1 // Test target codegen - host bc file has to be created first. 2 // RUN: %clang_cc1 -verify -fopenmp -fopenmp-cuda-mode -x c++ -triple powerpc64le-unknown-unknown -fopenmp-targets=nvptx64-nvidia-cuda -emit-llvm-bc %s -o %t-ppc-host.bc 3 // RUN: %clang_cc1 -verify -fopenmp -fopenmp-cuda-mode -x c++ -triple nvptx64-unknown-unknown -fopenmp-targets=nvptx64-nvidia-cuda -emit-llvm %s -fopenmp-is-device -fopenmp-host-ir-file-path %t-ppc-host.bc -o - | FileCheck %s --check-prefix CHECK --check-prefix CHECK-64 4 // RUN: %clang_cc1 -verify -fopenmp -fopenmp-cuda-mode -x c++ -triple i386-unknown-unknown -fopenmp-targets=nvptx-nvidia-cuda -emit-llvm-bc %s -o %t-x86-host.bc 5 // RUN: %clang_cc1 -verify -fopenmp -fopenmp-cuda-mode -x c++ -triple nvptx-unknown-unknown -fopenmp-targets=nvptx-nvidia-cuda -emit-llvm %s -fopenmp-is-device -fopenmp-host-ir-file-path %t-x86-host.bc -o - | FileCheck %s --check-prefix CHECK --check-prefix CHECK-32 6 // RUN: %clang_cc1 -verify -fopenmp -fopenmp-cuda-mode -fexceptions -fcxx-exceptions -x c++ -triple nvptx-unknown-unknown -fopenmp-targets=nvptx-nvidia-cuda -emit-llvm %s -fopenmp-is-device -fopenmp-host-ir-file-path %t-x86-host.bc -o - | FileCheck %s --check-prefix CHECK --check-prefix CHECK-32 7 // expected-no-diagnostics 8 #ifndef HEADER 9 #define HEADER 10 11 // Check for the data transfer medium in shared memory to transfer the reduction list to the first warp. 12 // CHECK-DAG: [[TRANSFER_STORAGE:@.+]] = common addrspace([[SHARED_ADDRSPACE:[0-9]+]]) global [32 x i64] 13 14 // Check that the execution mode of all 3 target regions is set to Spmd Mode. 15 // CHECK-DAG: {{@__omp_offloading_.+l27}}_exec_mode = weak constant i8 0 16 // CHECK-DAG: {{@__omp_offloading_.+l32}}_exec_mode = weak constant i8 0 17 // CHECK-DAG: {{@__omp_offloading_.+l38}}_exec_mode = weak constant i8 0 18 19 template<typename tx> 20 tx ftemplate(int n) { 21 int a; 22 short b; 23 tx c; 24 float d; 25 double e; 26 27 #pragma omp target parallel reduction(+: e) 28 { 29 e += 5; 30 } 31 32 #pragma omp target parallel reduction(^: c) reduction(*: d) 33 { 34 c ^= 2; 35 d *= 33; 36 } 37 38 #pragma omp target parallel reduction(|: a) reduction(max: b) 39 { 40 a |= 1; 41 b = 99 > b ? 99 : b; 42 } 43 44 return a+b+c+d+e; 45 } 46 47 int bar(int n){ 48 int a = 0; 49 50 a += ftemplate<char>(n); 51 52 return a; 53 } 54 55 // CHECK: define {{.*}}void {{@__omp_offloading_.+template.+l27}}( 56 // 57 // CHECK: call void @__kmpc_spmd_kernel_init( 58 // CHECK: br label {{%?}}[[EXECUTE:.+]] 59 // 60 // CHECK: [[EXECUTE]] 61 // CHECK: {{call|invoke}} void [[PFN:@.+]](i32* 62 // CHECK: call void @__kmpc_spmd_kernel_deinit() 63 // 64 // 65 // define internal void [[PFN]]( 66 // CHECK: store double {{[0\.e\+]+}}, double* [[E:%.+]], align 67 // CHECK: [[EV:%.+]] = load double, double* [[E]], align 68 // CHECK: [[ADD:%.+]] = fadd double [[EV]], 5 69 // CHECK: store double [[ADD]], double* [[E]], align 70 // CHECK: [[PTR1:%.+]] = getelementptr inbounds [[RLT:.+]], [1 x i8*]* [[RL:%.+]], i{{32|64}} 0, i{{32|64}} 0 71 // CHECK: [[E_CAST:%.+]] = bitcast double* [[E]] to i8* 72 // CHECK: store i8* [[E_CAST]], i8** [[PTR1]], align 73 // CHECK: [[ARG_RL:%.+]] = bitcast [[RLT]]* [[RL]] to i8* 74 // CHECK: [[RET:%.+]] = call i32 @__kmpc_nvptx_parallel_reduce_nowait(i32 {{.+}}, i32 1, i{{32|64}} {{4|8}}, i8* [[ARG_RL]], void (i8*, i16, i16, i16)* [[SHUFFLE_REDUCE_FN:@.+]], void (i8*, i32)* [[WARP_COPY_FN:@.+]]) 75 // CHECK: switch i32 [[RET]], label {{%?}}[[DEFAULTLABEL:.+]] [ 76 // CHECK: i32 1, label {{%?}}[[REDLABEL:.+]] 77 78 // CHECK: [[REDLABEL]] 79 // CHECK: [[E_INV:%.+]] = load double, double* [[E_IN:%.+]], align 80 // CHECK: [[EV:%.+]] = load double, double* [[E]], align 81 // CHECK: [[ADD:%.+]] = fadd double [[E_INV]], [[EV]] 82 // CHECK: store double [[ADD]], double* [[E_IN]], align 83 // CHECK: call void @__kmpc_nvptx_end_reduce_nowait( 84 // CHECK: br label %[[DEFAULTLABEL]] 85 // 86 // CHECK: [[DEFAULTLABEL]] 87 // CHECK: ret 88 89 // 90 // Reduction function 91 // CHECK: define internal void [[REDUCTION_FUNC:@.+]](i8*, i8*) 92 // CHECK: [[VAR_RHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_RHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 93 // CHECK: [[VAR_RHS_VOID:%.+]] = load i8*, i8** [[VAR_RHS_REF]], 94 // CHECK: [[VAR_RHS:%.+]] = bitcast i8* [[VAR_RHS_VOID]] to double* 95 // 96 // CHECK: [[VAR_LHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_LHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 97 // CHECK: [[VAR_LHS_VOID:%.+]] = load i8*, i8** [[VAR_LHS_REF]], 98 // CHECK: [[VAR_LHS:%.+]] = bitcast i8* [[VAR_LHS_VOID]] to double* 99 // 100 // CHECK: [[VAR_LHS_VAL:%.+]] = load double, double* [[VAR_LHS]], 101 // CHECK: [[VAR_RHS_VAL:%.+]] = load double, double* [[VAR_RHS]], 102 // CHECK: [[RES:%.+]] = fadd double [[VAR_LHS_VAL]], [[VAR_RHS_VAL]] 103 // CHECK: store double [[RES]], double* [[VAR_LHS]], 104 // CHECK: ret void 105 106 // 107 // Shuffle and reduce function 108 // CHECK: define internal void [[SHUFFLE_REDUCE_FN]](i8*, i16 {{.*}}, i16 {{.*}}, i16 {{.*}}) 109 // CHECK: [[REMOTE_RED_LIST:%.+]] = alloca [[RLT]], align 110 // CHECK: [[REMOTE_ELT:%.+]] = alloca double 111 // 112 // CHECK: [[LANEID:%.+]] = load i16, i16* {{.+}}, align 113 // CHECK: [[LANEOFFSET:%.+]] = load i16, i16* {{.+}}, align 114 // CHECK: [[ALGVER:%.+]] = load i16, i16* {{.+}}, align 115 // 116 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 117 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 118 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 119 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to double* 120 // CHECK: [[ELT_VAL:%.+]] = load double, double* [[ELT]], align 121 // 122 // CHECK: [[ELT_CAST:%.+]] = bitcast double [[ELT_VAL]] to i64 123 // CHECK: [[WS32:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 124 // CHECK: [[WS:%.+]] = trunc i32 [[WS32]] to i16 125 // CHECK: [[REMOTE_ELT_VAL64:%.+]] = call i64 @__kmpc_shuffle_int64(i64 [[ELT_CAST]], i16 [[LANEOFFSET]], i16 [[WS]]) 126 // CHECK: [[REMOTE_ELT_VAL:%.+]] = bitcast i64 [[REMOTE_ELT_VAL64]] to double 127 // 128 // CHECK: store double [[REMOTE_ELT_VAL]], double* [[REMOTE_ELT]], align 129 // CHECK: [[REMOTE_ELT_VOID:%.+]] = bitcast double* [[REMOTE_ELT]] to i8* 130 // CHECK: store i8* [[REMOTE_ELT_VOID]], i8** [[REMOTE_ELT_REF]], align 131 // 132 // Condition to reduce 133 // CHECK: [[CONDALG0:%.+]] = icmp eq i16 [[ALGVER]], 0 134 // 135 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 136 // CHECK: [[COND2:%.+]] = icmp ult i16 [[LANEID]], [[LANEOFFSET]] 137 // CHECK: [[CONDALG1:%.+]] = and i1 [[COND1]], [[COND2]] 138 // 139 // CHECK: [[COND3:%.+]] = icmp eq i16 [[ALGVER]], 2 140 // CHECK: [[COND4:%.+]] = and i16 [[LANEID]], 1 141 // CHECK: [[COND5:%.+]] = icmp eq i16 [[COND4]], 0 142 // CHECK: [[COND6:%.+]] = and i1 [[COND3]], [[COND5]] 143 // CHECK: [[COND7:%.+]] = icmp sgt i16 [[LANEOFFSET]], 0 144 // CHECK: [[CONDALG2:%.+]] = and i1 [[COND6]], [[COND7]] 145 // 146 // CHECK: [[COND8:%.+]] = or i1 [[CONDALG0]], [[CONDALG1]] 147 // CHECK: [[SHOULD_REDUCE:%.+]] = or i1 [[COND8]], [[CONDALG2]] 148 // CHECK: br i1 [[SHOULD_REDUCE]], label {{%?}}[[DO_REDUCE:.+]], label {{%?}}[[REDUCE_ELSE:.+]] 149 // 150 // CHECK: [[DO_REDUCE]] 151 // CHECK: [[RED_LIST1_VOID:%.+]] = bitcast [[RLT]]* [[RED_LIST]] to i8* 152 // CHECK: [[RED_LIST2_VOID:%.+]] = bitcast [[RLT]]* [[REMOTE_RED_LIST]] to i8* 153 // CHECK: call void [[REDUCTION_FUNC]](i8* [[RED_LIST1_VOID]], i8* [[RED_LIST2_VOID]]) 154 // CHECK: br label {{%?}}[[REDUCE_CONT:.+]] 155 // 156 // CHECK: [[REDUCE_ELSE]] 157 // CHECK: br label {{%?}}[[REDUCE_CONT]] 158 // 159 // CHECK: [[REDUCE_CONT]] 160 // Now check if we should just copy over the remote reduction list 161 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 162 // CHECK: [[COND2:%.+]] = icmp uge i16 [[LANEID]], [[LANEOFFSET]] 163 // CHECK: [[SHOULD_COPY:%.+]] = and i1 [[COND1]], [[COND2]] 164 // CHECK: br i1 [[SHOULD_COPY]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 165 // 166 // CHECK: [[DO_COPY]] 167 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 168 // CHECK: [[REMOTE_ELT_VOID:%.+]] = load i8*, i8** [[REMOTE_ELT_REF]], 169 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 170 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 171 // CHECK: [[REMOTE_ELT:%.+]] = bitcast i8* [[REMOTE_ELT_VOID]] to double* 172 // CHECK: [[REMOTE_ELT_VAL:%.+]] = load double, double* [[REMOTE_ELT]], align 173 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to double* 174 // CHECK: store double [[REMOTE_ELT_VAL]], double* [[ELT]], align 175 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 176 // 177 // CHECK: [[COPY_ELSE]] 178 // CHECK: br label {{%?}}[[COPY_CONT]] 179 // 180 // CHECK: [[COPY_CONT]] 181 // CHECK: void 182 183 // 184 // Inter warp copy function 185 // CHECK: define internal void [[WARP_COPY_FN]](i8*, i32) 186 // CHECK-DAG: [[LANEID:%.+]] = and i32 {{.+}}, 31 187 // CHECK-DAG: [[WARPID:%.+]] = ashr i32 {{.+}}, 5 188 // CHECK-DAG: [[RED_LIST:%.+]] = bitcast i8* {{.+}} to [[RLT]]* 189 // CHECK: [[IS_WARP_MASTER:%.+]] = icmp eq i32 [[LANEID]], 0 190 // CHECK: br i1 [[IS_WARP_MASTER]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 191 // 192 // [[DO_COPY]] 193 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 194 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 195 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to double* 196 // CHECK: [[ELT_VAL:%.+]] = load double, double* [[ELT]], align 197 // 198 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[WARPID]] 199 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to double addrspace([[SHARED_ADDRSPACE]])* 200 // CHECK: store double [[ELT_VAL]], double addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 201 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 202 // 203 // CHECK: [[COPY_ELSE]] 204 // CHECK: br label {{%?}}[[COPY_CONT]] 205 // 206 // Barrier after copy to shared memory storage medium. 207 // CHECK: [[COPY_CONT]] 208 // CHECK: [[WS:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 209 // CHECK: [[ACTIVE_THREADS:%.+]] = mul nsw i32 [[ACTIVE_WARPS:%.+]], [[WS]] 210 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 211 // 212 // Read into warp 0. 213 // CHECK: [[IS_W0_ACTIVE_THREAD:%.+]] = icmp ult i32 [[TID:%.+]], [[ACTIVE_WARPS]] 214 // CHECK: br i1 [[IS_W0_ACTIVE_THREAD]], label {{%?}}[[DO_READ:.+]], label {{%?}}[[READ_ELSE:.+]] 215 // 216 // CHECK: [[DO_READ]] 217 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[TID]] 218 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to double addrspace([[SHARED_ADDRSPACE]])* 219 // CHECK: [[MEDIUM_ELT_VAL:%.+]] = load double, double addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 220 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 221 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 222 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to double* 223 // CHECK: store double [[MEDIUM_ELT_VAL]], double* [[ELT]], align 224 // CHECK: br label {{%?}}[[READ_CONT:.+]] 225 // 226 // CHECK: [[READ_ELSE]] 227 // CHECK: br label {{%?}}[[READ_CONT]] 228 // 229 // CHECK: [[READ_CONT]] 230 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 231 // CHECK: ret 232 233 234 235 236 237 238 239 240 241 242 // CHECK: define {{.*}}void {{@__omp_offloading_.+template.+l32}}( 243 // 244 // CHECK: call void @__kmpc_spmd_kernel_init( 245 // CHECK: br label {{%?}}[[EXECUTE:.+]] 246 // 247 // CHECK: [[EXECUTE]] 248 // CHECK: {{call|invoke}} void [[PFN1:@.+]](i32* 249 // CHECK: call void @__kmpc_spmd_kernel_deinit() 250 // 251 // 252 // define internal void [[PFN1]]( 253 // CHECK: store float {{1\.[0e\+]+}}, float* [[D:%.+]], align 254 // CHECK: [[C_VAL:%.+]] = load i8, i8* [[C:%.+]], align 255 // CHECK: [[CONV:%.+]] = sext i8 [[C_VAL]] to i32 256 // CHECK: [[XOR:%.+]] = xor i32 [[CONV]], 2 257 // CHECK: [[TRUNC:%.+]] = trunc i32 [[XOR]] to i8 258 // CHECK: store i8 [[TRUNC]], i8* [[C]], align 259 // CHECK: [[DV:%.+]] = load float, float* [[D]], align 260 // CHECK: [[MUL:%.+]] = fmul float [[DV]], {{[0-9e\.\+]+}} 261 // CHECK: store float [[MUL]], float* [[D]], align 262 // CHECK: [[PTR1:%.+]] = getelementptr inbounds [[RLT:.+]], [2 x i8*]* [[RL:%.+]], i{{32|64}} 0, i{{32|64}} 0 263 // CHECK: store i8* [[C]], i8** [[PTR1]], align 264 // CHECK: [[PTR2:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RL]], i{{32|64}} 0, i{{32|64}} 1 265 // CHECK: [[D_CAST:%.+]] = bitcast float* [[D]] to i8* 266 // CHECK: store i8* [[D_CAST]], i8** [[PTR2]], align 267 // CHECK: [[ARG_RL:%.+]] = bitcast [[RLT]]* [[RL]] to i8* 268 // CHECK: [[RET:%.+]] = call i32 @__kmpc_nvptx_parallel_reduce_nowait(i32 {{.+}}, i32 2, i{{32|64}} {{8|16}}, i8* [[ARG_RL]], void (i8*, i16, i16, i16)* [[SHUFFLE_REDUCE_FN:@.+]], void (i8*, i32)* [[WARP_COPY_FN:@.+]]) 269 // CHECK: switch i32 [[RET]], label {{%?}}[[DEFAULTLABEL:.+]] [ 270 // CHECK: i32 1, label {{%?}}[[REDLABEL:.+]] 271 272 // CHECK: [[REDLABEL]] 273 // CHECK: [[C_INV8:%.+]] = load i8, i8* [[C_IN:%.+]], align 274 // CHECK: [[C_INV:%.+]] = sext i8 [[C_INV8]] to i32 275 // CHECK: [[CV8:%.+]] = load i8, i8* [[C]], align 276 // CHECK: [[CV:%.+]] = sext i8 [[CV8]] to i32 277 // CHECK: [[XOR:%.+]] = xor i32 [[C_INV]], [[CV]] 278 // CHECK: [[TRUNC:%.+]] = trunc i32 [[XOR]] to i8 279 // CHECK: store i8 [[TRUNC]], i8* [[C_IN]], align 280 // CHECK: [[D_INV:%.+]] = load float, float* [[D_IN:%.+]], align 281 // CHECK: [[DV:%.+]] = load float, float* [[D]], align 282 // CHECK: [[MUL:%.+]] = fmul float [[D_INV]], [[DV]] 283 // CHECK: store float [[MUL]], float* [[D_IN]], align 284 // CHECK: call void @__kmpc_nvptx_end_reduce_nowait( 285 // CHECK: br label %[[DEFAULTLABEL]] 286 // 287 // CHECK: [[DEFAULTLABEL]] 288 // CHECK: ret 289 290 // 291 // Reduction function 292 // CHECK: define internal void [[REDUCTION_FUNC:@.+]](i8*, i8*) 293 // CHECK: [[VAR1_RHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_RHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 294 // CHECK: [[VAR1_RHS:%.+]] = load i8*, i8** [[VAR1_RHS_REF]], 295 // 296 // CHECK: [[VAR1_LHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_LHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 297 // CHECK: [[VAR1_LHS:%.+]] = load i8*, i8** [[VAR1_LHS_REF]], 298 // 299 // CHECK: [[VAR2_RHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_RHS]], i{{32|64}} 0, i{{32|64}} 1 300 // CHECK: [[VAR2_RHS_VOID:%.+]] = load i8*, i8** [[VAR2_RHS_REF]], 301 // CHECK: [[VAR2_RHS:%.+]] = bitcast i8* [[VAR2_RHS_VOID]] to float* 302 // 303 // CHECK: [[VAR2_LHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_LHS]], i{{32|64}} 0, i{{32|64}} 1 304 // CHECK: [[VAR2_LHS_VOID:%.+]] = load i8*, i8** [[VAR2_LHS_REF]], 305 // CHECK: [[VAR2_LHS:%.+]] = bitcast i8* [[VAR2_LHS_VOID]] to float* 306 // 307 // CHECK: [[VAR1_LHS_VAL8:%.+]] = load i8, i8* [[VAR1_LHS]], 308 // CHECK: [[VAR1_LHS_VAL:%.+]] = sext i8 [[VAR1_LHS_VAL8]] to i32 309 // CHECK: [[VAR1_RHS_VAL8:%.+]] = load i8, i8* [[VAR1_RHS]], 310 // CHECK: [[VAR1_RHS_VAL:%.+]] = sext i8 [[VAR1_RHS_VAL8]] to i32 311 // CHECK: [[XOR:%.+]] = xor i32 [[VAR1_LHS_VAL]], [[VAR1_RHS_VAL]] 312 // CHECK: [[RES:%.+]] = trunc i32 [[XOR]] to i8 313 // CHECK: store i8 [[RES]], i8* [[VAR1_LHS]], 314 // 315 // CHECK: [[VAR2_LHS_VAL:%.+]] = load float, float* [[VAR2_LHS]], 316 // CHECK: [[VAR2_RHS_VAL:%.+]] = load float, float* [[VAR2_RHS]], 317 // CHECK: [[RES:%.+]] = fmul float [[VAR2_LHS_VAL]], [[VAR2_RHS_VAL]] 318 // CHECK: store float [[RES]], float* [[VAR2_LHS]], 319 // CHECK: ret void 320 321 // 322 // Shuffle and reduce function 323 // CHECK: define internal void [[SHUFFLE_REDUCE_FN]](i8*, i16 {{.*}}, i16 {{.*}}, i16 {{.*}}) 324 // CHECK: [[REMOTE_RED_LIST:%.+]] = alloca [[RLT]], align 325 // CHECK: [[REMOTE_ELT1:%.+]] = alloca i8 326 // CHECK: [[REMOTE_ELT2:%.+]] = alloca float 327 // 328 // CHECK: [[LANEID:%.+]] = load i16, i16* {{.+}}, align 329 // CHECK: [[LANEOFFSET:%.+]] = load i16, i16* {{.+}}, align 330 // CHECK: [[ALGVER:%.+]] = load i16, i16* {{.+}}, align 331 // 332 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 333 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 334 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 335 // CHECK: [[ELT_VAL:%.+]] = load i8, i8* [[ELT_VOID]], align 336 // 337 // CHECK: [[ELT_CAST:%.+]] = sext i8 [[ELT_VAL]] to i32 338 // CHECK: [[WS32:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 339 // CHECK: [[WS:%.+]] = trunc i32 [[WS32]] to i16 340 // CHECK: [[REMOTE_ELT1_VAL32:%.+]] = call i32 @__kmpc_shuffle_int32(i32 [[ELT_CAST]], i16 [[LANEOFFSET]], i16 [[WS]]) 341 // CHECK: [[REMOTE_ELT1_VAL:%.+]] = trunc i32 [[REMOTE_ELT1_VAL32]] to i8 342 // 343 // CHECK: store i8 [[REMOTE_ELT1_VAL]], i8* [[REMOTE_ELT1]], align 344 // CHECK: store i8* [[REMOTE_ELT1]], i8** [[REMOTE_ELT_REF]], align 345 // 346 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 347 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 348 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 349 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to float* 350 // CHECK: [[ELT_VAL:%.+]] = load float, float* [[ELT]], align 351 // 352 // CHECK: [[ELT_CAST:%.+]] = bitcast float [[ELT_VAL]] to i32 353 // CHECK: [[WS32:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 354 // CHECK: [[WS:%.+]] = trunc i32 [[WS32]] to i16 355 // CHECK: [[REMOTE_ELT2_VAL32:%.+]] = call i32 @__kmpc_shuffle_int32(i32 [[ELT_CAST]], i16 [[LANEOFFSET]], i16 [[WS]]) 356 // CHECK: [[REMOTE_ELT2_VAL:%.+]] = bitcast i32 [[REMOTE_ELT2_VAL32]] to float 357 // 358 // CHECK: store float [[REMOTE_ELT2_VAL]], float* [[REMOTE_ELT2]], align 359 // CHECK: [[REMOTE_ELT2C:%.+]] = bitcast float* [[REMOTE_ELT2]] to i8* 360 // CHECK: store i8* [[REMOTE_ELT2C]], i8** [[REMOTE_ELT_REF]], align 361 // 362 // Condition to reduce 363 // CHECK: [[CONDALG0:%.+]] = icmp eq i16 [[ALGVER]], 0 364 // 365 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 366 // CHECK: [[COND2:%.+]] = icmp ult i16 [[LANEID]], [[LANEOFFSET]] 367 // CHECK: [[CONDALG1:%.+]] = and i1 [[COND1]], [[COND2]] 368 // 369 // CHECK: [[COND3:%.+]] = icmp eq i16 [[ALGVER]], 2 370 // CHECK: [[COND4:%.+]] = and i16 [[LANEID]], 1 371 // CHECK: [[COND5:%.+]] = icmp eq i16 [[COND4]], 0 372 // CHECK: [[COND6:%.+]] = and i1 [[COND3]], [[COND5]] 373 // CHECK: [[COND7:%.+]] = icmp sgt i16 [[LANEOFFSET]], 0 374 // CHECK: [[CONDALG2:%.+]] = and i1 [[COND6]], [[COND7]] 375 // 376 // CHECK: [[COND8:%.+]] = or i1 [[CONDALG0]], [[CONDALG1]] 377 // CHECK: [[SHOULD_REDUCE:%.+]] = or i1 [[COND8]], [[CONDALG2]] 378 // CHECK: br i1 [[SHOULD_REDUCE]], label {{%?}}[[DO_REDUCE:.+]], label {{%?}}[[REDUCE_ELSE:.+]] 379 // 380 // CHECK: [[DO_REDUCE]] 381 // CHECK: [[RED_LIST1_VOID:%.+]] = bitcast [[RLT]]* [[RED_LIST]] to i8* 382 // CHECK: [[RED_LIST2_VOID:%.+]] = bitcast [[RLT]]* [[REMOTE_RED_LIST]] to i8* 383 // CHECK: call void [[REDUCTION_FUNC]](i8* [[RED_LIST1_VOID]], i8* [[RED_LIST2_VOID]]) 384 // CHECK: br label {{%?}}[[REDUCE_CONT:.+]] 385 // 386 // CHECK: [[REDUCE_ELSE]] 387 // CHECK: br label {{%?}}[[REDUCE_CONT]] 388 // 389 // CHECK: [[REDUCE_CONT]] 390 // Now check if we should just copy over the remote reduction list 391 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 392 // CHECK: [[COND2:%.+]] = icmp uge i16 [[LANEID]], [[LANEOFFSET]] 393 // CHECK: [[SHOULD_COPY:%.+]] = and i1 [[COND1]], [[COND2]] 394 // CHECK: br i1 [[SHOULD_COPY]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 395 // 396 // CHECK: [[DO_COPY]] 397 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 398 // CHECK: [[REMOTE_ELT_VOID:%.+]] = load i8*, i8** [[REMOTE_ELT_REF]], 399 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 400 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 401 // CHECK: [[REMOTE_ELT_VAL:%.+]] = load i8, i8* [[REMOTE_ELT_VOID]], align 402 // CHECK: store i8 [[REMOTE_ELT_VAL]], i8* [[ELT_VOID]], align 403 // 404 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 405 // CHECK: [[REMOTE_ELT_VOID:%.+]] = load i8*, i8** [[REMOTE_ELT_REF]], 406 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 407 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 408 // CHECK: [[REMOTE_ELT:%.+]] = bitcast i8* [[REMOTE_ELT_VOID]] to float* 409 // CHECK: [[REMOTE_ELT_VAL:%.+]] = load float, float* [[REMOTE_ELT]], align 410 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to float* 411 // CHECK: store float [[REMOTE_ELT_VAL]], float* [[ELT]], align 412 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 413 // 414 // CHECK: [[COPY_ELSE]] 415 // CHECK: br label {{%?}}[[COPY_CONT]] 416 // 417 // CHECK: [[COPY_CONT]] 418 // CHECK: void 419 420 // 421 // Inter warp copy function 422 // CHECK: define internal void [[WARP_COPY_FN]](i8*, i32) 423 // CHECK-DAG: [[LANEID:%.+]] = and i32 {{.+}}, 31 424 // CHECK-DAG: [[WARPID:%.+]] = ashr i32 {{.+}}, 5 425 // CHECK-DAG: [[RED_LIST:%.+]] = bitcast i8* {{.+}} to [[RLT]]* 426 // CHECK: [[IS_WARP_MASTER:%.+]] = icmp eq i32 [[LANEID]], 0 427 // CHECK: br i1 [[IS_WARP_MASTER]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 428 // 429 // [[DO_COPY]] 430 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 431 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 432 // CHECK: [[ELT_VAL:%.+]] = load i8, i8* [[ELT_VOID]], align 433 // 434 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[WARPID]] 435 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i8 addrspace([[SHARED_ADDRSPACE]])* 436 // CHECK: store i8 [[ELT_VAL]], i8 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 437 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 438 // 439 // CHECK: [[COPY_ELSE]] 440 // CHECK: br label {{%?}}[[COPY_CONT]] 441 // 442 // Barrier after copy to shared memory storage medium. 443 // CHECK: [[COPY_CONT]] 444 // CHECK: [[WS:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 445 // CHECK: [[ACTIVE_THREADS:%.+]] = mul nsw i32 [[ACTIVE_WARPS:%.+]], [[WS]] 446 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 447 // 448 // Read into warp 0. 449 // CHECK: [[IS_W0_ACTIVE_THREAD:%.+]] = icmp ult i32 [[TID:%.+]], [[ACTIVE_WARPS]] 450 // CHECK: br i1 [[IS_W0_ACTIVE_THREAD]], label {{%?}}[[DO_READ:.+]], label {{%?}}[[READ_ELSE:.+]] 451 // 452 // CHECK: [[DO_READ]] 453 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[TID]] 454 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i8 addrspace([[SHARED_ADDRSPACE]])* 455 // CHECK: [[MEDIUM_ELT_VAL:%.+]] = load i8, i8 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 456 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 457 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 458 // CHECK: store i8 [[MEDIUM_ELT_VAL]], i8* [[ELT_VOID]], align 459 // CHECK: br label {{%?}}[[READ_CONT:.+]] 460 // 461 // CHECK: [[READ_ELSE]] 462 // CHECK: br label {{%?}}[[READ_CONT]] 463 // 464 // CHECK: [[READ_CONT]] 465 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 466 // CHECK: [[IS_WARP_MASTER:%.+]] = icmp eq i32 [[LANEID]], 0 467 // CHECK: br i1 [[IS_WARP_MASTER]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 468 // 469 // [[DO_COPY]] 470 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 471 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 472 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to float* 473 // CHECK: [[ELT_VAL:%.+]] = load float, float* [[ELT]], align 474 // 475 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[WARPID]] 476 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to float addrspace([[SHARED_ADDRSPACE]])* 477 // CHECK: store float [[ELT_VAL]], float addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 478 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 479 // 480 // CHECK: [[COPY_ELSE]] 481 // CHECK: br label {{%?}}[[COPY_CONT]] 482 // 483 // Barrier after copy to shared memory storage medium. 484 // CHECK: [[COPY_CONT]] 485 // CHECK: [[WS:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 486 // CHECK: [[ACTIVE_THREADS:%.+]] = mul nsw i32 [[ACTIVE_WARPS:%.+]], [[WS]] 487 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 488 // 489 // Read into warp 0. 490 // CHECK: [[IS_W0_ACTIVE_THREAD:%.+]] = icmp ult i32 [[TID:%.+]], [[ACTIVE_WARPS]] 491 // CHECK: br i1 [[IS_W0_ACTIVE_THREAD]], label {{%?}}[[DO_READ:.+]], label {{%?}}[[READ_ELSE:.+]] 492 // 493 // CHECK: [[DO_READ]] 494 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[TID]] 495 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to float addrspace([[SHARED_ADDRSPACE]])* 496 // CHECK: [[MEDIUM_ELT_VAL:%.+]] = load float, float addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 497 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 1 498 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 499 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to float* 500 // CHECK: store float [[MEDIUM_ELT_VAL]], float* [[ELT]], align 501 // CHECK: br label {{%?}}[[READ_CONT:.+]] 502 // 503 // CHECK: [[READ_ELSE]] 504 // CHECK: br label {{%?}}[[READ_CONT]] 505 // 506 // CHECK: [[READ_CONT]] 507 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 508 // CHECK: ret 509 510 511 512 513 514 515 516 517 518 519 // CHECK: define {{.*}}void {{@__omp_offloading_.+template.+l38}}( 520 // 521 // CHECK: call void @__kmpc_spmd_kernel_init( 522 // CHECK: br label {{%?}}[[EXECUTE:.+]] 523 // 524 // CHECK: [[EXECUTE]] 525 // CHECK: {{call|invoke}} void [[PFN2:@.+]](i32* 526 // CHECK: call void @__kmpc_spmd_kernel_deinit() 527 // 528 // 529 // define internal void [[PFN2]]( 530 // CHECK: store i32 0, i32* [[A:%.+]], align 531 // CHECK: store i16 -32768, i16* [[B:%.+]], align 532 // CHECK: [[A_VAL:%.+]] = load i32, i32* [[A:%.+]], align 533 // CHECK: [[OR:%.+]] = or i32 [[A_VAL]], 1 534 // CHECK: store i32 [[OR]], i32* [[A]], align 535 // CHECK: [[BV16:%.+]] = load i16, i16* [[B]], align 536 // CHECK: [[BV:%.+]] = sext i16 [[BV16]] to i32 537 // CHECK: [[CMP:%.+]] = icmp sgt i32 99, [[BV]] 538 // CHECK: br i1 [[CMP]], label {{%?}}[[DO_MAX:.+]], label {{%?}}[[MAX_ELSE:.+]] 539 // 540 // CHECK: [[DO_MAX]] 541 // CHECK: br label {{%?}}[[MAX_CONT:.+]] 542 // 543 // CHECK: [[MAX_ELSE]] 544 // CHECK: [[BV:%.+]] = load i16, i16* [[B]], align 545 // CHECK: [[MAX:%.+]] = sext i16 [[BV]] to i32 546 // CHECK: br label {{%?}}[[MAX_CONT]] 547 // 548 // CHECK: [[MAX_CONT]] 549 // CHECK: [[B_LVALUE:%.+]] = phi i32 [ 99, %[[DO_MAX]] ], [ [[MAX]], %[[MAX_ELSE]] ] 550 // CHECK: [[TRUNC:%.+]] = trunc i32 [[B_LVALUE]] to i16 551 // CHECK: store i16 [[TRUNC]], i16* [[B]], align 552 // CHECK: [[PTR1:%.+]] = getelementptr inbounds [[RLT:.+]], [2 x i8*]* [[RL:%.+]], i{{32|64}} 0, i{{32|64}} 0 553 // CHECK: [[A_CAST:%.+]] = bitcast i32* [[A]] to i8* 554 // CHECK: store i8* [[A_CAST]], i8** [[PTR1]], align 555 // CHECK: [[PTR2:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RL]], i{{32|64}} 0, i{{32|64}} 1 556 // CHECK: [[B_CAST:%.+]] = bitcast i16* [[B]] to i8* 557 // CHECK: store i8* [[B_CAST]], i8** [[PTR2]], align 558 // CHECK: [[ARG_RL:%.+]] = bitcast [[RLT]]* [[RL]] to i8* 559 // CHECK: [[RET:%.+]] = call i32 @__kmpc_nvptx_parallel_reduce_nowait(i32 {{.+}}, i32 2, i{{32|64}} {{8|16}}, i8* [[ARG_RL]], void (i8*, i16, i16, i16)* [[SHUFFLE_REDUCE_FN:@.+]], void (i8*, i32)* [[WARP_COPY_FN:@.+]]) 560 // CHECK: switch i32 [[RET]], label {{%?}}[[DEFAULTLABEL:.+]] [ 561 // CHECK: i32 1, label {{%?}}[[REDLABEL:.+]] 562 563 // CHECK: [[REDLABEL]] 564 // CHECK: [[A_INV:%.+]] = load i32, i32* [[A_IN:%.+]], align 565 // CHECK: [[AV:%.+]] = load i32, i32* [[A]], align 566 // CHECK: [[OR:%.+]] = or i32 [[A_INV]], [[AV]] 567 // CHECK: store i32 [[OR]], i32* [[A_IN]], align 568 // CHECK: [[B_INV16:%.+]] = load i16, i16* [[B_IN:%.+]], align 569 // CHECK: [[B_INV:%.+]] = sext i16 [[B_INV16]] to i32 570 // CHECK: [[BV16:%.+]] = load i16, i16* [[B]], align 571 // CHECK: [[BV:%.+]] = sext i16 [[BV16]] to i32 572 // CHECK: [[CMP:%.+]] = icmp sgt i32 [[B_INV]], [[BV]] 573 // CHECK: br i1 [[CMP]], label {{%?}}[[DO_MAX:.+]], label {{%?}}[[MAX_ELSE:.+]] 574 // 575 // CHECK: [[DO_MAX]] 576 // CHECK: [[MAX1:%.+]] = load i16, i16* [[B_IN]], align 577 // CHECK: br label {{%?}}[[MAX_CONT:.+]] 578 // 579 // CHECK: [[MAX_ELSE]] 580 // CHECK: [[MAX2:%.+]] = load i16, i16* [[B]], align 581 // CHECK: br label {{%?}}[[MAX_CONT]] 582 // 583 // CHECK: [[MAX_CONT]] 584 // CHECK: [[B_MAX:%.+]] = phi i16 [ [[MAX1]], %[[DO_MAX]] ], [ [[MAX2]], %[[MAX_ELSE]] ] 585 // CHECK: store i16 [[B_MAX]], i16* [[B_IN]], align 586 // CHECK: call void @__kmpc_nvptx_end_reduce_nowait( 587 // CHECK: br label %[[DEFAULTLABEL]] 588 // 589 // CHECK: [[DEFAULTLABEL]] 590 // CHECK: ret 591 592 // 593 // Reduction function 594 // CHECK: define internal void [[REDUCTION_FUNC:@.+]](i8*, i8*) 595 // CHECK: [[VAR1_RHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_RHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 596 // CHECK: [[VAR1_RHS_VOID:%.+]] = load i8*, i8** [[VAR1_RHS_REF]], 597 // CHECK: [[VAR1_RHS:%.+]] = bitcast i8* [[VAR1_RHS_VOID]] to i32* 598 // 599 // CHECK: [[VAR1_LHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_LHS:%.+]], i{{32|64}} 0, i{{32|64}} 0 600 // CHECK: [[VAR1_LHS_VOID:%.+]] = load i8*, i8** [[VAR1_LHS_REF]], 601 // CHECK: [[VAR1_LHS:%.+]] = bitcast i8* [[VAR1_LHS_VOID]] to i32* 602 // 603 // CHECK: [[VAR2_RHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_RHS]], i{{32|64}} 0, i{{32|64}} 1 604 // CHECK: [[VAR2_RHS_VOID:%.+]] = load i8*, i8** [[VAR2_RHS_REF]], 605 // CHECK: [[VAR2_RHS:%.+]] = bitcast i8* [[VAR2_RHS_VOID]] to i16* 606 // 607 // CHECK: [[VAR2_LHS_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST_LHS]], i{{32|64}} 0, i{{32|64}} 1 608 // CHECK: [[VAR2_LHS_VOID:%.+]] = load i8*, i8** [[VAR2_LHS_REF]], 609 // CHECK: [[VAR2_LHS:%.+]] = bitcast i8* [[VAR2_LHS_VOID]] to i16* 610 // 611 // CHECK: [[VAR1_LHS_VAL:%.+]] = load i32, i32* [[VAR1_LHS]], 612 // CHECK: [[VAR1_RHS_VAL:%.+]] = load i32, i32* [[VAR1_RHS]], 613 // CHECK: [[OR:%.+]] = or i32 [[VAR1_LHS_VAL]], [[VAR1_RHS_VAL]] 614 // CHECK: store i32 [[OR]], i32* [[VAR1_LHS]], 615 // 616 // CHECK: [[VAR2_LHS_VAL16:%.+]] = load i16, i16* [[VAR2_LHS]], 617 // CHECK: [[VAR2_LHS_VAL:%.+]] = sext i16 [[VAR2_LHS_VAL16]] to i32 618 // CHECK: [[VAR2_RHS_VAL16:%.+]] = load i16, i16* [[VAR2_RHS]], 619 // CHECK: [[VAR2_RHS_VAL:%.+]] = sext i16 [[VAR2_RHS_VAL16]] to i32 620 // 621 // CHECK: [[CMP:%.+]] = icmp sgt i32 [[VAR2_LHS_VAL]], [[VAR2_RHS_VAL]] 622 // CHECK: br i1 [[CMP]], label {{%?}}[[DO_MAX:.+]], label {{%?}}[[MAX_ELSE:.+]] 623 // 624 // CHECK: [[DO_MAX]] 625 // CHECK: [[MAX1:%.+]] = load i16, i16* [[VAR2_LHS]], align 626 // CHECK: br label {{%?}}[[MAX_CONT:.+]] 627 // 628 // CHECK: [[MAX_ELSE]] 629 // CHECK: [[MAX2:%.+]] = load i16, i16* [[VAR2_RHS]], align 630 // CHECK: br label {{%?}}[[MAX_CONT]] 631 // 632 // CHECK: [[MAX_CONT]] 633 // CHECK: [[MAXV:%.+]] = phi i16 [ [[MAX1]], %[[DO_MAX]] ], [ [[MAX2]], %[[MAX_ELSE]] ] 634 // CHECK: store i16 [[MAXV]], i16* [[VAR2_LHS]], 635 // CHECK: ret void 636 637 // 638 // Shuffle and reduce function 639 // CHECK: define internal void [[SHUFFLE_REDUCE_FN]](i8*, i16 {{.*}}, i16 {{.*}}, i16 {{.*}}) 640 // CHECK: [[REMOTE_RED_LIST:%.+]] = alloca [[RLT]], align 641 // CHECK: [[REMOTE_ELT1:%.+]] = alloca i32 642 // CHECK: [[REMOTE_ELT2:%.+]] = alloca i16 643 // 644 // CHECK: [[LANEID:%.+]] = load i16, i16* {{.+}}, align 645 // CHECK: [[LANEOFFSET:%.+]] = load i16, i16* {{.+}}, align 646 // CHECK: [[ALGVER:%.+]] = load i16, i16* {{.+}}, align 647 // 648 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 649 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 650 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 651 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i32* 652 // CHECK: [[ELT_VAL:%.+]] = load i32, i32* [[ELT]], align 653 // 654 // CHECK: [[WS32:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 655 // CHECK: [[WS:%.+]] = trunc i32 [[WS32]] to i16 656 // CHECK: [[REMOTE_ELT1_VAL:%.+]] = call i32 @__kmpc_shuffle_int32(i32 [[ELT_VAL]], i16 [[LANEOFFSET]], i16 [[WS]]) 657 // 658 // CHECK: store i32 [[REMOTE_ELT1_VAL]], i32* [[REMOTE_ELT1]], align 659 // CHECK: [[REMOTE_ELT1C:%.+]] = bitcast i32* [[REMOTE_ELT1]] to i8* 660 // CHECK: store i8* [[REMOTE_ELT1C]], i8** [[REMOTE_ELT_REF]], align 661 // 662 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 663 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 664 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 665 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i16* 666 // CHECK: [[ELT_VAL:%.+]] = load i16, i16* [[ELT]], align 667 // 668 // CHECK: [[ELT_CAST:%.+]] = sext i16 [[ELT_VAL]] to i32 669 // CHECK: [[WS32:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 670 // CHECK: [[WS:%.+]] = trunc i32 [[WS32]] to i16 671 // CHECK: [[REMOTE_ELT2_VAL32:%.+]] = call i32 @__kmpc_shuffle_int32(i32 [[ELT_CAST]], i16 [[LANEOFFSET]], i16 [[WS]]) 672 // CHECK: [[REMOTE_ELT2_VAL:%.+]] = trunc i32 [[REMOTE_ELT2_VAL32]] to i16 673 // 674 // CHECK: store i16 [[REMOTE_ELT2_VAL]], i16* [[REMOTE_ELT2]], align 675 // CHECK: [[REMOTE_ELT2C:%.+]] = bitcast i16* [[REMOTE_ELT2]] to i8* 676 // CHECK: store i8* [[REMOTE_ELT2C]], i8** [[REMOTE_ELT_REF]], align 677 // 678 // Condition to reduce 679 // CHECK: [[CONDALG0:%.+]] = icmp eq i16 [[ALGVER]], 0 680 // 681 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 682 // CHECK: [[COND2:%.+]] = icmp ult i16 [[LANEID]], [[LANEOFFSET]] 683 // CHECK: [[CONDALG1:%.+]] = and i1 [[COND1]], [[COND2]] 684 // 685 // CHECK: [[COND3:%.+]] = icmp eq i16 [[ALGVER]], 2 686 // CHECK: [[COND4:%.+]] = and i16 [[LANEID]], 1 687 // CHECK: [[COND5:%.+]] = icmp eq i16 [[COND4]], 0 688 // CHECK: [[COND6:%.+]] = and i1 [[COND3]], [[COND5]] 689 // CHECK: [[COND7:%.+]] = icmp sgt i16 [[LANEOFFSET]], 0 690 // CHECK: [[CONDALG2:%.+]] = and i1 [[COND6]], [[COND7]] 691 // 692 // CHECK: [[COND8:%.+]] = or i1 [[CONDALG0]], [[CONDALG1]] 693 // CHECK: [[SHOULD_REDUCE:%.+]] = or i1 [[COND8]], [[CONDALG2]] 694 // CHECK: br i1 [[SHOULD_REDUCE]], label {{%?}}[[DO_REDUCE:.+]], label {{%?}}[[REDUCE_ELSE:.+]] 695 // 696 // CHECK: [[DO_REDUCE]] 697 // CHECK: [[RED_LIST1_VOID:%.+]] = bitcast [[RLT]]* [[RED_LIST]] to i8* 698 // CHECK: [[RED_LIST2_VOID:%.+]] = bitcast [[RLT]]* [[REMOTE_RED_LIST]] to i8* 699 // CHECK: call void [[REDUCTION_FUNC]](i8* [[RED_LIST1_VOID]], i8* [[RED_LIST2_VOID]]) 700 // CHECK: br label {{%?}}[[REDUCE_CONT:.+]] 701 // 702 // CHECK: [[REDUCE_ELSE]] 703 // CHECK: br label {{%?}}[[REDUCE_CONT]] 704 // 705 // CHECK: [[REDUCE_CONT]] 706 // Now check if we should just copy over the remote reduction list 707 // CHECK: [[COND1:%.+]] = icmp eq i16 [[ALGVER]], 1 708 // CHECK: [[COND2:%.+]] = icmp uge i16 [[LANEID]], [[LANEOFFSET]] 709 // CHECK: [[SHOULD_COPY:%.+]] = and i1 [[COND1]], [[COND2]] 710 // CHECK: br i1 [[SHOULD_COPY]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 711 // 712 // CHECK: [[DO_COPY]] 713 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 714 // CHECK: [[REMOTE_ELT_VOID:%.+]] = load i8*, i8** [[REMOTE_ELT_REF]], 715 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 716 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 717 // CHECK: [[REMOTE_ELT:%.+]] = bitcast i8* [[REMOTE_ELT_VOID]] to i32* 718 // CHECK: [[REMOTE_ELT_VAL:%.+]] = load i32, i32* [[REMOTE_ELT]], align 719 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i32* 720 // CHECK: store i32 [[REMOTE_ELT_VAL]], i32* [[ELT]], align 721 // 722 // CHECK: [[REMOTE_ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[REMOTE_RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 723 // CHECK: [[REMOTE_ELT_VOID:%.+]] = load i8*, i8** [[REMOTE_ELT_REF]], 724 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 725 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 726 // CHECK: [[REMOTE_ELT:%.+]] = bitcast i8* [[REMOTE_ELT_VOID]] to i16* 727 // CHECK: [[REMOTE_ELT_VAL:%.+]] = load i16, i16* [[REMOTE_ELT]], align 728 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i16* 729 // CHECK: store i16 [[REMOTE_ELT_VAL]], i16* [[ELT]], align 730 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 731 // 732 // CHECK: [[COPY_ELSE]] 733 // CHECK: br label {{%?}}[[COPY_CONT]] 734 // 735 // CHECK: [[COPY_CONT]] 736 // CHECK: void 737 738 // 739 // Inter warp copy function 740 // CHECK: define internal void [[WARP_COPY_FN]](i8*, i32) 741 // CHECK-DAG: [[LANEID:%.+]] = and i32 {{.+}}, 31 742 // CHECK-DAG: [[WARPID:%.+]] = ashr i32 {{.+}}, 5 743 // CHECK-DAG: [[RED_LIST:%.+]] = bitcast i8* {{.+}} to [[RLT]]* 744 // CHECK: [[IS_WARP_MASTER:%.+]] = icmp eq i32 [[LANEID]], 0 745 // CHECK: br i1 [[IS_WARP_MASTER]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 746 // 747 // [[DO_COPY]] 748 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 0 749 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 750 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i32* 751 // CHECK: [[ELT_VAL:%.+]] = load i32, i32* [[ELT]], align 752 // 753 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[WARPID]] 754 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i32 addrspace([[SHARED_ADDRSPACE]])* 755 // CHECK: store i32 [[ELT_VAL]], i32 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 756 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 757 // 758 // CHECK: [[COPY_ELSE]] 759 // CHECK: br label {{%?}}[[COPY_CONT]] 760 // 761 // Barrier after copy to shared memory storage medium. 762 // CHECK: [[COPY_CONT]] 763 // CHECK: [[WS:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 764 // CHECK: [[ACTIVE_THREADS:%.+]] = mul nsw i32 [[ACTIVE_WARPS:%.+]], [[WS]] 765 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 766 // 767 // Read into warp 0. 768 // CHECK: [[IS_W0_ACTIVE_THREAD:%.+]] = icmp ult i32 [[TID:%.+]], [[ACTIVE_WARPS]] 769 // CHECK: br i1 [[IS_W0_ACTIVE_THREAD]], label {{%?}}[[DO_READ:.+]], label {{%?}}[[READ_ELSE:.+]] 770 // 771 // CHECK: [[DO_READ]] 772 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[TID]] 773 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i32 addrspace([[SHARED_ADDRSPACE]])* 774 // CHECK: [[MEDIUM_ELT_VAL:%.+]] = load i32, i32 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 775 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 0 776 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 777 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i32* 778 // CHECK: store i32 [[MEDIUM_ELT_VAL]], i32* [[ELT]], align 779 // CHECK: br label {{%?}}[[READ_CONT:.+]] 780 // 781 // CHECK: [[READ_ELSE]] 782 // CHECK: br label {{%?}}[[READ_CONT]] 783 // 784 // CHECK: [[READ_CONT]] 785 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 786 // CHECK: [[IS_WARP_MASTER:%.+]] = icmp eq i32 [[LANEID]], 0 787 // CHECK: br i1 [[IS_WARP_MASTER]], label {{%?}}[[DO_COPY:.+]], label {{%?}}[[COPY_ELSE:.+]] 788 // 789 // [[DO_COPY]] 790 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST]], i{{32|64}} 0, i{{32|64}} 1 791 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 792 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i16* 793 // CHECK: [[ELT_VAL:%.+]] = load i16, i16* [[ELT]], align 794 // 795 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[WARPID]] 796 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i16 addrspace([[SHARED_ADDRSPACE]])* 797 // CHECK: store i16 [[ELT_VAL]], i16 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 798 // CHECK: br label {{%?}}[[COPY_CONT:.+]] 799 // 800 // CHECK: [[COPY_ELSE]] 801 // CHECK: br label {{%?}}[[COPY_CONT]] 802 // 803 // Barrier after copy to shared memory storage medium. 804 // CHECK: [[COPY_CONT]] 805 // CHECK: [[WS:%.+]] = call i32 @llvm.nvvm.read.ptx.sreg.warpsize() 806 // CHECK: [[ACTIVE_THREADS:%.+]] = mul nsw i32 [[ACTIVE_WARPS:%.+]], [[WS]] 807 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 808 // 809 // Read into warp 0. 810 // CHECK: [[IS_W0_ACTIVE_THREAD:%.+]] = icmp ult i32 [[TID:%.+]], [[ACTIVE_WARPS]] 811 // CHECK: br i1 [[IS_W0_ACTIVE_THREAD]], label {{%?}}[[DO_READ:.+]], label {{%?}}[[READ_ELSE:.+]] 812 // 813 // CHECK: [[DO_READ]] 814 // CHECK: [[MEDIUM_ELT64:%.+]] = getelementptr inbounds [32 x i64], [32 x i64] addrspace([[SHARED_ADDRSPACE]])* [[TRANSFER_STORAGE]], i64 0, i32 [[TID]] 815 // CHECK: [[MEDIUM_ELT:%.+]] = bitcast i64 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT64]] to i16 addrspace([[SHARED_ADDRSPACE]])* 816 // CHECK: [[MEDIUM_ELT_VAL:%.+]] = load i16, i16 addrspace([[SHARED_ADDRSPACE]])* [[MEDIUM_ELT]], align 817 // CHECK: [[ELT_REF:%.+]] = getelementptr inbounds [[RLT]], [[RLT]]* [[RED_LIST:%.+]], i{{32|64}} 0, i{{32|64}} 1 818 // CHECK: [[ELT_VOID:%.+]] = load i8*, i8** [[ELT_REF]], 819 // CHECK: [[ELT:%.+]] = bitcast i8* [[ELT_VOID]] to i16* 820 // CHECK: store i16 [[MEDIUM_ELT_VAL]], i16* [[ELT]], align 821 // CHECK: br label {{%?}}[[READ_CONT:.+]] 822 // 823 // CHECK: [[READ_ELSE]] 824 // CHECK: br label {{%?}}[[READ_CONT]] 825 // 826 // CHECK: [[READ_CONT]] 827 // CHECK: call void @llvm.nvvm.barrier(i32 1, i32 [[ACTIVE_THREADS]]) 828 // CHECK: ret 829 830 #endif 831