File: hvx-dual-output.ll

package info (click to toggle)
swiftlang 6.0.3-2
  • links: PTS, VCS
  • area: main
  • in suites: forky, sid, trixie
  • size: 2,519,992 kB
  • sloc: cpp: 9,107,863; ansic: 2,040,022; asm: 1,135,751; python: 296,500; objc: 82,456; f90: 60,502; lisp: 34,951; pascal: 19,946; sh: 18,133; perl: 7,482; ml: 4,937; javascript: 4,117; makefile: 3,840; awk: 3,535; xml: 914; fortran: 619; cs: 573; ruby: 573
file content (84 lines) | stat: -rw-r--r-- 3,062 bytes parent folder | download | duplicates (8)
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
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
; RUN: llc -march=hexagon < %s | FileCheck %s

; Test that we compile the HVX dual output intrinsics.

define inreg <16 x i32> @f0(<16 x i32> %a0, <16 x i32> %a1, ptr %a2) #0 {
; CHECK-LABEL: f0:
; CHECK:       // %bb.0: // %b0
; CHECK-NEXT:    {
; CHECK-NEXT:     r1 = #-1
; CHECK-NEXT:     v2 = vmem(r0+#0)
; CHECK-NEXT:    }
; CHECK-NEXT:    {
; CHECK-NEXT:     q0 = vand(v2,r1)
; CHECK-NEXT:    }
; CHECK-NEXT:    {
; CHECK-NEXT:     v0.w = vadd(v0.w,v1.w,q0):carry
; CHECK-NEXT:     jumpr r31
; CHECK-NEXT:    }
b0:
  %v0 = load <16 x i32>, ptr %a2, align 64
  %v1 = tail call <64 x i1> @llvm.hexagon.V6.vandvrt(<16 x i32> %v0, i32 -1)
  %v2 = tail call { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vaddcarry(<16 x i32> %a0, <16 x i32> %a1, <64 x i1> %v1)
  %v3 = extractvalue { <16 x i32>, <64 x i1> } %v2, 0
  ret <16 x i32> %v3
}

define inreg <16 x i32> @f1(<16 x i32> %a0, <16 x i32> %a1, ptr %a2) #0 {
; CHECK-LABEL: f1:
; CHECK:       // %bb.0: // %b0
; CHECK-NEXT:    {
; CHECK-NEXT:     r1 = #-1
; CHECK-NEXT:     v2 = vmem(r0+#0)
; CHECK-NEXT:    }
; CHECK-NEXT:    {
; CHECK-NEXT:     q0 = vand(v2,r1)
; CHECK-NEXT:    }
; CHECK-NEXT:    {
; CHECK-NEXT:     v0.w = vsub(v0.w,v1.w,q0):carry
; CHECK-NEXT:     jumpr r31
; CHECK-NEXT:    }
b0:
  %v0 = load <16 x i32>, ptr %a2, align 64
  %v1 = tail call <64 x i1> @llvm.hexagon.V6.vandvrt(<16 x i32> %v0, i32 -1)
  %v2 = tail call { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vsubcarry(<16 x i32> %a0, <16 x i32> %a1, <64 x i1> %v1)
  %v3 = extractvalue { <16 x i32>, <64 x i1> } %v2, 0
  ret <16 x i32> %v3
}

define inreg <16 x i32> @f2(<16 x i32> %a0, <16 x i32> %a1) #0 {
; CHECK-LABEL: f2:
; CHECK:       // %bb.0: // %b0
; CHECK-NEXT:    {
; CHECK-NEXT:     v0.w,q0 = vadd(v0.w,v1.w):carry
; CHECK-NEXT:     jumpr r31
; CHECK-NEXT:    }
b0:
  %v0 = tail call { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vaddcarryo(<16 x i32> %a0, <16 x i32> %a1)
  %v1 = extractvalue { <16 x i32>, <64 x i1> } %v0, 0
  ret <16 x i32> %v1
}

define inreg <16 x i32> @f3(<16 x i32> %a0, <16 x i32> %a1) #0 {
; CHECK-LABEL: f3:
; CHECK:       // %bb.0: // %b0
; CHECK-NEXT:    {
; CHECK-NEXT:     v0.w,q0 = vsub(v0.w,v1.w):carry
; CHECK-NEXT:     jumpr r31
; CHECK-NEXT:    }
b0:
  %v0 = tail call { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vsubcarryo(<16 x i32> %a0, <16 x i32> %a1)
  %v1 = extractvalue { <16 x i32>, <64 x i1> } %v0, 0
  ret <16 x i32> %v1
}

declare { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vaddcarry(<16 x i32>, <16 x i32>, <64 x i1>) #1
declare { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vsubcarry(<16 x i32>, <16 x i32>, <64 x i1>) #1
declare { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vaddcarryo(<16 x i32>, <16 x i32>) #1
declare { <16 x i32>, <64 x i1> } @llvm.hexagon.V6.vsubcarryo(<16 x i32>, <16 x i32>) #1

declare <64 x i1> @llvm.hexagon.V6.vandvrt(<16 x i32>, i32) #1

attributes #0 = { nounwind "target-cpu"="hexagonv66" "target-features"="+hvxv66,+hvx-length64b" }
attributes #1 = { nounwind readnone }