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[libs/gl.git] / source / glsl / parser.cpp
1 #include <msp/core/raii.h>
2 #include <msp/strings/format.h>
3 #include <msp/strings/regex.h>
4 #include <msp/strings/utils.h>
5 #include "builtin.h"
6 #include "glsl_error.h"
7 #include "parser.h"
8
9 #undef interface
10
11 using namespace std;
12
13 namespace Msp {
14 namespace GL {
15 namespace SL {
16
17 Parser::Parser():
18         preprocessor(tokenizer),
19         module(0)
20 {
21         tokenizer.signal_preprocess.connect(sigc::mem_fun(&preprocessor, &Preprocessor::preprocess));
22         preprocessor.signal_version.connect(sigc::mem_fun(this, &Parser::set_required_version));
23         preprocessor.signal_source.connect(sigc::mem_fun(this, &Parser::source_reference));
24         preprocessor.signal_stage_change.connect(sigc::mem_fun(this, &Parser::stage_change));
25         preprocessor.signal_line.connect(sigc::mem_fun(this, &Parser::line_change));
26 }
27
28 Parser::~Parser()
29 {
30         delete module;
31 }
32
33 Module &Parser::parse(const string &s, const string &n, int i)
34 {
35         source = s;
36         parse_source(n, i);
37         return *module;
38 }
39
40 Module &Parser::parse(IO::Base &io, const string &n, int i)
41 {
42         source = string();
43         while(!io.eof())
44         {
45                 char buffer[4096];
46                 unsigned len = io.read(buffer, sizeof(buffer));
47                 source.append(buffer, len);
48         }
49         parse_source(n, i);
50         return *module;
51 }
52
53 void Parser::parse_source(const string &name, int index)
54 {
55         delete module;
56         module = new Module;
57
58         cur_stage = &module->shared;
59         base_index = index;
60         source_index = index;
61         if(index>=0)
62                 source_reference(1, name);
63
64         // TODO Need to somehow get type names from imports
65         if(const Stage *builtin = get_builtins(Stage::SHARED))
66         {
67                 for(map<string, TypeDeclaration *>::const_iterator i=builtin->types.begin(); i!=builtin->types.end(); ++i)
68                         declared_types.insert(i->first);
69         }
70         else
71         {
72                 declared_types.insert("void");
73                 declared_types.insert("bool");
74                 declared_types.insert("int");
75                 declared_types.insert("float");
76         }
77
78         tokenizer.begin(source, name);
79         allow_stage_change = true;
80         while(!tokenizer.peek_token().empty())
81                 if(RefPtr<Statement> statement = parse_with_recovery(&Parser::parse_global_declaration))
82                         cur_stage->content.body.push_back(statement);
83
84         if(!errors.empty())
85                 throw invalid_shader_source(join(errors.begin(), errors.end(), "\n"));
86 }
87
88 void Parser::set_required_version(const Version &ver)
89 {
90         cur_stage->required_features.glsl_version = ver;
91 }
92
93 void Parser::source_reference(unsigned index, const string &name)
94 {
95         if(index<1 || base_index<0)
96                 throw invalid_shader_source(tokenizer.get_location(), "Invalid source reference");
97
98         module->source_map.set_name(base_index+index-1, name);
99 }
100
101 void Parser::stage_change(Stage::Type stage)
102 {
103         if(!allow_stage_change)
104                 throw invalid_shader_source(tokenizer.get_location(), "Changing stage not allowed here");
105         else if(stage<=cur_stage->type)
106                 throw invalid_shader_source(tokenizer.get_location(), "Stage '%s' not allowed here", Stage::get_stage_name(stage));
107
108         module->stages.push_back(stage);
109
110         if(cur_stage->type!=Stage::SHARED)
111                 module->stages.back().previous = cur_stage;
112         cur_stage = &module->stages.back();
113 }
114
115 void Parser::line_change(int index, unsigned line)
116 {
117         if(index>0)
118                 source_index = base_index+index-1;
119         else if(index==0)
120                 source_index = 0;
121         else
122                 index = source_index;
123
124         string name = module->source_map.get_name(index);
125         if(name.empty())
126                 name = format("<%d>", index);
127         tokenizer.set_location(Location(name, line));
128 }
129
130 string Parser::expect_type()
131 {
132         string token = tokenizer.parse_token();
133         if(!is_type(token))
134                 throw parse_error(tokenizer.get_location(), token, "a type");
135         return token;
136 }
137
138 string Parser::expect_identifier()
139 {
140         string token = tokenizer.parse_token();
141         if(!is_identifier(token))
142                 throw parse_error(tokenizer.get_location(), token, "an identifier");
143         return token;
144 }
145
146 int Parser::expect_integer()
147 {
148         string token = tokenizer.parse_token();
149         if(!isnumrc(token))
150                 throw parse_error(tokenizer.get_location(), token, "an integer literal");
151         return lexical_cast<int>(token);
152 }
153
154 bool Parser::check(const string &token)
155 {
156         bool result = (tokenizer.peek_token()==token);
157         if(result)
158                 tokenizer.parse_token();
159         return result;
160 }
161
162 bool Parser::is_interface_qualifier(const string &token)
163 {
164         return (token=="uniform" || token=="in" || token=="out");
165 }
166
167 bool Parser::is_sampling_qualifier(const string &token)
168 {
169         return (token=="centroid" || token=="sample");
170 }
171
172 bool Parser::is_interpolation_qualifier(const string &token)
173 {
174         return (token=="smooth" || token=="flat" || token=="noperspective");
175 }
176
177 bool Parser::is_precision_qualifier(const string &token)
178 {
179         return (token=="highp" || token=="mediump" || token=="lowp");
180 }
181
182 bool Parser::is_qualifier(const string &token)
183 {
184         return (token=="const" ||
185                 is_interface_qualifier(token) ||
186                 is_sampling_qualifier(token) ||
187                 is_interpolation_qualifier(token) ||
188                 is_precision_qualifier(token));
189 }
190
191 bool Parser::is_type(const string &token)
192 {
193         return declared_types.count(token);
194 }
195
196 bool Parser::is_identifier(const string &token)
197 {
198         static Regex re("^[a-zA-Z_][a-zA-Z0-9_]*$");
199         return re.match(token);
200 }
201
202 template<typename T>
203 RefPtr<T> Parser::create_node()
204 {
205         RefPtr<T> node = new T;
206         node->source = source_index;
207         node->line = tokenizer.get_location().line;
208         return node;
209 }
210
211 template<typename T>
212 RefPtr<T> Parser::parse_with_recovery(RefPtr<T> (Parser::*parse_func)())
213 {
214         tokenizer.clear_progress_mark();
215         try
216         {
217                 return (this->*parse_func)();
218         }
219         catch(const invalid_shader_source &exc)
220         {
221                 errors.push_back(exc.what());
222         }
223
224         if(tokenizer.get_last_token()!=";" || !tokenizer.get_progress_mark())
225         {
226                 unsigned scope_level = 0;
227                 while(1)
228                 {
229                         if(tokenizer.peek_token()=="}" && scope_level==0)
230                         {
231                                 if(!tokenizer.get_progress_mark())
232                                         tokenizer.parse_token();
233                                 break;
234                         }
235
236                         string token = tokenizer.parse_token();
237                         if(token=="}")
238                         {
239                                 --scope_level;
240                                 if(scope_level==0)
241                                         break;
242                         }
243                         else if(token=="{")
244                                 ++scope_level;
245                         else if(token==";" && scope_level==0)
246                                 break;
247                         else if(token.empty())
248                                 break;
249                 }
250         }
251
252         return RefPtr<T>();
253 }
254
255 RefPtr<Statement> Parser::parse_global_declaration()
256 {
257         string token = tokenizer.peek_token();
258         SetFlag disallow(allow_stage_change, false);
259
260         if(token=="import")
261                 return parse_import();
262         else if(token=="precision")
263                 return parse_precision();
264         else if(token=="layout")
265         {
266                 RefPtr<Layout> layout = parse_layout();
267                 token = tokenizer.peek_token();
268                 if(is_interface_qualifier(token) && tokenizer.peek_token(1)==";")
269                 {
270                         RefPtr<InterfaceLayout> iface_lo = create_node<InterfaceLayout>();
271                         iface_lo->layout.qualifiers = layout->qualifiers;
272                         iface_lo->interface = tokenizer.parse_token();
273                         tokenizer.expect(";");
274                         return iface_lo;
275                 }
276                 else
277                 {
278                         RefPtr<VariableDeclaration> var = parse_variable_declaration();
279                         var->layout = layout;
280                         return var;
281                 }
282         }
283         else if(token=="typedef")
284                 return parse_type_declaration();
285         else if(token=="struct")
286                 return parse_struct_declaration();
287         else if(is_interface_qualifier(token))
288         {
289                 string next = tokenizer.peek_token(1);
290                 if(is_type(next) || is_qualifier(next))
291                         return parse_variable_declaration();
292                 else
293                         return parse_interface_block();
294         }
295         else if(is_qualifier(token))
296                 return parse_variable_declaration();
297         else if(is_type(token))
298         {
299                 if(tokenizer.peek_token(2)=="(")
300                         return parse_function_declaration();
301                 else
302                         return parse_variable_declaration();
303         }
304         else if(token.empty())
305                 return 0;
306         else
307                 throw parse_error(tokenizer.get_location(), token, "a global declaration");
308 }
309
310 RefPtr<Statement> Parser::parse_statement()
311 {
312         string token = tokenizer.peek_token();
313         if(token=="if")
314                 return parse_conditional();
315         else if(token=="for")
316                 return parse_for();
317         else if(token=="while")
318                 return parse_while();
319         else if(token=="passthrough")
320                 return parse_passthrough();
321         else if(token=="return")
322                 return parse_return();
323         else if(token=="break" || token=="continue" || token=="discard")
324         {
325                 RefPtr<Jump> jump = create_node<Jump>();
326                 jump->keyword = tokenizer.parse_token();
327                 tokenizer.expect(";");
328
329                 return jump;
330         }
331         else if(is_qualifier(token) || is_type(token))
332                 return parse_variable_declaration();
333         else if(token==";")
334         {
335                 tokenizer.parse_token();
336                 throw invalid_shader_source(tokenizer.get_location(), "Empty statement not allowed");
337         }
338         else if(!token.empty())
339         {
340                 RefPtr<ExpressionStatement> expr = create_node<ExpressionStatement>();
341                 expr->expression = parse_expression();
342                 tokenizer.expect(";");
343
344                 return expr;
345         }
346         else
347                 throw parse_error(tokenizer.get_location(), token, "a statement");
348 }
349
350 RefPtr<Import> Parser::parse_import()
351 {
352         if(cur_stage->type!=Stage::SHARED)
353                 throw invalid_shader_source(tokenizer.get_location(), "Imports are only allowed in the shared section");
354
355         tokenizer.expect("import");
356         RefPtr<Import> import = create_node<Import>();
357         import->module = expect_identifier();
358         tokenizer.expect(";");
359         return import;
360 }
361
362 RefPtr<Precision> Parser::parse_precision()
363 {
364         tokenizer.expect("precision");
365         RefPtr<Precision> precision = create_node<Precision>();
366
367         precision->precision = tokenizer.parse_token();
368         if(!is_precision_qualifier(precision->precision))
369                 throw parse_error(tokenizer.get_location(), precision->precision, "a precision qualifier");
370
371         // TODO Add validation for this
372         precision->type = expect_type();
373
374         tokenizer.expect(";");
375
376         return precision;
377 }
378
379 RefPtr<Layout> Parser::parse_layout()
380 {
381         tokenizer.expect("layout");
382         tokenizer.expect("(");
383         RefPtr<Layout> layout = create_node<Layout>();
384         while(1)
385         {
386                 string token = tokenizer.parse_token();
387                 if(token==")")
388                         throw parse_error(tokenizer.get_location(), token, "a layout qualifier name");
389
390                 layout->qualifiers.push_back(Layout::Qualifier());
391                 Layout::Qualifier &qual = layout->qualifiers.back();
392                 qual.name = token;
393
394                 if((qual.has_value = check("=")))
395                 {
396                         if(qual.name=="constant_id" && tokenizer.peek_token()=="auto")
397                         {
398                                 qual.value = -1;
399                                 tokenizer.parse_token();
400                         }
401                         else
402                                 qual.value = expect_integer();
403                 }
404
405                 if(tokenizer.peek_token()==")")
406                         break;
407
408                 tokenizer.expect(",");
409         }
410         tokenizer.expect(")");
411
412         return layout;
413 }
414
415 template<typename T>
416 void Parser::parse_block(Block &block, bool require_braces, RefPtr<T> (Parser::*parse_content)())
417 {
418         bool have_braces = (require_braces || tokenizer.peek_token()=="{");
419         if(have_braces)
420                 tokenizer.expect("{");
421
422         if(have_braces)
423         {
424                 while(tokenizer.peek_token()!="}")
425                         if(RefPtr<Statement> node = parse_with_recovery(parse_content))
426                                 block.body.push_back(node);
427         }
428         else
429                 block.body.push_back((this->*parse_content)());
430
431         block.use_braces = (require_braces || block.body.size()!=1);
432
433         if(have_braces)
434                 tokenizer.expect("}");
435 }
436
437 RefPtr<Expression> Parser::parse_expression(const Operator *outer_oper)
438 {
439         unsigned outer_precedence = (outer_oper ? outer_oper->precedence+(outer_oper->assoc==Operator::RIGHT_TO_LEFT) : 20);
440         RefPtr<Expression> left;
441         VariableReference *left_var = 0;
442         while(1)
443         {
444                 string token = tokenizer.peek_token();
445
446                 const Operator *oper = 0;
447                 for(const Operator *i=Operator::operators; (!oper && i->type); ++i)
448                         if(token==i->token && (!left || i->type!=Operator::PREFIX) && (left || i->type!=Operator::POSTFIX))
449                                 oper = i;
450
451                 bool lower_precedence = (oper && oper->type!=Operator::PREFIX && oper->precedence>=outer_precedence);
452                 if(token==";" || token==")" || token=="]" || token=="," || lower_precedence)
453                 {
454                         if(left)
455                                 return left;
456                         else
457                                 throw parse_error(tokenizer.get_location(), token, "an expression");
458                 }
459                 else if(left)
460                 {
461                         if(token=="(")
462                         {
463                                 if(!left_var)
464                                         throw invalid_shader_source(tokenizer.get_location(), "Syntax error before '(': function name must be an identifier");
465                                 left = parse_function_call(*left_var);
466                         }
467                         else if(token==".")
468                         {
469                                 RefPtr<MemberAccess> memacc = create_node<MemberAccess>();
470                                 memacc->left = left;
471                                 memacc->oper = oper;
472                                 tokenizer.parse_token();
473                                 memacc->member = expect_identifier();
474                                 left = memacc;
475                         }
476                         else if(oper && oper->type==Operator::POSTFIX)
477                         {
478                                 RefPtr<UnaryExpression> unary = create_node<UnaryExpression>();
479                                 unary->oper = oper;
480                                 tokenizer.parse_token();
481                                 unary->expression = left;
482                                 left = unary;
483                         }
484                         else if(oper && oper->type==Operator::BINARY)
485                                 left = parse_binary(left, *oper);
486                         else
487                                 throw parse_error(tokenizer.get_location(), token, "an operator");
488                         left_var = 0;
489                 }
490                 else
491                 {
492                         if(token=="(")
493                         {
494                                 tokenizer.parse_token();
495                                 RefPtr<ParenthesizedExpression> parexpr = create_node<ParenthesizedExpression>();
496                                 parexpr->expression = parse_expression();
497                                 tokenizer.expect(")");
498                                 left = parexpr;
499                         }
500                         else if(isdigit(token[0]) || token=="true" || token=="false")
501                                 left = parse_literal();
502                         else if(is_identifier(token))
503                         {
504                                 RefPtr<VariableReference> var = create_node<VariableReference>();
505                                 var->name = expect_identifier();
506                                 left = var;
507                                 left_var = var.get();
508                         }
509                         else if(oper && oper->type==Operator::PREFIX)
510                         {
511                                 RefPtr<UnaryExpression> unary = create_node<UnaryExpression>();
512                                 unary->oper = oper;
513                                 tokenizer.parse_token();
514                                 unary->expression = parse_expression(oper);
515                                 left = unary;
516                         }
517                         else
518                                 throw parse_error(tokenizer.get_location(), token, "an expression");
519                 }
520         }
521 }
522
523 RefPtr<Literal> Parser::parse_literal()
524 {
525         RefPtr<Literal> literal = create_node<Literal>();
526         literal->token = tokenizer.parse_token();
527         if(isdigit(literal->token[0]))
528         {
529                 // TODO have the tokenizer return the type of the token
530                 if(isnumrc(literal->token))
531                         literal->value = lexical_cast<int>(literal->token);
532                 else
533                         literal->value = lexical_cast<float>(literal->token);
534         }
535         else if(literal->token=="true" || literal->token=="false")
536                 literal->value = (literal->token=="true");
537         else
538                 throw parse_error(tokenizer.get_location(), literal->token, "a literal");
539
540         return literal;
541 }
542
543 RefPtr<BinaryExpression> Parser::parse_binary(const RefPtr<Expression> &left, const Operator &oper)
544 {
545         RefPtr<BinaryExpression> binary = (oper.precedence==16 ?
546                 static_cast<RefPtr<BinaryExpression> >(create_node<Assignment>()) : create_node<BinaryExpression>());
547         binary->left = left;
548         binary->oper = &oper;
549         tokenizer.expect(oper.token);
550         if(oper.token[0]=='[')
551         {
552                 binary->right = parse_expression();
553                 tokenizer.expect("]");
554         }
555         else
556                 binary->right = parse_expression(&oper);
557         return binary;
558 }
559
560 RefPtr<FunctionCall> Parser::parse_function_call(const VariableReference &var)
561 {
562         RefPtr<FunctionCall> call = create_node<FunctionCall>();
563         call->name = var.name;
564         call->constructor = is_type(call->name);
565         call->oper = &Operator::get_operator("(", Operator::POSTFIX);
566         tokenizer.expect("(");
567         while(tokenizer.peek_token()!=")")
568         {
569                 if(!call->arguments.empty())
570                         tokenizer.expect(",");
571                 call->arguments.push_back(parse_expression());
572         }
573         tokenizer.expect(")");
574         return call;
575 }
576
577 RefPtr<TypeDeclaration> Parser::parse_type_declaration()
578 {
579         tokenizer.expect("typedef");
580
581         RefPtr<TypeDeclaration> type;
582         if(tokenizer.peek_token()=="image")
583                 type = parse_image_type_declaration();
584         else
585                 type = parse_basic_type_declaration();
586
587         tokenizer.expect(";");
588         declared_types.insert(type->name);
589         return type;
590 }
591
592 RefPtr<BasicTypeDeclaration> Parser::parse_basic_type_declaration()
593 {
594         RefPtr<BasicTypeDeclaration> type = create_node<BasicTypeDeclaration>();
595
596         if(tokenizer.peek_token()=="vector")
597         {
598                 type->kind = BasicTypeDeclaration::VECTOR;
599
600                 tokenizer.parse_token();
601                 tokenizer.expect("(");
602                 type->size = expect_integer();
603                 tokenizer.expect(")");
604         }
605
606         type->base = expect_type();
607         type->name = expect_identifier();
608
609         if(type->kind==BasicTypeDeclaration::ALIAS && check("["))
610         {
611                 type->kind = BasicTypeDeclaration::ARRAY;
612                 tokenizer.expect("]");
613         }
614
615         return type;
616 }
617
618 RefPtr<ImageTypeDeclaration> Parser::parse_image_type_declaration()
619 {
620         tokenizer.expect("image");
621         tokenizer.expect("(");
622
623         RefPtr<ImageTypeDeclaration> type = create_node<ImageTypeDeclaration>();
624         while(1)
625         {
626                 string token = tokenizer.parse_token();
627                 if(token=="dimensions")
628                 {
629                         tokenizer.expect("=");
630                         token = tokenizer.parse_token();
631                         if(token=="1")
632                                 type->dimensions = ImageTypeDeclaration::ONE;
633                         else if(token=="2")
634                                 type->dimensions = ImageTypeDeclaration::TWO;
635                         else if(token=="3")
636                                 type->dimensions = ImageTypeDeclaration::THREE;
637                         else if(token=="cube")
638                                 type->dimensions = ImageTypeDeclaration::CUBE;
639                         else
640                                 throw parse_error(tokenizer.get_location(), token, "dimensions");
641
642                         if(check("["))
643                         {
644                                 type->array = true;
645                                 tokenizer.expect("]");
646                         }
647                 }
648                 else if(token=="sampled")
649                         type->sampled = true;
650                 else if(token=="shadow")
651                         type->shadow = true;
652                 else
653                         throw parse_error(tokenizer.get_location(), token, "image type attribute");
654
655                 token = tokenizer.peek_token();
656                 if(token==")")
657                         break;
658
659                 tokenizer.expect(",");
660         }
661         tokenizer.expect(")");
662
663         type->base = expect_type();
664         type->name = expect_identifier();
665
666         return type;
667 }
668
669 RefPtr<StructDeclaration> Parser::parse_struct_declaration()
670 {
671         tokenizer.expect("struct");
672         RefPtr<StructDeclaration> strct = create_node<StructDeclaration>();
673
674         strct->name = expect_identifier();
675         parse_block(strct->members, true, &Parser::parse_variable_declaration);
676         tokenizer.expect(";");
677
678         declared_types.insert(strct->name);
679         return strct;
680 }
681
682 RefPtr<VariableDeclaration> Parser::parse_variable_declaration()
683 {
684         RefPtr<VariableDeclaration> var = create_node<VariableDeclaration>();
685
686         string token = tokenizer.peek_token();
687         while(is_qualifier(token))
688         {
689                 tokenizer.parse_token();
690                 if(is_interface_qualifier(token))
691                         var->interface = token;
692                 else if(is_sampling_qualifier(token))
693                         var->sampling = token;
694                 else if(is_interpolation_qualifier(token))
695                         var->interpolation = token;
696                 else if(is_precision_qualifier(token))
697                         var->precision = token;
698                 else if(token=="const")
699                         var->constant = true;
700                 token = tokenizer.peek_token();
701         }
702
703         var->type = expect_type();
704         var->name = expect_identifier();
705
706         if(check("["))
707         {
708                 var->array = true;
709                 if(!check("]"))
710                 {
711                         var->array_size = parse_expression();
712                         tokenizer.expect("]");
713                 }
714         }
715
716         if(check("="))
717                 var->init_expression = parse_expression();
718
719         tokenizer.expect(";");
720         return var;
721 }
722
723 RefPtr<VariableDeclaration> Parser::parse_variable_declaration_with_layout()
724 {
725         RefPtr<Layout> layout;
726         if(tokenizer.peek_token()=="layout")
727                 layout = parse_layout();
728
729         RefPtr<VariableDeclaration> var = parse_variable_declaration();
730         var->layout = layout;
731
732         return var;
733 }
734
735 RefPtr<FunctionDeclaration> Parser::parse_function_declaration()
736 {
737         RefPtr<FunctionDeclaration> func = create_node<FunctionDeclaration>();
738
739         func->return_type = expect_type();
740         func->name = expect_identifier();
741         tokenizer.expect("(");
742         while(tokenizer.peek_token()!=")")
743         {
744                 if(!func->parameters.empty())
745                         tokenizer.expect(",");
746
747                 RefPtr<VariableDeclaration> var = create_node<VariableDeclaration>();
748                 string token = tokenizer.peek_token();
749                 if(token=="in" || token=="out" || token=="inout")
750                         var->interface = tokenizer.parse_token();
751                 var->type = expect_type();
752                 var->name = expect_identifier();
753                 func->parameters.push_back(var);
754         }
755         tokenizer.expect(")");
756
757         string token = tokenizer.peek_token();
758         if(token=="{")
759         {
760                 func->definition = func.get();
761                 parse_block(func->body, true, &Parser::parse_statement);
762         }
763         else if(token==";")
764                 tokenizer.parse_token();
765         else
766                 throw parse_error(tokenizer.get_location(), token, "'{' or ';'");
767
768         return func;
769 }
770
771 RefPtr<InterfaceBlock> Parser::parse_interface_block()
772 {
773         RefPtr<InterfaceBlock> iface = create_node<InterfaceBlock>();
774
775         iface->interface = tokenizer.parse_token();
776         if(!is_interface_qualifier(iface->interface))
777                 throw parse_error(tokenizer.get_location(), iface->interface, "an interface qualifier");
778
779         iface->name = expect_identifier();
780         iface->members = new Block;
781         parse_block(*iface->members, true, &Parser::parse_variable_declaration_with_layout);
782         if(!check(";"))
783         {
784                 iface->instance_name = expect_identifier();
785                 if(check("["))
786                 {
787                         iface->array = true;
788                         tokenizer.expect("]");
789                 }
790                 tokenizer.expect(";");
791         }
792
793         return iface;
794 }
795
796 RefPtr<Conditional> Parser::parse_conditional()
797 {
798         tokenizer.expect("if");
799         RefPtr<Conditional> cond = create_node<Conditional>();
800         tokenizer.expect("(");
801         cond->condition = parse_expression();
802         tokenizer.expect(")");
803
804         parse_block(cond->body, false, &Parser::parse_statement);
805
806         string token = tokenizer.peek_token();
807         if(token=="else")
808         {
809                 tokenizer.parse_token();
810                 parse_block(cond->else_body, false, &Parser::parse_statement);
811         }
812
813         return cond;
814 }
815
816 RefPtr<Iteration> Parser::parse_for()
817 {
818         tokenizer.expect("for");
819         RefPtr<Iteration> loop = create_node<Iteration>();
820         tokenizer.expect("(");
821         string token = tokenizer.peek_token();
822         if(is_type(token))
823                 loop->init_statement = parse_statement();
824         else
825         {
826                 if(token!=";")
827                 {
828                         RefPtr<ExpressionStatement> expr = create_node<ExpressionStatement>();
829                         expr->expression = parse_expression();
830                         loop->init_statement = expr;
831                 }
832                 tokenizer.expect(";");
833         }
834         if(tokenizer.peek_token()!=";")
835                 loop->condition = parse_expression();
836         tokenizer.expect(";");
837         if(tokenizer.peek_token()!=")")
838                 loop->loop_expression = parse_expression();
839         tokenizer.expect(")");
840
841         parse_block(loop->body, false, &Parser::parse_statement);
842
843         return loop;
844 }
845
846 RefPtr<Iteration> Parser::parse_while()
847 {
848         tokenizer.expect("while");
849         RefPtr<Iteration> loop = create_node<Iteration>();
850         tokenizer.expect("(");
851         loop->condition = parse_expression();
852         tokenizer.expect(")");
853
854         parse_block(loop->body, false, &Parser::parse_statement);
855
856         return loop;
857 }
858
859 RefPtr<Passthrough> Parser::parse_passthrough()
860 {
861         tokenizer.expect("passthrough");
862         RefPtr<Passthrough> pass = create_node<Passthrough>();
863         if(cur_stage->type==Stage::GEOMETRY)
864         {
865                 tokenizer.expect("[");
866                 pass->subscript = parse_expression();
867                 tokenizer.expect("]");
868         }
869         tokenizer.expect(";");
870         return pass;
871 }
872
873 RefPtr<Return> Parser::parse_return()
874 {
875         tokenizer.expect("return");
876         RefPtr<Return> ret = create_node<Return>();
877         if(tokenizer.peek_token()!=";")
878                 ret->expression = parse_expression();
879         tokenizer.expect(";");
880         return ret;
881 }
882
883 } // namespace SL
884 } // namespace GL
885 } // namespace Msp