Files
supersonic/backend/player/mpv/player.go
T

504 lines
12 KiB
Go

package mpv
import (
"context"
"errors"
"fmt"
"math"
"strconv"
"github.com/dweymouth/supersonic/backend/player"
"github.com/supersonic-app/go-mpv"
)
// Error returned by many Player functions if called before the player has not been initialized.
var ErrUnitialized error = errors.New("mpv player uninitialized")
// Information about a specific audio device.
// Returned by ListAudioDevices.
type AudioDevice struct {
// The name of the audio device.
// This is the string to pass to SetAudioDevice.
Name string
// The description of the audio device.
// This is the friendly string that should be used in UIs.
Description string
}
// Media information about the currently playing media.
type MediaInfo struct {
// The sample format as string. This uses the same names as used in other places of mpv.
// NOTE: this is the format that the decoder outputs, NOT necessarily the format of the file.
Format string
// Audio samplerate.
Samplerate int
// The number of channels.
ChannelCount int
// The audio codec.
Codec string
// The average bit rate in bits per second.
Bitrate int
}
var _ player.URLPlayer = (*Player)(nil)
// Player encapsulates the mpv instance and provides functions
// to control it and to check its status.
type Player struct {
player.BasePlayerCallbackImpl
mpv *mpv.Mpv
initialized bool
vol int
replayGainOpts player.ReplayGainOptions
haveRGainOpts bool
audioExclusive bool
status player.Status
seeking bool
curPlaylistPos int64
lenPlaylist int64
prePausedState player.State
clientName string
equalizer Equalizer
peaksEnabled bool
bgCancel context.CancelFunc
}
// Returns a new player.
// Must call Init on the player before it is ready for playback.
func New() *Player {
return NewWithClientName("")
}
// Same as New, but sets the application name that mpv
// reports to the system audio API.
func NewWithClientName(c string) *Player {
return &Player{
vol: -1, // use 100 in Init
clientName: c,
}
}
// Initializes the Player and makes it ready for playback.
// Most Player functions will return ErrUnitialized if called before Init.
func (p *Player) Init(maxCacheMB int) error {
if !p.initialized {
m := mpv.Create()
m.SetOptionString("idle", "yes")
m.SetOptionString("video", "no")
m.SetOptionString("audio-display", "no")
m.SetOptionString("gapless-audio", "weak")
m.SetOptionString("prefetch-playlist", "yes")
m.SetOptionString("force-seekable", "yes")
m.SetOptionString("terminal", "no")
// limit in-memory cache size
maxBackMB := maxCacheMB / 3
maxForwardMB := maxBackMB + maxBackMB
m.SetOptionString("demuxer-max-bytes", fmt.Sprintf("%dMiB", maxForwardMB))
m.SetOptionString("demuxer-max-back-bytes", fmt.Sprintf("%dMiB", maxBackMB))
if p.vol < 0 {
p.vol = 100
}
m.SetOption("volume", mpv.FORMAT_INT64, p.vol)
p.SetAudioExclusive(p.audioExclusive)
if p.haveRGainOpts {
p.SetReplayGainOptions(p.replayGainOpts)
}
if p.clientName != "" {
m.SetOptionString("audio-client-name", p.clientName)
}
if err := m.Initialize(); err != nil {
return fmt.Errorf("error initializing mpv: %s", err.Error())
}
p.mpv = m
}
ctx, cancel := context.WithCancel(context.Background())
go p.eventHandler(ctx)
p.bgCancel = cancel
p.initialized = true
return nil
}
// Plays the specified file, clearing the previous play queue, if any.
func (p *Player) PlayFile(url string) error {
if !p.initialized {
return ErrUnitialized
}
err := p.mpv.Command([]string{"loadfile", url, "replace"})
if err == nil {
p.lenPlaylist = 1
if p.status.State == player.Paused {
return p.Continue()
}
p.setState(player.Playing)
}
return err
}
// Stops playback and clears the play queue.
func (p *Player) Stop() error {
if !p.initialized {
return ErrUnitialized
}
var err error
if p.status.State == player.Stopped {
err = p.mpv.Command([]string{"playlist-clear"})
} else {
if err = p.mpv.Command([]string{"stop"}); err == nil {
// if player was paused, stop command actually doesn't clear pause state
err = p.setPaused(false)
}
}
if err == nil {
p.lenPlaylist = 0
p.setState(player.Stopped)
}
return err
}
func (p *Player) SetNextFile(url string) error {
if p.lenPlaylist > p.curPlaylistPos+1 {
if err := p.mpv.Command([]string{"playlist-remove", strconv.Itoa(int(p.curPlaylistPos) + 1)}); err != nil {
return err
}
p.lenPlaylist--
}
if url == "" {
return nil
}
err := p.mpv.Command([]string{"loadfile", url, "append"})
if err == nil {
p.lenPlaylist++
}
return err
}
// Seeks within the currently playing track.
// See MPV seek command documentation for more details.
func (p *Player) SeekSeconds(secs float64) error {
if !p.initialized {
return ErrUnitialized
}
target := fmt.Sprintf("%0.1f", secs)
p.seeking = true
err := p.mpv.Command([]string{"seek", target, "absolute"})
return err
}
// Sets the volume of the player (0-100).
// Unlike most Player functions, SetVolume can be called before Init,
// to set the initial volume of the player on startup.
func (p *Player) SetVolume(vol int) error {
if vol > 100 {
vol = 100
} else if vol < 0 {
vol = 0
}
if p.initialized {
err := p.mpv.SetProperty("volume", mpv.FORMAT_INT64, vol)
if err == nil {
p.vol = vol
}
return err
}
p.vol = vol
return nil
}
// Sets the ReplayGain options of the player.
// Unlike most Player functions, SetReplayGainOptions can be called
// before Init, to set the initial replaygain options of the player on startup.
func (p *Player) SetReplayGainOptions(options player.ReplayGainOptions) error {
p.replayGainOpts = options
p.haveRGainOpts = true
mode := "no"
switch options.Mode {
case player.ReplayGainAlbum:
mode = "album"
case player.ReplayGainTrack:
mode = "track"
}
if p.initialized {
if err := p.mpv.SetPropertyString("replaygain", mode); err != nil {
return err
}
if err := p.mpv.SetProperty("replaygain-preamp", mpv.FORMAT_DOUBLE, options.PreampGain); err != nil {
return err
}
clip := "yes"
if options.PreventClipping {
clip = "no"
}
if err := p.mpv.SetPropertyString("replaygain-clip", clip); err != nil {
return err
}
}
return nil
}
// Sets the audio exclusive option of the player.
// Unlike most Player functions, SetAudioExclusive can be called
// before Init, to set the initial option of the player on startup.
func (p *Player) SetAudioExclusive(tf bool) {
p.audioExclusive = tf
if p.initialized {
val := "no"
if tf {
val = "yes"
}
p.mpv.SetOptionString("audio-exclusive", val)
}
}
// Gets the current volume of the player.
func (p *Player) GetVolume() int {
return p.vol
}
// sets paused status and ensures that audio exlusive is false while paused
// (releases audio device to other players)
func (p *Player) setPaused(paused bool) error {
if !paused && p.audioExclusive {
if err := p.mpv.SetOptionString("audio-exclusive", "yes"); err != nil {
return err
}
}
err := p.mpv.SetProperty("pause", mpv.FORMAT_FLAG, paused)
if err == nil && paused && p.audioExclusive {
err = p.mpv.SetOptionString("audio-exclusive", "no")
}
return err
}
// Pause playback and update the player state
func (p *Player) Pause() error {
if p.status.State != player.Playing {
return nil
}
err := p.setPaused(true)
if err == nil {
p.prePausedState = p.status.State
p.setState(player.Paused)
}
return err
}
// Continue playback and update the player state
func (p *Player) Continue() error {
if p.status.State == player.Paused {
err := p.setPaused(false)
if err == nil {
p.setState(p.prePausedState)
}
return err
}
return nil
}
func (p *Player) ForceRestartPlayback() error {
p.mpv.SetProperty("pause", mpv.FORMAT_FLAG, true)
return p.mpv.SetProperty("pause", mpv.FORMAT_FLAG, false)
}
// Get the current status of the player.
func (p *Player) GetStatus() player.Status {
if !p.initialized {
return p.status
}
pos, _ := p.mpv.GetProperty("playback-time", mpv.FORMAT_DOUBLE)
dur, _ := p.mpv.GetProperty("duration", mpv.FORMAT_DOUBLE)
if pos != nil {
p.status.TimePos = pos.(float64)
}
if dur != nil {
p.status.Duration = dur.(float64)
}
return p.status
}
// List available audio devices.
func (p *Player) ListAudioDevices() ([]AudioDevice, error) {
n, err := p.mpv.GetProperty("audio-device-list", mpv.FORMAT_NODE)
if err != nil {
return nil, err
}
nodeArr := n.(*mpv.Node).Data.([]*mpv.Node)
devices := make([]AudioDevice, len(nodeArr))
for i, node := range nodeArr {
dev := node.Data.(map[string]*mpv.Node)
name := dev["name"].Data.(string)
desc := dev["description"].Data.(string)
devices[i] = AudioDevice{Name: name, Description: desc}
}
return devices, nil
}
func (p *Player) SetAudioDevice(deviceName string) error {
return p.mpv.SetPropertyString("audio-device", deviceName)
}
func (p *Player) SetEqualizer(eq Equalizer) error {
p.equalizer = eq
return p.setAF()
}
func (p *Player) Equalizer() Equalizer {
return p.equalizer
}
func (p *Player) GetMediaInfo() (MediaInfo, error) {
var info MediaInfo
n, err := p.mpv.GetProperty("audio-params", mpv.FORMAT_NODE)
if err != nil {
return info, err
}
nodeMap := n.(*mpv.Node).Data.(map[string]*mpv.Node)
info.Format = nodeMap["format"].Data.(string)
info.Samplerate = int(nodeMap["samplerate"].Data.(int64))
info.ChannelCount = int(nodeMap["channel-count"].Data.(int64))
br, err := p.mpv.GetProperty("audio-bitrate", mpv.FORMAT_INT64)
if err == nil {
info.Bitrate = int(br.(int64))
}
codec, err := p.mpv.GetProperty("track-list/0/codec", mpv.FORMAT_STRING)
if err == nil {
info.Codec = codec.(string)
}
return info, nil
}
func (p *Player) getInt64Property(propName string) (int64, error) {
playpos, err := p.mpv.GetProperty(propName, mpv.FORMAT_INT64)
if err != nil {
return -1, err
}
if playpos != nil {
return playpos.(int64), nil
}
return -1, errors.New("mpv did not report playlist pos")
}
// Returns true if a seek is currently in progress.
func (p *Player) IsSeeking() bool {
return p.seeking && p.status.State == player.Playing
}
// Destroy the player.
func (p *Player) Destroy() {
if p.bgCancel != nil {
p.bgCancel()
}
if p.initialized {
p.mpv.Command([]string{"stop"})
p.mpv.TerminateDestroy()
p.initialized = false
}
}
func (p *Player) SetPeaksEnabled(enabled bool) error {
if p.peaksEnabled == enabled {
return nil
}
p.peaksEnabled = enabled
return p.setAF()
}
func (p *Player) GetPeaks() (float64, float64, float64, float64) {
nInf := math.Inf(-1)
if p.status.State != player.Playing {
return nInf, nInf, nInf, nInf
}
lPeak, rPeak, lRMS, rRMS, err := p.getPeaks()
if err != nil {
return nInf, nInf, nInf, nInf
}
return lPeak, rPeak, lRMS, rRMS
}
// sets the state and invokes callbacks, if triggered
func (p *Player) setState(s player.State) {
switch {
case s == player.Playing && p.status.State != player.Playing:
defer p.InvokeOnPlaying()
case s == player.Paused && p.status.State != player.Paused:
defer p.InvokeOnPaused()
case s == player.Stopped && p.status.State != player.Stopped:
defer p.InvokeOnStopped()
}
p.status.State = s
}
func (p *Player) setAF() error {
af := ""
if p.peaksEnabled {
af = "@astats:astats=metadata=1:reset=1:measure_overall=none"
}
eq := p.equalizer
if eq == nil || !eq.IsEnabled() {
return p.mpv.SetPropertyString("af", af)
} else if p.peaksEnabled {
af = af + ","
}
if math.Abs(eq.Preamp()) > 0.01 {
af = fmt.Sprintf("%svolume=volume=%0.1fdB", af, eq.Preamp())
}
if eqAF := eq.Curve().String(); eqAF != "" {
af = fmt.Sprintf("%s,%s", af, eqAF)
}
return p.mpv.SetPropertyString("af", af)
}
func (p *Player) eventHandler(ctx context.Context) {
for {
select {
case <-ctx.Done():
return
default:
e := p.mpv.WaitEvent(1 /*timeout seconds*/)
if e.Event_Id != mpv.EVENT_NONE {
//log.Printf("mpv event: %+v\n", e)
}
switch e.Event_Id {
case mpv.EVENT_PLAYBACK_RESTART:
if p.seeking {
p.seeking = false
}
case mpv.EVENT_SEEK:
p.InvokeOnSeek()
case mpv.EVENT_FILE_LOADED:
p.curPlaylistPos, _ = p.getInt64Property("playlist-pos")
if p.status.State == player.Paused {
// seek while paused switches to a new file
// mpv does not fire seek event in this case
p.InvokeOnSeek()
}
p.InvokeOnTrackChange()
case mpv.EVENT_IDLE:
p.status.Duration = 0
p.status.TimePos = 0
p.setState(player.Stopped)
}
}
}
}