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Alexey Samsonov3b2f9f42012-06-04 13:55:19 +00001//===-- tsan_rtl_thread.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_rtl.h"
16#include "tsan_mman.h"
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000017#include "tsan_platform.h"
18#include "tsan_report.h"
19#include "tsan_sync.h"
20
21namespace __tsan {
22
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000023// ThreadContext implementation.
Kostya Serebryany4ad375f2012-05-10 13:48:04 +000024
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000025ThreadContext::ThreadContext(int tid)
26 : ThreadContextBase(tid)
27 , thr()
28 , sync()
29 , epoch0()
Dmitry Vyukov79915de2013-03-20 10:31:53 +000030 , epoch1() {
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000031}
32
Dmitry Vyukov49e462f2013-03-18 10:10:15 +000033#ifndef TSAN_GO
34ThreadContext::~ThreadContext() {
35}
36#endif
37
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000038void ThreadContext::OnDead() {
39 sync.Reset();
40}
41
42void ThreadContext::OnJoined(void *arg) {
43 ThreadState *caller_thr = static_cast<ThreadState *>(arg);
Dmitry Vyukovfbb194f2013-10-10 15:58:12 +000044 AcquireImpl(caller_thr, 0, &sync);
Dmitry Vyukov509dab32013-03-19 10:22:33 +000045 sync.Reset();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000046}
47
48struct OnCreatedArgs {
49 ThreadState *thr;
50 uptr pc;
51};
52
53void ThreadContext::OnCreated(void *arg) {
54 thr = 0;
Dmitry Vyukov50160032013-03-18 08:52:46 +000055 if (tid == 0)
56 return;
57 OnCreatedArgs *args = static_cast<OnCreatedArgs *>(arg);
58 args->thr->fast_state.IncrementEpoch();
59 // Can't increment epoch w/o writing to the trace as well.
60 TraceAddEvent(args->thr, args->thr->fast_state, EventTypeMop, 0);
Dmitry Vyukovfbb194f2013-10-10 15:58:12 +000061 ReleaseImpl(args->thr, 0, &sync);
Dmitry Vyukov7cd20252013-03-18 09:02:27 +000062#ifdef TSAN_GO
Dmitry Vyukov50160032013-03-18 08:52:46 +000063 creation_stack.ObtainCurrent(args->thr, args->pc);
Dmitry Vyukov7cd20252013-03-18 09:02:27 +000064#else
65 creation_stack_id = CurrentStackId(args->thr, args->pc);
66#endif
Dmitry Vyukov50160032013-03-18 08:52:46 +000067 if (reuse_count == 0)
68 StatInc(args->thr, StatThreadMaxTid);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000069}
70
Dmitry Vyukov4ecfa692013-03-19 12:25:48 +000071void ThreadContext::OnReset() {
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000072 sync.Reset();
Dmitry Vyukov79915de2013-03-20 10:31:53 +000073 FlushUnneededShadowMemory(GetThreadTrace(tid), TraceSize() * sizeof(Event));
74 //!!! FlushUnneededShadowMemory(GetThreadTraceHeader(tid), sizeof(Trace));
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000075}
76
77struct OnStartedArgs {
78 ThreadState *thr;
79 uptr stk_addr;
80 uptr stk_size;
81 uptr tls_addr;
82 uptr tls_size;
83};
84
85void ThreadContext::OnStarted(void *arg) {
86 OnStartedArgs *args = static_cast<OnStartedArgs*>(arg);
Dmitry Vyukov50160032013-03-18 08:52:46 +000087 thr = args->thr;
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000088 // RoundUp so that one trace part does not contain events
89 // from different threads.
90 epoch0 = RoundUp(epoch1 + 1, kTracePartSize);
91 epoch1 = (u64)-1;
Dmitry Vyukov50160032013-03-18 08:52:46 +000092 new(thr) ThreadState(CTX(), tid, unique_id,
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +000093 epoch0, args->stk_addr, args->stk_size, args->tls_addr, args->tls_size);
94#ifdef TSAN_GO
95 // Setup dynamic shadow stack.
96 const int kInitStackSize = 8;
97 args->thr->shadow_stack = (uptr*)internal_alloc(MBlockShadowStack,
98 kInitStackSize * sizeof(uptr));
99 args->thr->shadow_stack_pos = thr->shadow_stack;
100 args->thr->shadow_stack_end = thr->shadow_stack + kInitStackSize;
101#endif
102#ifndef TSAN_GO
103 AllocatorThreadStart(args->thr);
104#endif
105 thr = args->thr;
106 thr->fast_synch_epoch = epoch0;
Dmitry Vyukovfbb194f2013-10-10 15:58:12 +0000107 AcquireImpl(thr, 0, &sync);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000108 thr->fast_state.SetHistorySize(flags()->history_size);
109 const uptr trace = (epoch0 / kTracePartSize) % TraceParts();
Dmitry Vyukov79915de2013-03-20 10:31:53 +0000110 Trace *thr_trace = ThreadTrace(thr->tid);
111 thr_trace->headers[trace].epoch0 = epoch0;
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000112 StatInc(thr, StatSyncAcquire);
Dmitry Vyukov79915de2013-03-20 10:31:53 +0000113 sync.Reset();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000114 DPrintf("#%d: ThreadStart epoch=%zu stk_addr=%zx stk_size=%zx "
115 "tls_addr=%zx tls_size=%zx\n",
Alexey Samsonovb5d10f62013-03-18 09:45:22 +0000116 tid, (uptr)epoch0, args->stk_addr, args->stk_size,
117 args->tls_addr, args->tls_size);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000118 thr->is_alive = true;
119}
120
121void ThreadContext::OnFinished() {
122 if (!detached) {
123 thr->fast_state.IncrementEpoch();
124 // Can't increment epoch w/o writing to the trace as well.
125 TraceAddEvent(thr, thr->fast_state, EventTypeMop, 0);
Dmitry Vyukovfbb194f2013-10-10 15:58:12 +0000126 ReleaseImpl(thr, 0, &sync);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000127 }
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000128 epoch1 = thr->fast_state.epoch();
129
130#ifndef TSAN_GO
131 AllocatorThreadFinish(thr);
132#endif
133 thr->~ThreadState();
134 StatAggregate(CTX()->stat, thr->stat);
135 thr = 0;
136}
137
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000138#ifndef TSAN_GO
139struct ThreadLeak {
140 ThreadContext *tctx;
141 int count;
142};
143
144static void MaybeReportThreadLeak(ThreadContextBase *tctx_base, void *arg) {
145 Vector<ThreadLeak> &leaks = *(Vector<ThreadLeak>*)arg;
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000146 ThreadContext *tctx = static_cast<ThreadContext*>(tctx_base);
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000147 if (tctx->detached || tctx->status != ThreadStatusFinished)
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000148 return;
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000149 for (uptr i = 0; i < leaks.Size(); i++) {
150 if (leaks[i].tctx->creation_stack_id == tctx->creation_stack_id) {
151 leaks[i].count++;
152 return;
153 }
154 }
155 ThreadLeak leak = {tctx, 1};
156 leaks.PushBack(leak);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000157}
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000158#endif
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000159
Dmitry Vyukov536bff32013-05-21 08:12:35 +0000160static void ThreadCheckIgnore(ThreadState *thr) {
161 if (thr->ignore_reads_and_writes) {
162 Printf("ThreadSanitizer: thread T%d finished with ignores enabled.\n",
163 thr->tid);
164 }
Dmitry Vyukovfbb194f2013-10-10 15:58:12 +0000165 if (thr->ignore_sync) {
166 Printf("ThreadSanitizer: thread T%d finished with sync ignores enabled.\n",
167 thr->tid);
168 }
Dmitry Vyukov536bff32013-05-21 08:12:35 +0000169}
170
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000171void ThreadFinalize(ThreadState *thr) {
172 CHECK_GT(thr->in_rtl, 0);
Dmitry Vyukov536bff32013-05-21 08:12:35 +0000173 ThreadCheckIgnore(thr);
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000174#ifndef TSAN_GO
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000175 if (!flags()->report_thread_leaks)
176 return;
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000177 ThreadRegistryLock l(CTX()->thread_registry);
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000178 Vector<ThreadLeak> leaks(MBlockScopedBuf);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000179 CTX()->thread_registry->RunCallbackForEachThreadLocked(
Dmitry Vyukovebf63d02013-03-21 16:55:17 +0000180 MaybeReportThreadLeak, &leaks);
181 for (uptr i = 0; i < leaks.Size(); i++) {
182 ScopedReport rep(ReportTypeThreadLeak);
183 rep.AddThread(leaks[i].tctx);
184 rep.SetCount(leaks[i].count);
185 OutputReport(CTX(), rep);
186 }
187#endif
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000188}
189
Dmitry Vyukov67dc5702012-11-07 16:41:57 +0000190int ThreadCount(ThreadState *thr) {
191 CHECK_GT(thr->in_rtl, 0);
192 Context *ctx = CTX();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000193 uptr result;
194 ctx->thread_registry->GetNumberOfThreads(0, 0, &result);
195 return (int)result;
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000196}
197
198int ThreadCreate(ThreadState *thr, uptr pc, uptr uid, bool detached) {
199 CHECK_GT(thr->in_rtl, 0);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000200 StatInc(thr, StatThreadCreate);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000201 Context *ctx = CTX();
202 OnCreatedArgs args = { thr, pc };
203 int tid = ctx->thread_registry->CreateThread(uid, detached, thr->tid, &args);
Alexey Samsonov51ae9832012-06-06 13:11:29 +0000204 DPrintf("#%d: ThreadCreate tid=%d uid=%zu\n", thr->tid, tid, uid);
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000205 StatSet(thr, StatThreadMaxAlive, ctx->thread_registry->GetMaxAliveThreads());
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000206 return tid;
207}
208
Dmitry Vyukov56faa552012-10-02 12:58:14 +0000209void ThreadStart(ThreadState *thr, int tid, uptr os_id) {
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000210 CHECK_GT(thr->in_rtl, 0);
211 uptr stk_addr = 0;
212 uptr stk_size = 0;
213 uptr tls_addr = 0;
214 uptr tls_size = 0;
Dmitry Vyukov7339eb12012-05-25 11:15:04 +0000215 GetThreadStackAndTls(tid == 0, &stk_addr, &stk_size, &tls_addr, &tls_size);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000216
Dmitry Vyukov2d4e3c12012-05-28 07:44:34 +0000217 if (tid) {
Dmitry Vyukov2e7f29f2013-03-18 15:49:07 +0000218 if (stk_addr && stk_size)
Dmitry Vyukovce26a0a2013-03-18 16:56:48 +0000219 MemoryRangeImitateWrite(thr, /*pc=*/ 1, stk_addr, stk_size);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000220
Dmitry Vyukov03d32ec2012-07-05 16:18:28 +0000221 if (tls_addr && tls_size) {
222 // Check that the thr object is in tls;
223 const uptr thr_beg = (uptr)thr;
224 const uptr thr_end = (uptr)thr + sizeof(*thr);
225 CHECK_GE(thr_beg, tls_addr);
226 CHECK_LE(thr_beg, tls_addr + tls_size);
227 CHECK_GE(thr_end, tls_addr);
228 CHECK_LE(thr_end, tls_addr + tls_size);
229 // Since the thr object is huge, skip it.
Dmitry Vyukovce26a0a2013-03-18 16:56:48 +0000230 MemoryRangeImitateWrite(thr, /*pc=*/ 2, tls_addr, thr_beg - tls_addr);
231 MemoryRangeImitateWrite(thr, /*pc=*/ 2,
232 thr_end, tls_addr + tls_size - thr_end);
Dmitry Vyukov03d32ec2012-07-05 16:18:28 +0000233 }
Dmitry Vyukov2d4e3c12012-05-28 07:44:34 +0000234 }
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000235
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000236 OnStartedArgs args = { thr, stk_addr, stk_size, tls_addr, tls_size };
237 CTX()->thread_registry->StartThread(tid, os_id, &args);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000238}
239
240void ThreadFinish(ThreadState *thr) {
241 CHECK_GT(thr->in_rtl, 0);
Dmitry Vyukov536bff32013-05-21 08:12:35 +0000242 ThreadCheckIgnore(thr);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000243 StatInc(thr, StatThreadFinish);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000244 if (thr->stk_addr && thr->stk_size)
Dmitry Vyukov2e7f29f2013-03-18 15:49:07 +0000245 DontNeedShadowFor(thr->stk_addr, thr->stk_size);
246 if (thr->tls_addr && thr->tls_size)
247 DontNeedShadowFor(thr->tls_addr, thr->tls_size);
Dmitry Vyukovfa985a02012-06-28 18:07:46 +0000248 thr->is_alive = false;
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000249 Context *ctx = CTX();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000250 ctx->thread_registry->FinishThread(thr->tid);
251}
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000252
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000253static bool FindThreadByUid(ThreadContextBase *tctx, void *arg) {
254 uptr uid = (uptr)arg;
255 if (tctx->user_id == uid && tctx->status != ThreadStatusInvalid) {
256 tctx->user_id = 0;
257 return true;
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000258 }
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000259 return false;
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000260}
261
262int ThreadTid(ThreadState *thr, uptr pc, uptr uid) {
263 CHECK_GT(thr->in_rtl, 0);
Dmitry Vyukov880bb662012-05-28 17:32:50 +0000264 Context *ctx = CTX();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000265 int res = ctx->thread_registry->FindThread(FindThreadByUid, (void*)uid);
Alexey Samsonov51ae9832012-06-06 13:11:29 +0000266 DPrintf("#%d: ThreadTid uid=%zu tid=%d\n", thr->tid, uid, res);
Dmitry Vyukov880bb662012-05-28 17:32:50 +0000267 return res;
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000268}
269
270void ThreadJoin(ThreadState *thr, uptr pc, int tid) {
271 CHECK_GT(thr->in_rtl, 0);
272 CHECK_GT(tid, 0);
273 CHECK_LT(tid, kMaxTid);
274 DPrintf("#%d: ThreadJoin tid=%d\n", thr->tid, tid);
275 Context *ctx = CTX();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000276 ctx->thread_registry->JoinThread(tid, thr);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000277}
278
279void ThreadDetach(ThreadState *thr, uptr pc, int tid) {
280 CHECK_GT(thr->in_rtl, 0);
281 CHECK_GT(tid, 0);
282 CHECK_LT(tid, kMaxTid);
283 Context *ctx = CTX();
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000284 ctx->thread_registry->DetachThread(tid);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000285}
286
Dmitry Vyukov1b469932012-12-04 15:46:05 +0000287void ThreadSetName(ThreadState *thr, const char *name) {
Alexey Samsonov9aecdfe2013-03-15 13:48:44 +0000288 CHECK_GT(thr->in_rtl, 0);
289 CTX()->thread_registry->SetThreadName(thr->tid, name);
Dmitry Vyukov1b469932012-12-04 15:46:05 +0000290}
291
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000292void MemoryAccessRange(ThreadState *thr, uptr pc, uptr addr,
293 uptr size, bool is_write) {
294 if (size == 0)
295 return;
296
297 u64 *shadow_mem = (u64*)MemToShadow(addr);
298 DPrintf2("#%d: MemoryAccessRange: @%p %p size=%d is_write=%d\n",
299 thr->tid, (void*)pc, (void*)addr,
300 (int)size, is_write);
301
302#if TSAN_DEBUG
303 if (!IsAppMem(addr)) {
Alexey Samsonovad9d65f2012-11-02 12:17:51 +0000304 Printf("Access to non app mem %zx\n", addr);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000305 DCHECK(IsAppMem(addr));
306 }
307 if (!IsAppMem(addr + size - 1)) {
Alexey Samsonovad9d65f2012-11-02 12:17:51 +0000308 Printf("Access to non app mem %zx\n", addr + size - 1);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000309 DCHECK(IsAppMem(addr + size - 1));
310 }
311 if (!IsShadowMem((uptr)shadow_mem)) {
Alexey Samsonovad9d65f2012-11-02 12:17:51 +0000312 Printf("Bad shadow addr %p (%zx)\n", shadow_mem, addr);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000313 DCHECK(IsShadowMem((uptr)shadow_mem));
314 }
315 if (!IsShadowMem((uptr)(shadow_mem + size * kShadowCnt / 8 - 1))) {
Alexey Samsonovad9d65f2012-11-02 12:17:51 +0000316 Printf("Bad shadow addr %p (%zx)\n",
Alexey Samsonov51ae9832012-06-06 13:11:29 +0000317 shadow_mem + size * kShadowCnt / 8 - 1, addr + size - 1);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000318 DCHECK(IsShadowMem((uptr)(shadow_mem + size * kShadowCnt / 8 - 1)));
319 }
320#endif
321
322 StatInc(thr, StatMopRange);
323
Dmitry Vyukovb62c1582013-03-20 13:21:50 +0000324 if (*shadow_mem == kShadowRodata) {
325 // Access to .rodata section, no races here.
326 // Measurements show that it can be 10-20% of all memory accesses.
327 StatInc(thr, StatMopRangeRodata);
328 return;
329 }
330
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000331 FastState fast_state = thr->fast_state;
332 if (fast_state.GetIgnoreBit())
333 return;
334
335 fast_state.IncrementEpoch();
336 thr->fast_state = fast_state;
Dmitry Vyukov2429b022012-11-28 10:35:31 +0000337 TraceAddEvent(thr, fast_state, EventTypeMop, pc);
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000338
339 bool unaligned = (addr % kShadowCell) != 0;
340
341 // Handle unaligned beginning, if any.
342 for (; addr % kShadowCell && size; addr++, size--) {
343 int const kAccessSizeLog = 0;
344 Shadow cur(fast_state);
345 cur.SetWrite(is_write);
346 cur.SetAddr0AndSizeLog(addr & (kShadowCell - 1), kAccessSizeLog);
Dmitry Vyukovba429142013-02-01 09:42:06 +0000347 MemoryAccessImpl(thr, addr, kAccessSizeLog, is_write, false,
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000348 shadow_mem, cur);
349 }
350 if (unaligned)
351 shadow_mem += kShadowCnt;
352 // Handle middle part, if any.
353 for (; size >= kShadowCell; addr += kShadowCell, size -= kShadowCell) {
354 int const kAccessSizeLog = 3;
355 Shadow cur(fast_state);
356 cur.SetWrite(is_write);
357 cur.SetAddr0AndSizeLog(0, kAccessSizeLog);
Dmitry Vyukovba429142013-02-01 09:42:06 +0000358 MemoryAccessImpl(thr, addr, kAccessSizeLog, is_write, false,
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000359 shadow_mem, cur);
360 shadow_mem += kShadowCnt;
361 }
362 // Handle ending, if any.
363 for (; size; addr++, size--) {
364 int const kAccessSizeLog = 0;
365 Shadow cur(fast_state);
366 cur.SetWrite(is_write);
367 cur.SetAddr0AndSizeLog(addr & (kShadowCell - 1), kAccessSizeLog);
Dmitry Vyukovba429142013-02-01 09:42:06 +0000368 MemoryAccessImpl(thr, addr, kAccessSizeLog, is_write, false,
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000369 shadow_mem, cur);
370 }
371}
Dmitry Vyukov3c2489e2013-02-13 13:05:36 +0000372
Kostya Serebryany4ad375f2012-05-10 13:48:04 +0000373} // namespace __tsan