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John Bauman66b8ab22014-05-06 15:57:45 -04001//
John Baumand4ae8632014-05-06 16:18:33 -04002// Copyright (c) 2002-2013 The ANGLE Project Authors. All rights reserved.
John Bauman66b8ab22014-05-06 15:57:45 -04003// Use of this source code is governed by a BSD-style license that can be
4// found in the LICENSE file.
5//
6
Nicolas Capenscc863da2015-01-21 15:50:55 -05007#include "ParseHelper.h"
John Bauman66b8ab22014-05-06 15:57:45 -04008
9#include <stdarg.h>
10#include <stdio.h>
11
Nicolas Capenscc863da2015-01-21 15:50:55 -050012#include "glslang.h"
13#include "preprocessor/SourceLocation.h"
John Bauman66b8ab22014-05-06 15:57:45 -040014
15///////////////////////////////////////////////////////////////////////
16//
17// Sub- vector and matrix fields
18//
19////////////////////////////////////////////////////////////////////////
20
21//
22// Look at a '.' field selector string and change it into offsets
23// for a vector.
24//
25bool TParseContext::parseVectorFields(const TString& compString, int vecSize, TVectorFields& fields, int line)
26{
27 fields.num = (int) compString.size();
28 if (fields.num > 4) {
29 error(line, "illegal vector field selection", compString.c_str());
30 return false;
31 }
32
33 enum {
34 exyzw,
35 ergba,
John Baumand4ae8632014-05-06 16:18:33 -040036 estpq
John Bauman66b8ab22014-05-06 15:57:45 -040037 } fieldSet[4];
38
39 for (int i = 0; i < fields.num; ++i) {
40 switch (compString[i]) {
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040041 case 'x':
John Bauman66b8ab22014-05-06 15:57:45 -040042 fields.offsets[i] = 0;
43 fieldSet[i] = exyzw;
44 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040045 case 'r':
John Bauman66b8ab22014-05-06 15:57:45 -040046 fields.offsets[i] = 0;
47 fieldSet[i] = ergba;
48 break;
49 case 's':
50 fields.offsets[i] = 0;
51 fieldSet[i] = estpq;
52 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040053 case 'y':
John Bauman66b8ab22014-05-06 15:57:45 -040054 fields.offsets[i] = 1;
55 fieldSet[i] = exyzw;
56 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040057 case 'g':
John Bauman66b8ab22014-05-06 15:57:45 -040058 fields.offsets[i] = 1;
59 fieldSet[i] = ergba;
60 break;
61 case 't':
62 fields.offsets[i] = 1;
63 fieldSet[i] = estpq;
64 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040065 case 'z':
John Bauman66b8ab22014-05-06 15:57:45 -040066 fields.offsets[i] = 2;
67 fieldSet[i] = exyzw;
68 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040069 case 'b':
John Bauman66b8ab22014-05-06 15:57:45 -040070 fields.offsets[i] = 2;
71 fieldSet[i] = ergba;
72 break;
73 case 'p':
74 fields.offsets[i] = 2;
75 fieldSet[i] = estpq;
76 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040077 case 'w':
John Bauman66b8ab22014-05-06 15:57:45 -040078 fields.offsets[i] = 3;
79 fieldSet[i] = exyzw;
80 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -040081 case 'a':
John Bauman66b8ab22014-05-06 15:57:45 -040082 fields.offsets[i] = 3;
83 fieldSet[i] = ergba;
84 break;
85 case 'q':
86 fields.offsets[i] = 3;
87 fieldSet[i] = estpq;
88 break;
89 default:
90 error(line, "illegal vector field selection", compString.c_str());
91 return false;
92 }
93 }
94
95 for (int i = 0; i < fields.num; ++i) {
96 if (fields.offsets[i] >= vecSize) {
97 error(line, "vector field selection out of range", compString.c_str());
98 return false;
99 }
100
101 if (i > 0) {
102 if (fieldSet[i] != fieldSet[i-1]) {
103 error(line, "illegal - vector component fields not from the same set", compString.c_str());
104 return false;
105 }
106 }
107 }
108
109 return true;
110}
111
112
113//
114// Look at a '.' field selector string and change it into offsets
115// for a matrix.
116//
117bool TParseContext::parseMatrixFields(const TString& compString, int matSize, TMatrixFields& fields, int line)
118{
119 fields.wholeRow = false;
120 fields.wholeCol = false;
121 fields.row = -1;
122 fields.col = -1;
123
124 if (compString.size() != 2) {
125 error(line, "illegal length of matrix field selection", compString.c_str());
126 return false;
127 }
128
129 if (compString[0] == '_') {
130 if (compString[1] < '0' || compString[1] > '3') {
131 error(line, "illegal matrix field selection", compString.c_str());
132 return false;
133 }
134 fields.wholeCol = true;
135 fields.col = compString[1] - '0';
136 } else if (compString[1] == '_') {
137 if (compString[0] < '0' || compString[0] > '3') {
138 error(line, "illegal matrix field selection", compString.c_str());
139 return false;
140 }
141 fields.wholeRow = true;
142 fields.row = compString[0] - '0';
143 } else {
144 if (compString[0] < '0' || compString[0] > '3' ||
145 compString[1] < '0' || compString[1] > '3') {
146 error(line, "illegal matrix field selection", compString.c_str());
147 return false;
148 }
149 fields.row = compString[0] - '0';
150 fields.col = compString[1] - '0';
151 }
152
153 if (fields.row >= matSize || fields.col >= matSize) {
154 error(line, "matrix field selection out of range", compString.c_str());
155 return false;
156 }
157
158 return true;
159}
160
161///////////////////////////////////////////////////////////////////////
162//
163// Errors
164//
165////////////////////////////////////////////////////////////////////////
166
167//
168// Track whether errors have occurred.
169//
170void TParseContext::recover()
171{
172}
173
174//
175// Used by flex/bison to output all syntax and parsing errors.
176//
177void TParseContext::error(TSourceLoc loc,
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400178 const char* reason, const char* token,
John Bauman66b8ab22014-05-06 15:57:45 -0400179 const char* extraInfo)
180{
181 pp::SourceLocation srcLoc;
182 DecodeSourceLoc(loc, &srcLoc.file, &srcLoc.line);
183 diagnostics.writeInfo(pp::Diagnostics::PP_ERROR,
184 srcLoc, reason, token, extraInfo);
185
186}
187
188void TParseContext::warning(TSourceLoc loc,
189 const char* reason, const char* token,
190 const char* extraInfo) {
191 pp::SourceLocation srcLoc;
192 DecodeSourceLoc(loc, &srcLoc.file, &srcLoc.line);
193 diagnostics.writeInfo(pp::Diagnostics::PP_WARNING,
194 srcLoc, reason, token, extraInfo);
195}
196
197void TParseContext::trace(const char* str)
198{
199 diagnostics.writeDebug(str);
200}
201
202//
203// Same error message for all places assignments don't work.
204//
205void TParseContext::assignError(int line, const char* op, TString left, TString right)
206{
207 std::stringstream extraInfoStream;
208 extraInfoStream << "cannot convert from '" << right << "' to '" << left << "'";
209 std::string extraInfo = extraInfoStream.str();
210 error(line, "", op, extraInfo.c_str());
211}
212
213//
214// Same error message for all places unary operations don't work.
215//
216void TParseContext::unaryOpError(int line, const char* op, TString operand)
217{
218 std::stringstream extraInfoStream;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400219 extraInfoStream << "no operation '" << op << "' exists that takes an operand of type " << operand
John Bauman66b8ab22014-05-06 15:57:45 -0400220 << " (or there is no acceptable conversion)";
221 std::string extraInfo = extraInfoStream.str();
222 error(line, " wrong operand type", op, extraInfo.c_str());
223}
224
225//
226// Same error message for all binary operations don't work.
227//
228void TParseContext::binaryOpError(int line, const char* op, TString left, TString right)
229{
230 std::stringstream extraInfoStream;
231 extraInfoStream << "no operation '" << op << "' exists that takes a left-hand operand of type '" << left
232 << "' and a right operand of type '" << right << "' (or there is no acceptable conversion)";
233 std::string extraInfo = extraInfoStream.str();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400234 error(line, " wrong operand types ", op, extraInfo.c_str());
John Bauman66b8ab22014-05-06 15:57:45 -0400235}
236
237bool TParseContext::precisionErrorCheck(int line, TPrecision precision, TBasicType type){
238 if (!checksPrecisionErrors)
239 return false;
240 switch( type ){
241 case EbtFloat:
242 if( precision == EbpUndefined ){
243 error( line, "No precision specified for (float)", "" );
244 return true;
245 }
246 break;
247 case EbtInt:
248 if( precision == EbpUndefined ){
249 error( line, "No precision specified (int)", "" );
250 return true;
251 }
252 break;
253 default:
254 return false;
255 }
256 return false;
257}
258
259//
260// Both test and if necessary, spit out an error, to see if the node is really
261// an l-value that can be operated on this way.
262//
263// Returns true if the was an error.
264//
265bool TParseContext::lValueErrorCheck(int line, const char* op, TIntermTyped* node)
266{
267 TIntermSymbol* symNode = node->getAsSymbolNode();
268 TIntermBinary* binaryNode = node->getAsBinaryNode();
269
270 if (binaryNode) {
271 bool errorReturn;
272
273 switch(binaryNode->getOp()) {
274 case EOpIndexDirect:
275 case EOpIndexIndirect:
276 case EOpIndexDirectStruct:
277 return lValueErrorCheck(line, op, binaryNode->getLeft());
278 case EOpVectorSwizzle:
279 errorReturn = lValueErrorCheck(line, op, binaryNode->getLeft());
280 if (!errorReturn) {
281 int offset[4] = {0,0,0,0};
282
283 TIntermTyped* rightNode = binaryNode->getRight();
284 TIntermAggregate *aggrNode = rightNode->getAsAggregate();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400285
286 for (TIntermSequence::iterator p = aggrNode->getSequence().begin();
John Bauman66b8ab22014-05-06 15:57:45 -0400287 p != aggrNode->getSequence().end(); p++) {
Nicolas Capens198529d2015-02-10 13:54:19 -0500288 int value = (*p)->getAsTyped()->getAsConstantUnion()->getIConst(0);
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400289 offset[value]++;
John Bauman66b8ab22014-05-06 15:57:45 -0400290 if (offset[value] > 1) {
291 error(line, " l-value of swizzle cannot have duplicate components", op);
292
293 return true;
294 }
295 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400296 }
John Bauman66b8ab22014-05-06 15:57:45 -0400297
298 return errorReturn;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400299 default:
John Bauman66b8ab22014-05-06 15:57:45 -0400300 break;
301 }
302 error(line, " l-value required", op);
303
304 return true;
305 }
306
307
308 const char* symbol = 0;
309 if (symNode != 0)
310 symbol = symNode->getSymbol().c_str();
311
312 const char* message = 0;
313 switch (node->getQualifier()) {
314 case EvqConst: message = "can't modify a const"; break;
315 case EvqConstReadOnly: message = "can't modify a const"; break;
316 case EvqAttribute: message = "can't modify an attribute"; break;
317 case EvqUniform: message = "can't modify a uniform"; break;
318 case EvqVaryingIn: message = "can't modify a varying"; break;
319 case EvqInput: message = "can't modify an input"; break;
320 case EvqFragCoord: message = "can't modify gl_FragCoord"; break;
321 case EvqFrontFacing: message = "can't modify gl_FrontFacing"; break;
322 case EvqPointCoord: message = "can't modify gl_PointCoord"; break;
323 default:
324
325 //
326 // Type that can't be written to?
327 //
Nicolas Capense9c5e4f2014-05-28 22:46:43 -0400328 if(IsSampler(node->getBasicType()))
329 {
John Bauman66b8ab22014-05-06 15:57:45 -0400330 message = "can't modify a sampler";
Nicolas Capense9c5e4f2014-05-28 22:46:43 -0400331 }
332 else if(node->getBasicType() == EbtVoid)
333 {
John Bauman66b8ab22014-05-06 15:57:45 -0400334 message = "can't modify void";
John Bauman66b8ab22014-05-06 15:57:45 -0400335 }
336 }
337
338 if (message == 0 && binaryNode == 0 && symNode == 0) {
339 error(line, " l-value required", op);
340
341 return true;
342 }
343
344
345 //
346 // Everything else is okay, no error.
347 //
348 if (message == 0)
349 return false;
350
351 //
352 // If we get here, we have an error and a message.
353 //
354 if (symNode) {
355 std::stringstream extraInfoStream;
356 extraInfoStream << "\"" << symbol << "\" (" << message << ")";
357 std::string extraInfo = extraInfoStream.str();
358 error(line, " l-value required", op, extraInfo.c_str());
359 }
360 else {
361 std::stringstream extraInfoStream;
362 extraInfoStream << "(" << message << ")";
363 std::string extraInfo = extraInfoStream.str();
364 error(line, " l-value required", op, extraInfo.c_str());
365 }
366
367 return true;
368}
369
370//
371// Both test, and if necessary spit out an error, to see if the node is really
372// a constant.
373//
374// Returns true if the was an error.
375//
376bool TParseContext::constErrorCheck(TIntermTyped* node)
377{
378 if (node->getQualifier() == EvqConst)
379 return false;
380
381 error(node->getLine(), "constant expression required", "");
382
383 return true;
384}
385
386//
387// Both test, and if necessary spit out an error, to see if the node is really
388// an integer.
389//
390// Returns true if the was an error.
391//
392bool TParseContext::integerErrorCheck(TIntermTyped* node, const char* token)
393{
394 if (node->getBasicType() == EbtInt && node->getNominalSize() == 1)
395 return false;
396
397 error(node->getLine(), "integer expression required", token);
398
399 return true;
400}
401
402//
403// Both test, and if necessary spit out an error, to see if we are currently
404// globally scoped.
405//
406// Returns true if the was an error.
407//
408bool TParseContext::globalErrorCheck(int line, bool global, const char* token)
409{
410 if (global)
411 return false;
412
413 error(line, "only allowed at global scope", token);
414
415 return true;
416}
417
418//
419// For now, keep it simple: if it starts "gl_", it's reserved, independent
420// of scope. Except, if the symbol table is at the built-in push-level,
421// which is when we are parsing built-ins.
422// Also checks for "webgl_" and "_webgl_" reserved identifiers if parsing a
423// webgl shader.
424//
425// Returns true if there was an error.
426//
427bool TParseContext::reservedErrorCheck(int line, const TString& identifier)
428{
429 static const char* reservedErrMsg = "reserved built-in name";
430 if (!symbolTable.atBuiltInLevel()) {
431 if (identifier.compare(0, 3, "gl_") == 0) {
432 error(line, reservedErrMsg, "gl_");
433 return true;
434 }
John Bauman66b8ab22014-05-06 15:57:45 -0400435 if (identifier.find("__") != TString::npos) {
436 error(line, "identifiers containing two consecutive underscores (__) are reserved as possible future keywords", identifier.c_str());
437 return true;
438 }
439 }
440
441 return false;
442}
443
444//
445// Make sure there is enough data provided to the constructor to build
446// something of the type of the constructor. Also returns the type of
447// the constructor.
448//
449// Returns true if there was an error in construction.
450//
451bool TParseContext::constructorErrorCheck(int line, TIntermNode* node, TFunction& function, TOperator op, TType* type)
452{
453 *type = function.getReturnType();
454
455 bool constructingMatrix = false;
456 switch(op) {
457 case EOpConstructMat2:
458 case EOpConstructMat3:
459 case EOpConstructMat4:
460 constructingMatrix = true;
461 break;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400462 default:
John Bauman66b8ab22014-05-06 15:57:45 -0400463 break;
464 }
465
466 //
467 // Note: It's okay to have too many components available, but not okay to have unused
468 // arguments. 'full' will go to true when enough args have been seen. If we loop
469 // again, there is an extra argument, so 'overfull' will become true.
470 //
471
472 int size = 0;
473 bool constType = true;
474 bool full = false;
475 bool overFull = false;
476 bool matrixInMatrix = false;
477 bool arrayArg = false;
478 for (int i = 0; i < function.getParamCount(); ++i) {
479 const TParameter& param = function.getParam(i);
480 size += param.type->getObjectSize();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400481
John Bauman66b8ab22014-05-06 15:57:45 -0400482 if (constructingMatrix && param.type->isMatrix())
483 matrixInMatrix = true;
484 if (full)
485 overFull = true;
486 if (op != EOpConstructStruct && !type->isArray() && size >= type->getObjectSize())
487 full = true;
488 if (param.type->getQualifier() != EvqConst)
489 constType = false;
490 if (param.type->isArray())
491 arrayArg = true;
492 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400493
John Bauman66b8ab22014-05-06 15:57:45 -0400494 if (constType)
495 type->setQualifier(EvqConst);
496
497 if (type->isArray() && type->getArraySize() != function.getParamCount()) {
498 error(line, "array constructor needs one argument per array element", "constructor");
499 return true;
500 }
501
502 if (arrayArg && op != EOpConstructStruct) {
503 error(line, "constructing from a non-dereferenced array", "constructor");
504 return true;
505 }
506
507 if (matrixInMatrix && !type->isArray()) {
508 if (function.getParamCount() != 1) {
509 error(line, "constructing matrix from matrix can only take one argument", "constructor");
510 return true;
511 }
512 }
513
514 if (overFull) {
515 error(line, "too many arguments", "constructor");
516 return true;
517 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400518
John Bauman66b8ab22014-05-06 15:57:45 -0400519 if (op == EOpConstructStruct && !type->isArray() && int(type->getStruct()->size()) != function.getParamCount()) {
520 error(line, "Number of constructor parameters does not match the number of structure fields", "constructor");
521 return true;
522 }
523
524 if (!type->isMatrix() || !matrixInMatrix) {
525 if ((op != EOpConstructStruct && size != 1 && size < type->getObjectSize()) ||
526 (op == EOpConstructStruct && size < type->getObjectSize())) {
527 error(line, "not enough data provided for construction", "constructor");
528 return true;
529 }
530 }
531
532 TIntermTyped *typed = node ? node->getAsTyped() : 0;
533 if (typed == 0) {
534 error(line, "constructor argument does not have a type", "constructor");
535 return true;
536 }
537 if (op != EOpConstructStruct && IsSampler(typed->getBasicType())) {
538 error(line, "cannot convert a sampler", "constructor");
539 return true;
540 }
541 if (typed->getBasicType() == EbtVoid) {
542 error(line, "cannot convert a void", "constructor");
543 return true;
544 }
545
546 return false;
547}
548
549// This function checks to see if a void variable has been declared and raise an error message for such a case
550//
551// returns true in case of an error
552//
553bool TParseContext::voidErrorCheck(int line, const TString& identifier, const TPublicType& pubType)
554{
555 if (pubType.type == EbtVoid) {
556 error(line, "illegal use of type 'void'", identifier.c_str());
557 return true;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400558 }
John Bauman66b8ab22014-05-06 15:57:45 -0400559
560 return false;
561}
562
563// This function checks to see if the node (for the expression) contains a scalar boolean expression or not
564//
565// returns true in case of an error
566//
567bool TParseContext::boolErrorCheck(int line, const TIntermTyped* type)
568{
569 if (type->getBasicType() != EbtBool || type->isArray() || type->isMatrix() || type->isVector()) {
570 error(line, "boolean expression expected", "");
571 return true;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400572 }
John Bauman66b8ab22014-05-06 15:57:45 -0400573
574 return false;
575}
576
577// This function checks to see if the node (for the expression) contains a scalar boolean expression or not
578//
579// returns true in case of an error
580//
581bool TParseContext::boolErrorCheck(int line, const TPublicType& pType)
582{
583 if (pType.type != EbtBool || pType.array || pType.matrix || (pType.size > 1)) {
584 error(line, "boolean expression expected", "");
585 return true;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400586 }
John Bauman66b8ab22014-05-06 15:57:45 -0400587
588 return false;
589}
590
591bool TParseContext::samplerErrorCheck(int line, const TPublicType& pType, const char* reason)
592{
593 if (pType.type == EbtStruct) {
594 if (containsSampler(*pType.userDef)) {
595 error(line, reason, getBasicString(pType.type), "(structure contains a sampler)");
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400596
John Bauman66b8ab22014-05-06 15:57:45 -0400597 return true;
598 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400599
John Bauman66b8ab22014-05-06 15:57:45 -0400600 return false;
601 } else if (IsSampler(pType.type)) {
602 error(line, reason, getBasicString(pType.type));
603
604 return true;
605 }
606
607 return false;
608}
609
610bool TParseContext::structQualifierErrorCheck(int line, const TPublicType& pType)
611{
612 if ((pType.qualifier == EvqVaryingIn || pType.qualifier == EvqVaryingOut || pType.qualifier == EvqAttribute) &&
613 pType.type == EbtStruct) {
614 error(line, "cannot be used with a structure", getQualifierString(pType.qualifier));
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400615
John Bauman66b8ab22014-05-06 15:57:45 -0400616 return true;
617 }
618
619 if (pType.qualifier != EvqUniform && samplerErrorCheck(line, pType, "samplers must be uniform"))
620 return true;
621
622 return false;
623}
624
625bool TParseContext::parameterSamplerErrorCheck(int line, TQualifier qualifier, const TType& type)
626{
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400627 if ((qualifier == EvqOut || qualifier == EvqInOut) &&
John Bauman66b8ab22014-05-06 15:57:45 -0400628 type.getBasicType() != EbtStruct && IsSampler(type.getBasicType())) {
629 error(line, "samplers cannot be output parameters", type.getBasicString());
630 return true;
631 }
632
633 return false;
634}
635
636bool TParseContext::containsSampler(TType& type)
637{
638 if (IsSampler(type.getBasicType()))
639 return true;
640
641 if (type.getBasicType() == EbtStruct) {
642 TTypeList& structure = *type.getStruct();
643 for (unsigned int i = 0; i < structure.size(); ++i) {
644 if (containsSampler(*structure[i].type))
645 return true;
646 }
647 }
648
649 return false;
650}
651
652//
653// Do size checking for an array type's size.
654//
655// Returns true if there was an error.
656//
657bool TParseContext::arraySizeErrorCheck(int line, TIntermTyped* expr, int& size)
658{
659 TIntermConstantUnion* constant = expr->getAsConstantUnion();
660 if (constant == 0 || constant->getBasicType() != EbtInt) {
661 error(line, "array size must be a constant integer expression", "");
662 return true;
663 }
664
Nicolas Capens198529d2015-02-10 13:54:19 -0500665 size = constant->getIConst(0);
John Bauman66b8ab22014-05-06 15:57:45 -0400666
667 if (size <= 0) {
668 error(line, "array size must be a positive integer", "");
669 size = 1;
670 return true;
671 }
672
673 return false;
674}
675
676//
677// See if this qualifier can be an array.
678//
679// Returns true if there is an error.
680//
681bool TParseContext::arrayQualifierErrorCheck(int line, TPublicType type)
682{
683 if ((type.qualifier == EvqAttribute) || (type.qualifier == EvqConst)) {
684 error(line, "cannot declare arrays of this qualifier", TType(type).getCompleteString().c_str());
685 return true;
686 }
687
688 return false;
689}
690
691//
692// See if this type can be an array.
693//
694// Returns true if there is an error.
695//
696bool TParseContext::arrayTypeErrorCheck(int line, TPublicType type)
697{
698 //
699 // Can the type be an array?
700 //
701 if (type.array) {
702 error(line, "cannot declare arrays of arrays", TType(type).getCompleteString().c_str());
703 return true;
704 }
705
706 return false;
707}
708
709//
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400710// Do all the semantic checking for declaring an array, with and
John Bauman66b8ab22014-05-06 15:57:45 -0400711// without a size, and make the right changes to the symbol table.
712//
713// size == 0 means no specified size.
714//
715// Returns true if there was an error.
716//
717bool TParseContext::arrayErrorCheck(int line, TString& identifier, TPublicType type, TVariable*& variable)
718{
719 //
720 // Don't check for reserved word use until after we know it's not in the symbol table,
721 // because reserved arrays can be redeclared.
722 //
723
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400724 bool builtIn = false;
John Bauman66b8ab22014-05-06 15:57:45 -0400725 bool sameScope = false;
726 TSymbol* symbol = symbolTable.find(identifier, &builtIn, &sameScope);
727 if (symbol == 0 || !sameScope) {
728 if (reservedErrorCheck(line, identifier))
729 return true;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400730
John Bauman66b8ab22014-05-06 15:57:45 -0400731 variable = new TVariable(&identifier, TType(type));
732
733 if (type.arraySize)
734 variable->getType().setArraySize(type.arraySize);
735
736 if (! symbolTable.insert(*variable)) {
737 delete variable;
738 error(line, "INTERNAL ERROR inserting new symbol", identifier.c_str());
739 return true;
740 }
741 } else {
742 if (! symbol->isVariable()) {
743 error(line, "variable expected", identifier.c_str());
744 return true;
745 }
746
747 variable = static_cast<TVariable*>(symbol);
748 if (! variable->getType().isArray()) {
749 error(line, "redeclaring non-array as array", identifier.c_str());
750 return true;
751 }
752 if (variable->getType().getArraySize() > 0) {
753 error(line, "redeclaration of array with size", identifier.c_str());
754 return true;
755 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400756
John Bauman66b8ab22014-05-06 15:57:45 -0400757 if (! variable->getType().sameElementType(TType(type))) {
758 error(line, "redeclaration of array with a different type", identifier.c_str());
759 return true;
760 }
761
762 TType* t = variable->getArrayInformationType();
763 while (t != 0) {
764 if (t->getMaxArraySize() > type.arraySize) {
765 error(line, "higher index value already used for the array", identifier.c_str());
766 return true;
767 }
768 t->setArraySize(type.arraySize);
769 t = t->getArrayInformationType();
770 }
771
772 if (type.arraySize)
773 variable->getType().setArraySize(type.arraySize);
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400774 }
John Bauman66b8ab22014-05-06 15:57:45 -0400775
776 if (voidErrorCheck(line, identifier, type))
777 return true;
778
779 return false;
780}
781
782bool TParseContext::arraySetMaxSize(TIntermSymbol *node, TType* type, int size, bool updateFlag, TSourceLoc line)
783{
784 bool builtIn = false;
785 TSymbol* symbol = symbolTable.find(node->getSymbol(), &builtIn);
786 if (symbol == 0) {
787 error(line, " undeclared identifier", node->getSymbol().c_str());
788 return true;
789 }
790 TVariable* variable = static_cast<TVariable*>(symbol);
791
792 type->setArrayInformationType(variable->getArrayInformationType());
793 variable->updateArrayInformationType(type);
794
795 // special casing to test index value of gl_FragData. If the accessed index is >= gl_MaxDrawBuffers
796 // its an error
797 if (node->getSymbol() == "gl_FragData") {
798 TSymbol* fragData = symbolTable.find("gl_MaxDrawBuffers", &builtIn);
799 ASSERT(fragData);
800
801 int fragDataValue = static_cast<TVariable*>(fragData)->getConstPointer()[0].getIConst();
802 if (fragDataValue <= size) {
803 error(line, "", "[", "gl_FragData can only have a max array size of up to gl_MaxDrawBuffers");
804 return true;
805 }
806 }
807
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400808 // we dont want to update the maxArraySize when this flag is not set, we just want to include this
John Bauman66b8ab22014-05-06 15:57:45 -0400809 // node type in the chain of node types so that its updated when a higher maxArraySize comes in.
810 if (!updateFlag)
811 return false;
812
813 size++;
814 variable->getType().setMaxArraySize(size);
815 type->setMaxArraySize(size);
816 TType* tt = type;
817
818 while(tt->getArrayInformationType() != 0) {
819 tt = tt->getArrayInformationType();
820 tt->setMaxArraySize(size);
821 }
822
823 return false;
824}
825
826//
827// Enforce non-initializer type/qualifier rules.
828//
829// Returns true if there was an error.
830//
831bool TParseContext::nonInitConstErrorCheck(int line, TString& identifier, TPublicType& type, bool array)
832{
833 if (type.qualifier == EvqConst)
834 {
835 // Make the qualifier make sense.
836 type.qualifier = EvqTemporary;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400837
John Bauman66b8ab22014-05-06 15:57:45 -0400838 if (array)
839 {
840 error(line, "arrays may not be declared constant since they cannot be initialized", identifier.c_str());
841 }
842 else if (type.isStructureContainingArrays())
843 {
844 error(line, "structures containing arrays may not be declared constant since they cannot be initialized", identifier.c_str());
845 }
846 else
847 {
848 error(line, "variables with qualifier 'const' must be initialized", identifier.c_str());
849 }
850
851 return true;
852 }
853
854 return false;
855}
856
857//
858// Do semantic checking for a variable declaration that has no initializer,
859// and update the symbol table.
860//
861// Returns true if there was an error.
862//
863bool TParseContext::nonInitErrorCheck(int line, TString& identifier, TPublicType& type, TVariable*& variable)
864{
865 if (reservedErrorCheck(line, identifier))
866 recover();
867
868 variable = new TVariable(&identifier, TType(type));
869
870 if (! symbolTable.insert(*variable)) {
871 error(line, "redefinition", variable->getName().c_str());
872 delete variable;
873 variable = 0;
874 return true;
875 }
876
877 if (voidErrorCheck(line, identifier, type))
878 return true;
879
880 return false;
881}
882
883bool TParseContext::paramErrorCheck(int line, TQualifier qualifier, TQualifier paramQualifier, TType* type)
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400884{
John Bauman66b8ab22014-05-06 15:57:45 -0400885 if (qualifier != EvqConst && qualifier != EvqTemporary) {
886 error(line, "qualifier not allowed on function parameter", getQualifierString(qualifier));
887 return true;
888 }
889 if (qualifier == EvqConst && paramQualifier != EvqIn) {
890 error(line, "qualifier not allowed with ", getQualifierString(qualifier), getQualifierString(paramQualifier));
891 return true;
892 }
893
894 if (qualifier == EvqConst)
895 type->setQualifier(EvqConstReadOnly);
896 else
897 type->setQualifier(paramQualifier);
898
899 return false;
900}
901
902bool TParseContext::extensionErrorCheck(int line, const TString& extension)
903{
904 const TExtensionBehavior& extBehavior = extensionBehavior();
905 TExtensionBehavior::const_iterator iter = extBehavior.find(extension.c_str());
906 if (iter == extBehavior.end()) {
907 error(line, "extension", extension.c_str(), "is not supported");
908 return true;
909 }
910 // In GLSL ES, an extension's default behavior is "disable".
911 if (iter->second == EBhDisable || iter->second == EBhUndefined) {
912 error(line, "extension", extension.c_str(), "is disabled");
913 return true;
914 }
915 if (iter->second == EBhWarn) {
916 warning(line, "extension", extension.c_str(), "is being used");
917 return false;
918 }
919
920 return false;
921}
922
923bool TParseContext::supportsExtension(const char* extension)
924{
925 const TExtensionBehavior& extbehavior = extensionBehavior();
926 TExtensionBehavior::const_iterator iter = extbehavior.find(extension);
927 return (iter != extbehavior.end());
928}
929
930void TParseContext::handleExtensionDirective(int line, const char* extName, const char* behavior)
931{
932 pp::SourceLocation loc;
933 DecodeSourceLoc(line, &loc.file, &loc.line);
934 directiveHandler.handleExtension(loc, extName, behavior);
935}
936
937void TParseContext::handlePragmaDirective(int line, const char* name, const char* value)
938{
939 pp::SourceLocation loc;
940 DecodeSourceLoc(line, &loc.file, &loc.line);
941 directiveHandler.handlePragma(loc, name, value);
942}
943
944/////////////////////////////////////////////////////////////////////////////////
945//
946// Non-Errors.
947//
948/////////////////////////////////////////////////////////////////////////////////
949
950//
951// Look up a function name in the symbol table, and make sure it is a function.
952//
953// Return the function symbol if found, otherwise 0.
954//
955const TFunction* TParseContext::findFunction(int line, TFunction* call, bool *builtIn)
956{
957 // First find by unmangled name to check whether the function name has been
958 // hidden by a variable name or struct typename.
959 const TSymbol* symbol = symbolTable.find(call->getName(), builtIn);
960 if (symbol == 0) {
961 symbol = symbolTable.find(call->getMangledName(), builtIn);
962 }
963
964 if (symbol == 0) {
965 error(line, "no matching overloaded function found", call->getName().c_str());
966 return 0;
967 }
968
969 if (!symbol->isFunction()) {
970 error(line, "function name expected", call->getName().c_str());
971 return 0;
972 }
973
974 return static_cast<const TFunction*>(symbol);
975}
976
977//
978// Initializers show up in several places in the grammar. Have one set of
979// code to handle them here.
980//
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400981bool TParseContext::executeInitializer(TSourceLoc line, TString& identifier, TPublicType& pType,
John Bauman66b8ab22014-05-06 15:57:45 -0400982 TIntermTyped* initializer, TIntermNode*& intermNode, TVariable* variable)
983{
984 TType type = TType(pType);
985
986 if (variable == 0) {
987 if (reservedErrorCheck(line, identifier))
988 return true;
989
990 if (voidErrorCheck(line, identifier, pType))
991 return true;
992
993 //
994 // add variable to symbol table
995 //
996 variable = new TVariable(&identifier, type);
997 if (! symbolTable.insert(*variable)) {
998 error(line, "redefinition", variable->getName().c_str());
999 return true;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001000 // don't delete variable, it's used by error recovery, and the pool
John Bauman66b8ab22014-05-06 15:57:45 -04001001 // pop will take care of the memory
1002 }
1003 }
1004
1005 //
1006 // identifier must be of type constant, a global, or a temporary
1007 //
1008 TQualifier qualifier = variable->getType().getQualifier();
1009 if ((qualifier != EvqTemporary) && (qualifier != EvqGlobal) && (qualifier != EvqConst)) {
1010 error(line, " cannot initialize this type of qualifier ", variable->getType().getQualifierString());
1011 return true;
1012 }
1013 //
1014 // test for and propagate constant
1015 //
1016
1017 if (qualifier == EvqConst) {
1018 if (qualifier != initializer->getType().getQualifier()) {
1019 std::stringstream extraInfoStream;
1020 extraInfoStream << "'" << variable->getType().getCompleteString() << "'";
1021 std::string extraInfo = extraInfoStream.str();
1022 error(line, " assigning non-constant to", "=", extraInfo.c_str());
1023 variable->getType().setQualifier(EvqTemporary);
1024 return true;
1025 }
1026 if (type != initializer->getType()) {
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001027 error(line, " non-matching types for const initializer ",
John Bauman66b8ab22014-05-06 15:57:45 -04001028 variable->getType().getQualifierString());
1029 variable->getType().setQualifier(EvqTemporary);
1030 return true;
1031 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001032 if (initializer->getAsConstantUnion()) {
John Bauman66b8ab22014-05-06 15:57:45 -04001033 ConstantUnion* unionArray = variable->getConstPointer();
1034
1035 if (type.getObjectSize() == 1 && type.getBasicType() != EbtStruct) {
1036 *unionArray = (initializer->getAsConstantUnion()->getUnionArrayPointer())[0];
1037 } else {
1038 variable->shareConstPointer(initializer->getAsConstantUnion()->getUnionArrayPointer());
1039 }
1040 } else if (initializer->getAsSymbolNode()) {
1041 const TSymbol* symbol = symbolTable.find(initializer->getAsSymbolNode()->getSymbol());
1042 const TVariable* tVar = static_cast<const TVariable*>(symbol);
1043
1044 ConstantUnion* constArray = tVar->getConstPointer();
1045 variable->shareConstPointer(constArray);
1046 } else {
1047 std::stringstream extraInfoStream;
1048 extraInfoStream << "'" << variable->getType().getCompleteString() << "'";
1049 std::string extraInfo = extraInfoStream.str();
1050 error(line, " cannot assign to", "=", extraInfo.c_str());
1051 variable->getType().setQualifier(EvqTemporary);
1052 return true;
1053 }
1054 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001055
John Bauman66b8ab22014-05-06 15:57:45 -04001056 if (qualifier != EvqConst) {
1057 TIntermSymbol* intermSymbol = intermediate.addSymbol(variable->getUniqueId(), variable->getName(), variable->getType(), line);
1058 intermNode = intermediate.addAssign(EOpInitialize, intermSymbol, initializer, line);
1059 if (intermNode == 0) {
1060 assignError(line, "=", intermSymbol->getCompleteString(), initializer->getCompleteString());
1061 return true;
1062 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001063 } else
John Bauman66b8ab22014-05-06 15:57:45 -04001064 intermNode = 0;
1065
1066 return false;
1067}
1068
1069bool TParseContext::areAllChildConst(TIntermAggregate* aggrNode)
1070{
1071 ASSERT(aggrNode != NULL);
1072 if (!aggrNode->isConstructor())
1073 return false;
1074
1075 bool allConstant = true;
1076
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001077 // check if all the child nodes are constants so that they can be inserted into
John Bauman66b8ab22014-05-06 15:57:45 -04001078 // the parent node
1079 TIntermSequence &sequence = aggrNode->getSequence() ;
1080 for (TIntermSequence::iterator p = sequence.begin(); p != sequence.end(); ++p) {
1081 if (!(*p)->getAsTyped()->getAsConstantUnion())
1082 return false;
1083 }
1084
1085 return allConstant;
1086}
1087
1088// This function is used to test for the correctness of the parameters passed to various constructor functions
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001089// and also convert them to the right datatype if it is allowed and required.
John Bauman66b8ab22014-05-06 15:57:45 -04001090//
1091// Returns 0 for an error or the constructed node (aggregate or typed) for no error.
1092//
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001093TIntermTyped* TParseContext::addConstructor(TIntermNode* arguments, const TType* type, TOperator op, TFunction* fnCall, TSourceLoc line)
John Bauman66b8ab22014-05-06 15:57:45 -04001094{
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001095 TIntermAggregate *aggregateArguments = arguments->getAsAggregate();
John Bauman66b8ab22014-05-06 15:57:45 -04001096
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001097 if(!aggregateArguments)
1098 {
1099 aggregateArguments = new TIntermAggregate;
1100 aggregateArguments->getSequence().push_back(arguments);
John Bauman66b8ab22014-05-06 15:57:45 -04001101 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001102
1103 if(op == EOpConstructStruct)
1104 {
1105 TTypeList &fields = *type->getStruct();
1106 TIntermSequence &args = aggregateArguments->getSequence();
1107
1108 for(size_t i = 0; i < fields.size(); i++)
1109 {
1110 if(args[i]->getAsTyped()->getType() != *fields[i].type)
1111 {
1112 error(line, "Structure constructor arguments do not match structure fields", "Error");
1113 recover();
1114
1115 return 0;
1116 }
John Bauman66b8ab22014-05-06 15:57:45 -04001117 }
1118 }
1119
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001120 // Turn the argument list itself into a constructor
1121 TIntermTyped *constructor = intermediate.setAggregateOperator(aggregateArguments, op, line);
1122 TIntermTyped *constConstructor = foldConstConstructor(constructor->getAsAggregate(), *type);
1123 if(constConstructor)
1124 {
John Bauman66b8ab22014-05-06 15:57:45 -04001125 return constConstructor;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001126 }
John Bauman66b8ab22014-05-06 15:57:45 -04001127
1128 return constructor;
1129}
1130
1131TIntermTyped* TParseContext::foldConstConstructor(TIntermAggregate* aggrNode, const TType& type)
1132{
1133 bool canBeFolded = areAllChildConst(aggrNode);
1134 aggrNode->setType(type);
1135 if (canBeFolded) {
1136 bool returnVal = false;
1137 ConstantUnion* unionArray = new ConstantUnion[type.getObjectSize()];
1138 if (aggrNode->getSequence().size() == 1) {
John Baumand4ae8632014-05-06 16:18:33 -04001139 returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), type, true);
John Bauman66b8ab22014-05-06 15:57:45 -04001140 }
1141 else {
John Baumand4ae8632014-05-06 16:18:33 -04001142 returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), type);
John Bauman66b8ab22014-05-06 15:57:45 -04001143 }
1144 if (returnVal)
1145 return 0;
1146
1147 return intermediate.addConstantUnion(unionArray, type, aggrNode->getLine());
1148 }
1149
1150 return 0;
1151}
1152
John Bauman66b8ab22014-05-06 15:57:45 -04001153//
1154// This function returns the tree representation for the vector field(s) being accessed from contant vector.
1155// If only one component of vector is accessed (v.x or v[0] where v is a contant vector), then a contant node is
1156// returned, else an aggregate node is returned (for v.xy). The input to this function could either be the symbol
1157// node or it could be the intermediate tree representation of accessing fields in a constant structure or column of
1158// a constant matrix.
1159//
1160TIntermTyped* TParseContext::addConstVectorNode(TVectorFields& fields, TIntermTyped* node, TSourceLoc line)
1161{
1162 TIntermTyped* typedNode;
1163 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
1164
1165 ConstantUnion *unionArray;
1166 if (tempConstantNode) {
1167 unionArray = tempConstantNode->getUnionArrayPointer();
John Bauman66b8ab22014-05-06 15:57:45 -04001168
1169 if (!unionArray) {
1170 return node;
1171 }
1172 } else { // The node has to be either a symbol node or an aggregate node or a tempConstant node, else, its an error
1173 error(line, "Cannot offset into the vector", "Error");
1174 recover();
1175
1176 return 0;
1177 }
1178
1179 ConstantUnion* constArray = new ConstantUnion[fields.num];
1180
1181 for (int i = 0; i < fields.num; i++) {
1182 if (fields.offsets[i] >= node->getType().getObjectSize()) {
1183 std::stringstream extraInfoStream;
1184 extraInfoStream << "vector field selection out of range '" << fields.offsets[i] << "'";
1185 std::string extraInfo = extraInfoStream.str();
1186 error(line, "", "[", extraInfo.c_str());
1187 recover();
1188 fields.offsets[i] = 0;
1189 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001190
John Bauman66b8ab22014-05-06 15:57:45 -04001191 constArray[i] = unionArray[fields.offsets[i]];
1192
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001193 }
John Bauman66b8ab22014-05-06 15:57:45 -04001194 typedNode = intermediate.addConstantUnion(constArray, node->getType(), line);
1195 return typedNode;
1196}
1197
1198//
1199// This function returns the column being accessed from a constant matrix. The values are retrieved from
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001200// the symbol table and parse-tree is built for a vector (each column of a matrix is a vector). The input
1201// to the function could either be a symbol node (m[0] where m is a constant matrix)that represents a
John Bauman66b8ab22014-05-06 15:57:45 -04001202// constant matrix or it could be the tree representation of the constant matrix (s.m1[0] where s is a constant structure)
1203//
1204TIntermTyped* TParseContext::addConstMatrixNode(int index, TIntermTyped* node, TSourceLoc line)
1205{
1206 TIntermTyped* typedNode;
1207 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
1208
1209 if (index >= node->getType().getNominalSize()) {
1210 std::stringstream extraInfoStream;
1211 extraInfoStream << "matrix field selection out of range '" << index << "'";
1212 std::string extraInfo = extraInfoStream.str();
1213 error(line, "", "[", extraInfo.c_str());
1214 recover();
1215 index = 0;
1216 }
1217
1218 if (tempConstantNode) {
1219 ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer();
1220 int size = tempConstantNode->getType().getNominalSize();
1221 typedNode = intermediate.addConstantUnion(&unionArray[size*index], tempConstantNode->getType(), line);
1222 } else {
1223 error(line, "Cannot offset into the matrix", "Error");
1224 recover();
1225
1226 return 0;
1227 }
1228
1229 return typedNode;
1230}
1231
1232
1233//
1234// This function returns an element of an array accessed from a constant array. The values are retrieved from
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001235// the symbol table and parse-tree is built for the type of the element. The input
1236// to the function could either be a symbol node (a[0] where a is a constant array)that represents a
John Bauman66b8ab22014-05-06 15:57:45 -04001237// constant array or it could be the tree representation of the constant array (s.a1[0] where s is a constant structure)
1238//
1239TIntermTyped* TParseContext::addConstArrayNode(int index, TIntermTyped* node, TSourceLoc line)
1240{
1241 TIntermTyped* typedNode;
1242 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
1243 TType arrayElementType = node->getType();
1244 arrayElementType.clearArrayness();
1245
1246 if (index >= node->getType().getArraySize()) {
1247 std::stringstream extraInfoStream;
1248 extraInfoStream << "array field selection out of range '" << index << "'";
1249 std::string extraInfo = extraInfoStream.str();
1250 error(line, "", "[", extraInfo.c_str());
1251 recover();
1252 index = 0;
1253 }
1254
1255 int arrayElementSize = arrayElementType.getObjectSize();
1256
1257 if (tempConstantNode) {
1258 ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer();
1259 typedNode = intermediate.addConstantUnion(&unionArray[arrayElementSize * index], tempConstantNode->getType(), line);
1260 } else {
1261 error(line, "Cannot offset into the array", "Error");
1262 recover();
1263
1264 return 0;
1265 }
1266
1267 return typedNode;
1268}
1269
1270
1271//
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001272// This function returns the value of a particular field inside a constant structure from the symbol table.
John Bauman66b8ab22014-05-06 15:57:45 -04001273// If there is an embedded/nested struct, it appropriately calls addConstStructNested or addConstStructFromAggr
1274// function and returns the parse-tree with the values of the embedded/nested struct.
1275//
1276TIntermTyped* TParseContext::addConstStruct(TString& identifier, TIntermTyped* node, TSourceLoc line)
1277{
1278 const TTypeList* fields = node->getType().getStruct();
1279 TIntermTyped *typedNode;
1280 int instanceSize = 0;
1281 unsigned int index = 0;
1282 TIntermConstantUnion *tempConstantNode = node->getAsConstantUnion();
1283
1284 for ( index = 0; index < fields->size(); ++index) {
1285 if ((*fields)[index].type->getFieldName() == identifier) {
1286 break;
1287 } else {
1288 instanceSize += (*fields)[index].type->getObjectSize();
1289 }
1290 }
1291
1292 if (tempConstantNode) {
1293 ConstantUnion* constArray = tempConstantNode->getUnionArrayPointer();
1294
1295 typedNode = intermediate.addConstantUnion(constArray+instanceSize, tempConstantNode->getType(), line); // type will be changed in the calling function
1296 } else {
1297 error(line, "Cannot offset into the structure", "Error");
1298 recover();
1299
1300 return 0;
1301 }
1302
1303 return typedNode;
1304}
1305
1306bool TParseContext::enterStructDeclaration(int line, const TString& identifier)
1307{
1308 ++structNestingLevel;
1309
1310 // Embedded structure definitions are not supported per GLSL ES spec.
1311 // They aren't allowed in GLSL either, but we need to detect this here
1312 // so we don't rely on the GLSL compiler to catch it.
1313 if (structNestingLevel > 1) {
1314 error(line, "", "Embedded struct definitions are not allowed");
1315 return true;
1316 }
1317
1318 return false;
1319}
1320
1321void TParseContext::exitStructDeclaration()
1322{
1323 --structNestingLevel;
1324}
1325
John Bauman66b8ab22014-05-06 15:57:45 -04001326//
1327// Parse an array of strings using yyparse.
1328//
1329// Returns 0 for success.
1330//
1331int PaParseStrings(int count, const char* const string[], const int length[],
1332 TParseContext* context) {
1333 if ((count == 0) || (string == NULL))
1334 return 1;
1335
1336 if (glslang_initialize(context))
1337 return 1;
1338
1339 int error = glslang_scan(count, string, length, context);
1340 if (!error)
1341 error = glslang_parse(context);
1342
1343 glslang_finalize(context);
1344
1345 return (error == 0) && (context->numErrors() == 0) ? 0 : 1;
1346}
1347
1348
1349