use super::constant::ControlMessageType;
use super::control_message::ControlMessageTrait;
use crate::model::common::varint::{BufMutVarIntExt, BufVarIntExt};
use crate::model::error::ParseError;
use crate::model::parameter::message_parameter::{
MessageParameter, deserialize_message_parameters,
};
use bytes::{BufMut, Bytes, BytesMut};
#[derive(Debug, PartialEq, Clone)]
pub struct RequestOk {
pub request_id: u64,
pub parameters: Vec<MessageParameter>,
}
impl RequestOk {
pub fn new(request_id: u64, parameters: Vec<MessageParameter>) -> Self {
Self {
request_id,
parameters,
}
}
}
impl ControlMessageTrait for RequestOk {
fn serialize(&self) -> Result<Bytes, ParseError> {
let mut buf = BytesMut::new();
buf.put_vi(ControlMessageType::RequestOk)?;
let mut payload = BytesMut::new();
payload.put_vi(self.request_id)?;
payload.put_vi(self.parameters.len() as u64)?;
for param in &self.parameters {
payload.extend_from_slice(¶m.serialize()?);
}
let payload_len: u16 = payload
.len()
.try_into()
.map_err(|e: std::num::TryFromIntError| ParseError::CastingError {
context: "RequestOk::serialize(payload_length)",
from_type: "usize",
to_type: "u16",
details: e.to_string(),
})?;
buf.put_u16(payload_len);
buf.extend_from_slice(&payload);
Ok(buf.freeze())
}
fn parse_payload(payload: &mut Bytes) -> Result<Box<Self>, ParseError> {
let request_id = payload.get_vi()?;
let param_count = payload.get_vi()?;
let parameters =
deserialize_message_parameters(payload, param_count, ControlMessageType::RequestOk)?;
Ok(Box::new(RequestOk {
request_id,
parameters,
}))
}
fn get_type(&self) -> ControlMessageType {
ControlMessageType::RequestOk
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::model::control::constant::GroupOrder;
use bytes::Buf;
#[test]
fn test_roundtrip_no_params() {
let request_ok = RequestOk::new(12345, vec![]);
let mut buf = request_ok.serialize().unwrap();
let msg_type = buf.get_vi().unwrap();
assert_eq!(msg_type, ControlMessageType::RequestOk as u64);
let msg_length = buf.get_u16();
assert_eq!(msg_length as usize, buf.remaining());
let deserialized = RequestOk::parse_payload(&mut buf).unwrap();
assert_eq!(*deserialized, request_ok);
assert!(!buf.has_remaining());
}
#[test]
fn test_roundtrip_with_params() {
let request_ok = RequestOk::new(
67890,
vec![
MessageParameter::new_expires(3600),
MessageParameter::new_group_order(GroupOrder::Ascending),
],
);
let mut buf = request_ok.serialize().unwrap();
let msg_type = buf.get_vi().unwrap();
assert_eq!(msg_type, ControlMessageType::RequestOk as u64);
let msg_length = buf.get_u16();
assert_eq!(msg_length as usize, buf.remaining());
let deserialized = RequestOk::parse_payload(&mut buf).unwrap();
assert_eq!(*deserialized, request_ok);
assert!(!buf.has_remaining());
}
#[test]
fn test_excess_roundtrip() {
let request_ok = RequestOk::new(112233, vec![MessageParameter::new_expires(3600)]);
let serialized = request_ok.serialize().unwrap();
let mut excess = BytesMut::new();
excess.extend_from_slice(&serialized);
excess.extend_from_slice(&[9u8, 1u8, 1u8]);
let mut buf = excess.freeze();
let msg_type = buf.get_vi().unwrap();
assert_eq!(msg_type, ControlMessageType::RequestOk as u64);
let msg_length = buf.get_u16();
assert_eq!(msg_length as usize, buf.remaining() - 3);
let mut payload = buf.copy_to_bytes(msg_length as usize);
let deserialized = RequestOk::parse_payload(&mut payload).unwrap();
assert_eq!(*deserialized, request_ok);
assert!(!payload.has_remaining());
assert_eq!(buf.chunk(), &[9u8, 1u8, 1u8]);
}
#[test]
fn test_partial_message() {
let request_ok = RequestOk::new(112233, vec![MessageParameter::new_expires(3600)]);
let mut buf = request_ok.serialize().unwrap();
let msg_type = buf.get_vi().unwrap();
assert_eq!(msg_type, ControlMessageType::RequestOk as u64);
let msg_length = buf.get_u16();
assert_eq!(msg_length as usize, buf.remaining());
let upper = buf.remaining() / 2;
let mut partial = buf.slice(..upper);
let deserialized = RequestOk::parse_payload(&mut partial);
assert!(deserialized.is_err());
}
}