dndmusicbot/speaker/discord.go

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package discordspeaker
import (
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"context"
"fmt"
"io"
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"log"
"sync"
"time"
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"github.com/diamondburned/arikawa/v3/voice"
"github.com/diamondburned/arikawa/v3/voice/voicegateway"
"github.com/gopxl/beep"
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"github.com/pkg/errors"
"golang.org/x/time/rate"
"gopkg.in/hraban/opus.v2"
cc "github.com/tejzpr/ordered-concurrently/v3"
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)
var (
mu sync.Mutex
mixer beep.Mixer
samples [][2]float64
done chan struct{}
encoder *opus.Encoder
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frameSize int = 960
channels int = 2
sampleRate int = 48000
maxBytes int = (frameSize * 2) * 2
buf []byte
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session *voice.Session
spk bool
input chan cc.WorkFunction
pw *io.PipeWriter
pr *io.PipeReader
spklimit = rate.NewLimiter(rate.Every(2*time.Second), 1)
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)
var Silence = [2]float64{}
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func Init(dgv *voice.Session) error {
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var err error
mu.Lock()
defer mu.Unlock()
Close()
pr, pw = io.Pipe()
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buf = make([]byte, maxBytes)
mixer = beep.Mixer{}
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samples = make([][2]float64, frameSize)
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session = dgv
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encoder, err = opus.NewEncoder(sampleRate, channels, opus.AppVoIP)
encoder.SetBitrateToMax()
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if err != nil {
return errors.Wrap(err, "failed to initialize speaker")
}
input = make(chan cc.WorkFunction)
ctx := context.Background()
output := cc.Process(ctx, input, &cc.Options{PoolSize: 4, OutChannelBuffer: 4})
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go func() {
for {
select {
default:
update()
case out := <-output:
fmt.Println(pw.Write(out.Value.([]byte)))
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case <-done:
return
}
}
}()
go ReadSend()
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return nil
}
func ReadSend() {
for {
buf := make([]byte, maxBytes)
n, err := pr.Read(buf)
if err != nil {
log.Println(err)
return
}
_, err = session.Write(buf[:n])
if err != nil {
log.Println(err)
return
}
}
}
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func Close() {
}
func Lock() {
mu.Lock()
}
// Unlock unlocks the speaker. Call after modifying any currently playing Streamer.
func Unlock() {
mu.Unlock()
}
func Play(s ...beep.Streamer) {
mu.Lock()
mixer.Add(s...)
mu.Unlock()
}
func Clear() {
mu.Lock()
mixer.Clear()
mu.Unlock()
}
func Speak(s bool) {
switch s {
case true:
case false:
}
}
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func update() {
mu.Lock()
mixer.Stream(samples)
mu.Unlock()
if IsSilent(samples) {
if spk && spklimit.Allow() {
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log.Println("Notspeaking")
session.Speaking(context.Background(), voicegateway.NotSpeaking)
spk = false
}
return
}
if !spk && spklimit.Allow() {
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log.Println("Speaking")
session.Speaking(context.Background(), voicegateway.Microphone)
spk = true
}
var f32 []float32
for _, sample := range samples {
f32 = append(f32, float32(sample[0]))
f32 = append(f32, float32(sample[1]))
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}
n, err := encoder.EncodeFloat32(f32, buf)
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if err != nil {
log.Println(err)
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return
}
pw.Write(buf[:n])
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}
func IsSilent(in [][2]float64) bool {
for _, v := range in {
if v != Silence {
return false
}
}
return true
}