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Top Forums Programming fork(), parent and child processes??? Post 302573016 by Corona688 on Saturday 12th of November 2011 11:15:58 AM
Old 11-12-2011
Quote:
Originally Posted by gabam
How can the single variable
Code:
pid

contain two values at the same time?
The address of, say, 0xbfffffffff can hold its own, separate value in each and every individual process. That's really the point of having processes -- each one gets its own flat memory space, as if it was the only thing running on the computer, but it's actually quite secure and controlled.

This virtual memory space works by dividing real memory into 4096-byte chunks, and keeping a big table of which process gets what real memory at what virtual address. This table is checked in hardware by the processor itself, and configured by the kernel. If a process tries to access a memory location where no real pages have been assigned to it, you get the familiar error "segmentation fault".

What fork() does is it makes an exact copy of the process at the time of the fork(), but gives it its own independent memory space, then twiddles the value of 'pid' so it's different in the child. It uses some tricks like copy-on-write to avoid duplicating too much memory, but that's mostly safe to ignore.
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VFORK(2)						      BSD System Calls Manual							  VFORK(2)

NAME
vfork -- spawn new process in a virtual memory efficient way LIBRARY
Standard C Library (libc, -lc) SYNOPSIS
#include <unistd.h> pid_t vfork(void); DESCRIPTION
The vfork system call creates a new process that does not have a new virtual address space, but rather shares address space with the parent, thus avoiding potentially expensive copy-on-write operations normally associated with creating a new process. It is useful when the purpose of fork(2) would have been to create a new system context for an execve(2). The vfork system call differs from fork(2) in that the child borrows the parent's memory and thread of control until a call to execve(2) or an exit (either by a call to _exit(2) or abnormally). The parent process is suspended while the child is using its resources. The vfork system call returns 0 in the child's context and (later) the pid of the child in the parent's context. The vfork system call can normally be used just like fork(2). It does not work, however, to return while running in the childs context from the procedure that called vfork() since the eventual return from vfork() would then return to a no longer existent stack frame. Be careful, also, to call _exit(2) rather than exit(3) if you can't execve(2), since exit(3) will flush and close standard I/O channels, and thereby mess up the standard I/O data structures in the parent process. (Even with fork(2) it is wrong to call exit(3) since buffered data would then be flushed twice.) RETURN VALUES
Same as for fork(2). ERRORS
Same as for fork(2). SEE ALSO
execve(2), fork(2), sigaction(2), wait(2) HISTORY
The vfork() function call appeared in 3.0BSD. In 4.4BSD, the semantics were changed to only suspend the parent. The original semantics were reintroduced in NetBSD 1.4. BUGS
Users should not depend on the memory sharing semantics of vfork() as other ways of speeding up the fork process may be developed in the future. To avoid a possible deadlock situation, processes that are children in the middle of a vfork() are never sent SIGTTOU or SIGTTIN signals; rather, output or ioctl(2) calls are allowed and input attempts result in an end-of-file indication. BSD
January 3, 1998 BSD
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