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1 datatype dlist'' t =
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2 Nil
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3 | Cons of t * source (dlist'' t)
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4
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5 datatype dlist' t =
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6 Empty
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7 | Nonempty of { Head : dlist'' t, Tail : source (source (dlist'' t)) }
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8
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9 con dlist t = source (dlist' t)
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10
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11 type position = transaction unit
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12
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13 fun headPos [t] (dl : dlist t) =
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14 dl' <- get dl;
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15 case dl' of
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16 Nonempty { Head = Cons (_, tl), Tail = tl' } =>
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17 cur <- get tl;
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18 set dl (case cur of
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19 Nil => Empty
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20 | _ => Nonempty {Head = cur, Tail = tl'})
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21 | _ => return ()
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22
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23 fun tailPos [t] (cur : source (dlist'' t)) new tail =
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24 new' <- get new;
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25 set cur new';
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26
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27 case new' of
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28 Nil => set tail cur
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29 | _ => return ()
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30
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31 val create [t] = source Empty
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32
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33 fun clear [t] (s : dlist t) = set s Empty
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34
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35 fun append [t] dl v =
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36 dl' <- get dl;
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37 case dl' of
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38 Empty =>
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39 tl <- source Nil;
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40 tl' <- source tl;
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41 set dl (Nonempty {Head = Cons (v, tl), Tail = tl'});
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42 return (headPos dl)
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43
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44 | Nonempty {Tail = tl, ...} =>
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45 cur <- get tl;
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46 new <- source Nil;
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47 set cur (Cons (v, new));
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48 set tl new;
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49 return (tailPos cur new tl)
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50
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51 fun replace [t] dl ls =
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52 case ls of
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53 [] => set dl Empty
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54 | x :: ls =>
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55 tl <- source Nil;
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56 let
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57 fun build ls acc =
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58 case ls of
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59 [] => return acc
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60 | x :: ls =>
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61 this <- source (Cons (x, acc));
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62 build ls this
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63 in
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64 hd <- build (List.rev ls) tl;
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65 tlS <- source tl;
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66 set dl (Nonempty {Head = Cons (x, hd), Tail = tlS})
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67 end
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68
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69 fun renderDyn [ctx] [ctx ~ body] [t] (f : t -> position -> xml (ctx ++ body) [] []) filter dl = <xml>
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70 <dyn signal={dl' <- signal dl;
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71 return (case dl' of
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72 Empty => <xml/>
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73 | Nonempty {Head = hd, Tail = tlTop} =>
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74 let
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75 fun render' prev dl'' =
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76 case dl'' of
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77 Nil => <xml/>
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78 | Cons (v, tl) =>
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79 let
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80 val pos = case prev of
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81 None => headPos dl
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82 | Some prev => tailPos prev tl tlTop
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83 in
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84 <xml><dyn signal={b <- filter v;
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85 return (if b then
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86 f v pos
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87 else
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88 <xml/>)}/>
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89 <dyn signal={tl' <- signal tl;
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90 return (render' (Some tl) tl')}/></xml>
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91 end
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92 in
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93 render' None hd
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94 end)}/>
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95 </xml>
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96
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97 fun renderFlat [ctx] [ctx ~ body] [t] (f : t -> position -> xml (ctx ++ body) [] []) filter ls =
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98 List.mapX (fn p => f p.1 p.2) ls
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99
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100 val split [t] =
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101 let
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102 fun split' acc (ls : list t) =
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103 case ls of
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104 [] => acc
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105 | x1 :: [] => (x1 :: acc.1, acc.2)
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106 | x1 :: x2 :: ls => split' (x1 :: acc.1, x2 :: acc.2) ls
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107 in
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108 split' ([], [])
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109 end
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110
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111 fun merge [t] (cmp : t -> t -> signal bool) =
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112 let
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113 fun merge' acc (ls1 : list t) (ls2 : list t) =
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114 case (ls1, ls2) of
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115 ([], _) => return (List.revAppend acc ls2)
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116 | (_, []) => return (List.revAppend acc ls1)
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117 | (x1 :: ls1', x2 :: ls2') =>
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118 b <- cmp x1 x2;
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119 if b then
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120 merge' (x1 :: acc) ls1' ls2
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121 else
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122 merge' (x2 :: acc) ls1 ls2'
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123 in
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124 merge' []
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125 end
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126
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127 fun sort [t] (cmp : t -> t -> signal bool) =
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128 let
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129 fun sort' (ls : list t) =
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130 case ls of
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131 [] => return ls
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132 | _ :: [] => return ls
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133 | _ =>
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134 let
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135 val (ls1, ls2) = split ls
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136 in
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137 ls1' <- sort' ls1;
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138 ls2' <- sort' ls2;
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139 merge cmp ls1' ls2'
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140 end
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141 in
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142 sort'
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143 end
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144
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145 fun render [ctx] [ctx ~ body] [t] f (r : {Filter : t -> signal bool,
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146 Sort : signal (option (t -> t -> signal bool))}) dl = <xml>
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147 <dyn signal={cmp <- r.Sort;
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148 case cmp of
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149 None => return (renderDyn f r.Filter dl)
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150 | Some cmp =>
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151 dl' <- signal dl;
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152 elems <- (case dl' of
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153 Empty => return []
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154 | Nonempty {Head = hd, Tail = tlTop} =>
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155 let
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156 fun listOut prev dl'' acc =
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157 case dl'' of
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158 Nil => return acc
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159 | Cons (v, tl) =>
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160 let
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161 val pos = case prev of
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162 None => headPos dl
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163 | Some prev => tailPos prev tl tlTop
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164 in
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165 tl' <- signal tl;
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166 listOut (Some tl) tl' ((v, pos) :: acc)
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167 end
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168 in
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169 listOut None hd []
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170 end);
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171 elems <- sort (fn v1 v2 => cmp v1.1 v2.1) elems;
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172 return (renderFlat f r.Filter elems)}/>
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173 </xml>
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174
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175
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176
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177 fun delete pos = pos
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178
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179 fun elements' [t] (dl'' : dlist'' t) =
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180 case dl'' of
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181 Nil => return []
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182 | Cons (x, dl'') =>
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183 dl'' <- signal dl'';
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184 tl <- elements' dl'';
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185 return (x :: tl)
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186
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187 fun elements [t] (dl : dlist t) =
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188 dl' <- signal dl;
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189 case dl' of
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190 Empty => return []
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191 | Nonempty {Head = hd, ...} => elements' hd
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192
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193 fun foldl [t] [acc] (f : t -> acc -> signal acc) =
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194 let
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195 fun foldl'' (i : acc) (dl : dlist'' t) : signal acc =
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196 case dl of
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197 Nil => return i
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198 | Cons (v, dl') =>
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199 dl' <- signal dl';
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200 i' <- f v i;
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201 foldl'' i' dl'
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202
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203 fun foldl' (i : acc) (dl : dlist t) : signal acc =
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204 dl <- signal dl;
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205 case dl of
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206 Empty => return i
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207 | Nonempty {Head = dl, ...} => foldl'' i dl
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208 in
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209 foldl'
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210 end
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