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Revision 1.18 by root, Thu Dec 14 05:09:32 2006 UTC vs.
Revision 1.87 by root, Tue Nov 6 03:45:17 2012 UTC

1/* 1/*
2 CrossFire, A Multiplayer game for X-windows 2 * This file is part of Deliantra, the Roguelike Realtime MMORPG.
3 3 *
4 Copyright (C) 1992 Frank Tore Johansen 4 * Copyright (©) 2005,2006,2007,2008,2009,2010,2011,2012 Marc Alexander Lehmann / Robin Redeker / the Deliantra team
5 5 *
6 This program is free software; you can redistribute it and/or modify 6 * Deliantra is free software: you can redistribute it and/or modify it under
7 it under the terms of the GNU General Public License as published by 7 * the terms of the Affero GNU General Public License as published by the
8 the Free Software Foundation; either version 2 of the License, or 8 * Free Software Foundation, either version 3 of the License, or (at your
9 (at your option) any later version. 9 * option) any later version.
10 10 *
11 This program is distributed in the hope that it will be useful, 11 * This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details. 14 * GNU General Public License for more details.
15 15 *
16 You should have received a copy of the GNU General Public License 16 * You should have received a copy of the Affero GNU General Public License
17 along with this program; if not, write to the Free Software 17 * and the GNU General Public License along with this program. If not, see
18 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 18 * <http://www.gnu.org/licenses/>.
19
20 The author can be reached via e-mail to mark@pyramid.com
21*/
22
23/**
24 * \file
25 * Low-level socket-related functions.
26 * 19 *
27 * \date 2003-12-02 20 * The authors can be reached via e-mail to <support@deliantra.net>
28 *
29 * Contains some base functions that both the client and server
30 * can use. As such, depending what we are being compiled for will
31 * determine what we can include. the client is designed have
32 * CFCLIENT defined as part of its compile flags.
33 */ 21 */
34 22
35using namespace std; 23using namespace std;
36 24
37#include <global.h> 25#include <global.h>
38#include <newclient.h>
39#include <sproto.h> 26#include <sproto.h>
40#include <cstdarg> 27#include <cstdarg>
41 28
42#ifdef __linux__ 29#if HAVE_TCP_INFO
43# include <sys/types.h> 30# include <sys/types.h>
44# include <sys/socket.h> 31# include <sys/socket.h>
45# include <netinet/in.h> 32# include <netinet/in.h>
46# define TCP_HZ 1000 // sorry...
47# include <netinet/tcp.h> 33# include <netinet/tcp.h>
48#endif 34#endif
49 35
50// use a really low timeout, as it doesn't cost any bandwidth, and you can 36// force a packet when idle for more than this many seconds,
51// easily die in 20 seconds... 37// forcing an ack regularly.
52#define SOCKET_TIMEOUT1 10 38#define IDLE_PING 2.
53#define SOCKET_TIMEOUT2 20
54 39
55void 40void
56Socket_Flush (client_socket * ns) 41client::flush ()
57{ 42{
58#ifdef __linux__ 43 if (destroyed ())
59 // check time of last ack, and, if too old, kill connection 44 return;
60 struct tcp_info tcpi;
61 socklen_t len = sizeof (tcpi);
62 45
63 if (!getsockopt (ns->fd, IPPROTO_TCP, TCP_INFO, &tcpi, &len) && len == sizeof (tcpi)) 46 /**
64 { 47 * Writes data to socket.
65 unsigned int diff = tcpi.tcpi_last_ack_recv - tcpi.tcpi_last_data_sent; 48 *
49 * When the socket is clear to write, and we have backlogged data, this
50 * is called to write it out.
51 */
66 52
67 if (tcpi.tcpi_unacked && SOCKET_TIMEOUT1 * TCP_HZ < diff && diff < 0x80000000UL // ack delayed for 20s 53 // write a nop to the socket at least every IDLE_NOP seconds.
68 && SOCKET_TIMEOUT2 * TCP_HZ < tcpi.tcpi_last_data_sent) // no data sent for 10s 54 if (!outputbuffer.len)
69 { 55 {
70 LOG (llevDebug, "Connection on fd %d closed due to ack timeout (%u/%u/%u)\n", ns->fd, 56 if (last_send + IDLE_PING <= NOW && pl && pl->active)
71 (unsigned) tcpi.tcpi_last_ack_recv, (unsigned) tcpi.tcpi_last_data_sent, (unsigned) tcpi.tcpi_unacked);
72 ns->status = Ns_Dead;
73 } 57 {
58 // this is a bit ugly, but map1a seems to be the only
59 // nop'able command and it is quite small.
60 packet sl ("map1a");
61 send_packet (sl);
62 }
63 else
64 return;
65 }
66
67 if (socket_ev.poll () & EV_WRITE)
68 return;
69
70 last_send = NOW;
71 write_outputbuffer ();
72}
73
74void
75client::write_outputbuffer ()
76{
77 while (outputbuffer.len)
74 } 78 {
79 int res = write (fd, outputbuffer.data + outputbuffer.start,
80 min (outputbuffer.len, SOCKETBUFSIZE - outputbuffer.start));
75 81
76 int val; 82 if (res > 0)
83 {
84 outputbuffer.start += res;
85 /* wrap back to start of buffer */
86 if (outputbuffer.start == SOCKETBUFSIZE)
87 outputbuffer.start = 0;
77 88
78 val = 0; setsockopt (ns->fd, IPPROTO_TCP, TCP_CORK, &val, sizeof (val)); 89 outputbuffer.len -= res;
79 val = 1; setsockopt (ns->fd, IPPROTO_TCP, TCP_CORK, &val, sizeof (val)); 90 }
80#endif 91 else if (res == 0)
81} 92 {
93 LOG (llevError, "socket write failed, connection closed.\n");
94 destroy ();
95 return;
96 }
97 else if (errno == EINTR)
98 {
99 // just retry
100 }
101 else if (errno == EAGAIN)
102 {
103 // delay till ready
104 socket_ev.poll (socket_ev.poll () | EV_WRITE);
105 socket_ev.start ();
106 return;
107 }
108 else
109 {
110 LOG (llevError, "socket write failed: %s\n", strerror (errno));
111 destroy ();
112 return;
113 }
114 }
82 115
116 socket_ev.poll (socket_ev.poll () & ~EV_WRITE);
117}
118
119/******************************************************************************
120 *
121 * Start of read routines.
122 *
123 ******************************************************************************/
124
125int
126client::next_packet ()
127{
128 if (inbuf_len >= 2)
129 {
130 int pkt_len = (inbuf [0] << 8) | inbuf [1];
131
132 if (inbuf_len >= 2 + pkt_len)
133 return 2 + pkt_len;
134
135 if (inbuf_len == sizeof (inbuf))
136 {
137 send_packet_printf ("drawinfo %d input buffer overflow - closing connection.", NDI_RED | NDI_REPLY);
138 destroy ();
139 return -1;
140 }
141 }
142
143 return 0;
144}
145
146void
147client::skip_packet (int len)
148{
149 inbuf_len -= len;
150 memmove (inbuf, inbuf + len, inbuf_len);
151}
152
83/*********************************************************************** 153/*****************************************************************************
84 * 154 * Start of command dispatch area.
85 * packet functions/utilities 155 * The commands here are protocol commands.
86 *
87 **********************************************************************/ 156 ****************************************************************************/
88 157
89packet &packet::operator <<(const data &v) 158// SocketCommand, PlayingCommand, should not exist with those ugly casts
159#define SC(cb) (void *)static_cast<void (*)(char *, int, client *)>(cb),
160#define PC(cb) (void *)static_cast<void (*)(char *, int, player *)>(cb), PF_PLAYER |
161
162static void
163NopCmd (char *, int, client *)
90{ 164{
91 if (room () < v.len) 165 // do nothing
92 reset (); 166}
167
168/**
169 * Dispatch table for the server.
170 */
171static struct packet_type packets[] = {
172 {"ncom", PC(NewPlayerCmd) PF_PLAYING | PF_COMMAND6 },
173 {"command", PC(PlayerCmd) PF_PLAYING | PF_COMMAND0 },
174
175 {"examine", PC(ExamineCmd) PF_PLAYING },
176 {"ex", PC(ExCmd) PF_PLAYING },
177 {"apply", PC(ApplyCmd) PF_PLAYING },
178 {"lookat", PC(LookAt) PF_PLAYING },
179 {"lock", PC(LockItem) PF_PLAYING },
180 {"mark", PC(MarkItem) PF_PLAYING },
181 {"move", PC(MoveCmd) PF_PLAYING },
182 {"ext", PC(ExtCmd) 0 }, // CF+/Deliantra
183 {"mapredraw", PC(MapRedrawCmd) 0 },
184 {"mapinfo", PC(MapInfoCmd) 0 }, // CF+/Deliantra
185
186 {"reply", SC(ReplyCmd) 0 },
187 {"exti", SC(ExtiCmd) 0 }, // CF+/Deliantra
188 {"addme", SC(AddMeCmd) 0 },
189 {"askface", SC(AskFaceCmd) 0 },
190 {"requestinfo", SC(RequestInfo) 0 },
191 {"setsound", SC(SetSound) 0 },
192 {"setup", SC(SetUp) 0 },
193 {"version", SC(VersionCmd) 0 },
194
195 {"toggleextendedtext", SC(NopCmd) 0 }, // deliantra: disabled
196};
197
198bool
199client::may_execute (const packet_type *pkt) const
200{
201 return (!(pkt->flags & PF_PLAYER) || pl)
202 && (!(pkt->flags & PF_PLAYING) || state == ST_PLAYING);
203}
204
205// HACK: some commands currently should be executed
206// even when the player is frozen. this hack detects
207// those commands. it should be folded into may_execute,
208// but kept seperate to emphasise the hack aspect, i.e.
209// do it better, then remove.
210static bool
211always_immediate (const client *ns, const packet_type *pkt, const char *data, int len)
212{
213 if (!(pkt->flags & (PF_COMMAND0 | PF_COMMAND6)))
214 return false;
215
216 if (!ns->pl || !ns->pl->ob || !ns->pl->ob->map)
217 return false;
218
219 if (pkt->flags & PF_COMMAND6)
220 {
221 data += 6;
222 len -= 6;
223 }
224
225 if (len > 4 && data [ 3] == ' ' && !strncmp (data, "say " , 4)) return true;
226 if (len > 5 && data [ 4] == ' ' && !strncmp (data, "chat " , 5)) return true;
227 if (len > 6 && data [ 5] == ' ' && !strncmp (data, "shout " , 6)) return true;
228 if (len > 8 && data [ 7] == ' ' && !strncmp (data, "suicide " , 8)) return true;
229 if (len > 18 && data [17] == ' ' && !strncmp (data, "accept-invitation ", 18)) return true;
230
231 if (len == 7 && !strcmp (data, "suicide")) return true;
232
233 return false;
234}
235
236void
237client::execute (const packet_type *pkt, char *data, int datalen)
238{
239 if (may_execute (pkt) || always_immediate (this, pkt, data, datalen))
240 {
241 //TODO: only one format
242 if (pkt->flags & PF_PLAYER)
243 {
244 ((void (*)(char *, int, player *))pkt->cb)((char *)data, datalen, pl);
245 pl->need_updated_stats ();
246 }
247 else
248 ((void (*)(char *, int, client *))pkt->cb)((char *)data, datalen, this);
249 }
93 else 250 else
251 send_packet_printf ("drawinfo %d ERROR: you cannot execute '%s' now.", NDI_RED | NDI_REPLY, pkt->name);
252}
253
254bool
255client::handle_packet ()
256{
257 int pkt_len = next_packet ();
258
259 if (!pkt_len)
260 return false;
261 else if (pkt_len < 0)
262 {
263 LOG (llevError, "read error on player %s\n",
264 pl && pl->ob ? &pl->ob->name : "[anonymous]");
265 destroy ();
266 return false;
94 { 267 }
95 if (v.len) 268
269 uint8_t save_byte = inbuf [pkt_len]; // rather ugly
270 inbuf [pkt_len] = 0; /* temporarily terminate buffer - useful for string data */
271
272 /* First, break out beginning word. There are at least
273 * a few commands that do not have any paremeters. If
274 * we get such a command, don't worry about trying
275 * to break it up.
276 */
277 int datalen;
278 char *data = strchr ((char *)inbuf + 2, ' ');
279
280 if (data)
281 {
282 *data++ = 0;
283 datalen = pkt_len - (data - (char *)inbuf);
284 }
285 else
286 {
287 data = (char *)inbuf + 2; // better read garbage than segfault
288 datalen = 0;
289 }
290
291 for (packet_type *pkt = packets; pkt < packets + array_length (packets); ++pkt)
292 if (!strcmp ((char *)inbuf + 2, pkt->name))
96 { 293 {
97 memcpy (cur, v.ptr, v.len); 294 if (pkt->flags & PF_PLAYER && !always_immediate (this, pkt, data, datalen))
98 cur += v.len; 295 queue_command (pkt, data, datalen);
296 else
297 execute (pkt, data, datalen);
298
299 goto next_packet;
99 } 300 }
301
302 // If we get here, we didn't find a valid command.
303 send_packet_printf ("drawinfo %d ERROR: command '%s' not supported.", NDI_RED | NDI_REPLY, (char *)inbuf + 2);
304
305next_packet:
306 inbuf [pkt_len] = save_byte; // rather ugly
307 skip_packet (pkt_len);
308
309 // input buffer has space again
310 socket_ev.poll (socket_ev.poll () | EV_READ);
311
312 return true;
313}
314
315void
316client::inbuf_handle ()
317{
318 if (!handle_packet ())
319 return;
320
321 while (handle_packet ())
100 } 322 ;
101 323
102 return *this; 324 flush ();
103} 325}
104 326
105packet &packet::operator <<(const data8 &v) 327// callback called when socket is either readable or writable
106{
107 unsigned int len = min (v.len, 0x00FF);
108 return *this << uint8 (len) << data (v.ptr, len);
109}
110
111packet &packet::operator <<(const data16 &v)
112{
113 unsigned int len = min (v.len, 0xFFFF);
114 return *this << uint16 (len) << data (v.ptr, len);
115}
116
117packet &packet::operator <<(const char *v)
118{
119 return *this << data (v, strlen (v ? v : 0));
120}
121
122void 328void
123packet::printf (const char *format, ...) 329client::socket_cb (iow &w, int revents)
124{ 330{
125 int size = room (); 331 //TODO remove when we have better socket cleanup logic
126 332 if (destroyed ())
127 va_list ap; 333 {
128 va_start (ap, format); 334 socket_ev.poll (0);
129 int len = vsnprintf ((char *)cur, size, format, ap); 335 return;
130 va_end (ap);
131
132 if (len >= size)
133 return reset ();
134
135 cur += len;
136}
137
138/******************************************************************************
139 *
140 * Start of read routines.
141 *
142 ******************************************************************************/
143
144int
145client_socket::read_packet ()
146{
147 for (;;)
148 { 336 }
149 if (inbuf_len >= 2)
150 {
151 unsigned int pkt_len = (inbuf [0] << 8) | inbuf [1];
152 337
153 if (inbuf_len >= 2 + pkt_len) 338 if (revents & EV_WRITE)
154 return pkt_len + 2; 339 {
155 } 340 write_outputbuffer ();
341
342 if (!outputbuffer.len)
343 socket_ev.poll (socket_ev.poll () & ~EV_WRITE);
344 }
345
346 if (revents & EV_READ)
347 {
348 //TODO: rate-limit tcp connection in better ways, important
156 349
157 int amount = sizeof (inbuf) - inbuf_len; 350 int amount = sizeof (inbuf) - inbuf_len;
158 351
159 if (amount <= 0)
160 {
161 LOG (llevError, "packet too large");//TODO
162 return -1;
163 }
164
165 amount = read (fd, inbuf + inbuf_len, amount);
166
167 if (!amount) 352 if (!amount)
168 { 353 {
169 status = Ns_Dead; 354 // input buffer full
355 LOG (llevError, "input buffer overflow.");
356 destroy ();
170 return -1; 357 return;
358 }
359
360 if (ws_version)
361 {
362 if (ws_inbuf_len + 4096 > ws_inbuf_alloc)
363 ws_inbuf = (uint8 *)realloc (ws_inbuf, ws_inbuf_alloc += 4096);
364
365 int len = read (fd, ws_inbuf + ws_inbuf_len, ws_inbuf_alloc - ws_inbuf_len);
366
367 if (len > 0)
368 {
369 ws_inbuf_len += len;
370
371 if (ws_inbuf_len < 2 + 4) // 6 is minimum length: op, len, mask
372 return;
373
374 int d = 2;
375 int o = ws_inbuf [0] & 15;
376 int l = ws_inbuf [1] & 127;
377
378 if (l == 126)
379 {
380 l = (ws_inbuf [2] << 8) | ws_inbuf [3];
381 d += 2;
382 }
383 else if (l == 127)
384 {
385 if (ws_inbuf_len < 2 + 8)
386 return;
387
388 // we don't do extra long frames, if a browser wants to send >2**32 bytes,
389 // there are bigger issues to fix.
390 l = (ws_inbuf [6] << 24)
391 | (ws_inbuf [7] << 16)
392 | (ws_inbuf [8] << 8)
393 | ws_inbuf [9];
394 d += 8;
395 }
396
397 // we only continue if we have a complete frame
398 if (ws_inbuf_len < d + 4 + l)
399 return;
400
401 switch (o)
402 {
403 case 0: o = ws_inbuf_type; break; // continuation
404 case 1: ws_inbuf_type = 1; break; // utf-8
405 case 2: ws_inbuf_type = 2; break; // binary
406 }
407
408 if (l > amount)
409 {
410 // input buffer full
411 LOG (llevError, "input buffer overflow (ws).");
412 destroy ();
413 return;
414 }
415
416 for (int i = 0; i < l; ++i)
417 inbuf [inbuf_len + i] = ws_inbuf [d + 4 + i] ^ ws_inbuf [d + (i & 3)];
418
419 // remove frame
420 ws_inbuf_len -= d + 4 + l;
421 memmove (ws_inbuf, ws_inbuf + d + 4 + l, ws_inbuf_len);
422
423 switch (o)
424 {
425 case 1: // utf-8
426 //TODO
427 break;
428 case 2: // binary
429 break;
430
431 case 9: // ping
432 {
433 // send pong - we assume ping messages are <64k
434 // as we can't handle >10k at the moment anyway.
435 uint8 hdr [] = { 0x8a, 126, l >> 8, l };
436 send (hdr, sizeof (hdr));
437 send (inbuf + inbuf_len, l);
438 }
439 return;
440
441 case 10: // pong
442 return;
443
444 case 8: // close
445 default:
446 destroy ();
447 return;
448 }
449
450 amount = l;
451 }
452 else
453 amount = -1;
454 }
455 else
456 amount = read (fd, inbuf + inbuf_len, amount);
457
458 if (!amount)
459 {
460 destroy ();
461 return;
171 } 462 }
172 else if (amount < 0) 463 else if (amount < 0)
173 { 464 {
174 if (errno != EAGAIN && errno != EINTR) 465 if (errno != EAGAIN && errno != EINTR)
175 { 466 {
176 LOG (llevError, "read error: %s", strerror (errno)); 467 LOG (llevError, "read error: %s\n", strerror (errno));
468 destroy ();
177 return -1; 469 return;
178 } 470 }
179 471
180 return 0; 472 // should not be here, normally
473 }
474 else
181 } 475 {
182
183 inbuf_len += amount; 476 inbuf_len += amount;
184 477 inbuf_handle ();
185 cst_tot.ibytes += amount; 478 }
186 cst_lst.ibytes += amount;
187 } 479 }
188}
189
190void
191client_socket::skip_packet (int len)
192{
193 inbuf_len -= len;
194 memmove (inbuf, inbuf + len, inbuf_len);
195} 480}
196 481
197/******************************************************************************* 482/*******************************************************************************
198 * 483 *
199 * Start of write related routines. 484 * Start of write related routines.
204 * Adds data to a socket buffer for whatever reason. 489 * Adds data to a socket buffer for whatever reason.
205 * 490 *
206 * ns is the socket we are adding the data to, buf is the start of the 491 * ns is the socket we are adding the data to, buf is the start of the
207 * data, and len is the number of bytes to add. 492 * data, and len is the number of bytes to add.
208 */ 493 */
209 494void
210static void 495client::send (void *buf_, int len)
211add_to_buffer (client_socket *ns, char *buf, int len)
212{ 496{
497 char *buf = (char *)buf_;
498
499 if (destroyed () || !buf)
500 return;
501
502 if (len + outputbuffer.len > SOCKETBUFSIZE)
503 {
504 LOG (llevDebug, "socket on fd %d has overrun internal buffer - marking as dead\n", fd);
505 // shutdown the socket, this is safer than destroying it immediately
506 // as lots of code in the callchain might still access the map etc.
507 shutdown (fd, SHUT_RDWR);
508 return;
509 }
510
213 int avail, end; 511 int avail, end;
214
215 if ((len + ns->outputbuffer.len) > SOCKETBUFSIZE)
216 {
217 LOG (llevDebug, "Socket on fd %d has overrun internal buffer - marking as dead\n", ns->fd);
218 ns->status = Ns_Dead;
219 return;
220 }
221 512
222 /* data + end is where we start putting the new data. The last byte 513 /* data + end is where we start putting the new data. The last byte
223 * currently in use is actually data + end -1 514 * currently in use is actually data + end -1
224 */ 515 */
225
226 end = ns->outputbuffer.start + ns->outputbuffer.len; 516 end = outputbuffer.start + outputbuffer.len;
227 /* The buffer is already in a wrapped state, so adjust end */ 517 /* The buffer is already in a wrapped state, so adjust end */
228 if (end >= SOCKETBUFSIZE) 518 if (end >= SOCKETBUFSIZE)
229 end -= SOCKETBUFSIZE; 519 end -= SOCKETBUFSIZE;
230 520
231 avail = SOCKETBUFSIZE - end; 521 avail = SOCKETBUFSIZE - end;
232 522
233 /* We can all fit it behind the current data without wrapping */ 523 /* We can all fit it behind the current data without wrapping */
234 if (avail >= len) 524 if (avail >= len)
235 memcpy (ns->outputbuffer.data + end, buf, len); 525 memcpy (outputbuffer.data + end, buf, len);
236 else 526 else
237 { 527 {
238 memcpy (ns->outputbuffer.data + end, buf, avail); 528 memcpy (outputbuffer.data + end, buf, avail);
239 memcpy (ns->outputbuffer.data, buf + avail, len - avail); 529 memcpy (outputbuffer.data, buf + avail, len - avail);
240 } 530 }
241 531
242 ns->outputbuffer.len += len; 532 outputbuffer.len += len;
243#if 0
244 LOG (llevDebug, "Added %d to output buffer, total length now %d, start=%d\n", len, ns->outputbuffer.len, ns->outputbuffer.start);
245#endif
246}
247
248/**
249 * Writes data to socket.
250 *
251 * When the socket is clear to write, and we have backlogged data, this
252 * is called to write it out.
253 */
254void
255write_socket_buffer (client_socket * ns)
256{
257 int amt, max;
258
259 if (ns->outputbuffer.len == 0)
260 {
261 LOG (llevDebug, "write_socket_buffer called when there is no data, fd=%d\n", ns->fd);
262 return;
263 }
264
265 do
266 {
267 max = SOCKETBUFSIZE - ns->outputbuffer.start;
268 if (ns->outputbuffer.len < max)
269 max = ns->outputbuffer.len;
270
271 do
272 {
273 amt = write (ns->fd, ns->outputbuffer.data + ns->outputbuffer.start, max);
274 }
275 while ((amt < 0) && (errno == EINTR));
276
277 if (amt < 0)
278 { /* We got an error */
279
280 if (errno != EWOULDBLOCK)
281 {
282 LOG (llevError, "New socket write failed (wsb) (%d: %s).\n", errno, strerror (errno));
283 ns->status = Ns_Dead;
284 return;
285 }
286 else
287 { /* EWOULDBLOCK */
288 /* can't write it, so store it away. */
289 ns->can_write = 0;
290 return;
291 }
292 }
293 ns->outputbuffer.start += amt;
294 /* wrap back to start of buffer */
295 if (ns->outputbuffer.start == SOCKETBUFSIZE)
296 ns->outputbuffer.start = 0;
297 ns->outputbuffer.len -= amt;
298#ifdef CS_LOGSTATS
299 cst_tot.obytes += amt;
300 cst_lst.obytes += amt;
301#endif
302 }
303 while (ns->outputbuffer.len > 0);
304}
305
306/**
307 * This writes data to the socket. - It is very low level -
308 * all we try and do is write out the data to the socket
309 * provided (ns). buf is the data to write, len is the number
310 * of bytes to write. IT doesn't return anything - rather, it
311 * updates the ns structure if we get an error.
312 */
313void
314client_socket::send (void *buf_, int len)
315{
316 char *buf = (char *)buf_;
317 char *pos = buf;
318 int amt = 0;
319
320 if (status == Ns_Dead || !buf)
321 {
322 LOG (llevDebug, "Write_To_Socket called with dead socket\n");
323 return;
324 }
325
326#ifndef __GNU__ /* This caused problems on Hurd */
327 if (!can_write)
328 {
329 add_to_buffer (this, buf, len);
330 return;
331 }
332#endif
333
334 /* If we manage to write more than we wanted, take it as a bonus */
335 while (len > 0)
336 {
337 do
338 {
339 amt = write (fd, pos, len);
340 }
341 while ((amt < 0) && (errno == EINTR));
342
343 if (amt < 0)
344 { /* We got an error */
345 if (errno != EWOULDBLOCK)
346 {
347 LOG (llevError, "New socket write failed WTS (%d: %s).\n", /* ---WIN32 */
348 errno, strerror (errno));
349 status = Ns_Dead;
350 return;
351 }
352 else
353 { /* EWOULDBLOCK */
354 /* can't write it, so store it away. */
355 add_to_buffer (this, pos, len);
356 can_write = 0;
357 return;
358 }
359 }
360 /* amt gets set to 0 above in blocking code, so we do this as
361 * an else if to make sure we don't reprocess it.
362 */
363 else if (amt == 0)
364 LOG (llevError, "Write_To_Socket: No data written out.\n");
365
366 len -= amt;
367 pos += amt;
368#ifdef CS_LOGSTATS
369 cst_tot.obytes += amt;
370 cst_lst.obytes += amt;
371#endif
372 }
373} 533}
374 534
375/** 535/**
376 * Takes a string of data, and writes it out to the socket. A very handy 536 * Takes a string of data, and writes it out to the socket. A very handy
377 * shortcut function. 537 * shortcut function.
378 */ 538 */
379
380void 539void
381client_socket::send_packet (packet &sl) 540client::send_packet (packet &sl)
382{ 541{
383 Send_With_Handling (this, &sl); 542 if (destroyed ())
384}
385
386void
387client_socket::send_packet (const char *buf, int len)
388{
389 packet sl;
390
391 sl << data (buf, len);
392 send_packet (sl);
393}
394
395void
396client_socket::send_packet (const char *buf)
397{
398 send_packet (buf, strlen (buf));
399}
400
401/**
402 * Calls Write_To_Socket to send data to the client.
403 *
404 * The only difference in this function is that we take a packet
405 *, and we prepend the length information.
406 */
407void
408Send_With_Handling (client_socket *ns, packet *msg)
409{
410 unsigned char sbuf[4];
411
412 if (ns->status == Ns_Dead || !msg)
413 return; 543 return;
414 544
415 if (msg->length () >= MAXSOCKBUF) 545 if (sl.length () > MAXSOCKBUF)
416 { 546 {
417 LOG (llevError, "Trying to send a buffer beyond properly size, len =%d\n", msg->length ()); 547 LOG (llevError, "Trying to send a buffer beyond properly size, len =%d\n", sl.length ());
418 /* Almost certainly we've overflowed a buffer, so quite now to make 548 /* Almost certainly we've overflowed a buffer, so quit now to make
419 * it easier to debug. 549 * it easier to debug.
420 */ 550 */
421 abort (); 551 abort ();
422 } 552 }
423 553
424 sbuf[0] = ((uint32) (msg->length ()) >> 8); 554 if (!sl.length ())
425 sbuf[1] = ((uint32) (msg->length ()) );
426
427 //TODO: single write, or writev
428 ns->send (sbuf, 2);
429 ns->send (msg->buf, msg->length ());
430}
431
432/******************************************************************************
433 *
434 * statistics logging functions.
435 *
436 ******************************************************************************/
437
438#ifdef CS_LOGSTATS
439
440/* cst_tot is for the life of the server, cst_last is for the last series of
441 * stats
442 */
443CS_Stats cst_tot, cst_lst;
444
445/**
446 * Writes out the gathered stats. We clear cst_lst.
447 */
448void
449write_cs_stats (void)
450{
451 time_t now = time (NULL);
452
453 /* If no connections recently, don't both to log anything */
454 if (cst_lst.ibytes == 0 && cst_lst.obytes == 0)
455 return; 555 return;
456 556
457 /* CSSTAT is put in so scripts can easily find the line */ 557 if (ws_version == 8)
458 LOG (llevInfo, "CSSTAT: %.16s tot %d %d %d %d inc %d %d %d %d\n", 558 {
459 ctime (&now), cst_tot.ibytes, cst_tot.obytes, cst_tot.max_conn, 559 uint8 hdr [4] = { 0x81, 126, sl.length () >> 8, sl.length () };
460 now - cst_tot.time_start, cst_lst.ibytes, cst_lst.obytes, cst_lst.max_conn, now - cst_lst.time_start); 560 // TODO: utf-8 encoding
461 cst_lst.ibytes = 0; 561 send (hdr, 4);
462 cst_lst.obytes = 0; 562 send (sl.buf_ + sl.hdrlen, sl.cur - sl.buf_ - sl.hdrlen);
463 cst_lst.time_start = now; 563 }
464} 564 else if (ws_version == 13)
465#endif 565 {
566 uint8 hdr [4] = { 0x82, 126, sl.length () >> 8, sl.length () };
567 send (hdr, 4);
568 send (sl.buf_ + sl.hdrlen, sl.cur - sl.buf_ - sl.hdrlen);
569 }
570 else
571 {
572 assert (sl.hdrlen == 2);
466 573
574 sl.buf_ [0] = sl.length () >> 8;
575 sl.buf_ [1] = sl.length () ;
576
577 send (sl.buf_, sl.length () + sl.hdrlen);
578 }
579}
580
581void
582client::send_packet (const char *buf, int len)
583{
584 packet sl;
585
586 sl << data (buf, len);
587 send_packet (sl);
588}
589
590void
591client::send_packet (const char *buf)
592{
593 send_packet (buf, strlen (buf));
594}
595
596void
597client::send_packet_printf (const char *format, ...)
598{
599 packet sl;
600
601 va_list ap;
602 va_start (ap, format);
603 sl.vprintf (format, ap);
604 va_end (ap);
605
606 send_packet (sl);
607}
608
609void
610client::send_msg (int color, const char *type, const char *msg)
611{
612 if (!msg || !type) // it can happen (for example, missing attack messages cause this)
613 {
614 LOG (logBacktrace | llevError, "send_msg(%d,%p,%p) called with NULL msg or type.\n", color, type, msg);
615 return;
616 }
617
618 int len = strlen (msg);
619
620 if (!(color & NDI_VERBATIM)
621 && (msg_is_special (msg)
622 || (type [0] == 'c' && type [1] == '/') || len > (MAXSOCKBUF - 128)))
623 cfperl_send_msg (this, color, type, msg);
624 else
625 send_packet_printf ("msg %d %s %s", color & NDI_CLIENT_MASK, type, msg);
626}
627
628void
629client::send_drawinfo (const char *msg, int flags)
630{
631 send_msg (flags, "log", msg);
632}
633
634/***********************************************************************
635 *
636 * packet functions/utilities
637 *
638 **********************************************************************/
639
640packet::packet (const char *name)
641{
642 reset ();
643
644 int len = strlen (name);
645 memcpy (cur, name, len); cur += len;
646 *cur++ = ' ';
647}
648
649packet &packet::operator <<(const ber32 v)
650{
651 enum { maxlen = 32 / 7 + 1 };
652 uint8 buf[maxlen];
653 uint8 *p = buf + maxlen;
654 uint32 val = v.val;
655
656 *--p = val & 0x7F;
657
658 while (val > 0x7F)
659 {
660 val >>= 7;
661 *--p = (val & 0x7F) | 0x80;
662 }
663
664 return *this << data (p, buf + maxlen - p);
665}
666
667packet &packet::operator <<(const data &v)
668{
669 if (room () < v.len)
670 reset ();
671 else
672 {
673 if (v.len)
674 {
675 memcpy (cur, v.ptr, v.len);
676 cur += v.len;
677 }
678 }
679
680 return *this;
681}
682
683packet &packet::operator <<(const data8 &v)
684{
685 unsigned int len = min (v.len, 0x00FF);
686 return *this << uint8 (len) << data (v.ptr, len);
687}
688
689packet &packet::operator <<(const data16 &v)
690{
691 unsigned int len = min (v.len, 0xFFFF);
692 return *this << uint16 (len) << data (v.ptr, len);
693}
694
695packet &packet::operator <<(const char *v)
696{
697 return *this << data (v, strlen (v ? v : 0));
698}
699
700void
701packet::vprintf (const char *format, va_list ap)
702{
703 int size = room ();
704
705 int len = vsnprintf ((char *)cur, size, format, ap);
706
707 if (len >= size)
708 return reset ();
709
710 cur += len;
711}
712

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