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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 structure MonoUtil :> MONO_UTIL = struct
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29
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30 open Mono
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31
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32 structure S = Search
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33
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34 structure Typ = struct
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35
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36 open Order
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37
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38 fun compare ((t1, _), (t2, _)) =
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39 case (t1, t2) of
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40 (TFun (d1, r1), TFun (d2, r2)) =>
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41 join (compare (d1, d2), fn () => compare (r1, r2))
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42 | (TRecord xts1, TRecord xts2) =>
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43 let
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44 val xts1 = sortFields xts1
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45 val xts2 = sortFields xts2
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46 in
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47 joinL compareFields (xts1, xts2)
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48 end
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49 | (TDatatype (n1, _), TDatatype (n2, _)) => Int.compare (n1, n2)
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50 | (TFfi (m1, x1), TFfi (m2, x2)) => join (String.compare (m1, m2), fn () => String.compare (x1, x2))
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51
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52 | (TFun _, _) => LESS
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53 | (_, TFun _) => GREATER
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54
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55 | (TRecord _, _) => LESS
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56 | (_, TRecord _) => GREATER
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57
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58 | (TDatatype _, _) => LESS
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59 | (_, TDatatype _) => GREATER
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60
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61 and compareFields ((x1, t1), (x2, t2)) =
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62 join (String.compare (x1, x2),
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63 fn () => compare (t1, t2))
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64
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65 and sortFields xts = ListMergeSort.sort (fn (x, y) => compareFields (x, y) = GREATER) xts
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66
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67 fun mapfold fc =
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68 let
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69 fun mft c acc =
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70 S.bindP (mft' c acc, fc)
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71
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72 and mft' (cAll as (c, loc)) =
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73 case c of
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74 TFun (t1, t2) =>
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75 S.bind2 (mft t1,
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76 fn t1' =>
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77 S.map2 (mft t2,
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78 fn t2' =>
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79 (TFun (t1', t2'), loc)))
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80 | TRecord xts =>
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81 S.map2 (ListUtil.mapfold (fn (x, t) =>
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82 S.map2 (mft t,
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83 fn t' =>
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84 (x, t')))
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85 xts,
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86 fn xts' => (TRecord xts', loc))
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87 | TDatatype _ => S.return2 cAll
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88 | TFfi _ => S.return2 cAll
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89 in
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90 mft
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91 end
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92
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93 fun map typ c =
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94 case mapfold (fn c => fn () => S.Continue (typ c, ())) c () of
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95 S.Return () => raise Fail "Mono_util.Typ.map"
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96 | S.Continue (c, ()) => c
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97
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98 fun fold typ s c =
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99 case mapfold (fn c => fn s => S.Continue (c, typ (c, s))) c s of
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100 S.Continue (_, s) => s
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101 | S.Return _ => raise Fail "MonoUtil.Typ.fold: Impossible"
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102
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103 fun exists typ k =
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104 case mapfold (fn c => fn () =>
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105 if typ c then
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106 S.Return ()
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107 else
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108 S.Continue (c, ())) k () of
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109 S.Return _ => true
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110 | S.Continue _ => false
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111
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112 end
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113
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114 structure Exp = struct
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115
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116 datatype binder =
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117 Datatype of string * int * (string * int * typ option) list
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118 | RelE of string * typ
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119 | NamedE of string * int * typ * exp option * string
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120
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121 fun mapfoldB {typ = fc, exp = fe, bind} =
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122 let
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123 val mft = Typ.mapfold fc
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124
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125 fun mfe ctx e acc =
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126 S.bindP (mfe' ctx e acc, fe ctx)
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127
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128 and mfe' ctx (eAll as (e, loc)) =
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129 case e of
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130 EPrim _ => S.return2 eAll
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131 | ERel _ => S.return2 eAll
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132 | ENamed _ => S.return2 eAll
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133 | ECon (_, _, NONE) => S.return2 eAll
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134 | ECon (dk, n, SOME e) =>
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135 S.map2 (mfe ctx e,
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136 fn e' =>
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137 (ECon (dk, n, SOME e'), loc))
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138 | EFfi _ => S.return2 eAll
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139 | EFfiApp (m, x, es) =>
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140 S.map2 (ListUtil.mapfold (fn e => mfe ctx e) es,
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141 fn es' =>
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142 (EFfiApp (m, x, es'), loc))
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143 | EApp (e1, e2) =>
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144 S.bind2 (mfe ctx e1,
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145 fn e1' =>
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146 S.map2 (mfe ctx e2,
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147 fn e2' =>
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148 (EApp (e1', e2'), loc)))
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149 | EAbs (x, dom, ran, e) =>
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150 S.bind2 (mft dom,
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151 fn dom' =>
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152 S.bind2 (mft ran,
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153 fn ran' =>
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154 S.map2 (mfe (bind (ctx, RelE (x, dom'))) e,
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155 fn e' =>
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156 (EAbs (x, dom', ran', e'), loc))))
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157
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158 | ERecord xes =>
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159 S.map2 (ListUtil.mapfold (fn (x, e, t) =>
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160 S.bind2 (mfe ctx e,
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161 fn e' =>
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162 S.map2 (mft t,
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163 fn t' =>
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164 (x, e', t'))))
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165 xes,
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166 fn xes' =>
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167 (ERecord xes', loc))
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168 | EField (e, x) =>
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169 S.map2 (mfe ctx e,
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170 fn e' =>
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171 (EField (e', x), loc))
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172
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173 | ECase (e, pes, {disc, result}) =>
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174 S.bind2 (mfe ctx e,
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175 fn e' =>
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176 S.bind2 (ListUtil.mapfold (fn (p, e) =>
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177 let
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178 fun pb ((p, _), ctx) =
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179 case p of
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180 PWild => ctx
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181 | PVar (x, t) => bind (ctx, RelE (x, t))
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182 | PPrim _ => ctx
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183 | PCon (_, _, NONE) => ctx
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184 | PCon (_, _, SOME p) => pb (p, ctx)
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185 | PRecord xps => foldl (fn ((_, p, _), ctx) =>
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186 pb (p, ctx)) ctx xps
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187 in
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188 S.map2 (mfe (pb (p, ctx)) e,
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189 fn e' => (p, e'))
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190 end) pes,
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191 fn pes' =>
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192 S.bind2 (mft disc,
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193 fn disc' =>
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194 S.map2 (mft result,
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195 fn result' =>
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196 (ECase (e', pes', {disc = disc', result = result'}), loc)))))
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197
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198 | EStrcat (e1, e2) =>
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199 S.bind2 (mfe ctx e1,
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200 fn e1' =>
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201 S.map2 (mfe ctx e2,
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202 fn e2' =>
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203 (EStrcat (e1', e2'), loc)))
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204
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205 | EWrite e =>
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206 S.map2 (mfe ctx e,
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207 fn e' =>
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208 (EWrite e', loc))
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209
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210 | ESeq (e1, e2) =>
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211 S.bind2 (mfe ctx e1,
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212 fn e1' =>
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213 S.map2 (mfe ctx e2,
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214 fn e2' =>
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215 (ESeq (e1', e2'), loc)))
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216
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217 | EClosure (n, es) =>
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218 S.map2 (ListUtil.mapfold (mfe ctx) es,
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219 fn es' =>
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220 (EClosure (n, es'), loc))
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221 in
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222 mfe
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223 end
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224
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225 fun mapfold {typ = fc, exp = fe} =
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226 mapfoldB {typ = fc,
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227 exp = fn () => fe,
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228 bind = fn ((), _) => ()} ()
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229
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230 fun mapB {typ, exp, bind} ctx e =
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231 case mapfoldB {typ = fn c => fn () => S.Continue (typ c, ()),
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232 exp = fn ctx => fn e => fn () => S.Continue (exp ctx e, ()),
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233 bind = bind} ctx e () of
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234 S.Continue (e, ()) => e
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235 | S.Return _ => raise Fail "MonoUtil.Exp.mapB: Impossible"
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236
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237 fun map {typ, exp} e =
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238 case mapfold {typ = fn c => fn () => S.Continue (typ c, ()),
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239 exp = fn e => fn () => S.Continue (exp e, ())} e () of
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240 S.Return () => raise Fail "Mono_util.Exp.map"
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241 | S.Continue (e, ()) => e
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242
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243 fun fold {typ, exp} s e =
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244 case mapfold {typ = fn c => fn s => S.Continue (c, typ (c, s)),
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245 exp = fn e => fn s => S.Continue (e, exp (e, s))} e s of
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246 S.Continue (_, s) => s
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247 | S.Return _ => raise Fail "MonoUtil.Exp.fold: Impossible"
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248
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249 fun exists {typ, exp} k =
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250 case mapfold {typ = fn c => fn () =>
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251 if typ c then
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252 S.Return ()
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253 else
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254 S.Continue (c, ()),
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255 exp = fn e => fn () =>
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256 if exp e then
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257 S.Return ()
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258 else
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259 S.Continue (e, ())} k () of
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260 S.Return _ => true
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261 | S.Continue _ => false
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262
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263 end
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264
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265 structure Decl = struct
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266
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267 datatype binder = datatype Exp.binder
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268
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269 fun mapfoldB {typ = fc, exp = fe, decl = fd, bind} =
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270 let
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271 val mft = Typ.mapfold fc
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272
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273 val mfe = Exp.mapfoldB {typ = fc, exp = fe, bind = bind}
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274
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275 fun mfd ctx d acc =
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276 S.bindP (mfd' ctx d acc, fd ctx)
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277
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278 and mfd' ctx (dAll as (d, loc)) =
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279 case d of
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280 DDatatype (x, n, xncs) =>
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281 S.map2 (ListUtil.mapfold (fn (x, n, c) =>
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282 case c of
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283 NONE => S.return2 (x, n, c)
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284 | SOME c =>
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285 S.map2 (mft c,
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286 fn c' => (x, n, SOME c'))) xncs,
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287 fn xncs' =>
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288 (DDatatype (x, n, xncs'), loc))
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289 | DVal vi =>
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290 S.map2 (mfvi ctx vi,
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291 fn vi' =>
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292 (DVal vi', loc))
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293 | DValRec vis =>
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294 let
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295 val ctx' = foldl (fn ((x, n, t, _, s), ctx') => bind (ctx', NamedE (x, n, t, NONE, s))) ctx vis
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296 in
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297 S.map2 (ListUtil.mapfold (mfvi ctx') vis,
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298 fn vis' =>
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299 (DValRec vis', loc))
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300 end
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301 | DExport (ek, s, n, ts) =>
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302 S.map2 (ListUtil.mapfold mft ts,
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303 fn ts' =>
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304 (DExport (ek, s, n, ts'), loc))
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305
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306 and mfvi ctx (x, n, t, e, s) =
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307 S.bind2 (mft t,
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308 fn t' =>
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309 S.map2 (mfe ctx e,
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310 fn e' =>
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311 (x, n, t', e', s)))
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312 in
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313 mfd
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314 end
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315
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316 fun mapfold {typ = fc, exp = fe, decl = fd} =
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317 mapfoldB {typ = fc,
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318 exp = fn () => fe,
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319 decl = fn () => fd,
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320 bind = fn ((), _) => ()} ()
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321
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322 fun fold {typ, exp, decl} s d =
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323 case mapfold {typ = fn c => fn s => S.Continue (c, typ (c, s)),
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324 exp = fn e => fn s => S.Continue (e, exp (e, s)),
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325 decl = fn d => fn s => S.Continue (d, decl (d, s))} d s of
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326 S.Continue (_, s) => s
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327 | S.Return _ => raise Fail "MonoUtil.Decl.fold: Impossible"
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328
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329 end
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330
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331 structure File = struct
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332
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333 datatype binder = datatype Exp.binder
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334
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335 fun mapfoldB (all as {bind, ...}) =
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336 let
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337 val mfd = Decl.mapfoldB all
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338
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339 fun mff ctx ds =
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340 case ds of
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341 nil => S.return2 nil
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342 | d :: ds' =>
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343 S.bind2 (mfd ctx d,
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344 fn d' =>
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345 let
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346 val ctx' =
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adamc@26
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347 case #1 d' of
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adamc@164
|
348 DDatatype (x, n, xncs) =>
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adamc@164
|
349 let
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adamc@168
|
350 val ctx = bind (ctx, Datatype (x, n, xncs))
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adamc@198
|
351 val t = (TDatatype (n, ref (ElabUtil.classifyDatatype xncs, xncs)), #2 d')
|
adamc@164
|
352 in
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adamc@164
|
353 foldl (fn ((x, n, to), ctx) =>
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adamc@164
|
354 let
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adamc@164
|
355 val t = case to of
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adamc@164
|
356 NONE => t
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adamc@164
|
357 | SOME t' => (TFun (t', t), #2 d')
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adamc@164
|
358 in
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adamc@164
|
359 bind (ctx, NamedE (x, n, t, NONE, ""))
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adamc@164
|
360 end)
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adamc@164
|
361 ctx xncs
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adamc@164
|
362 end
|
adamc@164
|
363 | DVal (x, n, t, e, s) => bind (ctx, NamedE (x, n, t, SOME e, s))
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adamc@126
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364 | DValRec vis => foldl (fn ((x, n, t, e, s), ctx) =>
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adamc@196
|
365 bind (ctx, NamedE (x, n, t, NONE, s))) ctx vis
|
adamc@109
|
366 | DExport _ => ctx
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adamc@26
|
367 in
|
adamc@26
|
368 S.map2 (mff ctx' ds',
|
adamc@26
|
369 fn ds' =>
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adamc@26
|
370 d' :: ds')
|
adamc@26
|
371 end)
|
adamc@26
|
372 in
|
adamc@26
|
373 mff
|
adamc@26
|
374 end
|
adamc@26
|
375
|
adamc@26
|
376 fun mapfold {typ = fc, exp = fe, decl = fd} =
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adamc@26
|
377 mapfoldB {typ = fc,
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adamc@26
|
378 exp = fn () => fe,
|
adamc@26
|
379 decl = fn () => fd,
|
adamc@26
|
380 bind = fn ((), _) => ()} ()
|
adamc@26
|
381
|
adamc@26
|
382 fun mapB {typ, exp, decl, bind} ctx ds =
|
adamc@26
|
383 case mapfoldB {typ = fn c => fn () => S.Continue (typ c, ()),
|
adamc@26
|
384 exp = fn ctx => fn e => fn () => S.Continue (exp ctx e, ()),
|
adamc@26
|
385 decl = fn ctx => fn d => fn () => S.Continue (decl ctx d, ()),
|
adamc@26
|
386 bind = bind} ctx ds () of
|
adamc@26
|
387 S.Continue (ds, ()) => ds
|
adamc@26
|
388 | S.Return _ => raise Fail "MonoUtil.File.mapB: Impossible"
|
adamc@26
|
389
|
adamc@96
|
390 fun map {typ, exp, decl} e =
|
adamc@96
|
391 case mapfold {typ = fn c => fn () => S.Continue (typ c, ()),
|
adamc@96
|
392 exp = fn e => fn () => S.Continue (exp e, ()),
|
adamc@96
|
393 decl = fn d => fn () => S.Continue (decl d, ())} e () of
|
adamc@96
|
394 S.Return () => raise Fail "Mono_util.File.map"
|
adamc@96
|
395 | S.Continue (e, ()) => e
|
adamc@96
|
396
|
adamc@26
|
397 fun fold {typ, exp, decl} s d =
|
adamc@26
|
398 case mapfold {typ = fn c => fn s => S.Continue (c, typ (c, s)),
|
adamc@26
|
399 exp = fn e => fn s => S.Continue (e, exp (e, s)),
|
adamc@26
|
400 decl = fn d => fn s => S.Continue (d, decl (d, s))} d s of
|
adamc@26
|
401 S.Continue (_, s) => s
|
adamc@26
|
402 | S.Return _ => raise Fail "MonoUtil.File.fold: Impossible"
|
adamc@26
|
403
|
adamc@26
|
404 end
|
adamc@26
|
405
|
adamc@26
|
406 end
|