Coverage Report

Created: 2026-08-13 06:34

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libxaac/encoder/iusace_fft.c
Line
Count
Source
1
/******************************************************************************
2
 *                                                                            *
3
 * Copyright (C) 2023 The Android Open Source Project
4
 *
5
 * Licensed under the Apache License, Version 2.0 (the "License");
6
 * you may not use this file except in compliance with the License.
7
 * You may obtain a copy of the License at:
8
 *
9
 * http://www.apache.org/licenses/LICENSE-2.0
10
 *
11
 * Unless required by applicable law or agreed to in writing, software
12
 * distributed under the License is distributed on an "AS IS" BASIS,
13
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14
 * See the License for the specific language governing permissions and
15
 * limitations under the License.
16
 *
17
 *****************************************************************************
18
 * Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore
19
 */
20
21
#include <string.h>
22
#include "ixheaac_type_def.h"
23
#include "ixheaace_adjust_threshold_data.h"
24
#include "iusace_cnst.h"
25
#include "iusace_block_switch_const.h"
26
#include "iusace_rom.h"
27
#include "iusace_bitbuffer.h"
28
29
/* DRC */
30
#include "impd_drc_common_enc.h"
31
#include "impd_drc_uni_drc.h"
32
#include "impd_drc_tables.h"
33
#include "impd_drc_api.h"
34
#include "impd_drc_uni_drc_eq.h"
35
#include "impd_drc_uni_drc_filter_bank.h"
36
#include "impd_drc_gain_enc.h"
37
#include "impd_drc_struct_def.h"
38
39
#include "iusace_tns_usac.h"
40
#include "iusace_psy_mod.h"
41
#include "iusace_config.h"
42
#include "iusace_fft.h"
43
#include "iusace_basic_ops_flt.h"
44
#include "ixheaac_constants.h"
45
#include "ixheaace_aac_constants.h"
46
#include "ixheaac_basic_ops32.h"
47
#include "ixheaace_common_utils.h"
48
#include "ixheaac_error_standards.h"
49
#include "ixheaace_error_codes.h"
50
51
#define DIG_REV(i, m, j)                                    \
52
487M
  do {                                                      \
53
487M
    unsigned _ = (i);                                       \
54
487M
    _ = ((_ & 0x33333333) << 2) | ((_ & ~0x33333333) >> 2); \
55
487M
    _ = ((_ & 0x0F0F0F0F) << 4) | ((_ & ~0x0F0F0F0F) >> 4); \
56
487M
    _ = ((_ & 0x00FF00FF) << 8) | ((_ & ~0x00FF00FF) >> 8); \
57
487M
    (j) = _ >> (m);                                         \
58
487M
  } while (0)
59
60
44.0M
static PLATFORM_INLINE WORD8 iusace_calc_norm(WORD32 a) {
61
44.0M
  WORD8 norm_val;
62
63
44.0M
  if (a == 0) {
64
0
    norm_val = 31;
65
44.0M
  } else {
66
44.0M
    if (a == (WORD32)0xffffffffL) {
67
0
      norm_val = 31;
68
44.0M
    } else {
69
44.0M
      if (a < 0) {
70
0
        a = ~a;
71
0
      }
72
1.14G
      for (norm_val = 0; a < (WORD32)0x40000000L; norm_val++) {
73
1.10G
        a <<= 1;
74
1.10G
      }
75
44.0M
    }
76
44.0M
  }
77
78
44.0M
  return norm_val;
79
44.0M
}
80
81
99.5M
static PLATFORM_INLINE VOID iusace_complex_3point_fft(FLOAT32 *ptr_in, FLOAT32 *ptr_out) {
82
99.5M
  FLOAT32 add_r, sub_r;
83
99.5M
  FLOAT32 add_i, sub_i;
84
99.5M
  FLOAT32 x01r, x01i, temp;
85
99.5M
  FLOAT32 p1, p2, p3, p4;
86
99.5M
  FLOAT64 sinmu;
87
88
99.5M
  sinmu = 0.866025403784439;
89
90
99.5M
  x01r = ptr_in[0] + ptr_in[2];
91
99.5M
  x01i = ptr_in[1] + ptr_in[3];
92
93
99.5M
  add_r = ptr_in[2] + ptr_in[4];
94
99.5M
  add_i = ptr_in[3] + ptr_in[5];
95
96
99.5M
  sub_r = ptr_in[2] - ptr_in[4];
97
99.5M
  sub_i = ptr_in[3] - ptr_in[5];
98
99
99.5M
  p1 = add_r / (FLOAT32)2.0;
100
99.5M
  p4 = add_i / (FLOAT32)2.0;
101
99.5M
  p2 = (FLOAT32)((FLOAT64)sub_i * sinmu);
102
99.5M
  p3 = (FLOAT32)((FLOAT64)sub_r * sinmu);
103
104
99.5M
  temp = ptr_in[0] - p1;
105
106
99.5M
  ptr_out[0] = x01r + ptr_in[4];
107
99.5M
  ptr_out[1] = x01i + ptr_in[5];
108
99.5M
  ptr_out[2] = temp + p2;
109
99.5M
  ptr_out[3] = (ptr_in[1] - p3) - p4;
110
99.5M
  ptr_out[4] = temp - p2;
111
99.5M
  ptr_out[5] = (ptr_in[1] + p3) - p4;
112
113
99.5M
  return;
114
99.5M
}
115
116
22.0M
VOID iusace_complex_fft_p2(FLOAT32 *ptr_x, WORD32 nlength, FLOAT32 *scratch_fft_p2_y) {
117
22.0M
  WORD32 i, j, k, n_stages, h2;
118
22.0M
  FLOAT32 x0r, x0i, x1r, x1i, x2r, x2i, x3r, x3i;
119
22.0M
  FLOAT32 tmp;
120
22.0M
  WORD32 del, nodespacing, in_loop_cnt;
121
22.0M
  WORD32 not_power_4;
122
22.0M
  WORD32 dig_rev_shift;
123
22.0M
  FLOAT32 *y = scratch_fft_p2_y;
124
22.0M
  WORD32 mpass = nlength;
125
22.0M
  WORD32 npoints = nlength;
126
22.0M
  FLOAT32 *ptr_y = y;
127
22.0M
  const FLOAT64 *ptr_w;
128
129
22.0M
  dig_rev_shift = iusace_calc_norm(mpass) + 1 - 16;
130
22.0M
  n_stages = 30 - iusace_calc_norm(mpass);
131
22.0M
  not_power_4 = n_stages & 1;
132
133
22.0M
  n_stages = n_stages >> 1;
134
135
22.0M
  ptr_w = iusace_twiddle_table_fft_32x32;
136
137
22.0M
  if (dig_rev_shift < 0) {
138
0
    dig_rev_shift = 0;
139
0
  }
140
141
459M
  for (i = 0; i < npoints; i += 4) {
142
437M
    FLOAT32 *inp = ptr_x;
143
437M
    FLOAT32 tmk;
144
145
437M
    DIG_REV(i, dig_rev_shift, h2);
146
437M
    if (not_power_4) {
147
202M
      h2 += 1;
148
202M
      h2 &= ~1;
149
202M
    }
150
437M
    inp += (h2);
151
152
437M
    x0r = *inp;
153
437M
    x0i = *(inp + 1);
154
437M
    inp += (npoints >> 1);
155
156
437M
    x1r = *inp;
157
437M
    x1i = *(inp + 1);
158
437M
    inp += (npoints >> 1);
159
160
437M
    x2r = *inp;
161
437M
    x2i = *(inp + 1);
162
437M
    inp += (npoints >> 1);
163
164
437M
    x3r = *inp;
165
437M
    x3i = *(inp + 1);
166
167
437M
    x0r = x0r + x2r;
168
437M
    x0i = x0i + x2i;
169
170
437M
    tmk = x0r - x2r;
171
437M
    x2r = tmk - x2r;
172
437M
    tmk = x0i - x2i;
173
437M
    x2i = tmk - x2i;
174
175
437M
    x1r = x1r + x3r;
176
437M
    x1i = x1i + x3i;
177
178
437M
    tmk = x1r - x3r;
179
437M
    x3r = tmk - x3r;
180
437M
    tmk = x1i - x3i;
181
437M
    x3i = tmk - x3i;
182
183
437M
    x0r = x0r + x1r;
184
437M
    x0i = x0i + x1i;
185
186
437M
    tmk = x0r - x1r;
187
437M
    x1r = tmk - x1r;
188
437M
    tmk = x0i - x1i;
189
437M
    x1i = tmk - x1i;
190
191
437M
    x2r = x2r + x3i;
192
437M
    x2i = x2i - x3r;
193
194
437M
    tmk = x2r - x3i;
195
437M
    x3i = tmk - x3i;
196
437M
    tmk = x2i + x3r;
197
437M
    x3r = tmk + x3r;
198
199
437M
    *ptr_y++ = x0r;
200
437M
    *ptr_y++ = x0i;
201
437M
    *ptr_y++ = x2r;
202
437M
    *ptr_y++ = x2i;
203
437M
    *ptr_y++ = x1r;
204
437M
    *ptr_y++ = x1i;
205
437M
    *ptr_y++ = x3i;
206
437M
    *ptr_y++ = x3r;
207
437M
  }
208
22.0M
  ptr_y -= 2 * npoints;
209
22.0M
  del = 4;
210
22.0M
  nodespacing = 64;
211
22.0M
  in_loop_cnt = npoints >> 4;
212
48.8M
  for (i = n_stages - 1; i > 0; i--) {
213
26.8M
    const FLOAT64 *twiddles = ptr_w;
214
26.8M
    FLOAT32 *data = ptr_y;
215
26.8M
    FLOAT64 w_1, w_2, w_3, w_4, w_5, w_6;
216
26.8M
    WORD32 sec_loop_cnt;
217
218
161M
    for (k = in_loop_cnt; k != 0; k--) {
219
134M
      x0r = (*data);
220
134M
      x0i = (*(data + 1));
221
134M
      data += ((SIZE_T)del << 1);
222
223
134M
      x1r = (*data);
224
134M
      x1i = (*(data + 1));
225
134M
      data += ((SIZE_T)del << 1);
226
227
134M
      x2r = (*data);
228
134M
      x2i = (*(data + 1));
229
134M
      data += ((SIZE_T)del << 1);
230
231
134M
      x3r = (*data);
232
134M
      x3i = (*(data + 1));
233
134M
      data -= 3 * (del << 1);
234
235
134M
      x0r = x0r + x2r;
236
134M
      x0i = x0i + x2i;
237
134M
      x2r = x0r - (x2r * 2);
238
134M
      x2i = x0i - (x2i * 2);
239
134M
      x1r = x1r + x3r;
240
134M
      x1i = x1i + x3i;
241
134M
      x3r = x1r - (x3r * 2);
242
134M
      x3i = x1i - (x3i * 2);
243
244
134M
      x0r = x0r + x1r;
245
134M
      x0i = x0i + x1i;
246
134M
      x1r = x0r - (x1r * 2);
247
134M
      x1i = x0i - (x1i * 2);
248
134M
      x2r = x2r + x3i;
249
134M
      x2i = x2i - x3r;
250
134M
      x3i = x2r - (x3i * 2);
251
134M
      x3r = x2i + (x3r * 2);
252
253
134M
      *data = x0r;
254
134M
      *(data + 1) = x0i;
255
134M
      data += ((SIZE_T)del << 1);
256
257
134M
      *data = x2r;
258
134M
      *(data + 1) = x2i;
259
134M
      data += ((SIZE_T)del << 1);
260
261
134M
      *data = x1r;
262
134M
      *(data + 1) = x1i;
263
134M
      data += ((SIZE_T)del << 1);
264
265
134M
      *data = x3i;
266
134M
      *(data + 1) = x3r;
267
134M
      data += ((SIZE_T)del << 1);
268
134M
    }
269
26.8M
    data = ptr_y + 2;
270
271
26.8M
    sec_loop_cnt = (nodespacing * del);
272
26.8M
    sec_loop_cnt = (sec_loop_cnt / 4) + (sec_loop_cnt / 8) - (sec_loop_cnt / 16) +
273
26.8M
                   (sec_loop_cnt / 32) - (sec_loop_cnt / 64) + (sec_loop_cnt / 128) -
274
26.8M
                   (sec_loop_cnt / 256);
275
276
157M
    for (j = nodespacing; j <= sec_loop_cnt; j += nodespacing) {
277
130M
      w_1 = *(twiddles + j);
278
130M
      w_4 = *(twiddles + j + 257);
279
130M
      w_2 = *(twiddles + ((SIZE_T)j << 1));
280
130M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 257);
281
130M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1));
282
130M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 257);
283
284
473M
      for (k = in_loop_cnt; k != 0; k--) {
285
342M
        data += ((SIZE_T)del << 1);
286
287
342M
        x1r = *data;
288
342M
        x1i = *(data + 1);
289
342M
        data += ((SIZE_T)del << 1);
290
291
342M
        x2r = *data;
292
342M
        x2i = *(data + 1);
293
342M
        data += ((SIZE_T)del << 1);
294
295
342M
        x3r = *data;
296
342M
        x3i = *(data + 1);
297
342M
        data -= 3 * (del << 1);
298
299
342M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_1) - ixheaace_dmult((FLOAT64)x1i, w_4));
300
342M
        x1i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x1r, w_4), (FLOAT64)x1i, w_1);
301
342M
        x1r = tmp;
302
303
342M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x2r, w_2) - ixheaace_dmult((FLOAT64)x2i, w_5));
304
342M
        x2i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x2r, w_5), (FLOAT64)x2i, w_2);
305
342M
        x2r = tmp;
306
307
342M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x3r, w_3) - ixheaace_dmult((FLOAT64)x3i, w_6));
308
342M
        x3i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x3r, w_6), (FLOAT64)x3i, w_3);
309
342M
        x3r = tmp;
310
311
342M
        x0r = (*data);
312
342M
        x0i = (*(data + 1));
313
314
342M
        x0r = x0r + (x2r);
315
342M
        x0i = x0i + (x2i);
316
342M
        x2r = x0r - (x2r * 2);
317
342M
        x2i = x0i - (x2i * 2);
318
342M
        x1r = x1r + x3r;
319
342M
        x1i = x1i + x3i;
320
342M
        x3r = x1r - (x3r * 2);
321
342M
        x3i = x1i - (x3i * 2);
322
323
342M
        x0r = x0r + (x1r);
324
342M
        x0i = x0i + (x1i);
325
342M
        x1r = x0r - (x1r * 2);
326
342M
        x1i = x0i - (x1i * 2);
327
342M
        x2r = x2r + (x3i);
328
342M
        x2i = x2i - (x3r);
329
342M
        x3i = x2r - (x3i * 2);
330
342M
        x3r = x2i + (x3r * 2);
331
332
342M
        *data = x0r;
333
342M
        *(data + 1) = x0i;
334
342M
        data += ((SIZE_T)del << 1);
335
336
342M
        *data = x2r;
337
342M
        *(data + 1) = x2i;
338
342M
        data += ((SIZE_T)del << 1);
339
340
342M
        *data = x1r;
341
342M
        *(data + 1) = x1i;
342
342M
        data += ((SIZE_T)del << 1);
343
344
342M
        *data = x3i;
345
342M
        *(data + 1) = x3r;
346
342M
        data += ((SIZE_T)del << 1);
347
342M
      }
348
130M
      data -= 2 * npoints;
349
130M
      data += 2;
350
130M
    }
351
105M
    for (; j <= (nodespacing * del) >> 1; j += nodespacing) {
352
78.8M
      w_1 = *(twiddles + j);
353
78.8M
      w_4 = *(twiddles + j + 257);
354
78.8M
      w_2 = *(twiddles + ((SIZE_T)j << 1));
355
78.8M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 257);
356
78.8M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 256);
357
78.8M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 1);
358
359
317M
      for (k = in_loop_cnt; k != 0; k--) {
360
238M
        data += ((SIZE_T)del << 1);
361
362
238M
        x1r = *data;
363
238M
        x1i = *(data + 1);
364
238M
        data += ((SIZE_T)del << 1);
365
366
238M
        x2r = *data;
367
238M
        x2i = *(data + 1);
368
238M
        data += ((SIZE_T)del << 1);
369
370
238M
        x3r = *data;
371
238M
        x3i = *(data + 1);
372
238M
        data -= 3 * (del << 1);
373
374
238M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_1) - ixheaace_dmult((FLOAT64)x1i, w_4));
375
238M
        x1i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x1r, w_4), (FLOAT64)x1i, w_1);
376
238M
        x1r = tmp;
377
378
238M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x2r, w_2) - ixheaace_dmult((FLOAT64)x2i, w_5));
379
238M
        x2i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x2r, w_5), (FLOAT64)x2i, w_2);
380
238M
        x2r = tmp;
381
382
238M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x3r, w_6) + ixheaace_dmult((FLOAT64)x3i, w_3));
383
238M
        x3i = (FLOAT32)(-ixheaace_dmult((FLOAT64)x3r, w_3) + ixheaace_dmult((FLOAT64)x3i, w_6));
384
238M
        x3r = tmp;
385
386
238M
        x0r = (*data);
387
238M
        x0i = (*(data + 1));
388
389
238M
        x0r = x0r + (x2r);
390
238M
        x0i = x0i + (x2i);
391
238M
        x2r = x0r - (x2r * 2);
392
238M
        x2i = x0i - (x2i * 2);
393
238M
        x1r = x1r + x3r;
394
238M
        x1i = x1i + x3i;
395
238M
        x3r = x1r - (x3r * 2);
396
238M
        x3i = x1i - (x3i * 2);
397
398
238M
        x0r = x0r + (x1r);
399
238M
        x0i = x0i + (x1i);
400
238M
        x1r = x0r - (x1r * 2);
401
238M
        x1i = x0i - (x1i * 2);
402
238M
        x2r = x2r + (x3i);
403
238M
        x2i = x2i - (x3r);
404
238M
        x3i = x2r - (x3i * 2);
405
238M
        x3r = x2i + (x3r * 2);
406
407
238M
        *data = x0r;
408
238M
        *(data + 1) = x0i;
409
238M
        data += ((SIZE_T)del << 1);
410
411
238M
        *data = x2r;
412
238M
        *(data + 1) = x2i;
413
238M
        data += ((SIZE_T)del << 1);
414
415
238M
        *data = x1r;
416
238M
        *(data + 1) = x1i;
417
238M
        data += ((SIZE_T)del << 1);
418
419
238M
        *data = x3i;
420
238M
        *(data + 1) = x3r;
421
238M
        data += ((SIZE_T)del << 1);
422
238M
      }
423
78.8M
      data -= 2 * npoints;
424
78.8M
      data += 2;
425
78.8M
    }
426
78.8M
    for (; j <= sec_loop_cnt * 2; j += nodespacing) {
427
51.9M
      w_1 = *(twiddles + j);
428
51.9M
      w_4 = *(twiddles + j + 257);
429
51.9M
      w_2 = *(twiddles + ((SIZE_T)j << 1) - 256);
430
51.9M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 1);
431
51.9M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 256);
432
51.9M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 1);
433
434
156M
      for (k = in_loop_cnt; k != 0; k--) {
435
104M
        data += ((SIZE_T)del << 1);
436
437
104M
        x1r = *data;
438
104M
        x1i = *(data + 1);
439
104M
        data += ((SIZE_T)del << 1);
440
441
104M
        x2r = *data;
442
104M
        x2i = *(data + 1);
443
104M
        data += ((SIZE_T)del << 1);
444
445
104M
        x3r = *data;
446
104M
        x3i = *(data + 1);
447
104M
        data -= 3 * (del << 1);
448
449
104M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_1) - ixheaace_dmult((FLOAT64)x1i, w_4));
450
104M
        x1i = (FLOAT32)ixheaace_dmac(ixheaace_dmult(x1r, w_4), x1i, w_1);
451
104M
        x1r = tmp;
452
453
104M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x2r, w_5) + ixheaace_dmult((FLOAT64)x2i, w_2));
454
104M
        x2i = (FLOAT32)(-ixheaace_dmult(x2r, w_2) + ixheaace_dmult(x2i, w_5));
455
104M
        x2r = tmp;
456
457
104M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x3r, w_6) + ixheaace_dmult((FLOAT64)x3i, w_3));
458
104M
        x3i = (FLOAT32)(-ixheaace_dmult((FLOAT64)x3r, w_3) + ixheaace_dmult((FLOAT64)x3i, w_6));
459
104M
        x3r = tmp;
460
461
104M
        x0r = (*data);
462
104M
        x0i = (*(data + 1));
463
464
104M
        x0r = x0r + (x2r);
465
104M
        x0i = x0i + (x2i);
466
104M
        x2r = x0r - (x2r * 2);
467
104M
        x2i = x0i - (x2i * 2);
468
104M
        x1r = x1r + x3r;
469
104M
        x1i = x1i + x3i;
470
104M
        x3r = x1r - (x3r * 2);
471
104M
        x3i = x1i - (x3i * 2);
472
473
104M
        x0r = x0r + (x1r);
474
104M
        x0i = x0i + (x1i);
475
104M
        x1r = x0r - (x1r * 2);
476
104M
        x1i = x0i - (x1i * 2);
477
104M
        x2r = x2r + (x3i);
478
104M
        x2i = x2i - (x3r);
479
104M
        x3i = x2r - (x3i * 2);
480
104M
        x3r = x2i + (x3r * 2);
481
482
104M
        *data = x0r;
483
104M
        *(data + 1) = x0i;
484
104M
        data += ((SIZE_T)del << 1);
485
486
104M
        *data = x2r;
487
104M
        *(data + 1) = x2i;
488
104M
        data += ((SIZE_T)del << 1);
489
490
104M
        *data = x1r;
491
104M
        *(data + 1) = x1i;
492
104M
        data += ((SIZE_T)del << 1);
493
494
104M
        *data = x3i;
495
104M
        *(data + 1) = x3r;
496
104M
        data += ((SIZE_T)del << 1);
497
104M
      }
498
51.9M
      data -= 2 * npoints;
499
51.9M
      data += 2;
500
51.9M
    }
501
157M
    for (; j < nodespacing * del; j += nodespacing) {
502
130M
      w_1 = *(twiddles + j);
503
130M
      w_4 = *(twiddles + j + 257);
504
130M
      w_2 = *(twiddles + ((SIZE_T)j << 1) - 256);
505
130M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 1);
506
130M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 512);
507
130M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) - 512 + 257);
508
509
473M
      for (k = in_loop_cnt; k != 0; k--) {
510
342M
        data += ((SIZE_T)del << 1);
511
512
342M
        x1r = *data;
513
342M
        x1i = *(data + 1);
514
342M
        data += ((SIZE_T)del << 1);
515
516
342M
        x2r = *data;
517
342M
        x2i = *(data + 1);
518
342M
        data += ((SIZE_T)del << 1);
519
520
342M
        x3r = *data;
521
342M
        x3i = *(data + 1);
522
342M
        data -= 3 * ((SIZE_T)del << 1);
523
524
342M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_1) - ixheaace_dmult((FLOAT64)x1i, w_4));
525
342M
        x1i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x1r, w_4), (FLOAT64)x1i, w_1);
526
342M
        x1r = tmp;
527
528
342M
        tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x2r, w_5) + ixheaace_dmult((FLOAT64)x2i, w_2));
529
342M
        x2i = (FLOAT32)(-ixheaace_dmult((FLOAT64)x2r, w_2) + ixheaace_dmult((FLOAT64)x2i, w_5));
530
342M
        x2r = tmp;
531
532
342M
        tmp = (FLOAT32)(-ixheaace_dmult((FLOAT64)x3r, w_3) + ixheaace_dmult((FLOAT64)x3i, w_6));
533
342M
        x3i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x3r, w_6), (FLOAT64)x3i, w_3);
534
342M
        x3r = tmp;
535
536
342M
        x0r = (*data);
537
342M
        x0i = (*(data + 1));
538
539
342M
        x0r = x0r + (x2r);
540
342M
        x0i = x0i + (x2i);
541
342M
        x2r = x0r - (x2r * 2);
542
342M
        x2i = x0i - (x2i * 2);
543
342M
        x1r = x1r + x3r;
544
342M
        x1i = x1i - x3i;
545
342M
        x3r = x1r - (x3r * 2);
546
342M
        x3i = x1i + (x3i * 2);
547
548
342M
        x0r = x0r + (x1r);
549
342M
        x0i = x0i + (x1i);
550
342M
        x1r = x0r - (x1r * 2);
551
342M
        x1i = x0i - (x1i * 2);
552
342M
        x2r = x2r + (x3i);
553
342M
        x2i = x2i - (x3r);
554
342M
        x3i = x2r - (x3i * 2);
555
342M
        x3r = x2i + (x3r * 2);
556
557
342M
        *data = x0r;
558
342M
        *(data + 1) = x0i;
559
342M
        data += ((SIZE_T)del << 1);
560
561
342M
        *data = x2r;
562
342M
        *(data + 1) = x2i;
563
342M
        data += ((SIZE_T)del << 1);
564
565
342M
        *data = x1r;
566
342M
        *(data + 1) = x1i;
567
342M
        data += ((SIZE_T)del << 1);
568
569
342M
        *data = x3i;
570
342M
        *(data + 1) = x3r;
571
342M
        data += ((SIZE_T)del << 1);
572
342M
      }
573
130M
      data -= 2 * npoints;
574
130M
      data += 2;
575
130M
    }
576
26.8M
    nodespacing >>= 2;
577
26.8M
    del <<= 2;
578
26.8M
    in_loop_cnt >>= 2;
579
26.8M
  }
580
22.0M
  if (not_power_4) {
581
11.3M
    const FLOAT64 *twiddles = ptr_w;
582
11.3M
    nodespacing <<= 1;
583
584
214M
    for (j = del / 2; j != 0; j--) {
585
202M
      FLOAT64 w_1 = *twiddles;
586
202M
      FLOAT64 w_4 = *(twiddles + 257);
587
202M
      twiddles += nodespacing;
588
589
202M
      x0r = *ptr_y;
590
202M
      x0i = *(ptr_y + 1);
591
202M
      ptr_y += ((SIZE_T)del << 1);
592
593
202M
      x1r = *ptr_y;
594
202M
      x1i = *(ptr_y + 1);
595
596
202M
      tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_1) - ixheaace_dmult((FLOAT64)x1i, w_4));
597
202M
      x1i = (FLOAT32)ixheaace_dmac(ixheaace_dmult((FLOAT64)x1r, w_4), (FLOAT64)x1i, w_1);
598
202M
      x1r = tmp;
599
600
202M
      *ptr_y = (x0r) - (x1r);
601
202M
      *(ptr_y + 1) = (x0i) - (x1i);
602
202M
      ptr_y -= ((SIZE_T)del << 1);
603
604
202M
      *ptr_y = (x0r) + (x1r);
605
202M
      *(ptr_y + 1) = (x0i) + (x1i);
606
202M
      ptr_y += 2;
607
202M
    }
608
11.3M
    twiddles = ptr_w;
609
214M
    for (j = del / 2; j != 0; j--) {
610
202M
      FLOAT64 w_1 = *twiddles;
611
202M
      FLOAT64 w_4 = *(twiddles + 257);
612
202M
      twiddles += nodespacing;
613
614
202M
      x0r = *ptr_y;
615
202M
      x0i = *(ptr_y + 1);
616
202M
      ptr_y += ((SIZE_T)del << 1);
617
618
202M
      x1r = *ptr_y;
619
202M
      x1i = *(ptr_y + 1);
620
621
202M
      tmp = (FLOAT32)(ixheaace_dmult((FLOAT64)x1r, w_4) + ixheaace_dmult((FLOAT64)x1i, w_1));
622
202M
      x1i = (FLOAT32)(-ixheaace_dmult((FLOAT64)x1r, w_1) + ixheaace_dmult((FLOAT64)x1i, w_4));
623
202M
      x1r = tmp;
624
625
202M
      *ptr_y = (x0r) - (x1r);
626
202M
      *(ptr_y + 1) = (x0i) - (x1i);
627
202M
      ptr_y -= ((SIZE_T)del << 1);
628
629
202M
      *ptr_y = (x0r) + (x1r);
630
202M
      *(ptr_y + 1) = (x0i) + (x1i);
631
202M
      ptr_y += 2;
632
202M
    }
633
11.3M
  }
634
635
1.77G
  for (i = 0; i < nlength; i++) {
636
1.75G
    *(ptr_x + 2 * i) = y[2 * i];
637
1.75G
    *(ptr_x + 2 * i + 1) = y[2 * i + 1];
638
1.75G
  }
639
22.0M
}
640
641
static VOID iusace_complex_fft_p3(FLOAT32 *data, WORD32 nlength,
642
3.04M
                                  iusace_scratch_mem *pstr_scratch) {
643
3.04M
  WORD32 i, j;
644
3.04M
  FLOAT32 *data_3 = pstr_scratch->p_fft_p3_data_3;
645
3.04M
  FLOAT32 *y = pstr_scratch->p_fft_p3_y;
646
3.04M
  WORD32 cnfac;
647
3.04M
  WORD32 mpass = nlength;
648
3.04M
  FLOAT32 *ptr_x = data;
649
3.04M
  FLOAT32 *ptr_y = y;
650
651
3.04M
  cnfac = 0;
652
6.08M
  while (mpass % 3 == 0) {
653
3.04M
    mpass /= 3;
654
3.04M
    cnfac++;
655
3.04M
  }
656
657
12.1M
  for (i = 0; i < 3 * cnfac; i++) {
658
307M
    for (j = 0; j < mpass; j++) {
659
298M
      data_3[2 * j] = data[3 * (2 * j) + (2 * i)];
660
298M
      data_3[2 * j + 1] = data[3 * (2 * j) + 1 + (2 * i)];
661
298M
    }
662
9.12M
    iusace_complex_fft_p2(data_3, mpass, pstr_scratch->p_fft_p2_y);
663
664
307M
    for (j = 0; j < mpass; j++) {
665
298M
      data[3 * (2 * j) + (2 * i)] = data_3[2 * j];
666
298M
      data[3 * (2 * j) + 1 + (2 * i)] = data_3[2 * j + 1];
667
298M
    }
668
9.12M
  }
669
670
3.04M
  {
671
3.04M
    const FLOAT64 *w1r, *w1i;
672
3.04M
    FLOAT32 tmp;
673
3.04M
    w1r = iusace_twiddle_table_3pr;
674
3.04M
    w1i = iusace_twiddle_table_3pi;
675
676
102M
    for (i = 0; i < nlength; i += 3) {
677
99.5M
      tmp = (FLOAT32)((FLOAT64)data[2 * i] * (*w1r) - (FLOAT64)data[2 * i + 1] * (*w1i));
678
99.5M
      data[2 * i + 1] =
679
99.5M
          (FLOAT32)((FLOAT64)data[2 * i] * (*w1i) + (FLOAT64)data[2 * i + 1] * (*w1r));
680
99.5M
      data[2 * i] = tmp;
681
682
99.5M
      w1r++;
683
99.5M
      w1i++;
684
685
99.5M
      tmp = (FLOAT32)((FLOAT64)data[2 * (i + 1)] * (*w1r) -
686
99.5M
                      (FLOAT64)data[2 * (i + 1) + 1] * (*w1i));
687
99.5M
      data[2 * (i + 1) + 1] = (FLOAT32)((FLOAT64)data[2 * (i + 1)] * (*w1i) +
688
99.5M
                                        (FLOAT64)data[2 * (i + 1) + 1] * (*w1r));
689
99.5M
      data[2 * (i + 1)] = tmp;
690
691
99.5M
      w1r++;
692
99.5M
      w1i++;
693
694
99.5M
      tmp = (FLOAT32)((FLOAT64)data[2 * (i + 2)] * (*w1r) -
695
99.5M
                      (FLOAT64)data[2 * (i + 2) + 1] * (*w1i));
696
99.5M
      data[2 * (i + 2) + 1] = (FLOAT32)((FLOAT64)data[2 * (i + 2)] * (*w1i) +
697
99.5M
                                        (FLOAT64)data[2 * (i + 2) + 1] * (*w1r));
698
99.5M
      data[2 * (i + 2)] = tmp;
699
700
99.5M
      w1r += 3 * (128 / mpass - 1) + 1;
701
99.5M
      w1i += 3 * (128 / mpass - 1) + 1;
702
99.5M
    }
703
3.04M
  }
704
705
102M
  for (i = 0; i < mpass; i++) {
706
99.5M
    iusace_complex_3point_fft(ptr_x, ptr_y);
707
708
99.5M
    ptr_x = ptr_x + 6;
709
99.5M
    ptr_y = ptr_y + 6;
710
99.5M
  }
711
712
102M
  for (i = 0; i < mpass; i++) {
713
99.5M
    data[2 * i] = y[6 * i];
714
99.5M
    data[2 * i + 1] = y[6 * i + 1];
715
99.5M
  }
716
717
102M
  for (i = 0; i < mpass; i++) {
718
99.5M
    data[2 * (i + mpass)] = y[6 * i + 2];
719
99.5M
    data[2 * (i + mpass) + 1] = y[6 * i + 3];
720
99.5M
  }
721
722
102M
  for (i = 0; i < mpass; i++) {
723
99.5M
    data[2 * (i + 2 * mpass)] = y[6 * i + 4];
724
99.5M
    data[2 * (i + 2 * mpass) + 1] = y[6 * i + 5];
725
99.5M
  }
726
3.04M
}
727
728
0
VOID iusace_complex_fft_p3_no_scratch(FLOAT32 *data, WORD32 nlength) {
729
0
  WORD32 i, j;
730
731
0
  FLOAT32 data_3[800];
732
0
  FLOAT32 y[1024];
733
0
  FLOAT32 p_fft_p2_y[2048];
734
0
  WORD32 cnfac;
735
0
  WORD32 mpass = nlength;
736
0
  FLOAT32 *ptr_x = data;
737
0
  FLOAT32 *ptr_y = y;
738
739
0
  cnfac = 0;
740
0
  while (mpass % 3 == 0) {
741
0
    mpass /= 3;
742
0
    cnfac++;
743
0
  }
744
745
0
  for (i = 0; i < 3 * cnfac; i++) {
746
0
    for (j = 0; j < mpass; j++) {
747
0
      data_3[2 * j] = data[3 * (2 * j) + (2 * i)];
748
0
      data_3[2 * j + 1] = data[3 * (2 * j) + 1 + (2 * i)];
749
0
    }
750
0
    iusace_complex_fft_p2(data_3, mpass, p_fft_p2_y);
751
752
0
    for (j = 0; j < mpass; j++) {
753
0
      data[3 * (2 * j) + (2 * i)] = data_3[2 * j];
754
0
      data[3 * (2 * j) + 1 + (2 * i)] = data_3[2 * j + 1];
755
0
    }
756
0
  }
757
758
0
  {
759
0
    const FLOAT64 *w1r, *w1i;
760
0
    FLOAT32 tmp;
761
0
    w1r = iusace_twiddle_table_3pr;
762
0
    w1i = iusace_twiddle_table_3pi;
763
764
0
    for (i = 0; i < nlength; i += 3) {
765
0
      tmp = (FLOAT32)((FLOAT64)data[2 * i] * (*w1r) - (FLOAT64)data[2 * i + 1] * (*w1i));
766
0
      data[2 * i + 1] =
767
0
          (FLOAT32)((FLOAT64)data[2 * i] * (*w1i) + (FLOAT64)data[2 * i + 1] * (*w1r));
768
0
      data[2 * i] = tmp;
769
770
0
      w1r++;
771
0
      w1i++;
772
773
0
      tmp = (FLOAT32)((FLOAT64)data[2 * (i + 1)] * (*w1r) -
774
0
                      (FLOAT64)data[2 * (i + 1) + 1] * (*w1i));
775
0
      data[2 * (i + 1) + 1] = (FLOAT32)((FLOAT64)data[2 * (i + 1)] * (*w1i) +
776
0
                                        (FLOAT64)data[2 * (i + 1) + 1] * (*w1r));
777
0
      data[2 * (i + 1)] = tmp;
778
779
0
      w1r++;
780
0
      w1i++;
781
782
0
      tmp = (FLOAT32)((FLOAT64)data[2 * (i + 2)] * (*w1r) -
783
0
                      (FLOAT64)data[2 * (i + 2) + 1] * (*w1i));
784
0
      data[2 * (i + 2) + 1] = (FLOAT32)((FLOAT64)data[2 * (i + 2)] * (*w1i) +
785
0
                                        (FLOAT64)data[2 * (i + 2) + 1] * (*w1r));
786
0
      data[2 * (i + 2)] = tmp;
787
788
0
      w1r += 3 * (128 / mpass - 1) + 1;
789
0
      w1i += 3 * (128 / mpass - 1) + 1;
790
0
    }
791
0
  }
792
793
0
  for (i = 0; i < mpass; i++) {
794
0
    iusace_complex_3point_fft(ptr_x, ptr_y);
795
796
0
    ptr_x = ptr_x + 6;
797
0
    ptr_y = ptr_y + 6;
798
0
  }
799
800
0
  for (i = 0; i < mpass; i++) {
801
0
    data[2 * i] = y[6 * i];
802
0
    data[2 * i + 1] = y[6 * i + 1];
803
0
  }
804
805
0
  for (i = 0; i < mpass; i++) {
806
0
    data[2 * (i + mpass)] = y[6 * i + 2];
807
0
    data[2 * (i + mpass) + 1] = y[6 * i + 3];
808
0
  }
809
810
0
  for (i = 0; i < mpass; i++) {
811
0
    data[2 * (i + 2 * mpass)] = y[6 * i + 4];
812
0
    data[2 * (i + 2 * mpass) + 1] = y[6 * i + 5];
813
0
  }
814
0
}
815
816
static VOID iusace_calc_pre_twid_enc(FLOAT64 *ptr_in, FLOAT32 *fft_ptr, WORD32 npoints,
817
                                     const FLOAT64 *cos_ptr, const FLOAT64 *sin_ptr,
818
2.76M
                                     const WORD32 tx_flag) {
819
2.76M
  WORD32 i, n;
820
2.76M
  WORD32 b = npoints >> 1;
821
2.76M
  WORD32 a = npoints - b;
822
2.76M
  WORD32 nlength = npoints >> 2;
823
2.76M
  FLOAT64 tempr, tempi;
824
825
2.76M
  if (tx_flag == 0) {
826
1.38M
    FLOAT64 norm;
827
401M
    for (i = 0; i < b; i++) {
828
399M
      norm = ptr_in[i]; /* reuse MDCT: spectrally reverse all bins */
829
399M
      ptr_in[i] = ptr_in[npoints - 1 - i];
830
399M
      ptr_in[npoints - 1 - i] = norm;
831
399M
    }
832
1.38M
  }
833
402M
  for (i = 0; i < nlength; i++) {
834
399M
    n = npoints / 2 - 1 - 2 * i;
835
399M
    if (i < b / 4) {
836
199M
      tempr = ptr_in[a / 2 + n] + ptr_in[npoints + a / 2 - 1 - n];
837
199M
    } else {
838
199M
      tempr = ptr_in[a / 2 + n] - ptr_in[a / 2 - 1 - n];
839
199M
    }
840
399M
    n = 2 * i;
841
399M
    if (i < a / 4) {
842
199M
      tempi = ptr_in[a / 2 + n] - ptr_in[a / 2 - 1 - n];
843
199M
    } else {
844
199M
      tempi = ptr_in[a / 2 + n] + ptr_in[npoints + a / 2 - 1 - n];
845
199M
    }
846
847
399M
    fft_ptr[2 * i] = (FLOAT32)(tempr * (*cos_ptr) + tempi * (*sin_ptr));
848
399M
    fft_ptr[2 * i + 1] = (FLOAT32)(tempi * (*cos_ptr++) - tempr * (*sin_ptr++));
849
399M
  }
850
2.76M
}
851
852
9.91M
VOID iusace_complex_fft(FLOAT32 *data, WORD32 nlength, iusace_scratch_mem *pstr_scratch) {
853
9.91M
  if (nlength & (nlength - 1)) {
854
3.04M
    iusace_complex_fft_p3(data, nlength, pstr_scratch);
855
6.87M
  } else {
856
6.87M
    iusace_complex_fft_p2(data, nlength, pstr_scratch->p_fft_p2_y);
857
6.87M
  }
858
9.91M
}
859
860
static VOID iusace_calc_post_twid_enc(FLOAT64 *ptr_out, FLOAT32 *fft_ptr, WORD32 npoints,
861
                                      const FLOAT64 *cos_ptr, const FLOAT64 *sin_ptr,
862
2.76M
                                      const WORD32 tx_flag) {
863
2.76M
  WORD32 i;
864
2.76M
  WORD32 nlength = npoints >> 2;
865
2.76M
  FLOAT64 tempr, tempi;
866
867
  /* post-twiddle FFT output and then get output data */
868
402M
  for (i = 0; i < nlength; i++) {
869
399M
    tempr =
870
399M
        2 * ((FLOAT64)(fft_ptr[2 * i]) * (*cos_ptr) + (FLOAT64)(fft_ptr[2 * i + 1]) * (*sin_ptr));
871
399M
    tempi = 2 * ((FLOAT64)(fft_ptr[2 * i + 1]) * (*cos_ptr++) -
872
399M
                 (FLOAT64)(fft_ptr[2 * i]) * (*sin_ptr++));
873
874
399M
    ptr_out[2 * i] = -tempr;
875
399M
    ptr_out[npoints / 2 - 1 - 2 * i] = tempi;
876
399M
    ptr_out[npoints / 2 + 2 * i] = -tempi;
877
399M
    ptr_out[npoints - 1 - 2 * i] = tempr;
878
399M
  }
879
2.76M
  if (tx_flag == 0) {
880
401M
    for (i = 0; i < npoints; i += 2) {
881
399M
      ptr_out[i] *= -1; /* reuse MDCT: flip signs at odd indices */
882
399M
    }
883
1.38M
  }
884
2.76M
}
885
886
IA_ERRORCODE iusace_fft_based_mdct(FLOAT64 *ptr_in, FLOAT64 *ptr_out, WORD32 npoints,
887
2.76M
                                   const WORD32 tx_flag, iusace_scratch_mem *pstr_scratch) {
888
2.76M
  FLOAT32 *ptr_scratch1 = pstr_scratch->p_fft_mdct_buf;
889
2.76M
  const FLOAT64 *cos_ptr = NULL;
890
2.76M
  const FLOAT64 *sin_ptr = NULL;
891
2.76M
  WORD32 nlength = npoints >> 1;
892
2.76M
  WORD32 n_total = npoints << 1;
893
894
2.76M
  memset(ptr_scratch1, 0, ((SIZE_T)n_total << 1) * sizeof(*ptr_scratch1));
895
896
2.76M
  switch (npoints) {
897
761k
    case (96):
898
761k
      cos_ptr = iexheaac_pre_post_twid_cos_192;
899
761k
      sin_ptr = iexheaac_pre_post_twid_sin_192;
900
761k
      break;
901
1.44M
    case (128):
902
1.44M
      cos_ptr = iusace_pre_post_twid_cos_256;
903
1.44M
      sin_ptr = iusace_pre_post_twid_sin_256;
904
1.44M
      break;
905
117k
    case (768):
906
117k
      cos_ptr = iexheaac_pre_post_twid_cos_1536;
907
117k
      sin_ptr = iexheaac_pre_post_twid_sin_1536;
908
117k
      break;
909
440k
    case (1024):
910
440k
      cos_ptr = iusace_pre_post_twid_cos_2048;
911
440k
      sin_ptr = iusace_pre_post_twid_sin_2048;
912
440k
      break;
913
0
    default:
914
0
      return IA_EXHEAACE_EXE_FATAL_USAC_INVALID_WINDOW_LENGTH;
915
2.76M
  }
916
917
  /* pre-twiddle */
918
2.76M
  iusace_calc_pre_twid_enc(ptr_in, ptr_scratch1, npoints << 1, cos_ptr, sin_ptr, tx_flag);
919
920
  /* complex FFT */
921
2.76M
  iusace_complex_fft(ptr_scratch1, nlength, pstr_scratch);
922
923
  /* post-twiddle */
924
2.76M
  iusace_calc_post_twid_enc(ptr_out, ptr_scratch1, npoints << 1, cos_ptr, sin_ptr, tx_flag);
925
926
2.76M
  return IA_NO_ERROR;
927
2.76M
}
928
929
187k
VOID iusace_complex_fft_2048(FLOAT32 *ptr_x, FLOAT32 *scratch_fft) {
930
187k
  WORD32 i;
931
187k
  FLOAT32 re, im, c_v, s_v, tmp_re, tmp_im;
932
187k
  FLOAT32 *ptr_re, *ptr_im, *ptr_re_h, *ptr_im_h;
933
187k
  FLOAT32 *ptr_cos_val, *ptr_sin_val;
934
187k
  iusace_complex_fft_p2(ptr_x, 1024, scratch_fft);
935
187k
  iusace_complex_fft_p2(ptr_x + 2048, 1024, scratch_fft);
936
937
187k
  ptr_re = ptr_x;
938
187k
  ptr_im = ptr_x + 1;
939
187k
  ptr_re_h = ptr_x + 2048;
940
187k
  ptr_im_h = ptr_x + 2048 + 1;
941
187k
  ptr_cos_val = (FLOAT32 *)&iusace_twiddle_cos_2048[0];
942
187k
  ptr_sin_val = (FLOAT32 *)&iusace_twiddle_sin_2048[0];
943
192M
  for (i = 0; i < 1024; i++) {
944
192M
    re = *ptr_re_h;
945
192M
    im = *ptr_im_h;
946
192M
    c_v = ptr_cos_val[i];
947
192M
    s_v = ptr_sin_val[i];
948
192M
    tmp_re = (re * c_v) + (im * s_v);
949
192M
    tmp_im = -(re * s_v) + (im * c_v);
950
192M
    re = *ptr_re;
951
192M
    im = *ptr_im;
952
953
192M
    *ptr_re = re + tmp_re;
954
192M
    *ptr_im = im + tmp_im;
955
192M
    *ptr_re_h = re - tmp_re;
956
192M
    *ptr_im_h = im - tmp_im;
957
958
192M
    ptr_re += 2;
959
192M
    ptr_im += 2;
960
192M
    ptr_re_h += 2;
961
192M
    ptr_im_h += 2;
962
192M
  }
963
187k
}
964
static VOID ixheaace_rad2_cplx_fft(FLOAT32 *ptr_real, FLOAT32 *ptr_imag, WORD32 n_points,
965
192k
                                   FLOAT32 *ptr_scratch) {
966
192k
  WORD32 i, j, k, n_stages, h2;
967
192k
  FLOAT32 x0r, x0i, x1r, x1i, x2r, x2i, x3r, x3i;
968
192k
  WORD32 del, nodespacing, in_loop_cnt;
969
192k
  WORD32 not_power_4;
970
192k
  WORD32 dig_rev_shift;
971
192k
  WORD32 m_points = n_points;
972
192k
  FLOAT32 *ptr_x = ptr_scratch;
973
192k
  FLOAT32 *y = ptr_scratch + 2048;
974
192k
  FLOAT32 *ptr_y = y;
975
192k
  const FLOAT32 *ptr_w;
976
977
192k
  dig_rev_shift = ixheaac_norm32(m_points) + 1 - 16;
978
192k
  n_stages = 30 - ixheaac_norm32(m_points);
979
192k
  not_power_4 = n_stages & 1;
980
981
192k
  n_stages = n_stages >> 1;
982
983
192k
  ptr_w = ia_fft_twiddle_table_float;
984
985
197M
  for (i = 0; i < n_points; i++) {
986
196M
    ptr_x[2 * i] = ptr_real[i];
987
196M
    ptr_x[2 * i + 1] = ptr_imag[i];
988
196M
  }
989
192k
  dig_rev_shift = max(dig_rev_shift, 0);
990
49.4M
  for (i = 0; i < n_points; i += 4) {
991
49.2M
    FLOAT32 *inp = ptr_x;
992
49.2M
    FLOAT32 tmk;
993
994
49.2M
    DIG_REV(i, dig_rev_shift, h2);
995
49.2M
    if (not_power_4) {
996
0
      h2 += 1;
997
0
      h2 &= ~1;
998
0
    }
999
49.2M
    inp += (h2);
1000
1001
49.2M
    x0r = *inp;
1002
49.2M
    x0i = *(inp + 1);
1003
49.2M
    inp += (n_points >> 1);
1004
1005
49.2M
    x1r = *inp;
1006
49.2M
    x1i = *(inp + 1);
1007
49.2M
    inp += (n_points >> 1);
1008
1009
49.2M
    x2r = *inp;
1010
49.2M
    x2i = *(inp + 1);
1011
49.2M
    inp += (n_points >> 1);
1012
1013
49.2M
    x3r = *inp;
1014
49.2M
    x3i = *(inp + 1);
1015
1016
49.2M
    x0r = ia_add_flt(x0r, x2r);
1017
49.2M
    x0i = ia_add_flt(x0i, x2i);
1018
1019
49.2M
    tmk = ia_sub_flt(x0r, x2r);
1020
49.2M
    x2r = ia_sub_flt(tmk, x2r);
1021
49.2M
    tmk = ia_sub_flt(x0i, x2i);
1022
49.2M
    x2i = ia_sub_flt(tmk, x2i);
1023
1024
49.2M
    x1r = ia_add_flt(x1r, x3r);
1025
49.2M
    x1i = ia_add_flt(x1i, x3i);
1026
1027
49.2M
    tmk = ia_sub_flt(x1r, x3r);
1028
49.2M
    x3r = ia_sub_flt(tmk, x3r);
1029
49.2M
    tmk = ia_sub_flt(x1i, x3i);
1030
49.2M
    x3i = ia_sub_flt(tmk, x3i);
1031
1032
49.2M
    x0r = ia_add_flt(x0r, x1r);
1033
49.2M
    x0i = ia_add_flt(x0i, x1i);
1034
1035
49.2M
    tmk = ia_sub_flt(x0r, x1r);
1036
49.2M
    x1r = ia_sub_flt(tmk, x1r);
1037
49.2M
    tmk = ia_sub_flt(x0i, x1i);
1038
49.2M
    x1i = ia_sub_flt(tmk, x1i);
1039
1040
49.2M
    x2r = ia_add_flt(x2r, x3i);
1041
49.2M
    x2i = ia_sub_flt(x2i, x3r);
1042
1043
49.2M
    tmk = ia_sub_flt(x2r, x3i);
1044
49.2M
    x3i = ia_sub_flt(tmk, x3i);
1045
49.2M
    tmk = ia_add_flt(x2i, x3r);
1046
49.2M
    x3r = ia_add_flt(tmk, x3r);
1047
1048
49.2M
    *ptr_y++ = x0r;
1049
49.2M
    *ptr_y++ = x0i;
1050
49.2M
    *ptr_y++ = x2r;
1051
49.2M
    *ptr_y++ = x2i;
1052
49.2M
    *ptr_y++ = x1r;
1053
49.2M
    *ptr_y++ = x1i;
1054
49.2M
    *ptr_y++ = x3i;
1055
49.2M
    *ptr_y++ = x3r;
1056
49.2M
  }
1057
192k
  ptr_y -= 2 * n_points;
1058
192k
  del = 4;
1059
192k
  nodespacing = 64;
1060
192k
  in_loop_cnt = n_points >> 4;
1061
961k
  for (i = n_stages - 1; i > 0; i--) {
1062
769k
    const FLOAT32 *twiddles = ptr_w;
1063
769k
    FLOAT32 *data = ptr_y;
1064
769k
    FLOAT32 w_1, w_2, w_3, w_4, w_5, w_6;
1065
769k
    WORD32 sec_loop_cnt;
1066
1067
17.1M
    for (k = in_loop_cnt; k != 0; k--) {
1068
16.3M
      x0r = (*data);
1069
16.3M
      x0i = (*(data + 1));
1070
16.3M
      data += ((SIZE_T)del << 1);
1071
1072
16.3M
      x1r = (*data);
1073
16.3M
      x1i = (*(data + 1));
1074
16.3M
      data += ((SIZE_T)del << 1);
1075
1076
16.3M
      x2r = (*data);
1077
16.3M
      x2i = (*(data + 1));
1078
16.3M
      data += ((SIZE_T)del << 1);
1079
1080
16.3M
      x3r = (*data);
1081
16.3M
      x3i = (*(data + 1));
1082
16.3M
      data -= 3 * (del << 1);
1083
1084
16.3M
      x0r = ia_add_flt(x0r, x2r);
1085
16.3M
      x0i = ia_add_flt(x0i, x2i);
1086
16.3M
      x2r = ia_msu_flt(x0r, x2r, 2);
1087
16.3M
      x2i = ia_msu_flt(x0i, x2i, 2);
1088
16.3M
      x1r = ia_add_flt(x1r, x3r);
1089
16.3M
      x1i = ia_add_flt(x1i, x3i);
1090
16.3M
      x3r = ia_msu_flt(x1r, x3r, 2);
1091
16.3M
      x3i = ia_msu_flt(x1i, x3i, 2);
1092
1093
16.3M
      x0r = ia_add_flt(x0r, x1r);
1094
16.3M
      x0i = ia_add_flt(x0i, x1i);
1095
16.3M
      x1r = ia_msu_flt(x0r, x1r, 2);
1096
16.3M
      x1i = ia_msu_flt(x0i, x1i, 2);
1097
16.3M
      x2r = ia_add_flt(x2r, x3i);
1098
16.3M
      x2i = ia_sub_flt(x2i, x3r);
1099
16.3M
      x3i = ia_msu_flt(x2r, x3i, 2);
1100
16.3M
      x3r = ia_mac_flt(x2i, x3r, 2);
1101
1102
16.3M
      *data = x0r;
1103
16.3M
      *(data + 1) = x0i;
1104
16.3M
      data += ((SIZE_T)del << 1);
1105
1106
16.3M
      *data = x2r;
1107
16.3M
      *(data + 1) = x2i;
1108
16.3M
      data += ((SIZE_T)del << 1);
1109
1110
16.3M
      *data = x1r;
1111
16.3M
      *(data + 1) = x1i;
1112
16.3M
      data += ((SIZE_T)del << 1);
1113
1114
16.3M
      *data = x3i;
1115
16.3M
      *(data + 1) = x3r;
1116
16.3M
      data += ((SIZE_T)del << 1);
1117
16.3M
    }
1118
769k
    data = ptr_y + 2;
1119
1120
769k
    sec_loop_cnt = (nodespacing * del);
1121
769k
    sec_loop_cnt = (sec_loop_cnt / 4) + (sec_loop_cnt / 8) - (sec_loop_cnt / 16) +
1122
769k
                   (sec_loop_cnt / 32) - (sec_loop_cnt / 64) + (sec_loop_cnt / 128) -
1123
769k
                   (sec_loop_cnt / 256);
1124
1125
22.3M
    for (j = nodespacing; j <= sec_loop_cnt; j += nodespacing) {
1126
21.5M
      w_1 = *(twiddles + j);
1127
21.5M
      w_4 = *(twiddles + j + 257);
1128
21.5M
      w_2 = *(twiddles + ((SIZE_T)j << 1));
1129
21.5M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 257);
1130
21.5M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1));
1131
21.5M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 257);
1132
1133
81.7M
      for (k = in_loop_cnt; k != 0; k--) {
1134
60.1M
        FLOAT32 tmp;
1135
        /*x0 is loaded later to avoid register crunch*/
1136
1137
60.1M
        data += ((SIZE_T)del << 1);
1138
1139
60.1M
        x1r = *data;
1140
60.1M
        x1i = *(data + 1);
1141
60.1M
        data += ((SIZE_T)del << 1);
1142
1143
60.1M
        x2r = *data;
1144
60.1M
        x2i = *(data + 1);
1145
60.1M
        data += ((SIZE_T)del << 1);
1146
1147
60.1M
        x3r = *data;
1148
60.1M
        x3i = *(data + 1);
1149
60.1M
        data -= 3 * (del << 1);
1150
1151
60.1M
        tmp = ia_sub_flt(ia_mul_flt(x1r, w_1), ia_mul_flt(x1i, w_4));
1152
60.1M
        x1i = ia_mac_flt(ia_mul_flt(x1r, w_4), x1i, w_1);
1153
60.1M
        x1r = tmp;
1154
1155
60.1M
        tmp = ia_sub_flt(ia_mul_flt(x2r, w_2), ia_mul_flt(x2i, w_5));
1156
60.1M
        x2i = ia_mac_flt(ia_mul_flt(x2r, w_5), x2i, w_2);
1157
60.1M
        x2r = tmp;
1158
1159
60.1M
        tmp = ia_sub_flt(ia_mul_flt(x3r, w_3), ia_mul_flt(x3i, w_6));
1160
60.1M
        x3i = ia_mac_flt(ia_mul_flt(x3r, w_6), x3i, w_3);
1161
60.1M
        x3r = tmp;
1162
1163
60.1M
        x0r = (*data);
1164
60.1M
        x0i = (*(data + 1));
1165
1166
60.1M
        x0r = ia_add_flt(x0r, (x2r));
1167
60.1M
        x0i = ia_add_flt(x0i, (x2i));
1168
60.1M
        x2r = ia_msu_flt(x0r, x2r, 2);
1169
60.1M
        x2i = ia_msu_flt(x0i, x2i, 2);
1170
60.1M
        x1r = ia_add_flt(x1r, x3r);
1171
60.1M
        x1i = ia_add_flt(x1i, x3i);
1172
60.1M
        x3r = ia_msu_flt(x1r, x3r, 2);
1173
60.1M
        x3i = ia_msu_flt(x1i, x3i, 2);
1174
1175
60.1M
        x0r = ia_add_flt(x0r, (x1r));
1176
60.1M
        x0i = ia_add_flt(x0i, (x1i));
1177
60.1M
        x1r = ia_msu_flt(x0r, x1r, 2);
1178
60.1M
        x1i = ia_msu_flt(x0i, x1i, 2);
1179
60.1M
        x2r = ia_add_flt(x2r, (x3i));
1180
60.1M
        x2i = ia_sub_flt(x2i, (x3r));
1181
60.1M
        x3i = ia_msu_flt(x2r, x3i, 2);
1182
60.1M
        x3r = ia_mac_flt(x2i, x3r, 2);
1183
1184
60.1M
        *data = x0r;
1185
60.1M
        *(data + 1) = x0i;
1186
60.1M
        data += ((SIZE_T)del << 1);
1187
1188
60.1M
        *data = x2r;
1189
60.1M
        *(data + 1) = x2i;
1190
60.1M
        data += ((SIZE_T)del << 1);
1191
1192
60.1M
        *data = x1r;
1193
60.1M
        *(data + 1) = x1i;
1194
60.1M
        data += ((SIZE_T)del << 1);
1195
1196
60.1M
        *data = x3i;
1197
60.1M
        *(data + 1) = x3r;
1198
60.1M
        data += ((SIZE_T)del << 1);
1199
60.1M
      }
1200
21.5M
      data -= 2 * n_points;
1201
21.5M
      data += 2;
1202
21.5M
    }
1203
11.9M
    for (; j <= (nodespacing * del) >> 1; j += nodespacing) {
1204
11.1M
      w_1 = *(twiddles + j);
1205
11.1M
      w_4 = *(twiddles + j + 257);
1206
11.1M
      w_2 = *(twiddles + ((SIZE_T)j << 1));
1207
11.1M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 257);
1208
11.1M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 256);
1209
11.1M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 1);
1210
1211
49.4M
      for (k = in_loop_cnt; k != 0; k--) {
1212
38.2M
        FLOAT32 tmp;
1213
        /*x0 is loaded later to avoid register crunch*/
1214
1215
38.2M
        data += ((SIZE_T)del << 1);
1216
1217
38.2M
        x1r = *data;
1218
38.2M
        x1i = *(data + 1);
1219
38.2M
        data += ((SIZE_T)del << 1);
1220
1221
38.2M
        x2r = *data;
1222
38.2M
        x2i = *(data + 1);
1223
38.2M
        data += ((SIZE_T)del << 1);
1224
1225
38.2M
        x3r = *data;
1226
38.2M
        x3i = *(data + 1);
1227
38.2M
        data -= 3 * (del << 1);
1228
1229
38.2M
        tmp = ia_sub_flt(ia_mul_flt(x1r, w_1), ia_mul_flt(x1i, w_4));
1230
38.2M
        x1i = ia_mac_flt(ia_mul_flt(x1r, w_4), x1i, w_1);
1231
38.2M
        x1r = tmp;
1232
1233
38.2M
        tmp = ia_sub_flt(ia_mul_flt(x2r, w_2), ia_mul_flt(x2i, w_5));
1234
38.2M
        x2i = ia_mac_flt(ia_mul_flt(x2r, w_5), x2i, w_2);
1235
38.2M
        x2r = tmp;
1236
1237
38.2M
        tmp = ia_add_flt(ia_mul_flt(x3r, w_6), ia_mul_flt(x3i, w_3));
1238
38.2M
        x3i = ia_add_flt(ia_negate_flt(ia_mul_flt(x3r, w_3)), ia_mul_flt(x3i, w_6));
1239
38.2M
        x3r = tmp;
1240
1241
38.2M
        x0r = (*data);
1242
38.2M
        x0i = (*(data + 1));
1243
1244
38.2M
        x0r = ia_add_flt(x0r, (x2r));
1245
38.2M
        x0i = ia_add_flt(x0i, (x2i));
1246
38.2M
        x2r = ia_msu_flt(x0r, x2r, 2);
1247
38.2M
        x2i = ia_msu_flt(x0i, x2i, 2);
1248
38.2M
        x1r = ia_add_flt(x1r, x3r);
1249
38.2M
        x1i = ia_add_flt(x1i, x3i);
1250
38.2M
        x3r = ia_msu_flt(x1r, x3r, 2);
1251
38.2M
        x3i = ia_msu_flt(x1i, x3i, 2);
1252
1253
38.2M
        x0r = ia_add_flt(x0r, (x1r));
1254
38.2M
        x0i = ia_add_flt(x0i, (x1i));
1255
38.2M
        x1r = ia_msu_flt(x0r, x1r, 2);
1256
38.2M
        x1i = ia_msu_flt(x0i, x1i, 2);
1257
38.2M
        x2r = ia_add_flt(x2r, (x3i));
1258
38.2M
        x2i = ia_sub_flt(x2i, (x3r));
1259
38.2M
        x3i = ia_msu_flt(x2r, x3i, 2);
1260
38.2M
        x3r = ia_mac_flt(x2i, x3r, 2);
1261
1262
38.2M
        *data = x0r;
1263
38.2M
        *(data + 1) = x0i;
1264
38.2M
        data += ((SIZE_T)del << 1);
1265
1266
38.2M
        *data = x2r;
1267
38.2M
        *(data + 1) = x2i;
1268
38.2M
        data += ((SIZE_T)del << 1);
1269
1270
38.2M
        *data = x1r;
1271
38.2M
        *(data + 1) = x1i;
1272
38.2M
        data += ((SIZE_T)del << 1);
1273
1274
38.2M
        *data = x3i;
1275
38.2M
        *(data + 1) = x3r;
1276
38.2M
        data += ((SIZE_T)del << 1);
1277
38.2M
      }
1278
11.1M
      data -= 2 * n_points;
1279
11.1M
      data += 2;
1280
11.1M
    }
1281
11.1M
    for (; j <= sec_loop_cnt * 2; j += nodespacing) {
1282
10.3M
      w_1 = *(twiddles + j);
1283
10.3M
      w_4 = *(twiddles + j + 257);
1284
10.3M
      w_2 = *(twiddles + ((SIZE_T)j << 1) - 256);
1285
10.3M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 1);
1286
10.3M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 256);
1287
10.3M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) + 1);
1288
1289
32.2M
      for (k = in_loop_cnt; k != 0; k--) {
1290
21.9M
        FLOAT32 tmp;
1291
        /*x0 is loaded later to avoid register crunch*/
1292
1293
21.9M
        data += ((SIZE_T)del << 1);
1294
1295
21.9M
        x1r = *data;
1296
21.9M
        x1i = *(data + 1);
1297
21.9M
        data += ((SIZE_T)del << 1);
1298
1299
21.9M
        x2r = *data;
1300
21.9M
        x2i = *(data + 1);
1301
21.9M
        data += ((SIZE_T)del << 1);
1302
1303
21.9M
        x3r = *data;
1304
21.9M
        x3i = *(data + 1);
1305
21.9M
        data -= 3 * (del << 1);
1306
1307
21.9M
        tmp = ia_sub_flt(ia_mul_flt(x1r, w_1), ia_mul_flt(x1i, w_4));
1308
21.9M
        x1i = ia_mac_flt(ia_mul_flt(x1r, w_4), x1i, w_1);
1309
21.9M
        x1r = tmp;
1310
1311
21.9M
        tmp = ia_add_flt(ia_mul_flt(x2r, w_5), ia_mul_flt(x2i, w_2));
1312
21.9M
        x2i = ia_add_flt(ia_negate_flt(ia_mul_flt(x2r, w_2)), ia_mul_flt(x2i, w_5));
1313
21.9M
        x2r = tmp;
1314
1315
21.9M
        tmp = ia_add_flt(ia_mul_flt(x3r, w_6), ia_mul_flt(x3i, w_3));
1316
21.9M
        x3i = ia_add_flt(ia_negate_flt(ia_mul_flt(x3r, w_3)), ia_mul_flt(x3i, w_6));
1317
21.9M
        x3r = tmp;
1318
1319
21.9M
        x0r = (*data);
1320
21.9M
        x0i = (*(data + 1));
1321
1322
21.9M
        x0r = ia_add_flt(x0r, (x2r));
1323
21.9M
        x0i = ia_add_flt(x0i, (x2i));
1324
21.9M
        x2r = ia_msu_flt(x0r, x2r, 2);
1325
21.9M
        x2i = ia_msu_flt(x0i, x2i, 2);
1326
21.9M
        x1r = ia_add_flt(x1r, x3r);
1327
21.9M
        x1i = ia_add_flt(x1i, x3i);
1328
21.9M
        x3r = ia_msu_flt(x1r, x3r, 2);
1329
21.9M
        x3i = ia_msu_flt(x1i, x3i, 2);
1330
1331
21.9M
        x0r = ia_add_flt(x0r, (x1r));
1332
21.9M
        x0i = ia_add_flt(x0i, (x1i));
1333
21.9M
        x1r = ia_msu_flt(x0r, x1r, 2);
1334
21.9M
        x1i = ia_msu_flt(x0i, x1i, 2);
1335
21.9M
        x2r = ia_add_flt(x2r, (x3i));
1336
21.9M
        x2i = ia_sub_flt(x2i, (x3r));
1337
21.9M
        x3i = ia_msu_flt(x2r, x3i, 2);
1338
21.9M
        x3r = ia_mac_flt(x2i, x3r, 2);
1339
1340
21.9M
        *data = x0r;
1341
21.9M
        *(data + 1) = x0i;
1342
21.9M
        data += ((SIZE_T)del << 1);
1343
1344
21.9M
        *data = x2r;
1345
21.9M
        *(data + 1) = x2i;
1346
21.9M
        data += ((SIZE_T)del << 1);
1347
1348
21.9M
        *data = x1r;
1349
21.9M
        *(data + 1) = x1i;
1350
21.9M
        data += ((SIZE_T)del << 1);
1351
1352
21.9M
        *data = x3i;
1353
21.9M
        *(data + 1) = x3r;
1354
21.9M
        data += ((SIZE_T)del << 1);
1355
21.9M
      }
1356
10.3M
      data -= 2 * n_points;
1357
10.3M
      data += 2;
1358
10.3M
    }
1359
22.3M
    for (; j < nodespacing * del; j += nodespacing) {
1360
21.5M
      w_1 = *(twiddles + j);
1361
21.5M
      w_4 = *(twiddles + j + 257);
1362
21.5M
      w_2 = *(twiddles + ((SIZE_T)j << 1) - 256);
1363
21.5M
      w_5 = *(twiddles + ((SIZE_T)j << 1) + 1);
1364
21.5M
      w_3 = *(twiddles + j + ((SIZE_T)j << 1) - 512);
1365
21.5M
      w_6 = *(twiddles + j + ((SIZE_T)j << 1) - 512 + 257);
1366
1367
81.7M
      for (k = in_loop_cnt; k != 0; k--) {
1368
60.1M
        FLOAT32 tmp;
1369
        /*x0 is loaded later to avoid register crunch*/
1370
1371
60.1M
        data += ((SIZE_T)del << 1);
1372
1373
60.1M
        x1r = *data;
1374
60.1M
        x1i = *(data + 1);
1375
60.1M
        data += ((SIZE_T)del << 1);
1376
1377
60.1M
        x2r = *data;
1378
60.1M
        x2i = *(data + 1);
1379
60.1M
        data += ((SIZE_T)del << 1);
1380
1381
60.1M
        x3r = *data;
1382
60.1M
        x3i = *(data + 1);
1383
60.1M
        data -= 3 * (del << 1);
1384
1385
60.1M
        tmp = ia_sub_flt(ia_mul_flt(x1r, w_1), ia_mul_flt(x1i, w_4));
1386
60.1M
        x1i = ia_mac_flt(ia_mul_flt(x1r, w_4), x1i, w_1);
1387
60.1M
        x1r = tmp;
1388
1389
60.1M
        tmp = ia_add_flt(ia_mul_flt(x2r, w_5), ia_mul_flt(x2i, w_2));
1390
60.1M
        x2i = ia_add_flt(ia_negate_flt(ia_mul_flt(x2r, w_2)), ia_mul_flt(x2i, w_5));
1391
60.1M
        x2r = tmp;
1392
1393
60.1M
        tmp = ia_add_flt(ia_negate_flt(ia_mul_flt(x3r, w_3)), ia_mul_flt(x3i, w_6));
1394
60.1M
        x3i = ia_mac_flt(ia_mul_flt(x3r, w_6), x3i, w_3);
1395
60.1M
        x3r = tmp;
1396
1397
60.1M
        x0r = (*data);
1398
60.1M
        x0i = (*(data + 1));
1399
1400
60.1M
        x0r = ia_add_flt(x0r, (x2r));
1401
60.1M
        x0i = ia_add_flt(x0i, (x2i));
1402
60.1M
        x2r = ia_msu_flt(x0r, x2r, 2);
1403
60.1M
        x2i = ia_msu_flt(x0i, x2i, 2);
1404
60.1M
        x1r = ia_add_flt(x1r, x3r);
1405
60.1M
        x1i = ia_sub_flt(x1i, x3i);
1406
60.1M
        x3r = ia_msu_flt(x1r, x3r, 2);
1407
60.1M
        x3i = ia_mac_flt(x1i, x3i, 2);
1408
1409
60.1M
        x0r = ia_add_flt(x0r, (x1r));
1410
60.1M
        x0i = ia_add_flt(x0i, (x1i));
1411
60.1M
        x1r = ia_msu_flt(x0r, x1r, 2);
1412
60.1M
        x1i = ia_msu_flt(x0i, x1i, 2);
1413
60.1M
        x2r = ia_add_flt(x2r, (x3i));
1414
60.1M
        x2i = ia_sub_flt(x2i, (x3r));
1415
60.1M
        x3i = ia_msu_flt(x2r, x3i, 2);
1416
60.1M
        x3r = ia_mac_flt(x2i, x3r, 2);
1417
1418
60.1M
        *data = x0r;
1419
60.1M
        *(data + 1) = x0i;
1420
60.1M
        data += ((SIZE_T)del << 1);
1421
1422
60.1M
        *data = x2r;
1423
60.1M
        *(data + 1) = x2i;
1424
60.1M
        data += ((SIZE_T)del << 1);
1425
1426
60.1M
        *data = x1r;
1427
60.1M
        *(data + 1) = x1i;
1428
60.1M
        data += ((SIZE_T)del << 1);
1429
1430
60.1M
        *data = x3i;
1431
60.1M
        *(data + 1) = x3r;
1432
60.1M
        data += ((SIZE_T)del << 1);
1433
60.1M
      }
1434
21.5M
      data -= 2 * n_points;
1435
21.5M
      data += 2;
1436
21.5M
    }
1437
769k
    nodespacing >>= 2;
1438
769k
    del <<= 2;
1439
769k
    in_loop_cnt >>= 2;
1440
769k
  }
1441
192k
  if (not_power_4) {
1442
0
    const FLOAT32 *twiddles = ptr_w;
1443
0
    nodespacing <<= 1;
1444
1445
0
    for (j = del / 2; j != 0; j--) {
1446
0
      FLOAT32 w_1 = *twiddles;
1447
0
      FLOAT32 w_4 = *(twiddles + 257);
1448
0
      FLOAT32 tmp;
1449
0
      twiddles += nodespacing;
1450
1451
0
      x0r = *ptr_y;
1452
0
      x0i = *(ptr_y + 1);
1453
0
      ptr_y += ((SIZE_T)del << 1);
1454
1455
0
      x1r = *ptr_y;
1456
0
      x1i = *(ptr_y + 1);
1457
1458
0
      tmp = ia_sub_flt(ia_mul_flt(x1r, w_1), ia_mul_flt(x1i, w_4));
1459
0
      x1i = (FLOAT32)ia_mac_flt(ia_mul_flt(x1r, w_4), x1i, w_1);
1460
0
      x1r = tmp;
1461
1462
0
      *ptr_y = ia_sub_flt((x0r), (x1r));
1463
0
      *(ptr_y + 1) = ia_sub_flt((x0i), (x1i));
1464
0
      ptr_y -= ((SIZE_T)del << 1);
1465
1466
0
      *ptr_y = ia_add_flt((x0r), (x1r));
1467
0
      *(ptr_y + 1) = ia_add_flt((x0i), (x1i));
1468
0
      ptr_y += 2;
1469
0
    }
1470
0
    twiddles = ptr_w;
1471
0
    for (j = del / 2; j != 0; j--) {
1472
0
      FLOAT32 w_1 = *twiddles;
1473
0
      FLOAT32 w_4 = *(twiddles + 257);
1474
0
      FLOAT32 tmp;
1475
0
      twiddles += nodespacing;
1476
1477
0
      x0r = *ptr_y;
1478
0
      x0i = *(ptr_y + 1);
1479
0
      ptr_y += ((SIZE_T)del << 1);
1480
1481
0
      x1r = *ptr_y;
1482
0
      x1i = *(ptr_y + 1);
1483
1484
0
      tmp = ia_add_flt(ia_mul_flt(x1r, w_4), ia_mul_flt(x1i, w_1));
1485
0
      x1i = ia_add_flt(ia_negate_flt(ia_mul_flt(x1r, w_1)), ia_mul_flt(x1i, w_4));
1486
0
      x1r = tmp;
1487
1488
0
      *ptr_y = ia_sub_flt((x0r), (x1r));
1489
0
      *(ptr_y + 1) = ia_sub_flt((x0i), (x1i));
1490
0
      ptr_y -= ((SIZE_T)del << 1);
1491
1492
0
      *ptr_y = ia_add_flt((x0r), (x1r));
1493
0
      *(ptr_y + 1) = ia_add_flt((x0i), (x1i));
1494
0
      ptr_y += 2;
1495
0
    }
1496
0
  }
1497
1498
197M
  for (i = 0; i < n_points; i++) {
1499
196M
    ptr_real[i] = y[2 * i];
1500
196M
    ptr_imag[i] = y[2 * i + 1];
1501
196M
  }
1502
192k
}
1503
49.2M
static VOID ixheaace_cplx_fft_4(FLOAT32 *x_r, FLOAT32 *x_i) {
1504
49.2M
  FLOAT32 x_0, x_1, x_2, x_3;
1505
49.2M
  FLOAT32 x_4, x_5, x_6, x_7;
1506
49.2M
  FLOAT32 x0r, x1r, x2r, x3r;
1507
49.2M
  FLOAT32 x0i, x1i, x2i, x3i;
1508
1509
  // 4 Point FFT
1510
49.2M
  x_0 = x_r[0];
1511
49.2M
  x_1 = x_i[0];
1512
49.2M
  x_2 = x_r[1];
1513
49.2M
  x_3 = x_i[1];
1514
49.2M
  x_4 = x_r[2];
1515
49.2M
  x_5 = x_i[2];
1516
49.2M
  x_6 = x_r[3];
1517
49.2M
  x_7 = x_i[3];
1518
1519
49.2M
  x0r = ia_add_flt(x_0, x_4);
1520
49.2M
  x0i = ia_add_flt(x_1, x_5);
1521
49.2M
  x2r = ia_sub_flt(x_0, x_4);
1522
49.2M
  x2i = ia_sub_flt(x_1, x_5);
1523
49.2M
  x1r = ia_add_flt(x_2, x_6);
1524
49.2M
  x1i = ia_add_flt(x_3, x_7);
1525
49.2M
  x3r = ia_sub_flt(x_2, x_6);
1526
49.2M
  x3i = ia_sub_flt(x_3, x_7);
1527
1528
49.2M
  x_r[0] = ia_add_flt(x0r, x1r);
1529
49.2M
  x_i[0] = ia_add_flt(x0i, x1i);
1530
49.2M
  x_r[2] = ia_sub_flt(x0r, x1r);
1531
49.2M
  x_i[2] = ia_sub_flt(x0i, x1i);
1532
49.2M
  x_r[1] = ia_add_flt(x2r, x3i);
1533
49.2M
  x_i[1] = ia_sub_flt(x2i, x3r);
1534
49.2M
  x_r[3] = ia_sub_flt(x2r, x3i);
1535
49.2M
  x_i[3] = ia_add_flt(x2i, x3r);
1536
49.2M
  return;
1537
49.2M
}
1538
48.0k
VOID iusace_complex_fft_4096(FLOAT32 *ptr_x_r, FLOAT32 *ptr_x_i, FLOAT32 *ptr_scratch_buf) {
1539
48.0k
  FLOAT32 *ptr_data_r;
1540
48.0k
  FLOAT32 *ptr_data_i;
1541
48.0k
  WORD32 fft_len = 4096;
1542
48.0k
  FLOAT32 *ptr_fft_interim_buf = &ptr_scratch_buf[2 * fft_len];
1543
48.0k
  WORD32 i, j;
1544
48.0k
  WORD32 dim2 = fft_len >> 10;
1545
48.0k
  WORD32 dim1 = fft_len / dim2;
1546
48.0k
  WORD32 fac = 4;
1547
1548
240k
  for (i = 0; i < dim2; i++) {
1549
192k
    ptr_data_r = &ptr_scratch_buf[(2 * i + 0) * dim1];
1550
192k
    ptr_data_i = &ptr_scratch_buf[(2 * i + 1) * dim1];
1551
197M
    for (j = 0; j < dim1; j++) {
1552
196M
      ptr_data_r[j] = ptr_x_r[(dim2 * j + i)];
1553
196M
      ptr_data_i[j] = 0;
1554
196M
    }
1555
192k
    ixheaace_rad2_cplx_fft(ptr_data_r, ptr_data_i, dim1, ptr_fft_interim_buf);
1556
192k
  }
1557
48.0k
  ptr_data_r = &ptr_scratch_buf[0];
1558
48.0k
  ptr_data_i = &ptr_scratch_buf[0];
1559
49.2M
  for (i = 0; i < dim1; i++) {
1560
49.2M
    FLOAT32 *ptr_cos_val = (FLOAT32 *)&ia_mixed_rad_twiddle_cos[i * dim2 * fac];
1561
49.2M
    FLOAT32 *ptr_sin_val = (FLOAT32 *)&ia_mixed_rad_twiddle_sin[i * dim2 * fac];
1562
246M
    for (j = 0; j < dim2; j++) {
1563
196M
      FLOAT32 real = ptr_data_r[(2 * j + 0) * dim1 + i];
1564
196M
      FLOAT32 imag = ptr_data_i[(2 * j + 1) * dim1 + i];
1565
196M
      FLOAT32 cos_val = ptr_cos_val[j * fac];
1566
196M
      FLOAT32 sin_val = ptr_sin_val[j * fac];
1567
196M
      FLOAT32 temp_real = (FLOAT32)(real * cos_val + imag * sin_val);
1568
196M
      FLOAT32 temp_imag = (FLOAT32)(imag * cos_val - real * sin_val);
1569
196M
      ptr_fft_interim_buf[(2 * i + 0) * dim2 + j] = temp_real;
1570
196M
      ptr_fft_interim_buf[(2 * i + 1) * dim2 + j] = temp_imag;
1571
196M
    }
1572
49.2M
  }
1573
49.2M
  for (i = 0; i < dim1; i++) {
1574
49.2M
    ptr_data_r = &ptr_fft_interim_buf[(2 * i + 0) * dim2];
1575
49.2M
    ptr_data_i = &ptr_fft_interim_buf[(2 * i + 1) * dim2];
1576
49.2M
    ixheaace_cplx_fft_4(ptr_data_r, ptr_data_i);
1577
49.2M
  }
1578
48.0k
  ptr_data_r = &ptr_fft_interim_buf[0];
1579
48.0k
  ptr_data_i = &ptr_fft_interim_buf[0];
1580
49.2M
  for (i = 0; i < dim1; i++) {
1581
246M
    for (j = 0; j < dim2; j++) {
1582
196M
      ptr_x_r[(j * dim1 + i)] = ptr_data_r[(2 * i + 0) * dim2 + j];
1583
196M
      ptr_x_i[(j * dim1 + i)] = ptr_data_i[(2 * i + 1) * dim2 + j];
1584
196M
    }
1585
49.2M
  }
1586
48.0k
}