#![allow(unused_assignments)]
use cbor::CborTagEncode;
use rustc_serialize::{Decodable, Decoder, Encodable, Encoder};
use types;
#[derive(PartialEq, Eq, Clone, Debug)]
pub struct GetDataResponse {
pub name_and_type_id : types::NameAndTypeId,
pub data : Vec<u8>, pub error : Vec<u8> }
impl GetDataResponse {
pub fn generate_random() -> GetDataResponse {
GetDataResponse {
name_and_type_id: types::NameAndTypeId::generate_random(),
data: types::generate_random_vec_u8(99),
error: types::generate_random_vec_u8(99),
}
}
}
impl Encodable for GetDataResponse {
fn encode<E: Encoder>(&self, e: &mut E)->Result<(), E::Error> {
CborTagEncode::new(5483_001, &(&self.name_and_type_id, &self.data, &self.error)).encode(e)
}
}
impl Decodable for GetDataResponse {
fn decode<D: Decoder>(d: &mut D)->Result<GetDataResponse, D::Error> {
try!(d.read_u64());
let (name_and_type_id, data, error) = try!(Decodable::decode(d));
Ok(GetDataResponse { name_and_type_id: name_and_type_id, data: data, error: error })
}
}
#[cfg(test)]
mod test {
use super::*;
use cbor;
#[test]
fn get_data_response_serialisation() {
let obj_before = GetDataResponse::generate_random();
let mut e = cbor::Encoder::from_memory();
e.encode(&[&obj_before]).unwrap();
let mut d = cbor::Decoder::from_bytes(e.as_bytes());
let obj_after: GetDataResponse = d.decode().next().unwrap().unwrap();
assert_eq!(obj_before, obj_after);
}
}