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      1 ; RUN: opt < %s -analyze -scalar-evolution | FileCheck %s
      2 
      3 ; ScalarEvolution should be able to understand the loop and eliminate the casts.
      4 
      5 ; CHECK: {%d,+,sizeof(i32)}
      6 
      7 define void @foo(i32* nocapture %d, i32 %n) nounwind {
      8 entry:
      9 	%0 = icmp sgt i32 %n, 0		; <i1> [#uses=1]
     10 	br i1 %0, label %bb.nph, label %return
     11 
     12 bb.nph:		; preds = %entry
     13 	br label %bb
     14 
     15 bb:		; preds = %bb1, %bb.nph
     16 	%i.02 = phi i32 [ %5, %bb1 ], [ 0, %bb.nph ]		; <i32> [#uses=2]
     17 	%p.01 = phi i8 [ %4, %bb1 ], [ -1, %bb.nph ]		; <i8> [#uses=2]
     18 	%1 = sext i8 %p.01 to i32		; <i32> [#uses=1]
     19 	%2 = sext i32 %i.02 to i64		; <i64> [#uses=1]
     20 	%3 = getelementptr i32* %d, i64 %2		; <i32*> [#uses=1]
     21 	store i32 %1, i32* %3, align 4
     22 	%4 = add i8 %p.01, 1		; <i8> [#uses=1]
     23 	%5 = add i32 %i.02, 1		; <i32> [#uses=2]
     24 	br label %bb1
     25 
     26 bb1:		; preds = %bb
     27 	%6 = icmp slt i32 %5, %n		; <i1> [#uses=1]
     28 	br i1 %6, label %bb, label %bb1.return_crit_edge
     29 
     30 bb1.return_crit_edge:		; preds = %bb1
     31 	br label %return
     32 
     33 return:		; preds = %bb1.return_crit_edge, %entry
     34 	ret void
     35 }
     36 
     37 ; ScalarEvolution should be able to find the maximum tripcount
     38 ; of this multiple-exit loop, and if it doesn't know the exact
     39 ; count, it should say so.
     40 
     41 ; PR7845
     42 ; CHECK: Loop %for.cond: <multiple exits> Unpredictable backedge-taken count. 
     43 ; CHECK: Loop %for.cond: max backedge-taken count is 5
     44 
     45 @.str = private constant [4 x i8] c"%d\0A\00"     ; <[4 x i8]*> [#uses=2]
     46 
     47 define i32 @main() nounwind {
     48 entry:
     49   br label %for.cond
     50 
     51 for.cond:                                         ; preds = %for.inc, %entry
     52   %g_4.0 = phi i32 [ 0, %entry ], [ %add, %for.inc ] ; <i32> [#uses=5]
     53   %cmp = icmp slt i32 %g_4.0, 5                   ; <i1> [#uses=1]
     54   br i1 %cmp, label %for.body, label %for.end
     55 
     56 for.body:                                         ; preds = %for.cond
     57   %conv = trunc i32 %g_4.0 to i16                 ; <i16> [#uses=1]
     58   %tobool.not = icmp eq i16 %conv, 0              ; <i1> [#uses=1]
     59   %tobool3 = icmp ne i32 %g_4.0, 0                ; <i1> [#uses=1]
     60   %or.cond = and i1 %tobool.not, %tobool3         ; <i1> [#uses=1]
     61   br i1 %or.cond, label %for.end, label %for.inc
     62 
     63 for.inc:                                          ; preds = %for.body
     64   %add = add nsw i32 %g_4.0, 1                    ; <i32> [#uses=1]
     65   br label %for.cond
     66 
     67 for.end:                                          ; preds = %for.body, %for.cond
     68   %call = call i32 (i8*, ...)* @printf(i8* getelementptr inbounds ([4 x i8]* @.str, i64 0, i64 0), i32 %g_4.0) nounwind ; <i32> [#uses=0]
     69   ret i32 0
     70 }
     71 
     72 declare i32 @printf(i8*, ...)
     73 
     74 define void @test(i8* %a, i32 %n) nounwind {
     75 entry:
     76   %cmp1 = icmp sgt i32 %n, 0
     77   br i1 %cmp1, label %for.body.lr.ph, label %for.end
     78 
     79 for.body.lr.ph:                                   ; preds = %entry
     80   %tmp = zext i32 %n to i64
     81   br label %for.body
     82 
     83 for.body:                                         ; preds = %for.body, %for.body.lr.ph
     84   %indvar = phi i64 [ %indvar.next, %for.body ], [ 0, %for.body.lr.ph ]
     85   %arrayidx = getelementptr i8* %a, i64 %indvar
     86   store i8 0, i8* %arrayidx, align 1
     87   %indvar.next = add i64 %indvar, 1
     88   %exitcond = icmp ne i64 %indvar.next, %tmp
     89   br i1 %exitcond, label %for.body, label %for.cond.for.end_crit_edge
     90 
     91 for.cond.for.end_crit_edge:                       ; preds = %for.body
     92   br label %for.end
     93 
     94 for.end:                                          ; preds = %for.cond.for.end_crit_edge, %entry
     95   ret void
     96 }
     97 
     98 ; CHECK: Determining loop execution counts for: @test
     99 ; CHECK-NEXT: backedge-taken count is
    100 ; CHECK-NEXT: max backedge-taken count is -1
    101