PublicKey: add read_from method to be symmetric with write_into
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@ -109,6 +109,24 @@ impl PublicKey {
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}
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}
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}
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}
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/// Read the public key from a reader
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///
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/// This internally reads the first byte before reading the rest, so
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/// use of a `BufReader` is recommended.
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pub fn read_from<R: io::Read>(mut reader: R) -> Result<Self, io::Error> {
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let mut bytes = [0; 65];
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reader.read_exact(&mut bytes[0..1])?;
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let bytes = if bytes[0] < 4 {
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&mut bytes[..33]
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} else {
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&mut bytes[..65]
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};
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reader.read_exact(&mut bytes[1..])?;
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Self::from_slice(bytes).map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))
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}
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/// Serialize the public key to bytes
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/// Serialize the public key to bytes
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pub fn to_bytes(&self) -> Vec<u8> {
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pub fn to_bytes(&self) -> Vec<u8> {
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let mut buf = Vec::new();
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let mut buf = Vec::new();
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@ -378,6 +396,7 @@ impl<'de> ::serde::Deserialize<'de> for PublicKey {
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mod tests {
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mod tests {
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use super::{PrivateKey, PublicKey};
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use super::{PrivateKey, PublicKey};
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use secp256k1::Secp256k1;
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use secp256k1::Secp256k1;
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use std::io;
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use std::str::FromStr;
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use std::str::FromStr;
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use hashes::hex::ToHex;
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use hashes::hex::ToHex;
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use network::constants::Network::Testnet;
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use network::constants::Network::Testnet;
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@ -481,4 +500,53 @@ mod tests {
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assert_tokens(&pk_u.compact(), &[Token::BorrowedBytes(&PK_BYTES_U[..])]);
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assert_tokens(&pk_u.compact(), &[Token::BorrowedBytes(&PK_BYTES_U[..])]);
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assert_tokens(&pk_u.readable(), &[Token::BorrowedStr(PK_STR_U)]);
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assert_tokens(&pk_u.readable(), &[Token::BorrowedStr(PK_STR_U)]);
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}
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}
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fn random_key(mut seed: u8) -> PublicKey {
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loop {
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let mut data = [0; 65];
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for byte in &mut data[..] {
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*byte = seed;
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// totally a rng
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seed = seed.wrapping_mul(41).wrapping_add(43);
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}
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if data[0] % 2 == 0 {
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data[0] = 4;
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if let Ok(key) = PublicKey::from_slice(&data[..]) {
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return key;
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}
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} else {
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data[0] = 2 + (data[0] >> 7);
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if let Ok(key) = PublicKey::from_slice(&data[..33]) {
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return key;
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}
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}
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}
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}
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#[test]
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fn pubkey_read_write() {
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const N_KEYS: usize = 20;
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let keys: Vec<_> = (0..N_KEYS).map(|i| random_key(i as u8)).collect();
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let mut v = vec![];
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for k in &keys {
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k.write_into(&mut v).expect("writing into vec");
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}
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let mut dec_keys = vec![];
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let mut cursor = io::Cursor::new(&v);
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for _ in 0..N_KEYS {
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dec_keys.push(PublicKey::read_from(&mut cursor).expect("reading from vec"));
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}
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assert_eq!(keys, dec_keys);
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// sanity checks
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assert!(PublicKey::read_from(&mut cursor).is_err());
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assert!(PublicKey::read_from(io::Cursor::new(&[])).is_err());
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assert!(PublicKey::read_from(io::Cursor::new(&[0; 33][..])).is_err());
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assert!(PublicKey::read_from(io::Cursor::new(&[2; 32][..])).is_err());
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assert!(PublicKey::read_from(io::Cursor::new(&[0; 65][..])).is_err());
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assert!(PublicKey::read_from(io::Cursor::new(&[4; 64][..])).is_err());
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}
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}
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}
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