b1eab698d2
* move native_contracts ABIs to JSON files, add urlhint * port hash-fetch to futures, fix tests * fix dapps compilation, defer async port to later * activate dapps server in the light client * better formatting
395 lines
14 KiB
Rust
395 lines
14 KiB
Rust
// Copyright 2015-2017 Parity Technologies (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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use std::fs;
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use std::io::Write;
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use std::path::{PathBuf};
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use std::sync::{Arc, Weak};
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use ethcore::client::{BlockId, BlockChainClient, ChainNotify};
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use ethsync::{SyncProvider};
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use futures::{future, Future, BoxFuture};
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use hash_fetch::{self as fetch, HashFetch};
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use hash_fetch::fetch::Client as FetchService;
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use ipc_common_types::{VersionInfo, ReleaseTrack};
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use operations::Operations;
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use parity_reactor::Remote;
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use path::restrict_permissions_owner;
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use service::{Service};
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use target_info::Target;
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use types::all::{ReleaseInfo, OperationsInfo, CapState};
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use util::{Address, H160, H256, Mutex, Bytes};
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use util::misc;
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/// Filter for releases.
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#[derive(Debug, Eq, PartialEq, Clone)]
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pub enum UpdateFilter {
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/// All releases following the same track.
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All,
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/// As with `All`, but only those which are known to be critical.
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Critical,
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/// None.
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None,
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}
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/// The policy for auto-updating.
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#[derive(Debug, Eq, PartialEq, Clone)]
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pub struct UpdatePolicy {
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/// Download potential updates.
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pub enable_downloading: bool,
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/// Disable client if we know we're incapable of syncing.
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pub require_consensus: bool,
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/// Which of those downloaded should be automatically installed.
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pub filter: UpdateFilter,
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/// Which track we should be following.
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pub track: ReleaseTrack,
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/// Path for the updates to go.
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pub path: String,
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}
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impl Default for UpdatePolicy {
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fn default() -> Self {
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UpdatePolicy {
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enable_downloading: false,
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require_consensus: true,
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filter: UpdateFilter::None,
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track: ReleaseTrack::Unknown,
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path: Default::default(),
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}
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}
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}
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#[derive(Debug, Default)]
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struct UpdaterState {
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latest: Option<OperationsInfo>,
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fetching: Option<ReleaseInfo>,
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ready: Option<ReleaseInfo>,
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installed: Option<ReleaseInfo>,
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capability: CapState,
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disabled: bool,
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}
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/// Service for checking for updates and determining whether we can achieve consensus.
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pub struct Updater {
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// Useful environmental stuff.
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update_policy: UpdatePolicy,
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weak_self: Mutex<Weak<Updater>>,
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client: Weak<BlockChainClient>,
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sync: Weak<SyncProvider>,
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fetcher: Mutex<Option<fetch::Client>>,
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operations: Mutex<Option<Operations>>,
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exit_handler: Mutex<Option<Box<Fn() + 'static + Send>>>,
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// Our version info (static)
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this: VersionInfo,
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// All the other info - this changes so leave it behind a Mutex.
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state: Mutex<UpdaterState>,
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}
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const CLIENT_ID: &'static str = "parity";
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fn platform() -> String {
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if cfg!(target_os = "macos") {
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"x86_64-apple-darwin".into()
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} else if cfg!(windows) {
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"x86_64-pc-windows-msvc".into()
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} else if cfg!(target_os = "linux") {
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format!("{}-unknown-linux-gnu", Target::arch())
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} else {
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misc::platform()
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}
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}
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impl Updater {
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pub fn new(client: Weak<BlockChainClient>, sync: Weak<SyncProvider>, update_policy: UpdatePolicy, fetch: FetchService, remote: Remote) -> Arc<Self> {
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let r = Arc::new(Updater {
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update_policy: update_policy,
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weak_self: Mutex::new(Default::default()),
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client: client.clone(),
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sync: sync.clone(),
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fetcher: Mutex::new(None),
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operations: Mutex::new(None),
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exit_handler: Mutex::new(None),
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this: VersionInfo::this(),
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state: Mutex::new(Default::default()),
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});
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*r.fetcher.lock() = Some(fetch::Client::with_fetch(r.clone(), fetch, remote));
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*r.weak_self.lock() = Arc::downgrade(&r);
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r.poll();
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r
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}
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/// Set a closure to call when we want to restart the client
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pub fn set_exit_handler<F>(&self, f: F) where F: Fn() + 'static + Send {
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*self.exit_handler.lock() = Some(Box::new(f));
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}
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fn collect_release_info(operations: &Operations, release_id: &H256) -> Result<ReleaseInfo, String> {
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let (fork, track, semver, is_critical) = operations.release(CLIENT_ID, release_id)?;
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let latest_binary = operations.checksum(CLIENT_ID, release_id, &platform())?;
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Ok(ReleaseInfo {
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version: VersionInfo::from_raw(semver, track, release_id.clone().into()),
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is_critical: is_critical,
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fork: fork as u64,
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binary: if latest_binary.is_zero() { None } else { Some(latest_binary) },
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})
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}
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fn track(&self) -> ReleaseTrack {
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match self.update_policy.track {
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ReleaseTrack::Unknown => self.this.track,
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x => x,
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}
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}
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fn collect_latest(&self) -> Result<OperationsInfo, String> {
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if let Some(ref operations) = *self.operations.lock() {
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let hh: H256 = self.this.hash.into();
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trace!(target: "updater", "Looking up this_fork for our release: {}/{:?}", CLIENT_ID, hh);
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let this_fork = operations.release(CLIENT_ID, &self.this.hash.into()).ok()
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.and_then(|(fork, track, _, _)| {
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trace!(target: "updater", "Operations returned fork={}, track={}", fork as u64, track);
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if track > 0 {Some(fork as u64)} else {None}
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});
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if self.track() == ReleaseTrack::Unknown {
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return Err(format!("Current executable ({}) is unreleased.", H160::from(self.this.hash)));
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}
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let latest_in_track = operations.latest_in_track(CLIENT_ID, self.track().into())?;
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let in_track = Self::collect_release_info(operations, &latest_in_track)?;
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let mut in_minor = Some(in_track.clone());
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const PROOF: &'static str = "in_minor initialised and assigned with Some; loop breaks if None assigned; qed";
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while in_minor.as_ref().expect(PROOF).version.track != self.track() {
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let track = match in_minor.as_ref().expect(PROOF).version.track {
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ReleaseTrack::Beta => ReleaseTrack::Stable,
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ReleaseTrack::Nightly => ReleaseTrack::Beta,
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_ => { in_minor = None; break; }
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};
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in_minor = Some(Self::collect_release_info(operations, &operations.latest_in_track(CLIENT_ID, track.into())?)?);
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}
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Ok(OperationsInfo {
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fork: operations.latest_fork()? as u64,
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this_fork: this_fork,
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track: in_track,
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minor: in_minor,
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})
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} else {
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Err("Operations not available".into())
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}
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}
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fn update_file_name(v: &VersionInfo) -> String {
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format!("parity-{}.{}.{}-{:?}", v.version.major, v.version.minor, v.version.patch, v.hash)
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}
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fn updates_path(&self, name: &str) -> PathBuf {
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let mut dest = PathBuf::from(self.update_policy.path.clone());
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dest.push(name);
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dest
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}
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fn fetch_done(&self, result: Result<PathBuf, fetch::Error>) {
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(|| -> Result<(), (String, bool)> {
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let auto = {
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let mut s = self.state.lock();
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let fetched = s.fetching.take().unwrap();
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let dest = self.updates_path(&Self::update_file_name(&fetched.version));
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if !dest.exists() {
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let b = result.map_err(|e| (format!("Unable to fetch update ({}): {:?}", fetched.version, e), false))?;
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info!(target: "updater", "Fetched latest version ({}) OK to {}", fetched.version, b.display());
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fs::create_dir_all(dest.parent().expect("at least one thing pushed; qed")).map_err(|e| (format!("Unable to create updates path: {:?}", e), true))?;
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fs::copy(&b, &dest).map_err(|e| (format!("Unable to copy update: {:?}", e), true))?;
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restrict_permissions_owner(&dest, false, true).map_err(|e| (format!("Unable to update permissions: {}", e), true))?;
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info!(target: "updater", "Installed updated binary to {}", dest.display());
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}
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let auto = match self.update_policy.filter {
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UpdateFilter::All => true,
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UpdateFilter::Critical if fetched.is_critical /* TODO: or is on a bad fork */ => true,
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_ => false,
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};
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s.ready = Some(fetched);
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auto
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};
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if auto {
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// will lock self.state, so ensure it's outside of previous block.
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self.execute_upgrade();
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}
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Ok(())
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})().unwrap_or_else(|(e, fatal)| { self.state.lock().disabled = fatal; warn!("{}", e); });
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}
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fn poll(&self) {
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trace!(target: "updater", "Current release is {} ({:?})", self.this, self.this.hash);
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// We rely on a secure state. Bail if we're unsure about it.
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if self.client.upgrade().map_or(true, |s| !s.chain_info().security_level().is_full()) {
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return;
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}
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if self.operations.lock().is_none() {
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if let Some(ops_addr) = self.client.upgrade().and_then(|c| c.registry_address("operations".into())) {
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trace!(target: "updater", "Found operations at {}", ops_addr);
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let client = self.client.clone();
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*self.operations.lock() = Some(Operations::new(ops_addr, move |a, d| client.upgrade().ok_or("No client!".into()).and_then(|c| c.call_contract(BlockId::Latest, a, d))));
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} else {
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// No Operations contract - bail.
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return;
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}
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}
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let current_number = self.client.upgrade().map_or(0, |c| c.block_number(BlockId::Latest).unwrap_or(0));
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let mut capability = CapState::Unknown;
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let latest = self.collect_latest().ok();
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if let Some(ref latest) = latest {
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trace!(target: "updater", "Latest release in our track is v{} it is {}critical ({} binary is {})",
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latest.track.version,
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if latest.track.is_critical {""} else {"non-"},
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&platform(),
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if let Some(ref b) = latest.track.binary {
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format!("{}", b)
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} else {
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"unreleased".into()
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}
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);
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let mut s = self.state.lock();
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let running_later = latest.track.version.version < self.version_info().version;
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let running_latest = latest.track.version.hash == self.version_info().hash;
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let already_have_latest = s.installed.as_ref().or(s.ready.as_ref()).map_or(false, |t| *t == latest.track);
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if !s.disabled && self.update_policy.enable_downloading && !running_later && !running_latest && !already_have_latest {
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if let Some(b) = latest.track.binary {
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if s.fetching.is_none() {
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if self.updates_path(&Self::update_file_name(&latest.track.version)).exists() {
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info!(target: "updater", "Already fetched binary.");
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s.fetching = Some(latest.track.clone());
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drop(s);
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self.fetch_done(Ok(PathBuf::new()));
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} else {
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info!(target: "updater", "Attempting to get parity binary {}", b);
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s.fetching = Some(latest.track.clone());
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drop(s);
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let weak_self = self.weak_self.lock().clone();
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let f = move |r: Result<PathBuf, fetch::Error>| if let Some(this) = weak_self.upgrade() { this.fetch_done(r) };
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self.fetcher.lock().as_ref().expect("Created on `new`; qed").fetch(b, Box::new(f));
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}
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}
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}
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}
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trace!(target: "updater", "Fork: this/current/latest/latest-known: {}/#{}/#{}/#{}", match latest.this_fork { Some(f) => format!("#{}", f), None => "unknown".into(), }, current_number, latest.track.fork, latest.fork);
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if let Some(this_fork) = latest.this_fork {
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if this_fork < latest.fork {
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// We're behind the latest fork. Now is the time to be upgrading; perhaps we're too late...
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if let Some(c) = self.client.upgrade() {
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let current_number = c.block_number(BlockId::Latest).unwrap_or(0);
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if current_number >= latest.fork - 1 {
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// We're at (or past) the last block we can import. Disable the client.
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if self.update_policy.require_consensus {
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c.disable();
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}
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capability = CapState::IncapableSince(latest.fork);
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} else {
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capability = CapState::CapableUntil(latest.fork);
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}
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}
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} else {
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capability = CapState::Capable;
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}
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}
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}
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let mut s = self.state.lock();
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s.latest = latest;
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s.capability = capability;
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}
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}
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impl ChainNotify for Updater {
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fn new_blocks(&self, _imported: Vec<H256>, _invalid: Vec<H256>, _enacted: Vec<H256>, _retracted: Vec<H256>, _sealed: Vec<H256>, _proposed: Vec<Bytes>, _duration: u64) {
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match (self.client.upgrade(), self.sync.upgrade()) {
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(Some(ref c), Some(ref s)) if !s.status().is_syncing(c.queue_info()) => self.poll(),
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_ => {},
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}
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}
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}
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impl fetch::urlhint::ContractClient for Updater {
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fn registrar(&self) -> Result<Address, String> {
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self.client.upgrade().ok_or_else(|| "Client not available".to_owned())?
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.registrar_address()
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.ok_or_else(|| "Registrar not available".into())
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}
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fn call(&self, address: Address, data: Bytes) -> BoxFuture<Bytes, String> {
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future::done(
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self.client.upgrade()
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.ok_or_else(|| "Client not available".into())
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.and_then(move |c| c.call_contract(BlockId::Latest, address, data))
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).boxed()
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}
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}
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impl Service for Updater {
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fn capability(&self) -> CapState {
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self.state.lock().capability
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}
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fn upgrade_ready(&self) -> Option<ReleaseInfo> {
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self.state.lock().ready.clone()
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}
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fn execute_upgrade(&self) -> bool {
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(|| -> Result<bool, String> {
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let mut s = self.state.lock();
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if let Some(r) = s.ready.take() {
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let p = Self::update_file_name(&r.version);
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let n = self.updates_path("latest");
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// TODO: creating then writing is a bit fragile. would be nice to make it atomic.
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match fs::File::create(&n).and_then(|mut f| f.write_all(p.as_bytes())) {
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Ok(_) => {
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info!(target: "updater", "Completed upgrade to {}", &r.version);
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s.installed = Some(r);
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if let Some(ref h) = *self.exit_handler.lock() {
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(*h)();
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} else {
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info!("Update installed; ready for restart.");
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}
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Ok(true)
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}
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Err(e) => {
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s.ready = Some(r);
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Err(format!("Unable to create soft-link for update {:?}", e))
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}
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}
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} else {
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warn!(target: "updater", "Execute upgrade called when no upgrade ready.");
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Ok(false)
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}
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})().unwrap_or_else(|e| { warn!("{}", e); false })
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}
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fn version_info(&self) -> VersionInfo { self.this.clone() }
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fn info(&self) -> Option<OperationsInfo> { self.state.lock().latest.clone() }
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}
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