104 lines
3.8 KiB
Rust
104 lines
3.8 KiB
Rust
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use bdk::bitcoin::{Address, Network};
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use bdk::blockchain::{Blockchain, ElectrumBlockchain};
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use bdk::database::MemoryDatabase;
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use bdk::hwi::{types::HWIChain, HWIClient};
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use bdk::signer::SignerOrdering;
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use bdk::wallet::{hardwaresigner::HWISigner, AddressIndex};
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use bdk::{FeeRate, KeychainKind, SignOptions, SyncOptions, Wallet};
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use electrum_client::Client;
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use std::str::FromStr;
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use std::sync::Arc;
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// This example shows how to sync a wallet, create a transaction, sign it
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// and broadcast it using an external hardware wallet.
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// The hardware wallet must be connected to the computer and unlocked before
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// running the example. Also, the `hwi` python package should be installed
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// and available in the environment.
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//
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// To avoid loss of funds, consider using an hardware wallet simulator:
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// * Coldcard: https://github.com/Coldcard/firmware
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// * Ledger: https://github.com/LedgerHQ/speculos
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// * Trezor: https://docs.trezor.io/trezor-firmware/core/emulator/index.html
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fn main() -> Result<(), Box<dyn std::error::Error>> {
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println!("Hold tight, I'm connecting to your hardware wallet...");
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// Listing all the available hardware wallet devices...
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let devices = HWIClient::enumerate()?;
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let first_device = devices
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.first()
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.expect("No devices found. Either plug in a hardware wallet, or start a simulator.");
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// ...and creating a client out of the first one
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let client = HWIClient::get_client(first_device, true, HWIChain::Test)?;
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println!("Look what I found, a {}!", first_device.model);
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// Getting the HW's public descriptors
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let descriptors = client.get_descriptors(None)?;
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println!(
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"The hardware wallet's descriptor is: {}",
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descriptors.receive[0]
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);
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// Creating a custom signer from the device
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let custom_signer = HWISigner::from_device(first_device, HWIChain::Test)?;
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let mut wallet = Wallet::new(
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&descriptors.receive[0],
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Some(&descriptors.internal[0]),
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Network::Testnet,
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MemoryDatabase::default(),
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)?;
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// Adding the hardware signer to the BDK wallet
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wallet.add_signer(
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KeychainKind::External,
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SignerOrdering(200),
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Arc::new(custom_signer),
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);
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// create client for Blockstream's testnet electrum server
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let blockchain =
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ElectrumBlockchain::from(Client::new("ssl://electrum.blockstream.info:60002")?);
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println!("Syncing the wallet...");
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wallet.sync(&blockchain, SyncOptions::default())?;
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// get deposit address
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let deposit_address = wallet.get_address(AddressIndex::New)?;
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let balance = wallet.get_balance()?;
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println!("Wallet balances in SATs: {}", balance);
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if balance.get_total() < 10000 {
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println!(
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"Send some sats from the u01.net testnet faucet to address '{addr}'.\nFaucet URL: https://bitcoinfaucet.uo1.net/?to={addr}",
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addr = deposit_address.address
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);
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return Ok(());
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}
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let return_address = Address::from_str("tb1ql7w62elx9ucw4pj5lgw4l028hmuw80sndtntxt")?;
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let (mut psbt, _details) = {
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let mut builder = wallet.build_tx();
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builder
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.drain_wallet()
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.drain_to(return_address.script_pubkey())
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.enable_rbf()
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.fee_rate(FeeRate::from_sat_per_vb(5.0));
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builder.finish()?
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};
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// `sign` will call the hardware wallet asking for a signature
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assert!(
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wallet.sign(&mut psbt, SignOptions::default())?,
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"The hardware wallet couldn't finalize the transaction :("
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);
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println!("Let's broadcast your tx...");
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let raw_transaction = psbt.extract_tx();
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let txid = raw_transaction.txid();
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blockchain.broadcast(&raw_transaction)?;
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println!("Transaction broadcasted! TXID: {txid}.\nExplorer URL: https://mempool.space/testnet/tx/{txid}", txid = txid);
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Ok(())
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}
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