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1// NOTE: Assertions have been autogenerated by utils/update_cc_test_checks.py UTC_ARGS: --version 42// REQUIRES: riscv-registered-target3// RUN: %clang_cc1 -triple riscv64 -target-feature +zve64x \4// RUN: -target-feature +zvfbfwma -disable-O0-optnone \5// RUN: -emit-llvm %s -o - | opt -S -passes=mem2reg | \6// RUN: FileCheck --check-prefix=CHECK-RV64 %s7 8#include <riscv_vector.h>9 10// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_tu(11// CHECK-RV64-SAME: <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0:[0-9]+]] {12// CHECK-RV64-NEXT: entry:13// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)14// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]15//16vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_tu(vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {17 return __riscv_vfwmaccbf16_vv_f32mf2_tu(vd, vs1, vs2, vl);18}19 20// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_tu(21// CHECK-RV64-SAME: <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {22// CHECK-RV64-NEXT: entry:23// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)24// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]25//26vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_tu(vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {27 return __riscv_vfwmaccbf16_vf_f32mf2_tu(vd, vs1, vs2, vl);28}29 30// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_tu(31// CHECK-RV64-SAME: <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {32// CHECK-RV64-NEXT: entry:33// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)34// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]35//36vfloat32m1_t test_vfwmaccbf16_vv_f32m1_tu(vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {37 return __riscv_vfwmaccbf16_vv_f32m1_tu(vd, vs1, vs2, vl);38}39 40// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_tu(41// CHECK-RV64-SAME: <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {42// CHECK-RV64-NEXT: entry:43// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)44// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]45//46vfloat32m1_t test_vfwmaccbf16_vf_f32m1_tu(vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {47 return __riscv_vfwmaccbf16_vf_f32m1_tu(vd, vs1, vs2, vl);48}49 50// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_tu(51// CHECK-RV64-SAME: <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {52// CHECK-RV64-NEXT: entry:53// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)54// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]55//56vfloat32m2_t test_vfwmaccbf16_vv_f32m2_tu(vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {57 return __riscv_vfwmaccbf16_vv_f32m2_tu(vd, vs1, vs2, vl);58}59 60// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_tu(61// CHECK-RV64-SAME: <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {62// CHECK-RV64-NEXT: entry:63// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)64// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]65//66vfloat32m2_t test_vfwmaccbf16_vf_f32m2_tu(vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {67 return __riscv_vfwmaccbf16_vf_f32m2_tu(vd, vs1, vs2, vl);68}69 70// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_tu(71// CHECK-RV64-SAME: <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {72// CHECK-RV64-NEXT: entry:73// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)74// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]75//76vfloat32m4_t test_vfwmaccbf16_vv_f32m4_tu(vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {77 return __riscv_vfwmaccbf16_vv_f32m4_tu(vd, vs1, vs2, vl);78}79 80// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_tu(81// CHECK-RV64-SAME: <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {82// CHECK-RV64-NEXT: entry:83// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)84// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]85//86vfloat32m4_t test_vfwmaccbf16_vf_f32m4_tu(vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {87 return __riscv_vfwmaccbf16_vf_f32m4_tu(vd, vs1, vs2, vl);88}89 90// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_tu(91// CHECK-RV64-SAME: <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {92// CHECK-RV64-NEXT: entry:93// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)94// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]95//96vfloat32m8_t test_vfwmaccbf16_vv_f32m8_tu(vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {97 return __riscv_vfwmaccbf16_vv_f32m8_tu(vd, vs1, vs2, vl);98}99 100// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_tu(101// CHECK-RV64-SAME: <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {102// CHECK-RV64-NEXT: entry:103// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], i64 7, i64 [[VL]], i64 2)104// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]105//106vfloat32m8_t test_vfwmaccbf16_vf_f32m8_tu(vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {107 return __riscv_vfwmaccbf16_vf_f32m8_tu(vd, vs1, vs2, vl);108}109 110// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_tum(111// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {112// CHECK-RV64-NEXT: entry:113// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)114// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]115//116vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_tum(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {117 return __riscv_vfwmaccbf16_vv_f32mf2_tum(vm, vd, vs1, vs2, vl);118}119 120// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_tum(121// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {122// CHECK-RV64-NEXT: entry:123// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)124// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]125//126vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_tum(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {127 return __riscv_vfwmaccbf16_vf_f32mf2_tum(vm, vd, vs1, vs2, vl);128}129 130// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_tum(131// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {132// CHECK-RV64-NEXT: entry:133// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)134// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]135//136vfloat32m1_t test_vfwmaccbf16_vv_f32m1_tum(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {137 return __riscv_vfwmaccbf16_vv_f32m1_tum(vm, vd, vs1, vs2, vl);138}139 140// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_tum(141// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {142// CHECK-RV64-NEXT: entry:143// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)144// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]145//146vfloat32m1_t test_vfwmaccbf16_vf_f32m1_tum(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {147 return __riscv_vfwmaccbf16_vf_f32m1_tum(vm, vd, vs1, vs2, vl);148}149 150// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_tum(151// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {152// CHECK-RV64-NEXT: entry:153// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)154// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]155//156vfloat32m2_t test_vfwmaccbf16_vv_f32m2_tum(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {157 return __riscv_vfwmaccbf16_vv_f32m2_tum(vm, vd, vs1, vs2, vl);158}159 160// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_tum(161// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {162// CHECK-RV64-NEXT: entry:163// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)164// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]165//166vfloat32m2_t test_vfwmaccbf16_vf_f32m2_tum(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {167 return __riscv_vfwmaccbf16_vf_f32m2_tum(vm, vd, vs1, vs2, vl);168}169 170// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_tum(171// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {172// CHECK-RV64-NEXT: entry:173// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)174// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]175//176vfloat32m4_t test_vfwmaccbf16_vv_f32m4_tum(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {177 return __riscv_vfwmaccbf16_vv_f32m4_tum(vm, vd, vs1, vs2, vl);178}179 180// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_tum(181// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {182// CHECK-RV64-NEXT: entry:183// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)184// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]185//186vfloat32m4_t test_vfwmaccbf16_vf_f32m4_tum(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {187 return __riscv_vfwmaccbf16_vf_f32m4_tum(vm, vd, vs1, vs2, vl);188}189 190// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_tum(191// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {192// CHECK-RV64-NEXT: entry:193// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)194// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]195//196vfloat32m8_t test_vfwmaccbf16_vv_f32m8_tum(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {197 return __riscv_vfwmaccbf16_vv_f32m8_tum(vm, vd, vs1, vs2, vl);198}199 200// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_tum(201// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {202// CHECK-RV64-NEXT: entry:203// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 2)204// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]205//206vfloat32m8_t test_vfwmaccbf16_vf_f32m8_tum(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {207 return __riscv_vfwmaccbf16_vf_f32m8_tum(vm, vd, vs1, vs2, vl);208}209 210// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_tumu(211// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {212// CHECK-RV64-NEXT: entry:213// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)214// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]215//216vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_tumu(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {217 return __riscv_vfwmaccbf16_vv_f32mf2_tumu(vm, vd, vs1, vs2, vl);218}219 220// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_tumu(221// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {222// CHECK-RV64-NEXT: entry:223// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)224// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]225//226vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_tumu(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {227 return __riscv_vfwmaccbf16_vf_f32mf2_tumu(vm, vd, vs1, vs2, vl);228}229 230// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_tumu(231// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {232// CHECK-RV64-NEXT: entry:233// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)234// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]235//236vfloat32m1_t test_vfwmaccbf16_vv_f32m1_tumu(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {237 return __riscv_vfwmaccbf16_vv_f32m1_tumu(vm, vd, vs1, vs2, vl);238}239 240// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_tumu(241// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {242// CHECK-RV64-NEXT: entry:243// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)244// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]245//246vfloat32m1_t test_vfwmaccbf16_vf_f32m1_tumu(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {247 return __riscv_vfwmaccbf16_vf_f32m1_tumu(vm, vd, vs1, vs2, vl);248}249 250// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_tumu(251// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {252// CHECK-RV64-NEXT: entry:253// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)254// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]255//256vfloat32m2_t test_vfwmaccbf16_vv_f32m2_tumu(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {257 return __riscv_vfwmaccbf16_vv_f32m2_tumu(vm, vd, vs1, vs2, vl);258}259 260// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_tumu(261// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {262// CHECK-RV64-NEXT: entry:263// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)264// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]265//266vfloat32m2_t test_vfwmaccbf16_vf_f32m2_tumu(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {267 return __riscv_vfwmaccbf16_vf_f32m2_tumu(vm, vd, vs1, vs2, vl);268}269 270// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_tumu(271// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {272// CHECK-RV64-NEXT: entry:273// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)274// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]275//276vfloat32m4_t test_vfwmaccbf16_vv_f32m4_tumu(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {277 return __riscv_vfwmaccbf16_vv_f32m4_tumu(vm, vd, vs1, vs2, vl);278}279 280// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_tumu(281// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {282// CHECK-RV64-NEXT: entry:283// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)284// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]285//286vfloat32m4_t test_vfwmaccbf16_vf_f32m4_tumu(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {287 return __riscv_vfwmaccbf16_vf_f32m4_tumu(vm, vd, vs1, vs2, vl);288}289 290// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_tumu(291// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {292// CHECK-RV64-NEXT: entry:293// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)294// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]295//296vfloat32m8_t test_vfwmaccbf16_vv_f32m8_tumu(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {297 return __riscv_vfwmaccbf16_vv_f32m8_tumu(vm, vd, vs1, vs2, vl);298}299 300// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_tumu(301// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {302// CHECK-RV64-NEXT: entry:303// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 0)304// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]305//306vfloat32m8_t test_vfwmaccbf16_vf_f32m8_tumu(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {307 return __riscv_vfwmaccbf16_vf_f32m8_tumu(vm, vd, vs1, vs2, vl);308}309 310// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_mu(311// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {312// CHECK-RV64-NEXT: entry:313// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)314// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]315//316vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_mu(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {317 return __riscv_vfwmaccbf16_vv_f32mf2_mu(vm, vd, vs1, vs2, vl);318}319 320// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_mu(321// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {322// CHECK-RV64-NEXT: entry:323// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)324// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]325//326vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_mu(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {327 return __riscv_vfwmaccbf16_vf_f32mf2_mu(vm, vd, vs1, vs2, vl);328}329 330// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_mu(331// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {332// CHECK-RV64-NEXT: entry:333// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)334// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]335//336vfloat32m1_t test_vfwmaccbf16_vv_f32m1_mu(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {337 return __riscv_vfwmaccbf16_vv_f32m1_mu(vm, vd, vs1, vs2, vl);338}339 340// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_mu(341// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {342// CHECK-RV64-NEXT: entry:343// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)344// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]345//346vfloat32m1_t test_vfwmaccbf16_vf_f32m1_mu(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {347 return __riscv_vfwmaccbf16_vf_f32m1_mu(vm, vd, vs1, vs2, vl);348}349 350// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_mu(351// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {352// CHECK-RV64-NEXT: entry:353// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)354// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]355//356vfloat32m2_t test_vfwmaccbf16_vv_f32m2_mu(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {357 return __riscv_vfwmaccbf16_vv_f32m2_mu(vm, vd, vs1, vs2, vl);358}359 360// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_mu(361// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {362// CHECK-RV64-NEXT: entry:363// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)364// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]365//366vfloat32m2_t test_vfwmaccbf16_vf_f32m2_mu(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {367 return __riscv_vfwmaccbf16_vf_f32m2_mu(vm, vd, vs1, vs2, vl);368}369 370// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_mu(371// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {372// CHECK-RV64-NEXT: entry:373// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)374// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]375//376vfloat32m4_t test_vfwmaccbf16_vv_f32m4_mu(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {377 return __riscv_vfwmaccbf16_vv_f32m4_mu(vm, vd, vs1, vs2, vl);378}379 380// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_mu(381// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {382// CHECK-RV64-NEXT: entry:383// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)384// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]385//386vfloat32m4_t test_vfwmaccbf16_vf_f32m4_mu(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {387 return __riscv_vfwmaccbf16_vf_f32m4_mu(vm, vd, vs1, vs2, vl);388}389 390// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_mu(391// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {392// CHECK-RV64-NEXT: entry:393// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)394// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]395//396vfloat32m8_t test_vfwmaccbf16_vv_f32m8_mu(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {397 return __riscv_vfwmaccbf16_vv_f32m8_mu(vm, vd, vs1, vs2, vl);398}399 400// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_mu(401// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {402// CHECK-RV64-NEXT: entry:403// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 7, i64 [[VL]], i64 1)404// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]405//406vfloat32m8_t test_vfwmaccbf16_vf_f32m8_mu(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {407 return __riscv_vfwmaccbf16_vf_f32m8_mu(vm, vd, vs1, vs2, vl);408}409 410// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_rm_tu(411// CHECK-RV64-SAME: <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {412// CHECK-RV64-NEXT: entry:413// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)414// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]415//416vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_rm_tu(vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {417 return __riscv_vfwmaccbf16_vv_f32mf2_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);418}419 420// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_rm_tu(421// CHECK-RV64-SAME: <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {422// CHECK-RV64-NEXT: entry:423// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)424// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]425//426vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_rm_tu(vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {427 return __riscv_vfwmaccbf16_vf_f32mf2_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);428}429 430// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_rm_tu(431// CHECK-RV64-SAME: <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {432// CHECK-RV64-NEXT: entry:433// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)434// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]435//436vfloat32m1_t test_vfwmaccbf16_vv_f32m1_rm_tu(vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {437 return __riscv_vfwmaccbf16_vv_f32m1_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);438}439 440// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_rm_tu(441// CHECK-RV64-SAME: <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {442// CHECK-RV64-NEXT: entry:443// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)444// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]445//446vfloat32m1_t test_vfwmaccbf16_vf_f32m1_rm_tu(vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {447 return __riscv_vfwmaccbf16_vf_f32m1_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);448}449 450// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_rm_tu(451// CHECK-RV64-SAME: <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {452// CHECK-RV64-NEXT: entry:453// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)454// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]455//456vfloat32m2_t test_vfwmaccbf16_vv_f32m2_rm_tu(vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {457 return __riscv_vfwmaccbf16_vv_f32m2_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);458}459 460// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_rm_tu(461// CHECK-RV64-SAME: <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {462// CHECK-RV64-NEXT: entry:463// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)464// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]465//466vfloat32m2_t test_vfwmaccbf16_vf_f32m2_rm_tu(vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {467 return __riscv_vfwmaccbf16_vf_f32m2_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);468}469 470// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_rm_tu(471// CHECK-RV64-SAME: <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {472// CHECK-RV64-NEXT: entry:473// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)474// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]475//476vfloat32m4_t test_vfwmaccbf16_vv_f32m4_rm_tu(vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {477 return __riscv_vfwmaccbf16_vv_f32m4_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);478}479 480// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_rm_tu(481// CHECK-RV64-SAME: <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {482// CHECK-RV64-NEXT: entry:483// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)484// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]485//486vfloat32m4_t test_vfwmaccbf16_vf_f32m4_rm_tu(vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {487 return __riscv_vfwmaccbf16_vf_f32m4_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);488}489 490// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_rm_tu(491// CHECK-RV64-SAME: <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {492// CHECK-RV64-NEXT: entry:493// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)494// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]495//496vfloat32m8_t test_vfwmaccbf16_vv_f32m8_rm_tu(vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {497 return __riscv_vfwmaccbf16_vv_f32m8_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);498}499 500// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_rm_tu(501// CHECK-RV64-SAME: <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {502// CHECK-RV64-NEXT: entry:503// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], i64 0, i64 [[VL]], i64 2)504// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]505//506vfloat32m8_t test_vfwmaccbf16_vf_f32m8_rm_tu(vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {507 return __riscv_vfwmaccbf16_vf_f32m8_rm_tu(vd, vs1, vs2, __RISCV_FRM_RNE, vl);508}509 510// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_rm_tum(511// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {512// CHECK-RV64-NEXT: entry:513// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)514// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]515//516vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_rm_tum(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {517 return __riscv_vfwmaccbf16_vv_f32mf2_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);518}519 520// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_rm_tum(521// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {522// CHECK-RV64-NEXT: entry:523// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)524// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]525//526vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_rm_tum(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {527 return __riscv_vfwmaccbf16_vf_f32mf2_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);528}529 530// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_rm_tum(531// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {532// CHECK-RV64-NEXT: entry:533// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)534// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]535//536vfloat32m1_t test_vfwmaccbf16_vv_f32m1_rm_tum(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {537 return __riscv_vfwmaccbf16_vv_f32m1_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);538}539 540// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_rm_tum(541// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {542// CHECK-RV64-NEXT: entry:543// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)544// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]545//546vfloat32m1_t test_vfwmaccbf16_vf_f32m1_rm_tum(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {547 return __riscv_vfwmaccbf16_vf_f32m1_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);548}549 550// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_rm_tum(551// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {552// CHECK-RV64-NEXT: entry:553// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)554// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]555//556vfloat32m2_t test_vfwmaccbf16_vv_f32m2_rm_tum(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {557 return __riscv_vfwmaccbf16_vv_f32m2_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);558}559 560// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_rm_tum(561// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {562// CHECK-RV64-NEXT: entry:563// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)564// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]565//566vfloat32m2_t test_vfwmaccbf16_vf_f32m2_rm_tum(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {567 return __riscv_vfwmaccbf16_vf_f32m2_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);568}569 570// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_rm_tum(571// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {572// CHECK-RV64-NEXT: entry:573// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)574// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]575//576vfloat32m4_t test_vfwmaccbf16_vv_f32m4_rm_tum(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {577 return __riscv_vfwmaccbf16_vv_f32m4_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);578}579 580// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_rm_tum(581// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {582// CHECK-RV64-NEXT: entry:583// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)584// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]585//586vfloat32m4_t test_vfwmaccbf16_vf_f32m4_rm_tum(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {587 return __riscv_vfwmaccbf16_vf_f32m4_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);588}589 590// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_rm_tum(591// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {592// CHECK-RV64-NEXT: entry:593// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)594// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]595//596vfloat32m8_t test_vfwmaccbf16_vv_f32m8_rm_tum(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {597 return __riscv_vfwmaccbf16_vv_f32m8_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);598}599 600// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_rm_tum(601// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {602// CHECK-RV64-NEXT: entry:603// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 2)604// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]605//606vfloat32m8_t test_vfwmaccbf16_vf_f32m8_rm_tum(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {607 return __riscv_vfwmaccbf16_vf_f32m8_rm_tum(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);608}609 610// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_rm_tumu(611// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {612// CHECK-RV64-NEXT: entry:613// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)614// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]615//616vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_rm_tumu(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {617 return __riscv_vfwmaccbf16_vv_f32mf2_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);618}619 620// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_rm_tumu(621// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {622// CHECK-RV64-NEXT: entry:623// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)624// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]625//626vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_rm_tumu(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {627 return __riscv_vfwmaccbf16_vf_f32mf2_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);628}629 630// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_rm_tumu(631// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {632// CHECK-RV64-NEXT: entry:633// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)634// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]635//636vfloat32m1_t test_vfwmaccbf16_vv_f32m1_rm_tumu(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {637 return __riscv_vfwmaccbf16_vv_f32m1_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);638}639 640// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_rm_tumu(641// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {642// CHECK-RV64-NEXT: entry:643// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)644// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]645//646vfloat32m1_t test_vfwmaccbf16_vf_f32m1_rm_tumu(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {647 return __riscv_vfwmaccbf16_vf_f32m1_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);648}649 650// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_rm_tumu(651// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {652// CHECK-RV64-NEXT: entry:653// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)654// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]655//656vfloat32m2_t test_vfwmaccbf16_vv_f32m2_rm_tumu(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {657 return __riscv_vfwmaccbf16_vv_f32m2_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);658}659 660// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_rm_tumu(661// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {662// CHECK-RV64-NEXT: entry:663// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)664// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]665//666vfloat32m2_t test_vfwmaccbf16_vf_f32m2_rm_tumu(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {667 return __riscv_vfwmaccbf16_vf_f32m2_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);668}669 670// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_rm_tumu(671// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {672// CHECK-RV64-NEXT: entry:673// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)674// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]675//676vfloat32m4_t test_vfwmaccbf16_vv_f32m4_rm_tumu(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {677 return __riscv_vfwmaccbf16_vv_f32m4_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);678}679 680// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_rm_tumu(681// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {682// CHECK-RV64-NEXT: entry:683// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)684// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]685//686vfloat32m4_t test_vfwmaccbf16_vf_f32m4_rm_tumu(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {687 return __riscv_vfwmaccbf16_vf_f32m4_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);688}689 690// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_rm_tumu(691// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {692// CHECK-RV64-NEXT: entry:693// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)694// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]695//696vfloat32m8_t test_vfwmaccbf16_vv_f32m8_rm_tumu(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {697 return __riscv_vfwmaccbf16_vv_f32m8_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);698}699 700// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_rm_tumu(701// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {702// CHECK-RV64-NEXT: entry:703// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 0)704// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]705//706vfloat32m8_t test_vfwmaccbf16_vf_f32m8_rm_tumu(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {707 return __riscv_vfwmaccbf16_vf_f32m8_rm_tumu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);708}709 710// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vv_f32mf2_rm_mu(711// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], <vscale x 1 x bfloat> [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {712// CHECK-RV64-NEXT: entry:713// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.nxv1bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], <vscale x 1 x bfloat> [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)714// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]715//716vfloat32mf2_t test_vfwmaccbf16_vv_f32mf2_rm_mu(vbool64_t vm, vfloat32mf2_t vd, vbfloat16mf4_t vs1, vbfloat16mf4_t vs2, size_t vl) {717 return __riscv_vfwmaccbf16_vv_f32mf2_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);718}719 720// CHECK-RV64-LABEL: define dso_local <vscale x 1 x float> @test_vfwmaccbf16_vf_f32mf2_rm_mu(721// CHECK-RV64-SAME: <vscale x 1 x i1> [[VM:%.*]], <vscale x 1 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 1 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {722// CHECK-RV64-NEXT: entry:723// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 1 x float> @llvm.riscv.vfwmaccbf16.mask.nxv1f32.bf16.nxv1bf16.i64(<vscale x 1 x float> [[VD]], bfloat [[VS1]], <vscale x 1 x bfloat> [[VS2]], <vscale x 1 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)724// CHECK-RV64-NEXT: ret <vscale x 1 x float> [[TMP0]]725//726vfloat32mf2_t test_vfwmaccbf16_vf_f32mf2_rm_mu(vbool64_t vm, vfloat32mf2_t vd, __bf16 vs1, vbfloat16mf4_t vs2, size_t vl) {727 return __riscv_vfwmaccbf16_vf_f32mf2_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);728}729 730// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vv_f32m1_rm_mu(731// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], <vscale x 2 x bfloat> [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {732// CHECK-RV64-NEXT: entry:733// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.nxv2bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], <vscale x 2 x bfloat> [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)734// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]735//736vfloat32m1_t test_vfwmaccbf16_vv_f32m1_rm_mu(vbool32_t vm, vfloat32m1_t vd, vbfloat16mf2_t vs1, vbfloat16mf2_t vs2, size_t vl) {737 return __riscv_vfwmaccbf16_vv_f32m1_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);738}739 740// CHECK-RV64-LABEL: define dso_local <vscale x 2 x float> @test_vfwmaccbf16_vf_f32m1_rm_mu(741// CHECK-RV64-SAME: <vscale x 2 x i1> [[VM:%.*]], <vscale x 2 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 2 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {742// CHECK-RV64-NEXT: entry:743// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 2 x float> @llvm.riscv.vfwmaccbf16.mask.nxv2f32.bf16.nxv2bf16.i64(<vscale x 2 x float> [[VD]], bfloat [[VS1]], <vscale x 2 x bfloat> [[VS2]], <vscale x 2 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)744// CHECK-RV64-NEXT: ret <vscale x 2 x float> [[TMP0]]745//746vfloat32m1_t test_vfwmaccbf16_vf_f32m1_rm_mu(vbool32_t vm, vfloat32m1_t vd, __bf16 vs1, vbfloat16mf2_t vs2, size_t vl) {747 return __riscv_vfwmaccbf16_vf_f32m1_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);748}749 750// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vv_f32m2_rm_mu(751// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], <vscale x 4 x bfloat> [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {752// CHECK-RV64-NEXT: entry:753// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.nxv4bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], <vscale x 4 x bfloat> [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)754// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]755//756vfloat32m2_t test_vfwmaccbf16_vv_f32m2_rm_mu(vbool16_t vm, vfloat32m2_t vd, vbfloat16m1_t vs1, vbfloat16m1_t vs2, size_t vl) {757 return __riscv_vfwmaccbf16_vv_f32m2_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);758}759 760// CHECK-RV64-LABEL: define dso_local <vscale x 4 x float> @test_vfwmaccbf16_vf_f32m2_rm_mu(761// CHECK-RV64-SAME: <vscale x 4 x i1> [[VM:%.*]], <vscale x 4 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 4 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {762// CHECK-RV64-NEXT: entry:763// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 4 x float> @llvm.riscv.vfwmaccbf16.mask.nxv4f32.bf16.nxv4bf16.i64(<vscale x 4 x float> [[VD]], bfloat [[VS1]], <vscale x 4 x bfloat> [[VS2]], <vscale x 4 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)764// CHECK-RV64-NEXT: ret <vscale x 4 x float> [[TMP0]]765//766vfloat32m2_t test_vfwmaccbf16_vf_f32m2_rm_mu(vbool16_t vm, vfloat32m2_t vd, __bf16 vs1, vbfloat16m1_t vs2, size_t vl) {767 return __riscv_vfwmaccbf16_vf_f32m2_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);768}769 770// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vv_f32m4_rm_mu(771// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], <vscale x 8 x bfloat> [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {772// CHECK-RV64-NEXT: entry:773// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.nxv8bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], <vscale x 8 x bfloat> [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)774// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]775//776vfloat32m4_t test_vfwmaccbf16_vv_f32m4_rm_mu(vbool8_t vm, vfloat32m4_t vd, vbfloat16m2_t vs1, vbfloat16m2_t vs2, size_t vl) {777 return __riscv_vfwmaccbf16_vv_f32m4_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);778}779 780// CHECK-RV64-LABEL: define dso_local <vscale x 8 x float> @test_vfwmaccbf16_vf_f32m4_rm_mu(781// CHECK-RV64-SAME: <vscale x 8 x i1> [[VM:%.*]], <vscale x 8 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 8 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {782// CHECK-RV64-NEXT: entry:783// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 8 x float> @llvm.riscv.vfwmaccbf16.mask.nxv8f32.bf16.nxv8bf16.i64(<vscale x 8 x float> [[VD]], bfloat [[VS1]], <vscale x 8 x bfloat> [[VS2]], <vscale x 8 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)784// CHECK-RV64-NEXT: ret <vscale x 8 x float> [[TMP0]]785//786vfloat32m4_t test_vfwmaccbf16_vf_f32m4_rm_mu(vbool8_t vm, vfloat32m4_t vd, __bf16 vs1, vbfloat16m2_t vs2, size_t vl) {787 return __riscv_vfwmaccbf16_vf_f32m4_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);788}789 790// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vv_f32m8_rm_mu(791// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], <vscale x 16 x bfloat> [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {792// CHECK-RV64-NEXT: entry:793// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.nxv16bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], <vscale x 16 x bfloat> [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)794// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]795//796vfloat32m8_t test_vfwmaccbf16_vv_f32m8_rm_mu(vbool4_t vm, vfloat32m8_t vd, vbfloat16m4_t vs1, vbfloat16m4_t vs2, size_t vl) {797 return __riscv_vfwmaccbf16_vv_f32m8_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);798}799 800// CHECK-RV64-LABEL: define dso_local <vscale x 16 x float> @test_vfwmaccbf16_vf_f32m8_rm_mu(801// CHECK-RV64-SAME: <vscale x 16 x i1> [[VM:%.*]], <vscale x 16 x float> [[VD:%.*]], bfloat noundef [[VS1:%.*]], <vscale x 16 x bfloat> [[VS2:%.*]], i64 noundef [[VL:%.*]]) #[[ATTR0]] {802// CHECK-RV64-NEXT: entry:803// CHECK-RV64-NEXT: [[TMP0:%.*]] = call <vscale x 16 x float> @llvm.riscv.vfwmaccbf16.mask.nxv16f32.bf16.nxv16bf16.i64(<vscale x 16 x float> [[VD]], bfloat [[VS1]], <vscale x 16 x bfloat> [[VS2]], <vscale x 16 x i1> [[VM]], i64 0, i64 [[VL]], i64 1)804// CHECK-RV64-NEXT: ret <vscale x 16 x float> [[TMP0]]805//806vfloat32m8_t test_vfwmaccbf16_vf_f32m8_rm_mu(vbool4_t vm, vfloat32m8_t vd, __bf16 vs1, vbfloat16m4_t vs2, size_t vl) {807 return __riscv_vfwmaccbf16_vf_f32m8_rm_mu(vm, vd, vs1, vs2, __RISCV_FRM_RNE, vl);808}809