; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py ; RUN: llc -mtriple=aarch64-linux-gnu -mattr=+sve < %s | FileCheck %s --check-prefixes=CHECK define @insert_v2i64_nxv2i64( %vec, <2 x i64> %subvec) nounwind { ; CHECK-LABEL: insert_v2i64_nxv2i64: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z0.d }, p0, [sp] ; CHECK-NEXT: str q1, [sp] ; CHECK-NEXT: ld1d { z0.d }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv2i64.v2i64( %vec, <2 x i64> %subvec, i64 0) ret %retval } define @insert_v2i64_nxv2i64_idx1( %vec, <2 x i64> %subvec) nounwind { ; CHECK-LABEL: insert_v2i64_nxv2i64_idx1: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z0.d }, p0, [sp] ; CHECK-NEXT: stur q1, [sp, #8] ; CHECK-NEXT: ld1d { z0.d }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv2i64.v2i64( %vec, <2 x i64> %subvec, i64 1) ret %retval } define @insert_v4i32_nxv4i32( %vec, <4 x i32> %subvec) nounwind { ; CHECK-LABEL: insert_v4i32_nxv4i32: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.s ; CHECK-NEXT: st1w { z0.s }, p0, [sp] ; CHECK-NEXT: str q1, [sp] ; CHECK-NEXT: ld1w { z0.s }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv4i32.v4i32( %vec, <4 x i32> %subvec, i64 0) ret %retval } define @insert_v4i32_nxv4i32_idx1( %vec, <4 x i32> %subvec) nounwind { ; CHECK-LABEL: insert_v4i32_nxv4i32_idx1: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.s ; CHECK-NEXT: st1w { z0.s }, p0, [sp] ; CHECK-NEXT: stur q1, [sp, #4] ; CHECK-NEXT: ld1w { z0.s }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv4i32.v4i32( %vec, <4 x i32> %subvec, i64 1) ret %retval } define @insert_v8i16_nxv8i16( %vec, <8 x i16> %subvec) nounwind { ; CHECK-LABEL: insert_v8i16_nxv8i16: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.h ; CHECK-NEXT: st1h { z0.h }, p0, [sp] ; CHECK-NEXT: str q1, [sp] ; CHECK-NEXT: ld1h { z0.h }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv8i16.v8i16( %vec, <8 x i16> %subvec, i64 0) ret %retval } define @insert_v8i16_nxv8i16_idx1( %vec, <8 x i16> %subvec) nounwind { ; CHECK-LABEL: insert_v8i16_nxv8i16_idx1: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.h ; CHECK-NEXT: st1h { z0.h }, p0, [sp] ; CHECK-NEXT: stur q1, [sp, #2] ; CHECK-NEXT: ld1h { z0.h }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv8i16.v8i16( %vec, <8 x i16> %subvec, i64 1) ret %retval } define @insert_v16i8_nxv16i8( %vec, <16 x i8> %subvec) nounwind { ; CHECK-LABEL: insert_v16i8_nxv16i8: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.b ; CHECK-NEXT: st1b { z0.b }, p0, [sp] ; CHECK-NEXT: str q1, [sp] ; CHECK-NEXT: ld1b { z0.b }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv16i8.v16i8( %vec, <16 x i8> %subvec, i64 0) ret %retval } define @insert_v16i8_nxv16i8_idx1( %vec, <16 x i8> %subvec) nounwind { ; CHECK-LABEL: insert_v16i8_nxv16i8_idx1: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-1 ; CHECK-NEXT: ptrue p0.b ; CHECK-NEXT: st1b { z0.b }, p0, [sp] ; CHECK-NEXT: stur q1, [sp, #1] ; CHECK-NEXT: ld1b { z0.b }, p0/z, [sp] ; CHECK-NEXT: addvl sp, sp, #1 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %retval = call @llvm.experimental.vector.insert.nxv16i8.v16i8( %vec, <16 x i8> %subvec, i64 1) ret %retval } ; Insert subvectors into illegal vectors define void @insert_nxv8i64_nxv16i64( %sv0, %sv1, * %out) { ; CHECK-LABEL: insert_nxv8i64_nxv16i64: ; CHECK: // %bb.0: ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z7.d }, p0, [x0, #7, mul vl] ; CHECK-NEXT: st1d { z6.d }, p0, [x0, #6, mul vl] ; CHECK-NEXT: st1d { z5.d }, p0, [x0, #5, mul vl] ; CHECK-NEXT: st1d { z4.d }, p0, [x0, #4, mul vl] ; CHECK-NEXT: st1d { z3.d }, p0, [x0, #3, mul vl] ; CHECK-NEXT: st1d { z2.d }, p0, [x0, #2, mul vl] ; CHECK-NEXT: st1d { z1.d }, p0, [x0, #1, mul vl] ; CHECK-NEXT: st1d { z0.d }, p0, [x0] ; CHECK-NEXT: ret %v0 = call @llvm.experimental.vector.insert.nxv8i64.nxv16i64( undef, %sv0, i64 0) %v = call @llvm.experimental.vector.insert.nxv8i64.nxv16i64( %v0, %sv1, i64 8) store %v, * %out ret void } define void @insert_nxv8i64_nxv16i64_lo( %sv0, * %out) { ; CHECK-LABEL: insert_nxv8i64_nxv16i64_lo: ; CHECK: // %bb.0: ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z3.d }, p0, [x0, #3, mul vl] ; CHECK-NEXT: st1d { z2.d }, p0, [x0, #2, mul vl] ; CHECK-NEXT: st1d { z1.d }, p0, [x0, #1, mul vl] ; CHECK-NEXT: st1d { z0.d }, p0, [x0] ; CHECK-NEXT: ret %v = call @llvm.experimental.vector.insert.nxv8i64.nxv16i64( undef, %sv0, i64 0) store %v, * %out ret void } define void @insert_nxv8i64_nxv16i64_hi( %sv0, * %out) { ; CHECK-LABEL: insert_nxv8i64_nxv16i64_hi: ; CHECK: // %bb.0: ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z3.d }, p0, [x0, #7, mul vl] ; CHECK-NEXT: st1d { z2.d }, p0, [x0, #6, mul vl] ; CHECK-NEXT: st1d { z1.d }, p0, [x0, #5, mul vl] ; CHECK-NEXT: st1d { z0.d }, p0, [x0, #4, mul vl] ; CHECK-NEXT: ret %v = call @llvm.experimental.vector.insert.nxv8i64.nxv16i64( undef, %sv0, i64 8) store %v, * %out ret void } define void @insert_v2i64_nxv16i64(<2 x i64> %sv0, <2 x i64> %sv1, * %out) { ; CHECK-LABEL: insert_v2i64_nxv16i64: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-4 ; CHECK-NEXT: .cfi_escape 0x0f, 0x0c, 0x8f, 0x00, 0x11, 0x10, 0x22, 0x11, 0x20, 0x92, 0x2e, 0x00, 0x1e, 0x22 // sp + 16 + 32 * VG ; CHECK-NEXT: .cfi_offset w29, -16 ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: // kill: def $q0 killed $q0 def $z0 ; CHECK-NEXT: mov x8, sp ; CHECK-NEXT: st1d { z0.d }, p0, [sp] ; CHECK-NEXT: str q1, [sp, #32] ; CHECK-NEXT: ld1d { z0.d }, p0/z, [x8, #1, mul vl] ; CHECK-NEXT: ld1d { z1.d }, p0/z, [x8, #2, mul vl] ; CHECK-NEXT: ld1d { z2.d }, p0/z, [x8, #3, mul vl] ; CHECK-NEXT: ld1d { z3.d }, p0/z, [sp] ; CHECK-NEXT: st1d { z2.d }, p0, [x0, #3, mul vl] ; CHECK-NEXT: st1d { z1.d }, p0, [x0, #2, mul vl] ; CHECK-NEXT: st1d { z0.d }, p0, [x0, #1, mul vl] ; CHECK-NEXT: st1d { z3.d }, p0, [x0] ; CHECK-NEXT: addvl sp, sp, #4 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %v0 = call @llvm.experimental.vector.insert.v2i64.nxv16i64( undef, <2 x i64> %sv0, i64 0) %v = call @llvm.experimental.vector.insert.v2i64.nxv16i64( %v0, <2 x i64> %sv1, i64 4) store %v, * %out ret void } define void @insert_v2i64_nxv16i64_lo0(<2 x i64>* %psv, * %out) { ; CHECK-LABEL: insert_v2i64_nxv16i64_lo0: ; CHECK: // %bb.0: ; CHECK-NEXT: ldr q0, [x0] ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: st1d { z0.d }, p0, [x1] ; CHECK-NEXT: ret %sv = load <2 x i64>, <2 x i64>* %psv %v = call @llvm.experimental.vector.insert.v2i64.nxv16i64( undef, <2 x i64> %sv, i64 0) store %v, * %out ret void } define void @insert_v2i64_nxv16i64_lo2(<2 x i64>* %psv, * %out) { ; CHECK-LABEL: insert_v2i64_nxv16i64_lo2: ; CHECK: // %bb.0: ; CHECK-NEXT: str x29, [sp, #-16]! // 8-byte Folded Spill ; CHECK-NEXT: addvl sp, sp, #-2 ; CHECK-NEXT: .cfi_escape 0x0f, 0x0c, 0x8f, 0x00, 0x11, 0x10, 0x22, 0x11, 0x10, 0x92, 0x2e, 0x00, 0x1e, 0x22 // sp + 16 + 16 * VG ; CHECK-NEXT: .cfi_offset w29, -16 ; CHECK-NEXT: ldr q0, [x0] ; CHECK-NEXT: ptrue p0.d ; CHECK-NEXT: mov x8, sp ; CHECK-NEXT: str q0, [sp, #16] ; CHECK-NEXT: ld1d { z0.d }, p0/z, [x8, #1, mul vl] ; CHECK-NEXT: ld1d { z1.d }, p0/z, [sp] ; CHECK-NEXT: st1d { z0.d }, p0, [x1, #1, mul vl] ; CHECK-NEXT: st1d { z1.d }, p0, [x1] ; CHECK-NEXT: addvl sp, sp, #2 ; CHECK-NEXT: ldr x29, [sp], #16 // 8-byte Folded Reload ; CHECK-NEXT: ret %sv = load <2 x i64>, <2 x i64>* %psv %v = call @llvm.experimental.vector.insert.v2i64.nxv16i64( undef, <2 x i64> %sv, i64 2) store %v, * %out ret void } declare @llvm.experimental.vector.insert.nxv2i64.v2i64(, <2 x i64>, i64) declare @llvm.experimental.vector.insert.nxv4i32.v4i32(, <4 x i32>, i64) declare @llvm.experimental.vector.insert.nxv8i16.v8i16(, <8 x i16>, i64) declare @llvm.experimental.vector.insert.nxv16i8.v16i8(, <16 x i8>, i64) declare @llvm.experimental.vector.insert.nxv8i64.nxv16i64(, , i64) declare @llvm.experimental.vector.insert.v2i64.nxv16i64(, <2 x i64>, i64)