annotate src/fftw-3.3.3/threads/rdft-vrank-geq1.c @ 168:ceec0dd9ec9c

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 <cannam@all-day-breakfast.com>
date Fri, 07 Feb 2020 11:51:13 +0000
parents 89f5e221ed7b
children
rev   line source
cannam@95 1 /*
cannam@95 2 * Copyright (c) 2003, 2007-11 Matteo Frigo
cannam@95 3 * Copyright (c) 2003, 2007-11 Massachusetts Institute of Technology
cannam@95 4 *
cannam@95 5 * This program is free software; you can redistribute it and/or modify
cannam@95 6 * it under the terms of the GNU General Public License as published by
cannam@95 7 * the Free Software Foundation; either version 2 of the License, or
cannam@95 8 * (at your option) any later version.
cannam@95 9 *
cannam@95 10 * This program is distributed in the hope that it will be useful,
cannam@95 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@95 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@95 13 * GNU General Public License for more details.
cannam@95 14 *
cannam@95 15 * You should have received a copy of the GNU General Public License
cannam@95 16 * along with this program; if not, write to the Free Software
cannam@95 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@95 18 *
cannam@95 19 */
cannam@95 20
cannam@95 21
cannam@95 22 #include "threads.h"
cannam@95 23
cannam@95 24 typedef struct {
cannam@95 25 solver super;
cannam@95 26 int vecloop_dim;
cannam@95 27 const int *buddies;
cannam@95 28 int nbuddies;
cannam@95 29 } S;
cannam@95 30
cannam@95 31 typedef struct {
cannam@95 32 plan_rdft super;
cannam@95 33 plan **cldrn;
cannam@95 34 INT its, ots;
cannam@95 35 int nthr;
cannam@95 36 const S *solver;
cannam@95 37 } P;
cannam@95 38
cannam@95 39 typedef struct {
cannam@95 40 INT its, ots;
cannam@95 41 R *I, *O;
cannam@95 42 plan **cldrn;
cannam@95 43 } PD;
cannam@95 44
cannam@95 45 static void *spawn_apply(spawn_data *d)
cannam@95 46 {
cannam@95 47 PD *ego = (PD *) d->data;
cannam@95 48 int thr_num = d->thr_num;
cannam@95 49 plan_rdft *cld = (plan_rdft *) ego->cldrn[d->thr_num];
cannam@95 50
cannam@95 51 cld->apply((plan *) cld,
cannam@95 52 ego->I + thr_num * ego->its, ego->O + thr_num * ego->ots);
cannam@95 53 return 0;
cannam@95 54 }
cannam@95 55
cannam@95 56 static void apply(const plan *ego_, R *I, R *O)
cannam@95 57 {
cannam@95 58 const P *ego = (const P *) ego_;
cannam@95 59 PD d;
cannam@95 60
cannam@95 61 d.its = ego->its;
cannam@95 62 d.ots = ego->ots;
cannam@95 63 d.cldrn = ego->cldrn;
cannam@95 64 d.I = I; d.O = O;
cannam@95 65
cannam@95 66 X(spawn_loop)(ego->nthr, ego->nthr, spawn_apply, (void*) &d);
cannam@95 67 }
cannam@95 68
cannam@95 69 static void awake(plan *ego_, enum wakefulness wakefulness)
cannam@95 70 {
cannam@95 71 P *ego = (P *) ego_;
cannam@95 72 int i;
cannam@95 73 for (i = 0; i < ego->nthr; ++i)
cannam@95 74 X(plan_awake)(ego->cldrn[i], wakefulness);
cannam@95 75 }
cannam@95 76
cannam@95 77 static void destroy(plan *ego_)
cannam@95 78 {
cannam@95 79 P *ego = (P *) ego_;
cannam@95 80 int i;
cannam@95 81 for (i = 0; i < ego->nthr; ++i)
cannam@95 82 X(plan_destroy_internal)(ego->cldrn[i]);
cannam@95 83 X(ifree)(ego->cldrn);
cannam@95 84 }
cannam@95 85
cannam@95 86 static void print(const plan *ego_, printer *p)
cannam@95 87 {
cannam@95 88 const P *ego = (const P *) ego_;
cannam@95 89 const S *s = ego->solver;
cannam@95 90 int i;
cannam@95 91 p->print(p, "(rdft-thr-vrank>=1-x%d/%d", ego->nthr, s->vecloop_dim);
cannam@95 92 for (i = 0; i < ego->nthr; ++i)
cannam@95 93 if (i == 0 || (ego->cldrn[i] != ego->cldrn[i-1] &&
cannam@95 94 (i <= 1 || ego->cldrn[i] != ego->cldrn[i-2])))
cannam@95 95 p->print(p, "%(%p%)", ego->cldrn[i]);
cannam@95 96 p->putchr(p, ')');
cannam@95 97 }
cannam@95 98
cannam@95 99 static int pickdim(const S *ego, const tensor *vecsz, int oop, int *dp)
cannam@95 100 {
cannam@95 101 return X(pickdim)(ego->vecloop_dim, ego->buddies, ego->nbuddies,
cannam@95 102 vecsz, oop, dp);
cannam@95 103 }
cannam@95 104
cannam@95 105 static int applicable0(const solver *ego_, const problem *p_,
cannam@95 106 const planner *plnr, int *dp)
cannam@95 107 {
cannam@95 108 const S *ego = (const S *) ego_;
cannam@95 109 const problem_rdft *p = (const problem_rdft *) p_;
cannam@95 110
cannam@95 111 return (1
cannam@95 112 && plnr->nthr > 1
cannam@95 113 && FINITE_RNK(p->vecsz->rnk)
cannam@95 114 && p->vecsz->rnk > 0
cannam@95 115 && pickdim(ego, p->vecsz, p->I != p->O, dp)
cannam@95 116 );
cannam@95 117 }
cannam@95 118
cannam@95 119 static int applicable(const solver *ego_, const problem *p_,
cannam@95 120 const planner *plnr, int *dp)
cannam@95 121 {
cannam@95 122 const S *ego = (const S *)ego_;
cannam@95 123
cannam@95 124 if (!applicable0(ego_, p_, plnr, dp)) return 0;
cannam@95 125
cannam@95 126 /* fftw2 behavior */
cannam@95 127 if (NO_VRANK_SPLITSP(plnr) && (ego->vecloop_dim != ego->buddies[0]))
cannam@95 128 return 0;
cannam@95 129
cannam@95 130 return 1;
cannam@95 131 }
cannam@95 132
cannam@95 133 static plan *mkplan(const solver *ego_, const problem *p_, planner *plnr)
cannam@95 134 {
cannam@95 135 const S *ego = (const S *) ego_;
cannam@95 136 const problem_rdft *p;
cannam@95 137 P *pln;
cannam@95 138 problem *cldp;
cannam@95 139 int vdim;
cannam@95 140 iodim *d;
cannam@95 141 plan **cldrn = (plan **) 0;
cannam@95 142 int i, nthr;
cannam@95 143 INT its, ots, block_size;
cannam@95 144 tensor *vecsz;
cannam@95 145
cannam@95 146 static const plan_adt padt = {
cannam@95 147 X(rdft_solve), awake, print, destroy
cannam@95 148 };
cannam@95 149
cannam@95 150 if (!applicable(ego_, p_, plnr, &vdim))
cannam@95 151 return (plan *) 0;
cannam@95 152 p = (const problem_rdft *) p_;
cannam@95 153
cannam@95 154 d = p->vecsz->dims + vdim;
cannam@95 155
cannam@95 156 block_size = (d->n + plnr->nthr - 1) / plnr->nthr;
cannam@95 157 nthr = (int)((d->n + block_size - 1) / block_size);
cannam@95 158 plnr->nthr = (plnr->nthr + nthr - 1) / nthr;
cannam@95 159 its = d->is * block_size;
cannam@95 160 ots = d->os * block_size;
cannam@95 161
cannam@95 162 cldrn = (plan **)MALLOC(sizeof(plan *) * nthr, PLANS);
cannam@95 163 for (i = 0; i < nthr; ++i) cldrn[i] = (plan *) 0;
cannam@95 164
cannam@95 165 vecsz = X(tensor_copy)(p->vecsz);
cannam@95 166 for (i = 0; i < nthr; ++i) {
cannam@95 167 vecsz->dims[vdim].n =
cannam@95 168 (i == nthr - 1) ? (d->n - i*block_size) : block_size;
cannam@95 169 cldp = X(mkproblem_rdft)(p->sz, vecsz,
cannam@95 170 p->I + i*its, p->O + i*ots, p->kind);
cannam@95 171 cldrn[i] = X(mkplan_d)(plnr, cldp);
cannam@95 172 if (!cldrn[i]) goto nada;
cannam@95 173 }
cannam@95 174 X(tensor_destroy)(vecsz);
cannam@95 175
cannam@95 176 pln = MKPLAN_RDFT(P, &padt, apply);
cannam@95 177
cannam@95 178 pln->cldrn = cldrn;
cannam@95 179 pln->its = its;
cannam@95 180 pln->ots = ots;
cannam@95 181 pln->nthr = nthr;
cannam@95 182
cannam@95 183 pln->solver = ego;
cannam@95 184 X(ops_zero)(&pln->super.super.ops);
cannam@95 185 pln->super.super.pcost = 0;
cannam@95 186 for (i = 0; i < nthr; ++i) {
cannam@95 187 X(ops_add2)(&cldrn[i]->ops, &pln->super.super.ops);
cannam@95 188 pln->super.super.pcost += cldrn[i]->pcost;
cannam@95 189 }
cannam@95 190
cannam@95 191 return &(pln->super.super);
cannam@95 192
cannam@95 193 nada:
cannam@95 194 if (cldrn) {
cannam@95 195 for (i = 0; i < nthr; ++i)
cannam@95 196 X(plan_destroy_internal)(cldrn[i]);
cannam@95 197 X(ifree)(cldrn);
cannam@95 198 }
cannam@95 199 X(tensor_destroy)(vecsz);
cannam@95 200 return (plan *) 0;
cannam@95 201 }
cannam@95 202
cannam@95 203 static solver *mksolver(int vecloop_dim, const int *buddies, int nbuddies)
cannam@95 204 {
cannam@95 205 static const solver_adt sadt = { PROBLEM_RDFT, mkplan, 0 };
cannam@95 206 S *slv = MKSOLVER(S, &sadt);
cannam@95 207 slv->vecloop_dim = vecloop_dim;
cannam@95 208 slv->buddies = buddies;
cannam@95 209 slv->nbuddies = nbuddies;
cannam@95 210 return &(slv->super);
cannam@95 211 }
cannam@95 212
cannam@95 213 void X(rdft_thr_vrank_geq1_register)(planner *p)
cannam@95 214 {
cannam@95 215 int i;
cannam@95 216
cannam@95 217 /* FIXME: Should we try other vecloop_dim values? */
cannam@95 218 static const int buddies[] = { 1, -1 };
cannam@95 219
cannam@95 220 const int nbuddies = (int)(sizeof(buddies) / sizeof(buddies[0]));
cannam@95 221
cannam@95 222 for (i = 0; i < nbuddies; ++i)
cannam@95 223 REGISTER_SOLVER(p, mksolver(buddies[i], buddies, nbuddies));
cannam@95 224 }