1 // NOTE: Assertions have been autogenerated by utils/update_cc_test_checks.py 2 // RUN: %clang_cc1 -no-opaque-pointers %s -emit-llvm -ffp-exception-behavior=maytrap -fallow-half-arguments-and-returns -o - -triple x86_64-unknown-unknown | FileCheck %s 3 4 // Test that the constrained intrinsics are picking up the exception 5 // metadata from the AST instead of the global default from the command line. 6 // FIXME: these functions shouldn't trap on SNaN. 7 8 #pragma float_control(except, on) 9 10 int printf(const char *, ...); 11 12 // CHECK-LABEL: @p( 13 // CHECK-NEXT: entry: 14 // CHECK-NEXT: [[STR_ADDR:%.*]] = alloca i8*, align 8 15 // CHECK-NEXT: [[X_ADDR:%.*]] = alloca i32, align 4 16 // CHECK-NEXT: store i8* [[STR:%.*]], i8** [[STR_ADDR]], align 8 17 // CHECK-NEXT: store i32 [[X:%.*]], i32* [[X_ADDR]], align 4 18 // CHECK-NEXT: [[TMP0:%.*]] = load i8*, i8** [[STR_ADDR]], align 8 19 // CHECK-NEXT: [[TMP1:%.*]] = load i32, i32* [[X_ADDR]], align 4 20 // CHECK-NEXT: [[CALL:%.*]] = call i32 (i8*, ...) @printf(i8* noundef getelementptr inbounds ([8 x i8], [8 x i8]* @.str, i64 0, i64 0), i8* noundef [[TMP0]], i32 noundef [[TMP1]]) [[ATTR4:#.*]] 21 // CHECK-NEXT: ret void 22 // 23 void p(char *str, int x) { 24 printf("%s: %d\n", str, x); 25 } 26 27 #define P(n,args) p(#n #args, __builtin_##n args) 28 29 // CHECK-LABEL: @test_fpclassify( 30 // CHECK-NEXT: entry: 31 // CHECK-NEXT: [[D_ADDR:%.*]] = alloca double, align 8 32 // CHECK-NEXT: store double [[D:%.*]], double* [[D_ADDR]], align 8 33 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[D_ADDR]], align 8 34 // CHECK-NEXT: [[ISZERO:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP0]], double 0.000000e+00, metadata !"oeq", metadata !"fpexcept.strict") [[ATTR4]] 35 // CHECK-NEXT: br i1 [[ISZERO]], label [[FPCLASSIFY_END:%.*]], label [[FPCLASSIFY_NOT_ZERO:%.*]] 36 // CHECK: fpclassify_end: 37 // CHECK-NEXT: [[FPCLASSIFY_RESULT:%.*]] = phi i32 [ 4, [[ENTRY:%.*]] ], [ 0, [[FPCLASSIFY_NOT_ZERO]] ], [ 1, [[FPCLASSIFY_NOT_NAN:%.*]] ], [ [[TMP2:%.*]], [[FPCLASSIFY_NOT_INF:%.*]] ] 38 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([29 x i8], [29 x i8]* @.str.1, i64 0, i64 0), i32 noundef [[FPCLASSIFY_RESULT]]) [[ATTR4]] 39 // CHECK-NEXT: ret void 40 // CHECK: fpclassify_not_zero: 41 // CHECK-NEXT: [[CMP:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP0]], double [[TMP0]], metadata !"uno", metadata !"fpexcept.strict") [[ATTR4]] 42 // CHECK-NEXT: br i1 [[CMP]], label [[FPCLASSIFY_END]], label [[FPCLASSIFY_NOT_NAN]] 43 // CHECK: fpclassify_not_nan: 44 // CHECK-NEXT: [[TMP1:%.*]] = call double @llvm.fabs.f64(double [[TMP0]]) [[ATTR5:#.*]] 45 // CHECK-NEXT: [[ISINF:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP1]], double 0x7FF0000000000000, metadata !"oeq", metadata !"fpexcept.strict") [[ATTR4]] 46 // CHECK-NEXT: br i1 [[ISINF]], label [[FPCLASSIFY_END]], label [[FPCLASSIFY_NOT_INF]] 47 // CHECK: fpclassify_not_inf: 48 // CHECK-NEXT: [[ISNORMAL:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP1]], double 0x10000000000000, metadata !"uge", metadata !"fpexcept.strict") [[ATTR4]] 49 // CHECK-NEXT: [[TMP2]] = select i1 [[ISNORMAL]], i32 2, i32 3 50 // CHECK-NEXT: br label [[FPCLASSIFY_END]] 51 // 52 void test_fpclassify(double d) { 53 P(fpclassify, (0, 1, 2, 3, 4, d)); 54 55 return; 56 } 57 58 // CHECK-LABEL: @test_fp16_isinf( 59 // CHECK-NEXT: entry: 60 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca half, align 2 61 // CHECK-NEXT: store half [[H:%.*]], half* [[LD_ADDR]], align 2 62 // CHECK-NEXT: [[TMP0:%.*]] = load half, half* [[LD_ADDR]], align 2 63 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast half [[TMP0]] to i16 64 // CHECK-NEXT: [[SHL1:%.*]] = shl i16 [[BITCAST]], 1 65 // CHECK-NEXT: [[CMP:%.*]] = icmp eq i16 [[SHL1]], -2048 66 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 67 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:2]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 68 // CHECK-NEXT: ret void 69 // 70 void test_fp16_isinf(__fp16 h) { 71 P(isinf, (h)); 72 73 return; 74 } 75 76 // CHECK-LABEL: @test_float_isinf( 77 // CHECK-NEXT: entry: 78 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca float, align 4 79 // CHECK-NEXT: store float [[F:%.*]], float* [[LD_ADDR]], align 4 80 // CHECK-NEXT: [[TMP0:%.*]] = load float, float* [[LD_ADDR]], align 4 81 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast float [[TMP0]] to i32 82 // CHECK-NEXT: [[SHL1:%.*]] = shl i32 [[BITCAST]], 1 83 // CHECK-NEXT: [[CMP:%.*]] = icmp eq i32 [[SHL1]], -16777216 84 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 85 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 86 // CHECK-NEXT: ret void 87 // 88 void test_float_isinf(float f) { 89 P(isinf, (f)); 90 91 return; 92 } 93 94 // CHECK-LABEL: @test_double_isinf( 95 // CHECK-NEXT: entry: 96 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca double, align 8 97 // CHECK-NEXT: store double [[D:%.*]], double* [[LD_ADDR]], align 8 98 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[LD_ADDR]], align 8 99 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast double [[TMP0]] to i64 100 // CHECK-NEXT: [[SHL1:%.*]] = shl i64 [[BITCAST]], 1 101 // CHECK-NEXT: [[CMP:%.*]] = icmp eq i64 [[SHL1]], -9007199254740992 102 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 103 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 104 // CHECK-NEXT: ret void 105 // 106 void test_double_isinf(double d) { 107 P(isinf, (d)); 108 109 return; 110 } 111 112 // CHECK-LABEL: @test_fp16_isfinite( 113 // CHECK-NEXT: entry: 114 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca half, align 2 115 // CHECK-NEXT: store half [[H:%.*]], half* [[LD_ADDR]], align 2 116 // CHECK-NEXT: [[TMP0:%.*]] = load half, half* [[LD_ADDR]], align 2 117 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast half [[TMP0]] to i16 118 // CHECK-NEXT: [[SHL1:%.*]] = shl i16 [[BITCAST]], 1 119 // CHECK-NEXT: [[CMP:%.*]] = icmp ult i16 [[SHL1]], -2048 120 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 121 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([12 x i8], [12 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 122 // CHECK-NEXT: ret void 123 // 124 void test_fp16_isfinite(__fp16 h) { 125 P(isfinite, (h)); 126 127 return; 128 } 129 130 // CHECK-LABEL: @test_float_isfinite( 131 // CHECK-NEXT: entry: 132 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca float, align 4 133 // CHECK-NEXT: store float [[F:%.*]], float* [[LD_ADDR]], align 4 134 // CHECK-NEXT: [[TMP0:%.*]] = load float, float* [[LD_ADDR]], align 4 135 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast float [[TMP0]] to i32 136 // CHECK-NEXT: [[SHL1:%.*]] = shl i32 [[BITCAST]], 1 137 // CHECK-NEXT: [[CMP:%.*]] = icmp ult i32 [[SHL1]], -16777216 138 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 139 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([12 x i8], [12 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 140 // CHECK-NEXT: ret void 141 // 142 void test_float_isfinite(float f) { 143 P(isfinite, (f)); 144 145 return; 146 } 147 148 // CHECK-LABEL: @test_double_isfinite( 149 // CHECK-NEXT: entry: 150 // CHECK-NEXT: [[LD_ADDR:%.*]] = alloca double, align 8 151 // CHECK-NEXT: store double [[D:%.*]], double* [[LD_ADDR]], align 8 152 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[LD_ADDR]], align 8 153 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast double [[TMP0]] to i64 154 // CHECK-NEXT: [[SHL1:%.*]] = shl i64 [[BITCAST]], 1 155 // CHECK-NEXT: [[CMP:%.*]] = icmp ult i64 [[SHL1]], -9007199254740992 156 // CHECK-NEXT: [[RES:%.*]] = zext i1 [[CMP]] to i32 157 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([12 x i8], [12 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 158 // CHECK-NEXT: ret void 159 // 160 void test_double_isfinite(double d) { 161 P(isfinite, (d)); 162 163 return; 164 } 165 166 // CHECK-LABEL: @test_isinf_sign( 167 // CHECK-NEXT: entry: 168 // CHECK-NEXT: [[D_ADDR:%.*]] = alloca double, align 8 169 // CHECK-NEXT: store double [[D:%.*]], double* [[D_ADDR]], align 8 170 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[D_ADDR]], align 8 171 // CHECK-NEXT: [[TMP1:%.*]] = call double @llvm.fabs.f64(double [[TMP0]]) [[ATTR5]] 172 // CHECK-NEXT: [[ISINF:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP1]], double 0x7FF0000000000000, metadata !"oeq", metadata !"fpexcept.strict") [[ATTR4]] 173 // CHECK-NEXT: [[TMP2:%.*]] = bitcast double [[TMP0]] to i64 174 // CHECK-NEXT: [[TMP3:%.*]] = icmp slt i64 [[TMP2]], 0 175 // CHECK-NEXT: [[TMP4:%.*]] = select i1 [[TMP3]], i32 -1, i32 1 176 // CHECK-NEXT: [[TMP5:%.*]] = select i1 [[ISINF]], i32 [[TMP4]], i32 0 177 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([14 x i8], [14 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[TMP5]]) [[ATTR4]] 178 // CHECK-NEXT: ret void 179 // 180 void test_isinf_sign(double d) { 181 P(isinf_sign, (d)); 182 183 return; 184 } 185 186 // CHECK-LABEL: @test_fp16_isnan( 187 // CHECK-NEXT: entry: 188 // CHECK-NEXT: [[H_ADDR:%.*]] = alloca half, align 2 189 // CHECK-NEXT: store half [[H:%.*]], half* [[H_ADDR]], align 2 190 // CHECK-NEXT: [[TMP0:%.*]] = load half, half* [[H_ADDR]], align 2 191 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast half [[TMP0]] to i16 192 // CHECK-NEXT: [[ABS:%.*]] = and i16 [[BITCAST]], [[#%u,0x7FFF]] 193 // CHECK-NEXT: [[TMP1:%.*]] = sub i16 [[#%u,0x7C00]], [[ABS]] 194 // CHECK-NEXT: [[ISNAN:%.*]] = lshr i16 [[TMP1]], 15 195 // CHECK-NEXT: [[RES:%.*]] = zext i16 [[ISNAN]] to i32 196 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 197 // CHECK-NEXT: ret void 198 // 199 void test_fp16_isnan(__fp16 h) { 200 P(isnan, (h)); 201 202 return; 203 } 204 205 // CHECK-LABEL: @test_float_isnan( 206 // CHECK-NEXT: entry: 207 // CHECK-NEXT: [[F_ADDR:%.*]] = alloca float, align 4 208 // CHECK-NEXT: store float [[F:%.*]], float* [[F_ADDR]], align 4 209 // CHECK-NEXT: [[TMP0:%.*]] = load float, float* [[F_ADDR]], align 4 210 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast float [[TMP0]] to i32 211 // CHECK-NEXT: [[ABS:%.*]] = and i32 [[BITCAST]], [[#%u,0x7FFFFFFF]] 212 // CHECK-NEXT: [[TMP1:%.*]] = sub i32 [[#%u,0x7F800000]], [[ABS]] 213 // CHECK-NEXT: [[ISNAN:%.*]] = lshr i32 [[TMP1]], 31 214 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[ISNAN]]) [[ATTR4]] 215 // CHECK-NEXT: ret void 216 // 217 void test_float_isnan(float f) { 218 P(isnan, (f)); 219 220 return; 221 } 222 223 // CHECK-LABEL: @test_double_isnan( 224 // CHECK-NEXT: entry: 225 // CHECK-NEXT: [[D_ADDR:%.*]] = alloca double, align 8 226 // CHECK-NEXT: store double [[D:%.*]], double* [[D_ADDR]], align 8 227 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[D_ADDR]], align 8 228 // CHECK-NEXT: [[BITCAST:%.*]] = bitcast double [[TMP0]] to i64 229 // CHECK-NEXT: [[ABS:%.*]] = and i64 [[BITCAST]], [[#%u,0x7FFFFFFFFFFFFFFF]] 230 // CHECK-NEXT: [[TMP1:%.*]] = sub i64 [[#%u,0x7FF0000000000000]], [[ABS]] 231 // CHECK-NEXT: [[ISNAN:%.*]] = lshr i64 [[TMP1]], 63 232 // CHECK-NEXT: [[RES:%.*]] = trunc i64 [[ISNAN]] to i32 233 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([9 x i8], [9 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[RES]]) [[ATTR4]] 234 // CHECK-NEXT: ret void 235 // 236 void test_double_isnan(double d) { 237 P(isnan, (d)); 238 239 return; 240 } 241 242 // CHECK-LABEL: @test_isnormal( 243 // CHECK-NEXT: entry: 244 // CHECK-NEXT: [[D_ADDR:%.*]] = alloca double, align 8 245 // CHECK-NEXT: store double [[D:%.*]], double* [[D_ADDR]], align 8 246 // CHECK-NEXT: [[TMP0:%.*]] = load double, double* [[D_ADDR]], align 8 247 // CHECK-NEXT: [[ISEQ:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP0]], double [[TMP0]], metadata !"oeq", metadata !"fpexcept.strict") [[ATTR4]] 248 // CHECK-NEXT: [[TMP1:%.*]] = call double @llvm.fabs.f64(double [[TMP0]]) [[ATTR5]] 249 // CHECK-NEXT: [[ISINF:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP1]], double 0x7FF0000000000000, metadata !"ult", metadata !"fpexcept.strict") [[ATTR4]] 250 // CHECK-NEXT: [[ISNORMAL:%.*]] = call i1 @llvm.experimental.constrained.fcmp.f64(double [[TMP1]], double 0x10000000000000, metadata !"uge", metadata !"fpexcept.strict") [[ATTR4]] 251 // CHECK-NEXT: [[AND:%.*]] = and i1 [[ISEQ]], [[ISINF]] 252 // CHECK-NEXT: [[AND1:%.*]] = and i1 [[AND]], [[ISNORMAL]] 253 // CHECK-NEXT: [[TMP2:%.*]] = zext i1 [[AND1]] to i32 254 // CHECK-NEXT: call void @p(i8* noundef getelementptr inbounds ([12 x i8], [12 x i8]* @.str.[[#STRID:STRID+1]], i64 0, i64 0), i32 noundef [[TMP2]]) [[ATTR4]] 255 // CHECK-NEXT: ret void 256 // 257 void test_isnormal(double d) { 258 P(isnormal, (d)); 259 260 return; 261 } 262