source: src/Parser/parser.yy@ fc638d2

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 fc638d2 was 8780e30, checked in by Rob Schluntz <rschlunt@…>, 9 years ago

build appropriate nodes when parsing member tuple expressions

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File size: 105.2 KB
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[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//
[974906e2]7// cfa.y --
8//
[c11e31c]9// Author : Peter A. Buhr
10// Created On : Sat Sep 1 20:22:55 2001
11// Last Modified By : Peter A. Buhr
[1b29996]12// Last Modified On : Wed Oct 26 17:35:53 2016
13// Update Count : 2066
[974906e2]14//
[c11e31c]15
[de62360d]16// This grammar is based on the ANSI99/11 C grammar, specifically parts of EXPRESSION and STATEMENTS, and on the C
17// grammar by James A. Roskind, specifically parts of DECLARATIONS and EXTERNAL DEFINITIONS. While parts have been
18// copied, important changes have been made in all sections; these changes are sufficient to constitute a new grammar.
19// In particular, this grammar attempts to be more syntactically precise, i.e., it parses less incorrect language syntax
20// that must be subsequently rejected by semantic checks. Nevertheless, there are still several semantic checks
21// required and many are noted in the grammar. Finally, the grammar is extended with GCC and CFA language extensions.
[c11e31c]22
[de62360d]23// Acknowledgments to Richard Bilson, Glen Ditchfield, and Rodolfo Gabriel Esteves who all helped when I got stuck with
24// the grammar.
[c11e31c]25
26// The root language for this grammar is ANSI99/11 C. All of ANSI99/11 is parsed, except for:
27//
28// 1. designation with '=' (use ':' instead)
29//
[de62360d]30// Most of the syntactic extensions from ANSI90 to ANSI11 C are marked with the comment "C99/C11". This grammar also has
31// two levels of extensions. The first extensions cover most of the GCC C extensions, except for:
[c11e31c]32//
[e7aed49]33// 1. designation with and without '=' (use ':' instead)
34// 2. attributes not allowed in parenthesis of declarator
[c11e31c]35//
[de62360d]36// All of the syntactic extensions for GCC C are marked with the comment "GCC". The second extensions are for Cforall
37// (CFA), which fixes several of C's outstanding problems and extends C with many modern language concepts. All of the
38// syntactic extensions for CFA C are marked with the comment "CFA". As noted above, there is one unreconcileable
39// parsing problem between C99 and CFA with respect to designators; this is discussed in detail before the "designation"
40// grammar rule.
[51b73452]41
42%{
[b87a5ed]43#define YYDEBUG_LEXER_TEXT (yylval) // lexer loads this up each time
44#define YYDEBUG 1 // get the pretty debugging code to compile
[51b73452]45
46#undef __GNUC_MINOR__
47
48#include <cstdio>
49#include <stack>
50#include "lex.h"
[984dce6]51#include "parser.h"
[51b73452]52#include "ParseNode.h"
[984dce6]53#include "TypedefTable.h"
[1db21619]54#include "TypeData.h"
[51b73452]55#include "LinkageSpec.h"
[2298f728]56using namespace std;
[51b73452]57
[cbaee0d]58extern DeclarationNode * parseTree;
[8b7ee09]59extern LinkageSpec::Spec linkage;
[0da3e2c]60extern TypedefTable typedefTable;
61
[2298f728]62stack< LinkageSpec::Spec > linkageStack;
[7bf7fb9]63
[2298f728]64void appendStr( string *to, string *from ) {
[7bf7fb9]65 // "abc" "def" "ghi" => "abcdefghi", remove new text from quotes and insert before last quote in old string.
[ab57786]66 to->insert( to->length() - 1, from->substr( 1, from->length() - 2 ) );
[7bf7fb9]67} // appendStr
[51b73452]68%}
69
[c11e31c]70//************************* TERMINAL TOKENS ********************************
[51b73452]71
[c11e31c]72// keywords
[51b73452]73%token TYPEDEF
74%token AUTO EXTERN REGISTER STATIC
[b87a5ed]75%token INLINE // C99
76%token FORTRAN // C99, extension ISO/IEC 9899:1999 Section J.5.9(1)
[51b73452]77%token CONST VOLATILE
[b87a5ed]78%token RESTRICT // C99
79%token FORALL LVALUE // CFA
[51b73452]80%token VOID CHAR SHORT INT LONG FLOAT DOUBLE SIGNED UNSIGNED
[90c3b1c]81%token VALIST // GCC
[b87a5ed]82%token BOOL COMPLEX IMAGINARY // C99
83%token TYPEOF LABEL // GCC
[51b73452]84%token ENUM STRUCT UNION
[e7aed49]85%token OTYPE FTYPE DTYPE TRAIT // CFA
[5721a6d]86%token SIZEOF OFFSETOF
[b87a5ed]87%token ATTRIBUTE EXTENSION // GCC
[51b73452]88%token IF ELSE SWITCH CASE DEFAULT DO WHILE FOR BREAK CONTINUE GOTO RETURN
[02e5ab6]89%token CHOOSE DISABLE ENABLE FALLTHRU TRY CATCH CATCHRESUME FINALLY THROW THROWRESUME AT // CFA
[b87a5ed]90%token ASM // C99, extension ISO/IEC 9899:1999 Section J.5.10(1)
[c11e31c]91%token ALIGNAS ALIGNOF ATOMIC GENERIC NORETURN STATICASSERT THREADLOCAL // C11
[51b73452]92
[c11e31c]93// names and constants: lexer differentiates between identifier and typedef names
[b87a5ed]94%token<tok> IDENTIFIER QUOTED_IDENTIFIER TYPEDEFname TYPEGENname
95%token<tok> ATTR_IDENTIFIER ATTR_TYPEDEFname ATTR_TYPEGENname
[1b29996]96%token<tok> INTEGERconstant CHARACTERconstant STRINGliteral
97// Floating point constant is broken into three kinds of tokens because of the ambiguity with tuple indexing and
98// overloading constants 0/1, e.g., x.1 is lexed as (x)(.1), where (.1) is a factional constant, but is semantically
99// converted into the tuple index (.)(1). e.g., 3.x
100%token<tok> REALDECIMALconstant REALFRACTIONconstant FLOATINGconstant
[b87a5ed]101%token<tok> ZERO ONE // CFA
[51b73452]102
[c11e31c]103// multi-character operators
[b87a5ed]104%token ARROW // ->
105%token ICR DECR // ++ --
106%token LS RS // << >>
107%token LE GE EQ NE // <= >= == !=
108%token ANDAND OROR // && ||
109%token ELLIPSIS // ...
110
111%token MULTassign DIVassign MODassign // *= /= %=/
112%token PLUSassign MINUSassign // += -=
113%token LSassign RSassign // <<= >>=
114%token ANDassign ERassign ORassign // &= ^= |=
[51b73452]115
[e7aed49]116%token ATassign // @=
[097e2b0]117
[c11e31c]118// Types declaration
[51b73452]119%union
120{
[b87a5ed]121 Token tok;
122 ParseNode *pn;
123 ExpressionNode *en;
124 DeclarationNode *decl;
[68cd1ce]125 DeclarationNode::Aggregate aggKey;
[b87a5ed]126 DeclarationNode::TypeClass tclass;
127 StatementNode *sn;
[d1625f8]128 ConstantExpr *constant;
[2f22cc4]129 ForCtl *fctl;
[7f5566b]130 LabelNode *label;
[b87a5ed]131 InitializerNode *in;
[d9e2280]132 OperKinds op;
[ab57786]133 std::string *str;
[7f5566b]134 bool flag;
[51b73452]135}
136
[097e2b0]137%type<tok> identifier no_01_identifier no_attr_identifier zero_one
[2871210]138%type<tok> identifier_or_type_name no_attr_identifier_or_type_name no_01_identifier_or_type_name
[ab57786]139%type<constant> string_literal
140%type<str> string_literal_list
[51b73452]141
[c11e31c]142// expressions
[d1625f8]143%type<en> constant
[b87a5ed]144%type<en> tuple tuple_expression_list
[9706554]145%type<op> ptrref_operator unary_operator assignment_operator
[b87a5ed]146%type<en> primary_expression postfix_expression unary_expression
147%type<en> cast_expression multiplicative_expression additive_expression shift_expression
148%type<en> relational_expression equality_expression AND_expression exclusive_OR_expression
149%type<en> inclusive_OR_expression logical_AND_expression logical_OR_expression conditional_expression
150%type<en> constant_expression assignment_expression assignment_expression_opt
151%type<en> comma_expression comma_expression_opt
[2f22cc4]152%type<en> argument_expression_list argument_expression assignment_opt
153%type<fctl> for_control_expression
[51b73452]154%type<en> subrange
[7f5566b]155%type<en> asm_operands_opt asm_operands_list asm_operand
156%type<label> label_list
[d1625f8]157%type<en> asm_clobbers_list_opt
[7f5566b]158%type<flag> asm_volatile_opt
[51b73452]159
[c11e31c]160// statements
[b87a5ed]161%type<sn> labeled_statement compound_statement expression_statement selection_statement
[097e2b0]162%type<sn> iteration_statement jump_statement exception_statement asm_statement
[b87a5ed]163%type<sn> fall_through_opt fall_through
164%type<sn> statement statement_list
165%type<sn> block_item_list block_item
[51b73452]166%type<sn> case_clause
[8688ce1]167%type<en> case_value
168%type<sn> case_value_list case_label case_label_list
[b87a5ed]169%type<sn> switch_clause_list_opt switch_clause_list choose_clause_list_opt choose_clause_list
[1d4580a]170%type<sn> handler_list handler_clause finally_clause
[51b73452]171
[c11e31c]172// declarations
[51b73452]173%type<decl> abstract_array abstract_declarator abstract_function abstract_parameter_array
174%type<decl> abstract_parameter_declaration abstract_parameter_declarator abstract_parameter_function
175%type<decl> abstract_parameter_ptr abstract_ptr
176
177%type<aggKey> aggregate_key
178%type<decl> aggregate_name
179
180%type<decl> array_dimension array_parameter_1st_dimension array_parameter_dimension multi_array_dimension
181
182%type<decl> assertion assertion_list_opt
183
184%type<en> bit_subrange_size_opt bit_subrange_size
185
186%type<decl> basic_declaration_specifier basic_type_name basic_type_specifier direct_type_name indirect_type_name
187
[4040425]188%type<decl> trait_declaration trait_declaration_list trait_declaring_list trait_specifier
[51b73452]189
190%type<decl> declaration declaration_list declaration_list_opt declaration_qualifier_list
191%type<decl> declaration_specifier declarator declaring_list
192
193%type<decl> elaborated_type_name
194
195%type<decl> enumerator_list enum_name
196%type<en> enumerator_value_opt
197
198%type<decl> exception_declaration external_definition external_definition_list external_definition_list_opt
199
200%type<decl> field_declaration field_declaration_list field_declarator field_declaring_list
[8780e30]201%type<en> field field_list field_name fraction_constants
[51b73452]202
[4d51835]203%type<decl> external_function_definition function_definition function_array function_declarator function_no_ptr function_ptr
[51b73452]204
205%type<decl> identifier_parameter_array identifier_parameter_declarator identifier_parameter_function
206%type<decl> identifier_parameter_ptr identifier_list
207
208%type<decl> new_abstract_array new_abstract_declarator_no_tuple new_abstract_declarator_tuple
209%type<decl> new_abstract_function new_abstract_parameter_declaration new_abstract_parameter_list
210%type<decl> new_abstract_ptr new_abstract_tuple
211
212%type<decl> new_array_parameter_1st_dimension
213
[4040425]214%type<decl> new_trait_declaring_list new_declaration new_field_declaring_list
[51b73452]215%type<decl> new_function_declaration new_function_return new_function_specifier
216
217%type<decl> new_identifier_parameter_array new_identifier_parameter_declarator_no_tuple
218%type<decl> new_identifier_parameter_declarator_tuple new_identifier_parameter_ptr
219
220%type<decl> new_parameter_declaration new_parameter_list new_parameter_type_list new_parameter_type_list_opt
221
222%type<decl> new_typedef_declaration new_variable_declaration new_variable_specifier
223
224%type<decl> old_declaration old_declaration_list old_declaration_list_opt old_function_array
225%type<decl> old_function_declarator old_function_no_ptr old_function_ptr
226
227%type<decl> parameter_declaration parameter_list parameter_type_list
228%type<decl> parameter_type_list_opt
229
[2871210]230%type<decl> paren_identifier paren_type
[51b73452]231
[0da3e2c]232%type<decl> storage_class storage_class_list
[51b73452]233
234%type<decl> sue_declaration_specifier sue_type_specifier
235
236%type<tclass> type_class
237%type<decl> type_declarator type_declarator_name type_declaring_list
238
[2871210]239%type<decl> typedef type_array typedef_declaration typedef_declaration_specifier typedef_expression
240%type<decl> type_function type_parameter_array type_parameter_function type_parameter_ptr
[c6b1105]241%type<decl> type_parameter_redeclarator type_ptr variable_type_redeclarator typedef_type_specifier
[2871210]242%type<decl> typegen_declaration_specifier typegen_type_specifier typegen_name
[51b73452]243
244%type<decl> type_name type_name_no_function
245%type<decl> type_parameter type_parameter_list
246
247%type<en> type_name_list
248
249%type<decl> type_qualifier type_qualifier_name type_qualifier_list type_qualifier_list_opt type_specifier
250
251%type<decl> variable_abstract_array variable_abstract_declarator variable_abstract_function
252%type<decl> variable_abstract_ptr variable_array variable_declarator variable_function variable_ptr
253
[1db21619]254%type<decl> attribute_list_opt attribute_list attribute
255
[c11e31c]256// initializers
[51b73452]257%type<in> initializer initializer_list initializer_opt
258
[c11e31c]259// designators
[51b73452]260%type<en> designator designator_list designation
261
262
[b87a5ed]263// Handle single shift/reduce conflict for dangling else by shifting the ELSE token. For example, this string
264// is ambiguous:
265// .---------. matches IF '(' comma_expression ')' statement
[c11e31c]266// if ( C ) S1 else S2
[b87a5ed]267// `-----------------' matches IF '(' comma_expression ')' statement ELSE statement */
[51b73452]268
[c11e31c]269%nonassoc THEN // rule precedence for IF '(' comma_expression ')' statement
270%nonassoc ELSE // token precedence for start of else clause in IF statement
[51b73452]271
[b87a5ed]272%start translation_unit // parse-tree root
[51b73452]273
274%%
[c11e31c]275//************************* Namespace Management ********************************
276
[de62360d]277// The grammar in the ANSI C standard is not strictly context-free, since it relies upon the distinct terminal symbols
278// "identifier" and "TYPEDEFname" that are lexically identical. While it is possible to write a purely context-free
279// grammar, such a grammar would obscure the relationship between syntactic and semantic constructs. Hence, this
280// grammar uses the ANSI style.
[c11e31c]281//
[de62360d]282// Cforall compounds this problem by introducing type names local to the scope of a declaration (for instance, those
[9059213]283// introduced through "forall" qualifiers), and by introducing "type generators" -- parameterized types. This latter
[de62360d]284// type name creates a third class of identifiers that must be distinguished by the scanner.
[c11e31c]285//
[de62360d]286// Since the scanner cannot distinguish among the different classes of identifiers without some context information, it
[9059213]287// accesses a data structure (TypedefTable) to allow classification of an identifier that it has just read. Semantic
288// actions during the parser update this data structure when the class of identifiers change.
[c11e31c]289//
[de62360d]290// Because the Cforall language is block-scoped, there is the possibility that an identifier can change its class in a
291// local scope; it must revert to its original class at the end of the block. Since type names can be local to a
292// particular declaration, each declaration is itself a scope. This requires distinguishing between type names that are
293// local to the current declaration scope and those that persist past the end of the declaration (i.e., names defined in
[9059213]294// "typedef" or "otype" declarations).
[c11e31c]295//
[de62360d]296// The non-terminals "push" and "pop" derive the empty string; their only use is to denote the opening and closing of
297// scopes. Every push must have a matching pop, although it is regrettable the matching pairs do not always occur
298// within the same rule. These non-terminals may appear in more contexts than strictly necessary from a semantic point
299// of view. Unfortunately, these extra rules are necessary to prevent parsing conflicts -- the parser may not have
300// enough context and look-ahead information to decide whether a new scope is necessary, so the effect of these extra
301// rules is to open a new scope unconditionally. As the grammar evolves, it may be neccesary to add or move around
302// "push" and "pop" nonterminals to resolve conflicts of this sort.
[51b73452]303
304push:
[ab57786]305 { typedefTable.enterScope(); }
[4d51835]306 ;
[51b73452]307
308pop:
[ab57786]309 { typedefTable.leaveScope(); }
[4d51835]310 ;
[51b73452]311
[c11e31c]312//************************* CONSTANTS ********************************
[51b73452]313
314constant:
[de62360d]315 // ENUMERATIONconstant is not included here; it is treated as a variable with type "enumeration constant".
[ab57786]316 INTEGERconstant { $$ = new ExpressionNode( build_constantInteger( *$1 ) ); }
[1b29996]317 | REALDECIMALconstant { $$ = new ExpressionNode( build_constantFloat( *$1 ) ); }
318 | REALFRACTIONconstant { $$ = new ExpressionNode( build_constantFloat( *$1 ) ); }
[ab57786]319 | FLOATINGconstant { $$ = new ExpressionNode( build_constantFloat( *$1 ) ); }
320 | CHARACTERconstant { $$ = new ExpressionNode( build_constantChar( *$1 ) ); }
[4d51835]321 ;
[51b73452]322
323identifier:
[4d51835]324 IDENTIFIER
325 | ATTR_IDENTIFIER // CFA
326 | zero_one // CFA
327 ;
[51b73452]328
329no_01_identifier:
[4d51835]330 IDENTIFIER
331 | ATTR_IDENTIFIER // CFA
332 ;
[51b73452]333
334no_attr_identifier:
[4d51835]335 IDENTIFIER
[bd85400]336 | zero_one // CFA
[4d51835]337 ;
[51b73452]338
[b87a5ed]339zero_one: // CFA
[4d51835]340 ZERO
341 | ONE
342 ;
[51b73452]343
[ab57786]344string_literal:
345 string_literal_list { $$ = build_constantStr( *$1 ); }
346 ;
347
[b87a5ed]348string_literal_list: // juxtaposed strings are concatenated
[ab57786]349 STRINGliteral { $$ = $1; } // conversion from tok to str
[7bf7fb9]350 | string_literal_list STRINGliteral
351 {
[ab57786]352 appendStr( $1, $2 ); // append 2nd juxtaposed string to 1st
[7bf7fb9]353 delete $2; // allocated by lexer
[ab57786]354 $$ = $1; // conversion from tok to str
[7bf7fb9]355 }
[4d51835]356 ;
[51b73452]357
[c11e31c]358//************************* EXPRESSIONS ********************************
[51b73452]359
360primary_expression:
[4d51835]361 IDENTIFIER // typedef name cannot be used as a variable name
[d1625f8]362 { $$ = new ExpressionNode( build_varref( $1 ) ); }
[4d51835]363 | zero_one
[d1625f8]364 { $$ = new ExpressionNode( build_varref( $1 ) ); }
[1b29996]365 | tuple
[4d51835]366 | '(' comma_expression ')'
367 { $$ = $2; }
368 | '(' compound_statement ')' // GCC, lambda expression
[1b772749]369 { $$ = new ExpressionNode( build_valexpr( $2 ) ); }
[4d51835]370 ;
[51b73452]371
372postfix_expression:
[4d51835]373 primary_expression
374 | postfix_expression '[' push assignment_expression pop ']'
[c6b1105]375 // CFA, comma_expression disallowed in this context because it results in a common user error: subscripting a
[de62360d]376 // matrix with x[i,j] instead of x[i][j]. While this change is not backwards compatible, there seems to be
377 // little advantage to this feature and many disadvantages. It is possible to write x[(i,j)] in CFA, which is
378 // equivalent to the old x[i,j].
[d1625f8]379 { $$ = new ExpressionNode( build_binary_val( OperKinds::Index, $1, $4 ) ); }
[4d51835]380 | postfix_expression '(' argument_expression_list ')'
[d1625f8]381 { $$ = new ExpressionNode( build_func( $1, $3 ) ); }
[4d51835]382 | postfix_expression '.' no_attr_identifier
[d1625f8]383 { $$ = new ExpressionNode( build_fieldSel( $1, build_varref( $3 ) ) ); }
[4d51835]384 | postfix_expression '.' '[' push field_list pop ']' // CFA, tuple field selector
[3b58d91]385 { $$ = new ExpressionNode( build_fieldSel( $1, build_tuple( $5 ) ) ); }
[1b29996]386 | postfix_expression REALFRACTIONconstant // CFA, tuple index
[8780e30]387 { $$ = new ExpressionNode( build_fieldSel( $1, build_field_name_REALFRACTIONconstant( *$2 ) ) ); }
[4d51835]388 | postfix_expression ARROW no_attr_identifier
[d1625f8]389 { $$ = new ExpressionNode( build_pfieldSel( $1, build_varref( $3 ) ) ); }
[4d51835]390 | postfix_expression ARROW '[' push field_list pop ']' // CFA, tuple field selector
[3b58d91]391 { $$ = new ExpressionNode( build_pfieldSel( $1, build_tuple( $5 ) ) ); }
[4d51835]392 | postfix_expression ICR
[d1625f8]393 { $$ = new ExpressionNode( build_unary_ptr( OperKinds::IncrPost, $1 ) ); }
[4d51835]394 | postfix_expression DECR
[d1625f8]395 { $$ = new ExpressionNode( build_unary_ptr( OperKinds::DecrPost, $1 ) ); }
[4d51835]396 | '(' type_name_no_function ')' '{' initializer_list comma_opt '}' // C99
[d1625f8]397 { $$ = new ExpressionNode( build_compoundLiteral( $2, new InitializerNode( $5, true ) ) ); }
[097e2b0]398 | postfix_expression '{' argument_expression_list '}' // CFA
399 {
[9706554]400 Token fn;
[9c23f31]401 fn.str = new std::string( "?{}" ); // location undefined - use location of '{'?
[b6fe7e6]402 $$ = new ExpressionNode( new ConstructorExpr( build_func( new ExpressionNode( build_varref( fn ) ), (ExpressionNode *)( $1 )->set_last( $3 ) ) ) );
[097e2b0]403 }
[4d51835]404 ;
[51b73452]405
406argument_expression_list:
[4d51835]407 argument_expression
408 | argument_expression_list ',' argument_expression
[1d4580a]409 { $$ = (ExpressionNode *)( $1->set_last( $3 )); }
[4d51835]410 ;
[51b73452]411
412argument_expression:
[4d51835]413 // empty
414 { $$ = 0; } // use default argument
415 | assignment_expression
416 ;
[b87a5ed]417
418field_list: // CFA, tuple field selector
[4d51835]419 field
[1d4580a]420 | field_list ',' field { $$ = (ExpressionNode *)$1->set_last( $3 ); }
[4d51835]421 ;
[b87a5ed]422
423field: // CFA, tuple field selector
[faddbd8]424 field_name
[1b29996]425 | REALDECIMALconstant field
[8780e30]426 { $$ = new ExpressionNode( build_fieldSel( new ExpressionNode( build_field_name_REALDECIMALconstant( *$1 ) ), maybeMoveBuild<Expression>( $2 ) ) ); }
[1b29996]427 | REALDECIMALconstant '[' push field_list pop ']'
[8780e30]428 { $$ = new ExpressionNode( build_fieldSel( new ExpressionNode( build_field_name_REALDECIMALconstant( *$1 ) ), build_tuple( $4 ) ) ); }
[faddbd8]429 | field_name '.' field
[bf32bb8]430 { $$ = new ExpressionNode( build_fieldSel( $1, maybeMoveBuild<Expression>( $3 ) ) ); }
[faddbd8]431 | field_name '.' '[' push field_list pop ']'
[bf32bb8]432 { $$ = new ExpressionNode( build_fieldSel( $1, build_tuple( $5 ) ) ); }
[faddbd8]433 | field_name ARROW field
[bf32bb8]434 { $$ = new ExpressionNode( build_pfieldSel( $1, maybeMoveBuild<Expression>( $3 ) ) ); }
[faddbd8]435 | field_name ARROW '[' push field_list pop ']'
[bf32bb8]436 { $$ = new ExpressionNode( build_pfieldSel( $1, build_tuple( $5 ) ) ); }
[4d51835]437 ;
[51b73452]438
[8780e30]439field_name:
[1b29996]440 INTEGERconstant fraction_constants
[8780e30]441 { $$ = new ExpressionNode( build_field_name_fraction_constants( build_constantInteger( *$1 ), $2 ) ); }
[1b29996]442 | FLOATINGconstant fraction_constants
[8780e30]443 { $$ = new ExpressionNode( build_field_name_fraction_constants( build_field_name_FLOATINGconstant( *$1 ), $2 ) ); }
[1b29996]444 | no_attr_identifier fraction_constants
[8780e30]445 { $$ = new ExpressionNode( build_field_name_fraction_constants( build_varref( $1 ), $2 ) ); }
[1b29996]446 ;
447
448fraction_constants:
449 // empty
[8780e30]450 { $$ = nullptr; }
[1b29996]451 | fraction_constants REALFRACTIONconstant
[8780e30]452 {
453 Expression * constant = build_field_name_REALFRACTIONconstant( *$2 );
454 $$ = $1 != nullptr ? new ExpressionNode( build_fieldSel( $1, constant ) ) : new ExpressionNode( constant );
455 }
[faddbd8]456 ;
457
[51b73452]458unary_expression:
[4d51835]459 postfix_expression
[c6b1105]460 // first location where constant/string can have operator applied: sizeof 3/sizeof "abc" still requires
461 // semantics checks, e.g., ++3, 3--, *3, &&3
[51b1202]462 | constant
463 { $$ = $1; }
[ab57786]464 | string_literal
[d1625f8]465 { $$ = new ExpressionNode( $1 ); }
[4d51835]466 | EXTENSION cast_expression // GCC
[e04ef3a]467 { $$ = $2->set_extension( true ); }
[c6b1105]468 // '*' ('&') is separated from unary_operator because of shift/reduce conflict in:
469 // { * X; } // dereference X
470 // { * int X; } // CFA declaration of pointer to int
[51e076e]471 | ptrref_operator cast_expression // CFA
[9706554]472 {
473 switch ( $1 ) {
[d9e2280]474 case OperKinds::AddressOf:
[d1625f8]475 $$ = new ExpressionNode( build_addressOf( $2 ) );
[9706554]476 break;
[d9e2280]477 case OperKinds::PointTo:
[d1625f8]478 $$ = new ExpressionNode( build_unary_val( $1, $2 ) );
[9706554]479 break;
480 default:
481 assert( false );
482 }
483 }
[4d51835]484 | unary_operator cast_expression
[d1625f8]485 { $$ = new ExpressionNode( build_unary_val( $1, $2 ) ); }
[dd51906]486 | ICR unary_expression
[d1625f8]487 { $$ = new ExpressionNode( build_unary_ptr( OperKinds::Incr, $2 ) ); }
[dd51906]488 | DECR unary_expression
[d1625f8]489 { $$ = new ExpressionNode( build_unary_ptr( OperKinds::Decr, $2 ) ); }
[4d51835]490 | SIZEOF unary_expression
[d1625f8]491 { $$ = new ExpressionNode( build_sizeOfexpr( $2 ) ); }
[4d51835]492 | SIZEOF '(' type_name_no_function ')'
[d1625f8]493 { $$ = new ExpressionNode( build_sizeOftype( $3 ) ); }
494 | ALIGNOF unary_expression // GCC, variable alignment
495 { $$ = new ExpressionNode( build_alignOfexpr( $2 ) ); }
496 | ALIGNOF '(' type_name_no_function ')' // GCC, type alignment
497 { $$ = new ExpressionNode( build_alignOftype( $3 ) ); }
[5721a6d]498 | OFFSETOF '(' type_name_no_function ',' no_attr_identifier ')'
[d1625f8]499 { $$ = new ExpressionNode( build_offsetOf( $3, build_varref( $5 ) ) ); }
[4d51835]500 | ATTR_IDENTIFIER
[d1625f8]501 { $$ = new ExpressionNode( build_attrexpr( build_varref( $1 ), nullptr ) ); }
[4d51835]502 | ATTR_IDENTIFIER '(' argument_expression ')'
[d1625f8]503 { $$ = new ExpressionNode( build_attrexpr( build_varref( $1 ), $3 ) ); }
504 | ATTR_IDENTIFIER '(' type_name ')'
505 { $$ = new ExpressionNode( build_attrtype( build_varref( $1 ), $3 ) ); }
[c6b1105]506// | ANDAND IDENTIFIER // GCC, address of label
[d1625f8]507// { $$ = new ExpressionNode( new OperatorNode( OperKinds::LabelAddress ), new ExpressionNode( build_varref( $2, true ) ); }
[4d51835]508 ;
[51b73452]509
[dd51906]510ptrref_operator:
[d9e2280]511 '*' { $$ = OperKinds::PointTo; }
512 | '&' { $$ = OperKinds::AddressOf; }
[c6b1105]513 // GCC, address of label must be handled by semantic check for ref,ref,label
[d9e2280]514// | ANDAND { $$ = OperKinds::And; }
[dd51906]515 ;
516
[51b73452]517unary_operator:
[d9e2280]518 '+' { $$ = OperKinds::UnPlus; }
519 | '-' { $$ = OperKinds::UnMinus; }
520 | '!' { $$ = OperKinds::Neg; }
521 | '~' { $$ = OperKinds::BitNeg; }
[4d51835]522 ;
[51b73452]523
524cast_expression:
[4d51835]525 unary_expression
526 | '(' type_name_no_function ')' cast_expression
[d1625f8]527 { $$ = new ExpressionNode( build_cast( $2, $4 ) ); }
[1b29996]528// | '(' type_name_no_function ')' tuple
529// { $$ = new ExpressionNode( build_cast( $2, $4 ) ); }
[4d51835]530 ;
[51b73452]531
532multiplicative_expression:
[4d51835]533 cast_expression
534 | multiplicative_expression '*' cast_expression
[d1625f8]535 { $$ = new ExpressionNode( build_binary_val( OperKinds::Mul, $1, $3 ) ); }
[4d51835]536 | multiplicative_expression '/' cast_expression
[d1625f8]537 { $$ = new ExpressionNode( build_binary_val( OperKinds::Div, $1, $3 ) ); }
[4d51835]538 | multiplicative_expression '%' cast_expression
[d1625f8]539 { $$ = new ExpressionNode( build_binary_val( OperKinds::Mod, $1, $3 ) ); }
[4d51835]540 ;
[51b73452]541
542additive_expression:
[4d51835]543 multiplicative_expression
544 | additive_expression '+' multiplicative_expression
[d1625f8]545 { $$ = new ExpressionNode( build_binary_val( OperKinds::Plus, $1, $3 ) ); }
[4d51835]546 | additive_expression '-' multiplicative_expression
[d1625f8]547 { $$ = new ExpressionNode( build_binary_val( OperKinds::Minus, $1, $3 ) ); }
[4d51835]548 ;
[51b73452]549
550shift_expression:
[4d51835]551 additive_expression
552 | shift_expression LS additive_expression
[d1625f8]553 { $$ = new ExpressionNode( build_binary_val( OperKinds::LShift, $1, $3 ) ); }
[4d51835]554 | shift_expression RS additive_expression
[d1625f8]555 { $$ = new ExpressionNode( build_binary_val( OperKinds::RShift, $1, $3 ) ); }
[4d51835]556 ;
[51b73452]557
558relational_expression:
[4d51835]559 shift_expression
560 | relational_expression '<' shift_expression
[d1625f8]561 { $$ = new ExpressionNode( build_binary_val( OperKinds::LThan, $1, $3 ) ); }
[4d51835]562 | relational_expression '>' shift_expression
[d1625f8]563 { $$ = new ExpressionNode( build_binary_val( OperKinds::GThan, $1, $3 ) ); }
[4d51835]564 | relational_expression LE shift_expression
[d1625f8]565 { $$ = new ExpressionNode( build_binary_val( OperKinds::LEThan, $1, $3 ) ); }
[4d51835]566 | relational_expression GE shift_expression
[d1625f8]567 { $$ = new ExpressionNode( build_binary_val( OperKinds::GEThan, $1, $3 ) ); }
[4d51835]568 ;
[51b73452]569
570equality_expression:
[4d51835]571 relational_expression
572 | equality_expression EQ relational_expression
[d1625f8]573 { $$ = new ExpressionNode( build_binary_val( OperKinds::Eq, $1, $3 ) ); }
[4d51835]574 | equality_expression NE relational_expression
[d1625f8]575 { $$ = new ExpressionNode( build_binary_val( OperKinds::Neq, $1, $3 ) ); }
[4d51835]576 ;
[51b73452]577
578AND_expression:
[4d51835]579 equality_expression
580 | AND_expression '&' equality_expression
[d1625f8]581 { $$ = new ExpressionNode( build_binary_val( OperKinds::BitAnd, $1, $3 ) ); }
[4d51835]582 ;
[51b73452]583
584exclusive_OR_expression:
[4d51835]585 AND_expression
586 | exclusive_OR_expression '^' AND_expression
[d1625f8]587 { $$ = new ExpressionNode( build_binary_val( OperKinds::Xor, $1, $3 ) ); }
[4d51835]588 ;
[51b73452]589
590inclusive_OR_expression:
[4d51835]591 exclusive_OR_expression
592 | inclusive_OR_expression '|' exclusive_OR_expression
[d1625f8]593 { $$ = new ExpressionNode( build_binary_val( OperKinds::BitOr, $1, $3 ) ); }
[4d51835]594 ;
[51b73452]595
596logical_AND_expression:
[4d51835]597 inclusive_OR_expression
598 | logical_AND_expression ANDAND inclusive_OR_expression
[d1625f8]599 { $$ = new ExpressionNode( build_and_or( $1, $3, true ) ); }
[4d51835]600 ;
[51b73452]601
602logical_OR_expression:
[4d51835]603 logical_AND_expression
604 | logical_OR_expression OROR logical_AND_expression
[d1625f8]605 { $$ = new ExpressionNode( build_and_or( $1, $3, false ) ); }
[4d51835]606 ;
[51b73452]607
608conditional_expression:
[4d51835]609 logical_OR_expression
610 | logical_OR_expression '?' comma_expression ':' conditional_expression
[d1625f8]611 { $$ = new ExpressionNode( build_cond( $1, $3, $5 ) ); }
[d9e2280]612 // FIX ME: this hack computes $1 twice
[4d51835]613 | logical_OR_expression '?' /* empty */ ':' conditional_expression // GCC, omitted first operand
[d1625f8]614 { $$ = new ExpressionNode( build_cond( $1, $1, $4 ) ); }
[1b29996]615// | logical_OR_expression '?' comma_expression ':' tuple // CFA, tuple expression
616// { $$ = new ExpressionNode( build_cond( $1, $3, $5 ) ); }
[4d51835]617 ;
[51b73452]618
619constant_expression:
[4d51835]620 conditional_expression
621 ;
[51b73452]622
623assignment_expression:
[4d51835]624 // CFA, assignment is separated from assignment_operator to ensure no assignment operations for tuples
625 conditional_expression
626 | unary_expression assignment_operator assignment_expression
[d1625f8]627 { $$ = new ExpressionNode( build_binary_ptr( $2, $1, $3 ) ); }
[1b29996]628// | tuple assignment_opt // CFA, tuple expression
629// { $$ = ( $2 == 0 ) ? $1 : new ExpressionNode( build_binary_ptr( OperKinds::Assign, $1, $2 ) ); }
[4d51835]630 ;
[51b73452]631
632assignment_expression_opt:
[4d51835]633 // empty
[d1625f8]634 { $$ = nullptr; }
[4d51835]635 | assignment_expression
636 ;
[b87a5ed]637
[9706554]638assignment_operator:
[d9e2280]639 '=' { $$ = OperKinds::Assign; }
[a839867]640 | ATassign { $$ = OperKinds::AtAssn; }
[d9e2280]641 | MULTassign { $$ = OperKinds::MulAssn; }
642 | DIVassign { $$ = OperKinds::DivAssn; }
643 | MODassign { $$ = OperKinds::ModAssn; }
644 | PLUSassign { $$ = OperKinds::PlusAssn; }
645 | MINUSassign { $$ = OperKinds::MinusAssn; }
646 | LSassign { $$ = OperKinds::LSAssn; }
647 | RSassign { $$ = OperKinds::RSAssn; }
648 | ANDassign { $$ = OperKinds::AndAssn; }
649 | ERassign { $$ = OperKinds::ERAssn; }
650 | ORassign { $$ = OperKinds::OrAssn; }
[413ad05]651 ;
[9706554]652
[b87a5ed]653tuple: // CFA, tuple
[de62360d]654 // CFA, one assignment_expression is factored out of comma_expression to eliminate a shift/reduce conflict with
655 // comma_expression in new_identifier_parameter_array and new_abstract_array
[1b29996]656// '[' ']'
657// { $$ = new ExpressionNode( build_tuple() ); }
658// '[' push assignment_expression pop ']'
659// { $$ = new ExpressionNode( build_tuple( $3 ) ); }
660 '[' push ',' tuple_expression_list pop ']'
[1d4580a]661 { $$ = new ExpressionNode( build_tuple( (ExpressionNode *)(new ExpressionNode( nullptr ) )->set_last( $4 ) ) ); }
[4d51835]662 | '[' push assignment_expression ',' tuple_expression_list pop ']'
[1d4580a]663 { $$ = new ExpressionNode( build_tuple( (ExpressionNode *)$3->set_last( $5 ) ) ); }
[4d51835]664 ;
[51b73452]665
666tuple_expression_list:
[4d51835]667 assignment_expression_opt
668 | tuple_expression_list ',' assignment_expression_opt
[1d4580a]669 { $$ = (ExpressionNode *)$1->set_last( $3 ); }
[4d51835]670 ;
[51b73452]671
672comma_expression:
[4d51835]673 assignment_expression
[9706554]674 | comma_expression ',' assignment_expression
[d1625f8]675 { $$ = new ExpressionNode( build_comma( $1, $3 ) ); }
[4d51835]676 ;
[51b73452]677
678comma_expression_opt:
[4d51835]679 // empty
680 { $$ = 0; }
681 | comma_expression
682 ;
[51b73452]683
[c11e31c]684//*************************** STATEMENTS *******************************
[51b73452]685
686statement:
[4d51835]687 labeled_statement
688 | compound_statement
689 | expression_statement { $$ = $1; }
690 | selection_statement
691 | iteration_statement
692 | jump_statement
693 | exception_statement
694 | asm_statement
[097e2b0]695 | '^' postfix_expression '{' argument_expression_list '}' ';' // CFA
696 {
[d9e2280]697 Token fn;
[2298f728]698 fn.str = new string( "^?{}" ); // location undefined
[e82aa9df]699 $$ = new StatementNode( build_expr( new ExpressionNode( build_func( new ExpressionNode( build_varref( fn ) ), (ExpressionNode *)( $2 )->set_last( $4 ) ) ) ) );
[097e2b0]700 }
[4d51835]701 ;
[51b73452]702
703labeled_statement:
[c6b1105]704 // labels cannot be identifiers 0 or 1
705 IDENTIFIER ':' attribute_list_opt statement
[1db21619]706 {
707 $$ = $4->add_label( $1 );
708 }
[4d51835]709 ;
[51b73452]710
711compound_statement:
[4d51835]712 '{' '}'
[e82aa9df]713 { $$ = new StatementNode( build_compound( (StatementNode *)0 ) ); }
[4d51835]714 | '{'
[de62360d]715 // Two scopes are necessary because the block itself has a scope, but every declaration within the block also
716 // requires its own scope
[4d51835]717 push push
[51b1202]718 local_label_declaration_opt // GCC, local labels
[4d51835]719 block_item_list pop '}' // C99, intermix declarations and statements
[e82aa9df]720 { $$ = new StatementNode( build_compound( $5 ) ); }
[4d51835]721 ;
[b87a5ed]722
723block_item_list: // C99
[4d51835]724 block_item
725 | block_item_list push block_item
[1d4580a]726 { if ( $1 != 0 ) { $1->set_last( $3 ); $$ = $1; } }
[4d51835]727 ;
[51b73452]728
729block_item:
[4d51835]730 declaration // CFA, new & old style declarations
[e82aa9df]731 { $$ = new StatementNode( $1 ); }
[4d51835]732 | EXTENSION declaration // GCC
[8e9cbb2]733 { // mark all fields in list
[926af74]734 for ( DeclarationNode *iter = $2; iter != nullptr; iter = (DeclarationNode *)iter->get_next() )
[8e9cbb2]735 iter->set_extension( true );
[e82aa9df]736 $$ = new StatementNode( $2 );
[8e9cbb2]737 }
[4d51835]738 | function_definition
[e82aa9df]739 { $$ = new StatementNode( $1 ); }
[4d51835]740 | statement pop
741 ;
[51b73452]742
743statement_list:
[4d51835]744 statement
745 | statement_list statement
[1d4580a]746 { if ( $1 != 0 ) { $1->set_last( $2 ); $$ = $1; } }
[4d51835]747 ;
[51b73452]748
749expression_statement:
[4d51835]750 comma_expression_opt ';'
[e82aa9df]751 { $$ = new StatementNode( build_expr( $1 ) ); }
[4d51835]752 ;
[51b73452]753
754selection_statement:
[4d51835]755 IF '(' comma_expression ')' statement %prec THEN
756 // explicitly deal with the shift/reduce conflict on if/else
[e82aa9df]757 { $$ = new StatementNode( build_if( $3, $5, nullptr ) ); }
[4d51835]758 | IF '(' comma_expression ')' statement ELSE statement
[e82aa9df]759 { $$ = new StatementNode( build_if( $3, $5, $7 ) ); }
[4d51835]760 | SWITCH '(' comma_expression ')' case_clause // CFA
[e82aa9df]761 { $$ = new StatementNode( build_switch( $3, $5 ) ); }
[4d51835]762 | SWITCH '(' comma_expression ')' '{' push declaration_list_opt switch_clause_list_opt '}' // CFA
[4e06c1e]763 {
[e82aa9df]764 StatementNode *sw = new StatementNode( build_switch( $3, $8 ) );
[4e06c1e]765 // The semantics of the declaration list is changed to include associated initialization, which is performed
766 // *before* the transfer to the appropriate case clause by hoisting the declarations into a compound
767 // statement around the switch. Statements after the initial declaration list can never be executed, and
[8688ce1]768 // therefore, are removed from the grammar even though C allows it. The change also applies to choose
769 // statement.
[e82aa9df]770 $$ = $7 != 0 ? new StatementNode( build_compound( (StatementNode *)((new StatementNode( $7 ))->set_last( sw )) ) ) : sw;
[4e06c1e]771 }
[4d51835]772 | CHOOSE '(' comma_expression ')' case_clause // CFA
[e82aa9df]773 { $$ = new StatementNode( build_switch( $3, $5 ) ); }
[4d51835]774 | CHOOSE '(' comma_expression ')' '{' push declaration_list_opt choose_clause_list_opt '}' // CFA
[4e06c1e]775 {
[e82aa9df]776 StatementNode *sw = new StatementNode( build_switch( $3, $8 ) );
777 $$ = $7 != 0 ? new StatementNode( build_compound( (StatementNode *)((new StatementNode( $7 ))->set_last( sw )) ) ) : sw;
[4e06c1e]778 }
[4d51835]779 ;
[b87a5ed]780
[de62360d]781// CASE and DEFAULT clauses are only allowed in the SWITCH statement, precluding Duff's device. In addition, a case
782// clause allows a list of values and subranges.
[b87a5ed]783
784case_value: // CFA
[4d51835]785 constant_expression { $$ = $1; }
786 | constant_expression ELLIPSIS constant_expression // GCC, subrange
[d1625f8]787 { $$ = new ExpressionNode( build_range( $1, $3 ) ); }
[4d51835]788 | subrange // CFA, subrange
789 ;
[b87a5ed]790
791case_value_list: // CFA
[e82aa9df]792 case_value { $$ = new StatementNode( build_case( $1 ) ); }
[064e3ff]793 // convert case list, e.g., "case 1, 3, 5:" into "case 1: case 3: case 5"
[e82aa9df]794 | case_value_list ',' case_value { $$ = (StatementNode *)($1->set_last( new StatementNode( build_case( $3 ) ) ) ); }
[4d51835]795 ;
[b87a5ed]796
797case_label: // CFA
[8688ce1]798 CASE case_value_list ':' { $$ = $2; }
[e82aa9df]799 | DEFAULT ':' { $$ = new StatementNode( build_default() ); }
[4d51835]800 // A semantic check is required to ensure only one default clause per switch/choose statement.
801 ;
[b87a5ed]802
803case_label_list: // CFA
[4d51835]804 case_label
[1d4580a]805 | case_label_list case_label { $$ = (StatementNode *)( $1->set_last( $2 )); }
[4d51835]806 ;
[b87a5ed]807
808case_clause: // CFA
[e82aa9df]809 case_label_list statement { $$ = $1->append_last_case( new StatementNode( build_compound( $2 ) ) ); }
[4d51835]810 ;
[b87a5ed]811
812switch_clause_list_opt: // CFA
[4d51835]813 // empty
814 { $$ = 0; }
815 | switch_clause_list
816 ;
[b87a5ed]817
818switch_clause_list: // CFA
[4d51835]819 case_label_list statement_list
[e82aa9df]820 { $$ = $1->append_last_case( new StatementNode( build_compound( $2 ) ) ); }
[4d51835]821 | switch_clause_list case_label_list statement_list
[e82aa9df]822 { $$ = (StatementNode *)( $1->set_last( $2->append_last_case( new StatementNode( build_compound( $3 ) ) ) ) ); }
[4d51835]823 ;
[b87a5ed]824
825choose_clause_list_opt: // CFA
[4d51835]826 // empty
827 { $$ = 0; }
828 | choose_clause_list
829 ;
[b87a5ed]830
831choose_clause_list: // CFA
[4d51835]832 case_label_list fall_through
[de62360d]833 { $$ = $1->append_last_case( $2 ); }
[4d51835]834 | case_label_list statement_list fall_through_opt
[e82aa9df]835 { $$ = $1->append_last_case( new StatementNode( build_compound( (StatementNode *)$2->set_last( $3 ) ) ) ); }
[4d51835]836 | choose_clause_list case_label_list fall_through
[1d4580a]837 { $$ = (StatementNode *)( $1->set_last( $2->append_last_case( $3 ))); }
[4d51835]838 | choose_clause_list case_label_list statement_list fall_through_opt
[e82aa9df]839 { $$ = (StatementNode *)( $1->set_last( $2->append_last_case( new StatementNode( build_compound( (StatementNode *)$3->set_last( $4 ) ) ) ) ) ); }
[4d51835]840 ;
[b87a5ed]841
842fall_through_opt: // CFA
[4d51835]843 // empty
[ab57786]844 { $$ = new StatementNode( build_branch( BranchStmt::Break ) ); } // insert implicit break
[4d51835]845 | fall_through
846 ;
[b87a5ed]847
848fall_through: // CFA
[4e06c1e]849 FALLTHRU
850 { $$ = 0; }
851 | FALLTHRU ';'
852 { $$ = 0; }
[4d51835]853 ;
[51b73452]854
855iteration_statement:
[4d51835]856 WHILE '(' comma_expression ')' statement
[e82aa9df]857 { $$ = new StatementNode( build_while( $3, $5 ) ); }
[4d51835]858 | DO statement WHILE '(' comma_expression ')' ';'
[4ed70597]859 { $$ = new StatementNode( build_while( $5, $2, true ) ); }
[4d51835]860 | FOR '(' push for_control_expression ')' statement
[e82aa9df]861 { $$ = new StatementNode( build_for( $4, $6 ) ); }
[4d51835]862 ;
[51b73452]863
864for_control_expression:
[4d51835]865 comma_expression_opt pop ';' comma_expression_opt ';' comma_expression_opt
[2f22cc4]866 { $$ = new ForCtl( $1, $4, $6 ); }
[4d51835]867 | declaration comma_expression_opt ';' comma_expression_opt // C99
[2f22cc4]868 { $$ = new ForCtl( $1, $2, $4 ); }
[d1625f8]869 ;
[51b73452]870
871jump_statement:
[c6b1105]872 GOTO IDENTIFIER ';'
[ab57786]873 { $$ = new StatementNode( build_branch( $2, BranchStmt::Goto ) ); }
[4d51835]874 | GOTO '*' comma_expression ';' // GCC, computed goto
[4e06c1e]875 // The syntax for the GCC computed goto violates normal expression precedence, e.g., goto *i+3; => goto *(i+3);
[de62360d]876 // whereas normal operator precedence yields goto (*i)+3;
[e82aa9df]877 { $$ = new StatementNode( build_computedgoto( $3 ) ); }
[4d51835]878 | CONTINUE ';'
[de62360d]879 // A semantic check is required to ensure this statement appears only in the body of an iteration statement.
[ab57786]880 { $$ = new StatementNode( build_branch( BranchStmt::Continue ) ); }
[4e06c1e]881 | CONTINUE IDENTIFIER ';' // CFA, multi-level continue
[de62360d]882 // A semantic check is required to ensure this statement appears only in the body of an iteration statement, and
883 // the target of the transfer appears only at the start of an iteration statement.
[ab57786]884 { $$ = new StatementNode( build_branch( $2, BranchStmt::Continue ) ); }
[4d51835]885 | BREAK ';'
[de62360d]886 // A semantic check is required to ensure this statement appears only in the body of an iteration statement.
[ab57786]887 { $$ = new StatementNode( build_branch( BranchStmt::Break ) ); }
[4e06c1e]888 | BREAK IDENTIFIER ';' // CFA, multi-level exit
[de62360d]889 // A semantic check is required to ensure this statement appears only in the body of an iteration statement, and
890 // the target of the transfer appears only at the start of an iteration statement.
[ab57786]891 { $$ = new StatementNode( build_branch( $2, BranchStmt::Break ) ); }
[4d51835]892 | RETURN comma_expression_opt ';'
[e82aa9df]893 { $$ = new StatementNode( build_return( $2 ) ); }
[8cc5cb0]894 | THROW assignment_expression_opt ';' // handles rethrow
[e82aa9df]895 { $$ = new StatementNode( build_throw( $2 ) ); }
[8cc5cb0]896 | THROWRESUME assignment_expression_opt ';' // handles reresume
[e82aa9df]897 { $$ = new StatementNode( build_throw( $2 ) ); }
[8cc5cb0]898 | THROWRESUME assignment_expression_opt AT assignment_expression ';' // handles reresume
[e82aa9df]899 { $$ = new StatementNode( build_throw( $2 ) ); }
[4d51835]900 ;
[51b73452]901
902exception_statement:
[4d51835]903 TRY compound_statement handler_list
[e82aa9df]904 { $$ = new StatementNode( build_try( $2, $3, 0 ) ); }
[4d51835]905 | TRY compound_statement finally_clause
[e82aa9df]906 { $$ = new StatementNode( build_try( $2, 0, $3 ) ); }
[4d51835]907 | TRY compound_statement handler_list finally_clause
[e82aa9df]908 { $$ = new StatementNode( build_try( $2, $3, $4 ) ); }
[4d51835]909 ;
[51b73452]910
911handler_list:
[4d51835]912 handler_clause
[de62360d]913 // ISO/IEC 9899:1999 Section 15.3(6 ) If present, a "..." handler shall be the last handler for its try block.
[4d51835]914 | CATCH '(' ELLIPSIS ')' compound_statement
[e82aa9df]915 { $$ = new StatementNode( build_catch( 0, $5, true ) ); }
[4d51835]916 | handler_clause CATCH '(' ELLIPSIS ')' compound_statement
[e82aa9df]917 { $$ = (StatementNode *)$1->set_last( new StatementNode( build_catch( 0, $6, true ) ) ); }
[02e5ab6]918 | CATCHRESUME '(' ELLIPSIS ')' compound_statement
[e82aa9df]919 { $$ = new StatementNode( build_catch( 0, $5, true ) ); }
[02e5ab6]920 | handler_clause CATCHRESUME '(' ELLIPSIS ')' compound_statement
[e82aa9df]921 { $$ = (StatementNode *)$1->set_last( new StatementNode( build_catch( 0, $6, true ) ) ); }
[4d51835]922 ;
[51b73452]923
924handler_clause:
[4d51835]925 CATCH '(' push push exception_declaration pop ')' compound_statement pop
[e82aa9df]926 { $$ = new StatementNode( build_catch( $5, $8 ) ); }
[4d51835]927 | handler_clause CATCH '(' push push exception_declaration pop ')' compound_statement pop
[1b772749]928 { $$ = (StatementNode *)$1->set_last( new StatementNode( build_catch( $6, $9 ) ) ); }
[02e5ab6]929 | CATCHRESUME '(' push push exception_declaration pop ')' compound_statement pop
[e82aa9df]930 { $$ = new StatementNode( build_catch( $5, $8 ) ); }
[02e5ab6]931 | handler_clause CATCHRESUME '(' push push exception_declaration pop ')' compound_statement pop
[e82aa9df]932 { $$ = (StatementNode *)$1->set_last( new StatementNode( build_catch( $6, $9 ) ) ); }
[4d51835]933 ;
[51b73452]934
935finally_clause:
[4d51835]936 FINALLY compound_statement
937 {
[e82aa9df]938 $$ = new StatementNode( build_finally( $2 ) );
[4d51835]939 }
940 ;
[51b73452]941
942exception_declaration:
[4d51835]943 // A semantic check is required to ensure type_specifier does not create a new type, e.g.:
944 //
945 // catch ( struct { int i; } x ) ...
946 //
947 // This new type cannot catch any thrown type because of name equivalence among types.
948 type_specifier
949 | type_specifier declarator
950 {
951 typedefTable.addToEnclosingScope( TypedefTable::ID );
952 $$ = $2->addType( $1 );
953 }
954 | type_specifier variable_abstract_declarator
955 { $$ = $2->addType( $1 ); }
956 | new_abstract_declarator_tuple no_attr_identifier // CFA
957 {
958 typedefTable.addToEnclosingScope( TypedefTable::ID );
959 $$ = $1->addName( $2 );
960 }
961 | new_abstract_declarator_tuple // CFA
962 ;
[51b73452]963
964asm_statement:
[ab57786]965 ASM asm_volatile_opt '(' string_literal ')' ';'
[e82aa9df]966 { $$ = new StatementNode( build_asmstmt( $2, $4, 0 ) ); }
[ab57786]967 | ASM asm_volatile_opt '(' string_literal ':' asm_operands_opt ')' ';' // remaining GCC
[e82aa9df]968 { $$ = new StatementNode( build_asmstmt( $2, $4, $6 ) ); }
[ab57786]969 | ASM asm_volatile_opt '(' string_literal ':' asm_operands_opt ':' asm_operands_opt ')' ';'
[e82aa9df]970 { $$ = new StatementNode( build_asmstmt( $2, $4, $6, $8 ) ); }
[ab57786]971 | ASM asm_volatile_opt '(' string_literal ':' asm_operands_opt ':' asm_operands_opt ':' asm_clobbers_list_opt ')' ';'
[e82aa9df]972 { $$ = new StatementNode( build_asmstmt( $2, $4, $6, $8, $10 ) ); }
[ab57786]973 | ASM asm_volatile_opt GOTO '(' string_literal ':' ':' asm_operands_opt ':' asm_clobbers_list_opt ':' label_list ')' ';'
[e82aa9df]974 { $$ = new StatementNode( build_asmstmt( $2, $5, 0, $8, $10, $12 ) ); }
[7f5566b]975 ;
976
977asm_volatile_opt: // GCC
978 // empty
979 { $$ = false; }
980 | VOLATILE
981 { $$ = true; }
[4d51835]982 ;
[b87a5ed]983
984asm_operands_opt: // GCC
[4d51835]985 // empty
[7f5566b]986 { $$ = 0; } // use default argument
[4d51835]987 | asm_operands_list
988 ;
[b87a5ed]989
990asm_operands_list: // GCC
[4d51835]991 asm_operand
992 | asm_operands_list ',' asm_operand
[1d4580a]993 { $$ = (ExpressionNode *)$1->set_last( $3 ); }
[4d51835]994 ;
[b87a5ed]995
996asm_operand: // GCC
[ab57786]997 string_literal '(' constant_expression ')'
[e82aa9df]998 { $$ = new ExpressionNode( build_asmexpr( 0, $1, $3 ) ); }
[ab57786]999 | '[' constant_expression ']' string_literal '(' constant_expression ')'
[1b772749]1000 { $$ = new ExpressionNode( build_asmexpr( $2, $4, $6 ) ); }
[7f5566b]1001 ;
1002
[4e06c1e]1003asm_clobbers_list_opt: // GCC
[7f5566b]1004 // empty
1005 { $$ = 0; } // use default argument
[ab57786]1006 | string_literal
[d1625f8]1007 { $$ = new ExpressionNode( $1 ); }
[ab57786]1008 | asm_clobbers_list_opt ',' string_literal
[e82aa9df]1009 { $$ = (ExpressionNode *)$1->set_last( new ExpressionNode( $3 ) ); }
[4d51835]1010 ;
[b87a5ed]1011
[7f5566b]1012label_list:
1013 no_attr_identifier
[ab57786]1014 {
1015 $$ = new LabelNode(); $$->labels.push_back( *$1 );
1016 delete $1; // allocated by lexer
1017 }
[7f5566b]1018 | label_list ',' no_attr_identifier
[ab57786]1019 {
1020 $$ = $1; $1->labels.push_back( *$3 );
1021 delete $3; // allocated by lexer
1022 }
[4d51835]1023 ;
[51b73452]1024
[c11e31c]1025//******************************* DECLARATIONS *********************************
[51b73452]1026
[b87a5ed]1027declaration_list_opt: // used at beginning of switch statement
[4d51835]1028 pop
1029 { $$ = 0; }
1030 | declaration_list
1031 ;
[51b73452]1032
1033declaration_list:
[4d51835]1034 declaration
1035 | declaration_list push declaration
1036 { $$ = $1->appendList( $3 ); }
1037 ;
[51b73452]1038
[b87a5ed]1039old_declaration_list_opt: // used to declare parameter types in K&R style functions
[4d51835]1040 pop
1041 { $$ = 0; }
1042 | old_declaration_list
1043 ;
[51b73452]1044
1045old_declaration_list:
[4d51835]1046 old_declaration
1047 | old_declaration_list push old_declaration
1048 { $$ = $1->appendList( $3 ); }
1049 ;
[b87a5ed]1050
[51b1202]1051local_label_declaration_opt: // GCC, local label
[4d51835]1052 // empty
[51b1202]1053 | local_label_declaration_list
[4d51835]1054 ;
[b87a5ed]1055
[51b1202]1056local_label_declaration_list: // GCC, local label
1057 LABEL local_label_list ';'
1058 | local_label_declaration_list LABEL local_label_list ';'
[4d51835]1059 ;
[b87a5ed]1060
[51b1202]1061local_label_list: // GCC, local label
[7f5566b]1062 no_attr_identifier_or_type_name {}
[51b1202]1063 | local_label_list ',' no_attr_identifier_or_type_name {}
[4d51835]1064 ;
[b87a5ed]1065
1066declaration: // CFA, new & old style declarations
[4d51835]1067 new_declaration
1068 | old_declaration
1069 ;
[b87a5ed]1070
[de62360d]1071// C declaration syntax is notoriously confusing and error prone. Cforall provides its own type, variable and function
1072// declarations. CFA declarations use the same declaration tokens as in C; however, CFA places declaration modifiers to
1073// the left of the base type, while C declarations place modifiers to the right of the base type. CFA declaration
1074// modifiers are interpreted from left to right and the entire type specification is distributed across all variables in
1075// the declaration list (as in Pascal). ANSI C and the new CFA declarations may appear together in the same program
1076// block, but cannot be mixed within a specific declaration.
[c11e31c]1077//
[b87a5ed]1078// CFA C
1079// [10] int x; int x[10]; // array of 10 integers
1080// [10] * char y; char *y[10]; // array of 10 pointers to char
1081
1082new_declaration: // CFA
[4d51835]1083 new_variable_declaration pop ';'
1084 | new_typedef_declaration pop ';'
1085 | new_function_declaration pop ';'
1086 | type_declaring_list pop ';'
[4040425]1087 | trait_specifier pop ';'
[4d51835]1088 ;
[b87a5ed]1089
1090new_variable_declaration: // CFA
[4d51835]1091 new_variable_specifier initializer_opt
1092 {
1093 typedefTable.addToEnclosingScope( TypedefTable::ID );
[3cfe27f]1094 $$ = $1->addInitializer( $2 );
[4d51835]1095 }
1096 | declaration_qualifier_list new_variable_specifier initializer_opt
[de62360d]1097 // declaration_qualifier_list also includes type_qualifier_list, so a semantic check is necessary to preclude
1098 // them as a type_qualifier cannot appear in that context.
[4d51835]1099 {
1100 typedefTable.addToEnclosingScope( TypedefTable::ID );
[3cfe27f]1101 $$ = $2->addQualifiers( $1 )->addInitializer( $3 );;
[4d51835]1102 }
[2871210]1103 | new_variable_declaration pop ',' push identifier_or_type_name initializer_opt
[4d51835]1104 {
1105 typedefTable.addToEnclosingScope( *$5, TypedefTable::ID );
[3cfe27f]1106 $$ = $1->appendList( $1->cloneType( $5 )->addInitializer( $6 ) );
[4d51835]1107 }
1108 ;
[b87a5ed]1109
1110new_variable_specifier: // CFA
[de62360d]1111 // A semantic check is required to ensure asm_name only appears on declarations with implicit or explicit static
1112 // storage-class
[2871210]1113 new_abstract_declarator_no_tuple identifier_or_type_name asm_name_opt
[4d51835]1114 {
1115 typedefTable.setNextIdentifier( *$2 );
1116 $$ = $1->addName( $2 );
1117 }
[2871210]1118 | new_abstract_tuple identifier_or_type_name asm_name_opt
[4d51835]1119 {
1120 typedefTable.setNextIdentifier( *$2 );
1121 $$ = $1->addName( $2 );
1122 }
[2871210]1123 | type_qualifier_list new_abstract_tuple identifier_or_type_name asm_name_opt
[4d51835]1124 {
1125 typedefTable.setNextIdentifier( *$3 );
1126 $$ = $2->addQualifiers( $1 )->addName( $3 );
1127 }
1128 ;
[b87a5ed]1129
1130new_function_declaration: // CFA
[4d51835]1131 new_function_specifier
1132 {
1133 typedefTable.addToEnclosingScope( TypedefTable::ID );
1134 $$ = $1;
1135 }
1136 | type_qualifier_list new_function_specifier
1137 {
1138 typedefTable.addToEnclosingScope( TypedefTable::ID );
1139 $$ = $2->addQualifiers( $1 );
1140 }
1141 | declaration_qualifier_list new_function_specifier
1142 {
1143 typedefTable.addToEnclosingScope( TypedefTable::ID );
1144 $$ = $2->addQualifiers( $1 );
1145 }
1146 | declaration_qualifier_list type_qualifier_list new_function_specifier
1147 {
1148 typedefTable.addToEnclosingScope( TypedefTable::ID );
1149 $$ = $3->addQualifiers( $1 )->addQualifiers( $2 );
1150 }
[2871210]1151 | new_function_declaration pop ',' push identifier_or_type_name
[4d51835]1152 {
1153 typedefTable.addToEnclosingScope( *$5, TypedefTable::ID );
1154 $$ = $1->appendList( $1->cloneType( $5 ) );
1155 }
1156 ;
[b87a5ed]1157
1158new_function_specifier: // CFA
[1b29996]1159// '[' ']' identifier_or_type_name '(' push new_parameter_type_list_opt pop ')' // S/R conflict
1160// {
1161// $$ = DeclarationNode::newFunction( $3, DeclarationNode::newTuple( 0 ), $6, 0, true );
1162// }
[2871210]1163// '[' ']' identifier '(' push new_parameter_type_list_opt pop ')'
1164// {
1165// typedefTable.setNextIdentifier( *$5 );
1166// $$ = DeclarationNode::newFunction( $5, DeclarationNode::newTuple( 0 ), $8, 0, true );
1167// }
1168// | '[' ']' TYPEDEFname '(' push new_parameter_type_list_opt pop ')'
1169// {
1170// typedefTable.setNextIdentifier( *$5 );
1171// $$ = DeclarationNode::newFunction( $5, DeclarationNode::newTuple( 0 ), $8, 0, true );
1172// }
1173// | '[' ']' typegen_name
1174 // identifier_or_type_name must be broken apart because of the sequence:
[4d51835]1175 //
[2871210]1176 // '[' ']' identifier_or_type_name '(' new_parameter_type_list_opt ')'
[4d51835]1177 // '[' ']' type_specifier
1178 //
[2871210]1179 // type_specifier can resolve to just TYPEDEFname (e.g., typedef int T; int f( T );). Therefore this must be
1180 // flattened to allow lookahead to the '(' without having to reduce identifier_or_type_name.
[1b29996]1181 new_abstract_tuple identifier_or_type_name '(' push new_parameter_type_list_opt pop ')'
[de62360d]1182 // To obtain LR(1 ), this rule must be factored out from function return type (see new_abstract_declarator).
[4d51835]1183 {
1184 $$ = DeclarationNode::newFunction( $2, $1, $5, 0, true );
1185 }
[2871210]1186 | new_function_return identifier_or_type_name '(' push new_parameter_type_list_opt pop ')'
[4d51835]1187 {
1188 $$ = DeclarationNode::newFunction( $2, $1, $5, 0, true );
1189 }
1190 ;
[b87a5ed]1191
1192new_function_return: // CFA
[4d51835]1193 '[' push new_parameter_list pop ']'
1194 { $$ = DeclarationNode::newTuple( $3 ); }
1195 | '[' push new_parameter_list pop ',' push new_abstract_parameter_list pop ']'
[de62360d]1196 // To obtain LR(1 ), the last new_abstract_parameter_list is added into this flattened rule to lookahead to the
1197 // ']'.
[4d51835]1198 { $$ = DeclarationNode::newTuple( $3->appendList( $7 ) ); }
1199 ;
[b87a5ed]1200
1201new_typedef_declaration: // CFA
[4d51835]1202 TYPEDEF new_variable_specifier
1203 {
[de62360d]1204 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1205 $$ = $2->addTypedef();
1206 }
1207 | TYPEDEF new_function_specifier
1208 {
[de62360d]1209 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1210 $$ = $2->addTypedef();
1211 }
1212 | new_typedef_declaration pop ',' push no_attr_identifier
1213 {
[de62360d]1214 typedefTable.addToEnclosingScope( *$5, TypedefTable::TD );
[4d51835]1215 $$ = $1->appendList( $1->cloneType( $5 ) );
1216 }
1217 ;
[b87a5ed]1218
[de62360d]1219// Traditionally typedef is part of storage-class specifier for syntactic convenience only. Here, it is factored out as
1220// a separate form of declaration, which syntactically precludes storage-class specifiers and initialization.
[51b73452]1221
1222typedef_declaration:
[4d51835]1223 TYPEDEF type_specifier declarator
1224 {
[de62360d]1225 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1226 $$ = $3->addType( $2 )->addTypedef();
1227 }
1228 | typedef_declaration pop ',' push declarator
1229 {
[de62360d]1230 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1231 $$ = $1->appendList( $1->cloneBaseType( $5 )->addTypedef() );
1232 }
[de62360d]1233 | type_qualifier_list TYPEDEF type_specifier declarator // remaining OBSOLESCENT (see 2 )
[4d51835]1234 {
[de62360d]1235 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1236 $$ = $4->addType( $3 )->addQualifiers( $1 )->addTypedef();
1237 }
1238 | type_specifier TYPEDEF declarator
1239 {
[de62360d]1240 typedefTable.addToEnclosingScope( TypedefTable::TD );
[4d51835]1241 $$ = $3->addType( $1 )->addTypedef();
1242 }
1243 | type_specifier TYPEDEF type_qualifier_list declarator
1244 {
[de62360d]1245 typedefTable.addToEnclosingScope( TypedefTable::TD );
1246 $$ = $4->addQualifiers( $1 )->addTypedef()->addType( $1 );
[4d51835]1247 }
1248 ;
[b87a5ed]1249
[721f17a]1250typedef_expression:
1251 // GCC, naming expression type: typedef name = exp; gives a name to the type of an expression
[4d51835]1252 TYPEDEF no_attr_identifier '=' assignment_expression
1253 {
[de62360d]1254 typedefTable.addToEnclosingScope( *$2, TypedefTable::TD );
[4d51835]1255 $$ = DeclarationNode::newName( 0 ); // XXX
1256 }
1257 | typedef_expression pop ',' push no_attr_identifier '=' assignment_expression
1258 {
[de62360d]1259 typedefTable.addToEnclosingScope( *$5, TypedefTable::TD );
[4d51835]1260 $$ = DeclarationNode::newName( 0 ); // XXX
1261 }
1262 ;
[51b73452]1263
1264old_declaration:
[4d51835]1265 declaring_list pop ';'
1266 | typedef_declaration pop ';'
1267 | typedef_expression pop ';' // GCC, naming expression type
1268 | sue_declaration_specifier pop ';'
1269 ;
[51b73452]1270
1271declaring_list:
[de62360d]1272 // A semantic check is required to ensure asm_name only appears on declarations with implicit or explicit static
1273 // storage-class
[4d51835]1274 declaration_specifier declarator asm_name_opt initializer_opt
1275 {
1276 typedefTable.addToEnclosingScope( TypedefTable::ID );
[de62360d]1277 $$ = ( $2->addType( $1 ))->addInitializer( $4 );
[4d51835]1278 }
1279 | declaring_list ',' attribute_list_opt declarator asm_name_opt initializer_opt
1280 {
1281 typedefTable.addToEnclosingScope( TypedefTable::ID );
[de62360d]1282 $$ = $1->appendList( $1->cloneBaseType( $4->addInitializer( $6 ) ) );
[4d51835]1283 }
1284 ;
[b87a5ed]1285
1286declaration_specifier: // type specifier + storage class
[4d51835]1287 basic_declaration_specifier
1288 | sue_declaration_specifier
1289 | typedef_declaration_specifier
1290 | typegen_declaration_specifier
1291 ;
[b87a5ed]1292
1293type_specifier: // declaration specifier - storage class
[4d51835]1294 basic_type_specifier
1295 | sue_type_specifier
1296 | typedef_type_specifier
1297 | typegen_type_specifier
1298 ;
[b87a5ed]1299
1300type_qualifier_list_opt: // GCC, used in asm_statement
[4d51835]1301 // empty
1302 { $$ = 0; }
1303 | type_qualifier_list
1304 ;
[51b73452]1305
1306type_qualifier_list:
[de62360d]1307 // A semantic check is necessary to ensure a type qualifier is appropriate for the kind of declaration.
[4d51835]1308 //
[de62360d]1309 // ISO/IEC 9899:1999 Section 6.7.3(4 ) : If the same qualifier appears more than once in the same
1310 // specifier-qualifier-list, either directly or via one or more typedefs, the behavior is the same as if it
1311 // appeared only once.
[4d51835]1312 type_qualifier
1313 | type_qualifier_list type_qualifier
1314 { $$ = $1->addQualifiers( $2 ); }
1315 ;
[51b73452]1316
1317type_qualifier:
[4d51835]1318 type_qualifier_name
1319 | attribute
[c1c1112]1320 //{ $$ = DeclarationNode::newQualifier( DeclarationNode::Attribute ); }
[4d51835]1321 ;
[51b73452]1322
1323type_qualifier_name:
[4d51835]1324 CONST
1325 { $$ = DeclarationNode::newQualifier( DeclarationNode::Const ); }
1326 | RESTRICT
1327 { $$ = DeclarationNode::newQualifier( DeclarationNode::Restrict ); }
1328 | VOLATILE
1329 { $$ = DeclarationNode::newQualifier( DeclarationNode::Volatile ); }
1330 | LVALUE // CFA
1331 { $$ = DeclarationNode::newQualifier( DeclarationNode::Lvalue ); }
1332 | ATOMIC
1333 { $$ = DeclarationNode::newQualifier( DeclarationNode::Atomic ); }
1334 | FORALL '('
1335 {
1336 typedefTable.enterScope();
1337 }
1338 type_parameter_list ')' // CFA
1339 {
1340 typedefTable.leaveScope();
1341 $$ = DeclarationNode::newForall( $4 );
1342 }
1343 ;
[51b73452]1344
1345declaration_qualifier_list:
[4d51835]1346 storage_class_list
[de62360d]1347 | type_qualifier_list storage_class_list // remaining OBSOLESCENT (see 2 )
[4d51835]1348 { $$ = $1->addQualifiers( $2 ); }
1349 | declaration_qualifier_list type_qualifier_list storage_class_list
1350 { $$ = $1->addQualifiers( $2 )->addQualifiers( $3 ); }
1351 ;
[51b73452]1352
1353storage_class_list:
[de62360d]1354 // A semantic check is necessary to ensure a storage class is appropriate for the kind of declaration and that
1355 // only one of each is specified, except for inline, which can appear with the others.
[4d51835]1356 //
[de62360d]1357 // ISO/IEC 9899:1999 Section 6.7.1(2) : At most, one storage-class specifier may be given in the declaration
1358 // specifiers in a declaration.
[4d51835]1359 storage_class
1360 | storage_class_list storage_class
1361 { $$ = $1->addQualifiers( $2 ); }
1362 ;
[51b73452]1363
1364storage_class:
[4d51835]1365 EXTERN
1366 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Extern ); }
1367 | STATIC
1368 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Static ); }
1369 | AUTO
1370 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Auto ); }
1371 | REGISTER
1372 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Register ); }
1373 | INLINE // C99
[c1c1112]1374 //{ $$ = DeclarationNode::newStorageClass( DeclarationNode::Inline ); }
1375 { $$ = new DeclarationNode; $$->isInline = true; }
[4d51835]1376 | FORTRAN // C99
1377 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Fortran ); }
[68cd1ce]1378 | NORETURN // C11
[c1c1112]1379 //{ $$ = DeclarationNode::newStorageClass( DeclarationNode::Noreturn ); }
1380 { $$ = new DeclarationNode; $$->isNoreturn = true; }
[68cd1ce]1381 | THREADLOCAL // C11
1382 { $$ = DeclarationNode::newStorageClass( DeclarationNode::Threadlocal ); }
[4d51835]1383 ;
[51b73452]1384
1385basic_type_name:
[4d51835]1386 CHAR
1387 { $$ = DeclarationNode::newBasicType( DeclarationNode::Char ); }
1388 | DOUBLE
1389 { $$ = DeclarationNode::newBasicType( DeclarationNode::Double ); }
1390 | FLOAT
1391 { $$ = DeclarationNode::newBasicType( DeclarationNode::Float ); }
1392 | INT
1393 { $$ = DeclarationNode::newBasicType( DeclarationNode::Int ); }
1394 | LONG
[5b639ee]1395 { $$ = DeclarationNode::newLength( DeclarationNode::Long ); }
[4d51835]1396 | SHORT
[5b639ee]1397 { $$ = DeclarationNode::newLength( DeclarationNode::Short ); }
[4d51835]1398 | SIGNED
[5b639ee]1399 { $$ = DeclarationNode::newSignedNess( DeclarationNode::Signed ); }
[4d51835]1400 | UNSIGNED
[5b639ee]1401 { $$ = DeclarationNode::newSignedNess( DeclarationNode::Unsigned ); }
[4d51835]1402 | VOID
1403 { $$ = DeclarationNode::newBasicType( DeclarationNode::Void ); }
1404 | BOOL // C99
1405 { $$ = DeclarationNode::newBasicType( DeclarationNode::Bool ); }
1406 | COMPLEX // C99
[5b639ee]1407 { $$ = DeclarationNode::newComplexType( DeclarationNode::Complex ); }
[4d51835]1408 | IMAGINARY // C99
[5b639ee]1409 { $$ = DeclarationNode::newComplexType( DeclarationNode::Imaginary ); }
[90c3b1c]1410 | VALIST // GCC, __builtin_va_list
1411 { $$ = DeclarationNode::newBuiltinType( DeclarationNode::Valist ); }
[4d51835]1412 ;
[51b73452]1413
1414basic_declaration_specifier:
[4d51835]1415 // A semantic check is necessary for conflicting storage classes.
1416 basic_type_specifier
1417 | declaration_qualifier_list basic_type_specifier
1418 { $$ = $2->addQualifiers( $1 ); }
1419 | basic_declaration_specifier storage_class // remaining OBSOLESCENT (see 2)
1420 { $$ = $1->addQualifiers( $2 ); }
1421 | basic_declaration_specifier storage_class type_qualifier_list
1422 { $$ = $1->addQualifiers( $2 )->addQualifiers( $3 ); }
1423 | basic_declaration_specifier storage_class basic_type_specifier
1424 { $$ = $3->addQualifiers( $2 )->addType( $1 ); }
1425 ;
[51b73452]1426
1427basic_type_specifier:
[4d51835]1428 direct_type_name
1429 | type_qualifier_list_opt indirect_type_name type_qualifier_list_opt
1430 { $$ = $2->addQualifiers( $1 )->addQualifiers( $3 ); }
1431 ;
[51b73452]1432
1433direct_type_name:
[4d51835]1434 // A semantic check is necessary for conflicting type qualifiers.
1435 basic_type_name
1436 | type_qualifier_list basic_type_name
1437 { $$ = $2->addQualifiers( $1 ); }
1438 | direct_type_name type_qualifier
1439 { $$ = $1->addQualifiers( $2 ); }
1440 | direct_type_name basic_type_name
1441 { $$ = $1->addType( $2 ); }
1442 ;
[51b73452]1443
1444indirect_type_name:
[4d51835]1445 TYPEOF '(' type_name ')' // GCC: typeof(x) y;
1446 { $$ = $3; }
1447 | TYPEOF '(' comma_expression ')' // GCC: typeof(a+b) y;
1448 { $$ = DeclarationNode::newTypeof( $3 ); }
1449 | ATTR_TYPEGENname '(' type_name ')' // CFA: e.g., @type(x) y;
1450 { $$ = DeclarationNode::newAttr( $1, $3 ); }
1451 | ATTR_TYPEGENname '(' comma_expression ')' // CFA: e.g., @type(a+b) y;
1452 { $$ = DeclarationNode::newAttr( $1, $3 ); }
1453 ;
[51b73452]1454
1455sue_declaration_specifier:
[4d51835]1456 sue_type_specifier
1457 | declaration_qualifier_list sue_type_specifier
1458 { $$ = $2->addQualifiers( $1 ); }
1459 | sue_declaration_specifier storage_class // remaining OBSOLESCENT (see 2)
1460 { $$ = $1->addQualifiers( $2 ); }
1461 | sue_declaration_specifier storage_class type_qualifier_list
1462 { $$ = $1->addQualifiers( $2 )->addQualifiers( $3 ); }
1463 ;
[51b73452]1464
1465sue_type_specifier:
[4d51835]1466 elaborated_type_name // struct, union, enum
1467 | type_qualifier_list elaborated_type_name
1468 { $$ = $2->addQualifiers( $1 ); }
1469 | sue_type_specifier type_qualifier
1470 { $$ = $1->addQualifiers( $2 ); }
1471 ;
[51b73452]1472
1473typedef_declaration_specifier:
[4d51835]1474 typedef_type_specifier
1475 | declaration_qualifier_list typedef_type_specifier
1476 { $$ = $2->addQualifiers( $1 ); }
1477 | typedef_declaration_specifier storage_class // remaining OBSOLESCENT (see 2)
1478 { $$ = $1->addQualifiers( $2 ); }
1479 | typedef_declaration_specifier storage_class type_qualifier_list
1480 { $$ = $1->addQualifiers( $2 )->addQualifiers( $3 ); }
1481 ;
[b87a5ed]1482
1483typedef_type_specifier: // typedef types
[4d51835]1484 TYPEDEFname
1485 { $$ = DeclarationNode::newFromTypedef( $1 ); }
1486 | type_qualifier_list TYPEDEFname
1487 { $$ = DeclarationNode::newFromTypedef( $2 )->addQualifiers( $1 ); }
1488 | typedef_type_specifier type_qualifier
1489 { $$ = $1->addQualifiers( $2 ); }
1490 ;
[51b73452]1491
1492elaborated_type_name:
[4d51835]1493 aggregate_name
1494 | enum_name
1495 ;
[51b73452]1496
1497aggregate_name:
[4d51835]1498 aggregate_key '{' field_declaration_list '}'
[2298f728]1499 { $$ = DeclarationNode::newAggregate( $1, nullptr, nullptr, $3, true ); }
[2871210]1500 | aggregate_key no_attr_identifier_or_type_name
[45161b4d]1501 {
1502 typedefTable.makeTypedef( *$2 );
[2298f728]1503 $$ = DeclarationNode::newAggregate( $1, $2, nullptr, nullptr, false );
[45161b4d]1504 }
1505 | aggregate_key no_attr_identifier_or_type_name
1506 { typedefTable.makeTypedef( *$2 ); }
1507 '{' field_declaration_list '}'
[1b772749]1508 { $$ = DeclarationNode::newAggregate( $1, $2, nullptr, $5, true ); }
[721f17a]1509 | aggregate_key '(' type_name_list ')' '{' field_declaration_list '}' // CFA
[2298f728]1510 { $$ = DeclarationNode::newAggregate( $1, nullptr, $3, $6, false ); }
[2871210]1511 | aggregate_key typegen_name // CFA, S/R conflict
1512 { $$ = $2; }
[4d51835]1513 ;
[51b73452]1514
1515aggregate_key:
[4d51835]1516 STRUCT attribute_list_opt
1517 { $$ = DeclarationNode::Struct; }
1518 | UNION attribute_list_opt
1519 { $$ = DeclarationNode::Union; }
1520 ;
[51b73452]1521
1522field_declaration_list:
[5d125e4]1523 // empty
1524 { $$ = 0; }
[4d51835]1525 | field_declaration_list field_declaration
[5d125e4]1526 { $$ = $1 != 0 ? $1->appendList( $2 ) : $2; }
[4d51835]1527 ;
[51b73452]1528
1529field_declaration:
[4d51835]1530 new_field_declaring_list ';' // CFA, new style field declaration
1531 | EXTENSION new_field_declaring_list ';' // GCC
[ca35c51]1532 { $$ = $2->set_extension( true ); }
[4d51835]1533 | field_declaring_list ';'
1534 | EXTENSION field_declaring_list ';' // GCC
[8e9cbb2]1535 { // mark all fields in list
[926af74]1536 for ( DeclarationNode *iter = $2; iter != nullptr; iter = (DeclarationNode *)iter->get_next() )
[8e9cbb2]1537 iter->set_extension( true );
1538 $$ = $2;
1539 }
[4d51835]1540 ;
[b87a5ed]1541
1542new_field_declaring_list: // CFA, new style field declaration
[4d51835]1543 new_abstract_declarator_tuple // CFA, no field name
[2871210]1544 | new_abstract_declarator_tuple no_attr_identifier_or_type_name
[4d51835]1545 { $$ = $1->addName( $2 ); }
[2871210]1546 | new_field_declaring_list ',' no_attr_identifier_or_type_name
[4d51835]1547 { $$ = $1->appendList( $1->cloneType( $3 ) ); }
1548 | new_field_declaring_list ',' // CFA, no field name
1549 { $$ = $1->appendList( $1->cloneType( 0 ) ); }
1550 ;
[51b73452]1551
1552field_declaring_list:
[4d51835]1553 type_specifier field_declarator
1554 { $$ = $2->addType( $1 ); }
1555 | field_declaring_list ',' attribute_list_opt field_declarator
1556 { $$ = $1->appendList( $1->cloneBaseType( $4 ) ); }
1557 ;
[51b73452]1558
1559field_declarator:
[4d51835]1560 // empty
1561 { $$ = DeclarationNode::newName( 0 ); /* XXX */ } // CFA, no field name
1562 | bit_subrange_size // no field name
1563 { $$ = DeclarationNode::newBitfield( $1 ); }
1564 | variable_declarator bit_subrange_size_opt
1565 // A semantic check is required to ensure bit_subrange only appears on base type int.
1566 { $$ = $1->addBitfield( $2 ); }
[c6b1105]1567 | variable_type_redeclarator bit_subrange_size_opt
[4d51835]1568 // A semantic check is required to ensure bit_subrange only appears on base type int.
1569 { $$ = $1->addBitfield( $2 ); }
1570 | variable_abstract_declarator // CFA, no field name
1571 ;
[51b73452]1572
1573bit_subrange_size_opt:
[4d51835]1574 // empty
1575 { $$ = 0; }
1576 | bit_subrange_size
1577 { $$ = $1; }
1578 ;
[51b73452]1579
1580bit_subrange_size:
[4d51835]1581 ':' constant_expression
1582 { $$ = $2; }
1583 ;
[51b73452]1584
1585enum_key:
[4d51835]1586 ENUM attribute_list_opt
1587 ;
[51b73452]1588
1589enum_name:
[4d51835]1590 enum_key '{' enumerator_list comma_opt '}'
[2298f728]1591 { $$ = DeclarationNode::newEnum( nullptr, $3 ); }
[2871210]1592 | enum_key no_attr_identifier_or_type_name
[45161b4d]1593 {
1594 typedefTable.makeTypedef( *$2 );
1595 $$ = DeclarationNode::newEnum( $2, 0 );
1596 }
1597 | enum_key no_attr_identifier_or_type_name
1598 { typedefTable.makeTypedef( *$2 ); }
1599 '{' enumerator_list comma_opt '}'
1600 { $$ = DeclarationNode::newEnum( $2, $5 ); }
[4d51835]1601 ;
[51b73452]1602
1603enumerator_list:
[2871210]1604 no_attr_identifier_or_type_name enumerator_value_opt
[4d51835]1605 { $$ = DeclarationNode::newEnumConstant( $1, $2 ); }
[2871210]1606 | enumerator_list ',' no_attr_identifier_or_type_name enumerator_value_opt
[4d51835]1607 { $$ = $1->appendList( DeclarationNode::newEnumConstant( $3, $4 ) ); }
1608 ;
[51b73452]1609
1610enumerator_value_opt:
[4d51835]1611 // empty
1612 { $$ = 0; }
1613 | '=' constant_expression
1614 { $$ = $2; }
1615 ;
[51b73452]1616
[c11e31c]1617// Minimum of one parameter after which ellipsis is allowed only at the end.
[51b73452]1618
[b87a5ed]1619new_parameter_type_list_opt: // CFA
[4d51835]1620 // empty
1621 { $$ = 0; }
1622 | new_parameter_type_list
1623 ;
[b87a5ed]1624
1625new_parameter_type_list: // CFA, abstract + real
[4d51835]1626 new_abstract_parameter_list
1627 | new_parameter_list
1628 | new_parameter_list pop ',' push new_abstract_parameter_list
1629 { $$ = $1->appendList( $5 ); }
1630 | new_abstract_parameter_list pop ',' push ELLIPSIS
1631 { $$ = $1->addVarArgs(); }
1632 | new_parameter_list pop ',' push ELLIPSIS
1633 { $$ = $1->addVarArgs(); }
1634 ;
[b87a5ed]1635
1636new_parameter_list: // CFA
[de62360d]1637 // To obtain LR(1) between new_parameter_list and new_abstract_tuple, the last new_abstract_parameter_list is
1638 // factored out from new_parameter_list, flattening the rules to get lookahead to the ']'.
[4d51835]1639 new_parameter_declaration
1640 | new_abstract_parameter_list pop ',' push new_parameter_declaration
1641 { $$ = $1->appendList( $5 ); }
1642 | new_parameter_list pop ',' push new_parameter_declaration
1643 { $$ = $1->appendList( $5 ); }
1644 | new_parameter_list pop ',' push new_abstract_parameter_list pop ',' push new_parameter_declaration
1645 { $$ = $1->appendList( $5 )->appendList( $9 ); }
1646 ;
[b87a5ed]1647
1648new_abstract_parameter_list: // CFA, new & old style abstract
[4d51835]1649 new_abstract_parameter_declaration
1650 | new_abstract_parameter_list pop ',' push new_abstract_parameter_declaration
1651 { $$ = $1->appendList( $5 ); }
1652 ;
[51b73452]1653
1654parameter_type_list_opt:
[4d51835]1655 // empty
1656 { $$ = 0; }
1657 | parameter_type_list
1658 ;
[51b73452]1659
1660parameter_type_list:
[4d51835]1661 parameter_list
1662 | parameter_list pop ',' push ELLIPSIS
1663 { $$ = $1->addVarArgs(); }
1664 ;
[b87a5ed]1665
1666parameter_list: // abstract + real
[4d51835]1667 abstract_parameter_declaration
1668 | parameter_declaration
1669 | parameter_list pop ',' push abstract_parameter_declaration
1670 { $$ = $1->appendList( $5 ); }
1671 | parameter_list pop ',' push parameter_declaration
1672 { $$ = $1->appendList( $5 ); }
1673 ;
[51b73452]1674
[de62360d]1675// Provides optional identifier names (abstract_declarator/variable_declarator), no initialization, different semantics
[2871210]1676// for typedef name by using type_parameter_redeclarator instead of typedef_redeclarator, and function prototypes.
[51b73452]1677
[b87a5ed]1678new_parameter_declaration: // CFA, new & old style parameter declaration
[4d51835]1679 parameter_declaration
[2871210]1680 | new_identifier_parameter_declarator_no_tuple identifier_or_type_name assignment_opt
[4d51835]1681 { $$ = $1->addName( $2 ); }
[2871210]1682 | new_abstract_tuple identifier_or_type_name assignment_opt
[4d51835]1683 // To obtain LR(1), these rules must be duplicated here (see new_abstract_declarator).
1684 { $$ = $1->addName( $2 ); }
[2871210]1685 | type_qualifier_list new_abstract_tuple identifier_or_type_name assignment_opt
[4d51835]1686 { $$ = $2->addName( $3 )->addQualifiers( $1 ); }
1687 | new_function_specifier
1688 ;
[b87a5ed]1689
1690new_abstract_parameter_declaration: // CFA, new & old style parameter declaration
[4d51835]1691 abstract_parameter_declaration
1692 | new_identifier_parameter_declarator_no_tuple
1693 | new_abstract_tuple
1694 // To obtain LR(1), these rules must be duplicated here (see new_abstract_declarator).
1695 | type_qualifier_list new_abstract_tuple
1696 { $$ = $2->addQualifiers( $1 ); }
1697 | new_abstract_function
1698 ;
[51b73452]1699
1700parameter_declaration:
[4d51835]1701 declaration_specifier identifier_parameter_declarator assignment_opt
1702 {
1703 typedefTable.addToEnclosingScope( TypedefTable::ID );
[de62360d]1704 $$ = $2->addType( $1 )->addInitializer( new InitializerNode( $3 ) );
[4d51835]1705 }
[2871210]1706 | declaration_specifier type_parameter_redeclarator assignment_opt
[4d51835]1707 {
1708 typedefTable.addToEnclosingScope( TypedefTable::ID );
[de62360d]1709 $$ = $2->addType( $1 )->addInitializer( new InitializerNode( $3 ) );
[4d51835]1710 }
1711 ;
[51b73452]1712
1713abstract_parameter_declaration:
[4d51835]1714 declaration_specifier
1715 | declaration_specifier abstract_parameter_declarator
1716 { $$ = $2->addType( $1 ); }
1717 ;
[51b73452]1718
[c11e31c]1719// ISO/IEC 9899:1999 Section 6.9.1(6) : "An identifier declared as a typedef name shall not be redeclared as a
[de62360d]1720// parameter." Because the scope of the K&R-style parameter-list sees the typedef first, the following is based only on
1721// identifiers. The ANSI-style parameter-list can redefine a typedef name.
[51b73452]1722
[b87a5ed]1723identifier_list: // K&R-style parameter list => no types
[4d51835]1724 no_attr_identifier
1725 { $$ = DeclarationNode::newName( $1 ); }
1726 | identifier_list ',' no_attr_identifier
1727 { $$ = $1->appendList( DeclarationNode::newName( $3 ) ); }
1728 ;
[51b73452]1729
[2871210]1730identifier_or_type_name:
[4d51835]1731 identifier
1732 | TYPEDEFname
1733 | TYPEGENname
1734 ;
[51b73452]1735
[2871210]1736no_01_identifier_or_type_name:
[4d51835]1737 no_01_identifier
1738 | TYPEDEFname
1739 | TYPEGENname
1740 ;
[51b73452]1741
[2871210]1742no_attr_identifier_or_type_name:
[4d51835]1743 no_attr_identifier
1744 | TYPEDEFname
[721f17a]1745 | TYPEGENname
[4d51835]1746 ;
[b87a5ed]1747
1748type_name_no_function: // sizeof, alignof, cast (constructor)
[4d51835]1749 new_abstract_declarator_tuple // CFA
1750 | type_specifier
1751 | type_specifier variable_abstract_declarator
1752 { $$ = $2->addType( $1 ); }
1753 ;
[b87a5ed]1754
1755type_name: // typeof, assertion
[4d51835]1756 new_abstract_declarator_tuple // CFA
1757 | new_abstract_function // CFA
1758 | type_specifier
1759 | type_specifier abstract_declarator
1760 { $$ = $2->addType( $1 ); }
1761 ;
[51b73452]1762
1763initializer_opt:
[4d51835]1764 // empty
1765 { $$ = 0; }
[2871210]1766 | '=' initializer
1767 { $$ = $2; }
[097e2b0]1768 | ATassign initializer
[974906e2]1769 { $$ = $2->set_maybeConstructed( false ); }
[4d51835]1770 ;
[51b73452]1771
1772initializer:
[de62360d]1773 assignment_expression { $$ = new InitializerNode( $1 ); }
1774 | '{' initializer_list comma_opt '}' { $$ = new InitializerNode( $2, true ); }
[4d51835]1775 ;
[51b73452]1776
1777initializer_list:
[097e2b0]1778 // empty
1779 { $$ = 0; }
1780 | initializer
[4d51835]1781 | designation initializer { $$ = $2->set_designators( $1 ); }
[1d4580a]1782 | initializer_list ',' initializer { $$ = (InitializerNode *)( $1->set_last( $3 ) ); }
[4d51835]1783 | initializer_list ',' designation initializer
[1d4580a]1784 { $$ = (InitializerNode *)( $1->set_last( $4->set_designators( $3 ) ) ); }
[4d51835]1785 ;
[b87a5ed]1786
[de62360d]1787// There is an unreconcileable parsing problem between C99 and CFA with respect to designators. The problem is use of
1788// '=' to separator the designator from the initializer value, as in:
[c11e31c]1789//
[b87a5ed]1790// int x[10] = { [1] = 3 };
[c11e31c]1791//
[de62360d]1792// The string "[1] = 3" can be parsed as a designator assignment or a tuple assignment. To disambiguate this case, CFA
1793// changes the syntax from "=" to ":" as the separator between the designator and initializer. GCC does uses ":" for
1794// field selection. The optional use of the "=" in GCC, or in this case ":", cannot be supported either due to
1795// shift/reduce conflicts
[51b73452]1796
1797designation:
[4d51835]1798 designator_list ':' // C99, CFA uses ":" instead of "="
[2871210]1799 | no_attr_identifier_or_type_name ':' // GCC, field name
[d1625f8]1800 { $$ = new ExpressionNode( build_varref( $1 ) ); }
[4d51835]1801 ;
[51b73452]1802
[b87a5ed]1803designator_list: // C99
[4d51835]1804 designator
[2871210]1805 | designator_list designator
[1d4580a]1806 { $$ = (ExpressionNode *)( $1->set_last( $2 ) ); }
[d1625f8]1807 //| designator_list designator { $$ = new ExpressionNode( $1, $2 ); }
[4d51835]1808 ;
[51b73452]1809
1810designator:
[d1625f8]1811 '.' no_attr_identifier_or_type_name // C99, field name
1812 { $$ = new ExpressionNode( build_varref( $2 ) ); }
[4d51835]1813 | '[' push assignment_expression pop ']' // C99, single array element
[de62360d]1814 // assignment_expression used instead of constant_expression because of shift/reduce conflicts with tuple.
[d1625f8]1815 { $$ = $3; }
[4d51835]1816 | '[' push subrange pop ']' // CFA, multiple array elements
[d1625f8]1817 { $$ = $3; }
[4d51835]1818 | '[' push constant_expression ELLIPSIS constant_expression pop ']' // GCC, multiple array elements
[d1625f8]1819 { $$ = new ExpressionNode( build_range( $3, $5 ) ); }
[4d51835]1820 | '.' '[' push field_list pop ']' // CFA, tuple field selector
[d1625f8]1821 { $$ = $4; }
[4d51835]1822 ;
[51b73452]1823
[de62360d]1824// The CFA type system is based on parametric polymorphism, the ability to declare functions with type parameters,
1825// rather than an object-oriented type system. This required four groups of extensions:
[c11e31c]1826//
1827// Overloading: function, data, and operator identifiers may be overloaded.
1828//
[de62360d]1829// Type declarations: "type" is used to generate new types for declaring objects. Similarly, "dtype" is used for object
1830// and incomplete types, and "ftype" is used for function types. Type declarations with initializers provide
1831// definitions of new types. Type declarations with storage class "extern" provide opaque types.
[c11e31c]1832//
[de62360d]1833// Polymorphic functions: A forall clause declares a type parameter. The corresponding argument is inferred at the call
1834// site. A polymorphic function is not a template; it is a function, with an address and a type.
[c11e31c]1835//
1836// Specifications and Assertions: Specifications are collections of declarations parameterized by one or more
[de62360d]1837// types. They serve many of the purposes of abstract classes, and specification hierarchies resemble subclass
1838// hierarchies. Unlike classes, they can define relationships between types. Assertions declare that a type or
1839// types provide the operations declared by a specification. Assertions are normally used to declare requirements
1840// on type arguments of polymorphic functions.
[c11e31c]1841
[b87a5ed]1842typegen_declaration_specifier: // CFA
[4d51835]1843 typegen_type_specifier
1844 | declaration_qualifier_list typegen_type_specifier
1845 { $$ = $2->addQualifiers( $1 ); }
1846 | typegen_declaration_specifier storage_class // remaining OBSOLESCENT (see 2)
1847 { $$ = $1->addQualifiers( $2 ); }
1848 | typegen_declaration_specifier storage_class type_qualifier_list
1849 { $$ = $1->addQualifiers( $2 )->addQualifiers( $3 ); }
1850 ;
[b87a5ed]1851
1852typegen_type_specifier: // CFA
[2871210]1853 typegen_name
1854 | type_qualifier_list typegen_name
1855 { $$ = $2->addQualifiers( $1 ); }
[4d51835]1856 | typegen_type_specifier type_qualifier
1857 { $$ = $1->addQualifiers( $2 ); }
1858 ;
[b87a5ed]1859
[2871210]1860typegen_name: // CFA
1861 TYPEGENname '(' type_name_list ')'
1862 { $$ = DeclarationNode::newFromTypeGen( $1, $3 ); }
1863 ;
1864
[b87a5ed]1865type_parameter_list: // CFA
[4d51835]1866 type_parameter assignment_opt
1867 | type_parameter_list ',' type_parameter assignment_opt
1868 { $$ = $1->appendList( $3 ); }
1869 ;
[b87a5ed]1870
1871type_parameter: // CFA
[2871210]1872 type_class no_attr_identifier_or_type_name
1873 { typedefTable.addToEnclosingScope( *$2, TypedefTable::TD ); }
[4d51835]1874 assertion_list_opt
1875 { $$ = DeclarationNode::newTypeParam( $1, $2 )->addAssertions( $4 ); }
1876 | type_specifier identifier_parameter_declarator
1877 ;
[b87a5ed]1878
1879type_class: // CFA
[4040425]1880 OTYPE
[5b639ee]1881 { $$ = DeclarationNode::Otype; }
[4d51835]1882 | DTYPE
1883 { $$ = DeclarationNode::Ftype; }
1884 | FTYPE
1885 { $$ = DeclarationNode::Dtype; }
1886 ;
[b87a5ed]1887
1888assertion_list_opt: // CFA
[4d51835]1889 // empty
1890 { $$ = 0; }
1891 | assertion_list_opt assertion
[4e06c1e]1892 { $$ = $1 != 0 ? $1->appendList( $2 ) : $2; }
[4d51835]1893 ;
[b87a5ed]1894
1895assertion: // CFA
[2871210]1896 '|' no_attr_identifier_or_type_name '(' type_name_list ')'
[4d51835]1897 {
[4040425]1898 typedefTable.openTrait( *$2 );
1899 $$ = DeclarationNode::newTraitUse( $2, $4 );
[4d51835]1900 }
[4040425]1901 | '|' '{' push trait_declaration_list '}'
[4d51835]1902 { $$ = $4; }
[4040425]1903 | '|' '(' push type_parameter_list pop ')' '{' push trait_declaration_list '}' '(' type_name_list ')'
[4d51835]1904 { $$ = 0; }
1905 ;
[b87a5ed]1906
1907type_name_list: // CFA
[4d51835]1908 type_name
[d1625f8]1909 { $$ = new ExpressionNode( build_typevalue( $1 ) ); }
[4d51835]1910 | assignment_expression
1911 | type_name_list ',' type_name
[1d4580a]1912 { $$ = (ExpressionNode *)( $1->set_last( new ExpressionNode( build_typevalue( $3 ) ) ) ); }
[4d51835]1913 | type_name_list ',' assignment_expression
[1d4580a]1914 { $$ = (ExpressionNode *)( $1->set_last( $3 )); }
[4d51835]1915 ;
[b87a5ed]1916
1917type_declaring_list: // CFA
[4040425]1918 OTYPE type_declarator
[4d51835]1919 { $$ = $2; }
[4040425]1920 | storage_class_list OTYPE type_declarator
[4d51835]1921 { $$ = $3->addQualifiers( $1 ); }
1922 | type_declaring_list ',' type_declarator
1923 { $$ = $1->appendList( $3->copyStorageClasses( $1 ) ); }
1924 ;
[b87a5ed]1925
1926type_declarator: // CFA
[4d51835]1927 type_declarator_name assertion_list_opt
1928 { $$ = $1->addAssertions( $2 ); }
1929 | type_declarator_name assertion_list_opt '=' type_name
1930 { $$ = $1->addAssertions( $2 )->addType( $4 ); }
1931 ;
[b87a5ed]1932
1933type_declarator_name: // CFA
[2871210]1934 no_attr_identifier_or_type_name
[4d51835]1935 {
[de62360d]1936 typedefTable.addToEnclosingScope( *$1, TypedefTable::TD );
[4d51835]1937 $$ = DeclarationNode::newTypeDecl( $1, 0 );
1938 }
[2871210]1939 | no_01_identifier_or_type_name '(' push type_parameter_list pop ')'
[4d51835]1940 {
[de62360d]1941 typedefTable.addToEnclosingScope( *$1, TypedefTable::TG );
[4d51835]1942 $$ = DeclarationNode::newTypeDecl( $1, $4 );
1943 }
1944 ;
[b87a5ed]1945
[4040425]1946trait_specifier: // CFA
1947 TRAIT no_attr_identifier_or_type_name '(' push type_parameter_list pop ')' '{' '}'
[4d51835]1948 {
[de62360d]1949 typedefTable.addToEnclosingScope( *$2, TypedefTable::ID );
[4040425]1950 $$ = DeclarationNode::newTrait( $2, $5, 0 );
[4d51835]1951 }
[4040425]1952 | TRAIT no_attr_identifier_or_type_name '(' push type_parameter_list pop ')' '{'
[4d51835]1953 {
[4040425]1954 typedefTable.enterTrait( *$2 );
[4d51835]1955 typedefTable.enterScope();
1956 }
[4040425]1957 trait_declaration_list '}'
[4d51835]1958 {
[4040425]1959 typedefTable.leaveTrait();
[de62360d]1960 typedefTable.addToEnclosingScope( *$2, TypedefTable::ID );
[4040425]1961 $$ = DeclarationNode::newTrait( $2, $5, $10 );
[4d51835]1962 }
1963 ;
[b87a5ed]1964
[4040425]1965trait_declaration_list: // CFA
1966 trait_declaration
1967 | trait_declaration_list push trait_declaration
[4d51835]1968 { $$ = $1->appendList( $3 ); }
1969 ;
[b87a5ed]1970
[4040425]1971trait_declaration: // CFA
1972 new_trait_declaring_list pop ';'
1973 | trait_declaring_list pop ';'
[4d51835]1974 ;
[b87a5ed]1975
[4040425]1976new_trait_declaring_list: // CFA
[4d51835]1977 new_variable_specifier
1978 {
1979 typedefTable.addToEnclosingScope2( TypedefTable::ID );
1980 $$ = $1;
1981 }
1982 | new_function_specifier
1983 {
1984 typedefTable.addToEnclosingScope2( TypedefTable::ID );
1985 $$ = $1;
1986 }
[4040425]1987 | new_trait_declaring_list pop ',' push identifier_or_type_name
[4d51835]1988 {
[de62360d]1989 typedefTable.addToEnclosingScope2( *$5, TypedefTable::ID );
[4d51835]1990 $$ = $1->appendList( $1->cloneType( $5 ) );
1991 }
1992 ;
[b87a5ed]1993
[4040425]1994trait_declaring_list: // CFA
[4d51835]1995 type_specifier declarator
1996 {
1997 typedefTable.addToEnclosingScope2( TypedefTable::ID );
1998 $$ = $2->addType( $1 );
1999 }
[4040425]2000 | trait_declaring_list pop ',' push declarator
[4d51835]2001 {
2002 typedefTable.addToEnclosingScope2( TypedefTable::ID );
2003 $$ = $1->appendList( $1->cloneBaseType( $5 ) );
2004 }
2005 ;
[51b73452]2006
[c11e31c]2007//***************************** EXTERNAL DEFINITIONS *****************************
[51b73452]2008
2009translation_unit:
[4d51835]2010 // empty
2011 {} // empty input file
2012 | external_definition_list
[926af74]2013 { parseTree = parseTree != nullptr ? parseTree->appendList( $1 ) : $1; }
[4d51835]2014 ;
[51b73452]2015
2016external_definition_list:
[4d51835]2017 external_definition
2018 | external_definition_list push external_definition
[926af74]2019 { $$ = $1 != nullptr ? $1->appendList( $3 ) : $3; }
[4d51835]2020 ;
[51b73452]2021
2022external_definition_list_opt:
[4d51835]2023 // empty
2024 { $$ = 0; }
2025 | external_definition_list
2026 ;
[51b73452]2027
2028external_definition:
[4d51835]2029 declaration
2030 | external_function_definition
2031 | asm_statement // GCC, global assembler statement
2032 {}
2033 | EXTERN STRINGliteral
2034 {
[3b8e52c]2035 linkageStack.push( linkage ); // handle nested extern "C"/"Cforall"
[faddbd8]2036 linkage = LinkageSpec::linkageCheck( $2 );
[4d51835]2037 }
2038 '{' external_definition_list_opt '}' // C++-style linkage specifier
2039 {
2040 linkage = linkageStack.top();
2041 linkageStack.pop();
2042 $$ = $5;
2043 }
2044 | EXTENSION external_definition
[8e9cbb2]2045 { // mark all fields in list
[926af74]2046 for ( DeclarationNode *iter = $2; iter != nullptr; iter = (DeclarationNode *)iter->get_next() )
[8e9cbb2]2047 iter->set_extension( true );
2048 $$ = $2;
2049 }
[4d51835]2050 ;
2051
2052external_function_definition:
2053 function_definition
[de62360d]2054 // These rules are a concession to the "implicit int" type_specifier because there is a significant amount of
[c6b1105]2055 // legacy code with global functions missing the type-specifier for the return type, and assuming "int".
2056 // Parsing is possible because function_definition does not appear in the context of an expression (nested
2057 // functions preclude this concession, i.e., all nested function must have a return type). A function prototype
2058 // declaration must still have a type_specifier. OBSOLESCENT (see 1)
[4d51835]2059 | function_declarator compound_statement
2060 {
2061 typedefTable.addToEnclosingScope( TypedefTable::ID );
2062 typedefTable.leaveScope();
2063 $$ = $1->addFunctionBody( $2 );
2064 }
2065 | old_function_declarator push old_declaration_list_opt compound_statement
2066 {
2067 typedefTable.addToEnclosingScope( TypedefTable::ID );
2068 typedefTable.leaveScope();
2069 $$ = $1->addOldDeclList( $3 )->addFunctionBody( $4 );
2070 }
2071 ;
[51b73452]2072
2073function_definition:
[4d51835]2074 new_function_declaration compound_statement // CFA
2075 {
2076 typedefTable.addToEnclosingScope( TypedefTable::ID );
2077 typedefTable.leaveScope();
2078 $$ = $1->addFunctionBody( $2 );
2079 }
2080 | declaration_specifier function_declarator compound_statement
2081 {
2082 typedefTable.addToEnclosingScope( TypedefTable::ID );
2083 typedefTable.leaveScope();
2084 $$ = $2->addFunctionBody( $3 )->addType( $1 );
2085 }
2086 | type_qualifier_list function_declarator compound_statement
2087 {
2088 typedefTable.addToEnclosingScope( TypedefTable::ID );
2089 typedefTable.leaveScope();
2090 $$ = $2->addFunctionBody( $3 )->addQualifiers( $1 );
2091 }
2092 | declaration_qualifier_list function_declarator compound_statement
2093 {
2094 typedefTable.addToEnclosingScope( TypedefTable::ID );
2095 typedefTable.leaveScope();
2096 $$ = $2->addFunctionBody( $3 )->addQualifiers( $1 );
2097 }
2098 | declaration_qualifier_list type_qualifier_list function_declarator compound_statement
2099 {
2100 typedefTable.addToEnclosingScope( TypedefTable::ID );
2101 typedefTable.leaveScope();
2102 $$ = $3->addFunctionBody( $4 )->addQualifiers( $2 )->addQualifiers( $1 );
2103 }
2104
2105 // Old-style K&R function definition, OBSOLESCENT (see 4)
2106 | declaration_specifier old_function_declarator push old_declaration_list_opt compound_statement
2107 {
2108 typedefTable.addToEnclosingScope( TypedefTable::ID );
2109 typedefTable.leaveScope();
2110 $$ = $2->addOldDeclList( $4 )->addFunctionBody( $5 )->addType( $1 );
2111 }
2112 | type_qualifier_list old_function_declarator push old_declaration_list_opt compound_statement
2113 {
2114 typedefTable.addToEnclosingScope( TypedefTable::ID );
2115 typedefTable.leaveScope();
2116 $$ = $2->addOldDeclList( $4 )->addFunctionBody( $5 )->addQualifiers( $1 );
2117 }
2118
2119 // Old-style K&R function definition with "implicit int" type_specifier, OBSOLESCENT (see 4)
2120 | declaration_qualifier_list old_function_declarator push old_declaration_list_opt compound_statement
2121 {
2122 typedefTable.addToEnclosingScope( TypedefTable::ID );
2123 typedefTable.leaveScope();
2124 $$ = $2->addOldDeclList( $4 )->addFunctionBody( $5 )->addQualifiers( $1 );
2125 }
2126 | declaration_qualifier_list type_qualifier_list old_function_declarator push old_declaration_list_opt compound_statement
2127 {
2128 typedefTable.addToEnclosingScope( TypedefTable::ID );
2129 typedefTable.leaveScope();
2130 $$ = $3->addOldDeclList( $5 )->addFunctionBody( $6 )->addQualifiers( $2 )->addQualifiers( $1 );
2131 }
2132 ;
[51b73452]2133
2134declarator:
[4d51835]2135 variable_declarator
[c6b1105]2136 | variable_type_redeclarator
[4d51835]2137 | function_declarator
2138 ;
[51b73452]2139
2140subrange:
[4d51835]2141 constant_expression '~' constant_expression // CFA, integer subrange
[d1625f8]2142 { $$ = new ExpressionNode( build_range( $1, $3 ) ); }
[4d51835]2143 ;
[b87a5ed]2144
2145asm_name_opt: // GCC
[4d51835]2146 // empty
[c1c1112]2147 | ASM '(' string_literal_list ')' attribute_list_opt { delete $3; } // FIX ME: unimplemented
[4d51835]2148 ;
[b87a5ed]2149
2150attribute_list_opt: // GCC
[4d51835]2151 // empty
[1db21619]2152 { $$ = 0; }
[4d51835]2153 | attribute_list
2154 ;
[b87a5ed]2155
2156attribute_list: // GCC
[4d51835]2157 attribute
2158 | attribute_list attribute
[1db21619]2159 { $$ = $2->addQualifiers( $1 ); }
[4d51835]2160 ;
[b87a5ed]2161
2162attribute: // GCC
[4d51835]2163 ATTRIBUTE '(' '(' attribute_parameter_list ')' ')'
[1db21619]2164 // { $$ = DeclarationNode::newQualifier( DeclarationNode::Attribute ); }
2165 { $$ = 0; }
[4d51835]2166 ;
[b87a5ed]2167
2168attribute_parameter_list: // GCC
[4d51835]2169 attrib
2170 | attribute_parameter_list ',' attrib
2171 ;
[b87a5ed]2172
2173attrib: // GCC
[4d51835]2174 // empty
2175 | any_word
[c1c1112]2176 | any_word '(' comma_expression_opt ')' { delete $3; } // FIX ME: unimplemented
[4d51835]2177 ;
[b87a5ed]2178
2179any_word: // GCC
[c1c1112]2180 identifier_or_type_name { delete $1; } // FIX ME: unimplemented
2181 | storage_class { delete $1; } // FIX ME: unimplemented
2182 | basic_type_name { delete $1; } // FIX ME: unimplemented
2183 | type_qualifier { delete $1; } // FIX ME: unimplemented
[4d51835]2184 ;
[51b73452]2185
[c11e31c]2186// ============================================================================
[de62360d]2187// The following sections are a series of grammar patterns used to parse declarators. Multiple patterns are necessary
2188// because the type of an identifier in wrapped around the identifier in the same form as its usage in an expression, as
2189// in:
[c11e31c]2190//
[b87a5ed]2191// int (*f())[10] { ... };
2192// ... (*f())[3] += 1; // definition mimics usage
[c11e31c]2193//
[de62360d]2194// Because these patterns are highly recursive, changes at a lower level in the recursion require copying some or all of
2195// the pattern. Each of these patterns has some subtle variation to ensure correct syntax in a particular context.
[c11e31c]2196// ============================================================================
2197
2198// ----------------------------------------------------------------------------
[de62360d]2199// The set of valid declarators before a compound statement for defining a function is less than the set of declarators
2200// to define a variable or function prototype, e.g.:
[c11e31c]2201//
[b87a5ed]2202// valid declaration invalid definition
2203// ----------------- ------------------
[4d51835]2204// int f; int f {}
2205// int *f; int *f {}
[b87a5ed]2206// int f[10]; int f[10] {}
[4d51835]2207// int (*f)(int); int (*f)(int) {}
[c11e31c]2208//
[de62360d]2209// To preclude this syntactic anomaly requires separating the grammar rules for variable and function declarators, hence
2210// variable_declarator and function_declarator.
[c11e31c]2211// ----------------------------------------------------------------------------
2212
[de62360d]2213// This pattern parses a declaration of a variable that is not redefining a typedef name. The pattern precludes
2214// declaring an array of functions versus a pointer to an array of functions.
[51b73452]2215
2216variable_declarator:
[4d51835]2217 paren_identifier attribute_list_opt
[1db21619]2218 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2219 | variable_ptr
2220 | variable_array attribute_list_opt
[1db21619]2221 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2222 | variable_function attribute_list_opt
[1db21619]2223 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2224 ;
[51b73452]2225
2226paren_identifier:
[4d51835]2227 identifier
2228 {
[de62360d]2229 typedefTable.setNextIdentifier( *$1 );
[4d51835]2230 $$ = DeclarationNode::newName( $1 );
2231 }
2232 | '(' paren_identifier ')' // redundant parenthesis
2233 { $$ = $2; }
2234 ;
[51b73452]2235
2236variable_ptr:
[dd51906]2237 ptrref_operator variable_declarator
[4d51835]2238 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2239 | ptrref_operator type_qualifier_list variable_declarator
[4d51835]2240 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2241 | '(' variable_ptr ')'
2242 { $$ = $2; }
2243 ;
[51b73452]2244
2245variable_array:
[4d51835]2246 paren_identifier array_dimension
2247 { $$ = $1->addArray( $2 ); }
2248 | '(' variable_ptr ')' array_dimension
2249 { $$ = $2->addArray( $4 ); }
2250 | '(' variable_array ')' multi_array_dimension // redundant parenthesis
2251 { $$ = $2->addArray( $4 ); }
2252 | '(' variable_array ')' // redundant parenthesis
2253 { $$ = $2; }
2254 ;
[51b73452]2255
2256variable_function:
[4d51835]2257 '(' variable_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2258 { $$ = $2->addParamList( $6 ); }
2259 | '(' variable_function ')' // redundant parenthesis
2260 { $$ = $2; }
2261 ;
[51b73452]2262
[c6b1105]2263// This pattern parses a function declarator that is not redefining a typedef name. For non-nested functions, there is
2264// no context where a function definition can redefine a typedef name, i.e., the typedef and function name cannot exist
2265// is the same scope. The pattern precludes returning arrays and functions versus pointers to arrays and functions.
[51b73452]2266
2267function_declarator:
[4d51835]2268 function_no_ptr attribute_list_opt
[1db21619]2269 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2270 | function_ptr
2271 | function_array attribute_list_opt
[1db21619]2272 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2273 ;
[51b73452]2274
2275function_no_ptr:
[4d51835]2276 paren_identifier '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2277 { $$ = $1->addParamList( $4 ); }
2278 | '(' function_ptr ')' '(' push parameter_type_list_opt pop ')'
2279 { $$ = $2->addParamList( $6 ); }
2280 | '(' function_no_ptr ')' // redundant parenthesis
2281 { $$ = $2; }
2282 ;
[51b73452]2283
2284function_ptr:
[dd51906]2285 ptrref_operator function_declarator
[4d51835]2286 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2287 | ptrref_operator type_qualifier_list function_declarator
[4d51835]2288 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2289 | '(' function_ptr ')'
2290 { $$ = $2; }
2291 ;
[51b73452]2292
2293function_array:
[4d51835]2294 '(' function_ptr ')' array_dimension
2295 { $$ = $2->addArray( $4 ); }
2296 | '(' function_array ')' multi_array_dimension // redundant parenthesis
2297 { $$ = $2->addArray( $4 ); }
2298 | '(' function_array ')' // redundant parenthesis
2299 { $$ = $2; }
2300 ;
[51b73452]2301
[de62360d]2302// This pattern parses an old-style K&R function declarator (OBSOLESCENT, see 4) that is not redefining a typedef name
2303// (see function_declarator for additional comments). The pattern precludes returning arrays and functions versus
2304// pointers to arrays and functions.
[51b73452]2305
2306old_function_declarator:
[4d51835]2307 old_function_no_ptr
2308 | old_function_ptr
2309 | old_function_array
2310 ;
[51b73452]2311
2312old_function_no_ptr:
[4d51835]2313 paren_identifier '(' identifier_list ')' // function_declarator handles empty parameter
2314 { $$ = $1->addIdList( $3 ); }
2315 | '(' old_function_ptr ')' '(' identifier_list ')'
2316 { $$ = $2->addIdList( $5 ); }
2317 | '(' old_function_no_ptr ')' // redundant parenthesis
2318 { $$ = $2; }
2319 ;
[51b73452]2320
2321old_function_ptr:
[dd51906]2322 ptrref_operator old_function_declarator
[4d51835]2323 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2324 | ptrref_operator type_qualifier_list old_function_declarator
[4d51835]2325 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2326 | '(' old_function_ptr ')'
2327 { $$ = $2; }
2328 ;
[51b73452]2329
2330old_function_array:
[4d51835]2331 '(' old_function_ptr ')' array_dimension
2332 { $$ = $2->addArray( $4 ); }
2333 | '(' old_function_array ')' multi_array_dimension // redundant parenthesis
2334 { $$ = $2->addArray( $4 ); }
2335 | '(' old_function_array ')' // redundant parenthesis
2336 { $$ = $2; }
2337 ;
[51b73452]2338
[2871210]2339// This pattern parses a declaration for a variable or function prototype that redefines a type name, e.g.:
[c11e31c]2340//
[b87a5ed]2341// typedef int foo;
2342// {
2343// int foo; // redefine typedef name in new scope
2344// }
[c11e31c]2345//
[de62360d]2346// The pattern precludes declaring an array of functions versus a pointer to an array of functions, and returning arrays
2347// and functions versus pointers to arrays and functions.
[51b73452]2348
[c6b1105]2349variable_type_redeclarator:
[2871210]2350 paren_type attribute_list_opt
[1db21619]2351 { $$ = $1->addQualifiers( $2 ); }
[2871210]2352 | type_ptr
2353 | type_array attribute_list_opt
[1db21619]2354 { $$ = $1->addQualifiers( $2 ); }
[2871210]2355 | type_function attribute_list_opt
[1db21619]2356 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2357 ;
[51b73452]2358
[2871210]2359paren_type:
2360 typedef
2361 | '(' paren_type ')'
[4d51835]2362 { $$ = $2; }
2363 ;
[51b73452]2364
[2871210]2365type_ptr:
[c6b1105]2366 ptrref_operator variable_type_redeclarator
[4d51835]2367 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[c6b1105]2368 | ptrref_operator type_qualifier_list variable_type_redeclarator
[4d51835]2369 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
[2871210]2370 | '(' type_ptr ')'
[4d51835]2371 { $$ = $2; }
2372 ;
[51b73452]2373
[2871210]2374type_array:
2375 paren_type array_dimension
[4d51835]2376 { $$ = $1->addArray( $2 ); }
[2871210]2377 | '(' type_ptr ')' array_dimension
[4d51835]2378 { $$ = $2->addArray( $4 ); }
[2871210]2379 | '(' type_array ')' multi_array_dimension // redundant parenthesis
[4d51835]2380 { $$ = $2->addArray( $4 ); }
[2871210]2381 | '(' type_array ')' // redundant parenthesis
[4d51835]2382 { $$ = $2; }
2383 ;
[51b73452]2384
[2871210]2385type_function:
2386 paren_type '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
[4d51835]2387 { $$ = $1->addParamList( $4 ); }
[2871210]2388 | '(' type_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
[4d51835]2389 { $$ = $2->addParamList( $6 ); }
[2871210]2390 | '(' type_function ')' // redundant parenthesis
[4d51835]2391 { $$ = $2; }
2392 ;
[51b73452]2393
[de62360d]2394// This pattern parses a declaration for a parameter variable or function prototype that is not redefining a typedef
2395// name and allows the C99 array options, which can only appear in a parameter list. The pattern precludes declaring an
2396// array of functions versus a pointer to an array of functions, and returning arrays and functions versus pointers to
2397// arrays and functions.
[51b73452]2398
2399identifier_parameter_declarator:
[4d51835]2400 paren_identifier attribute_list_opt
[1db21619]2401 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2402 | identifier_parameter_ptr
2403 | identifier_parameter_array attribute_list_opt
[1db21619]2404 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2405 | identifier_parameter_function attribute_list_opt
[1db21619]2406 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2407 ;
[51b73452]2408
2409identifier_parameter_ptr:
[dd51906]2410 ptrref_operator identifier_parameter_declarator
[4d51835]2411 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2412 | ptrref_operator type_qualifier_list identifier_parameter_declarator
[4d51835]2413 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2414 | '(' identifier_parameter_ptr ')'
2415 { $$ = $2; }
2416 ;
[51b73452]2417
2418identifier_parameter_array:
[4d51835]2419 paren_identifier array_parameter_dimension
2420 { $$ = $1->addArray( $2 ); }
2421 | '(' identifier_parameter_ptr ')' array_dimension
2422 { $$ = $2->addArray( $4 ); }
2423 | '(' identifier_parameter_array ')' multi_array_dimension // redundant parenthesis
2424 { $$ = $2->addArray( $4 ); }
2425 | '(' identifier_parameter_array ')' // redundant parenthesis
2426 { $$ = $2; }
2427 ;
[51b73452]2428
2429identifier_parameter_function:
[4d51835]2430 paren_identifier '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2431 { $$ = $1->addParamList( $4 ); }
2432 | '(' identifier_parameter_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2433 { $$ = $2->addParamList( $6 ); }
2434 | '(' identifier_parameter_function ')' // redundant parenthesis
2435 { $$ = $2; }
2436 ;
[b87a5ed]2437
[de62360d]2438// This pattern parses a declaration for a parameter variable or function prototype that is redefining a typedef name,
2439// e.g.:
[c11e31c]2440//
[b87a5ed]2441// typedef int foo;
2442// int f( int foo ); // redefine typedef name in new scope
[c11e31c]2443//
[de62360d]2444// and allows the C99 array options, which can only appear in a parameter list. In addition, the pattern handles the
2445// special meaning of parenthesis around a typedef name:
[c11e31c]2446//
[b87a5ed]2447// ISO/IEC 9899:1999 Section 6.7.5.3(11) : "In a parameter declaration, a single typedef name in
2448// parentheses is taken to be an abstract declarator that specifies a function with a single parameter,
2449// not as redundant parentheses around the identifier."
[c11e31c]2450//
[c6b1105]2451// For example:
[c11e31c]2452//
[b87a5ed]2453// typedef float T;
[4d51835]2454// int f( int ( T [5] ) ); // see abstract_parameter_declarator
[b87a5ed]2455// int g( int ( T ( int ) ) ); // see abstract_parameter_declarator
2456// int f( int f1( T a[5] ) ); // see identifier_parameter_declarator
2457// int g( int g1( T g2( int p ) ) ); // see identifier_parameter_declarator
[c11e31c]2458//
[de62360d]2459// In essence, a '(' immediately to the left of typedef name, T, is interpreted as starting a parameter type list, and
2460// not as redundant parentheses around a redeclaration of T. Finally, the pattern also precludes declaring an array of
2461// functions versus a pointer to an array of functions, and returning arrays and functions versus pointers to arrays and
2462// functions.
[51b73452]2463
[2871210]2464type_parameter_redeclarator:
[4d51835]2465 typedef attribute_list_opt
[1db21619]2466 { $$ = $1->addQualifiers( $2 ); }
[2871210]2467 | type_parameter_ptr
2468 | type_parameter_array attribute_list_opt
[1db21619]2469 { $$ = $1->addQualifiers( $2 ); }
[2871210]2470 | type_parameter_function attribute_list_opt
[1db21619]2471 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2472 ;
[51b73452]2473
2474typedef:
[4d51835]2475 TYPEDEFname
2476 {
[de62360d]2477 typedefTable.setNextIdentifier( *$1 );
[4d51835]2478 $$ = DeclarationNode::newName( $1 );
2479 }
[2871210]2480 | TYPEGENname
2481 {
2482 typedefTable.setNextIdentifier( *$1 );
2483 $$ = DeclarationNode::newName( $1 );
2484 }
[4d51835]2485 ;
[51b73452]2486
[2871210]2487type_parameter_ptr:
[dd51906]2488 ptrref_operator type_parameter_redeclarator
[4d51835]2489 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2490 | ptrref_operator type_qualifier_list type_parameter_redeclarator
[4d51835]2491 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
[2871210]2492 | '(' type_parameter_ptr ')'
[4d51835]2493 { $$ = $2; }
2494 ;
[51b73452]2495
[2871210]2496type_parameter_array:
[4d51835]2497 typedef array_parameter_dimension
2498 { $$ = $1->addArray( $2 ); }
[2871210]2499 | '(' type_parameter_ptr ')' array_parameter_dimension
[4d51835]2500 { $$ = $2->addArray( $4 ); }
2501 ;
[51b73452]2502
[2871210]2503type_parameter_function:
[4d51835]2504 typedef '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2505 { $$ = $1->addParamList( $4 ); }
[2871210]2506 | '(' type_parameter_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
[4d51835]2507 { $$ = $2->addParamList( $6 ); }
2508 ;
[b87a5ed]2509
[de62360d]2510// This pattern parses a declaration of an abstract variable or function prototype, i.e., there is no identifier to
2511// which the type applies, e.g.:
[c11e31c]2512//
[b87a5ed]2513// sizeof( int );
2514// sizeof( int [10] );
[c11e31c]2515//
[de62360d]2516// The pattern precludes declaring an array of functions versus a pointer to an array of functions, and returning arrays
2517// and functions versus pointers to arrays and functions.
[51b73452]2518
2519abstract_declarator:
[4d51835]2520 abstract_ptr
2521 | abstract_array attribute_list_opt
[1db21619]2522 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2523 | abstract_function attribute_list_opt
[1db21619]2524 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2525 ;
[51b73452]2526
2527abstract_ptr:
[dd51906]2528 ptrref_operator
[4d51835]2529 { $$ = DeclarationNode::newPointer( 0 ); }
[dd51906]2530 | ptrref_operator type_qualifier_list
[4d51835]2531 { $$ = DeclarationNode::newPointer( $2 ); }
[dd51906]2532 | ptrref_operator abstract_declarator
[4d51835]2533 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2534 | ptrref_operator type_qualifier_list abstract_declarator
[4d51835]2535 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2536 | '(' abstract_ptr ')'
2537 { $$ = $2; }
2538 ;
[51b73452]2539
2540abstract_array:
[4d51835]2541 array_dimension
2542 | '(' abstract_ptr ')' array_dimension
2543 { $$ = $2->addArray( $4 ); }
2544 | '(' abstract_array ')' multi_array_dimension // redundant parenthesis
2545 { $$ = $2->addArray( $4 ); }
2546 | '(' abstract_array ')' // redundant parenthesis
2547 { $$ = $2; }
2548 ;
[51b73452]2549
2550abstract_function:
[4d51835]2551 '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
[2298f728]2552 { $$ = DeclarationNode::newFunction( nullptr, nullptr, $3, nullptr ); }
[4d51835]2553 | '(' abstract_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2554 { $$ = $2->addParamList( $6 ); }
2555 | '(' abstract_function ')' // redundant parenthesis
2556 { $$ = $2; }
2557 ;
[51b73452]2558
2559array_dimension:
[4d51835]2560 // Only the first dimension can be empty.
[2871210]2561 '[' ']'
[4d51835]2562 { $$ = DeclarationNode::newArray( 0, 0, false ); }
[2871210]2563 | '[' ']' multi_array_dimension
2564 { $$ = DeclarationNode::newArray( 0, 0, false )->addArray( $3 ); }
[4d51835]2565 | multi_array_dimension
2566 ;
[51b73452]2567
2568multi_array_dimension:
[4d51835]2569 '[' push assignment_expression pop ']'
2570 { $$ = DeclarationNode::newArray( $3, 0, false ); }
2571 | '[' push '*' pop ']' // C99
2572 { $$ = DeclarationNode::newVarArray( 0 ); }
2573 | multi_array_dimension '[' push assignment_expression pop ']'
2574 { $$ = $1->addArray( DeclarationNode::newArray( $4, 0, false ) ); }
2575 | multi_array_dimension '[' push '*' pop ']' // C99
2576 { $$ = $1->addArray( DeclarationNode::newVarArray( 0 ) ); }
2577 ;
[51b73452]2578
[c11e31c]2579// This pattern parses a declaration of a parameter abstract variable or function prototype, i.e., there is no
2580// identifier to which the type applies, e.g.:
2581//
[b87a5ed]2582// int f( int ); // abstract variable parameter; no parameter name specified
2583// int f( int (int) ); // abstract function-prototype parameter; no parameter name specified
[c11e31c]2584//
[de62360d]2585// The pattern precludes declaring an array of functions versus a pointer to an array of functions, and returning arrays
2586// and functions versus pointers to arrays and functions.
[51b73452]2587
2588abstract_parameter_declarator:
[4d51835]2589 abstract_parameter_ptr
2590 | abstract_parameter_array attribute_list_opt
[1db21619]2591 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2592 | abstract_parameter_function attribute_list_opt
[1db21619]2593 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2594 ;
[51b73452]2595
2596abstract_parameter_ptr:
[dd51906]2597 ptrref_operator
[4d51835]2598 { $$ = DeclarationNode::newPointer( 0 ); }
[dd51906]2599 | ptrref_operator type_qualifier_list
[4d51835]2600 { $$ = DeclarationNode::newPointer( $2 ); }
[dd51906]2601 | ptrref_operator abstract_parameter_declarator
[4d51835]2602 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2603 | ptrref_operator type_qualifier_list abstract_parameter_declarator
[4d51835]2604 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2605 | '(' abstract_parameter_ptr ')'
2606 { $$ = $2; }
2607 ;
[51b73452]2608
2609abstract_parameter_array:
[4d51835]2610 array_parameter_dimension
2611 | '(' abstract_parameter_ptr ')' array_parameter_dimension
2612 { $$ = $2->addArray( $4 ); }
2613 | '(' abstract_parameter_array ')' multi_array_dimension // redundant parenthesis
2614 { $$ = $2->addArray( $4 ); }
2615 | '(' abstract_parameter_array ')' // redundant parenthesis
2616 { $$ = $2; }
2617 ;
[51b73452]2618
2619abstract_parameter_function:
[4d51835]2620 '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
[2298f728]2621 { $$ = DeclarationNode::newFunction( nullptr, nullptr, $3, nullptr ); }
[4d51835]2622 | '(' abstract_parameter_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2623 { $$ = $2->addParamList( $6 ); }
2624 | '(' abstract_parameter_function ')' // redundant parenthesis
2625 { $$ = $2; }
2626 ;
[51b73452]2627
2628array_parameter_dimension:
[4d51835]2629 // Only the first dimension can be empty or have qualifiers.
2630 array_parameter_1st_dimension
2631 | array_parameter_1st_dimension multi_array_dimension
2632 { $$ = $1->addArray( $2 ); }
2633 | multi_array_dimension
2634 ;
[51b73452]2635
[c11e31c]2636// The declaration of an array parameter has additional syntax over arrays in normal variable declarations:
2637//
[de62360d]2638// ISO/IEC 9899:1999 Section 6.7.5.2(1) : "The optional type qualifiers and the keyword static shall appear only in
2639// a declaration of a function parameter with an array type, and then only in the outermost array type derivation."
[51b73452]2640
2641array_parameter_1st_dimension:
[2871210]2642 '[' ']'
[4d51835]2643 { $$ = DeclarationNode::newArray( 0, 0, false ); }
2644 // multi_array_dimension handles the '[' '*' ']' case
2645 | '[' push type_qualifier_list '*' pop ']' // remaining C99
2646 { $$ = DeclarationNode::newVarArray( $3 ); }
2647 | '[' push type_qualifier_list pop ']'
2648 { $$ = DeclarationNode::newArray( 0, $3, false ); }
2649 // multi_array_dimension handles the '[' assignment_expression ']' case
2650 | '[' push type_qualifier_list assignment_expression pop ']'
2651 { $$ = DeclarationNode::newArray( $4, $3, false ); }
2652 | '[' push STATIC type_qualifier_list_opt assignment_expression pop ']'
2653 { $$ = DeclarationNode::newArray( $5, $4, true ); }
2654 | '[' push type_qualifier_list STATIC assignment_expression pop ']'
2655 { $$ = DeclarationNode::newArray( $5, $3, true ); }
2656 ;
[b87a5ed]2657
[de62360d]2658// This pattern parses a declaration of an abstract variable, i.e., there is no identifier to which the type applies,
2659// e.g.:
[c11e31c]2660//
[b87a5ed]2661// sizeof( int ); // abstract variable; no identifier name specified
[c11e31c]2662//
[de62360d]2663// The pattern precludes declaring an array of functions versus a pointer to an array of functions, and returning arrays
2664// and functions versus pointers to arrays and functions.
[51b73452]2665
2666variable_abstract_declarator:
[4d51835]2667 variable_abstract_ptr
2668 | variable_abstract_array attribute_list_opt
[1db21619]2669 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2670 | variable_abstract_function attribute_list_opt
[1db21619]2671 { $$ = $1->addQualifiers( $2 ); }
[4d51835]2672 ;
[51b73452]2673
2674variable_abstract_ptr:
[dd51906]2675 ptrref_operator
[4d51835]2676 { $$ = DeclarationNode::newPointer( 0 ); }
[dd51906]2677 | ptrref_operator type_qualifier_list
[4d51835]2678 { $$ = DeclarationNode::newPointer( $2 ); }
[dd51906]2679 | ptrref_operator variable_abstract_declarator
[4d51835]2680 { $$ = $2->addPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2681 | ptrref_operator type_qualifier_list variable_abstract_declarator
[4d51835]2682 { $$ = $3->addPointer( DeclarationNode::newPointer( $2 ) ); }
2683 | '(' variable_abstract_ptr ')'
2684 { $$ = $2; }
2685 ;
[51b73452]2686
2687variable_abstract_array:
[4d51835]2688 array_dimension
2689 | '(' variable_abstract_ptr ')' array_dimension
2690 { $$ = $2->addArray( $4 ); }
2691 | '(' variable_abstract_array ')' multi_array_dimension // redundant parenthesis
2692 { $$ = $2->addArray( $4 ); }
2693 | '(' variable_abstract_array ')' // redundant parenthesis
2694 { $$ = $2; }
2695 ;
[51b73452]2696
2697variable_abstract_function:
[4d51835]2698 '(' variable_abstract_ptr ')' '(' push parameter_type_list_opt pop ')' // empty parameter list OBSOLESCENT (see 3)
2699 { $$ = $2->addParamList( $6 ); }
2700 | '(' variable_abstract_function ')' // redundant parenthesis
2701 { $$ = $2; }
2702 ;
[b87a5ed]2703
[de62360d]2704// This pattern parses a new-style declaration for a parameter variable or function prototype that is either an
2705// identifier or typedef name and allows the C99 array options, which can only appear in a parameter list.
[b87a5ed]2706
2707new_identifier_parameter_declarator_tuple: // CFA
[4d51835]2708 new_identifier_parameter_declarator_no_tuple
2709 | new_abstract_tuple
2710 | type_qualifier_list new_abstract_tuple
2711 { $$ = $2->addQualifiers( $1 ); }
2712 ;
[b87a5ed]2713
2714new_identifier_parameter_declarator_no_tuple: // CFA
[4d51835]2715 new_identifier_parameter_ptr
2716 | new_identifier_parameter_array
2717 ;
[b87a5ed]2718
2719new_identifier_parameter_ptr: // CFA
[dd51906]2720 ptrref_operator type_specifier
[4d51835]2721 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2722 | type_qualifier_list ptrref_operator type_specifier
[4d51835]2723 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
[dd51906]2724 | ptrref_operator new_abstract_function
[4d51835]2725 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2726 | type_qualifier_list ptrref_operator new_abstract_function
[4d51835]2727 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
[dd51906]2728 | ptrref_operator new_identifier_parameter_declarator_tuple
[4d51835]2729 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2730 | type_qualifier_list ptrref_operator new_identifier_parameter_declarator_tuple
[4d51835]2731 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
2732 ;
[b87a5ed]2733
2734new_identifier_parameter_array: // CFA
[de62360d]2735 // Only the first dimension can be empty or have qualifiers. Empty dimension must be factored out due to
2736 // shift/reduce conflict with new-style empty (void) function return type.
[2871210]2737 '[' ']' type_specifier
2738 { $$ = $3->addNewArray( DeclarationNode::newArray( 0, 0, false ) ); }
[4d51835]2739 | new_array_parameter_1st_dimension type_specifier
2740 { $$ = $2->addNewArray( $1 ); }
[2871210]2741 | '[' ']' multi_array_dimension type_specifier
2742 { $$ = $4->addNewArray( $3 )->addNewArray( DeclarationNode::newArray( 0, 0, false ) ); }
[4d51835]2743 | new_array_parameter_1st_dimension multi_array_dimension type_specifier
2744 { $$ = $3->addNewArray( $2 )->addNewArray( $1 ); }
2745 | multi_array_dimension type_specifier
2746 { $$ = $2->addNewArray( $1 ); }
[9059213]2747
[2871210]2748 | '[' ']' new_identifier_parameter_ptr
2749 { $$ = $3->addNewArray( DeclarationNode::newArray( 0, 0, false ) ); }
[4d51835]2750 | new_array_parameter_1st_dimension new_identifier_parameter_ptr
2751 { $$ = $2->addNewArray( $1 ); }
[2871210]2752 | '[' ']' multi_array_dimension new_identifier_parameter_ptr
2753 { $$ = $4->addNewArray( $3 )->addNewArray( DeclarationNode::newArray( 0, 0, false ) ); }
[4d51835]2754 | new_array_parameter_1st_dimension multi_array_dimension new_identifier_parameter_ptr
2755 { $$ = $3->addNewArray( $2 )->addNewArray( $1 ); }
2756 | multi_array_dimension new_identifier_parameter_ptr
2757 { $$ = $2->addNewArray( $1 ); }
2758 ;
[51b73452]2759
2760new_array_parameter_1st_dimension:
[4d51835]2761 '[' push type_qualifier_list '*' pop ']' // remaining C99
2762 { $$ = DeclarationNode::newVarArray( $3 ); }
2763 | '[' push type_qualifier_list assignment_expression pop ']'
2764 { $$ = DeclarationNode::newArray( $4, $3, false ); }
2765 | '[' push declaration_qualifier_list assignment_expression pop ']'
2766 // declaration_qualifier_list must be used because of shift/reduce conflict with
2767 // assignment_expression, so a semantic check is necessary to preclude them as a type_qualifier cannot
2768 // appear in this context.
2769 { $$ = DeclarationNode::newArray( $4, $3, true ); }
2770 | '[' push declaration_qualifier_list type_qualifier_list assignment_expression pop ']'
2771 { $$ = DeclarationNode::newArray( $5, $4->addQualifiers( $3 ), true ); }
2772 ;
[b87a5ed]2773
[de62360d]2774// This pattern parses a new-style declaration of an abstract variable or function prototype, i.e., there is no
2775// identifier to which the type applies, e.g.:
[c11e31c]2776//
[b87a5ed]2777// [int] f( int ); // abstract variable parameter; no parameter name specified
2778// [int] f( [int] (int) ); // abstract function-prototype parameter; no parameter name specified
[c11e31c]2779//
2780// These rules need LR(3):
2781//
[2871210]2782// new_abstract_tuple identifier_or_type_name
2783// '[' new_parameter_list ']' identifier_or_type_name '(' new_parameter_type_list_opt ')'
[c11e31c]2784//
2785// since a function return type can be syntactically identical to a tuple type:
2786//
[b87a5ed]2787// [int, int] t;
2788// [int, int] f( int );
[c11e31c]2789//
[2871210]2790// Therefore, it is necessary to look at the token after identifier_or_type_name to know when to reduce
[de62360d]2791// new_abstract_tuple. To make this LR(1), several rules have to be flattened (lengthened) to allow the necessary
2792// lookahead. To accomplish this, new_abstract_declarator has an entry point without tuple, and tuple declarations are
2793// duplicated when appearing with new_function_specifier.
[b87a5ed]2794
2795new_abstract_declarator_tuple: // CFA
[4d51835]2796 new_abstract_tuple
2797 | type_qualifier_list new_abstract_tuple
2798 { $$ = $2->addQualifiers( $1 ); }
2799 | new_abstract_declarator_no_tuple
2800 ;
[b87a5ed]2801
2802new_abstract_declarator_no_tuple: // CFA
[4d51835]2803 new_abstract_ptr
2804 | new_abstract_array
2805 ;
[b87a5ed]2806
2807new_abstract_ptr: // CFA
[dd51906]2808 ptrref_operator type_specifier
[4d51835]2809 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2810 | type_qualifier_list ptrref_operator type_specifier
[4d51835]2811 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
[dd51906]2812 | ptrref_operator new_abstract_function
[4d51835]2813 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2814 | type_qualifier_list ptrref_operator new_abstract_function
[4d51835]2815 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
[dd51906]2816 | ptrref_operator new_abstract_declarator_tuple
[4d51835]2817 { $$ = $2->addNewPointer( DeclarationNode::newPointer( 0 ) ); }
[dd51906]2818 | type_qualifier_list ptrref_operator new_abstract_declarator_tuple
[4d51835]2819 { $$ = $3->addNewPointer( DeclarationNode::newPointer( $1 ) ); }
2820 ;
[b87a5ed]2821
2822new_abstract_array: // CFA
[de62360d]2823 // Only the first dimension can be empty. Empty dimension must be factored out due to shift/reduce conflict with
2824 // empty (void) function return type.
[2871210]2825 '[' ']' type_specifier
[2298f728]2826 { $$ = $3->addNewArray( DeclarationNode::newArray( nullptr, nullptr, false ) ); }
[2871210]2827 | '[' ']' multi_array_dimension type_specifier
[2298f728]2828 { $$ = $4->addNewArray( $3 )->addNewArray( DeclarationNode::newArray( nullptr, nullptr, false ) ); }
[4d51835]2829 | multi_array_dimension type_specifier
2830 { $$ = $2->addNewArray( $1 ); }
[2871210]2831 | '[' ']' new_abstract_ptr
[2298f728]2832 { $$ = $3->addNewArray( DeclarationNode::newArray( nullptr, nullptr, false ) ); }
[2871210]2833 | '[' ']' multi_array_dimension new_abstract_ptr
[2298f728]2834 { $$ = $4->addNewArray( $3 )->addNewArray( DeclarationNode::newArray( nullptr, nullptr, false ) ); }
[4d51835]2835 | multi_array_dimension new_abstract_ptr
2836 { $$ = $2->addNewArray( $1 ); }
2837 ;
[b87a5ed]2838
2839new_abstract_tuple: // CFA
[4d51835]2840 '[' push new_abstract_parameter_list pop ']'
2841 { $$ = DeclarationNode::newTuple( $3 ); }
2842 ;
[b87a5ed]2843
2844new_abstract_function: // CFA
[1b29996]2845// '[' ']' '(' new_parameter_type_list_opt ')'
2846// { $$ = DeclarationNode::newFunction( nullptr, DeclarationNode::newTuple( nullptr ), $4, nullptr ); }
2847 new_abstract_tuple '(' push new_parameter_type_list_opt pop ')'
[2298f728]2848 { $$ = DeclarationNode::newFunction( nullptr, $1, $4, nullptr ); }
[4d51835]2849 | new_function_return '(' push new_parameter_type_list_opt pop ')'
[2298f728]2850 { $$ = DeclarationNode::newFunction( nullptr, $1, $4, nullptr ); }
[4d51835]2851 ;
[b87a5ed]2852
[de62360d]2853// 1) ISO/IEC 9899:1999 Section 6.7.2(2) : "At least one type specifier shall be given in the declaration specifiers in
2854// each declaration, and in the specifier-qualifier list in each structure declaration and type name."
[c11e31c]2855//
[de62360d]2856// 2) ISO/IEC 9899:1999 Section 6.11.5(1) : "The placement of a storage-class specifier other than at the beginning of
2857// the declaration specifiers in a declaration is an obsolescent feature."
[c11e31c]2858//
2859// 3) ISO/IEC 9899:1999 Section 6.11.6(1) : "The use of function declarators with empty parentheses (not
2860// prototype-format parameter type declarators) is an obsolescent feature."
2861//
[de62360d]2862// 4) ISO/IEC 9899:1999 Section 6.11.7(1) : "The use of function definitions with separate parameter identifier and
2863// declaration lists (not prototype-format parameter type and identifier declarators) is an obsolescent feature.
[51b73452]2864
[c11e31c]2865//************************* MISCELLANEOUS ********************************
[51b73452]2866
[b87a5ed]2867comma_opt: // redundant comma
[4d51835]2868 // empty
2869 | ','
2870 ;
[51b73452]2871
2872assignment_opt:
[4d51835]2873 // empty
2874 { $$ = 0; }
2875 | '=' assignment_expression
2876 { $$ = $2; }
2877 ;
[51b73452]2878
2879%%
[c11e31c]2880// ----end of grammar----
[51b73452]2881
[0da3e2c]2882extern char *yytext;
2883
[5f2f2d7]2884void yyerror( const char * ) {
[2298f728]2885 cout << "Error ";
[b87a5ed]2886 if ( yyfilename ) {
[2298f728]2887 cout << "in file " << yyfilename << " ";
[5f2f2d7]2888 } // if
[2298f728]2889 cout << "at line " << yylineno << " reading token \"" << (yytext[0] == '\0' ? "EOF" : yytext) << "\"" << endl;
[51b73452]2890}
2891
[c11e31c]2892// Local Variables: //
[b87a5ed]2893// mode: c++ //
[de62360d]2894// tab-width: 4 //
[c11e31c]2895// compile-command: "make install" //
2896// End: //
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