golden hour
/usr/share/perl5/pod
⬆️ Go Up
Upload
File/Folder
Size
Actions
perl.pod
16.28 KB
Del
OK
perl5004delta.pod
54.92 KB
Del
OK
perl5005delta.pod
33.48 KB
Del
OK
perl5100delta.pod
54.23 KB
Del
OK
perl5101delta.pod
42.86 KB
Del
OK
perl5120delta.pod
87.18 KB
Del
OK
perl5121delta.pod
9.9 KB
Del
OK
perl5122delta.pod
9.38 KB
Del
OK
perl5123delta.pod
4 KB
Del
OK
perl5124delta.pod
3.59 KB
Del
OK
perl5125delta.pod
7.5 KB
Del
OK
perl5140delta.pod
140.94 KB
Del
OK
perl5141delta.pod
7.78 KB
Del
OK
perl5142delta.pod
6.73 KB
Del
OK
perl5143delta.pod
7.58 KB
Del
OK
perl5144delta.pod
6.18 KB
Del
OK
perl5160delta.pod
130.52 KB
Del
OK
perl5161delta.pod
6 KB
Del
OK
perl5162delta.pod
3.51 KB
Del
OK
perl5163delta.pod
3.99 KB
Del
OK
perl5180delta.pod
116.63 KB
Del
OK
perl5181delta.pod
6.44 KB
Del
OK
perl5182delta.pod
5.21 KB
Del
OK
perl5184delta.pod
4.53 KB
Del
OK
perl5200delta.pod
112.99 KB
Del
OK
perl5201delta.pod
10.64 KB
Del
OK
perl5202delta.pod
12.22 KB
Del
OK
perl5203delta.pod
9.17 KB
Del
OK
perl5220delta.pod
127.89 KB
Del
OK
perl5221delta.pod
10.51 KB
Del
OK
perl5222delta.pod
12.33 KB
Del
OK
perl5223delta.pod
8.26 KB
Del
OK
perl5224delta.pod
4.36 KB
Del
OK
perl5240delta.pod
63.4 KB
Del
OK
perl5241delta.pod
8.02 KB
Del
OK
perl5242delta.pod
4.02 KB
Del
OK
perl5243delta.pod
11.16 KB
Del
OK
perl5244delta.pod
4.4 KB
Del
OK
perl5260delta.pod
99.45 KB
Del
OK
perl5261delta.pod
7.74 KB
Del
OK
perl5262delta.pod
7.7 KB
Del
OK
perl5263delta.pod
6.9 KB
Del
OK
perl5280delta.pod
70.42 KB
Del
OK
perl5281delta.pod
4.53 KB
Del
OK
perl5282delta.pod
6.05 KB
Del
OK
perl5283delta.pod
4.99 KB
Del
OK
perl5300delta.pod
40.31 KB
Del
OK
perl5301delta.pod
5.6 KB
Del
OK
perl5302delta.pod
4.57 KB
Del
OK
perl5303delta.pod
4.86 KB
Del
OK
perl5320delta.pod
53.32 KB
Del
OK
perl5321delta.pod
6.84 KB
Del
OK
perl561delta.pod
121.79 KB
Del
OK
perl56delta.pod
104.69 KB
Del
OK
perl581delta.pod
37.17 KB
Del
OK
perl582delta.pod
4.37 KB
Del
OK
perl583delta.pod
6.19 KB
Del
OK
perl584delta.pod
7.19 KB
Del
OK
perl585delta.pod
5.75 KB
Del
OK
perl586delta.pod
4.54 KB
Del
OK
perl587delta.pod
8.16 KB
Del
OK
perl588delta.pod
24.69 KB
Del
OK
perl589delta.pod
52.64 KB
Del
OK
perl58delta.pod
112.47 KB
Del
OK
perlaix.pod
19.96 KB
Del
OK
perlamiga.pod
5.61 KB
Del
OK
perlandroid.pod
8.03 KB
Del
OK
perlapi.pod
481.55 KB
Del
OK
perlapio.pod
20.84 KB
Del
OK
perlartistic.pod
6.85 KB
Del
OK
perlbook.pod
8.19 KB
Del
OK
perlboot.pod
294 B
Del
OK
perlbot.pod
304 B
Del
OK
perlbs2000.pod
7.81 KB
Del
OK
perlcall.pod
55.41 KB
Del
OK
perlcheat.pod
4.38 KB
Del
OK
perlclib.pod
9.38 KB
Del
OK
perlcn.pod
4.65 KB
Del
OK
perlcommunity.pod
6.82 KB
Del
OK
perlcygwin.pod
26.56 KB
Del
OK
perldata.pod
48.62 KB
Del
OK
perldbmfilter.pod
4.86 KB
Del
OK
perldebguts.pod
41.34 KB
Del
OK
perldebtut.pod
21.63 KB
Del
OK
perldebug.pod
38.46 KB
Del
OK
perldelta.pod
6.84 KB
Del
OK
perldeprecation.pod
20.34 KB
Del
OK
perldiag.pod
290.03 KB
Del
OK
perldos.pod
10.28 KB
Del
OK
perldsc.pod
25.01 KB
Del
OK
perldtrace.pod
7.77 KB
Del
OK
perlebcdic.pod
82.37 KB
Del
OK
perlembed.pod
36.69 KB
Del
OK
perlexperiment.pod
7.06 KB
Del
OK
perlfork.pod
13.04 KB
Del
OK
perlform.pod
16.22 KB
Del
OK
perlfreebsd.pod
1.58 KB
Del
OK
perlfunc.pod
394.31 KB
Del
OK
perlgit.pod
28.9 KB
Del
OK
perlgov.pod
14.14 KB
Del
OK
perlgpl.pod
13.49 KB
Del
OK
perlguts.pod
158.3 KB
Del
OK
perlhack.pod
42.15 KB
Del
OK
perlhacktips.pod
56.34 KB
Del
OK
perlhacktut.pod
6.01 KB
Del
OK
perlhaiku.pod
1.47 KB
Del
OK
perlhist.pod
54.85 KB
Del
OK
perlhpux.pod
29.89 KB
Del
OK
perlhurd.pod
1.95 KB
Del
OK
perlintern.pod
81.61 KB
Del
OK
perlinterp.pod
32.92 KB
Del
OK
perlintro.pod
21.62 KB
Del
OK
perliol.pod
33.99 KB
Del
OK
perlipc.pod
69.85 KB
Del
OK
perlirix.pod
4.31 KB
Del
OK
perljp.pod
8.23 KB
Del
OK
perlko.pod
11.92 KB
Del
OK
perllexwarn.pod
355 B
Del
OK
perllinux.pod
1.96 KB
Del
OK
perllocale.pod
72.38 KB
Del
OK
perllol.pod
9.36 KB
Del
OK
perlmacos.pod
998 B
Del
OK
perlmacosx.pod
11.84 KB
Del
OK
perlmod.pod
25.58 KB
Del
OK
perlmodinstall.pod
10.02 KB
Del
OK
perlmodlib.pod
74.56 KB
Del
OK
perlmodstyle.pod
22.06 KB
Del
OK
perlmroapi.pod
3.2 KB
Del
OK
perlnetware.pod
6.49 KB
Del
OK
perlnewmod.pod
10.78 KB
Del
OK
perlnumber.pod
8.16 KB
Del
OK
perlobj.pod
34.88 KB
Del
OK
perlootut.pod
26.13 KB
Del
OK
perlop.pod
145.4 KB
Del
OK
perlopenbsd.pod
1.2 KB
Del
OK
perlopentut.pod
14.87 KB
Del
OK
perlos2.pod
91.16 KB
Del
OK
perlos390.pod
16.14 KB
Del
OK
perlos400.pod
4.65 KB
Del
OK
perlpacktut.pod
50.17 KB
Del
OK
perlperf.pod
48.71 KB
Del
OK
perlplan9.pod
5 KB
Del
OK
perlpod.pod
22.54 KB
Del
OK
perlpodspec.pod
67.02 KB
Del
OK
perlpolicy.pod
25.94 KB
Del
OK
perlport.pod
86.61 KB
Del
OK
perlpragma.pod
5.05 KB
Del
OK
perlqnx.pod
6.52 KB
Del
OK
perlre.pod
127.75 KB
Del
OK
perlreapi.pod
29.54 KB
Del
OK
perlrebackslash.pod
31.53 KB
Del
OK
perlrecharclass.pod
48.54 KB
Del
OK
perlref.pod
34.6 KB
Del
OK
perlreftut.pod
18.38 KB
Del
OK
perlreguts.pod
38.38 KB
Del
OK
perlrepository.pod
509 B
Del
OK
perlrequick.pod
18.69 KB
Del
OK
perlreref.pod
15.22 KB
Del
OK
perlretut.pod
119.66 KB
Del
OK
perlriscos.pod
1.49 KB
Del
OK
perlrun.pod
54.67 KB
Del
OK
perlsec.pod
26.95 KB
Del
OK
perlsecpolicy.pod
18.99 KB
Del
OK
perlsolaris.pod
29.14 KB
Del
OK
perlsource.pod
6.96 KB
Del
OK
perlstyle.pod
8.53 KB
Del
OK
perlsub.pod
72.66 KB
Del
OK
perlsymbian.pod
14.98 KB
Del
OK
perlsyn.pod
44.08 KB
Del
OK
perlsynology.pod
7.77 KB
Del
OK
perlthrtut.pod
45.43 KB
Del
OK
perltie.pod
38.39 KB
Del
OK
perltoc.pod
685.35 KB
Del
OK
perltodo.pod
372 B
Del
OK
perltooc.pod
294 B
Del
OK
perltoot.pod
294 B
Del
OK
perltrap.pod
10.37 KB
Del
OK
perltru64.pod
8.29 KB
Del
OK
perltw.pod
4.36 KB
Del
OK
perlunicode.pod
89.21 KB
Del
OK
perlunicook.pod
25.06 KB
Del
OK
perlunifaq.pod
13.32 KB
Del
OK
perluniintro.pod
37.74 KB
Del
OK
perluniprops.pod
431.26 KB
Del
OK
perlunitut.pod
7.76 KB
Del
OK
perlutil.pod
7.12 KB
Del
OK
perlvar.pod
80.64 KB
Del
OK
perlvms.pod
49.63 KB
Del
OK
perlvos.pod
3.75 KB
Del
OK
perlwin32.pod
39.37 KB
Del
OK
Edit: perlfork.pod
=head1 NAME perlfork - Perl's fork() emulation =head1 SYNOPSIS NOTE: As of the 5.8.0 release, fork() emulation has considerably matured. However, there are still a few known bugs and differences from real fork() that might affect you. See the "BUGS" and "CAVEATS AND LIMITATIONS" sections below. Perl provides a fork() keyword that corresponds to the Unix system call of the same name. On most Unix-like platforms where the fork() system call is available, Perl's fork() simply calls it. On some platforms such as Windows where the fork() system call is not available, Perl can be built to emulate fork() at the interpreter level. While the emulation is designed to be as compatible as possible with the real fork() at the level of the Perl program, there are certain important differences that stem from the fact that all the pseudo child "processes" created this way live in the same real process as far as the operating system is concerned. This document provides a general overview of the capabilities and limitations of the fork() emulation. Note that the issues discussed here are not applicable to platforms where a real fork() is available and Perl has been configured to use it. =head1 DESCRIPTION The fork() emulation is implemented at the level of the Perl interpreter. What this means in general is that running fork() will actually clone the running interpreter and all its state, and run the cloned interpreter in a separate thread, beginning execution in the new thread just after the point where the fork() was called in the parent. We will refer to the thread that implements this child "process" as the pseudo-process. To the Perl program that called fork(), all this is designed to be transparent. The parent returns from the fork() with a pseudo-process ID that can be subsequently used in any process-manipulation functions; the child returns from the fork() with a value of C<0> to signify that it is the child pseudo-process. =head2 Behavior of other Perl features in forked pseudo-processes Most Perl features behave in a natural way within pseudo-processes. =over 8 =item $$ or $PROCESS_ID This special variable is correctly set to the pseudo-process ID. It can be used to identify pseudo-processes within a particular session. Note that this value is subject to recycling if any pseudo-processes are launched after others have been wait()-ed on. =item %ENV Each pseudo-process maintains its own virtual environment. Modifications to %ENV affect the virtual environment, and are only visible within that pseudo-process, and in any processes (or pseudo-processes) launched from it. =item chdir() and all other builtins that accept filenames Each pseudo-process maintains its own virtual idea of the current directory. Modifications to the current directory using chdir() are only visible within that pseudo-process, and in any processes (or pseudo-processes) launched from it. All file and directory accesses from the pseudo-process will correctly map the virtual working directory to the real working directory appropriately. =item wait() and waitpid() wait() and waitpid() can be passed a pseudo-process ID returned by fork(). These calls will properly wait for the termination of the pseudo-process and return its status. =item kill() C<kill('KILL', ...)> can be used to terminate a pseudo-process by passing it the ID returned by fork(). The outcome of kill on a pseudo-process is unpredictable and it should not be used except under dire circumstances, because the operating system may not guarantee integrity of the process resources when a running thread is terminated. The process which implements the pseudo-processes can be blocked and the Perl interpreter hangs. Note that using C<kill('KILL', ...)> on a pseudo-process() may typically cause memory leaks, because the thread that implements the pseudo-process does not get a chance to clean up its resources. C<kill('TERM', ...)> can also be used on pseudo-processes, but the signal will not be delivered while the pseudo-process is blocked by a system call, e.g. waiting for a socket to connect, or trying to read from a socket with no data available. Starting in Perl 5.14 the parent process will not wait for children to exit once they have been signalled with C<kill('TERM', ...)> to avoid deadlock during process exit. You will have to explicitly call waitpid() to make sure the child has time to clean-up itself, but you are then also responsible that the child is not blocking on I/O either. =item exec() Calling exec() within a pseudo-process actually spawns the requested executable in a separate process and waits for it to complete before exiting with the same exit status as that process. This means that the process ID reported within the running executable will be different from what the earlier Perl fork() might have returned. Similarly, any process manipulation functions applied to the ID returned by fork() will affect the waiting pseudo-process that called exec(), not the real process it is waiting for after the exec(). When exec() is called inside a pseudo-process then DESTROY methods and END blocks will still be called after the external process returns. =item exit() exit() always exits just the executing pseudo-process, after automatically wait()-ing for any outstanding child pseudo-processes. Note that this means that the process as a whole will not exit unless all running pseudo-processes have exited. See below for some limitations with open filehandles. =item Open handles to files, directories and network sockets All open handles are dup()-ed in pseudo-processes, so that closing any handles in one process does not affect the others. See below for some limitations. =back =head2 Resource limits In the eyes of the operating system, pseudo-processes created via the fork() emulation are simply threads in the same process. This means that any process-level limits imposed by the operating system apply to all pseudo-processes taken together. This includes any limits imposed by the operating system on the number of open file, directory and socket handles, limits on disk space usage, limits on memory size, limits on CPU utilization etc. =head2 Killing the parent process If the parent process is killed (either using Perl's kill() builtin, or using some external means) all the pseudo-processes are killed as well, and the whole process exits. =head2 Lifetime of the parent process and pseudo-processes During the normal course of events, the parent process and every pseudo-process started by it will wait for their respective pseudo-children to complete before they exit. This means that the parent and every pseudo-child created by it that is also a pseudo-parent will only exit after their pseudo-children have exited. Starting with Perl 5.14 a parent will not wait() automatically for any child that has been signalled with C<kill('TERM', ...)> to avoid a deadlock in case the child is blocking on I/O and never receives the signal. =head1 CAVEATS AND LIMITATIONS =over 8 =item BEGIN blocks The fork() emulation will not work entirely correctly when called from within a BEGIN block. The forked copy will run the contents of the BEGIN block, but will not continue parsing the source stream after the BEGIN block. For example, consider the following code: BEGIN { fork and exit; # fork child and exit the parent print "inner\n"; } print "outer\n"; This will print: inner rather than the expected: inner outer This limitation arises from fundamental technical difficulties in cloning and restarting the stacks used by the Perl parser in the middle of a parse. =item Open filehandles Any filehandles open at the time of the fork() will be dup()-ed. Thus, the files can be closed independently in the parent and child, but beware that the dup()-ed handles will still share the same seek pointer. Changing the seek position in the parent will change it in the child and vice-versa. One can avoid this by opening files that need distinct seek pointers separately in the child. On some operating systems, notably Solaris and Unixware, calling C<exit()> from a child process will flush and close open filehandles in the parent, thereby corrupting the filehandles. On these systems, calling C<_exit()> is suggested instead. C<_exit()> is available in Perl through the C<POSIX> module. Please consult your system's manpages for more information on this. =item Open directory handles Perl will completely read from all open directory handles until they reach the end of the stream. It will then seekdir() back to the original location and all future readdir() requests will be fulfilled from the cache buffer. That means that neither the directory handle held by the parent process nor the one held by the child process will see any changes made to the directory after the fork() call. Note that rewinddir() has a similar limitation on Windows and will not force readdir() to read the directory again either. Only a newly opened directory handle will reflect changes to the directory. =item Forking pipe open() not yet implemented The C<open(FOO, "|-")> and C<open(BAR, "-|")> constructs are not yet implemented. This limitation can be easily worked around in new code by creating a pipe explicitly. The following example shows how to write to a forked child: # simulate open(FOO, "|-") sub pipe_to_fork ($) { my $parent = shift; pipe my $child, $parent or die; my $pid = fork(); die "fork() failed: $!" unless defined $pid; if ($pid) { close $child; } else { close $parent; open(STDIN, "<&=" . fileno($child)) or die; } $pid; } if (pipe_to_fork('FOO')) { # parent print FOO "pipe_to_fork\n"; close FOO; } else { # child while (<STDIN>) { print; } exit(0); } And this one reads from the child: # simulate open(FOO, "-|") sub pipe_from_fork ($) { my $parent = shift; pipe $parent, my $child or die; my $pid = fork(); die "fork() failed: $!" unless defined $pid; if ($pid) { close $child; } else { close $parent; open(STDOUT, ">&=" . fileno($child)) or die; } $pid; } if (pipe_from_fork('BAR')) { # parent while (<BAR>) { print; } close BAR; } else { # child print "pipe_from_fork\n"; exit(0); } Forking pipe open() constructs will be supported in future. =item Global state maintained by XSUBs External subroutines (XSUBs) that maintain their own global state may not work correctly. Such XSUBs will either need to maintain locks to protect simultaneous access to global data from different pseudo-processes, or maintain all their state on the Perl symbol table, which is copied naturally when fork() is called. A callback mechanism that provides extensions an opportunity to clone their state will be provided in the near future. =item Interpreter embedded in larger application The fork() emulation may not behave as expected when it is executed in an application which embeds a Perl interpreter and calls Perl APIs that can evaluate bits of Perl code. This stems from the fact that the emulation only has knowledge about the Perl interpreter's own data structures and knows nothing about the containing application's state. For example, any state carried on the application's own call stack is out of reach. =item Thread-safety of extensions Since the fork() emulation runs code in multiple threads, extensions calling into non-thread-safe libraries may not work reliably when calling fork(). As Perl's threading support gradually becomes more widely adopted even on platforms with a native fork(), such extensions are expected to be fixed for thread-safety. =back =head1 PORTABILITY CAVEATS In portable Perl code, C<kill(9, $child)> must not be used on forked processes. Killing a forked process is unsafe and has unpredictable results. See L</kill()>, above. =head1 BUGS =over 8 =item * Having pseudo-process IDs be negative integers breaks down for the integer C<-1> because the wait() and waitpid() functions treat this number as being special. The tacit assumption in the current implementation is that the system never allocates a thread ID of C<1> for user threads. A better representation for pseudo-process IDs will be implemented in future. =item * In certain cases, the OS-level handles created by the pipe(), socket(), and accept() operators are apparently not duplicated accurately in pseudo-processes. This only happens in some situations, but where it does happen, it may result in deadlocks between the read and write ends of pipe handles, or inability to send or receive data across socket handles. =item * This document may be incomplete in some respects. =back =head1 AUTHOR Support for concurrent interpreters and the fork() emulation was implemented by ActiveState, with funding from Microsoft Corporation. This document is authored and maintained by Gurusamy Sarathy E<lt>gsar@activestate.comE<gt>. =head1 SEE ALSO L<perlfunc/"fork">, L<perlipc> =cut
Save