; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py ; RUN: llc -mtriple=riscv32 -mattr=+d,+zfh,+zvfh,+v -target-abi=ilp32d \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,ZVFH ; RUN: llc -mtriple=riscv64 -mattr=+d,+zfh,+zvfh,+v -target-abi=lp64d \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,ZVFH ; RUN: llc -mtriple=riscv32 -mattr=+d,+zfh,+zvfhmin,+v -target-abi=ilp32d \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,ZVFHMIN ; RUN: llc -mtriple=riscv64 -mattr=+d,+zfh,+zvfhmin,+v -target-abi=lp64d \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,ZVFHMIN define @vfptosi_nxv1f16_nxv1i1( %va) { ; ZVFH-LABEL: vfptosi_nxv1f16_nxv1i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv1f16_nxv1i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptosi_nxv1f16_nxv1i7( %va) { ; ZVFH-LABEL: vfptosi_nxv1f16_nxv1i7: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv1f16_nxv1i7: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f16_nxv1i7( %va) { ; ZVFH-LABEL: vfptoui_nxv1f16_nxv1i7: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv1f16_nxv1i7: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptoui_nxv1f16_nxv1i1( %va) { ; ZVFH-LABEL: vfptoui_nxv1f16_nxv1i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv1f16_nxv1i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f16_nxv1i8( %va) { ; ZVFH-LABEL: vfptosi_nxv1f16_nxv1i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv1f16_nxv1i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f16_nxv1i8( %va) { ; ZVFH-LABEL: vfptoui_nxv1f16_nxv1i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf8, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv1f16_nxv1i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f16_nxv1i16( %va) { ; ZVFH-LABEL: vfptosi_nxv1f16_nxv1i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv1f16_nxv1i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f16_nxv1i16( %va) { ; ZVFH-LABEL: vfptoui_nxv1f16_nxv1i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv1f16_nxv1i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f16_nxv1i32( %va) { ; ZVFH-LABEL: vfptosi_nxv1f16_nxv1i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.x.f.v v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv1f16_nxv1i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, mf2, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.x.f.v v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f16_nxv1i32( %va) { ; ZVFH-LABEL: vfptoui_nxv1f16_nxv1i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.xu.f.v v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv1f16_nxv1i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, mf2, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.xu.f.v v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f16_nxv1i64( %va) { ; CHECK-LABEL: vfptosi_nxv1f16_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v8, v9 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f16_nxv1i64( %va) { ; CHECK-LABEL: vfptoui_nxv1f16_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v8, v9 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f16_nxv2i1( %va) { ; ZVFH-LABEL: vfptosi_nxv2f16_nxv2i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv2f16_nxv2i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f16_nxv2i1( %va) { ; ZVFH-LABEL: vfptoui_nxv2f16_nxv2i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv2f16_nxv2i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f16_nxv2i8( %va) { ; ZVFH-LABEL: vfptosi_nxv2f16_nxv2i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv2f16_nxv2i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f16_nxv2i8( %va) { ; ZVFH-LABEL: vfptoui_nxv2f16_nxv2i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv2f16_nxv2i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f16_nxv2i16( %va) { ; ZVFH-LABEL: vfptosi_nxv2f16_nxv2i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv2f16_nxv2i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f16_nxv2i16( %va) { ; ZVFH-LABEL: vfptoui_nxv2f16_nxv2i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv2f16_nxv2i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f16_nxv2i32( %va) { ; ZVFH-LABEL: vfptosi_nxv2f16_nxv2i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.x.f.v v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv2f16_nxv2i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m1, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.x.f.v v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f16_nxv2i32( %va) { ; ZVFH-LABEL: vfptoui_nxv2f16_nxv2i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.xu.f.v v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv2f16_nxv2i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v9, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m1, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.xu.f.v v8, v9 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f16_nxv2i64( %va) { ; CHECK-LABEL: vfptosi_nxv2f16_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m1, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v8, v10 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f16_nxv2i64( %va) { ; CHECK-LABEL: vfptoui_nxv2f16_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m1, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v8, v10 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f16_nxv4i1( %va) { ; ZVFH-LABEL: vfptosi_nxv4f16_nxv4i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv4f16_nxv4i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v10 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f16_nxv4i1( %va) { ; ZVFH-LABEL: vfptoui_nxv4f16_nxv4i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vand.vi v8, v9, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv4f16_nxv4i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v10 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f16_nxv4i8( %va) { ; ZVFH-LABEL: vfptosi_nxv4f16_nxv4i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv4f16_nxv4i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v10 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f16_nxv4i8( %va) { ; ZVFH-LABEL: vfptoui_nxv4f16_nxv4i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, mf2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; ZVFH-NEXT: vmv1r.v v8, v9 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv4f16_nxv4i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v10 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f16_nxv4i16( %va) { ; ZVFH-LABEL: vfptosi_nxv4f16_nxv4i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv4f16_nxv4i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v10 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f16_nxv4i16( %va) { ; ZVFH-LABEL: vfptoui_nxv4f16_nxv4i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv4f16_nxv4i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v10 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f16_nxv4i32( %va) { ; ZVFH-LABEL: vfptosi_nxv4f16_nxv4i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.x.f.v v10, v8 ; ZVFH-NEXT: vmv2r.v v8, v10 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv4f16_nxv4i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m2, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.x.f.v v8, v10 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f16_nxv4i32( %va) { ; ZVFH-LABEL: vfptoui_nxv4f16_nxv4i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.xu.f.v v10, v8 ; ZVFH-NEXT: vmv2r.v v8, v10 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv4f16_nxv4i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v10, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m2, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.xu.f.v v8, v10 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f16_nxv4i64( %va) { ; CHECK-LABEL: vfptosi_nxv4f16_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v8, v12 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f16_nxv4i64( %va) { ; CHECK-LABEL: vfptoui_nxv4f16_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v8, v12 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f16_nxv8i1( %va) { ; ZVFH-LABEL: vfptosi_nxv8f16_nxv8i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m1, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v10, v8 ; ZVFH-NEXT: vand.vi v8, v10, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv8f16_nxv8i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v12 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f16_nxv8i1( %va) { ; ZVFH-LABEL: vfptoui_nxv8f16_nxv8i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m1, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; ZVFH-NEXT: vand.vi v8, v10, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv8f16_nxv8i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v12 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f16_nxv8i8( %va) { ; ZVFH-LABEL: vfptosi_nxv8f16_nxv8i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m1, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v10, v8 ; ZVFH-NEXT: vmv.v.v v8, v10 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv8f16_nxv8i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v10, v12 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v10, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f16_nxv8i8( %va) { ; ZVFH-LABEL: vfptoui_nxv8f16_nxv8i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m1, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; ZVFH-NEXT: vmv.v.v v8, v10 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv8f16_nxv8i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v10, v12 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v10, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f16_nxv8i16( %va) { ; ZVFH-LABEL: vfptosi_nxv8f16_nxv8i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv8f16_nxv8i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v12 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f16_nxv8i16( %va) { ; ZVFH-LABEL: vfptoui_nxv8f16_nxv8i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv8f16_nxv8i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v12 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f16_nxv8i32( %va) { ; ZVFH-LABEL: vfptosi_nxv8f16_nxv8i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.x.f.v v12, v8 ; ZVFH-NEXT: vmv4r.v v8, v12 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv8f16_nxv8i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m4, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.x.f.v v8, v12 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f16_nxv8i32( %va) { ; ZVFH-LABEL: vfptoui_nxv8f16_nxv8i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.xu.f.v v12, v8 ; ZVFH-NEXT: vmv4r.v v8, v12 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv8f16_nxv8i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v12, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m4, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.xu.f.v v8, v12 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f16_nxv8i64( %va) { ; CHECK-LABEL: vfptosi_nxv8f16_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m4, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v8, v16 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f16_nxv8i64( %va) { ; CHECK-LABEL: vfptoui_nxv8f16_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfwcvt.f.f.v v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e32, m4, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v8, v16 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f16_nxv16i1( %va) { ; ZVFH-LABEL: vfptosi_nxv16f16_nxv16i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v12, v8 ; ZVFH-NEXT: vand.vi v8, v12, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv16f16_nxv16i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v16 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f16_nxv16i1( %va) { ; ZVFH-LABEL: vfptoui_nxv16f16_nxv16i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; ZVFH-NEXT: vand.vi v8, v12, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv16f16_nxv16i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v16 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f16_nxv16i8( %va) { ; ZVFH-LABEL: vfptosi_nxv16f16_nxv16i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v12, v8 ; ZVFH-NEXT: vmv.v.v v8, v12 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv16f16_nxv16i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v12, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v12, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f16_nxv16i8( %va) { ; ZVFH-LABEL: vfptoui_nxv16f16_nxv16i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m2, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; ZVFH-NEXT: vmv.v.v v8, v12 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv16f16_nxv16i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v12, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v12, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f16_nxv16i16( %va) { ; ZVFH-LABEL: vfptosi_nxv16f16_nxv16i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv16f16_nxv16i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v16 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f16_nxv16i16( %va) { ; ZVFH-LABEL: vfptoui_nxv16f16_nxv16i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv16f16_nxv16i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v16 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f16_nxv16i32( %va) { ; ZVFH-LABEL: vfptosi_nxv16f16_nxv16i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.x.f.v v16, v8 ; ZVFH-NEXT: vmv8r.v v8, v16 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv16f16_nxv16i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m8, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.x.f.v v8, v16 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f16_nxv16i32( %va) { ; ZVFH-LABEL: vfptoui_nxv16f16_nxv16i32: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFH-NEXT: vfwcvt.rtz.xu.f.v v16, v8 ; ZVFH-NEXT: vmv8r.v v8, v16 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv16f16_nxv16i32: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vsetvli zero, zero, e32, m8, ta, ma ; ZVFHMIN-NEXT: vfcvt.rtz.xu.f.v v8, v16 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv32f16_nxv32i1( %va) { ; ZVFH-LABEL: vfptosi_nxv32f16_nxv32i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v16, v8 ; ZVFH-NEXT: vand.vi v8, v16, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv32f16_nxv32i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: csrr a0, vlenb ; ZVFHMIN-NEXT: srli a0, a0, 2 ; ZVFHMIN-NEXT: add a1, a0, a0 ; ZVFHMIN-NEXT: vsetvli a2, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v12, v16 ; ZVFHMIN-NEXT: vand.vi v12, v12, 1 ; ZVFHMIN-NEXT: vmsne.vi v16, v12, 0 ; ZVFHMIN-NEXT: vfwcvt.f.f.v v24, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v24 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: vsetvli zero, a1, e8, mf2, tu, ma ; ZVFHMIN-NEXT: vslideup.vx v0, v16, a0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv32f16_nxv32i1( %va) { ; ZVFH-LABEL: vfptoui_nxv32f16_nxv32i1: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; ZVFH-NEXT: vand.vi v8, v16, 1 ; ZVFH-NEXT: vmsne.vi v0, v8, 0 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv32f16_nxv32i1: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: csrr a0, vlenb ; ZVFHMIN-NEXT: srli a0, a0, 2 ; ZVFHMIN-NEXT: add a1, a0, a0 ; ZVFHMIN-NEXT: vsetvli a2, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v12, v16 ; ZVFHMIN-NEXT: vand.vi v12, v12, 1 ; ZVFHMIN-NEXT: vmsne.vi v16, v12, 0 ; ZVFHMIN-NEXT: vfwcvt.f.f.v v24, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v24 ; ZVFHMIN-NEXT: vand.vi v8, v8, 1 ; ZVFHMIN-NEXT: vmsne.vi v0, v8, 0 ; ZVFHMIN-NEXT: vsetvli zero, a1, e8, mf2, tu, ma ; ZVFHMIN-NEXT: vslideup.vx v0, v16, a0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv32f16_nxv32i8( %va) { ; ZVFH-LABEL: vfptosi_nxv32f16_nxv32i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.x.f.w v16, v8 ; ZVFH-NEXT: vmv.v.v v8, v16 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv32f16_nxv32i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v24, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v24, 0 ; ZVFHMIN-NEXT: vsetvli zero, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v12, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v10, v12, 0 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv32f16_nxv32i8( %va) { ; ZVFH-LABEL: vfptoui_nxv32f16_nxv32i8: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e8, m4, ta, ma ; ZVFH-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; ZVFH-NEXT: vmv.v.v v8, v16 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv32f16_nxv32i8: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v24, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v8, v24, 0 ; ZVFHMIN-NEXT: vsetvli zero, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v12, v16 ; ZVFHMIN-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; ZVFHMIN-NEXT: vnsrl.wi v10, v12, 0 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv32f16_nxv32i16( %va) { ; ZVFH-LABEL: vfptosi_nxv32f16_nxv32i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m8, ta, ma ; ZVFH-NEXT: vfcvt.rtz.x.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptosi_nxv32f16_nxv32i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v8, v16 ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.x.f.w v12, v16 ; ZVFHMIN-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv32f16_nxv32i16( %va) { ; ZVFH-LABEL: vfptoui_nxv32f16_nxv32i16: ; ZVFH: # %bb.0: ; ZVFH-NEXT: vsetvli a0, zero, e16, m8, ta, ma ; ZVFH-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; ZVFH-NEXT: ret ; ; ZVFHMIN-LABEL: vfptoui_nxv32f16_nxv32i16: ; ZVFHMIN: # %bb.0: ; ZVFHMIN-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v8 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v8, v16 ; ZVFHMIN-NEXT: vfwcvt.f.f.v v16, v12 ; ZVFHMIN-NEXT: vfncvt.rtz.xu.f.w v12, v16 ; ZVFHMIN-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f32_nxv1i1( %va) { ; CHECK-LABEL: vfptosi_nxv1f32_nxv1i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f32_nxv1i1( %va) { ; CHECK-LABEL: vfptoui_nxv1f32_nxv1i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f32_nxv1i8( %va) { ; CHECK-LABEL: vfptosi_nxv1f32_nxv1i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f32_nxv1i8( %va) { ; CHECK-LABEL: vfptoui_nxv1f32_nxv1i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f32_nxv1i16( %va) { ; CHECK-LABEL: vfptosi_nxv1f32_nxv1i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f32_nxv1i16( %va) { ; CHECK-LABEL: vfptoui_nxv1f32_nxv1i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f32_nxv1i32( %va) { ; CHECK-LABEL: vfptosi_nxv1f32_nxv1i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f32_nxv1i32( %va) { ; CHECK-LABEL: vfptoui_nxv1f32_nxv1i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f32_nxv1i64( %va) { ; CHECK-LABEL: vfptosi_nxv1f32_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f32_nxv1i64( %va) { ; CHECK-LABEL: vfptoui_nxv1f32_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f32_nxv2i1( %va) { ; CHECK-LABEL: vfptosi_nxv2f32_nxv2i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f32_nxv2i1( %va) { ; CHECK-LABEL: vfptoui_nxv2f32_nxv2i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f32_nxv2i8( %va) { ; CHECK-LABEL: vfptosi_nxv2f32_nxv2i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f32_nxv2i8( %va) { ; CHECK-LABEL: vfptoui_nxv2f32_nxv2i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f32_nxv2i16( %va) { ; CHECK-LABEL: vfptosi_nxv2f32_nxv2i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f32_nxv2i16( %va) { ; CHECK-LABEL: vfptoui_nxv2f32_nxv2i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f32_nxv2i32( %va) { ; CHECK-LABEL: vfptosi_nxv2f32_nxv2i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f32_nxv2i32( %va) { ; CHECK-LABEL: vfptoui_nxv2f32_nxv2i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f32_nxv2i64( %va) { ; CHECK-LABEL: vfptosi_nxv2f32_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v10, v8 ; CHECK-NEXT: vmv2r.v v8, v10 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f32_nxv2i64( %va) { ; CHECK-LABEL: vfptoui_nxv2f32_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v10, v8 ; CHECK-NEXT: vmv2r.v v8, v10 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f32_nxv4i1( %va) { ; CHECK-LABEL: vfptosi_nxv4f32_nxv4i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vand.vi v8, v10, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f32_nxv4i1( %va) { ; CHECK-LABEL: vfptoui_nxv4f32_nxv4i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vand.vi v8, v10, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f32_nxv4i8( %va) { ; CHECK-LABEL: vfptosi_nxv4f32_nxv4i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f32_nxv4i8( %va) { ; CHECK-LABEL: vfptoui_nxv4f32_nxv4i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f32_nxv4i16( %va) { ; CHECK-LABEL: vfptosi_nxv4f32_nxv4i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vmv.v.v v8, v10 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f32_nxv4i16( %va) { ; CHECK-LABEL: vfptoui_nxv4f32_nxv4i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vmv.v.v v8, v10 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f32_nxv4i32( %va) { ; CHECK-LABEL: vfptosi_nxv4f32_nxv4i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f32_nxv4i32( %va) { ; CHECK-LABEL: vfptoui_nxv4f32_nxv4i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f32_nxv4i64( %va) { ; CHECK-LABEL: vfptosi_nxv4f32_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v12, v8 ; CHECK-NEXT: vmv4r.v v8, v12 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f32_nxv4i64( %va) { ; CHECK-LABEL: vfptoui_nxv4f32_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v12, v8 ; CHECK-NEXT: vmv4r.v v8, v12 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f32_nxv8i1( %va) { ; CHECK-LABEL: vfptosi_nxv8f32_nxv8i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vand.vi v8, v12, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f32_nxv8i1( %va) { ; CHECK-LABEL: vfptoui_nxv8f32_nxv8i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vand.vi v8, v12, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f32_nxv8i8( %va) { ; CHECK-LABEL: vfptosi_nxv8f32_nxv8i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f32_nxv8i8( %va) { ; CHECK-LABEL: vfptoui_nxv8f32_nxv8i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f32_nxv8i16( %va) { ; CHECK-LABEL: vfptosi_nxv8f32_nxv8i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vmv.v.v v8, v12 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f32_nxv8i16( %va) { ; CHECK-LABEL: vfptoui_nxv8f32_nxv8i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vmv.v.v v8, v12 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f32_nxv8i32( %va) { ; CHECK-LABEL: vfptosi_nxv8f32_nxv8i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f32_nxv8i32( %va) { ; CHECK-LABEL: vfptoui_nxv8f32_nxv8i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f32_nxv8i64( %va) { ; CHECK-LABEL: vfptosi_nxv8f32_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfwcvt.rtz.x.f.v v16, v8 ; CHECK-NEXT: vmv8r.v v8, v16 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f32_nxv8i64( %va) { ; CHECK-LABEL: vfptoui_nxv8f32_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfwcvt.rtz.xu.f.v v16, v8 ; CHECK-NEXT: vmv8r.v v8, v16 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f32_nxv16i1( %va) { ; CHECK-LABEL: vfptosi_nxv16f32_nxv16i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vand.vi v8, v16, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f32_nxv16i1( %va) { ; CHECK-LABEL: vfptoui_nxv16f32_nxv16i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vand.vi v8, v16, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f32_nxv16i8( %va) { ; CHECK-LABEL: vfptosi_nxv16f32_nxv16i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v16, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f32_nxv16i8( %va) { ; CHECK-LABEL: vfptoui_nxv16f32_nxv16i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e8, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v16, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f32_nxv16i16( %va) { ; CHECK-LABEL: vfptosi_nxv16f32_nxv16i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vmv.v.v v8, v16 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f32_nxv16i16( %va) { ; CHECK-LABEL: vfptoui_nxv16f32_nxv16i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e16, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vmv.v.v v8, v16 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv16f32_nxv16i32( %va) { ; CHECK-LABEL: vfptosi_nxv16f32_nxv16i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m8, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv16f32_nxv16i32( %va) { ; CHECK-LABEL: vfptoui_nxv16f32_nxv16i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m8, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f64_nxv1i1( %va) { ; CHECK-LABEL: vfptosi_nxv1f64_nxv1i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f64_nxv1i1( %va) { ; CHECK-LABEL: vfptoui_nxv1f64_nxv1i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vand.vi v8, v9, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f64_nxv1i8( %va) { ; CHECK-LABEL: vfptosi_nxv1f64_nxv1i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f64_nxv1i8( %va) { ; CHECK-LABEL: vfptoui_nxv1f64_nxv1i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf8, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f64_nxv1i16( %va) { ; CHECK-LABEL: vfptosi_nxv1f64_nxv1i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f64_nxv1i16( %va) { ; CHECK-LABEL: vfptoui_nxv1f64_nxv1i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v9, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f64_nxv1i32( %va) { ; CHECK-LABEL: vfptosi_nxv1f64_nxv1i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f64_nxv1i32( %va) { ; CHECK-LABEL: vfptoui_nxv1f64_nxv1i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, mf2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v9, v8 ; CHECK-NEXT: vmv1r.v v8, v9 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv1f64_nxv1i64( %va) { ; CHECK-LABEL: vfptosi_nxv1f64_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m1, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv1f64_nxv1i64( %va) { ; CHECK-LABEL: vfptoui_nxv1f64_nxv1i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m1, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f64_nxv2i1( %va) { ; CHECK-LABEL: vfptosi_nxv2f64_nxv2i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vand.vi v8, v10, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f64_nxv2i1( %va) { ; CHECK-LABEL: vfptoui_nxv2f64_nxv2i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vand.vi v8, v10, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f64_nxv2i8( %va) { ; CHECK-LABEL: vfptosi_nxv2f64_nxv2i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f64_nxv2i8( %va) { ; CHECK-LABEL: vfptoui_nxv2f64_nxv2i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf4, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f64_nxv2i16( %va) { ; CHECK-LABEL: vfptosi_nxv2f64_nxv2i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f64_nxv2i16( %va) { ; CHECK-LABEL: vfptoui_nxv2f64_nxv2i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f64_nxv2i32( %va) { ; CHECK-LABEL: vfptosi_nxv2f64_nxv2i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v10, v8 ; CHECK-NEXT: vmv.v.v v8, v10 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f64_nxv2i32( %va) { ; CHECK-LABEL: vfptoui_nxv2f64_nxv2i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m1, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v10, v8 ; CHECK-NEXT: vmv.v.v v8, v10 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv2f64_nxv2i64( %va) { ; CHECK-LABEL: vfptosi_nxv2f64_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m2, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv2f64_nxv2i64( %va) { ; CHECK-LABEL: vfptoui_nxv2f64_nxv2i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m2, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f64_nxv4i1( %va) { ; CHECK-LABEL: vfptosi_nxv4f64_nxv4i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vand.vi v8, v12, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f64_nxv4i1( %va) { ; CHECK-LABEL: vfptoui_nxv4f64_nxv4i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vand.vi v8, v12, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f64_nxv4i8( %va) { ; CHECK-LABEL: vfptosi_nxv4f64_nxv4i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f64_nxv4i8( %va) { ; CHECK-LABEL: vfptoui_nxv4f64_nxv4i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, mf2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f64_nxv4i16( %va) { ; CHECK-LABEL: vfptosi_nxv4f64_nxv4i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f64_nxv4i16( %va) { ; CHECK-LABEL: vfptoui_nxv4f64_nxv4i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v12, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f64_nxv4i32( %va) { ; CHECK-LABEL: vfptosi_nxv4f64_nxv4i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v12, v8 ; CHECK-NEXT: vmv.v.v v8, v12 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f64_nxv4i32( %va) { ; CHECK-LABEL: vfptoui_nxv4f64_nxv4i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m2, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v12, v8 ; CHECK-NEXT: vmv.v.v v8, v12 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv4f64_nxv4i64( %va) { ; CHECK-LABEL: vfptosi_nxv4f64_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m4, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv4f64_nxv4i64( %va) { ; CHECK-LABEL: vfptoui_nxv4f64_nxv4i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m4, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f64_nxv8i1( %va) { ; CHECK-LABEL: vfptosi_nxv8f64_nxv8i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vand.vi v8, v16, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f64_nxv8i1( %va) { ; CHECK-LABEL: vfptoui_nxv8f64_nxv8i1: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vand.vi v8, v16, 1 ; CHECK-NEXT: vmsne.vi v0, v8, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f64_nxv8i8( %va) { ; CHECK-LABEL: vfptosi_nxv8f64_nxv8i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v10, v16, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f64_nxv8i8( %va) { ; CHECK-LABEL: vfptoui_nxv8f64_nxv8i8: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v10, v16, 0 ; CHECK-NEXT: vsetvli zero, zero, e8, m1, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v10, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f64_nxv8i16( %va) { ; CHECK-LABEL: vfptosi_nxv8f64_nxv8i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v16, 0 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f64_nxv8i16( %va) { ; CHECK-LABEL: vfptoui_nxv8f64_nxv8i16: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vsetvli zero, zero, e16, m2, ta, ma ; CHECK-NEXT: vnsrl.wi v8, v16, 0 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f64_nxv8i32( %va) { ; CHECK-LABEL: vfptosi_nxv8f64_nxv8i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.x.f.w v16, v8 ; CHECK-NEXT: vmv.v.v v8, v16 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f64_nxv8i32( %va) { ; CHECK-LABEL: vfptoui_nxv8f64_nxv8i32: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e32, m4, ta, ma ; CHECK-NEXT: vfncvt.rtz.xu.f.w v16, v8 ; CHECK-NEXT: vmv.v.v v8, v16 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec } define @vfptosi_nxv8f64_nxv8i64( %va) { ; CHECK-LABEL: vfptosi_nxv8f64_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m8, ta, ma ; CHECK-NEXT: vfcvt.rtz.x.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptosi %va to ret %evec } define @vfptoui_nxv8f64_nxv8i64( %va) { ; CHECK-LABEL: vfptoui_nxv8f64_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a0, zero, e64, m8, ta, ma ; CHECK-NEXT: vfcvt.rtz.xu.f.v v8, v8 ; CHECK-NEXT: ret %evec = fptoui %va to ret %evec }