// L2TPNS PPP Stuff
-char const *cvs_id_ppp = "$Id: ppp.c,v 1.40 2005/01/05 13:50:30 bodea Exp $";
+char const *cvs_id_ppp = "$Id: ppp.c,v 1.39.2.2 2005/02/14 05:55:49 bodea Exp $";
#include <stdio.h>
#include <string.h>
char pass[129];
uint16_t hl;
- CSTAT(processpap);
+ CSTAT(call_processpap);
LOG_HEX(5, "PAP", p, l);
if (l < 4)
{
uint8_t *b = p;
b += 4;
+ user[0] = pass[0] = 0;
if (*b && *b < sizeof(user))
+ {
memcpy(user, b + 1, *b);
- user[*b] = 0;
- b += 1 + *b;
- if (*b && *b < sizeof(pass))
- memcpy(pass, b + 1, *b);
- pass[*b] = 0;
+ user[*b] = 0;
+ b += 1 + *b;
+ if (*b && *b < sizeof(pass))
+ {
+ memcpy(pass, b + 1, *b);
+ pass[*b] = 0;
+ }
+ }
LOG(3, s, t, "PAP login %s/%s\n", user, pass);
}
if (session[s].ip || !session[s].radius)
uint16_t r;
uint16_t hl;
- CSTAT(processchap);
+ CSTAT(call_processchap);
LOG_HEX(5, "CHAP", p, l);
r = session[s].radius;
radiussend(r, RADIUSAUTH);
}
+static char *ppp_lcp_types[] = {
+ NULL,
+ "ConfigReq",
+ "ConfigAck",
+ "ConfigNak",
+ "ConfigRej",
+ "TerminateReq",
+ "TerminateAck",
+ "CodeRej",
+ "ProtocolRej",
+ "EchoReq",
+ "EchoReply",
+ "DiscardRequest",
+ "IdentRequest",
+};
+
static void dumplcp(uint8_t *p, int l)
{
int x = l - 4;
uint8_t *o = (p + 4);
LOG_HEX(5, "PPP LCP Packet", p, l);
- LOG(4, 0, 0, "PPP LCP Packet type %d (%s len %d)\n", *p, ppp_lcp_type((int)*p), ntohs( ((uint16_t *) p)[1]) );
+ LOG(4, 0, 0, "PPP LCP Packet type %d (%s len %d)\n", *p, ppp_lcp_types[(int)*p], ntohs( ((uint16_t *) p)[1]) );
LOG(4, 0, 0, "Length: %d\n", l);
if (*p != ConfigReq && *p != ConfigRej && *p != ConfigAck)
return;
{
case 1: // Maximum-Receive-Unit
if (length == 4)
- LOG(4, 0, 0, " %s %d\n", lcp_type(type), ntohs(*(uint16_t *)(o + 2)));
+ LOG(4, 0, 0, " %s %d\n", lcp_types[type], ntohs(*(uint16_t *)(o + 2)));
else
- LOG(4, 0, 0, " %s odd length %d\n", lcp_type(type), length);
+ LOG(4, 0, 0, " %s odd length %d\n", lcp_types[type], length);
break;
case 2: // Async-Control-Character-Map
if (length == 6)
{
uint32_t asyncmap = ntohl(*(uint32_t *)(o + 2));
- LOG(4, 0, 0, " %s %x\n", lcp_type(type), asyncmap);
+ LOG(4, 0, 0, " %s %x\n", lcp_types[type], asyncmap);
}
else
- LOG(4, 0, 0, " %s odd length %d\n", lcp_type(type), length);
+ LOG(4, 0, 0, " %s odd length %d\n", lcp_types[type], length);
break;
case 3: // Authentication-Protocol
if (length == 4)
{
int proto = ntohs(*(uint16_t *)(o + 2));
- LOG(4, 0, 0, " %s 0x%x (%s)\n", lcp_type(type), proto,
+ LOG(4, 0, 0, " %s 0x%x (%s)\n", lcp_types[type], proto,
proto == PPPCHAP ? "CHAP" :
proto == PPPPAP ? "PAP" : "UNKNOWN");
}
else
- LOG(4, 0, 0, " %s odd length %d\n", lcp_type(type), length);
+ LOG(4, 0, 0, " %s odd length %d\n", lcp_types[type], length);
break;
case 4: // Quality-Protocol
{
uint32_t qp = ntohl(*(uint32_t *)(o + 2));
- LOG(4, 0, 0, " %s %x\n", lcp_type(type), qp);
+ LOG(4, 0, 0, " %s %x\n", lcp_types[type], qp);
}
break;
case 5: // Magic-Number
if (length == 6)
{
uint32_t magicno = ntohl(*(uint32_t *)(o + 2));
- LOG(4, 0, 0, " %s %x\n", lcp_type(type), magicno);
+ LOG(4, 0, 0, " %s %x\n", lcp_types[type], magicno);
}
else
- LOG(4, 0, 0, " %s odd length %d\n", lcp_type(type), length);
+ LOG(4, 0, 0, " %s odd length %d\n", lcp_types[type], length);
break;
case 7: // Protocol-Field-Compression
case 8: // Address-And-Control-Field-Compression
- LOG(4, 0, 0, " %s\n", lcp_type(type));
+ LOG(4, 0, 0, " %s\n", lcp_types[type]);
break;
default:
LOG(2, 0, 0, " Unknown PPP LCP Option type %d\n", type);
uint32_t magicno = 0;
uint16_t hl;
- CSTAT(processlcp);
+ CSTAT(call_processlcp);
LOG_HEX(5, "LCP", p, l);
if (l < 4)
*q = ConfigAck;
}
- LOG(3, s, t, "Sending %s\n", ppp_lcp_type(*response));
+ LOG(3, s, t, "Sending %s\n", ppp_lcp_types[*response]);
tunnelsend(b, l + (q - b), t);
if (!(session[s].flags & SF_LCP_ACKED))
{
uint16_t hl;
- CSTAT(processipcp);
+ CSTAT(call_processipcp);
LOG_HEX(5, "IPCP", p, l);
if (l < 5)
{
in_addr_t ip;
- CSTAT(processipin);
+ CSTAT(call_processipin);
LOG_HEX(5, "IP", p, l);
session[s].cin += l - 4;
session[s].total_cin += l - 4;
- sess_count[s].cin += l - 4;
+ sess_local[s].cin += l - 4;
session[s].pin++;
eth_tx += l - 4;
// Increment packet counters
session[s].cin += len - 4;
session[s].total_cin += len - 4;
- sess_count[s].cin += len - 4;
+ sess_local[s].cin += len - 4;
session[s].pin++;
eth_tx += len - 4;
uint8_t b[MAXCONTROL];
uint8_t *q;
- CSTAT(processccp);
+ CSTAT(call_processccp);
LOG_HEX(5, "CCP", p, l);
switch (l > 1 ? *p : 0)
uint16_t r = session[s].radius;
uint8_t *q;
- CSTAT(sendchap);
+ CSTAT(call_sendchap);
if (!r)
{
LOG(1, s, t, "No RADIUS to send challenge\n");
STAT(tunnel_tx_errors);
- return;
+ return ;
}
-
LOG(1, s, t, "Send CHAP challenge\n");
-
- // new challenge
- random_data(radius[r].auth, sizeof(radius[r].auth));
+ {
+ // new challenge
+ int n;
+ for (n = 0; n < 15; n++)
+ radius[r].auth[n] = rand();
+ }
radius[r].chap = 1; // CHAP not PAP
radius[r].id++;
if (radius[r].state != RADIUSCHAP)
radius[r].try = 0;
-
radius[r].state = RADIUSCHAP;
radius[r].retry = backoff(radius[r].try++);
if (radius[r].try > 5)