annotate src/fftw-3.3.3/rdft/scalar/r2cf/r2cfII_6.c @ 23:619f715526df sv_v2.1

Update Vamp plugin SDK to 2.5
author Chris Cannam
date Thu, 09 May 2013 10:52:46 +0100
parents 37bf6b4a2645
children
rev   line source
Chris@10 1 /*
Chris@10 2 * Copyright (c) 2003, 2007-11 Matteo Frigo
Chris@10 3 * Copyright (c) 2003, 2007-11 Massachusetts Institute of Technology
Chris@10 4 *
Chris@10 5 * This program is free software; you can redistribute it and/or modify
Chris@10 6 * it under the terms of the GNU General Public License as published by
Chris@10 7 * the Free Software Foundation; either version 2 of the License, or
Chris@10 8 * (at your option) any later version.
Chris@10 9 *
Chris@10 10 * This program is distributed in the hope that it will be useful,
Chris@10 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
Chris@10 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
Chris@10 13 * GNU General Public License for more details.
Chris@10 14 *
Chris@10 15 * You should have received a copy of the GNU General Public License
Chris@10 16 * along with this program; if not, write to the Free Software
Chris@10 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
Chris@10 18 *
Chris@10 19 */
Chris@10 20
Chris@10 21 /* This file was automatically generated --- DO NOT EDIT */
Chris@10 22 /* Generated on Sun Nov 25 07:40:13 EST 2012 */
Chris@10 23
Chris@10 24 #include "codelet-rdft.h"
Chris@10 25
Chris@10 26 #ifdef HAVE_FMA
Chris@10 27
Chris@10 28 /* Generated by: ../../../genfft/gen_r2cf.native -fma -reorder-insns -schedule-for-pipeline -compact -variables 4 -pipeline-latency 4 -n 6 -name r2cfII_6 -dft-II -include r2cfII.h */
Chris@10 29
Chris@10 30 /*
Chris@10 31 * This function contains 13 FP additions, 6 FP multiplications,
Chris@10 32 * (or, 7 additions, 0 multiplications, 6 fused multiply/add),
Chris@10 33 * 15 stack variables, 2 constants, and 12 memory accesses
Chris@10 34 */
Chris@10 35 #include "r2cfII.h"
Chris@10 36
Chris@10 37 static void r2cfII_6(R *R0, R *R1, R *Cr, R *Ci, stride rs, stride csr, stride csi, INT v, INT ivs, INT ovs)
Chris@10 38 {
Chris@10 39 DK(KP866025403, +0.866025403784438646763723170752936183471402627);
Chris@10 40 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
Chris@10 41 {
Chris@10 42 INT i;
Chris@10 43 for (i = v; i > 0; i = i - 1, R0 = R0 + ivs, R1 = R1 + ivs, Cr = Cr + ovs, Ci = Ci + ovs, MAKE_VOLATILE_STRIDE(24, rs), MAKE_VOLATILE_STRIDE(24, csr), MAKE_VOLATILE_STRIDE(24, csi)) {
Chris@10 44 E T1, T9, T2, T3, T6, T7;
Chris@10 45 T1 = R0[0];
Chris@10 46 T9 = R1[WS(rs, 1)];
Chris@10 47 T2 = R0[WS(rs, 2)];
Chris@10 48 T3 = R0[WS(rs, 1)];
Chris@10 49 T6 = R1[WS(rs, 2)];
Chris@10 50 T7 = R1[0];
Chris@10 51 {
Chris@10 52 E Tc, T4, Ta, T8, T5, Tb;
Chris@10 53 Cr[WS(csr, 1)] = T1 + T2 - T3;
Chris@10 54 Tc = T2 + T3;
Chris@10 55 T4 = T3 - T2;
Chris@10 56 Ta = T6 + T7;
Chris@10 57 T8 = T6 - T7;
Chris@10 58 T5 = FMA(KP500000000, T4, T1);
Chris@10 59 Tb = FMA(KP500000000, Ta, T9);
Chris@10 60 Ci[WS(csi, 1)] = T9 - Ta;
Chris@10 61 Cr[WS(csr, 2)] = FMA(KP866025403, T8, T5);
Chris@10 62 Cr[0] = FNMS(KP866025403, T8, T5);
Chris@10 63 Ci[WS(csi, 2)] = FMS(KP866025403, Tc, Tb);
Chris@10 64 Ci[0] = -(FMA(KP866025403, Tc, Tb));
Chris@10 65 }
Chris@10 66 }
Chris@10 67 }
Chris@10 68 }
Chris@10 69
Chris@10 70 static const kr2c_desc desc = { 6, "r2cfII_6", {7, 0, 6, 0}, &GENUS };
Chris@10 71
Chris@10 72 void X(codelet_r2cfII_6) (planner *p) {
Chris@10 73 X(kr2c_register) (p, r2cfII_6, &desc);
Chris@10 74 }
Chris@10 75
Chris@10 76 #else /* HAVE_FMA */
Chris@10 77
Chris@10 78 /* Generated by: ../../../genfft/gen_r2cf.native -compact -variables 4 -pipeline-latency 4 -n 6 -name r2cfII_6 -dft-II -include r2cfII.h */
Chris@10 79
Chris@10 80 /*
Chris@10 81 * This function contains 13 FP additions, 4 FP multiplications,
Chris@10 82 * (or, 11 additions, 2 multiplications, 2 fused multiply/add),
Chris@10 83 * 14 stack variables, 2 constants, and 12 memory accesses
Chris@10 84 */
Chris@10 85 #include "r2cfII.h"
Chris@10 86
Chris@10 87 static void r2cfII_6(R *R0, R *R1, R *Cr, R *Ci, stride rs, stride csr, stride csi, INT v, INT ivs, INT ovs)
Chris@10 88 {
Chris@10 89 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
Chris@10 90 DK(KP866025403, +0.866025403784438646763723170752936183471402627);
Chris@10 91 {
Chris@10 92 INT i;
Chris@10 93 for (i = v; i > 0; i = i - 1, R0 = R0 + ivs, R1 = R1 + ivs, Cr = Cr + ovs, Ci = Ci + ovs, MAKE_VOLATILE_STRIDE(24, rs), MAKE_VOLATILE_STRIDE(24, csr), MAKE_VOLATILE_STRIDE(24, csi)) {
Chris@10 94 E Ta, T7, T9, T1, T3, T2, T8, T4, T5, T6, Tb;
Chris@10 95 Ta = R1[WS(rs, 1)];
Chris@10 96 T5 = R1[WS(rs, 2)];
Chris@10 97 T6 = R1[0];
Chris@10 98 T7 = KP866025403 * (T5 - T6);
Chris@10 99 T9 = T5 + T6;
Chris@10 100 T1 = R0[0];
Chris@10 101 T3 = R0[WS(rs, 1)];
Chris@10 102 T2 = R0[WS(rs, 2)];
Chris@10 103 T8 = KP866025403 * (T2 + T3);
Chris@10 104 T4 = FMA(KP500000000, T3 - T2, T1);
Chris@10 105 Cr[0] = T4 - T7;
Chris@10 106 Cr[WS(csr, 2)] = T4 + T7;
Chris@10 107 Ci[WS(csi, 1)] = Ta - T9;
Chris@10 108 Cr[WS(csr, 1)] = T1 + T2 - T3;
Chris@10 109 Tb = FMA(KP500000000, T9, Ta);
Chris@10 110 Ci[0] = -(T8 + Tb);
Chris@10 111 Ci[WS(csi, 2)] = T8 - Tb;
Chris@10 112 }
Chris@10 113 }
Chris@10 114 }
Chris@10 115
Chris@10 116 static const kr2c_desc desc = { 6, "r2cfII_6", {11, 2, 2, 0}, &GENUS };
Chris@10 117
Chris@10 118 void X(codelet_r2cfII_6) (planner *p) {
Chris@10 119 X(kr2c_register) (p, r2cfII_6, &desc);
Chris@10 120 }
Chris@10 121
Chris@10 122 #endif /* HAVE_FMA */