#define MAX_SEQNO 1073741824
+static void try_fix_mtu(node_t *n) {
+ if(n->mtuprobes > 30)
+ return;
+
+ if(n->mtuprobes == 30 || n->minmtu >= n->maxmtu) {
+ if(n->minmtu > n->maxmtu)
+ n->minmtu = n->maxmtu;
+ else
+ n->maxmtu = n->minmtu;
+ n->mtu = n->minmtu;
+ logger(DEBUG_TRAFFIC, LOG_INFO, "Fixing MTU of %s (%s) to %d after %d probes", n->name, n->hostname, n->mtu, n->mtuprobes);
+ n->mtuprobes = 31;
+ }
+}
+
static void udp_probe_timeout_handler(void *data) {
node_t *n = data;
if(!n->status.udp_confirmed)
if(probelen > n->maxmtu)
probelen = n->maxmtu;
- if(n->minmtu < probelen)
+ if(n->minmtu < probelen) {
n->minmtu = probelen;
+ try_fix_mtu(n);
+ }
/* Calculate RTT and bandwidth.
The RTT is the time between the MTU probe burst was sent and the first
n->maxmtu = origlen - 1;
if(n->mtu >= origlen)
n->mtu = origlen - 1;
+ try_fix_mtu(n);
} else
logger(DEBUG_TRAFFIC, LOG_WARNING, "Error sending packet to %s (%s): %s", n->name, n->hostname, sockstrerror(sockerrno));
}
relay->maxmtu = len - 1;
if(relay->mtu >= len)
relay->mtu = len - 1;
+ try_fix_mtu(relay);
} else {
logger(DEBUG_TRAFFIC, LOG_WARNING, "Error sending UDP SPTPS packet to %s (%s): %s", relay->name, relay->hostname, sockstrerror(sockerrno));
return false;
return;
}
- if(n->mtuprobes == 30 || (n->mtuprobes < 30 && n->minmtu >= n->maxmtu)) {
- if(n->minmtu > n->maxmtu)
- n->minmtu = n->maxmtu;
- else
- n->maxmtu = n->minmtu;
- n->mtu = n->minmtu;
- logger(DEBUG_TRAFFIC, LOG_INFO, "Fixing MTU of %s (%s) to %d after %d probes", n->name, n->hostname, n->mtu, n->mtuprobes);
- n->mtuprobes = 31;
- }
+ try_fix_mtu(n);
int timeout;
if(n->mtuprobes == 31) {
send_udp_probe_packet(n, MAX(len, 64));
}
- n->mtuprobes++;
+
+ if(n->mtuprobes >= 0)
+ n->mtuprobes++;
}
n->probe_counter = 0;