rgb-cln/daemon/chaintopology.h

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#ifndef LIGHTNING_DAEMON_CHAINTOPOLOGY_H
#define LIGHTNING_DAEMON_CHAINTOPOLOGY_H
#include "config.h"
#include <bitcoin/block.h>
#include <bitcoin/shadouble.h>
#include <ccan/list/list.h>
#include <ccan/short_types/short_types.h>
#include <ccan/structeq/structeq.h>
#include <ccan/time/time.h>
#include <daemon/jsmn/jsmn.h>
#include <daemon/watch.h>
#include <stddef.h>
struct bitcoin_tx;
struct bitcoind;
struct command;
struct lightningd_state;
struct peer;
struct sha256_double;
struct txwatch;
/* Off topology->outgoing_txs */
struct outgoing_tx {
struct list_node list;
struct peer *peer;
const char *hextx;
struct sha256_double txid;
void (*failed)(struct peer *peer, int exitstatus, const char *err);
/* FIXME: Remove this. */
struct chain_topology *topo;
};
struct block {
int height;
/* Actual header. */
struct bitcoin_block_hdr hdr;
/* Previous block (if any). */
struct block *prev;
/* Next block (if any). */
struct block *next;
/* Key for hash table */
struct sha256_double blkid;
/* Transactions in this block we care about */
const struct bitcoin_tx **txs;
/* And their associated index in the block */
u32 *txnums;
/* Full copy of txs (trimmed to txs list in connect_block) */
struct bitcoin_tx **full_txs;
/* FIXME: Remove this. */
struct chain_topology *topo;
};
/* Hash blocks by sha */
static inline const struct sha256_double *keyof_block_map(const struct block *b)
{
return &b->blkid;
}
static inline size_t hash_sha(const struct sha256_double *key)
{
size_t ret;
memcpy(&ret, key, sizeof(ret));
return ret;
}
static inline bool block_eq(const struct block *b, const struct sha256_double *key)
{
return structeq(&b->blkid, key);
}
HTABLE_DEFINE_TYPE(struct block, keyof_block_map, hash_sha, block_eq, block_map);
struct chain_topology {
struct block *root;
struct block *tip;
struct block_map block_map;
u64 feerate;
bool startup;
/* Where to log things. */
struct log *log;
/* How far back (in blocks) to go. */
unsigned int first_blocknum;
/* How often to poll. */
struct timerel poll_time;
/* The bitcoind. */
struct bitcoind *bitcoind;
/* Our timer list. */
struct timers *timers;
/* Bitcoin transctions we're broadcasting */
struct list_head outgoing_txs;
/* Force a partiular fee rate regardless of estimatefee (satoshis/kb) */
u64 override_fee_rate;
/* What fee we use if estimatefee fails (satoshis/kb) */
u64 default_fee_rate;
/* Transactions/txos we are watching. */
struct txwatch_hash txwatches;
struct txowatch_hash txowatches;
/* Suppress broadcast (for testing) */
bool dev_no_broadcast;
};
/* Information relevant to locating a TX in a blockchain. */
struct txlocator {
/* The height of the block that includes this transaction */
u32 blkheight;
/* Position of the transaction in the transactions list */
u32 index;
};
/* This is the number of blocks which would have to be mined to invalidate
* the tx (optional tx is filled in if return is non-zero). */
size_t get_tx_depth(const struct chain_topology *topo,
const struct sha256_double *txid,
const struct bitcoin_tx **tx);
/* Get highest block number. */
u32 get_block_height(const struct chain_topology *topo);
/* Get fee rate. */
u64 get_feerate(const struct chain_topology *topo);
/* Broadcast a single tx, and rebroadcast as reqd (copies tx).
* If failed is non-NULL, call that and don't rebroadcast. */
void broadcast_tx(struct chain_topology *topo,
struct peer *peer, const struct bitcoin_tx *tx,
void (*failed)(struct peer *peer,
int exitstatus,
const char *err));
struct chain_topology *new_topology(const tal_t *ctx, struct log *log);
void setup_topology(struct chain_topology *topology, struct bitcoind *bitcoind,
struct timers *timers,
struct timerel poll_time, u32 first_peer_block);
struct txlocator *locate_tx(const void *ctx, const struct chain_topology *topo, const struct sha256_double *txid);
void notify_new_block(struct chain_topology *topo, unsigned int height);
void json_dev_broadcast(struct command *cmd,
struct chain_topology *topo,
const char *buffer, const jsmntok_t *params);
#endif /* LIGHTNING_DAEMON_CRYPTOPKT_H */