#include "gnunet_protocols.h"
#include "gnunet_service_lib.h"
#include "gnunet_signatures.h"
-#include "plugin_transport.h"
+#include "gnunet_transport_plugin.h"
#include "transport.h"
#define DEBUG_BLACKLIST GNUNET_YES
*/
int public_key_valid;
+ /**
+ * Performance data for the peer.
+ */
+ struct GNUNET_TRANSPORT_ATS_Information *ats;
+
+ /**
+ * Identity of the neighbour.
+ */
+ struct GNUNET_PeerIdentity peer;
+
};
/**
*/
static struct GNUNET_CRYPTO_RsaPrivateKey *my_private_key;
-/**
- * Our scheduler.
- */
-struct GNUNET_SCHEDULER_Handle *sched;
-
/**
* Our configuration.
*/
*
* @param cls closure, identifies the entry on the
* message queue that was transmitted and the
- * client responsible for queueing the message
+ * client responsible for queuing the message
* @param target the peer receiving the message
* @param result GNUNET_OK on success, if the transmission
* failed, we should not tell the client to transmit
1,
GNUNET_NO);
if (neighbour->retry_task != GNUNET_SCHEDULER_NO_TASK)
- GNUNET_SCHEDULER_cancel (sched,
- neighbour->retry_task);
- neighbour->retry_task = GNUNET_SCHEDULER_add_delayed (sched,
- timeout,
+ GNUNET_SCHEDULER_cancel (neighbour->retry_task);
+ neighbour->retry_task = GNUNET_SCHEDULER_add_delayed (timeout,
&retry_transmission_task,
neighbour);
#if DEBUG_TRANSPORT
* expired
*/
static void
-update_addresses (struct TransportPlugin *plugin, int fresh)
+update_addresses (struct TransportPlugin *plugin,
+ int fresh)
{
static struct GNUNET_TIME_Absolute last_update;
struct GNUNET_TIME_Relative min_remaining;
int expired;
if (plugin->address_update_task != GNUNET_SCHEDULER_NO_TASK)
- GNUNET_SCHEDULER_cancel (plugin->env.sched, plugin->address_update_task);
+ GNUNET_SCHEDULER_cancel (plugin->address_update_task);
plugin->address_update_task = GNUNET_SCHEDULER_NO_TASK;
now = GNUNET_TIME_absolute_get ();
min_remaining = GNUNET_TIME_UNIT_FOREVER_REL;
GNUNET_TIME_relative_divide (HELLO_ADDRESS_EXPIRATION,
2));
plugin->address_update_task
- = GNUNET_SCHEDULER_add_delayed (plugin->env.sched,
- min_remaining,
+ = GNUNET_SCHEDULER_add_delayed (min_remaining,
&expire_address_task, plugin);
}
prev->next = pos->next;
if (GNUNET_SCHEDULER_NO_TASK != pos->revalidate_task)
{
- GNUNET_SCHEDULER_cancel (sched,
- pos->revalidate_task);
+ GNUNET_SCHEDULER_cancel (pos->revalidate_task);
pos->revalidate_task = GNUNET_SCHEDULER_NO_TASK;
}
GNUNET_free (pos);
while (al != NULL)
{
if ((addrlen == al->addrlen) && (0 == memcmp (addr, &al[1], addrlen)))
- {
- if (al->expires.abs_value < abex.abs_value)
- al->expires = abex;
+ {
+ al->expires = abex;
+ update_addresses (p, GNUNET_NO);
return;
}
al = al->next;
static void
notify_clients_connect (const struct GNUNET_PeerIdentity *peer,
struct GNUNET_TIME_Relative latency,
- uint32_t distance)
+ uint32_t distance)
{
- struct ConnectInfoMessage cim;
+ struct ConnectInfoMessage * cim;
struct TransportClient *cpos;
+ uint32_t ats_count;
+ size_t size;
#if DEBUG_TRANSPORT
GNUNET_log (GNUNET_ERROR_TYPE_DEBUG,
gettext_noop ("# peers connected"),
1,
GNUNET_NO);
- cim.header.size = htons (sizeof (struct ConnectInfoMessage));
- cim.header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_CONNECT);
- cim.distance = htonl (distance);
- cim.latency = GNUNET_TIME_relative_hton (latency);
- memcpy (&cim.id, peer, sizeof (struct GNUNET_PeerIdentity));
+
+ ats_count = 2;
+ size = sizeof (struct ConnectInfoMessage) + ats_count * sizeof (struct GNUNET_TRANSPORT_ATS_Information);
+ if (size > GNUNET_SERVER_MAX_MESSAGE_SIZE)
+ {
+ GNUNET_break(0);
+ }
+ cim = GNUNET_malloc (size);
+
+ cim->header.size = htons (size);
+ cim->header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_CONNECT);
+ cim->ats_count = htonl(2);
+ (&(cim->ats))[0].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DISTANCE);
+ (&(cim->ats))[0].value = htonl (distance);
+ (&(cim->ats))[1].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DELAY);
+ (&(cim->ats))[1].value = htonl ((uint32_t) latency.rel_value);
+ (&(cim->ats))[2].type = htonl (GNUNET_TRANSPORT_ATS_ARRAY_TERMINATOR);
+ (&(cim->ats))[2].value = htonl (0);
+ memcpy (&cim->id, peer, sizeof (struct GNUNET_PeerIdentity));
cpos = clients;
while (cpos != NULL)
{
- transmit_to_client (cpos, &cim.header, GNUNET_NO);
+ transmit_to_client (cpos, &(cim->header), GNUNET_NO);
cpos = cpos->next;
}
+ GNUNET_free (cim);
}
struct ValidationEntry *va = value;
if (GNUNET_SCHEDULER_NO_TASK != va->timeout_task)
- GNUNET_SCHEDULER_cancel (sched, va->timeout_task);
+ GNUNET_SCHEDULER_cancel (va->timeout_task);
GNUNET_free (va->transport_name);
if (va->chvc != NULL)
{
}
n->latency = GNUNET_TIME_UNIT_FOREVER_REL;
n->distance = -1;
- n->timeout_task = GNUNET_SCHEDULER_add_delayed (sched,
- GNUNET_CONSTANTS_IDLE_CONNECTION_TIMEOUT,
+ n->timeout_task = GNUNET_SCHEDULER_add_delayed (GNUNET_CONSTANTS_IDLE_CONNECTION_TIMEOUT,
&neighbour_timeout_task, n);
if (do_hello)
{
if (size == 0)
{
GNUNET_assert (bc->task == GNUNET_SCHEDULER_NO_TASK);
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
return 0;
}
bc->cont = cont;
bc->cont_cls = cont_cls;
bc->bl_pos = bl_head;
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
}
bc->bl_pos = bl;
if (n == neighbours) /* all would wait for the same client, no need to
create more than just the first task right now */
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
n = n->next;
}
else
{
bc->bl_pos = bc->bl_pos->next;
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
}
/* check if any other bc's are waiting for this blacklister */
{
if ( (bc->bl_pos == bl) &&
(GNUNET_SCHEDULER_NO_TASK == bc->task) )
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
bc = bc->next;
}
&neighbour->publicKey,
sizeof(struct GNUNET_CRYPTO_RsaPublicKeyBinaryEncoded));
- va->timeout_task = GNUNET_SCHEDULER_add_delayed (sched,
- HELLO_VERIFICATION_TIMEOUT,
+ va->timeout_task = GNUNET_SCHEDULER_add_delayed (HELLO_VERIFICATION_TIMEOUT,
&timeout_hello_validation,
va);
GNUNET_CONTAINER_multihashmap_put (validation_map,
GNUNET_TIME_UNIT_SECONDS);
/* randomize a bit (to avoid doing all at the same time) */
delay.rel_value += GNUNET_CRYPTO_random_u32 (GNUNET_CRYPTO_QUALITY_WEAK, 1000);
- fal->revalidate_task = GNUNET_SCHEDULER_add_delayed(sched,
- delay,
+ fal->revalidate_task = GNUNET_SCHEDULER_add_delayed(delay,
&send_periodic_ping,
fal);
}
*/
static void
handle_payload_message (const struct GNUNET_MessageHeader *message,
- struct NeighbourList *n)
+ struct NeighbourList *n)
{
struct InboundMessage *im;
struct TransportClient *cpos;
msize,
GNUNET_NO);
/* transmit message to all clients */
- im = GNUNET_malloc (sizeof (struct InboundMessage) + msize);
- im->header.size = htons (sizeof (struct InboundMessage) + msize);
+ uint32_t ats_count = 2;
+ size_t size = sizeof (struct InboundMessage) + ats_count * sizeof (struct GNUNET_TRANSPORT_ATS_Information) + msize;
+ if (size > GNUNET_SERVER_MAX_MESSAGE_SIZE)
+ GNUNET_break(0);
+
+ im = GNUNET_malloc (size);
+ im->header.size = htons (size);
im->header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_RECV);
- im->latency = GNUNET_TIME_relative_hton (n->latency);
im->peer = n->id;
- im->distance = ntohl(n->distance);
- memcpy (&im[1], message, msize);
+ im->ats_count = htonl(ats_count);
+ /* Setting ATS data */
+ (&(im->ats))[0].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DISTANCE);
+ (&(im->ats))[0].value = htonl (n->distance);
+ (&(im->ats))[1].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DELAY);
+ (&(im->ats))[1].value = htonl ((uint32_t) n->latency.rel_value);
+ (&(im->ats))[ats_count].type = htonl (GNUNET_TRANSPORT_ATS_ARRAY_TERMINATOR);
+ (&(im->ats))[ats_count].value = htonl (0);
+
+ memcpy (&((&(im->ats))[ats_count+1]), message, msize);
cpos = clients;
while (cpos != NULL)
{
}
if (n->retry_task != GNUNET_SCHEDULER_NO_TASK)
{
- GNUNET_SCHEDULER_cancel (sched,
- n->retry_task);
+ GNUNET_SCHEDULER_cancel (n->retry_task);
n->retry_task = GNUNET_SCHEDULER_NO_TASK;
try_transmission_to_peer (n);
}
va->addrlen = addrlen;
GNUNET_HELLO_get_key (chvc->hello,
&va->publicKey);
- va->timeout_task = GNUNET_SCHEDULER_add_delayed (sched,
- HELLO_VERIFICATION_TIMEOUT,
+ va->timeout_task = GNUNET_SCHEDULER_add_delayed (HELLO_VERIFICATION_TIMEOUT,
&timeout_hello_validation,
va);
GNUNET_CONTAINER_multihashmap_put (validation_map,
GNUNET_NO);
/* first, check if load is too high */
- if (GNUNET_SCHEDULER_get_load (sched,
- GNUNET_SCHEDULER_PRIORITY_BACKGROUND) > MAX_HELLO_LOAD)
+ if (GNUNET_SCHEDULER_get_load (GNUNET_SCHEDULER_PRIORITY_BACKGROUND) > MAX_HELLO_LOAD)
{
GNUNET_STATISTICS_update (stats,
gettext_noop ("# HELLOs ignored due to high load"),
GNUNET_NO);
if (GNUNET_SCHEDULER_NO_TASK != peer_pos->revalidate_task)
{
- GNUNET_SCHEDULER_cancel (sched,
- peer_pos->revalidate_task);
+ GNUNET_SCHEDULER_cancel (peer_pos->revalidate_task);
peer_pos->revalidate_task = GNUNET_SCHEDULER_NO_TASK;
}
GNUNET_free(peer_pos);
}
if (n->timeout_task != GNUNET_SCHEDULER_NO_TASK)
{
- GNUNET_SCHEDULER_cancel (sched, n->timeout_task);
+ GNUNET_SCHEDULER_cancel (n->timeout_task);
n->timeout_task = GNUNET_SCHEDULER_NO_TASK;
}
if (n->retry_task != GNUNET_SCHEDULER_NO_TASK)
{
- GNUNET_SCHEDULER_cancel (sched, n->retry_task);
+ GNUNET_SCHEDULER_cancel (n->retry_task);
n->retry_task = GNUNET_SCHEDULER_NO_TASK;
}
if (n->piter != NULL)
static struct GNUNET_TIME_Relative
plugin_env_receive (void *cls, const struct GNUNET_PeerIdentity *peer,
const struct GNUNET_MessageHeader *message,
- uint32_t distance,
- struct Session *session,
- const char *sender_address,
+ const struct GNUNET_TRANSPORT_ATS_Information *ats,
+ uint32_t ats_count,
+ struct Session *session,
+ const char *sender_address,
uint16_t sender_address_len)
{
struct TransportPlugin *plugin = cls;
struct GNUNET_TIME_Relative ret;
if (is_blacklisted (peer, plugin))
return GNUNET_TIME_UNIT_FOREVER_REL;
+ uint32_t distance;
+ int c;
n = find_neighbour (peer);
if (n == NULL)
service_context = service_context->next;
GNUNET_assert ((plugin->api->send == NULL) || (service_context != NULL));
peer_address = NULL;
+ distance = 1;
+ for (c=0; c<ats_count; c++)
+ {
+ if (ntohl(ats[c].type) == GNUNET_TRANSPORT_ATS_QUALITY_NET_DISTANCE)
+ {
+ distance = ntohl(ats[c].value);
+ }
+ }
+
if (message != NULL)
{
if ( (session != NULL) ||
n->peer_timeout =
GNUNET_TIME_relative_to_absolute
(GNUNET_CONSTANTS_IDLE_CONNECTION_TIMEOUT);
- GNUNET_SCHEDULER_cancel (sched,
- n->timeout_task);
+ GNUNET_SCHEDULER_cancel (n->timeout_task);
n->timeout_task =
- GNUNET_SCHEDULER_add_delayed (sched,
- GNUNET_CONSTANTS_IDLE_CONNECTION_TIMEOUT,
+ GNUNET_SCHEDULER_add_delayed (GNUNET_CONSTANTS_IDLE_CONNECTION_TIMEOUT,
&neighbour_timeout_task, n);
if (n->quota_violation_count > QUOTA_VIOLATION_DROP_THRESHOLD)
{
{
const struct StartMessage *start;
struct TransportClient *c;
- struct ConnectInfoMessage cim;
+ struct ConnectInfoMessage * cim;
struct NeighbourList *n;
+ uint32_t ats_count;
+ size_t size;
start = (const struct StartMessage*) message;
#if DEBUG_TRANSPORT
clients = c;
c->client = client;
if (our_hello != NULL)
- {
+ {
#if DEBUG_TRANSPORT
GNUNET_log (GNUNET_ERROR_TYPE_DEBUG,
"Sending our own `%s' to new client\n", "HELLO");
(const struct GNUNET_MessageHeader *) our_hello,
GNUNET_NO);
/* tell new client about all existing connections */
- cim.header.size = htons (sizeof (struct ConnectInfoMessage));
- cim.header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_CONNECT);
+ ats_count = 2;
+ size = sizeof (struct ConnectInfoMessage) + ats_count * sizeof (struct GNUNET_TRANSPORT_ATS_Information);
+ if (size > GNUNET_SERVER_MAX_MESSAGE_SIZE)
+ {
+ GNUNET_break(0);
+ }
+ cim = GNUNET_malloc (size);
+
+ cim->header.size = htons (size);
+ cim->header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_CONNECT);
+ cim->ats_count = htonl(ats_count);
+ (&(cim->ats))[2].type = htonl (GNUNET_TRANSPORT_ATS_ARRAY_TERMINATOR);
+ (&(cim->ats))[2].value = htonl (0);
n = neighbours;
while (n != NULL)
- {
- if (GNUNET_YES == n->received_pong)
- {
- cim.id = n->id;
- cim.latency = GNUNET_TIME_relative_hton (n->latency);
- cim.distance = htonl (n->distance);
- transmit_to_client (c, &cim.header, GNUNET_NO);
- }
+ {
+ if (GNUNET_YES == n->received_pong)
+ {
+ (&(cim->ats))[0].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DISTANCE);
+ (&(cim->ats))[0].value = htonl (n->distance);
+ (&(cim->ats))[1].type = htonl (GNUNET_TRANSPORT_ATS_QUALITY_NET_DELAY);
+ (&(cim->ats))[1].value = htonl ((uint32_t) n->latency.rel_value);
+ cim->id = n->id;
+ transmit_to_client (c, &cim->header, GNUNET_NO);
+ }
n = n->next;
- }
- }
+ }
+ }
GNUNET_SERVER_receive_done (client, GNUNET_OK);
+ GNUNET_free(cim);
}
create_environment (struct TransportPlugin *plug)
{
plug->env.cfg = cfg;
- plug->env.sched = sched;
plug->env.my_identity = &my_identity;
plug->env.our_hello = &our_hello;
plug->env.cls = plug;
bc->th = NULL;
}
if (bc->task == GNUNET_SCHEDULER_NO_TASK)
- bc->task = GNUNET_SCHEDULER_add_now (sched,
- &do_blacklist_check,
+ bc->task = GNUNET_SCHEDULER_add_now (&do_blacklist_check,
bc);
break;
}
plugins = plug->next;
if (plug->address_update_task != GNUNET_SCHEDULER_NO_TASK)
{
- GNUNET_SCHEDULER_cancel (plug->env.sched,
- plug->address_update_task);
+ GNUNET_SCHEDULER_cancel (plug->address_update_task);
plug->address_update_task = GNUNET_SCHEDULER_NO_TASK;
}
GNUNET_break (NULL == GNUNET_PLUGIN_unload (plug->lib_name, plug->api));
* Initiate transport service.
*
* @param cls closure
- * @param s scheduler to use
* @param server the initialized server
* @param c configuration to use
*/
static void
run (void *cls,
- struct GNUNET_SCHEDULER_Handle *s,
struct GNUNET_SERVER_Handle *server,
const struct GNUNET_CONFIGURATION_Handle *c)
{
unsigned long long tneigh;
char *keyfile;
- sched = s;
cfg = c;
- stats = GNUNET_STATISTICS_create (sched, "transport", cfg);
+ stats = GNUNET_STATISTICS_create ("transport", cfg);
validation_map = GNUNET_CONTAINER_multihashmap_create (64);
/* parse configuration */
if ((GNUNET_OK !=
GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
_
("Transport service is lacking key configuration settings. Exiting.\n"));
- GNUNET_SCHEDULER_shutdown (s);
+ GNUNET_SCHEDULER_shutdown ();
if (stats != NULL)
{
GNUNET_STATISTICS_destroy (stats, GNUNET_NO);
return;
}
max_connect_per_transport = (uint32_t) tneigh;
- peerinfo = GNUNET_PEERINFO_connect (sched, cfg);
+ peerinfo = GNUNET_PEERINFO_connect (cfg);
if (peerinfo == NULL)
{
GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
_("Could not access PEERINFO service. Exiting.\n"));
- GNUNET_SCHEDULER_shutdown (s);
+ GNUNET_SCHEDULER_shutdown ();
if (stats != NULL)
{
GNUNET_STATISTICS_destroy (stats, GNUNET_NO);
GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
_
("Transport service could not access hostkey. Exiting.\n"));
- GNUNET_SCHEDULER_shutdown (s);
+ GNUNET_SCHEDULER_shutdown ();
if (stats != NULL)
{
GNUNET_STATISTICS_destroy (stats, GNUNET_NO);
}
GNUNET_free (plugs);
}
- GNUNET_SCHEDULER_add_delayed (sched,
- GNUNET_TIME_UNIT_FOREVER_REL,
+ GNUNET_SCHEDULER_add_delayed (GNUNET_TIME_UNIT_FOREVER_REL,
&shutdown_task, NULL);
if (no_transports)
refresh_hello ();