Files
tonic/tonic-interop/src/server.rs
T
2019-09-29 22:38:28 -04:00

161 lines
5.3 KiB
Rust

use crate::pb::{self, *};
use async_stream::try_stream;
use futures_util::{stream, StreamExt, TryStreamExt};
use std::pin::Pin;
use std::time::{Duration, Instant};
use tonic::{Code, Request, Response, Status};
pub use pb::server::{TestServiceServer, UnimplementedServiceServer};
#[derive(Default, Clone)]
pub struct TestService;
type Result<T> = std::result::Result<Response<T>, Status>;
type Streaming<T> = Request<tonic::Streaming<T>>;
type Stream<T> =
Pin<Box<dyn futures_core::Stream<Item = std::result::Result<T, Status>> + Send + 'static>>;
#[tonic::async_trait]
impl pb::server::TestService for TestService {
async fn empty_call(&self, _request: Request<Empty>) -> Result<Empty> {
Ok(Response::new(Empty {}))
}
async fn unary_call(&self, request: Request<SimpleRequest>) -> Result<SimpleResponse> {
let req = request.into_inner();
if let Some(echo_status) = req.response_status {
let status = Status::new(Code::from_i32(echo_status.code), echo_status.message);
return Err(status);
}
let res_size = if req.response_size >= 0 {
req.response_size as usize
} else {
let status = Status::new(Code::InvalidArgument, "response_size cannot be negative");
return Err(status);
};
let res = SimpleResponse {
payload: Some(Payload {
body: vec![0; res_size],
..Default::default()
}),
..Default::default()
};
Ok(Response::new(res))
}
async fn cacheable_unary_call(&self, _: Request<SimpleRequest>) -> Result<SimpleResponse> {
unimplemented!()
}
type StreamingOutputCallStream = Stream<StreamingOutputCallResponse>;
async fn streaming_output_call(
&self,
req: Request<StreamingOutputCallRequest>,
) -> Result<Self::StreamingOutputCallStream> {
let StreamingOutputCallRequest {
response_parameters,
..
} = req.into_inner();
let stream = try_stream! {
for param in response_parameters {
let deadline = Instant::now() + Duration::from_micros(param.interval_us as u64);
tokio::timer::delay(deadline).await;
let payload = crate::server_payload(param.size as usize);
yield StreamingOutputCallResponse { payload: Some(payload) };
}
};
Ok(Response::new(
Box::pin(stream) as Self::StreamingOutputCallStream
))
}
async fn streaming_input_call(
&self,
req: Streaming<StreamingInputCallRequest>,
) -> Result<StreamingInputCallResponse> {
let mut stream = req.into_inner();
let mut aggregated_payload_size = 0 as i32;
while let Some(msg) = stream.try_next().await? {
aggregated_payload_size += msg.payload.unwrap().body.len() as i32;
}
let res = StreamingInputCallResponse {
aggregated_payload_size,
};
Ok(Response::new(res))
}
type FullDuplexCallStream = Stream<StreamingOutputCallResponse>;
async fn full_duplex_call(
&self,
req: Streaming<StreamingOutputCallRequest>,
) -> Result<Self::FullDuplexCallStream> {
let mut stream = req.into_inner();
if let Some(first_msg) = stream.message().await? {
if let Some(echo_status) = first_msg.response_status {
let status = Status::new(Code::from_i32(echo_status.code), echo_status.message);
return Err(status);
}
let single_message = stream::iter(vec![Ok(first_msg)]);
let mut stream = single_message.chain(stream);
let stream = try_stream! {
while let Some(msg) = stream.try_next().await? {
if let Some(echo_status) = msg.response_status {
let status = Status::new(Code::from_i32(echo_status.code), echo_status.message);
Err(status)?;
}
for param in msg.response_parameters {
let deadline = Instant::now() + Duration::from_micros(param.interval_us as u64);
tokio::timer::delay(deadline).await;
let payload = crate::server_payload(param.size as usize);
yield StreamingOutputCallResponse { payload: Some(payload) };
}
}
};
Ok(Response::new(Box::pin(stream) as Self::FullDuplexCallStream))
} else {
let stream = stream::empty();
Ok(Response::new(Box::pin(stream) as Self::FullDuplexCallStream))
}
}
type HalfDuplexCallStream = Stream<StreamingOutputCallResponse>;
async fn half_duplex_call(
&self,
_: Streaming<StreamingOutputCallRequest>,
) -> Result<Self::HalfDuplexCallStream> {
Err(Status::unimplemented("TODO"))
}
async fn unimplemented_call(&self, _: Request<Empty>) -> Result<Empty> {
Err(Status::unimplemented(""))
}
}
pub struct UnimplementedService;
#[tonic::async_trait]
impl pb::server::UnimplementedService for UnimplementedService {
async fn unimplemented_call(&self, _req: Request<Empty>) -> Result<Empty> {
Err(Status::unimplemented(""))
}
}