212 lines
7.9 KiB
LLVM
212 lines
7.9 KiB
LLVM
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; RUN: llc < %s -mtriple=ve -mattr=+vpu | FileCheck %s
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;;; Test floating divide intrinsic instructions
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;;;
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;;; Note:
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;;; We test VFDIV*vvl, VFDIV*vvl_v, VFDIV*rvl, VFDIV*rvl_v, VFDIV*vvml_v, and
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;;; VFDIV*rvml_v instructions.
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vvvl(<256 x double> %0, <256 x double> %1) {
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; CHECK-LABEL: vfdivd_vvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 256
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.d %v0, %v0, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%3 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vvvl(<256 x double> %0, <256 x double> %1, i32 256)
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ret <256 x double> %3
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vvvl(<256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vvvvl(<256 x double> %0, <256 x double> %1, <256 x double> %2) {
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; CHECK-LABEL: vfdivd_vvvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 128
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.d %v2, %v0, %v1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v2
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; CHECK-NEXT: b.l.t (, %s10)
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%4 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vvvvl(<256 x double> %0, <256 x double> %1, <256 x double> %2, i32 128)
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ret <256 x double> %4
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vvvvl(<256 x double>, <256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vsvl(double %0, <256 x double> %1) {
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; CHECK-LABEL: vfdivd_vsvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 256
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.d %v0, %s0, %v0
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; CHECK-NEXT: b.l.t (, %s10)
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%3 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vsvl(double %0, <256 x double> %1, i32 256)
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ret <256 x double> %3
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vsvl(double, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vsvvl(double %0, <256 x double> %1, <256 x double> %2) {
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; CHECK-LABEL: vfdivd_vsvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 128
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.d %v1, %s0, %v0
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%4 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vsvvl(double %0, <256 x double> %1, <256 x double> %2, i32 128)
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ret <256 x double> %4
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vsvvl(double, <256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vvvmvl(<256 x double> %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3) {
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; CHECK-LABEL: vfdivd_vvvmvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 128
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.d %v2, %v0, %v1, %vm1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v2
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; CHECK-NEXT: b.l.t (, %s10)
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%5 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vvvmvl(<256 x double> %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3, i32 128)
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ret <256 x double> %5
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vvvmvl(<256 x double>, <256 x double>, <256 x i1>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivd_vsvmvl(double %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3) {
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; CHECK-LABEL: vfdivd_vsvmvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 128
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.d %v1, %s0, %v0, %vm1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%5 = tail call fast <256 x double> @llvm.ve.vl.vfdivd.vsvmvl(double %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3, i32 128)
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ret <256 x double> %5
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivd.vsvmvl(double, <256 x double>, <256 x i1>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vvvl(<256 x double> %0, <256 x double> %1) {
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; CHECK-LABEL: vfdivs_vvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 256
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.s %v0, %v0, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%3 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vvvl(<256 x double> %0, <256 x double> %1, i32 256)
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ret <256 x double> %3
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vvvl(<256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vvvvl(<256 x double> %0, <256 x double> %1, <256 x double> %2) {
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; CHECK-LABEL: vfdivs_vvvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 128
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.s %v2, %v0, %v1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v2
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; CHECK-NEXT: b.l.t (, %s10)
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%4 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vvvvl(<256 x double> %0, <256 x double> %1, <256 x double> %2, i32 128)
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ret <256 x double> %4
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vvvvl(<256 x double>, <256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vsvl(float %0, <256 x double> %1) {
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; CHECK-LABEL: vfdivs_vsvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 256
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.s %v0, %s0, %v0
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; CHECK-NEXT: b.l.t (, %s10)
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%3 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vsvl(float %0, <256 x double> %1, i32 256)
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ret <256 x double> %3
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vsvl(float, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vsvvl(float %0, <256 x double> %1, <256 x double> %2) {
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; CHECK-LABEL: vfdivs_vsvvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 128
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.s %v1, %s0, %v0
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%4 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vsvvl(float %0, <256 x double> %1, <256 x double> %2, i32 128)
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ret <256 x double> %4
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vsvvl(float, <256 x double>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vvvmvl(<256 x double> %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3) {
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; CHECK-LABEL: vfdivs_vvvmvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s0, 128
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; CHECK-NEXT: lvl %s0
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; CHECK-NEXT: vfdiv.s %v2, %v0, %v1, %vm1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v2
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; CHECK-NEXT: b.l.t (, %s10)
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%5 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vvvmvl(<256 x double> %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3, i32 128)
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ret <256 x double> %5
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vvvmvl(<256 x double>, <256 x double>, <256 x i1>, <256 x double>, i32)
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; Function Attrs: nounwind readnone
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define fastcc <256 x double> @vfdivs_vsvmvl(float %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3) {
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; CHECK-LABEL: vfdivs_vsvmvl:
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; CHECK: # %bb.0:
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; CHECK-NEXT: lea %s1, 128
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; CHECK-NEXT: lvl %s1
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; CHECK-NEXT: vfdiv.s %v1, %s0, %v0, %vm1
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; CHECK-NEXT: lea %s16, 256
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; CHECK-NEXT: lvl %s16
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; CHECK-NEXT: vor %v0, (0)1, %v1
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; CHECK-NEXT: b.l.t (, %s10)
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%5 = tail call fast <256 x double> @llvm.ve.vl.vfdivs.vsvmvl(float %0, <256 x double> %1, <256 x i1> %2, <256 x double> %3, i32 128)
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ret <256 x double> %5
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}
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; Function Attrs: nounwind readnone
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declare <256 x double> @llvm.ve.vl.vfdivs.vsvmvl(float, <256 x double>, <256 x i1>, <256 x double>, i32)
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