1 /*
2 This file is part of drd, a thread error detector.
3
4 Copyright (C) 2006-2017 Bart Van Assche <bvanassche@acm.org>.
5
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.
10
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.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
19 02111-1307, USA.
20
21 The GNU General Public License is contained in the file COPYING.
22 */
23
24
25 #include "drd_clientobj.h" /* struct mutex_info */
26 #include "drd_error.h"
27 #include "drd_malloc_wrappers.h"
28 #include "drd_mutex.h"
29 #include "drd_suppression.h" /* drd_start_suppression() */
30 #include "pub_drd_bitmap.h" /* LHS_W, ... */
31 #include "pub_tool_vki.h"
32 #include "pub_tool_basics.h"
33 #include "pub_tool_libcassert.h" /* tl_assert() */
34 #include "pub_tool_libcbase.h" /* strlen() */
35 #include "pub_tool_libcprint.h" /* VG_(printf)() */
36 #include "pub_tool_machine.h"
37 #include "pub_tool_mallocfree.h" /* VG_(malloc), VG_(free) */
38 #include "pub_tool_options.h" /* VG_(clo_xml) */
39 #include "pub_tool_threadstate.h" /* VG_(get_pthread_id)() */
40 #include "pub_tool_tooliface.h" /* VG_(needs_tool_errors)() */
41
42
43 /* Local function declarations. */
44
45 static const HChar* drd_get_error_name(const Error* e);
46
47
48 /* Local variables. */
49
50 static Bool s_show_conflicting_segments = True;
51
52
DRD_(set_show_conflicting_segments)53 void DRD_(set_show_conflicting_segments)(const Bool scs)
54 {
55 s_show_conflicting_segments = scs;
56 }
57
DRD_(trace_msg)58 void DRD_(trace_msg)(const HChar* format, ...)
59 {
60 va_list vargs;
61 va_start(vargs, format);
62 if (VG_(clo_xml)) {
63 VG_(printf_xml)(" <trace><text>");
64 VG_(vprintf_xml)(format, vargs);
65 VG_(printf_xml)("</text></trace>\n");
66 } else {
67 VG_(vmessage)(Vg_UserMsg, format, vargs);
68 VG_(message)(Vg_UserMsg, "\n");
69 }
70 va_end(vargs);
71 }
72
DRD_(trace_msg_w_bt)73 void DRD_(trace_msg_w_bt)(const HChar* format, ...)
74 {
75 va_list vargs;
76 va_start(vargs, format);
77 if (VG_(clo_xml)) {
78 VG_(printf_xml)(" <trace><text>");
79 VG_(vprintf_xml)(format, vargs);
80 VG_(printf_xml)("</text>\n");
81 } else {
82 VG_(vmessage)(Vg_UserMsg, format, vargs);
83 VG_(message)(Vg_UserMsg, "\n");
84 }
85 VG_(get_and_pp_StackTrace)(VG_(get_running_tid)(), VG_(clo_backtrace_size));
86 va_end(vargs);
87 if (VG_(clo_xml))
88 VG_(printf_xml)(" </trace>\n");
89 }
90
91 /**
92 * Emit error message detail in the format requested by the user.
93 */
94 static void print_err_detail(const HChar* format, ...) PRINTF_CHECK(1, 2);
print_err_detail(const HChar * format,...)95 static void print_err_detail(const HChar* format, ...)
96 {
97 va_list vargs;
98 va_start(vargs, format);
99 if (VG_(clo_xml))
100 VG_(vprintf_xml)(format, vargs);
101 else
102 VG_(vmessage)(Vg_UserMsg, format, vargs);
103 va_end(vargs);
104 }
105
106 /**
107 * Describe the client address a as good as possible, putting the result in ai.
108 */
109 static
describe_malloced_addr(Addr const a,AddrInfo * const ai)110 void describe_malloced_addr(Addr const a, AddrInfo* const ai)
111 {
112 Addr heap_block_start;
113
114 if (DRD_(heap_addrinfo)(a, &heap_block_start, &ai->size, &ai->lastchange))
115 {
116 ai->akind = eMallocd;
117 ai->rwoffset = a - heap_block_start;
118 }
119 else
120 {
121 ai->akind = eUnknown;
122 }
123 }
124
125 /**
126 * Report where a client synchronization object has been observed for the first
127 * time. The printed call stack will either refer to a pthread_*_init() or a
128 * pthread_*lock() call.
129 */
first_observed(const Addr obj)130 static void first_observed(const Addr obj)
131 {
132 DrdClientobj* cl;
133
134 cl = DRD_(clientobj_get_any)(obj);
135 if (cl) {
136 tl_assert(cl->any.first_observed_at);
137 if (VG_(clo_xml)) {
138 print_err_detail(" <first_observed_at>\n"
139 " <what>%pS</what>\n"
140 " <address>0x%lx</address>\n",
141 DRD_(clientobj_type_name)(cl->any.type), obj);
142 VG_(pp_ExeContext)(cl->any.first_observed_at);
143 print_err_detail(" </first_observed_at>\n");
144 } else {
145 print_err_detail("%s 0x%lx was first observed at:\n",
146 DRD_(clientobj_type_name)(cl->any.type), obj);
147 VG_(pp_ExeContext)(cl->any.first_observed_at);
148 }
149 }
150 }
151
152 static
drd_report_data_race(const Error * const err,const DataRaceErrInfo * const dri)153 void drd_report_data_race(const Error* const err,
154 const DataRaceErrInfo* const dri)
155 {
156 const Bool xml = VG_(clo_xml);
157 const HChar* const what_prefix = xml ? " <what>" : "";
158 const HChar* const what_suffix = xml ? "</what>" : "";
159 const HChar* const auxwhat_prefix = xml ? " <auxwhat>" : "";
160 const HChar* const auxwhat_suffix = xml ? "</auxwhat>" : "";
161 const HChar* const indent = xml ? " " : "";
162 AddrInfo ai;
163
164 XArray* /* of HChar */ descr1
165 = VG_(newXA)( VG_(malloc), "drd.error.drdr2.1",
166 VG_(free), sizeof(HChar) );
167 XArray* /* of HChar */ descr2
168 = VG_(newXA)( VG_(malloc), "drd.error.drdr2.2",
169 VG_(free), sizeof(HChar) );
170
171 tl_assert(dri);
172 tl_assert(dri->addr);
173 tl_assert(dri->size > 0);
174
175 (void) VG_(get_data_description)(descr1, descr2, dri->addr);
176 /* If there's nothing in descr1/2, free them. Why is it safe to
177 VG_(indexXA) at zero here? Because VG_(get_data_description)
178 guarantees to zero terminate descr1/2 regardless of the outcome
179 of the call. So there's always at least one element in each XA
180 after the call.
181 */
182 if (0 == VG_(strlen)( VG_(indexXA)( descr1, 0 ))) {
183 VG_(deleteXA)( descr1 );
184 descr1 = NULL;
185 }
186 if (0 == VG_(strlen)( VG_(indexXA)( descr2, 0 ))) {
187 VG_(deleteXA)( descr2 );
188 descr2 = NULL;
189 }
190 /* Assume (assert) that VG_(get_data_description) fills in descr1
191 before it fills in descr2 */
192 if (descr1 == NULL)
193 tl_assert(descr2 == NULL);
194 /* So anyway. Do we have something useful? */
195 if (descr1 == NULL)
196 {
197 /* No. Do Plan B. */
198 describe_malloced_addr(dri->addr, &ai);
199 }
200
201 print_err_detail("%sConflicting %s by thread %u at 0x%08lx size %lu%s\n",
202 what_prefix, dri->access_type == eStore ? "store" : "load",
203 dri->tid, dri->addr, dri->size, what_suffix);
204
205 VG_(pp_ExeContext)(VG_(get_error_where)(err));
206 if (descr1 != NULL) {
207 print_err_detail("%s%s\n", indent, (HChar*)VG_(indexXA)(descr1, 0));
208 if (descr2 != NULL)
209 print_err_detail("%s%s\n", indent, (HChar*)VG_(indexXA)(descr2, 0));
210 } else if (ai.akind == eMallocd && ai.lastchange) {
211 print_err_detail("%sAddress 0x%lx is at offset %ld from 0x%lx.%s%s",
212 auxwhat_prefix, dri->addr, ai.rwoffset,
213 dri->addr - ai.rwoffset, auxwhat_suffix,
214 xml ? "\n" : "");
215 if (xml)
216 print_err_detail(" <allocation_context>\n");
217 else
218 print_err_detail(" Allocation context:\n");
219 VG_(pp_ExeContext)(ai.lastchange);
220 if (xml)
221 print_err_detail(" </allocation_context>\n");
222 } else {
223 const HChar *sect_name;
224 VgSectKind sect_kind;
225
226 sect_kind = VG_(DebugInfo_sect_kind)(§_name, dri->addr);
227 if (sect_kind != Vg_SectUnknown) {
228 print_err_detail("%sAllocation context: %ps section of %ps%s\n",
229 auxwhat_prefix, VG_(pp_SectKind)(sect_kind),
230 sect_name, auxwhat_suffix);
231 } else {
232 print_err_detail("%sAllocation context: unknown.%s\n",
233 auxwhat_prefix, auxwhat_suffix);
234 }
235 }
236 if (s_show_conflicting_segments)
237 {
238 DRD_(thread_report_conflicting_segments)(dri->tid,
239 dri->addr, dri->size,
240 dri->access_type);
241 }
242
243 if (descr2)
244 VG_(deleteXA)(descr2);
245 if (descr1)
246 VG_(deleteXA)(descr1);
247 }
248
249 /**
250 * Compare two error contexts. The core function VG_(maybe_record_error)()
251 * calls this function to compare error contexts such that errors that occur
252 * repeatedly are only printed once. This function is only called by the core
253 * if the error kind of e1 and e2 matches and if the ExeContext's of e1 and
254 * e2 also match.
255 */
drd_compare_error_contexts(VgRes res,const Error * e1,const Error * e2)256 static Bool drd_compare_error_contexts(VgRes res, const Error* e1,
257 const Error* e2)
258 {
259 tl_assert(VG_(get_error_kind)(e1) == VG_(get_error_kind)(e2));
260
261 switch (VG_(get_error_kind)(e1))
262 {
263 case DataRaceErr:
264 {
265 const DataRaceErrInfo* const dri1 = VG_(get_error_extra)(e1);
266 const DataRaceErrInfo* const dri2 = VG_(get_error_extra)(e2);
267 return dri1->access_type == dri2->access_type
268 && dri1->size == dri2->size;
269 }
270 case MutexErr:
271 {
272 const MutexErrInfo* const mei1 = VG_(get_error_extra)(e1);
273 const MutexErrInfo* const mei2 = VG_(get_error_extra)(e2);
274 return mei1->mutex == mei2->mutex;
275 }
276 default:
277 return True;
278 }
279 }
280
281 /**
282 * Called by the core just before an error message will be printed. Used by
283 * DRD to print the thread number as a preamble.
284 */
drd_tool_error_before_pp(const Error * const e)285 static void drd_tool_error_before_pp(const Error* const e)
286 {
287 static DrdThreadId s_last_tid_printed = 1;
288 DrdThreadId* err_extra;
289
290 err_extra = VG_(get_error_extra)(e);
291
292 if (err_extra && *err_extra != s_last_tid_printed && !VG_(clo_xml)) {
293 VG_(umsg)("%s:\n", DRD_(thread_get_name)(*err_extra));
294 s_last_tid_printed = *err_extra;
295 }
296 }
297
298 /** Report an error to the user. */
drd_tool_error_pp(const Error * const e)299 static void drd_tool_error_pp(const Error* const e)
300 {
301 const Bool xml = VG_(clo_xml);
302 const HChar* const what_prefix = xml ? " <what>" : "";
303 const HChar* const what_suffix = xml ? "</what>" : "";
304
305 if (xml)
306 VG_(printf_xml)( " <kind>%pS</kind>\n", drd_get_error_name(e));
307
308 switch (VG_(get_error_kind)(e))
309 {
310 case DataRaceErr: {
311 drd_report_data_race(e, VG_(get_error_extra)(e));
312 break;
313 }
314 case MutexErr: {
315 MutexErrInfo* p = (MutexErrInfo*)(VG_(get_error_extra)(e));
316 tl_assert(p);
317 if (p->recursion_count >= 0) {
318 print_err_detail("%s%s: mutex 0x%lx, recursion count %d, owner %u."
319 "%s\n", what_prefix, VG_(get_error_string)(e),
320 p->mutex, p->recursion_count, p->owner, what_suffix);
321 } else {
322 print_err_detail("%sThe object at address 0x%lx is not a mutex.%s\n",
323 what_prefix, p->mutex, what_suffix);
324 }
325 VG_(pp_ExeContext)(VG_(get_error_where)(e));
326 first_observed(p->mutex);
327 break;
328 }
329 case CondErr: {
330 CondErrInfo* cdei =(CondErrInfo*)(VG_(get_error_extra)(e));
331 print_err_detail("%s%s: cond 0x%lx%s\n", what_prefix,
332 VG_(get_error_string)(e), cdei->cond, what_suffix);
333 VG_(pp_ExeContext)(VG_(get_error_where)(e));
334 first_observed(cdei->cond);
335 break;
336 }
337 case CondDestrErr: {
338 CondDestrErrInfo* cdi = (CondDestrErrInfo*)(VG_(get_error_extra)(e));
339 print_err_detail("%s%s: cond 0x%lx, mutex 0x%lx locked by thread %u%s\n",
340 what_prefix, VG_(get_error_string)(e), cdi->cond,
341 cdi->mutex, cdi->owner, what_suffix);
342 VG_(pp_ExeContext)(VG_(get_error_where)(e));
343 first_observed(cdi->mutex);
344 break;
345 }
346 case CondRaceErr: {
347 CondRaceErrInfo* cei = (CondRaceErrInfo*)(VG_(get_error_extra)(e));
348 print_err_detail("%sProbably a race condition: condition variable 0x%lx"
349 " has been signaled but the associated mutex 0x%lx is"
350 " not locked by the signalling thread.%s\n",
351 what_prefix, cei->cond, cei->mutex, what_suffix);
352 VG_(pp_ExeContext)(VG_(get_error_where)(e));
353 first_observed(cei->cond);
354 first_observed(cei->mutex);
355 break;
356 }
357 case CondWaitErr: {
358 CondWaitErrInfo* cwei = (CondWaitErrInfo*)(VG_(get_error_extra)(e));
359 print_err_detail("%s%s: condition variable 0x%lx, mutexes 0x%lx and"
360 " 0x%lx%s\n", what_prefix, VG_(get_error_string)(e),
361 cwei->cond, cwei->mutex1, cwei->mutex2, what_suffix);
362 VG_(pp_ExeContext)(VG_(get_error_where)(e));
363 first_observed(cwei->cond);
364 first_observed(cwei->mutex1);
365 first_observed(cwei->mutex2);
366 break;
367 }
368 case SemaphoreErr: {
369 SemaphoreErrInfo* sei = (SemaphoreErrInfo*)(VG_(get_error_extra)(e));
370 tl_assert(sei);
371 print_err_detail("%s%s: semaphore 0x%lx%s\n", what_prefix,
372 VG_(get_error_string)(e), sei->semaphore, what_suffix);
373 VG_(pp_ExeContext)(VG_(get_error_where)(e));
374 first_observed(sei->semaphore);
375 break;
376 }
377 case BarrierErr: {
378 BarrierErrInfo* bei = (BarrierErrInfo*)(VG_(get_error_extra)(e));
379 tl_assert(bei);
380 print_err_detail("%s%s: barrier 0x%lx%s\n", what_prefix,
381 VG_(get_error_string)(e), bei->barrier, what_suffix);
382 VG_(pp_ExeContext)(VG_(get_error_where)(e));
383 if (bei->other_context) {
384 if (xml)
385 print_err_detail(" <confl_wait_call>\n");
386 print_err_detail("%sConflicting wait call by thread %u:%s\n",
387 what_prefix, bei->other_tid, what_suffix);
388 VG_(pp_ExeContext)(bei->other_context);
389 if (xml)
390 print_err_detail(" </confl_wait_call>\n");
391 }
392 first_observed(bei->barrier);
393 break;
394 }
395 case RwlockErr: {
396 RwlockErrInfo* p = (RwlockErrInfo*)(VG_(get_error_extra)(e));
397 tl_assert(p);
398 print_err_detail("%s%s: rwlock 0x%lx.%s\n", what_prefix,
399 VG_(get_error_string)(e), p->rwlock, what_suffix);
400 VG_(pp_ExeContext)(VG_(get_error_where)(e));
401 first_observed(p->rwlock);
402 break;
403 }
404 case HoldtimeErr: {
405 HoldtimeErrInfo* p =(HoldtimeErrInfo*)(VG_(get_error_extra)(e));
406 tl_assert(p);
407 tl_assert(p->acquired_at);
408 if (xml)
409 print_err_detail(" <acquired_at>\n");
410 else
411 print_err_detail("Acquired at:\n");
412 VG_(pp_ExeContext)(p->acquired_at);
413 if (xml)
414 print_err_detail(" </acquired_at>\n");
415 print_err_detail("%sLock on %s 0x%lx was held during %u ms"
416 " (threshold: %u ms).%s\n", what_prefix,
417 VG_(get_error_string)(e), p->synchronization_object,
418 p->hold_time_ms, p->threshold_ms, what_suffix);
419 VG_(pp_ExeContext)(VG_(get_error_where)(e));
420 first_observed(p->synchronization_object);
421 break;
422 }
423 case GenericErr: {
424 GenericErrInfo* gei = (GenericErrInfo*)(VG_(get_error_extra)(e));
425 print_err_detail("%s%s%s\n", what_prefix, VG_(get_error_string)(e),
426 what_suffix);
427 VG_(pp_ExeContext)(VG_(get_error_where)(e));
428 if (gei->addr)
429 first_observed(gei->addr);
430 break;
431 }
432 case InvalidThreadId: {
433 InvalidThreadIdInfo* iti =(InvalidThreadIdInfo*)(VG_(get_error_extra)(e));
434 print_err_detail("%s%s 0x%llx%s\n", what_prefix, VG_(get_error_string)(e),
435 iti->ptid, what_suffix);
436 VG_(pp_ExeContext)(VG_(get_error_where)(e));
437 break;
438 }
439 case UnimpHgClReq: {
440 UnimpClReqInfo* uicr =(UnimpClReqInfo*)(VG_(get_error_extra)(e));
441 print_err_detail("%sThe annotation macro %s has not yet been implemented"
442 " in %ps%s\n", what_prefix, uicr->descr,
443 "<valgrind/helgrind.h>", what_suffix);
444 VG_(pp_ExeContext)(VG_(get_error_where)(e));
445 break;
446 }
447 case UnimpDrdClReq: {
448 UnimpClReqInfo* uicr =(UnimpClReqInfo*)(VG_(get_error_extra)(e));
449 print_err_detail("%sThe annotation macro %s has not yet been implemented"
450 " in %ps%s\n", what_prefix, uicr->descr,
451 "<valgrind/drd.h>", what_suffix);
452 VG_(pp_ExeContext)(VG_(get_error_where)(e));
453 break;
454 }
455 default:
456 print_err_detail("%s%s%s\n", what_prefix, VG_(get_error_string)(e),
457 what_suffix);
458 VG_(pp_ExeContext)(VG_(get_error_where)(e));
459 break;
460 }
461 }
462
drd_tool_error_update_extra(const Error * e)463 static UInt drd_tool_error_update_extra(const Error* e)
464 {
465 switch (VG_(get_error_kind)(e))
466 {
467 case DataRaceErr:
468 return sizeof(DataRaceErrInfo);
469 case MutexErr:
470 return sizeof(MutexErrInfo);
471 case CondErr:
472 return sizeof(CondErrInfo);
473 case CondDestrErr:
474 return sizeof(CondDestrErrInfo);
475 case CondRaceErr:
476 return sizeof(CondRaceErrInfo);
477 case CondWaitErr:
478 return sizeof(CondWaitErrInfo);
479 case SemaphoreErr:
480 return sizeof(SemaphoreErrInfo);
481 case BarrierErr:
482 return sizeof(BarrierErrInfo);
483 case RwlockErr:
484 return sizeof(RwlockErrInfo);
485 case HoldtimeErr:
486 return sizeof(HoldtimeErrInfo);
487 case GenericErr:
488 return sizeof(GenericErrInfo);
489 case InvalidThreadId:
490 return sizeof(InvalidThreadIdInfo);
491 case UnimpHgClReq:
492 return sizeof(UnimpClReqInfo);
493 case UnimpDrdClReq:
494 return sizeof(UnimpClReqInfo);
495 default:
496 tl_assert(False);
497 break;
498 }
499 }
500
501 /**
502 * Parse suppression name.
503 *
504 * The suppression types recognized by DRD are the same types as the error
505 * types supported by DRD. So try to match the suppression name against the
506 * names of DRD error types.
507 */
drd_is_recognized_suppression(const HChar * const name,Supp * const supp)508 static Bool drd_is_recognized_suppression(const HChar* const name,
509 Supp* const supp)
510 {
511 DrdErrorKind skind = 0;
512
513 if (VG_(strcmp)(name, STR_DataRaceErr) == 0)
514 skind = DataRaceErr;
515 else if (VG_(strcmp)(name, STR_MutexErr) == 0)
516 skind = MutexErr;
517 else if (VG_(strcmp)(name, STR_CondErr) == 0)
518 skind = CondErr;
519 else if (VG_(strcmp)(name, STR_CondDestrErr) == 0)
520 skind = CondDestrErr;
521 else if (VG_(strcmp)(name, STR_CondRaceErr) == 0)
522 skind = CondRaceErr;
523 else if (VG_(strcmp)(name, STR_CondWaitErr) == 0)
524 skind = CondWaitErr;
525 else if (VG_(strcmp)(name, STR_SemaphoreErr) == 0)
526 skind = SemaphoreErr;
527 else if (VG_(strcmp)(name, STR_BarrierErr) == 0)
528 skind = BarrierErr;
529 else if (VG_(strcmp)(name, STR_RwlockErr) == 0)
530 skind = RwlockErr;
531 else if (VG_(strcmp)(name, STR_HoldtimeErr) == 0)
532 skind = HoldtimeErr;
533 else if (VG_(strcmp)(name, STR_GenericErr) == 0)
534 skind = GenericErr;
535 else if (VG_(strcmp)(name, STR_InvalidThreadId) == 0)
536 skind = InvalidThreadId;
537 else if (VG_(strcmp)(name, STR_UnimpHgClReq) == 0)
538 skind = UnimpHgClReq;
539 else if (VG_(strcmp)(name, STR_UnimpDrdClReq) == 0)
540 skind = UnimpDrdClReq;
541 else
542 return False;
543
544 VG_(set_supp_kind)(supp, skind);
545 return True;
546 }
547
548 /**
549 * Read additional suppression information from the suppression file.
550 *
551 * None of the suppression patterns recognized by DRD has 'extra' lines
552 * of information in the suppression file, so just return True to indicate
553 * that reading the 'extra' lines succeeded.
554 */
555 static
drd_read_extra_suppression_info(Int fd,HChar ** bufpp,SizeT * nBufp,Int * lineno,Supp * supp)556 Bool drd_read_extra_suppression_info(Int fd, HChar** bufpp,
557 SizeT* nBufp, Int* lineno, Supp* supp)
558 {
559 return True;
560 }
561
562 /**
563 * Determine whether or not the types of the given error message and the
564 * given suppression match.
565 */
drd_error_matches_suppression(const Error * const e,const Supp * const supp)566 static Bool drd_error_matches_suppression(const Error* const e,
567 const Supp* const supp)
568 {
569 return VG_(get_supp_kind)(supp) == VG_(get_error_kind)(e);
570 }
571
drd_get_error_name(const Error * e)572 static const HChar* drd_get_error_name(const Error* e)
573 {
574 switch (VG_(get_error_kind)(e))
575 {
576 case DataRaceErr: return VGAPPEND(STR_, DataRaceErr);
577 case MutexErr: return VGAPPEND(STR_, MutexErr);
578 case CondErr: return VGAPPEND(STR_, CondErr);
579 case CondDestrErr: return VGAPPEND(STR_, CondDestrErr);
580 case CondRaceErr: return VGAPPEND(STR_, CondRaceErr);
581 case CondWaitErr: return VGAPPEND(STR_, CondWaitErr);
582 case SemaphoreErr: return VGAPPEND(STR_, SemaphoreErr);
583 case BarrierErr: return VGAPPEND(STR_, BarrierErr);
584 case RwlockErr: return VGAPPEND(STR_, RwlockErr);
585 case HoldtimeErr: return VGAPPEND(STR_, HoldtimeErr);
586 case GenericErr: return VGAPPEND(STR_, GenericErr);
587 case InvalidThreadId: return VGAPPEND(STR_, InvalidThreadId);
588 case UnimpHgClReq: return VGAPPEND(STR_, UnimpHgClReq);
589 case UnimpDrdClReq: return VGAPPEND(STR_, UnimpDrdClReq);
590 default:
591 tl_assert(0);
592 }
593 return 0;
594 }
595
596 /**
597 * Return extra suppression information.
598 *
599 * Invoked while printing a suppression pattern because the user
600 * specified --gen-suppressions=yes or all on the command line. DRD does not
601 * define any 'extra' suppression information.
602 */
603 static
drd_get_extra_suppression_info(const Error * e,HChar * buf,Int nBuf)604 SizeT drd_get_extra_suppression_info(const Error* e,
605 /*OUT*/HChar* buf, Int nBuf)
606 {
607 tl_assert(nBuf >= 1);
608 buf[0] = '\0';
609 return 0;
610 }
611
612 static
drd_print_extra_suppression_use(const Supp * su,HChar * buf,Int nBuf)613 SizeT drd_print_extra_suppression_use(const Supp* su,
614 /*OUT*/HChar* buf, Int nBuf)
615 {
616 tl_assert(nBuf >= 1);
617 buf[0] = '\0';
618 return 0;
619 }
620
621 static
drd_update_extra_suppresion_use(const Error * e,const Supp * supp)622 void drd_update_extra_suppresion_use(const Error* e, const Supp* supp)
623 {
624 return;
625 }
626
627 /** Tell the Valgrind core about DRD's error handlers. */
DRD_(register_error_handlers)628 void DRD_(register_error_handlers)(void)
629 {
630 VG_(needs_tool_errors)(drd_compare_error_contexts,
631 drd_tool_error_before_pp,
632 drd_tool_error_pp,
633 False,
634 drd_tool_error_update_extra,
635 drd_is_recognized_suppression,
636 drd_read_extra_suppression_info,
637 drd_error_matches_suppression,
638 drd_get_error_name,
639 drd_get_extra_suppression_info,
640 drd_print_extra_suppression_use,
641 drd_update_extra_suppresion_use);
642 }
643