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[pf3gnuchains/gcc-fork.git] / gcc / go / gofrontend / parse.cc
1 // parse.cc -- Go frontend parser.
2
3 // Copyright 2009 The Go Authors. All rights reserved.
4 // Use of this source code is governed by a BSD-style
5 // license that can be found in the LICENSE file.
6
7 #include "go-system.h"
8
9 #include "lex.h"
10 #include "gogo.h"
11 #include "types.h"
12 #include "statements.h"
13 #include "expressions.h"
14 #include "parse.h"
15
16 // Struct Parse::Enclosing_var_comparison.
17
18 // Return true if v1 should be considered to be less than v2.
19
20 bool
21 Parse::Enclosing_var_comparison::operator()(const Enclosing_var& v1,
22                                             const Enclosing_var& v2)
23 {
24   if (v1.var() == v2.var())
25     return false;
26
27   const std::string& n1(v1.var()->name());
28   const std::string& n2(v2.var()->name());
29   int i = n1.compare(n2);
30   if (i < 0)
31     return true;
32   else if (i > 0)
33     return false;
34
35   // If we get here it means that a single nested function refers to
36   // two different variables defined in enclosing functions, and both
37   // variables have the same name.  I think this is impossible.
38   gcc_unreachable();
39 }
40
41 // Class Parse.
42
43 Parse::Parse(Lex* lex, Gogo* gogo)
44   : lex_(lex),
45     token_(Token::make_invalid_token(0)),
46     unget_token_(Token::make_invalid_token(0)),
47     unget_token_valid_(false),
48     gogo_(gogo),
49     break_stack_(),
50     continue_stack_(),
51     iota_(0),
52     enclosing_vars_()
53 {
54 }
55
56 // Return the current token.
57
58 const Token*
59 Parse::peek_token()
60 {
61   if (this->unget_token_valid_)
62     return &this->unget_token_;
63   if (this->token_.is_invalid())
64     this->token_ = this->lex_->next_token();
65   return &this->token_;
66 }
67
68 // Advance to the next token and return it.
69
70 const Token*
71 Parse::advance_token()
72 {
73   if (this->unget_token_valid_)
74     {
75       this->unget_token_valid_ = false;
76       if (!this->token_.is_invalid())
77         return &this->token_;
78     }
79   this->token_ = this->lex_->next_token();
80   return &this->token_;
81 }
82
83 // Push a token back on the input stream.
84
85 void
86 Parse::unget_token(const Token& token)
87 {
88   gcc_assert(!this->unget_token_valid_);
89   this->unget_token_ = token;
90   this->unget_token_valid_ = true;
91 }
92
93 // The location of the current token.
94
95 source_location
96 Parse::location()
97 {
98   return this->peek_token()->location();
99 }
100
101 // IdentifierList = identifier { "," identifier } .
102
103 void
104 Parse::identifier_list(Typed_identifier_list* til)
105 {
106   const Token* token = this->peek_token();
107   while (true)
108     {
109       if (!token->is_identifier())
110         {
111           error_at(this->location(), "expected identifier");
112           return;
113         }
114       std::string name =
115         this->gogo_->pack_hidden_name(token->identifier(),
116                                       token->is_identifier_exported());
117       til->push_back(Typed_identifier(name, NULL, token->location()));
118       token = this->advance_token();
119       if (!token->is_op(OPERATOR_COMMA))
120         return;
121       token = this->advance_token();
122     }
123 }
124
125 // ExpressionList = Expression { "," Expression } .
126
127 // If MAY_BE_SINK is true, the expressions in the list may be "_".
128
129 Expression_list*
130 Parse::expression_list(Expression* first, bool may_be_sink)
131 {
132   Expression_list* ret = new Expression_list();
133   if (first != NULL)
134     ret->push_back(first);
135   while (true)
136     {
137       ret->push_back(this->expression(PRECEDENCE_NORMAL, may_be_sink, true,
138                                       NULL));
139
140       const Token* token = this->peek_token();
141       if (!token->is_op(OPERATOR_COMMA))
142         return ret;
143
144       // Most expression lists permit a trailing comma.
145       source_location location = token->location();
146       this->advance_token();
147       if (!this->expression_may_start_here())
148         {
149           this->unget_token(Token::make_operator_token(OPERATOR_COMMA,
150                                                        location));
151           return ret;
152         }
153     }
154 }
155
156 // QualifiedIdent = [ PackageName "." ] identifier .
157 // PackageName = identifier .
158
159 // This sets *PNAME to the identifier and sets *PPACKAGE to the
160 // package or NULL if there isn't one.  This returns true on success,
161 // false on failure in which case it will have emitted an error
162 // message.
163
164 bool
165 Parse::qualified_ident(std::string* pname, Named_object** ppackage)
166 {
167   const Token* token = this->peek_token();
168   if (!token->is_identifier())
169     {
170       error_at(this->location(), "expected identifier");
171       return false;
172     }
173
174   std::string name = token->identifier();
175   bool is_exported = token->is_identifier_exported();
176   name = this->gogo_->pack_hidden_name(name, is_exported);
177
178   token = this->advance_token();
179   if (!token->is_op(OPERATOR_DOT))
180     {
181       *pname = name;
182       *ppackage = NULL;
183       return true;
184     }
185
186   Named_object* package = this->gogo_->lookup(name, NULL);
187   if (package == NULL || !package->is_package())
188     {
189       error_at(this->location(), "expected package");
190       // We expect . IDENTIFIER; skip both.
191       if (this->advance_token()->is_identifier())
192         this->advance_token();
193       return false;
194     }
195
196   package->package_value()->set_used();
197
198   token = this->advance_token();
199   if (!token->is_identifier())
200     {
201       error_at(this->location(), "expected identifier");
202       return false;
203     }
204
205   name = token->identifier();
206
207   if (name == "_")
208     {
209       error_at(this->location(), "invalid use of %<_%>");
210       name = "blank";
211     }
212
213   if (package->name() == this->gogo_->package_name())
214     name = this->gogo_->pack_hidden_name(name,
215                                          token->is_identifier_exported());
216
217   *pname = name;
218   *ppackage = package;
219
220   this->advance_token();
221
222   return true;
223 }
224
225 // Type = TypeName | TypeLit | "(" Type ")" .
226 // TypeLit =
227 //      ArrayType | StructType | PointerType | FunctionType | InterfaceType |
228 //      SliceType | MapType | ChannelType .
229
230 Type*
231 Parse::type()
232 {
233   const Token* token = this->peek_token();
234   if (token->is_identifier())
235     return this->type_name(true);
236   else if (token->is_op(OPERATOR_LSQUARE))
237     return this->array_type(false);
238   else if (token->is_keyword(KEYWORD_CHAN)
239            || token->is_op(OPERATOR_CHANOP))
240     return this->channel_type();
241   else if (token->is_keyword(KEYWORD_INTERFACE))
242     return this->interface_type();
243   else if (token->is_keyword(KEYWORD_FUNC))
244     {
245       source_location location = token->location();
246       this->advance_token();
247       Type* type = this->signature(NULL, location);
248       if (type == NULL)
249         return Type::make_error_type();
250       return type;
251     }
252   else if (token->is_keyword(KEYWORD_MAP))
253     return this->map_type();
254   else if (token->is_keyword(KEYWORD_STRUCT))
255     return this->struct_type();
256   else if (token->is_op(OPERATOR_MULT))
257     return this->pointer_type();
258   else if (token->is_op(OPERATOR_LPAREN))
259     {
260       this->advance_token();
261       Type* ret = this->type();
262       if (this->peek_token()->is_op(OPERATOR_RPAREN))
263         this->advance_token();
264       else
265         {
266           if (!ret->is_error_type())
267             error_at(this->location(), "expected %<)%>");
268         }
269       return ret;
270     }
271   else
272     {
273       error_at(token->location(), "expected type");
274       return Type::make_error_type();
275     }
276 }
277
278 bool
279 Parse::type_may_start_here()
280 {
281   const Token* token = this->peek_token();
282   return (token->is_identifier()
283           || token->is_op(OPERATOR_LSQUARE)
284           || token->is_op(OPERATOR_CHANOP)
285           || token->is_keyword(KEYWORD_CHAN)
286           || token->is_keyword(KEYWORD_INTERFACE)
287           || token->is_keyword(KEYWORD_FUNC)
288           || token->is_keyword(KEYWORD_MAP)
289           || token->is_keyword(KEYWORD_STRUCT)
290           || token->is_op(OPERATOR_MULT)
291           || token->is_op(OPERATOR_LPAREN));
292 }
293
294 // TypeName = QualifiedIdent .
295
296 // If MAY_BE_NIL is true, then an identifier with the value of the
297 // predefined constant nil is accepted, returning the nil type.
298
299 Type*
300 Parse::type_name(bool issue_error)
301 {
302   source_location location = this->location();
303
304   std::string name;
305   Named_object* package;
306   if (!this->qualified_ident(&name, &package))
307     return Type::make_error_type();
308
309   Named_object* named_object;
310   if (package == NULL)
311     named_object = this->gogo_->lookup(name, NULL);
312   else
313     {
314       named_object = package->package_value()->lookup(name);
315       if (named_object == NULL
316           && issue_error
317           && package->name() != this->gogo_->package_name())
318         {
319           // Check whether the name is there but hidden.
320           std::string s = ('.' + package->package_value()->unique_prefix()
321                            + '.' + package->package_value()->name()
322                            + '.' + name);
323           named_object = package->package_value()->lookup(s);
324           if (named_object != NULL)
325             {
326               const std::string& packname(package->package_value()->name());
327               error_at(location, "invalid reference to hidden type %<%s.%s%>",
328                        Gogo::message_name(packname).c_str(),
329                        Gogo::message_name(name).c_str());
330               issue_error = false;
331             }
332         }
333     }
334
335   bool ok = true;
336   if (named_object == NULL)
337     {
338       if (package != NULL)
339         ok = false;
340       else
341         named_object = this->gogo_->add_unknown_name(name, location);
342     }
343   else if (named_object->is_type())
344     {
345       if (!named_object->type_value()->is_visible())
346         ok = false;
347     }
348   else if (named_object->is_unknown() || named_object->is_type_declaration())
349     ;
350   else
351     ok = false;
352
353   if (!ok)
354     {
355       if (issue_error)
356         error_at(location, "expected type");
357       return Type::make_error_type();
358     }
359
360   if (named_object->is_type())
361     return named_object->type_value();
362   else if (named_object->is_unknown() || named_object->is_type_declaration())
363     return Type::make_forward_declaration(named_object);
364   else
365     gcc_unreachable();
366 }
367
368 // ArrayType = "[" [ ArrayLength ] "]" ElementType .
369 // ArrayLength = Expression .
370 // ElementType = CompleteType .
371
372 Type*
373 Parse::array_type(bool may_use_ellipsis)
374 {
375   gcc_assert(this->peek_token()->is_op(OPERATOR_LSQUARE));
376   const Token* token = this->advance_token();
377
378   Expression* length = NULL;
379   if (token->is_op(OPERATOR_RSQUARE))
380     this->advance_token();
381   else
382     {
383       if (!token->is_op(OPERATOR_ELLIPSIS))
384         length = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
385       else if (may_use_ellipsis)
386         {
387           // An ellipsis is used in composite literals to represent a
388           // fixed array of the size of the number of elements.  We
389           // use a length of nil to represent this, and change the
390           // length when parsing the composite literal.
391           length = Expression::make_nil(this->location());
392           this->advance_token();
393         }
394       else
395         {
396           error_at(this->location(),
397                    "use of %<[...]%> outside of array literal");
398           length = Expression::make_error(this->location());
399           this->advance_token();
400         }
401       if (!this->peek_token()->is_op(OPERATOR_RSQUARE))
402         {
403           error_at(this->location(), "expected %<]%>");
404           return Type::make_error_type();
405         }
406       this->advance_token();
407     }
408
409   Type* element_type = this->type();
410
411   return Type::make_array_type(element_type, length);
412 }
413
414 // MapType = "map" "[" KeyType "]" ValueType .
415 // KeyType = CompleteType .
416 // ValueType = CompleteType .
417
418 Type*
419 Parse::map_type()
420 {
421   source_location location = this->location();
422   gcc_assert(this->peek_token()->is_keyword(KEYWORD_MAP));
423   if (!this->advance_token()->is_op(OPERATOR_LSQUARE))
424     {
425       error_at(this->location(), "expected %<[%>");
426       return Type::make_error_type();
427     }
428   this->advance_token();
429
430   Type* key_type = this->type();
431
432   if (!this->peek_token()->is_op(OPERATOR_RSQUARE))
433     {
434       error_at(this->location(), "expected %<]%>");
435       return Type::make_error_type();
436     }
437   this->advance_token();
438
439   Type* value_type = this->type();
440
441   if (key_type->is_error_type() || value_type->is_error_type())
442     return Type::make_error_type();
443
444   return Type::make_map_type(key_type, value_type, location);
445 }
446
447 // StructType     = "struct" "{" { FieldDecl ";" } "}" .
448
449 Type*
450 Parse::struct_type()
451 {
452   gcc_assert(this->peek_token()->is_keyword(KEYWORD_STRUCT));
453   source_location location = this->location();
454   if (!this->advance_token()->is_op(OPERATOR_LCURLY))
455     {
456       source_location token_loc = this->location();
457       if (this->peek_token()->is_op(OPERATOR_SEMICOLON)
458           && this->advance_token()->is_op(OPERATOR_LCURLY))
459         error_at(token_loc, "unexpected semicolon or newline before %<{%>");
460       else
461         {
462           error_at(this->location(), "expected %<{%>");
463           return Type::make_error_type();
464         }
465     }
466   this->advance_token();
467
468   Struct_field_list* sfl = new Struct_field_list;
469   while (!this->peek_token()->is_op(OPERATOR_RCURLY))
470     {
471       this->field_decl(sfl);
472       if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
473         this->advance_token();
474       else if (!this->peek_token()->is_op(OPERATOR_RCURLY))
475         {
476           error_at(this->location(), "expected %<;%> or %<}%> or newline");
477           if (!this->skip_past_error(OPERATOR_RCURLY))
478             return Type::make_error_type();
479         }
480     }
481   this->advance_token();
482
483   for (Struct_field_list::const_iterator pi = sfl->begin();
484        pi != sfl->end();
485        ++pi)
486     {
487       if (pi->type()->is_error_type())
488         return pi->type();
489       for (Struct_field_list::const_iterator pj = pi + 1;
490            pj != sfl->end();
491            ++pj)
492         {
493           if (pi->field_name() == pj->field_name()
494               && !Gogo::is_sink_name(pi->field_name()))
495             error_at(pi->location(), "duplicate field name %<%s%>",
496                      Gogo::message_name(pi->field_name()).c_str());
497         }
498     }
499
500   return Type::make_struct_type(sfl, location);
501 }
502
503 // FieldDecl = (IdentifierList CompleteType | TypeName) [ Tag ] .
504 // Tag = string_lit .
505
506 void
507 Parse::field_decl(Struct_field_list* sfl)
508 {
509   const Token* token = this->peek_token();
510   source_location location = token->location();
511   bool is_anonymous;
512   bool is_anonymous_pointer;
513   if (token->is_op(OPERATOR_MULT))
514     {
515       is_anonymous = true;
516       is_anonymous_pointer = true;
517     }
518   else if (token->is_identifier())
519     {
520       std::string id = token->identifier();
521       bool is_id_exported = token->is_identifier_exported();
522       source_location id_location = token->location();
523       token = this->advance_token();
524       is_anonymous = (token->is_op(OPERATOR_SEMICOLON)
525                       || token->is_op(OPERATOR_RCURLY)
526                       || token->is_op(OPERATOR_DOT)
527                       || token->is_string());
528       is_anonymous_pointer = false;
529       this->unget_token(Token::make_identifier_token(id, is_id_exported,
530                                                      id_location));
531     }
532   else
533     {
534       error_at(this->location(), "expected field name");
535       while (!token->is_op(OPERATOR_SEMICOLON)
536              && !token->is_op(OPERATOR_RCURLY)
537              && !token->is_eof())
538         token = this->advance_token();
539       return;
540     }
541
542   if (is_anonymous)
543     {
544       if (is_anonymous_pointer)
545         {
546           this->advance_token();
547           if (!this->peek_token()->is_identifier())
548             {
549               error_at(this->location(), "expected field name");
550               while (!token->is_op(OPERATOR_SEMICOLON)
551                      && !token->is_op(OPERATOR_RCURLY)
552                      && !token->is_eof())
553                 token = this->advance_token();
554               return;
555             }
556         }
557       Type* type = this->type_name(true);
558
559       std::string tag;
560       if (this->peek_token()->is_string())
561         {
562           tag = this->peek_token()->string_value();
563           this->advance_token();
564         }
565
566       if (!type->is_error_type())
567         {
568           if (is_anonymous_pointer)
569             type = Type::make_pointer_type(type);
570           sfl->push_back(Struct_field(Typed_identifier("", type, location)));
571           if (!tag.empty())
572             sfl->back().set_tag(tag);
573         }
574     }
575   else
576     {
577       Typed_identifier_list til;
578       while (true)
579         {
580           token = this->peek_token();
581           if (!token->is_identifier())
582             {
583               error_at(this->location(), "expected identifier");
584               return;
585             }
586           std::string name =
587             this->gogo_->pack_hidden_name(token->identifier(),
588                                           token->is_identifier_exported());
589           til.push_back(Typed_identifier(name, NULL, token->location()));
590           if (!this->advance_token()->is_op(OPERATOR_COMMA))
591             break;
592           this->advance_token();
593         }
594
595       Type* type = this->type();
596
597       std::string tag;
598       if (this->peek_token()->is_string())
599         {
600           tag = this->peek_token()->string_value();
601           this->advance_token();
602         }
603
604       for (Typed_identifier_list::iterator p = til.begin();
605            p != til.end();
606            ++p)
607         {
608           p->set_type(type);
609           sfl->push_back(Struct_field(*p));
610           if (!tag.empty())
611             sfl->back().set_tag(tag);
612         }
613     }
614 }
615
616 // PointerType = "*" Type .
617
618 Type*
619 Parse::pointer_type()
620 {
621   gcc_assert(this->peek_token()->is_op(OPERATOR_MULT));
622   this->advance_token();
623   Type* type = this->type();
624   if (type->is_error_type())
625     return type;
626   return Type::make_pointer_type(type);
627 }
628
629 // ChannelType   = Channel | SendChannel | RecvChannel .
630 // Channel       = "chan" ElementType .
631 // SendChannel   = "chan" "<-" ElementType .
632 // RecvChannel   = "<-" "chan" ElementType .
633
634 Type*
635 Parse::channel_type()
636 {
637   const Token* token = this->peek_token();
638   bool send = true;
639   bool receive = true;
640   if (token->is_op(OPERATOR_CHANOP))
641     {
642       if (!this->advance_token()->is_keyword(KEYWORD_CHAN))
643         {
644           error_at(this->location(), "expected %<chan%>");
645           return Type::make_error_type();
646         }
647       send = false;
648       this->advance_token();
649     }
650   else
651     {
652       gcc_assert(token->is_keyword(KEYWORD_CHAN));
653       if (this->advance_token()->is_op(OPERATOR_CHANOP))
654         {
655           receive = false;
656           this->advance_token();
657         }
658     }
659   Type* element_type = this->type();
660   return Type::make_channel_type(send, receive, element_type);
661 }
662
663 // Signature      = Parameters [ Result ] .
664
665 // RECEIVER is the receiver if there is one, or NULL.  LOCATION is the
666 // location of the start of the type.
667
668 // This returns NULL on a parse error.
669
670 Function_type*
671 Parse::signature(Typed_identifier* receiver, source_location location)
672 {
673   bool is_varargs = false;
674   Typed_identifier_list* params;
675   bool params_ok = this->parameters(&params, &is_varargs);
676
677   Typed_identifier_list* result = NULL;
678   if (this->peek_token()->is_op(OPERATOR_LPAREN)
679       || this->type_may_start_here())
680     {
681       if (!this->result(&result))
682         return NULL;
683     }
684
685   if (!params_ok)
686     return NULL;
687
688   Function_type* ret = Type::make_function_type(receiver, params, result,
689                                                 location);
690   if (is_varargs)
691     ret->set_is_varargs();
692   return ret;
693 }
694
695 // Parameters     = "(" [ ParameterList [ "," ] ] ")" .
696
697 // This returns false on a parse error.
698
699 bool
700 Parse::parameters(Typed_identifier_list** pparams, bool* is_varargs)
701 {
702   *pparams = NULL;
703
704   if (!this->peek_token()->is_op(OPERATOR_LPAREN))
705     {
706       error_at(this->location(), "expected %<(%>");
707       return false;
708     }
709
710   Typed_identifier_list* params = NULL;
711   bool saw_error = false;
712
713   const Token* token = this->advance_token();
714   if (!token->is_op(OPERATOR_RPAREN))
715     {
716       params = this->parameter_list(is_varargs);
717       if (params == NULL)
718         saw_error = true;
719       token = this->peek_token();
720     }
721
722   // The optional trailing comma is picked up in parameter_list.
723
724   if (!token->is_op(OPERATOR_RPAREN))
725     error_at(this->location(), "expected %<)%>");
726   else
727     this->advance_token();
728
729   if (saw_error)
730     return false;
731
732   *pparams = params;
733   return true;
734 }
735
736 // ParameterList  = ParameterDecl { "," ParameterDecl } .
737
738 // This sets *IS_VARARGS if the list ends with an ellipsis.
739 // IS_VARARGS will be NULL if varargs are not permitted.
740
741 // We pick up an optional trailing comma.
742
743 // This returns NULL if some error is seen.
744
745 Typed_identifier_list*
746 Parse::parameter_list(bool* is_varargs)
747 {
748   source_location location = this->location();
749   Typed_identifier_list* ret = new Typed_identifier_list();
750
751   bool saw_error = false;
752
753   // If we see an identifier and then a comma, then we don't know
754   // whether we are looking at a list of identifiers followed by a
755   // type, or a list of types given by name.  We have to do an
756   // arbitrary lookahead to figure it out.
757
758   bool parameters_have_names;
759   const Token* token = this->peek_token();
760   if (!token->is_identifier())
761     {
762       // This must be a type which starts with something like '*'.
763       parameters_have_names = false;
764     }
765   else
766     {
767       std::string name = token->identifier();
768       bool is_exported = token->is_identifier_exported();
769       source_location location = token->location();
770       token = this->advance_token();
771       if (!token->is_op(OPERATOR_COMMA))
772         {
773           if (token->is_op(OPERATOR_DOT))
774             {
775               // This is a qualified identifier, which must turn out
776               // to be a type.
777               parameters_have_names = false;
778             }
779           else if (token->is_op(OPERATOR_RPAREN))
780             {
781               // A single identifier followed by a parenthesis must be
782               // a type name.
783               parameters_have_names = false;
784             }
785           else
786             {
787               // An identifier followed by something other than a
788               // comma or a dot or a right parenthesis must be a
789               // parameter name followed by a type.
790               parameters_have_names = true;
791             }
792
793           this->unget_token(Token::make_identifier_token(name, is_exported,
794                                                          location));
795         }
796       else
797         {
798           // An identifier followed by a comma may be the first in a
799           // list of parameter names followed by a type, or it may be
800           // the first in a list of types without parameter names.  To
801           // find out we gather as many identifiers separated by
802           // commas as we can.
803           std::string id_name = this->gogo_->pack_hidden_name(name,
804                                                               is_exported);
805           ret->push_back(Typed_identifier(id_name, NULL, location));
806           bool just_saw_comma = true;
807           while (this->advance_token()->is_identifier())
808             {
809               name = this->peek_token()->identifier();
810               is_exported = this->peek_token()->is_identifier_exported();
811               location = this->peek_token()->location();
812               id_name = this->gogo_->pack_hidden_name(name, is_exported);
813               ret->push_back(Typed_identifier(id_name, NULL, location));
814               if (!this->advance_token()->is_op(OPERATOR_COMMA))
815                 {
816                   just_saw_comma = false;
817                   break;
818                 }
819             }
820
821           if (just_saw_comma)
822             {
823               // We saw ID1 "," ID2 "," followed by something which
824               // was not an identifier.  We must be seeing the start
825               // of a type, and ID1 and ID2 must be types, and the
826               // parameters don't have names.
827               parameters_have_names = false;
828             }
829           else if (this->peek_token()->is_op(OPERATOR_RPAREN))
830             {
831               // We saw ID1 "," ID2 ")".  ID1 and ID2 must be types,
832               // and the parameters don't have names.
833               parameters_have_names = false;
834             }
835           else if (this->peek_token()->is_op(OPERATOR_DOT))
836             {
837               // We saw ID1 "," ID2 ".".  ID2 must be a package name,
838               // ID1 must be a type, and the parameters don't have
839               // names.
840               parameters_have_names = false;
841               this->unget_token(Token::make_identifier_token(name, is_exported,
842                                                              location));
843               ret->pop_back();
844               just_saw_comma = true;
845             }
846           else
847             {
848               // We saw ID1 "," ID2 followed by something other than
849               // ",", ".", or ")".  We must be looking at the start of
850               // a type, and ID1 and ID2 must be parameter names.
851               parameters_have_names = true;
852             }
853
854           if (parameters_have_names)
855             {
856               gcc_assert(!just_saw_comma);
857               // We have just seen ID1, ID2 xxx.
858               Type* type;
859               if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS))
860                 type = this->type();
861               else
862                 {
863                   error_at(this->location(), "%<...%> only permits one name");
864                   saw_error = true;
865                   this->advance_token();
866                   type = this->type();
867                 }
868               for (size_t i = 0; i < ret->size(); ++i)
869                 ret->set_type(i, type);
870               if (!this->peek_token()->is_op(OPERATOR_COMMA))
871                 return saw_error ? NULL : ret;
872               if (this->advance_token()->is_op(OPERATOR_RPAREN))
873                 return saw_error ? NULL : ret;
874             }
875           else
876             {
877               Typed_identifier_list* tret = new Typed_identifier_list();
878               for (Typed_identifier_list::const_iterator p = ret->begin();
879                    p != ret->end();
880                    ++p)
881                 {
882                   Named_object* no = this->gogo_->lookup(p->name(), NULL);
883                   Type* type;
884                   if (no == NULL)
885                     no = this->gogo_->add_unknown_name(p->name(),
886                                                        p->location());
887
888                   if (no->is_type())
889                     type = no->type_value();
890                   else if (no->is_unknown() || no->is_type_declaration())
891                     type = Type::make_forward_declaration(no);
892                   else
893                     {
894                       error_at(p->location(), "expected %<%s%> to be a type",
895                                Gogo::message_name(p->name()).c_str());
896                       saw_error = true;
897                       type = Type::make_error_type();
898                     }
899                   tret->push_back(Typed_identifier("", type, p->location()));
900                 }
901               delete ret;
902               ret = tret;
903               if (!just_saw_comma
904                   || this->peek_token()->is_op(OPERATOR_RPAREN))
905                 return saw_error ? NULL : ret;
906             }
907         }
908     }
909
910   bool mix_error = false;
911   this->parameter_decl(parameters_have_names, ret, is_varargs, &mix_error);
912   while (this->peek_token()->is_op(OPERATOR_COMMA))
913     {
914       if (is_varargs != NULL && *is_varargs)
915         {
916           error_at(this->location(), "%<...%> must be last parameter");
917           saw_error = true;
918         }
919       if (this->advance_token()->is_op(OPERATOR_RPAREN))
920         break;
921       this->parameter_decl(parameters_have_names, ret, is_varargs, &mix_error);
922     }
923   if (mix_error)
924     {
925       error_at(location, "invalid named/anonymous mix");
926       saw_error = true;
927     }
928   if (saw_error)
929     {
930       delete ret;
931       return NULL;
932     }
933   return ret;
934 }
935
936 // ParameterDecl  = [ IdentifierList ] [ "..." ] Type .
937
938 void
939 Parse::parameter_decl(bool parameters_have_names,
940                       Typed_identifier_list* til,
941                       bool* is_varargs,
942                       bool* mix_error)
943 {
944   if (!parameters_have_names)
945     {
946       Type* type;
947       source_location location = this->location();
948       if (!this->peek_token()->is_identifier())
949         {
950           if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS))
951             type = this->type();
952           else
953             {
954               if (is_varargs == NULL)
955                 error_at(this->location(), "invalid use of %<...%>");
956               else
957                 *is_varargs = true;
958               this->advance_token();
959               if (is_varargs == NULL
960                   && this->peek_token()->is_op(OPERATOR_RPAREN))
961                 type = Type::make_error_type();
962               else
963                 {
964                   Type* element_type = this->type();
965                   type = Type::make_array_type(element_type, NULL);
966                 }
967             }
968         }
969       else
970         {
971           type = this->type_name(false);
972           if (type->is_error_type()
973               || (!this->peek_token()->is_op(OPERATOR_COMMA)
974                   && !this->peek_token()->is_op(OPERATOR_RPAREN)))
975             {
976               *mix_error = true;
977               while (!this->peek_token()->is_op(OPERATOR_COMMA)
978                      && !this->peek_token()->is_op(OPERATOR_RPAREN))
979                 this->advance_token();
980             }
981         }
982       if (!type->is_error_type())
983         til->push_back(Typed_identifier("", type, location));
984     }
985   else
986     {
987       size_t orig_count = til->size();
988       if (this->peek_token()->is_identifier())
989         this->identifier_list(til);
990       else
991         *mix_error = true;
992       size_t new_count = til->size();
993
994       Type* type;
995       if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS))
996         type = this->type();
997       else
998         {
999           if (is_varargs == NULL)
1000             error_at(this->location(), "invalid use of %<...%>");
1001           else if (new_count > orig_count + 1)
1002             error_at(this->location(), "%<...%> only permits one name");
1003           else
1004             *is_varargs = true;
1005           this->advance_token();
1006           Type* element_type = this->type();
1007           type = Type::make_array_type(element_type, NULL);
1008         }
1009       for (size_t i = orig_count; i < new_count; ++i)
1010         til->set_type(i, type);
1011     }
1012 }
1013
1014 // Result         = Parameters | Type .
1015
1016 // This returns false on a parse error.
1017
1018 bool
1019 Parse::result(Typed_identifier_list** presults)
1020 {
1021   if (this->peek_token()->is_op(OPERATOR_LPAREN))
1022     return this->parameters(presults, NULL);
1023   else
1024     {
1025       source_location location = this->location();
1026       Type* type = this->type();
1027       if (type->is_error_type())
1028         {
1029           *presults = NULL;
1030           return false;
1031         }
1032       Typed_identifier_list* til = new Typed_identifier_list();
1033       til->push_back(Typed_identifier("", type, location));
1034       *presults = til;
1035       return true;
1036     }
1037 }
1038
1039 // Block = "{" [ StatementList ] "}" .
1040
1041 // Returns the location of the closing brace.
1042
1043 source_location
1044 Parse::block()
1045 {
1046   if (!this->peek_token()->is_op(OPERATOR_LCURLY))
1047     {
1048       source_location loc = this->location();
1049       if (this->peek_token()->is_op(OPERATOR_SEMICOLON)
1050           && this->advance_token()->is_op(OPERATOR_LCURLY))
1051         error_at(loc, "unexpected semicolon or newline before %<{%>");
1052       else
1053         {
1054           error_at(this->location(), "expected %<{%>");
1055           return UNKNOWN_LOCATION;
1056         }
1057     }
1058
1059   const Token* token = this->advance_token();
1060
1061   if (!token->is_op(OPERATOR_RCURLY))
1062     {
1063       this->statement_list();
1064       token = this->peek_token();
1065       if (!token->is_op(OPERATOR_RCURLY))
1066         {
1067           if (!token->is_eof() || !saw_errors())
1068             error_at(this->location(), "expected %<}%>");
1069
1070           // Skip ahead to the end of the block, in hopes of avoiding
1071           // lots of meaningless errors.
1072           source_location ret = token->location();
1073           int nest = 0;
1074           while (!token->is_eof())
1075             {
1076               if (token->is_op(OPERATOR_LCURLY))
1077                 ++nest;
1078               else if (token->is_op(OPERATOR_RCURLY))
1079                 {
1080                   --nest;
1081                   if (nest < 0)
1082                     {
1083                       this->advance_token();
1084                       break;
1085                     }
1086                 }
1087               token = this->advance_token();
1088               ret = token->location();
1089             }
1090           return ret;
1091         }
1092     }
1093
1094   source_location ret = token->location();
1095   this->advance_token();
1096   return ret;
1097 }
1098
1099 // InterfaceType      = "interface" "{" [ MethodSpecList ] "}" .
1100 // MethodSpecList     = MethodSpec { ";" MethodSpec } [ ";" ] .
1101
1102 Type*
1103 Parse::interface_type()
1104 {
1105   gcc_assert(this->peek_token()->is_keyword(KEYWORD_INTERFACE));
1106   source_location location = this->location();
1107
1108   if (!this->advance_token()->is_op(OPERATOR_LCURLY))
1109     {
1110       source_location token_loc = this->location();
1111       if (this->peek_token()->is_op(OPERATOR_SEMICOLON)
1112           && this->advance_token()->is_op(OPERATOR_LCURLY))
1113         error_at(token_loc, "unexpected semicolon or newline before %<{%>");
1114       else
1115         {
1116           error_at(this->location(), "expected %<{%>");
1117           return Type::make_error_type();
1118         }
1119     }
1120   this->advance_token();
1121
1122   Typed_identifier_list* methods = new Typed_identifier_list();
1123   if (!this->peek_token()->is_op(OPERATOR_RCURLY))
1124     {
1125       this->method_spec(methods);
1126       while (this->peek_token()->is_op(OPERATOR_SEMICOLON))
1127         {
1128           if (this->advance_token()->is_op(OPERATOR_RCURLY))
1129             break;
1130           this->method_spec(methods);
1131         }
1132       if (!this->peek_token()->is_op(OPERATOR_RCURLY))
1133         {
1134           error_at(this->location(), "expected %<}%>");
1135           while (!this->advance_token()->is_op(OPERATOR_RCURLY))
1136             {
1137               if (this->peek_token()->is_eof())
1138                 return Type::make_error_type();
1139             }
1140         }
1141     }
1142   this->advance_token();
1143
1144   if (methods->empty())
1145     {
1146       delete methods;
1147       methods = NULL;
1148     }
1149
1150   Interface_type* ret = Type::make_interface_type(methods, location);
1151   this->gogo_->record_interface_type(ret);
1152   return ret;
1153 }
1154
1155 // MethodSpec         = MethodName Signature | InterfaceTypeName .
1156 // MethodName         = identifier .
1157 // InterfaceTypeName  = TypeName .
1158
1159 void
1160 Parse::method_spec(Typed_identifier_list* methods)
1161 {
1162   const Token* token = this->peek_token();
1163   if (!token->is_identifier())
1164     {
1165       error_at(this->location(), "expected identifier");
1166       return;
1167     }
1168
1169   std::string name = token->identifier();
1170   bool is_exported = token->is_identifier_exported();
1171   source_location location = token->location();
1172
1173   if (this->advance_token()->is_op(OPERATOR_LPAREN))
1174     {
1175       // This is a MethodName.
1176       name = this->gogo_->pack_hidden_name(name, is_exported);
1177       Type* type = this->signature(NULL, location);
1178       if (type == NULL)
1179         return;
1180       methods->push_back(Typed_identifier(name, type, location));
1181     }
1182   else
1183     {
1184       this->unget_token(Token::make_identifier_token(name, is_exported,
1185                                                      location));
1186       Type* type = this->type_name(false);
1187       if (type->is_error_type()
1188           || (!this->peek_token()->is_op(OPERATOR_SEMICOLON)
1189               && !this->peek_token()->is_op(OPERATOR_RCURLY)))
1190         {
1191           if (this->peek_token()->is_op(OPERATOR_COMMA))
1192             error_at(this->location(),
1193                      "name list not allowed in interface type");
1194           else
1195             error_at(location, "expected signature or type name");
1196           token = this->peek_token();
1197           while (!token->is_eof()
1198                  && !token->is_op(OPERATOR_SEMICOLON)
1199                  && !token->is_op(OPERATOR_RCURLY))
1200             token = this->advance_token();
1201           return;
1202         }
1203       // This must be an interface type, but we can't check that now.
1204       // We check it and pull out the methods in
1205       // Interface_type::do_verify.
1206       methods->push_back(Typed_identifier("", type, location));
1207     }
1208 }
1209
1210 // Declaration = ConstDecl | TypeDecl | VarDecl | FunctionDecl | MethodDecl .
1211
1212 void
1213 Parse::declaration()
1214 {
1215   const Token* token = this->peek_token();
1216   if (token->is_keyword(KEYWORD_CONST))
1217     this->const_decl();
1218   else if (token->is_keyword(KEYWORD_TYPE))
1219     this->type_decl();
1220   else if (token->is_keyword(KEYWORD_VAR))
1221     this->var_decl();
1222   else if (token->is_keyword(KEYWORD_FUNC))
1223     this->function_decl();
1224   else
1225     {
1226       error_at(this->location(), "expected declaration");
1227       this->advance_token();
1228     }
1229 }
1230
1231 bool
1232 Parse::declaration_may_start_here()
1233 {
1234   const Token* token = this->peek_token();
1235   return (token->is_keyword(KEYWORD_CONST)
1236           || token->is_keyword(KEYWORD_TYPE)
1237           || token->is_keyword(KEYWORD_VAR)
1238           || token->is_keyword(KEYWORD_FUNC));
1239 }
1240
1241 // Decl<P> = P | "(" [ List<P> ] ")" .
1242
1243 void
1244 Parse::decl(void (Parse::*pfn)(void*), void* varg)
1245 {
1246   if (!this->peek_token()->is_op(OPERATOR_LPAREN))
1247     (this->*pfn)(varg);
1248   else
1249     {
1250       if (!this->advance_token()->is_op(OPERATOR_RPAREN))
1251         {
1252           this->list(pfn, varg, true);
1253           if (!this->peek_token()->is_op(OPERATOR_RPAREN))
1254             {
1255               error_at(this->location(), "missing %<)%>");
1256               while (!this->advance_token()->is_op(OPERATOR_RPAREN))
1257                 {
1258                   if (this->peek_token()->is_eof())
1259                     return;
1260                 }
1261             }
1262         }
1263       this->advance_token();
1264     }
1265 }
1266
1267 // List<P> = P { ";" P } [ ";" ] .
1268
1269 // In order to pick up the trailing semicolon we need to know what
1270 // might follow.  This is either a '}' or a ')'.
1271
1272 void
1273 Parse::list(void (Parse::*pfn)(void*), void* varg, bool follow_is_paren)
1274 {
1275   (this->*pfn)(varg);
1276   Operator follow = follow_is_paren ? OPERATOR_RPAREN : OPERATOR_RCURLY;
1277   while (this->peek_token()->is_op(OPERATOR_SEMICOLON)
1278          || this->peek_token()->is_op(OPERATOR_COMMA))
1279     {
1280       if (this->peek_token()->is_op(OPERATOR_COMMA))
1281         error_at(this->location(), "unexpected comma");
1282       if (this->advance_token()->is_op(follow))
1283         break;
1284       (this->*pfn)(varg);
1285     }
1286 }
1287
1288 // ConstDecl      = "const" ( ConstSpec | "(" { ConstSpec ";" } ")" ) .
1289
1290 void
1291 Parse::const_decl()
1292 {
1293   gcc_assert(this->peek_token()->is_keyword(KEYWORD_CONST));
1294   this->advance_token();
1295   this->reset_iota();
1296
1297   Type* last_type = NULL;
1298   Expression_list* last_expr_list = NULL;
1299
1300   if (!this->peek_token()->is_op(OPERATOR_LPAREN))
1301     this->const_spec(&last_type, &last_expr_list);
1302   else
1303     {
1304       this->advance_token();
1305       while (!this->peek_token()->is_op(OPERATOR_RPAREN))
1306         {
1307           this->const_spec(&last_type, &last_expr_list);
1308           if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
1309             this->advance_token();
1310           else if (!this->peek_token()->is_op(OPERATOR_RPAREN))
1311             {
1312               error_at(this->location(), "expected %<;%> or %<)%> or newline");
1313               if (!this->skip_past_error(OPERATOR_RPAREN))
1314                 return;
1315             }
1316         }
1317       this->advance_token();
1318     }
1319
1320   if (last_expr_list != NULL)
1321     delete last_expr_list;
1322 }
1323
1324 // ConstSpec = IdentifierList [ [ CompleteType ] "=" ExpressionList ] .
1325
1326 void
1327 Parse::const_spec(Type** last_type, Expression_list** last_expr_list)
1328 {
1329   Typed_identifier_list til;
1330   this->identifier_list(&til);
1331
1332   Type* type = NULL;
1333   if (this->type_may_start_here())
1334     {
1335       type = this->type();
1336       *last_type = NULL;
1337       *last_expr_list = NULL;
1338     }
1339
1340   Expression_list *expr_list;
1341   if (!this->peek_token()->is_op(OPERATOR_EQ))
1342     {
1343       if (*last_expr_list == NULL)
1344         {
1345           error_at(this->location(), "expected %<=%>");
1346           return;
1347         }
1348       type = *last_type;
1349       expr_list = new Expression_list;
1350       for (Expression_list::const_iterator p = (*last_expr_list)->begin();
1351            p != (*last_expr_list)->end();
1352            ++p)
1353         expr_list->push_back((*p)->copy());
1354     }
1355   else
1356     {
1357       this->advance_token();
1358       expr_list = this->expression_list(NULL, false);
1359       *last_type = type;
1360       if (*last_expr_list != NULL)
1361         delete *last_expr_list;
1362       *last_expr_list = expr_list;
1363     }
1364
1365   Expression_list::const_iterator pe = expr_list->begin();
1366   for (Typed_identifier_list::iterator pi = til.begin();
1367        pi != til.end();
1368        ++pi, ++pe)
1369     {
1370       if (pe == expr_list->end())
1371         {
1372           error_at(this->location(), "not enough initializers");
1373           return;
1374         }
1375       if (type != NULL)
1376         pi->set_type(type);
1377
1378       if (!Gogo::is_sink_name(pi->name()))
1379         this->gogo_->add_constant(*pi, *pe, this->iota_value());
1380     }
1381   if (pe != expr_list->end())
1382     error_at(this->location(), "too many initializers");
1383
1384   this->increment_iota();
1385
1386   return;
1387 }
1388
1389 // TypeDecl = "type" Decl<TypeSpec> .
1390
1391 void
1392 Parse::type_decl()
1393 {
1394   gcc_assert(this->peek_token()->is_keyword(KEYWORD_TYPE));
1395   this->advance_token();
1396   this->decl(&Parse::type_spec, NULL);
1397 }
1398
1399 // TypeSpec = identifier Type .
1400
1401 void
1402 Parse::type_spec(void*)
1403 {
1404   const Token* token = this->peek_token();
1405   if (!token->is_identifier())
1406     {
1407       error_at(this->location(), "expected identifier");
1408       return;
1409     }
1410   std::string name = token->identifier();
1411   bool is_exported = token->is_identifier_exported();
1412   source_location location = token->location();
1413   token = this->advance_token();
1414
1415   // The scope of the type name starts at the point where the
1416   // identifier appears in the source code.  We implement this by
1417   // declaring the type before we read the type definition.
1418   Named_object* named_type = NULL;
1419   if (name != "_")
1420     {
1421       name = this->gogo_->pack_hidden_name(name, is_exported);
1422       named_type = this->gogo_->declare_type(name, location);
1423     }
1424
1425   Type* type;
1426   if (!this->peek_token()->is_op(OPERATOR_SEMICOLON))
1427     type = this->type();
1428   else
1429     {
1430       error_at(this->location(),
1431                "unexpected semicolon or newline in type declaration");
1432       type = Type::make_error_type();
1433       this->advance_token();
1434     }
1435
1436   if (type->is_error_type())
1437     {
1438       while (!this->peek_token()->is_op(OPERATOR_SEMICOLON)
1439              && !this->peek_token()->is_eof())
1440         this->advance_token();
1441     }
1442
1443   if (name != "_")
1444     {
1445       if (named_type->is_type_declaration())
1446         {
1447           Type* ftype = type->forwarded();
1448           if (ftype->forward_declaration_type() != NULL
1449               && (ftype->forward_declaration_type()->named_object()
1450                   == named_type))
1451             {
1452               error_at(location, "invalid recursive type");
1453               type = Type::make_error_type();
1454             }
1455
1456           this->gogo_->define_type(named_type,
1457                                    Type::make_named_type(named_type, type,
1458                                                          location));
1459           gcc_assert(named_type->package() == NULL);
1460         }
1461       else
1462         {
1463           // This will probably give a redefinition error.
1464           this->gogo_->add_type(name, type, location);
1465         }
1466     }
1467 }
1468
1469 // VarDecl = "var" Decl<VarSpec> .
1470
1471 void
1472 Parse::var_decl()
1473 {
1474   gcc_assert(this->peek_token()->is_keyword(KEYWORD_VAR));
1475   this->advance_token();
1476   this->decl(&Parse::var_spec, NULL);
1477 }
1478
1479 // VarSpec = IdentifierList
1480 //             ( CompleteType [ "=" ExpressionList ] | "=" ExpressionList ) .
1481
1482 void
1483 Parse::var_spec(void*)
1484 {
1485   // Get the variable names.
1486   Typed_identifier_list til;
1487   this->identifier_list(&til);
1488
1489   source_location location = this->location();
1490
1491   Type* type = NULL;
1492   Expression_list* init = NULL;
1493   if (!this->peek_token()->is_op(OPERATOR_EQ))
1494     {
1495       type = this->type();
1496       if (type->is_error_type())
1497         {
1498           while (!this->peek_token()->is_op(OPERATOR_EQ)
1499                  && !this->peek_token()->is_op(OPERATOR_SEMICOLON)
1500                  && !this->peek_token()->is_eof())
1501             this->advance_token();
1502         }
1503       if (this->peek_token()->is_op(OPERATOR_EQ))
1504         {
1505           this->advance_token();
1506           init = this->expression_list(NULL, false);
1507         }
1508     }
1509   else
1510     {
1511       this->advance_token();
1512       init = this->expression_list(NULL, false);
1513     }
1514
1515   this->init_vars(&til, type, init, false, location);
1516
1517   if (init != NULL)
1518     delete init;
1519 }
1520
1521 // Create variables.  TIL is a list of variable names.  If TYPE is not
1522 // NULL, it is the type of all the variables.  If INIT is not NULL, it
1523 // is an initializer list for the variables.
1524
1525 void
1526 Parse::init_vars(const Typed_identifier_list* til, Type* type,
1527                  Expression_list* init, bool is_coloneq,
1528                  source_location location)
1529 {
1530   // Check for an initialization which can yield multiple values.
1531   if (init != NULL && init->size() == 1 && til->size() > 1)
1532     {
1533       if (this->init_vars_from_call(til, type, *init->begin(), is_coloneq,
1534                                     location))
1535         return;
1536       if (this->init_vars_from_map(til, type, *init->begin(), is_coloneq,
1537                                    location))
1538         return;
1539       if (this->init_vars_from_receive(til, type, *init->begin(), is_coloneq,
1540                                        location))
1541         return;
1542       if (this->init_vars_from_type_guard(til, type, *init->begin(),
1543                                           is_coloneq, location))
1544         return;
1545     }
1546
1547   if (init != NULL && init->size() != til->size())
1548     {
1549       if (init->empty() || !init->front()->is_error_expression())
1550         error_at(location, "wrong number of initializations");
1551       init = NULL;
1552       if (type == NULL)
1553         type = Type::make_error_type();
1554     }
1555
1556   // Note that INIT was already parsed with the old name bindings, so
1557   // we don't have to worry that it will accidentally refer to the
1558   // newly declared variables.
1559
1560   Expression_list::const_iterator pexpr;
1561   if (init != NULL)
1562     pexpr = init->begin();
1563   bool any_new = false;
1564   for (Typed_identifier_list::const_iterator p = til->begin();
1565        p != til->end();
1566        ++p)
1567     {
1568       if (init != NULL)
1569         gcc_assert(pexpr != init->end());
1570       this->init_var(*p, type, init == NULL ? NULL : *pexpr, is_coloneq,
1571                      false, &any_new);
1572       if (init != NULL)
1573         ++pexpr;
1574     }
1575   if (init != NULL)
1576     gcc_assert(pexpr == init->end());
1577   if (is_coloneq && !any_new)
1578     error_at(location, "variables redeclared but no variable is new");
1579 }
1580
1581 // See if we need to initialize a list of variables from a function
1582 // call.  This returns true if we have set up the variables and the
1583 // initialization.
1584
1585 bool
1586 Parse::init_vars_from_call(const Typed_identifier_list* vars, Type* type,
1587                            Expression* expr, bool is_coloneq,
1588                            source_location location)
1589 {
1590   Call_expression* call = expr->call_expression();
1591   if (call == NULL)
1592     return false;
1593
1594   // This is a function call.  We can't check here whether it returns
1595   // the right number of values, but it might.  Declare the variables,
1596   // and then assign the results of the call to them.
1597
1598   unsigned int index = 0;
1599   bool any_new = false;
1600   for (Typed_identifier_list::const_iterator pv = vars->begin();
1601        pv != vars->end();
1602        ++pv, ++index)
1603     {
1604       Expression* init = Expression::make_call_result(call, index);
1605       this->init_var(*pv, type, init, is_coloneq, false, &any_new);
1606     }
1607
1608   if (is_coloneq && !any_new)
1609     error_at(location, "variables redeclared but no variable is new");
1610
1611   return true;
1612 }
1613
1614 // See if we need to initialize a pair of values from a map index
1615 // expression.  This returns true if we have set up the variables and
1616 // the initialization.
1617
1618 bool
1619 Parse::init_vars_from_map(const Typed_identifier_list* vars, Type* type,
1620                           Expression* expr, bool is_coloneq,
1621                           source_location location)
1622 {
1623   Index_expression* index = expr->index_expression();
1624   if (index == NULL)
1625     return false;
1626   if (vars->size() != 2)
1627     return false;
1628
1629   // This is an index which is being assigned to two variables.  It
1630   // must be a map index.  Declare the variables, and then assign the
1631   // results of the map index.
1632   bool any_new = false;
1633   Typed_identifier_list::const_iterator p = vars->begin();
1634   Expression* init = type == NULL ? index : NULL;
1635   Named_object* val_no = this->init_var(*p, type, init, is_coloneq,
1636                                         type == NULL, &any_new);
1637   if (type == NULL && any_new && val_no->is_variable())
1638     val_no->var_value()->set_type_from_init_tuple();
1639   Expression* val_var = Expression::make_var_reference(val_no, location);
1640
1641   ++p;
1642   Type* var_type = type;
1643   if (var_type == NULL)
1644     var_type = Type::lookup_bool_type();
1645   Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false,
1646                                     &any_new);
1647   Expression* present_var = Expression::make_var_reference(no, location);
1648
1649   if (is_coloneq && !any_new)
1650     error_at(location, "variables redeclared but no variable is new");
1651
1652   Statement* s = Statement::make_tuple_map_assignment(val_var, present_var,
1653                                                       index, location);
1654
1655   if (!this->gogo_->in_global_scope())
1656     this->gogo_->add_statement(s);
1657   else if (!val_no->is_sink())
1658     val_no->var_value()->add_preinit_statement(s);
1659   else if (!no->is_sink())
1660     no->var_value()->add_preinit_statement(s);
1661   else
1662     {
1663       // Execute the map index expression just so that we can fail if
1664       // the map is nil.
1665       Named_object* dummy = this->create_dummy_global(Type::lookup_bool_type(),
1666                                                       NULL, location);
1667       dummy->var_value()->add_preinit_statement(s);
1668     }
1669
1670   return true;
1671 }
1672
1673 // See if we need to initialize a pair of values from a receive
1674 // expression.  This returns true if we have set up the variables and
1675 // the initialization.
1676
1677 bool
1678 Parse::init_vars_from_receive(const Typed_identifier_list* vars, Type* type,
1679                               Expression* expr, bool is_coloneq,
1680                               source_location location)
1681 {
1682   Receive_expression* receive = expr->receive_expression();
1683   if (receive == NULL)
1684     return false;
1685   if (vars->size() != 2)
1686     return false;
1687
1688   // This is a receive expression which is being assigned to two
1689   // variables.  Declare the variables, and then assign the results of
1690   // the receive.
1691   bool any_new = false;
1692   Typed_identifier_list::const_iterator p = vars->begin();
1693   Expression* init = type == NULL ? receive : NULL;
1694   Named_object* val_no = this->init_var(*p, type, init, is_coloneq,
1695                                         type == NULL, &any_new);
1696   if (type == NULL && any_new && val_no->is_variable())
1697     val_no->var_value()->set_type_from_init_tuple();
1698   Expression* val_var = Expression::make_var_reference(val_no, location);
1699
1700   ++p;
1701   Type* var_type = type;
1702   if (var_type == NULL)
1703     var_type = Type::lookup_bool_type();
1704   Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false,
1705                                     &any_new);
1706   Expression* received_var = Expression::make_var_reference(no, location);
1707
1708   if (is_coloneq && !any_new)
1709     error_at(location, "variables redeclared but no variable is new");
1710
1711   Statement* s = Statement::make_tuple_receive_assignment(val_var,
1712                                                           received_var,
1713                                                           receive->channel(),
1714                                                           location);
1715
1716   if (!this->gogo_->in_global_scope())
1717     this->gogo_->add_statement(s);
1718   else if (!val_no->is_sink())
1719     val_no->var_value()->add_preinit_statement(s);
1720   else if (!no->is_sink())
1721     no->var_value()->add_preinit_statement(s);
1722   else
1723     {
1724       Named_object* dummy = this->create_dummy_global(Type::lookup_bool_type(),
1725                                                       NULL, location);
1726       dummy->var_value()->add_preinit_statement(s);
1727     }
1728
1729   return true;
1730 }
1731
1732 // See if we need to initialize a pair of values from a type guard
1733 // expression.  This returns true if we have set up the variables and
1734 // the initialization.
1735
1736 bool
1737 Parse::init_vars_from_type_guard(const Typed_identifier_list* vars,
1738                                  Type* type, Expression* expr,
1739                                  bool is_coloneq, source_location location)
1740 {
1741   Type_guard_expression* type_guard = expr->type_guard_expression();
1742   if (type_guard == NULL)
1743     return false;
1744   if (vars->size() != 2)
1745     return false;
1746
1747   // This is a type guard expression which is being assigned to two
1748   // variables.  Declare the variables, and then assign the results of
1749   // the type guard.
1750   bool any_new = false;
1751   Typed_identifier_list::const_iterator p = vars->begin();
1752   Type* var_type = type;
1753   if (var_type == NULL)
1754     var_type = type_guard->type();
1755   Named_object* val_no = this->init_var(*p, var_type, NULL, is_coloneq, false,
1756                                         &any_new);
1757   Expression* val_var = Expression::make_var_reference(val_no, location);
1758
1759   ++p;
1760   var_type = type;
1761   if (var_type == NULL)
1762     var_type = Type::lookup_bool_type();
1763   Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false,
1764                                     &any_new);
1765   Expression* ok_var = Expression::make_var_reference(no, location);
1766
1767   Expression* texpr = type_guard->expr();
1768   Type* t = type_guard->type();
1769   Statement* s = Statement::make_tuple_type_guard_assignment(val_var, ok_var,
1770                                                              texpr, t,
1771                                                              location);
1772
1773   if (is_coloneq && !any_new)
1774     error_at(location, "variables redeclared but no variable is new");
1775
1776   if (!this->gogo_->in_global_scope())
1777     this->gogo_->add_statement(s);
1778   else if (!val_no->is_sink())
1779     val_no->var_value()->add_preinit_statement(s);
1780   else if (!no->is_sink())
1781     no->var_value()->add_preinit_statement(s);
1782   else
1783     {
1784       Named_object* dummy = this->create_dummy_global(type, NULL, location);
1785       dummy->var_value()->add_preinit_statement(s);
1786     }
1787
1788   return true;
1789 }
1790
1791 // Create a single variable.  If IS_COLONEQ is true, we permit
1792 // redeclarations in the same block, and we set *IS_NEW when we find a
1793 // new variable which is not a redeclaration.
1794
1795 Named_object*
1796 Parse::init_var(const Typed_identifier& tid, Type* type, Expression* init,
1797                 bool is_coloneq, bool type_from_init, bool* is_new)
1798 {
1799   source_location location = tid.location();
1800
1801   if (Gogo::is_sink_name(tid.name()))
1802     {
1803       if (!type_from_init && init != NULL)
1804         {
1805           if (!this->gogo_->in_global_scope())
1806             this->gogo_->add_statement(Statement::make_statement(init));
1807           else
1808             return this->create_dummy_global(type, init, location);
1809         }
1810       return this->gogo_->add_sink();
1811     }
1812
1813   if (is_coloneq)
1814     {
1815       Named_object* no = this->gogo_->lookup_in_block(tid.name());
1816       if (no != NULL
1817           && (no->is_variable() || no->is_result_variable()))
1818         {
1819           // INIT may be NULL even when IS_COLONEQ is true for cases
1820           // like v, ok := x.(int).
1821           if (!type_from_init && init != NULL)
1822             {
1823               Expression *v = Expression::make_var_reference(no, location);
1824               Statement *s = Statement::make_assignment(v, init, location);
1825               this->gogo_->add_statement(s);
1826             }
1827           return no;
1828         }
1829     }
1830   *is_new = true;
1831   Variable* var = new Variable(type, init, this->gogo_->in_global_scope(),
1832                                false, false, location);
1833   return this->gogo_->add_variable(tid.name(), var);
1834 }
1835
1836 // Create a dummy global variable to force an initializer to be run in
1837 // the right place.  This is used when a sink variable is initialized
1838 // at global scope.
1839
1840 Named_object*
1841 Parse::create_dummy_global(Type* type, Expression* init,
1842                            source_location location)
1843 {
1844   Variable* var = new Variable(type, init, true, false, false, location);
1845   static int count;
1846   char buf[30];
1847   snprintf(buf, sizeof buf, "_.%d", count);
1848   ++count;
1849   return this->gogo_->add_variable(buf, var);
1850 }
1851
1852 // SimpleVarDecl = identifier ":=" Expression .
1853
1854 // We've already seen the identifier.
1855
1856 // FIXME: We also have to implement
1857 //  IdentifierList ":=" ExpressionList
1858 // In order to support both "a, b := 1, 0" and "a, b = 1, 0" we accept
1859 // tuple assignments here as well.
1860
1861 // If P_RANGE_CLAUSE is not NULL, then this will recognize a
1862 // RangeClause.
1863
1864 // If P_TYPE_SWITCH is not NULL, this will recognize a type switch
1865 // guard (var := expr.("type") using the literal keyword "type").
1866
1867 void
1868 Parse::simple_var_decl_or_assignment(const std::string& name,
1869                                      source_location location,
1870                                      Range_clause* p_range_clause,
1871                                      Type_switch* p_type_switch)
1872 {
1873   Typed_identifier_list til;
1874   til.push_back(Typed_identifier(name, NULL, location));
1875
1876   // We've seen one identifier.  If we see a comma now, this could be
1877   // "a, *p = 1, 2".
1878   if (this->peek_token()->is_op(OPERATOR_COMMA))
1879     {
1880       gcc_assert(p_type_switch == NULL);
1881       while (true)
1882         {
1883           const Token* token = this->advance_token();
1884           if (!token->is_identifier())
1885             break;
1886
1887           std::string id = token->identifier();
1888           bool is_id_exported = token->is_identifier_exported();
1889           source_location id_location = token->location();
1890
1891           token = this->advance_token();
1892           if (!token->is_op(OPERATOR_COMMA))
1893             {
1894               if (token->is_op(OPERATOR_COLONEQ))
1895                 {
1896                   id = this->gogo_->pack_hidden_name(id, is_id_exported);
1897                   til.push_back(Typed_identifier(id, NULL, location));
1898                 }
1899               else
1900                 this->unget_token(Token::make_identifier_token(id,
1901                                                                is_id_exported,
1902                                                                id_location));
1903               break;
1904             }
1905
1906           id = this->gogo_->pack_hidden_name(id, is_id_exported);
1907           til.push_back(Typed_identifier(id, NULL, location));
1908         }
1909
1910       // We have a comma separated list of identifiers in TIL.  If the
1911       // next token is COLONEQ, then this is a simple var decl, and we
1912       // have the complete list of identifiers.  If the next token is
1913       // not COLONEQ, then the only valid parse is a tuple assignment.
1914       // The list of identifiers we have so far is really a list of
1915       // expressions.  There are more expressions following.
1916
1917       if (!this->peek_token()->is_op(OPERATOR_COLONEQ))
1918         {
1919           Expression_list* exprs = new Expression_list;
1920           for (Typed_identifier_list::const_iterator p = til.begin();
1921                p != til.end();
1922                ++p)
1923             exprs->push_back(this->id_to_expression(p->name(),
1924                                                     p->location()));
1925
1926           Expression_list* more_exprs = this->expression_list(NULL, true);
1927           for (Expression_list::const_iterator p = more_exprs->begin();
1928                p != more_exprs->end();
1929                ++p)
1930             exprs->push_back(*p);
1931           delete more_exprs;
1932
1933           this->tuple_assignment(exprs, p_range_clause);
1934           return;
1935         }
1936     }
1937
1938   gcc_assert(this->peek_token()->is_op(OPERATOR_COLONEQ));
1939   const Token* token = this->advance_token();
1940
1941   if (p_range_clause != NULL && token->is_keyword(KEYWORD_RANGE))
1942     {
1943       this->range_clause_decl(&til, p_range_clause);
1944       return;
1945     }
1946
1947   Expression_list* init;
1948   if (p_type_switch == NULL)
1949     init = this->expression_list(NULL, false);
1950   else
1951     {
1952       bool is_type_switch = false;
1953       Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true,
1954                                           &is_type_switch);
1955       if (is_type_switch)
1956         {
1957           p_type_switch->found = true;
1958           p_type_switch->name = name;
1959           p_type_switch->location = location;
1960           p_type_switch->expr = expr;
1961           return;
1962         }
1963
1964       if (!this->peek_token()->is_op(OPERATOR_COMMA))
1965         {
1966           init = new Expression_list();
1967           init->push_back(expr);
1968         }
1969       else
1970         {
1971           this->advance_token();
1972           init = this->expression_list(expr, false);
1973         }
1974     }
1975
1976   this->init_vars(&til, NULL, init, true, location);
1977 }
1978
1979 // FunctionDecl = "func" identifier Signature [ Block ] .
1980 // MethodDecl = "func" Receiver identifier Signature [ Block ] .
1981
1982 // gcc extension:
1983 //   FunctionDecl = "func" identifier Signature
1984 //                    __asm__ "(" string_lit ")" .
1985 // This extension means a function whose real name is the identifier
1986 // inside the asm.
1987
1988 void
1989 Parse::function_decl()
1990 {
1991   gcc_assert(this->peek_token()->is_keyword(KEYWORD_FUNC));
1992   source_location location = this->location();
1993   const Token* token = this->advance_token();
1994
1995   Typed_identifier* rec = NULL;
1996   if (token->is_op(OPERATOR_LPAREN))
1997     {
1998       rec = this->receiver();
1999       token = this->peek_token();
2000     }
2001
2002   if (!token->is_identifier())
2003     {
2004       error_at(this->location(), "expected function name");
2005       return;
2006     }
2007
2008   std::string name =
2009     this->gogo_->pack_hidden_name(token->identifier(),
2010                                   token->is_identifier_exported());
2011
2012   this->advance_token();
2013
2014   Function_type* fntype = this->signature(rec, this->location());
2015   if (fntype == NULL)
2016     return;
2017
2018   Named_object* named_object = NULL;
2019
2020   if (this->peek_token()->is_keyword(KEYWORD_ASM))
2021     {
2022       if (!this->advance_token()->is_op(OPERATOR_LPAREN))
2023         {
2024           error_at(this->location(), "expected %<(%>");
2025           return;
2026         }
2027       token = this->advance_token();
2028       if (!token->is_string())
2029         {
2030           error_at(this->location(), "expected string");
2031           return;
2032         }
2033       std::string asm_name = token->string_value();
2034       if (!this->advance_token()->is_op(OPERATOR_RPAREN))
2035         {
2036           error_at(this->location(), "expected %<)%>");
2037           return;
2038         }
2039       this->advance_token();
2040       named_object = this->gogo_->declare_function(name, fntype, location);
2041       if (named_object->is_function_declaration())
2042         named_object->func_declaration_value()->set_asm_name(asm_name);
2043     }
2044
2045   // Check for the easy error of a newline before the opening brace.
2046   if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
2047     {
2048       source_location semi_loc = this->location();
2049       if (this->advance_token()->is_op(OPERATOR_LCURLY))
2050         error_at(this->location(),
2051                  "unexpected semicolon or newline before %<{%>");
2052       else
2053         this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON,
2054                                                      semi_loc));
2055     }
2056
2057   if (!this->peek_token()->is_op(OPERATOR_LCURLY))
2058     {
2059       if (named_object == NULL)
2060         named_object = this->gogo_->declare_function(name, fntype, location);
2061     }
2062   else
2063     {
2064       this->gogo_->start_function(name, fntype, true, location);
2065       source_location end_loc = this->block();
2066       this->gogo_->finish_function(end_loc);
2067     }
2068 }
2069
2070 // Receiver     = "(" [ identifier ] [ "*" ] BaseTypeName ")" .
2071 // BaseTypeName = identifier .
2072
2073 Typed_identifier*
2074 Parse::receiver()
2075 {
2076   gcc_assert(this->peek_token()->is_op(OPERATOR_LPAREN));
2077
2078   std::string name;
2079   const Token* token = this->advance_token();
2080   source_location location = token->location();
2081   if (!token->is_op(OPERATOR_MULT))
2082     {
2083       if (!token->is_identifier())
2084         {
2085           error_at(this->location(), "method has no receiver");
2086           while (!token->is_eof() && !token->is_op(OPERATOR_RPAREN))
2087             token = this->advance_token();
2088           if (!token->is_eof())
2089             this->advance_token();
2090           return NULL;
2091         }
2092       name = token->identifier();
2093       bool is_exported = token->is_identifier_exported();
2094       token = this->advance_token();
2095       if (!token->is_op(OPERATOR_DOT) && !token->is_op(OPERATOR_RPAREN))
2096         {
2097           // An identifier followed by something other than a dot or a
2098           // right parenthesis must be a receiver name followed by a
2099           // type.
2100           name = this->gogo_->pack_hidden_name(name, is_exported);
2101         }
2102       else
2103         {
2104           // This must be a type name.
2105           this->unget_token(Token::make_identifier_token(name, is_exported,
2106                                                          location));
2107           token = this->peek_token();
2108           name.clear();
2109         }
2110     }
2111
2112   // Here the receiver name is in NAME (it is empty if the receiver is
2113   // unnamed) and TOKEN is the first token in the type.
2114
2115   bool is_pointer = false;
2116   if (token->is_op(OPERATOR_MULT))
2117     {
2118       is_pointer = true;
2119       token = this->advance_token();
2120     }
2121
2122   if (!token->is_identifier())
2123     {
2124       error_at(this->location(), "expected receiver name or type");
2125       int c = token->is_op(OPERATOR_LPAREN) ? 1 : 0;
2126       while (!token->is_eof())
2127         {
2128           token = this->advance_token();
2129           if (token->is_op(OPERATOR_LPAREN))
2130             ++c;
2131           else if (token->is_op(OPERATOR_RPAREN))
2132             {
2133               if (c == 0)
2134                 break;
2135               --c;
2136             }
2137         }
2138       if (!token->is_eof())
2139         this->advance_token();
2140       return NULL;
2141     }
2142
2143   Type* type = this->type_name(true);
2144
2145   if (is_pointer && !type->is_error_type())
2146     type = Type::make_pointer_type(type);
2147
2148   if (this->peek_token()->is_op(OPERATOR_RPAREN))
2149     this->advance_token();
2150   else
2151     {
2152       if (this->peek_token()->is_op(OPERATOR_COMMA))
2153         error_at(this->location(), "method has multiple receivers");
2154       else
2155         error_at(this->location(), "expected %<)%>");
2156       while (!token->is_eof() && !token->is_op(OPERATOR_RPAREN))
2157         token = this->advance_token();
2158       if (!token->is_eof())
2159         this->advance_token();
2160       return NULL;
2161     }
2162
2163   return new Typed_identifier(name, type, location);
2164 }
2165
2166 // Operand    = Literal | QualifiedIdent | MethodExpr | "(" Expression ")" .
2167 // Literal    = BasicLit | CompositeLit | FunctionLit .
2168 // BasicLit   = int_lit | float_lit | imaginary_lit | char_lit | string_lit .
2169
2170 // If MAY_BE_SINK is true, this operand may be "_".
2171
2172 Expression*
2173 Parse::operand(bool may_be_sink)
2174 {
2175   const Token* token = this->peek_token();
2176   Expression* ret;
2177   switch (token->classification())
2178     {
2179     case Token::TOKEN_IDENTIFIER:
2180       {
2181         source_location location = token->location();
2182         std::string id = token->identifier();
2183         bool is_exported = token->is_identifier_exported();
2184         std::string packed = this->gogo_->pack_hidden_name(id, is_exported);
2185
2186         Named_object* in_function;
2187         Named_object* named_object = this->gogo_->lookup(packed, &in_function);
2188
2189         Package* package = NULL;
2190         if (named_object != NULL && named_object->is_package())
2191           {
2192             if (!this->advance_token()->is_op(OPERATOR_DOT)
2193                 || !this->advance_token()->is_identifier())
2194               {
2195                 error_at(location, "unexpected reference to package");
2196                 return Expression::make_error(location);
2197               }
2198             package = named_object->package_value();
2199             package->set_used();
2200             id = this->peek_token()->identifier();
2201             is_exported = this->peek_token()->is_identifier_exported();
2202             packed = this->gogo_->pack_hidden_name(id, is_exported);
2203             named_object = package->lookup(packed);
2204             location = this->location();
2205             gcc_assert(in_function == NULL);
2206           }
2207
2208         this->advance_token();
2209
2210         if (named_object != NULL
2211             && named_object->is_type()
2212             && !named_object->type_value()->is_visible())
2213           {
2214             gcc_assert(package != NULL);
2215             error_at(location, "invalid reference to hidden type %<%s.%s%>",
2216                      Gogo::message_name(package->name()).c_str(),
2217                      Gogo::message_name(id).c_str());
2218             return Expression::make_error(location);
2219           }
2220
2221
2222         if (named_object == NULL)
2223           {
2224             if (package != NULL)
2225               {
2226                 std::string n1 = Gogo::message_name(package->name());
2227                 std::string n2 = Gogo::message_name(id);
2228                 if (!is_exported)
2229                   error_at(location,
2230                            ("invalid reference to unexported identifier "
2231                             "%<%s.%s%>"),
2232                            n1.c_str(), n2.c_str());
2233                 else
2234                   error_at(location,
2235                            "reference to undefined identifier %<%s.%s%>",
2236                            n1.c_str(), n2.c_str());
2237                 return Expression::make_error(location);
2238               }
2239
2240             named_object = this->gogo_->add_unknown_name(packed, location);
2241           }
2242
2243         if (in_function != NULL
2244             && in_function != this->gogo_->current_function()
2245             && (named_object->is_variable()
2246                 || named_object->is_result_variable()))
2247           return this->enclosing_var_reference(in_function, named_object,
2248                                                location);
2249
2250         switch (named_object->classification())
2251           {
2252           case Named_object::NAMED_OBJECT_CONST:
2253             return Expression::make_const_reference(named_object, location);
2254           case Named_object::NAMED_OBJECT_TYPE:
2255             return Expression::make_type(named_object->type_value(), location);
2256           case Named_object::NAMED_OBJECT_TYPE_DECLARATION:
2257             {
2258               Type* t = Type::make_forward_declaration(named_object);
2259               return Expression::make_type(t, location);
2260             }
2261           case Named_object::NAMED_OBJECT_VAR:
2262           case Named_object::NAMED_OBJECT_RESULT_VAR:
2263             return Expression::make_var_reference(named_object, location);
2264           case Named_object::NAMED_OBJECT_SINK:
2265             if (may_be_sink)
2266               return Expression::make_sink(location);
2267             else
2268               {
2269                 error_at(location, "cannot use _ as value");
2270                 return Expression::make_error(location);
2271               }
2272           case Named_object::NAMED_OBJECT_FUNC:
2273           case Named_object::NAMED_OBJECT_FUNC_DECLARATION:
2274             return Expression::make_func_reference(named_object, NULL,
2275                                                    location);
2276           case Named_object::NAMED_OBJECT_UNKNOWN:
2277             return Expression::make_unknown_reference(named_object, location);
2278           default:
2279             gcc_unreachable();
2280           }
2281       }
2282       gcc_unreachable();
2283
2284     case Token::TOKEN_STRING:
2285       ret = Expression::make_string(token->string_value(), token->location());
2286       this->advance_token();
2287       return ret;
2288
2289     case Token::TOKEN_INTEGER:
2290       ret = Expression::make_integer(token->integer_value(), NULL,
2291                                      token->location());
2292       this->advance_token();
2293       return ret;
2294
2295     case Token::TOKEN_FLOAT:
2296       ret = Expression::make_float(token->float_value(), NULL,
2297                                    token->location());
2298       this->advance_token();
2299       return ret;
2300
2301     case Token::TOKEN_IMAGINARY:
2302       {
2303         mpfr_t zero;
2304         mpfr_init_set_ui(zero, 0, GMP_RNDN);
2305         ret = Expression::make_complex(&zero, token->imaginary_value(),
2306                                        NULL, token->location());
2307         mpfr_clear(zero);
2308         this->advance_token();
2309         return ret;
2310       }
2311
2312     case Token::TOKEN_KEYWORD:
2313       switch (token->keyword())
2314         {
2315         case KEYWORD_FUNC:
2316           return this->function_lit();
2317         case KEYWORD_CHAN:
2318         case KEYWORD_INTERFACE:
2319         case KEYWORD_MAP:
2320         case KEYWORD_STRUCT:
2321           {
2322             source_location location = token->location();
2323             return Expression::make_type(this->type(), location);
2324           }
2325         default:
2326           break;
2327         }
2328       break;
2329
2330     case Token::TOKEN_OPERATOR:
2331       if (token->is_op(OPERATOR_LPAREN))
2332         {
2333           this->advance_token();
2334           ret = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
2335           if (!this->peek_token()->is_op(OPERATOR_RPAREN))
2336             error_at(this->location(), "missing %<)%>");
2337           else
2338             this->advance_token();
2339           return ret;
2340         }
2341       else if (token->is_op(OPERATOR_LSQUARE))
2342         {
2343           // Here we call array_type directly, as this is the only
2344           // case where an ellipsis is permitted for an array type.
2345           source_location location = token->location();
2346           return Expression::make_type(this->array_type(true), location);
2347         }
2348       break;
2349
2350     default:
2351       break;
2352     }
2353
2354   error_at(this->location(), "expected operand");
2355   return Expression::make_error(this->location());
2356 }
2357
2358 // Handle a reference to a variable in an enclosing function.  We add
2359 // it to a list of such variables.  We return a reference to a field
2360 // in a struct which will be passed on the static chain when calling
2361 // the current function.
2362
2363 Expression*
2364 Parse::enclosing_var_reference(Named_object* in_function, Named_object* var,
2365                                source_location location)
2366 {
2367   gcc_assert(var->is_variable() || var->is_result_variable());
2368
2369   Named_object* this_function = this->gogo_->current_function();
2370   Named_object* closure = this_function->func_value()->closure_var();
2371
2372   Enclosing_var ev(var, in_function, this->enclosing_vars_.size());
2373   std::pair<Enclosing_vars::iterator, bool> ins =
2374     this->enclosing_vars_.insert(ev);
2375   if (ins.second)
2376     {
2377       // This is a variable we have not seen before.  Add a new field
2378       // to the closure type.
2379       this_function->func_value()->add_closure_field(var, location);
2380     }
2381
2382   Expression* closure_ref = Expression::make_var_reference(closure,
2383                                                            location);
2384   closure_ref = Expression::make_unary(OPERATOR_MULT, closure_ref, location);
2385
2386   // The closure structure holds pointers to the variables, so we need
2387   // to introduce an indirection.
2388   Expression* e = Expression::make_field_reference(closure_ref,
2389                                                    ins.first->index(),
2390                                                    location);
2391   e = Expression::make_unary(OPERATOR_MULT, e, location);
2392   return e;
2393 }
2394
2395 // CompositeLit  = LiteralType LiteralValue .
2396 // LiteralType   = StructType | ArrayType | "[" "..." "]" ElementType |
2397 //                 SliceType | MapType | TypeName .
2398 // LiteralValue  = "{" [ ElementList [ "," ] ] "}" .
2399 // ElementList   = Element { "," Element } .
2400 // Element       = [ Key ":" ] Value .
2401 // Key           = Expression .
2402 // Value         = Expression | LiteralValue .
2403
2404 // We have already seen the type if there is one, and we are now
2405 // looking at the LiteralValue.  The case "[" "..."  "]" ElementType
2406 // will be seen here as an array type whose length is "nil".  The
2407 // DEPTH parameter is non-zero if this is an embedded composite
2408 // literal and the type was omitted.  It gives the number of steps up
2409 // to the type which was provided.  E.g., in [][]int{{1}} it will be
2410 // 1.  In [][][]int{{{1}}} it will be 2.
2411
2412 Expression*
2413 Parse::composite_lit(Type* type, int depth, source_location location)
2414 {
2415   gcc_assert(this->peek_token()->is_op(OPERATOR_LCURLY));
2416   this->advance_token();
2417
2418   if (this->peek_token()->is_op(OPERATOR_RCURLY))
2419     {
2420       this->advance_token();
2421       return Expression::make_composite_literal(type, depth, false, NULL,
2422                                                 location);
2423     }
2424
2425   bool has_keys = false;
2426   Expression_list* vals = new Expression_list;
2427   while (true)
2428     {
2429       Expression* val;
2430       bool is_type_omitted = false;
2431
2432       const Token* token = this->peek_token();
2433
2434       if (!token->is_op(OPERATOR_LCURLY))
2435         val = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
2436       else
2437         {
2438           // This must be a composite literal inside another composite
2439           // literal, with the type omitted for the inner one.
2440           val = this->composite_lit(type, depth + 1, token->location());
2441           is_type_omitted = true;
2442         }
2443
2444       token = this->peek_token();
2445       if (!token->is_op(OPERATOR_COLON))
2446         {
2447           if (has_keys)
2448             vals->push_back(NULL);
2449         }
2450       else
2451         {
2452           if (is_type_omitted && !val->is_error_expression())
2453             {
2454               error_at(this->location(), "unexpected %<:%>");
2455               val = Expression::make_error(this->location());
2456             }
2457
2458           this->advance_token();
2459
2460           if (!has_keys && !vals->empty())
2461             {
2462               Expression_list* newvals = new Expression_list;
2463               for (Expression_list::const_iterator p = vals->begin();
2464                    p != vals->end();
2465                    ++p)
2466                 {
2467                   newvals->push_back(NULL);
2468                   newvals->push_back(*p);
2469                 }
2470               delete vals;
2471               vals = newvals;
2472             }
2473           has_keys = true;
2474
2475           if (val->unknown_expression() != NULL)
2476             val->unknown_expression()->set_is_composite_literal_key();
2477
2478           vals->push_back(val);
2479
2480           if (!token->is_op(OPERATOR_LCURLY))
2481             val = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
2482           else
2483             {
2484               // This must be a composite literal inside another
2485               // composite literal, with the type omitted for the
2486               // inner one.
2487               val = this->composite_lit(type, depth + 1, token->location());
2488             }
2489
2490           token = this->peek_token();
2491         }
2492
2493       vals->push_back(val);
2494
2495       if (token->is_op(OPERATOR_COMMA))
2496         {
2497           if (this->advance_token()->is_op(OPERATOR_RCURLY))
2498             {
2499               this->advance_token();
2500               break;
2501             }
2502         }
2503       else if (token->is_op(OPERATOR_RCURLY))
2504         {
2505           this->advance_token();
2506           break;
2507         }
2508       else
2509         {
2510           error_at(this->location(), "expected %<,%> or %<}%>");
2511
2512           int depth = 0;
2513           while (!token->is_eof()
2514                  && (depth > 0 || !token->is_op(OPERATOR_RCURLY)))
2515             {
2516               if (token->is_op(OPERATOR_LCURLY))
2517                 ++depth;
2518               else if (token->is_op(OPERATOR_RCURLY))
2519                 --depth;
2520               token = this->advance_token();
2521             }
2522           if (token->is_op(OPERATOR_RCURLY))
2523             this->advance_token();
2524
2525           return Expression::make_error(location);
2526         }
2527     }
2528
2529   return Expression::make_composite_literal(type, depth, has_keys, vals,
2530                                             location);
2531 }
2532
2533 // FunctionLit = "func" Signature Block .
2534
2535 Expression*
2536 Parse::function_lit()
2537 {
2538   source_location location = this->location();
2539   gcc_assert(this->peek_token()->is_keyword(KEYWORD_FUNC));
2540   this->advance_token();
2541
2542   Enclosing_vars hold_enclosing_vars;
2543   hold_enclosing_vars.swap(this->enclosing_vars_);
2544
2545   Function_type* type = this->signature(NULL, location);
2546   if (type == NULL)
2547     type = Type::make_function_type(NULL, NULL, NULL, location);
2548
2549   // For a function literal, the next token must be a '{'.  If we
2550   // don't see that, then we may have a type expression.
2551   if (!this->peek_token()->is_op(OPERATOR_LCURLY))
2552     return Expression::make_type(type, location);
2553
2554   Named_object* no = this->gogo_->start_function("", type, true, location);
2555
2556   source_location end_loc = this->block();
2557
2558   this->gogo_->finish_function(end_loc);
2559
2560   hold_enclosing_vars.swap(this->enclosing_vars_);
2561
2562   Expression* closure = this->create_closure(no, &hold_enclosing_vars,
2563                                              location);
2564
2565   return Expression::make_func_reference(no, closure, location);
2566 }
2567
2568 // Create a closure for the nested function FUNCTION.  This is based
2569 // on ENCLOSING_VARS, which is a list of all variables defined in
2570 // enclosing functions and referenced from FUNCTION.  A closure is the
2571 // address of a struct which contains the addresses of all the
2572 // referenced variables.  This returns NULL if no closure is required.
2573
2574 Expression*
2575 Parse::create_closure(Named_object* function, Enclosing_vars* enclosing_vars,
2576                       source_location location)
2577 {
2578   if (enclosing_vars->empty())
2579     return NULL;
2580
2581   // Get the variables in order by their field index.
2582
2583   size_t enclosing_var_count = enclosing_vars->size();
2584   std::vector<Enclosing_var> ev(enclosing_var_count);
2585   for (Enclosing_vars::const_iterator p = enclosing_vars->begin();
2586        p != enclosing_vars->end();
2587        ++p)
2588     ev[p->index()] = *p;
2589
2590   // Build an initializer for a composite literal of the closure's
2591   // type.
2592
2593   Named_object* enclosing_function = this->gogo_->current_function();
2594   Expression_list* initializer = new Expression_list;
2595   for (size_t i = 0; i < enclosing_var_count; ++i)
2596     {
2597       gcc_assert(ev[i].index() == i);
2598       Named_object* var = ev[i].var();
2599       Expression* ref;
2600       if (ev[i].in_function() == enclosing_function)
2601         ref = Expression::make_var_reference(var, location);
2602       else
2603         ref = this->enclosing_var_reference(ev[i].in_function(), var,
2604                                             location);
2605       Expression* refaddr = Expression::make_unary(OPERATOR_AND, ref,
2606                                                    location);
2607       initializer->push_back(refaddr);
2608     }
2609
2610   Named_object* closure_var = function->func_value()->closure_var();
2611   Struct_type* st = closure_var->var_value()->type()->deref()->struct_type();
2612   Expression* cv = Expression::make_struct_composite_literal(st, initializer,
2613                                                              location);
2614   return Expression::make_heap_composite(cv, location);
2615 }
2616
2617 // PrimaryExpr = Operand { Selector | Index | Slice | TypeGuard | Call } .
2618
2619 // If MAY_BE_SINK is true, this expression may be "_".
2620
2621 // If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite
2622 // literal.
2623
2624 // If IS_TYPE_SWITCH is not NULL, this will recognize a type switch
2625 // guard (var := expr.("type") using the literal keyword "type").
2626
2627 Expression*
2628 Parse::primary_expr(bool may_be_sink, bool may_be_composite_lit,
2629                     bool* is_type_switch)
2630 {
2631   source_location start_loc = this->location();
2632   bool is_parenthesized = this->peek_token()->is_op(OPERATOR_LPAREN);
2633
2634   Expression* ret = this->operand(may_be_sink);
2635
2636   // An unknown name followed by a curly brace must be a composite
2637   // literal, and the unknown name must be a type.
2638   if (may_be_composite_lit
2639       && !is_parenthesized
2640       && ret->unknown_expression() != NULL
2641       && this->peek_token()->is_op(OPERATOR_LCURLY))
2642     {
2643       Named_object* no = ret->unknown_expression()->named_object();
2644       Type* type = Type::make_forward_declaration(no);
2645       ret = Expression::make_type(type, ret->location());
2646     }
2647
2648   // We handle composite literals and type casts here, as it is the
2649   // easiest way to handle types which are in parentheses, as in
2650   // "((uint))(1)".
2651   if (ret->is_type_expression())
2652     {
2653       if (this->peek_token()->is_op(OPERATOR_LCURLY))
2654         {
2655           if (is_parenthesized)
2656             error_at(start_loc,
2657                      "cannot parenthesize type in composite literal");
2658           ret = this->composite_lit(ret->type(), 0, ret->location());
2659         }
2660       else if (this->peek_token()->is_op(OPERATOR_LPAREN))
2661         {
2662           source_location loc = this->location();
2663           this->advance_token();
2664           Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true,
2665                                               NULL);
2666           if (!this->peek_token()->is_op(OPERATOR_RPAREN))
2667             error_at(this->location(), "expected %<)%>");
2668           else
2669             this->advance_token();
2670           if (expr->is_error_expression())
2671             return expr;
2672           ret = Expression::make_cast(ret->type(), expr, loc);
2673         }
2674     }
2675
2676   while (true)
2677     {
2678       const Token* token = this->peek_token();
2679       if (token->is_op(OPERATOR_LPAREN))
2680         ret = this->call(this->verify_not_sink(ret));
2681       else if (token->is_op(OPERATOR_DOT))
2682         {
2683           ret = this->selector(this->verify_not_sink(ret), is_type_switch);
2684           if (is_type_switch != NULL && *is_type_switch)
2685             break;
2686         }
2687       else if (token->is_op(OPERATOR_LSQUARE))
2688         ret = this->index(this->verify_not_sink(ret));
2689       else
2690         break;
2691     }
2692
2693   return ret;
2694 }
2695
2696 // Selector = "." identifier .
2697 // TypeGuard = "." "(" QualifiedIdent ")" .
2698
2699 // Note that Operand can expand to QualifiedIdent, which contains a
2700 // ".".  That is handled directly in operand when it sees a package
2701 // name.
2702
2703 // If IS_TYPE_SWITCH is not NULL, this will recognize a type switch
2704 // guard (var := expr.("type") using the literal keyword "type").
2705
2706 Expression*
2707 Parse::selector(Expression* left, bool* is_type_switch)
2708 {
2709   gcc_assert(this->peek_token()->is_op(OPERATOR_DOT));
2710   source_location location = this->location();
2711
2712   const Token* token = this->advance_token();
2713   if (token->is_identifier())
2714     {
2715       // This could be a field in a struct, or a method in an
2716       // interface, or a method associated with a type.  We can't know
2717       // which until we have seen all the types.
2718       std::string name =
2719         this->gogo_->pack_hidden_name(token->identifier(),
2720                                       token->is_identifier_exported());
2721       if (token->identifier() == "_")
2722         {
2723           error_at(this->location(), "invalid use of %<_%>");
2724           name = this->gogo_->pack_hidden_name("blank", false);
2725         }
2726       this->advance_token();
2727       return Expression::make_selector(left, name, location);
2728     }
2729   else if (token->is_op(OPERATOR_LPAREN))
2730     {
2731       this->advance_token();
2732       Type* type = NULL;
2733       if (!this->peek_token()->is_keyword(KEYWORD_TYPE))
2734         type = this->type();
2735       else
2736         {
2737           if (is_type_switch != NULL)
2738             *is_type_switch = true;
2739           else
2740             {
2741               error_at(this->location(),
2742                        "use of %<.(type)%> outside type switch");
2743               type = Type::make_error_type();
2744             }
2745           this->advance_token();
2746         }
2747       if (!this->peek_token()->is_op(OPERATOR_RPAREN))
2748         error_at(this->location(), "missing %<)%>");
2749       else
2750         this->advance_token();
2751       if (is_type_switch != NULL && *is_type_switch)
2752         return left;
2753       return Expression::make_type_guard(left, type, location);
2754     }
2755   else
2756     {
2757       error_at(this->location(), "expected identifier or %<(%>");
2758       return left;
2759     }
2760 }
2761
2762 // Index          = "[" Expression "]" .
2763 // Slice          = "[" Expression ":" [ Expression ] "]" .
2764
2765 Expression*
2766 Parse::index(Expression* expr)
2767 {
2768   source_location location = this->location();
2769   gcc_assert(this->peek_token()->is_op(OPERATOR_LSQUARE));
2770   this->advance_token();
2771
2772   Expression* start;
2773   if (!this->peek_token()->is_op(OPERATOR_COLON))
2774     start = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
2775   else
2776     {
2777       mpz_t zero;
2778       mpz_init_set_ui(zero, 0);
2779       start = Expression::make_integer(&zero, NULL, location);
2780       mpz_clear(zero);
2781     }
2782
2783   Expression* end = NULL;
2784   if (this->peek_token()->is_op(OPERATOR_COLON))
2785     {
2786       // We use nil to indicate a missing high expression.
2787       if (this->advance_token()->is_op(OPERATOR_RSQUARE))
2788         end = Expression::make_nil(this->location());
2789       else
2790         end = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
2791     }
2792   if (!this->peek_token()->is_op(OPERATOR_RSQUARE))
2793     error_at(this->location(), "missing %<]%>");
2794   else
2795     this->advance_token();
2796   return Expression::make_index(expr, start, end, location);
2797 }
2798
2799 // Call           = "(" [ ArgumentList [ "," ] ] ")" .
2800 // ArgumentList   = ExpressionList [ "..." ] .
2801
2802 Expression*
2803 Parse::call(Expression* func)
2804 {
2805   gcc_assert(this->peek_token()->is_op(OPERATOR_LPAREN));
2806   Expression_list* args = NULL;
2807   bool is_varargs = false;
2808   const Token* token = this->advance_token();
2809   if (!token->is_op(OPERATOR_RPAREN))
2810     {
2811       args = this->expression_list(NULL, false);
2812       token = this->peek_token();
2813       if (token->is_op(OPERATOR_ELLIPSIS))
2814         {
2815           is_varargs = true;
2816           token = this->advance_token();
2817         }
2818     }
2819   if (token->is_op(OPERATOR_COMMA))
2820     token = this->advance_token();
2821   if (!token->is_op(OPERATOR_RPAREN))
2822     error_at(this->location(), "missing %<)%>");
2823   else
2824     this->advance_token();
2825   if (func->is_error_expression())
2826     return func;
2827   return Expression::make_call(func, args, is_varargs, func->location());
2828 }
2829
2830 // Return an expression for a single unqualified identifier.
2831
2832 Expression*
2833 Parse::id_to_expression(const std::string& name, source_location location)
2834 {
2835   Named_object* in_function;
2836   Named_object* named_object = this->gogo_->lookup(name, &in_function);
2837   if (named_object == NULL)
2838     named_object = this->gogo_->add_unknown_name(name, location);
2839
2840   if (in_function != NULL
2841       && in_function != this->gogo_->current_function()
2842       && (named_object->is_variable() || named_object->is_result_variable()))
2843     return this->enclosing_var_reference(in_function, named_object,
2844                                          location);
2845
2846   switch (named_object->classification())
2847     {
2848     case Named_object::NAMED_OBJECT_CONST:
2849       return Expression::make_const_reference(named_object, location);
2850     case Named_object::NAMED_OBJECT_VAR:
2851     case Named_object::NAMED_OBJECT_RESULT_VAR:
2852       return Expression::make_var_reference(named_object, location);
2853     case Named_object::NAMED_OBJECT_SINK:
2854       return Expression::make_sink(location);
2855     case Named_object::NAMED_OBJECT_FUNC:
2856     case Named_object::NAMED_OBJECT_FUNC_DECLARATION:
2857       return Expression::make_func_reference(named_object, NULL, location);
2858     case Named_object::NAMED_OBJECT_UNKNOWN:
2859       return Expression::make_unknown_reference(named_object, location);
2860     default:
2861       error_at(this->location(), "unexpected type of identifier");
2862       return Expression::make_error(location);
2863     }
2864 }
2865
2866 // Expression = UnaryExpr { binary_op Expression } .
2867
2868 // PRECEDENCE is the precedence of the current operator.
2869
2870 // If MAY_BE_SINK is true, this expression may be "_".
2871
2872 // If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite
2873 // literal.
2874
2875 // If IS_TYPE_SWITCH is not NULL, this will recognize a type switch
2876 // guard (var := expr.("type") using the literal keyword "type").
2877
2878 Expression*
2879 Parse::expression(Precedence precedence, bool may_be_sink,
2880                   bool may_be_composite_lit, bool* is_type_switch)
2881 {
2882   Expression* left = this->unary_expr(may_be_sink, may_be_composite_lit,
2883                                       is_type_switch);
2884
2885   while (true)
2886     {
2887       if (is_type_switch != NULL && *is_type_switch)
2888         return left;
2889
2890       const Token* token = this->peek_token();
2891       if (token->classification() != Token::TOKEN_OPERATOR)
2892         {
2893           // Not a binary_op.
2894           return left;
2895         }
2896
2897       Precedence right_precedence;
2898       switch (token->op())
2899         {
2900         case OPERATOR_OROR:
2901           right_precedence = PRECEDENCE_OROR;
2902           break;
2903         case OPERATOR_ANDAND:
2904           right_precedence = PRECEDENCE_ANDAND;
2905           break;
2906         case OPERATOR_CHANOP:
2907           right_precedence = PRECEDENCE_CHANOP;
2908           break;
2909         case OPERATOR_EQEQ:
2910         case OPERATOR_NOTEQ:
2911         case OPERATOR_LT:
2912         case OPERATOR_LE:
2913         case OPERATOR_GT:
2914         case OPERATOR_GE:
2915           right_precedence = PRECEDENCE_RELOP;
2916           break;
2917         case OPERATOR_PLUS:
2918         case OPERATOR_MINUS:
2919         case OPERATOR_OR:
2920         case OPERATOR_XOR:
2921           right_precedence = PRECEDENCE_ADDOP;
2922           break;
2923         case OPERATOR_MULT:
2924         case OPERATOR_DIV:
2925         case OPERATOR_MOD:
2926         case OPERATOR_LSHIFT:
2927         case OPERATOR_RSHIFT:
2928         case OPERATOR_AND:
2929         case OPERATOR_BITCLEAR:
2930           right_precedence = PRECEDENCE_MULOP;
2931           break;
2932         default:
2933           right_precedence = PRECEDENCE_INVALID;
2934           break;
2935         }
2936
2937       if (right_precedence == PRECEDENCE_INVALID)
2938         {
2939           // Not a binary_op.
2940           return left;
2941         }
2942
2943       Operator op = token->op();
2944       source_location binop_location = token->location();
2945
2946       if (precedence >= right_precedence)
2947         {
2948           // We've already seen A * B, and we see + C.  We want to
2949           // return so that A * B becomes a group.
2950           return left;
2951         }
2952
2953       this->advance_token();
2954
2955       left = this->verify_not_sink(left);
2956       Expression* right = this->expression(right_precedence, false,
2957                                            may_be_composite_lit,
2958                                            NULL);
2959       if (op == OPERATOR_CHANOP)
2960         left = Expression::make_send(left, right, binop_location);
2961       else
2962         left = Expression::make_binary(op, left, right, binop_location);
2963     }
2964 }
2965
2966 bool
2967 Parse::expression_may_start_here()
2968 {
2969   const Token* token = this->peek_token();
2970   switch (token->classification())
2971     {
2972     case Token::TOKEN_INVALID:
2973     case Token::TOKEN_EOF:
2974       return false;
2975     case Token::TOKEN_KEYWORD:
2976       switch (token->keyword())
2977         {
2978         case KEYWORD_CHAN:
2979         case KEYWORD_FUNC:
2980         case KEYWORD_MAP:
2981         case KEYWORD_STRUCT:
2982         case KEYWORD_INTERFACE:
2983           return true;
2984         default:
2985           return false;
2986         }
2987     case Token::TOKEN_IDENTIFIER:
2988       return true;
2989     case Token::TOKEN_STRING:
2990       return true;
2991     case Token::TOKEN_OPERATOR:
2992       switch (token->op())
2993         {
2994         case OPERATOR_PLUS:
2995         case OPERATOR_MINUS:
2996         case OPERATOR_NOT:
2997         case OPERATOR_XOR:
2998         case OPERATOR_MULT:
2999         case OPERATOR_CHANOP:
3000         case OPERATOR_AND:
3001         case OPERATOR_LPAREN:
3002         case OPERATOR_LSQUARE:
3003           return true;
3004         default:
3005           return false;
3006         }
3007     case Token::TOKEN_INTEGER:
3008     case Token::TOKEN_FLOAT:
3009     case Token::TOKEN_IMAGINARY:
3010       return true;
3011     default:
3012       gcc_unreachable();
3013     }
3014 }
3015
3016 // UnaryExpr = unary_op UnaryExpr | PrimaryExpr .
3017
3018 // If MAY_BE_SINK is true, this expression may be "_".
3019
3020 // If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite
3021 // literal.
3022
3023 // If IS_TYPE_SWITCH is not NULL, this will recognize a type switch
3024 // guard (var := expr.("type") using the literal keyword "type").
3025
3026 Expression*
3027 Parse::unary_expr(bool may_be_sink, bool may_be_composite_lit,
3028                   bool* is_type_switch)
3029 {
3030   const Token* token = this->peek_token();
3031   if (token->is_op(OPERATOR_PLUS)
3032       || token->is_op(OPERATOR_MINUS)
3033       || token->is_op(OPERATOR_NOT)
3034       || token->is_op(OPERATOR_XOR)
3035       || token->is_op(OPERATOR_CHANOP)
3036       || token->is_op(OPERATOR_MULT)
3037       || token->is_op(OPERATOR_AND))
3038     {
3039       source_location location = token->location();
3040       Operator op = token->op();
3041       this->advance_token();
3042
3043       if (op == OPERATOR_CHANOP
3044           && this->peek_token()->is_keyword(KEYWORD_CHAN))
3045         {
3046           // This is "<- chan" which must be the start of a type.
3047           this->unget_token(Token::make_operator_token(op, location));
3048           return Expression::make_type(this->type(), location);
3049         }
3050
3051       Expression* expr = this->unary_expr(false, may_be_composite_lit, NULL);
3052       if (expr->is_error_expression())
3053         ;
3054       else if (op == OPERATOR_MULT && expr->is_type_expression())
3055         expr = Expression::make_type(Type::make_pointer_type(expr->type()),
3056                                      location);
3057       else if (op == OPERATOR_AND && expr->is_composite_literal())
3058         expr = Expression::make_heap_composite(expr, location);
3059       else if (op != OPERATOR_CHANOP)
3060         expr = Expression::make_unary(op, expr, location);
3061       else
3062         expr = Expression::make_receive(expr, location);
3063       return expr;
3064     }
3065   else
3066     return this->primary_expr(may_be_sink, may_be_composite_lit,
3067                               is_type_switch);
3068 }
3069
3070 // Statement =
3071 //      Declaration | LabeledStmt | SimpleStmt |
3072 //      GoStmt | ReturnStmt | BreakStmt | ContinueStmt | GotoStmt |
3073 //      FallthroughStmt | Block | IfStmt | SwitchStmt | SelectStmt | ForStmt |
3074 //      DeferStmt .
3075
3076 // LABEL is the label of this statement if it has one.
3077
3078 void
3079 Parse::statement(const Label* label)
3080 {
3081   const Token* token = this->peek_token();
3082   switch (token->classification())
3083     {
3084     case Token::TOKEN_KEYWORD:
3085       {
3086         switch (token->keyword())
3087           {
3088           case KEYWORD_CONST:
3089           case KEYWORD_TYPE:
3090           case KEYWORD_VAR:
3091             this->declaration();
3092             break;
3093           case KEYWORD_FUNC:
3094           case KEYWORD_MAP:
3095           case KEYWORD_STRUCT:
3096           case KEYWORD_INTERFACE:
3097             this->simple_stat(true, false, NULL, NULL);
3098             break;
3099           case KEYWORD_GO:
3100           case KEYWORD_DEFER:
3101             this->go_or_defer_stat();
3102             break;
3103           case KEYWORD_RETURN:
3104             this->return_stat();
3105             break;
3106           case KEYWORD_BREAK:
3107             this->break_stat();
3108             break;
3109           case KEYWORD_CONTINUE:
3110             this->continue_stat();
3111             break;
3112           case KEYWORD_GOTO:
3113             this->goto_stat();
3114             break;
3115           case KEYWORD_IF:
3116             this->if_stat();
3117             break;
3118           case KEYWORD_SWITCH:
3119             this->switch_stat(label);
3120             break;
3121           case KEYWORD_SELECT:
3122             this->select_stat(label);
3123             break;
3124           case KEYWORD_FOR:
3125             this->for_stat(label);
3126             break;
3127           default:
3128             error_at(this->location(), "expected statement");
3129             this->advance_token();
3130             break;
3131           }
3132       }
3133       break;
3134
3135     case Token::TOKEN_IDENTIFIER:
3136       {
3137         std::string identifier = token->identifier();
3138         bool is_exported = token->is_identifier_exported();
3139         source_location location = token->location();
3140         if (this->advance_token()->is_op(OPERATOR_COLON))
3141           {
3142             this->advance_token();
3143             this->labeled_stmt(identifier, location);
3144           }
3145         else
3146           {
3147             this->unget_token(Token::make_identifier_token(identifier,
3148                                                            is_exported,
3149                                                            location));
3150             this->simple_stat(true, false, NULL, NULL);
3151           }
3152       }
3153       break;
3154
3155     case Token::TOKEN_OPERATOR:
3156       if (token->is_op(OPERATOR_LCURLY))
3157         {
3158           source_location location = token->location();
3159           this->gogo_->start_block(location);
3160           source_location end_loc = this->block();
3161           this->gogo_->add_block(this->gogo_->finish_block(end_loc),
3162                                  location);
3163         }
3164       else if (!token->is_op(OPERATOR_SEMICOLON))
3165         this->simple_stat(true, false, NULL, NULL);
3166       break;
3167
3168     case Token::TOKEN_STRING:
3169     case Token::TOKEN_INTEGER:
3170     case Token::TOKEN_FLOAT:
3171     case Token::TOKEN_IMAGINARY:
3172       this->simple_stat(true, false, NULL, NULL);
3173       break;
3174
3175     default:
3176       error_at(this->location(), "expected statement");
3177       this->advance_token();
3178       break;
3179     }
3180 }
3181
3182 bool
3183 Parse::statement_may_start_here()
3184 {
3185   const Token* token = this->peek_token();
3186   switch (token->classification())
3187     {
3188     case Token::TOKEN_KEYWORD:
3189       {
3190         switch (token->keyword())
3191           {
3192           case KEYWORD_CONST:
3193           case KEYWORD_TYPE:
3194           case KEYWORD_VAR:
3195           case KEYWORD_FUNC:
3196           case KEYWORD_MAP:
3197           case KEYWORD_STRUCT:
3198           case KEYWORD_INTERFACE:
3199           case KEYWORD_GO:
3200           case KEYWORD_DEFER:
3201           case KEYWORD_RETURN:
3202           case KEYWORD_BREAK:
3203           case KEYWORD_CONTINUE:
3204           case KEYWORD_GOTO:
3205           case KEYWORD_IF:
3206           case KEYWORD_SWITCH:
3207           case KEYWORD_SELECT:
3208           case KEYWORD_FOR:
3209             return true;
3210
3211           default:
3212             return false;
3213           }
3214       }
3215       break;
3216
3217     case Token::TOKEN_IDENTIFIER:
3218       return true;
3219
3220     case Token::TOKEN_OPERATOR:
3221       if (token->is_op(OPERATOR_LCURLY)
3222           || token->is_op(OPERATOR_SEMICOLON))
3223         return true;
3224       else
3225         return this->expression_may_start_here();
3226
3227     case Token::TOKEN_STRING:
3228     case Token::TOKEN_INTEGER:
3229     case Token::TOKEN_FLOAT:
3230     case Token::TOKEN_IMAGINARY:
3231       return true;
3232
3233     default:
3234       return false;
3235     }
3236 }
3237
3238 // LabeledStmt = Label ":" Statement .
3239 // Label       = identifier .
3240
3241 void
3242 Parse::labeled_stmt(const std::string& label_name, source_location location)
3243 {
3244   Label* label = this->gogo_->add_label_definition(label_name, location);
3245
3246   if (this->peek_token()->is_op(OPERATOR_RCURLY))
3247     {
3248       // This is a label at the end of a block.  A program is
3249       // permitted to omit a semicolon here.
3250       return;
3251     }
3252
3253   if (!this->statement_may_start_here())
3254     {
3255       error_at(location, "missing statement after label");
3256       this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON,
3257                                                    location));
3258       return;
3259     }
3260
3261   this->statement(label);
3262 }
3263
3264 // SimpleStat =
3265 //   ExpressionStat | IncDecStat | Assignment | SimpleVarDecl .
3266
3267 // In order to make this work for if and switch statements, if
3268 // RETURN_EXP is true, and we see an ExpressionStat, we return the
3269 // expression rather than adding an expression statement to the
3270 // current block.  If we see something other than an ExpressionStat,
3271 // we add the statement and return NULL.
3272
3273 // If P_RANGE_CLAUSE is not NULL, then this will recognize a
3274 // RangeClause.
3275
3276 // If P_TYPE_SWITCH is not NULL, this will recognize a type switch
3277 // guard (var := expr.("type") using the literal keyword "type").
3278
3279 Expression*
3280 Parse::simple_stat(bool may_be_composite_lit, bool return_exp,
3281                    Range_clause* p_range_clause, Type_switch* p_type_switch)
3282 {
3283   const Token* token = this->peek_token();
3284
3285   // An identifier follow by := is a SimpleVarDecl.
3286   if (token->is_identifier())
3287     {
3288       std::string identifier = token->identifier();
3289       bool is_exported = token->is_identifier_exported();
3290       source_location location = token->location();
3291
3292       token = this->advance_token();
3293       if (token->is_op(OPERATOR_COLONEQ)
3294           || token->is_op(OPERATOR_COMMA))
3295         {
3296           identifier = this->gogo_->pack_hidden_name(identifier, is_exported);
3297           this->simple_var_decl_or_assignment(identifier, location,
3298                                               p_range_clause,
3299                                               (token->is_op(OPERATOR_COLONEQ)
3300                                                ? p_type_switch
3301                                                : NULL));
3302           return NULL;
3303         }
3304
3305       this->unget_token(Token::make_identifier_token(identifier, is_exported,
3306                                                      location));
3307     }
3308
3309   Expression* exp = this->expression(PRECEDENCE_NORMAL, true,
3310                                      may_be_composite_lit,
3311                                      (p_type_switch == NULL
3312                                       ? NULL
3313                                       : &p_type_switch->found));
3314   if (p_type_switch != NULL && p_type_switch->found)
3315     {
3316       p_type_switch->name.clear();
3317       p_type_switch->location = exp->location();
3318       p_type_switch->expr = this->verify_not_sink(exp);
3319       return NULL;
3320     }
3321   token = this->peek_token();
3322   if (token->is_op(OPERATOR_PLUSPLUS) || token->is_op(OPERATOR_MINUSMINUS))
3323     this->inc_dec_stat(this->verify_not_sink(exp));
3324   else if (token->is_op(OPERATOR_COMMA)
3325            || token->is_op(OPERATOR_EQ))
3326     this->assignment(exp, p_range_clause);
3327   else if (token->is_op(OPERATOR_PLUSEQ)
3328            || token->is_op(OPERATOR_MINUSEQ)
3329            || token->is_op(OPERATOR_OREQ)
3330            || token->is_op(OPERATOR_XOREQ)
3331            || token->is_op(OPERATOR_MULTEQ)
3332            || token->is_op(OPERATOR_DIVEQ)
3333            || token->is_op(OPERATOR_MODEQ)
3334            || token->is_op(OPERATOR_LSHIFTEQ)
3335            || token->is_op(OPERATOR_RSHIFTEQ)
3336            || token->is_op(OPERATOR_ANDEQ)
3337            || token->is_op(OPERATOR_BITCLEAREQ))
3338     this->assignment(this->verify_not_sink(exp), p_range_clause);
3339   else if (return_exp)
3340     return this->verify_not_sink(exp);
3341   else
3342     this->expression_stat(this->verify_not_sink(exp));
3343
3344   return NULL;
3345 }
3346
3347 bool
3348 Parse::simple_stat_may_start_here()
3349 {
3350   return this->expression_may_start_here();
3351 }
3352
3353 // Parse { Statement ";" } which is used in a few places.  The list of
3354 // statements may end with a right curly brace, in which case the
3355 // semicolon may be omitted.
3356
3357 void
3358 Parse::statement_list()
3359 {
3360   while (this->statement_may_start_here())
3361     {
3362       this->statement(NULL);
3363       if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
3364         this->advance_token();
3365       else if (this->peek_token()->is_op(OPERATOR_RCURLY))
3366         break;
3367       else
3368         {
3369           if (!this->peek_token()->is_eof() || !saw_errors())
3370             error_at(this->location(), "expected %<;%> or %<}%> or newline");
3371           if (!this->skip_past_error(OPERATOR_RCURLY))
3372             return;
3373         }
3374     }
3375 }
3376
3377 bool
3378 Parse::statement_list_may_start_here()
3379 {
3380   return this->statement_may_start_here();
3381 }
3382
3383 // ExpressionStat = Expression .
3384
3385 void
3386 Parse::expression_stat(Expression* exp)
3387 {
3388   exp->discarding_value();
3389   this->gogo_->add_statement(Statement::make_statement(exp));
3390 }
3391
3392 // IncDecStat = Expression ( "++" | "--" ) .
3393
3394 void
3395 Parse::inc_dec_stat(Expression* exp)
3396 {
3397   const Token* token = this->peek_token();
3398
3399   // Lvalue maps require special handling.
3400   if (exp->index_expression() != NULL)
3401     exp->index_expression()->set_is_lvalue();
3402
3403   if (token->is_op(OPERATOR_PLUSPLUS))
3404     this->gogo_->add_statement(Statement::make_inc_statement(exp));
3405   else if (token->is_op(OPERATOR_MINUSMINUS))
3406     this->gogo_->add_statement(Statement::make_dec_statement(exp));
3407   else
3408     gcc_unreachable();
3409   this->advance_token();
3410 }
3411
3412 // Assignment = ExpressionList assign_op ExpressionList .
3413
3414 // EXP is an expression that we have already parsed.
3415
3416 // If RANGE_CLAUSE is not NULL, then this will recognize a
3417 // RangeClause.
3418
3419 void
3420 Parse::assignment(Expression* expr, Range_clause* p_range_clause)
3421 {
3422   Expression_list* vars;
3423   if (!this->peek_token()->is_op(OPERATOR_COMMA))
3424     {
3425       vars = new Expression_list();
3426       vars->push_back(expr);
3427     }
3428   else
3429     {
3430       this->advance_token();
3431       vars = this->expression_list(expr, true);
3432     }
3433
3434   this->tuple_assignment(vars, p_range_clause);
3435 }
3436
3437 // An assignment statement.  LHS is the list of expressions which
3438 // appear on the left hand side.
3439
3440 // If RANGE_CLAUSE is not NULL, then this will recognize a
3441 // RangeClause.
3442
3443 void
3444 Parse::tuple_assignment(Expression_list* lhs, Range_clause* p_range_clause)
3445 {
3446   const Token* token = this->peek_token();
3447   if (!token->is_op(OPERATOR_EQ)
3448       && !token->is_op(OPERATOR_PLUSEQ)
3449       && !token->is_op(OPERATOR_MINUSEQ)
3450       && !token->is_op(OPERATOR_OREQ)
3451       && !token->is_op(OPERATOR_XOREQ)
3452       && !token->is_op(OPERATOR_MULTEQ)
3453       && !token->is_op(OPERATOR_DIVEQ)
3454       && !token->is_op(OPERATOR_MODEQ)
3455       && !token->is_op(OPERATOR_LSHIFTEQ)
3456       && !token->is_op(OPERATOR_RSHIFTEQ)
3457       && !token->is_op(OPERATOR_ANDEQ)
3458       && !token->is_op(OPERATOR_BITCLEAREQ))
3459     {
3460       error_at(this->location(), "expected assignment operator");
3461       return;
3462     }
3463   Operator op = token->op();
3464   source_location location = token->location();
3465
3466   token = this->advance_token();
3467
3468   if (p_range_clause != NULL && token->is_keyword(KEYWORD_RANGE))
3469     {
3470       if (op != OPERATOR_EQ)
3471         error_at(this->location(), "range clause requires %<=%>");
3472       this->range_clause_expr(lhs, p_range_clause);
3473       return;
3474     }
3475
3476   Expression_list* vals = this->expression_list(NULL, false);
3477
3478   // We've parsed everything; check for errors.
3479   if (lhs == NULL || vals == NULL)
3480     return;
3481   for (Expression_list::const_iterator pe = lhs->begin();
3482        pe != lhs->end();
3483        ++pe)
3484     {
3485       if ((*pe)->is_error_expression())
3486         return;
3487       if (op != OPERATOR_EQ && (*pe)->is_sink_expression())
3488         error_at((*pe)->location(), "cannot use _ as value");
3489     }
3490   for (Expression_list::const_iterator pe = vals->begin();
3491        pe != vals->end();
3492        ++pe)
3493     {
3494       if ((*pe)->is_error_expression())
3495         return;
3496     }
3497
3498   // Map expressions act differently when they are lvalues.
3499   for (Expression_list::iterator plv = lhs->begin();
3500        plv != lhs->end();
3501        ++plv)
3502     if ((*plv)->index_expression() != NULL)
3503       (*plv)->index_expression()->set_is_lvalue();
3504
3505   Call_expression* call;
3506   Index_expression* map_index;
3507   Receive_expression* receive;
3508   Type_guard_expression* type_guard;
3509   if (lhs->size() == vals->size())
3510     {
3511       Statement* s;
3512       if (lhs->size() > 1)
3513         {
3514           if (op != OPERATOR_EQ)
3515             error_at(location, "multiple values only permitted with %<=%>");
3516           s = Statement::make_tuple_assignment(lhs, vals, location);
3517         }
3518       else
3519         {
3520           if (op == OPERATOR_EQ)
3521             s = Statement::make_assignment(lhs->front(), vals->front(),
3522                                            location);
3523           else
3524             s = Statement::make_assignment_operation(op, lhs->front(),
3525                                                      vals->front(), location);
3526           delete lhs;
3527           delete vals;
3528         }
3529       this->gogo_->add_statement(s);
3530     }
3531   else if (vals->size() == 1
3532            && (call = (*vals->begin())->call_expression()) != NULL)
3533     {
3534       if (op != OPERATOR_EQ)
3535         error_at(location, "multiple results only permitted with %<=%>");
3536       delete vals;
3537       vals = new Expression_list;
3538       for (unsigned int i = 0; i < lhs->size(); ++i)
3539         vals->push_back(Expression::make_call_result(call, i));
3540       Statement* s = Statement::make_tuple_assignment(lhs, vals, location);
3541       this->gogo_->add_statement(s);
3542     }
3543   else if (lhs->size() == 2
3544            && vals->size() == 1
3545            && (map_index = (*vals->begin())->index_expression()) != NULL)
3546     {
3547       if (op != OPERATOR_EQ)
3548         error_at(location, "two values from map requires %<=%>");
3549       Expression* val = lhs->front();
3550       Expression* present = lhs->back();
3551       Statement* s = Statement::make_tuple_map_assignment(val, present,
3552                                                           map_index, location);
3553       this->gogo_->add_statement(s);
3554     }
3555   else if (lhs->size() == 1
3556            && vals->size() == 2
3557            && (map_index = lhs->front()->index_expression()) != NULL)
3558     {
3559       if (op != OPERATOR_EQ)
3560         error_at(location, "assigning tuple to map index requires %<=%>");
3561       Expression* val = vals->front();
3562       Expression* should_set = vals->back();
3563       Statement* s = Statement::make_map_assignment(map_index, val, should_set,
3564                                                     location);
3565       this->gogo_->add_statement(s);
3566     }
3567   else if (lhs->size() == 2
3568            && vals->size() == 1
3569            && (receive = (*vals->begin())->receive_expression()) != NULL)
3570     {
3571       if (op != OPERATOR_EQ)
3572         error_at(location, "two values from receive requires %<=%>");
3573       Expression* val = lhs->front();
3574       Expression* success = lhs->back();
3575       Expression* channel = receive->channel();
3576       Statement* s = Statement::make_tuple_receive_assignment(val, success,
3577                                                               channel,
3578                                                               location);
3579       this->gogo_->add_statement(s);
3580     }
3581   else if (lhs->size() == 2
3582            && vals->size() == 1
3583            && (type_guard = (*vals->begin())->type_guard_expression()) != NULL)
3584     {
3585       if (op != OPERATOR_EQ)
3586         error_at(location, "two values from type guard requires %<=%>");
3587       Expression* val = lhs->front();
3588       Expression* ok = lhs->back();
3589       Expression* expr = type_guard->expr();
3590       Type* type = type_guard->type();
3591       Statement* s = Statement::make_tuple_type_guard_assignment(val, ok,
3592                                                                  expr, type,
3593                                                                  location);
3594       this->gogo_->add_statement(s);
3595     }
3596   else
3597     {
3598       error_at(location, "number of variables does not match number of values");
3599     }
3600 }
3601
3602 // GoStat = "go" Expression .
3603 // DeferStat = "defer" Expression .
3604
3605 void
3606 Parse::go_or_defer_stat()
3607 {
3608   gcc_assert(this->peek_token()->is_keyword(KEYWORD_GO)
3609              || this->peek_token()->is_keyword(KEYWORD_DEFER));
3610   bool is_go = this->peek_token()->is_keyword(KEYWORD_GO);
3611   source_location stat_location = this->location();
3612   this->advance_token();
3613   source_location expr_location = this->location();
3614   Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
3615   Call_expression* call_expr = expr->call_expression();
3616   if (call_expr == NULL)
3617     {
3618       error_at(expr_location, "expected call expression");
3619       return;
3620     }
3621
3622   // Make it easier to simplify go/defer statements by putting every
3623   // statement in its own block.
3624   this->gogo_->start_block(stat_location);
3625   Statement* stat;
3626   if (is_go)
3627     stat = Statement::make_go_statement(call_expr, stat_location);
3628   else
3629     stat = Statement::make_defer_statement(call_expr, stat_location);
3630   this->gogo_->add_statement(stat);
3631   this->gogo_->add_block(this->gogo_->finish_block(stat_location),
3632                          stat_location);
3633 }
3634
3635 // ReturnStat = "return" [ ExpressionList ] .
3636
3637 void
3638 Parse::return_stat()
3639 {
3640   gcc_assert(this->peek_token()->is_keyword(KEYWORD_RETURN));
3641   source_location location = this->location();
3642   this->advance_token();
3643   Expression_list* vals = NULL;
3644   if (this->expression_may_start_here())
3645     vals = this->expression_list(NULL, false);
3646   const Function* function = this->gogo_->current_function()->func_value();
3647   const Typed_identifier_list* results = function->type()->results();
3648   this->gogo_->add_statement(Statement::make_return_statement(results, vals,
3649                                                               location));
3650 }
3651
3652 // IfStat = "if" [ [ SimpleStat ] ";" ] [ Condition ]
3653 //             Block [ "else" Statement ] .
3654
3655 void
3656 Parse::if_stat()
3657 {
3658   gcc_assert(this->peek_token()->is_keyword(KEYWORD_IF));
3659   source_location location = this->location();
3660   this->advance_token();
3661
3662   this->gogo_->start_block(location);
3663
3664   Expression* cond = NULL;
3665   if (this->simple_stat_may_start_here())
3666     cond = this->simple_stat(false, true, NULL, NULL);
3667   if (cond != NULL && this->peek_token()->is_op(OPERATOR_SEMICOLON))
3668     {
3669       // The SimpleStat is an expression statement.
3670       this->expression_stat(cond);
3671       cond = NULL;
3672     }
3673   if (cond == NULL)
3674     {
3675       if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
3676         this->advance_token();
3677       if (!this->peek_token()->is_op(OPERATOR_LCURLY))
3678         cond = this->expression(PRECEDENCE_NORMAL, false, false, NULL);
3679     }
3680
3681   this->gogo_->start_block(this->location());
3682   source_location end_loc = this->block();
3683   Block* then_block = this->gogo_->finish_block(end_loc);
3684
3685   // Check for the easy error of a newline before "else".
3686   if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
3687     {
3688       source_location semi_loc = this->location();
3689       if (this->advance_token()->is_keyword(KEYWORD_ELSE))
3690         error_at(this->location(),
3691                  "unexpected semicolon or newline before %<else%>");
3692       else
3693         this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON,
3694                                                      semi_loc));
3695     }
3696
3697   Block* else_block = NULL;
3698   if (this->peek_token()->is_keyword(KEYWORD_ELSE))
3699     {
3700       this->advance_token();
3701       // We create a block to gather the statement.
3702       this->gogo_->start_block(this->location());
3703       this->statement(NULL);
3704       else_block = this->gogo_->finish_block(this->location());
3705     }
3706
3707   this->gogo_->add_statement(Statement::make_if_statement(cond, then_block,
3708                                                           else_block,
3709                                                           location));
3710
3711   this->gogo_->add_block(this->gogo_->finish_block(this->location()),
3712                          location);
3713 }
3714
3715 // SwitchStmt = ExprSwitchStmt | TypeSwitchStmt .
3716 // ExprSwitchStmt = "switch" [ [ SimpleStat ] ";" ] [ Expression ]
3717 //                      "{" { ExprCaseClause } "}" .
3718 // TypeSwitchStmt  = "switch" [ [ SimpleStat ] ";" ] TypeSwitchGuard
3719 //                      "{" { TypeCaseClause } "}" .
3720 // TypeSwitchGuard = [ identifier ":=" ] Expression "." "(" "type" ")" .
3721
3722 void
3723 Parse::switch_stat(const Label* label)
3724 {
3725   gcc_assert(this->peek_token()->is_keyword(KEYWORD_SWITCH));
3726   source_location location = this->location();
3727   this->advance_token();
3728
3729   this->gogo_->start_block(location);
3730
3731   Expression* switch_val = NULL;
3732   Type_switch type_switch;
3733   if (this->simple_stat_may_start_here())
3734     switch_val = this->simple_stat(false, true, NULL, &type_switch);
3735   if (switch_val != NULL && this->peek_token()->is_op(OPERATOR_SEMICOLON))
3736     {
3737       // The SimpleStat is an expression statement.
3738       this->expression_stat(switch_val);
3739       switch_val = NULL;
3740     }
3741   if (switch_val == NULL && !type_switch.found)
3742     {
3743       if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
3744         this->advance_token();
3745       if (!this->peek_token()->is_op(OPERATOR_LCURLY))
3746         {
3747           if (this->peek_token()->is_identifier())
3748             {
3749               const Token* token = this->peek_token();
3750               std::string identifier = token->identifier();
3751               bool is_exported = token->is_identifier_exported();
3752               source_location id_loc = token->location();
3753
3754               token = this->advance_token();
3755               bool is_coloneq = token->is_op(OPERATOR_COLONEQ);
3756               this->unget_token(Token::make_identifier_token(identifier,
3757                                                              is_exported,
3758                                                              id_loc));
3759               if (is_coloneq)
3760                 {
3761                   // This must be a TypeSwitchGuard.
3762                   switch_val = this->simple_stat(false, true, NULL,
3763                                                  &type_switch);
3764                   if (!type_switch.found
3765                       && !switch_val->is_error_expression())
3766                     {
3767                       error_at(id_loc, "expected type switch assignment");
3768                       switch_val = Expression::make_error(id_loc);
3769                     }
3770                 }
3771             }
3772           if (switch_val == NULL && !type_switch.found)
3773             {
3774               switch_val = this->expression(PRECEDENCE_NORMAL, false, false,
3775                                             &type_switch.found);
3776               if (type_switch.found)
3777                 {
3778                   type_switch.name.clear();
3779                   type_switch.expr = switch_val;
3780                   type_switch.location = switch_val->location();
3781                 }
3782             }
3783         }
3784     }
3785
3786   if (!this->peek_token()->is_op(OPERATOR_LCURLY))
3787     {
3788       source_location token_loc = this->location();
3789       if (this->peek_token()->is_op(OPERATOR_SEMICOLON)
3790           && this->advance_token()->is_op(OPERATOR_LCURLY))
3791         error_at(token_loc, "unexpected semicolon or newline before %<{%>");
3792       else
3793         {
3794           error_at(this->location(), "expected %<{%>");
3795           this->gogo_->add_block(this->gogo_->finish_block(this->location()),
3796                                  location);
3797           return;
3798         }
3799     }
3800   this->advance_token();
3801
3802   Statement* statement;
3803   if (type_switch.found)
3804     statement = this->type_switch_body(label, type_switch, location);
3805   else
3806     statement = this->expr_switch_body(label, switch_val, location);
3807
3808   if (statement != NULL)
3809     this->gogo_->add_statement(statement);
3810
3811   this->gogo_->add_block(this->gogo_->finish_block(this->location()),
3812                          location);
3813 }
3814
3815 // The body of an expression switch.
3816 //   "{" { ExprCaseClause } "}"
3817
3818 Statement*
3819 Parse::expr_switch_body(const Label* label, Expression* switch_val,
3820                         source_location location)
3821 {
3822   Switch_statement* statement = Statement::make_switch_statement(switch_val,
3823                                                                  location);
3824
3825   this->push_break_statement(statement, label);
3826
3827   Case_clauses* case_clauses = new Case_clauses();
3828   bool saw_default = false;
3829   while (!this->peek_token()->is_op(OPERATOR_RCURLY))
3830     {
3831       if (this->peek_token()->is_eof())
3832         {
3833           if (!saw_errors())
3834             error_at(this->location(), "missing %<}%>");
3835           return NULL;
3836         }
3837       this->expr_case_clause(case_clauses, &saw_default);
3838     }
3839   this->advance_token();
3840
3841   statement->add_clauses(case_clauses);
3842
3843   this->pop_break_statement();
3844
3845   return statement;
3846 }
3847
3848 // ExprCaseClause = ExprSwitchCase ":" [ StatementList ] .
3849 // FallthroughStat = "fallthrough" .
3850
3851 void
3852 Parse::expr_case_clause(Case_clauses* clauses, bool* saw_default)
3853 {
3854   source_location location = this->location();
3855
3856   bool is_default = false;
3857   Expression_list* vals = this->expr_switch_case(&is_default);
3858
3859   if (!this->peek_token()->is_op(OPERATOR_COLON))
3860     {
3861       if (!saw_errors())
3862         error_at(this->location(), "expected %<:%>");
3863       return;
3864     }
3865   else
3866     this->advance_token();
3867
3868   Block* statements = NULL;
3869   if (this->statement_list_may_start_here())
3870     {
3871       this->gogo_->start_block(this->location());
3872       this->statement_list();
3873       statements = this->gogo_->finish_block(this->location());
3874     }
3875
3876   bool is_fallthrough = false;
3877   if (this->peek_token()->is_keyword(KEYWORD_FALLTHROUGH))
3878     {
3879       is_fallthrough = true;
3880       if (this->advance_token()->is_op(OPERATOR_SEMICOLON))
3881         this->advance_token();
3882     }
3883
3884   if (is_default)
3885     {
3886       if (*saw_default)
3887         {
3888           error_at(location, "multiple defaults in switch");
3889           return;
3890         }
3891       *saw_default = true;
3892     }
3893
3894   if (is_default || vals != NULL)
3895     clauses->add(vals, is_default, statements, is_fallthrough, location);
3896 }
3897
3898 // ExprSwitchCase = "case" ExpressionList | "default" .
3899
3900 Expression_list*
3901 Parse::expr_switch_case(bool* is_default)
3902 {
3903   const Token* token = this->peek_token();
3904   if (token->is_keyword(KEYWORD_CASE))
3905     {
3906       this->advance_token();
3907       return this->expression_list(NULL, false);
3908     }
3909   else if (token->is_keyword(KEYWORD_DEFAULT))
3910     {
3911       this->advance_token();
3912       *is_default = true;
3913       return NULL;
3914     }
3915   else
3916     {
3917       if (!saw_errors())
3918         error_at(this->location(), "expected %<case%> or %<default%>");
3919       if (!token->is_op(OPERATOR_RCURLY))
3920         this->advance_token();
3921       return NULL;
3922     }
3923 }
3924
3925 // The body of a type switch.
3926 //   "{" { TypeCaseClause } "}" .
3927
3928 Statement*
3929 Parse::type_switch_body(const Label* label, const Type_switch& type_switch,
3930                         source_location location)
3931 {
3932   Named_object* switch_no = NULL;
3933   if (!type_switch.name.empty())
3934     {
3935       Variable* switch_var = new Variable(NULL, type_switch.expr, false, false,
3936                                           false, type_switch.location);
3937       switch_no = this->gogo_->add_variable(type_switch.name, switch_var);
3938     }
3939
3940   Type_switch_statement* statement =
3941     Statement::make_type_switch_statement(switch_no,
3942                                           (switch_no == NULL
3943                                            ? type_switch.expr
3944                                            : NULL),
3945                                           location);
3946
3947   this->push_break_statement(statement, label);
3948
3949   Type_case_clauses* case_clauses = new Type_case_clauses();
3950   bool saw_default = false;
3951   while (!this->peek_token()->is_op(OPERATOR_RCURLY))
3952     {
3953       if (this->peek_token()->is_eof())
3954         {
3955           error_at(this->location(), "missing %<}%>");
3956           return NULL;
3957         }
3958       this->type_case_clause(switch_no, case_clauses, &saw_default);
3959     }
3960   this->advance_token();
3961
3962   statement->add_clauses(case_clauses);
3963
3964   this->pop_break_statement();
3965
3966   return statement;
3967 }
3968
3969 // TypeCaseClause  = TypeSwitchCase ":" [ StatementList ] .
3970
3971 void
3972 Parse::type_case_clause(Named_object* switch_no, Type_case_clauses* clauses,
3973                         bool* saw_default)
3974 {
3975   source_location location = this->location();
3976
3977   std::vector<Type*> types;
3978   bool is_default = false;
3979   this->type_switch_case(&types, &is_default);
3980
3981   if (!this->peek_token()->is_op(OPERATOR_COLON))
3982     error_at(this->location(), "expected %<:%>");
3983   else
3984     this->advance_token();
3985
3986   Block* statements = NULL;
3987   if (this->statement_list_may_start_here())
3988     {
3989       this->gogo_->start_block(this->location());
3990       if (switch_no != NULL && types.size() == 1)
3991         {
3992           Type* type = types.front();
3993           Expression* init = Expression::make_var_reference(switch_no,
3994                                                             location);
3995           init = Expression::make_type_guard(init, type, location);
3996           Variable* v = new Variable(type, init, false, false, false,
3997                                      location);
3998           v->set_is_type_switch_var();
3999           this->gogo_->add_variable(switch_no->name(), v);
4000         }
4001       this->statement_list();
4002       statements = this->gogo_->finish_block(this->location());
4003     }
4004
4005   if (this->peek_token()->is_keyword(KEYWORD_FALLTHROUGH))
4006     {
4007       error_at(this->location(),
4008                "fallthrough is not permitted in a type switch");
4009       if (this->advance_token()->is_op(OPERATOR_SEMICOLON))
4010         this->advance_token();
4011     }
4012
4013   if (is_default)
4014     {
4015       gcc_assert(types.empty());
4016       if (*saw_default)
4017         {
4018           error_at(location, "multiple defaults in type switch");
4019           return;
4020         }
4021       *saw_default = true;
4022       clauses->add(NULL, false, true, statements, location);
4023     }
4024   else if (!types.empty())
4025     {
4026       for (std::vector<Type*>::const_iterator p = types.begin();
4027            p + 1 != types.end();
4028            ++p)
4029         clauses->add(*p, true, false, NULL, location);
4030       clauses->add(types.back(), false, false, statements, location);
4031     }
4032   else
4033     clauses->add(Type::make_error_type(), false, false, statements, location);
4034 }
4035
4036 // TypeSwitchCase  = "case" type | "default"
4037
4038 // We accept a comma separated list of types.
4039
4040 void
4041 Parse::type_switch_case(std::vector<Type*>* types, bool* is_default)
4042 {
4043   const Token* token = this->peek_token();
4044   if (token->is_keyword(KEYWORD_CASE))
4045     {
4046       this->advance_token();
4047       while (true)
4048         {
4049           Type* t = this->type();
4050           if (!t->is_error_type())
4051             types->push_back(t);
4052           if (!this->peek_token()->is_op(OPERATOR_COMMA))
4053             break;
4054           this->advance_token();
4055         }
4056     }
4057   else if (token->is_keyword(KEYWORD_DEFAULT))
4058     {
4059       this->advance_token();
4060       *is_default = true;
4061     }
4062   else
4063     {
4064       error_at(this->location(), "expected %<case%> or %<default%>");
4065       if (!token->is_op(OPERATOR_RCURLY))
4066         this->advance_token();
4067     }
4068 }
4069
4070 // SelectStat = "select" "{" { CommClause } "}" .
4071
4072 void
4073 Parse::select_stat(const Label* label)
4074 {
4075   gcc_assert(this->peek_token()->is_keyword(KEYWORD_SELECT));
4076   source_location location = this->location();
4077   const Token* token = this->advance_token();
4078
4079   if (!token->is_op(OPERATOR_LCURLY))
4080     {
4081       source_location token_loc = token->location();
4082       if (token->is_op(OPERATOR_SEMICOLON)
4083           && this->advance_token()->is_op(OPERATOR_LCURLY))
4084         error_at(token_loc, "unexpected semicolon or newline before %<{%>");
4085       else
4086         {
4087           error_at(this->location(), "expected %<{%>");
4088           return;
4089         }
4090     }
4091   this->advance_token();
4092
4093   Select_statement* statement = Statement::make_select_statement(location);
4094
4095   this->push_break_statement(statement, label);
4096
4097   Select_clauses* select_clauses = new Select_clauses();
4098   bool saw_default = false;
4099   while (!this->peek_token()->is_op(OPERATOR_RCURLY))
4100     {
4101       if (this->peek_token()->is_eof())
4102         {
4103           error_at(this->location(), "expected %<}%>");
4104           return;
4105         }
4106       this->comm_clause(select_clauses, &saw_default);
4107     }
4108
4109   this->advance_token();
4110
4111   statement->add_clauses(select_clauses);
4112
4113   this->pop_break_statement();
4114
4115   this->gogo_->add_statement(statement);
4116 }
4117
4118 // CommClause = CommCase [ StatementList ] .
4119
4120 void
4121 Parse::comm_clause(Select_clauses* clauses, bool* saw_default)
4122 {
4123   source_location location = this->location();
4124   bool is_send = false;
4125   Expression* channel = NULL;
4126   Expression* val = NULL;
4127   std::string varname;
4128   bool is_default = false;
4129   bool got_case = this->comm_case(&is_send, &channel, &val, &varname,
4130                                   &is_default);
4131
4132   Block* statements = NULL;
4133   Named_object* var = NULL;
4134   if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
4135     this->advance_token();
4136   else if (this->statement_list_may_start_here())
4137     {
4138       this->gogo_->start_block(this->location());
4139
4140       if (!varname.empty())
4141         {
4142           // FIXME: LOCATION is slightly wrong here.
4143           Variable* v = new Variable(NULL, channel, false, false, false,
4144                                      location);
4145           v->set_type_from_chan_element();
4146           var = this->gogo_->add_variable(varname, v);
4147         }
4148
4149       this->statement_list();
4150       statements = this->gogo_->finish_block(this->location());
4151     }
4152
4153   if (is_default)
4154     {
4155       if (*saw_default)
4156         {
4157           error_at(location, "multiple defaults in select");
4158           return;
4159         }
4160       *saw_default = true;
4161     }
4162
4163   if (got_case)
4164     clauses->add(is_send, channel, val, var, is_default, statements, location);
4165 }
4166
4167 // CommCase = ( "default" | ( "case" ( SendExpr | RecvExpr) ) ) ":" .
4168
4169 bool
4170 Parse::comm_case(bool* is_send, Expression** channel, Expression** val,
4171                  std::string* varname, bool* is_default)
4172 {
4173   const Token* token = this->peek_token();
4174   if (token->is_keyword(KEYWORD_DEFAULT))
4175     {
4176       this->advance_token();
4177       *is_default = true;
4178     }
4179   else if (token->is_keyword(KEYWORD_CASE))
4180     {
4181       this->advance_token();
4182       if (!this->send_or_recv_expr(is_send, channel, val, varname))
4183         return false;
4184     }
4185   else
4186     {
4187       error_at(this->location(), "expected %<case%> or %<default%>");
4188       if (!token->is_op(OPERATOR_RCURLY))
4189         this->advance_token();
4190       return false;
4191     }
4192
4193   if (!this->peek_token()->is_op(OPERATOR_COLON))
4194     {
4195       error_at(this->location(), "expected colon");
4196       return false;
4197     }
4198
4199   this->advance_token();
4200
4201   return true;
4202 }
4203
4204 // SendExpr = Expression "<-" Expression .
4205 // RecvExpr =  [ Expression ( "=" | ":=" ) ] "<-" Expression .
4206
4207 bool
4208 Parse::send_or_recv_expr(bool* is_send, Expression** channel, Expression** val,
4209                          std::string* varname)
4210 {
4211   const Token* token = this->peek_token();
4212   source_location location = token->location();
4213   if (token->is_identifier())
4214     {
4215       std::string recv_var = token->identifier();
4216       bool is_var_exported = token->is_identifier_exported();
4217       if (!this->advance_token()->is_op(OPERATOR_COLONEQ))
4218         this->unget_token(Token::make_identifier_token(recv_var,
4219                                                        is_var_exported,
4220                                                        location));
4221       else
4222         {
4223           if (!this->advance_token()->is_op(OPERATOR_CHANOP))
4224             {
4225               error_at(this->location(), "expected %<<-%>");
4226               return false;
4227             }
4228           *is_send = false;
4229           *varname = this->gogo_->pack_hidden_name(recv_var, is_var_exported);
4230           this->advance_token();
4231           *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
4232           return true;
4233         }
4234     }
4235
4236   if (this->peek_token()->is_op(OPERATOR_CHANOP))
4237     {
4238       *is_send = false;
4239       this->advance_token();
4240       *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
4241     }
4242   else
4243     {
4244       Expression* left = this->expression(PRECEDENCE_CHANOP, true, true, NULL);
4245
4246       if (this->peek_token()->is_op(OPERATOR_EQ))
4247         {
4248           if (!this->advance_token()->is_op(OPERATOR_CHANOP))
4249             {
4250               error_at(this->location(), "missing %<<-%>");
4251               return false;
4252             }
4253           *is_send = false;
4254           *val = left;
4255           this->advance_token();
4256           *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
4257         }
4258       else if (this->peek_token()->is_op(OPERATOR_CHANOP))
4259         {
4260           *is_send = true;
4261           *channel = this->verify_not_sink(left);
4262           this->advance_token();
4263           *val = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
4264         }
4265       else
4266         {
4267           error_at(this->location(), "expected %<<-%> or %<=%>");
4268           return false;
4269         }
4270     }
4271
4272   return true;
4273 }
4274
4275 // ForStat = "for" [ Condition | ForClause | RangeClause ] Block .
4276 // Condition = Expression .
4277
4278 void
4279 Parse::for_stat(const Label* label)
4280 {
4281   gcc_assert(this->peek_token()->is_keyword(KEYWORD_FOR));
4282   source_location location = this->location();
4283   const Token* token = this->advance_token();
4284
4285   // Open a block to hold any variables defined in the init statement
4286   // of the for statement.
4287   this->gogo_->start_block(location);
4288
4289   Block* init = NULL;
4290   Expression* cond = NULL;
4291   Block* post = NULL;
4292   Range_clause range_clause;
4293
4294   if (!token->is_op(OPERATOR_LCURLY))
4295     {
4296       if (token->is_keyword(KEYWORD_VAR))
4297         {
4298           error_at(this->location(),
4299                    "var declaration not allowed in for initializer");
4300           this->var_decl();
4301         }
4302
4303       if (token->is_op(OPERATOR_SEMICOLON))
4304         this->for_clause(&cond, &post);
4305       else
4306         {
4307           // We might be looking at a Condition, an InitStat, or a
4308           // RangeClause.
4309           cond = this->simple_stat(false, true, &range_clause, NULL);
4310           if (!this->peek_token()->is_op(OPERATOR_SEMICOLON))
4311             {
4312               if (cond == NULL && !range_clause.found)
4313                 error_at(this->location(), "parse error in for statement");
4314             }
4315           else
4316             {
4317               if (range_clause.found)
4318                 error_at(this->location(), "parse error after range clause");
4319
4320               if (cond != NULL)
4321                 {
4322                   // COND is actually an expression statement for
4323                   // InitStat at the start of a ForClause.
4324                   this->expression_stat(cond);
4325                   cond = NULL;
4326                 }
4327
4328               this->for_clause(&cond, &post);
4329             }
4330         }
4331     }
4332
4333   // Build the For_statement and note that it is the current target
4334   // for break and continue statements.
4335
4336   For_statement* sfor;
4337   For_range_statement* srange;
4338   Statement* s;
4339   if (!range_clause.found)
4340     {
4341       sfor = Statement::make_for_statement(init, cond, post, location);
4342       s = sfor;
4343       srange = NULL;
4344     }
4345   else
4346     {
4347       srange = Statement::make_for_range_statement(range_clause.index,
4348                                                    range_clause.value,
4349                                                    range_clause.range,
4350                                                    location);
4351       s = srange;
4352       sfor = NULL;
4353     }
4354
4355   this->push_break_statement(s, label);
4356   this->push_continue_statement(s, label);
4357
4358   // Gather the block of statements in the loop and add them to the
4359   // For_statement.
4360
4361   this->gogo_->start_block(this->location());
4362   source_location end_loc = this->block();
4363   Block* statements = this->gogo_->finish_block(end_loc);
4364
4365   if (sfor != NULL)
4366     sfor->add_statements(statements);
4367   else
4368     srange->add_statements(statements);
4369
4370   // This is no longer the break/continue target.
4371   this->pop_break_statement();
4372   this->pop_continue_statement();
4373
4374   // Add the For_statement to the list of statements, and close out
4375   // the block we started to hold any variables defined in the for
4376   // statement.
4377
4378   this->gogo_->add_statement(s);
4379
4380   this->gogo_->add_block(this->gogo_->finish_block(this->location()),
4381                          location);
4382 }
4383
4384 // ForClause = [ InitStat ] ";" [ Condition ] ";" [ PostStat ] .
4385 // InitStat = SimpleStat .
4386 // PostStat = SimpleStat .
4387
4388 // We have already read InitStat at this point.
4389
4390 void
4391 Parse::for_clause(Expression** cond, Block** post)
4392 {
4393   gcc_assert(this->peek_token()->is_op(OPERATOR_SEMICOLON));
4394   this->advance_token();
4395   if (this->peek_token()->is_op(OPERATOR_SEMICOLON))
4396     *cond = NULL;
4397   else if (this->peek_token()->is_op(OPERATOR_LCURLY))
4398     {
4399       error_at(this->location(),
4400                "unexpected semicolon or newline before %<{%>");
4401       *cond = NULL;
4402       *post = NULL;
4403       return;
4404     }
4405   else
4406     *cond = this->expression(PRECEDENCE_NORMAL, false, true, NULL);
4407   if (!this->peek_token()->is_op(OPERATOR_SEMICOLON))
4408     error_at(this->location(), "expected semicolon");
4409   else
4410     this->advance_token();
4411
4412   if (this->peek_token()->is_op(OPERATOR_LCURLY))
4413     *post = NULL;
4414   else
4415     {
4416       this->gogo_->start_block(this->location());
4417       this->simple_stat(false, false, NULL, NULL);
4418       *post = this->gogo_->finish_block(this->location());
4419     }
4420 }
4421
4422 // RangeClause = IdentifierList ( "=" | ":=" ) "range" Expression .
4423
4424 // This is the := version.  It is called with a list of identifiers.
4425
4426 void
4427 Parse::range_clause_decl(const Typed_identifier_list* til,
4428                          Range_clause* p_range_clause)
4429 {
4430   gcc_assert(this->peek_token()->is_keyword(KEYWORD_RANGE));
4431   source_location location = this->location();
4432
4433   p_range_clause->found = true;
4434
4435   gcc_assert(til->size() >= 1);
4436   if (til->size() > 2)
4437     error_at(this->location(), "too many variables for range clause");
4438
4439   this->advance_token();
4440   Expression* expr = this->expression(PRECEDENCE_NORMAL, false, false, NULL);
4441   p_range_clause->range = expr;
4442
4443   bool any_new = false;
4444
4445   const Typed_identifier* pti = &til->front();
4446   Named_object* no = this->init_var(*pti, NULL, expr, true, true, &any_new);
4447   if (any_new && no->is_variable())
4448     no->var_value()->set_type_from_range_index();
4449   p_range_clause->index = Expression::make_var_reference(no, location);
4450
4451   if (til->size() == 1)
4452     p_range_clause->value = NULL;
4453   else
4454     {
4455       pti = &til->back();
4456       bool is_new = false;
4457       no = this->init_var(*pti, NULL, expr, true, true, &is_new);
4458       if (is_new && no->is_variable())
4459         no->var_value()->set_type_from_range_value();
4460       if (is_new)
4461         any_new = true;
4462       p_range_clause->value = Expression::make_var_reference(no, location);
4463     }
4464
4465   if (!any_new)
4466     error_at(location, "variables redeclared but no variable is new");
4467 }
4468
4469 // The = version of RangeClause.  This is called with a list of
4470 // expressions.
4471
4472 void
4473 Parse::range_clause_expr(const Expression_list* vals,
4474                          Range_clause* p_range_clause)
4475 {
4476   gcc_assert(this->peek_token()->is_keyword(KEYWORD_RANGE));
4477
4478   p_range_clause->found = true;
4479
4480   gcc_assert(vals->size() >= 1);
4481   if (vals->size() > 2)
4482     error_at(this->location(), "too many variables for range clause");
4483
4484   this->advance_token();
4485   p_range_clause->range = this->expression(PRECEDENCE_NORMAL, false, false,
4486                                            NULL);
4487
4488   p_range_clause->index = vals->front();
4489   if (vals->size() == 1)
4490     p_range_clause->value = NULL;
4491   else
4492     p_range_clause->value = vals->back();
4493 }
4494
4495 // Push a statement on the break stack.
4496
4497 void
4498 Parse::push_break_statement(Statement* enclosing, const Label* label)
4499 {
4500   this->break_stack_.push_back(std::make_pair(enclosing, label));
4501 }
4502
4503 // Push a statement on the continue stack.
4504
4505 void
4506 Parse::push_continue_statement(Statement* enclosing, const Label* label)
4507 {
4508   this->continue_stack_.push_back(std::make_pair(enclosing, label));
4509 }
4510
4511 // Pop the break stack.
4512
4513 void
4514 Parse::pop_break_statement()
4515 {
4516   this->break_stack_.pop_back();
4517 }
4518
4519 // Pop the continue stack.
4520
4521 void
4522 Parse::pop_continue_statement()
4523 {
4524   this->continue_stack_.pop_back();
4525 }
4526
4527 // Find a break or continue statement given a label name.
4528
4529 Statement*
4530 Parse::find_bc_statement(const Bc_stack* bc_stack, const std::string& label)
4531 {
4532   for (Bc_stack::const_reverse_iterator p = bc_stack->rbegin();
4533        p != bc_stack->rend();
4534        ++p)
4535     if (p->second != NULL && p->second->name() == label)
4536       return p->first;
4537   return NULL;
4538 }
4539
4540 // BreakStat = "break" [ identifier ] .
4541
4542 void
4543 Parse::break_stat()
4544 {
4545   gcc_assert(this->peek_token()->is_keyword(KEYWORD_BREAK));
4546   source_location location = this->location();
4547
4548   const Token* token = this->advance_token();
4549   Statement* enclosing;
4550   if (!token->is_identifier())
4551     {
4552       if (this->break_stack_.empty())
4553         {
4554           error_at(this->location(),
4555                    "break statement not within for or switch or select");
4556           return;
4557         }
4558       enclosing = this->break_stack_.back().first;
4559     }
4560   else
4561     {
4562       enclosing = this->find_bc_statement(&this->break_stack_,
4563                                           token->identifier());
4564       if (enclosing == NULL)
4565         {
4566           error_at(token->location(),
4567                    ("break label %qs not associated with "
4568                     "for or switch or select"),
4569                    Gogo::message_name(token->identifier()).c_str());
4570           this->advance_token();
4571           return;
4572         }
4573       this->advance_token();
4574     }
4575
4576   Unnamed_label* label;
4577   if (enclosing->classification() == Statement::STATEMENT_FOR)
4578     label = enclosing->for_statement()->break_label();
4579   else if (enclosing->classification() == Statement::STATEMENT_FOR_RANGE)
4580     label = enclosing->for_range_statement()->break_label();
4581   else if (enclosing->classification() == Statement::STATEMENT_SWITCH)
4582     label = enclosing->switch_statement()->break_label();
4583   else if (enclosing->classification() == Statement::STATEMENT_TYPE_SWITCH)
4584     label = enclosing->type_switch_statement()->break_label();
4585   else if (enclosing->classification() == Statement::STATEMENT_SELECT)
4586     label = enclosing->select_statement()->break_label();
4587   else
4588     gcc_unreachable();
4589
4590   this->gogo_->add_statement(Statement::make_break_statement(label,
4591                                                              location));
4592 }
4593
4594 // ContinueStat = "continue" [ identifier ] .
4595
4596 void
4597 Parse::continue_stat()
4598 {
4599   gcc_assert(this->peek_token()->is_keyword(KEYWORD_CONTINUE));
4600   source_location location = this->location();
4601
4602   const Token* token = this->advance_token();
4603   Statement* enclosing;
4604   if (!token->is_identifier())
4605     {
4606       if (this->continue_stack_.empty())
4607         {
4608           error_at(this->location(), "continue statement not within for");
4609           return;
4610         }
4611       enclosing = this->continue_stack_.back().first;
4612     }
4613   else
4614     {
4615       enclosing = this->find_bc_statement(&this->continue_stack_,
4616                                           token->identifier());
4617       if (enclosing == NULL)
4618         {
4619           error_at(token->location(),
4620                    "continue label %qs not associated with for",
4621                    Gogo::message_name(token->identifier()).c_str());
4622           this->advance_token();
4623           return;
4624         }
4625       this->advance_token();
4626     }
4627
4628   Unnamed_label* label;
4629   if (enclosing->classification() == Statement::STATEMENT_FOR)
4630     label = enclosing->for_statement()->continue_label();
4631   else if (enclosing->classification() == Statement::STATEMENT_FOR_RANGE)
4632     label = enclosing->for_range_statement()->continue_label();
4633   else
4634     gcc_unreachable();
4635
4636   this->gogo_->add_statement(Statement::make_continue_statement(label,
4637                                                                 location));
4638 }
4639
4640 // GotoStat = "goto" identifier .
4641
4642 void
4643 Parse::goto_stat()
4644 {
4645   gcc_assert(this->peek_token()->is_keyword(KEYWORD_GOTO));
4646   source_location location = this->location();
4647   const Token* token = this->advance_token();
4648   if (!token->is_identifier())
4649     error_at(this->location(), "expected label for goto");
4650   else
4651     {
4652       Label* label = this->gogo_->add_label_reference(token->identifier());
4653       Statement* s = Statement::make_goto_statement(label, location);
4654       this->gogo_->add_statement(s);
4655       this->advance_token();
4656     }
4657 }
4658
4659 // PackageClause = "package" PackageName .
4660
4661 void
4662 Parse::package_clause()
4663 {
4664   const Token* token = this->peek_token();
4665   source_location location = token->location();
4666   std::string name;
4667   if (!token->is_keyword(KEYWORD_PACKAGE))
4668     {
4669       error_at(this->location(), "program must start with package clause");
4670       name = "ERROR";
4671     }
4672   else
4673     {
4674       token = this->advance_token();
4675       if (token->is_identifier())
4676         {
4677           name = token->identifier();
4678           if (name == "_")
4679             {
4680               error_at(this->location(), "invalid package name _");
4681               name = "blank";
4682             }
4683           this->advance_token();
4684         }
4685       else
4686         {
4687           error_at(this->location(), "package name must be an identifier");
4688           name = "ERROR";
4689         }
4690     }
4691   this->gogo_->set_package_name(name, location);
4692 }
4693
4694 // ImportDecl = "import" Decl<ImportSpec> .
4695
4696 void
4697 Parse::import_decl()
4698 {
4699   gcc_assert(this->peek_token()->is_keyword(KEYWORD_IMPORT));
4700   this->advance_token();
4701   this->decl(&Parse::import_spec, NULL);
4702 }
4703
4704 // ImportSpec = [ "." | PackageName ] PackageFileName .
4705
4706 void
4707 Parse::import_spec(void*)
4708 {
4709   const Token* token = this->peek_token();
4710   source_location location = token->location();
4711
4712   std::string local_name;
4713   bool is_local_name_exported = false;
4714   if (token->is_op(OPERATOR_DOT))
4715     {
4716       local_name = ".";
4717       token = this->advance_token();
4718     }
4719   else if (token->is_identifier())
4720     {
4721       local_name = token->identifier();
4722       is_local_name_exported = token->is_identifier_exported();
4723       token = this->advance_token();
4724     }
4725
4726   if (!token->is_string())
4727     {
4728       error_at(this->location(), "missing import package name");
4729       return;
4730     }
4731
4732   this->gogo_->import_package(token->string_value(), local_name,
4733                               is_local_name_exported, location);
4734
4735   this->advance_token();
4736 }
4737
4738 // SourceFile       = PackageClause ";" { ImportDecl ";" }
4739 //                      { TopLevelDecl ";" } .
4740
4741 void
4742 Parse::program()
4743 {
4744   this->package_clause();
4745
4746   const Token* token = this->peek_token();
4747   if (token->is_op(OPERATOR_SEMICOLON))
4748     token = this->advance_token();
4749   else
4750     error_at(this->location(),
4751              "expected %<;%> or newline after package clause");
4752
4753   while (token->is_keyword(KEYWORD_IMPORT))
4754     {
4755       this->import_decl();
4756       token = this->peek_token();
4757       if (token->is_op(OPERATOR_SEMICOLON))
4758         token = this->advance_token();
4759       else
4760         error_at(this->location(),
4761                  "expected %<;%> or newline after import declaration");
4762     }
4763
4764   while (!token->is_eof())
4765     {
4766       if (this->declaration_may_start_here())
4767         this->declaration();
4768       else
4769         {
4770           error_at(this->location(), "expected declaration");
4771           do
4772             this->advance_token();
4773           while (!this->peek_token()->is_eof()
4774                  && !this->peek_token()->is_op(OPERATOR_SEMICOLON)
4775                  && !this->peek_token()->is_op(OPERATOR_RCURLY));
4776           if (!this->peek_token()->is_eof()
4777               && !this->peek_token()->is_op(OPERATOR_SEMICOLON))
4778             this->advance_token();
4779         }
4780       token = this->peek_token();
4781       if (token->is_op(OPERATOR_SEMICOLON))
4782         token = this->advance_token();
4783       else if (!token->is_eof() || !saw_errors())
4784         {
4785           error_at(this->location(),
4786                    "expected %<;%> or newline after top level declaration");
4787           this->skip_past_error(OPERATOR_INVALID);
4788         }
4789     }
4790 }
4791
4792 // Reset the current iota value.
4793
4794 void
4795 Parse::reset_iota()
4796 {
4797   this->iota_ = 0;
4798 }
4799
4800 // Return the current iota value.
4801
4802 int
4803 Parse::iota_value()
4804 {
4805   return this->iota_;
4806 }
4807
4808 // Increment the current iota value.
4809
4810 void
4811 Parse::increment_iota()
4812 {
4813   ++this->iota_;
4814 }
4815
4816 // Skip forward to a semicolon or OP.  OP will normally be
4817 // OPERATOR_RPAREN or OPERATOR_RCURLY.  If we find a semicolon, move
4818 // past it and return.  If we find OP, it will be the next token to
4819 // read.  Return true if we are OK, false if we found EOF.
4820
4821 bool
4822 Parse::skip_past_error(Operator op)
4823 {
4824   const Token* token = this->peek_token();
4825   while (!token->is_op(op))
4826     {
4827       if (token->is_eof())
4828         return false;
4829       if (token->is_op(OPERATOR_SEMICOLON))
4830         {
4831           this->advance_token();
4832           return true;
4833         }
4834       token = this->advance_token();
4835     }
4836   return true;
4837 }
4838
4839 // Check that an expression is not a sink.
4840
4841 Expression*
4842 Parse::verify_not_sink(Expression* expr)
4843 {
4844   if (expr->is_sink_expression())
4845     {
4846       error_at(expr->location(), "cannot use _ as value");
4847       expr = Expression::make_error(expr->location());
4848     }
4849   return expr;
4850 }