732 lines
24 KiB
C
732 lines
24 KiB
C
/******************************************************************************
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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 <assert.h>
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#include <float.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <math.h>
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#include <string.h>
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#include "ixheaacd_type_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_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_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_func_def.h"
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#include "ixheaacd_windows.h"
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#include "ixheaacd_acelp_com.h"
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#include "ixheaacd_constants.h"
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#include "ixheaacd_basic_ops32.h"
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#include "ixheaacd_basic_ops40.h"
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#define LSF_GAP_F 50.0f
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#define FREQ_MAX_F 6400.0f
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#define FREQ_DIV_F 400.0f
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extern const FLOAT32 lsf_init[ORDER];
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extern const FLOAT32 ixheaacd_fir_lp_filt[1 + FILTER_DELAY];
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const WORD32 ixheaacd_pow_10_i_by_128[128] = {
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16384, 17788, 19312, 20968, 22765, 24716, 26835,
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29135, 31632, 34343, 37287, 40483, 43953, 47720,
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51810, 56251, 61072, 66307, 71990, 78161, 84860,
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92134, 100030, 108604, 117913, 128019, 138992, 150905,
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163840, 177882, 193129, 209682, 227654, 247167, 268352,
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291353, 316325, 343438, 372874, 404834, 439532, 477205,
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518107, 562515, 610728, 663075, 719908, 781612, 848605,
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921340, 1000309, 1086046, 1179133, 1280197, 1389925, 1509057,
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1638400, 1778829, 1931294, 2096827, 2276549, 2471675, 2683525,
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2913532, 3163255, 3434381, 3728745, 4048340, 4395328, 4772057,
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5181075, 5625151, 6107289, 6630752, 7199081, 7816122, 8486051,
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9213400, 10003091, 10860467, 11791330, 12801978, 13899250, 15090570,
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16384000, 17788290, 19312945, 20968279, 22765494, 24716750, 26835250,
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29135329, 31632551, 34343813, 37287459, 40483409, 43953287, 47720573,
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51810757, 56251515, 61072895, 66307521, 71990813, 78161226, 84860513,
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92134002, 100030911, 108604672, 117913300, 128019781, 138992500, 150905703,
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163840000, 177882909, 193129453, 209682794, 227654941, 247167501, 268352504,
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291353298, 316325515, 343438130, 372874596, 404834095, 439532879, 477205734,
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518107571, 562515151};
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VOID ixheaacd_lsf_weight_2st_flt(float *lsfq, float *w, WORD32 mode);
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static PLATFORM_INLINE WORD32 ixheaacd_mult32_m(WORD32 a, WORD32 b) {
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WORD32 result;
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WORD64 temp_result;
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temp_result = (WORD64)a * (WORD64)b;
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result = (WORD32)(temp_result >> 31);
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return (result);
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}
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void ixheaacd_reset_acelp_data_fix(ia_usac_data_struct *usac_data,
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ia_usac_lpd_decoder_handle st,
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WORD32 *ptr_overlap_buf,
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WORD32 was_last_short, WORD32 tw_mdct) {
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WORD32 i;
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if (was_last_short == 1) {
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st->mode_prev = -2;
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} else {
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st->mode_prev = -1;
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}
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for (i = 0; i < NUM_SUBFR_SUPERFRAME_BY2 - 1; i++) {
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st->pitch_prev[i] = 64;
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st->gain_prev[i] = 0;
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}
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st->bpf_active_prev = 0;
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if (ptr_overlap_buf != NULL && !tw_mdct) {
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const WORD32 *ptr_window_coeff;
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WORD32 fac_length;
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if (was_last_short) {
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fac_length = (usac_data->ccfl) / 16;
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} else {
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fac_length = (usac_data->len_subfrm) / 2;
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}
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if (fac_length == 48) {
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ptr_window_coeff = ixheaacd_sine_win_96;
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} else if (fac_length == 64) {
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ptr_window_coeff = ixheaacd_sine_win_128;
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} else if (fac_length == 96) {
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ptr_window_coeff = ixheaacd_sine_win_192;
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} else {
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ptr_window_coeff = ixheaacd_sine_win_256;
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}
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for (i = 0; i < 2 * fac_length; i++) {
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ptr_overlap_buf[(usac_data->ccfl) / 2 - fac_length + i] =
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ixheaacd_mult32_m(
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ptr_overlap_buf[(usac_data->ccfl) / 2 - fac_length + i],
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ptr_window_coeff[2 * fac_length - 1 - i]);
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}
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for (i = 0; i < (usac_data->ccfl) / 2 - fac_length; i++) {
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ptr_overlap_buf[(usac_data->ccfl) / 2 + fac_length + i] = 0;
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}
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if (ptr_overlap_buf != NULL) {
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for (i = 0; i < (usac_data->len_subfrm) / 2 - fac_length; i++) {
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st->exc_prev[i] = 0.0f;
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}
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for (i = 0; i < 2 * fac_length + 1; i++) {
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st->exc_prev[(usac_data->len_subfrm) / 2 - fac_length + i] =
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ptr_overlap_buf[i + usac_data->ccfl / 2 - fac_length - 1] /
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(float)(16384);
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}
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} else {
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ixheaacd_memset(st->exc_prev, 1 + (2 * FAC_LENGTH));
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}
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}
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return;
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}
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VOID ixheaacd_fix2flt_data(ia_usac_data_struct *usac_data,
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ia_usac_lpd_decoder_handle st, WORD32 k) {
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WORD32 i;
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WORD32 fac_length;
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WORD32 window_sequence_last = usac_data->window_sequence_last[k];
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WORD32 *p_ola_buffer = usac_data->overlap_data_ptr[k];
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if (window_sequence_last == EIGHT_SHORT_SEQUENCE) {
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fac_length = (usac_data->ccfl) / 16;
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} else {
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fac_length = (usac_data->len_subfrm) / 2;
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}
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ixheaacd_memset(st->lp_flt_coeff_a_prev, 2 * (ORDER + 1));
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ixheaacd_memset(st->xcitation_prev, MAX_PITCH + INTER_LP_FIL_ORDER + 1);
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ixheaacd_memset(st->synth_prev, MAX_PITCH + SYNTH_DELAY_LMAX);
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ixheaacd_memset(st->bpf_prev, FILTER_DELAY + LEN_SUBFR);
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st->gain_threshold = 0.0f;
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if (p_ola_buffer != NULL) {
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for (i = 0; i < (usac_data->len_subfrm) / 2 - fac_length; i++) {
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st->exc_prev[i] = 0;
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}
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for (i = 0; i < 2 * fac_length + 1; i++) {
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st->exc_prev[(usac_data->len_subfrm) / 2 - fac_length + i] = (FLOAT32)(
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p_ola_buffer[i + usac_data->ccfl / 2 - fac_length - 1] / 16384.0);
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}
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} else {
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ixheaacd_memset(st->exc_prev, 1 + (2 * FAC_LENGTH));
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}
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return;
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}
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void ixheaacd_init_acelp_data(ia_usac_data_struct *usac_data,
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ia_usac_lpd_decoder_handle st) {
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ixheaacd_reset_acelp_data_fix(usac_data, st, NULL, 0, 0);
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}
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#define PI_BY_6400 (PI / 6400.0)
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#define SCALE1 (6400.0 / PI)
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void ixheaacd_lsp_2_lsf_conversion(float lsp[], float lsf[], WORD32 m) {
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short i;
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for (i = 0; i < m; i++) {
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lsf[i] = (float)(acos(lsp[i]) * SCALE1);
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}
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return;
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}
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static VOID ixheaacd_lsf_2_lsp_conversion_float(FLOAT32 lsf[], FLOAT32 lsp[],
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WORD32 m) {
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WORD32 i;
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for (i = 0; i < m; i++)
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lsp[i] = (FLOAT32)cos((double)lsf[i] * (double)PI_BY_6400);
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return;
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}
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static WORD32 ixheaacd_bass_post_filter(FLOAT32 *synth_sig, WORD32 *pitch,
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FLOAT32 *pitch_gain, FLOAT32 *synth_out,
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WORD32 len_fr, WORD32 len2,
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FLOAT32 bpf_prev[]) {
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WORD32 i, j, sf, num_subfr, pitch_lag, lg;
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FLOAT32 x_energy, xy_corr, y_energy, norm_corr, energy, gain, tmp, alpha;
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FLOAT32 noise_buf[FILTER_DELAY + (2 * LEN_SUBFR)], *noise_tmp1, *noise_tmp2,
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*x, *y;
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noise_tmp1 = noise_buf + FILTER_DELAY;
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noise_tmp2 = noise_buf + FILTER_DELAY + LEN_SUBFR;
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memcpy(synth_out, synth_sig - LEN_SUBFR, len_fr * sizeof(FLOAT32));
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if (len_fr % 64)
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memset(synth_out + len_fr, 0, (LEN_SUBFR - len_fr % 64) * sizeof(FLOAT32));
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sf = 0;
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for (num_subfr = 0; num_subfr < len_fr; num_subfr += LEN_SUBFR, sf++) {
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pitch_lag = pitch[sf];
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gain = pitch_gain[sf];
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if (((pitch_lag >> 1) + 96 - num_subfr) > MAX_PITCH) return -1;
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if (gain > 1.0f) gain = 1.0f;
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if (gain < 0.0f) gain = 0.0f;
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x = &synth_sig[num_subfr - 96];
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y = &synth_sig[num_subfr - pitch_lag / 2 - 96];
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x_energy = 0.01f;
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xy_corr = 0.01f;
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y_energy = 0.01f;
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for (i = 0; i < LEN_SUBFR + 96; i++) {
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x_energy += x[i] * x[i];
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xy_corr += x[i] * y[i];
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y_energy += y[i] * y[i];
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}
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norm_corr = xy_corr / (FLOAT32)sqrt(x_energy * y_energy);
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if (norm_corr > 0.95f) pitch_lag >>= 1;
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lg = len_fr + len2 - pitch_lag - num_subfr;
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if (lg < 0) lg = 0;
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if (lg > LEN_SUBFR) lg = LEN_SUBFR;
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if (gain > 0) {
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if (lg > 0) {
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tmp = 0.01f;
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for (i = 0; i < lg; i++) {
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tmp += synth_sig[i + num_subfr] * synth_sig[i + num_subfr];
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}
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energy = 0.01f;
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for (i = 0; i < lg; i++) {
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energy += synth_sig[i + num_subfr + pitch_lag] *
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synth_sig[i + num_subfr + pitch_lag];
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}
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tmp = (FLOAT32)sqrt(tmp / energy);
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if (tmp < gain) gain = tmp;
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}
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alpha = 0.5f * gain;
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for (i = 0; i < lg; i++) {
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noise_tmp2[i] = alpha * (synth_sig[i + num_subfr] -
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0.5f * synth_sig[i + num_subfr - pitch_lag] -
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0.5f * synth_sig[i + num_subfr + pitch_lag]);
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}
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for (i = lg; i < LEN_SUBFR; i++) {
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noise_tmp2[i] = alpha * (synth_sig[i + num_subfr] -
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synth_sig[i + num_subfr - pitch_lag]);
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}
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} else {
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memset(noise_tmp2, 0, LEN_SUBFR * sizeof(FLOAT32));
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}
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memcpy(noise_buf, bpf_prev, (FILTER_DELAY + LEN_SUBFR) * sizeof(FLOAT32));
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memcpy(bpf_prev, noise_buf + LEN_SUBFR,
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(FILTER_DELAY + LEN_SUBFR) * sizeof(FLOAT32));
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for (i = 0; i < LEN_SUBFR; i++) {
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tmp = ixheaacd_fir_lp_filt[0] * noise_tmp1[i];
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for (j = 1; j <= FILTER_DELAY; j++) {
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tmp +=
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ixheaacd_fir_lp_filt[j] * (noise_tmp1[i - j] + noise_tmp1[i + j]);
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}
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synth_out[i + num_subfr] -= tmp;
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}
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}
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return 0;
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}
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void ixheaacd_reorder_lsf(float *lsf, float min_dist, int n) {
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int i;
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float lsf_min;
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lsf_min = min_dist;
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for (i = 0; i < n; i++) {
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if (lsf[i] < lsf_min) lsf[i] = lsf_min;
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lsf_min = lsf[i] + min_dist;
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}
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lsf_min = FREQ_MAX_F - min_dist;
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for (i = n - 1; i >= 0; i--) {
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if (lsf[i] > lsf_min) lsf[i] = lsf_min;
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lsf_min = lsf[i] - min_dist;
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}
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return;
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}
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WORD32 ixheaacd_lpd_dec(ia_usac_data_struct *usac_data,
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ia_usac_lpd_decoder_handle st,
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ia_td_frame_data_struct *pstr_td_frame_data,
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FLOAT32 fsynth[], WORD32 first_lpd_flag,
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WORD32 short_fac_flag, WORD32 bpf_control_info) {
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FLOAT32 *synth_buf = usac_data->synth_buf;
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FLOAT32 *xcitation_buff = usac_data->exc_buf;
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FLOAT32 lsp_curr[ORDER];
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FLOAT32 lsf_curr[ORDER];
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FLOAT32 *lp_flt_coff_a = usac_data->lp_flt_coff;
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FLOAT32 *synth, *xcitation_curr;
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WORD32 *pitch = usac_data->pitch;
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FLOAT32 *pitch_gain = usac_data->pitch_gain;
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FLOAT32 lsf_flt[(2 * NUM_FRAMES + 1) * ORDER];
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WORD32 i, k, tp, mode;
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WORD32 *mod;
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FLOAT32 gain, stability_factor;
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FLOAT32 tmp, synth_corr, synth_energy;
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WORD32 len_fr;
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WORD32 len_subfrm;
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WORD32 num_subfr;
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WORD32 num_subfr_in_superfr;
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WORD32 num_subfr_by2;
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WORD32 synth_delay;
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WORD32 num_samples = 0;
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WORD32 *ptr_scratch = &usac_data->scratch_buffer[0];
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WORD32 subfr_len, n_subfr;
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WORD32 err = 0;
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len_fr = usac_data->ccfl;
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len_subfrm = usac_data->len_subfrm;
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num_subfr = usac_data->num_subfrm;
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num_subfr_in_superfr = NUM_FRAMES * num_subfr;
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num_subfr_by2 = (num_subfr_in_superfr / 2) - 1;
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synth_delay = num_subfr_by2 * LEN_SUBFR;
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synth = synth_buf + MAX_PITCH + synth_delay;
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ixheaacd_mem_cpy(st->synth_prev, synth_buf, MAX_PITCH + synth_delay);
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ixheaacd_memset(synth, SYNTH_DELAY_LMAX + LEN_SUPERFRAME - synth_delay);
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xcitation_curr = xcitation_buff + MAX_PITCH + INTER_LP_FIL_ORDER + 1;
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ixheaacd_mem_cpy(st->xcitation_prev, xcitation_buff,
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MAX_PITCH + INTER_LP_FIL_ORDER + 1);
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memset(xcitation_curr, 0, sizeof(FLOAT32) * (LEN_SUPERFRAME + 1));
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mod = pstr_td_frame_data->mod;
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for (i = 0; i < num_subfr_by2; i++) {
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pitch[i] = st->pitch_prev[i];
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pitch_gain[i] = st->gain_prev[i];
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}
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for (i = 0; i < num_subfr_in_superfr; i++) {
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pitch[i + num_subfr_by2] = 64;
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pitch_gain[i + num_subfr_by2] = 0.0f;
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}
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if (!first_lpd_flag) {
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ixheaacd_lsp_2_lsf_conversion(st->lspold, lsf_flt, ORDER);
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}
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ixheaacd_alg_vec_dequant(pstr_td_frame_data, first_lpd_flag, lsf_flt,
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pstr_td_frame_data->mod);
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if (first_lpd_flag) {
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ixheaacd_mem_cpy(&lsf_flt[0], st->lsf_prev, ORDER);
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ixheaacd_lsf_2_lsp_conversion_float(st->lsf_prev, st->lspold, ORDER);
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}
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if ((first_lpd_flag && mod[0] == 0) || (first_lpd_flag && mod[1] == 0) ||
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((first_lpd_flag && mod[2] == 0 && len_subfrm != LEN_FRAME))) {
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FLOAT32 lp_flt_coeff_a[9 * (ORDER + 1)];
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FLOAT32 tmp_buf[3 * LEN_FRAME + ORDER];
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FLOAT32 tmp_res_buf[3 * LEN_FRAME];
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FLOAT32 *tmp = &(tmp_buf[LEN_FRAME]);
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FLOAT32 *ptr_tmp = &(tmp_res_buf[LEN_FRAME]);
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WORD32 tmp_start;
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FLOAT32 mem = 0;
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WORD32 gain;
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WORD32 length;
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ixheaacd_interpolation_lsp_params(st->lspold, st->lspold, lp_flt_coeff_a,
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8);
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memcpy(st->lp_flt_coeff_a_prev, lp_flt_coeff_a,
|
|
(ORDER + 1) * sizeof(FLOAT32));
|
|
memcpy(st->lp_flt_coeff_a_prev + ORDER + 1, lp_flt_coeff_a,
|
|
(ORDER + 1) * sizeof(FLOAT32));
|
|
|
|
if (mod[0] == 0) {
|
|
WORD32 fac_length;
|
|
if (short_fac_flag) {
|
|
fac_length = (len_subfrm * NUM_FRAMES) / 16;
|
|
} else {
|
|
fac_length = len_subfrm / 2;
|
|
}
|
|
if ((pstr_td_frame_data->fac_data[0] < 0) ||
|
|
(pstr_td_frame_data->fac_data[0] > 128)) {
|
|
return -1;
|
|
}
|
|
gain = ixheaacd_pow_10_i_by_128[pstr_td_frame_data->fac_data[0]];
|
|
|
|
memcpy(ptr_scratch, &pstr_td_frame_data->fac_data[0],
|
|
129 * sizeof(WORD32));
|
|
|
|
for (i = 0; i < fac_length / 2; i++) {
|
|
pstr_td_frame_data->fac_data[i] = ptr_scratch[2 * i + 1] << 16;
|
|
pstr_td_frame_data->fac_data[fac_length / 2 + i] =
|
|
ptr_scratch[fac_length - 2 * i] << 16;
|
|
}
|
|
|
|
err = ixheaacd_fwd_alias_cancel_tool(usac_data, pstr_td_frame_data,
|
|
fac_length, lp_flt_coeff_a, gain);
|
|
if (err == -1) return err;
|
|
|
|
memset(
|
|
&usac_data->overlap_data_ptr[usac_data->present_chan][(len_fr / 2)],
|
|
0, fac_length * sizeof(WORD32));
|
|
}
|
|
|
|
for (i = 0; i < 2 * len_subfrm; i++)
|
|
st->fd_synth[ORDER + i] = (FLOAT32)(
|
|
(FLOAT32)usac_data->overlap_data_ptr[usac_data->present_chan][i] /
|
|
16384.0);
|
|
num_samples = min(2 * len_subfrm, MAX_PITCH + synth_delay);
|
|
|
|
ixheaacd_mem_cpy(st->fd_synth + ORDER, synth - 2 * len_subfrm,
|
|
2 * len_subfrm);
|
|
|
|
ixheaacd_preemphsis_tool_float(st->fd_synth + ORDER, PREEMPH_FILT_FAC,
|
|
2 * len_subfrm, mem);
|
|
|
|
ixheaacd_memset(tmp, ORDER);
|
|
ixheaacd_mem_cpy(st->fd_synth + ORDER, tmp + ORDER, 2 * len_subfrm);
|
|
tmp_start = 0;
|
|
|
|
ixheaacd_memset(ptr_tmp - len_subfrm, 3 * len_subfrm);
|
|
memset(st->fd_synth, 0, ORDER * sizeof(WORD32));
|
|
length = (2 * len_subfrm - tmp_start) / LEN_SUBFR;
|
|
|
|
ixheaacd_residual_tool_float1(lp_flt_coeff_a,
|
|
&st->fd_synth[ORDER + tmp_start],
|
|
&ptr_tmp[tmp_start], LEN_SUBFR, length);
|
|
|
|
if (mod[0] != 0 && (len_subfrm == LEN_FRAME || mod[1] != 0)) {
|
|
num_samples = min(len_subfrm, MAX_PITCH + INTER_LP_FIL_ORDER + 1);
|
|
} else {
|
|
num_samples = min(2 * len_subfrm, MAX_PITCH + INTER_LP_FIL_ORDER + 1);
|
|
}
|
|
ixheaacd_mem_cpy(ptr_tmp + 2 * len_subfrm - num_samples,
|
|
xcitation_curr - num_samples, num_samples);
|
|
}
|
|
|
|
k = 0;
|
|
|
|
while (k < 4) {
|
|
mode = mod[k];
|
|
if ((st->mode_prev == 0) && (mode > 0) &&
|
|
(k != 0 || st->bpf_active_prev == 1)) {
|
|
i = (k * num_subfr) + num_subfr_by2;
|
|
pitch[i + 1] = pitch[i] = pitch[i - 1];
|
|
pitch_gain[i + 1] = pitch_gain[i] = pitch_gain[i - 1];
|
|
}
|
|
|
|
if ((mode == 0) || (mode == 1))
|
|
memcpy(lsf_curr, &lsf_flt[(k + 1) * ORDER], ORDER * sizeof(FLOAT32));
|
|
else if (mode == 2)
|
|
memcpy(lsf_curr, &lsf_flt[(k + 2) * ORDER], ORDER * sizeof(FLOAT32));
|
|
else
|
|
memcpy(lsf_curr, &lsf_flt[(k + 4) * ORDER], ORDER * sizeof(FLOAT32));
|
|
|
|
ixheaacd_lsf_2_lsp_conversion_float(lsf_curr, lsp_curr, ORDER);
|
|
|
|
tmp = 0.0f;
|
|
for (i = 0; i < ORDER; i++) {
|
|
tmp += (lsf_curr[i] - st->lsf_prev[i]) * (lsf_curr[i] - st->lsf_prev[i]);
|
|
}
|
|
stability_factor = (FLOAT32)(1.25f - (tmp / 400000.0f));
|
|
if (stability_factor > 1.0f) {
|
|
stability_factor = 1.0f;
|
|
}
|
|
if (stability_factor < 0.0f) {
|
|
stability_factor = 0.0f;
|
|
}
|
|
|
|
if (mode == 0) {
|
|
ixheaacd_interpolation_lsp_params(st->lspold, lsp_curr, lp_flt_coff_a,
|
|
num_subfr);
|
|
|
|
err = ixheaacd_acelp_alias_cnx(usac_data, pstr_td_frame_data, k,
|
|
lp_flt_coff_a, stability_factor, st);
|
|
if (err) return err;
|
|
|
|
if ((st->mode_prev != 0) && bpf_control_info) {
|
|
i = (k * num_subfr) + num_subfr_by2;
|
|
pitch[i - 1] = pitch[i];
|
|
pitch_gain[i - 1] = pitch_gain[i];
|
|
if (st->mode_prev != -2) {
|
|
pitch[i - 2] = pitch[i];
|
|
pitch_gain[i - 2] = pitch_gain[i];
|
|
}
|
|
}
|
|
k++;
|
|
} else {
|
|
if (mode == 1) {
|
|
subfr_len = len_subfrm;
|
|
n_subfr = num_subfr;
|
|
} else if (mode == 2) {
|
|
subfr_len = len_subfrm << 1;
|
|
n_subfr = num_subfr_in_superfr / 2;
|
|
} else if (mode == 3) {
|
|
subfr_len = len_subfrm << 2;
|
|
n_subfr = num_subfr_in_superfr;
|
|
}
|
|
|
|
ixheaacd_lpc_coef_gen(st->lspold, lsp_curr, lp_flt_coff_a, n_subfr,
|
|
ORDER);
|
|
|
|
err = ixheaacd_tcx_mdct(usac_data, pstr_td_frame_data, k, lp_flt_coff_a,
|
|
subfr_len, st);
|
|
if (err) return err;
|
|
k += (1 << (mode - 1));
|
|
}
|
|
|
|
st->mode_prev = mode;
|
|
|
|
ixheaacd_mem_cpy(lsp_curr, st->lspold, ORDER);
|
|
ixheaacd_mem_cpy(lsf_curr, st->lsf_prev, ORDER);
|
|
}
|
|
|
|
ixheaacd_mem_cpy(xcitation_buff + len_fr, st->xcitation_prev,
|
|
MAX_PITCH + INTER_LP_FIL_ORDER + 1);
|
|
|
|
ixheaacd_mem_cpy(synth_buf + len_fr, st->synth_prev, MAX_PITCH + synth_delay);
|
|
|
|
if (!bpf_control_info) {
|
|
if (mod[0] != 0 && st->bpf_active_prev) {
|
|
for (i = 2; i < num_subfr_in_superfr; i++)
|
|
pitch_gain[num_subfr_by2 + i] = 0.0;
|
|
} else {
|
|
for (i = 0; i < num_subfr_in_superfr; i++)
|
|
pitch_gain[num_subfr_by2 + i] = 0.0;
|
|
}
|
|
}
|
|
st->bpf_active_prev = bpf_control_info;
|
|
|
|
for (i = 0; i < num_subfr_by2; i++) {
|
|
st->pitch_prev[i] = pitch[num_subfr_in_superfr + i];
|
|
st->gain_prev[i] = pitch_gain[num_subfr_in_superfr + i];
|
|
}
|
|
|
|
synth = synth_buf + MAX_PITCH;
|
|
|
|
for (i = 0; i < num_subfr_in_superfr; i++) {
|
|
tp = pitch[i];
|
|
gain = pitch_gain[i];
|
|
if (gain > 0.0f) {
|
|
synth_corr = 0.0f, synth_energy = 1e-6f;
|
|
if ((((i * LEN_SUBFR) + LEN_SUBFR) > LEN_SUPERFRAME) ||
|
|
((((i * LEN_SUBFR) + LEN_SUBFR) - tp) > LEN_SUPERFRAME))
|
|
return -1;
|
|
for (k = 0; k < LEN_SUBFR; k++) {
|
|
synth_corr +=
|
|
synth[i * LEN_SUBFR + k] * synth[(i * LEN_SUBFR) - tp + k];
|
|
synth_energy +=
|
|
synth[(i * LEN_SUBFR) - tp + k] * synth[(i * LEN_SUBFR) - tp + k];
|
|
}
|
|
pitch_gain[i] = synth_corr / synth_energy;
|
|
}
|
|
}
|
|
|
|
if (mod[3] == 0) {
|
|
err = ixheaacd_bass_post_filter(synth, pitch, pitch_gain, fsynth, len_fr,
|
|
synth_delay, st->bpf_prev);
|
|
} else {
|
|
err =
|
|
ixheaacd_bass_post_filter(synth, pitch, pitch_gain, fsynth, len_fr,
|
|
synth_delay - (len_subfrm / 2), st->bpf_prev);
|
|
}
|
|
return err;
|
|
}
|
|
|
|
VOID ixheaacd_lpd_dec_update(ia_usac_lpd_decoder_handle tddec,
|
|
ia_usac_data_struct *usac_data, WORD32 i_ch) {
|
|
WORD32 i, k;
|
|
|
|
WORD32 *ptr_overlap = &usac_data->overlap_data_ptr[i_ch][0];
|
|
WORD32 len_fr, lpd_sbf_len, lpd_delay, num_subfr_by2, synth_delay, fac_length;
|
|
|
|
if (usac_data->tw_mdct[0])
|
|
ptr_overlap = &usac_data->overlap_data_ptr[i_ch][usac_data->ccfl / 2];
|
|
|
|
len_fr = usac_data->ccfl;
|
|
lpd_sbf_len = (NUM_FRAMES * usac_data->num_subfrm) / 2;
|
|
lpd_delay = lpd_sbf_len * LEN_SUBFR;
|
|
num_subfr_by2 = lpd_sbf_len - 1;
|
|
synth_delay = num_subfr_by2 * LEN_SUBFR;
|
|
fac_length = (usac_data->len_subfrm) / 2;
|
|
|
|
for (i = 0; i < LEN_SUBFR + synth_delay; i++)
|
|
ptr_overlap[i] = (WORD32)(
|
|
(FLOAT32)tddec->synth_prev[MAX_PITCH - (LEN_SUBFR) + i] * 16384.0);
|
|
|
|
ptr_overlap += LEN_SUBFR + synth_delay - fac_length;
|
|
|
|
for (k = 0; k < 2 * fac_length; k++)
|
|
ptr_overlap[k] = (WORD32)((FLOAT32)tddec->exc_prev[k + 1] * 16384.0);
|
|
|
|
ptr_overlap = &usac_data->overlap_data_ptr[i_ch][lpd_delay + fac_length];
|
|
|
|
for (i = 0; i < len_fr - lpd_delay - fac_length; i++) ptr_overlap[i] = 0;
|
|
|
|
usac_data->window_shape[i_ch] = WIN_SEL_0;
|
|
usac_data->window_sequence_last[i_ch] = EIGHT_SHORT_SEQUENCE;
|
|
usac_data->td_frame_prev[i_ch] = 1;
|
|
|
|
if (tddec->mode_prev == 0) {
|
|
memmove(usac_data->lpc_prev[i_ch], &tddec->lp_flt_coeff_a_prev[ORDER + 1],
|
|
(ORDER + 1) * sizeof(FLOAT32));
|
|
memmove(usac_data->acelp_in[i_ch], tddec->exc_prev,
|
|
(1 + (2 * FAC_LENGTH)) * sizeof(FLOAT32));
|
|
}
|
|
|
|
return;
|
|
}
|
|
|
|
WORD32 ixheaacd_lpd_bpf_fix(ia_usac_data_struct *usac_data,
|
|
WORD32 is_short_flag, FLOAT32 out_buffer[],
|
|
ia_usac_lpd_decoder_handle st) {
|
|
WORD32 i, tp, k;
|
|
float synth_buf[MAX_PITCH + SYNTH_DELAY_LMAX + LEN_SUPERFRAME];
|
|
float signal_out[LEN_SUPERFRAME];
|
|
float *synth, synth_corr, synth_energy;
|
|
WORD32 pitch[NUM_SUBFR_SUPERFRAME_BY2 + 3];
|
|
float pitch_gain[NUM_SUBFR_SUPERFRAME_BY2 + 3];
|
|
WORD32 len_fr, lpd_sbf_len, lpd_delay, num_subfr_by2, synth_delay, fac_length;
|
|
WORD32 err = 0;
|
|
|
|
len_fr = usac_data->ccfl;
|
|
lpd_sbf_len = (NUM_FRAMES * usac_data->num_subfrm) / 2;
|
|
lpd_delay = lpd_sbf_len * LEN_SUBFR;
|
|
num_subfr_by2 = lpd_sbf_len - 1;
|
|
synth_delay = num_subfr_by2 * LEN_SUBFR;
|
|
fac_length = (usac_data->len_subfrm) / 2;
|
|
|
|
ixheaacd_memset(synth_buf, MAX_PITCH + synth_delay + len_fr);
|
|
ixheaacd_mem_cpy(st->synth_prev, synth_buf, MAX_PITCH + synth_delay);
|
|
ixheaacd_mem_cpy(out_buffer, synth_buf + MAX_PITCH - (LEN_SUBFR),
|
|
synth_delay + len_fr + (LEN_SUBFR));
|
|
|
|
for (i = 0; i < num_subfr_by2; i++) {
|
|
pitch[i] = st->pitch_prev[i];
|
|
pitch_gain[i] = st->gain_prev[i];
|
|
}
|
|
for (i = num_subfr_by2; i < lpd_sbf_len + 3; i++) {
|
|
pitch[i] = 64;
|
|
pitch_gain[i] = 0.0f;
|
|
}
|
|
if (st->mode_prev == 0) {
|
|
pitch[num_subfr_by2] = pitch[num_subfr_by2 - 1];
|
|
pitch_gain[num_subfr_by2] = pitch_gain[num_subfr_by2 - 1];
|
|
if (!is_short_flag) {
|
|
pitch[num_subfr_by2 + 1] = pitch[num_subfr_by2];
|
|
pitch_gain[num_subfr_by2 + 1] = pitch_gain[num_subfr_by2];
|
|
}
|
|
}
|
|
|
|
synth = synth_buf + MAX_PITCH;
|
|
|
|
for (i = 0; i < num_subfr_by2 + 2; i++) {
|
|
tp = pitch[i];
|
|
if ((i * LEN_SUBFR + MAX_PITCH) < tp) {
|
|
return -1;
|
|
} else if (((i * LEN_SUBFR + MAX_PITCH - tp) >= 1883) ||
|
|
(((i * LEN_SUBFR) + LEN_SUBFR) > LEN_SUPERFRAME) ||
|
|
((((i * LEN_SUBFR) + LEN_SUBFR) - tp) > LEN_SUPERFRAME)) {
|
|
return -1;
|
|
}
|
|
|
|
if (pitch_gain[i] > 0.0f) {
|
|
synth_corr = 0.0f, synth_energy = 1e-6f;
|
|
for (k = 0; k < LEN_SUBFR; k++) {
|
|
synth_corr +=
|
|
synth[i * LEN_SUBFR + k] * synth[(i * LEN_SUBFR) - tp + k];
|
|
synth_energy +=
|
|
synth[(i * LEN_SUBFR) - tp + k] * synth[(i * LEN_SUBFR) - tp + k];
|
|
}
|
|
pitch_gain[i] = synth_corr / synth_energy;
|
|
}
|
|
}
|
|
|
|
err = ixheaacd_bass_post_filter(synth, pitch, pitch_gain, signal_out,
|
|
(lpd_sbf_len + 2) * LEN_SUBFR + LEN_SUBFR,
|
|
len_fr - (lpd_sbf_len + 4) * LEN_SUBFR,
|
|
st->bpf_prev);
|
|
if (err != 0) return err;
|
|
|
|
ixheaacd_mem_cpy(signal_out, out_buffer,
|
|
(lpd_sbf_len + 2) * LEN_SUBFR + LEN_SUBFR);
|
|
return err;
|
|
}
|