//! NUT-01: Mint public key exchange //! //! use std::collections::BTreeMap; use std::ops::{Deref, DerefMut}; use bitcoin::secp256k1; use serde::{Deserialize, Serialize}; use serde_with::{serde_as, VecSkipError}; use thiserror::Error; mod public_key; mod secret_key; pub use self::public_key::PublicKey; pub use self::secret_key::SecretKey; use super::nut02::KeySet; use crate::amount::{Amount, AmountStr}; /// Nut01 Error #[derive(Debug, Error)] pub enum Error { /// Secp256k1 Error #[error(transparent)] Secp256k1(#[from] secp256k1::Error), /// Json Error #[error(transparent)] Json(#[from] serde_json::Error), /// Invalid Pubkey size #[error("Invalid public key size: expected={expected}, found={found}")] InvalidPublicKeySize { /// Expected size expected: usize, /// Actual size found: usize, }, } /// Mint public keys per amount. /// /// This is a variation of [MintKeys] that only exposes the public keys. /// /// See [NUT-01] #[derive(Debug, Clone, PartialEq, Eq, Deserialize, Serialize)] #[cfg_attr(feature = "swagger", derive(utoipa::ToSchema))] pub struct Keys(BTreeMap); impl Deref for Keys { type Target = BTreeMap; fn deref(&self) -> &Self::Target { &self.0 } } impl From for Keys { fn from(keys: MintKeys) -> Self { Self( keys.0 .into_iter() .map(|(amount, keypair)| (AmountStr::from(amount), keypair.public_key)) .collect(), ) } } impl Keys { /// Create new [`Keys`] #[inline] pub fn new(keys: BTreeMap) -> Self { Self(keys) } /// Get [`Keys`] #[inline] pub fn keys(&self) -> &BTreeMap { &self.0 } /// Get [`PublicKey`] for [`Amount`] #[inline] pub fn amount_key(&self, amount: Amount) -> Option { self.0.get(&AmountStr::from(amount)).copied() } /// Iterate through the (`Amount`, `PublicKey`) entries in the Map #[inline] pub fn iter(&self) -> impl Iterator { self.0.iter() } } /// Mint Public Keys [NUT-01] #[serde_as] #[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)] #[cfg_attr(feature = "swagger", derive(utoipa::ToSchema))] pub struct KeysResponse { /// Keysets #[serde_as(as = "VecSkipError<_>")] pub keysets: Vec, } /// Mint key pairs per amount #[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)] pub struct MintKeys(BTreeMap); impl Deref for MintKeys { type Target = BTreeMap; fn deref(&self) -> &Self::Target { &self.0 } } impl DerefMut for MintKeys { fn deref_mut(&mut self) -> &mut Self::Target { &mut self.0 } } impl MintKeys { /// Create new [`MintKeys`] #[inline] pub fn new(map: BTreeMap) -> Self { Self(map) } } /// Mint Public Private key pair #[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)] pub struct MintKeyPair { /// Publickey pub public_key: PublicKey, /// Secretkey pub secret_key: SecretKey, } impl MintKeyPair { /// [`MintKeyPair`] from secret key #[inline] pub fn from_secret_key(secret_key: SecretKey) -> Self { Self { public_key: secret_key.public_key(), secret_key, } } } #[cfg(test)] mod tests { use std::str::FromStr; use super::*; #[test] fn pubkey() { let pubkey_str = "02c020067db727d586bc3183aecf97fcb800c3f4cc4759f69c626c9db5d8f5b5d4"; let pubkey = PublicKey::from_str(pubkey_str).unwrap(); assert_eq!(pubkey_str, pubkey.to_string()); /* let pubkey_str = "04918dfc36c93e7db6cc0d60f37e1522f1c36b64d3f4b424c532d7c595febbc5"; let pubkey = PublicKey::from_hex(pubkey_str.to_string()).unwrap(); assert_eq!(pubkey_str, pubkey.to_hex())*/ } #[test] fn test_ser_der_secret() { let secret = SecretKey::generate(); let json = serde_json::to_string(&secret).unwrap(); let sec: SecretKey = serde_json::from_str(&json).unwrap(); assert_eq!(sec, secret); } #[test] fn test_vectors_01() { let incorrect_1 = r#"{ "1":"03a40f20667ed53513075dc51e715ff2046cad64eb68960632269ba7f0210e38","2":"03fd4ce5a16b65576145949e6f99f445f8249fee17c606b688b504a849cdc452de","4":"02648eccfa4c026960966276fa5a4cae46ce0fd432211a4f449bf84f13aa5f8303","8":"02fdfd6796bfeac490cbee12f778f867f0a2c68f6508d17c649759ea0dc3547528" }"#; let response: Result = serde_json::from_str(incorrect_1); assert!(response.is_err()); let incorrect_1 = r#"{ "1":"03a40f20667ed53513075dc51e715ff2046cad64eb68960632269ba7f0210e38bc","2":"04fd4ce5a16b65576145949e6f99f445f8249fee17c606b688b504a849cdc452de3625246cb2c27dac965cb7200a5986467eee92eb7d496bbf1453b074e223e481","4":"02648eccfa4c026960966276fa5a4cae46ce0fd432211a4f449bf84f13aa5f8303","8":"02fdfd6796bfeac490cbee12f778f867f0a2c68f6508d17c649759ea0dc3547528" }"#; let response: Result = serde_json::from_str(incorrect_1); assert!(response.is_err()); let incorrect_1 = r#"{ "1":"03a40f20667ed53513075dc51e715ff2046cad64eb68960632269ba7f0210e38bc","2":"03fd4ce5a16b65576145949e6f99f445f8249fee17c606b688b504a849cdc452de","4":"02648eccfa4c026960966276fa5a4cae46ce0fd432211a4f449bf84f13aa5f8303","8":"02fdfd6796bfeac490cbee12f778f867f0a2c68f6508d17c649759ea0dc3547528" }"#; let response: Result = serde_json::from_str(incorrect_1); assert!(response.is_ok()); let incorrect_1 = r#"{ 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}"#; let response: Result = serde_json::from_str(incorrect_1); assert!(response.is_ok()); } }