y2038: nptl: Convert pthread_{clock|timed}join_np to support 64 bit time

The pthread_clockjoin_np and pthread_timedjoin_np have been converted to
support 64 bit time.

This change introduces new futex_timed_wait_cancel64 function in
./sysdeps/nptl/futex-internal.h, which uses futex_time64 where possible
and tries to replace low-level preprocessor macros from
lowlevellock-futex.h
The pthread_{timed|clock}join_np only accept absolute time. Moreover,
there is no need to check for NULL passed as *abstime pointer as
clockwait_tid() always passes struct __timespec64.

For systems with __TIMESIZE != 64 && __WORDSIZE == 32:
- Conversions between 64 bit time to 32 bit are necessary
- Redirection to __pthread_{clock|timed}join_np64 will provide support
  for 64 bit time

Build tests:
./src/scripts/build-many-glibcs.py glibcs

Run-time tests:
- Run specific tests on ARM/x86 32bit systems (qemu):
  https://github.com/lmajewski/meta-y2038 and run tests:
  https://github.com/lmajewski/y2038-tests/commits/master

Above tests were performed with Y2038 redirection applied as well as without
to test the proper usage of both __pthread_{timed|clock}join_np64 and
__pthread_{timed|clock}join_np.

Reviewed-by: Adhemerval Zanella  <adhemerval.zanella@linaro.org>
Reviewed-by: Alistair Francis <alistair.francis@wdc.com>
This commit is contained in:
Lukasz Majewski 2020-07-20 15:50:12 +02:00
parent 12b2fd0ef9
commit 4a14cb87ca
5 changed files with 110 additions and 14 deletions

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@ -458,6 +458,20 @@ extern int __pthread_cond_init (pthread_cond_t *cond,
libc_hidden_proto (__pthread_cond_init)
extern int __pthread_cond_signal (pthread_cond_t *cond);
extern int __pthread_cond_wait (pthread_cond_t *cond, pthread_mutex_t *mutex);
#if __TIMESIZE == 64
# define __pthread_clockjoin_np64 __pthread_clockjoin_np
# define __pthread_timedjoin_np64 __pthread_timedjoin_np
#else
extern int __pthread_clockjoin_np64 (pthread_t threadid, void **thread_return,
clockid_t clockid,
const struct __timespec64 *abstime);
libc_hidden_proto (__pthread_clockjoin_np64)
extern int __pthread_timedjoin_np64 (pthread_t threadid, void **thread_return,
const struct __timespec64 *abstime);
libc_hidden_proto (__pthread_timedjoin_np64)
#endif
extern int __pthread_cond_timedwait (pthread_cond_t *cond,
pthread_mutex_t *mutex,
const struct timespec *abstime);
@ -488,7 +502,7 @@ extern int __pthread_enable_asynccancel (void) attribute_hidden;
extern void __pthread_disable_asynccancel (int oldtype) attribute_hidden;
extern void __pthread_testcancel (void);
extern int __pthread_clockjoin_ex (pthread_t, void **, clockid_t,
const struct timespec *, bool)
const struct __timespec64 *, bool)
attribute_hidden;
extern int __pthread_sigmask (int, const sigset_t *, sigset_t *);
libc_hidden_proto (__pthread_sigmask);

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@ -16,14 +16,27 @@
License along with the GNU C Library; if not, see
<http://www.gnu.org/licenses/>. */
#include <time.h>
#include "pthreadP.h"
int
__pthread_clockjoin_np (pthread_t threadid, void **thread_return,
clockid_t clockid,
const struct timespec *abstime)
__pthread_clockjoin_np64 (pthread_t threadid, void **thread_return,
clockid_t clockid, const struct __timespec64 *abstime)
{
return __pthread_clockjoin_ex (threadid, thread_return,
clockid, abstime, true);
}
#if __TIMESIZE != 64
libc_hidden_def (__pthread_clockjoin_np64)
int
__pthread_clockjoin_np (pthread_t threadid, void **thread_return,
clockid_t clockid, const struct timespec *abstime)
{
struct __timespec64 ts64 = valid_timespec_to_timespec64 (*abstime);
return __pthread_clockjoin_np64 (threadid, thread_return, clockid, &ts64);
}
#endif
weak_alias (__pthread_clockjoin_np, pthread_clockjoin_np)

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@ -20,6 +20,7 @@
#include <atomic.h>
#include <stap-probe.h>
#include <time.h>
#include <futex-internal.h>
static void
cleanup (void *arg)
@ -37,9 +38,11 @@ cleanup (void *arg)
afterwards. The kernel up to version 3.16.3 does not use the private futex
operations for futex wake-up when the clone terminates. */
static int
clockwait_tid (pid_t *tidp, clockid_t clockid, const struct timespec *abstime)
clockwait_tid (pid_t *tidp, clockid_t clockid,
const struct __timespec64 *abstime)
{
pid_t tid;
int ret;
if (! valid_nanoseconds (abstime->tv_nsec))
return EINVAL;
@ -47,11 +50,11 @@ clockwait_tid (pid_t *tidp, clockid_t clockid, const struct timespec *abstime)
/* Repeat until thread terminated. */
while ((tid = *tidp) != 0)
{
struct timespec rt;
struct __timespec64 rt;
/* Get the current time. This can only fail if clockid is
invalid. */
if (__glibc_unlikely (__clock_gettime (clockid, &rt)))
if (__glibc_unlikely (__clock_gettime64 (clockid, &rt)))
return EINVAL;
/* Compute relative timeout. */
@ -70,9 +73,9 @@ clockwait_tid (pid_t *tidp, clockid_t clockid, const struct timespec *abstime)
/* If *tidp == tid, wait until thread terminates or the wait times out.
The kernel up to version 3.16.3 does not use the private futex
operations for futex wake-up when the clone terminates. */
if (lll_futex_timed_wait_cancel (tidp, tid, &rt, LLL_SHARED)
== -ETIMEDOUT)
return ETIMEDOUT;
ret = futex_timed_wait_cancel64 (tidp, tid, &rt, LLL_SHARED);
if (ret == -ETIMEDOUT || ret == -EOVERFLOW)
return -ret;
}
return 0;
@ -80,8 +83,8 @@ clockwait_tid (pid_t *tidp, clockid_t clockid, const struct timespec *abstime)
int
__pthread_clockjoin_ex (pthread_t threadid, void **thread_return,
clockid_t clockid,
const struct timespec *abstime, bool block)
clockid_t clockid,
const struct __timespec64 *abstime, bool block)
{
struct pthread *pd = (struct pthread *) threadid;

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@ -16,13 +16,27 @@
License along with the GNU C Library; if not, see
<https://www.gnu.org/licenses/>. */
#include <time.h>
#include "pthreadP.h"
int
__pthread_timedjoin_np (pthread_t threadid, void **thread_return,
const struct timespec *abstime)
__pthread_timedjoin_np64 (pthread_t threadid, void **thread_return,
const struct __timespec64 *abstime)
{
return __pthread_clockjoin_ex (threadid, thread_return,
CLOCK_REALTIME, abstime, true);
}
#if __TIMESIZE != 64
libc_hidden_def (__pthread_timedjoin_np64)
int
__pthread_timedjoin_np (pthread_t threadid, void **thread_return,
const struct timespec *abstime)
{
struct __timespec64 ts64 = valid_timespec_to_timespec64 (*abstime);
return __pthread_timedjoin_np64 (threadid, thread_return, &ts64);
}
#endif
weak_alias (__pthread_timedjoin_np, pthread_timedjoin_np)

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@ -467,4 +467,56 @@ futex_unlock_pi (unsigned int *futex_word, int private)
}
}
#ifndef __NR_futex_time64
# define __NR_futex_time64 __NR_futex
#endif
static __always_inline int
futex_timed_wait_cancel64 (pid_t *tidp, pid_t tid,
const struct __timespec64 *timeout, int private)
{
int err = INTERNAL_SYSCALL_CANCEL (futex_time64, tidp,
__lll_private_flag
(FUTEX_WAIT, private), tid, timeout);
#ifndef __ASSUME_TIME64_SYSCALLS
if (err == -ENOSYS)
{
if (in_time_t_range (timeout->tv_sec))
{
struct timespec ts32 = valid_timespec64_to_timespec (*timeout);
err = INTERNAL_SYSCALL_CANCEL (futex, tidp,
__lll_private_flag (FUTEX_WAIT,
private),
tid, &ts32);
}
else
err = -EOVERFLOW;
}
#endif
switch (err)
{
case 0:
case -EAGAIN:
case -EINTR:
case -ETIMEDOUT:
case -EDEADLK:
case -ENOSYS:
case -EOVERFLOW: /* Passed absolute timeout uses 64 bit time_t type, but
underlying kernel does not support 64 bit time_t futex
syscalls. */
case -EPERM: /* The caller is not allowed to attach itself to the futex.
Used to check if PI futexes are supported by the
kernel. */
return -err;
case -EINVAL: /* Either due to wrong alignment or due to the timeout not
being normalized. Must have been caused by a glibc or
application bug. */
case -EFAULT: /* Must have been caused by a glibc or application bug. */
/* No other errors are documented at this time. */
default:
futex_fatal_error ();
}
}
#endif /* futex-internal.h */