73192bc1a7
git-svn-id: svn://localhost/ardour2/branches/3.0@8166 d708f5d6-7413-0410-9779-e7cbd77b26cf
522 lines
11 KiB
C++
522 lines
11 KiB
C++
/*
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Copyright (C) 1998 Paul Barton-Davis
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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$Id$
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*/
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#include <iostream>
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#include <cstdio>
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#include <fcntl.h>
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#include <errno.h>
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#include <jack/jack.h>
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#include <jack/midiport.h>
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#include "pbd/xml++.h"
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#include "pbd/error.h"
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#include "pbd/failed_constructor.h"
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#include "pbd/convert.h"
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#include "pbd/strsplit.h"
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#include "midi++/types.h"
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#include "midi++/port.h"
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#include "midi++/channel.h"
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using namespace MIDI;
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using namespace std;
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using namespace PBD;
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pthread_t Port::_process_thread;
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Signal0<void> Port::JackHalted;
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Signal0<void> Port::MakeConnections;
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string Port::state_node_name = "MIDI-port";
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Port::Port (string const & name, Flags flags, jack_client_t* jack_client)
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: _currently_in_cycle (false)
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, _nframes_this_cycle (0)
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, _jack_client (jack_client)
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, _jack_port (0)
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, _last_read_index (0)
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, output_fifo (512)
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, input_fifo (1024)
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, _flags (flags)
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{
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assert (jack_client);
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init (name, flags);
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}
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Port::Port (const XMLNode& node, jack_client_t* jack_client)
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: _currently_in_cycle (false)
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, _nframes_this_cycle (0)
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, _jack_client (jack_client)
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, _jack_port (0)
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, _last_read_index (0)
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, output_fifo (512)
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, input_fifo (1024)
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{
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assert (jack_client);
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Descriptor desc (node);
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init (desc.tag, desc.flags);
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set_state (node);
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}
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void
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Port::init (string const & name, Flags flags)
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{
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_ok = false; /* derived class must set to true if constructor
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succeeds.
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*/
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_parser = 0;
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_tagname = name;
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_flags = flags;
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_parser = new Parser (*this);
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for (int i = 0; i < 16; i++) {
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_channel[i] = new Channel (i, *this);
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_channel[i]->connect_signals ();
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}
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if (!create_port ()) {
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_ok = true;
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}
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MakeConnections.connect_same_thread (connect_connection, boost::bind (&Port::make_connections, this));
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JackHalted.connect_same_thread (halt_connection, boost::bind (&Port::jack_halted, this));
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}
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Port::~Port ()
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{
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for (int i = 0; i < 16; i++) {
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delete _channel[i];
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}
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if (_jack_port) {
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if (_jack_client && _jack_port) {
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jack_port_unregister (_jack_client, _jack_port);
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}
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_jack_port = 0;
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}
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}
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void
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Port::parse (framecnt_t timestamp)
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{
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byte buf[512];
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/* NOTE: parsing is done (if at all) by initiating a read from
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the port. Each port implementation calls on the parser
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once it has data ready.
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*/
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_parser->set_timestamp (timestamp);
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while (1) {
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// cerr << "+++ READ ON " << name() << endl;
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int nread = read (buf, sizeof (buf));
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// cerr << "-- READ (" << nread << " ON " << name() << endl;
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if (nread > 0) {
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if ((size_t) nread < sizeof (buf)) {
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break;
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} else {
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continue;
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}
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} else if (nread == 0) {
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break;
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} else if (errno == EAGAIN) {
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break;
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} else {
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fatal << "Error reading from MIDI port " << name() << endmsg;
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/*NOTREACHED*/
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}
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}
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}
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/** Send a clock tick message.
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* \return true on success.
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*/
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bool
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Port::clock (timestamp_t timestamp)
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{
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static byte clockmsg = 0xf8;
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if (sends_output()) {
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return midimsg (&clockmsg, 1, timestamp);
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}
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return false;
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}
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void
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Port::cycle_start (pframes_t nframes)
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{
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assert (_jack_port);
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_currently_in_cycle = true;
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_nframes_this_cycle = nframes;
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assert(_nframes_this_cycle == nframes);
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_last_read_index = 0;
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_last_write_timestamp = 0;
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if (sends_output()) {
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void *buffer = jack_port_get_buffer (_jack_port, nframes);
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jack_midi_clear_buffer (buffer);
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flush (buffer);
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}
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if (receives_input()) {
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void* jack_buffer = jack_port_get_buffer(_jack_port, nframes);
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const pframes_t event_count = jack_midi_get_event_count(jack_buffer);
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jack_midi_event_t ev;
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timestamp_t cycle_start_frame = jack_last_frame_time (_jack_client);
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for (pframes_t i = 0; i < event_count; ++i) {
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jack_midi_event_get (&ev, jack_buffer, i);
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input_fifo.write (cycle_start_frame + ev.time, (Evoral::EventType) 0, ev.size, ev.buffer);
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}
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if (event_count) {
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xthread.wakeup ();
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}
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}
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}
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void
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Port::cycle_end ()
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{
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if (sends_output()) {
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flush (jack_port_get_buffer (_jack_port, _nframes_this_cycle));
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}
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_currently_in_cycle = false;
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_nframes_this_cycle = 0;
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}
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std::ostream & MIDI::operator << ( std::ostream & os, const MIDI::Port & port )
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{
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using namespace std;
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os << "MIDI::Port { ";
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os << "name: " << port.name();
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os << "; ";
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os << "ok: " << port.ok();
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os << "; ";
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os << " }";
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return os;
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}
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Port::Descriptor::Descriptor (const XMLNode& node)
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{
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const XMLProperty *prop;
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bool have_tag = false;
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bool have_mode = false;
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if ((prop = node.property ("tag")) != 0) {
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tag = prop->value();
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have_tag = true;
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}
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if ((prop = node.property ("mode")) != 0) {
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if (strings_equal_ignore_case (prop->value(), "output") || strings_equal_ignore_case (prop->value(), "out")) {
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flags = IsOutput;
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} else if (strings_equal_ignore_case (prop->value(), "input") || strings_equal_ignore_case (prop->value(), "in")) {
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flags = IsInput;
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}
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have_mode = true;
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}
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if (!have_tag || !have_mode) {
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throw failed_constructor();
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}
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}
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void
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Port::jack_halted ()
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{
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_jack_client = 0;
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_jack_port = 0;
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}
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int
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Port::write(byte * msg, size_t msglen, timestamp_t timestamp)
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{
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int ret = 0;
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if (!sends_output()) {
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return ret;
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}
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if (!is_process_thread()) {
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Glib::Mutex::Lock lm (output_fifo_lock);
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RingBuffer< Evoral::Event<double> >::rw_vector vec = { { 0, 0 }, { 0, 0} };
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output_fifo.get_write_vector (&vec);
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if (vec.len[0] + vec.len[1] < 1) {
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error << "no space in FIFO for non-process thread MIDI write" << endmsg;
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return 0;
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}
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if (vec.len[0]) {
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if (!vec.buf[0]->owns_buffer()) {
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vec.buf[0]->set_buffer (0, 0, true);
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}
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vec.buf[0]->set (msg, msglen, timestamp);
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} else {
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if (!vec.buf[1]->owns_buffer()) {
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vec.buf[1]->set_buffer (0, 0, true);
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}
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vec.buf[1]->set (msg, msglen, timestamp);
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}
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output_fifo.increment_write_idx (1);
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ret = msglen;
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} else {
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// XXX This had to be temporarily commented out to make export work again
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if (!(timestamp < _nframes_this_cycle)) {
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std::cerr << "assertion timestamp < _nframes_this_cycle failed!" << std::endl;
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}
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if (_currently_in_cycle) {
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if (timestamp == 0) {
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timestamp = _last_write_timestamp;
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}
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if (jack_midi_event_write (jack_port_get_buffer (_jack_port, _nframes_this_cycle),
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timestamp, msg, msglen) == 0) {
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ret = msglen;
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_last_write_timestamp = timestamp;
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} else {
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ret = 0;
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cerr << "write of " << msglen << " failed, port holds "
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<< jack_midi_get_event_count (jack_port_get_buffer (_jack_port, _nframes_this_cycle))
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<< endl;
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}
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} else {
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cerr << "write to JACK midi port failed: not currently in a process cycle." << endl;
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}
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}
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if (ret > 0 && _parser) {
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// ardour doesn't care about this and neither should your app, probably
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// output_parser->raw_preparse (*output_parser, msg, ret);
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for (int i = 0; i < ret; i++) {
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_parser->scanner (msg[i]);
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}
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// ardour doesn't care about this and neither should your app, probably
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// output_parser->raw_postparse (*output_parser, msg, ret);
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}
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return ret;
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}
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void
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Port::flush (void* jack_port_buffer)
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{
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RingBuffer< Evoral::Event<double> >::rw_vector vec = { { 0, 0 }, { 0, 0 } };
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size_t written;
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output_fifo.get_read_vector (&vec);
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if (vec.len[0] + vec.len[1]) {
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// cerr << "Flush " << vec.len[0] + vec.len[1] << " events from non-process FIFO\n";
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}
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if (vec.len[0]) {
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Evoral::Event<double>* evp = vec.buf[0];
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for (size_t n = 0; n < vec.len[0]; ++n, ++evp) {
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jack_midi_event_write (jack_port_buffer,
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(timestamp_t) evp->time(), evp->buffer(), evp->size());
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}
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}
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if (vec.len[1]) {
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Evoral::Event<double>* evp = vec.buf[1];
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for (size_t n = 0; n < vec.len[1]; ++n, ++evp) {
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jack_midi_event_write (jack_port_buffer,
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(timestamp_t) evp->time(), evp->buffer(), evp->size());
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}
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}
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if ((written = vec.len[0] + vec.len[1]) != 0) {
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output_fifo.increment_read_idx (written);
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}
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}
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int
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Port::read (byte *, size_t)
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{
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if (!receives_input()) {
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return 0;
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}
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timestamp_t time;
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Evoral::EventType type;
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uint32_t size;
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byte buffer[input_fifo.capacity()];
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while (input_fifo.read (&time, &type, &size, buffer)) {
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_parser->set_timestamp (time);
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for (uint32_t i = 0; i < size; ++i) {
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_parser->scanner (buffer[i]);
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}
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}
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return 0;
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}
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int
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Port::create_port ()
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{
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_jack_port = jack_port_register(_jack_client, _tagname.c_str(), JACK_DEFAULT_MIDI_TYPE, _flags, 0);
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return _jack_port == 0 ? -1 : 0;
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}
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XMLNode&
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Port::get_state () const
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{
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XMLNode* root = new XMLNode (state_node_name);
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root->add_property ("tag", _tagname);
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if (_flags == IsInput) {
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root->add_property ("mode", "input");
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} else {
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root->add_property ("mode", "output");
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}
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#if 0
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byte device_inquiry[6];
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device_inquiry[0] = 0xf0;
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device_inquiry[0] = 0x7e;
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device_inquiry[0] = 0x7f;
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device_inquiry[0] = 0x06;
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device_inquiry[0] = 0x02;
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device_inquiry[0] = 0xf7;
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write (device_inquiry, sizeof (device_inquiry), 0);
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#endif
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if (_jack_port) {
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const char** jc = jack_port_get_connections (_jack_port);
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string connection_string;
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if (jc) {
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for (int i = 0; jc[i]; ++i) {
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if (i > 0) {
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connection_string += ',';
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}
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connection_string += jc[i];
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}
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free (jc);
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}
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if (!connection_string.empty()) {
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root->add_property ("connections", connection_string);
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}
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} else {
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if (!_connections.empty()) {
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root->add_property ("connections", _connections);
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}
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}
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return *root;
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}
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void
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Port::set_state (const XMLNode& node)
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{
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const XMLProperty* prop;
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if ((prop = node.property ("tag")) == 0 || prop->value() != _tagname) {
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return;
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}
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if ((prop = node.property ("connections")) != 0 && _jack_port) {
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_connections = prop->value ();
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}
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}
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void
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Port::make_connections ()
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{
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if (!_connections.empty()) {
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vector<string> ports;
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split (_connections, ports, ',');
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for (vector<string>::iterator x = ports.begin(); x != ports.end(); ++x) {
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if (_jack_client) {
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if (receives_input()) {
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jack_connect (_jack_client, (*x).c_str(), jack_port_name (_jack_port));
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} else {
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jack_connect (_jack_client, jack_port_name (_jack_port), (*x).c_str());
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}
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/* ignore failures */
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}
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}
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}
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connect_connection.disconnect ();
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}
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void
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Port::set_process_thread (pthread_t thr)
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{
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_process_thread = thr;
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}
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bool
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Port::is_process_thread()
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{
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return (pthread_self() == _process_thread);
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}
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void
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Port::reestablish (jack_client_t* jack)
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{
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_jack_client = jack;
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int const r = create_port ();
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if (r) {
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PBD::error << "could not reregister ports for " << name() << endmsg;
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}
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}
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void
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Port::reconnect ()
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{
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make_connections ();
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}
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