Fix out-of-range shift warnings in simd_v81.c.
[valgrind.git] / drd / drd_thread.c
bloba4ea68cf7d48dc8651c73894e46dcb9de9e39dfd
1 /*
2 This file is part of drd, a thread error detector.
4 Copyright (C) 2006-2017 Bart Van Assche <bvanassche@acm.org>.
6 This program is free software; you can redistribute it and/or
7 modify it under the terms of the GNU General Public License as
8 published by the Free Software Foundation; either version 2 of the
9 License, or (at your option) any later version.
11 This program is distributed in the hope that it will be useful, but
12 WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, see <http://www.gnu.org/licenses/>.
19 The GNU General Public License is contained in the file COPYING.
23 #include "drd_error.h"
24 #include "drd_barrier.h"
25 #include "drd_clientobj.h"
26 #include "drd_cond.h"
27 #include "drd_mutex.h"
28 #include "drd_segment.h"
29 #include "drd_semaphore.h"
30 #include "drd_suppression.h"
31 #include "drd_thread.h"
32 #include "pub_tool_vki.h"
33 #include "pub_tool_basics.h" // Addr, SizeT
34 #include "pub_tool_libcassert.h" // tl_assert()
35 #include "pub_tool_libcbase.h" // VG_(strlen)()
36 #include "pub_tool_libcprint.h" // VG_(printf)()
37 #include "pub_tool_machine.h"
38 #include "pub_tool_mallocfree.h" // VG_(malloc)(), VG_(free)()
39 #include "pub_tool_options.h" // VG_(clo_backtrace_size)
40 #include "pub_tool_threadstate.h" // VG_(get_pthread_id)()
44 /* Local functions. */
46 static void thread_append_segment(const DrdThreadId tid, Segment* const sg);
47 static void thread_discard_segment(const DrdThreadId tid, Segment* const sg);
48 static void thread_compute_conflict_set(struct bitmap** conflict_set,
49 const DrdThreadId tid);
50 static Bool thread_conflict_set_up_to_date(const DrdThreadId tid);
53 /* Local variables. */
55 static ULong s_context_switch_count;
56 static ULong s_discard_ordered_segments_count;
57 static ULong s_compute_conflict_set_count;
58 static ULong s_update_conflict_set_count;
59 static ULong s_update_conflict_set_new_sg_count;
60 static ULong s_update_conflict_set_sync_count;
61 static ULong s_update_conflict_set_join_count;
62 static ULong s_conflict_set_bitmap_creation_count;
63 static ULong s_conflict_set_bitmap2_creation_count;
64 static ThreadId s_vg_running_tid = VG_INVALID_THREADID;
65 DrdThreadId DRD_(g_drd_running_tid) = DRD_INVALID_THREADID;
66 ThreadInfo* DRD_(g_threadinfo);
67 struct bitmap* DRD_(g_conflict_set);
68 Bool DRD_(verify_conflict_set);
69 static Bool s_trace_context_switches = False;
70 static Bool s_trace_conflict_set = False;
71 static Bool s_trace_conflict_set_bm = False;
72 static Bool s_trace_fork_join = False;
73 static Bool s_segment_merging = True;
74 static Bool s_new_segments_since_last_merge;
75 static int s_segment_merge_interval = 10;
76 static unsigned s_join_list_vol = 10;
77 static unsigned s_deletion_head;
78 static unsigned s_deletion_tail;
79 #if defined(VGO_solaris)
80 Bool DRD_(ignore_thread_creation) = True;
81 #else
82 Bool DRD_(ignore_thread_creation) = False;
83 #endif /* VGO_solaris */
86 /* Function definitions. */
88 /** Enables/disables context switch tracing. */
89 void DRD_(thread_trace_context_switches)(const Bool t)
91 tl_assert(t == False || t == True);
92 s_trace_context_switches = t;
95 /** Enables/disables conflict set tracing. */
96 void DRD_(thread_trace_conflict_set)(const Bool t)
98 tl_assert(t == False || t == True);
99 s_trace_conflict_set = t;
102 /** Enables/disables conflict set bitmap tracing. */
103 void DRD_(thread_trace_conflict_set_bm)(const Bool t)
105 tl_assert(t == False || t == True);
106 s_trace_conflict_set_bm = t;
109 /** Report whether fork/join tracing is enabled. */
110 Bool DRD_(thread_get_trace_fork_join)(void)
112 return s_trace_fork_join;
115 /** Enables/disables fork/join tracing. */
116 void DRD_(thread_set_trace_fork_join)(const Bool t)
118 tl_assert(t == False || t == True);
119 s_trace_fork_join = t;
122 /** Enables/disables segment merging. */
123 void DRD_(thread_set_segment_merging)(const Bool m)
125 tl_assert(m == False || m == True);
126 s_segment_merging = m;
129 /** Get the segment merging interval. */
130 int DRD_(thread_get_segment_merge_interval)(void)
132 return s_segment_merge_interval;
135 /** Set the segment merging interval. */
136 void DRD_(thread_set_segment_merge_interval)(const int i)
138 s_segment_merge_interval = i;
141 void DRD_(thread_set_join_list_vol)(const int jlv)
143 s_join_list_vol = jlv;
146 void DRD_(thread_init)(void)
148 DRD_(g_threadinfo) = VG_(malloc)("drd.main.ti.1",
149 DRD_N_THREADS * sizeof DRD_(g_threadinfo)[0]);
150 for (UInt i = 0; i < DRD_N_THREADS; ++i) {
151 static ThreadInfo initval;
152 DRD_(g_threadinfo)[i] = initval;
157 * Convert Valgrind's ThreadId into a DrdThreadId.
159 * @return DRD thread ID upon success and DRD_INVALID_THREADID if the passed
160 * Valgrind ThreadId does not yet exist.
162 DrdThreadId DRD_(VgThreadIdToDrdThreadId)(const ThreadId tid)
164 UInt i;
166 if (tid == VG_INVALID_THREADID)
167 return DRD_INVALID_THREADID;
169 for (i = 1; i < DRD_N_THREADS; i++)
171 if (DRD_(g_threadinfo)[i].vg_thread_exists == True
172 && DRD_(g_threadinfo)[i].vg_threadid == tid)
174 return i;
178 return DRD_INVALID_THREADID;
181 /** Allocate a new DRD thread ID for the specified Valgrind thread ID. */
182 static DrdThreadId DRD_(VgThreadIdToNewDrdThreadId)(const ThreadId tid)
184 UInt i;
186 tl_assert(DRD_(VgThreadIdToDrdThreadId)(tid) == DRD_INVALID_THREADID);
188 for (i = 1; i < DRD_N_THREADS; i++)
190 if (!DRD_(g_threadinfo)[i].valid)
192 tl_assert(! DRD_(IsValidDrdThreadId)(i));
194 DRD_(g_threadinfo)[i].valid = True;
195 DRD_(g_threadinfo)[i].vg_thread_exists = True;
196 DRD_(g_threadinfo)[i].vg_threadid = tid;
197 DRD_(g_threadinfo)[i].pt_threadid = INVALID_POSIX_THREADID;
198 DRD_(g_threadinfo)[i].stack_min = 0;
199 DRD_(g_threadinfo)[i].stack_min_min = 0;
200 DRD_(g_threadinfo)[i].stack_startup = 0;
201 DRD_(g_threadinfo)[i].stack_max = 0;
202 DRD_(thread_set_name)(i, "");
203 DRD_(g_threadinfo)[i].on_alt_stack = False;
204 DRD_(g_threadinfo)[i].is_recording_loads = True;
205 DRD_(g_threadinfo)[i].is_recording_stores = True;
206 DRD_(g_threadinfo)[i].pthread_create_nesting_level = 0;
207 DRD_(g_threadinfo)[i].synchr_nesting = 0;
208 DRD_(g_threadinfo)[i].deletion_seq = s_deletion_tail - 1;
209 DRD_(g_threadinfo)[i].creator_thread = DRD_INVALID_THREADID;
210 #if defined (VGO_solaris)
211 DRD_(g_threadinfo)[i].bind_guard_flag = 0;
212 #endif /* VGO_solaris */
214 tl_assert(DRD_(g_threadinfo)[i].sg_first == NULL);
215 tl_assert(DRD_(g_threadinfo)[i].sg_last == NULL);
217 tl_assert(DRD_(IsValidDrdThreadId)(i));
219 return i;
223 VG_(printf)(
224 "\nSorry, but the maximum number of threads supported by DRD has been exceeded."
225 "Aborting.\n");
227 tl_assert(False);
229 return DRD_INVALID_THREADID;
232 /** Convert a POSIX thread ID into a DRD thread ID. */
233 DrdThreadId DRD_(PtThreadIdToDrdThreadId)(const PThreadId tid)
235 UInt i;
237 if (tid != INVALID_POSIX_THREADID)
239 for (i = 1; i < DRD_N_THREADS; i++)
241 if (DRD_(g_threadinfo)[i].posix_thread_exists
242 && DRD_(g_threadinfo)[i].pt_threadid == tid)
244 return i;
248 return DRD_INVALID_THREADID;
251 /** Convert a DRD thread ID into a Valgrind thread ID. */
252 ThreadId DRD_(DrdThreadIdToVgThreadId)(const DrdThreadId tid)
254 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
255 && tid != DRD_INVALID_THREADID);
257 return (DRD_(g_threadinfo)[tid].vg_thread_exists
258 ? DRD_(g_threadinfo)[tid].vg_threadid
259 : VG_INVALID_THREADID);
262 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
264 * Sanity check of the doubly linked list of segments referenced by a
265 * ThreadInfo struct.
266 * @return True if sane, False if not.
268 static Bool DRD_(sane_ThreadInfo)(const ThreadInfo* const ti)
270 Segment* p;
272 for (p = ti->sg_first; p; p = p->thr_next) {
273 if (p->thr_next && p->thr_next->thr_prev != p)
274 return False;
275 if (p->thr_next == 0 && p != ti->sg_last)
276 return False;
278 for (p = ti->sg_last; p; p = p->thr_prev) {
279 if (p->thr_prev && p->thr_prev->thr_next != p)
280 return False;
281 if (p->thr_prev == 0 && p != ti->sg_first)
282 return False;
284 return True;
286 #endif
289 * Create the first segment for a newly started thread.
291 * This function is called from the handler installed via
292 * VG_(track_pre_thread_ll_create)(). The Valgrind core invokes this handler
293 * from the context of the creator thread, before the new thread has been
294 * created.
296 * @param[in] creator DRD thread ID of the creator thread.
297 * @param[in] vg_created Valgrind thread ID of the created thread.
299 * @return DRD thread ID of the created thread.
301 DrdThreadId DRD_(thread_pre_create)(const DrdThreadId creator,
302 const ThreadId vg_created)
304 DrdThreadId created;
306 tl_assert(DRD_(VgThreadIdToDrdThreadId)(vg_created) == DRD_INVALID_THREADID);
307 created = DRD_(VgThreadIdToNewDrdThreadId)(vg_created);
308 tl_assert(0 <= (int)created && created < DRD_N_THREADS
309 && created != DRD_INVALID_THREADID);
311 tl_assert(DRD_(g_threadinfo)[created].sg_first == NULL);
312 tl_assert(DRD_(g_threadinfo)[created].sg_last == NULL);
314 if (creator != DRD_INVALID_THREADID) {
315 if (DRD_(ignore_thread_creation)) {
316 tl_assert(DRD_(thread_get_synchr_nesting_count)(created) == 0);
317 DRD_(thread_enter_synchr)(created);
318 /* Counterpart in DRD_(thread_set_pthreadid)(). */
321 DRD_(g_threadinfo)[created].creator_thread = creator;
323 /* Create an initial segment for the newly created thread. */
324 thread_append_segment(created, DRD_(sg_new)(creator, created));
326 return created;
330 * Initialize DRD_(g_threadinfo)[] for a newly created thread. Must be called
331 * after the thread has been created and before any client instructions are run
332 * on the newly created thread, e.g. from the handler installed via
333 * VG_(track_pre_thread_first_insn)().
335 * @param[in] vg_created Valgrind thread ID of the newly created thread.
337 * @return DRD thread ID for the new thread.
339 DrdThreadId DRD_(thread_post_create)(const ThreadId vg_created)
341 const DrdThreadId created = DRD_(VgThreadIdToDrdThreadId)(vg_created);
343 tl_assert(0 <= (int)created && created < DRD_N_THREADS
344 && created != DRD_INVALID_THREADID);
346 DRD_(g_threadinfo)[created].stack_max
347 = VG_(thread_get_stack_max)(vg_created);
348 DRD_(g_threadinfo)[created].stack_startup
349 = DRD_(g_threadinfo)[created].stack_max;
350 DRD_(g_threadinfo)[created].stack_min
351 = DRD_(g_threadinfo)[created].stack_max;
352 DRD_(g_threadinfo)[created].stack_min_min
353 = DRD_(g_threadinfo)[created].stack_max;
354 DRD_(g_threadinfo)[created].stack_size
355 = VG_(thread_get_stack_size)(vg_created);
356 tl_assert(DRD_(g_threadinfo)[created].stack_max != 0);
358 return created;
361 static void DRD_(thread_delayed_delete)(const DrdThreadId tid)
363 UInt j;
365 DRD_(g_threadinfo)[tid].vg_thread_exists = False;
366 DRD_(g_threadinfo)[tid].posix_thread_exists = False;
367 DRD_(g_threadinfo)[tid].deletion_seq = s_deletion_head++;
368 #if 0
369 VG_(message)(Vg_DebugMsg, "Adding thread %d to the deletion list\n", tid);
370 #endif
371 if (s_deletion_head - s_deletion_tail >= s_join_list_vol) {
372 for (j = 0; j < DRD_N_THREADS; ++j) {
373 if (DRD_(IsValidDrdThreadId)(j)
374 && DRD_(g_threadinfo)[j].deletion_seq == s_deletion_tail)
376 s_deletion_tail++;
377 #if 0
378 VG_(message)(Vg_DebugMsg, "Delayed delete of thread %d\n", j);
379 #endif
380 DRD_(thread_delete)(j, False);
381 break;
388 * Process VG_USERREQ__POST_THREAD_JOIN. This client request is invoked just
389 * after thread drd_joiner joined thread drd_joinee.
391 void DRD_(thread_post_join)(DrdThreadId drd_joiner, DrdThreadId drd_joinee)
393 tl_assert(DRD_(IsValidDrdThreadId)(drd_joiner));
394 tl_assert(DRD_(IsValidDrdThreadId)(drd_joinee));
396 DRD_(thread_new_segment)(drd_joiner);
397 DRD_(thread_combine_vc_join)(drd_joiner, drd_joinee);
398 DRD_(thread_new_segment)(drd_joinee);
400 if (s_trace_fork_join)
402 const ThreadId joiner = DRD_(DrdThreadIdToVgThreadId)(drd_joiner);
403 const unsigned msg_size = 256;
404 HChar* msg;
406 msg = VG_(malloc)("drd.main.dptj.1", msg_size);
408 VG_(snprintf)(msg, msg_size,
409 "drd_post_thread_join joiner = %u, joinee = %u",
410 drd_joiner, drd_joinee);
411 if (joiner)
413 HChar* vc;
415 vc = DRD_(vc_aprint)(DRD_(thread_get_vc)(drd_joiner));
416 VG_(snprintf)(msg + VG_(strlen)(msg), msg_size - VG_(strlen)(msg),
417 ", new vc: %s", vc);
418 VG_(free)(vc);
420 DRD_(trace_msg)("%pS", msg);
421 VG_(free)(msg);
424 if (! DRD_(get_check_stack_accesses)())
426 DRD_(finish_suppression)(DRD_(thread_get_stack_max)(drd_joinee)
427 - DRD_(thread_get_stack_size)(drd_joinee),
428 DRD_(thread_get_stack_max)(drd_joinee));
430 DRD_(clientobj_delete_thread)(drd_joinee);
431 DRD_(thread_delayed_delete)(drd_joinee);
435 * NPTL hack: NPTL allocates the 'struct pthread' on top of the stack,
436 * and accesses this data structure from multiple threads without locking.
437 * Any conflicting accesses in the range stack_startup..stack_max will be
438 * ignored.
440 void DRD_(thread_set_stack_startup)(const DrdThreadId tid,
441 const Addr stack_startup)
443 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
444 && tid != DRD_INVALID_THREADID);
445 tl_assert(DRD_(g_threadinfo)[tid].stack_min <= stack_startup);
446 tl_assert(stack_startup <= DRD_(g_threadinfo)[tid].stack_max);
447 DRD_(g_threadinfo)[tid].stack_startup = stack_startup;
450 /** Return the stack pointer for the specified thread. */
451 Addr DRD_(thread_get_stack_min)(const DrdThreadId tid)
453 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
454 && tid != DRD_INVALID_THREADID);
455 return DRD_(g_threadinfo)[tid].stack_min;
459 * Return the lowest value that was ever assigned to the stack pointer
460 * for the specified thread.
462 Addr DRD_(thread_get_stack_min_min)(const DrdThreadId tid)
464 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
465 && tid != DRD_INVALID_THREADID);
466 return DRD_(g_threadinfo)[tid].stack_min_min;
469 /** Return the top address for the stack of the specified thread. */
470 Addr DRD_(thread_get_stack_max)(const DrdThreadId tid)
472 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
473 && tid != DRD_INVALID_THREADID);
474 return DRD_(g_threadinfo)[tid].stack_max;
477 /** Return the maximum stack size for the specified thread. */
478 SizeT DRD_(thread_get_stack_size)(const DrdThreadId tid)
480 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
481 && tid != DRD_INVALID_THREADID);
482 return DRD_(g_threadinfo)[tid].stack_size;
485 Bool DRD_(thread_get_on_alt_stack)(const DrdThreadId tid)
487 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
488 && tid != DRD_INVALID_THREADID);
489 return DRD_(g_threadinfo)[tid].on_alt_stack;
492 void DRD_(thread_set_on_alt_stack)(const DrdThreadId tid,
493 const Bool on_alt_stack)
495 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
496 && tid != DRD_INVALID_THREADID);
497 tl_assert(on_alt_stack == !!on_alt_stack);
498 DRD_(g_threadinfo)[tid].on_alt_stack = on_alt_stack;
501 Int DRD_(thread_get_threads_on_alt_stack)(void)
503 int n = 0;
505 for (UInt i = 1; i < DRD_N_THREADS; i++)
506 n += DRD_(g_threadinfo)[i].on_alt_stack;
507 return n;
511 * Clean up thread-specific data structures.
513 void DRD_(thread_delete)(const DrdThreadId tid, const Bool detached)
515 Segment* sg;
516 Segment* sg_prev;
518 tl_assert(DRD_(IsValidDrdThreadId)(tid));
520 tl_assert(DRD_(g_threadinfo)[tid].synchr_nesting >= 0);
521 for (sg = DRD_(g_threadinfo)[tid].sg_last; sg; sg = sg_prev) {
522 sg_prev = sg->thr_prev;
523 sg->thr_next = NULL;
524 sg->thr_prev = NULL;
525 DRD_(sg_put)(sg);
527 DRD_(g_threadinfo)[tid].valid = False;
528 DRD_(g_threadinfo)[tid].vg_thread_exists = False;
529 DRD_(g_threadinfo)[tid].posix_thread_exists = False;
530 if (detached)
531 DRD_(g_threadinfo)[tid].detached_posix_thread = False;
532 else
533 tl_assert(!DRD_(g_threadinfo)[tid].detached_posix_thread);
534 DRD_(g_threadinfo)[tid].sg_first = NULL;
535 DRD_(g_threadinfo)[tid].sg_last = NULL;
537 tl_assert(!DRD_(IsValidDrdThreadId)(tid));
541 * Called after a thread performed its last memory access and before
542 * thread_delete() is called. Note: thread_delete() is only called for
543 * joinable threads, not for detached threads.
545 void DRD_(thread_finished)(const DrdThreadId tid)
547 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
548 && tid != DRD_INVALID_THREADID);
550 DRD_(g_threadinfo)[tid].vg_thread_exists = False;
552 if (DRD_(g_threadinfo)[tid].detached_posix_thread)
555 * Once a detached thread has finished, its stack is deallocated and
556 * should no longer be taken into account when computing the conflict set.
558 DRD_(g_threadinfo)[tid].stack_min = DRD_(g_threadinfo)[tid].stack_max;
561 * For a detached thread, calling pthread_exit() invalidates the
562 * POSIX thread ID associated with the detached thread. For joinable
563 * POSIX threads however, the POSIX thread ID remains live after the
564 * pthread_exit() call until pthread_join() is called.
566 DRD_(g_threadinfo)[tid].posix_thread_exists = False;
570 /** Called just after fork() in the child process. */
571 void DRD_(drd_thread_atfork_child)(const ThreadId tid)
573 unsigned i;
575 for (i = 1; i < DRD_N_THREADS; i++)
577 if (DRD_(g_threadinfo)[i].vg_threadid == tid)
578 continue;
579 if (DRD_(IsValidDrdThreadId(i)))
580 DRD_(thread_delete)(i, True);
581 tl_assert(!DRD_(IsValidDrdThreadId(i)));
584 DRD_(bm_cleanup)(DRD_(g_conflict_set));
585 DRD_(bm_init)(DRD_(g_conflict_set));
588 /** Called just before pthread_cancel(). */
589 void DRD_(thread_pre_cancel)(const DrdThreadId tid)
591 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
592 && tid != DRD_INVALID_THREADID);
593 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid != INVALID_POSIX_THREADID);
595 if (DRD_(thread_get_trace_fork_join)())
596 DRD_(trace_msg)("[%u] drd_thread_pre_cancel %u",
597 DRD_(g_drd_running_tid), tid);
601 * Store the POSIX thread ID for the specified thread.
603 * @note This function can be called multiple times for the same thread -- see
604 * also the comment block preceding the pthread_create() wrapper in
605 * drd_pthread_intercepts.c.
607 void DRD_(thread_set_pthreadid)(const DrdThreadId tid, const PThreadId ptid)
609 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
610 && tid != DRD_INVALID_THREADID);
611 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid == INVALID_POSIX_THREADID
612 || DRD_(g_threadinfo)[tid].pt_threadid == ptid);
613 tl_assert(ptid != INVALID_POSIX_THREADID);
614 if (DRD_(g_threadinfo)[tid].posix_thread_exists) {
615 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid == ptid);
616 return;
618 DRD_(g_threadinfo)[tid].posix_thread_exists = True;
619 DRD_(g_threadinfo)[tid].pt_threadid = ptid;
621 if (DRD_(g_threadinfo)[tid].creator_thread != DRD_INVALID_THREADID) {
622 if (DRD_(ignore_thread_creation)) {
623 DRD_(thread_leave_synchr)(tid);
624 tl_assert(DRD_(thread_get_synchr_nesting_count)(tid) == 0);
629 /** Returns true for joinable threads and false for detached threads. */
630 Bool DRD_(thread_get_joinable)(const DrdThreadId tid)
632 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
633 && tid != DRD_INVALID_THREADID);
634 return ! DRD_(g_threadinfo)[tid].detached_posix_thread;
637 /** Store the thread mode: joinable or detached. */
638 #if defined(VGP_mips32_linux) || defined(VGP_mips64_linux)
639 /* There is a cse related issue in gcc for MIPS. Optimization level
640 has to be lowered, so cse related optimizations are not
641 included.*/
642 __attribute__((optimize("O1")))
643 #endif
644 void DRD_(thread_set_joinable)(const DrdThreadId tid, const Bool joinable)
646 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
647 && tid != DRD_INVALID_THREADID);
648 tl_assert((!! joinable) == joinable);
649 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid != INVALID_POSIX_THREADID);
651 DRD_(g_threadinfo)[tid].detached_posix_thread = ! joinable;
654 /** Tells DRD that the calling thread is about to enter pthread_create(). */
655 void DRD_(thread_entering_pthread_create)(const DrdThreadId tid)
657 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
658 && tid != DRD_INVALID_THREADID);
659 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid != INVALID_POSIX_THREADID);
660 tl_assert(DRD_(g_threadinfo)[tid].pthread_create_nesting_level >= 0);
662 DRD_(g_threadinfo)[tid].pthread_create_nesting_level++;
664 if (DRD_(ignore_thread_creation)) {
665 tl_assert(DRD_(thread_get_synchr_nesting_count)(tid) == 0);
666 DRD_(thread_enter_synchr)(tid);
670 /** Tells DRD that the calling thread has left pthread_create(). */
671 void DRD_(thread_left_pthread_create)(const DrdThreadId tid)
673 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
674 && tid != DRD_INVALID_THREADID);
675 tl_assert(DRD_(g_threadinfo)[tid].pt_threadid != INVALID_POSIX_THREADID);
676 tl_assert(DRD_(g_threadinfo)[tid].pthread_create_nesting_level > 0);
678 DRD_(g_threadinfo)[tid].pthread_create_nesting_level--;
680 if (DRD_(ignore_thread_creation)) {
681 DRD_(thread_leave_synchr)(tid);
682 tl_assert(DRD_(thread_get_synchr_nesting_count)(tid) == 0);
686 #if defined(VGO_solaris)
687 /** Handles the bind_guard() intercept. */
688 void DRD_(thread_entering_rtld_bind_guard)(const DrdThreadId tid, int flags)
690 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
691 && tid != DRD_INVALID_THREADID);
693 Int bindflag = (flags & VKI_THR_FLG_RTLD);
694 if ((bindflag & DRD_(g_threadinfo)[tid].bind_guard_flag) == 0) {
695 DRD_(g_threadinfo)[tid].bind_guard_flag |= bindflag;
696 DRD_(thread_enter_synchr)(tid);
701 * Handles the bind_clear() intercept.
702 * Call to bind_clear(0) is typically used to determine value of bind_flags.
704 void DRD_(thread_leaving_rtld_bind_clear)(const DrdThreadId tid, int flags)
706 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
707 && tid != DRD_INVALID_THREADID);
709 Int bindflag = (flags & VKI_THR_FLG_RTLD);
710 if ((DRD_(g_threadinfo)[tid].bind_guard_flag & bindflag) != 0) {
711 DRD_(g_threadinfo)[tid].bind_guard_flag &= ~bindflag;
712 DRD_(thread_leave_synchr)(tid);
715 #endif /* VGO_solaris */
717 /** Obtain the thread number and the user-assigned thread name. */
718 const HChar* DRD_(thread_get_name)(const DrdThreadId tid)
720 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
721 && tid != DRD_INVALID_THREADID);
723 return DRD_(g_threadinfo)[tid].name;
726 /** Set the name of the specified thread. */
727 void DRD_(thread_set_name)(const DrdThreadId tid, const HChar* const name)
729 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
730 && tid != DRD_INVALID_THREADID);
732 if (name == NULL || name[0] == 0)
733 VG_(snprintf)(DRD_(g_threadinfo)[tid].name,
734 sizeof(DRD_(g_threadinfo)[tid].name),
735 "Thread %u",
736 tid);
737 else
738 VG_(snprintf)(DRD_(g_threadinfo)[tid].name,
739 sizeof(DRD_(g_threadinfo)[tid].name),
740 "Thread %u (%s)",
741 tid, name);
742 DRD_(g_threadinfo)[tid].name[sizeof(DRD_(g_threadinfo)[tid].name) - 1] = 0;
746 * Update s_vg_running_tid, DRD_(g_drd_running_tid) and recalculate the
747 * conflict set.
749 void DRD_(thread_set_vg_running_tid)(const ThreadId vg_tid)
751 tl_assert(vg_tid != VG_INVALID_THREADID);
753 if (vg_tid != s_vg_running_tid)
755 DRD_(thread_set_running_tid)(vg_tid,
756 DRD_(VgThreadIdToDrdThreadId)(vg_tid));
759 tl_assert(s_vg_running_tid != VG_INVALID_THREADID);
760 tl_assert(DRD_(g_drd_running_tid) != DRD_INVALID_THREADID);
764 * Update s_vg_running_tid, DRD_(g_drd_running_tid) and recalculate the
765 * conflict set.
767 void DRD_(thread_set_running_tid)(const ThreadId vg_tid,
768 const DrdThreadId drd_tid)
770 tl_assert(vg_tid != VG_INVALID_THREADID);
771 tl_assert(drd_tid != DRD_INVALID_THREADID);
773 if (vg_tid != s_vg_running_tid)
775 if (s_trace_context_switches
776 && DRD_(g_drd_running_tid) != DRD_INVALID_THREADID)
778 VG_(message)(Vg_DebugMsg,
779 "Context switch from thread %u to thread %u;"
780 " segments: %llu\n",
781 DRD_(g_drd_running_tid), drd_tid,
782 DRD_(sg_get_segments_alive_count)());
784 s_vg_running_tid = vg_tid;
785 DRD_(g_drd_running_tid) = drd_tid;
786 thread_compute_conflict_set(&DRD_(g_conflict_set), drd_tid);
787 s_context_switch_count++;
790 tl_assert(s_vg_running_tid != VG_INVALID_THREADID);
791 tl_assert(DRD_(g_drd_running_tid) != DRD_INVALID_THREADID);
795 * Increase the synchronization nesting counter. Must be called before the
796 * client calls a synchronization function.
798 int DRD_(thread_enter_synchr)(const DrdThreadId tid)
800 tl_assert(DRD_(IsValidDrdThreadId)(tid));
801 return DRD_(g_threadinfo)[tid].synchr_nesting++;
805 * Decrease the synchronization nesting counter. Must be called after the
806 * client left a synchronization function.
808 int DRD_(thread_leave_synchr)(const DrdThreadId tid)
810 tl_assert(DRD_(IsValidDrdThreadId)(tid));
811 tl_assert(DRD_(g_threadinfo)[tid].synchr_nesting >= 1);
812 return --DRD_(g_threadinfo)[tid].synchr_nesting;
815 /** Returns the synchronization nesting counter. */
816 int DRD_(thread_get_synchr_nesting_count)(const DrdThreadId tid)
818 tl_assert(DRD_(IsValidDrdThreadId)(tid));
819 return DRD_(g_threadinfo)[tid].synchr_nesting;
822 /** Append a new segment at the end of the segment list. */
823 static
824 void thread_append_segment(const DrdThreadId tid, Segment* const sg)
826 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
827 && tid != DRD_INVALID_THREADID);
829 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
830 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[tid]));
831 #endif
833 // add at tail
834 sg->thr_prev = DRD_(g_threadinfo)[tid].sg_last;
835 sg->thr_next = NULL;
836 if (DRD_(g_threadinfo)[tid].sg_last)
837 DRD_(g_threadinfo)[tid].sg_last->thr_next = sg;
838 DRD_(g_threadinfo)[tid].sg_last = sg;
839 if (DRD_(g_threadinfo)[tid].sg_first == NULL)
840 DRD_(g_threadinfo)[tid].sg_first = sg;
842 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
843 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[tid]));
844 #endif
848 * Remove a segment from the segment list of thread threadid, and free the
849 * associated memory.
851 static
852 void thread_discard_segment(const DrdThreadId tid, Segment* const sg)
854 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
855 && tid != DRD_INVALID_THREADID);
857 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
858 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[tid]));
859 #endif
861 if (sg->thr_prev)
862 sg->thr_prev->thr_next = sg->thr_next;
863 if (sg->thr_next)
864 sg->thr_next->thr_prev = sg->thr_prev;
865 if (sg == DRD_(g_threadinfo)[tid].sg_first)
866 DRD_(g_threadinfo)[tid].sg_first = sg->thr_next;
867 if (sg == DRD_(g_threadinfo)[tid].sg_last)
868 DRD_(g_threadinfo)[tid].sg_last = sg->thr_prev;
869 DRD_(sg_put)(sg);
871 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
872 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[tid]));
873 #endif
877 * Returns a pointer to the vector clock of the most recent segment associated
878 * with thread 'tid'.
880 VectorClock* DRD_(thread_get_vc)(const DrdThreadId tid)
882 Segment* latest_sg;
884 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
885 && tid != DRD_INVALID_THREADID);
886 latest_sg = DRD_(g_threadinfo)[tid].sg_last;
887 tl_assert(latest_sg);
888 return &latest_sg->vc;
892 * Return the latest segment of thread 'tid' and increment its reference count.
894 void DRD_(thread_get_latest_segment)(Segment** sg, const DrdThreadId tid)
896 Segment* latest_sg;
898 tl_assert(sg);
899 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
900 && tid != DRD_INVALID_THREADID);
901 latest_sg = DRD_(g_threadinfo)[tid].sg_last;
902 tl_assert(latest_sg);
904 DRD_(sg_put)(*sg);
905 *sg = DRD_(sg_get)(latest_sg);
909 * Compute the minimum of all latest vector clocks of all threads
910 * (Michiel Ronsse calls this "clock snooping" in his papers about DIOTA).
912 * @param vc pointer to a vectorclock, holds result upon return.
914 static void DRD_(thread_compute_minimum_vc)(VectorClock* vc)
916 unsigned i;
917 Bool first;
918 Segment* latest_sg;
920 first = True;
921 for (i = 0; i < DRD_N_THREADS; i++)
923 latest_sg = DRD_(g_threadinfo)[i].sg_last;
924 if (latest_sg) {
925 if (first)
926 DRD_(vc_assign)(vc, &latest_sg->vc);
927 else
928 DRD_(vc_min)(vc, &latest_sg->vc);
929 first = False;
935 * Compute the maximum of all latest vector clocks of all threads.
937 * @param vc pointer to a vectorclock, holds result upon return.
939 static void DRD_(thread_compute_maximum_vc)(VectorClock* vc)
941 unsigned i;
942 Bool first;
943 Segment* latest_sg;
945 first = True;
946 for (i = 0; i < DRD_N_THREADS; i++)
948 latest_sg = DRD_(g_threadinfo)[i].sg_last;
949 if (latest_sg) {
950 if (first)
951 DRD_(vc_assign)(vc, &latest_sg->vc);
952 else
953 DRD_(vc_combine)(vc, &latest_sg->vc);
954 first = False;
960 * Discard all segments that have a defined order against the latest vector
961 * clock of all threads -- these segments can no longer be involved in a
962 * data race.
964 static void thread_discard_ordered_segments(void)
966 unsigned i;
967 VectorClock thread_vc_min;
969 s_discard_ordered_segments_count++;
971 DRD_(vc_init)(&thread_vc_min, 0, 0);
972 DRD_(thread_compute_minimum_vc)(&thread_vc_min);
973 if (DRD_(sg_get_trace)())
975 HChar *vc_min, *vc_max;
976 VectorClock thread_vc_max;
978 DRD_(vc_init)(&thread_vc_max, 0, 0);
979 DRD_(thread_compute_maximum_vc)(&thread_vc_max);
980 vc_min = DRD_(vc_aprint)(&thread_vc_min);
981 vc_max = DRD_(vc_aprint)(&thread_vc_max);
982 VG_(message)(Vg_DebugMsg,
983 "Discarding ordered segments -- min vc is %s, max vc is %s\n",
984 vc_min, vc_max);
985 VG_(free)(vc_min);
986 VG_(free)(vc_max);
987 DRD_(vc_cleanup)(&thread_vc_max);
990 for (i = 0; i < DRD_N_THREADS; i++) {
991 Segment* sg;
992 Segment* sg_next;
994 for (sg = DRD_(g_threadinfo)[i].sg_first;
995 sg && (sg_next = sg->thr_next)
996 && DRD_(vc_lte)(&sg->vc, &thread_vc_min);
997 sg = sg_next)
999 thread_discard_segment(i, sg);
1002 DRD_(vc_cleanup)(&thread_vc_min);
1006 * An implementation of the property 'equiv(sg1, sg2)' as defined in the paper
1007 * by Mark Christiaens e.a. The property equiv(sg1, sg2) holds if and only if
1008 * all segments in the set CS are ordered consistently against both sg1 and
1009 * sg2. The set CS is defined as the set of segments that can immediately
1010 * precede future segments via inter-thread synchronization operations. In
1011 * DRD the set CS consists of the latest segment of each thread combined with
1012 * all segments for which the reference count is strictly greater than one.
1013 * The code below is an optimized version of the following:
1015 * for (i = 0; i < DRD_N_THREADS; i++)
1017 * Segment* sg;
1019 * for (sg = DRD_(g_threadinfo)[i].first; sg; sg = sg->next)
1021 * if (sg == DRD_(g_threadinfo)[i].last || DRD_(sg_get_refcnt)(sg) > 1)
1023 * if ( DRD_(vc_lte)(&sg1->vc, &sg->vc)
1024 * != DRD_(vc_lte)(&sg2->vc, &sg->vc)
1025 * || DRD_(vc_lte)(&sg->vc, &sg1->vc)
1026 * != DRD_(vc_lte)(&sg->vc, &sg2->vc))
1028 * return False;
1034 static Bool thread_consistent_segment_ordering(const DrdThreadId tid,
1035 Segment* const sg1,
1036 Segment* const sg2)
1038 unsigned i;
1040 tl_assert(sg1->thr_next);
1041 tl_assert(sg2->thr_next);
1042 tl_assert(sg1->thr_next == sg2);
1043 tl_assert(DRD_(vc_lte)(&sg1->vc, &sg2->vc));
1045 for (i = 0; i < DRD_N_THREADS; i++)
1047 Segment* sg;
1049 for (sg = DRD_(g_threadinfo)[i].sg_first; sg; sg = sg->thr_next) {
1050 if (!sg->thr_next || DRD_(sg_get_refcnt)(sg) > 1) {
1051 if (DRD_(vc_lte)(&sg2->vc, &sg->vc))
1052 break;
1053 if (DRD_(vc_lte)(&sg1->vc, &sg->vc))
1054 return False;
1057 for (sg = DRD_(g_threadinfo)[i].sg_last; sg; sg = sg->thr_prev) {
1058 if (!sg->thr_next || DRD_(sg_get_refcnt)(sg) > 1) {
1059 if (DRD_(vc_lte)(&sg->vc, &sg1->vc))
1060 break;
1061 if (DRD_(vc_lte)(&sg->vc, &sg2->vc))
1062 return False;
1066 return True;
1070 * Merge all segments that may be merged without triggering false positives
1071 * or discarding real data races. For the theoretical background of segment
1072 * merging, see also the following paper: Mark Christiaens, Michiel Ronsse
1073 * and Koen De Bosschere. Bounding the number of segment histories during
1074 * data race detection. Parallel Computing archive, Volume 28, Issue 9,
1075 * pp 1221-1238, September 2002. This paper contains a proof that merging
1076 * consecutive segments for which the property equiv(s1,s2) holds can be
1077 * merged without reducing the accuracy of datarace detection. Furthermore
1078 * it is also proven that the total number of all segments will never grow
1079 * unbounded if all segments s1, s2 for which equiv(s1, s2) holds are merged
1080 * every time a new segment is created. The property equiv(s1, s2) is defined
1081 * as follows: equiv(s1, s2) <=> for all segments in the set CS, the vector
1082 * clocks of segments s and s1 are ordered in the same way as those of segments
1083 * s and s2. The set CS is defined as the set of existing segments s that have
1084 * the potential to conflict with not yet created segments, either because the
1085 * segment s is the latest segment of a thread or because it can become the
1086 * immediate predecessor of a new segment due to a synchronization operation.
1088 static void thread_merge_segments(void)
1090 unsigned i;
1092 s_new_segments_since_last_merge = 0;
1094 for (i = 0; i < DRD_N_THREADS; i++)
1096 Segment* sg;
1098 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
1099 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[i]));
1100 #endif
1102 for (sg = DRD_(g_threadinfo)[i].sg_first; sg; sg = sg->thr_next) {
1103 if (DRD_(sg_get_refcnt)(sg) == 1 && sg->thr_next) {
1104 Segment* const sg_next = sg->thr_next;
1105 if (DRD_(sg_get_refcnt)(sg_next) == 1
1106 && sg_next->thr_next
1107 && thread_consistent_segment_ordering(i, sg, sg_next))
1109 /* Merge sg and sg_next into sg. */
1110 DRD_(sg_merge)(sg, sg_next);
1111 thread_discard_segment(i, sg_next);
1116 #ifdef ENABLE_DRD_CONSISTENCY_CHECKS
1117 tl_assert(DRD_(sane_ThreadInfo)(&DRD_(g_threadinfo)[i]));
1118 #endif
1123 * Create a new segment for the specified thread, and discard any segments
1124 * that cannot cause races anymore.
1126 void DRD_(thread_new_segment)(const DrdThreadId tid)
1128 Segment* last_sg;
1129 Segment* new_sg;
1131 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1132 && tid != DRD_INVALID_THREADID);
1133 tl_assert(thread_conflict_set_up_to_date(DRD_(g_drd_running_tid)));
1135 last_sg = DRD_(g_threadinfo)[tid].sg_last;
1136 new_sg = DRD_(sg_new)(tid, tid);
1137 thread_append_segment(tid, new_sg);
1138 if (tid == DRD_(g_drd_running_tid) && last_sg)
1140 DRD_(thread_update_conflict_set)(tid, &last_sg->vc);
1141 s_update_conflict_set_new_sg_count++;
1144 tl_assert(thread_conflict_set_up_to_date(DRD_(g_drd_running_tid)));
1146 if (s_segment_merging
1147 && ++s_new_segments_since_last_merge >= s_segment_merge_interval)
1149 thread_discard_ordered_segments();
1150 thread_merge_segments();
1154 /** Call this function after thread 'joiner' joined thread 'joinee'. */
1155 void DRD_(thread_combine_vc_join)(DrdThreadId joiner, DrdThreadId joinee)
1157 tl_assert(joiner != joinee);
1158 tl_assert(0 <= (int)joiner && joiner < DRD_N_THREADS
1159 && joiner != DRD_INVALID_THREADID);
1160 tl_assert(0 <= (int)joinee && joinee < DRD_N_THREADS
1161 && joinee != DRD_INVALID_THREADID);
1162 tl_assert(DRD_(g_threadinfo)[joiner].sg_first);
1163 tl_assert(DRD_(g_threadinfo)[joiner].sg_last);
1164 tl_assert(DRD_(g_threadinfo)[joinee].sg_first);
1165 tl_assert(DRD_(g_threadinfo)[joinee].sg_last);
1167 if (DRD_(sg_get_trace)())
1169 HChar *str1, *str2;
1170 str1 = DRD_(vc_aprint)(DRD_(thread_get_vc)(joiner));
1171 str2 = DRD_(vc_aprint)(DRD_(thread_get_vc)(joinee));
1172 VG_(message)(Vg_DebugMsg, "Before join: joiner %s, joinee %s\n",
1173 str1, str2);
1174 VG_(free)(str1);
1175 VG_(free)(str2);
1177 if (joiner == DRD_(g_drd_running_tid)) {
1178 VectorClock old_vc;
1180 DRD_(vc_copy)(&old_vc, DRD_(thread_get_vc)(joiner));
1181 DRD_(vc_combine)(DRD_(thread_get_vc)(joiner),
1182 DRD_(thread_get_vc)(joinee));
1183 DRD_(thread_update_conflict_set)(joiner, &old_vc);
1184 s_update_conflict_set_join_count++;
1185 DRD_(vc_cleanup)(&old_vc);
1186 } else {
1187 DRD_(vc_combine)(DRD_(thread_get_vc)(joiner),
1188 DRD_(thread_get_vc)(joinee));
1191 thread_discard_ordered_segments();
1193 if (DRD_(sg_get_trace)()) {
1194 HChar* str;
1196 str = DRD_(vc_aprint)(DRD_(thread_get_vc)(joiner));
1197 VG_(message)(Vg_DebugMsg, "After join: %s\n", str);
1198 VG_(free)(str);
1203 * Update the vector clock of the last segment of thread tid with the
1204 * the vector clock of segment sg.
1206 static void thread_combine_vc_sync(DrdThreadId tid, const Segment* sg)
1208 const VectorClock* const vc = &sg->vc;
1210 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1211 && tid != DRD_INVALID_THREADID);
1212 tl_assert(DRD_(g_threadinfo)[tid].sg_first);
1213 tl_assert(DRD_(g_threadinfo)[tid].sg_last);
1214 tl_assert(sg);
1215 tl_assert(vc);
1217 if (tid != sg->tid) {
1218 VectorClock old_vc;
1220 DRD_(vc_copy)(&old_vc, DRD_(thread_get_vc)(tid));
1221 DRD_(vc_combine)(DRD_(thread_get_vc)(tid), vc);
1222 if (DRD_(sg_get_trace)()) {
1223 HChar *str1, *str2;
1224 str1 = DRD_(vc_aprint)(&old_vc);
1225 str2 = DRD_(vc_aprint)(DRD_(thread_get_vc)(tid));
1226 VG_(message)(Vg_DebugMsg, "thread %u: vc %s -> %s\n", tid, str1, str2);
1227 VG_(free)(str1);
1228 VG_(free)(str2);
1231 thread_discard_ordered_segments();
1233 DRD_(thread_update_conflict_set)(tid, &old_vc);
1234 s_update_conflict_set_sync_count++;
1236 DRD_(vc_cleanup)(&old_vc);
1237 } else {
1238 tl_assert(DRD_(vc_lte)(vc, DRD_(thread_get_vc)(tid)));
1243 * Create a new segment for thread tid and update the vector clock of the last
1244 * segment of this thread with the vector clock of segment sg. Call this
1245 * function after thread tid had to wait because of thread synchronization
1246 * until the memory accesses in the segment sg finished.
1248 void DRD_(thread_new_segment_and_combine_vc)(DrdThreadId tid, const Segment* sg)
1250 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1251 && tid != DRD_INVALID_THREADID);
1252 tl_assert(thread_conflict_set_up_to_date(DRD_(g_drd_running_tid)));
1253 tl_assert(sg);
1255 thread_append_segment(tid, DRD_(sg_new)(tid, tid));
1257 thread_combine_vc_sync(tid, sg);
1259 if (s_segment_merging
1260 && ++s_new_segments_since_last_merge >= s_segment_merge_interval)
1262 thread_discard_ordered_segments();
1263 thread_merge_segments();
1268 * Call this function whenever a thread is no longer using the memory
1269 * [ a1, a2 [, e.g. because of a call to free() or a stack pointer
1270 * increase.
1272 void DRD_(thread_stop_using_mem)(const Addr a1, const Addr a2)
1274 Segment* p;
1276 for (p = DRD_(g_sg_list); p; p = p->g_next)
1277 DRD_(bm_clear)(DRD_(sg_bm)(p), a1, a2);
1279 DRD_(bm_clear)(DRD_(g_conflict_set), a1, a2);
1282 /** Specify whether memory loads should be recorded. */
1283 void DRD_(thread_set_record_loads)(const DrdThreadId tid, const Bool enabled)
1285 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1286 && tid != DRD_INVALID_THREADID);
1287 tl_assert(enabled == !! enabled);
1289 DRD_(g_threadinfo)[tid].is_recording_loads = enabled;
1292 /** Specify whether memory stores should be recorded. */
1293 void DRD_(thread_set_record_stores)(const DrdThreadId tid, const Bool enabled)
1295 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1296 && tid != DRD_INVALID_THREADID);
1297 tl_assert(enabled == !! enabled);
1299 DRD_(g_threadinfo)[tid].is_recording_stores = enabled;
1303 * Print the segment information for all threads.
1305 * This function is only used for debugging purposes.
1307 void DRD_(thread_print_all)(void)
1309 UInt i;
1310 Segment* p;
1312 for (i = 0; i < DRD_N_THREADS; i++)
1314 p = DRD_(g_threadinfo)[i].sg_first;
1315 if (p) {
1316 VG_(printf)("**************\n"
1317 "* thread %3u (%d/%u/%u/%u/0x%lx/%d) *\n"
1318 "**************\n",
1320 DRD_(g_threadinfo)[i].valid,
1321 DRD_(g_threadinfo)[i].vg_thread_exists,
1322 DRD_(g_threadinfo)[i].vg_threadid,
1323 DRD_(g_threadinfo)[i].posix_thread_exists,
1324 DRD_(g_threadinfo)[i].pt_threadid,
1325 DRD_(g_threadinfo)[i].detached_posix_thread);
1326 for ( ; p; p = p->thr_next)
1327 DRD_(sg_print)(p);
1332 /** Show a call stack involved in a data race. */
1333 static void show_call_stack(const DrdThreadId tid, ExeContext* const callstack)
1335 const ThreadId vg_tid = DRD_(DrdThreadIdToVgThreadId)(tid);
1337 if (vg_tid != VG_INVALID_THREADID) {
1338 if (callstack)
1339 VG_(pp_ExeContext)(callstack);
1340 else
1341 VG_(get_and_pp_StackTrace)(vg_tid, VG_(clo_backtrace_size));
1342 } else {
1343 if (!VG_(clo_xml))
1344 VG_(message)(Vg_UserMsg,
1345 " (thread finished, call stack no longer available)\n");
1349 /** Print information about the segments involved in a data race. */
1350 static void
1351 thread_report_conflicting_segments_segment(const DrdThreadId tid,
1352 const Addr addr,
1353 const SizeT size,
1354 const BmAccessTypeT access_type,
1355 const Segment* const p)
1357 unsigned i;
1359 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1360 && tid != DRD_INVALID_THREADID);
1361 tl_assert(p);
1363 for (i = 0; i < DRD_N_THREADS; i++) {
1364 if (i != tid) {
1365 Segment* q;
1367 for (q = DRD_(g_threadinfo)[i].sg_last; q; q = q->thr_prev) {
1369 * Since q iterates over the segments of thread i in order of
1370 * decreasing vector clocks, if q->vc <= p->vc, then
1371 * q->next->vc <= p->vc will also hold. Hence, break out of the
1372 * loop once this condition is met.
1374 if (DRD_(vc_lte)(&q->vc, &p->vc))
1375 break;
1376 if (!DRD_(vc_lte)(&p->vc, &q->vc)) {
1377 if (DRD_(bm_has_conflict_with)(DRD_(sg_bm)(q), addr, addr + size,
1378 access_type)) {
1379 Segment* q_next;
1381 tl_assert(q->stacktrace);
1382 if (VG_(clo_xml))
1383 VG_(printf_xml)(" <other_segment_start>\n");
1384 else
1385 VG_(message)(Vg_UserMsg,
1386 "Other segment start (thread %u)\n", i);
1387 show_call_stack(i, q->stacktrace);
1388 if (VG_(clo_xml))
1389 VG_(printf_xml)(" </other_segment_start>\n"
1390 " <other_segment_end>\n");
1391 else
1392 VG_(message)(Vg_UserMsg,
1393 "Other segment end (thread %u)\n", i);
1394 q_next = q->thr_next;
1395 show_call_stack(i, q_next ? q_next->stacktrace : 0);
1396 if (VG_(clo_xml))
1397 VG_(printf_xml)(" </other_segment_end>\n");
1405 /** Print information about all segments involved in a data race. */
1406 void DRD_(thread_report_conflicting_segments)(const DrdThreadId tid,
1407 const Addr addr,
1408 const SizeT size,
1409 const BmAccessTypeT access_type)
1411 Segment* p;
1413 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1414 && tid != DRD_INVALID_THREADID);
1416 for (p = DRD_(g_threadinfo)[tid].sg_first; p; p = p->thr_next) {
1417 if (DRD_(bm_has)(DRD_(sg_bm)(p), addr, addr + size, access_type))
1418 thread_report_conflicting_segments_segment(tid, addr, size,
1419 access_type, p);
1424 * Verify whether the conflict set for thread tid is up to date. Only perform
1425 * the check if the environment variable DRD_VERIFY_CONFLICT_SET has been set.
1427 static Bool thread_conflict_set_up_to_date(const DrdThreadId tid)
1429 Bool result;
1430 struct bitmap* computed_conflict_set = 0;
1432 if (!DRD_(verify_conflict_set))
1433 return True;
1435 thread_compute_conflict_set(&computed_conflict_set, tid);
1436 result = DRD_(bm_equal)(DRD_(g_conflict_set), computed_conflict_set);
1437 if (! result)
1439 VG_(printf)("actual conflict set:\n");
1440 DRD_(bm_print)(DRD_(g_conflict_set));
1441 VG_(printf)("\n");
1442 VG_(printf)("computed conflict set:\n");
1443 DRD_(bm_print)(computed_conflict_set);
1444 VG_(printf)("\n");
1446 DRD_(bm_delete)(computed_conflict_set);
1447 return result;
1451 * Compute the conflict set: a bitmap that represents the union of all memory
1452 * accesses of all segments that are unordered to the current segment of the
1453 * thread tid.
1455 static void thread_compute_conflict_set(struct bitmap** conflict_set,
1456 const DrdThreadId tid)
1458 Segment* p;
1460 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1461 && tid != DRD_INVALID_THREADID);
1462 tl_assert(tid == DRD_(g_drd_running_tid));
1464 s_compute_conflict_set_count++;
1465 s_conflict_set_bitmap_creation_count
1466 -= DRD_(bm_get_bitmap_creation_count)();
1467 s_conflict_set_bitmap2_creation_count
1468 -= DRD_(bm_get_bitmap2_creation_count)();
1470 if (*conflict_set) {
1471 DRD_(bm_cleanup)(*conflict_set);
1472 DRD_(bm_init)(*conflict_set);
1473 } else {
1474 *conflict_set = DRD_(bm_new)();
1477 if (s_trace_conflict_set) {
1478 HChar* str;
1480 str = DRD_(vc_aprint)(DRD_(thread_get_vc)(tid));
1481 VG_(message)(Vg_DebugMsg,
1482 "computing conflict set for thread %u with vc %s\n",
1483 tid, str);
1484 VG_(free)(str);
1487 p = DRD_(g_threadinfo)[tid].sg_last;
1489 unsigned j;
1491 if (s_trace_conflict_set) {
1492 HChar* vc;
1494 vc = DRD_(vc_aprint)(&p->vc);
1495 VG_(message)(Vg_DebugMsg, "conflict set: thread [%u] at vc %s\n",
1496 tid, vc);
1497 VG_(free)(vc);
1500 for (j = 0; j < DRD_N_THREADS; j++) {
1501 if (j != tid && DRD_(IsValidDrdThreadId)(j)) {
1502 Segment* q;
1504 for (q = DRD_(g_threadinfo)[j].sg_last; q; q = q->thr_prev) {
1505 if (!DRD_(vc_lte)(&q->vc, &p->vc)
1506 && !DRD_(vc_lte)(&p->vc, &q->vc)) {
1507 if (s_trace_conflict_set) {
1508 HChar* str;
1510 str = DRD_(vc_aprint)(&q->vc);
1511 VG_(message)(Vg_DebugMsg,
1512 "conflict set: [%u] merging segment %s\n",
1513 j, str);
1514 VG_(free)(str);
1516 DRD_(bm_merge2)(*conflict_set, DRD_(sg_bm)(q));
1517 } else {
1518 if (s_trace_conflict_set) {
1519 HChar* str;
1521 str = DRD_(vc_aprint)(&q->vc);
1522 VG_(message)(Vg_DebugMsg,
1523 "conflict set: [%u] ignoring segment %s\n",
1524 j, str);
1525 VG_(free)(str);
1533 s_conflict_set_bitmap_creation_count
1534 += DRD_(bm_get_bitmap_creation_count)();
1535 s_conflict_set_bitmap2_creation_count
1536 += DRD_(bm_get_bitmap2_creation_count)();
1538 if (s_trace_conflict_set_bm) {
1539 VG_(message)(Vg_DebugMsg, "[%u] new conflict set:\n", tid);
1540 DRD_(bm_print)(*conflict_set);
1541 VG_(message)(Vg_DebugMsg, "[%u] end of new conflict set.\n", tid);
1546 * Update the conflict set after the vector clock of thread tid has been
1547 * updated from old_vc to its current value, either because a new segment has
1548 * been created or because of a synchronization operation.
1550 void DRD_(thread_update_conflict_set)(const DrdThreadId tid,
1551 const VectorClock* const old_vc)
1553 const VectorClock* new_vc;
1554 Segment* p;
1555 unsigned j;
1557 tl_assert(0 <= (int)tid && tid < DRD_N_THREADS
1558 && tid != DRD_INVALID_THREADID);
1559 tl_assert(old_vc);
1560 tl_assert(tid == DRD_(g_drd_running_tid));
1561 tl_assert(DRD_(g_conflict_set));
1563 if (s_trace_conflict_set) {
1564 HChar* str;
1566 str = DRD_(vc_aprint)(DRD_(thread_get_vc)(tid));
1567 VG_(message)(Vg_DebugMsg,
1568 "updating conflict set for thread %u with vc %s\n",
1569 tid, str);
1570 VG_(free)(str);
1573 new_vc = DRD_(thread_get_vc)(tid);
1574 tl_assert(DRD_(vc_lte)(old_vc, new_vc));
1576 DRD_(bm_unmark)(DRD_(g_conflict_set));
1578 for (j = 0; j < DRD_N_THREADS; j++)
1580 Segment* q;
1582 if (j == tid || ! DRD_(IsValidDrdThreadId)(j))
1583 continue;
1585 for (q = DRD_(g_threadinfo)[j].sg_last;
1586 q && !DRD_(vc_lte)(&q->vc, new_vc);
1587 q = q->thr_prev) {
1588 const Bool included_in_old_conflict_set
1589 = !DRD_(vc_lte)(old_vc, &q->vc);
1590 const Bool included_in_new_conflict_set
1591 = !DRD_(vc_lte)(new_vc, &q->vc);
1593 if (UNLIKELY(s_trace_conflict_set)) {
1594 HChar* str;
1596 str = DRD_(vc_aprint)(&q->vc);
1597 VG_(message)(Vg_DebugMsg,
1598 "conflict set: [%u] %s segment %s\n", j,
1599 included_in_old_conflict_set
1600 != included_in_new_conflict_set
1601 ? "merging" : "ignoring", str);
1602 VG_(free)(str);
1604 if (included_in_old_conflict_set != included_in_new_conflict_set)
1605 DRD_(bm_mark)(DRD_(g_conflict_set), DRD_(sg_bm)(q));
1608 for ( ; q && !DRD_(vc_lte)(&q->vc, old_vc); q = q->thr_prev) {
1609 const Bool included_in_old_conflict_set
1610 = !DRD_(vc_lte)(old_vc, &q->vc);
1611 const Bool included_in_new_conflict_set
1612 = !DRD_(vc_lte)(&q->vc, new_vc)
1613 && !DRD_(vc_lte)(new_vc, &q->vc);
1615 if (UNLIKELY(s_trace_conflict_set)) {
1616 HChar* str;
1618 str = DRD_(vc_aprint)(&q->vc);
1619 VG_(message)(Vg_DebugMsg,
1620 "conflict set: [%u] %s segment %s\n", j,
1621 included_in_old_conflict_set
1622 != included_in_new_conflict_set
1623 ? "merging" : "ignoring", str);
1624 VG_(free)(str);
1626 if (included_in_old_conflict_set != included_in_new_conflict_set)
1627 DRD_(bm_mark)(DRD_(g_conflict_set), DRD_(sg_bm)(q));
1631 DRD_(bm_clear_marked)(DRD_(g_conflict_set));
1633 p = DRD_(g_threadinfo)[tid].sg_last;
1634 for (j = 0; j < DRD_N_THREADS; j++) {
1635 if (j != tid && DRD_(IsValidDrdThreadId)(j)) {
1636 Segment* q;
1637 for (q = DRD_(g_threadinfo)[j].sg_last;
1638 q && !DRD_(vc_lte)(&q->vc, &p->vc);
1639 q = q->thr_prev) {
1640 if (!DRD_(vc_lte)(&p->vc, &q->vc))
1641 DRD_(bm_merge2_marked)(DRD_(g_conflict_set), DRD_(sg_bm)(q));
1646 DRD_(bm_remove_cleared_marked)(DRD_(g_conflict_set));
1648 s_update_conflict_set_count++;
1650 if (s_trace_conflict_set_bm)
1652 VG_(message)(Vg_DebugMsg, "[%u] updated conflict set:\n", tid);
1653 DRD_(bm_print)(DRD_(g_conflict_set));
1654 VG_(message)(Vg_DebugMsg, "[%u] end of updated conflict set.\n", tid);
1657 tl_assert(thread_conflict_set_up_to_date(DRD_(g_drd_running_tid)));
1660 /** Report the number of context switches performed. */
1661 ULong DRD_(thread_get_context_switch_count)(void)
1663 return s_context_switch_count;
1666 /** Report the number of ordered segments that have been discarded. */
1667 ULong DRD_(thread_get_discard_ordered_segments_count)(void)
1669 return s_discard_ordered_segments_count;
1672 /** Return how many times the conflict set has been updated entirely. */
1673 ULong DRD_(thread_get_compute_conflict_set_count)()
1675 return s_compute_conflict_set_count;
1678 /** Return how many times the conflict set has been updated partially. */
1679 ULong DRD_(thread_get_update_conflict_set_count)(void)
1681 return s_update_conflict_set_count;
1685 * Return how many times the conflict set has been updated partially
1686 * because a new segment has been created.
1688 ULong DRD_(thread_get_update_conflict_set_new_sg_count)(void)
1690 return s_update_conflict_set_new_sg_count;
1694 * Return how many times the conflict set has been updated partially
1695 * because of combining vector clocks due to synchronization operations
1696 * other than reader/writer lock or barrier operations.
1698 ULong DRD_(thread_get_update_conflict_set_sync_count)(void)
1700 return s_update_conflict_set_sync_count;
1704 * Return how many times the conflict set has been updated partially
1705 * because of thread joins.
1707 ULong DRD_(thread_get_update_conflict_set_join_count)(void)
1709 return s_update_conflict_set_join_count;
1713 * Return the number of first-level bitmaps that have been created during
1714 * conflict set updates.
1716 ULong DRD_(thread_get_conflict_set_bitmap_creation_count)(void)
1718 return s_conflict_set_bitmap_creation_count;
1722 * Return the number of second-level bitmaps that have been created during
1723 * conflict set updates.
1725 ULong DRD_(thread_get_conflict_set_bitmap2_creation_count)(void)
1727 return s_conflict_set_bitmap2_creation_count;