1 | //
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2 | // Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
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3 | //
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4 | // The contents of this file are covered under the licence agreement in the
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5 | // file "LICENCE" distributed with Cforall.
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6 | //
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7 | // SpecCost.cc --
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8 | //
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9 | // Author : Aaron B. Moss
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10 | // Created On : Tue Oct 02 15:50:00 2018
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11 | // Last Modified By : Andrew Beach
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12 | // Last Modified On : Wed Jun 19 10:43:00 2019
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13 | // Update Count : 2
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14 | //
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15 |
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16 | #include <limits>
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17 | #include <list>
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18 | #include <type_traits>
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19 |
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20 | #include "AST/Pass.hpp"
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21 | #include "AST/Type.hpp"
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22 | #include "Common/PassVisitor.h"
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23 | #include "SynTree/Declaration.h"
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24 | #include "SynTree/Expression.h"
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25 | #include "SynTree/Type.h"
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26 |
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27 | namespace ResolvExpr {
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28 |
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29 | /// Counts specializations in a type
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30 | class CountSpecs : public WithShortCircuiting, public WithVisitorRef<CountSpecs> {
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31 | int count = -1; ///< specialization count (-1 for none)
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32 |
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33 | public:
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34 | int get_count() const { return count >= 0 ? count : 0; }
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35 |
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36 | // mark specialization of base type
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37 | void postvisit(PointerType*) { if ( count >= 0 ) ++count; }
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38 |
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39 | // mark specialization of base type
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40 | void postvisit(ArrayType*) { if ( count >= 0 ) ++count; }
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41 |
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42 | // mark specialization of base type
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43 | void postvisit(ReferenceType*) { if ( count >= 0 ) ++count; }
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44 |
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45 | private:
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46 | // takes minimum non-negative count over parameter/return list
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47 | void takeminover( int& mincount, std::list<DeclarationWithType*>& dwts ) {
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48 | for ( DeclarationWithType* dwt : dwts ) {
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49 | count = -1;
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50 | maybeAccept( dwt->get_type(), *visitor );
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51 | if ( count != -1 && count < mincount ) mincount = count;
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52 | }
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53 | }
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54 |
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55 | public:
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56 | // take minimal specialization value over ->returnVals and ->parameters
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57 | void previsit(FunctionType* fty) {
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58 | int mincount = std::numeric_limits<int>::max();
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59 | takeminover( mincount, fty->parameters );
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60 | takeminover( mincount, fty->returnVals );
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61 | // add another level to mincount if set
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62 | count = mincount < std::numeric_limits<int>::max() ? mincount + 1 : -1;
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63 | // already visited children
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64 | visit_children = false;
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65 | }
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66 |
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67 | private:
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68 | // returns minimum non-negative count + 1 over type parameters (-1 if none such)
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69 | int minover( std::list<Expression*>& parms ) {
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70 | int mincount = std::numeric_limits<int>::max();
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71 | for ( Expression* parm : parms ) {
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72 | count = -1;
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73 | maybeAccept( parm->result, *visitor );
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74 | if ( count != -1 && count < mincount ) mincount = count;
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75 | }
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76 | return mincount < std::numeric_limits<int>::max() ? mincount + 1 : -1;
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77 | }
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78 |
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79 | public:
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80 | // look for polymorphic parameters
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81 | void previsit(StructInstType* sty) {
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82 | count = minover( sty->parameters );
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83 | visit_children = false;
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84 | }
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85 |
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86 | // look for polymorphic parameters
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87 | void previsit(UnionInstType* uty) {
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88 | count = minover( uty->parameters );
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89 | visit_children = false;
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90 | }
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91 |
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92 | // note polymorphic type (which may be specialized)
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93 | // xxx - maybe account for open/closed type variables
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94 | void postvisit(TypeInstType*) { count = 0; }
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95 |
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96 | // take minimal specialization over elements
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97 | // xxx - maybe don't increment, tuple flattening doesn't necessarily specialize
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98 | void previsit(TupleType* tty) {
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99 | int mincount = std::numeric_limits<int>::max();
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100 | for ( Type* ty : tty->types ) {
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101 | count = -1;
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102 | maybeAccept( ty, *visitor );
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103 | if ( count != -1 && count < mincount ) mincount = count;
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104 | }
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105 | count = mincount < std::numeric_limits<int>::max() ? mincount + 1 : -1;
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106 | visit_children = false;
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107 | }
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108 | };
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109 |
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110 | /// Returns the (negated) specialization cost for a given type
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111 | int specCost( Type* ty ) {
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112 | PassVisitor<CountSpecs> counter;
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113 | maybeAccept( ty, *counter.pass.visitor );
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114 | return counter.pass.get_count();
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115 | }
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116 |
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117 | namespace {
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118 | /// The specialization counter inner class.
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119 | class SpecCounter : public ast::WithShortCircuiting, public ast::WithVisitorRef<SpecCounter> {
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120 | int count = -1; ///< specialization count (-1 for none)
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121 |
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122 | // Converts the max value to -1 (none), otherwise increments the value.
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123 | static int toNoneOrInc( int value ) {
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124 | assert( 0 <= value );
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125 | return value < std::numeric_limits<int>::max() ? value + 1 : -1;
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126 | }
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127 |
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128 | template<typename T> using MapperT =
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129 | typename std::add_pointer<ast::Type const *(typename T::value_type const &)>::type;
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130 |
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131 | // Update the minimum to the new lowest non-none value.
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132 | template<typename T>
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133 | void updateMinimumPresent( int & minimum, const T & list, MapperT<T> mapper ) {
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134 | for ( const auto & node : list ) {
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135 | count = -1;
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136 | mapper( node )->accept( *visitor );
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137 | if ( count != -1 && count < minimum ) minimum = count;
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138 | }
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139 | }
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140 |
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141 | // Returns minimum non-negative count + 1 over type parameters (-1 if none such).
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142 | template<typename T>
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143 | int minimumPresent( const T & list, MapperT<T> mapper ) {
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144 | int minCount = std::numeric_limits<int>::max();
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145 | updateMinimumPresent( minCount, list, mapper );
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146 | return toNoneOrInc( minCount );
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147 | }
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148 |
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149 | // The three mappers:
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150 | static const ast::Type * decl_type( const ast::ptr< ast::DeclWithType > & decl ) {
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151 | return decl->get_type();
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152 | }
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153 | static const ast::Type * expr_result( const ast::ptr< ast::Expr > & expr ) {
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154 | return expr->result;
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155 | }
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156 | static const ast::Type * type_deref( const ast::ptr< ast::Type > & type ) {
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157 | return type.get();
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158 | }
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159 |
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160 | public:
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161 | int get_count() const { return 0 <= count ? count : 0; }
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162 |
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163 | // Mark specialization of base type.
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164 | void postvisit( const ast::PointerType * ) { if ( count >= 0 ) ++count; }
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165 | void postvisit( const ast::ArrayType * ) { if ( count >= 0 ) ++count; }
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166 | void postvisit( const ast::ReferenceType * ) { if ( count >= 0 ) ++count; }
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167 |
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168 | // Use the minimal specialization value over returns and params.
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169 | void previsit( const ast::FunctionType * fty ) {
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170 | int minCount = std::numeric_limits<int>::max();
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171 | updateMinimumPresent( minCount, fty->params, decl_type );
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172 | updateMinimumPresent( minCount, fty->returns, decl_type );
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173 | // Add another level to minCount if set.
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174 | count = toNoneOrInc( minCount );
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175 | // We have already visited children.
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176 | visit_children = false;
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177 | }
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178 |
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179 | // Look for polymorphic parameters.
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180 | void previsit( const ast::StructInstType * sty ) {
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181 | count = minimumPresent( sty->params, expr_result );
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182 | visit_children = false;
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183 | }
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184 |
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185 | // Look for polymorphic parameters.
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186 | void previsit( const ast::UnionInstType * uty ) {
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187 | count = minimumPresent( uty->params, expr_result );
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188 | visit_children = false;
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189 | }
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190 |
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191 | // Note polymorphic type (which may be specialized).
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192 | // xxx - maybe account for open/closed type variables
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193 | void postvisit( const ast::TypeInstType * ) { count = 0; }
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194 |
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195 | // Use the minimal specialization over elements.
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196 | // xxx - maybe don't increment, tuple flattening doesn't necessarily specialize
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197 | void previsit( const ast::TupleType * tty ) {
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198 | count = minimumPresent( tty->types, type_deref );
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199 | visit_children = false;
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200 | }
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201 | };
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202 |
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203 | } // namespace
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204 |
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205 | int specCost( const ast::Type * type ) {
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206 | if ( nullptr == type ) {
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207 | return 0;
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208 | }
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209 | ast::Pass<SpecCounter> counter;
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210 | type->accept( *counter.pass.visitor );
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211 | return counter.pass.get_count();
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212 | }
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213 |
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214 | } // namespace ResolvExpr
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215 |
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216 | // Local Variables: //
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217 | // tab-width: 4 //
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218 | // mode: c++ //
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219 | // compile-command: "make install" //
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220 | // End: //
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