1 // RUN: %clang_cc1 -verify -fopenmp -x c++ -triple x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck %s
2 // RUN: %clang_cc1 -fopenmp -x c++ -std=c++11 -triple x86_64-apple-darwin10 -emit-pch -o %t %s
3 // RUN: %clang_cc1 -fopenmp -x c++ -triple x86_64-apple-darwin10 -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 x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck -check-prefix=LAMBDA %s
5 // RUN: %clang_cc1 -verify -fopenmp -x c++ -fblocks -DBLOCKS -triple x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck -check-prefix=BLOCKS %s
6 
7 // RUN: %clang_cc1 -verify -fopenmp-simd -x c++ -triple x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck --check-prefix SIMD-ONLY0 %s
8 // RUN: %clang_cc1 -fopenmp-simd -x c++ -std=c++11 -triple x86_64-apple-darwin10 -emit-pch -o %t %s
9 // RUN: %clang_cc1 -fopenmp-simd -x c++ -triple x86_64-apple-darwin10 -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 x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck --check-prefix SIMD-ONLY0 %s
11 // RUN: %clang_cc1 -verify -fopenmp-simd -x c++ -fblocks -DBLOCKS -triple x86_64-apple-darwin10 -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 struct St {
18   int a, b;
19   St() : a(0), b(0) {}
20   St(const St &st) : a(st.a + st.b), b(0) {}
21   ~St() {}
22 };
23 
24 volatile int g = 1212;
25 
26 template <class T>
27 struct S {
28   T f;
29   S(T a) : f(a + g) {}
30   S() : f(g) {}
31   S(const S &s, St t = St()) : f(s.f + t.a) {}
32   operator T() { return T(); }
33   ~S() {}
34 };
35 
36 // CHECK-DAG: [[S_FLOAT_TY:%.+]] = type { float }
37 // CHECK-DAG: [[S_INT_TY:%.+]] = type { i{{[0-9]+}} }
38 // CHECK-DAG: [[ST_TY:%.+]] = type { i{{[0-9]+}}, i{{[0-9]+}} }
39 
40 template <typename T>
41 T tmain() {
42   S<T> test;
43   T t_var = T();
44   T vec[] = {1, 2};
45   S<T> s_arr[] = {1, 2};
46   S<T> var(3);
47 #pragma omp parallel
48 #pragma omp single firstprivate(t_var, vec, s_arr, var)
49   {
50     vec[0] = t_var;
51     s_arr[0] = var;
52   }
53   return T();
54 }
55 
56 // CHECK: [[TEST:@.+]] = global [[S_FLOAT_TY]] zeroinitializer,
57 S<float> test;
58 // CHECK-DAG: [[T_VAR:@.+]] = global i{{[0-9]+}} 333,
59 int t_var = 333;
60 // CHECK-DAG: [[VEC:@.+]] = global [2 x i{{[0-9]+}}] [i{{[0-9]+}} 1, i{{[0-9]+}} 2],
61 int vec[] = {1, 2};
62 // CHECK-DAG: [[S_ARR:@.+]] = global [2 x [[S_FLOAT_TY]]] zeroinitializer,
63 S<float> s_arr[] = {1, 2};
64 // CHECK-DAG: [[VAR:@.+]] = global [[S_FLOAT_TY]] zeroinitializer,
65 S<float> var(3);
66 // CHECK-DAG: [[SINGLE_BARRIER_LOC:@.+]] = private unnamed_addr constant %{{.+}} { i32 0, i32 322, i32 0, i32 0, i8*
67 
68 // CHECK: call {{.*}} [[S_FLOAT_TY_DEF_CONSTR:@.+]]([[S_FLOAT_TY]]* [[TEST]])
69 // CHECK: ([[S_FLOAT_TY]]*)* [[S_FLOAT_TY_DESTR:@[^ ]+]] {{[^,]+}}, {{.+}}([[S_FLOAT_TY]]* [[TEST]]
70 int main() {
71   static int sivar;
72 #ifdef LAMBDA
73   // LAMBDA: [[G:@.+]] = global i{{[0-9]+}} 1212,
74   // LAMBDA-LABEL: @main
75   // LAMBDA: call void [[OUTER_LAMBDA:@.+]](
76   [&]() {
77 // LAMBDA: define{{.*}} internal{{.*}} void [[OUTER_LAMBDA]](
78 // LAMBDA: call void {{.+}} @__kmpc_fork_call({{.+}}, i32 1, {{.+}}* [[OMP_REGION:@.+]] to {{.+}})
79 #pragma omp parallel
80 #pragma omp single firstprivate(g, sivar)
81   {
82     // LAMBDA: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* noalias %{{.+}}, i32* noalias %{{.+}}, i32* nonnull align 4 dereferenceable(4) [[ARG:%.+]])
83     // LAMBDA: [[G_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
84     // LAMBDA: [[SIVAR_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
85     // LAMBDA: %{{.+}} = alloca [[CAP_MAIN_TY:%.+]],
86     // LAMBDA: call i32 @__kmpc_single(
87     // LAMBDA: [[G_VAL:%.+]] = load volatile i{{[0-9]+}}, i{{[0-9]+}}* [[G]]
88     // LAMBDA: store i{{[0-9]+}} [[G_VAL]], i{{[0-9]+}}* [[G_PRIVATE_ADDR]]
89     // LAMBDA: [[SIVAR_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* {{.*}}
90     // LAMBDA: store i{{[0-9]+}} [[SIVAR_VAL]], i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]]
91     g = 1;
92     sivar = 17;
93     // LAMBDA: store i{{[0-9]+}} 1, i{{[0-9]+}}* [[G_PRIVATE_ADDR]],
94     // LAMBDA: store i{{[0-9]+}} 17, i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]],
95     // LAMBDA: [[G_PRIVATE_ADDR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG:%.+]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
96     // LAMBDA: store i{{[0-9]+}}* [[G_PRIVATE_ADDR]], i{{[0-9]+}}** [[G_PRIVATE_ADDR_REF]]
97     // LAMBDA: [[SIVAR_PRIVATE_ADDR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG:%.+]], i{{[0-9]+}} 0, i{{[0-9]+}} 1
98     // LAMBDA: store i{{[0-9]+}}* [[SIVAR_PRIVATE_ADDR]], i{{[0-9]+}}** [[SIVAR_PRIVATE_ADDR_REF]]
99     // LAMBDA: call void [[INNER_LAMBDA:@.+]](%{{.+}}* [[ARG]])
100     // LAMBDA: call void @__kmpc_end_single(
101     // LAMBDA: call void @__kmpc_barrier(
102     [&]() {
103       // LAMBDA: define {{.+}} void [[INNER_LAMBDA]](%{{.+}}* [[ARG_PTR:%.+]])
104       // LAMBDA: store %{{.+}}* [[ARG_PTR]], %{{.+}}** [[ARG_PTR_REF:%.+]],
105       g = 2;
106       sivar = 31;
107       // LAMBDA: [[ARG_PTR:%.+]] = load %{{.+}}*, %{{.+}}** [[ARG_PTR_REF]]
108       // LAMBDA: [[G_PTR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG_PTR]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
109       // LAMBDA: [[G_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[G_PTR_REF]]
110       // LAMBDA: store i{{[0-9]+}} 2, i{{[0-9]+}}* [[G_REF]]
111       // LAMBDA: [[SIVAR_PTR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG_PTR]], i{{[0-9]+}} 0, i{{[0-9]+}} 1
112       // LAMBDA: [[SIVAR_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[SIVAR_PTR_REF]]
113       // LAMBDA: store i{{[0-9]+}} 31, i{{[0-9]+}}* [[SIVAR_REF]]
114     }();
115   }
116   }();
117   return 0;
118 #elif defined(BLOCKS)
119   // BLOCKS: [[G:@.+]] = global i{{[0-9]+}} 1212,
120   // BLOCKS-LABEL: @main
121   // BLOCKS: call void {{%.+}}(i8
122   ^{
123 // BLOCKS: define{{.*}} internal{{.*}} void {{.+}}(i8*
124 // BLOCKS: call void {{.+}} @__kmpc_fork_call({{.+}}, i32 1, {{.+}}* [[OMP_REGION:@.+]] to {{.+}})
125 #pragma omp parallel
126 #pragma omp single firstprivate(g, sivar)
127    {
128     // BLOCKS: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* noalias %{{.+}}, i32* noalias %{{.+}}, i32* nonnull align 4 dereferenceable(4) [[SIVAR_REF:%.+]])
129     // BLOCKS: [[G_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
130     // BLOCKS: [[SIVAR1_PRIVATE_ADDR:%.+]] = alloca i{{[0-9]+}},
131     // BLOCKS: store i{{[0-9]+}}* [[SIVAR_REF]], i{{[0-9]+}}** %{{.+}},
132     // BLOCKS: [[SIVAR1_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** %{{.+}},
133     // BLOCKS: call i32 @__kmpc_single(
134     // BLOCKS: [[G_VAL:%.+]] = load volatile i{{[0-9]+}}, i{{[0-9]+}}* [[G]]
135     // BLOCKS: store i{{[0-9]+}} [[G_VAL]], i{{[0-9]+}}* [[G_PRIVATE_ADDR]]
136     // BLOCKS: [[SIVAR1_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[SIVAR1_REF]],
137     // BLOCKS: store i{{[0-9]+}} [[SIVAR1_VAL]], i{{[0-9]+}}* [[SIVAR1_PRIVATE_ADDR]],
138     g = 1;
139     sivar = 37;
140     // BLOCKS: store i{{[0-9]+}} 1, i{{[0-9]+}}* [[G_PRIVATE_ADDR]],
141     // BLOCKS: store i{{[0-9]+}} 37, i{{[0-9]+}}* [[SIVAR1_PRIVATE_ADDR]],
142     // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
143     // BLOCKS: i{{[0-9]+}}* [[G_PRIVATE_ADDR]]
144     // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
145     // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
146     // BLOCKS: i{{[0-9]+}}* [[SIVAR1_PRIVATE_ADDR]]
147     // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
148     // BLOCKS: call void {{%.+}}(i8
149     // BLOCKS: call void @__kmpc_end_single(
150     // BLOCKS: call void @__kmpc_barrier(
151     ^{
152       // BLOCKS: define {{.+}} void {{@.+}}(i8*
153       g = 2;
154       sivar = 31;
155       // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
156       // BLOCKS: store i{{[0-9]+}} 2, i{{[0-9]+}}*
157       // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
158       // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
159       // BLOCKS: store i{{[0-9]+}} 31, i{{[0-9]+}}*
160       // BLOCKS-NOT: [[SIVAR]]{{[[^:word:]]}}
161       // BLOCKS: ret
162     }();
163   }
164   }();
165   return 0;
166 #else
167 #pragma omp single firstprivate(t_var, vec, s_arr, var, sivar) nowait
168   {
169     {
170     vec[0] = t_var;
171     s_arr[0] = var;
172     sivar = 41;
173     }
174   }
175   return tmain<int>();
176 #endif
177 }
178 
179 // CHECK: define {{.*}}i{{[0-9]+}} @main()
180 // CHECK: alloca i{{[0-9]+}},
181 // CHECK: [[T_VAR_PRIV:%.+]] = alloca i{{[0-9]+}},
182 // CHECK: [[VEC_PRIV:%.+]] = alloca [2 x i{{[0-9]+}}],
183 // CHECK: [[S_ARR_PRIV:%.+]] = alloca [2 x [[S_FLOAT_TY]]],
184 // CHECK: [[VAR_PRIV:%.+]] = alloca [[S_FLOAT_TY]],
185 // CHECK: [[SIVAR_PRIV:%.+]] = alloca i{{[0-9]+}},
186 
187 // CHECK: [[GTID:%.+]] = call i32 @__kmpc_global_thread_num(
188 // CHECK: call i32 @__kmpc_single(
189 // firstprivate t_var(t_var)
190 // CHECK: [[T_VAR_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR]],
191 // CHECK: store i{{[0-9]+}} [[T_VAR_VAL]], i{{[0-9]+}}* [[T_VAR_PRIV]],
192 
193 // firstprivate vec(vec)
194 // CHECK: [[VEC_DEST:%.+]] = bitcast [2 x i{{[0-9]+}}]* [[VEC_PRIV]] to i8*
195 // CHECK: call void @llvm.memcpy.{{.+}}(i8* align {{[0-9]+}} [[VEC_DEST]], i8* align {{[0-9]+}} bitcast ([2 x i{{[0-9]+}}]* [[VEC]] to i8*),
196 
197 // firstprivate s_arr(s_arr)
198 // CHECK: [[S_ARR_PRIV_BEGIN:%.+]] = getelementptr inbounds [2 x [[S_FLOAT_TY]]], [2 x [[S_FLOAT_TY]]]* [[S_ARR_PRIV]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
199 // CHECK: [[S_ARR_PRIV_END:%.+]] = getelementptr [[S_FLOAT_TY]], [[S_FLOAT_TY]]* [[S_ARR_PRIV_BEGIN]], i{{[0-9]+}} 2
200 // CHECK: [[IS_EMPTY:%.+]] = icmp eq [[S_FLOAT_TY]]* [[S_ARR_PRIV_BEGIN]], [[S_ARR_PRIV_END]]
201 // CHECK: br i1 [[IS_EMPTY]], label %[[S_ARR_BODY_DONE:.+]], label %[[S_ARR_BODY:.+]]
202 // CHECK: [[S_ARR_BODY]]
203 // CHECK: getelementptr inbounds ([2 x [[S_FLOAT_TY]]], [2 x [[S_FLOAT_TY]]]* [[S_ARR]], i{{[0-9]+}} 0, i{{[0-9]+}} 0)
204 // CHECK: call {{.*}} [[ST_TY_DEFAULT_CONSTR:@.+]]([[ST_TY]]* [[ST_TY_TEMP:%.+]])
205 // CHECK: call {{.*}} [[S_FLOAT_TY_COPY_CONSTR:@.+]]([[S_FLOAT_TY]]* {{.+}}, [[S_FLOAT_TY]]* {{.+}}, [[ST_TY]]* [[ST_TY_TEMP]])
206 // CHECK: call {{.*}} [[ST_TY_DESTR:@.+]]([[ST_TY]]* [[ST_TY_TEMP]])
207 // CHECK: br i1 {{.+}}, label %{{.+}}, label %[[S_ARR_BODY]]
208 
209 // firstprivate var(var)
210 // CHECK: call {{.*}} [[ST_TY_DEFAULT_CONSTR]]([[ST_TY]]* [[ST_TY_TEMP:%.+]])
211 // CHECK: call {{.*}} [[S_FLOAT_TY_COPY_CONSTR]]([[S_FLOAT_TY]]* [[VAR_PRIV]], [[S_FLOAT_TY]]* {{.*}} [[VAR]], [[ST_TY]]* [[ST_TY_TEMP]])
212 // CHECK: call {{.*}} [[ST_TY_DESTR]]([[ST_TY]]* [[ST_TY_TEMP]])
213 
214 // firstprivate isvar
215 // CHEC: [[SIVAR_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[SIVAR]],
216 // CHEC: store i{{[0-9]+}} [[SIVAR_VAL]], i{{[0-9]+}}* [[SIVAR_PRIV]],
217 
218 // ~(firstprivate var), ~(firstprivate s_arr)
219 // CHECK-DAG: call {{.*}} [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]* [[VAR_PRIV]])
220 // CHECK-DAG: call {{.*}} [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]*
221 // CHECK: call void @__kmpc_end_single(
222 
223 // CHECK-NOT: call void @__kmpc_barrier(
224 
225 // CHECK: = call {{.*}}i{{.+}} [[TMAIN_INT:@.+]]()
226 
227 // CHECK: ret void
228 
229 // CHECK: define {{.*}} i{{[0-9]+}} [[TMAIN_INT]]()
230 // CHECK: [[TEST:%.+]] = alloca [[S_INT_TY]],
231 // CHECK: call {{.*}} [[S_INT_TY_DEF_CONSTR:@.+]]([[S_INT_TY]]* [[TEST]])
232 // CHECK: call void (%{{.+}}*, i{{[0-9]+}}, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)*, ...) @__kmpc_fork_call(%{{.+}}* @{{.+}}, i{{[0-9]+}} 4, void (i{{[0-9]+}}*, i{{[0-9]+}}*, ...)* bitcast (void (i{{[0-9]+}}*, i{{[0-9]+}}*, i32*, [2 x i32]*, [2 x [[S_INT_TY]]]*, [[S_INT_TY]]*)* [[TMAIN_MICROTASK:@.+]] to void
233 // CHECK: call {{.*}} [[S_INT_TY_DESTR:@.+]]([[S_INT_TY]]*
234 // CHECK: ret
235 //
236 // CHECK: define internal void [[TMAIN_MICROTASK]](i{{[0-9]+}}* noalias [[GTID_ADDR:%.+]], i{{[0-9]+}}* noalias %{{.+}}, i32* nonnull align 4 dereferenceable(4) %{{.+}}, [2 x i32]* nonnull align 4 dereferenceable(8) %{{.+}}, [2 x [[S_INT_TY]]]* nonnull align 4 dereferenceable(8) %{{.+}}, [[S_INT_TY]]* nonnull align 4 dereferenceable(4) %{{.+}})
237 // CHECK: [[T_VAR_PRIV:%.+]] = alloca i{{[0-9]+}},
238 // CHECK: [[VEC_PRIV:%.+]] = alloca [2 x i{{[0-9]+}}],
239 // CHECK: [[S_ARR_PRIV:%.+]] = alloca [2 x [[S_INT_TY]]],
240 // CHECK: [[VAR_PRIV:%.+]] = alloca [[S_INT_TY]],
241 // CHECK: store i{{[0-9]+}}* [[GTID_ADDR]], i{{[0-9]+}}** [[GTID_ADDR_ADDR:%.+]],
242 
243 // CHECK: [[T_VAR_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** %
244 // CHECK: [[VEC_REF:%.+]] = load [2 x i{{[0-9]+}}]*, [2 x i{{[0-9]+}}]** %
245 // CHECK: [[S_ARR:%.+]] = load [2 x [[S_INT_TY]]]*, [2 x [[S_INT_TY]]]** %
246 // CHECK: [[VAR_REF:%.+]] = load [[S_INT_TY]]*, [[S_INT_TY]]** %
247 
248 // CHECK: [[GTID_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[GTID_ADDR_ADDR]]
249 // CHECK: [[GTID:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[GTID_REF]]
250 // CHECK: call i32 @__kmpc_single(
251 
252 // firstprivate t_var(t_var)
253 // CHECK: [[T_VAR_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}*
254 // CHECK: store i{{[0-9]+}} [[T_VAR_VAL]], i{{[0-9]+}}* [[T_VAR_PRIV]],
255 
256 // firstprivate vec(vec)
257 // CHECK: [[VEC_DEST:%.+]] = bitcast [2 x i{{[0-9]+}}]* [[VEC_PRIV]] to i8*
258 // CHECK: [[VEC_SRC:%.+]] = bitcast [2 x i{{[0-9]+}}]* [[VEC_REF]] to i8*
259 // CHECK: call void @llvm.memcpy.{{.+}}(i8* align {{[0-9]+}} [[VEC_DEST]], i8* align {{[0-9]+}} [[VEC_SRC]],
260 
261 // firstprivate s_arr(s_arr)
262 // CHECK: [[S_ARR_PRIV_BEGIN:%.+]] = getelementptr inbounds [2 x [[S_INT_TY]]], [2 x [[S_INT_TY]]]* [[S_ARR_PRIV]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
263 // CHECK: [[S_ARR_PRIV_END:%.+]] = getelementptr [[S_INT_TY]], [[S_INT_TY]]* [[S_ARR_PRIV_BEGIN]], i{{[0-9]+}} 2
264 // CHECK: [[IS_EMPTY:%.+]] = icmp eq [[S_INT_TY]]* [[S_ARR_PRIV_BEGIN]], [[S_ARR_PRIV_END]]
265 // CHECK: br i1 [[IS_EMPTY]], label %[[S_ARR_BODY_DONE:.+]], label %[[S_ARR_BODY:.+]]
266 // CHECK: [[S_ARR_BODY]]
267 // CHECK: call {{.*}} [[ST_TY_DEFAULT_CONSTR:@.+]]([[ST_TY]]* [[ST_TY_TEMP:%.+]])
268 // CHECK: call {{.*}} [[S_INT_TY_COPY_CONSTR:@.+]]([[S_INT_TY]]* {{.+}}, [[S_INT_TY]]* {{.+}}, [[ST_TY]]* [[ST_TY_TEMP]])
269 // CHECK: call {{.*}} [[ST_TY_DESTR:@.+]]([[ST_TY]]* [[ST_TY_TEMP]])
270 // CHECK: br i1 {{.+}}, label %{{.+}}, label %[[S_ARR_BODY]]
271 
272 // firstprivate var(var)
273 // CHECK: call {{.*}} [[ST_TY_DEFAULT_CONSTR]]([[ST_TY]]* [[ST_TY_TEMP:%.+]])
274 // CHECK: call {{.*}} [[S_INT_TY_COPY_CONSTR]]([[S_INT_TY]]* [[VAR_PRIV]], [[S_INT_TY]]* {{.*}} [[VAR_REF]], [[ST_TY]]* [[ST_TY_TEMP]])
275 // CHECK: call {{.*}} [[ST_TY_DESTR]]([[ST_TY]]* [[ST_TY_TEMP]])
276 
277 // ~(firstprivate var), ~(firstprivate s_arr)
278 // CHECK-DAG: call {{.*}} [[S_INT_TY_DESTR]]([[S_INT_TY]]* [[VAR_PRIV]])
279 // CHECK-DAG: call {{.*}} [[S_INT_TY_DESTR]]([[S_INT_TY]]*
280 
281 // CHECK: call void @__kmpc_end_single(
282 
283 // CHECK: call void @__kmpc_barrier(%{{.+}}* [[SINGLE_BARRIER_LOC]], i{{[0-9]+}} [[GTID]])
284 // CHECK: ret void
285 #endif
286 
287