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Implement WalletKeysManager
This implementation of `KeysInterface` allows to override the shutdown/destination scripts and forwards any other calls to an inner instance of `KeysManager` otherwise.
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src/wallet.rs

Lines changed: 146 additions & 1 deletion
Original file line numberDiff line numberDiff line change
@@ -1,18 +1,30 @@
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use crate::logger::{
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log_error, log_given_level, log_internal, log_trace, FilesystemLogger, Logger,
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};
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use crate::Error;
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use lightning::chain::chaininterface::{
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BroadcasterInterface, ConfirmationTarget, FeeEstimator, FEERATE_FLOOR_SATS_PER_KW,
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};
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use lightning::chain::keysinterface::{
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EntropySource, InMemorySigner, KeyMaterial, KeysInterface, KeysManager, NodeSigner, Recipient,
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SignerProvider, SpendableOutputDescriptor,
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};
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use lightning::ln::msgs::DecodeError;
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use lightning::ln::script::ShutdownScript;
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use bdk::blockchain::{Blockchain, EsploraBlockchain};
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use bdk::database::BatchDatabase;
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use bdk::wallet::AddressIndex;
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use bdk::{FeeRate, SignOptions, SyncOptions};
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use bitcoin::{Script, Transaction};
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use bitcoin::bech32::u5;
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use bitcoin::secp256k1::ecdh::SharedSecret;
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use bitcoin::secp256k1::ecdsa::RecoverableSignature;
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use bitcoin::secp256k1::{PublicKey, Scalar, Secp256k1, SecretKey, Signing};
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use bitcoin::{Script, Transaction, TxOut};
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use std::collections::HashMap;
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use std::sync::{Arc, Mutex, RwLock};
@@ -204,3 +216,136 @@ where
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}
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}
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}
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/// Similar to [`KeysManager`], but overrides the destination and shutdown scripts so they are
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/// directly spendable by the BDK wallet.
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pub struct WalletKeysManager<D>
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where
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D: BatchDatabase,
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{
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inner: KeysManager,
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wallet: Arc<Wallet<D>>,
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}
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impl<D> WalletKeysManager<D>
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where
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D: BatchDatabase,
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{
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/// Constructs a `WalletKeysManager` that
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///
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/// See [`KeysManager::new`] for more information on `seed`, `starting_time_secs`, and
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/// `starting_time_nanos`.
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pub fn new(
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seed: &[u8; 32], starting_time_secs: u64, starting_time_nanos: u32, wallet: Arc<Wallet<D>>,
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) -> Self {
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let inner = KeysManager::new(seed, starting_time_secs, starting_time_nanos);
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Self { inner, wallet }
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}
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/// See [`KeysManager::spend_spendable_outputs`] for documentation on this method.
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pub fn spend_spendable_outputs<C: Signing>(
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&self, descriptors: &[&SpendableOutputDescriptor], outputs: Vec<TxOut>,
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change_destination_script: Script, feerate_sat_per_1000_weight: u32,
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secp_ctx: &Secp256k1<C>,
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) -> Result<Transaction, ()> {
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let only_non_static = &descriptors
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.iter()
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.filter(|desc| {
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if let SpendableOutputDescriptor::StaticOutput { .. } = desc {
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false
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} else {
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true
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}
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})
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.copied()
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.collect::<Vec<_>>();
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self.inner.spend_spendable_outputs(
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only_non_static,
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outputs,
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change_destination_script,
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feerate_sat_per_1000_weight,
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secp_ctx,
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)
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}
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}
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impl<D> NodeSigner for WalletKeysManager<D>
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where
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D: BatchDatabase,
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{
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fn get_node_secret(&self, recipient: Recipient) -> Result<SecretKey, ()> {
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self.inner.get_node_secret(recipient)
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}
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fn get_node_id(&self, recipient: Recipient) -> Result<PublicKey, ()> {
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self.inner.get_node_id(recipient)
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}
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fn ecdh(
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&self, recipient: Recipient, other_key: &PublicKey, tweak: Option<&Scalar>,
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) -> Result<SharedSecret, ()> {
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self.inner.ecdh(recipient, other_key, tweak)
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}
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fn get_inbound_payment_key_material(&self) -> KeyMaterial {
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self.inner.get_inbound_payment_key_material()
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}
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fn sign_invoice(
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&self, hrp_bytes: &[u8], invoice_data: &[u5], recipient: Recipient,
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) -> Result<RecoverableSignature, ()> {
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self.inner.sign_invoice(hrp_bytes, invoice_data, recipient)
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}
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}
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impl<D> KeysInterface for WalletKeysManager<D> where D: BatchDatabase {}
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impl<D> EntropySource for WalletKeysManager<D>
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where
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D: BatchDatabase,
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{
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fn get_secure_random_bytes(&self) -> [u8; 32] {
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self.inner.get_secure_random_bytes()
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}
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}
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impl<D> SignerProvider for WalletKeysManager<D>
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where
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D: BatchDatabase,
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{
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type Signer = InMemorySigner;
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fn generate_channel_keys_id(
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&self, inbound: bool, channel_value_satoshis: u64, user_channel_id: u128,
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) -> [u8; 32] {
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self.inner.generate_channel_keys_id(inbound, channel_value_satoshis, user_channel_id)
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}
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fn derive_channel_signer(
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&self, channel_value_satoshis: u64, channel_keys_id: [u8; 32],
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) -> Self::Signer {
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self.inner.derive_channel_signer(channel_value_satoshis, channel_keys_id)
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}
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fn read_chan_signer(&self, reader: &[u8]) -> Result<Self::Signer, DecodeError> {
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self.inner.read_chan_signer(reader)
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}
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fn get_destination_script(&self) -> Script {
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let address =
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self.wallet.get_new_address().expect("Failed to retrieve new address from wallet.");
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address.script_pubkey()
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}
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fn get_shutdown_scriptpubkey(&self) -> ShutdownScript {
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let address =
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self.wallet.get_new_address().expect("Failed to retrieve new address from wallet.");
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match address.payload {
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bitcoin::util::address::Payload::WitnessProgram { version, program } => {
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return ShutdownScript::new_witness_program(version, &program)
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.expect("Invalid shutdown script.");
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}
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_ => panic!("Tried to use a non-witness address. This must not ever happen."),
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}
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}
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}

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