driver.c revision 1.29 1 1.29 dholland /* $NetBSD: driver.c,v 1.29 2014/03/29 21:33:41 dholland Exp $ */
2 1.1 mrg /*
3 1.9 wiz * Copyright (c) 1983-2003, Regents of the University of California.
4 1.9 wiz * All rights reserved.
5 1.9 wiz *
6 1.9 wiz * Redistribution and use in source and binary forms, with or without
7 1.9 wiz * modification, are permitted provided that the following conditions are
8 1.9 wiz * met:
9 1.9 wiz *
10 1.9 wiz * + Redistributions of source code must retain the above copyright
11 1.9 wiz * notice, this list of conditions and the following disclaimer.
12 1.9 wiz * + Redistributions in binary form must reproduce the above copyright
13 1.9 wiz * notice, this list of conditions and the following disclaimer in the
14 1.9 wiz * documentation and/or other materials provided with the distribution.
15 1.9 wiz * + Neither the name of the University of California, San Francisco nor
16 1.9 wiz * the names of its contributors may be used to endorse or promote
17 1.9 wiz * products derived from this software without specific prior written
18 1.9 wiz * permission.
19 1.9 wiz *
20 1.9 wiz * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
21 1.9 wiz * IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.9 wiz * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
23 1.9 wiz * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
24 1.9 wiz * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
25 1.9 wiz * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
26 1.9 wiz * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.9 wiz * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.9 wiz * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.9 wiz * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
30 1.9 wiz * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 mrg */
32 1.1 mrg
33 1.2 lukem #include <sys/cdefs.h>
34 1.2 lukem #ifndef lint
35 1.29 dholland __RCSID("$NetBSD: driver.c,v 1.29 2014/03/29 21:33:41 dholland Exp $");
36 1.2 lukem #endif /* not lint */
37 1.2 lukem
38 1.17 dholland #include <sys/ioctl.h>
39 1.17 dholland #include <sys/stat.h>
40 1.17 dholland #include <sys/time.h>
41 1.17 dholland #include <err.h>
42 1.17 dholland #include <errno.h>
43 1.17 dholland #include <signal.h>
44 1.17 dholland #include <stdlib.h>
45 1.17 dholland #include <unistd.h>
46 1.17 dholland #include"hunt.h"
47 1.17 dholland
48 1.17 dholland
49 1.28 dholland #ifdef INTERNET
50 1.29 dholland static u_short Test_port = TEST_PORT;
51 1.28 dholland #else
52 1.29 dholland static const char Sock_name[] = "/tmp/hunt";
53 1.29 dholland static const char Stat_name[] = "/tmp/hunt.stats";
54 1.28 dholland #endif
55 1.28 dholland
56 1.20 dholland static SOCKET Daemon;
57 1.17 dholland
58 1.17 dholland #ifdef INTERNET
59 1.20 dholland static int Test_socket; /* test socket to answer datagrams */
60 1.24 dholland static bool inetd_spawned; /* invoked via inetd */
61 1.24 dholland static bool standard_port = true; /* true if listening on standard port */
62 1.20 dholland static u_short sock_port; /* port # of tcp listen socket */
63 1.20 dholland static u_short stat_port; /* port # of statistics tcp socket */
64 1.17 dholland #define DAEMON_SIZE (sizeof Daemon)
65 1.17 dholland #else
66 1.17 dholland #define DAEMON_SIZE (sizeof Daemon - 1)
67 1.17 dholland #endif
68 1.17 dholland
69 1.29 dholland #ifdef VOLCANO
70 1.29 dholland static int volcano = 0; /* Explosion size */
71 1.29 dholland #endif
72 1.29 dholland
73 1.29 dholland static int Status; /* stat socket */
74 1.29 dholland
75 1.17 dholland static void clear_scores(void);
76 1.24 dholland static bool havechar(PLAYER *, int);
77 1.17 dholland static void init(void);
78 1.17 dholland static void makeboots(void);
79 1.17 dholland static void send_stats(void);
80 1.24 dholland static void zap(PLAYER *, bool, int);
81 1.2 lukem
82 1.1 mrg
83 1.1 mrg /*
84 1.1 mrg * main:
85 1.1 mrg * The main program.
86 1.1 mrg */
87 1.2 lukem int
88 1.26 dholland main(int ac, char **av)
89 1.1 mrg {
90 1.17 dholland PLAYER *pp;
91 1.17 dholland #ifdef INTERNET
92 1.17 dholland u_short msg;
93 1.22 christos short reply;
94 1.17 dholland socklen_t namelen;
95 1.17 dholland SOCKET test;
96 1.17 dholland #endif
97 1.24 dholland static bool first = true;
98 1.24 dholland static bool server = false;
99 1.17 dholland int c, i;
100 1.17 dholland const int linger = 90 * 1000;
101 1.1 mrg
102 1.2 lukem while ((c = getopt(ac, av, "sp:")) != -1) {
103 1.1 mrg switch (c) {
104 1.1 mrg case 's':
105 1.24 dholland server = true;
106 1.1 mrg break;
107 1.17 dholland #ifdef INTERNET
108 1.1 mrg case 'p':
109 1.24 dholland standard_port = false;
110 1.1 mrg Test_port = atoi(optarg);
111 1.1 mrg break;
112 1.17 dholland #endif
113 1.1 mrg default:
114 1.1 mrg erred:
115 1.1 mrg fprintf(stderr, "Usage: %s [-s] [-p port]\n", av[0]);
116 1.1 mrg exit(1);
117 1.1 mrg }
118 1.1 mrg }
119 1.1 mrg if (optind < ac)
120 1.1 mrg goto erred;
121 1.1 mrg
122 1.1 mrg init();
123 1.1 mrg
124 1.1 mrg
125 1.1 mrg again:
126 1.1 mrg do {
127 1.1 mrg errno = 0;
128 1.8 mycroft while (poll(fdset, 3+MAXPL+MAXMON, INFTIM) < 0)
129 1.1 mrg {
130 1.1 mrg if (errno != EINTR)
131 1.17 dholland #ifdef LOG
132 1.12 elad syslog(LOG_WARNING, "poll: %m");
133 1.17 dholland #else
134 1.12 elad warn("poll");
135 1.17 dholland #endif
136 1.1 mrg errno = 0;
137 1.1 mrg }
138 1.17 dholland #ifdef INTERNET
139 1.8 mycroft if (fdset[2].revents & POLLIN) {
140 1.1 mrg namelen = DAEMON_SIZE;
141 1.15 dholland (void) recvfrom(Test_socket, &msg, sizeof msg,
142 1.1 mrg 0, (struct sockaddr *) &test, &namelen);
143 1.1 mrg switch (ntohs(msg)) {
144 1.1 mrg case C_MESSAGE:
145 1.1 mrg if (Nplayer <= 0)
146 1.1 mrg break;
147 1.1 mrg reply = htons((u_short) Nplayer);
148 1.15 dholland (void) sendto(Test_socket, &reply,
149 1.1 mrg sizeof reply, 0,
150 1.1 mrg (struct sockaddr *) &test, DAEMON_SIZE);
151 1.1 mrg break;
152 1.1 mrg case C_SCORES:
153 1.1 mrg reply = htons(stat_port);
154 1.15 dholland (void) sendto(Test_socket, &reply,
155 1.1 mrg sizeof reply, 0,
156 1.1 mrg (struct sockaddr *) &test, DAEMON_SIZE);
157 1.1 mrg break;
158 1.1 mrg case C_PLAYER:
159 1.1 mrg case C_MONITOR:
160 1.1 mrg if (msg == C_MONITOR && Nplayer <= 0)
161 1.1 mrg break;
162 1.1 mrg reply = htons(sock_port);
163 1.15 dholland (void) sendto(Test_socket, &reply,
164 1.1 mrg sizeof reply, 0,
165 1.1 mrg (struct sockaddr *) &test, DAEMON_SIZE);
166 1.1 mrg break;
167 1.1 mrg }
168 1.1 mrg }
169 1.17 dholland #endif
170 1.8 mycroft {
171 1.8 mycroft for (pp = Player, i = 0; pp < End_player; pp++, i++)
172 1.8 mycroft if (havechar(pp, i + 3)) {
173 1.1 mrg execute(pp);
174 1.1 mrg pp->p_nexec++;
175 1.1 mrg }
176 1.17 dholland #ifdef MONITOR
177 1.8 mycroft for (pp = Monitor, i = 0; pp < End_monitor; pp++, i++)
178 1.8 mycroft if (havechar(pp, i + MAXPL + 3)) {
179 1.1 mrg mon_execute(pp);
180 1.1 mrg pp->p_nexec++;
181 1.1 mrg }
182 1.17 dholland #endif
183 1.1 mrg moveshots();
184 1.8 mycroft for (pp = Player, i = 0; pp < End_player; )
185 1.1 mrg if (pp->p_death[0] != '\0')
186 1.24 dholland zap(pp, true, i + 3);
187 1.1 mrg else
188 1.8 mycroft pp++, i++;
189 1.17 dholland #ifdef MONITOR
190 1.8 mycroft for (pp = Monitor, i = 0; pp < End_monitor; )
191 1.1 mrg if (pp->p_death[0] != '\0')
192 1.24 dholland zap(pp, false, i + MAXPL + 3);
193 1.1 mrg else
194 1.8 mycroft pp++, i++;
195 1.17 dholland #endif
196 1.1 mrg }
197 1.8 mycroft if (fdset[0].revents & POLLIN)
198 1.1 mrg if (answer()) {
199 1.27 dholland if (first) {
200 1.27 dholland /* announce start of game? */
201 1.27 dholland }
202 1.24 dholland first = false;
203 1.1 mrg }
204 1.8 mycroft if (fdset[1].revents & POLLIN)
205 1.1 mrg send_stats();
206 1.8 mycroft for (pp = Player, i = 0; pp < End_player; pp++, i++) {
207 1.8 mycroft if (fdset[i + 3].revents & POLLIN)
208 1.1 mrg sendcom(pp, READY, pp->p_nexec);
209 1.1 mrg pp->p_nexec = 0;
210 1.1 mrg (void) fflush(pp->p_output);
211 1.1 mrg }
212 1.17 dholland #ifdef MONITOR
213 1.8 mycroft for (pp = Monitor, i = 0; pp < End_monitor; pp++, i++) {
214 1.8 mycroft if (fdset[i + MAXPL + 3].revents & POLLIN)
215 1.1 mrg sendcom(pp, READY, pp->p_nexec);
216 1.1 mrg pp->p_nexec = 0;
217 1.1 mrg (void) fflush(pp->p_output);
218 1.1 mrg }
219 1.17 dholland #endif
220 1.1 mrg } while (Nplayer > 0);
221 1.1 mrg
222 1.8 mycroft if (poll(fdset, 3+MAXPL+MAXMON, linger) > 0) {
223 1.1 mrg goto again;
224 1.1 mrg }
225 1.1 mrg if (server) {
226 1.1 mrg clear_scores();
227 1.1 mrg makemaze();
228 1.1 mrg clearwalls();
229 1.17 dholland #ifdef BOOTS
230 1.1 mrg makeboots();
231 1.17 dholland #endif
232 1.24 dholland first = true;
233 1.1 mrg goto again;
234 1.1 mrg }
235 1.1 mrg
236 1.17 dholland #ifdef MONITOR
237 1.8 mycroft for (pp = Monitor, i = 0; pp < End_monitor; i++)
238 1.24 dholland zap(pp, false, i + MAXPL + 3);
239 1.17 dholland #endif
240 1.1 mrg cleanup(0);
241 1.2 lukem /* NOTREACHED */
242 1.2 lukem return(0);
243 1.1 mrg }
244 1.1 mrg
245 1.1 mrg /*
246 1.1 mrg * init:
247 1.1 mrg * Initialize the global parameters.
248 1.1 mrg */
249 1.2 lukem static void
250 1.16 dholland init(void)
251 1.1 mrg {
252 1.17 dholland int i;
253 1.17 dholland #ifdef INTERNET
254 1.17 dholland SOCKET test_port;
255 1.17 dholland int msg;
256 1.17 dholland socklen_t len;
257 1.17 dholland #endif
258 1.1 mrg
259 1.17 dholland #ifndef DEBUG
260 1.17 dholland #ifdef TIOCNOTTY
261 1.1 mrg (void) ioctl(fileno(stdout), TIOCNOTTY, NULL);
262 1.17 dholland #endif
263 1.1 mrg (void) setpgrp(getpid(), getpid());
264 1.1 mrg (void) signal(SIGHUP, SIG_IGN);
265 1.1 mrg (void) signal(SIGINT, SIG_IGN);
266 1.1 mrg (void) signal(SIGQUIT, SIG_IGN);
267 1.1 mrg (void) signal(SIGTERM, cleanup);
268 1.17 dholland #endif
269 1.1 mrg
270 1.4 mrg (void) chdir("/var/tmp"); /* just in case it core dumps */
271 1.1 mrg (void) umask(0); /* No privacy at all! */
272 1.1 mrg (void) signal(SIGPIPE, SIG_IGN);
273 1.1 mrg
274 1.17 dholland #ifdef LOG
275 1.7 lukem openlog("huntd", LOG_PID, LOG_DAEMON);
276 1.17 dholland #endif
277 1.1 mrg
278 1.1 mrg /*
279 1.1 mrg * Initialize statistics socket
280 1.1 mrg */
281 1.17 dholland #ifdef INTERNET
282 1.1 mrg Daemon.sin_family = SOCK_FAMILY;
283 1.1 mrg Daemon.sin_addr.s_addr = INADDR_ANY;
284 1.1 mrg Daemon.sin_port = 0;
285 1.17 dholland #else
286 1.1 mrg Daemon.sun_family = SOCK_FAMILY;
287 1.1 mrg (void) strcpy(Daemon.sun_path, Stat_name);
288 1.17 dholland #endif
289 1.1 mrg
290 1.1 mrg Status = socket(SOCK_FAMILY, SOCK_STREAM, 0);
291 1.1 mrg if (bind(Status, (struct sockaddr *) &Daemon, DAEMON_SIZE) < 0) {
292 1.1 mrg if (errno == EADDRINUSE)
293 1.1 mrg exit(0);
294 1.1 mrg else {
295 1.17 dholland #ifdef LOG
296 1.1 mrg syslog(LOG_ERR, "bind: %m");
297 1.17 dholland #else
298 1.3 lukem warn("bind");
299 1.17 dholland #endif
300 1.1 mrg cleanup(1);
301 1.1 mrg }
302 1.1 mrg }
303 1.1 mrg (void) listen(Status, 5);
304 1.1 mrg
305 1.17 dholland #ifdef INTERNET
306 1.1 mrg len = sizeof (SOCKET);
307 1.1 mrg if (getsockname(Status, (struct sockaddr *) &Daemon, &len) < 0) {
308 1.17 dholland #ifdef LOG
309 1.1 mrg syslog(LOG_ERR, "getsockname: %m");
310 1.17 dholland #else
311 1.3 lukem warn("getsockname");
312 1.17 dholland #endif
313 1.1 mrg exit(1);
314 1.1 mrg }
315 1.1 mrg stat_port = ntohs(Daemon.sin_port);
316 1.17 dholland #endif
317 1.1 mrg
318 1.1 mrg /*
319 1.1 mrg * Initialize main socket
320 1.1 mrg */
321 1.17 dholland #ifdef INTERNET
322 1.1 mrg Daemon.sin_family = SOCK_FAMILY;
323 1.1 mrg Daemon.sin_addr.s_addr = INADDR_ANY;
324 1.1 mrg Daemon.sin_port = 0;
325 1.17 dholland #else
326 1.1 mrg Daemon.sun_family = SOCK_FAMILY;
327 1.1 mrg (void) strcpy(Daemon.sun_path, Sock_name);
328 1.17 dholland #endif
329 1.1 mrg
330 1.1 mrg Socket = socket(SOCK_FAMILY, SOCK_STREAM, 0);
331 1.17 dholland #if defined(INTERNET)
332 1.1 mrg msg = 1;
333 1.1 mrg if (setsockopt(Socket, SOL_SOCKET, SO_USELOOPBACK, &msg, sizeof msg)<0)
334 1.17 dholland #ifdef LOG
335 1.1 mrg syslog(LOG_WARNING, "setsockopt loopback %m");
336 1.17 dholland #else
337 1.3 lukem warn("setsockopt loopback");
338 1.17 dholland #endif
339 1.17 dholland #endif
340 1.1 mrg if (bind(Socket, (struct sockaddr *) &Daemon, DAEMON_SIZE) < 0) {
341 1.1 mrg if (errno == EADDRINUSE)
342 1.1 mrg exit(0);
343 1.1 mrg else {
344 1.17 dholland #ifdef LOG
345 1.1 mrg syslog(LOG_ERR, "bind: %m");
346 1.17 dholland #else
347 1.3 lukem warn("bind");
348 1.17 dholland #endif
349 1.1 mrg cleanup(1);
350 1.1 mrg }
351 1.1 mrg }
352 1.1 mrg (void) listen(Socket, 5);
353 1.1 mrg
354 1.17 dholland #ifdef INTERNET
355 1.1 mrg len = sizeof (SOCKET);
356 1.1 mrg if (getsockname(Socket, (struct sockaddr *) &Daemon, &len) < 0) {
357 1.17 dholland #ifdef LOG
358 1.1 mrg syslog(LOG_ERR, "getsockname: %m");
359 1.17 dholland #else
360 1.3 lukem warn("getsockname");
361 1.17 dholland #endif
362 1.1 mrg exit(1);
363 1.1 mrg }
364 1.1 mrg sock_port = ntohs(Daemon.sin_port);
365 1.17 dholland #endif
366 1.1 mrg
367 1.1 mrg /*
368 1.12 elad * Initialize minimal poll mask
369 1.1 mrg */
370 1.8 mycroft fdset[0].fd = Socket;
371 1.8 mycroft fdset[0].events = POLLIN;
372 1.8 mycroft fdset[1].fd = Status;
373 1.8 mycroft fdset[1].events = POLLIN;
374 1.1 mrg
375 1.17 dholland #ifdef INTERNET
376 1.1 mrg len = sizeof (SOCKET);
377 1.1 mrg if (getsockname(0, (struct sockaddr *) &test_port, &len) >= 0
378 1.1 mrg && test_port.sin_family == AF_INET) {
379 1.24 dholland inetd_spawned = true;
380 1.1 mrg Test_socket = 0;
381 1.1 mrg if (test_port.sin_port != htons((u_short) Test_port)) {
382 1.24 dholland standard_port = false;
383 1.1 mrg Test_port = ntohs(test_port.sin_port);
384 1.1 mrg }
385 1.1 mrg } else {
386 1.1 mrg test_port = Daemon;
387 1.1 mrg test_port.sin_port = htons((u_short) Test_port);
388 1.1 mrg
389 1.1 mrg Test_socket = socket(SOCK_FAMILY, SOCK_DGRAM, 0);
390 1.1 mrg if (bind(Test_socket, (struct sockaddr *) &test_port,
391 1.1 mrg DAEMON_SIZE) < 0) {
392 1.17 dholland #ifdef LOG
393 1.1 mrg syslog(LOG_ERR, "bind: %m");
394 1.17 dholland #else
395 1.3 lukem warn("bind");
396 1.17 dholland #endif
397 1.1 mrg exit(1);
398 1.1 mrg }
399 1.1 mrg (void) listen(Test_socket, 5);
400 1.1 mrg }
401 1.1 mrg
402 1.8 mycroft fdset[2].fd = Test_socket;
403 1.8 mycroft fdset[2].events = POLLIN;
404 1.17 dholland #else
405 1.8 mycroft fdset[2].fd = -1;
406 1.17 dholland #endif
407 1.1 mrg
408 1.23 dholland srandom(time(NULL));
409 1.1 mrg makemaze();
410 1.17 dholland #ifdef BOOTS
411 1.1 mrg makeboots();
412 1.17 dholland #endif
413 1.1 mrg
414 1.1 mrg for (i = 0; i < NASCII; i++)
415 1.24 dholland See_over[i] = true;
416 1.24 dholland See_over[DOOR] = false;
417 1.24 dholland See_over[WALL1] = false;
418 1.24 dholland See_over[WALL2] = false;
419 1.24 dholland See_over[WALL3] = false;
420 1.17 dholland #ifdef REFLECT
421 1.24 dholland See_over[WALL4] = false;
422 1.24 dholland See_over[WALL5] = false;
423 1.17 dholland #endif
424 1.1 mrg
425 1.1 mrg }
426 1.1 mrg
427 1.17 dholland #ifdef BOOTS
428 1.1 mrg /*
429 1.1 mrg * makeboots:
430 1.1 mrg * Put the boots in the maze
431 1.1 mrg */
432 1.2 lukem static void
433 1.16 dholland makeboots(void)
434 1.1 mrg {
435 1.17 dholland int x, y;
436 1.17 dholland PLAYER *pp;
437 1.1 mrg
438 1.1 mrg do {
439 1.1 mrg x = rand_num(WIDTH - 1) + 1;
440 1.1 mrg y = rand_num(HEIGHT - 1) + 1;
441 1.1 mrg } while (Maze[y][x] != SPACE);
442 1.1 mrg Maze[y][x] = BOOT_PAIR;
443 1.1 mrg for (pp = Boot; pp < &Boot[NBOOTS]; pp++)
444 1.1 mrg pp->p_flying = -1;
445 1.1 mrg }
446 1.17 dholland #endif
447 1.1 mrg
448 1.1 mrg
449 1.1 mrg /*
450 1.1 mrg * checkdam:
451 1.1 mrg * Check the damage to the given player, and see if s/he is killed
452 1.1 mrg */
453 1.2 lukem void
454 1.16 dholland checkdam(PLAYER *ouch, PLAYER *gotcha, IDENT *credit, int amt,
455 1.16 dholland char this_shot_type)
456 1.1 mrg {
457 1.17 dholland const char *cp;
458 1.1 mrg
459 1.1 mrg if (ouch->p_death[0] != '\0')
460 1.1 mrg return;
461 1.17 dholland #ifdef BOOTS
462 1.13 dholland if (this_shot_type == SLIME)
463 1.1 mrg switch (ouch->p_nboots) {
464 1.1 mrg default:
465 1.1 mrg break;
466 1.1 mrg case 1:
467 1.1 mrg amt = (amt + 1) / 2;
468 1.1 mrg break;
469 1.1 mrg case 2:
470 1.1 mrg if (gotcha != NULL)
471 1.1 mrg message(gotcha, "He has boots on!");
472 1.1 mrg return;
473 1.1 mrg }
474 1.17 dholland #endif
475 1.1 mrg ouch->p_damage += amt;
476 1.1 mrg if (ouch->p_damage <= ouch->p_damcap) {
477 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%2d", ouch->p_damage);
478 1.1 mrg cgoto(ouch, STAT_DAM_ROW, STAT_VALUE_COL);
479 1.1 mrg outstr(ouch, Buf, 2);
480 1.1 mrg return;
481 1.1 mrg }
482 1.1 mrg
483 1.1 mrg /* Someone DIED */
484 1.13 dholland switch (this_shot_type) {
485 1.1 mrg default:
486 1.1 mrg cp = "Killed";
487 1.1 mrg break;
488 1.17 dholland #ifdef FLY
489 1.1 mrg case FALL:
490 1.1 mrg cp = "Killed on impact";
491 1.1 mrg break;
492 1.17 dholland #endif
493 1.1 mrg case KNIFE:
494 1.1 mrg cp = "Stabbed to death";
495 1.1 mrg ouch->p_ammo = 0; /* No exploding */
496 1.1 mrg break;
497 1.1 mrg case SHOT:
498 1.1 mrg cp = "Shot to death";
499 1.1 mrg break;
500 1.1 mrg case GRENADE:
501 1.1 mrg case SATCHEL:
502 1.1 mrg case BOMB:
503 1.1 mrg cp = "Bombed";
504 1.1 mrg break;
505 1.1 mrg case MINE:
506 1.1 mrg case GMINE:
507 1.1 mrg cp = "Blown apart";
508 1.1 mrg break;
509 1.17 dholland #ifdef OOZE
510 1.1 mrg case SLIME:
511 1.1 mrg cp = "Slimed";
512 1.1 mrg if (credit != NULL)
513 1.1 mrg credit->i_slime++;
514 1.1 mrg break;
515 1.17 dholland #endif
516 1.17 dholland #ifdef VOLCANO
517 1.1 mrg case LAVA:
518 1.1 mrg cp = "Baked";
519 1.1 mrg break;
520 1.17 dholland #endif
521 1.17 dholland #ifdef DRONE
522 1.1 mrg case DSHOT:
523 1.1 mrg cp = "Eliminated";
524 1.1 mrg break;
525 1.17 dholland #endif
526 1.1 mrg }
527 1.1 mrg if (credit == NULL) {
528 1.14 dholland (void) snprintf(ouch->p_death, sizeof(ouch->p_death),
529 1.14 dholland "| %s by %s |", cp,
530 1.13 dholland (this_shot_type == MINE || this_shot_type == GMINE) ?
531 1.1 mrg "a mine" : "act of God");
532 1.1 mrg return;
533 1.1 mrg }
534 1.1 mrg
535 1.14 dholland (void) snprintf(ouch->p_death, sizeof(ouch->p_death),
536 1.14 dholland "| %s by %s |", cp, credit->i_name);
537 1.1 mrg
538 1.1 mrg if (ouch == gotcha) { /* No use killing yourself */
539 1.1 mrg credit->i_kills--;
540 1.1 mrg credit->i_bkills++;
541 1.1 mrg }
542 1.1 mrg else if (ouch->p_ident->i_team == ' '
543 1.1 mrg || ouch->p_ident->i_team != credit->i_team) {
544 1.1 mrg credit->i_kills++;
545 1.1 mrg credit->i_gkills++;
546 1.1 mrg }
547 1.1 mrg else {
548 1.1 mrg credit->i_kills--;
549 1.1 mrg credit->i_bkills++;
550 1.1 mrg }
551 1.1 mrg credit->i_score = credit->i_kills / (double) credit->i_entries;
552 1.1 mrg ouch->p_ident->i_deaths++;
553 1.1 mrg if (ouch->p_nchar == 0)
554 1.1 mrg ouch->p_ident->i_stillb++;
555 1.1 mrg if (gotcha == NULL)
556 1.1 mrg return;
557 1.1 mrg gotcha->p_damcap += STABDAM;
558 1.1 mrg gotcha->p_damage -= STABDAM;
559 1.1 mrg if (gotcha->p_damage < 0)
560 1.1 mrg gotcha->p_damage = 0;
561 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%2d/%2d", gotcha->p_damage,
562 1.14 dholland gotcha->p_damcap);
563 1.1 mrg cgoto(gotcha, STAT_DAM_ROW, STAT_VALUE_COL);
564 1.1 mrg outstr(gotcha, Buf, 5);
565 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%3d",
566 1.14 dholland (gotcha->p_damcap - MAXDAM) / 2);
567 1.1 mrg cgoto(gotcha, STAT_KILL_ROW, STAT_VALUE_COL);
568 1.1 mrg outstr(gotcha, Buf, 3);
569 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%5.2f", gotcha->p_ident->i_score);
570 1.1 mrg for (ouch = Player; ouch < End_player; ouch++) {
571 1.1 mrg cgoto(ouch, STAT_PLAY_ROW + 1 + (gotcha - Player),
572 1.1 mrg STAT_NAME_COL);
573 1.1 mrg outstr(ouch, Buf, 5);
574 1.1 mrg }
575 1.17 dholland #ifdef MONITOR
576 1.1 mrg for (ouch = Monitor; ouch < End_monitor; ouch++) {
577 1.1 mrg cgoto(ouch, STAT_PLAY_ROW + 1 + (gotcha - Player),
578 1.1 mrg STAT_NAME_COL);
579 1.1 mrg outstr(ouch, Buf, 5);
580 1.1 mrg }
581 1.17 dholland #endif
582 1.1 mrg }
583 1.1 mrg
584 1.1 mrg /*
585 1.1 mrg * zap:
586 1.1 mrg * Kill off a player and take him out of the game.
587 1.1 mrg */
588 1.2 lukem static void
589 1.24 dholland zap(PLAYER *pp, bool was_player, int i)
590 1.1 mrg {
591 1.17 dholland int n, len;
592 1.17 dholland BULLET *bp;
593 1.17 dholland PLAYER *np;
594 1.17 dholland int x, y;
595 1.1 mrg
596 1.1 mrg if (was_player) {
597 1.1 mrg if (pp->p_undershot)
598 1.1 mrg fixshots(pp->p_y, pp->p_x, pp->p_over);
599 1.24 dholland drawplayer(pp, false);
600 1.1 mrg Nplayer--;
601 1.1 mrg }
602 1.1 mrg
603 1.1 mrg len = strlen(pp->p_death); /* Display the cause of death */
604 1.1 mrg x = (WIDTH - len) / 2;
605 1.1 mrg cgoto(pp, HEIGHT / 2, x);
606 1.1 mrg outstr(pp, pp->p_death, len);
607 1.8 mycroft for (n = 1; n < len; n++)
608 1.8 mycroft pp->p_death[n] = '-';
609 1.1 mrg pp->p_death[0] = '+';
610 1.1 mrg pp->p_death[len - 1] = '+';
611 1.1 mrg cgoto(pp, HEIGHT / 2 - 1, x);
612 1.1 mrg outstr(pp, pp->p_death, len);
613 1.1 mrg cgoto(pp, HEIGHT / 2 + 1, x);
614 1.1 mrg outstr(pp, pp->p_death, len);
615 1.1 mrg cgoto(pp, HEIGHT, 0);
616 1.1 mrg
617 1.17 dholland #ifdef MONITOR
618 1.1 mrg if (was_player) {
619 1.17 dholland #endif
620 1.1 mrg for (bp = Bullets; bp != NULL; bp = bp->b_next) {
621 1.1 mrg if (bp->b_owner == pp)
622 1.1 mrg bp->b_owner = NULL;
623 1.1 mrg if (bp->b_x == pp->p_x && bp->b_y == pp->p_y)
624 1.1 mrg bp->b_over = SPACE;
625 1.1 mrg }
626 1.1 mrg
627 1.8 mycroft n = rand_num(pp->p_ammo);
628 1.1 mrg x = rand_num(pp->p_ammo);
629 1.8 mycroft if (x > n)
630 1.8 mycroft n = x;
631 1.1 mrg if (pp->p_ammo == 0)
632 1.1 mrg x = 0;
633 1.8 mycroft else if (n == pp->p_ammo - 1) {
634 1.1 mrg x = pp->p_ammo;
635 1.1 mrg len = SLIME;
636 1.1 mrg }
637 1.1 mrg else {
638 1.1 mrg for (x = MAXBOMB - 1; x > 0; x--)
639 1.8 mycroft if (n >= shot_req[x])
640 1.1 mrg break;
641 1.1 mrg for (y = MAXSLIME - 1; y > 0; y--)
642 1.8 mycroft if (n >= slime_req[y])
643 1.1 mrg break;
644 1.1 mrg if (y >= 0 && slime_req[y] > shot_req[x]) {
645 1.1 mrg x = slime_req[y];
646 1.1 mrg len = SLIME;
647 1.1 mrg }
648 1.1 mrg else if (x != 0) {
649 1.1 mrg len = shot_type[x];
650 1.1 mrg x = shot_req[x];
651 1.1 mrg }
652 1.1 mrg }
653 1.1 mrg if (x > 0) {
654 1.1 mrg (void) add_shot(len, pp->p_y, pp->p_x, pp->p_face, x,
655 1.24 dholland NULL, true, SPACE);
656 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%s detonated.",
657 1.1 mrg pp->p_ident->i_name);
658 1.1 mrg for (np = Player; np < End_player; np++)
659 1.1 mrg message(np, Buf);
660 1.17 dholland #ifdef MONITOR
661 1.1 mrg for (np = Monitor; np < End_monitor; np++)
662 1.1 mrg message(np, Buf);
663 1.17 dholland #endif
664 1.17 dholland #ifdef BOOTS
665 1.1 mrg while (pp->p_nboots-- > 0) {
666 1.1 mrg for (np = Boot; np < &Boot[NBOOTS]; np++)
667 1.1 mrg if (np->p_flying < 0)
668 1.1 mrg break;
669 1.1 mrg if (np >= &Boot[NBOOTS])
670 1.2 lukem err(1, "Too many boots");
671 1.24 dholland np->p_undershot = false;
672 1.1 mrg np->p_x = pp->p_x;
673 1.1 mrg np->p_y = pp->p_y;
674 1.1 mrg np->p_flying = rand_num(20);
675 1.1 mrg np->p_flyx = 2 * rand_num(6) - 5;
676 1.1 mrg np->p_flyy = 2 * rand_num(6) - 5;
677 1.1 mrg np->p_over = SPACE;
678 1.1 mrg np->p_face = BOOT;
679 1.1 mrg showexpl(np->p_y, np->p_x, BOOT);
680 1.1 mrg }
681 1.17 dholland #endif
682 1.1 mrg }
683 1.17 dholland #ifdef BOOTS
684 1.1 mrg else if (pp->p_nboots > 0) {
685 1.1 mrg if (pp->p_nboots == 2)
686 1.1 mrg Maze[pp->p_y][pp->p_x] = BOOT_PAIR;
687 1.1 mrg else
688 1.1 mrg Maze[pp->p_y][pp->p_x] = BOOT;
689 1.1 mrg if (pp->p_undershot)
690 1.1 mrg fixshots(pp->p_y, pp->p_x,
691 1.1 mrg Maze[pp->p_y][pp->p_x]);
692 1.1 mrg }
693 1.17 dholland #endif
694 1.1 mrg
695 1.17 dholland #ifdef VOLCANO
696 1.1 mrg volcano += pp->p_ammo - x;
697 1.1 mrg if (rand_num(100) < volcano / 50) {
698 1.1 mrg do {
699 1.1 mrg x = rand_num(WIDTH / 2) + WIDTH / 4;
700 1.1 mrg y = rand_num(HEIGHT / 2) + HEIGHT / 4;
701 1.1 mrg } while (Maze[y][x] != SPACE);
702 1.1 mrg (void) add_shot(LAVA, y, x, LEFTS, volcano,
703 1.24 dholland NULL, true, SPACE);
704 1.1 mrg for (np = Player; np < End_player; np++)
705 1.1 mrg message(np, "Volcano eruption.");
706 1.1 mrg volcano = 0;
707 1.1 mrg }
708 1.17 dholland #endif
709 1.1 mrg
710 1.17 dholland #ifdef DRONE
711 1.1 mrg if (rand_num(100) < 2) {
712 1.1 mrg do {
713 1.1 mrg x = rand_num(WIDTH / 2) + WIDTH / 4;
714 1.1 mrg y = rand_num(HEIGHT / 2) + HEIGHT / 4;
715 1.1 mrg } while (Maze[y][x] != SPACE);
716 1.1 mrg add_shot(DSHOT, y, x, rand_dir(),
717 1.1 mrg shot_req[MINDSHOT +
718 1.1 mrg rand_num(MAXBOMB - MINDSHOT)],
719 1.24 dholland NULL, false, SPACE);
720 1.1 mrg }
721 1.17 dholland #endif
722 1.1 mrg
723 1.1 mrg sendcom(pp, ENDWIN);
724 1.1 mrg (void) putc(' ', pp->p_output);
725 1.1 mrg (void) fclose(pp->p_output);
726 1.1 mrg
727 1.1 mrg End_player--;
728 1.1 mrg if (pp != End_player) {
729 1.1 mrg memcpy(pp, End_player, sizeof (PLAYER));
730 1.8 mycroft fdset[i] = fdset[End_player - Player + 3];
731 1.8 mycroft fdset[End_player - Player + 3].fd = -1;
732 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%5.2f%c%-10.10s %c",
733 1.1 mrg pp->p_ident->i_score, stat_char(pp),
734 1.1 mrg pp->p_ident->i_name, pp->p_ident->i_team);
735 1.8 mycroft n = STAT_PLAY_ROW + 1 + (pp - Player);
736 1.1 mrg for (np = Player; np < End_player; np++) {
737 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
738 1.1 mrg outstr(np, Buf, STAT_NAME_LEN);
739 1.1 mrg }
740 1.17 dholland #ifdef MONITOR
741 1.1 mrg for (np = Monitor; np < End_monitor; np++) {
742 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
743 1.1 mrg outstr(np, Buf, STAT_NAME_LEN);
744 1.1 mrg }
745 1.17 dholland #endif
746 1.8 mycroft } else
747 1.8 mycroft fdset[i].fd = -1;
748 1.1 mrg
749 1.1 mrg /* Erase the last player */
750 1.8 mycroft n = STAT_PLAY_ROW + 1 + Nplayer;
751 1.1 mrg for (np = Player; np < End_player; np++) {
752 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
753 1.1 mrg ce(np);
754 1.1 mrg }
755 1.17 dholland #ifdef MONITOR
756 1.1 mrg for (np = Monitor; np < End_monitor; np++) {
757 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
758 1.1 mrg ce(np);
759 1.1 mrg }
760 1.1 mrg }
761 1.1 mrg else {
762 1.1 mrg sendcom(pp, ENDWIN);
763 1.1 mrg (void) putc(LAST_PLAYER, pp->p_output);
764 1.1 mrg (void) fclose(pp->p_output);
765 1.1 mrg
766 1.1 mrg End_monitor--;
767 1.1 mrg if (pp != End_monitor) {
768 1.1 mrg memcpy(pp, End_monitor, sizeof (PLAYER));
769 1.8 mycroft fdset[i] = fdset[End_monitor - Monitor + MAXPL + 3];
770 1.8 mycroft fdset[End_monitor - Monitor + MAXPL + 3].fd = -1;
771 1.14 dholland (void) snprintf(Buf, sizeof(Buf), "%5.5s %-10.10s %c",
772 1.14 dholland " ",
773 1.1 mrg pp->p_ident->i_name, pp->p_ident->i_team);
774 1.8 mycroft n = STAT_MON_ROW + 1 + (pp - Player);
775 1.1 mrg for (np = Player; np < End_player; np++) {
776 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
777 1.1 mrg outstr(np, Buf, STAT_NAME_LEN);
778 1.1 mrg }
779 1.1 mrg for (np = Monitor; np < End_monitor; np++) {
780 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
781 1.1 mrg outstr(np, Buf, STAT_NAME_LEN);
782 1.1 mrg }
783 1.8 mycroft } else
784 1.8 mycroft fdset[i].fd = -1;
785 1.1 mrg
786 1.1 mrg /* Erase the last monitor */
787 1.8 mycroft n = STAT_MON_ROW + 1 + (End_monitor - Monitor);
788 1.1 mrg for (np = Player; np < End_player; np++) {
789 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
790 1.1 mrg ce(np);
791 1.1 mrg }
792 1.1 mrg for (np = Monitor; np < End_monitor; np++) {
793 1.8 mycroft cgoto(np, n, STAT_NAME_COL);
794 1.1 mrg ce(np);
795 1.1 mrg }
796 1.1 mrg }
797 1.17 dholland #endif
798 1.1 mrg }
799 1.1 mrg
800 1.1 mrg /*
801 1.1 mrg * rand_num:
802 1.1 mrg * Return a random number in a given range.
803 1.1 mrg */
804 1.2 lukem int
805 1.16 dholland rand_num(int range)
806 1.1 mrg {
807 1.23 dholland return (range == 0 ? 0 : random() % range);
808 1.1 mrg }
809 1.1 mrg
810 1.1 mrg /*
811 1.1 mrg * havechar:
812 1.1 mrg * Check to see if we have any characters in the input queue; if
813 1.24 dholland * we do, read them, stash them away, and return true; else return
814 1.24 dholland * false.
815 1.1 mrg */
816 1.24 dholland static bool
817 1.16 dholland havechar(PLAYER *pp, int i)
818 1.1 mrg {
819 1.1 mrg
820 1.1 mrg if (pp->p_ncount < pp->p_nchar)
821 1.24 dholland return true;
822 1.8 mycroft if (!(fdset[i].revents & POLLIN))
823 1.24 dholland return false;
824 1.1 mrg check_again:
825 1.1 mrg errno = 0;
826 1.1 mrg if ((pp->p_nchar = read(pp->p_fd, pp->p_cbuf, sizeof pp->p_cbuf)) <= 0)
827 1.1 mrg {
828 1.1 mrg if (errno == EINTR)
829 1.1 mrg goto check_again;
830 1.1 mrg pp->p_cbuf[0] = 'q';
831 1.1 mrg }
832 1.1 mrg pp->p_ncount = 0;
833 1.24 dholland return true;
834 1.1 mrg }
835 1.1 mrg
836 1.1 mrg /*
837 1.1 mrg * cleanup:
838 1.1 mrg * Exit with the given value, cleaning up any droppings lying around
839 1.1 mrg */
840 1.19 dholland void
841 1.16 dholland cleanup(int eval)
842 1.1 mrg {
843 1.17 dholland PLAYER *pp;
844 1.1 mrg
845 1.1 mrg for (pp = Player; pp < End_player; pp++) {
846 1.1 mrg cgoto(pp, HEIGHT, 0);
847 1.1 mrg sendcom(pp, ENDWIN);
848 1.1 mrg (void) putc(LAST_PLAYER, pp->p_output);
849 1.1 mrg (void) fclose(pp->p_output);
850 1.1 mrg }
851 1.17 dholland #ifdef MONITOR
852 1.1 mrg for (pp = Monitor; pp < End_monitor; pp++) {
853 1.1 mrg cgoto(pp, HEIGHT, 0);
854 1.1 mrg sendcom(pp, ENDWIN);
855 1.1 mrg (void) putc(LAST_PLAYER, pp->p_output);
856 1.1 mrg (void) fclose(pp->p_output);
857 1.1 mrg }
858 1.17 dholland #endif
859 1.1 mrg (void) close(Socket);
860 1.17 dholland #ifdef AF_UNIX_HACK
861 1.1 mrg (void) unlink(Sock_name);
862 1.17 dholland #endif
863 1.1 mrg
864 1.1 mrg exit(eval);
865 1.1 mrg }
866 1.1 mrg
867 1.1 mrg /*
868 1.1 mrg * send_stats:
869 1.1 mrg * Print stats to requestor
870 1.1 mrg */
871 1.2 lukem static void
872 1.16 dholland send_stats(void)
873 1.1 mrg {
874 1.17 dholland IDENT *ip;
875 1.17 dholland FILE *fp;
876 1.17 dholland int s;
877 1.17 dholland SOCKET sockstruct;
878 1.17 dholland socklen_t socklen;
879 1.1 mrg
880 1.1 mrg /*
881 1.1 mrg * Get the output stream ready
882 1.1 mrg */
883 1.17 dholland #ifdef INTERNET
884 1.1 mrg socklen = sizeof sockstruct;
885 1.17 dholland #else
886 1.1 mrg socklen = sizeof sockstruct - 1;
887 1.17 dholland #endif
888 1.1 mrg s = accept(Status, (struct sockaddr *) &sockstruct, &socklen);
889 1.1 mrg if (s < 0) {
890 1.1 mrg if (errno == EINTR)
891 1.1 mrg return;
892 1.17 dholland #ifdef LOG
893 1.7 lukem syslog(LOG_WARNING, "accept: %m");
894 1.17 dholland #else
895 1.3 lukem warn("accept");
896 1.17 dholland #endif
897 1.1 mrg return;
898 1.1 mrg }
899 1.1 mrg fp = fdopen(s, "w");
900 1.1 mrg if (fp == NULL) {
901 1.17 dholland #ifdef LOG
902 1.7 lukem syslog(LOG_WARNING, "fdopen: %m");
903 1.17 dholland #else
904 1.3 lukem warn("fdopen");
905 1.17 dholland #endif
906 1.1 mrg (void) close(s);
907 1.1 mrg return;
908 1.1 mrg }
909 1.1 mrg
910 1.1 mrg /*
911 1.1 mrg * Send output to requestor
912 1.1 mrg */
913 1.1 mrg fputs("Name\t\tScore\tDucked\tAbsorb\tFaced\tShot\tRobbed\tMissed\tSlimeK\n", fp);
914 1.1 mrg for (ip = Scores; ip != NULL; ip = ip->i_next) {
915 1.1 mrg fprintf(fp, "%s\t", ip->i_name);
916 1.1 mrg if (strlen(ip->i_name) < 8)
917 1.1 mrg putc('\t', fp);
918 1.1 mrg fprintf(fp, "%.2f\t%d\t%d\t%d\t%d\t%d\t%d\t%d\n",
919 1.1 mrg ip->i_score, ip->i_ducked, ip->i_absorbed,
920 1.1 mrg ip->i_faced, ip->i_shot, ip->i_robbed,
921 1.1 mrg ip->i_missed, ip->i_slime);
922 1.1 mrg }
923 1.1 mrg fputs("\n\nName\t\tEnemy\tFriend\tDeaths\tStill\tSaved\n", fp);
924 1.1 mrg for (ip = Scores; ip != NULL; ip = ip->i_next) {
925 1.1 mrg if (ip->i_team == ' ') {
926 1.1 mrg fprintf(fp, "%s\t", ip->i_name);
927 1.1 mrg if (strlen(ip->i_name) < 8)
928 1.1 mrg putc('\t', fp);
929 1.1 mrg }
930 1.1 mrg else {
931 1.1 mrg fprintf(fp, "%s[%c]\t", ip->i_name, ip->i_team);
932 1.1 mrg if (strlen(ip->i_name) + 3 < 8)
933 1.1 mrg putc('\t', fp);
934 1.1 mrg }
935 1.1 mrg fprintf(fp, "%d\t%d\t%d\t%d\t%d\n",
936 1.1 mrg ip->i_gkills, ip->i_bkills, ip->i_deaths,
937 1.1 mrg ip->i_stillb, ip->i_saved);
938 1.1 mrg }
939 1.1 mrg
940 1.1 mrg (void) fclose(fp);
941 1.1 mrg }
942 1.1 mrg
943 1.1 mrg /*
944 1.1 mrg * clear_scores:
945 1.1 mrg * Clear out the scores so the next session start clean
946 1.1 mrg */
947 1.2 lukem static void
948 1.16 dholland clear_scores(void)
949 1.1 mrg {
950 1.17 dholland IDENT *ip, *nextip;
951 1.1 mrg
952 1.1 mrg for (ip = Scores; ip != NULL; ip = nextip) {
953 1.1 mrg nextip = ip->i_next;
954 1.15 dholland (void) free(ip);
955 1.1 mrg }
956 1.1 mrg Scores = NULL;
957 1.1 mrg }
958