Coverage Report

Created: 2026-01-13 06:51

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/src/aac/libFDK/include/fft.h
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/* -----------------------------------------------------------------------------
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Software License for The Fraunhofer FDK AAC Codec Library for Android
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© Copyright  1995 - 2018 Fraunhofer-Gesellschaft zur Förderung der angewandten
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Forschung e.V. All rights reserved.
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 1.    INTRODUCTION
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The Fraunhofer FDK AAC Codec Library for Android ("FDK AAC Codec") is software
9
that implements the MPEG Advanced Audio Coding ("AAC") encoding and decoding
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scheme for digital audio. This FDK AAC Codec software is intended to be used on
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a wide variety of Android devices.
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AAC's HE-AAC and HE-AAC v2 versions are regarded as today's most efficient
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general perceptual audio codecs. AAC-ELD is considered the best-performing
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full-bandwidth communications codec by independent studies and is widely
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deployed. AAC has been standardized by ISO and IEC as part of the MPEG
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specifications.
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Patent licenses for necessary patent claims for the FDK AAC Codec (including
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those of Fraunhofer) may be obtained through Via Licensing
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(www.vialicensing.com) or through the respective patent owners individually for
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the purpose of encoding or decoding bit streams in products that are compliant
23
with the ISO/IEC MPEG audio standards. Please note that most manufacturers of
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Android devices already license these patent claims through Via Licensing or
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directly from the patent owners, and therefore FDK AAC Codec software may
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already be covered under those patent licenses when it is used for those
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licensed purposes only.
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Commercially-licensed AAC software libraries, including floating-point versions
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with enhanced sound quality, are also available from Fraunhofer. Users are
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encouraged to check the Fraunhofer website for additional applications
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information and documentation.
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2.    COPYRIGHT LICENSE
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Redistribution and use in source and binary forms, with or without modification,
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are permitted without payment of copyright license fees provided that you
38
satisfy the following conditions:
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You must retain the complete text of this software license in redistributions of
41
the FDK AAC Codec or your modifications thereto in source code form.
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You must retain the complete text of this software license in the documentation
44
and/or other materials provided with redistributions of the FDK AAC Codec or
45
your modifications thereto in binary form. You must make available free of
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charge copies of the complete source code of the FDK AAC Codec and your
47
modifications thereto to recipients of copies in binary form.
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The name of Fraunhofer may not be used to endorse or promote products derived
50
from this library without prior written permission.
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You may not charge copyright license fees for anyone to use, copy or distribute
53
the FDK AAC Codec software or your modifications thereto.
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55
Your modified versions of the FDK AAC Codec must carry prominent notices stating
56
that you changed the software and the date of any change. For modified versions
57
of the FDK AAC Codec, the term "Fraunhofer FDK AAC Codec Library for Android"
58
must be replaced by the term "Third-Party Modified Version of the Fraunhofer FDK
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AAC Codec Library for Android."
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3.    NO PATENT LICENSE
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NO EXPRESS OR IMPLIED LICENSES TO ANY PATENT CLAIMS, including without
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limitation the patents of Fraunhofer, ARE GRANTED BY THIS SOFTWARE LICENSE.
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Fraunhofer provides no warranty of patent non-infringement with respect to this
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software.
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You may use this FDK AAC Codec software or modifications thereto only for
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purposes that are authorized by appropriate patent licenses.
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4.    DISCLAIMER
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This FDK AAC Codec software is provided by Fraunhofer on behalf of the copyright
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holders and contributors "AS IS" and WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES,
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including but not limited to the implied warranties of merchantability and
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fitness for a particular purpose. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE for any direct, indirect, incidental, special, exemplary,
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or consequential damages, including but not limited to procurement of substitute
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goods or services; loss of use, data, or profits, or business interruption,
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however caused and on any theory of liability, whether in contract, strict
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liability, or tort (including negligence), arising in any way out of the use of
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this software, even if advised of the possibility of such damage.
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5.    CONTACT INFORMATION
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Fraunhofer Institute for Integrated Circuits IIS
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Attention: Audio and Multimedia Departments - FDK AAC LL
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Am Wolfsmantel 33
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91058 Erlangen, Germany
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www.iis.fraunhofer.de/amm
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amm-info@iis.fraunhofer.de
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----------------------------------------------------------------------------- */
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/******************* Library for basic calculation routines ********************
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   Author(s):   Josef Hoepfl, DSP Solutions
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   Description: Fix point FFT
100
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*******************************************************************************/
102
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#ifndef FFT_H
104
#define FFT_H
105
106
#include "common_fix.h"
107
108
/**
109
 * \brief Perform an inplace complex valued FFT of length 2^n
110
 *
111
 * \param length Length of the FFT to be calculated.
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 * \param pInput Input/Output data buffer. The input data must have at least 1
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 * bit scale headroom. The values are interleaved, real/imag pairs.
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 * \param scalefactor Pointer to an INT, which contains the current scale of the
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 * input data, which is updated according to the FFT scale.
116
 */
117
void fft(int length, FIXP_DBL *pInput, INT *scalefactor);
118
119
/**
120
 * \brief Perform an inplace complex valued IFFT of length 2^n
121
 *
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 * \param length Length of the FFT to be calculated.
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 * \param pInput Input/Output data buffer. The input data must have at least 1
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 * bit scale headroom. The values are interleaved, real/imag pairs.
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 * \param scalefactor Pointer to an INT, which contains the current scale of the
126
 * input data, which is updated according to the IFFT scale.
127
 */
128
void ifft(int length, FIXP_DBL *pInput, INT *scalefactor);
129
130
/*
131
 * Frequently used and fixed short length FFTs.
132
 */
133
134
#ifndef FUNCTION_fft_4
135
/**
136
 * \brief Perform an inplace complex valued FFT of length 4
137
 *
138
 * \param pInput Input/Output data buffer. The input data must have at least 1
139
 * bit scale headroom. The values are interleaved, real/imag pairs.
140
 */
141
LNK_SECTION_CODE_L1
142
10.0M
static void FDK_FORCEINLINE fft_4(FIXP_DBL *x) {
143
10.0M
  FIXP_DBL a00, a10, a20, a30, tmp0, tmp1;
144
145
10.0M
  a00 = (x[0] + x[4]) >> 1; /* Re A + Re B */
146
10.0M
  a10 = (x[2] + x[6]) >> 1; /* Re C + Re D */
147
10.0M
  a20 = (x[1] + x[5]) >> 1; /* Im A + Im B */
148
10.0M
  a30 = (x[3] + x[7]) >> 1; /* Im C + Im D */
149
150
10.0M
  x[0] = a00 + a10; /* Re A' = Re A + Re B + Re C + Re D */
151
10.0M
  x[1] = a20 + a30; /* Im A' = Im A + Im B + Im C + Im D */
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153
10.0M
  tmp0 = a00 - x[4]; /* Re A - Re B */
154
10.0M
  tmp1 = a20 - x[5]; /* Im A - Im B */
155
156
10.0M
  x[4] = a00 - a10; /* Re C' = Re A + Re B - Re C - Re D */
157
10.0M
  x[5] = a20 - a30; /* Im C' = Im A + Im B - Im C - Im D */
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159
10.0M
  a10 = a10 - x[6]; /* Re C - Re D */
160
10.0M
  a30 = a30 - x[7]; /* Im C - Im D */
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10.0M
  x[2] = tmp0 + a30; /* Re B' = Re A - Re B + Im C - Im D */
163
10.0M
  x[6] = tmp0 - a30; /* Re D' = Re A - Re B - Im C + Im D */
164
10.0M
  x[3] = tmp1 - a10; /* Im B' = Im A - Im B - Re C + Re D */
165
10.0M
  x[7] = tmp1 + a10; /* Im D' = Im A - Im B + Re C - Re D */
166
10.0M
}
Unexecuted instantiation: FDK_hybrid.cpp:fft_4(int*)
Unexecuted instantiation: dct.cpp:fft_4(int*)
fft.cpp:fft_4(int*)
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142
10.0M
static void FDK_FORCEINLINE fft_4(FIXP_DBL *x) {
143
10.0M
  FIXP_DBL a00, a10, a20, a30, tmp0, tmp1;
144
145
10.0M
  a00 = (x[0] + x[4]) >> 1; /* Re A + Re B */
146
10.0M
  a10 = (x[2] + x[6]) >> 1; /* Re C + Re D */
147
10.0M
  a20 = (x[1] + x[5]) >> 1; /* Im A + Im B */
148
10.0M
  a30 = (x[3] + x[7]) >> 1; /* Im C + Im D */
149
150
10.0M
  x[0] = a00 + a10; /* Re A' = Re A + Re B + Re C + Re D */
151
10.0M
  x[1] = a20 + a30; /* Im A' = Im A + Im B + Im C + Im D */
152
153
10.0M
  tmp0 = a00 - x[4]; /* Re A - Re B */
154
10.0M
  tmp1 = a20 - x[5]; /* Im A - Im B */
155
156
10.0M
  x[4] = a00 - a10; /* Re C' = Re A + Re B - Re C - Re D */
157
10.0M
  x[5] = a20 - a30; /* Im C' = Im A + Im B - Im C - Im D */
158
159
10.0M
  a10 = a10 - x[6]; /* Re C - Re D */
160
10.0M
  a30 = a30 - x[7]; /* Im C - Im D */
161
162
10.0M
  x[2] = tmp0 + a30; /* Re B' = Re A - Re B + Im C - Im D */
163
10.0M
  x[6] = tmp0 - a30; /* Re D' = Re A - Re B - Im C + Im D */
164
10.0M
  x[3] = tmp1 - a10; /* Im B' = Im A - Im B - Re C + Re D */
165
10.0M
  x[7] = tmp1 + a10; /* Im D' = Im A - Im B + Re C - Re D */
166
10.0M
}
Unexecuted instantiation: usacdec_lpd.cpp:fft_4(int*)
167
#endif /* FUNCTION_fft_4 */
168
169
#ifndef FUNCTION_fft_8
170
LNK_SECTION_CODE_L1
171
12.9M
static void FDK_FORCEINLINE fft_8(FIXP_DBL *x) {
172
12.9M
  FIXP_SPK w_PiFOURTH = {{FIXP_SGL(0x5A82), FIXP_SGL(0x5A82)}};
173
174
12.9M
  FIXP_DBL a00, a10, a20, a30;
175
12.9M
  FIXP_DBL y[16];
176
177
12.9M
  a00 = (x[0] + x[8]) >> 1;
178
12.9M
  a10 = x[4] + x[12];
179
12.9M
  a20 = (x[1] + x[9]) >> 1;
180
12.9M
  a30 = x[5] + x[13];
181
182
12.9M
  y[0] = a00 + (a10 >> 1);
183
12.9M
  y[4] = a00 - (a10 >> 1);
184
12.9M
  y[1] = a20 + (a30 >> 1);
185
12.9M
  y[5] = a20 - (a30 >> 1);
186
187
12.9M
  a00 = a00 - x[8];
188
12.9M
  a10 = (a10 >> 1) - x[12];
189
12.9M
  a20 = a20 - x[9];
190
12.9M
  a30 = (a30 >> 1) - x[13];
191
192
12.9M
  y[2] = a00 + a30;
193
12.9M
  y[6] = a00 - a30;
194
12.9M
  y[3] = a20 - a10;
195
12.9M
  y[7] = a20 + a10;
196
197
12.9M
  a00 = (x[2] + x[10]) >> 1;
198
12.9M
  a10 = x[6] + x[14];
199
12.9M
  a20 = (x[3] + x[11]) >> 1;
200
12.9M
  a30 = x[7] + x[15];
201
202
12.9M
  y[8] = a00 + (a10 >> 1);
203
12.9M
  y[12] = a00 - (a10 >> 1);
204
12.9M
  y[9] = a20 + (a30 >> 1);
205
12.9M
  y[13] = a20 - (a30 >> 1);
206
207
12.9M
  a00 = a00 - x[10];
208
12.9M
  a10 = (a10 >> 1) - x[14];
209
12.9M
  a20 = a20 - x[11];
210
12.9M
  a30 = (a30 >> 1) - x[15];
211
212
12.9M
  y[10] = a00 + a30;
213
12.9M
  y[14] = a00 - a30;
214
12.9M
  y[11] = a20 - a10;
215
12.9M
  y[15] = a20 + a10;
216
217
12.9M
  FIXP_DBL vr, vi, ur, ui;
218
219
12.9M
  ur = y[0] >> 1;
220
12.9M
  ui = y[1] >> 1;
221
12.9M
  vr = y[8];
222
12.9M
  vi = y[9];
223
12.9M
  x[0] = ur + (vr >> 1);
224
12.9M
  x[1] = ui + (vi >> 1);
225
12.9M
  x[8] = ur - (vr >> 1);
226
12.9M
  x[9] = ui - (vi >> 1);
227
228
12.9M
  ur = y[4] >> 1;
229
12.9M
  ui = y[5] >> 1;
230
12.9M
  vi = y[12];
231
12.9M
  vr = y[13];
232
12.9M
  x[4] = ur + (vr >> 1);
233
12.9M
  x[5] = ui - (vi >> 1);
234
12.9M
  x[12] = ur - (vr >> 1);
235
12.9M
  x[13] = ui + (vi >> 1);
236
237
12.9M
  ur = y[10];
238
12.9M
  ui = y[11];
239
240
12.9M
  cplxMultDiv2(&vi, &vr, ui, ur, w_PiFOURTH);
241
242
12.9M
  ur = y[2];
243
12.9M
  ui = y[3];
244
12.9M
  x[2] = (ur >> 1) + vr;
245
12.9M
  x[3] = (ui >> 1) + vi;
246
12.9M
  x[10] = (ur >> 1) - vr;
247
12.9M
  x[11] = (ui >> 1) - vi;
248
249
12.9M
  ur = y[14];
250
12.9M
  ui = y[15];
251
252
12.9M
  cplxMultDiv2(&vr, &vi, ui, ur, w_PiFOURTH);
253
254
12.9M
  ur = y[6];
255
12.9M
  ui = y[7];
256
12.9M
  x[6] = (ur >> 1) + vr;
257
12.9M
  x[7] = (ui >> 1) - vi;
258
12.9M
  x[14] = (ur >> 1) - vr;
259
12.9M
  x[15] = (ui >> 1) + vi;
260
12.9M
}
FDK_hybrid.cpp:fft_8(int*)
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Source
171
5.99M
static void FDK_FORCEINLINE fft_8(FIXP_DBL *x) {
172
5.99M
  FIXP_SPK w_PiFOURTH = {{FIXP_SGL(0x5A82), FIXP_SGL(0x5A82)}};
173
174
5.99M
  FIXP_DBL a00, a10, a20, a30;
175
5.99M
  FIXP_DBL y[16];
176
177
5.99M
  a00 = (x[0] + x[8]) >> 1;
178
5.99M
  a10 = x[4] + x[12];
179
5.99M
  a20 = (x[1] + x[9]) >> 1;
180
5.99M
  a30 = x[5] + x[13];
181
182
5.99M
  y[0] = a00 + (a10 >> 1);
183
5.99M
  y[4] = a00 - (a10 >> 1);
184
5.99M
  y[1] = a20 + (a30 >> 1);
185
5.99M
  y[5] = a20 - (a30 >> 1);
186
187
5.99M
  a00 = a00 - x[8];
188
5.99M
  a10 = (a10 >> 1) - x[12];
189
5.99M
  a20 = a20 - x[9];
190
5.99M
  a30 = (a30 >> 1) - x[13];
191
192
5.99M
  y[2] = a00 + a30;
193
5.99M
  y[6] = a00 - a30;
194
5.99M
  y[3] = a20 - a10;
195
5.99M
  y[7] = a20 + a10;
196
197
5.99M
  a00 = (x[2] + x[10]) >> 1;
198
5.99M
  a10 = x[6] + x[14];
199
5.99M
  a20 = (x[3] + x[11]) >> 1;
200
5.99M
  a30 = x[7] + x[15];
201
202
5.99M
  y[8] = a00 + (a10 >> 1);
203
5.99M
  y[12] = a00 - (a10 >> 1);
204
5.99M
  y[9] = a20 + (a30 >> 1);
205
5.99M
  y[13] = a20 - (a30 >> 1);
206
207
5.99M
  a00 = a00 - x[10];
208
5.99M
  a10 = (a10 >> 1) - x[14];
209
5.99M
  a20 = a20 - x[11];
210
5.99M
  a30 = (a30 >> 1) - x[15];
211
212
5.99M
  y[10] = a00 + a30;
213
5.99M
  y[14] = a00 - a30;
214
5.99M
  y[11] = a20 - a10;
215
5.99M
  y[15] = a20 + a10;
216
217
5.99M
  FIXP_DBL vr, vi, ur, ui;
218
219
5.99M
  ur = y[0] >> 1;
220
5.99M
  ui = y[1] >> 1;
221
5.99M
  vr = y[8];
222
5.99M
  vi = y[9];
223
5.99M
  x[0] = ur + (vr >> 1);
224
5.99M
  x[1] = ui + (vi >> 1);
225
5.99M
  x[8] = ur - (vr >> 1);
226
5.99M
  x[9] = ui - (vi >> 1);
227
228
5.99M
  ur = y[4] >> 1;
229
5.99M
  ui = y[5] >> 1;
230
5.99M
  vi = y[12];
231
5.99M
  vr = y[13];
232
5.99M
  x[4] = ur + (vr >> 1);
233
5.99M
  x[5] = ui - (vi >> 1);
234
5.99M
  x[12] = ur - (vr >> 1);
235
5.99M
  x[13] = ui + (vi >> 1);
236
237
5.99M
  ur = y[10];
238
5.99M
  ui = y[11];
239
240
5.99M
  cplxMultDiv2(&vi, &vr, ui, ur, w_PiFOURTH);
241
242
5.99M
  ur = y[2];
243
5.99M
  ui = y[3];
244
5.99M
  x[2] = (ur >> 1) + vr;
245
5.99M
  x[3] = (ui >> 1) + vi;
246
5.99M
  x[10] = (ur >> 1) - vr;
247
5.99M
  x[11] = (ui >> 1) - vi;
248
249
5.99M
  ur = y[14];
250
5.99M
  ui = y[15];
251
252
5.99M
  cplxMultDiv2(&vr, &vi, ui, ur, w_PiFOURTH);
253
254
5.99M
  ur = y[6];
255
5.99M
  ui = y[7];
256
5.99M
  x[6] = (ur >> 1) + vr;
257
5.99M
  x[7] = (ui >> 1) - vi;
258
5.99M
  x[14] = (ur >> 1) - vr;
259
5.99M
  x[15] = (ui >> 1) + vi;
260
5.99M
}
Unexecuted instantiation: dct.cpp:fft_8(int*)
fft.cpp:fft_8(int*)
Line
Count
Source
171
6.94M
static void FDK_FORCEINLINE fft_8(FIXP_DBL *x) {
172
6.94M
  FIXP_SPK w_PiFOURTH = {{FIXP_SGL(0x5A82), FIXP_SGL(0x5A82)}};
173
174
6.94M
  FIXP_DBL a00, a10, a20, a30;
175
6.94M
  FIXP_DBL y[16];
176
177
6.94M
  a00 = (x[0] + x[8]) >> 1;
178
6.94M
  a10 = x[4] + x[12];
179
6.94M
  a20 = (x[1] + x[9]) >> 1;
180
6.94M
  a30 = x[5] + x[13];
181
182
6.94M
  y[0] = a00 + (a10 >> 1);
183
6.94M
  y[4] = a00 - (a10 >> 1);
184
6.94M
  y[1] = a20 + (a30 >> 1);
185
6.94M
  y[5] = a20 - (a30 >> 1);
186
187
6.94M
  a00 = a00 - x[8];
188
6.94M
  a10 = (a10 >> 1) - x[12];
189
6.94M
  a20 = a20 - x[9];
190
6.94M
  a30 = (a30 >> 1) - x[13];
191
192
6.94M
  y[2] = a00 + a30;
193
6.94M
  y[6] = a00 - a30;
194
6.94M
  y[3] = a20 - a10;
195
6.94M
  y[7] = a20 + a10;
196
197
6.94M
  a00 = (x[2] + x[10]) >> 1;
198
6.94M
  a10 = x[6] + x[14];
199
6.94M
  a20 = (x[3] + x[11]) >> 1;
200
6.94M
  a30 = x[7] + x[15];
201
202
6.94M
  y[8] = a00 + (a10 >> 1);
203
6.94M
  y[12] = a00 - (a10 >> 1);
204
6.94M
  y[9] = a20 + (a30 >> 1);
205
6.94M
  y[13] = a20 - (a30 >> 1);
206
207
6.94M
  a00 = a00 - x[10];
208
6.94M
  a10 = (a10 >> 1) - x[14];
209
6.94M
  a20 = a20 - x[11];
210
6.94M
  a30 = (a30 >> 1) - x[15];
211
212
6.94M
  y[10] = a00 + a30;
213
6.94M
  y[14] = a00 - a30;
214
6.94M
  y[11] = a20 - a10;
215
6.94M
  y[15] = a20 + a10;
216
217
6.94M
  FIXP_DBL vr, vi, ur, ui;
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6.94M
  ur = y[0] >> 1;
220
6.94M
  ui = y[1] >> 1;
221
6.94M
  vr = y[8];
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6.94M
  vi = y[9];
223
6.94M
  x[0] = ur + (vr >> 1);
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6.94M
  x[1] = ui + (vi >> 1);
225
6.94M
  x[8] = ur - (vr >> 1);
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6.94M
  x[9] = ui - (vi >> 1);
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6.94M
  ur = y[4] >> 1;
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6.94M
  ui = y[5] >> 1;
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6.94M
  vi = y[12];
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6.94M
  vr = y[13];
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6.94M
  x[4] = ur + (vr >> 1);
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6.94M
  x[5] = ui - (vi >> 1);
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6.94M
  x[12] = ur - (vr >> 1);
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6.94M
  x[13] = ui + (vi >> 1);
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6.94M
  ur = y[10];
238
6.94M
  ui = y[11];
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6.94M
  cplxMultDiv2(&vi, &vr, ui, ur, w_PiFOURTH);
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6.94M
  ur = y[2];
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6.94M
  ui = y[3];
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6.94M
  x[2] = (ur >> 1) + vr;
245
6.94M
  x[3] = (ui >> 1) + vi;
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6.94M
  x[10] = (ur >> 1) - vr;
247
6.94M
  x[11] = (ui >> 1) - vi;
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6.94M
  ur = y[14];
250
6.94M
  ui = y[15];
251
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6.94M
  cplxMultDiv2(&vr, &vi, ui, ur, w_PiFOURTH);
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6.94M
  ur = y[6];
255
6.94M
  ui = y[7];
256
6.94M
  x[6] = (ur >> 1) + vr;
257
6.94M
  x[7] = (ui >> 1) - vi;
258
6.94M
  x[14] = (ur >> 1) - vr;
259
6.94M
  x[15] = (ui >> 1) + vi;
260
6.94M
}
Unexecuted instantiation: usacdec_lpd.cpp:fft_8(int*)
261
#endif /* FUNCTION_fft_8 */
262
263
#endif