blob: c26961bf71f5e928ead7b95d053ac1df6eadcad6 [file] [log] [blame]
Alexey Bataev7ebe5fd2015-04-22 13:43:03 +00001// RUN: %clang_cc1 -verify -fopenmp=libiomp5 -x c++ -triple x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck %s
2// RUN: %clang_cc1 -fopenmp=libiomp5 -x c++ -std=c++11 -triple x86_64-apple-darwin10 -emit-pch -o %t %s
3// RUN: %clang_cc1 -fopenmp=libiomp5 -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=libiomp5 -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=libiomp5 -x c++ -fblocks -DBLOCKS -triple x86_64-apple-darwin10 -emit-llvm %s -o - | FileCheck -check-prefix=BLOCKS %s
6// expected-no-diagnostics
7#ifndef HEADER
8#define HEADER
9
10volatile double g;
11
12template <class T>
13struct S {
14 T f;
15 S(T a) : f(a + g) {}
16 S() : f(g) {}
17 operator T() { return T(); }
18 S &operator&(const S &) { return *this; }
19 ~S() {}
20};
21
22// CHECK-DAG: [[S_FLOAT_TY:%.+]] = type { float }
23// CHECK-DAG: [[S_INT_TY:%.+]] = type { i{{[0-9]+}} }
24// CHECK-DAG: [[CAP_MAIN_TY:%.+]] = type { float*, [[S_FLOAT_TY]]*, [[S_FLOAT_TY]]*, float*, [2 x i{{[0-9]+}}]*, [2 x [[S_FLOAT_TY]]]* }
25// CHECK-DAG: [[CAP_TMAIN_TY:%.+]] = type { i{{[0-9]+}}*, [[S_INT_TY]]*, [[S_INT_TY]]*, i{{[0-9]+}}*, [2 x i{{[0-9]+}}]*, [2 x [[S_INT_TY]]]* }
26// CHECK-DAG: [[ATOMIC_REDUCE_BARRIER_LOC:@.+]] = private unnamed_addr constant %{{.+}} { i32 0, i32 18, i32 0, i32 0, i8*
27// CHECK-DAG: [[IMPLICIT_BARRIER_LOC:@.+]] = private unnamed_addr constant %{{.+}} { i32 0, i32 66, i32 0, i32 0, i8*
28// CHECK-DAG: [[REDUCTION_LOC:@.+]] = private unnamed_addr constant %{{.+}} { i32 0, i32 18, i32 0, i32 0, i8*
29// CHECK-DAG: [[REDUCTION_LOCK:@.+]] = common global [8 x i32] zeroinitializer
30
31template <typename T>
32T tmain() {
33 T t;
34 S<T> test;
35 T t_var = T(), t_var1;
36 T vec[] = {1, 2};
37 S<T> s_arr[] = {1, 2};
38 S<T> var(3), var1;
39#pragma omp parallel
40#pragma omp for reduction(+:t_var) reduction(&:var) reduction(&& : var1) reduction(min: t_var1) nowait
41 for (int i = 0; i < 2; ++i) {
42 vec[i] = t_var;
43 s_arr[i] = var;
44 }
Alexey Bataev19fa2c32015-04-29 05:21:03 +000045#pragma omp parallel
46#pragma omp for reduction(&& : t_var)
47 for (int i = 0; i < 2; ++i) {
48 vec[i] = t_var;
49 s_arr[i] = var;
50 }
Alexey Bataev7ebe5fd2015-04-22 13:43:03 +000051 return T();
52}
53
54int main() {
55#ifdef LAMBDA
56 // LAMBDA: [[G:@.+]] = global double
57 // LAMBDA-LABEL: @main
58 // LAMBDA: call void [[OUTER_LAMBDA:@.+]](
59 [&]() {
60 // LAMBDA: define{{.*}} internal{{.*}} void [[OUTER_LAMBDA]](
61 // LAMBDA: call void {{.+}} @__kmpc_fork_call({{.+}}, i32 1, {{.+}}* [[OMP_REGION:@.+]] to {{.+}}, i8* %{{.+}})
62#pragma omp parallel
63#pragma omp for reduction(+:g)
64 for (int i = 0; i < 2; ++i) {
65 // LAMBDA: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* %{{.+}}, i32* %{{.+}}, %{{.+}}* %{{.+}})
66 // LAMBDA: [[G_PRIVATE_ADDR:%.+]] = alloca double,
67
68 // Reduction list for runtime.
69 // LAMBDA: [[RED_LIST:%.+]] = alloca [1 x i8*],
70
71 // LAMBDA: store double 0.0{{.+}}, double* [[G_PRIVATE_ADDR]]
72 // LAMBDA: call void @__kmpc_for_static_init_4(
73 g = 1;
74 // LAMBDA: store volatile double 1.0{{.+}}, double* [[G_PRIVATE_ADDR]],
75 // LAMBDA: [[G_PRIVATE_ADDR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG:%.+]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
76 // LAMBDA: store double* [[G_PRIVATE_ADDR]], double** [[G_PRIVATE_ADDR_REF]]
77 // LAMBDA: call void [[INNER_LAMBDA:@.+]](%{{.+}}* [[ARG]])
78 // LAMBDA: call void @__kmpc_for_static_fini(
79
80 // LAMBDA: [[G_PRIV_REF:%.+]] = getelementptr inbounds [1 x i8*], [1 x i8*]* [[RED_LIST]], i32 0, i32 0
81 // LAMBDA: [[BITCAST:%.+]] = bitcast double* [[G_PRIVATE_ADDR]] to i8*
82 // LAMBDA: store i8* [[BITCAST]], i8** [[G_PRIV_REF]],
83 // LAMBDA: call i32 @__kmpc_reduce(
84 // LAMBDA: switch i32 %{{.+}}, label %[[REDUCTION_DONE:.+]] [
85 // LAMBDA: i32 1, label %[[CASE1:.+]]
86 // LAMBDA: i32 2, label %[[CASE2:.+]]
87 // LAMBDA: [[CASE1]]
88 // LAMBDA: [[G_VAL:%.+]] = load double, double* [[G]]
89 // LAMBDA: [[G_PRIV_VAL:%.+]] = load double, double* [[G_PRIVATE_ADDR]]
90 // LAMBDA: [[ADD:%.+]] = fadd double [[G_VAL]], [[G_PRIV_VAL]]
91 // LAMBDA: store double [[ADD]], double* [[G]]
92 // LAMBDA: call void @__kmpc_end_reduce(
93 // LAMBDA: br label %[[REDUCTION_DONE]]
94 // LAMBDA: [[CASE2]]
95 // LAMBDA: [[G_PRIV_VAL:%.+]] = load double, double* [[G_PRIVATE_ADDR]]
96 // LAMBDA: fadd double
97 // LAMBDA: cmpxchg i64*
98 // LAMBDA: br label %[[REDUCTION_DONE]]
99 // LAMBDA: [[REDUCTION_DONE]]
100 // LAMBDA: ret void
101 [&]() {
102 // LAMBDA: define {{.+}} void [[INNER_LAMBDA]](%{{.+}}* [[ARG_PTR:%.+]])
103 // LAMBDA: store %{{.+}}* [[ARG_PTR]], %{{.+}}** [[ARG_PTR_REF:%.+]],
104 g = 2;
105 // LAMBDA: [[ARG_PTR:%.+]] = load %{{.+}}*, %{{.+}}** [[ARG_PTR_REF]]
106 // LAMBDA: [[G_PTR_REF:%.+]] = getelementptr inbounds %{{.+}}, %{{.+}}* [[ARG_PTR]], i{{[0-9]+}} 0, i{{[0-9]+}} 0
107 // LAMBDA: [[G_REF:%.+]] = load double*, double** [[G_PTR_REF]]
108 // LAMBDA: store volatile double 2.0{{.+}}, double* [[G_REF]]
109 }();
110 }
111 }();
112 return 0;
113#elif defined(BLOCKS)
114 // BLOCKS: [[G:@.+]] = global double
115 // BLOCKS-LABEL: @main
116 // BLOCKS: call void {{%.+}}(i8
117 ^{
118 // BLOCKS: define{{.*}} internal{{.*}} void {{.+}}(i8*
119 // BLOCKS: call void {{.+}} @__kmpc_fork_call({{.+}}, i32 1, {{.+}}* [[OMP_REGION:@.+]] to {{.+}}, i8* %{{.+}})
120#pragma omp parallel
121#pragma omp for reduction(-:g)
122 for (int i = 0; i < 2; ++i) {
123 // BLOCKS: define{{.*}} internal{{.*}} void [[OMP_REGION]](i32* %{{.+}}, i32* %{{.+}}, %{{.+}}* %{{.+}})
124 // BLOCKS: [[G_PRIVATE_ADDR:%.+]] = alloca double,
125
126 // Reduction list for runtime.
127 // BLOCKS: [[RED_LIST:%.+]] = alloca [1 x i8*],
128
129 // BLOCKS: store double 0.0{{.+}}, double* [[G_PRIVATE_ADDR]]
130 g = 1;
131 // BLOCKS: call void @__kmpc_for_static_init_4(
132 // BLOCKS: store volatile double 1.0{{.+}}, double* [[G_PRIVATE_ADDR]],
133 // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
134 // BLOCKS: double* [[G_PRIVATE_ADDR]]
135 // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
136 // BLOCKS: call void {{%.+}}(i8
137 // BLOCKS: call void @__kmpc_for_static_fini(
138
139 // BLOCKS: [[G_PRIV_REF:%.+]] = getelementptr inbounds [1 x i8*], [1 x i8*]* [[RED_LIST]], i32 0, i32 0
140 // BLOCKS: [[BITCAST:%.+]] = bitcast double* [[G_PRIVATE_ADDR]] to i8*
141 // BLOCKS: store i8* [[BITCAST]], i8** [[G_PRIV_REF]],
142 // BLOCKS: call i32 @__kmpc_reduce(
143 // BLOCKS: switch i32 %{{.+}}, label %[[REDUCTION_DONE:.+]] [
144 // BLOCKS: i32 1, label %[[CASE1:.+]]
145 // BLOCKS: i32 2, label %[[CASE2:.+]]
146 // BLOCKS: [[CASE1]]
147 // BLOCKS: [[G_VAL:%.+]] = load double, double* [[G]]
148 // BLOCKS: [[G_PRIV_VAL:%.+]] = load double, double* [[G_PRIVATE_ADDR]]
149 // BLOCKS: [[ADD:%.+]] = fadd double [[G_VAL]], [[G_PRIV_VAL]]
150 // BLOCKS: store double [[ADD]], double* [[G]]
151 // BLOCKS: call void @__kmpc_end_reduce(
152 // BLOCKS: br label %[[REDUCTION_DONE]]
153 // BLOCKS: [[CASE2]]
154 // BLOCKS: [[G_PRIV_VAL:%.+]] = load double, double* [[G_PRIVATE_ADDR]]
155 // BLOCKS: fadd double
156 // BLOCKS: cmpxchg i64*
157 // BLOCKS: br label %[[REDUCTION_DONE]]
158 // BLOCKS: [[REDUCTION_DONE]]
159 // BLOCKS: ret void
160 ^{
161 // BLOCKS: define {{.+}} void {{@.+}}(i8*
162 g = 2;
163 // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
164 // BLOCKS: store volatile double 2.0{{.+}}, double*
165 // BLOCKS-NOT: [[G]]{{[[^:word:]]}}
166 // BLOCKS: ret
167 }();
168 }
169 }();
170 return 0;
171#else
172 S<float> test;
173 float t_var = 0, t_var1;
174 int vec[] = {1, 2};
175 S<float> s_arr[] = {1, 2};
176 S<float> var(3), var1;
177#pragma omp parallel
178#pragma omp for reduction(+:t_var) reduction(&:var) reduction(&& : var1) reduction(min: t_var1)
179 for (int i = 0; i < 2; ++i) {
180 vec[i] = t_var;
181 s_arr[i] = var;
182 }
183 return tmain<int>();
184#endif
185}
186
187// CHECK: define {{.*}}i{{[0-9]+}} @main()
188// CHECK: [[TEST:%.+]] = alloca [[S_FLOAT_TY]],
189// CHECK: call {{.*}} [[S_FLOAT_TY_CONSTR:@.+]]([[S_FLOAT_TY]]* [[TEST]])
190// CHECK: %{{.+}} = bitcast [[CAP_MAIN_TY]]*
191// 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]+}}*, [[CAP_MAIN_TY]]*)* [[MAIN_MICROTASK:@.+]] to void
192// CHECK: = call {{.*}}i{{.+}} [[TMAIN_INT:@.+]]()
193// CHECK: call {{.*}} [[S_FLOAT_TY_DESTR:@.+]]([[S_FLOAT_TY]]*
194// CHECK: ret
195//
196// CHECK: define internal void [[MAIN_MICROTASK]](i{{[0-9]+}}* [[GTID_ADDR:%.+]], i{{[0-9]+}}* %{{.+}}, [[CAP_MAIN_TY]]* %{{.+}})
197// CHECK: [[T_VAR_PRIV:%.+]] = alloca float,
198// CHECK: [[VAR_PRIV:%.+]] = alloca [[S_FLOAT_TY]],
199// CHECK: [[VAR1_PRIV:%.+]] = alloca [[S_FLOAT_TY]],
200// CHECK: [[T_VAR1_PRIV:%.+]] = alloca float,
201
202// Reduction list for runtime.
203// CHECK: [[RED_LIST:%.+]] = alloca [4 x i8*],
204
205// CHECK: store i{{[0-9]+}}* [[GTID_ADDR]], i{{[0-9]+}}** [[GTID_ADDR_ADDR:%.+]],
206
207// CHECK: [[T_VAR_PTR_REF:%.+]] = getelementptr inbounds [[CAP_MAIN_TY]], [[CAP_MAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
208// CHECK: [[T_VAR_REF:%.+]] = load float*, float** [[T_VAR_PTR_REF]],
209// For + reduction operation initial value of private variable is 0.
210// CHECK: store float 0.0{{.+}}, float* [[T_VAR_PRIV]],
211
212// CHECK: [[VAR_PTR_REF:%.+]] = getelementptr inbounds [[CAP_MAIN_TY]], [[CAP_MAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
213// CHECK: [[VAR_REF:%.+]] = load [[S_FLOAT_TY]]*, [[S_FLOAT_TY]]** [[VAR_PTR_REF:%.+]],
214// For & reduction operation initial value of private variable is ones in all bits.
215// CHECK: call {{.*}} [[S_FLOAT_TY_CONSTR:@.+]]([[S_FLOAT_TY]]* [[VAR_PRIV]])
216
217// CHECK: [[VAR1_PTR_REF:%.+]] = getelementptr inbounds [[CAP_MAIN_TY]], [[CAP_MAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
218// CHECK: [[VAR1_REF:%.+]] = load [[S_FLOAT_TY]]*, [[S_FLOAT_TY]]** [[VAR_PTR_REF:%.+]],
219// For && reduction operation initial value of private variable is 1.0.
220// CHECK: call {{.*}} [[S_FLOAT_TY_CONSTR:@.+]]([[S_FLOAT_TY]]* [[VAR1_PRIV]])
221
222// CHECK: [[T_VAR1_PTR_REF:%.+]] = getelementptr inbounds [[CAP_MAIN_TY]], [[CAP_MAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
223// CHECK: [[T_VAR1_REF:%.+]] = load float*, float** [[T_VAR1_PTR_REF]],
224// For min reduction operation initial value of private variable is largest repesentable value.
225// CHECK: store float 0x47EFFFFFE0000000, float* [[T_VAR1_PRIV]],
226
227
228// CHECK: [[GTID_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[GTID_ADDR_ADDR]]
229// CHECK: [[GTID:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[GTID_REF]]
230// CHECK: call void @__kmpc_for_static_init_4(
231// Skip checks for internal operations.
232// CHECK: call void @__kmpc_for_static_fini(
233
234// void *RedList[<n>] = {<ReductionVars>[0], ..., <ReductionVars>[<n>-1]};
235
236// CHECK: [[T_VAR_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 0
237// CHECK: [[BITCAST:%.+]] = bitcast float* [[T_VAR_PRIV]] to i8*
238// CHECK: store i8* [[BITCAST]], i8** [[T_VAR_PRIV_REF]],
239// CHECK: [[VAR_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 1
240// CHECK: [[BITCAST:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR_PRIV]] to i8*
241// CHECK: store i8* [[BITCAST]], i8** [[VAR_PRIV_REF]],
242// CHECK: [[VAR1_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 2
243// CHECK: [[BITCAST:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR1_PRIV]] to i8*
244// CHECK: store i8* [[BITCAST]], i8** [[VAR1_PRIV_REF]],
245// CHECK: [[T_VAR1_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 3
246// CHECK: [[BITCAST:%.+]] = bitcast float* [[T_VAR1_PRIV]] to i8*
247// CHECK: store i8* [[BITCAST]], i8** [[T_VAR1_PRIV_REF]],
248
249// res = __kmpc_reduce(<loc>, <gtid>, <n>, sizeof(RedList), RedList, reduce_func, &<lock>);
250
251// CHECK: [[BITCAST:%.+]] = bitcast [4 x i8*]* [[RED_LIST]] to i8*
252// CHECK: [[RES:%.+]] = call i32 @__kmpc_reduce(%{{.+}}* [[REDUCTION_LOC]], i32 [[GTID]], i32 4, i64 32, i8* [[BITCAST]], void (i8*, i8*)* [[REDUCTION_FUNC:@.+]], [8 x i32]* [[REDUCTION_LOCK]])
253
254// switch(res)
255// CHECK: switch i32 [[RES]], label %[[RED_DONE:.+]] [
256// CHECK: i32 1, label %[[CASE1:.+]]
257// CHECK: i32 2, label %[[CASE2:.+]]
258// CHECK: ]
259
260// case 1:
261// t_var += t_var_reduction;
262// CHECK: [[T_VAR_VAL:%.+]] = load float, float* [[T_VAR_REF]],
263// CHECK: [[T_VAR_PRIV_VAL:%.+]] = load float, float* [[T_VAR_PRIV]],
264// CHECK: [[UP:%.+]] = fadd float [[T_VAR_VAL]], [[T_VAR_PRIV_VAL]]
265// CHECK: store float [[UP]], float* [[T_VAR_REF]],
266
267// var = var.operator &(var_reduction);
268// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_FLOAT_TY]]* @{{.+}}([[S_FLOAT_TY]]* [[VAR_REF]], [[S_FLOAT_TY]]* dereferenceable(4) [[VAR_PRIV]])
269// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR_REF]] to i8*
270// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[UP]] to i8*
271// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
272
273// var1 = var1.operator &&(var1_reduction);
274// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_REF]])
275// CHECK: [[VAR1_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
276// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
277// CHECK: [[TRUE]]
278// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_PRIV]])
279// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
280// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
281// CHECK: [[TRUE2]]
282// CHECK: br label %[[END2:.+]]
283// CHECK: [[FALSE2]]
284// CHECK: br label %[[END2]]
285// CHECK: [[END2]]
286// CHECK: [[COND_LVALUE:%.+]] = phi [[S_FLOAT_TY]]* [ [[VAR1_REF]], %[[TRUE2]] ], [ [[VAR1_PRIV]], %[[FALSE2]] ]
287// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR1_REF]] to i8*
288// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[COND_LVALUE]] to i8*
289// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
290
291// t_var1 = min(t_var1, t_var1_reduction);
292// CHECK: [[T_VAR1_VAL:%.+]] = load float, float* [[T_VAR1_REF]],
293// CHECK: [[T_VAR1_PRIV_VAL:%.+]] = load float, float* [[T_VAR1_PRIV]],
294// CHECK: [[CMP:%.+]] = fcmp olt float [[T_VAR1_VAL]], [[T_VAR1_PRIV_VAL]]
295// CHECK: [[UP:%.+]] = uitofp i1 [[CMP]] to float
296// CHECK: store float [[UP]], float* [[T_VAR1_REF]],
297
298// __kmpc_end_reduce(<loc>, <gtid>, &<lock>);
299// CHECK: call void @__kmpc_end_reduce(%{{.+}}* [[REDUCTION_LOC]], i32 [[GTID]], [8 x i32]* [[REDUCTION_LOCK]])
300
301// break;
302// CHECK: br label %[[RED_DONE]]
303
304// case 2:
305// t_var += t_var_reduction;
306// CHECK: load float, float* [[T_VAR_PRIV]]
307// CHECK: [[T_VAR_REF_INT:%.+]] = bitcast float* [[T_VAR_REF]] to i32*
308// CHECK: load atomic i32, i32* [[T_VAR_REF_INT]] monotonic,
309// CHECK: [[OLD1:%.+]] = bitcast i32 %{{.+}} to float
310// CHECK: br label %[[CONT:.+]]
311// CHECK: [[CONT]]
312// CHECK: [[ORIG_OLD:%.+]] = phi float [ [[OLD1]], %{{.+}} ], [ [[OLD2:%.+]], %[[CONT]] ]
313// CHECK: [[UP:%.+]] = fadd float
314// CHECK: [[ORIG_OLD_INT:%.+]] = bitcast float [[ORIG_OLD]] to i32
315// CHECK: [[UP_INT:%.+]] = bitcast float [[UP]] to i32
316// CHECK: [[T_VAR_REF_INT:%.+]] = bitcast float* [[T_VAR_REF]] to i32*
317// CHECK: [[RES:%.+]] = cmpxchg i32* [[T_VAR_REF_INT]], i32 [[ORIG_OLD_INT]], i32 [[UP_INT]] monotonic monotonic
318// CHECK: [[OLD_VAL_INT:%.+]] = extractvalue { i32, i1 } [[RES]], 0
319// CHECK: [[SUCCESS_FAIL:%.+]] = extractvalue { i32, i1 } [[RES]], 1
320// CHECK: [[OLD2]] = bitcast i32 [[OLD_VAL_INT]] to float
321// CHECK: br i1 [[SUCCESS_FAIL]], label %[[ATOMIC_DONE:.+]], label %[[CONT]]
322// CHECK: [[ATOMIC_DONE]]
323
324// var = var.operator &(var_reduction);
325// CHECK: call void @__kmpc_critical(
326// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_FLOAT_TY]]* @{{.+}}([[S_FLOAT_TY]]* [[VAR_REF]], [[S_FLOAT_TY]]* dereferenceable(4) [[VAR_PRIV]])
327// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR_REF]] to i8*
328// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[UP]] to i8*
329// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
330// CHECK: call void @__kmpc_end_critical(
331
332// var1 = var1.operator &&(var1_reduction);
333// CHECK: call void @__kmpc_critical(
334// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_REF]])
335// CHECK: [[VAR1_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
336// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
337// CHECK: [[TRUE]]
338// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_PRIV]])
339// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
340// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
341// CHECK: [[TRUE2]]
342// CHECK: br label %[[END2:.+]]
343// CHECK: [[FALSE2]]
344// CHECK: br label %[[END2]]
345// CHECK: [[END2]]
346// CHECK: [[COND_LVALUE:%.+]] = phi [[S_FLOAT_TY]]* [ [[VAR1_REF]], %[[TRUE2]] ], [ [[VAR1_PRIV]], %[[FALSE2]] ]
347// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR1_REF]] to i8*
348// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[COND_LVALUE]] to i8*
349// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
350// CHECK: call void @__kmpc_end_critical(
351
352// t_var1 = min(t_var1, t_var1_reduction);
353// CHECK: load float, float* [[T_VAR1_PRIV]]
354// CHECK: [[T_VAR1_REF_INT:%.+]] = bitcast float* [[T_VAR1_REF]] to i32*
355// CHECK: load atomic i32, i32* [[T_VAR1_REF_INT]] monotonic,
356// CHECK: [[OLD1:%.+]] = bitcast i32 %{{.+}} to float
357// CHECK: br label %[[CONT:.+]]
358// CHECK: [[CONT]]
359// CHECK: [[ORIG_OLD:%.+]] = phi float [ [[OLD1]], %{{.+}} ], [ [[OLD2:%.+]], %[[CONT]] ]
360// CHECK: [[CMP:%.+]] = fcmp olt float
361// CHECK: [[UP:%.+]] = uitofp i1 [[CMP]] to float
362// CHECK: [[ORIG_OLD_INT:%.+]] = bitcast float [[ORIG_OLD]] to i32
363// CHECK: [[UP_INT:%.+]] = bitcast float [[UP]] to i32
364// CHECK: [[T_VAR1_REF_INT:%.+]] = bitcast float* [[T_VAR1_REF]] to i32*
365// CHECK: [[RES:%.+]] = cmpxchg i32* [[T_VAR1_REF_INT]], i32 [[ORIG_OLD_INT]], i32 [[UP_INT]] monotonic monotonic
366// CHECK: [[OLD_VAL_INT:%.+]] = extractvalue { i32, i1 } [[RES]], 0
367// CHECK: [[SUCCESS_FAIL:%.+]] = extractvalue { i32, i1 } [[RES]], 1
368// CHECK: [[OLD2]] = bitcast i32 [[OLD_VAL_INT]] to float
369// CHECK: br i1 [[SUCCESS_FAIL]], label %[[ATOMIC_DONE:.+]], label %[[CONT]]
370// CHECK: [[ATOMIC_DONE]]
371
372// break;
373// CHECK: br label %[[RED_DONE]]
374// CHECK: [[RED_DONE]]
375// CHECK-DAG: call {{.*}} [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]* [[VAR_PRIV]])
376// CHECK-DAG: call {{.*}} [[S_FLOAT_TY_DESTR]]([[S_FLOAT_TY]]*
377// CHECK: call i32 @__kmpc_cancel_barrier(%{{.+}}* [[IMPLICIT_BARRIER_LOC]], i{{[0-9]+}} [[GTID]])
378// CHECK: call i32 @__kmpc_cancel_barrier(%{{.+}}* [[IMPLICIT_BARRIER_LOC]], i{{[0-9]+}} [[GTID]])
379
380// CHECK: ret void
381
382// void reduce_func(void *lhs[<n>], void *rhs[<n>]) {
383// *(Type0*)lhs[0] = ReductionOperation0(*(Type0*)lhs[0], *(Type0*)rhs[0]);
384// ...
385// *(Type<n>-1*)lhs[<n>-1] = ReductionOperation<n>-1(*(Type<n>-1*)lhs[<n>-1],
386// *(Type<n>-1*)rhs[<n>-1]);
387// }
388// CHECK: define internal void [[REDUCTION_FUNC]](i8*, i8*)
389// t_var_lhs = (float*)lhs[0];
390// CHECK: [[T_VAR_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS:%.+]], i32 0, i32 0
391// CHECK: [[T_VAR_RHS_VOID:%.+]] = load i8*, i8** [[T_VAR_RHS_REF]],
392// CHECK: [[T_VAR_RHS:%.+]] = bitcast i8* [[T_VAR_RHS_VOID]] to float*
393// t_var_rhs = (float*)rhs[0];
394// CHECK: [[T_VAR_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS:%.+]], i32 0, i32 0
395// CHECK: [[T_VAR_LHS_VOID:%.+]] = load i8*, i8** [[T_VAR_LHS_REF]],
396// CHECK: [[T_VAR_LHS:%.+]] = bitcast i8* [[T_VAR_LHS_VOID]] to float*
397
398// var_lhs = (S<float>*)lhs[1];
399// CHECK: [[VAR_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 1
400// CHECK: [[VAR_RHS_VOID:%.+]] = load i8*, i8** [[VAR_RHS_REF]],
401// CHECK: [[VAR_RHS:%.+]] = bitcast i8* [[VAR_RHS_VOID]] to [[S_FLOAT_TY]]*
402// var_rhs = (S<float>*)rhs[1];
403// CHECK: [[VAR_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 1
404// CHECK: [[VAR_LHS_VOID:%.+]] = load i8*, i8** [[VAR_LHS_REF]],
405// CHECK: [[VAR_LHS:%.+]] = bitcast i8* [[VAR_LHS_VOID]] to [[S_FLOAT_TY]]*
406
407// var1_lhs = (S<float>*)lhs[2];
408// CHECK: [[VAR1_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 2
409// CHECK: [[VAR1_RHS_VOID:%.+]] = load i8*, i8** [[VAR1_RHS_REF]],
410// CHECK: [[VAR1_RHS:%.+]] = bitcast i8* [[VAR1_RHS_VOID]] to [[S_FLOAT_TY]]*
411// var1_rhs = (S<float>*)rhs[2];
412// CHECK: [[VAR1_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 2
413// CHECK: [[VAR1_LHS_VOID:%.+]] = load i8*, i8** [[VAR1_LHS_REF]],
414// CHECK: [[VAR1_LHS:%.+]] = bitcast i8* [[VAR1_LHS_VOID]] to [[S_FLOAT_TY]]*
415
416// t_var1_lhs = (float*)lhs[3];
417// CHECK: [[T_VAR1_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 3
418// CHECK: [[T_VAR1_RHS_VOID:%.+]] = load i8*, i8** [[T_VAR1_RHS_REF]],
419// CHECK: [[T_VAR1_RHS:%.+]] = bitcast i8* [[T_VAR1_RHS_VOID]] to float*
420// t_var1_rhs = (float*)rhs[3];
421// CHECK: [[T_VAR1_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 3
422// CHECK: [[T_VAR1_LHS_VOID:%.+]] = load i8*, i8** [[T_VAR1_LHS_REF]],
423// CHECK: [[T_VAR1_LHS:%.+]] = bitcast i8* [[T_VAR1_LHS_VOID]] to float*
424
425// t_var_lhs += t_var_rhs;
426// CHECK: [[T_VAR_LHS_VAL:%.+]] = load float, float* [[T_VAR_LHS]],
427// CHECK: [[T_VAR_RHS_VAL:%.+]] = load float, float* [[T_VAR_RHS]],
428// CHECK: [[UP:%.+]] = fadd float [[T_VAR_LHS_VAL]], [[T_VAR_RHS_VAL]]
429// CHECK: store float [[UP]], float* [[T_VAR_LHS]],
430
431// var_lhs = var_lhs.operator &(var_rhs);
432// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_FLOAT_TY]]* @{{.+}}([[S_FLOAT_TY]]* [[VAR_LHS]], [[S_FLOAT_TY]]* dereferenceable(4) [[VAR_RHS]])
433// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR_LHS]] to i8*
434// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[UP]] to i8*
435// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
436
437// var1_lhs = var1_lhs.operator &&(var1_rhs);
438// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_LHS]])
439// CHECK: [[VAR1_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
440// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
441// CHECK: [[TRUE]]
442// CHECK: [[TO_FLOAT:%.+]] = call float @{{.+}}([[S_FLOAT_TY]]* [[VAR1_RHS]])
443// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = fcmp une float [[TO_FLOAT]], 0.0
444// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
445// CHECK: [[TRUE2]]
446// CHECK: br label %[[END2:.+]]
447// CHECK: [[FALSE2]]
448// CHECK: br label %[[END2]]
449// CHECK: [[END2]]
450// CHECK: [[COND_LVALUE:%.+]] = phi [[S_FLOAT_TY]]* [ [[VAR1_LHS]], %[[TRUE2]] ], [ [[VAR1_RHS]], %[[FALSE2]] ]
451// CHECK: [[BC1:%.+]] = bitcast [[S_FLOAT_TY]]* [[VAR1_LHS]] to i8*
452// CHECK: [[BC2:%.+]] = bitcast [[S_FLOAT_TY]]* [[COND_LVALUE]] to i8*
453// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
454
455// t_var1_lhs = min(t_var1_lhs, t_var1_rhs);
456// CHECK: [[T_VAR1_LHS_VAL:%.+]] = load float, float* [[T_VAR1_LHS]],
457// CHECK: [[T_VAR1_RHS_VAL:%.+]] = load float, float* [[T_VAR1_RHS]],
458// CHECK: [[CMP:%.+]] = fcmp olt float [[T_VAR1_LHS_VAL]], [[T_VAR1_RHS_VAL]]
459// CHECK: [[UP:%.+]] = uitofp i1 [[CMP]] to float
460// CHECK: store float [[UP]], float* [[T_VAR1_LHS]],
461// CHECK: ret void
462
463// CHECK: define {{.*}} i{{[0-9]+}} [[TMAIN_INT]]()
464// CHECK: [[TEST:%.+]] = alloca [[S_INT_TY]],
465// CHECK: call {{.*}} [[S_INT_TY_CONSTR:@.+]]([[S_INT_TY]]* [[TEST]])
466// CHECK: %{{.+}} = bitcast [[CAP_TMAIN_TY]]*
467// 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]+}}*, [[CAP_TMAIN_TY]]*)* [[TMAIN_MICROTASK:@.+]] to void
468// CHECK: call {{.*}} [[S_INT_TY_DESTR:@.+]]([[S_INT_TY]]*
469// CHECK: ret
470//
471// CHECK: define internal void [[TMAIN_MICROTASK]](i{{[0-9]+}}* [[GTID_ADDR:%.+]], i{{[0-9]+}}* %{{.+}}, [[CAP_TMAIN_TY]]* %{{.+}})
472// CHECK: alloca i{{[0-9]+}},
473// CHECK: alloca i{{[0-9]+}},
474// CHECK: alloca i{{[0-9]+}},
475// CHECK: alloca i{{[0-9]+}},
476// CHECK: alloca i{{[0-9]+}},
477// CHECK: [[T_VAR_PRIV:%.+]] = alloca i{{[0-9]+}},
478// CHECK: [[VAR_PRIV:%.+]] = alloca [[S_INT_TY]],
479// CHECK: [[VAR1_PRIV:%.+]] = alloca [[S_INT_TY]],
480// CHECK: [[T_VAR1_PRIV:%.+]] = alloca i{{[0-9]+}},
481
482// Reduction list for runtime.
483// CHECK: [[RED_LIST:%.+]] = alloca [4 x i8*],
484
485// CHECK: store i{{[0-9]+}}* [[GTID_ADDR]], i{{[0-9]+}}** [[GTID_ADDR_ADDR:%.+]],
486
487// CHECK: [[T_VAR_PTR_REF:%.+]] = getelementptr inbounds [[CAP_TMAIN_TY]], [[CAP_TMAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
488// CHECK: [[T_VAR_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[T_VAR_PTR_REF]],
489// For + reduction operation initial value of private variable is 0.
490// CHECK: store i{{[0-9]+}} 0, i{{[0-9]+}}* [[T_VAR_PRIV]],
491
492// CHECK: [[VAR_PTR_REF:%.+]] = getelementptr inbounds [[CAP_TMAIN_TY]], [[CAP_TMAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
493// CHECK: [[VAR_REF:%.+]] = load [[S_INT_TY]]*, [[S_INT_TY]]** [[VAR_PTR_REF:%.+]],
494// For & reduction operation initial value of private variable is ones in all bits.
495// CHECK: call {{.*}} [[S_INT_TY_CONSTR:@.+]]([[S_INT_TY]]* [[VAR_PRIV]])
496
497// CHECK: [[VAR1_PTR_REF:%.+]] = getelementptr inbounds [[CAP_TMAIN_TY]], [[CAP_TMAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
498// CHECK: [[VAR1_REF:%.+]] = load [[S_INT_TY]]*, [[S_INT_TY]]** [[VAR_PTR_REF:%.+]],
499// For && reduction operation initial value of private variable is 1.0.
500// CHECK: call {{.*}} [[S_INT_TY_CONSTR:@.+]]([[S_INT_TY]]* [[VAR1_PRIV]])
501
502// CHECK: [[T_VAR1_PTR_REF:%.+]] = getelementptr inbounds [[CAP_TMAIN_TY]], [[CAP_TMAIN_TY]]* %{{.+}}, i{{[0-9]+}} 0, i{{[0-9]+}} {{[0-9]+}}
503// CHECK: [[T_VAR1_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[T_VAR1_PTR_REF]],
504// For min reduction operation initial value of private variable is largest repesentable value.
505// CHECK: store i{{[0-9]+}} 2147483647, i{{[0-9]+}}* [[T_VAR1_PRIV]],
506
507// CHECK: [[GTID_REF:%.+]] = load i{{[0-9]+}}*, i{{[0-9]+}}** [[GTID_ADDR_ADDR]]
508// CHECK: [[GTID:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[GTID_REF]]
509// CHECK: call void @__kmpc_for_static_init_4(
510// Skip checks for internal operations.
511// CHECK: call void @__kmpc_for_static_fini(
512
513// void *RedList[<n>] = {<ReductionVars>[0], ..., <ReductionVars>[<n>-1]};
514
515// CHECK: [[T_VAR_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 0
516// CHECK: [[BITCAST:%.+]] = bitcast i{{[0-9]+}}* [[T_VAR_PRIV]] to i8*
517// CHECK: store i8* [[BITCAST]], i8** [[T_VAR_PRIV_REF]],
518// CHECK: [[VAR_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 1
519// CHECK: [[BITCAST:%.+]] = bitcast [[S_INT_TY]]* [[VAR_PRIV]] to i8*
520// CHECK: store i8* [[BITCAST]], i8** [[VAR_PRIV_REF]],
521// CHECK: [[VAR1_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 2
522// CHECK: [[BITCAST:%.+]] = bitcast [[S_INT_TY]]* [[VAR1_PRIV]] to i8*
523// CHECK: store i8* [[BITCAST]], i8** [[VAR1_PRIV_REF]],
524// CHECK: [[T_VAR1_PRIV_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST]], i32 0, i32 3
525// CHECK: [[BITCAST:%.+]] = bitcast i{{[0-9]+}}* [[T_VAR1_PRIV]] to i8*
526// CHECK: store i8* [[BITCAST]], i8** [[T_VAR1_PRIV_REF]],
527
528// res = __kmpc_reduce_nowait(<loc>, <gtid>, <n>, sizeof(RedList), RedList, reduce_func, &<lock>);
529
530// CHECK: [[BITCAST:%.+]] = bitcast [4 x i8*]* [[RED_LIST]] to i8*
531// CHECK: [[RES:%.+]] = call i32 @__kmpc_reduce_nowait(%{{.+}}* [[REDUCTION_LOC]], i32 [[GTID]], i32 4, i64 32, i8* [[BITCAST]], void (i8*, i8*)* [[REDUCTION_FUNC:@.+]], [8 x i32]* [[REDUCTION_LOCK]])
532
533// switch(res)
534// CHECK: switch i32 [[RES]], label %[[RED_DONE:.+]] [
535// CHECK: i32 1, label %[[CASE1:.+]]
536// CHECK: i32 2, label %[[CASE2:.+]]
537// CHECK: ]
538
539// case 1:
540// t_var += t_var_reduction;
541// CHECK: [[T_VAR_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR_REF]],
542// CHECK: [[T_VAR_PRIV_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR_PRIV]],
543// CHECK: [[UP:%.+]] = add nsw i{{[0-9]+}} [[T_VAR_VAL]], [[T_VAR_PRIV_VAL]]
544// CHECK: store i{{[0-9]+}} [[UP]], i{{[0-9]+}}* [[T_VAR_REF]],
545
546// var = var.operator &(var_reduction);
547// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_INT_TY]]* @{{.+}}([[S_INT_TY]]* [[VAR_REF]], [[S_INT_TY]]* dereferenceable(4) [[VAR_PRIV]])
548// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR_REF]] to i8*
549// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[UP]] to i8*
550// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
551
552// var1 = var1.operator &&(var1_reduction);
553// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_REF]])
554// CHECK: [[VAR1_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
555// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
556// CHECK: [[TRUE]]
557// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_PRIV]])
558// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
559// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
560// CHECK: [[TRUE2]]
561// CHECK: br label %[[END2:.+]]
562// CHECK: [[FALSE2]]
563// CHECK: br label %[[END2]]
564// CHECK: [[END2]]
565// CHECK: [[COND_LVALUE:%.+]] = phi [[S_INT_TY]]* [ [[VAR1_REF]], %[[TRUE2]] ], [ [[VAR1_PRIV]], %[[FALSE2]] ]
566// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR1_REF]] to i8*
567// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[COND_LVALUE]] to i8*
568// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
569
570// t_var1 = min(t_var1, t_var1_reduction);
571// CHECK: [[T_VAR1_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR1_REF]],
572// CHECK: [[T_VAR1_PRIV_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR1_PRIV]],
573// CHECK: [[CMP:%.+]] = icmp slt i{{[0-9]+}} [[T_VAR1_VAL]], [[T_VAR1_PRIV_VAL]]
574// CHECK: [[UP:%.+]] = zext i1 [[CMP]] to i{{[0-9]+}}
575// CHECK: store i{{[0-9]+}} [[UP]], i{{[0-9]+}}* [[T_VAR1_REF]],
576
577// __kmpc_end_reduce_nowait(<loc>, <gtid>, &<lock>);
578// CHECK: call void @__kmpc_end_reduce_nowait(%{{.+}}* [[REDUCTION_LOC]], i32 [[GTID]], [8 x i32]* [[REDUCTION_LOCK]])
579
580// break;
581// CHECK: br label %[[RED_DONE]]
582
583// case 2:
584// t_var += t_var_reduction;
585// CHECK: [[T_VAR_PRIV_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR_PRIV]]
586// CHECK: atomicrmw add i32* [[T_VAR_REF]], i32 [[T_VAR_PRIV_VAL]] monotonic
587
588// var = var.operator &(var_reduction);
589// CHECK: call void @__kmpc_critical(
590// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_INT_TY]]* @{{.+}}([[S_INT_TY]]* [[VAR_REF]], [[S_INT_TY]]* dereferenceable(4) [[VAR_PRIV]])
591// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR_REF]] to i8*
592// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[UP]] to i8*
593// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
594// CHECK: call void @__kmpc_end_critical(
595
596// var1 = var1.operator &&(var1_reduction);
597// CHECK: call void @__kmpc_critical(
598// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_REF]])
599// CHECK: [[VAR1_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
600// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
601// CHECK: [[TRUE]]
602// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_PRIV]])
603// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
604// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
605// CHECK: [[TRUE2]]
606// CHECK: br label %[[END2:.+]]
607// CHECK: [[FALSE2]]
608// CHECK: br label %[[END2]]
609// CHECK: [[END2]]
610// CHECK: [[COND_LVALUE:%.+]] = phi [[S_INT_TY]]* [ [[VAR1_REF]], %[[TRUE2]] ], [ [[VAR1_PRIV]], %[[FALSE2]] ]
611// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR1_REF]] to i8*
612// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[COND_LVALUE]] to i8*
613// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
614// CHECK: call void @__kmpc_end_critical(
615
616// t_var1 = min(t_var1, t_var1_reduction);
617// CHECK: [[T_VAR1_PRIV_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR1_PRIV]]
618// CHECK: atomicrmw min i32* [[T_VAR1_REF]], i32 [[T_VAR1_PRIV_VAL]] monotonic
619
620// break;
621// CHECK: br label %[[RED_DONE]]
622// CHECK: [[RED_DONE]]
623// CHECK-DAG: call {{.*}} [[S_INT_TY_DESTR]]([[S_INT_TY]]* [[VAR_PRIV]])
624// CHECK-DAG: call {{.*}} [[S_INT_TY_DESTR]]([[S_INT_TY]]*
625// CHECK: call i32 @__kmpc_cancel_barrier(%{{.+}}* [[IMPLICIT_BARRIER_LOC]], i{{[0-9]+}} [[GTID]])
626// CHECK: ret void
627
628// void reduce_func(void *lhs[<n>], void *rhs[<n>]) {
629// *(Type0*)lhs[0] = ReductionOperation0(*(Type0*)lhs[0], *(Type0*)rhs[0]);
630// ...
631// *(Type<n>-1*)lhs[<n>-1] = ReductionOperation<n>-1(*(Type<n>-1*)lhs[<n>-1],
632// *(Type<n>-1*)rhs[<n>-1]);
633// }
634// CHECK: define internal void [[REDUCTION_FUNC]](i8*, i8*)
635// t_var_lhs = (i{{[0-9]+}}*)lhs[0];
636// CHECK: [[T_VAR_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS:%.+]], i32 0, i32 0
637// CHECK: [[T_VAR_RHS_VOID:%.+]] = load i8*, i8** [[T_VAR_RHS_REF]],
638// CHECK: [[T_VAR_RHS:%.+]] = bitcast i8* [[T_VAR_RHS_VOID]] to i{{[0-9]+}}*
639// t_var_rhs = (i{{[0-9]+}}*)rhs[0];
640// CHECK: [[T_VAR_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS:%.+]], i32 0, i32 0
641// CHECK: [[T_VAR_LHS_VOID:%.+]] = load i8*, i8** [[T_VAR_LHS_REF]],
642// CHECK: [[T_VAR_LHS:%.+]] = bitcast i8* [[T_VAR_LHS_VOID]] to i{{[0-9]+}}*
643
644// var_lhs = (S<i{{[0-9]+}}>*)lhs[1];
645// CHECK: [[VAR_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 1
646// CHECK: [[VAR_RHS_VOID:%.+]] = load i8*, i8** [[VAR_RHS_REF]],
647// CHECK: [[VAR_RHS:%.+]] = bitcast i8* [[VAR_RHS_VOID]] to [[S_INT_TY]]*
648// var_rhs = (S<i{{[0-9]+}}>*)rhs[1];
649// CHECK: [[VAR_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 1
650// CHECK: [[VAR_LHS_VOID:%.+]] = load i8*, i8** [[VAR_LHS_REF]],
651// CHECK: [[VAR_LHS:%.+]] = bitcast i8* [[VAR_LHS_VOID]] to [[S_INT_TY]]*
652
653// var1_lhs = (S<i{{[0-9]+}}>*)lhs[2];
654// CHECK: [[VAR1_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 2
655// CHECK: [[VAR1_RHS_VOID:%.+]] = load i8*, i8** [[VAR1_RHS_REF]],
656// CHECK: [[VAR1_RHS:%.+]] = bitcast i8* [[VAR1_RHS_VOID]] to [[S_INT_TY]]*
657// var1_rhs = (S<i{{[0-9]+}}>*)rhs[2];
658// CHECK: [[VAR1_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 2
659// CHECK: [[VAR1_LHS_VOID:%.+]] = load i8*, i8** [[VAR1_LHS_REF]],
660// CHECK: [[VAR1_LHS:%.+]] = bitcast i8* [[VAR1_LHS_VOID]] to [[S_INT_TY]]*
661
662// t_var1_lhs = (i{{[0-9]+}}*)lhs[3];
663// CHECK: [[T_VAR1_RHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_RHS]], i32 0, i32 3
664// CHECK: [[T_VAR1_RHS_VOID:%.+]] = load i8*, i8** [[T_VAR1_RHS_REF]],
665// CHECK: [[T_VAR1_RHS:%.+]] = bitcast i8* [[T_VAR1_RHS_VOID]] to i{{[0-9]+}}*
666// t_var1_rhs = (i{{[0-9]+}}*)rhs[3];
667// CHECK: [[T_VAR1_LHS_REF:%.+]] = getelementptr inbounds [4 x i8*], [4 x i8*]* [[RED_LIST_LHS]], i32 0, i32 3
668// CHECK: [[T_VAR1_LHS_VOID:%.+]] = load i8*, i8** [[T_VAR1_LHS_REF]],
669// CHECK: [[T_VAR1_LHS:%.+]] = bitcast i8* [[T_VAR1_LHS_VOID]] to i{{[0-9]+}}*
670
671// t_var_lhs += t_var_rhs;
672// CHECK: [[T_VAR_LHS_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR_LHS]],
673// CHECK: [[T_VAR_RHS_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR_RHS]],
674// CHECK: [[UP:%.+]] = add nsw i{{[0-9]+}} [[T_VAR_LHS_VAL]], [[T_VAR_RHS_VAL]]
675// CHECK: store i{{[0-9]+}} [[UP]], i{{[0-9]+}}* [[T_VAR_LHS]],
676
677// var_lhs = var_lhs.operator &(var_rhs);
678// CHECK: [[UP:%.+]] = call dereferenceable(4) [[S_INT_TY]]* @{{.+}}([[S_INT_TY]]* [[VAR_LHS]], [[S_INT_TY]]* dereferenceable(4) [[VAR_RHS]])
679// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR_LHS]] to i8*
680// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[UP]] to i8*
681// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
682
683// var1_lhs = var1_lhs.operator &&(var1_rhs);
684// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_LHS]])
685// CHECK: [[VAR1_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
686// CHECK: br i1 [[VAR1_BOOL]], label %[[TRUE:.+]], label %[[FALSE:.+]]
687// CHECK: [[TRUE]]
688// CHECK: [[TO_INT:%.+]] = call i{{[0-9]+}} @{{.+}}([[S_INT_TY]]* [[VAR1_RHS]])
689// CHECK: [[VAR1_REDUCTION_BOOL:%.+]] = icmp ne i{{[0-9]+}} [[TO_INT]], 0
690// CHECK: br i1 [[VAR1_REDUCTION_BOOL]], label %[[TRUE2:.+]], label %[[FALSE2:.+]]
691// CHECK: [[TRUE2]]
692// CHECK: br label %[[END2:.+]]
693// CHECK: [[FALSE2]]
694// CHECK: br label %[[END2]]
695// CHECK: [[END2]]
696// CHECK: [[COND_LVALUE:%.+]] = phi [[S_INT_TY]]* [ [[VAR1_LHS]], %[[TRUE2]] ], [ [[VAR1_RHS]], %[[FALSE2]] ]
697// CHECK: [[BC1:%.+]] = bitcast [[S_INT_TY]]* [[VAR1_LHS]] to i8*
698// CHECK: [[BC2:%.+]] = bitcast [[S_INT_TY]]* [[COND_LVALUE]] to i8*
699// CHECK: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[BC1]], i8* [[BC2]], i64 4, i32 4, i1 false)
700
701// t_var1_lhs = min(t_var1_lhs, t_var1_rhs);
702// CHECK: [[T_VAR1_LHS_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR1_LHS]],
703// CHECK: [[T_VAR1_RHS_VAL:%.+]] = load i{{[0-9]+}}, i{{[0-9]+}}* [[T_VAR1_RHS]],
704// CHECK: [[CMP:%.+]] = icmp slt i{{[0-9]+}} [[T_VAR1_LHS_VAL]], [[T_VAR1_RHS_VAL]]
705// CHECK: [[UP:%.+]] = zext i1 [[CMP]] to i{{[0-9]+}}
706// CHECK: store i{{[0-9]+}} [[UP]], i{{[0-9]+}}* [[T_VAR1_LHS]],
707// CHECK: ret void
708
709#endif
710