adamc@96
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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 MonoOpt :> MONO_OPT = struct
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29
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30 open Mono
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31 structure U = MonoUtil
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32
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33 fun typ t = t
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34 fun decl d = d
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35
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36 fun attrifyInt n =
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37 if n < 0 then
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38 "-" ^ Int64.toString (Int64.~ n)
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39 else
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40 Int64.toString n
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41
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42 fun attrifyFloat n =
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43 if n < 0.0 then
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44 "-" ^ Real.toString (Real.~ n)
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45 else
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46 Real.toString n
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47
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48 val attrifyString = String.translate (fn #"\"" => """
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49 | #"&" => "&"
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50 | ch => if Char.isPrint ch then
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51 str ch
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52 else
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53 "&#" ^ Int.toString (ord ch) ^ ";")
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54
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55 val urlifyInt = attrifyInt
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56 val urlifyFloat = attrifyFloat
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57
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58 val htmlifyInt = attrifyInt
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59 val htmlifyFloat = attrifyFloat
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60 val htmlifyString = String.translate (fn ch => case ch of
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61 #"<" => "<"
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62 | #"&" => "&"
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63 | _ =>
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64 if Char.isPrint ch orelse Char.isSpace ch then
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65 str ch
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66 else
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67 "&#" ^ Int.toString (ord ch) ^ ";")
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68
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69 fun hexIt ch =
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70 let
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71 val s = Int.fmt StringCvt.HEX (ord ch)
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72 in
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73 case size s of
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74 0 => "00"
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75 | 1 => "0" ^ s
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76 | _ => s
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77 end
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78
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79 val urlifyString = String.translate (fn #" " => "+"
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80 | ch => if Char.isAlphaNum ch then
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81 str ch
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82 else
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83 "%" ^ hexIt ch)
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84
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85
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86 fun sqlifyInt n = #p_cast (Settings.currentDbms ()) (attrifyInt n, Settings.Int)
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87 fun sqlifyFloat n = #p_cast (Settings.currentDbms ()) (attrifyFloat n, Settings.Float)
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88
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89 fun sqlifyString s = #sqlifyString (Settings.currentDbms ()) s
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90
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91 fun unAs s =
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92 let
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93 fun doChars (cs, acc) =
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94 case cs of
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95 #"T" :: #"." :: cs => doChars (cs, acc)
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96 | #"'" :: cs => doString (cs, acc)
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97 | ch :: cs => doChars (cs, ch :: acc)
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98 | [] => String.implode (rev acc)
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99
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100 and doString (cs, acc) =
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101 case cs of
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102 #"\\" :: #"\\" :: cs => doString (cs, #"\\" :: #"\\" :: acc)
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103 | #"\\" :: #"'" :: cs => doString (cs, #"'" :: #"\\" :: acc)
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104 | #"'" :: cs => doChars (cs, #"'" :: acc)
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105 | ch :: cs => doString (cs, ch :: acc)
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106 | [] => String.implode (rev acc)
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107 in
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108 doChars (String.explode s, [])
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109 end
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110
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111 fun exp e =
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112 case e of
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113 EPrim (Prim.String s) =>
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114 let
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115 val (_, chs) =
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116 CharVector.foldl (fn (ch, (lastSpace, chs)) =>
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117 let
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118 val isSpace = Char.isSpace ch
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119 in
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120 if isSpace andalso lastSpace then
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121 (true, chs)
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122 else
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123 (isSpace, ch :: chs)
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124 end)
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125 (false, []) s
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126 in
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127 EPrim (Prim.String (String.implode (rev chs)))
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128 end
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129
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130 | EStrcat ((EPrim (Prim.String s1), loc), (EPrim (Prim.String s2), _)) =>
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131 let
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132 val s =
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133 if size s1 > 0 andalso size s2 > 0
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134 andalso Char.isSpace (String.sub (s1, size s1 - 1))
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135 andalso Char.isSpace (String.sub (s2, 0)) then
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136 s1 ^ String.extract (s2, 1, NONE)
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137 else
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138 s1 ^ s2
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139 in
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140 EPrim (Prim.String s)
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141 end
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142
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143 | EStrcat ((EPrim (Prim.String s1), loc), (EStrcat ((EPrim (Prim.String s2), _), rest), _)) =>
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144 let
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145 val s =
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146 if size s1 > 0 andalso size s2 > 0
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147 andalso Char.isSpace (String.sub (s1, size s1 - 1))
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148 andalso Char.isSpace (String.sub (s2, 0)) then
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149 s1 ^ String.extract (s2, 1, NONE)
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150 else
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151 s1 ^ s2
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152 in
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153 EStrcat ((EPrim (Prim.String s), loc), rest)
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154 end
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155
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156 | EStrcat ((EStrcat (e1, e2), loc), e3) =>
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157 optExp (EStrcat (e1, (EStrcat (e2, e3), loc)), loc)
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158
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159 | EWrite (EStrcat (e1, e2), loc) =>
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160 ESeq ((optExp (EWrite e1, loc), loc),
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161 (optExp (EWrite e2, loc), loc))
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162
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163 | ESeq ((EWrite (EPrim (Prim.String s1), _), loc),
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164 (EWrite (EPrim (Prim.String s2), _), _)) =>
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165 EWrite (EPrim (Prim.String (s1 ^ s2)), loc)
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166 | ESeq ((EWrite (EPrim (Prim.String s1), _), loc),
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167 (ESeq ((EWrite (EPrim (Prim.String s2), _), _),
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168 e), _)) =>
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169 ESeq ((EWrite (EPrim (Prim.String (s1 ^ s2)), loc), loc),
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170 e)
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171
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172 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "intToString", [(EPrim (Prim.Int n), _)]), _)]) =>
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173 EPrim (Prim.String (htmlifyInt n))
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174 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "intToString", es), _)]) =>
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175 EFfiApp ("Basis", "htmlifyInt", es)
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176 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "intToString"), _),
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177 (EPrim (Prim.Int n), _)), _)]) =>
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178 EPrim (Prim.String (htmlifyInt n))
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179 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "intToString"), _),
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180 e), _)]) =>
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181 EFfiApp ("Basis", "htmlifyInt", [e])
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182 | EWrite (EFfiApp ("Basis", "htmlifyInt", [e]), _) =>
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183 EFfiApp ("Basis", "htmlifyInt_w", [e])
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184
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185 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "floatToString", [(EPrim (Prim.Float n), _)]), _)]) =>
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186 EPrim (Prim.String (htmlifyFloat n))
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187 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "floatToString", es), _)]) =>
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188 EFfiApp ("Basis", "htmlifyFloat", es)
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189 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "floatToString"), _),
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190 (EPrim (Prim.Float n), _)), _)]) =>
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191 EPrim (Prim.String (htmlifyFloat n))
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192 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "floatToString"), _),
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193 e), _)]) =>
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194 EFfiApp ("Basis", "htmlifyFloat", [e])
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195 | EWrite (EFfiApp ("Basis", "htmlifyFloat", [e]), _) =>
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196 EFfiApp ("Basis", "htmlifyFloat_w", [e])
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197
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198 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "boolToString",
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199 [(ECon (Enum, PConFfi {con = "True", ...}, NONE), _)]), _)]) =>
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200 EPrim (Prim.String "True")
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201 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "boolToString",
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202 [(ECon (Enum, PConFfi {con = "False", ...}, NONE), _)]), _)]) =>
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203 EPrim (Prim.String "False")
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204 | EFfiApp ("Basis", "htmlifyString", [(EFfiApp ("Basis", "boolToString", es), _)]) =>
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205 EFfiApp ("Basis", "htmlifyBool", es)
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206 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "boolToString"), _),
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207 (ECon (Enum, PConFfi {con = "True", ...}, NONE), _)), _)]) =>
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208 EPrim (Prim.String "True")
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209 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "boolToString"), _),
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210 (ECon (Enum, PConFfi {con = "False", ...}, NONE), _)), _)]) =>
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211 EPrim (Prim.String "False")
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212 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "boolToString"), _),
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213 e), _)]) =>
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214 EFfiApp ("Basis", "htmlifyBool", [e])
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215 | EWrite (EFfiApp ("Basis", "htmlifyBool", [e]), _) =>
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216 EFfiApp ("Basis", "htmlifyBool_w", [e])
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217
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218 | EFfiApp ("Basis", "htmlifyString", [(EApp ((EFfi ("Basis", "timeToString"), _), e), _)]) =>
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219 EFfiApp ("Basis", "htmlifyTime", [e])
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220 | EFfiApp ("Basis", "htmlifyString_w", [(EApp ((EFfi ("Basis", "timeToString"), _), e), _)]) =>
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221 EFfiApp ("Basis", "htmlifyTime_w", [e])
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222 | EWrite (EFfiApp ("Basis", "htmlifyTime", [e]), _) =>
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223 EFfiApp ("Basis", "htmlifyTime_w", [e])
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224
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225 | EFfiApp ("Basis", "htmlifyString", [(EPrim (Prim.String s), _)]) =>
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226 EPrim (Prim.String (htmlifyString s))
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227 | EWrite (EFfiApp ("Basis", "htmlifyString", [(EPrim (Prim.String s), _)]), loc) =>
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228 EWrite (EPrim (Prim.String (htmlifyString s)), loc)
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229 | EWrite (EFfiApp ("Basis", "htmlifyString", [e]), _) =>
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230 EFfiApp ("Basis", "htmlifyString_w", [e])
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231 | EFfiApp ("Basis", "htmlifyString_w", [(EPrim (Prim.String s), loc)]) =>
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232 EWrite (EPrim (Prim.String (htmlifyString s)), loc)
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233
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234 | EFfiApp ("Basis", "attrifyInt", [(EPrim (Prim.Int n), _)]) =>
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235 EPrim (Prim.String (attrifyInt n))
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236 | EWrite (EFfiApp ("Basis", "attrifyInt", [(EPrim (Prim.Int n), _)]), loc) =>
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237 EWrite (EPrim (Prim.String (attrifyInt n)), loc)
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238 | EWrite (EFfiApp ("Basis", "attrifyInt", [e]), _) =>
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239 EFfiApp ("Basis", "attrifyInt_w", [e])
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240
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241 | EFfiApp ("Basis", "attrifyFloat", [(EPrim (Prim.Float n), _)]) =>
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242 EPrim (Prim.String (attrifyFloat n))
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243 | EWrite (EFfiApp ("Basis", "attrifyFloat", [(EPrim (Prim.Float n), _)]), loc) =>
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244 EWrite (EPrim (Prim.String (attrifyFloat n)), loc)
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245 | EWrite (EFfiApp ("Basis", "attrifyFloat", [e]), _) =>
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246 EFfiApp ("Basis", "attrifyFloat_w", [e])
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247
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248 | EFfiApp ("Basis", "attrifyString", [(EPrim (Prim.String s), _)]) =>
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249 EPrim (Prim.String (attrifyString s))
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250 | EWrite (EFfiApp ("Basis", "attrifyString", [(EPrim (Prim.String s), _)]), loc) =>
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251 EWrite (EPrim (Prim.String (attrifyString s)), loc)
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252 | EWrite (EFfiApp ("Basis", "attrifyString", [e]), _) =>
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253 EFfiApp ("Basis", "attrifyString_w", [e])
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254
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255 | EFfiApp ("Basis", "attrifyCss_class", [(EPrim (Prim.String s), _)]) =>
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256 EPrim (Prim.String s)
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257 | EWrite (EFfiApp ("Basis", "attrifyCss_class", [(EPrim (Prim.String s), _)]), loc) =>
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258 EWrite (EPrim (Prim.String s), loc)
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259 | EWrite (EFfiApp ("Basis", "attrifyCss_class", [e]), _) =>
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260 EFfiApp ("Basis", "attrifyString_w", [e])
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261
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262 | EFfiApp ("Basis", "urlifyInt", [(EPrim (Prim.Int n), _)]) =>
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263 EPrim (Prim.String (urlifyInt n))
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264 | EWrite (EFfiApp ("Basis", "urlifyInt", [(EPrim (Prim.Int n), _)]), loc) =>
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265 EWrite (EPrim (Prim.String (urlifyInt n)), loc)
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266 | EWrite (EFfiApp ("Basis", "urlifyInt", [e]), _) =>
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267 EFfiApp ("Basis", "urlifyInt_w", [e])
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268
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269 | EFfiApp ("Basis", "urlifyFloat", [(EPrim (Prim.Float n), _)]) =>
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270 EPrim (Prim.String (urlifyFloat n))
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271 | EWrite (EFfiApp ("Basis", "urlifyFloat", [(EPrim (Prim.Float n), _)]), loc) =>
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272 EWrite (EPrim (Prim.String (urlifyFloat n)), loc)
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273 | EWrite (EFfiApp ("Basis", "urlifyFloat", [e]), _) =>
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274 EFfiApp ("Basis", "urlifyFloat_w", [e])
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275
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276 | EFfiApp ("Basis", "urlifyString", [(EPrim (Prim.String s), _)]) =>
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277 EPrim (Prim.String (urlifyString s))
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278 | EWrite (EFfiApp ("Basis", "urlifyString", [(EPrim (Prim.String s), _)]), loc) =>
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279 EWrite (EPrim (Prim.String (urlifyString s)), loc)
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280 | EWrite (EFfiApp ("Basis", "urlifyString", [e]), _) =>
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281 EFfiApp ("Basis", "urlifyString_w", [e])
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282
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283 | EFfiApp ("Basis", "urlifyBool", [(ECon (Enum, PConFfi {con = "True", ...}, NONE), _)]) =>
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284 EPrim (Prim.String "1")
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285 | EFfiApp ("Basis", "urlifyBool", [(ECon (Enum, PConFfi {con = "False", ...}, NONE), _)]) =>
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286 EPrim (Prim.String "0")
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287 | EWrite (EFfiApp ("Basis", "urlifyBool", [(ECon (Enum, PConFfi {con = "True", ...}, NONE), _)]), loc) =>
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288 EWrite (EPrim (Prim.String "1"), loc)
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289 | EWrite (EFfiApp ("Basis", "urlifyBool", [(ECon (Enum, PConFfi {con = "False", ...}, NONE), _)]), loc) =>
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290 EWrite (EPrim (Prim.String "0"), loc)
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291 | EWrite (EFfiApp ("Basis", "urlifyBool", [e]), _) =>
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292 EFfiApp ("Basis", "urlifyBool_w", [e])
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293
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adamc@253
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294 | EFfiApp ("Basis", "sqlifyInt", [(EPrim (Prim.Int n), _)]) =>
|
adamc@253
|
295 EPrim (Prim.String (sqlifyInt n))
|
adamc@467
|
296 | EFfiApp ("Basis", "sqlifyIntN", [(ENone _, _)]) =>
|
adamc@467
|
297 EPrim (Prim.String "NULL")
|
adamc@467
|
298 | EFfiApp ("Basis", "sqlifyIntN", [(ESome (_, (EPrim (Prim.Int n), _)), _)]) =>
|
adamc@467
|
299 EPrim (Prim.String (sqlifyInt n))
|
adamc@467
|
300
|
adamc@253
|
301 | EFfiApp ("Basis", "sqlifyFloat", [(EPrim (Prim.Float n), _)]) =>
|
adamc@253
|
302 EPrim (Prim.String (sqlifyFloat n))
|
adamc@253
|
303 | EFfiApp ("Basis", "sqlifyBool", [b as (_, loc)]) =>
|
adamc@253
|
304 optExp (ECase (b,
|
adamc@253
|
305 [((PCon (Enum, PConFfi {mod = "Basis", datatyp = "bool", con = "True", arg = NONE}, NONE), loc),
|
adamc@253
|
306 (EPrim (Prim.String "TRUE"), loc)),
|
adamc@253
|
307 ((PCon (Enum, PConFfi {mod = "Basis", datatyp = "bool", con = "False", arg = NONE}, NONE), loc),
|
adamc@253
|
308 (EPrim (Prim.String "FALSE"), loc))],
|
adamc@253
|
309 {disc = (TFfi ("Basis", "bool"), loc),
|
adamc@253
|
310 result = (TFfi ("Basis", "string"), loc)}), loc)
|
adamc@253
|
311 | EFfiApp ("Basis", "sqlifyString", [(EPrim (Prim.String n), _)]) =>
|
adamc@253
|
312 EPrim (Prim.String (sqlifyString n))
|
adamc@253
|
313
|
adamc@184
|
314 | EWrite (ECase (discE, pes, {disc, ...}), loc) =>
|
adamc@184
|
315 optExp (ECase (discE,
|
adamc@184
|
316 map (fn (p, e) => (p, (EWrite e, loc))) pes,
|
adamc@184
|
317 {disc = disc,
|
adamc@184
|
318 result = (TRecord [], loc)}), loc)
|
adamc@184
|
319
|
adamc@495
|
320 | EApp ((ECase (discE, pes, {disc, result = (TFun (_, ran), _)}), loc), arg as (ERecord [], _)) =>
|
adamc@453
|
321 let
|
adamc@453
|
322 fun doBody e =
|
adamc@453
|
323 case #1 e of
|
adamc@453
|
324 EAbs (_, _, _, body) => MonoReduce.subExpInExp (0, arg) body
|
adamc@453
|
325 | _ => (EApp (e, arg), loc)
|
adamc@453
|
326 in
|
adamc@453
|
327 optExp (ECase (discE,
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adamc@453
|
328 map (fn (p, e) => (p, doBody e)) pes,
|
adamc@453
|
329 {disc = disc,
|
adamc@495
|
330 result = ran}), loc)
|
adamc@453
|
331 end
|
adamc@453
|
332
|
adamc@331
|
333 | EWrite (EQuery {exps, tables, state, query,
|
adamc@331
|
334 initial = (EPrim (Prim.String ""), _),
|
adamc@331
|
335 body = (EStrcat ((EPrim (Prim.String s), _),
|
adamc@331
|
336 (EStrcat ((ERel 0, _),
|
adamc@331
|
337 e'), _)), _)}, loc) =>
|
adamc@331
|
338 if CharVector.all Char.isSpace s then
|
adamc@331
|
339 EQuery {exps = exps, tables = tables, query = query,
|
adamc@331
|
340 state = (TRecord [], loc),
|
adamc@331
|
341 initial = (ERecord [], loc),
|
adamc@331
|
342 body = (optExp (EWrite e', loc), loc)}
|
adamc@331
|
343 else
|
adamc@331
|
344 e
|
adamc@331
|
345
|
adamc@334
|
346 | EWrite (EQuery {exps, tables, state, query,
|
adamc@334
|
347 initial = (EPrim (Prim.String ""), _),
|
adamc@486
|
348 body}, loc) =>
|
adamc@486
|
349 let
|
adamc@486
|
350 fun passLets (depth, (e', _), lets) =
|
adamc@486
|
351 case e' of
|
adamc@486
|
352 EStrcat ((ERel x, _), e'') =>
|
adamc@486
|
353 if x = depth then
|
adamc@486
|
354 let
|
adamc@486
|
355 val body = (optExp (EWrite e'', loc), loc)
|
adamc@486
|
356 val body = foldl (fn ((x, t, e'), e) =>
|
adamc@486
|
357 (ELet (x, t, e', e), loc))
|
adamc@486
|
358 body lets
|
adamc@486
|
359 in
|
adamc@486
|
360 EQuery {exps = exps, tables = tables, query = query,
|
adamc@486
|
361 state = (TRecord [], loc),
|
adamc@486
|
362 initial = (ERecord [], loc),
|
adamc@486
|
363 body = body}
|
adamc@486
|
364 end
|
adamc@486
|
365 else
|
adamc@486
|
366 e
|
adamc@486
|
367 | ELet (x, t, e', e'') =>
|
adamc@486
|
368 passLets (depth + 1, e'', (x, t, e') :: lets)
|
adamc@486
|
369 | _ => e
|
adamc@486
|
370 in
|
adamc@486
|
371 passLets (0, body, [])
|
adamc@486
|
372 end
|
adamc@486
|
373
|
adamc@486
|
374 (*| EWrite (EQuery {exps, tables, state, query,
|
adamc@486
|
375 initial = (EPrim (Prim.String ""), _),
|
adamc@334
|
376 body = (EStrcat ((ERel 0, _), e'), _)}, loc) =>
|
adamc@334
|
377 EQuery {exps = exps, tables = tables, query = query,
|
adamc@334
|
378 state = (TRecord [], loc),
|
adamc@334
|
379 initial = (ERecord [], loc),
|
adamc@486
|
380 body = (optExp (EWrite e', loc), loc)}*)
|
adamc@334
|
381
|
adamc@340
|
382 | EWrite (ELet (x, t, e1, e2), loc) =>
|
adamc@340
|
383 optExp (ELet (x, t, e1, (EWrite e2, loc)), loc)
|
adamc@340
|
384
|
adamc@451
|
385 | EWrite (EPrim (Prim.String ""), loc) =>
|
adamc@451
|
386 ERecord []
|
adamc@451
|
387
|
adamc@572
|
388 | ESignalBind ((ESignalReturn e1, loc), e2) =>
|
adamc@572
|
389 optExp (EApp (e2, e1), loc)
|
adamc@572
|
390
|
adamc@717
|
391 | EFfiApp ("Basis", "bless", [(se as EPrim (Prim.String s), loc)]) =>
|
adamc@769
|
392 (if Settings.checkUrl s then
|
adamc@717
|
393 ()
|
adamc@717
|
394 else
|
adamc@769
|
395 ErrorMsg.errorAt loc ("Invalid URL " ^ s ^ " passed to 'bless'");
|
adamc@717
|
396 se)
|
adamc@741
|
397 | EFfiApp ("Basis", "blessMime", [(se as EPrim (Prim.String s), loc)]) =>
|
adamc@769
|
398 (if Settings.checkMime s then
|
adamc@741
|
399 ()
|
adamc@741
|
400 else
|
adamc@769
|
401 ErrorMsg.errorAt loc ("Invalid string " ^ s ^ " passed to 'blessMime'");
|
adamc@741
|
402 se)
|
adamc@717
|
403
|
adamc@714
|
404 | EFfiApp ("Basis", "checkString", [(EPrim (Prim.String s), loc)]) =>
|
adamc@714
|
405 let
|
adamc@714
|
406 fun uwify (cs, acc) =
|
adamc@714
|
407 case cs of
|
adamc@714
|
408 [] => String.concat (rev acc)
|
adamc@714
|
409 | #"(" :: #"_" :: cs => uwify (cs, "(uw_" :: acc)
|
adamc@714
|
410 | #" " :: #"_" :: cs => uwify (cs, " uw_" :: acc)
|
adamc@714
|
411 | #"'" :: cs =>
|
adamc@714
|
412 let
|
adamc@714
|
413 fun waitItOut (cs, acc) =
|
adamc@714
|
414 case cs of
|
adamc@714
|
415 [] => raise Fail "MonoOpt: Unterminated SQL string literal"
|
adamc@714
|
416 | #"'" :: cs => uwify (cs, "'" :: acc)
|
adamc@714
|
417 | #"\\" :: #"'" :: cs => waitItOut (cs, "\\'" :: acc)
|
adamc@714
|
418 | #"\\" :: #"\\" :: cs => waitItOut (cs, "\\\\" :: acc)
|
adamc@714
|
419 | c :: cs => waitItOut (cs, str c :: acc)
|
adamc@714
|
420 in
|
adamc@714
|
421 waitItOut (cs, "'" :: acc)
|
adamc@714
|
422 end
|
adamc@714
|
423 | c :: cs => uwify (cs, str c :: acc)
|
adamc@714
|
424
|
adamc@714
|
425 val s = case String.explode s of
|
adamc@714
|
426 #"_" :: cs => uwify (cs, ["uw_"])
|
adamc@714
|
427 | cs => uwify (cs, [])
|
adamc@714
|
428 in
|
adamc@714
|
429 EPrim (Prim.String s)
|
adamc@714
|
430 end
|
adamc@714
|
431
|
adamc@754
|
432 | EFfiApp ("Basis", "viewify", [(EPrim (Prim.String s), loc)]) =>
|
adamc@754
|
433 let
|
adamc@754
|
434 fun uwify (cs, acc) =
|
adamc@754
|
435 case cs of
|
adamc@754
|
436 [] => String.concat (rev acc)
|
adamc@754
|
437 | #"A" :: #"S" :: #" " :: #"_" :: cs => uwify (cs, "AS uw_" :: acc)
|
adamc@754
|
438 | #"'" :: cs =>
|
adamc@754
|
439 let
|
adamc@754
|
440 fun waitItOut (cs, acc) =
|
adamc@754
|
441 case cs of
|
adamc@754
|
442 [] => raise Fail "MonoOpt: Unterminated SQL string literal"
|
adamc@754
|
443 | #"'" :: cs => uwify (cs, "'" :: acc)
|
adamc@754
|
444 | #"\\" :: #"'" :: cs => waitItOut (cs, "\\'" :: acc)
|
adamc@754
|
445 | #"\\" :: #"\\" :: cs => waitItOut (cs, "\\\\" :: acc)
|
adamc@754
|
446 | c :: cs => waitItOut (cs, str c :: acc)
|
adamc@754
|
447 in
|
adamc@754
|
448 waitItOut (cs, "'" :: acc)
|
adamc@754
|
449 end
|
adamc@754
|
450 | c :: cs => uwify (cs, str c :: acc)
|
adamc@754
|
451
|
adamc@754
|
452 val s = uwify (String.explode s, [])
|
adamc@754
|
453 in
|
adamc@754
|
454 EPrim (Prim.String s)
|
adamc@754
|
455 end
|
adamc@754
|
456
|
adamc@874
|
457 | EFfiApp ("Basis", "unAs", [(EPrim (Prim.String s), _)]) =>
|
adamc@874
|
458 EPrim (Prim.String (unAs s))
|
adamc@874
|
459 | EFfiApp ("Basis", "unAs", [e']) =>
|
adamc@874
|
460 let
|
adamc@874
|
461 fun parts (e as (_, loc)) =
|
adamc@874
|
462 case #1 e of
|
adamc@874
|
463 EStrcat (s1, s2) =>
|
adamc@874
|
464 (case (parts s1, parts s2) of
|
adamc@874
|
465 (SOME p1, SOME p2) => SOME (p1 @ p2)
|
adamc@874
|
466 | _ => NONE)
|
adamc@874
|
467 | EPrim (Prim.String s) => SOME [(EPrim (Prim.String (unAs s)), loc)]
|
adamc@874
|
468 | EFfiApp ("Basis", f, [_]) =>
|
adamc@874
|
469 if String.isPrefix "sqlify" f then
|
adamc@874
|
470 SOME [e]
|
adamc@874
|
471 else
|
adamc@874
|
472 NONE
|
adamc@874
|
473 | _ => NONE
|
adamc@874
|
474 in
|
adamc@874
|
475 case parts e' of
|
adamc@874
|
476 SOME [e] => #1 e
|
adamc@874
|
477 | SOME es =>
|
adamc@874
|
478 (case rev es of
|
adamc@874
|
479 (e as (_, loc)) :: es => #1 (foldl (fn (e, es) => (EStrcat (e, es), loc)) e es)
|
adamc@874
|
480 | [] => raise Fail "MonoOpt impossible nil")
|
adamc@874
|
481 | NONE => e
|
adamc@874
|
482 end
|
adamc@874
|
483
|
adamc@96
|
484 | _ => e
|
adamc@96
|
485
|
adamc@105
|
486 and optExp e = #1 (U.Exp.map {typ = typ, exp = exp} e)
|
adamc@105
|
487
|
adamc@96
|
488 val optimize = U.File.map {typ = typ, exp = exp, decl = decl}
|
adamc@96
|
489
|
adamc@506
|
490 val optExp = U.Exp.map {typ = typ, exp = exp}
|
adamc@506
|
491
|
adamc@96
|
492 end
|