make btc address

This commit is contained in:
2020-04-19 23:16:36 +08:00
parent b1ab9bde74
commit 0946d22fd9
3 changed files with 53 additions and 7 deletions

View File

@@ -33,10 +33,18 @@ dependencies = [
"byte-tools",
]
[[package]]
name = "bs58"
version = "0.3.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "b170cd256a3f9fa6b9edae3e44a7dfdfc77e8124dbc3e2612d75f9c3e2396dae"
[[package]]
name = "btc-address"
version = "0.1.0"
dependencies = [
"bs58",
"digest",
"hex",
"rand",
"ripemd160",

View File

@@ -8,10 +8,12 @@ edition = "2018"
[dependencies]
hex = "0.4"
bs58 = "0.3.0"
secp256k1 = { version = "0.17.2", features = ["rand"] }
rand = "0.6"
# elliptic-curve = "0.3.0"
# k256 = "0.1.0"
digest = "0.8.1"
ripemd160 = "0.8.0"
sha2 = "0.8.1"

View File

@@ -1,14 +1,50 @@
use rand::rngs::OsRng;
use secp256k1::Secp256k1;
use secp256k1::{Secp256k1, key::PublicKey, };
use sha2::Sha256;
use ripemd160::Ripemd160;
use digest::{ Input, FixedOutput, };
fn main() {
println!("Hello, world!");
let secp = Secp256k1::new();
let mut rng = OsRng::new().expect("OsRng");
let (secret_key, public_key) = secp.generate_keypair(&mut rng);
println!("{}", secret_key);
println!("{}", public_key);
println!("{}", hex::encode(public_key.serialize_uncompressed().to_vec()));
for i in 0..1_000_000 {
let (secret_key, public_key) = secp.generate_keypair(&mut rng);
let s = make_btc_address(&public_key);
if i > 0 && i % 10000 == 0 {
println!("> {}", i);
}
if s.starts_with("100") {
println!("{}", s);
println!("{}", secret_key);
}
}
}
fn make_btc_address(public_key: &PublicKey) -> String {
let public_key_bytes = public_key.serialize_uncompressed().to_vec();
let riphemd160_sha256_pub_key = calc_ripemd160(&calc_sha256(&public_key_bytes));
let mut btc_addr = Vec::<u8>::with_capacity(25);
btc_addr.push(0x00 as u8);
btc_addr.extend_from_slice(&riphemd160_sha256_pub_key);
let chcksum = &calc_sha256(&calc_sha256(&btc_addr))[0..4];
btc_addr.extend_from_slice(chcksum);
bs58::encode(&btc_addr).into_string()
}
fn calc_sha256(i: &[u8]) -> Vec<u8> {
let mut hasher = Sha256::default();
hasher.input(&i);
hasher.fixed_result().to_vec()
}
fn calc_ripemd160(i: &[u8]) -> Vec<u8> {
let mut hasher = Ripemd160::default();
hasher.input(&i);
hasher.fixed_result().to_vec()
}