mirror of
https://github.com/KhronosGroup/glslang
synced 2024-11-09 12:00:05 +00:00
Improved fix for buffer reference constants
This is an alternate fix for the issue described in commit be63facd
, whose
solution didn't work if there were non-trivial operations involved in computing
a constant initializer which caused the 'constant unfolding' code to kick in
(addConstantReferenceConversion). Instead, this change does the 'unfolding'
later in createSpvConstantFromConstUnionArray. If a reference-type constant has
survived that long, then folding is already done, this must be a 'real' (inside
a function) use of the constant, and it should be safe to unfold and apply the
bitcast.
This commit is contained in:
parent
79d25ea0ce
commit
3fd1232665
@ -7705,6 +7705,10 @@ spv::Id TGlslangToSpvTraverser::createSpvConstantFromConstUnionArray(const glsla
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case glslang::EbtBool:
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scalar = builder.makeBoolConstant(zero ? false : consts[nextConst].getBConst(), specConstant);
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break;
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case glslang::EbtReference:
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scalar = builder.makeUint64Constant(zero ? 0 : consts[nextConst].getU64Const(), specConstant);
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scalar = builder.createUnaryOp(spv::OpBitcast, typeId, scalar);
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break;
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default:
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assert(0);
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break;
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@ -1,7 +1,7 @@
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spv.bufferhandle16.frag
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// Module Version 10000
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// Generated by (magic number): 80007
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// Id's are bound by 37
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// Id's are bound by 48
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Capability Shader
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Capability Int64
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@ -16,61 +16,77 @@ spv.bufferhandle16.frag
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SourceExtension "GL_EXT_scalar_block_layout"
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SourceExtension "GL_EXT_shader_explicit_arithmetic_types_int64"
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Name 4 "main"
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Name 8 "T1"
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MemberName 8(T1) 0 "x"
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Name 10 "a"
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Name 14 "b"
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Name 17 "c"
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Name 23 "d"
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Name 25 "e"
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Name 36 "x"
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MemberDecorate 8(T1) 0 Offset 0
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Decorate 8(T1) Block
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Decorate 10(a) DecorationAliasedPointerEXT
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Decorate 14(b) DecorationAliasedPointerEXT
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Decorate 17(c) DecorationAliasedPointerEXT
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Decorate 23(d) DecorationAliasedPointerEXT
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Decorate 25(e) DecorationAliasedPointerEXT
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Name 9 "T1"
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MemberName 9(T1) 0 "x"
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MemberName 9(T1) 1 "y"
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Name 11 "a"
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Name 15 "b"
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Name 18 "c"
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Name 24 "d"
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Name 26 "e"
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Name 29 "f"
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Name 46 "x"
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MemberDecorate 9(T1) 0 Offset 0
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MemberDecorate 9(T1) 1 Offset 4
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Decorate 9(T1) Block
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Decorate 11(a) DecorationAliasedPointerEXT
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Decorate 15(b) DecorationAliasedPointerEXT
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Decorate 18(c) DecorationAliasedPointerEXT
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Decorate 24(d) DecorationAliasedPointerEXT
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Decorate 26(e) DecorationAliasedPointerEXT
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Decorate 29(f) DecorationAliasedPointerEXT
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2: TypeVoid
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3: TypeFunction 2
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TypeForwardPointer 6 PhysicalStorageBufferEXT
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7: TypeInt 32 1
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8(T1): TypeStruct 7(int)
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6: TypePointer PhysicalStorageBufferEXT 8(T1)
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9: TypePointer Function 6(ptr)
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11: TypeInt 64 0
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12: 11(int64_t) Constant 4 0
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15: 11(int64_t) Constant 5 0
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18: TypeBool
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19: 18(bool) ConstantTrue
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26: 11(int64_t) Constant 6 0
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28: 11(int64_t) Constant 7 0
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31: 7(int) Constant 3
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32: TypeInt 32 0
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33: 32(int) Constant 3
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34: TypeArray 7(int) 33
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35: TypePointer Private 34
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36(x): 35(ptr) Variable Private
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8: TypeInt 32 0
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9(T1): TypeStruct 7(int) 8(int)
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6: TypePointer PhysicalStorageBufferEXT 9(T1)
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10: TypePointer Function 6(ptr)
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12: TypeInt 64 0
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13: 12(int64_t) Constant 4 0
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16: 12(int64_t) Constant 5 0
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19: TypeBool
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20: 19(bool) ConstantTrue
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27: 12(int64_t) Constant 6 0
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31: 7(int) Constant 1
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32: TypePointer PhysicalStorageBufferEXT 8(int)
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35: 8(int) Constant 0
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37: 12(int64_t) Constant 8 0
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39: 12(int64_t) Constant 9 0
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42: 7(int) Constant 3
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43: 8(int) Constant 3
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44: TypeArray 7(int) 43
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45: TypePointer Private 44
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46(x): 45(ptr) Variable Private
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47: 12(int64_t) Constant 10 0
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4(main): 2 Function None 3
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5: Label
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10(a): 9(ptr) Variable Function
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14(b): 9(ptr) Variable Function
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17(c): 9(ptr) Variable Function
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23(d): 9(ptr) Variable Function
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25(e): 9(ptr) Variable Function
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13: 6(ptr) Bitcast 12
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Store 10(a) 13
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16: 6(ptr) Bitcast 15
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Store 14(b) 16
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20: 6(ptr) Load 10(a)
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21: 6(ptr) Load 14(b)
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22: 6(ptr) Select 19 20 21
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Store 17(c) 22
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24: 6(ptr) Load 14(b)
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Store 23(d) 24
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27: 6(ptr) Bitcast 26
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29: 6(ptr) Bitcast 28
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30: 6(ptr) Select 19 27 29
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Store 25(e) 30
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11(a): 10(ptr) Variable Function
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15(b): 10(ptr) Variable Function
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18(c): 10(ptr) Variable Function
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24(d): 10(ptr) Variable Function
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26(e): 10(ptr) Variable Function
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29(f): 10(ptr) Variable Function
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14: 6(ptr) Bitcast 13
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Store 11(a) 14
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17: 6(ptr) Bitcast 16
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Store 15(b) 17
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21: 6(ptr) Load 11(a)
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22: 6(ptr) Load 15(b)
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23: 6(ptr) Select 20 21 22
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Store 18(c) 23
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25: 6(ptr) Load 15(b)
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Store 24(d) 25
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28: 6(ptr) Bitcast 27
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Store 26(e) 28
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30: 6(ptr) Load 11(a)
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33: 32(ptr) AccessChain 30 31
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34: 8(int) Load 33 Aligned 4
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36: 19(bool) INotEqual 34 35
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38: 6(ptr) Bitcast 37
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40: 6(ptr) Bitcast 39
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41: 6(ptr) Select 36 38 40
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Store 29(f) 41
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Return
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FunctionEnd
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@ -6,6 +6,7 @@
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layout(buffer_reference) buffer T1 {
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int x;
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bool y;
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};
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layout(buffer_reference) buffer T2 {
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int x;
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@ -13,6 +14,7 @@ layout(buffer_reference) buffer T2 {
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const int s = int(uint64_t(T1(T2(uint64_t(3)))));
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int x[s];
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const uint64_t t = uint64_t(true ? T2(uint64_t(10)) : T2(uint64_t(11)));
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void main()
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{
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@ -20,4 +22,5 @@ void main()
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T1 c = true ? a : b;
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T1 d = (a,b);
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T1 e = true ? T1(uint64_t(6)) : T1(uint64_t(7));
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T1 f = a.y ? T1(uint64_t(8)) : T1(uint64_t(9));
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}
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@ -725,19 +725,6 @@ TIntermTyped* TIntermediate::createConversion(TBasicType convertTo, TIntermTyped
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return newNode;
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}
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// Convert a constant that is a reference type to a uint64_t constant plus a
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// constructor instruction. This is needed because SPIR-V doesn't support
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// OpConstant on pointer types.
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TIntermTyped* TIntermediate::addConstantReferenceConversion(TIntermTyped* node)
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{
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if (node->getType().getBasicType() == EbtReference && node->getAsConstantUnion()) {
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const TType &type = node->getType();
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node = addBuiltInFunctionCall(node->getLoc(), EOpConvPtrToUint64, true, node, TType(EbtUint64));
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node = addUnaryNode(EOpConstructReference, node, node->getLoc(), type);
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}
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return node;
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}
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TIntermTyped* TIntermediate::addConversion(TBasicType convertTo, TIntermTyped* node) const
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{
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return createConversion(convertTo, node);
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@ -775,9 +762,6 @@ TIntermediate::addConversion(TOperator op, TIntermTyped* node0, TIntermTyped* no
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return std::make_tuple(node0, node1);
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}
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node0 = addConstantReferenceConversion(node0);
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node1 = addConstantReferenceConversion(node1);
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auto promoteTo = std::make_tuple(EbtNumTypes, EbtNumTypes);
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switch (op) {
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@ -897,8 +881,6 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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if (!isConversionAllowed(op, node))
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return nullptr;
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node = addConstantReferenceConversion(node);
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// Otherwise, if types are identical, no problem
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if (type == node->getType())
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return node;
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@ -6527,11 +6527,7 @@ TIntermNode* TParseContext::executeInitializer(const TSourceLoc& loc, TIntermTyp
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// We either have a folded constant in getAsConstantUnion, or we have to use
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// the initializer's subtree in the AST to represent the computation of a
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// specialization constant.
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// A third case arises when a reference type is made non-constant due to
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// addConstantReferenceConversion, but reference types can't be const, so
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// this is an error.
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assert(initializer->getAsConstantUnion() || initializer->getType().getQualifier().isSpecConstant() ||
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initializer->getType().getBasicType() == EbtReference);
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assert(initializer->getAsConstantUnion() || initializer->getType().getQualifier().isSpecConstant());
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if (initializer->getAsConstantUnion())
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variable->setConstArray(initializer->getAsConstantUnion()->getConstArray());
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else {
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@ -501,7 +501,6 @@ public:
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TIntermTyped* addConversion(TBasicType convertTo, TIntermTyped* node) const;
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void addBiShapeConversion(TOperator, TIntermTyped*& lhsNode, TIntermTyped*& rhsNode);
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TIntermTyped* addShapeConversion(const TType&, TIntermTyped*);
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TIntermTyped* addConstantReferenceConversion(TIntermTyped* node);
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TIntermTyped* addBinaryMath(TOperator, TIntermTyped* left, TIntermTyped* right, TSourceLoc);
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TIntermTyped* addAssign(TOperator op, TIntermTyped* left, TIntermTyped* right, TSourceLoc);
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TIntermTyped* addIndex(TOperator op, TIntermTyped* base, TIntermTyped* index, TSourceLoc);
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