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if_spppsubr.c revision 1.5.2.5
      1  1.5.2.5    bouyer /*	$NetBSD: if_spppsubr.c,v 1.5.2.5 2001/04/21 17:46:40 bouyer 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  1.5.2.1    bouyer  * RFC2472 IPv6CP support.
     14  1.5.2.1    bouyer  * Copyright (C) 2000, Jun-ichiro itojun Hagino <itojun (at) iijlab.net>.
     15  1.5.2.1    bouyer  *
     16      1.1  explorer  * This software is distributed with NO WARRANTIES, not even the implied
     17      1.1  explorer  * warranties for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
     18      1.1  explorer  *
     19      1.1  explorer  * Authors grant any other persons or organisations permission to use
     20      1.1  explorer  * or modify this software as long as this message is kept with the software,
     21      1.1  explorer  * all derivative works or modified versions.
     22      1.1  explorer  *
     23      1.3  explorer  * From: Version 2.4, Thu Apr 30 17:17:21 MSD 1997
     24      1.3  explorer  *
     25      1.3  explorer  * From: if_spppsubr.c,v 1.39 1998/04/04 13:26:03 phk Exp
     26      1.3  explorer  *
     27      1.4  explorer  * From: Id: if_spppsubr.c,v 1.23 1999/02/23 14:47:50 hm Exp
     28      1.1  explorer  */
     29      1.1  explorer 
     30      1.3  explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
     31      1.1  explorer #include "opt_inet.h"
     32      1.3  explorer #include "opt_ipx.h"
     33      1.3  explorer #include "opt_iso.h"
     34      1.1  explorer #include "opt_ns.h"
     35      1.3  explorer #endif
     36      1.1  explorer 
     37      1.1  explorer #include <sys/param.h>
     38      1.3  explorer 
     39      1.1  explorer #include <sys/systm.h>
     40      1.1  explorer #include <sys/kernel.h>
     41      1.3  explorer #include <sys/sockio.h>
     42      1.1  explorer #include <sys/socket.h>
     43      1.3  explorer #include <sys/syslog.h>
     44      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
     45      1.3  explorer #include <machine/random.h>
     46      1.3  explorer #endif
     47      1.3  explorer #include <sys/malloc.h>
     48      1.1  explorer #include <sys/mbuf.h>
     49      1.1  explorer 
     50      1.3  explorer #if defined (__OpenBSD__)
     51      1.3  explorer #include <sys/md5k.h>
     52      1.3  explorer #else
     53      1.3  explorer #include <sys/md5.h>
     54      1.3  explorer #endif
     55      1.3  explorer 
     56      1.1  explorer #include <net/if.h>
     57      1.1  explorer #include <net/netisr.h>
     58      1.1  explorer #include <net/if_types.h>
     59      1.3  explorer #include <net/route.h>
     60  1.5.2.1    bouyer #include <net/ppp_defs.h>
     61      1.3  explorer 
     62      1.3  explorer #include <machine/stdarg.h>
     63      1.1  explorer 
     64      1.1  explorer #include <netinet/in.h>
     65      1.1  explorer #include <netinet/in_systm.h>
     66      1.1  explorer #include <netinet/in_var.h>
     67  1.5.2.1    bouyer #ifdef INET
     68      1.1  explorer #include <netinet/ip.h>
     69      1.1  explorer #include <netinet/tcp.h>
     70  1.5.2.1    bouyer #endif
     71      1.3  explorer #if defined (__FreeBSD__) || defined (__OpenBSD__)
     72      1.3  explorer #include <netinet/if_ether.h>
     73      1.3  explorer #else
     74      1.3  explorer #include <net/ethertypes.h>
     75      1.1  explorer #endif
     76      1.1  explorer 
     77      1.1  explorer #ifdef IPX
     78      1.1  explorer #include <netipx/ipx.h>
     79      1.1  explorer #include <netipx/ipx_if.h>
     80      1.1  explorer #endif
     81      1.1  explorer 
     82      1.1  explorer #ifdef NS
     83      1.1  explorer #include <netns/ns.h>
     84      1.1  explorer #include <netns/ns_if.h>
     85      1.1  explorer #endif
     86      1.1  explorer 
     87      1.1  explorer #ifdef ISO
     88      1.1  explorer #include <netiso/argo_debug.h>
     89      1.1  explorer #include <netiso/iso.h>
     90      1.1  explorer #include <netiso/iso_var.h>
     91      1.1  explorer #include <netiso/iso_snpac.h>
     92      1.1  explorer #endif
     93      1.1  explorer 
     94      1.3  explorer #if defined(__FreeBSD__) || defined(__NetBSD__)
     95      1.1  explorer #include <net/if_sppp.h>
     96      1.1  explorer #else
     97      1.3  explorer #include <i4b/sppp/if_sppp.h>
     98      1.1  explorer #endif
     99      1.3  explorer #if defined(__NetBSD__) || defined (__OpenBSD__)
    100      1.3  explorer #include <machine/cpu.h> /* XXX for softnet */
    101      1.1  explorer #endif
    102      1.1  explorer 
    103      1.1  explorer #define MAXALIVECNT     3               /* max. alive packets */
    104      1.1  explorer 
    105      1.3  explorer /*
    106      1.3  explorer  * Interface flags that can be set in an ifconfig command.
    107      1.3  explorer  *
    108      1.3  explorer  * Setting link0 will make the link passive, i.e. it will be marked
    109      1.3  explorer  * as being administrative openable, but won't be opened to begin
    110      1.3  explorer  * with.  Incoming calls will be answered, or subsequent calls with
    111      1.3  explorer  * -link1 will cause the administrative open of the LCP layer.
    112      1.3  explorer  *
    113      1.3  explorer  * Setting link1 will cause the link to auto-dial only as packets
    114      1.3  explorer  * arrive to be sent.
    115      1.3  explorer  *
    116      1.3  explorer  * Setting IFF_DEBUG will syslog the option negotiation and state
    117      1.3  explorer  * transitions at level kern.debug.  Note: all logs consistently look
    118      1.3  explorer  * like
    119      1.3  explorer  *
    120      1.3  explorer  *   <if-name><unit>: <proto-name> <additional info...>
    121      1.3  explorer  *
    122      1.3  explorer  * with <if-name><unit> being something like "bppp0", and <proto-name>
    123      1.3  explorer  * being one of "lcp", "ipcp", "cisco", "chap", "pap", etc.
    124      1.3  explorer  */
    125      1.3  explorer 
    126      1.3  explorer #define IFF_PASSIVE	IFF_LINK0	/* wait passively for connection */
    127      1.3  explorer #define IFF_AUTO	IFF_LINK1	/* auto-dial on output */
    128      1.3  explorer 
    129      1.3  explorer #define CONF_REQ	1		/* PPP configure request */
    130      1.3  explorer #define CONF_ACK	2		/* PPP configure acknowledge */
    131      1.3  explorer #define CONF_NAK	3		/* PPP configure negative ack */
    132      1.3  explorer #define CONF_REJ	4		/* PPP configure reject */
    133      1.3  explorer #define TERM_REQ	5		/* PPP terminate request */
    134      1.3  explorer #define TERM_ACK	6		/* PPP terminate acknowledge */
    135      1.3  explorer #define CODE_REJ	7		/* PPP code reject */
    136      1.3  explorer #define PROTO_REJ	8		/* PPP protocol reject */
    137      1.3  explorer #define ECHO_REQ	9		/* PPP echo request */
    138      1.3  explorer #define ECHO_REPLY	10		/* PPP echo reply */
    139      1.3  explorer #define DISC_REQ	11		/* PPP discard request */
    140      1.3  explorer 
    141      1.3  explorer #define LCP_OPT_MRU		1	/* maximum receive unit */
    142      1.3  explorer #define LCP_OPT_ASYNC_MAP	2	/* async control character map */
    143      1.3  explorer #define LCP_OPT_AUTH_PROTO	3	/* authentication protocol */
    144      1.3  explorer #define LCP_OPT_QUAL_PROTO	4	/* quality protocol */
    145      1.3  explorer #define LCP_OPT_MAGIC		5	/* magic number */
    146      1.3  explorer #define LCP_OPT_RESERVED	6	/* reserved */
    147      1.3  explorer #define LCP_OPT_PROTO_COMP	7	/* protocol field compression */
    148      1.3  explorer #define LCP_OPT_ADDR_COMP	8	/* address/control field compression */
    149      1.3  explorer 
    150      1.3  explorer #define IPCP_OPT_ADDRESSES	1	/* both IP addresses; deprecated */
    151  1.5.2.1    bouyer #define IPCP_OPT_COMPRESSION	2	/* IP compression protocol */
    152      1.3  explorer #define IPCP_OPT_ADDRESS	3	/* local IP address */
    153      1.3  explorer 
    154  1.5.2.1    bouyer #define IPV6CP_OPT_IFID		1	/* interface identifier */
    155  1.5.2.1    bouyer #define IPV6CP_OPT_COMPRESSION	2	/* IPv6 compression protocol */
    156  1.5.2.1    bouyer 
    157      1.3  explorer #define PAP_REQ			1	/* PAP name/password request */
    158      1.3  explorer #define PAP_ACK			2	/* PAP acknowledge */
    159      1.3  explorer #define PAP_NAK			3	/* PAP fail */
    160      1.3  explorer 
    161      1.3  explorer #define CHAP_CHALLENGE		1	/* CHAP challenge request */
    162      1.3  explorer #define CHAP_RESPONSE		2	/* CHAP challenge response */
    163      1.3  explorer #define CHAP_SUCCESS		3	/* CHAP response ok */
    164      1.3  explorer #define CHAP_FAILURE		4	/* CHAP response failed */
    165      1.3  explorer 
    166      1.3  explorer #define CHAP_MD5		5	/* hash algorithm - MD5 */
    167      1.3  explorer 
    168      1.3  explorer #define CISCO_MULTICAST		0x8f	/* Cisco multicast address */
    169      1.3  explorer #define CISCO_UNICAST		0x0f	/* Cisco unicast address */
    170      1.3  explorer #define CISCO_KEEPALIVE		0x8035	/* Cisco keepalive protocol */
    171      1.3  explorer #define CISCO_ADDR_REQ		0	/* Cisco address request */
    172      1.3  explorer #define CISCO_ADDR_REPLY	1	/* Cisco address reply */
    173      1.3  explorer #define CISCO_KEEPALIVE_REQ	2	/* Cisco keepalive request */
    174      1.3  explorer 
    175      1.3  explorer /* states are named and numbered according to RFC 1661 */
    176      1.3  explorer #define STATE_INITIAL	0
    177      1.3  explorer #define STATE_STARTING	1
    178      1.3  explorer #define STATE_CLOSED	2
    179      1.3  explorer #define STATE_STOPPED	3
    180      1.3  explorer #define STATE_CLOSING	4
    181      1.3  explorer #define STATE_STOPPING	5
    182      1.3  explorer #define STATE_REQ_SENT	6
    183      1.3  explorer #define STATE_ACK_RCVD	7
    184      1.3  explorer #define STATE_ACK_SENT	8
    185      1.3  explorer #define STATE_OPENED	9
    186      1.1  explorer 
    187      1.1  explorer struct ppp_header {
    188      1.3  explorer 	u_char address;
    189      1.3  explorer 	u_char control;
    190      1.3  explorer 	u_short protocol;
    191  1.5.2.1    bouyer } __attribute__((__packed__));
    192      1.1  explorer #define PPP_HEADER_LEN          sizeof (struct ppp_header)
    193      1.1  explorer 
    194      1.1  explorer struct lcp_header {
    195      1.3  explorer 	u_char type;
    196      1.3  explorer 	u_char ident;
    197      1.3  explorer 	u_short len;
    198  1.5.2.1    bouyer } __attribute__((__packed__));
    199      1.1  explorer #define LCP_HEADER_LEN          sizeof (struct lcp_header)
    200      1.1  explorer 
    201      1.1  explorer struct cisco_packet {
    202      1.3  explorer 	u_long type;
    203      1.3  explorer 	u_long par1;
    204      1.3  explorer 	u_long par2;
    205      1.3  explorer 	u_short rel;
    206      1.3  explorer 	u_short time0;
    207      1.3  explorer 	u_short time1;
    208  1.5.2.1    bouyer } __attribute__((__packed__));
    209      1.1  explorer #define CISCO_PACKET_LEN 18
    210      1.1  explorer 
    211      1.3  explorer /*
    212      1.3  explorer  * We follow the spelling and capitalization of RFC 1661 here, to make
    213      1.3  explorer  * it easier comparing with the standard.  Please refer to this RFC in
    214      1.3  explorer  * case you can't make sense out of these abbreviation; it will also
    215      1.3  explorer  * explain the semantics related to the various events and actions.
    216      1.3  explorer  */
    217      1.3  explorer struct cp {
    218      1.3  explorer 	u_short	proto;		/* PPP control protocol number */
    219      1.3  explorer 	u_char protoidx;	/* index into state table in struct sppp */
    220      1.3  explorer 	u_char flags;
    221      1.3  explorer #define CP_LCP		0x01	/* this is the LCP */
    222      1.3  explorer #define CP_AUTH		0x02	/* this is an authentication protocol */
    223      1.3  explorer #define CP_NCP		0x04	/* this is a NCP */
    224      1.3  explorer #define CP_QUAL		0x08	/* this is a quality reporting protocol */
    225      1.3  explorer 	const char *name;	/* name of this control protocol */
    226      1.3  explorer 	/* event handlers */
    227      1.3  explorer 	void	(*Up)(struct sppp *sp);
    228      1.3  explorer 	void	(*Down)(struct sppp *sp);
    229      1.3  explorer 	void	(*Open)(struct sppp *sp);
    230      1.3  explorer 	void	(*Close)(struct sppp *sp);
    231      1.3  explorer 	void	(*TO)(void *sp);
    232      1.3  explorer 	int	(*RCR)(struct sppp *sp, struct lcp_header *h, int len);
    233      1.3  explorer 	void	(*RCN_rej)(struct sppp *sp, struct lcp_header *h, int len);
    234      1.3  explorer 	void	(*RCN_nak)(struct sppp *sp, struct lcp_header *h, int len);
    235      1.3  explorer 	/* actions */
    236      1.3  explorer 	void	(*tlu)(struct sppp *sp);
    237      1.3  explorer 	void	(*tld)(struct sppp *sp);
    238      1.3  explorer 	void	(*tls)(struct sppp *sp);
    239      1.3  explorer 	void	(*tlf)(struct sppp *sp);
    240      1.3  explorer 	void	(*scr)(struct sppp *sp);
    241      1.3  explorer };
    242      1.3  explorer 
    243      1.1  explorer static struct sppp *spppq;
    244  1.5.2.1    bouyer #if defined(__NetBSD__)
    245  1.5.2.1    bouyer static struct callout keepalive_ch;
    246  1.5.2.1    bouyer #endif
    247      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
    248      1.3  explorer static struct callout_handle keepalive_ch;
    249      1.3  explorer #endif
    250      1.3  explorer 
    251      1.3  explorer #ifdef __FreeBSD__
    252      1.3  explorer #define	SPP_FMT		"%s%d: "
    253      1.3  explorer #define	SPP_ARGS(ifp)	(ifp)->if_name, (ifp)->if_unit
    254      1.3  explorer #else
    255      1.3  explorer #define	SPP_FMT		"%s: "
    256      1.3  explorer #define	SPP_ARGS(ifp)	(ifp)->if_xname
    257      1.3  explorer #endif
    258      1.1  explorer 
    259  1.5.2.1    bouyer #ifdef INET
    260      1.1  explorer /*
    261      1.1  explorer  * The following disgusting hack gets around the problem that IP TOS
    262      1.1  explorer  * can't be set yet.  We want to put "interactive" traffic on a high
    263      1.1  explorer  * priority queue.  To decide if traffic is interactive, we check that
    264      1.1  explorer  * a) it is TCP and b) one of its ports is telnet, rlogin or ftp control.
    265      1.3  explorer  *
    266      1.3  explorer  * XXX is this really still necessary?  - joerg -
    267      1.1  explorer  */
    268      1.3  explorer static u_short interactive_ports[8] = {
    269      1.1  explorer 	0,	513,	0,	0,
    270      1.1  explorer 	0,	21,	0,	23,
    271      1.1  explorer };
    272      1.1  explorer #define INTERACTIVE(p) (interactive_ports[(p) & 7] == (p))
    273  1.5.2.1    bouyer #endif
    274      1.1  explorer 
    275      1.3  explorer /* almost every function needs these */
    276      1.3  explorer #define STDDCL							\
    277      1.3  explorer 	struct ifnet *ifp = &sp->pp_if;				\
    278      1.3  explorer 	int debug = ifp->if_flags & IFF_DEBUG
    279      1.3  explorer 
    280      1.3  explorer static int sppp_output(struct ifnet *ifp, struct mbuf *m,
    281      1.3  explorer 		       struct sockaddr *dst, struct rtentry *rt);
    282      1.3  explorer 
    283      1.3  explorer static void sppp_cisco_send(struct sppp *sp, int type, long par1, long par2);
    284      1.3  explorer static void sppp_cisco_input(struct sppp *sp, struct mbuf *m);
    285      1.3  explorer 
    286      1.3  explorer static void sppp_cp_input(const struct cp *cp, struct sppp *sp,
    287      1.3  explorer 			  struct mbuf *m);
    288      1.3  explorer static void sppp_cp_send(struct sppp *sp, u_short proto, u_char type,
    289      1.3  explorer 			 u_char ident, u_short len, void *data);
    290      1.3  explorer /* static void sppp_cp_timeout(void *arg); */
    291      1.3  explorer static void sppp_cp_change_state(const struct cp *cp, struct sppp *sp,
    292      1.3  explorer 				 int newstate);
    293      1.3  explorer static void sppp_auth_send(const struct cp *cp,
    294      1.3  explorer 			   struct sppp *sp, unsigned int type, unsigned int id,
    295      1.3  explorer 			   ...);
    296      1.3  explorer 
    297      1.3  explorer static void sppp_up_event(const struct cp *cp, struct sppp *sp);
    298      1.3  explorer static void sppp_down_event(const struct cp *cp, struct sppp *sp);
    299      1.3  explorer static void sppp_open_event(const struct cp *cp, struct sppp *sp);
    300      1.3  explorer static void sppp_close_event(const struct cp *cp, struct sppp *sp);
    301      1.3  explorer static void sppp_to_event(const struct cp *cp, struct sppp *sp);
    302      1.3  explorer 
    303      1.3  explorer static void sppp_null(struct sppp *sp);
    304      1.3  explorer 
    305      1.3  explorer static void sppp_lcp_init(struct sppp *sp);
    306      1.3  explorer static void sppp_lcp_up(struct sppp *sp);
    307      1.3  explorer static void sppp_lcp_down(struct sppp *sp);
    308      1.3  explorer static void sppp_lcp_open(struct sppp *sp);
    309      1.3  explorer static void sppp_lcp_close(struct sppp *sp);
    310      1.3  explorer static void sppp_lcp_TO(void *sp);
    311      1.3  explorer static int sppp_lcp_RCR(struct sppp *sp, struct lcp_header *h, int len);
    312      1.3  explorer static void sppp_lcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len);
    313      1.3  explorer static void sppp_lcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len);
    314      1.3  explorer static void sppp_lcp_tlu(struct sppp *sp);
    315      1.3  explorer static void sppp_lcp_tld(struct sppp *sp);
    316      1.3  explorer static void sppp_lcp_tls(struct sppp *sp);
    317      1.3  explorer static void sppp_lcp_tlf(struct sppp *sp);
    318      1.3  explorer static void sppp_lcp_scr(struct sppp *sp);
    319      1.3  explorer static void sppp_lcp_check_and_close(struct sppp *sp);
    320      1.3  explorer static int sppp_ncp_check(struct sppp *sp);
    321      1.3  explorer 
    322      1.3  explorer static void sppp_ipcp_init(struct sppp *sp);
    323      1.3  explorer static void sppp_ipcp_up(struct sppp *sp);
    324      1.3  explorer static void sppp_ipcp_down(struct sppp *sp);
    325      1.3  explorer static void sppp_ipcp_open(struct sppp *sp);
    326      1.3  explorer static void sppp_ipcp_close(struct sppp *sp);
    327      1.3  explorer static void sppp_ipcp_TO(void *sp);
    328      1.3  explorer static int sppp_ipcp_RCR(struct sppp *sp, struct lcp_header *h, int len);
    329      1.3  explorer static void sppp_ipcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len);
    330      1.3  explorer static void sppp_ipcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len);
    331      1.3  explorer static void sppp_ipcp_tlu(struct sppp *sp);
    332      1.3  explorer static void sppp_ipcp_tld(struct sppp *sp);
    333      1.3  explorer static void sppp_ipcp_tls(struct sppp *sp);
    334      1.3  explorer static void sppp_ipcp_tlf(struct sppp *sp);
    335      1.3  explorer static void sppp_ipcp_scr(struct sppp *sp);
    336      1.3  explorer 
    337  1.5.2.1    bouyer static void sppp_ipv6cp_init(struct sppp *sp);
    338  1.5.2.1    bouyer static void sppp_ipv6cp_up(struct sppp *sp);
    339  1.5.2.1    bouyer static void sppp_ipv6cp_down(struct sppp *sp);
    340  1.5.2.1    bouyer static void sppp_ipv6cp_open(struct sppp *sp);
    341  1.5.2.1    bouyer static void sppp_ipv6cp_close(struct sppp *sp);
    342  1.5.2.1    bouyer static void sppp_ipv6cp_TO(void *sp);
    343  1.5.2.1    bouyer static int sppp_ipv6cp_RCR(struct sppp *sp, struct lcp_header *h, int len);
    344  1.5.2.1    bouyer static void sppp_ipv6cp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len);
    345  1.5.2.1    bouyer static void sppp_ipv6cp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len);
    346  1.5.2.1    bouyer static void sppp_ipv6cp_tlu(struct sppp *sp);
    347  1.5.2.1    bouyer static void sppp_ipv6cp_tld(struct sppp *sp);
    348  1.5.2.1    bouyer static void sppp_ipv6cp_tls(struct sppp *sp);
    349  1.5.2.1    bouyer static void sppp_ipv6cp_tlf(struct sppp *sp);
    350  1.5.2.1    bouyer static void sppp_ipv6cp_scr(struct sppp *sp);
    351  1.5.2.1    bouyer 
    352      1.3  explorer static void sppp_pap_input(struct sppp *sp, struct mbuf *m);
    353      1.3  explorer static void sppp_pap_init(struct sppp *sp);
    354      1.3  explorer static void sppp_pap_open(struct sppp *sp);
    355      1.3  explorer static void sppp_pap_close(struct sppp *sp);
    356      1.3  explorer static void sppp_pap_TO(void *sp);
    357      1.3  explorer static void sppp_pap_my_TO(void *sp);
    358      1.3  explorer static void sppp_pap_tlu(struct sppp *sp);
    359      1.3  explorer static void sppp_pap_tld(struct sppp *sp);
    360      1.3  explorer static void sppp_pap_scr(struct sppp *sp);
    361      1.3  explorer 
    362      1.3  explorer static void sppp_chap_input(struct sppp *sp, struct mbuf *m);
    363      1.3  explorer static void sppp_chap_init(struct sppp *sp);
    364      1.3  explorer static void sppp_chap_open(struct sppp *sp);
    365      1.3  explorer static void sppp_chap_close(struct sppp *sp);
    366      1.3  explorer static void sppp_chap_TO(void *sp);
    367      1.3  explorer static void sppp_chap_tlu(struct sppp *sp);
    368      1.3  explorer static void sppp_chap_tld(struct sppp *sp);
    369      1.3  explorer static void sppp_chap_scr(struct sppp *sp);
    370      1.3  explorer 
    371      1.3  explorer static const char *sppp_auth_type_name(u_short proto, u_char type);
    372      1.3  explorer static const char *sppp_cp_type_name(u_char type);
    373      1.3  explorer static const char *sppp_dotted_quad(u_long addr);
    374      1.3  explorer static const char *sppp_ipcp_opt_name(u_char opt);
    375  1.5.2.1    bouyer #ifdef INET6
    376  1.5.2.1    bouyer static const char *sppp_ipv6cp_opt_name(u_char opt);
    377  1.5.2.1    bouyer #endif
    378      1.3  explorer static const char *sppp_lcp_opt_name(u_char opt);
    379      1.3  explorer static const char *sppp_phase_name(enum ppp_phase phase);
    380      1.3  explorer static const char *sppp_proto_name(u_short proto);
    381      1.3  explorer static const char *sppp_state_name(int state);
    382      1.3  explorer static int sppp_params(struct sppp *sp, int cmd, void *data);
    383      1.3  explorer static int sppp_strnlen(u_char *p, int max);
    384      1.3  explorer static void sppp_get_ip_addrs(struct sppp *sp, u_long *src, u_long *dst,
    385      1.3  explorer 			      u_long *srcmask);
    386      1.3  explorer static void sppp_keepalive(void *dummy);
    387      1.3  explorer static void sppp_phase_network(struct sppp *sp);
    388      1.3  explorer static void sppp_print_bytes(const u_char *p, u_short len);
    389      1.3  explorer static void sppp_print_string(const char *p, u_short len);
    390      1.3  explorer static void sppp_set_ip_addr(struct sppp *sp, u_long src);
    391  1.5.2.1    bouyer #ifdef INET6
    392  1.5.2.1    bouyer static void sppp_get_ip6_addrs(struct sppp *sp, struct in6_addr *src,
    393  1.5.2.1    bouyer 				struct in6_addr *dst, struct in6_addr *srcmask);
    394  1.5.2.1    bouyer #ifdef IPV6CP_MYIFID_DYN
    395  1.5.2.1    bouyer static void sppp_set_ip6_addr(struct sppp *sp, const struct in6_addr *src);
    396  1.5.2.1    bouyer static void sppp_gen_ip6_addr(struct sppp *sp, const struct in6_addr *src);
    397  1.5.2.1    bouyer #endif
    398  1.5.2.1    bouyer static void sppp_suggest_ip6_addr(struct sppp *sp, struct in6_addr *src);
    399  1.5.2.1    bouyer #endif
    400      1.3  explorer 
    401      1.3  explorer /* our control protocol descriptors */
    402      1.3  explorer static const struct cp lcp = {
    403      1.3  explorer 	PPP_LCP, IDX_LCP, CP_LCP, "lcp",
    404      1.3  explorer 	sppp_lcp_up, sppp_lcp_down, sppp_lcp_open, sppp_lcp_close,
    405      1.3  explorer 	sppp_lcp_TO, sppp_lcp_RCR, sppp_lcp_RCN_rej, sppp_lcp_RCN_nak,
    406      1.3  explorer 	sppp_lcp_tlu, sppp_lcp_tld, sppp_lcp_tls, sppp_lcp_tlf,
    407      1.3  explorer 	sppp_lcp_scr
    408      1.3  explorer };
    409      1.3  explorer 
    410      1.3  explorer static const struct cp ipcp = {
    411  1.5.2.3    bouyer 	PPP_IPCP, IDX_IPCP,
    412  1.5.2.3    bouyer #ifdef INET
    413  1.5.2.3    bouyer 	CP_NCP,	/*don't run IPCP if there's no IPv4 support*/
    414  1.5.2.3    bouyer #else
    415  1.5.2.3    bouyer 	0,
    416  1.5.2.3    bouyer #endif
    417  1.5.2.3    bouyer 	"ipcp",
    418      1.3  explorer 	sppp_ipcp_up, sppp_ipcp_down, sppp_ipcp_open, sppp_ipcp_close,
    419      1.3  explorer 	sppp_ipcp_TO, sppp_ipcp_RCR, sppp_ipcp_RCN_rej, sppp_ipcp_RCN_nak,
    420      1.3  explorer 	sppp_ipcp_tlu, sppp_ipcp_tld, sppp_ipcp_tls, sppp_ipcp_tlf,
    421      1.3  explorer 	sppp_ipcp_scr
    422      1.3  explorer };
    423      1.3  explorer 
    424  1.5.2.1    bouyer static const struct cp ipv6cp = {
    425  1.5.2.1    bouyer 	PPP_IPV6CP, IDX_IPV6CP,
    426  1.5.2.1    bouyer #ifdef INET6	/*don't run IPv6CP if there's no IPv6 support*/
    427  1.5.2.1    bouyer 	CP_NCP,
    428  1.5.2.1    bouyer #else
    429  1.5.2.1    bouyer 	0,
    430  1.5.2.1    bouyer #endif
    431  1.5.2.1    bouyer 	"ipv6cp",
    432  1.5.2.1    bouyer 	sppp_ipv6cp_up, sppp_ipv6cp_down, sppp_ipv6cp_open, sppp_ipv6cp_close,
    433  1.5.2.1    bouyer 	sppp_ipv6cp_TO, sppp_ipv6cp_RCR, sppp_ipv6cp_RCN_rej, sppp_ipv6cp_RCN_nak,
    434  1.5.2.1    bouyer 	sppp_ipv6cp_tlu, sppp_ipv6cp_tld, sppp_ipv6cp_tls, sppp_ipv6cp_tlf,
    435  1.5.2.1    bouyer 	sppp_ipv6cp_scr
    436  1.5.2.1    bouyer };
    437  1.5.2.1    bouyer 
    438      1.3  explorer static const struct cp pap = {
    439      1.3  explorer 	PPP_PAP, IDX_PAP, CP_AUTH, "pap",
    440      1.3  explorer 	sppp_null, sppp_null, sppp_pap_open, sppp_pap_close,
    441      1.3  explorer 	sppp_pap_TO, 0, 0, 0,
    442      1.3  explorer 	sppp_pap_tlu, sppp_pap_tld, sppp_null, sppp_null,
    443      1.3  explorer 	sppp_pap_scr
    444      1.3  explorer };
    445      1.3  explorer 
    446      1.3  explorer static const struct cp chap = {
    447      1.3  explorer 	PPP_CHAP, IDX_CHAP, CP_AUTH, "chap",
    448      1.3  explorer 	sppp_null, sppp_null, sppp_chap_open, sppp_chap_close,
    449      1.3  explorer 	sppp_chap_TO, 0, 0, 0,
    450      1.3  explorer 	sppp_chap_tlu, sppp_chap_tld, sppp_null, sppp_null,
    451      1.3  explorer 	sppp_chap_scr
    452      1.3  explorer };
    453      1.3  explorer 
    454      1.3  explorer static const struct cp *cps[IDX_COUNT] = {
    455      1.3  explorer 	&lcp,			/* IDX_LCP */
    456      1.3  explorer 	&ipcp,			/* IDX_IPCP */
    457  1.5.2.1    bouyer 	&ipv6cp,		/* IDX_IPV6CP */
    458      1.3  explorer 	&pap,			/* IDX_PAP */
    459      1.3  explorer 	&chap,			/* IDX_CHAP */
    460      1.3  explorer };
    461      1.1  explorer 
    462      1.1  explorer 
    463      1.3  explorer /*
    465      1.1  explorer  * Exported functions, comprising our interface to the lower layer.
    466      1.1  explorer  */
    467      1.1  explorer 
    468      1.1  explorer /*
    469      1.1  explorer  * Process the received packet.
    470      1.3  explorer  */
    471      1.3  explorer void
    472      1.1  explorer sppp_input(struct ifnet *ifp, struct mbuf *m)
    473  1.5.2.5    bouyer {
    474      1.1  explorer 	struct ppp_header *h = NULL;
    475  1.5.2.5    bouyer 	struct ifqueue *inq = 0;
    476      1.1  explorer 	u_int16_t protocol;
    477      1.3  explorer 	int s;
    478      1.3  explorer 	struct sppp *sp = (struct sppp *)ifp;
    479      1.1  explorer 	int debug = ifp->if_flags & IFF_DEBUG;
    480      1.1  explorer 
    481  1.5.2.5    bouyer 	if (ifp->if_flags & IFF_UP)
    482  1.5.2.5    bouyer 		/* Count received bytes, add hardware framing */
    483      1.1  explorer 		ifp->if_ibytes += m->m_pkthdr.len + sp->pp_framebytes;
    484      1.1  explorer 
    485      1.1  explorer 	if (m->m_pkthdr.len <= PPP_HEADER_LEN) {
    486      1.3  explorer 		/* Too small packet, drop it. */
    487      1.3  explorer 		if (debug)
    488      1.3  explorer 			log(LOG_DEBUG,
    489      1.3  explorer 			    SPP_FMT "input packet is too small, %d bytes\n",
    490      1.3  explorer 			    SPP_ARGS(ifp), m->m_pkthdr.len);
    491      1.3  explorer 	  drop:
    492      1.3  explorer 		++ifp->if_ierrors;
    493      1.1  explorer 		++ifp->if_iqdrops;
    494      1.1  explorer 		m_freem (m);
    495      1.1  explorer 		return;
    496      1.1  explorer 	}
    497  1.5.2.5    bouyer 
    498  1.5.2.5    bouyer 	if (sp->pp_flags & PP_NOFRAMING) {
    499  1.5.2.5    bouyer 		protocol = *(mtod(m, u_int16_t*));
    500  1.5.2.5    bouyer 		protocol = ntohs(protocol);
    501  1.5.2.5    bouyer 		m_adj(m, 2);
    502      1.1  explorer 	} else {
    503  1.5.2.5    bouyer 
    504  1.5.2.5    bouyer 		/* Get PPP header. */
    505  1.5.2.5    bouyer 		h = mtod (m, struct ppp_header*);
    506  1.5.2.5    bouyer 		m_adj (m, PPP_HEADER_LEN);
    507  1.5.2.5    bouyer 
    508  1.5.2.5    bouyer 		switch (h->address) {
    509  1.5.2.5    bouyer 		case PPP_ALLSTATIONS:
    510  1.5.2.5    bouyer 			if (h->control != PPP_UI)
    511  1.5.2.5    bouyer 				goto invalid;
    512  1.5.2.5    bouyer 			if (sp->pp_flags & PP_CISCO) {
    513  1.5.2.5    bouyer 				if (debug)
    514  1.5.2.5    bouyer 					log(LOG_DEBUG,
    515  1.5.2.5    bouyer 					    SPP_FMT "PPP packet in Cisco mode "
    516  1.5.2.5    bouyer 					    "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
    517  1.5.2.5    bouyer 					    SPP_ARGS(ifp),
    518  1.5.2.5    bouyer 					    h->address, h->control, ntohs(h->protocol));
    519  1.5.2.5    bouyer 				goto drop;
    520  1.5.2.5    bouyer 			}
    521  1.5.2.5    bouyer 			break;
    522  1.5.2.5    bouyer 		case CISCO_MULTICAST:
    523  1.5.2.5    bouyer 		case CISCO_UNICAST:
    524  1.5.2.5    bouyer 			/* Don't check the control field here (RFC 1547). */
    525  1.5.2.5    bouyer 			if (! (sp->pp_flags & PP_CISCO)) {
    526  1.5.2.5    bouyer 				if (debug)
    527  1.5.2.5    bouyer 					log(LOG_DEBUG,
    528  1.5.2.5    bouyer 					    SPP_FMT "Cisco packet in PPP mode "
    529  1.5.2.5    bouyer 					    "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
    530  1.5.2.5    bouyer 					    SPP_ARGS(ifp),
    531  1.5.2.5    bouyer 					    h->address, h->control, ntohs(h->protocol));
    532  1.5.2.5    bouyer 				goto drop;
    533  1.5.2.5    bouyer 			}
    534  1.5.2.5    bouyer 			switch (ntohs (h->protocol)) {
    535  1.5.2.5    bouyer 			default:
    536  1.5.2.5    bouyer 				++ifp->if_noproto;
    537  1.5.2.5    bouyer 				goto invalid;
    538  1.5.2.5    bouyer 			case CISCO_KEEPALIVE:
    539  1.5.2.5    bouyer 				sppp_cisco_input ((struct sppp*) ifp, m);
    540  1.5.2.5    bouyer 				m_freem (m);
    541      1.1  explorer 				return;
    542  1.5.2.5    bouyer #ifdef INET
    543      1.1  explorer 			case ETHERTYPE_IP:
    544      1.1  explorer 				schednetisr (NETISR_IP);
    545  1.5.2.5    bouyer 				inq = &ipintrq;
    546      1.1  explorer 				break;
    547  1.5.2.1    bouyer #endif
    548  1.5.2.5    bouyer #ifdef INET6
    549  1.5.2.1    bouyer 			case ETHERTYPE_IPV6:
    550  1.5.2.1    bouyer 				schednetisr (NETISR_IPV6);
    551  1.5.2.5    bouyer 				inq = &ip6intrq;
    552  1.5.2.1    bouyer 				break;
    553      1.1  explorer #endif
    554  1.5.2.5    bouyer #ifdef IPX
    555      1.1  explorer 			case ETHERTYPE_IPX:
    556      1.1  explorer 				schednetisr (NETISR_IPX);
    557  1.5.2.5    bouyer 				inq = &ipxintrq;
    558      1.1  explorer 				break;
    559      1.1  explorer #endif
    560  1.5.2.5    bouyer #ifdef NS
    561      1.1  explorer 			case ETHERTYPE_NS:
    562      1.1  explorer 				schednetisr (NETISR_NS);
    563  1.5.2.5    bouyer 				inq = &nsintrq;
    564      1.1  explorer 				break;
    565      1.1  explorer #endif
    566  1.5.2.5    bouyer 			}
    567  1.5.2.5    bouyer 			goto queue_pkt;
    568  1.5.2.5    bouyer 		default:        /* Invalid PPP packet. */
    569      1.3  explorer 		  invalid:
    570      1.3  explorer 			if (debug)
    571  1.5.2.5    bouyer 				log(LOG_DEBUG,
    572      1.3  explorer 				    SPP_FMT "invalid input packet "
    573      1.3  explorer 				    "<addr=0x%x ctrl=0x%x proto=0x%x>\n",
    574      1.3  explorer 				    SPP_ARGS(ifp),
    575      1.1  explorer 				    h->address, h->control, ntohs(h->protocol));
    576      1.1  explorer 			goto drop;
    577  1.5.2.5    bouyer 		}
    578  1.5.2.5    bouyer 		protocol = ntohs (h->protocol);
    579  1.5.2.5    bouyer 	}
    580  1.5.2.5    bouyer 
    581  1.5.2.5    bouyer 	switch (protocol) {
    582  1.5.2.5    bouyer 	default:
    583  1.5.2.5    bouyer 		if (sp->state[IDX_LCP] == STATE_OPENED) {
    584  1.5.2.5    bouyer 			u_int16_t prot = htons(protocol);
    585  1.5.2.5    bouyer 			sppp_cp_send (sp, PPP_LCP, PROTO_REJ,
    586  1.5.2.5    bouyer 			    ++sp->pp_seq[IDX_LCP], m->m_pkthdr.len + 2,
    587  1.5.2.5    bouyer 			    &prot);
    588  1.5.2.5    bouyer 		}
    589  1.5.2.5    bouyer 		if (debug)
    590  1.5.2.5    bouyer 			log(LOG_DEBUG,
    591  1.5.2.5    bouyer 			    SPP_FMT "invalid input protocol "
    592  1.5.2.5    bouyer 			    "<proto=0x%x>\n", SPP_ARGS(ifp), ntohs(protocol));
    593  1.5.2.5    bouyer 		++ifp->if_noproto;
    594  1.5.2.5    bouyer 		goto drop;
    595  1.5.2.5    bouyer 	case PPP_LCP:
    596  1.5.2.5    bouyer 		sppp_cp_input(&lcp, sp, m);
    597  1.5.2.5    bouyer 		m_freem (m);
    598  1.5.2.5    bouyer 		return;
    599  1.5.2.5    bouyer 	case PPP_PAP:
    600  1.5.2.5    bouyer 		if (sp->pp_phase >= PHASE_AUTHENTICATE)
    601  1.5.2.5    bouyer 			sppp_pap_input(sp, m);
    602  1.5.2.5    bouyer 		m_freem (m);
    603  1.5.2.5    bouyer 		return;
    604  1.5.2.5    bouyer 	case PPP_CHAP:
    605  1.5.2.5    bouyer 		if (sp->pp_phase >= PHASE_AUTHENTICATE)
    606  1.5.2.5    bouyer 			sppp_chap_input(sp, m);
    607  1.5.2.5    bouyer 		m_freem (m);
    608      1.1  explorer 		return;
    609  1.5.2.5    bouyer #ifdef INET
    610  1.5.2.5    bouyer 	case PPP_IPCP:
    611  1.5.2.5    bouyer 		if (sp->pp_phase == PHASE_NETWORK)
    612  1.5.2.5    bouyer 			sppp_cp_input(&ipcp, sp, m);
    613  1.5.2.5    bouyer 		m_freem (m);
    614  1.5.2.5    bouyer 		return;
    615  1.5.2.5    bouyer 	case PPP_IP:
    616      1.1  explorer 		if (sp->state[IDX_IPCP] == STATE_OPENED) {
    617      1.1  explorer 			schednetisr (NETISR_IP);
    618  1.5.2.5    bouyer 			inq = &ipintrq;
    619  1.5.2.5    bouyer 		}
    620      1.1  explorer 		break;
    621  1.5.2.1    bouyer #endif
    622  1.5.2.5    bouyer #ifdef INET6
    623  1.5.2.5    bouyer 	case PPP_IPV6CP:
    624  1.5.2.5    bouyer 		if (sp->pp_phase == PHASE_NETWORK)
    625  1.5.2.5    bouyer 			sppp_cp_input(&ipv6cp, sp, m);
    626  1.5.2.5    bouyer 		m_freem (m);
    627  1.5.2.5    bouyer 		return;
    628  1.5.2.5    bouyer 
    629  1.5.2.5    bouyer 	case PPP_IPV6:
    630  1.5.2.1    bouyer 		if (sp->state[IDX_IPV6CP] == STATE_OPENED) {
    631  1.5.2.1    bouyer 			schednetisr (NETISR_IPV6);
    632  1.5.2.5    bouyer 			inq = &ip6intrq;
    633  1.5.2.5    bouyer 		}
    634  1.5.2.1    bouyer 		break;
    635      1.1  explorer #endif
    636  1.5.2.5    bouyer #ifdef IPX
    637  1.5.2.5    bouyer 	case PPP_IPX:
    638  1.5.2.5    bouyer 		/* IPX IPXCP not implemented yet */
    639      1.1  explorer 		if (sp->pp_phase == PHASE_NETWORK) {
    640      1.1  explorer 			schednetisr (NETISR_IPX);
    641  1.5.2.5    bouyer 			inq = &ipxintrq;
    642  1.5.2.5    bouyer 		}
    643      1.1  explorer 		break;
    644      1.1  explorer #endif
    645  1.5.2.5    bouyer #ifdef NS
    646  1.5.2.5    bouyer 	case PPP_XNS:
    647  1.5.2.5    bouyer 		/* XNS IDPCP not implemented yet */
    648      1.1  explorer 		if (sp->pp_phase == PHASE_NETWORK) {
    649      1.1  explorer 			schednetisr (NETISR_NS);
    650  1.5.2.5    bouyer 			inq = &nsintrq;
    651  1.5.2.5    bouyer 		}
    652      1.1  explorer 		break;
    653  1.5.2.5    bouyer #endif
    654  1.5.2.5    bouyer #ifdef ISO
    655  1.5.2.5    bouyer 	case PPP_ISO:
    656  1.5.2.5    bouyer 		/* OSI NLCP not implemented yet */
    657  1.5.2.5    bouyer 		if (sp->pp_phase == PHASE_NETWORK) {
    658  1.5.2.5    bouyer 			schednetisr (NETISR_ISO);
    659      1.1  explorer 			inq = &clnlintrq;
    660      1.1  explorer 		}
    661  1.5.2.5    bouyer 		break;
    662      1.1  explorer #endif
    663      1.1  explorer 	}
    664  1.5.2.5    bouyer 
    665      1.1  explorer queue_pkt:
    666      1.1  explorer 	if (! (ifp->if_flags & IFF_UP) || ! inq)
    667      1.1  explorer 		goto drop;
    668      1.1  explorer 
    669  1.5.2.5    bouyer 	/* Check queue. */
    670      1.1  explorer 	s = splnet();
    671      1.1  explorer 	if (IF_QFULL (inq)) {
    672      1.3  explorer 		/* Queue overflow. */
    673      1.3  explorer 		IF_DROP(inq);
    674      1.3  explorer 		splx(s);
    675      1.3  explorer 		if (debug)
    676      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "protocol queue overflow\n",
    677      1.1  explorer 				SPP_ARGS(ifp));
    678      1.1  explorer 		goto drop;
    679      1.3  explorer 	}
    680      1.3  explorer 	IF_ENQUEUE(inq, m);
    681      1.1  explorer 	splx(s);
    682      1.1  explorer }
    683      1.1  explorer 
    684      1.1  explorer /*
    685      1.1  explorer  * Enqueue transmit packet.
    686      1.1  explorer  */
    687      1.3  explorer static int
    688      1.3  explorer sppp_output(struct ifnet *ifp, struct mbuf *m,
    689      1.1  explorer 	    struct sockaddr *dst, struct rtentry *rt)
    690      1.1  explorer {
    691  1.5.2.5    bouyer 	struct sppp *sp = (struct sppp*) ifp;
    692  1.5.2.2    bouyer 	struct ppp_header *h = NULL;
    693  1.5.2.2    bouyer 	struct ifqueue *ifq = NULL;		/* XXX */
    694  1.5.2.5    bouyer 	int s, len, rv = 0;
    695  1.5.2.2    bouyer 	u_int16_t protocol;
    696      1.3  explorer 	ALTQ_DECL(struct altq_pktattr pktattr;)
    697  1.5.2.5    bouyer 
    698      1.1  explorer 	s = splnet();
    699      1.3  explorer 
    700      1.3  explorer 	if ((ifp->if_flags & IFF_UP) == 0 ||
    701      1.1  explorer 	    (ifp->if_flags & (IFF_RUNNING | IFF_AUTO)) == 0) {
    702      1.1  explorer 		m_freem (m);
    703      1.1  explorer 		splx (s);
    704      1.1  explorer 		return (ENETDOWN);
    705      1.1  explorer 	}
    706      1.3  explorer 
    707      1.3  explorer 	if ((ifp->if_flags & (IFF_RUNNING | IFF_AUTO)) == IFF_AUTO) {
    708      1.3  explorer 		/*
    709      1.3  explorer 		 * Interface is not yet running, but auto-dial.  Need
    710      1.3  explorer 		 * to start LCP for it.
    711      1.3  explorer 		 */
    712      1.3  explorer 		ifp->if_flags |= IFF_RUNNING;
    713      1.3  explorer 		splx(s);
    714  1.5.2.5    bouyer 		lcp.Open(sp);
    715      1.3  explorer 		s = splnet();
    716      1.3  explorer 	}
    717  1.5.2.2    bouyer 
    718  1.5.2.2    bouyer 	/*
    719  1.5.2.2    bouyer 	 * If the queueing discipline needs packet classification,
    720  1.5.2.2    bouyer 	 * do it before prepending link headers.
    721  1.5.2.2    bouyer 	 */
    722      1.3  explorer 	IFQ_CLASSIFY(&ifp->if_snd, m, dst->sa_family, &pktattr);
    723      1.1  explorer 
    724      1.3  explorer #ifdef INET
    725      1.3  explorer 	if (dst->sa_family == AF_INET)
    726      1.3  explorer 	{
    727      1.1  explorer 		/* Check mbuf length here??? */
    728      1.3  explorer 		struct ip *ip = mtod (m, struct ip*);
    729      1.1  explorer 		struct tcphdr *tcp = (struct tcphdr*) ((long*)ip + ip->ip_hl);
    730      1.3  explorer 
    731      1.3  explorer 		/*
    732      1.3  explorer 		 * When using dynamic local IP address assignment by using
    733      1.3  explorer 		 * 0.0.0.0 as a local address, the first TCP session will
    734      1.3  explorer 		 * not connect because the local TCP checksum is computed
    735      1.3  explorer 		 * using 0.0.0.0 which will later become our real IP address
    736      1.3  explorer 		 * so the TCP checksum computed at the remote end will
    737      1.3  explorer 		 * become invalid. So we
    738      1.3  explorer 		 * - don't let packets with src ip addr 0 thru
    739      1.3  explorer 		 * - we flag TCP packets with src ip 0 as an error
    740      1.3  explorer 		 */
    741      1.3  explorer 
    742      1.3  explorer 		if(ip->ip_src.s_addr == INADDR_ANY)	/* -hm */
    743      1.3  explorer 		{
    744      1.3  explorer 			m_freem(m);
    745      1.3  explorer 			splx(s);
    746      1.3  explorer 			if(ip->ip_p == IPPROTO_TCP)
    747      1.3  explorer 				return(EADDRNOTAVAIL);
    748      1.3  explorer 			else
    749      1.3  explorer 				return(0);
    750      1.3  explorer 		}
    751      1.3  explorer 
    752      1.3  explorer 		/*
    753      1.3  explorer 		 * Put low delay, telnet, rlogin and ftp control packets
    754      1.3  explorer 		 * in front of the queue.
    755      1.3  explorer 		 */
    756      1.3  explorer 
    757      1.1  explorer 		if (! IF_QFULL (&sp->pp_fastq) &&
    758      1.3  explorer 		    ((ip->ip_tos & IPTOS_LOWDELAY) ||
    759      1.1  explorer 	    	    ((ip->ip_p == IPPROTO_TCP &&
    760      1.3  explorer 	    	    m->m_len >= sizeof (struct ip) + sizeof (struct tcphdr) &&
    761      1.3  explorer 	    	    (INTERACTIVE (ntohs (tcp->th_sport)))) ||
    762      1.1  explorer 	    	    INTERACTIVE (ntohs (tcp->th_dport)))))
    763      1.1  explorer 			ifq = &sp->pp_fastq;
    764      1.1  explorer 	}
    765      1.1  explorer #endif
    766      1.5    itojun 
    767      1.5    itojun #ifdef INET6
    768      1.5    itojun 	if (dst->sa_family == AF_INET6) {
    769      1.5    itojun 		/* XXX do something tricky here? */
    770      1.5    itojun 	}
    771      1.5    itojun #endif
    772  1.5.2.5    bouyer 
    773  1.5.2.5    bouyer 	if ((sp->pp_flags & PP_NOFRAMING) == 0) {
    774  1.5.2.5    bouyer 		/*
    775  1.5.2.5    bouyer 		 * Prepend general data packet PPP header. For now, IP only.
    776  1.5.2.5    bouyer 		 */
    777  1.5.2.5    bouyer 		M_PREPEND (m, PPP_HEADER_LEN, M_DONTWAIT);
    778  1.5.2.5    bouyer 		if (! m) {
    779  1.5.2.5    bouyer 			if (ifp->if_flags & IFF_DEBUG)
    780  1.5.2.5    bouyer 				log(LOG_DEBUG, SPP_FMT "no memory for transmit header\n",
    781  1.5.2.5    bouyer 					SPP_ARGS(ifp));
    782  1.5.2.5    bouyer 			++ifp->if_oerrors;
    783  1.5.2.5    bouyer 			splx (s);
    784  1.5.2.5    bouyer 			return (ENOBUFS);
    785  1.5.2.5    bouyer 		}
    786  1.5.2.5    bouyer 		/*
    787  1.5.2.5    bouyer 		 * May want to check size of packet
    788  1.5.2.5    bouyer 		 * (albeit due to the implementation it's always enough)
    789  1.5.2.5    bouyer 		 */
    790  1.5.2.5    bouyer 		h = mtod (m, struct ppp_header*);
    791  1.5.2.5    bouyer 		if (sp->pp_flags & PP_CISCO) {
    792  1.5.2.5    bouyer 			h->address = CISCO_UNICAST;        /* unicast address */
    793  1.5.2.5    bouyer 			h->control = 0;
    794  1.5.2.5    bouyer 		} else {
    795  1.5.2.5    bouyer 			h->address = PPP_ALLSTATIONS;        /* broadcast address */
    796  1.5.2.5    bouyer 			h->control = PPP_UI;                 /* Unnumbered Info */
    797      1.1  explorer 		}
    798      1.1  explorer 	}
    799      1.1  explorer 
    800      1.1  explorer 	switch (dst->sa_family) {
    801      1.1  explorer #ifdef INET
    802      1.1  explorer 	case AF_INET:   /* Internet Protocol */
    803  1.5.2.5    bouyer 		if (sp->pp_flags & PP_CISCO)
    804      1.1  explorer 			protocol = htons (ETHERTYPE_IP);
    805      1.3  explorer 		else {
    806      1.3  explorer 			/*
    807      1.3  explorer 			 * Don't choke with an ENETDOWN early.  It's
    808      1.3  explorer 			 * possible that we just started dialing out,
    809      1.3  explorer 			 * so don't drop the packet immediately.  If
    810      1.3  explorer 			 * we notice that we run out of buffer space
    811      1.3  explorer 			 * below, we will however remember that we are
    812      1.3  explorer 			 * not ready to carry IP packets, and return
    813      1.3  explorer 			 * ENETDOWN, as opposed to ENOBUFS.
    814  1.5.2.5    bouyer 			 */
    815      1.5    itojun 			protocol = htons(PPP_IP);
    816      1.5    itojun 			if (sp->state[IDX_IPCP] != STATE_OPENED)
    817      1.5    itojun 				rv = ENETDOWN;
    818      1.5    itojun 		}
    819      1.5    itojun 		break;
    820      1.5    itojun #endif
    821      1.5    itojun #ifdef INET6
    822      1.5    itojun 	case AF_INET6:   /* Internet Protocol version 6 */
    823  1.5.2.5    bouyer 		if (sp->pp_flags & PP_CISCO)
    824      1.5    itojun 			protocol = htons (ETHERTYPE_IPV6);
    825      1.5    itojun 		else {
    826      1.5    itojun 			/*
    827      1.5    itojun 			 * Don't choke with an ENETDOWN early.  It's
    828      1.5    itojun 			 * possible that we just started dialing out,
    829      1.5    itojun 			 * so don't drop the packet immediately.  If
    830      1.5    itojun 			 * we notice that we run out of buffer space
    831      1.5    itojun 			 * below, we will however remember that we are
    832      1.5    itojun 			 * not ready to carry IP packets, and return
    833      1.5    itojun 			 * ENETDOWN, as opposed to ENOBUFS.
    834  1.5.2.5    bouyer 			 */
    835  1.5.2.1    bouyer 			protocol = htons(PPP_IPV6);
    836      1.3  explorer 			if (sp->state[IDX_IPV6CP] != STATE_OPENED)
    837      1.1  explorer 				rv = ENETDOWN;
    838      1.1  explorer 		}
    839      1.1  explorer 		break;
    840      1.1  explorer #endif
    841      1.1  explorer #ifdef NS
    842  1.5.2.5    bouyer 	case AF_NS:     /* Xerox NS Protocol */
    843      1.1  explorer 		protocol = htons ((sp->pp_flags & PP_CISCO) ?
    844      1.1  explorer 			ETHERTYPE_NS : PPP_XNS);
    845      1.1  explorer 		break;
    846      1.1  explorer #endif
    847      1.1  explorer #ifdef IPX
    848  1.5.2.5    bouyer 	case AF_IPX:     /* Novell IPX Protocol */
    849      1.1  explorer 		protocol = htons ((sp->pp_flags & PP_CISCO) ?
    850      1.1  explorer 			ETHERTYPE_IPX : PPP_IPX);
    851      1.1  explorer 		break;
    852      1.1  explorer #endif
    853      1.1  explorer #ifdef ISO
    854      1.1  explorer 	case AF_ISO:    /* ISO OSI Protocol */
    855      1.1  explorer 		if (sp->pp_flags & PP_CISCO)
    856  1.5.2.5    bouyer 			goto nosupport;
    857      1.1  explorer 		protocol = htons (PPP_ISO);
    858      1.1  explorer 		break;
    859      1.1  explorer nosupport:
    860      1.1  explorer #endif
    861      1.1  explorer 	default:
    862      1.3  explorer 		m_freem (m);
    863      1.1  explorer 		++ifp->if_oerrors;
    864      1.1  explorer 		splx (s);
    865      1.1  explorer 		return (EAFNOSUPPORT);
    866      1.1  explorer 	}
    867  1.5.2.5    bouyer 
    868  1.5.2.5    bouyer 	if (sp->pp_flags & PP_NOFRAMING) {
    869  1.5.2.5    bouyer 		M_PREPEND (m, 2, M_DONTWAIT);
    870  1.5.2.5    bouyer 		if (m == NULL) {
    871  1.5.2.5    bouyer 			if (ifp->if_flags & IFF_DEBUG)
    872  1.5.2.5    bouyer 				log(LOG_DEBUG, SPP_FMT "no memory for transmit header\n",
    873  1.5.2.5    bouyer 					SPP_ARGS(ifp));
    874  1.5.2.5    bouyer 			++ifp->if_oerrors;
    875  1.5.2.5    bouyer 			splx (s);
    876  1.5.2.5    bouyer 			return (ENOBUFS);
    877  1.5.2.5    bouyer 		}
    878  1.5.2.5    bouyer 		*mtod(m, u_int16_t*) = protocol;
    879  1.5.2.5    bouyer 	} else {
    880  1.5.2.5    bouyer 		h->protocol = protocol;
    881  1.5.2.5    bouyer 	}
    882      1.1  explorer 
    883      1.1  explorer 	/*
    884      1.1  explorer 	 * Queue message on interface, and start output if interface
    885      1.1  explorer 	 * not yet active.
    886  1.5.2.2    bouyer 	 */
    887  1.5.2.2    bouyer 	len = m->m_pkthdr.len;
    888  1.5.2.2    bouyer 	if (ifq != NULL
    889  1.5.2.2    bouyer #ifdef ALTQ
    890  1.5.2.2    bouyer 	    && ALTQ_IS_ENABLED(&ifp->if_snd) == 0
    891  1.5.2.2    bouyer #endif
    892  1.5.2.2    bouyer 	    ) {
    893  1.5.2.2    bouyer 		if (IF_QFULL (ifq)) {
    894  1.5.2.2    bouyer 			IF_DROP (&ifp->if_snd);
    895  1.5.2.2    bouyer 			m_freem (m);
    896  1.5.2.2    bouyer 			if (rv == 0)
    897  1.5.2.2    bouyer 				rv = ENOBUFS;
    898  1.5.2.2    bouyer 		}
    899  1.5.2.2    bouyer 		IF_ENQUEUE(ifq, m);
    900  1.5.2.2    bouyer 	} else
    901  1.5.2.2    bouyer 		IFQ_ENQUEUE(&ifp->if_snd, m, &pktattr, rv);
    902      1.3  explorer 	if (rv != 0) {
    903  1.5.2.2    bouyer 		++ifp->if_oerrors;
    904  1.5.2.2    bouyer 		splx(s);
    905      1.1  explorer 		return (rv);
    906  1.5.2.2    bouyer 	}
    907      1.1  explorer 
    908      1.1  explorer 	if (! (ifp->if_flags & IFF_OACTIVE))
    909      1.1  explorer 		(*ifp->if_start) (ifp);
    910      1.1  explorer 
    911      1.1  explorer 	/*
    912  1.5.2.5    bouyer 	 * Count output packets and bytes.
    913      1.1  explorer 	 * The packet length includes header + additional hardware framing
    914      1.1  explorer 	 * according to RFC 1333.
    915  1.5.2.5    bouyer 	 */
    916      1.1  explorer 	ifp->if_obytes += len + sp->pp_framebytes;
    917      1.1  explorer 	splx (s);
    918      1.1  explorer 	return (0);
    919      1.1  explorer }
    920      1.3  explorer 
    921      1.3  explorer void
    922      1.1  explorer sppp_attach(struct ifnet *ifp)
    923      1.1  explorer {
    924      1.1  explorer 	struct sppp *sp = (struct sppp*) ifp;
    925      1.1  explorer 
    926  1.5.2.1    bouyer 	/* Initialize keepalive handler. */
    927  1.5.2.1    bouyer 	if (! spppq) {
    928  1.5.2.1    bouyer #if defined(__NetBSD__)
    929  1.5.2.1    bouyer 		callout_init(&keepalive_ch);
    930  1.5.2.1    bouyer 		callout_reset(&keepalive_ch, hz * 10, sppp_keepalive, NULL);
    931      1.3  explorer #else
    932      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
    933      1.3  explorer 		keepalive_ch =
    934      1.3  explorer #endif
    935  1.5.2.1    bouyer 		timeout(sppp_keepalive, 0, hz * 10);
    936  1.5.2.1    bouyer #endif /* __NetBSD__ */
    937      1.1  explorer 	}
    938      1.1  explorer 
    939      1.1  explorer 	/* Insert new entry into the keepalive list. */
    940      1.1  explorer 	sp->pp_next = spppq;
    941      1.1  explorer 	spppq = sp;
    942      1.1  explorer 
    943      1.1  explorer 	sp->pp_if.if_type = IFT_PPP;
    944      1.1  explorer 	sp->pp_if.if_output = sppp_output;
    945      1.3  explorer 	sp->pp_fastq.ifq_maxlen = 32;
    946      1.1  explorer 	sp->pp_cpq.ifq_maxlen = 20;
    947      1.1  explorer 	sp->pp_loopcnt = 0;
    948  1.5.2.1    bouyer 	sp->pp_alivecnt = 0;
    949  1.5.2.1    bouyer 	bzero(&sp->pp_seq[0], sizeof(sp->pp_seq));
    950      1.3  explorer 	bzero(&sp->pp_rseq[0], sizeof(sp->pp_rseq));
    951      1.3  explorer 	sp->pp_phase = PHASE_DEAD;
    952      1.3  explorer 	sp->pp_up = lcp.Up;
    953      1.3  explorer 	sp->pp_down = lcp.Down;
    954  1.5.2.3    bouyer 
    955  1.5.2.3    bouyer 	if_alloc_sadl(ifp);
    956      1.3  explorer 
    957      1.3  explorer 	sppp_lcp_init(sp);
    958  1.5.2.1    bouyer 	sppp_ipcp_init(sp);
    959      1.3  explorer 	sppp_ipv6cp_init(sp);
    960      1.3  explorer 	sppp_pap_init(sp);
    961      1.1  explorer 	sppp_chap_init(sp);
    962      1.1  explorer }
    963      1.3  explorer 
    964      1.3  explorer void
    965      1.1  explorer sppp_detach(struct ifnet *ifp)
    966      1.1  explorer {
    967      1.3  explorer 	struct sppp **q, *p, *sp = (struct sppp*) ifp;
    968      1.1  explorer 	int i;
    969      1.1  explorer 
    970      1.1  explorer 	/* Remove the entry from the keepalive list. */
    971      1.1  explorer 	for (q = &spppq; (p = *q); q = &p->pp_next)
    972      1.1  explorer 		if (p == sp) {
    973      1.1  explorer 			*q = p->pp_next;
    974      1.1  explorer 			break;
    975      1.1  explorer 		}
    976      1.1  explorer 
    977  1.5.2.1    bouyer 	/* Stop keepalive handler. */
    978  1.5.2.1    bouyer 	if (! spppq) {
    979  1.5.2.1    bouyer #if defined(__NetBSD__)
    980  1.5.2.1    bouyer 		callout_stop(&keepalive_ch);
    981      1.3  explorer #else
    982      1.3  explorer 		untimeout(sppp_keepalive, 0
    983      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
    984      1.3  explorer 		,keepalive_ch
    985      1.3  explorer #endif
    986  1.5.2.1    bouyer 		);
    987  1.5.2.1    bouyer #endif /* __NetBSD__ */
    988      1.3  explorer 	}
    989  1.5.2.1    bouyer 
    990  1.5.2.1    bouyer 	for (i = 0; i < IDX_COUNT; i++) {
    991  1.5.2.1    bouyer #if defined(__NetBSD__)
    992  1.5.2.1    bouyer 		callout_stop(&sp->ch[i]);
    993      1.3  explorer #else
    994      1.3  explorer 		untimeout((cps[i])->TO, (void *)sp
    995      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
    996      1.3  explorer 		, sp->ch[i]
    997      1.3  explorer #endif
    998  1.5.2.1    bouyer 		);
    999  1.5.2.1    bouyer #endif /* __NetBSD__ */
   1000  1.5.2.1    bouyer 	}
   1001  1.5.2.1    bouyer #if defined(__NetBSD__)
   1002  1.5.2.1    bouyer 	callout_stop(&sp->pap_my_to_ch);
   1003      1.3  explorer #else
   1004      1.3  explorer 	untimeout(sppp_pap_my_TO, (void *)sp
   1005      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1006      1.3  explorer 	, sp->pap_my_to_ch
   1007      1.3  explorer #endif
   1008  1.5.2.1    bouyer 	);
   1009  1.5.2.3    bouyer #endif /* __NetBSD__ */
   1010  1.5.2.3    bouyer 
   1011      1.1  explorer 	if_free_sadl(ifp);
   1012      1.1  explorer }
   1013      1.1  explorer 
   1014      1.1  explorer /*
   1015      1.1  explorer  * Flush the interface output queue.
   1016      1.3  explorer  */
   1017      1.3  explorer void
   1018      1.1  explorer sppp_flush(struct ifnet *ifp)
   1019      1.1  explorer {
   1020      1.1  explorer 	struct sppp *sp = (struct sppp*) ifp;
   1021  1.5.2.2    bouyer 
   1022  1.5.2.2    bouyer 	IFQ_PURGE (&sp->pp_if.if_snd);
   1023  1.5.2.2    bouyer 	IFQ_PURGE (&sp->pp_fastq);
   1024      1.1  explorer 	IFQ_PURGE (&sp->pp_cpq);
   1025      1.1  explorer }
   1026      1.1  explorer 
   1027      1.1  explorer /*
   1028      1.1  explorer  * Check if the output queue is empty.
   1029      1.1  explorer  */
   1030      1.3  explorer int
   1031      1.1  explorer sppp_isempty(struct ifnet *ifp)
   1032      1.1  explorer {
   1033      1.3  explorer 	struct sppp *sp = (struct sppp*) ifp;
   1034      1.1  explorer 	int empty, s;
   1035  1.5.2.5    bouyer 
   1036      1.3  explorer 	s = splnet();
   1037      1.3  explorer 	empty = !sp->pp_fastq.ifq_head && !sp->pp_cpq.ifq_head &&
   1038      1.3  explorer 		!sp->pp_if.if_snd.ifq_head;
   1039      1.1  explorer 	splx(s);
   1040      1.1  explorer 	return (empty);
   1041      1.1  explorer }
   1042      1.1  explorer 
   1043      1.1  explorer /*
   1044      1.1  explorer  * Get next packet to send.
   1045      1.3  explorer  */
   1046      1.3  explorer struct mbuf *
   1047      1.1  explorer sppp_dequeue(struct ifnet *ifp)
   1048      1.1  explorer {
   1049      1.1  explorer 	struct sppp *sp = (struct sppp*) ifp;
   1050      1.3  explorer 	struct mbuf *m;
   1051      1.1  explorer 	int s;
   1052  1.5.2.5    bouyer 
   1053      1.3  explorer 	s = splnet();
   1054      1.3  explorer 	/*
   1055      1.3  explorer 	 * Process only the control protocol queue until we have at
   1056      1.3  explorer 	 * least one NCP open.
   1057      1.3  explorer 	 *
   1058      1.3  explorer 	 * Do always serve all three queues in Cisco mode.
   1059      1.3  explorer 	 */
   1060      1.3  explorer 	IF_DEQUEUE(&sp->pp_cpq, m);
   1061      1.3  explorer 	if (m == NULL &&
   1062      1.3  explorer 	    (sppp_ncp_check(sp) || (sp->pp_flags & PP_CISCO) != 0)) {
   1063      1.3  explorer 		IF_DEQUEUE(&sp->pp_fastq, m);
   1064      1.3  explorer 		if (m == NULL)
   1065      1.3  explorer 			IF_DEQUEUE (&sp->pp_if.if_snd, m);
   1066      1.3  explorer 	}
   1067      1.3  explorer 	splx(s);
   1068      1.1  explorer 	return m;
   1069      1.1  explorer }
   1070      1.1  explorer 
   1071      1.3  explorer /*
   1072      1.1  explorer  * Pick the next packet, do not remove it from the queue.
   1073      1.3  explorer  */
   1074      1.3  explorer struct mbuf *
   1075      1.1  explorer sppp_pick(struct ifnet *ifp)
   1076      1.3  explorer {
   1077      1.3  explorer 	struct sppp *sp = (struct sppp*)ifp;
   1078      1.3  explorer 	struct mbuf *m;
   1079      1.1  explorer 	int s;
   1080  1.5.2.5    bouyer 
   1081      1.1  explorer 	s= splnet ();
   1082      1.3  explorer 
   1083      1.3  explorer 	m = sp->pp_cpq.ifq_head;
   1084      1.3  explorer 	if (m == NULL &&
   1085      1.3  explorer 	    (sp->pp_phase == PHASE_NETWORK ||
   1086      1.3  explorer 	     (sp->pp_flags & PP_CISCO) != 0))
   1087      1.3  explorer 		if ((m = sp->pp_fastq.ifq_head) == NULL)
   1088      1.1  explorer 			m = sp->pp_if.if_snd.ifq_head;
   1089      1.3  explorer 	splx (s);
   1090      1.1  explorer 	return (m);
   1091      1.1  explorer }
   1092      1.1  explorer 
   1093      1.3  explorer /*
   1094      1.1  explorer  * Process an ioctl request.  Called on low priority level.
   1095      1.3  explorer  */
   1096      1.3  explorer int
   1097      1.1  explorer sppp_ioctl(struct ifnet *ifp, u_long cmd, void *data)
   1098      1.3  explorer {
   1099      1.3  explorer 	struct ifreq *ifr = (struct ifreq*) data;
   1100      1.3  explorer 	struct sppp *sp = (struct sppp*) ifp;
   1101      1.1  explorer 	int s, rv, going_up, going_down, newmode;
   1102  1.5.2.5    bouyer 
   1103      1.3  explorer 	s = splnet();
   1104      1.3  explorer 	rv = 0;
   1105      1.3  explorer 	switch (cmd) {
   1106      1.3  explorer 	case SIOCAIFADDR:
   1107      1.1  explorer 	case SIOCSIFDSTADDR:
   1108      1.3  explorer 		break;
   1109      1.3  explorer 
   1110      1.3  explorer 	case SIOCSIFADDR:
   1111      1.3  explorer 		if_up(ifp);
   1112      1.3  explorer 		/* fall through... */
   1113      1.3  explorer 
   1114      1.3  explorer 	case SIOCSIFFLAGS:
   1115      1.3  explorer 		going_up = ifp->if_flags & IFF_UP &&
   1116      1.3  explorer 			(ifp->if_flags & IFF_RUNNING) == 0;
   1117      1.3  explorer 		going_down = (ifp->if_flags & IFF_UP) == 0 &&
   1118      1.3  explorer 			ifp->if_flags & IFF_RUNNING;
   1119      1.3  explorer 		newmode = ifp->if_flags & (IFF_AUTO | IFF_PASSIVE);
   1120      1.3  explorer 		if (newmode == (IFF_AUTO | IFF_PASSIVE)) {
   1121      1.3  explorer 			/* sanity */
   1122      1.3  explorer 			newmode = IFF_PASSIVE;
   1123      1.1  explorer 			ifp->if_flags &= ~IFF_AUTO;
   1124      1.1  explorer 		}
   1125      1.3  explorer 
   1126      1.3  explorer 		if (going_up || going_down)
   1127      1.3  explorer 			lcp.Close(sp);
   1128      1.3  explorer 		if (going_up && newmode == 0) {
   1129      1.3  explorer 			/* neither auto-dial nor passive */
   1130      1.3  explorer 			ifp->if_flags |= IFF_RUNNING;
   1131      1.3  explorer 			if (!(sp->pp_flags & PP_CISCO))
   1132      1.3  explorer 				lcp.Open(sp);
   1133      1.3  explorer 		} else if (going_down) {
   1134      1.3  explorer 			sppp_flush(ifp);
   1135      1.1  explorer 			ifp->if_flags &= ~IFF_RUNNING;
   1136      1.3  explorer 		}
   1137      1.3  explorer 
   1138      1.3  explorer 		break;
   1139      1.3  explorer 
   1140      1.3  explorer #ifdef SIOCSIFMTU
   1141      1.3  explorer #ifndef ifr_mtu
   1142      1.3  explorer #define ifr_mtu ifr_metric
   1143      1.3  explorer #endif
   1144      1.3  explorer 	case SIOCSIFMTU:
   1145      1.3  explorer 		if (ifr->ifr_mtu < 128 || ifr->ifr_mtu > sp->lcp.their_mru)
   1146      1.3  explorer 			return (EINVAL);
   1147      1.3  explorer 		ifp->if_mtu = ifr->ifr_mtu;
   1148      1.3  explorer 		break;
   1149      1.3  explorer #endif
   1150      1.3  explorer #ifdef SLIOCSETMTU
   1151      1.3  explorer 	case SLIOCSETMTU:
   1152      1.3  explorer 		if (*(short*)data < 128 || *(short*)data > sp->lcp.their_mru)
   1153      1.3  explorer 			return (EINVAL);
   1154      1.1  explorer 		ifp->if_mtu = *(short*)data;
   1155      1.3  explorer 		break;
   1156      1.3  explorer #endif
   1157      1.3  explorer #ifdef SIOCGIFMTU
   1158      1.3  explorer 	case SIOCGIFMTU:
   1159      1.1  explorer 		ifr->ifr_mtu = ifp->if_mtu;
   1160      1.3  explorer 		break;
   1161      1.3  explorer #endif
   1162      1.3  explorer #ifdef SLIOCGETMTU
   1163      1.3  explorer 	case SLIOCGETMTU:
   1164      1.1  explorer 		*(short*)data = ifp->if_mtu;
   1165      1.3  explorer 		break;
   1166      1.3  explorer #endif
   1167      1.3  explorer 	case SIOCADDMULTI:
   1168      1.1  explorer 	case SIOCDELMULTI:
   1169      1.1  explorer 		break;
   1170      1.3  explorer 
   1171      1.3  explorer 	case SIOCGIFGENERIC:
   1172      1.3  explorer 	case SIOCSIFGENERIC:
   1173      1.1  explorer 		rv = sppp_params(sp, cmd, data);
   1174      1.3  explorer 		break;
   1175      1.3  explorer 
   1176      1.3  explorer 	default:
   1177      1.1  explorer 		rv = ENOTTY;
   1178      1.3  explorer 	}
   1179      1.3  explorer 	splx(s);
   1180      1.1  explorer 	return rv;
   1181      1.1  explorer }
   1182      1.3  explorer 
   1183      1.3  explorer 
   1184      1.3  explorer /*
   1186      1.3  explorer  * Cisco framing implementation.
   1187      1.1  explorer  */
   1188      1.1  explorer 
   1189      1.1  explorer /*
   1190      1.3  explorer  * Handle incoming Cisco keepalive protocol packets.
   1191      1.3  explorer  */
   1192      1.1  explorer static void
   1193      1.3  explorer sppp_cisco_input(struct sppp *sp, struct mbuf *m)
   1194      1.1  explorer {
   1195      1.3  explorer 	STDDCL;
   1196      1.1  explorer 	struct cisco_packet *h;
   1197      1.1  explorer 	u_long me, mymask;
   1198      1.3  explorer 
   1199      1.3  explorer 	if (m->m_pkthdr.len < CISCO_PACKET_LEN) {
   1200      1.3  explorer 		if (debug)
   1201      1.3  explorer 			log(LOG_DEBUG,
   1202      1.1  explorer 			    SPP_FMT "cisco invalid packet length: %d bytes\n",
   1203      1.1  explorer 			    SPP_ARGS(ifp), m->m_pkthdr.len);
   1204      1.1  explorer 		return;
   1205      1.3  explorer 	}
   1206      1.3  explorer 	h = mtod (m, struct cisco_packet*);
   1207      1.3  explorer 	if (debug)
   1208      1.3  explorer 		log(LOG_DEBUG,
   1209      1.3  explorer 		    SPP_FMT "cisco input: %d bytes "
   1210      1.3  explorer 		    "<0x%lx 0x%lx 0x%lx 0x%x 0x%x-0x%x>\n",
   1211      1.3  explorer 		    SPP_ARGS(ifp), m->m_pkthdr.len,
   1212      1.1  explorer 		    (u_long)ntohl (h->type), (u_long)h->par1, (u_long)h->par2, (u_int)h->rel,
   1213      1.1  explorer 		    (u_int)h->time0, (u_int)h->time1);
   1214      1.3  explorer 	switch (ntohl (h->type)) {
   1215      1.3  explorer 	default:
   1216      1.3  explorer 		if (debug)
   1217      1.1  explorer 			addlog(SPP_FMT "cisco unknown packet type: 0x%lx\n",
   1218      1.1  explorer 			       SPP_ARGS(ifp), (u_long)ntohl (h->type));
   1219      1.1  explorer 		break;
   1220      1.1  explorer 	case CISCO_ADDR_REPLY:
   1221      1.1  explorer 		/* Reply on address request, ignore */
   1222      1.1  explorer 		break;
   1223  1.5.2.1    bouyer 	case CISCO_KEEPALIVE_REQ:
   1224  1.5.2.1    bouyer 		sp->pp_alivecnt = 0;
   1225      1.1  explorer 		sp->pp_rseq[IDX_LCP] = ntohl (h->par1);
   1226      1.1  explorer 		if (sp->pp_seq[IDX_LCP] == sp->pp_rseq[IDX_LCP]) {
   1227      1.1  explorer 			/* Local and remote sequence numbers are equal.
   1228      1.3  explorer 			 * Probably, the line is in loopback mode. */
   1229      1.3  explorer 			if (sp->pp_loopcnt >= MAXALIVECNT) {
   1230      1.1  explorer 				printf (SPP_FMT "loopback\n",
   1231      1.1  explorer 					SPP_ARGS(ifp));
   1232      1.1  explorer 				sp->pp_loopcnt = 0;
   1233  1.5.2.2    bouyer 				if (ifp->if_flags & IFF_UP) {
   1234      1.1  explorer 					if_down (ifp);
   1235      1.1  explorer 					IFQ_PURGE (&sp->pp_cpq);
   1236      1.1  explorer 				}
   1237      1.1  explorer 			}
   1238      1.1  explorer 			++sp->pp_loopcnt;
   1239      1.3  explorer 
   1240  1.5.2.1    bouyer 			/* Generate new local sequence number */
   1241      1.3  explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
   1242  1.5.2.1    bouyer 			sp->pp_seq[IDX_LCP] = random();
   1243      1.3  explorer #else
   1244      1.1  explorer 			sp->pp_seq[IDX_LCP] ^= time.tv_sec ^ time.tv_usec;
   1245      1.1  explorer #endif
   1246      1.3  explorer 			break;
   1247      1.1  explorer 		}
   1248      1.1  explorer 		sp->pp_loopcnt = 0;
   1249      1.3  explorer 		if (! (ifp->if_flags & IFF_UP) &&
   1250      1.3  explorer 		    (ifp->if_flags & IFF_RUNNING)) {
   1251      1.1  explorer 			if_up(ifp);
   1252      1.1  explorer 			printf (SPP_FMT "up\n", SPP_ARGS(ifp));
   1253      1.1  explorer 		}
   1254      1.3  explorer 		break;
   1255      1.3  explorer 	case CISCO_ADDR_REQ:
   1256      1.3  explorer 		sppp_get_ip_addrs(sp, &me, 0, &mymask);
   1257      1.1  explorer 		if (me != 0L)
   1258      1.1  explorer 			sppp_cisco_send(sp, CISCO_ADDR_REPLY, me, mymask);
   1259      1.1  explorer 		break;
   1260      1.1  explorer 	}
   1261      1.1  explorer }
   1262      1.3  explorer 
   1263      1.1  explorer /*
   1264      1.1  explorer  * Send Cisco keepalive packet.
   1265      1.3  explorer  */
   1266      1.1  explorer static void
   1267      1.3  explorer sppp_cisco_send(struct sppp *sp, int type, long par1, long par2)
   1268      1.1  explorer {
   1269      1.3  explorer 	STDDCL;
   1270      1.1  explorer 	struct ppp_header *h;
   1271      1.3  explorer 	struct cisco_packet *ch;
   1272      1.3  explorer 	struct mbuf *m;
   1273      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1274      1.3  explorer 	struct timeval tv;
   1275      1.3  explorer #else
   1276      1.1  explorer 	u_long t = (time.tv_sec - boottime.tv_sec) * 1000;
   1277      1.3  explorer #endif
   1278      1.3  explorer 
   1279      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1280      1.3  explorer 	getmicrouptime(&tv);
   1281      1.1  explorer #endif
   1282      1.1  explorer 
   1283      1.1  explorer 	MGETHDR (m, M_DONTWAIT, MT_DATA);
   1284      1.3  explorer 	if (! m)
   1285      1.1  explorer 		return;
   1286      1.1  explorer 	m->m_pkthdr.len = m->m_len = PPP_HEADER_LEN + CISCO_PACKET_LEN;
   1287      1.1  explorer 	m->m_pkthdr.rcvif = 0;
   1288      1.3  explorer 
   1289      1.3  explorer 	h = mtod (m, struct ppp_header*);
   1290      1.3  explorer 	h->address = CISCO_MULTICAST;
   1291      1.3  explorer 	h->control = 0;
   1292      1.3  explorer 	h->protocol = htons (CISCO_KEEPALIVE);
   1293      1.3  explorer 
   1294      1.3  explorer 	ch = (struct cisco_packet*) (h + 1);
   1295      1.3  explorer 	ch->type = htonl (type);
   1296      1.3  explorer 	ch->par1 = htonl (par1);
   1297      1.3  explorer 	ch->par2 = htonl (par2);
   1298      1.3  explorer 	ch->rel = -1;
   1299      1.3  explorer 
   1300      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1301      1.3  explorer 	ch->time0 = htons ((u_short) (tv.tv_sec >> 16));
   1302      1.3  explorer 	ch->time1 = htons ((u_short) tv.tv_sec);
   1303      1.3  explorer #else
   1304      1.3  explorer 	ch->time0 = htons ((u_short) (t >> 16));
   1305      1.1  explorer 	ch->time1 = htons ((u_short) t);
   1306      1.3  explorer #endif
   1307      1.3  explorer 
   1308      1.3  explorer 	if (debug)
   1309      1.3  explorer 		log(LOG_DEBUG,
   1310      1.3  explorer 		    SPP_FMT "cisco output: <0x%lx 0x%lx 0x%lx 0x%x 0x%x-0x%x>\n",
   1311      1.1  explorer 			SPP_ARGS(ifp), (u_long)ntohl (ch->type), (u_long)ch->par1,
   1312      1.3  explorer 			(u_long)ch->par2, (u_int)ch->rel, (u_int)ch->time0, (u_int)ch->time1);
   1313      1.3  explorer 
   1314      1.1  explorer 	if (IF_QFULL (&sp->pp_cpq)) {
   1315      1.1  explorer 		IF_DROP (&sp->pp_fastq);
   1316      1.1  explorer 		IF_DROP (&ifp->if_snd);
   1317      1.3  explorer 		m_freem (m);
   1318      1.1  explorer 	} else
   1319      1.1  explorer 		IF_ENQUEUE (&sp->pp_cpq, m);
   1320  1.5.2.5    bouyer 	if (! (ifp->if_flags & IFF_OACTIVE))
   1321      1.1  explorer 		(*ifp->if_start) (ifp);
   1322      1.1  explorer 	ifp->if_obytes += m->m_pkthdr.len + sp->pp_framebytes;
   1323      1.3  explorer }
   1324      1.3  explorer 
   1325      1.3  explorer /*
   1327      1.1  explorer  * PPP protocol implementation.
   1328      1.3  explorer  */
   1329      1.1  explorer 
   1330      1.1  explorer /*
   1331      1.3  explorer  * Send PPP control protocol packet.
   1332      1.3  explorer  */
   1333      1.1  explorer static void
   1334      1.3  explorer sppp_cp_send(struct sppp *sp, u_short proto, u_char type,
   1335      1.3  explorer 	     u_char ident, u_short len, void *data)
   1336      1.1  explorer {
   1337  1.5.2.5    bouyer 	STDDCL;
   1338  1.5.2.5    bouyer 	struct lcp_header *lh;
   1339  1.5.2.5    bouyer 	struct mbuf *m;
   1340      1.1  explorer 	size_t pkthdrlen;
   1341  1.5.2.5    bouyer 
   1342  1.5.2.5    bouyer 	pkthdrlen = (sp->pp_flags & PP_NOFRAMING) ? 2 : PPP_HEADER_LEN;
   1343      1.1  explorer 
   1344      1.1  explorer 	if (len > MHLEN - pkthdrlen - LCP_HEADER_LEN)
   1345      1.1  explorer 		len = MHLEN - pkthdrlen - LCP_HEADER_LEN;
   1346  1.5.2.5    bouyer 	MGETHDR (m, M_DONTWAIT, MT_DATA);
   1347      1.1  explorer 	if (! m)
   1348      1.1  explorer 		return;
   1349  1.5.2.5    bouyer 	m->m_pkthdr.len = m->m_len = pkthdrlen + LCP_HEADER_LEN + len;
   1350  1.5.2.5    bouyer 	m->m_pkthdr.rcvif = 0;
   1351  1.5.2.5    bouyer 
   1352  1.5.2.5    bouyer 	if (sp->pp_flags & PP_NOFRAMING) {
   1353  1.5.2.5    bouyer 		*mtod(m, u_int16_t*) = htons(proto);
   1354  1.5.2.5    bouyer 		lh = (struct lcp_header*)(mtod(m, u_int8_t*) + 2);
   1355  1.5.2.5    bouyer 	} else {
   1356  1.5.2.5    bouyer 		struct ppp_header *h;
   1357  1.5.2.5    bouyer 		h = mtod (m, struct ppp_header*);
   1358  1.5.2.5    bouyer 		h->address = PPP_ALLSTATIONS;        /* broadcast address */
   1359  1.5.2.5    bouyer 		h->control = PPP_UI;                 /* Unnumbered Info */
   1360      1.3  explorer 		h->protocol = htons (proto);         /* Link Control Protocol */
   1361      1.3  explorer 		lh = (struct lcp_header*) (h + 1);
   1362      1.3  explorer 	}
   1363      1.3  explorer 	lh->type = type;
   1364      1.3  explorer 	lh->ident = ident;
   1365      1.1  explorer 	lh->len = htons (LCP_HEADER_LEN + len);
   1366      1.3  explorer 	if (len)
   1367      1.3  explorer 		bcopy (data, lh+1, len);
   1368      1.3  explorer 
   1369      1.3  explorer 	if (debug) {
   1370      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s output <%s id=0x%x len=%d",
   1371      1.3  explorer 		    SPP_ARGS(ifp),
   1372      1.3  explorer 		    sppp_proto_name(proto),
   1373      1.3  explorer 		    sppp_cp_type_name (lh->type), lh->ident,
   1374      1.3  explorer 		    ntohs (lh->len));
   1375      1.3  explorer 		if (len)
   1376      1.3  explorer 			sppp_print_bytes ((u_char*) (lh+1), len);
   1377      1.3  explorer 		addlog(">\n");
   1378      1.1  explorer 	}
   1379      1.1  explorer 	if (IF_QFULL (&sp->pp_cpq)) {
   1380      1.3  explorer 		IF_DROP (&sp->pp_fastq);
   1381      1.1  explorer 		IF_DROP (&ifp->if_snd);
   1382      1.3  explorer 		m_freem (m);
   1383      1.1  explorer 		++ifp->if_oerrors;
   1384      1.1  explorer 	} else
   1385  1.5.2.5    bouyer 		IF_ENQUEUE (&sp->pp_cpq, m);
   1386      1.1  explorer 	if (! (ifp->if_flags & IFF_OACTIVE))
   1387      1.1  explorer 		(*ifp->if_start) (ifp);
   1388      1.1  explorer 	ifp->if_obytes += m->m_pkthdr.len + sp->pp_framebytes;
   1389      1.3  explorer }
   1390      1.1  explorer 
   1391      1.1  explorer /*
   1392      1.3  explorer  * Handle incoming PPP control protocol packets.
   1393      1.1  explorer  */
   1394      1.3  explorer static void
   1395      1.1  explorer sppp_cp_input(const struct cp *cp, struct sppp *sp, struct mbuf *m)
   1396      1.1  explorer {
   1397      1.3  explorer 	STDDCL;
   1398      1.3  explorer 	struct lcp_header *h;
   1399      1.1  explorer 	int len = m->m_pkthdr.len;
   1400      1.1  explorer 	int rv;
   1401      1.3  explorer 	u_char *p;
   1402      1.3  explorer 
   1403      1.3  explorer 	if (len < 4) {
   1404      1.3  explorer 		if (debug)
   1405      1.1  explorer 			log(LOG_DEBUG,
   1406      1.1  explorer 			    SPP_FMT "%s invalid packet length: %d bytes\n",
   1407      1.1  explorer 			    SPP_ARGS(ifp), cp->name, len);
   1408      1.3  explorer 		return;
   1409      1.3  explorer 	}
   1410      1.3  explorer 	h = mtod (m, struct lcp_header*);
   1411      1.3  explorer 	if (debug) {
   1412      1.3  explorer 		log(LOG_DEBUG,
   1413      1.3  explorer 		    SPP_FMT "%s input(%s): <%s id=0x%x len=%d",
   1414      1.1  explorer 		    SPP_ARGS(ifp), cp->name,
   1415      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]),
   1416      1.3  explorer 		    sppp_cp_type_name (h->type), h->ident, ntohs (h->len));
   1417      1.1  explorer 		if (len > 4)
   1418      1.1  explorer 			sppp_print_bytes ((u_char*) (h+1), len-4);
   1419      1.1  explorer 		addlog(">\n");
   1420      1.3  explorer 	}
   1421      1.1  explorer 	if (len > ntohs (h->len))
   1422      1.3  explorer 		len = ntohs (h->len);
   1423      1.1  explorer 	p = (u_char *)(h + 1);
   1424      1.3  explorer 	switch (h->type) {
   1425      1.3  explorer 	case CONF_REQ:
   1426      1.3  explorer 		if (len < 4) {
   1427      1.3  explorer 			if (debug)
   1428      1.3  explorer 				addlog(SPP_FMT "%s invalid conf-req length %d\n",
   1429      1.3  explorer 				       SPP_ARGS(ifp), cp->name,
   1430      1.3  explorer 				       len);
   1431      1.3  explorer 			++ifp->if_ierrors;
   1432      1.3  explorer 			break;
   1433      1.3  explorer 		}
   1434      1.3  explorer 		/* handle states where RCR doesn't get a SCA/SCN */
   1435      1.1  explorer 		switch (sp->state[cp->protoidx]) {
   1436      1.3  explorer 		case STATE_CLOSING:
   1437      1.3  explorer 		case STATE_STOPPING:
   1438      1.3  explorer 			return;
   1439      1.3  explorer 		case STATE_CLOSED:
   1440      1.3  explorer 			sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident,
   1441      1.3  explorer 				     0, 0);
   1442      1.3  explorer 			return;
   1443      1.3  explorer 		}
   1444      1.3  explorer 		rv = (cp->RCR)(sp, h, len);
   1445      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1446      1.3  explorer 		case STATE_OPENED:
   1447      1.3  explorer 			(cp->tld)(sp);
   1448      1.3  explorer 			(cp->scr)(sp);
   1449      1.3  explorer 			/* fall through... */
   1450      1.3  explorer 		case STATE_ACK_SENT:
   1451      1.3  explorer 		case STATE_REQ_SENT:
   1452      1.3  explorer 			sppp_cp_change_state(cp, sp, rv?
   1453      1.3  explorer 					     STATE_ACK_SENT: STATE_REQ_SENT);
   1454      1.3  explorer 			break;
   1455      1.3  explorer 		case STATE_STOPPED:
   1456      1.3  explorer 			sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1457      1.3  explorer 			(cp->scr)(sp);
   1458      1.3  explorer 			sppp_cp_change_state(cp, sp, rv?
   1459      1.3  explorer 					     STATE_ACK_SENT: STATE_REQ_SENT);
   1460      1.3  explorer 			break;
   1461      1.3  explorer 		case STATE_ACK_RCVD:
   1462      1.3  explorer 			if (rv) {
   1463      1.3  explorer 				sppp_cp_change_state(cp, sp, STATE_OPENED);
   1464      1.3  explorer 				if (debug)
   1465      1.3  explorer 					log(LOG_DEBUG, SPP_FMT "%s tlu\n",
   1466      1.3  explorer 					    SPP_ARGS(ifp),
   1467      1.3  explorer 					    cp->name);
   1468      1.3  explorer 				(cp->tlu)(sp);
   1469      1.3  explorer 			} else
   1470      1.3  explorer 				sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
   1471      1.3  explorer 			break;
   1472      1.3  explorer 		default:
   1473      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1474      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1475      1.3  explorer 			       sppp_cp_type_name(h->type),
   1476      1.3  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1477      1.3  explorer 			++ifp->if_ierrors;
   1478      1.3  explorer 		}
   1479      1.3  explorer 		break;
   1480      1.3  explorer 	case CONF_ACK:
   1481      1.3  explorer 		if (h->ident != sp->confid[cp->protoidx]) {
   1482      1.3  explorer 			if (debug)
   1483      1.3  explorer 				addlog(SPP_FMT "%s id mismatch 0x%x != 0x%x\n",
   1484      1.3  explorer 				       SPP_ARGS(ifp), cp->name,
   1485      1.3  explorer 				       h->ident, sp->confid[cp->protoidx]);
   1486      1.3  explorer 			++ifp->if_ierrors;
   1487      1.3  explorer 			break;
   1488      1.3  explorer 		}
   1489      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1490      1.3  explorer 		case STATE_CLOSED:
   1491      1.3  explorer 		case STATE_STOPPED:
   1492      1.3  explorer 			sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
   1493      1.3  explorer 			break;
   1494      1.3  explorer 		case STATE_CLOSING:
   1495      1.3  explorer 		case STATE_STOPPING:
   1496      1.3  explorer 			break;
   1497      1.3  explorer 		case STATE_REQ_SENT:
   1498      1.3  explorer 			sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1499      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
   1500      1.3  explorer 			break;
   1501      1.3  explorer 		case STATE_OPENED:
   1502      1.3  explorer 			(cp->tld)(sp);
   1503      1.3  explorer 			/* fall through */
   1504      1.3  explorer 		case STATE_ACK_RCVD:
   1505      1.3  explorer 			(cp->scr)(sp);
   1506      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1507      1.3  explorer 			break;
   1508      1.3  explorer 		case STATE_ACK_SENT:
   1509      1.3  explorer 			sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1510      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_OPENED);
   1511      1.3  explorer 			if (debug)
   1512      1.3  explorer 				log(LOG_DEBUG, SPP_FMT "%s tlu\n",
   1513      1.3  explorer 				       SPP_ARGS(ifp), cp->name);
   1514      1.3  explorer 			(cp->tlu)(sp);
   1515      1.3  explorer 			break;
   1516      1.3  explorer 		default:
   1517      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1518      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1519      1.3  explorer 			       sppp_cp_type_name(h->type),
   1520      1.3  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1521      1.3  explorer 			++ifp->if_ierrors;
   1522      1.3  explorer 		}
   1523      1.3  explorer 		break;
   1524      1.3  explorer 	case CONF_NAK:
   1525      1.3  explorer 	case CONF_REJ:
   1526      1.3  explorer 		if (h->ident != sp->confid[cp->protoidx]) {
   1527      1.3  explorer 			if (debug)
   1528      1.3  explorer 				addlog(SPP_FMT "%s id mismatch 0x%x != 0x%x\n",
   1529      1.3  explorer 				       SPP_ARGS(ifp), cp->name,
   1530      1.1  explorer 				       h->ident, sp->confid[cp->protoidx]);
   1531      1.3  explorer 			++ifp->if_ierrors;
   1532      1.3  explorer 			break;
   1533      1.3  explorer 		}
   1534      1.3  explorer 		if (h->type == CONF_NAK)
   1535      1.3  explorer 			(cp->RCN_nak)(sp, h, len);
   1536      1.3  explorer 		else /* CONF_REJ */
   1537      1.3  explorer 			(cp->RCN_rej)(sp, h, len);
   1538      1.3  explorer 
   1539      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1540      1.3  explorer 		case STATE_CLOSED:
   1541      1.3  explorer 		case STATE_STOPPED:
   1542      1.3  explorer 			sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
   1543      1.3  explorer 			break;
   1544      1.3  explorer 		case STATE_REQ_SENT:
   1545      1.3  explorer 		case STATE_ACK_SENT:
   1546      1.3  explorer 			sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1547      1.3  explorer 			(cp->scr)(sp);
   1548      1.3  explorer 			break;
   1549      1.3  explorer 		case STATE_OPENED:
   1550      1.3  explorer 			(cp->tld)(sp);
   1551      1.3  explorer 			/* fall through */
   1552      1.3  explorer 		case STATE_ACK_RCVD:
   1553      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_ACK_SENT);
   1554      1.3  explorer 			(cp->scr)(sp);
   1555      1.3  explorer 			break;
   1556      1.3  explorer 		case STATE_CLOSING:
   1557      1.3  explorer 		case STATE_STOPPING:
   1558      1.3  explorer 			break;
   1559      1.3  explorer 		default:
   1560      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1561      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1562      1.3  explorer 			       sppp_cp_type_name(h->type),
   1563      1.3  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1564      1.3  explorer 			++ifp->if_ierrors;
   1565      1.3  explorer 		}
   1566      1.3  explorer 		break;
   1567      1.3  explorer 
   1568      1.3  explorer 	case TERM_REQ:
   1569      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1570      1.3  explorer 		case STATE_ACK_RCVD:
   1571      1.3  explorer 		case STATE_ACK_SENT:
   1572      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1573      1.3  explorer 			/* fall through */
   1574      1.3  explorer 		case STATE_CLOSED:
   1575      1.3  explorer 		case STATE_STOPPED:
   1576      1.3  explorer 		case STATE_CLOSING:
   1577      1.3  explorer 		case STATE_STOPPING:
   1578      1.3  explorer 		case STATE_REQ_SENT:
   1579      1.3  explorer 		  sta:
   1580      1.3  explorer 			/* Send Terminate-Ack packet. */
   1581      1.3  explorer 			if (debug)
   1582      1.3  explorer 				log(LOG_DEBUG, SPP_FMT "%s send terminate-ack\n",
   1583      1.3  explorer 				    SPP_ARGS(ifp), cp->name);
   1584      1.3  explorer 			sppp_cp_send(sp, cp->proto, TERM_ACK, h->ident, 0, 0);
   1585      1.3  explorer 			break;
   1586      1.3  explorer 		case STATE_OPENED:
   1587      1.3  explorer 			(cp->tld)(sp);
   1588      1.3  explorer 			sp->rst_counter[cp->protoidx] = 0;
   1589      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_STOPPING);
   1590      1.3  explorer 			goto sta;
   1591      1.3  explorer 			break;
   1592      1.3  explorer 		default:
   1593      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1594      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1595      1.1  explorer 			       sppp_cp_type_name(h->type),
   1596      1.1  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1597      1.3  explorer 			++ifp->if_ierrors;
   1598      1.3  explorer 		}
   1599      1.3  explorer 		break;
   1600      1.3  explorer 	case TERM_ACK:
   1601      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1602      1.3  explorer 		case STATE_CLOSED:
   1603      1.3  explorer 		case STATE_STOPPED:
   1604      1.3  explorer 		case STATE_REQ_SENT:
   1605      1.3  explorer 		case STATE_ACK_SENT:
   1606      1.3  explorer 			break;
   1607      1.3  explorer 		case STATE_CLOSING:
   1608      1.3  explorer 			(cp->tlf)(sp);
   1609      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_CLOSED);
   1610      1.3  explorer 			break;
   1611      1.1  explorer 		case STATE_STOPPING:
   1612      1.3  explorer 			(cp->tlf)(sp);
   1613      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_STOPPED);
   1614      1.1  explorer 			break;
   1615      1.3  explorer 		case STATE_ACK_RCVD:
   1616      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1617      1.3  explorer 			break;
   1618      1.3  explorer 		case STATE_OPENED:
   1619      1.1  explorer 			(cp->tld)(sp);
   1620      1.3  explorer 			(cp->scr)(sp);
   1621      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_ACK_RCVD);
   1622      1.3  explorer 			break;
   1623      1.3  explorer 		default:
   1624      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1625      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1626      1.1  explorer 			       sppp_cp_type_name(h->type),
   1627      1.1  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1628      1.3  explorer 			++ifp->if_ierrors;
   1629      1.3  explorer 		}
   1630      1.3  explorer 		break;
   1631  1.5.2.1    bouyer 	case CODE_REJ:
   1632      1.3  explorer 		/* XXX catastrophic rejects (RXJ-) aren't handled yet. */
   1633      1.3  explorer 		log(LOG_INFO,
   1634  1.5.2.1    bouyer 		    SPP_FMT "%s: ignoring RXJ (%s) for code ?, "
   1635  1.5.2.1    bouyer 		    "danger will robinson\n",
   1636  1.5.2.1    bouyer 		    SPP_ARGS(ifp), cp->name,
   1637  1.5.2.1    bouyer 		    sppp_cp_type_name(h->type));
   1638  1.5.2.1    bouyer 		switch (sp->state[cp->protoidx]) {
   1639  1.5.2.1    bouyer 		case STATE_CLOSED:
   1640  1.5.2.1    bouyer 		case STATE_STOPPED:
   1641  1.5.2.1    bouyer 		case STATE_REQ_SENT:
   1642  1.5.2.1    bouyer 		case STATE_ACK_SENT:
   1643  1.5.2.1    bouyer 		case STATE_CLOSING:
   1644  1.5.2.1    bouyer 		case STATE_STOPPING:
   1645  1.5.2.1    bouyer 		case STATE_OPENED:
   1646  1.5.2.1    bouyer 			break;
   1647  1.5.2.1    bouyer 		case STATE_ACK_RCVD:
   1648  1.5.2.1    bouyer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1649  1.5.2.1    bouyer 			break;
   1650  1.5.2.1    bouyer 		default:
   1651  1.5.2.1    bouyer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1652  1.5.2.1    bouyer 			       SPP_ARGS(ifp), cp->name,
   1653  1.5.2.1    bouyer 			       sppp_cp_type_name(h->type),
   1654  1.5.2.1    bouyer 			       sppp_state_name(sp->state[cp->protoidx]));
   1655  1.5.2.1    bouyer 			++ifp->if_ierrors;
   1656  1.5.2.1    bouyer 		}
   1657  1.5.2.1    bouyer 		break;
   1658  1.5.2.1    bouyer 	case PROTO_REJ:
   1659  1.5.2.1    bouyer 	    {
   1660  1.5.2.1    bouyer 		int catastrophic;
   1661  1.5.2.1    bouyer 		const struct cp *upper;
   1662  1.5.2.1    bouyer 		int i;
   1663  1.5.2.1    bouyer 		u_int16_t proto;
   1664  1.5.2.1    bouyer 
   1665  1.5.2.1    bouyer 		catastrophic = 0;
   1666  1.5.2.1    bouyer 		upper = NULL;
   1667  1.5.2.1    bouyer 		proto = ntohs(*((u_int16_t *)p));
   1668  1.5.2.1    bouyer 		for (i = 0; i < IDX_COUNT; i++) {
   1669  1.5.2.1    bouyer 			if (cps[i]->proto == proto) {
   1670  1.5.2.1    bouyer 				upper = cps[i];
   1671  1.5.2.1    bouyer 				break;
   1672  1.5.2.1    bouyer 			}
   1673  1.5.2.1    bouyer 		}
   1674  1.5.2.1    bouyer 		if (upper == NULL)
   1675  1.5.2.1    bouyer 			catastrophic++;
   1676  1.5.2.1    bouyer 
   1677  1.5.2.1    bouyer 		log(LOG_INFO,
   1678  1.5.2.1    bouyer 		    SPP_FMT "%s: RXJ%c (%s) for proto 0x%x (%s/%s)\n",
   1679  1.5.2.1    bouyer 		    SPP_ARGS(ifp), cp->name, catastrophic ? '-' : '+',
   1680  1.5.2.1    bouyer 		    sppp_cp_type_name(h->type), proto,
   1681  1.5.2.1    bouyer 		    upper ? upper->name : "unknown",
   1682  1.5.2.1    bouyer 		    upper ? sppp_state_name(sp->state[upper->protoidx]) : "?");
   1683  1.5.2.1    bouyer 
   1684  1.5.2.1    bouyer 		/*
   1685  1.5.2.1    bouyer 		 * if we got RXJ+ against conf-req, the peer does not implement
   1686  1.5.2.1    bouyer 		 * this particular protocol type.  terminate the protocol.
   1687  1.5.2.1    bouyer 		 */
   1688  1.5.2.1    bouyer 		if (upper && !catastrophic) {
   1689  1.5.2.1    bouyer 			if (sp->state[upper->protoidx] == STATE_REQ_SENT) {
   1690  1.5.2.1    bouyer 				upper->Close(sp);
   1691  1.5.2.1    bouyer 				break;
   1692  1.5.2.1    bouyer 			}
   1693      1.3  explorer 		}
   1694      1.3  explorer 
   1695      1.3  explorer 		/* XXX catastrophic rejects (RXJ-) aren't handled yet. */
   1696      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1697      1.3  explorer 		case STATE_CLOSED:
   1698      1.3  explorer 		case STATE_STOPPED:
   1699      1.3  explorer 		case STATE_REQ_SENT:
   1700      1.3  explorer 		case STATE_ACK_SENT:
   1701      1.3  explorer 		case STATE_CLOSING:
   1702      1.3  explorer 		case STATE_STOPPING:
   1703      1.3  explorer 		case STATE_OPENED:
   1704      1.1  explorer 			break;
   1705      1.3  explorer 		case STATE_ACK_RCVD:
   1706      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1707      1.3  explorer 			break;
   1708      1.3  explorer 		default:
   1709      1.3  explorer 			printf(SPP_FMT "%s illegal %s in state %s\n",
   1710      1.3  explorer 			       SPP_ARGS(ifp), cp->name,
   1711      1.3  explorer 			       sppp_cp_type_name(h->type),
   1712      1.1  explorer 			       sppp_state_name(sp->state[cp->protoidx]));
   1713  1.5.2.1    bouyer 			++ifp->if_ierrors;
   1714      1.3  explorer 		}
   1715      1.3  explorer 		break;
   1716      1.3  explorer 	    }
   1717      1.3  explorer 	case DISC_REQ:
   1718      1.3  explorer 		if (cp->proto != PPP_LCP)
   1719      1.3  explorer 			goto illegal;
   1720      1.3  explorer 		/* Discard the packet. */
   1721      1.3  explorer 		break;
   1722      1.3  explorer 	case ECHO_REQ:
   1723      1.3  explorer 		if (cp->proto != PPP_LCP)
   1724      1.3  explorer 			goto illegal;
   1725      1.3  explorer 		if (sp->state[cp->protoidx] != STATE_OPENED) {
   1726      1.3  explorer 			if (debug)
   1727      1.3  explorer 				addlog(SPP_FMT "lcp echo req but lcp closed\n",
   1728      1.3  explorer 				       SPP_ARGS(ifp));
   1729      1.3  explorer 			++ifp->if_ierrors;
   1730      1.3  explorer 			break;
   1731      1.3  explorer 		}
   1732      1.3  explorer 		if (len < 8) {
   1733      1.3  explorer 			if (debug)
   1734      1.3  explorer 				addlog(SPP_FMT "invalid lcp echo request "
   1735      1.3  explorer 				       "packet length: %d bytes\n",
   1736      1.3  explorer 				       SPP_ARGS(ifp), len);
   1737      1.3  explorer 			break;
   1738      1.3  explorer 		}
   1739      1.3  explorer 		if (ntohl (*(long*)(h+1)) == sp->lcp.magic) {
   1740  1.5.2.2    bouyer 			/* Line loopback mode detected. */
   1741      1.3  explorer 			printf(SPP_FMT "loopback\n", SPP_ARGS(ifp));
   1742      1.3  explorer 			if_down (ifp);
   1743      1.3  explorer 			IFQ_PURGE (&sp->pp_cpq);
   1744      1.3  explorer 
   1745      1.3  explorer 			/* Shut down the PPP link. */
   1746      1.3  explorer 			/* XXX */
   1747      1.3  explorer 			lcp.Down(sp);
   1748      1.3  explorer 			lcp.Up(sp);
   1749      1.3  explorer 			break;
   1750      1.3  explorer 		}
   1751      1.3  explorer 		*(long*)(h+1) = htonl (sp->lcp.magic);
   1752      1.3  explorer 		if (debug)
   1753      1.1  explorer 			addlog(SPP_FMT "got lcp echo req, sending echo rep\n",
   1754      1.3  explorer 			       SPP_ARGS(ifp));
   1755      1.3  explorer 		sppp_cp_send (sp, PPP_LCP, ECHO_REPLY, h->ident, len-4, h+1);
   1756      1.3  explorer 		break;
   1757      1.3  explorer 	case ECHO_REPLY:
   1758      1.3  explorer 		if (cp->proto != PPP_LCP)
   1759      1.3  explorer 			goto illegal;
   1760      1.3  explorer 		if (h->ident != sp->lcp.echoid) {
   1761      1.3  explorer 			++ifp->if_ierrors;
   1762      1.3  explorer 			break;
   1763      1.3  explorer 		}
   1764      1.3  explorer 		if (len < 8) {
   1765      1.3  explorer 			if (debug)
   1766      1.3  explorer 				addlog(SPP_FMT "lcp invalid echo reply "
   1767      1.3  explorer 				       "packet length: %d bytes\n",
   1768      1.3  explorer 				       SPP_ARGS(ifp), len);
   1769      1.3  explorer 			break;
   1770      1.3  explorer 		}
   1771      1.3  explorer 		if (debug)
   1772      1.3  explorer 			addlog(SPP_FMT "lcp got echo rep\n",
   1773      1.1  explorer 			       SPP_ARGS(ifp));
   1774      1.3  explorer 		if (ntohl (*(long*)(h+1)) != sp->lcp.magic)
   1775      1.3  explorer 			sp->pp_alivecnt = 0;
   1776      1.3  explorer 		break;
   1777      1.3  explorer 	default:
   1778      1.3  explorer 		/* Unknown packet type -- send Code-Reject packet. */
   1779      1.3  explorer 	  illegal:
   1780  1.5.2.1    bouyer 		if (debug)
   1781  1.5.2.1    bouyer 			addlog(SPP_FMT "%s send code-rej for 0x%x\n",
   1782      1.3  explorer 			       SPP_ARGS(ifp), cp->name, h->type);
   1783      1.1  explorer 		sppp_cp_send(sp, cp->proto, CODE_REJ,
   1784      1.1  explorer 		    ++sp->pp_seq[cp->protoidx], m->m_pkthdr.len, h);
   1785      1.1  explorer 		++ifp->if_ierrors;
   1786      1.3  explorer 	}
   1787      1.3  explorer }
   1788      1.3  explorer 
   1789      1.3  explorer 
   1790      1.3  explorer /*
   1791      1.1  explorer  * The generic part of all Up/Down/Open/Close/TO event handlers.
   1792      1.3  explorer  * Basically, the state transition handling in the automaton.
   1793      1.1  explorer  */
   1794      1.3  explorer static void
   1795      1.1  explorer sppp_up_event(const struct cp *cp, struct sppp *sp)
   1796      1.3  explorer {
   1797      1.3  explorer 	STDDCL;
   1798      1.3  explorer 
   1799      1.3  explorer 	if (debug)
   1800      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s up(%s)\n",
   1801      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   1802      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]));
   1803      1.3  explorer 
   1804      1.3  explorer 	switch (sp->state[cp->protoidx]) {
   1805      1.3  explorer 	case STATE_INITIAL:
   1806      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_CLOSED);
   1807      1.3  explorer 		break;
   1808      1.3  explorer 	case STATE_STARTING:
   1809      1.3  explorer 		sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1810      1.3  explorer 		(cp->scr)(sp);
   1811      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1812      1.3  explorer 		break;
   1813      1.3  explorer 	default:
   1814      1.3  explorer 		printf(SPP_FMT "%s illegal up in state %s\n",
   1815      1.1  explorer 		       SPP_ARGS(ifp), cp->name,
   1816      1.1  explorer 		       sppp_state_name(sp->state[cp->protoidx]));
   1817      1.1  explorer 	}
   1818      1.3  explorer }
   1819      1.1  explorer 
   1820      1.3  explorer static void
   1821      1.3  explorer sppp_down_event(const struct cp *cp, struct sppp *sp)
   1822      1.3  explorer {
   1823      1.3  explorer 	STDDCL;
   1824      1.3  explorer 
   1825      1.3  explorer 	if (debug)
   1826      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s down(%s)\n",
   1827      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   1828      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]));
   1829      1.3  explorer 
   1830      1.3  explorer 	switch (sp->state[cp->protoidx]) {
   1831      1.3  explorer 	case STATE_CLOSED:
   1832      1.3  explorer 	case STATE_CLOSING:
   1833      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_INITIAL);
   1834      1.3  explorer 		break;
   1835      1.3  explorer 	case STATE_STOPPED:
   1836      1.3  explorer 		(cp->tls)(sp);
   1837      1.3  explorer 		/* fall through */
   1838      1.3  explorer 	case STATE_STOPPING:
   1839      1.3  explorer 	case STATE_REQ_SENT:
   1840      1.3  explorer 	case STATE_ACK_RCVD:
   1841      1.3  explorer 	case STATE_ACK_SENT:
   1842      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_STARTING);
   1843      1.3  explorer 		break;
   1844      1.3  explorer 	case STATE_OPENED:
   1845      1.3  explorer 		(cp->tld)(sp);
   1846      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_STARTING);
   1847      1.3  explorer 		break;
   1848      1.3  explorer 	default:
   1849      1.3  explorer 		printf(SPP_FMT "%s illegal down in state %s\n",
   1850      1.1  explorer 		       SPP_ARGS(ifp), cp->name,
   1851      1.1  explorer 		       sppp_state_name(sp->state[cp->protoidx]));
   1852      1.3  explorer 	}
   1853      1.1  explorer }
   1854      1.3  explorer 
   1855      1.1  explorer 
   1856      1.3  explorer static void
   1857      1.1  explorer sppp_open_event(const struct cp *cp, struct sppp *sp)
   1858      1.3  explorer {
   1859      1.3  explorer 	STDDCL;
   1860      1.3  explorer 
   1861      1.3  explorer 	if (debug)
   1862      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s open(%s)\n",
   1863      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   1864      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]));
   1865      1.3  explorer 
   1866      1.3  explorer 	switch (sp->state[cp->protoidx]) {
   1867      1.3  explorer 	case STATE_INITIAL:
   1868      1.3  explorer 		(cp->tls)(sp);
   1869      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_STARTING);
   1870      1.3  explorer 		break;
   1871      1.3  explorer 	case STATE_STARTING:
   1872      1.3  explorer 		break;
   1873      1.3  explorer 	case STATE_CLOSED:
   1874      1.3  explorer 		sp->rst_counter[cp->protoidx] = sp->lcp.max_configure;
   1875      1.3  explorer 		(cp->scr)(sp);
   1876      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1877      1.3  explorer 		break;
   1878      1.3  explorer 	case STATE_STOPPED:
   1879      1.3  explorer 	case STATE_STOPPING:
   1880      1.3  explorer 	case STATE_REQ_SENT:
   1881      1.3  explorer 	case STATE_ACK_RCVD:
   1882      1.3  explorer 	case STATE_ACK_SENT:
   1883      1.3  explorer 	case STATE_OPENED:
   1884      1.1  explorer 		break;
   1885      1.1  explorer 	case STATE_CLOSING:
   1886      1.1  explorer 		sppp_cp_change_state(cp, sp, STATE_STOPPING);
   1887      1.1  explorer 		break;
   1888      1.3  explorer 	}
   1889      1.3  explorer }
   1890      1.3  explorer 
   1891      1.1  explorer 
   1892      1.3  explorer static void
   1893      1.1  explorer sppp_close_event(const struct cp *cp, struct sppp *sp)
   1894      1.3  explorer {
   1895      1.3  explorer 	STDDCL;
   1896      1.3  explorer 
   1897      1.3  explorer 	if (debug)
   1898      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s close(%s)\n",
   1899      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   1900      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]));
   1901      1.3  explorer 
   1902      1.3  explorer 	switch (sp->state[cp->protoidx]) {
   1903      1.3  explorer 	case STATE_INITIAL:
   1904      1.3  explorer 	case STATE_CLOSED:
   1905      1.3  explorer 	case STATE_CLOSING:
   1906      1.3  explorer 		break;
   1907      1.3  explorer 	case STATE_STARTING:
   1908      1.3  explorer 		(cp->tlf)(sp);
   1909      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_INITIAL);
   1910      1.3  explorer 		break;
   1911      1.3  explorer 	case STATE_STOPPED:
   1912      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_CLOSED);
   1913      1.3  explorer 		break;
   1914      1.3  explorer 	case STATE_STOPPING:
   1915      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_CLOSING);
   1916      1.3  explorer 		break;
   1917      1.3  explorer 	case STATE_OPENED:
   1918      1.3  explorer 		(cp->tld)(sp);
   1919      1.3  explorer 		/* fall through */
   1920      1.3  explorer 	case STATE_REQ_SENT:
   1921  1.5.2.1    bouyer 	case STATE_ACK_RCVD:
   1922  1.5.2.1    bouyer 	case STATE_ACK_SENT:
   1923      1.3  explorer 		sp->rst_counter[cp->protoidx] = sp->lcp.max_terminate;
   1924      1.3  explorer 		sppp_cp_send(sp, cp->proto, TERM_REQ,
   1925      1.3  explorer 		    ++sp->pp_seq[cp->protoidx], 0, 0);
   1926      1.3  explorer 		sppp_cp_change_state(cp, sp, STATE_CLOSING);
   1927      1.3  explorer 		break;
   1928      1.3  explorer 	}
   1929      1.3  explorer }
   1930      1.3  explorer 
   1931      1.3  explorer static void
   1932      1.3  explorer sppp_to_event(const struct cp *cp, struct sppp *sp)
   1933      1.3  explorer {
   1934  1.5.2.5    bouyer 	STDDCL;
   1935      1.3  explorer 	int s;
   1936      1.3  explorer 
   1937      1.3  explorer 	s = splnet();
   1938      1.3  explorer 	if (debug)
   1939      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s TO(%s) rst_counter = %d\n",
   1940      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   1941      1.3  explorer 		    sppp_state_name(sp->state[cp->protoidx]),
   1942      1.3  explorer 		    sp->rst_counter[cp->protoidx]);
   1943      1.3  explorer 
   1944      1.3  explorer 	if (--sp->rst_counter[cp->protoidx] < 0)
   1945      1.3  explorer 		/* TO- event */
   1946      1.3  explorer 		switch (sp->state[cp->protoidx]) {
   1947      1.3  explorer 		case STATE_CLOSING:
   1948      1.3  explorer 			(cp->tlf)(sp);
   1949      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_CLOSED);
   1950      1.3  explorer 			break;
   1951      1.3  explorer 		case STATE_STOPPING:
   1952      1.3  explorer 			(cp->tlf)(sp);
   1953      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_STOPPED);
   1954      1.3  explorer 			break;
   1955      1.3  explorer 		case STATE_REQ_SENT:
   1956      1.3  explorer 		case STATE_ACK_RCVD:
   1957      1.3  explorer 		case STATE_ACK_SENT:
   1958      1.3  explorer 			(cp->tlf)(sp);
   1959      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_STOPPED);
   1960      1.3  explorer 			break;
   1961      1.3  explorer 		}
   1962      1.3  explorer 	else
   1963      1.3  explorer 		/* TO+ event */
   1964  1.5.2.1    bouyer 		switch (sp->state[cp->protoidx]) {
   1965  1.5.2.1    bouyer 		case STATE_CLOSING:
   1966  1.5.2.1    bouyer 		case STATE_STOPPING:
   1967  1.5.2.1    bouyer 			sppp_cp_send(sp, cp->proto, TERM_REQ,
   1968  1.5.2.1    bouyer 			    ++sp->pp_seq[cp->protoidx], 0, 0);
   1969  1.5.2.1    bouyer #if defined(__NetBSD__)
   1970      1.3  explorer 			callout_reset(&sp->ch[cp->protoidx], sp->lcp.timeout,
   1971      1.3  explorer 			    cp->TO, sp);
   1972      1.3  explorer #else
   1973      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1974  1.5.2.1    bouyer 			sp->ch[cp->protoidx] =
   1975      1.3  explorer #endif
   1976      1.3  explorer 			timeout(cp->TO, (void *)sp, sp->lcp.timeout);
   1977      1.3  explorer #endif /* __NetBSD__ */
   1978      1.3  explorer 			break;
   1979      1.3  explorer 		case STATE_REQ_SENT:
   1980      1.3  explorer 		case STATE_ACK_RCVD:
   1981      1.3  explorer 			(cp->scr)(sp);
   1982      1.3  explorer 			/* sppp_cp_change_state() will restart the timer */
   1983      1.3  explorer 			sppp_cp_change_state(cp, sp, STATE_REQ_SENT);
   1984  1.5.2.1    bouyer 			break;
   1985  1.5.2.1    bouyer 		case STATE_ACK_SENT:
   1986  1.5.2.1    bouyer 			(cp->scr)(sp);
   1987  1.5.2.1    bouyer #if defined(__NetBSD__)
   1988      1.3  explorer 			callout_reset(&sp->ch[cp->protoidx], sp->lcp.timeout,
   1989      1.3  explorer 			    cp->TO, sp);
   1990      1.3  explorer #else
   1991      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   1992  1.5.2.1    bouyer 			sp->ch[cp->protoidx] =
   1993      1.3  explorer #endif
   1994      1.3  explorer 			timeout(cp->TO, (void *)sp, sp->lcp.timeout);
   1995      1.3  explorer #endif /* __NetBSD__ */
   1996      1.3  explorer 			break;
   1997      1.3  explorer 		}
   1998      1.3  explorer 
   1999      1.3  explorer 	splx(s);
   2000      1.3  explorer }
   2001      1.3  explorer 
   2002      1.3  explorer /*
   2003      1.3  explorer  * Change the state of a control protocol in the state automaton.
   2004      1.3  explorer  * Takes care of starting/stopping the restart timer.
   2005      1.3  explorer  */
   2006      1.3  explorer void
   2007      1.3  explorer sppp_cp_change_state(const struct cp *cp, struct sppp *sp, int newstate)
   2008  1.5.2.1    bouyer {
   2009  1.5.2.1    bouyer 	sp->state[cp->protoidx] = newstate;
   2010  1.5.2.1    bouyer 
   2011      1.3  explorer #if defined(__NetBSD__)
   2012      1.3  explorer 	callout_stop(&sp->ch[cp->protoidx]);
   2013      1.3  explorer #else
   2014      1.3  explorer 	untimeout(cp->TO, (void *)sp
   2015      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   2016  1.5.2.1    bouyer 	, sp->ch[cp->protoidx]
   2017      1.3  explorer #endif
   2018      1.3  explorer 	);
   2019      1.3  explorer #endif /* __NetBSD__ */
   2020      1.3  explorer 	switch (newstate) {
   2021      1.3  explorer 	case STATE_INITIAL:
   2022      1.3  explorer 	case STATE_STARTING:
   2023      1.3  explorer 	case STATE_CLOSED:
   2024      1.3  explorer 	case STATE_STOPPED:
   2025      1.3  explorer 	case STATE_OPENED:
   2026      1.3  explorer 		break;
   2027      1.3  explorer 	case STATE_CLOSING:
   2028      1.3  explorer 	case STATE_STOPPING:
   2029  1.5.2.1    bouyer 	case STATE_REQ_SENT:
   2030  1.5.2.1    bouyer 	case STATE_ACK_RCVD:
   2031  1.5.2.1    bouyer 	case STATE_ACK_SENT:
   2032  1.5.2.1    bouyer #if defined(__NetBSD__)
   2033      1.3  explorer 		callout_reset(&sp->ch[cp->protoidx], sp->lcp.timeout,
   2034      1.3  explorer 		    cp->TO, sp);
   2035      1.3  explorer #else
   2036      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   2037  1.5.2.1    bouyer 		sp->ch[cp->protoidx]  =
   2038      1.3  explorer #endif
   2039      1.3  explorer 		timeout(cp->TO, (void *)sp, sp->lcp.timeout);
   2040      1.3  explorer #endif /* __NetBSD__ */
   2041      1.3  explorer 		break;
   2042      1.3  explorer 	}
   2043      1.3  explorer }
   2044      1.3  explorer /*
   2046      1.3  explorer  *--------------------------------------------------------------------------*
   2047      1.3  explorer  *                                                                          *
   2048      1.3  explorer  *                         The LCP implementation.                          *
   2049      1.3  explorer  *                                                                          *
   2050      1.3  explorer  *--------------------------------------------------------------------------*
   2051      1.3  explorer  */
   2052      1.3  explorer static void
   2053      1.3  explorer sppp_lcp_init(struct sppp *sp)
   2054      1.3  explorer {
   2055  1.5.2.1    bouyer 	sp->lcp.opts = (1 << LCP_OPT_MAGIC);
   2056  1.5.2.1    bouyer 	sp->lcp.magic = 0;
   2057      1.3  explorer 	sp->state[IDX_LCP] = STATE_INITIAL;
   2058      1.3  explorer 	sp->fail_counter[IDX_LCP] = 0;
   2059      1.3  explorer 	sp->pp_seq[IDX_LCP] = 0;
   2060      1.3  explorer 	sp->pp_rseq[IDX_LCP] = 0;
   2061      1.3  explorer 	sp->lcp.protos = 0;
   2062      1.3  explorer 	sp->lcp.mru = sp->lcp.their_mru = PP_MTU;
   2063      1.3  explorer 
   2064      1.3  explorer 	/*
   2065      1.3  explorer 	 * Initialize counters and timeout values.  Note that we don't
   2066      1.3  explorer 	 * use the 3 seconds suggested in RFC 1661 since we are likely
   2067      1.3  explorer 	 * running on a fast link.  XXX We should probably implement
   2068      1.3  explorer 	 * the exponential backoff option.  Note that these values are
   2069      1.3  explorer 	 * relevant for all control protocols, not just LCP only.
   2070      1.3  explorer 	 */
   2071  1.5.2.1    bouyer 	sp->lcp.timeout = 1 * hz;
   2072  1.5.2.1    bouyer 	sp->lcp.max_terminate = 2;
   2073  1.5.2.1    bouyer 	sp->lcp.max_configure = 10;
   2074      1.3  explorer 	sp->lcp.max_failure = 10;
   2075      1.3  explorer #if defined(__NetBSD__)
   2076      1.3  explorer 	callout_init(&sp->ch[IDX_LCP]);
   2077      1.3  explorer #endif
   2078      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   2079      1.3  explorer 	callout_handle_init(&sp->ch[IDX_LCP]);
   2080      1.3  explorer #endif
   2081      1.3  explorer }
   2082      1.3  explorer 
   2083      1.3  explorer static void
   2084      1.3  explorer sppp_lcp_up(struct sppp *sp)
   2085      1.3  explorer {
   2086      1.3  explorer 	STDDCL;
   2087      1.3  explorer 
   2088      1.3  explorer 	/*
   2089      1.3  explorer 	 * If this interface is passive or dial-on-demand, and we are
   2090      1.3  explorer 	 * still in Initial state, it means we've got an incoming
   2091      1.3  explorer 	 * call.  Activate the interface.
   2092      1.3  explorer 	 */
   2093      1.3  explorer 	if ((ifp->if_flags & (IFF_AUTO | IFF_PASSIVE)) != 0) {
   2094      1.3  explorer 		if (debug)
   2095      1.3  explorer 			log(LOG_DEBUG,
   2096      1.3  explorer 			    SPP_FMT "Up event", SPP_ARGS(ifp));
   2097      1.3  explorer 		ifp->if_flags |= IFF_RUNNING;
   2098      1.3  explorer 		if (sp->state[IDX_LCP] == STATE_INITIAL) {
   2099      1.3  explorer 			if (debug)
   2100      1.3  explorer 				addlog("(incoming call)\n");
   2101      1.3  explorer 			sp->pp_flags |= PP_CALLIN;
   2102      1.3  explorer 			lcp.Open(sp);
   2103      1.3  explorer 		} else if (debug)
   2104      1.3  explorer 			addlog("\n");
   2105      1.3  explorer 	}
   2106      1.3  explorer 
   2107      1.3  explorer 	sppp_up_event(&lcp, sp);
   2108      1.3  explorer }
   2109      1.3  explorer 
   2110      1.3  explorer static void
   2111      1.3  explorer sppp_lcp_down(struct sppp *sp)
   2112      1.3  explorer {
   2113      1.3  explorer 	STDDCL;
   2114      1.3  explorer 
   2115      1.3  explorer 	sppp_down_event(&lcp, sp);
   2116      1.3  explorer 
   2117      1.3  explorer 	/*
   2118      1.3  explorer 	 * If this is neither a dial-on-demand nor a passive
   2119      1.3  explorer 	 * interface, simulate an ``ifconfig down'' action, so the
   2120      1.3  explorer 	 * administrator can force a redial by another ``ifconfig
   2121      1.3  explorer 	 * up''.  XXX For leased line operation, should we immediately
   2122      1.3  explorer 	 * try to reopen the connection here?
   2123      1.3  explorer 	 */
   2124      1.3  explorer 	if ((ifp->if_flags & (IFF_AUTO | IFF_PASSIVE)) == 0) {
   2125      1.3  explorer 		log(LOG_INFO,
   2126      1.3  explorer 		    SPP_FMT "Down event (carrier loss), taking interface down.\n",
   2127      1.3  explorer 		    SPP_ARGS(ifp));
   2128      1.3  explorer 		if_down(ifp);
   2129      1.3  explorer 	} else {
   2130      1.3  explorer 		if (debug)
   2131      1.3  explorer 			log(LOG_DEBUG,
   2132      1.3  explorer 			    SPP_FMT "Down event (carrier loss)\n",
   2133      1.3  explorer 			    SPP_ARGS(ifp));
   2134      1.3  explorer 	}
   2135      1.3  explorer 	sp->pp_flags &= ~PP_CALLIN;
   2136      1.3  explorer 	if (sp->state[IDX_LCP] != STATE_INITIAL)
   2137      1.3  explorer 		lcp.Close(sp);
   2138      1.3  explorer 	ifp->if_flags &= ~IFF_RUNNING;
   2139      1.3  explorer }
   2140      1.3  explorer 
   2141      1.3  explorer static void
   2142      1.3  explorer sppp_lcp_open(struct sppp *sp)
   2143      1.3  explorer {
   2144      1.3  explorer 	/*
   2145      1.3  explorer 	 * If we are authenticator, negotiate LCP_AUTH
   2146      1.3  explorer 	 */
   2147      1.3  explorer 	if (sp->hisauth.proto != 0)
   2148      1.3  explorer 		sp->lcp.opts |= (1 << LCP_OPT_AUTH_PROTO);
   2149      1.3  explorer 	else
   2150      1.3  explorer 		sp->lcp.opts &= ~(1 << LCP_OPT_AUTH_PROTO);
   2151      1.3  explorer 	sp->pp_flags &= ~PP_NEEDAUTH;
   2152      1.3  explorer 	sppp_open_event(&lcp, sp);
   2153      1.3  explorer }
   2154      1.3  explorer 
   2155      1.3  explorer static void
   2156      1.3  explorer sppp_lcp_close(struct sppp *sp)
   2157      1.3  explorer {
   2158      1.3  explorer 	sppp_close_event(&lcp, sp);
   2159      1.3  explorer }
   2160      1.3  explorer 
   2161      1.3  explorer static void
   2162      1.3  explorer sppp_lcp_TO(void *cookie)
   2163      1.3  explorer {
   2164      1.3  explorer 	sppp_to_event(&lcp, (struct sppp *)cookie);
   2165      1.3  explorer }
   2166      1.3  explorer 
   2167      1.3  explorer /*
   2168      1.3  explorer  * Analyze a configure request.  Return true if it was agreeable, and
   2169      1.3  explorer  * caused action sca, false if it has been rejected or nak'ed, and
   2170      1.3  explorer  * caused action scn.  (The return value is used to make the state
   2171      1.3  explorer  * transition decision in the state automaton.)
   2172      1.3  explorer  */
   2173      1.3  explorer static int
   2174      1.3  explorer sppp_lcp_RCR(struct sppp *sp, struct lcp_header *h, int len)
   2175      1.3  explorer {
   2176      1.3  explorer 	STDDCL;
   2177      1.3  explorer 	u_char *buf, *r, *p;
   2178      1.3  explorer 	int origlen, rlen;
   2179      1.3  explorer 	u_long nmagic;
   2180      1.3  explorer 	u_short authproto;
   2181      1.3  explorer 
   2182      1.3  explorer 	len -= 4;
   2183      1.3  explorer 	origlen = len;
   2184      1.3  explorer 	buf = r = malloc (len, M_TEMP, M_NOWAIT);
   2185  1.5.2.1    bouyer 	if (! buf)
   2186      1.3  explorer 		return (0);
   2187      1.3  explorer 
   2188      1.3  explorer 	if (debug)
   2189      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "lcp parse opts:",
   2190      1.3  explorer 		    SPP_ARGS(ifp));
   2191      1.3  explorer 
   2192  1.5.2.1    bouyer 	/* pass 1: check for things that need to be rejected */
   2193      1.3  explorer 	p = (void*) (h+1);
   2194      1.3  explorer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   2195      1.3  explorer 		if (debug)
   2196      1.3  explorer 			addlog(" %s", sppp_lcp_opt_name(*p));
   2197      1.3  explorer 		switch (*p) {
   2198      1.3  explorer 		case LCP_OPT_MAGIC:
   2199      1.3  explorer 			/* Magic number. */
   2200      1.3  explorer 			/* fall through, both are same length */
   2201      1.3  explorer 		case LCP_OPT_ASYNC_MAP:
   2202  1.5.2.1    bouyer 			/* Async control character map. */
   2203      1.3  explorer 			if (len >= 6 || p[1] == 6)
   2204      1.3  explorer 				continue;
   2205      1.3  explorer 			if (debug)
   2206      1.3  explorer 				addlog(" [invalid]");
   2207      1.3  explorer 			break;
   2208      1.3  explorer 		case LCP_OPT_MRU:
   2209  1.5.2.1    bouyer 			/* Maximum receive unit. */
   2210      1.3  explorer 			if (len >= 4 && p[1] == 4)
   2211      1.3  explorer 				continue;
   2212      1.3  explorer 			if (debug)
   2213      1.3  explorer 				addlog(" [invalid]");
   2214  1.5.2.1    bouyer 			break;
   2215      1.3  explorer 		case LCP_OPT_AUTH_PROTO:
   2216      1.3  explorer 			if (len < 4) {
   2217      1.3  explorer 				if (debug)
   2218      1.3  explorer 					addlog(" [invalid]");
   2219      1.3  explorer 				break;
   2220  1.5.2.1    bouyer 			}
   2221      1.3  explorer 			authproto = (p[2] << 8) + p[3];
   2222      1.3  explorer 			if (authproto == PPP_CHAP && p[1] != 5) {
   2223      1.3  explorer 				if (debug)
   2224      1.3  explorer 					addlog(" [invalid chap len]");
   2225      1.3  explorer 				break;
   2226  1.5.2.1    bouyer 			}
   2227      1.3  explorer 			if (sp->myauth.proto == 0) {
   2228      1.3  explorer 				/* we are not configured to do auth */
   2229      1.3  explorer 				if (debug)
   2230      1.3  explorer 					addlog(" [not configured]");
   2231      1.3  explorer 				break;
   2232      1.3  explorer 			}
   2233      1.3  explorer 			/*
   2234      1.3  explorer 			 * Remote want us to authenticate, remember this,
   2235      1.3  explorer 			 * so we stay in PHASE_AUTHENTICATE after LCP got
   2236      1.3  explorer 			 * up.
   2237      1.3  explorer 			 */
   2238      1.3  explorer 			sp->pp_flags |= PP_NEEDAUTH;
   2239  1.5.2.1    bouyer 			continue;
   2240      1.3  explorer 		default:
   2241      1.3  explorer 			/* Others not supported. */
   2242      1.3  explorer 			if (debug)
   2243      1.3  explorer 				addlog(" [rej]");
   2244      1.3  explorer 			break;
   2245      1.3  explorer 		}
   2246      1.3  explorer 		/* Add the option to rejected list. */
   2247      1.3  explorer 		bcopy (p, r, p[1]);
   2248      1.3  explorer 		r += p[1];
   2249      1.3  explorer 		rlen += p[1];
   2250      1.3  explorer 	}
   2251  1.5.2.1    bouyer 	if (rlen) {
   2252      1.3  explorer 		if (debug)
   2253      1.3  explorer 			addlog(" send conf-rej\n");
   2254      1.3  explorer 		sppp_cp_send (sp, PPP_LCP, CONF_REJ, h->ident, rlen, buf);
   2255      1.3  explorer 		goto end;
   2256      1.3  explorer 	} else if (debug)
   2257      1.3  explorer 		addlog("\n");
   2258      1.3  explorer 
   2259      1.3  explorer 	/*
   2260      1.3  explorer 	 * pass 2: check for option values that are unacceptable and
   2261      1.3  explorer 	 * thus require to be nak'ed.
   2262      1.3  explorer 	 */
   2263      1.3  explorer 	if (debug)
   2264      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "lcp parse opt values: ",
   2265      1.3  explorer 		    SPP_ARGS(ifp));
   2266      1.3  explorer 
   2267  1.5.2.1    bouyer 	p = (void*) (h+1);
   2268      1.3  explorer 	len = origlen;
   2269      1.3  explorer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   2270      1.3  explorer 		if (debug)
   2271      1.3  explorer 			addlog(" %s", sppp_lcp_opt_name(*p));
   2272      1.3  explorer 		switch (*p) {
   2273      1.3  explorer 		case LCP_OPT_MAGIC:
   2274      1.3  explorer 			/* Magic number -- extract. */
   2275  1.5.2.1    bouyer 			nmagic = (u_long)p[2] << 24 |
   2276      1.3  explorer 				(u_long)p[3] << 16 | p[4] << 8 | p[5];
   2277      1.3  explorer 			if (nmagic != sp->lcp.magic) {
   2278      1.3  explorer 				if (debug)
   2279      1.3  explorer 					addlog(" 0x%lx", nmagic);
   2280      1.3  explorer 				continue;
   2281      1.3  explorer 			}
   2282      1.3  explorer 			/*
   2283      1.3  explorer 			 * Local and remote magics equal -- loopback?
   2284      1.3  explorer 			 */
   2285      1.3  explorer 			if (sp->pp_loopcnt >= MAXALIVECNT*5) {
   2286      1.3  explorer 				printf (SPP_FMT "loopback\n",
   2287  1.5.2.2    bouyer 					SPP_ARGS(ifp));
   2288      1.3  explorer 				sp->pp_loopcnt = 0;
   2289      1.3  explorer 				if (ifp->if_flags & IFF_UP) {
   2290      1.3  explorer 					if_down(ifp);
   2291      1.3  explorer 					IFQ_PURGE(&sp->pp_cpq);
   2292      1.3  explorer 					/* XXX ? */
   2293  1.5.2.1    bouyer 					lcp.Down(sp);
   2294      1.3  explorer 					lcp.Up(sp);
   2295      1.3  explorer 				}
   2296      1.3  explorer 			} else if (debug)
   2297      1.3  explorer 				addlog(" [glitch]");
   2298      1.3  explorer 			++sp->pp_loopcnt;
   2299      1.3  explorer 			/*
   2300      1.3  explorer 			 * We negate our magic here, and NAK it.  If
   2301      1.3  explorer 			 * we see it later in an NAK packet, we
   2302      1.3  explorer 			 * suggest a new one.
   2303      1.3  explorer 			 */
   2304      1.3  explorer 			nmagic = ~sp->lcp.magic;
   2305      1.3  explorer 			/* Gonna NAK it. */
   2306      1.3  explorer 			p[2] = nmagic >> 24;
   2307      1.3  explorer 			p[3] = nmagic >> 16;
   2308      1.3  explorer 			p[4] = nmagic >> 8;
   2309      1.3  explorer 			p[5] = nmagic;
   2310      1.3  explorer 			break;
   2311      1.3  explorer 
   2312  1.5.2.1    bouyer 		case LCP_OPT_ASYNC_MAP:
   2313      1.3  explorer 			/* Async control character map -- check to be zero. */
   2314      1.3  explorer 			if (! p[2] && ! p[3] && ! p[4] && ! p[5]) {
   2315      1.3  explorer 				if (debug)
   2316  1.5.2.1    bouyer 					addlog(" [empty]");
   2317      1.3  explorer 				continue;
   2318      1.3  explorer 			}
   2319      1.3  explorer 			if (debug)
   2320      1.3  explorer 				addlog(" [non-empty]");
   2321      1.3  explorer 			/* suggest a zero one */
   2322      1.3  explorer 			p[2] = p[3] = p[4] = p[5] = 0;
   2323      1.3  explorer 			break;
   2324      1.3  explorer 
   2325      1.3  explorer 		case LCP_OPT_MRU:
   2326      1.3  explorer 			/*
   2327      1.3  explorer 			 * Maximum receive unit.  Always agreeable,
   2328  1.5.2.1    bouyer 			 * but ignored by now.
   2329      1.3  explorer 			 */
   2330      1.3  explorer 			sp->lcp.their_mru = p[2] * 256 + p[3];
   2331      1.3  explorer 			if (debug)
   2332      1.3  explorer 				addlog(" %ld", sp->lcp.their_mru);
   2333      1.3  explorer 			continue;
   2334      1.3  explorer 
   2335      1.3  explorer 		case LCP_OPT_AUTH_PROTO:
   2336  1.5.2.1    bouyer 			authproto = (p[2] << 8) + p[3];
   2337      1.3  explorer 			if (sp->myauth.proto != authproto) {
   2338      1.3  explorer 				/* not agreed, nak */
   2339      1.3  explorer 				if (debug)
   2340      1.3  explorer 					addlog(" [mine %s != his %s]",
   2341      1.3  explorer 					       sppp_proto_name(sp->hisauth.proto),
   2342      1.3  explorer 					       sppp_proto_name(authproto));
   2343      1.3  explorer 				p[2] = sp->myauth.proto >> 8;
   2344      1.3  explorer 				p[3] = sp->myauth.proto;
   2345  1.5.2.1    bouyer 				break;
   2346      1.3  explorer 			}
   2347      1.3  explorer 			if (authproto == PPP_CHAP && p[4] != CHAP_MD5) {
   2348      1.3  explorer 				if (debug)
   2349      1.3  explorer 					addlog(" [chap not MD5]");
   2350      1.3  explorer 				p[4] = CHAP_MD5;
   2351      1.3  explorer 				break;
   2352      1.3  explorer 			}
   2353      1.3  explorer 			continue;
   2354      1.3  explorer 		}
   2355      1.3  explorer 		/* Add the option to nak'ed list. */
   2356      1.3  explorer 		bcopy (p, r, p[1]);
   2357      1.3  explorer 		r += p[1];
   2358      1.3  explorer 		rlen += p[1];
   2359      1.3  explorer 	}
   2360      1.3  explorer 	if (rlen) {
   2361      1.3  explorer 		if (++sp->fail_counter[IDX_LCP] >= sp->lcp.max_failure) {
   2362      1.3  explorer 			if (debug)
   2363      1.3  explorer 				addlog(" max_failure (%d) exceeded, "
   2364      1.3  explorer 				       "send conf-rej\n",
   2365      1.3  explorer 				       sp->lcp.max_failure);
   2366      1.3  explorer 			sppp_cp_send(sp, PPP_LCP, CONF_REJ, h->ident, rlen, buf);
   2367      1.3  explorer 		} else {
   2368  1.5.2.1    bouyer 			if (debug)
   2369      1.3  explorer 				addlog(" send conf-nak\n");
   2370      1.3  explorer 			sppp_cp_send (sp, PPP_LCP, CONF_NAK, h->ident, rlen, buf);
   2371      1.3  explorer 		}
   2372      1.3  explorer 		goto end;
   2373      1.3  explorer 	} else {
   2374      1.3  explorer 		if (debug)
   2375      1.3  explorer 			addlog(" send conf-ack\n");
   2376      1.3  explorer 		sp->fail_counter[IDX_LCP] = 0;
   2377      1.3  explorer 		sp->pp_loopcnt = 0;
   2378  1.5.2.1    bouyer 		sppp_cp_send (sp, PPP_LCP, CONF_ACK,
   2379      1.3  explorer 			      h->ident, origlen, h+1);
   2380      1.3  explorer 	}
   2381      1.3  explorer 
   2382      1.3  explorer  end:
   2383      1.3  explorer 	free (buf, M_TEMP);
   2384      1.3  explorer 	return (rlen == 0);
   2385      1.3  explorer }
   2386      1.3  explorer 
   2387      1.3  explorer /*
   2388      1.3  explorer  * Analyze the LCP Configure-Reject option list, and adjust our
   2389      1.3  explorer  * negotiation.
   2390      1.3  explorer  */
   2391      1.3  explorer static void
   2392      1.3  explorer sppp_lcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
   2393      1.3  explorer {
   2394      1.3  explorer 	STDDCL;
   2395      1.3  explorer 	u_char *buf, *p;
   2396      1.3  explorer 
   2397      1.3  explorer 	len -= 4;
   2398      1.3  explorer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   2399  1.5.2.1    bouyer 	if (!buf)
   2400      1.3  explorer 		return;
   2401      1.3  explorer 
   2402      1.3  explorer 	if (debug)
   2403      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "lcp rej opts:",
   2404      1.3  explorer 		    SPP_ARGS(ifp));
   2405  1.5.2.1    bouyer 
   2406      1.3  explorer 	p = (void*) (h+1);
   2407      1.3  explorer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   2408      1.3  explorer 		if (debug)
   2409      1.3  explorer 			addlog(" %s", sppp_lcp_opt_name(*p));
   2410      1.3  explorer 		switch (*p) {
   2411      1.3  explorer 		case LCP_OPT_MAGIC:
   2412      1.3  explorer 			/* Magic number -- can't use it, use 0 */
   2413      1.3  explorer 			sp->lcp.opts &= ~(1 << LCP_OPT_MAGIC);
   2414      1.3  explorer 			sp->lcp.magic = 0;
   2415      1.3  explorer 			break;
   2416      1.3  explorer 		case LCP_OPT_MRU:
   2417      1.3  explorer 			/*
   2418      1.3  explorer 			 * Should not be rejected anyway, since we only
   2419      1.3  explorer 			 * negotiate a MRU if explicitly requested by
   2420      1.3  explorer 			 * peer.
   2421      1.3  explorer 			 */
   2422      1.3  explorer 			sp->lcp.opts &= ~(1 << LCP_OPT_MRU);
   2423      1.3  explorer 			break;
   2424      1.3  explorer 		case LCP_OPT_AUTH_PROTO:
   2425      1.3  explorer 			/*
   2426      1.3  explorer 			 * Peer doesn't want to authenticate himself,
   2427      1.3  explorer 			 * deny unless this is a dialout call, and
   2428      1.3  explorer 			 * AUTHFLAG_NOCALLOUT is set.
   2429  1.5.2.1    bouyer 			 */
   2430      1.3  explorer 			if ((sp->pp_flags & PP_CALLIN) == 0 &&
   2431      1.3  explorer 			    (sp->hisauth.flags & AUTHFLAG_NOCALLOUT) != 0) {
   2432      1.3  explorer 				if (debug)
   2433      1.3  explorer 					addlog(" [don't insist on auth "
   2434      1.3  explorer 					       "for callout]");
   2435      1.3  explorer 				sp->lcp.opts &= ~(1 << LCP_OPT_AUTH_PROTO);
   2436      1.3  explorer 				break;
   2437      1.3  explorer 			}
   2438      1.3  explorer 			if (debug)
   2439      1.3  explorer 				addlog("[access denied]\n");
   2440      1.3  explorer 			lcp.Close(sp);
   2441      1.3  explorer 			break;
   2442      1.3  explorer 		}
   2443      1.3  explorer 	}
   2444      1.3  explorer 	if (debug)
   2445      1.3  explorer 		addlog("\n");
   2446      1.3  explorer 	free (buf, M_TEMP);
   2447      1.3  explorer 	return;
   2448      1.3  explorer }
   2449      1.3  explorer 
   2450      1.3  explorer /*
   2451      1.3  explorer  * Analyze the LCP Configure-NAK option list, and adjust our
   2452      1.3  explorer  * negotiation.
   2453      1.3  explorer  */
   2454      1.3  explorer static void
   2455      1.3  explorer sppp_lcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
   2456      1.3  explorer {
   2457      1.3  explorer 	STDDCL;
   2458      1.3  explorer 	u_char *buf, *p;
   2459      1.3  explorer 	u_long magic;
   2460      1.3  explorer 
   2461      1.3  explorer 	len -= 4;
   2462      1.3  explorer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   2463  1.5.2.1    bouyer 	if (!buf)
   2464      1.3  explorer 		return;
   2465      1.3  explorer 
   2466      1.3  explorer 	if (debug)
   2467      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "lcp nak opts:",
   2468      1.3  explorer 		    SPP_ARGS(ifp));
   2469  1.5.2.1    bouyer 
   2470      1.3  explorer 	p = (void*) (h+1);
   2471      1.3  explorer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   2472      1.3  explorer 		if (debug)
   2473      1.3  explorer 			addlog(" %s", sppp_lcp_opt_name(*p));
   2474      1.3  explorer 		switch (*p) {
   2475      1.3  explorer 		case LCP_OPT_MAGIC:
   2476      1.3  explorer 			/* Magic number -- renegotiate */
   2477      1.3  explorer 			if ((sp->lcp.opts & (1 << LCP_OPT_MAGIC)) &&
   2478      1.3  explorer 			    len >= 6 && p[1] == 6) {
   2479      1.3  explorer 				magic = (u_long)p[2] << 24 |
   2480      1.3  explorer 					(u_long)p[3] << 16 | p[4] << 8 | p[5];
   2481      1.3  explorer 				/*
   2482      1.3  explorer 				 * If the remote magic is our negated one,
   2483      1.3  explorer 				 * this looks like a loopback problem.
   2484  1.5.2.1    bouyer 				 * Suggest a new magic to make sure.
   2485      1.3  explorer 				 */
   2486      1.3  explorer 				if (magic == ~sp->lcp.magic) {
   2487      1.3  explorer 					if (debug)
   2488      1.3  explorer 						addlog(" magic glitch");
   2489      1.3  explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
   2490      1.3  explorer 					sp->lcp.magic = random();
   2491      1.3  explorer #else
   2492      1.3  explorer 					sp->lcp.magic = time.tv_sec + time.tv_usec;
   2493  1.5.2.1    bouyer #endif
   2494      1.3  explorer 				} else {
   2495      1.3  explorer 					sp->lcp.magic = magic;
   2496      1.3  explorer 					if (debug)
   2497      1.3  explorer 						addlog(" %ld", magic);
   2498      1.3  explorer 				}
   2499      1.3  explorer 			}
   2500      1.3  explorer 			break;
   2501      1.3  explorer 		case LCP_OPT_MRU:
   2502      1.3  explorer 			/*
   2503      1.3  explorer 			 * Peer wants to advise us to negotiate an MRU.
   2504      1.3  explorer 			 * Agree on it if it's reasonable, or use
   2505      1.3  explorer 			 * default otherwise.
   2506  1.5.2.1    bouyer 			 */
   2507      1.3  explorer 			if (len >= 4 && p[1] == 4) {
   2508      1.3  explorer 				u_int mru = p[2] * 256 + p[3];
   2509      1.3  explorer 				if (debug)
   2510      1.3  explorer 					addlog(" %d", mru);
   2511      1.3  explorer 				if (mru < PP_MTU || mru > PP_MAX_MRU)
   2512      1.3  explorer 					mru = PP_MTU;
   2513      1.3  explorer 				sp->lcp.mru = mru;
   2514      1.3  explorer 				sp->lcp.opts |= (1 << LCP_OPT_MRU);
   2515      1.3  explorer 			}
   2516      1.3  explorer 			break;
   2517      1.3  explorer 		case LCP_OPT_AUTH_PROTO:
   2518      1.3  explorer 			/*
   2519      1.3  explorer 			 * Peer doesn't like our authentication method,
   2520      1.3  explorer 			 * deny.
   2521      1.3  explorer 			 */
   2522      1.3  explorer 			if (debug)
   2523      1.3  explorer 				addlog("[access denied]\n");
   2524      1.3  explorer 			lcp.Close(sp);
   2525      1.3  explorer 			break;
   2526      1.3  explorer 		}
   2527      1.3  explorer 	}
   2528      1.3  explorer 	if (debug)
   2529      1.3  explorer 		addlog("\n");
   2530      1.3  explorer 	free (buf, M_TEMP);
   2531      1.3  explorer 	return;
   2532      1.3  explorer }
   2533      1.3  explorer 
   2534      1.3  explorer static void
   2535      1.3  explorer sppp_lcp_tlu(struct sppp *sp)
   2536      1.3  explorer {
   2537      1.3  explorer 	STDDCL;
   2538      1.3  explorer 	int i;
   2539      1.3  explorer 	u_long mask;
   2540      1.3  explorer 
   2541      1.3  explorer 	/* XXX ? */
   2542      1.3  explorer 	if (! (ifp->if_flags & IFF_UP) &&
   2543      1.3  explorer 	    (ifp->if_flags & IFF_RUNNING)) {
   2544      1.3  explorer 		/* Coming out of loopback mode. */
   2545      1.3  explorer 		if_up(ifp);
   2546      1.3  explorer 		printf (SPP_FMT "up\n", SPP_ARGS(ifp));
   2547      1.3  explorer 	}
   2548      1.3  explorer 
   2549      1.3  explorer 	for (i = 0; i < IDX_COUNT; i++)
   2550      1.3  explorer 		if ((cps[i])->flags & CP_QUAL)
   2551      1.3  explorer 			(cps[i])->Open(sp);
   2552      1.3  explorer 
   2553      1.3  explorer 	if ((sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0 ||
   2554      1.3  explorer 	    (sp->pp_flags & PP_NEEDAUTH) != 0)
   2555      1.3  explorer 		sp->pp_phase = PHASE_AUTHENTICATE;
   2556      1.3  explorer 	else
   2557      1.3  explorer 		sp->pp_phase = PHASE_NETWORK;
   2558      1.3  explorer 
   2559      1.3  explorer 	if(debug)
   2560      1.3  explorer 	{
   2561      1.3  explorer 		log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
   2562      1.3  explorer 		    sppp_phase_name(sp->pp_phase));
   2563      1.3  explorer 	}
   2564      1.3  explorer 
   2565      1.3  explorer 	/*
   2566      1.3  explorer 	 * Open all authentication protocols.  This is even required
   2567      1.3  explorer 	 * if we already proceeded to network phase, since it might be
   2568      1.3  explorer 	 * that remote wants us to authenticate, so we might have to
   2569      1.3  explorer 	 * send a PAP request.  Undesired authentication protocols
   2570      1.3  explorer 	 * don't do anything when they get an Open event.
   2571      1.3  explorer 	 */
   2572      1.3  explorer 	for (i = 0; i < IDX_COUNT; i++)
   2573      1.3  explorer 		if ((cps[i])->flags & CP_AUTH)
   2574      1.3  explorer 			(cps[i])->Open(sp);
   2575      1.3  explorer 
   2576      1.3  explorer 	if (sp->pp_phase == PHASE_NETWORK) {
   2577      1.3  explorer 		/* Notify all NCPs. */
   2578      1.3  explorer 		for (i = 0; i < IDX_COUNT; i++)
   2579      1.3  explorer 			if ((cps[i])->flags & CP_NCP)
   2580      1.3  explorer 				(cps[i])->Open(sp);
   2581  1.5.2.1    bouyer 	}
   2582      1.3  explorer 
   2583      1.3  explorer 	/* Send Up events to all started protos. */
   2584      1.3  explorer 	for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
   2585      1.3  explorer 		if ((sp->lcp.protos & mask) && ((cps[i])->flags & CP_LCP) == 0)
   2586      1.3  explorer 			(cps[i])->Up(sp);
   2587      1.3  explorer 
   2588      1.3  explorer 	/* notify low-level driver of state change */
   2589      1.3  explorer 	if (sp->pp_chg)
   2590      1.3  explorer 		sp->pp_chg(sp, (int)sp->pp_phase);
   2591      1.3  explorer 
   2592      1.3  explorer 	if (sp->pp_phase == PHASE_NETWORK)
   2593      1.3  explorer 		/* if no NCP is starting, close down */
   2594      1.3  explorer 		sppp_lcp_check_and_close(sp);
   2595      1.3  explorer }
   2596      1.3  explorer 
   2597      1.3  explorer static void
   2598      1.3  explorer sppp_lcp_tld(struct sppp *sp)
   2599      1.3  explorer {
   2600      1.3  explorer 	STDDCL;
   2601      1.3  explorer 	int i;
   2602      1.3  explorer 	u_long mask;
   2603      1.3  explorer 
   2604      1.3  explorer 	sp->pp_phase = PHASE_TERMINATE;
   2605      1.3  explorer 
   2606      1.3  explorer 	if(debug)
   2607      1.3  explorer 	{
   2608      1.3  explorer 		log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
   2609      1.3  explorer 			sppp_phase_name(sp->pp_phase));
   2610      1.3  explorer 	}
   2611      1.3  explorer 
   2612      1.3  explorer 	/*
   2613      1.3  explorer 	 * Take upper layers down.  We send the Down event first and
   2614      1.3  explorer 	 * the Close second to prevent the upper layers from sending
   2615  1.5.2.1    bouyer 	 * ``a flurry of terminate-request packets'', as the RFC
   2616      1.3  explorer 	 * describes it.
   2617      1.3  explorer 	 */
   2618      1.3  explorer 	for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
   2619      1.3  explorer 		if ((sp->lcp.protos & mask) && ((cps[i])->flags & CP_LCP) == 0) {
   2620      1.3  explorer 			(cps[i])->Down(sp);
   2621      1.3  explorer 			(cps[i])->Close(sp);
   2622      1.3  explorer 		}
   2623      1.3  explorer }
   2624      1.3  explorer 
   2625      1.3  explorer static void
   2626      1.3  explorer sppp_lcp_tls(struct sppp *sp)
   2627      1.3  explorer {
   2628      1.3  explorer 	STDDCL;
   2629      1.3  explorer 
   2630      1.3  explorer 	sp->pp_phase = PHASE_ESTABLISH;
   2631      1.3  explorer 
   2632      1.3  explorer 	if(debug)
   2633      1.3  explorer 	{
   2634      1.3  explorer 		log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
   2635      1.3  explorer 			sppp_phase_name(sp->pp_phase));
   2636      1.3  explorer 	}
   2637      1.3  explorer 
   2638      1.3  explorer 	/* Notify lower layer if desired. */
   2639      1.3  explorer 	if (sp->pp_tls)
   2640      1.3  explorer 		(sp->pp_tls)(sp);
   2641      1.3  explorer }
   2642      1.3  explorer 
   2643      1.3  explorer static void
   2644      1.3  explorer sppp_lcp_tlf(struct sppp *sp)
   2645      1.3  explorer {
   2646      1.3  explorer 	STDDCL;
   2647      1.3  explorer 
   2648      1.3  explorer 	sp->pp_phase = PHASE_DEAD;
   2649      1.3  explorer 
   2650      1.3  explorer 	if(debug)
   2651      1.3  explorer 	{
   2652      1.3  explorer 		log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
   2653      1.3  explorer 			sppp_phase_name(sp->pp_phase));
   2654      1.3  explorer 	}
   2655      1.3  explorer 
   2656      1.3  explorer 	/* Notify lower layer if desired. */
   2657      1.3  explorer 	if (sp->pp_tlf)
   2658      1.3  explorer 		(sp->pp_tlf)(sp);
   2659      1.3  explorer }
   2660      1.3  explorer 
   2661      1.3  explorer static void
   2662      1.3  explorer sppp_lcp_scr(struct sppp *sp)
   2663      1.3  explorer {
   2664      1.3  explorer 	char opt[6 /* magicnum */ + 4 /* mru */ + 5 /* chap */];
   2665      1.3  explorer 	int i = 0;
   2666      1.3  explorer 	u_short authproto;
   2667      1.3  explorer 
   2668      1.3  explorer 	if (sp->lcp.opts & (1 << LCP_OPT_MAGIC)) {
   2669      1.3  explorer 		if (! sp->lcp.magic)
   2670      1.3  explorer #if defined(__NetBSD__) || (defined(__FreeBSD__) && __FreeBSD__ >= 3)
   2671      1.3  explorer 			sp->lcp.magic = random();
   2672      1.3  explorer #else
   2673      1.3  explorer 			sp->lcp.magic = time.tv_sec + time.tv_usec;
   2674      1.3  explorer #endif
   2675      1.3  explorer 		opt[i++] = LCP_OPT_MAGIC;
   2676      1.3  explorer 		opt[i++] = 6;
   2677      1.3  explorer 		opt[i++] = sp->lcp.magic >> 24;
   2678      1.3  explorer 		opt[i++] = sp->lcp.magic >> 16;
   2679      1.3  explorer 		opt[i++] = sp->lcp.magic >> 8;
   2680      1.3  explorer 		opt[i++] = sp->lcp.magic;
   2681      1.3  explorer 	}
   2682      1.3  explorer 
   2683      1.3  explorer 	if (sp->lcp.opts & (1 << LCP_OPT_MRU)) {
   2684      1.3  explorer 		opt[i++] = LCP_OPT_MRU;
   2685      1.3  explorer 		opt[i++] = 4;
   2686      1.3  explorer 		opt[i++] = sp->lcp.mru >> 8;
   2687      1.3  explorer 		opt[i++] = sp->lcp.mru;
   2688      1.3  explorer 	}
   2689      1.3  explorer 
   2690      1.3  explorer 	if (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) {
   2691      1.3  explorer 		authproto = sp->hisauth.proto;
   2692      1.3  explorer 		opt[i++] = LCP_OPT_AUTH_PROTO;
   2693      1.3  explorer 		opt[i++] = authproto == PPP_CHAP? 5: 4;
   2694      1.3  explorer 		opt[i++] = authproto >> 8;
   2695      1.3  explorer 		opt[i++] = authproto;
   2696  1.5.2.1    bouyer 		if (authproto == PPP_CHAP)
   2697      1.3  explorer 			opt[i++] = CHAP_MD5;
   2698      1.3  explorer 	}
   2699      1.3  explorer 
   2700      1.3  explorer 	sp->confid[IDX_LCP] = ++sp->pp_seq[IDX_LCP];
   2701      1.3  explorer 	sppp_cp_send (sp, PPP_LCP, CONF_REQ, sp->confid[IDX_LCP], i, &opt);
   2702      1.3  explorer }
   2703      1.3  explorer 
   2704      1.3  explorer /*
   2705      1.3  explorer  * Check the open NCPs, return true if at least one NCP is open.
   2706      1.3  explorer  */
   2707      1.3  explorer static int
   2708      1.3  explorer sppp_ncp_check(struct sppp *sp)
   2709  1.5.2.1    bouyer {
   2710      1.3  explorer 	int i, mask;
   2711      1.3  explorer 
   2712      1.3  explorer 	for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
   2713      1.3  explorer 		if ((sp->lcp.protos & mask) && (cps[i])->flags & CP_NCP)
   2714      1.3  explorer 			return 1;
   2715      1.3  explorer 	return 0;
   2716      1.3  explorer }
   2717      1.3  explorer 
   2718      1.3  explorer /*
   2719      1.3  explorer  * Re-check the open NCPs and see if we should terminate the link.
   2720      1.3  explorer  * Called by the NCPs during their tlf action handling.
   2721      1.3  explorer  */
   2722      1.3  explorer static void
   2723      1.3  explorer sppp_lcp_check_and_close(struct sppp *sp)
   2724      1.3  explorer {
   2725      1.3  explorer 
   2726      1.3  explorer 	if (sp->pp_phase < PHASE_NETWORK)
   2727      1.3  explorer 		/* don't bother, we are already going down */
   2728      1.3  explorer 		return;
   2729      1.3  explorer 
   2730      1.3  explorer 	if (sppp_ncp_check(sp))
   2731  1.5.2.1    bouyer 		return;
   2732  1.5.2.1    bouyer 
   2733      1.3  explorer 	lcp.Close(sp);
   2734      1.3  explorer }
   2735      1.3  explorer 
   2736      1.3  explorer 
   2737      1.3  explorer /*
   2739      1.3  explorer  *--------------------------------------------------------------------------*
   2740      1.3  explorer  *                                                                          *
   2741      1.3  explorer  *                        The IPCP implementation.                          *
   2742      1.3  explorer  *                                                                          *
   2743      1.3  explorer  *--------------------------------------------------------------------------*
   2744      1.3  explorer  */
   2745      1.3  explorer 
   2746      1.3  explorer static void
   2747      1.3  explorer sppp_ipcp_init(struct sppp *sp)
   2748  1.5.2.1    bouyer {
   2749  1.5.2.1    bouyer 	sp->ipcp.opts = 0;
   2750  1.5.2.1    bouyer 	sp->ipcp.flags = 0;
   2751  1.5.2.1    bouyer 	sp->state[IDX_IPCP] = STATE_INITIAL;
   2752  1.5.2.1    bouyer 	sp->fail_counter[IDX_IPCP] = 0;
   2753      1.3  explorer 	sp->pp_seq[IDX_IPCP] = 0;
   2754      1.3  explorer 	sp->pp_rseq[IDX_IPCP] = 0;
   2755      1.3  explorer #if defined(__NetBSD__)
   2756      1.3  explorer 	callout_init(&sp->ch[IDX_IPCP]);
   2757      1.3  explorer #endif
   2758      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   2759      1.3  explorer 	callout_handle_init(&sp->ch[IDX_IPCP]);
   2760      1.3  explorer #endif
   2761      1.3  explorer }
   2762      1.3  explorer 
   2763      1.3  explorer static void
   2764      1.3  explorer sppp_ipcp_up(struct sppp *sp)
   2765      1.3  explorer {
   2766      1.3  explorer 	sppp_up_event(&ipcp, sp);
   2767      1.3  explorer }
   2768      1.3  explorer 
   2769      1.3  explorer static void
   2770      1.3  explorer sppp_ipcp_down(struct sppp *sp)
   2771      1.3  explorer {
   2772      1.3  explorer 	sppp_down_event(&ipcp, sp);
   2773      1.3  explorer }
   2774      1.3  explorer 
   2775      1.3  explorer static void
   2776      1.3  explorer sppp_ipcp_open(struct sppp *sp)
   2777      1.3  explorer {
   2778      1.3  explorer 	STDDCL;
   2779      1.3  explorer 	u_long myaddr, hisaddr;
   2780      1.3  explorer 
   2781      1.3  explorer 	sp->ipcp.flags &= ~(IPCP_HISADDR_SEEN|IPCP_MYADDR_SEEN|IPCP_MYADDR_DYN);
   2782      1.3  explorer 
   2783      1.3  explorer 	sppp_get_ip_addrs(sp, &myaddr, &hisaddr, 0);
   2784      1.3  explorer 	/*
   2785      1.3  explorer 	 * If we don't have his address, this probably means our
   2786      1.3  explorer 	 * interface doesn't want to talk IP at all.  (This could
   2787      1.3  explorer 	 * be the case if somebody wants to speak only IPX, for
   2788      1.3  explorer 	 * example.)  Don't open IPCP in this case.
   2789      1.3  explorer 	 */
   2790      1.3  explorer 	if (hisaddr == 0L) {
   2791      1.3  explorer 		/* XXX this message should go away */
   2792      1.3  explorer 		if (debug)
   2793      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "ipcp_open(): no IP interface\n",
   2794      1.3  explorer 			    SPP_ARGS(ifp));
   2795      1.3  explorer 		return;
   2796      1.3  explorer 	}
   2797      1.3  explorer 
   2798      1.3  explorer 	if (myaddr == 0L) {
   2799      1.3  explorer 		/*
   2800      1.3  explorer 		 * I don't have an assigned address, so i need to
   2801      1.3  explorer 		 * negotiate my address.
   2802      1.3  explorer 		 */
   2803      1.3  explorer 		sp->ipcp.flags |= IPCP_MYADDR_DYN;
   2804      1.3  explorer 		sp->ipcp.opts |= (1 << IPCP_OPT_ADDRESS);
   2805      1.3  explorer 	} else
   2806      1.3  explorer 		sp->ipcp.flags |= IPCP_MYADDR_SEEN;
   2807      1.3  explorer 	sppp_open_event(&ipcp, sp);
   2808      1.3  explorer }
   2809      1.3  explorer 
   2810      1.3  explorer static void
   2811      1.3  explorer sppp_ipcp_close(struct sppp *sp)
   2812      1.3  explorer {
   2813      1.3  explorer 	sppp_close_event(&ipcp, sp);
   2814      1.3  explorer 	if (sp->ipcp.flags & IPCP_MYADDR_DYN)
   2815      1.3  explorer 		/*
   2816      1.3  explorer 		 * My address was dynamic, clear it again.
   2817      1.3  explorer 		 */
   2818      1.3  explorer 		sppp_set_ip_addr(sp, 0L);
   2819      1.3  explorer }
   2820      1.3  explorer 
   2821      1.3  explorer static void
   2822      1.3  explorer sppp_ipcp_TO(void *cookie)
   2823      1.3  explorer {
   2824      1.3  explorer 	sppp_to_event(&ipcp, (struct sppp *)cookie);
   2825      1.3  explorer }
   2826      1.3  explorer 
   2827      1.3  explorer /*
   2828      1.3  explorer  * Analyze a configure request.  Return true if it was agreeable, and
   2829      1.3  explorer  * caused action sca, false if it has been rejected or nak'ed, and
   2830      1.3  explorer  * caused action scn.  (The return value is used to make the state
   2831      1.3  explorer  * transition decision in the state automaton.)
   2832      1.3  explorer  */
   2833      1.3  explorer static int
   2834      1.3  explorer sppp_ipcp_RCR(struct sppp *sp, struct lcp_header *h, int len)
   2835      1.3  explorer {
   2836      1.3  explorer 	u_char *buf, *r, *p;
   2837      1.3  explorer 	struct ifnet *ifp = &sp->pp_if;
   2838      1.3  explorer 	int rlen, origlen, debug = ifp->if_flags & IFF_DEBUG;
   2839      1.3  explorer 	u_long hisaddr, desiredaddr;
   2840      1.3  explorer 	int gotmyaddr = 0;
   2841      1.3  explorer 
   2842      1.3  explorer 	len -= 4;
   2843      1.3  explorer 	origlen = len;
   2844      1.3  explorer 	/*
   2845      1.3  explorer 	 * Make sure to allocate a buf that can at least hold a
   2846      1.3  explorer 	 * conf-nak with an `address' option.  We might need it below.
   2847      1.3  explorer 	 */
   2848      1.3  explorer 	buf = r = malloc ((len < 6? 6: len), M_TEMP, M_NOWAIT);
   2849  1.5.2.1    bouyer 	if (! buf)
   2850      1.3  explorer 		return (0);
   2851      1.3  explorer 
   2852      1.3  explorer 	/* pass 1: see if we can recognize them */
   2853      1.3  explorer 	if (debug)
   2854  1.5.2.1    bouyer 		log(LOG_DEBUG, SPP_FMT "ipcp parse opts:",
   2855      1.3  explorer 		    SPP_ARGS(ifp));
   2856      1.3  explorer 	p = (void*) (h+1);
   2857      1.3  explorer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   2858      1.3  explorer 		if (debug)
   2859      1.3  explorer 			addlog(" %s", sppp_ipcp_opt_name(*p));
   2860      1.3  explorer 		switch (*p) {
   2861      1.3  explorer #ifdef notyet
   2862      1.3  explorer 		case IPCP_OPT_COMPRESSION:
   2863  1.5.2.1    bouyer 			if (len >= 6 && p[1] >= 6) {
   2864      1.3  explorer 				/* correctly formed compress option */
   2865      1.3  explorer 				continue;
   2866      1.3  explorer 			}
   2867      1.3  explorer 			if (debug)
   2868      1.3  explorer 				addlog(" [invalid]");
   2869      1.3  explorer 			break;
   2870      1.3  explorer #endif
   2871      1.3  explorer 		case IPCP_OPT_ADDRESS:
   2872  1.5.2.1    bouyer 			if (len >= 6 && p[1] == 6) {
   2873      1.3  explorer 				/* correctly formed address option */
   2874      1.3  explorer 				continue;
   2875      1.3  explorer 			}
   2876      1.3  explorer 			if (debug)
   2877  1.5.2.1    bouyer 				addlog(" [invalid]");
   2878      1.3  explorer 			break;
   2879      1.3  explorer 		default:
   2880      1.3  explorer 			/* Others not supported. */
   2881      1.3  explorer 			if (debug)
   2882      1.3  explorer 				addlog(" [rej]");
   2883      1.3  explorer 			break;
   2884      1.3  explorer 		}
   2885      1.3  explorer 		/* Add the option to rejected list. */
   2886      1.3  explorer 		bcopy (p, r, p[1]);
   2887      1.3  explorer 		r += p[1];
   2888      1.3  explorer 		rlen += p[1];
   2889  1.5.2.1    bouyer 	}
   2890      1.3  explorer 	if (rlen) {
   2891      1.3  explorer 		if (debug)
   2892      1.3  explorer 			addlog(" send conf-rej\n");
   2893      1.3  explorer 		sppp_cp_send (sp, PPP_IPCP, CONF_REJ, h->ident, rlen, buf);
   2894      1.3  explorer 		goto end;
   2895      1.3  explorer 	} else if (debug)
   2896      1.3  explorer 		addlog("\n");
   2897      1.3  explorer 
   2898      1.3  explorer 	/* pass 2: parse option values */
   2899      1.3  explorer 	sppp_get_ip_addrs(sp, 0, &hisaddr, 0);
   2900      1.3  explorer 	if (debug)
   2901      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "ipcp parse opt values: ",
   2902  1.5.2.1    bouyer 		       SPP_ARGS(ifp));
   2903      1.3  explorer 	p = (void*) (h+1);
   2904      1.3  explorer 	len = origlen;
   2905      1.3  explorer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   2906      1.3  explorer 		if (debug)
   2907      1.3  explorer 			addlog(" %s", sppp_ipcp_opt_name(*p));
   2908      1.3  explorer 		switch (*p) {
   2909      1.3  explorer #ifdef notyet
   2910      1.3  explorer 		case IPCP_OPT_COMPRESSION:
   2911      1.3  explorer 			continue;
   2912      1.3  explorer #endif
   2913      1.3  explorer 		case IPCP_OPT_ADDRESS:
   2914      1.3  explorer 			desiredaddr = p[2] << 24 | p[3] << 16 |
   2915      1.3  explorer 				p[4] << 8 | p[5];
   2916      1.3  explorer 			if (!(sp->ipcp.flags & IPCP_MYADDR_SEEN) &&
   2917  1.5.2.1    bouyer 			        (sp->ipcp.flags & IPCP_MYADDR_DYN)) {
   2918      1.3  explorer 				/*
   2919      1.3  explorer 				 * hopefully this is our address !!
   2920      1.3  explorer 				 */
   2921      1.3  explorer 			 	if (debug)
   2922      1.3  explorer 					addlog(" [wantmyaddr %s]",
   2923      1.3  explorer 						sppp_dotted_quad(desiredaddr));
   2924      1.3  explorer 				/*
   2925      1.3  explorer 				 * When doing dynamic address assignment,
   2926      1.3  explorer 			   	 * we accept his offer.  Otherwise, we
   2927  1.5.2.1    bouyer 			    	 * ignore it and thus continue to negotiate
   2928      1.3  explorer 			     	 * our already existing value.
   2929      1.3  explorer 		      		 */
   2930      1.3  explorer 				sppp_set_ip_addr(sp, desiredaddr);
   2931      1.3  explorer 				if (debug)
   2932      1.3  explorer 					addlog(" [agree]");
   2933      1.3  explorer 				sp->ipcp.flags |= IPCP_MYADDR_SEEN;
   2934      1.3  explorer 				gotmyaddr++;
   2935      1.3  explorer 				continue;
   2936      1.3  explorer 			} else {
   2937      1.3  explorer 				if (desiredaddr == hisaddr ||
   2938      1.3  explorer 			    	(hisaddr == 1 && desiredaddr != 0)) {
   2939      1.3  explorer 					/*
   2940  1.5.2.1    bouyer 				 	* Peer's address is same as our value,
   2941      1.3  explorer 				 	* this is agreeable.  Gonna conf-ack
   2942      1.3  explorer 				 	* it.
   2943      1.3  explorer 				 	*/
   2944      1.3  explorer 					if (debug)
   2945      1.3  explorer 						addlog(" %s [ack]",
   2946      1.3  explorer 					       		sppp_dotted_quad(hisaddr));
   2947      1.3  explorer 					/* record that we've seen it already */
   2948      1.3  explorer 					sp->ipcp.flags |= IPCP_HISADDR_SEEN;
   2949      1.3  explorer 					continue;
   2950      1.3  explorer 				}
   2951      1.3  explorer 				/*
   2952      1.3  explorer 			 	* The address wasn't agreeable.  This is either
   2953      1.3  explorer 			 	* he sent us 0.0.0.0, asking to assign him an
   2954      1.3  explorer 			 	* address, or he send us another address not
   2955  1.5.2.1    bouyer 			 	* matching our value.  Either case, we gonna
   2956      1.3  explorer 			 	* conf-nak it with our value.
   2957  1.5.2.1    bouyer 			 	*/
   2958      1.3  explorer 				if (debug) {
   2959      1.3  explorer 					if (desiredaddr == 0)
   2960      1.3  explorer 						addlog(" [addr requested]");
   2961      1.3  explorer 					else
   2962      1.3  explorer 						addlog(" %s [not agreed]",
   2963      1.3  explorer 					       		sppp_dotted_quad(desiredaddr));
   2964      1.3  explorer 				}
   2965      1.3  explorer 
   2966      1.3  explorer 				p[2] = hisaddr >> 24;
   2967      1.3  explorer 				p[3] = hisaddr >> 16;
   2968      1.3  explorer 				p[4] = hisaddr >> 8;
   2969      1.3  explorer 				p[5] = hisaddr;
   2970      1.3  explorer 				break;
   2971      1.3  explorer 			}
   2972      1.3  explorer 		}
   2973      1.3  explorer 		/* Add the option to nak'ed list. */
   2974      1.3  explorer 		bcopy (p, r, p[1]);
   2975      1.3  explorer 		r += p[1];
   2976      1.3  explorer 		rlen += p[1];
   2977      1.3  explorer 	}
   2978      1.3  explorer 
   2979      1.3  explorer 	/*
   2980      1.3  explorer 	 * If we are about to conf-ack the request, but haven't seen
   2981      1.3  explorer 	 * his address so far, gonna conf-nak it instead, with the
   2982      1.3  explorer 	 * `address' option present and our idea of his address being
   2983      1.3  explorer 	 * filled in there, to request negotiation of both addresses.
   2984      1.3  explorer 	 *
   2985      1.3  explorer 	 * XXX This can result in an endless req - nak loop if peer
   2986      1.3  explorer 	 * doesn't want to send us his address.  Q: What should we do
   2987      1.3  explorer 	 * about it?  XXX  A: implement the max-failure counter.
   2988      1.3  explorer 	 */
   2989      1.3  explorer 	if (rlen == 0 && !(sp->ipcp.flags & IPCP_HISADDR_SEEN) && !gotmyaddr) {
   2990      1.3  explorer 		buf[0] = IPCP_OPT_ADDRESS;
   2991      1.3  explorer 		buf[1] = 6;
   2992      1.3  explorer 		buf[2] = hisaddr >> 24;
   2993  1.5.2.1    bouyer 		buf[3] = hisaddr >> 16;
   2994      1.3  explorer 		buf[4] = hisaddr >> 8;
   2995      1.3  explorer 		buf[5] = hisaddr;
   2996      1.3  explorer 		rlen = 6;
   2997      1.3  explorer 		if (debug)
   2998      1.3  explorer 			addlog(" still need hisaddr");
   2999      1.3  explorer 	}
   3000      1.3  explorer 
   3001      1.3  explorer 	if (rlen) {
   3002      1.3  explorer 		if (debug)
   3003      1.3  explorer 			addlog(" send conf-nak\n");
   3004      1.3  explorer 		sppp_cp_send (sp, PPP_IPCP, CONF_NAK, h->ident, rlen, buf);
   3005      1.3  explorer 	} else {
   3006      1.3  explorer 		if (debug)
   3007  1.5.2.1    bouyer 			addlog(" send conf-ack\n");
   3008      1.3  explorer 		sppp_cp_send (sp, PPP_IPCP, CONF_ACK,
   3009      1.3  explorer 			      h->ident, origlen, h+1);
   3010      1.3  explorer 	}
   3011      1.3  explorer 
   3012      1.3  explorer  end:
   3013      1.3  explorer 	free (buf, M_TEMP);
   3014      1.3  explorer 	return (rlen == 0);
   3015      1.3  explorer }
   3016      1.3  explorer 
   3017      1.3  explorer /*
   3018      1.3  explorer  * Analyze the IPCP Configure-Reject option list, and adjust our
   3019      1.3  explorer  * negotiation.
   3020      1.3  explorer  */
   3021      1.3  explorer static void
   3022      1.3  explorer sppp_ipcp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
   3023      1.3  explorer {
   3024      1.3  explorer 	u_char *buf, *p;
   3025      1.3  explorer 	struct ifnet *ifp = &sp->pp_if;
   3026      1.3  explorer 	int debug = ifp->if_flags & IFF_DEBUG;
   3027      1.3  explorer 
   3028      1.3  explorer 	len -= 4;
   3029  1.5.2.1    bouyer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   3030      1.3  explorer 	if (!buf)
   3031      1.3  explorer 		return;
   3032      1.3  explorer 
   3033      1.3  explorer 	if (debug)
   3034      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "ipcp rej opts:",
   3035  1.5.2.1    bouyer 		    SPP_ARGS(ifp));
   3036      1.3  explorer 
   3037      1.3  explorer 	p = (void*) (h+1);
   3038      1.3  explorer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   3039      1.3  explorer 		if (debug)
   3040      1.3  explorer 			addlog(" %s", sppp_ipcp_opt_name(*p));
   3041      1.3  explorer 		switch (*p) {
   3042      1.3  explorer 		case IPCP_OPT_ADDRESS:
   3043      1.3  explorer 			/*
   3044      1.3  explorer 			 * Peer doesn't grok address option.  This is
   3045      1.3  explorer 			 * bad.  XXX  Should we better give up here?
   3046      1.3  explorer 			 */
   3047      1.3  explorer 			sp->ipcp.opts &= ~(1 << IPCP_OPT_ADDRESS);
   3048      1.3  explorer 			break;
   3049      1.3  explorer #ifdef notyet
   3050      1.3  explorer 		case IPCP_OPT_COMPRESS:
   3051      1.3  explorer 			sp->ipcp.opts &= ~(1 << IPCP_OPT_COMPRESS);
   3052      1.3  explorer 			break;
   3053      1.3  explorer #endif
   3054      1.3  explorer 		}
   3055      1.3  explorer 	}
   3056      1.3  explorer 	if (debug)
   3057      1.3  explorer 		addlog("\n");
   3058      1.3  explorer 	free (buf, M_TEMP);
   3059      1.3  explorer 	return;
   3060      1.3  explorer }
   3061      1.3  explorer 
   3062      1.3  explorer /*
   3063      1.3  explorer  * Analyze the IPCP Configure-NAK option list, and adjust our
   3064      1.3  explorer  * negotiation.
   3065      1.3  explorer  */
   3066      1.3  explorer static void
   3067      1.3  explorer sppp_ipcp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
   3068      1.3  explorer {
   3069      1.3  explorer 	u_char *buf, *p;
   3070      1.3  explorer 	struct ifnet *ifp = &sp->pp_if;
   3071      1.3  explorer 	int debug = ifp->if_flags & IFF_DEBUG;
   3072      1.3  explorer 	u_long wantaddr;
   3073      1.3  explorer 
   3074      1.3  explorer 	len -= 4;
   3075  1.5.2.1    bouyer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   3076      1.3  explorer 	if (!buf)
   3077      1.3  explorer 		return;
   3078      1.3  explorer 
   3079      1.3  explorer 	if (debug)
   3080      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "ipcp nak opts:",
   3081  1.5.2.1    bouyer 		    SPP_ARGS(ifp));
   3082      1.3  explorer 
   3083      1.3  explorer 	p = (void*) (h+1);
   3084      1.3  explorer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   3085      1.3  explorer 		if (debug)
   3086      1.3  explorer 			addlog(" %s", sppp_ipcp_opt_name(*p));
   3087      1.3  explorer 		switch (*p) {
   3088      1.3  explorer 		case IPCP_OPT_ADDRESS:
   3089      1.3  explorer 			/*
   3090      1.3  explorer 			 * Peer doesn't like our local IP address.  See
   3091      1.3  explorer 			 * if we can do something for him.  We'll drop
   3092      1.3  explorer 			 * him our address then.
   3093      1.3  explorer 			 */
   3094  1.5.2.1    bouyer 			if (len >= 6 && p[1] == 6) {
   3095      1.3  explorer 				wantaddr = p[2] << 24 | p[3] << 16 |
   3096      1.3  explorer 					p[4] << 8 | p[5];
   3097      1.3  explorer 				sp->ipcp.opts |= (1 << IPCP_OPT_ADDRESS);
   3098      1.3  explorer 				if (debug)
   3099      1.3  explorer 					addlog(" [wantaddr %s]",
   3100      1.3  explorer 					       sppp_dotted_quad(wantaddr));
   3101      1.3  explorer 				/*
   3102      1.3  explorer 				 * When doing dynamic address assignment,
   3103      1.3  explorer 				 * we accept his offer.  Otherwise, we
   3104      1.3  explorer 				 * ignore it and thus continue to negotiate
   3105  1.5.2.1    bouyer 				 * our already existing value.
   3106      1.3  explorer 				 */
   3107      1.3  explorer 				if (sp->ipcp.flags & IPCP_MYADDR_DYN) {
   3108      1.3  explorer 					sppp_set_ip_addr(sp, wantaddr);
   3109      1.3  explorer 					if (debug)
   3110      1.3  explorer 						addlog(" [agree]");
   3111      1.3  explorer 					sp->ipcp.flags |= IPCP_MYADDR_SEEN;
   3112      1.3  explorer 				}
   3113      1.3  explorer 			}
   3114      1.3  explorer 			break;
   3115      1.3  explorer #ifdef notyet
   3116      1.3  explorer 		case IPCP_OPT_COMPRESS:
   3117      1.3  explorer 			/*
   3118      1.3  explorer 			 * Peer wants different compression parameters.
   3119      1.3  explorer 			 */
   3120      1.3  explorer 			break;
   3121      1.3  explorer #endif
   3122      1.3  explorer 		}
   3123      1.3  explorer 	}
   3124      1.3  explorer 	if (debug)
   3125      1.3  explorer 		addlog("\n");
   3126      1.3  explorer 	free (buf, M_TEMP);
   3127      1.3  explorer 	return;
   3128      1.3  explorer }
   3129      1.3  explorer 
   3130      1.3  explorer static void
   3131      1.3  explorer sppp_ipcp_tlu(struct sppp *sp)
   3132      1.3  explorer {
   3133      1.3  explorer 	/* we are up - notify isdn daemon */
   3134      1.3  explorer 	if (sp->pp_con)
   3135      1.3  explorer 		sp->pp_con(sp);
   3136      1.3  explorer }
   3137      1.3  explorer 
   3138      1.3  explorer static void
   3139      1.3  explorer sppp_ipcp_tld(struct sppp *sp)
   3140      1.3  explorer {
   3141      1.3  explorer }
   3142      1.3  explorer 
   3143      1.3  explorer static void
   3144      1.3  explorer sppp_ipcp_tls(struct sppp *sp)
   3145      1.3  explorer {
   3146      1.3  explorer 	/* indicate to LCP that it must stay alive */
   3147      1.3  explorer 	sp->lcp.protos |= (1 << IDX_IPCP);
   3148  1.5.2.1    bouyer }
   3149  1.5.2.1    bouyer 
   3150      1.3  explorer static void
   3151      1.3  explorer sppp_ipcp_tlf(struct sppp *sp)
   3152      1.3  explorer {
   3153  1.5.2.1    bouyer 
   3154      1.3  explorer #if 0 /* need #if 0 to close IPCP properly */
   3155      1.3  explorer 	/* we no longer need LCP */
   3156      1.3  explorer 	sp->lcp.protos &= ~(1 << IDX_IPCP);
   3157      1.3  explorer 	sppp_lcp_check_and_close(sp);
   3158      1.3  explorer #endif
   3159      1.3  explorer }
   3160      1.3  explorer 
   3161      1.3  explorer static void
   3162      1.3  explorer sppp_ipcp_scr(struct sppp *sp)
   3163      1.3  explorer {
   3164      1.3  explorer 	char opt[6 /* compression */ + 6 /* address */];
   3165      1.3  explorer 	u_long ouraddr;
   3166      1.3  explorer 	int i = 0;
   3167      1.3  explorer 
   3168      1.3  explorer #ifdef notyet
   3169      1.3  explorer 	if (sp->ipcp.opts & (1 << IPCP_OPT_COMPRESSION)) {
   3170      1.3  explorer 		opt[i++] = IPCP_OPT_COMPRESSION;
   3171      1.3  explorer 		opt[i++] = 6;
   3172      1.3  explorer 		opt[i++] = 0;	/* VJ header compression */
   3173      1.3  explorer 		opt[i++] = 0x2d; /* VJ header compression */
   3174      1.3  explorer 		opt[i++] = max_slot_id;
   3175      1.3  explorer 		opt[i++] = comp_slot_id;
   3176      1.3  explorer 	}
   3177      1.3  explorer #endif
   3178      1.3  explorer 
   3179      1.3  explorer 	if (sp->ipcp.opts & (1 << IPCP_OPT_ADDRESS)) {
   3180      1.3  explorer 		sppp_get_ip_addrs(sp, &ouraddr, 0, 0);
   3181      1.3  explorer 		opt[i++] = IPCP_OPT_ADDRESS;
   3182      1.3  explorer 		opt[i++] = 6;
   3183      1.3  explorer 		opt[i++] = ouraddr >> 24;
   3184  1.5.2.1    bouyer 		opt[i++] = ouraddr >> 16;
   3185      1.3  explorer 		opt[i++] = ouraddr >> 8;
   3186      1.3  explorer 		opt[i++] = ouraddr;
   3187      1.3  explorer 	}
   3188      1.3  explorer 
   3189      1.3  explorer 	sp->confid[IDX_IPCP] = ++sp->pp_seq[IDX_IPCP];
   3190      1.3  explorer 	sppp_cp_send(sp, PPP_IPCP, CONF_REQ, sp->confid[IDX_IPCP], i, &opt);
   3191      1.3  explorer }
   3192  1.5.2.1    bouyer 
   3193      1.3  explorer 
   3194      1.3  explorer /*
   3196      1.3  explorer  *--------------------------------------------------------------------------*
   3197  1.5.2.1    bouyer  *                                                                          *
   3198  1.5.2.1    bouyer  *                      The IPv6CP implementation.                          *
   3199  1.5.2.1    bouyer  *                                                                          *
   3200  1.5.2.1    bouyer  *--------------------------------------------------------------------------*
   3201  1.5.2.1    bouyer  */
   3202  1.5.2.1    bouyer 
   3203  1.5.2.1    bouyer #ifdef INET6
   3204  1.5.2.1    bouyer static void
   3205  1.5.2.1    bouyer sppp_ipv6cp_init(struct sppp *sp)
   3206  1.5.2.1    bouyer {
   3207  1.5.2.1    bouyer 	sp->ipv6cp.opts = 0;
   3208  1.5.2.1    bouyer 	sp->ipv6cp.flags = 0;
   3209  1.5.2.1    bouyer 	sp->state[IDX_IPV6CP] = STATE_INITIAL;
   3210  1.5.2.1    bouyer 	sp->fail_counter[IDX_IPV6CP] = 0;
   3211  1.5.2.1    bouyer 	sp->pp_seq[IDX_IPV6CP] = 0;
   3212  1.5.2.1    bouyer 	sp->pp_rseq[IDX_IPV6CP] = 0;
   3213  1.5.2.1    bouyer #if defined(__NetBSD__)
   3214      1.3  explorer 	callout_init(&sp->ch[IDX_IPV6CP]);
   3215  1.5.2.1    bouyer #endif
   3216  1.5.2.1    bouyer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   3217  1.5.2.1    bouyer 	callout_handle_init(&sp->ch[IDX_IPV6CP]);
   3218  1.5.2.1    bouyer #endif
   3219  1.5.2.1    bouyer }
   3220  1.5.2.1    bouyer 
   3221  1.5.2.1    bouyer static void
   3222  1.5.2.1    bouyer sppp_ipv6cp_up(struct sppp *sp)
   3223  1.5.2.1    bouyer {
   3224  1.5.2.1    bouyer 	sppp_up_event(&ipv6cp, sp);
   3225  1.5.2.1    bouyer }
   3226  1.5.2.1    bouyer 
   3227  1.5.2.1    bouyer static void
   3228  1.5.2.1    bouyer sppp_ipv6cp_down(struct sppp *sp)
   3229      1.3  explorer {
   3230      1.3  explorer 	sppp_down_event(&ipv6cp, sp);
   3231  1.5.2.1    bouyer }
   3232      1.3  explorer 
   3233  1.5.2.1    bouyer static void
   3234  1.5.2.1    bouyer sppp_ipv6cp_open(struct sppp *sp)
   3235  1.5.2.1    bouyer {
   3236  1.5.2.1    bouyer 	STDDCL;
   3237  1.5.2.1    bouyer 	struct in6_addr myaddr, hisaddr;
   3238  1.5.2.1    bouyer 
   3239  1.5.2.1    bouyer #ifdef IPV6CP_MYIFID_DYN
   3240  1.5.2.1    bouyer 	sp->ipv6cp.flags &= ~(IPV6CP_MYIFID_SEEN|IPV6CP_MYIFID_DYN);
   3241  1.5.2.1    bouyer #else
   3242  1.5.2.1    bouyer 	sp->ipv6cp.flags &= ~IPV6CP_MYIFID_SEEN;
   3243  1.5.2.1    bouyer #endif
   3244  1.5.2.1    bouyer 
   3245  1.5.2.1    bouyer 	sppp_get_ip6_addrs(sp, &myaddr, &hisaddr, 0);
   3246  1.5.2.1    bouyer 	/*
   3247  1.5.2.1    bouyer 	 * If we don't have our address, this probably means our
   3248      1.3  explorer 	 * interface doesn't want to talk IPv6 at all.  (This could
   3249  1.5.2.1    bouyer 	 * be the case if somebody wants to speak only IPX, for
   3250  1.5.2.1    bouyer 	 * example.)  Don't open IPv6CP in this case.
   3251      1.3  explorer 	 */
   3252      1.3  explorer 	if (IN6_IS_ADDR_UNSPECIFIED(&myaddr)) {
   3253      1.3  explorer 		/* XXX this message should go away */
   3254  1.5.2.1    bouyer 		if (debug)
   3255  1.5.2.1    bouyer 			log(LOG_DEBUG, SPP_FMT "ipv6cp_open(): no IPv6 interface\n",
   3256  1.5.2.1    bouyer 			    SPP_ARGS(ifp));
   3257  1.5.2.1    bouyer 		return;
   3258      1.3  explorer 	}
   3259  1.5.2.1    bouyer 
   3260  1.5.2.1    bouyer 	sp->ipv6cp.flags |= IPV6CP_MYIFID_SEEN;
   3261  1.5.2.1    bouyer 	sp->ipv6cp.opts |= (1 << IPV6CP_OPT_IFID);
   3262  1.5.2.1    bouyer 	sppp_open_event(&ipv6cp, sp);
   3263  1.5.2.1    bouyer }
   3264      1.3  explorer 
   3265  1.5.2.1    bouyer static void
   3266  1.5.2.1    bouyer sppp_ipv6cp_close(struct sppp *sp)
   3267  1.5.2.1    bouyer {
   3268  1.5.2.1    bouyer 	sppp_close_event(&ipv6cp, sp);
   3269  1.5.2.1    bouyer }
   3270  1.5.2.1    bouyer 
   3271  1.5.2.1    bouyer static void
   3272  1.5.2.1    bouyer sppp_ipv6cp_TO(void *cookie)
   3273  1.5.2.1    bouyer {
   3274  1.5.2.1    bouyer 	sppp_to_event(&ipv6cp, (struct sppp *)cookie);
   3275  1.5.2.1    bouyer }
   3276  1.5.2.1    bouyer 
   3277  1.5.2.1    bouyer /*
   3278  1.5.2.1    bouyer  * Analyze a configure request.  Return true if it was agreeable, and
   3279  1.5.2.1    bouyer  * caused action sca, false if it has been rejected or nak'ed, and
   3280  1.5.2.1    bouyer  * caused action scn.  (The return value is used to make the state
   3281  1.5.2.1    bouyer  * transition decision in the state automaton.)
   3282  1.5.2.1    bouyer  */
   3283  1.5.2.1    bouyer static int
   3284  1.5.2.1    bouyer sppp_ipv6cp_RCR(struct sppp *sp, struct lcp_header *h, int len)
   3285  1.5.2.1    bouyer {
   3286  1.5.2.1    bouyer 	u_char *buf, *r, *p;
   3287  1.5.2.1    bouyer 	struct ifnet *ifp = &sp->pp_if;
   3288  1.5.2.1    bouyer 	int rlen, origlen, debug = ifp->if_flags & IFF_DEBUG;
   3289  1.5.2.1    bouyer 	struct in6_addr myaddr, desiredaddr, suggestaddr;
   3290  1.5.2.1    bouyer 	int ifidcount;
   3291  1.5.2.1    bouyer 	int type;
   3292  1.5.2.1    bouyer 	int collision, nohisaddr;
   3293  1.5.2.1    bouyer 
   3294  1.5.2.1    bouyer 	len -= 4;
   3295  1.5.2.1    bouyer 	origlen = len;
   3296  1.5.2.1    bouyer 	/*
   3297  1.5.2.1    bouyer 	 * Make sure to allocate a buf that can at least hold a
   3298  1.5.2.1    bouyer 	 * conf-nak with an `address' option.  We might need it below.
   3299  1.5.2.1    bouyer 	 */
   3300  1.5.2.1    bouyer 	buf = r = malloc ((len < 6? 6: len), M_TEMP, M_NOWAIT);
   3301  1.5.2.1    bouyer 	if (! buf)
   3302  1.5.2.1    bouyer 		return (0);
   3303  1.5.2.1    bouyer 
   3304  1.5.2.1    bouyer 	/* pass 1: see if we can recognize them */
   3305  1.5.2.1    bouyer 	if (debug)
   3306  1.5.2.1    bouyer 		log(LOG_DEBUG, SPP_FMT "ipv6cp parse opts:",
   3307  1.5.2.1    bouyer 		    SPP_ARGS(ifp));
   3308  1.5.2.1    bouyer 	p = (void*) (h+1);
   3309  1.5.2.1    bouyer 	ifidcount = 0;
   3310  1.5.2.1    bouyer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   3311  1.5.2.1    bouyer 		if (debug)
   3312  1.5.2.1    bouyer 			addlog(" %s", sppp_ipv6cp_opt_name(*p));
   3313  1.5.2.1    bouyer 		switch (*p) {
   3314  1.5.2.1    bouyer 		case IPV6CP_OPT_IFID:
   3315  1.5.2.1    bouyer 			if (len >= 10 && p[1] == 10 && ifidcount == 0) {
   3316  1.5.2.1    bouyer 				/* correctly formed address option */
   3317  1.5.2.1    bouyer 				ifidcount++;
   3318  1.5.2.1    bouyer 				continue;
   3319  1.5.2.1    bouyer 			}
   3320  1.5.2.1    bouyer 			if (debug)
   3321  1.5.2.1    bouyer 				addlog(" [invalid]");
   3322  1.5.2.1    bouyer 			break;
   3323  1.5.2.1    bouyer #ifdef notyet
   3324  1.5.2.1    bouyer 		case IPV6CP_OPT_COMPRESSION:
   3325  1.5.2.1    bouyer 			if (len >= 4 && p[1] >= 4) {
   3326  1.5.2.1    bouyer 				/* correctly formed compress option */
   3327  1.5.2.1    bouyer 				continue;
   3328  1.5.2.1    bouyer 			}
   3329  1.5.2.1    bouyer 			if (debug)
   3330  1.5.2.1    bouyer 				addlog(" [invalid]");
   3331  1.5.2.1    bouyer 			break;
   3332  1.5.2.1    bouyer #endif
   3333  1.5.2.1    bouyer 		default:
   3334  1.5.2.1    bouyer 			/* Others not supported. */
   3335  1.5.2.1    bouyer 			if (debug)
   3336  1.5.2.1    bouyer 				addlog(" [rej]");
   3337  1.5.2.1    bouyer 			break;
   3338  1.5.2.1    bouyer 		}
   3339  1.5.2.1    bouyer 		/* Add the option to rejected list. */
   3340  1.5.2.1    bouyer 		bcopy (p, r, p[1]);
   3341  1.5.2.1    bouyer 		r += p[1];
   3342  1.5.2.1    bouyer 		rlen += p[1];
   3343  1.5.2.1    bouyer 	}
   3344  1.5.2.1    bouyer 	if (rlen) {
   3345  1.5.2.1    bouyer 		if (debug)
   3346  1.5.2.1    bouyer 			addlog(" send conf-rej\n");
   3347  1.5.2.1    bouyer 		sppp_cp_send (sp, PPP_IPV6CP, CONF_REJ, h->ident, rlen, buf);
   3348  1.5.2.1    bouyer 		goto end;
   3349  1.5.2.1    bouyer 	} else if (debug)
   3350  1.5.2.1    bouyer 		addlog("\n");
   3351  1.5.2.1    bouyer 
   3352  1.5.2.1    bouyer 	/* pass 2: parse option values */
   3353  1.5.2.1    bouyer 	sppp_get_ip6_addrs(sp, &myaddr, 0, 0);
   3354  1.5.2.1    bouyer 	if (debug)
   3355  1.5.2.1    bouyer 		log(LOG_DEBUG, SPP_FMT "ipv6cp parse opt values: ",
   3356  1.5.2.1    bouyer 		       SPP_ARGS(ifp));
   3357  1.5.2.1    bouyer 	p = (void*) (h+1);
   3358  1.5.2.1    bouyer 	len = origlen;
   3359  1.5.2.1    bouyer 	type = CONF_ACK;
   3360  1.5.2.1    bouyer 	for (rlen=0; len>1 && p[1]; len-=p[1], p+=p[1]) {
   3361  1.5.2.1    bouyer 		if (debug)
   3362  1.5.2.1    bouyer 			addlog(" %s", sppp_ipv6cp_opt_name(*p));
   3363  1.5.2.1    bouyer 		switch (*p) {
   3364  1.5.2.1    bouyer #ifdef notyet
   3365  1.5.2.1    bouyer 		case IPV6CP_OPT_COMPRESSION:
   3366  1.5.2.1    bouyer 			continue;
   3367  1.5.2.1    bouyer #endif
   3368  1.5.2.1    bouyer 		case IPV6CP_OPT_IFID:
   3369  1.5.2.1    bouyer 			bzero(&desiredaddr, sizeof(desiredaddr));
   3370  1.5.2.1    bouyer 			bcopy(&p[2], &desiredaddr.s6_addr[8], 8);
   3371  1.5.2.1    bouyer 			collision = (bcmp(&desiredaddr.s6_addr[8],
   3372  1.5.2.1    bouyer 					&myaddr.s6_addr[8], 8) == 0);
   3373  1.5.2.1    bouyer 			nohisaddr = IN6_IS_ADDR_UNSPECIFIED(&desiredaddr);
   3374  1.5.2.1    bouyer 
   3375  1.5.2.1    bouyer 			desiredaddr.s6_addr16[0] = htons(0xfe80);
   3376  1.5.2.1    bouyer 			desiredaddr.s6_addr16[1] = htons(sp->pp_if.if_index);
   3377  1.5.2.1    bouyer 
   3378  1.5.2.1    bouyer 			if (!collision && !nohisaddr) {
   3379  1.5.2.1    bouyer 				/* no collision, hisaddr known - Conf-Ack */
   3380  1.5.2.1    bouyer 				type = CONF_ACK;
   3381  1.5.2.1    bouyer 
   3382  1.5.2.1    bouyer 				if (debug) {
   3383  1.5.2.1    bouyer 					addlog(" %s [%s]",
   3384  1.5.2.1    bouyer 					    ip6_sprintf(&desiredaddr),
   3385  1.5.2.1    bouyer 					    sppp_cp_type_name(type));
   3386  1.5.2.1    bouyer 				}
   3387  1.5.2.1    bouyer 				continue;
   3388  1.5.2.1    bouyer 			}
   3389  1.5.2.1    bouyer 
   3390  1.5.2.1    bouyer 			bzero(&suggestaddr, sizeof(&suggestaddr));
   3391  1.5.2.1    bouyer 			if (collision && nohisaddr) {
   3392  1.5.2.1    bouyer 				/* collision, hisaddr unknown - Conf-Rej */
   3393  1.5.2.1    bouyer 				type = CONF_REJ;
   3394  1.5.2.1    bouyer 				bzero(&p[2], 8);
   3395  1.5.2.1    bouyer 			} else {
   3396  1.5.2.1    bouyer 				/*
   3397  1.5.2.1    bouyer 				 * - no collision, hisaddr unknown, or
   3398  1.5.2.1    bouyer 				 * - collision, hisaddr known
   3399  1.5.2.1    bouyer 				 * Conf-Nak, suggest hisaddr
   3400  1.5.2.1    bouyer 				 */
   3401  1.5.2.1    bouyer 				type = CONF_NAK;
   3402  1.5.2.1    bouyer 				sppp_suggest_ip6_addr(sp, &suggestaddr);
   3403  1.5.2.1    bouyer 				bcopy(&suggestaddr.s6_addr[8], &p[2], 8);
   3404  1.5.2.1    bouyer 			}
   3405  1.5.2.1    bouyer 			if (debug)
   3406  1.5.2.1    bouyer 				addlog(" %s [%s]", ip6_sprintf(&desiredaddr),
   3407  1.5.2.1    bouyer 				    sppp_cp_type_name(type));
   3408  1.5.2.1    bouyer 			break;
   3409  1.5.2.1    bouyer 		}
   3410  1.5.2.1    bouyer 		/* Add the option to nak'ed list. */
   3411  1.5.2.1    bouyer 		bcopy (p, r, p[1]);
   3412  1.5.2.1    bouyer 		r += p[1];
   3413  1.5.2.1    bouyer 		rlen += p[1];
   3414  1.5.2.1    bouyer 	}
   3415  1.5.2.1    bouyer 
   3416  1.5.2.1    bouyer 	if (rlen == 0 && type == CONF_ACK) {
   3417  1.5.2.1    bouyer 		if (debug)
   3418  1.5.2.1    bouyer 			addlog(" send %s\n", sppp_cp_type_name(type));
   3419  1.5.2.1    bouyer 		sppp_cp_send (sp, PPP_IPV6CP, type, h->ident, origlen, h+1);
   3420  1.5.2.1    bouyer 	} else {
   3421  1.5.2.1    bouyer #ifdef DIAGNOSTIC
   3422  1.5.2.1    bouyer 		if (type == CONF_ACK)
   3423  1.5.2.1    bouyer 			panic("IPv6CP RCR: CONF_ACK with non-zero rlen");
   3424  1.5.2.1    bouyer #endif
   3425  1.5.2.1    bouyer 
   3426  1.5.2.1    bouyer 		if (debug) {
   3427  1.5.2.1    bouyer 			addlog(" send %s suggest %s\n",
   3428  1.5.2.1    bouyer 			    sppp_cp_type_name(type), ip6_sprintf(&suggestaddr));
   3429  1.5.2.1    bouyer 		}
   3430  1.5.2.1    bouyer 		sppp_cp_send (sp, PPP_IPV6CP, type, h->ident, rlen, buf);
   3431  1.5.2.1    bouyer 	}
   3432  1.5.2.1    bouyer 
   3433  1.5.2.1    bouyer  end:
   3434  1.5.2.1    bouyer 	free (buf, M_TEMP);
   3435  1.5.2.1    bouyer 	return (rlen == 0);
   3436  1.5.2.1    bouyer }
   3437  1.5.2.1    bouyer 
   3438  1.5.2.1    bouyer /*
   3439  1.5.2.1    bouyer  * Analyze the IPv6CP Configure-Reject option list, and adjust our
   3440  1.5.2.1    bouyer  * negotiation.
   3441  1.5.2.1    bouyer  */
   3442  1.5.2.1    bouyer static void
   3443  1.5.2.1    bouyer sppp_ipv6cp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
   3444  1.5.2.1    bouyer {
   3445  1.5.2.1    bouyer 	u_char *buf, *p;
   3446  1.5.2.1    bouyer 	struct ifnet *ifp = &sp->pp_if;
   3447  1.5.2.1    bouyer 	int debug = ifp->if_flags & IFF_DEBUG;
   3448  1.5.2.1    bouyer 
   3449  1.5.2.1    bouyer 	len -= 4;
   3450  1.5.2.1    bouyer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   3451  1.5.2.1    bouyer 	if (!buf)
   3452  1.5.2.1    bouyer 		return;
   3453  1.5.2.1    bouyer 
   3454  1.5.2.1    bouyer 	if (debug)
   3455  1.5.2.1    bouyer 		log(LOG_DEBUG, SPP_FMT "ipv6cp rej opts:",
   3456  1.5.2.1    bouyer 		    SPP_ARGS(ifp));
   3457  1.5.2.1    bouyer 
   3458  1.5.2.1    bouyer 	p = (void*) (h+1);
   3459  1.5.2.1    bouyer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   3460  1.5.2.1    bouyer 		if (debug)
   3461  1.5.2.1    bouyer 			addlog(" %s", sppp_ipv6cp_opt_name(*p));
   3462  1.5.2.1    bouyer 		switch (*p) {
   3463  1.5.2.1    bouyer 		case IPV6CP_OPT_IFID:
   3464  1.5.2.1    bouyer 			/*
   3465  1.5.2.1    bouyer 			 * Peer doesn't grok address option.  This is
   3466  1.5.2.1    bouyer 			 * bad.  XXX  Should we better give up here?
   3467  1.5.2.1    bouyer 			 */
   3468  1.5.2.1    bouyer 			sp->ipv6cp.opts &= ~(1 << IPV6CP_OPT_IFID);
   3469  1.5.2.1    bouyer 			break;
   3470  1.5.2.1    bouyer #ifdef notyet
   3471  1.5.2.1    bouyer 		case IPV6CP_OPT_COMPRESS:
   3472  1.5.2.1    bouyer 			sp->ipv6cp.opts &= ~(1 << IPV6CP_OPT_COMPRESS);
   3473  1.5.2.1    bouyer 			break;
   3474  1.5.2.1    bouyer #endif
   3475  1.5.2.1    bouyer 		}
   3476  1.5.2.1    bouyer 	}
   3477  1.5.2.1    bouyer 	if (debug)
   3478  1.5.2.1    bouyer 		addlog("\n");
   3479  1.5.2.1    bouyer 	free (buf, M_TEMP);
   3480  1.5.2.1    bouyer 	return;
   3481  1.5.2.1    bouyer }
   3482  1.5.2.1    bouyer 
   3483  1.5.2.1    bouyer /*
   3484  1.5.2.1    bouyer  * Analyze the IPv6CP Configure-NAK option list, and adjust our
   3485  1.5.2.1    bouyer  * negotiation.
   3486  1.5.2.1    bouyer  */
   3487  1.5.2.1    bouyer static void
   3488  1.5.2.1    bouyer sppp_ipv6cp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
   3489  1.5.2.1    bouyer {
   3490  1.5.2.1    bouyer 	u_char *buf, *p;
   3491  1.5.2.1    bouyer 	struct ifnet *ifp = &sp->pp_if;
   3492  1.5.2.1    bouyer 	int debug = ifp->if_flags & IFF_DEBUG;
   3493  1.5.2.1    bouyer 	struct in6_addr suggestaddr;
   3494  1.5.2.1    bouyer 
   3495  1.5.2.1    bouyer 	len -= 4;
   3496  1.5.2.1    bouyer 	buf = malloc (len, M_TEMP, M_NOWAIT);
   3497  1.5.2.1    bouyer 	if (!buf)
   3498  1.5.2.1    bouyer 		return;
   3499  1.5.2.1    bouyer 
   3500  1.5.2.1    bouyer 	if (debug)
   3501  1.5.2.1    bouyer 		log(LOG_DEBUG, SPP_FMT "ipv6cp nak opts:",
   3502  1.5.2.1    bouyer 		    SPP_ARGS(ifp));
   3503  1.5.2.1    bouyer 
   3504  1.5.2.1    bouyer 	p = (void*) (h+1);
   3505  1.5.2.1    bouyer 	for (; len > 1 && p[1]; len -= p[1], p += p[1]) {
   3506  1.5.2.1    bouyer 		if (debug)
   3507  1.5.2.1    bouyer 			addlog(" %s", sppp_ipv6cp_opt_name(*p));
   3508  1.5.2.1    bouyer 		switch (*p) {
   3509  1.5.2.1    bouyer 		case IPV6CP_OPT_IFID:
   3510  1.5.2.1    bouyer 			/*
   3511  1.5.2.1    bouyer 			 * Peer doesn't like our local ifid.  See
   3512  1.5.2.1    bouyer 			 * if we can do something for him.  We'll drop
   3513  1.5.2.1    bouyer 			 * him our address then.
   3514  1.5.2.1    bouyer 			 */
   3515  1.5.2.1    bouyer 			if (len < 10 || p[1] != 10)
   3516  1.5.2.1    bouyer 				break;
   3517  1.5.2.1    bouyer 			bzero(&suggestaddr, sizeof(suggestaddr));
   3518  1.5.2.1    bouyer 			suggestaddr.s6_addr16[0] = htons(0xfe80);
   3519  1.5.2.1    bouyer 			suggestaddr.s6_addr16[1] = htons(sp->pp_if.if_index);
   3520  1.5.2.1    bouyer 			bcopy(&p[2], &suggestaddr.s6_addr[8], 8);
   3521  1.5.2.1    bouyer 
   3522  1.5.2.1    bouyer 			sp->ipv6cp.opts |= (1 << IPV6CP_OPT_IFID);
   3523  1.5.2.1    bouyer 			if (debug)
   3524  1.5.2.1    bouyer 				addlog(" [suggestaddr %s]",
   3525  1.5.2.1    bouyer 				       ip6_sprintf(&suggestaddr));
   3526  1.5.2.1    bouyer #ifdef IPV6CP_MYIFID_DYN
   3527  1.5.2.1    bouyer 			/*
   3528  1.5.2.1    bouyer 			 * When doing dynamic address assignment,
   3529  1.5.2.1    bouyer 			 * we accept his offer.
   3530  1.5.2.1    bouyer 			 */
   3531  1.5.2.1    bouyer 			if (sp->ipv6cp.flags & IPV6CP_MYIFID_DYN) {
   3532  1.5.2.1    bouyer 				struct in6_addr lastsuggest;
   3533  1.5.2.1    bouyer 				/*
   3534  1.5.2.1    bouyer 				 * If <suggested myaddr from peer> equals to
   3535  1.5.2.1    bouyer 				 * <hisaddr we have suggested last time>,
   3536  1.5.2.1    bouyer 				 * we have a collision.  generate new random
   3537  1.5.2.1    bouyer 				 * ifid.
   3538  1.5.2.1    bouyer 				 */
   3539  1.5.2.1    bouyer 				sppp_suggest_ip6_addr(&lastsuggest);
   3540  1.5.2.1    bouyer 				if (IN6_ARE_ADDR_EQUAL(&suggestaddr,
   3541  1.5.2.1    bouyer 						 lastsuggest)) {
   3542  1.5.2.1    bouyer 					if (debug)
   3543  1.5.2.1    bouyer 						addlog(" [random]");
   3544  1.5.2.1    bouyer 					sppp_gen_ip6_addr(sp, &suggestaddr);
   3545  1.5.2.1    bouyer 				}
   3546  1.5.2.1    bouyer 				sppp_set_ip6_addr(sp, &suggestaddr, 0);
   3547  1.5.2.1    bouyer 				if (debug)
   3548  1.5.2.1    bouyer 					addlog(" [agree]");
   3549  1.5.2.1    bouyer 				sp->ipv6cp.flags |= IPV6CP_MYIFID_SEEN;
   3550  1.5.2.1    bouyer 			}
   3551  1.5.2.1    bouyer #else
   3552  1.5.2.1    bouyer 			/*
   3553  1.5.2.1    bouyer 			 * Since we do not do dynamic address assignment,
   3554  1.5.2.1    bouyer 			 * we ignore it and thus continue to negotiate
   3555  1.5.2.1    bouyer 			 * our already existing value.  This can possibly
   3556  1.5.2.1    bouyer 			 * go into infinite request-reject loop.
   3557  1.5.2.1    bouyer 			 *
   3558  1.5.2.1    bouyer 			 * This is not likely because we normally use
   3559  1.5.2.1    bouyer 			 * ifid based on MAC-address.
   3560  1.5.2.1    bouyer 			 * If you have no ethernet card on the node, too bad.
   3561  1.5.2.1    bouyer 			 * XXX should we use fail_counter?
   3562  1.5.2.1    bouyer 			 */
   3563  1.5.2.1    bouyer #endif
   3564  1.5.2.1    bouyer 			break;
   3565  1.5.2.1    bouyer #ifdef notyet
   3566  1.5.2.1    bouyer 		case IPV6CP_OPT_COMPRESS:
   3567  1.5.2.1    bouyer 			/*
   3568  1.5.2.1    bouyer 			 * Peer wants different compression parameters.
   3569  1.5.2.1    bouyer 			 */
   3570  1.5.2.1    bouyer 			break;
   3571  1.5.2.1    bouyer #endif
   3572  1.5.2.1    bouyer 		}
   3573  1.5.2.1    bouyer 	}
   3574  1.5.2.1    bouyer 	if (debug)
   3575  1.5.2.1    bouyer 		addlog("\n");
   3576  1.5.2.1    bouyer 	free (buf, M_TEMP);
   3577  1.5.2.1    bouyer 	return;
   3578  1.5.2.1    bouyer }
   3579  1.5.2.1    bouyer 
   3580  1.5.2.1    bouyer static void
   3581  1.5.2.1    bouyer sppp_ipv6cp_tlu(struct sppp *sp)
   3582  1.5.2.1    bouyer {
   3583  1.5.2.1    bouyer 	/* we are up - notify isdn daemon */
   3584  1.5.2.1    bouyer 	if (sp->pp_con)
   3585  1.5.2.1    bouyer 		sp->pp_con(sp);
   3586  1.5.2.1    bouyer }
   3587  1.5.2.1    bouyer 
   3588  1.5.2.1    bouyer static void
   3589  1.5.2.1    bouyer sppp_ipv6cp_tld(struct sppp *sp)
   3590  1.5.2.1    bouyer {
   3591  1.5.2.1    bouyer }
   3592  1.5.2.1    bouyer 
   3593  1.5.2.1    bouyer static void
   3594  1.5.2.1    bouyer sppp_ipv6cp_tls(struct sppp *sp)
   3595  1.5.2.1    bouyer {
   3596  1.5.2.1    bouyer 	/* indicate to LCP that it must stay alive */
   3597  1.5.2.1    bouyer 	sp->lcp.protos |= (1 << IDX_IPV6CP);
   3598  1.5.2.1    bouyer }
   3599  1.5.2.1    bouyer 
   3600  1.5.2.1    bouyer static void
   3601  1.5.2.1    bouyer sppp_ipv6cp_tlf(struct sppp *sp)
   3602  1.5.2.1    bouyer {
   3603  1.5.2.1    bouyer 
   3604  1.5.2.1    bouyer #if 0 /* need #if 0 to close IPv6CP properly */
   3605  1.5.2.1    bouyer 	/* we no longer need LCP */
   3606  1.5.2.1    bouyer 	sp->lcp.protos &= ~(1 << IDX_IPV6CP);
   3607  1.5.2.1    bouyer 	sppp_lcp_check_and_close(sp);
   3608  1.5.2.1    bouyer #endif
   3609  1.5.2.1    bouyer }
   3610  1.5.2.1    bouyer 
   3611  1.5.2.1    bouyer static void
   3612  1.5.2.1    bouyer sppp_ipv6cp_scr(struct sppp *sp)
   3613  1.5.2.1    bouyer {
   3614  1.5.2.1    bouyer 	char opt[10 /* ifid */ + 4 /* compression, minimum */];
   3615  1.5.2.1    bouyer 	struct in6_addr ouraddr;
   3616  1.5.2.1    bouyer 	int i = 0;
   3617  1.5.2.1    bouyer 
   3618  1.5.2.1    bouyer 	if (sp->ipv6cp.opts & (1 << IPV6CP_OPT_IFID)) {
   3619  1.5.2.1    bouyer 		sppp_get_ip6_addrs(sp, &ouraddr, 0, 0);
   3620  1.5.2.1    bouyer 		opt[i++] = IPV6CP_OPT_IFID;
   3621  1.5.2.1    bouyer 		opt[i++] = 10;
   3622  1.5.2.1    bouyer 		bcopy(&ouraddr.s6_addr[8], &opt[i], 8);
   3623  1.5.2.1    bouyer 		i += 8;
   3624  1.5.2.1    bouyer 	}
   3625  1.5.2.1    bouyer 
   3626  1.5.2.1    bouyer #ifdef notyet
   3627  1.5.2.1    bouyer 	if (sp->ipv6cp.opts & (1 << IPV6CP_OPT_COMPRESSION)) {
   3628  1.5.2.1    bouyer 		opt[i++] = IPV6CP_OPT_COMPRESSION;
   3629  1.5.2.1    bouyer 		opt[i++] = 4;
   3630  1.5.2.1    bouyer 		opt[i++] = 0;	/* TBD */
   3631  1.5.2.1    bouyer 		opt[i++] = 0;	/* TBD */
   3632  1.5.2.1    bouyer 		/* variable length data may follow */
   3633  1.5.2.1    bouyer 	}
   3634  1.5.2.1    bouyer #endif
   3635  1.5.2.1    bouyer 
   3636  1.5.2.1    bouyer 	sp->confid[IDX_IPV6CP] = ++sp->pp_seq[IDX_IPV6CP];
   3637  1.5.2.1    bouyer 	sppp_cp_send(sp, PPP_IPV6CP, CONF_REQ, sp->confid[IDX_IPV6CP], i, &opt);
   3638  1.5.2.1    bouyer }
   3639  1.5.2.1    bouyer #else /*INET6*/
   3640  1.5.2.1    bouyer static void sppp_ipv6cp_init(struct sppp *sp)
   3641  1.5.2.1    bouyer {
   3642  1.5.2.1    bouyer }
   3643  1.5.2.1    bouyer 
   3644  1.5.2.1    bouyer static void sppp_ipv6cp_up(struct sppp *sp)
   3645  1.5.2.1    bouyer {
   3646  1.5.2.1    bouyer }
   3647  1.5.2.1    bouyer 
   3648  1.5.2.1    bouyer static void sppp_ipv6cp_down(struct sppp *sp)
   3649  1.5.2.1    bouyer {
   3650  1.5.2.1    bouyer }
   3651  1.5.2.1    bouyer 
   3652  1.5.2.1    bouyer 
   3653  1.5.2.1    bouyer static void sppp_ipv6cp_open(struct sppp *sp)
   3654  1.5.2.1    bouyer {
   3655  1.5.2.1    bouyer }
   3656  1.5.2.1    bouyer 
   3657  1.5.2.1    bouyer static void sppp_ipv6cp_close(struct sppp *sp)
   3658  1.5.2.1    bouyer {
   3659  1.5.2.1    bouyer }
   3660  1.5.2.1    bouyer 
   3661  1.5.2.1    bouyer static void sppp_ipv6cp_TO(void *sp)
   3662  1.5.2.1    bouyer {
   3663  1.5.2.1    bouyer }
   3664  1.5.2.1    bouyer 
   3665  1.5.2.1    bouyer static int sppp_ipv6cp_RCR(struct sppp *sp, struct lcp_header *h, int len)
   3666  1.5.2.1    bouyer {
   3667  1.5.2.1    bouyer 	return 0;
   3668  1.5.2.1    bouyer }
   3669  1.5.2.1    bouyer 
   3670  1.5.2.1    bouyer static void sppp_ipv6cp_RCN_rej(struct sppp *sp, struct lcp_header *h, int len)
   3671  1.5.2.1    bouyer {
   3672  1.5.2.1    bouyer }
   3673  1.5.2.1    bouyer 
   3674  1.5.2.1    bouyer static void sppp_ipv6cp_RCN_nak(struct sppp *sp, struct lcp_header *h, int len)
   3675  1.5.2.1    bouyer {
   3676  1.5.2.1    bouyer }
   3677  1.5.2.1    bouyer 
   3678  1.5.2.1    bouyer static void sppp_ipv6cp_tlu(struct sppp *sp)
   3679  1.5.2.1    bouyer {
   3680  1.5.2.1    bouyer }
   3681  1.5.2.1    bouyer 
   3682  1.5.2.1    bouyer static void sppp_ipv6cp_tld(struct sppp *sp)
   3683  1.5.2.1    bouyer {
   3684  1.5.2.1    bouyer }
   3685  1.5.2.1    bouyer 
   3686  1.5.2.1    bouyer static void sppp_ipv6cp_tls(struct sppp *sp)
   3687  1.5.2.1    bouyer {
   3688  1.5.2.1    bouyer }
   3689  1.5.2.1    bouyer 
   3690  1.5.2.1    bouyer static void sppp_ipv6cp_tlf(struct sppp *sp)
   3691  1.5.2.1    bouyer {
   3692  1.5.2.1    bouyer }
   3693  1.5.2.1    bouyer 
   3694  1.5.2.1    bouyer static void sppp_ipv6cp_scr(struct sppp *sp)
   3695  1.5.2.1    bouyer {
   3696  1.5.2.1    bouyer }
   3697  1.5.2.1    bouyer #endif /*INET6*/
   3698  1.5.2.1    bouyer 
   3699  1.5.2.1    bouyer 
   3700  1.5.2.1    bouyer /*
   3702  1.5.2.1    bouyer  *--------------------------------------------------------------------------*
   3703  1.5.2.1    bouyer  *                                                                          *
   3704  1.5.2.1    bouyer  *                        The CHAP implementation.                          *
   3705  1.5.2.1    bouyer  *                                                                          *
   3706  1.5.2.1    bouyer  *--------------------------------------------------------------------------*
   3707  1.5.2.1    bouyer  */
   3708  1.5.2.1    bouyer 
   3709  1.5.2.1    bouyer /*
   3710  1.5.2.1    bouyer  * The authentication protocols don't employ a full-fledged state machine as
   3711  1.5.2.1    bouyer  * the control protocols do, since they do have Open and Close events, but
   3712  1.5.2.1    bouyer  * not Up and Down, nor are they explicitly terminated.  Also, use of the
   3713  1.5.2.1    bouyer  * authentication protocols may be different in both directions (this makes
   3714  1.5.2.1    bouyer  * sense, think of a machine that never accepts incoming calls but only
   3715  1.5.2.1    bouyer  * calls out, it doesn't require the called party to authenticate itself).
   3716  1.5.2.1    bouyer  *
   3717  1.5.2.1    bouyer  * Our state machine for the local authentication protocol (we are requesting
   3718  1.5.2.1    bouyer  * the peer to authenticate) looks like:
   3719  1.5.2.1    bouyer  *
   3720  1.5.2.1    bouyer  *						    RCA-
   3721  1.5.2.1    bouyer  *	      +--------------------------------------------+
   3722  1.5.2.1    bouyer  *	      V					    scn,tld|
   3723  1.5.2.1    bouyer  *	  +--------+			       Close   +---------+ RCA+
   3724  1.5.2.1    bouyer  *	  |	   |<----------------------------------|	 |------+
   3725  1.5.2.1    bouyer  *   +--->| Closed |				TO*    | Opened	 | sca	|
   3726  1.5.2.1    bouyer  *   |	  |	   |-----+		       +-------|	 |<-----+
   3727  1.5.2.1    bouyer  *   |	  +--------+ irc |		       |       +---------+
   3728  1.5.2.1    bouyer  *   |	    ^		 |		       |	   ^
   3729  1.5.2.1    bouyer  *   |	    |		 |		       |	   |
   3730  1.5.2.1    bouyer  *   |	    |		 |		       |	   |
   3731  1.5.2.1    bouyer  *   |	 TO-|		 |		       |	   |
   3732  1.5.2.1    bouyer  *   |	    |tld  TO+	 V		       |	   |
   3733  1.5.2.1    bouyer  *   |	    |	+------->+		       |	   |
   3734  1.5.2.1    bouyer  *   |	    |	|	 |		       |	   |
   3735  1.5.2.1    bouyer  *   |	  +--------+	 V		       |	   |
   3736  1.5.2.1    bouyer  *   |	  |	   |<----+<--------------------+	   |
   3737  1.5.2.1    bouyer  *   |	  | Req-   | scr				   |
   3738  1.5.2.1    bouyer  *   |	  | Sent   |					   |
   3739  1.5.2.1    bouyer  *   |	  |	   |					   |
   3740  1.5.2.1    bouyer  *   |	  +--------+					   |
   3741  1.5.2.1    bouyer  *   | RCA- |	| RCA+					   |
   3742  1.5.2.1    bouyer  *   +------+	+------------------------------------------+
   3743  1.5.2.1    bouyer  *   scn,tld	  sca,irc,ict,tlu
   3744  1.5.2.1    bouyer  *
   3745  1.5.2.1    bouyer  *
   3746  1.5.2.1    bouyer  *   with:
   3747  1.5.2.1    bouyer  *
   3748  1.5.2.1    bouyer  *	Open:	LCP reached authentication phase
   3749  1.5.2.1    bouyer  *	Close:	LCP reached terminate phase
   3750  1.5.2.1    bouyer  *
   3751  1.5.2.1    bouyer  *	RCA+:	received reply (pap-req, chap-response), acceptable
   3752  1.5.2.1    bouyer  *	RCN:	received reply (pap-req, chap-response), not acceptable
   3753  1.5.2.1    bouyer  *	TO+:	timeout with restart counter >= 0
   3754  1.5.2.1    bouyer  *	TO-:	timeout with restart counter < 0
   3755  1.5.2.1    bouyer  *	TO*:	reschedule timeout for CHAP
   3756  1.5.2.1    bouyer  *
   3757  1.5.2.1    bouyer  *	scr:	send request packet (none for PAP, chap-challenge)
   3758  1.5.2.1    bouyer  *	sca:	send ack packet (pap-ack, chap-success)
   3759  1.5.2.1    bouyer  *	scn:	send nak packet (pap-nak, chap-failure)
   3760  1.5.2.1    bouyer  *	ict:	initialize re-challenge timer (CHAP only)
   3761  1.5.2.1    bouyer  *
   3762  1.5.2.1    bouyer  *	tlu:	this-layer-up, LCP reaches network phase
   3763  1.5.2.1    bouyer  *	tld:	this-layer-down, LCP enters terminate phase
   3764  1.5.2.1    bouyer  *
   3765  1.5.2.1    bouyer  * Note that in CHAP mode, after sending a new challenge, while the state
   3766  1.5.2.1    bouyer  * automaton falls back into Req-Sent state, it doesn't signal a tld
   3767  1.5.2.1    bouyer  * event to LCP, so LCP remains in network phase.  Only after not getting
   3768  1.5.2.1    bouyer  * any response (or after getting an unacceptable response), CHAP closes,
   3769  1.5.2.1    bouyer  * causing LCP to enter terminate phase.
   3770  1.5.2.1    bouyer  *
   3771  1.5.2.1    bouyer  * With PAP, there is no initial request that can be sent.  The peer is
   3772  1.5.2.1    bouyer  * expected to send one based on the successful negotiation of PAP as
   3773  1.5.2.1    bouyer  * the authentication protocol during the LCP option negotiation.
   3774  1.5.2.1    bouyer  *
   3775  1.5.2.1    bouyer  * Incoming authentication protocol requests (remote requests
   3776  1.5.2.1    bouyer  * authentication, we are peer) don't employ a state machine at all,
   3777  1.5.2.1    bouyer  * they are simply answered.  Some peers [Ascend P50 firmware rev
   3778  1.5.2.1    bouyer  * 4.50] react allergically when sending IPCP/IPv6CP requests while they are
   3779  1.5.2.1    bouyer  * still in authentication phase (thereby violating the standard that
   3780  1.5.2.1    bouyer  * demands that these NCP packets are to be discarded), so we keep
   3781  1.5.2.1    bouyer  * track of the peer demanding us to authenticate, and only proceed to
   3782  1.5.2.1    bouyer  * phase network once we've seen a positive acknowledge for the
   3783  1.5.2.1    bouyer  * authentication.
   3784  1.5.2.1    bouyer  */
   3785  1.5.2.1    bouyer 
   3786  1.5.2.1    bouyer /*
   3787  1.5.2.1    bouyer  * Handle incoming CHAP packets.
   3788  1.5.2.1    bouyer  */
   3789  1.5.2.1    bouyer void
   3790  1.5.2.1    bouyer sppp_chap_input(struct sppp *sp, struct mbuf *m)
   3791  1.5.2.1    bouyer {
   3792  1.5.2.1    bouyer 	STDDCL;
   3793  1.5.2.1    bouyer 	struct lcp_header *h;
   3794  1.5.2.1    bouyer 	int len, x;
   3795  1.5.2.1    bouyer 	u_char *value, *name, digest[AUTHKEYLEN], dsize;
   3796  1.5.2.1    bouyer 	int value_len, name_len;
   3797  1.5.2.1    bouyer 	MD5_CTX ctx;
   3798  1.5.2.1    bouyer 
   3799  1.5.2.1    bouyer 	len = m->m_pkthdr.len;
   3800  1.5.2.1    bouyer 	if (len < 4) {
   3801  1.5.2.1    bouyer 		if (debug)
   3802  1.5.2.1    bouyer 			log(LOG_DEBUG,
   3803  1.5.2.1    bouyer 			    SPP_FMT "chap invalid packet length: %d bytes\n",
   3804  1.5.2.1    bouyer 			    SPP_ARGS(ifp), len);
   3805  1.5.2.1    bouyer 		return;
   3806  1.5.2.1    bouyer 	}
   3807  1.5.2.1    bouyer 	h = mtod (m, struct lcp_header*);
   3808  1.5.2.1    bouyer 	if (len > ntohs (h->len))
   3809  1.5.2.1    bouyer 		len = ntohs (h->len);
   3810  1.5.2.1    bouyer 
   3811  1.5.2.1    bouyer 	switch (h->type) {
   3812  1.5.2.1    bouyer 	/* challenge, failure and success are his authproto */
   3813  1.5.2.1    bouyer 	case CHAP_CHALLENGE:
   3814  1.5.2.1    bouyer 		value = 1 + (u_char*)(h+1);
   3815  1.5.2.1    bouyer 		value_len = value[-1];
   3816  1.5.2.1    bouyer 		name = value + value_len;
   3817  1.5.2.1    bouyer 		name_len = len - value_len - 5;
   3818  1.5.2.1    bouyer 		if (name_len < 0) {
   3819  1.5.2.1    bouyer 			if (debug) {
   3820  1.5.2.1    bouyer 				log(LOG_DEBUG,
   3821  1.5.2.1    bouyer 				    SPP_FMT "chap corrupted challenge "
   3822  1.5.2.1    bouyer 				    "<%s id=0x%x len=%d",
   3823  1.5.2.1    bouyer 				    SPP_ARGS(ifp),
   3824  1.5.2.1    bouyer 				    sppp_auth_type_name(PPP_CHAP, h->type),
   3825  1.5.2.1    bouyer 				    h->ident, ntohs(h->len));
   3826  1.5.2.1    bouyer 				if (len > 4)
   3827  1.5.2.1    bouyer 					sppp_print_bytes((u_char*) (h+1), len-4);
   3828  1.5.2.1    bouyer 				addlog(">\n");
   3829  1.5.2.1    bouyer 			}
   3830  1.5.2.1    bouyer 			break;
   3831  1.5.2.1    bouyer 		}
   3832  1.5.2.1    bouyer 
   3833  1.5.2.1    bouyer 		if (debug) {
   3834  1.5.2.1    bouyer 			log(LOG_DEBUG,
   3835  1.5.2.1    bouyer 			    SPP_FMT "chap input <%s id=0x%x len=%d name=",
   3836  1.5.2.1    bouyer 			    SPP_ARGS(ifp),
   3837  1.5.2.1    bouyer 			    sppp_auth_type_name(PPP_CHAP, h->type), h->ident,
   3838  1.5.2.1    bouyer 			    ntohs(h->len));
   3839  1.5.2.1    bouyer 			sppp_print_string((char*) name, name_len);
   3840  1.5.2.1    bouyer 			addlog(" value-size=%d value=", value_len);
   3841  1.5.2.1    bouyer 			sppp_print_bytes(value, value_len);
   3842  1.5.2.1    bouyer 			addlog(">\n");
   3843  1.5.2.1    bouyer 		}
   3844  1.5.2.1    bouyer 
   3845  1.5.2.1    bouyer 		/* Compute reply value. */
   3846  1.5.2.1    bouyer 		MD5Init(&ctx);
   3847  1.5.2.1    bouyer 		MD5Update(&ctx, &h->ident, 1);
   3848  1.5.2.1    bouyer 		MD5Update(&ctx, sp->myauth.secret,
   3849  1.5.2.1    bouyer 			  sppp_strnlen(sp->myauth.secret, AUTHKEYLEN));
   3850      1.3  explorer 		MD5Update(&ctx, value, value_len);
   3851      1.3  explorer 		MD5Final(digest, &ctx);
   3852      1.3  explorer 		dsize = sizeof digest;
   3853      1.3  explorer 
   3854      1.3  explorer 		sppp_auth_send(&chap, sp, CHAP_RESPONSE, h->ident,
   3855      1.3  explorer 			       sizeof dsize, (const char *)&dsize,
   3856      1.3  explorer 			       sizeof digest, digest,
   3857      1.3  explorer 			       (size_t)sppp_strnlen(sp->myauth.name, AUTHNAMELEN),
   3858      1.3  explorer 			       sp->myauth.name,
   3859      1.3  explorer 			       0);
   3860      1.3  explorer 		break;
   3861      1.3  explorer 
   3862      1.3  explorer 	case CHAP_SUCCESS:
   3863      1.3  explorer 		if (debug) {
   3864      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "chap success",
   3865  1.5.2.5    bouyer 			    SPP_ARGS(ifp));
   3866      1.3  explorer 			if (len > 4) {
   3867      1.3  explorer 				addlog(": ");
   3868      1.3  explorer 				sppp_print_string((char*)(h + 1), len - 4);
   3869      1.3  explorer 			}
   3870      1.3  explorer 			addlog("\n");
   3871      1.3  explorer 		}
   3872      1.3  explorer 		x = splnet();
   3873      1.3  explorer 		sp->pp_flags &= ~PP_NEEDAUTH;
   3874      1.3  explorer 		if (sp->myauth.proto == PPP_CHAP &&
   3875      1.3  explorer 		    (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) &&
   3876      1.3  explorer 		    (sp->lcp.protos & (1 << IDX_CHAP)) == 0) {
   3877      1.3  explorer 			/*
   3878      1.3  explorer 			 * We are authenticator for CHAP but didn't
   3879      1.3  explorer 			 * complete yet.  Leave it to tlu to proceed
   3880      1.3  explorer 			 * to network phase.
   3881      1.3  explorer 			 */
   3882      1.3  explorer 			splx(x);
   3883      1.3  explorer 			break;
   3884      1.3  explorer 		}
   3885      1.3  explorer 		splx(x);
   3886      1.3  explorer 		sppp_phase_network(sp);
   3887      1.3  explorer 		break;
   3888      1.3  explorer 
   3889      1.3  explorer 	case CHAP_FAILURE:
   3890      1.3  explorer 		if (debug) {
   3891      1.3  explorer 			log(LOG_INFO, SPP_FMT "chap failure",
   3892      1.3  explorer 			    SPP_ARGS(ifp));
   3893      1.3  explorer 			if (len > 4) {
   3894      1.3  explorer 				addlog(": ");
   3895      1.3  explorer 				sppp_print_string((char*)(h + 1), len - 4);
   3896      1.3  explorer 			}
   3897      1.3  explorer 			addlog("\n");
   3898      1.3  explorer 		} else
   3899      1.3  explorer 			log(LOG_INFO, SPP_FMT "chap failure\n",
   3900      1.3  explorer 			    SPP_ARGS(ifp));
   3901      1.3  explorer 		/* await LCP shutdown by authenticator */
   3902      1.3  explorer 		break;
   3903      1.3  explorer 
   3904      1.3  explorer 	/* response is my authproto */
   3905      1.3  explorer 	case CHAP_RESPONSE:
   3906      1.3  explorer 		value = 1 + (u_char*)(h+1);
   3907      1.3  explorer 		value_len = value[-1];
   3908      1.3  explorer 		name = value + value_len;
   3909      1.3  explorer 		name_len = len - value_len - 5;
   3910      1.3  explorer 		if (name_len < 0) {
   3911      1.3  explorer 			if (debug) {
   3912      1.3  explorer 				log(LOG_DEBUG,
   3913      1.3  explorer 				    SPP_FMT "chap corrupted response "
   3914      1.3  explorer 				    "<%s id=0x%x len=%d",
   3915      1.3  explorer 				    SPP_ARGS(ifp),
   3916      1.3  explorer 				    sppp_auth_type_name(PPP_CHAP, h->type),
   3917      1.3  explorer 				    h->ident, ntohs(h->len));
   3918      1.3  explorer 				if (len > 4)
   3919      1.3  explorer 					sppp_print_bytes((u_char*)(h+1), len-4);
   3920      1.3  explorer 				addlog(">\n");
   3921      1.3  explorer 			}
   3922      1.3  explorer 			break;
   3923      1.3  explorer 		}
   3924      1.3  explorer 		if (h->ident != sp->confid[IDX_CHAP]) {
   3925      1.3  explorer 			if (debug)
   3926      1.3  explorer 				log(LOG_DEBUG,
   3927      1.3  explorer 				    SPP_FMT "chap dropping response for old ID "
   3928      1.3  explorer 				    "(got %d, expected %d)\n",
   3929      1.3  explorer 				    SPP_ARGS(ifp),
   3930      1.3  explorer 				    h->ident, sp->confid[IDX_CHAP]);
   3931      1.3  explorer 			break;
   3932      1.3  explorer 		}
   3933      1.3  explorer 		if (name_len != sppp_strnlen(sp->hisauth.name, AUTHNAMELEN)
   3934      1.3  explorer 		    || bcmp(name, sp->hisauth.name, name_len) != 0) {
   3935      1.3  explorer 			log(LOG_INFO, SPP_FMT "chap response, his name ",
   3936      1.3  explorer 			    SPP_ARGS(ifp));
   3937      1.3  explorer 			sppp_print_string(name, name_len);
   3938      1.3  explorer 			addlog(" != expected ");
   3939      1.3  explorer 			sppp_print_string(sp->hisauth.name,
   3940      1.3  explorer 					  sppp_strnlen(sp->hisauth.name, AUTHNAMELEN));
   3941      1.3  explorer 			addlog("\n");
   3942      1.3  explorer 		}
   3943      1.3  explorer 		if (debug) {
   3944      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "chap input(%s) "
   3945      1.3  explorer 			    "<%s id=0x%x len=%d name=",
   3946      1.3  explorer 			    SPP_ARGS(ifp),
   3947      1.3  explorer 			    sppp_state_name(sp->state[IDX_CHAP]),
   3948      1.3  explorer 			    sppp_auth_type_name(PPP_CHAP, h->type),
   3949      1.3  explorer 			    h->ident, ntohs (h->len));
   3950      1.3  explorer 			sppp_print_string((char*)name, name_len);
   3951      1.3  explorer 			addlog(" value-size=%d value=", value_len);
   3952      1.3  explorer 			sppp_print_bytes(value, value_len);
   3953      1.3  explorer 			addlog(">\n");
   3954      1.3  explorer 		}
   3955      1.3  explorer 		if (value_len != AUTHKEYLEN) {
   3956      1.3  explorer 			if (debug)
   3957      1.3  explorer 				log(LOG_DEBUG,
   3958      1.3  explorer 				    SPP_FMT "chap bad hash value length: "
   3959      1.3  explorer 				    "%d bytes, should be %d\n",
   3960      1.3  explorer 				    SPP_ARGS(ifp), value_len,
   3961      1.3  explorer 				    AUTHKEYLEN);
   3962      1.3  explorer 			break;
   3963      1.3  explorer 		}
   3964      1.3  explorer 
   3965      1.3  explorer 		MD5Init(&ctx);
   3966      1.3  explorer 		MD5Update(&ctx, &h->ident, 1);
   3967      1.3  explorer 		MD5Update(&ctx, sp->hisauth.secret,
   3968      1.3  explorer 			  sppp_strnlen(sp->hisauth.secret, AUTHKEYLEN));
   3969      1.3  explorer 		MD5Update(&ctx, sp->myauth.challenge, AUTHKEYLEN);
   3970      1.3  explorer 		MD5Final(digest, &ctx);
   3971      1.3  explorer 
   3972      1.3  explorer #define FAILMSG "Failed..."
   3973      1.3  explorer #define SUCCMSG "Welcome!"
   3974      1.3  explorer 
   3975      1.3  explorer 		if (value_len != sizeof digest ||
   3976      1.3  explorer 		    bcmp(digest, value, value_len) != 0) {
   3977      1.3  explorer 			/* action scn, tld */
   3978      1.3  explorer 			sppp_auth_send(&chap, sp, CHAP_FAILURE, h->ident,
   3979      1.3  explorer 				       sizeof(FAILMSG) - 1, (u_char *)FAILMSG,
   3980      1.3  explorer 				       0);
   3981      1.3  explorer 			chap.tld(sp);
   3982      1.3  explorer 			break;
   3983      1.3  explorer 		}
   3984      1.3  explorer 		/* action sca, perhaps tlu */
   3985      1.3  explorer 		if (sp->state[IDX_CHAP] == STATE_REQ_SENT ||
   3986      1.3  explorer 		    sp->state[IDX_CHAP] == STATE_OPENED)
   3987      1.3  explorer 			sppp_auth_send(&chap, sp, CHAP_SUCCESS, h->ident,
   3988      1.3  explorer 				       sizeof(SUCCMSG) - 1, (u_char *)SUCCMSG,
   3989      1.3  explorer 				       0);
   3990      1.3  explorer 		if (sp->state[IDX_CHAP] == STATE_REQ_SENT) {
   3991      1.3  explorer 			sppp_cp_change_state(&chap, sp, STATE_OPENED);
   3992      1.3  explorer 			chap.tlu(sp);
   3993      1.3  explorer 		}
   3994      1.3  explorer 		break;
   3995      1.3  explorer 
   3996      1.3  explorer 	default:
   3997      1.3  explorer 		/* Unknown CHAP packet type -- ignore. */
   3998      1.3  explorer 		if (debug) {
   3999      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "chap unknown input(%s) "
   4000      1.3  explorer 			    "<0x%x id=0x%xh len=%d",
   4001      1.3  explorer 			    SPP_ARGS(ifp),
   4002      1.3  explorer 			    sppp_state_name(sp->state[IDX_CHAP]),
   4003      1.3  explorer 			    h->type, h->ident, ntohs(h->len));
   4004      1.3  explorer 			if (len > 4)
   4005      1.3  explorer 				sppp_print_bytes((u_char*)(h+1), len-4);
   4006      1.3  explorer 			addlog(">\n");
   4007      1.3  explorer 		}
   4008      1.3  explorer 		break;
   4009      1.3  explorer 
   4010      1.3  explorer 	}
   4011      1.3  explorer }
   4012  1.5.2.1    bouyer 
   4013  1.5.2.1    bouyer static void
   4014  1.5.2.1    bouyer sppp_chap_init(struct sppp *sp)
   4015  1.5.2.1    bouyer {
   4016  1.5.2.1    bouyer 	/* Chap doesn't have STATE_INITIAL at all. */
   4017      1.3  explorer 	sp->state[IDX_CHAP] = STATE_CLOSED;
   4018      1.3  explorer 	sp->fail_counter[IDX_CHAP] = 0;
   4019      1.3  explorer 	sp->pp_seq[IDX_CHAP] = 0;
   4020      1.3  explorer 	sp->pp_rseq[IDX_CHAP] = 0;
   4021      1.3  explorer #if defined(__NetBSD__)
   4022      1.3  explorer 	callout_init(&sp->ch[IDX_CHAP]);
   4023      1.3  explorer #endif
   4024      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4025      1.3  explorer 	callout_handle_init(&sp->ch[IDX_CHAP]);
   4026      1.3  explorer #endif
   4027      1.3  explorer }
   4028      1.3  explorer 
   4029      1.3  explorer static void
   4030      1.3  explorer sppp_chap_open(struct sppp *sp)
   4031      1.3  explorer {
   4032      1.3  explorer 	if (sp->myauth.proto == PPP_CHAP &&
   4033      1.3  explorer 	    (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0) {
   4034      1.3  explorer 		/* we are authenticator for CHAP, start it */
   4035      1.3  explorer 		chap.scr(sp);
   4036      1.3  explorer 		sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
   4037      1.3  explorer 		sppp_cp_change_state(&chap, sp, STATE_REQ_SENT);
   4038      1.3  explorer 	}
   4039      1.3  explorer 	/* nothing to be done if we are peer, await a challenge */
   4040      1.3  explorer }
   4041      1.3  explorer 
   4042      1.3  explorer static void
   4043      1.3  explorer sppp_chap_close(struct sppp *sp)
   4044      1.3  explorer {
   4045      1.3  explorer 	if (sp->state[IDX_CHAP] != STATE_CLOSED)
   4046      1.3  explorer 		sppp_cp_change_state(&chap, sp, STATE_CLOSED);
   4047      1.3  explorer }
   4048      1.3  explorer 
   4049  1.5.2.5    bouyer static void
   4050      1.3  explorer sppp_chap_TO(void *cookie)
   4051      1.3  explorer {
   4052      1.3  explorer 	struct sppp *sp = (struct sppp *)cookie;
   4053      1.3  explorer 	STDDCL;
   4054      1.3  explorer 	int s;
   4055      1.3  explorer 
   4056      1.3  explorer 	s = splnet();
   4057      1.3  explorer 	if (debug)
   4058      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "chap TO(%s) rst_counter = %d\n",
   4059      1.3  explorer 		    SPP_ARGS(ifp),
   4060      1.3  explorer 		    sppp_state_name(sp->state[IDX_CHAP]),
   4061      1.3  explorer 		    sp->rst_counter[IDX_CHAP]);
   4062      1.3  explorer 
   4063      1.3  explorer 	if (--sp->rst_counter[IDX_CHAP] < 0)
   4064      1.3  explorer 		/* TO- event */
   4065      1.3  explorer 		switch (sp->state[IDX_CHAP]) {
   4066      1.3  explorer 		case STATE_REQ_SENT:
   4067      1.3  explorer 			chap.tld(sp);
   4068      1.3  explorer 			sppp_cp_change_state(&chap, sp, STATE_CLOSED);
   4069      1.3  explorer 			break;
   4070      1.3  explorer 		}
   4071      1.3  explorer 	else
   4072      1.3  explorer 		/* TO+ (or TO*) event */
   4073      1.3  explorer 		switch (sp->state[IDX_CHAP]) {
   4074      1.3  explorer 		case STATE_OPENED:
   4075      1.3  explorer 			/* TO* event */
   4076      1.3  explorer 			sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
   4077      1.3  explorer 			/* fall through */
   4078      1.3  explorer 		case STATE_REQ_SENT:
   4079      1.3  explorer 			chap.scr(sp);
   4080      1.3  explorer 			/* sppp_cp_change_state() will restart the timer */
   4081      1.3  explorer 			sppp_cp_change_state(&chap, sp, STATE_REQ_SENT);
   4082      1.3  explorer 			break;
   4083      1.3  explorer 		}
   4084      1.3  explorer 
   4085      1.3  explorer 	splx(s);
   4086      1.3  explorer }
   4087      1.3  explorer 
   4088      1.3  explorer static void
   4089      1.3  explorer sppp_chap_tlu(struct sppp *sp)
   4090      1.3  explorer {
   4091      1.3  explorer 	STDDCL;
   4092      1.3  explorer 	int i, x;
   4093      1.3  explorer 
   4094      1.3  explorer 	i = 0;
   4095      1.3  explorer 	sp->rst_counter[IDX_CHAP] = sp->lcp.max_configure;
   4096      1.3  explorer 
   4097      1.3  explorer 	/*
   4098      1.3  explorer 	 * Some broken CHAP implementations (Conware CoNet, firmware
   4099      1.3  explorer 	 * 4.0.?) don't want to re-authenticate their CHAP once the
   4100      1.3  explorer 	 * initial challenge-response exchange has taken place.
   4101      1.3  explorer 	 * Provide for an option to avoid rechallenges.
   4102      1.3  explorer 	 */
   4103  1.5.2.1    bouyer 	if ((sp->hisauth.flags & AUTHFLAG_NORECHALLENGE) == 0) {
   4104  1.5.2.1    bouyer 		/*
   4105  1.5.2.1    bouyer 		 * Compute the re-challenge timeout.  This will yield
   4106      1.3  explorer 		 * a number between 300 and 810 seconds.
   4107      1.3  explorer 		 */
   4108      1.3  explorer 		i = 300 + ((unsigned)(random() & 0xff00) >> 7);
   4109      1.3  explorer 
   4110  1.5.2.1    bouyer #if defined(__NetBSD__)
   4111      1.3  explorer 		callout_reset(&sp->ch[IDX_CHAP], i * hz, chap.TO, sp);
   4112      1.3  explorer #else
   4113      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4114      1.3  explorer 		sp->ch[IDX_CHAP] =
   4115      1.3  explorer #endif
   4116      1.3  explorer 		timeout(chap.TO, (void *)sp, i * hz);
   4117      1.3  explorer #endif /* __NetBSD__ */
   4118      1.3  explorer 	}
   4119      1.3  explorer 
   4120      1.3  explorer 	if (debug) {
   4121      1.3  explorer 		log(LOG_DEBUG,
   4122      1.3  explorer 		    SPP_FMT "chap %s, ",
   4123      1.3  explorer 		    SPP_ARGS(ifp),
   4124  1.5.2.5    bouyer 		    sp->pp_phase == PHASE_NETWORK? "reconfirmed": "tlu");
   4125      1.3  explorer 		if ((sp->hisauth.flags & AUTHFLAG_NORECHALLENGE) == 0)
   4126      1.3  explorer 			addlog("next re-challenge in %d seconds\n", i);
   4127      1.3  explorer 		else
   4128      1.3  explorer 			addlog("re-challenging supressed\n");
   4129      1.3  explorer 	}
   4130      1.3  explorer 
   4131      1.3  explorer 	x = splnet();
   4132      1.3  explorer 	/* indicate to LCP that we need to be closed down */
   4133      1.3  explorer 	sp->lcp.protos |= (1 << IDX_CHAP);
   4134      1.3  explorer 
   4135      1.3  explorer 	if (sp->pp_flags & PP_NEEDAUTH) {
   4136      1.3  explorer 		/*
   4137      1.3  explorer 		 * Remote is authenticator, but his auth proto didn't
   4138      1.3  explorer 		 * complete yet.  Defer the transition to network
   4139      1.3  explorer 		 * phase.
   4140      1.3  explorer 		 */
   4141      1.3  explorer 		splx(x);
   4142      1.3  explorer 		return;
   4143      1.3  explorer 	}
   4144      1.3  explorer 	splx(x);
   4145      1.3  explorer 
   4146      1.3  explorer 	/*
   4147      1.3  explorer 	 * If we are already in phase network, we are done here.  This
   4148      1.3  explorer 	 * is the case if this is a dummy tlu event after a re-challenge.
   4149      1.3  explorer 	 */
   4150      1.3  explorer 	if (sp->pp_phase != PHASE_NETWORK)
   4151      1.3  explorer 		sppp_phase_network(sp);
   4152      1.3  explorer }
   4153      1.3  explorer 
   4154  1.5.2.1    bouyer static void
   4155  1.5.2.1    bouyer sppp_chap_tld(struct sppp *sp)
   4156  1.5.2.1    bouyer {
   4157      1.3  explorer 	STDDCL;
   4158      1.3  explorer 
   4159      1.3  explorer 	if (debug)
   4160      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "chap tld\n", SPP_ARGS(ifp));
   4161      1.3  explorer #if defined(__NetBSD__)
   4162  1.5.2.1    bouyer 	callout_stop(&sp->ch[IDX_CHAP]);
   4163      1.3  explorer #else
   4164      1.3  explorer 	untimeout(chap.TO, (void *)sp
   4165      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4166      1.3  explorer 	, sp->ch[IDX_CHAP]
   4167      1.3  explorer #endif
   4168      1.3  explorer 	);
   4169      1.3  explorer #endif /* __NetBSD__ */
   4170      1.3  explorer 	sp->lcp.protos &= ~(1 << IDX_CHAP);
   4171      1.3  explorer 
   4172      1.3  explorer 	lcp.Close(sp);
   4173      1.3  explorer }
   4174      1.3  explorer 
   4175      1.3  explorer static void
   4176      1.3  explorer sppp_chap_scr(struct sppp *sp)
   4177      1.3  explorer {
   4178      1.3  explorer 	struct timeval tv;
   4179      1.3  explorer 	u_long *ch, seed;
   4180      1.3  explorer 	u_char clen;
   4181      1.3  explorer 
   4182      1.3  explorer 	/* Compute random challenge. */
   4183      1.3  explorer 	ch = (u_long *)sp->myauth.challenge;
   4184      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4185      1.3  explorer 	read_random(&seed, sizeof seed);
   4186      1.3  explorer #else
   4187      1.3  explorer 	microtime(&tv);
   4188      1.3  explorer 	seed = tv.tv_sec ^ tv.tv_usec;
   4189  1.5.2.1    bouyer #endif
   4190      1.3  explorer 	ch[0] = seed ^ random();
   4191      1.3  explorer 	ch[1] = seed ^ random();
   4192      1.3  explorer 	ch[2] = seed ^ random();
   4193      1.3  explorer 	ch[3] = seed ^ random();
   4194      1.3  explorer 	clen = AUTHKEYLEN;
   4195      1.3  explorer 
   4196      1.3  explorer 	sp->confid[IDX_CHAP] = ++sp->pp_seq[IDX_CHAP];
   4197      1.3  explorer 
   4198      1.3  explorer 	sppp_auth_send(&chap, sp, CHAP_CHALLENGE, sp->confid[IDX_CHAP],
   4199      1.3  explorer 		       sizeof clen, (const char *)&clen,
   4200      1.3  explorer 		       (size_t)AUTHKEYLEN, sp->myauth.challenge,
   4201      1.3  explorer 		       (size_t)sppp_strnlen(sp->myauth.name, AUTHNAMELEN),
   4202      1.3  explorer 		       sp->myauth.name,
   4203      1.3  explorer 		       0);
   4204      1.3  explorer }
   4205      1.3  explorer /*
   4207      1.3  explorer  *--------------------------------------------------------------------------*
   4208      1.3  explorer  *                                                                          *
   4209      1.3  explorer  *                        The PAP implementation.                           *
   4210      1.3  explorer  *                                                                          *
   4211      1.3  explorer  *--------------------------------------------------------------------------*
   4212      1.3  explorer  */
   4213      1.3  explorer /*
   4214      1.3  explorer  * For PAP, we need to keep a little state also if we are the peer, not the
   4215      1.3  explorer  * authenticator.  This is since we don't get a request to authenticate, but
   4216      1.3  explorer  * have to repeatedly authenticate ourself until we got a response (or the
   4217      1.3  explorer  * retry counter is expired).
   4218      1.3  explorer  */
   4219      1.3  explorer 
   4220      1.3  explorer /*
   4221      1.3  explorer  * Handle incoming PAP packets.  */
   4222      1.3  explorer static void
   4223      1.3  explorer sppp_pap_input(struct sppp *sp, struct mbuf *m)
   4224      1.3  explorer {
   4225      1.3  explorer 	STDDCL;
   4226      1.3  explorer 	struct lcp_header *h;
   4227      1.3  explorer 	int len, x;
   4228      1.3  explorer 	u_char *name, *passwd, mlen;
   4229      1.3  explorer 	int name_len, passwd_len;
   4230      1.3  explorer 
   4231      1.3  explorer 	len = m->m_pkthdr.len;
   4232      1.3  explorer 	if (len < 5) {
   4233      1.3  explorer 		if (debug)
   4234      1.3  explorer 			log(LOG_DEBUG,
   4235      1.3  explorer 			    SPP_FMT "pap invalid packet length: %d bytes\n",
   4236      1.3  explorer 			    SPP_ARGS(ifp), len);
   4237      1.3  explorer 		return;
   4238      1.3  explorer 	}
   4239      1.3  explorer 	h = mtod (m, struct lcp_header*);
   4240      1.3  explorer 	if (len > ntohs (h->len))
   4241      1.3  explorer 		len = ntohs (h->len);
   4242      1.3  explorer 	switch (h->type) {
   4243      1.3  explorer 	/* PAP request is my authproto */
   4244      1.3  explorer 	case PAP_REQ:
   4245      1.3  explorer 		name = 1 + (u_char*)(h+1);
   4246      1.3  explorer 		name_len = name[-1];
   4247      1.3  explorer 		passwd = name + name_len + 1;
   4248      1.3  explorer 		if (name_len > len - 6 ||
   4249      1.3  explorer 		    (passwd_len = passwd[-1]) > len - 6 - name_len) {
   4250      1.3  explorer 			if (debug) {
   4251      1.3  explorer 				log(LOG_DEBUG, SPP_FMT "pap corrupted input "
   4252      1.3  explorer 				    "<%s id=0x%x len=%d",
   4253      1.3  explorer 				    SPP_ARGS(ifp),
   4254      1.3  explorer 				    sppp_auth_type_name(PPP_PAP, h->type),
   4255      1.3  explorer 				    h->ident, ntohs(h->len));
   4256      1.3  explorer 				if (len > 4)
   4257      1.3  explorer 					sppp_print_bytes((u_char*)(h+1), len-4);
   4258      1.3  explorer 				addlog(">\n");
   4259      1.3  explorer 			}
   4260      1.3  explorer 			break;
   4261      1.3  explorer 		}
   4262      1.3  explorer 		if (debug) {
   4263      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "pap input(%s) "
   4264      1.3  explorer 			    "<%s id=0x%x len=%d name=",
   4265      1.3  explorer 			    SPP_ARGS(ifp),
   4266      1.3  explorer 			    sppp_state_name(sp->state[IDX_PAP]),
   4267      1.3  explorer 			    sppp_auth_type_name(PPP_PAP, h->type),
   4268      1.3  explorer 			    h->ident, ntohs(h->len));
   4269      1.3  explorer 			sppp_print_string((char*)name, name_len);
   4270      1.3  explorer 			addlog(" passwd=");
   4271      1.3  explorer 			sppp_print_string((char*)passwd, passwd_len);
   4272      1.3  explorer 			addlog(">\n");
   4273      1.3  explorer 		}
   4274      1.3  explorer 		if (name_len > AUTHNAMELEN ||
   4275      1.3  explorer 		    passwd_len > AUTHKEYLEN ||
   4276      1.3  explorer 		    bcmp(name, sp->hisauth.name, name_len) != 0 ||
   4277      1.3  explorer 		    bcmp(passwd, sp->hisauth.secret, passwd_len) != 0) {
   4278      1.3  explorer 			/* action scn, tld */
   4279      1.3  explorer 			mlen = sizeof(FAILMSG) - 1;
   4280      1.3  explorer 			sppp_auth_send(&pap, sp, PAP_NAK, h->ident,
   4281      1.3  explorer 				       sizeof mlen, (const char *)&mlen,
   4282      1.3  explorer 				       sizeof(FAILMSG) - 1, (u_char *)FAILMSG,
   4283      1.3  explorer 				       0);
   4284      1.3  explorer 			pap.tld(sp);
   4285      1.3  explorer 			break;
   4286      1.3  explorer 		}
   4287      1.3  explorer 		/* action sca, perhaps tlu */
   4288      1.3  explorer 		if (sp->state[IDX_PAP] == STATE_REQ_SENT ||
   4289      1.3  explorer 		    sp->state[IDX_PAP] == STATE_OPENED) {
   4290      1.3  explorer 			mlen = sizeof(SUCCMSG) - 1;
   4291      1.3  explorer 			sppp_auth_send(&pap, sp, PAP_ACK, h->ident,
   4292      1.3  explorer 				       sizeof mlen, (const char *)&mlen,
   4293      1.3  explorer 				       sizeof(SUCCMSG) - 1, (u_char *)SUCCMSG,
   4294      1.3  explorer 				       0);
   4295      1.3  explorer 		}
   4296  1.5.2.1    bouyer 		if (sp->state[IDX_PAP] == STATE_REQ_SENT) {
   4297  1.5.2.1    bouyer 			sppp_cp_change_state(&pap, sp, STATE_OPENED);
   4298  1.5.2.1    bouyer 			pap.tlu(sp);
   4299      1.3  explorer 		}
   4300      1.3  explorer 		break;
   4301      1.3  explorer 
   4302      1.3  explorer 	/* ack and nak are his authproto */
   4303      1.3  explorer 	case PAP_ACK:
   4304  1.5.2.1    bouyer #if defined(__NetBSD__)
   4305      1.3  explorer 		callout_stop(&sp->pap_my_to_ch);
   4306      1.3  explorer #else
   4307      1.3  explorer 		untimeout(sppp_pap_my_TO, (void *)sp
   4308      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4309      1.3  explorer 		, sp->pap_my_to_ch
   4310      1.3  explorer #endif
   4311      1.3  explorer 		);
   4312      1.3  explorer #endif /* __NetBSD__ */
   4313      1.3  explorer 		if (debug) {
   4314      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "pap success",
   4315  1.5.2.5    bouyer 			    SPP_ARGS(ifp));
   4316      1.3  explorer 			name_len = *((char *)h);
   4317      1.3  explorer 			if (len > 5 && name_len) {
   4318      1.3  explorer 				addlog(": ");
   4319      1.3  explorer 				sppp_print_string((char*)(h+1), name_len);
   4320      1.3  explorer 			}
   4321      1.3  explorer 			addlog("\n");
   4322      1.3  explorer 		}
   4323      1.3  explorer 		x = splnet();
   4324      1.3  explorer 		sp->pp_flags &= ~PP_NEEDAUTH;
   4325      1.3  explorer 		if (sp->myauth.proto == PPP_PAP &&
   4326      1.3  explorer 		    (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) &&
   4327      1.3  explorer 		    (sp->lcp.protos & (1 << IDX_PAP)) == 0) {
   4328      1.3  explorer 			/*
   4329      1.3  explorer 			 * We are authenticator for PAP but didn't
   4330      1.3  explorer 			 * complete yet.  Leave it to tlu to proceed
   4331      1.3  explorer 			 * to network phase.
   4332      1.3  explorer 			 */
   4333  1.5.2.1    bouyer 			splx(x);
   4334  1.5.2.1    bouyer 			break;
   4335  1.5.2.1    bouyer 		}
   4336      1.3  explorer 		splx(x);
   4337      1.3  explorer 		sppp_phase_network(sp);
   4338      1.3  explorer 		break;
   4339      1.3  explorer 
   4340      1.3  explorer 	case PAP_NAK:
   4341  1.5.2.1    bouyer #if defined(__NetBSD__)
   4342      1.3  explorer 		callout_stop(&sp->pap_my_to_ch);
   4343      1.3  explorer #else
   4344      1.3  explorer 		untimeout(sppp_pap_my_TO, (void *)sp
   4345      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4346      1.3  explorer 		, sp->pap_my_to_ch
   4347      1.3  explorer #endif
   4348      1.3  explorer 		);
   4349      1.3  explorer #endif /* __NetBSD__ */
   4350      1.3  explorer 		if (debug) {
   4351      1.3  explorer 			log(LOG_INFO, SPP_FMT "pap failure",
   4352      1.3  explorer 			    SPP_ARGS(ifp));
   4353      1.3  explorer 			name_len = *((char *)h);
   4354      1.3  explorer 			if (len > 5 && name_len) {
   4355      1.3  explorer 				addlog(": ");
   4356      1.3  explorer 				sppp_print_string((char*)(h+1), name_len);
   4357      1.3  explorer 			}
   4358      1.3  explorer 			addlog("\n");
   4359      1.3  explorer 		} else
   4360      1.3  explorer 			log(LOG_INFO, SPP_FMT "pap failure\n",
   4361      1.3  explorer 			    SPP_ARGS(ifp));
   4362      1.3  explorer 		/* await LCP shutdown by authenticator */
   4363      1.3  explorer 		break;
   4364      1.3  explorer 
   4365      1.3  explorer 	default:
   4366      1.3  explorer 		/* Unknown PAP packet type -- ignore. */
   4367      1.3  explorer 		if (debug) {
   4368      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "pap corrupted input "
   4369      1.3  explorer 			    "<0x%x id=0x%x len=%d",
   4370      1.3  explorer 			    SPP_ARGS(ifp),
   4371      1.3  explorer 			    h->type, h->ident, ntohs(h->len));
   4372      1.3  explorer 			if (len > 4)
   4373      1.3  explorer 				sppp_print_bytes((u_char*)(h+1), len-4);
   4374      1.3  explorer 			addlog(">\n");
   4375      1.3  explorer 		}
   4376      1.3  explorer 		break;
   4377      1.3  explorer 
   4378      1.3  explorer 	}
   4379  1.5.2.1    bouyer }
   4380  1.5.2.1    bouyer 
   4381  1.5.2.1    bouyer static void
   4382  1.5.2.1    bouyer sppp_pap_init(struct sppp *sp)
   4383  1.5.2.1    bouyer {
   4384  1.5.2.1    bouyer 	/* PAP doesn't have STATE_INITIAL at all. */
   4385      1.3  explorer 	sp->state[IDX_PAP] = STATE_CLOSED;
   4386      1.3  explorer 	sp->fail_counter[IDX_PAP] = 0;
   4387      1.3  explorer 	sp->pp_seq[IDX_PAP] = 0;
   4388      1.3  explorer 	sp->pp_rseq[IDX_PAP] = 0;
   4389      1.3  explorer #if defined(__NetBSD__)
   4390      1.3  explorer 	callout_init(&sp->ch[IDX_PAP]);
   4391      1.3  explorer 	callout_init(&sp->pap_my_to_ch);
   4392      1.3  explorer #endif
   4393      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4394      1.3  explorer 	callout_handle_init(&sp->ch[IDX_PAP]);
   4395      1.3  explorer 	callout_handle_init(&sp->pap_my_to_ch);
   4396      1.3  explorer #endif
   4397      1.3  explorer }
   4398      1.3  explorer 
   4399      1.3  explorer static void
   4400      1.3  explorer sppp_pap_open(struct sppp *sp)
   4401      1.3  explorer {
   4402      1.3  explorer 	if (sp->hisauth.proto == PPP_PAP &&
   4403  1.5.2.1    bouyer 	    (sp->lcp.opts & (1 << LCP_OPT_AUTH_PROTO)) != 0) {
   4404  1.5.2.1    bouyer 		/* we are authenticator for PAP, start our timer */
   4405  1.5.2.1    bouyer 		sp->rst_counter[IDX_PAP] = sp->lcp.max_configure;
   4406  1.5.2.1    bouyer 		sppp_cp_change_state(&pap, sp, STATE_REQ_SENT);
   4407      1.3  explorer 	}
   4408      1.3  explorer 	if (sp->myauth.proto == PPP_PAP) {
   4409      1.3  explorer 		/* we are peer, send a request, and start a timer */
   4410      1.3  explorer 		pap.scr(sp);
   4411  1.5.2.1    bouyer #if defined(__NetBSD__)
   4412      1.3  explorer 		callout_reset(&sp->pap_my_to_ch, sp->lcp.timeout,
   4413      1.3  explorer 		    sppp_pap_my_TO, sp);
   4414      1.3  explorer #else
   4415      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4416      1.3  explorer 		sp->pap_my_to_ch =
   4417      1.3  explorer #endif
   4418      1.3  explorer 		timeout(sppp_pap_my_TO, (void *)sp, sp->lcp.timeout);
   4419      1.3  explorer #endif /* __NetBSD__ */
   4420      1.3  explorer 	}
   4421      1.3  explorer }
   4422      1.3  explorer 
   4423      1.3  explorer static void
   4424      1.3  explorer sppp_pap_close(struct sppp *sp)
   4425      1.3  explorer {
   4426      1.3  explorer 	if (sp->state[IDX_PAP] != STATE_CLOSED)
   4427      1.3  explorer 		sppp_cp_change_state(&pap, sp, STATE_CLOSED);
   4428      1.3  explorer }
   4429      1.3  explorer 
   4430      1.3  explorer /*
   4431      1.3  explorer  * That's the timeout routine if we are authenticator.  Since the
   4432      1.3  explorer  * authenticator is basically passive in PAP, we can't do much here.
   4433  1.5.2.5    bouyer  */
   4434      1.3  explorer static void
   4435      1.3  explorer sppp_pap_TO(void *cookie)
   4436      1.3  explorer {
   4437      1.3  explorer 	struct sppp *sp = (struct sppp *)cookie;
   4438      1.3  explorer 	STDDCL;
   4439      1.3  explorer 	int s;
   4440      1.3  explorer 
   4441      1.3  explorer 	s = splnet();
   4442      1.3  explorer 	if (debug)
   4443      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "pap TO(%s) rst_counter = %d\n",
   4444      1.3  explorer 		    SPP_ARGS(ifp),
   4445      1.3  explorer 		    sppp_state_name(sp->state[IDX_PAP]),
   4446      1.3  explorer 		    sp->rst_counter[IDX_PAP]);
   4447      1.3  explorer 
   4448      1.3  explorer 	if (--sp->rst_counter[IDX_PAP] < 0)
   4449      1.3  explorer 		/* TO- event */
   4450      1.3  explorer 		switch (sp->state[IDX_PAP]) {
   4451      1.3  explorer 		case STATE_REQ_SENT:
   4452      1.3  explorer 			pap.tld(sp);
   4453      1.3  explorer 			sppp_cp_change_state(&pap, sp, STATE_CLOSED);
   4454      1.3  explorer 			break;
   4455      1.3  explorer 		}
   4456      1.3  explorer 	else
   4457      1.3  explorer 		/* TO+ event, not very much we could do */
   4458      1.3  explorer 		switch (sp->state[IDX_PAP]) {
   4459      1.3  explorer 		case STATE_REQ_SENT:
   4460      1.3  explorer 			/* sppp_cp_change_state() will restart the timer */
   4461      1.3  explorer 			sppp_cp_change_state(&pap, sp, STATE_REQ_SENT);
   4462      1.3  explorer 			break;
   4463      1.3  explorer 		}
   4464      1.3  explorer 
   4465      1.3  explorer 	splx(s);
   4466      1.3  explorer }
   4467      1.3  explorer 
   4468      1.3  explorer /*
   4469      1.3  explorer  * That's the timeout handler if we are peer.  Since the peer is active,
   4470      1.3  explorer  * we need to retransmit our PAP request since it is apparently lost.
   4471      1.3  explorer  * XXX We should impose a max counter.
   4472      1.3  explorer  */
   4473      1.3  explorer static void
   4474      1.3  explorer sppp_pap_my_TO(void *cookie)
   4475      1.3  explorer {
   4476      1.3  explorer 	struct sppp *sp = (struct sppp *)cookie;
   4477      1.3  explorer 	STDDCL;
   4478      1.3  explorer 
   4479      1.3  explorer 	if (debug)
   4480      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "pap peer TO\n",
   4481      1.3  explorer 		    SPP_ARGS(ifp));
   4482      1.3  explorer 
   4483      1.3  explorer 	pap.scr(sp);
   4484      1.3  explorer }
   4485      1.3  explorer 
   4486      1.3  explorer static void
   4487      1.3  explorer sppp_pap_tlu(struct sppp *sp)
   4488      1.3  explorer {
   4489      1.3  explorer 	STDDCL;
   4490  1.5.2.5    bouyer 	int x;
   4491      1.3  explorer 
   4492      1.3  explorer 	sp->rst_counter[IDX_PAP] = sp->lcp.max_configure;
   4493      1.3  explorer 
   4494      1.3  explorer 	if (debug)
   4495      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s tlu\n",
   4496      1.3  explorer 		    SPP_ARGS(ifp), pap.name);
   4497      1.3  explorer 
   4498      1.3  explorer 	x = splnet();
   4499      1.3  explorer 	/* indicate to LCP that we need to be closed down */
   4500      1.3  explorer 	sp->lcp.protos |= (1 << IDX_PAP);
   4501      1.3  explorer 
   4502      1.3  explorer 	if (sp->pp_flags & PP_NEEDAUTH) {
   4503      1.3  explorer 		/*
   4504      1.3  explorer 		 * Remote is authenticator, but his auth proto didn't
   4505      1.3  explorer 		 * complete yet.  Defer the transition to network
   4506      1.3  explorer 		 * phase.
   4507      1.3  explorer 		 */
   4508      1.3  explorer 		splx(x);
   4509      1.3  explorer 		return;
   4510      1.3  explorer 	}
   4511      1.3  explorer 	splx(x);
   4512      1.3  explorer 	sppp_phase_network(sp);
   4513      1.3  explorer }
   4514  1.5.2.1    bouyer 
   4515  1.5.2.1    bouyer static void
   4516  1.5.2.1    bouyer sppp_pap_tld(struct sppp *sp)
   4517      1.3  explorer {
   4518      1.3  explorer 	STDDCL;
   4519      1.3  explorer 
   4520      1.3  explorer 	if (debug)
   4521      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "pap tld\n", SPP_ARGS(ifp));
   4522  1.5.2.1    bouyer #if defined(__NetBSD__)
   4523  1.5.2.1    bouyer 	callout_stop(&sp->ch[IDX_PAP]);
   4524  1.5.2.1    bouyer #else
   4525  1.5.2.1    bouyer 	untimeout(pap.TO, (void *)sp
   4526  1.5.2.1    bouyer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4527      1.3  explorer 	, sp->ch[IDX_PAP]
   4528      1.3  explorer #endif
   4529      1.3  explorer 	);
   4530      1.3  explorer #endif /* __NetBSD__ */
   4531      1.3  explorer 
   4532  1.5.2.1    bouyer #if defined(__NetBSD__)
   4533      1.3  explorer 	callout_stop(&sp->pap_my_to_ch);
   4534      1.3  explorer #else
   4535      1.3  explorer 	untimeout(sppp_pap_my_TO, (void *)sp
   4536      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4537      1.3  explorer 	, sp->pap_my_to_ch
   4538      1.3  explorer #endif
   4539      1.3  explorer 	);
   4540      1.3  explorer #endif /* __NetBSD__ */
   4541      1.3  explorer 	sp->lcp.protos &= ~(1 << IDX_PAP);
   4542      1.3  explorer 
   4543  1.5.2.1    bouyer 	lcp.Close(sp);
   4544      1.3  explorer }
   4545      1.3  explorer 
   4546      1.3  explorer static void
   4547      1.3  explorer sppp_pap_scr(struct sppp *sp)
   4548      1.3  explorer {
   4549      1.3  explorer 	u_char idlen, pwdlen;
   4550      1.3  explorer 
   4551      1.3  explorer 	sp->confid[IDX_PAP] = ++sp->pp_seq[IDX_PAP];
   4552      1.3  explorer 	pwdlen = sppp_strnlen(sp->myauth.secret, AUTHKEYLEN);
   4553      1.3  explorer 	idlen = sppp_strnlen(sp->myauth.name, AUTHNAMELEN);
   4554      1.3  explorer 
   4555      1.3  explorer 	sppp_auth_send(&pap, sp, PAP_REQ, sp->confid[IDX_PAP],
   4556      1.3  explorer 		       sizeof idlen, (const char *)&idlen,
   4557      1.3  explorer 		       (size_t)idlen, sp->myauth.name,
   4558      1.3  explorer 		       sizeof pwdlen, (const char *)&pwdlen,
   4559      1.3  explorer 		       (size_t)pwdlen, sp->myauth.secret,
   4560      1.3  explorer 		       0);
   4561      1.3  explorer }
   4562      1.3  explorer /*
   4564      1.3  explorer  * Random miscellaneous functions.
   4565      1.3  explorer  */
   4566      1.3  explorer 
   4567      1.3  explorer /*
   4568      1.3  explorer  * Send a PAP or CHAP proto packet.
   4569      1.3  explorer  *
   4570      1.3  explorer  * Varadic function, each of the elements for the ellipsis is of type
   4571      1.3  explorer  * ``size_t mlen, const u_char *msg''.  Processing will stop iff
   4572      1.3  explorer  * mlen == 0.
   4573      1.3  explorer  * NOTE: never declare variadic functions with types subject to type
   4574      1.3  explorer  * promotion (i.e. u_char). This is asking for big trouble depending
   4575      1.3  explorer  * on the architecture you are on...
   4576      1.3  explorer  */
   4577      1.3  explorer 
   4578      1.3  explorer static void
   4579  1.5.2.5    bouyer sppp_auth_send(const struct cp *cp, struct sppp *sp,
   4580      1.3  explorer                unsigned int type, unsigned int id,
   4581      1.3  explorer 	       ...)
   4582      1.3  explorer {
   4583      1.3  explorer 	STDDCL;
   4584      1.3  explorer 	struct lcp_header *lh;
   4585      1.3  explorer 	struct mbuf *m;
   4586      1.3  explorer 	u_char *p;
   4587      1.3  explorer 	int len;
   4588      1.3  explorer 	size_t pkthdrlen;
   4589  1.5.2.5    bouyer 	unsigned int mlen;
   4590  1.5.2.5    bouyer 	const char *msg;
   4591  1.5.2.5    bouyer 	va_list ap;
   4592  1.5.2.5    bouyer 
   4593  1.5.2.5    bouyer 	MGETHDR (m, M_DONTWAIT, MT_DATA);
   4594  1.5.2.5    bouyer 	if (! m)
   4595  1.5.2.5    bouyer 		return;
   4596  1.5.2.5    bouyer 	m->m_pkthdr.rcvif = 0;
   4597  1.5.2.5    bouyer 
   4598  1.5.2.5    bouyer 	if (sp->pp_flags & PP_NOFRAMING) {
   4599  1.5.2.5    bouyer 		*mtod(m, u_int16_t*) = htons(cp->proto);
   4600  1.5.2.5    bouyer 		pkthdrlen = 2;
   4601  1.5.2.5    bouyer 		lh = (struct lcp_header*)(mtod(m, u_int8_t*)+2);
   4602  1.5.2.5    bouyer 	} else {
   4603      1.3  explorer 		struct ppp_header *h;
   4604      1.3  explorer 		h = mtod (m, struct ppp_header*);
   4605      1.3  explorer 		h->address = PPP_ALLSTATIONS;		/* broadcast address */
   4606      1.3  explorer 		h->control = PPP_UI;			/* Unnumbered Info */
   4607      1.3  explorer 		h->protocol = htons(cp->proto);
   4608      1.3  explorer 		pkthdrlen = PPP_HEADER_LEN;
   4609      1.3  explorer 
   4610      1.3  explorer 		lh = (struct lcp_header*)(h + 1);
   4611      1.3  explorer 	}
   4612      1.3  explorer 
   4613      1.3  explorer 	lh->type = type;
   4614  1.5.2.5    bouyer 	lh->ident = id;
   4615      1.3  explorer 	p = (u_char*) (lh+1);
   4616      1.3  explorer 
   4617      1.3  explorer 	va_start(ap, id);
   4618      1.3  explorer 	len = 0;
   4619      1.3  explorer 
   4620      1.3  explorer 	while ((mlen = (unsigned int)va_arg(ap, size_t)) != 0) {
   4621      1.3  explorer 		msg = va_arg(ap, const char *);
   4622      1.3  explorer 		len += mlen;
   4623      1.3  explorer 		if (len > MHLEN - pkthdrlen - LCP_HEADER_LEN) {
   4624      1.3  explorer 			va_end(ap);
   4625  1.5.2.5    bouyer 			m_freem(m);
   4626      1.3  explorer 			return;
   4627      1.3  explorer 		}
   4628      1.3  explorer 
   4629      1.3  explorer 		bcopy(msg, p, mlen);
   4630      1.3  explorer 		p += mlen;
   4631      1.3  explorer 	}
   4632      1.3  explorer 	va_end(ap);
   4633      1.3  explorer 
   4634      1.3  explorer 	m->m_pkthdr.len = m->m_len = pkthdrlen + LCP_HEADER_LEN + len;
   4635      1.3  explorer 	lh->len = htons (LCP_HEADER_LEN + len);
   4636      1.3  explorer 
   4637      1.3  explorer 	if (debug) {
   4638      1.3  explorer 		log(LOG_DEBUG, SPP_FMT "%s output <%s id=0x%x len=%d",
   4639      1.3  explorer 		    SPP_ARGS(ifp), cp->name,
   4640      1.3  explorer 		    sppp_auth_type_name(cp->proto, lh->type),
   4641      1.3  explorer 		    lh->ident, ntohs(lh->len));
   4642      1.3  explorer 		if (len)
   4643      1.3  explorer 			sppp_print_bytes((u_char*) (lh+1), len);
   4644      1.3  explorer 		addlog(">\n");
   4645      1.3  explorer 	}
   4646      1.3  explorer 	if (IF_QFULL (&sp->pp_cpq)) {
   4647      1.3  explorer 		IF_DROP (&sp->pp_fastq);
   4648      1.3  explorer 		IF_DROP (&ifp->if_snd);
   4649      1.3  explorer 		m_freem (m);
   4650      1.3  explorer 		++ifp->if_oerrors;
   4651      1.3  explorer 	} else
   4652      1.3  explorer 		IF_ENQUEUE (&sp->pp_cpq, m);
   4653      1.3  explorer 	if (! (ifp->if_flags & IFF_OACTIVE))
   4654      1.3  explorer 		(*ifp->if_start) (ifp);
   4655      1.3  explorer 	ifp->if_obytes += m->m_pkthdr.len + 3;
   4656      1.3  explorer }
   4657      1.3  explorer 
   4658  1.5.2.5    bouyer /*
   4659      1.3  explorer  * Send keepalive packets, every 10 seconds.
   4660      1.3  explorer  */
   4661      1.3  explorer static void
   4662      1.3  explorer sppp_keepalive(void *dummy)
   4663      1.3  explorer {
   4664      1.3  explorer 	struct sppp *sp;
   4665      1.3  explorer 	int s;
   4666      1.3  explorer 
   4667      1.3  explorer 	s = splnet();
   4668      1.3  explorer 	for (sp=spppq; sp; sp=sp->pp_next) {
   4669      1.3  explorer 		struct ifnet *ifp = &sp->pp_if;
   4670      1.3  explorer 
   4671      1.3  explorer 		/* Keepalive mode disabled or channel down? */
   4672      1.3  explorer 		if (! (sp->pp_flags & PP_KEEPALIVE) ||
   4673      1.3  explorer 		    ! (ifp->if_flags & IFF_RUNNING))
   4674      1.3  explorer 			continue;
   4675      1.3  explorer 
   4676  1.5.2.2    bouyer 		/* No keepalive in PPP mode if LCP not opened yet. */
   4677      1.3  explorer 		if (! (sp->pp_flags & PP_CISCO) &&
   4678      1.3  explorer 		    sp->pp_phase < PHASE_AUTHENTICATE)
   4679      1.3  explorer 			continue;
   4680      1.3  explorer 
   4681      1.3  explorer 		if (sp->pp_alivecnt == MAXALIVECNT) {
   4682      1.3  explorer 			/* No keepalive packets got.  Stop the interface. */
   4683      1.3  explorer 			printf (SPP_FMT "down\n", SPP_ARGS(ifp));
   4684      1.3  explorer 			if_down (ifp);
   4685      1.3  explorer 			IFQ_PURGE (&sp->pp_cpq);
   4686      1.3  explorer 			if (! (sp->pp_flags & PP_CISCO)) {
   4687      1.3  explorer 				/* XXX */
   4688  1.5.2.1    bouyer 				/* Shut down the PPP link. */
   4689  1.5.2.1    bouyer 				lcp.Down(sp);
   4690      1.3  explorer 				/* Initiate negotiation. XXX */
   4691      1.3  explorer 				lcp.Up(sp);
   4692  1.5.2.1    bouyer 			}
   4693      1.3  explorer 		}
   4694      1.3  explorer 		if (sp->pp_alivecnt <= MAXALIVECNT)
   4695      1.3  explorer 			++sp->pp_alivecnt;
   4696      1.3  explorer 		if (sp->pp_flags & PP_CISCO)
   4697      1.3  explorer 			sppp_cisco_send (sp, CISCO_KEEPALIVE_REQ,
   4698  1.5.2.1    bouyer 			    ++sp->pp_seq[IDX_LCP], sp->pp_rseq[IDX_LCP]);
   4699  1.5.2.1    bouyer 		else if (sp->pp_phase >= PHASE_AUTHENTICATE) {
   4700  1.5.2.1    bouyer 			long nmagic = htonl (sp->lcp.magic);
   4701      1.3  explorer 			sp->lcp.echoid = ++sp->pp_seq[IDX_LCP];
   4702      1.3  explorer 			sppp_cp_send (sp, PPP_LCP, ECHO_REQ,
   4703      1.3  explorer 				sp->lcp.echoid, 4, &nmagic);
   4704      1.3  explorer 		}
   4705  1.5.2.1    bouyer 	}
   4706      1.3  explorer 	splx(s);
   4707      1.3  explorer #if defined(__NetBSD__)
   4708      1.3  explorer 	callout_reset(&keepalive_ch, hz * 10, sppp_keepalive, NULL);
   4709      1.3  explorer #else
   4710      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4711      1.3  explorer 	keepalive_ch =
   4712      1.3  explorer #endif
   4713      1.3  explorer 	timeout(sppp_keepalive, 0, hz * 10);
   4714      1.3  explorer #endif /* __NetBSD__ */
   4715      1.3  explorer }
   4716      1.3  explorer 
   4717      1.3  explorer /*
   4718      1.3  explorer  * Get both IP addresses.
   4719      1.3  explorer  */
   4720      1.3  explorer static void
   4721      1.3  explorer sppp_get_ip_addrs(struct sppp *sp, u_long *src, u_long *dst, u_long *srcmask)
   4722      1.3  explorer {
   4723      1.3  explorer 	struct ifnet *ifp = &sp->pp_if;
   4724      1.3  explorer 	struct ifaddr *ifa;
   4725      1.3  explorer 	struct sockaddr_in *si, *sm;
   4726      1.3  explorer 	u_long ssrc, ddst;
   4727      1.3  explorer 
   4728      1.3  explorer 	sm = NULL;
   4729      1.3  explorer 	ssrc = ddst = 0L;
   4730      1.3  explorer 	/*
   4731      1.3  explorer 	 * Pick the first AF_INET address from the list,
   4732      1.3  explorer 	 * aliases don't make any sense on a p2p link anyway.
   4733      1.3  explorer 	 */
   4734      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4735      1.3  explorer 	for (ifa = ifp->if_addrhead.tqh_first, si = 0;
   4736      1.3  explorer 	     ifa;
   4737      1.3  explorer 	     ifa = ifa->ifa_link.tqe_next)
   4738      1.3  explorer #elif defined(__NetBSD__) || defined (__OpenBSD__)
   4739      1.3  explorer 	for (ifa = ifp->if_addrlist.tqh_first, si = 0;
   4740      1.3  explorer 	     ifa;
   4741      1.3  explorer 	     ifa = ifa->ifa_list.tqe_next)
   4742      1.3  explorer #else
   4743      1.3  explorer 	for (ifa = ifp->if_addrlist, si = 0;
   4744      1.3  explorer 	     ifa;
   4745      1.3  explorer 	     ifa = ifa->ifa_next)
   4746      1.3  explorer #endif
   4747      1.3  explorer 		if (ifa->ifa_addr->sa_family == AF_INET) {
   4748      1.3  explorer 			si = (struct sockaddr_in *)ifa->ifa_addr;
   4749      1.3  explorer 			sm = (struct sockaddr_in *)ifa->ifa_netmask;
   4750      1.3  explorer 			if (si)
   4751      1.3  explorer 				break;
   4752      1.3  explorer 		}
   4753      1.3  explorer 	if (ifa) {
   4754      1.3  explorer 		if (si && si->sin_addr.s_addr) {
   4755      1.3  explorer 			ssrc = si->sin_addr.s_addr;
   4756      1.3  explorer 			if (srcmask)
   4757      1.3  explorer 				*srcmask = ntohl(sm->sin_addr.s_addr);
   4758      1.3  explorer 		}
   4759      1.3  explorer 
   4760      1.3  explorer 		si = (struct sockaddr_in *)ifa->ifa_dstaddr;
   4761  1.5.2.5    bouyer 		if (si && si->sin_addr.s_addr)
   4762      1.3  explorer 			ddst = si->sin_addr.s_addr;
   4763      1.3  explorer 	}
   4764      1.3  explorer 
   4765      1.3  explorer 	if (dst) *dst = ntohl(ddst);
   4766      1.3  explorer 	if (src) *src = ntohl(ssrc);
   4767      1.3  explorer }
   4768      1.3  explorer 
   4769      1.3  explorer /*
   4770      1.3  explorer  * Set my IP address.  Must be called at splnet.
   4771      1.3  explorer  */
   4772      1.3  explorer static void
   4773      1.3  explorer sppp_set_ip_addr(struct sppp *sp, u_long src)
   4774      1.3  explorer {
   4775      1.3  explorer 	STDDCL;
   4776      1.3  explorer 	struct ifaddr *ifa;
   4777      1.3  explorer 	struct sockaddr_in *si;
   4778      1.3  explorer 
   4779      1.3  explorer 	/*
   4780      1.3  explorer 	 * Pick the first AF_INET address from the list,
   4781      1.3  explorer 	 * aliases don't make any sense on a p2p link anyway.
   4782      1.3  explorer 	 */
   4783      1.3  explorer 
   4784      1.3  explorer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4785      1.3  explorer 	for (ifa = ifp->if_addrhead.tqh_first, si = 0;
   4786      1.3  explorer 	     ifa;
   4787      1.3  explorer 	     ifa = ifa->ifa_link.tqe_next)
   4788      1.3  explorer #elif defined(__NetBSD__) || defined (__OpenBSD__)
   4789      1.3  explorer 	for (ifa = ifp->if_addrlist.tqh_first, si = 0;
   4790      1.3  explorer 	     ifa;
   4791      1.3  explorer 	     ifa = ifa->ifa_list.tqe_next)
   4792      1.3  explorer #else
   4793      1.3  explorer 	for (ifa = ifp->if_addrlist, si = 0;
   4794      1.3  explorer 	     ifa;
   4795      1.3  explorer 	     ifa = ifa->ifa_next)
   4796      1.3  explorer #endif
   4797      1.3  explorer 	{
   4798      1.3  explorer 		if (ifa->ifa_addr->sa_family == AF_INET)
   4799      1.3  explorer 		{
   4800      1.3  explorer 			si = (struct sockaddr_in *)ifa->ifa_addr;
   4801      1.3  explorer 			if (si)
   4802      1.3  explorer 				break;
   4803      1.3  explorer 		}
   4804      1.3  explorer 	}
   4805      1.3  explorer 
   4806      1.3  explorer 	if (ifa && si)
   4807      1.3  explorer 	{
   4808      1.3  explorer 		int error;
   4809      1.3  explorer #if __NetBSD_Version__ >= 103080000
   4810      1.3  explorer 		struct sockaddr_in new_sin = *si;
   4811      1.3  explorer 
   4812      1.3  explorer 		new_sin.sin_addr.s_addr = htonl(src);
   4813      1.3  explorer 		error = in_ifinit(ifp, ifatoia(ifa), &new_sin, 1);
   4814      1.3  explorer 		if(debug && error)
   4815      1.3  explorer 		{
   4816      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: in_ifinit "
   4817      1.3  explorer 			" failed, error=%d\n", SPP_ARGS(ifp), error);
   4818      1.3  explorer 		}
   4819      1.3  explorer #else
   4820      1.3  explorer 		/* delete old route */
   4821      1.3  explorer 		error = rtinit(ifa, (int)RTM_DELETE, RTF_HOST);
   4822      1.3  explorer 		if(debug && error)
   4823      1.3  explorer 		{
   4824      1.3  explorer 			log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: rtinit DEL failed, error=%d\n",
   4825      1.3  explorer 		    		SPP_ARGS(ifp), error);
   4826      1.3  explorer 		}
   4827      1.3  explorer 
   4828      1.3  explorer 		/* set new address */
   4829      1.3  explorer 		si->sin_addr.s_addr = htonl(src);
   4830      1.3  explorer 
   4831      1.3  explorer 		/* add new route */
   4832      1.3  explorer 		error = rtinit(ifa, (int)RTM_ADD, RTF_HOST);
   4833  1.5.2.1    bouyer 		if (debug && error)
   4834  1.5.2.1    bouyer 		{
   4835  1.5.2.1    bouyer 			log(LOG_DEBUG, SPP_FMT "sppp_set_ip_addr: rtinit ADD failed, error=%d",
   4836  1.5.2.1    bouyer 		    		SPP_ARGS(ifp), error);
   4837  1.5.2.1    bouyer 		}
   4838  1.5.2.1    bouyer #endif
   4839  1.5.2.1    bouyer 	}
   4840  1.5.2.1    bouyer }
   4841  1.5.2.1    bouyer 
   4842  1.5.2.1    bouyer #ifdef INET6
   4843  1.5.2.1    bouyer /*
   4844  1.5.2.1    bouyer  * Get both IPv6 addresses.
   4845  1.5.2.1    bouyer  */
   4846  1.5.2.1    bouyer static void
   4847  1.5.2.1    bouyer sppp_get_ip6_addrs(struct sppp *sp, struct in6_addr *src, struct in6_addr *dst,
   4848  1.5.2.1    bouyer 		   struct in6_addr *srcmask)
   4849  1.5.2.1    bouyer {
   4850  1.5.2.1    bouyer 	struct ifnet *ifp = &sp->pp_if;
   4851  1.5.2.1    bouyer 	struct ifaddr *ifa;
   4852  1.5.2.1    bouyer 	struct sockaddr_in6 *si, *sm;
   4853  1.5.2.1    bouyer 	struct in6_addr ssrc, ddst;
   4854  1.5.2.1    bouyer 
   4855  1.5.2.1    bouyer 	sm = NULL;
   4856  1.5.2.1    bouyer 	bzero(&ssrc, sizeof(ssrc));
   4857  1.5.2.1    bouyer 	bzero(&ddst, sizeof(ddst));
   4858  1.5.2.1    bouyer 	/*
   4859  1.5.2.1    bouyer 	 * Pick the first link-local AF_INET6 address from the list,
   4860  1.5.2.1    bouyer 	 * aliases don't make any sense on a p2p link anyway.
   4861  1.5.2.1    bouyer 	 */
   4862  1.5.2.1    bouyer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4863  1.5.2.1    bouyer 	for (ifa = ifp->if_addrhead.tqh_first, si = 0;
   4864  1.5.2.1    bouyer 	     ifa;
   4865  1.5.2.1    bouyer 	     ifa = ifa->ifa_link.tqe_next)
   4866  1.5.2.1    bouyer #elif defined(__NetBSD__) || defined (__OpenBSD__)
   4867  1.5.2.1    bouyer 	for (ifa = ifp->if_addrlist.tqh_first, si = 0;
   4868  1.5.2.1    bouyer 	     ifa;
   4869  1.5.2.1    bouyer 	     ifa = ifa->ifa_list.tqe_next)
   4870  1.5.2.1    bouyer #else
   4871  1.5.2.1    bouyer 	for (ifa = ifp->if_addrlist, si = 0;
   4872  1.5.2.1    bouyer 	     ifa;
   4873  1.5.2.1    bouyer 	     ifa = ifa->ifa_next)
   4874  1.5.2.1    bouyer #endif
   4875  1.5.2.1    bouyer 		if (ifa->ifa_addr->sa_family == AF_INET6) {
   4876  1.5.2.1    bouyer 			si = (struct sockaddr_in6 *)ifa->ifa_addr;
   4877  1.5.2.1    bouyer 			sm = (struct sockaddr_in6 *)ifa->ifa_netmask;
   4878  1.5.2.1    bouyer 			if (si && IN6_IS_ADDR_LINKLOCAL(&si->sin6_addr))
   4879  1.5.2.1    bouyer 				break;
   4880  1.5.2.1    bouyer 		}
   4881  1.5.2.1    bouyer 	if (ifa) {
   4882  1.5.2.1    bouyer 		if (si && !IN6_IS_ADDR_UNSPECIFIED(&si->sin6_addr)) {
   4883  1.5.2.1    bouyer 			bcopy(&si->sin6_addr, &ssrc, sizeof(ssrc));
   4884  1.5.2.1    bouyer 			if (srcmask) {
   4885  1.5.2.1    bouyer 				bcopy(&sm->sin6_addr, srcmask,
   4886  1.5.2.1    bouyer 				    sizeof(*srcmask));
   4887  1.5.2.1    bouyer 			}
   4888  1.5.2.1    bouyer 		}
   4889  1.5.2.1    bouyer 
   4890  1.5.2.1    bouyer 		si = (struct sockaddr_in6 *)ifa->ifa_dstaddr;
   4891  1.5.2.1    bouyer 		if (si && !IN6_IS_ADDR_UNSPECIFIED(&si->sin6_addr))
   4892  1.5.2.1    bouyer 			bcopy(&si->sin6_addr, &ddst, sizeof(ddst));
   4893  1.5.2.1    bouyer 	}
   4894  1.5.2.1    bouyer 
   4895  1.5.2.1    bouyer 	if (dst)
   4896  1.5.2.1    bouyer 		bcopy(&ddst, dst, sizeof(*dst));
   4897  1.5.2.1    bouyer 	if (src)
   4898  1.5.2.1    bouyer 		bcopy(&ssrc, src, sizeof(*src));
   4899  1.5.2.1    bouyer }
   4900  1.5.2.1    bouyer 
   4901  1.5.2.1    bouyer #ifdef IPV6CP_MYIFID_DYN
   4902  1.5.2.1    bouyer /*
   4903  1.5.2.5    bouyer  * Generate random ifid.
   4904  1.5.2.1    bouyer  */
   4905  1.5.2.1    bouyer static void
   4906  1.5.2.1    bouyer sppp_gen_ip6_addr(struct sppp *sp, struct in6_addr *addr)
   4907  1.5.2.1    bouyer {
   4908  1.5.2.1    bouyer 	/* TBD */
   4909  1.5.2.1    bouyer }
   4910  1.5.2.1    bouyer 
   4911  1.5.2.1    bouyer /*
   4912  1.5.2.1    bouyer  * Set my IPv6 address.  Must be called at splnet.
   4913  1.5.2.1    bouyer  */
   4914  1.5.2.1    bouyer static void
   4915  1.5.2.1    bouyer sppp_set_ip6_addr(struct sppp *sp, const struct in6_addr *src)
   4916  1.5.2.1    bouyer {
   4917  1.5.2.1    bouyer 	STDDCL;
   4918  1.5.2.1    bouyer 	struct ifaddr *ifa;
   4919  1.5.2.1    bouyer 	struct sockaddr_in6 *sin6;
   4920  1.5.2.1    bouyer 
   4921  1.5.2.1    bouyer 	/*
   4922  1.5.2.1    bouyer 	 * Pick the first link-local AF_INET6 address from the list,
   4923  1.5.2.1    bouyer 	 * aliases don't make any sense on a p2p link anyway.
   4924  1.5.2.1    bouyer 	 */
   4925  1.5.2.1    bouyer 
   4926  1.5.2.1    bouyer 	sin6 = NULL;
   4927  1.5.2.1    bouyer #if defined(__FreeBSD__) && __FreeBSD__ >= 3
   4928  1.5.2.1    bouyer 	for (ifa = ifp->if_addrhead.tqh_first;
   4929  1.5.2.1    bouyer 	     ifa;
   4930  1.5.2.1    bouyer 	     ifa = ifa->ifa_link.tqe_next)
   4931  1.5.2.1    bouyer #elif defined(__NetBSD__) || defined (__OpenBSD__)
   4932  1.5.2.1    bouyer 	for (ifa = ifp->if_addrlist.tqh_first;
   4933  1.5.2.1    bouyer 	     ifa;
   4934  1.5.2.1    bouyer 	     ifa = ifa->ifa_list.tqe_next)
   4935  1.5.2.1    bouyer #else
   4936  1.5.2.1    bouyer 	for (ifa = ifp->if_addrlist; ifa; ifa = ifa->ifa_next)
   4937  1.5.2.1    bouyer #endif
   4938  1.5.2.1    bouyer 	{
   4939  1.5.2.1    bouyer 		if (ifa->ifa_addr->sa_family == AF_INET6)
   4940  1.5.2.1    bouyer 		{
   4941  1.5.2.1    bouyer 			sin6 = (struct sockaddr_in6 *)ifa->ifa_addr;
   4942  1.5.2.1    bouyer 			if (sin6 && IN6_IS_ADDR_LINKLOCAL(&sin6->sin6_addr))
   4943  1.5.2.1    bouyer 				break;
   4944  1.5.2.1    bouyer 		}
   4945  1.5.2.1    bouyer 	}
   4946  1.5.2.1    bouyer 
   4947  1.5.2.1    bouyer 	if (ifa && sin6)
   4948  1.5.2.1    bouyer 	{
   4949  1.5.2.1    bouyer 		int error;
   4950  1.5.2.1    bouyer 		struct sockaddr_in6 new_sin6 = *sin6;
   4951  1.5.2.1    bouyer 
   4952  1.5.2.1    bouyer 		bcopy(src, &new_sin6.sin6_addr, sizeof(new_sin6.sin6_addr));
   4953  1.5.2.1    bouyer 		error = in6_ifinit(ifp, ifatoia6(ifa), &new_sin6, 1);
   4954  1.5.2.1    bouyer 		if (debug && error)
   4955  1.5.2.1    bouyer 		{
   4956  1.5.2.1    bouyer 			log(LOG_DEBUG, SPP_FMT "sppp_set_ip6_addr: in6_ifinit "
   4957  1.5.2.1    bouyer 			" failed, error=%d\n", SPP_ARGS(ifp), error);
   4958  1.5.2.1    bouyer 		}
   4959  1.5.2.1    bouyer 	}
   4960  1.5.2.1    bouyer }
   4961  1.5.2.1    bouyer #endif
   4962  1.5.2.1    bouyer 
   4963  1.5.2.1    bouyer /*
   4964  1.5.2.1    bouyer  * Suggest a candidate address to be used by peer.
   4965  1.5.2.1    bouyer  */
   4966  1.5.2.1    bouyer static void
   4967  1.5.2.1    bouyer sppp_suggest_ip6_addr(struct sppp *sp, struct in6_addr *suggest)
   4968  1.5.2.1    bouyer {
   4969  1.5.2.1    bouyer 	struct in6_addr myaddr;
   4970  1.5.2.1    bouyer 	struct timeval tv;
   4971  1.5.2.1    bouyer 
   4972  1.5.2.1    bouyer 	sppp_get_ip6_addrs(sp, &myaddr, 0, 0);
   4973  1.5.2.1    bouyer 
   4974  1.5.2.1    bouyer 	myaddr.s6_addr[8] &= ~0x02;	/* u bit to "local" */
   4975  1.5.2.1    bouyer 	microtime(&tv);
   4976  1.5.2.1    bouyer 	if ((tv.tv_usec & 0xff) == 0 && (tv.tv_sec & 0xff) == 0) {
   4977  1.5.2.1    bouyer 		myaddr.s6_addr[14] ^= 0xff;
   4978  1.5.2.1    bouyer 		myaddr.s6_addr[15] ^= 0xff;
   4979      1.3  explorer 	} else {
   4980      1.3  explorer 		myaddr.s6_addr[14] ^= (tv.tv_usec & 0xff);
   4981      1.3  explorer 		myaddr.s6_addr[15] ^= (tv.tv_sec & 0xff);
   4982      1.3  explorer 	}
   4983      1.3  explorer 	if (suggest)
   4984      1.3  explorer 		bcopy(&myaddr, suggest, sizeof(myaddr));
   4985  1.5.2.3    bouyer }
   4986      1.3  explorer #endif /*INET6*/
   4987      1.3  explorer 
   4988      1.3  explorer static int
   4989      1.3  explorer sppp_params(struct sppp *sp, int cmd, void *data)
   4990      1.3  explorer {
   4991      1.3  explorer 	struct ifreq *ifr = (struct ifreq *)data;
   4992      1.3  explorer 	struct spppreq spr;
   4993  1.5.2.3    bouyer 
   4994      1.3  explorer #if 0
   4995      1.3  explorer 	/*
   4996      1.3  explorer 	 * ifr->ifr_data is supposed to point to a struct spppreq.
   4997      1.3  explorer 	 * Check the cmd word first before attempting to fetch all the
   4998  1.5.2.3    bouyer 	 * data.
   4999      1.3  explorer 	 */
   5000  1.5.2.3    bouyer 	if ((subcmd = fuword(ifr->ifr_data)) == -1)
   5001      1.3  explorer 		return EFAULT;
   5002      1.3  explorer #endif
   5003      1.3  explorer 
   5004      1.3  explorer 	if (copyin((caddr_t)ifr->ifr_data, &spr, sizeof spr) != 0)
   5005      1.3  explorer 		return EFAULT;
   5006      1.3  explorer 
   5007      1.3  explorer 	switch (spr.cmd) {
   5008      1.3  explorer 	case SPPPIOGDEFS:
   5009      1.3  explorer 		if (cmd != (int)SIOCGIFGENERIC)
   5010      1.3  explorer 			return EINVAL;
   5011      1.3  explorer 		/*
   5012      1.3  explorer 		 * We copy over the entire current state, but clean
   5013      1.3  explorer 		 * out some of the stuff we don't wanna pass up.
   5014      1.3  explorer 		 * Remember, SIOCGIFGENERIC is unprotected, and can be
   5015      1.3  explorer 		 * called by any user.  No need to ever get PAP or
   5016      1.3  explorer 		 * CHAP secrets back to userland anyway.
   5017  1.5.2.3    bouyer 		 */
   5018      1.3  explorer 		bcopy(sp, &spr.defs, sizeof(struct sppp));
   5019      1.3  explorer 		bzero(spr.defs.myauth.secret, AUTHKEYLEN);
   5020      1.3  explorer 		bzero(spr.defs.myauth.challenge, AUTHKEYLEN);
   5021      1.3  explorer 		bzero(spr.defs.hisauth.secret, AUTHKEYLEN);
   5022      1.3  explorer 		bzero(spr.defs.hisauth.challenge, AUTHKEYLEN);
   5023      1.3  explorer 		return copyout(&spr, (caddr_t)ifr->ifr_data, sizeof spr);
   5024      1.3  explorer 
   5025      1.3  explorer 	case SPPPIOSDEFS:
   5026      1.3  explorer 		if (cmd != (int)SIOCSIFGENERIC)
   5027      1.3  explorer 			return EINVAL;
   5028      1.3  explorer 		/*
   5029      1.3  explorer 		 * We have a very specific idea of which fields we allow
   5030      1.3  explorer 		 * being passed back from userland, so to not clobber our
   5031      1.3  explorer 		 * current state.  For one, we only allow setting
   5032      1.3  explorer 		 * anything if LCP is in dead phase.  Once the LCP
   5033      1.3  explorer 		 * negotiations started, the authentication settings must
   5034      1.3  explorer 		 * not be changed again.  (The administrator can force an
   5035      1.3  explorer 		 * ifconfig down in order to get LCP back into dead
   5036      1.3  explorer 		 * phase.)
   5037      1.3  explorer 		 *
   5038      1.3  explorer 		 * Also, we only allow for authentication parameters to be
   5039      1.3  explorer 		 * specified.
   5040      1.3  explorer 		 *
   5041      1.3  explorer 		 * XXX Should allow to set or clear pp_flags.
   5042      1.3  explorer 		 *
   5043      1.3  explorer 		 * Finally, if the respective authentication protocol to
   5044      1.3  explorer 		 * be used is set differently than 0, but the secret is
   5045      1.3  explorer 		 * passed as all zeros, we don't trash the existing secret.
   5046      1.3  explorer 		 * This allows an administrator to change the system name
   5047      1.3  explorer 		 * only without clobbering the secret (which he didn't get
   5048      1.3  explorer 		 * back in a previous SPPPIOGDEFS call).  However, the
   5049      1.3  explorer 		 * secrets are cleared if the authentication protocol is
   5050      1.3  explorer 		 * reset to 0.
   5051      1.3  explorer 		 */
   5052      1.3  explorer 		if (sp->pp_phase != PHASE_DEAD)
   5053      1.3  explorer 			return EBUSY;
   5054      1.3  explorer 
   5055      1.3  explorer 		if ((spr.defs.myauth.proto != 0 && spr.defs.myauth.proto != PPP_PAP &&
   5056      1.3  explorer 		     spr.defs.myauth.proto != PPP_CHAP) ||
   5057      1.3  explorer 		    (spr.defs.hisauth.proto != 0 && spr.defs.hisauth.proto != PPP_PAP &&
   5058      1.3  explorer 		     spr.defs.hisauth.proto != PPP_CHAP))
   5059      1.3  explorer 			return EINVAL;
   5060      1.3  explorer 
   5061      1.3  explorer 		if (spr.defs.myauth.proto == 0)
   5062      1.3  explorer 			/* resetting myauth */
   5063      1.3  explorer 			bzero(&sp->myauth, sizeof sp->myauth);
   5064      1.3  explorer 		else {
   5065      1.3  explorer 			/* setting/changing myauth */
   5066      1.3  explorer 			sp->myauth.proto = spr.defs.myauth.proto;
   5067      1.3  explorer 			bcopy(spr.defs.myauth.name, sp->myauth.name, AUTHNAMELEN);
   5068      1.3  explorer 			if (spr.defs.myauth.secret[0] != '\0')
   5069      1.3  explorer 				bcopy(spr.defs.myauth.secret, sp->myauth.secret,
   5070      1.3  explorer 				      AUTHKEYLEN);
   5071      1.3  explorer 		}
   5072      1.3  explorer 		if (spr.defs.hisauth.proto == 0)
   5073      1.3  explorer 			/* resetting hisauth */
   5074      1.3  explorer 			bzero(&sp->hisauth, sizeof sp->hisauth);
   5075      1.3  explorer 		else {
   5076      1.3  explorer 			/* setting/changing hisauth */
   5077      1.3  explorer 			sp->hisauth.proto = spr.defs.hisauth.proto;
   5078      1.3  explorer 			sp->hisauth.flags = spr.defs.hisauth.flags;
   5079      1.3  explorer 			bcopy(spr.defs.hisauth.name, sp->hisauth.name, AUTHNAMELEN);
   5080      1.3  explorer 			if (spr.defs.hisauth.secret[0] != '\0')
   5081      1.3  explorer 				bcopy(spr.defs.hisauth.secret, sp->hisauth.secret,
   5082      1.3  explorer 				      AUTHKEYLEN);
   5083      1.3  explorer 		}
   5084      1.3  explorer 		break;
   5085      1.3  explorer 
   5086      1.3  explorer 	default:
   5087      1.3  explorer 		return EINVAL;
   5088      1.3  explorer 	}
   5089      1.3  explorer 
   5090      1.3  explorer 	return 0;
   5091      1.3  explorer }
   5092      1.3  explorer 
   5093      1.3  explorer static void
   5094      1.3  explorer sppp_phase_network(struct sppp *sp)
   5095      1.3  explorer {
   5096      1.3  explorer 	STDDCL;
   5097      1.3  explorer 	int i;
   5098      1.3  explorer 	u_long mask;
   5099      1.3  explorer 
   5100      1.3  explorer 	sp->pp_phase = PHASE_NETWORK;
   5101      1.3  explorer 
   5102      1.3  explorer 	if(debug)
   5103      1.3  explorer 	{
   5104      1.3  explorer 		log(LOG_INFO, SPP_FMT "phase %s\n", SPP_ARGS(ifp),
   5105      1.3  explorer 			sppp_phase_name(sp->pp_phase));
   5106  1.5.2.1    bouyer 	}
   5107      1.3  explorer 
   5108      1.3  explorer 	/* Notify NCPs now. */
   5109      1.3  explorer 	for (i = 0; i < IDX_COUNT; i++)
   5110      1.3  explorer 		if ((cps[i])->flags & CP_NCP)
   5111      1.3  explorer 			(cps[i])->Open(sp);
   5112      1.3  explorer 
   5113      1.3  explorer 	/* Send Up events to all NCPs. */
   5114      1.3  explorer 	for (i = 0, mask = 1; i < IDX_COUNT; i++, mask <<= 1)
   5115      1.3  explorer 		if ((sp->lcp.protos & mask) && ((cps[i])->flags & CP_NCP))
   5116      1.1  explorer 			(cps[i])->Up(sp);
   5117      1.3  explorer 
   5118      1.1  explorer 	/* if no NCP is starting, all this was in vain, close down */
   5119      1.3  explorer 	sppp_lcp_check_and_close(sp);
   5120      1.3  explorer }
   5121      1.3  explorer 
   5122      1.3  explorer 
   5123      1.3  explorer static const char *
   5124      1.3  explorer sppp_cp_type_name(u_char type)
   5125      1.3  explorer {
   5126      1.3  explorer 	static char buf[12];
   5127      1.3  explorer 	switch (type) {
   5128      1.3  explorer 	case CONF_REQ:   return "conf-req";
   5129      1.3  explorer 	case CONF_ACK:   return "conf-ack";
   5130      1.3  explorer 	case CONF_NAK:   return "conf-nak";
   5131      1.3  explorer 	case CONF_REJ:   return "conf-rej";
   5132      1.3  explorer 	case TERM_REQ:   return "term-req";
   5133      1.3  explorer 	case TERM_ACK:   return "term-ack";
   5134      1.3  explorer 	case CODE_REJ:   return "code-rej";
   5135      1.3  explorer 	case PROTO_REJ:  return "proto-rej";
   5136      1.3  explorer 	case ECHO_REQ:   return "echo-req";
   5137      1.3  explorer 	case ECHO_REPLY: return "echo-reply";
   5138      1.3  explorer 	case DISC_REQ:   return "discard-req";
   5139      1.3  explorer 	}
   5140      1.3  explorer 	sprintf (buf, "0x%x", type);
   5141      1.3  explorer 	return buf;
   5142      1.3  explorer }
   5143      1.3  explorer 
   5144      1.3  explorer static const char *
   5145      1.3  explorer sppp_auth_type_name(u_short proto, u_char type)
   5146      1.3  explorer {
   5147      1.3  explorer 	static char buf[12];
   5148      1.3  explorer 	switch (proto) {
   5149      1.3  explorer 	case PPP_CHAP:
   5150      1.3  explorer 		switch (type) {
   5151      1.3  explorer 		case CHAP_CHALLENGE:	return "challenge";
   5152      1.3  explorer 		case CHAP_RESPONSE:	return "response";
   5153      1.3  explorer 		case CHAP_SUCCESS:	return "success";
   5154      1.3  explorer 		case CHAP_FAILURE:	return "failure";
   5155      1.3  explorer 		}
   5156      1.3  explorer 	case PPP_PAP:
   5157      1.3  explorer 		switch (type) {
   5158      1.3  explorer 		case PAP_REQ:		return "req";
   5159      1.3  explorer 		case PAP_ACK:		return "ack";
   5160      1.3  explorer 		case PAP_NAK:		return "nak";
   5161      1.3  explorer 		}
   5162      1.3  explorer 	}
   5163      1.3  explorer 	sprintf (buf, "0x%x", type);
   5164      1.3  explorer 	return buf;
   5165      1.3  explorer }
   5166      1.3  explorer 
   5167      1.3  explorer static const char *
   5168      1.3  explorer sppp_lcp_opt_name(u_char opt)
   5169      1.3  explorer {
   5170      1.3  explorer 	static char buf[12];
   5171      1.3  explorer 	switch (opt) {
   5172      1.3  explorer 	case LCP_OPT_MRU:		return "mru";
   5173      1.3  explorer 	case LCP_OPT_ASYNC_MAP:		return "async-map";
   5174      1.3  explorer 	case LCP_OPT_AUTH_PROTO:	return "auth-proto";
   5175      1.3  explorer 	case LCP_OPT_QUAL_PROTO:	return "qual-proto";
   5176      1.3  explorer 	case LCP_OPT_MAGIC:		return "magic";
   5177      1.3  explorer 	case LCP_OPT_PROTO_COMP:	return "proto-comp";
   5178      1.3  explorer 	case LCP_OPT_ADDR_COMP:		return "addr-comp";
   5179      1.3  explorer 	}
   5180      1.3  explorer 	sprintf (buf, "0x%x", opt);
   5181      1.3  explorer 	return buf;
   5182      1.3  explorer }
   5183      1.3  explorer 
   5184      1.3  explorer static const char *
   5185      1.3  explorer sppp_ipcp_opt_name(u_char opt)
   5186      1.3  explorer {
   5187      1.3  explorer 	static char buf[12];
   5188  1.5.2.1    bouyer 	switch (opt) {
   5189  1.5.2.1    bouyer 	case IPCP_OPT_ADDRESSES:	return "addresses";
   5190  1.5.2.1    bouyer 	case IPCP_OPT_COMPRESSION:	return "compression";
   5191  1.5.2.1    bouyer 	case IPCP_OPT_ADDRESS:		return "address";
   5192  1.5.2.1    bouyer 	}
   5193  1.5.2.1    bouyer 	sprintf (buf, "0x%x", opt);
   5194  1.5.2.1    bouyer 	return buf;
   5195  1.5.2.1    bouyer }
   5196  1.5.2.1    bouyer 
   5197  1.5.2.1    bouyer #ifdef INET6
   5198  1.5.2.1    bouyer static const char *
   5199  1.5.2.1    bouyer sppp_ipv6cp_opt_name(u_char opt)
   5200  1.5.2.1    bouyer {
   5201  1.5.2.1    bouyer 	static char buf[12];
   5202      1.3  explorer 	switch (opt) {
   5203      1.3  explorer 	case IPV6CP_OPT_IFID:		return "ifid";
   5204      1.3  explorer 	case IPV6CP_OPT_COMPRESSION:	return "compression";
   5205      1.3  explorer 	}
   5206      1.3  explorer 	sprintf (buf, "0x%x", opt);
   5207      1.3  explorer 	return buf;
   5208      1.3  explorer }
   5209      1.3  explorer #endif
   5210      1.3  explorer 
   5211      1.3  explorer static const char *
   5212      1.3  explorer sppp_state_name(int state)
   5213      1.3  explorer {
   5214      1.3  explorer 	switch (state) {
   5215      1.3  explorer 	case STATE_INITIAL:	return "initial";
   5216      1.3  explorer 	case STATE_STARTING:	return "starting";
   5217      1.3  explorer 	case STATE_CLOSED:	return "closed";
   5218      1.3  explorer 	case STATE_STOPPED:	return "stopped";
   5219      1.3  explorer 	case STATE_CLOSING:	return "closing";
   5220      1.3  explorer 	case STATE_STOPPING:	return "stopping";
   5221      1.3  explorer 	case STATE_REQ_SENT:	return "req-sent";
   5222      1.3  explorer 	case STATE_ACK_RCVD:	return "ack-rcvd";
   5223      1.3  explorer 	case STATE_ACK_SENT:	return "ack-sent";
   5224      1.3  explorer 	case STATE_OPENED:	return "opened";
   5225      1.3  explorer 	}
   5226      1.3  explorer 	return "illegal";
   5227      1.3  explorer }
   5228      1.3  explorer 
   5229      1.3  explorer static const char *
   5230      1.3  explorer sppp_phase_name(enum ppp_phase phase)
   5231      1.3  explorer {
   5232      1.3  explorer 	switch (phase) {
   5233      1.3  explorer 	case PHASE_DEAD:	return "dead";
   5234      1.3  explorer 	case PHASE_ESTABLISH:	return "establish";
   5235      1.3  explorer 	case PHASE_TERMINATE:	return "terminate";
   5236      1.3  explorer 	case PHASE_AUTHENTICATE: return "authenticate";
   5237      1.3  explorer 	case PHASE_NETWORK:	return "network";
   5238      1.3  explorer 	}
   5239      1.3  explorer 	return "illegal";
   5240      1.3  explorer }
   5241      1.3  explorer 
   5242  1.5.2.1    bouyer static const char *
   5243      1.1  explorer sppp_proto_name(u_short proto)
   5244      1.3  explorer {
   5245      1.3  explorer 	static char buf[12];
   5246      1.1  explorer 	switch (proto) {
   5247      1.1  explorer 	case PPP_LCP:	return "lcp";
   5248      1.1  explorer 	case PPP_IPCP:	return "ipcp";
   5249      1.3  explorer 	case PPP_PAP:	return "pap";
   5250      1.1  explorer 	case PPP_CHAP:	return "chap";
   5251      1.3  explorer 	case PPP_IPV6CP: return "ipv6cp";
   5252      1.1  explorer 	}
   5253      1.3  explorer 	sprintf(buf, "0x%x", (unsigned)proto);
   5254      1.3  explorer 	return buf;
   5255      1.3  explorer }
   5256      1.3  explorer 
   5257      1.3  explorer static void
   5258      1.3  explorer sppp_print_bytes(const u_char *p, u_short len)
   5259      1.3  explorer {
   5260      1.3  explorer 	addlog(" %02x", *p++);
   5261      1.3  explorer 	while (--len > 0)
   5262      1.3  explorer 		addlog("-%02x", *p++);
   5263      1.3  explorer }
   5264      1.3  explorer 
   5265      1.3  explorer static void
   5266      1.3  explorer sppp_print_string(const char *p, u_short len)
   5267      1.3  explorer {
   5268      1.3  explorer 	u_char c;
   5269      1.3  explorer 
   5270      1.3  explorer 	while (len-- > 0) {
   5271      1.3  explorer 		c = *p++;
   5272      1.3  explorer 		/*
   5273      1.3  explorer 		 * Print only ASCII chars directly.  RFC 1994 recommends
   5274      1.3  explorer 		 * using only them, but we don't rely on it.  */
   5275      1.3  explorer 		if (c < ' ' || c > '~')
   5276      1.3  explorer 			addlog("\\x%x", c);
   5277      1.3  explorer 		else
   5278      1.3  explorer 			addlog("%c", c);
   5279      1.3  explorer 	}
   5280      1.3  explorer }
   5281      1.3  explorer 
   5282      1.3  explorer static const char *
   5283      1.3  explorer sppp_dotted_quad(u_long addr)
   5284      1.3  explorer {
   5285      1.3  explorer 	static char s[16];
   5286      1.3  explorer 	sprintf(s, "%d.%d.%d.%d",
   5287      1.3  explorer 		(int)((addr >> 24) & 0xff),
   5288      1.3  explorer 		(int)((addr >> 16) & 0xff),
   5289      1.3  explorer 		(int)((addr >> 8) & 0xff),
   5290      1.3  explorer 		(int)(addr & 0xff));
   5291      1.3  explorer 	return s;
   5292      1.3  explorer }
   5293      1.3  explorer 
   5294      1.3  explorer static int
   5295      1.3  explorer sppp_strnlen(u_char *p, int max)
   5296      1.3  explorer {
   5297      1.3  explorer 	int len;
   5298      1.3  explorer 
   5299      1.3  explorer 	for (len = 0; len < max && *p; ++p)
   5300      1.1  explorer 		++len;
   5301      1.3  explorer 	return len;
   5302      1.3  explorer }
   5303      1.3  explorer 
   5304      1.3  explorer /* a dummy, used to drop uninteresting events */
   5305      1.3  explorer static void
   5306      1.3  explorer sppp_null(struct sppp *unused)
   5307      1.3  explorer {
   5308                    	/* do just nothing */
   5309                    }
   5310                    /*
   5311                     * This file is large.  Tell emacs to highlight it nevertheless.
   5312                     *
   5313                     * Local Variables:
   5314                     * hilit-auto-highlight-maxout: 120000
   5315                     * End:
   5316                     */
   5317