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439 lines
16 KiB
439 lines
16 KiB
/******************************************************************************
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* *
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* Copyright (C) 2018 The Android Open Source Project
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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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* Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "ixheaacd_type_def.h"
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#include "ixheaacd_constants.h"
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#include "ixheaacd_error_standards.h"
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#include "ixheaacd_memory_standards.h"
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#include "ixheaacd_sbrdecsettings.h"
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#include "ixheaacd_env_extr_part.h"
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#include "ixheaacd_defines.h"
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#include "ixheaacd_aac_rom.h"
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#include "ixheaacd_common_rom.h"
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#include "ixheaacd_sbr_rom.h"
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#include "ixheaacd_bitbuffer.h"
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#include "ixheaacd_pulsedata.h"
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#include "ixheaacd_pns.h"
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#include "ixheaacd_lt_predict.h"
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#include "ixheaacd_channelinfo.h"
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#include "ixheaacd_sbr_common.h"
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#include "ixheaacd_drc_data_struct.h"
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#include "ixheaacd_drc_dec.h"
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#include "ixheaacd_channel.h"
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#include "ixheaacd_channelinfo.h"
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#include "ixheaacd_sbrdecoder.h"
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#include "ixheaacd_audioobjtypes.h"
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#include "ixheaacd_latmdemux.h"
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#include "ixheaacd_aacdec.h"
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#include "ixheaacd_sbr_common.h"
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#include "ixheaacd_mps_polyphase.h"
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#include "ixheaacd_config.h"
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#include "ixheaacd_mps_dec.h"
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#include "ixheaacd_struct_def.h"
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#include "ixheaacd_bitbuffer.h"
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#include "ixheaacd_interface.h"
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#include "ixheaacd_tns_usac.h"
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#include "ixheaacd_cnst.h"
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#include "ixheaacd_acelp_info.h"
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#include "ixheaacd_sbrdecsettings.h"
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#include "ixheaacd_info.h"
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#include "ixheaacd_sbrdecoder.h"
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#include "ixheaacd_mps_polyphase.h"
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#include "ixheaacd_sbr_const.h"
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#include "ixheaacd_main.h"
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#include "ixheaacd_arith_dec.h"
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#include "ixheaacd_config.h"
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#include "ixheaacd_struct.h"
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#include "ixheaacd_create.h"
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#include "ixheaacd_dec_main.h"
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#include "ixheaacd_error_standards.h"
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VOID ixheaacd_samples_sat(WORD8 *outbuffer, WORD32 num_samples_out,
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WORD32 pcmsize, FLOAT32 (*out_samples)[4096],
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WORD32 *out_bytes, WORD32 num_channel_out) {
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WORD32 num;
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WORD32 i;
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FLOAT32 sample;
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WORD16 *out_buf = (WORD16 *)outbuffer;
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num = num_channel_out * num_samples_out;
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if (pcmsize == 16) {
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for (i = 0; i < num; i++) {
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sample = (out_samples[i % num_channel_out][i / num_channel_out]);
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if (sample > MAX_16) {
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sample = MAX_16;
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} else if (sample < MIN_16) {
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sample = MIN_16;
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}
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out_buf[i] = (WORD16)sample;
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}
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*out_bytes = num * sizeof(WORD16);
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} else {
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WORD8 *out_24bit = (WORD8 *)out_buf;
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for (i = 0; i < num; i++) {
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WORD32 write_local;
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sample = (out_samples[i % num_channel_out][i / num_channel_out] * 256);
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if (sample > MAX_24) {
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sample = MAX_24;
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} else if (sample < MIN_24) {
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sample = MIN_24;
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}
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write_local = (WORD32)sample;
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*out_24bit++ = (WORD32)write_local & 0xff;
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*out_24bit++ = ((WORD32)write_local >> 8) & 0xff;
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*out_24bit++ = ((WORD32)write_local >> 16) & 0xff;
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}
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*out_bytes = num * 3 * sizeof(WORD8);
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}
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}
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/* audio pre roll frame parsing*/
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static WORD32 ixheaacd_audio_preroll_parsing(ia_dec_data_struct *pstr_dec_data,
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UWORD8 *conf_buf,
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WORD32 *preroll_units,
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WORD32 *preroll_frame_offset) {
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ia_bit_buf_struct *temp_buff =
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(ia_bit_buf_struct *)&(pstr_dec_data->dec_bit_buf);
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WORD32 independency_flag = 0;
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WORD32 ext_ele_present = 0;
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WORD32 ext_ele_use_dflt_len = 0;
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WORD32 ext_ele_payload_len = 0;
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WORD32 apply_crossfade = 0;
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WORD32 un_used_val = 0;
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WORD32 num_pre_roll_frames = 0;
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WORD32 frame_idx = 0;
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WORD32 frame_len[MAX_AUDIO_PREROLLS] = {0};
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WORD32 temp = 0;
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WORD32 config_len = 0;
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WORD32 loop;
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if (pstr_dec_data->str_frame_data.str_audio_specific_config.str_usac_config
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.str_usac_dec_config.usac_element_type[0] == ID_USAC_EXT) {
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temp = ixheaacd_show_bits_buf(temp_buff, 3);
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independency_flag = (temp >> 2) & 0x1;
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ext_ele_present = (temp >> 1) & 0x1;
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if (ext_ele_present) {
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ext_ele_use_dflt_len = temp & 0x1; // ixheaacd_read_bit(&temp_buff, 1);
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if (ext_ele_use_dflt_len != 0) return 0;
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un_used_val = ixheaacd_read_bits_buf(temp_buff, 3);
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ext_ele_payload_len = ixheaacd_read_bits_buf(temp_buff, 8);
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if (ext_ele_payload_len == 255) {
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WORD32 val_add = 0;
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val_add = ixheaacd_read_bits_buf(temp_buff, 16);
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ext_ele_payload_len =
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(UWORD32)((WORD32)ext_ele_payload_len + val_add - 2);
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}
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// escapedValue(4, 4, 8);
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config_len = ixheaacd_read_bits_buf(temp_buff, 4);
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if (config_len == 15) {
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WORD32 val_add = 0;
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val_add = ixheaacd_read_bits_buf(temp_buff, 4);
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config_len += val_add;
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if (val_add == 15) {
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WORD32 val_add1 = 0;
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val_add1 = ixheaacd_read_bits_buf(temp_buff, 8);
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config_len += val_add1;
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}
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}
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for (loop = 0; loop < config_len; loop++)
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conf_buf[loop] = ixheaacd_read_bits_buf(temp_buff, 8);
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apply_crossfade = ixheaacd_read_bits_buf(temp_buff, 1);
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un_used_val = ixheaacd_read_bits_buf(temp_buff, 1); // reserverd
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// escapedValue(2, 4, 0);
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num_pre_roll_frames = ixheaacd_read_bits_buf(temp_buff, 2);
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if (num_pre_roll_frames == 3) {
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WORD32 val_add = 0;
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val_add = ixheaacd_read_bits_buf(temp_buff, 4);
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num_pre_roll_frames += val_add;
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}
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if (num_pre_roll_frames > MAX_AUDIO_PREROLLS) return IA_FATAL_ERROR;
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for (frame_idx = 0; frame_idx < num_pre_roll_frames; frame_idx++) {
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WORD32 au_len = 0; // escapedValued(16,16,0)
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au_len = ixheaacd_read_bits_buf(temp_buff, 16);
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if (au_len == 65535) {
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WORD32 val_add = ixheaacd_read_bits_buf(temp_buff, 16);
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au_len += val_add;
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}
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preroll_frame_offset[frame_idx] = temp_buff->size - temp_buff->cnt_bits;
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frame_len[frame_idx] =
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(8 * au_len) + (temp_buff->size - temp_buff->cnt_bits);
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temp_buff->ptr_read_next += au_len;
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temp_buff->cnt_bits -= au_len * 8;
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}
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}
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}
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*preroll_units = num_pre_roll_frames;
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return config_len;
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}
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WORD32 ixheaacd_dec_main(VOID *temp_handle, WORD8 *inbuffer, WORD8 *outbuffer,
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WORD32 *out_bytes, WORD32 frames_done, WORD32 pcmsize,
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WORD32 *num_channel_out) {
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WORD32 err = 0;
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ia_exhaacplus_dec_api_struct *handle =
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(ia_exhaacplus_dec_api_struct *)temp_handle;
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ia_aac_dec_state_struct *aac_dec_handle = handle->p_state_aac;
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WORD32 tmp;
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ia_audio_specific_config_struct *pstr_audio_specific_config =
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(ia_audio_specific_config_struct *)
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aac_dec_handle->ia_audio_specific_config;
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WORD32 suitable_tracks = 1;
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WORD32 num_samples_out;
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ia_dec_data_struct *pstr_dec_data;
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UWORD8 config[285]; // max of escapedValue(4, 4, 8) i.e. 2^4 -1 + 2^4 -1 +
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// 2^8 -1;
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WORD32 config_len;
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WORD32 delay;
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WORD preroll_frame_offset[4] = {0};
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WORD preroll_units = -1;
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WORD32 access_units = 0;
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if (frames_done == 0) {
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if ((pstr_audio_specific_config->channel_configuration > 2) ||
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(pstr_audio_specific_config->channel_configuration == 0)) {
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return -1;
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}
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pstr_dec_data = (ia_dec_data_struct *)aac_dec_handle->pstr_dec_data;
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tmp = pstr_audio_specific_config->channel_configuration;
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suitable_tracks =
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ixheaacd_frm_data_init(pstr_audio_specific_config, pstr_dec_data);
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pstr_audio_specific_config->channel_configuration = tmp;
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if (suitable_tracks <= 0) {
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return -1;
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}
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}
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{
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WORD32 tot_out_bytes = 0;
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pstr_dec_data = (ia_dec_data_struct *)aac_dec_handle->pstr_dec_data;
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if (frames_done == 0) {
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WORD32 delay;
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if (aac_dec_handle->decode_create_done == 0) {
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delay = ixheaacd_decode_create(
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handle, pstr_dec_data,
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pstr_dec_data->str_frame_data.scal_out_select + 1);
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if (delay == -1) return -1;
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}
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pstr_dec_data->dec_bit_buf.max_size =
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handle->p_mem_info_aac[IA_MEMTYPE_INPUT].ui_size;
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*num_channel_out = pstr_dec_data->str_frame_data.scal_out_num_channels;
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return 0;
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}
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pstr_dec_data->dec_bit_buf.ptr_bit_buf_base = (UWORD8 *)inbuffer;
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pstr_dec_data->dec_bit_buf.size = aac_dec_handle->ui_in_bytes << 3;
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pstr_dec_data->dec_bit_buf.ptr_bit_buf_end =
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(UWORD8 *)inbuffer + aac_dec_handle->ui_in_bytes - 1;
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pstr_dec_data->dec_bit_buf.ptr_read_next = (UWORD8 *)inbuffer;
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pstr_dec_data->dec_bit_buf.bit_pos = 7;
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pstr_dec_data->dec_bit_buf.cnt_bits = pstr_dec_data->dec_bit_buf.size;
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pstr_dec_data->dec_bit_buf.xaac_jmp_buf = &(aac_dec_handle->xaac_jmp_buf);
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pstr_dec_data->str_usac_data.usac_flag = aac_dec_handle->usac_flag;
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if (pstr_dec_data->dec_bit_buf.size > pstr_dec_data->dec_bit_buf.max_size)
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pstr_dec_data->dec_bit_buf.max_size = pstr_dec_data->dec_bit_buf.size;
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/* audio pre roll frame parsing*/
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do {
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config_len = 0;
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if (access_units == 0 &&
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pstr_audio_specific_config->str_usac_config.str_usac_dec_config
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.preroll_flag) {
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config_len = ixheaacd_audio_preroll_parsing(pstr_dec_data, &config[0],
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&preroll_units,
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&preroll_frame_offset[0]);
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if (config_len == IA_FATAL_ERROR) return IA_FATAL_ERROR;
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}
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if (config_len != 0) {
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/* updating the config parameters*/
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ia_bit_buf_struct config_bit_buf = {0};
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config_bit_buf.ptr_bit_buf_base = config;
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config_bit_buf.size = config_len << 3;
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config_bit_buf.ptr_read_next = config_bit_buf.ptr_bit_buf_base;
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config_bit_buf.ptr_bit_buf_end = (UWORD8 *)config + config_len;
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config_bit_buf.bit_pos = 7;
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config_bit_buf.cnt_bits = config_bit_buf.size;
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config_bit_buf.xaac_jmp_buf = &(aac_dec_handle->xaac_jmp_buf);
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suitable_tracks =
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ixheaacd_frm_data_init(pstr_audio_specific_config, pstr_dec_data);
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if (suitable_tracks <= 0) return -1;
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/* call codec re-configure*/
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aac_dec_handle->decode_create_done = 0;
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err = ixheaacd_config(
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&config_bit_buf, &(pstr_dec_data->str_frame_data
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.str_audio_specific_config.str_usac_config),
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&(pstr_audio_specific_config
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->channel_configuration) /*&pstr_audio_specific_config->str_usac_config*/);
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if (err != 0) return -1;
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.sampling_frequency =
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.usac_sampling_frequency;
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delay = ixheaacd_decode_create(
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handle, pstr_dec_data,
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pstr_dec_data->str_frame_data.scal_out_select + 1);
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if (delay == -1) return -1;
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*num_channel_out = pstr_dec_data->str_frame_data.scal_out_num_channels;
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}
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pstr_dec_data->dec_bit_buf.ptr_bit_buf_base = (UWORD8 *)inbuffer;
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pstr_dec_data->dec_bit_buf.size = aac_dec_handle->ui_in_bytes << 3;
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pstr_dec_data->dec_bit_buf.ptr_bit_buf_end =
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(UWORD8 *)inbuffer + aac_dec_handle->ui_in_bytes - 1;
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pstr_dec_data->dec_bit_buf.ptr_read_next = (UWORD8 *)inbuffer;
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pstr_dec_data->dec_bit_buf.bit_pos = 7;
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pstr_dec_data->dec_bit_buf.cnt_bits = pstr_dec_data->dec_bit_buf.size;
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pstr_dec_data->dec_bit_buf.xaac_jmp_buf = &(aac_dec_handle->xaac_jmp_buf);
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pstr_dec_data->str_usac_data.usac_flag = aac_dec_handle->usac_flag;
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if (preroll_frame_offset[access_units]) {
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pstr_dec_data->dec_bit_buf.cnt_bits =
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pstr_dec_data->dec_bit_buf.size -
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preroll_frame_offset[access_units];
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pstr_dec_data->dec_bit_buf.bit_pos =
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7 - preroll_frame_offset[access_units] % 8;
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pstr_dec_data->dec_bit_buf.ptr_read_next =
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pstr_dec_data->dec_bit_buf.ptr_read_next +
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(preroll_frame_offset[access_units] / 8);
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}
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// temp_read=ixheaacd_show_bits_buf(pstr_dec_data->dec_bit_buf,preroll_frame_offset[access_unit]);
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if (!aac_dec_handle->decode_create_done) return IA_FATAL_ERROR;
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err =
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ixheaacd_usac_process(pstr_dec_data, num_channel_out, aac_dec_handle);
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switch (pstr_dec_data->str_usac_data.sbr_ratio_idx) {
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case 0:
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handle->aac_config.ui_sbr_mode = 0;
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break;
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case 1:
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handle->aac_config.ui_sbr_mode = 1;
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break;
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case 2:
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handle->aac_config.ui_sbr_mode = 1;
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break;
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case 3:
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handle->aac_config.ui_sbr_mode = 3;
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break;
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default:
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handle->aac_config.ui_sbr_mode = 0;
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}
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if (err == -1) return err;
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num_samples_out = pstr_dec_data->str_usac_data.output_samples;
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ixheaacd_samples_sat((WORD8 *)outbuffer + tot_out_bytes, num_samples_out,
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pcmsize,
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pstr_dec_data->str_usac_data.time_sample_vector,
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out_bytes, *num_channel_out);
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{
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WORD32 preroll_counter =
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.str_usac_dec_config.preroll_counter;
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UWORD8 i; // for looping index used for payload calculation
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WORD32 payload_buffer_offset = 0;
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WORD32 copy_bytes =
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_len[preroll_counter] *
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sizeof(WORD8);
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pstr_audio_specific_config->str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_len[preroll_counter] =
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_len[preroll_counter];
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for (i = 0; i < preroll_counter; i++)
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payload_buffer_offset +=
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_len[i] *
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sizeof(WORD8);
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memcpy(pstr_audio_specific_config->str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_buf +
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payload_buffer_offset,
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pstr_dec_data->str_frame_data.str_audio_specific_config
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.str_usac_config.str_usac_dec_config
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.usac_ext_gain_payload_buf +
|
|
payload_buffer_offset,
|
|
copy_bytes);
|
|
|
|
pstr_audio_specific_config->str_usac_config.str_usac_dec_config
|
|
.preroll_bytes[preroll_counter] = *out_bytes;
|
|
|
|
preroll_counter++;
|
|
|
|
if (preroll_counter > (MAX_AUDIO_PREROLLS + 1)) return IA_FATAL_ERROR;
|
|
|
|
pstr_dec_data->str_frame_data.str_audio_specific_config.str_usac_config
|
|
.str_usac_dec_config.preroll_counter = preroll_counter;
|
|
}
|
|
|
|
access_units++;
|
|
preroll_units--;
|
|
tot_out_bytes += (*out_bytes);
|
|
} while (preroll_units >= 0);
|
|
*out_bytes = tot_out_bytes;
|
|
}
|
|
|
|
return err;
|
|
}
|