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6a648b8538
then we don't want to set the destination in the indirect branch to the destination. This is because the indirect branch needs its destinations to have had their block addresses taken. This isn't so of the new critical edge that's split during this process. If it turns out that the destination block has only one predecessor, and that being a BB with an indirect branch, then it won't be marked as 'used' and may be removed. PR10072 git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@132638 91177308-0d34-0410-b5e6-96231b3b80d8
252 lines
7.1 KiB
LLVM
252 lines
7.1 KiB
LLVM
; RUN: opt -S -simplifycfg < %s | FileCheck %s
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; SimplifyCFG should eliminate redundant indirectbr edges.
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; CHECK: indbrtest0
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; CHECK: indirectbr i8* %t, [label %BB0, label %BB1, label %BB2]
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; CHECK: %x = phi i32 [ 0, %BB0 ], [ 1, %entry ]
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declare void @foo()
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declare void @A()
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declare void @B(i32)
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declare void @C()
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define void @indbrtest0(i8** %P, i8** %Q) {
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entry:
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store i8* blockaddress(@indbrtest0, %BB0), i8** %P
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store i8* blockaddress(@indbrtest0, %BB1), i8** %P
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store i8* blockaddress(@indbrtest0, %BB2), i8** %P
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call void @foo()
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%t = load i8** %Q
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indirectbr i8* %t, [label %BB0, label %BB1, label %BB2, label %BB0, label %BB1, label %BB2]
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BB0:
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call void @A()
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br label %BB1
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BB1:
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%x = phi i32 [ 0, %BB0 ], [ 1, %entry ], [ 1, %entry ]
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call void @B(i32 %x)
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ret void
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BB2:
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call void @C()
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ret void
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}
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; SimplifyCFG should convert the indirectbr into a directbr. It would be even
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; better if it removed the branch altogether, but simplifycfdg currently misses
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; that because the predecessor is the entry block.
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; CHECK: indbrtest1
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; CHECK: br label %BB0
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define void @indbrtest1(i8** %P, i8** %Q) {
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entry:
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store i8* blockaddress(@indbrtest1, %BB0), i8** %P
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call void @foo()
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%t = load i8** %Q
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indirectbr i8* %t, [label %BB0, label %BB0]
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BB0:
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call void @A()
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ret void
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}
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; SimplifyCFG should notice that BB0 does not have its address taken and
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; remove it from entry's successor list.
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; CHECK: indbrtest2
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; CHECK: entry:
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; CHECK-NEXT: unreachable
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define void @indbrtest2(i8* %t) {
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entry:
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indirectbr i8* %t, [label %BB0, label %BB0]
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BB0:
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ret void
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}
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; Make sure the blocks in the next few tests aren't trivially removable as
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; successors by taking their addresses.
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@anchor = constant [13 x i8*] [
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i8* blockaddress(@indbrtest3, %L1), i8* blockaddress(@indbrtest3, %L2), i8* blockaddress(@indbrtest3, %L3),
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i8* blockaddress(@indbrtest4, %L1), i8* blockaddress(@indbrtest4, %L2), i8* blockaddress(@indbrtest4, %L3),
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i8* blockaddress(@indbrtest5, %L1), i8* blockaddress(@indbrtest5, %L2), i8* blockaddress(@indbrtest5, %L3), i8* blockaddress(@indbrtest5, %L4),
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i8* blockaddress(@indbrtest6, %L1), i8* blockaddress(@indbrtest6, %L2), i8* blockaddress(@indbrtest6, %L3)
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]
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; SimplifyCFG should turn the indirectbr into a conditional branch on the
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; condition of the select.
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; CHECK: @indbrtest3
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; CHECK-NEXT: entry:
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; CHECK-NEXT: br i1 %cond, label %L1, label %L2
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; CHECK-NOT: indirectbr
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; CHECK-NOT: br
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; CHECK-NOT: L3:
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define void @indbrtest3(i1 %cond, i8* %address) nounwind {
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entry:
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%indirect.goto.dest = select i1 %cond, i8* blockaddress(@indbrtest3, %L1), i8* blockaddress(@indbrtest3, %L2)
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indirectbr i8* %indirect.goto.dest, [label %L1, label %L2, label %L3]
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L1:
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call void @A()
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ret void
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L2:
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call void @C()
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ret void
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L3:
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call void @foo()
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ret void
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}
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; SimplifyCFG should turn the indirectbr into an unconditional branch to the
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; only possible destination.
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; As in @indbrtest1, it should really remove the branch entirely, but it doesn't
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; because it's in the entry block.
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; CHECK: @indbrtest4
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; CHECK-NEXT: entry:
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; CHECK-NEXT: br label %L1
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define void @indbrtest4(i1 %cond) nounwind {
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entry:
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%indirect.goto.dest = select i1 %cond, i8* blockaddress(@indbrtest4, %L1), i8* blockaddress(@indbrtest4, %L1)
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indirectbr i8* %indirect.goto.dest, [label %L1, label %L2, label %L3]
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L1:
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call void @A()
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ret void
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L2:
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call void @C()
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ret void
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L3:
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call void @foo()
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ret void
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}
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; SimplifyCFG should turn the indirectbr into an unreachable because neither
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; destination is listed as a successor.
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; CHECK: @indbrtest5
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; CHECK-NEXT: entry:
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; CHECK-NEXT: unreachable
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; CHECK-NEXT: }
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define void @indbrtest5(i1 %cond, i8* %anchor) nounwind {
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entry:
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%indirect.goto.dest = select i1 %cond, i8* blockaddress(@indbrtest5, %L1), i8* blockaddress(@indbrtest5, %L2)
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; This needs to have more than one successor for this test, otherwise it gets
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; replaced with an unconditional branch to the single successor.
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indirectbr i8* %indirect.goto.dest, [label %L3, label %L4]
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L1:
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call void @A()
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ret void
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L2:
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call void @C()
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ret void
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L3:
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call void @foo()
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ret void
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L4:
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call void @foo()
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; This keeps blockaddresses not otherwise listed as successors from being zapped
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; before SimplifyCFG even looks at the indirectbr.
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indirectbr i8* %anchor, [label %L1, label %L2]
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}
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; The same as above, except the selected addresses are equal.
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; CHECK: @indbrtest6
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; CHECK-NEXT: entry:
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; CHECK-NEXT: unreachable
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; CHECK-NEXT: }
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define void @indbrtest6(i1 %cond, i8* %anchor) nounwind {
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entry:
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%indirect.goto.dest = select i1 %cond, i8* blockaddress(@indbrtest6, %L1), i8* blockaddress(@indbrtest6, %L1)
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; This needs to have more than one successor for this test, otherwise it gets
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; replaced with an unconditional branch to the single successor.
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indirectbr i8* %indirect.goto.dest, [label %L2, label %L3]
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L1:
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call void @A()
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ret void
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L2:
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call void @C()
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ret void
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L3:
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call void @foo()
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; This keeps blockaddresses not otherwise listed as successors from being zapped
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; before SimplifyCFG even looks at the indirectbr.
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indirectbr i8* %anchor, [label %L1, label %L2]
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}
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; PR10072
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@xblkx.bbs = internal unnamed_addr constant [9 x i8*] [i8* blockaddress(@indbrtest7, %xblkx.begin), i8* blockaddress(@indbrtest7, %xblkx.begin3), i8* blockaddress(@indbrtest7, %xblkx.begin4), i8* blockaddress(@indbrtest7, %xblkx.begin5), i8* blockaddress(@indbrtest7, %xblkx.begin6), i8* blockaddress(@indbrtest7, %xblkx.begin7), i8* blockaddress(@indbrtest7, %xblkx.begin8), i8* blockaddress(@indbrtest7, %xblkx.begin9), i8* blockaddress(@indbrtest7, %xblkx.end)]
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define void @indbrtest7() {
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escape-string.top:
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%xval202x = call i32 @xfunc5x()
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br label %xlab5x
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xlab8x: ; preds = %xlab5x
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%xvaluex = call i32 @xselectorx()
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%xblkx.x = getelementptr [9 x i8*]* @xblkx.bbs, i32 0, i32 %xvaluex
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%xblkx.load = load i8** %xblkx.x
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indirectbr i8* %xblkx.load, [label %xblkx.begin, label %xblkx.begin3, label %xblkx.begin4, label %xblkx.begin5, label %xblkx.begin6, label %xblkx.begin7, label %xblkx.begin8, label %xblkx.begin9, label %xblkx.end]
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xblkx.begin:
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br label %xblkx.end
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xblkx.begin3:
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br label %xblkx.end
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xblkx.begin4:
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br label %xblkx.end
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xblkx.begin5:
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br label %xblkx.end
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xblkx.begin6:
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br label %xblkx.end
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xblkx.begin7:
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br label %xblkx.end
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xblkx.begin8:
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br label %xblkx.end
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xblkx.begin9:
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br label %xblkx.end
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xblkx.end:
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%yes.0 = phi i1 [ false, %xblkx.begin ], [ true, %xlab8x ], [ false, %xblkx.begin9 ], [ false, %xblkx.begin8 ], [ false, %xblkx.begin7 ], [ false, %xblkx.begin6 ], [ false, %xblkx.begin5 ], [ true, %xblkx.begin4 ], [ false, %xblkx.begin3 ]
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br i1 %yes.0, label %v2j, label %xlab17x
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v2j:
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; CHECK: %xunusedx = call i32 @xactionx()
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%xunusedx = call i32 @xactionx()
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br label %xlab4x
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xlab17x:
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br label %xlab4x
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xlab4x:
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%incr19 = add i32 %xval704x.0, 1
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br label %xlab5x
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xlab5x:
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%xval704x.0 = phi i32 [ 0, %escape-string.top ], [ %incr19, %xlab4x ]
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%xval10x = icmp ult i32 %xval704x.0, %xval202x
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br i1 %xval10x, label %xlab8x, label %xlab9x
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xlab9x:
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ret void
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}
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declare i32 @xfunc5x()
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declare i8 @xfunc7x()
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declare i32 @xselectorx()
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declare i32 @xactionx()
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