* abort building playout if any collection contains a zero-duration item * surface errors calling ffprobe * improve ffmpeg/ffprobe path validation
124 lines
4.6 KiB
C#
124 lines
4.6 KiB
C#
using System.Diagnostics;
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using System.Threading;
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using System.Threading.Tasks;
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using ErsatzTV.Core;
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using ErsatzTV.Core.Domain;
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using ErsatzTV.Core.Interfaces.Metadata;
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using ErsatzTV.Core.Interfaces.Repositories;
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using LanguageExt;
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namespace ErsatzTV.Application.FFmpegProfiles.Commands
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{
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public class UpdateFFmpegSettingsHandler : MediatR.IRequestHandler<UpdateFFmpegSettings, Either<BaseError, Unit>>
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{
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private readonly IConfigElementRepository _configElementRepository;
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private readonly ILocalFileSystem _localFileSystem;
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public UpdateFFmpegSettingsHandler(
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IConfigElementRepository configElementRepository,
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ILocalFileSystem localFileSystem)
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{
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_configElementRepository = configElementRepository;
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_localFileSystem = localFileSystem;
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}
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public Task<Either<BaseError, Unit>> Handle(
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UpdateFFmpegSettings request,
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CancellationToken cancellationToken) =>
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Validate(request)
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.MapT(_ => ApplyUpdate(request))
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.Bind(v => v.ToEitherAsync());
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private async Task<Validation<BaseError, Unit>> Validate(UpdateFFmpegSettings request) =>
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(await FFmpegMustExist(request), await FFprobeMustExist(request))
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.Apply((_, _) => Unit.Default);
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private Task<Validation<BaseError, Unit>> FFmpegMustExist(UpdateFFmpegSettings request) =>
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ValidateToolPath(request.Settings.FFmpegPath, "ffmpeg");
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private Task<Validation<BaseError, Unit>> FFprobeMustExist(UpdateFFmpegSettings request) =>
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ValidateToolPath(request.Settings.FFprobePath, "ffprobe");
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private async Task<Validation<BaseError, Unit>> ValidateToolPath(string path, string name)
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{
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if (!_localFileSystem.FileExists(path))
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{
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return BaseError.New($"{name} path does not exist");
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}
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var startInfo = new ProcessStartInfo
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{
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FileName = path,
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Arguments = "-version",
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RedirectStandardOutput = true,
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RedirectStandardError = true,
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UseShellExecute = false
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};
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var test = new Process
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{
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StartInfo = startInfo
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};
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test.Start();
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string output = await test.StandardOutput.ReadToEndAsync();
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await test.WaitForExitAsync();
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return test.ExitCode == 0 && output.Contains($"{name} version")
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? Unit.Default
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: BaseError.New($"Unable to verify {name} version");
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}
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private async Task<Unit> ApplyUpdate(UpdateFFmpegSettings request)
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{
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Option<ConfigElement> ffmpegPath = await _configElementRepository.Get(ConfigElementKey.FFmpegPath);
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Option<ConfigElement> ffprobePath = await _configElementRepository.Get(ConfigElementKey.FFprobePath);
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Option<ConfigElement> defaultFFmpegProfileId =
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await _configElementRepository.Get(ConfigElementKey.FFmpegDefaultProfileId);
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ffmpegPath.Match(
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ce =>
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{
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ce.Value = request.Settings.FFmpegPath;
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_configElementRepository.Update(ce);
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},
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() =>
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{
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var ce = new ConfigElement
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{ Key = ConfigElementKey.FFmpegPath.Key, Value = request.Settings.FFmpegPath };
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_configElementRepository.Add(ce);
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});
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ffprobePath.Match(
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ce =>
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{
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ce.Value = request.Settings.FFprobePath;
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_configElementRepository.Update(ce);
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},
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() =>
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{
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var ce = new ConfigElement
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{ Key = ConfigElementKey.FFprobePath.Key, Value = request.Settings.FFprobePath };
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_configElementRepository.Add(ce);
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});
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defaultFFmpegProfileId.Match(
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ce =>
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{
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ce.Value = request.Settings.DefaultFFmpegProfileId.ToString();
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_configElementRepository.Update(ce);
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},
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() =>
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{
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var ce = new ConfigElement
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{
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Key = ConfigElementKey.FFmpegDefaultProfileId.Key,
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Value = request.Settings.DefaultFFmpegProfileId.ToString()
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};
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_configElementRepository.Add(ce);
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});
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return Unit.Default;
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}
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}
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}
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