refactor: restructure looper into multi-channel architecture
Co-authored-by: aider (deepseek/deepseek-reasoner) <aider@aider.chat>
This commit is contained in:
340
src/main.c
340
src/main.c
@@ -8,6 +8,7 @@
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#include <math.h>
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#include <math.h>
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#define LOOP_BUF_SIZE (5 * 48000) /* 5 seconds at 48 kHz, mono */
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#define LOOP_BUF_SIZE (5 * 48000) /* 5 seconds at 48 kHz, mono */
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#define MAX_CHANNELS 16
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typedef enum {
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typedef enum {
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STATE_IDLE,
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STATE_IDLE,
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@@ -16,151 +17,187 @@ typedef enum {
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STATE_PAUSED
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STATE_PAUSED
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} looper_state;
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} looper_state;
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static atomic_int current_state = STATE_IDLE;
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/* per‑channel state */
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struct channel_t {
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atomic_int state;
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int prev_state;
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float loop_buffer[LOOP_BUF_SIZE];
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int loop_count;
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int record_pos;
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int playback_pos;
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int active; /* 1 = channel in use */
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jack_port_t *audio_in;
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jack_port_t *audio_out;
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};
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/* loop buffer and playback state */
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static struct channel_t channels[MAX_CHANNELS];
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static float loop_buffer[LOOP_BUF_SIZE];
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static atomic_int channel_count = 0; /* number of active channels */
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static int loop_count = 0; /* number of recorded samples */
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static int next_channel_id = 1; /* for port naming */
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static int record_pos = 0; /* next write index while recording */
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static atomic_int cmd_add = 0; /* set by MIDI note 60 in process() */
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static int playback_pos = 0; /* next read index while looping */
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static atomic_int cmd_remove = 0; /* set by MIDI note 61 */
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static int prev_state = -1; /* for detecting state changes */
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static jack_port_t *input_port;
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static jack_port_t *output_port;
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static jack_port_t *midi_control_port;
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static jack_port_t *midi_control_port;
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static jack_port_t *midi_clock_port;
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static jack_port_t *midi_clock_port;
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static jack_client_t *client;
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static jack_client_t *client;
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/* ---------------------------------------------------------------
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* process callback – runs in real‑time context
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* --------------------------------------------------------------- */
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static int process(jack_nframes_t nframes, void *arg)
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static int process(jack_nframes_t nframes, void *arg)
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{
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{
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(void)arg;
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(void)arg;
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jack_default_audio_sample_t *in = (jack_default_audio_sample_t *) jack_port_get_buffer(input_port, nframes);
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jack_default_audio_sample_t *out = (jack_default_audio_sample_t *) jack_port_get_buffer(output_port, nframes);
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/* ----- state change detection ----- */
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/* handle MIDI commands on the global control port */
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int state = atomic_load(¤t_state);
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if (state != prev_state) {
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if (state == STATE_RECORD) {
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record_pos = 0;
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loop_count = 0;
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} else if (state == STATE_LOOPING) {
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if (record_pos > 0) {
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loop_count = record_pos; /* what we recorded */
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}
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playback_pos = 0; /* restart from beginning */
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}
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}
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/* ----- handle MIDI control port (state transitions) ----- */
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void *midi_ctrl_buf = jack_port_get_buffer(midi_control_port, nframes);
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void *midi_ctrl_buf = jack_port_get_buffer(midi_control_port, nframes);
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if (midi_ctrl_buf) {
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if (midi_ctrl_buf) {
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jack_nframes_t nevents = jack_midi_get_event_count(midi_ctrl_buf);
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jack_nframes_t nevents = jack_midi_get_event_count(midi_ctrl_buf);
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jack_midi_event_t ev;
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jack_midi_event_t ev;
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for (jack_nframes_t i = 0; i < nevents; i++) {
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for (jack_nframes_t i = 0; i < nevents; i++) {
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if (jack_midi_event_get(&ev, midi_ctrl_buf, i) == 0) {
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if (jack_midi_event_get(&ev, midi_ctrl_buf, i) != 0) continue;
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/* note on with note number 1 */
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if ((ev.size >= 3) && ((ev.buffer[0] & 0xf0) == 0x90)) {
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if ((ev.size >= 3) && ((ev.buffer[0] & 0xf0) == 0x90)) {
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unsigned char note = ev.buffer[1];
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unsigned char note = ev.buffer[1];
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switch (note) {
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if (note == 1) {
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case 1: /* toggle state of channel 0 (backward compatible) */
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int cur_state = atomic_load(¤t_state);
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{
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switch (cur_state) {
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int cur0 = atomic_load(&channels[0].state);
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case STATE_IDLE:
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switch (cur0) {
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atomic_store(¤t_state, STATE_RECORD);
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case STATE_IDLE:
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break;
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atomic_store(&channels[0].state, STATE_RECORD);
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case STATE_RECORD:
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break;
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atomic_store(¤t_state, STATE_LOOPING);
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case STATE_RECORD:
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break;
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atomic_store(&channels[0].state, STATE_LOOPING);
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case STATE_LOOPING:
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break;
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atomic_store(¤t_state, STATE_PAUSED);
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case STATE_LOOPING:
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break;
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atomic_store(&channels[0].state, STATE_PAUSED);
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case STATE_PAUSED:
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break;
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atomic_store(¤t_state, STATE_LOOPING);
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case STATE_PAUSED:
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break;
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atomic_store(&channels[0].state, STATE_LOOPING);
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}
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break;
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}
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}
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break;
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}
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case 60: /* add channel – send to main thread */
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atomic_store(&cmd_add, 1);
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break;
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case 61: /* remove channel – send to main thread */
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atomic_store(&cmd_remove, 1);
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break;
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default:
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break;
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}
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}
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}
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}
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}
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}
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}
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}
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/* ----- audio output based on current state ----- */
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/* process each active channel */
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if (!out) return 0; /* cannot happen, but safe */
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for (int c = 0; c < MAX_CHANNELS; c++) {
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if (!channels[c].active) continue;
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jack_nframes_t i;
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jack_default_audio_sample_t *in = (jack_default_audio_sample_t *)
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jack_port_get_buffer(channels[c].audio_in, nframes);
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jack_default_audio_sample_t *out = (jack_default_audio_sample_t *)
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jack_port_get_buffer(channels[c].audio_out, nframes);
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if (!out) continue; /* safety */
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switch (state) {
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int state = atomic_load(&channels[c].state);
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case STATE_RECORD:
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if (in) {
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/* transition initialisation */
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const float *inf = (const float *)in;
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if (state != channels[c].prev_state) {
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float *outf = (float *)out;
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switch (state) {
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for (i = 0; i < nframes; i++) {
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case STATE_RECORD:
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if (record_pos < LOOP_BUF_SIZE) {
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channels[c].record_pos = 0;
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loop_buffer[record_pos] = inf[i];
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channels[c].loop_count = 0;
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record_pos++;
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break;
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case STATE_LOOPING:
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if (channels[c].record_pos > 0)
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channels[c].loop_count = channels[c].record_pos;
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channels[c].playback_pos = 0;
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break;
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default:
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break;
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}
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}
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jack_nframes_t i;
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switch (state) {
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case STATE_RECORD:
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if (in) {
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const float *inf = (const float *)in;
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float *outf = (float *)out;
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for (i = 0; i < nframes; i++) {
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if (channels[c].record_pos < LOOP_BUF_SIZE) {
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channels[c].loop_buffer[channels[c].record_pos] = inf[i];
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channels[c].record_pos++;
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}
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outf[i] = inf[i]; /* monitor input */
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}
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}
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outf[i] = inf[i]; /* monitor input */
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} else {
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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}
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}
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} else {
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break;
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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}
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break;
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case STATE_LOOPING:
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case STATE_LOOPING:
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if (loop_count > 0) {
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if (channels[c].loop_count > 0) {
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float *outf = (float *)out;
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float *outf = (float *)out;
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for (i = 0; i < nframes; i++) {
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for (i = 0; i < nframes; i++) {
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outf[i] = loop_buffer[playback_pos];
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outf[i] = channels[c].loop_buffer[channels[c].playback_pos];
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playback_pos = (playback_pos + 1) % loop_count;
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channels[c].playback_pos =
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(channels[c].playback_pos + 1) % channels[c].loop_count;
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}
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} else {
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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}
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}
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} else {
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break;
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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}
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break;
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case STATE_PAUSED:
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case STATE_PAUSED:
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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break;
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default: /* IDLE */
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if (in) {
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memcpy(out, in, sizeof(jack_default_audio_sample_t) * nframes);
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} else {
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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break;
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default: /* IDLE */
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if (in) {
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memcpy(out, in, sizeof(jack_default_audio_sample_t) * nframes);
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} else {
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memset(out, 0, sizeof(jack_default_audio_sample_t) * nframes);
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}
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break;
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}
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}
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break;
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channels[c].prev_state = state;
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}
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}
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/* ----- MIDI clock events (unchanged) ----- */
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/* ----- MIDI clock events (still affect channel 0 only) ----- */
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void *midi_clock_buf = jack_port_get_buffer(midi_clock_port, nframes);
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void *midi_clock_buf = jack_port_get_buffer(midi_clock_port, nframes);
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if (midi_clock_buf) {
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if (midi_clock_buf) {
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jack_nframes_t n_clock_events = jack_midi_get_event_count(midi_clock_buf);
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jack_nframes_t n_clock_events = jack_midi_get_event_count(midi_clock_buf);
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jack_midi_event_t cev;
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jack_midi_event_t cev;
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for (jack_nframes_t j = 0; j < n_clock_events; j++) {
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for (jack_nframes_t j = 0; j < n_clock_events; j++) {
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if (jack_midi_event_get(&cev, midi_clock_buf, j) == 0) {
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if (jack_midi_event_get(&cev, midi_clock_buf, j) != 0) continue;
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if (cev.size >= 1) {
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if (cev.size >= 1) {
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unsigned char msg = cev.buffer[0];
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unsigned char msg = cev.buffer[0];
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if (msg == 0xFA) {
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switch (msg) {
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int s = atomic_load(¤t_state);
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case 0xFA: {
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if (s == STATE_IDLE) {
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int s = atomic_load(&channels[0].state);
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atomic_store(¤t_state, STATE_RECORD);
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if (s == STATE_IDLE)
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}
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atomic_store(&channels[0].state, STATE_RECORD);
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} else if (msg == 0xFC) {
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break;
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atomic_store(¤t_state, STATE_IDLE);
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}
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} else if (msg == 0xFB) {
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case 0xFC:
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int s = atomic_load(¤t_state);
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atomic_store(&channels[0].state, STATE_IDLE);
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if (s == STATE_PAUSED) {
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break;
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atomic_store(¤t_state, STATE_LOOPING);
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case 0xFB: {
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}
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int s = atomic_load(&channels[0].state);
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}
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if (s == STATE_PAUSED)
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atomic_store(&channels[0].state, STATE_LOOPING);
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break;
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}
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default:
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break;
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}
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}
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}
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}
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}
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}
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}
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}
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/* update prev_state after all state changes */
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prev_state = atomic_load(¤t_state);
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return 0;
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return 0;
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}
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}
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@@ -182,35 +219,46 @@ int main(int argc, char *argv[])
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client = jack_client_open(client_name, options, &status);
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client = jack_client_open(client_name, options, &status);
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if (client == NULL) {
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if (client == NULL) {
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fprintf(stderr, "jack_client_open() failed, status = 0x%2.0x\n", status);
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fprintf(stderr, "jack_client_open() failed, status = 0x%2.0x\n", status);
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if (status & JackServerFailed) {
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if (status & JackServerFailed)
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fprintf(stderr, "Unable to connect to JACK server\n");
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fprintf(stderr, "Unable to connect to JACK server\n");
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}
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return 1;
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return 1;
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}
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}
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if (status & JackNameNotUnique) {
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if (status & JackNameNotUnique)
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client_name = jack_get_client_name(client);
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client_name = jack_get_client_name(client);
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}
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jack_set_process_callback(client, process, NULL);
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jack_set_process_callback(client, process, NULL);
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jack_on_shutdown(client, jack_shutdown, NULL);
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jack_on_shutdown(client, jack_shutdown, NULL);
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input_port = jack_port_register(client, "input",
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/* ------------------ channel 0 (the default channel) ------------------ */
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JACK_DEFAULT_AUDIO_TYPE,
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channels[0].active = 1;
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JackPortIsInput, 0);
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atomic_store(&channels[0].state, STATE_IDLE);
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output_port = jack_port_register(client, "output",
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channels[0].prev_state = -1;
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JACK_DEFAULT_AUDIO_TYPE,
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channels[0].loop_count = 0;
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JackPortIsOutput, 0);
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channels[0].record_pos = 0;
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channels[0].playback_pos = 0;
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channels[0].audio_in = jack_port_register(client, "input",
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JACK_DEFAULT_AUDIO_TYPE,
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JackPortIsInput, 0);
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channels[0].audio_out = jack_port_register(client, "output",
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JACK_DEFAULT_AUDIO_TYPE,
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JackPortIsOutput, 0);
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if (!channels[0].audio_in || !channels[0].audio_out) {
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fprintf(stderr, "Could not create audio ports for channel 0\n");
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return 1;
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}
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channel_count = 1;
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/* MIDI control & clock ports (shared across all channels) */
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midi_control_port = jack_port_register(client, "control",
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midi_control_port = jack_port_register(client, "control",
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JACK_DEFAULT_MIDI_TYPE,
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JACK_DEFAULT_MIDI_TYPE,
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JackPortIsInput, 0);
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JackPortIsInput, 0);
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midi_clock_port = jack_port_register(client, "clock",
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midi_clock_port = jack_port_register(client, "clock",
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JACK_DEFAULT_MIDI_TYPE,
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JACK_DEFAULT_MIDI_TYPE,
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JackPortIsInput, 0);
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JackPortIsInput, 0);
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if (!midi_control_port || !midi_clock_port) {
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if ((input_port == NULL) || (output_port == NULL) ||
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fprintf(stderr, "Could not create MIDI ports\n");
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(midi_control_port == NULL) || (midi_clock_port == NULL)) {
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fprintf(stderr, "Could not create ports\n");
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return 1;
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return 1;
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}
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}
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@@ -221,10 +269,56 @@ int main(int argc, char *argv[])
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fprintf(stderr, "looper running (client name '%s')\n", client_name);
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fprintf(stderr, "looper running (client name '%s')\n", client_name);
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prev_state = -1; /* initialise change detection */
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while (1) {
|
while (1) {
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/* process pending add‑channel / remove‑channel commands
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* (only safe outside the real‑time callback) */
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if (atomic_exchange(&cmd_add, 0)) {
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int idx;
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for (idx = 0; idx < MAX_CHANNELS; idx++)
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if (!channels[idx].active) break;
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if (idx < MAX_CHANNELS) {
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channels[idx].active = 1;
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atomic_store(&channels[idx].state, STATE_IDLE);
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channels[idx].prev_state = -1;
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channels[idx].loop_count = 0;
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channels[idx].record_pos = 0;
|
||||||
|
channels[idx].playback_pos = 0;
|
||||||
|
|
||||||
|
char in_name[64], out_name[64];
|
||||||
|
snprintf(in_name, sizeof(in_name),
|
||||||
|
"channel%d_input", next_channel_id);
|
||||||
|
snprintf(out_name, sizeof(out_name),
|
||||||
|
"channel%d_output", next_channel_id);
|
||||||
|
|
||||||
|
channels[idx].audio_in =
|
||||||
|
jack_port_register(client, in_name,
|
||||||
|
JACK_DEFAULT_AUDIO_TYPE,
|
||||||
|
JackPortIsInput, 0);
|
||||||
|
channels[idx].audio_out =
|
||||||
|
jack_port_register(client, out_name,
|
||||||
|
JACK_DEFAULT_AUDIO_TYPE,
|
||||||
|
JackPortIsOutput, 0);
|
||||||
|
if (!channels[idx].audio_in || !channels[idx].audio_out)
|
||||||
|
fprintf(stderr, "Failed to register ports for channel %d\n",
|
||||||
|
next_channel_id);
|
||||||
|
next_channel_id++;
|
||||||
|
channel_count++;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
if (atomic_exchange(&cmd_remove, 0)) {
|
||||||
|
/* find the highest active channel index >0 */
|
||||||
|
int remove_idx = -1;
|
||||||
|
for (int idx = 1; idx < MAX_CHANNELS; idx++)
|
||||||
|
if (channels[idx].active) remove_idx = idx;
|
||||||
|
if (remove_idx != -1) {
|
||||||
|
jack_port_unregister(client, channels[remove_idx].audio_in);
|
||||||
|
jack_port_unregister(client, channels[remove_idx].audio_out);
|
||||||
|
channels[remove_idx].active = 0;
|
||||||
|
channel_count--;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
sleep(1);
|
sleep(1);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
Reference in New Issue
Block a user