; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py ; RUN: llc -mtriple=riscv32 -mattr=+d,+experimental-zfh,+experimental-v \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,RV32 ; RUN: llc -mtriple=riscv64 -mattr=+d,+experimental-zfh,+experimental-v \ ; RUN: -verify-machineinstrs < %s | FileCheck %s --check-prefixes=CHECK,RV64 declare @llvm.vp.gather.nxv1i8.nxv1p0i8(, , i32) define @vpgather_nxv1i8( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf8, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf8, ta, mu ; RV64-NEXT: vluxei64.v v9, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v9 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1i8.nxv1p0i8( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2i8.nxv2p0i8(, , i32) define @vpgather_nxv2i8( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) ret %v } define @vpgather_nxv2i8_sextload_nxv2i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_sextload_nxv2i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e16, mf2, ta, mu ; RV32-NEXT: vsext.vf2 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_sextload_nxv2i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e16, mf2, ta, mu ; RV64-NEXT: vsext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i8_zextload_nxv2i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_zextload_nxv2i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e16, mf2, ta, mu ; RV32-NEXT: vzext.vf2 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_zextload_nxv2i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e16, mf2, ta, mu ; RV64-NEXT: vzext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } define @vpgather_nxv2i8_sextload_nxv2i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_sextload_nxv2i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV32-NEXT: vsext.vf4 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_sextload_nxv2i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV64-NEXT: vsext.vf4 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i8_zextload_nxv2i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_zextload_nxv2i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV32-NEXT: vzext.vf4 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_zextload_nxv2i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV64-NEXT: vzext.vf4 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } define @vpgather_nxv2i8_sextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_sextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vsext.vf8 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_sextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vsext.vf8 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i8_zextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i8_zextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vzext.vf8 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i8_zextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf4, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vzext.vf8 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i8.nxv2p0i8( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } declare @llvm.vp.gather.nxv4i8.nxv4p0i8(, , i32) define @vpgather_nxv4i8( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4i8.nxv4p0i8( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4i8( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, mf2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8 ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, mf2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8 ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4i8.nxv4p0i8( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8i8.nxv8p0i8(, , i32) define @vpgather_nxv8i8( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e8, m1, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e8, m1, ta, mu ; RV64-NEXT: vluxei64.v v16, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v16 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8i8.nxv8p0i8( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8(i8* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsetvli zero, a1, e8, m1, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsetvli zero, a1, e8, m1, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i8, i8* %base, %idxs %v = call @llvm.vp.gather.nxv8i8.nxv8p0i8( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1i16.nxv1p0i16(, , i32) define @vpgather_nxv1i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf4, ta, mu ; RV64-NEXT: vluxei64.v v9, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v9 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1i16.nxv1p0i16( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2i16.nxv2p0i16(, , i32) define @vpgather_nxv2i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i16.nxv2p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_nxv2i16_sextload_nxv2i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i16_sextload_nxv2i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV32-NEXT: vsext.vf2 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i16_sextload_nxv2i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV64-NEXT: vsext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i16.nxv2p0i16( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i16_zextload_nxv2i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i16_zextload_nxv2i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV32-NEXT: vzext.vf2 v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i16_zextload_nxv2i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e32, m1, ta, mu ; RV64-NEXT: vzext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i16.nxv2p0i16( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } define @vpgather_nxv2i16_sextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i16_sextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vsext.vf4 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i16_sextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vsext.vf4 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i16.nxv2p0i16( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i16_zextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i16_zextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vzext.vf4 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i16_zextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vzext.vf4 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i16.nxv2p0i16( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } declare @llvm.vp.gather.nxv4i16.nxv4p0i16(, , i32) define @vpgather_nxv4i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4i16.nxv4p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4i16( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8 ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8 ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4i16.nxv4p0i16( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8i16.nxv8p0i16(, , i32) define @vpgather_nxv8i16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8, v0.t ; RV32-NEXT: vmv2r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v16, (zero), v8, v0.t ; RV64-NEXT: vmv2r.v v8, v16 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8i16.nxv8p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8i16(i16* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i16, i16* %base, %idxs %v = call @llvm.vp.gather.nxv8i16.nxv8p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8i16(i16* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i16, i16* %base, %eidxs %v = call @llvm.vp.gather.nxv8i16.nxv8p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8i16(i16* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i16, i16* %base, %eidxs %v = call @llvm.vp.gather.nxv8i16.nxv8p0i16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i16(i16* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i16, i16* %base, %idxs %v = call @llvm.vp.gather.nxv8i16.nxv8p0i16( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1i32.nxv1p0i32(, , i32) define @vpgather_nxv1i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, mf2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, mf2, ta, mu ; RV64-NEXT: vluxei64.v v9, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v9 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1i32.nxv1p0i32( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2i32.nxv2p0i32(, , i32) define @vpgather_nxv2i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i32.nxv2p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_nxv2i32_sextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i32_sextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vsext.vf2 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i32_sextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vsext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i32.nxv2p0i32( %ptrs, %m, i32 %evl) %ev = sext %v to ret %ev } define @vpgather_nxv2i32_zextload_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i32_zextload_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV32-NEXT: vzext.vf2 v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i32_zextload_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vsetvli a0, zero, e64, m2, ta, mu ; RV64-NEXT: vzext.vf2 v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i32.nxv2p0i32( %ptrs, %m, i32 %evl) %ev = zext %v to ret %ev } declare @llvm.vp.gather.nxv4i32.nxv4p0i32(, , i32) define @vpgather_nxv4i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8, v0.t ; RV64-NEXT: vmv2r.v v8, v12 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4i32.nxv4p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4i32( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8 ; RV64-NEXT: vmv2r.v v8, v12 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4i32.nxv4p0i32( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8i32.nxv8p0i32(, , i32) define @vpgather_nxv8i32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v16, (zero), v8, v0.t ; RV64-NEXT: vmv4r.v v8, v16 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i32, i32* %base, %idxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i32, i32* %base, %eidxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i32, i32* %base, %eidxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i16_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i16_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i16_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i32, i32* %base, %idxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i16_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i32, i32* %base, %eidxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i16_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i32, i32* %base, %eidxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i32(i32* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsll.vi v8, v8, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf2 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i32, i32* %base, %idxs %v = call @llvm.vp.gather.nxv8i32.nxv8p0i32( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1i64.nxv1p0i64(, , i32) define @vpgather_nxv1i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m1, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m1, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1i64.nxv1p0i64( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2i64.nxv2p0i64(, , i32) define @vpgather_nxv2i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vmv2r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2i64.nxv2p0i64( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv4i64.nxv4p0i64(, , i32) define @vpgather_nxv4i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8, v0.t ; RV32-NEXT: vmv4r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4i64.nxv4p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4i64( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8 ; RV32-NEXT: vmv4r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4i64.nxv4p0i64( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8i64.nxv8p0i64(, , i32) define @vpgather_nxv8i64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v16, (zero), v8, v0.t ; RV32-NEXT: vmv8r.v v8, v16 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v16, v12, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i64, i64* %base, %idxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf8 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf8 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i16_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i16_nxv8i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v16, v12, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i16_nxv8i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i64, i64* %base, %idxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i16_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf4 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i16_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf4 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i32_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i32_nxv8i64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsll.vi v16, v8, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i32_nxv8i64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf2 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds i64, i64* %base, %idxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i32_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i32_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf2 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i32_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i32_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf2 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds i64, i64* %base, %eidxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i64(i64* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_nxv8i64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsll.vi v8, v8, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %ptrs = getelementptr inbounds i64, i64* %base, %idxs %v = call @llvm.vp.gather.nxv8i64.nxv8p0i64( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1f16.nxv1p0f16(, , i32) define @vpgather_nxv1f16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf4, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf4, ta, mu ; RV64-NEXT: vluxei64.v v9, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v9 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1f16.nxv1p0f16( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2f16.nxv2p0f16(, , i32) define @vpgather_nxv2f16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, mf2, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2f16.nxv2p0f16( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv4f16.nxv4p0f16(, , i32) define @vpgather_nxv4f16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4f16.nxv4p0f16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4f16( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8 ; RV32-NEXT: vmv1r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m1, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8 ; RV64-NEXT: vmv1r.v v8, v12 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4f16.nxv4p0f16( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8f16.nxv8p0f16(, , i32) define @vpgather_nxv8f16( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8, v0.t ; RV32-NEXT: vmv2r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v16, (zero), v8, v0.t ; RV64-NEXT: vmv2r.v v8, v16 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8f16.nxv8p0f16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8f16(half* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds half, half* %base, %idxs %v = call @llvm.vp.gather.nxv8f16.nxv8p0f16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8f16(half* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds half, half* %base, %eidxs %v = call @llvm.vp.gather.nxv8f16.nxv8p0f16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8f16(half* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf4 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf8 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds half, half* %base, %eidxs %v = call @llvm.vp.gather.nxv8f16.nxv8p0f16( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8f16(half* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8f16: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vadd.vv v12, v12, v12 ; RV32-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v12, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8f16: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vadd.vv v16, v16, v16 ; RV64-NEXT: vsetvli zero, a1, e16, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds half, half* %base, %idxs %v = call @llvm.vp.gather.nxv8f16.nxv8p0f16( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1f32.nxv1p0f32(, , i32) define @vpgather_nxv1f32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, mf2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, mf2, ta, mu ; RV64-NEXT: vluxei64.v v9, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v9 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1f32.nxv1p0f32( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2f32.nxv2p0f32(, , i32) define @vpgather_nxv2f32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m1, ta, mu ; RV64-NEXT: vluxei64.v v10, (zero), v8, v0.t ; RV64-NEXT: vmv1r.v v8, v10 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2f32.nxv2p0f32( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv4f32.nxv4p0f32(, , i32) define @vpgather_nxv4f32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8, v0.t ; RV64-NEXT: vmv2r.v v8, v12 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4f32.nxv4p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4f32( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m2, ta, mu ; RV64-NEXT: vluxei64.v v12, (zero), v8 ; RV64-NEXT: vmv2r.v v8, v12 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4f32.nxv4p0f32( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8f32.nxv8p0f32(, , i32) define @vpgather_nxv8f32( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (zero), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v16, (zero), v8, v0.t ; RV64-NEXT: vmv4r.v v8, v16 ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds float, float* %base, %idxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds float, float* %base, %eidxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds float, float* %base, %eidxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i16_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i16_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i16_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds float, float* %base, %idxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i16_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds float, float* %base, %eidxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i16_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vzext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v8, v12, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vzext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds float, float* %base, %eidxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8f32(float* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8f32: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsll.vi v8, v8, 2 ; RV32-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v8, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8f32: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf2 v16, v8 ; RV64-NEXT: vsll.vi v16, v16, 2 ; RV64-NEXT: vsetvli zero, a1, e32, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v16, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds float, float* %base, %idxs %v = call @llvm.vp.gather.nxv8f32.nxv8p0f32( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv1f64.nxv1p0f64(, , i32) define @vpgather_nxv1f64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv1f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m1, ta, mu ; RV32-NEXT: vluxei32.v v9, (zero), v8, v0.t ; RV32-NEXT: vmv1r.v v8, v9 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv1f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m1, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv1f64.nxv1p0f64( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv2f64.nxv2p0f64(, , i32) define @vpgather_nxv2f64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv2f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m2, ta, mu ; RV32-NEXT: vluxei32.v v10, (zero), v8, v0.t ; RV32-NEXT: vmv2r.v v8, v10 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv2f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m2, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv2f64.nxv2p0f64( %ptrs, %m, i32 %evl) ret %v } declare @llvm.vp.gather.nxv4f64.nxv4p0f64(, , i32) define @vpgather_nxv4f64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv4f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8, v0.t ; RV32-NEXT: vmv4r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv4f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv4f64.nxv4p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_truemask_nxv4f64( %ptrs, i32 zeroext %evl) { ; RV32-LABEL: vpgather_truemask_nxv4f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV32-NEXT: vluxei32.v v12, (zero), v8 ; RV32-NEXT: vmv4r.v v8, v12 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_truemask_nxv4f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m4, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8 ; RV64-NEXT: ret %mhead = insertelement undef, i1 1, i32 0 %mtrue = shufflevector %mhead, undef, zeroinitializer %v = call @llvm.vp.gather.nxv4f64.nxv4p0f64( %ptrs, %mtrue, i32 %evl) ret %v } declare @llvm.vp.gather.nxv8f64.nxv8p0f64(, , i32) define @vpgather_nxv8f64( %ptrs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_nxv8f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli zero, a0, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v16, (zero), v8, v0.t ; RV32-NEXT: vmv8r.v v8, v16 ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_nxv8f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli zero, a0, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (zero), v8, v0.t ; RV64-NEXT: ret %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i8_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i8_nxv8f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf4 v12, v8 ; RV32-NEXT: vsll.vi v16, v12, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i8_nxv8f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf8 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds double, double* %base, %idxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i8_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i8_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf8 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i8_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i8_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf8 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i16_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i16_nxv8f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsext.vf2 v12, v8 ; RV32-NEXT: vsll.vi v16, v12, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i16_nxv8f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf4 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds double, double* %base, %idxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i16_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i16_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf4 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i16_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i16_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf4 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8i32_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; RV32-LABEL: vpgather_baseidx_nxv8i32_nxv8f64: ; RV32: # %bb.0: ; RV32-NEXT: vsetvli a2, zero, e32, m4, ta, mu ; RV32-NEXT: vsll.vi v16, v8, 3 ; RV32-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV32-NEXT: vluxei32.v v8, (a0), v16, v0.t ; RV32-NEXT: ret ; ; RV64-LABEL: vpgather_baseidx_nxv8i32_nxv8f64: ; RV64: # %bb.0: ; RV64-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; RV64-NEXT: vsext.vf2 v16, v8 ; RV64-NEXT: vsll.vi v8, v16, 3 ; RV64-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; RV64-NEXT: vluxei64.v v8, (a0), v8, v0.t ; RV64-NEXT: ret %ptrs = getelementptr inbounds double, double* %base, %idxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_sext_nxv8i32_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_sext_nxv8i32_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsext.vf2 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = sext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_zext_nxv8i32_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_zext_nxv8i32_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vzext.vf2 v16, v8 ; CHECK-NEXT: vsll.vi v8, v16, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %eidxs = zext %idxs to %ptrs = getelementptr inbounds double, double* %base, %eidxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v } define @vpgather_baseidx_nxv8f64(double* %base, %idxs, %m, i32 zeroext %evl) { ; CHECK-LABEL: vpgather_baseidx_nxv8f64: ; CHECK: # %bb.0: ; CHECK-NEXT: vsetvli a2, zero, e64, m8, ta, mu ; CHECK-NEXT: vsll.vi v8, v8, 3 ; CHECK-NEXT: vsetvli zero, a1, e64, m8, ta, mu ; CHECK-NEXT: vluxei64.v v8, (a0), v8, v0.t ; CHECK-NEXT: ret %ptrs = getelementptr inbounds double, double* %base, %idxs %v = call @llvm.vp.gather.nxv8f64.nxv8p0f64( %ptrs, %m, i32 %evl) ret %v }