Merge branch 'master' of github.com:KhronosGroup/glslang
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9c2f1c7bc0
@ -13,7 +13,7 @@ elseif(UNIX)
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add_definitions(-fPIC)
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add_definitions(-DGLSLANG_OSINCLUDE_UNIX)
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else(WIN32)
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message("unkown platform")
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message("unknown platform")
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endif(WIN32)
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if(CMAKE_COMPILER_IS_GNUCXX)
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@ -103,7 +103,7 @@ class TProgram
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See `ShaderLang.h` and the usage of it in `StandAlone/StandAlone.cpp` for more
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details.
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### C Functional Interface (orginal)
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### C Functional Interface (orignal)
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This interface is in roughly the first 2/3 of `ShaderLang.h`, and referred to
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as the `Sh*()` interface, as all the entry points start `Sh`.
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@ -118,7 +118,7 @@ ShCompile(shader, compiler) -> compiler(AST) -> <back end>
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```
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In practice, `ShCompile()` takes shader strings, default version, and
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warning/error and other options for controling compilation.
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warning/error and other options for controlling compilation.
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Testing
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-------
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@ -573,7 +573,7 @@ namespace spv {
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op_fn_nop);
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// Window size for context-sensitive canonicalization values
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// Emperical best size from a single data set. TODO: Would be a good tunable.
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// Empirical best size from a single data set. TODO: Would be a good tunable.
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// We essentially perform a little convolution around each instruction,
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// to capture the flavor of nearby code, to hopefully match to similar
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// code in other modules.
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@ -1067,7 +1067,7 @@ Id Builder::createCompositeExtract(Id composite, Id typeId, unsigned index)
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// Generate code for spec constants if in spec constant operation
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// generation mode.
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if (generatingOpCodeForSpecConst) {
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return createSpecConstantOp(OpCompositeExtract, typeId, {composite}, {index});
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return createSpecConstantOp(OpCompositeExtract, typeId, std::vector<Id>(1, composite), std::vector<Id>(1, index));
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}
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Instruction* extract = new Instruction(getUniqueId(), typeId, OpCompositeExtract);
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extract->addIdOperand(composite);
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@ -1082,7 +1082,7 @@ Id Builder::createCompositeExtract(Id composite, Id typeId, std::vector<unsigned
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// Generate code for spec constants if in spec constant operation
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// generation mode.
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if (generatingOpCodeForSpecConst) {
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return createSpecConstantOp(OpCompositeExtract, typeId, {composite}, indexes);
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return createSpecConstantOp(OpCompositeExtract, typeId, std::vector<Id>(1, composite), indexes);
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}
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Instruction* extract = new Instruction(getUniqueId(), typeId, OpCompositeExtract);
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extract->addIdOperand(composite);
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@ -1184,7 +1184,7 @@ Id Builder::createUnaryOp(Op opCode, Id typeId, Id operand)
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// Generate code for spec constants if in spec constant operation
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// generation mode.
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if (generatingOpCodeForSpecConst) {
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return createSpecConstantOp(opCode, typeId, {operand}, {});
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return createSpecConstantOp(opCode, typeId, std::vector<Id>(1, operand), std::vector<Id>());
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}
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Instruction* op = new Instruction(getUniqueId(), typeId, opCode);
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op->addIdOperand(operand);
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@ -1198,7 +1198,9 @@ Id Builder::createBinOp(Op opCode, Id typeId, Id left, Id right)
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// Generate code for spec constants if in spec constant operation
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// generation mode.
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if (generatingOpCodeForSpecConst) {
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return createSpecConstantOp(opCode, typeId, {left, right}, {});
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std::vector<Id> operands(2);
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operands[0] = left; operands[1] = right;
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return createSpecConstantOp(opCode, typeId, operands, std::vector<Id>());
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}
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Instruction* op = new Instruction(getUniqueId(), typeId, opCode);
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op->addIdOperand(left);
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@ -1261,7 +1263,9 @@ Id Builder::createRvalueSwizzle(Decoration precision, Id typeId, Id source, std:
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return setPrecision(createCompositeExtract(source, typeId, channels.front()), precision);
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if (generatingOpCodeForSpecConst) {
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return setPrecision(createSpecConstantOp(OpVectorShuffle, typeId, {source, source}, channels), precision);
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std::vector<Id> operands(2);
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operands[0] = operands[1] = source;
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return setPrecision(createSpecConstantOp(OpVectorShuffle, typeId, operands, channels), precision);
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}
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Instruction* swizzle = new Instruction(getUniqueId(), typeId, OpVectorShuffle);
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assert(isVector(source));
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@ -2209,7 +2213,7 @@ void Builder::eliminateDeadDecorations() {
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}
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}
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decorations.erase(std::remove_if(decorations.begin(), decorations.end(),
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[&unreachable_definitions](std::unique_ptr<Instruction>& I) {
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[&unreachable_definitions](std::unique_ptr<Instruction>& I) -> bool {
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Instruction* inst = I.get();
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Id decoration_id = inst->getIdOperand(0);
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return unreachable_definitions.count(decoration_id) != 0;
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@ -2319,7 +2323,7 @@ void Builder::simplifyAccessChainSwizzle()
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// To the extent any swizzling can become part of the chain
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// of accesses instead of a post operation, make it so.
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// If 'dynamic' is true, include transfering a non-static component index,
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// If 'dynamic' is true, include transferring a non-static component index,
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// otherwise, only transfer static indexes.
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//
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// Also, Boolean vectors are likely to be special. While
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@ -92,7 +92,7 @@ public:
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case EPrefixInternalError: append("INTERNAL ERROR: "); break;
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case EPrefixUnimplemented: append("UNIMPLEMENTED: "); break;
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case EPrefixNote: append("NOTE: "); break;
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default: append("UNKOWN ERROR: "); break;
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default: append("UNKNOWN ERROR: "); break;
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}
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}
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void location(const TSourceLoc& loc) {
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@ -95,7 +95,7 @@ public:
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void checkAllocList() const;
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// Return total size needed to accomodate user buffer of 'size',
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// Return total size needed to accommodate user buffer of 'size',
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// plus our tracking data.
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inline static size_t allocationSize(size_t size) {
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return size + 2 * guardBlockSize + headerSize();
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@ -241,8 +241,8 @@ protected:
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int numCalls; // just an interesting statistic
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size_t totalBytes; // just an interesting statistic
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private:
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TPoolAllocator& operator=(const TPoolAllocator&); // dont allow assignment operator
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TPoolAllocator(const TPoolAllocator&); // dont allow default copy constructor
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TPoolAllocator& operator=(const TPoolAllocator&); // don't allow assignment operator
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TPoolAllocator(const TPoolAllocator&); // don't allow default copy constructor
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};
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@ -61,7 +61,7 @@ static void DetachThreadLinux(void *)
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//
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// Registers cleanup handler, sets cancel type and state, and excecutes the thread specific
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// Registers cleanup handler, sets cancel type and state, and executes the thread specific
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// cleanup handler. This function will be called in the Standalone.cpp for regression
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// testing. When OpenGL applications are run with the driver code, Linux OS does the
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// thread cleanup.
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