mirror of
https://github.com/ioacademy-jikim/debugging
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395 lines
11 KiB
C
395 lines
11 KiB
C
/*
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This file is part of drd, a thread error detector.
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Copyright (C) 2006-2015 Bart Van Assche <bvanassche@acm.org>.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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02111-1307, USA.
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The GNU General Public License is contained in the file COPYING.
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*/
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#include "drd_clientobj.h"
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#include "drd_cond.h"
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#include "drd_error.h"
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#include "drd_mutex.h"
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#include "pub_tool_errormgr.h" /* VG_(maybe_record_error)() */
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#include "pub_tool_libcassert.h" /* tl_assert() */
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#include "pub_tool_libcbase.h" /* VG_(memcmp)() */
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#include "pub_tool_libcprint.h" /* VG_(printf)() */
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#include "pub_tool_machine.h" /* VG_(get_IP)() */
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#include "pub_tool_threadstate.h" /* VG_(get_running_tid)() */
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/* Local functions. */
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static void DRD_(cond_cleanup)(struct cond_info* p);
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/* Local variables. */
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static Bool DRD_(s_report_signal_unlocked) = True;
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static Bool DRD_(s_trace_cond);
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/* Function definitions. */
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void DRD_(cond_set_report_signal_unlocked)(const Bool r)
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{
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DRD_(s_report_signal_unlocked) = r;
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}
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void DRD_(cond_set_trace)(const Bool trace_cond)
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{
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DRD_(s_trace_cond) = trace_cond;
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}
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static
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void DRD_(cond_initialize)(struct cond_info* const p, const Addr cond)
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{
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tl_assert(cond != 0);
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tl_assert(p->a1 == cond);
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tl_assert(p->type == ClientCondvar);
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p->cleanup = (void(*)(DrdClientobj*))(DRD_(cond_cleanup));
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p->delete_thread = 0;
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p->waiter_count = 0;
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p->mutex = 0;
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}
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/**
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* Free the memory that was allocated by cond_initialize(). Called by
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* DRD_(clientobj_remove)().
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*/
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static void DRD_(cond_cleanup)(struct cond_info* p)
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{
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tl_assert(p);
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if (p->mutex)
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{
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struct mutex_info* q;
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q = &(DRD_(clientobj_get)(p->mutex, ClientMutex)->mutex);
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{
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CondDestrErrInfo cde = {
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DRD_(thread_get_running_tid)(),
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p->a1,
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q ? q->a1 : 0,
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q ? q->owner : DRD_INVALID_THREADID
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};
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondDestrErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Destroying condition variable that is being"
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" waited upon",
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&cde);
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}
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}
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}
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/**
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* Report that the synchronization object at address 'addr' is of the
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* wrong type.
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*/
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static void wrong_type(const Addr addr)
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{
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GenericErrInfo gei = {
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.tid = DRD_(thread_get_running_tid)(),
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.addr = addr,
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};
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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GenericErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"wrong type of synchronization object",
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&gei);
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}
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static struct cond_info* cond_get_or_allocate(const Addr cond)
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{
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struct cond_info *p;
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tl_assert(offsetof(DrdClientobj, cond) == 0);
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p = &(DRD_(clientobj_get)(cond, ClientCondvar)->cond);
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if (p)
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return p;
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if (DRD_(clientobj_present)(cond, cond + 1))
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{
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wrong_type(cond);
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return 0;
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}
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p = &(DRD_(clientobj_add)(cond, ClientCondvar)->cond);
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DRD_(cond_initialize)(p, cond);
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return p;
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}
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struct cond_info* DRD_(cond_get)(const Addr cond)
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{
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tl_assert(offsetof(DrdClientobj, cond) == 0);
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return &(DRD_(clientobj_get)(cond, ClientCondvar)->cond);
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}
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/** Called before pthread_cond_init(). */
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void DRD_(cond_pre_init)(const Addr cond)
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{
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struct cond_info* p;
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_init cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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p = DRD_(cond_get)(cond);
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if (p) {
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CondErrInfo cei = { .tid = DRD_(thread_get_running_tid)(), .cond = cond };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"initialized twice",
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&cei);
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}
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cond_get_or_allocate(cond);
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}
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/** Called after pthread_cond_destroy(). */
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void DRD_(cond_post_destroy)(const Addr cond, const Bool destroy_succeeded)
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{
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struct cond_info* p;
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_destroy cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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p = DRD_(cond_get)(cond);
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if (p == 0)
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{
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CondErrInfo cei = { .tid = DRD_(thread_get_running_tid)(), .cond = cond };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"not a condition variable",
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&cei);
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return;
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}
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if (p->waiter_count != 0)
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{
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CondErrInfo cei = { .tid = DRD_(thread_get_running_tid)(), .cond = cond };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"destruction of condition variable being waited"
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" upon",
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&cei);
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}
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if (destroy_succeeded)
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DRD_(clientobj_remove)(p->a1, ClientCondvar);
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}
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/**
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* Called before pthread_cond_wait(). Note: before this function is called,
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* mutex_unlock() has already been called from drd_clientreq.c.
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*/
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void DRD_(cond_pre_wait)(const Addr cond, const Addr mutex)
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{
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struct cond_info* p;
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struct mutex_info* q;
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_pre_wait cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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p = cond_get_or_allocate(cond);
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if (!p)
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{
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CondErrInfo cei = { .tid = DRD_(thread_get_running_tid)(), .cond = cond };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"not a condition variable",
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&cei);
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return;
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}
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if (p->waiter_count == 0)
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{
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p->mutex = mutex;
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}
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else if (p->mutex != mutex)
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{
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CondWaitErrInfo cwei
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= { .tid = DRD_(thread_get_running_tid)(),
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.cond = cond, .mutex1 = p->mutex, .mutex2 = mutex };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondWaitErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Inconsistent association of condition variable"
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" and mutex",
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&cwei);
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}
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tl_assert(p->mutex);
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q = DRD_(mutex_get)(p->mutex);
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if (q
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&& q->owner == DRD_(thread_get_running_tid)() && q->recursion_count > 0)
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{
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const ThreadId vg_tid = VG_(get_running_tid)();
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MutexErrInfo MEI = { DRD_(thread_get_running_tid)(),
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q->a1, q->recursion_count, q->owner };
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VG_(maybe_record_error)(vg_tid,
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MutexErr,
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VG_(get_IP)(vg_tid),
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"Mutex locked recursively",
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&MEI);
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}
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else if (q == 0)
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{
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DRD_(not_a_mutex)(p->mutex);
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}
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++p->waiter_count;
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}
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/**
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* Called after pthread_cond_wait().
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*/
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void DRD_(cond_post_wait)(const Addr cond)
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{
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struct cond_info* p;
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_post_wait cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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p = DRD_(cond_get)(cond);
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if (!p)
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{
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CondDestrErrInfo cde = {
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DRD_(thread_get_running_tid)(), cond, 0, DRD_INVALID_THREADID
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};
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondDestrErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"condition variable has been destroyed while"
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" being waited upon",
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&cde);
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return;
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}
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if (p->waiter_count > 0)
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{
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--p->waiter_count;
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if (p->waiter_count == 0)
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{
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p->mutex = 0;
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}
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}
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}
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static void cond_signal(const DrdThreadId tid, struct cond_info* const cond_p)
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{
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const ThreadId vg_tid = VG_(get_running_tid)();
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const DrdThreadId drd_tid = DRD_(VgThreadIdToDrdThreadId)(vg_tid);
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tl_assert(cond_p);
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if (cond_p->waiter_count > 0)
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{
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if (DRD_(s_report_signal_unlocked)
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&& ! DRD_(mutex_is_locked_by)(cond_p->mutex, drd_tid))
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{
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/*
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* A signal is sent while the associated mutex has not been locked.
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* This can indicate but is not necessarily a race condition.
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*/
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CondRaceErrInfo cei = { .tid = DRD_(thread_get_running_tid)(),
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.cond = cond_p->a1,
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.mutex = cond_p->mutex,
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};
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VG_(maybe_record_error)(vg_tid,
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CondRaceErr,
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VG_(get_IP)(vg_tid),
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"CondErr",
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&cei);
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}
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}
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else
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{
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/*
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* No other thread is waiting for the signal, hence the signal will
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* be lost. This is normal in a POSIX threads application.
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*/
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}
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}
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static void not_initialized(Addr const cond)
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{
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CondErrInfo cei = { .tid = DRD_(thread_get_running_tid)(), .cond = cond };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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CondErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"condition variable has not been initialized",
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&cei);
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}
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/** Called before pthread_cond_signal(). */
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void DRD_(cond_pre_signal)(Addr const cond)
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{
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struct cond_info* p;
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p = DRD_(cond_get)(cond);
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_signal cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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tl_assert(DRD_(pthread_cond_initializer));
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if (!p && VG_(memcmp)((void*)cond, (void*)DRD_(pthread_cond_initializer),
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DRD_(pthread_cond_initializer_size)) != 0)
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{
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not_initialized(cond);
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return;
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}
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if (!p)
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p = cond_get_or_allocate(cond);
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cond_signal(DRD_(thread_get_running_tid)(), p);
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}
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/** Called before pthread_cond_broadcast(). */
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void DRD_(cond_pre_broadcast)(Addr const cond)
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{
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struct cond_info* p;
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if (DRD_(s_trace_cond))
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DRD_(trace_msg)("[%u] cond_broadcast cond 0x%lx",
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DRD_(thread_get_running_tid)(), cond);
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p = DRD_(cond_get)(cond);
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tl_assert(DRD_(pthread_cond_initializer));
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if (!p && VG_(memcmp)((void*)cond, (void*)DRD_(pthread_cond_initializer),
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DRD_(pthread_cond_initializer_size)) != 0)
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{
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not_initialized(cond);
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return;
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}
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if (!p)
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p = cond_get_or_allocate(cond);
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cond_signal(DRD_(thread_get_running_tid)(), p);
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}
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