// RUN: %clang_cc1 -target-feature +f64mm -triple aarch64-none-linux-gnu -target-feature +sve -fallow-half-arguments-and-returns -S -O1 -Werror -Wall -emit-llvm -o - %s | FileCheck %s // RUN: %clang_cc1 -target-feature +f64mm -DSVE_OVERLOADED_FORMS -triple aarch64-none-linux-gnu -target-feature +sve -fallow-half-arguments-and-returns -S -O1 -Werror -Wall -emit-llvm -o - %s | FileCheck %s #include #ifdef SVE_OVERLOADED_FORMS // A simple used,unused... macro, long enough to represent any SVE builtin. #define SVE_ACLE_FUNC(A1, A2_UNUSED, A3, A4_UNUSED) A1##A3 #else #define SVE_ACLE_FUNC(A1, A2, A3, A4) A1##A2##A3##A4 #endif svint8_t test_svuzp2_s8(svint8_t op1, svint8_t op2) { // CHECK-LABEL: test_svuzp2_s8 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv16i8( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _s8, , )(op1, op2); } svint16_t test_svuzp2_s16(svint16_t op1, svint16_t op2) { // CHECK-LABEL: test_svuzp2_s16 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv8i16( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _s16, , )(op1, op2); } svint32_t test_svuzp2_s32(svint32_t op1, svint32_t op2) { // CHECK-LABEL: test_svuzp2_s32 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv4i32( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _s32, , )(op1, op2); } svint64_t test_svuzp2_s64(svint64_t op1, svint64_t op2) { // CHECK-LABEL: test_svuzp2_s64 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv2i64( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _s64, , )(op1, op2); } svuint8_t test_svuzp2_u8(svuint8_t op1, svuint8_t op2) { // CHECK-LABEL: test_svuzp2_u8 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv16i8( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _u8, , )(op1, op2); } svuint16_t test_svuzp2_u16(svuint16_t op1, svuint16_t op2) { // CHECK-LABEL: test_svuzp2_u16 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv8i16( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _u16, , )(op1, op2); } svuint32_t test_svuzp2_u32(svuint32_t op1, svuint32_t op2) { // CHECK-LABEL: test_svuzp2_u32 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv4i32( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _u32, , )(op1, op2); } svuint64_t test_svuzp2_u64(svuint64_t op1, svuint64_t op2) { // CHECK-LABEL: test_svuzp2_u64 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv2i64( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _u64, , )(op1, op2); } svfloat16_t test_svuzp2_f16(svfloat16_t op1, svfloat16_t op2) { // CHECK-LABEL: test_svuzp2_f16 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv8f16( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _f16, , )(op1, op2); } svfloat32_t test_svuzp2_f32(svfloat32_t op1, svfloat32_t op2) { // CHECK-LABEL: test_svuzp2_f32 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv4f32( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _f32, , )(op1, op2); } svfloat64_t test_svuzp2_f64(svfloat64_t op1, svfloat64_t op2) { // CHECK-LABEL: test_svuzp2_f64 // CHECK: %[[INTRINSIC:.*]] = call @llvm.aarch64.sve.uzp2q.nxv2f64( %op1, %op2) // CHECK: ret %[[INTRINSIC]] return SVE_ACLE_FUNC(svuzp2q, _f64, , )(op1, op2); }