Files
ytLlive/Services/index.md
T

40 lines
8.9 KiB
Markdown
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
# Services — index
External-facing logic: YouTube API, persistence. See
[`schema.md`](../schema.md) for the memory-map conventions.
| File | Purpose |
|------|---------|
| `YouTubeAuthService.cs` | OAuth2 via Google: loopback callback (`http://localhost:8765/oauth2/callback`), token exchange, refresh, channel fetch. Constructor takes optional `HttpClient` + `sessionChanged` callback (test seam + save hook); session persists via `Helpers/TokenStore` (DPAPI); `ClearSession()` signs out (called by `MainViewModel.StopStream` on End Livestream) |
| `YouTubeStreamService.cs` | Broadcast/stream management via the v3 API (`enableAutoStart/Stop`). **Not yet switched to the `variable` reusable stream** |
| `YouTubeChatService.cs` | Polls `liveChat/messages`, raises `MessageReceived`; `IDisposable` |
| `LayoutStore.cs` | SQLite persistence (`Microsoft.Data.Sqlite`) at `%APPDATA%\ytLlive\ytLlive.db`; assets stored as BLOBs keyed by SHA-256 content hash; save/open layout files; schema `user_version` 6 (`Source.ClipShape`/`IsMirrored` via `ALTER TABLE` for pre-v2 DBs; v3 = singleton `Webcam` + per-scene `WebcamSceneConfig`, migrated idempotently **without backfill** — the stale `Source.DeviceId` column remains but is no longer read/written; v4 = `WebcamSceneConfig.RectWidth`/`RectHeight`, the pre-Round rect for the round-to-rect restore; v5 = `Source.IsBackdrop` + `Source.CaptureKey`, the live-capture backdrop; v6 = `Scene.HasBackdrop` — Live-only policy, one-time backfill turns Starting/BRB/Chat/Ending off + drops their backdrop sources; `MainViewModel.EnforceBackdropPolicy` re-normalizes on every load) |
| `VideoFrame.cs` | Normalized CPU frame seam (`Width`/`Height`/tightly-packed BGRA `byte[]`) — the only pixel type the rest of the app knows about; future capture sources (screen, background-removed webcam) feed the same seam |
| `CameraDeviceInfo.cs` | `(Id, DisplayName)` for a physical capture device |
| `ICameraEnumerator.cs` | `GetCamerasAsync()` — seam so the picker/`CameraManager` never touch WinRT (tests inject fakes) |
| `ICameraFrameSource.cs` | `StartAsync`/`StopAsync`/`FrameAvailable(VideoFrame)` + **`SourceFailed(string)`** — seam for a running capture source (tests inject fakes) |
| `MediaCaptureCameraEnumerator.cs` | WinRT enumeration via `DeviceInformation.FindAllAsync(DeviceClass.VideoCapture)` |
| `MicrophoneDeviceInfo.cs` | `(Id, DisplayName)` for an audio capture (mic) device |
| `IMicrophoneEnumerator.cs` | `GetMicrophonesAsync()` — seam so the mic picker never touches WinRT (tests inject fakes) |
| `WinRtMicrophoneEnumerator.cs` | WinRT mic enumeration via `DeviceInformation.FindAllAsync(DeviceClass.AudioCapture)` (no NAudio needed — capture libs stay deferred to the audio pipeline milestone) |
| `MediaCaptureFrameSource.cs` | CPU-first MediaCapture source (`MemoryPreference = Cpu`, BGRA8 via `CreateFrameReaderAsync`). **Validated, not trusted:** post-init checks (`VideoDeviceId` match, `FrameSources` non-empty, `VideoDeviceController.GetAvailableMediaStreamProperties` ≥ 1); `reader.StartAsync()` status read (throws on non-`Success`); `capture.Failed` + `CameraStreamStateChanged` subscribed → `SourceFailed` event. Fallback ladder: VideoPreview → VideoRecord retry. `SharingMode.Exclusive` + `DeviceLost` not in 19041 SDK projection; `CameraStreamState.Failed` compared by `(int)2` (projection omits member names) |
| `CameraManager.cs` | Webcam capture ownership: refcounted by `DeviceId`, one shared `WriteableBitmap` per camera, dispatcher-coalesced ~render-rate UI updates (latest-frame drop); `PreviewBitmapChanged`/`CameraFailed` events. **First-frame proof** (4s timeout, configurable via ctor `TimeSpan?`): `AcquireAsync` returns true only after a real frame arrives — a reader that starts but never delivers (locked, suspended, dead) fails and surfaces `CameraFailed` with suspect-app names (`CameraConflictProbe`) instead of a silent empty box. `SourceFailed` forwarded from the frame source as async death signal |
| `IFullScreenDetector.cs` | Seam for the win32 full-screen detector: `int? GetForegroundFullScreenMonitorIndex()`, `int PrimaryMonitorIndex()`, `IReadOnlyList<DisplayInfo> GetDisplays()` |
| `Win32FullScreenDetector.cs` | `GetForegroundWindow` + `DwmGetWindowAttribute(DWMWA_EXTENDED_FRAME_BOUNDS)` + `MonitorFromWindow` + `GetMonitorInfo`; monitor covers all four edges → full-screen; own process excluded; monitor order = `EnumDisplayMonitors` order (static `GetMonitorHandle(int)` maps index→HMONITOR for the capture factory). `GetDisplays()` returns `DisplayInfo` (index/name/resolution/bounds/`IsPrimary`, friendly name via `EnumDisplayDevices`) for the in-app "Capture Display" picker; `PrimaryMonitorIndex()` is the auto-key fallback when no full-screen game is detected |
| `IScreenCaptureSource.cs` | `Key` + `StartAsync`/`StopAsync`/`FrameAvailable(VideoFrame)` — seam so `ScreenCaptureManager` never touches WinRT (tests inject fakes) |
| `Direct3D11Helper.cs` | The one shared `IDirect3DDevice` per process: P/Invoke `d3d11.dll!D3D11CreateDevice` (hardware, BGRA_SUPPORT, explicit 11.1-first feature array) → QI `IDXGIDevice` → the WinRT interop export `CreateDirect3D11DeviceFromDXGIDevice``MarshalInterface<IDirect3DDevice>.FromAbi`. CsWinRT does **not** project `Windows.Graphics.Direct3D11.Direct3D11Helper`, so this hand-rolls it. Do **not** revert to QI-for-`IDirect3DDxgiInterfaceAccess` — the device no longer exposes it on newer Windows (E_NOINTERFACE on build 26200) |
| `CaptureInterop.cs` | ComImport bridges the WinRT-projection gap: `IGraphicsCaptureItemInterop` (`CreateForMonitor`/`CreateForWindow`), `IInitializeWithWindow` (`GraphicsCapturePicker` owner window so the OS picker shows) |
| `ScreenCaptureFrameSource.cs` | One `Direct3D11CaptureFramePool` (free-threaded, 2 buffers) + session per target; frames → `SoftwareBitmap.CreateCopyFromSurfaceAsync` (BGRA, alpha ignored) → `VideoFrame`, bytes read via `WindowsRuntimeMarshal.TryGetDataUnsafe` (CsWinRT-safe — the `IMemoryBufferByteAccess` ComImport cast fails on every frame and is gone). Surfaces > 1920×1080 downscaled bilinearly to the master; conversion failures logged ≤ once/5 s. DRM content = black frames (OS limit). `CreateForMonitor`/`CreateForWindow`/`CreateForPicker` |
| `ScreenCaptureManager.cs` | Screen-capture ownership mirroring `CameraManager`: refcounted by target key, one shared `WriteableBitmap`, dispatcher-coalesced latest-frame copies; `PreviewBitmapChanged`/`CaptureFailed` events; `ReleaseAllAsync` used on re-designation |
| `ScreenCaptureSourceFactory.cs` | `Resolve(key)` parses `monitor:<n>` / `window:<hwnd>` / `picker:<name>` into a source; `PickAsync()` shows the OS `GraphicsCapturePicker` and returns the `picker:` key (transient — a reload falls back to auto-detection) |
| `Compositor/SceneCompositor.cs` | **The output compositor (TASK 4 ship step 1)**: renders a scene into the encoder's master `VideoFrame` (tightly-packed BGRA8), mirroring the XAML preview minus editing chrome — backdrop → background → elements (`UniformToFill` cover-crop, round clip, mirror, opacity, border) → branding flash. Pure and WPF-free: frames injected via a `Func<SceneElement, VideoFrame?>` resolver (webcam → DeviceId, image → AssetId, backdrop → CaptureKey); output sized by `CompositorOptions` (16:9 = full master 1:1; vertical 9:16 = 607×1080 crop → 1080×1920 bilinear). Preview stays XAML (editing view); this is the output view — see `ai.md` "Scene compositor" |
| `Compositor/CompositorOptions.cs` | The active tier's output rect (source space over the 1920×1080 master, integer-aligned — `MainViewModel.OutputRectX` can be 656.5) + target W×H |
| `Compositor/StretchMath.cs` | Pure pixel math: the WPF `UniformToFill` cover-crop, clamped bilinear sample/scale (unit-tested half of the compositor) |
| `Compositor/StaticPixelCache.cs` | Asset bytes → cached BGRA8 `VideoFrame`, decoded once per content hash — the output path's raw-pixel source (the preview uses ImageCache's `BitmapImage`) |
| `Encoder/IFfmpegLocator.cs` | **TASK 4 ship step 2 seam**: resolves an absolute path to `ffmpeg.exe` (PATH first → cached `%APPDATA%\ytLlive\tools\ffmpeg.exe` → pinned BtbN LGPL-shared zip download). The encoder step and tests fake it |
| `Encoder/FfmpegLocator.cs` | The default locator: PATH probe wins, then the cache, then pull+extract (`ffmpeg.exe` **+ the `libav*.dll` family** via a staging dir, failures via `AppLog`). Pinned to BtbN `autobuild-2026-08-09-13-03` **lgpl-shared** (dynamic linking = LGPL compliance without static-relink §6 material; no GPL libx264; NVENC/QSV/AMF + libopenh264 + native AAC — see `ai.md` → Licensing). Search dirs / tools dir / downloader constructor-injected for hermetic tests. Not yet constructed by the app (the encoder step wires it) |
Related: constructed in [`ViewModels/MainViewModel.cs`](../ViewModels/MainViewModel.cs)
(no DI container yet). Models in [`Models/index.md`](../Models/index.md).
OAuth credentials live in [`Helpers/OAuthCredentials.cs`](../Helpers/OAuthCredentials.cs).