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use super::*;
impl<N: Network> FromBytes for Fee<N> {
fn read_le<R: Read>(mut reader: R) -> IoResult<Self> {
let version = u16::read_le(&mut reader)?;
if version != 0 {
return Err(error("Invalid fee version"));
}
let transition = Transition::read_le(&mut reader)?;
let global_state_root = N::StateRoot::read_le(&mut reader)?;
let inclusion_variant = u8::read_le(&mut reader)?;
let inclusion_proof = match inclusion_variant {
0 => None,
1 => Some(Proof::read_le(&mut reader)?),
_ => return Err(error("Invalid inclusion proof variant '{inclusion_variant}'")),
};
Ok(Self::from(transition, global_state_root, inclusion_proof))
}
}
impl<N: Network> ToBytes for Fee<N> {
fn write_le<W: Write>(&self, mut writer: W) -> IoResult<()> {
0u16.write_le(&mut writer)?;
self.transition.write_le(&mut writer)?;
self.global_state_root.write_le(&mut writer)?;
match self.inclusion_proof {
None => 0u8.write_le(&mut writer)?,
Some(ref proof) => {
1u8.write_le(&mut writer)?;
proof.write_le(&mut writer)?;
}
}
Ok(())
}
}
#[cfg(test)]
mod tests {
use super::*;
use console::network::Testnet3;
type CurrentNetwork = Testnet3;
#[test]
fn test_bytes() -> Result<()> {
let expected = crate::vm::test_helpers::sample_fee();
let expected_bytes = expected.to_bytes_le()?;
assert_eq!(expected, Fee::read_le(&expected_bytes[..])?);
assert!(Fee::<CurrentNetwork>::read_le(&expected_bytes[1..]).is_err());
Ok(())
}
}