e95b093483
* ethereum-types refactor in progress * ethereum-types refactor in progress * ethereum-types refactor in progress * ethereum-types refactor in progress * ethereum-types refactor finished * removed obsolete util/src/lib.rs * removed commented out code
314 lines
9.4 KiB
Rust
314 lines
9.4 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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//! Hash-addressed content resolver & fetcher.
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use std::{io, fs};
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use std::io::Write;
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use std::sync::Arc;
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use std::path::PathBuf;
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use hash::keccak_buffer;
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use fetch::{Fetch, Response, Error as FetchError, Client as FetchClient};
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use futures::Future;
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use parity_reactor::Remote;
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use urlhint::{ContractClient, URLHintContract, URLHint, URLHintResult};
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use ethereum_types::H256;
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/// API for fetching by hash.
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pub trait HashFetch: Send + Sync + 'static {
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/// Fetch hash-addressed content.
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/// Parameters:
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/// 1. `hash` - content hash
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/// 2. `on_done` - callback function invoked when the content is ready (or there was error during fetch)
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///
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/// This function may fail immediately when fetch cannot be initialized or content cannot be resolved.
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fn fetch(&self, hash: H256, on_done: Box<Fn(Result<PathBuf, Error>) + Send>);
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}
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/// Hash-fetching error.
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#[derive(Debug)]
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pub enum Error {
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/// Hash could not be resolved to a valid content address.
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NoResolution,
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/// Downloaded content hash does not match.
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HashMismatch {
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/// Expected hash
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expected: H256,
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/// Computed hash
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got: H256,
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},
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/// Server didn't respond with OK status.
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InvalidStatus,
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/// IO Error while validating hash.
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IO(io::Error),
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/// Error during fetch.
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Fetch(FetchError),
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}
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#[cfg(test)]
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impl PartialEq for Error {
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fn eq(&self, other: &Self) -> bool {
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use Error::*;
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match (self, other) {
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(&HashMismatch { expected, got }, &HashMismatch { expected: e, got: g }) => {
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expected == e && got == g
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},
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(&NoResolution, &NoResolution) => true,
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(&InvalidStatus, &InvalidStatus) => true,
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(&IO(_), &IO(_)) => true,
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(&Fetch(_), &Fetch(_)) => true,
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_ => false,
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}
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}
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}
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impl From<FetchError> for Error {
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fn from(error: FetchError) -> Self {
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Error::Fetch(error)
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}
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}
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impl From<io::Error> for Error {
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fn from(error: io::Error) -> Self {
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Error::IO(error)
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}
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}
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fn validate_hash(path: PathBuf, hash: H256, result: Result<Response, FetchError>) -> Result<PathBuf, Error> {
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let response = result?;
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if !response.is_success() {
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return Err(Error::InvalidStatus);
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}
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// Read the response
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let mut reader = io::BufReader::new(response);
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let mut writer = io::BufWriter::new(fs::File::create(&path)?);
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io::copy(&mut reader, &mut writer)?;
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writer.flush()?;
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// And validate the hash
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let mut file_reader = io::BufReader::new(fs::File::open(&path)?);
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let content_hash = keccak_buffer(&mut file_reader)?;
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if content_hash != hash {
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Err(Error::HashMismatch{ got: content_hash, expected: hash })
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} else {
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Ok(path)
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}
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}
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/// Default Hash-fetching client using on-chain contract to resolve hashes to URLs.
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pub struct Client<F: Fetch + 'static = FetchClient> {
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contract: URLHintContract,
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fetch: F,
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remote: Remote,
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random_path: Arc<Fn() -> PathBuf + Sync + Send>,
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}
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impl Client {
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/// Creates new instance of the `Client` given on-chain contract client and task runner.
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pub fn new(contract: Arc<ContractClient>, remote: Remote) -> Self {
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Client::with_fetch(contract, FetchClient::new().unwrap(), remote)
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}
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}
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impl<F: Fetch + 'static> Client<F> {
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/// Creates new instance of the `Client` given on-chain contract client, fetch service and task runner.
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pub fn with_fetch(contract: Arc<ContractClient>, fetch: F, remote: Remote) -> Self {
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Client {
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contract: URLHintContract::new(contract),
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fetch: fetch,
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remote: remote,
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random_path: Arc::new(random_temp_path),
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}
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}
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}
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impl<F: Fetch + 'static> HashFetch for Client<F> {
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fn fetch(&self, hash: H256, on_done: Box<Fn(Result<PathBuf, Error>) + Send>) {
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debug!(target: "fetch", "Fetching: {:?}", hash);
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let random_path = self.random_path.clone();
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let remote_fetch = self.fetch.clone();
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let future = self.contract.resolve(hash.to_vec())
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.map_err(|e| { warn!("Error resolving URL: {}", e); Error::NoResolution })
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.and_then(|maybe_url| maybe_url.ok_or(Error::NoResolution))
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.map(|content| match content {
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URLHintResult::Dapp(dapp) => {
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dapp.url()
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},
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URLHintResult::GithubDapp(content) => {
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content.url
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},
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URLHintResult::Content(content) => {
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content.url
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},
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})
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.and_then(move |url| {
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debug!(target: "fetch", "Resolved {:?} to {:?}. Fetching...", hash, url);
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let future = remote_fetch.fetch(&url).then(move |result| {
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debug!(target: "fetch", "Content fetched, validating hash ({:?})", hash);
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let path = random_path();
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let res = validate_hash(path.clone(), hash, result);
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if let Err(ref err) = res {
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trace!(target: "fetch", "Error: {:?}", err);
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// Remove temporary file in case of error
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let _ = fs::remove_file(&path);
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}
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res
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});
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remote_fetch.process(future)
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})
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.then(move |res| { on_done(res); Ok(()) as Result<(), ()> });
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self.remote.spawn(future);
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}
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}
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fn random_temp_path() -> PathBuf {
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use ::rand::Rng;
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use ::std::env;
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let mut rng = ::rand::OsRng::new().expect("Reliable random source is required to work.");
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let file: String = rng.gen_ascii_chars().take(12).collect();
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let mut path = env::temp_dir();
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path.push(file);
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path
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}
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#[cfg(test)]
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mod tests {
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use rustc_hex::FromHex;
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use std::sync::{Arc, mpsc};
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use parking_lot::Mutex;
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use futures::future;
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use fetch::{self, Fetch};
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use parity_reactor::Remote;
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use urlhint::tests::{FakeRegistrar, URLHINT};
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use super::{Error, Client, HashFetch, random_temp_path};
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#[derive(Clone)]
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struct FakeFetch {
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return_success: bool
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}
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impl Fetch for FakeFetch {
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type Result = future::Ok<fetch::Response, fetch::Error>;
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fn new() -> Result<Self, fetch::Error> where Self: Sized {
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Ok(FakeFetch { return_success: true })
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}
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fn fetch_with_abort(&self, url: &str, _abort: fetch::Abort) -> Self::Result {
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assert_eq!(url, "https://parity.io/assets/images/ethcore-black-horizontal.png");
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future::ok(if self.return_success {
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let cursor = ::std::io::Cursor::new(b"result");
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fetch::Response::from_reader(cursor)
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} else {
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fetch::Response::not_found()
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})
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}
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}
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fn registrar() -> FakeRegistrar {
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let mut registrar = FakeRegistrar::new();
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registrar.responses = Mutex::new(vec![
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Ok(format!("000000000000000000000000{}", URLHINT).from_hex().unwrap()),
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Ok("00000000000000000000000000000000000000000000000000000000000000600000000000000000000000000000000000000000000000000000000000000000000000000000000000000000deadcafebeefbeefcafedeaddeedfeedffffffff000000000000000000000000000000000000000000000000000000000000003c68747470733a2f2f7061726974792e696f2f6173736574732f696d616765732f657468636f72652d626c61636b2d686f72697a6f6e74616c2e706e6700000000".from_hex().unwrap()),
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]);
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registrar
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}
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#[test]
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fn should_return_error_if_hash_not_found() {
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// given
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let contract = Arc::new(FakeRegistrar::new());
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let fetch = FakeFetch { return_success: false };
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let client = Client::with_fetch(contract.clone(), fetch, Remote::new_sync());
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// when
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let (tx, rx) = mpsc::channel();
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client.fetch(2.into(), Box::new(move |result| {
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tx.send(result).unwrap();
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}));
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// then
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let result = rx.recv().unwrap();
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assert_eq!(result.unwrap_err(), Error::NoResolution);
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}
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#[test]
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fn should_return_error_if_response_is_not_successful() {
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// given
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let registrar = Arc::new(registrar());
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let fetch = FakeFetch { return_success: false };
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let client = Client::with_fetch(registrar.clone(), fetch, Remote::new_sync());
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// when
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let (tx, rx) = mpsc::channel();
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client.fetch(2.into(), Box::new(move |result| {
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tx.send(result).unwrap();
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}));
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// then
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let result = rx.recv().unwrap();
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assert_eq!(result.unwrap_err(), Error::InvalidStatus);
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}
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#[test]
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fn should_return_hash_mismatch() {
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// given
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let registrar = Arc::new(registrar());
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let fetch = FakeFetch { return_success: true };
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let mut client = Client::with_fetch(registrar.clone(), fetch, Remote::new_sync());
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let path = random_temp_path();
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let path2 = path.clone();
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client.random_path = Arc::new(move || path2.clone());
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// when
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let (tx, rx) = mpsc::channel();
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client.fetch(2.into(), Box::new(move |result| {
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tx.send(result).unwrap();
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}));
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// then
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let result = rx.recv().unwrap();
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let hash = "0x06b0a4f426f6713234b2d4b2468640bc4e0bb72657a920ad24c5087153c593c8".into();
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assert_eq!(result.unwrap_err(), Error::HashMismatch { expected: 2.into(), got: hash });
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assert!(!path.exists(), "Temporary file should be removed.");
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}
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#[test]
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fn should_return_path_if_hash_matches() {
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// given
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let registrar = Arc::new(registrar());
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let fetch = FakeFetch { return_success: true };
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let client = Client::with_fetch(registrar.clone(), fetch, Remote::new_sync());
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// when
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let (tx, rx) = mpsc::channel();
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client.fetch("0x06b0a4f426f6713234b2d4b2468640bc4e0bb72657a920ad24c5087153c593c8".into(), Box::new(move |result| {
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tx.send(result).unwrap();
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}));
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// then
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let result = rx.recv().unwrap();
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assert!(result.is_ok(), "Should return path, got: {:?}", result);
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}
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}
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