Wed, 31 Dec 2014 06:09:35 +0100
Cloned upstream origin tor-browser at tor-browser-31.3.0esr-4.5-1-build1
revision ID fc1c9ff7c1b2defdbc039f12214767608f46423f for hacking purpose.
michael@0 | 1 | // |
michael@0 | 2 | // Copyright (c) 2002-2013 The ANGLE Project Authors. All rights reserved. |
michael@0 | 3 | // Use of this source code is governed by a BSD-style license that can be |
michael@0 | 4 | // found in the LICENSE file. |
michael@0 | 5 | // |
michael@0 | 6 | |
michael@0 | 7 | #include "compiler/ParseHelper.h" |
michael@0 | 8 | |
michael@0 | 9 | #include <stdarg.h> |
michael@0 | 10 | #include <stdio.h> |
michael@0 | 11 | |
michael@0 | 12 | #include "compiler/glslang.h" |
michael@0 | 13 | #include "compiler/preprocessor/SourceLocation.h" |
michael@0 | 14 | |
michael@0 | 15 | /////////////////////////////////////////////////////////////////////// |
michael@0 | 16 | // |
michael@0 | 17 | // Sub- vector and matrix fields |
michael@0 | 18 | // |
michael@0 | 19 | //////////////////////////////////////////////////////////////////////// |
michael@0 | 20 | |
michael@0 | 21 | // |
michael@0 | 22 | // Look at a '.' field selector string and change it into offsets |
michael@0 | 23 | // for a vector. |
michael@0 | 24 | // |
michael@0 | 25 | bool TParseContext::parseVectorFields(const TString& compString, int vecSize, TVectorFields& fields, const TSourceLoc& line) |
michael@0 | 26 | { |
michael@0 | 27 | fields.num = (int) compString.size(); |
michael@0 | 28 | if (fields.num > 4) { |
michael@0 | 29 | error(line, "illegal vector field selection", compString.c_str()); |
michael@0 | 30 | return false; |
michael@0 | 31 | } |
michael@0 | 32 | |
michael@0 | 33 | enum { |
michael@0 | 34 | exyzw, |
michael@0 | 35 | ergba, |
michael@0 | 36 | estpq |
michael@0 | 37 | } fieldSet[4]; |
michael@0 | 38 | |
michael@0 | 39 | for (int i = 0; i < fields.num; ++i) { |
michael@0 | 40 | switch (compString[i]) { |
michael@0 | 41 | case 'x': |
michael@0 | 42 | fields.offsets[i] = 0; |
michael@0 | 43 | fieldSet[i] = exyzw; |
michael@0 | 44 | break; |
michael@0 | 45 | case 'r': |
michael@0 | 46 | fields.offsets[i] = 0; |
michael@0 | 47 | fieldSet[i] = ergba; |
michael@0 | 48 | break; |
michael@0 | 49 | case 's': |
michael@0 | 50 | fields.offsets[i] = 0; |
michael@0 | 51 | fieldSet[i] = estpq; |
michael@0 | 52 | break; |
michael@0 | 53 | case 'y': |
michael@0 | 54 | fields.offsets[i] = 1; |
michael@0 | 55 | fieldSet[i] = exyzw; |
michael@0 | 56 | break; |
michael@0 | 57 | case 'g': |
michael@0 | 58 | fields.offsets[i] = 1; |
michael@0 | 59 | fieldSet[i] = ergba; |
michael@0 | 60 | break; |
michael@0 | 61 | case 't': |
michael@0 | 62 | fields.offsets[i] = 1; |
michael@0 | 63 | fieldSet[i] = estpq; |
michael@0 | 64 | break; |
michael@0 | 65 | case 'z': |
michael@0 | 66 | fields.offsets[i] = 2; |
michael@0 | 67 | fieldSet[i] = exyzw; |
michael@0 | 68 | break; |
michael@0 | 69 | case 'b': |
michael@0 | 70 | fields.offsets[i] = 2; |
michael@0 | 71 | fieldSet[i] = ergba; |
michael@0 | 72 | break; |
michael@0 | 73 | case 'p': |
michael@0 | 74 | fields.offsets[i] = 2; |
michael@0 | 75 | fieldSet[i] = estpq; |
michael@0 | 76 | break; |
michael@0 | 77 | |
michael@0 | 78 | case 'w': |
michael@0 | 79 | fields.offsets[i] = 3; |
michael@0 | 80 | fieldSet[i] = exyzw; |
michael@0 | 81 | break; |
michael@0 | 82 | case 'a': |
michael@0 | 83 | fields.offsets[i] = 3; |
michael@0 | 84 | fieldSet[i] = ergba; |
michael@0 | 85 | break; |
michael@0 | 86 | case 'q': |
michael@0 | 87 | fields.offsets[i] = 3; |
michael@0 | 88 | fieldSet[i] = estpq; |
michael@0 | 89 | break; |
michael@0 | 90 | default: |
michael@0 | 91 | error(line, "illegal vector field selection", compString.c_str()); |
michael@0 | 92 | return false; |
michael@0 | 93 | } |
michael@0 | 94 | } |
michael@0 | 95 | |
michael@0 | 96 | for (int i = 0; i < fields.num; ++i) { |
michael@0 | 97 | if (fields.offsets[i] >= vecSize) { |
michael@0 | 98 | error(line, "vector field selection out of range", compString.c_str()); |
michael@0 | 99 | return false; |
michael@0 | 100 | } |
michael@0 | 101 | |
michael@0 | 102 | if (i > 0) { |
michael@0 | 103 | if (fieldSet[i] != fieldSet[i-1]) { |
michael@0 | 104 | error(line, "illegal - vector component fields not from the same set", compString.c_str()); |
michael@0 | 105 | return false; |
michael@0 | 106 | } |
michael@0 | 107 | } |
michael@0 | 108 | } |
michael@0 | 109 | |
michael@0 | 110 | return true; |
michael@0 | 111 | } |
michael@0 | 112 | |
michael@0 | 113 | |
michael@0 | 114 | // |
michael@0 | 115 | // Look at a '.' field selector string and change it into offsets |
michael@0 | 116 | // for a matrix. |
michael@0 | 117 | // |
michael@0 | 118 | bool TParseContext::parseMatrixFields(const TString& compString, int matSize, TMatrixFields& fields, const TSourceLoc& line) |
michael@0 | 119 | { |
michael@0 | 120 | fields.wholeRow = false; |
michael@0 | 121 | fields.wholeCol = false; |
michael@0 | 122 | fields.row = -1; |
michael@0 | 123 | fields.col = -1; |
michael@0 | 124 | |
michael@0 | 125 | if (compString.size() != 2) { |
michael@0 | 126 | error(line, "illegal length of matrix field selection", compString.c_str()); |
michael@0 | 127 | return false; |
michael@0 | 128 | } |
michael@0 | 129 | |
michael@0 | 130 | if (compString[0] == '_') { |
michael@0 | 131 | if (compString[1] < '0' || compString[1] > '3') { |
michael@0 | 132 | error(line, "illegal matrix field selection", compString.c_str()); |
michael@0 | 133 | return false; |
michael@0 | 134 | } |
michael@0 | 135 | fields.wholeCol = true; |
michael@0 | 136 | fields.col = compString[1] - '0'; |
michael@0 | 137 | } else if (compString[1] == '_') { |
michael@0 | 138 | if (compString[0] < '0' || compString[0] > '3') { |
michael@0 | 139 | error(line, "illegal matrix field selection", compString.c_str()); |
michael@0 | 140 | return false; |
michael@0 | 141 | } |
michael@0 | 142 | fields.wholeRow = true; |
michael@0 | 143 | fields.row = compString[0] - '0'; |
michael@0 | 144 | } else { |
michael@0 | 145 | if (compString[0] < '0' || compString[0] > '3' || |
michael@0 | 146 | compString[1] < '0' || compString[1] > '3') { |
michael@0 | 147 | error(line, "illegal matrix field selection", compString.c_str()); |
michael@0 | 148 | return false; |
michael@0 | 149 | } |
michael@0 | 150 | fields.row = compString[0] - '0'; |
michael@0 | 151 | fields.col = compString[1] - '0'; |
michael@0 | 152 | } |
michael@0 | 153 | |
michael@0 | 154 | if (fields.row >= matSize || fields.col >= matSize) { |
michael@0 | 155 | error(line, "matrix field selection out of range", compString.c_str()); |
michael@0 | 156 | return false; |
michael@0 | 157 | } |
michael@0 | 158 | |
michael@0 | 159 | return true; |
michael@0 | 160 | } |
michael@0 | 161 | |
michael@0 | 162 | /////////////////////////////////////////////////////////////////////// |
michael@0 | 163 | // |
michael@0 | 164 | // Errors |
michael@0 | 165 | // |
michael@0 | 166 | //////////////////////////////////////////////////////////////////////// |
michael@0 | 167 | |
michael@0 | 168 | // |
michael@0 | 169 | // Track whether errors have occurred. |
michael@0 | 170 | // |
michael@0 | 171 | void TParseContext::recover() |
michael@0 | 172 | { |
michael@0 | 173 | } |
michael@0 | 174 | |
michael@0 | 175 | // |
michael@0 | 176 | // Used by flex/bison to output all syntax and parsing errors. |
michael@0 | 177 | // |
michael@0 | 178 | void TParseContext::error(const TSourceLoc& loc, |
michael@0 | 179 | const char* reason, const char* token, |
michael@0 | 180 | const char* extraInfo) |
michael@0 | 181 | { |
michael@0 | 182 | pp::SourceLocation srcLoc; |
michael@0 | 183 | srcLoc.file = loc.first_file; |
michael@0 | 184 | srcLoc.line = loc.first_line; |
michael@0 | 185 | diagnostics.writeInfo(pp::Diagnostics::ERROR, |
michael@0 | 186 | srcLoc, reason, token, extraInfo); |
michael@0 | 187 | |
michael@0 | 188 | } |
michael@0 | 189 | |
michael@0 | 190 | void TParseContext::warning(const TSourceLoc& loc, |
michael@0 | 191 | const char* reason, const char* token, |
michael@0 | 192 | const char* extraInfo) { |
michael@0 | 193 | pp::SourceLocation srcLoc; |
michael@0 | 194 | srcLoc.file = loc.first_file; |
michael@0 | 195 | srcLoc.line = loc.first_line; |
michael@0 | 196 | diagnostics.writeInfo(pp::Diagnostics::WARNING, |
michael@0 | 197 | srcLoc, reason, token, extraInfo); |
michael@0 | 198 | } |
michael@0 | 199 | |
michael@0 | 200 | void TParseContext::trace(const char* str) |
michael@0 | 201 | { |
michael@0 | 202 | diagnostics.writeDebug(str); |
michael@0 | 203 | } |
michael@0 | 204 | |
michael@0 | 205 | // |
michael@0 | 206 | // Same error message for all places assignments don't work. |
michael@0 | 207 | // |
michael@0 | 208 | void TParseContext::assignError(const TSourceLoc& line, const char* op, TString left, TString right) |
michael@0 | 209 | { |
michael@0 | 210 | std::stringstream extraInfoStream; |
michael@0 | 211 | extraInfoStream << "cannot convert from '" << right << "' to '" << left << "'"; |
michael@0 | 212 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 213 | error(line, "", op, extraInfo.c_str()); |
michael@0 | 214 | } |
michael@0 | 215 | |
michael@0 | 216 | // |
michael@0 | 217 | // Same error message for all places unary operations don't work. |
michael@0 | 218 | // |
michael@0 | 219 | void TParseContext::unaryOpError(const TSourceLoc& line, const char* op, TString operand) |
michael@0 | 220 | { |
michael@0 | 221 | std::stringstream extraInfoStream; |
michael@0 | 222 | extraInfoStream << "no operation '" << op << "' exists that takes an operand of type " << operand |
michael@0 | 223 | << " (or there is no acceptable conversion)"; |
michael@0 | 224 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 225 | error(line, " wrong operand type", op, extraInfo.c_str()); |
michael@0 | 226 | } |
michael@0 | 227 | |
michael@0 | 228 | // |
michael@0 | 229 | // Same error message for all binary operations don't work. |
michael@0 | 230 | // |
michael@0 | 231 | void TParseContext::binaryOpError(const TSourceLoc& line, const char* op, TString left, TString right) |
michael@0 | 232 | { |
michael@0 | 233 | std::stringstream extraInfoStream; |
michael@0 | 234 | extraInfoStream << "no operation '" << op << "' exists that takes a left-hand operand of type '" << left |
michael@0 | 235 | << "' and a right operand of type '" << right << "' (or there is no acceptable conversion)"; |
michael@0 | 236 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 237 | error(line, " wrong operand types ", op, extraInfo.c_str()); |
michael@0 | 238 | } |
michael@0 | 239 | |
michael@0 | 240 | bool TParseContext::precisionErrorCheck(const TSourceLoc& line, TPrecision precision, TBasicType type){ |
michael@0 | 241 | if (!checksPrecisionErrors) |
michael@0 | 242 | return false; |
michael@0 | 243 | switch( type ){ |
michael@0 | 244 | case EbtFloat: |
michael@0 | 245 | if( precision == EbpUndefined ){ |
michael@0 | 246 | error( line, "No precision specified for (float)", "" ); |
michael@0 | 247 | return true; |
michael@0 | 248 | } |
michael@0 | 249 | break; |
michael@0 | 250 | case EbtInt: |
michael@0 | 251 | if( precision == EbpUndefined ){ |
michael@0 | 252 | error( line, "No precision specified (int)", "" ); |
michael@0 | 253 | return true; |
michael@0 | 254 | } |
michael@0 | 255 | break; |
michael@0 | 256 | default: |
michael@0 | 257 | return false; |
michael@0 | 258 | } |
michael@0 | 259 | return false; |
michael@0 | 260 | } |
michael@0 | 261 | |
michael@0 | 262 | // |
michael@0 | 263 | // Both test and if necessary, spit out an error, to see if the node is really |
michael@0 | 264 | // an l-value that can be operated on this way. |
michael@0 | 265 | // |
michael@0 | 266 | // Returns true if the was an error. |
michael@0 | 267 | // |
michael@0 | 268 | bool TParseContext::lValueErrorCheck(const TSourceLoc& line, const char* op, TIntermTyped* node) |
michael@0 | 269 | { |
michael@0 | 270 | TIntermSymbol* symNode = node->getAsSymbolNode(); |
michael@0 | 271 | TIntermBinary* binaryNode = node->getAsBinaryNode(); |
michael@0 | 272 | |
michael@0 | 273 | if (binaryNode) { |
michael@0 | 274 | bool errorReturn; |
michael@0 | 275 | |
michael@0 | 276 | switch(binaryNode->getOp()) { |
michael@0 | 277 | case EOpIndexDirect: |
michael@0 | 278 | case EOpIndexIndirect: |
michael@0 | 279 | case EOpIndexDirectStruct: |
michael@0 | 280 | return lValueErrorCheck(line, op, binaryNode->getLeft()); |
michael@0 | 281 | case EOpVectorSwizzle: |
michael@0 | 282 | errorReturn = lValueErrorCheck(line, op, binaryNode->getLeft()); |
michael@0 | 283 | if (!errorReturn) { |
michael@0 | 284 | int offset[4] = {0,0,0,0}; |
michael@0 | 285 | |
michael@0 | 286 | TIntermTyped* rightNode = binaryNode->getRight(); |
michael@0 | 287 | TIntermAggregate *aggrNode = rightNode->getAsAggregate(); |
michael@0 | 288 | |
michael@0 | 289 | for (TIntermSequence::iterator p = aggrNode->getSequence().begin(); |
michael@0 | 290 | p != aggrNode->getSequence().end(); p++) { |
michael@0 | 291 | int value = (*p)->getAsTyped()->getAsConstantUnion()->getIConst(0); |
michael@0 | 292 | offset[value]++; |
michael@0 | 293 | if (offset[value] > 1) { |
michael@0 | 294 | error(line, " l-value of swizzle cannot have duplicate components", op); |
michael@0 | 295 | |
michael@0 | 296 | return true; |
michael@0 | 297 | } |
michael@0 | 298 | } |
michael@0 | 299 | } |
michael@0 | 300 | |
michael@0 | 301 | return errorReturn; |
michael@0 | 302 | default: |
michael@0 | 303 | break; |
michael@0 | 304 | } |
michael@0 | 305 | error(line, " l-value required", op); |
michael@0 | 306 | |
michael@0 | 307 | return true; |
michael@0 | 308 | } |
michael@0 | 309 | |
michael@0 | 310 | |
michael@0 | 311 | const char* symbol = 0; |
michael@0 | 312 | if (symNode != 0) |
michael@0 | 313 | symbol = symNode->getSymbol().c_str(); |
michael@0 | 314 | |
michael@0 | 315 | const char* message = 0; |
michael@0 | 316 | switch (node->getQualifier()) { |
michael@0 | 317 | case EvqConst: message = "can't modify a const"; break; |
michael@0 | 318 | case EvqConstReadOnly: message = "can't modify a const"; break; |
michael@0 | 319 | case EvqAttribute: message = "can't modify an attribute"; break; |
michael@0 | 320 | case EvqUniform: message = "can't modify a uniform"; break; |
michael@0 | 321 | case EvqVaryingIn: message = "can't modify a varying"; break; |
michael@0 | 322 | case EvqFragCoord: message = "can't modify gl_FragCoord"; break; |
michael@0 | 323 | case EvqFrontFacing: message = "can't modify gl_FrontFacing"; break; |
michael@0 | 324 | case EvqPointCoord: message = "can't modify gl_PointCoord"; break; |
michael@0 | 325 | default: |
michael@0 | 326 | |
michael@0 | 327 | // |
michael@0 | 328 | // Type that can't be written to? |
michael@0 | 329 | // |
michael@0 | 330 | switch (node->getBasicType()) { |
michael@0 | 331 | case EbtSampler2D: |
michael@0 | 332 | case EbtSamplerCube: |
michael@0 | 333 | message = "can't modify a sampler"; |
michael@0 | 334 | break; |
michael@0 | 335 | case EbtVoid: |
michael@0 | 336 | message = "can't modify void"; |
michael@0 | 337 | break; |
michael@0 | 338 | default: |
michael@0 | 339 | break; |
michael@0 | 340 | } |
michael@0 | 341 | } |
michael@0 | 342 | |
michael@0 | 343 | if (message == 0 && binaryNode == 0 && symNode == 0) { |
michael@0 | 344 | error(line, " l-value required", op); |
michael@0 | 345 | |
michael@0 | 346 | return true; |
michael@0 | 347 | } |
michael@0 | 348 | |
michael@0 | 349 | |
michael@0 | 350 | // |
michael@0 | 351 | // Everything else is okay, no error. |
michael@0 | 352 | // |
michael@0 | 353 | if (message == 0) |
michael@0 | 354 | return false; |
michael@0 | 355 | |
michael@0 | 356 | // |
michael@0 | 357 | // If we get here, we have an error and a message. |
michael@0 | 358 | // |
michael@0 | 359 | if (symNode) { |
michael@0 | 360 | std::stringstream extraInfoStream; |
michael@0 | 361 | extraInfoStream << "\"" << symbol << "\" (" << message << ")"; |
michael@0 | 362 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 363 | error(line, " l-value required", op, extraInfo.c_str()); |
michael@0 | 364 | } |
michael@0 | 365 | else { |
michael@0 | 366 | std::stringstream extraInfoStream; |
michael@0 | 367 | extraInfoStream << "(" << message << ")"; |
michael@0 | 368 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 369 | error(line, " l-value required", op, extraInfo.c_str()); |
michael@0 | 370 | } |
michael@0 | 371 | |
michael@0 | 372 | return true; |
michael@0 | 373 | } |
michael@0 | 374 | |
michael@0 | 375 | // |
michael@0 | 376 | // Both test, and if necessary spit out an error, to see if the node is really |
michael@0 | 377 | // a constant. |
michael@0 | 378 | // |
michael@0 | 379 | // Returns true if the was an error. |
michael@0 | 380 | // |
michael@0 | 381 | bool TParseContext::constErrorCheck(TIntermTyped* node) |
michael@0 | 382 | { |
michael@0 | 383 | if (node->getQualifier() == EvqConst) |
michael@0 | 384 | return false; |
michael@0 | 385 | |
michael@0 | 386 | error(node->getLine(), "constant expression required", ""); |
michael@0 | 387 | |
michael@0 | 388 | return true; |
michael@0 | 389 | } |
michael@0 | 390 | |
michael@0 | 391 | // |
michael@0 | 392 | // Both test, and if necessary spit out an error, to see if the node is really |
michael@0 | 393 | // an integer. |
michael@0 | 394 | // |
michael@0 | 395 | // Returns true if the was an error. |
michael@0 | 396 | // |
michael@0 | 397 | bool TParseContext::integerErrorCheck(TIntermTyped* node, const char* token) |
michael@0 | 398 | { |
michael@0 | 399 | if (node->getBasicType() == EbtInt && node->getNominalSize() == 1) |
michael@0 | 400 | return false; |
michael@0 | 401 | |
michael@0 | 402 | error(node->getLine(), "integer expression required", token); |
michael@0 | 403 | |
michael@0 | 404 | return true; |
michael@0 | 405 | } |
michael@0 | 406 | |
michael@0 | 407 | // |
michael@0 | 408 | // Both test, and if necessary spit out an error, to see if we are currently |
michael@0 | 409 | // globally scoped. |
michael@0 | 410 | // |
michael@0 | 411 | // Returns true if the was an error. |
michael@0 | 412 | // |
michael@0 | 413 | bool TParseContext::globalErrorCheck(const TSourceLoc& line, bool global, const char* token) |
michael@0 | 414 | { |
michael@0 | 415 | if (global) |
michael@0 | 416 | return false; |
michael@0 | 417 | |
michael@0 | 418 | error(line, "only allowed at global scope", token); |
michael@0 | 419 | |
michael@0 | 420 | return true; |
michael@0 | 421 | } |
michael@0 | 422 | |
michael@0 | 423 | // |
michael@0 | 424 | // For now, keep it simple: if it starts "gl_", it's reserved, independent |
michael@0 | 425 | // of scope. Except, if the symbol table is at the built-in push-level, |
michael@0 | 426 | // which is when we are parsing built-ins. |
michael@0 | 427 | // Also checks for "webgl_" and "_webgl_" reserved identifiers if parsing a |
michael@0 | 428 | // webgl shader. |
michael@0 | 429 | // |
michael@0 | 430 | // Returns true if there was an error. |
michael@0 | 431 | // |
michael@0 | 432 | bool TParseContext::reservedErrorCheck(const TSourceLoc& line, const TString& identifier) |
michael@0 | 433 | { |
michael@0 | 434 | static const char* reservedErrMsg = "reserved built-in name"; |
michael@0 | 435 | if (!symbolTable.atBuiltInLevel()) { |
michael@0 | 436 | if (identifier.compare(0, 3, "gl_") == 0) { |
michael@0 | 437 | error(line, reservedErrMsg, "gl_"); |
michael@0 | 438 | return true; |
michael@0 | 439 | } |
michael@0 | 440 | if (isWebGLBasedSpec(shaderSpec)) { |
michael@0 | 441 | if (identifier.compare(0, 6, "webgl_") == 0) { |
michael@0 | 442 | error(line, reservedErrMsg, "webgl_"); |
michael@0 | 443 | return true; |
michael@0 | 444 | } |
michael@0 | 445 | if (identifier.compare(0, 7, "_webgl_") == 0) { |
michael@0 | 446 | error(line, reservedErrMsg, "_webgl_"); |
michael@0 | 447 | return true; |
michael@0 | 448 | } |
michael@0 | 449 | if (shaderSpec == SH_CSS_SHADERS_SPEC && identifier.compare(0, 4, "css_") == 0) { |
michael@0 | 450 | error(line, reservedErrMsg, "css_"); |
michael@0 | 451 | return true; |
michael@0 | 452 | } |
michael@0 | 453 | } |
michael@0 | 454 | if (identifier.find("__") != TString::npos) { |
michael@0 | 455 | error(line, "identifiers containing two consecutive underscores (__) are reserved as possible future keywords", identifier.c_str()); |
michael@0 | 456 | return true; |
michael@0 | 457 | } |
michael@0 | 458 | } |
michael@0 | 459 | |
michael@0 | 460 | return false; |
michael@0 | 461 | } |
michael@0 | 462 | |
michael@0 | 463 | // |
michael@0 | 464 | // Make sure there is enough data provided to the constructor to build |
michael@0 | 465 | // something of the type of the constructor. Also returns the type of |
michael@0 | 466 | // the constructor. |
michael@0 | 467 | // |
michael@0 | 468 | // Returns true if there was an error in construction. |
michael@0 | 469 | // |
michael@0 | 470 | bool TParseContext::constructorErrorCheck(const TSourceLoc& line, TIntermNode* node, TFunction& function, TOperator op, TType* type) |
michael@0 | 471 | { |
michael@0 | 472 | *type = function.getReturnType(); |
michael@0 | 473 | |
michael@0 | 474 | bool constructingMatrix = false; |
michael@0 | 475 | switch(op) { |
michael@0 | 476 | case EOpConstructMat2: |
michael@0 | 477 | case EOpConstructMat3: |
michael@0 | 478 | case EOpConstructMat4: |
michael@0 | 479 | constructingMatrix = true; |
michael@0 | 480 | break; |
michael@0 | 481 | default: |
michael@0 | 482 | break; |
michael@0 | 483 | } |
michael@0 | 484 | |
michael@0 | 485 | // |
michael@0 | 486 | // Note: It's okay to have too many components available, but not okay to have unused |
michael@0 | 487 | // arguments. 'full' will go to true when enough args have been seen. If we loop |
michael@0 | 488 | // again, there is an extra argument, so 'overfull' will become true. |
michael@0 | 489 | // |
michael@0 | 490 | |
michael@0 | 491 | size_t size = 0; |
michael@0 | 492 | bool constType = true; |
michael@0 | 493 | bool full = false; |
michael@0 | 494 | bool overFull = false; |
michael@0 | 495 | bool matrixInMatrix = false; |
michael@0 | 496 | bool arrayArg = false; |
michael@0 | 497 | for (size_t i = 0; i < function.getParamCount(); ++i) { |
michael@0 | 498 | const TParameter& param = function.getParam(i); |
michael@0 | 499 | size += param.type->getObjectSize(); |
michael@0 | 500 | |
michael@0 | 501 | if (constructingMatrix && param.type->isMatrix()) |
michael@0 | 502 | matrixInMatrix = true; |
michael@0 | 503 | if (full) |
michael@0 | 504 | overFull = true; |
michael@0 | 505 | if (op != EOpConstructStruct && !type->isArray() && size >= type->getObjectSize()) |
michael@0 | 506 | full = true; |
michael@0 | 507 | if (param.type->getQualifier() != EvqConst) |
michael@0 | 508 | constType = false; |
michael@0 | 509 | if (param.type->isArray()) |
michael@0 | 510 | arrayArg = true; |
michael@0 | 511 | } |
michael@0 | 512 | |
michael@0 | 513 | if (constType) |
michael@0 | 514 | type->setQualifier(EvqConst); |
michael@0 | 515 | |
michael@0 | 516 | if (type->isArray() && static_cast<size_t>(type->getArraySize()) != function.getParamCount()) { |
michael@0 | 517 | error(line, "array constructor needs one argument per array element", "constructor"); |
michael@0 | 518 | return true; |
michael@0 | 519 | } |
michael@0 | 520 | |
michael@0 | 521 | if (arrayArg && op != EOpConstructStruct) { |
michael@0 | 522 | error(line, "constructing from a non-dereferenced array", "constructor"); |
michael@0 | 523 | return true; |
michael@0 | 524 | } |
michael@0 | 525 | |
michael@0 | 526 | if (matrixInMatrix && !type->isArray()) { |
michael@0 | 527 | if (function.getParamCount() != 1) { |
michael@0 | 528 | error(line, "constructing matrix from matrix can only take one argument", "constructor"); |
michael@0 | 529 | return true; |
michael@0 | 530 | } |
michael@0 | 531 | } |
michael@0 | 532 | |
michael@0 | 533 | if (overFull) { |
michael@0 | 534 | error(line, "too many arguments", "constructor"); |
michael@0 | 535 | return true; |
michael@0 | 536 | } |
michael@0 | 537 | |
michael@0 | 538 | if (op == EOpConstructStruct && !type->isArray() && int(type->getStruct()->fields().size()) != function.getParamCount()) { |
michael@0 | 539 | error(line, "Number of constructor parameters does not match the number of structure fields", "constructor"); |
michael@0 | 540 | return true; |
michael@0 | 541 | } |
michael@0 | 542 | |
michael@0 | 543 | if (!type->isMatrix() || !matrixInMatrix) { |
michael@0 | 544 | if ((op != EOpConstructStruct && size != 1 && size < type->getObjectSize()) || |
michael@0 | 545 | (op == EOpConstructStruct && size < type->getObjectSize())) { |
michael@0 | 546 | error(line, "not enough data provided for construction", "constructor"); |
michael@0 | 547 | return true; |
michael@0 | 548 | } |
michael@0 | 549 | } |
michael@0 | 550 | |
michael@0 | 551 | TIntermTyped *typed = node ? node->getAsTyped() : 0; |
michael@0 | 552 | if (typed == 0) { |
michael@0 | 553 | error(line, "constructor argument does not have a type", "constructor"); |
michael@0 | 554 | return true; |
michael@0 | 555 | } |
michael@0 | 556 | if (op != EOpConstructStruct && IsSampler(typed->getBasicType())) { |
michael@0 | 557 | error(line, "cannot convert a sampler", "constructor"); |
michael@0 | 558 | return true; |
michael@0 | 559 | } |
michael@0 | 560 | if (typed->getBasicType() == EbtVoid) { |
michael@0 | 561 | error(line, "cannot convert a void", "constructor"); |
michael@0 | 562 | return true; |
michael@0 | 563 | } |
michael@0 | 564 | |
michael@0 | 565 | return false; |
michael@0 | 566 | } |
michael@0 | 567 | |
michael@0 | 568 | // This function checks to see if a void variable has been declared and raise an error message for such a case |
michael@0 | 569 | // |
michael@0 | 570 | // returns true in case of an error |
michael@0 | 571 | // |
michael@0 | 572 | bool TParseContext::voidErrorCheck(const TSourceLoc& line, const TString& identifier, const TPublicType& pubType) |
michael@0 | 573 | { |
michael@0 | 574 | if (pubType.type == EbtVoid) { |
michael@0 | 575 | error(line, "illegal use of type 'void'", identifier.c_str()); |
michael@0 | 576 | return true; |
michael@0 | 577 | } |
michael@0 | 578 | |
michael@0 | 579 | return false; |
michael@0 | 580 | } |
michael@0 | 581 | |
michael@0 | 582 | // This function checks to see if the node (for the expression) contains a scalar boolean expression or not |
michael@0 | 583 | // |
michael@0 | 584 | // returns true in case of an error |
michael@0 | 585 | // |
michael@0 | 586 | bool TParseContext::boolErrorCheck(const TSourceLoc& line, const TIntermTyped* type) |
michael@0 | 587 | { |
michael@0 | 588 | if (type->getBasicType() != EbtBool || type->isArray() || type->isMatrix() || type->isVector()) { |
michael@0 | 589 | error(line, "boolean expression expected", ""); |
michael@0 | 590 | return true; |
michael@0 | 591 | } |
michael@0 | 592 | |
michael@0 | 593 | return false; |
michael@0 | 594 | } |
michael@0 | 595 | |
michael@0 | 596 | // This function checks to see if the node (for the expression) contains a scalar boolean expression or not |
michael@0 | 597 | // |
michael@0 | 598 | // returns true in case of an error |
michael@0 | 599 | // |
michael@0 | 600 | bool TParseContext::boolErrorCheck(const TSourceLoc& line, const TPublicType& pType) |
michael@0 | 601 | { |
michael@0 | 602 | if (pType.type != EbtBool || pType.array || pType.matrix || (pType.size > 1)) { |
michael@0 | 603 | error(line, "boolean expression expected", ""); |
michael@0 | 604 | return true; |
michael@0 | 605 | } |
michael@0 | 606 | |
michael@0 | 607 | return false; |
michael@0 | 608 | } |
michael@0 | 609 | |
michael@0 | 610 | bool TParseContext::samplerErrorCheck(const TSourceLoc& line, const TPublicType& pType, const char* reason) |
michael@0 | 611 | { |
michael@0 | 612 | if (pType.type == EbtStruct) { |
michael@0 | 613 | if (containsSampler(*pType.userDef)) { |
michael@0 | 614 | error(line, reason, getBasicString(pType.type), "(structure contains a sampler)"); |
michael@0 | 615 | |
michael@0 | 616 | return true; |
michael@0 | 617 | } |
michael@0 | 618 | |
michael@0 | 619 | return false; |
michael@0 | 620 | } else if (IsSampler(pType.type)) { |
michael@0 | 621 | error(line, reason, getBasicString(pType.type)); |
michael@0 | 622 | |
michael@0 | 623 | return true; |
michael@0 | 624 | } |
michael@0 | 625 | |
michael@0 | 626 | return false; |
michael@0 | 627 | } |
michael@0 | 628 | |
michael@0 | 629 | bool TParseContext::structQualifierErrorCheck(const TSourceLoc& line, const TPublicType& pType) |
michael@0 | 630 | { |
michael@0 | 631 | if ((pType.qualifier == EvqVaryingIn || pType.qualifier == EvqVaryingOut || pType.qualifier == EvqAttribute) && |
michael@0 | 632 | pType.type == EbtStruct) { |
michael@0 | 633 | error(line, "cannot be used with a structure", getQualifierString(pType.qualifier)); |
michael@0 | 634 | |
michael@0 | 635 | return true; |
michael@0 | 636 | } |
michael@0 | 637 | |
michael@0 | 638 | if (pType.qualifier != EvqUniform && samplerErrorCheck(line, pType, "samplers must be uniform")) |
michael@0 | 639 | return true; |
michael@0 | 640 | |
michael@0 | 641 | return false; |
michael@0 | 642 | } |
michael@0 | 643 | |
michael@0 | 644 | bool TParseContext::parameterSamplerErrorCheck(const TSourceLoc& line, TQualifier qualifier, const TType& type) |
michael@0 | 645 | { |
michael@0 | 646 | if ((qualifier == EvqOut || qualifier == EvqInOut) && |
michael@0 | 647 | type.getBasicType() != EbtStruct && IsSampler(type.getBasicType())) { |
michael@0 | 648 | error(line, "samplers cannot be output parameters", type.getBasicString()); |
michael@0 | 649 | return true; |
michael@0 | 650 | } |
michael@0 | 651 | |
michael@0 | 652 | return false; |
michael@0 | 653 | } |
michael@0 | 654 | |
michael@0 | 655 | bool TParseContext::containsSampler(TType& type) |
michael@0 | 656 | { |
michael@0 | 657 | if (IsSampler(type.getBasicType())) |
michael@0 | 658 | return true; |
michael@0 | 659 | |
michael@0 | 660 | if (type.getBasicType() == EbtStruct) { |
michael@0 | 661 | const TFieldList& fields = type.getStruct()->fields(); |
michael@0 | 662 | for (unsigned int i = 0; i < fields.size(); ++i) { |
michael@0 | 663 | if (containsSampler(*fields[i]->type())) |
michael@0 | 664 | return true; |
michael@0 | 665 | } |
michael@0 | 666 | } |
michael@0 | 667 | |
michael@0 | 668 | return false; |
michael@0 | 669 | } |
michael@0 | 670 | |
michael@0 | 671 | // |
michael@0 | 672 | // Do size checking for an array type's size. |
michael@0 | 673 | // |
michael@0 | 674 | // Returns true if there was an error. |
michael@0 | 675 | // |
michael@0 | 676 | bool TParseContext::arraySizeErrorCheck(const TSourceLoc& line, TIntermTyped* expr, int& size) |
michael@0 | 677 | { |
michael@0 | 678 | TIntermConstantUnion* constant = expr->getAsConstantUnion(); |
michael@0 | 679 | if (constant == 0 || constant->getBasicType() != EbtInt) { |
michael@0 | 680 | error(line, "array size must be a constant integer expression", ""); |
michael@0 | 681 | return true; |
michael@0 | 682 | } |
michael@0 | 683 | |
michael@0 | 684 | size = constant->getIConst(0); |
michael@0 | 685 | |
michael@0 | 686 | if (size <= 0) { |
michael@0 | 687 | error(line, "array size must be a positive integer", ""); |
michael@0 | 688 | size = 1; |
michael@0 | 689 | return true; |
michael@0 | 690 | } |
michael@0 | 691 | |
michael@0 | 692 | return false; |
michael@0 | 693 | } |
michael@0 | 694 | |
michael@0 | 695 | // |
michael@0 | 696 | // See if this qualifier can be an array. |
michael@0 | 697 | // |
michael@0 | 698 | // Returns true if there is an error. |
michael@0 | 699 | // |
michael@0 | 700 | bool TParseContext::arrayQualifierErrorCheck(const TSourceLoc& line, TPublicType type) |
michael@0 | 701 | { |
michael@0 | 702 | if ((type.qualifier == EvqAttribute) || (type.qualifier == EvqConst)) { |
michael@0 | 703 | error(line, "cannot declare arrays of this qualifier", TType(type).getCompleteString().c_str()); |
michael@0 | 704 | return true; |
michael@0 | 705 | } |
michael@0 | 706 | |
michael@0 | 707 | return false; |
michael@0 | 708 | } |
michael@0 | 709 | |
michael@0 | 710 | // |
michael@0 | 711 | // See if this type can be an array. |
michael@0 | 712 | // |
michael@0 | 713 | // Returns true if there is an error. |
michael@0 | 714 | // |
michael@0 | 715 | bool TParseContext::arrayTypeErrorCheck(const TSourceLoc& line, TPublicType type) |
michael@0 | 716 | { |
michael@0 | 717 | // |
michael@0 | 718 | // Can the type be an array? |
michael@0 | 719 | // |
michael@0 | 720 | if (type.array) { |
michael@0 | 721 | error(line, "cannot declare arrays of arrays", TType(type).getCompleteString().c_str()); |
michael@0 | 722 | return true; |
michael@0 | 723 | } |
michael@0 | 724 | |
michael@0 | 725 | return false; |
michael@0 | 726 | } |
michael@0 | 727 | |
michael@0 | 728 | // |
michael@0 | 729 | // Do all the semantic checking for declaring an array, with and |
michael@0 | 730 | // without a size, and make the right changes to the symbol table. |
michael@0 | 731 | // |
michael@0 | 732 | // size == 0 means no specified size. |
michael@0 | 733 | // |
michael@0 | 734 | // Returns true if there was an error. |
michael@0 | 735 | // |
michael@0 | 736 | bool TParseContext::arrayErrorCheck(const TSourceLoc& line, TString& identifier, TPublicType type, TVariable*& variable) |
michael@0 | 737 | { |
michael@0 | 738 | // |
michael@0 | 739 | // Don't check for reserved word use until after we know it's not in the symbol table, |
michael@0 | 740 | // because reserved arrays can be redeclared. |
michael@0 | 741 | // |
michael@0 | 742 | |
michael@0 | 743 | bool builtIn = false; |
michael@0 | 744 | bool sameScope = false; |
michael@0 | 745 | TSymbol* symbol = symbolTable.find(identifier, &builtIn, &sameScope); |
michael@0 | 746 | if (symbol == 0 || !sameScope) { |
michael@0 | 747 | if (reservedErrorCheck(line, identifier)) |
michael@0 | 748 | return true; |
michael@0 | 749 | |
michael@0 | 750 | variable = new TVariable(&identifier, TType(type)); |
michael@0 | 751 | |
michael@0 | 752 | if (type.arraySize) |
michael@0 | 753 | variable->getType().setArraySize(type.arraySize); |
michael@0 | 754 | |
michael@0 | 755 | if (! symbolTable.insert(*variable)) { |
michael@0 | 756 | delete variable; |
michael@0 | 757 | error(line, "INTERNAL ERROR inserting new symbol", identifier.c_str()); |
michael@0 | 758 | return true; |
michael@0 | 759 | } |
michael@0 | 760 | } else { |
michael@0 | 761 | if (! symbol->isVariable()) { |
michael@0 | 762 | error(line, "variable expected", identifier.c_str()); |
michael@0 | 763 | return true; |
michael@0 | 764 | } |
michael@0 | 765 | |
michael@0 | 766 | variable = static_cast<TVariable*>(symbol); |
michael@0 | 767 | if (! variable->getType().isArray()) { |
michael@0 | 768 | error(line, "redeclaring non-array as array", identifier.c_str()); |
michael@0 | 769 | return true; |
michael@0 | 770 | } |
michael@0 | 771 | if (variable->getType().getArraySize() > 0) { |
michael@0 | 772 | error(line, "redeclaration of array with size", identifier.c_str()); |
michael@0 | 773 | return true; |
michael@0 | 774 | } |
michael@0 | 775 | |
michael@0 | 776 | if (! variable->getType().sameElementType(TType(type))) { |
michael@0 | 777 | error(line, "redeclaration of array with a different type", identifier.c_str()); |
michael@0 | 778 | return true; |
michael@0 | 779 | } |
michael@0 | 780 | |
michael@0 | 781 | if (type.arraySize) |
michael@0 | 782 | variable->getType().setArraySize(type.arraySize); |
michael@0 | 783 | } |
michael@0 | 784 | |
michael@0 | 785 | if (voidErrorCheck(line, identifier, type)) |
michael@0 | 786 | return true; |
michael@0 | 787 | |
michael@0 | 788 | return false; |
michael@0 | 789 | } |
michael@0 | 790 | |
michael@0 | 791 | // |
michael@0 | 792 | // Enforce non-initializer type/qualifier rules. |
michael@0 | 793 | // |
michael@0 | 794 | // Returns true if there was an error. |
michael@0 | 795 | // |
michael@0 | 796 | bool TParseContext::nonInitConstErrorCheck(const TSourceLoc& line, TString& identifier, TPublicType& type, bool array) |
michael@0 | 797 | { |
michael@0 | 798 | if (type.qualifier == EvqConst) |
michael@0 | 799 | { |
michael@0 | 800 | // Make the qualifier make sense. |
michael@0 | 801 | type.qualifier = EvqTemporary; |
michael@0 | 802 | |
michael@0 | 803 | if (array) |
michael@0 | 804 | { |
michael@0 | 805 | error(line, "arrays may not be declared constant since they cannot be initialized", identifier.c_str()); |
michael@0 | 806 | } |
michael@0 | 807 | else if (type.isStructureContainingArrays()) |
michael@0 | 808 | { |
michael@0 | 809 | error(line, "structures containing arrays may not be declared constant since they cannot be initialized", identifier.c_str()); |
michael@0 | 810 | } |
michael@0 | 811 | else |
michael@0 | 812 | { |
michael@0 | 813 | error(line, "variables with qualifier 'const' must be initialized", identifier.c_str()); |
michael@0 | 814 | } |
michael@0 | 815 | |
michael@0 | 816 | return true; |
michael@0 | 817 | } |
michael@0 | 818 | |
michael@0 | 819 | return false; |
michael@0 | 820 | } |
michael@0 | 821 | |
michael@0 | 822 | // |
michael@0 | 823 | // Do semantic checking for a variable declaration that has no initializer, |
michael@0 | 824 | // and update the symbol table. |
michael@0 | 825 | // |
michael@0 | 826 | // Returns true if there was an error. |
michael@0 | 827 | // |
michael@0 | 828 | bool TParseContext::nonInitErrorCheck(const TSourceLoc& line, TString& identifier, TPublicType& type, TVariable*& variable) |
michael@0 | 829 | { |
michael@0 | 830 | if (reservedErrorCheck(line, identifier)) |
michael@0 | 831 | recover(); |
michael@0 | 832 | |
michael@0 | 833 | variable = new TVariable(&identifier, TType(type)); |
michael@0 | 834 | |
michael@0 | 835 | if (! symbolTable.insert(*variable)) { |
michael@0 | 836 | error(line, "redefinition", variable->getName().c_str()); |
michael@0 | 837 | delete variable; |
michael@0 | 838 | variable = 0; |
michael@0 | 839 | return true; |
michael@0 | 840 | } |
michael@0 | 841 | |
michael@0 | 842 | if (voidErrorCheck(line, identifier, type)) |
michael@0 | 843 | return true; |
michael@0 | 844 | |
michael@0 | 845 | return false; |
michael@0 | 846 | } |
michael@0 | 847 | |
michael@0 | 848 | bool TParseContext::paramErrorCheck(const TSourceLoc& line, TQualifier qualifier, TQualifier paramQualifier, TType* type) |
michael@0 | 849 | { |
michael@0 | 850 | if (qualifier != EvqConst && qualifier != EvqTemporary) { |
michael@0 | 851 | error(line, "qualifier not allowed on function parameter", getQualifierString(qualifier)); |
michael@0 | 852 | return true; |
michael@0 | 853 | } |
michael@0 | 854 | if (qualifier == EvqConst && paramQualifier != EvqIn) { |
michael@0 | 855 | error(line, "qualifier not allowed with ", getQualifierString(qualifier), getQualifierString(paramQualifier)); |
michael@0 | 856 | return true; |
michael@0 | 857 | } |
michael@0 | 858 | |
michael@0 | 859 | if (qualifier == EvqConst) |
michael@0 | 860 | type->setQualifier(EvqConstReadOnly); |
michael@0 | 861 | else |
michael@0 | 862 | type->setQualifier(paramQualifier); |
michael@0 | 863 | |
michael@0 | 864 | return false; |
michael@0 | 865 | } |
michael@0 | 866 | |
michael@0 | 867 | bool TParseContext::extensionErrorCheck(const TSourceLoc& line, const TString& extension) |
michael@0 | 868 | { |
michael@0 | 869 | const TExtensionBehavior& extBehavior = extensionBehavior(); |
michael@0 | 870 | TExtensionBehavior::const_iterator iter = extBehavior.find(extension.c_str()); |
michael@0 | 871 | if (iter == extBehavior.end()) { |
michael@0 | 872 | error(line, "extension", extension.c_str(), "is not supported"); |
michael@0 | 873 | return true; |
michael@0 | 874 | } |
michael@0 | 875 | // In GLSL ES, an extension's default behavior is "disable". |
michael@0 | 876 | if (iter->second == EBhDisable || iter->second == EBhUndefined) { |
michael@0 | 877 | error(line, "extension", extension.c_str(), "is disabled"); |
michael@0 | 878 | return true; |
michael@0 | 879 | } |
michael@0 | 880 | if (iter->second == EBhWarn) { |
michael@0 | 881 | warning(line, "extension", extension.c_str(), "is being used"); |
michael@0 | 882 | return false; |
michael@0 | 883 | } |
michael@0 | 884 | |
michael@0 | 885 | return false; |
michael@0 | 886 | } |
michael@0 | 887 | |
michael@0 | 888 | bool TParseContext::supportsExtension(const char* extension) |
michael@0 | 889 | { |
michael@0 | 890 | const TExtensionBehavior& extbehavior = extensionBehavior(); |
michael@0 | 891 | TExtensionBehavior::const_iterator iter = extbehavior.find(extension); |
michael@0 | 892 | return (iter != extbehavior.end()); |
michael@0 | 893 | } |
michael@0 | 894 | |
michael@0 | 895 | bool TParseContext::isExtensionEnabled(const char* extension) const |
michael@0 | 896 | { |
michael@0 | 897 | const TExtensionBehavior& extbehavior = extensionBehavior(); |
michael@0 | 898 | TExtensionBehavior::const_iterator iter = extbehavior.find(extension); |
michael@0 | 899 | |
michael@0 | 900 | if (iter == extbehavior.end()) |
michael@0 | 901 | { |
michael@0 | 902 | return false; |
michael@0 | 903 | } |
michael@0 | 904 | |
michael@0 | 905 | return (iter->second == EBhEnable || iter->second == EBhRequire); |
michael@0 | 906 | } |
michael@0 | 907 | |
michael@0 | 908 | ///////////////////////////////////////////////////////////////////////////////// |
michael@0 | 909 | // |
michael@0 | 910 | // Non-Errors. |
michael@0 | 911 | // |
michael@0 | 912 | ///////////////////////////////////////////////////////////////////////////////// |
michael@0 | 913 | |
michael@0 | 914 | // |
michael@0 | 915 | // Look up a function name in the symbol table, and make sure it is a function. |
michael@0 | 916 | // |
michael@0 | 917 | // Return the function symbol if found, otherwise 0. |
michael@0 | 918 | // |
michael@0 | 919 | const TFunction* TParseContext::findFunction(const TSourceLoc& line, TFunction* call, bool *builtIn) |
michael@0 | 920 | { |
michael@0 | 921 | // First find by unmangled name to check whether the function name has been |
michael@0 | 922 | // hidden by a variable name or struct typename. |
michael@0 | 923 | // If a function is found, check for one with a matching argument list. |
michael@0 | 924 | const TSymbol* symbol = symbolTable.find(call->getName(), builtIn); |
michael@0 | 925 | if (symbol == 0 || symbol->isFunction()) { |
michael@0 | 926 | symbol = symbolTable.find(call->getMangledName(), builtIn); |
michael@0 | 927 | } |
michael@0 | 928 | |
michael@0 | 929 | if (symbol == 0) { |
michael@0 | 930 | error(line, "no matching overloaded function found", call->getName().c_str()); |
michael@0 | 931 | return 0; |
michael@0 | 932 | } |
michael@0 | 933 | |
michael@0 | 934 | if (!symbol->isFunction()) { |
michael@0 | 935 | error(line, "function name expected", call->getName().c_str()); |
michael@0 | 936 | return 0; |
michael@0 | 937 | } |
michael@0 | 938 | |
michael@0 | 939 | return static_cast<const TFunction*>(symbol); |
michael@0 | 940 | } |
michael@0 | 941 | |
michael@0 | 942 | // |
michael@0 | 943 | // Initializers show up in several places in the grammar. Have one set of |
michael@0 | 944 | // code to handle them here. |
michael@0 | 945 | // |
michael@0 | 946 | bool TParseContext::executeInitializer(const TSourceLoc& line, TString& identifier, TPublicType& pType, |
michael@0 | 947 | TIntermTyped* initializer, TIntermNode*& intermNode, TVariable* variable) |
michael@0 | 948 | { |
michael@0 | 949 | TType type = TType(pType); |
michael@0 | 950 | |
michael@0 | 951 | if (variable == 0) { |
michael@0 | 952 | if (reservedErrorCheck(line, identifier)) |
michael@0 | 953 | return true; |
michael@0 | 954 | |
michael@0 | 955 | if (voidErrorCheck(line, identifier, pType)) |
michael@0 | 956 | return true; |
michael@0 | 957 | |
michael@0 | 958 | // |
michael@0 | 959 | // add variable to symbol table |
michael@0 | 960 | // |
michael@0 | 961 | variable = new TVariable(&identifier, type); |
michael@0 | 962 | if (! symbolTable.insert(*variable)) { |
michael@0 | 963 | error(line, "redefinition", variable->getName().c_str()); |
michael@0 | 964 | return true; |
michael@0 | 965 | // don't delete variable, it's used by error recovery, and the pool |
michael@0 | 966 | // pop will take care of the memory |
michael@0 | 967 | } |
michael@0 | 968 | } |
michael@0 | 969 | |
michael@0 | 970 | // |
michael@0 | 971 | // identifier must be of type constant, a global, or a temporary |
michael@0 | 972 | // |
michael@0 | 973 | TQualifier qualifier = variable->getType().getQualifier(); |
michael@0 | 974 | if ((qualifier != EvqTemporary) && (qualifier != EvqGlobal) && (qualifier != EvqConst)) { |
michael@0 | 975 | error(line, " cannot initialize this type of qualifier ", variable->getType().getQualifierString()); |
michael@0 | 976 | return true; |
michael@0 | 977 | } |
michael@0 | 978 | // |
michael@0 | 979 | // test for and propagate constant |
michael@0 | 980 | // |
michael@0 | 981 | |
michael@0 | 982 | if (qualifier == EvqConst) { |
michael@0 | 983 | if (qualifier != initializer->getType().getQualifier()) { |
michael@0 | 984 | std::stringstream extraInfoStream; |
michael@0 | 985 | extraInfoStream << "'" << variable->getType().getCompleteString() << "'"; |
michael@0 | 986 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 987 | error(line, " assigning non-constant to", "=", extraInfo.c_str()); |
michael@0 | 988 | variable->getType().setQualifier(EvqTemporary); |
michael@0 | 989 | return true; |
michael@0 | 990 | } |
michael@0 | 991 | if (type != initializer->getType()) { |
michael@0 | 992 | error(line, " non-matching types for const initializer ", |
michael@0 | 993 | variable->getType().getQualifierString()); |
michael@0 | 994 | variable->getType().setQualifier(EvqTemporary); |
michael@0 | 995 | return true; |
michael@0 | 996 | } |
michael@0 | 997 | if (initializer->getAsConstantUnion()) { |
michael@0 | 998 | variable->shareConstPointer(initializer->getAsConstantUnion()->getUnionArrayPointer()); |
michael@0 | 999 | } else if (initializer->getAsSymbolNode()) { |
michael@0 | 1000 | const TSymbol* symbol = symbolTable.find(initializer->getAsSymbolNode()->getSymbol()); |
michael@0 | 1001 | const TVariable* tVar = static_cast<const TVariable*>(symbol); |
michael@0 | 1002 | |
michael@0 | 1003 | ConstantUnion* constArray = tVar->getConstPointer(); |
michael@0 | 1004 | variable->shareConstPointer(constArray); |
michael@0 | 1005 | } else { |
michael@0 | 1006 | std::stringstream extraInfoStream; |
michael@0 | 1007 | extraInfoStream << "'" << variable->getType().getCompleteString() << "'"; |
michael@0 | 1008 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1009 | error(line, " cannot assign to", "=", extraInfo.c_str()); |
michael@0 | 1010 | variable->getType().setQualifier(EvqTemporary); |
michael@0 | 1011 | return true; |
michael@0 | 1012 | } |
michael@0 | 1013 | } |
michael@0 | 1014 | |
michael@0 | 1015 | if (qualifier != EvqConst) { |
michael@0 | 1016 | TIntermSymbol* intermSymbol = intermediate.addSymbol(variable->getUniqueId(), variable->getName(), variable->getType(), line); |
michael@0 | 1017 | intermNode = intermediate.addAssign(EOpInitialize, intermSymbol, initializer, line); |
michael@0 | 1018 | if (intermNode == 0) { |
michael@0 | 1019 | assignError(line, "=", intermSymbol->getCompleteString(), initializer->getCompleteString()); |
michael@0 | 1020 | return true; |
michael@0 | 1021 | } |
michael@0 | 1022 | } else |
michael@0 | 1023 | intermNode = 0; |
michael@0 | 1024 | |
michael@0 | 1025 | return false; |
michael@0 | 1026 | } |
michael@0 | 1027 | |
michael@0 | 1028 | bool TParseContext::areAllChildConst(TIntermAggregate* aggrNode) |
michael@0 | 1029 | { |
michael@0 | 1030 | ASSERT(aggrNode != NULL); |
michael@0 | 1031 | if (!aggrNode->isConstructor()) |
michael@0 | 1032 | return false; |
michael@0 | 1033 | |
michael@0 | 1034 | bool allConstant = true; |
michael@0 | 1035 | |
michael@0 | 1036 | // check if all the child nodes are constants so that they can be inserted into |
michael@0 | 1037 | // the parent node |
michael@0 | 1038 | TIntermSequence &sequence = aggrNode->getSequence() ; |
michael@0 | 1039 | for (TIntermSequence::iterator p = sequence.begin(); p != sequence.end(); ++p) { |
michael@0 | 1040 | if (!(*p)->getAsTyped()->getAsConstantUnion()) |
michael@0 | 1041 | return false; |
michael@0 | 1042 | } |
michael@0 | 1043 | |
michael@0 | 1044 | return allConstant; |
michael@0 | 1045 | } |
michael@0 | 1046 | |
michael@0 | 1047 | // This function is used to test for the correctness of the parameters passed to various constructor functions |
michael@0 | 1048 | // and also convert them to the right datatype if it is allowed and required. |
michael@0 | 1049 | // |
michael@0 | 1050 | // Returns 0 for an error or the constructed node (aggregate or typed) for no error. |
michael@0 | 1051 | // |
michael@0 | 1052 | TIntermTyped* TParseContext::addConstructor(TIntermNode* node, const TType* type, TOperator op, TFunction* fnCall, const TSourceLoc& line) |
michael@0 | 1053 | { |
michael@0 | 1054 | if (node == 0) |
michael@0 | 1055 | return 0; |
michael@0 | 1056 | |
michael@0 | 1057 | TIntermAggregate* aggrNode = node->getAsAggregate(); |
michael@0 | 1058 | |
michael@0 | 1059 | TFieldList::const_iterator memberFields; |
michael@0 | 1060 | if (op == EOpConstructStruct) |
michael@0 | 1061 | memberFields = type->getStruct()->fields().begin(); |
michael@0 | 1062 | |
michael@0 | 1063 | TType elementType = *type; |
michael@0 | 1064 | if (type->isArray()) |
michael@0 | 1065 | elementType.clearArrayness(); |
michael@0 | 1066 | |
michael@0 | 1067 | bool singleArg; |
michael@0 | 1068 | if (aggrNode) { |
michael@0 | 1069 | if (aggrNode->getOp() != EOpNull || aggrNode->getSequence().size() == 1) |
michael@0 | 1070 | singleArg = true; |
michael@0 | 1071 | else |
michael@0 | 1072 | singleArg = false; |
michael@0 | 1073 | } else |
michael@0 | 1074 | singleArg = true; |
michael@0 | 1075 | |
michael@0 | 1076 | TIntermTyped *newNode; |
michael@0 | 1077 | if (singleArg) { |
michael@0 | 1078 | // If structure constructor or array constructor is being called |
michael@0 | 1079 | // for only one parameter inside the structure, we need to call constructStruct function once. |
michael@0 | 1080 | if (type->isArray()) |
michael@0 | 1081 | newNode = constructStruct(node, &elementType, 1, node->getLine(), false); |
michael@0 | 1082 | else if (op == EOpConstructStruct) |
michael@0 | 1083 | newNode = constructStruct(node, (*memberFields)->type(), 1, node->getLine(), false); |
michael@0 | 1084 | else |
michael@0 | 1085 | newNode = constructBuiltIn(type, op, node, node->getLine(), false); |
michael@0 | 1086 | |
michael@0 | 1087 | if (newNode && newNode->getAsAggregate()) { |
michael@0 | 1088 | TIntermTyped* constConstructor = foldConstConstructor(newNode->getAsAggregate(), *type); |
michael@0 | 1089 | if (constConstructor) |
michael@0 | 1090 | return constConstructor; |
michael@0 | 1091 | } |
michael@0 | 1092 | |
michael@0 | 1093 | return newNode; |
michael@0 | 1094 | } |
michael@0 | 1095 | |
michael@0 | 1096 | // |
michael@0 | 1097 | // Handle list of arguments. |
michael@0 | 1098 | // |
michael@0 | 1099 | TIntermSequence &sequenceVector = aggrNode->getSequence() ; // Stores the information about the parameter to the constructor |
michael@0 | 1100 | // if the structure constructor contains more than one parameter, then construct |
michael@0 | 1101 | // each parameter |
michael@0 | 1102 | |
michael@0 | 1103 | int paramCount = 0; // keeps a track of the constructor parameter number being checked |
michael@0 | 1104 | |
michael@0 | 1105 | // for each parameter to the constructor call, check to see if the right type is passed or convert them |
michael@0 | 1106 | // to the right type if possible (and allowed). |
michael@0 | 1107 | // for structure constructors, just check if the right type is passed, no conversion is allowed. |
michael@0 | 1108 | |
michael@0 | 1109 | for (TIntermSequence::iterator p = sequenceVector.begin(); |
michael@0 | 1110 | p != sequenceVector.end(); p++, paramCount++) { |
michael@0 | 1111 | if (type->isArray()) |
michael@0 | 1112 | newNode = constructStruct(*p, &elementType, paramCount+1, node->getLine(), true); |
michael@0 | 1113 | else if (op == EOpConstructStruct) |
michael@0 | 1114 | newNode = constructStruct(*p, memberFields[paramCount]->type(), paramCount+1, node->getLine(), true); |
michael@0 | 1115 | else |
michael@0 | 1116 | newNode = constructBuiltIn(type, op, *p, node->getLine(), true); |
michael@0 | 1117 | |
michael@0 | 1118 | if (newNode) { |
michael@0 | 1119 | *p = newNode; |
michael@0 | 1120 | } |
michael@0 | 1121 | } |
michael@0 | 1122 | |
michael@0 | 1123 | TIntermTyped* constructor = intermediate.setAggregateOperator(aggrNode, op, line); |
michael@0 | 1124 | TIntermTyped* constConstructor = foldConstConstructor(constructor->getAsAggregate(), *type); |
michael@0 | 1125 | if (constConstructor) |
michael@0 | 1126 | return constConstructor; |
michael@0 | 1127 | |
michael@0 | 1128 | return constructor; |
michael@0 | 1129 | } |
michael@0 | 1130 | |
michael@0 | 1131 | TIntermTyped* TParseContext::foldConstConstructor(TIntermAggregate* aggrNode, const TType& type) |
michael@0 | 1132 | { |
michael@0 | 1133 | bool canBeFolded = areAllChildConst(aggrNode); |
michael@0 | 1134 | aggrNode->setType(type); |
michael@0 | 1135 | if (canBeFolded) { |
michael@0 | 1136 | bool returnVal = false; |
michael@0 | 1137 | ConstantUnion* unionArray = new ConstantUnion[type.getObjectSize()]; |
michael@0 | 1138 | if (aggrNode->getSequence().size() == 1) { |
michael@0 | 1139 | returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), symbolTable, type, true); |
michael@0 | 1140 | } |
michael@0 | 1141 | else { |
michael@0 | 1142 | returnVal = intermediate.parseConstTree(aggrNode->getLine(), aggrNode, unionArray, aggrNode->getOp(), symbolTable, type); |
michael@0 | 1143 | } |
michael@0 | 1144 | if (returnVal) |
michael@0 | 1145 | return 0; |
michael@0 | 1146 | |
michael@0 | 1147 | return intermediate.addConstantUnion(unionArray, type, aggrNode->getLine()); |
michael@0 | 1148 | } |
michael@0 | 1149 | |
michael@0 | 1150 | return 0; |
michael@0 | 1151 | } |
michael@0 | 1152 | |
michael@0 | 1153 | // Function for constructor implementation. Calls addUnaryMath with appropriate EOp value |
michael@0 | 1154 | // for the parameter to the constructor (passed to this function). Essentially, it converts |
michael@0 | 1155 | // the parameter types correctly. If a constructor expects an int (like ivec2) and is passed a |
michael@0 | 1156 | // float, then float is converted to int. |
michael@0 | 1157 | // |
michael@0 | 1158 | // Returns 0 for an error or the constructed node. |
michael@0 | 1159 | // |
michael@0 | 1160 | TIntermTyped* TParseContext::constructBuiltIn(const TType* type, TOperator op, TIntermNode* node, const TSourceLoc& line, bool subset) |
michael@0 | 1161 | { |
michael@0 | 1162 | TIntermTyped* newNode; |
michael@0 | 1163 | TOperator basicOp; |
michael@0 | 1164 | |
michael@0 | 1165 | // |
michael@0 | 1166 | // First, convert types as needed. |
michael@0 | 1167 | // |
michael@0 | 1168 | switch (op) { |
michael@0 | 1169 | case EOpConstructVec2: |
michael@0 | 1170 | case EOpConstructVec3: |
michael@0 | 1171 | case EOpConstructVec4: |
michael@0 | 1172 | case EOpConstructMat2: |
michael@0 | 1173 | case EOpConstructMat3: |
michael@0 | 1174 | case EOpConstructMat4: |
michael@0 | 1175 | case EOpConstructFloat: |
michael@0 | 1176 | basicOp = EOpConstructFloat; |
michael@0 | 1177 | break; |
michael@0 | 1178 | |
michael@0 | 1179 | case EOpConstructIVec2: |
michael@0 | 1180 | case EOpConstructIVec3: |
michael@0 | 1181 | case EOpConstructIVec4: |
michael@0 | 1182 | case EOpConstructInt: |
michael@0 | 1183 | basicOp = EOpConstructInt; |
michael@0 | 1184 | break; |
michael@0 | 1185 | |
michael@0 | 1186 | case EOpConstructBVec2: |
michael@0 | 1187 | case EOpConstructBVec3: |
michael@0 | 1188 | case EOpConstructBVec4: |
michael@0 | 1189 | case EOpConstructBool: |
michael@0 | 1190 | basicOp = EOpConstructBool; |
michael@0 | 1191 | break; |
michael@0 | 1192 | |
michael@0 | 1193 | default: |
michael@0 | 1194 | error(line, "unsupported construction", ""); |
michael@0 | 1195 | recover(); |
michael@0 | 1196 | |
michael@0 | 1197 | return 0; |
michael@0 | 1198 | } |
michael@0 | 1199 | newNode = intermediate.addUnaryMath(basicOp, node, node->getLine(), symbolTable); |
michael@0 | 1200 | if (newNode == 0) { |
michael@0 | 1201 | error(line, "can't convert", "constructor"); |
michael@0 | 1202 | return 0; |
michael@0 | 1203 | } |
michael@0 | 1204 | |
michael@0 | 1205 | // |
michael@0 | 1206 | // Now, if there still isn't an operation to do the construction, and we need one, add one. |
michael@0 | 1207 | // |
michael@0 | 1208 | |
michael@0 | 1209 | // Otherwise, skip out early. |
michael@0 | 1210 | if (subset || (newNode != node && newNode->getType() == *type)) |
michael@0 | 1211 | return newNode; |
michael@0 | 1212 | |
michael@0 | 1213 | // setAggregateOperator will insert a new node for the constructor, as needed. |
michael@0 | 1214 | return intermediate.setAggregateOperator(newNode, op, line); |
michael@0 | 1215 | } |
michael@0 | 1216 | |
michael@0 | 1217 | // This function tests for the type of the parameters to the structures constructors. Raises |
michael@0 | 1218 | // an error message if the expected type does not match the parameter passed to the constructor. |
michael@0 | 1219 | // |
michael@0 | 1220 | // Returns 0 for an error or the input node itself if the expected and the given parameter types match. |
michael@0 | 1221 | // |
michael@0 | 1222 | TIntermTyped* TParseContext::constructStruct(TIntermNode* node, TType* type, int paramCount, const TSourceLoc& line, bool subset) |
michael@0 | 1223 | { |
michael@0 | 1224 | if (*type == node->getAsTyped()->getType()) { |
michael@0 | 1225 | if (subset) |
michael@0 | 1226 | return node->getAsTyped(); |
michael@0 | 1227 | else |
michael@0 | 1228 | return intermediate.setAggregateOperator(node->getAsTyped(), EOpConstructStruct, line); |
michael@0 | 1229 | } else { |
michael@0 | 1230 | std::stringstream extraInfoStream; |
michael@0 | 1231 | extraInfoStream << "cannot convert parameter " << paramCount |
michael@0 | 1232 | << " from '" << node->getAsTyped()->getType().getBasicString() |
michael@0 | 1233 | << "' to '" << type->getBasicString() << "'"; |
michael@0 | 1234 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1235 | error(line, "", "constructor", extraInfo.c_str()); |
michael@0 | 1236 | recover(); |
michael@0 | 1237 | } |
michael@0 | 1238 | |
michael@0 | 1239 | return 0; |
michael@0 | 1240 | } |
michael@0 | 1241 | |
michael@0 | 1242 | // |
michael@0 | 1243 | // This function returns the tree representation for the vector field(s) being accessed from contant vector. |
michael@0 | 1244 | // If only one component of vector is accessed (v.x or v[0] where v is a contant vector), then a contant node is |
michael@0 | 1245 | // returned, else an aggregate node is returned (for v.xy). The input to this function could either be the symbol |
michael@0 | 1246 | // node or it could be the intermediate tree representation of accessing fields in a constant structure or column of |
michael@0 | 1247 | // a constant matrix. |
michael@0 | 1248 | // |
michael@0 | 1249 | TIntermTyped* TParseContext::addConstVectorNode(TVectorFields& fields, TIntermTyped* node, const TSourceLoc& line) |
michael@0 | 1250 | { |
michael@0 | 1251 | TIntermTyped* typedNode; |
michael@0 | 1252 | TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion(); |
michael@0 | 1253 | |
michael@0 | 1254 | ConstantUnion *unionArray; |
michael@0 | 1255 | if (tempConstantNode) { |
michael@0 | 1256 | unionArray = tempConstantNode->getUnionArrayPointer(); |
michael@0 | 1257 | |
michael@0 | 1258 | if (!unionArray) { |
michael@0 | 1259 | return node; |
michael@0 | 1260 | } |
michael@0 | 1261 | } else { // The node has to be either a symbol node or an aggregate node or a tempConstant node, else, its an error |
michael@0 | 1262 | error(line, "Cannot offset into the vector", "Error"); |
michael@0 | 1263 | recover(); |
michael@0 | 1264 | |
michael@0 | 1265 | return 0; |
michael@0 | 1266 | } |
michael@0 | 1267 | |
michael@0 | 1268 | ConstantUnion* constArray = new ConstantUnion[fields.num]; |
michael@0 | 1269 | |
michael@0 | 1270 | for (int i = 0; i < fields.num; i++) { |
michael@0 | 1271 | if (fields.offsets[i] >= node->getType().getNominalSize()) { |
michael@0 | 1272 | std::stringstream extraInfoStream; |
michael@0 | 1273 | extraInfoStream << "vector field selection out of range '" << fields.offsets[i] << "'"; |
michael@0 | 1274 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1275 | error(line, "", "[", extraInfo.c_str()); |
michael@0 | 1276 | recover(); |
michael@0 | 1277 | fields.offsets[i] = 0; |
michael@0 | 1278 | } |
michael@0 | 1279 | |
michael@0 | 1280 | constArray[i] = unionArray[fields.offsets[i]]; |
michael@0 | 1281 | |
michael@0 | 1282 | } |
michael@0 | 1283 | typedNode = intermediate.addConstantUnion(constArray, node->getType(), line); |
michael@0 | 1284 | return typedNode; |
michael@0 | 1285 | } |
michael@0 | 1286 | |
michael@0 | 1287 | // |
michael@0 | 1288 | // This function returns the column being accessed from a constant matrix. The values are retrieved from |
michael@0 | 1289 | // the symbol table and parse-tree is built for a vector (each column of a matrix is a vector). The input |
michael@0 | 1290 | // to the function could either be a symbol node (m[0] where m is a constant matrix)that represents a |
michael@0 | 1291 | // constant matrix or it could be the tree representation of the constant matrix (s.m1[0] where s is a constant structure) |
michael@0 | 1292 | // |
michael@0 | 1293 | TIntermTyped* TParseContext::addConstMatrixNode(int index, TIntermTyped* node, const TSourceLoc& line) |
michael@0 | 1294 | { |
michael@0 | 1295 | TIntermTyped* typedNode; |
michael@0 | 1296 | TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion(); |
michael@0 | 1297 | |
michael@0 | 1298 | if (index >= node->getType().getNominalSize()) { |
michael@0 | 1299 | std::stringstream extraInfoStream; |
michael@0 | 1300 | extraInfoStream << "matrix field selection out of range '" << index << "'"; |
michael@0 | 1301 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1302 | error(line, "", "[", extraInfo.c_str()); |
michael@0 | 1303 | recover(); |
michael@0 | 1304 | index = 0; |
michael@0 | 1305 | } |
michael@0 | 1306 | |
michael@0 | 1307 | if (tempConstantNode) { |
michael@0 | 1308 | ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer(); |
michael@0 | 1309 | int size = tempConstantNode->getType().getNominalSize(); |
michael@0 | 1310 | typedNode = intermediate.addConstantUnion(&unionArray[size*index], tempConstantNode->getType(), line); |
michael@0 | 1311 | } else { |
michael@0 | 1312 | error(line, "Cannot offset into the matrix", "Error"); |
michael@0 | 1313 | recover(); |
michael@0 | 1314 | |
michael@0 | 1315 | return 0; |
michael@0 | 1316 | } |
michael@0 | 1317 | |
michael@0 | 1318 | return typedNode; |
michael@0 | 1319 | } |
michael@0 | 1320 | |
michael@0 | 1321 | |
michael@0 | 1322 | // |
michael@0 | 1323 | // This function returns an element of an array accessed from a constant array. The values are retrieved from |
michael@0 | 1324 | // the symbol table and parse-tree is built for the type of the element. The input |
michael@0 | 1325 | // to the function could either be a symbol node (a[0] where a is a constant array)that represents a |
michael@0 | 1326 | // constant array or it could be the tree representation of the constant array (s.a1[0] where s is a constant structure) |
michael@0 | 1327 | // |
michael@0 | 1328 | TIntermTyped* TParseContext::addConstArrayNode(int index, TIntermTyped* node, const TSourceLoc& line) |
michael@0 | 1329 | { |
michael@0 | 1330 | TIntermTyped* typedNode; |
michael@0 | 1331 | TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion(); |
michael@0 | 1332 | TType arrayElementType = node->getType(); |
michael@0 | 1333 | arrayElementType.clearArrayness(); |
michael@0 | 1334 | |
michael@0 | 1335 | if (index >= node->getType().getArraySize()) { |
michael@0 | 1336 | std::stringstream extraInfoStream; |
michael@0 | 1337 | extraInfoStream << "array field selection out of range '" << index << "'"; |
michael@0 | 1338 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1339 | error(line, "", "[", extraInfo.c_str()); |
michael@0 | 1340 | recover(); |
michael@0 | 1341 | index = 0; |
michael@0 | 1342 | } |
michael@0 | 1343 | |
michael@0 | 1344 | if (tempConstantNode) { |
michael@0 | 1345 | size_t arrayElementSize = arrayElementType.getObjectSize(); |
michael@0 | 1346 | ConstantUnion* unionArray = tempConstantNode->getUnionArrayPointer(); |
michael@0 | 1347 | typedNode = intermediate.addConstantUnion(&unionArray[arrayElementSize * index], tempConstantNode->getType(), line); |
michael@0 | 1348 | } else { |
michael@0 | 1349 | error(line, "Cannot offset into the array", "Error"); |
michael@0 | 1350 | recover(); |
michael@0 | 1351 | |
michael@0 | 1352 | return 0; |
michael@0 | 1353 | } |
michael@0 | 1354 | |
michael@0 | 1355 | return typedNode; |
michael@0 | 1356 | } |
michael@0 | 1357 | |
michael@0 | 1358 | |
michael@0 | 1359 | // |
michael@0 | 1360 | // This function returns the value of a particular field inside a constant structure from the symbol table. |
michael@0 | 1361 | // If there is an embedded/nested struct, it appropriately calls addConstStructNested or addConstStructFromAggr |
michael@0 | 1362 | // function and returns the parse-tree with the values of the embedded/nested struct. |
michael@0 | 1363 | // |
michael@0 | 1364 | TIntermTyped* TParseContext::addConstStruct(TString& identifier, TIntermTyped* node, const TSourceLoc& line) |
michael@0 | 1365 | { |
michael@0 | 1366 | const TFieldList& fields = node->getType().getStruct()->fields(); |
michael@0 | 1367 | |
michael@0 | 1368 | size_t instanceSize = 0; |
michael@0 | 1369 | for (size_t index = 0; index < fields.size(); ++index) { |
michael@0 | 1370 | if (fields[index]->name() == identifier) { |
michael@0 | 1371 | break; |
michael@0 | 1372 | } else { |
michael@0 | 1373 | instanceSize += fields[index]->type()->getObjectSize(); |
michael@0 | 1374 | } |
michael@0 | 1375 | } |
michael@0 | 1376 | |
michael@0 | 1377 | TIntermTyped* typedNode = 0; |
michael@0 | 1378 | TIntermConstantUnion* tempConstantNode = node->getAsConstantUnion(); |
michael@0 | 1379 | if (tempConstantNode) { |
michael@0 | 1380 | ConstantUnion* constArray = tempConstantNode->getUnionArrayPointer(); |
michael@0 | 1381 | |
michael@0 | 1382 | typedNode = intermediate.addConstantUnion(constArray+instanceSize, tempConstantNode->getType(), line); // type will be changed in the calling function |
michael@0 | 1383 | } else { |
michael@0 | 1384 | error(line, "Cannot offset into the structure", "Error"); |
michael@0 | 1385 | recover(); |
michael@0 | 1386 | |
michael@0 | 1387 | return 0; |
michael@0 | 1388 | } |
michael@0 | 1389 | |
michael@0 | 1390 | return typedNode; |
michael@0 | 1391 | } |
michael@0 | 1392 | |
michael@0 | 1393 | bool TParseContext::enterStructDeclaration(const TSourceLoc& line, const TString& identifier) |
michael@0 | 1394 | { |
michael@0 | 1395 | ++structNestingLevel; |
michael@0 | 1396 | |
michael@0 | 1397 | // Embedded structure definitions are not supported per GLSL ES spec. |
michael@0 | 1398 | // They aren't allowed in GLSL either, but we need to detect this here |
michael@0 | 1399 | // so we don't rely on the GLSL compiler to catch it. |
michael@0 | 1400 | if (structNestingLevel > 1) { |
michael@0 | 1401 | error(line, "", "Embedded struct definitions are not allowed"); |
michael@0 | 1402 | return true; |
michael@0 | 1403 | } |
michael@0 | 1404 | |
michael@0 | 1405 | return false; |
michael@0 | 1406 | } |
michael@0 | 1407 | |
michael@0 | 1408 | void TParseContext::exitStructDeclaration() |
michael@0 | 1409 | { |
michael@0 | 1410 | --structNestingLevel; |
michael@0 | 1411 | } |
michael@0 | 1412 | |
michael@0 | 1413 | namespace { |
michael@0 | 1414 | |
michael@0 | 1415 | const int kWebGLMaxStructNesting = 4; |
michael@0 | 1416 | |
michael@0 | 1417 | } // namespace |
michael@0 | 1418 | |
michael@0 | 1419 | bool TParseContext::structNestingErrorCheck(const TSourceLoc& line, const TField& field) |
michael@0 | 1420 | { |
michael@0 | 1421 | if (!isWebGLBasedSpec(shaderSpec)) { |
michael@0 | 1422 | return false; |
michael@0 | 1423 | } |
michael@0 | 1424 | |
michael@0 | 1425 | if (field.type()->getBasicType() != EbtStruct) { |
michael@0 | 1426 | return false; |
michael@0 | 1427 | } |
michael@0 | 1428 | |
michael@0 | 1429 | // We're already inside a structure definition at this point, so add |
michael@0 | 1430 | // one to the field's struct nesting. |
michael@0 | 1431 | if (1 + field.type()->getDeepestStructNesting() > kWebGLMaxStructNesting) { |
michael@0 | 1432 | std::stringstream extraInfoStream; |
michael@0 | 1433 | extraInfoStream << "Reference of struct type " << field.name() |
michael@0 | 1434 | << " exceeds maximum struct nesting of " << kWebGLMaxStructNesting; |
michael@0 | 1435 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1436 | error(line, "", "", extraInfo.c_str()); |
michael@0 | 1437 | return true; |
michael@0 | 1438 | } |
michael@0 | 1439 | |
michael@0 | 1440 | return false; |
michael@0 | 1441 | } |
michael@0 | 1442 | |
michael@0 | 1443 | // |
michael@0 | 1444 | // Parse an array index expression |
michael@0 | 1445 | // |
michael@0 | 1446 | TIntermTyped* TParseContext::addIndexExpression(TIntermTyped *baseExpression, const TSourceLoc& location, TIntermTyped *indexExpression) |
michael@0 | 1447 | { |
michael@0 | 1448 | TIntermTyped *indexedExpression = NULL; |
michael@0 | 1449 | |
michael@0 | 1450 | if (!baseExpression->isArray() && !baseExpression->isMatrix() && !baseExpression->isVector()) |
michael@0 | 1451 | { |
michael@0 | 1452 | if (baseExpression->getAsSymbolNode()) |
michael@0 | 1453 | { |
michael@0 | 1454 | error(location, " left of '[' is not of type array, matrix, or vector ", baseExpression->getAsSymbolNode()->getSymbol().c_str()); |
michael@0 | 1455 | } |
michael@0 | 1456 | else |
michael@0 | 1457 | { |
michael@0 | 1458 | error(location, " left of '[' is not of type array, matrix, or vector ", "expression"); |
michael@0 | 1459 | } |
michael@0 | 1460 | recover(); |
michael@0 | 1461 | } |
michael@0 | 1462 | |
michael@0 | 1463 | if (indexExpression->getQualifier() == EvqConst) |
michael@0 | 1464 | { |
michael@0 | 1465 | int index = indexExpression->getAsConstantUnion()->getIConst(0); |
michael@0 | 1466 | if (index < 0) |
michael@0 | 1467 | { |
michael@0 | 1468 | std::stringstream infoStream; |
michael@0 | 1469 | infoStream << index; |
michael@0 | 1470 | std::string info = infoStream.str(); |
michael@0 | 1471 | error(location, "negative index", info.c_str()); |
michael@0 | 1472 | recover(); |
michael@0 | 1473 | index = 0; |
michael@0 | 1474 | } |
michael@0 | 1475 | if (baseExpression->getType().getQualifier() == EvqConst) |
michael@0 | 1476 | { |
michael@0 | 1477 | if (baseExpression->isArray()) |
michael@0 | 1478 | { |
michael@0 | 1479 | // constant folding for arrays |
michael@0 | 1480 | indexedExpression = addConstArrayNode(index, baseExpression, location); |
michael@0 | 1481 | } |
michael@0 | 1482 | else if (baseExpression->isVector()) |
michael@0 | 1483 | { |
michael@0 | 1484 | // constant folding for vectors |
michael@0 | 1485 | TVectorFields fields; |
michael@0 | 1486 | fields.num = 1; |
michael@0 | 1487 | fields.offsets[0] = index; // need to do it this way because v.xy sends fields integer array |
michael@0 | 1488 | indexedExpression = addConstVectorNode(fields, baseExpression, location); |
michael@0 | 1489 | } |
michael@0 | 1490 | else if (baseExpression->isMatrix()) |
michael@0 | 1491 | { |
michael@0 | 1492 | // constant folding for matrices |
michael@0 | 1493 | indexedExpression = addConstMatrixNode(index, baseExpression, location); |
michael@0 | 1494 | } |
michael@0 | 1495 | } |
michael@0 | 1496 | else |
michael@0 | 1497 | { |
michael@0 | 1498 | if (baseExpression->isArray()) |
michael@0 | 1499 | { |
michael@0 | 1500 | if (index >= baseExpression->getType().getArraySize()) |
michael@0 | 1501 | { |
michael@0 | 1502 | std::stringstream extraInfoStream; |
michael@0 | 1503 | extraInfoStream << "array index out of range '" << index << "'"; |
michael@0 | 1504 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1505 | error(location, "", "[", extraInfo.c_str()); |
michael@0 | 1506 | recover(); |
michael@0 | 1507 | index = baseExpression->getType().getArraySize() - 1; |
michael@0 | 1508 | } |
michael@0 | 1509 | else if (baseExpression->getQualifier() == EvqFragData && index > 0 && !isExtensionEnabled("GL_EXT_draw_buffers")) |
michael@0 | 1510 | { |
michael@0 | 1511 | error(location, "", "[", "array indexes for gl_FragData must be zero when GL_EXT_draw_buffers is disabled"); |
michael@0 | 1512 | recover(); |
michael@0 | 1513 | index = 0; |
michael@0 | 1514 | } |
michael@0 | 1515 | } |
michael@0 | 1516 | else if ((baseExpression->isVector() || baseExpression->isMatrix()) && baseExpression->getType().getNominalSize() <= index) |
michael@0 | 1517 | { |
michael@0 | 1518 | std::stringstream extraInfoStream; |
michael@0 | 1519 | extraInfoStream << "field selection out of range '" << index << "'"; |
michael@0 | 1520 | std::string extraInfo = extraInfoStream.str(); |
michael@0 | 1521 | error(location, "", "[", extraInfo.c_str()); |
michael@0 | 1522 | recover(); |
michael@0 | 1523 | index = baseExpression->getType().getNominalSize() - 1; |
michael@0 | 1524 | } |
michael@0 | 1525 | |
michael@0 | 1526 | indexExpression->getAsConstantUnion()->getUnionArrayPointer()->setIConst(index); |
michael@0 | 1527 | indexedExpression = intermediate.addIndex(EOpIndexDirect, baseExpression, indexExpression, location); |
michael@0 | 1528 | } |
michael@0 | 1529 | } |
michael@0 | 1530 | else |
michael@0 | 1531 | { |
michael@0 | 1532 | indexedExpression = intermediate.addIndex(EOpIndexIndirect, baseExpression, indexExpression, location); |
michael@0 | 1533 | } |
michael@0 | 1534 | |
michael@0 | 1535 | if (indexedExpression == 0) |
michael@0 | 1536 | { |
michael@0 | 1537 | ConstantUnion *unionArray = new ConstantUnion[1]; |
michael@0 | 1538 | unionArray->setFConst(0.0f); |
michael@0 | 1539 | indexedExpression = intermediate.addConstantUnion(unionArray, TType(EbtFloat, EbpHigh, EvqConst), location); |
michael@0 | 1540 | } |
michael@0 | 1541 | else if (baseExpression->isArray()) |
michael@0 | 1542 | { |
michael@0 | 1543 | const TType &baseType = baseExpression->getType(); |
michael@0 | 1544 | if (baseType.getStruct()) |
michael@0 | 1545 | { |
michael@0 | 1546 | TType copyOfType(baseType.getStruct()); |
michael@0 | 1547 | indexedExpression->setType(copyOfType); |
michael@0 | 1548 | } |
michael@0 | 1549 | else |
michael@0 | 1550 | { |
michael@0 | 1551 | indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(), EvqTemporary, baseExpression->getNominalSize(), baseExpression->isMatrix())); |
michael@0 | 1552 | } |
michael@0 | 1553 | |
michael@0 | 1554 | if (baseExpression->getType().getQualifier() == EvqConst) |
michael@0 | 1555 | { |
michael@0 | 1556 | indexedExpression->getTypePointer()->setQualifier(EvqConst); |
michael@0 | 1557 | } |
michael@0 | 1558 | } |
michael@0 | 1559 | else if (baseExpression->isMatrix()) |
michael@0 | 1560 | { |
michael@0 | 1561 | TQualifier qualifier = baseExpression->getType().getQualifier() == EvqConst ? EvqConst : EvqTemporary; |
michael@0 | 1562 | indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(), qualifier, baseExpression->getNominalSize())); |
michael@0 | 1563 | } |
michael@0 | 1564 | else if (baseExpression->isVector()) |
michael@0 | 1565 | { |
michael@0 | 1566 | TQualifier qualifier = baseExpression->getType().getQualifier() == EvqConst ? EvqConst : EvqTemporary; |
michael@0 | 1567 | indexedExpression->setType(TType(baseExpression->getBasicType(), baseExpression->getPrecision(), qualifier)); |
michael@0 | 1568 | } |
michael@0 | 1569 | else |
michael@0 | 1570 | { |
michael@0 | 1571 | indexedExpression->setType(baseExpression->getType()); |
michael@0 | 1572 | } |
michael@0 | 1573 | |
michael@0 | 1574 | return indexedExpression; |
michael@0 | 1575 | } |
michael@0 | 1576 | |
michael@0 | 1577 | // |
michael@0 | 1578 | // Parse an array of strings using yyparse. |
michael@0 | 1579 | // |
michael@0 | 1580 | // Returns 0 for success. |
michael@0 | 1581 | // |
michael@0 | 1582 | int PaParseStrings(size_t count, const char* const string[], const int length[], |
michael@0 | 1583 | TParseContext* context) { |
michael@0 | 1584 | if ((count == 0) || (string == NULL)) |
michael@0 | 1585 | return 1; |
michael@0 | 1586 | |
michael@0 | 1587 | if (glslang_initialize(context)) |
michael@0 | 1588 | return 1; |
michael@0 | 1589 | |
michael@0 | 1590 | int error = glslang_scan(count, string, length, context); |
michael@0 | 1591 | if (!error) |
michael@0 | 1592 | error = glslang_parse(context); |
michael@0 | 1593 | |
michael@0 | 1594 | glslang_finalize(context); |
michael@0 | 1595 | |
michael@0 | 1596 | return (error == 0) && (context->numErrors() == 0) ? 0 : 1; |
michael@0 | 1597 | } |
michael@0 | 1598 | |
michael@0 | 1599 | |
michael@0 | 1600 |