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67fdc6f8ad
This is the cheapest algo I came up with that simply checks that the same `remote_addr` has been report by two different peers. Can be improved in many ways: - Check by connecting to a radonm peers in the network - Check for more than two confirmations or a certain fraction - ... Changelog-Added: Send updated node_annoucement when two peers report the same remote_addr.
140 lines
4.0 KiB
C
140 lines
4.0 KiB
C
#ifndef LIGHTNING_GOSSIPD_GOSSIPD_H
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#define LIGHTNING_GOSSIPD_GOSSIPD_H
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#include "config.h"
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#include <ccan/timer/timer.h>
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#include <common/node_id.h>
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#include <wire/peer_wire.h>
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/* We talk to `hsmd` to sign our gossip messages with the node key */
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#define HSM_FD 3
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/* connectd asks us for help finding nodes, and gossip fds for new peers */
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#define CONNECTD_FD 4
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#define CONNECTD2_FD 5
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struct chan;
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struct channel_update_timestamps;
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struct broadcastable;
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struct lease_rates;
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struct seeker;
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/*~ The core daemon structure: */
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struct daemon {
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/* Who am I? Helps us find ourself in the routing map. */
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struct node_id id;
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/* Peers we are gossiping to: id is unique */
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struct list_head peers;
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/* Current blockheight: 0 means we're not up-to-date. */
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u32 current_blockheight;
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/* Connection to lightningd. */
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struct daemon_conn *master;
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/* Connection to connect daemon. */
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struct daemon_conn *connectd;
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/* Routing information */
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struct routing_state *rstate;
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/* Timers: we batch gossip, and also refresh announcements */
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struct timers timers;
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/* Alias (not NUL terminated) and favorite color for node_announcement */
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u8 alias[32];
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u8 rgb[3];
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/* What addresses we can actually announce. */
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struct wireaddr *announceable;
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/* verified remote_addr as reported by recent peers */
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struct wireaddr *remote_addr_v4;
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struct wireaddr *remote_addr_v6;
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/* Timer until we can send an updated node_announcement */
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struct oneshot *node_announce_timer;
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/* Timer until we should force a new new node_announcement */
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struct oneshot *node_announce_regen_timer;
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/* Channels we have an announce for, but aren't deep enough. */
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struct short_channel_id *deferred_txouts;
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/* What, if any, gossip we're seeker from peers. */
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struct seeker *seeker;
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/* Features lightningd told us to set. */
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struct feature_set *our_features;
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/* The channel lease rates we're advertising */
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const struct lease_rates *rates;
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/* Any of our channel_updates we're deferring. */
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struct list_head deferred_updates;
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};
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struct range_query_reply {
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struct short_channel_id scid;
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struct channel_update_timestamps ts;
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};
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/* This represents each peer we're gossiping with */
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struct peer {
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/* daemon->peers */
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struct list_node list;
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/* parent pointer. */
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struct daemon *daemon;
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/* The ID of the peer (always unique) */
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struct node_id id;
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/* How much contribution have we made to gossip? */
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size_t gossip_counter;
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/* The two features gossip cares about (so far) */
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bool gossip_queries_feature, initial_routing_sync_feature;
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/* Are there outstanding responses for queries on short_channel_ids? */
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const struct short_channel_id *scid_queries;
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const bigsize_t *scid_query_flags;
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size_t scid_query_idx;
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/* Are there outstanding node_announcements from scid_queries? */
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struct node_id *scid_query_nodes;
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size_t scid_query_nodes_idx;
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/* Do we have an scid_query outstanding? What to call when it's done? */
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bool scid_query_outstanding;
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void (*scid_query_cb)(struct peer *peer, bool complete);
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/* What we're querying: [range_first_blocknum, range_end_blocknum) */
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u32 range_first_blocknum, range_end_blocknum;
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u32 range_blocks_outstanding;
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struct range_query_reply *range_replies;
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void (*query_channel_range_cb)(struct peer *peer,
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u32 first_blocknum, u32 number_of_blocks,
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const struct range_query_reply *replies);
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};
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/* Search for a peer. */
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struct peer *find_peer(struct daemon *daemon, const struct node_id *id);
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/* This peer (may be NULL) gave is valid gossip. */
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void peer_supplied_good_gossip(struct peer *peer, size_t amount);
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/* Pick a random peer which passes check_peer */
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struct peer *random_peer(struct daemon *daemon,
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bool (*check_peer)(const struct peer *peer));
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/* Queue a gossip message for the peer: the subdaemon on the other end simply
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* forwards it to the peer. */
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void queue_peer_msg(struct peer *peer, const u8 *msg TAKES);
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/* Queue a gossip_store message for the peer: the subdaemon on the
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* other end simply forwards it to the peer. */
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void queue_peer_from_store(struct peer *peer,
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const struct broadcastable *bcast);
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#endif /* LIGHTNING_GOSSIPD_GOSSIPD_H */
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