// NOTE: Assertions have been autogenerated by utils/update_cc_test_checks.py // REQUIRES: riscv-registered-target // RUN: %clang_cc1 -triple riscv64 -target-feature +f -target-feature +d \ // RUN: -target-feature +v -target-feature +zfh -target-feature +experimental-zvfh \ // RUN: -disable-O0-optnone -emit-llvm %s -o - | opt -S -mem2reg | FileCheck --check-prefix=CHECK-RV64 %s #include // CHECK-RV64-LABEL: @test_vfmax_vv_f32mf2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f32.nxv1f32.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32mf2_t test_vfmax_vv_f32mf2(vfloat32mf2_t op1, vfloat32mf2_t op2, size_t vl) { return vfmax_vv_f32mf2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32mf2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f32.f32.i64( undef, [[OP1:%.*]], float [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32mf2_t test_vfmax_vf_f32mf2(vfloat32mf2_t op1, float op2, size_t vl) { return vfmax_vf_f32mf2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f32.nxv2f32.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m1_t test_vfmax_vv_f32m1(vfloat32m1_t op1, vfloat32m1_t op2, size_t vl) { return vfmax_vv_f32m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f32.f32.i64( undef, [[OP1:%.*]], float [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m1_t test_vfmax_vf_f32m1(vfloat32m1_t op1, float op2, size_t vl) { return vfmax_vf_f32m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f32.nxv4f32.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m2_t test_vfmax_vv_f32m2(vfloat32m2_t op1, vfloat32m2_t op2, size_t vl) { return vfmax_vv_f32m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f32.f32.i64( undef, [[OP1:%.*]], float [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m2_t test_vfmax_vf_f32m2(vfloat32m2_t op1, float op2, size_t vl) { return vfmax_vf_f32m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f32.nxv8f32.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m4_t test_vfmax_vv_f32m4(vfloat32m4_t op1, vfloat32m4_t op2, size_t vl) { return vfmax_vv_f32m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f32.f32.i64( undef, [[OP1:%.*]], float [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m4_t test_vfmax_vf_f32m4(vfloat32m4_t op1, float op2, size_t vl) { return vfmax_vf_f32m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv16f32.nxv16f32.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m8_t test_vfmax_vv_f32m8(vfloat32m8_t op1, vfloat32m8_t op2, size_t vl) { return vfmax_vv_f32m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv16f32.f32.i64( undef, [[OP1:%.*]], float [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m8_t test_vfmax_vf_f32m8(vfloat32m8_t op1, float op2, size_t vl) { return vfmax_vf_f32m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f64.nxv1f64.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m1_t test_vfmax_vv_f64m1(vfloat64m1_t op1, vfloat64m1_t op2, size_t vl) { return vfmax_vv_f64m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f64.f64.i64( undef, [[OP1:%.*]], double [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m1_t test_vfmax_vf_f64m1(vfloat64m1_t op1, double op2, size_t vl) { return vfmax_vf_f64m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f64.nxv2f64.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m2_t test_vfmax_vv_f64m2(vfloat64m2_t op1, vfloat64m2_t op2, size_t vl) { return vfmax_vv_f64m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f64.f64.i64( undef, [[OP1:%.*]], double [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m2_t test_vfmax_vf_f64m2(vfloat64m2_t op1, double op2, size_t vl) { return vfmax_vf_f64m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f64.nxv4f64.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m4_t test_vfmax_vv_f64m4(vfloat64m4_t op1, vfloat64m4_t op2, size_t vl) { return vfmax_vv_f64m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f64.f64.i64( undef, [[OP1:%.*]], double [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m4_t test_vfmax_vf_f64m4(vfloat64m4_t op1, double op2, size_t vl) { return vfmax_vf_f64m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f64.nxv8f64.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m8_t test_vfmax_vv_f64m8(vfloat64m8_t op1, vfloat64m8_t op2, size_t vl) { return vfmax_vv_f64m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f64.f64.i64( undef, [[OP1:%.*]], double [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m8_t test_vfmax_vf_f64m8(vfloat64m8_t op1, double op2, size_t vl) { return vfmax_vf_f64m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32mf2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f32.nxv1f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32mf2_t test_vfmax_vv_f32mf2_m(vbool64_t mask, vfloat32mf2_t maskedoff, vfloat32mf2_t op1, vfloat32mf2_t op2, size_t vl) { return vfmax_vv_f32mf2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32mf2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f32.f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], float [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32mf2_t test_vfmax_vf_f32mf2_m(vbool64_t mask, vfloat32mf2_t maskedoff, vfloat32mf2_t op1, float op2, size_t vl) { return vfmax_vf_f32mf2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f32.nxv2f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m1_t test_vfmax_vv_f32m1_m(vbool32_t mask, vfloat32m1_t maskedoff, vfloat32m1_t op1, vfloat32m1_t op2, size_t vl) { return vfmax_vv_f32m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f32.f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], float [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m1_t test_vfmax_vf_f32m1_m(vbool32_t mask, vfloat32m1_t maskedoff, vfloat32m1_t op1, float op2, size_t vl) { return vfmax_vf_f32m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f32.nxv4f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m2_t test_vfmax_vv_f32m2_m(vbool16_t mask, vfloat32m2_t maskedoff, vfloat32m2_t op1, vfloat32m2_t op2, size_t vl) { return vfmax_vv_f32m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f32.f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], float [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m2_t test_vfmax_vf_f32m2_m(vbool16_t mask, vfloat32m2_t maskedoff, vfloat32m2_t op1, float op2, size_t vl) { return vfmax_vf_f32m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f32.nxv8f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m4_t test_vfmax_vv_f32m4_m(vbool8_t mask, vfloat32m4_t maskedoff, vfloat32m4_t op1, vfloat32m4_t op2, size_t vl) { return vfmax_vv_f32m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f32.f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], float [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m4_t test_vfmax_vf_f32m4_m(vbool8_t mask, vfloat32m4_t maskedoff, vfloat32m4_t op1, float op2, size_t vl) { return vfmax_vf_f32m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f32m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv16f32.nxv16f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m8_t test_vfmax_vv_f32m8_m(vbool4_t mask, vfloat32m8_t maskedoff, vfloat32m8_t op1, vfloat32m8_t op2, size_t vl) { return vfmax_vv_f32m8_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f32m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv16f32.f32.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], float [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat32m8_t test_vfmax_vf_f32m8_m(vbool4_t mask, vfloat32m8_t maskedoff, vfloat32m8_t op1, float op2, size_t vl) { return vfmax_vf_f32m8_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f64.nxv1f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m1_t test_vfmax_vv_f64m1_m(vbool64_t mask, vfloat64m1_t maskedoff, vfloat64m1_t op1, vfloat64m1_t op2, size_t vl) { return vfmax_vv_f64m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f64.f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], double [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m1_t test_vfmax_vf_f64m1_m(vbool64_t mask, vfloat64m1_t maskedoff, vfloat64m1_t op1, double op2, size_t vl) { return vfmax_vf_f64m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f64.nxv2f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m2_t test_vfmax_vv_f64m2_m(vbool32_t mask, vfloat64m2_t maskedoff, vfloat64m2_t op1, vfloat64m2_t op2, size_t vl) { return vfmax_vv_f64m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f64.f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], double [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m2_t test_vfmax_vf_f64m2_m(vbool32_t mask, vfloat64m2_t maskedoff, vfloat64m2_t op1, double op2, size_t vl) { return vfmax_vf_f64m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f64.nxv4f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m4_t test_vfmax_vv_f64m4_m(vbool16_t mask, vfloat64m4_t maskedoff, vfloat64m4_t op1, vfloat64m4_t op2, size_t vl) { return vfmax_vv_f64m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f64.f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], double [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m4_t test_vfmax_vf_f64m4_m(vbool16_t mask, vfloat64m4_t maskedoff, vfloat64m4_t op1, double op2, size_t vl) { return vfmax_vf_f64m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f64m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f64.nxv8f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m8_t test_vfmax_vv_f64m8_m(vbool8_t mask, vfloat64m8_t maskedoff, vfloat64m8_t op1, vfloat64m8_t op2, size_t vl) { return vfmax_vv_f64m8_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f64m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f64.f64.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], double [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat64m8_t test_vfmax_vf_f64m8_m(vbool8_t mask, vfloat64m8_t maskedoff, vfloat64m8_t op1, double op2, size_t vl) { return vfmax_vf_f64m8_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16mf4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f16.nxv1f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf4_t test_vfmax_vv_f16mf4 (vfloat16mf4_t op1, vfloat16mf4_t op2, size_t vl) { return vfmax_vv_f16mf4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16mf4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv1f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf4_t test_vfmax_vf_f16mf4 (vfloat16mf4_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16mf4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16mf2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f16.nxv2f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf2_t test_vfmax_vv_f16mf2 (vfloat16mf2_t op1, vfloat16mf2_t op2, size_t vl) { return vfmax_vv_f16mf2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16mf2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv2f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf2_t test_vfmax_vf_f16mf2 (vfloat16mf2_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16mf2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f16.nxv4f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m1_t test_vfmax_vv_f16m1 (vfloat16m1_t op1, vfloat16m1_t op2, size_t vl) { return vfmax_vv_f16m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m1( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv4f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m1_t test_vfmax_vf_f16m1 (vfloat16m1_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m1(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f16.nxv8f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m2_t test_vfmax_vv_f16m2 (vfloat16m2_t op1, vfloat16m2_t op2, size_t vl) { return vfmax_vv_f16m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m2( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv8f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m2_t test_vfmax_vf_f16m2 (vfloat16m2_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m2(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv16f16.nxv16f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m4_t test_vfmax_vv_f16m4 (vfloat16m4_t op1, vfloat16m4_t op2, size_t vl) { return vfmax_vv_f16m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m4( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv16f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m4_t test_vfmax_vf_f16m4 (vfloat16m4_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m4(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv32f16.nxv32f16.i64( undef, [[OP1:%.*]], [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m8_t test_vfmax_vv_f16m8 (vfloat16m8_t op1, vfloat16m8_t op2, size_t vl) { return vfmax_vv_f16m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m8( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.nxv32f16.f16.i64( undef, [[OP1:%.*]], half [[OP2:%.*]], i64 [[VL:%.*]]) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m8_t test_vfmax_vf_f16m8 (vfloat16m8_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m8(op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16mf4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f16.nxv1f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf4_t test_vfmax_vv_f16mf4_m (vbool64_t mask, vfloat16mf4_t maskedoff, vfloat16mf4_t op1, vfloat16mf4_t op2, size_t vl) { return vfmax_vv_f16mf4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16mf4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv1f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf4_t test_vfmax_vf_f16mf4_m (vbool64_t mask, vfloat16mf4_t maskedoff, vfloat16mf4_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16mf4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16mf2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f16.nxv2f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf2_t test_vfmax_vv_f16mf2_m (vbool32_t mask, vfloat16mf2_t maskedoff, vfloat16mf2_t op1, vfloat16mf2_t op2, size_t vl) { return vfmax_vv_f16mf2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16mf2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv2f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16mf2_t test_vfmax_vf_f16mf2_m (vbool32_t mask, vfloat16mf2_t maskedoff, vfloat16mf2_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16mf2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f16.nxv4f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m1_t test_vfmax_vv_f16m1_m (vbool16_t mask, vfloat16m1_t maskedoff, vfloat16m1_t op1, vfloat16m1_t op2, size_t vl) { return vfmax_vv_f16m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m1_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv4f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m1_t test_vfmax_vf_f16m1_m (vbool16_t mask, vfloat16m1_t maskedoff, vfloat16m1_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m1_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f16.nxv8f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m2_t test_vfmax_vv_f16m2_m (vbool8_t mask, vfloat16m2_t maskedoff, vfloat16m2_t op1, vfloat16m2_t op2, size_t vl) { return vfmax_vv_f16m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m2_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv8f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m2_t test_vfmax_vf_f16m2_m (vbool8_t mask, vfloat16m2_t maskedoff, vfloat16m2_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m2_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv16f16.nxv16f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m4_t test_vfmax_vv_f16m4_m (vbool4_t mask, vfloat16m4_t maskedoff, vfloat16m4_t op1, vfloat16m4_t op2, size_t vl) { return vfmax_vv_f16m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m4_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv16f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m4_t test_vfmax_vf_f16m4_m (vbool4_t mask, vfloat16m4_t maskedoff, vfloat16m4_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m4_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vv_f16m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv32f16.nxv32f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m8_t test_vfmax_vv_f16m8_m (vbool2_t mask, vfloat16m8_t maskedoff, vfloat16m8_t op1, vfloat16m8_t op2, size_t vl) { return vfmax_vv_f16m8_m(mask, maskedoff, op1, op2, vl); } // CHECK-RV64-LABEL: @test_vfmax_vf_f16m8_m( // CHECK-RV64-NEXT: entry: // CHECK-RV64-NEXT: [[TMP0:%.*]] = call @llvm.riscv.vfmax.mask.nxv32f16.f16.i64( [[MASKEDOFF:%.*]], [[OP1:%.*]], half [[OP2:%.*]], [[MASK:%.*]], i64 [[VL:%.*]], i64 0) // CHECK-RV64-NEXT: ret [[TMP0]] // vfloat16m8_t test_vfmax_vf_f16m8_m (vbool2_t mask, vfloat16m8_t maskedoff, vfloat16m8_t op1, _Float16 op2, size_t vl) { return vfmax_vf_f16m8_m(mask, maskedoff, op1, op2, vl); }