adamc@2
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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 Elaborate :> ELABORATE = struct
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29
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30 structure L = Source
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31 structure L' = Elab
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32 structure E = ElabEnv
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33 structure U = ElabUtil
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34
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35 open Print
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36 open ElabPrint
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37
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38 fun elabKind (k, loc) =
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39 case k of
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40 L.KType => (L'.KType, loc)
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41 | L.KArrow (k1, k2) => (L'.KArrow (elabKind k1, elabKind k2), loc)
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42 | L.KName => (L'.KName, loc)
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43 | L.KRecord k => (L'.KRecord (elabKind k), loc)
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44
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45 fun elabExplicitness e =
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46 case e of
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47 L.Explicit => L'.Explicit
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48 | L.Implicit => L'.Implicit
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49
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50 fun occursKind r =
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51 U.Kind.exists (fn L'.KUnif (_, r') => r = r'
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52 | _ => false)
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53
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54 datatype kunify_error =
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55 KOccursCheckFailed of L'.kind * L'.kind
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56 | KIncompatible of L'.kind * L'.kind
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57
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58 exception KUnify' of kunify_error
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59
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60 fun kunifyError err =
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61 case err of
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62 KOccursCheckFailed (k1, k2) =>
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63 eprefaces "Kind occurs check failed"
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64 [("Kind 1", p_kind k1),
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65 ("Kind 2", p_kind k2)]
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66 | KIncompatible (k1, k2) =>
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67 eprefaces "Incompatible kinds"
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68 [("Kind 1", p_kind k1),
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69 ("Kind 2", p_kind k2)]
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70
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71 fun unifyKinds' (k1All as (k1, _)) (k2All as (k2, _)) =
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72 let
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73 fun err f = raise KUnify' (f (k1All, k2All))
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74 in
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75 case (k1, k2) of
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76 (L'.KType, L'.KType) => ()
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77 | (L'.KArrow (d1, r1), L'.KArrow (d2, r2)) =>
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78 (unifyKinds' d1 d2;
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79 unifyKinds' r1 r2)
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80 | (L'.KName, L'.KName) => ()
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81 | (L'.KRecord k1, L'.KRecord k2) => unifyKinds' k1 k2
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82
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83 | (L'.KError, _) => ()
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84 | (_, L'.KError) => ()
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85
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86 | (L'.KUnif (_, ref (SOME k1All)), _) => unifyKinds' k1All k2All
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87 | (_, L'.KUnif (_, ref (SOME k2All))) => unifyKinds' k1All k2All
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88
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89 | (L'.KUnif (_, r1), L'.KUnif (_, r2)) =>
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90 if r1 = r2 then
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91 ()
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92 else
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93 r1 := SOME k2All
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94
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95 | (L'.KUnif (_, r), _) =>
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96 if occursKind r k2All then
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97 err KOccursCheckFailed
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98 else
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99 r := SOME k2All
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100 | (_, L'.KUnif (_, r)) =>
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101 if occursKind r k1All then
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102 err KOccursCheckFailed
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103 else
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104 r := SOME k1All
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105
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106 | _ => err KIncompatible
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107 end
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108
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109 exception KUnify of L'.kind * L'.kind * kunify_error
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110
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111 fun unifyKinds k1 k2 =
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112 unifyKinds' k1 k2
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113 handle KUnify' err => raise KUnify (k1, k2, err)
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114
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115 datatype con_error =
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116 UnboundCon of ErrorMsg.span * string
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117 | WrongKind of L'.con * L'.kind * L'.kind * kunify_error
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118
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119 fun conError env err =
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120 case err of
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121 UnboundCon (loc, s) =>
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122 ErrorMsg.errorAt loc ("Unbound constructor variable " ^ s)
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123 | WrongKind (c, k1, k2, kerr) =>
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124 (ErrorMsg.errorAt (#2 c) "Wrong kind";
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125 eprefaces' [("Constructor", p_con env c),
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126 ("Have kind", p_kind k1),
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127 ("Need kind", p_kind k2)];
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128 kunifyError kerr)
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129
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130 fun checkKind env c k1 k2 =
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131 unifyKinds k1 k2
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132 handle KUnify (k1, k2, err) =>
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133 conError env (WrongKind (c, k1, k2, err))
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134
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135 val dummy = ErrorMsg.dummySpan
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136
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137 val ktype = (L'.KType, dummy)
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138 val kname = (L'.KName, dummy)
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139 val ktype_record = (L'.KRecord ktype, dummy)
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140
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141 val cerror = (L'.CError, dummy)
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142 val kerror = (L'.KError, dummy)
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143 val eerror = (L'.EError, dummy)
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144
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145 local
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146 val count = ref 0
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147 in
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148
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149 fun resetKunif () = count := 0
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150
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151 fun kunif () =
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152 let
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153 val n = !count
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154 val s = if n <= 26 then
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155 str (chr (ord #"A" + n))
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156 else
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157 "U" ^ Int.toString (n - 26)
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158 in
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159 count := n + 1;
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160 (L'.KUnif (s, ref NONE), dummy)
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161 end
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162
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163 end
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164
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165 local
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166 val count = ref 0
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167 in
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168
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169 fun resetCunif () = count := 0
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170
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171 fun cunif k =
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172 let
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173 val n = !count
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174 val s = if n <= 26 then
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175 str (chr (ord #"A" + n))
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176 else
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177 "U" ^ Int.toString (n - 26)
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178 in
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179 count := n + 1;
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180 (L'.CUnif (k, s, ref NONE), dummy)
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181 end
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182
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183 end
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184
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185 fun elabCon env (c, loc) =
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186 case c of
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187 L.CAnnot (c, k) =>
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188 let
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189 val k' = elabKind k
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190 val (c', ck) = elabCon env c
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191 in
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192 checkKind env c' ck k';
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193 (c', k')
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194 end
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195
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196 | L.TFun (t1, t2) =>
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197 let
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198 val (t1', k1) = elabCon env t1
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199 val (t2', k2) = elabCon env t2
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200 in
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201 checkKind env t1' k1 ktype;
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202 checkKind env t2' k2 ktype;
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203 ((L'.TFun (t1', t2'), loc), ktype)
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204 end
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205 | L.TCFun (e, x, k, t) =>
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206 let
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207 val e' = elabExplicitness e
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208 val k' = elabKind k
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209 val env' = E.pushCRel env x k'
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210 val (t', tk) = elabCon env' t
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211 in
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212 checkKind env t' tk ktype;
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213 ((L'.TCFun (e', x, k', t'), loc), ktype)
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214 end
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215 | L.TRecord c =>
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216 let
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217 val (c', ck) = elabCon env c
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218 val k = (L'.KRecord ktype, loc)
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219 in
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220 checkKind env c' ck k;
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221 ((L'.TRecord c', loc), ktype)
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222 end
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223
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224 | L.CVar s =>
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225 (case E.lookupC env s of
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226 E.NotBound =>
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227 (conError env (UnboundCon (loc, s));
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228 (cerror, kerror))
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229 | E.Rel (n, k) =>
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230 ((L'.CRel n, loc), k)
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231 | E.Named (n, k) =>
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232 ((L'.CNamed n, loc), k))
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233 | L.CApp (c1, c2) =>
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234 let
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235 val (c1', k1) = elabCon env c1
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236 val (c2', k2) = elabCon env c2
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237 val dom = kunif ()
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238 val ran = kunif ()
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239 in
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240 checkKind env c1' k1 (L'.KArrow (dom, ran), loc);
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241 checkKind env c2' k2 dom;
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242 ((L'.CApp (c1', c2'), loc), ran)
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243 end
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244 | L.CAbs (x, k, t) =>
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245 let
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246 val k' = elabKind k
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247 val env' = E.pushCRel env x k'
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248 val (t', tk) = elabCon env' t
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249 in
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250 ((L'.CAbs (x, k', t'), loc),
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251 (L'.KArrow (k', tk), loc))
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252 end
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253
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254 | L.CName s =>
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255 ((L'.CName s, loc), kname)
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256
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257 | L.CRecord xcs =>
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258 let
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259 val k = kunif ()
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260
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261 val xcs' = map (fn (x, c) =>
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262 let
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263 val (x', xk) = elabCon env x
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264 val (c', ck) = elabCon env c
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265 in
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266 checkKind env x' xk kname;
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267 checkKind env c' ck k;
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268 (x', c')
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269 end) xcs
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270 in
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271 ((L'.CRecord (k, xcs'), loc), (L'.KRecord k, loc))
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272 end
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273 | L.CConcat (c1, c2) =>
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274 let
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275 val (c1', k1) = elabCon env c1
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276 val (c2', k2) = elabCon env c2
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277 val ku = kunif ()
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278 val k = (L'.KRecord ku, loc)
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279 in
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280 checkKind env c1' k1 k;
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281 checkKind env c2' k2 k;
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282 ((L'.CConcat (c1', c2'), loc), k)
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283 end
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284
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285 fun kunifsRemain k =
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286 case k of
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287 L'.KUnif (_, ref NONE) => true
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288 | _ => false
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289 fun cunifsRemain c =
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290 case c of
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291 L'.CUnif (_, _, ref NONE) => true
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292 | _ => false
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293
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294 val kunifsInKind = U.Kind.exists kunifsRemain
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295 val kunifsInCon = U.Con.exists {kind = kunifsRemain,
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296 con = fn _ => false}
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297 val kunifsInExp = U.Exp.exists {kind = kunifsRemain,
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298 con = fn _ => false,
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299 exp = fn _ => false}
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300
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301 val cunifsInCon = U.Con.exists {kind = fn _ => false,
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302 con = cunifsRemain}
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303 val cunifsInExp = U.Exp.exists {kind = fn _ => false,
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304 con = cunifsRemain,
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305 exp = fn _ => false}
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306
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307 fun occursCon r =
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308 U.Con.exists {kind = fn _ => false,
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309 con = fn L'.CUnif (_, _, r') => r = r'
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310 | _ => false}
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311
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312 datatype cunify_error =
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313 CKind of L'.kind * L'.kind * kunify_error
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314 | COccursCheckFailed of L'.con * L'.con
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315 | CIncompatible of L'.con * L'.con
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316 | CExplicitness of L'.con * L'.con
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317 | CKindof of L'.con
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318 | CRecordFailure
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319
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320 exception CUnify' of cunify_error
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321
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322 fun cunifyError env err =
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323 case err of
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324 CKind (k1, k2, kerr) =>
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325 (eprefaces "Kind unification failure"
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326 [("Kind 1", p_kind k1),
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327 ("Kind 2", p_kind k2)];
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328 kunifyError kerr)
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329 | COccursCheckFailed (c1, c2) =>
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330 eprefaces "Constructor occurs check failed"
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331 [("Con 1", p_con env c1),
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332 ("Con 2", p_con env c2)]
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333 | CIncompatible (c1, c2) =>
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334 eprefaces "Incompatible constructors"
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335 [("Con 1", p_con env c1),
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336 ("Con 2", p_con env c2)]
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337 | CExplicitness (c1, c2) =>
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338 eprefaces "Differing constructor function explicitness"
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339 [("Con 1", p_con env c1),
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340 ("Con 2", p_con env c2)]
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341 | CKindof c =>
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342 eprefaces "Kind unification variable blocks kindof calculation"
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343 [("Con", p_con env c)]
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344 | CRecordFailure =>
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345 eprefaces "Can't unify record constructors" []
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346
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347 exception SynUnif = E.SynUnif
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348 val liftConInCon = E.liftConInCon
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349
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350 val subConInCon =
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351 U.Con.mapB {kind = fn k => k,
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352 con = fn (xn, rep) => fn c =>
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adamc@12
|
353 case c of
|
adamc@12
|
354 L'.CRel xn' =>
|
adamc@12
|
355 if xn = xn' then
|
adamc@12
|
356 #1 rep
|
adamc@12
|
357 else
|
adamc@12
|
358 c
|
adamc@12
|
359 | L'.CUnif _ => raise SynUnif
|
adamc@12
|
360 | _ => c,
|
adamc@12
|
361 bind = fn ((xn, rep), U.Con.Rel _) => (xn+1, liftConInCon 0 rep)
|
adamc@12
|
362 | (ctx, _) => ctx}
|
adamc@12
|
363
|
adamc@12
|
364 type record_summary = {
|
adamc@12
|
365 fields : (L'.con * L'.con) list,
|
adamc@12
|
366 unifs : (L'.con * L'.con option ref) list,
|
adamc@12
|
367 others : L'.con list
|
adamc@12
|
368 }
|
adamc@12
|
369
|
adamc@12
|
370 fun summaryToCon {fields, unifs, others} =
|
adamc@12
|
371 let
|
adamc@12
|
372 val c = (L'.CRecord (ktype, []), dummy)
|
adamc@12
|
373 val c = List.foldr (fn (c', c) => (L'.CConcat (c', c), dummy)) c others
|
adamc@12
|
374 val c = List.foldr (fn ((c', _), c) => (L'.CConcat (c', c), dummy)) c unifs
|
adamc@12
|
375 in
|
adamc@12
|
376 (L'.CConcat ((L'.CRecord (ktype, fields), dummy), c), dummy)
|
adamc@12
|
377 end
|
adamc@12
|
378
|
adamc@12
|
379 fun p_summary env s = p_con env (summaryToCon s)
|
adamc@12
|
380
|
adamc@12
|
381 exception CUnify of L'.con * L'.con * cunify_error
|
adamc@12
|
382
|
adamc@12
|
383 fun hnormKind (kAll as (k, _)) =
|
adamc@12
|
384 case k of
|
adamc@12
|
385 L'.KUnif (_, ref (SOME k)) => hnormKind k
|
adamc@12
|
386 | _ => kAll
|
adamc@12
|
387
|
adamc@12
|
388 fun kindof env (c, loc) =
|
adamc@12
|
389 case c of
|
adamc@12
|
390 L'.TFun _ => ktype
|
adamc@12
|
391 | L'.TCFun _ => ktype
|
adamc@12
|
392 | L'.TRecord _ => ktype
|
adamc@12
|
393
|
adamc@12
|
394 | L'.CRel xn => #2 (E.lookupCRel env xn)
|
adamc@12
|
395 | L'.CNamed xn => #2 (E.lookupCNamed env xn)
|
adamc@12
|
396 | L'.CApp (c, _) =>
|
adamc@12
|
397 (case #1 (hnormKind (kindof env c)) of
|
adamc@12
|
398 L'.KArrow (_, k) => k
|
adamc@12
|
399 | L'.KError => kerror
|
adamc@12
|
400 | _ => raise CUnify' (CKindof c))
|
adamc@12
|
401 | L'.CAbs (x, k, c) => (L'.KArrow (k, kindof (E.pushCRel env x k) c), loc)
|
adamc@12
|
402
|
adamc@12
|
403 | L'.CName _ => kname
|
adamc@12
|
404
|
adamc@12
|
405 | L'.CRecord (k, _) => (L'.KRecord k, loc)
|
adamc@12
|
406 | L'.CConcat (c, _) => kindof env c
|
adamc@12
|
407
|
adamc@12
|
408 | L'.CError => kerror
|
adamc@12
|
409 | L'.CUnif (k, _, _) => k
|
adamc@12
|
410
|
adamc@12
|
411 fun unifyRecordCons env (c1, c2) =
|
adamc@12
|
412 let
|
adamc@12
|
413 val k1 = kindof env c1
|
adamc@12
|
414 val k2 = kindof env c2
|
adamc@12
|
415 in
|
adamc@12
|
416 unifyKinds k1 k2;
|
adamc@12
|
417 unifySummaries env (k1, recordSummary env c1, recordSummary env c2)
|
adamc@12
|
418 end
|
adamc@12
|
419
|
adamc@12
|
420 and recordSummary env c : record_summary =
|
adamc@12
|
421 case hnormCon env c of
|
adamc@12
|
422 (L'.CRecord (_, xcs), _) => {fields = xcs, unifs = [], others = []}
|
adamc@12
|
423 | (L'.CConcat (c1, c2), _) =>
|
adamc@12
|
424 let
|
adamc@12
|
425 val s1 = recordSummary env c1
|
adamc@12
|
426 val s2 = recordSummary env c2
|
adamc@12
|
427 in
|
adamc@12
|
428 {fields = #fields s1 @ #fields s2,
|
adamc@12
|
429 unifs = #unifs s1 @ #unifs s2,
|
adamc@12
|
430 others = #others s1 @ #others s2}
|
adamc@12
|
431 end
|
adamc@12
|
432 | (L'.CUnif (_, _, ref (SOME c)), _) => recordSummary env c
|
adamc@12
|
433 | c' as (L'.CUnif (_, _, r), _) => {fields = [], unifs = [(c', r)], others = []}
|
adamc@12
|
434 | c' => {fields = [], unifs = [], others = [c']}
|
adamc@12
|
435
|
adamc@12
|
436 and consEq env (c1, c2) =
|
adamc@12
|
437 (unifyCons env c1 c2;
|
adamc@12
|
438 true)
|
adamc@12
|
439 handle CUnify _ => false
|
adamc@12
|
440
|
adamc@12
|
441 and unifySummaries env (k, s1 : record_summary, s2 : record_summary) =
|
adamc@12
|
442 let
|
adamc@12
|
443 val () = eprefaces "Summaries" [("#1", p_summary env s1),
|
adamc@12
|
444 ("#2", p_summary env s2)]
|
adamc@12
|
445
|
adamc@12
|
446 fun eatMatching p (ls1, ls2) =
|
adamc@12
|
447 let
|
adamc@12
|
448 fun em (ls1, ls2, passed1) =
|
adamc@12
|
449 case ls1 of
|
adamc@12
|
450 [] => (rev passed1, ls2)
|
adamc@12
|
451 | h1 :: t1 =>
|
adamc@12
|
452 let
|
adamc@12
|
453 fun search (ls2', passed2) =
|
adamc@12
|
454 case ls2' of
|
adamc@12
|
455 [] => em (t1, ls2, h1 :: passed1)
|
adamc@12
|
456 | h2 :: t2 =>
|
adamc@12
|
457 if p (h1, h2) then
|
adamc@12
|
458 em (t1, List.revAppend (passed2, t2), passed1)
|
adamc@12
|
459 else
|
adamc@12
|
460 search (t2, h2 :: passed2)
|
adamc@12
|
461 in
|
adamc@12
|
462 search (ls2, [])
|
adamc@12
|
463 end
|
adamc@12
|
464 in
|
adamc@12
|
465 em (ls1, ls2, [])
|
adamc@12
|
466 end
|
adamc@12
|
467
|
adamc@12
|
468 val (fs1, fs2) = eatMatching (fn ((x1, c1), (x2, c2)) =>
|
adamc@12
|
469 if consEq env (x1, x2) then
|
adamc@12
|
470 (unifyCons env c1 c2;
|
adamc@12
|
471 true)
|
adamc@12
|
472 else
|
adamc@12
|
473 false) (#fields s1, #fields s2)
|
adamc@12
|
474 val () = eprefaces "Summaries2" [("#1", p_summary env {fields = fs1, unifs = #unifs s1, others = #others s1}),
|
adamc@12
|
475 ("#2", p_summary env {fields = fs2, unifs = #unifs s2, others = #others s2})]
|
adamc@12
|
476 val (unifs1, unifs2) = eatMatching (fn ((_, r1), (_, r2)) => r1 = r2) (#unifs s1, #unifs s2)
|
adamc@12
|
477 val (others1, others2) = eatMatching (consEq env) (#others s1, #others s2)
|
adamc@12
|
478
|
adamc@12
|
479 fun unifFields (fs, others, unifs) =
|
adamc@12
|
480 case (fs, others, unifs) of
|
adamc@12
|
481 ([], [], _) => ([], [], unifs)
|
adamc@12
|
482 | (_, _, []) => (fs, others, [])
|
adamc@12
|
483 | (_, _, (_, r) :: rest) =>
|
adamc@12
|
484 let
|
adamc@12
|
485 val r' = ref NONE
|
adamc@12
|
486 val cr' = (L'.CUnif (k, "recd", r'), dummy)
|
adamc@12
|
487
|
adamc@12
|
488 val prefix = case (fs, others) of
|
adamc@12
|
489 ([], other :: others) =>
|
adamc@12
|
490 List.foldl (fn (other, c) =>
|
adamc@12
|
491 (L'.CConcat (c, other), dummy))
|
adamc@12
|
492 other others
|
adamc@12
|
493 | (fs, []) =>
|
adamc@12
|
494 (L'.CRecord (k, fs), dummy)
|
adamc@12
|
495 | (fs, others) =>
|
adamc@12
|
496 List.foldl (fn (other, c) =>
|
adamc@12
|
497 (L'.CConcat (c, other), dummy))
|
adamc@12
|
498 (L'.CRecord (k, fs), dummy) others
|
adamc@12
|
499 in
|
adamc@12
|
500 r := SOME (L'.CConcat (prefix, cr'), dummy);
|
adamc@12
|
501 ([], [], (cr', r') :: rest)
|
adamc@12
|
502 end
|
adamc@12
|
503
|
adamc@12
|
504 val (fs1, others1, unifs2) = unifFields (fs1, others1, unifs2)
|
adamc@12
|
505 val (fs2, others2, unifs1) = unifFields (fs2, others2, unifs1)
|
adamc@12
|
506
|
adamc@12
|
507 val clear1 = case (fs1, others1) of
|
adamc@12
|
508 ([], []) => true
|
adamc@12
|
509 | _ => false
|
adamc@12
|
510 val clear2 = case (fs2, others2) of
|
adamc@12
|
511 ([], []) => true
|
adamc@12
|
512 | _ => false
|
adamc@12
|
513 val empty = (L'.CRecord (k, []), dummy)
|
adamc@12
|
514 fun pairOffUnifs (unifs1, unifs2) =
|
adamc@12
|
515 case (unifs1, unifs2) of
|
adamc@12
|
516 ([], _) =>
|
adamc@12
|
517 if clear1 then
|
adamc@12
|
518 List.app (fn (_, r) => r := SOME empty) unifs2
|
adamc@12
|
519 else
|
adamc@12
|
520 raise CUnify' CRecordFailure
|
adamc@12
|
521 | (_, []) =>
|
adamc@12
|
522 if clear2 then
|
adamc@12
|
523 List.app (fn (_, r) => r := SOME empty) unifs1
|
adamc@12
|
524 else
|
adamc@12
|
525 raise CUnify' CRecordFailure
|
adamc@12
|
526 | ((c1, _) :: rest1, (_, r2) :: rest2) =>
|
adamc@12
|
527 (r2 := SOME c1;
|
adamc@12
|
528 pairOffUnifs (rest1, rest2))
|
adamc@12
|
529 in
|
adamc@12
|
530 pairOffUnifs (unifs1, unifs2)
|
adamc@12
|
531 end
|
adamc@12
|
532
|
adamc@12
|
533 and hnormCon env (cAll as (c, _)) =
|
adamc@11
|
534 case c of
|
adamc@11
|
535 L'.CUnif (_, _, ref (SOME c)) => hnormCon env c
|
adamc@11
|
536
|
adamc@11
|
537 | L'.CNamed xn =>
|
adamc@11
|
538 (case E.lookupCNamed env xn of
|
adamc@11
|
539 (_, _, SOME c') => hnormCon env c'
|
adamc@11
|
540 | _ => cAll)
|
adamc@11
|
541
|
adamc@12
|
542 | L'.CApp (c1, c2) =>
|
adamc@12
|
543 (case hnormCon env c1 of
|
adamc@12
|
544 (L'.CAbs (_, _, cb), _) =>
|
adamc@12
|
545 ((hnormCon env (subConInCon (0, c2) cb))
|
adamc@12
|
546 handle SynUnif => cAll)
|
adamc@12
|
547 | _ => cAll)
|
adamc@12
|
548
|
adamc@12
|
549 | L'.CConcat (c1, c2) =>
|
adamc@12
|
550 (case (hnormCon env c1, hnormCon env c2) of
|
adamc@12
|
551 ((L'.CRecord (k, xcs1), loc), (L'.CRecord (_, xcs2), _)) =>
|
adamc@12
|
552 (L'.CRecord (k, xcs1 @ xcs2), loc)
|
adamc@12
|
553 | _ => cAll)
|
adamc@12
|
554
|
adamc@11
|
555 | _ => cAll
|
adamc@11
|
556
|
adamc@12
|
557 and unifyCons' env c1 c2 =
|
adamc@11
|
558 unifyCons'' env (hnormCon env c1) (hnormCon env c2)
|
adamc@11
|
559
|
adamc@11
|
560 and unifyCons'' env (c1All as (c1, _)) (c2All as (c2, _)) =
|
adamc@10
|
561 let
|
adamc@10
|
562 fun err f = raise CUnify' (f (c1All, c2All))
|
adamc@12
|
563
|
adamc@12
|
564 fun isRecord () = unifyRecordCons env (c1All, c2All)
|
adamc@10
|
565 in
|
adamc@10
|
566 case (c1, c2) of
|
adamc@10
|
567 (L'.TFun (d1, r1), L'.TFun (d2, r2)) =>
|
adamc@10
|
568 (unifyCons' env d1 d2;
|
adamc@10
|
569 unifyCons' env r1 r2)
|
adamc@10
|
570 | (L'.TCFun (expl1, x1, d1, r1), L'.TCFun (expl2, _, d2, r2)) =>
|
adamc@10
|
571 if expl1 <> expl2 then
|
adamc@10
|
572 err CExplicitness
|
adamc@10
|
573 else
|
adamc@10
|
574 (unifyKinds d1 d2;
|
adamc@10
|
575 unifyCons' (E.pushCRel env x1 d1) r1 r2)
|
adamc@10
|
576 | (L'.TRecord r1, L'.TRecord r2) => unifyCons' env r1 r2
|
adamc@10
|
577
|
adamc@10
|
578 | (L'.CRel n1, L'.CRel n2) =>
|
adamc@10
|
579 if n1 = n2 then
|
adamc@10
|
580 ()
|
adamc@10
|
581 else
|
adamc@10
|
582 err CIncompatible
|
adamc@10
|
583 | (L'.CNamed n1, L'.CNamed n2) =>
|
adamc@10
|
584 if n1 = n2 then
|
adamc@10
|
585 ()
|
adamc@10
|
586 else
|
adamc@10
|
587 err CIncompatible
|
adamc@10
|
588
|
adamc@10
|
589 | (L'.CApp (d1, r1), L'.CApp (d2, r2)) =>
|
adamc@10
|
590 (unifyCons' env d1 d2;
|
adamc@10
|
591 unifyCons' env r1 r2)
|
adamc@10
|
592 | (L'.CAbs (x1, k1, c1), L'.CAbs (_, k2, c2)) =>
|
adamc@10
|
593 (unifyKinds k1 k2;
|
adamc@10
|
594 unifyCons' (E.pushCRel env x1 k1) c1 c2)
|
adamc@10
|
595
|
adamc@10
|
596 | (L'.CName n1, L'.CName n2) =>
|
adamc@10
|
597 if n1 = n2 then
|
adamc@10
|
598 ()
|
adamc@10
|
599 else
|
adamc@10
|
600 err CIncompatible
|
adamc@10
|
601
|
adamc@10
|
602 | (L'.CError, _) => ()
|
adamc@10
|
603 | (_, L'.CError) => ()
|
adamc@10
|
604
|
adamc@10
|
605 | (L'.CUnif (_, _, ref (SOME c1All)), _) => unifyCons' env c1All c2All
|
adamc@10
|
606 | (_, L'.CUnif (_, _, ref (SOME c2All))) => unifyCons' env c1All c2All
|
adamc@10
|
607
|
adamc@10
|
608 | (L'.CUnif (k1, _, r1), L'.CUnif (k2, _, r2)) =>
|
adamc@10
|
609 if r1 = r2 then
|
adamc@10
|
610 ()
|
adamc@10
|
611 else
|
adamc@10
|
612 (unifyKinds k1 k2;
|
adamc@10
|
613 r1 := SOME c2All)
|
adamc@10
|
614
|
adamc@10
|
615 | (L'.CUnif (_, _, r), _) =>
|
adamc@10
|
616 if occursCon r c2All then
|
adamc@10
|
617 err COccursCheckFailed
|
adamc@10
|
618 else
|
adamc@10
|
619 r := SOME c2All
|
adamc@10
|
620 | (_, L'.CUnif (_, _, r)) =>
|
adamc@10
|
621 if occursCon r c1All then
|
adamc@10
|
622 err COccursCheckFailed
|
adamc@10
|
623 else
|
adamc@10
|
624 r := SOME c1All
|
adamc@10
|
625
|
adamc@12
|
626 | (L'.CRecord _, _) => isRecord ()
|
adamc@12
|
627 | (_, L'.CRecord _) => isRecord ()
|
adamc@12
|
628 | (L'.CConcat _, _) => isRecord ()
|
adamc@12
|
629 | (_, L'.CConcat _) => isRecord ()
|
adamc@12
|
630
|
adamc@10
|
631 | _ => err CIncompatible
|
adamc@10
|
632 end
|
adamc@10
|
633
|
adamc@12
|
634 and unifyCons env c1 c2 =
|
adamc@10
|
635 unifyCons' env c1 c2
|
adamc@10
|
636 handle CUnify' err => raise CUnify (c1, c2, err)
|
adamc@10
|
637 | KUnify args => raise CUnify (c1, c2, CKind args)
|
adamc@10
|
638
|
adamc@10
|
639 datatype exp_error =
|
adamc@10
|
640 UnboundExp of ErrorMsg.span * string
|
adamc@10
|
641 | Unify of L'.exp * L'.con * L'.con * cunify_error
|
adamc@11
|
642 | Unif of string * L'.con
|
adamc@11
|
643 | WrongForm of string * L'.exp * L'.con
|
adamc@10
|
644
|
adamc@10
|
645 fun expError env err =
|
adamc@10
|
646 case err of
|
adamc@10
|
647 UnboundExp (loc, s) =>
|
adamc@10
|
648 ErrorMsg.errorAt loc ("Unbound expression variable " ^ s)
|
adamc@10
|
649 | Unify (e, c1, c2, uerr) =>
|
adamc@10
|
650 (ErrorMsg.errorAt (#2 e) "Unification failure";
|
adamc@10
|
651 eprefaces' [("Expression", p_exp env e),
|
adamc@10
|
652 ("Have con", p_con env c1),
|
adamc@10
|
653 ("Need con", p_con env c2)];
|
adamc@10
|
654 cunifyError env uerr)
|
adamc@11
|
655 | Unif (action, c) =>
|
adamc@11
|
656 (ErrorMsg.errorAt (#2 c) ("Unification variable blocks " ^ action);
|
adamc@11
|
657 eprefaces' [("Con", p_con env c)])
|
adamc@11
|
658 | WrongForm (variety, e, t) =>
|
adamc@11
|
659 (ErrorMsg.errorAt (#2 e) ("Expression is not a " ^ variety);
|
adamc@11
|
660 eprefaces' [("Expression", p_exp env e),
|
adamc@11
|
661 ("Type", p_con env t)])
|
adamc@10
|
662
|
adamc@10
|
663 fun checkCon env e c1 c2 =
|
adamc@10
|
664 unifyCons env c1 c2
|
adamc@10
|
665 handle CUnify (c1, c2, err) =>
|
adamc@10
|
666 expError env (Unify (e, c1, c2, err))
|
adamc@10
|
667
|
adamc@10
|
668 fun elabExp env (e, loc) =
|
adamc@10
|
669 case e of
|
adamc@10
|
670 L.EAnnot (e, t) =>
|
adamc@10
|
671 let
|
adamc@10
|
672 val (e', et) = elabExp env e
|
adamc@10
|
673 val (t', _) = elabCon env t
|
adamc@10
|
674 in
|
adamc@10
|
675 checkCon env e' et t';
|
adamc@10
|
676 (e', t')
|
adamc@10
|
677 end
|
adamc@10
|
678
|
adamc@10
|
679 | L.EVar s =>
|
adamc@10
|
680 (case E.lookupE env s of
|
adamc@10
|
681 E.NotBound =>
|
adamc@10
|
682 (expError env (UnboundExp (loc, s));
|
adamc@10
|
683 (eerror, cerror))
|
adamc@10
|
684 | E.Rel (n, t) => ((L'.ERel n, loc), t)
|
adamc@10
|
685 | E.Named (n, t) => ((L'.ENamed n, loc), t))
|
adamc@10
|
686 | L.EApp (e1, e2) =>
|
adamc@10
|
687 let
|
adamc@10
|
688 val (e1', t1) = elabExp env e1
|
adamc@10
|
689 val (e2', t2) = elabExp env e2
|
adamc@10
|
690
|
adamc@10
|
691 val dom = cunif ktype
|
adamc@10
|
692 val ran = cunif ktype
|
adamc@10
|
693 val t = (L'.TFun (dom, ran), dummy)
|
adamc@10
|
694 in
|
adamc@10
|
695 checkCon env e1' t1 t;
|
adamc@10
|
696 checkCon env e2' t2 dom;
|
adamc@10
|
697 ((L'.EApp (e1', e2'), loc), ran)
|
adamc@10
|
698 end
|
adamc@10
|
699 | L.EAbs (x, to, e) =>
|
adamc@10
|
700 let
|
adamc@10
|
701 val t' = case to of
|
adamc@10
|
702 NONE => cunif ktype
|
adamc@10
|
703 | SOME t =>
|
adamc@10
|
704 let
|
adamc@10
|
705 val (t', tk) = elabCon env t
|
adamc@10
|
706 in
|
adamc@10
|
707 checkKind env t' tk ktype;
|
adamc@10
|
708 t'
|
adamc@10
|
709 end
|
adamc@10
|
710 val (e', et) = elabExp (E.pushERel env x t') e
|
adamc@10
|
711 in
|
adamc@10
|
712 ((L'.EAbs (x, t', e'), loc),
|
adamc@10
|
713 (L'.TFun (t', et), loc))
|
adamc@10
|
714 end
|
adamc@10
|
715 | L.ECApp (e, c) =>
|
adamc@10
|
716 let
|
adamc@10
|
717 val (e', et) = elabExp env e
|
adamc@10
|
718 val (c', ck) = elabCon env c
|
adamc@10
|
719 in
|
adamc@11
|
720 case #1 (hnormCon env et) of
|
adamc@11
|
721 L'.CError => (eerror, cerror)
|
adamc@11
|
722 | L'.TCFun (_, _, k, eb) =>
|
adamc@11
|
723 let
|
adamc@11
|
724 val () = checkKind env c' ck k
|
adamc@11
|
725 val eb' = subConInCon (0, c') eb
|
adamc@11
|
726 handle SynUnif => (expError env (Unif ("substitution", eb));
|
adamc@11
|
727 cerror)
|
adamc@11
|
728 in
|
adamc@11
|
729 ((L'.ECApp (e', c'), loc), eb')
|
adamc@11
|
730 end
|
adamc@11
|
731
|
adamc@11
|
732 | L'.CUnif _ =>
|
adamc@11
|
733 (expError env (Unif ("application", et));
|
adamc@11
|
734 (eerror, cerror))
|
adamc@11
|
735
|
adamc@11
|
736 | _ =>
|
adamc@11
|
737 (expError env (WrongForm ("constructor function", e', et));
|
adamc@11
|
738 (eerror, cerror))
|
adamc@10
|
739 end
|
adamc@11
|
740 | L.ECAbs (expl, x, k, e) =>
|
adamc@11
|
741 let
|
adamc@11
|
742 val expl' = elabExplicitness expl
|
adamc@11
|
743 val k' = elabKind k
|
adamc@11
|
744 val (e', et) = elabExp (E.pushCRel env x k') e
|
adamc@11
|
745 in
|
adamc@11
|
746 ((L'.ECAbs (expl', x, k', e'), loc),
|
adamc@11
|
747 (L'.TCFun (expl', x, k', et), loc))
|
adamc@11
|
748 end
|
adamc@6
|
749
|
adamc@12
|
750 | L.ERecord xes =>
|
adamc@12
|
751 let
|
adamc@12
|
752 val xes' = map (fn (x, e) =>
|
adamc@12
|
753 let
|
adamc@12
|
754 val (x', xk) = elabCon env x
|
adamc@12
|
755 val (e', et) = elabExp env e
|
adamc@12
|
756 in
|
adamc@12
|
757 checkKind env x' xk kname;
|
adamc@12
|
758 (x', e', et)
|
adamc@12
|
759 end) xes
|
adamc@12
|
760 in
|
adamc@12
|
761 ((L'.ERecord (map (fn (x', e', _) => (x', e')) xes'), loc),
|
adamc@12
|
762 (L'.TRecord (L'.CRecord (ktype, map (fn (x', _, et) => (x', et)) xes'), loc), loc))
|
adamc@12
|
763 end
|
adamc@12
|
764
|
adamc@12
|
765 | L.EField (e, c) =>
|
adamc@12
|
766 let
|
adamc@12
|
767 val (e', et) = elabExp env e
|
adamc@12
|
768 val (c', ck) = elabCon env c
|
adamc@12
|
769
|
adamc@12
|
770 val ft = cunif ktype
|
adamc@12
|
771 val rest = cunif ktype_record
|
adamc@12
|
772 in
|
adamc@12
|
773 checkKind env c' ck kname;
|
adamc@12
|
774 checkCon env e' et (L'.TRecord (L'.CConcat ((L'.CRecord (ktype, [(c', ft)]), loc), rest), loc), loc);
|
adamc@12
|
775 ((L'.EField (e', c', {field = ft, rest = rest}), loc), ft)
|
adamc@12
|
776 end
|
adamc@12
|
777
|
adamc@12
|
778
|
adamc@6
|
779 datatype decl_error =
|
adamc@6
|
780 KunifsRemainKind of ErrorMsg.span * L'.kind
|
adamc@6
|
781 | KunifsRemainCon of ErrorMsg.span * L'.con
|
adamc@10
|
782 | KunifsRemainExp of ErrorMsg.span * L'.exp
|
adamc@10
|
783 | CunifsRemainCon of ErrorMsg.span * L'.con
|
adamc@10
|
784 | CunifsRemainExp of ErrorMsg.span * L'.exp
|
adamc@6
|
785
|
adamc@6
|
786 fun declError env err =
|
adamc@6
|
787 case err of
|
adamc@6
|
788 KunifsRemainKind (loc, k) =>
|
adamc@6
|
789 (ErrorMsg.errorAt loc "Some kind unification variables are undetermined in kind";
|
adamc@6
|
790 eprefaces' [("Kind", p_kind k)])
|
adamc@6
|
791 | KunifsRemainCon (loc, c) =>
|
adamc@6
|
792 (ErrorMsg.errorAt loc "Some kind unification variables are undetermined in constructor";
|
adamc@6
|
793 eprefaces' [("Constructor", p_con env c)])
|
adamc@10
|
794 | KunifsRemainExp (loc, e) =>
|
adamc@10
|
795 (ErrorMsg.errorAt loc "Some kind unification variables are undetermined in expression";
|
adamc@10
|
796 eprefaces' [("Expression", p_exp env e)])
|
adamc@10
|
797 | CunifsRemainCon (loc, c) =>
|
adamc@10
|
798 (ErrorMsg.errorAt loc "Some constructor unification variables are undetermined in constructor";
|
adamc@10
|
799 eprefaces' [("Constructor", p_con env c)])
|
adamc@10
|
800 | CunifsRemainExp (loc, e) =>
|
adamc@10
|
801 (ErrorMsg.errorAt loc "Some constructor unification variables are undetermined in expression";
|
adamc@10
|
802 eprefaces' [("Expression", p_exp env e)])
|
adamc@6
|
803
|
adamc@3
|
804 fun elabDecl env (d, loc) =
|
adamc@5
|
805 (resetKunif ();
|
adamc@12
|
806 resetCunif ();
|
adamc@5
|
807 case d of
|
adamc@5
|
808 L.DCon (x, ko, c) =>
|
adamc@5
|
809 let
|
adamc@5
|
810 val k' = case ko of
|
adamc@5
|
811 NONE => kunif ()
|
adamc@5
|
812 | SOME k => elabKind k
|
adamc@3
|
813
|
adamc@5
|
814 val (c', ck) = elabCon env c
|
adamc@11
|
815 val (env', n) = E.pushCNamed env x k' (SOME c')
|
adamc@5
|
816 in
|
adamc@5
|
817 checkKind env c' ck k';
|
adamc@6
|
818
|
adamc@6
|
819 if kunifsInKind k' then
|
adamc@6
|
820 declError env (KunifsRemainKind (loc, k'))
|
adamc@6
|
821 else
|
adamc@6
|
822 ();
|
adamc@6
|
823
|
adamc@6
|
824 if kunifsInCon c' then
|
adamc@6
|
825 declError env (KunifsRemainCon (loc, c'))
|
adamc@6
|
826 else
|
adamc@6
|
827 ();
|
adamc@6
|
828
|
adamc@5
|
829 (env',
|
adamc@5
|
830 (L'.DCon (x, n, k', c'), loc))
|
adamc@10
|
831 end
|
adamc@10
|
832 | L.DVal (x, co, e) =>
|
adamc@10
|
833 let
|
adamc@10
|
834 val (c', ck) = case co of
|
adamc@10
|
835 NONE => (cunif ktype, ktype)
|
adamc@10
|
836 | SOME c => elabCon env c
|
adamc@10
|
837
|
adamc@10
|
838 val (e', et) = elabExp env e
|
adamc@10
|
839 val (env', n) = E.pushENamed env x c'
|
adamc@10
|
840 in
|
adamc@10
|
841 checkCon env e' et c';
|
adamc@10
|
842
|
adamc@10
|
843 if kunifsInCon c' then
|
adamc@10
|
844 declError env (KunifsRemainCon (loc, c'))
|
adamc@10
|
845 else
|
adamc@10
|
846 ();
|
adamc@10
|
847
|
adamc@10
|
848 if cunifsInCon c' then
|
adamc@10
|
849 declError env (CunifsRemainCon (loc, c'))
|
adamc@10
|
850 else
|
adamc@10
|
851 ();
|
adamc@10
|
852
|
adamc@10
|
853 if kunifsInExp e' then
|
adamc@10
|
854 declError env (KunifsRemainExp (loc, e'))
|
adamc@10
|
855 else
|
adamc@10
|
856 ();
|
adamc@10
|
857
|
adamc@10
|
858 if cunifsInExp e' then
|
adamc@10
|
859 declError env (CunifsRemainExp (loc, e'))
|
adamc@10
|
860 else
|
adamc@10
|
861 ();
|
adamc@10
|
862
|
adamc@10
|
863 (env',
|
adamc@10
|
864 (L'.DVal (x, n, c', e'), loc))
|
adamc@5
|
865 end)
|
adamc@3
|
866
|
adamc@5
|
867 fun elabFile env ds =
|
adamc@5
|
868 ListUtil.mapfoldl (fn (d, env) => elabDecl env d) env ds
|
adamc@2
|
869
|
adamc@2
|
870 end
|