#include <talloc.h>
#include <errno.h>
#include <unistd.h>
+#include <sys/time.h>
#include <gsscon.h>
#include <tr_rp.h>
#include <trust_router/tr_name.h>
#include <trp_internal.h>
+#include <tr_gss.h>
+#include <trp_ptable.h>
#include <trp_rtable.h>
#include <tr_debug.h>
trps->cookie=NULL;
trps->conn=NULL;
trps->trpc=NULL;
+ trps->update_interval=(struct timeval){0,0};
+ trps->sweep_interval=(struct timeval){0,0};
+ trps->ptable=NULL;
+
trps->mq=tr_mq_new(trps);
if (trps->mq==NULL) {
/* failed to allocate mq */
talloc_free(trps);
- trps=NULL;
- } else {
- trps->rtable=trp_rtable_new();
- if (trps->rtable==NULL) {
- /* failed to allocate rtable */
- talloc_free(trps);
- trps=NULL;
- } else
- talloc_set_destructor((void *)trps, trps_destructor);
+ return NULL;
+ }
+
+ trps->rtable=NULL;
+ if (trps_init_rtable(trps) != TRP_SUCCESS) {
+ /* failed to allocate rtable */
+ talloc_free(trps);
+ return NULL;
}
+
+ talloc_set_destructor((void *)trps, trps_destructor);
}
return trps;
}
+/* create a new route table, first discarding an old one if necessary */
+TRP_RC trps_init_rtable(TRPS_INSTANCE *trps)
+{
+ if (trps->rtable != NULL) {
+ trp_rtable_free(trps->rtable);
+ trps->rtable=NULL;
+ }
+
+ trps->rtable=trp_rtable_new();
+ if (trps->rtable==NULL) {
+ return TRP_NOMEM;
+ }
+ return TRP_SUCCESS;
+}
+
+void trps_clear_rtable(TRPS_INSTANCE *trps)
+{
+ trp_rtable_clear(trps->rtable);
+}
+
void trps_free (TRPS_INSTANCE *trps)
{
if (trps!=NULL)
return tr_mq_pop(trps->mq);
}
-void trps_mq_append(TRPS_INSTANCE *trps, TR_MQ_MSG *msg)
+void trps_mq_add(TRPS_INSTANCE *trps, TR_MQ_MSG *msg)
+{
+ tr_mq_add(trps->mq, msg);
+}
+
+unsigned int trps_get_connect_interval(TRPS_INSTANCE *trps)
{
- tr_mq_append(trps->mq, msg);
+ return trps->connect_interval.tv_sec;
}
-/* stand-in for a function that finds the connection for a particular peer */
-#if 0
-static TRP_CONNECTION *trps_find_connection(TRPS_INSTANCE *trps)
+void trps_set_connect_interval(TRPS_INSTANCE *trps, unsigned int interval)
{
- return trps->conn;
+ trps->connect_interval.tv_sec=interval;
+ trps->connect_interval.tv_usec=0;
+}
+
+unsigned int trps_get_update_interval(TRPS_INSTANCE *trps)
+{
+ return trps->update_interval.tv_sec;
+}
+
+void trps_set_update_interval(TRPS_INSTANCE *trps, unsigned int interval)
+{
+ trps->update_interval.tv_sec=interval;
+ trps->update_interval.tv_usec=0;
+}
+
+unsigned int trps_get_sweep_interval(TRPS_INSTANCE *trps)
+{
+ return trps->sweep_interval.tv_sec;
+}
+
+void trps_set_sweep_interval(TRPS_INSTANCE *trps, unsigned int interval)
+{
+ trps->sweep_interval.tv_sec=interval;
+ trps->sweep_interval.tv_usec=0;
+}
+
+void trps_set_ptable(TRPS_INSTANCE *trps, TRP_PTABLE *ptable)
+{
+ if (trps->ptable!=NULL)
+ trp_ptable_free(trps->ptable);
+ trps->ptable=ptable;
+}
+
+TRPC_INSTANCE *trps_find_trpc(TRPS_INSTANCE *trps, TRP_PEER *peer)
+{
+ TRPC_INSTANCE *cur=NULL;
+ TR_NAME *name=NULL;
+ TR_NAME *peer_servicename=trp_peer_get_servicename(peer);
+
+ for (cur=trps->trpc; cur!=NULL; cur=trpc_get_next(cur)) {
+ name=trpc_get_gssname(cur);
+ if ((name!=NULL) && (0==tr_name_cmp(peer_servicename, name))) {
+ break;
+ }
+ }
+ return cur;
}
-#endif
void trps_add_connection(TRPS_INSTANCE *trps, TRP_CONNECTION *new)
{
trps->trpc=trpc_remove(trps->trpc, remove);
}
-TRP_RC trps_send_msg (TRPS_INSTANCE *trps, void *peer, const char *msg)
+TRP_RC trps_send_msg(TRPS_INSTANCE *trps, TRP_PEER *peer, const char *msg)
{
TALLOC_CTX *tmp_ctx=talloc_new(NULL);
TR_MQ_MSG *mq_msg=NULL;
char *msg_dup=NULL;
TRP_RC rc=TRP_ERROR;
-
- /* Currently ignore peer and just send to an open connection.
- * In reality, need to identify the correct peer and send via that
- * one. */
- if (trps->trpc != NULL) {
- if (trpc_get_status(trps->trpc)!=TRP_CONNECTION_UP)
- tr_debug("trps_send_msg: skipping message sent while TRPC connection not up.");
- else {
- mq_msg=tr_mq_msg_new(tmp_ctx, "trpc_send");
- msg_dup=talloc_strdup(mq_msg, msg); /* get local copy in mq_msg context */
- tr_mq_msg_set_payload(mq_msg, msg_dup, NULL); /* no need for a free() func */
- trpc_mq_append(trps->trpc, mq_msg);
- rc=TRP_SUCCESS;
- }
+ TRPC_INSTANCE *trpc=NULL;
+
+ /* get the connection for this peer */
+ trpc=trps_find_trpc(trps, peer);
+ /* instead, let's let that happen and then clear the queue when an attempt to
+ * connect fails */
+ if (trpc==NULL) {
+ tr_warning("trps_send_msg: skipping message queued for missing TRP client entry.");
+ } else {
+ mq_msg=tr_mq_msg_new(tmp_ctx, TR_MQMSG_TRPC_SEND, TR_MQ_PRIO_NORMAL);
+ msg_dup=talloc_strdup(mq_msg, msg); /* get local copy in mq_msg context */
+ tr_mq_msg_set_payload(mq_msg, msg_dup, NULL); /* no need for a free() func */
+ trpc_mq_add(trpc, mq_msg);
+ rc=TRP_SUCCESS;
}
talloc_free(tmp_ctx);
return rc;
return conn;
}
-#if 0 /* remove this if I forget to do so */
-/* returns EACCES if authorization is denied */
-int trps_auth_cb(gss_name_t clientName, gss_buffer_t displayName, void *data)
-{
- TRPS_INSTANCE *trps = (TRPS_INSTANCE *)data;
- int result=0;
-
- if (0!=trps->auth_handler(clientName, displayName, trps->cookie)) {
- tr_debug("trps_auth_cb: client '%.*s' denied authorization.", displayName->length, displayName->value);
- result=EACCES; /* denied */
- }
-
- return result;
-}
-#endif
-
/* get the currently selected route if available */
-TRP_RENTRY *trps_get_route(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm, TR_NAME *peer)
+TRP_ROUTE *trps_get_route(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm, TR_NAME *peer)
{
return trp_rtable_get_entry(trps->rtable, comm, realm, peer);
}
-TRP_RENTRY *trps_get_selected_route(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm)
+TRP_ROUTE *trps_get_selected_route(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm)
{
return trp_rtable_get_selected_entry(trps->rtable, comm, realm);
}
/* copy the result if you want to keep it */
TR_NAME *trps_get_next_hop(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm)
{
- TRP_RENTRY *route=trps_get_selected_route(trps, comm, realm);
+ TRP_ROUTE *route=trps_get_selected_route(trps, comm, realm);
if (route==NULL)
return NULL;
- return trp_rentry_get_next_hop(route);
+ return trp_route_get_next_hop(route);
}
/* mark a route as retracted */
-static void trps_retract_route(TRPS_INSTANCE *trps, TRP_RENTRY *entry)
+static void trps_retract_route(TRPS_INSTANCE *trps, TRP_ROUTE *entry)
{
- trp_rentry_set_metric(entry, TRP_METRIC_INFINITY);
+ trp_route_set_metric(entry, TRP_METRIC_INFINITY);
+ trp_route_set_triggered(entry, 1);
}
/* is this route retracted? */
-static int trps_route_retracted(TRPS_INSTANCE *trps, TRP_RENTRY *entry)
+static int trps_route_retracted(TRPS_INSTANCE *trps, TRP_ROUTE *entry)
{
- return (trp_rentry_get_metric(entry)==TRP_METRIC_INFINITY);
+ return (trp_metric_is_infinite(trp_route_get_metric(entry)));
}
static TRP_RC trps_read_message(TRPS_INSTANCE *trps, TRP_CONNECTION *conn, TR_MSG **msg)
return TRP_ERROR;
}
- tr_debug("trps_read_message(): Request Received, %u bytes.", (unsigned) buflen);
+ tr_debug("trps_read_message(): message received, %u bytes.", (unsigned) buflen);
tr_debug("trps_read_message(): %.*s", buflen, buf);
*msg=tr_msg_decode(buf, buflen);
return listen;
}
+TRP_RC trps_authorize_connection(TRPS_INSTANCE *trps, TRP_CONNECTION *conn)
+{
+ /* try to establish a GSS context */
+ if (0!=trp_connection_auth(conn, trps->auth_handler, trps->cookie)) {
+ tr_notice("trps_authorize_connection: failed to authorize connection");
+ trp_connection_close(conn);
+ return TRP_ERROR;
+ }
+ tr_notice("trps_authorize_connection: authorized connection");
+ return TRP_SUCCESS;
+}
+
void trps_handle_connection(TRPS_INSTANCE *trps, TRP_CONNECTION *conn)
{
- TALLOC_CTX *tmp_ctx=talloc_new(NULL);
TR_MSG *msg=NULL;
TRP_RC rc=TRP_ERROR;
- /* try to establish a GSS context */
- if (0!=trp_connection_auth(conn, trps->auth_handler, trps->cookie)) {
- tr_notice("tr_trps_conn_thread: failed to authorize connection");
- pthread_exit(NULL);
- }
- tr_notice("trps_handle_connection: authorized connection");
-
/* loop as long as the connection exists */
while (trp_connection_get_status(conn)==TRP_CONNECTION_UP) {
rc=trps_read_message(trps, conn, &msg);
}
tr_debug("trps_handle_connection: connection closed.");
- talloc_free(tmp_ctx);
}
static TRP_RC trps_validate_update(TRPS_INSTANCE *trps, TRP_UPD *upd)
{
+ if (upd==NULL) {
+ tr_notice("trps_validate_update: null TRP update.");
+ return TRP_BADARG;
+ }
+
if (trp_upd_get_inforec(upd)==NULL) {
tr_notice("trps_validate_update: received TRP update with no info records.");
return TRP_ERROR;
}
/* check for valid metric */
- if ((trp_inforec_get_metric(rec)==TRP_METRIC_INVALID)
- || (trp_inforec_get_metric(rec)>TRP_METRIC_INFINITY)) {
- tr_debug("trps_validate_inforec: invalid metric.");
+ if (trp_metric_is_invalid(trp_inforec_get_metric(rec))) {
+ tr_debug("trps_validate_inforec: invalid metric (%u).", trp_inforec_get_metric(rec));
return TRP_ERROR;
}
static unsigned int trps_advertised_metric(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm, TR_NAME *peer)
{
- TRP_RENTRY *entry=trp_rtable_get_entry(trps->rtable, comm, realm, peer);
+ TRP_ROUTE *entry=trp_rtable_get_entry(trps->rtable, comm, realm, peer);
if (entry==NULL)
return TRP_METRIC_INFINITY;
- return trp_rentry_get_metric(entry) + trps_cost(trps, peer);
+ return trp_route_get_metric(entry) + trps_cost(trps, peer);
}
static int trps_check_feasibility(TRPS_INSTANCE *trps, TRP_INFOREC *rec)
TR_NAME *next_hop=NULL;
/* we check these in the validation stage, but just in case... */
- if ((rec_metric==TRP_METRIC_INVALID) || (rec_metric>TRP_METRIC_INFINITY))
+ if (trp_metric_is_invalid(rec_metric))
return 0;
/* retractions (aka infinite metrics) are always feasible */
- if (rec_metric==TRP_METRIC_INFINITY)
+ if (trp_metric_is_infinite(rec_metric))
return 1;
/* updates from our current next hop are always feasible*/
return ts;
}
-static TRP_RC trps_accept_update(TRPS_INSTANCE *trps, TRP_INFOREC *rec)
+static TRP_RC trps_accept_update(TRPS_INSTANCE *trps, TRP_UPD *upd, TRP_INFOREC *rec)
{
- TRP_RENTRY *entry=NULL;
+ TRP_ROUTE *entry=NULL;
entry=trp_rtable_get_entry(trps->rtable,
trp_inforec_get_comm(rec),
trp_inforec_get_realm(rec),
trp_inforec_get_next_hop(rec));
if (entry==NULL) {
- entry=trp_rentry_new(NULL);
+ entry=trp_route_new(NULL);
if (entry==NULL) {
tr_err("trps_accept_update: unable to allocate new entry.");
return TRP_NOMEM;
}
- trp_rentry_set_apc(entry, tr_dup_name(trp_inforec_get_comm(rec)));
- trp_rentry_set_realm(entry, tr_dup_name(trp_inforec_get_realm(rec)));
- trp_rentry_set_peer(entry, tr_dup_name(trp_inforec_get_next_hop(rec)));
- trp_rentry_set_trust_router(entry, tr_dup_name(trp_inforec_get_trust_router(rec)));
- trp_rentry_set_next_hop(entry, tr_dup_name(trp_inforec_get_next_hop(rec)));
- if ((trp_rentry_get_apc(entry)==NULL)
- ||(trp_rentry_get_realm(entry)==NULL)
- ||(trp_rentry_get_peer(entry)==NULL)
- ||(trp_rentry_get_trust_router(entry)==NULL)
- ||(trp_rentry_get_next_hop(entry)==NULL)) {
+ trp_route_set_comm(entry, trp_inforec_dup_comm(rec));
+ trp_route_set_realm(entry, trp_inforec_dup_realm(rec));
+ trp_route_set_peer(entry, trp_upd_dup_peer(upd));
+ trp_route_set_trust_router(entry, trp_inforec_dup_trust_router(rec));
+ trp_route_set_next_hop(entry, trp_inforec_dup_next_hop(rec));
+ if ((trp_route_get_comm(entry)==NULL)
+ ||(trp_route_get_realm(entry)==NULL)
+ ||(trp_route_get_peer(entry)==NULL)
+ ||(trp_route_get_trust_router(entry)==NULL)
+ ||(trp_route_get_next_hop(entry)==NULL)) {
/* at least one field could not be allocated */
tr_err("trps_accept_update: unable to allocate all fields for entry.");
- trp_rentry_free(entry);
+ trp_route_free(entry);
return TRP_NOMEM;
}
trp_rtable_add(trps->rtable, entry);
* route (we never accept retractions as new routes), so there is no risk of leaving the expiry
* time unset on a new route entry. */
tr_debug("trps_accept_update: accepting route update.");
- trp_rentry_set_metric(entry, trp_inforec_get_metric(rec));
+ trp_route_set_metric(entry, trp_inforec_get_metric(rec));
+ trp_route_set_interval(entry, trp_inforec_get_interval(rec));
+
+ /* check whether the trust router has changed */
+ if (0!=tr_name_cmp(trp_route_get_trust_router(entry),
+ trp_inforec_get_trust_router(rec))) {
+ /* The name changed. Set this route as triggered. */
+ tr_debug("trps_accept_update: trust router for route changed.");
+ trp_route_set_triggered(entry, 1);
+ trp_route_set_trust_router(entry, trp_inforec_dup_trust_router(rec)); /* frees old name */
+ }
if (!trps_route_retracted(trps, entry)) {
tr_debug("trps_accept_update: route not retracted, setting expiry timer.");
- trp_rentry_set_expiry(entry, trps_compute_expiry(trps,
- trp_inforec_get_interval(rec),
- trp_rentry_get_expiry(entry)));
+ trp_route_set_expiry(entry, trps_compute_expiry(trps,
+ trp_route_get_interval(entry),
+ trp_route_get_expiry(entry)));
}
return TRP_SUCCESS;
}
-/* TODO: handle community updates */
static TRP_RC trps_handle_update(TRPS_INSTANCE *trps, TRP_UPD *upd)
{
unsigned int feas=0;
TRP_INFOREC *rec=NULL;
- TRP_RENTRY *route=NULL;
+ TRP_ROUTE *route=NULL;
if (trps_validate_update(trps, upd) != TRP_SUCCESS) {
tr_notice("trps_handle_update: received invalid TRP update.");
return TRP_ERROR;
}
- rec=trp_upd_get_inforec(upd);
- for (;rec!=NULL; rec=trp_inforec_get_next(rec)) {
+ for (rec=trp_upd_get_inforec(upd); rec!=NULL; rec=trp_inforec_get_next(rec)) {
/* validate/sanity check the record update */
if (trps_validate_inforec(trps, rec) != TRP_SUCCESS) {
- tr_notice("trps_handle_update: invalid record in TRP update.");
- continue;
+ tr_notice("trps_handle_update: invalid record in TRP update, discarding entire update.");
+ return TRP_ERROR;
}
+ }
+ for (rec=trp_upd_get_inforec(upd); rec!=NULL; rec=trp_inforec_get_next(rec)) {
/* determine feasibility */
feas=trps_check_feasibility(trps, rec);
tr_debug("trps_handle_update: record feasibility=%d", feas);
/* do we have an existing route? */
- route=trps_get_route(trps, trp_inforec_get_comm(rec), trp_inforec_get_realm(rec), trp_inforec_get_next_hop(rec));
+ route=trps_get_route(trps,
+ trp_inforec_get_comm(rec),
+ trp_inforec_get_realm(rec),
+ trp_upd_get_peer(upd));
if (route!=NULL) {
/* there was a route table entry already */
tr_debug("trps_handle_updates: route entry already exists.");
if (feas) {
/* Update is feasible. Accept it. */
- trps_accept_update(trps, rec);
+ trps_accept_update(trps, upd, rec);
} else {
/* Update is infeasible. Ignore it unless the trust router has changed. */
- if (0!=tr_name_cmp(trp_rentry_get_trust_router(route),
+ if (0!=tr_name_cmp(trp_route_get_trust_router(route),
trp_inforec_get_trust_router(rec))) {
/* the trust router associated with the route has changed, treat update as a retraction */
trps_retract_route(trps, route);
} else {
/* No existing route table entry. Ignore it unless it is feasible and not a retraction. */
tr_debug("trps_handle_update: no route entry exists yet.");
- if (feas && (trp_inforec_get_metric(rec) != TRP_METRIC_INFINITY))
- trps_accept_update(trps, rec);
+ if (feas && trp_metric_is_finite(trp_inforec_get_metric(rec)))
+ trps_accept_update(trps, upd, rec);
}
}
return TRP_SUCCESS;
}
+static TRP_RC trps_validate_request(TRPS_INSTANCE *trps, TRP_REQ *req)
+{
+ if (req==NULL) {
+ tr_notice("trps_validate_request: null TRP request.");
+ return TRP_BADARG;
+ }
+
+ if (trp_req_get_comm(req)==NULL) {
+ tr_notice("trps_validate_request: received TRP request with null community.");
+ return TRP_ERROR;
+ }
+
+ if (trp_req_get_realm(req)==NULL) {
+ tr_notice("trps_validate_request: received TRP request with null realm.");
+ return TRP_ERROR;
+ }
+
+ if (trp_req_get_peer(req)==NULL) {
+ tr_notice("trps_validate_request: received TRP request without origin peer information.");
+ return TRP_ERROR;
+ }
+
+ return TRP_SUCCESS;
+}
+
+/* choose the best route to comm/realm, optionally excluding routes to a particular peer */
+static TRP_ROUTE *trps_find_best_route(TRPS_INSTANCE *trps,
+ TR_NAME *comm,
+ TR_NAME *realm,
+ TR_NAME *exclude_peer)
+{
+ TRP_ROUTE **entry=NULL;
+ TRP_ROUTE *best=NULL;
+ size_t n_entry=0;
+ unsigned int kk=0;
+ unsigned int kk_min=0;
+ unsigned int min_metric=TRP_METRIC_INFINITY;
+
+ entry=trp_rtable_get_realm_entries(trps->rtable, comm, realm, &n_entry);
+ for (kk=0; kk<n_entry; kk++) {
+ if (trp_route_get_metric(entry[kk]) < min_metric) {
+ if ((exclude_peer==NULL) || (0!=tr_name_cmp(trp_route_get_peer(entry[kk]),
+ exclude_peer))) {
+ kk_min=kk;
+ min_metric=trp_route_get_metric(entry[kk]);
+ }
+ }
+ }
+ if (trp_metric_is_finite(min_metric))
+ best=entry[kk_min];
+
+ talloc_free(entry);
+ return best;
+}
+
+/* TODO: think this through more carefully. At least ought to add hysteresis
+ * to avoid flapping between routers or routes. */
+TRP_RC trps_update_active_routes(TRPS_INSTANCE *trps)
+{
+ size_t n_comm=0, ii=0;
+ TR_NAME **comm=trp_rtable_get_comms(trps->rtable, &n_comm);
+ size_t n_realm=0, jj=0;
+ TR_NAME **realm=NULL;
+ TRP_ROUTE *best_route=NULL, *cur_route=NULL;
+ unsigned int best_metric=0, cur_metric=0;
+
+ for (ii=0; ii<n_comm; ii++) {
+ realm=trp_rtable_get_comm_realms(trps->rtable, comm[ii], &n_realm);
+ for (jj=0; jj<n_realm; jj++) {
+ best_route=trps_find_best_route(trps, comm[ii], realm[jj], NULL);
+ if (best_route==NULL)
+ best_metric=TRP_METRIC_INFINITY;
+ else
+ best_metric=trp_route_get_metric(best_route);
+
+ cur_route=trps_get_selected_route(trps, comm[ii], realm[jj]);
+ if (cur_route!=NULL) {
+ cur_metric=trp_route_get_metric(cur_route);
+ if ((best_metric < cur_metric) && (trp_metric_is_finite(best_metric))) {
+ /* The new route has a lower metric than the previous, and is finite. Accept. */
+ trp_route_set_selected(cur_route, 0);
+ trp_route_set_selected(best_route, 1);
+ } else if (!trp_metric_is_finite(cur_metric)) /* rejects infinite or invalid metrics */
+ trp_route_set_selected(cur_route, 0);
+ } else if (trp_metric_is_finite(best_metric)) {
+ trp_route_set_selected(best_route, 1);
+ }
+ }
+ if (realm!=NULL)
+ talloc_free(realm);
+ realm=NULL; n_realm=0;
+ }
+ if (comm!=NULL)
+ talloc_free(comm);
+ comm=NULL; n_comm=0;
+
+ return TRP_SUCCESS;
+}
+
+/* true if curtime >= expiry */
+static int trps_expired(struct timespec *expiry, struct timespec *curtime)
+{
+ return ((curtime->tv_sec > expiry->tv_sec)
+ || ((curtime->tv_sec == expiry->tv_sec)
+ &&(curtime->tv_nsec > expiry->tv_nsec)));
+}
+
+/* Sweep for expired routes. For each expired route, if its metric is infinite, the route is flushed.
+ * If its metric is finite, the metric is set to infinite and the route's expiration time is updated. */
+TRP_RC trps_sweep_routes(TRPS_INSTANCE *trps)
+{
+ struct timespec sweep_time={0,0};
+ TRP_ROUTE **entry=NULL;
+ size_t n_entry=0;
+ size_t ii=0;
+
+ /* use a single time for the entire sweep */
+ if (0!=clock_gettime(CLOCK_REALTIME, &sweep_time)) {
+ tr_err("trps_sweep_routes: could not read realtime clock.");
+ sweep_time.tv_sec=0;
+ sweep_time.tv_nsec=0;
+ return TRP_ERROR;
+ }
+
+ entry=trp_rtable_get_entries(trps->rtable, &n_entry); /* must talloc_free *entry */
+
+ /* loop over the entries */
+ for (ii=0; ii<n_entry; ii++) {
+ if (!trp_route_is_local(entry[ii]) && trps_expired(trp_route_get_expiry(entry[ii]), &sweep_time)) {
+ tr_debug("trps_sweep_routes: route expired.");
+ if (!trp_metric_is_finite(trp_route_get_metric(entry[ii]))) {
+ /* flush route */
+ tr_debug("trps_sweep_routes: metric was infinity, flushing route.");
+ trp_rtable_remove(trps->rtable, entry[ii]); /* entry[ii] is no longer valid */
+ entry[ii]=NULL;
+ } else {
+ /* set metric to infinity and reset timer */
+ tr_debug("trps_sweep_routes: setting metric to infinity and resetting expiry.");
+ trp_route_set_metric(entry[ii], TRP_METRIC_INFINITY);
+ trp_route_set_expiry(entry[ii], trps_compute_expiry(trps,
+ trp_route_get_interval(entry[ii]),
+ trp_route_get_expiry(entry[ii])));
+ }
+ }
+ }
+
+ talloc_free(entry);
+ return TRP_SUCCESS;
+}
+
+/* select the correct route to comm/realm to be announced to peer */
+static TRP_ROUTE *trps_select_realm_update(TRPS_INSTANCE *trps, TR_NAME *comm, TR_NAME *realm, TR_NAME *peer_gssname)
+{
+ TRP_ROUTE *route;
+
+ /* Take the currently selected route unless it is through the peer we're sending the update to.
+ * I.e., enforce the split horizon rule. */
+ route=trp_rtable_get_selected_entry(trps->rtable, comm, realm);
+ if (route==NULL) {
+ /* No selected route, this should only happen if the only route has been retracted,
+ * in which case we do not want to advertise it. */
+ return NULL;
+ }
+ tr_debug("trps_select_realm_update: %s vs %s", peer_gssname->buf,
+ trp_route_get_peer(route)->buf);
+ if (0==tr_name_cmp(peer_gssname, trp_route_get_peer(route))) {
+ tr_debug("trps_select_realm_update: matched, finding alternate route");
+ /* the selected entry goes through the peer we're reporting to, choose an alternate */
+ route=trps_find_best_route(trps, comm, realm, peer_gssname);
+ if ((route==NULL) || (!trp_metric_is_finite(trp_route_get_metric(route))))
+ return NULL; /* don't advertise a nonexistent or retracted route */
+ }
+ return route;
+}
+
+/* returns an array of pointers to updates (*not* an array of updates). Returns number of entries
+ * via n_update parameter. (The allocated space will generally be larger than required, see note in
+ * the code.) If triggered is set, sends only triggered updates. */
+static TRP_ROUTE **trps_select_updates_for_peer(TALLOC_CTX *memctx,
+ TRPS_INSTANCE *trps,
+ TR_NAME *peer_gssname,
+ int triggered,
+ size_t *n_update)
+{
+ size_t n_comm=0;
+ TR_NAME **comm=trp_rtable_get_comms(trps->rtable, &n_comm);
+ TR_NAME **realm=NULL;
+ size_t n_realm=0;
+ size_t ii=0, jj=0;
+ TRP_ROUTE *best=NULL;
+ TRP_ROUTE **result=NULL;
+ size_t n_used=0;
+
+ /* Need to allocate space for the results. For simplicity, we just allocate a block
+ * with space for every route table entry to be returned. This is guaranteed to be large
+ * enough. If the routing table gets very large, this may be wasteful, but that seems
+ * unlikely to be significant in the near future. */
+ result=talloc_array(memctx, TRP_ROUTE *, trp_rtable_size(trps->rtable));
+ if (result==NULL) {
+ talloc_free(comm);
+ *n_update=0;
+ return NULL;
+ }
+
+ for (ii=0; ii<n_comm; ii++) {
+ realm=trp_rtable_get_comm_realms(trps->rtable, comm[ii], &n_realm);
+ for (jj=0; jj<n_realm; jj++) {
+ best=trps_select_realm_update(trps, comm[ii], realm[jj], peer_gssname);
+ /* If we found a route, add it to the list. If triggered!=0, then only
+ * add triggered routes. */
+ if ((best!=NULL) && ((!triggered) || trp_route_is_triggered(best)))
+ result[n_used++]=best;
+ }
+ if (realm!=NULL)
+ talloc_free(realm);
+ realm=NULL;
+ n_realm=0;
+ }
+ if (comm!=NULL)
+ talloc_free(comm);
+
+ *n_update=n_used;
+ return result;
+}
+
+/* add metrics */
+static unsigned int trps_metric_add(unsigned int m1, unsigned int m2)
+{
+ if (trp_metric_is_invalid(m1) || trp_metric_is_invalid(m2))
+ return TRP_METRIC_INVALID;
+
+ if (trp_metric_is_infinite(m1) || trp_metric_is_infinite(m2))
+ return TRP_METRIC_INFINITY;
+
+ if (trp_metric_is_finite(m1+m2))
+ return m1+m2;
+ else
+ return TRP_METRIC_INFINITY;
+}
+
+/* convert an rentry into a new trp update info record */
+static TRP_INFOREC *trps_route_to_inforec(TALLOC_CTX *mem_ctx, TRPS_INSTANCE *trps, TRP_ROUTE *route)
+{
+ TRP_INFOREC *rec=trp_inforec_new(mem_ctx, TRP_INFOREC_TYPE_ROUTE);
+ unsigned int linkcost=0;
+
+ if (rec!=NULL) {
+ if (trp_route_is_local(route))
+ linkcost=0;
+ else {
+ linkcost=trp_peer_get_linkcost(trps_get_peer_by_gssname(trps,
+ trp_route_get_peer(route)));
+ }
+
+ /* Note that we leave the next hop empty since the recipient fills that in.
+ * This is where we add the link cost (currently always 1) to the next peer. */
+ if ((trp_inforec_set_comm(rec, trp_route_dup_comm(route)) != TRP_SUCCESS)
+ ||(trp_inforec_set_realm(rec, trp_route_dup_realm(route)) != TRP_SUCCESS)
+ ||(trp_inforec_set_trust_router(rec, trp_route_dup_trust_router(route)) != TRP_SUCCESS)
+ ||(trp_inforec_set_metric(rec,
+ trps_metric_add(trp_route_get_metric(route),
+ linkcost)) != TRP_SUCCESS)
+ ||(trp_inforec_set_interval(rec, trps_get_update_interval(trps)) != TRP_SUCCESS)) {
+ tr_err("trps_route_to_inforec: error creating route update.");
+ talloc_free(rec);
+ rec=NULL;
+ }
+ }
+ return rec;
+}
+
+/* all routes to a single peer, unless comm/realm are specified (both or neither must be NULL) */
+static TRP_RC trps_update_one_peer(TRPS_INSTANCE *trps,
+ TRP_PEER *peer,
+ TRP_UPDATE_TYPE update_type,
+ TR_NAME *comm,
+ TR_NAME *realm)
+{
+ TALLOC_CTX *tmp_ctx=talloc_new(NULL);
+ TR_MSG msg; /* not a pointer! */
+ TRP_UPD *upd=NULL;
+ TRP_ROUTE **update_list=NULL;
+ TRP_INFOREC *rec=NULL;
+ size_t n_updates=0, ii=0;
+ char *encoded=NULL;
+ TRP_RC rc=TRP_ERROR;
+ TR_NAME *peer_label=trp_peer_get_label(peer);
+
+ switch (update_type) {
+ case TRP_UPDATE_TRIGGERED:
+ tr_debug("trps_update_one_peer: preparing triggered route update for %.*s",
+ peer_label->len, peer_label->buf);
+ break;
+ case TRP_UPDATE_SCHEDULED:
+ tr_debug("trps_update_one_peer: preparing scheduled route update for %.*s",
+ peer_label->len, peer_label->buf);
+ break;
+ case TRP_UPDATE_REQUESTED:
+ tr_debug("trps_update_one_peer: preparing requested route update for %.*s",
+ peer_label->len, peer_label->buf);
+ }
+
+ /* do not fill in peer, recipient does that */
+ if ((comm==NULL) && (realm==NULL)) {
+ /* do all realms */
+ update_list=trps_select_updates_for_peer(tmp_ctx,
+ trps,
+ peer_label,
+ update_type==TRP_UPDATE_TRIGGERED,
+ &n_updates);
+ } else if ((comm!=NULL) && (realm!=NULL)) {
+ /* a single community/realm was requested */
+ update_list=talloc(tmp_ctx, TRP_ROUTE *);
+ if (update_list==NULL) {
+ tr_err("trps_update_one_peer: could not allocate update_list.");
+ rc=TRP_NOMEM;
+ goto cleanup;
+ }
+ *update_list=trps_select_realm_update(trps, comm, realm, peer_label);
+ if (*update_list==NULL) {
+ /* we have no actual update to send back, MUST send a retraction */
+ tr_debug("trps_update_one_peer: community/realm without route requested, sending mandatory retraction.");
+ *update_list=trp_route_new(update_list);
+ trp_route_set_comm(*update_list, tr_dup_name(comm));
+ trp_route_set_realm(*update_list, tr_dup_name(realm));
+ trp_route_set_peer(*update_list, tr_new_name(""));
+ trp_route_set_metric(*update_list, TRP_METRIC_INFINITY);
+ trp_route_set_trust_router(*update_list, tr_new_name(""));
+ trp_route_set_next_hop(*update_list, tr_new_name(""));
+ }
+ n_updates=1;
+ } else {
+ tr_err("trps_update_one_peer: error: only comm or realm was specified.");
+ rc=TRP_ERROR;
+ goto cleanup;
+ }
+ if ((n_updates>0) && (update_list!=NULL)) {
+ tr_debug("trps_update_one_peer: sending %u update records.", (unsigned int)n_updates);
+ upd=trp_upd_new(tmp_ctx);
+
+ for (ii=0; ii<n_updates; ii++) {
+ rec=trps_route_to_inforec(tmp_ctx, trps, update_list[ii]);
+ if (rec==NULL) {
+ tr_err("trps_update_one_peer: could not create all update records.");
+ rc=TRP_ERROR;
+ goto cleanup;
+ }
+ trp_upd_add_inforec(upd, rec);
+ }
+ talloc_free(update_list);
+ update_list=NULL;
+
+ /* now encode the update message */
+ tr_msg_set_trp_upd(&msg, upd);
+ encoded=tr_msg_encode(&msg);
+ if (encoded==NULL) {
+ tr_err("trps_update_one_peer: error encoding update.");
+ rc=TRP_ERROR;
+ goto cleanup;
+ }
+
+ tr_debug("trps_update_one_peer: adding message to queue.");
+ if (trps_send_msg(trps, peer, encoded) != TRP_SUCCESS)
+ tr_err("trps_update_one_peer: error queueing update.");
+ else
+ tr_debug("trps_update_one_peer: update queued successfully.");
+
+ tr_msg_free_encoded(encoded);
+ encoded=NULL;
+ trp_upd_free(upd);
+ upd=NULL;
+ }
+
+cleanup:
+ talloc_free(tmp_ctx);
+ return rc;
+}
+
+/* all routes to all peers */
+TRP_RC trps_update(TRPS_INSTANCE *trps, TRP_UPDATE_TYPE update_type)
+{
+ TALLOC_CTX *tmp_ctx=talloc_new(NULL);
+ TRP_PTABLE_ITER *iter=trp_ptable_iter_new(tmp_ctx);
+ TRP_PEER *peer=NULL;
+ TRP_RC rc=TRP_SUCCESS;
+
+ if (trps->ptable==NULL)
+ return TRP_SUCCESS; /* no peers, nothing to do */
+
+ if (iter==NULL) {
+ tr_err("trps_update: failed to allocate peer table iterator.");
+ talloc_free(tmp_ctx);
+ return TRP_NOMEM;
+ }
+
+ for (peer=trp_ptable_iter_first(iter, trps->ptable);
+ peer!=NULL && rc==TRP_SUCCESS;
+ peer=trp_ptable_iter_next(iter))
+ {
+ if (!trps_peer_connected(trps, peer)) {
+ TR_NAME *peer_label=trp_peer_get_label(peer);
+ tr_debug("trps_update: no TRP connection to %.*s, skipping.",
+ peer_label->len, peer_label->buf);
+ continue;
+ }
+ rc=trps_update_one_peer(trps, peer, update_type, NULL, NULL);
+ }
+
+ trp_ptable_iter_free(iter);
+ trp_rtable_clear_triggered(trps->rtable); /* don't re-send triggered updates */
+ talloc_free(tmp_ctx);
+ return rc;
+}
+
+TRP_RC trps_add_route(TRPS_INSTANCE *trps, TRP_ROUTE *route)
+{
+ trp_rtable_add(trps->rtable, route); /* should return status */
+ return TRP_SUCCESS;
+}
+
+/* steals the peer object */
+TRP_RC trps_add_peer(TRPS_INSTANCE *trps, TRP_PEER *peer)
+{
+ if (trps->ptable==NULL) {
+ trps->ptable=trp_ptable_new(trps);
+ if (trps->ptable==NULL)
+ return TRP_NOMEM;
+ }
+ return trp_ptable_add(trps->ptable, peer);
+}
+
+TRP_PEER *trps_get_peer_by_gssname(TRPS_INSTANCE *trps, TR_NAME *gssname)
+{
+ if (trps->ptable==NULL)
+ return NULL;
+
+ return trp_ptable_find_gss_name(trps->ptable, gssname);
+}
+
+TRP_PEER *trps_get_peer_by_servicename(TRPS_INSTANCE *trps, TR_NAME *servicename)
+{
+ if (trps->ptable==NULL)
+ return NULL;
+
+ return trp_ptable_find_servicename(trps->ptable, servicename);
+}
+
+int trps_peer_connected(TRPS_INSTANCE *trps, TRP_PEER *peer)
+{
+ TRPC_INSTANCE *trpc=trps_find_trpc(trps, peer);
+ if (trpc==NULL)
+ return 0;
+
+ if (trpc_get_status(trpc)==TRP_CONNECTION_UP)
+ return 1;
+ else
+ return 0;
+}
+
+
+static TRP_RC trps_handle_request(TRPS_INSTANCE *trps, TRP_REQ *req)
+{
+ TR_NAME *comm=NULL;
+ TR_NAME *realm=NULL;
+
+ tr_debug("trps_handle_request: handling TRP request.");
+
+ if (trps_validate_request(trps, req) != TRP_SUCCESS) {
+ tr_notice("trps_handle_request: received invalid TRP request.");
+ return TRP_ERROR;
+ }
+
+ if (!trp_req_is_wildcard(req)) {
+ comm=trp_req_get_comm(req);
+ realm=trp_req_get_realm(req);
+ tr_debug("trps_handle_request: route for %.*s/%.*s requested.",
+ comm->len, comm->buf, realm->len, realm->buf);
+ } else {
+ tr_debug("trps_handle_request: all routes requested.");
+ /* leave comm/realm NULL */
+ }
+ return trps_update_one_peer(trps,
+ trps_get_peer_by_gssname(trps, trp_req_get_peer(req)),
+ TRP_UPDATE_REQUESTED,
+ comm,
+ realm);
+}
+
+
TRP_RC trps_handle_tr_msg(TRPS_INSTANCE *trps, TR_MSG *tr_msg)
{
+ TRP_RC rc=TRP_ERROR;
+
switch (tr_msg_get_msg_type(tr_msg)) {
case TRP_UPDATE:
- return trps_handle_update(trps, tr_msg_get_trp_upd(tr_msg));
+ rc=trps_handle_update(trps, tr_msg_get_trp_upd(tr_msg));
+ if (rc==TRP_SUCCESS) {
+ rc=trps_update_active_routes(trps);
+ trps_update(trps, TRP_UPDATE_TRIGGERED); /* send any triggered routes */
+ }
+ return rc;
case TRP_REQUEST:
- return TRP_UNSUPPORTED;
+ rc=trps_handle_request(trps, tr_msg_get_trp_req(tr_msg));
+ return rc;
default:
/* unknown error or one we don't care about (e.g., TID messages) */
return TRP_ERROR;
}
}
+
+/* send wildcard route request to a peer */
+TRP_RC trps_wildcard_route_req(TRPS_INSTANCE *trps, TR_NAME *peer_servicename)
+{
+ TALLOC_CTX *tmp_ctx=talloc_new(NULL);
+ TRP_PEER *peer=trps_get_peer_by_servicename(trps, peer_servicename);
+ TR_MSG msg; /* not a pointer */
+ TRP_REQ *req=trp_req_new(tmp_ctx);
+ char *encoded=NULL;
+ TRP_RC rc=TRP_ERROR;
+
+ if (peer==NULL) {
+ tr_err("trps_wildcard_route_req: unknown peer (%.*s).", peer_servicename->len, peer_servicename->buf);
+ rc=TRP_BADARG;
+ goto cleanup;
+ }
+ if ((req==NULL) || (trp_req_make_wildcard(req)!=TRP_SUCCESS)) {
+ tr_err("trps_wildcard_route_req: unable to create wildcard TRP request.");
+ rc=TRP_NOMEM;
+ goto cleanup;
+ }
+
+ tr_msg_set_trp_req(&msg, req);
+ encoded=tr_msg_encode(&msg);
+ if (encoded==NULL) {
+ tr_err("trps_wildcard_route_req: error encoding wildcard TRP request.");
+ rc=TRP_ERROR;
+ goto cleanup;
+ }
+
+ tr_debug("trps_wildcard_route_req: adding message to queue.");
+ if (trps_send_msg(trps, peer, encoded) != TRP_SUCCESS) {
+ tr_err("trps_wildcard_route_req: error queueing request.");
+ rc=TRP_ERROR;
+ } else {
+ tr_debug("trps_wildcard_route_req: request queued successfully.");
+ rc=TRP_SUCCESS;
+ }
+
+cleanup:
+ if (encoded!=NULL)
+ tr_msg_free_encoded(encoded);
+ if (req!=NULL)
+ trp_req_free(req);
+
+ talloc_free(tmp_ctx);
+ return rc;
+}