Files
obs-streamer-tools-plugin/core/src/session.cpp
T
shadowdaoandClaude Sonnet 5 af7d2c6d24
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fix: pin video quality to stop OBS source resizing; add audio-only mode
Live testing (2026-09-07) showed two real problems in one root cause:
LiveKit's default subscriber behavior lets the SFU switch simulcast
layers on its own bandwidth/adaptive logic, and this plugin never told
it not to. For a real camera, that showed up as the OBS source's
received frame size visibly hopping between 320x180/640x360/1280x720
mid-show -- OBS's async video source resizes to match, breaking any
manual crop/position a director had set up. For the soundboard (a
Camera-source track that exists only to satisfy RTMP's video
requirement -- Soundboard.tsx -- with no real visual content), the
same instability, plus the video showing at all, was pure noise: there
was no way to pull just its audio.

Both come from RemoteTrackPublication (livekit/remote_track_publication.h
in the pinned SDK), on the exact publication object TrackSubscribedEvent
and attachExistingTracks already hand this code:

  - setVideoQuality(VideoQuality::HIGH) on every wanted video track,
    unconditionally, so the SFU always sends the top simulcast layer
    instead of switching layers underneath a source with no
    rendered-size hint to give it (this is a native subscriber, not a
    sized <video> element).
  - A new SessionConfig::subscribe_video (mirrors subscribe_audio):
    when false, the wanted video track is never attached, and its
    publication is explicitly setEnabled(false) -- the SFU stops
    sending it, not just "decoded and discarded here". Wired to a new
    "Audio only (no video)" checkbox in the source's properties.

Both call sites (a fresh TrackSubscribedEvent, and attachExistingTracks
sweeping tracks already up when the session starts watching) go
through one new handleWantedVideoTrack() so they can't drift apart.

Not unit-testable without a real LiveKit connection (RemoteTrackPublication
isn't fakeable, matching why test_integration_livekit.cpp already needs a
real server) -- verified instead by a full local build against real
libobs-dev + the pinned SDK (clean compile, all 6 existing tests still
pass) and CI. The actual behavioral fix -- stable resolution, no video
for an audio-only source -- needs the same real-OBS verification every
other claim in this repo's "What is verified, and how" section does.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01RL8abRmgFXkVASHkkqiJbE
2026-09-07 10:43:54 -07:00

782 lines
27 KiB
C++

/*
streamer-tools OBS Camera Plugin - LiveKit session wrapper
Copyright (C) 2026 CyberCoveLLC <jknapp85@gmail.com>
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
*/
#include "stplugin/session.h"
#include <atomic>
#include <chrono>
#include <condition_variable>
#include <deque>
#include <exception>
#include <mutex>
#include <thread>
#include <utility>
#include <vector>
#include <livekit/audio_frame.h>
#include <livekit/audio_stream.h>
#include <livekit/livekit.h>
#include <livekit/remote_participant.h>
#include <livekit/remote_track_publication.h>
#include <livekit/room.h>
#include <livekit/room_delegate.h>
#include <livekit/room_event_types.h>
#include <livekit/track.h>
#include <livekit/video_frame.h>
#include <livekit/video_stream.h>
namespace stplugin {
namespace {
// --- LiveKit <-> plugin type conversion ------------------------------------
MediaKind toMediaKind(livekit::TrackKind kind)
{
switch (kind) {
case livekit::TrackKind::KIND_AUDIO: return MediaKind::Audio;
case livekit::TrackKind::KIND_VIDEO: return MediaKind::Video;
case livekit::TrackKind::KIND_UNKNOWN: break;
}
return MediaKind::Unknown;
}
MediaSource toMediaSource(livekit::TrackSource source)
{
switch (source) {
case livekit::TrackSource::SOURCE_CAMERA: return MediaSource::Camera;
case livekit::TrackSource::SOURCE_MICROPHONE: return MediaSource::Microphone;
case livekit::TrackSource::SOURCE_SCREENSHARE: return MediaSource::Screenshare;
case livekit::TrackSource::SOURCE_SCREENSHARE_AUDIO: return MediaSource::ScreenshareAudio;
case livekit::TrackSource::SOURCE_UNKNOWN: break;
}
return MediaSource::Unknown;
}
livekit::VideoBufferType toLiveKitBufferType(PixelFormat format)
{
switch (format) {
case PixelFormat::I420: return livekit::VideoBufferType::I420;
case PixelFormat::NV12: return livekit::VideoBufferType::NV12;
case PixelFormat::BGRA: return livekit::VideoBufferType::BGRA;
}
return livekit::VideoBufferType::I420;
}
/// Returns false when the SDK handed us a format the OBS adapter cannot
/// consume, in which case the caller converts.
bool fromLiveKitBufferType(livekit::VideoBufferType type, PixelFormat &out)
{
switch (type) {
case livekit::VideoBufferType::I420: out = PixelFormat::I420; return true;
case livekit::VideoBufferType::NV12: out = PixelFormat::NV12; return true;
case livekit::VideoBufferType::BGRA: out = PixelFormat::BGRA; return true;
default: return false;
}
}
/// Which disconnect reasons are worth telling the operator "this will not fix
/// itself" about. Everything else is reported as an ordinary disconnect,
/// because the SDK's own reconnect logic covers it.
bool isFatalDisconnect(livekit::DisconnectReason reason)
{
switch (reason) {
case livekit::DisconnectReason::DuplicateIdentity:
case livekit::DisconnectReason::ParticipantRemoved:
case livekit::DisconnectReason::RoomDeleted:
case livekit::DisconnectReason::JoinFailure:
case livekit::DisconnectReason::UserRejected:
return true;
default:
return false;
}
}
const char *describeDisconnectReason(livekit::DisconnectReason reason)
{
switch (reason) {
case livekit::DisconnectReason::Unknown: return "connection lost";
case livekit::DisconnectReason::ClientInitiated: return "disconnected";
case livekit::DisconnectReason::DuplicateIdentity: return "another client joined with the same identity";
case livekit::DisconnectReason::ServerShutdown: return "the LiveKit server is shutting down";
case livekit::DisconnectReason::ParticipantRemoved: return "removed from the room";
case livekit::DisconnectReason::RoomDeleted: return "the room was deleted";
case livekit::DisconnectReason::StateMismatch: return "session could not be resumed";
case livekit::DisconnectReason::JoinFailure: return "could not join the room (token rejected or expired?)";
case livekit::DisconnectReason::Migration: return "migrating to another server";
case livekit::DisconnectReason::SignalClose: return "the signalling connection closed";
case livekit::DisconnectReason::RoomClosed: return "the room closed";
case livekit::DisconnectReason::UserUnavailable: return "user unavailable";
case livekit::DisconnectReason::UserRejected: return "connection rejected";
case livekit::DisconnectReason::SipTrunkFailure: return "SIP trunk failure";
case livekit::DisconnectReason::ConnectionTimeout: return "connection timed out";
case livekit::DisconnectReason::MediaFailure: return "media connection failed";
case livekit::DisconnectReason::AgentError: return "agent error";
}
return "disconnected";
}
// --- Process-wide SDK lifetime ---------------------------------------------
std::mutex &globalMutex()
{
static std::mutex m;
return m;
}
int &globalRefCount()
{
static int n = 0;
return n;
}
} // namespace
// ---------------------------------------------------------------------------
// Impl
// ---------------------------------------------------------------------------
struct LiveKitSession::Impl : public livekit::RoomDelegate {
enum class CommandType { AttachVideo, DetachVideo, AttachAudio, DetachAudio, Stop };
struct Command {
CommandType type;
std::shared_ptr<livekit::Track> track;
};
livekit::Room room;
SessionConfig config;
mutable std::mutex state_mutex;
SessionStateMachine machine;
VideoFrameHandler on_video;
AudioFrameHandler on_audio;
SessionStateHandler on_state;
std::atomic<std::uint64_t> video_frames{0};
std::atomic<std::uint64_t> audio_frames{0};
std::atomic<std::uint64_t> dropped_frames{0};
// Command queue. Every interaction with livekit::VideoStream /
// livekit::AudioStream happens on `worker`, never on a room event thread:
// the SDK's room callbacks run on its own event thread and blocking or
// re-entering there stalls every other event (and Room::disconnect() from
// inside one is documented to deadlock outright).
std::mutex queue_mutex;
std::condition_variable queue_cv;
std::deque<Command> queue;
std::thread worker;
bool worker_running = false;
// Owned exclusively by the worker thread.
std::shared_ptr<livekit::VideoStream> video_stream;
std::thread video_thread;
std::shared_ptr<livekit::AudioStream> audio_stream;
std::thread audio_thread;
bool connected = false;
~Impl() override = default;
// --- state helpers -----------------------------------------------------
template<typename Fn> void mutateState(Fn &&fn)
{
SessionState state;
std::string detail;
SessionStateHandler handler;
{
std::lock_guard<std::mutex> guard(state_mutex);
fn(machine);
state = machine.state();
detail = machine.detail();
handler = on_state;
}
// Notified outside the lock: the handler is OBS adapter code and must
// never be able to deadlock against a concurrent state query.
if (handler)
handler(state, detail);
}
void post(CommandType type, std::shared_ptr<livekit::Track> track = nullptr)
{
{
std::lock_guard<std::mutex> guard(queue_mutex);
if (!worker_running)
return;
queue.push_back(Command{type, std::move(track)});
}
queue_cv.notify_one();
}
// Handles the wanted video track once matched, shared by onTrackSubscribed
// (a fresh subscription) and attachExistingTracks (one already up when
// this session started watching). Two responsibilities that only make
// sense together, both keyed off the SAME publication:
//
// - subscribe_video: an audio-only source (the soundboard) never wants
// this video at all. Rather than attach it and let the OBS adapter
// discard every decoded frame, disable the publication itself
// (RemoteTrackPublication::setEnabled(false)) so the SFU stops
// sending it -- real bandwidth saved, not just wasted decode.
// - Fixed video quality: LiveKit's default subscriber behaviour lets
// the SFU switch simulcast layers per its own adaptive/bandwidth
// logic, which for a source with no rendered-size hint (this is a
// native C++ subscriber, not a sized <video> element) means the
// received resolution can hop between layers -- observed live as OBS
// source geometry visibly changing size mid-show. Pinning to HIGH
// asks the SFU to always send the top layer, which is what a fixed
// OBS source needs regardless of bandwidth (the plugin has no
// picture-in-picture tier to fall back to the way a browser grid
// view would).
void handleWantedVideoTrack(const std::shared_ptr<livekit::Track> &track,
const std::shared_ptr<livekit::RemoteTrackPublication> &publication)
{
if (!config.subscribe_video) {
if (publication) {
try {
publication->setEnabled(false);
} catch (const std::exception &) {
// Best-effort: worst case this track keeps being
// delivered and decoded, wasting bandwidth -- it is
// still never attached to OBS below.
}
}
return;
}
if (publication) {
try {
publication->setVideoQuality(livekit::VideoQuality::HIGH);
} catch (const std::exception &) {
// Best-effort: worst case this track keeps whatever quality
// it already had, which is the pre-existing behaviour.
}
}
post(CommandType::AttachVideo, track);
}
// --- RoomDelegate ------------------------------------------------------
void onTrackSubscribed(livekit::Room &, const livekit::TrackSubscribedEvent &event) override
{
if (!event.participant || !event.track)
return;
const std::string identity = event.participant->identity();
const MediaKind kind = toMediaKind(event.track->kind());
const MediaSource source =
event.publication ? toMediaSource(event.publication->source()) : MediaSource::Unknown;
if (isWantedVideoTrack(config.participant_identity, identity, kind, source))
handleWantedVideoTrack(event.track, event.publication);
else if (config.subscribe_audio && isWantedAudioTrack(config.participant_identity, identity, kind, source))
post(CommandType::AttachAudio, event.track);
}
void onTrackUnsubscribed(livekit::Room &, const livekit::TrackUnsubscribedEvent &event) override
{
if (!event.participant || !event.track)
return;
if (event.participant->identity() != config.participant_identity)
return;
const MediaKind kind = toMediaKind(event.track->kind());
if (kind == MediaKind::Video)
post(CommandType::DetachVideo);
else if (kind == MediaKind::Audio)
post(CommandType::DetachAudio);
}
void onParticipantDisconnected(livekit::Room &, const livekit::ParticipantDisconnectedEvent &event) override
{
if (!event.participant || event.participant->identity() != config.participant_identity)
return;
// The slot went away entirely. This is the placeholder state, not an
// error: the operator's room is fine, the camera just left.
post(CommandType::DetachVideo);
post(CommandType::DetachAudio);
}
void onReconnecting(livekit::Room &, const livekit::ReconnectingEvent &) override
{
mutateState([](SessionStateMachine &m) { m.onReconnecting(); });
}
void onReconnected(livekit::Room &, const livekit::ReconnectedEvent &) override
{
mutateState([](SessionStateMachine &m) { m.onReconnected(); });
}
void onDisconnected(livekit::Room &, const livekit::DisconnectedEvent &event) override
{
const std::string reason = describeDisconnectReason(event.reason);
const bool fatal = isFatalDisconnect(event.reason);
post(CommandType::DetachVideo);
post(CommandType::DetachAudio);
mutateState([&](SessionStateMachine &m) { m.onRoomEnded(reason, fatal); });
}
void onRoomEos(livekit::Room &, const livekit::RoomEosEvent &) override
{
post(CommandType::DetachVideo);
post(CommandType::DetachAudio);
mutateState([](SessionStateMachine &m) { m.onRoomEnded("the room session ended", false); });
}
// --- worker ------------------------------------------------------------
void startWorker()
{
{
std::lock_guard<std::mutex> guard(queue_mutex);
queue.clear();
worker_running = true;
}
worker = std::thread([this] { workerLoop(); });
}
void stopWorker()
{
{
std::lock_guard<std::mutex> guard(queue_mutex);
if (!worker_running)
return;
queue.push_back(Command{CommandType::Stop, nullptr});
worker_running = false;
}
queue_cv.notify_one();
if (worker.joinable())
worker.join();
}
void workerLoop()
{
for (;;) {
Command command{CommandType::Stop, nullptr};
{
std::unique_lock<std::mutex> lock(queue_mutex);
queue_cv.wait(lock, [this] { return !queue.empty(); });
command = std::move(queue.front());
queue.pop_front();
}
switch (command.type) {
case CommandType::AttachVideo:
attachVideo(command.track);
break;
case CommandType::DetachVideo:
detachVideo();
break;
case CommandType::AttachAudio:
attachAudio(command.track);
break;
case CommandType::DetachAudio:
detachAudio();
break;
case CommandType::Stop:
detachVideo();
detachAudio();
return;
}
}
}
void attachVideo(const std::shared_ptr<livekit::Track> &track)
{
if (!track)
return;
// Replacing an existing stream is the publisher-swap path: tear the
// old reader all the way down first so no frame from the previous
// publisher can arrive after the new one starts.
detachVideo();
livekit::VideoStream::Options options;
options.capacity = config.video_queue_capacity;
options.format = toLiveKitBufferType(config.video_format);
std::shared_ptr<livekit::VideoStream> stream;
try {
stream = livekit::VideoStream::fromTrack(track, options);
} catch (const std::exception &e) {
mutateState([&](SessionStateMachine &m) {
m.onRoomEnded(std::string("could not open the video stream: ") + e.what(), true);
});
return;
}
if (!stream)
return;
video_stream = stream;
video_thread = std::thread([this, stream] { videoReaderLoop(stream); });
mutateState([](SessionStateMachine &m) { m.onVideoAttached(); });
}
void detachVideo()
{
if (video_stream)
video_stream->close(); // wakes the blocking read()
if (video_thread.joinable())
video_thread.join();
const bool had = static_cast<bool>(video_stream);
video_stream.reset();
if (had)
mutateState([](SessionStateMachine &m) { m.onVideoDetached(); });
}
void attachAudio(const std::shared_ptr<livekit::Track> &track)
{
if (!track)
return;
detachAudio();
livekit::AudioStream::Options options;
options.capacity = config.audio_queue_capacity;
std::shared_ptr<livekit::AudioStream> stream;
try {
stream = livekit::AudioStream::fromTrack(track, options);
} catch (const std::exception &) {
// Audio is not worth failing the whole source over: a camera with
// no usable audio track is still a usable camera.
return;
}
if (!stream)
return;
audio_stream = stream;
audio_thread = std::thread([this, stream] { audioReaderLoop(stream); });
mutateState([](SessionStateMachine &m) { m.onAudioAttached(); });
}
void detachAudio()
{
if (audio_stream)
audio_stream->close();
if (audio_thread.joinable())
audio_thread.join();
const bool had = static_cast<bool>(audio_stream);
audio_stream.reset();
if (had)
mutateState([](SessionStateMachine &m) { m.onAudioDetached(); });
}
void videoReaderLoop(std::shared_ptr<livekit::VideoStream> stream)
{
VideoFrameHandler handler;
{
std::lock_guard<std::mutex> guard(state_mutex);
handler = on_video;
}
livekit::VideoFrameEvent event;
while (stream->read(event)) {
if (!handler)
continue;
deliverVideoFrame(event, handler);
}
}
void deliverVideoFrame(livekit::VideoFrameEvent &event, const VideoFrameHandler &handler)
{
PixelFormat format;
const livekit::VideoFrame *frame = &event.frame;
livekit::VideoFrame converted;
if (!fromLiveKitBufferType(frame->type(), format)) {
// The SDK gave us something the adapter cannot hand to OBS.
// convert() is a full CPU repack, so this is a fallback, not the
// normal path -- the normal path is the format we asked for.
try {
converted = frame->convert(toLiveKitBufferType(config.video_format));
} catch (const std::exception &) {
dropped_frames.fetch_add(1);
return;
}
frame = &converted;
format = config.video_format;
}
const int width = frame->width();
const int height = frame->height();
const std::size_t expected = expectedFrameBytes(format, width, height);
if (expected == 0 || frame->dataSize() < expected) {
// Geometry that does not match the buffer would make OBS read off
// the end of it. Drop rather than trust.
dropped_frames.fetch_add(1);
return;
}
VideoFrameData out;
out.width = width;
out.height = height;
out.format = format;
out.data = frame->data();
out.size = frame->dataSize();
out.timestamp_us = event.timestamp_us;
const std::vector<livekit::VideoPlaneInfo> planes = frame->planeInfos();
const int wanted_planes = planeCount(format);
int count = 0;
for (const livekit::VideoPlaneInfo &plane : planes) {
if (count >= 4)
break;
out.planes[count].data = reinterpret_cast<const std::uint8_t *>(plane.data_ptr);
out.planes[count].stride = plane.stride;
out.planes[count].size = plane.size;
++count;
}
if (count == 0 && wanted_planes == 1) {
// planeInfos() documents that packed formats may return an empty
// list rather than one plane. Synthesise it from the frame buffer
// instead of dropping a perfectly good BGRA frame.
out.planes[0].data = frame->data();
out.planes[0].stride = static_cast<std::uint32_t>(width) * 4u;
out.planes[0].size = static_cast<std::uint32_t>(frame->dataSize());
count = 1;
}
if (count != wanted_planes) {
dropped_frames.fetch_add(1);
return;
}
out.plane_count = count;
video_frames.fetch_add(1);
handler(out);
}
void audioReaderLoop(std::shared_ptr<livekit::AudioStream> stream)
{
AudioFrameHandler handler;
{
std::lock_guard<std::mutex> guard(state_mutex);
handler = on_audio;
}
livekit::AudioFrameEvent event;
while (stream->read(event)) {
if (!handler)
continue;
const livekit::AudioFrame &frame = event.frame;
if (frame.numChannels() <= 0 || frame.samplesPerChannel() <= 0 || frame.sampleRate() <= 0)
continue;
AudioFrameData out;
out.samples = frame.data().data();
out.sample_count = frame.totalSamples();
out.sample_rate = frame.sampleRate();
out.channels = frame.numChannels();
out.samples_per_channel = frame.samplesPerChannel();
audio_frames.fetch_add(1);
handler(out);
}
}
/// After connect(), the target slot may already be in the room with its
/// tracks subscribed, in which case no onTrackSubscribed event is coming.
/// Sweep what is already there so a source added mid-show shows video
/// immediately instead of waiting for the publisher to republish.
void attachExistingTracks()
{
auto participant = room.remoteParticipant(config.participant_identity).lock();
if (!participant)
return;
const std::string identity = participant->identity();
for (const auto &entry : participant->trackPublications()) {
const std::shared_ptr<livekit::RemoteTrackPublication> &publication = entry.second;
if (!publication)
continue;
const std::shared_ptr<livekit::Track> track = publication->track();
if (!track)
continue; // published but not subscribed yet
const MediaKind kind = toMediaKind(track->kind());
const MediaSource source = toMediaSource(publication->source());
if (isWantedVideoTrack(config.participant_identity, identity, kind, source))
handleWantedVideoTrack(track, publication);
else if (config.subscribe_audio && isWantedAudioTrack(config.participant_identity, identity, kind, source))
post(CommandType::AttachAudio, track);
}
}
};
// ---------------------------------------------------------------------------
// LiveKitSession
// ---------------------------------------------------------------------------
LiveKitSession::LiveKitSession() : impl_(new Impl()) {}
LiveKitSession::~LiveKitSession()
{
disconnect();
}
void LiveKitSession::setVideoHandler(VideoFrameHandler handler)
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
impl_->on_video = std::move(handler);
}
void LiveKitSession::setAudioHandler(AudioFrameHandler handler)
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
impl_->on_audio = std::move(handler);
}
void LiveKitSession::setStateHandler(SessionStateHandler handler)
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
impl_->on_state = std::move(handler);
}
bool LiveKitSession::connect(const SessionConfig &config)
{
if (impl_->connected)
disconnect();
impl_->config = config;
impl_->video_frames.store(0);
impl_->audio_frames.store(0);
impl_->dropped_frames.store(0);
impl_->mutateState([](SessionStateMachine &m) { m.onConnectRequested(); });
if (config.ws_url.empty() || config.token.empty() || config.participant_identity.empty()) {
impl_->mutateState(
[](SessionStateMachine &m) { m.onConnectFailed("missing LiveKit URL, token or camera selection"); });
return false;
}
impl_->startWorker();
livekit::RoomOptions options;
// auto_subscribe is what makes track_subscribed events (and therefore any
// media at all) happen; the SDK is emphatic about this.
//
// Known, measured-but-unaddressed cost: auto_subscribe pulls every
// participant's published track, not just the one camera this session
// actually wants, and this client discards the unwanted ones
// client-side. In a multi-camera room that is real, wasted bandwidth
// and decode CPU that scales with room size, not with what this source
// displays. Selectively unsubscribing from unwanted publications (the
// SDK exposes per-publication subscribe/unsubscribe) is a real
// follow-up optimization, deliberately out of scope here.
options.auto_subscribe = true;
options.dynacast = false;
// This client never publishes, so a single peer connection is all it
// needs.
options.single_peer_connection = true;
options.connect_timeout = std::chrono::milliseconds(config.connect_timeout_ms);
impl_->room.setDelegate(impl_.get());
bool ok = false;
try {
ok = impl_->room.connect(config.ws_url, config.token, options);
} catch (const std::exception &e) {
ok = false;
impl_->mutateState([&](SessionStateMachine &m) { m.onConnectFailed(e.what()); });
impl_->stopWorker();
impl_->room.setDelegate(nullptr);
return false;
}
if (!ok) {
impl_->mutateState([](SessionStateMachine &m) {
m.onConnectFailed("could not connect to LiveKit (check the server URL, or the token may have expired)");
});
impl_->stopWorker();
impl_->room.setDelegate(nullptr);
return false;
}
impl_->connected = true;
impl_->mutateState([](SessionStateMachine &m) { m.onConnectSucceeded(); });
impl_->attachExistingTracks();
return true;
}
void LiveKitSession::disconnect()
{
if (!impl_)
return;
// Order matters: stop the readers first so nothing is mid-read on a
// stream the room is about to tear down, then disconnect the room, then
// drop the delegate so no event can arrive at a half-destroyed object.
impl_->stopWorker();
if (impl_->connected) {
impl_->connected = false;
try {
impl_->room.disconnect(livekit::DisconnectReason::ClientInitiated);
} catch (const std::exception &) {
// Best effort: a failed graceful disconnect must not stop the
// OBS source from being destroyed.
}
impl_->mutateState([](SessionStateMachine &m) { m.onLocalDisconnect(); });
}
impl_->room.setDelegate(nullptr);
}
SessionState LiveKitSession::state() const
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
return impl_->machine.state();
}
std::string LiveKitSession::stateDetail() const
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
return impl_->machine.detail();
}
bool LiveKitSession::hasVideo() const
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
return impl_->machine.hasVideo();
}
bool LiveKitSession::hasAudio() const
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
return impl_->machine.hasAudio();
}
bool LiveKitSession::waitingForCamera() const
{
std::lock_guard<std::mutex> guard(impl_->state_mutex);
return impl_->machine.waitingForCamera();
}
std::uint64_t LiveKitSession::videoFrameCount() const
{
return impl_->video_frames.load();
}
std::uint64_t LiveKitSession::audioFrameCount() const
{
return impl_->audio_frames.load();
}
void LiveKitSession::globalInitialize()
{
std::lock_guard<std::mutex> guard(globalMutex());
if (globalRefCount()++ == 0)
livekit::initialize(livekit::LogLevel::Warn);
}
void LiveKitSession::globalShutdown()
{
std::lock_guard<std::mutex> guard(globalMutex());
if (globalRefCount() > 0 && --globalRefCount() == 0)
livekit::shutdown();
}
} // namespace stplugin