1 // RUN: %clang_cc1 -verify -fopenmp -x c++ -triple x86_64-unknown-unknown -emit-llvm %s -o - | FileCheck %s
2 // RUN: %clang_cc1 -fopenmp -x c++ -std=c++11 -triple x86_64-unknown-unknown -emit-pch -o %t %s
3 // RUN: %clang_cc1 -fopenmp -x c++ -triple x86_64-unknown-unknown -std=c++11 -include-pch %t -verify %s -emit-llvm -o - | FileCheck %s
4 // RUN: %clang_cc1 -verify -fopenmp -x c++ -std=c++11 -DLAMBDA -triple %itanium_abi_triple -emit-llvm %s -o - | FileCheck -check-prefix=LAMBDA %s
5 // RUN: %clang_cc1 -verify -fopenmp -x c++ -fblocks -DBLOCKS -triple %itanium_abi_triple -emit-llvm %s -o - | FileCheck -check-prefix=BLOCKS %s
6 
7 // RUN: %clang_cc1 -verify -fopenmp-simd -x c++ -triple x86_64-unknown-unknown -emit-llvm %s -o - | FileCheck --check-prefix SIMD-ONLY0 %s
8 // RUN: %clang_cc1 -fopenmp-simd -x c++ -std=c++11 -triple x86_64-unknown-unknown -emit-pch -o %t %s
9 // RUN: %clang_cc1 -fopenmp-simd -x c++ -triple x86_64-unknown-unknown -std=c++11 -include-pch %t -verify %s -emit-llvm -o - | FileCheck --check-prefix SIMD-ONLY0 %s
10 // RUN: %clang_cc1 -verify -fopenmp-simd -x c++ -std=c++11 -DLAMBDA -triple %itanium_abi_triple -emit-llvm %s -o - | FileCheck --check-prefix SIMD-ONLY0 %s
11 // RUN: %clang_cc1 -verify -fopenmp-simd -x c++ -fblocks -DBLOCKS -triple %itanium_abi_triple -emit-llvm %s -o - | FileCheck --check-prefix SIMD-ONLY0 %s
12 // SIMD-ONLY0-NOT: {{__kmpc|__tgt}}
13 // expected-no-diagnostics
14 #ifndef HEADER
15 #define HEADER
16 
17 enum omp_allocator_handle_t {
18   omp_null_allocator = 0,
19   omp_default_mem_alloc = 1,
20   omp_large_cap_mem_alloc = 2,
21   omp_const_mem_alloc = 3,
22   omp_high_bw_mem_alloc = 4,
23   omp_low_lat_mem_alloc = 5,
24   omp_cgroup_mem_alloc = 6,
25   omp_pteam_mem_alloc = 7,
26   omp_thread_mem_alloc = 8,
27   KMP_ALLOCATOR_MAX_HANDLE = __UINTPTR_MAX__
28 };
29 
30 template <class T>
31 struct S {
32   T f;
33   S(T a) : f(a) {}
34   S() : f() {}
35   operator T() { return T(); }
36   ~S() {}
37 };
38 
39 volatile int g __attribute__((aligned(128))) = 1212;
40 
41 struct SS {
42   int a;
43   int b : 4;
44   int &c;
45   SS(int &d) : a(0), b(0), c(d) {
46 #pragma omp parallel private(a, b, c)
47 #ifdef LAMBDA
48     [&]() {
49       ++this->a, --b, (this)->c /= 1;
50 #pragma omp parallel private(a, b, c)
51       ++(this)->a, --b, this->c /= 1;
52     }();
53 #elif defined(BLOCKS)
54     ^{
55       ++a;
56       --this->b;
57       (this)->c /= 1;
58 #pragma omp parallel private(a, b, c)
59       ++(this)->a, --b, this->c /= 1;
60     }();
61 #else
62     ++this->a, --b, c /= 1;
63 #endif
64   }
65 };
66 
67 template<typename T>
68 struct SST {
69   T a;
70   SST() : a(T()) {
71 #pragma omp parallel private(a) allocate(omp_large_cap_mem_alloc:a)
72 #ifdef LAMBDA
73     [&]() {
74       [&]() {
75         ++this->a;
76 #pragma omp parallel private(a)
77         ++(this)->a;
78       }();
79     }();
80 #elif defined(BLOCKS)
81     ^{
82       ^{
83         ++a;
84 #pragma omp parallel private(a)
85         ++(this)->a;
86       }();
87     }();
88 #else
89     ++(this)->a;
90 #endif
91   }
92 };
93 
94 // CHECK: [[SS_TY:%.+]] = type { i{{[0-9]+}}, i8
95 // LAMBDA: [[SS_TY:%.+]] = type { i{{[0-9]+}}, i8
96 // BLOCKS: [[SS_TY:%.+]] = type { i{{[0-9]+}}, i8
97 // CHECK: [[S_FLOAT_TY:%.+]] = type { float }
98 // CHECK: [[S_INT_TY:%.+]] = type { i{{[0-9]+}} }
99 // CHECK: [[SST_TY:%.+]] = type { i{{[0-9]+}} }
100 template <typename T>
101 T tmain() {
102   S<T> test;
103   SST<T> sst;
104   T t_var __attribute__((aligned(128))) = T();
105   T vec[] __attribute__((aligned(128))) = {1, 2};
106   S<T> s_arr[] __attribute__((aligned(128))) = {1, 2};
107   S<T> var __attribute__((aligned(128))) (3);
108 #pragma omp parallel private(t_var, vec, s_arr, var)
109   {
110     vec[0] = t_var;
111     s_arr[0] = var;
112   }
113   return T();
114 }
115 
116 int main() {
117   static int sivar;
118   SS ss(sivar);
119 #ifdef LAMBDA
120   // LAMBDA: [[G:@.+]] = {{(dso_local )?}}global i{{[0-9]+}} 1212,
121   // LAMBDA-LABEL: @main
122   // LAMBDA: alloca [[SS_TY]],
123   // LAMBDA: alloca [[CAP_TY:%.+]],
124   // LAMBDA: call{{.*}} void [[OUTER_LAMBDA:@[^(]+]]([[CAP_TY]]*
125   [&]() {
126   // LAMBDA: define{{.*}} internal{{.*}} void [[OUTER_LAMBDA]](
127   // LAMBDA-NOT: = getelementptr inbounds %{{.+}},
128   // LAMBDA: call{{.*}} void {{.+}} @__kmpc_fork_call({{.+}}, i32 0, {{.+}}* [[OMP_REGION:@.+]] to {{.+}})
129 #pragma omp parallel private(g, sivar)
130   {
131     // LAMBDA: define {{.+}} @{{.+}}([[SS_TY]]*
132     // LAMBDA: store i{{[0-9]+}} 0, i{{[0-9]+}}* %
133     // LAMBDA: store i8
134     // LAMBDA: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 1, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*, [[SS_TY]]*)* [[SS_MICROTASK:@.+]] to void
135     // LAMBDA: ret
136 
137     // LAMBDA: define internal void [[SS_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SS_TY]]* %{{.+}})
138     // LAMBDA-NOT: getelementptr {{.*}}[[SS_TY]], [[SS_TY]]* %
139     // LAMBDA: call{{.*}} void
140     // LAMBDA: ret void
141 
142     // LAMBDA: define internal void @{{.+}}(i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SS_TY]]* %{{.+}})
143     // LAMBDA: [[A_PRIV:%.+]] = alloca i{{[0-9]+}},
144     // LAMBDA: [[B_PRIV:%.+]] = alloca i{{[0-9]+}},
145     // LAMBDA: [[C_PRIV:%.+]] = alloca i{{[0-9]+}},
146     // LAMBDA: store i{{[0-9]+}}* [[A_PRIV]], i{{[0-9]+}}** [[REFA:%.+]],
147     // LAMBDA: store i{{[0-9]+}}* [[C_PRIV]], i{{[0-9]+}}** [[REFC:%.+]],
148     // LAMBDA-NEXT: [[A_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFA]],
149     // LAMBDA-NEXT: [[A_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[A_PRIV]],
150     // LAMBDA-NEXT: [[INC:%.+]] = add nsw i{{[0-9]+}} [[A_VAL]], 1
151     // LAMBDA-NEXT: store i{{[0-9]+}} [[INC]], i{{[0-9]+}}* [[A_PRIV]],
152     // LAMBDA-NEXT: [[B_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[B_PRIV]],
153     // LAMBDA-NEXT: [[DEC:%.+]] = add nsw i{{[0-9]+}} [[B_VAL]], -1
154     // LAMBDA-NEXT: store i{{[0-9]+}} [[DEC]], i{{[0-9]+}}* [[B_PRIV]],
155     // LAMBDA-NEXT: [[C_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFC]],
156     // LAMBDA-NEXT: [[C_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[C_PRIV]],
157     // LAMBDA-NEXT: [[DIV:%.+]] = sdiv i{{[0-9]+}} [[C_VAL]], 1
158     // LAMBDA-NEXT: store i{{[0-9]+}} [[DIV]], i{{[0-9]+}}* [[C_PRIV]],
159     // LAMBDA-NEXT: ret void
160 
161     // LAMBDA: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* noalias %{{.+}}, i32* noalias %{{.+}})
162     // LAMBDA: [[G_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
163     // LAMBDA: [[SIVAR_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
164     g = 1;
165     sivar = 2;
166     // LAMBDA: store i{{[0-9]+}} 1, i{{[0-9]+}}* [[G_PRIVATE_ADDR]],
167     // LAMBDA: store i{{[0-9]+}} 2, i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]],
168     // LAMBDA: [[G_PRIVATE_ADDR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG:%.+]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
169     // LAMBDA: store i{{[0-9]+}}* [[G_PRIVATE_ADDR]], i{{[0-9]+}}** [[G_PRIVATE_ADDR_REF]]
170 
171     // LAMBDA: [[SIVAR_PRIVATE_ADDR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG:%.+]], i{{[0-9]+}} 0, i{{[0-9]+}} 1
172     // LAMBDA: store i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]], i{{[0-9]+}}** [[SIVAR_PRIVATE_ADDR_REF]]
173 
174     // LAMBDA: call{{.*}} void [[INNER_LAMBDA:@.+]](%{{.+}}* [[ARG]])
175     [&]() {
176       // LAMBDA: define {{.+}} void [[INNER_LAMBDA]](%{{.+}}* [[ARG_PTR:%.+]])
177       // LAMBDA: store %{{.+}}* [[ARG_PTR]], %{{.+}}** [[ARG_PTR_REF:%.+]],
178       g = 2;
179       sivar = 4;
180       // LAMBDA: [[ARG_PTR:%.+]] = load %{{.+}}*, %{{.+}}** [[ARG_PTR_REF]]
181       // LAMBDA: [[G_PTR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG_PTR]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
182       // LAMBDA: [[G_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[G_PTR_REF]]
183       // LAMBDA: store i{{[0-9]+}} 2, i{{[0-9]+}}* [[G_REF]]
184       // LAMBDA: [[SIVAR_PTR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG_PTR]], i{{[0-9]+}} 0, i{{[0-9]+}} 1
185       // LAMBDA: [[SIVAR_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[SIVAR_PTR_REF]]
186       // LAMBDA: store i{{[0-9]+}} 4, i{{[0-9]+}}* [[SIVAR_REF]]
187     }();
188   }
189   }();
190   return 0;
191 #elif defined(BLOCKS)
192   // BLOCKS: [[G:@.+]] = {{(dso_local )?}}global i{{[0-9]+}} 1212,
193   // BLOCKS-LABEL: @main
194   // BLOCKS: call
195   // BLOCKS: call{{.*}} void {{%.+}}(i8
196   ^{
197   // BLOCKS: define{{.*}} internal{{.*}} void {{.+}}(i8*
198   // BLOCKS-NOT: = getelementptr inbounds %{{.+}},
199   // BLOCKS: call{{.*}} void {{.+}} @__kmpc_fork_call({{.+}}, i32 0, {{.+}}* [[OMP_REGION:@.+]] to {{.+}})
200 #pragma omp parallel private(g, sivar)
201   {
202     // BLOCKS: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* noalias %{{.+}}, i32* noalias %{{.+}})
203     // BLOCKS: [[G_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
204     // BLOCKS: [[SIVAR_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
205     g = 1;
206     sivar = 20;
207     // BLOCKS: store i{{[0-9]+}} 1, i{{[0-9]+}}* [[G_PRIVATE_ADDR]],
208     // BLOCKS: store i{{[0-9]+}} 20, i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]],
209     // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
210     // BLOCKS: i{{[0-9]+}}* [[G_PRIVATE_ADDR]]
211     // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
212     // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
213     // BLOCKS: i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]]
214     // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
215     // BLOCKS: call{{.*}} void {{%.+}}(i8
216     ^{
217       // BLOCKS: define {{.+}} void {{@.+}}(i8*
218       g = 2;
219       sivar = 40;
220       // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
221       // BLOCKS: store i{{[0-9]+}} 2, i{{[0-9]+}}*
222       // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
223       // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
224       // BLOCKS: store i{{[0-9]+}} 40, i{{[0-9]+}}*
225       // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
226       // BLOCKS: ret
227     }();
228   }
229   }();
230   return 0;
231 // BLOCKS: define {{.+}} @{{.+}}([[SS_TY]]*
232 // BLOCKS: store i{{[0-9]+}} 0, i{{[0-9]+}}* %
233 // BLOCKS: store i8
234 // BLOCKS: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 1, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*, [[SS_TY]]*)* [[SS_MICROTASK:@.+]] to void
235 // BLOCKS: ret
236 
237 // BLOCKS: define internal void [[SS_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SS_TY]]* %{{.+}})
238 // BLOCKS-NOT: getelementptr {{.*}}[[SS_TY]], [[SS_TY]]* %
239 // BLOCKS: call{{.*}} void
240 // BLOCKS: ret void
241 
242 // BLOCKS: define internal void @{{.+}}(i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SS_TY]]* %{{.+}})
243 // BLOCKS: [[A_PRIV:%.+]] = alloca i{{[0-9]+}},
244 // BLOCKS: [[B_PRIV:%.+]] = alloca i{{[0-9]+}},
245 // BLOCKS: [[C_PRIV:%.+]] = alloca i{{[0-9]+}},
246 // BLOCKS: store i{{[0-9]+}}* [[A_PRIV]], i{{[0-9]+}}** [[REFA:%.+]],
247 // BLOCKS: store i{{[0-9]+}}* [[C_PRIV]], i{{[0-9]+}}** [[REFC:%.+]],
248 // BLOCKS-NEXT: [[A_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFA]],
249 // BLOCKS-NEXT: [[A_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[A_PRIV]],
250 // BLOCKS-NEXT: [[INC:%.+]] = add nsw i{{[0-9]+}} [[A_VAL]], 1
251 // BLOCKS-NEXT: store i{{[0-9]+}} [[INC]], i{{[0-9]+}}* [[A_PRIV]],
252 // BLOCKS-NEXT: [[B_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[B_PRIV]],
253 // BLOCKS-NEXT: [[DEC:%.+]] = add nsw i{{[0-9]+}} [[B_VAL]], -1
254 // BLOCKS-NEXT: store i{{[0-9]+}} [[DEC]], i{{[0-9]+}}* [[B_PRIV]],
255 // BLOCKS-NEXT: [[C_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFC]],
256 // BLOCKS-NEXT: [[C_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[C_PRIV]],
257 // BLOCKS-NEXT: [[DIV:%.+]] = sdiv i{{[0-9]+}} [[C_VAL]], 1
258 // BLOCKS-NEXT: store i{{[0-9]+}} [[DIV]], i{{[0-9]+}}* [[C_PRIV]],
259 // BLOCKS-NEXT: ret void
260 #else
261   S<float> test;
262   int t_var = 0;
263   int vec[] = {1, 2};
264   S<float> s_arr[] = {1, 2};
265   S<float> var(3);
266 #pragma omp parallel private(t_var, vec, s_arr, var, sivar)
267   {
268     vec[0] = t_var;
269     s_arr[0] = var;
270     sivar = 3;
271   }
272   return tmain<int>();
273 #endif
274 }
275 
276 // CHECK: define i{{[0-9]+}} @main()
277 // CHECK: [[TEST:%.+]] = alloca [[S_FLOAT_TY]],
278 // CHECK: call {{.*}} [[S_FLOAT_TY_DEF_CONSTR:@.+]]([[S_FLOAT_TY]]* [[TEST]])
279 // CHECK: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 0, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*)* [[MAIN_MICROTASK:@.+]] to void
280 // CHECK: = call i{{.+}} [[TMAIN_INT:@.+]]()
281 // CHECK: call void [[S_FLOAT_TY_DESTR:@.+]]([[S_FLOAT_TY]]*
282 // CHECK: ret
283 //
284 // CHECK: define internal void [[MAIN_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}})
285 // CHECK: [[T_VAR_PRIV:%.+]] = alloca i{{[0-9]+}},
286 // CHECK: [[VEC_PRIV:%.+]] = alloca [2 x i{{[0-9]+}}],
287 // CHECK: [[S_ARR_PRIV:%.+]] = alloca [2 x [[S_FLOAT_TY]]],
288 // CHECK: [[VAR_PRIV:%.+]] = alloca [[S_FLOAT_TY]],
289 // CHECK: [[SIVAR_PRIV:%.+]] = alloca i{{[0-9]+}},
290 // CHECK: store i{{[0-9]+}}* [[GTID_ADDR]], i{{[0-9]+}}** [[GTID_ADDR_REF:%.+]]
291 // CHECK-NOT: [[T_VAR_PRIV]]
292 // CHECK-NOT: [[VEC_PRIV]]
293 // CHECK: {{.+}}:
294 // CHECK: [[S_ARR_PRIV_ITEM:%.+]] = phi [[S_FLOAT_TY]]*
295 // CHECK: call {{.*}} [[S_FLOAT_TY_DEF_CONSTR]]([[S_FLOAT_TY]]* [[S_ARR_PRIV_ITEM]])
296 // CHECK-NOT: [[T_VAR_PRIV]]
297 // CHECK-NOT: [[VEC_PRIV]]
298 // CHECK: call {{.*}} [[S_FLOAT_TY_DEF_CONSTR]]([[S_FLOAT_TY]]* [[VAR_PRIV]])
299 // CHECK-DAG: call void [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]* [[VAR_PRIV]])
300 // CHECK-DAG: call void [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]*
301 // CHECK: ret void
302 
303 // CHECK: define {{.*}} i{{[0-9]+}} [[TMAIN_INT]]()
304 // CHECK: [[TEST:%.+]] = alloca [[S_INT_TY]],
305 // CHECK: call {{.*}} [[S_INT_TY_DEF_CONSTR:@.+]]([[S_INT_TY]]* [[TEST]])
306 // CHECK: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 0, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*)* [[TMAIN_MICROTASK:@.+]] to void
307 // CHECK: call void [[S_INT_TY_DESTR:@.+]]([[S_INT_TY]]*
308 // CHECK: ret
309 //
310 // CHECK: define {{.+}} @{{.+}}([[SS_TY]]*
311 // CHECK: store i{{[0-9]+}} 0, i{{[0-9]+}}* %
312 // CHECK: store i8
313 // CHECK: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 1, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*, [[SS_TY]]*)* [[SS_MICROTASK:@.+]] to void
314 // CHECK: ret
315 
316 // CHECK: define internal void [[SS_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SS_TY]]* %{{.+}})
317 // CHECK: [[A_PRIV:%.+]] = alloca i{{[0-9]+}},
318 // CHECK: [[B_PRIV:%.+]] = alloca i{{[0-9]+}},
319 // CHECK: [[C_PRIV:%.+]] = alloca i{{[0-9]+}},
320 // CHECK: store i{{[0-9]+}}* [[A_PRIV]], i{{[0-9]+}}** [[REFA:%.+]],
321 // CHECK: store i{{[0-9]+}}* [[C_PRIV]], i{{[0-9]+}}** [[REFC:%.+]],
322 // CHECK-NEXT: [[A_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFA]],
323 // CHECK-NEXT: [[A_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[A_PRIV]],
324 // CHECK-NEXT: [[INC:%.+]] = add nsw i{{[0-9]+}} [[A_VAL]], 1
325 // CHECK-NEXT: store i{{[0-9]+}} [[INC]], i{{[0-9]+}}* [[A_PRIV]],
326 // CHECK-NEXT: [[B_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[B_PRIV]],
327 // CHECK-NEXT: [[DEC:%.+]] = add nsw i{{[0-9]+}} [[B_VAL]], -1
328 // CHECK-NEXT: store i{{[0-9]+}} [[DEC]], i{{[0-9]+}}* [[B_PRIV]],
329 // CHECK-NEXT: [[C_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REFC]],
330 // CHECK-NEXT: [[C_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[C_PRIV]],
331 // CHECK-NEXT: [[DIV:%.+]] = sdiv i{{[0-9]+}} [[C_VAL]], 1
332 // CHECK-NEXT: store i{{[0-9]+}} [[DIV]], i{{[0-9]+}}* [[C_PRIV]],
333 // CHECK-NEXT: ret void
334 
335 // CHECK: define internal void [[TMAIN_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}})
336 // CHECK: [[T_VAR_PRIV:%.+]] = alloca i{{[0-9]+}}, align 128
337 // CHECK: [[VEC_PRIV:%.+]] = alloca [2 x i{{[0-9]+}}], align 128
338 // CHECK: [[S_ARR_PRIV:%.+]] = alloca [2 x [[S_INT_TY]]], align 128
339 // CHECK: [[VAR_PRIV:%.+]] = alloca [[S_INT_TY]], align 128
340 // CHECK: store i{{[0-9]+}}* [[GTID_ADDR]], i{{[0-9]+}}** [[GTID_ADDR_REF:%.+]]
341 // CHECK-NOT: [[T_VAR_PRIV]]
342 // CHECK-NOT: [[VEC_PRIV]]
343 // CHECK-NOT: [[SIVAR_PRIV]]
344 // CHECK: {{.+}}:
345 // CHECK: [[S_ARR_PRIV_ITEM:%.+]] = phi [[S_INT_TY]]*
346 // CHECK: call {{.*}} [[S_INT_TY_DEF_CONSTR]]([[S_INT_TY]]* [[S_ARR_PRIV_ITEM]])
347 // CHECK-NOT: [[T_VAR_PRIV]]
348 // CHECK-NOT: [[VEC_PRIV]]
349 // CHECK: call {{.*}} [[S_INT_TY_DEF_CONSTR]]([[S_INT_TY]]* [[VAR_PRIV]])
350 // CHECK-DAG: call void [[S_INT_TY_DESTR]]([[S_INT_TY]]* [[VAR_PRIV]])
351 // CHECK-DAG: call void [[S_INT_TY_DESTR]]([[S_INT_TY]]*
352 // CHECK: ret void
353 
354 // CHECK: define {{.+}} @{{.+}}([[SST_TY]]* %
355 // CHECK: store i{{[0-9]+}} 0, i{{[0-9]+}}* %
356 // CHECK: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 1, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*, [[SST_TY]]*)* [[SST_MICROTASK:@.+]] to void
357 // CHECK: ret
358 
359 // CHECK: define internal void [[SST_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, [[SST_TY]]* %{{.+}})
360 // CHECK: [[GTID_ADDR_PTR:%.+]] = alloca i32*,
361 // CHECK: [[GTID_ADDR:%.+]] = load i32*, i32** [[GTID_ADDR_PTR]],
362 // CHECK: [[GTID:%.+]] = load i32, i32* [[GTID_ADDR]],
363 // CHECK: [[A_VOID_PTR:%.+]] = call i8* @__kmpc_alloc(i32 [[GTID]], i64 4, i8* inttoptr (i64 2 to i8*))
364 // CHECK: [[A_PRIV_ADDR:%.+]] = bitcast i8* [[A_VOID_PTR]] to i32*
365 // CHECK: store i{{[0-9]+}}* [[A_PRIV_ADDR]], i{{[0-9]+}}** [[REF:%.+]],
366 // CHECK-NEXT: [[A_PRIV:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[REF]],
367 // CHECK-NEXT: [[A_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[A_PRIV]],
368 // CHECK-NEXT: [[INC:%.+]] = add nsw i{{[0-9]+}} [[A_VAL]], 1
369 // CHECK-NEXT: store i{{[0-9]+}} [[INC]], i{{[0-9]+}}* [[A_PRIV]],
370 // CHECK-NEXT: [[A_VOID_PTR:%.+]] = bitcast i32* [[A_PRIV_ADDR]] to i8*
371 // CHECK-NEXT: call void @__kmpc_free(i32 [[GTID]], i8* [[A_VOID_PTR]], i8* inttoptr (i64 2 to i8*))
372 // CHECK-NEXT: ret void
373 
374 #endif
375 
376