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418 lines
17 KiB
418 lines
17 KiB
/* This file was generated by generate-wire.py */
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/* Do not modify this file! Modify the .csv file it was generated from. */
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/* Original template can be found at tools/gen/impl_template */
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#include <openingd/dualopend_wiregen.h>
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#include <assert.h>
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#include <ccan/array_size/array_size.h>
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#include <ccan/mem/mem.h>
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#include <ccan/tal/str/str.h>
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#include <common/utils.h>
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#include <stdio.h>
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#ifndef SUPERVERBOSE
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#define SUPERVERBOSE(...)
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#endif
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const char *dualopend_wire_name(int e)
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{
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static char invalidbuf[sizeof("INVALID ") + STR_MAX_CHARS(e)];
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switch ((enum dualopend_wire)e) {
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case WIRE_DUAL_OPEN_INIT: return "WIRE_DUAL_OPEN_INIT";
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case WIRE_DUAL_OPEN_GOT_OFFER: return "WIRE_DUAL_OPEN_GOT_OFFER";
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case WIRE_DUAL_OPEN_GOT_OFFER_REPLY: return "WIRE_DUAL_OPEN_GOT_OFFER_REPLY";
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case WIRE_DUAL_OPEN_COMMIT_RCVD: return "WIRE_DUAL_OPEN_COMMIT_RCVD";
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case WIRE_DUAL_OPEN_PSBT_CHANGED: return "WIRE_DUAL_OPEN_PSBT_CHANGED";
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case WIRE_DUAL_OPEN_FAIL: return "WIRE_DUAL_OPEN_FAIL";
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case WIRE_DUAL_OPEN_FAILED: return "WIRE_DUAL_OPEN_FAILED";
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case WIRE_DUAL_OPEN_DEV_MEMLEAK: return "WIRE_DUAL_OPEN_DEV_MEMLEAK";
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case WIRE_DUAL_OPEN_DEV_MEMLEAK_REPLY: return "WIRE_DUAL_OPEN_DEV_MEMLEAK_REPLY";
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}
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snprintf(invalidbuf, sizeof(invalidbuf), "INVALID %i", e);
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return invalidbuf;
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}
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bool dualopend_wire_is_defined(u16 type)
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{
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switch ((enum dualopend_wire)type) {
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case WIRE_DUAL_OPEN_INIT:;
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case WIRE_DUAL_OPEN_GOT_OFFER:;
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case WIRE_DUAL_OPEN_GOT_OFFER_REPLY:;
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case WIRE_DUAL_OPEN_COMMIT_RCVD:;
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case WIRE_DUAL_OPEN_PSBT_CHANGED:;
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case WIRE_DUAL_OPEN_FAIL:;
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case WIRE_DUAL_OPEN_FAILED:;
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case WIRE_DUAL_OPEN_DEV_MEMLEAK:;
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case WIRE_DUAL_OPEN_DEV_MEMLEAK_REPLY:;
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return true;
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}
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return false;
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}
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/* WIRE: DUAL_OPEN_INIT */
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u8 *towire_dual_open_init(const tal_t *ctx, const struct chainparams *chainparams, const struct feature_set *our_feature_set, const u8 *their_init_features, const struct channel_config *our_config, u32 max_to_self_delay, struct amount_msat min_effective_htlc_capacity_msat, const struct per_peer_state *pps, const struct basepoints *our_basepoints, const struct pubkey *our_funding_pubkey, u32 minimum_depth, u32 min_feerate, u32 max_feerate, bool option_anchor_outputs, const u8 *msg)
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{
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u16 their_init_features_len = tal_count(their_init_features);
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u16 len = tal_count(msg);
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_INIT);
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/* Which network are we configured for? */
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towire_chainparams(&p, chainparams);
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towire_feature_set(&p, our_feature_set);
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towire_u16(&p, their_init_features_len);
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towire_u8_array(&p, their_init_features, their_init_features_len);
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/* Base configuration we'll offer */
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towire_channel_config(&p, our_config);
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/* Minimum/maximum configuration values we'll accept */
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towire_u32(&p, max_to_self_delay);
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towire_amount_msat(&p, min_effective_htlc_capacity_msat);
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towire_per_peer_state(&p, pps);
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towire_basepoints(&p, our_basepoints);
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towire_pubkey(&p, our_funding_pubkey);
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/* Constraints in case the other end tries to open a channel. */
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towire_u32(&p, minimum_depth);
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towire_u32(&p, min_feerate);
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towire_u32(&p, max_feerate);
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towire_bool(&p, option_anchor_outputs);
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/* Optional msg to send. */
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towire_u16(&p, len);
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towire_u8_array(&p, msg, len);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_init(const tal_t *ctx, const void *p, const struct chainparams **chainparams, struct feature_set **our_feature_set, u8 **their_init_features, struct channel_config *our_config, u32 *max_to_self_delay, struct amount_msat *min_effective_htlc_capacity_msat, struct per_peer_state **pps, struct basepoints *our_basepoints, struct pubkey *our_funding_pubkey, u32 *minimum_depth, u32 *min_feerate, u32 *max_feerate, bool *option_anchor_outputs, u8 **msg)
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{
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u16 their_init_features_len;
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u16 len;
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_INIT)
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return false;
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/* Which network are we configured for? */
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fromwire_chainparams(&cursor, &plen, chainparams);
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*our_feature_set = fromwire_feature_set(ctx, &cursor, &plen);
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their_init_features_len = fromwire_u16(&cursor, &plen);
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// 2nd case their_init_features
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*their_init_features = their_init_features_len ? tal_arr(ctx, u8, their_init_features_len) : NULL;
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fromwire_u8_array(&cursor, &plen, *their_init_features, their_init_features_len);
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/* Base configuration we'll offer */
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fromwire_channel_config(&cursor, &plen, our_config);
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/* Minimum/maximum configuration values we'll accept */
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*max_to_self_delay = fromwire_u32(&cursor, &plen);
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*min_effective_htlc_capacity_msat = fromwire_amount_msat(&cursor, &plen);
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*pps = fromwire_per_peer_state(ctx, &cursor, &plen);
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fromwire_basepoints(&cursor, &plen, our_basepoints);
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fromwire_pubkey(&cursor, &plen, our_funding_pubkey);
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/* Constraints in case the other end tries to open a channel. */
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*minimum_depth = fromwire_u32(&cursor, &plen);
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*min_feerate = fromwire_u32(&cursor, &plen);
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*max_feerate = fromwire_u32(&cursor, &plen);
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*option_anchor_outputs = fromwire_bool(&cursor, &plen);
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/* Optional msg to send. */
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len = fromwire_u16(&cursor, &plen);
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// 2nd case msg
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*msg = len ? tal_arr(ctx, u8, len) : NULL;
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fromwire_u8_array(&cursor, &plen, *msg, len);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_GOT_OFFER */
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/* dualopend->master: they offered channel */
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u8 *towire_dual_open_got_offer(const tal_t *ctx, struct amount_sat opener_funding, struct amount_sat dust_limit_satoshis, struct amount_msat max_htlc_value_in_flight_msat, struct amount_msat htlc_minimum_msat, u32 feerate_per_kw_funding, u32 feerate_per_kw, u16 to_self_delay, u16 max_accepted_htlcs, u8 channel_flags, u32 locktime, const u8 *shutdown_scriptpubkey)
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{
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u16 shutdown_len = tal_count(shutdown_scriptpubkey);
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_GOT_OFFER);
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towire_amount_sat(&p, opener_funding);
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towire_amount_sat(&p, dust_limit_satoshis);
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towire_amount_msat(&p, max_htlc_value_in_flight_msat);
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towire_amount_msat(&p, htlc_minimum_msat);
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towire_u32(&p, feerate_per_kw_funding);
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towire_u32(&p, feerate_per_kw);
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towire_u16(&p, to_self_delay);
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towire_u16(&p, max_accepted_htlcs);
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towire_u8(&p, channel_flags);
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towire_u32(&p, locktime);
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towire_u16(&p, shutdown_len);
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towire_u8_array(&p, shutdown_scriptpubkey, shutdown_len);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_got_offer(const tal_t *ctx, const void *p, struct amount_sat *opener_funding, struct amount_sat *dust_limit_satoshis, struct amount_msat *max_htlc_value_in_flight_msat, struct amount_msat *htlc_minimum_msat, u32 *feerate_per_kw_funding, u32 *feerate_per_kw, u16 *to_self_delay, u16 *max_accepted_htlcs, u8 *channel_flags, u32 *locktime, u8 **shutdown_scriptpubkey)
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{
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u16 shutdown_len;
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_GOT_OFFER)
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return false;
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*opener_funding = fromwire_amount_sat(&cursor, &plen);
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*dust_limit_satoshis = fromwire_amount_sat(&cursor, &plen);
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*max_htlc_value_in_flight_msat = fromwire_amount_msat(&cursor, &plen);
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*htlc_minimum_msat = fromwire_amount_msat(&cursor, &plen);
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*feerate_per_kw_funding = fromwire_u32(&cursor, &plen);
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*feerate_per_kw = fromwire_u32(&cursor, &plen);
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*to_self_delay = fromwire_u16(&cursor, &plen);
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*max_accepted_htlcs = fromwire_u16(&cursor, &plen);
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*channel_flags = fromwire_u8(&cursor, &plen);
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*locktime = fromwire_u32(&cursor, &plen);
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shutdown_len = fromwire_u16(&cursor, &plen);
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// 2nd case shutdown_scriptpubkey
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*shutdown_scriptpubkey = shutdown_len ? tal_arr(ctx, u8, shutdown_len) : NULL;
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fromwire_u8_array(&cursor, &plen, *shutdown_scriptpubkey, shutdown_len);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_GOT_OFFER_REPLY */
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/* master->dualopend: reply back with our first funding info/contribs */
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u8 *towire_dual_open_got_offer_reply(const tal_t *ctx, struct amount_sat accepter_funding, const struct wally_psbt *psbt, const u8 *our_shutdown_scriptpubkey)
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{
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u16 shutdown_len = tal_count(our_shutdown_scriptpubkey);
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_GOT_OFFER_REPLY);
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towire_amount_sat(&p, accepter_funding);
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towire_wally_psbt(&p, psbt);
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towire_u16(&p, shutdown_len);
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towire_u8_array(&p, our_shutdown_scriptpubkey, shutdown_len);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_got_offer_reply(const tal_t *ctx, const void *p, struct amount_sat *accepter_funding, struct wally_psbt **psbt, u8 **our_shutdown_scriptpubkey)
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{
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u16 shutdown_len;
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_GOT_OFFER_REPLY)
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return false;
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*accepter_funding = fromwire_amount_sat(&cursor, &plen);
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*psbt = fromwire_wally_psbt(ctx, &cursor, &plen);
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shutdown_len = fromwire_u16(&cursor, &plen);
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// 2nd case our_shutdown_scriptpubkey
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*our_shutdown_scriptpubkey = shutdown_len ? tal_arr(ctx, u8, shutdown_len) : NULL;
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fromwire_u8_array(&cursor, &plen, *our_shutdown_scriptpubkey, shutdown_len);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_COMMIT_RCVD */
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/* dualopend->master: ready to commit channel open to database and */
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/* get some signatures for the funding_tx. */
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u8 *towire_dual_open_commit_rcvd(const tal_t *ctx, const struct channel_config *their_config, const struct bitcoin_tx *remote_first_commit, const struct penalty_base *pbase, const struct bitcoin_signature *first_commit_sig, const struct wally_psbt *psbt, const struct channel_id *channel_id, const struct per_peer_state *pps, const struct pubkey *revocation_basepoint, const struct pubkey *payment_basepoint, const struct pubkey *htlc_basepoint, const struct pubkey *delayed_payment_basepoint, const struct pubkey *their_per_commit_point, const struct pubkey *remote_fundingkey, const struct bitcoin_txid *funding_txid, u16 funding_txout, struct amount_sat funding_satoshis, struct amount_sat our_funding_sats, u8 channel_flags, u32 feerate_per_kw, const u8 *commitment_msg, struct amount_sat our_channel_reserve_satoshis, const u8 *local_shutdown_scriptpubkey, const u8 *remote_shutdown_scriptpubkey)
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{
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u16 msglen = tal_count(commitment_msg);
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u16 local_shutdown_len = tal_count(local_shutdown_scriptpubkey);
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u16 remote_shutdown_len = tal_count(remote_shutdown_scriptpubkey);
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_COMMIT_RCVD);
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towire_channel_config(&p, their_config);
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towire_bitcoin_tx(&p, remote_first_commit);
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if (!pbase)
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towire_bool(&p, false);
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else {
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towire_bool(&p, true);
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towire_penalty_base(&p, pbase);
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}
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towire_bitcoin_signature(&p, first_commit_sig);
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towire_wally_psbt(&p, psbt);
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towire_channel_id(&p, channel_id);
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towire_per_peer_state(&p, pps);
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towire_pubkey(&p, revocation_basepoint);
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towire_pubkey(&p, payment_basepoint);
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towire_pubkey(&p, htlc_basepoint);
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towire_pubkey(&p, delayed_payment_basepoint);
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towire_pubkey(&p, their_per_commit_point);
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towire_pubkey(&p, remote_fundingkey);
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towire_bitcoin_txid(&p, funding_txid);
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towire_u16(&p, funding_txout);
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towire_amount_sat(&p, funding_satoshis);
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towire_amount_sat(&p, our_funding_sats);
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towire_u8(&p, channel_flags);
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towire_u32(&p, feerate_per_kw);
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/* our commitment signatures */
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towire_u16(&p, msglen);
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towire_u8_array(&p, commitment_msg, msglen);
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towire_amount_sat(&p, our_channel_reserve_satoshis);
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towire_u16(&p, local_shutdown_len);
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towire_u8_array(&p, local_shutdown_scriptpubkey, local_shutdown_len);
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towire_u16(&p, remote_shutdown_len);
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towire_u8_array(&p, remote_shutdown_scriptpubkey, remote_shutdown_len);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_commit_rcvd(const tal_t *ctx, const void *p, struct channel_config *their_config, struct bitcoin_tx **remote_first_commit, struct penalty_base **pbase, struct bitcoin_signature *first_commit_sig, struct wally_psbt **psbt, struct channel_id *channel_id, struct per_peer_state **pps, struct pubkey *revocation_basepoint, struct pubkey *payment_basepoint, struct pubkey *htlc_basepoint, struct pubkey *delayed_payment_basepoint, struct pubkey *their_per_commit_point, struct pubkey *remote_fundingkey, struct bitcoin_txid *funding_txid, u16 *funding_txout, struct amount_sat *funding_satoshis, struct amount_sat *our_funding_sats, u8 *channel_flags, u32 *feerate_per_kw, u8 **commitment_msg, struct amount_sat *our_channel_reserve_satoshis, u8 **local_shutdown_scriptpubkey, u8 **remote_shutdown_scriptpubkey)
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{
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u16 msglen;
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u16 local_shutdown_len;
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u16 remote_shutdown_len;
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_COMMIT_RCVD)
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return false;
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fromwire_channel_config(&cursor, &plen, their_config);
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*remote_first_commit = fromwire_bitcoin_tx(ctx, &cursor, &plen);
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if (!fromwire_bool(&cursor, &plen))
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*pbase = NULL;
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else {
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*pbase = tal(ctx, struct penalty_base);
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fromwire_penalty_base(&cursor, &plen, *pbase);
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}
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fromwire_bitcoin_signature(&cursor, &plen, first_commit_sig);
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*psbt = fromwire_wally_psbt(ctx, &cursor, &plen);
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fromwire_channel_id(&cursor, &plen, channel_id);
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*pps = fromwire_per_peer_state(ctx, &cursor, &plen);
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fromwire_pubkey(&cursor, &plen, revocation_basepoint);
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fromwire_pubkey(&cursor, &plen, payment_basepoint);
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fromwire_pubkey(&cursor, &plen, htlc_basepoint);
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fromwire_pubkey(&cursor, &plen, delayed_payment_basepoint);
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fromwire_pubkey(&cursor, &plen, their_per_commit_point);
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fromwire_pubkey(&cursor, &plen, remote_fundingkey);
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fromwire_bitcoin_txid(&cursor, &plen, funding_txid);
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*funding_txout = fromwire_u16(&cursor, &plen);
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*funding_satoshis = fromwire_amount_sat(&cursor, &plen);
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*our_funding_sats = fromwire_amount_sat(&cursor, &plen);
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*channel_flags = fromwire_u8(&cursor, &plen);
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*feerate_per_kw = fromwire_u32(&cursor, &plen);
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/* our commitment signatures */
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msglen = fromwire_u16(&cursor, &plen);
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// 2nd case commitment_msg
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*commitment_msg = msglen ? tal_arr(ctx, u8, msglen) : NULL;
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fromwire_u8_array(&cursor, &plen, *commitment_msg, msglen);
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*our_channel_reserve_satoshis = fromwire_amount_sat(&cursor, &plen);
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local_shutdown_len = fromwire_u16(&cursor, &plen);
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// 2nd case local_shutdown_scriptpubkey
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*local_shutdown_scriptpubkey = local_shutdown_len ? tal_arr(ctx, u8, local_shutdown_len) : NULL;
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fromwire_u8_array(&cursor, &plen, *local_shutdown_scriptpubkey, local_shutdown_len);
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remote_shutdown_len = fromwire_u16(&cursor, &plen);
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// 2nd case remote_shutdown_scriptpubkey
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*remote_shutdown_scriptpubkey = remote_shutdown_len ? tal_arr(ctx, u8, remote_shutdown_len) : NULL;
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fromwire_u8_array(&cursor, &plen, *remote_shutdown_scriptpubkey, remote_shutdown_len);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_PSBT_CHANGED */
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/* dualopend->master: peer updated the psbt */
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/* master->dualopend: response from hook when asking for next moves */
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u8 *towire_dual_open_psbt_changed(const tal_t *ctx, const struct channel_id *channel_id, const struct wally_psbt *psbt)
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{
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_PSBT_CHANGED);
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towire_channel_id(&p, channel_id);
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towire_wally_psbt(&p, psbt);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_psbt_changed(const tal_t *ctx, const void *p, struct channel_id *channel_id, struct wally_psbt **psbt)
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{
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_PSBT_CHANGED)
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return false;
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fromwire_channel_id(&cursor, &plen, channel_id);
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*psbt = fromwire_wally_psbt(ctx, &cursor, &plen);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_FAIL */
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/* master->dualopend: fail this channel open */
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u8 *towire_dual_open_fail(const tal_t *ctx, const wirestring *reason)
|
|
{
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u8 *p = tal_arr(ctx, u8, 0);
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towire_u16(&p, WIRE_DUAL_OPEN_FAIL);
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towire_wirestring(&p, reason);
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_fail(const tal_t *ctx, const void *p, wirestring **reason)
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{
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const u8 *cursor = p;
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size_t plen = tal_count(p);
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|
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if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_FAIL)
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return false;
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*reason = fromwire_wirestring(ctx, &cursor, &plen);
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return cursor != NULL;
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}
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/* WIRE: DUAL_OPEN_FAILED */
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/* dualopend->master: we failed to negotiation channel */
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u8 *towire_dual_open_failed(const tal_t *ctx, const wirestring *reason)
|
|
{
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|
u8 *p = tal_arr(ctx, u8, 0);
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|
|
|
towire_u16(&p, WIRE_DUAL_OPEN_FAILED);
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towire_wirestring(&p, reason);
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|
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return memcheck(p, tal_count(p));
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}
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bool fromwire_dual_open_failed(const tal_t *ctx, const void *p, wirestring **reason)
|
|
{
|
|
const u8 *cursor = p;
|
|
size_t plen = tal_count(p);
|
|
|
|
if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_FAILED)
|
|
return false;
|
|
*reason = fromwire_wirestring(ctx, &cursor, &plen);
|
|
return cursor != NULL;
|
|
}
|
|
|
|
/* WIRE: DUAL_OPEN_DEV_MEMLEAK */
|
|
/* master -> dualopend: do you have a memleak? */
|
|
u8 *towire_dual_open_dev_memleak(const tal_t *ctx)
|
|
{
|
|
u8 *p = tal_arr(ctx, u8, 0);
|
|
|
|
towire_u16(&p, WIRE_DUAL_OPEN_DEV_MEMLEAK);
|
|
|
|
return memcheck(p, tal_count(p));
|
|
}
|
|
bool fromwire_dual_open_dev_memleak(const void *p)
|
|
{
|
|
const u8 *cursor = p;
|
|
size_t plen = tal_count(p);
|
|
|
|
if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_DEV_MEMLEAK)
|
|
return false;
|
|
return cursor != NULL;
|
|
}
|
|
|
|
/* WIRE: DUAL_OPEN_DEV_MEMLEAK_REPLY */
|
|
u8 *towire_dual_open_dev_memleak_reply(const tal_t *ctx, bool leak)
|
|
{
|
|
u8 *p = tal_arr(ctx, u8, 0);
|
|
|
|
towire_u16(&p, WIRE_DUAL_OPEN_DEV_MEMLEAK_REPLY);
|
|
towire_bool(&p, leak);
|
|
|
|
return memcheck(p, tal_count(p));
|
|
}
|
|
bool fromwire_dual_open_dev_memleak_reply(const void *p, bool *leak)
|
|
{
|
|
const u8 *cursor = p;
|
|
size_t plen = tal_count(p);
|
|
|
|
if (fromwire_u16(&cursor, &plen) != WIRE_DUAL_OPEN_DEV_MEMLEAK_REPLY)
|
|
return false;
|
|
*leak = fromwire_bool(&cursor, &plen);
|
|
return cursor != NULL;
|
|
}
|
|
// SHA256STAMP:bcf32211cd043903bbd2fadeb3795a0d120d1815beb895369eb9de32822d837a
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