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Reinstate the optimization from r151449 with a fix to not turn 'gep %x' into
'gep null' when the icmp predicate is unsigned (or is signed without inbounds). git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@151467 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -21,6 +21,7 @@
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#include "llvm/Operator.h"
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#include "llvm/Operator.h"
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#include "llvm/ADT/Statistic.h"
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#include "llvm/ADT/Statistic.h"
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#include "llvm/Analysis/InstructionSimplify.h"
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#include "llvm/Analysis/InstructionSimplify.h"
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#include "llvm/Analysis/AliasAnalysis.h"
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#include "llvm/Analysis/ConstantFolding.h"
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#include "llvm/Analysis/ConstantFolding.h"
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#include "llvm/Analysis/Dominators.h"
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#include "llvm/Analysis/Dominators.h"
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#include "llvm/Analysis/ValueTracking.h"
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#include "llvm/Analysis/ValueTracking.h"
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@ -1609,26 +1610,43 @@ static Value *SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
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}
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}
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}
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}
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// icmp <alloca*>, <global/alloca*/null> - Different stack variables have
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// icmp <object*>, <object*/null> - Different identified objects have
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// different addresses, and what's more the address of a stack variable is
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// different addresses (unless null), and what's more the address of an
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// never null or equal to the address of a global. Note that generalizing
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// identified local is never equal to another argument (again, barring null).
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// to the case where LHS is a global variable address or null is pointless,
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// Note that generalizing to the case where LHS is a global variable address
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// since if both LHS and RHS are constants then we already constant folded
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// or null is pointless, since if both LHS and RHS are constants then we
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// the compare, and if only one of them is then we moved it to RHS already.
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// already constant folded the compare, and if only one of them is then we
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// moved it to RHS already.
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Value *LHSPtr = LHS->stripPointerCasts();
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Value *LHSPtr = LHS->stripPointerCasts();
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Value *RHSPtr = RHS->stripPointerCasts();
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Value *RHSPtr = RHS->stripPointerCasts();
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if (LHSPtr == RHSPtr)
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if (LHSPtr == RHSPtr)
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return ConstantInt::get(ITy, CmpInst::isTrueWhenEqual(Pred));
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return ConstantInt::get(ITy, CmpInst::isTrueWhenEqual(Pred));
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// Be more aggressive about stripping pointer adjustments when checking a
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// Be more aggressive about stripping pointer adjustments when checking a
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// comparison of an alloca address to another object. We can rip off all
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// comparison of an alloca address to another object. We can rip off all
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// inbounds GEP operations, even if they are variable.
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// inbounds GEP operations, even if they are variable.
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LHSPtr = stripPointerAdjustments(LHSPtr);
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LHSPtr = stripPointerAdjustments(LHSPtr);
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if (isa<AllocaInst>(LHSPtr)) {
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if (llvm::isIdentifiedObject(LHSPtr)) {
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RHSPtr = stripPointerAdjustments(RHSPtr);
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RHSPtr = stripPointerAdjustments(RHSPtr);
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if (LHSPtr != RHSPtr &&
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if (llvm::isKnownNonNull(LHSPtr) || llvm::isKnownNonNull(RHSPtr)) {
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(isa<GlobalValue>(RHSPtr) || isa<AllocaInst>(RHSPtr) ||
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// If both sides are different identified objects, they aren't equal
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isa<ConstantPointerNull>(RHSPtr)))
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// unless they're null.
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if (LHSPtr != RHSPtr && llvm::isIdentifiedObject(RHSPtr))
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return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
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// A local identified object (alloca or noalias call) can't equal any
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// incoming argument, unless they're both null.
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if (isa<Instruction>(LHSPtr) && isa<Argument>(RHSPtr))
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return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
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}
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// Assume that the constant null is on the right.
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if (llvm::isKnownNonNull(LHSPtr) && isa<ConstantPointerNull>(RHSPtr))
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return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
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} else if (isa<Argument>(LHSPtr)) {
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RHSPtr = stripPointerAdjustments(RHSPtr);
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// An alloca can't be equal to an argument.
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if (isa<AllocaInst>(RHSPtr))
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return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
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return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
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}
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}
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@ -2240,6 +2258,28 @@ static Value *SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
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return getFalse(ITy);
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return getFalse(ITy);
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}
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}
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// Simplify comparisons of GEPs.
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if (GetElementPtrInst *GLHS = dyn_cast<GetElementPtrInst>(LHS)) {
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if (GEPOperator *GRHS = dyn_cast<GEPOperator>(RHS)) {
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if (GLHS->getPointerOperand() == GRHS->getPointerOperand() &&
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GLHS->hasAllConstantIndices() && GRHS->hasAllConstantIndices() &&
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(ICmpInst::isEquality(Pred) ||
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(GLHS->isInBounds() && GRHS->isInBounds() &&
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Pred == ICmpInst::getSignedPredicate(Pred)))) {
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// The bases are equal and the indices are constant. Build a constant
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// expression GEP with the same indices and a null base pointer to see
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// what constant folding can make out of it.
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Constant *Null = Constant::getNullValue(GLHS->getPointerOperandType());
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SmallVector<Value *, 4> IndicesLHS(GLHS->idx_begin(), GLHS->idx_end());
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Constant *NewLHS = ConstantExpr::getGetElementPtr(Null, IndicesLHS);
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SmallVector<Value *, 4> IndicesRHS(GRHS->idx_begin(), GRHS->idx_end());
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Constant *NewRHS = ConstantExpr::getGetElementPtr(Null, IndicesRHS);
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return ConstantExpr::getICmp(Pred, NewLHS, NewRHS);
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}
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}
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}
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// If the comparison is with the result of a select instruction, check whether
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// If the comparison is with the result of a select instruction, check whether
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// comparing with either branch of the select always yields the same value.
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// comparing with either branch of the select always yields the same value.
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if (isa<SelectInst>(LHS) || isa<SelectInst>(RHS))
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if (isa<SelectInst>(LHS) || isa<SelectInst>(RHS))
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@ -634,8 +634,6 @@ define i1 @test62(i8* %a) {
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%arrayidx2 = getelementptr inbounds i8* %a, i64 10
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%arrayidx2 = getelementptr inbounds i8* %a, i64 10
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%cmp = icmp slt i8* %arrayidx1, %arrayidx2
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%cmp = icmp slt i8* %arrayidx1, %arrayidx2
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ret i1 %cmp
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ret i1 %cmp
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; Don't turn a signed cmp of GEPs into an index compare.
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; CHECK: @test62
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; CHECK: @test62
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; CHECK: %cmp = icmp slt i8* %arrayidx1, %arrayidx2
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; CHECK-NEXT: ret i1 true
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; CHECK-NEXT: ret i1 %cmp
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}
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}
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@ -40,6 +40,69 @@ define i1 @gep2() {
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; CHECK-NEXT: ret i1 true
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; CHECK-NEXT: ret i1 true
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}
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}
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; PR11238
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%gept = type { i32, i32 }
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@gepy = global %gept zeroinitializer, align 8
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@gepz = extern_weak global %gept
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define i1 @gep3() {
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; CHECK: @gep3
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%x = alloca %gept, align 8
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%a = getelementptr %gept* %x, i64 0, i32 0
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%b = getelementptr %gept* %x, i64 0, i32 1
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%equal = icmp eq i32* %a, %b
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ret i1 %equal
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; CHECK-NEXT: ret i1 false
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}
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define i1 @gep4() {
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; CHECK: @gep4
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%x = alloca %gept, align 8
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%a = getelementptr %gept* @gepy, i64 0, i32 0
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%b = getelementptr %gept* @gepy, i64 0, i32 1
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%equal = icmp eq i32* %a, %b
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ret i1 %equal
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; CHECK-NEXT: ret i1 false
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}
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define i1 @gep5() {
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; CHECK: @gep5
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%x = alloca %gept, align 8
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%a = getelementptr inbounds %gept* %x, i64 0, i32 1
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%b = getelementptr %gept* @gepy, i64 0, i32 0
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%equal = icmp eq i32* %a, %b
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ret i1 %equal
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; CHECK-NEXT: ret i1 false
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}
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define i1 @gep6(%gept* %x) {
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; Same as @gep3 but potentially null.
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; CHECK: @gep6
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%a = getelementptr %gept* %x, i64 0, i32 0
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%b = getelementptr %gept* %x, i64 0, i32 1
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%equal = icmp eq i32* %a, %b
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ret i1 %equal
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; CHECK-NEXT: ret i1 false
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}
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define i1 @gep7(%gept* %x) {
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; CHECK: @gep7
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%a = getelementptr %gept* %x, i64 0, i32 0
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%b = getelementptr %gept* @gepz, i64 0, i32 0
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%equal = icmp eq i32* %a, %b
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ret i1 %equal
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; CHECK: ret i1 %equal
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}
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define i1 @gep8(%gept* %x) {
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; CHECK: @gep8
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%a = getelementptr %gept* %x, i32 1
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%b = getelementptr %gept* %x, i32 -1
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%equal = icmp ugt %gept* %a, %b
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ret i1 %equal
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; CHECK: ret i1 %equal
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}
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define i1 @zext(i32 %x) {
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define i1 @zext(i32 %x) {
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; CHECK: @zext
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; CHECK: @zext
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%e1 = zext i32 %x to i64
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%e1 = zext i32 %x to i64
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