8c7938aca0
IFfmpegLocator seam that resolves ffmpeg.exe (PATH -> cache -> pinned download), plus the licensing compliance that makes a paid GA product defensible. NOTE FOR USERS: this change shows NO difference in the app's behavior except a new top-bar "About" button (opens THIRD-PARTY-NOTICES.txt). It is scaffolding for the encoder/streaming work. - Services/Encoder/: IFfmpegLocator + FfmpegLocator. Pin is BtbN lgpl-shared autobuild-2026-08-09-13-03 (NOT gyan.dev/GPL or static: LGPLv2.1 §6 static relink material avoided by dynamic linking); extracts ffmpeg.exe + libav*.dll via a staging dir so a crash never leaves a partial cache - THIRD-PARTY-NOTICES.txt: LGPL/BSD/MIT notices + source offer, copied to the build output, surfaced by the About button; v1 gate = bundle full license texts (TASK 4 requirement 9) - ai.md "Licensing - do not violate" guardrails (never GPL/nonfree/static/latest- tag, never link FFmpeg in, never drop notices); TASKS.md + Services/index.md updated - Tests: FfmpegLocatorTests - hermetic decision-ladder integration test + shared- build DLL extraction + edge cases; docs updated (78 tests passing, 0 warnings)
130 lines
5.3 KiB
C#
130 lines
5.3 KiB
C#
using System.IO;
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using System.IO.Compression;
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using System.Net.Http;
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using ytLive.Helpers;
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namespace ytLive.Services.Encoder;
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/// <summary>
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/// The default <see cref="IFfmpegLocator"/>: probe PATH first (the user's own
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/// install wins), then the cache in <c>%APPDATA%\ytLlive\tools</c>, then pull the
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/// pinned BtbN **lgpl-shared** build (TASK 4 ship step 2). The shared variant is a
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/// deliberate licensing choice: dynamic linking means LGPL compliance is "license
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/// text + source offer", with no static-relink (LGPL §6) material required. The
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/// shared zip puts <c>ffmpeg.exe</c> plus the <c>libav*.dll</c> family in <c>bin/</c>,
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/// so both are extracted — Windows resolves the DLLs from the exe's own directory.
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/// Search dirs, tools dir, and the downloader are constructor-injected so tests
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/// fake the network and stay on a temp directory.
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/// </summary>
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public sealed class FfmpegLocator : IFfmpegLocator
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{
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public const string FileName = "ffmpeg.exe";
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/// <summary>Pinned BtbN LGPL-shared win64 build (immutable autobuild tag; see TASKS.md).</summary>
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public const string PinnedUrl =
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"https://github.com/BtbN/FFmpeg-Builds/releases/download/autobuild-2026-08-09-13-03/ffmpeg-master-latest-win64-lgpl-shared.zip";
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private readonly string[] _searchDirs;
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private readonly string _toolsDir;
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private readonly Func<string, CancellationToken, Task<byte[]>> _downloader;
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public FfmpegLocator(
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string[]? searchDirs = null,
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string? toolsDir = null,
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Func<string, CancellationToken, Task<byte[]>>? downloader = null)
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{
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_searchDirs = searchDirs ?? ParsePath();
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_toolsDir = toolsDir ?? Path.Combine(
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Environment.GetFolderPath(Environment.SpecialFolder.ApplicationData), "ytLlive", "tools");
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_downloader = downloader ?? DefaultDownload;
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}
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public async Task<string> LocateAsync(CancellationToken cancellationToken = default)
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{
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foreach (var dir in _searchDirs)
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{
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if (string.IsNullOrEmpty(dir)) continue;
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var candidate = Path.Combine(dir, FileName);
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if (File.Exists(candidate)) return candidate;
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}
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var cached = Path.Combine(_toolsDir, FileName);
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if (File.Exists(cached) && new FileInfo(cached).Length > 0) return cached;
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try
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{
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var zip = await _downloader(PinnedUrl, cancellationToken).ConfigureAwait(false);
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if (zip.Length == 0)
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throw new IOException($"FFmpeg download from {PinnedUrl} returned an empty payload.");
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Directory.CreateDirectory(_toolsDir);
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ExtractBinaries(zip, _toolsDir);
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return cached;
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}
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catch (Exception ex) when (ex is IOException or InvalidDataException or NotSupportedException)
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{
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AppLog.Write(ex, "FFmpeg locator: download/extract failed");
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throw;
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}
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}
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/// <summary>
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/// Extract <c>ffmpeg.exe</c> and every <c>*.dll</c> into <c>toolsDir</c> via a
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/// staging directory, so a failed extract never leaves a partially-populated
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/// cache behind (the previous good cache stays until every move succeeds).
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/// </summary>
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private static void ExtractBinaries(byte[] zip, string toolsDir)
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{
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var staging = toolsDir + ".stage";
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if (Directory.Exists(staging)) Directory.Delete(staging, recursive: true);
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Directory.CreateDirectory(staging);
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try
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{
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using var stream = new MemoryStream(zip, writable: false);
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using var archive = new ZipArchive(stream, ZipArchiveMode.Read);
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var exe = archive.Entries.FirstOrDefault(
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e => e.FullName.EndsWith("/" + FileName, StringComparison.OrdinalIgnoreCase))
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?? throw new InvalidDataException($"The pinned FFmpeg archive does not contain {FileName}.");
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ExtractOne(exe, Path.Combine(staging, FileName));
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foreach (var entry in archive.Entries)
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{
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if (entry.FullName.EndsWith(".dll", StringComparison.OrdinalIgnoreCase))
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ExtractOne(entry, Path.Combine(staging, Path.GetFileName(entry.FullName)));
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}
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foreach (var file in Directory.GetFiles(staging))
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File.Move(file, Path.Combine(toolsDir, Path.GetFileName(file)), overwrite: true);
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}
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finally
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{
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if (Directory.Exists(staging)) Directory.Delete(staging, recursive: true);
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}
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}
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private static void ExtractOne(ZipArchiveEntry entry, string destination)
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{
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var temp = destination + ".tmp";
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try
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{
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using (var source = entry.Open())
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using (var target = File.Create(temp))
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source.CopyTo(target);
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File.Move(temp, destination);
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}
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finally
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{
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if (File.Exists(temp)) File.Delete(temp);
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}
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}
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private static async Task<byte[]> DefaultDownload(string url, CancellationToken ct)
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{
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using var http = new HttpClient { Timeout = TimeSpan.FromMinutes(10) };
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return await http.GetByteArrayAsync(url, ct).ConfigureAwait(false);
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}
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private static string[] ParsePath()
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{
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var raw = Environment.GetEnvironmentVariable("PATH") ?? "";
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return raw.Split(Path.PathSeparator, StringSplitOptions.RemoveEmptyEntries);
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}
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}
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