2009-10-11 03:54:21 +00:00
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; RUN: opt < %s -jump-threading -S | FileCheck %s
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2008-04-22 06:35:14 +00:00
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declare i32 @f1()
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declare i32 @f2()
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declare void @f3()
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2009-10-11 03:55:30 +00:00
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define i32 @test1(i1 %cond) {
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; CHECK: @test1
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2008-04-22 06:35:14 +00:00
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br i1 %cond, label %T1, label %F1
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T1:
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%v1 = call i32 @f1()
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br label %Merge
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F1:
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%v2 = call i32 @f2()
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br label %Merge
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Merge:
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%A = phi i1 [true, %T1], [false, %F1]
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%B = phi i32 [%v1, %T1], [%v2, %F1]
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br i1 %A, label %T2, label %F2
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T2:
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2009-10-11 03:54:21 +00:00
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; CHECK: T2:
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; CHECK: ret i32 %v1
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2008-04-22 06:35:14 +00:00
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call void @f3()
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ret i32 %B
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F2:
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2009-10-11 03:54:21 +00:00
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; CHECK: F2:
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; CHECK: ret i32 %v2
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2008-04-22 06:35:14 +00:00
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ret i32 %B
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}
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2008-12-03 07:48:08 +00:00
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;; cond is known false on Entry -> F1 edge!
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define i32 @test2(i1 %cond) {
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2009-10-11 03:55:30 +00:00
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; CHECK: @test2
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2008-12-03 07:48:08 +00:00
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Entry:
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br i1 %cond, label %T1, label %F1
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T1:
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2009-10-11 03:54:21 +00:00
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; CHECK: %v1 = call i32 @f1()
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; CHECK: ret i32 47
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2008-12-03 07:48:08 +00:00
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%v1 = call i32 @f1()
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br label %Merge
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F1:
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br i1 %cond, label %Merge, label %F2
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Merge:
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%B = phi i32 [47, %T1], [192, %F1]
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ret i32 %B
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F2:
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call void @f3()
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ret i32 12
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}
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2009-10-11 03:55:30 +00:00
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; Undef handling.
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define i32 @test3(i1 %cond) {
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; CHECK: @test3
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; CHECK-NEXT: T1:
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; CHECK-NEXT: ret i32 42
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br i1 undef, label %T1, label %F1
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T1:
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ret i32 42
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F1:
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ret i32 17
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}
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2009-10-11 04:18:15 +00:00
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define i32 @test4(i1 %cond, i1 %cond2) {
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; CHECK: @test4
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br i1 %cond, label %T1, label %F1
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T1:
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; CHECK: %v1 = call i32 @f1()
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; CHECK-NEXT: br label %T
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%v1 = call i32 @f1()
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br label %Merge
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F1:
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%v2 = call i32 @f2()
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; CHECK: %v2 = call i32 @f2()
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; CHECK-NEXT: br i1 %cond2,
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br label %Merge
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Merge:
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%A = phi i1 [undef, %T1], [%cond2, %F1]
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%B = phi i32 [%v1, %T1], [%v2, %F1]
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br i1 %A, label %T2, label %F2
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T2:
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call void @f3()
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ret i32 %B
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F2:
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ret i32 %B
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}
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2009-10-11 07:24:57 +00:00
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;; This tests that the branch in 'merge' can be cloned up into T1.
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define i32 @test5(i1 %cond, i1 %cond2) {
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; CHECK: @test5
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br i1 %cond, label %T1, label %F1
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T1:
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; CHECK: T1:
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; CHECK-NEXT: %v1 = call i32 @f1()
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; CHECK-NEXT: %cond3 = icmp eq i32 %v1, 412
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; CHECK-NEXT: br i1 %cond3, label %T2, label %F2
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%v1 = call i32 @f1()
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%cond3 = icmp eq i32 %v1, 412
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br label %Merge
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F1:
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%v2 = call i32 @f2()
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br label %Merge
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Merge:
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%A = phi i1 [%cond3, %T1], [%cond2, %F1]
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%B = phi i32 [%v1, %T1], [%v2, %F1]
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br i1 %A, label %T2, label %F2
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T2:
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call void @f3()
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ret i32 %B
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F2:
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ret i32 %B
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}
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2009-10-11 18:39:58 +00:00
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;; Lexically duplicated conditionals should be threaded.
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define i32 @test6(i32 %A) {
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; CHECK: @test6
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%tmp455 = icmp eq i32 %A, 42
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br i1 %tmp455, label %BB1, label %BB2
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BB2:
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; CHECK: call i32 @f1()
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; CHECK-NEXT: call void @f3()
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; CHECK-NEXT: ret i32 4
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call i32 @f1()
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br label %BB1
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BB1:
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%tmp459 = icmp eq i32 %A, 42
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br i1 %tmp459, label %BB3, label %BB4
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BB3:
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call i32 @f2()
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ret i32 3
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BB4:
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call void @f3()
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ret i32 4
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}
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2009-11-07 08:05:03 +00:00
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;; This tests that the branch in 'merge' can be cloned up into T1.
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;; rdar://7367025
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define i32 @test7(i1 %cond, i1 %cond2) {
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Entry:
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; CHECK: @test7
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%v1 = call i32 @f1()
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br i1 %cond, label %Merge, label %F1
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F1:
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%v2 = call i32 @f2()
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br label %Merge
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Merge:
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%B = phi i32 [%v1, %Entry], [%v2, %F1]
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%M = icmp ne i32 %B, %v1
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%N = icmp eq i32 %B, 47
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%O = and i1 %M, %N
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br i1 %O, label %T2, label %F2
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2009-10-11 18:39:58 +00:00
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2009-11-07 08:05:03 +00:00
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; CHECK: Merge:
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; CHECK-NOT: phi
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; CHECK-NEXT: %v2 = call i32 @f2()
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T2:
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call void @f3()
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ret i32 %B
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F2:
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ret i32 %B
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; CHECK: F2:
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; CHECK-NEXT: phi i32
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}
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2009-10-11 18:39:58 +00:00
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2009-11-10 01:57:31 +00:00
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declare i1 @test8a()
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define i32 @test8b(i1 %cond, i1 %cond2) {
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; CHECK: @test8b
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T0:
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%A = call i1 @test8a()
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br i1 %A, label %T1, label %F1
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2009-11-10 21:40:01 +00:00
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; CHECK: T0:
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; CHECK-NEXT: call
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; CHECK-NEXT: br i1 %A, label %T1, label %Y
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2009-11-10 01:57:31 +00:00
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T1:
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%B = call i1 @test8a()
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br i1 %B, label %T2, label %F1
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2009-11-10 21:40:01 +00:00
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; CHECK: T1:
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; CHECK-NEXT: call
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; CHECK-NEXT: br i1 %B, label %T2, label %Y
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2009-11-10 01:57:31 +00:00
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T2:
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%C = call i1 @test8a()
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br i1 %cond, label %T3, label %F1
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2009-11-10 21:40:01 +00:00
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; CHECK: T2:
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; CHECK-NEXT: call
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; CHECK-NEXT: br i1 %cond, label %T3, label %Y
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2009-11-10 01:57:31 +00:00
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T3:
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ret i32 0
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F1:
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%D = phi i32 [0, %T0], [0, %T1], [1, %T2]
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%E = icmp eq i32 %D, 1
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%F = and i1 %E, %cond
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br i1 %F, label %X, label %Y
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X:
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call i1 @test8a()
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ret i32 1
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Y:
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ret i32 2
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}
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2009-11-10 22:39:16 +00:00
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;;; Verify that we can handle constraint propagation through "xor x, 1".
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define i32 @test9(i1 %cond, i1 %cond2) {
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Entry:
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; CHECK: @test9
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%v1 = call i32 @f1()
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br i1 %cond, label %Merge, label %F1
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; CHECK: Entry:
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; CHECK-NEXT: %v1 = call i32 @f1()
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; CHECK-NEXT: br i1 %cond, label %F2, label %Merge
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F1:
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%v2 = call i32 @f2()
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br label %Merge
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Merge:
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%B = phi i32 [%v1, %Entry], [%v2, %F1]
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%M = icmp eq i32 %B, %v1
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%M1 = xor i1 %M, 1
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%N = icmp eq i32 %B, 47
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%O = and i1 %M1, %N
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br i1 %O, label %T2, label %F2
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; CHECK: Merge:
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; CHECK-NOT: phi
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; CHECK-NEXT: %v2 = call i32 @f2()
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T2:
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%Q = zext i1 %M to i32
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ret i32 %Q
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F2:
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ret i32 %B
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; CHECK: F2:
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; CHECK-NEXT: phi i32
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}
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2009-11-11 00:22:30 +00:00
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;;; Duplicate condition to avoid xor of cond.
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define i32 @test10(i1 %cond, i1 %cond2) {
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Entry:
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; CHECK: @test10
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%v1 = call i32 @f1()
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br i1 %cond, label %Merge, label %F1
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F1:
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br label %Merge
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Merge:
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%B = phi i1 [true, %Entry], [%cond2, %F1]
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%M = icmp eq i32 %v1, 192
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%N = xor i1 %B, %M
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br i1 %N, label %T2, label %F2
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T2:
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ret i32 123
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F2:
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ret i32 %v1
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}
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