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Commit | Line | Data |
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f0cbd3ec FB |
1 | /* |
2 | * Copyright (c) 1995 Danny Gasparovski. | |
5fafdf24 | 3 | * |
f0cbd3ec FB |
4 | * Please read the file COPYRIGHT for the |
5 | * terms and conditions of the copyright. | |
6 | */ | |
7 | ||
f0cbd3ec | 8 | #include <slirp.h> |
6dbe553f JK |
9 | #include <libslirp.h> |
10 | ||
83c9089e | 11 | #include "monitor/monitor.h" |
6a1751b7 | 12 | #include "qemu/main-loop.h" |
f0cbd3ec | 13 | |
9f349498 JK |
14 | #ifdef DEBUG |
15 | int slirp_debug = DBG_CALL|DBG_MISC|DBG_ERROR; | |
16 | #endif | |
17 | ||
f0cbd3ec FB |
18 | struct quehead { |
19 | struct quehead *qh_link; | |
20 | struct quehead *qh_rlink; | |
21 | }; | |
22 | ||
23 | inline void | |
511d2b14 | 24 | insque(void *a, void *b) |
f0cbd3ec FB |
25 | { |
26 | register struct quehead *element = (struct quehead *) a; | |
27 | register struct quehead *head = (struct quehead *) b; | |
28 | element->qh_link = head->qh_link; | |
29 | head->qh_link = (struct quehead *)element; | |
30 | element->qh_rlink = (struct quehead *)head; | |
31 | ((struct quehead *)(element->qh_link))->qh_rlink | |
32 | = (struct quehead *)element; | |
33 | } | |
34 | ||
35 | inline void | |
511d2b14 | 36 | remque(void *a) |
f0cbd3ec FB |
37 | { |
38 | register struct quehead *element = (struct quehead *) a; | |
39 | ((struct quehead *)(element->qh_link))->qh_rlink = element->qh_rlink; | |
40 | ((struct quehead *)(element->qh_rlink))->qh_link = element->qh_link; | |
41 | element->qh_rlink = NULL; | |
f0cbd3ec FB |
42 | } |
43 | ||
a13a4126 JK |
44 | int add_exec(struct ex_list **ex_ptr, int do_pty, char *exec, |
45 | struct in_addr addr, int port) | |
f0cbd3ec FB |
46 | { |
47 | struct ex_list *tmp_ptr; | |
5fafdf24 | 48 | |
f0cbd3ec FB |
49 | /* First, check if the port is "bound" */ |
50 | for (tmp_ptr = *ex_ptr; tmp_ptr; tmp_ptr = tmp_ptr->ex_next) { | |
a13a4126 JK |
51 | if (port == tmp_ptr->ex_fport && |
52 | addr.s_addr == tmp_ptr->ex_addr.s_addr) | |
53 | return -1; | |
f0cbd3ec | 54 | } |
5fafdf24 | 55 | |
f0cbd3ec | 56 | tmp_ptr = *ex_ptr; |
2fd5d864 | 57 | *ex_ptr = g_new(struct ex_list, 1); |
f0cbd3ec FB |
58 | (*ex_ptr)->ex_fport = port; |
59 | (*ex_ptr)->ex_addr = addr; | |
60 | (*ex_ptr)->ex_pty = do_pty; | |
2fd5d864 | 61 | (*ex_ptr)->ex_exec = (do_pty == 3) ? exec : g_strdup(exec); |
f0cbd3ec FB |
62 | (*ex_ptr)->ex_next = tmp_ptr; |
63 | return 0; | |
64 | } | |
65 | ||
66 | #ifndef HAVE_STRERROR | |
67 | ||
68 | /* | |
69 | * For systems with no strerror | |
70 | */ | |
71 | ||
72 | extern int sys_nerr; | |
73 | extern char *sys_errlist[]; | |
74 | ||
75 | char * | |
76 | strerror(error) | |
77 | int error; | |
78 | { | |
79 | if (error < sys_nerr) | |
80 | return sys_errlist[error]; | |
81 | else | |
82 | return "Unknown error."; | |
83 | } | |
84 | ||
85 | #endif | |
86 | ||
87 | ||
a3d4af03 FB |
88 | #ifdef _WIN32 |
89 | ||
90 | int | |
9634d903 | 91 | fork_exec(struct socket *so, const char *ex, int do_pty) |
a3d4af03 FB |
92 | { |
93 | /* not implemented */ | |
94 | return 0; | |
95 | } | |
96 | ||
97 | #else | |
98 | ||
f0cbd3ec FB |
99 | /* |
100 | * XXX This is ugly | |
101 | * We create and bind a socket, then fork off to another | |
102 | * process, which connects to this socket, after which we | |
103 | * exec the wanted program. If something (strange) happens, | |
104 | * the accept() call could block us forever. | |
5fafdf24 | 105 | * |
f0cbd3ec FB |
106 | * do_pty = 0 Fork/exec inetd style |
107 | * do_pty = 1 Fork/exec using slirp.telnetd | |
108 | * do_ptr = 2 Fork/exec using pty | |
109 | */ | |
110 | int | |
9634d903 | 111 | fork_exec(struct socket *so, const char *ex, int do_pty) |
f0cbd3ec FB |
112 | { |
113 | int s; | |
114 | struct sockaddr_in addr; | |
242acf3a | 115 | socklen_t addrlen = sizeof(addr); |
f0cbd3ec | 116 | int opt; |
7ccfb2eb | 117 | const char *argv[256]; |
f0cbd3ec FB |
118 | /* don't want to clobber the original */ |
119 | char *bptr; | |
9634d903 | 120 | const char *curarg; |
7b91a172 | 121 | int c, i, ret; |
4d54ec78 | 122 | pid_t pid; |
5fafdf24 | 123 | |
f0cbd3ec FB |
124 | DEBUG_CALL("fork_exec"); |
125 | DEBUG_ARG("so = %lx", (long)so); | |
126 | DEBUG_ARG("ex = %lx", (long)ex); | |
127 | DEBUG_ARG("do_pty = %lx", (long)do_pty); | |
5fafdf24 | 128 | |
f0cbd3ec | 129 | if (do_pty == 2) { |
3f9b2b1f | 130 | return 0; |
f0cbd3ec FB |
131 | } else { |
132 | addr.sin_family = AF_INET; | |
133 | addr.sin_port = 0; | |
134 | addr.sin_addr.s_addr = INADDR_ANY; | |
3b46e624 | 135 | |
40ff6d7e | 136 | if ((s = qemu_socket(AF_INET, SOCK_STREAM, 0)) < 0 || |
f0cbd3ec FB |
137 | bind(s, (struct sockaddr *)&addr, addrlen) < 0 || |
138 | listen(s, 1) < 0) { | |
02d16089 | 139 | error_report("Error: inet socket: %s", strerror(errno)); |
379ff53d | 140 | closesocket(s); |
3b46e624 | 141 | |
f0cbd3ec FB |
142 | return 0; |
143 | } | |
144 | } | |
5fafdf24 | 145 | |
4d54ec78 PB |
146 | pid = fork(); |
147 | switch(pid) { | |
f0cbd3ec | 148 | case -1: |
02d16089 | 149 | error_report("Error: fork failed: %s", strerror(errno)); |
f0cbd3ec | 150 | close(s); |
f0cbd3ec | 151 | return 0; |
3b46e624 | 152 | |
f0cbd3ec | 153 | case 0: |
565465fc JK |
154 | setsid(); |
155 | ||
f0cbd3ec | 156 | /* Set the DISPLAY */ |
9f1134d4 SW |
157 | getsockname(s, (struct sockaddr *)&addr, &addrlen); |
158 | close(s); | |
159 | /* | |
160 | * Connect to the socket | |
161 | * XXX If any of these fail, we're in trouble! | |
162 | */ | |
163 | s = qemu_socket(AF_INET, SOCK_STREAM, 0); | |
164 | addr.sin_addr = loopback_addr; | |
165 | do { | |
166 | ret = connect(s, (struct sockaddr *)&addr, addrlen); | |
167 | } while (ret < 0 && errno == EINTR); | |
3b46e624 | 168 | |
f0cbd3ec FB |
169 | dup2(s, 0); |
170 | dup2(s, 1); | |
171 | dup2(s, 2); | |
9634d903 | 172 | for (s = getdtablesize() - 1; s >= 3; s--) |
f0cbd3ec | 173 | close(s); |
3b46e624 | 174 | |
f0cbd3ec | 175 | i = 0; |
7267c094 | 176 | bptr = g_strdup(ex); /* No need to free() this */ |
f0cbd3ec FB |
177 | if (do_pty == 1) { |
178 | /* Setup "slirp.telnetd -x" */ | |
179 | argv[i++] = "slirp.telnetd"; | |
180 | argv[i++] = "-x"; | |
181 | argv[i++] = bptr; | |
182 | } else | |
183 | do { | |
184 | /* Change the string into argv[] */ | |
185 | curarg = bptr; | |
186 | while (*bptr != ' ' && *bptr != (char)0) | |
187 | bptr++; | |
188 | c = *bptr; | |
189 | *bptr++ = (char)0; | |
2fd5d864 | 190 | argv[i++] = g_strdup(curarg); |
f0cbd3ec | 191 | } while (c); |
3b46e624 | 192 | |
511d2b14 | 193 | argv[i] = NULL; |
7ccfb2eb | 194 | execvp(argv[0], (char **)argv); |
3b46e624 | 195 | |
f0cbd3ec | 196 | /* Ooops, failed, let's tell the user why */ |
f0d98b05 KS |
197 | fprintf(stderr, "Error: execvp of %s failed: %s\n", |
198 | argv[0], strerror(errno)); | |
f0cbd3ec FB |
199 | close(0); close(1); close(2); /* XXX */ |
200 | exit(1); | |
3b46e624 | 201 | |
f0cbd3ec | 202 | default: |
4d54ec78 | 203 | qemu_add_child_watch(pid); |
9f1134d4 SW |
204 | /* |
205 | * XXX this could block us... | |
206 | * XXX Should set a timer here, and if accept() doesn't | |
207 | * return after X seconds, declare it a failure | |
208 | * The only reason this will block forever is if socket() | |
209 | * of connect() fail in the child process | |
210 | */ | |
211 | do { | |
212 | so->s = accept(s, (struct sockaddr *)&addr, &addrlen); | |
213 | } while (so->s < 0 && errno == EINTR); | |
214 | closesocket(s); | |
aad1239a | 215 | socket_set_fast_reuse(so->s); |
9f1134d4 | 216 | opt = 1; |
9957fc7f | 217 | qemu_setsockopt(so->s, SOL_SOCKET, SO_OOBINLINE, &opt, sizeof(int)); |
f9e8cacc | 218 | qemu_set_nonblock(so->s); |
3b46e624 | 219 | |
f0cbd3ec | 220 | /* Append the telnet options now */ |
511d2b14 | 221 | if (so->so_m != NULL && do_pty == 1) { |
f0cbd3ec | 222 | sbappend(so, so->so_m); |
511d2b14 | 223 | so->so_m = NULL; |
f0cbd3ec | 224 | } |
3b46e624 | 225 | |
f0cbd3ec FB |
226 | return 1; |
227 | } | |
228 | } | |
229 | #endif | |
230 | ||
9f8bd042 | 231 | void slirp_connection_info(Slirp *slirp, Monitor *mon) |
6dbe553f JK |
232 | { |
233 | const char * const tcpstates[] = { | |
234 | [TCPS_CLOSED] = "CLOSED", | |
235 | [TCPS_LISTEN] = "LISTEN", | |
236 | [TCPS_SYN_SENT] = "SYN_SENT", | |
237 | [TCPS_SYN_RECEIVED] = "SYN_RCVD", | |
238 | [TCPS_ESTABLISHED] = "ESTABLISHED", | |
239 | [TCPS_CLOSE_WAIT] = "CLOSE_WAIT", | |
240 | [TCPS_FIN_WAIT_1] = "FIN_WAIT_1", | |
241 | [TCPS_CLOSING] = "CLOSING", | |
242 | [TCPS_LAST_ACK] = "LAST_ACK", | |
243 | [TCPS_FIN_WAIT_2] = "FIN_WAIT_2", | |
244 | [TCPS_TIME_WAIT] = "TIME_WAIT", | |
245 | }; | |
246 | struct in_addr dst_addr; | |
247 | struct sockaddr_in src; | |
248 | socklen_t src_len; | |
249 | uint16_t dst_port; | |
250 | struct socket *so; | |
251 | const char *state; | |
252 | char buf[20]; | |
6dbe553f JK |
253 | |
254 | monitor_printf(mon, " Protocol[State] FD Source Address Port " | |
255 | "Dest. Address Port RecvQ SendQ\n"); | |
256 | ||
460fec67 | 257 | for (so = slirp->tcb.so_next; so != &slirp->tcb; so = so->so_next) { |
6dbe553f JK |
258 | if (so->so_state & SS_HOSTFWD) { |
259 | state = "HOST_FORWARD"; | |
260 | } else if (so->so_tcpcb) { | |
261 | state = tcpstates[so->so_tcpcb->t_state]; | |
262 | } else { | |
263 | state = "NONE"; | |
264 | } | |
265 | if (so->so_state & (SS_HOSTFWD | SS_INCOMING)) { | |
266 | src_len = sizeof(src); | |
267 | getsockname(so->s, (struct sockaddr *)&src, &src_len); | |
268 | dst_addr = so->so_laddr; | |
269 | dst_port = so->so_lport; | |
270 | } else { | |
271 | src.sin_addr = so->so_laddr; | |
272 | src.sin_port = so->so_lport; | |
273 | dst_addr = so->so_faddr; | |
274 | dst_port = so->so_fport; | |
275 | } | |
f293d8b1 AL |
276 | snprintf(buf, sizeof(buf), " TCP[%s]", state); |
277 | monitor_printf(mon, "%-19s %3d %15s %5d ", buf, so->s, | |
6dbe553f JK |
278 | src.sin_addr.s_addr ? inet_ntoa(src.sin_addr) : "*", |
279 | ntohs(src.sin_port)); | |
280 | monitor_printf(mon, "%15s %5d %5d %5d\n", | |
281 | inet_ntoa(dst_addr), ntohs(dst_port), | |
282 | so->so_rcv.sb_cc, so->so_snd.sb_cc); | |
283 | } | |
284 | ||
460fec67 | 285 | for (so = slirp->udb.so_next; so != &slirp->udb; so = so->so_next) { |
6dbe553f | 286 | if (so->so_state & SS_HOSTFWD) { |
f293d8b1 | 287 | snprintf(buf, sizeof(buf), " UDP[HOST_FORWARD]"); |
6dbe553f JK |
288 | src_len = sizeof(src); |
289 | getsockname(so->s, (struct sockaddr *)&src, &src_len); | |
290 | dst_addr = so->so_laddr; | |
291 | dst_port = so->so_lport; | |
292 | } else { | |
f293d8b1 | 293 | snprintf(buf, sizeof(buf), " UDP[%d sec]", |
6dbe553f JK |
294 | (so->so_expire - curtime) / 1000); |
295 | src.sin_addr = so->so_laddr; | |
296 | src.sin_port = so->so_lport; | |
297 | dst_addr = so->so_faddr; | |
298 | dst_port = so->so_fport; | |
299 | } | |
f293d8b1 | 300 | monitor_printf(mon, "%-19s %3d %15s %5d ", buf, so->s, |
6dbe553f JK |
301 | src.sin_addr.s_addr ? inet_ntoa(src.sin_addr) : "*", |
302 | ntohs(src.sin_port)); | |
303 | monitor_printf(mon, "%15s %5d %5d %5d\n", | |
304 | inet_ntoa(dst_addr), ntohs(dst_port), | |
305 | so->so_rcv.sb_cc, so->so_snd.sb_cc); | |
306 | } | |
e6d43cfb JK |
307 | |
308 | for (so = slirp->icmp.so_next; so != &slirp->icmp; so = so->so_next) { | |
f293d8b1 | 309 | snprintf(buf, sizeof(buf), " ICMP[%d sec]", |
e6d43cfb JK |
310 | (so->so_expire - curtime) / 1000); |
311 | src.sin_addr = so->so_laddr; | |
312 | dst_addr = so->so_faddr; | |
f293d8b1 | 313 | monitor_printf(mon, "%-19s %3d %15s - ", buf, so->s, |
e6d43cfb JK |
314 | src.sin_addr.s_addr ? inet_ntoa(src.sin_addr) : "*"); |
315 | monitor_printf(mon, "%15s - %5d %5d\n", inet_ntoa(dst_addr), | |
316 | so->so_rcv.sb_cc, so->so_snd.sb_cc); | |
317 | } | |
6dbe553f | 318 | } |