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Comparing Coro/Coro.pm (file contents):
Revision 1.13 by root, Tue Jul 17 00:24:14 2001 UTC vs.
Revision 1.42 by root, Tue Nov 6 20:37:20 2001 UTC

14 14
15 sub some_func : Coro { 15 sub some_func : Coro {
16 # some more async code 16 # some more async code
17 } 17 }
18 18
19 yield; 19 cede;
20 20
21=head1 DESCRIPTION 21=head1 DESCRIPTION
22 22
23This module collection manages coroutines. Coroutines are similar to
24threads but don't run in parallel.
25
26In this module, coroutines are defined as "callchain + lexical variables
27+ @_ + $_ + $@ + $^W + C stack), that is, a coroutine has it's own
28callchain, it's own set of lexicals and it's own set of perl's most
29important global variables.
30
23=cut 31=cut
24 32
25package Coro; 33package Coro;
26 34
35no warnings qw(uninitialized);
36
27use Coro::State; 37use Coro::State;
28 38
29use base Exporter; 39use base Exporter;
30 40
31$VERSION = 0.05; 41$VERSION = 0.52;
32 42
33@EXPORT = qw(async yield schedule terminate); 43@EXPORT = qw(async cede schedule terminate current);
34@EXPORT_OK = qw($current); 44%EXPORT_TAGS = (
45 prio => [qw(PRIO_MAX PRIO_HIGH PRIO_NORMAL PRIO_LOW PRIO_IDLE PRIO_MIN)],
46);
47@EXPORT_OK = @{$EXPORT_TAGS{prio}};
35 48
36{ 49{
37 use subs 'async';
38
39 my @async; 50 my @async;
51 my $init;
40 52
41 # this way of handling attributes simply is NOT scalable ;() 53 # this way of handling attributes simply is NOT scalable ;()
42 sub import { 54 sub import {
43 Coro->export_to_level(1, @_); 55 Coro->export_to_level(1, @_);
44 my $old = *{(caller)[0]."::MODIFY_CODE_ATTRIBUTES"}{CODE}; 56 my $old = *{(caller)[0]."::MODIFY_CODE_ATTRIBUTES"}{CODE};
46 my ($package, $ref) = (shift, shift); 58 my ($package, $ref) = (shift, shift);
47 my @attrs; 59 my @attrs;
48 for (@_) { 60 for (@_) {
49 if ($_ eq "Coro") { 61 if ($_ eq "Coro") {
50 push @async, $ref; 62 push @async, $ref;
63 unless ($init++) {
64 eval q{
65 sub INIT {
66 &async(pop @async) while @async;
67 }
68 };
69 }
51 } else { 70 } else {
52 push @attrs, @_; 71 push @attrs, $_;
53 } 72 }
54 } 73 }
55 return $old ? $old->($package, $name, @attrs) : @attrs; 74 return $old ? $old->($package, $ref, @attrs) : @attrs;
56 }; 75 };
57 } 76 }
58 77
59 sub INIT {
60 async pop @async while @async;
61 }
62} 78}
63 79
64=item $main 80=item $main
65 81
66This coroutine represents the main program. 82This coroutine represents the main program.
67 83
68=cut 84=cut
69 85
70our $main = new Coro; 86our $main = new Coro;
71 87
72=item $current 88=item $current (or as function: current)
73 89
74The current coroutine (the last coroutine switched to). The initial value is C<$main> (of course). 90The current coroutine (the last coroutine switched to). The initial value is C<$main> (of course).
75 91
76=cut 92=cut
77 93
79if ($current) { 95if ($current) {
80 $main->{specific} = $current->{specific}; 96 $main->{specific} = $current->{specific};
81} 97}
82 98
83our $current = $main; 99our $current = $main;
100
101sub current() { $current }
84 102
85=item $idle 103=item $idle
86 104
87The coroutine to switch to when no other coroutine is running. The default 105The coroutine to switch to when no other coroutine is running. The default
88implementation prints "FATAL: deadlock detected" and exits. 106implementation prints "FATAL: deadlock detected" and exits.
93our $idle = new Coro sub { 111our $idle = new Coro sub {
94 print STDERR "FATAL: deadlock detected\n"; 112 print STDERR "FATAL: deadlock detected\n";
95 exit(51); 113 exit(51);
96}; 114};
97 115
98# we really need priorities... 116# this coroutine is necessary because a coroutine
99## my @ready; #d# 117# cannot destroy itself.
100our @ready = (); # the ready queue. hehe, rather broken ;) 118my @destroy;
119my $manager;
120$manager = new Coro sub {
121 while() {
122 # by overwriting the state object with the manager we destroy it
123 # while still being able to schedule this coroutine (in case it has
124 # been readied multiple times. this is harmless since the manager
125 # can be called as many times as neccessary and will always
126 # remove itself from the runqueue
127 while (@destroy) {
128 my $coro = pop @destroy;
129 $coro->{status} ||= [];
130 $_->ready for @{delete $coro->{join} || []};
131 $coro->{_coro_state} = $manager->{_coro_state};
132 }
133 &schedule;
134 }
135};
101 136
102# static methods. not really. 137# static methods. not really.
103 138
104=head2 STATIC METHODS 139=head2 STATIC METHODS
105 140
123 158
124=cut 159=cut
125 160
126sub async(&@) { 161sub async(&@) {
127 my $pid = new Coro @_; 162 my $pid = new Coro @_;
163 $manager->ready; # this ensures that the stack is cloned from the manager
128 $pid->ready; 164 $pid->ready;
129 $pid; 165 $pid;
130} 166}
131 167
132=item schedule 168=item schedule
135into the ready queue, so calling this function usually means you will 171into the ready queue, so calling this function usually means you will
136never be called again. 172never be called again.
137 173
138=cut 174=cut
139 175
140my $prev;
141
142sub schedule {
143 # should be done using priorities :(
144 ($prev, $current) = ($current, shift @ready || $idle);
145 Coro::State::transfer($prev, $current);
146}
147
148=item yield 176=item cede
149 177
150Yield to other processes. This function puts the current process into the 178"Cede" to other processes. This function puts the current process into the
151ready queue and calls C<schedule>. 179ready queue and calls C<schedule>, which has the effect of giving up the
180current "timeslice" to other coroutines of the same or higher priority.
152 181
153=cut 182=cut
154 183
155sub yield { 184=item terminate [arg...]
185
186Terminates the current process.
187
188Future versions of this function will allow result arguments.
189
190=cut
191
192sub terminate {
193 $current->{status} = [@_];
156 $current->ready; 194 $current->cancel;
157 &schedule; 195 &schedule;
158} 196 die; # NORETURN
159
160=item terminate
161
162Terminates the current process.
163
164Future versions of this function will allow result arguments.
165
166=cut
167
168sub terminate {
169 $current->{_results} = [@_];
170 &schedule;
171} 197}
172 198
173=back 199=back
174 200
175# dynamic methods 201# dynamic methods
181=over 4 207=over 4
182 208
183=item new Coro \&sub [, @args...] 209=item new Coro \&sub [, @args...]
184 210
185Create a new process and return it. When the sub returns the process 211Create a new process and return it. When the sub returns the process
186automatically terminates. To start the process you must first put it into 212automatically terminates as if C<terminate> with the returned values were
213called. To make the process run you must first put it into the ready queue
187the ready queue by calling the ready method. 214by calling the ready method.
188
189The coderef you submit MUST NOT be a closure that refers to variables
190in an outer scope. This does NOT work. Pass arguments into it instead.
191 215
192=cut 216=cut
193 217
194sub _newcoro { 218sub _newcoro {
195 terminate &{+shift}; 219 terminate &{+shift};
202 }, $class; 226 }, $class;
203} 227}
204 228
205=item $process->ready 229=item $process->ready
206 230
207Put the current process into the ready queue. 231Put the given process into the ready queue.
208 232
209=cut 233=cut
210 234
211sub ready { 235=item $process->cancel
236
237Like C<terminate>, but terminates the specified process instead.
238
239=cut
240
241sub cancel {
212 push @ready, $_[0]; 242 push @destroy, $_[0];
243 $manager->ready;
244 &schedule if $current == $_[0];
245}
246
247=item $process->join
248
249Wait until the coroutine terminates and return any values given to the
250C<terminate> function. C<join> can be called multiple times from multiple
251processes.
252
253=cut
254
255sub join {
256 my $self = shift;
257 unless ($self->{status}) {
258 push @{$self->{join}}, $current;
259 &schedule;
260 }
261 wantarray ? @{$self->{status}} : $self->{status}[0];
262}
263
264=item $oldprio = $process->prio($newprio)
265
266Sets (or gets, if the argument is missing) the priority of the
267process. Higher priority processes get run before lower priority
268processes. Priorities are smalled signed integer (currently -4 .. +3),
269that you can refer to using PRIO_xxx constants (use the import tag :prio
270to get then):
271
272 PRIO_MAX > PRIO_HIGH > PRIO_NORMAL > PRIO_LOW > PRIO_IDLE > PRIO_MIN
273 3 > 1 > 0 > -1 > -3 > -4
274
275 # set priority to HIGH
276 current->prio(PRIO_HIGH);
277
278The idle coroutine ($Coro::idle) always has a lower priority than any
279existing coroutine.
280
281Changing the priority of the current process will take effect immediately,
282but changing the priority of processes in the ready queue (but not
283running) will only take effect after the next schedule (of that
284process). This is a bug that will be fixed in some future version.
285
286=cut
287
288sub prio {
289 my $old = $_[0]{prio};
290 $_[0]{prio} = $_[1] if @_ > 1;
291 $old;
292}
293
294=item $newprio = $process->nice($change)
295
296Similar to C<prio>, but subtract the given value from the priority (i.e.
297higher values mean lower priority, just as in unix).
298
299=cut
300
301sub nice {
302 $_[0]{prio} -= $_[1];
303}
304
305=item $olddesc = $process->desc($newdesc)
306
307Sets (or gets in case the argument is missing) the description for this
308process. This is just a free-form string you can associate with a process.
309
310=cut
311
312sub desc {
313 my $old = $_[0]{desc};
314 $_[0]{desc} = $_[1] if @_ > 1;
315 $old;
213} 316}
214 317
215=back 318=back
216 319
217=cut 320=cut
218 321
2191; 3221;
220 323
324=head1 BUGS/LIMITATIONS
325
326 - you must make very sure that no coro is still active on global destruction.
327 very bad things might happen otherwise (usually segfaults).
328 - this module is not thread-safe. You should only ever use this module from
329 the same thread (this requirement might be loosened in the future to
330 allow per-thread schedulers, but Coro::State does not yet allow this).
331
221=head1 SEE ALSO 332=head1 SEE ALSO
222 333
223L<Coro::Channel>, L<Coro::Cont>, L<Coro::Specific>, L<Coro::Semaphore>, 334L<Coro::Channel>, L<Coro::Cont>, L<Coro::Specific>, L<Coro::Semaphore>,
224L<Coro::Signal>, L<Coro::State>, L<Coro::Event>. 335L<Coro::Signal>, L<Coro::State>, L<Coro::Event>, L<Coro::RWLock>,
336L<Coro::Handle>, L<Coro::Socket>.
225 337
226=head1 AUTHOR 338=head1 AUTHOR
227 339
228 Marc Lehmann <pcg@goof.com> 340 Marc Lehmann <pcg@goof.com>
229 http://www.goof.com/pcg/marc/ 341 http://www.goof.com/pcg/marc/

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