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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 MonoEnv :> MONO_ENV = struct
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29
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30 open Mono
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31
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32 structure IM = IntBinaryMap
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33
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34
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35 exception UnboundRel of int
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36 exception UnboundNamed of int
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37
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38 type env = {
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39 datatypes : (string * (string * int * typ option) list) IM.map,
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40 constructors : (string * typ option * int) IM.map,
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41
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42 relE : (string * typ * exp option) list,
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43 namedE : (string * typ * exp option * string) IM.map
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44 }
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45
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46 val empty = {
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47 datatypes = IM.empty,
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48 constructors = IM.empty,
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49
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50 relE = [],
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51 namedE = IM.empty
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52 }
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53
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54 fun pushDatatype (env : env) x n xncs =
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55 {datatypes = IM.insert (#datatypes env, n, (x, xncs)),
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56 constructors = foldl (fn ((x, n', to), constructors) =>
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57 IM.insert (constructors, n', (x, to, n)))
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58 (#constructors env) xncs,
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59
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60 relE = #relE env,
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61 namedE = #namedE env}
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62
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63 fun lookupDatatype (env : env) n =
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64 case IM.find (#datatypes env, n) of
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65 NONE => raise UnboundNamed n
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66 | SOME x => x
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67
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68 fun lookupConstructor (env : env) n =
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69 case IM.find (#constructors env, n) of
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70 NONE => raise UnboundNamed n
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71 | SOME x => x
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72
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73 structure U = MonoUtil
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74
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75 val liftExpInExp =
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76 U.Exp.mapB {typ = fn t => t,
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77 exp = fn bound => fn e =>
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78 case e of
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79 ERel xn =>
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80 if xn < bound then
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81 e
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82 else
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83 ERel (xn + 1)
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84 | _ => e,
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85 bind = fn (bound, U.Exp.RelE _) => bound + 1
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86 | (bound, _) => bound}
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87
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88 val subExpInExp =
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89 U.Exp.mapB {typ = fn t => t,
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90 exp = fn (xn, rep) => fn e =>
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91 case e of
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92 ERel xn' =>
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93 (case Int.compare (xn', xn) of
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94 EQUAL => #1 rep
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95 | GREATER=> ERel (xn' - 1)
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96 | LESS => e)
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97 | _ => e,
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98 bind = fn ((xn, rep), U.Exp.RelE _) => (xn+1, liftExpInExp 0 rep)
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99 | (ctx, _) => ctx}
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100
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101 fun pushERel (env : env) x t eo =
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102 {datatypes = #datatypes env,
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103 constructors = #constructors env,
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104 relE = (x, t, eo) :: map (fn (x, t, eo) => (x, t, Option.map (liftExpInExp 0) eo)) (#relE env),
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105 namedE = #namedE env}
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106
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107 fun lookupERel (env : env) n =
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108 (List.nth (#relE env, n))
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109 handle Subscript => raise UnboundRel n
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110
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111 fun pushENamed (env : env) x n t eo s =
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112 {datatypes = #datatypes env,
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113 constructors = #constructors env,
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114
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115 relE = #relE env,
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116 namedE = IM.insert (#namedE env, n, (x, t, eo, s))}
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117
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118 fun lookupENamed (env : env) n =
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119 case IM.find (#namedE env, n) of
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120 NONE => raise UnboundNamed n
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121 | SOME x => x
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122
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123 fun declBinds env (d, loc) =
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124 case d of
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125 DDatatype dts =>
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126 foldl (fn ((x, n, xncs), env) =>
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127 let
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128 val env = pushDatatype env x n xncs
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129 val dt = (TDatatype (n, ref (ElabUtil.classifyDatatype xncs, xncs)), loc)
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130 in
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131 foldl (fn ((x', n', NONE), env) => pushENamed env x' n' dt NONE ""
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132 | ((x', n', SOME t), env) => pushENamed env x' n' (TFun (t, dt), loc) NONE "")
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133 env xncs
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134 end) env dts
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135 | DVal (x, n, t, e, s) => pushENamed env x n t (SOME e) s
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136 | DValRec vis => foldl (fn ((x, n, t, e, s), env) => pushENamed env x n t NONE s) env vis
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137 | DExport _ => env
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138 | DTable _ => env
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139 | DSequence _ => env
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140 | DView _ => env
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141 | DDatabase _ => env
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142 | DJavaScript _ => env
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143 | DCookie _ => env
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144 | DStyle _ => env
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145 | DTask _ => env
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146 | DPolicy _ => env
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147 | DOnError _ => env
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148
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149 fun patBinds env (p, loc) =
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150 case p of
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151 PWild => env
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152 | PVar (x, t) => pushERel env x t NONE
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153 | PPrim _ => env
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154 | PCon (_, _, NONE) => env
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155 | PCon (_, _, SOME p) => patBinds env p
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156 | PRecord xps => foldl (fn ((_, p, _), env) => patBinds env p) env xps
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157 | PNone _ => env
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158 | PSome (_, p) => patBinds env p
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159
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160 fun patBindsN (p, loc) =
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161 case p of
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162 PWild => 0
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163 | PVar _ => 1
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164 | PPrim _ => 0
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165 | PCon (_, _, NONE) => 0
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166 | PCon (_, _, SOME p) => patBindsN p
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167 | PRecord xps => foldl (fn ((_, p, _), count) => count + patBindsN p) 0 xps
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168 | PNone _ => 0
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169 | PSome (_, p) => patBindsN p
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170
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171 end
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