annotate src/fftw-3.3.5/genfft/gen_hc2c.ml @ 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 7867fa7e1b6b
children
rev   line source
cannam@127 1 (*
cannam@127 2 * Copyright (c) 1997-1999 Massachusetts Institute of Technology
cannam@127 3 * Copyright (c) 2003, 2007-14 Matteo Frigo
cannam@127 4 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
cannam@127 5 *
cannam@127 6 * This program is free software; you can redistribute it and/or modify
cannam@127 7 * it under the terms of the GNU General Public License as published by
cannam@127 8 * the Free Software Foundation; either version 2 of the License, or
cannam@127 9 * (at your option) any later version.
cannam@127 10 *
cannam@127 11 * This program is distributed in the hope that it will be useful,
cannam@127 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@127 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@127 14 * GNU General Public License for more details.
cannam@127 15 *
cannam@127 16 * You should have received a copy of the GNU General Public License
cannam@127 17 * along with this program; if not, write to the Free Software
cannam@127 18 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@127 19 *
cannam@127 20 *)
cannam@127 21
cannam@127 22 open Util
cannam@127 23 open Genutil
cannam@127 24 open C
cannam@127 25
cannam@127 26
cannam@127 27 type ditdif = DIT | DIF
cannam@127 28 let ditdif = ref DIT
cannam@127 29 let usage = "Usage: " ^ Sys.argv.(0) ^ " -n <number> [ -dit | -dif ]"
cannam@127 30
cannam@127 31 let urs = ref Stride_variable
cannam@127 32
cannam@127 33 let speclist = [
cannam@127 34 "-dit",
cannam@127 35 Arg.Unit(fun () -> ditdif := DIT),
cannam@127 36 " generate a DIT codelet";
cannam@127 37
cannam@127 38 "-dif",
cannam@127 39 Arg.Unit(fun () -> ditdif := DIF),
cannam@127 40 " generate a DIF codelet";
cannam@127 41
cannam@127 42 "-with-rs",
cannam@127 43 Arg.String(fun x -> urs := arg_to_stride x),
cannam@127 44 " specialize for given R-stride";
cannam@127 45 ]
cannam@127 46
cannam@127 47 let byi = Complex.times Complex.i
cannam@127 48 let byui = Complex.times (Complex.uminus Complex.i)
cannam@127 49
cannam@127 50 let sym n f i = if (i < n - i) then f i else Complex.conj (f i)
cannam@127 51
cannam@127 52 let shuffle_eo fe fo i = if i mod 2 == 0 then fe (i/2) else fo ((i-1)/2)
cannam@127 53
cannam@127 54 let generate n =
cannam@127 55 let rs = "rs"
cannam@127 56 and twarray = "W"
cannam@127 57 and m = "m" and mb = "mb" and me = "me" and ms = "ms"
cannam@127 58
cannam@127 59 (* the array names are from the point of view of the complex array
cannam@127 60 (output in R2C, input in C2R) *)
cannam@127 61 and arp = "Rp" (* real, positive *)
cannam@127 62 and aip = "Ip" (* imag, positive *)
cannam@127 63 and arm = "Rm" (* real, negative *)
cannam@127 64 and aim = "Im" (* imag, negative *)
cannam@127 65
cannam@127 66 in
cannam@127 67
cannam@127 68 let sign = !Genutil.sign
cannam@127 69 and name = !Magic.codelet_name
cannam@127 70 and byvl x = choose_simd x (ctimes (CVar "VL", x)) in
cannam@127 71
cannam@127 72 let (bytwiddle, num_twiddles, twdesc) = Twiddle.twiddle_policy 1 false in
cannam@127 73 let nt = num_twiddles n in
cannam@127 74
cannam@127 75 let byw = bytwiddle n sign (twiddle_array nt twarray) in
cannam@127 76
cannam@127 77 let vrs = either_stride (!urs) (C.SVar rs) in
cannam@127 78
cannam@127 79 (* assume a single location. No point in doing alias analysis *)
cannam@127 80 let the_location = (Unique.make (), Unique.make ()) in
cannam@127 81 let locations _ = the_location in
cannam@127 82
cannam@127 83 let locr = (locative_array_c n
cannam@127 84 (C.array_subscript arp vrs)
cannam@127 85 (C.array_subscript arm vrs)
cannam@127 86 locations "BUG")
cannam@127 87 and loci = (locative_array_c n
cannam@127 88 (C.array_subscript aip vrs)
cannam@127 89 (C.array_subscript aim vrs)
cannam@127 90 locations "BUG")
cannam@127 91 and locp = (locative_array_c n
cannam@127 92 (C.array_subscript arp vrs)
cannam@127 93 (C.array_subscript aip vrs)
cannam@127 94 locations "BUG")
cannam@127 95 and locm = (locative_array_c n
cannam@127 96 (C.array_subscript arm vrs)
cannam@127 97 (C.array_subscript aim vrs)
cannam@127 98 locations "BUG")
cannam@127 99 in
cannam@127 100 let locri i = if i mod 2 == 0 then locr (i/2) else loci ((i-1)/2)
cannam@127 101 and locpm i = if i < n - i then locp i else locm (n-1-i)
cannam@127 102 in
cannam@127 103
cannam@127 104 let asch =
cannam@127 105 match !ditdif with
cannam@127 106 | DIT ->
cannam@127 107 let output = Fft.dft sign n (byw (load_array_c n locri)) in
cannam@127 108 let odag = store_array_c n locpm (sym n output) in
cannam@127 109 standard_optimizer odag
cannam@127 110
cannam@127 111 | DIF ->
cannam@127 112 let output = byw (Fft.dft sign n (sym n (load_array_c n locpm))) in
cannam@127 113 let odag = store_array_c n locri output in
cannam@127 114 standard_optimizer odag
cannam@127 115 in
cannam@127 116
cannam@127 117 let vms = CVar "ms"
cannam@127 118 and varp = CVar arp
cannam@127 119 and vaip = CVar aip
cannam@127 120 and varm = CVar arm
cannam@127 121 and vaim = CVar aim
cannam@127 122 and vm = CVar m and vmb = CVar mb and vme = CVar me
cannam@127 123 in
cannam@127 124 let body = Block (
cannam@127 125 [Decl ("INT", m)],
cannam@127 126 [For (list_to_comma
cannam@127 127 [Expr_assign (vm, vmb);
cannam@127 128 Expr_assign (CVar twarray,
cannam@127 129 CPlus [CVar twarray;
cannam@127 130 ctimes (CPlus [vmb; CUminus (Integer 1)],
cannam@127 131 Integer nt)])],
cannam@127 132 Binop (" < ", vm, vme),
cannam@127 133 list_to_comma
cannam@127 134 [Expr_assign (vm, CPlus [vm; byvl (Integer 1)]);
cannam@127 135 Expr_assign (varp, CPlus [varp; byvl vms]);
cannam@127 136 Expr_assign (vaip, CPlus [vaip; byvl vms]);
cannam@127 137 Expr_assign (varm, CPlus [varm; CUminus (byvl vms)]);
cannam@127 138 Expr_assign (vaim, CPlus [vaim; CUminus (byvl vms)]);
cannam@127 139 Expr_assign (CVar twarray, CPlus [CVar twarray;
cannam@127 140 byvl (Integer nt)]);
cannam@127 141 make_volatile_stride (4*n) (CVar rs)
cannam@127 142 ],
cannam@127 143 Asch asch)])
cannam@127 144 in
cannam@127 145
cannam@127 146 let tree =
cannam@127 147 Fcn ("static void", name,
cannam@127 148 [Decl (C.realtypep, arp);
cannam@127 149 Decl (C.realtypep, aip);
cannam@127 150 Decl (C.realtypep, arm);
cannam@127 151 Decl (C.realtypep, aim);
cannam@127 152 Decl (C.constrealtypep, twarray);
cannam@127 153 Decl (C.stridetype, rs);
cannam@127 154 Decl ("INT", mb);
cannam@127 155 Decl ("INT", me);
cannam@127 156 Decl ("INT", ms)],
cannam@127 157 finalize_fcn body)
cannam@127 158 in
cannam@127 159 let twinstr =
cannam@127 160 Printf.sprintf "static const tw_instr twinstr[] = %s;\n\n"
cannam@127 161 (twinstr_to_string "VL" (twdesc n))
cannam@127 162 and desc =
cannam@127 163 Printf.sprintf
cannam@127 164 "static const hc2c_desc desc = {%d, \"%s\", twinstr, &GENUS, %s};\n\n"
cannam@127 165 n name (flops_of tree)
cannam@127 166 and register = "X(khc2c_register)"
cannam@127 167
cannam@127 168 in
cannam@127 169 let init =
cannam@127 170 "\n" ^
cannam@127 171 twinstr ^
cannam@127 172 desc ^
cannam@127 173 (declare_register_fcn name) ^
cannam@127 174 (Printf.sprintf "{\n%s(p, %s, &desc, HC2C_VIA_RDFT);\n}" register name)
cannam@127 175 in
cannam@127 176
cannam@127 177 (unparse tree) ^ "\n" ^ init
cannam@127 178
cannam@127 179
cannam@127 180 let main () =
cannam@127 181 begin
cannam@127 182 parse (speclist @ Twiddle.speclist) usage;
cannam@127 183 print_string (generate (check_size ()));
cannam@127 184 end
cannam@127 185
cannam@127 186 let _ = main()