#include "netif/ppp/ppp_opts.h"
#if PPP_SUPPORT && PPP_IPV4_SUPPORT
#if 0#endif
#include "netif/ppp/ppp_impl.h"
#include "netif/ppp/fsm.h"
#include "netif/ppp/ipcp.h"
#if 0#endif
#if 0#endif
#if 0#endif
#if 0#endif
#if PPP_NOTIFY
struct notifier *ip_up_notifier = NULL;
struct notifier *ip_down_notifier = NULL;
#endif
#if 0#endif
#if 0#endif
static void ipcp_resetci(fsm *f);
static int ipcp_cilen(fsm *f);
static void ipcp_addci(fsm *f, u_char *ucp, int *lenp);
static int ipcp_ackci(fsm *f, u_char *p, int len);
static int ipcp_nakci(fsm *f, u_char *p, int len, int treat_as_reject);
static int ipcp_rejci(fsm *f, u_char *p, int len);
static int ipcp_reqci(fsm *f, u_char *inp, int *len, int reject_if_disagree);
static void ipcp_up(fsm *f);
static void ipcp_down(fsm *f);
static void ipcp_finished(fsm *f);
static const fsm_callbacks ipcp_callbacks = {
ipcp_resetci,
ipcp_cilen,
ipcp_addci,
ipcp_ackci,
ipcp_nakci,
ipcp_rejci,
ipcp_reqci,
ipcp_up,
ipcp_down,
NULL,
ipcp_finished,
NULL,
NULL,
NULL,
"IPCP"
};
#if PPP_OPTIONS
static int setvjslots (char **);
static int setdnsaddr (char **);
static int setwinsaddr (char **);
static int setnetmask (char **);
int setipaddr (char *, char **, int);
static void printipaddr (option_t *, void (*)(void *, char *,...),void *);
static option_t ipcp_option_list[] = {
{ "noip", o_bool, &ipcp_protent.enabled_flag,
"Disable IP and IPCP" },
{ "-ip", o_bool, &ipcp_protent.enabled_flag,
"Disable IP and IPCP", OPT_ALIAS },
{ "novj", o_bool, &ipcp_wantoptions[0].neg_vj,
"Disable VJ compression", OPT_A2CLR, &ipcp_allowoptions[0].neg_vj },
{ "-vj", o_bool, &ipcp_wantoptions[0].neg_vj,
"Disable VJ compression", OPT_ALIAS | OPT_A2CLR,
&ipcp_allowoptions[0].neg_vj },
{ "novjccomp", o_bool, &ipcp_wantoptions[0].cflag,
"Disable VJ connection-ID compression", OPT_A2CLR,
&ipcp_allowoptions[0].cflag },
{ "-vjccomp", o_bool, &ipcp_wantoptions[0].cflag,
"Disable VJ connection-ID compression", OPT_ALIAS | OPT_A2CLR,
&ipcp_allowoptions[0].cflag },
{ "vj-max-slots", o_special, (void *)setvjslots,
"Set maximum VJ header slots",
OPT_PRIO | OPT_A2STRVAL | OPT_STATIC, vj_value },
{ "ipcp-accept-local", o_bool, &ipcp_wantoptions[0].accept_local,
"Accept peer's address for us", 1 },
{ "ipcp-accept-remote", o_bool, &ipcp_wantoptions[0].accept_remote,
"Accept peer's address for it", 1 },
{ "ipparam", o_string, &ipparam,
"Set ip script parameter", OPT_PRIO },
{ "noipdefault", o_bool, &disable_defaultip,
"Don't use name for default IP adrs", 1 },
{ "ms-dns", 1, (void *)setdnsaddr,
"DNS address for the peer's use" },
{ "ms-wins", 1, (void *)setwinsaddr,
"Nameserver for SMB over TCP/IP for peer" },
{ "ipcp-restart", o_int, &ipcp_fsm[0].timeouttime,
"Set timeout for IPCP", OPT_PRIO },
{ "ipcp-max-terminate", o_int, &ipcp_fsm[0].maxtermtransmits,
"Set max #xmits for term-reqs", OPT_PRIO },
{ "ipcp-max-configure", o_int, &ipcp_fsm[0].maxconfreqtransmits,
"Set max #xmits for conf-reqs", OPT_PRIO },
{ "ipcp-max-failure", o_int, &ipcp_fsm[0].maxnakloops,
"Set max #conf-naks for IPCP", OPT_PRIO },
{ "defaultroute", o_bool, &ipcp_wantoptions[0].default_route,
"Add default route", OPT_ENABLE|1, &ipcp_allowoptions[0].default_route },
{ "nodefaultroute", o_bool, &ipcp_allowoptions[0].default_route,
"disable defaultroute option", OPT_A2CLR,
&ipcp_wantoptions[0].default_route },
{ "-defaultroute", o_bool, &ipcp_allowoptions[0].default_route,
"disable defaultroute option", OPT_ALIAS | OPT_A2CLR,
&ipcp_wantoptions[0].default_route },
{ "replacedefaultroute", o_bool,
&ipcp_wantoptions[0].replace_default_route,
"Replace default route", 1
},
{ "noreplacedefaultroute", o_bool,
&ipcp_allowoptions[0].replace_default_route,
"Never replace default route", OPT_A2COPY,
&ipcp_wantoptions[0].replace_default_route },
{ "proxyarp", o_bool, &ipcp_wantoptions[0].proxy_arp,
"Add proxy ARP entry", OPT_ENABLE|1, &ipcp_allowoptions[0].proxy_arp },
{ "noproxyarp", o_bool, &ipcp_allowoptions[0].proxy_arp,
"disable proxyarp option", OPT_A2CLR,
&ipcp_wantoptions[0].proxy_arp },
{ "-proxyarp", o_bool, &ipcp_allowoptions[0].proxy_arp,
"disable proxyarp option", OPT_ALIAS | OPT_A2CLR,
&ipcp_wantoptions[0].proxy_arp },
{ "usepeerdns", o_bool, &usepeerdns,
"Ask peer for DNS address(es)", 1 },
{ "netmask", o_special, (void *)setnetmask,
"set netmask", OPT_PRIO | OPT_A2STRVAL | OPT_STATIC, netmask_str },
{ "ipcp-no-addresses", o_bool, &ipcp_wantoptions[0].old_addrs,
"Disable old-style IP-Addresses usage", OPT_A2CLR,
&ipcp_allowoptions[0].old_addrs },
{ "ipcp-no-address", o_bool, &ipcp_wantoptions[0].neg_addr,
"Disable IP-Address usage", OPT_A2CLR,
&ipcp_allowoptions[0].neg_addr },
{ "noremoteip", o_bool, &noremoteip,
"Allow peer to have no IP address", 1 },
{ "nosendip", o_bool, &ipcp_wantoptions[0].neg_addr,
"Don't send our IP address to peer", OPT_A2CLR,
&ipcp_wantoptions[0].old_addrs},
{ "IP addresses", o_wild, (void *) &setipaddr,
"set local and remote IP addresses",
OPT_NOARG | OPT_A2PRINTER, (void *) &printipaddr },
{ NULL }
};
#endif
static void ipcp_init(ppp_pcb *pcb);
static void ipcp_open(ppp_pcb *pcb);
static void ipcp_close(ppp_pcb *pcb, const char *reason);
static void ipcp_lowerup(ppp_pcb *pcb);
static void ipcp_lowerdown(ppp_pcb *pcb);
static void ipcp_input(ppp_pcb *pcb, u_char *p, int len);
static void ipcp_protrej(ppp_pcb *pcb);
#if PRINTPKT_SUPPORT
static int ipcp_printpkt(const u_char *p, int plen,
void (*printer) (void *, const char *, ...), void *arg);
#endif
#if PPP_OPTIONS
static void ip_check_options (void);
#endif
#if DEMAND_SUPPORT
static int ip_demand_conf (int);
static int ip_active_pkt (u_char *, int);
#endif
#if 0#endif
const struct protent ipcp_protent = {
PPP_IPCP,
ipcp_init,
ipcp_input,
ipcp_protrej,
ipcp_lowerup,
ipcp_lowerdown,
ipcp_open,
ipcp_close,
#if PRINTPKT_SUPPORT
ipcp_printpkt,
#endif
#if PPP_DATAINPUT
NULL,
#endif
#if PRINTPKT_SUPPORT
"IPCP",
"IP",
#endif
#if PPP_OPTIONS
ipcp_option_list,
ip_check_options,
#endif
#if DEMAND_SUPPORT
ip_demand_conf,
ip_active_pkt
#endif
};
static void ipcp_clear_addrs(ppp_pcb *pcb, u32_t ouraddr, u32_t hisaddr, u8_t replacedefaultroute);
#define CILEN_VOID 2
#define CILEN_COMPRESS 4
#define CILEN_VJ 6
#define CILEN_ADDR 6
#define CILEN_ADDRS 10
#define CODENAME(x) ((x) == CONFACK ? "ACK" : \
(x) == CONFNAK ? "NAK" : "REJ")
#if 0#endif
#if PPP_OPTIONS
static int
setvjslots(argv)
char **argv;
{
int value;
if (!int_option(*argv, &value))
return 0;
if (value < 2 || value > 16) {
option_error("vj-max-slots value must be between 2 and 16");
return 0;
}
ipcp_wantoptions [0].maxslotindex =
ipcp_allowoptions[0].maxslotindex = value - 1;
slprintf(vj_value, sizeof(vj_value), "%d", value);
return 1;
}
static int
setdnsaddr(argv)
char **argv;
{
u32_t dns;
struct hostent *hp;
dns = inet_addr(*argv);
if (dns == (u32_t) -1) {
if ((hp = gethostbyname(*argv)) == NULL) {
option_error("invalid address parameter '%s' for ms-dns option",
*argv);
return 0;
}
dns = *(u32_t *)hp->h_addr;
}
if (ipcp_allowoptions[0].dnsaddr[1] == 0)
ipcp_allowoptions[0].dnsaddr[0] = dns;
else
ipcp_allowoptions[0].dnsaddr[0] = ipcp_allowoptions[0].dnsaddr[1];
ipcp_allowoptions[0].dnsaddr[1] = dns;
return (1);
}
static int
setwinsaddr(argv)
char **argv;
{
u32_t wins;
struct hostent *hp;
wins = inet_addr(*argv);
if (wins == (u32_t) -1) {
if ((hp = gethostbyname(*argv)) == NULL) {
option_error("invalid address parameter '%s' for ms-wins option",
*argv);
return 0;
}
wins = *(u32_t *)hp->h_addr;
}
if (ipcp_allowoptions[0].winsaddr[1] == 0)
ipcp_allowoptions[0].winsaddr[0] = wins;
else
ipcp_allowoptions[0].winsaddr[0] = ipcp_allowoptions[0].winsaddr[1];
ipcp_allowoptions[0].winsaddr[1] = wins;
return (1);
}
int
setipaddr(arg, argv, doit)
char *arg;
char **argv;
int doit;
{
struct hostent *hp;
char *colon;
u32_t local, remote;
ipcp_options *wo = &ipcp_wantoptions[0];
static int prio_local = 0, prio_remote = 0;
if ((colon = strchr(arg, ':')) == NULL)
return 0;
if (!doit)
return 1;
if (colon != arg && option_priority >= prio_local) {
*colon = '\0';
if ((local = inet_addr(arg)) == (u32_t) -1) {
if ((hp = gethostbyname(arg)) == NULL) {
option_error("unknown host: %s", arg);
return 0;
}
local = *(u32_t *)hp->h_addr;
}
if (bad_ip_adrs(local)) {
option_error("bad local IP address %s", ip_ntoa(local));
return 0;
}
if (local != 0)
wo->ouraddr = local;
*colon = ':';
prio_local = option_priority;
}
if (*++colon != '\0' && option_priority >= prio_remote) {
if ((remote = inet_addr(colon)) == (u32_t) -1) {
if ((hp = gethostbyname(colon)) == NULL) {
option_error("unknown host: %s", colon);
return 0;
}
remote = *(u32_t *)hp->h_addr;
if (remote_name[0] == 0)
strlcpy(remote_name, colon, sizeof(remote_name));
}
if (bad_ip_adrs(remote)) {
option_error("bad remote IP address %s", ip_ntoa(remote));
return 0;
}
if (remote != 0)
wo->hisaddr = remote;
prio_remote = option_priority;
}
return 1;
}
static void
printipaddr(opt, printer, arg)
option_t *opt;
void (*printer) (void *, char *, ...);
void *arg;
{
ipcp_options *wo = &ipcp_wantoptions[0];
if (wo->ouraddr != 0)
printer(arg, "%I", wo->ouraddr);
printer(arg, ":");
if (wo->hisaddr != 0)
printer(arg, "%I", wo->hisaddr);
}
static int
setnetmask(argv)
char **argv;
{
u32_t mask;
int n;
char *p;
p = *argv;
n = parse_dotted_ip(p, &mask);
mask = lwip_htonl(mask);
if (n == 0 || p[n] != 0 || (netmask & ~mask) != 0) {
option_error("invalid netmask value '%s'", *argv);
return 0;
}
netmask = mask;
slprintf(netmask_str, sizeof(netmask_str), "%I", mask);
return (1);
}
int
parse_dotted_ip(p, vp)
char *p;
u32_t *vp;
{
int n;
u32_t v, b;
char *endp, *p0 = p;
v = 0;
for (n = 3;; --n) {
b = strtoul(p, &endp, 0);
if (endp == p)
return 0;
if (b > 255) {
if (n < 3)
return 0;
*vp = b;
return endp - p0;
}
v |= b << (n * 8);
p = endp;
if (n == 0)
break;
if (*p != '.')
return 0;
++p;
}
*vp = v;
return p - p0;
}
#endif
static void ipcp_init(ppp_pcb *pcb) {
fsm *f = &pcb->ipcp_fsm;
ipcp_options *wo = &pcb->ipcp_wantoptions;
ipcp_options *ao = &pcb->ipcp_allowoptions;
f->pcb = pcb;
f->protocol = PPP_IPCP;
f->callbacks = &ipcp_callbacks;
fsm_init(f);
f->maxnakloops = 100;
#if 0#endif
wo->neg_addr = wo->old_addrs = 1;
#if VJ_SUPPORT
wo->neg_vj = 1;
wo->vj_protocol = IPCP_VJ_COMP;
wo->maxslotindex = MAX_STATES - 1;
wo->cflag = 1;
#endif
#if 0#endif
ao->neg_addr = ao->old_addrs = 1;
#if VJ_SUPPORT
ao->neg_vj = 1;
ao->maxslotindex = MAX_STATES - 1;
ao->cflag = 1;
#endif
#if 0#endif
}
static void ipcp_open(ppp_pcb *pcb) {
fsm *f = &pcb->ipcp_fsm;
fsm_open(f);
pcb->ipcp_is_open = 1;
}
static void ipcp_close(ppp_pcb *pcb, const char *reason) {
fsm *f = &pcb->ipcp_fsm;
fsm_close(f, reason);
}
static void ipcp_lowerup(ppp_pcb *pcb) {
fsm *f = &pcb->ipcp_fsm;
fsm_lowerup(f);
}
static void ipcp_lowerdown(ppp_pcb *pcb) {
fsm *f = &pcb->ipcp_fsm;
fsm_lowerdown(f);
}
static void ipcp_input(ppp_pcb *pcb, u_char *p, int len) {
fsm *f = &pcb->ipcp_fsm;
fsm_input(f, p, len);
}
static void ipcp_protrej(ppp_pcb *pcb) {
fsm *f = &pcb->ipcp_fsm;
fsm_lowerdown(f);
}
static void ipcp_resetci(fsm *f) {
ppp_pcb *pcb = f->pcb;
ipcp_options *wo = &pcb->ipcp_wantoptions;
ipcp_options *go = &pcb->ipcp_gotoptions;
ipcp_options *ao = &pcb->ipcp_allowoptions;
wo->req_addr = (wo->neg_addr || wo->old_addrs) &&
(ao->neg_addr || ao->old_addrs);
if (wo->ouraddr == 0)
wo->accept_local = 1;
if (wo->hisaddr == 0)
wo->accept_remote = 1;
#if LWIP_DNS
wo->req_dns1 = wo->req_dns2 = pcb->settings.usepeerdns;
#endif
*go = *wo;
if (!pcb->ask_for_local)
go->ouraddr = 0;
#if 0#endif
BZERO(&pcb->ipcp_hisoptions, sizeof(ipcp_options));
}
static int ipcp_cilen(fsm *f) {
ppp_pcb *pcb = f->pcb;
ipcp_options *go = &pcb->ipcp_gotoptions;
#if VJ_SUPPORT
ipcp_options *wo = &pcb->ipcp_wantoptions;
#endif
ipcp_options *ho = &pcb->ipcp_hisoptions;
#define LENCIADDRS(neg) (neg ? CILEN_ADDRS : 0)
#if VJ_SUPPORT
#define LENCIVJ(neg, old) (neg ? (old? CILEN_COMPRESS : CILEN_VJ) : 0)
#endif
#define LENCIADDR(neg) (neg ? CILEN_ADDR : 0)
#if LWIP_DNS
#define LENCIDNS(neg) LENCIADDR(neg)
#endif
#if 0#endif
if (go->neg_addr && go->old_addrs && !ho->neg_addr && ho->old_addrs)
go->neg_addr = 0;
#if VJ_SUPPORT
if (wo->neg_vj && !go->neg_vj && !go->old_vj) {
if (ho->neg_vj && ho->old_vj) {
go->neg_vj = 1;
go->old_vj = 1;
go->vj_protocol = ho->vj_protocol;
}
}
#endif
return (LENCIADDRS(!go->neg_addr && go->old_addrs) +
#if VJ_SUPPORT
LENCIVJ(go->neg_vj, go->old_vj) +
#endif
LENCIADDR(go->neg_addr) +
#if LWIP_DNS
LENCIDNS(go->req_dns1) +
LENCIDNS(go->req_dns2) +
#endif
#if 0
LENCIWINS(go->winsaddr[0]) +
LENCIWINS(go->winsaddr[1]) +
#endif
0);
}
static void ipcp_addci(fsm *f, u_char *ucp, int *lenp) {
ppp_pcb *pcb = f->pcb;
ipcp_options *go = &pcb->ipcp_gotoptions;
int len = *lenp;
#define ADDCIADDRS(opt, neg, val1, val2) \
if (neg) { \
if (len >= CILEN_ADDRS) { \
u32_t l; \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_ADDRS, ucp); \
l = lwip_ntohl(val1); \
PUTLONG(l, ucp); \
l = lwip_ntohl(val2); \
PUTLONG(l, ucp); \
len -= CILEN_ADDRS; \
} else \
go->old_addrs = 0; \
}
#if VJ_SUPPORT
#define ADDCIVJ(opt, neg, val, old, maxslotindex, cflag) \
if (neg) { \
int vjlen = old? CILEN_COMPRESS : CILEN_VJ; \
if (len >= vjlen) { \
PUTCHAR(opt, ucp); \
PUTCHAR(vjlen, ucp); \
PUTSHORT(val, ucp); \
if (!old) { \
PUTCHAR(maxslotindex, ucp); \
PUTCHAR(cflag, ucp); \
} \
len -= vjlen; \
} else \
neg = 0; \
}
#endif
#define ADDCIADDR(opt, neg, val) \
if (neg) { \
if (len >= CILEN_ADDR) { \
u32_t l; \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_ADDR, ucp); \
l = lwip_ntohl(val); \
PUTLONG(l, ucp); \
len -= CILEN_ADDR; \
} else \
neg = 0; \
}
#if LWIP_DNS
#define ADDCIDNS(opt, neg, addr) \
if (neg) { \
if (len >= CILEN_ADDR) { \
u32_t l; \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_ADDR, ucp); \
l = lwip_ntohl(addr); \
PUTLONG(l, ucp); \
len -= CILEN_ADDR; \
} else \
neg = 0; \
}
#endif
#if 0#endif
ADDCIADDRS(CI_ADDRS, !go->neg_addr && go->old_addrs, go->ouraddr,
go->hisaddr);
#if VJ_SUPPORT
ADDCIVJ(CI_COMPRESSTYPE, go->neg_vj, go->vj_protocol, go->old_vj,
go->maxslotindex, go->cflag);
#endif
ADDCIADDR(CI_ADDR, go->neg_addr, go->ouraddr);
#if LWIP_DNS
ADDCIDNS(CI_MS_DNS1, go->req_dns1, go->dnsaddr[0]);
ADDCIDNS(CI_MS_DNS2, go->req_dns2, go->dnsaddr[1]);
#endif
#if 0#endif
*lenp -= len;
}
static int ipcp_ackci(fsm *f, u_char *p, int len) {
ppp_pcb *pcb = f->pcb;
ipcp_options *go = &pcb->ipcp_gotoptions;
u_short cilen, citype;
u32_t cilong;
#if VJ_SUPPORT
u_short cishort;
u_char cimaxslotindex, cicflag;
#endif
#define ACKCIADDRS(opt, neg, val1, val2) \
if (neg) { \
u32_t l; \
if ((len -= CILEN_ADDRS) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_ADDRS || \
citype != opt) \
goto bad; \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
if (val1 != cilong) \
goto bad; \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
if (val2 != cilong) \
goto bad; \
}
#if VJ_SUPPORT
#define ACKCIVJ(opt, neg, val, old, maxslotindex, cflag) \
if (neg) { \
int vjlen = old? CILEN_COMPRESS : CILEN_VJ; \
if ((len -= vjlen) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != vjlen || \
citype != opt) \
goto bad; \
GETSHORT(cishort, p); \
if (cishort != val) \
goto bad; \
if (!old) { \
GETCHAR(cimaxslotindex, p); \
if (cimaxslotindex != maxslotindex) \
goto bad; \
GETCHAR(cicflag, p); \
if (cicflag != cflag) \
goto bad; \
} \
}
#endif
#define ACKCIADDR(opt, neg, val) \
if (neg) { \
u32_t l; \
if ((len -= CILEN_ADDR) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_ADDR || \
citype != opt) \
goto bad; \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
if (val != cilong) \
goto bad; \
}
#if LWIP_DNS
#define ACKCIDNS(opt, neg, addr) \
if (neg) { \
u32_t l; \
if ((len -= CILEN_ADDR) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_ADDR || citype != opt) \
goto bad; \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
if (addr != cilong) \
goto bad; \
}
#endif
#if 0#endif
ACKCIADDRS(CI_ADDRS, !go->neg_addr && go->old_addrs, go->ouraddr,
go->hisaddr);
#if VJ_SUPPORT
ACKCIVJ(CI_COMPRESSTYPE, go->neg_vj, go->vj_protocol, go->old_vj,
go->maxslotindex, go->cflag);
#endif
ACKCIADDR(CI_ADDR, go->neg_addr, go->ouraddr);
#if LWIP_DNS
ACKCIDNS(CI_MS_DNS1, go->req_dns1, go->dnsaddr[0]);
ACKCIDNS(CI_MS_DNS2, go->req_dns2, go->dnsaddr[1]);
#endif
#if 0#endif
if (len != 0)
goto bad;
return (1);
bad:
IPCPDEBUG(("ipcp_ackci: received bad Ack!"));
return (0);
}
static int ipcp_nakci(fsm *f, u_char *p, int len, int treat_as_reject) {
ppp_pcb *pcb = f->pcb;
ipcp_options *go = &pcb->ipcp_gotoptions;
u_char citype, cilen, *next;
#if VJ_SUPPORT
u_char cimaxslotindex, cicflag;
u_short cishort;
#endif
u32_t ciaddr1, ciaddr2, l;
#if LWIP_DNS
u32_t cidnsaddr;
#endif
ipcp_options no;
ipcp_options try_;
BZERO(&no, sizeof(no));
try_ = *go;
#define NAKCIADDRS(opt, neg, code) \
if ((neg) && \
(cilen = p[1]) == CILEN_ADDRS && \
len >= cilen && \
p[0] == opt) { \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
ciaddr1 = lwip_htonl(l); \
GETLONG(l, p); \
ciaddr2 = lwip_htonl(l); \
no.old_addrs = 1; \
code \
}
#if VJ_SUPPORT
#define NAKCIVJ(opt, neg, code) \
if (go->neg && \
((cilen = p[1]) == CILEN_COMPRESS || cilen == CILEN_VJ) && \
len >= cilen && \
p[0] == opt) { \
len -= cilen; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
no.neg = 1; \
code \
}
#endif
#define NAKCIADDR(opt, neg, code) \
if (go->neg && \
(cilen = p[1]) == CILEN_ADDR && \
len >= cilen && \
p[0] == opt) { \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
ciaddr1 = lwip_htonl(l); \
no.neg = 1; \
code \
}
#if LWIP_DNS
#define NAKCIDNS(opt, neg, code) \
if (go->neg && \
((cilen = p[1]) == CILEN_ADDR) && \
len >= cilen && \
p[0] == opt) { \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
cidnsaddr = lwip_htonl(l); \
no.neg = 1; \
code \
}
#endif
NAKCIADDRS(CI_ADDRS, !go->neg_addr && go->old_addrs,
if (treat_as_reject) {
try_.old_addrs = 0;
} else {
if (go->accept_local && ciaddr1) {
try_.ouraddr = ciaddr1;
}
if (go->accept_remote && ciaddr2) {
try_.hisaddr = ciaddr2;
}
}
);
#if VJ_SUPPORT
NAKCIVJ(CI_COMPRESSTYPE, neg_vj,
if (treat_as_reject) {
try_.neg_vj = 0;
} else if (cilen == CILEN_VJ) {
GETCHAR(cimaxslotindex, p);
GETCHAR(cicflag, p);
if (cishort == IPCP_VJ_COMP) {
try_.old_vj = 0;
if (cimaxslotindex < go->maxslotindex)
try_.maxslotindex = cimaxslotindex;
if (!cicflag)
try_.cflag = 0;
} else {
try_.neg_vj = 0;
}
} else {
if (cishort == IPCP_VJ_COMP || cishort == IPCP_VJ_COMP_OLD) {
try_.old_vj = 1;
try_.vj_protocol = cishort;
} else {
try_.neg_vj = 0;
}
}
);
#endif
NAKCIADDR(CI_ADDR, neg_addr,
if (treat_as_reject) {
try_.neg_addr = 0;
try_.old_addrs = 0;
} else if (go->accept_local && ciaddr1) {
try_.ouraddr = ciaddr1;
}
);
#if LWIP_DNS
NAKCIDNS(CI_MS_DNS1, req_dns1,
if (treat_as_reject) {
try_.req_dns1 = 0;
} else {
try_.dnsaddr[0] = cidnsaddr;
}
);
NAKCIDNS(CI_MS_DNS2, req_dns2,
if (treat_as_reject) {
try_.req_dns2 = 0;
} else {
try_.dnsaddr[1] = cidnsaddr;
}
);
#endif
while (len >= CILEN_VOID) {
GETCHAR(citype, p);
GETCHAR(cilen, p);
if ( cilen < CILEN_VOID || (len -= cilen) < 0 )
goto bad;
next = p + cilen - 2;
switch (citype) {
#if VJ_SUPPORT
case CI_COMPRESSTYPE:
if (go->neg_vj || no.neg_vj ||
(cilen != CILEN_VJ && cilen != CILEN_COMPRESS))
goto bad;
no.neg_vj = 1;
break;
#endif
case CI_ADDRS:
if ((!go->neg_addr && go->old_addrs) || no.old_addrs
|| cilen != CILEN_ADDRS)
goto bad;
try_.neg_addr = 0;
GETLONG(l, p);
ciaddr1 = lwip_htonl(l);
if (ciaddr1 && go->accept_local)
try_.ouraddr = ciaddr1;
GETLONG(l, p);
ciaddr2 = lwip_htonl(l);
if (ciaddr2 && go->accept_remote)
try_.hisaddr = ciaddr2;
no.old_addrs = 1;
break;
case CI_ADDR:
if (go->neg_addr || no.neg_addr || cilen != CILEN_ADDR)
goto bad;
try_.old_addrs = 0;
GETLONG(l, p);
ciaddr1 = lwip_htonl(l);
if (ciaddr1 && go->accept_local)
try_.ouraddr = ciaddr1;
if (try_.ouraddr != 0)
try_.neg_addr = 1;
no.neg_addr = 1;
break;
#if LWIP_DNS
case CI_MS_DNS1:
if (go->req_dns1 || no.req_dns1 || cilen != CILEN_ADDR)
goto bad;
GETLONG(l, p);
try_.dnsaddr[0] = lwip_htonl(l);
try_.req_dns1 = 1;
no.req_dns1 = 1;
break;
case CI_MS_DNS2:
if (go->req_dns2 || no.req_dns2 || cilen != CILEN_ADDR)
goto bad;
GETLONG(l, p);
try_.dnsaddr[1] = lwip_htonl(l);
try_.req_dns2 = 1;
no.req_dns2 = 1;
break;
#endif
#if 0#endif
default:
break;
}
p = next;
}
if (f->state != PPP_FSM_OPENED)
*go = try_;
return 1;
bad:
IPCPDEBUG(("ipcp_nakci: received bad Nak!"));
return 0;
}
static int ipcp_rejci(fsm *f, u_char *p, int len) {
ppp_pcb *pcb = f->pcb;
ipcp_options *go = &pcb->ipcp_gotoptions;
u_char cilen;
#if VJ_SUPPORT
u_char cimaxslotindex, ciflag;
u_short cishort;
#endif
u32_t cilong;
ipcp_options try_;
try_ = *go;
#define REJCIADDRS(opt, neg, val1, val2) \
if ((neg) && \
(cilen = p[1]) == CILEN_ADDRS && \
len >= cilen && \
p[0] == opt) { \
u32_t l; \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
\
if (cilong != val1) \
goto bad; \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
\
if (cilong != val2) \
goto bad; \
try_.old_addrs = 0; \
}
#if VJ_SUPPORT
#define REJCIVJ(opt, neg, val, old, maxslot, cflag) \
if (go->neg && \
p[1] == (old? CILEN_COMPRESS : CILEN_VJ) && \
len >= p[1] && \
p[0] == opt) { \
len -= p[1]; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
\
if (cishort != val) \
goto bad; \
if (!old) { \
GETCHAR(cimaxslotindex, p); \
if (cimaxslotindex != maxslot) \
goto bad; \
GETCHAR(ciflag, p); \
if (ciflag != cflag) \
goto bad; \
} \
try_.neg = 0; \
}
#endif
#define REJCIADDR(opt, neg, val) \
if (go->neg && \
(cilen = p[1]) == CILEN_ADDR && \
len >= cilen && \
p[0] == opt) { \
u32_t l; \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
\
if (cilong != val) \
goto bad; \
try_.neg = 0; \
}
#if LWIP_DNS
#define REJCIDNS(opt, neg, dnsaddr) \
if (go->neg && \
((cilen = p[1]) == CILEN_ADDR) && \
len >= cilen && \
p[0] == opt) { \
u32_t l; \
len -= cilen; \
INCPTR(2, p); \
GETLONG(l, p); \
cilong = lwip_htonl(l); \
\
if (cilong != dnsaddr) \
goto bad; \
try_.neg = 0; \
}
#endif
#if 0#endif
REJCIADDRS(CI_ADDRS, !go->neg_addr && go->old_addrs,
go->ouraddr, go->hisaddr);
#if VJ_SUPPORT
REJCIVJ(CI_COMPRESSTYPE, neg_vj, go->vj_protocol, go->old_vj,
go->maxslotindex, go->cflag);
#endif
REJCIADDR(CI_ADDR, neg_addr, go->ouraddr);
#if LWIP_DNS
REJCIDNS(CI_MS_DNS1, req_dns1, go->dnsaddr[0]);
REJCIDNS(CI_MS_DNS2, req_dns2, go->dnsaddr[1]);
#endif
#if 0#endif
if (len != 0)
goto bad;
if (f->state != PPP_FSM_OPENED)
*go = try_;
return 1;
bad:
IPCPDEBUG(("ipcp_rejci: received bad Reject!"));
return 0;
}
static int ipcp_reqci(fsm *f, u_char *inp, int *len, int reject_if_disagree) {
ppp_pcb *pcb = f->pcb;
ipcp_options *wo = &pcb->ipcp_wantoptions;
ipcp_options *ho = &pcb->ipcp_hisoptions;
ipcp_options *ao = &pcb->ipcp_allowoptions;
u_char *cip, *next;
u_short cilen, citype;
#if VJ_SUPPORT
u_short cishort;
#endif
u32_t tl, ciaddr1, ciaddr2;
int rc = CONFACK;
int orc;
u_char *p;
u_char *ucp = inp;
int l = *len;
#if VJ_SUPPORT
u_char maxslotindex, cflag;
#endif
#if LWIP_DNS
int d;
#endif
BZERO(ho, sizeof(*ho));
next = inp;
while (l) {
orc = CONFACK;
cip = p = next;
if (l < 2 ||
p[1] < 2 ||
p[1] > l) {
IPCPDEBUG(("ipcp_reqci: bad CI length!"));
orc = CONFREJ;
cilen = l;
l = 0;
goto endswitch;
}
GETCHAR(citype, p);
GETCHAR(cilen, p);
l -= cilen;
next += cilen;
switch (citype) {
case CI_ADDRS:
if (!ao->old_addrs || ho->neg_addr ||
cilen != CILEN_ADDRS) {
orc = CONFREJ;
break;
}
GETLONG(tl, p);
ciaddr1 = lwip_htonl(tl);
if (ciaddr1 != wo->hisaddr
&& (ciaddr1 == 0 || !wo->accept_remote)) {
orc = CONFNAK;
if (!reject_if_disagree) {
DECPTR(sizeof(u32_t), p);
tl = lwip_ntohl(wo->hisaddr);
PUTLONG(tl, p);
}
} else if (ciaddr1 == 0 && wo->hisaddr == 0) {
orc = CONFREJ;
wo->req_addr = 0;
break;
}
GETLONG(tl, p);
ciaddr2 = lwip_htonl(tl);
if (ciaddr2 != wo->ouraddr) {
if (ciaddr2 == 0 || !wo->accept_local) {
orc = CONFNAK;
if (!reject_if_disagree) {
DECPTR(sizeof(u32_t), p);
tl = lwip_ntohl(wo->ouraddr);
PUTLONG(tl, p);
}
} else {
wo->ouraddr = ciaddr2;
}
}
ho->old_addrs = 1;
ho->hisaddr = ciaddr1;
ho->ouraddr = ciaddr2;
break;
case CI_ADDR:
if (!ao->neg_addr || ho->old_addrs ||
cilen != CILEN_ADDR) {
orc = CONFREJ;
break;
}
GETLONG(tl, p);
ciaddr1 = lwip_htonl(tl);
if (ciaddr1 != wo->hisaddr
&& (ciaddr1 == 0 || !wo->accept_remote)) {
orc = CONFNAK;
if (!reject_if_disagree) {
DECPTR(sizeof(u32_t), p);
tl = lwip_ntohl(wo->hisaddr);
PUTLONG(tl, p);
}
} else if (ciaddr1 == 0 && wo->hisaddr == 0) {
orc = CONFREJ;
wo->req_addr = 0;
break;
}
ho->neg_addr = 1;
ho->hisaddr = ciaddr1;
break;
#if LWIP_DNS
case CI_MS_DNS1:
case CI_MS_DNS2:
d = citype == CI_MS_DNS2;
if (ao->dnsaddr[d] == 0 ||
cilen != CILEN_ADDR) {
orc = CONFREJ;
break;
}
GETLONG(tl, p);
if (lwip_htonl(tl) != ao->dnsaddr[d]) {
DECPTR(sizeof(u32_t), p);
tl = lwip_ntohl(ao->dnsaddr[d]);
PUTLONG(tl, p);
orc = CONFNAK;
}
break;
#endif
#if 0#endif
#if VJ_SUPPORT
case CI_COMPRESSTYPE:
if (!ao->neg_vj ||
(cilen != CILEN_VJ && cilen != CILEN_COMPRESS)) {
orc = CONFREJ;
break;
}
GETSHORT(cishort, p);
if (!(cishort == IPCP_VJ_COMP ||
(cishort == IPCP_VJ_COMP_OLD && cilen == CILEN_COMPRESS))) {
orc = CONFREJ;
break;
}
ho->neg_vj = 1;
ho->vj_protocol = cishort;
if (cilen == CILEN_VJ) {
GETCHAR(maxslotindex, p);
if (maxslotindex > ao->maxslotindex) {
orc = CONFNAK;
if (!reject_if_disagree){
DECPTR(1, p);
PUTCHAR(ao->maxslotindex, p);
}
}
GETCHAR(cflag, p);
if (cflag && !ao->cflag) {
orc = CONFNAK;
if (!reject_if_disagree){
DECPTR(1, p);
PUTCHAR(wo->cflag, p);
}
}
ho->maxslotindex = maxslotindex;
ho->cflag = cflag;
} else {
ho->old_vj = 1;
ho->maxslotindex = MAX_STATES - 1;
ho->cflag = 1;
}
break;
#endif
default:
orc = CONFREJ;
break;
}
endswitch:
if (orc == CONFACK &&
rc != CONFACK)
continue;
if (orc == CONFNAK) {
if (reject_if_disagree)
orc = CONFREJ;
else {
if (rc == CONFREJ)
continue;
if (rc == CONFACK) {
rc = CONFNAK;
ucp = inp;
}
}
}
if (orc == CONFREJ &&
rc != CONFREJ) {
rc = CONFREJ;
ucp = inp;
}
if (ucp != cip)
MEMCPY(ucp, cip, cilen);
INCPTR(cilen, ucp);
}
if (rc != CONFREJ && !ho->neg_addr && !ho->old_addrs &&
wo->req_addr && !reject_if_disagree && !pcb->settings.noremoteip) {
if (rc == CONFACK) {
rc = CONFNAK;
ucp = inp;
wo->req_addr = 0;
}
PUTCHAR(CI_ADDR, ucp);
PUTCHAR(CILEN_ADDR, ucp);
tl = lwip_ntohl(wo->hisaddr);
PUTLONG(tl, ucp);
}
*len = ucp - inp;
IPCPDEBUG(("ipcp: returning Configure-%s", CODENAME(rc)));
return (rc);
}
#if 0#endif
#if DEMAND_SUPPORT
static int
ip_demand_conf(u)
int u;
{
ppp_pcb *pcb = &ppp_pcb_list[u];
ipcp_options *wo = &ipcp_wantoptions[u];
if (wo->hisaddr == 0 && !pcb->settings.noremoteip) {
wo->hisaddr = lwip_htonl(0x0a707070 + ifunit);
wo->accept_remote = 1;
}
if (wo->ouraddr == 0) {
wo->ouraddr = lwip_htonl(0x0a404040 + ifunit);
wo->accept_local = 1;
ask_for_local = 0;
}
if (!sifaddr(pcb, wo->ouraddr, wo->hisaddr, get_mask(wo->ouraddr)))
return 0;
if (!sifup(pcb))
return 0;
if (!sifnpmode(pcb, PPP_IP, NPMODE_QUEUE))
return 0;
#if 0#endif
#if 0#endif
ppp_notice(("local IP address %I", wo->ouraddr));
if (wo->hisaddr)
ppp_notice(("remote IP address %I", wo->hisaddr));
return 1;
}
#endif
static void ipcp_up(fsm *f) {
ppp_pcb *pcb = f->pcb;
u32_t mask;
ipcp_options *ho = &pcb->ipcp_hisoptions;
ipcp_options *go = &pcb->ipcp_gotoptions;
ipcp_options *wo = &pcb->ipcp_wantoptions;
IPCPDEBUG(("ipcp: up"));
if (!ho->neg_addr && !ho->old_addrs)
ho->hisaddr = wo->hisaddr;
if (!(go->neg_addr || go->old_addrs) && (wo->neg_addr || wo->old_addrs)
&& wo->ouraddr != 0) {
ppp_error(("Peer refused to agree to our IP address"));
ipcp_close(f->pcb, "Refused our IP address");
return;
}
if (go->ouraddr == 0) {
ppp_error(("Could not determine local IP address"));
ipcp_close(f->pcb, "Could not determine local IP address");
return;
}
if (ho->hisaddr == 0 && !pcb->settings.noremoteip) {
ho->hisaddr = lwip_htonl(0x0a404040);
ppp_warn(("Could not determine remote IP address: defaulting to %I",
ho->hisaddr));
}
#if 0#endif
#if LWIP_DNS
if (!go->req_dns1)
go->dnsaddr[0] = 0;
if (!go->req_dns2)
go->dnsaddr[1] = 0;
#if 0#endif
if (pcb->settings.usepeerdns && (go->dnsaddr[0] || go->dnsaddr[1])) {
sdns(pcb, go->dnsaddr[0], go->dnsaddr[1]);
#if 0#endif
}
#endif
if (ho->hisaddr != 0) {
u32_t addr = lwip_ntohl(ho->hisaddr);
if ((addr >> IP_CLASSA_NSHIFT) == IP_LOOPBACKNET
|| IP_MULTICAST(addr) || IP_BADCLASS(addr)
#if PPP_SERVER && PPP_AUTH_SUPPORT
|| (pcb->settings.auth_required && wo->hisaddr != ho->hisaddr)
#endif
) {
ppp_error(("Peer is not authorized to use remote address %I", ho->hisaddr));
ipcp_close(pcb, "Unauthorized remote IP address");
return;
}
}
#if 0#endif
#if VJ_SUPPORT
sifvjcomp(pcb, ho->neg_vj, ho->cflag, ho->maxslotindex);
#endif
#if DEMAND_SUPPORT
if (demand) {
if (go->ouraddr != wo->ouraddr || ho->hisaddr != wo->hisaddr) {
ipcp_clear_addrs(f->unit, wo->ouraddr, wo->hisaddr,
wo->replace_default_route);
if (go->ouraddr != wo->ouraddr) {
ppp_warn(("Local IP address changed to %I", go->ouraddr));
script_setenv("OLDIPLOCAL", ip_ntoa(wo->ouraddr), 0);
wo->ouraddr = go->ouraddr;
} else
script_unsetenv("OLDIPLOCAL");
if (ho->hisaddr != wo->hisaddr && wo->hisaddr != 0) {
ppp_warn(("Remote IP address changed to %I", ho->hisaddr));
script_setenv("OLDIPREMOTE", ip_ntoa(wo->hisaddr), 0);
wo->hisaddr = ho->hisaddr;
} else
script_unsetenv("OLDIPREMOTE");
mask = get_mask(go->ouraddr);
if (!sifaddr(pcb, go->ouraddr, ho->hisaddr, mask)) {
#if PPP_DEBUG
ppp_warn(("Interface configuration failed"));
#endif
ipcp_close(f->unit, "Interface configuration failed");
return;
}
if (ipcp_wantoptions[f->unit].default_route)
if (sifdefaultroute(pcb, go->ouraddr, ho->hisaddr,
wo->replace_default_route))
default_route_set[f->unit] = 1;
#if 0#endif
}
demand_rexmit(PPP_IP,go->ouraddr);
sifnpmode(pcb, PPP_IP, NPMODE_PASS);
} else
#endif
{
mask = get_mask(go->ouraddr);
#if !(defined(SVR4) && (defined(SNI) || defined(__USLC__)))
if (!sifaddr(pcb, go->ouraddr, ho->hisaddr, mask)) {
#if PPP_DEBUG
ppp_warn(("Interface configuration failed"));
#endif
ipcp_close(f->pcb, "Interface configuration failed");
return;
}
#endif
if (!sifup(pcb)) {
#if PPP_DEBUG
ppp_warn(("Interface failed to come up"));
#endif
ipcp_close(f->pcb, "Interface configuration failed");
return;
}
#if (defined(SVR4) && (defined(SNI) || defined(__USLC__)))
if (!sifaddr(pcb, go->ouraddr, ho->hisaddr, mask)) {
#if PPP_DEBUG
ppp_warn(("Interface configuration failed"));
#endif
ipcp_close(f->unit, "Interface configuration failed");
return;
}
#endif
#if DEMAND_SUPPORT
sifnpmode(pcb, PPP_IP, NPMODE_PASS);
#endif
#if 0#endif
#if 0#endif
wo->ouraddr = go->ouraddr;
ppp_notice(("local IP address %I", go->ouraddr));
if (ho->hisaddr != 0)
ppp_notice(("remote IP address %I", ho->hisaddr));
#if LWIP_DNS
if (go->dnsaddr[0])
ppp_notice(("primary DNS address %I", go->dnsaddr[0]));
if (go->dnsaddr[1])
ppp_notice(("secondary DNS address %I", go->dnsaddr[1]));
#endif
}
#if PPP_STATS_SUPPORT
reset_link_stats(f->unit);
#endif
np_up(pcb, PPP_IP);
pcb->ipcp_is_up = 1;
#if PPP_NOTIFY
notify(ip_up_notifier, 0);
#endif
#if 0#endif
}
static void ipcp_down(fsm *f) {
ppp_pcb *pcb = f->pcb;
ipcp_options *ho = &pcb->ipcp_hisoptions;
ipcp_options *go = &pcb->ipcp_gotoptions;
IPCPDEBUG(("ipcp: down"));
#if PPP_STATS_SUPPORT
update_link_stats(f->unit);
#endif
#if PPP_NOTIFY
notify(ip_down_notifier, 0);
#endif
#if 0#endif
if (pcb->ipcp_is_up) {
pcb->ipcp_is_up = 0;
np_down(pcb, PPP_IP);
}
#if VJ_SUPPORT
sifvjcomp(pcb, 0, 0, 0);
#endif
#if PPP_STATS_SUPPORT
print_link_stats();
#endif
#if DEMAND_SUPPORT
if (demand) {
sifnpmode(pcb, PPP_IP, NPMODE_QUEUE);
} else
#endif
{
#if DEMAND_SUPPORT
sifnpmode(pcb, PPP_IP, NPMODE_DROP);
#endif
sifdown(pcb);
ipcp_clear_addrs(pcb, go->ouraddr,
ho->hisaddr, 0);
#if LWIP_DNS
cdns(pcb, go->dnsaddr[0], go->dnsaddr[1]);
#endif
}
}
static void ipcp_clear_addrs(ppp_pcb *pcb, u32_t ouraddr, u32_t hisaddr, u8_t replacedefaultroute) {
LWIP_UNUSED_ARG(replacedefaultroute);
#if 0#endif
#if 0#endif
cifaddr(pcb, ouraddr, hisaddr);
}
static void ipcp_finished(fsm *f) {
ppp_pcb *pcb = f->pcb;
if (pcb->ipcp_is_open) {
pcb->ipcp_is_open = 0;
np_finished(pcb, PPP_IP);
}
}
#if 0#endif
#if PRINTPKT_SUPPORT
static const char* const ipcp_codenames[] = {
"ConfReq", "ConfAck", "ConfNak", "ConfRej",
"TermReq", "TermAck", "CodeRej"
};
static int ipcp_printpkt(const u_char *p, int plen,
void (*printer) (void *, const char *, ...), void *arg) {
int code, id, len, olen;
const u_char *pstart, *optend;
#if VJ_SUPPORT
u_short cishort;
#endif
u32_t cilong;
if (plen < HEADERLEN)
return 0;
pstart = p;
GETCHAR(code, p);
GETCHAR(id, p);
GETSHORT(len, p);
if (len < HEADERLEN || len > plen)
return 0;
if (code >= 1 && code <= (int)LWIP_ARRAYSIZE(ipcp_codenames))
printer(arg, " %s", ipcp_codenames[code-1]);
else
printer(arg, " code=0x%x", code);
printer(arg, " id=0x%x", id);
len -= HEADERLEN;
switch (code) {
case CONFREQ:
case CONFACK:
case CONFNAK:
case CONFREJ:
while (len >= 2) {
GETCHAR(code, p);
GETCHAR(olen, p);
p -= 2;
if (olen < 2 || olen > len) {
break;
}
printer(arg, " <");
len -= olen;
optend = p + olen;
switch (code) {
case CI_ADDRS:
if (olen == CILEN_ADDRS) {
p += 2;
GETLONG(cilong, p);
printer(arg, "addrs %I", lwip_htonl(cilong));
GETLONG(cilong, p);
printer(arg, " %I", lwip_htonl(cilong));
}
break;
#if VJ_SUPPORT
case CI_COMPRESSTYPE:
if (olen >= CILEN_COMPRESS) {
p += 2;
GETSHORT(cishort, p);
printer(arg, "compress ");
switch (cishort) {
case IPCP_VJ_COMP:
printer(arg, "VJ");
break;
case IPCP_VJ_COMP_OLD:
printer(arg, "old-VJ");
break;
default:
printer(arg, "0x%x", cishort);
}
}
break;
#endif
case CI_ADDR:
if (olen == CILEN_ADDR) {
p += 2;
GETLONG(cilong, p);
printer(arg, "addr %I", lwip_htonl(cilong));
}
break;
#if LWIP_DNS
case CI_MS_DNS1:
case CI_MS_DNS2:
p += 2;
GETLONG(cilong, p);
printer(arg, "ms-dns%d %I", (code == CI_MS_DNS1? 1: 2),
htonl(cilong));
break;
#endif
#if 0#endif
default:
break;
}
while (p < optend) {
GETCHAR(code, p);
printer(arg, " %.2x", code);
}
printer(arg, ">");
}
break;
case TERMACK:
case TERMREQ:
if (len > 0 && *p >= ' ' && *p < 0x7f) {
printer(arg, " ");
ppp_print_string(p, len, printer, arg);
p += len;
len = 0;
}
break;
default:
break;
}
for (; len > 0; --len) {
GETCHAR(code, p);
printer(arg, " %.2x", code);
}
return p - pstart;
}
#endif
#if DEMAND_SUPPORT
#define IP_HDRLEN 20
#define IP_OFFMASK 0x1fff
#ifndef IPPROTO_TCP
#define IPPROTO_TCP 6
#endif
#define TCP_HDRLEN 20
#define TH_FIN 0x01
#define net_short(x) (((x)[0] << 8) + (x)[1])
#define get_iphl(x) (((unsigned char *)(x))[0] & 0xF)
#define get_ipoff(x) net_short((unsigned char *)(x) + 6)
#define get_ipproto(x) (((unsigned char *)(x))[9])
#define get_tcpoff(x) (((unsigned char *)(x))[12] >> 4)
#define get_tcpflags(x) (((unsigned char *)(x))[13])
static int
ip_active_pkt(pkt, len)
u_char *pkt;
int len;
{
u_char *tcp;
int hlen;
len -= PPP_HDRLEN;
pkt += PPP_HDRLEN;
if (len < IP_HDRLEN)
return 0;
if ((get_ipoff(pkt) & IP_OFFMASK) != 0)
return 0;
if (get_ipproto(pkt) != IPPROTO_TCP)
return 1;
hlen = get_iphl(pkt) * 4;
if (len < hlen + TCP_HDRLEN)
return 0;
tcp = pkt + hlen;
if ((get_tcpflags(tcp) & TH_FIN) != 0 && len == hlen + get_tcpoff(tcp) * 4)
return 0;
return 1;
}
#endif
#endif