1*67e74705SXin Li // RUN: %clang_cc1 %s -emit-llvm -o - -ffreestanding -ffake-address-space-map -triple=i686-apple-darwin9 | FileCheck %s
2*67e74705SXin Li // REQUIRES: x86-registered-target
3*67e74705SXin Li
4*67e74705SXin Li // Also test serialization of atomic operations here, to avoid duplicating the
5*67e74705SXin Li // test.
6*67e74705SXin Li // RUN: %clang_cc1 %s -emit-pch -o %t -ffreestanding -ffake-address-space-map -triple=i686-apple-darwin9
7*67e74705SXin Li // RUN: %clang_cc1 %s -include-pch %t -ffreestanding -ffake-address-space-map -triple=i686-apple-darwin9 -emit-llvm -o - | FileCheck %s
8*67e74705SXin Li #ifndef ALREADY_INCLUDED
9*67e74705SXin Li #define ALREADY_INCLUDED
10*67e74705SXin Li
11*67e74705SXin Li #include <stdatomic.h>
12*67e74705SXin Li
13*67e74705SXin Li // Basic IRGen tests for __c11_atomic_* and GNU __atomic_*
14*67e74705SXin Li
fi1(_Atomic (int)* i)15*67e74705SXin Li int fi1(_Atomic(int) *i) {
16*67e74705SXin Li // CHECK-LABEL: @fi1
17*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} seq_cst
18*67e74705SXin Li return __c11_atomic_load(i, memory_order_seq_cst);
19*67e74705SXin Li }
20*67e74705SXin Li
fi1a(int * i)21*67e74705SXin Li int fi1a(int *i) {
22*67e74705SXin Li // CHECK-LABEL: @fi1a
23*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} seq_cst
24*67e74705SXin Li int v;
25*67e74705SXin Li __atomic_load(i, &v, memory_order_seq_cst);
26*67e74705SXin Li return v;
27*67e74705SXin Li }
28*67e74705SXin Li
fi1b(int * i)29*67e74705SXin Li int fi1b(int *i) {
30*67e74705SXin Li // CHECK-LABEL: @fi1b
31*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} seq_cst
32*67e74705SXin Li return __atomic_load_n(i, memory_order_seq_cst);
33*67e74705SXin Li }
34*67e74705SXin Li
fi1c(atomic_int * i)35*67e74705SXin Li int fi1c(atomic_int *i) {
36*67e74705SXin Li // CHECK-LABEL: @fi1c
37*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} seq_cst
38*67e74705SXin Li return atomic_load(i);
39*67e74705SXin Li }
40*67e74705SXin Li
fi2(_Atomic (int)* i)41*67e74705SXin Li void fi2(_Atomic(int) *i) {
42*67e74705SXin Li // CHECK-LABEL: @fi2
43*67e74705SXin Li // CHECK: store atomic i32 {{.*}} seq_cst
44*67e74705SXin Li __c11_atomic_store(i, 1, memory_order_seq_cst);
45*67e74705SXin Li }
46*67e74705SXin Li
fi2a(int * i)47*67e74705SXin Li void fi2a(int *i) {
48*67e74705SXin Li // CHECK-LABEL: @fi2a
49*67e74705SXin Li // CHECK: store atomic i32 {{.*}} seq_cst
50*67e74705SXin Li int v = 1;
51*67e74705SXin Li __atomic_store(i, &v, memory_order_seq_cst);
52*67e74705SXin Li }
53*67e74705SXin Li
fi2b(int * i)54*67e74705SXin Li void fi2b(int *i) {
55*67e74705SXin Li // CHECK-LABEL: @fi2b
56*67e74705SXin Li // CHECK: store atomic i32 {{.*}} seq_cst
57*67e74705SXin Li __atomic_store_n(i, 1, memory_order_seq_cst);
58*67e74705SXin Li }
59*67e74705SXin Li
fi2c(atomic_int * i)60*67e74705SXin Li void fi2c(atomic_int *i) {
61*67e74705SXin Li // CHECK-LABEL: @fi2c
62*67e74705SXin Li // CHECK: store atomic i32 {{.*}} seq_cst
63*67e74705SXin Li atomic_store(i, 1);
64*67e74705SXin Li }
65*67e74705SXin Li
fi3(_Atomic (int)* i)66*67e74705SXin Li int fi3(_Atomic(int) *i) {
67*67e74705SXin Li // CHECK-LABEL: @fi3
68*67e74705SXin Li // CHECK: atomicrmw and
69*67e74705SXin Li // CHECK-NOT: and
70*67e74705SXin Li return __c11_atomic_fetch_and(i, 1, memory_order_seq_cst);
71*67e74705SXin Li }
72*67e74705SXin Li
fi3a(int * i)73*67e74705SXin Li int fi3a(int *i) {
74*67e74705SXin Li // CHECK-LABEL: @fi3a
75*67e74705SXin Li // CHECK: atomicrmw xor
76*67e74705SXin Li // CHECK-NOT: xor
77*67e74705SXin Li return __atomic_fetch_xor(i, 1, memory_order_seq_cst);
78*67e74705SXin Li }
79*67e74705SXin Li
fi3b(int * i)80*67e74705SXin Li int fi3b(int *i) {
81*67e74705SXin Li // CHECK-LABEL: @fi3b
82*67e74705SXin Li // CHECK: atomicrmw add
83*67e74705SXin Li // CHECK: add
84*67e74705SXin Li return __atomic_add_fetch(i, 1, memory_order_seq_cst);
85*67e74705SXin Li }
86*67e74705SXin Li
fi3c(int * i)87*67e74705SXin Li int fi3c(int *i) {
88*67e74705SXin Li // CHECK-LABEL: @fi3c
89*67e74705SXin Li // CHECK: atomicrmw nand
90*67e74705SXin Li // CHECK-NOT: and
91*67e74705SXin Li return __atomic_fetch_nand(i, 1, memory_order_seq_cst);
92*67e74705SXin Li }
93*67e74705SXin Li
fi3d(int * i)94*67e74705SXin Li int fi3d(int *i) {
95*67e74705SXin Li // CHECK-LABEL: @fi3d
96*67e74705SXin Li // CHECK: atomicrmw nand
97*67e74705SXin Li // CHECK: and
98*67e74705SXin Li // CHECK: xor
99*67e74705SXin Li return __atomic_nand_fetch(i, 1, memory_order_seq_cst);
100*67e74705SXin Li }
101*67e74705SXin Li
fi3e(atomic_int * i)102*67e74705SXin Li int fi3e(atomic_int *i) {
103*67e74705SXin Li // CHECK-LABEL: @fi3e
104*67e74705SXin Li // CHECK: atomicrmw or
105*67e74705SXin Li // CHECK-NOT: {{ or }}
106*67e74705SXin Li return atomic_fetch_or(i, 1);
107*67e74705SXin Li }
108*67e74705SXin Li
fi3f(int * i)109*67e74705SXin Li int fi3f(int *i) {
110*67e74705SXin Li // CHECK-LABEL: @fi3f
111*67e74705SXin Li // CHECK-NOT: store volatile
112*67e74705SXin Li // CHECK: atomicrmw or
113*67e74705SXin Li // CHECK-NOT: {{ or }}
114*67e74705SXin Li return __atomic_fetch_or(i, (short)1, memory_order_seq_cst);
115*67e74705SXin Li }
116*67e74705SXin Li
fi4(_Atomic (int)* i)117*67e74705SXin Li _Bool fi4(_Atomic(int) *i) {
118*67e74705SXin Li // CHECK-LABEL: @fi4(
119*67e74705SXin Li // CHECK: [[PAIR:%[.0-9A-Z_a-z]+]] = cmpxchg i32* [[PTR:%[.0-9A-Z_a-z]+]], i32 [[EXPECTED:%[.0-9A-Z_a-z]+]], i32 [[DESIRED:%[.0-9A-Z_a-z]+]]
120*67e74705SXin Li // CHECK: [[OLD:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 0
121*67e74705SXin Li // CHECK: [[CMP:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 1
122*67e74705SXin Li // CHECK: br i1 [[CMP]], label %[[STORE_EXPECTED:[.0-9A-Z_a-z]+]], label %[[CONTINUE:[.0-9A-Z_a-z]+]]
123*67e74705SXin Li // CHECK: store i32 [[OLD]]
124*67e74705SXin Li int cmp = 0;
125*67e74705SXin Li return __c11_atomic_compare_exchange_strong(i, &cmp, 1, memory_order_acquire, memory_order_acquire);
126*67e74705SXin Li }
127*67e74705SXin Li
fi4a(int * i)128*67e74705SXin Li _Bool fi4a(int *i) {
129*67e74705SXin Li // CHECK-LABEL: @fi4a
130*67e74705SXin Li // CHECK: [[PAIR:%[.0-9A-Z_a-z]+]] = cmpxchg i32* [[PTR:%[.0-9A-Z_a-z]+]], i32 [[EXPECTED:%[.0-9A-Z_a-z]+]], i32 [[DESIRED:%[.0-9A-Z_a-z]+]]
131*67e74705SXin Li // CHECK: [[OLD:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 0
132*67e74705SXin Li // CHECK: [[CMP:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 1
133*67e74705SXin Li // CHECK: br i1 [[CMP]], label %[[STORE_EXPECTED:[.0-9A-Z_a-z]+]], label %[[CONTINUE:[.0-9A-Z_a-z]+]]
134*67e74705SXin Li // CHECK: store i32 [[OLD]]
135*67e74705SXin Li int cmp = 0;
136*67e74705SXin Li int desired = 1;
137*67e74705SXin Li return __atomic_compare_exchange(i, &cmp, &desired, 0, memory_order_acquire, memory_order_acquire);
138*67e74705SXin Li }
139*67e74705SXin Li
fi4b(int * i)140*67e74705SXin Li _Bool fi4b(int *i) {
141*67e74705SXin Li // CHECK-LABEL: @fi4b(
142*67e74705SXin Li // CHECK: [[PAIR:%[.0-9A-Z_a-z]+]] = cmpxchg weak i32* [[PTR:%[.0-9A-Z_a-z]+]], i32 [[EXPECTED:%[.0-9A-Z_a-z]+]], i32 [[DESIRED:%[.0-9A-Z_a-z]+]]
143*67e74705SXin Li // CHECK: [[OLD:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 0
144*67e74705SXin Li // CHECK: [[CMP:%[.0-9A-Z_a-z]+]] = extractvalue { i32, i1 } [[PAIR]], 1
145*67e74705SXin Li // CHECK: br i1 [[CMP]], label %[[STORE_EXPECTED:[.0-9A-Z_a-z]+]], label %[[CONTINUE:[.0-9A-Z_a-z]+]]
146*67e74705SXin Li // CHECK: store i32 [[OLD]]
147*67e74705SXin Li int cmp = 0;
148*67e74705SXin Li return __atomic_compare_exchange_n(i, &cmp, 1, 1, memory_order_acquire, memory_order_acquire);
149*67e74705SXin Li }
150*67e74705SXin Li
fi4c(atomic_int * i)151*67e74705SXin Li _Bool fi4c(atomic_int *i) {
152*67e74705SXin Li // CHECK-LABEL: @fi4c
153*67e74705SXin Li // CHECK: cmpxchg i32*
154*67e74705SXin Li int cmp = 0;
155*67e74705SXin Li return atomic_compare_exchange_strong(i, &cmp, 1);
156*67e74705SXin Li }
157*67e74705SXin Li
158*67e74705SXin Li #define _AS1 __attribute__((address_space(1)))
fi4d(_Atomic (int)* i,int _AS1 * ptr2)159*67e74705SXin Li _Bool fi4d(_Atomic(int) *i, int _AS1 *ptr2) {
160*67e74705SXin Li // CHECK-LABEL: @fi4d(
161*67e74705SXin Li // CHECK: [[EXPECTED:%[.0-9A-Z_a-z]+]] = load i32, i32 addrspace(1)* %{{[0-9]+}}
162*67e74705SXin Li // CHECK: cmpxchg i32* %{{[0-9]+}}, i32 [[EXPECTED]], i32 %{{[0-9]+}} acquire acquire
163*67e74705SXin Li return __c11_atomic_compare_exchange_strong(i, ptr2, 1, memory_order_acquire, memory_order_acquire);
164*67e74705SXin Li }
165*67e74705SXin Li
ff1(_Atomic (float)* d)166*67e74705SXin Li float ff1(_Atomic(float) *d) {
167*67e74705SXin Li // CHECK-LABEL: @ff1
168*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} monotonic
169*67e74705SXin Li return __c11_atomic_load(d, memory_order_relaxed);
170*67e74705SXin Li }
171*67e74705SXin Li
ff2(_Atomic (float)* d)172*67e74705SXin Li void ff2(_Atomic(float) *d) {
173*67e74705SXin Li // CHECK-LABEL: @ff2
174*67e74705SXin Li // CHECK: store atomic i32 {{.*}} release
175*67e74705SXin Li __c11_atomic_store(d, 1, memory_order_release);
176*67e74705SXin Li }
177*67e74705SXin Li
ff3(_Atomic (float)* d)178*67e74705SXin Li float ff3(_Atomic(float) *d) {
179*67e74705SXin Li return __c11_atomic_exchange(d, 2, memory_order_seq_cst);
180*67e74705SXin Li }
181*67e74705SXin Li
182*67e74705SXin Li struct S {
183*67e74705SXin Li double x;
184*67e74705SXin Li };
185*67e74705SXin Li
fd1(struct S * a)186*67e74705SXin Li struct S fd1(struct S *a) {
187*67e74705SXin Li // CHECK-LABEL: @fd1
188*67e74705SXin Li // CHECK: [[RETVAL:%.*]] = alloca %struct.S, align 4
189*67e74705SXin Li // CHECK: [[RET:%.*]] = alloca %struct.S, align 4
190*67e74705SXin Li // CHECK: [[CAST:%.*]] = bitcast %struct.S* [[RET]] to i64*
191*67e74705SXin Li // CHECK: [[CALL:%.*]] = call i64 @__atomic_load_8(
192*67e74705SXin Li // CHECK: store i64 [[CALL]], i64* [[CAST]], align 4
193*67e74705SXin Li struct S ret;
194*67e74705SXin Li __atomic_load(a, &ret, memory_order_seq_cst);
195*67e74705SXin Li return ret;
196*67e74705SXin Li }
197*67e74705SXin Li
fd2(struct S * a,struct S * b)198*67e74705SXin Li void fd2(struct S *a, struct S *b) {
199*67e74705SXin Li // CHECK-LABEL: @fd2
200*67e74705SXin Li // CHECK: [[A_ADDR:%.*]] = alloca %struct.S*, align 4
201*67e74705SXin Li // CHECK-NEXT: [[B_ADDR:%.*]] = alloca %struct.S*, align 4
202*67e74705SXin Li // CHECK-NEXT: store %struct.S* %a, %struct.S** [[A_ADDR]], align 4
203*67e74705SXin Li // CHECK-NEXT: store %struct.S* %b, %struct.S** [[B_ADDR]], align 4
204*67e74705SXin Li // CHECK-NEXT: [[LOAD_A_PTR:%.*]] = load %struct.S*, %struct.S** [[A_ADDR]], align 4
205*67e74705SXin Li // CHECK-NEXT: [[LOAD_B_PTR:%.*]] = load %struct.S*, %struct.S** [[B_ADDR]], align 4
206*67e74705SXin Li // CHECK-NEXT: [[COERCED_A_TMP:%.*]] = bitcast %struct.S* [[LOAD_A_PTR]] to i64*
207*67e74705SXin Li // CHECK-NEXT: [[COERCED_B:%.*]] = bitcast %struct.S* [[LOAD_B_PTR]] to i64*
208*67e74705SXin Li // CHECK-NEXT: [[COERCED_A:%.*]] = bitcast i64* [[COERCED_A_TMP]] to i8*
209*67e74705SXin Li // CHECK-NEXT: [[LOAD_B:%.*]] = load i64, i64* [[COERCED_B]], align 4
210*67e74705SXin Li // CHECK-NEXT: call void @__atomic_store_8(i8* [[COERCED_A]], i64 [[LOAD_B]],
211*67e74705SXin Li // CHECK-NEXT: ret void
212*67e74705SXin Li __atomic_store(a, b, memory_order_seq_cst);
213*67e74705SXin Li }
214*67e74705SXin Li
fd3(struct S * a,struct S * b,struct S * c)215*67e74705SXin Li void fd3(struct S *a, struct S *b, struct S *c) {
216*67e74705SXin Li // CHECK-LABEL: @fd3
217*67e74705SXin Li // CHECK: [[A_ADDR:%.*]] = alloca %struct.S*, align 4
218*67e74705SXin Li // CHECK-NEXT: [[B_ADDR:%.*]] = alloca %struct.S*, align 4
219*67e74705SXin Li // CHECK-NEXT: [[C_ADDR:%.*]] = alloca %struct.S*, align 4
220*67e74705SXin Li // CHECK-NEXT: store %struct.S* %a, %struct.S** [[A_ADDR]], align 4
221*67e74705SXin Li // CHECK-NEXT: store %struct.S* %b, %struct.S** [[B_ADDR]], align 4
222*67e74705SXin Li // CHECK-NEXT: store %struct.S* %c, %struct.S** [[C_ADDR]], align 4
223*67e74705SXin Li // CHECK-NEXT: [[LOAD_A_PTR:%.*]] = load %struct.S*, %struct.S** [[A_ADDR]], align 4
224*67e74705SXin Li // CHECK-NEXT: [[LOAD_B_PTR:%.*]] = load %struct.S*, %struct.S** [[B_ADDR]], align 4
225*67e74705SXin Li // CHECK-NEXT: [[LOAD_C_PTR:%.*]] = load %struct.S*, %struct.S** [[C_ADDR]], align 4
226*67e74705SXin Li // CHECK-NEXT: [[COERCED_A_TMP:%.*]] = bitcast %struct.S* [[LOAD_A_PTR]] to i64*
227*67e74705SXin Li // CHECK-NEXT: [[COERCED_B:%.*]] = bitcast %struct.S* [[LOAD_B_PTR]] to i64*
228*67e74705SXin Li // CHECK-NEXT: [[COERCED_C:%.*]] = bitcast %struct.S* [[LOAD_C_PTR]] to i64*
229*67e74705SXin Li // CHECK-NEXT: [[COERCED_A:%.*]] = bitcast i64* [[COERCED_A_TMP]] to i8*
230*67e74705SXin Li // CHECK-NEXT: [[LOAD_B:%.*]] = load i64, i64* [[COERCED_B]], align 4
231*67e74705SXin Li // CHECK-NEXT: [[CALL:%.*]] = call i64 @__atomic_exchange_8(i8* [[COERCED_A]], i64 [[LOAD_B]],
232*67e74705SXin Li // CHECK-NEXT: store i64 [[CALL]], i64* [[COERCED_C]], align 4
233*67e74705SXin Li
234*67e74705SXin Li __atomic_exchange(a, b, c, memory_order_seq_cst);
235*67e74705SXin Li }
236*67e74705SXin Li
fd4(struct S * a,struct S * b,struct S * c)237*67e74705SXin Li _Bool fd4(struct S *a, struct S *b, struct S *c) {
238*67e74705SXin Li // CHECK-LABEL: @fd4
239*67e74705SXin Li // CHECK: [[A_ADDR:%.*]] = alloca %struct.S*, align 4
240*67e74705SXin Li // CHECK-NEXT: [[B_ADDR:%.*]] = alloca %struct.S*, align 4
241*67e74705SXin Li // CHECK-NEXT: [[C_ADDR:%.*]] = alloca %struct.S*, align 4
242*67e74705SXin Li // CHECK: store %struct.S* %a, %struct.S** [[A_ADDR]], align 4
243*67e74705SXin Li // CHECK-NEXT: store %struct.S* %b, %struct.S** [[B_ADDR]], align 4
244*67e74705SXin Li // CHECK-NEXT: store %struct.S* %c, %struct.S** [[C_ADDR]], align 4
245*67e74705SXin Li // CHECK-NEXT: [[LOAD_A_PTR:%.*]] = load %struct.S*, %struct.S** [[A_ADDR]], align 4
246*67e74705SXin Li // CHECK-NEXT: [[LOAD_B_PTR:%.*]] = load %struct.S*, %struct.S** [[B_ADDR]], align 4
247*67e74705SXin Li // CHECK-NEXT: [[LOAD_C_PTR:%.*]] = load %struct.S*, %struct.S** [[C_ADDR]], align 4
248*67e74705SXin Li // CHECK-NEXT: [[COERCED_A_TMP:%.*]] = bitcast %struct.S* [[LOAD_A_PTR]] to i64*
249*67e74705SXin Li // CHECK-NEXT: [[COERCED_B_TMP:%.*]] = bitcast %struct.S* [[LOAD_B_PTR]] to i64*
250*67e74705SXin Li // CHECK-NEXT: [[COERCED_C:%.*]] = bitcast %struct.S* [[LOAD_C_PTR]] to i64*
251*67e74705SXin Li // CHECK-NEXT: [[COERCED_A:%.*]] = bitcast i64* [[COERCED_A_TMP]] to i8*
252*67e74705SXin Li // CHECK-NEXT: [[COERCED_B:%.*]] = bitcast i64* [[COERCED_B_TMP]] to i8*
253*67e74705SXin Li // CHECK-NEXT: [[LOAD_C:%.*]] = load i64, i64* [[COERCED_C]], align 4
254*67e74705SXin Li // CHECK-NEXT: [[CALL:%.*]] = call zeroext i1 @__atomic_compare_exchange_8(i8* [[COERCED_A]], i8* [[COERCED_B]], i64 [[LOAD_C]]
255*67e74705SXin Li // CHECK-NEXT: ret i1 [[CALL]]
256*67e74705SXin Li return __atomic_compare_exchange(a, b, c, 1, 5, 5);
257*67e74705SXin Li }
258*67e74705SXin Li
fp1(_Atomic (int *)* p)259*67e74705SXin Li int* fp1(_Atomic(int*) *p) {
260*67e74705SXin Li // CHECK-LABEL: @fp1
261*67e74705SXin Li // CHECK: load atomic i32, i32* {{.*}} seq_cst
262*67e74705SXin Li return __c11_atomic_load(p, memory_order_seq_cst);
263*67e74705SXin Li }
264*67e74705SXin Li
fp2(_Atomic (int *)* p)265*67e74705SXin Li int* fp2(_Atomic(int*) *p) {
266*67e74705SXin Li // CHECK-LABEL: @fp2
267*67e74705SXin Li // CHECK: store i32 4
268*67e74705SXin Li // CHECK: atomicrmw add {{.*}} monotonic
269*67e74705SXin Li return __c11_atomic_fetch_add(p, 1, memory_order_relaxed);
270*67e74705SXin Li }
271*67e74705SXin Li
fp2a(int ** p)272*67e74705SXin Li int *fp2a(int **p) {
273*67e74705SXin Li // CHECK-LABEL: @fp2a
274*67e74705SXin Li // CHECK: store i32 4
275*67e74705SXin Li // CHECK: atomicrmw sub {{.*}} monotonic
276*67e74705SXin Li // Note, the GNU builtins do not multiply by sizeof(T)!
277*67e74705SXin Li return __atomic_fetch_sub(p, 4, memory_order_relaxed);
278*67e74705SXin Li }
279*67e74705SXin Li
fc(_Atomic (_Complex float)* c)280*67e74705SXin Li _Complex float fc(_Atomic(_Complex float) *c) {
281*67e74705SXin Li // CHECK-LABEL: @fc
282*67e74705SXin Li // CHECK: atomicrmw xchg i64*
283*67e74705SXin Li return __c11_atomic_exchange(c, 2, memory_order_seq_cst);
284*67e74705SXin Li }
285*67e74705SXin Li
286*67e74705SXin Li typedef struct X { int x; } X;
fs(_Atomic (X)* c)287*67e74705SXin Li X fs(_Atomic(X) *c) {
288*67e74705SXin Li // CHECK-LABEL: @fs
289*67e74705SXin Li // CHECK: atomicrmw xchg i32*
290*67e74705SXin Li return __c11_atomic_exchange(c, (X){2}, memory_order_seq_cst);
291*67e74705SXin Li }
292*67e74705SXin Li
fsa(X * c,X * d)293*67e74705SXin Li X fsa(X *c, X *d) {
294*67e74705SXin Li // CHECK-LABEL: @fsa
295*67e74705SXin Li // CHECK: atomicrmw xchg i32*
296*67e74705SXin Li X ret;
297*67e74705SXin Li __atomic_exchange(c, d, &ret, memory_order_seq_cst);
298*67e74705SXin Li return ret;
299*67e74705SXin Li }
300*67e74705SXin Li
fsb(_Bool * c)301*67e74705SXin Li _Bool fsb(_Bool *c) {
302*67e74705SXin Li // CHECK-LABEL: @fsb
303*67e74705SXin Li // CHECK: atomicrmw xchg i8*
304*67e74705SXin Li return __atomic_exchange_n(c, 1, memory_order_seq_cst);
305*67e74705SXin Li }
306*67e74705SXin Li
307*67e74705SXin Li char flag1;
308*67e74705SXin Li volatile char flag2;
test_and_set()309*67e74705SXin Li void test_and_set() {
310*67e74705SXin Li // CHECK: atomicrmw xchg i8* @flag1, i8 1 seq_cst
311*67e74705SXin Li __atomic_test_and_set(&flag1, memory_order_seq_cst);
312*67e74705SXin Li // CHECK: atomicrmw volatile xchg i8* @flag2, i8 1 acquire
313*67e74705SXin Li __atomic_test_and_set(&flag2, memory_order_acquire);
314*67e74705SXin Li // CHECK: store atomic volatile i8 0, i8* @flag2 release
315*67e74705SXin Li __atomic_clear(&flag2, memory_order_release);
316*67e74705SXin Li // CHECK: store atomic i8 0, i8* @flag1 seq_cst
317*67e74705SXin Li __atomic_clear(&flag1, memory_order_seq_cst);
318*67e74705SXin Li }
319*67e74705SXin Li
320*67e74705SXin Li struct Sixteen {
321*67e74705SXin Li char c[16];
322*67e74705SXin Li } sixteen;
323*67e74705SXin Li struct Seventeen {
324*67e74705SXin Li char c[17];
325*67e74705SXin Li } seventeen;
326*67e74705SXin Li
327*67e74705SXin Li struct Incomplete;
328*67e74705SXin Li
lock_free(struct Incomplete * incomplete)329*67e74705SXin Li int lock_free(struct Incomplete *incomplete) {
330*67e74705SXin Li // CHECK-LABEL: @lock_free
331*67e74705SXin Li
332*67e74705SXin Li // CHECK: call i32 @__atomic_is_lock_free(i32 3, i8* null)
333*67e74705SXin Li __c11_atomic_is_lock_free(3);
334*67e74705SXin Li
335*67e74705SXin Li // CHECK: call i32 @__atomic_is_lock_free(i32 16, i8* {{.*}}@sixteen{{.*}})
336*67e74705SXin Li __atomic_is_lock_free(16, &sixteen);
337*67e74705SXin Li
338*67e74705SXin Li // CHECK: call i32 @__atomic_is_lock_free(i32 17, i8* {{.*}}@seventeen{{.*}})
339*67e74705SXin Li __atomic_is_lock_free(17, &seventeen);
340*67e74705SXin Li
341*67e74705SXin Li // CHECK: call i32 @__atomic_is_lock_free(i32 4, {{.*}})
342*67e74705SXin Li __atomic_is_lock_free(4, incomplete);
343*67e74705SXin Li
344*67e74705SXin Li char cs[20];
345*67e74705SXin Li // CHECK: call i32 @__atomic_is_lock_free(i32 4, {{.*}})
346*67e74705SXin Li __atomic_is_lock_free(4, cs+1);
347*67e74705SXin Li
348*67e74705SXin Li // CHECK-NOT: call
349*67e74705SXin Li __atomic_always_lock_free(3, 0);
350*67e74705SXin Li __atomic_always_lock_free(16, 0);
351*67e74705SXin Li __atomic_always_lock_free(17, 0);
352*67e74705SXin Li __atomic_always_lock_free(16, &sixteen);
353*67e74705SXin Li __atomic_always_lock_free(17, &seventeen);
354*67e74705SXin Li
355*67e74705SXin Li int n;
356*67e74705SXin Li __atomic_is_lock_free(4, &n);
357*67e74705SXin Li
358*67e74705SXin Li // CHECK: ret i32 1
359*67e74705SXin Li return __c11_atomic_is_lock_free(sizeof(_Atomic(int)));
360*67e74705SXin Li }
361*67e74705SXin Li
362*67e74705SXin Li // Tests for atomic operations on big values. These should call the functions
363*67e74705SXin Li // defined here:
364*67e74705SXin Li // http://gcc.gnu.org/wiki/Atomic/GCCMM/LIbrary#The_Library_interface
365*67e74705SXin Li
366*67e74705SXin Li struct foo {
367*67e74705SXin Li int big[128];
368*67e74705SXin Li };
369*67e74705SXin Li struct bar {
370*67e74705SXin Li char c[3];
371*67e74705SXin Li };
372*67e74705SXin Li
373*67e74705SXin Li struct bar smallThing, thing1, thing2;
374*67e74705SXin Li struct foo bigThing;
375*67e74705SXin Li _Atomic(struct foo) bigAtomic;
376*67e74705SXin Li
structAtomicStore()377*67e74705SXin Li void structAtomicStore() {
378*67e74705SXin Li // CHECK-LABEL: @structAtomicStore
379*67e74705SXin Li struct foo f = {0};
380*67e74705SXin Li struct bar b = {0};
381*67e74705SXin Li __atomic_store(&smallThing, &b, 5);
382*67e74705SXin Li // CHECK: call void @__atomic_store(i32 3, i8* {{.*}} @smallThing
383*67e74705SXin Li
384*67e74705SXin Li __atomic_store(&bigThing, &f, 5);
385*67e74705SXin Li // CHECK: call void @__atomic_store(i32 512, i8* {{.*}} @bigThing
386*67e74705SXin Li }
structAtomicLoad()387*67e74705SXin Li void structAtomicLoad() {
388*67e74705SXin Li // CHECK-LABEL: @structAtomicLoad
389*67e74705SXin Li struct bar b;
390*67e74705SXin Li __atomic_load(&smallThing, &b, 5);
391*67e74705SXin Li // CHECK: call void @__atomic_load(i32 3, i8* {{.*}} @smallThing
392*67e74705SXin Li
393*67e74705SXin Li struct foo f = {0};
394*67e74705SXin Li __atomic_load(&bigThing, &f, 5);
395*67e74705SXin Li // CHECK: call void @__atomic_load(i32 512, i8* {{.*}} @bigThing
396*67e74705SXin Li }
structAtomicExchange()397*67e74705SXin Li struct foo structAtomicExchange() {
398*67e74705SXin Li // CHECK-LABEL: @structAtomicExchange
399*67e74705SXin Li struct foo f = {0};
400*67e74705SXin Li struct foo old;
401*67e74705SXin Li __atomic_exchange(&f, &bigThing, &old, 5);
402*67e74705SXin Li // CHECK: call void @__atomic_exchange(i32 512, {{.*}}, i8* bitcast ({{.*}} @bigThing to i8*),
403*67e74705SXin Li
404*67e74705SXin Li return __c11_atomic_exchange(&bigAtomic, f, 5);
405*67e74705SXin Li // CHECK: call void @__atomic_exchange(i32 512, i8* bitcast ({{.*}} @bigAtomic to i8*),
406*67e74705SXin Li }
structAtomicCmpExchange()407*67e74705SXin Li int structAtomicCmpExchange() {
408*67e74705SXin Li // CHECK-LABEL: @structAtomicCmpExchange
409*67e74705SXin Li // CHECK: %[[x_mem:.*]] = alloca i8
410*67e74705SXin Li _Bool x = __atomic_compare_exchange(&smallThing, &thing1, &thing2, 1, 5, 5);
411*67e74705SXin Li // CHECK: %[[call1:.*]] = call zeroext i1 @__atomic_compare_exchange(i32 3, {{.*}} @smallThing{{.*}} @thing1{{.*}} @thing2
412*67e74705SXin Li // CHECK: %[[zext1:.*]] = zext i1 %[[call1]] to i8
413*67e74705SXin Li // CHECK: store i8 %[[zext1]], i8* %[[x_mem]], align 1
414*67e74705SXin Li // CHECK: %[[x:.*]] = load i8, i8* %[[x_mem]]
415*67e74705SXin Li // CHECK: %[[x_bool:.*]] = trunc i8 %[[x]] to i1
416*67e74705SXin Li // CHECK: %[[conv1:.*]] = zext i1 %[[x_bool]] to i32
417*67e74705SXin Li
418*67e74705SXin Li struct foo f = {0};
419*67e74705SXin Li struct foo g = {0};
420*67e74705SXin Li g.big[12] = 12;
421*67e74705SXin Li return x & __c11_atomic_compare_exchange_strong(&bigAtomic, &f, g, 5, 5);
422*67e74705SXin Li // CHECK: %[[call2:.*]] = call zeroext i1 @__atomic_compare_exchange(i32 512, i8* bitcast ({{.*}} @bigAtomic to i8*),
423*67e74705SXin Li // CHECK: %[[conv2:.*]] = zext i1 %[[call2]] to i32
424*67e74705SXin Li // CHECK: %[[and:.*]] = and i32 %[[conv1]], %[[conv2]]
425*67e74705SXin Li // CHECK: ret i32 %[[and]]
426*67e74705SXin Li }
427*67e74705SXin Li
428*67e74705SXin Li // Check that no atomic operations are used in any initialisation of _Atomic
429*67e74705SXin Li // types.
430*67e74705SXin Li _Atomic(int) atomic_init_i = 42;
431*67e74705SXin Li
432*67e74705SXin Li // CHECK-LABEL: @atomic_init_foo
atomic_init_foo()433*67e74705SXin Li void atomic_init_foo()
434*67e74705SXin Li {
435*67e74705SXin Li // CHECK-NOT: }
436*67e74705SXin Li // CHECK-NOT: atomic
437*67e74705SXin Li // CHECK: store
438*67e74705SXin Li _Atomic(int) j = 12;
439*67e74705SXin Li
440*67e74705SXin Li // CHECK-NOT: }
441*67e74705SXin Li // CHECK-NOT: atomic
442*67e74705SXin Li // CHECK: store
443*67e74705SXin Li __c11_atomic_init(&j, 42);
444*67e74705SXin Li
445*67e74705SXin Li // CHECK-NOT: atomic
446*67e74705SXin Li // CHECK: }
447*67e74705SXin Li }
448*67e74705SXin Li
449*67e74705SXin Li // CHECK-LABEL: @failureOrder
failureOrder(_Atomic (int)* ptr,int * ptr2)450*67e74705SXin Li void failureOrder(_Atomic(int) *ptr, int *ptr2) {
451*67e74705SXin Li __c11_atomic_compare_exchange_strong(ptr, ptr2, 43, memory_order_acquire, memory_order_relaxed);
452*67e74705SXin Li // CHECK: cmpxchg i32* {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z_.]+}} acquire monotonic
453*67e74705SXin Li
454*67e74705SXin Li __c11_atomic_compare_exchange_weak(ptr, ptr2, 43, memory_order_seq_cst, memory_order_acquire);
455*67e74705SXin Li // CHECK: cmpxchg weak i32* {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z_.]+}} seq_cst acquire
456*67e74705SXin Li
457*67e74705SXin Li // Unknown ordering: conservatively pick strongest valid option (for now!).
458*67e74705SXin Li __atomic_compare_exchange(ptr2, ptr2, ptr2, 0, memory_order_acq_rel, *ptr2);
459*67e74705SXin Li // CHECK: cmpxchg i32* {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z_.]+}} acq_rel acquire
460*67e74705SXin Li
461*67e74705SXin Li // Undefined behaviour: don't really care what that last ordering is so leave
462*67e74705SXin Li // it out:
463*67e74705SXin Li __atomic_compare_exchange_n(ptr2, ptr2, 43, 1, memory_order_seq_cst, 42);
464*67e74705SXin Li // CHECK: cmpxchg weak i32* {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z._]+}}, i32 {{%[0-9A-Za-z_.]+}} seq_cst
465*67e74705SXin Li }
466*67e74705SXin Li
467*67e74705SXin Li // CHECK-LABEL: @generalFailureOrder
generalFailureOrder(_Atomic (int)* ptr,int * ptr2,int success,int fail)468*67e74705SXin Li void generalFailureOrder(_Atomic(int) *ptr, int *ptr2, int success, int fail) {
469*67e74705SXin Li __c11_atomic_compare_exchange_strong(ptr, ptr2, 42, success, fail);
470*67e74705SXin Li // CHECK: switch i32 {{.*}}, label %[[MONOTONIC:[0-9a-zA-Z._]+]] [
471*67e74705SXin Li // CHECK-NEXT: i32 1, label %[[ACQUIRE:[0-9a-zA-Z._]+]]
472*67e74705SXin Li // CHECK-NEXT: i32 2, label %[[ACQUIRE]]
473*67e74705SXin Li // CHECK-NEXT: i32 3, label %[[RELEASE:[0-9a-zA-Z._]+]]
474*67e74705SXin Li // CHECK-NEXT: i32 4, label %[[ACQREL:[0-9a-zA-Z._]+]]
475*67e74705SXin Li // CHECK-NEXT: i32 5, label %[[SEQCST:[0-9a-zA-Z._]+]]
476*67e74705SXin Li
477*67e74705SXin Li // CHECK: [[MONOTONIC]]
478*67e74705SXin Li // CHECK: switch {{.*}}, label %[[MONOTONIC_MONOTONIC:[0-9a-zA-Z._]+]] [
479*67e74705SXin Li // CHECK-NEXT: ]
480*67e74705SXin Li
481*67e74705SXin Li // CHECK: [[ACQUIRE]]
482*67e74705SXin Li // CHECK: switch {{.*}}, label %[[ACQUIRE_MONOTONIC:[0-9a-zA-Z._]+]] [
483*67e74705SXin Li // CHECK-NEXT: i32 1, label %[[ACQUIRE_ACQUIRE:[0-9a-zA-Z._]+]]
484*67e74705SXin Li // CHECK-NEXT: i32 2, label %[[ACQUIRE_ACQUIRE:[0-9a-zA-Z._]+]]
485*67e74705SXin Li // CHECK-NEXT: ]
486*67e74705SXin Li
487*67e74705SXin Li // CHECK: [[RELEASE]]
488*67e74705SXin Li // CHECK: switch {{.*}}, label %[[RELEASE_MONOTONIC:[0-9a-zA-Z._]+]] [
489*67e74705SXin Li // CHECK-NEXT: ]
490*67e74705SXin Li
491*67e74705SXin Li // CHECK: [[ACQREL]]
492*67e74705SXin Li // CHECK: switch {{.*}}, label %[[ACQREL_MONOTONIC:[0-9a-zA-Z._]+]] [
493*67e74705SXin Li // CHECK-NEXT: i32 1, label %[[ACQREL_ACQUIRE:[0-9a-zA-Z._]+]]
494*67e74705SXin Li // CHECK-NEXT: i32 2, label %[[ACQREL_ACQUIRE:[0-9a-zA-Z._]+]]
495*67e74705SXin Li // CHECK-NEXT: ]
496*67e74705SXin Li
497*67e74705SXin Li // CHECK: [[SEQCST]]
498*67e74705SXin Li // CHECK: switch {{.*}}, label %[[SEQCST_MONOTONIC:[0-9a-zA-Z._]+]] [
499*67e74705SXin Li // CHECK-NEXT: i32 1, label %[[SEQCST_ACQUIRE:[0-9a-zA-Z._]+]]
500*67e74705SXin Li // CHECK-NEXT: i32 2, label %[[SEQCST_ACQUIRE:[0-9a-zA-Z._]+]]
501*67e74705SXin Li // CHECK-NEXT: i32 5, label %[[SEQCST_SEQCST:[0-9a-zA-Z._]+]]
502*67e74705SXin Li // CHECK-NEXT: ]
503*67e74705SXin Li
504*67e74705SXin Li // CHECK: [[MONOTONIC_MONOTONIC]]
505*67e74705SXin Li // CHECK: cmpxchg {{.*}} monotonic monotonic
506*67e74705SXin Li // CHECK: br
507*67e74705SXin Li
508*67e74705SXin Li // CHECK: [[ACQUIRE_MONOTONIC]]
509*67e74705SXin Li // CHECK: cmpxchg {{.*}} acquire monotonic
510*67e74705SXin Li // CHECK: br
511*67e74705SXin Li
512*67e74705SXin Li // CHECK: [[ACQUIRE_ACQUIRE]]
513*67e74705SXin Li // CHECK: cmpxchg {{.*}} acquire acquire
514*67e74705SXin Li // CHECK: br
515*67e74705SXin Li
516*67e74705SXin Li // CHECK: [[ACQREL_MONOTONIC]]
517*67e74705SXin Li // CHECK: cmpxchg {{.*}} acq_rel monotonic
518*67e74705SXin Li // CHECK: br
519*67e74705SXin Li
520*67e74705SXin Li // CHECK: [[ACQREL_ACQUIRE]]
521*67e74705SXin Li // CHECK: cmpxchg {{.*}} acq_rel acquire
522*67e74705SXin Li // CHECK: br
523*67e74705SXin Li
524*67e74705SXin Li // CHECK: [[SEQCST_MONOTONIC]]
525*67e74705SXin Li // CHECK: cmpxchg {{.*}} seq_cst monotonic
526*67e74705SXin Li // CHECK: br
527*67e74705SXin Li
528*67e74705SXin Li // CHECK: [[SEQCST_ACQUIRE]]
529*67e74705SXin Li // CHECK: cmpxchg {{.*}} seq_cst acquire
530*67e74705SXin Li // CHECK: br
531*67e74705SXin Li
532*67e74705SXin Li // CHECK: [[SEQCST_SEQCST]]
533*67e74705SXin Li // CHECK: cmpxchg {{.*}} seq_cst seq_cst
534*67e74705SXin Li // CHECK: br
535*67e74705SXin Li }
536*67e74705SXin Li
generalWeakness(int * ptr,int * ptr2,_Bool weak)537*67e74705SXin Li void generalWeakness(int *ptr, int *ptr2, _Bool weak) {
538*67e74705SXin Li __atomic_compare_exchange_n(ptr, ptr2, 42, weak, memory_order_seq_cst, memory_order_seq_cst);
539*67e74705SXin Li // CHECK: switch i1 {{.*}}, label %[[WEAK:[0-9a-zA-Z._]+]] [
540*67e74705SXin Li // CHECK-NEXT: i1 false, label %[[STRONG:[0-9a-zA-Z._]+]]
541*67e74705SXin Li
542*67e74705SXin Li // CHECK: [[STRONG]]
543*67e74705SXin Li // CHECK-NOT: br
544*67e74705SXin Li // CHECK: cmpxchg {{.*}} seq_cst seq_cst
545*67e74705SXin Li // CHECK: br
546*67e74705SXin Li
547*67e74705SXin Li // CHECK: [[WEAK]]
548*67e74705SXin Li // CHECK-NOT: br
549*67e74705SXin Li // CHECK: cmpxchg weak {{.*}} seq_cst seq_cst
550*67e74705SXin Li // CHECK: br
551*67e74705SXin Li }
552*67e74705SXin Li
553*67e74705SXin Li // Having checked the flow in the previous two cases, we'll trust clang to
554*67e74705SXin Li // combine them sanely.
EMIT_ALL_THE_THINGS(int * ptr,int * ptr2,int new,_Bool weak,int success,int fail)555*67e74705SXin Li void EMIT_ALL_THE_THINGS(int *ptr, int *ptr2, int new, _Bool weak, int success, int fail) {
556*67e74705SXin Li __atomic_compare_exchange(ptr, ptr2, &new, weak, success, fail);
557*67e74705SXin Li
558*67e74705SXin Li // CHECK: = cmpxchg {{.*}} monotonic monotonic
559*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} monotonic monotonic
560*67e74705SXin Li // CHECK: = cmpxchg {{.*}} acquire monotonic
561*67e74705SXin Li // CHECK: = cmpxchg {{.*}} acquire acquire
562*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} acquire monotonic
563*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} acquire acquire
564*67e74705SXin Li // CHECK: = cmpxchg {{.*}} release monotonic
565*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} release monotonic
566*67e74705SXin Li // CHECK: = cmpxchg {{.*}} acq_rel monotonic
567*67e74705SXin Li // CHECK: = cmpxchg {{.*}} acq_rel acquire
568*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} acq_rel monotonic
569*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} acq_rel acquire
570*67e74705SXin Li // CHECK: = cmpxchg {{.*}} seq_cst monotonic
571*67e74705SXin Li // CHECK: = cmpxchg {{.*}} seq_cst acquire
572*67e74705SXin Li // CHECK: = cmpxchg {{.*}} seq_cst seq_cst
573*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} seq_cst monotonic
574*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} seq_cst acquire
575*67e74705SXin Li // CHECK: = cmpxchg weak {{.*}} seq_cst seq_cst
576*67e74705SXin Li }
577*67e74705SXin Li
PR21643()578*67e74705SXin Li int PR21643() {
579*67e74705SXin Li return __atomic_or_fetch((int __attribute__((address_space(257))) *)0x308, 1,
580*67e74705SXin Li __ATOMIC_RELAXED);
581*67e74705SXin Li // CHECK: %[[atomictmp:.*]] = alloca i32, align 4
582*67e74705SXin Li // CHECK: %[[atomicdst:.*]] = alloca i32, align 4
583*67e74705SXin Li // CHECK: store i32 1, i32* %[[atomictmp]]
584*67e74705SXin Li // CHECK: %[[one:.*]] = load i32, i32* %[[atomictmp]], align 4
585*67e74705SXin Li // CHECK: %[[old:.*]] = atomicrmw or i32 addrspace(257)* inttoptr (i32 776 to i32 addrspace(257)*), i32 %[[one]] monotonic
586*67e74705SXin Li // CHECK: %[[new:.*]] = or i32 %[[old]], %[[one]]
587*67e74705SXin Li // CHECK: store i32 %[[new]], i32* %[[atomicdst]], align 4
588*67e74705SXin Li // CHECK: %[[ret:.*]] = load i32, i32* %[[atomicdst]], align 4
589*67e74705SXin Li // CHECK: ret i32 %[[ret]]
590*67e74705SXin Li }
591*67e74705SXin Li
PR17306_1(volatile _Atomic (int)* i)592*67e74705SXin Li int PR17306_1(volatile _Atomic(int) *i) {
593*67e74705SXin Li // CHECK-LABEL: @PR17306_1
594*67e74705SXin Li // CHECK: %[[i_addr:.*]] = alloca i32
595*67e74705SXin Li // CHECK-NEXT: %[[atomicdst:.*]] = alloca i32
596*67e74705SXin Li // CHECK-NEXT: store i32* %i, i32** %[[i_addr]]
597*67e74705SXin Li // CHECK-NEXT: %[[addr:.*]] = load i32*, i32** %[[i_addr]]
598*67e74705SXin Li // CHECK-NEXT: %[[res:.*]] = load atomic volatile i32, i32* %[[addr]] seq_cst
599*67e74705SXin Li // CHECK-NEXT: store i32 %[[res]], i32* %[[atomicdst]]
600*67e74705SXin Li // CHECK-NEXT: %[[retval:.*]] = load i32, i32* %[[atomicdst]]
601*67e74705SXin Li // CHECK-NEXT: ret i32 %[[retval]]
602*67e74705SXin Li return __c11_atomic_load(i, memory_order_seq_cst);
603*67e74705SXin Li }
604*67e74705SXin Li
PR17306_2(volatile int * i,int value)605*67e74705SXin Li int PR17306_2(volatile int *i, int value) {
606*67e74705SXin Li // CHECK-LABEL: @PR17306_2
607*67e74705SXin Li // CHECK: %[[i_addr:.*]] = alloca i32*
608*67e74705SXin Li // CHECK-NEXT: %[[value_addr:.*]] = alloca i32
609*67e74705SXin Li // CHECK-NEXT: %[[atomictmp:.*]] = alloca i32
610*67e74705SXin Li // CHECK-NEXT: %[[atomicdst:.*]] = alloca i32
611*67e74705SXin Li // CHECK-NEXT: store i32* %i, i32** %[[i_addr]]
612*67e74705SXin Li // CHECK-NEXT: store i32 %value, i32* %[[value_addr]]
613*67e74705SXin Li // CHECK-NEXT: %[[i_lval:.*]] = load i32*, i32** %[[i_addr]]
614*67e74705SXin Li // CHECK-NEXT: %[[value:.*]] = load i32, i32* %[[value_addr]]
615*67e74705SXin Li // CHECK-NEXT: store i32 %[[value]], i32* %[[atomictmp]]
616*67e74705SXin Li // CHECK-NEXT: %[[value_lval:.*]] = load i32, i32* %[[atomictmp]]
617*67e74705SXin Li // CHECK-NEXT: %[[old_val:.*]] = atomicrmw volatile add i32* %[[i_lval]], i32 %[[value_lval]] seq_cst
618*67e74705SXin Li // CHECK-NEXT: %[[new_val:.*]] = add i32 %[[old_val]], %[[value_lval]]
619*67e74705SXin Li // CHECK-NEXT: store i32 %[[new_val]], i32* %[[atomicdst]]
620*67e74705SXin Li // CHECK-NEXT: %[[retval:.*]] = load i32, i32* %[[atomicdst]]
621*67e74705SXin Li // CHECK-NEXT: ret i32 %[[retval]]
622*67e74705SXin Li return __atomic_add_fetch(i, value, memory_order_seq_cst);
623*67e74705SXin Li }
624*67e74705SXin Li
625*67e74705SXin Li #endif
626