ftp-proxy.c revision 1.1.2.3 1 1.1.2.3 peter /* $NetBSD: ftp-proxy.c,v 1.1.2.3 2008/05/25 10:19:38 peter Exp $ */
2 1.1.2.1 peter /* $OpenBSD: ftp-proxy.c,v 1.15 2007/08/15 15:18:02 camield Exp $ */
3 1.1.2.1 peter
4 1.1.2.1 peter /*
5 1.1.2.1 peter * Copyright (c) 2004, 2005 Camiel Dobbelaar, <cd (at) sentia.nl>
6 1.1.2.1 peter *
7 1.1.2.1 peter * Permission to use, copy, modify, and distribute this software for any
8 1.1.2.1 peter * purpose with or without fee is hereby granted, provided that the above
9 1.1.2.1 peter * copyright notice and this permission notice appear in all copies.
10 1.1.2.1 peter *
11 1.1.2.1 peter * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.1.2.1 peter * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.1.2.1 peter * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.1.2.1 peter * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.1.2.1 peter * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.1.2.1 peter * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.1.2.1 peter * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.1.2.1 peter */
19 1.1.2.1 peter
20 1.1.2.1 peter #include <sys/queue.h>
21 1.1.2.1 peter #include <sys/types.h>
22 1.1.2.1 peter #include <sys/time.h>
23 1.1.2.1 peter #include <sys/resource.h>
24 1.1.2.1 peter #include <sys/socket.h>
25 1.1.2.1 peter
26 1.1.2.1 peter #include <net/if.h>
27 1.1.2.1 peter #include <net/pfvar.h>
28 1.1.2.1 peter #include <netinet/in.h>
29 1.1.2.1 peter #include <arpa/inet.h>
30 1.1.2.1 peter
31 1.1.2.1 peter #include <err.h>
32 1.1.2.1 peter #include <errno.h>
33 1.1.2.1 peter #include <event.h>
34 1.1.2.1 peter #include <fcntl.h>
35 1.1.2.1 peter #include <netdb.h>
36 1.1.2.1 peter #include <pwd.h>
37 1.1.2.1 peter #include <signal.h>
38 1.1.2.1 peter #include <stdarg.h>
39 1.1.2.1 peter #include <stdio.h>
40 1.1.2.1 peter #include <stdlib.h>
41 1.1.2.1 peter #include <string.h>
42 1.1.2.1 peter #include <syslog.h>
43 1.1.2.1 peter #include <unistd.h>
44 1.1.2.1 peter #include <vis.h>
45 1.1.2.1 peter
46 1.1.2.1 peter #include "filter.h"
47 1.1.2.1 peter
48 1.1.2.1 peter #define CONNECT_TIMEOUT 30
49 1.1.2.1 peter #define MIN_PORT 1024
50 1.1.2.1 peter #define MAX_LINE 500
51 1.1.2.1 peter #define MAX_LOGLINE 300
52 1.1.2.1 peter #define NTOP_BUFS 3
53 1.1.2.1 peter #define TCP_BACKLOG 10
54 1.1.2.1 peter
55 1.1.2.1 peter #define CHROOT_DIR "/var/chroot/ftp-proxy"
56 1.1.2.1 peter #define NOPRIV_USER "_proxy"
57 1.1.2.1 peter
58 1.1.2.1 peter /* pfctl standard NAT range. */
59 1.1.2.1 peter #define PF_NAT_PROXY_PORT_LOW 50001
60 1.1.2.1 peter #define PF_NAT_PROXY_PORT_HIGH 65535
61 1.1.2.1 peter
62 1.1.2.1 peter #ifndef sstosa
63 1.1.2.1 peter #define sstosa(ss) ((struct sockaddr *)(ss))
64 1.1.2.1 peter #endif /* sstosa */
65 1.1.2.1 peter
66 1.1.2.1 peter #ifndef IPPORT_HIFIRSTAUTO
67 1.1.2.1 peter #define IPPORT_HIFIRSTAUTO IPPORT_ANONMIN
68 1.1.2.1 peter #endif /* IPPORT_HIFIRSTAUTO */
69 1.1.2.1 peter
70 1.1.2.1 peter #ifndef IPPORT_HILASTAUTO
71 1.1.2.1 peter #define IPPORT_HILASTAUTO IPPORT_ANONMAX
72 1.1.2.1 peter #endif /* IPPORT_HILASTAUTO */
73 1.1.2.1 peter
74 1.1.2.1 peter enum { CMD_NONE = 0, CMD_PORT, CMD_EPRT, CMD_PASV, CMD_EPSV };
75 1.1.2.1 peter
76 1.1.2.1 peter struct session {
77 1.1.2.1 peter u_int32_t id;
78 1.1.2.1 peter struct sockaddr_storage client_ss;
79 1.1.2.1 peter struct sockaddr_storage proxy_ss;
80 1.1.2.1 peter struct sockaddr_storage server_ss;
81 1.1.2.1 peter struct sockaddr_storage orig_server_ss;
82 1.1.2.1 peter struct bufferevent *client_bufev;
83 1.1.2.1 peter struct bufferevent *server_bufev;
84 1.1.2.1 peter int client_fd;
85 1.1.2.1 peter int server_fd;
86 1.1.2.1 peter char cbuf[MAX_LINE];
87 1.1.2.1 peter size_t cbuf_valid;
88 1.1.2.1 peter char sbuf[MAX_LINE];
89 1.1.2.1 peter size_t sbuf_valid;
90 1.1.2.1 peter int cmd;
91 1.1.2.1 peter u_int16_t port;
92 1.1.2.1 peter u_int16_t proxy_port;
93 1.1.2.1 peter LIST_ENTRY(session) entry;
94 1.1.2.1 peter };
95 1.1.2.1 peter
96 1.1.2.1 peter LIST_HEAD(, session) sessions = LIST_HEAD_INITIALIZER(sessions);
97 1.1.2.1 peter
98 1.1.2.1 peter void client_error(struct bufferevent *, short, void *);
99 1.1.2.1 peter int client_parse(struct session *s);
100 1.1.2.1 peter int client_parse_anon(struct session *s);
101 1.1.2.1 peter int client_parse_cmd(struct session *s);
102 1.1.2.1 peter void client_read(struct bufferevent *, void *);
103 1.1.2.1 peter int drop_privs(void);
104 1.1.2.1 peter void end_session(struct session *);
105 1.1.2.1 peter int exit_daemon(void);
106 1.1.2.1 peter int getline(char *, size_t *);
107 1.1.2.1 peter void handle_connection(const int, short, void *);
108 1.1.2.1 peter void handle_signal(int, short, void *);
109 1.1.2.1 peter struct session * init_session(void);
110 1.1.2.1 peter void logmsg(int, const char *, ...);
111 1.1.2.1 peter u_int16_t parse_port(int);
112 1.1.2.1 peter u_int16_t pick_proxy_port(void);
113 1.1.2.1 peter void proxy_reply(int, struct sockaddr *, u_int16_t);
114 1.1.2.1 peter void server_error(struct bufferevent *, short, void *);
115 1.1.2.1 peter int server_parse(struct session *s);
116 1.1.2.1 peter int allow_data_connection(struct session *s);
117 1.1.2.1 peter void server_read(struct bufferevent *, void *);
118 1.1.2.1 peter const char *sock_ntop(struct sockaddr *);
119 1.1.2.1 peter void usage(void);
120 1.1.2.1 peter
121 1.1.2.1 peter char linebuf[MAX_LINE + 1];
122 1.1.2.1 peter size_t linelen;
123 1.1.2.1 peter
124 1.1.2.1 peter char ntop_buf[NTOP_BUFS][INET6_ADDRSTRLEN];
125 1.1.2.1 peter
126 1.1.2.1 peter struct sockaddr_storage fixed_server_ss, fixed_proxy_ss;
127 1.1.2.1 peter char *fixed_server, *fixed_server_port, *fixed_proxy, *listen_ip, *listen_port,
128 1.1.2.1 peter *qname, *tagname;
129 1.1.2.1 peter int anonymous_only, daemonize, id_count, ipv6_mode, loglevel, max_sessions,
130 1.1.2.1 peter rfc_mode, session_count, timeout, verbose;
131 1.1.2.1 peter extern char *__progname;
132 1.1.2.1 peter
133 1.1.2.1 peter void
134 1.1.2.1 peter client_error(struct bufferevent *bufev, short what, void *arg)
135 1.1.2.1 peter {
136 1.1.2.1 peter struct session *s = arg;
137 1.1.2.1 peter
138 1.1.2.1 peter if (what & EVBUFFER_EOF)
139 1.1.2.1 peter logmsg(LOG_INFO, "#%d client close", s->id);
140 1.1.2.1 peter else if (what == (EVBUFFER_ERROR | EVBUFFER_READ))
141 1.1.2.1 peter logmsg(LOG_ERR, "#%d client reset connection", s->id);
142 1.1.2.1 peter else if (what & EVBUFFER_TIMEOUT)
143 1.1.2.1 peter logmsg(LOG_ERR, "#%d client timeout", s->id);
144 1.1.2.1 peter else if (what & EVBUFFER_WRITE)
145 1.1.2.1 peter logmsg(LOG_ERR, "#%d client write error: %d", s->id, what);
146 1.1.2.1 peter else
147 1.1.2.1 peter logmsg(LOG_ERR, "#%d abnormal client error: %d", s->id, what);
148 1.1.2.1 peter
149 1.1.2.1 peter end_session(s);
150 1.1.2.1 peter }
151 1.1.2.1 peter
152 1.1.2.1 peter int
153 1.1.2.1 peter client_parse(struct session *s)
154 1.1.2.1 peter {
155 1.1.2.1 peter /* Reset any previous command. */
156 1.1.2.1 peter s->cmd = CMD_NONE;
157 1.1.2.1 peter s->port = 0;
158 1.1.2.1 peter
159 1.1.2.1 peter /* Commands we are looking for are at least 4 chars long. */
160 1.1.2.1 peter if (linelen < 4)
161 1.1.2.1 peter return (1);
162 1.1.2.1 peter
163 1.1.2.1 peter if (linebuf[0] == 'P' || linebuf[0] == 'p' ||
164 1.1.2.1 peter linebuf[0] == 'E' || linebuf[0] == 'e') {
165 1.1.2.1 peter if (!client_parse_cmd(s))
166 1.1.2.1 peter return (0);
167 1.1.2.1 peter
168 1.1.2.1 peter /*
169 1.1.2.1 peter * Allow active mode connections immediately, instead of
170 1.1.2.1 peter * waiting for a positive reply from the server. Some
171 1.1.2.1 peter * rare servers/proxies try to probe or setup the data
172 1.1.2.1 peter * connection before an actual transfer request.
173 1.1.2.1 peter */
174 1.1.2.1 peter if (s->cmd == CMD_PORT || s->cmd == CMD_EPRT)
175 1.1.2.1 peter return (allow_data_connection(s));
176 1.1.2.1 peter }
177 1.1.2.1 peter
178 1.1.2.1 peter if (anonymous_only && (linebuf[0] == 'U' || linebuf[0] == 'u'))
179 1.1.2.1 peter return (client_parse_anon(s));
180 1.1.2.1 peter
181 1.1.2.1 peter return (1);
182 1.1.2.1 peter }
183 1.1.2.1 peter
184 1.1.2.1 peter int
185 1.1.2.1 peter client_parse_anon(struct session *s)
186 1.1.2.1 peter {
187 1.1.2.1 peter if (strcasecmp("USER ftp\r\n", linebuf) != 0 &&
188 1.1.2.1 peter strcasecmp("USER anonymous\r\n", linebuf) != 0) {
189 1.1.2.1 peter snprintf(linebuf, sizeof linebuf,
190 1.1.2.1 peter "500 Only anonymous FTP allowed\r\n");
191 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d proxy: %s", s->id, linebuf);
192 1.1.2.1 peter
193 1.1.2.1 peter /* Talk back to the client ourself. */
194 1.1.2.1 peter linelen = strlen(linebuf);
195 1.1.2.1 peter bufferevent_write(s->client_bufev, linebuf, linelen);
196 1.1.2.1 peter
197 1.1.2.1 peter /* Clear buffer so it's not sent to the server. */
198 1.1.2.1 peter linebuf[0] = '\0';
199 1.1.2.1 peter linelen = 0;
200 1.1.2.1 peter }
201 1.1.2.1 peter
202 1.1.2.1 peter return (1);
203 1.1.2.1 peter }
204 1.1.2.1 peter
205 1.1.2.1 peter int
206 1.1.2.1 peter client_parse_cmd(struct session *s)
207 1.1.2.1 peter {
208 1.1.2.1 peter if (strncasecmp("PASV", linebuf, 4) == 0)
209 1.1.2.1 peter s->cmd = CMD_PASV;
210 1.1.2.1 peter else if (strncasecmp("PORT ", linebuf, 5) == 0)
211 1.1.2.1 peter s->cmd = CMD_PORT;
212 1.1.2.1 peter else if (strncasecmp("EPSV", linebuf, 4) == 0)
213 1.1.2.1 peter s->cmd = CMD_EPSV;
214 1.1.2.1 peter else if (strncasecmp("EPRT ", linebuf, 5) == 0)
215 1.1.2.1 peter s->cmd = CMD_EPRT;
216 1.1.2.1 peter else
217 1.1.2.1 peter return (1);
218 1.1.2.1 peter
219 1.1.2.1 peter if (ipv6_mode && (s->cmd == CMD_PASV || s->cmd == CMD_PORT)) {
220 1.1.2.1 peter logmsg(LOG_CRIT, "PASV and PORT not allowed with IPv6");
221 1.1.2.1 peter return (0);
222 1.1.2.1 peter }
223 1.1.2.1 peter
224 1.1.2.1 peter if (s->cmd == CMD_PORT || s->cmd == CMD_EPRT) {
225 1.1.2.1 peter s->port = parse_port(s->cmd);
226 1.1.2.1 peter if (s->port < MIN_PORT) {
227 1.1.2.1 peter logmsg(LOG_CRIT, "#%d bad port in '%s'", s->id,
228 1.1.2.1 peter linebuf);
229 1.1.2.1 peter return (0);
230 1.1.2.1 peter }
231 1.1.2.1 peter s->proxy_port = pick_proxy_port();
232 1.1.2.1 peter proxy_reply(s->cmd, sstosa(&s->proxy_ss), s->proxy_port);
233 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d proxy: %s", s->id, linebuf);
234 1.1.2.1 peter }
235 1.1.2.1 peter
236 1.1.2.1 peter return (1);
237 1.1.2.1 peter }
238 1.1.2.1 peter
239 1.1.2.1 peter void
240 1.1.2.1 peter client_read(struct bufferevent *bufev, void *arg)
241 1.1.2.1 peter {
242 1.1.2.1 peter struct session *s = arg;
243 1.1.2.3 peter size_t buf_avail, nread;
244 1.1.2.1 peter int n;
245 1.1.2.1 peter
246 1.1.2.1 peter do {
247 1.1.2.1 peter buf_avail = sizeof s->cbuf - s->cbuf_valid;
248 1.1.2.3 peter nread = bufferevent_read(bufev, s->cbuf + s->cbuf_valid,
249 1.1.2.1 peter buf_avail);
250 1.1.2.3 peter s->cbuf_valid += nread;
251 1.1.2.1 peter
252 1.1.2.1 peter while ((n = getline(s->cbuf, &s->cbuf_valid)) > 0) {
253 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d client: %s", s->id, linebuf);
254 1.1.2.1 peter if (!client_parse(s)) {
255 1.1.2.1 peter end_session(s);
256 1.1.2.1 peter return;
257 1.1.2.1 peter }
258 1.1.2.1 peter bufferevent_write(s->server_bufev, linebuf, linelen);
259 1.1.2.1 peter }
260 1.1.2.1 peter
261 1.1.2.1 peter if (n == -1) {
262 1.1.2.1 peter logmsg(LOG_ERR, "#%d client command too long or not"
263 1.1.2.1 peter " clean", s->id);
264 1.1.2.1 peter end_session(s);
265 1.1.2.1 peter return;
266 1.1.2.1 peter }
267 1.1.2.3 peter } while (nread == buf_avail);
268 1.1.2.1 peter }
269 1.1.2.1 peter
270 1.1.2.1 peter int
271 1.1.2.1 peter drop_privs(void)
272 1.1.2.1 peter {
273 1.1.2.1 peter struct passwd *pw;
274 1.1.2.1 peter
275 1.1.2.1 peter pw = getpwnam(NOPRIV_USER);
276 1.1.2.1 peter if (pw == NULL)
277 1.1.2.1 peter return (0);
278 1.1.2.1 peter
279 1.1.2.1 peter tzset();
280 1.1.2.1 peter #ifdef __NetBSD__
281 1.1.2.1 peter if (chroot(CHROOT_DIR) != 0 || chdir("/") != 0 ||
282 1.1.2.1 peter setgroups(1, &pw->pw_gid) != 0 ||
283 1.1.2.1 peter setgid(pw->pw_gid) != 0 ||
284 1.1.2.1 peter setuid(pw->pw_uid) != 0)
285 1.1.2.1 peter return (0);
286 1.1.2.1 peter #else
287 1.1.2.1 peter if (chroot(CHROOT_DIR) != 0 || chdir("/") != 0 ||
288 1.1.2.1 peter setgroups(1, &pw->pw_gid) != 0 ||
289 1.1.2.1 peter setresgid(pw->pw_gid, pw->pw_gid, pw->pw_gid) != 0 ||
290 1.1.2.1 peter setresuid(pw->pw_uid, pw->pw_uid, pw->pw_uid) != 0)
291 1.1.2.1 peter return (0);
292 1.1.2.1 peter #endif /* !__NetBSD__ */
293 1.1.2.1 peter
294 1.1.2.1 peter return (1);
295 1.1.2.1 peter }
296 1.1.2.1 peter
297 1.1.2.1 peter void
298 1.1.2.1 peter end_session(struct session *s)
299 1.1.2.1 peter {
300 1.1.2.3 peter int error;
301 1.1.2.1 peter
302 1.1.2.1 peter logmsg(LOG_INFO, "#%d ending session", s->id);
303 1.1.2.1 peter
304 1.1.2.1 peter if (s->client_fd != -1)
305 1.1.2.1 peter close(s->client_fd);
306 1.1.2.1 peter if (s->server_fd != -1)
307 1.1.2.1 peter close(s->server_fd);
308 1.1.2.1 peter
309 1.1.2.1 peter if (s->client_bufev)
310 1.1.2.1 peter bufferevent_free(s->client_bufev);
311 1.1.2.1 peter if (s->server_bufev)
312 1.1.2.1 peter bufferevent_free(s->server_bufev);
313 1.1.2.1 peter
314 1.1.2.1 peter /* Remove rulesets by commiting empty ones. */
315 1.1.2.3 peter error = 0;
316 1.1.2.1 peter if (prepare_commit(s->id) == -1)
317 1.1.2.3 peter error = errno;
318 1.1.2.1 peter else if (do_commit() == -1) {
319 1.1.2.3 peter error = errno;
320 1.1.2.1 peter do_rollback();
321 1.1.2.1 peter }
322 1.1.2.3 peter if (error)
323 1.1.2.1 peter logmsg(LOG_ERR, "#%d pf rule removal failed: %s", s->id,
324 1.1.2.3 peter strerror(error));
325 1.1.2.1 peter
326 1.1.2.1 peter LIST_REMOVE(s, entry);
327 1.1.2.1 peter free(s);
328 1.1.2.1 peter session_count--;
329 1.1.2.1 peter }
330 1.1.2.1 peter
331 1.1.2.1 peter int
332 1.1.2.1 peter exit_daemon(void)
333 1.1.2.1 peter {
334 1.1.2.1 peter struct session *s, *next;
335 1.1.2.1 peter
336 1.1.2.1 peter for (s = LIST_FIRST(&sessions); s != LIST_END(&sessions); s = next) {
337 1.1.2.1 peter next = LIST_NEXT(s, entry);
338 1.1.2.1 peter end_session(s);
339 1.1.2.1 peter }
340 1.1.2.1 peter
341 1.1.2.1 peter if (daemonize)
342 1.1.2.1 peter closelog();
343 1.1.2.1 peter
344 1.1.2.1 peter exit(0);
345 1.1.2.1 peter
346 1.1.2.1 peter /* NOTREACHED */
347 1.1.2.1 peter return (-1);
348 1.1.2.1 peter }
349 1.1.2.1 peter
350 1.1.2.1 peter int
351 1.1.2.1 peter getline(char *buf, size_t *valid)
352 1.1.2.1 peter {
353 1.1.2.1 peter size_t i;
354 1.1.2.1 peter
355 1.1.2.1 peter if (*valid > MAX_LINE)
356 1.1.2.1 peter return (-1);
357 1.1.2.1 peter
358 1.1.2.1 peter /* Copy to linebuf while searching for a newline. */
359 1.1.2.1 peter for (i = 0; i < *valid; i++) {
360 1.1.2.1 peter linebuf[i] = buf[i];
361 1.1.2.1 peter if (buf[i] == '\0')
362 1.1.2.1 peter return (-1);
363 1.1.2.1 peter if (buf[i] == '\n')
364 1.1.2.1 peter break;
365 1.1.2.1 peter }
366 1.1.2.1 peter
367 1.1.2.1 peter if (i == *valid) {
368 1.1.2.1 peter /* No newline found. */
369 1.1.2.1 peter linebuf[0] = '\0';
370 1.1.2.1 peter linelen = 0;
371 1.1.2.1 peter if (i < MAX_LINE)
372 1.1.2.1 peter return (0);
373 1.1.2.1 peter return (-1);
374 1.1.2.1 peter }
375 1.1.2.1 peter
376 1.1.2.1 peter linelen = i + 1;
377 1.1.2.1 peter linebuf[linelen] = '\0';
378 1.1.2.1 peter *valid -= linelen;
379 1.1.2.1 peter
380 1.1.2.1 peter /* Move leftovers to the start. */
381 1.1.2.1 peter if (*valid != 0)
382 1.1.2.1 peter bcopy(buf + linelen, buf, *valid);
383 1.1.2.1 peter
384 1.1.2.1 peter return ((int)linelen);
385 1.1.2.1 peter }
386 1.1.2.1 peter
387 1.1.2.1 peter void
388 1.1.2.1 peter handle_connection(const int listen_fd, short event, void *ev)
389 1.1.2.1 peter {
390 1.1.2.1 peter struct sockaddr_storage tmp_ss;
391 1.1.2.1 peter struct sockaddr *client_sa, *server_sa, *fixed_server_sa;
392 1.1.2.1 peter struct sockaddr *client_to_proxy_sa, *proxy_to_server_sa;
393 1.1.2.1 peter struct session *s;
394 1.1.2.1 peter socklen_t len;
395 1.1.2.1 peter int client_fd, fc, on;
396 1.1.2.1 peter
397 1.1.2.1 peter /*
398 1.1.2.1 peter * We _must_ accept the connection, otherwise libevent will keep
399 1.1.2.1 peter * coming back, and we will chew up all CPU.
400 1.1.2.1 peter */
401 1.1.2.1 peter client_sa = sstosa(&tmp_ss);
402 1.1.2.1 peter len = sizeof(struct sockaddr_storage);
403 1.1.2.1 peter if ((client_fd = accept(listen_fd, client_sa, &len)) < 0) {
404 1.1.2.1 peter logmsg(LOG_CRIT, "accept failed: %s", strerror(errno));
405 1.1.2.1 peter return;
406 1.1.2.1 peter }
407 1.1.2.1 peter
408 1.1.2.1 peter /* Refuse connection if the maximum is reached. */
409 1.1.2.1 peter if (session_count >= max_sessions) {
410 1.1.2.1 peter logmsg(LOG_ERR, "client limit (%d) reached, refusing "
411 1.1.2.1 peter "connection from %s", max_sessions, sock_ntop(client_sa));
412 1.1.2.1 peter close(client_fd);
413 1.1.2.1 peter return;
414 1.1.2.1 peter }
415 1.1.2.1 peter
416 1.1.2.1 peter /* Allocate session and copy back the info from the accept(). */
417 1.1.2.1 peter s = init_session();
418 1.1.2.1 peter if (s == NULL) {
419 1.1.2.1 peter logmsg(LOG_CRIT, "init_session failed");
420 1.1.2.1 peter close(client_fd);
421 1.1.2.1 peter return;
422 1.1.2.1 peter }
423 1.1.2.1 peter s->client_fd = client_fd;
424 1.1.2.1 peter memcpy(sstosa(&s->client_ss), client_sa, client_sa->sa_len);
425 1.1.2.1 peter
426 1.1.2.1 peter /* Cast it once, and be done with it. */
427 1.1.2.1 peter client_sa = sstosa(&s->client_ss);
428 1.1.2.1 peter server_sa = sstosa(&s->server_ss);
429 1.1.2.1 peter client_to_proxy_sa = sstosa(&tmp_ss);
430 1.1.2.1 peter proxy_to_server_sa = sstosa(&s->proxy_ss);
431 1.1.2.1 peter fixed_server_sa = sstosa(&fixed_server_ss);
432 1.1.2.1 peter
433 1.1.2.1 peter /* Log id/client early to ease debugging. */
434 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d accepted connection from %s", s->id,
435 1.1.2.1 peter sock_ntop(client_sa));
436 1.1.2.1 peter
437 1.1.2.1 peter /*
438 1.1.2.1 peter * Find out the real server and port that the client wanted.
439 1.1.2.1 peter */
440 1.1.2.1 peter len = sizeof(struct sockaddr_storage);
441 1.1.2.1 peter if ((getsockname(s->client_fd, client_to_proxy_sa, &len)) < 0) {
442 1.1.2.1 peter logmsg(LOG_CRIT, "#%d getsockname failed: %s", s->id,
443 1.1.2.1 peter strerror(errno));
444 1.1.2.1 peter goto fail;
445 1.1.2.1 peter }
446 1.1.2.1 peter if (server_lookup(client_sa, client_to_proxy_sa, server_sa) != 0) {
447 1.1.2.1 peter logmsg(LOG_CRIT, "#%d server lookup failed (no rdr?)", s->id);
448 1.1.2.1 peter goto fail;
449 1.1.2.1 peter }
450 1.1.2.1 peter if (fixed_server) {
451 1.1.2.1 peter memcpy(sstosa(&s->orig_server_ss), server_sa,
452 1.1.2.1 peter server_sa->sa_len);
453 1.1.2.1 peter memcpy(server_sa, fixed_server_sa, fixed_server_sa->sa_len);
454 1.1.2.1 peter }
455 1.1.2.1 peter
456 1.1.2.1 peter /* XXX: check we are not connecting to ourself. */
457 1.1.2.1 peter
458 1.1.2.1 peter /*
459 1.1.2.1 peter * Setup socket and connect to server.
460 1.1.2.1 peter */
461 1.1.2.1 peter if ((s->server_fd = socket(server_sa->sa_family, SOCK_STREAM,
462 1.1.2.1 peter IPPROTO_TCP)) < 0) {
463 1.1.2.1 peter logmsg(LOG_CRIT, "#%d server socket failed: %s", s->id,
464 1.1.2.1 peter strerror(errno));
465 1.1.2.1 peter goto fail;
466 1.1.2.1 peter }
467 1.1.2.1 peter if (fixed_proxy && bind(s->server_fd, sstosa(&fixed_proxy_ss),
468 1.1.2.1 peter fixed_proxy_ss.ss_len) != 0) {
469 1.1.2.1 peter logmsg(LOG_CRIT, "#%d cannot bind fixed proxy address: %s",
470 1.1.2.1 peter s->id, strerror(errno));
471 1.1.2.1 peter goto fail;
472 1.1.2.1 peter }
473 1.1.2.1 peter
474 1.1.2.1 peter /* Use non-blocking connect(), see CONNECT_TIMEOUT below. */
475 1.1.2.1 peter if ((fc = fcntl(s->server_fd, F_GETFL)) == -1 ||
476 1.1.2.1 peter fcntl(s->server_fd, F_SETFL, fc | O_NONBLOCK) == -1) {
477 1.1.2.1 peter logmsg(LOG_CRIT, "#%d cannot mark socket non-blocking: %s",
478 1.1.2.1 peter s->id, strerror(errno));
479 1.1.2.1 peter goto fail;
480 1.1.2.1 peter }
481 1.1.2.1 peter if (connect(s->server_fd, server_sa, server_sa->sa_len) < 0 &&
482 1.1.2.1 peter errno != EINPROGRESS) {
483 1.1.2.1 peter logmsg(LOG_CRIT, "#%d proxy cannot connect to server %s: %s",
484 1.1.2.1 peter s->id, sock_ntop(server_sa), strerror(errno));
485 1.1.2.1 peter goto fail;
486 1.1.2.1 peter }
487 1.1.2.1 peter
488 1.1.2.1 peter len = sizeof(struct sockaddr_storage);
489 1.1.2.1 peter if ((getsockname(s->server_fd, proxy_to_server_sa, &len)) < 0) {
490 1.1.2.1 peter logmsg(LOG_CRIT, "#%d getsockname failed: %s", s->id,
491 1.1.2.1 peter strerror(errno));
492 1.1.2.1 peter goto fail;
493 1.1.2.1 peter }
494 1.1.2.1 peter
495 1.1.2.1 peter logmsg(LOG_INFO, "#%d FTP session %d/%d started: client %s to server "
496 1.1.2.1 peter "%s via proxy %s ", s->id, session_count, max_sessions,
497 1.1.2.1 peter sock_ntop(client_sa), sock_ntop(server_sa),
498 1.1.2.1 peter sock_ntop(proxy_to_server_sa));
499 1.1.2.1 peter
500 1.1.2.1 peter /* Keepalive is nice, but don't care if it fails. */
501 1.1.2.1 peter on = 1;
502 1.1.2.1 peter setsockopt(s->client_fd, SOL_SOCKET, SO_KEEPALIVE, (void *)&on,
503 1.1.2.1 peter sizeof on);
504 1.1.2.1 peter setsockopt(s->server_fd, SOL_SOCKET, SO_KEEPALIVE, (void *)&on,
505 1.1.2.1 peter sizeof on);
506 1.1.2.1 peter
507 1.1.2.1 peter /*
508 1.1.2.1 peter * Setup buffered events.
509 1.1.2.1 peter */
510 1.1.2.1 peter s->client_bufev = bufferevent_new(s->client_fd, &client_read, NULL,
511 1.1.2.1 peter &client_error, s);
512 1.1.2.1 peter if (s->client_bufev == NULL) {
513 1.1.2.1 peter logmsg(LOG_CRIT, "#%d bufferevent_new client failed", s->id);
514 1.1.2.1 peter goto fail;
515 1.1.2.1 peter }
516 1.1.2.1 peter bufferevent_settimeout(s->client_bufev, timeout, 0);
517 1.1.2.1 peter bufferevent_enable(s->client_bufev, EV_READ | EV_TIMEOUT);
518 1.1.2.1 peter
519 1.1.2.1 peter s->server_bufev = bufferevent_new(s->server_fd, &server_read, NULL,
520 1.1.2.1 peter &server_error, s);
521 1.1.2.1 peter if (s->server_bufev == NULL) {
522 1.1.2.1 peter logmsg(LOG_CRIT, "#%d bufferevent_new server failed", s->id);
523 1.1.2.1 peter goto fail;
524 1.1.2.1 peter }
525 1.1.2.1 peter bufferevent_settimeout(s->server_bufev, CONNECT_TIMEOUT, 0);
526 1.1.2.1 peter bufferevent_enable(s->server_bufev, EV_READ | EV_TIMEOUT);
527 1.1.2.1 peter
528 1.1.2.1 peter return;
529 1.1.2.1 peter
530 1.1.2.1 peter fail:
531 1.1.2.1 peter end_session(s);
532 1.1.2.1 peter }
533 1.1.2.1 peter
534 1.1.2.1 peter void
535 1.1.2.1 peter handle_signal(int sig, short event, void *arg)
536 1.1.2.1 peter {
537 1.1.2.1 peter /*
538 1.1.2.1 peter * Signal handler rules don't apply, libevent decouples for us.
539 1.1.2.1 peter */
540 1.1.2.1 peter
541 1.1.2.1 peter logmsg(LOG_ERR, "%s exiting on signal %d", __progname, sig);
542 1.1.2.1 peter
543 1.1.2.1 peter exit_daemon();
544 1.1.2.1 peter }
545 1.1.2.1 peter
546 1.1.2.1 peter
547 1.1.2.1 peter struct session *
548 1.1.2.1 peter init_session(void)
549 1.1.2.1 peter {
550 1.1.2.1 peter struct session *s;
551 1.1.2.1 peter
552 1.1.2.1 peter s = calloc(1, sizeof(struct session));
553 1.1.2.1 peter if (s == NULL)
554 1.1.2.1 peter return (NULL);
555 1.1.2.1 peter
556 1.1.2.1 peter s->id = id_count++;
557 1.1.2.1 peter s->client_fd = -1;
558 1.1.2.1 peter s->server_fd = -1;
559 1.1.2.1 peter s->cbuf[0] = '\0';
560 1.1.2.1 peter s->cbuf_valid = 0;
561 1.1.2.1 peter s->sbuf[0] = '\0';
562 1.1.2.1 peter s->sbuf_valid = 0;
563 1.1.2.1 peter s->client_bufev = NULL;
564 1.1.2.1 peter s->server_bufev = NULL;
565 1.1.2.1 peter s->cmd = CMD_NONE;
566 1.1.2.1 peter s->port = 0;
567 1.1.2.1 peter
568 1.1.2.1 peter LIST_INSERT_HEAD(&sessions, s, entry);
569 1.1.2.1 peter session_count++;
570 1.1.2.1 peter
571 1.1.2.1 peter return (s);
572 1.1.2.1 peter }
573 1.1.2.1 peter
574 1.1.2.1 peter void
575 1.1.2.1 peter logmsg(int pri, const char *message, ...)
576 1.1.2.1 peter {
577 1.1.2.1 peter va_list ap;
578 1.1.2.1 peter
579 1.1.2.1 peter if (pri > loglevel)
580 1.1.2.1 peter return;
581 1.1.2.1 peter
582 1.1.2.1 peter va_start(ap, message);
583 1.1.2.1 peter
584 1.1.2.1 peter if (daemonize)
585 1.1.2.1 peter /* syslog does its own vissing. */
586 1.1.2.1 peter vsyslog(pri, message, ap);
587 1.1.2.1 peter else {
588 1.1.2.1 peter char buf[MAX_LOGLINE];
589 1.1.2.1 peter char visbuf[2 * MAX_LOGLINE];
590 1.1.2.1 peter
591 1.1.2.1 peter /* We don't care about truncation. */
592 1.1.2.1 peter vsnprintf(buf, sizeof buf, message, ap);
593 1.1.2.1 peter #ifdef __NetBSD__
594 1.1.2.2 peter size_t len = strlen(buf);
595 1.1.2.2 peter if (len > sizeof visbuf) {
596 1.1.2.2 peter len = sizeof visbuf;
597 1.1.2.2 peter }
598 1.1.2.2 peter strvisx(visbuf, buf, len, VIS_CSTYLE | VIS_NL);
599 1.1.2.1 peter #else
600 1.1.2.1 peter strnvis(visbuf, buf, sizeof visbuf, VIS_CSTYLE | VIS_NL);
601 1.1.2.1 peter #endif /* !__NetBSD__ */
602 1.1.2.1 peter fprintf(stderr, "%s\n", visbuf);
603 1.1.2.1 peter }
604 1.1.2.1 peter
605 1.1.2.1 peter va_end(ap);
606 1.1.2.1 peter }
607 1.1.2.1 peter
608 1.1.2.1 peter int
609 1.1.2.1 peter main(int argc, char *argv[])
610 1.1.2.1 peter {
611 1.1.2.1 peter struct rlimit rlp;
612 1.1.2.1 peter struct addrinfo hints, *res;
613 1.1.2.1 peter struct event ev, ev_sighup, ev_sigint, ev_sigterm;
614 1.1.2.1 peter int ch, error, listenfd, on;
615 1.1.2.1 peter const char *errstr = NULL; /* XXX gcc */
616 1.1.2.1 peter
617 1.1.2.1 peter /* Defaults. */
618 1.1.2.1 peter anonymous_only = 0;
619 1.1.2.1 peter daemonize = 1;
620 1.1.2.1 peter fixed_proxy = NULL;
621 1.1.2.1 peter fixed_server = NULL;
622 1.1.2.1 peter fixed_server_port = "21";
623 1.1.2.1 peter ipv6_mode = 0;
624 1.1.2.1 peter listen_ip = NULL;
625 1.1.2.1 peter listen_port = "8021";
626 1.1.2.1 peter loglevel = LOG_NOTICE;
627 1.1.2.1 peter max_sessions = 100;
628 1.1.2.1 peter qname = NULL;
629 1.1.2.1 peter rfc_mode = 0;
630 1.1.2.1 peter tagname = NULL;
631 1.1.2.1 peter timeout = 24 * 3600;
632 1.1.2.1 peter verbose = 0;
633 1.1.2.1 peter
634 1.1.2.1 peter /* Other initialization. */
635 1.1.2.1 peter id_count = 1;
636 1.1.2.1 peter session_count = 0;
637 1.1.2.1 peter
638 1.1.2.1 peter while ((ch = getopt(argc, argv, "6Aa:b:D:dm:P:p:q:R:rT:t:v")) != -1) {
639 1.1.2.1 peter switch (ch) {
640 1.1.2.1 peter case '6':
641 1.1.2.1 peter ipv6_mode = 1;
642 1.1.2.1 peter break;
643 1.1.2.1 peter case 'A':
644 1.1.2.1 peter anonymous_only = 1;
645 1.1.2.1 peter break;
646 1.1.2.1 peter case 'a':
647 1.1.2.1 peter fixed_proxy = optarg;
648 1.1.2.1 peter break;
649 1.1.2.1 peter case 'b':
650 1.1.2.1 peter listen_ip = optarg;
651 1.1.2.1 peter break;
652 1.1.2.1 peter case 'D':
653 1.1.2.1 peter loglevel = strtonum(optarg, LOG_EMERG, LOG_DEBUG,
654 1.1.2.1 peter &errstr);
655 1.1.2.1 peter if (errstr)
656 1.1.2.1 peter errx(1, "loglevel %s", errstr);
657 1.1.2.1 peter break;
658 1.1.2.1 peter case 'd':
659 1.1.2.1 peter daemonize = 0;
660 1.1.2.1 peter break;
661 1.1.2.1 peter case 'm':
662 1.1.2.1 peter max_sessions = strtonum(optarg, 1, 500, &errstr);
663 1.1.2.1 peter if (errstr)
664 1.1.2.1 peter errx(1, "max sessions %s", errstr);
665 1.1.2.1 peter break;
666 1.1.2.1 peter case 'P':
667 1.1.2.1 peter fixed_server_port = optarg;
668 1.1.2.1 peter break;
669 1.1.2.1 peter case 'p':
670 1.1.2.1 peter listen_port = optarg;
671 1.1.2.1 peter break;
672 1.1.2.1 peter case 'q':
673 1.1.2.1 peter if (strlen(optarg) >= PF_QNAME_SIZE)
674 1.1.2.1 peter errx(1, "queuename too long");
675 1.1.2.1 peter qname = optarg;
676 1.1.2.1 peter break;
677 1.1.2.1 peter case 'R':
678 1.1.2.1 peter fixed_server = optarg;
679 1.1.2.1 peter break;
680 1.1.2.1 peter case 'r':
681 1.1.2.1 peter rfc_mode = 1;
682 1.1.2.1 peter break;
683 1.1.2.1 peter case 'T':
684 1.1.2.1 peter if (strlen(optarg) >= PF_TAG_NAME_SIZE)
685 1.1.2.1 peter errx(1, "tagname too long");
686 1.1.2.1 peter tagname = optarg;
687 1.1.2.1 peter break;
688 1.1.2.1 peter case 't':
689 1.1.2.1 peter timeout = strtonum(optarg, 0, 86400, &errstr);
690 1.1.2.1 peter if (errstr)
691 1.1.2.1 peter errx(1, "timeout %s", errstr);
692 1.1.2.1 peter break;
693 1.1.2.1 peter case 'v':
694 1.1.2.1 peter verbose++;
695 1.1.2.1 peter if (verbose > 2)
696 1.1.2.1 peter usage();
697 1.1.2.1 peter break;
698 1.1.2.1 peter default:
699 1.1.2.1 peter usage();
700 1.1.2.1 peter }
701 1.1.2.1 peter }
702 1.1.2.1 peter
703 1.1.2.1 peter if (listen_ip == NULL)
704 1.1.2.1 peter listen_ip = ipv6_mode ? "::1" : "127.0.0.1";
705 1.1.2.1 peter
706 1.1.2.1 peter /* Check for root to save the user from cryptic failure messages. */
707 1.1.2.1 peter if (getuid() != 0)
708 1.1.2.1 peter errx(1, "needs to start as root");
709 1.1.2.1 peter
710 1.1.2.1 peter /* Raise max. open files limit to satisfy max. sessions. */
711 1.1.2.1 peter rlp.rlim_cur = rlp.rlim_max = (2 * max_sessions) + 10;
712 1.1.2.1 peter if (setrlimit(RLIMIT_NOFILE, &rlp) == -1)
713 1.1.2.1 peter err(1, "setrlimit");
714 1.1.2.1 peter
715 1.1.2.1 peter if (fixed_proxy) {
716 1.1.2.1 peter memset(&hints, 0, sizeof hints);
717 1.1.2.1 peter hints.ai_flags = AI_NUMERICHOST;
718 1.1.2.1 peter hints.ai_family = ipv6_mode ? AF_INET6 : AF_INET;
719 1.1.2.1 peter hints.ai_socktype = SOCK_STREAM;
720 1.1.2.1 peter error = getaddrinfo(fixed_proxy, NULL, &hints, &res);
721 1.1.2.1 peter if (error)
722 1.1.2.1 peter errx(1, "getaddrinfo fixed proxy address failed: %s",
723 1.1.2.1 peter gai_strerror(error));
724 1.1.2.1 peter memcpy(&fixed_proxy_ss, res->ai_addr, res->ai_addrlen);
725 1.1.2.1 peter logmsg(LOG_INFO, "using %s to connect to servers",
726 1.1.2.1 peter sock_ntop(sstosa(&fixed_proxy_ss)));
727 1.1.2.1 peter freeaddrinfo(res);
728 1.1.2.1 peter }
729 1.1.2.1 peter
730 1.1.2.1 peter if (fixed_server) {
731 1.1.2.1 peter memset(&hints, 0, sizeof hints);
732 1.1.2.1 peter hints.ai_family = ipv6_mode ? AF_INET6 : AF_INET;
733 1.1.2.1 peter hints.ai_socktype = SOCK_STREAM;
734 1.1.2.1 peter error = getaddrinfo(fixed_server, fixed_server_port, &hints,
735 1.1.2.1 peter &res);
736 1.1.2.1 peter if (error)
737 1.1.2.1 peter errx(1, "getaddrinfo fixed server address failed: %s",
738 1.1.2.1 peter gai_strerror(error));
739 1.1.2.1 peter memcpy(&fixed_server_ss, res->ai_addr, res->ai_addrlen);
740 1.1.2.1 peter logmsg(LOG_INFO, "using fixed server %s",
741 1.1.2.1 peter sock_ntop(sstosa(&fixed_server_ss)));
742 1.1.2.1 peter freeaddrinfo(res);
743 1.1.2.1 peter }
744 1.1.2.1 peter
745 1.1.2.1 peter /* Setup listener. */
746 1.1.2.1 peter memset(&hints, 0, sizeof hints);
747 1.1.2.1 peter hints.ai_flags = AI_NUMERICHOST | AI_PASSIVE;
748 1.1.2.1 peter hints.ai_family = ipv6_mode ? AF_INET6 : AF_INET;
749 1.1.2.1 peter hints.ai_socktype = SOCK_STREAM;
750 1.1.2.1 peter error = getaddrinfo(listen_ip, listen_port, &hints, &res);
751 1.1.2.1 peter if (error)
752 1.1.2.1 peter errx(1, "getaddrinfo listen address failed: %s",
753 1.1.2.1 peter gai_strerror(error));
754 1.1.2.1 peter if ((listenfd = socket(res->ai_family, SOCK_STREAM, IPPROTO_TCP)) == -1)
755 1.1.2.1 peter errx(1, "socket failed");
756 1.1.2.1 peter on = 1;
757 1.1.2.1 peter if (setsockopt(listenfd, SOL_SOCKET, SO_REUSEADDR, (void *)&on,
758 1.1.2.1 peter sizeof on) != 0)
759 1.1.2.1 peter err(1, "setsockopt failed");
760 1.1.2.1 peter if (bind(listenfd, (struct sockaddr *)res->ai_addr,
761 1.1.2.1 peter (socklen_t)res->ai_addrlen) != 0)
762 1.1.2.1 peter err(1, "bind failed");
763 1.1.2.1 peter if (listen(listenfd, TCP_BACKLOG) != 0)
764 1.1.2.1 peter err(1, "listen failed");
765 1.1.2.1 peter freeaddrinfo(res);
766 1.1.2.1 peter
767 1.1.2.1 peter /* Initialize pf. */
768 1.1.2.1 peter init_filter(qname, tagname, verbose);
769 1.1.2.1 peter
770 1.1.2.1 peter if (daemonize) {
771 1.1.2.1 peter if (daemon(0, 0) == -1)
772 1.1.2.1 peter err(1, "cannot daemonize");
773 1.1.2.1 peter openlog(__progname, LOG_PID | LOG_NDELAY, LOG_DAEMON);
774 1.1.2.1 peter }
775 1.1.2.1 peter
776 1.1.2.1 peter /* Use logmsg for output from here on. */
777 1.1.2.1 peter
778 1.1.2.1 peter if (!drop_privs()) {
779 1.1.2.1 peter logmsg(LOG_ERR, "cannot drop privileges: %s", strerror(errno));
780 1.1.2.1 peter exit(1);
781 1.1.2.1 peter }
782 1.1.2.1 peter
783 1.1.2.1 peter event_init();
784 1.1.2.1 peter
785 1.1.2.1 peter /* Setup signal handler. */
786 1.1.2.1 peter signal(SIGPIPE, SIG_IGN);
787 1.1.2.1 peter signal_set(&ev_sighup, SIGHUP, handle_signal, NULL);
788 1.1.2.1 peter signal_set(&ev_sigint, SIGINT, handle_signal, NULL);
789 1.1.2.1 peter signal_set(&ev_sigterm, SIGTERM, handle_signal, NULL);
790 1.1.2.1 peter signal_add(&ev_sighup, NULL);
791 1.1.2.1 peter signal_add(&ev_sigint, NULL);
792 1.1.2.1 peter signal_add(&ev_sigterm, NULL);
793 1.1.2.1 peter
794 1.1.2.1 peter event_set(&ev, listenfd, EV_READ | EV_PERSIST, handle_connection, &ev);
795 1.1.2.1 peter event_add(&ev, NULL);
796 1.1.2.1 peter
797 1.1.2.1 peter logmsg(LOG_NOTICE, "listening on %s port %s", listen_ip, listen_port);
798 1.1.2.1 peter
799 1.1.2.1 peter /* Vroom, vroom. */
800 1.1.2.1 peter event_dispatch();
801 1.1.2.1 peter
802 1.1.2.1 peter logmsg(LOG_ERR, "event_dispatch error: %s", strerror(errno));
803 1.1.2.1 peter exit_daemon();
804 1.1.2.1 peter
805 1.1.2.1 peter /* NOTREACHED */
806 1.1.2.1 peter return (1);
807 1.1.2.1 peter }
808 1.1.2.1 peter
809 1.1.2.1 peter u_int16_t
810 1.1.2.1 peter parse_port(int mode)
811 1.1.2.1 peter {
812 1.1.2.1 peter unsigned int port, v[6];
813 1.1.2.1 peter int n;
814 1.1.2.1 peter char *p;
815 1.1.2.1 peter
816 1.1.2.1 peter /* Find the last space or left-parenthesis. */
817 1.1.2.1 peter for (p = linebuf + linelen; p > linebuf; p--)
818 1.1.2.1 peter if (*p == ' ' || *p == '(')
819 1.1.2.1 peter break;
820 1.1.2.1 peter if (p == linebuf)
821 1.1.2.1 peter return (0);
822 1.1.2.1 peter
823 1.1.2.1 peter switch (mode) {
824 1.1.2.1 peter case CMD_PORT:
825 1.1.2.1 peter n = sscanf(p, " %u,%u,%u,%u,%u,%u", &v[0], &v[1], &v[2],
826 1.1.2.1 peter &v[3], &v[4], &v[5]);
827 1.1.2.1 peter if (n == 6 && v[0] < 256 && v[1] < 256 && v[2] < 256 &&
828 1.1.2.1 peter v[3] < 256 && v[4] < 256 && v[5] < 256)
829 1.1.2.1 peter return ((v[4] << 8) | v[5]);
830 1.1.2.1 peter break;
831 1.1.2.1 peter case CMD_PASV:
832 1.1.2.1 peter n = sscanf(p, "(%u,%u,%u,%u,%u,%u)", &v[0], &v[1], &v[2],
833 1.1.2.1 peter &v[3], &v[4], &v[5]);
834 1.1.2.1 peter if (n == 6 && v[0] < 256 && v[1] < 256 && v[2] < 256 &&
835 1.1.2.1 peter v[3] < 256 && v[4] < 256 && v[5] < 256)
836 1.1.2.1 peter return ((v[4] << 8) | v[5]);
837 1.1.2.1 peter break;
838 1.1.2.1 peter case CMD_EPSV:
839 1.1.2.1 peter n = sscanf(p, "(|||%u|)", &port);
840 1.1.2.1 peter if (n == 1 && port < 65536)
841 1.1.2.1 peter return (port);
842 1.1.2.1 peter break;
843 1.1.2.1 peter case CMD_EPRT:
844 1.1.2.1 peter n = sscanf(p, " |1|%u.%u.%u.%u|%u|", &v[0], &v[1], &v[2],
845 1.1.2.1 peter &v[3], &port);
846 1.1.2.1 peter if (n == 5 && v[0] < 256 && v[1] < 256 && v[2] < 256 &&
847 1.1.2.1 peter v[3] < 256 && port < 65536)
848 1.1.2.1 peter return (port);
849 1.1.2.1 peter n = sscanf(p, " |2|%*[a-fA-F0-9:]|%u|", &port);
850 1.1.2.1 peter if (n == 1 && port < 65536)
851 1.1.2.1 peter return (port);
852 1.1.2.1 peter break;
853 1.1.2.1 peter default:
854 1.1.2.1 peter return (0);
855 1.1.2.1 peter }
856 1.1.2.1 peter
857 1.1.2.1 peter return (0);
858 1.1.2.1 peter }
859 1.1.2.1 peter
860 1.1.2.1 peter u_int16_t
861 1.1.2.1 peter pick_proxy_port(void)
862 1.1.2.1 peter {
863 1.1.2.1 peter /* Random should be good enough for avoiding port collisions. */
864 1.1.2.1 peter return (IPPORT_HIFIRSTAUTO + (arc4random() %
865 1.1.2.1 peter (IPPORT_HILASTAUTO - IPPORT_HIFIRSTAUTO)));
866 1.1.2.1 peter }
867 1.1.2.1 peter
868 1.1.2.1 peter void
869 1.1.2.1 peter proxy_reply(int cmd, struct sockaddr *sa, u_int16_t port)
870 1.1.2.1 peter {
871 1.1.2.1 peter int i, r = -1;
872 1.1.2.1 peter
873 1.1.2.1 peter switch (cmd) {
874 1.1.2.1 peter case CMD_PORT:
875 1.1.2.1 peter r = snprintf(linebuf, sizeof linebuf,
876 1.1.2.1 peter "PORT %s,%u,%u\r\n", sock_ntop(sa), port / 256,
877 1.1.2.1 peter port % 256);
878 1.1.2.1 peter break;
879 1.1.2.1 peter case CMD_PASV:
880 1.1.2.1 peter r = snprintf(linebuf, sizeof linebuf,
881 1.1.2.1 peter "227 Entering Passive Mode (%s,%u,%u)\r\n", sock_ntop(sa),
882 1.1.2.1 peter port / 256, port % 256);
883 1.1.2.1 peter break;
884 1.1.2.1 peter case CMD_EPRT:
885 1.1.2.1 peter if (sa->sa_family == AF_INET)
886 1.1.2.1 peter r = snprintf(linebuf, sizeof linebuf,
887 1.1.2.1 peter "EPRT |1|%s|%u|\r\n", sock_ntop(sa), port);
888 1.1.2.1 peter else if (sa->sa_family == AF_INET6)
889 1.1.2.1 peter r = snprintf(linebuf, sizeof linebuf,
890 1.1.2.1 peter "EPRT |2|%s|%u|\r\n", sock_ntop(sa), port);
891 1.1.2.1 peter break;
892 1.1.2.1 peter case CMD_EPSV:
893 1.1.2.1 peter r = snprintf(linebuf, sizeof linebuf,
894 1.1.2.1 peter "229 Entering Extended Passive Mode (|||%u|)\r\n", port);
895 1.1.2.1 peter break;
896 1.1.2.1 peter }
897 1.1.2.1 peter
898 1.1.2.1 peter if (r < 0 || r >= sizeof linebuf) {
899 1.1.2.1 peter logmsg(LOG_ERR, "proxy_reply failed: %d", r);
900 1.1.2.1 peter linebuf[0] = '\0';
901 1.1.2.1 peter linelen = 0;
902 1.1.2.1 peter return;
903 1.1.2.1 peter }
904 1.1.2.1 peter linelen = (size_t)r;
905 1.1.2.1 peter
906 1.1.2.1 peter if (cmd == CMD_PORT || cmd == CMD_PASV) {
907 1.1.2.1 peter /* Replace dots in IP address with commas. */
908 1.1.2.1 peter for (i = 0; i < linelen; i++)
909 1.1.2.1 peter if (linebuf[i] == '.')
910 1.1.2.1 peter linebuf[i] = ',';
911 1.1.2.1 peter }
912 1.1.2.1 peter }
913 1.1.2.1 peter
914 1.1.2.1 peter void
915 1.1.2.1 peter server_error(struct bufferevent *bufev, short what, void *arg)
916 1.1.2.1 peter {
917 1.1.2.1 peter struct session *s = arg;
918 1.1.2.1 peter
919 1.1.2.1 peter if (what & EVBUFFER_EOF)
920 1.1.2.1 peter logmsg(LOG_INFO, "#%d server close", s->id);
921 1.1.2.1 peter else if (what == (EVBUFFER_ERROR | EVBUFFER_READ))
922 1.1.2.1 peter logmsg(LOG_ERR, "#%d server refused connection", s->id);
923 1.1.2.1 peter else if (what & EVBUFFER_WRITE)
924 1.1.2.1 peter logmsg(LOG_ERR, "#%d server write error: %d", s->id, what);
925 1.1.2.1 peter else if (what & EVBUFFER_TIMEOUT)
926 1.1.2.1 peter logmsg(LOG_NOTICE, "#%d server timeout", s->id);
927 1.1.2.1 peter else
928 1.1.2.1 peter logmsg(LOG_ERR, "#%d abnormal server error: %d", s->id, what);
929 1.1.2.1 peter
930 1.1.2.1 peter end_session(s);
931 1.1.2.1 peter }
932 1.1.2.1 peter
933 1.1.2.1 peter int
934 1.1.2.1 peter server_parse(struct session *s)
935 1.1.2.1 peter {
936 1.1.2.1 peter if (s->cmd == CMD_NONE || linelen < 4 || linebuf[0] != '2')
937 1.1.2.1 peter goto out;
938 1.1.2.1 peter
939 1.1.2.1 peter if ((s->cmd == CMD_PASV && strncmp("227 ", linebuf, 4) == 0) ||
940 1.1.2.1 peter (s->cmd == CMD_EPSV && strncmp("229 ", linebuf, 4) == 0))
941 1.1.2.1 peter return (allow_data_connection(s));
942 1.1.2.1 peter
943 1.1.2.1 peter out:
944 1.1.2.1 peter s->cmd = CMD_NONE;
945 1.1.2.1 peter s->port = 0;
946 1.1.2.1 peter
947 1.1.2.1 peter return (1);
948 1.1.2.1 peter }
949 1.1.2.1 peter
950 1.1.2.1 peter int
951 1.1.2.1 peter allow_data_connection(struct session *s)
952 1.1.2.1 peter {
953 1.1.2.1 peter struct sockaddr *client_sa, *orig_sa, *proxy_sa, *server_sa;
954 1.1.2.1 peter int prepared = 0;
955 1.1.2.1 peter
956 1.1.2.1 peter /*
957 1.1.2.1 peter * The pf rules below do quite some NAT rewriting, to keep up
958 1.1.2.1 peter * appearances. Points to keep in mind:
959 1.1.2.1 peter * 1) The client must think it's talking to the real server,
960 1.1.2.1 peter * for both control and data connections. Transparently.
961 1.1.2.1 peter * 2) The server must think that the proxy is the client.
962 1.1.2.1 peter * 3) Source and destination ports are rewritten to minimize
963 1.1.2.1 peter * port collisions, to aid security (some systems pick weak
964 1.1.2.1 peter * ports) or to satisfy RFC requirements (source port 20).
965 1.1.2.1 peter */
966 1.1.2.1 peter
967 1.1.2.1 peter /* Cast this once, to make code below it more readable. */
968 1.1.2.1 peter client_sa = sstosa(&s->client_ss);
969 1.1.2.1 peter server_sa = sstosa(&s->server_ss);
970 1.1.2.1 peter proxy_sa = sstosa(&s->proxy_ss);
971 1.1.2.1 peter if (fixed_server)
972 1.1.2.1 peter /* Fixed server: data connections must appear to come
973 1.1.2.1 peter from / go to the original server, not the fixed one. */
974 1.1.2.1 peter orig_sa = sstosa(&s->orig_server_ss);
975 1.1.2.1 peter else
976 1.1.2.1 peter /* Server not fixed: orig_server == server. */
977 1.1.2.1 peter orig_sa = sstosa(&s->server_ss);
978 1.1.2.1 peter
979 1.1.2.1 peter /* Passive modes. */
980 1.1.2.1 peter if (s->cmd == CMD_PASV || s->cmd == CMD_EPSV) {
981 1.1.2.1 peter s->port = parse_port(s->cmd);
982 1.1.2.1 peter if (s->port < MIN_PORT) {
983 1.1.2.1 peter logmsg(LOG_CRIT, "#%d bad port in '%s'", s->id,
984 1.1.2.1 peter linebuf);
985 1.1.2.1 peter return (0);
986 1.1.2.1 peter }
987 1.1.2.1 peter s->proxy_port = pick_proxy_port();
988 1.1.2.1 peter logmsg(LOG_INFO, "#%d passive: client to server port %d"
989 1.1.2.1 peter " via port %d", s->id, s->port, s->proxy_port);
990 1.1.2.1 peter
991 1.1.2.1 peter if (prepare_commit(s->id) == -1)
992 1.1.2.1 peter goto fail;
993 1.1.2.1 peter prepared = 1;
994 1.1.2.1 peter
995 1.1.2.1 peter proxy_reply(s->cmd, orig_sa, s->proxy_port);
996 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d proxy: %s", s->id, linebuf);
997 1.1.2.1 peter
998 1.1.2.1 peter /* rdr from $client to $orig_server port $proxy_port -> $server
999 1.1.2.1 peter port $port */
1000 1.1.2.1 peter if (add_rdr(s->id, client_sa, orig_sa, s->proxy_port,
1001 1.1.2.1 peter server_sa, s->port) == -1)
1002 1.1.2.1 peter goto fail;
1003 1.1.2.1 peter
1004 1.1.2.1 peter /* nat from $client to $server port $port -> $proxy */
1005 1.1.2.1 peter if (add_nat(s->id, client_sa, server_sa, s->port, proxy_sa,
1006 1.1.2.1 peter PF_NAT_PROXY_PORT_LOW, PF_NAT_PROXY_PORT_HIGH) == -1)
1007 1.1.2.1 peter goto fail;
1008 1.1.2.1 peter
1009 1.1.2.1 peter /* pass in from $client to $server port $port */
1010 1.1.2.1 peter if (add_filter(s->id, PF_IN, client_sa, server_sa,
1011 1.1.2.1 peter s->port) == -1)
1012 1.1.2.1 peter goto fail;
1013 1.1.2.1 peter
1014 1.1.2.1 peter /* pass out from $proxy to $server port $port */
1015 1.1.2.1 peter if (add_filter(s->id, PF_OUT, proxy_sa, server_sa,
1016 1.1.2.1 peter s->port) == -1)
1017 1.1.2.1 peter goto fail;
1018 1.1.2.1 peter }
1019 1.1.2.1 peter
1020 1.1.2.1 peter /* Active modes. */
1021 1.1.2.1 peter if (s->cmd == CMD_PORT || s->cmd == CMD_EPRT) {
1022 1.1.2.1 peter logmsg(LOG_INFO, "#%d active: server to client port %d"
1023 1.1.2.1 peter " via port %d", s->id, s->port, s->proxy_port);
1024 1.1.2.1 peter
1025 1.1.2.1 peter if (prepare_commit(s->id) == -1)
1026 1.1.2.1 peter goto fail;
1027 1.1.2.1 peter prepared = 1;
1028 1.1.2.1 peter
1029 1.1.2.1 peter /* rdr from $server to $proxy port $proxy_port -> $client port
1030 1.1.2.1 peter $port */
1031 1.1.2.1 peter if (add_rdr(s->id, server_sa, proxy_sa, s->proxy_port,
1032 1.1.2.1 peter client_sa, s->port) == -1)
1033 1.1.2.1 peter goto fail;
1034 1.1.2.1 peter
1035 1.1.2.1 peter /* nat from $server to $client port $port -> $orig_server port
1036 1.1.2.1 peter $natport */
1037 1.1.2.1 peter if (rfc_mode && s->cmd == CMD_PORT) {
1038 1.1.2.1 peter /* Rewrite sourceport to RFC mandated 20. */
1039 1.1.2.1 peter if (add_nat(s->id, server_sa, client_sa, s->port,
1040 1.1.2.1 peter orig_sa, 20, 20) == -1)
1041 1.1.2.1 peter goto fail;
1042 1.1.2.1 peter } else {
1043 1.1.2.1 peter /* Let pf pick a source port from the standard range. */
1044 1.1.2.1 peter if (add_nat(s->id, server_sa, client_sa, s->port,
1045 1.1.2.1 peter orig_sa, PF_NAT_PROXY_PORT_LOW,
1046 1.1.2.1 peter PF_NAT_PROXY_PORT_HIGH) == -1)
1047 1.1.2.1 peter goto fail;
1048 1.1.2.1 peter }
1049 1.1.2.1 peter
1050 1.1.2.1 peter /* pass in from $server to $client port $port */
1051 1.1.2.1 peter if (add_filter(s->id, PF_IN, server_sa, client_sa, s->port) ==
1052 1.1.2.1 peter -1)
1053 1.1.2.1 peter goto fail;
1054 1.1.2.1 peter
1055 1.1.2.1 peter /* pass out from $orig_server to $client port $port */
1056 1.1.2.1 peter if (add_filter(s->id, PF_OUT, orig_sa, client_sa, s->port) ==
1057 1.1.2.1 peter -1)
1058 1.1.2.1 peter goto fail;
1059 1.1.2.1 peter }
1060 1.1.2.1 peter
1061 1.1.2.1 peter /* Commit rules if they were prepared. */
1062 1.1.2.1 peter if (prepared && (do_commit() == -1)) {
1063 1.1.2.1 peter if (errno != EBUSY)
1064 1.1.2.1 peter goto fail;
1065 1.1.2.1 peter /* One more try if busy. */
1066 1.1.2.1 peter usleep(5000);
1067 1.1.2.1 peter if (do_commit() == -1)
1068 1.1.2.1 peter goto fail;
1069 1.1.2.1 peter }
1070 1.1.2.1 peter
1071 1.1.2.1 peter s->cmd = CMD_NONE;
1072 1.1.2.1 peter s->port = 0;
1073 1.1.2.1 peter
1074 1.1.2.1 peter return (1);
1075 1.1.2.1 peter
1076 1.1.2.1 peter fail:
1077 1.1.2.1 peter logmsg(LOG_CRIT, "#%d pf operation failed: %s", s->id, strerror(errno));
1078 1.1.2.1 peter if (prepared)
1079 1.1.2.1 peter do_rollback();
1080 1.1.2.1 peter return (0);
1081 1.1.2.1 peter }
1082 1.1.2.1 peter
1083 1.1.2.1 peter void
1084 1.1.2.1 peter server_read(struct bufferevent *bufev, void *arg)
1085 1.1.2.1 peter {
1086 1.1.2.1 peter struct session *s = arg;
1087 1.1.2.3 peter size_t buf_avail, nread;
1088 1.1.2.1 peter int n;
1089 1.1.2.1 peter
1090 1.1.2.1 peter bufferevent_settimeout(bufev, timeout, 0);
1091 1.1.2.1 peter
1092 1.1.2.1 peter do {
1093 1.1.2.1 peter buf_avail = sizeof s->sbuf - s->sbuf_valid;
1094 1.1.2.3 peter nread = bufferevent_read(bufev, s->sbuf + s->sbuf_valid,
1095 1.1.2.1 peter buf_avail);
1096 1.1.2.3 peter s->sbuf_valid += nread;
1097 1.1.2.1 peter
1098 1.1.2.1 peter while ((n = getline(s->sbuf, &s->sbuf_valid)) > 0) {
1099 1.1.2.1 peter logmsg(LOG_DEBUG, "#%d server: %s", s->id, linebuf);
1100 1.1.2.1 peter if (!server_parse(s)) {
1101 1.1.2.1 peter end_session(s);
1102 1.1.2.1 peter return;
1103 1.1.2.1 peter }
1104 1.1.2.1 peter bufferevent_write(s->client_bufev, linebuf, linelen);
1105 1.1.2.1 peter }
1106 1.1.2.1 peter
1107 1.1.2.1 peter if (n == -1) {
1108 1.1.2.1 peter logmsg(LOG_ERR, "#%d server reply too long or not"
1109 1.1.2.1 peter " clean", s->id);
1110 1.1.2.1 peter end_session(s);
1111 1.1.2.1 peter return;
1112 1.1.2.1 peter }
1113 1.1.2.3 peter } while (nread == buf_avail);
1114 1.1.2.1 peter }
1115 1.1.2.1 peter
1116 1.1.2.1 peter const char *
1117 1.1.2.1 peter sock_ntop(struct sockaddr *sa)
1118 1.1.2.1 peter {
1119 1.1.2.1 peter static int n = 0;
1120 1.1.2.1 peter
1121 1.1.2.1 peter /* Cycle to next buffer. */
1122 1.1.2.1 peter n = (n + 1) % NTOP_BUFS;
1123 1.1.2.1 peter ntop_buf[n][0] = '\0';
1124 1.1.2.1 peter
1125 1.1.2.1 peter if (sa->sa_family == AF_INET) {
1126 1.1.2.1 peter struct sockaddr_in *sin = (struct sockaddr_in *)sa;
1127 1.1.2.1 peter
1128 1.1.2.1 peter return (inet_ntop(AF_INET, &sin->sin_addr, ntop_buf[n],
1129 1.1.2.1 peter sizeof ntop_buf[0]));
1130 1.1.2.1 peter }
1131 1.1.2.1 peter
1132 1.1.2.1 peter if (sa->sa_family == AF_INET6) {
1133 1.1.2.1 peter struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)sa;
1134 1.1.2.1 peter
1135 1.1.2.1 peter return (inet_ntop(AF_INET6, &sin6->sin6_addr, ntop_buf[n],
1136 1.1.2.1 peter sizeof ntop_buf[0]));
1137 1.1.2.1 peter }
1138 1.1.2.1 peter
1139 1.1.2.1 peter return (NULL);
1140 1.1.2.1 peter }
1141 1.1.2.1 peter
1142 1.1.2.1 peter void
1143 1.1.2.1 peter usage(void)
1144 1.1.2.1 peter {
1145 1.1.2.1 peter fprintf(stderr, "usage: %s [-6Adrv] [-a address] [-b address]"
1146 1.1.2.1 peter " [-D level] [-m maxsessions]\n [-P port]"
1147 1.1.2.1 peter " [-p port] [-q queue] [-R address] [-T tag] [-t timeout]\n", __progname);
1148 1.1.2.1 peter exit(1);
1149 1.1.2.1 peter }
1150