[51587aa] | 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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[33a7b6d] | 7 | // GenPoly.h --
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[51587aa] | 8 | //
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| 9 | // Author : Richard C. Bilson
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| 10 | // Created On : Mon May 18 07:44:20 2015
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[3606fe4] | 11 | // Last Modified By : Andrew Beach
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[63d1ebe] | 12 | // Last Modified On : Mon Oct 24 15:18:00 2022
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| 13 | // Update Count : 11
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[51587aa] | 14 | //
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[51b73452] | 15 |
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[6b0b624] | 16 | #pragma once
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[b1a6d6b] | 17 |
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[08fc48f] | 18 | #include <iostream> // for ostream
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| 19 | #include <string> // for string, allocator, operator+, basic...
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[ffad73a] | 20 |
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[08fc48f] | 21 | #include "ErasableScopedMap.h" // for ErasableScopedMap
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[82a90d4] | 22 | #include "AST/Decl.hpp" // for AggregateDecl
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[c8837e5] | 23 | #include "AST/Fwd.hpp" // for ApplicationExpr, BaseInstType, Func...
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[08fc48f] | 24 | #include "SymTab/Mangler.h" // for Mangler
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| 25 | #include "SynTree/Declaration.h" // for TypeDecl::Data, AggregateDecl, Type...
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| 26 | #include "SynTree/SynTree.h" // for Visitor Nodes
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[51b73452] | 27 |
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[82a90d4] | 28 | namespace ast {
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| 29 | struct TypeEnvKey;
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| 30 | }
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| 31 |
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[51b73452] | 32 | namespace GenPoly {
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[bdf1954] | 33 |
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[490fb92e] | 34 | typedef ErasableScopedMap< std::string, TypeDecl::Data > TyVarMap;
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[93c10de] | 35 | using TypeVarMap = ErasableScopedMap< ast::TypeEnvKey, ast::TypeData >;
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[3606fe4] | 36 |
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[c2ad3c9] | 37 | /// Replaces a TypeInstType by its referrent in the environment, if applicable
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| 38 | Type* replaceTypeInst( Type* type, const TypeSubstitution* env );
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[4da152a] | 39 | const Type* replaceTypeInst( const Type* type, const TypeSubstitution* env );
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[63d1ebe] | 40 | const ast::Type * replaceTypeInst( const ast::Type *, const ast::TypeSubstitution * );
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[33a7b6d] | 41 |
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[ffad73a] | 42 | /// returns polymorphic type if is polymorphic type, NULL otherwise; will look up substitution in env if provided
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[0f889a77] | 43 | Type *isPolyType( Type *type, const TypeSubstitution *env = 0 );
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[490fb92e] | 44 | const ast::Type * isPolyType(const ast::Type * type, const ast::TypeSubstitution * env = nullptr);
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[33a7b6d] | 45 |
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[0f889a77] | 46 | /// returns polymorphic type if is polymorphic type in tyVars, NULL otherwise; will look up substitution in env if provided
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[ffad73a] | 47 | Type *isPolyType( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env = 0 );
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[c8837e5] | 48 | const ast::Type * isPolyType( const ast::Type * type, const TypeVarMap & typeVars, const ast::TypeSubstitution * subst = nullptr );
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[ffad73a] | 49 |
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[3bb195cb] | 50 | /// returns dynamic-layout type if is dynamic-layout type in tyVars, NULL otherwise; will look up substitution in env if provided
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[33a7b6d] | 51 | ReferenceToType *isDynType( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env = 0 );
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[c8837e5] | 52 | const ast::BaseInstType *isDynType( const ast::Type * type, const TypeVarMap & typeVars, const ast::TypeSubstitution * subst = 0 );
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[3bb195cb] | 53 |
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| 54 | /// true iff function has dynamic-layout return type under the given type variable map
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| 55 | ReferenceToType *isDynRet( FunctionType *function, const TyVarMap &tyVars );
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[c8837e5] | 56 | const ast::BaseInstType *isDynRet( const ast::FunctionType * type, const TypeVarMap & typeVars );
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[3bb195cb] | 57 |
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| 58 | /// true iff function has dynamic-layout return type under the type variable map generated from its forall-parameters
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| 59 | ReferenceToType *isDynRet( FunctionType *function );
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[63d1ebe] | 60 | const ast::BaseInstType *isDynRet( const ast::FunctionType * func );
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[3bb195cb] | 61 |
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| 62 | /// A function needs an adapter if it returns a dynamic-layout value or if any of its parameters have dynamic-layout type
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| 63 | bool needsAdapter( FunctionType *adaptee, const TyVarMap &tyVarr );
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[c8837e5] | 64 | bool needsAdapter( ast::FunctionType const * adaptee, const TypeVarMap & typeVars );
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[3bb195cb] | 65 |
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[ffad73a] | 66 | /// returns polymorphic type if is pointer to polymorphic type, NULL otherwise; will look up substitution in env if provided
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[0f889a77] | 67 | Type *isPolyPtr( Type *type, const TypeSubstitution *env = 0 );
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[33a7b6d] | 68 |
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[0f889a77] | 69 | /// returns polymorphic type if is pointer to polymorphic type in tyVars, NULL otherwise; will look up substitution in env if provided
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[ffad73a] | 70 | Type *isPolyPtr( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env = 0 );
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[c8837e5] | 71 | const ast::Type * isPolyPtr( const ast::Type * type, const TypeVarMap & typeVars, const ast::TypeSubstitution * env = 0 );
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[ffad73a] | 72 |
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[8488c715] | 73 | /// if the base type (after dereferencing N >= 0 pointers) is a polymorphic type, returns the base type, NULL otherwise;
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| 74 | /// N will be stored in levels, if provided, will look up substitution in env if provided
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| 75 | Type *hasPolyBase( Type *type, int *levels = 0, const TypeSubstitution *env = 0 );
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[05d47278] | 76 |
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[8488c715] | 77 | /// if the base type (after dereferencing N >= 0 pointers) is a polymorphic type in tyVars, returns the base type, NULL otherwise;
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| 78 | /// N will be stored in levels, if provided, will look up substitution in env if provided
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| 79 | Type *hasPolyBase( Type *type, const TyVarMap &tyVars, int *levels = 0, const TypeSubstitution *env = 0 );
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[c8837e5] | 80 | const ast::Type * hasPolyBase( const ast::Type * type, const TypeVarMap & typeVars, int * levels = 0, const ast::TypeSubstitution * env = 0 );
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[05d47278] | 81 |
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[08fc48f] | 82 | /// true iff this type or some base of this type after dereferencing pointers is either polymorphic or a generic type with at least one
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[5a3ac84] | 83 | /// polymorphic parameter; will look up substitution in env if provided.
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| 84 | bool includesPolyType( Type *type, const TypeSubstitution *env = 0 );
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| 85 |
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[08fc48f] | 86 | /// true iff this type or some base of this type after dereferencing pointers is either polymorphic in tyVars, or a generic type with
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[5a3ac84] | 87 | /// at least one polymorphic parameter in tyVars; will look up substitution in env if provided.
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| 88 | bool includesPolyType( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env = 0 );
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| 89 |
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[7754cde] | 90 | /// Returns a pointer to the base FunctionType if ty is the type of a function (or pointer to one), NULL otherwise
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[05d47278] | 91 | FunctionType *getFunctionType( Type *ty );
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[d76c588] | 92 | const ast::FunctionType * getFunctionType( const ast::Type * ty );
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[05d47278] | 93 |
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[8488c715] | 94 | /// If expr (after dereferencing N >= 0 pointers) is a variable expression, returns the variable expression, NULL otherwise;
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| 95 | /// N will be stored in levels, if provided
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| 96 | VariableExpr *getBaseVar( Expression *expr, int *levels = 0 );
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[7754cde] | 97 |
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[5a3ac84] | 98 | /// true iff types are structurally identical, where TypeInstType's match any type.
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| 99 | bool typesPolyCompatible( Type *aty, Type *bty );
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[3606fe4] | 100 | bool typesPolyCompatible( ast::Type const * lhs, ast::Type const * rhs );
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[5a3ac84] | 101 |
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[ae1b9ea] | 102 | /// true if arg requires boxing given exprTyVars
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[02fdb8e] | 103 | bool needsBoxing( Type * param, Type * arg, const TyVarMap &exprTyVars, const TypeSubstitution * env );
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[c8837e5] | 104 | bool needsBoxing( const ast::Type * param, const ast::Type * arg, const TypeVarMap & typeVars, const ast::TypeSubstitution * subst );
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[ae1b9ea] | 105 |
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| 106 | /// true if arg requires boxing in the call to appExpr
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[02fdb8e] | 107 | bool needsBoxing( Type * param, Type * arg, ApplicationExpr * appExpr, const TypeSubstitution * env );
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[c8837e5] | 108 | bool needsBoxing( const ast::Type * param, const ast::Type * arg, const ast::ApplicationExpr * expr, const ast::TypeSubstitution * subst );
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[ae1b9ea] | 109 |
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[2c57025] | 110 | /// Adds the type variable `tyVar` to `tyVarMap`
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| 111 | void addToTyVarMap( TypeDecl * tyVar, TyVarMap &tyVarMap );
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[c8837e5] | 112 | void addToTypeVarMap( const ast::TypeDecl * type, TypeVarMap & typeVars );
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[2c57025] | 113 |
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[aadc9a4] | 114 | /// Adds the declarations in the forall list of type (and its pointed-to type if it's a pointer type) to `tyVarMap`
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| 115 | void makeTyVarMap( Type *type, TyVarMap &tyVarMap );
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[c8837e5] | 116 | void makeTypeVarMap( const ast::Type * type, TypeVarMap & typeVars );
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[33a7b6d] | 117 |
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[ffad73a] | 118 | /// Prints type variable map
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[01aeade] | 119 | void printTyVarMap( std::ostream &os, const TyVarMap &tyVarMap );
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[ffad73a] | 120 |
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[adc6781] | 121 | /// Gets the mangled name of this type; alias for SymTab::Mangler::mangleType().
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[4da152a] | 122 | inline std::string mangleType( const Type *ty ) { return SymTab::Mangler::mangleType( ty ); }
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[33a7b6d] | 123 |
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[adc6781] | 124 | /// Gets the name of the sizeof parameter for the type, given its mangled name
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| 125 | inline std::string sizeofName( const std::string &name ) { return std::string( "_sizeof_" ) + name; }
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| 126 |
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| 127 | /// Gets the name of the alignof parameter for the type, given its mangled name
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| 128 | inline std::string alignofName( const std::string &name ) { return std::string( "_alignof_" ) + name; }
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[ffad73a] | 129 |
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[adc6781] | 130 | /// Gets the name of the offsetof parameter for the type, given its mangled name
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| 131 | inline std::string offsetofName( const std::string &name ) { return std::string( "_offsetof_" ) + name; }
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[05d47278] | 132 |
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[adc6781] | 133 | /// Gets the name of the layout function for a given aggregate type, given its declaration
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| 134 | inline std::string layoutofName( AggregateDecl *decl ) { return std::string( "_layoutof_" ) + decl->get_name(); }
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[63d1ebe] | 135 | inline std::string layoutofName( ast::AggregateDecl const * decl ) {
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| 136 | return std::string( "_layoutof_" ) + decl->name;
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| 137 | }
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[33a7b6d] | 138 |
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[51b73452] | 139 | } // namespace GenPoly
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[b1a6d6b] | 140 |
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[51587aa] | 141 | // Local Variables: //
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| 142 | // tab-width: 4 //
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| 143 | // mode: c++ //
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| 144 | // compile-command: "make install" //
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| 145 | // End: //
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