mod.rs:573
- spotify_player::event::handle_action_in_context (cyclomatic 48) spotify_player/src/event/mod.rs:198
- spotify_player::ui::playback::construct_playback_text (cyclomatic 35) spotify_player/src/ui/playback.rs:224
- spotify_player::event::page::handle_key_sequence_for_search_page (cyclomatic 32) spotify_player/src/event/page.rs:197
- spotify_player::ui::page::render_search_page (cyclomatic 27) spotify_player/src/ui/page.rs:37
- spotify_player::event::popup::handle_key_sequence_for_popup (cyclomatic 26) spotify_player/src/event/popup.rs:7
- spotify_player::cli::client::handle_playback_request (cyclomatic 23) spotify_player/src/cli/client.rs:347
- spotify_player::cli::client::handle_playlist_request (cyclomatic 21) spotify_player/src/cli/client.rs:489
- spotify_player::streaming::new_connection (cyclomatic 20) spotify_player/src/streaming.rs:151
- spotify_player::event::window::handle_command_for_focused_context_window (cyclomatic 19) spotify_player/src/event/window.rs:109
- spotify_player::ui::playback::render_playback_window (cyclomatic 19) spotify_player/src/ui/playback.rs:19
- spotify_player::media_control::start_event_watcher (cyclomatic 18) spotify_player/src/media_control.rs:78
- spotify_player::cli::client::get_spotify_id (cyclomatic 18) spotify_player/src/cli/client.rs:243
- spotify_player::client::handlers::handle_page_change_event (cyclomatic 17) spotify_player/src/client/handlers.rs:123
- FunctionTooLong: spotify_player::event::handle_global_command spotify_player/src/event/mod.rs:573
- FunctionTooLong: spotify_player::event::popup::handle_key_sequence_for_popup spotify_player/src/event/popup.rs:7
- FunctionTooLong: spotify_player::event::handle_action_in_context spotify_player/src/event/mod.rs:198
- FunctionTooLong: spotify_player::ui::page::render_search_page spotify_player/src/ui/page.rs:37
- FunctionTooLong: spotify_player::cli::client::handle_playlist_request spotify_player/src/cli/client.rs:489
- FunctionTooLong: spotify_player::ui::popup::render_popup spotify_player/src/ui/popup.rs:18
- FunctionTooLong: spotify_player::ui::page::render_track_table spotify_player/src/ui/page.rs:1065
- FunctionTooLong: spotify_player::event::page::handle_key_sequence_for_search_page spotify_player/src/event/page.rs:197
- FunctionTooLong: spotify_player::ui::playback::construct_playback_text spotify_player/src/ui/playback.rs:224
- FunctionTooLong: spotify_player::ui::page::render_artist_context_page_windows spotify_player/src/ui/page.rs:907
- FunctionTooLong: spotify_player::ui::playback::render_playback_window spotify_player/src/ui/playback.rs:19
- FunctionTooLong: spotify_player::cli::client::playlist_import spotify_player/src/cli/client.rs:722
- FunctionTooLong: spotify_player::ui::page::render_library_page spotify_player/src/ui/page.rs:448
- FunctionTooLong: spotify_player::cli::client::handle_playback_request spotify_player/src/cli/client.rs:347
- TodoComment spotify_player/src/main.rs:229
- TodoComment spotify_player/src/command.rs:125
- TodoComment spotify_player/src/command.rs:195
- TodoComment spotify_player/src/event/mod.rs:469
- TodoComment spotify_player/src/client/spotify.rs:66
- TodoComment spotify_player/src/client/mod.rs:786
- Duplicated block (10 lines × 2) spotify_player/src/state/model.rs:364
- Duplicated block (10 lines × 2) spotify_player/src/event/mod.rs:211
- Duplicated block (10 lines × 2) spotify_player/src/event/mod.rs:265
- Duplicated block (10 lines × 2) spotify_player/src/cli/client.rs:734
- Duplicated block (10 lines × 2) spotify_player/src/event/mod.rs:227
- Duplicated block (10 lines × 2) spotify_player/src/ui/page.rs:137
- Hotspot: spotify_player/src/client/mod.rs spotify_player/src/client/mod.rs:470
- Hotspot: spotify_player/src/event/page.rs spotify_player/src/event/page.rs:197
- Hotspot: spotify_player/src/ui/page.rs spotify_player/src/ui/page.rs:37
- Hotspot: spotify_player/src/ui/playback.rs spotify_player/src/ui/playback.rs:19
- Hotspot: spotify_player/src/streaming.rs spotify_player/src/streaming.rs:151
- AppClient::handle_request (cognitive 26) spotify_player/src/client/mod.rs:470
- AppClient::initialize_playback (cognitive 22) spotify_player/src/client/mod.rs:189
- AppClient::handle_new_playback_event (cognitive 19) spotify_player/src/client/mod.rs:1730
- AppClient::handle_player_request (cognitive 17) spotify_player/src/client/mod.rs:361
- AppClient::notify_new_playback (cognitive 16) spotify_player/src/client/mod.rs:1892
- FileTooLong: client/mod.rs spotify_player/src/client/mod.rs
- FileTooLong: ui/page.rs spotify_player/src/ui/page.rs
- FileTooLong: event/mod.rs spotify_player/src/event/mod.rs
- FileTooLong: cli/client.rs spotify_player/src/cli/client.rs
- FileTooLong: event/window.rs spotify_player/src/event/window.rs
- AppClient::handle_request (cyclomatic 40) spotify_player/src/client/mod.rs:470
- AppClient::handle_player_request (cyclomatic 22) spotify_player/src/client/mod.rs:361
- AppClient::handle_new_playback_event (cyclomatic 17) spotify_player/src/client/mod.rs:1730
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- Duplicated block (12 lines × 2) spotify_player/src/state/data.rs:134
- Duplicated block (12 lines × 2) spotify_player/src/ui/page.rs:767
- Duplicated block (12 lines × 2) spotify_player/src/ui/page.rs:147
- Duplicated block (11 lines × 2) spotify_player/src/client/mod.rs:1161
- Duplicated block (11 lines × 2) spotify_player/src/state/ui/popup.rs:89
- Duplicated block (11 lines × 2) spotify_player/src/ui/playback.rs:413
- MethodTooLong: KeymapConfig.default spotify_player/src/config/keymap.rs:34
- MethodTooLong: AppClient.handle_request spotify_player/src/client/mod.rs:470
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- Duplicated block (14 lines × 2) spotify_player/src/ui/page.rs:615
- Duplicated block (14 lines × 2) spotify_player/src/event/popup.rs:179
- PageState::focus_window_state_mut (cyclomatic 21) spotify_player/src/state/ui/page.rs:174
- VisualizationSink::write (cognitive 28) spotify_player/src/ui/streaming.rs:191
- LineInput::input (cognitive 20) spotify_player/src/ui/single_line_input.rs:37
- CustomQueue::set_shuffle_mode (cognitive 17) spotify_player/src/state/queue.rs:309
- lyric_finder::improve_query (cognitive 16) lyric_finder/src/lib.rs:152
- Ambiguous overlap between search and retrieval. 'search_songs' implies finding metadata/links, while 'get_lyric' implies fetching the content. However, both accept a raw string query. It is unclear if 'get_lyric' performs a search internally and then fetches, or if it expects a specific format. More critically, 'retrieve_lyric' exists which takes a URL, suggesting a separation of concerns (Search -> Retrieve) that 'get_lyric' bypasses or duplicates without clear distinction.
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- ClassTooLong: AppClient spotify_player/src/client/mod.rs:72
- TooManyMethods: AppClient spotify_player/src/client/mod.rs:72
- TooManyFields: AppConfig spotify_player/src/config/mod.rs:53
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- Members sharing a duplicated core (4 members, 50+ identical tokens) spotify_player/src/event/window.rs:405
- Duplicated block (26–42 lines × 2) spotify_player/src/ui/page.rs:1167
- Duplicated block (18–24 lines × 2) spotify_player/src/event/window.rs:408
- Duplicated block (17 lines × 2) spotify_player/src/event/popup.rs:153
- Duplicated block (16 lines × 2) spotify_player/src/ui/page.rs:1098
- Duplicated block (15 lines × 2) spotify_player/src/cli/client.rs:637
- Duplicated block (12 lines × 3) spotify_player/src/event/window.rs:435
- Duplicated block (11 lines × 6) spotify_player/src/ui/page.rs:181
- Duplicated block (11 lines × 4) spotify_player/src/event/window.rs:406
- Duplicated block (11 lines × 3) spotify_player/src/event/window.rs:454
- Duplicated block (9 lines × 2) spotify_player/src/state/queue.rs:325
- Duplicated block (8 lines × 2) spotify_player/src/ui/utils.rs:95
- Duplicated block (6 lines × 2) spotify_player/src/event/mod.rs:616
- Duplicated block (5 lines × 2) spotify_player/src/client/mod.rs:1675
- Low cohesion: AppConfig (LCOM4 4) spotify_player/src/config/mod.rs:53
- Sync-over-async blocking spotify_player/src/main.rs:79
Minor — 10 finding(s)
- Off-boarding risk: anonymized user #1
- No ADRs found
- Projects may be oversized for their cohesion
- REDACTED
- REDACTED
- REDACTED
- REDACTED
- No ADRs
- No release approval gate
- No changelog
Appendix B — Reproduction & audit trail
| Dimension | Tool | Version | Command | Findings | Raw output |
|---|---|---|---|---|---|
| D28 · Secrets (history) | gitleaks | — | gitleaks detect --no-banner --config /opt/gitleaks-rules/watchdog-gitleaks.toml --report-format json --report-path /tmp/watchdog-gitleaks-17dfb4e437ef4f36a33997fee54a2d95/history.json --exit-code 0 --source . | 0 | artifacts/raw/gitleaks-history.json |
| D28 · Secrets (history) | gitleaks | — | gitleaks detect --no-git --no-banner --config /opt/gitleaks-rules/watchdog-gitleaks.toml --report-format json --report-path /tmp/watchdog-gitleaks-17dfb4e437ef4f36a33997fee54a2d95/tree.json --exit-code 0 --source . | 0 | artifacts/raw/gitleaks-tree.json |
| D29 · Static Analysis (SAST) | semgrep | — | semgrep --config /opt/semgrep-rules/security-audit.yml --config /opt/semgrep-rules/owasp-top-ten.yml --config /opt/semgrep-rules/watchdog-sast.yml --json --quiet --timeout 10 --timeout-threshold 3 --metrics off . | 21 | artifacts/raw/semgrep.json |
| D30 · Dependency Vulnerabilities | osv-scanner | — | osv-scanner --format json --recursive . | 6 | artifacts/raw/osv-scanner.json |
| D31 · IaC & Container Security | trivy | — | trivy config --format json --quiet . | 5 | artifacts/raw/trivy-config.json |
| D32 · Data Compliance (PII/GDPR) | semgrep | — | semgrep: not applicable — No personal data was found crossing a boundary the PII/GDPR ruleset checks — nothing written to a log or console sink, placed in a URL or query string, or persisted to browser storage. That is a clean result for the LEAK surface only: this ruleset detects personal data escaping, it does not inventory the personal data a repository holds, so it is not evidence that this repository has no personal-data surface. The personal-data map (Appendix C) and the C1-C5 compliance cards are what speak to that. | 0 | — |
| D37 · Vulnerability-disclosure Policy | disclosure | — | disclosure: not applicable — No vulnerability-disclosure policy file found (SECURITY.md/.markdown/.rst/.txt at root or under .github/.forgejo/.gitea/docs, .well-known/security.txt). A coordinated-disclosure policy may live off-repo, so this is not evidenced rather than failed. | 0 | — |
| D40 · Network Egress Confinement | runtime-hardening | — | runtime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; network egress policy is a cluster-native control that may live at the platform/firewall layer, so there is nothing to assess here. | 0 | — |
| D41 · Kernel & Syscall Confinement | runtime-hardening | — | runtime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; seccomp/AppArmor/SELinux confinement is a workload-level control, so there is nothing to assess here. | 0 | — |
| D42 · Runtime Threat Enforcement | runtime-hardening | — | runtime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; runtime threat-detection and admission-control policy are cluster-level controls, so there is nothing to assess here. | 0 | — |
| D43 · Malicious Dependencies | osv-scanner | — | osv-scanner --format json --recursive . | 0 | artifacts/raw/osv-scanner.json |