FS-8878: mod_amr: make AMR NB transcode in octet-align mode (when compiled with HAVE_AMR)
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9dede6a347
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8dcf8caa85
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@ -25,6 +25,8 @@
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*
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* Anthony Minessale II <anthm@freeswitch.org>
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* Brian K. West <brian@freeswitch.org>
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* Dragos Oancea <dragos.oancea@athonet.com>
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* Federico Favaro <federico.favaro@athonet.com>
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*
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* The amr codec itself is not distributed with this module.
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*
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@ -106,112 +108,90 @@ struct amr_codec_settings {
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switch_byte_t ptime;
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switch_byte_t channels;
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switch_byte_t flags;
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switch_byte_t enc_modes;
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switch_byte_t enc_mode;
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};
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typedef struct amr_codec_settings amr_codec_settings_t;
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static amr_codec_settings_t default_codec_settings = {
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/*.dtx_mode */ AMR_DTX_ENABLED,
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/*.change_period */ 0,
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/*.max_ptime */ 0,
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/*.ptime */ 0,
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/*.channels */ 0,
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/*.flags */ 0,
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};
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struct amr_context {
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void *encoder_state;
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void *decoder_state;
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switch_byte_t enc_modes;
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switch_byte_t enc_mode;
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amr_codec_settings_t codec_settings;
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switch_byte_t flags;
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int dtx_mode;
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};
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#define AMR_DEFAULT_BITRATE AMR_BITRATE_1220
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static struct {
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switch_byte_t default_bitrate;
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int debug;
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} globals;
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static switch_status_t switch_amr_fmtp_parse(const char *fmtp, switch_codec_fmtp_t *codec_fmtp)
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static const int switch_amr_frame_sizes[] = {12,13,15,17,19,20,26,31,5,0};
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#define AMR_OUT_MAX_SIZE 32
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static switch_bool_t switch_amr_unpack_oa(unsigned char *buf, uint8_t *tmp, int encoded_data_len)
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{
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if (codec_fmtp) {
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amr_codec_settings_t *codec_settings = NULL;
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if (codec_fmtp->private_info) {
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codec_settings = codec_fmtp->private_info;
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memcpy(codec_settings, &default_codec_settings, sizeof(*codec_settings));
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}
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uint8_t *tocs;
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int index;
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int framesz;
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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((char *) 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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/*
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if (!strcasecmp(data, "bitrate")) {
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bit_rate = atoi(arg);
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}
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*/
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if (codec_settings) {
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if (!strcasecmp(data, "octet-align")) {
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if (atoi(arg)) {
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switch_set_flag(codec_settings, AMR_OPT_OCTET_ALIGN);
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}
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} else if (!strcasecmp(data, "mode-change-neighbor")) {
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if (atoi(arg)) {
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switch_set_flag(codec_settings, AMR_OPT_MODE_CHANGE_NEIGHBOR);
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}
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} else if (!strcasecmp(data, "crc")) {
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if (atoi(arg)) {
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switch_set_flag(codec_settings, AMR_OPT_CRC);
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}
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} else if (!strcasecmp(data, "robust-sorting")) {
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if (atoi(arg)) {
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switch_set_flag(codec_settings, AMR_OPT_ROBUST_SORTING);
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}
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} else if (!strcasecmp(data, "interveaving")) {
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if (atoi(arg)) {
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switch_set_flag(codec_settings, AMR_OPT_INTERLEAVING);
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}
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} else if (!strcasecmp(data, "mode-change-period")) {
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codec_settings->change_period = atoi(arg);
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} else if (!strcasecmp(data, "ptime")) {
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codec_settings->ptime = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "channels")) {
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codec_settings->channels = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "maxptime")) {
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codec_settings->max_ptime = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "mode-set")) {
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int y, m_argc;
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char *m_argv[7];
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m_argc = switch_separate_string(arg, ',', m_argv, (sizeof(m_argv) / sizeof(m_argv[0])));
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for (y = 0; y < m_argc; y++) {
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codec_settings->enc_modes |= (1 << atoi(m_argv[y]));
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}
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} else if (!strcasecmp(data, "dtx")) {
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codec_settings->dtx_mode = (atoi(arg)) ? AMR_DTX_ENABLED : AMR_DTX_DISABLED;
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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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buf++; /*CMR skip*/
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tocs = buf;
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index = ((tocs[0]>>3) & 0xf);
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buf++; /*point to voice payload*/
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if (index > 9) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_ERROR, "AMR decoder (OA): Bad AMRWB TOC, index = %i", index);
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return SWITCH_FALSE;
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}
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return SWITCH_STATUS_FALSE;
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framesz = switch_amr_frame_sizes[index];
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if (framesz > encoded_data_len - 1) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_ERROR, "AMR decoder (OA): Truncated AMR frame\n");
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return SWITCH_FALSE;
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}
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tmp[0] = tocs[0];
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memcpy(&tmp[1], buf, framesz);
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return SWITCH_TRUE;
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}
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static switch_bool_t switch_amr_info(unsigned char *encoded_buf, int encoded_data_len, int payload_format, char *print_text)
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{
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uint8_t *tocs;
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int framesz, index, not_last_frame, q, ft;
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if (!encoded_buf) {
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return SWITCH_FALSE;
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}
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/* payload format can be OA (octed-aligned) or BE (bandwidth efficient)*/
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if (payload_format) {
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/* OA */
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encoded_buf++;/*CMR skip*/
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tocs = encoded_buf;
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index = (tocs[0] >> 3) & 0x0f;
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framesz = switch_amr_frame_sizes[index];
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not_last_frame = (tocs[0] >> 7) & 1;
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q = (tocs[0] >> 2) & 1;
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ft = tocs[0] >> 3 ;
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ft &= ~(1 << 5); /* Frame Type*/
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} else {
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/* BE mode not supported yet */
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return SWITCH_FALSE;
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}
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "%s (%s): FT: [0x%x] Q: [0x%x] Frame flag: [%d]\n",
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print_text, payload_format ? "OA":"BE", ft, q, not_last_frame);
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "%s (%s): AMR encoded voice payload sz: [%d] : | encoded_data_len: [%d]\n",
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print_text, payload_format ? "OA":"BE", framesz, encoded_data_len);
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return SWITCH_TRUE;
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}
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#endif
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@ -228,7 +208,7 @@ static switch_status_t switch_amr_init(switch_codec_t *codec, switch_codec_flag_
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struct amr_context *context = NULL;
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switch_codec_fmtp_t codec_fmtp;
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amr_codec_settings_t amr_codec_settings;
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amr_codec_settings_t amr_codec_settings = { 0 };
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int encoding, decoding;
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int x, i, argc;
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char *argv[10];
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@ -243,7 +223,57 @@ static switch_status_t switch_amr_init(switch_codec_t *codec, switch_codec_flag_
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memset(&codec_fmtp, '\0', sizeof(struct switch_codec_fmtp));
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codec_fmtp.private_info = &amr_codec_settings;
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switch_amr_fmtp_parse(codec->fmtp_in, &codec_fmtp);
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context->codec_settings = amr_codec_settings;
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if (codec->fmtp_in) {
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argc = switch_separate_string(codec->fmtp_in, ';', 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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while (*data && *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 (!strcasecmp(data, "octet-align")) {
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if (atoi(arg)) {
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switch_set_flag(context, AMR_OPT_OCTET_ALIGN);
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}
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} else if (!strcasecmp(data, "mode-change-neighbor")) {
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if (atoi(arg)) {
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switch_set_flag(context, AMR_OPT_MODE_CHANGE_NEIGHBOR);
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}
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} else if (!strcasecmp(data, "crc")) {
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if (atoi(arg)) {
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switch_set_flag(context, AMR_OPT_CRC);
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}
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} else if (!strcasecmp(data, "robust-sorting")) {
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if (atoi(arg)) {
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switch_set_flag(context, AMR_OPT_ROBUST_SORTING);
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}
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} else if (!strcasecmp(data, "interleaving")) {
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if (atoi(arg)) {
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switch_set_flag(context, AMR_OPT_INTERLEAVING);
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}
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} else if (!strcasecmp(data, "mode-change-period")) {
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context->codec_settings.change_period = atoi(arg);
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} else if (!strcasecmp(data, "ptime")) {
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context->codec_settings.ptime = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "channels")) {
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context->codec_settings.channels = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "maxptime")) {
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context->codec_settings.max_ptime = (switch_byte_t) atoi(arg);
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} else if (!strcasecmp(data, "mode-set")) {
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int y, m_argc;
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char *m_argv[8];
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m_argc = switch_separate_string(arg, ',', m_argv, (sizeof(m_argv) / sizeof(m_argv[0])));
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for (y = 0; y < m_argc; y++) {
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context->enc_modes |= (1 << atoi(m_argv[y]));
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}
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}
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}
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}
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}
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if (context->enc_modes) {
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for (i = 7; i > -1; i++) {
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@ -309,12 +339,30 @@ static switch_status_t switch_amr_encode(switch_codec_t *codec,
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return SWITCH_STATUS_FALSE;
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#else
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struct amr_context *context = codec->private_info;
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int n;
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unsigned char *shift_buf = encoded_data;
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if (!context) {
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return SWITCH_STATUS_FALSE;
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}
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*encoded_data_len = Encoder_Interface_Encode(context->encoder_state, context->enc_mode, (int16_t *) decoded_data, (switch_byte_t *) encoded_data, 0);
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n = Encoder_Interface_Encode(context->encoder_state, context->enc_mode, (int16_t *) decoded_data, (switch_byte_t *) encoded_data + 1, 0);
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if (n < 0) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_ERROR, "AMR encoder: Encoder_Interface_Encode() ERROR!\n");
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return SWITCH_STATUS_FALSE;
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}
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if (switch_test_flag(context, AMR_OPT_OCTET_ALIGN)) {
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*(switch_byte_t *) encoded_data = 0xf0; /*CMR*/
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*encoded_data_len = n + 1;
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} else {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_ERROR, "AMR encoder: BE mode not supported!\n");
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return SWITCH_STATUS_FALSE;
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}
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if (globals.debug) {
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switch_amr_info(shift_buf, *encoded_data_len, switch_test_flag(context, AMR_OPT_OCTET_ALIGN) ? 1 : 0, "AMR encoder");
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}
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return SWITCH_STATUS_SUCCESS;
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#endif
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@ -332,22 +380,60 @@ static switch_status_t switch_amr_decode(switch_codec_t *codec,
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return SWITCH_STATUS_FALSE;
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#else
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struct amr_context *context = codec->private_info;
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unsigned char *buf = encoded_data;
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uint8_t tmp[AMR_OUT_MAX_SIZE];
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if (!context) {
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return SWITCH_STATUS_FALSE;
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}
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Decoder_Interface_Decode(context->decoder_state, (unsigned char *) encoded_data, (int16_t *) decoded_data, 0);
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if (globals.debug) {
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switch_amr_info(buf, encoded_data_len, switch_test_flag(context, AMR_OPT_OCTET_ALIGN) ? 1 : 0, "AMR decoder");
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}
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if (switch_test_flag(context, AMR_OPT_OCTET_ALIGN)) {
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/*Octed Aligned*/
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if (!switch_amr_unpack_oa(buf, tmp, encoded_data_len)) {
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return SWITCH_STATUS_FALSE;
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}
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} else {
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/*"Bandwidth Efficient"*/
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_ERROR, "AMR decoder: BE mode not supported!\n");
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return SWITCH_STATUS_FALSE;
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}
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Decoder_Interface_Decode(context->decoder_state, tmp, (int16_t *) decoded_data, 0);
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*decoded_data_len = codec->implementation->decoded_bytes_per_packet;
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return SWITCH_STATUS_SUCCESS;
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#endif
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}
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#define AMRWB_DEBUG_SYNTAX "<on|off>"
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SWITCH_STANDARD_API(mod_amr_debug)
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{
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if (zstr(cmd)) {
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stream->write_function(stream, "-USAGE: %s\n", AMRWB_DEBUG_SYNTAX);
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} else {
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if (!strcasecmp(cmd, "on")) {
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globals.debug = 1;
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stream->write_function(stream, "AMR Debug: on\n");
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} else if (!strcasecmp(cmd, "off")) {
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globals.debug = 0;
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stream->write_function(stream, "AMR Debug: off\n");
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} else {
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stream->write_function(stream, "-USAGE: %s\n", AMRWB_DEBUG_SYNTAX);
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}
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}
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return SWITCH_STATUS_SUCCESS;
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}
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/* Registration */
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SWITCH_MODULE_LOAD_FUNCTION(mod_amr_load)
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{
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switch_codec_interface_t *codec_interface;
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switch_api_interface_t *commands_api_interface;
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#ifndef AMR_PASSTHROUGH
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char *cf = "amr.conf";
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switch_xml_t cfg, xml, settings, param;
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@ -368,17 +454,19 @@ SWITCH_MODULE_LOAD_FUNCTION(mod_amr_load)
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}
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#endif
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/* connect my internal structure to the blank pointer passed to me */
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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, "AMR");
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#ifndef AMR_PASSTHROUGH
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codec_interface->parse_fmtp = switch_amr_fmtp_parse;
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#endif
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SWITCH_ADD_API(commands_api_interface, "amr_debug", "Set AMR Debug", mod_amr_debug, AMRWB_DEBUG_SYNTAX);
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switch_console_set_complete("add amr_debug on");
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switch_console_set_complete("add amr_debug off");
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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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96, /* the IANA code number */
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"AMR", /* the IANA code name */
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"octet-align=0", /* default fmtp to send (can be overridden by the init function) */
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"octet-align=1", /* default fmtp to send (can be overridden by the init function) */
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8000, /* samples transferred per second */
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8000, /* actual samples transferred per second */
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12200, /* bits transferred per second */
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