Files
hyprvoice/internal/daemon/daemon.go
T

208 lines
3.8 KiB
Go

package daemon
import (
"bufio"
"context"
"fmt"
"log"
"net"
"os"
"os/signal"
"sync"
"syscall"
"github.com/leonardotrapani/hyprvoice/internal/bus"
"github.com/leonardotrapani/hyprvoice/internal/notify"
"github.com/leonardotrapani/hyprvoice/internal/pipeline"
)
type Status = pipeline.Status
const (
Idle = pipeline.Idle
Recording = pipeline.Recording
Transcribing = pipeline.Transcribing
Injecting = pipeline.Injecting
)
type Daemon struct {
mu sync.RWMutex
status Status
notifier notify.Notifier
ctx context.Context
cancel context.CancelFunc
pipeline pipeline.Pipeline
actionChannel chan<- pipeline.Action
}
func New(n notify.Notifier) *Daemon {
if n == nil {
n = notify.Desktop{}
}
ctx, cancel := context.WithCancel(context.Background())
d := &Daemon{
notifier: n,
ctx: ctx,
cancel: cancel,
status: Idle,
}
return d
}
func (d *Daemon) Status() Status {
d.mu.RLock()
defer d.mu.RUnlock()
return d.status
}
func (d *Daemon) startStatusReader(ctx context.Context, statusCh <-chan Status) {
defer func() {
// Always clean up when this goroutine exits
d.mu.Lock()
d.status = Idle
d.pipeline = nil
d.actionChannel = nil
d.mu.Unlock()
}()
for {
select {
case status, ok := <-statusCh:
if !ok {
return // Channel closed
}
d.mu.Lock()
oldStatus := d.status
d.status = status
d.mu.Unlock()
if oldStatus != status {
log.Printf("Status changed: %s -> %s", oldStatus, status)
}
case <-ctx.Done():
return // Context cancelled
}
}
}
func (d *Daemon) Run() error {
if err := bus.CheckExistingDaemon(); err != nil {
return err
}
ln, err := bus.Listen()
if err != nil {
return err
}
defer ln.Close()
if err := bus.CreatePidFile(); err != nil {
return fmt.Errorf("failed to create PID file: %w", err)
}
defer bus.RemovePidFile()
sigCh := make(chan os.Signal, 1)
signal.Notify(sigCh, syscall.SIGTERM, syscall.SIGINT)
defer signal.Stop(sigCh)
go func() {
sig := <-sigCh
log.Printf("Received signal %v, shutting down gracefully", sig)
d.cancel()
}()
// Close the listener when context is done
go func() {
<-d.ctx.Done()
ln.Close()
}()
log.Printf("Daemon started, listening on socket")
for {
c, err := ln.Accept()
if err != nil {
if d.ctx.Err() != nil {
log.Printf("Shutdown requested")
return nil
}
log.Printf("Accept error: %v", err)
return fmt.Errorf("accept failed: %w", err)
}
go d.handle(c)
}
}
func (d *Daemon) handle(c net.Conn) {
defer c.Close()
line, err := bufio.NewReader(c).ReadString('\n')
if err != nil {
log.Printf("Client read error: %v", err)
fmt.Fprintf(c, "ERR read_error: %v\n", err)
return
}
if len(line) == 0 {
fmt.Fprint(c, "ERR empty\n")
return
}
cmd := line[0]
switch cmd {
case 't':
d.toggle()
fmt.Fprint(c, "OK toggled\n")
case 's':
status := d.Status()
fmt.Fprintf(c, "STATUS status=%s\n", status)
case 'v':
fmt.Fprintf(c, "STATUS proto=%s\n", bus.ProtoVer)
case 'q':
fmt.Fprint(c, "OK quitting\n")
d.cancel()
default:
log.Printf("Unknown command: %c", cmd)
fmt.Fprintf(c, "ERR unknown=%q\n", cmd)
}
}
func (d *Daemon) toggle() {
switch d.status {
case Idle:
// Defensive: if a prior pipeline exists, stop and wait before starting a new one
if d.pipeline != nil {
d.pipeline.Stop()
d.pipeline = nil
}
p := pipeline.New()
statusCh, actionCh := p.Run(d.ctx)
d.pipeline = p
d.actionChannel = actionCh
go d.notifier.RecordingStarted()
go d.startStatusReader(d.ctx, statusCh)
case Recording:
go d.notifier.RecordingEnded()
d.pipeline.Stop()
case Transcribing:
select {
case d.actionChannel <- pipeline.Inject:
default:
}
case Injecting:
go d.notifier.RecordingEnded()
d.pipeline.Stop() // aborted during injection
}
}