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component/bt: modify the SBC encoder to support mSBC mode
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@ -820,7 +820,7 @@ static void btc_a2dp_source_enc_init(BT_HDR *p_msg)
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btc_aa_src_cb.timestamp = 0;
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/* SBC encoder config (enforced even if not used) */
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btc_sbc_encoder.sbc_mode = SBC_MODE_STD;
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btc_sbc_encoder.s16ChannelMode = pInitAudio->ChannelMode;
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btc_sbc_encoder.s16NumOfSubBands = pInitAudio->NumOfSubBands;
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btc_sbc_encoder.s16NumOfBlocks = pInitAudio->NumOfBlocks;
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@ -879,7 +879,6 @@ static void btc_a2dp_source_enc_update(BT_HDR *p_msg)
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BTC_MEDIA_AA_SBC_OFFSET - sizeof(BT_HDR))
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< pUpdateAudio->MinMtuSize) ? (BTC_MEDIA_AA_BUF_SIZE - BTC_MEDIA_AA_SBC_OFFSET
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- sizeof(BT_HDR)) : pUpdateAudio->MinMtuSize;
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/* Set the initial target bit rate */
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pstrEncParams->u16BitRate = btc_a2dp_source_get_sbc_rate();
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@ -67,6 +67,12 @@
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#define SBC_NULL 0
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#define SBC_MODE_STD 0
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#define SBC_MODE_MSBC 1
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#define SBC_SYNC_WORD_STD (0x9C)
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#define SBC_SYNC_WORD_MSBC (0xAD)
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#ifndef SBC_MAX_NUM_FRAME
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#define SBC_MAX_NUM_FRAME 1
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#endif
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@ -161,6 +167,7 @@ typedef struct SBC_ENC_PARAMS_TAG {
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SINT16 s16BitPool; /* 16*numOfSb for mono & dual;
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32*numOfSb for stereo & joint stereo */
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UINT16 u16BitRate;
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UINT8 sbc_mode; /* SBC_MODE_STD or SBC_MODE_MSBC */
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UINT8 u8NumPacketToEncode; /* number of sbc frame to encode. Default is 1 */
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#if (SBC_JOINT_STE_INCLUDED == TRUE)
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SINT16 as16Join[SBC_MAX_NUM_OF_SUBBANDS]; /*1 if JS, 0 otherwise*/
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@ -184,7 +184,6 @@ void SBC_Encoder(SBC_ENC_PARAMS *pstrEncParams)
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/* Quantize the encoded audio */
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EncPacking(pstrEncParams);
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} while (--(pstrEncParams->u8NumPacketToEncode));
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pstrEncParams->u8NumPacketToEncode = 1; /* default is one for retrocompatibility purpose */
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@ -206,6 +205,7 @@ void SBC_Encoder_Init(SBC_ENC_PARAMS *pstrEncParams)
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pstrEncParams->u8NumPacketToEncode = 1; /* default is one for retrocompatibility purpose */
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if (pstrEncParams->sbc_mode != SBC_MODE_MSBC) {
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/* Required number of channels */
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if (pstrEncParams->s16ChannelMode == SBC_MONO) {
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pstrEncParams->s16NumOfChannels = 1;
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@ -281,7 +281,34 @@ void SBC_Encoder_Init(SBC_ENC_PARAMS *pstrEncParams)
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/* Loudness or SNR */
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HeaderParams |= ((pstrEncParams->s16AllocationMethod & 1) << 1);
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HeaderParams |= ((pstrEncParams->s16NumOfSubBands >> 3) & 1); /*4 or 8*/
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pstrEncParams->FrameHeader = HeaderParams;
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} else {
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// mSBC
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// Use mSBC encoding parameters to reset the control field
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/* Required number of channels: 1 */
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pstrEncParams->s16ChannelMode = SBC_MONO;
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pstrEncParams->s16NumOfChannels = 1;
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/* Required Sampling frequency : 16KHz */
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pstrEncParams->s16SamplingFreq = SBC_sf16000;
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/* Bit pool value: 26 */
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pstrEncParams->s16BitPool = 26;
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/* number of subbands: 8 */
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pstrEncParams->s16NumOfSubBands = 8;
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/* number of blocks: 15 */
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pstrEncParams->s16NumOfBlocks = 15;
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/* allocation method: loudness */
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pstrEncParams->s16AllocationMethod = SBC_LOUDNESS;
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/* set the header paramers, unused for mSBC */
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pstrEncParams->FrameHeader = 0;
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}
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if (pstrEncParams->s16NumOfSubBands == 4) {
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if (pstrEncParams->s16NumOfChannels == 1) {
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@ -84,10 +84,17 @@ void EncPacking(SBC_ENC_PARAMS *pstrEncParams)
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#endif
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pu8PacketPtr = pstrEncParams->pu8NextPacket; /*Initialize the ptr*/
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*pu8PacketPtr++ = (UINT8)0x9C; /*Sync word*/
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if (pstrEncParams->sbc_mode != SBC_MODE_MSBC) {
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*pu8PacketPtr++ = (UINT8)SBC_SYNC_WORD_STD; /*Sync word*/
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*pu8PacketPtr++ = (UINT8)(pstrEncParams->FrameHeader);
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*pu8PacketPtr = (UINT8)(pstrEncParams->s16BitPool & 0x00FF);
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} else {
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*pu8PacketPtr++ = (UINT8)SBC_SYNC_WORD_MSBC; /*Sync word*/
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// two reserved bytes
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*pu8PacketPtr++ = 0;
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*pu8PacketPtr = 0;
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}
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pu8PacketPtr += 2; /*skip for CRC*/
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/*here it indicate if it is byte boundary or nibble boundary*/
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