1cabdff1aSopenharmony_ci/*
2cabdff1aSopenharmony_ci * MPEG-4 Parametric Stereo decoding functions
3cabdff1aSopenharmony_ci * Copyright (c) 2010 Alex Converse <alex.converse@gmail.com>
4cabdff1aSopenharmony_ci *
5cabdff1aSopenharmony_ci * This file is part of FFmpeg.
6cabdff1aSopenharmony_ci *
7cabdff1aSopenharmony_ci * FFmpeg is free software; you can redistribute it and/or
8cabdff1aSopenharmony_ci * modify it under the terms of the GNU Lesser General Public
9cabdff1aSopenharmony_ci * License as published by the Free Software Foundation; either
10cabdff1aSopenharmony_ci * version 2.1 of the License, or (at your option) any later version.
11cabdff1aSopenharmony_ci *
12cabdff1aSopenharmony_ci * FFmpeg is distributed in the hope that it will be useful,
13cabdff1aSopenharmony_ci * but WITHOUT ANY WARRANTY; without even the implied warranty of
14cabdff1aSopenharmony_ci * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15cabdff1aSopenharmony_ci * Lesser General Public License for more details.
16cabdff1aSopenharmony_ci *
17cabdff1aSopenharmony_ci * You should have received a copy of the GNU Lesser General Public
18cabdff1aSopenharmony_ci * License along with FFmpeg; if not, write to the Free Software
19cabdff1aSopenharmony_ci * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20cabdff1aSopenharmony_ci *
21cabdff1aSopenharmony_ci * Note: Rounding-to-nearest used unless otherwise stated
22cabdff1aSopenharmony_ci *
23cabdff1aSopenharmony_ci */
24cabdff1aSopenharmony_ci
25cabdff1aSopenharmony_ci#include <stdint.h>
26cabdff1aSopenharmony_ci#include "libavutil/common.h"
27cabdff1aSopenharmony_ci#include "libavutil/mathematics.h"
28cabdff1aSopenharmony_ci#include "libavutil/mem_internal.h"
29cabdff1aSopenharmony_ci#include "avcodec.h"
30cabdff1aSopenharmony_ci#include "aacps.h"
31cabdff1aSopenharmony_ci#if USE_FIXED
32cabdff1aSopenharmony_ci#include "aacps_fixed_tablegen.h"
33cabdff1aSopenharmony_ci#else
34cabdff1aSopenharmony_ci#include "libavutil/internal.h"
35cabdff1aSopenharmony_ci#include "aacps_tablegen.h"
36cabdff1aSopenharmony_ci#endif /* USE_FIXED */
37cabdff1aSopenharmony_ci
38cabdff1aSopenharmony_cistatic const INTFLOAT g1_Q2[] = {
39cabdff1aSopenharmony_ci    Q31(0.0f),  Q31(0.01899487526049f), Q31(0.0f), Q31(-0.07293139167538f),
40cabdff1aSopenharmony_ci    Q31(0.0f),  Q31(0.30596630545168f), Q31(0.5f)
41cabdff1aSopenharmony_ci};
42cabdff1aSopenharmony_ci
43cabdff1aSopenharmony_cistatic void ipdopd_reset(int8_t *ipd_hist, int8_t *opd_hist)
44cabdff1aSopenharmony_ci{
45cabdff1aSopenharmony_ci    int i;
46cabdff1aSopenharmony_ci    for (i = 0; i < PS_MAX_NR_IPDOPD; i++) {
47cabdff1aSopenharmony_ci        opd_hist[i] = 0;
48cabdff1aSopenharmony_ci        ipd_hist[i] = 0;
49cabdff1aSopenharmony_ci    }
50cabdff1aSopenharmony_ci}
51cabdff1aSopenharmony_ci
52cabdff1aSopenharmony_ci/** Split one subband into 2 subsubbands with a symmetric real filter.
53cabdff1aSopenharmony_ci * The filter must have its non-center even coefficients equal to zero. */
54cabdff1aSopenharmony_cistatic void hybrid2_re(INTFLOAT (*in)[2], INTFLOAT (*out)[32][2],
55cabdff1aSopenharmony_ci                       const INTFLOAT filter[7], int len, int reverse)
56cabdff1aSopenharmony_ci{
57cabdff1aSopenharmony_ci    int i, j;
58cabdff1aSopenharmony_ci    for (i = 0; i < len; i++, in++) {
59cabdff1aSopenharmony_ci        INT64FLOAT re_in = AAC_MUL31(filter[6], in[6][0]); //real inphase
60cabdff1aSopenharmony_ci        INT64FLOAT re_op = 0.0f;                          //real out of phase
61cabdff1aSopenharmony_ci        INT64FLOAT im_in = AAC_MUL31(filter[6], in[6][1]); //imag inphase
62cabdff1aSopenharmony_ci        INT64FLOAT im_op = 0.0f;                          //imag out of phase
63cabdff1aSopenharmony_ci        for (j = 0; j < 6; j += 2) {
64cabdff1aSopenharmony_ci            re_op += (INT64FLOAT)filter[j+1] * (in[j+1][0] + in[12-j-1][0]);
65cabdff1aSopenharmony_ci            im_op += (INT64FLOAT)filter[j+1] * (in[j+1][1] + in[12-j-1][1]);
66cabdff1aSopenharmony_ci        }
67cabdff1aSopenharmony_ci
68cabdff1aSopenharmony_ci#if USE_FIXED
69cabdff1aSopenharmony_ci        re_op = (re_op + 0x40000000) >> 31;
70cabdff1aSopenharmony_ci        im_op = (im_op + 0x40000000) >> 31;
71cabdff1aSopenharmony_ci#endif /* USE_FIXED */
72cabdff1aSopenharmony_ci
73cabdff1aSopenharmony_ci        out[ reverse][i][0] = (INTFLOAT)(re_in + re_op);
74cabdff1aSopenharmony_ci        out[ reverse][i][1] = (INTFLOAT)(im_in + im_op);
75cabdff1aSopenharmony_ci        out[!reverse][i][0] = (INTFLOAT)(re_in - re_op);
76cabdff1aSopenharmony_ci        out[!reverse][i][1] = (INTFLOAT)(im_in - im_op);
77cabdff1aSopenharmony_ci    }
78cabdff1aSopenharmony_ci}
79cabdff1aSopenharmony_ci
80cabdff1aSopenharmony_ci/** Split one subband into 6 subsubbands with a complex filter */
81cabdff1aSopenharmony_cistatic void hybrid6_cx(PSDSPContext *dsp, INTFLOAT (*in)[2], INTFLOAT (*out)[32][2],
82cabdff1aSopenharmony_ci                       TABLE_CONST INTFLOAT (*filter)[8][2], int len)
83cabdff1aSopenharmony_ci{
84cabdff1aSopenharmony_ci    int i;
85cabdff1aSopenharmony_ci    int N = 8;
86cabdff1aSopenharmony_ci    LOCAL_ALIGNED_16(INTFLOAT, temp, [8], [2]);
87cabdff1aSopenharmony_ci
88cabdff1aSopenharmony_ci    for (i = 0; i < len; i++, in++) {
89cabdff1aSopenharmony_ci        dsp->hybrid_analysis(temp, in, (const INTFLOAT (*)[8][2]) filter, 1, N);
90cabdff1aSopenharmony_ci        out[0][i][0] = temp[6][0];
91cabdff1aSopenharmony_ci        out[0][i][1] = temp[6][1];
92cabdff1aSopenharmony_ci        out[1][i][0] = temp[7][0];
93cabdff1aSopenharmony_ci        out[1][i][1] = temp[7][1];
94cabdff1aSopenharmony_ci        out[2][i][0] = temp[0][0];
95cabdff1aSopenharmony_ci        out[2][i][1] = temp[0][1];
96cabdff1aSopenharmony_ci        out[3][i][0] = temp[1][0];
97cabdff1aSopenharmony_ci        out[3][i][1] = temp[1][1];
98cabdff1aSopenharmony_ci        out[4][i][0] = temp[2][0] + temp[5][0];
99cabdff1aSopenharmony_ci        out[4][i][1] = temp[2][1] + temp[5][1];
100cabdff1aSopenharmony_ci        out[5][i][0] = temp[3][0] + temp[4][0];
101cabdff1aSopenharmony_ci        out[5][i][1] = temp[3][1] + temp[4][1];
102cabdff1aSopenharmony_ci    }
103cabdff1aSopenharmony_ci}
104cabdff1aSopenharmony_ci
105cabdff1aSopenharmony_cistatic void hybrid4_8_12_cx(PSDSPContext *dsp,
106cabdff1aSopenharmony_ci                            INTFLOAT (*in)[2], INTFLOAT (*out)[32][2],
107cabdff1aSopenharmony_ci                            TABLE_CONST INTFLOAT (*filter)[8][2], int N, int len)
108cabdff1aSopenharmony_ci{
109cabdff1aSopenharmony_ci    int i;
110cabdff1aSopenharmony_ci
111cabdff1aSopenharmony_ci    for (i = 0; i < len; i++, in++) {
112cabdff1aSopenharmony_ci        dsp->hybrid_analysis(out[0] + i, in, (const INTFLOAT (*)[8][2]) filter, 32, N);
113cabdff1aSopenharmony_ci    }
114cabdff1aSopenharmony_ci}
115cabdff1aSopenharmony_ci
116cabdff1aSopenharmony_cistatic void hybrid_analysis(PSDSPContext *dsp, INTFLOAT out[91][32][2],
117cabdff1aSopenharmony_ci                            INTFLOAT in[5][44][2], INTFLOAT L[2][38][64],
118cabdff1aSopenharmony_ci                            int is34, int len)
119cabdff1aSopenharmony_ci{
120cabdff1aSopenharmony_ci    int i, j;
121cabdff1aSopenharmony_ci    for (i = 0; i < 5; i++) {
122cabdff1aSopenharmony_ci        for (j = 0; j < 38; j++) {
123cabdff1aSopenharmony_ci            in[i][j+6][0] = L[0][j][i];
124cabdff1aSopenharmony_ci            in[i][j+6][1] = L[1][j][i];
125cabdff1aSopenharmony_ci        }
126cabdff1aSopenharmony_ci    }
127cabdff1aSopenharmony_ci    if (is34) {
128cabdff1aSopenharmony_ci        hybrid4_8_12_cx(dsp, in[0], out,    f34_0_12, 12, len);
129cabdff1aSopenharmony_ci        hybrid4_8_12_cx(dsp, in[1], out+12, f34_1_8,   8, len);
130cabdff1aSopenharmony_ci        hybrid4_8_12_cx(dsp, in[2], out+20, f34_2_4,   4, len);
131cabdff1aSopenharmony_ci        hybrid4_8_12_cx(dsp, in[3], out+24, f34_2_4,   4, len);
132cabdff1aSopenharmony_ci        hybrid4_8_12_cx(dsp, in[4], out+28, f34_2_4,   4, len);
133cabdff1aSopenharmony_ci        dsp->hybrid_analysis_ileave(out + 27, L, 5, len);
134cabdff1aSopenharmony_ci    } else {
135cabdff1aSopenharmony_ci        hybrid6_cx(dsp, in[0], out, f20_0_8, len);
136cabdff1aSopenharmony_ci        hybrid2_re(in[1], out+6, g1_Q2, len, 1);
137cabdff1aSopenharmony_ci        hybrid2_re(in[2], out+8, g1_Q2, len, 0);
138cabdff1aSopenharmony_ci        dsp->hybrid_analysis_ileave(out + 7, L, 3, len);
139cabdff1aSopenharmony_ci    }
140cabdff1aSopenharmony_ci    //update in_buf
141cabdff1aSopenharmony_ci    for (i = 0; i < 5; i++) {
142cabdff1aSopenharmony_ci        memcpy(in[i], in[i]+32, 6 * sizeof(in[i][0]));
143cabdff1aSopenharmony_ci    }
144cabdff1aSopenharmony_ci}
145cabdff1aSopenharmony_ci
146cabdff1aSopenharmony_cistatic void hybrid_synthesis(PSDSPContext *dsp, INTFLOAT out[2][38][64],
147cabdff1aSopenharmony_ci                             INTFLOAT in[91][32][2], int is34, int len)
148cabdff1aSopenharmony_ci{
149cabdff1aSopenharmony_ci    int i, n;
150cabdff1aSopenharmony_ci    if (is34) {
151cabdff1aSopenharmony_ci        for (n = 0; n < len; n++) {
152cabdff1aSopenharmony_ci            memset(out[0][n], 0, 5*sizeof(out[0][n][0]));
153cabdff1aSopenharmony_ci            memset(out[1][n], 0, 5*sizeof(out[1][n][0]));
154cabdff1aSopenharmony_ci            for (i = 0; i < 12; i++) {
155cabdff1aSopenharmony_ci                out[0][n][0] += (UINTFLOAT)in[   i][n][0];
156cabdff1aSopenharmony_ci                out[1][n][0] += (UINTFLOAT)in[   i][n][1];
157cabdff1aSopenharmony_ci            }
158cabdff1aSopenharmony_ci            for (i = 0; i < 8; i++) {
159cabdff1aSopenharmony_ci                out[0][n][1] += (UINTFLOAT)in[12+i][n][0];
160cabdff1aSopenharmony_ci                out[1][n][1] += (UINTFLOAT)in[12+i][n][1];
161cabdff1aSopenharmony_ci            }
162cabdff1aSopenharmony_ci            for (i = 0; i < 4; i++) {
163cabdff1aSopenharmony_ci                out[0][n][2] += (UINTFLOAT)in[20+i][n][0];
164cabdff1aSopenharmony_ci                out[1][n][2] += (UINTFLOAT)in[20+i][n][1];
165cabdff1aSopenharmony_ci                out[0][n][3] += (UINTFLOAT)in[24+i][n][0];
166cabdff1aSopenharmony_ci                out[1][n][3] += (UINTFLOAT)in[24+i][n][1];
167cabdff1aSopenharmony_ci                out[0][n][4] += (UINTFLOAT)in[28+i][n][0];
168cabdff1aSopenharmony_ci                out[1][n][4] += (UINTFLOAT)in[28+i][n][1];
169cabdff1aSopenharmony_ci            }
170cabdff1aSopenharmony_ci        }
171cabdff1aSopenharmony_ci        dsp->hybrid_synthesis_deint(out, in + 27, 5, len);
172cabdff1aSopenharmony_ci    } else {
173cabdff1aSopenharmony_ci        for (n = 0; n < len; n++) {
174cabdff1aSopenharmony_ci            out[0][n][0] = (UINTFLOAT)in[0][n][0] + in[1][n][0] + in[2][n][0] +
175cabdff1aSopenharmony_ci                           (UINTFLOAT)in[3][n][0] + in[4][n][0] + in[5][n][0];
176cabdff1aSopenharmony_ci            out[1][n][0] = (UINTFLOAT)in[0][n][1] + in[1][n][1] + in[2][n][1] +
177cabdff1aSopenharmony_ci                           (UINTFLOAT)in[3][n][1] + in[4][n][1] + in[5][n][1];
178cabdff1aSopenharmony_ci            out[0][n][1] = (UINTFLOAT)in[6][n][0] + in[7][n][0];
179cabdff1aSopenharmony_ci            out[1][n][1] = (UINTFLOAT)in[6][n][1] + in[7][n][1];
180cabdff1aSopenharmony_ci            out[0][n][2] = (UINTFLOAT)in[8][n][0] + in[9][n][0];
181cabdff1aSopenharmony_ci            out[1][n][2] = (UINTFLOAT)in[8][n][1] + in[9][n][1];
182cabdff1aSopenharmony_ci        }
183cabdff1aSopenharmony_ci        dsp->hybrid_synthesis_deint(out, in + 7, 3, len);
184cabdff1aSopenharmony_ci    }
185cabdff1aSopenharmony_ci}
186cabdff1aSopenharmony_ci
187cabdff1aSopenharmony_ci/// All-pass filter decay slope
188cabdff1aSopenharmony_ci#define DECAY_SLOPE      Q30(0.05f)
189cabdff1aSopenharmony_ci/// Number of frequency bands that can be addressed by the parameter index, b(k)
190cabdff1aSopenharmony_cistatic const int   NR_PAR_BANDS[]      = { 20, 34 };
191cabdff1aSopenharmony_cistatic const int   NR_IPDOPD_BANDS[]   = { 11, 17 };
192cabdff1aSopenharmony_ci/// Number of frequency bands that can be addressed by the sub subband index, k
193cabdff1aSopenharmony_cistatic const int   NR_BANDS[]          = { 71, 91 };
194cabdff1aSopenharmony_ci/// Start frequency band for the all-pass filter decay slope
195cabdff1aSopenharmony_cistatic const int   DECAY_CUTOFF[]      = { 10, 32 };
196cabdff1aSopenharmony_ci/// Number of all-pass filer bands
197cabdff1aSopenharmony_cistatic const int   NR_ALLPASS_BANDS[]  = { 30, 50 };
198cabdff1aSopenharmony_ci/// First stereo band using the short one sample delay
199cabdff1aSopenharmony_cistatic const int   SHORT_DELAY_BAND[]  = { 42, 62 };
200cabdff1aSopenharmony_ci
201cabdff1aSopenharmony_ci/** Table 8.46 */
202cabdff1aSopenharmony_cistatic void map_idx_10_to_20(int8_t *par_mapped, const int8_t *par, int full)
203cabdff1aSopenharmony_ci{
204cabdff1aSopenharmony_ci    int b;
205cabdff1aSopenharmony_ci    if (full)
206cabdff1aSopenharmony_ci        b = 9;
207cabdff1aSopenharmony_ci    else {
208cabdff1aSopenharmony_ci        b = 4;
209cabdff1aSopenharmony_ci        par_mapped[10] = 0;
210cabdff1aSopenharmony_ci    }
211cabdff1aSopenharmony_ci    for (; b >= 0; b--) {
212cabdff1aSopenharmony_ci        par_mapped[2*b+1] = par_mapped[2*b] = par[b];
213cabdff1aSopenharmony_ci    }
214cabdff1aSopenharmony_ci}
215cabdff1aSopenharmony_ci
216cabdff1aSopenharmony_cistatic void map_idx_34_to_20(int8_t *par_mapped, const int8_t *par, int full)
217cabdff1aSopenharmony_ci{
218cabdff1aSopenharmony_ci    par_mapped[ 0] = (2*par[ 0] +   par[ 1]) / 3;
219cabdff1aSopenharmony_ci    par_mapped[ 1] = (  par[ 1] + 2*par[ 2]) / 3;
220cabdff1aSopenharmony_ci    par_mapped[ 2] = (2*par[ 3] +   par[ 4]) / 3;
221cabdff1aSopenharmony_ci    par_mapped[ 3] = (  par[ 4] + 2*par[ 5]) / 3;
222cabdff1aSopenharmony_ci    par_mapped[ 4] = (  par[ 6] +   par[ 7]) / 2;
223cabdff1aSopenharmony_ci    par_mapped[ 5] = (  par[ 8] +   par[ 9]) / 2;
224cabdff1aSopenharmony_ci    par_mapped[ 6] =    par[10];
225cabdff1aSopenharmony_ci    par_mapped[ 7] =    par[11];
226cabdff1aSopenharmony_ci    par_mapped[ 8] = (  par[12] +   par[13]) / 2;
227cabdff1aSopenharmony_ci    par_mapped[ 9] = (  par[14] +   par[15]) / 2;
228cabdff1aSopenharmony_ci    par_mapped[10] =    par[16];
229cabdff1aSopenharmony_ci    if (full) {
230cabdff1aSopenharmony_ci        par_mapped[11] =    par[17];
231cabdff1aSopenharmony_ci        par_mapped[12] =    par[18];
232cabdff1aSopenharmony_ci        par_mapped[13] =    par[19];
233cabdff1aSopenharmony_ci        par_mapped[14] = (  par[20] +   par[21]) / 2;
234cabdff1aSopenharmony_ci        par_mapped[15] = (  par[22] +   par[23]) / 2;
235cabdff1aSopenharmony_ci        par_mapped[16] = (  par[24] +   par[25]) / 2;
236cabdff1aSopenharmony_ci        par_mapped[17] = (  par[26] +   par[27]) / 2;
237cabdff1aSopenharmony_ci        par_mapped[18] = (  par[28] +   par[29] +   par[30] +   par[31]) / 4;
238cabdff1aSopenharmony_ci        par_mapped[19] = (  par[32] +   par[33]) / 2;
239cabdff1aSopenharmony_ci    }
240cabdff1aSopenharmony_ci}
241cabdff1aSopenharmony_ci
242cabdff1aSopenharmony_cistatic void map_val_34_to_20(INTFLOAT par[PS_MAX_NR_IIDICC])
243cabdff1aSopenharmony_ci{
244cabdff1aSopenharmony_ci#if USE_FIXED
245cabdff1aSopenharmony_ci    par[ 0] = (int)(((int64_t)(par[ 0] + (unsigned)(par[ 1]>>1)) * 1431655765 + \
246cabdff1aSopenharmony_ci                      0x40000000) >> 31);
247cabdff1aSopenharmony_ci    par[ 1] = (int)(((int64_t)((par[ 1]>>1) + (unsigned)par[ 2]) * 1431655765 + \
248cabdff1aSopenharmony_ci                      0x40000000) >> 31);
249cabdff1aSopenharmony_ci    par[ 2] = (int)(((int64_t)(par[ 3] + (unsigned)(par[ 4]>>1)) * 1431655765 + \
250cabdff1aSopenharmony_ci                      0x40000000) >> 31);
251cabdff1aSopenharmony_ci    par[ 3] = (int)(((int64_t)((par[ 4]>>1) + (unsigned)par[ 5]) * 1431655765 + \
252cabdff1aSopenharmony_ci                      0x40000000) >> 31);
253cabdff1aSopenharmony_ci#else
254cabdff1aSopenharmony_ci    par[ 0] = (2*par[ 0] +   par[ 1]) * 0.33333333f;
255cabdff1aSopenharmony_ci    par[ 1] = (  par[ 1] + 2*par[ 2]) * 0.33333333f;
256cabdff1aSopenharmony_ci    par[ 2] = (2*par[ 3] +   par[ 4]) * 0.33333333f;
257cabdff1aSopenharmony_ci    par[ 3] = (  par[ 4] + 2*par[ 5]) * 0.33333333f;
258cabdff1aSopenharmony_ci#endif /* USE_FIXED */
259cabdff1aSopenharmony_ci    par[ 4] = AAC_HALF_SUM(par[ 6], par[ 7]);
260cabdff1aSopenharmony_ci    par[ 5] = AAC_HALF_SUM(par[ 8], par[ 9]);
261cabdff1aSopenharmony_ci    par[ 6] =    par[10];
262cabdff1aSopenharmony_ci    par[ 7] =    par[11];
263cabdff1aSopenharmony_ci    par[ 8] = AAC_HALF_SUM(par[12], par[13]);
264cabdff1aSopenharmony_ci    par[ 9] = AAC_HALF_SUM(par[14], par[15]);
265cabdff1aSopenharmony_ci    par[10] =    par[16];
266cabdff1aSopenharmony_ci    par[11] =    par[17];
267cabdff1aSopenharmony_ci    par[12] =    par[18];
268cabdff1aSopenharmony_ci    par[13] =    par[19];
269cabdff1aSopenharmony_ci    par[14] = AAC_HALF_SUM(par[20], par[21]);
270cabdff1aSopenharmony_ci    par[15] = AAC_HALF_SUM(par[22], par[23]);
271cabdff1aSopenharmony_ci    par[16] = AAC_HALF_SUM(par[24], par[25]);
272cabdff1aSopenharmony_ci    par[17] = AAC_HALF_SUM(par[26], par[27]);
273cabdff1aSopenharmony_ci#if USE_FIXED
274cabdff1aSopenharmony_ci    par[18] = (((par[28]+2)>>2) + ((par[29]+2)>>2) + ((par[30]+2)>>2) + ((par[31]+2)>>2));
275cabdff1aSopenharmony_ci#else
276cabdff1aSopenharmony_ci    par[18] = (  par[28] +   par[29] +   par[30] +   par[31]) * 0.25f;
277cabdff1aSopenharmony_ci#endif /* USE_FIXED */
278cabdff1aSopenharmony_ci    par[19] = AAC_HALF_SUM(par[32], par[33]);
279cabdff1aSopenharmony_ci}
280cabdff1aSopenharmony_ci
281cabdff1aSopenharmony_cistatic void map_idx_10_to_34(int8_t *par_mapped, const int8_t *par, int full)
282cabdff1aSopenharmony_ci{
283cabdff1aSopenharmony_ci    if (full) {
284cabdff1aSopenharmony_ci        par_mapped[33] = par[9];
285cabdff1aSopenharmony_ci        par_mapped[32] = par[9];
286cabdff1aSopenharmony_ci        par_mapped[31] = par[9];
287cabdff1aSopenharmony_ci        par_mapped[30] = par[9];
288cabdff1aSopenharmony_ci        par_mapped[29] = par[9];
289cabdff1aSopenharmony_ci        par_mapped[28] = par[9];
290cabdff1aSopenharmony_ci        par_mapped[27] = par[8];
291cabdff1aSopenharmony_ci        par_mapped[26] = par[8];
292cabdff1aSopenharmony_ci        par_mapped[25] = par[8];
293cabdff1aSopenharmony_ci        par_mapped[24] = par[8];
294cabdff1aSopenharmony_ci        par_mapped[23] = par[7];
295cabdff1aSopenharmony_ci        par_mapped[22] = par[7];
296cabdff1aSopenharmony_ci        par_mapped[21] = par[7];
297cabdff1aSopenharmony_ci        par_mapped[20] = par[7];
298cabdff1aSopenharmony_ci        par_mapped[19] = par[6];
299cabdff1aSopenharmony_ci        par_mapped[18] = par[6];
300cabdff1aSopenharmony_ci        par_mapped[17] = par[5];
301cabdff1aSopenharmony_ci        par_mapped[16] = par[5];
302cabdff1aSopenharmony_ci    } else {
303cabdff1aSopenharmony_ci        par_mapped[16] =      0;
304cabdff1aSopenharmony_ci    }
305cabdff1aSopenharmony_ci    par_mapped[15] = par[4];
306cabdff1aSopenharmony_ci    par_mapped[14] = par[4];
307cabdff1aSopenharmony_ci    par_mapped[13] = par[4];
308cabdff1aSopenharmony_ci    par_mapped[12] = par[4];
309cabdff1aSopenharmony_ci    par_mapped[11] = par[3];
310cabdff1aSopenharmony_ci    par_mapped[10] = par[3];
311cabdff1aSopenharmony_ci    par_mapped[ 9] = par[2];
312cabdff1aSopenharmony_ci    par_mapped[ 8] = par[2];
313cabdff1aSopenharmony_ci    par_mapped[ 7] = par[2];
314cabdff1aSopenharmony_ci    par_mapped[ 6] = par[2];
315cabdff1aSopenharmony_ci    par_mapped[ 5] = par[1];
316cabdff1aSopenharmony_ci    par_mapped[ 4] = par[1];
317cabdff1aSopenharmony_ci    par_mapped[ 3] = par[1];
318cabdff1aSopenharmony_ci    par_mapped[ 2] = par[0];
319cabdff1aSopenharmony_ci    par_mapped[ 1] = par[0];
320cabdff1aSopenharmony_ci    par_mapped[ 0] = par[0];
321cabdff1aSopenharmony_ci}
322cabdff1aSopenharmony_ci
323cabdff1aSopenharmony_cistatic void map_idx_20_to_34(int8_t *par_mapped, const int8_t *par, int full)
324cabdff1aSopenharmony_ci{
325cabdff1aSopenharmony_ci    if (full) {
326cabdff1aSopenharmony_ci        par_mapped[33] =  par[19];
327cabdff1aSopenharmony_ci        par_mapped[32] =  par[19];
328cabdff1aSopenharmony_ci        par_mapped[31] =  par[18];
329cabdff1aSopenharmony_ci        par_mapped[30] =  par[18];
330cabdff1aSopenharmony_ci        par_mapped[29] =  par[18];
331cabdff1aSopenharmony_ci        par_mapped[28] =  par[18];
332cabdff1aSopenharmony_ci        par_mapped[27] =  par[17];
333cabdff1aSopenharmony_ci        par_mapped[26] =  par[17];
334cabdff1aSopenharmony_ci        par_mapped[25] =  par[16];
335cabdff1aSopenharmony_ci        par_mapped[24] =  par[16];
336cabdff1aSopenharmony_ci        par_mapped[23] =  par[15];
337cabdff1aSopenharmony_ci        par_mapped[22] =  par[15];
338cabdff1aSopenharmony_ci        par_mapped[21] =  par[14];
339cabdff1aSopenharmony_ci        par_mapped[20] =  par[14];
340cabdff1aSopenharmony_ci        par_mapped[19] =  par[13];
341cabdff1aSopenharmony_ci        par_mapped[18] =  par[12];
342cabdff1aSopenharmony_ci        par_mapped[17] =  par[11];
343cabdff1aSopenharmony_ci    }
344cabdff1aSopenharmony_ci    par_mapped[16] =  par[10];
345cabdff1aSopenharmony_ci    par_mapped[15] =  par[ 9];
346cabdff1aSopenharmony_ci    par_mapped[14] =  par[ 9];
347cabdff1aSopenharmony_ci    par_mapped[13] =  par[ 8];
348cabdff1aSopenharmony_ci    par_mapped[12] =  par[ 8];
349cabdff1aSopenharmony_ci    par_mapped[11] =  par[ 7];
350cabdff1aSopenharmony_ci    par_mapped[10] =  par[ 6];
351cabdff1aSopenharmony_ci    par_mapped[ 9] =  par[ 5];
352cabdff1aSopenharmony_ci    par_mapped[ 8] =  par[ 5];
353cabdff1aSopenharmony_ci    par_mapped[ 7] =  par[ 4];
354cabdff1aSopenharmony_ci    par_mapped[ 6] =  par[ 4];
355cabdff1aSopenharmony_ci    par_mapped[ 5] =  par[ 3];
356cabdff1aSopenharmony_ci    par_mapped[ 4] = (par[ 2] + par[ 3]) / 2;
357cabdff1aSopenharmony_ci    par_mapped[ 3] =  par[ 2];
358cabdff1aSopenharmony_ci    par_mapped[ 2] =  par[ 1];
359cabdff1aSopenharmony_ci    par_mapped[ 1] = (par[ 0] + par[ 1]) / 2;
360cabdff1aSopenharmony_ci    par_mapped[ 0] =  par[ 0];
361cabdff1aSopenharmony_ci}
362cabdff1aSopenharmony_ci
363cabdff1aSopenharmony_cistatic void map_val_20_to_34(INTFLOAT par[PS_MAX_NR_IIDICC])
364cabdff1aSopenharmony_ci{
365cabdff1aSopenharmony_ci    par[33] =  par[19];
366cabdff1aSopenharmony_ci    par[32] =  par[19];
367cabdff1aSopenharmony_ci    par[31] =  par[18];
368cabdff1aSopenharmony_ci    par[30] =  par[18];
369cabdff1aSopenharmony_ci    par[29] =  par[18];
370cabdff1aSopenharmony_ci    par[28] =  par[18];
371cabdff1aSopenharmony_ci    par[27] =  par[17];
372cabdff1aSopenharmony_ci    par[26] =  par[17];
373cabdff1aSopenharmony_ci    par[25] =  par[16];
374cabdff1aSopenharmony_ci    par[24] =  par[16];
375cabdff1aSopenharmony_ci    par[23] =  par[15];
376cabdff1aSopenharmony_ci    par[22] =  par[15];
377cabdff1aSopenharmony_ci    par[21] =  par[14];
378cabdff1aSopenharmony_ci    par[20] =  par[14];
379cabdff1aSopenharmony_ci    par[19] =  par[13];
380cabdff1aSopenharmony_ci    par[18] =  par[12];
381cabdff1aSopenharmony_ci    par[17] =  par[11];
382cabdff1aSopenharmony_ci    par[16] =  par[10];
383cabdff1aSopenharmony_ci    par[15] =  par[ 9];
384cabdff1aSopenharmony_ci    par[14] =  par[ 9];
385cabdff1aSopenharmony_ci    par[13] =  par[ 8];
386cabdff1aSopenharmony_ci    par[12] =  par[ 8];
387cabdff1aSopenharmony_ci    par[11] =  par[ 7];
388cabdff1aSopenharmony_ci    par[10] =  par[ 6];
389cabdff1aSopenharmony_ci    par[ 9] =  par[ 5];
390cabdff1aSopenharmony_ci    par[ 8] =  par[ 5];
391cabdff1aSopenharmony_ci    par[ 7] =  par[ 4];
392cabdff1aSopenharmony_ci    par[ 6] =  par[ 4];
393cabdff1aSopenharmony_ci    par[ 5] =  par[ 3];
394cabdff1aSopenharmony_ci    par[ 4] = AAC_HALF_SUM(par[ 2], par[ 3]);
395cabdff1aSopenharmony_ci    par[ 3] =  par[ 2];
396cabdff1aSopenharmony_ci    par[ 2] =  par[ 1];
397cabdff1aSopenharmony_ci    par[ 1] = AAC_HALF_SUM(par[ 0], par[ 1]);
398cabdff1aSopenharmony_ci}
399cabdff1aSopenharmony_ci
400cabdff1aSopenharmony_cistatic void decorrelation(PSContext *ps, INTFLOAT (*out)[32][2], const INTFLOAT (*s)[32][2], int is34)
401cabdff1aSopenharmony_ci{
402cabdff1aSopenharmony_ci    LOCAL_ALIGNED_16(INTFLOAT, power, [34], [PS_QMF_TIME_SLOTS]);
403cabdff1aSopenharmony_ci    LOCAL_ALIGNED_16(INTFLOAT, transient_gain, [34], [PS_QMF_TIME_SLOTS]);
404cabdff1aSopenharmony_ci    INTFLOAT *peak_decay_nrg = ps->peak_decay_nrg;
405cabdff1aSopenharmony_ci    INTFLOAT *power_smooth = ps->power_smooth;
406cabdff1aSopenharmony_ci    INTFLOAT *peak_decay_diff_smooth = ps->peak_decay_diff_smooth;
407cabdff1aSopenharmony_ci    INTFLOAT (*delay)[PS_QMF_TIME_SLOTS + PS_MAX_DELAY][2] = ps->delay;
408cabdff1aSopenharmony_ci    INTFLOAT (*ap_delay)[PS_AP_LINKS][PS_QMF_TIME_SLOTS + PS_MAX_AP_DELAY][2] = ps->ap_delay;
409cabdff1aSopenharmony_ci#if !USE_FIXED
410cabdff1aSopenharmony_ci    const float transient_impact  = 1.5f;
411cabdff1aSopenharmony_ci    const float a_smooth          = 0.25f; ///< Smoothing coefficient
412cabdff1aSopenharmony_ci#endif /* USE_FIXED */
413cabdff1aSopenharmony_ci    const int8_t *const k_to_i = is34 ? ff_k_to_i_34 : ff_k_to_i_20;
414cabdff1aSopenharmony_ci    int i, k, m, n;
415cabdff1aSopenharmony_ci    int n0 = 0, nL = 32;
416cabdff1aSopenharmony_ci    const INTFLOAT peak_decay_factor = Q31(0.76592833836465f);
417cabdff1aSopenharmony_ci
418cabdff1aSopenharmony_ci    memset(power, 0, 34 * sizeof(*power));
419cabdff1aSopenharmony_ci
420cabdff1aSopenharmony_ci    if (is34 != ps->common.is34bands_old) {
421cabdff1aSopenharmony_ci        memset(ps->peak_decay_nrg,         0, sizeof(ps->peak_decay_nrg));
422cabdff1aSopenharmony_ci        memset(ps->power_smooth,           0, sizeof(ps->power_smooth));
423cabdff1aSopenharmony_ci        memset(ps->peak_decay_diff_smooth, 0, sizeof(ps->peak_decay_diff_smooth));
424cabdff1aSopenharmony_ci        memset(ps->delay,                  0, sizeof(ps->delay));
425cabdff1aSopenharmony_ci        memset(ps->ap_delay,               0, sizeof(ps->ap_delay));
426cabdff1aSopenharmony_ci    }
427cabdff1aSopenharmony_ci
428cabdff1aSopenharmony_ci    for (k = 0; k < NR_BANDS[is34]; k++) {
429cabdff1aSopenharmony_ci        int i = k_to_i[k];
430cabdff1aSopenharmony_ci        ps->dsp.add_squares(power[i], s[k], nL - n0);
431cabdff1aSopenharmony_ci    }
432cabdff1aSopenharmony_ci
433cabdff1aSopenharmony_ci    //Transient detection
434cabdff1aSopenharmony_ci#if USE_FIXED
435cabdff1aSopenharmony_ci    for (i = 0; i < NR_PAR_BANDS[is34]; i++) {
436cabdff1aSopenharmony_ci        for (n = n0; n < nL; n++) {
437cabdff1aSopenharmony_ci            int decayed_peak;
438cabdff1aSopenharmony_ci            decayed_peak = (int)(((int64_t)peak_decay_factor * \
439cabdff1aSopenharmony_ci                                           peak_decay_nrg[i] + 0x40000000) >> 31);
440cabdff1aSopenharmony_ci            peak_decay_nrg[i] = FFMAX(decayed_peak, power[i][n]);
441cabdff1aSopenharmony_ci            power_smooth[i] += (power[i][n] + 2LL - power_smooth[i]) >> 2;
442cabdff1aSopenharmony_ci            peak_decay_diff_smooth[i] += (peak_decay_nrg[i] + 2LL - power[i][n] - \
443cabdff1aSopenharmony_ci                                          peak_decay_diff_smooth[i]) >> 2;
444cabdff1aSopenharmony_ci
445cabdff1aSopenharmony_ci            if (peak_decay_diff_smooth[i]) {
446cabdff1aSopenharmony_ci                transient_gain[i][n] = FFMIN(power_smooth[i]*43691LL / peak_decay_diff_smooth[i], 1<<16);
447cabdff1aSopenharmony_ci            } else
448cabdff1aSopenharmony_ci                transient_gain[i][n] = 1 << 16;
449cabdff1aSopenharmony_ci        }
450cabdff1aSopenharmony_ci    }
451cabdff1aSopenharmony_ci#else
452cabdff1aSopenharmony_ci    for (i = 0; i < NR_PAR_BANDS[is34]; i++) {
453cabdff1aSopenharmony_ci        for (n = n0; n < nL; n++) {
454cabdff1aSopenharmony_ci            float decayed_peak = peak_decay_factor * peak_decay_nrg[i];
455cabdff1aSopenharmony_ci            float denom;
456cabdff1aSopenharmony_ci            peak_decay_nrg[i] = FFMAX(decayed_peak, power[i][n]);
457cabdff1aSopenharmony_ci            power_smooth[i] += a_smooth * (power[i][n] - power_smooth[i]);
458cabdff1aSopenharmony_ci            peak_decay_diff_smooth[i] += a_smooth * (peak_decay_nrg[i] - power[i][n] - peak_decay_diff_smooth[i]);
459cabdff1aSopenharmony_ci            denom = transient_impact * peak_decay_diff_smooth[i];
460cabdff1aSopenharmony_ci            transient_gain[i][n]   = (denom > power_smooth[i]) ?
461cabdff1aSopenharmony_ci                                         power_smooth[i] / denom : 1.0f;
462cabdff1aSopenharmony_ci        }
463cabdff1aSopenharmony_ci    }
464cabdff1aSopenharmony_ci
465cabdff1aSopenharmony_ci#endif /* USE_FIXED */
466cabdff1aSopenharmony_ci    //Decorrelation and transient reduction
467cabdff1aSopenharmony_ci    //                         PS_AP_LINKS - 1
468cabdff1aSopenharmony_ci    //                               -----
469cabdff1aSopenharmony_ci    //                                | |  Q_fract_allpass[k][m]*z^-link_delay[m] - a[m]*g_decay_slope[k]
470cabdff1aSopenharmony_ci    //H[k][z] = z^-2 * phi_fract[k] * | | ----------------------------------------------------------------
471cabdff1aSopenharmony_ci    //                                | | 1 - a[m]*g_decay_slope[k]*Q_fract_allpass[k][m]*z^-link_delay[m]
472cabdff1aSopenharmony_ci    //                               m = 0
473cabdff1aSopenharmony_ci    //d[k][z] (out) = transient_gain_mapped[k][z] * H[k][z] * s[k][z]
474cabdff1aSopenharmony_ci    for (k = 0; k < NR_ALLPASS_BANDS[is34]; k++) {
475cabdff1aSopenharmony_ci        int b = k_to_i[k];
476cabdff1aSopenharmony_ci#if USE_FIXED
477cabdff1aSopenharmony_ci        int g_decay_slope;
478cabdff1aSopenharmony_ci
479cabdff1aSopenharmony_ci        if (k - DECAY_CUTOFF[is34] <= 0) {
480cabdff1aSopenharmony_ci          g_decay_slope = 1 << 30;
481cabdff1aSopenharmony_ci        }
482cabdff1aSopenharmony_ci        else if (k - DECAY_CUTOFF[is34] >= 20) {
483cabdff1aSopenharmony_ci          g_decay_slope = 0;
484cabdff1aSopenharmony_ci        }
485cabdff1aSopenharmony_ci        else {
486cabdff1aSopenharmony_ci          g_decay_slope = (1 << 30) - DECAY_SLOPE * (k - DECAY_CUTOFF[is34]);
487cabdff1aSopenharmony_ci        }
488cabdff1aSopenharmony_ci#else
489cabdff1aSopenharmony_ci        float g_decay_slope = 1.f - DECAY_SLOPE * (k - DECAY_CUTOFF[is34]);
490cabdff1aSopenharmony_ci        g_decay_slope = av_clipf(g_decay_slope, 0.f, 1.f);
491cabdff1aSopenharmony_ci#endif /* USE_FIXED */
492cabdff1aSopenharmony_ci        memcpy(delay[k], delay[k]+nL, PS_MAX_DELAY*sizeof(delay[k][0]));
493cabdff1aSopenharmony_ci        memcpy(delay[k]+PS_MAX_DELAY, s[k], numQMFSlots*sizeof(delay[k][0]));
494cabdff1aSopenharmony_ci        for (m = 0; m < PS_AP_LINKS; m++) {
495cabdff1aSopenharmony_ci            memcpy(ap_delay[k][m],   ap_delay[k][m]+numQMFSlots,           5*sizeof(ap_delay[k][m][0]));
496cabdff1aSopenharmony_ci        }
497cabdff1aSopenharmony_ci        ps->dsp.decorrelate(out[k], delay[k] + PS_MAX_DELAY - 2, ap_delay[k],
498cabdff1aSopenharmony_ci                            phi_fract[is34][k],
499cabdff1aSopenharmony_ci                            (const INTFLOAT (*)[2]) Q_fract_allpass[is34][k],
500cabdff1aSopenharmony_ci                            transient_gain[b], g_decay_slope, nL - n0);
501cabdff1aSopenharmony_ci    }
502cabdff1aSopenharmony_ci    for (; k < SHORT_DELAY_BAND[is34]; k++) {
503cabdff1aSopenharmony_ci        int i = k_to_i[k];
504cabdff1aSopenharmony_ci        memcpy(delay[k], delay[k]+nL, PS_MAX_DELAY*sizeof(delay[k][0]));
505cabdff1aSopenharmony_ci        memcpy(delay[k]+PS_MAX_DELAY, s[k], numQMFSlots*sizeof(delay[k][0]));
506cabdff1aSopenharmony_ci        //H = delay 14
507cabdff1aSopenharmony_ci        ps->dsp.mul_pair_single(out[k], delay[k] + PS_MAX_DELAY - 14,
508cabdff1aSopenharmony_ci                                transient_gain[i], nL - n0);
509cabdff1aSopenharmony_ci    }
510cabdff1aSopenharmony_ci    for (; k < NR_BANDS[is34]; k++) {
511cabdff1aSopenharmony_ci        int i = k_to_i[k];
512cabdff1aSopenharmony_ci        memcpy(delay[k], delay[k]+nL, PS_MAX_DELAY*sizeof(delay[k][0]));
513cabdff1aSopenharmony_ci        memcpy(delay[k]+PS_MAX_DELAY, s[k], numQMFSlots*sizeof(delay[k][0]));
514cabdff1aSopenharmony_ci        //H = delay 1
515cabdff1aSopenharmony_ci        ps->dsp.mul_pair_single(out[k], delay[k] + PS_MAX_DELAY - 1,
516cabdff1aSopenharmony_ci                                transient_gain[i], nL - n0);
517cabdff1aSopenharmony_ci    }
518cabdff1aSopenharmony_ci}
519cabdff1aSopenharmony_ci
520cabdff1aSopenharmony_cistatic void remap34(int8_t (**p_par_mapped)[PS_MAX_NR_IIDICC],
521cabdff1aSopenharmony_ci                    int8_t           (*par)[PS_MAX_NR_IIDICC],
522cabdff1aSopenharmony_ci                    int num_par, int num_env, int full)
523cabdff1aSopenharmony_ci{
524cabdff1aSopenharmony_ci    int8_t (*par_mapped)[PS_MAX_NR_IIDICC] = *p_par_mapped;
525cabdff1aSopenharmony_ci    int e;
526cabdff1aSopenharmony_ci    if (num_par == 20 || num_par == 11) {
527cabdff1aSopenharmony_ci        for (e = 0; e < num_env; e++) {
528cabdff1aSopenharmony_ci            map_idx_20_to_34(par_mapped[e], par[e], full);
529cabdff1aSopenharmony_ci        }
530cabdff1aSopenharmony_ci    } else if (num_par == 10 || num_par == 5) {
531cabdff1aSopenharmony_ci        for (e = 0; e < num_env; e++) {
532cabdff1aSopenharmony_ci            map_idx_10_to_34(par_mapped[e], par[e], full);
533cabdff1aSopenharmony_ci        }
534cabdff1aSopenharmony_ci    } else {
535cabdff1aSopenharmony_ci        *p_par_mapped = par;
536cabdff1aSopenharmony_ci    }
537cabdff1aSopenharmony_ci}
538cabdff1aSopenharmony_ci
539cabdff1aSopenharmony_cistatic void remap20(int8_t (**p_par_mapped)[PS_MAX_NR_IIDICC],
540cabdff1aSopenharmony_ci                    int8_t           (*par)[PS_MAX_NR_IIDICC],
541cabdff1aSopenharmony_ci                    int num_par, int num_env, int full)
542cabdff1aSopenharmony_ci{
543cabdff1aSopenharmony_ci    int8_t (*par_mapped)[PS_MAX_NR_IIDICC] = *p_par_mapped;
544cabdff1aSopenharmony_ci    int e;
545cabdff1aSopenharmony_ci    if (num_par == 34 || num_par == 17) {
546cabdff1aSopenharmony_ci        for (e = 0; e < num_env; e++) {
547cabdff1aSopenharmony_ci            map_idx_34_to_20(par_mapped[e], par[e], full);
548cabdff1aSopenharmony_ci        }
549cabdff1aSopenharmony_ci    } else if (num_par == 10 || num_par == 5) {
550cabdff1aSopenharmony_ci        for (e = 0; e < num_env; e++) {
551cabdff1aSopenharmony_ci            map_idx_10_to_20(par_mapped[e], par[e], full);
552cabdff1aSopenharmony_ci        }
553cabdff1aSopenharmony_ci    } else {
554cabdff1aSopenharmony_ci        *p_par_mapped = par;
555cabdff1aSopenharmony_ci    }
556cabdff1aSopenharmony_ci}
557cabdff1aSopenharmony_ci
558cabdff1aSopenharmony_cistatic void stereo_processing(PSContext *ps, INTFLOAT (*l)[32][2], INTFLOAT (*r)[32][2], int is34)
559cabdff1aSopenharmony_ci{
560cabdff1aSopenharmony_ci    int e, b, k;
561cabdff1aSopenharmony_ci
562cabdff1aSopenharmony_ci    PSCommonContext *const ps2 = &ps->common;
563cabdff1aSopenharmony_ci    INTFLOAT (*H11)[PS_MAX_NUM_ENV+1][PS_MAX_NR_IIDICC] = ps->H11;
564cabdff1aSopenharmony_ci    INTFLOAT (*H12)[PS_MAX_NUM_ENV+1][PS_MAX_NR_IIDICC] = ps->H12;
565cabdff1aSopenharmony_ci    INTFLOAT (*H21)[PS_MAX_NUM_ENV+1][PS_MAX_NR_IIDICC] = ps->H21;
566cabdff1aSopenharmony_ci    INTFLOAT (*H22)[PS_MAX_NUM_ENV+1][PS_MAX_NR_IIDICC] = ps->H22;
567cabdff1aSopenharmony_ci    int8_t *opd_hist = ps->opd_hist;
568cabdff1aSopenharmony_ci    int8_t *ipd_hist = ps->ipd_hist;
569cabdff1aSopenharmony_ci    int8_t iid_mapped_buf[PS_MAX_NUM_ENV][PS_MAX_NR_IIDICC];
570cabdff1aSopenharmony_ci    int8_t icc_mapped_buf[PS_MAX_NUM_ENV][PS_MAX_NR_IIDICC];
571cabdff1aSopenharmony_ci    int8_t ipd_mapped_buf[PS_MAX_NUM_ENV][PS_MAX_NR_IIDICC];
572cabdff1aSopenharmony_ci    int8_t opd_mapped_buf[PS_MAX_NUM_ENV][PS_MAX_NR_IIDICC];
573cabdff1aSopenharmony_ci    int8_t (*iid_mapped)[PS_MAX_NR_IIDICC] = iid_mapped_buf;
574cabdff1aSopenharmony_ci    int8_t (*icc_mapped)[PS_MAX_NR_IIDICC] = icc_mapped_buf;
575cabdff1aSopenharmony_ci    int8_t (*ipd_mapped)[PS_MAX_NR_IIDICC] = ipd_mapped_buf;
576cabdff1aSopenharmony_ci    int8_t (*opd_mapped)[PS_MAX_NR_IIDICC] = opd_mapped_buf;
577cabdff1aSopenharmony_ci    const int8_t *const k_to_i = is34 ? ff_k_to_i_34 : ff_k_to_i_20;
578cabdff1aSopenharmony_ci    TABLE_CONST INTFLOAT (*H_LUT)[8][4] = (PS_BASELINE || ps2->icc_mode < 3) ? HA : HB;
579cabdff1aSopenharmony_ci
580cabdff1aSopenharmony_ci    //Remapping
581cabdff1aSopenharmony_ci    if (ps2->num_env_old) {
582cabdff1aSopenharmony_ci        memcpy(H11[0][0], H11[0][ps2->num_env_old], sizeof(H11[0][0]));
583cabdff1aSopenharmony_ci        memcpy(H11[1][0], H11[1][ps2->num_env_old], sizeof(H11[1][0]));
584cabdff1aSopenharmony_ci        memcpy(H12[0][0], H12[0][ps2->num_env_old], sizeof(H12[0][0]));
585cabdff1aSopenharmony_ci        memcpy(H12[1][0], H12[1][ps2->num_env_old], sizeof(H12[1][0]));
586cabdff1aSopenharmony_ci        memcpy(H21[0][0], H21[0][ps2->num_env_old], sizeof(H21[0][0]));
587cabdff1aSopenharmony_ci        memcpy(H21[1][0], H21[1][ps2->num_env_old], sizeof(H21[1][0]));
588cabdff1aSopenharmony_ci        memcpy(H22[0][0], H22[0][ps2->num_env_old], sizeof(H22[0][0]));
589cabdff1aSopenharmony_ci        memcpy(H22[1][0], H22[1][ps2->num_env_old], sizeof(H22[1][0]));
590cabdff1aSopenharmony_ci    }
591cabdff1aSopenharmony_ci
592cabdff1aSopenharmony_ci    if (is34) {
593cabdff1aSopenharmony_ci        remap34(&iid_mapped, ps2->iid_par, ps2->nr_iid_par, ps2->num_env, 1);
594cabdff1aSopenharmony_ci        remap34(&icc_mapped, ps2->icc_par, ps2->nr_icc_par, ps2->num_env, 1);
595cabdff1aSopenharmony_ci        if (ps2->enable_ipdopd) {
596cabdff1aSopenharmony_ci            remap34(&ipd_mapped, ps2->ipd_par, ps2->nr_ipdopd_par, ps2->num_env, 0);
597cabdff1aSopenharmony_ci            remap34(&opd_mapped, ps2->opd_par, ps2->nr_ipdopd_par, ps2->num_env, 0);
598cabdff1aSopenharmony_ci        }
599cabdff1aSopenharmony_ci        if (!ps2->is34bands_old) {
600cabdff1aSopenharmony_ci            map_val_20_to_34(H11[0][0]);
601cabdff1aSopenharmony_ci            map_val_20_to_34(H11[1][0]);
602cabdff1aSopenharmony_ci            map_val_20_to_34(H12[0][0]);
603cabdff1aSopenharmony_ci            map_val_20_to_34(H12[1][0]);
604cabdff1aSopenharmony_ci            map_val_20_to_34(H21[0][0]);
605cabdff1aSopenharmony_ci            map_val_20_to_34(H21[1][0]);
606cabdff1aSopenharmony_ci            map_val_20_to_34(H22[0][0]);
607cabdff1aSopenharmony_ci            map_val_20_to_34(H22[1][0]);
608cabdff1aSopenharmony_ci            ipdopd_reset(ipd_hist, opd_hist);
609cabdff1aSopenharmony_ci        }
610cabdff1aSopenharmony_ci    } else {
611cabdff1aSopenharmony_ci        remap20(&iid_mapped, ps2->iid_par, ps2->nr_iid_par, ps2->num_env, 1);
612cabdff1aSopenharmony_ci        remap20(&icc_mapped, ps2->icc_par, ps2->nr_icc_par, ps2->num_env, 1);
613cabdff1aSopenharmony_ci        if (ps2->enable_ipdopd) {
614cabdff1aSopenharmony_ci            remap20(&ipd_mapped, ps2->ipd_par, ps2->nr_ipdopd_par, ps2->num_env, 0);
615cabdff1aSopenharmony_ci            remap20(&opd_mapped, ps2->opd_par, ps2->nr_ipdopd_par, ps2->num_env, 0);
616cabdff1aSopenharmony_ci        }
617cabdff1aSopenharmony_ci        if (ps2->is34bands_old) {
618cabdff1aSopenharmony_ci            map_val_34_to_20(H11[0][0]);
619cabdff1aSopenharmony_ci            map_val_34_to_20(H11[1][0]);
620cabdff1aSopenharmony_ci            map_val_34_to_20(H12[0][0]);
621cabdff1aSopenharmony_ci            map_val_34_to_20(H12[1][0]);
622cabdff1aSopenharmony_ci            map_val_34_to_20(H21[0][0]);
623cabdff1aSopenharmony_ci            map_val_34_to_20(H21[1][0]);
624cabdff1aSopenharmony_ci            map_val_34_to_20(H22[0][0]);
625cabdff1aSopenharmony_ci            map_val_34_to_20(H22[1][0]);
626cabdff1aSopenharmony_ci            ipdopd_reset(ipd_hist, opd_hist);
627cabdff1aSopenharmony_ci        }
628cabdff1aSopenharmony_ci    }
629cabdff1aSopenharmony_ci
630cabdff1aSopenharmony_ci    //Mixing
631cabdff1aSopenharmony_ci    for (e = 0; e < ps2->num_env; e++) {
632cabdff1aSopenharmony_ci        for (b = 0; b < NR_PAR_BANDS[is34]; b++) {
633cabdff1aSopenharmony_ci            INTFLOAT h11, h12, h21, h22;
634cabdff1aSopenharmony_ci            h11 = H_LUT[iid_mapped[e][b] + 7 + 23 * ps2->iid_quant][icc_mapped[e][b]][0];
635cabdff1aSopenharmony_ci            h12 = H_LUT[iid_mapped[e][b] + 7 + 23 * ps2->iid_quant][icc_mapped[e][b]][1];
636cabdff1aSopenharmony_ci            h21 = H_LUT[iid_mapped[e][b] + 7 + 23 * ps2->iid_quant][icc_mapped[e][b]][2];
637cabdff1aSopenharmony_ci            h22 = H_LUT[iid_mapped[e][b] + 7 + 23 * ps2->iid_quant][icc_mapped[e][b]][3];
638cabdff1aSopenharmony_ci
639cabdff1aSopenharmony_ci            if (!PS_BASELINE && ps2->enable_ipdopd && b < NR_IPDOPD_BANDS[is34]) {
640cabdff1aSopenharmony_ci                //The spec say says to only run this smoother when enable_ipdopd
641cabdff1aSopenharmony_ci                //is set but the reference decoder appears to run it constantly
642cabdff1aSopenharmony_ci                INTFLOAT h11i, h12i, h21i, h22i;
643cabdff1aSopenharmony_ci                INTFLOAT ipd_adj_re, ipd_adj_im;
644cabdff1aSopenharmony_ci                int opd_idx = opd_hist[b] * 8 + opd_mapped[e][b];
645cabdff1aSopenharmony_ci                int ipd_idx = ipd_hist[b] * 8 + ipd_mapped[e][b];
646cabdff1aSopenharmony_ci                INTFLOAT opd_re = pd_re_smooth[opd_idx];
647cabdff1aSopenharmony_ci                INTFLOAT opd_im = pd_im_smooth[opd_idx];
648cabdff1aSopenharmony_ci                INTFLOAT ipd_re = pd_re_smooth[ipd_idx];
649cabdff1aSopenharmony_ci                INTFLOAT ipd_im = pd_im_smooth[ipd_idx];
650cabdff1aSopenharmony_ci                opd_hist[b] = opd_idx & 0x3F;
651cabdff1aSopenharmony_ci                ipd_hist[b] = ipd_idx & 0x3F;
652cabdff1aSopenharmony_ci
653cabdff1aSopenharmony_ci                ipd_adj_re = AAC_MADD30(opd_re, ipd_re, opd_im, ipd_im);
654cabdff1aSopenharmony_ci                ipd_adj_im = AAC_MSUB30(opd_im, ipd_re, opd_re, ipd_im);
655cabdff1aSopenharmony_ci                h11i = AAC_MUL30(h11,  opd_im);
656cabdff1aSopenharmony_ci                h11  = AAC_MUL30(h11,  opd_re);
657cabdff1aSopenharmony_ci                h12i = AAC_MUL30(h12,  ipd_adj_im);
658cabdff1aSopenharmony_ci                h12  = AAC_MUL30(h12,  ipd_adj_re);
659cabdff1aSopenharmony_ci                h21i = AAC_MUL30(h21,  opd_im);
660cabdff1aSopenharmony_ci                h21  = AAC_MUL30(h21,  opd_re);
661cabdff1aSopenharmony_ci                h22i = AAC_MUL30(h22,  ipd_adj_im);
662cabdff1aSopenharmony_ci                h22  = AAC_MUL30(h22,  ipd_adj_re);
663cabdff1aSopenharmony_ci                H11[1][e+1][b] = h11i;
664cabdff1aSopenharmony_ci                H12[1][e+1][b] = h12i;
665cabdff1aSopenharmony_ci                H21[1][e+1][b] = h21i;
666cabdff1aSopenharmony_ci                H22[1][e+1][b] = h22i;
667cabdff1aSopenharmony_ci            }
668cabdff1aSopenharmony_ci            H11[0][e+1][b] = h11;
669cabdff1aSopenharmony_ci            H12[0][e+1][b] = h12;
670cabdff1aSopenharmony_ci            H21[0][e+1][b] = h21;
671cabdff1aSopenharmony_ci            H22[0][e+1][b] = h22;
672cabdff1aSopenharmony_ci        }
673cabdff1aSopenharmony_ci        for (k = 0; k < NR_BANDS[is34]; k++) {
674cabdff1aSopenharmony_ci            LOCAL_ALIGNED_16(INTFLOAT, h, [2], [4]);
675cabdff1aSopenharmony_ci            LOCAL_ALIGNED_16(INTFLOAT, h_step, [2], [4]);
676cabdff1aSopenharmony_ci            int start = ps2->border_position[e];
677cabdff1aSopenharmony_ci            int stop  = ps2->border_position[e+1];
678cabdff1aSopenharmony_ci            INTFLOAT width = Q30(1.f) / ((stop - start) ? (stop - start) : 1);
679cabdff1aSopenharmony_ci#if USE_FIXED
680cabdff1aSopenharmony_ci            width = FFMIN(2U*width, INT_MAX);
681cabdff1aSopenharmony_ci#endif
682cabdff1aSopenharmony_ci            b = k_to_i[k];
683cabdff1aSopenharmony_ci            h[0][0] = H11[0][e][b];
684cabdff1aSopenharmony_ci            h[0][1] = H12[0][e][b];
685cabdff1aSopenharmony_ci            h[0][2] = H21[0][e][b];
686cabdff1aSopenharmony_ci            h[0][3] = H22[0][e][b];
687cabdff1aSopenharmony_ci            if (!PS_BASELINE && ps2->enable_ipdopd) {
688cabdff1aSopenharmony_ci            //Is this necessary? ps_04_new seems unchanged
689cabdff1aSopenharmony_ci            if ((is34 && k <= 13 && k >= 9) || (!is34 && k <= 1)) {
690cabdff1aSopenharmony_ci                h[1][0] = -H11[1][e][b];
691cabdff1aSopenharmony_ci                h[1][1] = -H12[1][e][b];
692cabdff1aSopenharmony_ci                h[1][2] = -H21[1][e][b];
693cabdff1aSopenharmony_ci                h[1][3] = -H22[1][e][b];
694cabdff1aSopenharmony_ci            } else {
695cabdff1aSopenharmony_ci                h[1][0] = H11[1][e][b];
696cabdff1aSopenharmony_ci                h[1][1] = H12[1][e][b];
697cabdff1aSopenharmony_ci                h[1][2] = H21[1][e][b];
698cabdff1aSopenharmony_ci                h[1][3] = H22[1][e][b];
699cabdff1aSopenharmony_ci            }
700cabdff1aSopenharmony_ci            }
701cabdff1aSopenharmony_ci            //Interpolation
702cabdff1aSopenharmony_ci            h_step[0][0] = AAC_MSUB31_V3(H11[0][e+1][b], h[0][0], width);
703cabdff1aSopenharmony_ci            h_step[0][1] = AAC_MSUB31_V3(H12[0][e+1][b], h[0][1], width);
704cabdff1aSopenharmony_ci            h_step[0][2] = AAC_MSUB31_V3(H21[0][e+1][b], h[0][2], width);
705cabdff1aSopenharmony_ci            h_step[0][3] = AAC_MSUB31_V3(H22[0][e+1][b], h[0][3], width);
706cabdff1aSopenharmony_ci            if (!PS_BASELINE && ps2->enable_ipdopd) {
707cabdff1aSopenharmony_ci                h_step[1][0] = AAC_MSUB31_V3(H11[1][e+1][b], h[1][0], width);
708cabdff1aSopenharmony_ci                h_step[1][1] = AAC_MSUB31_V3(H12[1][e+1][b], h[1][1], width);
709cabdff1aSopenharmony_ci                h_step[1][2] = AAC_MSUB31_V3(H21[1][e+1][b], h[1][2], width);
710cabdff1aSopenharmony_ci                h_step[1][3] = AAC_MSUB31_V3(H22[1][e+1][b], h[1][3], width);
711cabdff1aSopenharmony_ci            }
712cabdff1aSopenharmony_ci            if (stop - start)
713cabdff1aSopenharmony_ci                ps->dsp.stereo_interpolate[!PS_BASELINE && ps2->enable_ipdopd](
714cabdff1aSopenharmony_ci                    l[k] + 1 + start, r[k] + 1 + start,
715cabdff1aSopenharmony_ci                    h, h_step, stop - start);
716cabdff1aSopenharmony_ci        }
717cabdff1aSopenharmony_ci    }
718cabdff1aSopenharmony_ci}
719cabdff1aSopenharmony_ci
720cabdff1aSopenharmony_ciint AAC_RENAME(ff_ps_apply)(AVCodecContext *avctx, PSContext *ps, INTFLOAT L[2][38][64], INTFLOAT R[2][38][64], int top)
721cabdff1aSopenharmony_ci{
722cabdff1aSopenharmony_ci    INTFLOAT (*Lbuf)[32][2] = ps->Lbuf;
723cabdff1aSopenharmony_ci    INTFLOAT (*Rbuf)[32][2] = ps->Rbuf;
724cabdff1aSopenharmony_ci    const int len = 32;
725cabdff1aSopenharmony_ci    int is34 = ps->common.is34bands;
726cabdff1aSopenharmony_ci
727cabdff1aSopenharmony_ci    top += NR_BANDS[is34] - 64;
728cabdff1aSopenharmony_ci    memset(ps->delay+top, 0, (NR_BANDS[is34] - top)*sizeof(ps->delay[0]));
729cabdff1aSopenharmony_ci    if (top < NR_ALLPASS_BANDS[is34])
730cabdff1aSopenharmony_ci        memset(ps->ap_delay + top, 0, (NR_ALLPASS_BANDS[is34] - top)*sizeof(ps->ap_delay[0]));
731cabdff1aSopenharmony_ci
732cabdff1aSopenharmony_ci    hybrid_analysis(&ps->dsp, Lbuf, ps->in_buf, L, is34, len);
733cabdff1aSopenharmony_ci    decorrelation(ps, Rbuf, (const INTFLOAT (*)[32][2]) Lbuf, is34);
734cabdff1aSopenharmony_ci    stereo_processing(ps, Lbuf, Rbuf, is34);
735cabdff1aSopenharmony_ci    hybrid_synthesis(&ps->dsp, L, Lbuf, is34, len);
736cabdff1aSopenharmony_ci    hybrid_synthesis(&ps->dsp, R, Rbuf, is34, len);
737cabdff1aSopenharmony_ci
738cabdff1aSopenharmony_ci    return 0;
739cabdff1aSopenharmony_ci}
740cabdff1aSopenharmony_ci
741cabdff1aSopenharmony_ciav_cold void AAC_RENAME(ff_ps_init)(void) {
742cabdff1aSopenharmony_ci    ps_tableinit();
743cabdff1aSopenharmony_ci    ff_ps_init_common();
744cabdff1aSopenharmony_ci}
745cabdff1aSopenharmony_ci
746cabdff1aSopenharmony_ciav_cold void AAC_RENAME(ff_ps_ctx_init)(PSContext *ps)
747cabdff1aSopenharmony_ci{
748cabdff1aSopenharmony_ci    AAC_RENAME(ff_psdsp_init)(&ps->dsp);
749cabdff1aSopenharmony_ci}
750