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Nicolas Capens0bac2852016-05-07 06:09:58 -04001// Copyright 2016 The SwiftShader Authors. All Rights Reserved.
John Bauman66b8ab22014-05-06 15:57:45 -04002//
Nicolas Capens0bac2852016-05-07 06:09:58 -04003// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
John Bauman66b8ab22014-05-06 15:57:45 -04006//
Nicolas Capens0bac2852016-05-07 06:09:58 -04007// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
John Bauman66b8ab22014-05-06 15:57:45 -040014
Nicolas Capenscc863da2015-01-21 15:50:55 -050015#include "ParseHelper.h"
John Bauman66b8ab22014-05-06 15:57:45 -040016
Nicolas Capenscbd20d92017-12-19 00:07:50 -050017#include <limits>
John Bauman66b8ab22014-05-06 15:57:45 -040018#include <stdarg.h>
19#include <stdio.h>
20
Nicolas Capenscc863da2015-01-21 15:50:55 -050021#include "glslang.h"
22#include "preprocessor/SourceLocation.h"
Alexis Hetu76a343a2015-06-04 17:21:22 -040023#include "ValidateSwitch.h"
John Bauman66b8ab22014-05-06 15:57:45 -040024
25///////////////////////////////////////////////////////////////////////
26//
27// Sub- vector and matrix fields
28//
29////////////////////////////////////////////////////////////////////////
30
Alexis Hetuec93b1d2016-12-09 16:01:29 -050031namespace
32{
33 bool IsVaryingOut(TQualifier qualifier)
34 {
35 switch(qualifier)
36 {
37 case EvqVaryingOut:
38 case EvqSmoothOut:
39 case EvqFlatOut:
40 case EvqCentroidOut:
41 case EvqVertexOut:
42 return true;
43
44 default: break;
45 }
46
47 return false;
48 }
49
50 bool IsVaryingIn(TQualifier qualifier)
51 {
52 switch(qualifier)
53 {
54 case EvqVaryingIn:
55 case EvqSmoothIn:
56 case EvqFlatIn:
57 case EvqCentroidIn:
58 case EvqFragmentIn:
59 return true;
60
61 default: break;
62 }
63
64 return false;
65 }
66
67 bool IsVarying(TQualifier qualifier)
68 {
69 return IsVaryingIn(qualifier) || IsVaryingOut(qualifier);
70 }
71
72 bool IsAssignment(TOperator op)
73 {
74 switch(op)
75 {
76 case EOpPostIncrement:
77 case EOpPostDecrement:
78 case EOpPreIncrement:
79 case EOpPreDecrement:
80 case EOpAssign:
81 case EOpAddAssign:
82 case EOpSubAssign:
83 case EOpMulAssign:
84 case EOpVectorTimesMatrixAssign:
85 case EOpVectorTimesScalarAssign:
86 case EOpMatrixTimesScalarAssign:
87 case EOpMatrixTimesMatrixAssign:
88 case EOpDivAssign:
89 case EOpIModAssign:
90 case EOpBitShiftLeftAssign:
91 case EOpBitShiftRightAssign:
92 case EOpBitwiseAndAssign:
93 case EOpBitwiseXorAssign:
94 case EOpBitwiseOrAssign:
95 return true;
96 default:
97 return false;
98 }
99 }
100}
101
John Bauman66b8ab22014-05-06 15:57:45 -0400102//
103// Look at a '.' field selector string and change it into offsets
104// for a vector.
105//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400106bool TParseContext::parseVectorFields(const TString& compString, int vecSize, TVectorFields& fields, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -0400107{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400108 fields.num = (int) compString.size();
109 if (fields.num > 4) {
110 error(line, "illegal vector field selection", compString.c_str());
111 return false;
112 }
John Bauman66b8ab22014-05-06 15:57:45 -0400113
Nicolas Capens0bac2852016-05-07 06:09:58 -0400114 enum {
115 exyzw,
116 ergba,
117 estpq
118 } fieldSet[4];
John Bauman66b8ab22014-05-06 15:57:45 -0400119
Nicolas Capens0bac2852016-05-07 06:09:58 -0400120 for (int i = 0; i < fields.num; ++i) {
121 switch (compString[i]) {
122 case 'x':
123 fields.offsets[i] = 0;
124 fieldSet[i] = exyzw;
125 break;
126 case 'r':
127 fields.offsets[i] = 0;
128 fieldSet[i] = ergba;
129 break;
130 case 's':
131 fields.offsets[i] = 0;
132 fieldSet[i] = estpq;
133 break;
134 case 'y':
135 fields.offsets[i] = 1;
136 fieldSet[i] = exyzw;
137 break;
138 case 'g':
139 fields.offsets[i] = 1;
140 fieldSet[i] = ergba;
141 break;
142 case 't':
143 fields.offsets[i] = 1;
144 fieldSet[i] = estpq;
145 break;
146 case 'z':
147 fields.offsets[i] = 2;
148 fieldSet[i] = exyzw;
149 break;
150 case 'b':
151 fields.offsets[i] = 2;
152 fieldSet[i] = ergba;
153 break;
154 case 'p':
155 fields.offsets[i] = 2;
156 fieldSet[i] = estpq;
157 break;
158 case 'w':
159 fields.offsets[i] = 3;
160 fieldSet[i] = exyzw;
161 break;
162 case 'a':
163 fields.offsets[i] = 3;
164 fieldSet[i] = ergba;
165 break;
166 case 'q':
167 fields.offsets[i] = 3;
168 fieldSet[i] = estpq;
169 break;
170 default:
171 error(line, "illegal vector field selection", compString.c_str());
172 return false;
173 }
174 }
John Bauman66b8ab22014-05-06 15:57:45 -0400175
Nicolas Capens0bac2852016-05-07 06:09:58 -0400176 for (int i = 0; i < fields.num; ++i) {
177 if (fields.offsets[i] >= vecSize) {
178 error(line, "vector field selection out of range", compString.c_str());
179 return false;
180 }
John Bauman66b8ab22014-05-06 15:57:45 -0400181
Nicolas Capens0bac2852016-05-07 06:09:58 -0400182 if (i > 0) {
183 if (fieldSet[i] != fieldSet[i-1]) {
184 error(line, "illegal - vector component fields not from the same set", compString.c_str());
185 return false;
186 }
187 }
188 }
John Bauman66b8ab22014-05-06 15:57:45 -0400189
Nicolas Capens0bac2852016-05-07 06:09:58 -0400190 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400191}
192
John Bauman66b8ab22014-05-06 15:57:45 -0400193///////////////////////////////////////////////////////////////////////
194//
195// Errors
196//
197////////////////////////////////////////////////////////////////////////
198
199//
200// Track whether errors have occurred.
201//
202void TParseContext::recover()
203{
204}
205
206//
207// Used by flex/bison to output all syntax and parsing errors.
208//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400209void TParseContext::error(const TSourceLoc& loc,
Nicolas Capens0bac2852016-05-07 06:09:58 -0400210 const char* reason, const char* token,
211 const char* extraInfo)
John Bauman66b8ab22014-05-06 15:57:45 -0400212{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400213 pp::SourceLocation srcLoc(loc.first_file, loc.first_line);
214 mDiagnostics.writeInfo(pp::Diagnostics::PP_ERROR,
215 srcLoc, reason, token, extraInfo);
John Bauman66b8ab22014-05-06 15:57:45 -0400216
217}
218
Alexis Hetufe1269e2015-06-16 12:43:32 -0400219void TParseContext::warning(const TSourceLoc& loc,
Nicolas Capens0bac2852016-05-07 06:09:58 -0400220 const char* reason, const char* token,
221 const char* extraInfo) {
222 pp::SourceLocation srcLoc(loc.first_file, loc.first_line);
223 mDiagnostics.writeInfo(pp::Diagnostics::PP_WARNING,
224 srcLoc, reason, token, extraInfo);
John Bauman66b8ab22014-05-06 15:57:45 -0400225}
226
227void TParseContext::trace(const char* str)
228{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400229 mDiagnostics.writeDebug(str);
John Bauman66b8ab22014-05-06 15:57:45 -0400230}
231
232//
233// Same error message for all places assignments don't work.
234//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400235void TParseContext::assignError(const TSourceLoc &line, const char* op, TString left, TString right)
John Bauman66b8ab22014-05-06 15:57:45 -0400236{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400237 std::stringstream extraInfoStream;
238 extraInfoStream << "cannot convert from '" << right << "' to '" << left << "'";
239 std::string extraInfo = extraInfoStream.str();
240 error(line, "", op, extraInfo.c_str());
John Bauman66b8ab22014-05-06 15:57:45 -0400241}
242
243//
244// Same error message for all places unary operations don't work.
245//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400246void TParseContext::unaryOpError(const TSourceLoc &line, const char* op, TString operand)
John Bauman66b8ab22014-05-06 15:57:45 -0400247{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400248 std::stringstream extraInfoStream;
249 extraInfoStream << "no operation '" << op << "' exists that takes an operand of type " << operand
250 << " (or there is no acceptable conversion)";
251 std::string extraInfo = extraInfoStream.str();
252 error(line, " wrong operand type", op, extraInfo.c_str());
John Bauman66b8ab22014-05-06 15:57:45 -0400253}
254
255//
256// Same error message for all binary operations don't work.
257//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400258void TParseContext::binaryOpError(const TSourceLoc &line, const char* op, TString left, TString right)
John Bauman66b8ab22014-05-06 15:57:45 -0400259{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400260 std::stringstream extraInfoStream;
261 extraInfoStream << "no operation '" << op << "' exists that takes a left-hand operand of type '" << left
262 << "' and a right operand of type '" << right << "' (or there is no acceptable conversion)";
263 std::string extraInfo = extraInfoStream.str();
264 error(line, " wrong operand types ", op, extraInfo.c_str());
John Bauman66b8ab22014-05-06 15:57:45 -0400265}
266
Alexis Hetufe1269e2015-06-16 12:43:32 -0400267bool TParseContext::precisionErrorCheck(const TSourceLoc &line, TPrecision precision, TBasicType type){
Nicolas Capens0bac2852016-05-07 06:09:58 -0400268 if (!mChecksPrecisionErrors)
269 return false;
270 switch( type ){
271 case EbtFloat:
272 if( precision == EbpUndefined ){
273 error( line, "No precision specified for (float)", "" );
274 return true;
275 }
276 break;
277 case EbtInt:
278 if( precision == EbpUndefined ){
279 error( line, "No precision specified (int)", "" );
280 return true;
281 }
282 break;
283 default:
284 return false;
285 }
286 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400287}
288
289//
290// Both test and if necessary, spit out an error, to see if the node is really
291// an l-value that can be operated on this way.
292//
293// Returns true if the was an error.
294//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400295bool TParseContext::lValueErrorCheck(const TSourceLoc &line, const char* op, TIntermTyped* node)
John Bauman66b8ab22014-05-06 15:57:45 -0400296{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400297 TIntermSymbol* symNode = node->getAsSymbolNode();
298 TIntermBinary* binaryNode = node->getAsBinaryNode();
John Bauman66b8ab22014-05-06 15:57:45 -0400299
Nicolas Capens0bac2852016-05-07 06:09:58 -0400300 if (binaryNode) {
301 bool errorReturn;
John Bauman66b8ab22014-05-06 15:57:45 -0400302
Nicolas Capens0bac2852016-05-07 06:09:58 -0400303 switch(binaryNode->getOp()) {
304 case EOpIndexDirect:
305 case EOpIndexIndirect:
306 case EOpIndexDirectStruct:
307 return lValueErrorCheck(line, op, binaryNode->getLeft());
308 case EOpVectorSwizzle:
309 errorReturn = lValueErrorCheck(line, op, binaryNode->getLeft());
310 if (!errorReturn) {
311 int offset[4] = {0,0,0,0};
John Bauman66b8ab22014-05-06 15:57:45 -0400312
Nicolas Capens0bac2852016-05-07 06:09:58 -0400313 TIntermTyped* rightNode = binaryNode->getRight();
314 TIntermAggregate *aggrNode = rightNode->getAsAggregate();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400315
Nicolas Capens0bac2852016-05-07 06:09:58 -0400316 for (TIntermSequence::iterator p = aggrNode->getSequence().begin();
317 p != aggrNode->getSequence().end(); p++) {
318 int value = (*p)->getAsTyped()->getAsConstantUnion()->getIConst(0);
319 offset[value]++;
320 if (offset[value] > 1) {
321 error(line, " l-value of swizzle cannot have duplicate components", op);
John Bauman66b8ab22014-05-06 15:57:45 -0400322
Nicolas Capens0bac2852016-05-07 06:09:58 -0400323 return true;
324 }
325 }
326 }
John Bauman66b8ab22014-05-06 15:57:45 -0400327
Nicolas Capens0bac2852016-05-07 06:09:58 -0400328 return errorReturn;
Nicolas Capens91b425b2017-11-15 14:39:15 -0500329 case EOpIndexDirectInterfaceBlock:
Nicolas Capens0bac2852016-05-07 06:09:58 -0400330 default:
331 break;
332 }
333 error(line, " l-value required", op);
John Bauman66b8ab22014-05-06 15:57:45 -0400334
Nicolas Capens0bac2852016-05-07 06:09:58 -0400335 return true;
336 }
John Bauman66b8ab22014-05-06 15:57:45 -0400337
338
Nicolas Capens0bac2852016-05-07 06:09:58 -0400339 const char* symbol = 0;
340 if (symNode != 0)
341 symbol = symNode->getSymbol().c_str();
John Bauman66b8ab22014-05-06 15:57:45 -0400342
Nicolas Capens0bac2852016-05-07 06:09:58 -0400343 const char* message = 0;
344 switch (node->getQualifier()) {
345 case EvqConstExpr: message = "can't modify a const"; break;
346 case EvqConstReadOnly: message = "can't modify a const"; break;
347 case EvqAttribute: message = "can't modify an attribute"; break;
348 case EvqFragmentIn: message = "can't modify an input"; break;
349 case EvqVertexIn: message = "can't modify an input"; break;
350 case EvqUniform: message = "can't modify a uniform"; break;
351 case EvqSmoothIn:
352 case EvqFlatIn:
353 case EvqCentroidIn:
354 case EvqVaryingIn: message = "can't modify a varying"; break;
355 case EvqInput: message = "can't modify an input"; break;
356 case EvqFragCoord: message = "can't modify gl_FragCoord"; break;
357 case EvqFrontFacing: message = "can't modify gl_FrontFacing"; break;
358 case EvqPointCoord: message = "can't modify gl_PointCoord"; break;
359 case EvqInstanceID: message = "can't modify gl_InstanceID"; break;
Alexis Hetu877ddfc2017-07-25 17:48:00 -0400360 case EvqVertexID: message = "can't modify gl_VertexID"; break;
Nicolas Capens0bac2852016-05-07 06:09:58 -0400361 default:
John Bauman66b8ab22014-05-06 15:57:45 -0400362
Nicolas Capens0bac2852016-05-07 06:09:58 -0400363 //
364 // Type that can't be written to?
365 //
366 if(IsSampler(node->getBasicType()))
367 {
368 message = "can't modify a sampler";
369 }
370 else if(node->getBasicType() == EbtVoid)
371 {
372 message = "can't modify void";
373 }
374 }
John Bauman66b8ab22014-05-06 15:57:45 -0400375
Nicolas Capens0bac2852016-05-07 06:09:58 -0400376 if (message == 0 && binaryNode == 0 && symNode == 0) {
377 error(line, " l-value required", op);
John Bauman66b8ab22014-05-06 15:57:45 -0400378
Nicolas Capens0bac2852016-05-07 06:09:58 -0400379 return true;
380 }
John Bauman66b8ab22014-05-06 15:57:45 -0400381
382
Nicolas Capens0bac2852016-05-07 06:09:58 -0400383 //
384 // Everything else is okay, no error.
385 //
386 if (message == 0)
387 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400388
Nicolas Capens0bac2852016-05-07 06:09:58 -0400389 //
390 // If we get here, we have an error and a message.
391 //
392 if (symNode) {
393 std::stringstream extraInfoStream;
394 extraInfoStream << "\"" << symbol << "\" (" << message << ")";
395 std::string extraInfo = extraInfoStream.str();
396 error(line, " l-value required", op, extraInfo.c_str());
397 }
398 else {
399 std::stringstream extraInfoStream;
400 extraInfoStream << "(" << message << ")";
401 std::string extraInfo = extraInfoStream.str();
402 error(line, " l-value required", op, extraInfo.c_str());
403 }
John Bauman66b8ab22014-05-06 15:57:45 -0400404
Nicolas Capens0bac2852016-05-07 06:09:58 -0400405 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400406}
407
408//
409// Both test, and if necessary spit out an error, to see if the node is really
410// a constant.
411//
412// Returns true if the was an error.
413//
414bool TParseContext::constErrorCheck(TIntermTyped* node)
415{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400416 if (node->getQualifier() == EvqConstExpr)
417 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400418
Nicolas Capens0bac2852016-05-07 06:09:58 -0400419 error(node->getLine(), "constant expression required", "");
John Bauman66b8ab22014-05-06 15:57:45 -0400420
Nicolas Capens0bac2852016-05-07 06:09:58 -0400421 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400422}
423
424//
425// Both test, and if necessary spit out an error, to see if the node is really
426// an integer.
427//
428// Returns true if the was an error.
429//
430bool TParseContext::integerErrorCheck(TIntermTyped* node, const char* token)
431{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400432 if (node->isScalarInt())
433 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400434
Nicolas Capens0bac2852016-05-07 06:09:58 -0400435 error(node->getLine(), "integer expression required", token);
John Bauman66b8ab22014-05-06 15:57:45 -0400436
Nicolas Capens0bac2852016-05-07 06:09:58 -0400437 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400438}
439
440//
441// Both test, and if necessary spit out an error, to see if we are currently
442// globally scoped.
443//
444// Returns true if the was an error.
445//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400446bool TParseContext::globalErrorCheck(const TSourceLoc &line, bool global, const char* token)
John Bauman66b8ab22014-05-06 15:57:45 -0400447{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400448 if (global)
449 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400450
Nicolas Capens0bac2852016-05-07 06:09:58 -0400451 error(line, "only allowed at global scope", token);
John Bauman66b8ab22014-05-06 15:57:45 -0400452
Nicolas Capens0bac2852016-05-07 06:09:58 -0400453 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400454}
455
456//
457// For now, keep it simple: if it starts "gl_", it's reserved, independent
458// of scope. Except, if the symbol table is at the built-in push-level,
459// which is when we are parsing built-ins.
460// Also checks for "webgl_" and "_webgl_" reserved identifiers if parsing a
461// webgl shader.
462//
463// Returns true if there was an error.
464//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400465bool TParseContext::reservedErrorCheck(const TSourceLoc &line, const TString& identifier)
John Bauman66b8ab22014-05-06 15:57:45 -0400466{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400467 static const char* reservedErrMsg = "reserved built-in name";
468 if (!symbolTable.atBuiltInLevel()) {
469 if (identifier.compare(0, 3, "gl_") == 0) {
470 error(line, reservedErrMsg, "gl_");
471 return true;
472 }
473 if (identifier.find("__") != TString::npos) {
474 error(line, "identifiers containing two consecutive underscores (__) are reserved as possible future keywords", identifier.c_str());
475 return true;
476 }
477 }
John Bauman66b8ab22014-05-06 15:57:45 -0400478
Nicolas Capens0bac2852016-05-07 06:09:58 -0400479 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400480}
481
482//
483// Make sure there is enough data provided to the constructor to build
484// something of the type of the constructor. Also returns the type of
485// the constructor.
486//
487// Returns true if there was an error in construction.
488//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400489bool TParseContext::constructorErrorCheck(const TSourceLoc &line, TIntermNode* node, TFunction& function, TOperator op, TType* type)
John Bauman66b8ab22014-05-06 15:57:45 -0400490{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400491 *type = function.getReturnType();
John Bauman66b8ab22014-05-06 15:57:45 -0400492
Nicolas Capens0bac2852016-05-07 06:09:58 -0400493 bool constructingMatrix = false;
494 switch(op) {
495 case EOpConstructMat2:
496 case EOpConstructMat2x3:
497 case EOpConstructMat2x4:
498 case EOpConstructMat3x2:
499 case EOpConstructMat3:
500 case EOpConstructMat3x4:
501 case EOpConstructMat4x2:
502 case EOpConstructMat4x3:
503 case EOpConstructMat4:
504 constructingMatrix = true;
505 break;
506 default:
507 break;
508 }
John Bauman66b8ab22014-05-06 15:57:45 -0400509
Nicolas Capens0bac2852016-05-07 06:09:58 -0400510 //
511 // Note: It's okay to have too many components available, but not okay to have unused
512 // arguments. 'full' will go to true when enough args have been seen. If we loop
513 // again, there is an extra argument, so 'overfull' will become true.
514 //
John Bauman66b8ab22014-05-06 15:57:45 -0400515
Nicolas Capens0bac2852016-05-07 06:09:58 -0400516 size_t size = 0;
517 bool full = false;
518 bool overFull = false;
519 bool matrixInMatrix = false;
520 bool arrayArg = false;
521 for (size_t i = 0; i < function.getParamCount(); ++i) {
522 const TParameter& param = function.getParam(i);
523 size += param.type->getObjectSize();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400524
Nicolas Capens0bac2852016-05-07 06:09:58 -0400525 if (constructingMatrix && param.type->isMatrix())
526 matrixInMatrix = true;
527 if (full)
528 overFull = true;
529 if (op != EOpConstructStruct && !type->isArray() && size >= type->getObjectSize())
530 full = true;
531 if (param.type->isArray())
532 arrayArg = true;
533 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400534
Nicolas Capens0bac2852016-05-07 06:09:58 -0400535 if(type->isArray()) {
536 if(type->getArraySize() == 0) {
537 type->setArraySize(function.getParamCount());
538 } else if(type->getArraySize() != (int)function.getParamCount()) {
539 error(line, "array constructor needs one argument per array element", "constructor");
540 return true;
541 }
542 }
John Bauman66b8ab22014-05-06 15:57:45 -0400543
Nicolas Capens0bac2852016-05-07 06:09:58 -0400544 if (arrayArg && op != EOpConstructStruct) {
545 error(line, "constructing from a non-dereferenced array", "constructor");
546 return true;
547 }
John Bauman66b8ab22014-05-06 15:57:45 -0400548
Nicolas Capens0bac2852016-05-07 06:09:58 -0400549 if (matrixInMatrix && !type->isArray()) {
550 if (function.getParamCount() != 1) {
551 error(line, "constructing matrix from matrix can only take one argument", "constructor");
552 return true;
553 }
554 }
John Bauman66b8ab22014-05-06 15:57:45 -0400555
Nicolas Capens0bac2852016-05-07 06:09:58 -0400556 if (overFull) {
557 error(line, "too many arguments", "constructor");
558 return true;
559 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400560
Nicolas Capens0bac2852016-05-07 06:09:58 -0400561 if (op == EOpConstructStruct && !type->isArray() && type->getStruct()->fields().size() != function.getParamCount()) {
562 error(line, "Number of constructor parameters does not match the number of structure fields", "constructor");
563 return true;
564 }
John Bauman66b8ab22014-05-06 15:57:45 -0400565
Nicolas Capens0bac2852016-05-07 06:09:58 -0400566 if (!type->isMatrix() || !matrixInMatrix) {
567 if ((op != EOpConstructStruct && size != 1 && size < type->getObjectSize()) ||
568 (op == EOpConstructStruct && size < type->getObjectSize())) {
569 error(line, "not enough data provided for construction", "constructor");
570 return true;
571 }
572 }
John Bauman66b8ab22014-05-06 15:57:45 -0400573
Nicolas Capens0bac2852016-05-07 06:09:58 -0400574 TIntermTyped *typed = node ? node->getAsTyped() : 0;
575 if (typed == 0) {
576 error(line, "constructor argument does not have a type", "constructor");
577 return true;
578 }
579 if (op != EOpConstructStruct && IsSampler(typed->getBasicType())) {
580 error(line, "cannot convert a sampler", "constructor");
581 return true;
582 }
583 if (typed->getBasicType() == EbtVoid) {
584 error(line, "cannot convert a void", "constructor");
585 return true;
586 }
John Bauman66b8ab22014-05-06 15:57:45 -0400587
Nicolas Capens0bac2852016-05-07 06:09:58 -0400588 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400589}
590
591// This function checks to see if a void variable has been declared and raise an error message for such a case
592//
593// returns true in case of an error
594//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400595bool TParseContext::voidErrorCheck(const TSourceLoc &line, const TString& identifier, const TBasicType& type)
John Bauman66b8ab22014-05-06 15:57:45 -0400596{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400597 if(type == EbtVoid) {
598 error(line, "illegal use of type 'void'", identifier.c_str());
599 return true;
600 }
John Bauman66b8ab22014-05-06 15:57:45 -0400601
Nicolas Capens0bac2852016-05-07 06:09:58 -0400602 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400603}
604
605// This function checks to see if the node (for the expression) contains a scalar boolean expression or not
606//
607// returns true in case of an error
608//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400609bool TParseContext::boolErrorCheck(const TSourceLoc &line, const TIntermTyped* type)
John Bauman66b8ab22014-05-06 15:57:45 -0400610{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400611 if (type->getBasicType() != EbtBool || type->isArray() || type->isMatrix() || type->isVector()) {
612 error(line, "boolean expression expected", "");
613 return true;
614 }
John Bauman66b8ab22014-05-06 15:57:45 -0400615
Nicolas Capens0bac2852016-05-07 06:09:58 -0400616 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400617}
618
619// This function checks to see if the node (for the expression) contains a scalar boolean expression or not
620//
621// returns true in case of an error
622//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400623bool TParseContext::boolErrorCheck(const TSourceLoc &line, const TPublicType& pType)
John Bauman66b8ab22014-05-06 15:57:45 -0400624{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400625 if (pType.type != EbtBool || pType.array || (pType.primarySize > 1) || (pType.secondarySize > 1)) {
626 error(line, "boolean expression expected", "");
627 return true;
628 }
John Bauman66b8ab22014-05-06 15:57:45 -0400629
Nicolas Capens0bac2852016-05-07 06:09:58 -0400630 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400631}
632
Alexis Hetufe1269e2015-06-16 12:43:32 -0400633bool TParseContext::samplerErrorCheck(const TSourceLoc &line, const TPublicType& pType, const char* reason)
John Bauman66b8ab22014-05-06 15:57:45 -0400634{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400635 if (pType.type == EbtStruct) {
636 if (containsSampler(*pType.userDef)) {
637 error(line, reason, getBasicString(pType.type), "(structure contains a sampler)");
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400638
Nicolas Capens0bac2852016-05-07 06:09:58 -0400639 return true;
640 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400641
Nicolas Capens0bac2852016-05-07 06:09:58 -0400642 return false;
643 } else if (IsSampler(pType.type)) {
644 error(line, reason, getBasicString(pType.type));
John Bauman66b8ab22014-05-06 15:57:45 -0400645
Nicolas Capens0bac2852016-05-07 06:09:58 -0400646 return true;
647 }
John Bauman66b8ab22014-05-06 15:57:45 -0400648
Nicolas Capens0bac2852016-05-07 06:09:58 -0400649 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400650}
651
Alexis Hetufe1269e2015-06-16 12:43:32 -0400652bool TParseContext::structQualifierErrorCheck(const TSourceLoc &line, const TPublicType& pType)
John Bauman66b8ab22014-05-06 15:57:45 -0400653{
Alexis Hetu55a2cbc2015-04-16 10:49:45 -0400654 switch(pType.qualifier)
655 {
656 case EvqVaryingOut:
657 case EvqSmooth:
658 case EvqFlat:
659 case EvqCentroidOut:
660 case EvqVaryingIn:
661 case EvqSmoothIn:
662 case EvqFlatIn:
663 case EvqCentroidIn:
664 case EvqAttribute:
Alexis Hetu42ff6b12015-06-03 16:03:48 -0400665 case EvqVertexIn:
666 case EvqFragmentOut:
Alexis Hetu55a2cbc2015-04-16 10:49:45 -0400667 if(pType.type == EbtStruct)
668 {
669 error(line, "cannot be used with a structure", getQualifierString(pType.qualifier));
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400670
Alexis Hetu55a2cbc2015-04-16 10:49:45 -0400671 return true;
672 }
673 break;
674 default:
675 break;
676 }
John Bauman66b8ab22014-05-06 15:57:45 -0400677
Nicolas Capens0bac2852016-05-07 06:09:58 -0400678 if (pType.qualifier != EvqUniform && samplerErrorCheck(line, pType, "samplers must be uniform"))
679 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400680
Alexis Hetu42ff6b12015-06-03 16:03:48 -0400681 // check for layout qualifier issues
Alexis Hetu42ff6b12015-06-03 16:03:48 -0400682 if (pType.qualifier != EvqVertexIn && pType.qualifier != EvqFragmentOut &&
Nicolas Capens0bac2852016-05-07 06:09:58 -0400683 layoutLocationErrorCheck(line, pType.layoutQualifier))
Alexis Hetu42ff6b12015-06-03 16:03:48 -0400684 {
685 return true;
686 }
687
Nicolas Capens0bac2852016-05-07 06:09:58 -0400688 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400689}
690
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400691// These checks are common for all declarations starting a declarator list, and declarators that follow an empty
692// declaration.
693//
694bool TParseContext::singleDeclarationErrorCheck(const TPublicType &publicType, const TSourceLoc &identifierLocation)
695{
696 switch(publicType.qualifier)
697 {
698 case EvqVaryingIn:
699 case EvqVaryingOut:
700 case EvqAttribute:
701 case EvqVertexIn:
702 case EvqFragmentOut:
703 if(publicType.type == EbtStruct)
704 {
705 error(identifierLocation, "cannot be used with a structure",
706 getQualifierString(publicType.qualifier));
707 return true;
708 }
709
710 default: break;
711 }
712
713 if(publicType.qualifier != EvqUniform && samplerErrorCheck(identifierLocation, publicType,
714 "samplers must be uniform"))
715 {
716 return true;
717 }
718
719 // check for layout qualifier issues
720 const TLayoutQualifier layoutQualifier = publicType.layoutQualifier;
721
722 if(layoutQualifier.matrixPacking != EmpUnspecified)
723 {
724 error(identifierLocation, "layout qualifier", getMatrixPackingString(layoutQualifier.matrixPacking),
725 "only valid for interface blocks");
726 return true;
727 }
728
729 if(layoutQualifier.blockStorage != EbsUnspecified)
730 {
731 error(identifierLocation, "layout qualifier", getBlockStorageString(layoutQualifier.blockStorage),
732 "only valid for interface blocks");
733 return true;
734 }
735
736 if(publicType.qualifier != EvqVertexIn && publicType.qualifier != EvqFragmentOut &&
737 layoutLocationErrorCheck(identifierLocation, publicType.layoutQualifier))
738 {
739 return true;
740 }
741
742 return false;
743}
744
Nicolas Capens3713cd42015-06-22 10:41:54 -0400745bool TParseContext::layoutLocationErrorCheck(const TSourceLoc &location, const TLayoutQualifier &layoutQualifier)
746{
747 if(layoutQualifier.location != -1)
748 {
749 error(location, "invalid layout qualifier:", "location", "only valid on program inputs and outputs");
750 return true;
751 }
752
753 return false;
754}
Alexis Hetu42ff6b12015-06-03 16:03:48 -0400755
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400756bool TParseContext::locationDeclaratorListCheck(const TSourceLoc& line, const TPublicType &pType)
757{
758 if(pType.layoutQualifier.location != -1)
759 {
760 error(line, "location must only be specified for a single input or output variable", "location");
761 return true;
762 }
763
764 return false;
765}
766
Alexis Hetufe1269e2015-06-16 12:43:32 -0400767bool TParseContext::parameterSamplerErrorCheck(const TSourceLoc &line, TQualifier qualifier, const TType& type)
John Bauman66b8ab22014-05-06 15:57:45 -0400768{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400769 if ((qualifier == EvqOut || qualifier == EvqInOut) &&
770 type.getBasicType() != EbtStruct && IsSampler(type.getBasicType())) {
771 error(line, "samplers cannot be output parameters", type.getBasicString());
772 return true;
773 }
John Bauman66b8ab22014-05-06 15:57:45 -0400774
Nicolas Capens0bac2852016-05-07 06:09:58 -0400775 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400776}
777
778bool TParseContext::containsSampler(TType& type)
779{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400780 if (IsSampler(type.getBasicType()))
781 return true;
John Bauman66b8ab22014-05-06 15:57:45 -0400782
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500783 if (type.getBasicType() == EbtStruct || type.isInterfaceBlock()) {
Nicolas Capens0bac2852016-05-07 06:09:58 -0400784 const TFieldList& fields = type.getStruct()->fields();
785 for(unsigned int i = 0; i < fields.size(); ++i) {
786 if (containsSampler(*fields[i]->type()))
787 return true;
788 }
789 }
John Bauman66b8ab22014-05-06 15:57:45 -0400790
Nicolas Capens0bac2852016-05-07 06:09:58 -0400791 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400792}
793
794//
795// Do size checking for an array type's size.
796//
797// Returns true if there was an error.
798//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400799bool TParseContext::arraySizeErrorCheck(const TSourceLoc &line, TIntermTyped* expr, int& size)
John Bauman66b8ab22014-05-06 15:57:45 -0400800{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400801 TIntermConstantUnion* constant = expr->getAsConstantUnion();
Nicolas Capens3c20f802015-02-17 17:17:20 -0500802
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500803 if (expr->getQualifier() != EvqConstExpr || constant == 0 || !constant->isScalarInt())
Nicolas Capens0bac2852016-05-07 06:09:58 -0400804 {
805 error(line, "array size must be a constant integer expression", "");
806 return true;
807 }
John Bauman66b8ab22014-05-06 15:57:45 -0400808
Nicolas Capens0bac2852016-05-07 06:09:58 -0400809 if (constant->getBasicType() == EbtUInt)
810 {
811 unsigned int uintSize = constant->getUConst(0);
812 if (uintSize > static_cast<unsigned int>(std::numeric_limits<int>::max()))
813 {
814 error(line, "array size too large", "");
815 size = 1;
816 return true;
817 }
John Bauman66b8ab22014-05-06 15:57:45 -0400818
Nicolas Capens0bac2852016-05-07 06:09:58 -0400819 size = static_cast<int>(uintSize);
820 }
821 else
822 {
823 size = constant->getIConst(0);
Nicolas Capens3c20f802015-02-17 17:17:20 -0500824
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500825 if (size < 0)
Nicolas Capens0bac2852016-05-07 06:09:58 -0400826 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500827 error(line, "array size must be non-negative", "");
Nicolas Capens0bac2852016-05-07 06:09:58 -0400828 size = 1;
829 return true;
830 }
831 }
John Bauman66b8ab22014-05-06 15:57:45 -0400832
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500833 if(size == 0)
834 {
835 error(line, "array size must be greater than zero", "");
836 return true;
837 }
838
Nicolas Capens0bac2852016-05-07 06:09:58 -0400839 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400840}
841
842//
843// See if this qualifier can be an array.
844//
845// Returns true if there is an error.
846//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400847bool TParseContext::arrayQualifierErrorCheck(const TSourceLoc &line, TPublicType type)
John Bauman66b8ab22014-05-06 15:57:45 -0400848{
Alexis Hetud4e2ba52016-12-01 17:02:33 -0500849 if ((type.qualifier == EvqAttribute) || (type.qualifier == EvqVertexIn) || (type.qualifier == EvqConstExpr && mShaderVersion < 300)) {
Nicolas Capens0bac2852016-05-07 06:09:58 -0400850 error(line, "cannot declare arrays of this qualifier", TType(type).getCompleteString().c_str());
851 return true;
852 }
John Bauman66b8ab22014-05-06 15:57:45 -0400853
Nicolas Capens0bac2852016-05-07 06:09:58 -0400854 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400855}
856
857//
858// See if this type can be an array.
859//
860// Returns true if there is an error.
861//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400862bool TParseContext::arrayTypeErrorCheck(const TSourceLoc &line, TPublicType type)
John Bauman66b8ab22014-05-06 15:57:45 -0400863{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400864 //
865 // Can the type be an array?
866 //
867 if (type.array) {
868 error(line, "cannot declare arrays of arrays", TType(type).getCompleteString().c_str());
869 return true;
870 }
John Bauman66b8ab22014-05-06 15:57:45 -0400871
Alexis Hetuec93b1d2016-12-09 16:01:29 -0500872 // In ESSL1.00 shaders, structs cannot be varying (section 4.3.5). This is checked elsewhere.
873 // In ESSL3.00 shaders, struct inputs/outputs are allowed but not arrays of structs (section 4.3.4).
874 if(mShaderVersion >= 300 && type.type == EbtStruct && IsVarying(type.qualifier))
875 {
876 error(line, "cannot declare arrays of structs of this qualifier",
877 TType(type).getCompleteString().c_str());
878 return true;
879 }
880
Nicolas Capens0bac2852016-05-07 06:09:58 -0400881 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400882}
883
Alexis Hetufe1269e2015-06-16 12:43:32 -0400884bool TParseContext::arraySetMaxSize(TIntermSymbol *node, TType* type, int size, bool updateFlag, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -0400885{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400886 bool builtIn = false;
887 TSymbol* symbol = symbolTable.find(node->getSymbol(), mShaderVersion, &builtIn);
888 if (symbol == 0) {
889 error(line, " undeclared identifier", node->getSymbol().c_str());
890 return true;
891 }
892 TVariable* variable = static_cast<TVariable*>(symbol);
John Bauman66b8ab22014-05-06 15:57:45 -0400893
Nicolas Capens0bac2852016-05-07 06:09:58 -0400894 type->setArrayInformationType(variable->getArrayInformationType());
895 variable->updateArrayInformationType(type);
John Bauman66b8ab22014-05-06 15:57:45 -0400896
Nicolas Capens0bac2852016-05-07 06:09:58 -0400897 // special casing to test index value of gl_FragData. If the accessed index is >= gl_MaxDrawBuffers
898 // its an error
899 if (node->getSymbol() == "gl_FragData") {
900 TSymbol* fragData = symbolTable.find("gl_MaxDrawBuffers", mShaderVersion, &builtIn);
901 ASSERT(fragData);
John Bauman66b8ab22014-05-06 15:57:45 -0400902
Nicolas Capens0bac2852016-05-07 06:09:58 -0400903 int fragDataValue = static_cast<TVariable*>(fragData)->getConstPointer()[0].getIConst();
904 if (fragDataValue <= size) {
905 error(line, "", "[", "gl_FragData can only have a max array size of up to gl_MaxDrawBuffers");
906 return true;
907 }
908 }
John Bauman66b8ab22014-05-06 15:57:45 -0400909
Nicolas Capens0bac2852016-05-07 06:09:58 -0400910 // we dont want to update the maxArraySize when this flag is not set, we just want to include this
911 // node type in the chain of node types so that its updated when a higher maxArraySize comes in.
912 if (!updateFlag)
913 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400914
Nicolas Capens0bac2852016-05-07 06:09:58 -0400915 size++;
916 variable->getType().setMaxArraySize(size);
917 type->setMaxArraySize(size);
918 TType* tt = type;
John Bauman66b8ab22014-05-06 15:57:45 -0400919
Nicolas Capens0bac2852016-05-07 06:09:58 -0400920 while(tt->getArrayInformationType() != 0) {
921 tt = tt->getArrayInformationType();
922 tt->setMaxArraySize(size);
923 }
John Bauman66b8ab22014-05-06 15:57:45 -0400924
Nicolas Capens0bac2852016-05-07 06:09:58 -0400925 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400926}
927
928//
929// Enforce non-initializer type/qualifier rules.
930//
931// Returns true if there was an error.
932//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400933bool TParseContext::nonInitConstErrorCheck(const TSourceLoc &line, TString& identifier, TPublicType& type, bool array)
John Bauman66b8ab22014-05-06 15:57:45 -0400934{
Nicolas Capens0bac2852016-05-07 06:09:58 -0400935 if (type.qualifier == EvqConstExpr)
936 {
937 // Make the qualifier make sense.
938 type.qualifier = EvqTemporary;
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -0400939
Nicolas Capens0bac2852016-05-07 06:09:58 -0400940 if (array)
941 {
942 error(line, "arrays may not be declared constant since they cannot be initialized", identifier.c_str());
943 }
944 else if (type.isStructureContainingArrays())
945 {
946 error(line, "structures containing arrays may not be declared constant since they cannot be initialized", identifier.c_str());
947 }
948 else
949 {
950 error(line, "variables with qualifier 'const' must be initialized", identifier.c_str());
951 }
John Bauman66b8ab22014-05-06 15:57:45 -0400952
Nicolas Capens0bac2852016-05-07 06:09:58 -0400953 return true;
954 }
John Bauman66b8ab22014-05-06 15:57:45 -0400955
Nicolas Capens0bac2852016-05-07 06:09:58 -0400956 return false;
John Bauman66b8ab22014-05-06 15:57:45 -0400957}
958
959//
960// Do semantic checking for a variable declaration that has no initializer,
961// and update the symbol table.
962//
963// Returns true if there was an error.
964//
Alexis Hetufe1269e2015-06-16 12:43:32 -0400965bool TParseContext::nonInitErrorCheck(const TSourceLoc &line, const TString& identifier, TPublicType& type)
John Bauman66b8ab22014-05-06 15:57:45 -0400966{
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400967 if(type.qualifier == EvqConstExpr)
968 {
969 // Make the qualifier make sense.
970 type.qualifier = EvqTemporary;
John Bauman66b8ab22014-05-06 15:57:45 -0400971
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400972 // Generate informative error messages for ESSL1.
973 // In ESSL3 arrays and structures containing arrays can be constant.
Alexis Hetu0a655842015-06-22 16:52:11 -0400974 if(mShaderVersion < 300 && type.isStructureContainingArrays())
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400975 {
976 error(line,
977 "structures containing arrays may not be declared constant since they cannot be initialized",
978 identifier.c_str());
979 }
980 else
981 {
982 error(line, "variables with qualifier 'const' must be initialized", identifier.c_str());
983 }
John Bauman66b8ab22014-05-06 15:57:45 -0400984
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400985 return true;
986 }
987 if(type.isUnsizedArray())
988 {
989 error(line, "implicitly sized arrays need to be initialized", identifier.c_str());
990 return true;
991 }
992 return false;
993}
John Bauman66b8ab22014-05-06 15:57:45 -0400994
Alexis Hetudd7ff7a2015-06-11 08:25:30 -0400995// Do some simple checks that are shared between all variable declarations,
996// and update the symbol table.
997//
998// Returns true if declaring the variable succeeded.
999//
1000bool TParseContext::declareVariable(const TSourceLoc &line, const TString &identifier, const TType &type,
1001 TVariable **variable)
1002{
1003 ASSERT((*variable) == nullptr);
John Bauman66b8ab22014-05-06 15:57:45 -04001004
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001005 // gl_LastFragData may be redeclared with a new precision qualifier
1006 if(type.isArray() && identifier.compare(0, 15, "gl_LastFragData") == 0)
1007 {
1008 const TVariable *maxDrawBuffers =
Alexis Hetu0a655842015-06-22 16:52:11 -04001009 static_cast<const TVariable *>(symbolTable.findBuiltIn("gl_MaxDrawBuffers", mShaderVersion));
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001010 if(type.getArraySize() != maxDrawBuffers->getConstPointer()->getIConst())
1011 {
1012 error(line, "redeclaration of gl_LastFragData with size != gl_MaxDrawBuffers", identifier.c_str());
1013 return false;
1014 }
1015 }
1016
1017 if(reservedErrorCheck(line, identifier))
1018 return false;
1019
1020 (*variable) = new TVariable(&identifier, type);
Nicolas Capens0b7471a2018-01-09 21:39:21 -05001021 if(!symbolTable.declare(*variable))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001022 {
1023 error(line, "redefinition", identifier.c_str());
1024 delete (*variable);
1025 (*variable) = nullptr;
1026 return false;
1027 }
1028
1029 if(voidErrorCheck(line, identifier, type.getBasicType()))
1030 return false;
1031
1032 return true;
John Bauman66b8ab22014-05-06 15:57:45 -04001033}
1034
Alexis Hetufe1269e2015-06-16 12:43:32 -04001035bool TParseContext::paramErrorCheck(const TSourceLoc &line, TQualifier qualifier, TQualifier paramQualifier, TType* type)
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001036{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001037 if (qualifier != EvqConstReadOnly && qualifier != EvqTemporary) {
1038 error(line, "qualifier not allowed on function parameter", getQualifierString(qualifier));
1039 return true;
1040 }
1041 if (qualifier == EvqConstReadOnly && paramQualifier != EvqIn) {
1042 error(line, "qualifier not allowed with ", getQualifierString(qualifier), getQualifierString(paramQualifier));
1043 return true;
1044 }
John Bauman66b8ab22014-05-06 15:57:45 -04001045
Nicolas Capens0bac2852016-05-07 06:09:58 -04001046 if (qualifier == EvqConstReadOnly)
1047 type->setQualifier(EvqConstReadOnly);
1048 else
1049 type->setQualifier(paramQualifier);
John Bauman66b8ab22014-05-06 15:57:45 -04001050
Nicolas Capens0bac2852016-05-07 06:09:58 -04001051 return false;
John Bauman66b8ab22014-05-06 15:57:45 -04001052}
1053
Alexis Hetufe1269e2015-06-16 12:43:32 -04001054bool TParseContext::extensionErrorCheck(const TSourceLoc &line, const TString& extension)
John Bauman66b8ab22014-05-06 15:57:45 -04001055{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001056 const TExtensionBehavior& extBehavior = extensionBehavior();
1057 TExtensionBehavior::const_iterator iter = extBehavior.find(extension.c_str());
1058 if (iter == extBehavior.end()) {
1059 error(line, "extension", extension.c_str(), "is not supported");
1060 return true;
1061 }
1062 // In GLSL ES, an extension's default behavior is "disable".
1063 if (iter->second == EBhDisable || iter->second == EBhUndefined) {
1064 error(line, "extension", extension.c_str(), "is disabled");
1065 return true;
1066 }
1067 if (iter->second == EBhWarn) {
1068 warning(line, "extension", extension.c_str(), "is being used");
1069 return false;
1070 }
John Bauman66b8ab22014-05-06 15:57:45 -04001071
Nicolas Capens0bac2852016-05-07 06:09:58 -04001072 return false;
John Bauman66b8ab22014-05-06 15:57:45 -04001073}
1074
Alexis Hetuad6b8752015-06-09 16:15:30 -04001075bool TParseContext::functionCallLValueErrorCheck(const TFunction *fnCandidate, TIntermAggregate *aggregate)
1076{
1077 for(size_t i = 0; i < fnCandidate->getParamCount(); ++i)
1078 {
1079 TQualifier qual = fnCandidate->getParam(i).type->getQualifier();
1080 if(qual == EvqOut || qual == EvqInOut)
1081 {
1082 TIntermTyped *node = (aggregate->getSequence())[i]->getAsTyped();
1083 if(lValueErrorCheck(node->getLine(), "assign", node))
1084 {
1085 error(node->getLine(),
1086 "Constant value cannot be passed for 'out' or 'inout' parameters.", "Error");
1087 recover();
1088 return true;
1089 }
1090 }
1091 }
1092 return false;
1093}
1094
Alexis Hetuad527752015-07-07 13:31:44 -04001095void TParseContext::es3InvariantErrorCheck(const TQualifier qualifier, const TSourceLoc &invariantLocation)
1096{
1097 switch(qualifier)
1098 {
1099 case EvqVaryingOut:
1100 case EvqSmoothOut:
1101 case EvqFlatOut:
1102 case EvqCentroidOut:
1103 case EvqVertexOut:
1104 case EvqFragmentOut:
1105 break;
1106 default:
1107 error(invariantLocation, "Only out variables can be invariant.", "invariant");
1108 recover();
1109 break;
1110 }
1111}
1112
John Bauman66b8ab22014-05-06 15:57:45 -04001113bool TParseContext::supportsExtension(const char* extension)
1114{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001115 const TExtensionBehavior& extbehavior = extensionBehavior();
1116 TExtensionBehavior::const_iterator iter = extbehavior.find(extension);
1117 return (iter != extbehavior.end());
John Bauman66b8ab22014-05-06 15:57:45 -04001118}
1119
Alexis Hetufe1269e2015-06-16 12:43:32 -04001120void TParseContext::handleExtensionDirective(const TSourceLoc &line, const char* extName, const char* behavior)
John Bauman66b8ab22014-05-06 15:57:45 -04001121{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001122 pp::SourceLocation loc(line.first_file, line.first_line);
1123 mDirectiveHandler.handleExtension(loc, extName, behavior);
John Bauman66b8ab22014-05-06 15:57:45 -04001124}
1125
Alexis Hetue13238e2017-12-15 18:01:07 -05001126void TParseContext::handlePragmaDirective(const TSourceLoc &line, const char* name, const char* value, bool stdgl)
John Bauman66b8ab22014-05-06 15:57:45 -04001127{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001128 pp::SourceLocation loc(line.first_file, line.first_line);
Alexis Hetue13238e2017-12-15 18:01:07 -05001129 mDirectiveHandler.handlePragma(loc, name, value, stdgl);
John Bauman66b8ab22014-05-06 15:57:45 -04001130}
1131
1132/////////////////////////////////////////////////////////////////////////////////
1133//
1134// Non-Errors.
1135//
1136/////////////////////////////////////////////////////////////////////////////////
1137
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001138const TVariable *TParseContext::getNamedVariable(const TSourceLoc &location,
1139 const TString *name,
1140 const TSymbol *symbol)
1141{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001142 const TVariable *variable = nullptr;
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001143
1144 if(!symbol)
1145 {
1146 error(location, "undeclared identifier", name->c_str());
1147 recover();
1148 }
1149 else if(!symbol->isVariable())
1150 {
1151 error(location, "variable expected", name->c_str());
1152 recover();
1153 }
1154 else
1155 {
1156 variable = static_cast<const TVariable*>(symbol);
1157
Alexis Hetu0a655842015-06-22 16:52:11 -04001158 if(symbolTable.findBuiltIn(variable->getName(), mShaderVersion))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001159 {
1160 recover();
1161 }
1162
1163 // Reject shaders using both gl_FragData and gl_FragColor
1164 TQualifier qualifier = variable->getType().getQualifier();
1165 if(qualifier == EvqFragData)
1166 {
1167 mUsesFragData = true;
1168 }
1169 else if(qualifier == EvqFragColor)
1170 {
1171 mUsesFragColor = true;
1172 }
1173
1174 // This validation is not quite correct - it's only an error to write to
1175 // both FragData and FragColor. For simplicity, and because users shouldn't
Nicolas Capens8b124c12016-04-18 14:09:37 -04001176 // be rewarded for reading from undefined variables, return an error
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001177 // if they are both referenced, rather than assigned.
1178 if(mUsesFragData && mUsesFragColor)
1179 {
1180 error(location, "cannot use both gl_FragData and gl_FragColor", name->c_str());
1181 recover();
1182 }
1183 }
1184
1185 if(!variable)
1186 {
1187 TType type(EbtFloat, EbpUndefined);
1188 TVariable *fakeVariable = new TVariable(name, type);
Nicolas Capens0b7471a2018-01-09 21:39:21 -05001189 symbolTable.declare(fakeVariable);
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001190 variable = fakeVariable;
1191 }
1192
1193 return variable;
1194}
1195
John Bauman66b8ab22014-05-06 15:57:45 -04001196//
1197// Look up a function name in the symbol table, and make sure it is a function.
1198//
1199// Return the function symbol if found, otherwise 0.
1200//
Alexis Hetufe1269e2015-06-16 12:43:32 -04001201const TFunction* TParseContext::findFunction(const TSourceLoc &line, TFunction* call, bool *builtIn)
John Bauman66b8ab22014-05-06 15:57:45 -04001202{
Nicolas Capens0bac2852016-05-07 06:09:58 -04001203 // First find by unmangled name to check whether the function name has been
1204 // hidden by a variable name or struct typename.
1205 const TSymbol* symbol = symbolTable.find(call->getName(), mShaderVersion, builtIn);
Nicolas Capens0b7471a2018-01-09 21:39:21 -05001206 if (!symbol || symbol->isFunction()) {
Nicolas Capens0bac2852016-05-07 06:09:58 -04001207 symbol = symbolTable.find(call->getMangledName(), mShaderVersion, builtIn);
1208 }
John Bauman66b8ab22014-05-06 15:57:45 -04001209
Nicolas Capens0b7471a2018-01-09 21:39:21 -05001210 if (!symbol) {
Nicolas Capens0bac2852016-05-07 06:09:58 -04001211 error(line, "no matching overloaded function found", call->getName().c_str());
Alexis Hetuf0005a12016-09-28 15:52:21 -04001212 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04001213 }
John Bauman66b8ab22014-05-06 15:57:45 -04001214
Nicolas Capens0bac2852016-05-07 06:09:58 -04001215 if (!symbol->isFunction()) {
1216 error(line, "function name expected", call->getName().c_str());
Alexis Hetuf0005a12016-09-28 15:52:21 -04001217 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04001218 }
John Bauman66b8ab22014-05-06 15:57:45 -04001219
Nicolas Capens0bac2852016-05-07 06:09:58 -04001220 return static_cast<const TFunction*>(symbol);
John Bauman66b8ab22014-05-06 15:57:45 -04001221}
1222
1223//
1224// Initializers show up in several places in the grammar. Have one set of
1225// code to handle them here.
1226//
Alexis Hetufe1269e2015-06-16 12:43:32 -04001227bool TParseContext::executeInitializer(const TSourceLoc& line, const TString& identifier, const TPublicType& pType,
Nicolas Capens0bac2852016-05-07 06:09:58 -04001228 TIntermTyped *initializer, TIntermNode **intermNode)
John Bauman66b8ab22014-05-06 15:57:45 -04001229{
Alexis Hetue5246692015-06-18 12:34:52 -04001230 ASSERT(intermNode != nullptr);
1231 TType type = TType(pType);
John Bauman66b8ab22014-05-06 15:57:45 -04001232
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001233 if(type.isUnsizedArray())
Alexis Hetue5246692015-06-18 12:34:52 -04001234 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001235 // We have not checked yet whether the initializer actually is an array or not.
1236 if(initializer->isArray())
1237 {
1238 type.setArraySize(initializer->getArraySize());
1239 }
1240 else
1241 {
1242 // Having a non-array initializer for an unsized array will result in an error later,
1243 // so we don't generate an error message here.
1244 type.setArraySize(1u);
1245 }
Alexis Hetue5246692015-06-18 12:34:52 -04001246 }
Nicolas Capens0863f0d2016-04-10 00:30:02 -04001247
1248 TVariable *variable = nullptr;
Alexis Hetue5246692015-06-18 12:34:52 -04001249 if(!declareVariable(line, identifier, type, &variable))
1250 {
1251 return true;
1252 }
John Bauman66b8ab22014-05-06 15:57:45 -04001253
Nicolas Capensbf1307b2016-04-07 01:03:14 -04001254 if(symbolTable.atGlobalLevel() && initializer->getQualifier() != EvqConstExpr)
Alexis Hetue5246692015-06-18 12:34:52 -04001255 {
Alexis Hetue5246692015-06-18 12:34:52 -04001256 error(line, "global variable initializers must be constant expressions", "=");
1257 return true;
1258 }
John Bauman66b8ab22014-05-06 15:57:45 -04001259
Nicolas Capens0bac2852016-05-07 06:09:58 -04001260 //
1261 // identifier must be of type constant, a global, or a temporary
1262 //
1263 TQualifier qualifier = type.getQualifier();
1264 if ((qualifier != EvqTemporary) && (qualifier != EvqGlobal) && (qualifier != EvqConstExpr)) {
1265 error(line, " cannot initialize this type of qualifier ", variable->getType().getQualifierString());
1266 return true;
1267 }
1268 //
1269 // test for and propagate constant
1270 //
John Bauman66b8ab22014-05-06 15:57:45 -04001271
Nicolas Capens0bac2852016-05-07 06:09:58 -04001272 if (qualifier == EvqConstExpr) {
1273 if (qualifier != initializer->getQualifier()) {
1274 std::stringstream extraInfoStream;
1275 extraInfoStream << "'" << variable->getType().getCompleteString() << "'";
1276 std::string extraInfo = extraInfoStream.str();
1277 error(line, " assigning non-constant to", "=", extraInfo.c_str());
1278 variable->getType().setQualifier(EvqTemporary);
1279 return true;
1280 }
Nicolas Capens0863f0d2016-04-10 00:30:02 -04001281
Nicolas Capens0bac2852016-05-07 06:09:58 -04001282 if (type != initializer->getType()) {
1283 error(line, " non-matching types for const initializer ",
1284 variable->getType().getQualifierString());
1285 variable->getType().setQualifier(EvqTemporary);
1286 return true;
1287 }
Nicolas Capens0863f0d2016-04-10 00:30:02 -04001288
Nicolas Capens0bac2852016-05-07 06:09:58 -04001289 if (initializer->getAsConstantUnion()) {
1290 variable->shareConstPointer(initializer->getAsConstantUnion()->getUnionArrayPointer());
1291 } else if (initializer->getAsSymbolNode()) {
1292 const TSymbol* symbol = symbolTable.find(initializer->getAsSymbolNode()->getSymbol(), 0);
1293 const TVariable* tVar = static_cast<const TVariable*>(symbol);
John Bauman66b8ab22014-05-06 15:57:45 -04001294
Nicolas Capens0bac2852016-05-07 06:09:58 -04001295 ConstantUnion* constArray = tVar->getConstPointer();
1296 variable->shareConstPointer(constArray);
1297 }
1298 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04001299
Nicolas Capens7cbb1de2017-12-22 08:54:18 -05001300 // Constants which aren't indexable arrays get propagated by value
1301 // and thus don't need to initialize the symbol.
1302 if (variable->isConstant() && !(type.isArray() && type.getArraySize() > 1))
1303 {
1304 *intermNode = nullptr;
1305 }
1306 else
1307 {
Nicolas Capens0bac2852016-05-07 06:09:58 -04001308 TIntermSymbol* intermSymbol = intermediate.addSymbol(variable->getUniqueId(), variable->getName(), variable->getType(), line);
1309 *intermNode = createAssign(EOpInitialize, intermSymbol, initializer, line);
1310 if(*intermNode == nullptr) {
1311 assignError(line, "=", intermSymbol->getCompleteString(), initializer->getCompleteString());
1312 return true;
1313 }
Nicolas Capens7cbb1de2017-12-22 08:54:18 -05001314 }
John Bauman66b8ab22014-05-06 15:57:45 -04001315
Nicolas Capens0bac2852016-05-07 06:09:58 -04001316 return false;
John Bauman66b8ab22014-05-06 15:57:45 -04001317}
1318
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001319TPublicType TParseContext::addFullySpecifiedType(TQualifier qualifier, bool invariant, TLayoutQualifier layoutQualifier, const TPublicType &typeSpecifier)
1320{
1321 TPublicType returnType = typeSpecifier;
1322 returnType.qualifier = qualifier;
1323 returnType.invariant = invariant;
1324 returnType.layoutQualifier = layoutQualifier;
1325
Alexis Hetu0a655842015-06-22 16:52:11 -04001326 if(mShaderVersion < 300)
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001327 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001328 if(typeSpecifier.array)
1329 {
1330 error(typeSpecifier.line, "not supported", "first-class array");
1331 returnType.clearArrayness();
1332 }
1333
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001334 if(qualifier == EvqAttribute && (typeSpecifier.type == EbtBool || typeSpecifier.type == EbtInt))
1335 {
1336 error(typeSpecifier.line, "cannot be bool or int", getQualifierString(qualifier));
1337 recover();
1338 }
1339
1340 if((qualifier == EvqVaryingIn || qualifier == EvqVaryingOut) &&
1341 (typeSpecifier.type == EbtBool || typeSpecifier.type == EbtInt))
1342 {
1343 error(typeSpecifier.line, "cannot be bool or int", getQualifierString(qualifier));
1344 recover();
1345 }
1346 }
1347 else
1348 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001349 if(!returnType.layoutQualifier.isEmpty())
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001350 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001351 globalErrorCheck(typeSpecifier.line, symbolTable.atGlobalLevel(), "layout");
1352 }
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001353
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001354 if(IsVarying(returnType.qualifier) || returnType.qualifier == EvqVertexIn || returnType.qualifier == EvqFragmentOut)
1355 {
1356 checkInputOutputTypeIsValidES3(returnType.qualifier, typeSpecifier, typeSpecifier.line);
Alexis Hetu42ff6b12015-06-03 16:03:48 -04001357 }
1358 }
1359
1360 return returnType;
1361}
1362
Alexis Hetuec93b1d2016-12-09 16:01:29 -05001363void TParseContext::checkInputOutputTypeIsValidES3(const TQualifier qualifier,
1364 const TPublicType &type,
1365 const TSourceLoc &qualifierLocation)
1366{
1367 // An input/output variable can never be bool or a sampler. Samplers are checked elsewhere.
1368 if(type.type == EbtBool)
1369 {
1370 error(qualifierLocation, "cannot be bool", getQualifierString(qualifier));
1371 }
1372
1373 // Specific restrictions apply for vertex shader inputs and fragment shader outputs.
1374 switch(qualifier)
1375 {
1376 case EvqVertexIn:
1377 // ESSL 3.00 section 4.3.4
1378 if(type.array)
1379 {
1380 error(qualifierLocation, "cannot be array", getQualifierString(qualifier));
1381 }
1382 // Vertex inputs with a struct type are disallowed in singleDeclarationErrorCheck
1383 return;
1384 case EvqFragmentOut:
1385 // ESSL 3.00 section 4.3.6
1386 if(type.isMatrix())
1387 {
1388 error(qualifierLocation, "cannot be matrix", getQualifierString(qualifier));
1389 }
1390 // Fragment outputs with a struct type are disallowed in singleDeclarationErrorCheck
1391 return;
1392 default:
1393 break;
1394 }
1395
1396 // Vertex shader outputs / fragment shader inputs have a different, slightly more lenient set of
1397 // restrictions.
1398 bool typeContainsIntegers = (type.type == EbtInt || type.type == EbtUInt ||
1399 type.isStructureContainingType(EbtInt) ||
1400 type.isStructureContainingType(EbtUInt));
1401 if(typeContainsIntegers && qualifier != EvqFlatIn && qualifier != EvqFlatOut)
1402 {
1403 error(qualifierLocation, "must use 'flat' interpolation here", getQualifierString(qualifier));
1404 }
1405
1406 if(type.type == EbtStruct)
1407 {
1408 // ESSL 3.00 sections 4.3.4 and 4.3.6.
1409 // These restrictions are only implied by the ESSL 3.00 spec, but
1410 // the ESSL 3.10 spec lists these restrictions explicitly.
1411 if(type.array)
1412 {
1413 error(qualifierLocation, "cannot be an array of structures", getQualifierString(qualifier));
1414 }
1415 if(type.isStructureContainingArrays())
1416 {
1417 error(qualifierLocation, "cannot be a structure containing an array", getQualifierString(qualifier));
1418 }
1419 if(type.isStructureContainingType(EbtStruct))
1420 {
1421 error(qualifierLocation, "cannot be a structure containing a structure", getQualifierString(qualifier));
1422 }
1423 if(type.isStructureContainingType(EbtBool))
1424 {
1425 error(qualifierLocation, "cannot be a structure containing a bool", getQualifierString(qualifier));
1426 }
1427 }
1428}
1429
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001430TIntermAggregate *TParseContext::parseSingleDeclaration(TPublicType &publicType,
1431 const TSourceLoc &identifierOrTypeLocation,
1432 const TString &identifier)
1433{
1434 TIntermSymbol *symbol = intermediate.addSymbol(0, identifier, TType(publicType), identifierOrTypeLocation);
1435
1436 bool emptyDeclaration = (identifier == "");
1437
1438 mDeferredSingleDeclarationErrorCheck = emptyDeclaration;
1439
1440 if(emptyDeclaration)
1441 {
1442 if(publicType.isUnsizedArray())
1443 {
1444 // ESSL3 spec section 4.1.9: Array declaration which leaves the size unspecified is an error.
1445 // It is assumed that this applies to empty declarations as well.
1446 error(identifierOrTypeLocation, "empty array declaration needs to specify a size", identifier.c_str());
1447 }
1448 }
1449 else
1450 {
1451 if(singleDeclarationErrorCheck(publicType, identifierOrTypeLocation))
1452 recover();
1453
1454 if(nonInitErrorCheck(identifierOrTypeLocation, identifier, publicType))
1455 recover();
1456
1457 TVariable *variable = nullptr;
1458 if(!declareVariable(identifierOrTypeLocation, identifier, TType(publicType), &variable))
1459 recover();
1460
1461 if(variable && symbol)
1462 symbol->setId(variable->getUniqueId());
1463 }
1464
1465 return intermediate.makeAggregate(symbol, identifierOrTypeLocation);
1466}
1467
1468TIntermAggregate *TParseContext::parseSingleArrayDeclaration(TPublicType &publicType,
1469 const TSourceLoc &identifierLocation,
1470 const TString &identifier,
1471 const TSourceLoc &indexLocation,
1472 TIntermTyped *indexExpression)
1473{
1474 mDeferredSingleDeclarationErrorCheck = false;
1475
1476 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1477 recover();
1478
1479 if(nonInitErrorCheck(identifierLocation, identifier, publicType))
1480 recover();
1481
1482 if(arrayTypeErrorCheck(indexLocation, publicType) || arrayQualifierErrorCheck(indexLocation, publicType))
1483 {
1484 recover();
1485 }
1486
1487 TType arrayType(publicType);
1488
1489 int size;
1490 if(arraySizeErrorCheck(identifierLocation, indexExpression, size))
1491 {
1492 recover();
1493 }
1494 // Make the type an array even if size check failed.
1495 // This ensures useless error messages regarding the variable's non-arrayness won't follow.
1496 arrayType.setArraySize(size);
1497
1498 TVariable *variable = nullptr;
1499 if(!declareVariable(identifierLocation, identifier, arrayType, &variable))
1500 recover();
1501
1502 TIntermSymbol *symbol = intermediate.addSymbol(0, identifier, arrayType, identifierLocation);
1503 if(variable && symbol)
1504 symbol->setId(variable->getUniqueId());
1505
1506 return intermediate.makeAggregate(symbol, identifierLocation);
1507}
1508
1509TIntermAggregate *TParseContext::parseSingleInitDeclaration(const TPublicType &publicType,
1510 const TSourceLoc &identifierLocation,
1511 const TString &identifier,
1512 const TSourceLoc &initLocation,
1513 TIntermTyped *initializer)
1514{
1515 mDeferredSingleDeclarationErrorCheck = false;
1516
1517 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1518 recover();
1519
1520 TIntermNode *intermNode = nullptr;
Alexis Hetue5246692015-06-18 12:34:52 -04001521 if(!executeInitializer(identifierLocation, identifier, publicType, initializer, &intermNode))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001522 {
1523 //
1524 // Build intermediate representation
1525 //
1526 return intermNode ? intermediate.makeAggregate(intermNode, initLocation) : nullptr;
1527 }
1528 else
1529 {
1530 recover();
1531 return nullptr;
1532 }
1533}
1534
1535TIntermAggregate *TParseContext::parseSingleArrayInitDeclaration(TPublicType &publicType,
1536 const TSourceLoc &identifierLocation,
1537 const TString &identifier,
1538 const TSourceLoc &indexLocation,
1539 TIntermTyped *indexExpression,
1540 const TSourceLoc &initLocation,
1541 TIntermTyped *initializer)
1542{
1543 mDeferredSingleDeclarationErrorCheck = false;
1544
1545 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1546 recover();
1547
1548 if(arrayTypeErrorCheck(indexLocation, publicType) || arrayQualifierErrorCheck(indexLocation, publicType))
1549 {
1550 recover();
1551 }
1552
1553 TPublicType arrayType(publicType);
1554
1555 int size = 0;
1556 // If indexExpression is nullptr, then the array will eventually get its size implicitly from the initializer.
1557 if(indexExpression != nullptr && arraySizeErrorCheck(identifierLocation, indexExpression, size))
1558 {
1559 recover();
1560 }
1561 // Make the type an array even if size check failed.
1562 // This ensures useless error messages regarding the variable's non-arrayness won't follow.
1563 arrayType.setArray(true, size);
1564
1565 // initNode will correspond to the whole of "type b[n] = initializer".
1566 TIntermNode *initNode = nullptr;
Alexis Hetue5246692015-06-18 12:34:52 -04001567 if(!executeInitializer(identifierLocation, identifier, arrayType, initializer, &initNode))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001568 {
1569 return initNode ? intermediate.makeAggregate(initNode, initLocation) : nullptr;
1570 }
1571 else
1572 {
1573 recover();
1574 return nullptr;
1575 }
1576}
1577
1578TIntermAggregate *TParseContext::parseInvariantDeclaration(const TSourceLoc &invariantLoc,
1579 const TSourceLoc &identifierLoc,
1580 const TString *identifier,
1581 const TSymbol *symbol)
1582{
1583 // invariant declaration
1584 if(globalErrorCheck(invariantLoc, symbolTable.atGlobalLevel(), "invariant varying"))
1585 {
1586 recover();
1587 }
1588
1589 if(!symbol)
1590 {
1591 error(identifierLoc, "undeclared identifier declared as invariant", identifier->c_str());
1592 recover();
1593 return nullptr;
1594 }
1595 else
1596 {
1597 const TString kGlFrontFacing("gl_FrontFacing");
1598 if(*identifier == kGlFrontFacing)
1599 {
1600 error(identifierLoc, "identifier should not be declared as invariant", identifier->c_str());
1601 recover();
1602 return nullptr;
1603 }
1604 symbolTable.addInvariantVarying(std::string(identifier->c_str()));
1605 const TVariable *variable = getNamedVariable(identifierLoc, identifier, symbol);
1606 ASSERT(variable);
1607 const TType &type = variable->getType();
1608 TIntermSymbol *intermSymbol = intermediate.addSymbol(variable->getUniqueId(),
1609 *identifier, type, identifierLoc);
1610
1611 TIntermAggregate *aggregate = intermediate.makeAggregate(intermSymbol, identifierLoc);
1612 aggregate->setOp(EOpInvariantDeclaration);
1613 return aggregate;
1614 }
1615}
1616
1617TIntermAggregate *TParseContext::parseDeclarator(TPublicType &publicType, TIntermAggregate *aggregateDeclaration,
1618 const TSourceLoc &identifierLocation, const TString &identifier)
1619{
1620 // If the declaration starting this declarator list was empty (example: int,), some checks were not performed.
1621 if(mDeferredSingleDeclarationErrorCheck)
1622 {
1623 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1624 recover();
1625 mDeferredSingleDeclarationErrorCheck = false;
1626 }
1627
1628 if(locationDeclaratorListCheck(identifierLocation, publicType))
1629 recover();
1630
1631 if(nonInitErrorCheck(identifierLocation, identifier, publicType))
1632 recover();
1633
1634 TVariable *variable = nullptr;
1635 if(!declareVariable(identifierLocation, identifier, TType(publicType), &variable))
1636 recover();
1637
1638 TIntermSymbol *symbol = intermediate.addSymbol(0, identifier, TType(publicType), identifierLocation);
1639 if(variable && symbol)
1640 symbol->setId(variable->getUniqueId());
1641
1642 return intermediate.growAggregate(aggregateDeclaration, symbol, identifierLocation);
1643}
1644
1645TIntermAggregate *TParseContext::parseArrayDeclarator(TPublicType &publicType, TIntermAggregate *aggregateDeclaration,
1646 const TSourceLoc &identifierLocation, const TString &identifier,
1647 const TSourceLoc &arrayLocation, TIntermTyped *indexExpression)
1648{
1649 // If the declaration starting this declarator list was empty (example: int,), some checks were not performed.
1650 if(mDeferredSingleDeclarationErrorCheck)
1651 {
1652 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1653 recover();
1654 mDeferredSingleDeclarationErrorCheck = false;
1655 }
1656
1657 if(locationDeclaratorListCheck(identifierLocation, publicType))
1658 recover();
1659
1660 if(nonInitErrorCheck(identifierLocation, identifier, publicType))
1661 recover();
1662
1663 if(arrayTypeErrorCheck(arrayLocation, publicType) || arrayQualifierErrorCheck(arrayLocation, publicType))
1664 {
1665 recover();
1666 }
1667 else
1668 {
1669 TType arrayType = TType(publicType);
1670 int size;
1671 if(arraySizeErrorCheck(arrayLocation, indexExpression, size))
1672 {
1673 recover();
1674 }
1675 arrayType.setArraySize(size);
1676
1677 TVariable *variable = nullptr;
1678 if(!declareVariable(identifierLocation, identifier, arrayType, &variable))
1679 recover();
1680
1681 TIntermSymbol *symbol = intermediate.addSymbol(0, identifier, arrayType, identifierLocation);
1682 if(variable && symbol)
1683 symbol->setId(variable->getUniqueId());
1684
1685 return intermediate.growAggregate(aggregateDeclaration, symbol, identifierLocation);
1686 }
1687
1688 return nullptr;
1689}
1690
1691TIntermAggregate *TParseContext::parseInitDeclarator(const TPublicType &publicType, TIntermAggregate *aggregateDeclaration,
1692 const TSourceLoc &identifierLocation, const TString &identifier,
1693 const TSourceLoc &initLocation, TIntermTyped *initializer)
1694{
1695 // If the declaration starting this declarator list was empty (example: int,), some checks were not performed.
1696 if(mDeferredSingleDeclarationErrorCheck)
1697 {
1698 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1699 recover();
1700 mDeferredSingleDeclarationErrorCheck = false;
1701 }
1702
1703 if(locationDeclaratorListCheck(identifierLocation, publicType))
1704 recover();
1705
1706 TIntermNode *intermNode = nullptr;
Alexis Hetue5246692015-06-18 12:34:52 -04001707 if(!executeInitializer(identifierLocation, identifier, publicType, initializer, &intermNode))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001708 {
1709 //
1710 // build the intermediate representation
1711 //
1712 if(intermNode)
1713 {
1714 return intermediate.growAggregate(aggregateDeclaration, intermNode, initLocation);
1715 }
1716 else
1717 {
1718 return aggregateDeclaration;
1719 }
1720 }
1721 else
1722 {
1723 recover();
1724 return nullptr;
1725 }
1726}
1727
1728TIntermAggregate *TParseContext::parseArrayInitDeclarator(const TPublicType &publicType,
1729 TIntermAggregate *aggregateDeclaration,
1730 const TSourceLoc &identifierLocation,
1731 const TString &identifier,
1732 const TSourceLoc &indexLocation,
1733 TIntermTyped *indexExpression,
1734 const TSourceLoc &initLocation, TIntermTyped *initializer)
1735{
1736 // If the declaration starting this declarator list was empty (example: int,), some checks were not performed.
1737 if(mDeferredSingleDeclarationErrorCheck)
1738 {
1739 if(singleDeclarationErrorCheck(publicType, identifierLocation))
1740 recover();
1741 mDeferredSingleDeclarationErrorCheck = false;
1742 }
1743
1744 if(locationDeclaratorListCheck(identifierLocation, publicType))
1745 recover();
1746
1747 if(arrayTypeErrorCheck(indexLocation, publicType) || arrayQualifierErrorCheck(indexLocation, publicType))
1748 {
1749 recover();
1750 }
1751
1752 TPublicType arrayType(publicType);
1753
1754 int size = 0;
1755 // If indexExpression is nullptr, then the array will eventually get its size implicitly from the initializer.
1756 if(indexExpression != nullptr && arraySizeErrorCheck(identifierLocation, indexExpression, size))
1757 {
1758 recover();
1759 }
1760 // Make the type an array even if size check failed.
1761 // This ensures useless error messages regarding the variable's non-arrayness won't follow.
1762 arrayType.setArray(true, size);
1763
1764 // initNode will correspond to the whole of "b[n] = initializer".
1765 TIntermNode *initNode = nullptr;
Alexis Hetue5246692015-06-18 12:34:52 -04001766 if(!executeInitializer(identifierLocation, identifier, arrayType, initializer, &initNode))
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04001767 {
1768 if(initNode)
1769 {
1770 return intermediate.growAggregate(aggregateDeclaration, initNode, initLocation);
1771 }
1772 else
1773 {
1774 return aggregateDeclaration;
1775 }
1776 }
1777 else
1778 {
1779 recover();
1780 return nullptr;
1781 }
1782}
1783
Alexis Hetua35d8232015-06-11 17:11:06 -04001784void TParseContext::parseGlobalLayoutQualifier(const TPublicType &typeQualifier)
1785{
Alexis Hetu0a655842015-06-22 16:52:11 -04001786 if(mShaderVersion < 300)
Alexis Hetua35d8232015-06-11 17:11:06 -04001787 {
1788 error(typeQualifier.line, "layout qualifiers supported in GLSL ES 3.00 only", "layout");
1789 recover();
1790 return;
1791 }
1792
1793 if(typeQualifier.qualifier != EvqUniform)
1794 {
1795 error(typeQualifier.line, "invalid qualifier:", getQualifierString(typeQualifier.qualifier), "global layout must be uniform");
1796 recover();
1797 return;
1798 }
1799
1800 const TLayoutQualifier layoutQualifier = typeQualifier.layoutQualifier;
1801 ASSERT(!layoutQualifier.isEmpty());
1802
1803 if(layoutLocationErrorCheck(typeQualifier.line, typeQualifier.layoutQualifier))
1804 {
1805 recover();
1806 return;
1807 }
1808
1809 if(layoutQualifier.matrixPacking != EmpUnspecified)
1810 {
Alexis Hetu0a655842015-06-22 16:52:11 -04001811 mDefaultMatrixPacking = layoutQualifier.matrixPacking;
Alexis Hetua35d8232015-06-11 17:11:06 -04001812 }
1813
1814 if(layoutQualifier.blockStorage != EbsUnspecified)
1815 {
Alexis Hetu0a655842015-06-22 16:52:11 -04001816 mDefaultBlockStorage = layoutQualifier.blockStorage;
Alexis Hetua35d8232015-06-11 17:11:06 -04001817 }
1818}
1819
Alexis Hetu407813b2016-02-24 16:46:13 -05001820TIntermAggregate *TParseContext::addFunctionPrototypeDeclaration(const TFunction &function, const TSourceLoc &location)
1821{
1822 // Note: symbolTableFunction could be the same as function if this is the first declaration.
1823 // Either way the instance in the symbol table is used to track whether the function is declared
1824 // multiple times.
1825 TFunction *symbolTableFunction =
1826 static_cast<TFunction *>(symbolTable.find(function.getMangledName(), getShaderVersion()));
1827 if(symbolTableFunction->hasPrototypeDeclaration() && mShaderVersion == 100)
1828 {
1829 // ESSL 1.00.17 section 4.2.7.
1830 // Doesn't apply to ESSL 3.00.4: see section 4.2.3.
1831 error(location, "duplicate function prototype declarations are not allowed", "function");
1832 recover();
1833 }
1834 symbolTableFunction->setHasPrototypeDeclaration();
1835
1836 TIntermAggregate *prototype = new TIntermAggregate;
1837 prototype->setType(function.getReturnType());
1838 prototype->setName(function.getMangledName());
1839
1840 for(size_t i = 0; i < function.getParamCount(); i++)
1841 {
1842 const TParameter &param = function.getParam(i);
1843 if(param.name != 0)
1844 {
1845 TVariable variable(param.name, *param.type);
1846
1847 TIntermSymbol *paramSymbol = intermediate.addSymbol(
1848 variable.getUniqueId(), variable.getName(), variable.getType(), location);
1849 prototype = intermediate.growAggregate(prototype, paramSymbol, location);
1850 }
1851 else
1852 {
1853 TIntermSymbol *paramSymbol = intermediate.addSymbol(0, "", *param.type, location);
1854 prototype = intermediate.growAggregate(prototype, paramSymbol, location);
1855 }
1856 }
1857
1858 prototype->setOp(EOpPrototype);
1859
1860 symbolTable.pop();
1861
1862 if(!symbolTable.atGlobalLevel())
1863 {
1864 // ESSL 3.00.4 section 4.2.4.
1865 error(location, "local function prototype declarations are not allowed", "function");
1866 recover();
1867 }
1868
1869 return prototype;
1870}
1871
1872TIntermAggregate *TParseContext::addFunctionDefinition(const TFunction &function, TIntermAggregate *functionPrototype, TIntermAggregate *functionBody, const TSourceLoc &location)
1873{
1874 //?? Check that all paths return a value if return type != void ?
1875 // May be best done as post process phase on intermediate code
1876 if(mCurrentFunctionType->getBasicType() != EbtVoid && !mFunctionReturnsValue)
1877 {
1878 error(location, "function does not return a value:", "", function.getName().c_str());
1879 recover();
1880 }
1881
1882 TIntermAggregate *aggregate = intermediate.growAggregate(functionPrototype, functionBody, location);
1883 intermediate.setAggregateOperator(aggregate, EOpFunction, location);
1884 aggregate->setName(function.getMangledName().c_str());
1885 aggregate->setType(function.getReturnType());
1886
Nicolas Capens0863f0d2016-04-10 00:30:02 -04001887 // store the pragma information for debug and optimize and other vendor specific
1888 // information. This information can be queried from the parse tree
1889 aggregate->setOptimize(pragma().optimize);
Alexis Hetu407813b2016-02-24 16:46:13 -05001890 aggregate->setDebug(pragma().debug);
1891
Nicolas Capens0863f0d2016-04-10 00:30:02 -04001892 if(functionBody && functionBody->getAsAggregate())
Alexis Hetu407813b2016-02-24 16:46:13 -05001893 aggregate->setEndLine(functionBody->getAsAggregate()->getEndLine());
1894
1895 symbolTable.pop();
1896 return aggregate;
1897}
1898
1899void TParseContext::parseFunctionPrototype(const TSourceLoc &location, TFunction *function, TIntermAggregate **aggregateOut)
1900{
1901 const TSymbol *builtIn = symbolTable.findBuiltIn(function->getMangledName(), getShaderVersion());
1902
1903 if(builtIn)
1904 {
1905 error(location, "built-in functions cannot be redefined", function->getName().c_str());
1906 recover();
1907 }
1908
1909 TFunction *prevDec = static_cast<TFunction *>(symbolTable.find(function->getMangledName(), getShaderVersion()));
1910 //
1911 // Note: 'prevDec' could be 'function' if this is the first time we've seen function
1912 // as it would have just been put in the symbol table. Otherwise, we're looking up
1913 // an earlier occurance.
1914 //
1915 if(prevDec->isDefined())
1916 {
1917 // Then this function already has a body.
1918 error(location, "function already has a body", function->getName().c_str());
1919 recover();
1920 }
1921 prevDec->setDefined();
1922 //
1923 // Overload the unique ID of the definition to be the same unique ID as the declaration.
1924 // Eventually we will probably want to have only a single definition and just swap the
1925 // arguments to be the definition's arguments.
1926 //
1927 function->setUniqueId(prevDec->getUniqueId());
1928
1929 // Raise error message if main function takes any parameters or return anything other than void
1930 if(function->getName() == "main")
1931 {
1932 if(function->getParamCount() > 0)
1933 {
1934 error(location, "function cannot take any parameter(s)", function->getName().c_str());
1935 recover();
1936 }
1937 if(function->getReturnType().getBasicType() != EbtVoid)
1938 {
1939 error(location, "", function->getReturnType().getBasicString(), "main function cannot return a value");
1940 recover();
1941 }
1942 }
1943
1944 //
1945 // Remember the return type for later checking for RETURN statements.
1946 //
1947 mCurrentFunctionType = &(prevDec->getReturnType());
1948 mFunctionReturnsValue = false;
1949
1950 //
1951 // Insert parameters into the symbol table.
1952 // If the parameter has no name, it's not an error, just don't insert it
1953 // (could be used for unused args).
1954 //
1955 // Also, accumulate the list of parameters into the HIL, so lower level code
1956 // knows where to find parameters.
1957 //
1958 TIntermAggregate *paramNodes = new TIntermAggregate;
1959 for(size_t i = 0; i < function->getParamCount(); i++)
1960 {
1961 const TParameter &param = function->getParam(i);
1962 if(param.name != 0)
1963 {
1964 TVariable *variable = new TVariable(param.name, *param.type);
1965 //
1966 // Insert the parameters with name in the symbol table.
1967 //
Nicolas Capens0b7471a2018-01-09 21:39:21 -05001968 if(!symbolTable.declare(variable))
Alexis Hetu407813b2016-02-24 16:46:13 -05001969 {
1970 error(location, "redefinition", variable->getName().c_str());
1971 recover();
1972 paramNodes = intermediate.growAggregate(
1973 paramNodes, intermediate.addSymbol(0, "", *param.type, location), location);
1974 continue;
1975 }
1976
1977 //
1978 // Add the parameter to the HIL
1979 //
1980 TIntermSymbol *symbol = intermediate.addSymbol(
1981 variable->getUniqueId(), variable->getName(), variable->getType(), location);
1982
1983 paramNodes = intermediate.growAggregate(paramNodes, symbol, location);
1984 }
1985 else
1986 {
1987 paramNodes = intermediate.growAggregate(
1988 paramNodes, intermediate.addSymbol(0, "", *param.type, location), location);
1989 }
1990 }
1991 intermediate.setAggregateOperator(paramNodes, EOpParameters, location);
1992 *aggregateOut = paramNodes;
1993 setLoopNestingLevel(0);
1994}
1995
1996TFunction *TParseContext::parseFunctionDeclarator(const TSourceLoc &location, TFunction *function)
1997{
1998 //
1999 // We don't know at this point whether this is a function definition or a prototype.
2000 // The definition production code will check for redefinitions.
2001 // In the case of ESSL 1.00 the prototype production code will also check for redeclarations.
2002 //
2003 // Return types and parameter qualifiers must match in all redeclarations, so those are checked
2004 // here.
2005 //
2006 TFunction *prevDec = static_cast<TFunction *>(symbolTable.find(function->getMangledName(), getShaderVersion()));
Alexis Hetuec93b1d2016-12-09 16:01:29 -05002007 if(getShaderVersion() >= 300 && symbolTable.hasUnmangledBuiltIn(function->getName().c_str()))
2008 {
2009 // With ESSL 3.00, names of built-in functions cannot be redeclared as functions.
2010 // Therefore overloading or redefining builtin functions is an error.
2011 error(location, "Name of a built-in function cannot be redeclared as function", function->getName().c_str());
2012 }
2013 else if(prevDec)
Alexis Hetu407813b2016-02-24 16:46:13 -05002014 {
2015 if(prevDec->getReturnType() != function->getReturnType())
2016 {
2017 error(location, "overloaded functions must have the same return type",
2018 function->getReturnType().getBasicString());
2019 recover();
2020 }
2021 for(size_t i = 0; i < prevDec->getParamCount(); ++i)
2022 {
2023 if(prevDec->getParam(i).type->getQualifier() != function->getParam(i).type->getQualifier())
2024 {
2025 error(location, "overloaded functions must have the same parameter qualifiers",
2026 function->getParam(i).type->getQualifierString());
2027 recover();
2028 }
2029 }
2030 }
2031
2032 //
2033 // Check for previously declared variables using the same name.
2034 //
2035 TSymbol *prevSym = symbolTable.find(function->getName(), getShaderVersion());
2036 if(prevSym)
2037 {
2038 if(!prevSym->isFunction())
2039 {
2040 error(location, "redefinition", function->getName().c_str(), "function");
2041 recover();
2042 }
2043 }
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002044 else
2045 {
2046 // Insert the unmangled name to detect potential future redefinition as a variable.
2047 TFunction *unmangledFunction = new TFunction(NewPoolTString(function->getName().c_str()), function->getReturnType());
2048 symbolTable.getOuterLevel()->insertUnmangled(unmangledFunction);
2049 }
Alexis Hetu407813b2016-02-24 16:46:13 -05002050
2051 // We're at the inner scope level of the function's arguments and body statement.
2052 // Add the function prototype to the surrounding scope instead.
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002053 symbolTable.getOuterLevel()->insert(function);
Alexis Hetu407813b2016-02-24 16:46:13 -05002054
2055 //
2056 // If this is a redeclaration, it could also be a definition, in which case, we want to use the
2057 // variable names from this one, and not the one that's
2058 // being redeclared. So, pass back up this declaration, not the one in the symbol table.
2059 //
2060 return function;
2061}
2062
Alexis Hetue5246692015-06-18 12:34:52 -04002063TFunction *TParseContext::addConstructorFunc(const TPublicType &publicTypeIn)
2064{
2065 TPublicType publicType = publicTypeIn;
2066 TOperator op = EOpNull;
2067 if(publicType.userDef)
2068 {
2069 op = EOpConstructStruct;
2070 }
2071 else
2072 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05002073 op = TypeToConstructorOperator(TType(publicType));
Alexis Hetue5246692015-06-18 12:34:52 -04002074 if(op == EOpNull)
2075 {
2076 error(publicType.line, "cannot construct this type", getBasicString(publicType.type));
2077 recover();
2078 publicType.type = EbtFloat;
2079 op = EOpConstructFloat;
2080 }
2081 }
2082
2083 TString tempString;
2084 TType type(publicType);
2085 return new TFunction(&tempString, type, op);
2086}
2087
John Bauman66b8ab22014-05-06 15:57:45 -04002088// This function is used to test for the correctness of the parameters passed to various constructor functions
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002089// and also convert them to the right datatype if it is allowed and required.
John Bauman66b8ab22014-05-06 15:57:45 -04002090//
2091// Returns 0 for an error or the constructed node (aggregate or typed) for no error.
2092//
Alexis Hetufe1269e2015-06-16 12:43:32 -04002093TIntermTyped* TParseContext::addConstructor(TIntermNode* arguments, const TType* type, TOperator op, TFunction* fnCall, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -04002094{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002095 TIntermAggregate *aggregateArguments = arguments->getAsAggregate();
John Bauman66b8ab22014-05-06 15:57:45 -04002096
Nicolas Capens0bac2852016-05-07 06:09:58 -04002097 if(!aggregateArguments)
2098 {
2099 aggregateArguments = new TIntermAggregate;
2100 aggregateArguments->getSequence().push_back(arguments);
2101 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002102
Alexis Hetu2a198552016-09-27 20:50:45 -04002103 if(type->isArray())
2104 {
2105 // GLSL ES 3.00 section 5.4.4: Each argument must be the same type as the element type of
2106 // the array.
2107 for(TIntermNode *&argNode : aggregateArguments->getSequence())
2108 {
2109 const TType &argType = argNode->getAsTyped()->getType();
2110 // It has already been checked that the argument is not an array.
2111 ASSERT(!argType.isArray());
2112 if(!argType.sameElementType(*type))
2113 {
2114 error(line, "Array constructor argument has an incorrect type", "Error");
Alexis Hetuf0005a12016-09-28 15:52:21 -04002115 return nullptr;
Alexis Hetu2a198552016-09-27 20:50:45 -04002116 }
2117 }
2118 }
2119 else if(op == EOpConstructStruct)
Nicolas Capens0bac2852016-05-07 06:09:58 -04002120 {
2121 const TFieldList &fields = type->getStruct()->fields();
2122 TIntermSequence &args = aggregateArguments->getSequence();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002123
Nicolas Capens0bac2852016-05-07 06:09:58 -04002124 for(size_t i = 0; i < fields.size(); i++)
2125 {
2126 if(args[i]->getAsTyped()->getType() != *fields[i]->type())
2127 {
2128 error(line, "Structure constructor arguments do not match structure fields", "Error");
2129 recover();
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002130
Alexis Hetuf0005a12016-09-28 15:52:21 -04002131 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002132 }
2133 }
2134 }
John Bauman66b8ab22014-05-06 15:57:45 -04002135
Nicolas Capens0bac2852016-05-07 06:09:58 -04002136 // Turn the argument list itself into a constructor
2137 TIntermAggregate *constructor = intermediate.setAggregateOperator(aggregateArguments, op, line);
2138 TIntermTyped *constConstructor = foldConstConstructor(constructor, *type);
2139 if(constConstructor)
2140 {
2141 return constConstructor;
2142 }
John Bauman66b8ab22014-05-06 15:57:45 -04002143
Nicolas Capens0bac2852016-05-07 06:09:58 -04002144 return constructor;
John Bauman66b8ab22014-05-06 15:57:45 -04002145}
2146
2147TIntermTyped* TParseContext::foldConstConstructor(TIntermAggregate* aggrNode, const TType& type)
2148{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002149 aggrNode->setType(type);
2150 if (aggrNode->isConstantFoldable()) {
2151 bool returnVal = false;
2152 ConstantUnion* unionArray = new ConstantUnion[type.getObjectSize()];
2153 if (aggrNode->getSequence().size() == 1) {
2154 returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), type, true);
2155 }
2156 else {
2157 returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), type);
2158 }
2159 if (returnVal)
Alexis Hetuf0005a12016-09-28 15:52:21 -04002160 return nullptr;
John Bauman66b8ab22014-05-06 15:57:45 -04002161
Nicolas Capens0bac2852016-05-07 06:09:58 -04002162 return intermediate.addConstantUnion(unionArray, type, aggrNode->getLine());
2163 }
John Bauman66b8ab22014-05-06 15:57:45 -04002164
Alexis Hetuf0005a12016-09-28 15:52:21 -04002165 return nullptr;
John Bauman66b8ab22014-05-06 15:57:45 -04002166}
2167
John Bauman66b8ab22014-05-06 15:57:45 -04002168//
2169// This function returns the tree representation for the vector field(s) being accessed from contant vector.
2170// If only one component of vector is accessed (v.x or v[0] where v is a contant vector), then a contant node is
2171// returned, else an aggregate node is returned (for v.xy). The input to this function could either be the symbol
Nicolas Capens0863f0d2016-04-10 00:30:02 -04002172// node or it could be the intermediate tree representation of accessing fields in a constant structure or column of
John Bauman66b8ab22014-05-06 15:57:45 -04002173// a constant matrix.
2174//
Alexis Hetufe1269e2015-06-16 12:43:32 -04002175TIntermTyped* TParseContext::addConstVectorNode(TVectorFields& fields, TIntermTyped* node, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -04002176{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002177 TIntermTyped* typedNode;
2178 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
John Bauman66b8ab22014-05-06 15:57:45 -04002179
Nicolas Capens0bac2852016-05-07 06:09:58 -04002180 ConstantUnion *unionArray;
2181 if (tempConstantNode) {
2182 unionArray = tempConstantNode->getUnionArrayPointer();
John Bauman66b8ab22014-05-06 15:57:45 -04002183
Nicolas Capens0bac2852016-05-07 06:09:58 -04002184 if (!unionArray) {
2185 return node;
2186 }
2187 } else { // The node has to be either a symbol node or an aggregate node or a tempConstant node, else, its an error
2188 error(line, "Cannot offset into the vector", "Error");
2189 recover();
John Bauman66b8ab22014-05-06 15:57:45 -04002190
Alexis Hetuf0005a12016-09-28 15:52:21 -04002191 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002192 }
John Bauman66b8ab22014-05-06 15:57:45 -04002193
Nicolas Capens0bac2852016-05-07 06:09:58 -04002194 ConstantUnion* constArray = new ConstantUnion[fields.num];
John Bauman66b8ab22014-05-06 15:57:45 -04002195
Alexis Hetub34591a2016-06-28 15:48:35 -04002196 int objSize = static_cast<int>(node->getType().getObjectSize());
Nicolas Capens0bac2852016-05-07 06:09:58 -04002197 for (int i = 0; i < fields.num; i++) {
Alexis Hetub34591a2016-06-28 15:48:35 -04002198 if (fields.offsets[i] >= objSize) {
Nicolas Capens0bac2852016-05-07 06:09:58 -04002199 std::stringstream extraInfoStream;
2200 extraInfoStream << "vector field selection out of range '" << fields.offsets[i] << "'";
2201 std::string extraInfo = extraInfoStream.str();
2202 error(line, "", "[", extraInfo.c_str());
2203 recover();
2204 fields.offsets[i] = 0;
2205 }
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002206
Nicolas Capens0bac2852016-05-07 06:09:58 -04002207 constArray[i] = unionArray[fields.offsets[i]];
John Bauman66b8ab22014-05-06 15:57:45 -04002208
Nicolas Capens0bac2852016-05-07 06:09:58 -04002209 }
2210 typedNode = intermediate.addConstantUnion(constArray, node->getType(), line);
2211 return typedNode;
John Bauman66b8ab22014-05-06 15:57:45 -04002212}
2213
2214//
2215// This function returns the column being accessed from a constant matrix. The values are retrieved from
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002216// the symbol table and parse-tree is built for a vector (each column of a matrix is a vector). The input
2217// 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 -04002218// constant matrix or it could be the tree representation of the constant matrix (s.m1[0] where s is a constant structure)
2219//
Alexis Hetufe1269e2015-06-16 12:43:32 -04002220TIntermTyped* TParseContext::addConstMatrixNode(int index, TIntermTyped* node, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -04002221{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002222 TIntermTyped* typedNode;
2223 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
John Bauman66b8ab22014-05-06 15:57:45 -04002224
Nicolas Capens0bac2852016-05-07 06:09:58 -04002225 if (index >= node->getType().getNominalSize()) {
2226 std::stringstream extraInfoStream;
2227 extraInfoStream << "matrix field selection out of range '" << index << "'";
2228 std::string extraInfo = extraInfoStream.str();
2229 error(line, "", "[", extraInfo.c_str());
2230 recover();
2231 index = 0;
2232 }
John Bauman66b8ab22014-05-06 15:57:45 -04002233
Nicolas Capens0bac2852016-05-07 06:09:58 -04002234 if (tempConstantNode) {
2235 ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer();
2236 int size = tempConstantNode->getType().getNominalSize();
2237 typedNode = intermediate.addConstantUnion(&unionArray[size*index], tempConstantNode->getType(), line);
2238 } else {
2239 error(line, "Cannot offset into the matrix", "Error");
2240 recover();
John Bauman66b8ab22014-05-06 15:57:45 -04002241
Alexis Hetuf0005a12016-09-28 15:52:21 -04002242 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002243 }
John Bauman66b8ab22014-05-06 15:57:45 -04002244
Nicolas Capens0bac2852016-05-07 06:09:58 -04002245 return typedNode;
John Bauman66b8ab22014-05-06 15:57:45 -04002246}
2247
2248
2249//
2250// 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 -04002251// the symbol table and parse-tree is built for the type of the element. The input
2252// 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 -04002253// constant array or it could be the tree representation of the constant array (s.a1[0] where s is a constant structure)
2254//
Alexis Hetufe1269e2015-06-16 12:43:32 -04002255TIntermTyped* TParseContext::addConstArrayNode(int index, TIntermTyped* node, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -04002256{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002257 TIntermTyped* typedNode;
2258 TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion();
2259 TType arrayElementType = node->getType();
2260 arrayElementType.clearArrayness();
John Bauman66b8ab22014-05-06 15:57:45 -04002261
Nicolas Capens0bac2852016-05-07 06:09:58 -04002262 if (index >= node->getType().getArraySize()) {
2263 std::stringstream extraInfoStream;
2264 extraInfoStream << "array field selection out of range '" << index << "'";
2265 std::string extraInfo = extraInfoStream.str();
2266 error(line, "", "[", extraInfo.c_str());
2267 recover();
2268 index = 0;
2269 }
John Bauman66b8ab22014-05-06 15:57:45 -04002270
Nicolas Capens0bac2852016-05-07 06:09:58 -04002271 size_t arrayElementSize = arrayElementType.getObjectSize();
John Bauman66b8ab22014-05-06 15:57:45 -04002272
Nicolas Capens0bac2852016-05-07 06:09:58 -04002273 if (tempConstantNode) {
2274 ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer();
2275 typedNode = intermediate.addConstantUnion(&unionArray[arrayElementSize * index], tempConstantNode->getType(), line);
2276 } else {
2277 error(line, "Cannot offset into the array", "Error");
2278 recover();
John Bauman66b8ab22014-05-06 15:57:45 -04002279
Alexis Hetuf0005a12016-09-28 15:52:21 -04002280 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002281 }
John Bauman66b8ab22014-05-06 15:57:45 -04002282
Nicolas Capens0bac2852016-05-07 06:09:58 -04002283 return typedNode;
John Bauman66b8ab22014-05-06 15:57:45 -04002284}
2285
2286
2287//
Nicolas Capens7c0ec1e2014-06-12 12:18:44 -04002288// This function returns the value of a particular field inside a constant structure from the symbol table.
John Bauman66b8ab22014-05-06 15:57:45 -04002289// If there is an embedded/nested struct, it appropriately calls addConstStructNested or addConstStructFromAggr
2290// function and returns the parse-tree with the values of the embedded/nested struct.
2291//
Alexis Hetufe1269e2015-06-16 12:43:32 -04002292TIntermTyped* TParseContext::addConstStruct(const TString& identifier, TIntermTyped* node, const TSourceLoc &line)
John Bauman66b8ab22014-05-06 15:57:45 -04002293{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002294 const TFieldList &fields = node->getType().getStruct()->fields();
2295 TIntermTyped *typedNode;
2296 size_t instanceSize = 0;
2297 TIntermConstantUnion *tempConstantNode = node->getAsConstantUnion();
John Bauman66b8ab22014-05-06 15:57:45 -04002298
Nicolas Capens0bac2852016-05-07 06:09:58 -04002299 for(size_t index = 0; index < fields.size(); ++index) {
2300 if (fields[index]->name() == identifier) {
2301 break;
2302 } else {
2303 instanceSize += fields[index]->type()->getObjectSize();
2304 }
2305 }
John Bauman66b8ab22014-05-06 15:57:45 -04002306
Nicolas Capens0bac2852016-05-07 06:09:58 -04002307 if (tempConstantNode) {
2308 ConstantUnion* constArray = tempConstantNode->getUnionArrayPointer();
John Bauman66b8ab22014-05-06 15:57:45 -04002309
Nicolas Capens0bac2852016-05-07 06:09:58 -04002310 typedNode = intermediate.addConstantUnion(constArray+instanceSize, tempConstantNode->getType(), line); // type will be changed in the calling function
2311 } else {
2312 error(line, "Cannot offset into the structure", "Error");
2313 recover();
John Bauman66b8ab22014-05-06 15:57:45 -04002314
Alexis Hetuf0005a12016-09-28 15:52:21 -04002315 return nullptr;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002316 }
John Bauman66b8ab22014-05-06 15:57:45 -04002317
Nicolas Capens0bac2852016-05-07 06:09:58 -04002318 return typedNode;
John Bauman66b8ab22014-05-06 15:57:45 -04002319}
2320
Alexis Hetuad6b8752015-06-09 16:15:30 -04002321//
Alexis Hetua35d8232015-06-11 17:11:06 -04002322// Interface/uniform blocks
2323//
2324TIntermAggregate* TParseContext::addInterfaceBlock(const TPublicType& typeQualifier, const TSourceLoc& nameLine, const TString& blockName, TFieldList* fieldList,
Nicolas Capens0bac2852016-05-07 06:09:58 -04002325 const TString* instanceName, const TSourceLoc& instanceLine, TIntermTyped* arrayIndex, const TSourceLoc& arrayIndexLine)
Alexis Hetua35d8232015-06-11 17:11:06 -04002326{
2327 if(reservedErrorCheck(nameLine, blockName))
2328 recover();
2329
2330 if(typeQualifier.qualifier != EvqUniform)
2331 {
2332 error(typeQualifier.line, "invalid qualifier:", getQualifierString(typeQualifier.qualifier), "interface blocks must be uniform");
2333 recover();
2334 }
2335
2336 TLayoutQualifier blockLayoutQualifier = typeQualifier.layoutQualifier;
2337 if(layoutLocationErrorCheck(typeQualifier.line, blockLayoutQualifier))
2338 {
2339 recover();
2340 }
2341
2342 if(blockLayoutQualifier.matrixPacking == EmpUnspecified)
2343 {
Alexis Hetu0a655842015-06-22 16:52:11 -04002344 blockLayoutQualifier.matrixPacking = mDefaultMatrixPacking;
Alexis Hetua35d8232015-06-11 17:11:06 -04002345 }
2346
2347 if(blockLayoutQualifier.blockStorage == EbsUnspecified)
2348 {
Alexis Hetu0a655842015-06-22 16:52:11 -04002349 blockLayoutQualifier.blockStorage = mDefaultBlockStorage;
Alexis Hetua35d8232015-06-11 17:11:06 -04002350 }
2351
2352 TSymbol* blockNameSymbol = new TSymbol(&blockName);
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002353 if(!symbolTable.declare(blockNameSymbol)) {
Alexis Hetua35d8232015-06-11 17:11:06 -04002354 error(nameLine, "redefinition", blockName.c_str(), "interface block name");
2355 recover();
2356 }
2357
2358 // check for sampler types and apply layout qualifiers
2359 for(size_t memberIndex = 0; memberIndex < fieldList->size(); ++memberIndex) {
2360 TField* field = (*fieldList)[memberIndex];
2361 TType* fieldType = field->type();
2362 if(IsSampler(fieldType->getBasicType())) {
2363 error(field->line(), "unsupported type", fieldType->getBasicString(), "sampler types are not allowed in interface blocks");
2364 recover();
2365 }
2366
2367 const TQualifier qualifier = fieldType->getQualifier();
2368 switch(qualifier)
2369 {
2370 case EvqGlobal:
2371 case EvqUniform:
2372 break;
2373 default:
2374 error(field->line(), "invalid qualifier on interface block member", getQualifierString(qualifier));
2375 recover();
2376 break;
2377 }
2378
2379 // check layout qualifiers
2380 TLayoutQualifier fieldLayoutQualifier = fieldType->getLayoutQualifier();
2381 if(layoutLocationErrorCheck(field->line(), fieldLayoutQualifier))
2382 {
2383 recover();
2384 }
2385
2386 if(fieldLayoutQualifier.blockStorage != EbsUnspecified)
2387 {
2388 error(field->line(), "invalid layout qualifier:", getBlockStorageString(fieldLayoutQualifier.blockStorage), "cannot be used here");
2389 recover();
2390 }
2391
2392 if(fieldLayoutQualifier.matrixPacking == EmpUnspecified)
2393 {
2394 fieldLayoutQualifier.matrixPacking = blockLayoutQualifier.matrixPacking;
2395 }
Alexis Hetu536ffcc2017-11-28 09:57:37 -05002396 else if(!fieldType->isMatrix() && (fieldType->getBasicType() != EbtStruct))
Alexis Hetua35d8232015-06-11 17:11:06 -04002397 {
Alexis Hetu536ffcc2017-11-28 09:57:37 -05002398 warning(field->line(), "extraneous layout qualifier:", getMatrixPackingString(fieldLayoutQualifier.matrixPacking), "only has an effect on matrix types");
Alexis Hetua35d8232015-06-11 17:11:06 -04002399 }
2400
2401 fieldType->setLayoutQualifier(fieldLayoutQualifier);
2402 }
2403
2404 // add array index
2405 int arraySize = 0;
Nicolas Capens0bac2852016-05-07 06:09:58 -04002406 if(arrayIndex)
Alexis Hetua35d8232015-06-11 17:11:06 -04002407 {
2408 if(arraySizeErrorCheck(arrayIndexLine, arrayIndex, arraySize))
2409 recover();
2410 }
2411
2412 TInterfaceBlock* interfaceBlock = new TInterfaceBlock(&blockName, fieldList, instanceName, arraySize, blockLayoutQualifier);
2413 TType interfaceBlockType(interfaceBlock, typeQualifier.qualifier, blockLayoutQualifier, arraySize);
2414
2415 TString symbolName = "";
2416 int symbolId = 0;
2417
2418 if(!instanceName)
2419 {
2420 // define symbols for the members of the interface block
2421 for(size_t memberIndex = 0; memberIndex < fieldList->size(); ++memberIndex)
2422 {
2423 TField* field = (*fieldList)[memberIndex];
2424 TType* fieldType = field->type();
2425
2426 // set parent pointer of the field variable
2427 fieldType->setInterfaceBlock(interfaceBlock);
2428
2429 TVariable* fieldVariable = new TVariable(&field->name(), *fieldType);
2430 fieldVariable->setQualifier(typeQualifier.qualifier);
2431
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002432 if(!symbolTable.declare(fieldVariable)) {
Alexis Hetua35d8232015-06-11 17:11:06 -04002433 error(field->line(), "redefinition", field->name().c_str(), "interface block member name");
2434 recover();
2435 }
2436 }
2437 }
2438 else
2439 {
Alexis Hetu152997c2018-01-05 16:17:56 -05002440 if(reservedErrorCheck(nameLine, *instanceName))
2441 recover();
2442
Alexis Hetua35d8232015-06-11 17:11:06 -04002443 // add a symbol for this interface block
2444 TVariable* instanceTypeDef = new TVariable(instanceName, interfaceBlockType, false);
2445 instanceTypeDef->setQualifier(typeQualifier.qualifier);
2446
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002447 if(!symbolTable.declare(instanceTypeDef)) {
Alexis Hetua35d8232015-06-11 17:11:06 -04002448 error(instanceLine, "redefinition", instanceName->c_str(), "interface block instance name");
2449 recover();
2450 }
2451
2452 symbolId = instanceTypeDef->getUniqueId();
2453 symbolName = instanceTypeDef->getName();
2454 }
2455
2456 TIntermAggregate *aggregate = intermediate.makeAggregate(intermediate.addSymbol(symbolId, symbolName, interfaceBlockType, typeQualifier.line), nameLine);
2457 aggregate->setOp(EOpDeclaration);
2458
2459 exitStructDeclaration();
2460 return aggregate;
2461}
2462
2463//
Alexis Hetuad6b8752015-06-09 16:15:30 -04002464// Parse an array index expression
2465//
2466TIntermTyped *TParseContext::addIndexExpression(TIntermTyped *baseExpression, const TSourceLoc &location, TIntermTyped *indexExpression)
2467{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002468 TIntermTyped *indexedExpression = nullptr;
Alexis Hetuad6b8752015-06-09 16:15:30 -04002469
2470 if(!baseExpression->isArray() && !baseExpression->isMatrix() && !baseExpression->isVector())
2471 {
2472 if(baseExpression->getAsSymbolNode())
2473 {
2474 error(location, " left of '[' is not of type array, matrix, or vector ",
2475 baseExpression->getAsSymbolNode()->getSymbol().c_str());
2476 }
2477 else
2478 {
2479 error(location, " left of '[' is not of type array, matrix, or vector ", "expression");
2480 }
2481 recover();
2482 }
2483
2484 TIntermConstantUnion *indexConstantUnion = indexExpression->getAsConstantUnion();
2485
Nicolas Capens5d507bc2017-12-22 17:28:33 -05002486 if(indexExpression->getQualifier() == EvqConstExpr && indexConstantUnion) // TODO: Qualifier check redundant?
Alexis Hetuad6b8752015-06-09 16:15:30 -04002487 {
2488 int index = indexConstantUnion->getIConst(0);
2489 if(index < 0)
2490 {
2491 std::stringstream infoStream;
2492 infoStream << index;
2493 std::string info = infoStream.str();
2494 error(location, "negative index", info.c_str());
2495 recover();
2496 index = 0;
2497 }
Nicolas Capens5d507bc2017-12-22 17:28:33 -05002498 if(baseExpression->getType().getQualifier() == EvqConstExpr && baseExpression->getAsConstantUnion()) // TODO: Qualifier check redundant?
Alexis Hetuad6b8752015-06-09 16:15:30 -04002499 {
2500 if(baseExpression->isArray())
2501 {
2502 // constant folding for arrays
2503 indexedExpression = addConstArrayNode(index, baseExpression, location);
2504 }
2505 else if(baseExpression->isVector())
2506 {
2507 // constant folding for vectors
2508 TVectorFields fields;
2509 fields.num = 1;
2510 fields.offsets[0] = index; // need to do it this way because v.xy sends fields integer array
2511 indexedExpression = addConstVectorNode(fields, baseExpression, location);
2512 }
2513 else if(baseExpression->isMatrix())
2514 {
2515 // constant folding for matrices
2516 indexedExpression = addConstMatrixNode(index, baseExpression, location);
2517 }
2518 }
2519 else
2520 {
2521 int safeIndex = -1;
2522
2523 if(baseExpression->isArray())
2524 {
2525 if(index >= baseExpression->getType().getArraySize())
2526 {
2527 std::stringstream extraInfoStream;
2528 extraInfoStream << "array index out of range '" << index << "'";
2529 std::string extraInfo = extraInfoStream.str();
2530 error(location, "", "[", extraInfo.c_str());
2531 recover();
2532 safeIndex = baseExpression->getType().getArraySize() - 1;
2533 }
2534 }
2535 else if((baseExpression->isVector() || baseExpression->isMatrix()) &&
2536 baseExpression->getType().getNominalSize() <= index)
2537 {
2538 std::stringstream extraInfoStream;
2539 extraInfoStream << "field selection out of range '" << index << "'";
2540 std::string extraInfo = extraInfoStream.str();
2541 error(location, "", "[", extraInfo.c_str());
2542 recover();
2543 safeIndex = baseExpression->getType().getNominalSize() - 1;
2544 }
2545
2546 // Don't modify the data of the previous constant union, because it can point
2547 // to builtins, like gl_MaxDrawBuffers. Instead use a new sanitized object.
2548 if(safeIndex != -1)
2549 {
2550 ConstantUnion *safeConstantUnion = new ConstantUnion();
2551 safeConstantUnion->setIConst(safeIndex);
2552 indexConstantUnion->replaceConstantUnion(safeConstantUnion);
2553 }
2554
2555 indexedExpression = intermediate.addIndex(EOpIndexDirect, baseExpression, indexExpression, location);
2556 }
2557 }
2558 else
2559 {
2560 if(baseExpression->isInterfaceBlock())
2561 {
2562 error(location, "",
2563 "[", "array indexes for interface blocks arrays must be constant integral expressions");
2564 recover();
2565 }
Alexis Hetuad6b8752015-06-09 16:15:30 -04002566 else if(baseExpression->getQualifier() == EvqFragmentOut)
2567 {
2568 error(location, "", "[", "array indexes for fragment outputs must be constant integral expressions");
2569 recover();
2570 }
Alexis Hetuad6b8752015-06-09 16:15:30 -04002571
2572 indexedExpression = intermediate.addIndex(EOpIndexIndirect, baseExpression, indexExpression, location);
2573 }
2574
2575 if(indexedExpression == 0)
2576 {
2577 ConstantUnion *unionArray = new ConstantUnion[1];
2578 unionArray->setFConst(0.0f);
2579 indexedExpression = intermediate.addConstantUnion(unionArray, TType(EbtFloat, EbpHigh, EvqConstExpr), location);
2580 }
2581 else if(baseExpression->isArray())
2582 {
2583 const TType &baseType = baseExpression->getType();
2584 if(baseType.getStruct())
2585 {
2586 TType copyOfType(baseType.getStruct());
2587 indexedExpression->setType(copyOfType);
2588 }
2589 else if(baseType.isInterfaceBlock())
2590 {
Alexis Hetu6c7ac3c2016-01-12 16:13:37 -05002591 TType copyOfType(baseType.getInterfaceBlock(), EvqTemporary, baseType.getLayoutQualifier(), 0);
Alexis Hetuad6b8752015-06-09 16:15:30 -04002592 indexedExpression->setType(copyOfType);
2593 }
2594 else
2595 {
2596 indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(),
2597 EvqTemporary, static_cast<unsigned char>(baseExpression->getNominalSize()),
2598 static_cast<unsigned char>(baseExpression->getSecondarySize())));
2599 }
2600
2601 if(baseExpression->getType().getQualifier() == EvqConstExpr)
2602 {
2603 indexedExpression->getTypePointer()->setQualifier(EvqConstExpr);
2604 }
2605 }
2606 else if(baseExpression->isMatrix())
2607 {
2608 TQualifier qualifier = baseExpression->getType().getQualifier() == EvqConstExpr ? EvqConstExpr : EvqTemporary;
2609 indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(),
2610 qualifier, static_cast<unsigned char>(baseExpression->getSecondarySize())));
2611 }
2612 else if(baseExpression->isVector())
2613 {
2614 TQualifier qualifier = baseExpression->getType().getQualifier() == EvqConstExpr ? EvqConstExpr : EvqTemporary;
2615 indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(), qualifier));
2616 }
2617 else
2618 {
2619 indexedExpression->setType(baseExpression->getType());
2620 }
2621
2622 return indexedExpression;
2623}
2624
2625TIntermTyped *TParseContext::addFieldSelectionExpression(TIntermTyped *baseExpression, const TSourceLoc &dotLocation,
2626 const TString &fieldString, const TSourceLoc &fieldLocation)
2627{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002628 TIntermTyped *indexedExpression = nullptr;
Alexis Hetuad6b8752015-06-09 16:15:30 -04002629
2630 if(baseExpression->isArray())
2631 {
2632 error(fieldLocation, "cannot apply dot operator to an array", ".");
2633 recover();
2634 }
2635
2636 if(baseExpression->isVector())
2637 {
2638 TVectorFields fields;
2639 if(!parseVectorFields(fieldString, baseExpression->getNominalSize(), fields, fieldLocation))
2640 {
2641 fields.num = 1;
2642 fields.offsets[0] = 0;
2643 recover();
2644 }
2645
Nicolas Capens0863f0d2016-04-10 00:30:02 -04002646 if(baseExpression->getAsConstantUnion())
Alexis Hetuad6b8752015-06-09 16:15:30 -04002647 {
2648 // constant folding for vector fields
2649 indexedExpression = addConstVectorNode(fields, baseExpression, fieldLocation);
2650 if(indexedExpression == 0)
2651 {
2652 recover();
2653 indexedExpression = baseExpression;
2654 }
2655 else
2656 {
2657 indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(),
2658 EvqConstExpr, (unsigned char)(fieldString).size()));
2659 }
2660 }
2661 else
2662 {
2663 TString vectorString = fieldString;
2664 TIntermTyped *index = intermediate.addSwizzle(fields, fieldLocation);
2665 indexedExpression = intermediate.addIndex(EOpVectorSwizzle, baseExpression, index, dotLocation);
2666 indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(),
Nicolas Capens341afbb2016-04-10 01:54:50 -04002667 baseExpression->getQualifier() == EvqConstExpr ? EvqConstExpr : EvqTemporary, (unsigned char)vectorString.size()));
Alexis Hetuad6b8752015-06-09 16:15:30 -04002668 }
2669 }
Alexis Hetuad6b8752015-06-09 16:15:30 -04002670 else if(baseExpression->getBasicType() == EbtStruct)
2671 {
2672 bool fieldFound = false;
2673 const TFieldList &fields = baseExpression->getType().getStruct()->fields();
2674 if(fields.empty())
2675 {
2676 error(dotLocation, "structure has no fields", "Internal Error");
2677 recover();
2678 indexedExpression = baseExpression;
2679 }
2680 else
2681 {
2682 unsigned int i;
2683 for(i = 0; i < fields.size(); ++i)
2684 {
2685 if(fields[i]->name() == fieldString)
2686 {
2687 fieldFound = true;
2688 break;
2689 }
2690 }
2691 if(fieldFound)
2692 {
2693 if(baseExpression->getType().getQualifier() == EvqConstExpr)
2694 {
2695 indexedExpression = addConstStruct(fieldString, baseExpression, dotLocation);
2696 if(indexedExpression == 0)
2697 {
2698 recover();
2699 indexedExpression = baseExpression;
2700 }
2701 else
2702 {
2703 indexedExpression->setType(*fields[i]->type());
2704 // change the qualifier of the return type, not of the structure field
2705 // as the structure definition is shared between various structures.
2706 indexedExpression->getTypePointer()->setQualifier(EvqConstExpr);
2707 }
2708 }
2709 else
2710 {
Alexis Hetuec93b1d2016-12-09 16:01:29 -05002711 TIntermTyped *index = TIntermTyped::CreateIndexNode(i);
2712 index->setLine(fieldLocation);
Alexis Hetuad6b8752015-06-09 16:15:30 -04002713 indexedExpression = intermediate.addIndex(EOpIndexDirectStruct, baseExpression, index, dotLocation);
2714 indexedExpression->setType(*fields[i]->type());
2715 }
2716 }
2717 else
2718 {
2719 error(dotLocation, " no such field in structure", fieldString.c_str());
2720 recover();
2721 indexedExpression = baseExpression;
2722 }
2723 }
2724 }
2725 else if(baseExpression->isInterfaceBlock())
2726 {
2727 bool fieldFound = false;
2728 const TFieldList &fields = baseExpression->getType().getInterfaceBlock()->fields();
2729 if(fields.empty())
2730 {
2731 error(dotLocation, "interface block has no fields", "Internal Error");
2732 recover();
2733 indexedExpression = baseExpression;
2734 }
2735 else
2736 {
2737 unsigned int i;
2738 for(i = 0; i < fields.size(); ++i)
2739 {
2740 if(fields[i]->name() == fieldString)
2741 {
2742 fieldFound = true;
2743 break;
2744 }
2745 }
2746 if(fieldFound)
2747 {
2748 ConstantUnion *unionArray = new ConstantUnion[1];
2749 unionArray->setIConst(i);
2750 TIntermTyped *index = intermediate.addConstantUnion(unionArray, *fields[i]->type(), fieldLocation);
2751 indexedExpression = intermediate.addIndex(EOpIndexDirectInterfaceBlock, baseExpression, index,
2752 dotLocation);
2753 indexedExpression->setType(*fields[i]->type());
2754 }
2755 else
2756 {
2757 error(dotLocation, " no such field in interface block", fieldString.c_str());
2758 recover();
2759 indexedExpression = baseExpression;
2760 }
2761 }
2762 }
2763 else
2764 {
Alexis Hetu0a655842015-06-22 16:52:11 -04002765 if(mShaderVersion < 300)
Alexis Hetuad6b8752015-06-09 16:15:30 -04002766 {
Nicolas Capensc09073f2017-11-09 09:49:03 -05002767 error(dotLocation, " field selection requires structure or vector on left hand side",
Alexis Hetuad6b8752015-06-09 16:15:30 -04002768 fieldString.c_str());
2769 }
2770 else
2771 {
2772 error(dotLocation,
Nicolas Capensc09073f2017-11-09 09:49:03 -05002773 " field selection requires structure, vector, or interface block on left hand side",
Alexis Hetuad6b8752015-06-09 16:15:30 -04002774 fieldString.c_str());
2775 }
2776 recover();
2777 indexedExpression = baseExpression;
2778 }
2779
2780 return indexedExpression;
2781}
2782
Nicolas Capens7d626792015-02-17 17:58:31 -05002783TLayoutQualifier TParseContext::parseLayoutQualifier(const TString &qualifierType, const TSourceLoc& qualifierTypeLine)
2784{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002785 TLayoutQualifier qualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002786
Nicolas Capens0bac2852016-05-07 06:09:58 -04002787 qualifier.location = -1;
Alexis Hetuad6b8752015-06-09 16:15:30 -04002788 qualifier.matrixPacking = EmpUnspecified;
2789 qualifier.blockStorage = EbsUnspecified;
Nicolas Capens7d626792015-02-17 17:58:31 -05002790
Alexis Hetuad6b8752015-06-09 16:15:30 -04002791 if(qualifierType == "shared")
2792 {
2793 qualifier.blockStorage = EbsShared;
2794 }
2795 else if(qualifierType == "packed")
2796 {
2797 qualifier.blockStorage = EbsPacked;
2798 }
2799 else if(qualifierType == "std140")
2800 {
2801 qualifier.blockStorage = EbsStd140;
2802 }
2803 else if(qualifierType == "row_major")
2804 {
2805 qualifier.matrixPacking = EmpRowMajor;
2806 }
2807 else if(qualifierType == "column_major")
2808 {
2809 qualifier.matrixPacking = EmpColumnMajor;
2810 }
2811 else if(qualifierType == "location")
Nicolas Capens0bac2852016-05-07 06:09:58 -04002812 {
2813 error(qualifierTypeLine, "invalid layout qualifier", qualifierType.c_str(), "location requires an argument");
2814 recover();
2815 }
2816 else
2817 {
2818 error(qualifierTypeLine, "invalid layout qualifier", qualifierType.c_str());
2819 recover();
2820 }
Nicolas Capens7d626792015-02-17 17:58:31 -05002821
Nicolas Capens0bac2852016-05-07 06:09:58 -04002822 return qualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002823}
2824
2825TLayoutQualifier TParseContext::parseLayoutQualifier(const TString &qualifierType, const TSourceLoc& qualifierTypeLine, const TString &intValueString, int intValue, const TSourceLoc& intValueLine)
2826{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002827 TLayoutQualifier qualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002828
Nicolas Capens0bac2852016-05-07 06:09:58 -04002829 qualifier.location = -1;
2830 qualifier.matrixPacking = EmpUnspecified;
2831 qualifier.blockStorage = EbsUnspecified;
Nicolas Capens7d626792015-02-17 17:58:31 -05002832
Nicolas Capens0bac2852016-05-07 06:09:58 -04002833 if (qualifierType != "location")
2834 {
2835 error(qualifierTypeLine, "invalid layout qualifier", qualifierType.c_str(), "only location may have arguments");
2836 recover();
2837 }
2838 else
2839 {
2840 // must check that location is non-negative
2841 if (intValue < 0)
2842 {
2843 error(intValueLine, "out of range:", intValueString.c_str(), "location must be non-negative");
2844 recover();
2845 }
2846 else
2847 {
2848 qualifier.location = intValue;
2849 }
2850 }
Nicolas Capens7d626792015-02-17 17:58:31 -05002851
Nicolas Capens0bac2852016-05-07 06:09:58 -04002852 return qualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002853}
2854
2855TLayoutQualifier TParseContext::joinLayoutQualifiers(TLayoutQualifier leftQualifier, TLayoutQualifier rightQualifier)
2856{
Nicolas Capens0bac2852016-05-07 06:09:58 -04002857 TLayoutQualifier joinedQualifier = leftQualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002858
Nicolas Capens0bac2852016-05-07 06:09:58 -04002859 if (rightQualifier.location != -1)
2860 {
2861 joinedQualifier.location = rightQualifier.location;
2862 }
Alexis Hetuad6b8752015-06-09 16:15:30 -04002863 if(rightQualifier.matrixPacking != EmpUnspecified)
2864 {
2865 joinedQualifier.matrixPacking = rightQualifier.matrixPacking;
2866 }
2867 if(rightQualifier.blockStorage != EbsUnspecified)
2868 {
2869 joinedQualifier.blockStorage = rightQualifier.blockStorage;
2870 }
Nicolas Capens7d626792015-02-17 17:58:31 -05002871
Nicolas Capens0bac2852016-05-07 06:09:58 -04002872 return joinedQualifier;
Nicolas Capens7d626792015-02-17 17:58:31 -05002873}
2874
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002875
2876TPublicType TParseContext::joinInterpolationQualifiers(const TSourceLoc &interpolationLoc, TQualifier interpolationQualifier,
2877 const TSourceLoc &storageLoc, TQualifier storageQualifier)
2878{
2879 TQualifier mergedQualifier = EvqSmoothIn;
2880
Alexis Hetu42ff6b12015-06-03 16:03:48 -04002881 if(storageQualifier == EvqFragmentIn) {
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002882 if(interpolationQualifier == EvqSmooth)
2883 mergedQualifier = EvqSmoothIn;
2884 else if(interpolationQualifier == EvqFlat)
2885 mergedQualifier = EvqFlatIn;
Nicolas Capens3713cd42015-06-22 10:41:54 -04002886 else UNREACHABLE(interpolationQualifier);
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002887 }
2888 else if(storageQualifier == EvqCentroidIn) {
2889 if(interpolationQualifier == EvqSmooth)
2890 mergedQualifier = EvqCentroidIn;
2891 else if(interpolationQualifier == EvqFlat)
2892 mergedQualifier = EvqFlatIn;
Nicolas Capens3713cd42015-06-22 10:41:54 -04002893 else UNREACHABLE(interpolationQualifier);
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002894 }
Alexis Hetu42ff6b12015-06-03 16:03:48 -04002895 else if(storageQualifier == EvqVertexOut) {
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002896 if(interpolationQualifier == EvqSmooth)
2897 mergedQualifier = EvqSmoothOut;
2898 else if(interpolationQualifier == EvqFlat)
2899 mergedQualifier = EvqFlatOut;
Nicolas Capens3713cd42015-06-22 10:41:54 -04002900 else UNREACHABLE(interpolationQualifier);
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002901 }
2902 else if(storageQualifier == EvqCentroidOut) {
2903 if(interpolationQualifier == EvqSmooth)
2904 mergedQualifier = EvqCentroidOut;
2905 else if(interpolationQualifier == EvqFlat)
2906 mergedQualifier = EvqFlatOut;
Nicolas Capens3713cd42015-06-22 10:41:54 -04002907 else UNREACHABLE(interpolationQualifier);
Alexis Hetu55a2cbc2015-04-16 10:49:45 -04002908 }
2909 else {
2910 error(interpolationLoc, "interpolation qualifier requires a fragment 'in' or vertex 'out' storage qualifier", getQualifierString(interpolationQualifier));
2911 recover();
2912
2913 mergedQualifier = storageQualifier;
2914 }
2915
2916 TPublicType type;
2917 type.setBasic(EbtVoid, mergedQualifier, storageLoc);
2918 return type;
2919}
2920
Alexis Hetuad6b8752015-06-09 16:15:30 -04002921TFieldList *TParseContext::addStructDeclaratorList(const TPublicType &typeSpecifier, TFieldList *fieldList)
2922{
Alexis Hetudd7ff7a2015-06-11 08:25:30 -04002923 if(voidErrorCheck(typeSpecifier.line, (*fieldList)[0]->name(), typeSpecifier.type))
Alexis Hetuad6b8752015-06-09 16:15:30 -04002924 {
2925 recover();
2926 }
2927
2928 for(unsigned int i = 0; i < fieldList->size(); ++i)
2929 {
2930 //
2931 // Careful not to replace already known aspects of type, like array-ness
2932 //
2933 TType *type = (*fieldList)[i]->type();
2934 type->setBasicType(typeSpecifier.type);
2935 type->setNominalSize(typeSpecifier.primarySize);
2936 type->setSecondarySize(typeSpecifier.secondarySize);
2937 type->setPrecision(typeSpecifier.precision);
2938 type->setQualifier(typeSpecifier.qualifier);
2939 type->setLayoutQualifier(typeSpecifier.layoutQualifier);
2940
2941 // don't allow arrays of arrays
2942 if(type->isArray())
2943 {
2944 if(arrayTypeErrorCheck(typeSpecifier.line, typeSpecifier))
2945 recover();
2946 }
2947 if(typeSpecifier.array)
2948 type->setArraySize(typeSpecifier.arraySize);
2949 if(typeSpecifier.userDef)
2950 {
2951 type->setStruct(typeSpecifier.userDef->getStruct());
2952 }
2953
2954 if(structNestingErrorCheck(typeSpecifier.line, *(*fieldList)[i]))
2955 {
2956 recover();
2957 }
2958 }
2959
2960 return fieldList;
2961}
2962
2963TPublicType TParseContext::addStructure(const TSourceLoc &structLine, const TSourceLoc &nameLine,
2964 const TString *structName, TFieldList *fieldList)
2965{
2966 TStructure *structure = new TStructure(structName, fieldList);
2967 TType *structureType = new TType(structure);
2968
2969 // Store a bool in the struct if we're at global scope, to allow us to
2970 // skip the local struct scoping workaround in HLSL.
2971 structure->setUniqueId(TSymbolTableLevel::nextUniqueId());
2972 structure->setAtGlobalScope(symbolTable.atGlobalLevel());
2973
2974 if(!structName->empty())
2975 {
2976 if(reservedErrorCheck(nameLine, *structName))
2977 {
2978 recover();
2979 }
2980 TVariable *userTypeDef = new TVariable(structName, *structureType, true);
Nicolas Capens0b7471a2018-01-09 21:39:21 -05002981 if(!symbolTable.declare(userTypeDef))
Alexis Hetuad6b8752015-06-09 16:15:30 -04002982 {
2983 error(nameLine, "redefinition", structName->c_str(), "struct");
2984 recover();
2985 }
2986 }
2987
2988 // ensure we do not specify any storage qualifiers on the struct members
2989 for(unsigned int typeListIndex = 0; typeListIndex < fieldList->size(); typeListIndex++)
2990 {
2991 const TField &field = *(*fieldList)[typeListIndex];
2992 const TQualifier qualifier = field.type()->getQualifier();
2993 switch(qualifier)
2994 {
2995 case EvqGlobal:
2996 case EvqTemporary:
2997 break;
2998 default:
2999 error(field.line(), "invalid qualifier on struct member", getQualifierString(qualifier));
3000 recover();
3001 break;
3002 }
3003 }
3004
3005 TPublicType publicType;
3006 publicType.setBasic(EbtStruct, EvqTemporary, structLine);
3007 publicType.userDef = structureType;
3008 exitStructDeclaration();
3009
3010 return publicType;
3011}
3012
Alexis Hetufe1269e2015-06-16 12:43:32 -04003013bool TParseContext::enterStructDeclaration(const TSourceLoc &line, const TString& identifier)
John Bauman66b8ab22014-05-06 15:57:45 -04003014{
Nicolas Capens0bac2852016-05-07 06:09:58 -04003015 ++mStructNestingLevel;
John Bauman66b8ab22014-05-06 15:57:45 -04003016
Nicolas Capens0bac2852016-05-07 06:09:58 -04003017 // Embedded structure definitions are not supported per GLSL ES spec.
3018 // They aren't allowed in GLSL either, but we need to detect this here
3019 // so we don't rely on the GLSL compiler to catch it.
3020 if (mStructNestingLevel > 1) {
3021 error(line, "", "Embedded struct definitions are not allowed");
3022 return true;
3023 }
John Bauman66b8ab22014-05-06 15:57:45 -04003024
Nicolas Capens0bac2852016-05-07 06:09:58 -04003025 return false;
John Bauman66b8ab22014-05-06 15:57:45 -04003026}
3027
3028void TParseContext::exitStructDeclaration()
3029{
Nicolas Capens0bac2852016-05-07 06:09:58 -04003030 --mStructNestingLevel;
John Bauman66b8ab22014-05-06 15:57:45 -04003031}
3032
Alexis Hetuad6b8752015-06-09 16:15:30 -04003033bool TParseContext::structNestingErrorCheck(const TSourceLoc &line, const TField &field)
3034{
3035 static const int kWebGLMaxStructNesting = 4;
3036
3037 if(field.type()->getBasicType() != EbtStruct)
3038 {
3039 return false;
3040 }
3041
3042 // We're already inside a structure definition at this point, so add
3043 // one to the field's struct nesting.
3044 if(1 + field.type()->getDeepestStructNesting() > kWebGLMaxStructNesting)
3045 {
3046 std::stringstream reasonStream;
3047 reasonStream << "Reference of struct type "
3048 << field.type()->getStruct()->name().c_str()
3049 << " exceeds maximum allowed nesting level of "
3050 << kWebGLMaxStructNesting;
3051 std::string reason = reasonStream.str();
3052 error(line, reason.c_str(), field.name().c_str(), "");
3053 return true;
3054 }
3055
3056 return false;
3057}
3058
3059TIntermTyped *TParseContext::createUnaryMath(TOperator op, TIntermTyped *child, const TSourceLoc &loc, const TType *funcReturnType)
3060{
3061 if(child == nullptr)
3062 {
3063 return nullptr;
3064 }
3065
3066 switch(op)
3067 {
3068 case EOpLogicalNot:
3069 if(child->getBasicType() != EbtBool ||
3070 child->isMatrix() ||
3071 child->isArray() ||
3072 child->isVector())
3073 {
3074 return nullptr;
3075 }
3076 break;
3077 case EOpBitwiseNot:
3078 if((child->getBasicType() != EbtInt && child->getBasicType() != EbtUInt) ||
3079 child->isMatrix() ||
3080 child->isArray())
3081 {
3082 return nullptr;
3083 }
3084 break;
3085 case EOpPostIncrement:
3086 case EOpPreIncrement:
3087 case EOpPostDecrement:
3088 case EOpPreDecrement:
3089 case EOpNegative:
3090 if(child->getBasicType() == EbtStruct ||
3091 child->getBasicType() == EbtBool ||
3092 child->isArray())
3093 {
3094 return nullptr;
3095 }
3096 // Operators for built-ins are already type checked against their prototype.
3097 default:
3098 break;
3099 }
3100
Nicolas Capensd3d9b9c2016-04-10 01:53:59 -04003101 return intermediate.addUnaryMath(op, child, loc, funcReturnType);
Alexis Hetuad6b8752015-06-09 16:15:30 -04003102}
3103
3104TIntermTyped *TParseContext::addUnaryMath(TOperator op, TIntermTyped *child, const TSourceLoc &loc)
3105{
3106 TIntermTyped *node = createUnaryMath(op, child, loc, nullptr);
3107 if(node == nullptr)
3108 {
3109 unaryOpError(loc, getOperatorString(op), child->getCompleteString());
3110 recover();
3111 return child;
3112 }
3113 return node;
3114}
3115
3116TIntermTyped *TParseContext::addUnaryMathLValue(TOperator op, TIntermTyped *child, const TSourceLoc &loc)
3117{
3118 if(lValueErrorCheck(loc, getOperatorString(op), child))
3119 recover();
3120 return addUnaryMath(op, child, loc);
3121}
3122
3123bool TParseContext::binaryOpCommonCheck(TOperator op, TIntermTyped *left, TIntermTyped *right, const TSourceLoc &loc)
3124{
3125 if(left->isArray() || right->isArray())
3126 {
Alexis Hetu0a655842015-06-22 16:52:11 -04003127 if(mShaderVersion < 300)
Alexis Hetuad6b8752015-06-09 16:15:30 -04003128 {
3129 error(loc, "Invalid operation for arrays", getOperatorString(op));
3130 return false;
3131 }
3132
3133 if(left->isArray() != right->isArray())
3134 {
3135 error(loc, "array / non-array mismatch", getOperatorString(op));
3136 return false;
3137 }
3138
3139 switch(op)
3140 {
3141 case EOpEqual:
3142 case EOpNotEqual:
3143 case EOpAssign:
3144 case EOpInitialize:
3145 break;
3146 default:
3147 error(loc, "Invalid operation for arrays", getOperatorString(op));
3148 return false;
3149 }
3150 // At this point, size of implicitly sized arrays should be resolved.
3151 if(left->getArraySize() != right->getArraySize())
3152 {
3153 error(loc, "array size mismatch", getOperatorString(op));
3154 return false;
3155 }
3156 }
3157
3158 // Check ops which require integer / ivec parameters
3159 bool isBitShift = false;
3160 switch(op)
3161 {
3162 case EOpBitShiftLeft:
3163 case EOpBitShiftRight:
3164 case EOpBitShiftLeftAssign:
3165 case EOpBitShiftRightAssign:
3166 // Unsigned can be bit-shifted by signed and vice versa, but we need to
3167 // check that the basic type is an integer type.
3168 isBitShift = true;
3169 if(!IsInteger(left->getBasicType()) || !IsInteger(right->getBasicType()))
3170 {
3171 return false;
3172 }
3173 break;
3174 case EOpBitwiseAnd:
3175 case EOpBitwiseXor:
3176 case EOpBitwiseOr:
3177 case EOpBitwiseAndAssign:
3178 case EOpBitwiseXorAssign:
3179 case EOpBitwiseOrAssign:
3180 // It is enough to check the type of only one operand, since later it
3181 // is checked that the operand types match.
3182 if(!IsInteger(left->getBasicType()))
3183 {
3184 return false;
3185 }
3186 break;
3187 default:
3188 break;
3189 }
3190
3191 // GLSL ES 1.00 and 3.00 do not support implicit type casting.
3192 // So the basic type should usually match.
3193 if(!isBitShift && left->getBasicType() != right->getBasicType())
3194 {
3195 return false;
3196 }
3197
3198 // Check that type sizes match exactly on ops that require that.
3199 // Also check restrictions for structs that contain arrays or samplers.
3200 switch(op)
3201 {
3202 case EOpAssign:
3203 case EOpInitialize:
3204 case EOpEqual:
3205 case EOpNotEqual:
3206 // ESSL 1.00 sections 5.7, 5.8, 5.9
Alexis Hetu0a655842015-06-22 16:52:11 -04003207 if(mShaderVersion < 300 && left->getType().isStructureContainingArrays())
Alexis Hetuad6b8752015-06-09 16:15:30 -04003208 {
3209 error(loc, "undefined operation for structs containing arrays", getOperatorString(op));
3210 return false;
3211 }
3212 // Samplers as l-values are disallowed also in ESSL 3.00, see section 4.1.7,
3213 // we interpret the spec so that this extends to structs containing samplers,
3214 // similarly to ESSL 1.00 spec.
Alexis Hetu0a655842015-06-22 16:52:11 -04003215 if((mShaderVersion < 300 || op == EOpAssign || op == EOpInitialize) &&
Alexis Hetuad6b8752015-06-09 16:15:30 -04003216 left->getType().isStructureContainingSamplers())
3217 {
3218 error(loc, "undefined operation for structs containing samplers", getOperatorString(op));
3219 return false;
3220 }
3221 case EOpLessThan:
3222 case EOpGreaterThan:
3223 case EOpLessThanEqual:
3224 case EOpGreaterThanEqual:
3225 if((left->getNominalSize() != right->getNominalSize()) ||
3226 (left->getSecondarySize() != right->getSecondarySize()))
3227 {
3228 return false;
3229 }
Alexis Hetuec93b1d2016-12-09 16:01:29 -05003230 break;
3231 case EOpAdd:
3232 case EOpSub:
3233 case EOpDiv:
3234 case EOpIMod:
3235 case EOpBitShiftLeft:
3236 case EOpBitShiftRight:
3237 case EOpBitwiseAnd:
3238 case EOpBitwiseXor:
3239 case EOpBitwiseOr:
3240 case EOpAddAssign:
3241 case EOpSubAssign:
3242 case EOpDivAssign:
3243 case EOpIModAssign:
3244 case EOpBitShiftLeftAssign:
3245 case EOpBitShiftRightAssign:
3246 case EOpBitwiseAndAssign:
3247 case EOpBitwiseXorAssign:
3248 case EOpBitwiseOrAssign:
3249 if((left->isMatrix() && right->isVector()) || (left->isVector() && right->isMatrix()))
3250 {
3251 return false;
3252 }
3253
3254 // Are the sizes compatible?
3255 if(left->getNominalSize() != right->getNominalSize() || left->getSecondarySize() != right->getSecondarySize())
3256 {
3257 // If the nominal sizes of operands do not match:
3258 // One of them must be a scalar.
3259 if(!left->isScalar() && !right->isScalar())
3260 return false;
3261
3262 // In the case of compound assignment other than multiply-assign,
3263 // the right side needs to be a scalar. Otherwise a vector/matrix
3264 // would be assigned to a scalar. A scalar can't be shifted by a
3265 // vector either.
3266 if(!right->isScalar() && (IsAssignment(op) || op == EOpBitShiftLeft || op == EOpBitShiftRight))
3267 return false;
3268 }
3269 break;
Alexis Hetuad6b8752015-06-09 16:15:30 -04003270 default:
3271 break;
3272 }
3273
3274 return true;
3275}
3276
Alexis Hetu76a343a2015-06-04 17:21:22 -04003277TIntermSwitch *TParseContext::addSwitch(TIntermTyped *init, TIntermAggregate *statementList, const TSourceLoc &loc)
3278{
3279 TBasicType switchType = init->getBasicType();
3280 if((switchType != EbtInt && switchType != EbtUInt) ||
3281 init->isMatrix() ||
3282 init->isArray() ||
3283 init->isVector())
3284 {
3285 error(init->getLine(), "init-expression in a switch statement must be a scalar integer", "switch");
3286 recover();
3287 return nullptr;
3288 }
3289
3290 if(statementList)
3291 {
3292 if(!ValidateSwitch::validate(switchType, this, statementList, loc))
3293 {
3294 recover();
3295 return nullptr;
3296 }
3297 }
3298
3299 TIntermSwitch *node = intermediate.addSwitch(init, statementList, loc);
3300 if(node == nullptr)
3301 {
3302 error(loc, "erroneous switch statement", "switch");
3303 recover();
3304 return nullptr;
3305 }
3306 return node;
3307}
3308
3309TIntermCase *TParseContext::addCase(TIntermTyped *condition, const TSourceLoc &loc)
3310{
Alexis Hetu0a655842015-06-22 16:52:11 -04003311 if(mSwitchNestingLevel == 0)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003312 {
3313 error(loc, "case labels need to be inside switch statements", "case");
3314 recover();
3315 return nullptr;
3316 }
3317 if(condition == nullptr)
3318 {
3319 error(loc, "case label must have a condition", "case");
3320 recover();
3321 return nullptr;
3322 }
3323 if((condition->getBasicType() != EbtInt && condition->getBasicType() != EbtUInt) ||
3324 condition->isMatrix() ||
3325 condition->isArray() ||
3326 condition->isVector())
3327 {
3328 error(condition->getLine(), "case label must be a scalar integer", "case");
3329 recover();
3330 }
3331 TIntermConstantUnion *conditionConst = condition->getAsConstantUnion();
3332 if(conditionConst == nullptr)
3333 {
3334 error(condition->getLine(), "case label must be constant", "case");
3335 recover();
3336 }
3337 TIntermCase *node = intermediate.addCase(condition, loc);
3338 if(node == nullptr)
3339 {
3340 error(loc, "erroneous case statement", "case");
3341 recover();
3342 return nullptr;
3343 }
3344 return node;
3345}
3346
3347TIntermCase *TParseContext::addDefault(const TSourceLoc &loc)
3348{
Alexis Hetu0a655842015-06-22 16:52:11 -04003349 if(mSwitchNestingLevel == 0)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003350 {
3351 error(loc, "default labels need to be inside switch statements", "default");
3352 recover();
3353 return nullptr;
3354 }
3355 TIntermCase *node = intermediate.addCase(nullptr, loc);
3356 if(node == nullptr)
3357 {
3358 error(loc, "erroneous default statement", "default");
3359 recover();
3360 return nullptr;
3361 }
3362 return node;
3363}
Alexis Hetue5246692015-06-18 12:34:52 -04003364TIntermTyped *TParseContext::createAssign(TOperator op, TIntermTyped *left, TIntermTyped *right, const TSourceLoc &loc)
3365{
3366 if(binaryOpCommonCheck(op, left, right, loc))
3367 {
3368 return intermediate.addAssign(op, left, right, loc);
3369 }
3370 return nullptr;
3371}
3372
3373TIntermTyped *TParseContext::addAssign(TOperator op, TIntermTyped *left, TIntermTyped *right, const TSourceLoc &loc)
3374{
3375 TIntermTyped *node = createAssign(op, left, right, loc);
3376 if(node == nullptr)
3377 {
3378 assignError(loc, "assign", left->getCompleteString(), right->getCompleteString());
3379 recover();
3380 return left;
3381 }
3382 return node;
3383}
Alexis Hetu76a343a2015-06-04 17:21:22 -04003384
Alexis Hetub4769582015-06-16 12:19:50 -04003385TIntermTyped *TParseContext::addBinaryMathInternal(TOperator op, TIntermTyped *left, TIntermTyped *right,
3386 const TSourceLoc &loc)
3387{
3388 if(!binaryOpCommonCheck(op, left, right, loc))
3389 return nullptr;
3390
3391 switch(op)
3392 {
3393 case EOpEqual:
3394 case EOpNotEqual:
3395 break;
3396 case EOpLessThan:
3397 case EOpGreaterThan:
3398 case EOpLessThanEqual:
3399 case EOpGreaterThanEqual:
3400 ASSERT(!left->isArray() && !right->isArray());
3401 if(left->isMatrix() || left->isVector() ||
3402 left->getBasicType() == EbtStruct)
3403 {
3404 return nullptr;
3405 }
3406 break;
3407 case EOpLogicalOr:
3408 case EOpLogicalXor:
3409 case EOpLogicalAnd:
3410 ASSERT(!left->isArray() && !right->isArray());
3411 if(left->getBasicType() != EbtBool ||
3412 left->isMatrix() || left->isVector())
3413 {
3414 return nullptr;
3415 }
3416 break;
3417 case EOpAdd:
3418 case EOpSub:
3419 case EOpDiv:
3420 case EOpMul:
3421 ASSERT(!left->isArray() && !right->isArray());
3422 if(left->getBasicType() == EbtStruct || left->getBasicType() == EbtBool)
3423 {
3424 return nullptr;
3425 }
3426 break;
3427 case EOpIMod:
3428 ASSERT(!left->isArray() && !right->isArray());
3429 // Note that this is only for the % operator, not for mod()
3430 if(left->getBasicType() == EbtStruct || left->getBasicType() == EbtBool || left->getBasicType() == EbtFloat)
3431 {
3432 return nullptr;
3433 }
3434 break;
3435 // Note that for bitwise ops, type checking is done in promote() to
3436 // share code between ops and compound assignment
3437 default:
3438 break;
3439 }
3440
3441 return intermediate.addBinaryMath(op, left, right, loc);
3442}
3443
3444TIntermTyped *TParseContext::addBinaryMath(TOperator op, TIntermTyped *left, TIntermTyped *right, const TSourceLoc &loc)
3445{
3446 TIntermTyped *node = addBinaryMathInternal(op, left, right, loc);
3447 if(node == 0)
3448 {
3449 binaryOpError(loc, getOperatorString(op), left->getCompleteString(), right->getCompleteString());
3450 recover();
3451 return left;
3452 }
3453 return node;
3454}
3455
3456TIntermTyped *TParseContext::addBinaryMathBooleanResult(TOperator op, TIntermTyped *left, TIntermTyped *right, const TSourceLoc &loc)
3457{
3458 TIntermTyped *node = addBinaryMathInternal(op, left, right, loc);
3459 if(node == 0)
3460 {
3461 binaryOpError(loc, getOperatorString(op), left->getCompleteString(), right->getCompleteString());
3462 recover();
3463 ConstantUnion *unionArray = new ConstantUnion[1];
3464 unionArray->setBConst(false);
3465 return intermediate.addConstantUnion(unionArray, TType(EbtBool, EbpUndefined, EvqConstExpr), loc);
3466 }
3467 return node;
3468}
3469
Alexis Hetu76a343a2015-06-04 17:21:22 -04003470TIntermBranch *TParseContext::addBranch(TOperator op, const TSourceLoc &loc)
3471{
3472 switch(op)
3473 {
3474 case EOpContinue:
Alexis Hetu0a655842015-06-22 16:52:11 -04003475 if(mLoopNestingLevel <= 0)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003476 {
3477 error(loc, "continue statement only allowed in loops", "");
3478 recover();
3479 }
3480 break;
3481 case EOpBreak:
Alexis Hetu0a655842015-06-22 16:52:11 -04003482 if(mLoopNestingLevel <= 0 && mSwitchNestingLevel <= 0)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003483 {
3484 error(loc, "break statement only allowed in loops and switch statements", "");
3485 recover();
3486 }
3487 break;
3488 case EOpReturn:
Alexis Hetu0a655842015-06-22 16:52:11 -04003489 if(mCurrentFunctionType->getBasicType() != EbtVoid)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003490 {
3491 error(loc, "non-void function must return a value", "return");
3492 recover();
3493 }
3494 break;
3495 default:
3496 // No checks for discard
3497 break;
3498 }
3499 return intermediate.addBranch(op, loc);
3500}
3501
3502TIntermBranch *TParseContext::addBranch(TOperator op, TIntermTyped *returnValue, const TSourceLoc &loc)
3503{
3504 ASSERT(op == EOpReturn);
Alexis Hetu0a655842015-06-22 16:52:11 -04003505 mFunctionReturnsValue = true;
3506 if(mCurrentFunctionType->getBasicType() == EbtVoid)
Alexis Hetu76a343a2015-06-04 17:21:22 -04003507 {
3508 error(loc, "void function cannot return a value", "return");
3509 recover();
3510 }
Alexis Hetu0a655842015-06-22 16:52:11 -04003511 else if(*mCurrentFunctionType != returnValue->getType())
Alexis Hetu76a343a2015-06-04 17:21:22 -04003512 {
3513 error(loc, "function return is not matching type:", "return");
3514 recover();
3515 }
3516 return intermediate.addBranch(op, returnValue, loc);
3517}
3518
Alexis Hetub3ff42c2015-07-03 18:19:57 -04003519TIntermTyped *TParseContext::addFunctionCallOrMethod(TFunction *fnCall, TIntermNode *paramNode, TIntermNode *thisNode, const TSourceLoc &loc, bool *fatalError)
3520{
3521 *fatalError = false;
3522 TOperator op = fnCall->getBuiltInOp();
3523 TIntermTyped *callNode = nullptr;
3524
3525 if(thisNode != nullptr)
3526 {
3527 ConstantUnion *unionArray = new ConstantUnion[1];
3528 int arraySize = 0;
3529 TIntermTyped *typedThis = thisNode->getAsTyped();
3530 if(fnCall->getName() != "length")
3531 {
3532 error(loc, "invalid method", fnCall->getName().c_str());
3533 recover();
3534 }
3535 else if(paramNode != nullptr)
3536 {
3537 error(loc, "method takes no parameters", "length");
3538 recover();
3539 }
3540 else if(typedThis == nullptr || !typedThis->isArray())
3541 {
3542 error(loc, "length can only be called on arrays", "length");
3543 recover();
3544 }
3545 else
3546 {
3547 arraySize = typedThis->getArraySize();
Alexis Hetub3ff42c2015-07-03 18:19:57 -04003548 }
3549 unionArray->setIConst(arraySize);
3550 callNode = intermediate.addConstantUnion(unionArray, TType(EbtInt, EbpUndefined, EvqConstExpr), loc);
3551 }
3552 else if(op != EOpNull)
3553 {
3554 //
3555 // Then this should be a constructor.
3556 // Don't go through the symbol table for constructors.
3557 // Their parameters will be verified algorithmically.
3558 //
3559 TType type(EbtVoid, EbpUndefined); // use this to get the type back
3560 if(!constructorErrorCheck(loc, paramNode, *fnCall, op, &type))
3561 {
3562 //
3563 // It's a constructor, of type 'type'.
3564 //
3565 callNode = addConstructor(paramNode, &type, op, fnCall, loc);
3566 }
3567
3568 if(callNode == nullptr)
3569 {
3570 recover();
3571 callNode = intermediate.setAggregateOperator(nullptr, op, loc);
3572 }
Alexis Hetub3ff42c2015-07-03 18:19:57 -04003573 }
3574 else
3575 {
3576 //
3577 // Not a constructor. Find it in the symbol table.
3578 //
3579 const TFunction *fnCandidate;
3580 bool builtIn;
3581 fnCandidate = findFunction(loc, fnCall, &builtIn);
3582 if(fnCandidate)
3583 {
3584 //
3585 // A declared function.
3586 //
3587 if(builtIn && !fnCandidate->getExtension().empty() &&
3588 extensionErrorCheck(loc, fnCandidate->getExtension()))
3589 {
3590 recover();
3591 }
3592 op = fnCandidate->getBuiltInOp();
3593 if(builtIn && op != EOpNull)
3594 {
3595 //
3596 // A function call mapped to a built-in operation.
3597 //
3598 if(fnCandidate->getParamCount() == 1)
3599 {
3600 //
3601 // Treat it like a built-in unary operator.
3602 //
3603 callNode = createUnaryMath(op, paramNode->getAsTyped(), loc, &fnCandidate->getReturnType());
3604 if(callNode == nullptr)
3605 {
3606 std::stringstream extraInfoStream;
3607 extraInfoStream << "built in unary operator function. Type: "
3608 << static_cast<TIntermTyped*>(paramNode)->getCompleteString();
3609 std::string extraInfo = extraInfoStream.str();
3610 error(paramNode->getLine(), " wrong operand type", "Internal Error", extraInfo.c_str());
3611 *fatalError = true;
3612 return nullptr;
3613 }
3614 }
3615 else
3616 {
3617 TIntermAggregate *aggregate = intermediate.setAggregateOperator(paramNode, op, loc);
3618 aggregate->setType(fnCandidate->getReturnType());
3619
3620 // Some built-in functions have out parameters too.
3621 functionCallLValueErrorCheck(fnCandidate, aggregate);
3622
3623 callNode = aggregate;
Nicolas Capens91dfb972016-04-09 23:45:12 -04003624
3625 if(fnCandidate->getParamCount() == 2)
3626 {
3627 TIntermSequence &parameters = paramNode->getAsAggregate()->getSequence();
3628 TIntermTyped *left = parameters[0]->getAsTyped();
3629 TIntermTyped *right = parameters[1]->getAsTyped();
3630
3631 TIntermConstantUnion *leftTempConstant = left->getAsConstantUnion();
3632 TIntermConstantUnion *rightTempConstant = right->getAsConstantUnion();
3633 if (leftTempConstant && rightTempConstant)
3634 {
3635 TIntermTyped *typedReturnNode = leftTempConstant->fold(op, rightTempConstant, infoSink());
3636
3637 if(typedReturnNode)
3638 {
3639 callNode = typedReturnNode;
3640 }
3641 }
3642 }
Alexis Hetub3ff42c2015-07-03 18:19:57 -04003643 }
3644 }
3645 else
3646 {
3647 // This is a real function call
3648
3649 TIntermAggregate *aggregate = intermediate.setAggregateOperator(paramNode, EOpFunctionCall, loc);
3650 aggregate->setType(fnCandidate->getReturnType());
3651
3652 // this is how we know whether the given function is a builtIn function or a user defined function
3653 // if builtIn == false, it's a userDefined -> could be an overloaded builtIn function also
3654 // if builtIn == true, it's definitely a builtIn function with EOpNull
3655 if(!builtIn)
3656 aggregate->setUserDefined();
3657 aggregate->setName(fnCandidate->getMangledName());
3658
3659 callNode = aggregate;
3660
3661 functionCallLValueErrorCheck(fnCandidate, aggregate);
3662 }
Alexis Hetub3ff42c2015-07-03 18:19:57 -04003663 }
3664 else
3665 {
3666 // error message was put out by findFunction()
3667 // Put on a dummy node for error recovery
3668 ConstantUnion *unionArray = new ConstantUnion[1];
3669 unionArray->setFConst(0.0f);
3670 callNode = intermediate.addConstantUnion(unionArray, TType(EbtFloat, EbpUndefined, EvqConstExpr), loc);
3671 recover();
3672 }
3673 }
3674 delete fnCall;
3675 return callNode;
3676}
3677
Alexis Hetueee212e2015-07-07 17:13:30 -04003678TIntermTyped *TParseContext::addTernarySelection(TIntermTyped *cond, TIntermTyped *trueBlock, TIntermTyped *falseBlock, const TSourceLoc &loc)
3679{
3680 if(boolErrorCheck(loc, cond))
3681 recover();
3682
3683 if(trueBlock->getType() != falseBlock->getType())
3684 {
3685 binaryOpError(loc, ":", trueBlock->getCompleteString(), falseBlock->getCompleteString());
3686 recover();
3687 return falseBlock;
3688 }
3689 // ESSL1 sections 5.2 and 5.7:
3690 // ESSL3 section 5.7:
3691 // Ternary operator is not among the operators allowed for structures/arrays.
3692 if(trueBlock->isArray() || trueBlock->getBasicType() == EbtStruct)
3693 {
3694 error(loc, "ternary operator is not allowed for structures or arrays", ":");
3695 recover();
3696 return falseBlock;
3697 }
3698 return intermediate.addSelection(cond, trueBlock, falseBlock, loc);
3699}
3700
John Bauman66b8ab22014-05-06 15:57:45 -04003701//
3702// Parse an array of strings using yyparse.
3703//
3704// Returns 0 for success.
3705//
3706int PaParseStrings(int count, const char* const string[], const int length[],
Nicolas Capens0bac2852016-05-07 06:09:58 -04003707 TParseContext* context) {
3708 if ((count == 0) || !string)
3709 return 1;
John Bauman66b8ab22014-05-06 15:57:45 -04003710
Nicolas Capens0bac2852016-05-07 06:09:58 -04003711 if (glslang_initialize(context))
3712 return 1;
John Bauman66b8ab22014-05-06 15:57:45 -04003713
Nicolas Capens0bac2852016-05-07 06:09:58 -04003714 int error = glslang_scan(count, string, length, context);
3715 if (!error)
3716 error = glslang_parse(context);
John Bauman66b8ab22014-05-06 15:57:45 -04003717
Nicolas Capens0bac2852016-05-07 06:09:58 -04003718 glslang_finalize(context);
John Bauman66b8ab22014-05-06 15:57:45 -04003719
Nicolas Capens0bac2852016-05-07 06:09:58 -04003720 return (error == 0) && (context->numErrors() == 0) ? 0 : 1;
John Bauman66b8ab22014-05-06 15:57:45 -04003721}
3722
3723
3724