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Reland "[ScalarEvolution] createSCEV(): recognize udiv
/urem
disguised as an sdiv
/srem
"
This reverts commit d3e3f36ff1151f565730977ac4f663a2ccee48ae, which reverter the original commit 2c16100e6f72075564ea1f67fa5a82c269dafcd3, but with polly tests now actually passing.
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@ -6303,6 +6303,20 @@ const SCEV *ScalarEvolution::createSCEV(Value *V) {
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return getSCEV(U->getOperand(0));
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break;
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case Instruction::SDiv:
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// If both operands are non-negative, this is just an udiv.
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if (isKnownNonNegative(getSCEV(U->getOperand(0))) &&
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isKnownNonNegative(getSCEV(U->getOperand(1))))
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return getUDivExpr(getSCEV(U->getOperand(0)), getSCEV(U->getOperand(1)));
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break;
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case Instruction::SRem:
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// If both operands are non-negative, this is just an urem.
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if (isKnownNonNegative(getSCEV(U->getOperand(0))) &&
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isKnownNonNegative(getSCEV(U->getOperand(1))))
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return getURemExpr(getSCEV(U->getOperand(0)), getSCEV(U->getOperand(1)));
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break;
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// It's tempting to handle inttoptr and ptrtoint as no-ops, however this can
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// lead to pointer expressions which cannot safely be expanded to GEPs,
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// because ScalarEvolution doesn't respect the GEP aliasing rules when
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@ -14,11 +14,11 @@ define dso_local void @_Z4loopi(i32 %width) local_unnamed_addr #0 {
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; CHECK-NEXT: %i.0 = phi i32 [ 0, %entry ], [ %inc, %for.body ]
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; CHECK-NEXT: --> {0,+,1}<nuw><nsw><%for.cond> U: [0,-2147483648) S: [0,-2147483648) Exits: %width LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %rem = sdiv i32 %i.0, 2
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; CHECK-NEXT: --> %rem U: full-set S: [-1073741824,1073741824) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> ({0,+,1}<nuw><nsw><%for.cond> /u 2) U: [0,1073741824) S: [0,1073741824) Exits: (%width /u 2) LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %idxprom = sext i32 %rem to i64
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; CHECK-NEXT: --> (sext i32 %rem to i64) U: [-2147483648,2147483648) S: [-1073741824,1073741824) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> ({0,+,1}<nuw><nsw><%for.cond> /u 2) U: [0,2147483648) S: [0,2147483648) Exits: ((zext i32 %width to i64) /u 2) LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %arrayidx = getelementptr inbounds [2 x i32], [2 x i32]* %storage, i64 0, i64 %idxprom
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; CHECK-NEXT: --> ((4 * (sext i32 %rem to i64))<nsw> + %storage)<nsw> U: [0,-3) S: [-9223372036854775808,9223372036854775805) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> ((4 * ({0,+,1}<nuw><nsw><%for.cond> /u 2))<nuw><nsw> + %storage)<nsw> U: [0,-3) S: [-9223372036854775808,9223372036854775805) Exits: ((4 * ((zext i32 %width to i64) /u 2))<nuw><nsw> + %storage)<nsw> LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %1 = load i32, i32* %arrayidx, align 4
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; CHECK-NEXT: --> %1 U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: %call = call i32 @_Z3adji(i32 %1)
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@ -14,11 +14,11 @@ define dso_local void @_Z4loopi(i32 %width) local_unnamed_addr #0 {
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; CHECK-NEXT: %i.0 = phi i32 [ 0, %entry ], [ %inc, %for.body ]
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; CHECK-NEXT: --> {0,+,1}<nuw><nsw><%for.cond> U: [0,-2147483648) S: [0,-2147483648) Exits: %width LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %rem = srem i32 %i.0, 2
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; CHECK-NEXT: --> %rem U: [0,2) S: [-2,2) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> (zext i1 {false,+,true}<%for.cond> to i32) U: [0,2) S: [0,2) Exits: (zext i1 (trunc i32 %width to i1) to i32) LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %idxprom = sext i32 %rem to i64
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; CHECK-NEXT: --> (sext i32 %rem to i64) U: [0,2) S: [-2,2) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> (zext i1 {false,+,true}<%for.cond> to i64) U: [0,2) S: [0,2) Exits: (zext i1 (trunc i32 %width to i1) to i64) LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %arrayidx = getelementptr inbounds [2 x i32], [2 x i32]* %storage, i64 0, i64 %idxprom
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; CHECK-NEXT: --> ((4 * (sext i32 %rem to i64))<nuw><nsw> + %storage)<nsw> U: [0,-3) S: [-9223372036854775808,9223372036854775805) Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: --> ((4 * (zext i1 {false,+,true}<%for.cond> to i64))<nuw><nsw> + %storage)<nsw> U: [0,-3) S: [-9223372036854775808,9223372036854775805) Exits: ((4 * (zext i1 (trunc i32 %width to i1) to i64))<nuw><nsw> + %storage)<nsw> LoopDispositions: { %for.cond: Computable }
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; CHECK-NEXT: %1 = load i32, i32* %arrayidx, align 4
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; CHECK-NEXT: --> %1 U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %for.cond: Variant }
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; CHECK-NEXT: %call = call i32 @_Z3adji(i32 %1)
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