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804 lines
25 KiB
C
804 lines
25 KiB
C
#ifndef LIGHTNING_WALLET_WALLET_H
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#define LIGHTNING_WALLET_WALLET_H
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#include "config.h"
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#include "db.h"
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#include <bitcoin/chainparams.h>
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#include <bitcoin/tx.h>
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#include <ccan/crypto/shachain/shachain.h>
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#include <ccan/list/list.h>
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#include <ccan/tal/tal.h>
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#include <common/channel_config.h>
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#include <common/utxo.h>
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#include <lightningd/chaintopology.h>
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#include <lightningd/htlc_end.h>
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#include <lightningd/invoice.h>
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#include <onchaind/onchain_wire.h>
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#include <wally_bip32.h>
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enum onion_type;
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struct invoices;
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struct channel;
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struct lightningd;
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struct oneshot;
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struct peer;
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struct pubkey;
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struct timers;
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struct wallet {
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struct lightningd *ld;
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struct db *db;
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struct log *log;
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struct ext_key *bip32_base;
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struct invoices *invoices;
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struct list_head unstored_payments;
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u64 max_channel_dbid;
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/* Filter matching all outpoints corresponding to our owned outputs,
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* including all spent ones */
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struct outpointfilter *owned_outpoints;
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/* Filter matching all outpoints that might be a funding transaction on
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* the blockchain. This is currently all P2WSH outputs */
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struct outpointfilter *utxoset_outpoints;
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};
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/* Possible states for tracked outputs in the database. Not sure yet
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* whether we really want to have reservations reflected in the
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* database, it would simplify queries at the cost of some IO ops */
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enum output_status {
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output_state_available= 0,
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output_state_reserved = 1,
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output_state_spent = 2,
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/* Special status used to express that we don't care in
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* queries */
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output_state_any = 255
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};
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/* Enumeration of all known output types. These include all types that
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* could ever end up on-chain and we may need to react upon. Notice
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* that `to_local`, `htlc_offer`, and `htlc_recv` may need immediate
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* action since they are encumbered with a CSV. */
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enum wallet_output_type {
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p2sh_wpkh = 0,
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to_local = 1,
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htlc_offer = 3,
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htlc_recv = 4,
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our_change = 5,
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p2wpkh = 6
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};
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/* A database backed shachain struct. The datastructure is
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* writethrough, reads are performed from an in-memory version, all
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* writes are passed through to the DB. */
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struct wallet_shachain {
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u64 id;
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struct shachain chain;
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};
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/* Possible states for a wallet_payment. Payments start in
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* `PENDING`. Outgoing payments are set to `PAYMENT_COMPLETE` once we
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* get the preimage matching the rhash, or to
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* `PAYMENT_FAILED`. */
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/* /!\ This is a DB ENUM, please do not change the numbering of any
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* already defined elements (adding is ok) /!\ */
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enum wallet_payment_status {
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PAYMENT_PENDING = 0,
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PAYMENT_COMPLETE = 1,
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PAYMENT_FAILED = 2
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};
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/* Outgoing payments. A simple persisted representation
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* of a payment we initiated. This can be used by
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* a UI (alongside invoices) to display the balance history.
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*/
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struct wallet_payment {
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/* If it's in unstored_payments */
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struct list_node list;
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u64 id;
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u32 timestamp;
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struct sha256 payment_hash;
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enum wallet_payment_status status;
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struct pubkey destination;
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u64 msatoshi;
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u64 msatoshi_sent;
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/* If and only if PAYMENT_COMPLETE */
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struct preimage *payment_preimage;
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/* Needed for recovering from routing failures. */
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struct secret *path_secrets;
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struct pubkey *route_nodes;
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struct short_channel_id *route_channels;
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};
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struct outpoint {
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struct bitcoin_txid txid;
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u32 blockheight;
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u32 txindex;
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u32 outnum;
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u64 satoshis;
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u8 *scriptpubkey;
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u32 spendheight;
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};
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/* Statistics for a channel */
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struct channel_stats {
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u64 in_payments_offered, in_payments_fulfilled;
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u64 in_msatoshi_offered, in_msatoshi_fulfilled;
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u64 out_payments_offered, out_payments_fulfilled;
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u64 out_msatoshi_offered, out_msatoshi_fulfilled;
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};
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/**
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* wallet_new - Constructor for a new sqlite3 based wallet
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*
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* This is guaranteed to either return a valid wallet, or abort with
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* `fatal` if it cannot be initialized.
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*/
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struct wallet *wallet_new(struct lightningd *ld,
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struct log *log, struct timers *timers);
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/**
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* wallet_add_utxo - Register an UTXO which we (partially) own
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*
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* Add an UTXO to the set of outputs we care about.
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*/
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bool wallet_add_utxo(struct wallet *w, struct utxo *utxo,
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enum wallet_output_type type);
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/**
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* wallet_update_output_status - Perform an output state transition
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*
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* Change the current status of an output we are tracking in the
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* database. Returns true if the output exists with the @oldstatus and
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* was successfully updated to @newstatus. May fail if either the
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* output does not exist, or it does not have the expected
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* @oldstatus. In case we don't care about the previous state use
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* `output_state_any` as @oldstatus.
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*/
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bool wallet_update_output_status(struct wallet *w,
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const struct bitcoin_txid *txid,
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const u32 outnum, enum output_status oldstatus,
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enum output_status newstatus);
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/**
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* wallet_get_utxos - Retrieve all utxos matching a given state
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*
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* Returns a `tal_arr` of `utxo` structs. Double indirection in order
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* to be able to steal individual elements onto something else.
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*/
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struct utxo **wallet_get_utxos(const tal_t *ctx, struct wallet *w,
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const enum output_status state);
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const struct utxo **wallet_select_coins(const tal_t *ctx, struct wallet *w,
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const u64 value,
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const u32 feerate_per_kw,
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size_t outscriptlen,
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u64 *fee_estimate,
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u64 *change_satoshi);
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const struct utxo **wallet_select_all(const tal_t *ctx, struct wallet *w,
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const u32 feerate_per_kw,
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size_t outscriptlen,
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u64 *value,
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u64 *fee_estimate);
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/**
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* wallet_confirm_utxos - Once we've spent a set of utxos, mark them confirmed.
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*
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* May be called once the transaction spending these UTXOs has been
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* broadcast. If something fails use `tal_free(utxos)` instead to undo
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* the reservation.
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*/
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void wallet_confirm_utxos(struct wallet *w, const struct utxo **utxos);
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/**
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* wallet_can_spend - Do we have the private key matching this scriptpubkey?
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*
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* FIXME: This is very slow with lots of inputs!
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*
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* @w: (in) allet holding the pubkeys to check against (privkeys are on HSM)
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* @script: (in) the script to check
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* @index: (out) the bip32 derivation index that matched the script
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* @output_is_p2sh: (out) whether the script is a p2sh, or p2wpkh
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*/
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bool wallet_can_spend(struct wallet *w, const u8 *script,
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u32 *index, bool *output_is_p2sh);
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/**
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* wallet_get_newindex - get a new index from the wallet.
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* @ld: (in) lightning daemon
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*
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* Returns -1 on error (key exhaustion).
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*/
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s64 wallet_get_newindex(struct lightningd *ld);
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/**
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* wallet_shachain_add_hash -- wallet wrapper around shachain_add_hash
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*/
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bool wallet_shachain_add_hash(struct wallet *wallet,
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struct wallet_shachain *chain,
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uint64_t index,
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const struct sha256 *hash);
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/**
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* wallet_shachain_load -- Load an existing shachain from the wallet.
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*
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* @wallet: the wallet to load from
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* @id: the shachain id to load
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* @chain: where to load the shachain into
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*/
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bool wallet_shachain_load(struct wallet *wallet, u64 id,
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struct wallet_shachain *chain);
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/**
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* wallet_get_uncommitted_channel_dbid -- get a unique channel dbid
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*
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* @wallet: the wallet
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*/
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u64 wallet_get_channel_dbid(struct wallet *wallet);
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/**
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* wallet_channel_save -- Upsert the channel into the database
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*
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* @wallet: the wallet to save into
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* @chan: the instance to store (not const so we can update the unique_id upon
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* insert)
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*/
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void wallet_channel_save(struct wallet *w, struct channel *chan);
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/**
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* wallet_channel_insert -- Insert the initial channel into the database
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*
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* @wallet: the wallet to save into
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* @chan: the instance to store
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*/
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void wallet_channel_insert(struct wallet *w, struct channel *chan);
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/**
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* wallet_channel_delete -- After resolving a channel, forget about it
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*/
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void wallet_channel_delete(struct wallet *w, u64 wallet_id);
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/**
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* wallet_peer_delete -- After no more channels in peer, forget about it
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*/
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void wallet_peer_delete(struct wallet *w, u64 peer_dbid);
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/**
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* wallet_channel_config_load -- Load channel_config from database into cc
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*/
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bool wallet_channel_config_load(struct wallet *w, const u64 id,
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struct channel_config *cc);
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/**
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* wlalet_channels_load_active -- Load persisted active channels into the peers
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*
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* @ctx: context to allocate peers from
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* @w: wallet to load from
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*
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* Be sure to call this only once on startup since it'll append peers
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* loaded from the database to the list without checking.
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*/
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bool wallet_channels_load_active(const tal_t *ctx, struct wallet *w);
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/**
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* wallet_channel_stats_incr_* - Increase channel statistics.
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*
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* @w: wallet containing the channel
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* @cdbid: channel database id
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* @msatoshi: amount in msatoshi being transferred
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*/
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void wallet_channel_stats_incr_in_offered(struct wallet *w, u64 cdbid, u64 msatoshi);
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void wallet_channel_stats_incr_in_fulfilled(struct wallet *w, u64 cdbid, u64 msatoshi);
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void wallet_channel_stats_incr_out_offered(struct wallet *w, u64 cdbid, u64 msatoshi);
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void wallet_channel_stats_incr_out_fulfilled(struct wallet *w, u64 cdbid, u64 msatoshi);
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/**
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* wallet_channel_stats_load - Load channel statistics
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*
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* @w: wallet containing the channel
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* @cdbid: channel database id
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* @stats: location to load statistics to
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*/
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void wallet_channel_stats_load(struct wallet *w, u64 cdbid, struct channel_stats *stats);
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/**
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* wallet_first_blocknum - get first block we're interested in.
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*
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* @w: wallet to load from.
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* @first_possible: when c-lightning may have been active from
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*/
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u32 wallet_first_blocknum(struct wallet *w, u32 first_possible);
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/**
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* wallet_extract_owned_outputs - given a tx, extract all of our outputs
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*/
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int wallet_extract_owned_outputs(struct wallet *w, const struct bitcoin_tx *tx,
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const struct block *block, u64 *total_satoshi);
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/**
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* wallet_htlc_save_in - store an htlc_in in the database
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*
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* @wallet: wallet to store the htlc into
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* @chan: the channel this HTLC is associated with
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* @in: the htlc_in to store
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*
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* This will store the contents of the `struct htlc_in` in the
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* database. Since `struct htlc_in` commonly only change state after
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* being created we do not support updating arbitrary fields and this
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* function will fail when attempting to call it multiple times for
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* the same `struct htlc_in`. Instead `wallet_htlc_update` may be used
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* for state transitions or to set the `payment_key` for completed
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* HTLCs.
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*/
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void wallet_htlc_save_in(struct wallet *wallet,
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const struct channel *chan, struct htlc_in *in);
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/**
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* wallet_htlc_save_out - store an htlc_out in the database
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*
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* See comment for wallet_htlc_save_in.
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*/
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void wallet_htlc_save_out(struct wallet *wallet,
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const struct channel *chan,
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struct htlc_out *out);
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/**
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* wallet_htlc_update - perform state transition or add payment_key
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*
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* @wallet: the wallet containing the HTLC to update
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* @htlc_dbid: the database ID used to identify the HTLC
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* @new_state: the state we should transition to
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* @payment_key: the `payment_key` which hashes to the `payment_hash`,
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* or NULL if unknown.
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*
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* Used to update the state of an HTLC, either a `struct htlc_in` or a
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* `struct htlc_out` and optionally set the `payment_key` should the
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* HTLC have been settled.
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*/
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void wallet_htlc_update(struct wallet *wallet, const u64 htlc_dbid,
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const enum htlc_state new_state,
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const struct preimage *payment_key);
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/**
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* wallet_htlcs_load_for_channel - Load HTLCs associated with chan from DB.
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*
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* @wallet: wallet to load from
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* @chan: load HTLCs associated with this channel
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* @htlcs_in: htlc_in_map to store loaded htlc_in in
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* @htlcs_out: htlc_out_map to store loaded htlc_out in
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*
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* This function looks for HTLCs that are associated with the given
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* channel and loads them into the provided maps. One caveat is that
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* the `struct htlc_out` instances are not wired up with the
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* corresponding `struct htlc_in` in the forwarding case nor are they
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* associated with a `struct pay_command` in the case we originated
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* the payment. In the former case the corresponding `struct htlc_in`
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* may not have been loaded yet. In the latter case the pay_command
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* does not exist anymore since we restarted.
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*
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* Use `wallet_htlcs_reconnect` to wire htlc_out instances to the
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* corresponding htlc_in after loading all channels.
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*/
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bool wallet_htlcs_load_for_channel(struct wallet *wallet,
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struct channel *chan,
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struct htlc_in_map *htlcs_in,
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struct htlc_out_map *htlcs_out);
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/**
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* wallet_htlcs_reconnect -- Link outgoing HTLCs to their origins
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*
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* For each outgoing HTLC find the incoming HTLC that triggered it. If
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* we are the origin of the transfer then we cannot resolve the
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* incoming HTLC in which case we just leave it `NULL`.
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*/
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bool wallet_htlcs_reconnect(struct wallet *wallet,
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struct htlc_in_map *htlcs_in,
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struct htlc_out_map *htlcs_out);
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/* /!\ This is a DB ENUM, please do not change the numbering of any
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* already defined elements (adding is ok) /!\ */
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enum invoice_status {
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UNPAID,
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PAID,
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EXPIRED,
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};
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/* The information about an invoice */
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struct invoice_details {
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/* Current invoice state */
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enum invoice_status state;
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/* Preimage for this invoice */
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struct preimage r;
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/* Hash of preimage r */
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struct sha256 rhash;
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/* Label assigned by user */
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const struct json_escaped *label;
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/* NULL if they specified "any" */
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u64 *msatoshi;
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/* Absolute UNIX epoch time this will expire */
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u64 expiry_time;
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/* Set if state == PAID; order to be returned by waitanyinvoice */
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u64 pay_index;
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/* Set if state == PAID; amount received */
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u64 msatoshi_received;
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/* Set if state == PAID; time paid */
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u64 paid_timestamp;
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/* BOLT11 encoding for this invoice */
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const char *bolt11;
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};
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/* An object that handles iteration over the set of invoices */
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struct invoice_iterator {
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/* The contents of this object is subject to change
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* and should not be depended upon */
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void *p;
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};
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struct invoice {
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/* Internal, rest of lightningd should not use */
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/* Database ID */
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u64 id;
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};
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#define INVOICE_MAX_LABEL_LEN 128
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/**
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* wallet_invoice_load - Load the invoices from the database
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*
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* @wallet - the wallet whose invoices are to be loaded.
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*
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* All other wallet_invoice_* functions cannot be called
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* until this function is called.
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* As a database operation it must be called within
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* db_begin_transaction .. db_commit_transaction
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* (all other invoice functions also have this requirement).
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* Returns true if loaded successfully.
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*/
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bool wallet_invoice_load(struct wallet *wallet);
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/**
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* wallet_invoice_create - Create a new invoice.
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*
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* @wallet - the wallet to create the invoice in.
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* @pinvoice - pointer to location to load new invoice in.
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* @msatoshi - the amount the invoice should have, or
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* NULL for any-amount invoices.
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* @label - the unique label for this invoice. Must be
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* non-NULL.
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* @expiry - the number of seconds before the invoice
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* expires
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*
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* Returns false if label already exists or expiry is 0.
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* Returns true if created invoice.
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* FIXME: Fallback addresses
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*/
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bool wallet_invoice_create(struct wallet *wallet,
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struct invoice *pinvoice,
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u64 *msatoshi TAKES,
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const struct json_escaped *label TAKES,
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u64 expiry,
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const char *b11enc,
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const struct preimage *r,
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const struct sha256 *rhash);
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/**
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* wallet_invoice_find_by_label - Search for an invoice by label
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*
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* @wallet - the wallet to search.
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* @pinvoice - pointer to location to load found invoice in.
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* @label - the label to search for.
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*
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* Returns false if no invoice with that label exists.
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* Returns true if found.
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*/
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bool wallet_invoice_find_by_label(struct wallet *wallet,
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struct invoice *pinvoice,
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const struct json_escaped *label);
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/**
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* wallet_invoice_find_unpaid - Search for an unpaid, unexpired invoice by
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* payment_hash
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*
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* @wallet - the wallet to search.
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* @pinvoice - pointer to location to load found invoice in.
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* @rhash - the payment_hash to search for.
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*
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* Returns false if no unpaid invoice with that rhash exists.
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* Returns true if found.
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*/
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bool wallet_invoice_find_unpaid(struct wallet *wallet,
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struct invoice *pinvoice,
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const struct sha256 *rhash);
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/**
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* wallet_invoice_delete - Delete an invoice
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*
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* @wallet - the wallet to delete the invoice from.
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* @invoice - the invoice to delete.
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*
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* Return false on failure.
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*/
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bool wallet_invoice_delete(struct wallet *wallet,
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struct invoice invoice);
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/**
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* wallet_invoice_delete_expired - Delete all expired invoices
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* with expiration time less than or equal to the given.
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*
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* @wallet - the wallet to delete invoices from.
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* @max_expiry_time - the maximum expiry time to delete.
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*/
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void wallet_invoice_delete_expired(struct wallet *wallet,
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u64 max_expiry_time);
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/**
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* wallet_invoice_autoclean - Set up a repeating autoclean of
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* expired invoices.
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* Cleans (deletes) expired invoices every @cycle_seconds.
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* Clean only those invoices that have been expired for at
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* least @expired_by seconds or more.
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*/
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void wallet_invoice_autoclean(struct wallet * wallet,
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u64 cycle_seconds,
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u64 expired_by);
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/**
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* wallet_invoice_iterate - Iterate over all existing invoices
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*
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* @wallet - the wallet whose invoices are to be iterated over.
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* @iterator - the iterator object to use.
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*
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* Return false at end-of-sequence, true if still iterating.
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* Usage:
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*
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* struct invoice_iterator it;
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* memset(&it, 0, sizeof(it))
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* while (wallet_invoice_iterate(wallet, &it)) {
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* ...
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* }
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*/
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bool wallet_invoice_iterate(struct wallet *wallet,
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struct invoice_iterator *it);
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/**
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* wallet_invoice_iterator_deref - Read the details of the
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* invoice currently pointed to by the given iterator.
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*
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* @ctx - the owner of the label and msatoshi fields returned.
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* @wallet - the wallet whose invoices are to be iterated over.
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* @iterator - the iterator object to use.
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* @details - pointer to details object to load.
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*
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*/
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void wallet_invoice_iterator_deref(const tal_t *ctx,
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struct wallet *wallet,
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const struct invoice_iterator *it,
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struct invoice_details *details);
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/**
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* wallet_invoice_resolve - Mark an invoice as paid
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*
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* @wallet - the wallet containing the invoice.
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* @invoice - the invoice to mark as paid.
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* @msatoshi_received - the actual amount received.
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*
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* Precondition: the invoice must not yet be expired (wallet
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* does not check!).
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*/
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void wallet_invoice_resolve(struct wallet *wallet,
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struct invoice invoice,
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u64 msatoshi_received);
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/**
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* wallet_invoice_waitany - Wait for any invoice to be paid.
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*
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* @ctx - the owner of the callback. If the owner is freed,
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* the callback is cancelled.
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* @wallet - the wallet to query.
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* @lastpay_index - wait for invoices after the specified
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* pay_index. Use 0 to wait for the first invoice.
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* @cb - the callback to invoke. If an invoice is already
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* paid with pay_index greater than lastpay_index, this
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* is called immediately, otherwise it is called during
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* an invoices_resolve call. Will never be given a NULL
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* pointer-to-invoice.
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* @cbarg - the callback data.
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*/
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void wallet_invoice_waitany(const tal_t *ctx,
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struct wallet *wallet,
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u64 lastpay_index,
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void (*cb)(const struct invoice *, void*),
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void *cbarg);
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/**
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* wallet_invoice_waitone - Wait for a specific invoice to be paid,
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* deleted, or expired.
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*
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* @ctx - the owner of the callback. If the owner is freed,
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* the callback is cancelled.
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* @wallet - the wallet to query.
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* @invoice - the invoice to wait on.
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* @cb - the callback to invoice. If invoice is already paid
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* or expired, this is called immediately, otherwise it is
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* called during an invoices_resolve or invoices_delete call.
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* If the invoice was deleted, the callback is given a NULL
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* invoice.
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* @cbarg - the callback data.
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*
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*/
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void wallet_invoice_waitone(const tal_t *ctx,
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struct wallet *wallet,
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struct invoice invoice,
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void (*cb)(const struct invoice *, void*),
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void *cbarg);
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/**
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* wallet_invoice_details - Get the invoice_details of an invoice.
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*
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* @ctx - the owner of the label and msatoshi fields returned.
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* @wallet - the wallet to query.
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* @invoice - the invoice to get details on.
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* @details - pointer to details object to load.
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*/
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void wallet_invoice_details(const tal_t *ctx,
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struct wallet *wallet,
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struct invoice invoice,
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struct invoice_details *details);
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/**
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* wallet_htlc_stubs - Retrieve HTLC stubs for the given channel
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*
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* Load minimal necessary information about HTLCs for the on-chain
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* settlement. This returns a `tal_arr` allocated off of @ctx with the
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* necessary size to hold all HTLCs.
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*
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* @ctx: Allocation context for the return value
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* @wallet: Wallet to load from
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* @chan: Channel to fetch stubs for
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*/
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struct htlc_stub *wallet_htlc_stubs(const tal_t *ctx, struct wallet *wallet,
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struct channel *chan);
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/**
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* wallet_payment_setup - Remember this payment for later committing.
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*
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* Either wallet_payment_store() gets called to put in db once hout
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* is ready to go (and frees @payment), or @payment is tal_free'd.
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*
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* @wallet: wallet we're going to store it in.
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* @payment: the payment for later committing.
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*/
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void wallet_payment_setup(struct wallet *wallet, struct wallet_payment *payment);
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/**
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* wallet_payment_store - Record a new incoming/outgoing payment
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*
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* Stores the payment in the database.
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*/
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void wallet_payment_store(struct wallet *wallet,
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const struct sha256 *payment_hash);
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/**
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* wallet_payment_delete - Remove a payment
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*
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* Removes the payment from the database.
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*/
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void wallet_payment_delete(struct wallet *wallet,
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const struct sha256 *payment_hash);
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/**
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* wallet_local_htlc_out_delete - Remove a local outgoing failed HTLC
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*
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* This is not a generic HTLC cleanup! This is specifically for the
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* narrow (and simple!) case of removing the HTLC associated with a
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* local outgoing payment.
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*/
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void wallet_local_htlc_out_delete(struct wallet *wallet,
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struct channel *chan,
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const struct sha256 *payment_hash);
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/**
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* wallet_payment_by_hash - Retrieve a specific payment
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*
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|
* Given the `payment_hash` retrieve the matching payment.
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*/
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struct wallet_payment *
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wallet_payment_by_hash(const tal_t *ctx, struct wallet *wallet,
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const struct sha256 *payment_hash);
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/**
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|
* wallet_payment_set_status - Update the status of the payment
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*
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* Search for the payment with the given `payment_hash` and update
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* its state.
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*/
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void wallet_payment_set_status(struct wallet *wallet,
|
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const struct sha256 *payment_hash,
|
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const enum wallet_payment_status newstatus,
|
|
const struct preimage *preimage);
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|
|
|
/**
|
|
* wallet_payment_get_failinfo - Get failure information for a given
|
|
* `payment_hash`.
|
|
*
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|
* Data is allocated as children of the given context.
|
|
*/
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|
void wallet_payment_get_failinfo(const tal_t *ctx,
|
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struct wallet *wallet,
|
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const struct sha256 *payment_hash,
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/* outputs */
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u8 **failonionreply,
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bool *faildestperm,
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|
int *failindex,
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|
enum onion_type *failcode,
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|
struct pubkey **failnode,
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|
struct short_channel_id **failchannel,
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|
u8 **failupdate);
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/**
|
|
* wallet_payment_set_failinfo - Set failure information for a given
|
|
* `payment_hash`.
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|
*/
|
|
void wallet_payment_set_failinfo(struct wallet *wallet,
|
|
const struct sha256 *payment_hash,
|
|
const u8 *failonionreply,
|
|
bool faildestperm,
|
|
int failindex,
|
|
enum onion_type failcode,
|
|
const struct pubkey *failnode,
|
|
const struct short_channel_id *failchannel,
|
|
const u8 *failupdate);
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|
|
|
/**
|
|
* wallet_payment_list - Retrieve a list of payments
|
|
*
|
|
* payment_hash: optional filter for only this payment hash.
|
|
*/
|
|
const struct wallet_payment **wallet_payment_list(const tal_t *ctx,
|
|
struct wallet *wallet,
|
|
const struct sha256 *payment_hash);
|
|
|
|
/**
|
|
* wallet_htlc_sigs_save - Store the latest HTLC sigs for the channel
|
|
*/
|
|
void wallet_htlc_sigs_save(struct wallet *w, u64 channel_id,
|
|
secp256k1_ecdsa_signature *htlc_sigs);
|
|
|
|
/**
|
|
* wallet_network_check - Check that the wallet is setup for this chain
|
|
*
|
|
* Ensure that the genesis_hash from the chainparams matches the
|
|
* genesis_hash with which the DB was initialized. Returns false if
|
|
* the check failed, i.e., if the genesis hashes do not match.
|
|
*/
|
|
bool wallet_network_check(struct wallet *w,
|
|
const struct chainparams *chainparams);
|
|
|
|
/**
|
|
* wallet_block_add - Add a block to the blockchain tracked by this wallet
|
|
*/
|
|
void wallet_block_add(struct wallet *w, struct block *b);
|
|
|
|
/**
|
|
* wallet_block_remove - Remove a block (and all its descendants) from the tracked blockchain
|
|
*/
|
|
void wallet_block_remove(struct wallet *w, struct block *b);
|
|
|
|
/**
|
|
* wallet_blocks_rollback - Roll the blockchain back to the given height
|
|
*/
|
|
void wallet_blocks_rollback(struct wallet *w, u32 height);
|
|
|
|
void wallet_outpoint_spend(struct wallet *w, const u32 blockheight,
|
|
const struct bitcoin_txid *txid, const u32 outnum);
|
|
|
|
struct outpoint *wallet_outpoint_for_scid(struct wallet *w, tal_t *ctx,
|
|
const struct short_channel_id *scid);
|
|
|
|
void wallet_utxoset_add(struct wallet *w, const struct bitcoin_tx *tx,
|
|
const u32 outnum, const u32 blockheight,
|
|
const u32 txindex, const u8 *scriptpubkey,
|
|
const u64 satoshis);
|
|
#endif /* LIGHTNING_WALLET_WALLET_H */
|