adada3f67e
1. add the L1 include path with a prefix, such like osi/list.h, stack/a2d_api.h and etc. 2. modify component, only bluedroid/api/include/api is export to another component and application, other include path just for bluedroid used 3. put bluedroid/include into common/include/common, so the root directory of bluedroid have no include path. 4. modify doxygen to use esp_bt.h and redirect to component/bt/bluedroid/api/include/api/ fix compile
168 lines
5.1 KiB
C
168 lines
5.1 KiB
C
/******************************************************************************
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*
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* Copyright (C) 2014 The Android Open Source Project
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* Copyright 2003 - 2004 Open Interface North America, Inc. All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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******************************************************************************/
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/**********************************************************************************
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$Revision: #1 $
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***********************************************************************************/
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/** @file
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@ingroup codec_internal
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*/
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/**@addgroup codec_internal*/
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/**@{*/
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#include "common/bt_target.h"
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#include <oi_codec_sbc_private.h>
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#if (defined(SBC_DEC_INCLUDED) && SBC_DEC_INCLUDED == TRUE)
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static void dualBitAllocation(OI_CODEC_SBC_COMMON_CONTEXT *common)
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{
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OI_UINT bitcountL;
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OI_UINT bitcountR;
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OI_UINT bitpoolPreferenceL = 0;
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OI_UINT bitpoolPreferenceR = 0;
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BITNEED_UNION1 bitneedsL;
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BITNEED_UNION1 bitneedsR;
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bitcountL = computeBitneed(common, bitneedsL.uint8, 0, &bitpoolPreferenceL);
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bitcountR = computeBitneed(common, bitneedsR.uint8, 1, &bitpoolPreferenceR);
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oneChannelBitAllocation(common, &bitneedsL, 0, bitcountL);
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oneChannelBitAllocation(common, &bitneedsR, 1, bitcountR);
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}
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static void stereoBitAllocation(OI_CODEC_SBC_COMMON_CONTEXT *common)
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{
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const OI_UINT nrof_subbands = common->frameInfo.nrof_subbands;
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BITNEED_UNION2 bitneeds;
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OI_UINT excess;
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OI_INT bitadjust;
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OI_UINT bitcount;
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OI_UINT sbL;
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OI_UINT sbR;
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OI_UINT bitpoolPreference = 0;
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bitcount = computeBitneed(common, &bitneeds.uint8[0], 0, &bitpoolPreference);
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bitcount += computeBitneed(common, &bitneeds.uint8[nrof_subbands], 1, &bitpoolPreference);
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{
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OI_UINT ex;
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bitadjust = adjustToFitBitpool(common->frameInfo.bitpool, bitneeds.uint32, 2 * nrof_subbands, bitcount, &ex);
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/* We want the compiler to put excess into a register */
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excess = ex;
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}
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sbL = 0;
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sbR = nrof_subbands;
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while (sbL < nrof_subbands) {
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excess = allocAdjustedBits(&common->bits.uint8[sbL], bitneeds.uint8[sbL] + bitadjust, excess);
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++sbL;
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excess = allocAdjustedBits(&common->bits.uint8[sbR], bitneeds.uint8[sbR] + bitadjust, excess);
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++sbR;
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}
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sbL = 0;
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sbR = nrof_subbands;
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while (excess) {
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excess = allocExcessBits(&common->bits.uint8[sbL], excess);
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++sbL;
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if (!excess) {
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break;
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}
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excess = allocExcessBits(&common->bits.uint8[sbR], excess);
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++sbR;
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}
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}
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static const BIT_ALLOC balloc[] = {
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monoBitAllocation, /* SBC_MONO */
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dualBitAllocation, /* SBC_DUAL_CHANNEL */
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stereoBitAllocation, /* SBC_STEREO */
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stereoBitAllocation /* SBC_JOINT_STEREO */
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};
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PRIVATE void OI_SBC_ComputeBitAllocation(OI_CODEC_SBC_COMMON_CONTEXT *common)
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{
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OI_ASSERT(common->frameInfo.bitpool <= OI_SBC_MaxBitpool(&common->frameInfo));
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OI_ASSERT(common->frameInfo.mode < OI_ARRAYSIZE(balloc));
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/*
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* Using an array of function pointers prevents the compiler from creating a suboptimal
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* monolithic inlined bit allocation function.
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*/
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balloc[common->frameInfo.mode](common);
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}
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OI_UINT32 OI_CODEC_SBC_CalculateBitrate(OI_CODEC_SBC_FRAME_INFO *frame)
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{
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return internal_CalculateBitrate(frame);
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}
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/*
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* Return the current maximum bitneed and clear it.
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*/
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OI_UINT8 OI_CODEC_SBC_GetMaxBitneed(OI_CODEC_SBC_COMMON_CONTEXT *common)
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{
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OI_UINT8 max = common->maxBitneed;
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common->maxBitneed = 0;
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return max;
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}
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/*
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* Calculates the bitpool size for a given frame length
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*/
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OI_UINT16 OI_CODEC_SBC_CalculateBitpool(OI_CODEC_SBC_FRAME_INFO *frame,
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OI_UINT16 frameLen)
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{
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OI_UINT16 nrof_subbands = frame->nrof_subbands;
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OI_UINT16 nrof_blocks = frame->nrof_blocks;
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OI_UINT16 hdr;
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OI_UINT16 bits;
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if (frame->mode == SBC_JOINT_STEREO) {
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hdr = 9 * nrof_subbands;
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} else {
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if (frame->mode == SBC_MONO) {
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hdr = 4 * nrof_subbands;
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} else {
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hdr = 8 * nrof_subbands;
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}
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if (frame->mode == SBC_DUAL_CHANNEL) {
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nrof_blocks *= 2;
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}
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}
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bits = 8 * (frameLen - SBC_HEADER_LEN) - hdr;
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return DIVIDE(bits, nrof_blocks);
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}
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OI_UINT16 OI_CODEC_SBC_CalculatePcmBytes(OI_CODEC_SBC_COMMON_CONTEXT *common)
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{
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return sizeof(OI_INT16) * common->pcmStride * common->frameInfo.nrof_subbands * common->frameInfo.nrof_blocks;
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}
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OI_UINT16 OI_CODEC_SBC_CalculateFramelen(OI_CODEC_SBC_FRAME_INFO *frame)
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{
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return internal_CalculateFramelen(frame);
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}
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/**@}*/
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#endif /* #if (defined(SBC_DEC_INCLUDED) && SBC_DEC_INCLUDED == TRUE) */
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