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Implement constant propogation of logical (and, or, xor) expressions.
Fixes testcase: test/Regression/Transforms/ConstProp/logicaltest.ll git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@3153 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -71,6 +71,9 @@ public:
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virtual Constant *mul(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *div(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *rem(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_and(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_or (const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_xor(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shl(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shr(const Constant *V1, const Constant *V2) const = 0;
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@ -130,7 +133,7 @@ inline Constant *operator~(const Constant &V) {
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}
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// Standard binary operators...
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inline Constant *operator+(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->add(&V1, &V2);
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@ -156,6 +159,23 @@ inline Constant *operator%(const Constant &V1, const Constant &V2) {
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return ConstRules::get(V1)->rem(&V1, &V2);
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}
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// Logical Operators...
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inline Constant *operator&(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_and(&V1, &V2);
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}
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inline Constant *operator|(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_or(&V1, &V2);
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}
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inline Constant *operator^(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_xor(&V1, &V2);
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}
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// Shift Instructions...
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inline Constant *operator<<(const Constant &V1, const Constant &V2) {
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assert(V1.getType()->isIntegral() && V2.getType() == Type::UByteTy);
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return ConstRules::get(V1)->shl(&V1, &V2);
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@ -71,6 +71,9 @@ public:
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virtual Constant *mul(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *div(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *rem(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_and(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_or (const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_xor(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shl(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shr(const Constant *V1, const Constant *V2) const = 0;
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@ -130,7 +133,7 @@ inline Constant *operator~(const Constant &V) {
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}
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// Standard binary operators...
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inline Constant *operator+(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->add(&V1, &V2);
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@ -156,6 +159,23 @@ inline Constant *operator%(const Constant &V1, const Constant &V2) {
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return ConstRules::get(V1)->rem(&V1, &V2);
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}
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// Logical Operators...
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inline Constant *operator&(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_and(&V1, &V2);
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}
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inline Constant *operator|(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_or(&V1, &V2);
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}
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inline Constant *operator^(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_xor(&V1, &V2);
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}
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// Shift Instructions...
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inline Constant *operator<<(const Constant &V1, const Constant &V2) {
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assert(V1.getType()->isIntegral() && V2.getType() == Type::UByteTy);
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return ConstRules::get(V1)->shl(&V1, &V2);
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@ -71,6 +71,9 @@ public:
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virtual Constant *mul(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *div(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *rem(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_and(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_or (const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *op_xor(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shl(const Constant *V1, const Constant *V2) const = 0;
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virtual Constant *shr(const Constant *V1, const Constant *V2) const = 0;
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@ -130,7 +133,7 @@ inline Constant *operator~(const Constant &V) {
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}
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// Standard binary operators...
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inline Constant *operator+(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->add(&V1, &V2);
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@ -156,6 +159,23 @@ inline Constant *operator%(const Constant &V1, const Constant &V2) {
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return ConstRules::get(V1)->rem(&V1, &V2);
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}
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// Logical Operators...
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inline Constant *operator&(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_and(&V1, &V2);
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}
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inline Constant *operator|(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_or(&V1, &V2);
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}
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inline Constant *operator^(const Constant &V1, const Constant &V2) {
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assert(V1.getType() == V2.getType() && "Constant types must be identical!");
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return ConstRules::get(V1)->op_xor(&V1, &V2);
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}
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// Shift Instructions...
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inline Constant *operator<<(const Constant &V1, const Constant &V2) {
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assert(V1.getType()->isIntegral() && V2.getType() == Type::UByteTy);
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return ConstRules::get(V1)->shl(&V1, &V2);
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