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255 lines
8.9 KiB
255 lines
8.9 KiB
5 years ago
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/*
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Calf Box, an open source musical instrument.
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Copyright (C) 2010-2013 Krzysztof Foltman
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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 3 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, see <http://www.gnu.org/licenses/>.
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*/
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#include "blob.h"
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#include "mididest.h"
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#include "rt.h"
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#include "stm.h"
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void cbox_midi_merger_init(struct cbox_midi_merger *dest, struct cbox_midi_buffer *output)
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{
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dest->inputs = NULL;
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dest->output = output;
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if (dest->output)
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cbox_midi_buffer_clear(dest->output);
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}
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// void cbox_midi_buffer_merge(struct cbox_midi_buffer *output, struct cbox_midi_buffer **inputs, int count, int *positions)
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void cbox_midi_merger_render_to(struct cbox_midi_merger *dest, struct cbox_midi_buffer *output)
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{
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if (!output)
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return;
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cbox_midi_buffer_clear(output);
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for (struct cbox_midi_source *p = dest->inputs; p; p = p->next)
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{
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if (p->streaming)
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p->bpos = 0;
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}
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struct cbox_midi_source *first = dest->inputs;
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struct cbox_midi_source *first_not = NULL;
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while(first)
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{
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struct cbox_midi_source *earliest_source = NULL;
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uint32_t earliest_time = (uint32_t)-1;
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for (struct cbox_midi_source *p = first; p != first_not; p = p->next)
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{
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struct cbox_midi_buffer *data = p->data;
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if (p->bpos < data->count)
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{
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const struct cbox_midi_event *event = cbox_midi_buffer_get_event(data, p->bpos);
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if (event->time < earliest_time)
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{
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earliest_source = p;
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earliest_time = event->time;
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}
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}
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else
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{
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// Narrow down the range from top and bottom
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if (p == first)
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first = p->next;
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if (p->next == first_not)
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{
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first_not = p;
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break;
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}
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}
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}
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if (earliest_source)
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{
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cbox_midi_buffer_copy_event(output, cbox_midi_buffer_get_event(earliest_source->data, earliest_source->bpos), earliest_time);
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earliest_source->bpos++;
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}
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else
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break;
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}
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}
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struct cbox_midi_source **cbox_midi_merger_find_source(struct cbox_midi_merger *dest, struct cbox_midi_buffer *buffer)
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{
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for (struct cbox_midi_source **pp = &dest->inputs; *pp; pp = &((*pp)->next))
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if ((*pp)->data == buffer)
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return pp;
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return NULL;
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}
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void cbox_midi_merger_connect(struct cbox_midi_merger *dest, struct cbox_midi_buffer *buffer, struct cbox_rt *rt, struct cbox_midi_merger **dest_ptr)
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{
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if (cbox_midi_merger_find_source(dest, buffer) != NULL)
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return;
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struct cbox_midi_source *src = calloc(1, sizeof(struct cbox_midi_source));
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src->data = buffer;
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src->bpos = 0;
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src->streaming = TRUE;
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src->next = NULL; // will be updated by the swap
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src->merger_ptr = dest_ptr;
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if (src->merger_ptr)
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*src->merger_ptr = dest;
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cbox_rt_swap_pointers_into(rt, (void **)&dest->inputs, src, (void **)&src->next);
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}
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void cbox_midi_merger_disconnect(struct cbox_midi_merger *dest, struct cbox_midi_buffer *buffer, struct cbox_rt *rt)
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{
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// Make sure there are no old commands that could modify the chain
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// between find_source and swap_pointers.
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cbox_rt_handle_cmd_queue(rt);
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struct cbox_midi_source **pp = cbox_midi_merger_find_source(dest, buffer);
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if (!pp)
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return;
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struct cbox_midi_source *ms = *pp;
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void *old_ptr = cbox_rt_swap_pointers(rt, (void **)pp, ms->next);
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assert(old_ptr == ms);
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if (ms->merger_ptr)
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*ms->merger_ptr = NULL;
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free(ms);
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}
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void cbox_midi_merger_push(struct cbox_midi_merger *dest, struct cbox_midi_buffer *buffer, struct cbox_rt *rt)
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{
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if (!buffer->count)
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return;
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assert(!cbox_midi_merger_find_source(dest, buffer));
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struct cbox_midi_source src;
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src.data = buffer;
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src.bpos = 0;
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src.streaming = FALSE;
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src.next = dest->inputs;
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src.merger_ptr = NULL;
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cbox_rt_swap_pointers_into(rt, (void **)&dest->inputs, &src, (void **)&src.next);
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while(src.bpos < buffer->count)
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cbox_rt_handle_cmd_queue(rt);
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struct cbox_midi_source **pp = cbox_midi_merger_find_source(dest, buffer);
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if (!pp)
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return;
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assert(*pp == &src);
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void *old_ptr = cbox_rt_swap_pointers(rt, (void **)pp, src.next);
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assert(old_ptr == &src);
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}
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void cbox_midi_merger_close(struct cbox_midi_merger *dest, struct cbox_rt *rt)
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{
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struct cbox_midi_source *ms = cbox_rt_swap_pointers(rt, (void **)&dest->inputs, NULL);
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while(ms)
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{
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struct cbox_midi_source *p = ms;
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ms = p->next;
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if (p->merger_ptr)
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*p->merger_ptr = NULL;
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free(p);
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////
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void cbox_midi_appsink_init(struct cbox_midi_appsink *appsink, struct cbox_rt *rt, struct cbox_time_mapper *tmap)
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{
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appsink->rt = rt;
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appsink->tmap = tmap;
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cbox_midi_buffer_init(&appsink->midibufs[0]);
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cbox_midi_buffer_init(&appsink->midibufs[1]);
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appsink->current_buffer = 0;
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}
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void cbox_midi_appsink_supply(struct cbox_midi_appsink *appsink, struct cbox_midi_buffer *buffer, uint32_t time_offset)
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{
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struct cbox_midi_buffer *sinkbuf = &appsink->midibufs[appsink->current_buffer];
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for (uint32_t i = 0; i < buffer->count; i++)
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{
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const struct cbox_midi_event *event = cbox_midi_buffer_get_event(buffer, i);
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if (event)
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{
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if (!cbox_midi_buffer_can_store_msg(sinkbuf, event->size))
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break;
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uint32_t abs_time_samples = time_offset + event->time;
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uint32_t etime = abs_time_samples;
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if (appsink->tmap)
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etime = appsink->tmap->map_time(appsink->tmap, etime);
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cbox_midi_buffer_copy_event(sinkbuf, event, etime);
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}
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}
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}
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#define cbox_midi_appsink_get_input_midi_data__args(ARG)
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DEFINE_RT_FUNC(const struct cbox_midi_buffer *, cbox_midi_appsink, appsink, cbox_midi_appsink_get_input_midi_data_)
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{
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const struct cbox_midi_buffer *ret = NULL;
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if (appsink->midibufs[appsink->current_buffer].count)
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{
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// return the current buffer, switch to the new, empty one
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ret = &appsink->midibufs[appsink->current_buffer];
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appsink->current_buffer = 1 - appsink->current_buffer;
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cbox_midi_buffer_clear(&appsink->midibufs[appsink->current_buffer]);
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}
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return ret;
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}
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const struct cbox_midi_buffer *cbox_midi_appsink_get_input_midi_data(struct cbox_midi_appsink *appsink)
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{
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// This checks the counter from the 'wrong' thread, but that's OK, it's
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// just to avoid doing any RT work when input buffer is completely empty.
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// Any further access/manipulation is done via RT cmd.
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if (!appsink->midibufs[appsink->current_buffer].count)
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return NULL;
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return cbox_midi_appsink_get_input_midi_data_(appsink);
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}
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gboolean cbox_midi_appsink_send_to(struct cbox_midi_appsink *appsink, struct cbox_command_target *fb, GError **error)
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{
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const struct cbox_midi_buffer *midi_in = cbox_midi_appsink_get_input_midi_data(appsink);
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// If no feedback, the input events are lost - probably better than if
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// they filled up the input buffer needlessly.
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if (fb && midi_in)
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{
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for (uint32_t i = 0; i < midi_in->count; i++)
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{
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const struct cbox_midi_event *event = cbox_midi_buffer_get_event(midi_in, i);
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const uint8_t *data = cbox_midi_event_get_data(event);
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uint32_t time = event->time & 0x7FFFFFFF;
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uint32_t time_type = event->time >> 31;
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if (time_type == 0 && !cbox_execute_on(fb, NULL, "/io/midi/event_time_samples", "i", error, time))
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return FALSE;
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if (time_type == 1 && !cbox_execute_on(fb, NULL, "/io/midi/event_time_ppqn", "i", error, time))
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return FALSE;
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// XXXKF doesn't handle SysEx properly yet, only 3-byte values
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if (event->size <= 3)
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{
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if (!cbox_execute_on(fb, NULL, "/io/midi/simple_event", "iii" + (3 - event->size), error, data[0], data[1], data[2]))
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return FALSE;
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}
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else
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{
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struct cbox_blob blob;
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blob.data = (uint8_t *)data;
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blob.size = event->size;
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if (!cbox_execute_on(fb, NULL, "/io/midi/long_event", "b", error, &blob))
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return FALSE;
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}
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}
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}
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return TRUE;
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}
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