1 ; RUN: opt < %s -indvars -S > %t
2 ; RUN: grep {\[%\]tmp7 = icmp eq i8 -28, -28} %t
3 ; RUN: grep {\[%\]tmp8 = icmp eq i8 63, 63} %t
6 ; Indvars should compute the exit values in loop.
8 target datalayout = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-a0:0:64-f80:32:32"
9 target triple = "i386-pc-linux-gnu"
10 %struct.cc70a02__complex_integers__complex_type = type { i8, i8 }
11 @.str = internal constant [13 x i8] c"fc70a00.adb\00\00", align 1 ; <[13 x i8]*> [#uses=1]
13 define void @_ada_cc70a02() {
17 bb1.i: ; preds = %bb2.i, %entry
18 %indvar.i = phi i32 [ 0, %entry ], [ %indvar.next.i, %bb2.i ] ; <i32> [#uses=2]
19 %result.0.i = phi i16 [ 0, %entry ], [ %ins36.i, %bb2.i ] ; <i16> [#uses=2]
20 %tmp38.i = trunc i16 %result.0.i to i8 ; <i8> [#uses=2]
21 %tmp = add i8 %tmp38.i, 96 ; <i8> [#uses=1]
22 %tmp1 = icmp ugt i8 %tmp, -56 ; <i1> [#uses=1]
23 br i1 %tmp1, label %bb.i.i, label %bb1.i.i
25 bb.i.i: ; preds = %bb1.i
26 tail call void @__gnat_rcheck_12(i8* getelementptr ([13 x i8]* @.str, i32 0, i32 0), i32 24) noreturn
29 bb1.i.i: ; preds = %bb1.i
30 %tmp41.i = lshr i16 %result.0.i, 8 ; <i16> [#uses=1]
31 %tmp42.i = trunc i16 %tmp41.i to i8 ; <i8> [#uses=2]
32 %tmp2 = add i8 %tmp42.i, 109 ; <i8> [#uses=1]
33 %tmp3 = icmp ugt i8 %tmp2, -56 ; <i1> [#uses=1]
34 br i1 %tmp3, label %bb2.i.i, label %cc70a02__complex_integers__Oadd.153.exit.i
36 bb2.i.i: ; preds = %bb1.i.i
37 tail call void @__gnat_rcheck_12(i8* getelementptr ([13 x i8]* @.str, i32 0, i32 0), i32 24) noreturn
40 cc70a02__complex_integers__Oadd.153.exit.i: ; preds = %bb1.i.i
41 %tmp4 = add i8 %tmp38.i, -4 ; <i8> [#uses=2]
42 %tmp5 = add i8 %tmp42.i, 9 ; <i8> [#uses=2]
43 %tmp25.i = zext i8 %tmp4 to i16 ; <i16> [#uses=1]
44 %tmp33.i = zext i8 %tmp5 to i16 ; <i16> [#uses=1]
45 %tmp34.i = shl i16 %tmp33.i, 8 ; <i16> [#uses=1]
46 %ins36.i = or i16 %tmp34.i, %tmp25.i ; <i16> [#uses=1]
47 %tmp6 = icmp eq i32 %indvar.i, 6 ; <i1> [#uses=1]
48 br i1 %tmp6, label %cc70a02__complex_multiplication.170.exit, label %bb2.i
50 bb2.i: ; preds = %cc70a02__complex_integers__Oadd.153.exit.i
51 %indvar.next.i = add i32 %indvar.i, 1 ; <i32> [#uses=1]
54 cc70a02__complex_multiplication.170.exit: ; preds = %cc70a02__complex_integers__Oadd.153.exit.i
55 %tmp7 = icmp eq i8 %tmp4, -28 ; <i1> [#uses=1]
56 %tmp8 = icmp eq i8 %tmp5, 63 ; <i1> [#uses=1]
57 %or.cond = and i1 %tmp8, %tmp7 ; <i1> [#uses=1]
58 br i1 %or.cond, label %return, label %bb1
60 bb1: ; preds = %cc70a02__complex_multiplication.170.exit
61 tail call void @exit(i32 1)
64 return: ; preds = %cc70a02__complex_multiplication.170.exit
68 declare fastcc void @cc70a02__complex_integers__complex.164(%struct.cc70a02__complex_integers__complex_type* noalias nocapture sret, i8 signext, i8 signext) nounwind
70 declare fastcc void @cc70a02__complex_integers__Osubtract.149(%struct.cc70a02__complex_integers__complex_type* noalias sret, %struct.cc70a02__complex_integers__complex_type* byval align 4)
72 declare fastcc void @cc70a02__complex_integers__Oadd.153(%struct.cc70a02__complex_integers__complex_type* noalias sret, %struct.cc70a02__complex_integers__complex_type* byval align 4, %struct.cc70a02__complex_integers__complex_type* byval align 4)
74 declare fastcc void @cc70a02__complex_multiplication.170(%struct.cc70a02__complex_integers__complex_type* noalias sret, %struct.cc70a02__complex_integers__complex_type* byval align 4)
76 declare void @__gnat_rcheck_12(i8*, i32) noreturn
78 declare void @exit(i32)