Chris@82: /* Chris@82: * Copyright (c) 2003, 2007-14 Matteo Frigo Chris@82: * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology Chris@82: * Chris@82: * This program is free software; you can redistribute it and/or modify Chris@82: * it under the terms of the GNU General Public License as published by Chris@82: * the Free Software Foundation; either version 2 of the License, or Chris@82: * (at your option) any later version. Chris@82: * Chris@82: * This program is distributed in the hope that it will be useful, Chris@82: * but WITHOUT ANY WARRANTY; without even the implied warranty of Chris@82: * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the Chris@82: * GNU General Public License for more details. Chris@82: * Chris@82: * You should have received a copy of the GNU General Public License Chris@82: * along with this program; if not, write to the Free Software Chris@82: * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA Chris@82: * Chris@82: */ Chris@82: Chris@82: #include "ifftw-mpi.h" Chris@82: Chris@82: dtensor *XM(mkdtensor)(int rnk) Chris@82: { Chris@82: dtensor *x; Chris@82: Chris@82: A(rnk >= 0); Chris@82: Chris@82: #if defined(STRUCT_HACK_KR) Chris@82: if (FINITE_RNK(rnk) && rnk > 1) Chris@82: x = (dtensor *)MALLOC(sizeof(dtensor) + (rnk - 1) * sizeof(ddim), Chris@82: TENSORS); Chris@82: else Chris@82: x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS); Chris@82: #elif defined(STRUCT_HACK_C99) Chris@82: if (FINITE_RNK(rnk)) Chris@82: x = (dtensor *)MALLOC(sizeof(dtensor) + rnk * sizeof(ddim), Chris@82: TENSORS); Chris@82: else Chris@82: x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS); Chris@82: #else Chris@82: x = (dtensor *)MALLOC(sizeof(dtensor), TENSORS); Chris@82: if (FINITE_RNK(rnk) && rnk > 0) Chris@82: x->dims = (ddim *)MALLOC(sizeof(ddim) * rnk, TENSORS); Chris@82: else Chris@82: x->dims = 0; Chris@82: #endif Chris@82: Chris@82: x->rnk = rnk; Chris@82: return x; Chris@82: } Chris@82: Chris@82: void XM(dtensor_destroy)(dtensor *sz) Chris@82: { Chris@82: #if !defined(STRUCT_HACK_C99) && !defined(STRUCT_HACK_KR) Chris@82: X(ifree0)(sz->dims); Chris@82: #endif Chris@82: X(ifree)(sz); Chris@82: } Chris@82: Chris@82: void XM(dtensor_md5)(md5 *p, const dtensor *t) Chris@82: { Chris@82: int i; Chris@82: X(md5int)(p, t->rnk); Chris@82: if (FINITE_RNK(t->rnk)) { Chris@82: for (i = 0; i < t->rnk; ++i) { Chris@82: const ddim *q = t->dims + i; Chris@82: X(md5INT)(p, q->n); Chris@82: X(md5INT)(p, q->b[IB]); Chris@82: X(md5INT)(p, q->b[OB]); Chris@82: } Chris@82: } Chris@82: } Chris@82: Chris@82: dtensor *XM(dtensor_copy)(const dtensor *sz) Chris@82: { Chris@82: dtensor *x = XM(mkdtensor)(sz->rnk); Chris@82: int i; Chris@82: if (FINITE_RNK(sz->rnk)) Chris@82: for (i = 0; i < sz->rnk; ++i) Chris@82: x->dims[i] = sz->dims[i]; Chris@82: return x; Chris@82: } Chris@82: Chris@82: dtensor *XM(dtensor_canonical)(const dtensor *sz, int compress) Chris@82: { Chris@82: int i, rnk; Chris@82: dtensor *x; Chris@82: block_kind k; Chris@82: Chris@82: if (!FINITE_RNK(sz->rnk)) Chris@82: return XM(mkdtensor)(sz->rnk); Chris@82: for (i = rnk = 0; i < sz->rnk; ++i) { Chris@82: if (sz->dims[i].n <= 0) Chris@82: return XM(mkdtensor)(RNK_MINFTY); Chris@82: else if (!compress || sz->dims[i].n > 1) Chris@82: ++rnk; Chris@82: } Chris@82: x = XM(mkdtensor)(rnk); Chris@82: for (i = rnk = 0; i < sz->rnk; ++i) { Chris@82: if (!compress || sz->dims[i].n > 1) { Chris@82: x->dims[rnk].n = sz->dims[i].n; Chris@82: FORALL_BLOCK_KIND(k) { Chris@82: if (XM(num_blocks)(sz->dims[i].n, sz->dims[i].b[k]) == 1) Chris@82: x->dims[rnk].b[k] = sz->dims[i].n; Chris@82: else Chris@82: x->dims[rnk].b[k] = sz->dims[i].b[k]; Chris@82: } Chris@82: ++rnk; Chris@82: } Chris@82: } Chris@82: return x; Chris@82: } Chris@82: Chris@82: int XM(dtensor_validp)(const dtensor *sz) Chris@82: { Chris@82: int i; Chris@82: if (sz->rnk < 0) return 0; Chris@82: if (FINITE_RNK(sz->rnk)) Chris@82: for (i = 0; i < sz->rnk; ++i) Chris@82: if (sz->dims[i].n < 0 Chris@82: || sz->dims[i].b[IB] <= 0 Chris@82: || sz->dims[i].b[OB] <= 0) Chris@82: return 0; Chris@82: return 1; Chris@82: } Chris@82: Chris@82: void XM(dtensor_print)(const dtensor *t, printer *p) Chris@82: { Chris@82: if (FINITE_RNK(t->rnk)) { Chris@82: int i; Chris@82: int first = 1; Chris@82: p->print(p, "("); Chris@82: for (i = 0; i < t->rnk; ++i) { Chris@82: const ddim *d = t->dims + i; Chris@82: p->print(p, "%s(%D %D %D)", Chris@82: first ? "" : " ", Chris@82: d->n, d->b[IB], d->b[OB]); Chris@82: first = 0; Chris@82: } Chris@82: p->print(p, ")"); Chris@82: } else { Chris@82: p->print(p, "rank-minfty"); Chris@82: } Chris@82: Chris@82: }