source: src/ResolvExpr/ResolveTypeof.cc@ 8d182b1

Last change on this file since 8d182b1 was 0bd3faf, checked in by Andrew Beach <ajbeach@…>, 23 months ago

Removed forward declarations missed in the BaseSyntaxNode removal. Removed code and modified names to support two versions of the ast.

  • Property mode set to 100644
File size: 7.0 KB
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1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// ResolveTypeof.cc --
8//
9// Author : Richard C. Bilson
10// Created On : Sun May 17 12:12:20 2015
11// Last Modified By : Andrew Beach
12// Last Modified On : Wed Mar 16 16:09:00 2022
13// Update Count : 4
14//
15
16#include "ResolveTypeof.h"
17
18#include <cassert> // for assert
19
20#include "AST/CVQualifiers.hpp"
21#include "AST/Node.hpp"
22#include "AST/Pass.hpp"
23#include "AST/TranslationUnit.hpp"
24#include "AST/Type.hpp"
25#include "AST/TypeEnvironment.hpp"
26#include "Common/utility.h" // for copy
27#include "InitTweak/InitTweak.h" // for isConstExpr
28#include "RenameVars.h"
29#include "Resolver.h" // for resolveInVoidContext
30#include "SymTab/Mangler.h"
31
32namespace ResolvExpr {
33
34namespace {
35struct ResolveTypeof : public ast::WithShortCircuiting {
36 const ResolveContext & context;
37
38 ResolveTypeof( const ResolveContext & context ) :
39 context( context ) {}
40
41 void previsit( const ast::TypeofType * ) { visit_children = false; }
42
43 const ast::Type * postvisit( const ast::TypeofType * typeofType ) {
44 // pass on null expression
45 if ( ! typeofType->expr ) return typeofType;
46
47 ast::ptr< ast::Type > newType;
48 if ( auto tyExpr = typeofType->expr.as< ast::TypeExpr >() ) {
49 // typeof wrapping type
50 newType = tyExpr->type;
51 } else {
52 // typeof wrapping expression
53 ast::TypeEnvironment dummy;
54 ast::ptr< ast::Expr > newExpr =
55 resolveInVoidContext( typeofType->expr, context, dummy );
56 assert( newExpr->result && ! newExpr->result->isVoid() );
57 newType = newExpr->result;
58 }
59
60 // clear qualifiers for base, combine with typeoftype quals regardless
61 if ( typeofType->kind == ast::TypeofType::Basetypeof ) {
62 // replace basetypeof(<enum>) by int
63 if ( newType.as< ast::EnumInstType >() ) {
64 newType = new ast::BasicType{
65 ast::BasicType::SignedInt, newType->qualifiers, copy(newType->attributes) };
66 }
67 reset_qualifiers(
68 newType,
69 ( newType->qualifiers & ~ast::CV::EquivQualifiers ) | typeofType->qualifiers );
70 } else {
71 add_qualifiers( newType, typeofType->qualifiers );
72 }
73
74 return newType.release();
75 }
76};
77} // anonymous namespace
78
79const ast::Type * resolveTypeof( const ast::Type * type , const ResolveContext & context ) {
80 ast::Pass< ResolveTypeof > mutator( context );
81 return type->accept( mutator );
82}
83
84struct FixArrayDimension {
85 const ResolveContext & context;
86 FixArrayDimension(const ResolveContext & context) : context( context ) {}
87
88 const ast::ArrayType * previsit (const ast::ArrayType * arrayType) {
89 if (!arrayType->dimension) return arrayType;
90 auto mutType = mutate(arrayType);
91 auto globalSizeType = context.global.sizeType;
92 ast::ptr<ast::Type> sizetype = globalSizeType ? globalSizeType : new ast::BasicType(ast::BasicType::LongUnsignedInt);
93 mutType->dimension = findSingleExpression(arrayType->dimension, sizetype, context );
94
95 if (InitTweak::isConstExpr(mutType->dimension)) {
96 mutType->isVarLen = ast::LengthFlag::FixedLen;
97 }
98 else {
99 mutType->isVarLen = ast::LengthFlag::VariableLen;
100 }
101 return mutType;
102 }
103};
104
105const ast::Type * fixArrayType( const ast::Type * type, const ResolveContext & context ) {
106 ast::Pass<FixArrayDimension> visitor(context);
107 return type->accept(visitor);
108}
109
110const ast::ObjectDecl * fixObjectType( const ast::ObjectDecl * decl , const ResolveContext & context ) {
111 if (decl->isTypeFixed) {
112 return decl;
113 }
114
115 auto mutDecl = mutate(decl);
116 fixObjectInit(decl, context);
117 {
118 auto resolvedType = resolveTypeof(decl->type, context);
119 resolvedType = fixArrayType(resolvedType, context);
120 mutDecl->type = resolvedType;
121 }
122
123 // Do not mangle unnamed variables.
124 if (!mutDecl->name.empty()) {
125 mutDecl->mangleName = Mangle::mangle(mutDecl);
126 }
127
128 mutDecl->type = renameTyVars(mutDecl->type, RenameMode::GEN_EXPR_ID);
129 mutDecl->isTypeFixed = true;
130 return mutDecl;
131}
132
133const ast::ObjectDecl *fixObjectInit(const ast::ObjectDecl *decl,
134 const ResolveContext &context) {
135 if (decl->isTypeFixed) {
136 return decl;
137 }
138
139 auto mutDecl = mutate(decl);
140
141 if ( auto mutListInit = mutDecl->init.as<ast::ListInit>() ) {
142 // std::list<ast::Designation *> newDesignations;
143
144 for ( size_t k = 0; k < mutListInit->designations.size(); k++ ) {
145 const ast::Designation *des = mutListInit->designations[k].get();
146 // Desination here
147 ast::Designation * newDesignation = new ast::Designation(des->location);
148 std::deque<ast::ptr<ast::Expr>> newDesignators;
149
150 for ( ast::ptr<ast::Expr> designator : des->designators ) {
151 // Stupid flag variable for development, to be removed
152 // bool mutated = false;
153 if ( const ast::NameExpr * designatorName = designator.as<ast::NameExpr>() ) {
154 auto candidates = context.symtab.lookupId(designatorName->name);
155 // Does not work for the overloading case currently
156 // assert( candidates.size() == 1 );
157 if ( candidates.size() != 1 ) return mutDecl;
158 auto candidate = candidates.at(0);
159 if ( const ast::EnumInstType * enumInst = dynamic_cast<const ast::EnumInstType *>(candidate.id->get_type())) {
160 // determine that is an enumInst, swap it with its const value
161 assert( candidates.size() == 1 );
162 const ast::EnumDecl * baseEnum = enumInst->base;
163 // Need to iterate over all enum value to find the initializer to swap
164 for ( size_t m = 0; m < baseEnum->members.size(); ++m ) {
165 const ast::ObjectDecl * mem = baseEnum->members.at(m).as<const ast::ObjectDecl>();
166 if ( baseEnum->members.at(m)->name == designatorName->name ) {
167 assert(mem);
168 newDesignators.push_back( ast::ConstantExpr::from_int(designator->location, m) );
169 // mutated = true;
170 break;
171 }
172 }
173 } else {
174 newDesignators.push_back( des->designators.at(0) );
175 }
176 } else {
177 newDesignators.push_back( des->designators.at(0) );
178 }
179 }
180
181 newDesignation->designators = newDesignators;
182 mutListInit = ast::mutate_field_index(mutListInit, &ast::ListInit::designations, k, newDesignation);
183
184 }
185 }
186 return mutDecl;
187}
188
189} // namespace ResolvExpr
190
191// Local Variables: //
192// tab-width: 4 //
193// mode: c++ //
194// compile-command: "make install" //
195// End: //
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