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Alexey Samsonov3b2f9f42012-06-04 13:55:19 +00001//===-- tsan_interface_atomic.cc ------------------------------------------===//
Kostya Serebryany4ad375f2012-05-10 13:48:04 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file is a part of ThreadSanitizer (TSan), a race detector.
11//
12//===----------------------------------------------------------------------===//
13
Alexey Samsonov8bd90982012-06-07 09:50:16 +000014#include "sanitizer_common/sanitizer_placement_new.h"
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000015#include "tsan_interface_atomic.h"
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000016#include "tsan_flags.h"
17#include "tsan_rtl.h"
18
19using namespace __tsan; // NOLINT
20
21class ScopedAtomic {
22 public:
23 ScopedAtomic(ThreadState *thr, uptr pc, const char *func)
24 : thr_(thr) {
25 CHECK_EQ(thr_->in_rtl, 1); // 1 due to our own ScopedInRtl member.
26 DPrintf("#%d: %s\n", thr_->tid, func);
27 }
28 ~ScopedAtomic() {
29 CHECK_EQ(thr_->in_rtl, 1);
30 }
31 private:
32 ThreadState *thr_;
33 ScopedInRtl in_rtl_;
34};
35
36// Some shortcuts.
37typedef __tsan_memory_order morder;
38typedef __tsan_atomic8 a8;
39typedef __tsan_atomic16 a16;
40typedef __tsan_atomic32 a32;
41typedef __tsan_atomic64 a64;
42const int mo_relaxed = __tsan_memory_order_relaxed;
43const int mo_consume = __tsan_memory_order_consume;
44const int mo_acquire = __tsan_memory_order_acquire;
45const int mo_release = __tsan_memory_order_release;
46const int mo_acq_rel = __tsan_memory_order_acq_rel;
47const int mo_seq_cst = __tsan_memory_order_seq_cst;
48
49static void AtomicStatInc(ThreadState *thr, uptr size, morder mo, StatType t) {
50 StatInc(thr, StatAtomic);
51 StatInc(thr, t);
52 StatInc(thr, size == 1 ? StatAtomic1
53 : size == 2 ? StatAtomic2
54 : size == 4 ? StatAtomic4
55 : StatAtomic8);
56 StatInc(thr, mo == mo_relaxed ? StatAtomicRelaxed
57 : mo == mo_consume ? StatAtomicConsume
58 : mo == mo_acquire ? StatAtomicAcquire
59 : mo == mo_release ? StatAtomicRelease
60 : mo == mo_acq_rel ? StatAtomicAcq_Rel
61 : StatAtomicSeq_Cst);
62}
63
Dmitry Vyukovbe687832012-10-03 13:00:13 +000064static bool IsLoadOrder(morder mo) {
65 return mo == mo_relaxed || mo == mo_consume
66 || mo == mo_acquire || mo == mo_seq_cst;
67}
68
69static bool IsStoreOrder(morder mo) {
70 return mo == mo_relaxed || mo == mo_release || mo == mo_seq_cst;
71}
72
73static bool IsReleaseOrder(morder mo) {
74 return mo == mo_release || mo == mo_acq_rel || mo == mo_seq_cst;
75}
76
77static bool IsAcquireOrder(morder mo) {
78 return mo == mo_consume || mo == mo_acquire
79 || mo == mo_acq_rel || mo == mo_seq_cst;
80}
81
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000082#define SCOPED_ATOMIC(func, ...) \
Dmitry Vyukovbe687832012-10-03 13:00:13 +000083 if ((u32)mo > 100500) mo = (morder)((u32)mo - 100500); \
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000084 mo = flags()->force_seq_cst_atomics ? (morder)mo_seq_cst : mo; \
85 ThreadState *const thr = cur_thread(); \
86 const uptr pc = (uptr)__builtin_return_address(0); \
87 AtomicStatInc(thr, sizeof(*a), mo, StatAtomic##func); \
88 ScopedAtomic sa(thr, pc, __FUNCTION__); \
89 return Atomic##func(thr, pc, __VA_ARGS__); \
90/**/
91
92template<typename T>
93static T AtomicLoad(ThreadState *thr, uptr pc, const volatile T *a,
94 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +000095 CHECK(IsLoadOrder(mo));
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000096 T v = *a;
Dmitry Vyukovbe687832012-10-03 13:00:13 +000097 if (IsAcquireOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000098 Acquire(thr, pc, (uptr)a);
99 return v;
100}
101
102template<typename T>
103static void AtomicStore(ThreadState *thr, uptr pc, volatile T *a, T v,
104 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000105 CHECK(IsStoreOrder(mo));
106 if (IsReleaseOrder(mo))
Dmitry Vyukov6f6ba432012-08-31 13:22:13 +0000107 ReleaseStore(thr, pc, (uptr)a);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000108 *a = v;
109}
110
111template<typename T>
112static T AtomicExchange(ThreadState *thr, uptr pc, volatile T *a, T v,
113 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000114 if (IsReleaseOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000115 Release(thr, pc, (uptr)a);
116 v = __sync_lock_test_and_set(a, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000117 if (IsAcquireOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000118 Acquire(thr, pc, (uptr)a);
119 return v;
120}
121
122template<typename T>
123static T AtomicFetchAdd(ThreadState *thr, uptr pc, volatile T *a, T v,
124 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000125 if (IsReleaseOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000126 Release(thr, pc, (uptr)a);
127 v = __sync_fetch_and_add(a, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000128 if (IsAcquireOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000129 Acquire(thr, pc, (uptr)a);
130 return v;
131}
132
133template<typename T>
Dmitry Vyukovb96a7b52012-10-04 10:08:23 +0000134static T AtomicFetchSub(ThreadState *thr, uptr pc, volatile T *a, T v,
135 morder mo) {
136 if (IsReleaseOrder(mo))
137 Release(thr, pc, (uptr)a);
138 v = __sync_fetch_and_sub(a, v);
139 if (IsAcquireOrder(mo))
140 Acquire(thr, pc, (uptr)a);
141 return v;
142}
143
144template<typename T>
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000145static T AtomicFetchAnd(ThreadState *thr, uptr pc, volatile T *a, T v,
146 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000147 if (IsReleaseOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000148 Release(thr, pc, (uptr)a);
149 v = __sync_fetch_and_and(a, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000150 if (IsAcquireOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000151 Acquire(thr, pc, (uptr)a);
152 return v;
153}
154
155template<typename T>
156static T AtomicFetchOr(ThreadState *thr, uptr pc, volatile T *a, T v,
157 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000158 if (IsReleaseOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000159 Release(thr, pc, (uptr)a);
160 v = __sync_fetch_and_or(a, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000161 if (IsAcquireOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000162 Acquire(thr, pc, (uptr)a);
163 return v;
164}
165
166template<typename T>
167static T AtomicFetchXor(ThreadState *thr, uptr pc, volatile T *a, T v,
168 morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000169 if (IsReleaseOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000170 Release(thr, pc, (uptr)a);
171 v = __sync_fetch_and_xor(a, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000172 if (IsAcquireOrder(mo))
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000173 Acquire(thr, pc, (uptr)a);
174 return v;
175}
176
177template<typename T>
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000178static bool AtomicCAS(ThreadState *thr, uptr pc,
179 volatile T *a, T *c, T v, morder mo) {
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000180 if (IsReleaseOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000181 Release(thr, pc, (uptr)a);
182 T cc = *c;
183 T pr = __sync_val_compare_and_swap(a, cc, v);
Dmitry Vyukovbe687832012-10-03 13:00:13 +0000184 if (IsAcquireOrder(mo))
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000185 Acquire(thr, pc, (uptr)a);
186 if (pr == cc)
187 return true;
188 *c = pr;
189 return false;
190}
191
Dmitry Vyukov4e5f72d2012-11-09 12:54:37 +0000192template<typename T>
193static T AtomicCAS(ThreadState *thr, uptr pc,
194 volatile T *a, T c, T v, morder mo) {
195 AtomicCAS(thr, pc, a, &c, v, mo);
196 return c;
197}
198
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000199static void AtomicFence(ThreadState *thr, uptr pc, morder mo) {
200 __sync_synchronize();
201}
202
203a8 __tsan_atomic8_load(const volatile a8 *a, morder mo) {
204 SCOPED_ATOMIC(Load, a, mo);
205}
206
207a16 __tsan_atomic16_load(const volatile a16 *a, morder mo) {
208 SCOPED_ATOMIC(Load, a, mo);
209}
210
211a32 __tsan_atomic32_load(const volatile a32 *a, morder mo) {
212 SCOPED_ATOMIC(Load, a, mo);
213}
214
215a64 __tsan_atomic64_load(const volatile a64 *a, morder mo) {
216 SCOPED_ATOMIC(Load, a, mo);
217}
218
219void __tsan_atomic8_store(volatile a8 *a, a8 v, morder mo) {
220 SCOPED_ATOMIC(Store, a, v, mo);
221}
222
223void __tsan_atomic16_store(volatile a16 *a, a16 v, morder mo) {
224 SCOPED_ATOMIC(Store, a, v, mo);
225}
226
227void __tsan_atomic32_store(volatile a32 *a, a32 v, morder mo) {
228 SCOPED_ATOMIC(Store, a, v, mo);
229}
230
231void __tsan_atomic64_store(volatile a64 *a, a64 v, morder mo) {
232 SCOPED_ATOMIC(Store, a, v, mo);
233}
234
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000235a8 __tsan_atomic8_exchange(volatile a8 *a, a8 v, morder mo) {
236 SCOPED_ATOMIC(Exchange, a, v, mo);
237}
238
239a16 __tsan_atomic16_exchange(volatile a16 *a, a16 v, morder mo) {
240 SCOPED_ATOMIC(Exchange, a, v, mo);
241}
242
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000243a32 __tsan_atomic32_exchange(volatile a32 *a, a32 v, morder mo) {
244 SCOPED_ATOMIC(Exchange, a, v, mo);
245}
246
247a64 __tsan_atomic64_exchange(volatile a64 *a, a64 v, morder mo) {
248 SCOPED_ATOMIC(Exchange, a, v, mo);
249}
250
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000251a8 __tsan_atomic8_fetch_add(volatile a8 *a, a8 v, morder mo) {
252 SCOPED_ATOMIC(FetchAdd, a, v, mo);
253}
254
255a16 __tsan_atomic16_fetch_add(volatile a16 *a, a16 v, morder mo) {
256 SCOPED_ATOMIC(FetchAdd, a, v, mo);
257}
258
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000259a32 __tsan_atomic32_fetch_add(volatile a32 *a, a32 v, morder mo) {
260 SCOPED_ATOMIC(FetchAdd, a, v, mo);
261}
262
263a64 __tsan_atomic64_fetch_add(volatile a64 *a, a64 v, morder mo) {
264 SCOPED_ATOMIC(FetchAdd, a, v, mo);
265}
266
Dmitry Vyukovb96a7b52012-10-04 10:08:23 +0000267a8 __tsan_atomic8_fetch_sub(volatile a8 *a, a8 v, morder mo) {
268 SCOPED_ATOMIC(FetchSub, a, v, mo);
269}
270
271a16 __tsan_atomic16_fetch_sub(volatile a16 *a, a16 v, morder mo) {
272 SCOPED_ATOMIC(FetchSub, a, v, mo);
273}
274
275a32 __tsan_atomic32_fetch_sub(volatile a32 *a, a32 v, morder mo) {
276 SCOPED_ATOMIC(FetchSub, a, v, mo);
277}
278
279a64 __tsan_atomic64_fetch_sub(volatile a64 *a, a64 v, morder mo) {
280 SCOPED_ATOMIC(FetchSub, a, v, mo);
281}
282
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000283a8 __tsan_atomic8_fetch_and(volatile a8 *a, a8 v, morder mo) {
284 SCOPED_ATOMIC(FetchAnd, a, v, mo);
285}
286
287a16 __tsan_atomic16_fetch_and(volatile a16 *a, a16 v, morder mo) {
288 SCOPED_ATOMIC(FetchAnd, a, v, mo);
289}
290
291a32 __tsan_atomic32_fetch_and(volatile a32 *a, a32 v, morder mo) {
292 SCOPED_ATOMIC(FetchAnd, a, v, mo);
293}
294
295a64 __tsan_atomic64_fetch_and(volatile a64 *a, a64 v, morder mo) {
296 SCOPED_ATOMIC(FetchAnd, a, v, mo);
297}
298
299a8 __tsan_atomic8_fetch_or(volatile a8 *a, a8 v, morder mo) {
300 SCOPED_ATOMIC(FetchOr, a, v, mo);
301}
302
303a16 __tsan_atomic16_fetch_or(volatile a16 *a, a16 v, morder mo) {
304 SCOPED_ATOMIC(FetchOr, a, v, mo);
305}
306
307a32 __tsan_atomic32_fetch_or(volatile a32 *a, a32 v, morder mo) {
308 SCOPED_ATOMIC(FetchOr, a, v, mo);
309}
310
311a64 __tsan_atomic64_fetch_or(volatile a64 *a, a64 v, morder mo) {
312 SCOPED_ATOMIC(FetchOr, a, v, mo);
313}
314
315a8 __tsan_atomic8_fetch_xor(volatile a8 *a, a8 v, morder mo) {
316 SCOPED_ATOMIC(FetchXor, a, v, mo);
317}
318
319a16 __tsan_atomic16_fetch_xor(volatile a16 *a, a16 v, morder mo) {
320 SCOPED_ATOMIC(FetchXor, a, v, mo);
321}
322
323a32 __tsan_atomic32_fetch_xor(volatile a32 *a, a32 v, morder mo) {
324 SCOPED_ATOMIC(FetchXor, a, v, mo);
325}
326
327a64 __tsan_atomic64_fetch_xor(volatile a64 *a, a64 v, morder mo) {
328 SCOPED_ATOMIC(FetchXor, a, v, mo);
329}
330
331int __tsan_atomic8_compare_exchange_strong(volatile a8 *a, a8 *c, a8 v,
332 morder mo) {
333 SCOPED_ATOMIC(CAS, a, c, v, mo);
334}
335
336int __tsan_atomic16_compare_exchange_strong(volatile a16 *a, a16 *c, a16 v,
337 morder mo) {
338 SCOPED_ATOMIC(CAS, a, c, v, mo);
339}
340
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000341int __tsan_atomic32_compare_exchange_strong(volatile a32 *a, a32 *c, a32 v,
342 morder mo) {
343 SCOPED_ATOMIC(CAS, a, c, v, mo);
344}
345
346int __tsan_atomic64_compare_exchange_strong(volatile a64 *a, a64 *c, a64 v,
347 morder mo) {
348 SCOPED_ATOMIC(CAS, a, c, v, mo);
349}
350
Dmitry Vyukov572c5b22012-05-14 15:33:00 +0000351int __tsan_atomic8_compare_exchange_weak(volatile a8 *a, a8 *c, a8 v,
352 morder mo) {
353 SCOPED_ATOMIC(CAS, a, c, v, mo);
354}
355
356int __tsan_atomic16_compare_exchange_weak(volatile a16 *a, a16 *c, a16 v,
357 morder mo) {
358 SCOPED_ATOMIC(CAS, a, c, v, mo);
359}
360
361int __tsan_atomic32_compare_exchange_weak(volatile a32 *a, a32 *c, a32 v,
362 morder mo) {
363 SCOPED_ATOMIC(CAS, a, c, v, mo);
364}
365
366int __tsan_atomic64_compare_exchange_weak(volatile a64 *a, a64 *c, a64 v,
367 morder mo) {
368 SCOPED_ATOMIC(CAS, a, c, v, mo);
369}
370
Dmitry Vyukov4e5f72d2012-11-09 12:54:37 +0000371a8 __tsan_atomic8_compare_exchange_val(volatile a8 *a, a8 c, a8 v,
372 morder mo) {
373 SCOPED_ATOMIC(CAS, a, c, v, mo);
374}
375a16 __tsan_atomic16_compare_exchange_val(volatile a16 *a, a16 c, a16 v,
376 morder mo) {
377 SCOPED_ATOMIC(CAS, a, c, v, mo);
378}
379
380a32 __tsan_atomic32_compare_exchange_val(volatile a32 *a, a32 c, a32 v,
381 morder mo) {
382 SCOPED_ATOMIC(CAS, a, c, v, mo);
383}
384
385a64 __tsan_atomic64_compare_exchange_val(volatile a64 *a, a64 c, a64 v,
386 morder mo) {
387 SCOPED_ATOMIC(CAS, a, c, v, mo);
388}
389
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000390void __tsan_atomic_thread_fence(morder mo) {
391 char* a;
392 SCOPED_ATOMIC(Fence, mo);
393}
Dmitry Vyukovb96a7b52012-10-04 10:08:23 +0000394
395void __tsan_atomic_signal_fence(morder mo) {
396}