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8db8c51201
Each peer can have one 'uncommitted' channel, which is in the process of opening. This is used for openingd, and then on return we convert it into a full-fledged struct channel and commit it into the database. Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
287 lines
7.7 KiB
C
287 lines
7.7 KiB
C
#include <ccan/crypto/hkdf_sha256/hkdf_sha256.h>
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#include <ccan/tal/str/str.h>
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#include <gossipd/gen_gossip_wire.h>
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#include <inttypes.h>
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#include <lightningd/channel.h>
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#include <lightningd/jsonrpc.h>
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#include <lightningd/lightningd.h>
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#include <lightningd/log.h>
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#include <lightningd/peer_control.h>
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#include <lightningd/subd.h>
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void channel_set_owner(struct channel *channel, struct subd *owner)
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{
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struct subd *old_owner = channel->owner;
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channel->owner = owner;
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if (old_owner)
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subd_release_channel(old_owner, channel);
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}
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static void destroy_channel(struct channel *channel)
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{
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/* Must not have any HTLCs! */
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struct htlc_out_map_iter outi;
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struct htlc_out *hout;
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struct htlc_in_map_iter ini;
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struct htlc_in *hin;
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struct lightningd *ld = channel->peer->ld;
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for (hout = htlc_out_map_first(&ld->htlcs_out, &outi);
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hout;
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hout = htlc_out_map_next(&ld->htlcs_out, &outi)) {
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if (hout->key.channel != channel)
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continue;
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fatal("Freeing channel %s has hout %s",
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channel_state_name(channel),
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htlc_state_name(hout->hstate));
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}
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for (hin = htlc_in_map_first(&ld->htlcs_in, &ini);
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hin;
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hin = htlc_in_map_next(&ld->htlcs_in, &ini)) {
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if (hin->key.channel != channel)
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continue;
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fatal("Freeing channel %s has hin %s",
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channel_state_name(channel),
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htlc_state_name(hin->hstate));
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}
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/* Free any old owner still hanging around. */
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channel_set_owner(channel, NULL);
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list_del_from(&channel->peer->channels, &channel->list);
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}
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/* FIXME: remove why */
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void delete_channel(struct channel *channel, const char *why)
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{
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struct peer *peer = channel->peer;
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wallet_channel_delete(channel->peer->ld->wallet, channel->dbid);
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tal_free(channel);
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/* Last one out frees the peer */
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if (list_empty(&peer->channels) && !peer->uncommitted_channel)
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delete_peer(peer);
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}
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/* FIXME: We have no business knowing this! */
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/**
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* derive_channel_seed - Generate a unique secret for this peer's channel
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*
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* @ld: the lightning daemon to get global secret from
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* @seed: where to store the generated secret
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* @peer_id: the id node_id of the remote peer
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* @dbid: channel DBID
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*
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* This method generates a unique secret from the given parameters. It
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* is important that this secret be unique for each channel, but it
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* must be reproducible for the same channel in case of
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* reconnection. We use the DB channel ID to guarantee unique secrets
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* per channel.
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*/
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void derive_channel_seed(struct lightningd *ld, struct privkey *seed,
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const struct pubkey *peer_id,
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const u64 dbid)
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{
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u8 input[PUBKEY_DER_LEN + sizeof(dbid)];
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char *info = "per-peer seed";
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pubkey_to_der(input, peer_id);
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memcpy(input + PUBKEY_DER_LEN, &dbid, sizeof(dbid));
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assert(dbid != 0);
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hkdf_sha256(seed, sizeof(*seed),
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input, sizeof(input),
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&ld->peer_seed, sizeof(ld->peer_seed),
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info, strlen(info));
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}
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struct channel *new_channel(struct peer *peer, u64 dbid, u32 first_blocknum)
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{
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/* FIXME: We currently rely on it being all zero/NULL */
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struct channel *channel = talz(peer->ld, struct channel);
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char *idname;
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assert(dbid != 0);
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channel->dbid = dbid;
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channel->peer = peer;
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channel->first_blocknum = first_blocknum;
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channel->state = UNINITIALIZED;
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channel->local_shutdown_idx = -1;
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/* FIXME: update log prefix when we get scid */
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/* FIXME: Use minimal unique pubkey prefix for logs! */
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idname = type_to_string(peer, struct pubkey, &peer->id);
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channel->log = new_log(channel, peer->log_book, "%s chan #%"PRIu64":",
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idname, dbid);
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tal_free(idname);
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list_add_tail(&peer->channels, &channel->list);
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tal_add_destructor(channel, destroy_channel);
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derive_channel_seed(peer->ld, &channel->seed, &peer->id, channel->dbid);
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return channel;
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}
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const char *channel_state_name(const struct channel *channel)
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{
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return peer_state_name(channel->state);
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}
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struct channel *peer_active_channel(struct peer *peer)
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{
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struct channel *channel;
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list_for_each(&peer->channels, channel, list) {
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if (channel_active(channel))
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return channel;
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}
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return NULL;
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}
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struct channel *active_channel_by_id(struct lightningd *ld,
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const struct pubkey *id,
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struct uncommitted_channel **uc)
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{
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struct peer *peer = peer_by_id(ld, id);
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if (!peer) {
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if (uc)
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*uc = NULL;
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return NULL;
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}
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if (uc)
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*uc = peer->uncommitted_channel;
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return peer_active_channel(peer);
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}
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void channel_set_last_tx(struct channel *channel,
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struct bitcoin_tx *tx,
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const secp256k1_ecdsa_signature *sig)
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{
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tal_free(channel->last_sig);
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channel->last_sig = tal_dup(channel, secp256k1_ecdsa_signature, sig);
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tal_free(channel->last_tx);
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channel->last_tx = tal_steal(channel, tx);
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}
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void channel_set_state(struct channel *channel,
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enum peer_state old_state,
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enum peer_state state)
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{
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log_info(channel->log, "State changed from %s to %s",
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channel_state_name(channel), peer_state_name(state));
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if (channel->state != old_state)
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fatal("channel state %s should be %s",
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channel_state_name(channel), peer_state_name(old_state));
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channel->state = state;
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/* We only persist channels/peers that have reached the opening state */
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if (channel_persists(channel)) {
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/* TODO(cdecker) Selectively save updated fields to DB */
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wallet_channel_save(channel->peer->ld->wallet, channel);
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}
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}
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void channel_fail_permanent(struct channel *channel, const char *fmt, ...)
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{
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struct lightningd *ld = channel->peer->ld;
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va_list ap;
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char *why;
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u8 *msg;
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va_start(ap, fmt);
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why = tal_vfmt(channel, fmt, ap);
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va_end(ap);
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if (channel->scid) {
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msg = towire_gossip_disable_channel(channel,
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channel->scid,
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channel->peer->direction,
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false);
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subd_send_msg(ld->gossip, take(msg));
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}
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log_unusual(channel->log, "Peer permanent failure in %s: %s",
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channel_state_name(channel), why);
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/* We can have multiple errors, eg. onchaind failures. */
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if (!channel->error) {
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/* BOLT #1:
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*
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* The channel is referred to by `channel_id` unless `channel_id` is
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* zero (ie. all bytes zero), in which case it refers to all
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* channels. */
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static const struct channel_id all_channels;
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u8 *msg = tal_dup_arr(NULL, u8, (const u8 *)why, strlen(why), 0);
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channel->error = towire_error(channel, &all_channels, msg);
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tal_free(msg);
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}
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channel_set_owner(channel, NULL);
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if (channel_persists(channel)) {
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drop_to_chain(ld, channel);
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tal_free(why);
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} else
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delete_channel(channel, why);
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}
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void channel_internal_error(struct channel *channel, const char *fmt, ...)
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{
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va_list ap;
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va_start(ap, fmt);
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log_broken(channel->log, "Peer internal error %s: ",
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channel_state_name(channel));
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logv_add(channel->log, fmt, ap);
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va_end(ap);
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channel_fail_permanent(channel, "Internal error");
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}
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void channel_fail_transient(struct channel *channel, const char *fmt, ...)
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{
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va_list ap;
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const char *why;
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va_start(ap, fmt);
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why = tal_vfmt(channel, fmt, ap);
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va_end(ap);
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log_info(channel->log, "Peer transient failure in %s: %s",
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channel_state_name(channel), why);
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#if DEVELOPER
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if (dev_disconnect_permanent(channel->peer->ld)) {
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tal_free(why);
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channel_internal_error(channel, "dev_disconnect permfail");
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return;
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}
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#endif
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channel_set_owner(channel, NULL);
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/* If we haven't reached awaiting locked, we don't need to reconnect */
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if (!channel_persists(channel)) {
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log_info(channel->log, "Only reached state %s: forgetting",
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channel_state_name(channel));
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delete_channel(channel, why);
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return;
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}
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tal_free(why);
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/* Reconnect unless we've dropped/are dropping to chain. */
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if (channel_active(channel)) {
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struct lightningd *ld = channel->peer->ld;
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#if DEVELOPER
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/* Don't schedule an attempt if we disabled reconnections with
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* the `--dev-no-reconnect` flag */
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if (ld->no_reconnect)
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return;
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#endif /* DEVELOPER */
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u8 *msg = towire_gossipctl_reach_peer(channel,
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&channel->peer->id);
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subd_send_msg(ld->gossip, take(msg));
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}
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}
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