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use crate::Error;
use clap::Parser;
use libp2p::identity::{ed25519 as libp2p_ed25519, PublicKey};
use std::{
	fs,
	io::{self, Write},
	path::PathBuf,
};
#[derive(Debug, Parser)]
#[command(
	name = "generate-node-key",
	about = "Generate a random node key, write it to a file or stdout \
		 	and write the corresponding peer-id to stderr"
)]
pub struct GenerateNodeKeyCmd {
	#[arg(long)]
	file: Option<PathBuf>,
	#[arg(long)]
	bin: bool,
}
impl GenerateNodeKeyCmd {
	pub fn run(&self) -> Result<(), Error> {
		let keypair = libp2p_ed25519::Keypair::generate();
		let secret = keypair.secret();
		let file_data = if self.bin {
			secret.as_ref().to_owned()
		} else {
			array_bytes::bytes2hex("", secret.as_ref()).into_bytes()
		};
		match &self.file {
			Some(file) => fs::write(file, file_data)?,
			None => io::stdout().lock().write_all(&file_data)?,
		}
		eprintln!("{}", PublicKey::Ed25519(keypair.public()).to_peer_id());
		Ok(())
	}
}
#[cfg(test)]
mod tests {
	use super::*;
	use std::io::Read;
	use tempfile::Builder;
	#[test]
	fn generate_node_key() {
		let mut file = Builder::new().prefix("keyfile").tempfile().unwrap();
		let file_path = file.path().display().to_string();
		let generate = GenerateNodeKeyCmd::parse_from(&["generate-node-key", "--file", &file_path]);
		assert!(generate.run().is_ok());
		let mut buf = String::new();
		assert!(file.read_to_string(&mut buf).is_ok());
		assert!(array_bytes::hex2bytes(&buf).is_ok());
	}
}