365 lines
9.6 KiB
Go
365 lines
9.6 KiB
Go
package main
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import (
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"context"
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"ffmpeg-gui/internal/config"
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"ffmpeg-gui/internal/ffmpeg"
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"ffmpeg-gui/internal/gpu"
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"ffmpeg-gui/internal/hwaccel"
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"ffmpeg-gui/internal/media"
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"ffmpeg-gui/internal/platform"
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"ffmpeg-gui/internal/task"
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"fmt"
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"os"
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"strings"
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"time"
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"github.com/wailsapp/wails/v2/pkg/runtime"
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)
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// App is the main application struct. Its exported methods are bound to the frontend.
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type App struct {
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ctx context.Context
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cfg *config.Config
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exec *ffmpeg.Executor
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taskMgr *task.Manager
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hwDetect *hwaccel.Detector
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}
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// NewApp creates a new App instance.
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func NewApp() *App {
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return &App{}
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}
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// startup is called when the app starts.
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func (a *App) startup(ctx context.Context) {
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a.ctx = ctx
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a.cfg = config.Load()
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runtime.LogInfo(ctx, "[app] config loaded")
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// Detect ffmpeg/ffprobe (system → saved → bundled)
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bins, err := detectBins(a.cfg)
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if err != nil {
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// System/PATH not found — extract embedded zip if bundled
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zipData, zipErr := bundledDir.ReadFile("bundled/ffmpeg.zip")
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runtime.LogInfo(ctx, fmt.Sprintf("ffmpeg not in PATH, bundled zip: err=%v size=%d", zipErr, len(zipData)))
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if zipErr == nil {
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ffmpegPath, ffprobePath := a.cfg.ExtractZip(zipData)
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if ffmpegPath != "" {
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a.cfg.FFmpegPath = ffmpegPath
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}
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if ffprobePath != "" {
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a.cfg.FFprobePath = ffprobePath
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}
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if a.cfg.FFmpegPath != "" || a.cfg.FFprobePath != "" {
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a.cfg.Save()
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runtime.LogInfo(ctx, fmt.Sprintf("config saved with ffmpeg=%s ffprobe=%s", a.cfg.FFmpegPath, a.cfg.FFprobePath))
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}
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}
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// Retry with extracted binaries
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bins, err = detectBins(a.cfg)
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}
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if err != nil {
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runtime.LogError(ctx, fmt.Sprintf("ffmpeg detect failed: %v", err))
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return
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}
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runtime.LogInfo(ctx, fmt.Sprintf("ffmpeg: %s, ffprobe: %s", bins.FFmpeg, bins.FFprobe))
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a.exec = ffmpeg.NewExecutor(bins)
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a.hwDetect = hwaccel.NewDetector(a.exec)
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a.taskMgr = task.NewManager(a.exec)
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// Restore saved preferred accelerator
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if a.cfg.PreferredAccel != "" {
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a.taskMgr.SetHWAccel(a.cfg.PreferredAccel)
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}
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a.taskMgr.SetEventCallback(func(eventType string, data any) {
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runtime.EventsEmit(ctx, eventType, data)
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})
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// Enable window resize borders on frameless windows (Windows only)
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go func() {
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time.Sleep(200 * time.Millisecond)
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platform.EnableResizeBorder()
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}()
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}
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// shutdown is called when the app is closing.
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func (a *App) shutdown(ctx context.Context) {
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if a.taskMgr != nil {
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a.taskMgr.Stop()
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}
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}
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// ---- Window Controls ----
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// MinimizeWindow minimizes the application window.
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func (a *App) MinimizeWindow() {
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runtime.WindowMinimise(a.ctx)
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}
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// MaximizeWindow toggles the window between maximized and normal.
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func (a *App) MaximizeWindow() {
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if runtime.WindowIsMaximised(a.ctx) {
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runtime.WindowUnmaximise(a.ctx)
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} else {
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runtime.WindowMaximise(a.ctx)
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}
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}
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// CloseWindow closes the application.
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func (a *App) CloseWindow() {
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runtime.Quit(a.ctx)
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}
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// IsMaximised returns whether the window is currently maximized.
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func (a *App) IsMaximised() bool {
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return runtime.WindowIsMaximised(a.ctx)
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}
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// ---- Media Info ----
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// GetMediaInfo retrieves media file information via ffprobe.
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func (a *App) GetMediaInfo(inputFile string) (*media.MediaInfo, error) {
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if a.exec == nil {
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return nil, fmt.Errorf("ffmpeg not initialized")
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}
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return media.GetInfo(a.exec, inputFile)
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}
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// ---- Hardware Detection ----
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// GetHardwareEncoders returns detected hardware encoders.
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func (a *App) GetHardwareEncoders() ([]hwaccel.HWEncoder, error) {
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if a.hwDetect == nil {
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return nil, fmt.Errorf("hw detector not initialized")
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}
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return a.hwDetect.DetectEncoders()
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}
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// GetGPUInfo returns detected GPU models and their encoder capabilities.
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func (a *App) GetGPUInfo() []gpu.GPUInfo {
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return gpu.DetectGPUs(a.exec)
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}
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// detectBins finds ffmpeg/ffprobe, checking config paths first.
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func detectBins(cfg *config.Config) (ffmpeg.BinPaths, error) {
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// Try config-saved paths first
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if cfg.FFmpegPath != "" && cfg.FFprobePath != "" {
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if fileExists(cfg.FFmpegPath) && fileExists(cfg.FFprobePath) {
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return ffmpeg.BinPaths{FFmpeg: cfg.FFmpegPath, FFprobe: cfg.FFprobePath}, nil
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}
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}
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// Fall back to default detection (bundled, then PATH)
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return ffmpeg.Detect()
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}
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func fileExists(path string) bool {
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_, err := os.Stat(path)
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return err == nil
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}
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// ---- Config API ----
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// GetConfig returns the current app configuration.
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func (a *App) GetConfig() map[string]string {
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return map[string]string{
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"theme": a.cfg.Theme,
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"preferredAccel": a.cfg.PreferredAccel,
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"outputDir": a.cfg.OutputDir,
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"namingRule": a.cfg.NamingRule,
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}
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}
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// SaveConfig saves a configuration value.
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func (a *App) SaveConfig(key, value string) {
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switch key {
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case "theme":
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a.cfg.Theme = value
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case "preferredAccel":
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a.cfg.PreferredAccel = value
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case "outputDir":
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a.cfg.OutputDir = value
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case "namingRule":
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a.cfg.NamingRule = value
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}
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a.cfg.Save()
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}
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// ---- Hardware Detection ----
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// CheckFFmpeg returns ffmpeg and ffprobe paths and version info.
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func (a *App) CheckFFmpeg() map[string]string {
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result := map[string]string{
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"ffmpegPath": "",
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"ffprobePath": "",
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"ffmpegVer": "",
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"ffprobeVer": "",
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}
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if a.exec == nil {
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// Try config paths as fallback
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bins, err := detectBins(a.cfg)
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if err != nil {
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return result
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}
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result["ffmpegPath"] = bins.FFmpeg
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result["ffprobePath"] = bins.FFprobe
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// Can't get version without executor, but at least show paths
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return result
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}
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// Use saved config paths if available
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if a.cfg.FFmpegPath != "" && fileExists(a.cfg.FFmpegPath) {
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result["ffmpegPath"] = a.cfg.FFmpegPath
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} else {
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bins, _ := ffmpeg.Detect()
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result["ffmpegPath"] = bins.FFmpeg
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}
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if a.cfg.FFprobePath != "" && fileExists(a.cfg.FFprobePath) {
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result["ffprobePath"] = a.cfg.FFprobePath
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} else {
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bins, _ := ffmpeg.Detect()
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result["ffprobePath"] = bins.FFprobe
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}
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out, err := a.exec.RunSync("-version")
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if err == nil {
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lines := strings.Split(out, "\n")
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if len(lines) > 0 {
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result["ffmpegVer"] = strings.TrimSpace(lines[0])
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}
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}
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out, err = a.exec.Probe("-version")
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if err == nil {
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lines := strings.Split(out, "\n")
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if len(lines) > 0 {
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result["ffprobeVer"] = strings.TrimSpace(lines[0])
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}
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}
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return result
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}
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// GetAccelerators returns detected hardware acceleration methods.
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func (a *App) GetAccelerators() ([]hwaccel.Accelerator, error) {
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if a.hwDetect == nil {
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return nil, fmt.Errorf("hw detector not initialized")
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}
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return a.hwDetect.DetectAccelerators()
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}
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// ---- Task Management ----
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// AddTask adds a new task to the queue and returns the task ID.
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func (a *App) AddTask(t *task.Task) (string, error) {
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if a.taskMgr == nil {
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return "", fmt.Errorf("task manager not initialized")
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}
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id := a.taskMgr.Add(t)
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return id, nil
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}
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// StartTask starts a specific task by ID.
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func (a *App) StartTask(taskID string) error {
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if a.taskMgr == nil {
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return fmt.Errorf("task manager not initialized")
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}
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return a.taskMgr.Start(taskID)
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}
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// StartAllTasks starts all pending tasks sequentially.
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func (a *App) StartAllTasks() {
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if a.taskMgr != nil {
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a.taskMgr.StartAll()
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}
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}
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// CancelTask cancels a running or pending task.
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func (a *App) CancelTask(taskID string) error {
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if a.taskMgr == nil {
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return fmt.Errorf("task manager not initialized")
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}
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return a.taskMgr.Cancel(taskID)
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}
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// RemoveTask removes a completed/failed/canceled task.
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func (a *App) RemoveTask(taskID string) error {
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if a.taskMgr == nil {
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return fmt.Errorf("task manager not initialized")
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}
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return a.taskMgr.Remove(taskID)
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}
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// GetTasks returns all tasks in the queue.
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func (a *App) GetTasks() []*task.Task {
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if a.taskMgr == nil {
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return nil
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}
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return a.taskMgr.List()
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}
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// GetTaskLogs returns the stderr logs for a specific task.
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func (a *App) GetTaskLogs(taskID string) []string {
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if a.taskMgr == nil {
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return nil
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}
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for _, t := range a.taskMgr.List() {
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if t.ID == taskID {
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return t.Logs
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}
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}
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return nil
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}
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// SetHWAccel sets the hardware acceleration method for encoding.
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func (a *App) SetHWAccel(accel string) {
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if a.taskMgr != nil {
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a.taskMgr.SetHWAccel(accel)
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}
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}
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// ---- File Dialogs ----
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// SelectInputFile opens a file dialog for selecting an input media file.
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func (a *App) SelectInputFile() (string, error) {
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return runtime.OpenFileDialog(a.ctx, runtime.OpenDialogOptions{
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Title: "选择输入文件",
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Filters: []runtime.FileFilter{
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{DisplayName: "视频文件 (*.mp4;*.mkv;*.mov;*.ts;*.avi;*.webm;*.flv)", Pattern: "*.mp4;*.mkv;*.mov;*.ts;*.avi;*.webm;*.flv"},
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{DisplayName: "所有文件 (*.*)", Pattern: "*.*"},
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},
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})
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}
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// SelectOutputFile opens a save file dialog.
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func (a *App) SelectOutputFile(defaultName string) (string, error) {
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return runtime.SaveFileDialog(a.ctx, runtime.SaveDialogOptions{
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Title: "选择输出文件",
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DefaultFilename: defaultName,
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Filters: []runtime.FileFilter{
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{DisplayName: "MP4 (*.mp4)", Pattern: "*.mp4"},
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{DisplayName: "MKV (*.mkv)", Pattern: "*.mkv"},
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{DisplayName: "MOV (*.mov)", Pattern: "*.mov"},
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{DisplayName: "所有文件 (*.*)", Pattern: "*.*"},
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},
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})
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}
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// SelectOutputDir opens a directory dialog for selecting a default output folder.
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func (a *App) SelectOutputDir() (string, error) {
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return runtime.OpenDirectoryDialog(a.ctx, runtime.OpenDialogOptions{
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Title: "选择默认输出目录",
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})
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}
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// SelectSubtitleFile opens a file dialog for selecting an external subtitle file.
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func (a *App) SelectSubtitleFile() (string, error) {
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return runtime.OpenFileDialog(a.ctx, runtime.OpenDialogOptions{
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Title: "选择字幕文件",
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Filters: []runtime.FileFilter{
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{DisplayName: "字幕文件 (*.srt;*.ass;*.ssa;*.vtt;*.sub)", Pattern: "*.srt;*.ass;*.ssa;*.vtt;*.sub"},
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{DisplayName: "所有文件 (*.*)", Pattern: "*.*"},
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},
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})
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}
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