2020-10-29 02:21:07 -04:00
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package main
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import (
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2021-02-01 16:03:38 -05:00
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"context"
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2020-10-29 02:21:07 -04:00
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"fmt"
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2020-11-04 01:12:43 -05:00
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"log"
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2020-10-30 01:38:01 -04:00
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"sync"
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2020-10-29 02:21:07 -04:00
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"time"
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"github.com/bwmarrin/discordgo"
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"layeh.com/gopus"
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"layeh.com/gumble/gumble"
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_ "layeh.com/gumble/opus"
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)
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2020-10-30 01:38:01 -04:00
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type fromDiscord struct {
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decoder *gopus.Decoder
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pcm chan []int16
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streaming bool
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}
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2021-01-19 01:06:08 -05:00
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// DiscordDuplex Handle discord voice stream
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type DiscordDuplex struct {
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Bridge *BridgeState
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2021-04-07 01:24:17 -04:00
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discordMutex sync.Mutex
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fromDiscordMap map[uint32]fromDiscord
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}
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2020-10-29 02:21:07 -04:00
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// OnError gets called by dgvoice when an error is encountered.
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// By default logs to STDERR
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var OnError = func(str string, err error) {
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prefix := "dgVoice: " + str
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if err != nil {
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log.Println(prefix + ": " + err.Error())
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} else {
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log.Println(prefix)
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}
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}
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// SendPCM will receive on the provied channel encode
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// received PCM data into Opus then send that to Discordgo
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func (dd *DiscordDuplex) discordSendPCM(ctx context.Context, wg *sync.WaitGroup, cancel context.CancelFunc, pcm <-chan []int16) {
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const channels int = 1
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const frameRate int = 48000 // audio sampling rate
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const frameSize int = 960 // uint16 size of each audio frame
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const maxBytes int = (frameSize * 2) * 2 // max size of opus data
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streaming := false
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opusEncoder, err := gopus.NewEncoder(frameRate, channels, gopus.Audio)
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if err != nil {
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OnError("NewEncoder Error", err)
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panic(err)
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}
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2021-04-10 15:00:13 -04:00
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// Generate Opus Silence Frame
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opusSilence := []byte{0xf8, 0xff, 0xfe}
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for i := 3; i < frameSize; i++ {
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opusSilence = append(opusSilence, 0x00)
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}
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2021-04-15 00:43:12 -04:00
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ticker := NewTickerCT(20 * time.Millisecond)
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2020-10-29 02:21:07 -04:00
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2020-11-11 22:57:51 -05:00
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lastReady := true
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var readyTimeout *time.Timer
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2021-04-08 01:14:24 -04:00
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var speakingStart time.Time
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2021-02-01 16:03:38 -05:00
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wg.Add(1)
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2021-04-10 15:00:13 -04:00
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internalSend := func(opus []byte) {
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dd.Bridge.DiscordVoice.RWMutex.RLock()
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if !dd.Bridge.DiscordVoice.Ready || dd.Bridge.DiscordVoice.OpusSend == nil {
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if lastReady {
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OnError(fmt.Sprintf("Discordgo not ready for opus packets. %+v : %+v", dd.Bridge.DiscordVoice.Ready, dd.Bridge.DiscordVoice.OpusSend), nil)
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readyTimeout = time.AfterFunc(30*time.Second, func() {
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log.Println("set ready timeout")
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cancel()
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})
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lastReady = false
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}
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} else if !lastReady {
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fmt.Println("Discordgo ready to send opus packets")
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lastReady = true
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readyTimeout.Stop()
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} else {
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dd.Bridge.DiscordVoice.OpusSend <- opus
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}
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dd.Bridge.DiscordVoice.RWMutex.RUnlock()
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}
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2020-10-29 02:21:07 -04:00
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for {
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2020-12-29 18:19:44 -05:00
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select {
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case <-ctx.Done():
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wg.Done()
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2020-12-29 18:19:44 -05:00
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return
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default:
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}
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<-ticker.C
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if (len(pcm) > 1 && streaming) || (len(pcm) > dd.Bridge.BridgeConfig.DiscordStartStreamingCount && !streaming) {
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if !streaming {
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log.Println("Debug: Discord start speaking")
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speakingStart = time.Now()
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dd.Bridge.DiscordVoice.Speaking(true)
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streaming = true
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}
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r1 := <-pcm
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r2 := <-pcm
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// try encoding pcm frame with Opus
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opus, err := opusEncoder.Encode(append(r1, r2...), frameSize, maxBytes)
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if err != nil {
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OnError("Encoding Error", err)
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2020-11-04 01:12:43 -05:00
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continue
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2020-10-29 02:21:07 -04:00
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}
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2021-04-10 15:00:13 -04:00
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internalSend(opus)
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2020-10-29 02:21:07 -04:00
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} else {
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if streaming {
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2021-04-10 15:00:13 -04:00
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// Check to see if there is a short speaking cycle.
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// It is possible that short speaking cycle is the result of a short input to mumble (Not a problem). ie a quick tap of push to talk button.
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// Or when timing delays are introduced via network, hardware or kernel delays (Problem).
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// The problem delays result in choppy or stuttering sounds, especially when the silence frames are introduced into the opus frames below.
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// Multiple short cycle delays can result in a Discrod rate limiter being trigger due to of multiple JSON speaking/not-speaking state changes
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log.Println("Debug: Discord stop speaking", time.Since(speakingStart).Milliseconds(), "ms") // remove before merge
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if time.Since(speakingStart).Milliseconds() < 100 {
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log.Println("Warning: Short Mumble to Discord speaking cycle. Consider increaseing the size of the TO_DISCORD_BUFFER")
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}
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// Send silence as suggested by Discord Documentation.
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// We want to do this after alerting the user of possible short speaking cycles
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for i := 0; i < 5; i++ {
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internalSend(opusSilence)
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<-ticker.C
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}
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2021-01-19 01:06:08 -05:00
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dd.Bridge.DiscordVoice.Speaking(false)
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streaming = false
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}
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}
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}
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}
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// ReceivePCM will receive on the the Discordgo OpusRecv channel and decode
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// the opus audio into PCM then send it on the provided channel.
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2021-02-01 16:03:38 -05:00
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func (dd *DiscordDuplex) discordReceivePCM(ctx context.Context, wg *sync.WaitGroup, cancel context.CancelFunc) {
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var err error
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2020-11-11 22:57:51 -05:00
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lastReady := true
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var readyTimeout *time.Timer
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2021-02-01 16:03:38 -05:00
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wg.Add(1)
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2020-10-29 02:21:07 -04:00
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for {
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2021-04-07 01:24:17 -04:00
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dd.Bridge.DiscordVoice.RWMutex.RLock()
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2021-04-06 22:34:38 -04:00
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if !dd.Bridge.DiscordVoice.Ready || dd.Bridge.DiscordVoice.OpusRecv == nil {
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if lastReady {
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OnError(fmt.Sprintf("Discordgo not to receive opus packets. %+v : %+v", dd.Bridge.DiscordVoice.Ready, dd.Bridge.DiscordVoice.OpusSend), nil)
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2020-11-11 22:57:51 -05:00
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readyTimeout = time.AfterFunc(30*time.Second, func() {
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2020-12-29 18:19:44 -05:00
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log.Println("set ready timeout")
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cancel()
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2020-11-11 22:57:51 -05:00
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})
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lastReady = false
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}
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2020-11-04 01:12:43 -05:00
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continue
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} else if !lastReady {
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2020-11-11 22:57:51 -05:00
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fmt.Println("Discordgo ready to receive packets")
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lastReady = true
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readyTimeout.Stop()
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2020-10-29 02:21:07 -04:00
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}
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2021-04-07 01:24:17 -04:00
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dd.Bridge.DiscordVoice.RWMutex.RUnlock()
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2021-01-19 01:06:08 -05:00
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2021-01-03 16:19:49 -05:00
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var ok bool
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var p *discordgo.Packet
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2021-01-03 16:19:49 -05:00
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select {
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2021-02-01 16:03:38 -05:00
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case <-ctx.Done():
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wg.Done()
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return
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2021-02-01 16:03:38 -05:00
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case p, ok = <-dd.Bridge.DiscordVoice.OpusRecv:
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}
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2020-10-29 02:21:07 -04:00
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if !ok {
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2020-11-04 01:12:43 -05:00
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log.Println("Opus not ok")
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continue
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2020-10-29 02:21:07 -04:00
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Lock()
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_, ok = dd.fromDiscordMap[p.SSRC]
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dd.discordMutex.Unlock()
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if !ok {
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2020-10-30 01:38:01 -04:00
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newStream := fromDiscord{}
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newStream.pcm = make(chan []int16, 100)
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newStream.streaming = false
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newStream.decoder, err = gopus.NewDecoder(48000, 1)
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2020-10-29 02:21:07 -04:00
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if err != nil {
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OnError("error creating opus decoder", err)
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continue
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Lock()
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dd.fromDiscordMap[p.SSRC] = newStream
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dd.discordMutex.Unlock()
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2020-10-29 02:21:07 -04:00
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Lock()
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p.PCM, err = dd.fromDiscordMap[p.SSRC].decoder.Decode(p.Opus, 960, false)
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dd.discordMutex.Unlock()
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2020-10-29 02:21:07 -04:00
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if err != nil {
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OnError("Error decoding opus data", err)
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continue
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}
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2021-01-03 15:32:59 -05:00
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if len(p.PCM) != 960 {
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log.Println("Opus size error")
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continue
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}
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2020-10-29 02:21:07 -04:00
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Lock()
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2021-01-03 15:32:59 -05:00
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select {
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2021-01-19 01:06:08 -05:00
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case dd.fromDiscordMap[p.SSRC].pcm <- p.PCM[0:480]:
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2021-01-03 15:32:59 -05:00
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default:
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log.Println("fromDiscordMap buffer full. Dropping packet")
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Unlock()
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2021-01-05 21:56:37 -05:00
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continue
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2021-01-03 15:32:59 -05:00
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}
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select {
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2021-01-19 01:06:08 -05:00
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case dd.fromDiscordMap[p.SSRC].pcm <- p.PCM[480:960]:
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2021-01-03 15:32:59 -05:00
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default:
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log.Println("fromDiscordMap buffer full. Dropping packet")
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Unlock()
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2020-10-30 01:38:01 -04:00
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}
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}
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2021-02-01 16:03:38 -05:00
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func (dd *DiscordDuplex) fromDiscordMixer(ctx context.Context, wg *sync.WaitGroup, toMumble chan<- gumble.AudioBuffer) {
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2021-04-15 00:43:12 -04:00
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ticker := NewTickerCT(10 * time.Millisecond)
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2020-10-30 01:38:01 -04:00
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sendAudio := false
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2021-02-01 16:03:38 -05:00
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wg.Add(1)
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2020-10-30 01:38:01 -04:00
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for {
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2020-12-29 18:19:44 -05:00
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select {
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2021-02-01 16:03:38 -05:00
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case <-ctx.Done():
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wg.Done()
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2020-12-29 18:19:44 -05:00
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return
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2021-01-19 01:06:08 -05:00
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case <-ticker.C:
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2020-12-29 18:19:44 -05:00
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Lock()
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2020-10-30 01:38:01 -04:00
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sendAudio = false
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internalMixerArr := make([][]int16, 0)
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// Work through each channel
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2021-01-19 01:06:08 -05:00
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for i := range dd.fromDiscordMap {
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if len(dd.fromDiscordMap[i].pcm) > 0 {
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2020-10-30 01:38:01 -04:00
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sendAudio = true
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2021-04-06 22:34:38 -04:00
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if !dd.fromDiscordMap[i].streaming {
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2021-01-19 01:06:08 -05:00
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x := dd.fromDiscordMap[i]
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2020-10-30 01:38:01 -04:00
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x.streaming = true
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2021-01-19 01:06:08 -05:00
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dd.fromDiscordMap[i] = x
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2020-10-30 01:38:01 -04:00
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}
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2021-01-19 01:06:08 -05:00
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x1 := (<-dd.fromDiscordMap[i].pcm)
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2020-10-30 01:38:01 -04:00
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internalMixerArr = append(internalMixerArr, x1)
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} else {
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2021-04-06 22:34:38 -04:00
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if dd.fromDiscordMap[i].streaming {
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2021-01-19 01:06:08 -05:00
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x := dd.fromDiscordMap[i]
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2020-10-30 01:38:01 -04:00
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x.streaming = false
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2021-01-19 01:06:08 -05:00
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dd.fromDiscordMap[i] = x
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2020-10-30 01:38:01 -04:00
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}
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}
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}
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2021-01-19 01:06:08 -05:00
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dd.discordMutex.Unlock()
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2020-10-30 01:38:01 -04:00
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outBuf := make([]int16, 480)
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for i := 0; i < len(outBuf); i++ {
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for j := 0; j < len(internalMixerArr); j++ {
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outBuf[i] += (internalMixerArr[j])[i]
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}
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}
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if sendAudio {
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2020-11-04 01:12:43 -05:00
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select {
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case toMumble <- outBuf:
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default:
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log.Println("toMumble buffer full. Dropping packet")
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|
|
}
|
|
|
|
|
2020-10-30 01:38:01 -04:00
|
|
|
}
|
2020-10-29 02:21:07 -04:00
|
|
|
}
|
|
|
|
}
|