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Chris Lattner7ad0fbe2006-11-05 07:46:30 +00001//===--- ParseExpr.cpp - Expression Parsing -------------------------------===//
Chris Lattnerc951dae2006-08-10 04:23:57 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Chris Lattnercde626a2006-08-12 08:13:25 +000010// This file implements the Expression parsing implementation. Expressions in
11// C99 basically consist of a bunch of binary operators with unary operators and
12// other random stuff at the leaves.
13//
14// In the C99 grammar, these unary operators bind tightest and are represented
15// as the 'cast-expression' production. Everything else is either a binary
Chris Lattnerb7f1fc92006-08-12 16:45:01 +000016// operator (e.g. '/') or a ternary operator ("?:"). The unary leaves are
Chris Lattnercde626a2006-08-12 08:13:25 +000017// handled by ParseCastExpression, the higher level pieces are handled by
18// ParseBinaryExpression.
Chris Lattnerc951dae2006-08-10 04:23:57 +000019//
20//===----------------------------------------------------------------------===//
21
22#include "clang/Parse/Parser.h"
23#include "clang/Basic/Diagnostic.h"
Chris Lattner6d28d9b2006-08-24 03:51:22 +000024#include "llvm/ADT/SmallVector.h"
Chris Lattner834618d2006-11-03 07:48:41 +000025#include "llvm/ADT/SmallString.h"
Chris Lattnerc951dae2006-08-10 04:23:57 +000026using namespace llvm;
27using namespace clang;
28
Chris Lattnerb7f1fc92006-08-12 16:45:01 +000029/// PrecedenceLevels - These are precedences for the binary/ternary operators in
Chris Lattnercde626a2006-08-12 08:13:25 +000030/// the C99 grammar. These have been named to relate with the C99 grammar
31/// productions. Low precedences numbers bind more weakly than high numbers.
32namespace prec {
33 enum Level {
34 Unknown = 0, // Not binary operator.
35 Comma = 1, // ,
36 Assignment = 2, // =, *=, /=, %=, +=, -=, <<=, >>=, &=, ^=, |=
37 Conditional = 3, // ?
38 LogicalOr = 4, // ||
39 LogicalAnd = 5, // &&
40 InclusiveOr = 6, // |
41 ExclusiveOr = 7, // ^
42 And = 8, // &
Chris Lattner9916c5c2006-10-27 05:24:37 +000043 Equality = 9, // ==, !=
44 Relational = 10, // >=, <=, >, <
45 Shift = 11, // <<, >>
46 Additive = 12, // -, +
47 Multiplicative = 13 // *, /, %
Chris Lattnercde626a2006-08-12 08:13:25 +000048 };
49}
50
51
52/// getBinOpPrecedence - Return the precedence of the specified binary operator
53/// token. This returns:
54///
55static prec::Level getBinOpPrecedence(tok::TokenKind Kind) {
56 switch (Kind) {
57 default: return prec::Unknown;
58 case tok::comma: return prec::Comma;
59 case tok::equal:
60 case tok::starequal:
61 case tok::slashequal:
62 case tok::percentequal:
63 case tok::plusequal:
64 case tok::minusequal:
65 case tok::lesslessequal:
66 case tok::greatergreaterequal:
67 case tok::ampequal:
68 case tok::caretequal:
69 case tok::pipeequal: return prec::Assignment;
70 case tok::question: return prec::Conditional;
71 case tok::pipepipe: return prec::LogicalOr;
72 case tok::ampamp: return prec::LogicalAnd;
73 case tok::pipe: return prec::InclusiveOr;
74 case tok::caret: return prec::ExclusiveOr;
75 case tok::amp: return prec::And;
Chris Lattnercde626a2006-08-12 08:13:25 +000076 case tok::exclaimequal:
77 case tok::equalequal: return prec::Equality;
78 case tok::lessequal:
79 case tok::less:
80 case tok::greaterequal:
81 case tok::greater: return prec::Relational;
82 case tok::lessless:
83 case tok::greatergreater: return prec::Shift;
84 case tok::plus:
85 case tok::minus: return prec::Additive;
86 case tok::percent:
87 case tok::slash:
88 case tok::star: return prec::Multiplicative;
89 }
90}
91
92
Chris Lattnerce7e21d2006-08-12 17:22:40 +000093/// ParseExpression - Simple precedence-based parser for binary/ternary
Chris Lattnercde626a2006-08-12 08:13:25 +000094/// operators.
95///
Chris Lattnerb7f1fc92006-08-12 16:45:01 +000096/// Note: we diverge from the C99 grammar when parsing the assignment-expression
97/// production. C99 specifies that the LHS of an assignment operator should be
98/// parsed as a unary-expression, but consistency dictates that it be a
99/// conditional-expession. In practice, the important thing here is that the
100/// LHS of an assignment has to be an l-value, which productions between
101/// unary-expression and conditional-expression don't produce. Because we want
102/// consistency, we parse the LHS as a conditional-expression, then check for
103/// l-value-ness in semantic analysis stages.
104///
Chris Lattnercde626a2006-08-12 08:13:25 +0000105/// multiplicative-expression: [C99 6.5.5]
106/// cast-expression
107/// multiplicative-expression '*' cast-expression
108/// multiplicative-expression '/' cast-expression
109/// multiplicative-expression '%' cast-expression
110///
111/// additive-expression: [C99 6.5.6]
112/// multiplicative-expression
113/// additive-expression '+' multiplicative-expression
114/// additive-expression '-' multiplicative-expression
115///
116/// shift-expression: [C99 6.5.7]
117/// additive-expression
118/// shift-expression '<<' additive-expression
119/// shift-expression '>>' additive-expression
120///
121/// relational-expression: [C99 6.5.8]
122/// shift-expression
123/// relational-expression '<' shift-expression
124/// relational-expression '>' shift-expression
125/// relational-expression '<=' shift-expression
126/// relational-expression '>=' shift-expression
127///
128/// equality-expression: [C99 6.5.9]
129/// relational-expression
130/// equality-expression '==' relational-expression
131/// equality-expression '!=' relational-expression
132///
133/// AND-expression: [C99 6.5.10]
134/// equality-expression
135/// AND-expression '&' equality-expression
136///
137/// exclusive-OR-expression: [C99 6.5.11]
138/// AND-expression
139/// exclusive-OR-expression '^' AND-expression
140///
141/// inclusive-OR-expression: [C99 6.5.12]
142/// exclusive-OR-expression
143/// inclusive-OR-expression '|' exclusive-OR-expression
144///
145/// logical-AND-expression: [C99 6.5.13]
146/// inclusive-OR-expression
147/// logical-AND-expression '&&' inclusive-OR-expression
148///
149/// logical-OR-expression: [C99 6.5.14]
150/// logical-AND-expression
151/// logical-OR-expression '||' logical-AND-expression
152///
153/// conditional-expression: [C99 6.5.15]
154/// logical-OR-expression
155/// logical-OR-expression '?' expression ':' conditional-expression
156/// [GNU] logical-OR-expression '?' ':' conditional-expression
157///
158/// assignment-expression: [C99 6.5.16]
159/// conditional-expression
160/// unary-expression assignment-operator assignment-expression
161///
162/// assignment-operator: one of
163/// = *= /= %= += -= <<= >>= &= ^= |=
164///
165/// expression: [C99 6.5.17]
166/// assignment-expression
167/// expression ',' assignment-expression
168///
Chris Lattnerd35c34f2006-08-12 17:04:50 +0000169Parser::ExprResult Parser::ParseExpression() {
Chris Lattnercde626a2006-08-12 08:13:25 +0000170 ExprResult LHS = ParseCastExpression(false);
171 if (LHS.isInvalid) return LHS;
172
173 return ParseRHSOfBinaryExpression(LHS, prec::Comma);
174}
175
Chris Lattner0c6c0342006-08-12 18:12:45 +0000176/// ParseAssignmentExpression - Parse an expr that doesn't include commas.
177///
Chris Lattnerce7e21d2006-08-12 17:22:40 +0000178Parser::ExprResult Parser::ParseAssignmentExpression() {
179 ExprResult LHS = ParseCastExpression(false);
180 if (LHS.isInvalid) return LHS;
181
182 return ParseRHSOfBinaryExpression(LHS, prec::Assignment);
183}
184
Chris Lattner3b561a32006-08-13 00:12:11 +0000185Parser::ExprResult Parser::ParseConstantExpression() {
186 ExprResult LHS = ParseCastExpression(false);
187 if (LHS.isInvalid) return LHS;
188
189 // TODO: Validate that this is a constant expr!
190 return ParseRHSOfBinaryExpression(LHS, prec::Conditional);
191}
192
Chris Lattner0c6c0342006-08-12 18:12:45 +0000193/// ParseExpressionWithLeadingIdentifier - This special purpose method is used
194/// in contexts where we have already consumed an identifier (which we saved in
195/// 'Tok'), then discovered that the identifier was really the leading token of
196/// part of an expression. For example, in "A[1]+B", we consumed "A" (which is
197/// now in 'Tok') and the current token is "[".
198Parser::ExprResult Parser::
199ParseExpressionWithLeadingIdentifier(const LexerToken &Tok) {
200 // We know that 'Tok' must correspond to this production:
201 // primary-expression: identifier
202
Chris Lattnereb2feef2006-11-04 19:14:32 +0000203 // Let the actions module handle the identifier.
Chris Lattnerac18be92006-11-20 06:49:47 +0000204 ExprResult Res = Actions.ParseIdentifierExpr(CurScope, Tok.getLocation(),
205 *Tok.getIdentifierInfo(),
206 Tok.getKind() == tok::l_paren);
Chris Lattner0c6c0342006-08-12 18:12:45 +0000207
208 // Because we have to parse an entire cast-expression before starting the
209 // ParseRHSOfBinaryExpression method (which parses any trailing binops), we
210 // need to handle the 'postfix-expression' rules. We do this by invoking
211 // ParsePostfixExpressionSuffix to consume any postfix-expression suffixes:
212 Res = ParsePostfixExpressionSuffix(Res);
213 if (Res.isInvalid) return Res;
214
215 // At this point, the "A[1]" part of "A[1]+B" has been consumed. Once this is
216 // done, we know we don't have to do anything for cast-expression, because the
217 // only non-postfix-expression production starts with a '(' token, and we know
218 // we have an identifier. As such, we can invoke ParseRHSOfBinaryExpression
219 // to consume any trailing operators (e.g. "+" in this example) and connected
220 // chunks of the expression.
221 return ParseRHSOfBinaryExpression(Res, prec::Comma);
222}
223
Chris Lattner8693a512006-08-13 21:54:02 +0000224/// ParseExpressionWithLeadingIdentifier - This special purpose method is used
225/// in contexts where we have already consumed an identifier (which we saved in
226/// 'Tok'), then discovered that the identifier was really the leading token of
227/// part of an assignment-expression. For example, in "A[1]+B", we consumed "A"
228/// (which is now in 'Tok') and the current token is "[".
229Parser::ExprResult Parser::
230ParseAssignmentExprWithLeadingIdentifier(const LexerToken &Tok) {
231 // We know that 'Tok' must correspond to this production:
232 // primary-expression: identifier
233
Chris Lattnereb2feef2006-11-04 19:14:32 +0000234 // Let the actions module handle the identifier.
Chris Lattnerac18be92006-11-20 06:49:47 +0000235 ExprResult Res = Actions.ParseIdentifierExpr(CurScope, Tok.getLocation(),
236 *Tok.getIdentifierInfo(),
237 Tok.getKind() == tok::l_paren);
Chris Lattner8693a512006-08-13 21:54:02 +0000238
239 // Because we have to parse an entire cast-expression before starting the
240 // ParseRHSOfBinaryExpression method (which parses any trailing binops), we
241 // need to handle the 'postfix-expression' rules. We do this by invoking
242 // ParsePostfixExpressionSuffix to consume any postfix-expression suffixes:
243 Res = ParsePostfixExpressionSuffix(Res);
244 if (Res.isInvalid) return Res;
245
246 // At this point, the "A[1]" part of "A[1]+B" has been consumed. Once this is
247 // done, we know we don't have to do anything for cast-expression, because the
248 // only non-postfix-expression production starts with a '(' token, and we know
249 // we have an identifier. As such, we can invoke ParseRHSOfBinaryExpression
250 // to consume any trailing operators (e.g. "+" in this example) and connected
251 // chunks of the expression.
252 return ParseRHSOfBinaryExpression(Res, prec::Assignment);
253}
254
255
Chris Lattner62591722006-08-12 18:40:58 +0000256/// ParseAssignmentExpressionWithLeadingStar - This special purpose method is
257/// used in contexts where we have already consumed a '*' (which we saved in
258/// 'Tok'), then discovered that the '*' was really the leading token of an
259/// expression. For example, in "*(int*)P+B", we consumed "*" (which is
260/// now in 'Tok') and the current token is "(".
261Parser::ExprResult Parser::
262ParseAssignmentExpressionWithLeadingStar(const LexerToken &Tok) {
263 // We know that 'Tok' must correspond to this production:
264 // unary-expression: unary-operator cast-expression
265 // where 'unary-operator' is '*'.
266
267 // Parse the cast-expression that follows the '*'. This will parse the
268 // "*(int*)P" part of "*(int*)P+B".
269 ExprResult Res = ParseCastExpression(false);
270 if (Res.isInvalid) return Res;
271
272 // TODO: Combine Tok + Res to get the new AST.
273
274 // We have to parse an entire cast-expression before starting the
275 // ParseRHSOfBinaryExpression method (which parses any trailing binops). Since
276 // we know that the only production above us is the cast-expression
277 // production, and because the only alternative productions start with a '('
278 // token (we know we had a '*'), there is no work to do to get a whole
279 // cast-expression.
280
281 // At this point, the "*(int*)P" part of "*(int*)P+B" has been consumed. Once
282 // this is done, we can invoke ParseRHSOfBinaryExpression to consume any
283 // trailing operators (e.g. "+" in this example) and connected chunks of the
284 // assignment-expression.
285 return ParseRHSOfBinaryExpression(Res, prec::Assignment);
286}
287
288
Chris Lattnercde626a2006-08-12 08:13:25 +0000289/// ParseRHSOfBinaryExpression - Parse a binary expression that starts with
290/// LHS and has a precedence of at least MinPrec.
291Parser::ExprResult
292Parser::ParseRHSOfBinaryExpression(ExprResult LHS, unsigned MinPrec) {
293 unsigned NextTokPrec = getBinOpPrecedence(Tok.getKind());
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000294 SourceLocation ColonLoc;
295
Chris Lattnercde626a2006-08-12 08:13:25 +0000296 while (1) {
297 // If this token has a lower precedence than we are allowed to parse (e.g.
298 // because we are called recursively, or because the token is not a binop),
299 // then we are done!
300 if (NextTokPrec < MinPrec)
301 return LHS;
302
303 // Consume the operator, saving the operator token for error reporting.
304 LexerToken OpToken = Tok;
305 ConsumeToken();
306
Chris Lattner96c3deb2006-08-12 17:13:08 +0000307 // Special case handling for the ternary operator.
Chris Lattnerb5600a62006-10-06 05:40:05 +0000308 ExprResult TernaryMiddle(true);
Chris Lattner96c3deb2006-08-12 17:13:08 +0000309 if (NextTokPrec == prec::Conditional) {
310 if (Tok.getKind() != tok::colon) {
311 // Handle this production specially:
312 // logical-OR-expression '?' expression ':' conditional-expression
313 // In particular, the RHS of the '?' is 'expression', not
314 // 'logical-OR-expression' as we might expect.
315 TernaryMiddle = ParseExpression();
316 if (TernaryMiddle.isInvalid) return TernaryMiddle;
317 } else {
318 // Special case handling of "X ? Y : Z" where Y is empty:
319 // logical-OR-expression '?' ':' conditional-expression [GNU]
320 TernaryMiddle = ExprResult(false);
321 Diag(Tok, diag::ext_gnu_conditional_expr);
322 }
323
324 if (Tok.getKind() != tok::colon) {
325 Diag(Tok, diag::err_expected_colon);
326 Diag(OpToken, diag::err_matching, "?");
327 return ExprResult(true);
328 }
329
330 // Eat the colon.
Chris Lattneraf635312006-10-16 06:06:51 +0000331 ColonLoc = ConsumeToken();
Chris Lattnercde626a2006-08-12 08:13:25 +0000332 }
Chris Lattner96c3deb2006-08-12 17:13:08 +0000333
334 // Parse another leaf here for the RHS of the operator.
335 ExprResult RHS = ParseCastExpression(false);
336 if (RHS.isInvalid) return RHS;
Chris Lattnercde626a2006-08-12 08:13:25 +0000337
338 // Remember the precedence of this operator and get the precedence of the
339 // operator immediately to the right of the RHS.
340 unsigned ThisPrec = NextTokPrec;
341 NextTokPrec = getBinOpPrecedence(Tok.getKind());
Chris Lattner89d53752006-08-12 17:18:19 +0000342
343 // Assignment and conditional expressions are right-associative.
344 bool isRightAssoc = NextTokPrec == prec::Conditional ||
345 NextTokPrec == prec::Assignment;
Chris Lattnercde626a2006-08-12 08:13:25 +0000346
347 // Get the precedence of the operator to the right of the RHS. If it binds
348 // more tightly with RHS than we do, evaluate it completely first.
Chris Lattnercde626a2006-08-12 08:13:25 +0000349 if (ThisPrec < NextTokPrec ||
350 (ThisPrec == NextTokPrec && isRightAssoc)) {
Chris Lattner89d53752006-08-12 17:18:19 +0000351 // If this is left-associative, only parse things on the RHS that bind
352 // more tightly than the current operator. If it is left-associative, it
353 // is okay, to bind exactly as tightly. For example, compile A=B=C=D as
354 // A=(B=(C=D)), where each paren is a level of recursion here.
355 RHS = ParseRHSOfBinaryExpression(RHS, ThisPrec + !isRightAssoc);
Chris Lattnercde626a2006-08-12 08:13:25 +0000356 if (RHS.isInvalid) return RHS;
357
358 NextTokPrec = getBinOpPrecedence(Tok.getKind());
359 }
360 assert(NextTokPrec <= ThisPrec && "Recursion didn't work!");
361
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000362 // Combine the LHS and RHS into the LHS (e.g. build AST).
Chris Lattnerb5600a62006-10-06 05:40:05 +0000363 if (TernaryMiddle.isInvalid)
Chris Lattnerae319692006-10-25 03:49:28 +0000364 LHS = Actions.ParseBinOp(OpToken.getLocation(), OpToken.getKind(),
365 LHS.Val, RHS.Val);
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000366 else
367 LHS = Actions.ParseConditionalOp(OpToken.getLocation(), ColonLoc,
368 LHS.Val, TernaryMiddle.Val, RHS.Val);
Chris Lattnercde626a2006-08-12 08:13:25 +0000369 }
370}
371
Chris Lattnereaf06592006-08-11 02:02:23 +0000372/// ParseCastExpression - Parse a cast-expression, or, if isUnaryExpression is
373/// true, parse a unary-expression.
374///
Chris Lattner4564bc12006-08-10 23:14:52 +0000375/// cast-expression: [C99 6.5.4]
376/// unary-expression
377/// '(' type-name ')' cast-expression
Chris Lattner81b576e2006-08-11 02:13:20 +0000378///
Chris Lattnerc2dd85a2006-08-10 22:57:16 +0000379/// unary-expression: [C99 6.5.3]
380/// postfix-expression
381/// '++' unary-expression
382/// '--' unary-expression
383/// unary-operator cast-expression
384/// 'sizeof' unary-expression
385/// 'sizeof' '(' type-name ')'
386/// [GNU] '__alignof' unary-expression
387/// [GNU] '__alignof' '(' type-name ')'
388/// [GNU] '&&' identifier
Chris Lattner81b576e2006-08-11 02:13:20 +0000389///
Chris Lattnerc2dd85a2006-08-10 22:57:16 +0000390/// unary-operator: one of
391/// '&' '*' '+' '-' '~' '!'
392/// [GNU] '__extension__' '__real' '__imag'
393///
Chris Lattner52a99e52006-08-10 20:56:00 +0000394/// primary-expression: [C99 6.5.1]
Chris Lattnerc5e0d4a2006-08-10 19:06:03 +0000395/// identifier
396/// constant
397/// string-literal
398/// '(' expression ')'
Chris Lattner52a99e52006-08-10 20:56:00 +0000399/// '__func__' [C99 6.4.2.2]
400/// [GNU] '__FUNCTION__'
401/// [GNU] '__PRETTY_FUNCTION__'
402/// [GNU] '(' compound-statement ')'
403/// [GNU] '__builtin_va_arg' '(' assignment-expression ',' type-name ')'
404/// [GNU] '__builtin_offsetof' '(' type-name ',' offsetof-member-designator')'
405/// [GNU] '__builtin_choose_expr' '(' assign-expr ',' assign-expr ','
406/// assign-expr ')'
407/// [GNU] '__builtin_types_compatible_p' '(' type-name ',' type-name ')'
408/// [OBC] '[' objc-receiver objc-message-args ']' [TODO]
409/// [OBC] '@selector' '(' objc-selector-arg ')' [TODO]
410/// [OBC] '@protocol' '(' identifier ')' [TODO]
411/// [OBC] '@encode' '(' type-name ')' [TODO]
412/// [OBC] objc-string-literal [TODO]
413///
414/// constant: [C99 6.4.4]
415/// integer-constant
416/// floating-constant
417/// enumeration-constant -> identifier
418/// character-constant
Chris Lattner52a99e52006-08-10 20:56:00 +0000419///
Chris Lattner89c50c62006-08-11 06:41:18 +0000420Parser::ExprResult Parser::ParseCastExpression(bool isUnaryExpression) {
421 ExprResult Res;
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000422 tok::TokenKind SavedKind = Tok.getKind();
Chris Lattner89c50c62006-08-11 06:41:18 +0000423
Chris Lattner81b576e2006-08-11 02:13:20 +0000424 // This handles all of cast-expression, unary-expression, postfix-expression,
425 // and primary-expression. We handle them together like this for efficiency
426 // and to simplify handling of an expression starting with a '(' token: which
427 // may be one of a parenthesized expression, cast-expression, compound literal
428 // expression, or statement expression.
429 //
430 // If the parsed tokens consist of a primary-expression, the cases below
Chris Lattner20c6a452006-08-12 17:40:43 +0000431 // call ParsePostfixExpressionSuffix to handle the postfix expression
432 // suffixes. Cases that cannot be followed by postfix exprs should
433 // return without invoking ParsePostfixExpressionSuffix.
Chris Lattnerae319692006-10-25 03:49:28 +0000434 switch (SavedKind) {
Chris Lattnere550a4e2006-08-24 06:37:51 +0000435 case tok::l_paren: {
Chris Lattner81b576e2006-08-11 02:13:20 +0000436 // If this expression is limited to being a unary-expression, the parent can
437 // not start a cast expression.
438 ParenParseOption ParenExprType =
439 isUnaryExpression ? CompoundLiteral : CastExpr;
Chris Lattnere550a4e2006-08-24 06:37:51 +0000440 TypeTy *CastTy;
441 SourceLocation LParenLoc = Tok.getLocation();
442 SourceLocation RParenLoc;
443 Res = ParseParenExpression(ParenExprType, CastTy, RParenLoc);
Chris Lattner89c50c62006-08-11 06:41:18 +0000444 if (Res.isInvalid) return Res;
445
Chris Lattner81b576e2006-08-11 02:13:20 +0000446 switch (ParenExprType) {
447 case SimpleExpr: break; // Nothing else to do.
448 case CompoundStmt: break; // Nothing else to do.
449 case CompoundLiteral:
450 // We parsed '(' type-name ')' '{' ... '}'. If any suffixes of
451 // postfix-expression exist, parse them now.
452 break;
453 case CastExpr:
454 // We parsed '(' type-name ')' and the thing after it wasn't a '{'. Parse
455 // the cast-expression that follows it next.
Chris Lattnere550a4e2006-08-24 06:37:51 +0000456 // TODO: For cast expression with CastTy.
457 Res = ParseCastExpression(false);
458 if (!Res.isInvalid)
459 Res = Actions.ParseCastExpr(LParenLoc, CastTy, RParenLoc, Res.Val);
460 return Res;
Chris Lattner81b576e2006-08-11 02:13:20 +0000461 }
Chris Lattner20c6a452006-08-12 17:40:43 +0000462
463 // These can be followed by postfix-expr pieces.
464 return ParsePostfixExpressionSuffix(Res);
Chris Lattnere550a4e2006-08-24 06:37:51 +0000465 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000466
Chris Lattner52a99e52006-08-10 20:56:00 +0000467 // primary-expression
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000468 case tok::numeric_constant:
469 // constant: integer-constant
470 // constant: floating-constant
471
472 // TODO: Validate whether this is an integer or floating-constant or
473 // neither.
474 if (1) {
Chris Lattnerae319692006-10-25 03:49:28 +0000475 Res = Actions.ParseIntegerConstant(Tok.getLocation());
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000476 } else {
Chris Lattnerae319692006-10-25 03:49:28 +0000477 Res = Actions.ParseFloatingConstant(Tok.getLocation());
Chris Lattner9b6d4cb2006-08-23 05:17:46 +0000478 }
479 ConsumeToken();
480
481 // These can be followed by postfix-expr pieces.
482 return ParsePostfixExpressionSuffix(Res);
483
Chris Lattnerac18be92006-11-20 06:49:47 +0000484 case tok::identifier: { // primary-expression: identifier
Chris Lattner52a99e52006-08-10 20:56:00 +0000485 // constant: enumeration-constant
Chris Lattnerac18be92006-11-20 06:49:47 +0000486 // Consume the identifier so that we can see if it is followed by a '('.
487 // Function designators are allowed to be undeclared (C99 6.5.1p2), so we
488 // need to know whether or not this identifier is a function designator or
489 // not.
490 IdentifierInfo &II = *Tok.getIdentifierInfo();
491 SourceLocation L = ConsumeToken();
492 Res = Actions.ParseIdentifierExpr(CurScope, L, II,
493 Tok.getKind() == tok::l_paren);
Chris Lattner17ed4872006-11-20 04:58:19 +0000494 // These can be followed by postfix-expr pieces.
495 return ParsePostfixExpressionSuffix(Res);
Chris Lattnerac18be92006-11-20 06:49:47 +0000496 }
Chris Lattner52a99e52006-08-10 20:56:00 +0000497 case tok::char_constant: // constant: character-constant
498 case tok::kw___func__: // primary-expression: __func__ [C99 6.4.2.2]
499 case tok::kw___FUNCTION__: // primary-expression: __FUNCTION__ [GNU]
500 case tok::kw___PRETTY_FUNCTION__: // primary-expression: __P..Y_F..N__ [GNU]
Chris Lattnerae319692006-10-25 03:49:28 +0000501 Res = Actions.ParseSimplePrimaryExpr(Tok.getLocation(), SavedKind);
Chris Lattner52a99e52006-08-10 20:56:00 +0000502 ConsumeToken();
Chris Lattner20c6a452006-08-12 17:40:43 +0000503 // These can be followed by postfix-expr pieces.
504 return ParsePostfixExpressionSuffix(Res);
Chris Lattner52a99e52006-08-10 20:56:00 +0000505 case tok::string_literal: // primary-expression: string-literal
Chris Lattnerd3e98952006-10-06 05:22:26 +0000506 case tok::wide_string_literal:
Chris Lattner89c50c62006-08-11 06:41:18 +0000507 Res = ParseStringLiteralExpression();
508 if (Res.isInvalid) return Res;
Chris Lattner20c6a452006-08-12 17:40:43 +0000509 // This can be followed by postfix-expr pieces (e.g. "foo"[1]).
510 return ParsePostfixExpressionSuffix(Res);
Chris Lattnerf8339772006-08-10 22:01:51 +0000511 case tok::kw___builtin_va_arg:
512 case tok::kw___builtin_offsetof:
513 case tok::kw___builtin_choose_expr:
514 case tok::kw___builtin_types_compatible_p:
Chris Lattner11124352006-08-12 19:16:08 +0000515 return ParseBuiltinPrimaryExpression();
Chris Lattner81b576e2006-08-11 02:13:20 +0000516 case tok::plusplus: // unary-expression: '++' unary-expression
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000517 case tok::minusminus: { // unary-expression: '--' unary-expression
518 SourceLocation SavedLoc = ConsumeToken();
Chris Lattner1b926492006-08-23 06:42:10 +0000519 Res = ParseCastExpression(true);
520 if (!Res.isInvalid)
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000521 Res = Actions.ParseUnaryOp(SavedLoc, SavedKind, Res.Val);
Chris Lattner1b926492006-08-23 06:42:10 +0000522 return Res;
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000523 }
Chris Lattner81b576e2006-08-11 02:13:20 +0000524 case tok::amp: // unary-expression: '&' cast-expression
525 case tok::star: // unary-expression: '*' cast-expression
526 case tok::plus: // unary-expression: '+' cast-expression
527 case tok::minus: // unary-expression: '-' cast-expression
528 case tok::tilde: // unary-expression: '~' cast-expression
529 case tok::exclaim: // unary-expression: '!' cast-expression
530 case tok::kw___real: // unary-expression: '__real' cast-expression [GNU]
Chris Lattner1b926492006-08-23 06:42:10 +0000531 case tok::kw___imag: // unary-expression: '__imag' cast-expression [GNU]
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000532 case tok::kw___extension__:{//unary-expression:'__extension__' cast-expr [GNU]
Chris Lattner4daa0772006-10-20 05:03:44 +0000533 // FIXME: Extension not handled correctly here!
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000534 SourceLocation SavedLoc = ConsumeToken();
Chris Lattner1b926492006-08-23 06:42:10 +0000535 Res = ParseCastExpression(false);
536 if (!Res.isInvalid)
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000537 Res = Actions.ParseUnaryOp(SavedLoc, SavedKind, Res.Val);
Chris Lattner1b926492006-08-23 06:42:10 +0000538 return Res;
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000539 }
Chris Lattner81b576e2006-08-11 02:13:20 +0000540 case tok::kw_sizeof: // unary-expression: 'sizeof' unary-expression
541 // unary-expression: 'sizeof' '(' type-name ')'
542 case tok::kw___alignof: // unary-expression: '__alignof' unary-expression
543 // unary-expression: '__alignof' '(' type-name ')'
Chris Lattner89c50c62006-08-11 06:41:18 +0000544 return ParseSizeofAlignofExpression();
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000545 case tok::ampamp: { // unary-expression: '&&' identifier
Chris Lattner81b576e2006-08-11 02:13:20 +0000546 Diag(Tok, diag::ext_gnu_address_of_label);
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000547 SourceLocation SavedLoc = ConsumeToken();
Chris Lattner14a1b642006-10-15 22:33:58 +0000548
549 if (Tok.getKind() != tok::identifier) {
Chris Lattner81b576e2006-08-11 02:13:20 +0000550 Diag(Tok, diag::err_expected_ident);
Chris Lattner89c50c62006-08-11 06:41:18 +0000551 return ExprResult(true);
Chris Lattner81b576e2006-08-11 02:13:20 +0000552 }
Chris Lattner14a1b642006-10-15 22:33:58 +0000553 // FIXME: Create a label ref for Tok.Ident.
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000554 Res = Actions.ParseUnaryOp(SavedLoc, SavedKind, 0);
Chris Lattner14a1b642006-10-15 22:33:58 +0000555 ConsumeToken();
556
557 return Res;
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000558 }
Chris Lattner52a99e52006-08-10 20:56:00 +0000559 default:
560 Diag(Tok, diag::err_expected_expression);
Chris Lattner89c50c62006-08-11 06:41:18 +0000561 return ExprResult(true);
Chris Lattnerf8339772006-08-10 22:01:51 +0000562 }
563
Chris Lattner20c6a452006-08-12 17:40:43 +0000564 // unreachable.
565 abort();
566}
567
568/// ParsePostfixExpressionSuffix - Once the leading part of a postfix-expression
569/// is parsed, this method parses any suffixes that apply.
570///
571/// postfix-expression: [C99 6.5.2]
572/// primary-expression
573/// postfix-expression '[' expression ']'
574/// postfix-expression '(' argument-expression-list[opt] ')'
575/// postfix-expression '.' identifier
576/// postfix-expression '->' identifier
577/// postfix-expression '++'
578/// postfix-expression '--'
579/// '(' type-name ')' '{' initializer-list '}'
580/// '(' type-name ')' '{' initializer-list ',' '}'
581///
582/// argument-expression-list: [C99 6.5.2]
583/// argument-expression
584/// argument-expression-list ',' assignment-expression
585///
586Parser::ExprResult Parser::ParsePostfixExpressionSuffix(ExprResult LHS) {
Chris Lattner20c6a452006-08-12 17:40:43 +0000587
Chris Lattnerf8339772006-08-10 22:01:51 +0000588 // Now that the primary-expression piece of the postfix-expression has been
589 // parsed, see if there are any postfix-expression pieces here.
590 SourceLocation Loc;
591 while (1) {
592 switch (Tok.getKind()) {
Chris Lattner20c6a452006-08-12 17:40:43 +0000593 default: // Not a postfix-expression suffix.
594 return LHS;
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000595 case tok::l_square: { // postfix-expression: p-e '[' expression ']'
Chris Lattner04132372006-10-16 06:12:55 +0000596 Loc = ConsumeBracket();
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000597 ExprResult Idx = ParseExpression();
598
599 SourceLocation RLoc = Tok.getLocation();
600
601 if (!LHS.isInvalid && !Idx.isInvalid && Tok.getKind() == tok::r_square)
602 LHS = Actions.ParseArraySubscriptExpr(LHS.Val, Loc, Idx.Val, RLoc);
603 else
604 LHS = ExprResult(true);
605
Chris Lattner89c50c62006-08-11 06:41:18 +0000606 // Match the ']'.
Chris Lattner04f80192006-08-15 04:55:54 +0000607 MatchRHSPunctuation(tok::r_square, Loc);
Chris Lattner89c50c62006-08-11 06:41:18 +0000608 break;
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000609 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000610
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000611 case tok::l_paren: { // p-e: p-e '(' argument-expression-list[opt] ')'
612 SmallVector<ExprTy*, 8> ArgExprs;
613 SmallVector<SourceLocation, 8> CommaLocs;
614 bool ArgExprsOk = true;
615
Chris Lattner04132372006-10-16 06:12:55 +0000616 Loc = ConsumeParen();
Chris Lattner89c50c62006-08-11 06:41:18 +0000617
Chris Lattner0c6c0342006-08-12 18:12:45 +0000618 if (Tok.getKind() != tok::r_paren) {
619 while (1) {
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000620 ExprResult ArgExpr = ParseAssignmentExpression();
621 if (ArgExpr.isInvalid)
622 ArgExprsOk = false;
623 else
624 ArgExprs.push_back(ArgExpr.Val);
625
Chris Lattner0c6c0342006-08-12 18:12:45 +0000626 if (Tok.getKind() != tok::comma)
627 break;
Chris Lattneraf635312006-10-16 06:06:51 +0000628 // Move to the next argument, remember where the comma was.
629 CommaLocs.push_back(ConsumeToken());
Chris Lattner0c6c0342006-08-12 18:12:45 +0000630 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000631 }
Chris Lattner81b576e2006-08-11 02:13:20 +0000632
Chris Lattner89c50c62006-08-11 06:41:18 +0000633 // Match the ')'.
Chris Lattnere165d942006-08-24 04:40:38 +0000634 if (!LHS.isInvalid && ArgExprsOk && Tok.getKind() == tok::r_paren) {
635 assert((ArgExprs.size() == 0 || ArgExprs.size()-1 == CommaLocs.size())&&
636 "Unexpected number of commas!");
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000637 LHS = Actions.ParseCallExpr(LHS.Val, Loc, &ArgExprs[0], ArgExprs.size(),
Chris Lattnere165d942006-08-24 04:40:38 +0000638 &CommaLocs[0], Tok.getLocation());
639 }
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000640
Chris Lattner04f80192006-08-15 04:55:54 +0000641 MatchRHSPunctuation(tok::r_paren, Loc);
Chris Lattner89c50c62006-08-11 06:41:18 +0000642 break;
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000643 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000644 case tok::arrow: // postfix-expression: p-e '->' identifier
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000645 case tok::period: { // postfix-expression: p-e '.' identifier
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000646 tok::TokenKind OpKind = Tok.getKind();
Chris Lattneraf635312006-10-16 06:06:51 +0000647 SourceLocation OpLoc = ConsumeToken(); // Eat the "." or "->" token.
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000648
Chris Lattner89c50c62006-08-11 06:41:18 +0000649 if (Tok.getKind() != tok::identifier) {
650 Diag(Tok, diag::err_expected_ident);
651 return ExprResult(true);
652 }
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000653
654 if (!LHS.isInvalid)
655 LHS = Actions.ParseMemberReferenceExpr(LHS.Val, OpLoc, OpKind,
656 Tok.getLocation(),
657 *Tok.getIdentifierInfo());
Chris Lattner89c50c62006-08-11 06:41:18 +0000658 ConsumeToken();
659 break;
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000660 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000661 case tok::plusplus: // postfix-expression: postfix-expression '++'
662 case tok::minusminus: // postfix-expression: postfix-expression '--'
Chris Lattner1b926492006-08-23 06:42:10 +0000663 if (!LHS.isInvalid)
Chris Lattnerae319692006-10-25 03:49:28 +0000664 LHS = Actions.ParsePostfixUnaryOp(Tok.getLocation(), Tok.getKind(),
665 LHS.Val);
Chris Lattner89c50c62006-08-11 06:41:18 +0000666 ConsumeToken();
667 break;
Chris Lattnerf8339772006-08-10 22:01:51 +0000668 }
669 }
Chris Lattner52a99e52006-08-10 20:56:00 +0000670}
671
Chris Lattner20c6a452006-08-12 17:40:43 +0000672
Chris Lattner81b576e2006-08-11 02:13:20 +0000673/// ParseSizeofAlignofExpression - Parse a sizeof or alignof expression.
674/// unary-expression: [C99 6.5.3]
675/// 'sizeof' unary-expression
676/// 'sizeof' '(' type-name ')'
677/// [GNU] '__alignof' unary-expression
678/// [GNU] '__alignof' '(' type-name ')'
Chris Lattner89c50c62006-08-11 06:41:18 +0000679Parser::ExprResult Parser::ParseSizeofAlignofExpression() {
Chris Lattner81b576e2006-08-11 02:13:20 +0000680 assert((Tok.getKind() == tok::kw_sizeof ||
681 Tok.getKind() == tok::kw___alignof) &&
682 "Not a sizeof/alignof expression!");
Chris Lattner26115ac2006-08-24 06:10:04 +0000683 LexerToken OpTok = Tok;
Chris Lattner81b576e2006-08-11 02:13:20 +0000684 ConsumeToken();
685
686 // If the operand doesn't start with an '(', it must be an expression.
Chris Lattner26115ac2006-08-24 06:10:04 +0000687 ExprResult Operand;
688 if (Tok.getKind() != tok::l_paren) {
689 Operand = ParseCastExpression(true);
690 } else {
691 // If it starts with a '(', we know that it is either a parenthesized
692 // type-name, or it is a unary-expression that starts with a compound
693 // literal, or starts with a primary-expression that is a parenthesized
694 // expression.
695 ParenParseOption ExprType = CastExpr;
Chris Lattnere550a4e2006-08-24 06:37:51 +0000696 TypeTy *CastTy;
Chris Lattner26da7302006-08-24 06:49:19 +0000697 SourceLocation LParenLoc = Tok.getLocation(), RParenLoc;
Chris Lattnere550a4e2006-08-24 06:37:51 +0000698 Operand = ParseParenExpression(ExprType, CastTy, RParenLoc);
Chris Lattner26115ac2006-08-24 06:10:04 +0000699
700 // If ParseParenExpression parsed a '(typename)' sequence only, the this is
701 // sizeof/alignof a type. Otherwise, it is sizeof/alignof an expression.
702 if (ExprType == CastExpr) {
Chris Lattner26da7302006-08-24 06:49:19 +0000703 return Actions.ParseSizeOfAlignOfTypeExpr(OpTok.getLocation(),
704 OpTok.getKind() == tok::kw_sizeof,
705 LParenLoc, CastTy, RParenLoc);
Chris Lattner26115ac2006-08-24 06:10:04 +0000706 }
707 }
Chris Lattner81b576e2006-08-11 02:13:20 +0000708
Chris Lattner26115ac2006-08-24 06:10:04 +0000709 // If we get here, the operand to the sizeof/alignof was an expresion.
710 if (!Operand.isInvalid)
Chris Lattner0ba3dc42006-10-25 03:38:23 +0000711 Operand = Actions.ParseUnaryOp(OpTok.getLocation(), OpTok.getKind(),
712 Operand.Val);
Chris Lattner26115ac2006-08-24 06:10:04 +0000713 return Operand;
Chris Lattner81b576e2006-08-11 02:13:20 +0000714}
715
Chris Lattner11124352006-08-12 19:16:08 +0000716/// ParseBuiltinPrimaryExpression
717///
718/// primary-expression: [C99 6.5.1]
719/// [GNU] '__builtin_va_arg' '(' assignment-expression ',' type-name ')'
720/// [GNU] '__builtin_offsetof' '(' type-name ',' offsetof-member-designator')'
721/// [GNU] '__builtin_choose_expr' '(' assign-expr ',' assign-expr ','
722/// assign-expr ')'
723/// [GNU] '__builtin_types_compatible_p' '(' type-name ',' type-name ')'
724///
725/// [GNU] offsetof-member-designator:
726/// [GNU] identifier
727/// [GNU] offsetof-member-designator '.' identifier
728/// [GNU] offsetof-member-designator '[' expression ']'
729///
730Parser::ExprResult Parser::ParseBuiltinPrimaryExpression() {
731 ExprResult Res(false);
Chris Lattner11124352006-08-12 19:16:08 +0000732 const IdentifierInfo *BuiltinII = Tok.getIdentifierInfo();
733
734 tok::TokenKind T = Tok.getKind();
Chris Lattneraf635312006-10-16 06:06:51 +0000735 SourceLocation StartLoc = ConsumeToken(); // Eat the builtin identifier.
Chris Lattner11124352006-08-12 19:16:08 +0000736
737 // All of these start with an open paren.
738 if (Tok.getKind() != tok::l_paren) {
739 Diag(Tok, diag::err_expected_lparen_after, BuiltinII->getName());
740 return ExprResult(true);
741 }
742
Chris Lattner04132372006-10-16 06:12:55 +0000743 SourceLocation LParenLoc = ConsumeParen();
Chris Lattner6d28d9b2006-08-24 03:51:22 +0000744 // TODO: Build AST.
745
Chris Lattner11124352006-08-12 19:16:08 +0000746 switch (T) {
747 default: assert(0 && "Not a builtin primary expression!");
748 case tok::kw___builtin_va_arg:
749 Res = ParseAssignmentExpression();
750 if (Res.isInvalid) {
751 SkipUntil(tok::r_paren);
752 return Res;
753 }
Chris Lattner0be454e2006-08-12 19:30:51 +0000754
Chris Lattner6d7e6342006-08-15 03:41:14 +0000755 if (ExpectAndConsume(tok::comma, diag::err_expected_comma, "",tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000756 return ExprResult(true);
Chris Lattner0be454e2006-08-12 19:30:51 +0000757
Chris Lattner11124352006-08-12 19:16:08 +0000758 ParseTypeName();
759 break;
760
761 case tok::kw___builtin_offsetof:
762 ParseTypeName();
763
Chris Lattner6d7e6342006-08-15 03:41:14 +0000764 if (ExpectAndConsume(tok::comma, diag::err_expected_comma, "",tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000765 return ExprResult(true);
Chris Lattner11124352006-08-12 19:16:08 +0000766
767 // We must have at least one identifier here.
Chris Lattner6d7e6342006-08-15 03:41:14 +0000768 if (ExpectAndConsume(tok::identifier, diag::err_expected_ident, "",
Chris Lattnerdbb2a462006-08-12 19:26:13 +0000769 tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000770 return ExprResult(true);
Chris Lattnerdbb2a462006-08-12 19:26:13 +0000771
Chris Lattner11124352006-08-12 19:16:08 +0000772 while (1) {
773 if (Tok.getKind() == tok::period) {
774 // offsetof-member-designator: offsetof-member-designator '.' identifier
775 ConsumeToken();
776
Chris Lattner6d7e6342006-08-15 03:41:14 +0000777 if (ExpectAndConsume(tok::identifier, diag::err_expected_ident, "",
Chris Lattnerdbb2a462006-08-12 19:26:13 +0000778 tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000779 return ExprResult(true);
Chris Lattner11124352006-08-12 19:16:08 +0000780 } else if (Tok.getKind() == tok::l_square) {
781 // offsetof-member-designator: offsetof-member-design '[' expression ']'
Chris Lattner04132372006-10-16 06:12:55 +0000782 SourceLocation LSquareLoc = ConsumeBracket();
Chris Lattner11124352006-08-12 19:16:08 +0000783 Res = ParseExpression();
784 if (Res.isInvalid) {
785 SkipUntil(tok::r_paren);
786 return Res;
787 }
788
Chris Lattner04f80192006-08-15 04:55:54 +0000789 MatchRHSPunctuation(tok::r_square, LSquareLoc);
Chris Lattner11124352006-08-12 19:16:08 +0000790 } else {
791 break;
792 }
793 }
794 break;
795 case tok::kw___builtin_choose_expr:
796 Res = ParseAssignmentExpression();
797
Chris Lattner6d7e6342006-08-15 03:41:14 +0000798 if (ExpectAndConsume(tok::comma, diag::err_expected_comma, "",tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000799 return ExprResult(true);
Chris Lattner11124352006-08-12 19:16:08 +0000800
801 Res = ParseAssignmentExpression();
802
Chris Lattner6d7e6342006-08-15 03:41:14 +0000803 if (ExpectAndConsume(tok::comma, diag::err_expected_comma, "",tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000804 return ExprResult(true);
Chris Lattner11124352006-08-12 19:16:08 +0000805
806 Res = ParseAssignmentExpression();
807 break;
808 case tok::kw___builtin_types_compatible_p:
809 ParseTypeName();
810
Chris Lattner6d7e6342006-08-15 03:41:14 +0000811 if (ExpectAndConsume(tok::comma, diag::err_expected_comma, "",tok::r_paren))
Chris Lattner11124352006-08-12 19:16:08 +0000812 return ExprResult(true);
Chris Lattner11124352006-08-12 19:16:08 +0000813
814 ParseTypeName();
815 break;
816 }
817
Chris Lattner04f80192006-08-15 04:55:54 +0000818 MatchRHSPunctuation(tok::r_paren, LParenLoc);
Chris Lattner11124352006-08-12 19:16:08 +0000819
820 // These can be followed by postfix-expr pieces because they are
821 // primary-expressions.
822 return ParsePostfixExpressionSuffix(Res);
823}
824
Chris Lattnerc951dae2006-08-10 04:23:57 +0000825
Chris Lattner4add4e62006-08-11 01:33:00 +0000826/// ParseParenExpression - This parses the unit that starts with a '(' token,
827/// based on what is allowed by ExprType. The actual thing parsed is returned
828/// in ExprType.
829///
830/// primary-expression: [C99 6.5.1]
Chris Lattnerc951dae2006-08-10 04:23:57 +0000831/// '(' expression ')'
Chris Lattnerf8339772006-08-10 22:01:51 +0000832/// [GNU] '(' compound-statement ')' (if !ParenExprOnly)
833/// postfix-expression: [C99 6.5.2]
834/// '(' type-name ')' '{' initializer-list '}'
835/// '(' type-name ')' '{' initializer-list ',' '}'
Chris Lattner4add4e62006-08-11 01:33:00 +0000836/// cast-expression: [C99 6.5.4]
837/// '(' type-name ')' cast-expression
Chris Lattnerf8339772006-08-10 22:01:51 +0000838///
Chris Lattnere550a4e2006-08-24 06:37:51 +0000839Parser::ExprResult Parser::ParseParenExpression(ParenParseOption &ExprType,
840 TypeTy *&CastTy,
841 SourceLocation &RParenLoc) {
Chris Lattnerc951dae2006-08-10 04:23:57 +0000842 assert(Tok.getKind() == tok::l_paren && "Not a paren expr!");
Chris Lattner04132372006-10-16 06:12:55 +0000843 SourceLocation OpenLoc = ConsumeParen();
Chris Lattner89c50c62006-08-11 06:41:18 +0000844 ExprResult Result(false);
Chris Lattnere550a4e2006-08-24 06:37:51 +0000845 CastTy = 0;
Chris Lattnerc951dae2006-08-10 04:23:57 +0000846
Chris Lattner4add4e62006-08-11 01:33:00 +0000847 if (ExprType >= CompoundStmt && Tok.getKind() == tok::l_brace &&
Chris Lattnerf8339772006-08-10 22:01:51 +0000848 !getLang().NoExtensions) {
849 Diag(Tok, diag::ext_gnu_statement_expr);
850 ParseCompoundStatement();
Chris Lattner4add4e62006-08-11 01:33:00 +0000851 ExprType = CompoundStmt;
Chris Lattner1b926492006-08-23 06:42:10 +0000852 // TODO: Build AST for GNU compound stmt.
Chris Lattner4add4e62006-08-11 01:33:00 +0000853 } else if (ExprType >= CompoundLiteral && isTypeSpecifierQualifier()) {
Chris Lattner6c3f05d2006-08-12 16:54:25 +0000854 // Otherwise, this is a compound literal expression or cast expression.
Chris Lattnere550a4e2006-08-24 06:37:51 +0000855 TypeTy *Ty = ParseTypeName();
Chris Lattnerf5fbd792006-08-10 23:56:11 +0000856
857 // Match the ')'.
Chris Lattner04132372006-10-16 06:12:55 +0000858 if (Tok.getKind() == tok::r_paren)
859 RParenLoc = ConsumeParen();
860 else
Chris Lattnere550a4e2006-08-24 06:37:51 +0000861 MatchRHSPunctuation(tok::r_paren, OpenLoc);
Chris Lattnere550a4e2006-08-24 06:37:51 +0000862
Chris Lattner4add4e62006-08-11 01:33:00 +0000863 if (Tok.getKind() == tok::l_brace) {
Chris Lattner6c3f05d2006-08-12 16:54:25 +0000864 if (!getLang().C99) // Compound literals don't exist in C90.
865 Diag(OpenLoc, diag::ext_c99_compound_literal);
Chris Lattner89c50c62006-08-11 06:41:18 +0000866 Result = ParseInitializer();
Chris Lattner4add4e62006-08-11 01:33:00 +0000867 ExprType = CompoundLiteral;
Chris Lattner1b926492006-08-23 06:42:10 +0000868 // TODO: Build AST for compound literal.
Chris Lattner4add4e62006-08-11 01:33:00 +0000869 } else if (ExprType == CastExpr) {
Chris Lattnere550a4e2006-08-24 06:37:51 +0000870 // Note that this doesn't parse the subsequence cast-expression, it just
871 // returns the parsed type to the callee.
Chris Lattner4add4e62006-08-11 01:33:00 +0000872 ExprType = CastExpr;
Chris Lattnere550a4e2006-08-24 06:37:51 +0000873 CastTy = Ty;
874 return ExprResult(false);
Chris Lattner4add4e62006-08-11 01:33:00 +0000875 } else {
Chris Lattnerf5fbd792006-08-10 23:56:11 +0000876 Diag(Tok, diag::err_expected_lbrace_in_compound_literal);
Chris Lattner89c50c62006-08-11 06:41:18 +0000877 return ExprResult(true);
Chris Lattnerf5fbd792006-08-10 23:56:11 +0000878 }
Chris Lattner89c50c62006-08-11 06:41:18 +0000879 return Result;
Chris Lattner4add4e62006-08-11 01:33:00 +0000880 } else {
Chris Lattner89c50c62006-08-11 06:41:18 +0000881 Result = ParseExpression();
Chris Lattner4add4e62006-08-11 01:33:00 +0000882 ExprType = SimpleExpr;
Chris Lattner1b926492006-08-23 06:42:10 +0000883 if (!Result.isInvalid && Tok.getKind() == tok::r_paren)
884 Result = Actions.ParseParenExpr(OpenLoc, Tok.getLocation(), Result.Val);
Chris Lattnerf8339772006-08-10 22:01:51 +0000885 }
Chris Lattnerc951dae2006-08-10 04:23:57 +0000886
Chris Lattner4564bc12006-08-10 23:14:52 +0000887 // Match the ')'.
Chris Lattner89c50c62006-08-11 06:41:18 +0000888 if (Result.isInvalid)
889 SkipUntil(tok::r_paren);
Chris Lattnere550a4e2006-08-24 06:37:51 +0000890 else {
Chris Lattner04132372006-10-16 06:12:55 +0000891 if (Tok.getKind() == tok::r_paren)
892 RParenLoc = ConsumeParen();
893 else
Chris Lattnere550a4e2006-08-24 06:37:51 +0000894 MatchRHSPunctuation(tok::r_paren, OpenLoc);
Chris Lattnere550a4e2006-08-24 06:37:51 +0000895 }
Chris Lattner1b926492006-08-23 06:42:10 +0000896
Chris Lattner89c50c62006-08-11 06:41:18 +0000897 return Result;
Chris Lattnerc951dae2006-08-10 04:23:57 +0000898}
Chris Lattnerd3e98952006-10-06 05:22:26 +0000899
Chris Lattnerd3e98952006-10-06 05:22:26 +0000900/// ParseStringLiteralExpression - This handles the various token types that
901/// form string literals, and also handles string concatenation [C99 5.1.1.2,
902/// translation phase #6].
903///
904/// primary-expression: [C99 6.5.1]
905/// string-literal
906Parser::ExprResult Parser::ParseStringLiteralExpression() {
907 assert(isTokenStringLiteral() && "Not a string literal!");
908
909 // String concat. Note that keywords like __func__ and __FUNCTION__ are not
910 // considered to be strings for concatenation purposes.
911 SmallVector<LexerToken, 4> StringToks;
912
Chris Lattnerd3e98952006-10-06 05:22:26 +0000913 do {
Chris Lattnerd3e98952006-10-06 05:22:26 +0000914 StringToks.push_back(Tok);
915 ConsumeStringToken();
916 } while (isTokenStringLiteral());
Chris Lattner08f27912006-11-09 06:34:47 +0000917
918 // Pass the set of string tokens, ready for concatenation, to the actions.
Chris Lattner697e5d62006-11-09 06:32:27 +0000919 return Actions.ParseStringExpr(&StringToks[0], StringToks.size());
Chris Lattnerd3e98952006-10-06 05:22:26 +0000920}
921