annotate src/fftw-3.3.8/mpi/dtensor.c @ 83:ae30d91d2ffe

Replace these with versions built using an older toolset (so as to avoid ABI compatibilities when linking on Ubuntu 14.04 for packaging purposes)
author Chris Cannam
date Fri, 07 Feb 2020 11:51:13 +0000
parents d0c2a83c1364
children
rev   line source
Chris@82 1 /*
Chris@82 2 * Copyright (c) 2003, 2007-14 Matteo Frigo
Chris@82 3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
Chris@82 4 *
Chris@82 5 * This program is free software; you can redistribute it and/or modify
Chris@82 6 * it under the terms of the GNU General Public License as published by
Chris@82 7 * the Free Software Foundation; either version 2 of the License, or
Chris@82 8 * (at your option) any later version.
Chris@82 9 *
Chris@82 10 * This program is distributed in the hope that it will be useful,
Chris@82 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
Chris@82 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
Chris@82 13 * GNU General Public License for more details.
Chris@82 14 *
Chris@82 15 * You should have received a copy of the GNU General Public License
Chris@82 16 * along with this program; if not, write to the Free Software
Chris@82 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
Chris@82 18 *
Chris@82 19 */
Chris@82 20
Chris@82 21 #include "ifftw-mpi.h"
Chris@82 22
Chris@82 23 dtensor *XM(mkdtensor)(int rnk)
Chris@82 24 {
Chris@82 25 dtensor *x;
Chris@82 26
Chris@82 27 A(rnk >= 0);
Chris@82 28
Chris@82 29 #if defined(STRUCT_HACK_KR)
Chris@82 30 if (FINITE_RNK(rnk) && rnk > 1)
Chris@82 31 x = (dtensor *)MALLOC(sizeof(dtensor) + (rnk - 1) * sizeof(ddim),
Chris@82 32 TENSORS);
Chris@82 33 else
Chris@82 34 x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS);
Chris@82 35 #elif defined(STRUCT_HACK_C99)
Chris@82 36 if (FINITE_RNK(rnk))
Chris@82 37 x = (dtensor *)MALLOC(sizeof(dtensor) + rnk * sizeof(ddim),
Chris@82 38 TENSORS);
Chris@82 39 else
Chris@82 40 x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS);
Chris@82 41 #else
Chris@82 42 x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS);
Chris@82 43 if (FINITE_RNK(rnk) && rnk > 0)
Chris@82 44 x->dims = (ddim *)MALLOC(sizeof(ddim) * rnk, TENSORS);
Chris@82 45 else
Chris@82 46 x->dims = 0;
Chris@82 47 #endif
Chris@82 48
Chris@82 49 x->rnk = rnk;
Chris@82 50 return x;
Chris@82 51 }
Chris@82 52
Chris@82 53 void XM(dtensor_destroy)(dtensor *sz)
Chris@82 54 {
Chris@82 55 #if !defined(STRUCT_HACK_C99) && !defined(STRUCT_HACK_KR)
Chris@82 56 X(ifree0)(sz->dims);
Chris@82 57 #endif
Chris@82 58 X(ifree)(sz);
Chris@82 59 }
Chris@82 60
Chris@82 61 void XM(dtensor_md5)(md5 *p, const dtensor *t)
Chris@82 62 {
Chris@82 63 int i;
Chris@82 64 X(md5int)(p, t->rnk);
Chris@82 65 if (FINITE_RNK(t->rnk)) {
Chris@82 66 for (i = 0; i < t->rnk; ++i) {
Chris@82 67 const ddim *q = t->dims + i;
Chris@82 68 X(md5INT)(p, q->n);
Chris@82 69 X(md5INT)(p, q->b[IB]);
Chris@82 70 X(md5INT)(p, q->b[OB]);
Chris@82 71 }
Chris@82 72 }
Chris@82 73 }
Chris@82 74
Chris@82 75 dtensor *XM(dtensor_copy)(const dtensor *sz)
Chris@82 76 {
Chris@82 77 dtensor *x = XM(mkdtensor)(sz->rnk);
Chris@82 78 int i;
Chris@82 79 if (FINITE_RNK(sz->rnk))
Chris@82 80 for (i = 0; i < sz->rnk; ++i)
Chris@82 81 x->dims[i] = sz->dims[i];
Chris@82 82 return x;
Chris@82 83 }
Chris@82 84
Chris@82 85 dtensor *XM(dtensor_canonical)(const dtensor *sz, int compress)
Chris@82 86 {
Chris@82 87 int i, rnk;
Chris@82 88 dtensor *x;
Chris@82 89 block_kind k;
Chris@82 90
Chris@82 91 if (!FINITE_RNK(sz->rnk))
Chris@82 92 return XM(mkdtensor)(sz->rnk);
Chris@82 93 for (i = rnk = 0; i < sz->rnk; ++i) {
Chris@82 94 if (sz->dims[i].n <= 0)
Chris@82 95 return XM(mkdtensor)(RNK_MINFTY);
Chris@82 96 else if (!compress || sz->dims[i].n > 1)
Chris@82 97 ++rnk;
Chris@82 98 }
Chris@82 99 x = XM(mkdtensor)(rnk);
Chris@82 100 for (i = rnk = 0; i < sz->rnk; ++i) {
Chris@82 101 if (!compress || sz->dims[i].n > 1) {
Chris@82 102 x->dims[rnk].n = sz->dims[i].n;
Chris@82 103 FORALL_BLOCK_KIND(k) {
Chris@82 104 if (XM(num_blocks)(sz->dims[i].n, sz->dims[i].b[k]) == 1)
Chris@82 105 x->dims[rnk].b[k] = sz->dims[i].n;
Chris@82 106 else
Chris@82 107 x->dims[rnk].b[k] = sz->dims[i].b[k];
Chris@82 108 }
Chris@82 109 ++rnk;
Chris@82 110 }
Chris@82 111 }
Chris@82 112 return x;
Chris@82 113 }
Chris@82 114
Chris@82 115 int XM(dtensor_validp)(const dtensor *sz)
Chris@82 116 {
Chris@82 117 int i;
Chris@82 118 if (sz->rnk < 0) return 0;
Chris@82 119 if (FINITE_RNK(sz->rnk))
Chris@82 120 for (i = 0; i < sz->rnk; ++i)
Chris@82 121 if (sz->dims[i].n < 0
Chris@82 122 || sz->dims[i].b[IB] <= 0
Chris@82 123 || sz->dims[i].b[OB] <= 0)
Chris@82 124 return 0;
Chris@82 125 return 1;
Chris@82 126 }
Chris@82 127
Chris@82 128 void XM(dtensor_print)(const dtensor *t, printer *p)
Chris@82 129 {
Chris@82 130 if (FINITE_RNK(t->rnk)) {
Chris@82 131 int i;
Chris@82 132 int first = 1;
Chris@82 133 p->print(p, "(");
Chris@82 134 for (i = 0; i < t->rnk; ++i) {
Chris@82 135 const ddim *d = t->dims + i;
Chris@82 136 p->print(p, "%s(%D %D %D)",
Chris@82 137 first ? "" : " ",
Chris@82 138 d->n, d->b[IB], d->b[OB]);
Chris@82 139 first = 0;
Chris@82 140 }
Chris@82 141 p->print(p, ")");
Chris@82 142 } else {
Chris@82 143 p->print(p, "rank-minfty");
Chris@82 144 }
Chris@82 145
Chris@82 146 }