148 lines
9.2 KiB
LLVM
148 lines
9.2 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_analyze_test_checks.py
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; RUN: opt -analyze -scalar-evolution < %s -enable-new-pm=0 | FileCheck %s
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; RUN: opt -passes='print<scalar-evolution>' < %s -disable-output 2>&1 | FileCheck %s
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@b = dso_local global i32 5, align 4
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@__const.f.g = private unnamed_addr constant [1 x [4 x i16]] [[4 x i16] [i16 1, i16 0, i16 0, i16 0]], align 2
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@a = common dso_local global i32 0, align 4
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@c = common dso_local global i32 0, align 4
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@d = common dso_local global i32 0, align 4
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@e = common dso_local global i32 0, align 4
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; When inner.loop is taken as an exiting block of outer.loop, we cannot use the
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; addrec of %storemerge1921.3, which is {3, +, -1}<inner.loop>, to calculate the
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; exit count because it doesn't belong to outer.loop.
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define dso_local i32 @f() {
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; CHECK-LABEL: 'f'
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; CHECK-NEXT: Classifying expressions for: @f
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; CHECK-NEXT: %storemerge23 = phi i32 [ 3, %entry ], [ %dec16, %for.inc13.3 ]
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; CHECK-NEXT: --> {3,+,-1}<nsw><%outer.loop> U: [-2147483648,4) S: [-2147483648,4) Exits: 3 LoopDispositions: { %outer.loop: Computable, %for.cond6: Invariant, %inner.loop: Invariant }
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; CHECK-NEXT: %storemerge1921 = phi i32 [ 3, %outer.loop ], [ %dec, %for.end ]
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; CHECK-NEXT: --> {3,+,-1}<nuw><nsw><%for.cond6> U: [3,4) S: [3,4) Exits: <<Unknown>> LoopDispositions: { %for.cond6: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %idxprom20 = zext i32 %storemerge1921 to i64
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; CHECK-NEXT: --> {3,+,4294967295}<nuw><nsw><%for.cond6> U: [3,4) S: [3,4) Exits: <<Unknown>> LoopDispositions: { %for.cond6: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %arrayidx7 = getelementptr inbounds [1 x [4 x i16]], [1 x [4 x i16]]* @__const.f.g, i64 0, i64 0, i64 %idxprom20
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; CHECK-NEXT: --> {(6 + @__const.f.g)<nuw>,+,8589934590}<nuw><%for.cond6> U: [6,-1) S: [-9223372036854775808,9223372036854775807) Exits: <<Unknown>> LoopDispositions: { %for.cond6: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %i = load i16, i16* %arrayidx7, align 2
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; CHECK-NEXT: --> %i U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %for.cond6: Variant, %outer.loop: Variant }
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; CHECK-NEXT: %storemerge1822.lcssa.ph = phi i32 [ 0, %for.cond6 ]
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; CHECK-NEXT: --> 0 U: [0,1) S: [0,1)
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; CHECK-NEXT: %storemerge1822.lcssa.ph32 = phi i32 [ 3, %inner.loop ]
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; CHECK-NEXT: --> 3 U: [3,4) S: [3,4)
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; CHECK-NEXT: %storemerge1822.lcssa = phi i32 [ %storemerge1822.lcssa.ph, %if.end.loopexit ], [ %storemerge1822.lcssa.ph32, %if.end.loopexit31 ]
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; CHECK-NEXT: --> %storemerge1822.lcssa U: [0,4) S: [0,4)
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; CHECK-NEXT: %i1 = load i32, i32* @e, align 4
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; CHECK-NEXT: --> %i1 U: full-set S: full-set
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; CHECK-NEXT: %i2 = load volatile i32, i32* @b, align 4
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; CHECK-NEXT: --> %i2 U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %for.cond6: Variant, %outer.loop: Variant }
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; CHECK-NEXT: %dec = add nsw i32 %storemerge1921, -1
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; CHECK-NEXT: --> {2,+,-1}<nsw><%for.cond6> U: [2,3) S: [2,3) Exits: <<Unknown>> LoopDispositions: { %for.cond6: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %inc.lcssa.lcssa = phi i32 [ 4, %for.inc13.3 ]
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; CHECK-NEXT: --> 4 U: [4,5) S: [4,5)
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; CHECK-NEXT: %retval.0 = phi i32 [ %i1, %if.end ], [ 0, %cleanup.loopexit ]
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; CHECK-NEXT: --> %retval.0 U: full-set S: full-set
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; CHECK-NEXT: %storemerge1921.3 = phi i32 [ 3, %for.end ], [ %dec.3, %for.end.3 ]
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; CHECK-NEXT: --> {3,+,-1}<nuw><nsw><%inner.loop> U: [3,4) S: [3,4) Exits: <<Unknown>> LoopDispositions: { %inner.loop: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %idxprom20.3 = zext i32 %storemerge1921.3 to i64
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; CHECK-NEXT: --> {3,+,4294967295}<nuw><nsw><%inner.loop> U: [3,4) S: [3,4) Exits: <<Unknown>> LoopDispositions: { %inner.loop: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %arrayidx7.3 = getelementptr inbounds [1 x [4 x i16]], [1 x [4 x i16]]* @__const.f.g, i64 0, i64 0, i64 %idxprom20.3
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; CHECK-NEXT: --> {(6 + @__const.f.g)<nuw>,+,8589934590}<nuw><%inner.loop> U: [6,-1) S: [-9223372036854775808,9223372036854775807) Exits: <<Unknown>> LoopDispositions: { %inner.loop: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %i7 = load i16, i16* %arrayidx7.3, align 2
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; CHECK-NEXT: --> %i7 U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %inner.loop: Variant, %outer.loop: Variant }
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; CHECK-NEXT: %i8 = load volatile i32, i32* @b, align 4
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; CHECK-NEXT: --> %i8 U: full-set S: full-set Exits: <<Unknown>> LoopDispositions: { %inner.loop: Variant, %outer.loop: Variant }
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; CHECK-NEXT: %dec.3 = add nsw i32 %storemerge1921.3, -1
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; CHECK-NEXT: --> {2,+,-1}<nsw><%inner.loop> U: [2,3) S: [2,3) Exits: <<Unknown>> LoopDispositions: { %inner.loop: Computable, %outer.loop: Variant }
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; CHECK-NEXT: %storemerge1921.lcssa25.3 = phi i32 [ %storemerge1921.3, %for.end.3 ]
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; CHECK-NEXT: --> %storemerge1921.lcssa25.3 U: [3,4) S: [3,4) Exits: <<Unknown>> LoopDispositions: { %outer.loop: Variant, %for.cond6: Invariant, %inner.loop: Invariant }
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; CHECK-NEXT: %dec16 = add nsw i32 %storemerge23, -1
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; CHECK-NEXT: --> {2,+,-1}<nw><%outer.loop> U: full-set S: full-set Exits: 2 LoopDispositions: { %outer.loop: Computable, %for.cond6: Invariant, %inner.loop: Invariant }
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; CHECK-NEXT: Determining loop execution counts for: @f
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; CHECK-NEXT: Loop %for.cond6: <multiple exits> Unpredictable backedge-taken count.
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; CHECK-NEXT: exit count for for.cond6: 0
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; CHECK-NEXT: exit count for for.end: ***COULDNOTCOMPUTE***
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; CHECK-NEXT: Loop %for.cond6: max backedge-taken count is 0
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; CHECK-NEXT: Loop %for.cond6: Unpredictable predicated backedge-taken count.
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; CHECK-NEXT: Loop %inner.loop: <multiple exits> Unpredictable backedge-taken count.
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; CHECK-NEXT: exit count for inner.loop: 0
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; CHECK-NEXT: exit count for for.end.3: ***COULDNOTCOMPUTE***
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; CHECK-NEXT: Loop %inner.loop: max backedge-taken count is 0
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; CHECK-NEXT: Loop %inner.loop: Unpredictable predicated backedge-taken count.
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; CHECK-NEXT: Loop %outer.loop: <multiple exits> backedge-taken count is 0
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; CHECK-NEXT: exit count for for.cond6: 0
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; CHECK-NEXT: exit count for inner.loop: 0
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; CHECK-NEXT: exit count for for.inc13.3: 2
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; CHECK-NEXT: Loop %outer.loop: max backedge-taken count is 0
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; CHECK-NEXT: Loop %outer.loop: Predicated backedge-taken count is 0
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; CHECK-NEXT: Predicates:
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; CHECK: Loop %outer.loop: Trip multiple is 0
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;
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entry:
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store i32 3, i32* @a, align 4
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br label %outer.loop
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outer.loop: ; preds = %for.inc13.3, %entry
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%storemerge23 = phi i32 [ 3, %entry ], [ %dec16, %for.inc13.3 ]
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br label %for.cond6
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for.cond6: ; preds = %for.end, %outer.loop
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%storemerge1921 = phi i32 [ 3, %outer.loop ], [ %dec, %for.end ]
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%idxprom20 = zext i32 %storemerge1921 to i64
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%arrayidx7 = getelementptr inbounds [1 x [4 x i16]], [1 x [4 x i16]]* @__const.f.g, i64 0, i64 0, i64 %idxprom20
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%i = load i16, i16* %arrayidx7, align 2
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%tobool8 = icmp eq i16 %i, 0
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br i1 %tobool8, label %if.end.loopexit, label %for.end
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if.end.loopexit: ; preds = %for.cond6
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%storemerge1822.lcssa.ph = phi i32 [ 0, %for.cond6 ]
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br label %if.end
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if.end.loopexit31: ; preds = %inner.loop
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%storemerge1822.lcssa.ph32 = phi i32 [ 3, %inner.loop ]
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br label %if.end
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if.end: ; preds = %if.end.loopexit31, %if.end.loopexit
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%storemerge1822.lcssa = phi i32 [ %storemerge1822.lcssa.ph, %if.end.loopexit ], [ %storemerge1822.lcssa.ph32, %if.end.loopexit31 ]
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store i32 %storemerge1822.lcssa, i32* @c, align 4
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store i32 2, i32* @d, align 4
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%i1 = load i32, i32* @e, align 4
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br label %cleanup
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for.end: ; preds = %for.cond6
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%i2 = load volatile i32, i32* @b, align 4
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%tobool9 = icmp eq i32 %i2, 0
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%dec = add nsw i32 %storemerge1921, -1
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br i1 %tobool9, label %for.cond6, label %inner.loop
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cleanup.loopexit: ; preds = %for.inc13.3
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%inc.lcssa.lcssa = phi i32 [ 4, %for.inc13.3 ]
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store i32 %inc.lcssa.lcssa, i32* @c, align 4
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br label %cleanup
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cleanup: ; preds = %cleanup.loopexit, %if.end
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%retval.0 = phi i32 [ %i1, %if.end ], [ 0, %cleanup.loopexit ]
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ret i32 %retval.0
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inner.loop: ; preds = %for.end.3, %for.end
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%storemerge1921.3 = phi i32 [ 3, %for.end ], [ %dec.3, %for.end.3 ]
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%idxprom20.3 = zext i32 %storemerge1921.3 to i64
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%arrayidx7.3 = getelementptr inbounds [1 x [4 x i16]], [1 x [4 x i16]]* @__const.f.g, i64 0, i64 0, i64 %idxprom20.3
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%i7 = load i16, i16* %arrayidx7.3, align 2
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%tobool8.3 = icmp eq i16 %i7, 0
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br i1 %tobool8.3, label %if.end.loopexit31, label %for.end.3
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for.end.3: ; preds = %inner.loop
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%i8 = load volatile i32, i32* @b, align 4
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%tobool9.3 = icmp eq i32 %i8, 0
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%dec.3 = add nsw i32 %storemerge1921.3, -1
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br i1 %tobool9.3, label %inner.loop, label %for.inc13.3
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for.inc13.3: ; preds = %for.end.3
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%storemerge1921.lcssa25.3 = phi i32 [ %storemerge1921.3, %for.end.3 ]
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store i32 %storemerge1921.lcssa25.3, i32* @d, align 4
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%dec16 = add nsw i32 %storemerge23, -1
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store i32 %dec16, i32* @a, align 4
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%tobool = icmp eq i32 %dec16, 0
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br i1 %tobool, label %cleanup.loopexit, label %outer.loop
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}
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