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1 (* Copyright (c) 2008, Adam Chlipala
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2 * All rights reserved.
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3 *
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4 * Redistribution and use in source and binary forms, with or without
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5 * modification, are permitted provided that the following conditions are met:
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6 *
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7 * - Redistributions of source code must retain the above copyright notice,
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8 * this list of conditions and the following disclaimer.
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9 * - Redistributions in binary form must reproduce the above copyright notice,
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10 * this list of conditions and the following disclaimer in the documentation
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11 * and/or other materials provided with the distribution.
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12 * - The names of contributors may not be used to endorse or promote products
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13 * derived from this software without specific prior written permission.
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14 *
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15 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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16 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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17 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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18 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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19 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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20 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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21 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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22 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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23 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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24 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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25 * POSSIBILITY OF SUCH DAMAGE.
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26 *)
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27
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28 (* Laconic/Web language parser *)
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29
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30 structure Compiler :> COMPILER = struct
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31
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32 structure LacwebLrVals = LacwebLrValsFn(structure Token = LrParser.Token)
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33 structure Lex = LacwebLexFn(structure Tokens = LacwebLrVals.Tokens)
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34 structure LacwebP = Join(structure ParserData = LacwebLrVals.ParserData
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35 structure Lex = Lex
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36 structure LrParser = LrParser)
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37
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38 type job = string list
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39
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40 type ('src, 'dst) phase = {
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41 func : 'src -> 'dst,
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42 print : 'dst -> Print.PD.pp_desc
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43 }
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44
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45 type pmap = (string * Time.time) list
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46
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47 type ('src, 'dst) transform = {
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48 func : 'src -> 'dst option,
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49 print : 'dst -> Print.PD.pp_desc,
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50 time : 'src * pmap -> 'dst option * pmap
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51 }
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52
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53 fun transform (ph : ('src, 'dst) phase) name = {
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54 func = fn input => let
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55 val v = #func ph input
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56 in
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57 if ErrorMsg.anyErrors () then
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58 NONE
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59 else
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60 SOME v
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61 end,
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62 print = #print ph,
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63 time = fn (input, pmap) => let
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64 val befor = Time.now ()
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65 val v = #func ph input
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66 val elapsed = Time.- (Time.now (), befor)
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67 in
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68 (if ErrorMsg.anyErrors () then
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69 NONE
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70 else
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71 SOME v,
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72 (name, elapsed) :: pmap)
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73 end
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74 }
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75
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76 fun op o (tr1 : ('a, 'b) transform, tr2 : ('b, 'c) transform) = {
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77 func = fn input => case #func tr1 input of
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78 NONE => NONE
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79 | SOME v => #func tr2 v,
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80 print = #print tr2,
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81 time = fn (input, pmap) => let
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82 val (ro, pmap) = #time tr1 (input, pmap)
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83 in
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84 case ro of
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85 NONE => (NONE, pmap)
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86 | SOME v => #time tr2 (v, pmap)
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87 end
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88 }
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89
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90 fun run (tr : ('src, 'dst) transform) = #func tr
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91
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92 fun runPrint (tr : ('src, 'dst) transform) input =
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93 case #func tr input of
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94 NONE => print "Failure\n"
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95 | SOME v =>
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96 (print "Success\n";
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97 Print.print (#print tr v);
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98 print "\n")
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99
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100 fun time (tr : ('src, 'dst) transform) input =
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101 let
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102 val (_, pmap) = #time tr (input, [])
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103 in
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104 app (fn (name, time) =>
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105 print (name ^ ": " ^ LargeReal.toString (Time.toReal time) ^ "\n")) (rev pmap);
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106 print ("TOTAL: " ^ LargeReal.toString (Time.toReal (foldl Time.+ Time.zeroTime (map #2 pmap))) ^ "\n");
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107 print "\n"
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108 end
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109
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110 fun timePrint (tr : ('src, 'dst) transform) input =
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111 let
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112 val (ro, pmap) = #time tr (input, [])
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113 in
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114 app (fn (name, time) =>
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115 print (name ^ ": " ^ LargeReal.toString (Time.toReal time) ^ "\n")) (rev pmap);
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116 print ("TOTAL: " ^ LargeReal.toString (Time.toReal (foldl Time.+ Time.zeroTime (map #2 pmap))) ^ "\n");
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117 print "\n";
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118 case ro of
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119 NONE => print "Failure\n"
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120 | SOME v =>
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121 (print "Success\n";
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122 Print.print (#print tr v);
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123 print "\n")
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124 end
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125
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126 val parseLig =
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127 {func = fn filename => let
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128 val fname = OS.FileSys.tmpName ()
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129 val outf = TextIO.openOut fname
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130 val () = TextIO.output (outf, "sig\n")
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131 val inf = TextIO.openIn filename
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132 fun loop () =
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133 case TextIO.inputLine inf of
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134 NONE => ()
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135 | SOME line => (TextIO.output (outf, line);
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136 loop ())
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137 val () = loop ()
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138 val () = TextIO.closeIn inf
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139 val () = TextIO.closeOut outf
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140
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141 val () = (ErrorMsg.resetErrors ();
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142 ErrorMsg.resetPositioning filename;
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143 Lex.UserDeclarations.initialize ())
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144 val file = TextIO.openIn fname
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145 fun get _ = TextIO.input file
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146 fun parseerror (s, p1, p2) = ErrorMsg.errorAt' (p1, p2) s
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147 val lexer = LrParser.Stream.streamify (Lex.makeLexer get)
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148 val (absyn, _) = LacwebP.parse (30, lexer, parseerror, ())
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149 in
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150 TextIO.closeIn file;
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151 case absyn of
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152 [(Source.DSgn ("?", (Source.SgnConst sgis, _)), _)] => sgis
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153 | _ => (ErrorMsg.errorAt {file = filename,
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154 first = {line = 0,
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155 char = 0},
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156 last = {line = 0,
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157 char = 0}} "Not a signature";
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158 [])
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159 end
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160 handle LrParser.ParseError => [],
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161 print = Print.p_list_sep Print.PD.newline SourcePrint.p_sgn_item}
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162
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163 (* The main parsing routine *)
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164 val parseLac = {
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165 func = fn filename =>
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166 let
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167 val () = (ErrorMsg.resetErrors ();
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168 ErrorMsg.resetPositioning filename;
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169 Lex.UserDeclarations.initialize ())
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170 val file = TextIO.openIn filename
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171 fun get _ = TextIO.input file
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172 fun parseerror (s, p1, p2) = ErrorMsg.errorAt' (p1, p2) s
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173 val lexer = LrParser.Stream.streamify (Lex.makeLexer get)
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174 val (absyn, _) = LacwebP.parse (30, lexer, parseerror, ())
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175 in
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176 TextIO.closeIn file;
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177 case absyn of
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178 [(Source.DSgn ("?", _), _)] =>
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179 (ErrorMsg.errorAt {file = filename,
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180 first = {line = 0,
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181 char = 0},
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182 last = {line = 0,
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183 char = 0}} "File starts with 'sig'";
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184 [])
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185 | _ => absyn
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186 end
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187 handle LrParser.ParseError => [],
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188 print = SourcePrint.p_file}
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189
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190 fun capitalize "" = ""
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191 | capitalize s = str (Char.toUpper (String.sub (s, 0))) ^ String.extract (s, 1, NONE)
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192
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193 val parse = {
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194 func = fn fnames =>
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195 let
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196 fun nameOf fname = capitalize (OS.Path.file fname)
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197
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198 fun parseOne fname =
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199 let
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200 val mname = nameOf fname
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201 val lac = OS.Path.joinBaseExt {base = fname, ext = SOME "lac"}
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202 val lig = OS.Path.joinBaseExt {base = fname, ext = SOME "lig"}
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203
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204 val sgnO =
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205 if Posix.FileSys.access (lig, []) then
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206 SOME (Source.SgnConst (#func parseLig lig),
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207 {file = lig,
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208 first = ErrorMsg.dummyPos,
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209 last = ErrorMsg.dummyPos})
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210 else
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211 NONE
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212
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213 val loc = {file = lac,
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214 first = ErrorMsg.dummyPos,
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215 last = ErrorMsg.dummyPos}
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216
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217 val ds = #func parseLac lac
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218 in
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219 (Source.DStr (mname, sgnO, (Source.StrConst ds, loc)), loc)
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220 end
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221
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222 val ds = map parseOne fnames
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223 in
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224 let
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225 val final = nameOf (List.last fnames)
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226 in
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227 ds @ [(Source.DExport (Source.StrVar final, ErrorMsg.dummySpan), ErrorMsg.dummySpan)]
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228 end handle Empty => ds
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229 end,
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230 print = SourcePrint.p_file
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231 }
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232
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233 val toParse = transform parse "parse"
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234
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235 val elaborate = {
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236 func = fn file => let
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237 val basis = #func parseLig "lib/basis.lig"
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238 in
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239 Elaborate.elabFile basis ElabEnv.empty file
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240 end,
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241 print = ElabPrint.p_file ElabEnv.empty
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242 }
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243
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244 val toElaborate = toParse o transform elaborate "elaborate"
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245
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246 val explify = {
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247 func = Explify.explify,
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248 print = ExplPrint.p_file ExplEnv.empty
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249 }
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250
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251 val toExplify = toElaborate o transform explify "explify"
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252
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253 val corify = {
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254 func = Corify.corify,
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255 print = CorePrint.p_file CoreEnv.empty
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256 }
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257
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258 val toCorify = toExplify o transform corify "corify"
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259
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260 val shake = {
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261 func = Shake.shake,
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262 print = CorePrint.p_file CoreEnv.empty
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263 }
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264
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265 val toShake1 = toCorify o transform shake "shake1"
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266
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267 val tag = {
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268 func = Tag.tag,
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269 print = CorePrint.p_file CoreEnv.empty
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270 }
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271
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272 val toTag = toShake1 o transform tag "tag"
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273
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274 val reduce = {
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275 func = Reduce.reduce,
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276 print = CorePrint.p_file CoreEnv.empty
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277 }
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278
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279 val toReduce = toTag o transform reduce "reduce"
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280
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281 val specialize = {
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282 func = Specialize.specialize,
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283 print = CorePrint.p_file CoreEnv.empty
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284 }
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285
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286 val toSpecialize = toReduce o transform specialize "specialize"
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287
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288 val toShake2 = toSpecialize o transform shake "shake2"
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289
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290 val monoize = {
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291 func = Monoize.monoize CoreEnv.empty,
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292 print = MonoPrint.p_file MonoEnv.empty
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293 }
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294
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295 val toMonoize = toShake2 o transform monoize "monoize"
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296
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297 val mono_opt = {
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298 func = MonoOpt.optimize,
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299 print = MonoPrint.p_file MonoEnv.empty
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300 }
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301
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302 val toMono_opt1 = toMonoize o transform mono_opt "mono_opt1"
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303
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304 val untangle = {
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305 func = Untangle.untangle,
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306 print = MonoPrint.p_file MonoEnv.empty
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307 }
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308
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309 val toUntangle = toMono_opt1 o transform untangle "untangle"
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310
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311 val mono_reduce = {
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312 func = MonoReduce.reduce,
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313 print = MonoPrint.p_file MonoEnv.empty
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314 }
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315
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316 val toMono_reduce = toUntangle o transform mono_reduce "mono_reduce"
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317
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318 val mono_shake = {
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319 func = MonoShake.shake,
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320 print = MonoPrint.p_file MonoEnv.empty
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321 }
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322
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323 val toMono_shake = toMono_reduce o transform mono_shake "mono_shake"
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324
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325 val toMono_opt2 = toMono_shake o transform mono_opt "mono_opt2"
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326
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327 val cjrize = {
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328 func = Cjrize.cjrize,
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329 print = CjrPrint.p_file CjrEnv.empty
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330 }
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331
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332 val toCjrize = toMono_opt2 o transform cjrize "cjrize"
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333
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334 fun compileC {cname, oname, ename} =
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335 let
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336 val compile = "gcc -O3 -I include -c " ^ cname ^ " -o " ^ oname
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337 val link = "gcc -pthread -O3 clib/lacweb.o " ^ oname ^ " clib/driver.o -o " ^ ename
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338 in
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339 if not (OS.Process.isSuccess (OS.Process.system compile)) then
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340 print "C compilation failed\n"
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341 else if not (OS.Process.isSuccess (OS.Process.system link)) then
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342 print "C linking failed\n"
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343 else
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344 print "Success\n"
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345 end
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adamc@183
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346
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adamc@202
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347 fun compile job =
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348 case run toCjrize job of
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349 NONE => print "Laconic compilation failed\n"
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350 | SOME file =>
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351 let
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352 val cname = "/tmp/lacweb.c"
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adamc@202
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353 val oname = "/tmp/lacweb.o"
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adamc@202
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354 val ename = "/tmp/webapp"
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355
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356 val outf = TextIO.openOut cname
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adamc@202
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357 val s = TextIOPP.openOut {dst = outf, wid = 80}
|
adamc@202
|
358 in
|
adamc@202
|
359 Print.fprint s (CjrPrint.p_file CjrEnv.empty file);
|
adamc@202
|
360 TextIO.closeOut outf;
|
adamc@102
|
361
|
adamc@202
|
362 compileC {cname = cname, oname = oname, ename = ename}
|
adamc@202
|
363 end
|
adamc@29
|
364
|
adamc@1
|
365 end
|