annotate src/fftw-3.3.3/libbench2/allocate.c @ 148:b4bfdf10c4b3

Update Win64 capnp builds to v0.6
author Chris Cannam <cannam@all-day-breakfast.com>
date Mon, 22 May 2017 18:56:49 +0100
parents 89f5e221ed7b
children
rev   line source
cannam@95 1 /* not worth copyrighting */
cannam@95 2
cannam@95 3
cannam@95 4 #include "bench.h"
cannam@95 5
cannam@95 6 static void bounds(bench_problem *p, int *ilb, int *iub, int *olb, int *oub)
cannam@95 7 {
cannam@95 8 bench_tensor *t = tensor_append(p->sz, p->vecsz);
cannam@95 9 tensor_ibounds(t, ilb, iub);
cannam@95 10 tensor_obounds(t, olb, oub);
cannam@95 11 tensor_destroy(t);
cannam@95 12 }
cannam@95 13
cannam@95 14 /*
cannam@95 15 * Allocate I/O arrays for a problem.
cannam@95 16 *
cannam@95 17 * This is the default routine that can be overridden by the user in
cannam@95 18 * complicated cases.
cannam@95 19 */
cannam@95 20 void problem_alloc(bench_problem *p)
cannam@95 21 {
cannam@95 22 int ilb, iub, olb, oub;
cannam@95 23 int isz, osz;
cannam@95 24
cannam@95 25 bounds(p, &ilb, &iub, &olb, &oub);
cannam@95 26 isz = iub - ilb;
cannam@95 27 osz = oub - olb;
cannam@95 28
cannam@95 29 if (p->kind == PROBLEM_COMPLEX) {
cannam@95 30 bench_complex *in, *out;
cannam@95 31
cannam@95 32 p->iphyssz = isz;
cannam@95 33 p->inphys = in = (bench_complex *) bench_malloc(isz * sizeof(bench_complex));
cannam@95 34 p->in = in - ilb;
cannam@95 35
cannam@95 36 if (p->in_place) {
cannam@95 37 p->out = p->in;
cannam@95 38 p->outphys = p->inphys;
cannam@95 39 p->ophyssz = p->iphyssz;
cannam@95 40 } else {
cannam@95 41 p->ophyssz = osz;
cannam@95 42 p->outphys = out = (bench_complex *) bench_malloc(osz * sizeof(bench_complex));
cannam@95 43 p->out = out - olb;
cannam@95 44 }
cannam@95 45 } else if (p->kind == PROBLEM_R2R) {
cannam@95 46 bench_real *in, *out;
cannam@95 47
cannam@95 48 p->iphyssz = isz;
cannam@95 49 p->inphys = in = (bench_real *) bench_malloc(isz * sizeof(bench_real));
cannam@95 50 p->in = in - ilb;
cannam@95 51
cannam@95 52 if (p->in_place) {
cannam@95 53 p->out = p->in;
cannam@95 54 p->outphys = p->inphys;
cannam@95 55 p->ophyssz = p->iphyssz;
cannam@95 56 } else {
cannam@95 57 p->ophyssz = osz;
cannam@95 58 p->outphys = out = (bench_real *) bench_malloc(osz * sizeof(bench_real));
cannam@95 59 p->out = out - olb;
cannam@95 60 }
cannam@95 61 } else if (p->kind == PROBLEM_REAL && p->sign < 0) { /* R2HC */
cannam@95 62 bench_real *in;
cannam@95 63 bench_complex *out;
cannam@95 64
cannam@95 65 isz = isz > osz*2 ? isz : osz*2;
cannam@95 66 p->iphyssz = isz;
cannam@95 67 p->inphys = in = (bench_real *) bench_malloc(p->iphyssz * sizeof(bench_real));
cannam@95 68 p->in = in - ilb;
cannam@95 69
cannam@95 70 if (p->in_place) {
cannam@95 71 p->out = p->in;
cannam@95 72 p->outphys = p->inphys;
cannam@95 73 p->ophyssz = p->iphyssz / 2;
cannam@95 74 } else {
cannam@95 75 p->ophyssz = osz;
cannam@95 76 p->outphys = out = (bench_complex *) bench_malloc(osz * sizeof(bench_complex));
cannam@95 77 p->out = out - olb;
cannam@95 78 }
cannam@95 79 } else if (p->kind == PROBLEM_REAL && p->sign > 0) { /* HC2R */
cannam@95 80 bench_real *out;
cannam@95 81 bench_complex *in;
cannam@95 82
cannam@95 83 osz = osz > isz*2 ? osz : isz*2;
cannam@95 84 p->ophyssz = osz;
cannam@95 85 p->outphys = out = (bench_real *) bench_malloc(p->ophyssz * sizeof(bench_real));
cannam@95 86 p->out = out - olb;
cannam@95 87
cannam@95 88 if (p->in_place) {
cannam@95 89 p->in = p->out;
cannam@95 90 p->inphys = p->outphys;
cannam@95 91 p->iphyssz = p->ophyssz / 2;
cannam@95 92 } else {
cannam@95 93 p->iphyssz = isz;
cannam@95 94 p->inphys = in = (bench_complex *) bench_malloc(isz * sizeof(bench_complex));
cannam@95 95 p->in = in - ilb;
cannam@95 96 }
cannam@95 97 } else {
cannam@95 98 BENCH_ASSERT(0); /* TODO */
cannam@95 99 }
cannam@95 100 }
cannam@95 101
cannam@95 102 void problem_free(bench_problem *p)
cannam@95 103 {
cannam@95 104 if (p->outphys && p->outphys != p->inphys)
cannam@95 105 bench_free(p->outphys);
cannam@95 106 if (p->inphys)
cannam@95 107 bench_free(p->inphys);
cannam@95 108 tensor_destroy(p->sz);
cannam@95 109 tensor_destroy(p->vecsz);
cannam@95 110 }