mirror of
https://github.com/rosenpass/rosenpass.git
synced 2026-07-31 07:40:10 -07:00
260 lines
8.7 KiB
Rust
260 lines
8.7 KiB
Rust
use anyhow::{bail, ensure};
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use clap::Parser;
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use std::path::{Path, PathBuf};
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use crate::app_server;
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use crate::app_server::AppServer;
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use crate::util::{LoadValue, LoadValueB64};
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use crate::{
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// app_server::{AppServer, LoadValue, LoadValueB64},
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coloring::Secret,
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pqkem::{StaticKEM, KEM},
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protocol::{SPk, SSk, SymKey},
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};
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use super::config;
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#[derive(Parser, Debug)]
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#[command(author, version, about, long_about)]
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pub enum Cli {
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/// Start Rosenpass in server mode and carry on with the key exchange
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///
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/// This will parse the configuration file and perform the key exchange
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/// with the specified peers. If a peer's endpoint is specified, this
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/// Rosenpass instance will try to initiate a key exchange with the peer,
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/// otherwise only initiation attempts from the peer will be responded to.
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ExchangeConfig { config_file: PathBuf },
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/// Start in daemon mode, performing key exchanges
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///
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/// The configuration is read from the command line. The `peer` token
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/// always separates multiple peers, e. g. if the token `peer` appears
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/// in the WIREGUARD_EXTRA_ARGS it terminates is not put into the
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/// WireGuard arguments but instead a new peer is created.
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/* Explanation: `first_arg` and `rest_of_args` are combined into one
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* `Vec<String>`. They are only used to trick clap into displaying some
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* guidance on the CLI usage.
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*/
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Exchange {
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/// public-key \<PATH> secret-key \<PATH> \[listen \<ADDR>:\<PORT>]... \[verbose]
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#[clap(value_name = "OWN_CONFIG")]
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first_arg: String,
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/// peer public-key \<PATH> \[ENDPOINT] \[PSK] \[OUTFILE] \[WG]
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///
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/// ENDPOINT := \[endpoint \<HOST/IP>:\<PORT>]
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///
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/// PSK := \[preshared-key \<PATH>]
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///
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/// OUTFILE := \[outfile \<PATH>]
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///
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/// WG := \[wireguard \<WIREGUARD_DEV> \<WIREGUARD_PEER> \[WIREGUARD_EXTRA_ARGS]...]
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#[clap(value_names = [
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"peer", "public-key", "<PATH>", "[ENDPOINT]" ,"[PSK]", "[OUTFILE]", "[WG]"
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])]
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rest_of_args: Vec<String>,
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/// Save the parsed configuration to a file before starting the daemon
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#[clap(short, long)]
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config_file: Option<PathBuf>,
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},
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/// Generate a demo config file
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GenConfig {
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config_file: PathBuf,
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/// Forecefully overwrite existing config file
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#[clap(short, long)]
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force: bool,
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},
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/// Generate the keys mentioned in a configFile
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///
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/// Generates secret- & public-key to their destination. If a config file
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/// is provided then the key file destination is taken from there.
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/// Otherwise the
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GenKeys {
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config_file: Option<PathBuf>,
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/// where to write public-key to
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#[clap(short, long)]
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public_key: Option<PathBuf>,
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/// where to write secret-key to
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#[clap(short, long)]
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secret_key: Option<PathBuf>,
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/// Forecefully overwrite public- & secret-key file
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#[clap(short, long)]
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force: bool,
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},
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/// Validate a configuration
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Validate { config_files: Vec<PathBuf> },
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/// Show the rosenpass manpage
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// TODO make this the default, but only after the manpage has been adjusted once the CLI stabilizes
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Man,
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}
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impl Cli {
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pub fn run() -> anyhow::Result<()> {
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let cli = Self::parse();
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use Cli::*;
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match cli {
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Man => {
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let _man_cmd = std::process::Command::new("man")
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.args(["1", "rosenpass"])
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.status();
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}
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GenConfig { config_file, force } => {
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ensure!(
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force || !config_file.exists(),
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"config file {config_file:?} already exists"
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);
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config::Rosenpass::example_config().store(config_file)?;
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}
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GenKeys {
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config_file,
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public_key,
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secret_key,
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force,
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} => {
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// figure out where the key file is specified, in the config file or directly as flag?
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let (pkf, skf) = match (config_file, public_key, secret_key) {
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(Some(config_file), _, _) => {
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ensure!(
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config_file.exists(),
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"config file {config_file:?} does not exist"
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);
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let config = config::Rosenpass::load(config_file)?;
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(config.public_key, config.secret_key)
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}
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(_, Some(pkf), Some(skf)) => (pkf, skf),
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_ => {
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bail!("either a config-file or both public-key and secret-key file are required")
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}
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};
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// check that we are not overriding something unintentionally
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let mut problems = vec![];
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if !force && pkf.is_file() {
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problems.push(format!(
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"public-key file {pkf:?} exist, refusing to overwrite it"
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));
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}
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if !force && skf.is_file() {
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problems.push(format!(
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"secret-key file {skf:?} exist, refusing to overwrite it"
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));
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}
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if !problems.is_empty() {
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bail!(problems.join("\n"));
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}
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// generate the keys and store them in files
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let mut ssk = crate::protocol::SSk::random();
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let mut spk = crate::protocol::SPk::random();
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unsafe {
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StaticKEM::keygen(ssk.secret_mut(), spk.secret_mut())?;
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ssk.store_secret(skf)?;
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spk.store_secret(pkf)?;
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}
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}
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ExchangeConfig { config_file } => {
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ensure!(
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config_file.exists(),
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"config file '{config_file:?}' does not exist"
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);
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let config = config::Rosenpass::load(config_file)?;
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config.validate()?;
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Self::event_loop(config)?;
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}
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Exchange {
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first_arg,
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mut rest_of_args,
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config_file,
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} => {
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rest_of_args.insert(0, first_arg);
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let args = rest_of_args;
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let mut config = config::Rosenpass::parse_args(args)?;
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if let Some(p) = config_file {
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config.store(&p)?;
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config.config_file_path = p;
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}
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config.validate()?;
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Self::event_loop(config)?;
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}
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Validate { config_files } => {
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for file in config_files {
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match config::Rosenpass::load(&file) {
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Ok(config) => {
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eprintln!("{file:?} is valid TOML and conforms to the expected schema");
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match config.validate() {
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Ok(_) => eprintln!("{file:?} is passed all logical checks"),
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Err(_) => eprintln!("{file:?} contains logical errors"),
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}
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}
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Err(e) => eprintln!("{file:?} is not valid: {e}"),
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}
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}
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}
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}
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Ok(())
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}
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fn event_loop(config: config::Rosenpass) -> anyhow::Result<()> {
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// load own keys
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let sk = SSk::load(&config.secret_key)?;
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let pk = SPk::load(&config.public_key)?;
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// start an application server
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let mut srv = std::boxed::Box::<AppServer>::new(AppServer::new(
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sk,
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pk,
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config.listen,
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config.verbosity,
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)?);
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for cfg_peer in config.peers {
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srv.add_peer(
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// psk, pk, outfile, outwg, tx_addr
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cfg_peer.pre_shared_key.map(SymKey::load_b64).transpose()?,
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SPk::load(&cfg_peer.public_key)?,
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cfg_peer.key_out,
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cfg_peer.wg.map(|cfg| app_server::WireguardOut {
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dev: cfg.device,
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pk: cfg.peer,
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extra_params: cfg.extra_params,
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}),
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cfg_peer.endpoint.clone(),
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)?;
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}
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srv.event_loop()
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}
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}
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trait StoreSecret {
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unsafe fn store_secret<P: AsRef<Path>>(&self, path: P) -> anyhow::Result<()>;
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}
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impl<const N: usize> StoreSecret for Secret<N> {
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unsafe fn store_secret<P: AsRef<Path>>(&self, path: P) -> anyhow::Result<()> {
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std::fs::write(path, self.secret())?;
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Ok(())
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}
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}
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