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1
/*
2
 * Copyright (c) 1995 Danny Gasparovski.
3
 *
4
 * Please read the file COPYRIGHT for the
5
 * terms and conditions of the copyright.
6
 */
7

    
8
#define WANT_SYS_IOCTL_H
9
#include <slirp.h>
10

    
11
u_int curtime, time_fasttimo, last_slowtimo;
12

    
13
#if 0
14
int x_port = -1;
15
int x_display = 0;
16
int x_screen = 0;
17

18
int
19
show_x(buff, inso)
20
        char *buff;
21
        struct socket *inso;
22
{
23
        if (x_port < 0) {
24
                lprint("X Redir: X not being redirected.\r\n");
25
        } else {
26
                lprint("X Redir: In sh/bash/zsh/etc. type: DISPLAY=%s:%d.%d; export DISPLAY\r\n",
27
                      inet_ntoa(our_addr), x_port, x_screen);
28
                lprint("X Redir: In csh/tcsh/etc. type:    setenv DISPLAY %s:%d.%d\r\n",
29
                      inet_ntoa(our_addr), x_port, x_screen);
30
                if (x_display)
31
                   lprint("X Redir: Redirecting to display %d\r\n", x_display);
32
        }
33

34
        return CFG_OK;
35
}
36

37

38
/*
39
 * XXX Allow more than one X redirection?
40
 */
41
void
42
redir_x(inaddr, start_port, display, screen)
43
        u_int32_t inaddr;
44
        int start_port;
45
        int display;
46
        int screen;
47
{
48
        int i;
49

50
        if (x_port >= 0) {
51
                lprint("X Redir: X already being redirected.\r\n");
52
                show_x(0, 0);
53
        } else {
54
                for (i = 6001 + (start_port-1); i <= 6100; i++) {
55
                        if (solisten(htons(i), inaddr, htons(6000 + display), 0)) {
56
                                /* Success */
57
                                x_port = i - 6000;
58
                                x_display = display;
59
                                x_screen = screen;
60
                                show_x(0, 0);
61
                                return;
62
                        }
63
                }
64
                lprint("X Redir: Error: Couldn't redirect a port for X. Weird.\r\n");
65
        }
66
}
67
#endif
68

    
69
/*
70
 * Get our IP address and put it in our_addr
71
 */
72
void
73
getouraddr()
74
{
75
        char buff[256];
76
        struct hostent *he = NULL;
77

    
78
        if (gethostname(buff,256) == 0)
79
            he = gethostbyname(buff);
80
        if (he)
81
            our_addr = *(struct in_addr *)he->h_addr;
82
        if (our_addr.s_addr == 0)
83
            our_addr.s_addr = loopback_addr.s_addr;
84
}
85

    
86
#if SIZEOF_CHAR_P == 8
87

    
88
struct quehead_32 {
89
        u_int32_t qh_link;
90
        u_int32_t qh_rlink;
91
};
92

    
93
inline void
94
insque_32(a, b)
95
        void *a;
96
        void *b;
97
{
98
        register struct quehead_32 *element = (struct quehead_32 *) a;
99
        register struct quehead_32 *head = (struct quehead_32 *) b;
100
        element->qh_link = head->qh_link;
101
        head->qh_link = (u_int32_t)element;
102
        element->qh_rlink = (u_int32_t)head;
103
        ((struct quehead_32 *)(element->qh_link))->qh_rlink
104
        = (u_int32_t)element;
105
}
106

    
107
inline void
108
remque_32(a)
109
        void *a;
110
{
111
        register struct quehead_32 *element = (struct quehead_32 *) a;
112
        ((struct quehead_32 *)(element->qh_link))->qh_rlink = element->qh_rlink;
113
        ((struct quehead_32 *)(element->qh_rlink))->qh_link = element->qh_link;
114
        element->qh_rlink = 0;
115
}
116

    
117
#endif /* SIZEOF_CHAR_P == 8 */
118

    
119
struct quehead {
120
        struct quehead *qh_link;
121
        struct quehead *qh_rlink;
122
};
123

    
124
inline void
125
insque(a, b)
126
        void *a, *b;
127
{
128
        register struct quehead *element = (struct quehead *) a;
129
        register struct quehead *head = (struct quehead *) b;
130
        element->qh_link = head->qh_link;
131
        head->qh_link = (struct quehead *)element;
132
        element->qh_rlink = (struct quehead *)head;
133
        ((struct quehead *)(element->qh_link))->qh_rlink
134
        = (struct quehead *)element;
135
}
136

    
137
inline void
138
remque(a)
139
     void *a;
140
{
141
  register struct quehead *element = (struct quehead *) a;
142
  ((struct quehead *)(element->qh_link))->qh_rlink = element->qh_rlink;
143
  ((struct quehead *)(element->qh_rlink))->qh_link = element->qh_link;
144
  element->qh_rlink = NULL;
145
  /*  element->qh_link = NULL;  TCP FIN1 crashes if you do this.  Why ? */
146
}
147

    
148
/* #endif */
149

    
150

    
151
int
152
add_exec(ex_ptr, do_pty, exec, addr, port)
153
        struct ex_list **ex_ptr;
154
        int do_pty;
155
        char *exec;
156
        int addr;
157
        int port;
158
{
159
        struct ex_list *tmp_ptr;
160

    
161
        /* First, check if the port is "bound" */
162
        for (tmp_ptr = *ex_ptr; tmp_ptr; tmp_ptr = tmp_ptr->ex_next) {
163
                if (port == tmp_ptr->ex_fport && addr == tmp_ptr->ex_addr)
164
                   return -1;
165
        }
166

    
167
        tmp_ptr = *ex_ptr;
168
        *ex_ptr = (struct ex_list *)malloc(sizeof(struct ex_list));
169
        (*ex_ptr)->ex_fport = port;
170
        (*ex_ptr)->ex_addr = addr;
171
        (*ex_ptr)->ex_pty = do_pty;
172
        (*ex_ptr)->ex_exec = strdup(exec);
173
        (*ex_ptr)->ex_next = tmp_ptr;
174
        return 0;
175
}
176

    
177
#ifndef HAVE_STRERROR
178

    
179
/*
180
 * For systems with no strerror
181
 */
182

    
183
extern int sys_nerr;
184
extern char *sys_errlist[];
185

    
186
char *
187
strerror(error)
188
        int error;
189
{
190
        if (error < sys_nerr)
191
           return sys_errlist[error];
192
        else
193
           return "Unknown error.";
194
}
195

    
196
#endif
197

    
198

    
199
#ifdef _WIN32
200

    
201
int
202
fork_exec(struct socket *so, const char *ex, int do_pty)
203
{
204
    /* not implemented */
205
    return 0;
206
}
207

    
208
#else
209

    
210
#ifndef CONFIG_QEMU
211
int
212
slirp_openpty(amaster, aslave)
213
     int *amaster, *aslave;
214
{
215
        register int master, slave;
216

    
217
#ifdef HAVE_GRANTPT
218
        char *ptr;
219

    
220
        if ((master = open("/dev/ptmx", O_RDWR)) < 0 ||
221
            grantpt(master) < 0 ||
222
            unlockpt(master) < 0 ||
223
            (ptr = ptsname(master)) == NULL)  {
224
                close(master);
225
                return -1;
226
        }
227

    
228
        if ((slave = open(ptr, O_RDWR)) < 0 ||
229
            ioctl(slave, I_PUSH, "ptem") < 0 ||
230
            ioctl(slave, I_PUSH, "ldterm") < 0 ||
231
            ioctl(slave, I_PUSH, "ttcompat") < 0) {
232
                close(master);
233
                close(slave);
234
                return -1;
235
        }
236

    
237
        *amaster = master;
238
        *aslave = slave;
239
        return 0;
240

    
241
#else
242

    
243
        static char line[] = "/dev/ptyXX";
244
        register const char *cp1, *cp2;
245

    
246
        for (cp1 = "pqrsPQRS"; *cp1; cp1++) {
247
                line[8] = *cp1;
248
                for (cp2 = "0123456789abcdefghijklmnopqrstuv"; *cp2; cp2++) {
249
                        line[9] = *cp2;
250
                        if ((master = open(line, O_RDWR, 0)) == -1) {
251
                                if (errno == ENOENT)
252
                                   return (-1);    /* out of ptys */
253
                        } else {
254
                                line[5] = 't';
255
                                /* These will fail */
256
                                (void) chown(line, getuid(), 0);
257
                                (void) chmod(line, S_IRUSR|S_IWUSR|S_IWGRP);
258
#ifdef HAVE_REVOKE
259
                                (void) revoke(line);
260
#endif
261
                                if ((slave = open(line, O_RDWR, 0)) != -1) {
262
                                        *amaster = master;
263
                                        *aslave = slave;
264
                                        return 0;
265
                                }
266
                                (void) close(master);
267
                                line[5] = 'p';
268
                        }
269
                }
270
        }
271
        errno = ENOENT; /* out of ptys */
272
        return (-1);
273
#endif
274
}
275
#endif
276

    
277
/*
278
 * XXX This is ugly
279
 * We create and bind a socket, then fork off to another
280
 * process, which connects to this socket, after which we
281
 * exec the wanted program.  If something (strange) happens,
282
 * the accept() call could block us forever.
283
 *
284
 * do_pty = 0   Fork/exec inetd style
285
 * do_pty = 1   Fork/exec using slirp.telnetd
286
 * do_ptr = 2   Fork/exec using pty
287
 */
288
int
289
fork_exec(struct socket *so, const char *ex, int do_pty)
290
{
291
        int s;
292
        struct sockaddr_in addr;
293
        socklen_t addrlen = sizeof(addr);
294
        int opt;
295
        int master = -1;
296
        const char *argv[256];
297
#if 0
298
        char buff[256];
299
#endif
300
        /* don't want to clobber the original */
301
        char *bptr;
302
        const char *curarg;
303
        int c, i, ret;
304

    
305
        DEBUG_CALL("fork_exec");
306
        DEBUG_ARG("so = %lx", (long)so);
307
        DEBUG_ARG("ex = %lx", (long)ex);
308
        DEBUG_ARG("do_pty = %lx", (long)do_pty);
309

    
310
        if (do_pty == 2) {
311
#if 0
312
                if (slirp_openpty(&master, &s) == -1) {
313
                        lprint("Error: openpty failed: %s\n", strerror(errno));
314
                        return 0;
315
                }
316
#else
317
                return 0;
318
#endif
319
        } else {
320
                addr.sin_family = AF_INET;
321
                addr.sin_port = 0;
322
                addr.sin_addr.s_addr = INADDR_ANY;
323

    
324
                if ((s = socket(AF_INET, SOCK_STREAM, 0)) < 0 ||
325
                    bind(s, (struct sockaddr *)&addr, addrlen) < 0 ||
326
                    listen(s, 1) < 0) {
327
                        lprint("Error: inet socket: %s\n", strerror(errno));
328
                        closesocket(s);
329

    
330
                        return 0;
331
                }
332
        }
333

    
334
        switch(fork()) {
335
         case -1:
336
                lprint("Error: fork failed: %s\n", strerror(errno));
337
                close(s);
338
                if (do_pty == 2)
339
                   close(master);
340
                return 0;
341

    
342
         case 0:
343
                /* Set the DISPLAY */
344
                if (do_pty == 2) {
345
                        (void) close(master);
346
#ifdef TIOCSCTTY /* XXXXX */
347
                        (void) setsid();
348
                        ioctl(s, TIOCSCTTY, (char *)NULL);
349
#endif
350
                } else {
351
                        getsockname(s, (struct sockaddr *)&addr, &addrlen);
352
                        close(s);
353
                        /*
354
                         * Connect to the socket
355
                         * XXX If any of these fail, we're in trouble!
356
                          */
357
                        s = socket(AF_INET, SOCK_STREAM, 0);
358
                        addr.sin_addr = loopback_addr;
359
                        do {
360
                            ret = connect(s, (struct sockaddr *)&addr, addrlen);
361
                        } while (ret < 0 && errno == EINTR);
362
                }
363

    
364
#if 0
365
                if (x_port >= 0) {
366
#ifdef HAVE_SETENV
367
                        sprintf(buff, "%s:%d.%d", inet_ntoa(our_addr), x_port, x_screen);
368
                        setenv("DISPLAY", buff, 1);
369
#else
370
                        sprintf(buff, "DISPLAY=%s:%d.%d", inet_ntoa(our_addr), x_port, x_screen);
371
                        putenv(buff);
372
#endif
373
                }
374
#endif
375
                dup2(s, 0);
376
                dup2(s, 1);
377
                dup2(s, 2);
378
                for (s = getdtablesize() - 1; s >= 3; s--)
379
                   close(s);
380

    
381
                i = 0;
382
                bptr = strdup(ex); /* No need to free() this */
383
                if (do_pty == 1) {
384
                        /* Setup "slirp.telnetd -x" */
385
                        argv[i++] = "slirp.telnetd";
386
                        argv[i++] = "-x";
387
                        argv[i++] = bptr;
388
                } else
389
                   do {
390
                        /* Change the string into argv[] */
391
                        curarg = bptr;
392
                        while (*bptr != ' ' && *bptr != (char)0)
393
                           bptr++;
394
                        c = *bptr;
395
                        *bptr++ = (char)0;
396
                        argv[i++] = strdup(curarg);
397
                   } while (c);
398

    
399
                argv[i] = 0;
400
                execvp(argv[0], (char **)argv);
401

    
402
                /* Ooops, failed, let's tell the user why */
403
                  {
404
                          char buff[256];
405

    
406
                          snprintf(buff, sizeof(buff),
407
                                   "Error: execvp of %s failed: %s\n",
408
                                   argv[0], strerror(errno));
409
                          write(2, buff, strlen(buff)+1);
410
                  }
411
                close(0); close(1); close(2); /* XXX */
412
                exit(1);
413

    
414
         default:
415
                if (do_pty == 2) {
416
                        close(s);
417
                        so->s = master;
418
                } else {
419
                        /*
420
                         * XXX this could block us...
421
                         * XXX Should set a timer here, and if accept() doesn't
422
                          * return after X seconds, declare it a failure
423
                          * The only reason this will block forever is if socket()
424
                          * of connect() fail in the child process
425
                          */
426
                        do {
427
                            so->s = accept(s, (struct sockaddr *)&addr, &addrlen);
428
                        } while (so->s < 0 && errno == EINTR);
429
                        closesocket(s);
430
                        opt = 1;
431
                        setsockopt(so->s,SOL_SOCKET,SO_REUSEADDR,(char *)&opt,sizeof(int));
432
                        opt = 1;
433
                        setsockopt(so->s,SOL_SOCKET,SO_OOBINLINE,(char *)&opt,sizeof(int));
434
                }
435
                fd_nonblock(so->s);
436

    
437
                /* Append the telnet options now */
438
                if (so->so_m != 0 && do_pty == 1)  {
439
                        sbappend(so, so->so_m);
440
                        so->so_m = 0;
441
                }
442

    
443
                return 1;
444
        }
445
}
446
#endif
447

    
448
#ifndef HAVE_STRDUP
449
char *
450
strdup(str)
451
        const char *str;
452
{
453
        char *bptr;
454

    
455
        bptr = (char *)malloc(strlen(str)+1);
456
        strcpy(bptr, str);
457

    
458
        return bptr;
459
}
460
#endif
461

    
462
#if 0
463
void
464
snooze_hup(num)
465
        int num;
466
{
467
        int s, ret;
468
#ifndef NO_UNIX_SOCKETS
469
        struct sockaddr_un sock_un;
470
#endif
471
        struct sockaddr_in sock_in;
472
        char buff[256];
473

    
474
        ret = -1;
475
        if (slirp_socket_passwd) {
476
                s = socket(AF_INET, SOCK_STREAM, 0);
477
                if (s < 0)
478
                   slirp_exit(1);
479
                sock_in.sin_family = AF_INET;
480
                sock_in.sin_addr.s_addr = slirp_socket_addr;
481
                sock_in.sin_port = htons(slirp_socket_port);
482
                if (connect(s, (struct sockaddr *)&sock_in, sizeof(sock_in)) != 0)
483
                   slirp_exit(1); /* just exit...*/
484
                sprintf(buff, "kill %s:%d", slirp_socket_passwd, slirp_socket_unit);
485
                write(s, buff, strlen(buff)+1);
486
        }
487
#ifndef NO_UNIX_SOCKETS
488
          else {
489
                s = socket(AF_UNIX, SOCK_STREAM, 0);
490
                if (s < 0)
491
                   slirp_exit(1);
492
                sock_un.sun_family = AF_UNIX;
493
                strcpy(sock_un.sun_path, socket_path);
494
                if (connect(s, (struct sockaddr *)&sock_un,
495
                              sizeof(sock_un.sun_family) + sizeof(sock_un.sun_path)) != 0)
496
                   slirp_exit(1);
497
                sprintf(buff, "kill none:%d", slirp_socket_unit);
498
                write(s, buff, strlen(buff)+1);
499
        }
500
#endif
501
        slirp_exit(0);
502
}
503

    
504

    
505
void
506
snooze()
507
{
508
        sigset_t s;
509
        int i;
510

    
511
        /* Don't need our data anymore */
512
        /* XXX This makes SunOS barf */
513
/*        brk(0); */
514

    
515
        /* Close all fd's */
516
        for (i = 255; i >= 0; i--)
517
           close(i);
518

    
519
        signal(SIGQUIT, slirp_exit);
520
        signal(SIGHUP, snooze_hup);
521
        sigemptyset(&s);
522

    
523
        /* Wait for any signal */
524
        sigsuspend(&s);
525

    
526
        /* Just in case ... */
527
        exit(255);
528
}
529

    
530
void
531
relay(s)
532
        int s;
533
{
534
        char buf[8192];
535
        int n;
536
        fd_set readfds;
537
        struct ttys *ttyp;
538

    
539
        /* Don't need our data anymore */
540
        /* XXX This makes SunOS barf */
541
/*        brk(0); */
542

    
543
        signal(SIGQUIT, slirp_exit);
544
        signal(SIGHUP, slirp_exit);
545
        signal(SIGINT, slirp_exit);
546
        signal(SIGTERM, slirp_exit);
547

    
548
        /* Fudge to get term_raw and term_restore to work */
549
        if (NULL == (ttyp = tty_attach (0, slirp_tty))) {
550
         lprint ("Error: tty_attach failed in misc.c:relay()\r\n");
551
         slirp_exit (1);
552
    }
553
        ttyp->fd = 0;
554
        ttyp->flags |= TTY_CTTY;
555
        term_raw(ttyp);
556

    
557
        while (1) {
558
                FD_ZERO(&readfds);
559

    
560
                FD_SET(0, &readfds);
561
                FD_SET(s, &readfds);
562

    
563
                n = select(s+1, &readfds, (fd_set *)0, (fd_set *)0, (struct timeval *)0);
564

    
565
                if (n <= 0)
566
                   slirp_exit(0);
567

    
568
                if (FD_ISSET(0, &readfds)) {
569
                        n = read(0, buf, 8192);
570
                        if (n <= 0)
571
                           slirp_exit(0);
572
                        n = writen(s, buf, n);
573
                        if (n <= 0)
574
                           slirp_exit(0);
575
                }
576

    
577
                if (FD_ISSET(s, &readfds)) {
578
                        n = read(s, buf, 8192);
579
                        if (n <= 0)
580
                           slirp_exit(0);
581
                        n = writen(0, buf, n);
582
                        if (n <= 0)
583
                           slirp_exit(0);
584
                }
585
        }
586

    
587
        /* Just in case.... */
588
        exit(1);
589
}
590
#endif
591

    
592
#ifdef CONFIG_QEMU
593
extern void term_vprintf(const char *fmt, va_list ap);
594

    
595
void lprint(const char *format, ...)
596
{
597
    va_list args;
598

    
599
    va_start(args, format);
600
    term_vprintf(format, args);
601
    va_end(args);
602
}
603
#else
604
int (*lprint_print) _P((void *, const char *, va_list));
605
char *lprint_ptr, *lprint_ptr2, **lprint_arg;
606

    
607
void
608
#ifdef __STDC__
609
lprint(const char *format, ...)
610
#else
611
lprint(va_alist) va_dcl
612
#endif
613
{
614
        va_list args;
615

    
616
#ifdef __STDC__
617
        va_start(args, format);
618
#else
619
        char *format;
620
        va_start(args);
621
        format = va_arg(args, char *);
622
#endif
623
#if 0
624
        /* If we're printing to an sbuf, make sure there's enough room */
625
        /* XXX +100? */
626
        if (lprint_sb) {
627
                if ((lprint_ptr - lprint_sb->sb_wptr) >=
628
                    (lprint_sb->sb_datalen - (strlen(format) + 100))) {
629
                        int deltaw = lprint_sb->sb_wptr - lprint_sb->sb_data;
630
                        int deltar = lprint_sb->sb_rptr - lprint_sb->sb_data;
631
                        int deltap = lprint_ptr -         lprint_sb->sb_data;
632

633
                        lprint_sb->sb_data = (char *)realloc(lprint_sb->sb_data,
634
                                                             lprint_sb->sb_datalen + TCP_SNDSPACE);
635

636
                        /* Adjust all values */
637
                        lprint_sb->sb_wptr = lprint_sb->sb_data + deltaw;
638
                        lprint_sb->sb_rptr = lprint_sb->sb_data + deltar;
639
                        lprint_ptr =         lprint_sb->sb_data + deltap;
640

641
                        lprint_sb->sb_datalen += TCP_SNDSPACE;
642
                }
643
        }
644
#endif
645
        if (lprint_print)
646
           lprint_ptr += (*lprint_print)(*lprint_arg, format, args);
647

    
648
        /* Check if they want output to be logged to file as well */
649
        if (lfd) {
650
                /*
651
                 * Remove \r's
652
                 * otherwise you'll get ^M all over the file
653
                 */
654
                int len = strlen(format);
655
                char *bptr1, *bptr2;
656

    
657
                bptr1 = bptr2 = strdup(format);
658

    
659
                while (len--) {
660
                        if (*bptr1 == '\r')
661
                           memcpy(bptr1, bptr1+1, len+1);
662
                        else
663
                           bptr1++;
664
                }
665
                vfprintf(lfd, bptr2, args);
666
                free(bptr2);
667
        }
668
        va_end(args);
669
}
670

    
671
void
672
add_emu(buff)
673
        char *buff;
674
{
675
        u_int lport, fport;
676
        u_int8_t tos = 0, emu = 0;
677
        char buff1[256], buff2[256], buff4[128];
678
        char *buff3 = buff4;
679
        struct emu_t *emup;
680
        struct socket *so;
681

    
682
        if (sscanf(buff, "%256s %256s", buff2, buff1) != 2) {
683
                lprint("Error: Bad arguments\r\n");
684
                return;
685
        }
686

    
687
        if (sscanf(buff1, "%d:%d", &lport, &fport) != 2) {
688
                lport = 0;
689
                if (sscanf(buff1, "%d", &fport) != 1) {
690
                        lprint("Error: Bad first argument\r\n");
691
                        return;
692
                }
693
        }
694

    
695
        if (sscanf(buff2, "%128[^:]:%128s", buff1, buff3) != 2) {
696
                buff3 = 0;
697
                if (sscanf(buff2, "%256s", buff1) != 1) {
698
                        lprint("Error: Bad second argument\r\n");
699
                        return;
700
                }
701
        }
702

    
703
        if (buff3) {
704
                if (strcmp(buff3, "lowdelay") == 0)
705
                   tos = IPTOS_LOWDELAY;
706
                else if (strcmp(buff3, "throughput") == 0)
707
                   tos = IPTOS_THROUGHPUT;
708
                else {
709
                        lprint("Error: Expecting \"lowdelay\"/\"throughput\"\r\n");
710
                        return;
711
                }
712
        }
713

    
714
        if (strcmp(buff1, "ftp") == 0)
715
           emu = EMU_FTP;
716
        else if (strcmp(buff1, "irc") == 0)
717
           emu = EMU_IRC;
718
        else if (strcmp(buff1, "none") == 0)
719
           emu = EMU_NONE; /* ie: no emulation */
720
        else {
721
                lprint("Error: Unknown service\r\n");
722
                return;
723
        }
724

    
725
        /* First, check that it isn't already emulated */
726
        for (emup = tcpemu; emup; emup = emup->next) {
727
                if (emup->lport == lport && emup->fport == fport) {
728
                        lprint("Error: port already emulated\r\n");
729
                        return;
730
                }
731
        }
732

    
733
        /* link it */
734
        emup = (struct emu_t *)malloc(sizeof (struct emu_t));
735
        emup->lport = (u_int16_t)lport;
736
        emup->fport = (u_int16_t)fport;
737
        emup->tos = tos;
738
        emup->emu = emu;
739
        emup->next = tcpemu;
740
        tcpemu = emup;
741

    
742
        /* And finally, mark all current sessions, if any, as being emulated */
743
        for (so = tcb.so_next; so != &tcb; so = so->so_next) {
744
                if ((lport && lport == ntohs(so->so_lport)) ||
745
                    (fport && fport == ntohs(so->so_fport))) {
746
                        if (emu)
747
                           so->so_emu = emu;
748
                        if (tos)
749
                           so->so_iptos = tos;
750
                }
751
        }
752

    
753
        lprint("Adding emulation for %s to port %d/%d\r\n", buff1, emup->lport, emup->fport);
754
}
755
#endif
756

    
757
#ifdef BAD_SPRINTF
758

    
759
#undef vsprintf
760
#undef sprintf
761

    
762
/*
763
 * Some BSD-derived systems have a sprintf which returns char *
764
 */
765

    
766
int
767
vsprintf_len(string, format, args)
768
        char *string;
769
        const char *format;
770
        va_list args;
771
{
772
        vsprintf(string, format, args);
773
        return strlen(string);
774
}
775

    
776
int
777
#ifdef __STDC__
778
sprintf_len(char *string, const char *format, ...)
779
#else
780
sprintf_len(va_alist) va_dcl
781
#endif
782
{
783
        va_list args;
784
#ifdef __STDC__
785
        va_start(args, format);
786
#else
787
        char *string;
788
        char *format;
789
        va_start(args);
790
        string = va_arg(args, char *);
791
        format = va_arg(args, char *);
792
#endif
793
        vsprintf(string, format, args);
794
        return strlen(string);
795
}
796

    
797
#endif
798

    
799
void
800
u_sleep(usec)
801
        int usec;
802
{
803
        struct timeval t;
804
        fd_set fdset;
805

    
806
        FD_ZERO(&fdset);
807

    
808
        t.tv_sec = 0;
809
        t.tv_usec = usec * 1000;
810

    
811
        select(0, &fdset, &fdset, &fdset, &t);
812
}
813

    
814
/*
815
 * Set fd blocking and non-blocking
816
 */
817

    
818
void
819
fd_nonblock(fd)
820
        int fd;
821
{
822
#ifdef FIONBIO
823
        int opt = 1;
824

    
825
        ioctlsocket(fd, FIONBIO, &opt);
826
#else
827
        int opt;
828

    
829
        opt = fcntl(fd, F_GETFL, 0);
830
        opt |= O_NONBLOCK;
831
        fcntl(fd, F_SETFL, opt);
832
#endif
833
}
834

    
835
void
836
fd_block(fd)
837
        int fd;
838
{
839
#ifdef FIONBIO
840
        int opt = 0;
841

    
842
        ioctlsocket(fd, FIONBIO, &opt);
843
#else
844
        int opt;
845

    
846
        opt = fcntl(fd, F_GETFL, 0);
847
        opt &= ~O_NONBLOCK;
848
        fcntl(fd, F_SETFL, opt);
849
#endif
850
}
851

    
852

    
853
#if 0
854
/*
855
 * invoke RSH
856
 */
857
int
858
rsh_exec(so,ns, user, host, args)
859
        struct socket *so;
860
        struct socket *ns;
861
        char *user;
862
        char *host;
863
        char *args;
864
{
865
        int fd[2];
866
        int fd0[2];
867
        int s;
868
        char buff[256];
869

870
        DEBUG_CALL("rsh_exec");
871
        DEBUG_ARG("so = %lx", (long)so);
872

873
        if (pipe(fd)<0) {
874
          lprint("Error: pipe failed: %s\n", strerror(errno));
875
          return 0;
876
        }
877
/* #ifdef HAVE_SOCKETPAIR */
878
#if 1
879
        if (socketpair(PF_UNIX,SOCK_STREAM,0, fd0) == -1) {
880
          close(fd[0]);
881
          close(fd[1]);
882
          lprint("Error: openpty failed: %s\n", strerror(errno));
883
          return 0;
884
        }
885
#else
886
        if (slirp_openpty(&fd0[0], &fd0[1]) == -1) {
887
          close(fd[0]);
888
          close(fd[1]);
889
          lprint("Error: openpty failed: %s\n", strerror(errno));
890
          return 0;
891
        }
892
#endif
893

    
894
        switch(fork()) {
895
         case -1:
896
           lprint("Error: fork failed: %s\n", strerror(errno));
897
           close(fd[0]);
898
           close(fd[1]);
899
           close(fd0[0]);
900
           close(fd0[1]);
901
           return 0;
902

    
903
         case 0:
904
           close(fd[0]);
905
           close(fd0[0]);
906

    
907
                /* Set the DISPLAY */
908
           if (x_port >= 0) {
909
#ifdef HAVE_SETENV
910
             sprintf(buff, "%s:%d.%d", inet_ntoa(our_addr), x_port, x_screen);
911
             setenv("DISPLAY", buff, 1);
912
#else
913
             sprintf(buff, "DISPLAY=%s:%d.%d", inet_ntoa(our_addr), x_port, x_screen);
914
             putenv(buff);
915
#endif
916
           }
917

    
918
           dup2(fd0[1], 0);
919
           dup2(fd0[1], 1);
920
           dup2(fd[1], 2);
921
           for (s = 3; s <= 255; s++)
922
             close(s);
923

    
924
           execlp("rsh","rsh","-l", user, host, args, NULL);
925

    
926
           /* Ooops, failed, let's tell the user why */
927

    
928
           sprintf(buff, "Error: execlp of %s failed: %s\n",
929
                   "rsh", strerror(errno));
930
           write(2, buff, strlen(buff)+1);
931
           close(0); close(1); close(2); /* XXX */
932
           exit(1);
933

    
934
        default:
935
          close(fd[1]);
936
          close(fd0[1]);
937
          ns->s=fd[0];
938
          so->s=fd0[0];
939

    
940
          return 1;
941
        }
942
}
943
#endif