#include "netif/ppp/ppp_opts.h"
#if PPP_SUPPORT
#if 0#endif
#include "netif/ppp/ppp_impl.h"
#include "netif/ppp/fsm.h"
#include "netif/ppp/lcp.h"
#if CHAP_SUPPORT
#include "netif/ppp/chap-new.h"
#endif
#include "netif/ppp/magic.h"
#define DELAYED_UP 0x80
static void lcp_delayed_up(void *arg);
#if 0#endif
#if 0#endif
#if 0#endif
#if PPP_OPTIONS
static int noopt (char **);
#endif
#ifdef HAVE_MULTILINK
static int setendpoint (char **);
static void printendpoint (option_t *, void (*)(void *, char *, ...),
void *);
#endif
#if PPP_OPTIONS
static option_t lcp_option_list[] = {
{ "-all", o_special_noarg, (void *)noopt,
"Don't request/allow any LCP options" },
{ "noaccomp", o_bool, &lcp_wantoptions[0].neg_accompression,
"Disable address/control compression",
OPT_A2CLR, &lcp_allowoptions[0].neg_accompression },
{ "-ac", o_bool, &lcp_wantoptions[0].neg_accompression,
"Disable address/control compression",
OPT_ALIAS | OPT_A2CLR, &lcp_allowoptions[0].neg_accompression },
{ "asyncmap", o_uint32, &lcp_wantoptions[0].asyncmap,
"Set asyncmap (for received packets)",
OPT_OR, &lcp_wantoptions[0].neg_asyncmap },
{ "-as", o_uint32, &lcp_wantoptions[0].asyncmap,
"Set asyncmap (for received packets)",
OPT_ALIAS | OPT_OR, &lcp_wantoptions[0].neg_asyncmap },
{ "default-asyncmap", o_uint32, &lcp_wantoptions[0].asyncmap,
"Disable asyncmap negotiation",
OPT_OR | OPT_NOARG | OPT_VAL(~0U) | OPT_A2CLR,
&lcp_allowoptions[0].neg_asyncmap },
{ "-am", o_uint32, &lcp_wantoptions[0].asyncmap,
"Disable asyncmap negotiation",
OPT_ALIAS | OPT_OR | OPT_NOARG | OPT_VAL(~0U) | OPT_A2CLR,
&lcp_allowoptions[0].neg_asyncmap },
{ "nomagic", o_bool, &lcp_wantoptions[0].neg_magicnumber,
"Disable magic number negotiation (looped-back line detection)",
OPT_A2CLR, &lcp_allowoptions[0].neg_magicnumber },
{ "-mn", o_bool, &lcp_wantoptions[0].neg_magicnumber,
"Disable magic number negotiation (looped-back line detection)",
OPT_ALIAS | OPT_A2CLR, &lcp_allowoptions[0].neg_magicnumber },
{ "mru", o_int, &lcp_wantoptions[0].mru,
"Set MRU (maximum received packet size) for negotiation",
OPT_PRIO, &lcp_wantoptions[0].neg_mru },
{ "default-mru", o_bool, &lcp_wantoptions[0].neg_mru,
"Disable MRU negotiation (use default 1500)",
OPT_PRIOSUB | OPT_A2CLR, &lcp_allowoptions[0].neg_mru },
{ "-mru", o_bool, &lcp_wantoptions[0].neg_mru,
"Disable MRU negotiation (use default 1500)",
OPT_ALIAS | OPT_PRIOSUB | OPT_A2CLR, &lcp_allowoptions[0].neg_mru },
{ "mtu", o_int, &lcp_allowoptions[0].mru,
"Set our MTU", OPT_LIMITS, NULL, MAXMRU, MINMRU },
{ "nopcomp", o_bool, &lcp_wantoptions[0].neg_pcompression,
"Disable protocol field compression",
OPT_A2CLR, &lcp_allowoptions[0].neg_pcompression },
{ "-pc", o_bool, &lcp_wantoptions[0].neg_pcompression,
"Disable protocol field compression",
OPT_ALIAS | OPT_A2CLR, &lcp_allowoptions[0].neg_pcompression },
{ "passive", o_bool, &lcp_wantoptions[0].passive,
"Set passive mode", 1 },
{ "-p", o_bool, &lcp_wantoptions[0].passive,
"Set passive mode", OPT_ALIAS | 1 },
{ "silent", o_bool, &lcp_wantoptions[0].silent,
"Set silent mode", 1 },
{ "lcp-echo-failure", o_int, &lcp_echo_fails,
"Set number of consecutive echo failures to indicate link failure",
OPT_PRIO },
{ "lcp-echo-interval", o_int, &lcp_echo_interval,
"Set time in seconds between LCP echo requests", OPT_PRIO },
#if PPP_LCP_ADAPTIVE
{ "lcp-echo-adaptive", o_bool, &lcp_echo_adaptive,
"Suppress LCP echo requests if traffic was received", 1 },
#endif
{ "lcp-restart", o_int, &lcp_fsm[0].timeouttime,
"Set time in seconds between LCP retransmissions", OPT_PRIO },
{ "lcp-max-terminate", o_int, &lcp_fsm[0].maxtermtransmits,
"Set maximum number of LCP terminate-request transmissions", OPT_PRIO },
{ "lcp-max-configure", o_int, &lcp_fsm[0].maxconfreqtransmits,
"Set maximum number of LCP configure-request transmissions", OPT_PRIO },
{ "lcp-max-failure", o_int, &lcp_fsm[0].maxnakloops,
"Set limit on number of LCP configure-naks", OPT_PRIO },
{ "receive-all", o_bool, &lax_recv,
"Accept all received control characters", 1 },
#ifdef HAVE_MULTILINK
{ "mrru", o_int, &lcp_wantoptions[0].mrru,
"Maximum received packet size for multilink bundle",
OPT_PRIO, &lcp_wantoptions[0].neg_mrru },
{ "mpshortseq", o_bool, &lcp_wantoptions[0].neg_ssnhf,
"Use short sequence numbers in multilink headers",
OPT_PRIO | 1, &lcp_allowoptions[0].neg_ssnhf },
{ "nompshortseq", o_bool, &lcp_wantoptions[0].neg_ssnhf,
"Don't use short sequence numbers in multilink headers",
OPT_PRIOSUB | OPT_A2CLR, &lcp_allowoptions[0].neg_ssnhf },
{ "endpoint", o_special, (void *) setendpoint,
"Endpoint discriminator for multilink",
OPT_PRIO | OPT_A2PRINTER, (void *) printendpoint },
#endif
{ "noendpoint", o_bool, &noendpoint,
"Don't send or accept multilink endpoint discriminator", 1 },
{NULL}
};
#endif
static void lcp_resetci(fsm *f);
static int lcp_cilen(fsm *f);
static void lcp_addci(fsm *f, u_char *ucp, int *lenp);
static int lcp_ackci(fsm *f, u_char *p, int len);
static int lcp_nakci(fsm *f, u_char *p, int len, int treat_as_reject);
static int lcp_rejci(fsm *f, u_char *p, int len);
static int lcp_reqci(fsm *f, u_char *inp, int *lenp, int reject_if_disagree);
static void lcp_up(fsm *f);
static void lcp_down(fsm *f);
static void lcp_starting (fsm *);
static void lcp_finished (fsm *);
static int lcp_extcode(fsm *f, int code, int id, u_char *inp, int len);
static void lcp_rprotrej(fsm *f, u_char *inp, int len);
static void lcp_echo_lowerup(ppp_pcb *pcb);
static void lcp_echo_lowerdown(ppp_pcb *pcb);
static void LcpEchoTimeout(void *arg);
static void lcp_received_echo_reply(fsm *f, int id, u_char *inp, int len);
static void LcpSendEchoRequest(fsm *f);
static void LcpLinkFailure(fsm *f);
static void LcpEchoCheck(fsm *f);
static const fsm_callbacks lcp_callbacks = {
lcp_resetci,
lcp_cilen,
lcp_addci,
lcp_ackci,
lcp_nakci,
lcp_rejci,
lcp_reqci,
lcp_up,
lcp_down,
lcp_starting,
lcp_finished,
NULL,
NULL,
lcp_extcode,
"LCP"
};
static void lcp_init(ppp_pcb *pcb);
static void lcp_input(ppp_pcb *pcb, u_char *p, int len);
static void lcp_protrej(ppp_pcb *pcb);
#if PRINTPKT_SUPPORT
static int lcp_printpkt(const u_char *p, int plen,
void (*printer) (void *, const char *, ...), void *arg);
#endif
const struct protent lcp_protent = {
PPP_LCP,
lcp_init,
lcp_input,
lcp_protrej,
lcp_lowerup,
lcp_lowerdown,
lcp_open,
lcp_close,
#if PRINTPKT_SUPPORT
lcp_printpkt,
#endif
#if PPP_DATAINPUT
NULL,
#endif
#if PRINTPKT_SUPPORT
"LCP",
NULL,
#endif
#if PPP_OPTIONS
lcp_option_list,
NULL,
#endif
#if DEMAND_SUPPORT
NULL,
NULL
#endif
};
#define CILEN_VOID 2
#define CILEN_CHAR 3
#define CILEN_SHORT 4
#if CHAP_SUPPORT
#define CILEN_CHAP 5
#endif
#define CILEN_LONG 6
#if LQR_SUPPORT
#define CILEN_LQR 8
#endif
#define CILEN_CBCP 3
#define CODENAME(x) ((x) == CONFACK ? "ACK" : \
(x) == CONFNAK ? "NAK" : "REJ")
#if PPP_OPTIONS
static int
noopt(argv)
char **argv;
{
BZERO((char *) &lcp_wantoptions[0], sizeof (struct lcp_options));
BZERO((char *) &lcp_allowoptions[0], sizeof (struct lcp_options));
return (1);
}
#endif
#ifdef HAVE_MULTILINK
static int
setendpoint(argv)
char **argv;
{
if (str_to_epdisc(&lcp_wantoptions[0].endpoint, *argv)) {
lcp_wantoptions[0].neg_endpoint = 1;
return 1;
}
option_error("Can't parse '%s' as an endpoint discriminator", *argv);
return 0;
}
static void
printendpoint(opt, printer, arg)
option_t *opt;
void (*printer) (void *, char *, ...);
void *arg;
{
printer(arg, "%s", epdisc_to_str(&lcp_wantoptions[0].endpoint));
}
#endif
static void lcp_init(ppp_pcb *pcb) {
fsm *f = &pcb->lcp_fsm;
lcp_options *wo = &pcb->lcp_wantoptions;
lcp_options *ao = &pcb->lcp_allowoptions;
f->pcb = pcb;
f->protocol = PPP_LCP;
f->callbacks = &lcp_callbacks;
fsm_init(f);
BZERO(wo, sizeof(*wo));
wo->neg_mru = 1;
wo->mru = PPP_MRU;
wo->neg_asyncmap = 1;
wo->neg_magicnumber = 1;
wo->neg_pcompression = 1;
wo->neg_accompression = 1;
BZERO(ao, sizeof(*ao));
ao->neg_mru = 1;
ao->mru = PPP_MAXMRU;
ao->neg_asyncmap = 1;
#if CHAP_SUPPORT
ao->neg_chap = 1;
ao->chap_mdtype = CHAP_MDTYPE_SUPPORTED;
#endif
#if PAP_SUPPORT
ao->neg_upap = 1;
#endif
#if EAP_SUPPORT
ao->neg_eap = 1;
#endif
ao->neg_magicnumber = 1;
ao->neg_pcompression = 1;
ao->neg_accompression = 1;
ao->neg_endpoint = 1;
}
void lcp_open(ppp_pcb *pcb) {
fsm *f = &pcb->lcp_fsm;
lcp_options *wo = &pcb->lcp_wantoptions;
f->flags &= ~(OPT_PASSIVE | OPT_SILENT);
if (wo->passive)
f->flags |= OPT_PASSIVE;
if (wo->silent)
f->flags |= OPT_SILENT;
fsm_open(f);
}
void lcp_close(ppp_pcb *pcb, const char *reason) {
fsm *f = &pcb->lcp_fsm;
int oldstate;
if (pcb->phase != PPP_PHASE_DEAD
#ifdef HAVE_MULTILINK
&& pcb->phase != PPP_PHASE_MASTER
#endif
)
new_phase(pcb, PPP_PHASE_TERMINATE);
if (f->flags & DELAYED_UP) {
UNTIMEOUT(lcp_delayed_up, f);
f->state = PPP_FSM_STOPPED;
}
oldstate = f->state;
fsm_close(f, reason);
if (oldstate == PPP_FSM_STOPPED && (f->flags & (OPT_PASSIVE|OPT_SILENT|DELAYED_UP))) {
f->flags &= ~DELAYED_UP;
lcp_finished(f);
}
}
void lcp_lowerup(ppp_pcb *pcb) {
lcp_options *wo = &pcb->lcp_wantoptions;
fsm *f = &pcb->lcp_fsm;
if (ppp_send_config(pcb, PPP_DEFMRU, 0xffffffff, 0, 0) < 0
|| ppp_recv_config(pcb, PPP_DEFMRU, (pcb->settings.lax_recv? 0: 0xffffffff),
wo->neg_pcompression, wo->neg_accompression) < 0)
return;
pcb->peer_mru = PPP_DEFMRU;
if (pcb->settings.listen_time != 0) {
f->flags |= DELAYED_UP;
TIMEOUTMS(lcp_delayed_up, f, pcb->settings.listen_time);
} else
fsm_lowerup(f);
}
void lcp_lowerdown(ppp_pcb *pcb) {
fsm *f = &pcb->lcp_fsm;
if (f->flags & DELAYED_UP) {
f->flags &= ~DELAYED_UP;
UNTIMEOUT(lcp_delayed_up, f);
} else
fsm_lowerdown(f);
}
static void lcp_delayed_up(void *arg) {
fsm *f = (fsm*)arg;
if (f->flags & DELAYED_UP) {
f->flags &= ~DELAYED_UP;
fsm_lowerup(f);
}
}
static void lcp_input(ppp_pcb *pcb, u_char *p, int len) {
fsm *f = &pcb->lcp_fsm;
if (f->flags & DELAYED_UP) {
f->flags &= ~DELAYED_UP;
UNTIMEOUT(lcp_delayed_up, f);
fsm_lowerup(f);
}
fsm_input(f, p, len);
}
static int lcp_extcode(fsm *f, int code, int id, u_char *inp, int len) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u_char *magp;
switch( code ){
case PROTREJ:
lcp_rprotrej(f, inp, len);
break;
case ECHOREQ:
if (f->state != PPP_FSM_OPENED)
break;
magp = inp;
PUTLONG(go->magicnumber, magp);
fsm_sdata(f, ECHOREP, id, inp, len);
break;
case ECHOREP:
lcp_received_echo_reply(f, id, inp, len);
break;
case DISCREQ:
case IDENTIF:
case TIMEREM:
break;
default:
return 0;
}
return 1;
}
static void lcp_rprotrej(fsm *f, u_char *inp, int len) {
int i;
const struct protent *protp;
u_short prot;
#if PPP_PROTOCOLNAME
const char *pname;
#endif
if (len < 2) {
LCPDEBUG(("lcp_rprotrej: Rcvd short Protocol-Reject packet!"));
return;
}
GETSHORT(prot, inp);
if( f->state != PPP_FSM_OPENED ){
LCPDEBUG(("Protocol-Reject discarded: LCP in state %d", f->state));
return;
}
#if PPP_PROTOCOLNAME
pname = protocol_name(prot);
#endif
for (i = 0; (protp = protocols[i]) != NULL; ++i)
if (protp->protocol == prot) {
#if PPP_PROTOCOLNAME
if (pname != NULL)
ppp_dbglog(("Protocol-Reject for '%s' (0x%x) received", pname,
prot));
else
#endif
ppp_dbglog(("Protocol-Reject for 0x%x received", prot));
(*protp->protrej)(f->pcb);
return;
}
#if PPP_PROTOCOLNAME
if (pname != NULL)
ppp_warn(("Protocol-Reject for unsupported protocol '%s' (0x%x)", pname,
prot));
else
#endif
ppp_warn(("Protocol-Reject for unsupported protocol 0x%x", prot));
}
static void lcp_protrej(ppp_pcb *pcb) {
ppp_error(("Received Protocol-Reject for LCP!"));
fsm_protreject(&pcb->lcp_fsm);
}
void lcp_sprotrej(ppp_pcb *pcb, u_char *p, int len) {
fsm *f = &pcb->lcp_fsm;
#if 0#endif
fsm_sdata(f, PROTREJ, ++f->id,
p, len);
}
static void lcp_resetci(fsm *f) {
ppp_pcb *pcb = f->pcb;
lcp_options *wo = &pcb->lcp_wantoptions;
lcp_options *go = &pcb->lcp_gotoptions;
lcp_options *ao = &pcb->lcp_allowoptions;
#if PPP_AUTH_SUPPORT
if (pcb->settings.user && pcb->settings.passwd) {
#if PAP_SUPPORT
if (pcb->settings.refuse_pap) {
ao->neg_upap = 0;
}
#endif
#if CHAP_SUPPORT
if (pcb->settings.refuse_chap) {
ao->chap_mdtype &= ~MDTYPE_MD5;
}
#if MSCHAP_SUPPORT
if (pcb->settings.refuse_mschap) {
ao->chap_mdtype &= ~MDTYPE_MICROSOFT;
}
if (pcb->settings.refuse_mschap_v2) {
ao->chap_mdtype &= ~MDTYPE_MICROSOFT_V2;
}
#endif
ao->neg_chap = (ao->chap_mdtype != MDTYPE_NONE);
#endif
#if EAP_SUPPORT
if (pcb->settings.refuse_eap) {
ao->neg_eap = 0;
}
#endif
#if PPP_SERVER
if (pcb->settings.auth_required) {
#if PAP_SUPPORT
if (!pcb->settings.refuse_pap) {
wo->neg_upap = 1;
}
#endif
#if CHAP_SUPPORT
if (!pcb->settings.refuse_chap) {
wo->chap_mdtype |= MDTYPE_MD5;
}
#if MSCHAP_SUPPORT
if (!pcb->settings.refuse_mschap) {
wo->chap_mdtype |= MDTYPE_MICROSOFT;
}
if (!pcb->settings.refuse_mschap_v2) {
wo->chap_mdtype |= MDTYPE_MICROSOFT_V2;
}
#endif
wo->neg_chap = (wo->chap_mdtype != MDTYPE_NONE);
#endif
#if EAP_SUPPORT
if (!pcb->settings.refuse_eap) {
wo->neg_eap = 1;
}
#endif
}
#endif
} else {
#if PAP_SUPPORT
ao->neg_upap = 0;
#endif
#if CHAP_SUPPORT
ao->neg_chap = 0;
ao->chap_mdtype = MDTYPE_NONE;
#endif
#if EAP_SUPPORT
ao->neg_eap = 0;
#endif
}
PPPDEBUG(LOG_DEBUG, ("ppp: auth protocols:"));
#if PAP_SUPPORT
PPPDEBUG(LOG_DEBUG, (" PAP=%d", ao->neg_upap));
#endif
#if CHAP_SUPPORT
PPPDEBUG(LOG_DEBUG, (" CHAP=%d CHAP_MD5=%d", ao->neg_chap, !!(ao->chap_mdtype&MDTYPE_MD5)));
#if MSCHAP_SUPPORT
PPPDEBUG(LOG_DEBUG, (" CHAP_MS=%d CHAP_MS2=%d", !!(ao->chap_mdtype&MDTYPE_MICROSOFT), !!(ao->chap_mdtype&MDTYPE_MICROSOFT_V2)));
#endif
#endif
#if EAP_SUPPORT
PPPDEBUG(LOG_DEBUG, (" EAP=%d", ao->neg_eap));
#endif
PPPDEBUG(LOG_DEBUG, ("\n"));
#endif
wo->magicnumber = magic();
wo->numloops = 0;
*go = *wo;
#ifdef HAVE_MULTILINK
if (!multilink) {
go->neg_mrru = 0;
#endif
go->neg_ssnhf = 0;
go->neg_endpoint = 0;
#ifdef HAVE_MULTILINK
}
#endif
if (pcb->settings.noendpoint)
ao->neg_endpoint = 0;
pcb->peer_mru = PPP_DEFMRU;
#if 0#endif
}
static int lcp_cilen(fsm *f) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
#define LENCIVOID(neg) ((neg) ? CILEN_VOID : 0)
#if CHAP_SUPPORT
#define LENCICHAP(neg) ((neg) ? CILEN_CHAP : 0)
#endif
#define LENCISHORT(neg) ((neg) ? CILEN_SHORT : 0)
#define LENCILONG(neg) ((neg) ? CILEN_LONG : 0)
#if LQR_SUPPORT
#define LENCILQR(neg) ((neg) ? CILEN_LQR: 0)
#endif
#define LENCICBCP(neg) ((neg) ? CILEN_CBCP: 0)
return (LENCISHORT(go->neg_mru && go->mru != PPP_DEFMRU) +
LENCILONG(go->neg_asyncmap && go->asyncmap != 0xFFFFFFFF) +
#if EAP_SUPPORT
LENCISHORT(go->neg_eap) +
#endif
#if CHAP_SUPPORT
#if EAP_SUPPORT
LENCICHAP(!go->neg_eap && go->neg_chap) +
#endif
#if !EAP_SUPPORT
LENCICHAP(go->neg_chap) +
#endif
#endif
#if PAP_SUPPORT
#if EAP_SUPPORT && CHAP_SUPPORT
LENCISHORT(!go->neg_eap && !go->neg_chap && go->neg_upap) +
#endif
#if EAP_SUPPORT && !CHAP_SUPPORT
LENCISHORT(!go->neg_eap && go->neg_upap) +
#endif
#if !EAP_SUPPORT && CHAP_SUPPORT
LENCISHORT(!go->neg_chap && go->neg_upap) +
#endif
#if !EAP_SUPPORT && !CHAP_SUPPORT
LENCISHORT(go->neg_upap) +
#endif
#endif
#if LQR_SUPPORT
LENCILQR(go->neg_lqr) +
#endif
LENCICBCP(go->neg_cbcp) +
LENCILONG(go->neg_magicnumber) +
LENCIVOID(go->neg_pcompression) +
LENCIVOID(go->neg_accompression) +
#ifdef HAVE_MULTILINK
LENCISHORT(go->neg_mrru) +
#endif
LENCIVOID(go->neg_ssnhf) +
(go->neg_endpoint? CILEN_CHAR + go->endpoint.length: 0));
}
static void lcp_addci(fsm *f, u_char *ucp, int *lenp) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u_char *start_ucp = ucp;
#define ADDCIVOID(opt, neg) \
if (neg) { \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_VOID, ucp); \
}
#define ADDCISHORT(opt, neg, val) \
if (neg) { \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_SHORT, ucp); \
PUTSHORT(val, ucp); \
}
#if CHAP_SUPPORT
#define ADDCICHAP(opt, neg, val) \
if (neg) { \
PUTCHAR((opt), ucp); \
PUTCHAR(CILEN_CHAP, ucp); \
PUTSHORT(PPP_CHAP, ucp); \
PUTCHAR((CHAP_DIGEST(val)), ucp); \
}
#endif
#define ADDCILONG(opt, neg, val) \
if (neg) { \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_LONG, ucp); \
PUTLONG(val, ucp); \
}
#if LQR_SUPPORT
#define ADDCILQR(opt, neg, val) \
if (neg) { \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_LQR, ucp); \
PUTSHORT(PPP_LQR, ucp); \
PUTLONG(val, ucp); \
}
#endif
#define ADDCICHAR(opt, neg, val) \
if (neg) { \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_CHAR, ucp); \
PUTCHAR(val, ucp); \
}
#define ADDCIENDP(opt, neg, class, val, len) \
if (neg) { \
int i; \
PUTCHAR(opt, ucp); \
PUTCHAR(CILEN_CHAR + len, ucp); \
PUTCHAR(class, ucp); \
for (i = 0; i < len; ++i) \
PUTCHAR(val[i], ucp); \
}
ADDCISHORT(CI_MRU, go->neg_mru && go->mru != PPP_DEFMRU, go->mru);
ADDCILONG(CI_ASYNCMAP, go->neg_asyncmap && go->asyncmap != 0xFFFFFFFF,
go->asyncmap);
#if EAP_SUPPORT
ADDCISHORT(CI_AUTHTYPE, go->neg_eap, PPP_EAP);
#endif
#if CHAP_SUPPORT
#if EAP_SUPPORT
ADDCICHAP(CI_AUTHTYPE, !go->neg_eap && go->neg_chap, go->chap_mdtype);
#endif
#if !EAP_SUPPORT
ADDCICHAP(CI_AUTHTYPE, go->neg_chap, go->chap_mdtype);
#endif
#endif
#if PAP_SUPPORT
#if EAP_SUPPORT && CHAP_SUPPORT
ADDCISHORT(CI_AUTHTYPE, !go->neg_eap && !go->neg_chap && go->neg_upap, PPP_PAP);
#endif
#if EAP_SUPPORT && !CHAP_SUPPORT
ADDCISHORT(CI_AUTHTYPE, !go->neg_eap && go->neg_upap, PPP_PAP);
#endif
#if !EAP_SUPPORT && CHAP_SUPPORT
ADDCISHORT(CI_AUTHTYPE, !go->neg_chap && go->neg_upap, PPP_PAP);
#endif
#if !EAP_SUPPORT && !CHAP_SUPPORT
ADDCISHORT(CI_AUTHTYPE, go->neg_upap, PPP_PAP);
#endif
#endif
#if LQR_SUPPORT
ADDCILQR(CI_QUALITY, go->neg_lqr, go->lqr_period);
#endif
ADDCICHAR(CI_CALLBACK, go->neg_cbcp, CBCP_OPT);
ADDCILONG(CI_MAGICNUMBER, go->neg_magicnumber, go->magicnumber);
ADDCIVOID(CI_PCOMPRESSION, go->neg_pcompression);
ADDCIVOID(CI_ACCOMPRESSION, go->neg_accompression);
#ifdef HAVE_MULTILINK
ADDCISHORT(CI_MRRU, go->neg_mrru, go->mrru);
#endif
ADDCIVOID(CI_SSNHF, go->neg_ssnhf);
ADDCIENDP(CI_EPDISC, go->neg_endpoint, go->endpoint.class_,
go->endpoint.value, go->endpoint.length);
if (ucp - start_ucp != *lenp) {
ppp_error(("Bug in lcp_addci: wrong length"));
}
}
static int lcp_ackci(fsm *f, u_char *p, int len) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u_char cilen, citype, cichar;
u_short cishort;
u32_t cilong;
#define ACKCIVOID(opt, neg) \
if (neg) { \
if ((len -= CILEN_VOID) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_VOID || \
citype != opt) \
goto bad; \
}
#define ACKCISHORT(opt, neg, val) \
if (neg) { \
if ((len -= CILEN_SHORT) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_SHORT || \
citype != opt) \
goto bad; \
GETSHORT(cishort, p); \
if (cishort != val) \
goto bad; \
}
#define ACKCICHAR(opt, neg, val) \
if (neg) { \
if ((len -= CILEN_CHAR) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_CHAR || \
citype != opt) \
goto bad; \
GETCHAR(cichar, p); \
if (cichar != val) \
goto bad; \
}
#if CHAP_SUPPORT
#define ACKCICHAP(opt, neg, val) \
if (neg) { \
if ((len -= CILEN_CHAP) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_CHAP || \
citype != (opt)) \
goto bad; \
GETSHORT(cishort, p); \
if (cishort != PPP_CHAP) \
goto bad; \
GETCHAR(cichar, p); \
if (cichar != (CHAP_DIGEST(val))) \
goto bad; \
}
#endif
#define ACKCILONG(opt, neg, val) \
if (neg) { \
if ((len -= CILEN_LONG) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_LONG || \
citype != opt) \
goto bad; \
GETLONG(cilong, p); \
if (cilong != val) \
goto bad; \
}
#if LQR_SUPPORT
#define ACKCILQR(opt, neg, val) \
if (neg) { \
if ((len -= CILEN_LQR) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_LQR || \
citype != opt) \
goto bad; \
GETSHORT(cishort, p); \
if (cishort != PPP_LQR) \
goto bad; \
GETLONG(cilong, p); \
if (cilong != val) \
goto bad; \
}
#endif
#define ACKCIENDP(opt, neg, class, val, vlen) \
if (neg) { \
int i; \
if ((len -= CILEN_CHAR + vlen) < 0) \
goto bad; \
GETCHAR(citype, p); \
GETCHAR(cilen, p); \
if (cilen != CILEN_CHAR + vlen || \
citype != opt) \
goto bad; \
GETCHAR(cichar, p); \
if (cichar != class) \
goto bad; \
for (i = 0; i < vlen; ++i) { \
GETCHAR(cichar, p); \
if (cichar != val[i]) \
goto bad; \
} \
}
ACKCISHORT(CI_MRU, go->neg_mru && go->mru != PPP_DEFMRU, go->mru);
ACKCILONG(CI_ASYNCMAP, go->neg_asyncmap && go->asyncmap != 0xFFFFFFFF,
go->asyncmap);
#if EAP_SUPPORT
ACKCISHORT(CI_AUTHTYPE, go->neg_eap, PPP_EAP);
#endif
#if CHAP_SUPPORT
#if EAP_SUPPORT
ACKCICHAP(CI_AUTHTYPE, !go->neg_eap && go->neg_chap, go->chap_mdtype);
#endif
#if !EAP_SUPPORT
ACKCICHAP(CI_AUTHTYPE, go->neg_chap, go->chap_mdtype);
#endif
#endif
#if PAP_SUPPORT
#if EAP_SUPPORT && CHAP_SUPPORT
ACKCISHORT(CI_AUTHTYPE, !go->neg_eap && !go->neg_chap && go->neg_upap, PPP_PAP);
#endif
#if EAP_SUPPORT && !CHAP_SUPPORT
ACKCISHORT(CI_AUTHTYPE, !go->neg_eap && go->neg_upap, PPP_PAP);
#endif
#if !EAP_SUPPORT && CHAP_SUPPORT
ACKCISHORT(CI_AUTHTYPE, !go->neg_chap && go->neg_upap, PPP_PAP);
#endif
#if !EAP_SUPPORT && !CHAP_SUPPORT
ACKCISHORT(CI_AUTHTYPE, go->neg_upap, PPP_PAP);
#endif
#endif
#if LQR_SUPPORT
ACKCILQR(CI_QUALITY, go->neg_lqr, go->lqr_period);
#endif
ACKCICHAR(CI_CALLBACK, go->neg_cbcp, CBCP_OPT);
ACKCILONG(CI_MAGICNUMBER, go->neg_magicnumber, go->magicnumber);
ACKCIVOID(CI_PCOMPRESSION, go->neg_pcompression);
ACKCIVOID(CI_ACCOMPRESSION, go->neg_accompression);
#ifdef HAVE_MULTILINK
ACKCISHORT(CI_MRRU, go->neg_mrru, go->mrru);
#endif
ACKCIVOID(CI_SSNHF, go->neg_ssnhf);
ACKCIENDP(CI_EPDISC, go->neg_endpoint, go->endpoint.class_,
go->endpoint.value, go->endpoint.length);
if (len != 0)
goto bad;
return (1);
bad:
LCPDEBUG(("lcp_acki: received bad Ack!"));
return (0);
}
static int lcp_nakci(fsm *f, u_char *p, int len, int treat_as_reject) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
lcp_options *wo = &pcb->lcp_wantoptions;
u_char citype, cichar, *next;
u_short cishort;
u32_t cilong;
lcp_options no;
lcp_options try_;
int looped_back = 0;
int cilen;
BZERO(&no, sizeof(no));
try_ = *go;
#define NAKCIVOID(opt, neg) \
if (go->neg && \
len >= CILEN_VOID && \
p[1] == CILEN_VOID && \
p[0] == opt) { \
len -= CILEN_VOID; \
INCPTR(CILEN_VOID, p); \
no.neg = 1; \
try_.neg = 0; \
}
#if CHAP_SUPPORT
#define NAKCICHAP(opt, neg, code) \
if (go->neg && \
len >= CILEN_CHAP && \
p[1] == CILEN_CHAP && \
p[0] == opt) { \
len -= CILEN_CHAP; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETCHAR(cichar, p); \
no.neg = 1; \
code \
}
#endif
#define NAKCICHAR(opt, neg, code) \
if (go->neg && \
len >= CILEN_CHAR && \
p[1] == CILEN_CHAR && \
p[0] == opt) { \
len -= CILEN_CHAR; \
INCPTR(2, p); \
GETCHAR(cichar, p); \
no.neg = 1; \
code \
}
#define NAKCISHORT(opt, neg, code) \
if (go->neg && \
len >= CILEN_SHORT && \
p[1] == CILEN_SHORT && \
p[0] == opt) { \
len -= CILEN_SHORT; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
no.neg = 1; \
code \
}
#define NAKCILONG(opt, neg, code) \
if (go->neg && \
len >= CILEN_LONG && \
p[1] == CILEN_LONG && \
p[0] == opt) { \
len -= CILEN_LONG; \
INCPTR(2, p); \
GETLONG(cilong, p); \
no.neg = 1; \
code \
}
#if LQR_SUPPORT
#define NAKCILQR(opt, neg, code) \
if (go->neg && \
len >= CILEN_LQR && \
p[1] == CILEN_LQR && \
p[0] == opt) { \
len -= CILEN_LQR; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETLONG(cilong, p); \
no.neg = 1; \
code \
}
#endif
#define NAKCIENDP(opt, neg) \
if (go->neg && \
len >= CILEN_CHAR && \
p[0] == opt && \
p[1] >= CILEN_CHAR && \
p[1] <= len) { \
len -= p[1]; \
INCPTR(p[1], p); \
no.neg = 1; \
try_.neg = 0; \
}
if (go->neg_mru && go->mru != PPP_DEFMRU) {
NAKCISHORT(CI_MRU, neg_mru,
if (cishort <= wo->mru || cishort <= PPP_DEFMRU)
try_.mru = cishort;
);
}
if (go->neg_asyncmap && go->asyncmap != 0xFFFFFFFF) {
NAKCILONG(CI_ASYNCMAP, neg_asyncmap,
try_.asyncmap = go->asyncmap | cilong;
);
}
if ((0
#if CHAP_SUPPORT
|| go->neg_chap
#endif
#if PAP_SUPPORT
|| go->neg_upap
#endif
#if EAP_SUPPORT
|| go->neg_eap
#endif
)
&& len >= CILEN_SHORT
&& p[0] == CI_AUTHTYPE && p[1] >= CILEN_SHORT && p[1] <= len) {
cilen = p[1];
len -= cilen;
#if CHAP_SUPPORT
no.neg_chap = go->neg_chap;
#endif
#if PAP_SUPPORT
no.neg_upap = go->neg_upap;
#endif
#if EAP_SUPPORT
no.neg_eap = go->neg_eap;
#endif
INCPTR(2, p);
GETSHORT(cishort, p);
#if PAP_SUPPORT
if (cishort == PPP_PAP && cilen == CILEN_SHORT) {
#if EAP_SUPPORT
if (go->neg_eap)
try_.neg_eap = 0;
else
#endif
#if CHAP_SUPPORT
if (go->neg_chap)
try_.neg_chap = 0;
else
#endif
goto bad;
} else
#endif
#if CHAP_SUPPORT
if (cishort == PPP_CHAP && cilen == CILEN_CHAP) {
GETCHAR(cichar, p);
#if EAP_SUPPORT
if (go->neg_eap) {
try_.neg_eap = 0;
if (CHAP_CANDIGEST(go->chap_mdtype, cichar))
try_.chap_mdtype = CHAP_MDTYPE_D(cichar);
} else
#endif
if (go->neg_chap) {
if (cichar != CHAP_DIGEST(go->chap_mdtype)) {
if (CHAP_CANDIGEST(go->chap_mdtype, cichar)) {
try_.chap_mdtype = CHAP_MDTYPE_D(cichar);
} else {
try_.chap_mdtype &= ~(CHAP_MDTYPE(try_.chap_mdtype));
if (try_.chap_mdtype == MDTYPE_NONE)
try_.neg_chap = 0;
}
} else {
goto bad;
}
} else {
#if PAP_SUPPORT
try_.neg_upap = 0;
#endif
}
} else
#endif
{
#if EAP_SUPPORT
if (cishort == PPP_EAP && cilen == CILEN_SHORT && go->neg_eap)
ppp_dbglog(("Unexpected Conf-Nak for EAP"));
if (go->neg_eap)
try_.neg_eap = 0;
else
#endif
#if CHAP_SUPPORT
if (go->neg_chap)
try_.neg_chap = 0;
else
#endif
#if PAP_SUPPORT
if(1)
try_.neg_upap = 0;
else
#endif
{}
p += cilen - CILEN_SHORT;
}
}
#if LQR_SUPPORT
NAKCILQR(CI_QUALITY, neg_lqr,
if (cishort != PPP_LQR)
try_.neg_lqr = 0;
else
try_.lqr_period = cilong;
);
#endif
NAKCICHAR(CI_CALLBACK, neg_cbcp,
try_.neg_cbcp = 0;
(void)cichar;
);
NAKCILONG(CI_MAGICNUMBER, neg_magicnumber,
try_.magicnumber = magic();
looped_back = 1;
);
NAKCIVOID(CI_PCOMPRESSION, neg_pcompression);
NAKCIVOID(CI_ACCOMPRESSION, neg_accompression);
#ifdef HAVE_MULTILINK
if (go->neg_mrru) {
NAKCISHORT(CI_MRRU, neg_mrru,
if (treat_as_reject)
try_.neg_mrru = 0;
else if (cishort <= wo->mrru)
try_.mrru = cishort;
);
}
#else
LWIP_UNUSED_ARG(treat_as_reject);
#endif
NAKCIVOID(CI_SSNHF, neg_ssnhf);
NAKCIENDP(CI_EPDISC, neg_endpoint);
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) {
case CI_MRU:
if ((go->neg_mru && go->mru != PPP_DEFMRU)
|| no.neg_mru || cilen != CILEN_SHORT)
goto bad;
GETSHORT(cishort, p);
if (cishort < PPP_DEFMRU) {
try_.neg_mru = 1;
try_.mru = cishort;
}
break;
case CI_ASYNCMAP:
if ((go->neg_asyncmap && go->asyncmap != 0xFFFFFFFF)
|| no.neg_asyncmap || cilen != CILEN_LONG)
goto bad;
break;
case CI_AUTHTYPE:
if ((0
#if CHAP_SUPPORT
|| go->neg_chap || no.neg_chap
#endif
#if PAP_SUPPORT
|| go->neg_upap || no.neg_upap
#endif
#if EAP_SUPPORT
|| go->neg_eap || no.neg_eap
#endif
))
goto bad;
break;
case CI_MAGICNUMBER:
if (go->neg_magicnumber || no.neg_magicnumber ||
cilen != CILEN_LONG)
goto bad;
break;
case CI_PCOMPRESSION:
if (go->neg_pcompression || no.neg_pcompression
|| cilen != CILEN_VOID)
goto bad;
break;
case CI_ACCOMPRESSION:
if (go->neg_accompression || no.neg_accompression
|| cilen != CILEN_VOID)
goto bad;
break;
#if LQR_SUPPORT
case CI_QUALITY:
if (go->neg_lqr || no.neg_lqr || cilen != CILEN_LQR)
goto bad;
break;
#endif
#ifdef HAVE_MULTILINK
case CI_MRRU:
if (go->neg_mrru || no.neg_mrru || cilen != CILEN_SHORT)
goto bad;
break;
#endif
case CI_SSNHF:
if (go->neg_ssnhf || no.neg_ssnhf || cilen != CILEN_VOID)
goto bad;
try_.neg_ssnhf = 1;
break;
case CI_EPDISC:
if (go->neg_endpoint || no.neg_endpoint || cilen < CILEN_CHAR)
goto bad;
break;
default:
break;
}
p = next;
}
if (f->state != PPP_FSM_OPENED) {
if (looped_back) {
if (++try_.numloops >= pcb->settings.lcp_loopbackfail) {
ppp_notice(("Serial line is looped back."));
pcb->err_code = PPPERR_LOOPBACK;
lcp_close(f->pcb, "Loopback detected");
}
} else
try_.numloops = 0;
*go = try_;
}
return 1;
bad:
LCPDEBUG(("lcp_nakci: received bad Nak!"));
return 0;
}
static int lcp_rejci(fsm *f, u_char *p, int len) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u_char cichar;
u_short cishort;
u32_t cilong;
lcp_options try_;
try_ = *go;
#define REJCIVOID(opt, neg) \
if (go->neg && \
len >= CILEN_VOID && \
p[1] == CILEN_VOID && \
p[0] == opt) { \
len -= CILEN_VOID; \
INCPTR(CILEN_VOID, p); \
try_.neg = 0; \
}
#define REJCISHORT(opt, neg, val) \
if (go->neg && \
len >= CILEN_SHORT && \
p[1] == CILEN_SHORT && \
p[0] == opt) { \
len -= CILEN_SHORT; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
\
if (cishort != val) \
goto bad; \
try_.neg = 0; \
}
#if CHAP_SUPPORT && EAP_SUPPORT && PAP_SUPPORT
#define REJCICHAP(opt, neg, val) \
if (go->neg && \
len >= CILEN_CHAP && \
p[1] == CILEN_CHAP && \
p[0] == opt) { \
len -= CILEN_CHAP; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETCHAR(cichar, p); \
\
if ((cishort != PPP_CHAP) || (cichar != (CHAP_DIGEST(val)))) \
goto bad; \
try_.neg = 0; \
try_.neg_eap = try_.neg_upap = 0; \
}
#endif
#if CHAP_SUPPORT && !EAP_SUPPORT && PAP_SUPPORT
#define REJCICHAP(opt, neg, val) \
if (go->neg && \
len >= CILEN_CHAP && \
p[1] == CILEN_CHAP && \
p[0] == opt) { \
len -= CILEN_CHAP; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETCHAR(cichar, p); \
\
if ((cishort != PPP_CHAP) || (cichar != (CHAP_DIGEST(val)))) \
goto bad; \
try_.neg = 0; \
try_.neg_upap = 0; \
}
#endif
#if CHAP_SUPPORT && EAP_SUPPORT && !PAP_SUPPORT
#define REJCICHAP(opt, neg, val) \
if (go->neg && \
len >= CILEN_CHAP && \
p[1] == CILEN_CHAP && \
p[0] == opt) { \
len -= CILEN_CHAP; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETCHAR(cichar, p); \
\
if ((cishort != PPP_CHAP) || (cichar != (CHAP_DIGEST(val)))) \
goto bad; \
try_.neg = 0; \
try_.neg_eap = 0; \
}
#endif
#if CHAP_SUPPORT && !EAP_SUPPORT && !PAP_SUPPORT
#define REJCICHAP(opt, neg, val) \
if (go->neg && \
len >= CILEN_CHAP && \
p[1] == CILEN_CHAP && \
p[0] == opt) { \
len -= CILEN_CHAP; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETCHAR(cichar, p); \
\
if ((cishort != PPP_CHAP) || (cichar != (CHAP_DIGEST(val)))) \
goto bad; \
try_.neg = 0; \
}
#endif
#define REJCILONG(opt, neg, val) \
if (go->neg && \
len >= CILEN_LONG && \
p[1] == CILEN_LONG && \
p[0] == opt) { \
len -= CILEN_LONG; \
INCPTR(2, p); \
GETLONG(cilong, p); \
\
if (cilong != val) \
goto bad; \
try_.neg = 0; \
}
#if LQR_SUPPORT
#define REJCILQR(opt, neg, val) \
if (go->neg && \
len >= CILEN_LQR && \
p[1] == CILEN_LQR && \
p[0] == opt) { \
len -= CILEN_LQR; \
INCPTR(2, p); \
GETSHORT(cishort, p); \
GETLONG(cilong, p); \
\
if (cishort != PPP_LQR || cilong != val) \
goto bad; \
try_.neg = 0; \
}
#endif
#define REJCICBCP(opt, neg, val) \
if (go->neg && \
len >= CILEN_CBCP && \
p[1] == CILEN_CBCP && \
p[0] == opt) { \
len -= CILEN_CBCP; \
INCPTR(2, p); \
GETCHAR(cichar, p); \
\
if (cichar != val) \
goto bad; \
try_.neg = 0; \
}
#define REJCIENDP(opt, neg, class, val, vlen) \
if (go->neg && \
len >= CILEN_CHAR + vlen && \
p[0] == opt && \
p[1] == CILEN_CHAR + vlen) { \
int i; \
len -= CILEN_CHAR + vlen; \
INCPTR(2, p); \
GETCHAR(cichar, p); \
if (cichar != class) \
goto bad; \
for (i = 0; i < vlen; ++i) { \
GETCHAR(cichar, p); \
if (cichar != val[i]) \
goto bad; \
} \
try_.neg = 0; \
}
REJCISHORT(CI_MRU, neg_mru, go->mru);
REJCILONG(CI_ASYNCMAP, neg_asyncmap, go->asyncmap);
#if EAP_SUPPORT
REJCISHORT(CI_AUTHTYPE, neg_eap, PPP_EAP);
if (!go->neg_eap) {
#endif
#if CHAP_SUPPORT
REJCICHAP(CI_AUTHTYPE, neg_chap, go->chap_mdtype);
if (!go->neg_chap) {
#endif
#if PAP_SUPPORT
REJCISHORT(CI_AUTHTYPE, neg_upap, PPP_PAP);
#endif
#if CHAP_SUPPORT
}
#endif
#if EAP_SUPPORT
}
#endif
#if LQR_SUPPORT
REJCILQR(CI_QUALITY, neg_lqr, go->lqr_period);
#endif
REJCICBCP(CI_CALLBACK, neg_cbcp, CBCP_OPT);
REJCILONG(CI_MAGICNUMBER, neg_magicnumber, go->magicnumber);
REJCIVOID(CI_PCOMPRESSION, neg_pcompression);
REJCIVOID(CI_ACCOMPRESSION, neg_accompression);
#ifdef HAVE_MULTILINK
REJCISHORT(CI_MRRU, neg_mrru, go->mrru);
#endif
REJCIVOID(CI_SSNHF, neg_ssnhf);
REJCIENDP(CI_EPDISC, neg_endpoint, go->endpoint.class_,
go->endpoint.value, go->endpoint.length);
if (len != 0)
goto bad;
if (f->state != PPP_FSM_OPENED)
*go = try_;
return 1;
bad:
LCPDEBUG(("lcp_rejci: received bad Reject!"));
return 0;
}
static int lcp_reqci(fsm *f, u_char *inp, int *lenp, int reject_if_disagree) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
lcp_options *ho = &pcb->lcp_hisoptions;
lcp_options *ao = &pcb->lcp_allowoptions;
u_char *cip, *next;
int cilen, citype, cichar;
u_short cishort;
u32_t cilong;
int rc = CONFACK;
int orc;
u_char *p;
u_char *rejp;
struct pbuf *nakp;
u_char *nakoutp;
int l = *lenp;
BZERO(ho, sizeof(*ho));
next = inp;
nakp = pbuf_alloc(PBUF_RAW, (u16_t)(PPP_CTRL_PBUF_UNKNOWN_SIZE), PBUF_RAM);
if(NULL == nakp)
return 0;
if(nakp->tot_len != nakp->len) {
pbuf_free(nakp);
return 0;
}
nakoutp = (u_char*)nakp->payload;
rejp = inp;
while (l) {
orc = CONFACK;
cip = p = next;
if (l < 2 ||
p[1] < 2 ||
p[1] > l) {
LCPDEBUG(("lcp_reqci: bad CI length!"));
orc = CONFREJ;
cilen = l;
l = 0;
citype = 0;
goto endswitch;
}
GETCHAR(citype, p);
GETCHAR(cilen, p);
l -= cilen;
next += cilen;
switch (citype) {
case CI_MRU:
if (!ao->neg_mru ||
cilen != CILEN_SHORT) {
orc = CONFREJ;
break;
}
GETSHORT(cishort, p);
if (cishort < PPP_MINMRU) {
orc = CONFNAK;
PUTCHAR(CI_MRU, nakoutp);
PUTCHAR(CILEN_SHORT, nakoutp);
PUTSHORT(PPP_MINMRU, nakoutp);
break;
}
ho->neg_mru = 1;
ho->mru = cishort;
break;
case CI_ASYNCMAP:
if (!ao->neg_asyncmap ||
cilen != CILEN_LONG) {
orc = CONFREJ;
break;
}
GETLONG(cilong, p);
if ((ao->asyncmap & ~cilong) != 0) {
orc = CONFNAK;
PUTCHAR(CI_ASYNCMAP, nakoutp);
PUTCHAR(CILEN_LONG, nakoutp);
PUTLONG(ao->asyncmap | cilong, nakoutp);
break;
}
ho->neg_asyncmap = 1;
ho->asyncmap = cilong;
break;
case CI_AUTHTYPE:
if (cilen < CILEN_SHORT ||
!(0
#if PAP_SUPPORT
|| ao->neg_upap
#endif
#if CHAP_SUPPORT
|| ao->neg_chap
#endif
#if EAP_SUPPORT
|| ao->neg_eap
#endif
)) {
ppp_dbglog(("No auth is possible"));
orc = CONFREJ;
break;
}
GETSHORT(cishort, p);
#if PAP_SUPPORT
if (cishort == PPP_PAP) {
if (0
#if CHAP_SUPPORT
|| ho->neg_chap
#endif
#if EAP_SUPPORT
|| ho->neg_eap
#endif
|| cilen != CILEN_SHORT) {
LCPDEBUG(("lcp_reqci: rcvd AUTHTYPE PAP, rejecting..."));
orc = CONFREJ;
break;
}
if (!ao->neg_upap) {
orc = CONFNAK;
PUTCHAR(CI_AUTHTYPE, nakoutp);
#if EAP_SUPPORT
if (ao->neg_eap) {
PUTCHAR(CILEN_SHORT, nakoutp);
PUTSHORT(PPP_EAP, nakoutp);
} else {
#endif
#if CHAP_SUPPORT
PUTCHAR(CILEN_CHAP, nakoutp);
PUTSHORT(PPP_CHAP, nakoutp);
PUTCHAR(CHAP_DIGEST(ao->chap_mdtype), nakoutp);
#endif
#if EAP_SUPPORT
}
#endif
break;
}
ho->neg_upap = 1;
break;
}
#endif
#if CHAP_SUPPORT
if (cishort == PPP_CHAP) {
if (
#if PAP_SUPPORT
ho->neg_upap ||
#endif
#if EAP_SUPPORT
ho->neg_eap ||
#endif
cilen != CILEN_CHAP) {
LCPDEBUG(("lcp_reqci: rcvd AUTHTYPE CHAP, rejecting..."));
orc = CONFREJ;
break;
}
if (!ao->neg_chap) {
orc = CONFNAK;
PUTCHAR(CI_AUTHTYPE, nakoutp);
PUTCHAR(CILEN_SHORT, nakoutp);
#if EAP_SUPPORT
if (ao->neg_eap) {
PUTSHORT(PPP_EAP, nakoutp);
} else
#endif
#if PAP_SUPPORT
if(1) {
PUTSHORT(PPP_PAP, nakoutp);
}
else
#endif
{}
break;
}
GETCHAR(cichar, p);
if (!(CHAP_CANDIGEST(ao->chap_mdtype, cichar))) {
orc = CONFNAK;
PUTCHAR(CI_AUTHTYPE, nakoutp);
PUTCHAR(CILEN_CHAP, nakoutp);
PUTSHORT(PPP_CHAP, nakoutp);
PUTCHAR(CHAP_DIGEST(ao->chap_mdtype), nakoutp);
break;
}
ho->chap_mdtype = CHAP_MDTYPE_D(cichar);
ho->neg_chap = 1;
break;
}
#endif
#if EAP_SUPPORT
if (cishort == PPP_EAP) {
if (
#if CHAP_SUPPORT
ho->neg_chap ||
#endif
#if PAP_SUPPORT
ho->neg_upap ||
#endif
cilen != CILEN_SHORT) {
LCPDEBUG(("lcp_reqci: rcvd AUTHTYPE EAP, rejecting..."));
orc = CONFREJ;
break;
}
if (!ao->neg_eap) {
orc = CONFNAK;
PUTCHAR(CI_AUTHTYPE, nakoutp);
#if CHAP_SUPPORT
if (ao->neg_chap) {
PUTCHAR(CILEN_CHAP, nakoutp);
PUTSHORT(PPP_CHAP, nakoutp);
PUTCHAR(CHAP_DIGEST(ao->chap_mdtype), nakoutp);
} else
#endif
#if PAP_SUPPORT
if(1) {
PUTCHAR(CILEN_SHORT, nakoutp);
PUTSHORT(PPP_PAP, nakoutp);
} else
#endif
{}
break;
}
ho->neg_eap = 1;
break;
}
#endif
orc = CONFNAK;
PUTCHAR(CI_AUTHTYPE, nakoutp);
#if EAP_SUPPORT
if (ao->neg_eap) {
PUTCHAR(CILEN_SHORT, nakoutp);
PUTSHORT(PPP_EAP, nakoutp);
} else
#endif
#if CHAP_SUPPORT
if (ao->neg_chap) {
PUTCHAR(CILEN_CHAP, nakoutp);
PUTSHORT(PPP_CHAP, nakoutp);
PUTCHAR(CHAP_DIGEST(ao->chap_mdtype), nakoutp);
} else
#endif
#if PAP_SUPPORT
if(1) {
PUTCHAR(CILEN_SHORT, nakoutp);
PUTSHORT(PPP_PAP, nakoutp);
} else
#endif
{}
break;
#if LQR_SUPPORT
case CI_QUALITY:
if (!ao->neg_lqr ||
cilen != CILEN_LQR) {
orc = CONFREJ;
break;
}
GETSHORT(cishort, p);
GETLONG(cilong, p);
if (cishort != PPP_LQR) {
orc = CONFNAK;
PUTCHAR(CI_QUALITY, nakoutp);
PUTCHAR(CILEN_LQR, nakoutp);
PUTSHORT(PPP_LQR, nakoutp);
PUTLONG(ao->lqr_period, nakoutp);
break;
}
break;
#endif
case CI_MAGICNUMBER:
if (!(ao->neg_magicnumber || go->neg_magicnumber) ||
cilen != CILEN_LONG) {
orc = CONFREJ;
break;
}
GETLONG(cilong, p);
if (go->neg_magicnumber &&
cilong == go->magicnumber) {
cilong = magic();
orc = CONFNAK;
PUTCHAR(CI_MAGICNUMBER, nakoutp);
PUTCHAR(CILEN_LONG, nakoutp);
PUTLONG(cilong, nakoutp);
break;
}
ho->neg_magicnumber = 1;
ho->magicnumber = cilong;
break;
case CI_PCOMPRESSION:
if (!ao->neg_pcompression ||
cilen != CILEN_VOID) {
orc = CONFREJ;
break;
}
ho->neg_pcompression = 1;
break;
case CI_ACCOMPRESSION:
if (!ao->neg_accompression ||
cilen != CILEN_VOID) {
orc = CONFREJ;
break;
}
ho->neg_accompression = 1;
break;
#ifdef HAVE_MULTILINK
case CI_MRRU:
if (!ao->neg_mrru
|| !multilink
|| cilen != CILEN_SHORT) {
orc = CONFREJ;
break;
}
GETSHORT(cishort, p);
ho->neg_mrru = 1;
ho->mrru = cishort;
break;
#endif
case CI_SSNHF:
if (!ao->neg_ssnhf
#ifdef HAVE_MULTILINK
|| !multilink
#endif
|| cilen != CILEN_VOID) {
orc = CONFREJ;
break;
}
ho->neg_ssnhf = 1;
break;
case CI_EPDISC:
if (!ao->neg_endpoint ||
cilen < CILEN_CHAR ||
cilen > CILEN_CHAR + MAX_ENDP_LEN) {
orc = CONFREJ;
break;
}
GETCHAR(cichar, p);
cilen -= CILEN_CHAR;
ho->neg_endpoint = 1;
ho->endpoint.class_ = cichar;
ho->endpoint.length = cilen;
MEMCPY(ho->endpoint.value, p, cilen);
INCPTR(cilen, p);
break;
default:
LCPDEBUG(("lcp_reqci: rcvd unknown option %d", citype));
orc = CONFREJ;
break;
}
endswitch:
if (orc == CONFACK &&
rc != CONFACK)
continue;
if (orc == CONFNAK) {
if (reject_if_disagree
&& citype != CI_MAGICNUMBER) {
orc = CONFREJ;
} else {
if (rc == CONFREJ)
continue;
rc = CONFNAK;
}
}
if (orc == CONFREJ) {
rc = CONFREJ;
if (cip != rejp)
MEMCPY(rejp, cip, cilen);
INCPTR(cilen, rejp);
}
}
switch (rc) {
case CONFACK:
*lenp = next - inp;
break;
case CONFNAK:
*lenp = nakoutp - (u_char*)nakp->payload;
MEMCPY(inp, nakp->payload, *lenp);
break;
case CONFREJ:
*lenp = rejp - inp;
break;
default:
break;
}
pbuf_free(nakp);
LCPDEBUG(("lcp_reqci: returning CONF%s.", CODENAME(rc)));
return (rc);
}
static void lcp_up(fsm *f) {
ppp_pcb *pcb = f->pcb;
lcp_options *wo = &pcb->lcp_wantoptions;
lcp_options *ho = &pcb->lcp_hisoptions;
lcp_options *go = &pcb->lcp_gotoptions;
lcp_options *ao = &pcb->lcp_allowoptions;
int mtu, mru;
if (!go->neg_magicnumber)
go->magicnumber = 0;
if (!ho->neg_magicnumber)
ho->magicnumber = 0;
mtu = ho->neg_mru? ho->mru: PPP_DEFMRU;
mru = go->neg_mru? LWIP_MAX(wo->mru, go->mru): PPP_DEFMRU;
#ifdef HAVE_MULTILINK
if (!(multilink && go->neg_mrru && ho->neg_mrru))
#endif
ppp_netif_set_mtu(pcb, LWIP_MIN(LWIP_MIN(mtu, mru), ao->mru));
ppp_send_config(pcb, mtu,
(ho->neg_asyncmap? ho->asyncmap: 0xffffffff),
ho->neg_pcompression, ho->neg_accompression);
ppp_recv_config(pcb, mru,
(pcb->settings.lax_recv? 0: go->neg_asyncmap? go->asyncmap: 0xffffffff),
go->neg_pcompression, go->neg_accompression);
if (ho->neg_mru)
pcb->peer_mru = ho->mru;
lcp_echo_lowerup(f->pcb);
link_established(pcb);
}
static void lcp_down(fsm *f) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
lcp_echo_lowerdown(f->pcb);
link_down(pcb);
ppp_send_config(pcb, PPP_DEFMRU, 0xffffffff, 0, 0);
ppp_recv_config(pcb, PPP_DEFMRU,
(go->neg_asyncmap? go->asyncmap: 0xffffffff),
go->neg_pcompression, go->neg_accompression);
pcb->peer_mru = PPP_DEFMRU;
}
static void lcp_starting(fsm *f) {
ppp_pcb *pcb = f->pcb;
link_required(pcb);
}
static void lcp_finished(fsm *f) {
ppp_pcb *pcb = f->pcb;
link_terminated(pcb);
}
#if PRINTPKT_SUPPORT
static const char* const lcp_codenames[] = {
"ConfReq", "ConfAck", "ConfNak", "ConfRej",
"TermReq", "TermAck", "CodeRej", "ProtRej",
"EchoReq", "EchoRep", "DiscReq", "Ident",
"TimeRem"
};
static int lcp_printpkt(const u_char *p, int plen,
void (*printer) (void *, const char *, ...), void *arg) {
int code, id, len, olen, i;
const u_char *pstart, *optend;
u_short cishort;
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(lcp_codenames))
printer(arg, " %s", lcp_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_MRU:
if (olen == CILEN_SHORT) {
p += 2;
GETSHORT(cishort, p);
printer(arg, "mru %d", cishort);
}
break;
case CI_ASYNCMAP:
if (olen == CILEN_LONG) {
p += 2;
GETLONG(cilong, p);
printer(arg, "asyncmap 0x%x", cilong);
}
break;
case CI_AUTHTYPE:
if (olen >= CILEN_SHORT) {
p += 2;
printer(arg, "auth ");
GETSHORT(cishort, p);
switch (cishort) {
#if PAP_SUPPORT
case PPP_PAP:
printer(arg, "pap");
break;
#endif
#if CHAP_SUPPORT
case PPP_CHAP:
printer(arg, "chap");
if (p < optend) {
switch (*p) {
case CHAP_MD5:
printer(arg, " MD5");
++p;
break;
#if MSCHAP_SUPPORT
case CHAP_MICROSOFT:
printer(arg, " MS");
++p;
break;
case CHAP_MICROSOFT_V2:
printer(arg, " MS-v2");
++p;
break;
#endif
default:
break;
}
}
break;
#endif
#if EAP_SUPPORT
case PPP_EAP:
printer(arg, "eap");
break;
#endif
default:
printer(arg, "0x%x", cishort);
}
}
break;
#if LQR_SUPPORT
case CI_QUALITY:
if (olen >= CILEN_SHORT) {
p += 2;
printer(arg, "quality ");
GETSHORT(cishort, p);
switch (cishort) {
case PPP_LQR:
printer(arg, "lqr");
break;
default:
printer(arg, "0x%x", cishort);
}
}
break;
#endif
case CI_CALLBACK:
if (olen >= CILEN_CHAR) {
p += 2;
printer(arg, "callback ");
GETCHAR(cishort, p);
switch (cishort) {
case CBCP_OPT:
printer(arg, "CBCP");
break;
default:
printer(arg, "0x%x", cishort);
}
}
break;
case CI_MAGICNUMBER:
if (olen == CILEN_LONG) {
p += 2;
GETLONG(cilong, p);
printer(arg, "magic 0x%x", cilong);
}
break;
case CI_PCOMPRESSION:
if (olen == CILEN_VOID) {
p += 2;
printer(arg, "pcomp");
}
break;
case CI_ACCOMPRESSION:
if (olen == CILEN_VOID) {
p += 2;
printer(arg, "accomp");
}
break;
case CI_MRRU:
if (olen == CILEN_SHORT) {
p += 2;
GETSHORT(cishort, p);
printer(arg, "mrru %d", cishort);
}
break;
case CI_SSNHF:
if (olen == CILEN_VOID) {
p += 2;
printer(arg, "ssnhf");
}
break;
case CI_EPDISC:
#ifdef HAVE_MULTILINK
if (olen >= CILEN_CHAR) {
struct epdisc epd;
p += 2;
GETCHAR(epd.class, p);
epd.length = olen - CILEN_CHAR;
if (epd.length > MAX_ENDP_LEN)
epd.length = MAX_ENDP_LEN;
if (epd.length > 0) {
MEMCPY(epd.value, p, epd.length);
p += epd.length;
}
printer(arg, "endpoint [%s]", epdisc_to_str(&epd));
}
#else
printer(arg, "endpoint");
#endif
break;
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;
case ECHOREQ:
case ECHOREP:
case DISCREQ:
if (len >= 4) {
GETLONG(cilong, p);
printer(arg, " magic=0x%x", cilong);
len -= 4;
}
break;
case IDENTIF:
case TIMEREM:
if (len >= 4) {
GETLONG(cilong, p);
printer(arg, " magic=0x%x", cilong);
len -= 4;
}
if (code == TIMEREM) {
if (len < 4)
break;
GETLONG(cilong, p);
printer(arg, " seconds=%u", cilong);
len -= 4;
}
if (len > 0) {
printer(arg, " ");
ppp_print_string(p, len, printer, arg);
p += len;
len = 0;
}
break;
default:
break;
}
for (i = 0; i < len && i < 32; ++i) {
GETCHAR(code, p);
printer(arg, " %.2x", code);
}
if (i < len) {
printer(arg, " ...");
p += len - i;
}
return p - pstart;
}
#endif
static void LcpLinkFailure(fsm *f) {
ppp_pcb *pcb = f->pcb;
if (f->state == PPP_FSM_OPENED) {
ppp_info(("No response to %d echo-requests", pcb->lcp_echos_pending));
ppp_notice(("Serial link appears to be disconnected."));
pcb->err_code = PPPERR_PEERDEAD;
lcp_close(pcb, "Peer not responding");
}
}
static void LcpEchoCheck(fsm *f) {
ppp_pcb *pcb = f->pcb;
LcpSendEchoRequest (f);
if (f->state != PPP_FSM_OPENED)
return;
if (pcb->lcp_echo_timer_running)
ppp_warn(("assertion lcp_echo_timer_running==0 failed"));
TIMEOUT (LcpEchoTimeout, f, pcb->settings.lcp_echo_interval);
pcb->lcp_echo_timer_running = 1;
}
static void LcpEchoTimeout(void *arg) {
fsm *f = (fsm*)arg;
ppp_pcb *pcb = f->pcb;
if (pcb->lcp_echo_timer_running != 0) {
pcb->lcp_echo_timer_running = 0;
LcpEchoCheck ((fsm *) arg);
}
}
static void lcp_received_echo_reply(fsm *f, int id, u_char *inp, int len) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u32_t magic_val;
LWIP_UNUSED_ARG(id);
if (len < 4) {
ppp_dbglog(("lcp: received short Echo-Reply, length %d", len));
return;
}
GETLONG(magic_val, inp);
if (go->neg_magicnumber
&& magic_val == go->magicnumber) {
ppp_warn(("appear to have received our own echo-reply!"));
return;
}
pcb->lcp_echos_pending = 0;
}
static void LcpSendEchoRequest(fsm *f) {
ppp_pcb *pcb = f->pcb;
lcp_options *go = &pcb->lcp_gotoptions;
u32_t lcp_magic;
u_char pkt[4], *pktp;
if (pcb->settings.lcp_echo_fails != 0) {
if (pcb->lcp_echos_pending >= pcb->settings.lcp_echo_fails) {
LcpLinkFailure(f);
pcb->lcp_echos_pending = 0;
}
}
#if PPP_LCP_ADAPTIVE
if (pcb->settings.lcp_echo_adaptive) {
static unsigned int last_pkts_in = 0;
#if PPP_STATS_SUPPORT
update_link_stats(f->unit);
link_stats_valid = 0;
#endif
if (link_stats.pkts_in != last_pkts_in) {
last_pkts_in = link_stats.pkts_in;
return;
}
}
#endif
if (f->state == PPP_FSM_OPENED) {
lcp_magic = go->magicnumber;
pktp = pkt;
PUTLONG(lcp_magic, pktp);
fsm_sdata(f, ECHOREQ, pcb->lcp_echo_number++, pkt, pktp - pkt);
++pcb->lcp_echos_pending;
}
}
static void lcp_echo_lowerup(ppp_pcb *pcb) {
fsm *f = &pcb->lcp_fsm;
pcb->lcp_echos_pending = 0;
pcb->lcp_echo_number = 0;
pcb->lcp_echo_timer_running = 0;
if (pcb->settings.lcp_echo_interval != 0)
LcpEchoCheck (f);
}
static void lcp_echo_lowerdown(ppp_pcb *pcb) {
fsm *f = &pcb->lcp_fsm;
if (pcb->lcp_echo_timer_running != 0) {
UNTIMEOUT (LcpEchoTimeout, f);
pcb->lcp_echo_timer_running = 0;
}
}
#endif