annotate src/fftw-3.3.8/genfft/gen_r2cf.ml @ 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 bd3cc4d1df30
children
rev   line source
cannam@167 1 (*
cannam@167 2 * Copyright (c) 1997-1999 Massachusetts Institute of Technology
cannam@167 3 * Copyright (c) 2003, 2007-14 Matteo Frigo
cannam@167 4 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
cannam@167 5 *
cannam@167 6 * This program is free software; you can redistribute it and/or modify
cannam@167 7 * it under the terms of the GNU General Public License as published by
cannam@167 8 * the Free Software Foundation; either version 2 of the License, or
cannam@167 9 * (at your option) any later version.
cannam@167 10 *
cannam@167 11 * This program is distributed in the hope that it will be useful,
cannam@167 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@167 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@167 14 * GNU General Public License for more details.
cannam@167 15 *
cannam@167 16 * You should have received a copy of the GNU General Public License
cannam@167 17 * along with this program; if not, write to the Free Software
cannam@167 18 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@167 19 *
cannam@167 20 *)
cannam@167 21
cannam@167 22 open Util
cannam@167 23 open Genutil
cannam@167 24 open C
cannam@167 25
cannam@167 26
cannam@167 27 let usage = "Usage: " ^ Sys.argv.(0) ^ " -n <number>"
cannam@167 28
cannam@167 29 let urs = ref Stride_variable
cannam@167 30 let ucsr = ref Stride_variable
cannam@167 31 let ucsi = ref Stride_variable
cannam@167 32 let uivs = ref Stride_variable
cannam@167 33 let uovs = ref Stride_variable
cannam@167 34 let dftII_flag = ref false
cannam@167 35
cannam@167 36 let speclist = [
cannam@167 37 "-with-rs",
cannam@167 38 Arg.String(fun x -> urs := arg_to_stride x),
cannam@167 39 " specialize for given real-array stride";
cannam@167 40
cannam@167 41 "-with-csr",
cannam@167 42 Arg.String(fun x -> ucsr := arg_to_stride x),
cannam@167 43 " specialize for given complex-array real stride";
cannam@167 44
cannam@167 45 "-with-csi",
cannam@167 46 Arg.String(fun x -> ucsi := arg_to_stride x),
cannam@167 47 " specialize for given complex-array imaginary stride";
cannam@167 48
cannam@167 49 "-with-ivs",
cannam@167 50 Arg.String(fun x -> uivs := arg_to_stride x),
cannam@167 51 " specialize for given input vector stride";
cannam@167 52
cannam@167 53 "-with-ovs",
cannam@167 54 Arg.String(fun x -> uovs := arg_to_stride x),
cannam@167 55 " specialize for given output vector stride";
cannam@167 56
cannam@167 57 "-dft-II",
cannam@167 58 Arg.Unit(fun () -> dftII_flag := true),
cannam@167 59 " produce shifted dftII-style codelets"
cannam@167 60 ]
cannam@167 61
cannam@167 62 let rdftII sign n input =
cannam@167 63 let input' i = if i < n then input i else Complex.zero in
cannam@167 64 let f = Fft.dft sign (2 * n) input' in
cannam@167 65 let g i = f (2 * i + 1)
cannam@167 66 in fun i ->
cannam@167 67 if (i < n - i) then g i
cannam@167 68 else if (2 * i + 1 == n) then Complex.real (g i)
cannam@167 69 else Complex.zero
cannam@167 70
cannam@167 71 let generate n =
cannam@167 72 let ar0 = "R0" and ar1 = "R1" and acr = "Cr" and aci = "Ci"
cannam@167 73 and rs = "rs" and csr = "csr" and csi = "csi"
cannam@167 74 and i = "i" and v = "v"
cannam@167 75 and transform = if !dftII_flag then rdftII else Trig.rdft
cannam@167 76 in
cannam@167 77
cannam@167 78 let sign = !Genutil.sign
cannam@167 79 and name = !Magic.codelet_name in
cannam@167 80
cannam@167 81 let vrs = either_stride (!urs) (C.SVar rs)
cannam@167 82 and vcsr = either_stride (!ucsr) (C.SVar csr)
cannam@167 83 and vcsi = either_stride (!ucsi) (C.SVar csi)
cannam@167 84 in
cannam@167 85
cannam@167 86 let sovs = stride_to_string "ovs" !uovs in
cannam@167 87 let sivs = stride_to_string "ivs" !uivs in
cannam@167 88
cannam@167 89 let locations = unique_array_c n in
cannam@167 90 let inpute =
cannam@167 91 locative_array_c n
cannam@167 92 (C.array_subscript ar0 vrs)
cannam@167 93 (C.array_subscript "BUG" vrs)
cannam@167 94 locations sivs
cannam@167 95 and inputo =
cannam@167 96 locative_array_c n
cannam@167 97 (C.array_subscript ar1 vrs)
cannam@167 98 (C.array_subscript "BUG" vrs)
cannam@167 99 locations sivs
cannam@167 100 in
cannam@167 101 let input i = if i mod 2 == 0 then inpute (i/2) else inputo ((i-1)/2) in
cannam@167 102 let output = transform sign n (load_array_r n input) in
cannam@167 103 let oloc =
cannam@167 104 locative_array_c n
cannam@167 105 (C.array_subscript acr vcsr)
cannam@167 106 (C.array_subscript aci vcsi)
cannam@167 107 locations sovs in
cannam@167 108 let odag = store_array_hc n oloc output in
cannam@167 109 let annot = standard_optimizer odag in
cannam@167 110
cannam@167 111 let body = Block (
cannam@167 112 [Decl ("INT", i)],
cannam@167 113 [For (Expr_assign (CVar i, CVar v),
cannam@167 114 Binop (" > ", CVar i, Integer 0),
cannam@167 115 list_to_comma
cannam@167 116 [Expr_assign (CVar i, CPlus [CVar i; CUminus (Integer 1)]);
cannam@167 117 Expr_assign (CVar ar0, CPlus [CVar ar0; CVar sivs]);
cannam@167 118 Expr_assign (CVar ar1, CPlus [CVar ar1; CVar sivs]);
cannam@167 119 Expr_assign (CVar acr, CPlus [CVar acr; CVar sovs]);
cannam@167 120 Expr_assign (CVar aci, CPlus [CVar aci; CVar sovs]);
cannam@167 121 make_volatile_stride (4*n) (CVar rs);
cannam@167 122 make_volatile_stride (4*n) (CVar csr);
cannam@167 123 make_volatile_stride (4*n) (CVar csi)
cannam@167 124 ],
cannam@167 125 Asch annot)
cannam@167 126 ])
cannam@167 127 in
cannam@167 128
cannam@167 129 let tree =
cannam@167 130 Fcn ((if !Magic.standalone then "void" else "static void"), name,
cannam@167 131 ([Decl (C.realtypep, ar0);
cannam@167 132 Decl (C.realtypep, ar1);
cannam@167 133 Decl (C.realtypep, acr);
cannam@167 134 Decl (C.realtypep, aci);
cannam@167 135 Decl (C.stridetype, rs);
cannam@167 136 Decl (C.stridetype, csr);
cannam@167 137 Decl (C.stridetype, csi);
cannam@167 138 Decl ("INT", v);
cannam@167 139 Decl ("INT", "ivs");
cannam@167 140 Decl ("INT", "ovs")]),
cannam@167 141 finalize_fcn body)
cannam@167 142
cannam@167 143 in let desc =
cannam@167 144 Printf.sprintf
cannam@167 145 "static const kr2c_desc desc = { %d, \"%s\", %s, &GENUS };\n\n"
cannam@167 146 n name (flops_of tree)
cannam@167 147
cannam@167 148 and init =
cannam@167 149 (declare_register_fcn name) ^
cannam@167 150 "{" ^
cannam@167 151 " X(kr2c_register)(p, " ^ name ^ ", &desc);\n" ^
cannam@167 152 "}\n"
cannam@167 153
cannam@167 154 in
cannam@167 155 (unparse tree) ^ "\n" ^ (if !Magic.standalone then "" else desc ^ init)
cannam@167 156
cannam@167 157
cannam@167 158 let main () =
cannam@167 159 begin
cannam@167 160 parse speclist usage;
cannam@167 161 print_string (generate (check_size ()));
cannam@167 162 end
cannam@167 163
cannam@167 164 let _ = main()