extern crate log;
extern crate env_logger;
extern crate scaproust;
use std::io::*;
use std::time;
use std::thread;
use std::fmt;
use scaproust::*;
const NODE0: &'static str = "node0";
const NODE1: &'static str = "node1";
const DATE: &'static str = "DATE";
#[cfg(not(windows))]
fn create_session() -> Session {
SessionBuilder::new().
with("tcp", Tcp).
with("ipc", Ipc).
build().expect("Failed to create session !")
}
#[cfg(windows)]
fn create_session() -> Session {
SessionBuilder::new().
with("tcp", Tcp).
build().expect("Failed to create session !")
}
fn sleep_ms(ms: u64) {
thread::sleep(time::Duration::from_millis(ms));
}
fn node0(url: &str) {
let mut session = create_session();
let mut socket = session.create_socket::<Rep>().expect("Failed to create socket !");
socket.bind(url).expect("Failed to bind socket !");
loop {
let buffer = socket.recv().expect("Recv request failed !");
let request = std::str::from_utf8(&buffer).expect("Failed to parse request msg !");
if request == DATE {
println!("NODE0: RECEIVED DATE REQUEST");
let date = "1970/01/01 00:00:00.666";
println!("NODE0: SENDING DATE {:?}", date);
let reply = fmt::format(format_args!("{:?}!", date));
let buffer = From::from(reply.as_bytes());
socket.send(buffer).expect("Send reply failed !")
} else {
println!("NODE0: RECEIVED UNEXPECTED REQUEST: {}", request);
}
}
}
fn node1(url: &str) {
let mut session = create_session();
let mut socket = session.create_socket::<Req>().expect("Failed to create socket !");
let buffer = From::from(DATE.as_bytes());
socket.connect(url).expect("Failed to connect socket !");
println!("NODE1: SENDING DATE REQUEST {}", DATE);
socket.send(buffer).expect("Send request failed !");
let buffer = socket.recv().expect("Recv reply failed !");
let reply = std::str::from_utf8(&buffer).expect("Failed to parse reply msg !");
println!("NODE1: RECEIVED DATE {}", reply);
sleep_ms(50); }
fn usage(program: &str) -> ! {
let _ = writeln!(stderr(), "Usage: {} {}|{} <URL> ...", program, NODE0, NODE1);
std::process::exit(1)
}
fn main() {
env_logger::init().unwrap();
let os_args: Vec<_> = std::env::args().collect();
let args: Vec<&str> = os_args.iter().map(|x| x.as_ref()).collect();
let program = args[0];
if args.len() < 2 {
usage(program);
}
match args[1] {
NODE0 if args.len() == 3 => node0(args[2]),
NODE1 if args.len() == 3 => node1(args[2]),
_ => usage(program)
}
}