loop {
std::thread::sleep(std::time::Duration::from_secs(1));
- let stdout = std::io::stdout();
- let mut out = stdout.lock();
+ let mut out = Vec::new();
{
let stats = thread_arc.lock().unwrap();
break;
}
- out.write_all(b"\x1b[2J\x1b[;H\n").expect("stdout broken?");
+ out.write_all(b"\x1b[2J\x1b[;H\n").unwrap();
for line in stats.lines.iter() {
- out.write_all(line.as_bytes()).expect("stdout broken?");
- out.write_all(b"\n").expect("stdout broken?");
+ out.write_all(line.as_bytes()).unwrap();
+ out.write_all(b"\n").unwrap();
}
- out.write_all(b"\nNode counts by status:\n").expect("stdout broken?");
+ out.write_all(b"\nNode counts by status:\n").unwrap();
for i in 0..AddressState::get_count() {
out.write_all(format!("{:22}: {}\n", AddressState::from_num(i).unwrap().to_str(),
store.get_node_count(AddressState::from_num(i).unwrap())
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
}
let generations = store.get_bloom_node_count();
- out.write_all(b"Bloom filter generations contain:").expect("stdout broken?");
+ out.write_all(b"Bloom filter generations contain:").unwrap();
for generation in &generations {
- out.write_all(format!(" {}", generation).as_bytes()).expect("stdout broken?");
+ out.write_all(format!(" {}", generation).as_bytes()).unwrap();
}
out.write_all(format!(
- "\n\nCurrent connections open/in progress: {}\n", stats.connection_count).as_bytes()).expect("stdout broken?");
+ "\n\nCurrent connections open/in progress: {}\n", stats.connection_count).as_bytes()).unwrap();
out.write_all(format!(
- "Current block count: {}\n", stats.header_count).as_bytes()).expect("stdout broken?");
+ "Current block count: {}\n", stats.header_count).as_bytes()).unwrap();
out.write_all(format!(
"Timeout for full run (in seconds): {} (\"t x\" to change to x seconds)\n", store.get_u64(U64Setting::RunTimeout)
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
out.write_all(format!(
"Minimum protocol version: {} (\"v x\" to change value to x)\n", store.get_u64(U64Setting::MinProtocolVersion)
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
out.write_all(format!(
"Subversion match regex: {} (\"s x\" to change value to x)\n", store.get_regex(RegexSetting::SubverRegex).as_str()
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
- out.write_all(b"\nRetry times (in seconds):\n").expect("stdout broken?");
+ out.write_all(b"\nRetry times (in seconds):\n").unwrap();
for i in 0..AddressState::get_count() {
let scan_secs = store.get_u64(U64Setting::RescanInterval(AddressState::from_num(i).unwrap()));
out.write_all(format!(
"{:22} ({:2}): {:5} (ie {} hrs, {} min)\n", AddressState::from_num(i).unwrap().to_str(), i,
scan_secs, scan_secs / 60 / 60, (scan_secs / 60) % 60,
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
}
out.write_all(format!(
"\nBGP Routing Table: {} v4 nets, {} v6 nets, {} max paths\n",
- stats.v4_table_size, stats.v6_table_size, stats.paths).as_bytes()).expect("stdout broken?");
+ stats.v4_table_size, stats.v6_table_size, stats.paths).as_bytes()).unwrap();
- out.write_all(b"\nCommands:\n").expect("stdout broken?");
- out.write_all(b"q: quit\n").expect("stdout broken?");
+ out.write_all(b"\nCommands:\n").unwrap();
+ out.write_all(b"q: quit\n").unwrap();
out.write_all(format!(
"r x y: Change retry time for status x (int value, see retry times section for name mappings) to y (in seconds)\n"
- ).as_bytes()).expect("stdout broken?");
+ ).as_bytes()).unwrap();
out.write_all(format!(
"w x: Change the amount of time a node is considered WAS_GOOD after it fails to x from {} (in seconds)\n",
store.get_u64(U64Setting::WasGoodTimeout)
- ).as_bytes()).expect("stdout broken?");
- out.write_all(b"a x: Scan node x\n").expect("stdout broken?");
- out.write_all(b"b x: BGP Lookup IP x\n").expect("stdout broken?");
- out.write_all(b"\x1b[s").expect("stdout broken?"); // Save cursor position and provide a blank line before cursor
- out.write_all(b"\x1b[;H\x1b[2K").expect("stdout broken?");
- out.write_all(b"Most recent log:\n").expect("stdout broken?");
- out.write_all(b"\x1b[u").expect("stdout broken?"); // Restore cursor position and go up one line
+ ).as_bytes()).unwrap();
+ out.write_all(b"a x: Scan node x\n").unwrap();
+ out.write_all(b"b x: BGP Lookup IP x\n").unwrap();
+ out.write_all(b"\x1b[s").unwrap(); // Save cursor position and provide a blank line before cursor
+ out.write_all(b"\x1b[;H\x1b[2K").unwrap();
+ out.write_all(b"Most recent log:\n").unwrap();
+ out.write_all(b"\x1b[u").unwrap(); // Restore cursor position and go up one line
}
- out.flush().expect("stdout broken?");
+ let stdout = std::io::stdout();
+ let mut stdout_lock = stdout.lock();
+ stdout_lock.write_all(&out).expect("stdout broken?");
+ stdout_lock.flush().expect("stdout broken?");
}
});
Printer {