secret.rs 3.3 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151
  1. //! Secret
  2. use std::fmt;
  3. use std::str::FromStr;
  4. use bitcoin::secp256k1::rand::{self, RngCore};
  5. use serde::{Deserialize, Serialize};
  6. use thiserror::Error;
  7. use crate::util::hex;
  8. /// The secret data that allows spending ecash
  9. #[derive(Debug, Clone, PartialEq, Eq, Hash, PartialOrd, Ord, Serialize, Deserialize)]
  10. #[serde(transparent)]
  11. pub struct Secret(String);
  12. /// Secret Errors
  13. #[derive(Debug, Error)]
  14. pub enum Error {
  15. /// Invalid Length
  16. #[error("Invalid secret length: `{0}`")]
  17. InvalidLength(u64),
  18. /// Hex Error
  19. #[error(transparent)]
  20. Hex(#[from] hex::Error),
  21. /// Serde Json error
  22. #[error(transparent)]
  23. SerdeJsonError(#[from] serde_json::Error),
  24. }
  25. impl Default for Secret {
  26. fn default() -> Self {
  27. Self::generate()
  28. }
  29. }
  30. impl Secret {
  31. /// Create new [`Secret`]
  32. #[inline]
  33. pub fn new<S>(secret: S) -> Self
  34. where
  35. S: Into<String>,
  36. {
  37. Self(secret.into())
  38. }
  39. /// Create secret value
  40. /// Generate a new random secret as the recommended 32 byte hex
  41. pub fn generate() -> Self {
  42. let mut rng = rand::thread_rng();
  43. let mut random_bytes = [0u8; 32];
  44. // Generate random bytes
  45. rng.fill_bytes(&mut random_bytes);
  46. // The secret string is hex encoded
  47. let secret = hex::encode(random_bytes);
  48. Self(secret)
  49. }
  50. /// [`Secret`] as bytes
  51. #[inline]
  52. pub fn as_bytes(&self) -> &[u8] {
  53. self.0.as_bytes()
  54. }
  55. /// [`Secret`] to bytes
  56. #[inline]
  57. pub fn to_bytes(&self) -> Vec<u8> {
  58. self.as_bytes().to_vec()
  59. }
  60. /// Check if secret is P2PK secret
  61. pub fn is_p2pk(&self) -> bool {
  62. use crate::nuts::Kind;
  63. let secret: Result<crate::nuts::nut10::Secret, serde_json::Error> =
  64. serde_json::from_str(&self.0);
  65. if let Ok(secret) = secret {
  66. if secret.kind.eq(&Kind::P2PK) {
  67. return true;
  68. }
  69. }
  70. false
  71. }
  72. }
  73. impl FromStr for Secret {
  74. type Err = Error;
  75. fn from_str(s: &str) -> Result<Self, Self::Err> {
  76. Ok(Self(s.to_string()))
  77. }
  78. }
  79. impl fmt::Display for Secret {
  80. fn fmt(&self, f: &mut fmt::Formatter<'_>) -> std::fmt::Result {
  81. write!(f, "{}", self.0)
  82. }
  83. }
  84. impl From<Secret> for Vec<u8> {
  85. fn from(value: Secret) -> Vec<u8> {
  86. value.to_bytes()
  87. }
  88. }
  89. impl From<&Secret> for Vec<u8> {
  90. fn from(value: &Secret) -> Vec<u8> {
  91. value.to_bytes()
  92. }
  93. }
  94. impl TryFrom<Secret> for crate::nuts::nut10::Secret {
  95. type Error = serde_json::Error;
  96. fn try_from(unchecked_secret: Secret) -> Result<crate::nuts::nut10::Secret, Self::Error> {
  97. serde_json::from_str(&unchecked_secret.0)
  98. }
  99. }
  100. impl TryFrom<&Secret> for crate::nuts::nut10::Secret {
  101. type Error = Error;
  102. fn try_from(unchecked_secret: &Secret) -> Result<crate::nuts::nut10::Secret, Self::Error> {
  103. Ok(serde_json::from_str(&unchecked_secret.0)?)
  104. }
  105. }
  106. #[cfg(test)]
  107. mod tests {
  108. use std::assert_eq;
  109. use std::str::FromStr;
  110. use super::*;
  111. #[test]
  112. fn test_secret_from_str() {
  113. let secret = Secret::generate();
  114. let secret_str = secret.to_string();
  115. assert_eq!(hex::decode(secret_str.clone()).unwrap().len(), 32);
  116. let secret_n = Secret::from_str(&secret_str).unwrap();
  117. assert_eq!(secret_n, secret)
  118. }
  119. }