use super::{KeyTypeId, RuntimePublic};
use alloc::vec::Vec;
use crate::core::proof_of_possession::NonAggregatable;
pub use crate::core::sr25519::*;
mod app {
crate::app_crypto!(super, crate::core::testing::SR25519);
}
pub use app::{
Pair as AppPair, ProofOfPossession as AppProofOfPossession, Public as AppPublic,
Signature as AppSignature,
};
impl RuntimePublic for Public {
type Signature = Signature;
type ProofOfPossession = Signature;
fn all(key_type: KeyTypeId) -> super::Vec<Self> {
crate::io::crypto::sr25519_public_keys(key_type)
}
fn generate_pair(key_type: KeyTypeId, seed: Option<Vec<u8>>) -> Self {
crate::io::crypto::sr25519_generate(key_type, seed)
}
fn sign<M: AsRef<[u8]>>(&self, key_type: KeyTypeId, msg: &M) -> Option<Self::Signature> {
crate::io::crypto::sr25519_sign(key_type, self, msg.as_ref())
}
fn verify<M: AsRef<[u8]>>(&self, msg: &M, signature: &Self::Signature) -> bool {
crate::io::crypto::sr25519_verify(signature, msg.as_ref(), self)
}
fn generate_proof_of_possession(
&mut self,
key_type: KeyTypeId,
owner: &[u8],
) -> Option<Self::ProofOfPossession> {
let proof_of_possession_statement = Pair::proof_of_possession_statement(owner);
crate::io::crypto::sr25519_sign(key_type, self, &proof_of_possession_statement)
}
fn verify_proof_of_possession(
&self,
owner: &[u8],
proof_of_possession: &Self::ProofOfPossession,
) -> bool {
let proof_of_possession_statement = Pair::proof_of_possession_statement(owner);
crate::io::crypto::sr25519_verify(
&proof_of_possession,
&proof_of_possession_statement,
&self,
)
}
fn to_raw_vec(&self) -> Vec<u8> {
crate::core::crypto::ByteArray::to_raw_vec(self)
}
}