agentbbs/internal/calls/livekit.go
Anthony Ettinger 9b0f465946 Video calls (PairUX→ASCII), agent@ chat, and finger routes
ssh video-<code>@ joins a PairUX/LiveKit call rendered as truecolor
ASCII (▀ half-blocks, 2 pixels per cell); video@ prompts for a code.
Codes are minted by PairUX only. Pipeline: VP8 RTP → PLI keyframe
requests → ivfwriter remux → ffmpeg decode/scale → RGB24 → ANSI →
bubbletea over the SSH PTY. Subscriber-only, no audio in v1.

ssh agent@ opens a persisted chat with the operator's agent —
AGENTBBS_AGENT_CMD runs per message (stdin→stdout), e.g. `claude -p`.

ssh <member>@ with someone else's name prints a classic finger card
(.plan, member since, last seen) and disconnects; your own name still
enters the hub.

cmd/lkpublish: dev publisher for testing (explicit -fps pacing; lksdk
IVF replay mispaces from file timebase alone, measured 1fps from a
15fps file; dimensions required or dynacast pauses the track).

Verified end-to-end against livekit-server --dev: 128k truecolor cells
/ 20k distinct colors streamed over a real SSH session; chat round-trip
and finger card verified over SSH. Go toolchain pinned to 1.26 via
mise.toml (lksdk requirement).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-11 11:43:38 +00:00

223 lines
5.5 KiB
Go

// LiveKit subscriber: joins a PairUX room, takes the first remote VP8 video
// track, remuxes RTP into IVF, and has ffmpeg decode + scale it into raw
// RGB24 frames sized for the terminal grid.
package calls
import (
"fmt"
"io"
"os"
"os/exec"
"time"
lksdk "github.com/livekit/server-sdk-go/v2"
"github.com/pion/webrtc/v4"
"github.com/pion/webrtc/v4/pkg/media/ivfwriter"
)
// Config is the LiveKit deployment shared with PairUX.
type Config struct {
URL, Key, Secret string
}
// ConfigFromEnv reads AGENTBBS_LIVEKIT_* with LIVEKIT_* fallbacks, matching
// PairUX's env shape (LIVEKIT_API_KEY / LIVEKIT_API_SECRET).
func ConfigFromEnv() Config {
pick := func(keys ...string) string {
for _, k := range keys {
if v := os.Getenv(k); v != "" {
return v
}
}
return ""
}
return Config{
URL: pick("AGENTBBS_LIVEKIT_URL", "LIVEKIT_URL", "NEXT_PUBLIC_LIVEKIT_URL"),
Key: pick("AGENTBBS_LIVEKIT_KEY", "LIVEKIT_API_KEY"),
Secret: pick("AGENTBBS_LIVEKIT_SECRET", "LIVEKIT_API_SECRET"),
}
}
func (c Config) ok() bool { return c.URL != "" && c.Key != "" && c.Secret != "" }
// session is one live subscription: frames arrive on Frames sized pw*ph*3.
type session struct {
Frames chan []byte
Status chan string
room *lksdk.Room
ffmpeg *exec.Cmd
ivf io.WriteCloser
done chan struct{}
}
// join connects to room `code` as a hidden-ish subscriber and starts the
// decode pipeline targeting pw x ph pixels.
func join(cfg Config, code, identity string, pw, ph int) (*session, error) {
if !cfg.ok() {
return nil, fmt.Errorf("video calls are not configured on this host (LIVEKIT_URL/API_KEY/API_SECRET)")
}
s := &session{
Frames: make(chan []byte, 2),
Status: make(chan string, 8),
done: make(chan struct{}),
}
// ffmpeg: IVF (VP8) on stdin → raw RGB24 frames on stdout.
ffin, ivfW := io.Pipe()
s.ivf = ivfW
if dump := os.Getenv("AGENTBBS_VIDEO_DEBUG"); dump != "" {
if f, err := os.Create(dump); err == nil {
s.ivf = teeWriteCloser{io.MultiWriter(ivfW, f), ivfW, f}
}
}
cmd := exec.Command("ffmpeg",
"-hide_banner", "-loglevel", "error",
"-probesize", "32", "-analyzeduration", "0",
"-fflags", "nobuffer", "-flags", "low_delay",
"-f", "ivf", "-i", "pipe:0",
"-vf", fmt.Sprintf("scale=%d:%d", pw, ph),
"-f", "rawvideo", "-pix_fmt", "rgb24", "pipe:1",
)
cmd.Stdin = ffin
cmd.Stderr = os.Stderr // surfaces decode errors in the server log
out, err := cmd.StdoutPipe()
if err != nil {
return nil, err
}
if err := cmd.Start(); err != nil {
return nil, fmt.Errorf("ffmpeg: %w", err)
}
s.ffmpeg = cmd
go func() { // frame pump: drop frames rather than lag
size := pw * ph * 3
for {
buf := make([]byte, size)
if _, err := io.ReadFull(out, buf); err != nil {
close(s.Frames)
return
}
select {
case s.Frames <- buf:
default:
}
}
}()
gotTrack := false
cb := &lksdk.RoomCallback{
ParticipantCallback: lksdk.ParticipantCallback{
OnTrackSubscribed: func(track *webrtc.TrackRemote, pub *lksdk.RemoteTrackPublication, rp *lksdk.RemoteParticipant) {
if gotTrack || track.Kind() != webrtc.RTPCodecTypeVideo {
return
}
if track.Codec().MimeType != webrtc.MimeTypeVP8 {
s.status("skipping non-VP8 track from " + rp.Identity())
return
}
gotTrack = true
s.status("video from " + rp.Identity())
// PLI is what makes the SFU start forwarding from a
// keyframe; without it a fresh subscriber starves.
rp.WritePLI(track.SSRC())
go s.keyframeTicker(rp, track.SSRC())
go s.consume(track)
},
},
OnDisconnected: func() { s.status("disconnected") },
}
room, err := lksdk.ConnectToRoom(cfg.URL, lksdk.ConnectInfo{
APIKey: cfg.Key,
APISecret: cfg.Secret,
RoomName: code,
ParticipantIdentity: identity,
}, cb)
if err != nil {
s.Close()
return nil, fmt.Errorf("livekit: %w", err)
}
s.room = room
s.status("joined " + code + " — waiting for video…")
return s, nil
}
// keyframeTicker re-requests keyframes so late joins and packet loss recover
// quickly; a periodic full refresh is cheap at terminal resolutions.
func (s *session) keyframeTicker(rp *lksdk.RemoteParticipant, ssrc webrtc.SSRC) {
t := time.NewTicker(2 * time.Second)
defer t.Stop()
for range t.C {
select {
case <-s.done:
return
default:
}
rp.WritePLI(ssrc)
}
}
// consume remuxes the track's RTP into the IVF pipe until it ends.
func (s *session) consume(track *webrtc.TrackRemote) {
w, err := ivfwriter.NewWith(s.ivf)
if err != nil {
s.status("ivf: " + err.Error())
return
}
n := 0
for {
pkt, _, err := track.ReadRTP()
if err != nil {
s.status(fmt.Sprintf("track ended after %d packets: %v", n, err))
_ = w.Close()
return
}
if err := w.WriteRTP(pkt); err != nil {
s.status("ivf write: " + err.Error())
return
}
n++
if n == 1 || n%500 == 0 {
s.status(fmt.Sprintf("receiving (%d rtp packets)", n))
}
}
}
func (s *session) status(msg string) {
select {
case s.Status <- msg:
default:
}
}
// teeWriteCloser mirrors the IVF stream to a debug file (AGENTBBS_VIDEO_DEBUG).
type teeWriteCloser struct {
io.Writer
pipe io.WriteCloser
file io.Closer
}
func (t teeWriteCloser) Close() error {
_ = t.file.Close()
return t.pipe.Close()
}
// Close tears the whole pipeline down.
func (s *session) Close() {
select {
case <-s.done:
default:
close(s.done)
}
if s.room != nil {
s.room.Disconnect()
}
if s.ivf != nil {
_ = s.ivf.Close()
}
if s.ffmpeg != nil && s.ffmpeg.Process != nil {
_ = s.ffmpeg.Process.Kill()
_ = s.ffmpeg.Wait()
}
}