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503 lines
18 KiB
503 lines
18 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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/*
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Note: this is a silly experimental driver for a number of USB MIDI devices.
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It only supports audio output and MIDI input, as those are my immediate
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needs, to be able to use a machine running CalfBox as a standalone MIDI
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instrument. Plug-and-play is supported, as long as current user running
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calfbox has write access to the USB devices involved. This can be done by
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running calfbox as root, or by setting right permissions in udev scripts
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- this may be considered a safer method.
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Devices supported:
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* Class-compliant audio output devices (tested with Lexicon Omega and some
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cheap no-brand C-Media USB soundcard dongle)
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* Alesis Multimix 8 USB 2.0 (audio output only)
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* Class-compliant MIDI input devices (tested with several devices)
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Yes, code quality is pretty awful, especially in areas involving clock
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sync. I'm going to clean it up iteratively later.
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*/
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#include "config.h"
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#if USE_LIBUSB
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#include "app.h"
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#include "config-api.h"
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#include "errors.h"
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#include "hwcfg.h"
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#include "io.h"
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#include "meter.h"
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#include "midi.h"
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#include "recsrc.h"
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#include "usbio_impl.h"
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#include <assert.h>
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#include <errno.h>
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#include <libusb.h>
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#include <math.h>
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#include <sched.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <syscall.h>
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#include <unistd.h>
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#include <sys/mman.h>
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///////////////////////////////////////////////////////////////////////////////
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int cbox_usbio_get_sample_rate(struct cbox_io_impl *impl)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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return uii->sample_rate;
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}
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gboolean cbox_usbio_get_status(struct cbox_io_impl *impl, GError **error)
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{
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// XXXKF: needs a flag that would indicate whether device is present
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// XXXKF: needs to return that flag with appropriate message
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return TRUE;
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}
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static void run_audio_loop(struct cbox_usb_io_impl *uii)
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{
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while(!uii->stop_engine && !uii->device_removed) {
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struct cbox_io *io = uii->ioi.pio;
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struct timeval tv = {
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.tv_sec = 0,
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.tv_usec = 1000
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};
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libusb_handle_events_timeout(uii->usbctx, &tv);
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for (GSList *p = io->midi_outputs; p; p = p->next)
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{
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struct cbox_usb_midi_output *umo = p->data;
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usbio_send_midi_to_output(umo);
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}
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}
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}
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void usbio_run_idle_loop(struct cbox_usb_io_impl *uii)
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{
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while(!uii->stop_engine)
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{
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struct cbox_io *io = uii->ioi.pio;
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for (int b = 0; b < uii->output_channels; b++)
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memset(io->output_buffers[b], 0, io->io_env.buffer_size * sizeof(float));
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io->cb->process(io->cb->user_data, io, io->io_env.buffer_size);
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for (GList *p = uii->rt_midi_ports; p; p = p->next)
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{
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struct cbox_usb_midi_interface *umi = p->data;
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cbox_midi_buffer_clear(&umi->input_port->hdr.buffer);
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}
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for (GSList *p = io->midi_outputs; p; p = p->next)
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{
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struct cbox_usb_midi_output *umo = p->data;
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usbio_send_midi_to_output(umo);
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}
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struct timeval tv = {
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.tv_sec = 0,
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.tv_usec = 1
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};
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libusb_handle_events_timeout(uii->usbctx, &tv);
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usleep((int)(io->io_env.buffer_size * 1000000.0 / uii->sample_rate));
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}
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}
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static void *engine_thread(void *user_data)
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{
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struct cbox_usb_io_impl *uii = user_data;
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usbio_start_midi_capture(uii);
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if (uii->handle_audiodev)
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{
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uii->no_resubmit = FALSE;
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struct sched_param p;
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memset(&p, 0, sizeof(p));
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p.sched_priority = cbox_config_get_int("io", "rtpriority", 10);
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pid_t tid = syscall(SYS_gettid);
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if (0 != sched_setscheduler(tid, SCHED_FIFO, &p))
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g_warning("Cannot set realtime priority for the processing thread: %s.", strerror(errno));
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usbio_start_audio_playback(uii);
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if (!uii->setup_error)
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{
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run_audio_loop(uii);
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}
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uii->no_resubmit = TRUE;
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memset(&p, 0, sizeof(p));
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p.sched_priority = 0;
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if (0 != sched_setscheduler(tid, SCHED_OTHER, &p))
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g_warning("Cannot unset realtime priority for the processing thread: %s.", strerror(errno));
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usbio_stop_audio_playback(uii);
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}
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else
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{
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uii->no_resubmit = TRUE;
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g_message("No audio device found - running idle loop.");
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// notify the UI thread that the (fake) audio loop is running
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uii->playback_counter = uii->playback_buffers;
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usbio_run_idle_loop(uii);
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}
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usbio_stop_midi_capture(uii);
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return NULL;
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}
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static void cbox_usbio_destroy_midi_out(struct cbox_io_impl *ioi, struct cbox_midi_output *midiout)
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{
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g_free(midiout->name);
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free(midiout);
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}
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static struct cbox_usb_midi_interface *cur_midi_interface = NULL;
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struct cbox_midi_input *cbox_usbio_create_midi_in(struct cbox_io_impl *impl, const char *name, GError **error)
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{
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// struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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struct cbox_usb_midi_input *input = calloc(1, sizeof(struct cbox_usb_midi_input));
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input->hdr.name = g_strdup(name);
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input->hdr.removing = FALSE;
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cbox_uuid_generate(&input->hdr.uuid);
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cbox_midi_buffer_init(&input->hdr.buffer);
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input->ifptr = cur_midi_interface;
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cbox_midi_appsink_init(&input->hdr.appsink, NULL, NULL);
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input->hdr.enable_appsink = FALSE;
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return (struct cbox_midi_input *)input;
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}
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struct cbox_midi_output *cbox_usbio_create_midi_out(struct cbox_io_impl *impl, const char *name, GError **error)
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{
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// struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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struct cbox_usb_midi_output *output = calloc(1, sizeof(struct cbox_usb_midi_output));
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output->hdr.name = g_strdup(name);
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output->hdr.removing = FALSE;
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cbox_uuid_generate(&output->hdr.uuid);
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cbox_midi_buffer_init(&output->hdr.buffer);
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cbox_midi_merger_init(&output->hdr.merger, &output->hdr.buffer);
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output->ifptr = cur_midi_interface;
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return (struct cbox_midi_output *)output;
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}
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static void create_midi_ports(struct cbox_usb_io_impl *uii)
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{
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uii->ioi.createmidiinfunc = cbox_usbio_create_midi_in;
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uii->ioi.createmidioutfunc = cbox_usbio_create_midi_out;
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for (GList *p = uii->midi_ports; p; p = p->next)
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{
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struct cbox_usb_midi_interface *umi = p->data;
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char buf[80];
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sprintf(buf, "usb:%03d:%03d", umi->devinfo->bus, umi->devinfo->devadr);
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cur_midi_interface = umi;
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if (umi->epdesc_in.found)
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umi->input_port = (struct cbox_usb_midi_input *)cbox_io_create_midi_input(uii->ioi.pio, buf, NULL);
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else
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umi->input_port = NULL;
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if (umi->epdesc_out.found)
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umi->output_port = (struct cbox_usb_midi_output *)cbox_io_create_midi_output(uii->ioi.pio, buf, NULL);
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else
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umi->output_port = NULL;
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}
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uii->ioi.createmidiinfunc = NULL;
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uii->ioi.createmidioutfunc = NULL;
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cur_midi_interface = NULL;
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}
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gboolean cbox_usbio_start(struct cbox_io_impl *impl, struct cbox_command_target *fb, GError **error)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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// XXXKF: needs to queue the playback and capture transfers
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uii->stop_engine = FALSE;
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uii->setup_error = FALSE;
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uii->playback_counter = 0;
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create_midi_ports(uii);
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struct cbox_io *io = uii->ioi.pio;
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// XXXKF There is a short period of time when the playback is in 'started' state
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// but is not really processing the event loop. This is likely harmless, but
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// should be kept in mind when adding any code between pthread_create
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// and usbio_update_port_routing.
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if (io->cb->on_started)
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io->cb->on_started(io->cb->user_data);
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if (pthread_create(&uii->thr_engine, NULL, engine_thread, uii))
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{
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g_set_error(error, CBOX_MODULE_ERROR, CBOX_MODULE_ERROR_FAILED, "cannot create engine thread: %s", strerror(errno));
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return FALSE;
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}
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while(!uii->setup_error && uii->playback_counter < uii->playback_buffers)
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usleep(10000);
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usbio_update_port_routing(&uii->ioi);
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return TRUE;
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}
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gboolean cbox_usbio_stop(struct cbox_io_impl *impl, GError **error)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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// XXXKF: needs to kill the playback and capture transfers, and
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// wait for them to be killed
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uii->stop_engine = TRUE;
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pthread_join(uii->thr_engine, NULL);
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return TRUE;
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}
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void cbox_usbio_poll_ports(struct cbox_io_impl *impl, struct cbox_command_target *fb)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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// Dry run, just to detect if anything changed
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if (usbio_scan_devices(uii, TRUE))
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{
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struct cbox_io_callbacks *cb = uii->ioi.pio->cb;
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g_debug("Restarting I/O due to device being connected or disconnected");
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cbox_io_stop(uii->ioi.pio);
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// Re-scan, this time actually create the MIDI inputs
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usbio_scan_devices(uii, FALSE);
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cbox_io_start(uii->ioi.pio, cb, fb);
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}
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}
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gboolean cbox_usbio_cycle(struct cbox_io_impl *impl, struct cbox_command_target *fb, GError **error)
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{
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// struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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// XXXKF: this is for restarting the thing; not implemented for now,
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// the implementation will be something like in case of JACK - close and
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// reopen.
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return TRUE;
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}
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int cbox_usbio_get_midi_data(struct cbox_io_impl *impl, struct cbox_midi_buffer *destination)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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cbox_midi_merger_render_to(&uii->midi_input_merger, destination);
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return 0;
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}
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void cbox_usbio_destroy(struct cbox_io_impl *impl)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)impl;
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GList *prev_keys = g_hash_table_get_values(uii->device_table);
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for (GList *p = prev_keys; p; p = p->next)
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{
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struct cbox_usb_device_info *udi = p->data;
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if (udi->status == CBOX_DEVICE_STATUS_OPENED)
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usbio_forget_device(uii, udi);
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}
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g_list_free(prev_keys);
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g_hash_table_destroy(uii->device_table);
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libusb_exit(uii->usbctx_probe);
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libusb_exit(uii->usbctx);
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cbox_midi_merger_close(&uii->midi_input_merger, app.rt);
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free(uii);
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}
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///////////////////////////////////////////////////////////////////////////////
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struct usbio_transfer *usbio_transfer_new(struct libusb_context *usbctx, const char *transfer_type, int index, int isopackets, void *user_data)
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{
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struct usbio_transfer *p = malloc(sizeof(struct usbio_transfer));
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p->usbctx = usbctx;
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p->transfer = libusb_alloc_transfer(isopackets);
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p->index = index;
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p->cancel_confirm = FALSE;
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p->pending = FALSE;
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p->transfer_type = transfer_type;
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p->user_data = user_data;
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return p;
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}
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int usbio_transfer_submit(struct usbio_transfer *xfer)
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{
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int res = libusb_submit_transfer(xfer->transfer);
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if (res != 0)
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{
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g_warning("usbio_transfer_submit: cannot submit transfer '%s:%d', error = %s", xfer->transfer_type, xfer->index, libusb_error_name(res));
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return res;
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}
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xfer->pending = TRUE;
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return 0;
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}
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void usbio_transfer_shutdown(struct usbio_transfer *xfer)
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{
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if (xfer->pending)
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{
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int res = libusb_cancel_transfer(xfer->transfer);
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if (res != LIBUSB_ERROR_NO_DEVICE)
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{
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int tries = 100;
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while(!xfer->cancel_confirm && tries > 0 && xfer->pending)
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{
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struct timeval tv = {
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.tv_sec = 0,
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.tv_usec = 1000
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};
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libusb_handle_events_timeout(xfer->usbctx, &tv);
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tries--;
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}
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if (!tries)
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g_warning("Timed out waiting for transfer '%s:%d' to complete; status = %d", xfer->transfer_type, xfer->index, xfer->transfer->status);
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}
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}
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}
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void usbio_transfer_destroy(struct usbio_transfer *xfer)
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{
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libusb_free_transfer(xfer->transfer);
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free(xfer);
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}
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///////////////////////////////////////////////////////////////////////////////
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static gboolean cbox_usb_io_process_cmd(struct cbox_command_target *ct, struct cbox_command_target *fb, struct cbox_osc_command *cmd, GError **error)
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{
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struct cbox_usb_io_impl *uii = (struct cbox_usb_io_impl *)ct->user_data;
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struct cbox_io *io = uii->ioi.pio;
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gboolean handled = FALSE;
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if (!strcmp(cmd->command, "/status") && !strcmp(cmd->arg_types, ""))
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{
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||
|
if (!cbox_check_fb_channel(fb, cmd->command, error))
|
||
|
return FALSE;
|
||
|
|
||
|
for (GList *p = uii->midi_ports; p; p = g_list_next(p))
|
||
|
{
|
||
|
struct cbox_usb_midi_interface *midi = p->data;
|
||
|
struct cbox_usb_device_info *di = midi->devinfo;
|
||
|
if (midi->epdesc_in.found && !cbox_execute_on(fb, NULL, "/usb_midi_input", "iiiiu", error, di->bus, di->devadr, di->vid, di->pid, &midi->input_port->hdr.uuid))
|
||
|
return FALSE;
|
||
|
if (midi->epdesc_out.found && !cbox_execute_on(fb, NULL, "/usb_midi_output", "iiiiu", error, di->bus, di->devadr, di->vid, di->pid, &midi->output_port->hdr.uuid))
|
||
|
return FALSE;
|
||
|
}
|
||
|
|
||
|
return cbox_execute_on(fb, NULL, "/client_type", "s", error, "USB") &&
|
||
|
cbox_execute_on(fb, NULL, "/output_resolution", "i", error, 8 * uii->output_resolution) &&
|
||
|
cbox_io_process_cmd(io, fb, cmd, error, &handled);
|
||
|
}
|
||
|
else
|
||
|
{
|
||
|
gboolean result = cbox_io_process_cmd(io, fb, cmd, error, &handled);
|
||
|
if (!handled)
|
||
|
g_set_error(error, CBOX_MODULE_ERROR, CBOX_MODULE_ERROR_FAILED, "Unknown combination of target path and argument: '%s', '%s'", cmd->command, cmd->arg_types);
|
||
|
return result;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
///////////////////////////////////////////////////////////////////////////////
|
||
|
|
||
|
gboolean cbox_io_init_usb(struct cbox_io *io, struct cbox_open_params *const params, struct cbox_command_target *fb, GError **error)
|
||
|
{
|
||
|
struct cbox_usb_io_impl *uii = malloc(sizeof(struct cbox_usb_io_impl));
|
||
|
if (libusb_init(&uii->usbctx))
|
||
|
{
|
||
|
g_set_error(error, CBOX_MODULE_ERROR, CBOX_MODULE_ERROR_FAILED, "Cannot initialise libusb.");
|
||
|
return FALSE;
|
||
|
}
|
||
|
if (libusb_init(&uii->usbctx_probe))
|
||
|
{
|
||
|
libusb_exit(uii->usbctx);
|
||
|
g_set_error(error, CBOX_MODULE_ERROR, CBOX_MODULE_ERROR_FAILED, "Cannot initialise libusb.");
|
||
|
return FALSE;
|
||
|
}
|
||
|
#if LIBUSB_API_VERSION >= 0x01000106
|
||
|
libusb_set_option(uii->usbctx, LIBUSB_OPTION_LOG_LEVEL, 3);
|
||
|
libusb_set_option(uii->usbctx_probe, LIBUSB_OPTION_LOG_LEVEL, 3);
|
||
|
#else
|
||
|
libusb_set_debug(uii->usbctx, 3);
|
||
|
libusb_set_debug(uii->usbctx_probe, 3);
|
||
|
#endif
|
||
|
uii->device_table = g_hash_table_new(g_direct_hash, NULL);
|
||
|
|
||
|
uii->sample_rate = cbox_config_get_int(cbox_io_section, "sample_rate", 44100);
|
||
|
uii->sync_buffers = cbox_config_get_int(cbox_io_section, "sync_buffers", 2);
|
||
|
uii->debug_sync = cbox_config_get_int(cbox_io_section, "debug_sync", 0);
|
||
|
uii->playback_buffers = cbox_config_get_int(cbox_io_section, "playback_buffers", 2);
|
||
|
// shouldn't be more than 4, otherwise it will crackle due to limitations of
|
||
|
// the packet length adjustment. It might work better if adjustment
|
||
|
// was per-packet and not per-transfer.
|
||
|
uii->iso_packets = cbox_config_get_int(cbox_io_section, "iso_packets", 1);
|
||
|
// The USB 2.0 device uses a higher packet rate (125us I think), so the
|
||
|
// default number of packets per transfer needs to be different, too -
|
||
|
// 1ms is a minimum reasonable value
|
||
|
uii->iso_packets_multimix = cbox_config_get_int(cbox_io_section, "iso_packets_multimix", 16);
|
||
|
uii->output_resolution = cbox_config_get_int(cbox_io_section, "output_resolution", 16) / 8;
|
||
|
uii->output_channels = 2;
|
||
|
uii->handle_audiodev = NULL;
|
||
|
cbox_midi_merger_init(&uii->midi_input_merger, NULL);
|
||
|
|
||
|
// fixed processing buffer size, as we have to deal with packetisation anyway
|
||
|
io->io_env.srate = uii->sample_rate;
|
||
|
io->io_env.buffer_size = 64;
|
||
|
io->cb = NULL;
|
||
|
// input and output count is hardcoded for simplicity - in future, it may be
|
||
|
// necessary to add support for the extra inputs (needs to be figured out)
|
||
|
io->io_env.input_count = 2; //cbox_config_get_int("io", "inputs", 0);
|
||
|
io->input_buffers = malloc(sizeof(float *) * io->io_env.input_count);
|
||
|
for (uint32_t i = 0; i < io->io_env.input_count; i++)
|
||
|
io->input_buffers[i] = calloc(io->io_env.buffer_size, sizeof(float));
|
||
|
io->io_env.output_count = 2; // cbox_config_get_int("io", "outputs", 2);
|
||
|
io->output_buffers = malloc(sizeof(float *) * io->io_env.output_count);
|
||
|
for (uint32_t i = 0; i < io->io_env.output_count; i++)
|
||
|
io->output_buffers[i] = calloc(io->io_env.buffer_size, sizeof(float));
|
||
|
io->impl = &uii->ioi;
|
||
|
cbox_command_target_init(&io->cmd_target, cbox_usb_io_process_cmd, uii);
|
||
|
|
||
|
uii->ioi.pio = io;
|
||
|
uii->ioi.getsampleratefunc = cbox_usbio_get_sample_rate;
|
||
|
uii->ioi.startfunc = cbox_usbio_start;
|
||
|
uii->ioi.stopfunc = cbox_usbio_stop;
|
||
|
uii->ioi.getstatusfunc = cbox_usbio_get_status;
|
||
|
uii->ioi.pollfunc = cbox_usbio_poll_ports;
|
||
|
uii->ioi.cyclefunc = cbox_usbio_cycle;
|
||
|
uii->ioi.getmidifunc = cbox_usbio_get_midi_data;
|
||
|
uii->ioi.destroymidioutfunc = cbox_usbio_destroy_midi_out;
|
||
|
uii->ioi.destroyfunc = cbox_usbio_destroy;
|
||
|
uii->ioi.controltransportfunc = NULL;
|
||
|
uii->ioi.getsynccompletedfunc = NULL;
|
||
|
uii->ioi.updatemidiinroutingfunc = usbio_update_port_routing;
|
||
|
uii->midi_ports = NULL;
|
||
|
|
||
|
usbio_scan_devices(uii, FALSE);
|
||
|
|
||
|
if (cbox_config_get_int("io", "lockall", 0))
|
||
|
mlockall(MCL_CURRENT|MCL_FUTURE);
|
||
|
|
||
|
return TRUE;
|
||
|
|
||
|
}
|
||
|
|
||
|
#endif
|