source: src/Parser/ExpressionNode.cc@ 6152c81

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since 6152c81 was a7c90d4, checked in by Peter A. Buhr <pabuhr@…>, 9 years ago

change StorageClass to bitset, support _Thread_local as separate storage-class

  • Property mode set to 100644
File size: 14.7 KB
RevLine 
[b87a5ed]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//
[0caaa6a]7// ExpressionNode.cc --
8//
[b87a5ed]9// Author : Rodolfo G. Esteves
10// Created On : Sat May 16 13:17:07 2015
[097e2b0]11// Last Modified By : Peter A. Buhr
[a7c90d4]12// Last Modified On : Sat Mar 4 06:58:47 2017
13// Update Count : 509
[0caaa6a]14//
[b87a5ed]15
[51b73452]16#include <cassert>
17#include <cctype>
[7bf7fb9]18#include <climits>
19#include <cstdio>
[51b73452]20#include <algorithm>
[59db689]21#include <sstream>
[51b73452]22
23#include "ParseNode.h"
[630a82a]24#include "TypeData.h"
[51b73452]25#include "SynTree/Constant.h"
26#include "SynTree/Expression.h"
[630a82a]27#include "SynTree/Declaration.h"
[d3b7937]28#include "Common/UnimplementedError.h"
[51b73452]29#include "parseutility.h"
[d3b7937]30#include "Common/utility.h"
[51b73452]31
32using namespace std;
33
[cd623a4]34//##############################################################################
35
[7bf7fb9]36// Difficult to separate extra parts of constants during lexing because actions are not allow in the middle of patterns:
37//
38// prefix action constant action suffix
39//
40// Alternatively, breaking a pattern using BEGIN does not work if the following pattern can be empty:
41//
42// constant BEGIN CONT ...
43// <CONT>(...)? BEGIN 0 ... // possible empty suffix
44//
45// because the CONT rule is NOT triggered if the pattern is empty. Hence, constants are reparsed here to determine their
46// type.
47
[4cb935e]48Type::Qualifiers emptyQualifiers; // no qualifiers on constants
[7bf7fb9]49
50static inline bool checkU( char c ) { return c == 'u' || c == 'U'; }
51static inline bool checkL( char c ) { return c == 'l' || c == 'L'; }
52static inline bool checkF( char c ) { return c == 'f' || c == 'F'; }
53static inline bool checkD( char c ) { return c == 'd' || c == 'D'; }
54static inline bool checkI( char c ) { return c == 'i' || c == 'I'; }
55static inline bool checkX( char c ) { return c == 'x' || c == 'X'; }
56
[ac71a86]57Expression *build_constantInteger( const std::string & str ) {
[7bf7fb9]58 static const BasicType::Kind kind[2][3] = {
59 { BasicType::SignedInt, BasicType::LongSignedInt, BasicType::LongLongSignedInt },
60 { BasicType::UnsignedInt, BasicType::LongUnsignedInt, BasicType::LongLongUnsignedInt },
61 };
62 bool dec = true, Unsigned = false; // decimal, unsigned constant
63 int size; // 0 => int, 1 => long, 2 => long long
64 unsigned long long v; // converted integral value
65 size_t last = str.length() - 1; // last character of constant
66
67 if ( str[0] == '0' ) { // octal/hex constant ?
68 dec = false;
69 if ( last != 0 && checkX( str[1] ) ) { // hex constant ?
70 sscanf( (char *)str.c_str(), "%llx", &v );
71 //printf( "%llx %llu\n", v, v );
72 } else { // octal constant
73 sscanf( (char *)str.c_str(), "%llo", &v );
74 //printf( "%llo %llu\n", v, v );
75 } // if
76 } else { // decimal constant ?
77 sscanf( (char *)str.c_str(), "%llu", &v );
78 //printf( "%llu %llu\n", v, v );
79 } // if
80
81 if ( v <= INT_MAX ) { // signed int
82 size = 0;
83 } else if ( v <= UINT_MAX && ! dec ) { // unsigned int
84 size = 0;
85 Unsigned = true; // unsigned
86 } else if ( v <= LONG_MAX ) { // signed long int
87 size = 1;
88 } else if ( v <= ULONG_MAX && ( ! dec || LONG_MAX == LLONG_MAX ) ) { // signed long int
89 size = 1;
90 Unsigned = true; // unsigned long int
91 } else if ( v <= LLONG_MAX ) { // signed long long int
92 size = 2;
93 } else { // unsigned long long int
94 size = 2;
95 Unsigned = true; // unsigned long long int
96 } // if
97
98 if ( checkU( str[last] ) ) { // suffix 'u' ?
99 Unsigned = true;
100 if ( last > 0 && checkL( str[last - 1] ) ) { // suffix 'l' ?
101 size = 1;
102 if ( last > 1 && checkL( str[last - 2] ) ) { // suffix 'll' ?
103 size = 2;
104 } // if
105 } // if
106 } else if ( checkL( str[ last ] ) ) { // suffix 'l' ?
107 size = 1;
108 if ( last > 0 && checkL( str[last - 1] ) ) { // suffix 'll' ?
109 size = 2;
110 if ( last > 1 && checkU( str[last - 2] ) ) { // suffix 'u' ?
111 Unsigned = true;
112 } // if
113 } else {
114 if ( last > 0 && checkU( str[last - 1] ) ) { // suffix 'u' ?
115 Unsigned = true;
116 } // if
117 } // if
118 } // if
119
[ab57786]120 Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, kind[Unsigned][size] ), str ) );
121 delete &str; // created by lex
122 return ret;
[7bf7fb9]123} // build_constantInteger
[51b73452]124
[ac71a86]125Expression *build_constantFloat( const std::string & str ) {
[7bf7fb9]126 static const BasicType::Kind kind[2][3] = {
127 { BasicType::Float, BasicType::Double, BasicType::LongDouble },
128 { BasicType::FloatComplex, BasicType::DoubleComplex, BasicType::LongDoubleComplex },
129 };
[59c24b6]130
[7bf7fb9]131 bool complx = false; // real, complex
132 int size = 1; // 0 => float, 1 => double (default), 2 => long double
133 // floating-point constant has minimum of 2 characters: 1. or .1
134 size_t last = str.length() - 1;
[51b73452]135
[7bf7fb9]136 if ( checkI( str[last] ) ) { // imaginary ?
137 complx = true;
138 last -= 1; // backup one character
139 } // if
[0caaa6a]140
[7bf7fb9]141 if ( checkF( str[last] ) ) { // float ?
142 size = 0;
143 } else if ( checkD( str[last] ) ) { // double ?
144 size = 1;
145 } else if ( checkL( str[last] ) ) { // long double ?
146 size = 2;
147 } // if
148 if ( ! complx && checkI( str[last - 1] ) ) { // imaginary ?
149 complx = true;
150 } // if
[51b73452]151
[ab57786]152 Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, kind[complx][size] ), str ) );
153 delete &str; // created by lex
154 return ret;
[7bf7fb9]155} // build_constantFloat
[51b73452]156
[ac71a86]157Expression *build_constantChar( const std::string & str ) {
[ab57786]158 Expression * ret = new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::Char ), str ) );
159 delete &str; // created by lex
160 return ret;
[7bf7fb9]161} // build_constantChar
[51b73452]162
[ac71a86]163ConstantExpr *build_constantStr( const std::string & str ) {
[7bf7fb9]164 // string should probably be a primitive type
165 ArrayType *at = new ArrayType( emptyQualifiers, new BasicType( emptyQualifiers, BasicType::Char ),
166 new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::UnsignedInt ),
167 toString( str.size()+1-2 ) ) ), // +1 for '\0' and -2 for '"'
168 false, false );
[ab57786]169 ConstantExpr * ret = new ConstantExpr( Constant( at, str ) );
170 delete &str; // created by lex
171 return ret;
[7bf7fb9]172} // build_constantStr
[51b73452]173
[4cb935e]174Expression *build_constantZeroOne( const std::string & str ) {
[a7c90d4]175 Expression * ret = new ConstantExpr( Constant( str == "0" ? (Type *)new ZeroType( emptyQualifiers ) : (Type*)new OneType( emptyQualifiers ), str ) );
[4cb935e]176 delete &str; // created by lex
177 return ret;
178} // build_constantChar
179
[8780e30]180Expression * build_field_name_FLOATINGconstant( const std::string & str ) {
181 // str is of the form A.B -> separate at the . and return member expression
182 int a, b;
183 char dot;
184 std::stringstream ss( str );
185 ss >> a >> dot >> b;
186 UntypedMemberExpr * ret = new UntypedMemberExpr(
187 new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::SignedInt ), toString( b ) ) ),
188 new ConstantExpr( Constant( new BasicType( emptyQualifiers, BasicType::SignedInt ), toString( a ) ) ) );
189 delete &str;
190 return ret;
191} // build_field_name_FLOATINGconstant
192
193Expression * make_field_name_fraction_constants( Expression * fieldName, Expression * fracts ) {
194 if ( fracts ) {
195 if ( UntypedMemberExpr * memberExpr = dynamic_cast< UntypedMemberExpr * >( fracts ) ) {
196 memberExpr->set_member( make_field_name_fraction_constants( fieldName, memberExpr->get_aggregate() ) );
197 return memberExpr;
198 } else {
199 return new UntypedMemberExpr( fracts, fieldName );
200 }
201 }
202 return fieldName;
203} // make_field_name_fraction_constants
204
205Expression * build_field_name_fraction_constants( Expression * fieldName, ExpressionNode * fracts ) {
206 return make_field_name_fraction_constants( fieldName, maybeMoveBuild< Expression >( fracts ) );
207} // build_field_name_fraction_constants
208
209Expression * build_field_name_REALFRACTIONconstant( const std::string & str ) {
210 assert( str[0] == '.' );
211 Expression * ret = build_constantInteger( *new std::string( str.substr(1) ) );
212 delete &str;
213 return ret;
214} // build_field_name_REALFRACTIONconstant
215
216Expression * build_field_name_REALDECIMALconstant( const std::string & str ) {
217 assert( str[str.size()-1] == '.' );
218 Expression * ret = build_constantInteger( *new std::string( str.substr( 0, str.size()-1 ) ) );
219 delete &str;
220 return ret;
221} // build_field_name_REALDECIMALconstant
222
[d1625f8]223NameExpr * build_varref( const string *name, bool labelp ) {
[7ecbb7e]224 NameExpr *expr = new NameExpr( *name, nullptr );
225 delete name;
226 return expr;
[51b1202]227}
228
[d9e2280]229static const char *OperName[] = {
[5721a6d]230 // diadic
[7bf7fb9]231 "SizeOf", "AlignOf", "OffsetOf", "?+?", "?-?", "?*?", "?/?", "?%?", "||", "&&",
[5721a6d]232 "?|?", "?&?", "?^?", "Cast", "?<<?", "?>>?", "?<?", "?>?", "?<=?", "?>=?", "?==?", "?!=?",
[a839867]233 "?=?", "?@=?", "?*=?", "?/=?", "?%=?", "?+=?", "?-=?", "?<<=?", "?>>=?", "?&=?", "?^=?", "?|=?",
[d9e2280]234 "?[?]", "...",
[5721a6d]235 // monadic
236 "+?", "-?", "AddressOf", "*?", "!?", "~?", "++?", "?++", "--?", "?--", "&&"
237};
238
[d1625f8]239Expression *build_cast( DeclarationNode *decl_node, ExpressionNode *expr_node ) {
[4f147cc]240 Type *targetType = maybeMoveBuildType( decl_node );
[d1625f8]241 if ( dynamic_cast< VoidType * >( targetType ) ) {
[064e3ff]242 delete targetType;
[7ecbb7e]243 return new CastExpr( maybeMoveBuild< Expression >(expr_node) );
[064e3ff]244 } else {
[7ecbb7e]245 return new CastExpr( maybeMoveBuild< Expression >(expr_node), targetType );
[064e3ff]246 } // if
247}
248
[3b58d91]249Expression *build_fieldSel( ExpressionNode *expr_node, Expression *member ) {
250 UntypedMemberExpr *ret = new UntypedMemberExpr( member, maybeMoveBuild< Expression >(expr_node) );
[064e3ff]251 return ret;
252}
253
[3b58d91]254Expression *build_pfieldSel( ExpressionNode *expr_node, Expression *member ) {
[064e3ff]255 UntypedExpr *deref = new UntypedExpr( new NameExpr( "*?" ) );
[7ecbb7e]256 deref->get_args().push_back( maybeMoveBuild< Expression >(expr_node) );
[3b58d91]257 UntypedMemberExpr *ret = new UntypedMemberExpr( member, deref );
[064e3ff]258 return ret;
259}
260
261Expression *build_addressOf( ExpressionNode *expr_node ) {
[7ecbb7e]262 return new AddressExpr( maybeMoveBuild< Expression >(expr_node) );
[064e3ff]263}
[d1625f8]264Expression *build_sizeOfexpr( ExpressionNode *expr_node ) {
[7ecbb7e]265 return new SizeofExpr( maybeMoveBuild< Expression >(expr_node) );
[064e3ff]266}
[d1625f8]267Expression *build_sizeOftype( DeclarationNode *decl_node ) {
[4f147cc]268 return new SizeofExpr( maybeMoveBuildType( decl_node ) );
[d1625f8]269}
270Expression *build_alignOfexpr( ExpressionNode *expr_node ) {
[7ecbb7e]271 return new AlignofExpr( maybeMoveBuild< Expression >(expr_node) );
[d1625f8]272}
273Expression *build_alignOftype( DeclarationNode *decl_node ) {
[4f147cc]274 return new AlignofExpr( maybeMoveBuildType( decl_node) );
[064e3ff]275}
[d1625f8]276Expression *build_offsetOf( DeclarationNode *decl_node, NameExpr *member ) {
[a7c90d4]277 Expression * ret = new UntypedOffsetofExpr( maybeMoveBuildType( decl_node ), member->get_name() );
[ac71a86]278 delete member;
279 return ret;
[064e3ff]280}
281
[51e076e]282Expression *build_and_or( ExpressionNode *expr_node1, ExpressionNode *expr_node2, bool kind ) {
[7ecbb7e]283 return new LogicalExpr( notZeroExpr( maybeMoveBuild< Expression >(expr_node1) ), notZeroExpr( maybeMoveBuild< Expression >(expr_node2) ), kind );
[51e076e]284}
285
[d9e2280]286Expression *build_unary_val( OperKinds op, ExpressionNode *expr_node ) {
[7880579]287 std::list< Expression * > args;
[7ecbb7e]288 args.push_back( maybeMoveBuild< Expression >(expr_node) );
[d9e2280]289 return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
[9706554]290}
[d9e2280]291Expression *build_unary_ptr( OperKinds op, ExpressionNode *expr_node ) {
[7880579]292 std::list< Expression * > args;
[7ecbb7e]293 args.push_back( new AddressExpr( maybeMoveBuild< Expression >(expr_node) ) );
[d9e2280]294 return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
[51e076e]295}
[d9e2280]296Expression *build_binary_val( OperKinds op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
[7880579]297 std::list< Expression * > args;
[7ecbb7e]298 args.push_back( maybeMoveBuild< Expression >(expr_node1) );
299 args.push_back( maybeMoveBuild< Expression >(expr_node2) );
[d9e2280]300 return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
[51e076e]301}
[d9e2280]302Expression *build_binary_ptr( OperKinds op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
[7880579]303 std::list< Expression * > args;
[7ecbb7e]304 args.push_back( new AddressExpr( maybeMoveBuild< Expression >(expr_node1) ) );
305 args.push_back( maybeMoveBuild< Expression >(expr_node2) );
[d9e2280]306 return new UntypedExpr( new NameExpr( OperName[ (int)op ] ), args );
[9706554]307}
[51e076e]308
309Expression *build_cond( ExpressionNode *expr_node1, ExpressionNode *expr_node2, ExpressionNode *expr_node3 ) {
[7ecbb7e]310 return new ConditionalExpr( notZeroExpr( maybeMoveBuild< Expression >(expr_node1) ), maybeMoveBuild< Expression >(expr_node2), maybeMoveBuild< Expression >(expr_node3) );
[51e076e]311}
312
313Expression *build_comma( ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
[7ecbb7e]314 return new CommaExpr( maybeMoveBuild< Expression >(expr_node1), maybeMoveBuild< Expression >(expr_node2) );
[51e076e]315}
316
[d1625f8]317Expression *build_attrexpr( NameExpr *var, ExpressionNode * expr_node ) {
[7ecbb7e]318 return new AttrExpr( var, maybeMoveBuild< Expression >(expr_node) );
[d1625f8]319}
320Expression *build_attrtype( NameExpr *var, DeclarationNode * decl_node ) {
[4f147cc]321 return new AttrExpr( var, maybeMoveBuildType( decl_node ) );
[9706554]322}
323
[d1625f8]324Expression *build_tuple( ExpressionNode * expr_node ) {
[907eccb]325 std::list< Expression * > exprs;
326 buildMoveList( expr_node, exprs );
327 return new UntypedTupleExpr( exprs );;
[9706554]328}
329
[d1625f8]330Expression *build_func( ExpressionNode * function, ExpressionNode * expr_node ) {
[7880579]331 std::list< Expression * > args;
[7ecbb7e]332 buildMoveList( expr_node, args );
333 return new UntypedExpr( maybeMoveBuild< Expression >(function), args, nullptr );
[9706554]334}
335
[d9e2280]336Expression *build_range( ExpressionNode * low, ExpressionNode *high ) {
[7ecbb7e]337 return new RangeExpr( maybeMoveBuild< Expression >( low ), maybeMoveBuild< Expression >( high ) );
[51b73452]338}
339
[e82aa9df]340Expression *build_asmexpr( ExpressionNode *inout, ConstantExpr *constraint, ExpressionNode *operand ) {
[7ecbb7e]341 return new AsmExpr( maybeMoveBuild< Expression >( inout ), constraint, maybeMoveBuild< Expression >(operand) );
[7f5566b]342}
343
[d1625f8]344Expression *build_valexpr( StatementNode *s ) {
[7ecbb7e]345 return new UntypedValofExpr( maybeMoveBuild< Statement >(s), nullptr );
[3848e0e]346}
[d1625f8]347Expression *build_typevalue( DeclarationNode *decl ) {
[4f147cc]348 return new TypeExpr( maybeMoveBuildType( decl ) );
[630a82a]349}
350
[d1625f8]351Expression *build_compoundLiteral( DeclarationNode *decl_node, InitializerNode *kids ) {
[7880579]352 Declaration * newDecl = maybeBuild< Declaration >(decl_node); // compound literal type
[630a82a]353 if ( DeclarationWithType * newDeclWithType = dynamic_cast< DeclarationWithType * >( newDecl ) ) { // non-sue compound-literal type
[7ecbb7e]354 return new CompoundLiteralExpr( newDeclWithType->get_type(), maybeMoveBuild< Initializer >(kids) );
[630a82a]355 // these types do not have associated type information
356 } else if ( StructDecl * newDeclStructDecl = dynamic_cast< StructDecl * >( newDecl ) ) {
[7ecbb7e]357 return new CompoundLiteralExpr( new StructInstType( Type::Qualifiers(), newDeclStructDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
[630a82a]358 } else if ( UnionDecl * newDeclUnionDecl = dynamic_cast< UnionDecl * >( newDecl ) ) {
[7ecbb7e]359 return new CompoundLiteralExpr( new UnionInstType( Type::Qualifiers(), newDeclUnionDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
[630a82a]360 } else if ( EnumDecl * newDeclEnumDecl = dynamic_cast< EnumDecl * >( newDecl ) ) {
[7ecbb7e]361 return new CompoundLiteralExpr( new EnumInstType( Type::Qualifiers(), newDeclEnumDecl->get_name() ), maybeMoveBuild< Initializer >(kids) );
[630a82a]362 } else {
363 assert( false );
364 } // if
365}
366
[b87a5ed]367// Local Variables: //
368// tab-width: 4 //
369// mode: c++ //
370// compile-command: "make install" //
371// End: //
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