+ ppc->port = port;
+ GNUNET_RESOLVER_hostname_get (sb, sbs, !numeric, timeout, &append_port, ppc);
+}
+
+
+static void
+call_continuation (struct UDPMessageWrapper *udpw, int result)
+{
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Calling continuation for %u byte message to `%s' with result %s\n",
+ udpw->msg_size, GNUNET_i2s (&udpw->session->target),
+ (GNUNET_OK == result) ? "OK" : "SYSERR");
+ if (NULL != udpw->cont)
+ {
+ udpw->cont (udpw->cont_cls, &udpw->session->target,result);
+ }
+
+}
+
+
+/**
+ * Check if the given port is plausible (must be either our listen
+ * port or our advertised port). If it is neither, we return
+ * GNUNET_SYSERR.
+ *
+ * @param plugin global variables
+ * @param in_port port number to check
+ * @return GNUNET_OK if port is either open_port or adv_port
+ */
+static int
+check_port (struct Plugin *plugin, uint16_t in_port)
+{
+ if ((in_port == plugin->port) || (in_port == plugin->aport))
+ return GNUNET_OK;
+ return GNUNET_SYSERR;
+}
+
+
+/**
+ * Function that will be called to check if a binary address for this
+ * plugin is well-formed and corresponds to an address for THIS peer
+ * (as per our configuration). Naturally, if absolutely necessary,
+ * plugins can be a bit conservative in their answer, but in general
+ * plugins should make sure that the address does not redirect
+ * traffic to a 3rd party that might try to man-in-the-middle our
+ * traffic.
+ *
+ * @param cls closure, should be our handle to the Plugin
+ * @param addr pointer to the address
+ * @param addrlen length of addr
+ * @return GNUNET_OK if this is a plausible address for this peer
+ * and transport, GNUNET_SYSERR if not
+ *
+ */
+static int
+udp_plugin_check_address (void *cls, const void *addr, size_t addrlen)
+{
+ struct Plugin *plugin = cls;
+ struct IPv4UdpAddress *v4;
+ struct IPv6UdpAddress *v6;
+
+ if ((addrlen != sizeof (struct IPv4UdpAddress)) &&
+ (addrlen != sizeof (struct IPv6UdpAddress)))
+ {
+ GNUNET_break_op (0);
+ return GNUNET_SYSERR;
+ }
+ if (addrlen == sizeof (struct IPv4UdpAddress))
+ {
+ v4 = (struct IPv4UdpAddress *) addr;
+ if (GNUNET_OK != check_port (plugin, ntohs (v4->u4_port)))
+ return GNUNET_SYSERR;
+ if (GNUNET_OK !=
+ GNUNET_NAT_test_address (plugin->nat, &v4->ipv4_addr,
+ sizeof (struct in_addr)))
+ return GNUNET_SYSERR;
+ }
+ else
+ {
+ v6 = (struct IPv6UdpAddress *) addr;
+ if (IN6_IS_ADDR_LINKLOCAL (&v6->ipv6_addr))
+ {
+ GNUNET_break_op (0);
+ return GNUNET_SYSERR;
+ }
+ if (GNUNET_OK != check_port (plugin, ntohs (v6->u6_port)))
+ return GNUNET_SYSERR;
+ if (GNUNET_OK !=
+ GNUNET_NAT_test_address (plugin->nat, &v6->ipv6_addr,
+ sizeof (struct in6_addr)))
+ return GNUNET_SYSERR;
+ }
+ return GNUNET_OK;
+}
+
+
+/**
+ * Task to free resources associated with a session.
+ *
+ * @param s session to free
+ */
+static void
+free_session (struct Session *s)
+{
+ if (s->frag_ctx != NULL)
+ {
+ GNUNET_FRAGMENT_context_destroy(s->frag_ctx->frag);
+ GNUNET_free (s->frag_ctx);
+ s->frag_ctx = NULL;
+ }
+ GNUNET_free (s);
+}
+
+
+/**
+ * Functions with this signature are called whenever we need
+ * to close a session due to a disconnect or failure to
+ * establish a connection.
+ *
+ * @param s session to close down
+ */
+static void
+disconnect_session (struct Session *s)
+{
+ struct UDPMessageWrapper *udpw;
+ struct UDPMessageWrapper *next;
+
+ GNUNET_assert (GNUNET_YES != s->in_destroy);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Session %p to peer `%s' address ended \n",
+ s,
+ GNUNET_i2s (&s->target),
+ GNUNET_a2s (s->sock_addr, s->addrlen));
+ stop_session_timeout (s);
+ next = plugin->ipv4_queue_head;
+ while (NULL != (udpw = next))
+ {
+ next = udpw->next;
+ if (udpw->session == s)
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv4_queue_head, plugin->ipv4_queue_tail, udpw);
+ call_continuation(udpw, GNUNET_SYSERR);
+ GNUNET_free (udpw);
+ }
+ }
+ next = plugin->ipv6_queue_head;
+ while (NULL != (udpw = next))
+ {
+ next = udpw->next;
+ if (udpw->session == s)
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv6_queue_head, plugin->ipv6_queue_tail, udpw);
+ call_continuation(udpw, GNUNET_SYSERR);
+ GNUNET_free (udpw);
+ }
+ udpw = next;
+ }
+ plugin->env->session_end (plugin->env->cls, &s->target, s);
+
+ if (NULL != s->frag_ctx)
+ {
+ if (NULL != s->frag_ctx->cont)
+ {
+ s->frag_ctx->cont (s->frag_ctx->cont_cls, &s->target, GNUNET_SYSERR);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Calling continuation for fragemented message to `%s' with result SYSERR\n",
+ GNUNET_i2s (&s->target));
+ }
+ }
+
+ GNUNET_assert (GNUNET_YES ==
+ GNUNET_CONTAINER_multihashmap_remove (plugin->sessions,
+ &s->target.hashPubKey,
+ s));
+ GNUNET_STATISTICS_set(plugin->env->stats,
+ "# UDP sessions active",
+ GNUNET_CONTAINER_multihashmap_size(plugin->sessions),
+ GNUNET_NO);
+ if (s->rc > 0)
+ s->in_destroy = GNUNET_YES;
+ else
+ free_session (s);
+}
+
+/**
+ * Destroy a session, plugin is being unloaded.
+ *
+ * @param cls unused
+ * @param key hash of public key of target peer
+ * @param value a 'struct PeerSession*' to clean up
+ * @return GNUNET_OK (continue to iterate)
+ */
+static int
+disconnect_and_free_it (void *cls, const struct GNUNET_HashCode * key, void *value)
+{
+ disconnect_session(value);
+ return GNUNET_OK;
+}
+
+
+/**
+ * Disconnect from a remote node. Clean up session if we have one for this peer
+ *
+ * @param cls closure for this call (should be handle to Plugin)
+ * @param target the peeridentity of the peer to disconnect
+ * @return GNUNET_OK on success, GNUNET_SYSERR if the operation failed
+ */
+static void
+udp_disconnect (void *cls, const struct GNUNET_PeerIdentity *target)
+{
+ struct Plugin *plugin = cls;
+ GNUNET_assert (plugin != NULL);
+
+ GNUNET_assert (target != NULL);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Disconnecting from peer `%s'\n", GNUNET_i2s (target));
+ /* Clean up sessions */
+ GNUNET_CONTAINER_multihashmap_get_multiple (plugin->sessions, &target->hashPubKey, &disconnect_and_free_it, plugin);
+}
+
+
+static struct Session *
+create_session (struct Plugin *plugin, const struct GNUNET_PeerIdentity *target,
+ const void *addr, size_t addrlen,
+ GNUNET_TRANSPORT_TransmitContinuation cont, void *cont_cls)
+{
+ struct Session *s;
+ const struct IPv4UdpAddress *t4;
+ const struct IPv6UdpAddress *t6;
+ struct sockaddr_in *v4;
+ struct sockaddr_in6 *v6;
+ size_t len;
+
+ switch (addrlen)
+ {
+ case sizeof (struct IPv4UdpAddress):
+ if (NULL == plugin->sockv4)
+ {
+ return NULL;
+ }
+ t4 = addr;
+ s = GNUNET_malloc (sizeof (struct Session) + sizeof (struct sockaddr_in));
+ len = sizeof (struct sockaddr_in);
+ v4 = (struct sockaddr_in *) &s[1];
+ v4->sin_family = AF_INET;
+#if HAVE_SOCKADDR_IN_SIN_LEN
+ v4->sin_len = sizeof (struct sockaddr_in);
+#endif
+ v4->sin_port = t4->u4_port;
+ v4->sin_addr.s_addr = t4->ipv4_addr;
+ s->ats = plugin->env->get_address_type (plugin->env->cls, (const struct sockaddr *) v4, sizeof (struct sockaddr_in));
+ break;
+ case sizeof (struct IPv6UdpAddress):
+ if (NULL == plugin->sockv6)
+ {
+ return NULL;
+ }
+ t6 = addr;
+ s =
+ GNUNET_malloc (sizeof (struct Session) + sizeof (struct sockaddr_in6));
+ len = sizeof (struct sockaddr_in6);
+ v6 = (struct sockaddr_in6 *) &s[1];
+ v6->sin6_family = AF_INET6;
+#if HAVE_SOCKADDR_IN_SIN_LEN
+ v6->sin6_len = sizeof (struct sockaddr_in6);
+#endif
+ v6->sin6_port = t6->u6_port;
+ v6->sin6_addr = t6->ipv6_addr;
+ s->ats = plugin->env->get_address_type (plugin->env->cls, (const struct sockaddr *) v6, sizeof (struct sockaddr_in6));
+ break;
+ default:
+ /* Must have a valid address to send to */
+ GNUNET_break_op (0);
+ return NULL;
+ }
+ s->addrlen = len;
+ s->target = *target;
+ s->sock_addr = (const struct sockaddr *) &s[1];
+ s->last_expected_delay = GNUNET_TIME_UNIT_SECONDS;
+ start_session_timeout(s);
+ return s;
+}
+
+
+static int
+session_cmp_it (void *cls,
+ const struct GNUNET_HashCode * key,
+ void *value)
+{
+ struct SessionCompareContext * cctx = cls;
+ const struct GNUNET_HELLO_Address *address = cctx->addr;
+ struct Session *s = value;
+
+ socklen_t s_addrlen = s->addrlen;
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG, "Comparing address %s <-> %s\n",
+ udp_address_to_string (NULL, (void *) address->address, address->address_length),
+ GNUNET_a2s (s->sock_addr, s->addrlen));
+ if ((address->address_length == sizeof (struct IPv4UdpAddress)) &&
+ (s_addrlen == sizeof (struct sockaddr_in)))
+ {
+ struct IPv4UdpAddress * u4 = NULL;
+ u4 = (struct IPv4UdpAddress *) address->address;
+ const struct sockaddr_in *s4 = (const struct sockaddr_in *) s->sock_addr;
+ if ((0 == memcmp ((const void *) &u4->ipv4_addr,(const void *) &s4->sin_addr, sizeof (struct in_addr))) &&
+ (u4->u4_port == s4->sin_port))
+ {
+ cctx->res = s;
+ return GNUNET_NO;
+ }
+
+ }
+ if ((address->address_length == sizeof (struct IPv6UdpAddress)) &&
+ (s_addrlen == sizeof (struct sockaddr_in6)))
+ {
+ struct IPv6UdpAddress * u6 = NULL;
+ u6 = (struct IPv6UdpAddress *) address->address;
+ const struct sockaddr_in6 *s6 = (const struct sockaddr_in6 *) s->sock_addr;
+ if ((0 == memcmp (&u6->ipv6_addr, &s6->sin6_addr, sizeof (struct in6_addr))) &&
+ (u6->u6_port == s6->sin6_port))
+ {
+ cctx->res = s;
+ return GNUNET_NO;
+ }
+ }
+ return GNUNET_YES;
+}
+
+
+/**
+ * Creates a new outbound session the transport service will use to send data to the
+ * peer
+ *
+ * @param cls the plugin
+ * @param address the address
+ * @return the session or NULL of max connections exceeded
+ */
+static struct Session *
+udp_plugin_get_session (void *cls,
+ const struct GNUNET_HELLO_Address *address)
+{
+ struct Session * s = NULL;
+ struct Plugin * plugin = cls;
+ struct IPv6UdpAddress * udp_a6;
+ struct IPv4UdpAddress * udp_a4;
+
+ GNUNET_assert (plugin != NULL);
+ GNUNET_assert (address != NULL);
+
+
+ if ((address->address == NULL) ||
+ ((address->address_length != sizeof (struct IPv4UdpAddress)) &&
+ (address->address_length != sizeof (struct IPv6UdpAddress))))
+ {
+ GNUNET_break (0);
+ return NULL;
+ }
+
+ if (address->address_length == sizeof (struct IPv4UdpAddress))
+ {
+ if (plugin->sockv4 == NULL)
+ return NULL;
+ udp_a4 = (struct IPv4UdpAddress *) address->address;
+ if (udp_a4->u4_port == 0)
+ return NULL;
+ }
+
+ if (address->address_length == sizeof (struct IPv6UdpAddress))
+ {
+ if (plugin->sockv6 == NULL)
+ return NULL;
+ udp_a6 = (struct IPv6UdpAddress *) address->address;
+ if (udp_a6->u6_port == 0)
+ return NULL;
+ }
+
+ /* check if session already exists */
+ struct SessionCompareContext cctx;
+ cctx.addr = address;
+ cctx.res = NULL;
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Looking for existing session for peer `%s' `%s' \n",
+ GNUNET_i2s (&address->peer),
+ udp_address_to_string(NULL, address->address, address->address_length));
+ GNUNET_CONTAINER_multihashmap_get_multiple(plugin->sessions, &address->peer.hashPubKey, session_cmp_it, &cctx);
+ if (cctx.res != NULL)
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG, "Found existing session %p\n", cctx.res);
+ return cctx.res;
+ }
+
+ /* otherwise create new */
+ s = create_session (plugin,
+ &address->peer,
+ address->address,
+ address->address_length,
+ NULL, NULL);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Creating new session %p for peer `%s' address `%s'\n",
+ s,
+ GNUNET_i2s(&address->peer),
+ udp_address_to_string(NULL,address->address,address->address_length));
+ GNUNET_assert (GNUNET_OK ==
+ GNUNET_CONTAINER_multihashmap_put (plugin->sessions,
+ &s->target.hashPubKey,
+ s,
+ GNUNET_CONTAINER_MULTIHASHMAPOPTION_MULTIPLE));
+
+ GNUNET_STATISTICS_set(plugin->env->stats,
+ "# UDP sessions active",
+ GNUNET_CONTAINER_multihashmap_size(plugin->sessions),
+ GNUNET_NO);
+
+ return s;
+}
+
+
+static void
+enqueue (struct Plugin *plugin, struct UDPMessageWrapper * udpw)
+{
+
+ if (udpw->session->addrlen == sizeof (struct sockaddr_in))
+ GNUNET_CONTAINER_DLL_insert(plugin->ipv4_queue_head, plugin->ipv4_queue_tail, udpw);
+ if (udpw->session->addrlen == sizeof (struct sockaddr_in6))
+ GNUNET_CONTAINER_DLL_insert(plugin->ipv6_queue_head, plugin->ipv6_queue_tail, udpw);
+}
+
+
+/**
+ * Fragment message was transmitted via UDP, let fragmentation know
+ * to send the next fragment now.
+ *
+ * @param cls the 'struct UDPMessageWrapper' of the fragment
+ * @param target destination peer (ignored)
+ * @param result GNUNET_OK on success (ignored)
+ */
+static void
+send_next_fragment (void *cls,
+ const struct GNUNET_PeerIdentity *target,
+ int result)
+{
+ struct UDPMessageWrapper *udpw = cls;
+
+ GNUNET_FRAGMENT_context_transmission_done (udpw->frag_ctx->frag);
+}
+
+
+/**
+ * Function that is called with messages created by the fragmentation
+ * module. In the case of the 'proc' callback of the
+ * GNUNET_FRAGMENT_context_create function, this function must
+ * eventually call 'GNUNET_FRAGMENT_context_transmission_done'.
+ *
+ * @param cls closure, the 'struct FragmentationContext'
+ * @param msg the message that was created
+ */
+static void
+enqueue_fragment (void *cls, const struct GNUNET_MessageHeader *msg)
+{
+ struct FragmentationContext *frag_ctx = cls;
+ struct Plugin *plugin = frag_ctx->plugin;
+ struct UDPMessageWrapper * udpw;
+ struct Session *s;
+ size_t msg_len = ntohs (msg->size);
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Enqueuing fragment with %u bytes %u\n", msg_len , sizeof (struct UDPMessageWrapper));
+ udpw = GNUNET_malloc (sizeof (struct UDPMessageWrapper) + msg_len);
+ udpw->session = frag_ctx->session;
+ s = udpw->session;
+ udpw->udp = (char *) &udpw[1];
+
+ udpw->msg_size = msg_len;
+ udpw->cont = &send_next_fragment;
+ udpw->cont_cls = udpw;
+ udpw->timeout = frag_ctx->timeout;
+ udpw->frag_ctx = frag_ctx;
+ memcpy (udpw->udp, msg, msg_len);
+ enqueue (plugin, udpw);
+
+ if (s->addrlen == sizeof (struct sockaddr_in))
+ {
+ if (plugin->with_v4_ws == GNUNET_NO)
+ {
+ if (plugin->select_task != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel(plugin->select_task);
+
+ plugin->select_task =
+ GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v4,
+ plugin->ws_v4,
+ &udp_plugin_select, plugin);
+ plugin->with_v4_ws = GNUNET_YES;
+ }
+ }
+ else if (s->addrlen == sizeof (struct sockaddr_in6))
+ {
+ if (plugin->with_v6_ws == GNUNET_NO)
+ {
+ if (plugin->select_task_v6 != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel(plugin->select_task_v6);
+
+ plugin->select_task_v6 =
+ GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v6,
+ plugin->ws_v6,
+ &udp_plugin_select_v6, plugin);
+ plugin->with_v6_ws = GNUNET_YES;
+ }
+ }
+}
+
+
+/**
+ * Function that can be used by the transport service to transmit
+ * a message using the plugin. Note that in the case of a
+ * peer disconnecting, the continuation MUST be called
+ * prior to the disconnect notification itself. This function
+ * will be called with this peer's HELLO message to initiate
+ * a fresh connection to another peer.
+ *
+ * @param cls closure
+ * @param s which session must be used
+ * @param msgbuf the message to transmit
+ * @param msgbuf_size number of bytes in 'msgbuf'
+ * @param priority how important is the message (most plugins will
+ * ignore message priority and just FIFO)
+ * @param to how long to wait at most for the transmission (does not
+ * require plugins to discard the message after the timeout,
+ * just advisory for the desired delay; most plugins will ignore
+ * this as well)
+ * @param cont continuation to call once the message has
+ * been transmitted (or if the transport is ready
+ * for the next transmission call; or if the
+ * peer disconnected...); can be NULL
+ * @param cont_cls closure for cont
+ * @return number of bytes used (on the physical network, with overheads);
+ * -1 on hard errors (i.e. address invalid); 0 is a legal value
+ * and does NOT mean that the message was not transmitted (DV)
+ */
+static ssize_t
+udp_plugin_send (void *cls,
+ struct Session *s,
+ const char *msgbuf, size_t msgbuf_size,
+ unsigned int priority,
+ struct GNUNET_TIME_Relative to,
+ GNUNET_TRANSPORT_TransmitContinuation cont, void *cont_cls)
+{
+ struct Plugin *plugin = cls;
+ size_t mlen = msgbuf_size + sizeof (struct UDPMessage);
+ struct UDPMessageWrapper * udpw;
+ struct UDPMessage *udp;
+ char mbuf[mlen];
+ GNUNET_assert (plugin != NULL);
+ GNUNET_assert (s != NULL);
+
+ if ((s->addrlen == sizeof (struct sockaddr_in6)) && (plugin->sockv6 == NULL))
+ return GNUNET_SYSERR;
+ if ((s->addrlen == sizeof (struct sockaddr_in)) && (plugin->sockv4 == NULL))
+ return GNUNET_SYSERR;
+ if (mlen >= GNUNET_SERVER_MAX_MESSAGE_SIZE)
+ {
+ GNUNET_break (0);
+ return GNUNET_SYSERR;
+ }
+ if (GNUNET_YES != GNUNET_CONTAINER_multihashmap_contains_value(plugin->sessions, &s->target.hashPubKey, s))
+ {
+ GNUNET_break (0);
+ return GNUNET_SYSERR;
+ }
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "UDP transmits %u-byte message to `%s' using address `%s'\n",
+ mlen,
+ GNUNET_i2s (&s->target),
+ GNUNET_a2s(s->sock_addr, s->addrlen));
+
+ /* Message */
+ udp = (struct UDPMessage *) mbuf;
+ udp->header.size = htons (mlen);
+ udp->header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_UDP_MESSAGE);
+ udp->reserved = htonl (0);
+ udp->sender = *plugin->env->my_identity;
+
+ reschedule_session_timeout(s);
+ if (mlen <= UDP_MTU)
+ {
+ udpw = GNUNET_malloc (sizeof (struct UDPMessageWrapper) + mlen);
+ udpw->session = s;
+ udpw->udp = (char *) &udpw[1];
+ udpw->msg_size = mlen;
+ udpw->timeout = GNUNET_TIME_absolute_add(GNUNET_TIME_absolute_get(), to);
+ udpw->cont = cont;
+ udpw->cont_cls = cont_cls;
+ udpw->frag_ctx = NULL;
+ memcpy (udpw->udp, udp, sizeof (struct UDPMessage));
+ memcpy (&udpw->udp[sizeof (struct UDPMessage)], msgbuf, msgbuf_size);
+
+ enqueue (plugin, udpw);
+ }
+ else
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "UDP has to fragment message \n");
+ if (s->frag_ctx != NULL)
+ return GNUNET_SYSERR;
+ memcpy (&udp[1], msgbuf, msgbuf_size);
+ struct FragmentationContext * frag_ctx = GNUNET_malloc(sizeof (struct FragmentationContext));
+
+ frag_ctx->plugin = plugin;
+ frag_ctx->session = s;
+ frag_ctx->cont = cont;
+ frag_ctx->cont_cls = cont_cls;
+ frag_ctx->timeout = GNUNET_TIME_absolute_add(GNUNET_TIME_absolute_get(), to);
+ frag_ctx->bytes_to_send = mlen;
+ frag_ctx->frag = GNUNET_FRAGMENT_context_create (plugin->env->stats,
+ UDP_MTU,
+ &plugin->tracker,
+ s->last_expected_delay,
+ &udp->header,
+ &enqueue_fragment,
+ frag_ctx);
+
+ s->frag_ctx = frag_ctx;
+ }
+
+ if (s->addrlen == sizeof (struct sockaddr_in))
+ {
+ if (plugin->with_v4_ws == GNUNET_NO)
+ {
+ if (plugin->select_task != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel(plugin->select_task);
+
+ plugin->select_task =
+ GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v4,
+ plugin->ws_v4,
+ &udp_plugin_select, plugin);
+ plugin->with_v4_ws = GNUNET_YES;
+ }
+ }
+ else if (s->addrlen == sizeof (struct sockaddr_in6))
+ {
+ if (plugin->with_v6_ws == GNUNET_NO)
+ {
+ if (plugin->select_task_v6 != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel(plugin->select_task_v6);
+
+ plugin->select_task_v6 =
+ GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v6,
+ plugin->ws_v6,
+ &udp_plugin_select_v6, plugin);
+ plugin->with_v6_ws = GNUNET_YES;
+ }
+ }
+
+ return mlen;
+}
+
+
+/**
+ * Our external IP address/port mapping has changed.
+ *
+ * @param cls closure, the 'struct LocalAddrList'
+ * @param add_remove GNUNET_YES to mean the new public IP address, GNUNET_NO to mean
+ * the previous (now invalid) one
+ * @param addr either the previous or the new public IP address
+ * @param addrlen actual lenght of the address
+ */
+static void
+udp_nat_port_map_callback (void *cls, int add_remove,
+ const struct sockaddr *addr, socklen_t addrlen)
+{
+ struct Plugin *plugin = cls;
+ struct IPv4UdpAddress u4;
+ struct IPv6UdpAddress u6;
+ void *arg;
+ size_t args;
+
+ /* convert 'addr' to our internal format */
+ switch (addr->sa_family)
+ {
+ case AF_INET:
+ GNUNET_assert (addrlen == sizeof (struct sockaddr_in));
+ u4.ipv4_addr = ((struct sockaddr_in *) addr)->sin_addr.s_addr;
+ u4.u4_port = ((struct sockaddr_in *) addr)->sin_port;
+ arg = &u4;
+ args = sizeof (u4);
+ break;
+ case AF_INET6:
+ GNUNET_assert (addrlen == sizeof (struct sockaddr_in6));
+ memcpy (&u6.ipv6_addr, &((struct sockaddr_in6 *) addr)->sin6_addr,
+ sizeof (struct in6_addr));
+ u6.u6_port = ((struct sockaddr_in6 *) addr)->sin6_port;
+ arg = &u6;
+ args = sizeof (u6);
+ break;
+ default:
+ GNUNET_break (0);
+ return;
+ }
+ /* modify our published address list */
+ plugin->env->notify_address (plugin->env->cls, add_remove, arg, args);
+}
+
+
+
+/**
+ * Message tokenizer has broken up an incomming message. Pass it on
+ * to the service.
+ *
+ * @param cls the 'struct Plugin'
+ * @param client the 'struct SourceInformation'
+ * @param hdr the actual message
+ */
+static int
+process_inbound_tokenized_messages (void *cls, void *client,
+ const struct GNUNET_MessageHeader *hdr)
+{
+ struct Plugin *plugin = cls;
+ struct SourceInformation *si = client;
+ struct GNUNET_ATS_Information ats[2];
+ struct GNUNET_TIME_Relative delay;
+
+ GNUNET_assert (si->session != NULL);
+ if (GNUNET_YES == si->session->in_destroy)
+ return GNUNET_OK;
+ /* setup ATS */
+ ats[0].type = htonl (GNUNET_ATS_QUALITY_NET_DISTANCE);
+ ats[0].value = htonl (1);
+ ats[1] = si->session->ats;
+ GNUNET_break (ntohl(ats[1].value) != GNUNET_ATS_NET_UNSPECIFIED);
+ delay = plugin->env->receive (plugin->env->cls,
+ &si->sender,
+ hdr,
+ (const struct GNUNET_ATS_Information *) &ats, 2,
+ si->session,
+ si->arg,
+ si->args);
+ si->session->flow_delay_for_other_peer = delay;
+ reschedule_session_timeout(si->session);
+ return GNUNET_OK;
+}
+
+
+/**
+ * We've received a UDP Message. Process it (pass contents to main service).
+ *
+ * @param plugin plugin context
+ * @param msg the message
+ * @param sender_addr sender address
+ * @param sender_addr_len number of bytes in sender_addr
+ */
+static void
+process_udp_message (struct Plugin *plugin, const struct UDPMessage *msg,
+ const struct sockaddr *sender_addr,
+ socklen_t sender_addr_len)
+{
+ struct SourceInformation si;
+ struct Session * s;
+ struct IPv4UdpAddress u4;
+ struct IPv6UdpAddress u6;
+ const void *arg;
+ size_t args;
+
+ if (0 != ntohl (msg->reserved))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+ if (ntohs (msg->header.size) <
+ sizeof (struct GNUNET_MessageHeader) + sizeof (struct UDPMessage))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+
+ /* convert address */
+ switch (sender_addr->sa_family)
+ {
+ case AF_INET:
+ GNUNET_assert (sender_addr_len == sizeof (struct sockaddr_in));
+ u4.ipv4_addr = ((struct sockaddr_in *) sender_addr)->sin_addr.s_addr;
+ u4.u4_port = ((struct sockaddr_in *) sender_addr)->sin_port;
+ arg = &u4;
+ args = sizeof (u4);
+ break;
+ case AF_INET6:
+ GNUNET_assert (sender_addr_len == sizeof (struct sockaddr_in6));
+ u6.ipv6_addr = ((struct sockaddr_in6 *) sender_addr)->sin6_addr;
+ u6.u6_port = ((struct sockaddr_in6 *) sender_addr)->sin6_port;
+ arg = &u6;
+ args = sizeof (u6);
+ break;
+ default:
+ GNUNET_break (0);
+ return;
+ }
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Received message with %u bytes from peer `%s' at `%s'\n",
+ (unsigned int) ntohs (msg->header.size), GNUNET_i2s (&msg->sender),
+ GNUNET_a2s (sender_addr, sender_addr_len));
+
+ struct GNUNET_HELLO_Address * address = GNUNET_HELLO_address_allocate(&msg->sender, "udp", arg, args);
+ s = udp_plugin_get_session(plugin, address);
+ GNUNET_free (address);
+
+ /* iterate over all embedded messages */
+ si.session = s;
+ si.sender = msg->sender;
+ si.arg = arg;
+ si.args = args;
+ s->rc++;
+ GNUNET_SERVER_mst_receive (plugin->mst, &si, (const char *) &msg[1],
+ ntohs (msg->header.size) -
+ sizeof (struct UDPMessage), GNUNET_YES, GNUNET_NO);
+ s->rc--;
+ if ( (0 == s->rc) && (GNUNET_YES == s->in_destroy))
+ free_session (s);
+}
+
+
+/**
+ * Scan the heap for a receive context with the given address.
+ *
+ * @param cls the 'struct FindReceiveContext'
+ * @param node internal node of the heap
+ * @param element value stored at the node (a 'struct ReceiveContext')
+ * @param cost cost associated with the node
+ * @return GNUNET_YES if we should continue to iterate,
+ * GNUNET_NO if not.
+ */
+static int
+find_receive_context (void *cls, struct GNUNET_CONTAINER_HeapNode *node,
+ void *element, GNUNET_CONTAINER_HeapCostType cost)
+{
+ struct FindReceiveContext *frc = cls;
+ struct DefragContext *e = element;
+
+ if ((frc->addr_len == e->addr_len) &&
+ (0 == memcmp (frc->addr, e->src_addr, frc->addr_len)))
+ {
+ frc->rc = e;
+ return GNUNET_NO;
+ }
+ return GNUNET_YES;
+}
+
+
+/**
+ * Process a defragmented message.
+ *
+ * @param cls the 'struct ReceiveContext'
+ * @param msg the message
+ */
+static void
+fragment_msg_proc (void *cls, const struct GNUNET_MessageHeader *msg)
+{
+ struct DefragContext *rc = cls;
+
+ if (ntohs (msg->type) != GNUNET_MESSAGE_TYPE_TRANSPORT_UDP_MESSAGE)
+ {
+ GNUNET_break (0);
+ return;
+ }
+ if (ntohs (msg->size) < sizeof (struct UDPMessage))
+ {
+ GNUNET_break (0);
+ return;
+ }
+ process_udp_message (rc->plugin, (const struct UDPMessage *) msg,
+ rc->src_addr, rc->addr_len);
+}
+
+
+struct LookupContext
+{
+ const struct sockaddr * addr;
+
+ struct Session *res;
+
+ size_t addrlen;
+};
+
+
+static int
+lookup_session_by_addr_it (void *cls, const struct GNUNET_HashCode * key, void *value)
+{
+ struct LookupContext *l_ctx = cls;
+ struct Session * s = value;
+
+ if ((s->addrlen == l_ctx->addrlen) &&
+ (0 == memcmp (s->sock_addr, l_ctx->addr, s->addrlen)))
+ {
+ l_ctx->res = s;
+ return GNUNET_NO;
+ }
+ return GNUNET_YES;
+}
+
+
+/**
+ * Transmit an acknowledgement.
+ *
+ * @param cls the 'struct ReceiveContext'
+ * @param id message ID (unused)
+ * @param msg ack to transmit
+ */
+static void
+ack_proc (void *cls, uint32_t id, const struct GNUNET_MessageHeader *msg)
+{
+ struct DefragContext *rc = cls;
+ size_t msize = sizeof (struct UDP_ACK_Message) + ntohs (msg->size);
+ struct UDP_ACK_Message *udp_ack;
+ uint32_t delay = 0;
+ struct UDPMessageWrapper *udpw;
+ struct Session *s;
+
+ struct LookupContext l_ctx;
+ l_ctx.addr = rc->src_addr;
+ l_ctx.addrlen = rc->addr_len;
+ l_ctx.res = NULL;
+ GNUNET_CONTAINER_multihashmap_iterate (rc->plugin->sessions,
+ &lookup_session_by_addr_it,
+ &l_ctx);
+ s = l_ctx.res;
+
+ if (NULL == s)
+ return;
+
+ if (s->flow_delay_for_other_peer.rel_value <= UINT32_MAX)
+ delay = s->flow_delay_for_other_peer.rel_value;
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Sending ACK to `%s' including delay of %u ms\n",
+ GNUNET_a2s (rc->src_addr,
+ (rc->src_addr->sa_family ==
+ AF_INET) ? sizeof (struct sockaddr_in) : sizeof (struct
+ sockaddr_in6)),
+ delay);
+ udpw = GNUNET_malloc (sizeof (struct UDPMessageWrapper) + msize);
+ udpw->msg_size = msize;
+ udpw->session = s;
+ udpw->timeout = GNUNET_TIME_UNIT_FOREVER_ABS;
+ udpw->udp = (char *)&udpw[1];
+ udp_ack = (struct UDP_ACK_Message *) udpw->udp;
+ udp_ack->header.size = htons ((uint16_t) msize);
+ udp_ack->header.type = htons (GNUNET_MESSAGE_TYPE_TRANSPORT_UDP_ACK);
+ udp_ack->delay = htonl (delay);
+ udp_ack->sender = *rc->plugin->env->my_identity;
+ memcpy (&udp_ack[1], msg, ntohs (msg->size));
+
+ enqueue (rc->plugin, udpw);
+}
+
+
+static void
+read_process_msg (struct Plugin *plugin,
+ const struct GNUNET_MessageHeader *msg,
+ const char *addr,
+ socklen_t fromlen)
+{
+ if (ntohs (msg->size) < sizeof (struct UDPMessage))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+ process_udp_message (plugin, (const struct UDPMessage *) msg,
+ (const struct sockaddr *) addr, fromlen);
+}
+
+
+static void
+read_process_ack (struct Plugin *plugin,
+ const struct GNUNET_MessageHeader *msg,
+ char *addr,
+ socklen_t fromlen)
+{
+ const struct GNUNET_MessageHeader *ack;
+ const struct UDP_ACK_Message *udp_ack;
+ struct LookupContext l_ctx;
+ struct Session *s;
+ struct GNUNET_TIME_Relative flow_delay;
+
+ if (ntohs (msg->size) <
+ sizeof (struct UDP_ACK_Message) + sizeof (struct GNUNET_MessageHeader))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+ udp_ack = (const struct UDP_ACK_Message *) msg;
+ l_ctx.addr = (const struct sockaddr *) addr;
+ l_ctx.addrlen = fromlen;
+ l_ctx.res = NULL;
+ GNUNET_CONTAINER_multihashmap_iterate (plugin->sessions,
+ &lookup_session_by_addr_it,
+ &l_ctx);
+ s = l_ctx.res;
+
+ if ((s == NULL) || (s->frag_ctx == NULL))
+ return;
+
+ flow_delay.rel_value = (uint64_t) ntohl (udp_ack->delay);
+ LOG (GNUNET_ERROR_TYPE_DEBUG, "We received a sending delay of %llu\n",
+ flow_delay.rel_value);
+ s->flow_delay_from_other_peer =
+ GNUNET_TIME_relative_to_absolute (flow_delay);
+
+ ack = (const struct GNUNET_MessageHeader *) &udp_ack[1];
+ if (ntohs (ack->size) !=
+ ntohs (msg->size) - sizeof (struct UDP_ACK_Message))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+
+ if (GNUNET_OK != GNUNET_FRAGMENT_process_ack (s->frag_ctx->frag, ack))
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "UDP processes %u-byte acknowledgement from `%s' at `%s'\n",
+ (unsigned int) ntohs (msg->size), GNUNET_i2s (&udp_ack->sender),
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen));
+ return;
+ }
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "FULL MESSAGE ACKed\n",
+ (unsigned int) ntohs (msg->size), GNUNET_i2s (&udp_ack->sender),
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen));
+ s->last_expected_delay = GNUNET_FRAGMENT_context_destroy (s->frag_ctx->frag);
+
+ struct UDPMessageWrapper * udpw;
+ struct UDPMessageWrapper * tmp;
+ if (s->addrlen == sizeof (struct sockaddr_in6))
+ {
+ udpw = plugin->ipv6_queue_head;
+ while (NULL != udpw)
+ {
+ tmp = udpw->next;
+ if ((udpw->frag_ctx != NULL) && (udpw->frag_ctx == s->frag_ctx))
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv6_queue_head, plugin->ipv6_queue_tail, udpw);
+ GNUNET_free (udpw);
+ }
+ udpw = tmp;
+ }
+ }
+ if (s->addrlen == sizeof (struct sockaddr_in))
+ {
+ udpw = plugin->ipv4_queue_head;
+ while (udpw!= NULL)
+ {
+ tmp = udpw->next;
+ if ((udpw->frag_ctx != NULL) && (udpw->frag_ctx == s->frag_ctx))
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv4_queue_head, plugin->ipv4_queue_tail, udpw);
+ GNUNET_free (udpw);
+ }
+ udpw = tmp;
+ }
+ }
+
+ if (s->frag_ctx->cont != NULL)
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Calling continuation for fragmented message to `%s' with result %s\n",
+ GNUNET_i2s (&s->target), "OK");
+ s->frag_ctx->cont (s->frag_ctx->cont_cls, &udp_ack->sender, GNUNET_OK);
+ }
+
+ GNUNET_free (s->frag_ctx);
+ s->frag_ctx = NULL;
+}
+
+
+static void
+read_process_fragment (struct Plugin *plugin,
+ const struct GNUNET_MessageHeader *msg,
+ char *addr,
+ socklen_t fromlen)
+{
+ struct DefragContext *d_ctx;
+ struct GNUNET_TIME_Absolute now;
+ struct FindReceiveContext frc;
+
+ frc.rc = NULL;
+ frc.addr = (const struct sockaddr *) addr;
+ frc.addr_len = fromlen;
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG, "UDP processes %u-byte fragment from `%s'\n",
+ (unsigned int) ntohs (msg->size),
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen));
+ /* Lookup existing receive context for this address */
+ GNUNET_CONTAINER_heap_iterate (plugin->defrag_ctxs,
+ &find_receive_context,
+ &frc);
+ now = GNUNET_TIME_absolute_get ();
+ d_ctx = frc.rc;
+
+ if (d_ctx == NULL)
+ {
+ /* Create a new defragmentation context */
+ d_ctx = GNUNET_malloc (sizeof (struct DefragContext) + fromlen);
+ memcpy (&d_ctx[1], addr, fromlen);
+ d_ctx->src_addr = (const struct sockaddr *) &d_ctx[1];
+ d_ctx->addr_len = fromlen;
+ d_ctx->plugin = plugin;
+ d_ctx->defrag =
+ GNUNET_DEFRAGMENT_context_create (plugin->env->stats, UDP_MTU,
+ UDP_MAX_MESSAGES_IN_DEFRAG, d_ctx,
+ &fragment_msg_proc, &ack_proc);
+ d_ctx->hnode =
+ GNUNET_CONTAINER_heap_insert (plugin->defrag_ctxs, d_ctx,
+ (GNUNET_CONTAINER_HeapCostType)
+ now.abs_value);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Created new defragmentation context for %u-byte fragment from `%s'\n",
+ (unsigned int) ntohs (msg->size),
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen));
+ }
+ else
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Found existing defragmentation context for %u-byte fragment from `%s'\n",
+ (unsigned int) ntohs (msg->size),
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen));
+ }
+
+ if (GNUNET_OK == GNUNET_DEFRAGMENT_process_fragment (d_ctx->defrag, msg))
+ {
+ /* keep this 'rc' from expiring */
+ GNUNET_CONTAINER_heap_update_cost (plugin->defrag_ctxs, d_ctx->hnode,
+ (GNUNET_CONTAINER_HeapCostType)
+ now.abs_value);
+ }
+ if (GNUNET_CONTAINER_heap_get_size (plugin->defrag_ctxs) >
+ UDP_MAX_SENDER_ADDRESSES_WITH_DEFRAG)
+ {
+ /* remove 'rc' that was inactive the longest */
+ d_ctx = GNUNET_CONTAINER_heap_remove_root (plugin->defrag_ctxs);
+ GNUNET_assert (NULL != d_ctx);
+ GNUNET_DEFRAGMENT_context_destroy (d_ctx->defrag);
+ GNUNET_free (d_ctx);
+ }
+}
+
+
+/**
+ * Read and process a message from the given socket.
+ *
+ * @param plugin the overall plugin
+ * @param rsock socket to read from
+ */
+static void
+udp_select_read (struct Plugin *plugin, struct GNUNET_NETWORK_Handle *rsock)
+{
+ socklen_t fromlen;
+ char addr[32];
+ char buf[65536] GNUNET_ALIGN;
+ ssize_t size;
+ const struct GNUNET_MessageHeader *msg;
+
+ fromlen = sizeof (addr);
+ memset (&addr, 0, sizeof (addr));
+ size = GNUNET_NETWORK_socket_recvfrom (rsock, buf, sizeof (buf),
+ (struct sockaddr *) &addr, &fromlen);
+#if MINGW
+ /* On SOCK_DGRAM UDP sockets recvfrom might fail with a
+ * WSAECONNRESET error to indicate that previous sendto() (???)
+ * on this socket has failed.
+ */
+ if ( (-1 == size) && (ECONNRESET == errno) )
+ return;
+#endif
+ if ( (-1 == size) || (size < sizeof (struct GNUNET_MessageHeader)))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+ msg = (const struct GNUNET_MessageHeader *) buf;
+
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "UDP received %u-byte message from `%s' type %i\n", (unsigned int) size,
+ GNUNET_a2s ((const struct sockaddr *) addr, fromlen), ntohs (msg->type));
+
+ if (size != ntohs (msg->size))
+ {
+ GNUNET_break_op (0);
+ return;
+ }
+
+ switch (ntohs (msg->type))
+ {
+ case GNUNET_MESSAGE_TYPE_TRANSPORT_BROADCAST_BEACON:
+ udp_broadcast_receive (plugin, &buf, size, addr, fromlen);
+ return;
+
+ case GNUNET_MESSAGE_TYPE_TRANSPORT_UDP_MESSAGE:
+ read_process_msg (plugin, msg, addr, fromlen);
+ return;
+
+ case GNUNET_MESSAGE_TYPE_TRANSPORT_UDP_ACK:
+ read_process_ack (plugin, msg, addr, fromlen);
+ return;
+
+ case GNUNET_MESSAGE_TYPE_FRAGMENT:
+ read_process_fragment (plugin, msg, addr, fromlen);
+ return;
+
+ default:
+ GNUNET_break_op (0);
+ return;
+ }
+}
+
+
+static size_t
+udp_select_send (struct Plugin *plugin, struct GNUNET_NETWORK_Handle *sock)
+{
+ ssize_t sent;
+ size_t slen;
+ struct GNUNET_TIME_Absolute max;
+ struct UDPMessageWrapper *udpw = NULL;
+ static int network_down_error;
+
+ if (sock == plugin->sockv4)
+ {
+ udpw = plugin->ipv4_queue_head;
+ }
+ else if (sock == plugin->sockv6)
+ {
+ udpw = plugin->ipv6_queue_head;
+ }
+ else
+ {
+ GNUNET_break (0);
+ return 0;
+ }
+
+ const struct sockaddr * sa = udpw->session->sock_addr;
+ slen = udpw->session->addrlen;
+
+ max = GNUNET_TIME_absolute_max(udpw->timeout, GNUNET_TIME_absolute_get());
+
+ while (udpw != NULL)
+ {
+ if (max.abs_value != udpw->timeout.abs_value)
+ {
+ /* Message timed out */
+ call_continuation(udpw, GNUNET_SYSERR);
+ if (udpw->frag_ctx != NULL)
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Fragmented message for peer `%s' with size %u timed out\n",
+ GNUNET_i2s(&udpw->session->target), udpw->frag_ctx->bytes_to_send);
+ udpw->session->last_expected_delay = GNUNET_FRAGMENT_context_destroy(udpw->frag_ctx->frag);
+ GNUNET_free (udpw->frag_ctx);
+ udpw->session->frag_ctx = NULL;
+ }
+ else
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Message for peer `%s' with size %u timed out\n",
+ GNUNET_i2s(&udpw->session->target), udpw->msg_size);
+ }
+
+ if (sock == plugin->sockv4)
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv4_queue_head, plugin->ipv4_queue_tail, udpw);
+ GNUNET_free (udpw);
+ udpw = plugin->ipv4_queue_head;
+ }
+ else if (sock == plugin->sockv6)
+ {
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv6_queue_head, plugin->ipv6_queue_tail, udpw);
+ GNUNET_free (udpw);
+ udpw = plugin->ipv6_queue_head;
+ }
+ }
+ else
+ {
+ struct GNUNET_TIME_Relative delta = GNUNET_TIME_absolute_get_remaining (udpw->session->flow_delay_from_other_peer);
+ if (delta.rel_value == 0)
+ {
+ /* this message is not delayed */
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Message for peer `%s' (%u bytes) is not delayed \n",
+ GNUNET_i2s(&udpw->session->target), udpw->msg_size);
+ break;
+ }
+ else
+ {
+ /* this message is delayed, try next */
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Message for peer `%s' (%u bytes) is delayed for %llu \n",
+ GNUNET_i2s(&udpw->session->target), udpw->msg_size,
+ delta);
+ udpw = udpw->next;
+ }
+ }
+ }
+
+ if (udpw == NULL)
+ {
+ /* No message left */
+ return 0;
+ }
+
+ sent = GNUNET_NETWORK_socket_sendto (sock, udpw->udp, udpw->msg_size, sa, slen);
+
+ if (GNUNET_SYSERR == sent)
+ {
+ const struct GNUNET_ATS_Information type = plugin->env->get_address_type
+ (plugin->env->cls,sa, slen);
+
+ if (((GNUNET_ATS_NET_LAN == ntohl(type.value)) || (GNUNET_ATS_NET_WAN == ntohl(type.value))) &&
+ ((ENETUNREACH == errno) || (ENETDOWN == errno)))
+ {
+ if ((network_down_error == GNUNET_NO) && (slen == sizeof (struct sockaddr_in)))
+ {
+ /* IPv4: "Network unreachable" or "Network down"
+ *
+ * This indicates we do not have connectivity
+ */
+ LOG (GNUNET_ERROR_TYPE_WARNING | GNUNET_ERROR_TYPE_BULK,
+ _("UDP could not transmit message to `%s': "
+ "Network seems down, please check your network configuration\n"),
+ GNUNET_a2s (sa, slen));
+ }
+ if ((network_down_error == GNUNET_NO) && (slen == sizeof (struct sockaddr_in6)))
+ {
+ /* IPv6: "Network unreachable" or "Network down"
+ *
+ * This indicates that this system is IPv6 enabled, but does not
+ * have a valid global IPv6 address assigned or we do not have
+ * connectivity
+ */
+
+ LOG (GNUNET_ERROR_TYPE_WARNING | GNUNET_ERROR_TYPE_BULK,
+ _("UDP could not transmit message to `%s': "
+ "Please check your network configuration and disable IPv6 if your "
+ "connection does not have a global IPv6 address\n"),
+ GNUNET_a2s (sa, slen));
+ }
+ }
+ else
+ {
+ LOG (GNUNET_ERROR_TYPE_WARNING,
+ "UDP could not transmit %u-byte message to `%s': `%s'\n",
+ (unsigned int) (udpw->msg_size), GNUNET_a2s (sa, slen),
+ STRERROR (errno));
+ }
+ call_continuation(udpw, GNUNET_SYSERR);
+ }
+ else
+ {
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "UDP transmitted %u-byte message to `%s' (%d: %s)\n",
+ (unsigned int) (udpw->msg_size), GNUNET_a2s (sa, slen), (int) sent,
+ (sent < 0) ? STRERROR (errno) : "ok");
+ call_continuation(udpw, GNUNET_OK);
+ network_down_error = GNUNET_NO;
+ }
+
+ if (sock == plugin->sockv4)
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv4_queue_head, plugin->ipv4_queue_tail, udpw);
+ else if (sock == plugin->sockv6)
+ GNUNET_CONTAINER_DLL_remove(plugin->ipv6_queue_head, plugin->ipv6_queue_tail, udpw);
+ GNUNET_free (udpw);
+ udpw = NULL;
+
+ return sent;
+}
+
+
+/**
+ * We have been notified that our readset has something to read. We don't
+ * know which socket needs to be read, so we have to check each one
+ * Then reschedule this function to be called again once more is available.
+ *
+ * @param cls the plugin handle
+ * @param tc the scheduling context (for rescheduling this function again)
+ */
+static void
+udp_plugin_select (void *cls, const struct GNUNET_SCHEDULER_TaskContext *tc)
+{
+ struct Plugin *plugin = cls;
+
+ plugin->select_task = GNUNET_SCHEDULER_NO_TASK;
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_SHUTDOWN) != 0)
+ return;
+ plugin->with_v4_ws = GNUNET_NO;
+
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_READ_READY) != 0)
+ {
+ if ((NULL != plugin->sockv4) &&
+ (GNUNET_NETWORK_fdset_isset (tc->read_ready, plugin->sockv4)))
+ udp_select_read (plugin, plugin->sockv4);
+
+ }
+
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_WRITE_READY) != 0)
+ {
+ if ((NULL != plugin->sockv4) && (plugin->ipv4_queue_head != NULL) &&
+ (GNUNET_NETWORK_fdset_isset (tc->write_ready, plugin->sockv4)))
+ {
+ udp_select_send (plugin, plugin->sockv4);
+ }
+ }
+
+ if (plugin->select_task != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel (plugin->select_task);
+ plugin->select_task = GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v4,
+ (plugin->ipv4_queue_head != NULL) ? plugin->ws_v4 : NULL,
+ &udp_plugin_select, plugin);
+ if (plugin->ipv4_queue_head != NULL)
+ plugin->with_v4_ws = GNUNET_YES;
+ else
+ plugin->with_v4_ws = GNUNET_NO;
+}
+
+
+/**
+ * We have been notified that our readset has something to read. We don't
+ * know which socket needs to be read, so we have to check each one
+ * Then reschedule this function to be called again once more is available.
+ *
+ * @param cls the plugin handle
+ * @param tc the scheduling context (for rescheduling this function again)
+ */
+static void
+udp_plugin_select_v6 (void *cls, const struct GNUNET_SCHEDULER_TaskContext *tc)
+{
+ struct Plugin *plugin = cls;
+
+ plugin->select_task_v6 = GNUNET_SCHEDULER_NO_TASK;
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_SHUTDOWN) != 0)
+ return;
+
+ plugin->with_v6_ws = GNUNET_NO;
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_READ_READY) != 0)
+ {
+ if ((NULL != plugin->sockv6) &&
+ (GNUNET_NETWORK_fdset_isset (tc->read_ready, plugin->sockv6)))
+ udp_select_read (plugin, plugin->sockv6);
+ }
+
+ if ((tc->reason & GNUNET_SCHEDULER_REASON_WRITE_READY) != 0)
+ {
+ if ((NULL != plugin->sockv6) && (plugin->ipv6_queue_head != NULL) &&
+ (GNUNET_NETWORK_fdset_isset (tc->write_ready, plugin->sockv6)))
+ {
+ udp_select_send (plugin, plugin->sockv6);
+ }
+ }
+ if (plugin->select_task_v6 != GNUNET_SCHEDULER_NO_TASK)
+ GNUNET_SCHEDULER_cancel (plugin->select_task_v6);
+ plugin->select_task_v6 = GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ GNUNET_TIME_UNIT_FOREVER_REL,
+ plugin->rs_v6,
+ (plugin->ipv6_queue_head != NULL) ? plugin->ws_v6 : NULL,
+ &udp_plugin_select_v6, plugin);
+ if (plugin->ipv6_queue_head != NULL)
+ plugin->with_v6_ws = GNUNET_YES;
+ else
+ plugin->with_v6_ws = GNUNET_NO;
+}
+
+
+static int
+setup_sockets (struct Plugin *plugin, struct sockaddr_in6 *serverAddrv6, struct sockaddr_in *serverAddrv4)
+{
+ int tries;
+ int sockets_created = 0;
+ struct sockaddr *serverAddr;
+ struct sockaddr *addrs[2];
+ socklen_t addrlens[2];
+ socklen_t addrlen;
+
+ /* Create IPv6 socket */
+ if (plugin->enable_ipv6 == GNUNET_YES)
+ {
+ plugin->sockv6 = GNUNET_NETWORK_socket_create (PF_INET6, SOCK_DGRAM, 0);
+ if (NULL == plugin->sockv6)