annotate src/fftw-3.3.8/rdft/codelet-rdft.h @ 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 bd3cc4d1df30
children
rev   line source
cannam@167 1 /*
cannam@167 2 * Copyright (c) 2003, 2007-14 Matteo Frigo
cannam@167 3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
cannam@167 4 *
cannam@167 5 * This program is free software; you can redistribute it and/or modify
cannam@167 6 * it under the terms of the GNU General Public License as published by
cannam@167 7 * the Free Software Foundation; either version 2 of the License, or
cannam@167 8 * (at your option) any later version.
cannam@167 9 *
cannam@167 10 * This program is distributed in the hope that it will be useful,
cannam@167 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@167 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@167 13 * GNU General Public License for more details.
cannam@167 14 *
cannam@167 15 * You should have received a copy of the GNU General Public License
cannam@167 16 * along with this program; if not, write to the Free Software
cannam@167 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@167 18 *
cannam@167 19 */
cannam@167 20
cannam@167 21 /*
cannam@167 22 * This header file must include every file or define every
cannam@167 23 * type or macro which is required to compile a codelet.
cannam@167 24 */
cannam@167 25
cannam@167 26 #ifndef __RDFT_CODELET_H__
cannam@167 27 #define __RDFT_CODELET_H__
cannam@167 28
cannam@167 29 #include "kernel/ifftw.h"
cannam@167 30
cannam@167 31 /**************************************************************
cannam@167 32 * types of codelets
cannam@167 33 **************************************************************/
cannam@167 34
cannam@167 35 /* FOOab, with a,b in {0,1}, denotes the FOO transform
cannam@167 36 where a/b say whether the input/output are shifted by
cannam@167 37 half a sample/slot. */
cannam@167 38
cannam@167 39 typedef enum {
cannam@167 40 R2HC00, R2HC01, R2HC10, R2HC11,
cannam@167 41 HC2R00, HC2R01, HC2R10, HC2R11,
cannam@167 42 DHT,
cannam@167 43 REDFT00, REDFT01, REDFT10, REDFT11, /* real-even == DCT's */
cannam@167 44 RODFT00, RODFT01, RODFT10, RODFT11 /* real-odd == DST's */
cannam@167 45 } rdft_kind;
cannam@167 46
cannam@167 47 /* standard R2HC/HC2R transforms are unshifted */
cannam@167 48 #define R2HC R2HC00
cannam@167 49 #define HC2R HC2R00
cannam@167 50
cannam@167 51 #define R2HCII R2HC01
cannam@167 52 #define HC2RIII HC2R10
cannam@167 53
cannam@167 54 /* (k) >= R2HC00 produces a warning under gcc because checking x >= 0
cannam@167 55 is superfluous for unsigned values...but it is needed because other
cannam@167 56 compilers (e.g. icc) may define the enum to be a signed int...grrr. */
cannam@167 57 #define R2HC_KINDP(k) ((k) >= R2HC00 && (k) <= R2HC11) /* uses kr2hc_genus */
cannam@167 58 #define HC2R_KINDP(k) ((k) >= HC2R00 && (k) <= HC2R11) /* uses khc2r_genus */
cannam@167 59
cannam@167 60 #define R2R_KINDP(k) ((k) >= DHT) /* uses kr2r_genus */
cannam@167 61
cannam@167 62 #define REDFT_KINDP(k) ((k) >= REDFT00 && (k) <= REDFT11)
cannam@167 63 #define RODFT_KINDP(k) ((k) >= RODFT00 && (k) <= RODFT11)
cannam@167 64 #define REODFT_KINDP(k) ((k) >= REDFT00 && (k) <= RODFT11)
cannam@167 65
cannam@167 66 /* codelets with real input (output) and complex output (input) */
cannam@167 67 typedef struct kr2c_desc_s kr2c_desc;
cannam@167 68
cannam@167 69 typedef struct {
cannam@167 70 rdft_kind kind;
cannam@167 71 INT vl;
cannam@167 72 } kr2c_genus;
cannam@167 73
cannam@167 74 struct kr2c_desc_s {
cannam@167 75 INT n; /* size of transform computed */
cannam@167 76 const char *nam;
cannam@167 77 opcnt ops;
cannam@167 78 const kr2c_genus *genus;
cannam@167 79 };
cannam@167 80
cannam@167 81 typedef void (*kr2c) (R *R0, R *R1, R *Cr, R *Ci,
cannam@167 82 stride rs, stride csr, stride csi,
cannam@167 83 INT vl, INT ivs, INT ovs);
cannam@167 84 void X(kr2c_register)(planner *p, kr2c codelet, const kr2c_desc *desc);
cannam@167 85
cannam@167 86 /* half-complex to half-complex DIT/DIF codelets: */
cannam@167 87 typedef struct hc2hc_desc_s hc2hc_desc;
cannam@167 88
cannam@167 89 typedef struct {
cannam@167 90 rdft_kind kind;
cannam@167 91 INT vl;
cannam@167 92 } hc2hc_genus;
cannam@167 93
cannam@167 94 struct hc2hc_desc_s {
cannam@167 95 INT radix;
cannam@167 96 const char *nam;
cannam@167 97 const tw_instr *tw;
cannam@167 98 const hc2hc_genus *genus;
cannam@167 99 opcnt ops;
cannam@167 100 };
cannam@167 101
cannam@167 102 typedef void (*khc2hc) (R *rioarray, R *iioarray, const R *W,
cannam@167 103 stride rs, INT mb, INT me, INT ms);
cannam@167 104 void X(khc2hc_register)(planner *p, khc2hc codelet, const hc2hc_desc *desc);
cannam@167 105
cannam@167 106 /* half-complex to rdft2-complex DIT/DIF codelets: */
cannam@167 107 typedef struct hc2c_desc_s hc2c_desc;
cannam@167 108
cannam@167 109 typedef enum {
cannam@167 110 HC2C_VIA_RDFT,
cannam@167 111 HC2C_VIA_DFT
cannam@167 112 } hc2c_kind;
cannam@167 113
cannam@167 114 typedef struct {
cannam@167 115 int (*okp)(
cannam@167 116 const R *Rp, const R *Ip, const R *Rm, const R *Im,
cannam@167 117 INT rs, INT mb, INT me, INT ms,
cannam@167 118 const planner *plnr);
cannam@167 119 rdft_kind kind;
cannam@167 120 INT vl;
cannam@167 121 } hc2c_genus;
cannam@167 122
cannam@167 123 struct hc2c_desc_s {
cannam@167 124 INT radix;
cannam@167 125 const char *nam;
cannam@167 126 const tw_instr *tw;
cannam@167 127 const hc2c_genus *genus;
cannam@167 128 opcnt ops;
cannam@167 129 };
cannam@167 130
cannam@167 131 typedef void (*khc2c) (R *Rp, R *Ip, R *Rm, R *Im, const R *W,
cannam@167 132 stride rs, INT mb, INT me, INT ms);
cannam@167 133 void X(khc2c_register)(planner *p, khc2c codelet, const hc2c_desc *desc,
cannam@167 134 hc2c_kind hc2ckind);
cannam@167 135
cannam@167 136 extern const solvtab X(solvtab_rdft_r2cf);
cannam@167 137 extern const solvtab X(solvtab_rdft_r2cb);
cannam@167 138 extern const solvtab X(solvtab_rdft_sse2);
cannam@167 139 extern const solvtab X(solvtab_rdft_avx);
cannam@167 140 extern const solvtab X(solvtab_rdft_avx_128_fma);
cannam@167 141 extern const solvtab X(solvtab_rdft_avx2);
cannam@167 142 extern const solvtab X(solvtab_rdft_avx2_128);
cannam@167 143 extern const solvtab X(solvtab_rdft_avx512);
cannam@167 144 extern const solvtab X(solvtab_rdft_kcvi);
cannam@167 145 extern const solvtab X(solvtab_rdft_altivec);
cannam@167 146 extern const solvtab X(solvtab_rdft_vsx);
cannam@167 147 extern const solvtab X(solvtab_rdft_neon);
cannam@167 148 extern const solvtab X(solvtab_rdft_generic_simd128);
cannam@167 149 extern const solvtab X(solvtab_rdft_generic_simd256);
cannam@167 150
cannam@167 151 /* real-input & output DFT-like codelets (DHT, etc.) */
cannam@167 152 typedef struct kr2r_desc_s kr2r_desc;
cannam@167 153
cannam@167 154 typedef struct {
cannam@167 155 INT vl;
cannam@167 156 } kr2r_genus;
cannam@167 157
cannam@167 158 struct kr2r_desc_s {
cannam@167 159 INT n; /* size of transform computed */
cannam@167 160 const char *nam;
cannam@167 161 opcnt ops;
cannam@167 162 const kr2r_genus *genus;
cannam@167 163 rdft_kind kind;
cannam@167 164 };
cannam@167 165
cannam@167 166 typedef void (*kr2r) (const R *I, R *O, stride is, stride os,
cannam@167 167 INT vl, INT ivs, INT ovs);
cannam@167 168 void X(kr2r_register)(planner *p, kr2r codelet, const kr2r_desc *desc);
cannam@167 169
cannam@167 170 extern const solvtab X(solvtab_rdft_r2r);
cannam@167 171
cannam@167 172 #endif /* __RDFT_CODELET_H__ */