reference, declarationdefinition
definition → references, declarations, derived classes, virtual overrides
reference to multiple definitions → definitions
unreferenced
    1
    2
    3
    4
    5
    6
    7
    8
    9
   10
   11
   12
   13
   14
   15
   16
   17
   18
   19
   20
   21
   22
   23
   24
   25
   26
   27
   28
   29
   30
   31
   32
   33
   34
   35
   36
   37
   38
   39
   40
   41
   42
   43
   44
   45
   46
   47
   48
   49
   50
   51
   52
   53
   54
   55
   56
   57
   58
   59
   60
   61
   62
   63
   64
   65
   66
   67
   68
   69
   70
   71
   72
   73
   74
   75
   76
   77
   78
   79
   80
   81
   82
   83
   84
   85
   86
   87
   88
   89
   90
   91
   92
   93
   94
   95
   96
   97
   98
   99
  100
  101
  102
  103
  104
  105
  106
  107
  108
  109
  110
  111
  112
; RUN: opt -S -loop-vectorize < %s | FileCheck %s

target datalayout = "e-m:e-i64:64-f80:128-n8:16:32:64-S128"
target triple = "x86_64-unknown-linux-gnu"

define float @reduction_sum_float_ieee(i32 %n, float* %array) {
; CHECK-LABEL: define float @reduction_sum_float_ieee(
entry:
  %entry.cond = icmp ne i32 0, 4096
  br i1 %entry.cond, label %loop, label %loop.exit

loop:
  %idx = phi i32 [ 0, %entry ], [ %idx.inc, %loop ]
  %sum = phi float [ 0.000000e+00, %entry ], [ %sum.inc, %loop ]
  %address = getelementptr float, float* %array, i32 %idx
  %value = load float, float* %address
  %sum.inc = fadd float %sum, %value
  %idx.inc = add i32 %idx, 1
  %be.cond = icmp ne i32 %idx.inc, 4096
  br i1 %be.cond, label %loop, label %loop.exit

loop.exit:
  %sum.lcssa = phi float [ %sum.inc, %loop ], [ 0.000000e+00, %entry ]
; CHECK-NOT: %wide.load = load <4 x float>, <4 x float>*
; CHECK: ret float %sum.lcssa
  ret float %sum.lcssa
}

define float @reduction_sum_float_fastmath(i32 %n, float* %array) {
; CHECK-LABEL: define float @reduction_sum_float_fastmath(
; CHECK: fadd fast <4 x float>
; CHECK: fadd fast <4 x float>
; CHECK: fadd fast <4 x float>
; CHECK: fadd fast <4 x float>
; CHECK: fadd fast <4 x float>
entry:
  %entry.cond = icmp ne i32 0, 4096
  br i1 %entry.cond, label %loop, label %loop.exit

loop:
  %idx = phi i32 [ 0, %entry ], [ %idx.inc, %loop ]
  %sum = phi float [ 0.000000e+00, %entry ], [ %sum.inc, %loop ]
  %address = getelementptr float, float* %array, i32 %idx
  %value = load float, float* %address
  %sum.inc = fadd fast float %sum, %value
  %idx.inc = add i32 %idx, 1
  %be.cond = icmp ne i32 %idx.inc, 4096
  br i1 %be.cond, label %loop, label %loop.exit

loop.exit:
  %sum.lcssa = phi float [ %sum.inc, %loop ], [ 0.000000e+00, %entry ]
; CHECK: ret float %sum.lcssa
  ret float %sum.lcssa
}

define float @reduction_sum_float_only_reassoc(i32 %n, float* %array) {
; CHECK-LABEL: define float @reduction_sum_float_only_reassoc(
; CHECK-NOT: fadd fast
; CHECK: fadd reassoc <4 x float>
; CHECK: fadd reassoc <4 x float>
; CHECK: fadd reassoc <4 x float>
; CHECK: fadd reassoc <4 x float>
; CHECK: fadd reassoc <4 x float>

entry:
  %entry.cond = icmp ne i32 0, 4096
  br i1 %entry.cond, label %loop, label %loop.exit

loop:
  %idx = phi i32 [ 0, %entry ], [ %idx.inc, %loop ]
  %sum = phi float [ 0.000000e+00, %entry ], [ %sum.inc, %loop ]
  %address = getelementptr float, float* %array, i32 %idx
  %value = load float, float* %address
  %sum.inc = fadd reassoc float %sum, %value
  %idx.inc = add i32 %idx, 1
  %be.cond = icmp ne i32 %idx.inc, 4096
  br i1 %be.cond, label %loop, label %loop.exit

loop.exit:
  %sum.lcssa = phi float [ %sum.inc, %loop ], [ 0.000000e+00, %entry ]
; CHECK: ret float %sum.lcssa
  ret float %sum.lcssa
}

define float @reduction_sum_float_only_reassoc_and_contract(i32 %n, float* %array) {
; CHECK-LABEL: define float @reduction_sum_float_only_reassoc_and_contract(
; CHECK-NOT: fadd fast
; CHECK: fadd reassoc contract <4 x float>
; CHECK: fadd reassoc contract <4 x float>
; CHECK: fadd reassoc contract <4 x float>
; CHECK: fadd reassoc contract <4 x float>
; CHECK: fadd reassoc contract <4 x float>

entry:
  %entry.cond = icmp ne i32 0, 4096
  br i1 %entry.cond, label %loop, label %loop.exit

loop:
  %idx = phi i32 [ 0, %entry ], [ %idx.inc, %loop ]
  %sum = phi float [ 0.000000e+00, %entry ], [ %sum.inc, %loop ]
  %address = getelementptr float, float* %array, i32 %idx
  %value = load float, float* %address
  %sum.inc = fadd reassoc contract float %sum, %value
  %idx.inc = add i32 %idx, 1
  %be.cond = icmp ne i32 %idx.inc, 4096
  br i1 %be.cond, label %loop, label %loop.exit

loop.exit:
  %sum.lcssa = phi float [ %sum.inc, %loop ], [ 0.000000e+00, %entry ]
; CHECK: ret float %sum.lcssa
  ret float %sum.lcssa
}