blob: 823051704c33d4388efa663926ed6ee35e5c2c31 [file] [log] [blame]
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
; RUN: sed 's/iXLen/i32/g' %s | llc -mtriple=riscv32 -mattr=+v,+zfh,+experimental-zvfh \
; RUN: -verify-machineinstrs -target-abi=ilp32d | FileCheck %s
; RUN: sed 's/iXLen/i64/g' %s | llc -mtriple=riscv64 -mattr=+v,+zfh,+experimental-zvfh \
; RUN: -verify-machineinstrs -target-abi=lp64d | FileCheck %s
declare <vscale x 1 x half> @llvm.riscv.vfsqrt.nxv1f16(
<vscale x 1 x half>,
<vscale x 1 x half>,
iXLen);
define <vscale x 1 x half> @intrinsic_vfsqrt_v_nxv1f16_nxv1f16(<vscale x 1 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv1f16_nxv1f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, mf4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x half> @llvm.riscv.vfsqrt.nxv1f16(
<vscale x 1 x half> undef,
<vscale x 1 x half> %0,
iXLen %1)
ret <vscale x 1 x half> %a
}
declare <vscale x 1 x half> @llvm.riscv.vfsqrt.mask.nxv1f16(
<vscale x 1 x half>,
<vscale x 1 x half>,
<vscale x 1 x i1>,
iXLen,
iXLen);
define <vscale x 1 x half> @intrinsic_vfsqrt_mask_v_nxv1f16_nxv1f16(<vscale x 1 x half> %0, <vscale x 1 x half> %1, <vscale x 1 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv1f16_nxv1f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, mf4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x half> @llvm.riscv.vfsqrt.mask.nxv1f16(
<vscale x 1 x half> %0,
<vscale x 1 x half> %1,
<vscale x 1 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 1 x half> %a
}
declare <vscale x 2 x half> @llvm.riscv.vfsqrt.nxv2f16(
<vscale x 2 x half>,
<vscale x 2 x half>,
iXLen);
define <vscale x 2 x half> @intrinsic_vfsqrt_v_nxv2f16_nxv2f16(<vscale x 2 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv2f16_nxv2f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, mf2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x half> @llvm.riscv.vfsqrt.nxv2f16(
<vscale x 2 x half> undef,
<vscale x 2 x half> %0,
iXLen %1)
ret <vscale x 2 x half> %a
}
declare <vscale x 2 x half> @llvm.riscv.vfsqrt.mask.nxv2f16(
<vscale x 2 x half>,
<vscale x 2 x half>,
<vscale x 2 x i1>,
iXLen,
iXLen);
define <vscale x 2 x half> @intrinsic_vfsqrt_mask_v_nxv2f16_nxv2f16(<vscale x 2 x half> %0, <vscale x 2 x half> %1, <vscale x 2 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv2f16_nxv2f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, mf2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x half> @llvm.riscv.vfsqrt.mask.nxv2f16(
<vscale x 2 x half> %0,
<vscale x 2 x half> %1,
<vscale x 2 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 2 x half> %a
}
declare <vscale x 4 x half> @llvm.riscv.vfsqrt.nxv4f16(
<vscale x 4 x half>,
<vscale x 4 x half>,
iXLen);
define <vscale x 4 x half> @intrinsic_vfsqrt_v_nxv4f16_nxv4f16(<vscale x 4 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv4f16_nxv4f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x half> @llvm.riscv.vfsqrt.nxv4f16(
<vscale x 4 x half> undef,
<vscale x 4 x half> %0,
iXLen %1)
ret <vscale x 4 x half> %a
}
declare <vscale x 4 x half> @llvm.riscv.vfsqrt.mask.nxv4f16(
<vscale x 4 x half>,
<vscale x 4 x half>,
<vscale x 4 x i1>,
iXLen,
iXLen);
define <vscale x 4 x half> @intrinsic_vfsqrt_mask_v_nxv4f16_nxv4f16(<vscale x 4 x half> %0, <vscale x 4 x half> %1, <vscale x 4 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv4f16_nxv4f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x half> @llvm.riscv.vfsqrt.mask.nxv4f16(
<vscale x 4 x half> %0,
<vscale x 4 x half> %1,
<vscale x 4 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 4 x half> %a
}
declare <vscale x 8 x half> @llvm.riscv.vfsqrt.nxv8f16(
<vscale x 8 x half>,
<vscale x 8 x half>,
iXLen);
define <vscale x 8 x half> @intrinsic_vfsqrt_v_nxv8f16_nxv8f16(<vscale x 8 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv8f16_nxv8f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x half> @llvm.riscv.vfsqrt.nxv8f16(
<vscale x 8 x half> undef,
<vscale x 8 x half> %0,
iXLen %1)
ret <vscale x 8 x half> %a
}
declare <vscale x 8 x half> @llvm.riscv.vfsqrt.mask.nxv8f16(
<vscale x 8 x half>,
<vscale x 8 x half>,
<vscale x 8 x i1>,
iXLen,
iXLen);
define <vscale x 8 x half> @intrinsic_vfsqrt_mask_v_nxv8f16_nxv8f16(<vscale x 8 x half> %0, <vscale x 8 x half> %1, <vscale x 8 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv8f16_nxv8f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v10, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x half> @llvm.riscv.vfsqrt.mask.nxv8f16(
<vscale x 8 x half> %0,
<vscale x 8 x half> %1,
<vscale x 8 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 8 x half> %a
}
declare <vscale x 16 x half> @llvm.riscv.vfsqrt.nxv16f16(
<vscale x 16 x half>,
<vscale x 16 x half>,
iXLen);
define <vscale x 16 x half> @intrinsic_vfsqrt_v_nxv16f16_nxv16f16(<vscale x 16 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv16f16_nxv16f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 16 x half> @llvm.riscv.vfsqrt.nxv16f16(
<vscale x 16 x half> undef,
<vscale x 16 x half> %0,
iXLen %1)
ret <vscale x 16 x half> %a
}
declare <vscale x 16 x half> @llvm.riscv.vfsqrt.mask.nxv16f16(
<vscale x 16 x half>,
<vscale x 16 x half>,
<vscale x 16 x i1>,
iXLen,
iXLen);
define <vscale x 16 x half> @intrinsic_vfsqrt_mask_v_nxv16f16_nxv16f16(<vscale x 16 x half> %0, <vscale x 16 x half> %1, <vscale x 16 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv16f16_nxv16f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v12, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 16 x half> @llvm.riscv.vfsqrt.mask.nxv16f16(
<vscale x 16 x half> %0,
<vscale x 16 x half> %1,
<vscale x 16 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 16 x half> %a
}
declare <vscale x 32 x half> @llvm.riscv.vfsqrt.nxv32f16(
<vscale x 32 x half>,
<vscale x 32 x half>,
iXLen);
define <vscale x 32 x half> @intrinsic_vfsqrt_v_nxv32f16_nxv32f16(<vscale x 32 x half> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv32f16_nxv32f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 32 x half> @llvm.riscv.vfsqrt.nxv32f16(
<vscale x 32 x half> undef,
<vscale x 32 x half> %0,
iXLen %1)
ret <vscale x 32 x half> %a
}
declare <vscale x 32 x half> @llvm.riscv.vfsqrt.mask.nxv32f16(
<vscale x 32 x half>,
<vscale x 32 x half>,
<vscale x 32 x i1>,
iXLen,
iXLen);
define <vscale x 32 x half> @intrinsic_vfsqrt_mask_v_nxv32f16_nxv32f16(<vscale x 32 x half> %0, <vscale x 32 x half> %1, <vscale x 32 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv32f16_nxv32f16:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e16, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v16, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 32 x half> @llvm.riscv.vfsqrt.mask.nxv32f16(
<vscale x 32 x half> %0,
<vscale x 32 x half> %1,
<vscale x 32 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 32 x half> %a
}
declare <vscale x 1 x float> @llvm.riscv.vfsqrt.nxv1f32(
<vscale x 1 x float>,
<vscale x 1 x float>,
iXLen);
define <vscale x 1 x float> @intrinsic_vfsqrt_v_nxv1f32_nxv1f32(<vscale x 1 x float> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv1f32_nxv1f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, mf2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x float> @llvm.riscv.vfsqrt.nxv1f32(
<vscale x 1 x float> undef,
<vscale x 1 x float> %0,
iXLen %1)
ret <vscale x 1 x float> %a
}
declare <vscale x 1 x float> @llvm.riscv.vfsqrt.mask.nxv1f32(
<vscale x 1 x float>,
<vscale x 1 x float>,
<vscale x 1 x i1>,
iXLen,
iXLen);
define <vscale x 1 x float> @intrinsic_vfsqrt_mask_v_nxv1f32_nxv1f32(<vscale x 1 x float> %0, <vscale x 1 x float> %1, <vscale x 1 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv1f32_nxv1f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, mf2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x float> @llvm.riscv.vfsqrt.mask.nxv1f32(
<vscale x 1 x float> %0,
<vscale x 1 x float> %1,
<vscale x 1 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 1 x float> %a
}
declare <vscale x 2 x float> @llvm.riscv.vfsqrt.nxv2f32(
<vscale x 2 x float>,
<vscale x 2 x float>,
iXLen);
define <vscale x 2 x float> @intrinsic_vfsqrt_v_nxv2f32_nxv2f32(<vscale x 2 x float> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv2f32_nxv2f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x float> @llvm.riscv.vfsqrt.nxv2f32(
<vscale x 2 x float> undef,
<vscale x 2 x float> %0,
iXLen %1)
ret <vscale x 2 x float> %a
}
declare <vscale x 2 x float> @llvm.riscv.vfsqrt.mask.nxv2f32(
<vscale x 2 x float>,
<vscale x 2 x float>,
<vscale x 2 x i1>,
iXLen,
iXLen);
define <vscale x 2 x float> @intrinsic_vfsqrt_mask_v_nxv2f32_nxv2f32(<vscale x 2 x float> %0, <vscale x 2 x float> %1, <vscale x 2 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv2f32_nxv2f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x float> @llvm.riscv.vfsqrt.mask.nxv2f32(
<vscale x 2 x float> %0,
<vscale x 2 x float> %1,
<vscale x 2 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 2 x float> %a
}
declare <vscale x 4 x float> @llvm.riscv.vfsqrt.nxv4f32(
<vscale x 4 x float>,
<vscale x 4 x float>,
iXLen);
define <vscale x 4 x float> @intrinsic_vfsqrt_v_nxv4f32_nxv4f32(<vscale x 4 x float> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv4f32_nxv4f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x float> @llvm.riscv.vfsqrt.nxv4f32(
<vscale x 4 x float> undef,
<vscale x 4 x float> %0,
iXLen %1)
ret <vscale x 4 x float> %a
}
declare <vscale x 4 x float> @llvm.riscv.vfsqrt.mask.nxv4f32(
<vscale x 4 x float>,
<vscale x 4 x float>,
<vscale x 4 x i1>,
iXLen,
iXLen);
define <vscale x 4 x float> @intrinsic_vfsqrt_mask_v_nxv4f32_nxv4f32(<vscale x 4 x float> %0, <vscale x 4 x float> %1, <vscale x 4 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv4f32_nxv4f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v10, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x float> @llvm.riscv.vfsqrt.mask.nxv4f32(
<vscale x 4 x float> %0,
<vscale x 4 x float> %1,
<vscale x 4 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 4 x float> %a
}
declare <vscale x 8 x float> @llvm.riscv.vfsqrt.nxv8f32(
<vscale x 8 x float>,
<vscale x 8 x float>,
iXLen);
define <vscale x 8 x float> @intrinsic_vfsqrt_v_nxv8f32_nxv8f32(<vscale x 8 x float> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv8f32_nxv8f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x float> @llvm.riscv.vfsqrt.nxv8f32(
<vscale x 8 x float> undef,
<vscale x 8 x float> %0,
iXLen %1)
ret <vscale x 8 x float> %a
}
declare <vscale x 8 x float> @llvm.riscv.vfsqrt.mask.nxv8f32(
<vscale x 8 x float>,
<vscale x 8 x float>,
<vscale x 8 x i1>,
iXLen,
iXLen);
define <vscale x 8 x float> @intrinsic_vfsqrt_mask_v_nxv8f32_nxv8f32(<vscale x 8 x float> %0, <vscale x 8 x float> %1, <vscale x 8 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv8f32_nxv8f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v12, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x float> @llvm.riscv.vfsqrt.mask.nxv8f32(
<vscale x 8 x float> %0,
<vscale x 8 x float> %1,
<vscale x 8 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 8 x float> %a
}
declare <vscale x 16 x float> @llvm.riscv.vfsqrt.nxv16f32(
<vscale x 16 x float>,
<vscale x 16 x float>,
iXLen);
define <vscale x 16 x float> @intrinsic_vfsqrt_v_nxv16f32_nxv16f32(<vscale x 16 x float> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv16f32_nxv16f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 16 x float> @llvm.riscv.vfsqrt.nxv16f32(
<vscale x 16 x float> undef,
<vscale x 16 x float> %0,
iXLen %1)
ret <vscale x 16 x float> %a
}
declare <vscale x 16 x float> @llvm.riscv.vfsqrt.mask.nxv16f32(
<vscale x 16 x float>,
<vscale x 16 x float>,
<vscale x 16 x i1>,
iXLen,
iXLen);
define <vscale x 16 x float> @intrinsic_vfsqrt_mask_v_nxv16f32_nxv16f32(<vscale x 16 x float> %0, <vscale x 16 x float> %1, <vscale x 16 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv16f32_nxv16f32:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e32, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v16, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 16 x float> @llvm.riscv.vfsqrt.mask.nxv16f32(
<vscale x 16 x float> %0,
<vscale x 16 x float> %1,
<vscale x 16 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 16 x float> %a
}
declare <vscale x 1 x double> @llvm.riscv.vfsqrt.nxv1f64(
<vscale x 1 x double>,
<vscale x 1 x double>,
iXLen);
define <vscale x 1 x double> @intrinsic_vfsqrt_v_nxv1f64_nxv1f64(<vscale x 1 x double> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv1f64_nxv1f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x double> @llvm.riscv.vfsqrt.nxv1f64(
<vscale x 1 x double> undef,
<vscale x 1 x double> %0,
iXLen %1)
ret <vscale x 1 x double> %a
}
declare <vscale x 1 x double> @llvm.riscv.vfsqrt.mask.nxv1f64(
<vscale x 1 x double>,
<vscale x 1 x double>,
<vscale x 1 x i1>,
iXLen,
iXLen);
define <vscale x 1 x double> @intrinsic_vfsqrt_mask_v_nxv1f64_nxv1f64(<vscale x 1 x double> %0, <vscale x 1 x double> %1, <vscale x 1 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv1f64_nxv1f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m1, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v9, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 1 x double> @llvm.riscv.vfsqrt.mask.nxv1f64(
<vscale x 1 x double> %0,
<vscale x 1 x double> %1,
<vscale x 1 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 1 x double> %a
}
declare <vscale x 2 x double> @llvm.riscv.vfsqrt.nxv2f64(
<vscale x 2 x double>,
<vscale x 2 x double>,
iXLen);
define <vscale x 2 x double> @intrinsic_vfsqrt_v_nxv2f64_nxv2f64(<vscale x 2 x double> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv2f64_nxv2f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x double> @llvm.riscv.vfsqrt.nxv2f64(
<vscale x 2 x double> undef,
<vscale x 2 x double> %0,
iXLen %1)
ret <vscale x 2 x double> %a
}
declare <vscale x 2 x double> @llvm.riscv.vfsqrt.mask.nxv2f64(
<vscale x 2 x double>,
<vscale x 2 x double>,
<vscale x 2 x i1>,
iXLen,
iXLen);
define <vscale x 2 x double> @intrinsic_vfsqrt_mask_v_nxv2f64_nxv2f64(<vscale x 2 x double> %0, <vscale x 2 x double> %1, <vscale x 2 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv2f64_nxv2f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m2, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v10, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 2 x double> @llvm.riscv.vfsqrt.mask.nxv2f64(
<vscale x 2 x double> %0,
<vscale x 2 x double> %1,
<vscale x 2 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 2 x double> %a
}
declare <vscale x 4 x double> @llvm.riscv.vfsqrt.nxv4f64(
<vscale x 4 x double>,
<vscale x 4 x double>,
iXLen);
define <vscale x 4 x double> @intrinsic_vfsqrt_v_nxv4f64_nxv4f64(<vscale x 4 x double> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv4f64_nxv4f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x double> @llvm.riscv.vfsqrt.nxv4f64(
<vscale x 4 x double> undef,
<vscale x 4 x double> %0,
iXLen %1)
ret <vscale x 4 x double> %a
}
declare <vscale x 4 x double> @llvm.riscv.vfsqrt.mask.nxv4f64(
<vscale x 4 x double>,
<vscale x 4 x double>,
<vscale x 4 x i1>,
iXLen,
iXLen);
define <vscale x 4 x double> @intrinsic_vfsqrt_mask_v_nxv4f64_nxv4f64(<vscale x 4 x double> %0, <vscale x 4 x double> %1, <vscale x 4 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv4f64_nxv4f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m4, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v12, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 4 x double> @llvm.riscv.vfsqrt.mask.nxv4f64(
<vscale x 4 x double> %0,
<vscale x 4 x double> %1,
<vscale x 4 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 4 x double> %a
}
declare <vscale x 8 x double> @llvm.riscv.vfsqrt.nxv8f64(
<vscale x 8 x double>,
<vscale x 8 x double>,
iXLen);
define <vscale x 8 x double> @intrinsic_vfsqrt_v_nxv8f64_nxv8f64(<vscale x 8 x double> %0, iXLen %1) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_v_nxv8f64_nxv8f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v8
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x double> @llvm.riscv.vfsqrt.nxv8f64(
<vscale x 8 x double> undef,
<vscale x 8 x double> %0,
iXLen %1)
ret <vscale x 8 x double> %a
}
declare <vscale x 8 x double> @llvm.riscv.vfsqrt.mask.nxv8f64(
<vscale x 8 x double>,
<vscale x 8 x double>,
<vscale x 8 x i1>,
iXLen,
iXLen);
define <vscale x 8 x double> @intrinsic_vfsqrt_mask_v_nxv8f64_nxv8f64(<vscale x 8 x double> %0, <vscale x 8 x double> %1, <vscale x 8 x i1> %2, iXLen %3) nounwind {
; CHECK-LABEL: intrinsic_vfsqrt_mask_v_nxv8f64_nxv8f64:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: vsetvli zero, a0, e64, m8, ta, mu
; CHECK-NEXT: vfsqrt.v v8, v16, v0.t
; CHECK-NEXT: ret
entry:
%a = call <vscale x 8 x double> @llvm.riscv.vfsqrt.mask.nxv8f64(
<vscale x 8 x double> %0,
<vscale x 8 x double> %1,
<vscale x 8 x i1> %2,
iXLen %3, iXLen 1)
ret <vscale x 8 x double> %a
}