ViewVC Help
View File | Revision Log | Show Annotations | Download File
/cvs/deliantra/server/lib/cf.pm
(Generate patch)

Comparing deliantra/server/lib/cf.pm (file contents):
Revision 1.390 by root, Thu Oct 25 09:01:24 2007 UTC vs.
Revision 1.414 by root, Thu Apr 10 09:10:45 2008 UTC

1#
2# This file is part of Deliantra, the Roguelike Realtime MMORPG.
3#
4# Copyright (©) 2006,2007,2008 Marc Alexander Lehmann / Robin Redeker / the Deliantra team
5#
6# Deliantra is free software: you can redistribute it and/or modify
7# it under the terms of the GNU General Public License as published by
8# the Free Software Foundation, either version 3 of the License, or
9# (at your option) any later version.
10#
11# This program is distributed in the hope that it will be useful,
12# but WITHOUT ANY WARRANTY; without even the implied warranty of
13# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14# GNU General Public License for more details.
15#
16# You should have received a copy of the GNU General Public License
17# along with this program. If not, see <http://www.gnu.org/licenses/>.
18#
19# The authors can be reached via e-mail to <support@deliantra.net>
20#
21
1package cf; 22package cf;
2 23
3use utf8; 24use utf8;
4use strict; 25use strict;
5 26
6use Symbol; 27use Symbol;
7use List::Util; 28use List::Util;
8use Socket; 29use Socket;
9use Event; 30use EV 3.2;
10use Opcode; 31use Opcode;
11use Safe; 32use Safe;
12use Safe::Hole; 33use Safe::Hole;
13use Storable (); 34use Storable ();
14 35
15use Coro 4.1 (); 36use Coro 4.50 ();
16use Coro::State; 37use Coro::State;
17use Coro::Handle; 38use Coro::Handle;
18use Coro::Event; 39use Coro::EV;
19use Coro::Timer; 40use Coro::Timer;
20use Coro::Signal; 41use Coro::Signal;
21use Coro::Semaphore; 42use Coro::Semaphore;
22use Coro::AIO; 43use Coro::AIO;
44use Coro::BDB;
23use Coro::Storable; 45use Coro::Storable;
24use Coro::Util (); 46use Coro::Util ();
25 47
26use JSON::XS (); 48use JSON::XS 2.01 ();
27use BDB (); 49use BDB ();
28use Data::Dumper; 50use Data::Dumper;
29use Digest::MD5; 51use Digest::MD5;
30use Fcntl; 52use Fcntl;
31use YAML::Syck (); 53use YAML ();
32use IO::AIO 2.51 (); 54use IO::AIO 2.51 ();
33use Time::HiRes; 55use Time::HiRes;
34use Compress::LZF; 56use Compress::LZF;
35use Digest::MD5 (); 57use Digest::MD5 ();
36 58
37# configure various modules to our taste 59# configure various modules to our taste
38# 60#
39$Storable::canonical = 1; # reduce rsync transfers 61$Storable::canonical = 1; # reduce rsync transfers
40Coro::State::cctx_stacksize 256000; # 1-2MB stack, for deep recursions in maze generator 62Coro::State::cctx_stacksize 256000; # 1-2MB stack, for deep recursions in maze generator
41Compress::LZF::sfreeze_cr { }; # prime Compress::LZF so it does not use require later 63Compress::LZF::sfreeze_cr { }; # prime Compress::LZF so it does not use require later
42
43$Event::Eval = 1; # no idea why this is required, but it is
44
45# work around bug in YAML::Syck - bad news for perl6, will it be as broken wrt. unicode?
46$YAML::Syck::ImplicitUnicode = 1;
47 64
48$Coro::main->prio (Coro::PRIO_MAX); # run main coroutine ("the server") with very high priority 65$Coro::main->prio (Coro::PRIO_MAX); # run main coroutine ("the server") with very high priority
49 66
50sub WF_AUTOCANCEL () { 1 } # automatically cancel this watcher on reload 67sub WF_AUTOCANCEL () { 1 } # automatically cancel this watcher on reload
51 68
70our $TMPDIR = "$LOCALDIR/" . tmpdir; 87our $TMPDIR = "$LOCALDIR/" . tmpdir;
71our $UNIQUEDIR = "$LOCALDIR/" . uniquedir; 88our $UNIQUEDIR = "$LOCALDIR/" . uniquedir;
72our $PLAYERDIR = "$LOCALDIR/" . playerdir; 89our $PLAYERDIR = "$LOCALDIR/" . playerdir;
73our $RANDOMDIR = "$LOCALDIR/random"; 90our $RANDOMDIR = "$LOCALDIR/random";
74our $BDBDIR = "$LOCALDIR/db"; 91our $BDBDIR = "$LOCALDIR/db";
92our %RESOURCE;
75 93
76our $TICK = MAX_TIME * 1e-6; # this is a CONSTANT(!) 94our $TICK = MAX_TIME * 1e-6; # this is a CONSTANT(!)
77our $TICK_WATCHER;
78our $AIO_POLL_WATCHER; 95our $AIO_POLL_WATCHER;
79our $NEXT_RUNTIME_WRITE; # when should the runtime file be written 96our $NEXT_RUNTIME_WRITE; # when should the runtime file be written
80our $NEXT_TICK; 97our $NEXT_TICK;
81our $NOW;
82our $USE_FSYNC = 1; # use fsync to write maps - default off 98our $USE_FSYNC = 1; # use fsync to write maps - default off
83 99
84our $BDB_POLL_WATCHER; 100our $BDB_POLL_WATCHER;
85our $BDB_DEADLOCK_WATCHER; 101our $BDB_DEADLOCK_WATCHER;
86our $BDB_CHECKPOINT_WATCHER; 102our $BDB_CHECKPOINT_WATCHER;
89 105
90our %CFG; 106our %CFG;
91 107
92our $UPTIME; $UPTIME ||= time; 108our $UPTIME; $UPTIME ||= time;
93our $RUNTIME; 109our $RUNTIME;
110our $NOW;
94 111
95our (%PLAYER, %PLAYER_LOADING); # all users 112our (%PLAYER, %PLAYER_LOADING); # all users
96our (%MAP, %MAP_LOADING ); # all maps 113our (%MAP, %MAP_LOADING ); # all maps
97our $LINK_MAP; # the special {link} map, which is always available 114our $LINK_MAP; # the special {link} map, which is always available
98 115
99# used to convert map paths into valid unix filenames by replacing / by ∕ 116# used to convert map paths into valid unix filenames by replacing / by ∕
100our $PATH_SEP = "∕"; # U+2215, chosen purely for visual reasons 117our $PATH_SEP = "∕"; # U+2215, chosen purely for visual reasons
101 118
102our $LOAD; # a number between 0 (idle) and 1 (too many objects) 119our $LOAD; # a number between 0 (idle) and 1 (too many objects)
103our $LOADAVG; # same thing, but with alpha-smoothing 120our $LOADAVG; # same thing, but with alpha-smoothing
121our $JITTER; # average jitter
104our $tick_start; # for load detecting purposes 122our $TICK_START; # for load detecting purposes
105 123
106binmode STDOUT; 124binmode STDOUT;
107binmode STDERR; 125binmode STDERR;
108 126
109# read virtual server time, if available 127# read virtual server time, if available
162 180
163The raw value load value from the last tick. 181The raw value load value from the last tick.
164 182
165=item %cf::CFG 183=item %cf::CFG
166 184
167Configuration for the server, loaded from C</etc/crossfire/config>, or 185Configuration for the server, loaded from C</etc/deliantra-server/config>, or
168from wherever your confdir points to. 186from wherever your confdir points to.
169 187
170=item cf::wait_for_tick, cf::wait_for_tick_begin 188=item cf::wait_for_tick, cf::wait_for_tick_begin
171 189
172These are functions that inhibit the current coroutine one tick. cf::wait_for_tick_begin only 190These are functions that inhibit the current coroutine one tick. cf::wait_for_tick_begin only
193 $msg =~ s/([\x00-\x08\x0b-\x1f])/sprintf "\\x%02x", ord $1/ge; 211 $msg =~ s/([\x00-\x08\x0b-\x1f])/sprintf "\\x%02x", ord $1/ge;
194 212
195 LOG llevError, $msg; 213 LOG llevError, $msg;
196 }; 214 };
197} 215}
216
217$Coro::State::DIEHOOK = sub {
218 return unless $^S eq 0; # "eq", not "=="
219
220 if ($Coro::current == $Coro::main) {#d#
221 warn "DIEHOOK called in main context, Coro bug?\n";#d#
222 return;#d#
223 }#d#
224
225 # kill coroutine otherwise
226 warn Carp::longmess $_[0];
227 Coro::terminate
228};
229
230$SIG{__DIE__} = sub { }; #d#?
198 231
199@safe::cf::global::ISA = @cf::global::ISA = 'cf::attachable'; 232@safe::cf::global::ISA = @cf::global::ISA = 'cf::attachable';
200@safe::cf::object::ISA = @cf::object::ISA = 'cf::attachable'; 233@safe::cf::object::ISA = @cf::object::ISA = 'cf::attachable';
201@safe::cf::player::ISA = @cf::player::ISA = 'cf::attachable'; 234@safe::cf::player::ISA = @cf::player::ISA = 'cf::attachable';
202@safe::cf::client::ISA = @cf::client::ISA = 'cf::attachable'; 235@safe::cf::client::ISA = @cf::client::ISA = 'cf::attachable';
215)) { 248)) {
216 no strict 'refs'; 249 no strict 'refs';
217 @{"safe::$pkg\::wrap::ISA"} = @{"$pkg\::wrap::ISA"} = $pkg; 250 @{"safe::$pkg\::wrap::ISA"} = @{"$pkg\::wrap::ISA"} = $pkg;
218} 251}
219 252
220$Event::DIED = sub { 253$EV::DIED = sub {
221 warn "error in event callback: @_"; 254 warn "error in event callback: @_";
222}; 255};
223 256
224############################################################################# 257#############################################################################
225 258
248 $d =~ s/([\x00-\x07\x09\x0b\x0c\x0e-\x1f])/sprintf "\\x%02x", ord($1)/ge; 281 $d =~ s/([\x00-\x07\x09\x0b\x0c\x0e-\x1f])/sprintf "\\x%02x", ord($1)/ge;
249 $d 282 $d
250 } || "[unable to dump $_[0]: '$@']"; 283 } || "[unable to dump $_[0]: '$@']";
251} 284}
252 285
253=item $ref = cf::from_json $json 286=item $ref = cf::decode_json $json
254 287
255Converts a JSON string into the corresponding perl data structure. 288Converts a JSON string into the corresponding perl data structure.
256 289
257=item $json = cf::to_json $ref 290=item $json = cf::encode_json $ref
258 291
259Converts a perl data structure into its JSON representation. 292Converts a perl data structure into its JSON representation.
260 293
261=cut 294=cut
262 295
263our $json_coder = JSON::XS->new->utf8->max_size (1e6); # accept ~1mb max 296our $json_coder = JSON::XS->new->utf8->max_size (1e6); # accept ~1mb max
264 297
265sub to_json ($) { $json_coder->encode ($_[0]) } 298sub encode_json($) { $json_coder->encode ($_[0]) }
266sub from_json ($) { $json_coder->decode ($_[0]) } 299sub decode_json($) { $json_coder->decode ($_[0]) }
267 300
268=item cf::lock_wait $string 301=item cf::lock_wait $string
269 302
270Wait until the given lock is available. See cf::lock_acquire. 303Wait until the given lock is available. See cf::lock_acquire.
271 304
327 360
328 ! ! $LOCK{$key} 361 ! ! $LOCK{$key}
329} 362}
330 363
331sub freeze_mainloop { 364sub freeze_mainloop {
332 return unless $TICK_WATCHER->is_active; 365 tick_inhibit_inc;
333 366
334 my $guard = Coro::guard { 367 Coro::guard \&tick_inhibit_dec;
335 $TICK_WATCHER->start; 368}
336 }; 369
337 $TICK_WATCHER->stop; 370=item cf::periodic $interval, $cb
338 $guard 371
372Like EV::periodic, but randomly selects a starting point so that the actions
373get spread over timer.
374
375=cut
376
377sub periodic($$) {
378 my ($interval, $cb) = @_;
379
380 my $start = rand List::Util::min 180, $interval;
381
382 EV::periodic $start, $interval, 0, $cb
339} 383}
340 384
341=item cf::get_slot $time[, $priority[, $name]] 385=item cf::get_slot $time[, $priority[, $name]]
342 386
343Allocate $time seconds of blocking CPU time at priority C<$priority>: 387Allocate $time seconds of blocking CPU time at priority C<$priority>:
406 450
407BEGIN { *async = \&Coro::async_pool } 451BEGIN { *async = \&Coro::async_pool }
408 452
409=item cf::sync_job { BLOCK } 453=item cf::sync_job { BLOCK }
410 454
411The design of Crossfire TRT requires that the main coroutine ($Coro::main) 455The design of Deliantra requires that the main coroutine ($Coro::main)
412is always able to handle events or runnable, as Crossfire TRT is only 456is always able to handle events or runnable, as Deliantra is only
413partly reentrant. Thus "blocking" it by e.g. waiting for I/O is not 457partly reentrant. Thus "blocking" it by e.g. waiting for I/O is not
414acceptable. 458acceptable.
415 459
416If it must be done, put the blocking parts into C<sync_job>. This will run 460If it must be done, put the blocking parts into C<sync_job>. This will run
417the given BLOCK in another coroutine while waiting for the result. The 461the given BLOCK in another coroutine while waiting for the result. The
422 466
423sub sync_job(&) { 467sub sync_job(&) {
424 my ($job) = @_; 468 my ($job) = @_;
425 469
426 if ($Coro::current == $Coro::main) { 470 if ($Coro::current == $Coro::main) {
427 my $time = Event::time; 471 my $time = EV::time;
428 472
429 # this is the main coro, too bad, we have to block 473 # this is the main coro, too bad, we have to block
430 # till the operation succeeds, freezing the server :/ 474 # till the operation succeeds, freezing the server :/
431 475
432 LOG llevError, Carp::longmess "sync job";#d# 476 LOG llevError, Carp::longmess "sync job";#d#
433 477
434 # TODO: use suspend/resume instead
435 # (but this is cancel-safe)
436 my $freeze_guard = freeze_mainloop; 478 my $freeze_guard = freeze_mainloop;
437 479
438 my $busy = 1; 480 my $busy = 1;
439 my @res; 481 my @res;
440 482
447 489
448 while ($busy) { 490 while ($busy) {
449 if (Coro::nready) { 491 if (Coro::nready) {
450 Coro::cede_notself; 492 Coro::cede_notself;
451 } else { 493 } else {
452 Event::one_event; 494 EV::loop EV::LOOP_ONESHOT;
453 } 495 }
454 } 496 }
455 497
456 $time = Event::time - $time; 498 my $time = EV::time - $time;
457 499
458 LOG llevError | logBacktrace, Carp::longmess "long sync job"
459 if $time > $TICK * 0.5 && $TICK_WATCHER->is_active;
460
461 $tick_start += $time; # do not account sync jobs to server load 500 $TICK_START += $time; # do not account sync jobs to server load
462 501
463 wantarray ? @res : $res[0] 502 wantarray ? @res : $res[0]
464 } else { 503 } else {
465 # we are in another coroutine, how wonderful, everything just works 504 # we are in another coroutine, how wonderful, everything just works
466 505
491=item fork_call { }, $args 530=item fork_call { }, $args
492 531
493Executes the given code block with the given arguments in a seperate 532Executes the given code block with the given arguments in a seperate
494process, returning the results. Everything must be serialisable with 533process, returning the results. Everything must be serialisable with
495Coro::Storable. May, of course, block. Note that the executed sub may 534Coro::Storable. May, of course, block. Note that the executed sub may
496never block itself or use any form of Event handling. 535never block itself or use any form of event handling.
497 536
498=cut 537=cut
499 538
500sub fork_call(&@) { 539sub fork_call(&@) {
501 my ($cb, @args) = @_; 540 my ($cb, @args) = @_;
662attach callbacks/event handlers (a collection of which is called an "attachment") 701attach callbacks/event handlers (a collection of which is called an "attachment")
663to it. All such attachable objects support the following methods. 702to it. All such attachable objects support the following methods.
664 703
665In the following description, CLASS can be any of C<global>, C<object> 704In the following description, CLASS can be any of C<global>, C<object>
666C<player>, C<client> or C<map> (i.e. the attachable objects in 705C<player>, C<client> or C<map> (i.e. the attachable objects in
667Crossfire TRT). 706Deliantra).
668 707
669=over 4 708=over 4
670 709
671=item $attachable->attach ($attachment, key => $value...) 710=item $attachable->attach ($attachment, key => $value...)
672 711
954 } 993 }
955 994
956 0 995 0
957} 996}
958 997
959=item $bool = cf::global::invoke (EVENT_CLASS_XXX, ...) 998=item $bool = cf::global->invoke (EVENT_CLASS_XXX, ...)
960 999
961=item $bool = $attachable->invoke (EVENT_CLASS_XXX, ...) 1000=item $bool = $attachable->invoke (EVENT_CLASS_XXX, ...)
962 1001
963Generate an object-specific event with the given arguments. 1002Generate an object-specific event with the given arguments.
964 1003
1042cf::attachable->attach ( 1081cf::attachable->attach (
1043 prio => -1000000, 1082 prio => -1000000,
1044 on_instantiate => sub { 1083 on_instantiate => sub {
1045 my ($obj, $data) = @_; 1084 my ($obj, $data) = @_;
1046 1085
1047 $data = from_json $data; 1086 $data = decode_json $data;
1048 1087
1049 for (@$data) { 1088 for (@$data) {
1050 my ($name, $args) = @$_; 1089 my ($name, $args) = @$_;
1051 1090
1052 $obj->attach ($name, %{$args || {} }); 1091 $obj->attach ($name, %{$args || {} });
1289 my $msg = $@ ? "$v->{path}: $@\n" 1328 my $msg = $@ ? "$v->{path}: $@\n"
1290 : "$v->{base}: extension inactive.\n"; 1329 : "$v->{base}: extension inactive.\n";
1291 1330
1292 if (exists $v->{meta}{mandatory}) { 1331 if (exists $v->{meta}{mandatory}) {
1293 warn $msg; 1332 warn $msg;
1294 warn "mandatory extension failed to load, exiting.\n"; 1333 cf::cleanup "mandatory extension failed to load, exiting.";
1295 exit 1;
1296 } 1334 }
1297 1335
1298 warn $msg; 1336 warn $msg;
1299 } 1337 }
1300 1338
1548 1586
1549Expand crossfire pod fragments into protocol xml. 1587Expand crossfire pod fragments into protocol xml.
1550 1588
1551=cut 1589=cut
1552 1590
1591use re 'eval';
1592
1593my $group;
1594my $interior; $interior = qr{
1595 # match a pod interior sequence sans C<< >>
1596 (?:
1597 \ (.*?)\ (?{ $group = $^N })
1598 | < (??{$interior}) >
1599 )
1600}x;
1601
1553sub expand_cfpod { 1602sub expand_cfpod {
1554 ((my $self), (local $_)) = @_; 1603 my ($self, $pod) = @_;
1555 1604
1556 # escape & and < 1605 my $xml;
1557 s/&/&amp;/g;
1558 s/(?<![BIUGHT])</&lt;/g;
1559 1606
1560 # this is buggy, it needs to properly take care of nested <'s 1607 while () {
1608 if ($pod =~ /\G( (?: [^BCGHITU]+ | .(?!<) )+ )/xgcs) {
1609 $group = $1;
1561 1610
1562 1 while 1611 $group =~ s/&/&amp;/g;
1563 # replace B<>, I<>, U<> etc. 1612 $group =~ s/</&lt;/g;
1564 s/B<([^\>]*)>/<b>$1<\/b>/ 1613
1565 || s/I<([^\>]*)>/<i>$1<\/i>/ 1614 $xml .= $group;
1566 || s/U<([^\>]*)>/<u>$1<\/u>/ 1615 } elsif ($pod =~ m%\G
1567 || s/T<([^\>]*)>/<big><b>$1<\/b><\/big>/ 1616 ([BCGHITU])
1568 # replace G<male|female> tags 1617 <
1569 || s{G<([^>|]*)\|([^>]*)>}{ 1618 (?:
1570 $self->gender ? $2 : $1 1619 ([^<>]*) (?{ $group = $^N })
1571 }ge 1620 | < $interior >
1572 # replace H<hint text> 1621 )
1573 || s{H<([^\>]*)>} 1622 >
1623 %gcsx
1574 { 1624 ) {
1625 my ($code, $data) = ($1, $group);
1626
1627 if ($code eq "B") {
1628 $xml .= "<b>" . expand_cfpod ($self, $data) . "</b>";
1629 } elsif ($code eq "I") {
1630 $xml .= "<i>" . expand_cfpod ($self, $data) . "</i>";
1631 } elsif ($code eq "U") {
1632 $xml .= "<u>" . expand_cfpod ($self, $data) . "</u>";
1633 } elsif ($code eq "C") {
1634 $xml .= "<tt>" . expand_cfpod ($self, $data) . "</tt>";
1635 } elsif ($code eq "T") {
1636 $xml .= "<big><b>" . expand_cfpod ($self, $data) . "</b></big>";
1637 } elsif ($code eq "G") {
1638 my ($male, $female) = split /\|/, $data;
1639 $data = $self->gender ? $female : $male;
1640 $xml .= expand_cfpod ($self, $data);
1641 } elsif ($code eq "H") {
1575 ("<fg name=\"lightblue\">[$1 (Use hintmode to suppress hints)]</fg>", 1642 $xml .= ("<fg name=\"lightblue\">[" . expand_cfpod ($self, $data) . " (Use hintmode to suppress hints)]</fg>",
1576 "<fg name=\"lightblue\">[Hint suppressed, see hintmode]</fg>", 1643 "<fg name=\"lightblue\">[Hint suppressed, see hintmode]</fg>",
1577 "") 1644 "")
1578 [$self->{hintmode}] 1645 [$self->{hintmode}];
1646 } else {
1647 $xml .= "error processing '$code($data)' directive";
1579 }ge; 1648 }
1649 } else {
1650 if ($pod =~ /\G(.+)/) {
1651 warn "parse error while expanding $pod (at $1)";
1652 }
1653 last;
1654 }
1655 }
1580 1656
1657 for ($xml) {
1581 # create single paragraphs (very hackish) 1658 # create single paragraphs (very hackish)
1582 s/(?<=\S)\n(?=\w)/ /g; 1659 s/(?<=\S)\n(?=\w)/ /g;
1583 1660
1584 # compress some whitespace 1661 # compress some whitespace
1585 s/\s+\n/\n/g; # ws line-ends 1662 s/\s+\n/\n/g; # ws line-ends
1586 s/\n\n+/\n/g; # double lines 1663 s/\n\n+/\n/g; # double lines
1587 s/^\n+//; # beginning lines 1664 s/^\n+//; # beginning lines
1588 s/\n+$//; # ending lines 1665 s/\n+$//; # ending lines
1666 }
1589 1667
1590 $_ 1668 $xml
1591} 1669}
1670
1671no re 'eval';
1592 1672
1593sub hintmode { 1673sub hintmode {
1594 $_[0]{hintmode} = $_[1] if @_ > 1; 1674 $_[0]{hintmode} = $_[1] if @_ > 1;
1595 $_[0]{hintmode} 1675 $_[0]{hintmode}
1596} 1676}
2583 $rmp->{origin_y} = $exit->y; 2663 $rmp->{origin_y} = $exit->y;
2584 } 2664 }
2585 2665
2586 $rmp->{random_seed} ||= $exit->random_seed; 2666 $rmp->{random_seed} ||= $exit->random_seed;
2587 2667
2588 my $data = cf::to_json $rmp; 2668 my $data = cf::encode_json $rmp;
2589 my $md5 = Digest::MD5::md5_hex $data; 2669 my $md5 = Digest::MD5::md5_hex $data;
2590 my $meta = "$RANDOMDIR/$md5.meta"; 2670 my $meta = "$RANDOMDIR/$md5.meta";
2591 2671
2592 if (my $fh = aio_open "$meta~", O_WRONLY | O_CREAT, 0666) { 2672 if (my $fh = aio_open "$meta~", O_WRONLY | O_CREAT, 0666) {
2593 aio_write $fh, 0, (length $data), $data, 0; 2673 aio_write $fh, 0, (length $data), $data, 0;
2666the message, with C<log> being the default. If C<$color> is negative, suppress 2746the message, with C<log> being the default. If C<$color> is negative, suppress
2667the message unless the client supports the msg packet. 2747the message unless the client supports the msg packet.
2668 2748
2669=cut 2749=cut
2670 2750
2751# non-persistent channels (usually the info channel)
2671our %CHANNEL = ( 2752our %CHANNEL = (
2672 "c/identify" => { 2753 "c/identify" => {
2673 id => "infobox", 2754 id => "infobox",
2674 title => "Identify", 2755 title => "Identify",
2675 reply => undef, 2756 reply => undef,
2707 }, 2788 },
2708 "c/uptime" => { 2789 "c/uptime" => {
2709 id => "infobox", 2790 id => "infobox",
2710 title => "Uptime", 2791 title => "Uptime",
2711 reply => undef, 2792 reply => undef,
2712 tooltip => "How long the server has been running sicne last restart", 2793 tooltip => "How long the server has been running since last restart",
2713 }, 2794 },
2714 "c/mapinfo" => { 2795 "c/mapinfo" => {
2715 id => "infobox", 2796 id => "infobox",
2716 title => "Map Info", 2797 title => "Map Info",
2717 reply => undef, 2798 reply => undef,
3092 { 3173 {
3093 my $faces = $facedata->{faceinfo}; 3174 my $faces = $facedata->{faceinfo};
3094 3175
3095 while (my ($face, $info) = each %$faces) { 3176 while (my ($face, $info) = each %$faces) {
3096 my $idx = (cf::face::find $face) || cf::face::alloc $face; 3177 my $idx = (cf::face::find $face) || cf::face::alloc $face;
3178
3097 cf::face::set_visibility $idx, $info->{visibility}; 3179 cf::face::set_visibility $idx, $info->{visibility};
3098 cf::face::set_magicmap $idx, $info->{magicmap}; 3180 cf::face::set_magicmap $idx, $info->{magicmap};
3099 cf::face::set_data $idx, 0, $info->{data32}, Digest::MD5::md5 $info->{data32}; 3181 cf::face::set_data $idx, 0, $info->{data32}, Digest::MD5::md5 $info->{data32};
3100 cf::face::set_data $idx, 1, $info->{data64}, Digest::MD5::md5 $info->{data64}; 3182 cf::face::set_data $idx, 1, $info->{data64}, Digest::MD5::md5 $info->{data64};
3101 3183
3102 cf::cede_to_tick; 3184 cf::cede_to_tick;
3103 } 3185 }
3104 3186
3105 while (my ($face, $info) = each %$faces) { 3187 while (my ($face, $info) = each %$faces) {
3106 next unless $info->{smooth}; 3188 next unless $info->{smooth};
3189
3107 my $idx = cf::face::find $face 3190 my $idx = cf::face::find $face
3108 or next; 3191 or next;
3192
3109 if (my $smooth = cf::face::find $info->{smooth}) { 3193 if (my $smooth = cf::face::find $info->{smooth}) {
3110 cf::face::set_smooth $idx, $smooth; 3194 cf::face::set_smooth $idx, $smooth;
3111 cf::face::set_smoothlevel $idx, $info->{smoothlevel}; 3195 cf::face::set_smoothlevel $idx, $info->{smoothlevel};
3112 } else { 3196 } else {
3113 warn "smooth face '$info->{smooth}' not found for face '$face'"; 3197 warn "smooth face '$info->{smooth}' not found for face '$face'";
3131 { 3215 {
3132 # TODO: for gcfclient pleasure, we should give resources 3216 # TODO: for gcfclient pleasure, we should give resources
3133 # that gcfclient doesn't grok a >10000 face index. 3217 # that gcfclient doesn't grok a >10000 face index.
3134 my $res = $facedata->{resource}; 3218 my $res = $facedata->{resource};
3135 3219
3136 my $soundconf = delete $res->{"res/sound.conf"};
3137
3138 while (my ($name, $info) = each %$res) { 3220 while (my ($name, $info) = each %$res) {
3221 if (defined $info->{type}) {
3139 my $idx = (cf::face::find $name) || cf::face::alloc $name; 3222 my $idx = (cf::face::find $name) || cf::face::alloc $name;
3140 my $data; 3223 my $data;
3141 3224
3142 if ($info->{type} & 1) { 3225 if ($info->{type} & 1) {
3143 # prepend meta info 3226 # prepend meta info
3144 3227
3145 my $meta = $enc->encode ({ 3228 my $meta = $enc->encode ({
3146 name => $name, 3229 name => $name,
3147 %{ $info->{meta} || {} }, 3230 %{ $info->{meta} || {} },
3148 }); 3231 });
3149 3232
3150 $data = pack "(w/a*)*", $meta, $info->{data}; 3233 $data = pack "(w/a*)*", $meta, $info->{data};
3234 } else {
3235 $data = $info->{data};
3236 }
3237
3238 cf::face::set_data $idx, 0, $data, Digest::MD5::md5 $data;
3239 cf::face::set_type $idx, $info->{type};
3151 } else { 3240 } else {
3152 $data = $info->{data}; 3241 $RESOURCE{$name} = $info;
3153 } 3242 }
3154 3243
3155 cf::face::set_data $idx, 0, $data, Digest::MD5::md5 $data;
3156 cf::face::set_type $idx, $info->{type};
3157
3158 cf::cede_to_tick; 3244 cf::cede_to_tick;
3159 } 3245 }
3160
3161 if ($soundconf) {
3162 $soundconf = $enc->decode (delete $soundconf->{data});
3163
3164 for (0 .. SOUND_CAST_SPELL_0 - 1) {
3165 my $sound = $soundconf->{compat}[$_]
3166 or next;
3167
3168 my $face = cf::face::find "sound/$sound->[1]";
3169 cf::sound::set $sound->[0] => $face;
3170 cf::sound::old_sound_index $_, $face; # gcfclient-compat
3171 }
3172
3173 while (my ($k, $v) = each %{$soundconf->{event}}) {
3174 my $face = cf::face::find "sound/$v";
3175 cf::sound::set $k => $face;
3176 }
3177 }
3178 } 3246 }
3247
3248 cf::global->invoke (EVENT_GLOBAL_RESOURCE_UPDATE);
3179 3249
3180 1 3250 1
3181} 3251}
3252
3253cf::global->attach (on_resource_update => sub {
3254 if (my $soundconf = $RESOURCE{"res/sound.conf"}) {
3255 $soundconf = JSON::XS->new->utf8->relaxed->decode ($soundconf->{data});
3256
3257 for (0 .. SOUND_CAST_SPELL_0 - 1) {
3258 my $sound = $soundconf->{compat}[$_]
3259 or next;
3260
3261 my $face = cf::face::find "sound/$sound->[1]";
3262 cf::sound::set $sound->[0] => $face;
3263 cf::sound::old_sound_index $_, $face; # gcfclient-compat
3264 }
3265
3266 while (my ($k, $v) = each %{$soundconf->{event}}) {
3267 my $face = cf::face::find "sound/$v";
3268 cf::sound::set $k => $face;
3269 }
3270 }
3271});
3182 3272
3183register_exticmd fx_want => sub { 3273register_exticmd fx_want => sub {
3184 my ($ns, $want) = @_; 3274 my ($ns, $want) = @_;
3185 3275
3186 while (my ($k, $v) = each %$want) { 3276 while (my ($k, $v) = each %$want) {
3241sub reload_config { 3331sub reload_config {
3242 open my $fh, "<:utf8", "$CONFDIR/config" 3332 open my $fh, "<:utf8", "$CONFDIR/config"
3243 or return; 3333 or return;
3244 3334
3245 local $/; 3335 local $/;
3246 *CFG = YAML::Syck::Load <$fh>; 3336 *CFG = YAML::Load <$fh>;
3247 3337
3248 $EMERGENCY_POSITION = $CFG{emergency_position} || ["/world/world_105_115", 5, 37]; 3338 $EMERGENCY_POSITION = $CFG{emergency_position} || ["/world/world_105_115", 5, 37];
3249 3339
3250 $cf::map::MAX_RESET = $CFG{map_max_reset} if exists $CFG{map_max_reset}; 3340 $cf::map::MAX_RESET = $CFG{map_max_reset} if exists $CFG{map_max_reset};
3251 $cf::map::DEFAULT_RESET = $CFG{map_default_reset} if exists $CFG{map_default_reset}; 3341 $cf::map::DEFAULT_RESET = $CFG{map_default_reset} if exists $CFG{map_default_reset};
3263 # we must not ever block the main coroutine 3353 # we must not ever block the main coroutine
3264 local $Coro::idle = sub { 3354 local $Coro::idle = sub {
3265 Carp::cluck "FATAL: Coro::idle was called, major BUG, use cf::sync_job!\n";#d# 3355 Carp::cluck "FATAL: Coro::idle was called, major BUG, use cf::sync_job!\n";#d#
3266 (async { 3356 (async {
3267 $Coro::current->{desc} = "IDLE BUG HANDLER"; 3357 $Coro::current->{desc} = "IDLE BUG HANDLER";
3268 Event::one_event; 3358 EV::loop EV::LOOP_ONESHOT;
3269 })->prio (Coro::PRIO_MAX); 3359 })->prio (Coro::PRIO_MAX);
3270 }; 3360 };
3271 3361
3272 reload_config; 3362 reload_config;
3273 db_init; 3363 db_init;
3274 load_extensions; 3364 load_extensions;
3275 3365
3276 $TICK_WATCHER->start; 3366 $Coro::current->prio (Coro::PRIO_MAX); # give the main loop max. priority
3367 evthread_start IO::AIO::poll_fileno;
3277 Event::loop; 3368 EV::loop;
3278} 3369}
3279 3370
3280############################################################################# 3371#############################################################################
3281# initialisation and cleanup 3372# initialisation and cleanup
3282 3373
3283# install some emergency cleanup handlers 3374# install some emergency cleanup handlers
3284BEGIN { 3375BEGIN {
3376 our %SIGWATCHER = ();
3285 for my $signal (qw(INT HUP TERM)) { 3377 for my $signal (qw(INT HUP TERM)) {
3286 Event->signal ( 3378 $SIGWATCHER{$signal} = EV::signal $signal, sub {
3287 reentrant => 0,
3288 data => WF_AUTOCANCEL,
3289 signal => $signal,
3290 prio => 0,
3291 cb => sub {
3292 cf::cleanup "SIG$signal"; 3379 cf::cleanup "SIG$signal";
3293 },
3294 ); 3380 };
3295 } 3381 }
3296} 3382}
3297 3383
3298sub write_runtime { 3384sub write_runtime {
3299 my $runtime = "$LOCALDIR/runtime"; 3385 my $runtime = "$LOCALDIR/runtime";
3393 warn "syncing database to disk"; 3479 warn "syncing database to disk";
3394 BDB::db_env_txn_checkpoint $DB_ENV; 3480 BDB::db_env_txn_checkpoint $DB_ENV;
3395 3481
3396 # if anything goes wrong in here, we should simply crash as we already saved 3482 # if anything goes wrong in here, we should simply crash as we already saved
3397 3483
3398 warn "cancelling all WF_AUTOCANCEL watchers";
3399 for (Event::all_watchers) {
3400 $_->cancel if $_->data & WF_AUTOCANCEL;
3401 }
3402
3403 warn "flushing outstanding aio requests"; 3484 warn "flushing outstanding aio requests";
3404 for (;;) { 3485 for (;;) {
3405 BDB::flush; 3486 BDB::flush;
3406 IO::AIO::flush; 3487 IO::AIO::flush;
3407 Coro::cede_notself; 3488 Coro::cede_notself;
3488 warn "leaving sync_job"; 3569 warn "leaving sync_job";
3489 3570
3490 1 3571 1
3491 } or do { 3572 } or do {
3492 warn $@; 3573 warn $@;
3493 warn "error while reloading, exiting."; 3574 cf::cleanup "error while reloading, exiting.";
3494 exit 1;
3495 }; 3575 };
3496 3576
3497 warn "reloaded"; 3577 warn "reloaded";
3498}; 3578};
3499 3579
3501 3581
3502sub reload_perl() { 3582sub reload_perl() {
3503 # doing reload synchronously and two reloads happen back-to-back, 3583 # doing reload synchronously and two reloads happen back-to-back,
3504 # coro crashes during coro_state_free->destroy here. 3584 # coro crashes during coro_state_free->destroy here.
3505 3585
3506 $RELOAD_WATCHER ||= Event->timer ( 3586 $RELOAD_WATCHER ||= EV::timer 0, 0, sub {
3507 reentrant => 0,
3508 after => 0,
3509 data => WF_AUTOCANCEL,
3510 cb => sub {
3511 do_reload_perl; 3587 do_reload_perl;
3512 undef $RELOAD_WATCHER; 3588 undef $RELOAD_WATCHER;
3513 },
3514 ); 3589 };
3515} 3590}
3516 3591
3517register_command "reload" => sub { 3592register_command "reload" => sub {
3518 my ($who, $arg) = @_; 3593 my ($who, $arg) = @_;
3519 3594
3532 3607
3533our @WAIT_FOR_TICK; 3608our @WAIT_FOR_TICK;
3534our @WAIT_FOR_TICK_BEGIN; 3609our @WAIT_FOR_TICK_BEGIN;
3535 3610
3536sub wait_for_tick { 3611sub wait_for_tick {
3537 return unless $TICK_WATCHER->is_active; 3612 return if tick_inhibit;
3538 return if $Coro::current == $Coro::main; 3613 return if $Coro::current == $Coro::main;
3539 3614
3540 my $signal = new Coro::Signal; 3615 my $signal = new Coro::Signal;
3541 push @WAIT_FOR_TICK, $signal; 3616 push @WAIT_FOR_TICK, $signal;
3542 $signal->wait; 3617 $signal->wait;
3543} 3618}
3544 3619
3545sub wait_for_tick_begin { 3620sub wait_for_tick_begin {
3546 return unless $TICK_WATCHER->is_active; 3621 return if tick_inhibit;
3547 return if $Coro::current == $Coro::main; 3622 return if $Coro::current == $Coro::main;
3548 3623
3549 my $signal = new Coro::Signal; 3624 my $signal = new Coro::Signal;
3550 push @WAIT_FOR_TICK_BEGIN, $signal; 3625 push @WAIT_FOR_TICK_BEGIN, $signal;
3551 $signal->wait; 3626 $signal->wait;
3552} 3627}
3553 3628
3554$TICK_WATCHER = Event->timer ( 3629sub tick {
3555 reentrant => 0,
3556 parked => 1,
3557 prio => 0,
3558 at => $NEXT_TICK || $TICK,
3559 data => WF_AUTOCANCEL,
3560 cb => sub {
3561 if ($Coro::current != $Coro::main) { 3630 if ($Coro::current != $Coro::main) {
3562 Carp::cluck "major BUG: server tick called outside of main coro, skipping it" 3631 Carp::cluck "major BUG: server tick called outside of main coro, skipping it"
3563 unless ++$bug_warning > 10; 3632 unless ++$bug_warning > 10;
3564 return; 3633 return;
3565 } 3634 }
3566 3635
3567 $NOW = $tick_start = Event::time;
3568
3569 cf::server_tick; # one server iteration 3636 cf::server_tick; # one server iteration
3570 3637
3571 $RUNTIME += $TICK;
3572 $NEXT_TICK += $TICK;
3573
3574 if ($NOW >= $NEXT_RUNTIME_WRITE) { 3638 if ($NOW >= $NEXT_RUNTIME_WRITE) {
3575 $NEXT_RUNTIME_WRITE = $NOW + 10; 3639 $NEXT_RUNTIME_WRITE = List::Util::max $NEXT_RUNTIME_WRITE + 10, $NOW + 5.;
3576 Coro::async_pool { 3640 Coro::async_pool {
3577 $Coro::current->{desc} = "runtime saver"; 3641 $Coro::current->{desc} = "runtime saver";
3578 write_runtime 3642 write_runtime
3579 or warn "ERROR: unable to write runtime file: $!"; 3643 or warn "ERROR: unable to write runtime file: $!";
3580 };
3581 } 3644 };
3645 }
3582 3646
3583 if (my $sig = shift @WAIT_FOR_TICK_BEGIN) { 3647 if (my $sig = shift @WAIT_FOR_TICK_BEGIN) {
3584 $sig->send; 3648 $sig->send;
3585 } 3649 }
3586 while (my $sig = shift @WAIT_FOR_TICK) { 3650 while (my $sig = shift @WAIT_FOR_TICK) {
3587 $sig->send; 3651 $sig->send;
3588 } 3652 }
3589 3653
3590 $NOW = Event::time; 3654 $LOAD = ($NOW - $TICK_START) / $TICK;
3591
3592 # if we are delayed by four ticks or more, skip them all
3593 $NEXT_TICK = $NOW if $NOW >= $NEXT_TICK + $TICK * 4;
3594
3595 $TICK_WATCHER->at ($NEXT_TICK);
3596 $TICK_WATCHER->start;
3597
3598 $LOAD = ($NOW - $tick_start) / $TICK;
3599 $LOADAVG = $LOADAVG * 0.75 + $LOAD * 0.25; 3655 $LOADAVG = $LOADAVG * 0.75 + $LOAD * 0.25;
3600 3656
3601 _post_tick; 3657 if (0) {
3658 if ($NEXT_TICK) {
3659 my $jitter = $TICK_START - $NEXT_TICK;
3660 $JITTER = $JITTER * 0.75 + $jitter * 0.25;
3661 warn "jitter $JITTER\n";#d#
3662 }
3602 }, 3663 }
3603); 3664}
3604 3665
3605{ 3666{
3667 # configure BDB
3668
3606 BDB::min_parallel 8; 3669 BDB::min_parallel 8;
3607 BDB::max_poll_time $TICK * 0.1; 3670 BDB::max_poll_reqs $TICK * 0.1;
3608 $BDB_POLL_WATCHER = Event->io ( 3671 $Coro::BDB::WATCHER->priority (1);
3609 reentrant => 0,
3610 fd => BDB::poll_fileno,
3611 poll => 'r',
3612 prio => 0,
3613 data => WF_AUTOCANCEL,
3614 cb => \&BDB::poll_cb,
3615 );
3616
3617 BDB::set_sync_prepare {
3618 my $status;
3619 my $current = $Coro::current;
3620 (
3621 sub {
3622 $status = $!;
3623 $current->ready; undef $current;
3624 },
3625 sub {
3626 Coro::schedule while defined $current;
3627 $! = $status;
3628 },
3629 )
3630 };
3631 3672
3632 unless ($DB_ENV) { 3673 unless ($DB_ENV) {
3633 $DB_ENV = BDB::db_env_create; 3674 $DB_ENV = BDB::db_env_create;
3634 $DB_ENV->set_flags (BDB::AUTO_COMMIT | BDB::REGION_INIT | BDB::TXN_NOSYNC 3675 $DB_ENV->set_flags (BDB::AUTO_COMMIT | BDB::REGION_INIT | BDB::TXN_NOSYNC
3635 | BDB::LOG_AUTOREMOVE, 1); 3676 | BDB::LOG_AUTOREMOVE, 1);
3650 3691
3651 cf::cleanup "db_env_open(db): $@" if $@; 3692 cf::cleanup "db_env_open(db): $@" if $@;
3652 }; 3693 };
3653 } 3694 }
3654 3695
3655 $BDB_DEADLOCK_WATCHER = Event->timer ( 3696 $BDB_DEADLOCK_WATCHER = EV::periodic 0, 3, 0, sub {
3656 after => 3,
3657 interval => 1,
3658 hard => 1,
3659 prio => 0,
3660 data => WF_AUTOCANCEL,
3661 cb => sub {
3662 BDB::db_env_lock_detect $DB_ENV, 0, BDB::LOCK_DEFAULT, 0, sub { }; 3697 BDB::db_env_lock_detect $DB_ENV, 0, BDB::LOCK_DEFAULT, 0, sub { };
3663 },
3664 ); 3698 };
3665 $BDB_CHECKPOINT_WATCHER = Event->timer ( 3699 $BDB_CHECKPOINT_WATCHER = EV::periodic 0, 60, 0, sub {
3666 after => 11,
3667 interval => 60,
3668 hard => 1,
3669 prio => 0,
3670 data => WF_AUTOCANCEL,
3671 cb => sub {
3672 BDB::db_env_txn_checkpoint $DB_ENV, 0, 0, 0, sub { }; 3700 BDB::db_env_txn_checkpoint $DB_ENV, 0, 0, 0, sub { };
3673 },
3674 ); 3701 };
3675 $BDB_TRICKLE_WATCHER = Event->timer ( 3702 $BDB_TRICKLE_WATCHER = EV::periodic 0, 10, 0, sub {
3676 after => 5,
3677 interval => 10,
3678 hard => 1,
3679 prio => 0,
3680 data => WF_AUTOCANCEL,
3681 cb => sub {
3682 BDB::db_env_memp_trickle $DB_ENV, 20, 0, sub { }; 3703 BDB::db_env_memp_trickle $DB_ENV, 20, 0, sub { };
3683 },
3684 ); 3704 };
3685} 3705}
3686 3706
3687{ 3707{
3708 # configure IO::AIO
3709
3688 IO::AIO::min_parallel 8; 3710 IO::AIO::min_parallel 8;
3689
3690 undef $Coro::AIO::WATCHER;
3691 IO::AIO::max_poll_time $TICK * 0.1; 3711 IO::AIO::max_poll_time $TICK * 0.1;
3692 $AIO_POLL_WATCHER = Event->io ( 3712 $Coro::AIO::WATCHER->priority (1);
3693 reentrant => 0,
3694 data => WF_AUTOCANCEL,
3695 fd => IO::AIO::poll_fileno,
3696 poll => 'r',
3697 prio => 0,
3698 cb => \&IO::AIO::poll_cb,
3699 );
3700} 3713}
3701 3714
3702my $_log_backtrace; 3715my $_log_backtrace;
3703 3716
3704sub _log_backtrace { 3717sub _log_backtrace {

Diff Legend

Removed lines
+ Added lines
< Changed lines
> Changed lines