if_spppsubr.c revision 1.4 1 1.4 explorer /* $NetBSD: if_spppsubr.c,v 1.4 1999/04/04 06:57:03 explorer Exp $ */
2 1.4 explorer
3 1.1 explorer /*
4 1.1 explorer * Synchronous PPP/Cisco link level subroutines.
5 1.1 explorer * Keepalive protocol implemented in both Cisco and PPP modes.
6 1.1 explorer *
7 1.3 explorer * Copyright (C) 1994-1996 Cronyx Engineering Ltd.
8 1.3 explorer * Author: Serge Vakulenko, <vak (at) cronyx.ru>
9 1.3 explorer *
10 1.3 explorer * Heavily revamped to conform to RFC 1661.
11 1.3 explorer * Copyright (C) 1997, Joerg Wunsch.
12 1.1 explorer *
13 1.1 explorer * This software is distributed with NO WARRANTIES, not even the implied
14 1.1 explorer * warranties for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
15 1.1 explorer *
16 1.1 explorer * Authors grant any other persons or organisations permission to use
17 1.1 explorer * or modify this software as long as this message is kept with the software,
18 1.1 explorer * all derivative works or modified versions.
19 1.1 explorer *
20 1.3 explorer * From: Version 2.4, Thu Apr 30 17:17:21 MSD 1997
21 1.3 explorer *
22 1.3 explorer * From: if_spppsubr.c,v 1.39 1998/04/04 13:26:03 phk Exp
23 1.3 explorer *
24 1.4 explorer * From: Id: if_spppsubr.c,v 1.23 1999/02/23 14:47:50 hm Exp
25 1.1 explorer */
26 1.1 explorer
27 1.3 explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
28 1.1 explorer #include "opt_inet.h"
29 1.3 explorer #include "opt_ipx.h"
30 1.3 explorer #include "opt_iso.h"
31 1.1 explorer #include "opt_ns.h"
32 1.3 explorer #endif
33 1.1 explorer
34 1.1 explorer #include <sys/param.h>
35 1.3 explorer
36 1.1 explorer #include <sys/systm.h>
37 1.1 explorer #include <sys/kernel.h>
38 1.3 explorer #include <sys/sockio.h>
39 1.1 explorer #include <sys/socket.h>
40 1.3 explorer #include <sys/syslog.h>
41 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
42 1.3 explorer #include <machine/random.h>
43 1.3 explorer #endif
44 1.3 explorer #include <sys/malloc.h>
45 1.1 explorer #include <sys/mbuf.h>
46 1.1 explorer
47 1.3 explorer #if defined (__OpenBSD__)
48 1.3 explorer #include <sys/md5k.h>
49 1.3 explorer #else
50 1.3 explorer #include <sys/md5.h>
51 1.3 explorer #endif
52 1.3 explorer
53 1.1 explorer #include <net/if.h>
54 1.1 explorer #include <net/netisr.h>
55 1.1 explorer #include <net/if_types.h>
56 1.3 explorer #include <net/route.h>
57 1.3 explorer
58 1.3 explorer #include <machine/stdarg.h>
59 1.1 explorer
60 1.1 explorer #ifdef INET
61 1.1 explorer #include <netinet/in.h>
62 1.1 explorer #include <netinet/in_systm.h>
63 1.1 explorer #include <netinet/in_var.h>
64 1.1 explorer #include <netinet/ip.h>
65 1.1 explorer #include <netinet/tcp.h>
66 1.3 explorer #if defined (__FreeBSD__) || defined (__OpenBSD__)
67 1.3 explorer #include <netinet/if_ether.h>
68 1.3 explorer #else
69 1.3 explorer #include <net/ethertypes.h>
70 1.1 explorer #endif
71 1.3 explorer #else
72 1.3 explorer #error Huh? sppp without INET?
73 1.1 explorer #endif
74 1.1 explorer
75 1.1 explorer #ifdef IPX
76 1.1 explorer #include <netipx/ipx.h>
77 1.1 explorer #include <netipx/ipx_if.h>
78 1.1 explorer #endif
79 1.1 explorer
80 1.1 explorer #ifdef NS
81 1.1 explorer #include <netns/ns.h>
82 1.1 explorer #include <netns/ns_if.h>
83 1.1 explorer #endif
84 1.1 explorer
85 1.1 explorer #ifdef ISO
86 1.1 explorer #include <netiso/argo_debug.h>
87 1.1 explorer #include <netiso/iso.h>
88 1.1 explorer #include <netiso/iso_var.h>
89 1.1 explorer #include <netiso/iso_snpac.h>
90 1.1 explorer #endif
91 1.1 explorer
92 1.3 explorer #if defined(__FreeBSD__) || defined(__NetBSD__)
93 1.1 explorer #include <net/if_sppp.h>
94 1.1 explorer #else
95 1.3 explorer #include <i4b/sppp/if_sppp.h>
96 1.1 explorer #endif
97 1.3 explorer #if defined(__NetBSD__) || defined (__OpenBSD__)
98 1.3 explorer #include <machine/cpu.h> /* XXX for softnet */
99 1.1 explorer #endif
100 1.1 explorer
101 1.1 explorer #define MAXALIVECNT 3 /* max. alive packets */
102 1.1 explorer
103 1.3 explorer /*
104 1.3 explorer * Interface flags that can be set in an ifconfig command.
105 1.3 explorer *
106 1.3 explorer * Setting link0 will make the link passive, i.e. it will be marked
107 1.3 explorer * as being administrative openable, but won't be opened to begin
108 1.3 explorer * with. Incoming calls will be answered, or subsequent calls with
109 1.3 explorer * -link1 will cause the administrative open of the LCP layer.
110 1.3 explorer *
111 1.3 explorer * Setting link1 will cause the link to auto-dial only as packets
112 1.3 explorer * arrive to be sent.
113 1.3 explorer *
114 1.3 explorer * Setting IFF_DEBUG will syslog the option negotiation and state
115 1.3 explorer * transitions at level kern.debug. Note: all logs consistently look
116 1.3 explorer * like
117 1.3 explorer *
118 1.3 explorer * <if-name><unit>: <proto-name> <additional info...>
119 1.3 explorer *
120 1.3 explorer * with <if-name><unit> being something like "bppp0", and <proto-name>
121 1.3 explorer * being one of "lcp", "ipcp", "cisco", "chap", "pap", etc.
122 1.3 explorer */
123 1.3 explorer
124 1.3 explorer #define IFF_PASSIVE IFF_LINK0 /* wait passively for connection */
125 1.3 explorer #define IFF_AUTO IFF_LINK1 /* auto-dial on output */
126 1.3 explorer
127 1.3 explorer #define PPP_ALLSTATIONS 0xff /* All-Stations broadcast address */
128 1.3 explorer #define PPP_UI 0x03 /* Unnumbered Information */
129 1.3 explorer #define PPP_IP 0x0021 /* Internet Protocol */
130 1.3 explorer #define PPP_ISO 0x0023 /* ISO OSI Protocol */
131 1.3 explorer #define PPP_XNS 0x0025 /* Xerox NS Protocol */
132 1.3 explorer #define PPP_IPX 0x002b /* Novell IPX Protocol */
133 1.3 explorer #define PPP_LCP 0xc021 /* Link Control Protocol */
134 1.3 explorer #define PPP_PAP 0xc023 /* Password Authentication Protocol */
135 1.3 explorer #define PPP_CHAP 0xc223 /* Challenge-Handshake Auth Protocol */
136 1.3 explorer #define PPP_IPCP 0x8021 /* Internet Protocol Control Protocol */
137 1.3 explorer
138 1.3 explorer #define CONF_REQ 1 /* PPP configure request */
139 1.3 explorer #define CONF_ACK 2 /* PPP configure acknowledge */
140 1.3 explorer #define CONF_NAK 3 /* PPP configure negative ack */
141 1.3 explorer #define CONF_REJ 4 /* PPP configure reject */
142 1.3 explorer #define TERM_REQ 5 /* PPP terminate request */
143 1.3 explorer #define TERM_ACK 6 /* PPP terminate acknowledge */
144 1.3 explorer #define CODE_REJ 7 /* PPP code reject */
145 1.3 explorer #define PROTO_REJ 8 /* PPP protocol reject */
146 1.3 explorer #define ECHO_REQ 9 /* PPP echo request */
147 1.3 explorer #define ECHO_REPLY 10 /* PPP echo reply */
148 1.3 explorer #define DISC_REQ 11 /* PPP discard request */
149 1.3 explorer
150 1.3 explorer #define LCP_OPT_MRU 1 /* maximum receive unit */
151 1.3 explorer #define LCP_OPT_ASYNC_MAP 2 /* async control character map */
152 1.3 explorer #define LCP_OPT_AUTH_PROTO 3 /* authentication protocol */
153 1.3 explorer #define LCP_OPT_QUAL_PROTO 4 /* quality protocol */
154 1.3 explorer #define LCP_OPT_MAGIC 5 /* magic number */
155 1.3 explorer #define LCP_OPT_RESERVED 6 /* reserved */
156 1.3 explorer #define LCP_OPT_PROTO_COMP 7 /* protocol field compression */
157 1.3 explorer #define LCP_OPT_ADDR_COMP 8 /* address/control field compression */
158 1.3 explorer
159 1.3 explorer #define IPCP_OPT_ADDRESSES 1 /* both IP addresses; deprecated */
160 1.3 explorer #define IPCP_OPT_COMPRESSION 2 /* IP compression protocol (VJ) */
161 1.3 explorer #define IPCP_OPT_ADDRESS 3 /* local IP address */
162 1.3 explorer
163 1.3 explorer #define PAP_REQ 1 /* PAP name/password request */
164 1.3 explorer #define PAP_ACK 2 /* PAP acknowledge */
165 1.3 explorer #define PAP_NAK 3 /* PAP fail */
166 1.3 explorer
167 1.3 explorer #define CHAP_CHALLENGE 1 /* CHAP challenge request */
168 1.3 explorer #define CHAP_RESPONSE 2 /* CHAP challenge response */
169 1.3 explorer #define CHAP_SUCCESS 3 /* CHAP response ok */
170 1.3 explorer #define CHAP_FAILURE 4 /* CHAP response failed */
171 1.3 explorer
172 1.3 explorer #define CHAP_MD5 5 /* hash algorithm - MD5 */
173 1.3 explorer
174 1.3 explorer #define CISCO_MULTICAST 0x8f /* Cisco multicast address */
175 1.3 explorer #define CISCO_UNICAST 0x0f /* Cisco unicast address */
176 1.3 explorer #define CISCO_KEEPALIVE 0x8035 /* Cisco keepalive protocol */
177 1.3 explorer #define CISCO_ADDR_REQ 0 /* Cisco address request */
178 1.3 explorer #define CISCO_ADDR_REPLY 1 /* Cisco address reply */
179 1.3 explorer #define CISCO_KEEPALIVE_REQ 2 /* Cisco keepalive request */
180 1.3 explorer
181 1.3 explorer /* states are named and numbered according to RFC 1661 */
182 1.3 explorer #define STATE_INITIAL 0
183 1.3 explorer #define STATE_STARTING 1
184 1.3 explorer #define STATE_CLOSED 2
185 1.3 explorer #define STATE_STOPPED 3
186 1.3 explorer #define STATE_CLOSING 4
187 1.3 explorer #define STATE_STOPPING 5
188 1.3 explorer #define STATE_REQ_SENT 6
189 1.3 explorer #define STATE_ACK_RCVD 7
190 1.3 explorer #define STATE_ACK_SENT 8
191 1.3 explorer #define STATE_OPENED 9
192 1.1 explorer
193 1.1 explorer struct ppp_header {
194 1.3 explorer u_char address;
195 1.3 explorer u_char control;
196 1.3 explorer u_short protocol;
197 1.1 explorer };
198 1.1 explorer #define PPP_HEADER_LEN sizeof (struct ppp_header)
199 1.1 explorer
200 1.1 explorer struct lcp_header {
201 1.3 explorer u_char type;
202 1.3 explorer u_char ident;
203 1.3 explorer u_short len;
204 1.1 explorer };
205 1.1 explorer #define LCP_HEADER_LEN sizeof (struct lcp_header)
206 1.1 explorer
207 1.1 explorer struct cisco_packet {
208 1.3 explorer u_long type;
209 1.3 explorer u_long par1;
210 1.3 explorer u_long par2;
211 1.3 explorer u_short rel;
212 1.3 explorer u_short time0;
213 1.3 explorer u_short time1;
214 1.1 explorer };
215 1.1 explorer #define CISCO_PACKET_LEN 18
216 1.1 explorer
217 1.3 explorer /*
218 1.3 explorer * We follow the spelling and capitalization of RFC 1661 here, to make
219 1.3 explorer * it easier comparing with the standard. Please refer to this RFC in
220 1.3 explorer * case you can't make sense out of these abbreviation; it will also
221 1.3 explorer * explain the semantics related to the various events and actions.
222 1.3 explorer */
223 1.3 explorer struct cp {
224 1.3 explorer u_short proto; /* PPP control protocol number */
225 1.3 explorer u_char protoidx; /* index into state table in struct sppp */
226 1.3 explorer u_char flags;
227 1.3 explorer #define CP_LCP 0x01 /* this is the LCP */
228 1.3 explorer #define CP_AUTH 0x02 /* this is an authentication protocol */
229 1.3 explorer #define CP_NCP 0x04 /* this is a NCP */
230 1.3 explorer #define CP_QUAL 0x08 /* this is a quality reporting protocol */
231 1.3 explorer const char *name; /* name of this control protocol */
232 1.3 explorer /* event handlers */
233 1.3 explorer void (*Up)(struct sppp *sp);
234 1.3 explorer void (*Down)(struct sppp *sp);
235 1.3 explorer void (*Open)(struct sppp *sp);
236 1.3 explorer void (*Close)(struct sppp *sp);
237 1.3 explorer void (*TO)(void *sp);
238 1.3 explorer int (*RCR)(struct sppp *sp, struct lcp_header *h, int len);
239 1.3 explorer void (*RCN_rej)(struct sppp *sp, struct lcp_header *h, int len);
240 1.3 explorer void (*RCN_nak)(struct sppp *sp, struct lcp_header *h, int len);
241 1.3 explorer /* actions */
242 1.3 explorer void (*tlu)(struct sppp *sp);
243 1.3 explorer void (*tld)(struct sppp *sp);
244 1.3 explorer void (*tls)(struct sppp *sp);
245 1.3 explorer void (*tlf)(struct sppp *sp);
246 1.3 explorer void (*scr)(struct sppp *sp);
247 1.3 explorer };
248 1.3 explorer
249 1.1 explorer static struct sppp *spppq;
250 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
251 1.3 explorer static struct callout_handle keepalive_ch;
252 1.3 explorer #endif
253 1.3 explorer
254 1.3 explorer #ifdef __FreeBSD__
255 1.3 explorer #define SPP_FMT "%s%d: "
256 1.3 explorer #define SPP_ARGS(ifp) (ifp)->if_name, (ifp)->if_unit
257 1.3 explorer #else
258 1.3 explorer #define SPP_FMT "%s: "
259 1.3 explorer #define SPP_ARGS(ifp) (ifp)->if_xname
260 1.3 explorer #endif
261 1.1 explorer
262 1.1 explorer /*
263 1.1 explorer * The following disgusting hack gets around the problem that IP TOS
264 1.1 explorer * can't be set yet. We want to put "interactive" traffic on a high
265 1.1 explorer * priority queue. To decide if traffic is interactive, we check that
266 1.1 explorer * a) it is TCP and b) one of its ports is telnet, rlogin or ftp control.
267 1.3 explorer *
268 1.3 explorer * XXX is this really still necessary? - joerg -
269 1.1 explorer */
270 1.3 explorer static u_short interactive_ports[8] = {
271 1.1 explorer 0, 513, 0, 0,
272 1.1 explorer 0, 21, 0, 23,
273 1.1 explorer };
274 1.1 explorer #define INTERACTIVE(p) (interactive_ports[(p) & 7] == (p))
275 1.1 explorer
276 1.3 explorer /* almost every function needs these */
277 1.3 explorer #define STDDCL \
278 1.3 explorer struct ifnet *ifp = &sp->pp_if; \
279 1.3 explorer int debug = ifp->if_flags & IFF_DEBUG
280 1.3 explorer
281 1.3 explorer static int sppp_output(struct ifnet *ifp, struct mbuf *m,
282 1.3 explorer struct sockaddr *dst, struct rtentry *rt);
283 1.3 explorer
284 1.3 explorer static void sppp_cisco_send(struct sppp *sp, int type, long par1, long par2);
285 1.3 explorer static void sppp_cisco_input(struct sppp *sp, struct mbuf *m);
286 1.3 explorer
287 1.3 explorer static void sppp_cp_input(const struct cp *cp, struct sppp *sp,
288 1.3 explorer struct mbuf *m);
289 1.3 explorer static void sppp_cp_send(struct sppp *sp, u_short proto, u_char type,
290 1.3 explorer u_char ident, u_short len, void *data);
291 1.3 explorer /* static void sppp_cp_timeout(void *arg); */
292 1.3 explorer static void sppp_cp_change_state(const struct cp *cp, struct sppp *sp,
293 1.3 explorer int newstate);
294 1.3 explorer static void sppp_auth_send(const struct cp *cp,
295 1.3 explorer struct sppp *sp, unsigned int type, unsigned int id,
296 1.3 explorer ...);
297 1.3 explorer
298 1.3 explorer static void sppp_up_event(const struct cp *cp, struct sppp *sp);
299 1.3 explorer static void sppp_down_event(const struct cp *cp, struct sppp *sp);
300 1.3 explorer static void sppp_open_event(const struct cp *cp, struct sppp *sp);
301 1.3 explorer static void sppp_close_event(const struct cp *cp, struct sppp *sp);
302 1.3 explorer static void sppp_to_event(const struct cp *cp, struct sppp *sp);
303 1.3 explorer
304 1.3 explorer static void sppp_null(struct sppp *sp);
305 1.3 explorer
306 1.3 explorer static void sppp_lcp_init(struct sppp *sp);
307 1.3 explorer static void sppp_lcp_up(struct sppp *sp);
308 1.3 explorer static void sppp_lcp_down(struct sppp *sp);
309 1.3 explorer static void sppp_lcp_open(struct sppp *sp);
310 1.3 explorer static void sppp_lcp_close(struct sppp *sp);
311 1.3 explorer static void sppp_lcp_TO(void *sp);
312 1.3 explorer static int sppp_lcp_RCR(struct sppp *sp, struct lcp_header *h, int len);
313 1.3 explorer static void sppp_lcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len);
314 1.3 explorer static void sppp_lcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len);
315 1.3 explorer static void sppp_lcp_tlu(struct sppp *sp);
316 1.3 explorer static void sppp_lcp_tld(struct sppp *sp);
317 1.3 explorer static void sppp_lcp_tls(struct sppp *sp);
318 1.3 explorer static void sppp_lcp_tlf(struct sppp *sp);
319 1.3 explorer static void sppp_lcp_scr(struct sppp *sp);
320 1.3 explorer static void sppp_lcp_check_and_close(struct sppp *sp);
321 1.3 explorer static int sppp_ncp_check(struct sppp *sp);
322 1.3 explorer
323 1.3 explorer static void sppp_ipcp_init(struct sppp *sp);
324 1.3 explorer static void sppp_ipcp_up(struct sppp *sp);
325 1.3 explorer static void sppp_ipcp_down(struct sppp *sp);
326 1.3 explorer static void sppp_ipcp_open(struct sppp *sp);
327 1.3 explorer static void sppp_ipcp_close(struct sppp *sp);
328 1.3 explorer static void sppp_ipcp_TO(void *sp);
329 1.3 explorer static int sppp_ipcp_RCR(struct sppp *sp, struct lcp_header *h, int len);
330 1.3 explorer static void sppp_ipcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len);
331 1.3 explorer static void sppp_ipcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len);
332 1.3 explorer static void sppp_ipcp_tlu(struct sppp *sp);
333 1.3 explorer static void sppp_ipcp_tld(struct sppp *sp);
334 1.3 explorer static void sppp_ipcp_tls(struct sppp *sp);
335 1.3 explorer static void sppp_ipcp_tlf(struct sppp *sp);
336 1.3 explorer static void sppp_ipcp_scr(struct sppp *sp);
337 1.3 explorer
338 1.3 explorer static void sppp_pap_input(struct sppp *sp, struct mbuf *m);
339 1.3 explorer static void sppp_pap_init(struct sppp *sp);
340 1.3 explorer static void sppp_pap_open(struct sppp *sp);
341 1.3 explorer static void sppp_pap_close(struct sppp *sp);
342 1.3 explorer static void sppp_pap_TO(void *sp);
343 1.3 explorer static void sppp_pap_my_TO(void *sp);
344 1.3 explorer static void sppp_pap_tlu(struct sppp *sp);
345 1.3 explorer static void sppp_pap_tld(struct sppp *sp);
346 1.3 explorer static void sppp_pap_scr(struct sppp *sp);
347 1.3 explorer
348 1.3 explorer static void sppp_chap_input(struct sppp *sp, struct mbuf *m);
349 1.3 explorer static void sppp_chap_init(struct sppp *sp);
350 1.3 explorer static void sppp_chap_open(struct sppp *sp);
351 1.3 explorer static void sppp_chap_close(struct sppp *sp);
352 1.3 explorer static void sppp_chap_TO(void *sp);
353 1.3 explorer static void sppp_chap_tlu(struct sppp *sp);
354 1.3 explorer static void sppp_chap_tld(struct sppp *sp);
355 1.3 explorer static void sppp_chap_scr(struct sppp *sp);
356 1.3 explorer
357 1.3 explorer static const char *sppp_auth_type_name(u_short proto, u_char type);
358 1.3 explorer static const char *sppp_cp_type_name(u_char type);
359 1.3 explorer static const char *sppp_dotted_quad(u_long addr);
360 1.3 explorer static const char *sppp_ipcp_opt_name(u_char opt);
361 1.3 explorer static const char *sppp_lcp_opt_name(u_char opt);
362 1.3 explorer static const char *sppp_phase_name(enum ppp_phase phase);
363 1.3 explorer static const char *sppp_proto_name(u_short proto);
364 1.3 explorer static const char *sppp_state_name(int state);
365 1.3 explorer static int sppp_params(struct sppp *sp, int cmd, void *data);
366 1.3 explorer static int sppp_strnlen(u_char *p, int max);
367 1.3 explorer static void sppp_get_ip_addrs(struct sppp *sp, u_long *src, u_long *dst,
368 1.3 explorer u_long *srcmask);
369 1.3 explorer static void sppp_keepalive(void *dummy);
370 1.3 explorer static void sppp_phase_network(struct sppp *sp);
371 1.3 explorer static void sppp_print_bytes(const u_char *p, u_short len);
372 1.3 explorer static void sppp_print_string(const char *p, u_short len);
373 1.3 explorer static void sppp_qflush(struct ifqueue *ifq);
374 1.3 explorer static void sppp_set_ip_addr(struct sppp *sp, u_long src);
375 1.3 explorer
376 1.3 explorer /* our control protocol descriptors */
377 1.3 explorer static const struct cp lcp = {
378 1.3 explorer PPP_LCP, IDX_LCP, CP_LCP, "lcp",
379 1.3 explorer sppp_lcp_up, sppp_lcp_down, sppp_lcp_open, sppp_lcp_close,
380 1.3 explorer sppp_lcp_TO, sppp_lcp_RCR, sppp_lcp_RCN_rej, sppp_lcp_RCN_nak,
381 1.3 explorer sppp_lcp_tlu, sppp_lcp_tld, sppp_lcp_tls, sppp_lcp_tlf,
382 1.3 explorer sppp_lcp_scr
383 1.3 explorer };
384 1.3 explorer
385 1.3 explorer static const struct cp ipcp = {
386 1.3 explorer PPP_IPCP, IDX_IPCP, CP_NCP, "ipcp",
387 1.3 explorer sppp_ipcp_up, sppp_ipcp_down, sppp_ipcp_open, sppp_ipcp_close,
388 1.3 explorer sppp_ipcp_TO, sppp_ipcp_RCR, sppp_ipcp_RCN_rej, sppp_ipcp_RCN_nak,
389 1.3 explorer sppp_ipcp_tlu, sppp_ipcp_tld, sppp_ipcp_tls, sppp_ipcp_tlf,
390 1.3 explorer sppp_ipcp_scr
391 1.3 explorer };
392 1.3 explorer
393 1.3 explorer static const struct cp pap = {
394 1.3 explorer PPP_PAP, IDX_PAP, CP_AUTH, "pap",
395 1.3 explorer sppp_null, sppp_null, sppp_pap_open, sppp_pap_close,
396 1.3 explorer sppp_pap_TO, 0, 0, 0,
397 1.3 explorer sppp_pap_tlu, sppp_pap_tld, sppp_null, sppp_null,
398 1.3 explorer sppp_pap_scr
399 1.3 explorer };
400 1.3 explorer
401 1.3 explorer static const struct cp chap = {
402 1.3 explorer PPP_CHAP, IDX_CHAP, CP_AUTH, "chap",
403 1.3 explorer sppp_null, sppp_null, sppp_chap_open, sppp_chap_close,
404 1.3 explorer sppp_chap_TO, 0, 0, 0,
405 1.3 explorer sppp_chap_tlu, sppp_chap_tld, sppp_null, sppp_null,
406 1.3 explorer sppp_chap_scr
407 1.3 explorer };
408 1.3 explorer
409 1.3 explorer static const struct cp *cps[IDX_COUNT] = {
410 1.3 explorer &lcp, /* IDX_LCP */
411 1.3 explorer &ipcp, /* IDX_IPCP */
412 1.3 explorer &pap, /* IDX_PAP */
413 1.3 explorer &chap, /* IDX_CHAP */
414 1.3 explorer };
415 1.1 explorer
416 1.1 explorer
417 1.3 explorer /*
419 1.1 explorer * Exported functions, comprising our interface to the lower layer.
420 1.1 explorer */
421 1.1 explorer
422 1.1 explorer /*
423 1.1 explorer * Process the received packet.
424 1.3 explorer */
425 1.3 explorer void
426 1.1 explorer sppp_input(struct ifnet *ifp, struct mbuf *m)
427 1.1 explorer {
428 1.1 explorer struct ppp_header *h;
429 1.1 explorer struct ifqueue *inq = 0;
430 1.3 explorer int s;
431 1.3 explorer struct sppp *sp = (struct sppp *)ifp;
432 1.1 explorer int debug = ifp->if_flags & IFF_DEBUG;
433 1.1 explorer
434 1.1 explorer if (ifp->if_flags & IFF_UP)
435 1.1 explorer /* Count received bytes, add FCS and one flag */
436 1.1 explorer ifp->if_ibytes += m->m_pkthdr.len + 3;
437 1.1 explorer
438 1.1 explorer if (m->m_pkthdr.len <= PPP_HEADER_LEN) {
439 1.3 explorer /* Too small packet, drop it. */
440 1.3 explorer if (debug)
441 1.3 explorer log(LOG_DEBUG,
442 1.3 explorer SPP_FMT "input packet is too small, %d bytes\n",
443 1.3 explorer SPP_ARGS(ifp), m->m_pkthdr.len);
444 1.3 explorer drop:
445 1.3 explorer ++ifp->if_ierrors;
446 1.1 explorer ++ifp->if_iqdrops;
447 1.1 explorer m_freem (m);
448 1.1 explorer return;
449 1.1 explorer }
450 1.1 explorer
451 1.1 explorer /* Get PPP header. */
452 1.1 explorer h = mtod (m, struct ppp_header*);
453 1.1 explorer m_adj (m, PPP_HEADER_LEN);
454 1.1 explorer
455 1.1 explorer switch (h->address) {
456 1.1 explorer case PPP_ALLSTATIONS:
457 1.1 explorer if (h->control != PPP_UI)
458 1.1 explorer goto invalid;
459 1.3 explorer if (sp->pp_flags & PP_CISCO) {
460 1.3 explorer if (debug)
461 1.3 explorer log(LOG_DEBUG,
462 1.3 explorer SPP_FMT "PPP packet in Cisco mode "
463 1.3 explorer "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
464 1.3 explorer SPP_ARGS(ifp),
465 1.1 explorer h->address, h->control, ntohs(h->protocol));
466 1.1 explorer goto drop;
467 1.1 explorer }
468 1.1 explorer switch (ntohs (h->protocol)) {
469 1.3 explorer default:
470 1.3 explorer if (sp->state[IDX_LCP] == STATE_OPENED)
471 1.1 explorer sppp_cp_send (sp, PPP_LCP, PROTO_REJ,
472 1.1 explorer ++sp->pp_seq, m->m_pkthdr.len + 2,
473 1.3 explorer &h->protocol);
474 1.3 explorer if (debug)
475 1.3 explorer log(LOG_DEBUG,
476 1.3 explorer SPP_FMT "invalid input protocol "
477 1.3 explorer "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
478 1.3 explorer SPP_ARGS(ifp),
479 1.1 explorer h->address, h->control, ntohs(h->protocol));
480 1.1 explorer ++ifp->if_noproto;
481 1.1 explorer goto drop;
482 1.3 explorer case PPP_LCP:
483 1.3 explorer sppp_cp_input(&lcp, sp, m);
484 1.3 explorer m_freem (m);
485 1.3 explorer return;
486 1.3 explorer case PPP_PAP:
487 1.3 explorer if (sp->pp_phase >= PHASE_AUTHENTICATE)
488 1.3 explorer sppp_pap_input(sp, m);
489 1.3 explorer m_freem (m);
490 1.3 explorer return;
491 1.3 explorer case PPP_CHAP:
492 1.3 explorer if (sp->pp_phase >= PHASE_AUTHENTICATE)
493 1.1 explorer sppp_chap_input(sp, m);
494 1.1 explorer m_freem (m);
495 1.1 explorer return;
496 1.1 explorer #ifdef INET
497 1.3 explorer case PPP_IPCP:
498 1.3 explorer if (sp->pp_phase == PHASE_NETWORK)
499 1.1 explorer sppp_cp_input(&ipcp, sp, m);
500 1.1 explorer m_freem (m);
501 1.1 explorer return;
502 1.3 explorer case PPP_IP:
503 1.1 explorer if (sp->state[IDX_IPCP] == STATE_OPENED) {
504 1.1 explorer schednetisr (NETISR_IP);
505 1.1 explorer inq = &ipintrq;
506 1.1 explorer }
507 1.1 explorer break;
508 1.1 explorer #endif
509 1.1 explorer #ifdef IPX
510 1.1 explorer case PPP_IPX:
511 1.3 explorer /* IPX IPXCP not implemented yet */
512 1.1 explorer if (sp->pp_phase == PHASE_NETWORK) {
513 1.1 explorer schednetisr (NETISR_IPX);
514 1.1 explorer inq = &ipxintrq;
515 1.1 explorer }
516 1.1 explorer break;
517 1.1 explorer #endif
518 1.1 explorer #ifdef NS
519 1.1 explorer case PPP_XNS:
520 1.3 explorer /* XNS IDPCP not implemented yet */
521 1.1 explorer if (sp->pp_phase == PHASE_NETWORK) {
522 1.1 explorer schednetisr (NETISR_NS);
523 1.1 explorer inq = &nsintrq;
524 1.1 explorer }
525 1.1 explorer break;
526 1.1 explorer #endif
527 1.1 explorer #ifdef ISO
528 1.1 explorer case PPP_ISO:
529 1.3 explorer /* OSI NLCP not implemented yet */
530 1.1 explorer if (sp->pp_phase == PHASE_NETWORK) {
531 1.1 explorer schednetisr (NETISR_ISO);
532 1.1 explorer inq = &clnlintrq;
533 1.1 explorer }
534 1.1 explorer break;
535 1.1 explorer #endif
536 1.1 explorer }
537 1.1 explorer break;
538 1.1 explorer case CISCO_MULTICAST:
539 1.1 explorer case CISCO_UNICAST:
540 1.1 explorer /* Don't check the control field here (RFC 1547). */
541 1.3 explorer if (! (sp->pp_flags & PP_CISCO)) {
542 1.3 explorer if (debug)
543 1.3 explorer log(LOG_DEBUG,
544 1.3 explorer SPP_FMT "Cisco packet in PPP mode "
545 1.3 explorer "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
546 1.3 explorer SPP_ARGS(ifp),
547 1.1 explorer h->address, h->control, ntohs(h->protocol));
548 1.1 explorer goto drop;
549 1.1 explorer }
550 1.1 explorer switch (ntohs (h->protocol)) {
551 1.1 explorer default:
552 1.1 explorer ++ifp->if_noproto;
553 1.1 explorer goto invalid;
554 1.1 explorer case CISCO_KEEPALIVE:
555 1.1 explorer sppp_cisco_input ((struct sppp*) ifp, m);
556 1.1 explorer m_freem (m);
557 1.1 explorer return;
558 1.1 explorer #ifdef INET
559 1.1 explorer case ETHERTYPE_IP:
560 1.1 explorer schednetisr (NETISR_IP);
561 1.1 explorer inq = &ipintrq;
562 1.1 explorer break;
563 1.1 explorer #endif
564 1.1 explorer #ifdef IPX
565 1.1 explorer case ETHERTYPE_IPX:
566 1.1 explorer schednetisr (NETISR_IPX);
567 1.1 explorer inq = &ipxintrq;
568 1.1 explorer break;
569 1.1 explorer #endif
570 1.1 explorer #ifdef NS
571 1.1 explorer case ETHERTYPE_NS:
572 1.1 explorer schednetisr (NETISR_NS);
573 1.1 explorer inq = &nsintrq;
574 1.1 explorer break;
575 1.1 explorer #endif
576 1.1 explorer }
577 1.3 explorer break;
578 1.3 explorer default: /* Invalid PPP packet. */
579 1.3 explorer invalid:
580 1.3 explorer if (debug)
581 1.3 explorer log(LOG_DEBUG,
582 1.3 explorer SPP_FMT "invalid input packet "
583 1.3 explorer "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
584 1.3 explorer SPP_ARGS(ifp),
585 1.3 explorer h->address, h->control, ntohs(h->protocol));
586 1.1 explorer goto drop;
587 1.1 explorer }
588 1.1 explorer
589 1.1 explorer if (! (ifp->if_flags & IFF_UP) || ! inq)
590 1.1 explorer goto drop;
591 1.1 explorer
592 1.3 explorer /* Check queue. */
593 1.1 explorer s = splimp();
594 1.1 explorer if (IF_QFULL (inq)) {
595 1.3 explorer /* Queue overflow. */
596 1.3 explorer IF_DROP(inq);
597 1.3 explorer splx(s);
598 1.3 explorer if (debug)
599 1.3 explorer log(LOG_DEBUG, SPP_FMT "protocol queue overflow\n",
600 1.1 explorer SPP_ARGS(ifp));
601 1.1 explorer goto drop;
602 1.3 explorer }
603 1.3 explorer IF_ENQUEUE(inq, m);
604 1.1 explorer splx(s);
605 1.1 explorer }
606 1.1 explorer
607 1.1 explorer /*
608 1.1 explorer * Enqueue transmit packet.
609 1.1 explorer */
610 1.3 explorer static int
611 1.3 explorer sppp_output(struct ifnet *ifp, struct mbuf *m,
612 1.1 explorer struct sockaddr *dst, struct rtentry *rt)
613 1.1 explorer {
614 1.1 explorer struct sppp *sp = (struct sppp*) ifp;
615 1.1 explorer struct ppp_header *h;
616 1.3 explorer struct ifqueue *ifq;
617 1.3 explorer int s, rv = 0;
618 1.3 explorer
619 1.1 explorer s = splimp();
620 1.3 explorer
621 1.3 explorer if ((ifp->if_flags & IFF_UP) == 0 ||
622 1.1 explorer (ifp->if_flags & (IFF_RUNNING | IFF_AUTO)) == 0) {
623 1.1 explorer m_freem (m);
624 1.1 explorer splx (s);
625 1.1 explorer return (ENETDOWN);
626 1.1 explorer }
627 1.3 explorer
628 1.3 explorer if ((ifp->if_flags & (IFF_RUNNING | IFF_AUTO)) == IFF_AUTO) {
629 1.3 explorer /*
630 1.3 explorer * Interface is not yet running, but auto-dial. Need
631 1.3 explorer * to start LCP for it.
632 1.3 explorer */
633 1.3 explorer ifp->if_flags |= IFF_RUNNING;
634 1.3 explorer splx(s);
635 1.3 explorer lcp.Open(sp);
636 1.3 explorer s = splimp();
637 1.3 explorer }
638 1.1 explorer
639 1.3 explorer ifq = &ifp->if_snd;
640 1.1 explorer
641 1.3 explorer #ifdef INET
642 1.3 explorer if (dst->sa_family == AF_INET)
643 1.3 explorer {
644 1.1 explorer /* Check mbuf length here??? */
645 1.3 explorer struct ip *ip = mtod (m, struct ip*);
646 1.1 explorer struct tcphdr *tcp = (struct tcphdr*) ((long*)ip + ip->ip_hl);
647 1.3 explorer
648 1.3 explorer /*
649 1.3 explorer * When using dynamic local IP address assignment by using
650 1.3 explorer * 0.0.0.0 as a local address, the first TCP session will
651 1.3 explorer * not connect because the local TCP checksum is computed
652 1.3 explorer * using 0.0.0.0 which will later become our real IP address
653 1.3 explorer * so the TCP checksum computed at the remote end will
654 1.3 explorer * become invalid. So we
655 1.3 explorer * - don't let packets with src ip addr 0 thru
656 1.3 explorer * - we flag TCP packets with src ip 0 as an error
657 1.3 explorer */
658 1.3 explorer
659 1.3 explorer if(ip->ip_src.s_addr == INADDR_ANY) /* -hm */
660 1.3 explorer {
661 1.3 explorer m_freem(m);
662 1.3 explorer splx(s);
663 1.3 explorer if(ip->ip_p == IPPROTO_TCP)
664 1.3 explorer return(EADDRNOTAVAIL);
665 1.3 explorer else
666 1.3 explorer return(0);
667 1.3 explorer }
668 1.3 explorer
669 1.3 explorer /*
670 1.3 explorer * Put low delay, telnet, rlogin and ftp control packets
671 1.3 explorer * in front of the queue.
672 1.3 explorer */
673 1.3 explorer
674 1.1 explorer if (! IF_QFULL (&sp->pp_fastq) &&
675 1.3 explorer ((ip->ip_tos & IPTOS_LOWDELAY) ||
676 1.1 explorer ((ip->ip_p == IPPROTO_TCP &&
677 1.3 explorer m->m_len >= sizeof (struct ip) + sizeof (struct tcphdr) &&
678 1.3 explorer (INTERACTIVE (ntohs (tcp->th_sport)))) ||
679 1.1 explorer INTERACTIVE (ntohs (tcp->th_dport)))))
680 1.1 explorer ifq = &sp->pp_fastq;
681 1.1 explorer }
682 1.1 explorer #endif
683 1.1 explorer
684 1.1 explorer /*
685 1.1 explorer * Prepend general data packet PPP header. For now, IP only.
686 1.1 explorer */
687 1.1 explorer M_PREPEND (m, PPP_HEADER_LEN, M_DONTWAIT);
688 1.1 explorer if (! m) {
689 1.3 explorer if (ifp->if_flags & IFF_DEBUG)
690 1.3 explorer log(LOG_DEBUG, SPP_FMT "no memory for transmit header\n",
691 1.3 explorer SPP_ARGS(ifp));
692 1.1 explorer ++ifp->if_oerrors;
693 1.1 explorer splx (s);
694 1.1 explorer return (ENOBUFS);
695 1.3 explorer }
696 1.3 explorer /*
697 1.3 explorer * May want to check size of packet
698 1.3 explorer * (albeit due to the implementation it's always enough)
699 1.1 explorer */
700 1.1 explorer h = mtod (m, struct ppp_header*);
701 1.1 explorer if (sp->pp_flags & PP_CISCO) {
702 1.1 explorer h->address = CISCO_UNICAST; /* unicast address */
703 1.1 explorer h->control = 0;
704 1.1 explorer } else {
705 1.1 explorer h->address = PPP_ALLSTATIONS; /* broadcast address */
706 1.1 explorer h->control = PPP_UI; /* Unnumbered Info */
707 1.1 explorer }
708 1.1 explorer
709 1.1 explorer switch (dst->sa_family) {
710 1.1 explorer #ifdef INET
711 1.1 explorer case AF_INET: /* Internet Protocol */
712 1.1 explorer if (sp->pp_flags & PP_CISCO)
713 1.1 explorer h->protocol = htons (ETHERTYPE_IP);
714 1.3 explorer else {
715 1.3 explorer /*
716 1.3 explorer * Don't choke with an ENETDOWN early. It's
717 1.3 explorer * possible that we just started dialing out,
718 1.3 explorer * so don't drop the packet immediately. If
719 1.3 explorer * we notice that we run out of buffer space
720 1.3 explorer * below, we will however remember that we are
721 1.3 explorer * not ready to carry IP packets, and return
722 1.3 explorer * ENETDOWN, as opposed to ENOBUFS.
723 1.3 explorer */
724 1.3 explorer h->protocol = htons(PPP_IP);
725 1.3 explorer if (sp->state[IDX_IPCP] != STATE_OPENED)
726 1.1 explorer rv = ENETDOWN;
727 1.1 explorer }
728 1.1 explorer break;
729 1.1 explorer #endif
730 1.1 explorer #ifdef NS
731 1.1 explorer case AF_NS: /* Xerox NS Protocol */
732 1.1 explorer h->protocol = htons ((sp->pp_flags & PP_CISCO) ?
733 1.1 explorer ETHERTYPE_NS : PPP_XNS);
734 1.1 explorer break;
735 1.1 explorer #endif
736 1.1 explorer #ifdef IPX
737 1.1 explorer case AF_IPX: /* Novell IPX Protocol */
738 1.1 explorer h->protocol = htons ((sp->pp_flags & PP_CISCO) ?
739 1.1 explorer ETHERTYPE_IPX : PPP_IPX);
740 1.1 explorer break;
741 1.1 explorer #endif
742 1.1 explorer #ifdef ISO
743 1.1 explorer case AF_ISO: /* ISO OSI Protocol */
744 1.1 explorer if (sp->pp_flags & PP_CISCO)
745 1.1 explorer goto nosupport;
746 1.1 explorer h->protocol = htons (PPP_ISO);
747 1.1 explorer break;
748 1.1 explorer nosupport:
749 1.1 explorer #endif
750 1.1 explorer default:
751 1.3 explorer m_freem (m);
752 1.1 explorer ++ifp->if_oerrors;
753 1.1 explorer splx (s);
754 1.1 explorer return (EAFNOSUPPORT);
755 1.1 explorer }
756 1.1 explorer
757 1.1 explorer /*
758 1.1 explorer * Queue message on interface, and start output if interface
759 1.1 explorer * not yet active.
760 1.1 explorer */
761 1.1 explorer if (IF_QFULL (ifq)) {
762 1.1 explorer IF_DROP (&ifp->if_snd);
763 1.3 explorer m_freem (m);
764 1.1 explorer ++ifp->if_oerrors;
765 1.3 explorer splx (s);
766 1.1 explorer return (rv? rv: ENOBUFS);
767 1.1 explorer }
768 1.1 explorer IF_ENQUEUE (ifq, m);
769 1.1 explorer if (! (ifp->if_flags & IFF_OACTIVE))
770 1.1 explorer (*ifp->if_start) (ifp);
771 1.1 explorer
772 1.1 explorer /*
773 1.1 explorer * Count output packets and bytes.
774 1.1 explorer * The packet length includes header, FCS and 1 flag,
775 1.1 explorer * according to RFC 1333.
776 1.1 explorer */
777 1.1 explorer ifp->if_obytes += m->m_pkthdr.len + 3;
778 1.1 explorer splx (s);
779 1.1 explorer return (0);
780 1.1 explorer }
781 1.3 explorer
782 1.3 explorer void
783 1.1 explorer sppp_attach(struct ifnet *ifp)
784 1.1 explorer {
785 1.1 explorer struct sppp *sp = (struct sppp*) ifp;
786 1.1 explorer
787 1.1 explorer /* Initialize keepalive handler. */
788 1.3 explorer if (! spppq)
789 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
790 1.3 explorer keepalive_ch =
791 1.3 explorer #endif
792 1.1 explorer timeout(sppp_keepalive, 0, hz * 10);
793 1.1 explorer
794 1.1 explorer /* Insert new entry into the keepalive list. */
795 1.1 explorer sp->pp_next = spppq;
796 1.1 explorer spppq = sp;
797 1.1 explorer
798 1.1 explorer sp->pp_if.if_type = IFT_PPP;
799 1.1 explorer sp->pp_if.if_output = sppp_output;
800 1.3 explorer sp->pp_fastq.ifq_maxlen = 32;
801 1.1 explorer sp->pp_cpq.ifq_maxlen = 20;
802 1.1 explorer sp->pp_loopcnt = 0;
803 1.1 explorer sp->pp_alivecnt = 0;
804 1.1 explorer sp->pp_seq = 0;
805 1.3 explorer sp->pp_rseq = 0;
806 1.3 explorer sp->pp_phase = PHASE_DEAD;
807 1.3 explorer sp->pp_up = lcp.Up;
808 1.3 explorer sp->pp_down = lcp.Down;
809 1.3 explorer
810 1.3 explorer sppp_lcp_init(sp);
811 1.3 explorer sppp_ipcp_init(sp);
812 1.3 explorer sppp_pap_init(sp);
813 1.1 explorer sppp_chap_init(sp);
814 1.1 explorer }
815 1.3 explorer
816 1.3 explorer void
817 1.1 explorer sppp_detach(struct ifnet *ifp)
818 1.1 explorer {
819 1.3 explorer struct sppp **q, *p, *sp = (struct sppp*) ifp;
820 1.1 explorer int i;
821 1.1 explorer
822 1.1 explorer /* Remove the entry from the keepalive list. */
823 1.1 explorer for (q = &spppq; (p = *q); q = &p->pp_next)
824 1.1 explorer if (p == sp) {
825 1.1 explorer *q = p->pp_next;
826 1.1 explorer break;
827 1.1 explorer }
828 1.1 explorer
829 1.1 explorer /* Stop keepalive handler. */
830 1.3 explorer if (! spppq)
831 1.3 explorer untimeout(sppp_keepalive, 0
832 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
833 1.3 explorer ,keepalive_ch
834 1.3 explorer #endif
835 1.3 explorer );
836 1.3 explorer
837 1.3 explorer for (i = 0; i < IDX_COUNT; i++)
838 1.3 explorer untimeout((cps[i])->TO, (void *)sp
839 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
840 1.3 explorer , sp->ch[i]
841 1.3 explorer #endif
842 1.3 explorer );
843 1.3 explorer untimeout(sppp_pap_my_TO, (void *)sp
844 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
845 1.3 explorer , sp->pap_my_to_ch
846 1.3 explorer #endif
847 1.1 explorer );
848 1.1 explorer }
849 1.1 explorer
850 1.1 explorer /*
851 1.1 explorer * Flush the interface output queue.
852 1.3 explorer */
853 1.3 explorer void
854 1.1 explorer sppp_flush(struct ifnet *ifp)
855 1.1 explorer {
856 1.1 explorer struct sppp *sp = (struct sppp*) ifp;
857 1.3 explorer
858 1.3 explorer sppp_qflush (&sp->pp_if.if_snd);
859 1.3 explorer sppp_qflush (&sp->pp_fastq);
860 1.1 explorer sppp_qflush (&sp->pp_cpq);
861 1.1 explorer }
862 1.1 explorer
863 1.1 explorer /*
864 1.1 explorer * Check if the output queue is empty.
865 1.1 explorer */
866 1.3 explorer int
867 1.1 explorer sppp_isempty(struct ifnet *ifp)
868 1.1 explorer {
869 1.3 explorer struct sppp *sp = (struct sppp*) ifp;
870 1.1 explorer int empty, s;
871 1.3 explorer
872 1.3 explorer s = splimp();
873 1.3 explorer empty = !sp->pp_fastq.ifq_head && !sp->pp_cpq.ifq_head &&
874 1.3 explorer !sp->pp_if.if_snd.ifq_head;
875 1.1 explorer splx(s);
876 1.1 explorer return (empty);
877 1.1 explorer }
878 1.1 explorer
879 1.1 explorer /*
880 1.1 explorer * Get next packet to send.
881 1.3 explorer */
882 1.3 explorer struct mbuf *
883 1.1 explorer sppp_dequeue(struct ifnet *ifp)
884 1.1 explorer {
885 1.1 explorer struct sppp *sp = (struct sppp*) ifp;
886 1.3 explorer struct mbuf *m;
887 1.1 explorer int s;
888 1.3 explorer
889 1.3 explorer s = splimp();
890 1.3 explorer /*
891 1.3 explorer * Process only the control protocol queue until we have at
892 1.3 explorer * least one NCP open.
893 1.3 explorer *
894 1.3 explorer * Do always serve all three queues in Cisco mode.
895 1.3 explorer */
896 1.3 explorer IF_DEQUEUE(&sp->pp_cpq, m);
897 1.3 explorer if (m == NULL &&
898 1.3 explorer (sppp_ncp_check(sp) || (sp->pp_flags & PP_CISCO) != 0)) {
899 1.3 explorer IF_DEQUEUE(&sp->pp_fastq, m);
900 1.3 explorer if (m == NULL)
901 1.3 explorer IF_DEQUEUE (&sp->pp_if.if_snd, m);
902 1.3 explorer }
903 1.3 explorer splx(s);
904 1.1 explorer return m;
905 1.1 explorer }
906 1.1 explorer
907 1.3 explorer /*
908 1.1 explorer * Pick the next packet, do not remove it from the queue.
909 1.3 explorer */
910 1.3 explorer struct mbuf *
911 1.1 explorer sppp_pick(struct ifnet *ifp)
912 1.3 explorer {
913 1.3 explorer struct sppp *sp = (struct sppp*)ifp;
914 1.3 explorer struct mbuf *m;
915 1.1 explorer int s;
916 1.3 explorer
917 1.1 explorer s= splimp ();
918 1.3 explorer
919 1.3 explorer m = sp->pp_cpq.ifq_head;
920 1.3 explorer if (m == NULL &&
921 1.3 explorer (sp->pp_phase == PHASE_NETWORK ||
922 1.3 explorer (sp->pp_flags & PP_CISCO) != 0))
923 1.3 explorer if ((m = sp->pp_fastq.ifq_head) == NULL)
924 1.1 explorer m = sp->pp_if.if_snd.ifq_head;
925 1.3 explorer splx (s);
926 1.1 explorer return (m);
927 1.1 explorer }
928 1.1 explorer
929 1.3 explorer /*
930 1.1 explorer * Process an ioctl request. Called on low priority level.
931 1.3 explorer */
932 1.3 explorer int
933 1.3 explorer #if defined(__FreeBSD_version) && __FreeBSD_version >= 300003
934 1.3 explorer sppp_ioctl(struct ifnet *ifp, u_long cmd, void *data)
935 1.3 explorer #else
936 1.3 explorer sppp_ioctl(struct ifnet *ifp, int cmd, void *data)
937 1.1 explorer #endif
938 1.3 explorer {
939 1.3 explorer struct ifreq *ifr = (struct ifreq*) data;
940 1.3 explorer struct sppp *sp = (struct sppp*) ifp;
941 1.1 explorer int s, rv, going_up, going_down, newmode;
942 1.3 explorer
943 1.3 explorer s = splimp();
944 1.3 explorer rv = 0;
945 1.3 explorer switch (cmd) {
946 1.3 explorer case SIOCAIFADDR:
947 1.1 explorer case SIOCSIFDSTADDR:
948 1.3 explorer break;
949 1.3 explorer
950 1.3 explorer case SIOCSIFADDR:
951 1.3 explorer if_up(ifp);
952 1.3 explorer /* fall through... */
953 1.3 explorer
954 1.3 explorer case SIOCSIFFLAGS:
955 1.3 explorer going_up = ifp->if_flags & IFF_UP &&
956 1.3 explorer (ifp->if_flags & IFF_RUNNING) == 0;
957 1.3 explorer going_down = (ifp->if_flags & IFF_UP) == 0 &&
958 1.3 explorer ifp->if_flags & IFF_RUNNING;
959 1.3 explorer newmode = ifp->if_flags & (IFF_AUTO | IFF_PASSIVE);
960 1.3 explorer if (newmode == (IFF_AUTO | IFF_PASSIVE)) {
961 1.3 explorer /* sanity */
962 1.3 explorer newmode = IFF_PASSIVE;
963 1.1 explorer ifp->if_flags &= ~IFF_AUTO;
964 1.1 explorer }
965 1.3 explorer
966 1.3 explorer if (going_up || going_down)
967 1.3 explorer lcp.Close(sp);
968 1.3 explorer if (going_up && newmode == 0) {
969 1.3 explorer /* neither auto-dial nor passive */
970 1.3 explorer ifp->if_flags |= IFF_RUNNING;
971 1.3 explorer if (!(sp->pp_flags & PP_CISCO))
972 1.3 explorer lcp.Open(sp);
973 1.3 explorer } else if (going_down) {
974 1.3 explorer sppp_flush(ifp);
975 1.1 explorer ifp->if_flags &= ~IFF_RUNNING;
976 1.3 explorer }
977 1.3 explorer
978 1.3 explorer break;
979 1.3 explorer
980 1.3 explorer #ifdef SIOCSIFMTU
981 1.3 explorer #ifndef ifr_mtu
982 1.3 explorer #define ifr_mtu ifr_metric
983 1.3 explorer #endif
984 1.3 explorer case SIOCSIFMTU:
985 1.3 explorer if (ifr->ifr_mtu < 128 || ifr->ifr_mtu > sp->lcp.their_mru)
986 1.3 explorer return (EINVAL);
987 1.3 explorer ifp->if_mtu = ifr->ifr_mtu;
988 1.3 explorer break;
989 1.3 explorer #endif
990 1.3 explorer #ifdef SLIOCSETMTU
991 1.3 explorer case SLIOCSETMTU:
992 1.3 explorer if (*(short*)data < 128 || *(short*)data > sp->lcp.their_mru)
993 1.3 explorer return (EINVAL);
994 1.1 explorer ifp->if_mtu = *(short*)data;
995 1.3 explorer break;
996 1.3 explorer #endif
997 1.3 explorer #ifdef SIOCGIFMTU
998 1.3 explorer case SIOCGIFMTU:
999 1.1 explorer ifr->ifr_mtu = ifp->if_mtu;
1000 1.3 explorer break;
1001 1.3 explorer #endif
1002 1.3 explorer #ifdef SLIOCGETMTU
1003 1.3 explorer case SLIOCGETMTU:
1004 1.1 explorer *(short*)data = ifp->if_mtu;
1005 1.3 explorer break;
1006 1.3 explorer #endif
1007 1.3 explorer case SIOCADDMULTI:
1008 1.1 explorer case SIOCDELMULTI:
1009 1.1 explorer break;
1010 1.3 explorer
1011 1.3 explorer case SIOCGIFGENERIC:
1012 1.3 explorer case SIOCSIFGENERIC:
1013 1.1 explorer rv = sppp_params(sp, cmd, data);
1014 1.3 explorer break;
1015 1.3 explorer
1016 1.3 explorer default:
1017 1.1 explorer rv = ENOTTY;
1018 1.3 explorer }
1019 1.3 explorer splx(s);
1020 1.1 explorer return rv;
1021 1.1 explorer }
1022 1.3 explorer
1023 1.3 explorer
1024 1.3 explorer /*
1026 1.3 explorer * Cisco framing implementation.
1027 1.1 explorer */
1028 1.1 explorer
1029 1.1 explorer /*
1030 1.3 explorer * Handle incoming Cisco keepalive protocol packets.
1031 1.3 explorer */
1032 1.1 explorer static void
1033 1.3 explorer sppp_cisco_input(struct sppp *sp, struct mbuf *m)
1034 1.1 explorer {
1035 1.3 explorer STDDCL;
1036 1.1 explorer struct cisco_packet *h;
1037 1.1 explorer u_long me, mymask;
1038 1.3 explorer
1039 1.3 explorer if (m->m_pkthdr.len < CISCO_PACKET_LEN) {
1040 1.3 explorer if (debug)
1041 1.3 explorer log(LOG_DEBUG,
1042 1.1 explorer SPP_FMT "cisco invalid packet length: %d bytes\n",
1043 1.1 explorer SPP_ARGS(ifp), m->m_pkthdr.len);
1044 1.1 explorer return;
1045 1.3 explorer }
1046 1.3 explorer h = mtod (m, struct cisco_packet*);
1047 1.3 explorer if (debug)
1048 1.3 explorer log(LOG_DEBUG,
1049 1.3 explorer SPP_FMT "cisco input: %d bytes "
1050 1.3 explorer "<0x%lx 0x%lx 0x%lx 0x%x 0x%x-0x%x>\n",
1051 1.3 explorer SPP_ARGS(ifp), m->m_pkthdr.len,
1052 1.1 explorer (u_long)ntohl (h->type), (u_long)h->par1, (u_long)h->par2, (u_int)h->rel,
1053 1.1 explorer (u_int)h->time0, (u_int)h->time1);
1054 1.3 explorer switch (ntohl (h->type)) {
1055 1.3 explorer default:
1056 1.3 explorer if (debug)
1057 1.1 explorer addlog(SPP_FMT "cisco unknown packet type: 0x%lx\n",
1058 1.1 explorer SPP_ARGS(ifp), (u_long)ntohl (h->type));
1059 1.1 explorer break;
1060 1.1 explorer case CISCO_ADDR_REPLY:
1061 1.1 explorer /* Reply on address request, ignore */
1062 1.1 explorer break;
1063 1.1 explorer case CISCO_KEEPALIVE_REQ:
1064 1.1 explorer sp->pp_alivecnt = 0;
1065 1.1 explorer sp->pp_rseq = ntohl (h->par1);
1066 1.1 explorer if (sp->pp_seq == sp->pp_rseq) {
1067 1.1 explorer /* Local and remote sequence numbers are equal.
1068 1.3 explorer * Probably, the line is in loopback mode. */
1069 1.3 explorer if (sp->pp_loopcnt >= MAXALIVECNT) {
1070 1.1 explorer printf (SPP_FMT "loopback\n",
1071 1.1 explorer SPP_ARGS(ifp));
1072 1.1 explorer sp->pp_loopcnt = 0;
1073 1.3 explorer if (ifp->if_flags & IFF_UP) {
1074 1.1 explorer if_down (ifp);
1075 1.1 explorer sppp_qflush (&sp->pp_cpq);
1076 1.1 explorer }
1077 1.1 explorer }
1078 1.1 explorer ++sp->pp_loopcnt;
1079 1.3 explorer
1080 1.3 explorer /* Generate new local sequence number */
1081 1.3 explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
1082 1.1 explorer sp->pp_seq = random();
1083 1.3 explorer #else
1084 1.1 explorer sp->pp_seq ^= time.tv_sec ^ time.tv_usec;
1085 1.1 explorer #endif
1086 1.3 explorer break;
1087 1.1 explorer }
1088 1.1 explorer sp->pp_loopcnt = 0;
1089 1.3 explorer if (! (ifp->if_flags & IFF_UP) &&
1090 1.3 explorer (ifp->if_flags & IFF_RUNNING)) {
1091 1.1 explorer if_up(ifp);
1092 1.1 explorer printf (SPP_FMT "up\n", SPP_ARGS(ifp));
1093 1.1 explorer }
1094 1.3 explorer break;
1095 1.3 explorer case CISCO_ADDR_REQ:
1096 1.3 explorer sppp_get_ip_addrs(sp, &me, 0, &mymask);
1097 1.1 explorer if (me != 0L)
1098 1.1 explorer sppp_cisco_send(sp, CISCO_ADDR_REPLY, me, mymask);
1099 1.1 explorer break;
1100 1.1 explorer }
1101 1.1 explorer }
1102 1.3 explorer
1103 1.1 explorer /*
1104 1.1 explorer * Send Cisco keepalive packet.
1105 1.3 explorer */
1106 1.1 explorer static void
1107 1.3 explorer sppp_cisco_send(struct sppp *sp, int type, long par1, long par2)
1108 1.1 explorer {
1109 1.3 explorer STDDCL;
1110 1.1 explorer struct ppp_header *h;
1111 1.3 explorer struct cisco_packet *ch;
1112 1.3 explorer struct mbuf *m;
1113 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1114 1.3 explorer struct timeval tv;
1115 1.3 explorer #else
1116 1.1 explorer u_long t = (time.tv_sec - boottime.tv_sec) * 1000;
1117 1.3 explorer #endif
1118 1.3 explorer
1119 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1120 1.3 explorer getmicrouptime(&tv);
1121 1.1 explorer #endif
1122 1.1 explorer
1123 1.1 explorer MGETHDR (m, M_DONTWAIT, MT_DATA);
1124 1.3 explorer if (! m)
1125 1.1 explorer return;
1126 1.1 explorer m->m_pkthdr.len = m->m_len = PPP_HEADER_LEN + CISCO_PACKET_LEN;
1127 1.1 explorer m->m_pkthdr.rcvif = 0;
1128 1.3 explorer
1129 1.3 explorer h = mtod (m, struct ppp_header*);
1130 1.3 explorer h->address = CISCO_MULTICAST;
1131 1.3 explorer h->control = 0;
1132 1.3 explorer h->protocol = htons (CISCO_KEEPALIVE);
1133 1.3 explorer
1134 1.3 explorer ch = (struct cisco_packet*) (h + 1);
1135 1.3 explorer ch->type = htonl (type);
1136 1.3 explorer ch->par1 = htonl (par1);
1137 1.3 explorer ch->par2 = htonl (par2);
1138 1.3 explorer ch->rel = -1;
1139 1.3 explorer
1140 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1141 1.3 explorer ch->time0 = htons ((u_short) (tv.tv_sec >> 16));
1142 1.3 explorer ch->time1 = htons ((u_short) tv.tv_sec);
1143 1.3 explorer #else
1144 1.3 explorer ch->time0 = htons ((u_short) (t >> 16));
1145 1.1 explorer ch->time1 = htons ((u_short) t);
1146 1.3 explorer #endif
1147 1.3 explorer
1148 1.3 explorer if (debug)
1149 1.3 explorer log(LOG_DEBUG,
1150 1.3 explorer SPP_FMT "cisco output: <0x%lx 0x%lx 0x%lx 0x%x 0x%x-0x%x>\n",
1151 1.1 explorer SPP_ARGS(ifp), (u_long)ntohl (ch->type), (u_long)ch->par1,
1152 1.3 explorer (u_long)ch->par2, (u_int)ch->rel, (u_int)ch->time0, (u_int)ch->time1);
1153 1.3 explorer
1154 1.1 explorer if (IF_QFULL (&sp->pp_cpq)) {
1155 1.1 explorer IF_DROP (&sp->pp_fastq);
1156 1.1 explorer IF_DROP (&ifp->if_snd);
1157 1.3 explorer m_freem (m);
1158 1.1 explorer } else
1159 1.1 explorer IF_ENQUEUE (&sp->pp_cpq, m);
1160 1.1 explorer if (! (ifp->if_flags & IFF_OACTIVE))
1161 1.1 explorer (*ifp->if_start) (ifp);
1162 1.1 explorer ifp->if_obytes += m->m_pkthdr.len + 3;
1163 1.3 explorer }
1164 1.3 explorer
1165 1.3 explorer /*
1167 1.1 explorer * PPP protocol implementation.
1168 1.3 explorer */
1169 1.1 explorer
1170 1.1 explorer /*
1171 1.3 explorer * Send PPP control protocol packet.
1172 1.3 explorer */
1173 1.1 explorer static void
1174 1.3 explorer sppp_cp_send(struct sppp *sp, u_short proto, u_char type,
1175 1.1 explorer u_char ident, u_short len, void *data)
1176 1.3 explorer {
1177 1.1 explorer STDDCL;
1178 1.1 explorer struct ppp_header *h;
1179 1.3 explorer struct lcp_header *lh;
1180 1.3 explorer struct mbuf *m;
1181 1.1 explorer
1182 1.1 explorer if (len > MHLEN - PPP_HEADER_LEN - LCP_HEADER_LEN)
1183 1.1 explorer len = MHLEN - PPP_HEADER_LEN - LCP_HEADER_LEN;
1184 1.3 explorer MGETHDR (m, M_DONTWAIT, MT_DATA);
1185 1.1 explorer if (! m)
1186 1.1 explorer return;
1187 1.1 explorer m->m_pkthdr.len = m->m_len = PPP_HEADER_LEN + LCP_HEADER_LEN + len;
1188 1.3 explorer m->m_pkthdr.rcvif = 0;
1189 1.3 explorer
1190 1.3 explorer h = mtod (m, struct ppp_header*);
1191 1.1 explorer h->address = PPP_ALLSTATIONS; /* broadcast address */
1192 1.3 explorer h->control = PPP_UI; /* Unnumbered Info */
1193 1.3 explorer h->protocol = htons (proto); /* Link Control Protocol */
1194 1.3 explorer
1195 1.3 explorer lh = (struct lcp_header*) (h + 1);
1196 1.3 explorer lh->type = type;
1197 1.3 explorer lh->ident = ident;
1198 1.1 explorer lh->len = htons (LCP_HEADER_LEN + len);
1199 1.3 explorer if (len)
1200 1.3 explorer bcopy (data, lh+1, len);
1201 1.3 explorer
1202 1.3 explorer if (debug) {
1203 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s output <%s id=0x%x len=%d",
1204 1.3 explorer SPP_ARGS(ifp),
1205 1.3 explorer sppp_proto_name(proto),
1206 1.3 explorer sppp_cp_type_name (lh->type), lh->ident,
1207 1.3 explorer ntohs (lh->len));
1208 1.3 explorer if (len)
1209 1.3 explorer sppp_print_bytes ((u_char*) (lh+1), len);
1210 1.3 explorer addlog(">\n");
1211 1.1 explorer }
1212 1.1 explorer if (IF_QFULL (&sp->pp_cpq)) {
1213 1.3 explorer IF_DROP (&sp->pp_fastq);
1214 1.1 explorer IF_DROP (&ifp->if_snd);
1215 1.3 explorer m_freem (m);
1216 1.1 explorer ++ifp->if_oerrors;
1217 1.1 explorer } else
1218 1.1 explorer IF_ENQUEUE (&sp->pp_cpq, m);
1219 1.1 explorer if (! (ifp->if_flags & IFF_OACTIVE))
1220 1.1 explorer (*ifp->if_start) (ifp);
1221 1.1 explorer ifp->if_obytes += m->m_pkthdr.len + 3;
1222 1.3 explorer }
1223 1.1 explorer
1224 1.1 explorer /*
1225 1.3 explorer * Handle incoming PPP control protocol packets.
1226 1.1 explorer */
1227 1.3 explorer static void
1228 1.1 explorer sppp_cp_input(const struct cp *cp, struct sppp *sp, struct mbuf *m)
1229 1.1 explorer {
1230 1.3 explorer STDDCL;
1231 1.3 explorer struct lcp_header *h;
1232 1.1 explorer int len = m->m_pkthdr.len;
1233 1.1 explorer int rv;
1234 1.3 explorer u_char *p;
1235 1.3 explorer
1236 1.3 explorer if (len < 4) {
1237 1.3 explorer if (debug)
1238 1.1 explorer log(LOG_DEBUG,
1239 1.1 explorer SPP_FMT "%s invalid packet length: %d bytes\n",
1240 1.1 explorer SPP_ARGS(ifp), cp->name, len);
1241 1.3 explorer return;
1242 1.3 explorer }
1243 1.3 explorer h = mtod (m, struct lcp_header*);
1244 1.3 explorer if (debug) {
1245 1.3 explorer log(LOG_DEBUG,
1246 1.3 explorer SPP_FMT "%s input(%s): <%s id=0x%x len=%d",
1247 1.1 explorer SPP_ARGS(ifp), cp->name,
1248 1.3 explorer sppp_state_name(sp->state[cp->protoidx]),
1249 1.3 explorer sppp_cp_type_name (h->type), h->ident, ntohs (h->len));
1250 1.1 explorer if (len > 4)
1251 1.1 explorer sppp_print_bytes ((u_char*) (h+1), len-4);
1252 1.1 explorer addlog(">\n");
1253 1.3 explorer }
1254 1.1 explorer if (len > ntohs (h->len))
1255 1.3 explorer len = ntohs (h->len);
1256 1.1 explorer p = (u_char *)(h + 1);
1257 1.3 explorer switch (h->type) {
1258 1.3 explorer case CONF_REQ:
1259 1.3 explorer if (len < 4) {
1260 1.3 explorer if (debug)
1261 1.3 explorer addlog(SPP_FMT "%s invalid conf-req length %d\n",
1262 1.3 explorer SPP_ARGS(ifp), cp->name,
1263 1.3 explorer len);
1264 1.3 explorer ++ifp->if_ierrors;
1265 1.3 explorer break;
1266 1.3 explorer }
1267 1.3 explorer /* handle states where RCR doesn't get a SCA/SCN */
1268 1.1 explorer switch (sp->state[cp->protoidx]) {
1269 1.3 explorer case STATE_CLOSING:
1270 1.3 explorer case STATE_STOPPING:
1271 1.3 explorer return;
1272 1.3 explorer case STATE_CLOSED:
1273 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident,
1274 1.3 explorer 0, 0);
1275 1.3 explorer return;
1276 1.3 explorer }
1277 1.3 explorer rv = (cp->RCR)(sp, h, len);
1278 1.3 explorer switch (sp->state[cp->protoidx]) {
1279 1.3 explorer case STATE_OPENED:
1280 1.3 explorer (cp->tld)(sp);
1281 1.3 explorer (cp->scr)(sp);
1282 1.3 explorer /* fall through... */
1283 1.3 explorer case STATE_ACK_SENT:
1284 1.3 explorer case STATE_REQ_SENT:
1285 1.3 explorer sppp_cp_change_state(cp, sp, rv?
1286 1.3 explorer STATE_ACK_SENT: STATE_REQ_SENT);
1287 1.3 explorer break;
1288 1.3 explorer case STATE_STOPPED:
1289 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1290 1.3 explorer (cp->scr)(sp);
1291 1.3 explorer sppp_cp_change_state(cp, sp, rv?
1292 1.3 explorer STATE_ACK_SENT: STATE_REQ_SENT);
1293 1.3 explorer break;
1294 1.3 explorer case STATE_ACK_RCVD:
1295 1.3 explorer if (rv) {
1296 1.3 explorer sppp_cp_change_state(cp, sp, STATE_OPENED);
1297 1.3 explorer if (debug)
1298 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s tlu\n",
1299 1.3 explorer SPP_ARGS(ifp),
1300 1.3 explorer cp->name);
1301 1.3 explorer (cp->tlu)(sp);
1302 1.3 explorer } else
1303 1.3 explorer sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
1304 1.3 explorer break;
1305 1.3 explorer default:
1306 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1307 1.3 explorer SPP_ARGS(ifp), cp->name,
1308 1.3 explorer sppp_cp_type_name(h->type),
1309 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1310 1.3 explorer ++ifp->if_ierrors;
1311 1.3 explorer }
1312 1.3 explorer break;
1313 1.3 explorer case CONF_ACK:
1314 1.3 explorer if (h->ident != sp->confid[cp->protoidx]) {
1315 1.3 explorer if (debug)
1316 1.3 explorer addlog(SPP_FMT "%s id mismatch 0x%x != 0x%x\n",
1317 1.3 explorer SPP_ARGS(ifp), cp->name,
1318 1.3 explorer h->ident, sp->confid[cp->protoidx]);
1319 1.3 explorer ++ifp->if_ierrors;
1320 1.3 explorer break;
1321 1.3 explorer }
1322 1.3 explorer switch (sp->state[cp->protoidx]) {
1323 1.3 explorer case STATE_CLOSED:
1324 1.3 explorer case STATE_STOPPED:
1325 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
1326 1.3 explorer break;
1327 1.3 explorer case STATE_CLOSING:
1328 1.3 explorer case STATE_STOPPING:
1329 1.3 explorer break;
1330 1.3 explorer case STATE_REQ_SENT:
1331 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1332 1.3 explorer sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
1333 1.3 explorer break;
1334 1.3 explorer case STATE_OPENED:
1335 1.3 explorer (cp->tld)(sp);
1336 1.3 explorer /* fall through */
1337 1.3 explorer case STATE_ACK_RCVD:
1338 1.3 explorer (cp->scr)(sp);
1339 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1340 1.3 explorer break;
1341 1.3 explorer case STATE_ACK_SENT:
1342 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1343 1.3 explorer sppp_cp_change_state(cp, sp, STATE_OPENED);
1344 1.3 explorer if (debug)
1345 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s tlu\n",
1346 1.3 explorer SPP_ARGS(ifp), cp->name);
1347 1.3 explorer (cp->tlu)(sp);
1348 1.3 explorer break;
1349 1.3 explorer default:
1350 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1351 1.3 explorer SPP_ARGS(ifp), cp->name,
1352 1.3 explorer sppp_cp_type_name(h->type),
1353 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1354 1.3 explorer ++ifp->if_ierrors;
1355 1.3 explorer }
1356 1.3 explorer break;
1357 1.3 explorer case CONF_NAK:
1358 1.3 explorer case CONF_REJ:
1359 1.3 explorer if (h->ident != sp->confid[cp->protoidx]) {
1360 1.3 explorer if (debug)
1361 1.3 explorer addlog(SPP_FMT "%s id mismatch 0x%x != 0x%x\n",
1362 1.3 explorer SPP_ARGS(ifp), cp->name,
1363 1.1 explorer h->ident, sp->confid[cp->protoidx]);
1364 1.3 explorer ++ifp->if_ierrors;
1365 1.3 explorer break;
1366 1.3 explorer }
1367 1.3 explorer if (h->type == CONF_NAK)
1368 1.3 explorer (cp->RCN_nak)(sp, h, len);
1369 1.3 explorer else /* CONF_REJ */
1370 1.3 explorer (cp->RCN_rej)(sp, h, len);
1371 1.3 explorer
1372 1.3 explorer switch (sp->state[cp->protoidx]) {
1373 1.3 explorer case STATE_CLOSED:
1374 1.3 explorer case STATE_STOPPED:
1375 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
1376 1.3 explorer break;
1377 1.3 explorer case STATE_REQ_SENT:
1378 1.3 explorer case STATE_ACK_SENT:
1379 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1380 1.3 explorer (cp->scr)(sp);
1381 1.3 explorer break;
1382 1.3 explorer case STATE_OPENED:
1383 1.3 explorer (cp->tld)(sp);
1384 1.3 explorer /* fall through */
1385 1.3 explorer case STATE_ACK_RCVD:
1386 1.3 explorer sppp_cp_change_state(cp, sp, STATE_ACK_SENT);
1387 1.3 explorer (cp->scr)(sp);
1388 1.3 explorer break;
1389 1.3 explorer case STATE_CLOSING:
1390 1.3 explorer case STATE_STOPPING:
1391 1.3 explorer break;
1392 1.3 explorer default:
1393 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1394 1.3 explorer SPP_ARGS(ifp), cp->name,
1395 1.3 explorer sppp_cp_type_name(h->type),
1396 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1397 1.3 explorer ++ifp->if_ierrors;
1398 1.3 explorer }
1399 1.3 explorer break;
1400 1.3 explorer
1401 1.3 explorer case TERM_REQ:
1402 1.3 explorer switch (sp->state[cp->protoidx]) {
1403 1.3 explorer case STATE_ACK_RCVD:
1404 1.3 explorer case STATE_ACK_SENT:
1405 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1406 1.3 explorer /* fall through */
1407 1.3 explorer case STATE_CLOSED:
1408 1.3 explorer case STATE_STOPPED:
1409 1.3 explorer case STATE_CLOSING:
1410 1.3 explorer case STATE_STOPPING:
1411 1.3 explorer case STATE_REQ_SENT:
1412 1.3 explorer sta:
1413 1.3 explorer /* Send Terminate-Ack packet. */
1414 1.3 explorer if (debug)
1415 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s send terminate-ack\n",
1416 1.3 explorer SPP_ARGS(ifp), cp->name);
1417 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
1418 1.3 explorer break;
1419 1.3 explorer case STATE_OPENED:
1420 1.3 explorer (cp->tld)(sp);
1421 1.3 explorer sp->rst_counter[cp->protoidx] = 0;
1422 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STOPPING);
1423 1.3 explorer goto sta;
1424 1.3 explorer break;
1425 1.3 explorer default:
1426 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1427 1.3 explorer SPP_ARGS(ifp), cp->name,
1428 1.1 explorer sppp_cp_type_name(h->type),
1429 1.1 explorer sppp_state_name(sp->state[cp->protoidx]));
1430 1.3 explorer ++ifp->if_ierrors;
1431 1.3 explorer }
1432 1.3 explorer break;
1433 1.3 explorer case TERM_ACK:
1434 1.3 explorer switch (sp->state[cp->protoidx]) {
1435 1.3 explorer case STATE_CLOSED:
1436 1.3 explorer case STATE_STOPPED:
1437 1.3 explorer case STATE_REQ_SENT:
1438 1.3 explorer case STATE_ACK_SENT:
1439 1.3 explorer break;
1440 1.3 explorer case STATE_CLOSING:
1441 1.3 explorer (cp->tlf)(sp);
1442 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSED);
1443 1.3 explorer break;
1444 1.1 explorer case STATE_STOPPING:
1445 1.3 explorer (cp->tlf)(sp);
1446 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STOPPED);
1447 1.1 explorer break;
1448 1.3 explorer case STATE_ACK_RCVD:
1449 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1450 1.3 explorer break;
1451 1.3 explorer case STATE_OPENED:
1452 1.1 explorer (cp->tld)(sp);
1453 1.3 explorer (cp->scr)(sp);
1454 1.3 explorer sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
1455 1.3 explorer break;
1456 1.3 explorer default:
1457 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1458 1.3 explorer SPP_ARGS(ifp), cp->name,
1459 1.1 explorer sppp_cp_type_name(h->type),
1460 1.1 explorer sppp_state_name(sp->state[cp->protoidx]));
1461 1.3 explorer ++ifp->if_ierrors;
1462 1.3 explorer }
1463 1.3 explorer break;
1464 1.3 explorer case CODE_REJ:
1465 1.3 explorer case PROTO_REJ:
1466 1.3 explorer /* XXX catastrophic rejects (RXJ-) aren't handled yet. */
1467 1.3 explorer log(LOG_INFO,
1468 1.3 explorer SPP_FMT "%s: ignoring RXJ (%s) for proto 0x%x, "
1469 1.3 explorer "danger will robinson\n",
1470 1.3 explorer SPP_ARGS(ifp), cp->name,
1471 1.3 explorer sppp_cp_type_name(h->type), ntohs(*((u_short *)p)));
1472 1.3 explorer switch (sp->state[cp->protoidx]) {
1473 1.3 explorer case STATE_CLOSED:
1474 1.3 explorer case STATE_STOPPED:
1475 1.3 explorer case STATE_REQ_SENT:
1476 1.3 explorer case STATE_ACK_SENT:
1477 1.3 explorer case STATE_CLOSING:
1478 1.3 explorer case STATE_STOPPING:
1479 1.3 explorer case STATE_OPENED:
1480 1.1 explorer break;
1481 1.3 explorer case STATE_ACK_RCVD:
1482 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1483 1.3 explorer break;
1484 1.3 explorer default:
1485 1.3 explorer printf(SPP_FMT "%s illegal %s in state %s\n",
1486 1.3 explorer SPP_ARGS(ifp), cp->name,
1487 1.3 explorer sppp_cp_type_name(h->type),
1488 1.1 explorer sppp_state_name(sp->state[cp->protoidx]));
1489 1.3 explorer ++ifp->if_ierrors;
1490 1.3 explorer }
1491 1.3 explorer break;
1492 1.3 explorer case DISC_REQ:
1493 1.3 explorer if (cp->proto != PPP_LCP)
1494 1.3 explorer goto illegal;
1495 1.3 explorer /* Discard the packet. */
1496 1.3 explorer break;
1497 1.3 explorer case ECHO_REQ:
1498 1.3 explorer if (cp->proto != PPP_LCP)
1499 1.3 explorer goto illegal;
1500 1.3 explorer if (sp->state[cp->protoidx] != STATE_OPENED) {
1501 1.3 explorer if (debug)
1502 1.3 explorer addlog(SPP_FMT "lcp echo req but lcp closed\n",
1503 1.3 explorer SPP_ARGS(ifp));
1504 1.3 explorer ++ifp->if_ierrors;
1505 1.3 explorer break;
1506 1.3 explorer }
1507 1.3 explorer if (len < 8) {
1508 1.3 explorer if (debug)
1509 1.3 explorer addlog(SPP_FMT "invalid lcp echo request "
1510 1.3 explorer "packet length: %d bytes\n",
1511 1.3 explorer SPP_ARGS(ifp), len);
1512 1.3 explorer break;
1513 1.3 explorer }
1514 1.3 explorer if (ntohl (*(long*)(h+1)) == sp->lcp.magic) {
1515 1.3 explorer /* Line loopback mode detected. */
1516 1.3 explorer printf(SPP_FMT "loopback\n", SPP_ARGS(ifp));
1517 1.3 explorer if_down (ifp);
1518 1.3 explorer sppp_qflush (&sp->pp_cpq);
1519 1.3 explorer
1520 1.3 explorer /* Shut down the PPP link. */
1521 1.3 explorer /* XXX */
1522 1.3 explorer lcp.Down(sp);
1523 1.3 explorer lcp.Up(sp);
1524 1.3 explorer break;
1525 1.3 explorer }
1526 1.3 explorer *(long*)(h+1) = htonl (sp->lcp.magic);
1527 1.3 explorer if (debug)
1528 1.1 explorer addlog(SPP_FMT "got lcp echo req, sending echo rep\n",
1529 1.3 explorer SPP_ARGS(ifp));
1530 1.3 explorer sppp_cp_send (sp, PPP_LCP, ECHO_REPLY, h->ident, len-4, h+1);
1531 1.3 explorer break;
1532 1.3 explorer case ECHO_REPLY:
1533 1.3 explorer if (cp->proto != PPP_LCP)
1534 1.3 explorer goto illegal;
1535 1.3 explorer if (h->ident != sp->lcp.echoid) {
1536 1.3 explorer ++ifp->if_ierrors;
1537 1.3 explorer break;
1538 1.3 explorer }
1539 1.3 explorer if (len < 8) {
1540 1.3 explorer if (debug)
1541 1.3 explorer addlog(SPP_FMT "lcp invalid echo reply "
1542 1.3 explorer "packet length: %d bytes\n",
1543 1.3 explorer SPP_ARGS(ifp), len);
1544 1.3 explorer break;
1545 1.3 explorer }
1546 1.3 explorer if (debug)
1547 1.3 explorer addlog(SPP_FMT "lcp got echo rep\n",
1548 1.1 explorer SPP_ARGS(ifp));
1549 1.3 explorer if (ntohl (*(long*)(h+1)) != sp->lcp.magic)
1550 1.3 explorer sp->pp_alivecnt = 0;
1551 1.3 explorer break;
1552 1.3 explorer default:
1553 1.3 explorer /* Unknown packet type -- send Code-Reject packet. */
1554 1.3 explorer illegal:
1555 1.3 explorer if (debug)
1556 1.3 explorer addlog(SPP_FMT "%s send code-rej for 0x%x\n",
1557 1.3 explorer SPP_ARGS(ifp), cp->name, h->type);
1558 1.1 explorer sppp_cp_send(sp, cp->proto, CODE_REJ, ++sp->pp_seq,
1559 1.1 explorer m->m_pkthdr.len, h);
1560 1.1 explorer ++ifp->if_ierrors;
1561 1.3 explorer }
1562 1.3 explorer }
1563 1.3 explorer
1564 1.3 explorer
1565 1.3 explorer /*
1566 1.1 explorer * The generic part of all Up/Down/Open/Close/TO event handlers.
1567 1.3 explorer * Basically, the state transition handling in the automaton.
1568 1.1 explorer */
1569 1.3 explorer static void
1570 1.1 explorer sppp_up_event(const struct cp *cp, struct sppp *sp)
1571 1.3 explorer {
1572 1.3 explorer STDDCL;
1573 1.3 explorer
1574 1.3 explorer if (debug)
1575 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s up(%s)\n",
1576 1.3 explorer SPP_ARGS(ifp), cp->name,
1577 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1578 1.3 explorer
1579 1.3 explorer switch (sp->state[cp->protoidx]) {
1580 1.3 explorer case STATE_INITIAL:
1581 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSED);
1582 1.3 explorer break;
1583 1.3 explorer case STATE_STARTING:
1584 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1585 1.3 explorer (cp->scr)(sp);
1586 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1587 1.3 explorer break;
1588 1.3 explorer default:
1589 1.3 explorer printf(SPP_FMT "%s illegal up in state %s\n",
1590 1.1 explorer SPP_ARGS(ifp), cp->name,
1591 1.1 explorer sppp_state_name(sp->state[cp->protoidx]));
1592 1.1 explorer }
1593 1.3 explorer }
1594 1.1 explorer
1595 1.3 explorer static void
1596 1.3 explorer sppp_down_event(const struct cp *cp, struct sppp *sp)
1597 1.3 explorer {
1598 1.3 explorer STDDCL;
1599 1.3 explorer
1600 1.3 explorer if (debug)
1601 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s down(%s)\n",
1602 1.3 explorer SPP_ARGS(ifp), cp->name,
1603 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1604 1.3 explorer
1605 1.3 explorer switch (sp->state[cp->protoidx]) {
1606 1.3 explorer case STATE_CLOSED:
1607 1.3 explorer case STATE_CLOSING:
1608 1.3 explorer sppp_cp_change_state(cp, sp, STATE_INITIAL);
1609 1.3 explorer break;
1610 1.3 explorer case STATE_STOPPED:
1611 1.3 explorer (cp->tls)(sp);
1612 1.3 explorer /* fall through */
1613 1.3 explorer case STATE_STOPPING:
1614 1.3 explorer case STATE_REQ_SENT:
1615 1.3 explorer case STATE_ACK_RCVD:
1616 1.3 explorer case STATE_ACK_SENT:
1617 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STARTING);
1618 1.3 explorer break;
1619 1.3 explorer case STATE_OPENED:
1620 1.3 explorer (cp->tld)(sp);
1621 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STARTING);
1622 1.3 explorer break;
1623 1.3 explorer default:
1624 1.3 explorer printf(SPP_FMT "%s illegal down in state %s\n",
1625 1.1 explorer SPP_ARGS(ifp), cp->name,
1626 1.1 explorer sppp_state_name(sp->state[cp->protoidx]));
1627 1.3 explorer }
1628 1.1 explorer }
1629 1.3 explorer
1630 1.1 explorer
1631 1.3 explorer static void
1632 1.1 explorer sppp_open_event(const struct cp *cp, struct sppp *sp)
1633 1.3 explorer {
1634 1.3 explorer STDDCL;
1635 1.3 explorer
1636 1.3 explorer if (debug)
1637 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s open(%s)\n",
1638 1.3 explorer SPP_ARGS(ifp), cp->name,
1639 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1640 1.3 explorer
1641 1.3 explorer switch (sp->state[cp->protoidx]) {
1642 1.3 explorer case STATE_INITIAL:
1643 1.3 explorer (cp->tls)(sp);
1644 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STARTING);
1645 1.3 explorer break;
1646 1.3 explorer case STATE_STARTING:
1647 1.3 explorer break;
1648 1.3 explorer case STATE_CLOSED:
1649 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
1650 1.3 explorer (cp->scr)(sp);
1651 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1652 1.3 explorer break;
1653 1.3 explorer case STATE_STOPPED:
1654 1.3 explorer case STATE_STOPPING:
1655 1.3 explorer case STATE_REQ_SENT:
1656 1.3 explorer case STATE_ACK_RCVD:
1657 1.3 explorer case STATE_ACK_SENT:
1658 1.3 explorer case STATE_OPENED:
1659 1.1 explorer break;
1660 1.1 explorer case STATE_CLOSING:
1661 1.1 explorer sppp_cp_change_state(cp, sp, STATE_STOPPING);
1662 1.1 explorer break;
1663 1.3 explorer }
1664 1.3 explorer }
1665 1.3 explorer
1666 1.1 explorer
1667 1.3 explorer static void
1668 1.1 explorer sppp_close_event(const struct cp *cp, struct sppp *sp)
1669 1.3 explorer {
1670 1.3 explorer STDDCL;
1671 1.3 explorer
1672 1.3 explorer if (debug)
1673 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s close(%s)\n",
1674 1.3 explorer SPP_ARGS(ifp), cp->name,
1675 1.3 explorer sppp_state_name(sp->state[cp->protoidx]));
1676 1.3 explorer
1677 1.3 explorer switch (sp->state[cp->protoidx]) {
1678 1.3 explorer case STATE_INITIAL:
1679 1.3 explorer case STATE_CLOSED:
1680 1.3 explorer case STATE_CLOSING:
1681 1.3 explorer break;
1682 1.3 explorer case STATE_STARTING:
1683 1.3 explorer (cp->tlf)(sp);
1684 1.3 explorer sppp_cp_change_state(cp, sp, STATE_INITIAL);
1685 1.3 explorer break;
1686 1.3 explorer case STATE_STOPPED:
1687 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSED);
1688 1.3 explorer break;
1689 1.3 explorer case STATE_STOPPING:
1690 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSING);
1691 1.3 explorer break;
1692 1.3 explorer case STATE_OPENED:
1693 1.3 explorer (cp->tld)(sp);
1694 1.3 explorer /* fall through */
1695 1.3 explorer case STATE_REQ_SENT:
1696 1.3 explorer case STATE_ACK_RCVD:
1697 1.3 explorer case STATE_ACK_SENT:
1698 1.3 explorer sp->rst_counter[cp->protoidx] = sp->lcp.max_terminate;
1699 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_REQ, ++sp->pp_seq, 0, 0);
1700 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSING);
1701 1.3 explorer break;
1702 1.3 explorer }
1703 1.3 explorer }
1704 1.3 explorer
1705 1.3 explorer static void
1706 1.3 explorer sppp_to_event(const struct cp *cp, struct sppp *sp)
1707 1.3 explorer {
1708 1.3 explorer STDDCL;
1709 1.3 explorer int s;
1710 1.3 explorer
1711 1.3 explorer s = splimp();
1712 1.3 explorer if (debug)
1713 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s TO(%s) rst_counter = %d\n",
1714 1.3 explorer SPP_ARGS(ifp), cp->name,
1715 1.3 explorer sppp_state_name(sp->state[cp->protoidx]),
1716 1.3 explorer sp->rst_counter[cp->protoidx]);
1717 1.3 explorer
1718 1.3 explorer if (--sp->rst_counter[cp->protoidx] < 0)
1719 1.3 explorer /* TO- event */
1720 1.3 explorer switch (sp->state[cp->protoidx]) {
1721 1.3 explorer case STATE_CLOSING:
1722 1.3 explorer (cp->tlf)(sp);
1723 1.3 explorer sppp_cp_change_state(cp, sp, STATE_CLOSED);
1724 1.3 explorer break;
1725 1.3 explorer case STATE_STOPPING:
1726 1.3 explorer (cp->tlf)(sp);
1727 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STOPPED);
1728 1.3 explorer break;
1729 1.3 explorer case STATE_REQ_SENT:
1730 1.3 explorer case STATE_ACK_RCVD:
1731 1.3 explorer case STATE_ACK_SENT:
1732 1.3 explorer (cp->tlf)(sp);
1733 1.3 explorer sppp_cp_change_state(cp, sp, STATE_STOPPED);
1734 1.3 explorer break;
1735 1.3 explorer }
1736 1.3 explorer else
1737 1.3 explorer /* TO+ event */
1738 1.3 explorer switch (sp->state[cp->protoidx]) {
1739 1.3 explorer case STATE_CLOSING:
1740 1.3 explorer case STATE_STOPPING:
1741 1.3 explorer sppp_cp_send(sp, cp->proto, TERM_REQ, ++sp->pp_seq,
1742 1.3 explorer 0, 0);
1743 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1744 1.3 explorer sp->ch[cp->protoidx] =
1745 1.3 explorer #endif
1746 1.3 explorer timeout(cp->TO, (void *)sp, sp->lcp.timeout);
1747 1.3 explorer break;
1748 1.3 explorer case STATE_REQ_SENT:
1749 1.3 explorer case STATE_ACK_RCVD:
1750 1.3 explorer (cp->scr)(sp);
1751 1.3 explorer /* sppp_cp_change_state() will restart the timer */
1752 1.3 explorer sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
1753 1.3 explorer break;
1754 1.3 explorer case STATE_ACK_SENT:
1755 1.3 explorer (cp->scr)(sp);
1756 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1757 1.3 explorer sp->ch[cp->protoidx] =
1758 1.3 explorer #endif
1759 1.3 explorer timeout(cp->TO, (void *)sp, sp->lcp.timeout);
1760 1.3 explorer break;
1761 1.3 explorer }
1762 1.3 explorer
1763 1.3 explorer splx(s);
1764 1.3 explorer }
1765 1.3 explorer
1766 1.3 explorer /*
1767 1.3 explorer * Change the state of a control protocol in the state automaton.
1768 1.3 explorer * Takes care of starting/stopping the restart timer.
1769 1.3 explorer */
1770 1.3 explorer void
1771 1.3 explorer sppp_cp_change_state(const struct cp *cp, struct sppp *sp, int newstate)
1772 1.3 explorer {
1773 1.3 explorer sp->state[cp->protoidx] = newstate;
1774 1.3 explorer
1775 1.3 explorer untimeout(cp->TO, (void *)sp
1776 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1777 1.3 explorer , sp->ch[cp->protoidx]
1778 1.3 explorer #endif
1779 1.3 explorer );
1780 1.3 explorer switch (newstate) {
1781 1.3 explorer case STATE_INITIAL:
1782 1.3 explorer case STATE_STARTING:
1783 1.3 explorer case STATE_CLOSED:
1784 1.3 explorer case STATE_STOPPED:
1785 1.3 explorer case STATE_OPENED:
1786 1.3 explorer break;
1787 1.3 explorer case STATE_CLOSING:
1788 1.3 explorer case STATE_STOPPING:
1789 1.3 explorer case STATE_REQ_SENT:
1790 1.3 explorer case STATE_ACK_RCVD:
1791 1.3 explorer case STATE_ACK_SENT:
1792 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1793 1.3 explorer sp->ch[cp->protoidx] =
1794 1.3 explorer #endif
1795 1.3 explorer timeout(cp->TO, (void *)sp, sp->lcp.timeout);
1796 1.3 explorer break;
1797 1.3 explorer }
1798 1.3 explorer }
1799 1.3 explorer /*
1801 1.3 explorer *--------------------------------------------------------------------------*
1802 1.3 explorer * *
1803 1.3 explorer * The LCP implementation. *
1804 1.3 explorer * *
1805 1.3 explorer *--------------------------------------------------------------------------*
1806 1.3 explorer */
1807 1.3 explorer static void
1808 1.3 explorer sppp_lcp_init(struct sppp *sp)
1809 1.3 explorer {
1810 1.3 explorer sp->lcp.opts = (1 << LCP_OPT_MAGIC);
1811 1.3 explorer sp->lcp.magic = 0;
1812 1.3 explorer sp->state[IDX_LCP] = STATE_INITIAL;
1813 1.3 explorer sp->fail_counter[IDX_LCP] = 0;
1814 1.3 explorer sp->lcp.protos = 0;
1815 1.3 explorer sp->lcp.mru = sp->lcp.their_mru = PP_MTU;
1816 1.3 explorer
1817 1.3 explorer /*
1818 1.3 explorer * Initialize counters and timeout values. Note that we don't
1819 1.3 explorer * use the 3 seconds suggested in RFC 1661 since we are likely
1820 1.3 explorer * running on a fast link. XXX We should probably implement
1821 1.3 explorer * the exponential backoff option. Note that these values are
1822 1.3 explorer * relevant for all control protocols, not just LCP only.
1823 1.3 explorer */
1824 1.3 explorer sp->lcp.timeout = 1 * hz;
1825 1.3 explorer sp->lcp.max_terminate = 2;
1826 1.3 explorer sp->lcp.max_configure = 10;
1827 1.3 explorer sp->lcp.max_failure = 10;
1828 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
1829 1.3 explorer callout_handle_init(&sp->ch[IDX_LCP]);
1830 1.3 explorer #endif
1831 1.3 explorer }
1832 1.3 explorer
1833 1.3 explorer static void
1834 1.3 explorer sppp_lcp_up(struct sppp *sp)
1835 1.3 explorer {
1836 1.3 explorer STDDCL;
1837 1.3 explorer
1838 1.3 explorer /*
1839 1.3 explorer * If this interface is passive or dial-on-demand, and we are
1840 1.3 explorer * still in Initial state, it means we've got an incoming
1841 1.3 explorer * call. Activate the interface.
1842 1.3 explorer */
1843 1.3 explorer if ((ifp->if_flags & (IFF_AUTO | IFF_PASSIVE)) != 0) {
1844 1.3 explorer if (debug)
1845 1.3 explorer log(LOG_DEBUG,
1846 1.3 explorer SPP_FMT "Up event", SPP_ARGS(ifp));
1847 1.3 explorer ifp->if_flags |= IFF_RUNNING;
1848 1.3 explorer if (sp->state[IDX_LCP] == STATE_INITIAL) {
1849 1.3 explorer if (debug)
1850 1.3 explorer addlog("(incoming call)\n");
1851 1.3 explorer sp->pp_flags |= PP_CALLIN;
1852 1.3 explorer lcp.Open(sp);
1853 1.3 explorer } else if (debug)
1854 1.3 explorer addlog("\n");
1855 1.3 explorer }
1856 1.3 explorer
1857 1.3 explorer sppp_up_event(&lcp, sp);
1858 1.3 explorer }
1859 1.3 explorer
1860 1.3 explorer static void
1861 1.3 explorer sppp_lcp_down(struct sppp *sp)
1862 1.3 explorer {
1863 1.3 explorer STDDCL;
1864 1.3 explorer
1865 1.3 explorer sppp_down_event(&lcp, sp);
1866 1.3 explorer
1867 1.3 explorer /*
1868 1.3 explorer * If this is neither a dial-on-demand nor a passive
1869 1.3 explorer * interface, simulate an ``ifconfig down'' action, so the
1870 1.3 explorer * administrator can force a redial by another ``ifconfig
1871 1.3 explorer * up''. XXX For leased line operation, should we immediately
1872 1.3 explorer * try to reopen the connection here?
1873 1.3 explorer */
1874 1.3 explorer if ((ifp->if_flags & (IFF_AUTO | IFF_PASSIVE)) == 0) {
1875 1.3 explorer log(LOG_INFO,
1876 1.3 explorer SPP_FMT "Down event (carrier loss), taking interface down.\n",
1877 1.3 explorer SPP_ARGS(ifp));
1878 1.3 explorer if_down(ifp);
1879 1.3 explorer } else {
1880 1.3 explorer if (debug)
1881 1.3 explorer log(LOG_DEBUG,
1882 1.3 explorer SPP_FMT "Down event (carrier loss)\n",
1883 1.3 explorer SPP_ARGS(ifp));
1884 1.3 explorer }
1885 1.3 explorer sp->pp_flags &= ~PP_CALLIN;
1886 1.3 explorer if (sp->state[IDX_LCP] != STATE_INITIAL)
1887 1.3 explorer lcp.Close(sp);
1888 1.3 explorer ifp->if_flags &= ~IFF_RUNNING;
1889 1.3 explorer }
1890 1.3 explorer
1891 1.3 explorer static void
1892 1.3 explorer sppp_lcp_open(struct sppp *sp)
1893 1.3 explorer {
1894 1.3 explorer /*
1895 1.3 explorer * If we are authenticator, negotiate LCP_AUTH
1896 1.3 explorer */
1897 1.3 explorer if (sp->hisauth.proto != 0)
1898 1.3 explorer sp->lcp.opts |= (1 << LCP_OPT_AUTH_PROTO);
1899 1.3 explorer else
1900 1.3 explorer sp->lcp.opts &= ~(1 << LCP_OPT_AUTH_PROTO);
1901 1.3 explorer sp->pp_flags &= ~PP_NEEDAUTH;
1902 1.3 explorer sppp_open_event(&lcp, sp);
1903 1.3 explorer }
1904 1.3 explorer
1905 1.3 explorer static void
1906 1.3 explorer sppp_lcp_close(struct sppp *sp)
1907 1.3 explorer {
1908 1.3 explorer sppp_close_event(&lcp, sp);
1909 1.3 explorer }
1910 1.3 explorer
1911 1.3 explorer static void
1912 1.3 explorer sppp_lcp_TO(void *cookie)
1913 1.3 explorer {
1914 1.3 explorer sppp_to_event(&lcp, (struct sppp *)cookie);
1915 1.3 explorer }
1916 1.3 explorer
1917 1.3 explorer /*
1918 1.3 explorer * Analyze a configure request. Return true if it was agreeable, and
1919 1.3 explorer * caused action sca, false if it has been rejected or nak'ed, and
1920 1.3 explorer * caused action scn. (The return value is used to make the state
1921 1.3 explorer * transition decision in the state automaton.)
1922 1.3 explorer */
1923 1.3 explorer static int
1924 1.3 explorer sppp_lcp_RCR(struct sppp *sp, struct lcp_header *h, int len)
1925 1.3 explorer {
1926 1.3 explorer STDDCL;
1927 1.3 explorer u_char *buf, *r, *p;
1928 1.3 explorer int origlen, rlen;
1929 1.3 explorer u_long nmagic;
1930 1.3 explorer u_short authproto;
1931 1.3 explorer
1932 1.3 explorer len -= 4;
1933 1.3 explorer origlen = len;
1934 1.3 explorer buf = r = malloc (len, M_TEMP, M_NOWAIT);
1935 1.3 explorer if (! buf)
1936 1.3 explorer return (0);
1937 1.3 explorer
1938 1.3 explorer if (debug)
1939 1.3 explorer log(LOG_DEBUG, SPP_FMT "lcp parse opts: ",
1940 1.3 explorer SPP_ARGS(ifp));
1941 1.3 explorer
1942 1.3 explorer /* pass 1: check for things that need to be rejected */
1943 1.3 explorer p = (void*) (h+1);
1944 1.3 explorer for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
1945 1.3 explorer if (debug)
1946 1.3 explorer addlog(" %s ", sppp_lcp_opt_name(*p));
1947 1.3 explorer switch (*p) {
1948 1.3 explorer case LCP_OPT_MAGIC:
1949 1.3 explorer /* Magic number. */
1950 1.3 explorer /* fall through, both are same length */
1951 1.3 explorer case LCP_OPT_ASYNC_MAP:
1952 1.3 explorer /* Async control character map. */
1953 1.3 explorer if (len >= 6 || p[1] == 6)
1954 1.3 explorer continue;
1955 1.3 explorer if (debug)
1956 1.3 explorer addlog("[invalid] ");
1957 1.3 explorer break;
1958 1.3 explorer case LCP_OPT_MRU:
1959 1.3 explorer /* Maximum receive unit. */
1960 1.3 explorer if (len >= 4 && p[1] == 4)
1961 1.3 explorer continue;
1962 1.3 explorer if (debug)
1963 1.3 explorer addlog("[invalid] ");
1964 1.3 explorer break;
1965 1.3 explorer case LCP_OPT_AUTH_PROTO:
1966 1.3 explorer if (len < 4) {
1967 1.3 explorer if (debug)
1968 1.3 explorer addlog("[invalid] ");
1969 1.3 explorer break;
1970 1.3 explorer }
1971 1.3 explorer authproto = (p[2] << 8) + p[3];
1972 1.3 explorer if (authproto == PPP_CHAP && p[1] != 5) {
1973 1.3 explorer if (debug)
1974 1.3 explorer addlog("[invalid chap len] ");
1975 1.3 explorer break;
1976 1.3 explorer }
1977 1.3 explorer if (sp->myauth.proto == 0) {
1978 1.3 explorer /* we are not configured to do auth */
1979 1.3 explorer if (debug)
1980 1.3 explorer addlog("[not configured] ");
1981 1.3 explorer break;
1982 1.3 explorer }
1983 1.3 explorer /*
1984 1.3 explorer * Remote want us to authenticate, remember this,
1985 1.3 explorer * so we stay in PHASE_AUTHENTICATE after LCP got
1986 1.3 explorer * up.
1987 1.3 explorer */
1988 1.3 explorer sp->pp_flags |= PP_NEEDAUTH;
1989 1.3 explorer continue;
1990 1.3 explorer default:
1991 1.3 explorer /* Others not supported. */
1992 1.3 explorer if (debug)
1993 1.3 explorer addlog("[rej] ");
1994 1.3 explorer break;
1995 1.3 explorer }
1996 1.3 explorer /* Add the option to rejected list. */
1997 1.3 explorer bcopy (p, r, p[1]);
1998 1.3 explorer r += p[1];
1999 1.3 explorer rlen += p[1];
2000 1.3 explorer }
2001 1.3 explorer if (rlen) {
2002 1.3 explorer if (debug)
2003 1.3 explorer addlog(" send conf-rej\n");
2004 1.3 explorer sppp_cp_send (sp, PPP_LCP, CONF_REJ, h->ident, rlen, buf);
2005 1.3 explorer return 0;
2006 1.3 explorer } else if (debug)
2007 1.3 explorer addlog("\n");
2008 1.3 explorer
2009 1.3 explorer /*
2010 1.3 explorer * pass 2: check for option values that are unacceptable and
2011 1.3 explorer * thus require to be nak'ed.
2012 1.3 explorer */
2013 1.3 explorer if (debug)
2014 1.3 explorer log(LOG_DEBUG, SPP_FMT "lcp parse opt values: ",
2015 1.3 explorer SPP_ARGS(ifp));
2016 1.3 explorer
2017 1.3 explorer p = (void*) (h+1);
2018 1.3 explorer len = origlen;
2019 1.3 explorer for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
2020 1.3 explorer if (debug)
2021 1.3 explorer addlog(" %s ", sppp_lcp_opt_name(*p));
2022 1.3 explorer switch (*p) {
2023 1.3 explorer case LCP_OPT_MAGIC:
2024 1.3 explorer /* Magic number -- extract. */
2025 1.3 explorer nmagic = (u_long)p[2] << 24 |
2026 1.3 explorer (u_long)p[3] << 16 | p[4] << 8 | p[5];
2027 1.3 explorer if (nmagic != sp->lcp.magic) {
2028 1.3 explorer if (debug)
2029 1.3 explorer addlog("0x%lx ", nmagic);
2030 1.3 explorer continue;
2031 1.3 explorer }
2032 1.3 explorer /*
2033 1.3 explorer * Local and remote magics equal -- loopback?
2034 1.3 explorer */
2035 1.3 explorer if (sp->pp_loopcnt >= MAXALIVECNT*5) {
2036 1.3 explorer printf (SPP_FMT "loopback\n",
2037 1.3 explorer SPP_ARGS(ifp));
2038 1.3 explorer sp->pp_loopcnt = 0;
2039 1.3 explorer if (ifp->if_flags & IFF_UP) {
2040 1.3 explorer if_down(ifp);
2041 1.3 explorer sppp_qflush(&sp->pp_cpq);
2042 1.3 explorer /* XXX ? */
2043 1.3 explorer lcp.Down(sp);
2044 1.3 explorer lcp.Up(sp);
2045 1.3 explorer }
2046 1.3 explorer } else if (debug)
2047 1.3 explorer addlog("[glitch] ");
2048 1.3 explorer ++sp->pp_loopcnt;
2049 1.3 explorer /*
2050 1.3 explorer * We negate our magic here, and NAK it. If
2051 1.3 explorer * we see it later in an NAK packet, we
2052 1.3 explorer * suggest a new one.
2053 1.3 explorer */
2054 1.3 explorer nmagic = ~sp->lcp.magic;
2055 1.3 explorer /* Gonna NAK it. */
2056 1.3 explorer p[2] = nmagic >> 24;
2057 1.3 explorer p[3] = nmagic >> 16;
2058 1.3 explorer p[4] = nmagic >> 8;
2059 1.3 explorer p[5] = nmagic;
2060 1.3 explorer break;
2061 1.3 explorer
2062 1.3 explorer case LCP_OPT_ASYNC_MAP:
2063 1.3 explorer /* Async control character map -- check to be zero. */
2064 1.3 explorer if (! p[2] && ! p[3] && ! p[4] && ! p[5]) {
2065 1.3 explorer if (debug)
2066 1.3 explorer addlog("[empty] ");
2067 1.3 explorer continue;
2068 1.3 explorer }
2069 1.3 explorer if (debug)
2070 1.3 explorer addlog("[non-empty] ");
2071 1.3 explorer /* suggest a zero one */
2072 1.3 explorer p[2] = p[3] = p[4] = p[5] = 0;
2073 1.3 explorer break;
2074 1.3 explorer
2075 1.3 explorer case LCP_OPT_MRU:
2076 1.3 explorer /*
2077 1.3 explorer * Maximum receive unit. Always agreeable,
2078 1.3 explorer * but ignored by now.
2079 1.3 explorer */
2080 1.3 explorer sp->lcp.their_mru = p[2] * 256 + p[3];
2081 1.3 explorer if (debug)
2082 1.3 explorer addlog("%ld ", sp->lcp.their_mru);
2083 1.3 explorer continue;
2084 1.3 explorer
2085 1.3 explorer case LCP_OPT_AUTH_PROTO:
2086 1.3 explorer authproto = (p[2] << 8) + p[3];
2087 1.3 explorer if (sp->myauth.proto != authproto) {
2088 1.3 explorer /* not agreed, nak */
2089 1.3 explorer if (debug)
2090 1.3 explorer addlog("[mine %s != his %s] ",
2091 1.3 explorer sppp_proto_name(sp->hisauth.proto),
2092 1.3 explorer sppp_proto_name(authproto));
2093 1.3 explorer p[2] = sp->myauth.proto >> 8;
2094 1.3 explorer p[3] = sp->myauth.proto;
2095 1.3 explorer break;
2096 1.3 explorer }
2097 1.3 explorer if (authproto == PPP_CHAP && p[4] != CHAP_MD5) {
2098 1.3 explorer if (debug)
2099 1.3 explorer addlog("[chap not MD5] ");
2100 1.3 explorer p[4] = CHAP_MD5;
2101 1.3 explorer break;
2102 1.3 explorer }
2103 1.3 explorer continue;
2104 1.3 explorer }
2105 1.3 explorer /* Add the option to nak'ed list. */
2106 1.3 explorer bcopy (p, r, p[1]);
2107 1.3 explorer r += p[1];
2108 1.3 explorer rlen += p[1];
2109 1.3 explorer }
2110 1.3 explorer if (rlen) {
2111 1.3 explorer if (++sp->fail_counter[IDX_LCP] >= sp->lcp.max_failure) {
2112 1.3 explorer if (debug)
2113 1.3 explorer addlog(" max_failure (%d) exceeded, "
2114 1.3 explorer "send conf-rej\n",
2115 1.3 explorer sp->lcp.max_failure);
2116 1.3 explorer sppp_cp_send(sp, PPP_LCP, CONF_REJ, h->ident, rlen, buf);
2117 1.3 explorer } else {
2118 1.3 explorer if (debug)
2119 1.3 explorer addlog(" send conf-nak\n");
2120 1.3 explorer sppp_cp_send (sp, PPP_LCP, CONF_NAK, h->ident, rlen, buf);
2121 1.3 explorer }
2122 1.3 explorer return 0;
2123 1.3 explorer } else {
2124 1.3 explorer if (debug)
2125 1.3 explorer addlog(" send conf-ack\n");
2126 1.3 explorer sp->fail_counter[IDX_LCP] = 0;
2127 1.3 explorer sp->pp_loopcnt = 0;
2128 1.3 explorer sppp_cp_send (sp, PPP_LCP, CONF_ACK,
2129 1.3 explorer h->ident, origlen, h+1);
2130 1.3 explorer }
2131 1.3 explorer
2132 1.3 explorer free (buf, M_TEMP);
2133 1.3 explorer return (rlen == 0);
2134 1.3 explorer }
2135 1.3 explorer
2136 1.3 explorer /*
2137 1.3 explorer * Analyze the LCP Configure-Reject option list, and adjust our
2138 1.3 explorer * negotiation.
2139 1.3 explorer */
2140 1.3 explorer static void
2141 1.3 explorer sppp_lcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
2142 1.3 explorer {
2143 1.3 explorer STDDCL;
2144 1.3 explorer u_char *buf, *p;
2145 1.3 explorer
2146 1.3 explorer len -= 4;
2147 1.3 explorer buf = malloc (len, M_TEMP, M_NOWAIT);
2148 1.3 explorer if (!buf)
2149 1.3 explorer return;
2150 1.3 explorer
2151 1.3 explorer if (debug)
2152 1.3 explorer log(LOG_DEBUG, SPP_FMT "lcp rej opts: ",
2153 1.3 explorer SPP_ARGS(ifp));
2154 1.3 explorer
2155 1.3 explorer p = (void*) (h+1);
2156 1.3 explorer for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
2157 1.3 explorer if (debug)
2158 1.3 explorer addlog(" %s ", sppp_lcp_opt_name(*p));
2159 1.3 explorer switch (*p) {
2160 1.3 explorer case LCP_OPT_MAGIC:
2161 1.3 explorer /* Magic number -- can't use it, use 0 */
2162 1.3 explorer sp->lcp.opts &= ~(1 << LCP_OPT_MAGIC);
2163 1.3 explorer sp->lcp.magic = 0;
2164 1.3 explorer break;
2165 1.3 explorer case LCP_OPT_MRU:
2166 1.3 explorer /*
2167 1.3 explorer * Should not be rejected anyway, since we only
2168 1.3 explorer * negotiate a MRU if explicitly requested by
2169 1.3 explorer * peer.
2170 1.3 explorer */
2171 1.3 explorer sp->lcp.opts &= ~(1 << LCP_OPT_MRU);
2172 1.3 explorer break;
2173 1.3 explorer case LCP_OPT_AUTH_PROTO:
2174 1.3 explorer /*
2175 1.3 explorer * Peer doesn't want to authenticate himself,
2176 1.3 explorer * deny unless this is a dialout call, and
2177 1.3 explorer * AUTHFLAG_NOCALLOUT is set.
2178 1.3 explorer */
2179 1.3 explorer if ((sp->pp_flags & PP_CALLIN) == 0 &&
2180 1.3 explorer (sp->hisauth.flags & AUTHFLAG_NOCALLOUT) != 0) {
2181 1.3 explorer if (debug)
2182 1.3 explorer addlog("[don't insist on auth "
2183 1.3 explorer "for callout]");
2184 1.3 explorer sp->lcp.opts &= ~(1 << LCP_OPT_AUTH_PROTO);
2185 1.3 explorer break;
2186 1.3 explorer }
2187 1.3 explorer if (debug)
2188 1.3 explorer addlog("[access denied]\n");
2189 1.3 explorer lcp.Close(sp);
2190 1.3 explorer break;
2191 1.3 explorer }
2192 1.3 explorer }
2193 1.3 explorer if (debug)
2194 1.3 explorer addlog("\n");
2195 1.3 explorer free (buf, M_TEMP);
2196 1.3 explorer return;
2197 1.3 explorer }
2198 1.3 explorer
2199 1.3 explorer /*
2200 1.3 explorer * Analyze the LCP Configure-NAK option list, and adjust our
2201 1.3 explorer * negotiation.
2202 1.3 explorer */
2203 1.3 explorer static void
2204 1.3 explorer sppp_lcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
2205 1.3 explorer {
2206 1.3 explorer STDDCL;
2207 1.3 explorer u_char *buf, *p;
2208 1.3 explorer u_long magic;
2209 1.3 explorer
2210 1.3 explorer len -= 4;
2211 1.3 explorer buf = malloc (len, M_TEMP, M_NOWAIT);
2212 1.3 explorer if (!buf)
2213 1.3 explorer return;
2214 1.3 explorer
2215 1.3 explorer if (debug)
2216 1.3 explorer log(LOG_DEBUG, SPP_FMT "lcp nak opts: ",
2217 1.3 explorer SPP_ARGS(ifp));
2218 1.3 explorer
2219 1.3 explorer p = (void*) (h+1);
2220 1.3 explorer for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
2221 1.3 explorer if (debug)
2222 1.3 explorer addlog(" %s ", sppp_lcp_opt_name(*p));
2223 1.3 explorer switch (*p) {
2224 1.3 explorer case LCP_OPT_MAGIC:
2225 1.3 explorer /* Magic number -- renegotiate */
2226 1.3 explorer if ((sp->lcp.opts & (1 << LCP_OPT_MAGIC)) &&
2227 1.3 explorer len >= 6 && p[1] == 6) {
2228 1.3 explorer magic = (u_long)p[2] << 24 |
2229 1.3 explorer (u_long)p[3] << 16 | p[4] << 8 | p[5];
2230 1.3 explorer /*
2231 1.3 explorer * If the remote magic is our negated one,
2232 1.3 explorer * this looks like a loopback problem.
2233 1.3 explorer * Suggest a new magic to make sure.
2234 1.3 explorer */
2235 1.3 explorer if (magic == ~sp->lcp.magic) {
2236 1.3 explorer if (debug)
2237 1.3 explorer addlog("magic glitch ");
2238 1.3 explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
2239 1.3 explorer sp->lcp.magic = random();
2240 1.3 explorer #else
2241 1.3 explorer sp->lcp.magic = time.tv_sec + time.tv_usec;
2242 1.3 explorer #endif
2243 1.3 explorer } else {
2244 1.3 explorer sp->lcp.magic = magic;
2245 1.3 explorer if (debug)
2246 1.3 explorer addlog("%ld ", magic);
2247 1.3 explorer }
2248 1.3 explorer }
2249 1.3 explorer break;
2250 1.3 explorer case LCP_OPT_MRU:
2251 1.3 explorer /*
2252 1.3 explorer * Peer wants to advise us to negotiate an MRU.
2253 1.3 explorer * Agree on it if it's reasonable, or use
2254 1.3 explorer * default otherwise.
2255 1.3 explorer */
2256 1.3 explorer if (len >= 4 && p[1] == 4) {
2257 1.3 explorer u_int mru = p[2] * 256 + p[3];
2258 1.3 explorer if (debug)
2259 1.3 explorer addlog("%d ", mru);
2260 1.3 explorer if (mru < PP_MTU || mru > PP_MAX_MRU)
2261 1.3 explorer mru = PP_MTU;
2262 1.3 explorer sp->lcp.mru = mru;
2263 1.3 explorer sp->lcp.opts |= (1 << LCP_OPT_MRU);
2264 1.3 explorer }
2265 1.3 explorer break;
2266 1.3 explorer case LCP_OPT_AUTH_PROTO:
2267 1.3 explorer /*
2268 1.3 explorer * Peer doesn't like our authentication method,
2269 1.3 explorer * deny.
2270 1.3 explorer */
2271 1.3 explorer if (debug)
2272 1.3 explorer addlog("[access denied]\n");
2273 1.3 explorer lcp.Close(sp);
2274 1.3 explorer break;
2275 1.3 explorer }
2276 1.3 explorer }
2277 1.3 explorer if (debug)
2278 1.3 explorer addlog("\n");
2279 1.3 explorer free (buf, M_TEMP);
2280 1.3 explorer return;
2281 1.3 explorer }
2282 1.3 explorer
2283 1.3 explorer static void
2284 1.3 explorer sppp_lcp_tlu(struct sppp *sp)
2285 1.3 explorer {
2286 1.3 explorer STDDCL;
2287 1.3 explorer int i;
2288 1.3 explorer u_long mask;
2289 1.3 explorer
2290 1.3 explorer /* XXX ? */
2291 1.3 explorer if (! (ifp->if_flags & IFF_UP) &&
2292 1.3 explorer (ifp->if_flags & IFF_RUNNING)) {
2293 1.3 explorer /* Coming out of loopback mode. */
2294 1.3 explorer if_up(ifp);
2295 1.3 explorer printf (SPP_FMT "up\n", SPP_ARGS(ifp));
2296 1.3 explorer }
2297 1.3 explorer
2298 1.3 explorer for (i = 0; i < IDX_COUNT; i++)
2299 1.3 explorer if ((cps[i])->flags & CP_QUAL)
2300 1.3 explorer (cps[i])->Open(sp);
2301 1.3 explorer
2302 1.3 explorer if ((sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0 ||
2303 1.3 explorer (sp->pp_flags & PP_NEEDAUTH) != 0)
2304 1.3 explorer sp->pp_phase = PHASE_AUTHENTICATE;
2305 1.3 explorer else
2306 1.3 explorer sp->pp_phase = PHASE_NETWORK;
2307 1.3 explorer
2308 1.3 explorer if(debug)
2309 1.3 explorer {
2310 1.3 explorer log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
2311 1.3 explorer sppp_phase_name(sp->pp_phase));
2312 1.3 explorer }
2313 1.3 explorer
2314 1.3 explorer /*
2315 1.3 explorer * Open all authentication protocols. This is even required
2316 1.3 explorer * if we already proceeded to network phase, since it might be
2317 1.3 explorer * that remote wants us to authenticate, so we might have to
2318 1.3 explorer * send a PAP request. Undesired authentication protocols
2319 1.3 explorer * don't do anything when they get an Open event.
2320 1.3 explorer */
2321 1.3 explorer for (i = 0; i < IDX_COUNT; i++)
2322 1.3 explorer if ((cps[i])->flags & CP_AUTH)
2323 1.3 explorer (cps[i])->Open(sp);
2324 1.3 explorer
2325 1.3 explorer if (sp->pp_phase == PHASE_NETWORK) {
2326 1.3 explorer /* Notify all NCPs. */
2327 1.3 explorer for (i = 0; i < IDX_COUNT; i++)
2328 1.3 explorer if ((cps[i])->flags & CP_NCP)
2329 1.3 explorer (cps[i])->Open(sp);
2330 1.3 explorer }
2331 1.3 explorer
2332 1.3 explorer /* Send Up events to all started protos. */
2333 1.3 explorer for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
2334 1.3 explorer if (sp->lcp.protos & mask && ((cps[i])->flags & CP_LCP) == 0)
2335 1.3 explorer (cps[i])->Up(sp);
2336 1.3 explorer
2337 1.3 explorer /* notify low-level driver of state change */
2338 1.3 explorer if (sp->pp_chg)
2339 1.3 explorer sp->pp_chg(sp, (int)sp->pp_phase);
2340 1.3 explorer
2341 1.3 explorer if (sp->pp_phase == PHASE_NETWORK)
2342 1.3 explorer /* if no NCP is starting, close down */
2343 1.3 explorer sppp_lcp_check_and_close(sp);
2344 1.3 explorer }
2345 1.3 explorer
2346 1.3 explorer static void
2347 1.3 explorer sppp_lcp_tld(struct sppp *sp)
2348 1.3 explorer {
2349 1.3 explorer STDDCL;
2350 1.3 explorer int i;
2351 1.3 explorer u_long mask;
2352 1.3 explorer
2353 1.3 explorer sp->pp_phase = PHASE_TERMINATE;
2354 1.3 explorer
2355 1.3 explorer if(debug)
2356 1.3 explorer {
2357 1.3 explorer log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
2358 1.3 explorer sppp_phase_name(sp->pp_phase));
2359 1.3 explorer }
2360 1.3 explorer
2361 1.3 explorer /*
2362 1.3 explorer * Take upper layers down. We send the Down event first and
2363 1.3 explorer * the Close second to prevent the upper layers from sending
2364 1.3 explorer * ``a flurry of terminate-request packets'', as the RFC
2365 1.3 explorer * describes it.
2366 1.3 explorer */
2367 1.3 explorer for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
2368 1.3 explorer if (sp->lcp.protos & mask && ((cps[i])->flags & CP_LCP) == 0) {
2369 1.3 explorer (cps[i])->Down(sp);
2370 1.3 explorer (cps[i])->Close(sp);
2371 1.3 explorer }
2372 1.3 explorer }
2373 1.3 explorer
2374 1.3 explorer static void
2375 1.3 explorer sppp_lcp_tls(struct sppp *sp)
2376 1.3 explorer {
2377 1.3 explorer STDDCL;
2378 1.3 explorer
2379 1.3 explorer sp->pp_phase = PHASE_ESTABLISH;
2380 1.3 explorer
2381 1.3 explorer if(debug)
2382 1.3 explorer {
2383 1.3 explorer log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
2384 1.3 explorer sppp_phase_name(sp->pp_phase));
2385 1.3 explorer }
2386 1.3 explorer
2387 1.3 explorer /* Notify lower layer if desired. */
2388 1.3 explorer if (sp->pp_tls)
2389 1.3 explorer (sp->pp_tls)(sp);
2390 1.3 explorer }
2391 1.3 explorer
2392 1.3 explorer static void
2393 1.3 explorer sppp_lcp_tlf(struct sppp *sp)
2394 1.3 explorer {
2395 1.3 explorer STDDCL;
2396 1.3 explorer
2397 1.3 explorer sp->pp_phase = PHASE_DEAD;
2398 1.3 explorer
2399 1.3 explorer if(debug)
2400 1.3 explorer {
2401 1.3 explorer log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
2402 1.3 explorer sppp_phase_name(sp->pp_phase));
2403 1.3 explorer }
2404 1.3 explorer
2405 1.3 explorer /* Notify lower layer if desired. */
2406 1.3 explorer if (sp->pp_tlf)
2407 1.3 explorer (sp->pp_tlf)(sp);
2408 1.3 explorer }
2409 1.3 explorer
2410 1.3 explorer static void
2411 1.3 explorer sppp_lcp_scr(struct sppp *sp)
2412 1.3 explorer {
2413 1.3 explorer char opt[6 /* magicnum */ + 4 /* mru */ + 5 /* chap */];
2414 1.3 explorer int i = 0;
2415 1.3 explorer u_short authproto;
2416 1.3 explorer
2417 1.3 explorer if (sp->lcp.opts & (1 << LCP_OPT_MAGIC)) {
2418 1.3 explorer if (! sp->lcp.magic)
2419 1.3 explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
2420 1.3 explorer sp->lcp.magic = random();
2421 1.3 explorer #else
2422 1.3 explorer sp->lcp.magic = time.tv_sec + time.tv_usec;
2423 1.3 explorer #endif
2424 1.3 explorer opt[i++] = LCP_OPT_MAGIC;
2425 1.3 explorer opt[i++] = 6;
2426 1.3 explorer opt[i++] = sp->lcp.magic >> 24;
2427 1.3 explorer opt[i++] = sp->lcp.magic >> 16;
2428 1.3 explorer opt[i++] = sp->lcp.magic >> 8;
2429 1.3 explorer opt[i++] = sp->lcp.magic;
2430 1.3 explorer }
2431 1.3 explorer
2432 1.3 explorer if (sp->lcp.opts & (1 << LCP_OPT_MRU)) {
2433 1.3 explorer opt[i++] = LCP_OPT_MRU;
2434 1.3 explorer opt[i++] = 4;
2435 1.3 explorer opt[i++] = sp->lcp.mru >> 8;
2436 1.3 explorer opt[i++] = sp->lcp.mru;
2437 1.3 explorer }
2438 1.3 explorer
2439 1.3 explorer if (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) {
2440 1.3 explorer authproto = sp->hisauth.proto;
2441 1.3 explorer opt[i++] = LCP_OPT_AUTH_PROTO;
2442 1.3 explorer opt[i++] = authproto == PPP_CHAP? 5: 4;
2443 1.3 explorer opt[i++] = authproto >> 8;
2444 1.3 explorer opt[i++] = authproto;
2445 1.3 explorer if (authproto == PPP_CHAP)
2446 1.3 explorer opt[i++] = CHAP_MD5;
2447 1.3 explorer }
2448 1.3 explorer
2449 1.3 explorer sp->confid[IDX_LCP] = ++sp->pp_seq;
2450 1.3 explorer sppp_cp_send (sp, PPP_LCP, CONF_REQ, sp->confid[IDX_LCP], i, &opt);
2451 1.3 explorer }
2452 1.3 explorer
2453 1.3 explorer /*
2454 1.3 explorer * Check the open NCPs, return true if at least one NCP is open.
2455 1.3 explorer */
2456 1.3 explorer static int
2457 1.3 explorer sppp_ncp_check(struct sppp *sp)
2458 1.3 explorer {
2459 1.3 explorer int i, mask;
2460 1.3 explorer
2461 1.3 explorer for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
2462 1.3 explorer if (sp->lcp.protos & mask && (cps[i])->flags & CP_NCP)
2463 1.3 explorer return 1;
2464 1.3 explorer return 0;
2465 1.3 explorer }
2466 1.3 explorer
2467 1.3 explorer /*
2468 1.3 explorer * Re-check the open NCPs and see if we should terminate the link.
2469 1.3 explorer * Called by the NCPs during their tlf action handling.
2470 1.3 explorer */
2471 1.3 explorer static void
2472 1.3 explorer sppp_lcp_check_and_close(struct sppp *sp)
2473 1.3 explorer {
2474 1.3 explorer
2475 1.3 explorer if (sp->pp_phase < PHASE_NETWORK)
2476 1.3 explorer /* don't bother, we are already going down */
2477 1.3 explorer return;
2478 1.3 explorer
2479 1.3 explorer if (sppp_ncp_check(sp))
2480 1.3 explorer return;
2481 1.3 explorer
2482 1.3 explorer lcp.Close(sp);
2483 1.3 explorer }
2484 1.3 explorer /*
2486 1.3 explorer *--------------------------------------------------------------------------*
2487 1.3 explorer * *
2488 1.3 explorer * The IPCP implementation. *
2489 1.3 explorer * *
2490 1.3 explorer *--------------------------------------------------------------------------*
2491 1.3 explorer */
2492 1.3 explorer
2493 1.3 explorer static void
2494 1.3 explorer sppp_ipcp_init(struct sppp *sp)
2495 1.3 explorer {
2496 1.3 explorer sp->ipcp.opts = 0;
2497 1.3 explorer sp->ipcp.flags = 0;
2498 1.3 explorer sp->state[IDX_IPCP] = STATE_INITIAL;
2499 1.3 explorer sp->fail_counter[IDX_IPCP] = 0;
2500 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
2501 1.3 explorer callout_handle_init(&sp->ch[IDX_IPCP]);
2502 1.3 explorer #endif
2503 1.3 explorer }
2504 1.3 explorer
2505 1.3 explorer static void
2506 1.3 explorer sppp_ipcp_up(struct sppp *sp)
2507 1.3 explorer {
2508 1.3 explorer sppp_up_event(&ipcp, sp);
2509 1.3 explorer }
2510 1.3 explorer
2511 1.3 explorer static void
2512 1.3 explorer sppp_ipcp_down(struct sppp *sp)
2513 1.3 explorer {
2514 1.3 explorer sppp_down_event(&ipcp, sp);
2515 1.3 explorer }
2516 1.3 explorer
2517 1.3 explorer static void
2518 1.3 explorer sppp_ipcp_open(struct sppp *sp)
2519 1.3 explorer {
2520 1.3 explorer STDDCL;
2521 1.3 explorer u_long myaddr, hisaddr;
2522 1.3 explorer
2523 1.3 explorer sp->ipcp.flags &= ~(IPCP_HISADDR_SEEN|IPCP_MYADDR_SEEN|IPCP_MYADDR_DYN);
2524 1.3 explorer
2525 1.3 explorer sppp_get_ip_addrs(sp, &myaddr, &hisaddr, 0);
2526 1.3 explorer /*
2527 1.3 explorer * If we don't have his address, this probably means our
2528 1.3 explorer * interface doesn't want to talk IP at all. (This could
2529 1.3 explorer * be the case if somebody wants to speak only IPX, for
2530 1.3 explorer * example.) Don't open IPCP in this case.
2531 1.3 explorer */
2532 1.3 explorer if (hisaddr == 0L) {
2533 1.3 explorer /* XXX this message should go away */
2534 1.3 explorer if (debug)
2535 1.3 explorer log(LOG_DEBUG, SPP_FMT "ipcp_open(): no IP interface\n",
2536 1.3 explorer SPP_ARGS(ifp));
2537 1.3 explorer return;
2538 1.3 explorer }
2539 1.3 explorer
2540 1.3 explorer if (myaddr == 0L) {
2541 1.3 explorer /*
2542 1.3 explorer * I don't have an assigned address, so i need to
2543 1.3 explorer * negotiate my address.
2544 1.3 explorer */
2545 1.3 explorer sp->ipcp.flags |= IPCP_MYADDR_DYN;
2546 1.3 explorer sp->ipcp.opts |= (1 << IPCP_OPT_ADDRESS);
2547 1.3 explorer } else
2548 1.3 explorer sp->ipcp.flags |= IPCP_MYADDR_SEEN;
2549 1.3 explorer sppp_open_event(&ipcp, sp);
2550 1.3 explorer }
2551 1.3 explorer
2552 1.3 explorer static void
2553 1.3 explorer sppp_ipcp_close(struct sppp *sp)
2554 1.3 explorer {
2555 1.3 explorer sppp_close_event(&ipcp, sp);
2556 1.3 explorer if (sp->ipcp.flags & IPCP_MYADDR_DYN)
2557 1.3 explorer /*
2558 1.3 explorer * My address was dynamic, clear it again.
2559 1.3 explorer */
2560 1.3 explorer sppp_set_ip_addr(sp, 0L);
2561 1.3 explorer }
2562 1.3 explorer
2563 1.3 explorer static void
2564 1.3 explorer sppp_ipcp_TO(void *cookie)
2565 1.3 explorer {
2566 1.3 explorer sppp_to_event(&ipcp, (struct sppp *)cookie);
2567 1.3 explorer }
2568 1.3 explorer
2569 1.3 explorer /*
2570 1.3 explorer * Analyze a configure request. Return true if it was agreeable, and
2571 1.3 explorer * caused action sca, false if it has been rejected or nak'ed, and
2572 1.3 explorer * caused action scn. (The return value is used to make the state
2573 1.3 explorer * transition decision in the state automaton.)
2574 1.3 explorer */
2575 1.3 explorer static int
2576 1.3 explorer sppp_ipcp_RCR(struct sppp *sp, struct lcp_header *h, int len)
2577 1.3 explorer {
2578 1.3 explorer u_char *buf, *r, *p;
2579 1.3 explorer struct ifnet *ifp = &sp->pp_if;
2580 1.3 explorer int rlen, origlen, debug = ifp->if_flags & IFF_DEBUG;
2581 1.3 explorer u_long hisaddr, desiredaddr;
2582 1.3 explorer int gotmyaddr = 0;
2583 1.3 explorer
2584 1.3 explorer len -= 4;
2585 1.3 explorer origlen = len;
2586 1.3 explorer /*
2587 1.3 explorer * Make sure to allocate a buf that can at least hold a
2588 1.3 explorer * conf-nak with an `address' option. We might need it below.
2589 1.3 explorer */
2590 1.3 explorer buf = r = malloc ((len < 6? 6: len), M_TEMP, M_NOWAIT);
2591 1.3 explorer if (! buf)
2592 1.3 explorer return (0);
2593 1.3 explorer
2594 1.3 explorer /* pass 1: see if we can recognize them */
2595 1.3 explorer if (debug)
2596 1.3 explorer log(LOG_DEBUG, SPP_FMT "ipcp parse opts: ",
2597 1.3 explorer SPP_ARGS(ifp));
2598 1.3 explorer p = (void*) (h+1);
2599 1.3 explorer for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
2600 1.3 explorer if (debug)
2601 1.3 explorer addlog(" %s ", sppp_ipcp_opt_name(*p));
2602 1.3 explorer switch (*p) {
2603 1.3 explorer #ifdef notyet
2604 1.3 explorer case IPCP_OPT_COMPRESSION:
2605 1.3 explorer if (len >= 6 && p[1] >= 6) {
2606 1.3 explorer /* correctly formed compress option */
2607 1.3 explorer continue;
2608 1.3 explorer }
2609 1.3 explorer if (debug)
2610 1.3 explorer addlog("[invalid] ");
2611 1.3 explorer break;
2612 1.3 explorer #endif
2613 1.3 explorer case IPCP_OPT_ADDRESS:
2614 1.3 explorer if (len >= 6 && p[1] == 6) {
2615 1.3 explorer /* correctly formed address option */
2616 1.3 explorer continue;
2617 1.3 explorer }
2618 1.3 explorer if (debug)
2619 1.3 explorer addlog("[invalid] ");
2620 1.3 explorer break;
2621 1.3 explorer default:
2622 1.3 explorer /* Others not supported. */
2623 1.3 explorer if (debug)
2624 1.3 explorer addlog("[rej] ");
2625 1.3 explorer break;
2626 1.3 explorer }
2627 1.3 explorer /* Add the option to rejected list. */
2628 1.3 explorer bcopy (p, r, p[1]);
2629 1.3 explorer r += p[1];
2630 1.3 explorer rlen += p[1];
2631 1.3 explorer }
2632 1.3 explorer if (rlen) {
2633 1.3 explorer if (debug)
2634 1.3 explorer addlog(" send conf-rej\n");
2635 1.3 explorer sppp_cp_send (sp, PPP_IPCP, CONF_REJ, h->ident, rlen, buf);
2636 1.3 explorer return 0;
2637 1.3 explorer } else if (debug)
2638 1.3 explorer addlog("\n");
2639 1.3 explorer
2640 1.3 explorer /* pass 2: parse option values */
2641 1.3 explorer sppp_get_ip_addrs(sp, 0, &hisaddr, 0);
2642 1.3 explorer if (debug)
2643 1.3 explorer log(LOG_DEBUG, SPP_FMT "ipcp parse opt values: ",
2644 1.3 explorer SPP_ARGS(ifp));
2645 1.3 explorer p = (void*) (h+1);
2646 1.3 explorer len = origlen;
2647 1.3 explorer for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
2648 1.3 explorer if (debug)
2649 1.3 explorer addlog(" %s ", sppp_ipcp_opt_name(*p));
2650 1.3 explorer switch (*p) {
2651 1.3 explorer #ifdef notyet
2652 1.3 explorer case IPCP_OPT_COMPRESSION:
2653 1.3 explorer continue;
2654 1.3 explorer #endif
2655 1.3 explorer case IPCP_OPT_ADDRESS:
2656 1.3 explorer desiredaddr = p[2] << 24 | p[3] << 16 |
2657 1.3 explorer p[4] << 8 | p[5];
2658 1.3 explorer if (!(sp->ipcp.flags & IPCP_MYADDR_SEEN) &&
2659 1.3 explorer (sp->ipcp.flags & IPCP_MYADDR_DYN)) {
2660 1.3 explorer /*
2661 1.3 explorer * hopefully this is our address !!
2662 1.3 explorer */
2663 1.3 explorer if (debug)
2664 1.3 explorer addlog("[wantmyaddr %s] ",
2665 1.3 explorer sppp_dotted_quad(desiredaddr));
2666 1.3 explorer /*
2667 1.3 explorer * When doing dynamic address assignment,
2668 1.3 explorer * we accept his offer. Otherwise, we
2669 1.3 explorer * ignore it and thus continue to negotiate
2670 1.3 explorer * our already existing value.
2671 1.3 explorer */
2672 1.3 explorer sppp_set_ip_addr(sp, desiredaddr);
2673 1.3 explorer if (debug)
2674 1.3 explorer addlog("[agree] ");
2675 1.3 explorer sp->ipcp.flags |= IPCP_MYADDR_SEEN;
2676 1.3 explorer gotmyaddr++;
2677 1.3 explorer continue;
2678 1.3 explorer } else {
2679 1.3 explorer if (desiredaddr == hisaddr ||
2680 1.3 explorer (hisaddr == 1 && desiredaddr != 0)) {
2681 1.3 explorer /*
2682 1.3 explorer * Peer's address is same as our value,
2683 1.3 explorer * this is agreeable. Gonna conf-ack
2684 1.3 explorer * it.
2685 1.3 explorer */
2686 1.3 explorer if (debug)
2687 1.3 explorer addlog("%s [ack] ",
2688 1.3 explorer sppp_dotted_quad(hisaddr));
2689 1.3 explorer /* record that we've seen it already */
2690 1.3 explorer sp->ipcp.flags |= IPCP_HISADDR_SEEN;
2691 1.3 explorer continue;
2692 1.3 explorer }
2693 1.3 explorer /*
2694 1.3 explorer * The address wasn't agreeable. This is either
2695 1.3 explorer * he sent us 0.0.0.0, asking to assign him an
2696 1.3 explorer * address, or he send us another address not
2697 1.3 explorer * matching our value. Either case, we gonna
2698 1.3 explorer * conf-nak it with our value.
2699 1.3 explorer */
2700 1.3 explorer if (debug) {
2701 1.3 explorer if (desiredaddr == 0)
2702 1.3 explorer addlog("[addr requested] ");
2703 1.3 explorer else
2704 1.3 explorer addlog("%s [not agreed] ",
2705 1.3 explorer sppp_dotted_quad(desiredaddr));
2706 1.3 explorer }
2707 1.3 explorer
2708 1.3 explorer p[2] = hisaddr >> 24;
2709 1.3 explorer p[3] = hisaddr >> 16;
2710 1.3 explorer p[4] = hisaddr >> 8;
2711 1.3 explorer p[5] = hisaddr;
2712 1.3 explorer break;
2713 1.3 explorer }
2714 1.3 explorer }
2715 1.3 explorer /* Add the option to nak'ed list. */
2716 1.3 explorer bcopy (p, r, p[1]);
2717 1.3 explorer r += p[1];
2718 1.3 explorer rlen += p[1];
2719 1.3 explorer }
2720 1.3 explorer
2721 1.3 explorer /*
2722 1.3 explorer * If we are about to conf-ack the request, but haven't seen
2723 1.3 explorer * his address so far, gonna conf-nak it instead, with the
2724 1.3 explorer * `address' option present and our idea of his address being
2725 1.3 explorer * filled in there, to request negotiation of both addresses.
2726 1.3 explorer *
2727 1.3 explorer * XXX This can result in an endless req - nak loop if peer
2728 1.3 explorer * doesn't want to send us his address. Q: What should we do
2729 1.3 explorer * about it? XXX A: implement the max-failure counter.
2730 1.3 explorer */
2731 1.3 explorer if (rlen == 0 && !(sp->ipcp.flags & IPCP_HISADDR_SEEN) && !gotmyaddr) {
2732 1.3 explorer buf[0] = IPCP_OPT_ADDRESS;
2733 1.3 explorer buf[1] = 6;
2734 1.3 explorer buf[2] = hisaddr >> 24;
2735 1.3 explorer buf[3] = hisaddr >> 16;
2736 1.3 explorer buf[4] = hisaddr >> 8;
2737 1.3 explorer buf[5] = hisaddr;
2738 1.3 explorer rlen = 6;
2739 1.3 explorer if (debug)
2740 1.3 explorer addlog("still need hisaddr ");
2741 1.3 explorer }
2742 1.3 explorer
2743 1.3 explorer if (rlen) {
2744 1.3 explorer if (debug)
2745 1.3 explorer addlog(" send conf-nak\n");
2746 1.3 explorer sppp_cp_send (sp, PPP_IPCP, CONF_NAK, h->ident, rlen, buf);
2747 1.3 explorer } else {
2748 1.3 explorer if (debug)
2749 1.3 explorer addlog(" send conf-ack\n");
2750 1.3 explorer sppp_cp_send (sp, PPP_IPCP, CONF_ACK,
2751 1.3 explorer h->ident, origlen, h+1);
2752 1.3 explorer }
2753 1.3 explorer
2754 1.3 explorer free (buf, M_TEMP);
2755 1.3 explorer return (rlen == 0);
2756 1.3 explorer }
2757 1.3 explorer
2758 1.3 explorer /*
2759 1.3 explorer * Analyze the IPCP Configure-Reject option list, and adjust our
2760 1.3 explorer * negotiation.
2761 1.3 explorer */
2762 1.3 explorer static void
2763 1.3 explorer sppp_ipcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
2764 1.3 explorer {
2765 1.3 explorer u_char *buf, *p;
2766 1.3 explorer struct ifnet *ifp = &sp->pp_if;
2767 1.3 explorer int debug = ifp->if_flags & IFF_DEBUG;
2768 1.3 explorer
2769 1.3 explorer len -= 4;
2770 1.3 explorer buf = malloc (len, M_TEMP, M_NOWAIT);
2771 1.3 explorer if (!buf)
2772 1.3 explorer return;
2773 1.3 explorer
2774 1.3 explorer if (debug)
2775 1.3 explorer log(LOG_DEBUG, SPP_FMT "ipcp rej opts: ",
2776 1.3 explorer SPP_ARGS(ifp));
2777 1.3 explorer
2778 1.3 explorer p = (void*) (h+1);
2779 1.3 explorer for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
2780 1.3 explorer if (debug)
2781 1.3 explorer addlog(" %s ", sppp_ipcp_opt_name(*p));
2782 1.3 explorer switch (*p) {
2783 1.3 explorer case IPCP_OPT_ADDRESS:
2784 1.3 explorer /*
2785 1.3 explorer * Peer doesn't grok address option. This is
2786 1.3 explorer * bad. XXX Should we better give up here?
2787 1.3 explorer */
2788 1.3 explorer sp->ipcp.opts &= ~(1 << IPCP_OPT_ADDRESS);
2789 1.3 explorer break;
2790 1.3 explorer #ifdef notyet
2791 1.3 explorer case IPCP_OPT_COMPRESS:
2792 1.3 explorer sp->ipcp.opts &= ~(1 << IPCP_OPT_COMPRESS);
2793 1.3 explorer break;
2794 1.3 explorer #endif
2795 1.3 explorer }
2796 1.3 explorer }
2797 1.3 explorer if (debug)
2798 1.3 explorer addlog("\n");
2799 1.3 explorer free (buf, M_TEMP);
2800 1.3 explorer return;
2801 1.3 explorer }
2802 1.3 explorer
2803 1.3 explorer /*
2804 1.3 explorer * Analyze the IPCP Configure-NAK option list, and adjust our
2805 1.3 explorer * negotiation.
2806 1.3 explorer */
2807 1.3 explorer static void
2808 1.3 explorer sppp_ipcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
2809 1.3 explorer {
2810 1.3 explorer u_char *buf, *p;
2811 1.3 explorer struct ifnet *ifp = &sp->pp_if;
2812 1.3 explorer int debug = ifp->if_flags & IFF_DEBUG;
2813 1.3 explorer u_long wantaddr;
2814 1.3 explorer
2815 1.3 explorer len -= 4;
2816 1.3 explorer buf = malloc (len, M_TEMP, M_NOWAIT);
2817 1.3 explorer if (!buf)
2818 1.3 explorer return;
2819 1.3 explorer
2820 1.3 explorer if (debug)
2821 1.3 explorer log(LOG_DEBUG, SPP_FMT "ipcp nak opts: ",
2822 1.3 explorer SPP_ARGS(ifp));
2823 1.3 explorer
2824 1.3 explorer p = (void*) (h+1);
2825 1.3 explorer for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
2826 1.3 explorer if (debug)
2827 1.3 explorer addlog(" %s ", sppp_ipcp_opt_name(*p));
2828 1.3 explorer switch (*p) {
2829 1.3 explorer case IPCP_OPT_ADDRESS:
2830 1.3 explorer /*
2831 1.3 explorer * Peer doesn't like our local IP address. See
2832 1.3 explorer * if we can do something for him. We'll drop
2833 1.3 explorer * him our address then.
2834 1.3 explorer */
2835 1.3 explorer if (len >= 6 && p[1] == 6) {
2836 1.3 explorer wantaddr = p[2] << 24 | p[3] << 16 |
2837 1.3 explorer p[4] << 8 | p[5];
2838 1.3 explorer sp->ipcp.opts |= (1 << IPCP_OPT_ADDRESS);
2839 1.3 explorer if (debug)
2840 1.3 explorer addlog("[wantaddr %s] ",
2841 1.3 explorer sppp_dotted_quad(wantaddr));
2842 1.3 explorer /*
2843 1.3 explorer * When doing dynamic address assignment,
2844 1.3 explorer * we accept his offer. Otherwise, we
2845 1.3 explorer * ignore it and thus continue to negotiate
2846 1.3 explorer * our already existing value.
2847 1.3 explorer */
2848 1.3 explorer if (sp->ipcp.flags & IPCP_MYADDR_DYN) {
2849 1.3 explorer sppp_set_ip_addr(sp, wantaddr);
2850 1.3 explorer if (debug)
2851 1.3 explorer addlog("[agree] ");
2852 1.3 explorer sp->ipcp.flags |= IPCP_MYADDR_SEEN;
2853 1.3 explorer }
2854 1.3 explorer }
2855 1.3 explorer break;
2856 1.3 explorer #ifdef notyet
2857 1.3 explorer case IPCP_OPT_COMPRESS:
2858 1.3 explorer /*
2859 1.3 explorer * Peer wants different compression parameters.
2860 1.3 explorer */
2861 1.3 explorer break;
2862 1.3 explorer #endif
2863 1.3 explorer }
2864 1.3 explorer }
2865 1.3 explorer if (debug)
2866 1.3 explorer addlog("\n");
2867 1.3 explorer free (buf, M_TEMP);
2868 1.3 explorer return;
2869 1.3 explorer }
2870 1.3 explorer
2871 1.3 explorer static void
2872 1.3 explorer sppp_ipcp_tlu(struct sppp *sp)
2873 1.3 explorer {
2874 1.3 explorer /* we are up - notify isdn daemon */
2875 1.3 explorer if (sp->pp_con)
2876 1.3 explorer sp->pp_con(sp);
2877 1.3 explorer }
2878 1.3 explorer
2879 1.3 explorer static void
2880 1.3 explorer sppp_ipcp_tld(struct sppp *sp)
2881 1.3 explorer {
2882 1.3 explorer }
2883 1.3 explorer
2884 1.3 explorer static void
2885 1.3 explorer sppp_ipcp_tls(struct sppp *sp)
2886 1.3 explorer {
2887 1.3 explorer /* indicate to LCP that it must stay alive */
2888 1.3 explorer sp->lcp.protos |= (1 << IDX_IPCP);
2889 1.3 explorer }
2890 1.3 explorer
2891 1.3 explorer static void
2892 1.3 explorer sppp_ipcp_tlf(struct sppp *sp)
2893 1.3 explorer {
2894 1.3 explorer /* we no longer need LCP */
2895 1.3 explorer sp->lcp.protos &= ~(1 << IDX_IPCP);
2896 1.3 explorer sppp_lcp_check_and_close(sp);
2897 1.3 explorer }
2898 1.3 explorer
2899 1.3 explorer static void
2900 1.3 explorer sppp_ipcp_scr(struct sppp *sp)
2901 1.3 explorer {
2902 1.3 explorer char opt[6 /* compression */ + 6 /* address */];
2903 1.3 explorer u_long ouraddr;
2904 1.3 explorer int i = 0;
2905 1.3 explorer
2906 1.3 explorer #ifdef notyet
2907 1.3 explorer if (sp->ipcp.opts & (1 << IPCP_OPT_COMPRESSION)) {
2908 1.3 explorer opt[i++] = IPCP_OPT_COMPRESSION;
2909 1.3 explorer opt[i++] = 6;
2910 1.3 explorer opt[i++] = 0; /* VJ header compression */
2911 1.3 explorer opt[i++] = 0x2d; /* VJ header compression */
2912 1.3 explorer opt[i++] = max_slot_id;
2913 1.3 explorer opt[i++] = comp_slot_id;
2914 1.3 explorer }
2915 1.3 explorer #endif
2916 1.3 explorer
2917 1.3 explorer if (sp->ipcp.opts & (1 << IPCP_OPT_ADDRESS)) {
2918 1.3 explorer sppp_get_ip_addrs(sp, &ouraddr, 0, 0);
2919 1.3 explorer opt[i++] = IPCP_OPT_ADDRESS;
2920 1.3 explorer opt[i++] = 6;
2921 1.3 explorer opt[i++] = ouraddr >> 24;
2922 1.3 explorer opt[i++] = ouraddr >> 16;
2923 1.3 explorer opt[i++] = ouraddr >> 8;
2924 1.3 explorer opt[i++] = ouraddr;
2925 1.3 explorer }
2926 1.3 explorer
2927 1.3 explorer sp->confid[IDX_IPCP] = ++sp->pp_seq;
2928 1.3 explorer sppp_cp_send(sp, PPP_IPCP, CONF_REQ, sp->confid[IDX_IPCP], i, &opt);
2929 1.3 explorer }
2930 1.3 explorer
2931 1.3 explorer
2932 1.3 explorer /*
2934 1.3 explorer *--------------------------------------------------------------------------*
2935 1.3 explorer * *
2936 1.3 explorer * The CHAP implementation. *
2937 1.3 explorer * *
2938 1.3 explorer *--------------------------------------------------------------------------*
2939 1.3 explorer */
2940 1.3 explorer
2941 1.3 explorer /*
2942 1.3 explorer * The authentication protocols don't employ a full-fledged state machine as
2943 1.3 explorer * the control protocols do, since they do have Open and Close events, but
2944 1.3 explorer * not Up and Down, nor are they explicitly terminated. Also, use of the
2945 1.3 explorer * authentication protocols may be different in both directions (this makes
2946 1.3 explorer * sense, think of a machine that never accepts incoming calls but only
2947 1.3 explorer * calls out, it doesn't require the called party to authenticate itself).
2948 1.3 explorer *
2949 1.3 explorer * Our state machine for the local authentication protocol (we are requesting
2950 1.3 explorer * the peer to authenticate) looks like:
2951 1.3 explorer *
2952 1.3 explorer * RCA-
2953 1.3 explorer * +--------------------------------------------+
2954 1.3 explorer * V scn,tld|
2955 1.3 explorer * +--------+ Close +---------+ RCA+
2956 1.3 explorer * | |<----------------------------------| |------+
2957 1.3 explorer * +--->| Closed | TO* | Opened | sca |
2958 1.3 explorer * | | |-----+ +-------| |<-----+
2959 1.3 explorer * | +--------+ irc | | +---------+
2960 1.3 explorer * | ^ | | ^
2961 1.3 explorer * | | | | |
2962 1.3 explorer * | | | | |
2963 1.3 explorer * | TO-| | | |
2964 1.3 explorer * | |tld TO+ V | |
2965 1.3 explorer * | | +------->+ | |
2966 1.3 explorer * | | | | | |
2967 1.3 explorer * | +--------+ V | |
2968 1.3 explorer * | | |<----+<--------------------+ |
2969 1.3 explorer * | | Req- | scr |
2970 1.3 explorer * | | Sent | |
2971 1.3 explorer * | | | |
2972 1.3 explorer * | +--------+ |
2973 1.3 explorer * | RCA- | | RCA+ |
2974 1.3 explorer * +------+ +------------------------------------------+
2975 1.3 explorer * scn,tld sca,irc,ict,tlu
2976 1.3 explorer *
2977 1.3 explorer *
2978 1.3 explorer * with:
2979 1.3 explorer *
2980 1.3 explorer * Open: LCP reached authentication phase
2981 1.3 explorer * Close: LCP reached terminate phase
2982 1.3 explorer *
2983 1.3 explorer * RCA+: received reply (pap-req, chap-response), acceptable
2984 1.3 explorer * RCN: received reply (pap-req, chap-response), not acceptable
2985 1.3 explorer * TO+: timeout with restart counter >= 0
2986 1.3 explorer * TO-: timeout with restart counter < 0
2987 1.3 explorer * TO*: reschedule timeout for CHAP
2988 1.3 explorer *
2989 1.3 explorer * scr: send request packet (none for PAP, chap-challenge)
2990 1.3 explorer * sca: send ack packet (pap-ack, chap-success)
2991 1.3 explorer * scn: send nak packet (pap-nak, chap-failure)
2992 1.3 explorer * ict: initialize re-challenge timer (CHAP only)
2993 1.3 explorer *
2994 1.3 explorer * tlu: this-layer-up, LCP reaches network phase
2995 1.3 explorer * tld: this-layer-down, LCP enters terminate phase
2996 1.3 explorer *
2997 1.3 explorer * Note that in CHAP mode, after sending a new challenge, while the state
2998 1.3 explorer * automaton falls back into Req-Sent state, it doesn't signal a tld
2999 1.3 explorer * event to LCP, so LCP remains in network phase. Only after not getting
3000 1.3 explorer * any response (or after getting an unacceptable response), CHAP closes,
3001 1.3 explorer * causing LCP to enter terminate phase.
3002 1.3 explorer *
3003 1.3 explorer * With PAP, there is no initial request that can be sent. The peer is
3004 1.3 explorer * expected to send one based on the successful negotiation of PAP as
3005 1.3 explorer * the authentication protocol during the LCP option negotiation.
3006 1.3 explorer *
3007 1.3 explorer * Incoming authentication protocol requests (remote requests
3008 1.3 explorer * authentication, we are peer) don't employ a state machine at all,
3009 1.3 explorer * they are simply answered. Some peers [Ascend P50 firmware rev
3010 1.3 explorer * 4.50] react allergically when sending IPCP requests while they are
3011 1.3 explorer * still in authentication phase (thereby violating the standard that
3012 1.3 explorer * demands that these NCP packets are to be discarded), so we keep
3013 1.3 explorer * track of the peer demanding us to authenticate, and only proceed to
3014 1.3 explorer * phase network once we've seen a positive acknowledge for the
3015 1.3 explorer * authentication.
3016 1.3 explorer */
3017 1.3 explorer
3018 1.3 explorer /*
3019 1.3 explorer * Handle incoming CHAP packets.
3020 1.3 explorer */
3021 1.3 explorer void
3022 1.3 explorer sppp_chap_input(struct sppp *sp, struct mbuf *m)
3023 1.3 explorer {
3024 1.3 explorer STDDCL;
3025 1.3 explorer struct lcp_header *h;
3026 1.3 explorer int len, x;
3027 1.3 explorer u_char *value, *name, digest[AUTHKEYLEN], dsize;
3028 1.3 explorer int value_len, name_len;
3029 1.3 explorer MD5_CTX ctx;
3030 1.3 explorer
3031 1.3 explorer len = m->m_pkthdr.len;
3032 1.3 explorer if (len < 4) {
3033 1.3 explorer if (debug)
3034 1.3 explorer log(LOG_DEBUG,
3035 1.3 explorer SPP_FMT "chap invalid packet length: %d bytes\n",
3036 1.3 explorer SPP_ARGS(ifp), len);
3037 1.3 explorer return;
3038 1.3 explorer }
3039 1.3 explorer h = mtod (m, struct lcp_header*);
3040 1.3 explorer if (len > ntohs (h->len))
3041 1.3 explorer len = ntohs (h->len);
3042 1.3 explorer
3043 1.3 explorer switch (h->type) {
3044 1.3 explorer /* challenge, failure and success are his authproto */
3045 1.3 explorer case CHAP_CHALLENGE:
3046 1.3 explorer value = 1 + (u_char*)(h+1);
3047 1.3 explorer value_len = value[-1];
3048 1.3 explorer name = value + value_len;
3049 1.3 explorer name_len = len - value_len - 5;
3050 1.3 explorer if (name_len < 0) {
3051 1.3 explorer if (debug) {
3052 1.3 explorer log(LOG_DEBUG,
3053 1.3 explorer SPP_FMT "chap corrupted challenge "
3054 1.3 explorer "<%s id=0x%x len=%d",
3055 1.3 explorer SPP_ARGS(ifp),
3056 1.3 explorer sppp_auth_type_name(PPP_CHAP, h->type),
3057 1.3 explorer h->ident, ntohs(h->len));
3058 1.3 explorer if (len > 4)
3059 1.3 explorer sppp_print_bytes((u_char*) (h+1), len-4);
3060 1.3 explorer addlog(">\n");
3061 1.3 explorer }
3062 1.3 explorer break;
3063 1.3 explorer }
3064 1.3 explorer
3065 1.3 explorer if (debug) {
3066 1.3 explorer log(LOG_DEBUG,
3067 1.3 explorer SPP_FMT "chap input <%s id=0x%x len=%d name=",
3068 1.3 explorer SPP_ARGS(ifp),
3069 1.3 explorer sppp_auth_type_name(PPP_CHAP, h->type), h->ident,
3070 1.3 explorer ntohs(h->len));
3071 1.3 explorer sppp_print_string((char*) name, name_len);
3072 1.3 explorer addlog(" value-size=%d value=", value_len);
3073 1.3 explorer sppp_print_bytes(value, value_len);
3074 1.3 explorer addlog(">\n");
3075 1.3 explorer }
3076 1.3 explorer
3077 1.3 explorer /* Compute reply value. */
3078 1.3 explorer MD5Init(&ctx);
3079 1.3 explorer MD5Update(&ctx, &h->ident, 1);
3080 1.3 explorer MD5Update(&ctx, sp->myauth.secret,
3081 1.3 explorer sppp_strnlen(sp->myauth.secret, AUTHKEYLEN));
3082 1.3 explorer MD5Update(&ctx, value, value_len);
3083 1.3 explorer MD5Final(digest, &ctx);
3084 1.3 explorer dsize = sizeof digest;
3085 1.3 explorer
3086 1.3 explorer sppp_auth_send(&chap, sp, CHAP_RESPONSE, h->ident,
3087 1.3 explorer sizeof dsize, (const char *)&dsize,
3088 1.3 explorer sizeof digest, digest,
3089 1.3 explorer (size_t)sppp_strnlen(sp->myauth.name, AUTHNAMELEN),
3090 1.3 explorer sp->myauth.name,
3091 1.3 explorer 0);
3092 1.3 explorer break;
3093 1.3 explorer
3094 1.3 explorer case CHAP_SUCCESS:
3095 1.3 explorer if (debug) {
3096 1.3 explorer log(LOG_DEBUG, SPP_FMT "chap success",
3097 1.3 explorer SPP_ARGS(ifp));
3098 1.3 explorer if (len > 4) {
3099 1.3 explorer addlog(": ");
3100 1.3 explorer sppp_print_string((char*)(h + 1), len - 4);
3101 1.3 explorer }
3102 1.3 explorer addlog("\n");
3103 1.3 explorer }
3104 1.3 explorer x = splimp();
3105 1.3 explorer sp->pp_flags &= ~PP_NEEDAUTH;
3106 1.3 explorer if (sp->myauth.proto == PPP_CHAP &&
3107 1.3 explorer (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) &&
3108 1.3 explorer (sp->lcp.protos & (1 << IDX_CHAP)) == 0) {
3109 1.3 explorer /*
3110 1.3 explorer * We are authenticator for CHAP but didn't
3111 1.3 explorer * complete yet. Leave it to tlu to proceed
3112 1.3 explorer * to network phase.
3113 1.3 explorer */
3114 1.3 explorer splx(x);
3115 1.3 explorer break;
3116 1.3 explorer }
3117 1.3 explorer splx(x);
3118 1.3 explorer sppp_phase_network(sp);
3119 1.3 explorer break;
3120 1.3 explorer
3121 1.3 explorer case CHAP_FAILURE:
3122 1.3 explorer if (debug) {
3123 1.3 explorer log(LOG_INFO, SPP_FMT "chap failure",
3124 1.3 explorer SPP_ARGS(ifp));
3125 1.3 explorer if (len > 4) {
3126 1.3 explorer addlog(": ");
3127 1.3 explorer sppp_print_string((char*)(h + 1), len - 4);
3128 1.3 explorer }
3129 1.3 explorer addlog("\n");
3130 1.3 explorer } else
3131 1.3 explorer log(LOG_INFO, SPP_FMT "chap failure\n",
3132 1.3 explorer SPP_ARGS(ifp));
3133 1.3 explorer /* await LCP shutdown by authenticator */
3134 1.3 explorer break;
3135 1.3 explorer
3136 1.3 explorer /* response is my authproto */
3137 1.3 explorer case CHAP_RESPONSE:
3138 1.3 explorer value = 1 + (u_char*)(h+1);
3139 1.3 explorer value_len = value[-1];
3140 1.3 explorer name = value + value_len;
3141 1.3 explorer name_len = len - value_len - 5;
3142 1.3 explorer if (name_len < 0) {
3143 1.3 explorer if (debug) {
3144 1.3 explorer log(LOG_DEBUG,
3145 1.3 explorer SPP_FMT "chap corrupted response "
3146 1.3 explorer "<%s id=0x%x len=%d",
3147 1.3 explorer SPP_ARGS(ifp),
3148 1.3 explorer sppp_auth_type_name(PPP_CHAP, h->type),
3149 1.3 explorer h->ident, ntohs(h->len));
3150 1.3 explorer if (len > 4)
3151 1.3 explorer sppp_print_bytes((u_char*)(h+1), len-4);
3152 1.3 explorer addlog(">\n");
3153 1.3 explorer }
3154 1.3 explorer break;
3155 1.3 explorer }
3156 1.3 explorer if (h->ident != sp->confid[IDX_CHAP]) {
3157 1.3 explorer if (debug)
3158 1.3 explorer log(LOG_DEBUG,
3159 1.3 explorer SPP_FMT "chap dropping response for old ID "
3160 1.3 explorer "(got %d, expected %d)\n",
3161 1.3 explorer SPP_ARGS(ifp),
3162 1.3 explorer h->ident, sp->confid[IDX_CHAP]);
3163 1.3 explorer break;
3164 1.3 explorer }
3165 1.3 explorer if (name_len != sppp_strnlen(sp->hisauth.name, AUTHNAMELEN)
3166 1.3 explorer || bcmp(name, sp->hisauth.name, name_len) != 0) {
3167 1.3 explorer log(LOG_INFO, SPP_FMT "chap response, his name ",
3168 1.3 explorer SPP_ARGS(ifp));
3169 1.3 explorer sppp_print_string(name, name_len);
3170 1.3 explorer addlog(" != expected ");
3171 1.3 explorer sppp_print_string(sp->hisauth.name,
3172 1.3 explorer sppp_strnlen(sp->hisauth.name, AUTHNAMELEN));
3173 1.3 explorer addlog("\n");
3174 1.3 explorer }
3175 1.3 explorer if (debug) {
3176 1.3 explorer log(LOG_DEBUG, SPP_FMT "chap input(%s) "
3177 1.3 explorer "<%s id=0x%x len=%d name=",
3178 1.3 explorer SPP_ARGS(ifp),
3179 1.3 explorer sppp_state_name(sp->state[IDX_CHAP]),
3180 1.3 explorer sppp_auth_type_name(PPP_CHAP, h->type),
3181 1.3 explorer h->ident, ntohs (h->len));
3182 1.3 explorer sppp_print_string((char*)name, name_len);
3183 1.3 explorer addlog(" value-size=%d value=", value_len);
3184 1.3 explorer sppp_print_bytes(value, value_len);
3185 1.3 explorer addlog(">\n");
3186 1.3 explorer }
3187 1.3 explorer if (value_len != AUTHKEYLEN) {
3188 1.3 explorer if (debug)
3189 1.3 explorer log(LOG_DEBUG,
3190 1.3 explorer SPP_FMT "chap bad hash value length: "
3191 1.3 explorer "%d bytes, should be %d\n",
3192 1.3 explorer SPP_ARGS(ifp), value_len,
3193 1.3 explorer AUTHKEYLEN);
3194 1.3 explorer break;
3195 1.3 explorer }
3196 1.3 explorer
3197 1.3 explorer MD5Init(&ctx);
3198 1.3 explorer MD5Update(&ctx, &h->ident, 1);
3199 1.3 explorer MD5Update(&ctx, sp->hisauth.secret,
3200 1.3 explorer sppp_strnlen(sp->hisauth.secret, AUTHKEYLEN));
3201 1.3 explorer MD5Update(&ctx, sp->myauth.challenge, AUTHKEYLEN);
3202 1.3 explorer MD5Final(digest, &ctx);
3203 1.3 explorer
3204 1.3 explorer #define FAILMSG "Failed..."
3205 1.3 explorer #define SUCCMSG "Welcome!"
3206 1.3 explorer
3207 1.3 explorer if (value_len != sizeof digest ||
3208 1.3 explorer bcmp(digest, value, value_len) != 0) {
3209 1.3 explorer /* action scn, tld */
3210 1.3 explorer sppp_auth_send(&chap, sp, CHAP_FAILURE, h->ident,
3211 1.3 explorer sizeof(FAILMSG) - 1, (u_char *)FAILMSG,
3212 1.3 explorer 0);
3213 1.3 explorer chap.tld(sp);
3214 1.3 explorer break;
3215 1.3 explorer }
3216 1.3 explorer /* action sca, perhaps tlu */
3217 1.3 explorer if (sp->state[IDX_CHAP] == STATE_REQ_SENT ||
3218 1.3 explorer sp->state[IDX_CHAP] == STATE_OPENED)
3219 1.3 explorer sppp_auth_send(&chap, sp, CHAP_SUCCESS, h->ident,
3220 1.3 explorer sizeof(SUCCMSG) - 1, (u_char *)SUCCMSG,
3221 1.3 explorer 0);
3222 1.3 explorer if (sp->state[IDX_CHAP] == STATE_REQ_SENT) {
3223 1.3 explorer sppp_cp_change_state(&chap, sp, STATE_OPENED);
3224 1.3 explorer chap.tlu(sp);
3225 1.3 explorer }
3226 1.3 explorer break;
3227 1.3 explorer
3228 1.3 explorer default:
3229 1.3 explorer /* Unknown CHAP packet type -- ignore. */
3230 1.3 explorer if (debug) {
3231 1.3 explorer log(LOG_DEBUG, SPP_FMT "chap unknown input(%s) "
3232 1.3 explorer "<0x%x id=0x%xh len=%d",
3233 1.3 explorer SPP_ARGS(ifp),
3234 1.3 explorer sppp_state_name(sp->state[IDX_CHAP]),
3235 1.3 explorer h->type, h->ident, ntohs(h->len));
3236 1.3 explorer if (len > 4)
3237 1.3 explorer sppp_print_bytes((u_char*)(h+1), len-4);
3238 1.3 explorer addlog(">\n");
3239 1.3 explorer }
3240 1.3 explorer break;
3241 1.3 explorer
3242 1.3 explorer }
3243 1.3 explorer }
3244 1.3 explorer
3245 1.3 explorer static void
3246 1.3 explorer sppp_chap_init(struct sppp *sp)
3247 1.3 explorer {
3248 1.3 explorer /* Chap doesn't have STATE_INITIAL at all. */
3249 1.3 explorer sp->state[IDX_CHAP] = STATE_CLOSED;
3250 1.3 explorer sp->fail_counter[IDX_CHAP] = 0;
3251 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3252 1.3 explorer callout_handle_init(&sp->ch[IDX_CHAP]);
3253 1.3 explorer #endif
3254 1.3 explorer }
3255 1.3 explorer
3256 1.3 explorer static void
3257 1.3 explorer sppp_chap_open(struct sppp *sp)
3258 1.3 explorer {
3259 1.3 explorer if (sp->myauth.proto == PPP_CHAP &&
3260 1.3 explorer (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0) {
3261 1.3 explorer /* we are authenticator for CHAP, start it */
3262 1.3 explorer chap.scr(sp);
3263 1.3 explorer sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
3264 1.3 explorer sppp_cp_change_state(&chap, sp, STATE_REQ_SENT);
3265 1.3 explorer }
3266 1.3 explorer /* nothing to be done if we are peer, await a challenge */
3267 1.3 explorer }
3268 1.3 explorer
3269 1.3 explorer static void
3270 1.3 explorer sppp_chap_close(struct sppp *sp)
3271 1.3 explorer {
3272 1.3 explorer if (sp->state[IDX_CHAP] != STATE_CLOSED)
3273 1.3 explorer sppp_cp_change_state(&chap, sp, STATE_CLOSED);
3274 1.3 explorer }
3275 1.3 explorer
3276 1.3 explorer static void
3277 1.3 explorer sppp_chap_TO(void *cookie)
3278 1.3 explorer {
3279 1.3 explorer struct sppp *sp = (struct sppp *)cookie;
3280 1.3 explorer STDDCL;
3281 1.3 explorer int s;
3282 1.3 explorer
3283 1.3 explorer s = splimp();
3284 1.3 explorer if (debug)
3285 1.3 explorer log(LOG_DEBUG, SPP_FMT "chap TO(%s) rst_counter = %d\n",
3286 1.3 explorer SPP_ARGS(ifp),
3287 1.3 explorer sppp_state_name(sp->state[IDX_CHAP]),
3288 1.3 explorer sp->rst_counter[IDX_CHAP]);
3289 1.3 explorer
3290 1.3 explorer if (--sp->rst_counter[IDX_CHAP] < 0)
3291 1.3 explorer /* TO- event */
3292 1.3 explorer switch (sp->state[IDX_CHAP]) {
3293 1.3 explorer case STATE_REQ_SENT:
3294 1.3 explorer chap.tld(sp);
3295 1.3 explorer sppp_cp_change_state(&chap, sp, STATE_CLOSED);
3296 1.3 explorer break;
3297 1.3 explorer }
3298 1.3 explorer else
3299 1.3 explorer /* TO+ (or TO*) event */
3300 1.3 explorer switch (sp->state[IDX_CHAP]) {
3301 1.3 explorer case STATE_OPENED:
3302 1.3 explorer /* TO* event */
3303 1.3 explorer sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
3304 1.3 explorer /* fall through */
3305 1.3 explorer case STATE_REQ_SENT:
3306 1.3 explorer chap.scr(sp);
3307 1.3 explorer /* sppp_cp_change_state() will restart the timer */
3308 1.3 explorer sppp_cp_change_state(&chap, sp, STATE_REQ_SENT);
3309 1.3 explorer break;
3310 1.3 explorer }
3311 1.3 explorer
3312 1.3 explorer splx(s);
3313 1.3 explorer }
3314 1.3 explorer
3315 1.3 explorer static void
3316 1.3 explorer sppp_chap_tlu(struct sppp *sp)
3317 1.3 explorer {
3318 1.3 explorer STDDCL;
3319 1.3 explorer int i, x;
3320 1.3 explorer
3321 1.3 explorer i = 0;
3322 1.3 explorer sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
3323 1.3 explorer
3324 1.3 explorer /*
3325 1.3 explorer * Some broken CHAP implementations (Conware CoNet, firmware
3326 1.3 explorer * 4.0.?) don't want to re-authenticate their CHAP once the
3327 1.3 explorer * initial challenge-response exchange has taken place.
3328 1.3 explorer * Provide for an option to avoid rechallenges.
3329 1.3 explorer */
3330 1.3 explorer if ((sp->hisauth.flags & AUTHFLAG_NORECHALLENGE) == 0) {
3331 1.3 explorer /*
3332 1.3 explorer * Compute the re-challenge timeout. This will yield
3333 1.3 explorer * a number between 300 and 810 seconds.
3334 1.3 explorer */
3335 1.3 explorer i = 300 + ((unsigned)(random() & 0xff00) >> 7);
3336 1.3 explorer
3337 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3338 1.3 explorer sp->ch[IDX_CHAP] =
3339 1.3 explorer #endif
3340 1.3 explorer timeout(chap.TO, (void *)sp, i * hz);
3341 1.3 explorer }
3342 1.3 explorer
3343 1.3 explorer if (debug) {
3344 1.3 explorer log(LOG_DEBUG,
3345 1.3 explorer SPP_FMT "chap %s, ",
3346 1.3 explorer SPP_ARGS(ifp),
3347 1.3 explorer sp->pp_phase == PHASE_NETWORK? "reconfirmed": "tlu");
3348 1.3 explorer if ((sp->hisauth.flags & AUTHFLAG_NORECHALLENGE) == 0)
3349 1.3 explorer addlog("next re-challenge in %d seconds\n", i);
3350 1.3 explorer else
3351 1.3 explorer addlog("re-challenging supressed\n");
3352 1.3 explorer }
3353 1.3 explorer
3354 1.3 explorer x = splimp();
3355 1.3 explorer /* indicate to LCP that we need to be closed down */
3356 1.3 explorer sp->lcp.protos |= (1 << IDX_CHAP);
3357 1.3 explorer
3358 1.3 explorer if (sp->pp_flags & PP_NEEDAUTH) {
3359 1.3 explorer /*
3360 1.3 explorer * Remote is authenticator, but his auth proto didn't
3361 1.3 explorer * complete yet. Defer the transition to network
3362 1.3 explorer * phase.
3363 1.3 explorer */
3364 1.3 explorer splx(x);
3365 1.3 explorer return;
3366 1.3 explorer }
3367 1.3 explorer splx(x);
3368 1.3 explorer
3369 1.3 explorer /*
3370 1.3 explorer * If we are already in phase network, we are done here. This
3371 1.3 explorer * is the case if this is a dummy tlu event after a re-challenge.
3372 1.3 explorer */
3373 1.3 explorer if (sp->pp_phase != PHASE_NETWORK)
3374 1.3 explorer sppp_phase_network(sp);
3375 1.3 explorer }
3376 1.3 explorer
3377 1.3 explorer static void
3378 1.3 explorer sppp_chap_tld(struct sppp *sp)
3379 1.3 explorer {
3380 1.3 explorer STDDCL;
3381 1.3 explorer
3382 1.3 explorer if (debug)
3383 1.3 explorer log(LOG_DEBUG, SPP_FMT "chap tld\n", SPP_ARGS(ifp));
3384 1.3 explorer untimeout(chap.TO, (void *)sp
3385 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3386 1.3 explorer , sp->ch[IDX_CHAP]
3387 1.3 explorer #endif
3388 1.3 explorer );
3389 1.3 explorer sp->lcp.protos &= ~(1 << IDX_CHAP);
3390 1.3 explorer
3391 1.3 explorer lcp.Close(sp);
3392 1.3 explorer }
3393 1.3 explorer
3394 1.3 explorer static void
3395 1.3 explorer sppp_chap_scr(struct sppp *sp)
3396 1.3 explorer {
3397 1.3 explorer struct timeval tv;
3398 1.3 explorer u_long *ch, seed;
3399 1.3 explorer u_char clen;
3400 1.3 explorer
3401 1.3 explorer /* Compute random challenge. */
3402 1.3 explorer ch = (u_long *)sp->myauth.challenge;
3403 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3404 1.3 explorer read_random(&seed, sizeof seed);
3405 1.3 explorer #else
3406 1.3 explorer microtime(&tv);
3407 1.3 explorer seed = tv.tv_sec ^ tv.tv_usec;
3408 1.3 explorer #endif
3409 1.3 explorer ch[0] = seed ^ random();
3410 1.3 explorer ch[1] = seed ^ random();
3411 1.3 explorer ch[2] = seed ^ random();
3412 1.3 explorer ch[3] = seed ^ random();
3413 1.3 explorer clen = AUTHKEYLEN;
3414 1.3 explorer
3415 1.3 explorer sp->confid[IDX_CHAP] = ++sp->pp_seq;
3416 1.3 explorer
3417 1.3 explorer sppp_auth_send(&chap, sp, CHAP_CHALLENGE, sp->confid[IDX_CHAP],
3418 1.3 explorer sizeof clen, (const char *)&clen,
3419 1.3 explorer (size_t)AUTHKEYLEN, sp->myauth.challenge,
3420 1.3 explorer (size_t)sppp_strnlen(sp->myauth.name, AUTHNAMELEN),
3421 1.3 explorer sp->myauth.name,
3422 1.3 explorer 0);
3423 1.3 explorer }
3424 1.3 explorer /*
3426 1.3 explorer *--------------------------------------------------------------------------*
3427 1.3 explorer * *
3428 1.3 explorer * The PAP implementation. *
3429 1.3 explorer * *
3430 1.3 explorer *--------------------------------------------------------------------------*
3431 1.3 explorer */
3432 1.3 explorer /*
3433 1.3 explorer * For PAP, we need to keep a little state also if we are the peer, not the
3434 1.3 explorer * authenticator. This is since we don't get a request to authenticate, but
3435 1.3 explorer * have to repeatedly authenticate ourself until we got a response (or the
3436 1.3 explorer * retry counter is expired).
3437 1.3 explorer */
3438 1.3 explorer
3439 1.3 explorer /*
3440 1.3 explorer * Handle incoming PAP packets. */
3441 1.3 explorer static void
3442 1.3 explorer sppp_pap_input(struct sppp *sp, struct mbuf *m)
3443 1.3 explorer {
3444 1.3 explorer STDDCL;
3445 1.3 explorer struct lcp_header *h;
3446 1.3 explorer int len, x;
3447 1.3 explorer u_char *name, *passwd, mlen;
3448 1.3 explorer int name_len, passwd_len;
3449 1.3 explorer
3450 1.3 explorer len = m->m_pkthdr.len;
3451 1.3 explorer if (len < 5) {
3452 1.3 explorer if (debug)
3453 1.3 explorer log(LOG_DEBUG,
3454 1.3 explorer SPP_FMT "pap invalid packet length: %d bytes\n",
3455 1.3 explorer SPP_ARGS(ifp), len);
3456 1.3 explorer return;
3457 1.3 explorer }
3458 1.3 explorer h = mtod (m, struct lcp_header*);
3459 1.3 explorer if (len > ntohs (h->len))
3460 1.3 explorer len = ntohs (h->len);
3461 1.3 explorer switch (h->type) {
3462 1.3 explorer /* PAP request is my authproto */
3463 1.3 explorer case PAP_REQ:
3464 1.3 explorer name = 1 + (u_char*)(h+1);
3465 1.3 explorer name_len = name[-1];
3466 1.3 explorer passwd = name + name_len + 1;
3467 1.3 explorer if (name_len > len - 6 ||
3468 1.3 explorer (passwd_len = passwd[-1]) > len - 6 - name_len) {
3469 1.3 explorer if (debug) {
3470 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap corrupted input "
3471 1.3 explorer "<%s id=0x%x len=%d",
3472 1.3 explorer SPP_ARGS(ifp),
3473 1.3 explorer sppp_auth_type_name(PPP_PAP, h->type),
3474 1.3 explorer h->ident, ntohs(h->len));
3475 1.3 explorer if (len > 4)
3476 1.3 explorer sppp_print_bytes((u_char*)(h+1), len-4);
3477 1.3 explorer addlog(">\n");
3478 1.3 explorer }
3479 1.3 explorer break;
3480 1.3 explorer }
3481 1.3 explorer if (debug) {
3482 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap input(%s) "
3483 1.3 explorer "<%s id=0x%x len=%d name=",
3484 1.3 explorer SPP_ARGS(ifp),
3485 1.3 explorer sppp_state_name(sp->state[IDX_PAP]),
3486 1.3 explorer sppp_auth_type_name(PPP_PAP, h->type),
3487 1.3 explorer h->ident, ntohs(h->len));
3488 1.3 explorer sppp_print_string((char*)name, name_len);
3489 1.3 explorer addlog(" passwd=");
3490 1.3 explorer sppp_print_string((char*)passwd, passwd_len);
3491 1.3 explorer addlog(">\n");
3492 1.3 explorer }
3493 1.3 explorer if (name_len > AUTHNAMELEN ||
3494 1.3 explorer passwd_len > AUTHKEYLEN ||
3495 1.3 explorer bcmp(name, sp->hisauth.name, name_len) != 0 ||
3496 1.3 explorer bcmp(passwd, sp->hisauth.secret, passwd_len) != 0) {
3497 1.3 explorer /* action scn, tld */
3498 1.3 explorer mlen = sizeof(FAILMSG) - 1;
3499 1.3 explorer sppp_auth_send(&pap, sp, PAP_NAK, h->ident,
3500 1.3 explorer sizeof mlen, (const char *)&mlen,
3501 1.3 explorer sizeof(FAILMSG) - 1, (u_char *)FAILMSG,
3502 1.3 explorer 0);
3503 1.3 explorer pap.tld(sp);
3504 1.3 explorer break;
3505 1.3 explorer }
3506 1.3 explorer /* action sca, perhaps tlu */
3507 1.3 explorer if (sp->state[IDX_PAP] == STATE_REQ_SENT ||
3508 1.3 explorer sp->state[IDX_PAP] == STATE_OPENED) {
3509 1.3 explorer mlen = sizeof(SUCCMSG) - 1;
3510 1.3 explorer sppp_auth_send(&pap, sp, PAP_ACK, h->ident,
3511 1.3 explorer sizeof mlen, (const char *)&mlen,
3512 1.3 explorer sizeof(SUCCMSG) - 1, (u_char *)SUCCMSG,
3513 1.3 explorer 0);
3514 1.3 explorer }
3515 1.3 explorer if (sp->state[IDX_PAP] == STATE_REQ_SENT) {
3516 1.3 explorer sppp_cp_change_state(&pap, sp, STATE_OPENED);
3517 1.3 explorer pap.tlu(sp);
3518 1.3 explorer }
3519 1.3 explorer break;
3520 1.3 explorer
3521 1.3 explorer /* ack and nak are his authproto */
3522 1.3 explorer case PAP_ACK:
3523 1.3 explorer untimeout(sppp_pap_my_TO, (void *)sp
3524 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3525 1.3 explorer , sp->pap_my_to_ch
3526 1.3 explorer #endif
3527 1.3 explorer );
3528 1.3 explorer if (debug) {
3529 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap success",
3530 1.3 explorer SPP_ARGS(ifp));
3531 1.3 explorer name_len = *((char *)h);
3532 1.3 explorer if (len > 5 && name_len) {
3533 1.3 explorer addlog(": ");
3534 1.3 explorer sppp_print_string((char*)(h+1), name_len);
3535 1.3 explorer }
3536 1.3 explorer addlog("\n");
3537 1.3 explorer }
3538 1.3 explorer x = splimp();
3539 1.3 explorer sp->pp_flags &= ~PP_NEEDAUTH;
3540 1.3 explorer if (sp->myauth.proto == PPP_PAP &&
3541 1.3 explorer (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) &&
3542 1.3 explorer (sp->lcp.protos & (1 << IDX_PAP)) == 0) {
3543 1.3 explorer /*
3544 1.3 explorer * We are authenticator for PAP but didn't
3545 1.3 explorer * complete yet. Leave it to tlu to proceed
3546 1.3 explorer * to network phase.
3547 1.3 explorer */
3548 1.3 explorer splx(x);
3549 1.3 explorer break;
3550 1.3 explorer }
3551 1.3 explorer splx(x);
3552 1.3 explorer sppp_phase_network(sp);
3553 1.3 explorer break;
3554 1.3 explorer
3555 1.3 explorer case PAP_NAK:
3556 1.3 explorer untimeout(sppp_pap_my_TO, (void *)sp
3557 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3558 1.3 explorer , sp->pap_my_to_ch
3559 1.3 explorer #endif
3560 1.3 explorer );
3561 1.3 explorer if (debug) {
3562 1.3 explorer log(LOG_INFO, SPP_FMT "pap failure",
3563 1.3 explorer SPP_ARGS(ifp));
3564 1.3 explorer name_len = *((char *)h);
3565 1.3 explorer if (len > 5 && name_len) {
3566 1.3 explorer addlog(": ");
3567 1.3 explorer sppp_print_string((char*)(h+1), name_len);
3568 1.3 explorer }
3569 1.3 explorer addlog("\n");
3570 1.3 explorer } else
3571 1.3 explorer log(LOG_INFO, SPP_FMT "pap failure\n",
3572 1.3 explorer SPP_ARGS(ifp));
3573 1.3 explorer /* await LCP shutdown by authenticator */
3574 1.3 explorer break;
3575 1.3 explorer
3576 1.3 explorer default:
3577 1.3 explorer /* Unknown PAP packet type -- ignore. */
3578 1.3 explorer if (debug) {
3579 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap corrupted input "
3580 1.3 explorer "<0x%x id=0x%x len=%d",
3581 1.3 explorer SPP_ARGS(ifp),
3582 1.3 explorer h->type, h->ident, ntohs(h->len));
3583 1.3 explorer if (len > 4)
3584 1.3 explorer sppp_print_bytes((u_char*)(h+1), len-4);
3585 1.3 explorer addlog(">\n");
3586 1.3 explorer }
3587 1.3 explorer break;
3588 1.3 explorer
3589 1.3 explorer }
3590 1.3 explorer }
3591 1.3 explorer
3592 1.3 explorer static void
3593 1.3 explorer sppp_pap_init(struct sppp *sp)
3594 1.3 explorer {
3595 1.3 explorer /* PAP doesn't have STATE_INITIAL at all. */
3596 1.3 explorer sp->state[IDX_PAP] = STATE_CLOSED;
3597 1.3 explorer sp->fail_counter[IDX_PAP] = 0;
3598 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3599 1.3 explorer callout_handle_init(&sp->ch[IDX_PAP]);
3600 1.3 explorer callout_handle_init(&sp->pap_my_to_ch);
3601 1.3 explorer #endif
3602 1.3 explorer }
3603 1.3 explorer
3604 1.3 explorer static void
3605 1.3 explorer sppp_pap_open(struct sppp *sp)
3606 1.3 explorer {
3607 1.3 explorer if (sp->hisauth.proto == PPP_PAP &&
3608 1.3 explorer (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0) {
3609 1.3 explorer /* we are authenticator for PAP, start our timer */
3610 1.3 explorer sp->rst_counter[IDX_PAP] = sp->lcp.max_configure;
3611 1.3 explorer sppp_cp_change_state(&pap, sp, STATE_REQ_SENT);
3612 1.3 explorer }
3613 1.3 explorer if (sp->myauth.proto == PPP_PAP) {
3614 1.3 explorer /* we are peer, send a request, and start a timer */
3615 1.3 explorer pap.scr(sp);
3616 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3617 1.3 explorer sp->pap_my_to_ch =
3618 1.3 explorer #endif
3619 1.3 explorer timeout(sppp_pap_my_TO, (void *)sp, sp->lcp.timeout);
3620 1.3 explorer }
3621 1.3 explorer }
3622 1.3 explorer
3623 1.3 explorer static void
3624 1.3 explorer sppp_pap_close(struct sppp *sp)
3625 1.3 explorer {
3626 1.3 explorer if (sp->state[IDX_PAP] != STATE_CLOSED)
3627 1.3 explorer sppp_cp_change_state(&pap, sp, STATE_CLOSED);
3628 1.3 explorer }
3629 1.3 explorer
3630 1.3 explorer /*
3631 1.3 explorer * That's the timeout routine if we are authenticator. Since the
3632 1.3 explorer * authenticator is basically passive in PAP, we can't do much here.
3633 1.3 explorer */
3634 1.3 explorer static void
3635 1.3 explorer sppp_pap_TO(void *cookie)
3636 1.3 explorer {
3637 1.3 explorer struct sppp *sp = (struct sppp *)cookie;
3638 1.3 explorer STDDCL;
3639 1.3 explorer int s;
3640 1.3 explorer
3641 1.3 explorer s = splimp();
3642 1.3 explorer if (debug)
3643 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap TO(%s) rst_counter = %d\n",
3644 1.3 explorer SPP_ARGS(ifp),
3645 1.3 explorer sppp_state_name(sp->state[IDX_PAP]),
3646 1.3 explorer sp->rst_counter[IDX_PAP]);
3647 1.3 explorer
3648 1.3 explorer if (--sp->rst_counter[IDX_PAP] < 0)
3649 1.3 explorer /* TO- event */
3650 1.3 explorer switch (sp->state[IDX_PAP]) {
3651 1.3 explorer case STATE_REQ_SENT:
3652 1.3 explorer pap.tld(sp);
3653 1.3 explorer sppp_cp_change_state(&pap, sp, STATE_CLOSED);
3654 1.3 explorer break;
3655 1.3 explorer }
3656 1.3 explorer else
3657 1.3 explorer /* TO+ event, not very much we could do */
3658 1.3 explorer switch (sp->state[IDX_PAP]) {
3659 1.3 explorer case STATE_REQ_SENT:
3660 1.3 explorer /* sppp_cp_change_state() will restart the timer */
3661 1.3 explorer sppp_cp_change_state(&pap, sp, STATE_REQ_SENT);
3662 1.3 explorer break;
3663 1.3 explorer }
3664 1.3 explorer
3665 1.3 explorer splx(s);
3666 1.3 explorer }
3667 1.3 explorer
3668 1.3 explorer /*
3669 1.3 explorer * That's the timeout handler if we are peer. Since the peer is active,
3670 1.3 explorer * we need to retransmit our PAP request since it is apparently lost.
3671 1.3 explorer * XXX We should impose a max counter.
3672 1.3 explorer */
3673 1.3 explorer static void
3674 1.3 explorer sppp_pap_my_TO(void *cookie)
3675 1.3 explorer {
3676 1.3 explorer struct sppp *sp = (struct sppp *)cookie;
3677 1.3 explorer STDDCL;
3678 1.3 explorer
3679 1.3 explorer if (debug)
3680 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap peer TO\n",
3681 1.3 explorer SPP_ARGS(ifp));
3682 1.3 explorer
3683 1.3 explorer pap.scr(sp);
3684 1.3 explorer }
3685 1.3 explorer
3686 1.3 explorer static void
3687 1.3 explorer sppp_pap_tlu(struct sppp *sp)
3688 1.3 explorer {
3689 1.3 explorer STDDCL;
3690 1.3 explorer int x;
3691 1.3 explorer
3692 1.3 explorer sp->rst_counter[IDX_PAP] = sp->lcp.max_configure;
3693 1.3 explorer
3694 1.3 explorer if (debug)
3695 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s tlu\n",
3696 1.3 explorer SPP_ARGS(ifp), pap.name);
3697 1.3 explorer
3698 1.3 explorer x = splimp();
3699 1.3 explorer /* indicate to LCP that we need to be closed down */
3700 1.3 explorer sp->lcp.protos |= (1 << IDX_PAP);
3701 1.3 explorer
3702 1.3 explorer if (sp->pp_flags & PP_NEEDAUTH) {
3703 1.3 explorer /*
3704 1.3 explorer * Remote is authenticator, but his auth proto didn't
3705 1.3 explorer * complete yet. Defer the transition to network
3706 1.3 explorer * phase.
3707 1.3 explorer */
3708 1.3 explorer splx(x);
3709 1.3 explorer return;
3710 1.3 explorer }
3711 1.3 explorer splx(x);
3712 1.3 explorer sppp_phase_network(sp);
3713 1.3 explorer }
3714 1.3 explorer
3715 1.3 explorer static void
3716 1.3 explorer sppp_pap_tld(struct sppp *sp)
3717 1.3 explorer {
3718 1.3 explorer STDDCL;
3719 1.3 explorer
3720 1.3 explorer if (debug)
3721 1.3 explorer log(LOG_DEBUG, SPP_FMT "pap tld\n", SPP_ARGS(ifp));
3722 1.3 explorer untimeout(pap.TO, (void *)sp
3723 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3724 1.3 explorer , sp->ch[IDX_PAP]
3725 1.3 explorer #endif
3726 1.3 explorer );
3727 1.3 explorer untimeout(sppp_pap_my_TO, (void *)sp
3728 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3729 1.3 explorer , sp->pap_my_to_ch
3730 1.3 explorer #endif
3731 1.3 explorer );
3732 1.3 explorer sp->lcp.protos &= ~(1 << IDX_PAP);
3733 1.3 explorer
3734 1.3 explorer lcp.Close(sp);
3735 1.3 explorer }
3736 1.3 explorer
3737 1.3 explorer static void
3738 1.3 explorer sppp_pap_scr(struct sppp *sp)
3739 1.3 explorer {
3740 1.3 explorer u_char idlen, pwdlen;
3741 1.3 explorer
3742 1.3 explorer sp->confid[IDX_PAP] = ++sp->pp_seq;
3743 1.3 explorer pwdlen = sppp_strnlen(sp->myauth.secret, AUTHKEYLEN);
3744 1.3 explorer idlen = sppp_strnlen(sp->myauth.name, AUTHNAMELEN);
3745 1.3 explorer
3746 1.3 explorer sppp_auth_send(&pap, sp, PAP_REQ, sp->confid[IDX_PAP],
3747 1.3 explorer sizeof idlen, (const char *)&idlen,
3748 1.3 explorer (size_t)idlen, sp->myauth.name,
3749 1.3 explorer sizeof pwdlen, (const char *)&pwdlen,
3750 1.3 explorer (size_t)pwdlen, sp->myauth.secret,
3751 1.3 explorer 0);
3752 1.3 explorer }
3753 1.3 explorer /*
3755 1.3 explorer * Random miscellaneous functions.
3756 1.3 explorer */
3757 1.3 explorer
3758 1.3 explorer /*
3759 1.3 explorer * Send a PAP or CHAP proto packet.
3760 1.3 explorer *
3761 1.3 explorer * Varadic function, each of the elements for the ellipsis is of type
3762 1.3 explorer * ``size_t mlen, const u_char *msg''. Processing will stop iff
3763 1.3 explorer * mlen == 0.
3764 1.3 explorer * NOTE: never declare variadic functions with types subject to type
3765 1.3 explorer * promotion (i.e. u_char). This is asking for big trouble depending
3766 1.3 explorer * on the architecture you are on...
3767 1.3 explorer */
3768 1.3 explorer
3769 1.3 explorer static void
3770 1.3 explorer sppp_auth_send(const struct cp *cp, struct sppp *sp,
3771 1.3 explorer unsigned int type, unsigned int id,
3772 1.3 explorer ...)
3773 1.3 explorer {
3774 1.3 explorer STDDCL;
3775 1.3 explorer struct ppp_header *h;
3776 1.3 explorer struct lcp_header *lh;
3777 1.3 explorer struct mbuf *m;
3778 1.3 explorer u_char *p;
3779 1.3 explorer int len;
3780 1.3 explorer unsigned int mlen;
3781 1.3 explorer const char *msg;
3782 1.3 explorer va_list ap;
3783 1.3 explorer
3784 1.3 explorer MGETHDR (m, M_DONTWAIT, MT_DATA);
3785 1.3 explorer if (! m)
3786 1.3 explorer return;
3787 1.3 explorer m->m_pkthdr.rcvif = 0;
3788 1.3 explorer
3789 1.3 explorer h = mtod (m, struct ppp_header*);
3790 1.3 explorer h->address = PPP_ALLSTATIONS; /* broadcast address */
3791 1.3 explorer h->control = PPP_UI; /* Unnumbered Info */
3792 1.3 explorer h->protocol = htons(cp->proto);
3793 1.3 explorer
3794 1.3 explorer lh = (struct lcp_header*)(h + 1);
3795 1.3 explorer lh->type = type;
3796 1.3 explorer lh->ident = id;
3797 1.3 explorer p = (u_char*) (lh+1);
3798 1.3 explorer
3799 1.3 explorer va_start(ap, id);
3800 1.3 explorer len = 0;
3801 1.3 explorer
3802 1.3 explorer while ((mlen = (unsigned int)va_arg(ap, size_t)) != 0) {
3803 1.3 explorer msg = va_arg(ap, const char *);
3804 1.3 explorer len += mlen;
3805 1.3 explorer if (len > MHLEN - PPP_HEADER_LEN - LCP_HEADER_LEN) {
3806 1.3 explorer va_end(ap);
3807 1.3 explorer m_freem(m);
3808 1.3 explorer return;
3809 1.3 explorer }
3810 1.3 explorer
3811 1.3 explorer bcopy(msg, p, mlen);
3812 1.3 explorer p += mlen;
3813 1.3 explorer }
3814 1.3 explorer va_end(ap);
3815 1.3 explorer
3816 1.3 explorer m->m_pkthdr.len = m->m_len = PPP_HEADER_LEN + LCP_HEADER_LEN + len;
3817 1.3 explorer lh->len = htons (LCP_HEADER_LEN + len);
3818 1.3 explorer
3819 1.3 explorer if (debug) {
3820 1.3 explorer log(LOG_DEBUG, SPP_FMT "%s output <%s id=0x%x len=%d",
3821 1.3 explorer SPP_ARGS(ifp), cp->name,
3822 1.3 explorer sppp_auth_type_name(cp->proto, lh->type),
3823 1.3 explorer lh->ident, ntohs(lh->len));
3824 1.3 explorer if (len)
3825 1.3 explorer sppp_print_bytes((u_char*) (lh+1), len);
3826 1.3 explorer addlog(">\n");
3827 1.3 explorer }
3828 1.3 explorer if (IF_QFULL (&sp->pp_cpq)) {
3829 1.3 explorer IF_DROP (&sp->pp_fastq);
3830 1.3 explorer IF_DROP (&ifp->if_snd);
3831 1.3 explorer m_freem (m);
3832 1.3 explorer ++ifp->if_oerrors;
3833 1.3 explorer } else
3834 1.3 explorer IF_ENQUEUE (&sp->pp_cpq, m);
3835 1.3 explorer if (! (ifp->if_flags & IFF_OACTIVE))
3836 1.3 explorer (*ifp->if_start) (ifp);
3837 1.3 explorer ifp->if_obytes += m->m_pkthdr.len + 3;
3838 1.3 explorer }
3839 1.3 explorer
3840 1.3 explorer /*
3841 1.3 explorer * Flush interface queue.
3842 1.3 explorer */
3843 1.3 explorer static void
3844 1.3 explorer sppp_qflush(struct ifqueue *ifq)
3845 1.3 explorer {
3846 1.3 explorer struct mbuf *m, *n;
3847 1.3 explorer
3848 1.3 explorer n = ifq->ifq_head;
3849 1.3 explorer while ((m = n)) {
3850 1.3 explorer n = m->m_act;
3851 1.3 explorer m_freem (m);
3852 1.3 explorer }
3853 1.3 explorer ifq->ifq_head = 0;
3854 1.3 explorer ifq->ifq_tail = 0;
3855 1.3 explorer ifq->ifq_len = 0;
3856 1.3 explorer }
3857 1.3 explorer
3858 1.3 explorer /*
3859 1.3 explorer * Send keepalive packets, every 10 seconds.
3860 1.3 explorer */
3861 1.3 explorer static void
3862 1.3 explorer sppp_keepalive(void *dummy)
3863 1.3 explorer {
3864 1.3 explorer struct sppp *sp;
3865 1.3 explorer int s;
3866 1.3 explorer
3867 1.3 explorer s = splimp();
3868 1.3 explorer for (sp=spppq; sp; sp=sp->pp_next) {
3869 1.3 explorer struct ifnet *ifp = &sp->pp_if;
3870 1.3 explorer
3871 1.3 explorer /* Keepalive mode disabled or channel down? */
3872 1.3 explorer if (! (sp->pp_flags & PP_KEEPALIVE) ||
3873 1.3 explorer ! (ifp->if_flags & IFF_RUNNING))
3874 1.3 explorer continue;
3875 1.3 explorer
3876 1.3 explorer /* No keepalive in PPP mode if LCP not opened yet. */
3877 1.3 explorer if (! (sp->pp_flags & PP_CISCO) &&
3878 1.3 explorer sp->pp_phase < PHASE_AUTHENTICATE)
3879 1.3 explorer continue;
3880 1.3 explorer
3881 1.3 explorer if (sp->pp_alivecnt == MAXALIVECNT) {
3882 1.3 explorer /* No keepalive packets got. Stop the interface. */
3883 1.3 explorer printf (SPP_FMT "down\n", SPP_ARGS(ifp));
3884 1.3 explorer if_down (ifp);
3885 1.3 explorer sppp_qflush (&sp->pp_cpq);
3886 1.3 explorer if (! (sp->pp_flags & PP_CISCO)) {
3887 1.3 explorer /* XXX */
3888 1.3 explorer /* Shut down the PPP link. */
3889 1.3 explorer lcp.Down(sp);
3890 1.3 explorer /* Initiate negotiation. XXX */
3891 1.3 explorer lcp.Up(sp);
3892 1.3 explorer }
3893 1.3 explorer }
3894 1.3 explorer if (sp->pp_alivecnt <= MAXALIVECNT)
3895 1.3 explorer ++sp->pp_alivecnt;
3896 1.3 explorer if (sp->pp_flags & PP_CISCO)
3897 1.3 explorer sppp_cisco_send (sp, CISCO_KEEPALIVE_REQ, ++sp->pp_seq,
3898 1.3 explorer sp->pp_rseq);
3899 1.3 explorer else if (sp->pp_phase >= PHASE_AUTHENTICATE) {
3900 1.3 explorer long nmagic = htonl (sp->lcp.magic);
3901 1.3 explorer sp->lcp.echoid = ++sp->pp_seq;
3902 1.3 explorer sppp_cp_send (sp, PPP_LCP, ECHO_REQ,
3903 1.3 explorer sp->lcp.echoid, 4, &nmagic);
3904 1.3 explorer }
3905 1.3 explorer }
3906 1.3 explorer splx(s);
3907 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3908 1.3 explorer keepalive_ch =
3909 1.3 explorer #endif
3910 1.3 explorer timeout(sppp_keepalive, 0, hz * 10);
3911 1.3 explorer }
3912 1.3 explorer
3913 1.3 explorer /*
3914 1.3 explorer * Get both IP addresses.
3915 1.3 explorer */
3916 1.3 explorer static void
3917 1.3 explorer sppp_get_ip_addrs(struct sppp *sp, u_long *src, u_long *dst, u_long *srcmask)
3918 1.3 explorer {
3919 1.3 explorer struct ifnet *ifp = &sp->pp_if;
3920 1.3 explorer struct ifaddr *ifa;
3921 1.3 explorer struct sockaddr_in *si, *sm;
3922 1.3 explorer u_long ssrc, ddst;
3923 1.3 explorer
3924 1.3 explorer sm = NULL;
3925 1.3 explorer ssrc = ddst = 0L;
3926 1.3 explorer /*
3927 1.3 explorer * Pick the first AF_INET address from the list,
3928 1.3 explorer * aliases don't make any sense on a p2p link anyway.
3929 1.3 explorer */
3930 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3931 1.3 explorer for (ifa = ifp->if_addrhead.tqh_first, si = 0;
3932 1.3 explorer ifa;
3933 1.3 explorer ifa = ifa->ifa_link.tqe_next)
3934 1.3 explorer #elif defined(__NetBSD__) || defined (__OpenBSD__)
3935 1.3 explorer for (ifa = ifp->if_addrlist.tqh_first, si = 0;
3936 1.3 explorer ifa;
3937 1.3 explorer ifa = ifa->ifa_list.tqe_next)
3938 1.3 explorer #else
3939 1.3 explorer for (ifa = ifp->if_addrlist, si = 0;
3940 1.3 explorer ifa;
3941 1.3 explorer ifa = ifa->ifa_next)
3942 1.3 explorer #endif
3943 1.3 explorer if (ifa->ifa_addr->sa_family == AF_INET) {
3944 1.3 explorer si = (struct sockaddr_in *)ifa->ifa_addr;
3945 1.3 explorer sm = (struct sockaddr_in *)ifa->ifa_netmask;
3946 1.3 explorer if (si)
3947 1.3 explorer break;
3948 1.3 explorer }
3949 1.3 explorer if (ifa) {
3950 1.3 explorer if (si && si->sin_addr.s_addr) {
3951 1.3 explorer ssrc = si->sin_addr.s_addr;
3952 1.3 explorer if (srcmask)
3953 1.3 explorer *srcmask = ntohl(sm->sin_addr.s_addr);
3954 1.3 explorer }
3955 1.3 explorer
3956 1.3 explorer si = (struct sockaddr_in *)ifa->ifa_dstaddr;
3957 1.3 explorer if (si && si->sin_addr.s_addr)
3958 1.3 explorer ddst = si->sin_addr.s_addr;
3959 1.3 explorer }
3960 1.3 explorer
3961 1.3 explorer if (dst) *dst = ntohl(ddst);
3962 1.3 explorer if (src) *src = ntohl(ssrc);
3963 1.3 explorer }
3964 1.3 explorer
3965 1.3 explorer /*
3966 1.3 explorer * Set my IP address. Must be called at splimp.
3967 1.3 explorer */
3968 1.3 explorer static void
3969 1.3 explorer sppp_set_ip_addr(struct sppp *sp, u_long src)
3970 1.3 explorer {
3971 1.3 explorer STDDCL;
3972 1.3 explorer struct ifaddr *ifa;
3973 1.3 explorer struct sockaddr_in *si;
3974 1.3 explorer
3975 1.3 explorer /*
3976 1.3 explorer * Pick the first AF_INET address from the list,
3977 1.3 explorer * aliases don't make any sense on a p2p link anyway.
3978 1.3 explorer */
3979 1.3 explorer
3980 1.3 explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
3981 1.3 explorer for (ifa = ifp->if_addrhead.tqh_first, si = 0;
3982 1.3 explorer ifa;
3983 1.3 explorer ifa = ifa->ifa_link.tqe_next)
3984 1.3 explorer #elif defined(__NetBSD__) || defined (__OpenBSD__)
3985 1.3 explorer for (ifa = ifp->if_addrlist.tqh_first, si = 0;
3986 1.3 explorer ifa;
3987 1.3 explorer ifa = ifa->ifa_list.tqe_next)
3988 1.3 explorer #else
3989 1.3 explorer for (ifa = ifp->if_addrlist, si = 0;
3990 1.3 explorer ifa;
3991 1.3 explorer ifa = ifa->ifa_next)
3992 1.3 explorer #endif
3993 1.3 explorer {
3994 1.3 explorer if (ifa->ifa_addr->sa_family == AF_INET)
3995 1.3 explorer {
3996 1.3 explorer si = (struct sockaddr_in *)ifa->ifa_addr;
3997 1.3 explorer if (si)
3998 1.3 explorer break;
3999 1.3 explorer }
4000 1.3 explorer }
4001 1.3 explorer
4002 1.3 explorer if (ifa && si)
4003 1.3 explorer {
4004 1.3 explorer int error;
4005 1.3 explorer #if __NetBSD_Version__ >= 103080000
4006 1.3 explorer struct sockaddr_in new_sin = *si;
4007 1.3 explorer
4008 1.3 explorer new_sin.sin_addr.s_addr = htonl(src);
4009 1.3 explorer error = in_ifinit(ifp, ifatoia(ifa), &new_sin, 1);
4010 1.3 explorer if(debug && error)
4011 1.3 explorer {
4012 1.3 explorer log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: in_ifinit "
4013 1.3 explorer " failed, error=%d\n", SPP_ARGS(ifp), error);
4014 1.3 explorer }
4015 1.3 explorer #else
4016 1.3 explorer /* delete old route */
4017 1.3 explorer error = rtinit(ifa, (int)RTM_DELETE, RTF_HOST);
4018 1.3 explorer if(debug && error)
4019 1.3 explorer {
4020 1.3 explorer log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: rtinit DEL failed, error=%d\n",
4021 1.3 explorer SPP_ARGS(ifp), error);
4022 1.3 explorer }
4023 1.3 explorer
4024 1.3 explorer /* set new address */
4025 1.3 explorer si->sin_addr.s_addr = htonl(src);
4026 1.3 explorer
4027 1.3 explorer /* add new route */
4028 1.3 explorer error = rtinit(ifa, (int)RTM_ADD, RTF_HOST);
4029 1.3 explorer if (debug && error)
4030 1.3 explorer {
4031 1.3 explorer log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: rtinit ADD failed, error=%d",
4032 1.3 explorer SPP_ARGS(ifp), error);
4033 1.3 explorer }
4034 1.3 explorer #endif
4035 1.3 explorer }
4036 1.3 explorer }
4037 1.3 explorer
4038 1.3 explorer static int
4039 1.3 explorer sppp_params(struct sppp *sp, int cmd, void *data)
4040 1.3 explorer {
4041 1.3 explorer int subcmd;
4042 1.3 explorer struct ifreq *ifr = (struct ifreq *)data;
4043 1.3 explorer struct spppreq spr;
4044 1.3 explorer
4045 1.3 explorer /*
4046 1.3 explorer * ifr->ifr_data is supposed to point to a struct spppreq.
4047 1.3 explorer * Check the cmd word first before attempting to fetch all the
4048 1.3 explorer * data.
4049 1.3 explorer */
4050 1.3 explorer if ((subcmd = fuword(ifr->ifr_data)) == -1)
4051 1.3 explorer return EFAULT;
4052 1.3 explorer
4053 1.3 explorer if (copyin((caddr_t)ifr->ifr_data, &spr, sizeof spr) != 0)
4054 1.3 explorer return EFAULT;
4055 1.3 explorer
4056 1.3 explorer switch (subcmd) {
4057 1.3 explorer case SPPPIOGDEFS:
4058 1.3 explorer if (cmd != SIOCGIFGENERIC)
4059 1.3 explorer return EINVAL;
4060 1.3 explorer /*
4061 1.3 explorer * We copy over the entire current state, but clean
4062 1.3 explorer * out some of the stuff we don't wanna pass up.
4063 1.3 explorer * Remember, SIOCGIFGENERIC is unprotected, and can be
4064 1.3 explorer * called by any user. No need to ever get PAP or
4065 1.3 explorer * CHAP secrets back to userland anyway.
4066 1.3 explorer */
4067 1.3 explorer bcopy(sp, &spr.defs, sizeof(struct sppp));
4068 1.3 explorer bzero(spr.defs.myauth.secret, AUTHKEYLEN);
4069 1.3 explorer bzero(spr.defs.myauth.challenge, AUTHKEYLEN);
4070 1.3 explorer bzero(spr.defs.hisauth.secret, AUTHKEYLEN);
4071 1.3 explorer bzero(spr.defs.hisauth.challenge, AUTHKEYLEN);
4072 1.3 explorer return copyout(&spr, (caddr_t)ifr->ifr_data, sizeof spr);
4073 1.3 explorer
4074 1.3 explorer case SPPPIOSDEFS:
4075 1.3 explorer if (cmd != SIOCSIFGENERIC)
4076 1.3 explorer return EINVAL;
4077 1.3 explorer /*
4078 1.3 explorer * We have a very specific idea of which fields we allow
4079 1.3 explorer * being passed back from userland, so to not clobber our
4080 1.3 explorer * current state. For one, we only allow setting
4081 1.3 explorer * anything if LCP is in dead phase. Once the LCP
4082 1.3 explorer * negotiations started, the authentication settings must
4083 1.3 explorer * not be changed again. (The administrator can force an
4084 1.3 explorer * ifconfig down in order to get LCP back into dead
4085 1.3 explorer * phase.)
4086 1.3 explorer *
4087 1.3 explorer * Also, we only allow for authentication parameters to be
4088 1.3 explorer * specified.
4089 1.3 explorer *
4090 1.3 explorer * XXX Should allow to set or clear pp_flags.
4091 1.3 explorer *
4092 1.3 explorer * Finally, if the respective authentication protocol to
4093 1.3 explorer * be used is set differently than 0, but the secret is
4094 1.3 explorer * passed as all zeros, we don't trash the existing secret.
4095 1.3 explorer * This allows an administrator to change the system name
4096 1.3 explorer * only without clobbering the secret (which he didn't get
4097 1.3 explorer * back in a previous SPPPIOGDEFS call). However, the
4098 1.3 explorer * secrets are cleared if the authentication protocol is
4099 1.3 explorer * reset to 0.
4100 1.3 explorer */
4101 1.3 explorer if (sp->pp_phase != PHASE_DEAD)
4102 1.3 explorer return EBUSY;
4103 1.3 explorer
4104 1.3 explorer if ((spr.defs.myauth.proto != 0 && spr.defs.myauth.proto != PPP_PAP &&
4105 1.3 explorer spr.defs.myauth.proto != PPP_CHAP) ||
4106 1.3 explorer (spr.defs.hisauth.proto != 0 && spr.defs.hisauth.proto != PPP_PAP &&
4107 1.3 explorer spr.defs.hisauth.proto != PPP_CHAP))
4108 1.3 explorer return EINVAL;
4109 1.3 explorer
4110 1.3 explorer if (spr.defs.myauth.proto == 0)
4111 1.3 explorer /* resetting myauth */
4112 1.3 explorer bzero(&sp->myauth, sizeof sp->myauth);
4113 1.3 explorer else {
4114 1.3 explorer /* setting/changing myauth */
4115 1.3 explorer sp->myauth.proto = spr.defs.myauth.proto;
4116 1.3 explorer bcopy(spr.defs.myauth.name, sp->myauth.name, AUTHNAMELEN);
4117 1.3 explorer if (spr.defs.myauth.secret[0] != '\0')
4118 1.3 explorer bcopy(spr.defs.myauth.secret, sp->myauth.secret,
4119 1.3 explorer AUTHKEYLEN);
4120 1.3 explorer }
4121 1.3 explorer if (spr.defs.hisauth.proto == 0)
4122 1.3 explorer /* resetting hisauth */
4123 1.3 explorer bzero(&sp->hisauth, sizeof sp->hisauth);
4124 1.3 explorer else {
4125 1.3 explorer /* setting/changing hisauth */
4126 1.3 explorer sp->hisauth.proto = spr.defs.hisauth.proto;
4127 1.3 explorer sp->hisauth.flags = spr.defs.hisauth.flags;
4128 1.3 explorer bcopy(spr.defs.hisauth.name, sp->hisauth.name, AUTHNAMELEN);
4129 1.3 explorer if (spr.defs.hisauth.secret[0] != '\0')
4130 1.3 explorer bcopy(spr.defs.hisauth.secret, sp->hisauth.secret,
4131 1.3 explorer AUTHKEYLEN);
4132 1.3 explorer }
4133 1.3 explorer break;
4134 1.3 explorer
4135 1.3 explorer default:
4136 1.3 explorer return EINVAL;
4137 1.3 explorer }
4138 1.3 explorer
4139 1.3 explorer return 0;
4140 1.3 explorer }
4141 1.3 explorer
4142 1.3 explorer static void
4143 1.3 explorer sppp_phase_network(struct sppp *sp)
4144 1.3 explorer {
4145 1.3 explorer STDDCL;
4146 1.3 explorer int i;
4147 1.3 explorer u_long mask;
4148 1.3 explorer
4149 1.3 explorer sp->pp_phase = PHASE_NETWORK;
4150 1.3 explorer
4151 1.3 explorer if(debug)
4152 1.3 explorer {
4153 1.3 explorer log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
4154 1.3 explorer sppp_phase_name(sp->pp_phase));
4155 1.3 explorer }
4156 1.3 explorer
4157 1.3 explorer /* Notify NCPs now. */
4158 1.3 explorer for (i = 0; i < IDX_COUNT; i++)
4159 1.3 explorer if ((cps[i])->flags & CP_NCP)
4160 1.3 explorer (cps[i])->Open(sp);
4161 1.3 explorer
4162 1.3 explorer /* Send Up events to all NCPs. */
4163 1.3 explorer for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
4164 1.3 explorer if (sp->lcp.protos & mask && ((cps[i])->flags & CP_NCP))
4165 1.3 explorer (cps[i])->Up(sp);
4166 1.1 explorer
4167 1.3 explorer /* if no NCP is starting, all this was in vain, close down */
4168 1.1 explorer sppp_lcp_check_and_close(sp);
4169 1.3 explorer }
4170 1.3 explorer
4171 1.3 explorer
4172 1.3 explorer static const char *
4173 1.3 explorer sppp_cp_type_name(u_char type)
4174 1.3 explorer {
4175 1.3 explorer static char buf[12];
4176 1.3 explorer switch (type) {
4177 1.3 explorer case CONF_REQ: return "conf-req";
4178 1.3 explorer case CONF_ACK: return "conf-ack";
4179 1.3 explorer case CONF_NAK: return "conf-nak";
4180 1.3 explorer case CONF_REJ: return "conf-rej";
4181 1.3 explorer case TERM_REQ: return "term-req";
4182 1.3 explorer case TERM_ACK: return "term-ack";
4183 1.3 explorer case CODE_REJ: return "code-rej";
4184 1.3 explorer case PROTO_REJ: return "proto-rej";
4185 1.3 explorer case ECHO_REQ: return "echo-req";
4186 1.3 explorer case ECHO_REPLY: return "echo-reply";
4187 1.3 explorer case DISC_REQ: return "discard-req";
4188 1.3 explorer }
4189 1.3 explorer sprintf (buf, "0x%x", type);
4190 1.3 explorer return buf;
4191 1.3 explorer }
4192 1.3 explorer
4193 1.3 explorer static const char *
4194 1.3 explorer sppp_auth_type_name(u_short proto, u_char type)
4195 1.3 explorer {
4196 1.3 explorer static char buf[12];
4197 1.3 explorer switch (proto) {
4198 1.3 explorer case PPP_CHAP:
4199 1.3 explorer switch (type) {
4200 1.3 explorer case CHAP_CHALLENGE: return "challenge";
4201 1.3 explorer case CHAP_RESPONSE: return "response";
4202 1.3 explorer case CHAP_SUCCESS: return "success";
4203 1.3 explorer case CHAP_FAILURE: return "failure";
4204 1.3 explorer }
4205 1.3 explorer case PPP_PAP:
4206 1.3 explorer switch (type) {
4207 1.3 explorer case PAP_REQ: return "req";
4208 1.3 explorer case PAP_ACK: return "ack";
4209 1.3 explorer case PAP_NAK: return "nak";
4210 1.3 explorer }
4211 1.3 explorer }
4212 1.3 explorer sprintf (buf, "0x%x", type);
4213 1.3 explorer return buf;
4214 1.3 explorer }
4215 1.3 explorer
4216 1.3 explorer static const char *
4217 1.3 explorer sppp_lcp_opt_name(u_char opt)
4218 1.3 explorer {
4219 1.3 explorer static char buf[12];
4220 1.3 explorer switch (opt) {
4221 1.3 explorer case LCP_OPT_MRU: return "mru";
4222 1.3 explorer case LCP_OPT_ASYNC_MAP: return "async-map";
4223 1.3 explorer case LCP_OPT_AUTH_PROTO: return "auth-proto";
4224 1.3 explorer case LCP_OPT_QUAL_PROTO: return "qual-proto";
4225 1.3 explorer case LCP_OPT_MAGIC: return "magic";
4226 1.3 explorer case LCP_OPT_PROTO_COMP: return "proto-comp";
4227 1.3 explorer case LCP_OPT_ADDR_COMP: return "addr-comp";
4228 1.3 explorer }
4229 1.3 explorer sprintf (buf, "0x%x", opt);
4230 1.3 explorer return buf;
4231 1.3 explorer }
4232 1.3 explorer
4233 1.3 explorer static const char *
4234 1.3 explorer sppp_ipcp_opt_name(u_char opt)
4235 1.3 explorer {
4236 1.3 explorer static char buf[12];
4237 1.3 explorer switch (opt) {
4238 1.3 explorer case IPCP_OPT_ADDRESSES: return "addresses";
4239 1.3 explorer case IPCP_OPT_COMPRESSION: return "compression";
4240 1.3 explorer case IPCP_OPT_ADDRESS: return "address";
4241 1.3 explorer }
4242 1.3 explorer sprintf (buf, "0x%x", opt);
4243 1.3 explorer return buf;
4244 1.3 explorer }
4245 1.3 explorer
4246 1.3 explorer static const char *
4247 1.3 explorer sppp_state_name(int state)
4248 1.3 explorer {
4249 1.3 explorer switch (state) {
4250 1.3 explorer case STATE_INITIAL: return "initial";
4251 1.3 explorer case STATE_STARTING: return "starting";
4252 1.3 explorer case STATE_CLOSED: return "closed";
4253 1.3 explorer case STATE_STOPPED: return "stopped";
4254 1.3 explorer case STATE_CLOSING: return "closing";
4255 1.3 explorer case STATE_STOPPING: return "stopping";
4256 1.3 explorer case STATE_REQ_SENT: return "req-sent";
4257 1.3 explorer case STATE_ACK_RCVD: return "ack-rcvd";
4258 1.3 explorer case STATE_ACK_SENT: return "ack-sent";
4259 1.3 explorer case STATE_OPENED: return "opened";
4260 1.3 explorer }
4261 1.3 explorer return "illegal";
4262 1.3 explorer }
4263 1.3 explorer
4264 1.3 explorer static const char *
4265 1.3 explorer sppp_phase_name(enum ppp_phase phase)
4266 1.3 explorer {
4267 1.3 explorer switch (phase) {
4268 1.3 explorer case PHASE_DEAD: return "dead";
4269 1.3 explorer case PHASE_ESTABLISH: return "establish";
4270 1.3 explorer case PHASE_TERMINATE: return "terminate";
4271 1.3 explorer case PHASE_AUTHENTICATE: return "authenticate";
4272 1.3 explorer case PHASE_NETWORK: return "network";
4273 1.3 explorer }
4274 1.3 explorer return "illegal";
4275 1.3 explorer }
4276 1.3 explorer
4277 1.3 explorer static const char *
4278 1.1 explorer sppp_proto_name(u_short proto)
4279 1.3 explorer {
4280 1.3 explorer static char buf[12];
4281 1.1 explorer switch (proto) {
4282 1.1 explorer case PPP_LCP: return "lcp";
4283 1.1 explorer case PPP_IPCP: return "ipcp";
4284 1.3 explorer case PPP_PAP: return "pap";
4285 1.1 explorer case PPP_CHAP: return "chap";
4286 1.3 explorer }
4287 1.1 explorer sprintf(buf, "0x%x", (unsigned)proto);
4288 1.3 explorer return buf;
4289 1.3 explorer }
4290 1.3 explorer
4291 1.3 explorer static void
4292 1.3 explorer sppp_print_bytes(const u_char *p, u_short len)
4293 1.3 explorer {
4294 1.3 explorer addlog(" %02x", *p++);
4295 1.3 explorer while (--len > 0)
4296 1.3 explorer addlog("-%02x", *p++);
4297 1.3 explorer }
4298 1.3 explorer
4299 1.3 explorer static void
4300 1.3 explorer sppp_print_string(const char *p, u_short len)
4301 1.3 explorer {
4302 1.3 explorer u_char c;
4303 1.3 explorer
4304 1.3 explorer while (len-- > 0) {
4305 1.3 explorer c = *p++;
4306 1.3 explorer /*
4307 1.3 explorer * Print only ASCII chars directly. RFC 1994 recommends
4308 1.3 explorer * using only them, but we don't rely on it. */
4309 1.3 explorer if (c < ' ' || c > '~')
4310 1.3 explorer addlog("\\x%x", c);
4311 1.3 explorer else
4312 1.3 explorer addlog("%c", c);
4313 1.3 explorer }
4314 1.3 explorer }
4315 1.3 explorer
4316 1.3 explorer static const char *
4317 1.3 explorer sppp_dotted_quad(u_long addr)
4318 1.3 explorer {
4319 1.3 explorer static char s[16];
4320 1.3 explorer sprintf(s, "%d.%d.%d.%d",
4321 1.3 explorer (int)((addr >> 24) & 0xff),
4322 1.3 explorer (int)((addr >> 16) & 0xff),
4323 1.3 explorer (int)((addr >> 8) & 0xff),
4324 1.3 explorer (int)(addr & 0xff));
4325 1.3 explorer return s;
4326 1.3 explorer }
4327 1.3 explorer
4328 1.3 explorer static int
4329 1.3 explorer sppp_strnlen(u_char *p, int max)
4330 1.3 explorer {
4331 1.3 explorer int len;
4332 1.3 explorer
4333 1.3 explorer for (len = 0; len < max && *p; ++p)
4334 1.3 explorer ++len;
4335 1.1 explorer return len;
4336 1.3 explorer }
4337 1.3 explorer
4338 1.3 explorer /* a dummy, used to drop uninteresting events */
4339 1.3 explorer static void
4340 1.3 explorer sppp_null(struct sppp *unused)
4341 1.3 explorer {
4342 1.3 explorer /* do just nothing */
4343 }
4344 /*
4345 * This file is large. Tell emacs to highlight it nevertheless.
4346 *
4347 * Local Variables:
4348 * hilit-auto-highlight-maxout: 120000
4349 * End:
4350 */
4351