Remove TIntermediate's dependency on infoSink, simplify folding of constant aggregates, and infoSink use in constant folding.
Added a few deep aggregate constant folding testing cases. git-svn-id: https://cvs.khronos.org/svn/repos/ogl/trunk/ecosystem/public/sdk/tools/glslang@22912 e7fa87d3-cd2b-0410-9028-fcbf551c1848
This commit is contained in:
parent
fca7534044
commit
807b8e3b82
@ -5,7 +5,9 @@ ERROR: 0:18: '' : constant expression required
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ERROR: 0:18: '' : array size must be a constant integer expression
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ERROR: 0:19: '' : constant expression required
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ERROR: 0:19: '' : array size must be a constant integer expression
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ERROR: 7 compilation errors. No code generated.
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ERROR: 0:27: '=' : assigning non-constant to 'const structure'
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ERROR: 0:33: '=' : assigning non-constant to 'const structure'
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ERROR: 9 compilation errors. No code generated.
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ERROR: node is still EOpNull!
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0:10 Function Definition: main( (void)
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@ -129,6 +129,14 @@
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0:69 0.028000
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0:69 0.500000
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0:69 1.000000
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0:78 Function Definition: foo( (void)
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0:78 Function Parameters:
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0:? Sequence
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0:81 move second child to first child (float)
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0:81 direct index (float)
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0:81 'a' (3-element array of float)
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0:81 0 (const int)
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0:81 7.000000
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0:? Linker Objects
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0:? 'inv' (smooth in 4-component vector of float)
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0:? 'FragColor' (out 4-component vector of float)
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@ -20,3 +20,14 @@ void main()
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vec4 g[int(sin(0.3)) + 1]; // okay
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}
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const struct S {
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vec3 v3;
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ivec2 iv2;
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} s = S(vec3(3.0), ivec2(3, constInt + uniformInt)); // ERROR, non-const y componenent
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const struct S2 {
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vec3 v3;
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ivec2 iv2;
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mat2x4 m;
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} s2 = S2(vec3(3.0), ivec2(3, constInt), mat2x4(1.0, 2.0, 3.0, inVar.x, 5.0, 6.0, 7.0, 8.0)); // ERROR, non-constant matrix
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@ -68,3 +68,15 @@ void main()
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out2 = step(0.5, vec2(0.2, 0.6)); // 0.0, 1.0
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out11 = smoothstep(50.0, 60.0, vec4(40.0, 51.0, 55.0, 70.0)); // 0.0, 0.028, 0.5, 1.0
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}
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const struct S {
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vec3 v3;
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ivec2 iv2;
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mat2x4 m;
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} s = S(vec3(3.0), ivec2(3, a + b), mat2x4(1.0, 2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0));
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void foo()
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{
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float a[s.iv2.y]; // 3 element array
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a[0] = s.m[1].z; // 7.0
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}
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@ -357,8 +357,6 @@ protected:
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glslang::TSourceLoc loc;
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};
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class TInfoSink;
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namespace glslang {
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//
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@ -479,8 +477,8 @@ public:
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void setUnionArrayPointer(TConstUnion *c) { unionArrayPointer = c; }
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virtual TIntermConstantUnion* getAsConstantUnion() { return this; }
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virtual void traverse(TIntermTraverser* );
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virtual TIntermTyped* fold(TOperator, TIntermTyped*, TInfoSink&);
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virtual TIntermTyped* fold(TOperator, const TType&, TInfoSink&);
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virtual TIntermTyped* fold(TOperator, TIntermTyped*);
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virtual TIntermTyped* fold(TOperator, const TType&);
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protected:
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TConstUnion *unionArrayPointer;
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};
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@ -493,7 +491,7 @@ public:
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TOperator getOp() { return op; }
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bool modifiesState() const;
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bool isConstructor() const;
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virtual bool promote(TInfoSink&) { return true; }
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virtual bool promote() { return true; }
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protected:
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TIntermOperator(TOperator o) : TIntermTyped(TType(EbtFloat)), op(o) {}
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TIntermOperator(TOperator o, TType& t) : TIntermTyped(t), op(o) {}
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@ -512,7 +510,7 @@ public:
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virtual TIntermTyped* getLeft() const { return left; }
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virtual TIntermTyped* getRight() const { return right; }
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virtual TIntermBinary* getAsBinaryNode() { return this; }
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virtual bool promote(TInfoSink&);
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virtual bool promote();
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virtual void updatePrecision();
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protected:
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TIntermTyped* left;
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@ -530,7 +528,7 @@ public:
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virtual void setOperand(TIntermTyped* o) { operand = o; }
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virtual TIntermTyped* getOperand() { return operand; }
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virtual TIntermUnary* getAsUnaryNode() { return this; }
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virtual bool promote(TInfoSink&);
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virtual bool promote();
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virtual void updatePrecision();
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protected:
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TIntermTyped* operand;
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@ -129,7 +129,7 @@ namespace glslang {
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//
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// Do folding between a pair of nodes
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//
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TIntermTyped* TIntermConstantUnion::fold(TOperator op, TIntermTyped* constantNode, TInfoSink& infoSink)
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TIntermTyped* TIntermConstantUnion::fold(TOperator op, TIntermTyped* constantNode)
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{
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TConstUnion *unionArray = getUnionArrayPointer();
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int objectSize = getType().getObjectSize();
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@ -217,7 +217,6 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, TIntermTyped* constantNod
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newConstArray[i].setUConst(unionArray[i].getUConst() / rightUnionArray[i].getUConst());
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Constant folding cannot be done for \"/\"", getLoc());
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return 0;
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}
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}
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@ -374,8 +373,6 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, TIntermTyped* constantNod
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Invalid binary operator for constant folding", getLoc());
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return 0;
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}
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@ -388,7 +385,7 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, TIntermTyped* constantNod
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//
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// Do single unary node folding
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//
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TIntermTyped* TIntermConstantUnion::fold(TOperator op, const TType& returnType, TInfoSink& infoSink)
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TIntermTyped* TIntermConstantUnion::fold(TOperator op, const TType& returnType)
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{
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TConstUnion *unionArray = getUnionArrayPointer();
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int objectSize = getType().getObjectSize();
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@ -444,7 +441,6 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, const TType& returnType,
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case EbtInt: newConstArray[i].setIConst(-unionArray[i].getIConst()); break;
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case EbtUint: newConstArray[i].setUConst(static_cast<unsigned int>(-static_cast<int>(unionArray[i].getUConst()))); break;
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default:
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infoSink.info.message(EPrefixInternalError, "Unary operation not folded into constant", getLoc());
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return 0;
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}
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break;
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@ -453,7 +449,6 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, const TType& returnType,
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switch (getType().getBasicType()) {
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case EbtBool: newConstArray[i].setBConst(!unionArray[i].getBConst()); break;
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default:
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infoSink.info.message(EPrefixInternalError, "Unary operation not folded into constant", getLoc());
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return 0;
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}
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break;
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@ -607,7 +602,6 @@ TIntermTyped* TIntermConstantUnion::fold(TOperator op, const TType& returnType,
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case EOpAll:
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default:
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infoSink.info.message(EPrefixInternalError, "missing operator for unary constant folding", getLoc());
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return 0;
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}
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}
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@ -755,7 +749,6 @@ TIntermTyped* TIntermediate::fold(TIntermAggregate* aggrNode)
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break;
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}
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default:
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infoSink.info.message(EPrefixInternalError, "componentwise constant folding operation not implemented", aggrNode->getLoc());
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return aggrNode;
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}
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}
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@ -774,7 +767,6 @@ TIntermTyped* TIntermediate::fold(TIntermAggregate* aggrNode)
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case EOpReflect:
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case EOpRefract:
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case EOpOuterProduct:
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infoSink.info.message(EPrefixInternalError, "constant folding operation not implemented", aggrNode->getLoc());
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return aggrNode;
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default:
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@ -809,15 +801,15 @@ bool TIntermediate::areAllChildConst(TIntermAggregate* aggrNode)
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TIntermTyped* TIntermediate::foldConstructor(TIntermAggregate* aggrNode)
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{
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bool returnVal = false;
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bool error = false;
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TConstUnion* unionArray = new TConstUnion[aggrNode->getType().getObjectSize()];
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if (aggrNode->getSequence().size() == 1)
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returnVal = parseConstTree(aggrNode->getLoc(), aggrNode, unionArray, aggrNode->getOp(), aggrNode->getType(), true);
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error = parseConstTree(aggrNode->getLoc(), aggrNode, unionArray, aggrNode->getOp(), aggrNode->getType(), true);
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else
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returnVal = parseConstTree(aggrNode->getLoc(), aggrNode, unionArray, aggrNode->getOp(), aggrNode->getType());
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error = parseConstTree(aggrNode->getLoc(), aggrNode, unionArray, aggrNode->getOp(), aggrNode->getType());
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if (returnVal)
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if (error)
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return aggrNode;
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return addConstantUnion(unionArray, aggrNode->getType(), aggrNode->getLoc());
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@ -100,7 +100,7 @@ TIntermTyped* TIntermediate::addBinaryMath(TOperator op, TIntermTyped* left, TIn
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node->setLeft(left);
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node->setRight(right);
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if (! node->promote(infoSink))
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if (! node->promote())
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return 0;
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node->updatePrecision();
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@ -112,11 +112,9 @@ TIntermTyped* TIntermediate::addBinaryMath(TOperator op, TIntermTyped* left, TIn
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TIntermConstantUnion *leftTempConstant = left->getAsConstantUnion();
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TIntermConstantUnion *rightTempConstant = right->getAsConstantUnion();
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if (leftTempConstant && rightTempConstant) {
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TIntermTyped* folded = leftTempConstant->fold(node->getOp(), rightTempConstant, infoSink);
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TIntermTyped* folded = leftTempConstant->fold(node->getOp(), rightTempConstant);
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if (folded)
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return folded;
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else
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infoSink.info.message(EPrefixInternalError, "Constant folding failed", loc);
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}
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return node;
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@ -148,7 +146,7 @@ TIntermTyped* TIntermediate::addAssign(TOperator op, TIntermTyped* left, TInterm
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node->setLeft(left);
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node->setRight(child);
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if (! node->promote(infoSink))
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if (! node->promote())
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return 0;
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node->updatePrecision();
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@ -189,10 +187,8 @@ TIntermTyped* TIntermediate::addUnaryMath(TOperator op, TIntermNode* childNode,
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if (child->getType().getBasicType() == EbtBlock)
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return 0;
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if (child == 0) {
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infoSink.info.message(EPrefixInternalError, "Bad type in AddUnaryMath", loc);
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if (child == 0)
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return 0;
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}
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switch (op) {
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case EOpLogicalNot:
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@ -255,13 +251,13 @@ TIntermTyped* TIntermediate::addUnaryMath(TOperator op, TIntermNode* childNode,
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node->setLoc(loc);
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node->setOperand(child);
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if (! node->promote(infoSink))
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if (! node->promote())
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return 0;
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node->updatePrecision();
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if (child->getAsConstantUnion())
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return child->getAsConstantUnion()->fold(op, node->getType(), infoSink);
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return child->getAsConstantUnion()->fold(op, node->getType());
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return node;
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}
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@ -275,14 +271,11 @@ TIntermTyped* TIntermediate::addBuiltInFunctionCall(TSourceLoc loc, TOperator op
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// including constness (which would differ from the prototype).
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//
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TIntermTyped* child = childNode->getAsTyped();
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if (child == 0) {
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infoSink.info.message(EPrefixInternalError, "Bad type in AddUnaryMath", child->getLoc());
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if (child == 0)
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return 0;
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}
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if (child->getAsConstantUnion()) {
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TIntermTyped* folded = child->getAsConstantUnion()->fold(op, returnType, infoSink);
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TIntermTyped* folded = child->getAsConstantUnion()->fold(op, returnType);
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if (folded)
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return folded;
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}
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@ -514,7 +507,6 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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//case EbtBool: newOp = EOpConvBoolToDouble; break;
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//case EbtFloat: newOp = EOpConvFloatToDouble; break;
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//default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion node", node->getLoc());
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return 0;
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//}
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break;
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@ -525,7 +517,6 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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case EbtBool: newOp = EOpConvBoolToFloat; break;
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case EbtDouble: newOp = EOpConvDoubleToFloat; break;
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default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion node", node->getLoc());
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return 0;
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}
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break;
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@ -536,7 +527,6 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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case EbtFloat: newOp = EOpConvFloatToBool; break;
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case EbtDouble: newOp = EOpConvDoubleToBool; break;
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default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion node", node->getLoc());
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return 0;
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}
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break;
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@ -547,7 +537,6 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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case EbtFloat: newOp = EOpConvFloatToInt; break;
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case EbtDouble: newOp = EOpConvDoubleToInt; break;
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default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion node", node->getLoc());
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return 0;
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}
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break;
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@ -558,12 +547,10 @@ TIntermTyped* TIntermediate::addConversion(TOperator op, const TType& type, TInt
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case EbtFloat: newOp = EOpConvFloatToUint; break;
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case EbtDouble: newOp = EOpConvDoubleToUint; break;
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default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion node", node->getLoc());
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return 0;
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}
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Bad promotion type", node->getLoc());
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return 0;
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}
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@ -982,7 +969,7 @@ bool TIntermOperator::isConstructor() const
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//
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// Returns false in nothing makes sense.
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//
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bool TIntermUnary::promote(TInfoSink&)
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bool TIntermUnary::promote()
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{
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switch (op) {
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case EOpLogicalNot:
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@ -1034,7 +1021,7 @@ void TIntermUnary::updatePrecision()
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//
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// Returns false if operator can't work on operands.
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//
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bool TIntermBinary::promote(TInfoSink& infoSink)
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bool TIntermBinary::promote()
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{
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// Arrays and structures have to be exact matches.
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if ((left->isArray() || right->isArray() || left->getBasicType() == EbtStruct || right->getBasicType() == EbtStruct)
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@ -1235,7 +1222,6 @@ bool TIntermBinary::promote(TInfoSink& infoSink)
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setType(TType(basicType, EvqTemporary, right->getVectorSize()));
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}
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} else {
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infoSink.info.message(EPrefixInternalError, "Missing elses", getLoc());
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return false;
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}
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break;
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@ -1267,7 +1253,6 @@ bool TIntermBinary::promote(TInfoSink& infoSink)
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op = EOpVectorTimesScalarAssign;
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}
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} else {
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infoSink.info.message(EPrefixInternalError, "Missing elses", getLoc());
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return false;
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}
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break;
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@ -1397,9 +1382,6 @@ void TIntermTyped::propagatePrecision(TPrecisionQualifier newPrecision)
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TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermConstantUnion* node)
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{
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if (node->getType().isArray())
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infoSink.info.message(EPrefixInternalError, "Cannot promote array", node->getLoc());
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TConstUnion *rightUnionArray = node->getUnionArrayPointer();
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int size = node->getType().getObjectSize();
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@ -1424,9 +1406,8 @@ TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermC
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case EbtDouble:
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leftUnionArray[i].setDConst(static_cast<double>(rightUnionArray[i].getBConst()));
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Cannot promote", node->getLoc());
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return 0;
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default:
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return node;
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}
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break;
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case EbtDouble:
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@ -1445,8 +1426,7 @@ TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermC
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leftUnionArray[i] = rightUnionArray[i];
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Cannot promote", node->getLoc());
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return 0;
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return node;
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}
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break;
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case EbtInt:
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@ -1465,8 +1445,7 @@ TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermC
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leftUnionArray[i].setIConst(static_cast<int>(rightUnionArray[i].getDConst()));
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break;
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default:
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infoSink.info.message(EPrefixInternalError, "Cannot promote", node->getLoc());
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return 0;
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return node;
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}
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break;
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case EbtUint:
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@ -1485,8 +1464,7 @@ TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermC
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leftUnionArray[i].setUConst(static_cast<unsigned int>(rightUnionArray[i].getDConst()));
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break;
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default:
|
||||
infoSink.info.message(EPrefixInternalError, "Cannot promote", node->getLoc());
|
||||
return 0;
|
||||
return node;
|
||||
}
|
||||
break;
|
||||
case EbtBool:
|
||||
@ -1505,13 +1483,11 @@ TIntermTyped* TIntermediate::promoteConstantUnion(TBasicType promoteTo, TIntermC
|
||||
leftUnionArray[i].setBConst(rightUnionArray[i].getDConst() != 0.0);
|
||||
break;
|
||||
default:
|
||||
infoSink.info.message(EPrefixInternalError, "Cannot promote", node->getLoc());
|
||||
return 0;
|
||||
return node;
|
||||
}
|
||||
break;
|
||||
default:
|
||||
infoSink.info.message(EPrefixInternalError, "Incorrect data type found", node->getLoc());
|
||||
return 0;
|
||||
return node;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@ -103,7 +103,7 @@ TPoolAllocator* PerProcessGPA = 0;
|
||||
bool InitializeSymbolTable(const TString& builtIns, int version, EProfile profile, EShLanguage language, TInfoSink& infoSink,
|
||||
TSymbolTable& symbolTable)
|
||||
{
|
||||
TIntermediate intermediate(infoSink, version, profile);
|
||||
TIntermediate intermediate(version, profile);
|
||||
|
||||
TParseContext parseContext(symbolTable, intermediate, true, version, profile, language, infoSink);
|
||||
TPpContext ppContext(parseContext);
|
||||
@ -458,7 +458,7 @@ int ShCompile(
|
||||
}
|
||||
bool goodProfile = DeduceProfile(compiler->infoSink, version, profile);
|
||||
|
||||
TIntermediate intermediate(compiler->infoSink, version, profile);
|
||||
TIntermediate intermediate(version, profile);
|
||||
SetupBuiltinSymbolTable(version, profile);
|
||||
|
||||
TSymbolTable* cachedTable = SharedSymbolTables[MapVersionToIndex(version)]
|
||||
@ -525,7 +525,7 @@ int ShCompile(
|
||||
|
||||
if (success) {
|
||||
if (messages & EShMsgAST)
|
||||
intermediate.outputTree(parseContext.treeRoot);
|
||||
intermediate.outputTree(parseContext.treeRoot, parseContext.infoSink);
|
||||
|
||||
//
|
||||
// Call the machine dependent compiler
|
||||
@ -539,7 +539,7 @@ int ShCompile(
|
||||
parseContext.infoSink.info << parseContext.numErrors << " compilation errors. No code generated.\n\n";
|
||||
success = false;
|
||||
if (messages & EShMsgAST)
|
||||
intermediate.outputTree(parseContext.treeRoot);
|
||||
intermediate.outputTree(parseContext.treeRoot, parseContext.infoSink);
|
||||
}
|
||||
|
||||
intermediate.remove(parseContext.treeRoot);
|
||||
|
||||
@ -567,7 +567,7 @@ bool OutputSwitch(bool /* preVisit */, TIntermSwitch* node, TIntermTraverser* it
|
||||
// Individual functions can be initialized to 0 to skip processing of that
|
||||
// type of node. It's children will still be processed.
|
||||
//
|
||||
void TIntermediate::outputTree(TIntermNode* root)
|
||||
void TIntermediate::outputTree(TIntermNode* root, TInfoSink& infoSink)
|
||||
{
|
||||
if (root == 0)
|
||||
return;
|
||||
|
||||
@ -54,7 +54,7 @@ class TIntermediate {
|
||||
public:
|
||||
POOL_ALLOCATOR_NEW_DELETE(GetThreadPoolAllocator())
|
||||
|
||||
TIntermediate(TInfoSink& i, int v, EProfile p) : infoSink(i), version(v), profile(p) { }
|
||||
TIntermediate(int v, EProfile p) : version(v), profile(p) { }
|
||||
TIntermSymbol* addSymbol(int Id, const TString&, const TType&, TSourceLoc);
|
||||
TIntermTyped* addConversion(TOperator, const TType&, TIntermTyped*);
|
||||
TIntermTyped* addBinaryMath(TOperator, TIntermTyped* left, TIntermTyped* right, TSourceLoc);
|
||||
@ -87,10 +87,9 @@ public:
|
||||
void addSymbolLinkageNode(TIntermAggregate*& linkage, TSymbolTable&, const TString&);
|
||||
void addSymbolLinkageNode(TIntermAggregate*& linkage, const TVariable&);
|
||||
void remove(TIntermNode*);
|
||||
void outputTree(TIntermNode*);
|
||||
void outputTree(TIntermNode*, TInfoSink&);
|
||||
|
||||
protected:
|
||||
TInfoSink& infoSink;
|
||||
EProfile profile;
|
||||
int version;
|
||||
|
||||
|
||||
@ -32,18 +32,19 @@
|
||||
//POSSIBILITY OF SUCH DAMAGE.
|
||||
//
|
||||
|
||||
//
|
||||
// Travarse a tree of constants to create a single folded constant.
|
||||
// It should only be used when the whole tree is known to be constant.
|
||||
//
|
||||
|
||||
#include "ParseHelper.h"
|
||||
|
||||
namespace glslang {
|
||||
|
||||
//
|
||||
// Use this class to carry along data from node to node in
|
||||
// the traversal
|
||||
//
|
||||
class TConstTraverser : public TIntermTraverser {
|
||||
public:
|
||||
TConstTraverser(TConstUnion* cUnion, bool singleConstParam, TOperator constructType, TInfoSink& sink, const TType& t) : unionArray(cUnion), type(t),
|
||||
constructorType(constructType), singleConstantParam(singleConstParam), infoSink(sink), error(false), isMatrix(false),
|
||||
TConstTraverser(TConstUnion* cUnion, bool singleConstParam, TOperator constructType, const TType& t) : unionArray(cUnion), type(t),
|
||||
constructorType(constructType), singleConstantParam(singleConstParam), error(false), isMatrix(false),
|
||||
matrixCols(0), matrixRows(0) { index = 0; tOp = EOpNull;}
|
||||
int index ;
|
||||
TConstUnion *unionArray;
|
||||
@ -51,7 +52,6 @@ public:
|
||||
const TType& type;
|
||||
TOperator constructorType;
|
||||
bool singleConstantParam;
|
||||
TInfoSink& infoSink;
|
||||
bool error;
|
||||
int size; // size of the constructor ( 4 for vec4)
|
||||
bool isMatrix;
|
||||
@ -59,66 +59,11 @@ public:
|
||||
int matrixRows;
|
||||
};
|
||||
|
||||
//
|
||||
// The rest of the file are the traversal functions. The last one
|
||||
// is the one that starts the traversal.
|
||||
//
|
||||
// Return true from interior nodes to have the external traversal
|
||||
// continue on to children. If you process children yourself,
|
||||
// return false.
|
||||
//
|
||||
|
||||
void ParseSymbol(TIntermSymbol* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
oit->infoSink.info.message(EPrefixInternalError, "Symbol Node found in constant constructor", node->getLoc());
|
||||
|
||||
return;
|
||||
}
|
||||
|
||||
bool ParseBinary(bool /* preVisit */, TIntermBinary* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
|
||||
TStorageQualifier qualifier = node->getType().getQualifier().storage;
|
||||
|
||||
if (qualifier != EvqConst) {
|
||||
const int maxSize = GlslangMaxTypeLength + 50;
|
||||
char buf[maxSize];
|
||||
snprintf(buf, maxSize, "'constructor' : assigning non-constant to %s", oit->type.getCompleteString().c_str());
|
||||
oit->infoSink.info.message(EPrefixError, buf, node->getLoc());
|
||||
oit->error = true;
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
oit->infoSink.info.message(EPrefixInternalError, "Binary Node found in constant constructor", node->getLoc());
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
bool ParseUnary(bool /* preVisit */, TIntermUnary* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
|
||||
const int maxSize = GlslangMaxTypeLength + 50;
|
||||
char buf[maxSize];
|
||||
snprintf(buf, maxSize, "'constructor' : assigning non-constant to '%s'", oit->type.getCompleteString().c_str());
|
||||
oit->infoSink.info.message(EPrefixError, buf, node->getLoc());
|
||||
oit->error = true;
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
bool ParseAggregate(bool /* preVisit */, TIntermAggregate* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
|
||||
if (!node->isConstructor() && node->getOp() != EOpComma) {
|
||||
const int maxSize = GlslangMaxTypeLength + 50;
|
||||
char buf[maxSize];
|
||||
snprintf(buf, maxSize, "'constructor' : assigning non-constant to '%s'", oit->type.getCompleteString().c_str());
|
||||
oit->infoSink.info.message(EPrefixError, buf, node->getLoc());
|
||||
if (! node->isConstructor() && node->getOp() != EOpComma) {
|
||||
oit->error = true;
|
||||
|
||||
return false;
|
||||
@ -164,14 +109,6 @@ bool ParseAggregate(bool /* preVisit */, TIntermAggregate* node, TIntermTraverse
|
||||
return false;
|
||||
}
|
||||
|
||||
bool ParseSelection(bool /* preVisit */, TIntermSelection* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
oit->infoSink.info.message(EPrefixInternalError, "Selection Node found in constant constructor", node->getLoc());
|
||||
oit->error = true;
|
||||
return false;
|
||||
}
|
||||
|
||||
void ParseConstantUnion(TIntermConstantUnion* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
@ -201,7 +138,7 @@ void ParseConstantUnion(TIntermConstantUnion* node, TIntermTraverser* it)
|
||||
isMatrix = oit->isMatrix;
|
||||
totalSize = oit->index + size;
|
||||
TConstUnion *rightUnionArray = node->getUnionArrayPointer();
|
||||
if (!isMatrix) {
|
||||
if (! isMatrix) {
|
||||
int count = 0;
|
||||
for (int i = oit->index; i < totalSize; i++) {
|
||||
if (i >= instanceSize)
|
||||
@ -234,44 +171,15 @@ void ParseConstantUnion(TIntermConstantUnion* node, TIntermTraverser* it)
|
||||
}
|
||||
}
|
||||
|
||||
bool ParseLoop(bool /* preVisit */, TIntermLoop* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
oit->infoSink.info.message(EPrefixInternalError, "Loop Node found in constant constructor", node->getLoc());
|
||||
oit->error = true;
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
bool ParseBranch(bool /* previsit*/, TIntermBranch* node, TIntermTraverser* it)
|
||||
{
|
||||
TConstTraverser* oit = static_cast<TConstTraverser*>(it);
|
||||
oit->infoSink.info.message(EPrefixInternalError, "Branch Node found in constant constructor", node->getLoc());
|
||||
oit->error = true;
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
//
|
||||
// This function is the one to call externally to start the traversal.
|
||||
// Individual functions can be initialized to 0 to skip processing of that
|
||||
// type of node. It's children will still be processed.
|
||||
//
|
||||
bool TIntermediate::parseConstTree(TSourceLoc line, TIntermNode* root, TConstUnion* unionArray, TOperator constructorType, const TType& t, bool singleConstantParam)
|
||||
{
|
||||
if (root == 0)
|
||||
return false;
|
||||
|
||||
TConstTraverser it(unionArray, singleConstantParam, constructorType, infoSink, t);
|
||||
TConstTraverser it(unionArray, singleConstantParam, constructorType, t);
|
||||
|
||||
it.visitAggregate = ParseAggregate;
|
||||
it.visitBinary = ParseBinary;
|
||||
it.visitConstantUnion = ParseConstantUnion;
|
||||
it.visitSelection = ParseSelection;
|
||||
it.visitSymbol = ParseSymbol;
|
||||
it.visitUnary = ParseUnary;
|
||||
it.visitLoop = ParseLoop;
|
||||
it.visitBranch = ParseBranch;
|
||||
|
||||
root->traverse(&it);
|
||||
if (it.error)
|
||||
|
||||
Loading…
x
Reference in New Issue
Block a user