742bde12f3
Rename the macro to make things shorter and more comprehensible. For both meson and make builds, keep the old macro around for backward compatibility. Signed-off-by: Bruce Richardson <bruce.richardson@intel.com>
714 lines
17 KiB
C
714 lines
17 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2015 Intel Corporation
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/types.h>
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#include <errno.h>
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#include <sched.h>
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#include <dlfcn.h>
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#include <rte_log.h>
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#include "lthread_api.h"
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#include "pthread_shim.h"
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#define RTE_LOGTYPE_PTHREAD_SHIM RTE_LOGTYPE_USER3
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#define POSIX_ERRNO(x) (x)
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/* some releases of FreeBSD 10, e.g. 10.0, don't have CPU_COUNT macro */
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#ifndef CPU_COUNT
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#define CPU_COUNT(x) __cpu_count(x)
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static inline unsigned int
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__cpu_count(const rte_cpuset_t *cpuset)
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{
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unsigned int i, count = 0;
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for (i = 0; i < RTE_MAX_LCORE; i++)
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if (CPU_ISSET(i, cpuset))
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count++;
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return count;
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}
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#endif
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/*
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* this flag determines at run time if we override pthread
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* calls and map then to equivalent lthread calls
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* or of we call the standard pthread function
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*/
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static __thread int override;
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/*
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* this structures contains function pointers that will be
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* initialised to the loaded address of the real
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* pthread library API functions
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*/
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struct pthread_lib_funcs {
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int (*f_pthread_barrier_destroy)
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(pthread_barrier_t *);
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int (*f_pthread_barrier_init)
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(pthread_barrier_t *, const pthread_barrierattr_t *, unsigned);
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int (*f_pthread_barrier_wait)
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(pthread_barrier_t *);
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int (*f_pthread_cond_broadcast)
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(pthread_cond_t *);
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int (*f_pthread_cond_destroy)
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(pthread_cond_t *);
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int (*f_pthread_cond_init)
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(pthread_cond_t *, const pthread_condattr_t *);
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int (*f_pthread_cond_signal)
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(pthread_cond_t *);
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int (*f_pthread_cond_timedwait)
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(pthread_cond_t *, pthread_mutex_t *, const struct timespec *);
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int (*f_pthread_cond_wait)
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(pthread_cond_t *, pthread_mutex_t *);
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int (*f_pthread_create)
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(pthread_t *, const pthread_attr_t *, void *(*)(void *), void *);
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int (*f_pthread_detach)
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(pthread_t);
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int (*f_pthread_equal)
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(pthread_t, pthread_t);
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void (*f_pthread_exit)
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(void *);
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void * (*f_pthread_getspecific)
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(pthread_key_t);
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int (*f_pthread_getcpuclockid)
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(pthread_t, clockid_t *);
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int (*f_pthread_join)
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(pthread_t, void **);
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int (*f_pthread_key_create)
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(pthread_key_t *, void (*) (void *));
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int (*f_pthread_key_delete)
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(pthread_key_t);
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int (*f_pthread_mutex_destroy)
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(pthread_mutex_t *__mutex);
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int (*f_pthread_mutex_init)
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(pthread_mutex_t *__mutex, const pthread_mutexattr_t *);
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int (*f_pthread_mutex_lock)
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(pthread_mutex_t *__mutex);
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int (*f_pthread_mutex_trylock)
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(pthread_mutex_t *__mutex);
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int (*f_pthread_mutex_timedlock)
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(pthread_mutex_t *__mutex, const struct timespec *);
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int (*f_pthread_mutex_unlock)
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(pthread_mutex_t *__mutex);
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int (*f_pthread_once)
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(pthread_once_t *, void (*) (void));
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int (*f_pthread_rwlock_destroy)
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(pthread_rwlock_t *__rwlock);
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int (*f_pthread_rwlock_init)
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(pthread_rwlock_t *__rwlock, const pthread_rwlockattr_t *);
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int (*f_pthread_rwlock_rdlock)
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(pthread_rwlock_t *__rwlock);
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int (*f_pthread_rwlock_timedrdlock)
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(pthread_rwlock_t *__rwlock, const struct timespec *);
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int (*f_pthread_rwlock_timedwrlock)
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(pthread_rwlock_t *__rwlock, const struct timespec *);
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int (*f_pthread_rwlock_tryrdlock)
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(pthread_rwlock_t *__rwlock);
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int (*f_pthread_rwlock_trywrlock)
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(pthread_rwlock_t *__rwlock);
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int (*f_pthread_rwlock_unlock)
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(pthread_rwlock_t *__rwlock);
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int (*f_pthread_rwlock_wrlock)
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(pthread_rwlock_t *__rwlock);
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pthread_t (*f_pthread_self)
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(void);
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int (*f_pthread_setspecific)
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(pthread_key_t, const void *);
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int (*f_pthread_spin_init)
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(pthread_spinlock_t *__spin, int);
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int (*f_pthread_spin_destroy)
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(pthread_spinlock_t *__spin);
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int (*f_pthread_spin_lock)
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(pthread_spinlock_t *__spin);
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int (*f_pthread_spin_trylock)
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(pthread_spinlock_t *__spin);
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int (*f_pthread_spin_unlock)
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(pthread_spinlock_t *__spin);
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int (*f_pthread_cancel)
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(pthread_t);
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int (*f_pthread_setcancelstate)
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(int, int *);
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int (*f_pthread_setcanceltype)
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(int, int *);
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void (*f_pthread_testcancel)
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(void);
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int (*f_pthread_getschedparam)
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(pthread_t pthread, int *, struct sched_param *);
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int (*f_pthread_setschedparam)
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(pthread_t, int, const struct sched_param *);
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int (*f_pthread_yield)
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(void);
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int (*f_pthread_setaffinity_np)
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(pthread_t thread, size_t cpusetsize, const rte_cpuset_t *cpuset);
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int (*f_nanosleep)
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(const struct timespec *req, struct timespec *rem);
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} _sys_pthread_funcs = {
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.f_pthread_barrier_destroy = NULL,
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};
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/*
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* this macro obtains the loaded address of a library function
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* and saves it.
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*/
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static void *__libc_dl_handle = RTLD_NEXT;
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#define get_addr_of_loaded_symbol(name) do { \
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char *error_str; \
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_sys_pthread_funcs.f_##name = dlsym(__libc_dl_handle, (#name)); \
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error_str = dlerror(); \
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if (error_str != NULL) { \
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fprintf(stderr, "%s\n", error_str); \
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} \
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} while (0)
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/*
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* The constructor function initialises the
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* function pointers for pthread library functions
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*/
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RTE_INIT(pthread_intercept_ctor)
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{
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override = 0;
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/*
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* Get the original functions
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*/
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get_addr_of_loaded_symbol(pthread_barrier_destroy);
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get_addr_of_loaded_symbol(pthread_barrier_init);
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get_addr_of_loaded_symbol(pthread_barrier_wait);
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get_addr_of_loaded_symbol(pthread_cond_broadcast);
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get_addr_of_loaded_symbol(pthread_cond_destroy);
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get_addr_of_loaded_symbol(pthread_cond_init);
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get_addr_of_loaded_symbol(pthread_cond_signal);
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get_addr_of_loaded_symbol(pthread_cond_timedwait);
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get_addr_of_loaded_symbol(pthread_cond_wait);
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get_addr_of_loaded_symbol(pthread_create);
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get_addr_of_loaded_symbol(pthread_detach);
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get_addr_of_loaded_symbol(pthread_equal);
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get_addr_of_loaded_symbol(pthread_exit);
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get_addr_of_loaded_symbol(pthread_getspecific);
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get_addr_of_loaded_symbol(pthread_getcpuclockid);
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get_addr_of_loaded_symbol(pthread_join);
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get_addr_of_loaded_symbol(pthread_key_create);
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get_addr_of_loaded_symbol(pthread_key_delete);
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get_addr_of_loaded_symbol(pthread_mutex_destroy);
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get_addr_of_loaded_symbol(pthread_mutex_init);
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get_addr_of_loaded_symbol(pthread_mutex_lock);
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get_addr_of_loaded_symbol(pthread_mutex_trylock);
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get_addr_of_loaded_symbol(pthread_mutex_timedlock);
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get_addr_of_loaded_symbol(pthread_mutex_unlock);
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get_addr_of_loaded_symbol(pthread_once);
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get_addr_of_loaded_symbol(pthread_rwlock_destroy);
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get_addr_of_loaded_symbol(pthread_rwlock_init);
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get_addr_of_loaded_symbol(pthread_rwlock_rdlock);
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get_addr_of_loaded_symbol(pthread_rwlock_timedrdlock);
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get_addr_of_loaded_symbol(pthread_rwlock_timedwrlock);
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get_addr_of_loaded_symbol(pthread_rwlock_tryrdlock);
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get_addr_of_loaded_symbol(pthread_rwlock_trywrlock);
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get_addr_of_loaded_symbol(pthread_rwlock_unlock);
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get_addr_of_loaded_symbol(pthread_rwlock_wrlock);
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get_addr_of_loaded_symbol(pthread_self);
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get_addr_of_loaded_symbol(pthread_setspecific);
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get_addr_of_loaded_symbol(pthread_spin_init);
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get_addr_of_loaded_symbol(pthread_spin_destroy);
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get_addr_of_loaded_symbol(pthread_spin_lock);
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get_addr_of_loaded_symbol(pthread_spin_trylock);
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get_addr_of_loaded_symbol(pthread_spin_unlock);
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get_addr_of_loaded_symbol(pthread_cancel);
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get_addr_of_loaded_symbol(pthread_setcancelstate);
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get_addr_of_loaded_symbol(pthread_setcanceltype);
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get_addr_of_loaded_symbol(pthread_testcancel);
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get_addr_of_loaded_symbol(pthread_getschedparam);
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get_addr_of_loaded_symbol(pthread_setschedparam);
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get_addr_of_loaded_symbol(pthread_yield);
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get_addr_of_loaded_symbol(pthread_setaffinity_np);
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get_addr_of_loaded_symbol(nanosleep);
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}
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/*
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* Enable/Disable pthread override
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* state
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* 0 disable
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* 1 enable
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*/
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void pthread_override_set(int state)
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{
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override = state;
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}
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/*
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* Return pthread override state
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* return
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* 0 disable
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* 1 enable
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*/
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int pthread_override_get(void)
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{
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return override;
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}
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/*
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* This macro is used to catch and log
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* invocation of stubs for unimplemented pthread
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* API functions.
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*/
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#define NOT_IMPLEMENTED do { \
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if (override) { \
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RTE_LOG(WARNING, \
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PTHREAD_SHIM, \
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"WARNING %s NOT IMPLEMENTED\n", \
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__func__); \
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} \
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} while (0)
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/*
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* pthread API override functions follow
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* Note in this example code only a subset of functions are
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* implemented.
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*
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* The stub functions provided will issue a warning log
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* message if an unimplemented function is invoked
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*
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*/
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int pthread_barrier_destroy(pthread_barrier_t *a)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_barrier_destroy(a);
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}
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int
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pthread_barrier_init(pthread_barrier_t *a,
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const pthread_barrierattr_t *b, unsigned c)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_barrier_init(a, b, c);
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}
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int pthread_barrier_wait(pthread_barrier_t *a)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_barrier_wait(a);
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}
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int pthread_cond_broadcast(pthread_cond_t *cond)
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{
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if (override) {
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lthread_cond_broadcast(*(struct lthread_cond **)cond);
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return 0;
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}
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return _sys_pthread_funcs.f_pthread_cond_broadcast(cond);
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}
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int pthread_mutex_destroy(pthread_mutex_t *mutex)
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{
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if (override)
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return lthread_mutex_destroy(*(struct lthread_mutex **)mutex);
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return _sys_pthread_funcs.f_pthread_mutex_destroy(mutex);
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}
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int pthread_cond_destroy(pthread_cond_t *cond)
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{
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if (override)
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return lthread_cond_destroy(*(struct lthread_cond **)cond);
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return _sys_pthread_funcs.f_pthread_cond_destroy(cond);
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}
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int pthread_cond_init(pthread_cond_t *cond, const pthread_condattr_t *attr)
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{
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if (override)
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return lthread_cond_init(NULL,
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(struct lthread_cond **)cond,
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(const struct lthread_condattr *) attr);
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return _sys_pthread_funcs.f_pthread_cond_init(cond, attr);
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}
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int pthread_cond_signal(pthread_cond_t *cond)
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{
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if (override) {
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lthread_cond_signal(*(struct lthread_cond **)cond);
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return 0;
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}
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return _sys_pthread_funcs.f_pthread_cond_signal(cond);
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}
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int
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pthread_cond_timedwait(pthread_cond_t *__restrict cond,
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pthread_mutex_t *__restrict mutex,
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const struct timespec *__restrict time)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_cond_timedwait(cond, mutex, time);
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}
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int pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex)
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{
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if (override) {
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pthread_mutex_unlock(mutex);
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int rv = lthread_cond_wait(*(struct lthread_cond **)cond, 0);
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pthread_mutex_lock(mutex);
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return rv;
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}
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return _sys_pthread_funcs.f_pthread_cond_wait(cond, mutex);
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}
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int
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pthread_create(pthread_t *__restrict tid,
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const pthread_attr_t *__restrict attr,
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lthread_func_t func,
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void *__restrict arg)
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{
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if (override) {
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int lcore = -1;
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if (attr != NULL) {
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/* determine CPU being requested */
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rte_cpuset_t cpuset;
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CPU_ZERO(&cpuset);
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pthread_attr_getaffinity_np(attr,
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sizeof(rte_cpuset_t),
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&cpuset);
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if (CPU_COUNT(&cpuset) != 1)
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return POSIX_ERRNO(EINVAL);
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for (lcore = 0; lcore < LTHREAD_MAX_LCORES; lcore++) {
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if (!CPU_ISSET(lcore, &cpuset))
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continue;
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break;
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}
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}
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return lthread_create((struct lthread **)tid, lcore,
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func, arg);
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}
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return _sys_pthread_funcs.f_pthread_create(tid, attr, func, arg);
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}
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int pthread_detach(pthread_t tid)
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{
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if (override) {
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struct lthread *lt = (struct lthread *)tid;
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if (lt == lthread_current()) {
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lthread_detach();
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return 0;
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}
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NOT_IMPLEMENTED;
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}
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return _sys_pthread_funcs.f_pthread_detach(tid);
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}
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int pthread_equal(pthread_t a, pthread_t b)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_equal(a, b);
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}
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void pthread_exit_override(void *v)
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{
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if (override) {
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lthread_exit(v);
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return;
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}
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_sys_pthread_funcs.f_pthread_exit(v);
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}
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void
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*pthread_getspecific(pthread_key_t key)
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{
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if (override)
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return lthread_getspecific((unsigned int) key);
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return _sys_pthread_funcs.f_pthread_getspecific(key);
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}
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int pthread_getcpuclockid(pthread_t a, clockid_t *b)
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{
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NOT_IMPLEMENTED;
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return _sys_pthread_funcs.f_pthread_getcpuclockid(a, b);
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}
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int pthread_join(pthread_t tid, void **val)
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{
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if (override)
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return lthread_join((struct lthread *)tid, val);
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return _sys_pthread_funcs.f_pthread_join(tid, val);
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}
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int pthread_key_create(pthread_key_t *keyptr, void (*dtor) (void *))
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{
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if (override)
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return lthread_key_create((unsigned int *)keyptr, dtor);
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return _sys_pthread_funcs.f_pthread_key_create(keyptr, dtor);
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}
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int pthread_key_delete(pthread_key_t key)
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{
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if (override) {
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lthread_key_delete((unsigned int) key);
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return 0;
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}
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return _sys_pthread_funcs.f_pthread_key_delete(key);
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}
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int
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pthread_mutex_init(pthread_mutex_t *mutex, const pthread_mutexattr_t *attr)
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{
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if (override)
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return lthread_mutex_init(NULL,
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(struct lthread_mutex **)mutex,
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(const struct lthread_mutexattr *)attr);
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return _sys_pthread_funcs.f_pthread_mutex_init(mutex, attr);
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}
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int pthread_mutex_lock(pthread_mutex_t *mutex)
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{
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if (override)
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return lthread_mutex_lock(*(struct lthread_mutex **)mutex);
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return _sys_pthread_funcs.f_pthread_mutex_lock(mutex);
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}
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int pthread_mutex_trylock(pthread_mutex_t *mutex)
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{
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if (override)
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return lthread_mutex_trylock(*(struct lthread_mutex **)mutex);
|
|
return _sys_pthread_funcs.f_pthread_mutex_trylock(mutex);
|
|
}
|
|
|
|
int pthread_mutex_timedlock(pthread_mutex_t *mutex, const struct timespec *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_mutex_timedlock(mutex, b);
|
|
}
|
|
|
|
int pthread_mutex_unlock(pthread_mutex_t *mutex)
|
|
{
|
|
if (override)
|
|
return lthread_mutex_unlock(*(struct lthread_mutex **)mutex);
|
|
return _sys_pthread_funcs.f_pthread_mutex_unlock(mutex);
|
|
}
|
|
|
|
int pthread_once(pthread_once_t *a, void (b) (void))
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_once(a, b);
|
|
}
|
|
|
|
int pthread_rwlock_destroy(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_destroy(a);
|
|
}
|
|
|
|
int pthread_rwlock_init(pthread_rwlock_t *a, const pthread_rwlockattr_t *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_init(a, b);
|
|
}
|
|
|
|
int pthread_rwlock_rdlock(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_rdlock(a);
|
|
}
|
|
|
|
int pthread_rwlock_timedrdlock(pthread_rwlock_t *a, const struct timespec *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_timedrdlock(a, b);
|
|
}
|
|
|
|
int pthread_rwlock_timedwrlock(pthread_rwlock_t *a, const struct timespec *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_timedwrlock(a, b);
|
|
}
|
|
|
|
int pthread_rwlock_tryrdlock(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_tryrdlock(a);
|
|
}
|
|
|
|
int pthread_rwlock_trywrlock(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_trywrlock(a);
|
|
}
|
|
|
|
int pthread_rwlock_unlock(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_unlock(a);
|
|
}
|
|
|
|
int pthread_rwlock_wrlock(pthread_rwlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_rwlock_wrlock(a);
|
|
}
|
|
|
|
#ifdef RTE_EXEC_ENV_LINUX
|
|
int
|
|
pthread_yield(void)
|
|
{
|
|
if (override) {
|
|
lthread_yield();
|
|
return 0;
|
|
}
|
|
return _sys_pthread_funcs.f_pthread_yield();
|
|
}
|
|
#else
|
|
void
|
|
pthread_yield(void)
|
|
{
|
|
if (override)
|
|
lthread_yield();
|
|
else
|
|
_sys_pthread_funcs.f_pthread_yield();
|
|
}
|
|
#endif
|
|
|
|
pthread_t pthread_self(void)
|
|
{
|
|
if (override)
|
|
return (pthread_t) lthread_current();
|
|
return _sys_pthread_funcs.f_pthread_self();
|
|
}
|
|
|
|
int pthread_setspecific(pthread_key_t key, const void *data)
|
|
{
|
|
if (override) {
|
|
int rv = lthread_setspecific((unsigned int)key, data);
|
|
return rv;
|
|
}
|
|
return _sys_pthread_funcs.f_pthread_setspecific(key, data);
|
|
}
|
|
|
|
int pthread_spin_init(pthread_spinlock_t *a, int b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_spin_init(a, b);
|
|
}
|
|
|
|
int pthread_spin_destroy(pthread_spinlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_spin_destroy(a);
|
|
}
|
|
|
|
int pthread_spin_lock(pthread_spinlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_spin_lock(a);
|
|
}
|
|
|
|
int pthread_spin_trylock(pthread_spinlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_spin_trylock(a);
|
|
}
|
|
|
|
int pthread_spin_unlock(pthread_spinlock_t *a)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_spin_unlock(a);
|
|
}
|
|
|
|
int pthread_cancel(pthread_t tid)
|
|
{
|
|
if (override) {
|
|
lthread_cancel(*(struct lthread **)tid);
|
|
return 0;
|
|
}
|
|
return _sys_pthread_funcs.f_pthread_cancel(tid);
|
|
}
|
|
|
|
int pthread_setcancelstate(int a, int *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_setcancelstate(a, b);
|
|
}
|
|
|
|
int pthread_setcanceltype(int a, int *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_setcanceltype(a, b);
|
|
}
|
|
|
|
void pthread_testcancel(void)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_testcancel();
|
|
}
|
|
|
|
|
|
int pthread_getschedparam(pthread_t tid, int *a, struct sched_param *b)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_getschedparam(tid, a, b);
|
|
}
|
|
|
|
int pthread_setschedparam(pthread_t a, int b, const struct sched_param *c)
|
|
{
|
|
NOT_IMPLEMENTED;
|
|
return _sys_pthread_funcs.f_pthread_setschedparam(a, b, c);
|
|
}
|
|
|
|
|
|
int nanosleep(const struct timespec *req, struct timespec *rem)
|
|
{
|
|
if (override) {
|
|
uint64_t ns = req->tv_sec * 1000000000 + req->tv_nsec;
|
|
|
|
lthread_sleep(ns);
|
|
return 0;
|
|
}
|
|
return _sys_pthread_funcs.f_nanosleep(req, rem);
|
|
}
|
|
|
|
int
|
|
pthread_setaffinity_np(pthread_t thread, size_t cpusetsize,
|
|
const rte_cpuset_t *cpuset)
|
|
{
|
|
if (override) {
|
|
/* we only allow affinity with a single CPU */
|
|
if (CPU_COUNT(cpuset) != 1)
|
|
return POSIX_ERRNO(EINVAL);
|
|
|
|
/* we only allow the current thread to sets its own affinity */
|
|
struct lthread *lt = (struct lthread *)thread;
|
|
|
|
if (lthread_current() != lt)
|
|
return POSIX_ERRNO(EINVAL);
|
|
|
|
/* determine the CPU being requested */
|
|
int i;
|
|
|
|
for (i = 0; i < LTHREAD_MAX_LCORES; i++) {
|
|
if (!CPU_ISSET(i, cpuset))
|
|
continue;
|
|
break;
|
|
}
|
|
/* check requested core is allowed */
|
|
if (i == LTHREAD_MAX_LCORES)
|
|
return POSIX_ERRNO(EINVAL);
|
|
|
|
/* finally we can set affinity to the requested lcore */
|
|
lthread_set_affinity(i);
|
|
return 0;
|
|
}
|
|
return _sys_pthread_funcs.f_pthread_setaffinity_np(thread, cpusetsize,
|
|
cpuset);
|
|
}
|