add 8k support for opus
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69035ff412
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73c4eb5f10
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@ -36,17 +36,207 @@
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SWITCH_MODULE_LOAD_FUNCTION(mod_opus_load);
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SWITCH_MODULE_DEFINITION(mod_opus, mod_opus_load, NULL, NULL);
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/*! \brief Various codec settings */
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struct opus_codec_settings {
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int useinbandfec;
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int usedtx;
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int maxaveragebitrate;
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int stereo;
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int cbr;
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int sprop_maxcapturerate;
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int sprop_stereo;
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int maxptime;
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int minptime;
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int ptime;
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int samplerate;
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};
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typedef struct opus_codec_settings opus_codec_settings_t;
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static opus_codec_settings_t default_codec_settings = {
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/*.useinbandfec */ 1,
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/*.usedtx */ 1,
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/*.maxaveragebitrate */ 30000,
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/*.stereo*/ 0,
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/*.cbr*/ 0,
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/*.sprop_maxcapturerate*/ 0,
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/*.sprop_stereo*/ 0,
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/*.maxptime*/ 0,
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/*.minptime*/ 0,
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/*.ptime*/ 0,
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/*.samplerate*/ 0
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};
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struct opus_context {
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OpusEncoder *encoder_object;
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OpusDecoder *decoder_object;
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int frame_size;
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};
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static switch_status_t switch_opus_fmtp_parse(const char *fmtp, switch_codec_fmtp_t *codec_fmtp)
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{
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if (codec_fmtp) {
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opus_codec_settings_t local_settings = { 0 };
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opus_codec_settings_t *codec_settings = &local_settings;
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if (codec_fmtp->private_info) {
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codec_settings = codec_fmtp->private_info;
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if (zstr(fmtp)) {
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memcpy(codec_settings, &default_codec_settings, sizeof(*codec_settings));
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}
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}
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if (fmtp) {
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int x, argc;
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char *argv[10];
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char *fmtp_dup = strdup(fmtp);
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switch_assert(fmtp_dup);
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argc = switch_separate_string(fmtp_dup, ';', argv, (sizeof(argv) / sizeof(argv[0])));
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for (x = 0; x < argc; x++) {
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char *data = argv[x];
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char *arg;
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switch_assert(data);
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while (*data == ' ') {
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data++;
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}
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if ((arg = strchr(data, '='))) {
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*arg++ = '\0';
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if (codec_settings) {
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if (!strcasecmp(data, "useinbandfec")) {
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codec_settings->useinbandfec = switch_true(arg);
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}
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if (!strcasecmp(data, "usedtx")) {
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codec_settings->usedtx = switch_true(arg);
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}
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if (!strcasecmp(data, "sprop-maxcapturerate")) {
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codec_settings->sprop_maxcapturerate = atoi(arg);
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}
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if (!strcasecmp(data, "maxptime")) {
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codec_settings->maxptime = atoi(arg);
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}
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if (!strcasecmp(data, "minptime")) {
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codec_settings->minptime = atoi(arg);
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}
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if (!strcasecmp(data, "ptime")) {
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codec_settings->ptime = atoi(arg);
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codec_fmtp->microseconds_per_packet = codec_settings->ptime * 1000;
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}
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if (!strcasecmp(data, "samplerate")) {
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codec_settings->samplerate = atoi(arg);
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codec_fmtp->actual_samples_per_second = codec_settings->samplerate;
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}
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if (!strcasecmp(data, "maxaveragebitrate")) {
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codec_settings->maxaveragebitrate = atoi(arg);
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switch(codec_fmtp->actual_samples_per_second) {
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case 8000:
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{
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if(codec_settings->maxaveragebitrate < 6000 || codec_settings->maxaveragebitrate > 20000) {
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codec_settings->maxaveragebitrate = 20000;
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}
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break;
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}
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case 12000:
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{
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if(codec_settings->maxaveragebitrate < 7000 || codec_settings->maxaveragebitrate > 25000) {
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codec_settings->maxaveragebitrate = 25000;
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}
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break;
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}
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case 16000:
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{
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if(codec_settings->maxaveragebitrate < 8000 || codec_settings->maxaveragebitrate > 30000) {
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codec_settings->maxaveragebitrate = 30000;
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}
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break;
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}
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case 24000:
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{
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if(codec_settings->maxaveragebitrate < 12000 || codec_settings->maxaveragebitrate > 40000) {
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codec_settings->maxaveragebitrate = 40000;
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}
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break;
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}
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default:
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/* this should never happen but 20000 is common among all rates */
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codec_settings->maxaveragebitrate = 20000;
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break;
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}
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codec_fmtp->bits_per_second = codec_settings->maxaveragebitrate;
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}
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}
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}
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}
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free(fmtp_dup);
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}
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//codec_fmtp->bits_per_second = bit_rate;
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return SWITCH_STATUS_SUCCESS;
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}
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return SWITCH_STATUS_FALSE;
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}
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static char *gen_fmtp(opus_codec_settings_t *settings, switch_memory_pool_t *pool)
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{
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char buf[256] = "";
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if (settings->useinbandfec) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "useinbandfec=1;");
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}
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if (settings->usedtx) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "usedtx=1;");
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}
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if (settings->maxaveragebitrate) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "maxaveragebitrate=%d;", settings->maxaveragebitrate);
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}
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if (settings->ptime) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "ptime=%d;", settings->ptime);
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}
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if (settings->minptime) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "minptime=%d;", settings->minptime);
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}
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if (settings->maxptime) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "maxptime=%d;", settings->maxptime);
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}
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if (settings->samplerate) {
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "samplerate=%d;", settings->samplerate);
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}
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if (end_of(buf) == ';') {
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end_of(buf) = '\0';
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}
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return switch_core_strdup(pool, buf);
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}
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static switch_status_t switch_opus_init(switch_codec_t *codec, switch_codec_flag_t flags, const switch_codec_settings_t *codec_settings)
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{
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struct opus_context *context = NULL;
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int encoding = (flags & SWITCH_CODEC_FLAG_ENCODE);
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int decoding = (flags & SWITCH_CODEC_FLAG_DECODE);
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switch_codec_fmtp_t codec_fmtp;
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opus_codec_settings_t opus_codec_settings = { 0 };
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if (!(encoding || decoding) || (!(context = switch_core_alloc(codec->memory_pool, sizeof(*context))))) {
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return SWITCH_STATUS_FALSE;
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@ -54,17 +244,21 @@ static switch_status_t switch_opus_init(switch_codec_t *codec, switch_codec_flag
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context->frame_size = codec->implementation->samples_per_packet;
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memset(&codec_fmtp, '\0', sizeof(struct switch_codec_fmtp));
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codec_fmtp.private_info = &opus_codec_settings;
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switch_opus_fmtp_parse(codec->fmtp_in, &codec_fmtp);
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codec->fmtp_out = gen_fmtp(&opus_codec_settings, codec->memory_pool);
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if (encoding) {
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/* come up with a way to specify these */
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int bitrate_bps = codec->implementation->bits_per_second;
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int bitrate_bps = OPUS_AUTO;
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int use_vbr = 1;
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int complexity = 10;
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int use_inbandfec = 1;
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int use_dtx = 1;
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int bandwidth = OPUS_BANDWIDTH_FULLBAND;
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int err;
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int samplerate = opus_codec_settings.samplerate ? opus_codec_settings.samplerate : codec->implementation->actual_samples_per_second;
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context->encoder_object = opus_encoder_create(codec->implementation->actual_samples_per_second,
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context->encoder_object = opus_encoder_create(samplerate,
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codec->implementation->number_of_channels,
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OPUS_APPLICATION_VOIP, &err);
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@ -74,12 +268,24 @@ static switch_status_t switch_opus_init(switch_codec_t *codec, switch_codec_flag
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}
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opus_encoder_ctl(context->encoder_object, OPUS_SET_BITRATE(bitrate_bps));
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opus_encoder_ctl(context->encoder_object, OPUS_SET_BANDWIDTH(bandwidth));
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if (codec->implementation->actual_samples_per_second == 8000) {
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opus_encoder_ctl(context->encoder_object, OPUS_SET_BANDWIDTH(OPUS_BANDWIDTH_NARROWBAND));
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opus_encoder_ctl(context->encoder_object, OPUS_SET_MAX_BANDWIDTH(OPUS_BANDWIDTH_NARROWBAND));
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} else {
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opus_encoder_ctl(context->encoder_object, OPUS_SET_BANDWIDTH(OPUS_BANDWIDTH_FULLBAND));
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}
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opus_encoder_ctl(context->encoder_object, OPUS_SET_VBR(use_vbr));
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opus_encoder_ctl(context->encoder_object, OPUS_SET_COMPLEXITY(complexity));
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opus_encoder_ctl(context->encoder_object, OPUS_SET_INBAND_FEC(use_inbandfec));
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opus_encoder_ctl(context->encoder_object, OPUS_SET_DTX(use_dtx));
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if (opus_codec_settings.useinbandfec) {
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opus_encoder_ctl(context->encoder_object, OPUS_SET_INBAND_FEC(opus_codec_settings.useinbandfec));
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}
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if (opus_codec_settings.usedtx) {
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opus_encoder_ctl(context->encoder_object, OPUS_SET_DTX(opus_codec_settings.usedtx));
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}
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}
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if (decoding) {
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@ -187,19 +393,33 @@ SWITCH_MODULE_LOAD_FUNCTION(mod_opus_load)
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int mss = 10000;
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int x = 0;
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int rate = 48000;
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int bits = 32000;
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int bits = 0;
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char *dft_fmtp = NULL;
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opus_codec_settings_t settings = { 0 };
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/* connect my internal structure to the blank pointer passed to me */
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*module_interface = switch_loadable_module_create_module_interface(pool, modname);
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SWITCH_ADD_CODEC(codec_interface, "OPUS (STANDARD)");
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codec_interface->parse_fmtp = switch_opus_fmtp_parse;
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settings = default_codec_settings;
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for (x = 0; x < 3; x++) {
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settings.ptime = mss / 1000;
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settings.maxptime = settings.ptime;
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settings.minptime = settings.ptime;
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settings.samplerate = rate;
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dft_fmtp = gen_fmtp(&settings, pool);
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switch_core_codec_add_implementation(pool, codec_interface, SWITCH_CODEC_TYPE_AUDIO, /* enumeration defining the type of the codec */
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116, /* the IANA code number */
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"opus",/* the IANA code name */
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NULL, /* default fmtp to send (can be overridden by the init function) */
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rate, /* samples transferred per second */
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dft_fmtp, /* default fmtp to send (can be overridden by the init function) */
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48000, /* samples transferred per second */
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rate, /* actual samples transferred per second */
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bits, /* bits transferred per second */
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mss, /* number of microseconds per frame */
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@ -219,6 +439,44 @@ SWITCH_MODULE_LOAD_FUNCTION(mod_opus_load)
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}
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samples = 80;
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bytes = 160;
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mss = 10000;
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rate = 8000;
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for (x = 0; x < 3; x++) {
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settings.ptime = mss / 1000;
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settings.maxptime = settings.ptime;
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settings.minptime = settings.ptime;
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settings.samplerate = rate;
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dft_fmtp = gen_fmtp(&settings, pool);
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switch_core_codec_add_implementation(pool, codec_interface, SWITCH_CODEC_TYPE_AUDIO, /* enumeration defining the type of the codec */
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116, /* the IANA code number */
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"opus",/* the IANA code name */
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dft_fmtp, /* default fmtp to send (can be overridden by the init function) */
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48000, /* samples transferred per second */
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rate, /* actual samples transferred per second */
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bits, /* bits transferred per second */
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mss, /* number of microseconds per frame */
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samples, /* number of samples per frame */
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bytes, /* number of bytes per frame decompressed */
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0, /* number of bytes per frame compressed */
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1,/* number of channels represented */
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1, /* number of frames per network packet */
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switch_opus_init, /* function to initialize a codec handle using this implementation */
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switch_opus_encode, /* function to encode raw data into encoded data */
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switch_opus_decode, /* function to decode encoded data into raw data */
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switch_opus_destroy); /* deinitalize a codec handle using this implementation */
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bytes += 160;
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samples += 80;
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mss += 10000;
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}
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/* indicate that the module should continue to be loaded */
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return SWITCH_STATUS_SUCCESS;
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}
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