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niklase@google.com470e71d2011-07-07 08:21:25 +00001/*
2 * Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11
12/*
13 * This file contains the function WebRtcSpl_ComplexFFT().
14 * The description header can be found in signal_processing_library.h
15 *
16 */
17
andrew@webrtc.orgeed919d2013-05-30 16:38:36 +000018#include "webrtc/common_audio/signal_processing/complex_fft_tables.h"
pbos@webrtc.org3d8647f2013-07-16 13:32:03 +000019#include "webrtc/common_audio/signal_processing/include/signal_processing_library.h"
niklase@google.com470e71d2011-07-07 08:21:25 +000020
21#define CFFTSFT 14
22#define CFFTRND 1
23#define CFFTRND2 16384
24
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000025#define CIFFTSFT 14
26#define CIFFTRND 1
27
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000028
pbos@webrtc.orgb0913072013-04-09 16:40:28 +000029int WebRtcSpl_ComplexFFT(int16_t frfi[], int stages, int mode)
niklase@google.com470e71d2011-07-07 08:21:25 +000030{
31 int i, j, l, k, istep, n, m;
pbos@webrtc.orgb0913072013-04-09 16:40:28 +000032 int16_t wr, wi;
33 int32_t tr32, ti32, qr32, qi32;
niklase@google.com470e71d2011-07-07 08:21:25 +000034
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000035 /* The 1024-value is a constant given from the size of kSinTable1024[],
niklase@google.com470e71d2011-07-07 08:21:25 +000036 * and should not be changed depending on the input parameter 'stages'
37 */
38 n = 1 << stages;
39 if (n > 1024)
40 return -1;
41
42 l = 1;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000043 k = 10 - 1; /* Constant for given kSinTable1024[]. Do not change
niklase@google.com470e71d2011-07-07 08:21:25 +000044 depending on the input parameter 'stages' */
45
46 if (mode == 0)
47 {
48 // mode==0: Low-complexity and Low-accuracy mode
49 while (l < n)
50 {
51 istep = l << 1;
52
53 for (m = 0; m < l; ++m)
54 {
55 j = m << k;
56
57 /* The 256-value is a constant given as 1/4 of the size of
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000058 * kSinTable1024[], and should not be changed depending on the input
niklase@google.com470e71d2011-07-07 08:21:25 +000059 * parameter 'stages'. It will result in 0 <= j < N_SINE_WAVE/2
60 */
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000061 wr = kSinTable1024[j + 256];
62 wi = -kSinTable1024[j];
niklase@google.com470e71d2011-07-07 08:21:25 +000063
64 for (i = m; i < n; i += istep)
65 {
66 j = i + l;
67
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +000068 tr32 = (wr * frfi[2 * j] - wi * frfi[2 * j + 1]) >> 15;
niklase@google.com470e71d2011-07-07 08:21:25 +000069
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +000070 ti32 = (wr * frfi[2 * j + 1] + wi * frfi[2 * j]) >> 15;
niklase@google.com470e71d2011-07-07 08:21:25 +000071
pbos@webrtc.orgb0913072013-04-09 16:40:28 +000072 qr32 = (int32_t)frfi[2 * i];
73 qi32 = (int32_t)frfi[2 * i + 1];
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +000074 frfi[2 * j] = (int16_t)((qr32 - tr32) >> 1);
75 frfi[2 * j + 1] = (int16_t)((qi32 - ti32) >> 1);
76 frfi[2 * i] = (int16_t)((qr32 + tr32) >> 1);
77 frfi[2 * i + 1] = (int16_t)((qi32 + ti32) >> 1);
niklase@google.com470e71d2011-07-07 08:21:25 +000078 }
79 }
80
81 --k;
82 l = istep;
83
84 }
85
86 } else
87 {
88 // mode==1: High-complexity and High-accuracy mode
89 while (l < n)
90 {
91 istep = l << 1;
92
93 for (m = 0; m < l; ++m)
94 {
95 j = m << k;
96
97 /* The 256-value is a constant given as 1/4 of the size of
bjornv@webrtc.org132feb12011-12-01 15:40:50 +000098 * kSinTable1024[], and should not be changed depending on the input
niklase@google.com470e71d2011-07-07 08:21:25 +000099 * parameter 'stages'. It will result in 0 <= j < N_SINE_WAVE/2
100 */
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000101 wr = kSinTable1024[j + 256];
102 wi = -kSinTable1024[j];
niklase@google.com470e71d2011-07-07 08:21:25 +0000103
kma@webrtc.org94771cb2012-08-28 04:09:50 +0000104#ifdef WEBRTC_ARCH_ARM_V7
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000105 int32_t wri = 0;
kma@webrtc.org7d6f1132013-03-01 23:01:14 +0000106 __asm __volatile("pkhbt %0, %1, %2, lsl #16" : "=r"(wri) :
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000107 "r"((int32_t)wr), "r"((int32_t)wi));
kma@google.com78dc99e2011-08-16 20:00:18 +0000108#endif
109
niklase@google.com470e71d2011-07-07 08:21:25 +0000110 for (i = m; i < n; i += istep)
111 {
112 j = i + l;
113
kma@webrtc.org94771cb2012-08-28 04:09:50 +0000114#ifdef WEBRTC_ARCH_ARM_V7
bjornv@webrtc.orgaafd7a82014-06-05 08:53:51 +0000115 register int32_t frfi_r;
116 __asm __volatile(
117 "pkhbt %[frfi_r], %[frfi_even], %[frfi_odd],"
118 " lsl #16\n\t"
119 "smlsd %[tr32], %[wri], %[frfi_r], %[cfftrnd]\n\t"
120 "smladx %[ti32], %[wri], %[frfi_r], %[cfftrnd]\n\t"
121 :[frfi_r]"=&r"(frfi_r),
122 [tr32]"=&r"(tr32),
123 [ti32]"=r"(ti32)
124 :[frfi_even]"r"((int32_t)frfi[2*j]),
125 [frfi_odd]"r"((int32_t)frfi[2*j +1]),
126 [wri]"r"(wri),
127 [cfftrnd]"r"(CFFTRND));
kma@google.com78dc99e2011-08-16 20:00:18 +0000128#else
129 tr32 = WEBRTC_SPL_MUL_16_16(wr, frfi[2 * j])
130 - WEBRTC_SPL_MUL_16_16(wi, frfi[2 * j + 1]) + CFFTRND;
niklase@google.com470e71d2011-07-07 08:21:25 +0000131
kma@google.com78dc99e2011-08-16 20:00:18 +0000132 ti32 = WEBRTC_SPL_MUL_16_16(wr, frfi[2 * j + 1])
133 + WEBRTC_SPL_MUL_16_16(wi, frfi[2 * j]) + CFFTRND;
134#endif
135
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000136 tr32 >>= 15 - CFFTSFT;
137 ti32 >>= 15 - CFFTSFT;
niklase@google.com470e71d2011-07-07 08:21:25 +0000138
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000139 qr32 = ((int32_t)frfi[2 * i]) << CFFTSFT;
140 qi32 = ((int32_t)frfi[2 * i + 1]) << CFFTSFT;
kma@google.com78dc99e2011-08-16 20:00:18 +0000141
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000142 frfi[2 * j] = (int16_t)(
143 (qr32 - tr32 + CFFTRND2) >> (1 + CFFTSFT));
144 frfi[2 * j + 1] = (int16_t)(
145 (qi32 - ti32 + CFFTRND2) >> (1 + CFFTSFT));
146 frfi[2 * i] = (int16_t)(
147 (qr32 + tr32 + CFFTRND2) >> (1 + CFFTSFT));
148 frfi[2 * i + 1] = (int16_t)(
149 (qi32 + ti32 + CFFTRND2) >> (1 + CFFTSFT));
niklase@google.com470e71d2011-07-07 08:21:25 +0000150 }
151 }
152
153 --k;
154 l = istep;
155 }
156 }
157 return 0;
158}
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000159
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000160int WebRtcSpl_ComplexIFFT(int16_t frfi[], int stages, int mode)
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000161{
162 int i, j, l, k, istep, n, m, scale, shift;
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000163 int16_t wr, wi;
164 int32_t tr32, ti32, qr32, qi32;
165 int32_t tmp32, round2;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000166
167 /* The 1024-value is a constant given from the size of kSinTable1024[],
168 * and should not be changed depending on the input parameter 'stages'
169 */
170 n = 1 << stages;
171 if (n > 1024)
172 return -1;
173
174 scale = 0;
175
176 l = 1;
177 k = 10 - 1; /* Constant for given kSinTable1024[]. Do not change
178 depending on the input parameter 'stages' */
179
180 while (l < n)
181 {
182 // variable scaling, depending upon data
183 shift = 0;
184 round2 = 8192;
185
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000186 tmp32 = (int32_t)WebRtcSpl_MaxAbsValueW16(frfi, 2 * n);
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000187 if (tmp32 > 13573)
188 {
189 shift++;
190 scale++;
191 round2 <<= 1;
192 }
193 if (tmp32 > 27146)
194 {
195 shift++;
196 scale++;
197 round2 <<= 1;
198 }
199
200 istep = l << 1;
201
202 if (mode == 0)
203 {
204 // mode==0: Low-complexity and Low-accuracy mode
205 for (m = 0; m < l; ++m)
206 {
207 j = m << k;
208
209 /* The 256-value is a constant given as 1/4 of the size of
210 * kSinTable1024[], and should not be changed depending on the input
211 * parameter 'stages'. It will result in 0 <= j < N_SINE_WAVE/2
212 */
213 wr = kSinTable1024[j + 256];
214 wi = kSinTable1024[j];
215
216 for (i = m; i < n; i += istep)
217 {
218 j = i + l;
219
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000220 tr32 = (wr * frfi[2 * j] - wi * frfi[2 * j + 1]) >> 15;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000221
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000222 ti32 = (wr * frfi[2 * j + 1] + wi * frfi[2 * j]) >> 15;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000223
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000224 qr32 = (int32_t)frfi[2 * i];
225 qi32 = (int32_t)frfi[2 * i + 1];
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000226 frfi[2 * j] = (int16_t)((qr32 - tr32) >> shift);
227 frfi[2 * j + 1] = (int16_t)((qi32 - ti32) >> shift);
228 frfi[2 * i] = (int16_t)((qr32 + tr32) >> shift);
229 frfi[2 * i + 1] = (int16_t)((qi32 + ti32) >> shift);
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000230 }
231 }
232 } else
233 {
234 // mode==1: High-complexity and High-accuracy mode
235
236 for (m = 0; m < l; ++m)
237 {
238 j = m << k;
239
240 /* The 256-value is a constant given as 1/4 of the size of
241 * kSinTable1024[], and should not be changed depending on the input
242 * parameter 'stages'. It will result in 0 <= j < N_SINE_WAVE/2
243 */
244 wr = kSinTable1024[j + 256];
245 wi = kSinTable1024[j];
246
kma@webrtc.org94771cb2012-08-28 04:09:50 +0000247#ifdef WEBRTC_ARCH_ARM_V7
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000248 int32_t wri = 0;
kma@webrtc.org7d6f1132013-03-01 23:01:14 +0000249 __asm __volatile("pkhbt %0, %1, %2, lsl #16" : "=r"(wri) :
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000250 "r"((int32_t)wr), "r"((int32_t)wi));
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000251#endif
252
253 for (i = m; i < n; i += istep)
254 {
255 j = i + l;
256
kma@webrtc.org94771cb2012-08-28 04:09:50 +0000257#ifdef WEBRTC_ARCH_ARM_V7
bjornv@webrtc.orgaafd7a82014-06-05 08:53:51 +0000258 register int32_t frfi_r;
kma@webrtc.org7d6f1132013-03-01 23:01:14 +0000259 __asm __volatile(
260 "pkhbt %[frfi_r], %[frfi_even], %[frfi_odd], lsl #16\n\t"
261 "smlsd %[tr32], %[wri], %[frfi_r], %[cifftrnd]\n\t"
262 "smladx %[ti32], %[wri], %[frfi_r], %[cifftrnd]\n\t"
bjornv@webrtc.orgaafd7a82014-06-05 08:53:51 +0000263 :[frfi_r]"=&r"(frfi_r),
264 [tr32]"=&r"(tr32),
kma@webrtc.org7d6f1132013-03-01 23:01:14 +0000265 [ti32]"=r"(ti32)
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000266 :[frfi_even]"r"((int32_t)frfi[2*j]),
267 [frfi_odd]"r"((int32_t)frfi[2*j +1]),
kma@webrtc.org7d6f1132013-03-01 23:01:14 +0000268 [wri]"r"(wri),
269 [cifftrnd]"r"(CIFFTRND)
270 );
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000271#else
272
273 tr32 = WEBRTC_SPL_MUL_16_16(wr, frfi[2 * j])
274 - WEBRTC_SPL_MUL_16_16(wi, frfi[2 * j + 1]) + CIFFTRND;
275
276 ti32 = WEBRTC_SPL_MUL_16_16(wr, frfi[2 * j + 1])
277 + WEBRTC_SPL_MUL_16_16(wi, frfi[2 * j]) + CIFFTRND;
278#endif
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000279 tr32 >>= 15 - CIFFTSFT;
280 ti32 >>= 15 - CIFFTSFT;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000281
pbos@webrtc.orgb0913072013-04-09 16:40:28 +0000282 qr32 = ((int32_t)frfi[2 * i]) << CIFFTSFT;
283 qi32 = ((int32_t)frfi[2 * i + 1]) << CIFFTSFT;
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000284
bjornv@webrtc.orgf5670952014-10-29 10:29:16 +0000285 frfi[2 * j] = (int16_t)(
286 (qr32 - tr32 + round2) >> (shift + CIFFTSFT));
287 frfi[2 * j + 1] = (int16_t)(
288 (qi32 - ti32 + round2) >> (shift + CIFFTSFT));
289 frfi[2 * i] = (int16_t)(
290 (qr32 + tr32 + round2) >> (shift + CIFFTSFT));
291 frfi[2 * i + 1] = (int16_t)(
292 (qi32 + ti32 + round2) >> (shift + CIFFTSFT));
bjornv@webrtc.org132feb12011-12-01 15:40:50 +0000293 }
294 }
295
296 }
297 --k;
298 l = istep;
299 }
300 return scale;
301}