bb1b8cc08a
* apps list to separate module * Preparing to support serving files from disk * Serving files from disk * Using dapps path from CLI * Adding more docs
497 lines
14 KiB
Rust
497 lines
14 KiB
Rust
// Copyright 2015, 2016 Ethcore (UK) Ltd.
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// This file is part of Parity.
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// Parity is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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//! Ethcore client application.
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#![warn(missing_docs)]
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#![cfg_attr(feature="dev", feature(plugin))]
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#![cfg_attr(feature="dev", plugin(clippy))]
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#![cfg_attr(feature="dev", allow(useless_format))]
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extern crate docopt;
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extern crate num_cpus;
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extern crate rustc_serialize;
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extern crate ethcore_util as util;
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extern crate ethcore;
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extern crate ethsync;
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#[macro_use]
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extern crate log as rlog;
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extern crate env_logger;
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extern crate ctrlc;
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extern crate fdlimit;
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extern crate daemonize;
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extern crate time;
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extern crate number_prefix;
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extern crate rpassword;
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extern crate semver;
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extern crate ethcore_ipc as ipc;
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extern crate ethcore_ipc_nano as nanoipc;
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#[macro_use]
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extern crate hyper; // for price_info.rs
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extern crate json_ipc_server as jsonipc;
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#[cfg(feature = "rpc")]
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extern crate ethcore_rpc;
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#[cfg(feature = "dapps")]
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extern crate ethcore_dapps;
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#[cfg(feature = "ethcore-signer")]
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extern crate ethcore_signer;
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#[macro_use]
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mod die;
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mod price_info;
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mod upgrade;
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mod hypervisor;
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mod setup_log;
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mod rpc;
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mod dapps;
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mod informant;
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mod io_handler;
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mod cli;
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mod configuration;
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mod migration;
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mod signer;
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mod rpc_apis;
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use std::io::{Write, Read, BufReader, BufRead};
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use std::ops::Deref;
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use std::sync::{Arc, Mutex, Condvar};
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use std::path::Path;
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use std::fs::File;
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use std::str::{FromStr, from_utf8};
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use std::thread::sleep;
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use std::time::Duration;
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use rustc_serialize::hex::FromHex;
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use ctrlc::CtrlC;
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use util::{H256, ToPretty, NetworkConfiguration, PayloadInfo, Bytes};
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use util::panics::{MayPanic, ForwardPanic, PanicHandler};
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use ethcore::client::{BlockID, BlockChainClient, ClientConfig, get_db_path};
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use ethcore::error::{Error, ImportError};
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use ethcore::service::ClientService;
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use ethcore::spec::Spec;
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use ethsync::EthSync;
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use ethcore::miner::{Miner, MinerService, ExternalMiner};
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use daemonize::Daemonize;
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use migration::migrate;
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use informant::Informant;
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use die::*;
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use cli::print_version;
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use rpc::RpcServer;
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use signer::SignerServer;
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use dapps::WebappServer;
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use io_handler::ClientIoHandler;
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use configuration::Configuration;
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fn main() {
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let conf = Configuration::parse();
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execute(conf);
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}
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fn execute(conf: Configuration) {
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if conf.args.flag_version {
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print_version();
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return;
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}
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let spec = conf.spec();
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let client_config = conf.client_config(&spec);
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execute_upgrades(&conf, &spec, &client_config);
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if conf.args.cmd_daemon {
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Daemonize::new()
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.pid_file(conf.args.arg_pid_file.clone())
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.chown_pid_file(true)
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.start()
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.unwrap_or_else(|e| die!("Couldn't daemonize; {}", e));
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}
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if conf.args.cmd_account {
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execute_account_cli(conf);
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return;
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}
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if conf.args.cmd_export {
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execute_export(conf);
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return;
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}
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if conf.args.cmd_import {
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execute_import(conf);
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return;
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}
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execute_client(conf, spec, client_config);
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}
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fn execute_upgrades(conf: &Configuration, spec: &Spec, client_config: &ClientConfig) {
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match ::upgrade::upgrade(Some(&conf.path())) {
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Ok(upgrades_applied) if upgrades_applied > 0 => {
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println!("Executed {} upgrade scripts - ok", upgrades_applied);
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},
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Err(e) => {
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die!("Error upgrading parity data: {:?}", e);
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},
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_ => {},
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}
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let db_path = get_db_path(Path::new(&conf.path()), client_config.pruning, spec.genesis_header().hash());
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let result = migrate(&db_path);
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if let Err(err) = result {
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die_with_message(&format!("{}", err));
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}
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}
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fn execute_client(conf: Configuration, spec: Spec, client_config: ClientConfig) {
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// Setup panic handler
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let panic_handler = PanicHandler::new_in_arc();
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// Setup logging
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let logger = setup_log::setup_log(&conf.args.flag_logging);
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// Raise fdlimit
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unsafe { ::fdlimit::raise_fd_limit(); }
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let net_settings = conf.net_settings(&spec);
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let sync_config = conf.sync_config(&spec);
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// Secret Store
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let account_service = Arc::new(conf.account_service());
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// Miner
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let miner = Miner::with_accounts(conf.args.flag_force_sealing, conf.spec(), account_service.clone());
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miner.set_author(conf.author());
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miner.set_gas_floor_target(conf.gas_floor_target());
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miner.set_extra_data(conf.extra_data());
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miner.set_minimal_gas_price(conf.gas_price());
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miner.set_transactions_limit(conf.args.flag_tx_limit);
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// Build client
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let mut service = ClientService::start(
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client_config, spec, net_settings, Path::new(&conf.path()), miner.clone()
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).unwrap_or_else(|e| die_with_error("Client", e));
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panic_handler.forward_from(&service);
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let client = service.client();
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let external_miner = Arc::new(ExternalMiner::default());
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let network_settings = Arc::new(conf.network_settings());
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// Sync
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let sync = EthSync::register(service.network(), sync_config, client.clone());
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let deps_for_rpc_apis = Arc::new(rpc_apis::Dependencies {
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signer_enabled: conf.args.flag_signer,
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signer_queue: Arc::new(rpc_apis::ConfirmationsQueue::default()),
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client: client.clone(),
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sync: sync.clone(),
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secret_store: account_service.clone(),
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miner: miner.clone(),
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external_miner: external_miner.clone(),
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logger: logger.clone(),
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settings: network_settings.clone(),
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});
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let dependencies = rpc::Dependencies {
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panic_handler: panic_handler.clone(),
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apis: deps_for_rpc_apis.clone(),
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};
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// Setup http rpc
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let rpc_server = rpc::new_http(rpc::HttpConfiguration {
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enabled: network_settings.rpc_enabled,
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interface: network_settings.rpc_interface.clone(),
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port: network_settings.rpc_port,
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apis: conf.rpc_apis(),
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cors: conf.rpc_cors(),
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}, &dependencies);
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// setup ipc rpc
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let _ipc_server = rpc::new_ipc(conf.ipc_settings(), &dependencies);
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if conf.args.flag_webapp { println!("WARNING: Flag -w/--webapp is deprecated. Dapps server is now on by default. Ignoring."); }
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let dapps_server = dapps::new(dapps::Configuration {
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enabled: !conf.args.flag_dapps_off,
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interface: conf.args.flag_dapps_interface.clone(),
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port: conf.args.flag_dapps_port,
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user: conf.args.flag_dapps_user.clone(),
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pass: conf.args.flag_dapps_pass.clone(),
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dapps_path: conf.directories().dapps,
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}, dapps::Dependencies {
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panic_handler: panic_handler.clone(),
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apis: deps_for_rpc_apis.clone(),
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});
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// Set up a signer
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let signer_server = signer::start(signer::Configuration {
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enabled: deps_for_rpc_apis.signer_enabled,
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port: conf.args.flag_signer_port,
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}, signer::Dependencies {
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panic_handler: panic_handler.clone(),
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apis: deps_for_rpc_apis.clone(),
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});
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// Register IO handler
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let io_handler = Arc::new(ClientIoHandler {
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client: service.client(),
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info: Informant::new(!conf.args.flag_no_color),
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sync: sync.clone(),
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accounts: account_service.clone(),
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});
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service.io().register_handler(io_handler).expect("Error registering IO handler");
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// Handle exit
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wait_for_exit(panic_handler, rpc_server, dapps_server, signer_server);
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}
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fn flush_stdout() {
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::std::io::stdout().flush().expect("stdout is flushable; qed");
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}
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enum DataFormat {
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Hex,
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Binary,
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}
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fn execute_export(conf: Configuration) {
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// Setup panic handler
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let panic_handler = PanicHandler::new_in_arc();
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// Raise fdlimit
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unsafe { ::fdlimit::raise_fd_limit(); }
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let spec = conf.spec();
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let net_settings = NetworkConfiguration {
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config_path: None,
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listen_address: None,
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public_address: None,
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udp_port: None,
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nat_enabled: false,
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discovery_enabled: false,
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pin: true,
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boot_nodes: Vec::new(),
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use_secret: None,
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ideal_peers: 0,
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};
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let client_config = conf.client_config(&spec);
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// Build client
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let service = ClientService::start(
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client_config, spec, net_settings, Path::new(&conf.path()), Arc::new(Miner::default()),
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).unwrap_or_else(|e| die_with_error("Client", e));
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panic_handler.forward_from(&service);
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let client = service.client();
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// we have a client!
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let parse_block_id = |s: &str, arg: &str| -> u64 {
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if s == "latest" {
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client.chain_info().best_block_number
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} else if let Ok(n) = s.parse::<u64>() {
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n
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} else if let Ok(h) = H256::from_str(s) {
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client.block_number(BlockID::Hash(h)).unwrap_or_else(|| {
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die!("Unknown block hash passed to {} parameter: {:?}", arg, s);
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})
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} else {
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die!("Invalid {} parameter given: {:?}", arg, s);
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}
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};
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let from = parse_block_id(&conf.args.flag_from, "--from");
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let to = parse_block_id(&conf.args.flag_to, "--to");
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let format = match conf.args.flag_format {
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Some(x) => match x.deref() {
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"binary" | "bin" => DataFormat::Binary,
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"hex" => DataFormat::Hex,
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x => die!("Invalid --format parameter given: {:?}", x),
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},
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None if conf.args.arg_file.is_none() => DataFormat::Hex,
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None => DataFormat::Binary,
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};
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let mut out: Box<Write> = if let Some(f) = conf.args.arg_file {
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Box::new(File::create(&f).unwrap_or_else(|_| die!("Cannot write to file given: {}", f)))
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} else {
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Box::new(::std::io::stdout())
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};
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for i in from..(to + 1) {
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let b = client.deref().block(BlockID::Number(i)).unwrap();
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match format {
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DataFormat::Binary => { out.write(&b).expect("Couldn't write to stream."); }
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DataFormat::Hex => { out.write_fmt(format_args!("{}", b.pretty())).expect("Couldn't write to stream."); }
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}
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}
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}
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fn execute_import(conf: Configuration) {
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// Setup panic handler
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let panic_handler = PanicHandler::new_in_arc();
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// Raise fdlimit
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unsafe { ::fdlimit::raise_fd_limit(); }
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let spec = conf.spec();
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let net_settings = NetworkConfiguration {
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config_path: None,
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listen_address: None,
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public_address: None,
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udp_port: None,
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nat_enabled: false,
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discovery_enabled: false,
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pin: true,
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boot_nodes: Vec::new(),
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use_secret: None,
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ideal_peers: 0,
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};
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let client_config = conf.client_config(&spec);
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// Build client
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let service = ClientService::start(
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client_config, spec, net_settings, Path::new(&conf.path()), Arc::new(Miner::default()),
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).unwrap_or_else(|e| die_with_error("Client", e));
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panic_handler.forward_from(&service);
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let client = service.client();
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let mut instream: Box<Read> = if let Some(f) = conf.args.arg_file {
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let f = File::open(&f).unwrap_or_else(|_| die!("Cannot open the file given: {}", f));
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Box::new(f)
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} else {
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Box::new(::std::io::stdin())
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};
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let mut first_bytes: Bytes = vec![0; 3];
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let mut first_read = 0;
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let format = match conf.args.flag_format {
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Some(x) => match x.deref() {
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"binary" | "bin" => DataFormat::Binary,
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"hex" => DataFormat::Hex,
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x => die!("Invalid --format parameter given: {:?}", x),
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},
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None => {
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// autodetect...
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first_read = instream.read(&mut(first_bytes[..])).unwrap_or_else(|_| die!("Error reading from the file/stream."));
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match first_bytes[0] {
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0xf9 => {
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println!("Autodetected binary data format.");
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DataFormat::Binary
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}
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_ => {
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println!("Autodetected hex data format.");
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DataFormat::Hex
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}
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}
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}
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};
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let informant = Informant::new(!conf.args.flag_no_color);
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let do_import = |bytes| {
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while client.queue_info().is_full() { sleep(Duration::from_secs(1)); }
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match client.import_block(bytes) {
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Ok(_) => {}
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Err(Error::Import(ImportError::AlreadyInChain)) => { trace!("Skipping block already in chain."); }
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Err(e) => die!("Cannot import block: {:?}", e)
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}
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informant.tick(client.deref(), None);
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};
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match format {
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DataFormat::Binary => {
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loop {
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let mut bytes: Bytes = if first_read > 0 {first_bytes.clone()} else {vec![0; 3]};
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let n = if first_read > 0 {first_read} else {instream.read(&mut(bytes[..])).unwrap_or_else(|_| die!("Error reading from the file/stream."))};
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if n == 0 { break; }
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first_read = 0;
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let s = PayloadInfo::from(&(bytes[..])).unwrap_or_else(|e| die!("Invalid RLP in the file/stream: {:?}", e)).total();
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bytes.resize(s, 0);
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instream.read_exact(&mut(bytes[3..])).unwrap_or_else(|_| die!("Error reading from the file/stream."));
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do_import(bytes);
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}
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}
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DataFormat::Hex => {
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for line in BufReader::new(instream).lines() {
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let s = line.unwrap_or_else(|_| die!("Error reading from the file/stream."));
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let s = if first_read > 0 {from_utf8(&first_bytes).unwrap().to_owned() + &(s[..])} else {s};
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first_read = 0;
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let bytes = FromHex::from_hex(&(s[..])).unwrap_or_else(|_| die!("Invalid hex in file/stream."));
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do_import(bytes);
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}
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}
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}
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client.flush_queue();
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}
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fn execute_account_cli(conf: Configuration) {
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use util::keys::store::SecretStore;
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use rpassword::read_password;
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let mut secret_store = SecretStore::with_security(Path::new(&conf.keys_path()), conf.keys_iterations());
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if conf.args.cmd_new {
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println!("Please note that password is NOT RECOVERABLE.");
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print!("Type password: ");
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flush_stdout();
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let password = read_password().unwrap();
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print!("Repeat password: ");
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flush_stdout();
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let password_repeat = read_password().unwrap();
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if password != password_repeat {
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println!("Passwords do not match!");
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return;
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}
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println!("New account address:");
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let new_address = secret_store.new_account(&password).unwrap();
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println!("{:?}", new_address);
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return;
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}
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if conf.args.cmd_list {
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println!("Known addresses:");
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for &(addr, _) in &secret_store.accounts().unwrap() {
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println!("{:?}", addr);
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}
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}
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}
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fn wait_for_exit(
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panic_handler: Arc<PanicHandler>,
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_rpc_server: Option<RpcServer>,
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_dapps_server: Option<WebappServer>,
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_signer_server: Option<SignerServer>
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) {
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let exit = Arc::new(Condvar::new());
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// Handle possible exits
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let e = exit.clone();
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CtrlC::set_handler(move || { e.notify_all(); });
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// Handle panics
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let e = exit.clone();
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panic_handler.on_panic(move |_reason| { e.notify_all(); });
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// Wait for signal
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let mutex = Mutex::new(());
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let _ = exit.wait(mutex.lock().unwrap()).unwrap();
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info!("Finishing work, please wait...");
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}
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/// Parity needs at least 1 test to generate coverage reports correctly.
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#[test]
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fn if_works() {
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}
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