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Full Discussion: truss results
Special Forums IP Networking truss results Post 302100867 by linuxbynight on Saturday 23rd of December 2006 06:49:12 PM
Old 12-23-2006
truss results

It seems to me that your code might be confused when you are forking off the child. The reason I say this is that it appears that the child is calling accept() which is usually something you would want the server to do to accept a connection request from a client. Additionally, there is a message print that is signifying the message is from the server but it looks like it is being printed by the child.

When you do the fork(), make sure you check the return code and then make the proper decision as to which code you can each process to execute. Providing the actual code snippet here would be helpful to determine if what I am saying is correct.
 

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PTHREAD_ATFORK(3)					     Library Functions Manual						 PTHREAD_ATFORK(3)

NAME
pthread_atfork - register handlers to be called at fork(2) time SYNOPSIS
#include <pthread.h> int pthread_atfork(void (*prepare)(void), void (*parent)(void), void (*child)(void)); DESCRIPTION
pthread_atfork registers handler functions to be called just before and just after a new process is created with fork(2). The prepare han- dler will be called from the parent process, just before the new process is created. The parent handler will be called from the parent process, just before fork(2) returns. The child handler will be called from the child process, just before fork(2) returns. One or several of the three handlers prepare, parent and child can be given as NULL, meaning that no handler needs to be called at the cor- responding point. pthread_atfork can be called several times to install several sets of handlers. At fork(2) time, the prepare handlers are called in LIFO order (last added with pthread_atfork, first called before fork), while the parent and child handlers are called in FIFO order (first added, first called). To understand the purpose of pthread_atfork, recall that fork(2) duplicates the whole memory space, including mutexes in their current locking state, but only the calling thread: other threads are not running in the child process. The mutexes are not usable after the fork and must be initialized with pthread_mutex_init in the child process. This is a limitation of the current implementation and might or might not be present in future versions. RETURN VALUE
pthread_atfork returns 0 on success and a non-zero error code on error. ERRORS
ENOMEM insufficient memory available to register the handlers. AUTHOR
Xavier Leroy <Xavier.Leroy@inria.fr> SEE ALSO
fork(2), pthread_mutex_lock(3), pthread_mutex_unlock(3). LinuxThreads PTHREAD_ATFORK(3)
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