annotate src/fftw-3.3.5/kernel/trig.c @ 169:223a55898ab9 tip default

Add null config files
author Chris Cannam <cannam@all-day-breakfast.com>
date Mon, 02 Mar 2020 14:03:47 +0000
parents 7867fa7e1b6b
children
rev   line source
cannam@127 1 /*
cannam@127 2 * Copyright (c) 2003, 2007-14 Matteo Frigo
cannam@127 3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
cannam@127 4 *
cannam@127 5 * This program is free software; you can redistribute it and/or modify
cannam@127 6 * it under the terms of the GNU General Public License as published by
cannam@127 7 * the Free Software Foundation; either version 2 of the License, or
cannam@127 8 * (at your option) any later version.
cannam@127 9 *
cannam@127 10 * This program is distributed in the hope that it will be useful,
cannam@127 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@127 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@127 13 * GNU General Public License for more details.
cannam@127 14 *
cannam@127 15 * You should have received a copy of the GNU General Public License
cannam@127 16 * along with this program; if not, write to the Free Software
cannam@127 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@127 18 *
cannam@127 19 */
cannam@127 20
cannam@127 21
cannam@127 22 /* trigonometric functions */
cannam@127 23 #include "ifftw.h"
cannam@127 24 #include <math.h>
cannam@127 25
cannam@127 26 #if defined(TRIGREAL_IS_LONG_DOUBLE)
cannam@127 27 # define COS cosl
cannam@127 28 # define SIN sinl
cannam@127 29 # define KTRIG(x) (x##L)
cannam@127 30 # if defined(HAVE_DECL_SINL) && !HAVE_DECL_SINL
cannam@127 31 extern long double sinl(long double x);
cannam@127 32 # endif
cannam@127 33 # if defined(HAVE_DECL_COSL) && !HAVE_DECL_COSL
cannam@127 34 extern long double cosl(long double x);
cannam@127 35 # endif
cannam@127 36 #elif defined(TRIGREAL_IS_QUAD)
cannam@127 37 # define COS cosq
cannam@127 38 # define SIN sinq
cannam@127 39 # define KTRIG(x) (x##Q)
cannam@127 40 extern __float128 sinq(__float128 x);
cannam@127 41 extern __float128 cosq(__float128 x);
cannam@127 42 #else
cannam@127 43 # define COS cos
cannam@127 44 # define SIN sin
cannam@127 45 # define KTRIG(x) (x)
cannam@127 46 #endif
cannam@127 47
cannam@127 48 static const trigreal K2PI =
cannam@127 49 KTRIG(6.2831853071795864769252867665590057683943388);
cannam@127 50 #define by2pi(m, n) ((K2PI * (m)) / (n))
cannam@127 51
cannam@127 52 /*
cannam@127 53 * Improve accuracy by reducing x to range [0..1/8]
cannam@127 54 * before multiplication by 2 * PI.
cannam@127 55 */
cannam@127 56
cannam@127 57 static void real_cexp(INT m, INT n, trigreal *out)
cannam@127 58 {
cannam@127 59 trigreal theta, c, s, t;
cannam@127 60 unsigned octant = 0;
cannam@127 61 INT quarter_n = n;
cannam@127 62
cannam@127 63 n += n; n += n;
cannam@127 64 m += m; m += m;
cannam@127 65
cannam@127 66 if (m < 0) m += n;
cannam@127 67 if (m > n - m) { m = n - m; octant |= 4; }
cannam@127 68 if (m - quarter_n > 0) { m = m - quarter_n; octant |= 2; }
cannam@127 69 if (m > quarter_n - m) { m = quarter_n - m; octant |= 1; }
cannam@127 70
cannam@127 71 theta = by2pi(m, n);
cannam@127 72 c = COS(theta); s = SIN(theta);
cannam@127 73
cannam@127 74 if (octant & 1) { t = c; c = s; s = t; }
cannam@127 75 if (octant & 2) { t = c; c = -s; s = t; }
cannam@127 76 if (octant & 4) { s = -s; }
cannam@127 77
cannam@127 78 out[0] = c;
cannam@127 79 out[1] = s;
cannam@127 80 }
cannam@127 81
cannam@127 82 static INT choose_twshft(INT n)
cannam@127 83 {
cannam@127 84 INT log2r = 0;
cannam@127 85 while (n > 0) {
cannam@127 86 ++log2r;
cannam@127 87 n /= 4;
cannam@127 88 }
cannam@127 89 return log2r;
cannam@127 90 }
cannam@127 91
cannam@127 92 static void cexpl_sqrtn_table(triggen *p, INT m, trigreal *res)
cannam@127 93 {
cannam@127 94 m += p->n * (m < 0);
cannam@127 95
cannam@127 96 {
cannam@127 97 INT m0 = m & p->twmsk;
cannam@127 98 INT m1 = m >> p->twshft;
cannam@127 99 trigreal wr0 = p->W0[2 * m0];
cannam@127 100 trigreal wi0 = p->W0[2 * m0 + 1];
cannam@127 101 trigreal wr1 = p->W1[2 * m1];
cannam@127 102 trigreal wi1 = p->W1[2 * m1 + 1];
cannam@127 103
cannam@127 104 res[0] = wr1 * wr0 - wi1 * wi0;
cannam@127 105 res[1] = wi1 * wr0 + wr1 * wi0;
cannam@127 106 }
cannam@127 107 }
cannam@127 108
cannam@127 109 /* multiply (xr, xi) by exp(FFT_SIGN * 2*pi*i*m/n) */
cannam@127 110 static void rotate_sqrtn_table(triggen *p, INT m, R xr, R xi, R *res)
cannam@127 111 {
cannam@127 112 m += p->n * (m < 0);
cannam@127 113
cannam@127 114 {
cannam@127 115 INT m0 = m & p->twmsk;
cannam@127 116 INT m1 = m >> p->twshft;
cannam@127 117 trigreal wr0 = p->W0[2 * m0];
cannam@127 118 trigreal wi0 = p->W0[2 * m0 + 1];
cannam@127 119 trigreal wr1 = p->W1[2 * m1];
cannam@127 120 trigreal wi1 = p->W1[2 * m1 + 1];
cannam@127 121 trigreal wr = wr1 * wr0 - wi1 * wi0;
cannam@127 122 trigreal wi = wi1 * wr0 + wr1 * wi0;
cannam@127 123
cannam@127 124 #if FFT_SIGN == -1
cannam@127 125 res[0] = xr * wr + xi * wi;
cannam@127 126 res[1] = xi * wr - xr * wi;
cannam@127 127 #else
cannam@127 128 res[0] = xr * wr - xi * wi;
cannam@127 129 res[1] = xi * wr + xr * wi;
cannam@127 130 #endif
cannam@127 131 }
cannam@127 132 }
cannam@127 133
cannam@127 134 static void cexpl_sincos(triggen *p, INT m, trigreal *res)
cannam@127 135 {
cannam@127 136 real_cexp(m, p->n, res);
cannam@127 137 }
cannam@127 138
cannam@127 139 static void cexp_zero(triggen *p, INT m, R *res)
cannam@127 140 {
cannam@127 141 UNUSED(p); UNUSED(m);
cannam@127 142 res[0] = 0;
cannam@127 143 res[1] = 0;
cannam@127 144 }
cannam@127 145
cannam@127 146 static void cexpl_zero(triggen *p, INT m, trigreal *res)
cannam@127 147 {
cannam@127 148 UNUSED(p); UNUSED(m);
cannam@127 149 res[0] = 0;
cannam@127 150 res[1] = 0;
cannam@127 151 }
cannam@127 152
cannam@127 153 static void cexp_generic(triggen *p, INT m, R *res)
cannam@127 154 {
cannam@127 155 trigreal resl[2];
cannam@127 156 p->cexpl(p, m, resl);
cannam@127 157 res[0] = (R)resl[0];
cannam@127 158 res[1] = (R)resl[1];
cannam@127 159 }
cannam@127 160
cannam@127 161 static void rotate_generic(triggen *p, INT m, R xr, R xi, R *res)
cannam@127 162 {
cannam@127 163 trigreal w[2];
cannam@127 164 p->cexpl(p, m, w);
cannam@127 165 res[0] = xr * w[0] - xi * (FFT_SIGN * w[1]);
cannam@127 166 res[1] = xi * w[0] + xr * (FFT_SIGN * w[1]);
cannam@127 167 }
cannam@127 168
cannam@127 169 triggen *X(mktriggen)(enum wakefulness wakefulness, INT n)
cannam@127 170 {
cannam@127 171 INT i, n0, n1;
cannam@127 172 triggen *p = (triggen *)MALLOC(sizeof(*p), TWIDDLES);
cannam@127 173
cannam@127 174 p->n = n;
cannam@127 175 p->W0 = p->W1 = 0;
cannam@127 176 p->cexp = 0;
cannam@127 177 p->rotate = 0;
cannam@127 178
cannam@127 179 switch (wakefulness) {
cannam@127 180 case SLEEPY:
cannam@127 181 A(0 /* can't happen */);
cannam@127 182 break;
cannam@127 183
cannam@127 184 case AWAKE_SQRTN_TABLE: {
cannam@127 185 INT twshft = choose_twshft(n);
cannam@127 186
cannam@127 187 p->twshft = twshft;
cannam@127 188 p->twradix = ((INT)1) << twshft;
cannam@127 189 p->twmsk = p->twradix - 1;
cannam@127 190
cannam@127 191 n0 = p->twradix;
cannam@127 192 n1 = (n + n0 - 1) / n0;
cannam@127 193
cannam@127 194 p->W0 = (trigreal *)MALLOC(n0 * 2 * sizeof(trigreal), TWIDDLES);
cannam@127 195 p->W1 = (trigreal *)MALLOC(n1 * 2 * sizeof(trigreal), TWIDDLES);
cannam@127 196
cannam@127 197 for (i = 0; i < n0; ++i)
cannam@127 198 real_cexp(i, n, p->W0 + 2 * i);
cannam@127 199
cannam@127 200 for (i = 0; i < n1; ++i)
cannam@127 201 real_cexp(i * p->twradix, n, p->W1 + 2 * i);
cannam@127 202
cannam@127 203 p->cexpl = cexpl_sqrtn_table;
cannam@127 204 p->rotate = rotate_sqrtn_table;
cannam@127 205 break;
cannam@127 206 }
cannam@127 207
cannam@127 208 case AWAKE_SINCOS:
cannam@127 209 p->cexpl = cexpl_sincos;
cannam@127 210 break;
cannam@127 211
cannam@127 212 case AWAKE_ZERO:
cannam@127 213 p->cexp = cexp_zero;
cannam@127 214 p->cexpl = cexpl_zero;
cannam@127 215 break;
cannam@127 216 }
cannam@127 217
cannam@127 218 if (!p->cexp) {
cannam@127 219 if (sizeof(trigreal) == sizeof(R))
cannam@127 220 p->cexp = (void (*)(triggen *, INT, R *))p->cexpl;
cannam@127 221 else
cannam@127 222 p->cexp = cexp_generic;
cannam@127 223 }
cannam@127 224 if (!p->rotate)
cannam@127 225 p->rotate = rotate_generic;
cannam@127 226 return p;
cannam@127 227 }
cannam@127 228
cannam@127 229 void X(triggen_destroy)(triggen *p)
cannam@127 230 {
cannam@127 231 X(ifree0)(p->W0);
cannam@127 232 X(ifree0)(p->W1);
cannam@127 233 X(ifree)(p);
cannam@127 234 }