glibc/include/atomic_wide_counter.h
Florian Weimer 8bd336a00a nptl: Extract <bits/atomic_wide_counter.h> from pthread_cond_common.c
And make it an installed header.  This addresses a few aliasing
violations (which do not seem to result in miscompilation due to
the use of atomics), and also enables use of wide counters in other
parts of the library.

The debug output in nptl/tst-cond22 has been adjusted to print
the 32-bit values instead because it avoids a big-endian/little-endian
difference.

Reviewed-by: Adhemerval Zanella  <adhemerval.zanella@linaro.org>
2021-11-17 12:20:13 +01:00

90 lines
2.8 KiB
C

/* Monotonically increasing wide counters (at least 62 bits).
Copyright (C) 2016-2021 Free Software Foundation, Inc.
This file is part of the GNU C Library.
The GNU C Library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
The GNU C Library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with the GNU C Library; if not, see
<https://www.gnu.org/licenses/>. */
#ifndef _ATOMIC_WIDE_COUNTER_H
#define _ATOMIC_WIDE_COUNTER_H
#include <atomic.h>
#include <bits/atomic_wide_counter.h>
#if __HAVE_64B_ATOMICS
static inline uint64_t
__atomic_wide_counter_load_relaxed (__atomic_wide_counter *c)
{
return atomic_load_relaxed (&c->__value64);
}
static inline uint64_t
__atomic_wide_counter_fetch_add_relaxed (__atomic_wide_counter *c,
unsigned int val)
{
return atomic_fetch_add_relaxed (&c->__value64, val);
}
static inline uint64_t
__atomic_wide_counter_fetch_add_acquire (__atomic_wide_counter *c,
unsigned int val)
{
return atomic_fetch_add_acquire (&c->__value64, val);
}
static inline void
__atomic_wide_counter_add_relaxed (__atomic_wide_counter *c,
unsigned int val)
{
atomic_store_relaxed (&c->__value64,
atomic_load_relaxed (&c->__value64) + val);
}
static uint64_t __attribute__ ((unused))
__atomic_wide_counter_fetch_xor_release (__atomic_wide_counter *c,
unsigned int val)
{
return atomic_fetch_xor_release (&c->__value64, val);
}
#else /* !__HAVE_64B_ATOMICS */
uint64_t __atomic_wide_counter_load_relaxed (__atomic_wide_counter *c)
attribute_hidden;
uint64_t __atomic_wide_counter_fetch_add_relaxed (__atomic_wide_counter *c,
unsigned int op)
attribute_hidden;
static inline uint64_t
__atomic_wide_counter_fetch_add_acquire (__atomic_wide_counter *c,
unsigned int val)
{
uint64_t r = __atomic_wide_counter_fetch_add_relaxed (c, val);
atomic_thread_fence_acquire ();
return r;
}
static inline void
__atomic_wide_counter_add_relaxed (__atomic_wide_counter *c,
unsigned int val)
{
__atomic_wide_counter_fetch_add_relaxed (c, val);
}
#endif /* !__HAVE_64B_ATOMICS */
#endif /* _ATOMIC_WIDE_COUNTER_H */