cannam@127
|
1 /*
|
cannam@127
|
2 * Copyright (c) 2003, 2007-14 Matteo Frigo
|
cannam@127
|
3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
|
cannam@127
|
4 *
|
cannam@127
|
5 * This program is free software; you can redistribute it and/or modify
|
cannam@127
|
6 * it under the terms of the GNU General Public License as published by
|
cannam@127
|
7 * the Free Software Foundation; either version 2 of the License, or
|
cannam@127
|
8 * (at your option) any later version.
|
cannam@127
|
9 *
|
cannam@127
|
10 * This program is distributed in the hope that it will be useful,
|
cannam@127
|
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
|
cannam@127
|
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
cannam@127
|
13 * GNU General Public License for more details.
|
cannam@127
|
14 *
|
cannam@127
|
15 * You should have received a copy of the GNU General Public License
|
cannam@127
|
16 * along with this program; if not, write to the Free Software
|
cannam@127
|
17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
|
cannam@127
|
18 *
|
cannam@127
|
19 */
|
cannam@127
|
20
|
cannam@127
|
21
|
cannam@127
|
22 /* plans for vrank -infty DFTs (nothing to do) */
|
cannam@127
|
23
|
cannam@127
|
24 #include "dft.h"
|
cannam@127
|
25
|
cannam@127
|
26 static void apply(const plan *ego_, R *ri, R *ii, R *ro, R *io)
|
cannam@127
|
27 {
|
cannam@127
|
28 UNUSED(ego_);
|
cannam@127
|
29 UNUSED(ri);
|
cannam@127
|
30 UNUSED(ii);
|
cannam@127
|
31 UNUSED(ro);
|
cannam@127
|
32 UNUSED(io);
|
cannam@127
|
33 }
|
cannam@127
|
34
|
cannam@127
|
35 static int applicable(const solver *ego_, const problem *p_)
|
cannam@127
|
36 {
|
cannam@127
|
37 const problem_dft *p = (const problem_dft *) p_;
|
cannam@127
|
38
|
cannam@127
|
39 UNUSED(ego_);
|
cannam@127
|
40
|
cannam@127
|
41 return 0
|
cannam@127
|
42 /* case 1 : -infty vector rank */
|
cannam@127
|
43 || (!FINITE_RNK(p->vecsz->rnk))
|
cannam@127
|
44
|
cannam@127
|
45 /* case 2 : rank-0 in-place dft */
|
cannam@127
|
46 || (1
|
cannam@127
|
47 && p->sz->rnk == 0
|
cannam@127
|
48 && FINITE_RNK(p->vecsz->rnk)
|
cannam@127
|
49 && p->ro == p->ri
|
cannam@127
|
50 && X(tensor_inplace_strides)(p->vecsz)
|
cannam@127
|
51 );
|
cannam@127
|
52 }
|
cannam@127
|
53
|
cannam@127
|
54 static void print(const plan *ego, printer *p)
|
cannam@127
|
55 {
|
cannam@127
|
56 UNUSED(ego);
|
cannam@127
|
57 p->print(p, "(dft-nop)");
|
cannam@127
|
58 }
|
cannam@127
|
59
|
cannam@127
|
60 static plan *mkplan(const solver *ego, const problem *p, planner *plnr)
|
cannam@127
|
61 {
|
cannam@127
|
62 static const plan_adt padt = {
|
cannam@127
|
63 X(dft_solve), X(null_awake), print, X(plan_null_destroy)
|
cannam@127
|
64 };
|
cannam@127
|
65 plan_dft *pln;
|
cannam@127
|
66
|
cannam@127
|
67 UNUSED(plnr);
|
cannam@127
|
68
|
cannam@127
|
69 if (!applicable(ego, p))
|
cannam@127
|
70 return (plan *) 0;
|
cannam@127
|
71 pln = MKPLAN_DFT(plan_dft, &padt, apply);
|
cannam@127
|
72 X(ops_zero)(&pln->super.ops);
|
cannam@127
|
73
|
cannam@127
|
74 return &(pln->super);
|
cannam@127
|
75 }
|
cannam@127
|
76
|
cannam@127
|
77 static solver *mksolver(void)
|
cannam@127
|
78 {
|
cannam@127
|
79 static const solver_adt sadt = { PROBLEM_DFT, mkplan, 0 };
|
cannam@127
|
80 return MKSOLVER(solver, &sadt);
|
cannam@127
|
81 }
|
cannam@127
|
82
|
cannam@127
|
83 void X(dft_nop_register)(planner *p)
|
cannam@127
|
84 {
|
cannam@127
|
85 REGISTER_SOLVER(p, mksolver());
|
cannam@127
|
86 }
|