ardour/libs/ardour/jack_audiobackend.cc

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#include "ardour/jack_audiobackend.h"
#define GET_PRIVATE_JACK_POINTER(j) jack_client_t* _priv_jack = (jack_client_t*) (j); if (!_priv_jack) { return; }
#define GET_PRIVATE_JACK_POINTER_RET(j,r) jack_client_t* _priv_jack = (jack_client_t*) (j); if (!_priv_jack) { return r; }
int
JACKAudioBackend::start ()
{
Glib::Threads::Mutex::Lock lm (_state_lock);
if (running()) {
/* already running */
return 1;
}
}
int
JACKAudioBackend::stop ()
{
GET_PRIVATE_JACK_POINTER_RET (_jack, -1);
{
Glib::Threads::Mutex::Lock lm (_process_lock);
jack_client_close (_priv_jack);
_jack = 0;
}
_buffer_size = 0;
_frame_rate = 0;
_raw_buffer_sizes.clear();
return 0;
}
int
JACKAudioBackend::pause ()
{
GET_PRIVATE_JACK_POINTER_RET (_jack, -1);
if (_priv_jack) {
jack_deactivate (_priv_jack);
}
return 0;
}
int
JACKAudioBackend::freewheel (bool onoff)
{
GET_PRIVATE_JACK_POINTER_RET (_jack, -1);
if (onoff == _freewheeling) {
/* already doing what has been asked for */
return 0;
}
return jack_set_freewheel (_priv_jack, onoff);
}
int
JACKAudioBackend::set_parameters (const Parameters& params)
{
return 0;
}
int
JACKAudioBackend::get_parameters (Parameters& params) const
{
return 0;
}
/*--- private support methods ---*/
int
JACKAudioBackend::connect_to_jack (string client_name, string session_uuid)
{
EnvironmentalProtectionAgency* global_epa = EnvironmentalProtectionAgency::get_global_epa ();
boost::scoped_ptr<EnvironmentalProtectionAgency> current_epa;
jack_status_t status;
/* revert all environment settings back to whatever they were when ardour started
*/
if (global_epa) {
current_epa.reset (new EnvironmentalProtectionAgency(true)); /* will restore settings when we leave scope */
global_epa->restore ();
}
jack_client_name = client_name; /* might be reset below */
#ifdef HAVE_JACK_SESSION
if (!session_uuid.empty())
_jack = jack_client_open (jack_client_name.c_str(), JackSessionID, &status, session_uuid.c_str());
else
#endif
_jack = jack_client_open (jack_client_name.c_str(), JackNullOption, &status, 0);
if (_jack == NULL) {
// error message is not useful here
return -1;
}
GET_PRIVATE_JACK_POINTER_RET (_jack, -1);
if (status & JackNameNotUnique) {
jack_client_name = jack_get_client_name (_priv_jack);
}
return 0;
}
int
JACKAudioBackend::disconnect_from_jack ()
{
int
AudioEngine::reconnect_to_jack ()
{
if (_running) {
disconnect_from_jack ();
/* XXX give jackd a chance */
Glib::usleep (250000);
}
if (connect_to_jack (jack_client_name, "")) {
error << _("failed to connect to JACK") << endmsg;
return -1;
}
Ports::iterator i;
boost::shared_ptr<Ports> p = ports.reader ();
for (i = p->begin(); i != p->end(); ++i) {
if (i->second->reestablish ()) {
break;
}
}
if (i != p->end()) {
/* failed */
remove_all_ports ();
return -1;
}
GET_PRIVATE_JACK_POINTER_RET (_jack,-1);
MIDI::Manager::instance()->reestablish (_priv_jack);
if (_session) {
_session->reset_jack_connection (_priv_jack);
jack_bufsize_callback (jack_get_buffer_size (_priv_jack));
_session->set_frame_rate (jack_get_sample_rate (_priv_jack));
}
last_monitor_check = 0;
set_jack_callbacks ();
if (jack_activate (_priv_jack) == 0) {
_running = true;
_has_run = true;
} else {
return -1;
}
/* re-establish connections */
for (i = p->begin(); i != p->end(); ++i) {
i->second->reconnect ();
}
MIDI::Manager::instance()->reconnect ();
Running (); /* EMIT SIGNAL*/
start_metering_thread ();
return 0;
}
int
JACKAudioBackend::request_buffer_size (pframes_t nframes)
{
GET_PRIVATE_JACK_POINTER_RET (_jack, -1);
if (nframes == jack_get_buffer_size (_priv_jack)) {
return 0;
}
return jack_set_buffer_size (_priv_jack, nframes);
}
/* --- TRANSPORT STATE MANAGEMENT --- */
void
AudioEngine::transport_stop ()
{
GET_PRIVATE_JACK_POINTER (_jack);
jack_transport_stop (_priv_jack);
}
void
AudioEngine::transport_start ()
{
GET_PRIVATE_JACK_POINTER (_jack);
jack_transport_start (_priv_jack);
}
void
AudioEngine::transport_locate (framepos_t where)
{
GET_PRIVATE_JACK_POINTER (_jack);
jack_transport_locate (_priv_jack, where);
}
framepos_t
AudioEngine::transport_frame () const
{
GET_PRIVATE_JACK_POINTER_RET (_jack, 0);
return jack_get_current_transport_frame (_priv_jack);
}
AudioEngine::TransportState
AudioEngine::transport_state ()
{
GET_PRIVATE_JACK_POINTER_RET (_jack, ((TransportState) JackTransportStopped));
jack_position_t pos;
return (TransportState) jack_transport_query (_priv_jack, &pos);
}
/* JACK Callbacks */
static void
ardour_jack_error (const char* msg)
{
error << "JACK: " << msg << endmsg;
}
void
JACKAudioBackend::set_jack_callbacks ()
{
GET_PRIVATE_JACK_POINTER (_jack);
if (jack_on_info_shutdown) {
jack_on_info_shutdown (_priv_jack, halted_info, this);
} else {
jack_on_shutdown (_priv_jack, halted, this);
}
jack_set_thread_init_callback (_priv_jack, _thread_init_callback, this);
jack_set_process_thread (_priv_jack, _process_thread, this);
jack_set_sample_rate_callback (_priv_jack, _sample_rate_callback, this);
jack_set_buffer_size_callback (_priv_jack, _bufsize_callback, this);
jack_set_graph_order_callback (_priv_jack, _graph_order_callback, this);
jack_set_port_registration_callback (_priv_jack, _registration_callback, this);
jack_set_port_connect_callback (_priv_jack, _connect_callback, this);
jack_set_xrun_callback (_priv_jack, _xrun_callback, this);
jack_set_sync_callback (_priv_jack, _jack_sync_callback, this);
jack_set_freewheel_callback (_priv_jack, _freewheel_callback, this);
if (_session && _session->config.get_jack_time_master()) {
jack_set_timebase_callback (_priv_jack, 0, _jack_timebase_callback, this);
}
#ifdef HAVE_JACK_SESSION
if( jack_set_session_callback)
jack_set_session_callback (_priv_jack, _session_callback, this);
#endif
if (jack_set_latency_callback) {
jack_set_latency_callback (_priv_jack, _latency_callback, this);
}
jack_set_error_function (ardour_jack_error);
}
void
JACKAudioBackend::_jack_timebase_callback (jack_transport_state_t state, pframes_t nframes,
jack_position_t* pos, int new_position, void *arg)
{
static_cast<AudioEngine*> (arg)->jack_timebase_callback (state, nframes, pos, new_position);
}
void
JACKAudioBackend::jack_timebase_callback (jack_transport_state_t state, pframes_t nframes,
jack_position_t* pos, int new_position)
{
if (_jack && _session && _session->synced_to_jack()) {
_session->jack_timebase_callback (state, nframes, pos, new_position);
}
}
int
JACKAudioBackend::_jack_sync_callback (jack_transport_state_t state, jack_position_t* pos, void* arg)
{
return static_cast<AudioEngine*> (arg)->jack_sync_callback (state, pos);
}
int
JACKAudioBackend::jack_sync_callback (jack_transport_state_t state, jack_position_t* pos)
{
if (_jack && _session) {
return _session->jack_sync_callback (state, pos);
}
return true;
}
int
JACKAudioBackend::_xrun_callback (void *arg)
{
AudioEngine* ae = static_cast<AudioEngine*> (arg);
if (ae->connected()) {
ae->Xrun (); /* EMIT SIGNAL */
}
return 0;
}
#ifdef HAVE_JACK_SESSION
void
JACKAudioBackend::_session_callback (jack_session_event_t *event, void *arg)
{
AudioEngine* ae = static_cast<AudioEngine*> (arg);
if (ae->connected()) {
ae->JackSessionEvent ( event ); /* EMIT SIGNAL */
}
}
#endif
int
JACKAudioBackend::_graph_order_callback (void *arg)
{
AudioEngine* ae = static_cast<AudioEngine*> (arg);
if (ae->connected() && !ae->port_remove_in_progress) {
ae->GraphReordered (); /* EMIT SIGNAL */
}
return 0;
}
void
JACKAudioBackend::_freewheel_callback (int onoff, void *arg)
{
static_cast<AudioEngine*>(arg)->freewheel_callback (onoff);
}
void
JACKAudioBackend::freewheel_callback (int onoff)
{
_freewheeling = onoff;
if (onoff) {
_pre_freewheel_mmc_enabled = MIDI::Manager::instance()->mmc()->send_enabled ();
MIDI::Manager::instance()->mmc()->enable_send (false);
} else {
MIDI::Manager::instance()->mmc()->enable_send (_pre_freewheel_mmc_enabled);
}
}
void
JACKAudioBackend::_registration_callback (jack_port_id_t /*id*/, int /*reg*/, void* arg)
{
AudioEngine* ae = static_cast<AudioEngine*> (arg);
if (!ae->port_remove_in_progress) {
ae->PortRegisteredOrUnregistered (); /* EMIT SIGNAL */
}
}
void
JACKAudioBackend::_latency_callback (jack_latency_callback_mode_t mode, void* arg)
{
return static_cast<AudioEngine *> (arg)->jack_latency_callback (mode);
}
void
JACKAudioBackend::_connect_callback (jack_port_id_t id_a, jack_port_id_t id_b, int conn, void* arg)
{
AudioEngine* ae = static_cast<AudioEngine*> (arg);
ae->connect_callback (id_a, id_b, conn);
}
void
JACKAudioBackend::connect_callback (jack_port_id_t id_a, jack_port_id_t id_b, int conn)
{
if (port_remove_in_progress) {
return;
}
GET_PRIVATE_JACK_POINTER (_jack);
jack_port_t* jack_port_a = jack_port_by_id (_priv_jack, id_a);
jack_port_t* jack_port_b = jack_port_by_id (_priv_jack, id_b);
boost::shared_ptr<Port> port_a;
boost::shared_ptr<Port> port_b;
Ports::iterator x;
boost::shared_ptr<Ports> pr = ports.reader ();
x = pr->find (make_port_name_relative (jack_port_name (jack_port_a)));
if (x != pr->end()) {
port_a = x->second;
}
x = pr->find (make_port_name_relative (jack_port_name (jack_port_b)));
if (x != pr->end()) {
port_b = x->second;
}
PortConnectedOrDisconnected (
port_a, jack_port_name (jack_port_a),
port_b, jack_port_name (jack_port_b),
conn == 0 ? false : true
); /* EMIT SIGNAL */
}
void*
JACKAudioBackend::_process_thread (void *arg)
{
return static_cast<AudioEngine *> (arg)->process_thread ();
}
void*
JACKAudioBackend::process_thread ()
{
/* JACK doesn't do this for us when we use the wait API
*/
_thread_init_callback (0);
_main_thread = new ProcessThread;
while (1) {
GET_PRIVATE_JACK_POINTER_RET(_jack,0);
pframes_t nframes = jack_cycle_wait (_priv_jack);
if (process_callback (nframes)) {
return 0;
}
jack_cycle_signal (_priv_jack, 0);
}
return 0;
}
int
JACKAudioBackend::_sample_rate_callback (pframes_t nframes, void *arg)
{
return static_cast<AudioEngine *> (arg)->jack_sample_rate_callback (nframes);
}
int
JACKAudioBackend::jack_sample_rate_callback (pframes_t nframes)
{
_frame_rate = nframes;
_usecs_per_cycle = (int) floor ((((double) frames_per_cycle() / nframes)) * 1000000.0);
/* check for monitor input change every 1/10th of second */
monitor_check_interval = nframes / 10;
last_monitor_check = 0;
if (_session) {
_session->set_frame_rate (nframes);
}
SampleRateChanged (nframes); /* EMIT SIGNAL */
return 0;
}
void
JACKAudioBackend::jack_latency_callback (jack_latency_callback_mode_t mode)
{
if (_session) {
_session->update_latency (mode == JackPlaybackLatency);
}
}
int
JACKAudioBackend::_bufsize_callback (pframes_t nframes, void *arg)
{
return static_cast<AudioEngine *> (arg)->jack_bufsize_callback (nframes);
}
int
JACKAudioBackend::jack_bufsize_callback (pframes_t nframes)
{
/* if the size has not changed, this should be a no-op */
if (nframes == _buffer_size) {
return 0;
}
GET_PRIVATE_JACK_POINTER_RET (_jack, 1);
_buffer_size = nframes;
_usecs_per_cycle = (int) floor ((((double) nframes / frame_rate())) * 1000000.0);
last_monitor_check = 0;
if (jack_port_type_get_buffer_size) {
_raw_buffer_sizes[DataType::AUDIO] = jack_port_type_get_buffer_size (_priv_jack, JACK_DEFAULT_AUDIO_TYPE);
_raw_buffer_sizes[DataType::MIDI] = jack_port_type_get_buffer_size (_priv_jack, JACK_DEFAULT_MIDI_TYPE);
} else {
/* Old version of JACK.
These crude guesses, see below where we try to get the right answers.
Note that our guess for MIDI deliberatey tries to overestimate
by a little. It would be nicer if we could get the actual
size from a port, but we have to use this estimate in the
event that there are no MIDI ports currently. If there are
the value will be adjusted below.
*/
_raw_buffer_sizes[DataType::AUDIO] = nframes * sizeof (Sample);
_raw_buffer_sizes[DataType::MIDI] = nframes * 4 - (nframes/2);
}
{
Glib::Threads::Mutex::Lock lm (_process_lock);
boost::shared_ptr<Ports> p = ports.reader();
for (Ports::iterator i = p->begin(); i != p->end(); ++i) {
i->second->reset();
}
}
if (_session) {
_session->set_block_size (_buffer_size);
}
return 0;
}
void
JACKAudioBackend::halted_info (jack_status_t code, const char* reason, void *arg)
{
/* called from jack shutdown handler */
AudioEngine* ae = static_cast<AudioEngine *> (arg);
bool was_running = ae->_running;
ae->stop_metering_thread ();
ae->_running = false;
ae->_buffer_size = 0;
ae->_frame_rate = 0;
ae->_jack = 0;
if (was_running) {
MIDI::JackMIDIPort::JackHalted (); /* EMIT SIGNAL */
#ifdef HAVE_JACK_ON_INFO_SHUTDOWN
switch (code) {
case JackBackendError:
ae->Halted(reason); /* EMIT SIGNAL */
break;
default:
ae->Halted(""); /* EMIT SIGNAL */
}
#else
ae->Halted(""); /* EMIT SIGNAL */
#endif
}
}
void
JACKAudioBackend::halted (void *arg)
{
cerr << "HALTED by JACK\n";
/* called from jack shutdown handler */
AudioEngine* ae = static_cast<AudioEngine *> (arg);
bool was_running = ae->_running;
ae->stop_metering_thread ();
ae->_running = false;
ae->_buffer_size = 0;
ae->_frame_rate = 0;
ae->_jack = 0;
if (was_running) {
MIDI::JackMIDIPort::JackHalted (); /* EMIT SIGNAL */
ae->Halted(""); /* EMIT SIGNAL */
}
}