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#include <ccan/breakpoint/breakpoint.h>
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#include <ccan/container_of/container_of.h>
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#include <ccan/crypto/hkdf_sha256/hkdf_sha256.h>
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#include <ccan/endian/endian.h>
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#include <ccan/fdpass/fdpass.h>
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#include <ccan/io/fdpass/fdpass.h>
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#include <ccan/io/io.h>
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#include <ccan/list/list.h>
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#include <ccan/noerr/noerr.h>
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#include <ccan/read_write_all/read_write_all.h>
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#include <ccan/tal/str/str.h>
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#include <daemon/broadcast.h>
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#include <daemon/routing.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <inttypes.h>
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#include <lightningd/cryptomsg.h>
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#include <lightningd/gossip/gen_gossip_control_wire.h>
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#include <lightningd/gossip/gen_gossip_status_wire.h>
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#include <secp256k1_ecdh.h>
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#include <sodium/randombytes.h>
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#include <status.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include <utils.h>
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#include <version.h>
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#include <wire/gen_peer_wire.h>
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#include <wire/wire_io.h>
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struct daemon {
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struct list_head peers;
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u8 *msg_in;
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/* Routing information */
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struct routing_state *rstate;
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};
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struct peer {
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struct daemon *daemon;
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/* daemon->peers */
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struct list_node list;
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u64 unique_id;
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struct crypto_state *cs;
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/* File descriptor corresponding to conn. */
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int fd;
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/* Our connection (and owner) */
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struct io_conn *conn;
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/* If this is non-NULL, it means we failed. */
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const char *error;
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/* High water mark for the staggered broadcast */
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u64 broadcast_index;
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};
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static void destroy_peer(struct peer *peer)
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{
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list_del_from(&peer->daemon->peers, &peer->list);
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if (peer->error)
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status_send(towire_gossipstatus_peer_bad_msg(peer,
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peer->unique_id,
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(u8 *)peer->error));
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}
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static struct peer *setup_new_peer(struct daemon *daemon, const u8 *msg)
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{
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struct peer *peer = tal(daemon, struct peer);
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peer->cs = tal(peer, struct crypto_state);
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if (!fromwire_gossipctl_new_peer(msg, NULL, &peer->unique_id, peer->cs))
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return tal_free(peer);
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peer->cs->peer = peer;
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peer->daemon = daemon;
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peer->error = NULL;
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list_add_tail(&daemon->peers, &peer->list);
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tal_add_destructor(peer, destroy_peer);
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return peer;
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}
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static struct io_plan *peer_msgin(struct io_conn *conn,
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struct peer *peer, u8 *msg)
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{
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u8 *s;
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enum wire_type t = fromwire_peektype(msg);
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switch (t) {
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case WIRE_ERROR:
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/* FIXME: Report error from msg. */
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peer->error = "ERROR message received";
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return io_close(conn);
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case WIRE_CHANNEL_ANNOUNCEMENT:
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handle_channel_announcement(peer->daemon->rstate, msg, tal_count(msg));
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return peer_read_message(conn, peer->cs, peer_msgin);
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case WIRE_NODE_ANNOUNCEMENT:
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handle_node_announcement(peer->daemon->rstate, msg, tal_count(msg));
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return peer_read_message(conn, peer->cs, peer_msgin);
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case WIRE_CHANNEL_UPDATE:
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handle_channel_update(peer->daemon->rstate, msg, tal_count(msg));
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return peer_read_message(conn, peer->cs, peer_msgin);
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case WIRE_INIT:
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peer->error = "Duplicate INIT message received";
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return io_close(conn);
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case WIRE_OPEN_CHANNEL:
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case WIRE_ACCEPT_CHANNEL:
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case WIRE_FUNDING_CREATED:
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case WIRE_FUNDING_SIGNED:
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case WIRE_FUNDING_LOCKED:
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case WIRE_ANNOUNCEMENT_SIGNATURES:
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case WIRE_UPDATE_FEE:
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case WIRE_SHUTDOWN:
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case WIRE_CLOSING_SIGNED:
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case WIRE_UPDATE_ADD_HTLC:
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case WIRE_UPDATE_FULFILL_HTLC:
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case WIRE_UPDATE_FAIL_HTLC:
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case WIRE_UPDATE_FAIL_MALFORMED_HTLC:
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case WIRE_COMMIT_SIG:
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case WIRE_REVOKE_AND_ACK:
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/* Not our place to handle this, so we punt */
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s = towire_gossipstatus_peer_nongossip(msg, peer->unique_id,
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peer->cs, msg);
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status_send(s);
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status_send_fd(io_conn_fd(conn));
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return io_close(conn);
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}
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/* BOLT #1:
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*
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* The type follows the _it's ok to be odd_ rule, so nodes MAY send
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* odd-numbered types without ascertaining that the recipient
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* understands it. */
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if (t & 1) {
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status_trace("Peer %"PRIu64" sent unknown packet %u, ignoring",
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peer->unique_id, t);
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return peer_read_message(conn, peer->cs, peer_msgin);
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}
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peer->error = tal_fmt(peer, "Unknown packet %u", t);
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return io_close(conn);
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}
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/* Gets called by the outgoing IO loop when woken up. Sends messages
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* to the peer if there are any queued. Also checks if we have any
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* queued gossip messages and processes them. */
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static struct io_plan *pkt_out(struct io_conn *conn, struct peer *peer);
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/* Loop through the backlog of channel_{announcements,updates} and
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* node_announcements, writing out one on each iteration. Once we are
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* through wait for the broadcast interval and start again. */
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static struct io_plan *peer_dump_gossip(struct io_conn *conn, struct peer *peer)
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{
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struct queued_message *next;
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next = next_broadcast_message(
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peer->daemon->rstate->broadcasts, &peer->broadcast_index);
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if (!next) {
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//FIXME(cdecker) Add wakeup timer once timers are refactored.
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return io_out_wait(conn, peer, pkt_out, peer);
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} else {
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return peer_write_message(conn, peer->cs, next->payload, peer_dump_gossip);
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}
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}
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static struct io_plan *pkt_out(struct io_conn *conn, struct peer *peer)
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{
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//FIXME(cdecker) Add logic to enable sending of non-broadcast messages
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/* Send any queued up messages */
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return peer_dump_gossip(conn, peer);
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}
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static bool has_even_bit(const u8 *bitmap)
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{
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size_t len = tal_count(bitmap);
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while (len) {
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if (*bitmap & 0xAA)
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return true;
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len--;
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bitmap++;
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}
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return false;
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}
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static struct io_plan *peer_parse_init(struct io_conn *conn,
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struct peer *peer, u8 *msg)
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{
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u8 *gfeatures, *lfeatures;
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if (!fromwire_init(msg, msg, NULL, &gfeatures, &lfeatures)) {
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peer->error = tal_fmt(msg, "Bad init: %s", tal_hex(msg, msg));
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return io_close(conn);
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}
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/* BOLT #1:
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*
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* The receiving node MUST fail the channels if it receives a
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* `globalfeatures` or `localfeatures` with an even bit set which it
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* does not understand.
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*/
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if (has_even_bit(gfeatures)) {
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peer->error = tal_fmt(msg, "Bad globalfeatures: %s",
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tal_hex(msg, gfeatures));
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return io_close(conn);
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}
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if (has_even_bit(lfeatures)) {
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peer->error = tal_fmt(msg, "Bad localfeatures: %s",
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tal_hex(msg, lfeatures));
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return io_close(conn);
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}
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/* BOLT #1:
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*
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* Each node MUST wait to receive `init` before sending any other
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* messages.
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*/
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status_send(towire_gossipstatus_peer_ready(msg, peer->unique_id));
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/* Need to go duplex here, otherwise backpressure would mean
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* we both wait indefinitely */
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return io_duplex(conn,
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peer_read_message(conn, peer->cs, peer_msgin),
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peer_dump_gossip(conn, peer));
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}
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static struct io_plan *peer_init_sent(struct io_conn *conn, struct peer *peer)
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{
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return peer_read_message(conn, peer->cs, peer_parse_init);
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}
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static struct io_plan *peer_send_init(struct io_conn *conn, struct peer *peer)
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{
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/* BOLT #1:
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*
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* The sending node SHOULD use the minimum lengths required to
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* represent the feature fields. The sending node MUST set feature
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* bits corresponding to features it requires the peer to support, and
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* SHOULD set feature bits corresponding to features it optionally
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* supports.
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*/
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return peer_write_message(conn, peer->cs, towire_init(peer, NULL, NULL),
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peer_init_sent);
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}
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static struct io_plan *next_req_in(struct io_conn *conn, struct daemon *daemon);
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static struct io_plan *new_peer_got_fd(struct io_conn *conn, struct peer *peer)
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{
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peer->conn = io_new_conn(conn, peer->fd, peer_send_init, peer);
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if (!peer->conn) {
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peer->error = "Could not create connection";
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tal_free(peer);
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} else
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/* Free peer if conn closed. */
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tal_steal(peer->conn, peer);
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return next_req_in(conn, peer->daemon);
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}
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static struct io_plan *new_peer(struct io_conn *conn, struct daemon *daemon,
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const u8 *msg)
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{
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struct peer *peer = setup_new_peer(daemon, msg);
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if (!peer)
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status_failed(WIRE_GOSSIPSTATUS_BAD_NEW_PEER_REQUEST,
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"%s", tal_hex(trc, msg));
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return io_recv_fd(conn, &peer->fd, new_peer_got_fd, peer);
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}
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static struct io_plan *release_peer_fd(struct io_conn *conn, struct peer *peer)
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{
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int fd = peer->fd;
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struct daemon *daemon = peer->daemon;
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tal_free(peer);
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return io_send_fd(conn, fd, next_req_in, daemon);
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}
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static struct io_plan *release_peer(struct io_conn *conn, struct daemon *daemon,
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const u8 *msg)
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{
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u64 unique_id;
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struct peer *peer;
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if (!fromwire_gossipctl_release_peer(msg, NULL, &unique_id))
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status_failed(WIRE_GOSSIPSTATUS_BAD_RELEASE_REQUEST,
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"%s", tal_hex(trc, msg));
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list_for_each(&daemon->peers, peer, list) {
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if (peer->unique_id == unique_id) {
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u8 *out;
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/* Don't talk to this peer any more. */
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peer->fd = io_conn_fd(peer->conn);
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tal_steal(daemon, peer);
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io_close_taken_fd(peer->conn);
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out = towire_gossipctl_release_peer_response(msg,
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unique_id,
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peer->cs);
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return io_write_wire(conn, out, release_peer_fd, peer);
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}
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}
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status_failed(WIRE_GOSSIPSTATUS_BAD_RELEASE_REQUEST,
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"Unknown peer %"PRIu64, unique_id);
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}
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static struct io_plan *recv_req(struct io_conn *conn, struct daemon *daemon)
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{
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enum gossip_control_wire_type t = fromwire_peektype(daemon->msg_in);
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status_trace("req: type %s len %zu",
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gossip_control_wire_type_name(t),
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tal_count(daemon->msg_in));
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switch (t) {
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case WIRE_GOSSIPCTL_NEW_PEER:
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return new_peer(conn, daemon, daemon->msg_in);
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case WIRE_GOSSIPCTL_RELEASE_PEER:
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return release_peer(conn, daemon, daemon->msg_in);
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case WIRE_GOSSIPCTL_RELEASE_PEER_RESPONSE:
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break;
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}
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/* Control shouldn't give bad requests. */
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status_failed(WIRE_GOSSIPSTATUS_BAD_REQUEST, "%i", t);
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}
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static struct io_plan *next_req_in(struct io_conn *conn, struct daemon *daemon)
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{
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daemon->msg_in = tal_free(daemon->msg_in);
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return io_read_wire(conn, daemon, &daemon->msg_in, recv_req, daemon);
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}
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#ifndef TESTING
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int main(int argc, char *argv[])
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{
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struct daemon *daemon;
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breakpoint();
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if (argc == 2 && streq(argv[1], "--version")) {
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printf("%s\n", version());
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exit(0);
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}
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daemon = tal(NULL, struct daemon);
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daemon->rstate = new_routing_state(daemon, NULL);
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list_head_init(&daemon->peers);
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daemon->msg_in = NULL;
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/* Stdout == status, stdin == requests */
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status_setup(STDOUT_FILENO);
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io_new_conn(NULL, STDIN_FILENO, next_req_in, daemon);
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io_loop(NULL, NULL);
|
|
|
|
|
|
|
|
tal_free(daemon);
|
|
|
|
return 0;
|
|
|
|
}
|
|
|
|
#endif
|