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https://github.com/Zenithsiz/ftmemsim-valgrind.git
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457 lines
14 KiB
C
457 lines
14 KiB
C
/*
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This file is part of drd, a data race detector.
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Copyright (C) 2006-2008 Bart Van Assche
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bart.vanassche@gmail.com
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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_barrier.h"
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#include "drd_clientobj.h"
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#include "drd_error.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_oset.h"
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#include "pub_tool_threadstate.h" // VG_(get_running_tid)()
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// Type definitions.
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/** Information associated with one thread participating in a barrier. */
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struct barrier_thread_info
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{
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UWord tid; // A DrdThreadId
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Word iteration; // iteration of last pthread_barrier_wait()
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// call thread tid participated in.
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Segment* sg[2]; // Segments of the last two
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// pthread_barrier() calls by thread tid.
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};
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// Local functions.
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static void barrier_cleanup(struct barrier_info* p);
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static const char* barrier_get_typename(struct barrier_info* const p);
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static const char* barrier_type_name(const BarrierT bt);
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// Local variables.
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static Bool s_trace_barrier = False;
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static ULong s_barrier_segment_creation_count;
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// Function definitions.
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void barrier_set_trace(const Bool trace_barrier)
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{
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s_trace_barrier = trace_barrier;
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}
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/** Initialize the structure *p with the specified thread ID and iteration
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* information. */
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static void barrier_thread_initialize(struct barrier_thread_info* const p,
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const DrdThreadId tid,
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const Word iteration)
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{
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p->tid = tid;
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p->iteration = iteration;
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p->sg[0] = 0;
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p->sg[1] = 0;
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}
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/** Deallocate the memory that was allocated in barrier_thread_initialize(). */
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static void barrier_thread_destroy(struct barrier_thread_info* const p)
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{
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tl_assert(p);
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sg_put(p->sg[0]);
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sg_put(p->sg[1]);
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}
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/** Initialize the structure *p with the specified client-side barrier address,
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* barrier object size and number of participants in each barrier. */
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static
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void barrier_initialize(struct barrier_info* const p,
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const Addr barrier,
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const BarrierT barrier_type,
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const Word count)
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{
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tl_assert(barrier != 0);
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tl_assert(barrier_type == pthread_barrier || barrier_type == gomp_barrier);
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tl_assert(p->a1 == barrier);
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p->cleanup = (void(*)(DrdClientobj*))barrier_cleanup;
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p->barrier_type = barrier_type;
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p->count = count;
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p->pre_iteration = 0;
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p->post_iteration = 0;
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p->pre_waiters_left = count;
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p->post_waiters_left = count;
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tl_assert(sizeof(((struct barrier_thread_info*)0)->tid) == sizeof(Word));
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tl_assert(sizeof(((struct barrier_thread_info*)0)->tid)
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>= sizeof(DrdThreadId));
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p->oset = VG_(OSetGen_Create)(0, 0, VG_(malloc), "drd.barrier.bi.1",
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VG_(free));
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}
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/** Deallocate the memory allocated by barrier_initialize() and in p->oset.
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* Called by clientobj_destroy().
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*/
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void barrier_cleanup(struct barrier_info* p)
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{
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struct barrier_thread_info* q;
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tl_assert(p);
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if (p->pre_waiters_left != p->count)
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{
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BarrierErrInfo bei = { p->a1 };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Destruction of barrier that is being waited"
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" upon",
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&bei);
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}
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VG_(OSetGen_ResetIter)(p->oset);
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for ( ; (q = VG_(OSetGen_Next)(p->oset)) != 0; )
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{
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barrier_thread_destroy(q);
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}
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VG_(OSetGen_Destroy)(p->oset);
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}
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/** Look up the client-side barrier address barrier in s_barrier[]. If not
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* found, add it. */
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static
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struct barrier_info*
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barrier_get_or_allocate(const Addr barrier,
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const BarrierT barrier_type, const Word count)
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{
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struct barrier_info *p;
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tl_assert(barrier_type == pthread_barrier || barrier_type == gomp_barrier);
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tl_assert(offsetof(DrdClientobj, barrier) == 0);
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p = &clientobj_get(barrier, ClientBarrier)->barrier;
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if (p == 0)
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{
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p = &clientobj_add(barrier, ClientBarrier)->barrier;
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barrier_initialize(p, barrier, barrier_type, count);
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}
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return p;
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}
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/** Look up the address of the information associated with the client-side
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* barrier object. */
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static struct barrier_info* barrier_get(const Addr barrier)
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{
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tl_assert(offsetof(DrdClientobj, barrier) == 0);
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return &clientobj_get(barrier, ClientBarrier)->barrier;
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}
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/** Initialize a barrier with client address barrier, client size size, and
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* where count threads participate in each barrier.
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* Called before pthread_barrier_init().
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*/
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void barrier_init(const Addr barrier,
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const BarrierT barrier_type, const Word count,
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const Bool reinitialization)
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{
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struct barrier_info* p;
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tl_assert(barrier_type == pthread_barrier || barrier_type == gomp_barrier);
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if (count == 0)
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{
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BarrierErrInfo bei = { barrier };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"pthread_barrier_init: 'count' argument is zero",
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&bei);
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}
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if (! reinitialization && barrier_type == pthread_barrier)
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{
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p = barrier_get(barrier);
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if (p)
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{
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BarrierErrInfo bei = { barrier };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Barrier reinitialization",
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&bei);
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}
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}
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p = barrier_get_or_allocate(barrier, barrier_type, count);
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if (s_trace_barrier)
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{
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if (reinitialization)
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{
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VG_(message)(Vg_UserMsg,
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"[%d/%d] barrier_reinit %s 0x%lx count %ld -> %ld",
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VG_(get_running_tid)(),
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thread_get_running_tid(),
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barrier_get_typename(p),
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barrier,
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p->count,
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count);
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}
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else
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{
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VG_(message)(Vg_UserMsg,
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"[%d/%d] barrier_init %s 0x%lx",
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VG_(get_running_tid)(),
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thread_get_running_tid(),
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barrier_get_typename(p),
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barrier);
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}
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}
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if (reinitialization && p->count != count)
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{
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if (p->pre_waiters_left != p->count || p->post_waiters_left != p->count)
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{
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BarrierErrInfo bei = { p->a1 };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Reinitialization of barrier with active"
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" waiters",
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&bei);
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}
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p->count = count;
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}
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}
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/** Called after pthread_barrier_destroy(). */
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void barrier_destroy(const Addr barrier, const BarrierT barrier_type)
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{
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struct barrier_info* p;
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p = barrier_get(barrier);
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if (s_trace_barrier)
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{
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VG_(message)(Vg_UserMsg,
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"[%d/%d] barrier_destroy %s 0x%lx",
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VG_(get_running_tid)(),
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thread_get_running_tid(),
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barrier_get_typename(p),
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barrier);
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}
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if (p == 0)
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{
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GenericErrInfo GEI;
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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 barrier",
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&GEI);
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return;
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}
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if (p->pre_waiters_left != p->count || p->post_waiters_left != p->count)
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{
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BarrierErrInfo bei = { p->a1 };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Destruction of a barrier with active waiters",
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&bei);
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}
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clientobj_remove(p->a1, ClientBarrier);
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}
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/** Called before pthread_barrier_wait(). */
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void barrier_pre_wait(const DrdThreadId tid, const Addr barrier,
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const BarrierT barrier_type)
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{
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struct barrier_info* p;
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struct barrier_thread_info* q;
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const UWord word_tid = tid;
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p = barrier_get(barrier);
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if (p == 0 && barrier_type == gomp_barrier)
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{
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VG_(message)(Vg_UserMsg, "");
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VG_(message)(Vg_UserMsg,
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"Please verify whether gcc has been configured"
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" with option --disable-linux-futex.");
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VG_(message)(Vg_UserMsg,
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"See also the section about OpenMP in the DRD manual.");
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VG_(message)(Vg_UserMsg, "");
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}
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tl_assert(p);
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if (s_trace_barrier)
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{
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VG_(message)(Vg_UserMsg,
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"[%d/%d] barrier_pre_wait %s 0x%lx iteration %ld",
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VG_(get_running_tid)(),
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thread_get_running_tid(),
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barrier_get_typename(p),
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barrier,
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p->pre_iteration);
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}
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q = VG_(OSetGen_Lookup)(p->oset, &word_tid);
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if (q == 0)
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{
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q = VG_(OSetGen_AllocNode)(p->oset, sizeof(*q));
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barrier_thread_initialize(q, tid, p->pre_iteration);
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VG_(OSetGen_Insert)(p->oset, q);
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tl_assert(VG_(OSetGen_Lookup)(p->oset, &word_tid) == q);
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}
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thread_get_latest_segment(&q->sg[p->pre_iteration], tid);
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if (--p->pre_waiters_left <= 0)
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{
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p->pre_iteration = 1 - p->pre_iteration;
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p->pre_waiters_left = p->count;
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}
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}
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/** Called after pthread_barrier_wait(). */
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void barrier_post_wait(const DrdThreadId tid, const Addr barrier,
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const BarrierT barrier_type, const Bool waited)
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{
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struct barrier_info* p;
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p = barrier_get(barrier);
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if (s_trace_barrier)
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{
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VG_(message)(Vg_UserMsg,
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"[%d/%d] barrier_post_wait %s 0x%lx iteration %ld",
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VG_(get_running_tid)(),
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tid,
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p ? barrier_get_typename(p) : "(?)",
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barrier,
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p ? p->post_iteration : -1);
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}
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/* If p == 0, this means that the barrier has been destroyed after */
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/* *_barrier_wait() returned and before this function was called. Just */
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/* return in that case. */
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if (p == 0)
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return;
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if (waited)
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{
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const UWord word_tid = tid;
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struct barrier_thread_info* q;
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struct barrier_thread_info* r;
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q = VG_(OSetGen_Lookup)(p->oset, &word_tid);
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if (q == 0)
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{
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BarrierErrInfo bei = { p->a1 };
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VG_(maybe_record_error)(VG_(get_running_tid)(),
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BarrierErr,
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VG_(get_IP)(VG_(get_running_tid)()),
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"Error in barrier implementation"
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" -- barrier_wait() started before"
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" barrier_destroy() and finished after"
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" barrier_destroy()",
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&bei);
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q = VG_(OSetGen_AllocNode)(p->oset, sizeof(*q));
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barrier_thread_initialize(q, tid, p->pre_iteration);
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VG_(OSetGen_Insert)(p->oset, q);
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tl_assert(VG_(OSetGen_Lookup)(p->oset, &word_tid) == q);
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}
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VG_(OSetGen_ResetIter)(p->oset);
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for ( ; (r = VG_(OSetGen_Next)(p->oset)) != 0; )
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{
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if (r != q)
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{
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tl_assert(r->sg[p->post_iteration]);
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thread_combine_vc2(tid, &r->sg[p->post_iteration]->vc);
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}
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}
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thread_new_segment(tid);
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s_barrier_segment_creation_count++;
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if (--p->post_waiters_left <= 0)
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{
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p->post_iteration = 1 - p->post_iteration;
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p->post_waiters_left = p->count;
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}
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}
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}
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/** Call this function when thread tid stops to exist. */
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void barrier_thread_delete(const DrdThreadId tid)
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{
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struct barrier_info* p;
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clientobj_resetiter();
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for ( ; (p = &clientobj_next(ClientBarrier)->barrier) != 0; )
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{
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struct barrier_thread_info* q;
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const UWord word_tid = tid;
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q = VG_(OSetGen_Remove)(p->oset, &word_tid);
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/* q is only non-zero if the barrier object has been used by thread tid
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* after the barrier_init() call and before the thread finished.
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*/
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if (q)
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{
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barrier_thread_destroy(q);
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VG_(OSetGen_FreeNode)(p->oset, q);
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}
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}
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}
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static const char* barrier_get_typename(struct barrier_info* const p)
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{
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tl_assert(p);
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return barrier_type_name(p->barrier_type);
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}
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static const char* barrier_type_name(const BarrierT bt)
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{
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switch (bt)
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{
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case pthread_barrier:
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return "pthread barrier";
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case gomp_barrier:
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return "gomp barrier";
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}
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return "?";
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}
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ULong get_barrier_segment_creation_count(void)
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{
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return s_barrier_segment_creation_count;
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}
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