mirror of
https://github.com/ioacademy-jikim/debugging
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446 lines
13 KiB
C
446 lines
13 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_error.h"
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#include "drd_semaphore.h"
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#include "drd_suppression.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_libcprint.h" // VG_(printf)()
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#include "pub_tool_machine.h" // VG_(get_IP)()
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#include "pub_tool_mallocfree.h" // VG_(malloc), VG_(free)
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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 semaphore_cleanup(struct semaphore_info* p);
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/* Local variables. */
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static Bool s_trace_semaphore;
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static ULong s_semaphore_segment_creation_count;
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/* Function definitions. */
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/** Push a segment at the end of the queue 'p->last_sem_post_seg'. */
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static void drd_segment_push(struct semaphore_info* p, Segment* sg)
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{
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Word n;
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tl_assert(sg);
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n = VG_(addToXA)(p->last_sem_post_seg, &sg);
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#if 0
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VG_(message)(Vg_DebugMsg, "0x%lx push: added at position %ld/%ld\n",
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p->a1, n, VG_(sizeXA)(p->last_sem_post_seg));
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#endif
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tl_assert(*(Segment**)VG_(indexXA)(p->last_sem_post_seg, n) == sg);
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}
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/** Pop a segment from the beginning of the queue 'p->last_sem_post_seg'. */
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static Segment* drd_segment_pop(struct semaphore_info* p)
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{
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Word sz;
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Segment* sg;
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sz = VG_(sizeXA)(p->last_sem_post_seg);
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#if 0
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VG_(message)(Vg_DebugMsg, "0x%lx pop: removed from position %ld/%ld\n",
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p->a1, sz - 1, sz);
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#endif
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sg = 0;
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if (sz > 0)
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{
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sg = *(Segment**)VG_(indexXA)(p->last_sem_post_seg, sz - 1);
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tl_assert(sg);
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VG_(dropTailXA)(p->last_sem_post_seg, 1);
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}
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return sg;
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}
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/** Enable or disable tracing of semaphore actions. */
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void DRD_(semaphore_set_trace)(const Bool trace_semaphore)
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{
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s_trace_semaphore = trace_semaphore;
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}
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/**
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* Initialize the memory 'p' points at as a semaphore_info structure for the
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* client semaphore at client address 'semaphore'.
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*/
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static
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void drd_semaphore_initialize(struct semaphore_info* const p,
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const Addr semaphore)
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{
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tl_assert(semaphore != 0);
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tl_assert(p->a1 == semaphore);
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tl_assert(p->type == ClientSemaphore);
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p->cleanup = (void(*)(DrdClientobj*))semaphore_cleanup;
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p->delete_thread = 0;
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p->waits_to_skip = 0;
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p->value = 0;
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p->waiters = 0;
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p->last_sem_post_tid = DRD_INVALID_THREADID;
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p->last_sem_post_seg = VG_(newXA)(VG_(malloc), "drd.sg-stack",
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VG_(free), sizeof(Segment*));
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}
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/**
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* Free the memory that was allocated by semaphore_initialize(). Called by
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* DRD_(clientobj_remove)().
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*/
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static void semaphore_cleanup(struct semaphore_info* p)
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{
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Segment* sg;
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if (p->waiters > 0)
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{
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SemaphoreErrInfo sei = { DRD_(thread_get_running_tid)(), p->a1 };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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SemaphoreErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Destruction of semaphore that is being waited"
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" upon",
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&sei);
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}
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while ((sg = drd_segment_pop(p)))
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DRD_(sg_put)(sg);
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VG_(deleteXA)(p->last_sem_post_seg);
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}
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/**
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* Return a pointer to the structure with information about the specified
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* client semaphore. Allocate a new structure if such a structure did not
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* yet exist.
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*/
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static
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struct semaphore_info*
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drd_semaphore_get_or_allocate(const Addr semaphore)
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{
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struct semaphore_info *p;
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tl_assert(offsetof(DrdClientobj, semaphore) == 0);
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p = &(DRD_(clientobj_get)(semaphore, ClientSemaphore)->semaphore);
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if (p == 0)
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{
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tl_assert(offsetof(DrdClientobj, semaphore) == 0);
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p = &(DRD_(clientobj_add)(semaphore, ClientSemaphore)->semaphore);
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drd_semaphore_initialize(p, semaphore);
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}
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return p;
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}
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/**
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* Return a pointer to the structure with information about the specified
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* client semaphore, or null if no such structure was found.
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*/
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static struct semaphore_info* semaphore_get(const Addr semaphore)
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{
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tl_assert(offsetof(DrdClientobj, semaphore) == 0);
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return &(DRD_(clientobj_get)(semaphore, ClientSemaphore)->semaphore);
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}
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/** Called before sem_init(). */
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struct semaphore_info* DRD_(semaphore_init)(const Addr semaphore,
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const Word pshared,
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const UInt value)
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{
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struct semaphore_info* p;
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Segment* sg;
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_init 0x%lx value %u",
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DRD_(thread_get_running_tid)(), semaphore, value);
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p = semaphore_get(semaphore);
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if (p)
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{
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const ThreadId vg_tid = VG_(get_running_tid)();
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SemaphoreErrInfo SEI = { DRD_(thread_get_running_tid)(), semaphore };
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VG_(maybe_record_error)(vg_tid,
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SemaphoreErr,
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VG_(get_IP)(vg_tid),
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"Semaphore reinitialization",
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&SEI);
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// Remove all segments from the segment stack.
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while ((sg = drd_segment_pop(p)))
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{
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DRD_(sg_put)(sg);
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}
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}
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else
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{
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#if defined(VGO_darwin)
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const ThreadId vg_tid = VG_(get_running_tid)();
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GenericErrInfo GEI = { DRD_(thread_get_running_tid)(), 0 };
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VG_(maybe_record_error)(vg_tid,
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GenericErr,
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VG_(get_IP)(vg_tid),
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"sem_init() is not yet supported on Darwin",
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&GEI);
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return NULL;
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#else
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p = drd_semaphore_get_or_allocate(semaphore);
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#endif
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}
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tl_assert(p);
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p->waits_to_skip = value;
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p->value = value;
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return p;
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}
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/** Called after sem_destroy(). */
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void DRD_(semaphore_destroy)(const Addr semaphore)
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{
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struct semaphore_info* p;
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p = semaphore_get(semaphore);
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_destroy 0x%lx value %u",
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DRD_(thread_get_running_tid)(), semaphore,
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p ? p->value : 0);
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if (p == 0)
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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 = semaphore,
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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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"Not a semaphore",
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&GEI);
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return;
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}
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DRD_(clientobj_remove)(semaphore, ClientSemaphore);
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}
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/** Called after sem_open(). */
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struct semaphore_info* DRD_(semaphore_open)(const Addr semaphore,
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const HChar* name, const Word oflag,
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const Word mode, const UInt value)
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{
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struct semaphore_info* p;
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Segment* sg;
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_open 0x%lx name %s"
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" oflag %#lx mode %#lo value %u",
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DRD_(thread_get_running_tid)(),
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semaphore, name, (UWord)oflag, (UWord)mode, value);
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/* Return if the sem_open() call failed. */
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if (! semaphore)
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return NULL;
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p = semaphore_get(semaphore);
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if (p)
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{
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const ThreadId vg_tid = VG_(get_running_tid)();
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SemaphoreErrInfo SEI = { DRD_(thread_get_running_tid)(), semaphore };
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VG_(maybe_record_error)(vg_tid,
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SemaphoreErr,
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VG_(get_IP)(vg_tid),
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"Semaphore reinitialization",
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&SEI);
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// Remove all segments from the segment stack.
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while ((sg = drd_segment_pop(p)))
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{
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DRD_(sg_put)(sg);
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}
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}
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else
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{
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p = drd_semaphore_get_or_allocate(semaphore);
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}
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tl_assert(p);
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p->waits_to_skip = value;
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p->value = value;
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return p;
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}
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/** Called before sem_close(). */
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void DRD_(semaphore_close)(const Addr semaphore)
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{
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struct semaphore_info* p;
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p = semaphore_get(semaphore);
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_close 0x%lx value %u",
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DRD_(thread_get_running_tid)(), semaphore,
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p ? p->value : 0);
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if (p == 0)
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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 = semaphore,
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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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"Not a semaphore",
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&GEI);
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return;
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}
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DRD_(clientobj_remove)(semaphore, ClientSemaphore);
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}
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/** Called before sem_wait(). */
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void DRD_(semaphore_pre_wait)(const Addr semaphore)
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{
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struct semaphore_info* p;
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tl_assert(semaphore < semaphore + 1);
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p = drd_semaphore_get_or_allocate(semaphore);
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tl_assert(p);
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p->waiters++;
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if ((Word)(p->waiters) <= 0)
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{
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SemaphoreErrInfo sei = { DRD_(thread_get_running_tid)(), semaphore };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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SemaphoreErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Invalid semaphore",
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&sei);
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}
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}
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/**
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* Called after sem_wait() finished.
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* @note Some C libraries do not set the 'waited' value correctly.
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*/
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void DRD_(semaphore_post_wait)(const DrdThreadId tid, const Addr semaphore,
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const Bool waited)
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{
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struct semaphore_info* p;
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Segment* sg;
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tl_assert(waited == 0 || waited == 1);
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p = semaphore_get(semaphore);
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_wait 0x%lx value %u -> %u%s",
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DRD_(thread_get_running_tid)(), semaphore,
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p ? p->value : 0, p ? p->value - waited : 0,
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waited ? "" : " (did not wait)");
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if (p) {
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p->waiters--;
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p->value -= waited;
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}
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/*
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* Note: if another thread destroyed and reinitialized a semaphore while
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* the current thread was waiting in sem_wait, p->waiters may have been
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* set to zero by drd_semaphore_initialize() after
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* DRD_(semaphore_pre_wait)() has finished before
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* DRD_(semaphore_post_wait)() has been called.
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*/
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if (p == NULL || (Int)(p->value) < 0 || (Word)(p->waiters) < 0)
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{
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SemaphoreErrInfo sei = { DRD_(thread_get_running_tid)(), semaphore };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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SemaphoreErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Invalid semaphore",
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&sei);
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return;
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}
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if (!waited)
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return;
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if (p->waits_to_skip > 0)
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p->waits_to_skip--;
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else
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{
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sg = drd_segment_pop(p);
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tl_assert(sg);
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if (p->last_sem_post_tid != tid
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&& p->last_sem_post_tid != DRD_INVALID_THREADID)
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{
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DRD_(thread_new_segment_and_combine_vc)(tid, sg);
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}
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else
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DRD_(thread_new_segment)(tid);
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s_semaphore_segment_creation_count++;
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DRD_(sg_put)(sg);
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}
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}
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/** Called before sem_post(). */
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void DRD_(semaphore_pre_post)(const DrdThreadId tid, const Addr semaphore)
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{
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struct semaphore_info* p;
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Segment* sg;
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p = drd_semaphore_get_or_allocate(semaphore);
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p->value++;
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if (s_trace_semaphore)
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DRD_(trace_msg)("[%u] sem_post 0x%lx value %u -> %u",
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DRD_(thread_get_running_tid)(),
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semaphore, p->value - 1, p->value);
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p->last_sem_post_tid = tid;
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sg = 0;
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DRD_(thread_get_latest_segment)(&sg, tid);
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tl_assert(sg);
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drd_segment_push(p, sg);
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DRD_(thread_new_segment)(tid);
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s_semaphore_segment_creation_count++;
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}
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/** Called after sem_post() finished. */
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void DRD_(semaphore_post_post)(const DrdThreadId tid, const Addr semaphore,
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const Bool succeeded)
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{
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/*
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* Note: it is hard to implement the sem_post() wrapper correctly in
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* case sem_post() returns an error code. This is because handling this
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* case correctly requires restoring the vector clock associated with
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* the semaphore to its original value here. In order to do that without
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* introducing a race condition, extra locking has to be added around
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* each semaphore call. Such extra locking would have to be added in
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* drd_pthread_intercepts.c. However, it is hard to implement
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* synchronization in drd_pthread_intercepts.c in a portable way without
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* calling already redirected functions.
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*/
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}
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ULong DRD_(get_semaphore_segment_creation_count)(void)
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{
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return s_semaphore_segment_creation_count;
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}
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