657 lines
20 KiB
Rust
657 lines
20 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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//! Tests for the `LightProtocol` implementation.
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//! These don't test of the higher level logic on top of
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use ethcore::blockchain_info::BlockChainInfo;
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use ethcore::client::{EachBlockWith, TestBlockChainClient};
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use ethcore::ids::BlockId;
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use ethcore::transaction::{Action, PendingTransaction};
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use ethcore::encoded;
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use network::{PeerId, NodeId};
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use net::request_credits::FlowParams;
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use net::context::IoContext;
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use net::status::{Capabilities, Status, write_handshake};
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use net::{LightProtocol, Params, packet, Peer};
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use provider::Provider;
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use request;
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use request::*;
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use rlp::*;
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use util::{Address, H256, U256};
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use std::sync::Arc;
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// helper for encoding a single request into a packet.
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// panics on bad backreference.
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fn encode_single(request: Request) -> Requests {
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let mut builder = RequestBuilder::default();
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builder.push(request).unwrap();
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builder.build()
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}
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// helper for making a packet out of `Requests`.
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fn make_packet(req_id: usize, requests: &Requests) -> Vec<u8> {
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let mut stream = RlpStream::new_list(2);
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stream.append(&req_id).append_list(&requests.requests());
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stream.out()
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}
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// expected result from a call.
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#[derive(Debug, PartialEq, Eq)]
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enum Expect {
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/// Expect to have message sent to peer.
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Send(PeerId, u8, Vec<u8>),
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/// Expect this response.
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Respond(u8, Vec<u8>),
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/// Expect a punishment (disconnect/disable)
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Punish(PeerId),
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/// Expect nothing.
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Nothing,
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}
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impl IoContext for Expect {
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fn send(&self, peer: PeerId, packet_id: u8, packet_body: Vec<u8>) {
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assert_eq!(self, &Expect::Send(peer, packet_id, packet_body));
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}
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fn respond(&self, packet_id: u8, packet_body: Vec<u8>) {
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assert_eq!(self, &Expect::Respond(packet_id, packet_body));
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}
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fn disconnect_peer(&self, peer: PeerId) {
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assert_eq!(self, &Expect::Punish(peer));
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}
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fn disable_peer(&self, peer: PeerId) {
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assert_eq!(self, &Expect::Punish(peer));
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}
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fn protocol_version(&self, _peer: PeerId) -> Option<u8> {
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Some(super::MAX_PROTOCOL_VERSION)
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}
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fn persistent_peer_id(&self, _peer: PeerId) -> Option<NodeId> {
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None
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}
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}
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// can't implement directly for Arc due to cross-crate orphan rules.
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struct TestProvider(Arc<TestProviderInner>);
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struct TestProviderInner {
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client: TestBlockChainClient,
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}
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impl Provider for TestProvider {
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fn chain_info(&self) -> BlockChainInfo {
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self.0.client.chain_info()
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}
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fn reorg_depth(&self, a: &H256, b: &H256) -> Option<u64> {
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self.0.client.reorg_depth(a, b)
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}
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fn earliest_state(&self) -> Option<u64> {
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None
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}
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fn block_header(&self, id: BlockId) -> Option<encoded::Header> {
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self.0.client.block_header(id)
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}
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fn block_body(&self, req: request::CompleteBodyRequest) -> Option<request::BodyResponse> {
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self.0.client.block_body(req)
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}
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fn block_receipts(&self, req: request::CompleteReceiptsRequest) -> Option<request::ReceiptsResponse> {
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self.0.client.block_receipts(req)
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}
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fn account_proof(&self, req: request::CompleteAccountRequest) -> Option<request::AccountResponse> {
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// sort of a leaf node
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let mut stream = RlpStream::new_list(2);
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stream.append(&req.address_hash).append_empty_data();
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Some(AccountResponse {
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proof: vec![stream.out()],
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balance: 10.into(),
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nonce: 100.into(),
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code_hash: Default::default(),
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storage_root: Default::default(),
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})
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}
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fn storage_proof(&self, req: request::CompleteStorageRequest) -> Option<request::StorageResponse> {
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Some(StorageResponse {
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proof: vec![::rlp::encode(&req.key_hash).to_vec()],
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value: req.key_hash | req.address_hash,
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})
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}
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fn contract_code(&self, req: request::CompleteCodeRequest) -> Option<request::CodeResponse> {
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Some(CodeResponse {
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code: req.block_hash.iter().chain(req.code_hash.iter()).cloned().collect(),
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})
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}
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fn header_proof(&self, _req: request::CompleteHeaderProofRequest) -> Option<request::HeaderProofResponse> {
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None
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}
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fn transaction_proof(&self, _req: request::CompleteExecutionRequest) -> Option<request::ExecutionResponse> {
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None
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}
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fn ready_transactions(&self) -> Vec<PendingTransaction> {
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self.0.client.ready_transactions()
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}
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}
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fn make_flow_params() -> FlowParams {
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FlowParams::new(5_000_000.into(), Default::default(), 100_000.into())
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}
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fn capabilities() -> Capabilities {
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Capabilities {
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serve_headers: true,
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serve_chain_since: Some(1),
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serve_state_since: Some(1),
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tx_relay: true,
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}
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}
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// helper for setting up the protocol handler and provider.
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fn setup(flow_params: FlowParams, capabilities: Capabilities) -> (Arc<TestProviderInner>, LightProtocol) {
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let provider = Arc::new(TestProviderInner {
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client: TestBlockChainClient::new(),
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});
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let proto = LightProtocol::new(Arc::new(TestProvider(provider.clone())), Params {
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network_id: 2,
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flow_params: flow_params,
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capabilities: capabilities,
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});
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(provider, proto)
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}
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fn status(chain_info: BlockChainInfo) -> Status {
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Status {
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protocol_version: 1,
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network_id: 2,
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head_td: chain_info.total_difficulty,
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head_hash: chain_info.best_block_hash,
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head_num: chain_info.best_block_number,
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genesis_hash: chain_info.genesis_hash,
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last_head: None,
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}
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}
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#[test]
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fn handshake_expected() {
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let flow_params = make_flow_params();
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let status = status(provider.client.chain_info());
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let packet_body = write_handshake(&status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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}
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#[test]
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#[should_panic]
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fn genesis_mismatch() {
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let flow_params = make_flow_params();
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let mut status = status(provider.client.chain_info());
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status.genesis_hash = H256::default();
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let packet_body = write_handshake(&status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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}
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#[test]
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fn credit_overflow() {
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let flow_params = make_flow_params();
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let status = status(provider.client.chain_info());
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{
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let packet_body = write_handshake(&status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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}
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{
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let my_status = write_handshake(&status, &capabilities, Some(&flow_params));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &my_status);
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}
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// 1000 requests is far too many for the default flow params.
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let requests = encode_single(Request::Headers(IncompleteHeadersRequest {
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start: HashOrNumber::Number(1).into(),
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max: 1000,
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skip: 0,
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reverse: false,
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}));
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let request = make_packet(111, &requests);
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proto.handle_packet(&Expect::Punish(1), &1, packet::REQUEST, &request);
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}
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// test the basic request types -- these just make sure that requests are parsed
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// and sent to the provider correctly as well as testing response formatting.
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#[test]
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fn get_block_headers() {
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let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let cur_status = status(provider.client.chain_info());
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let my_status = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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provider.client.add_blocks(100, EachBlockWith::Nothing);
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let cur_status = status(provider.client.chain_info());
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{
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let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &my_status);
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}
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let request = Request::Headers(IncompleteHeadersRequest {
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start: HashOrNumber::Number(1).into(),
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max: 10,
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skip: 0,
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reverse: false,
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});
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let req_id = 111;
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let requests = encode_single(request.clone());
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let request_body = make_packet(req_id, &requests);
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let response = {
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let headers: Vec<_> = (0..10).map(|i| provider.client.block_header(BlockId::Number(i + 1)).unwrap()).collect();
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assert_eq!(headers.len(), 10);
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let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
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let response = vec![Response::Headers(HeadersResponse {
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headers: headers,
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})];
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let mut stream = RlpStream::new_list(3);
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stream.append(&req_id).append(&new_creds).append_list(&response);
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stream.out()
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};
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let expected = Expect::Respond(packet::RESPONSE, response);
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proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
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}
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#[test]
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fn get_block_bodies() {
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let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let cur_status = status(provider.client.chain_info());
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let my_status = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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provider.client.add_blocks(100, EachBlockWith::Nothing);
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let cur_status = status(provider.client.chain_info());
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{
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let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &my_status);
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}
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let mut builder = RequestBuilder::default();
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let mut bodies = Vec::new();
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for i in 0..10 {
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let hash = provider.client.block_header(BlockId::Number(i)).unwrap().hash();
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builder.push(Request::Body(IncompleteBodyRequest {
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hash: hash.into(),
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})).unwrap();
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bodies.push(Response::Body(provider.client.block_body(CompleteBodyRequest {
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hash: hash,
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}).unwrap()));
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}
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let req_id = 111;
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let requests = builder.build();
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let request_body = make_packet(req_id, &requests);
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let response = {
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let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
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let mut response_stream = RlpStream::new_list(3);
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response_stream.append(&req_id).append(&new_creds).append_list(&bodies);
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response_stream.out()
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};
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let expected = Expect::Respond(packet::RESPONSE, response);
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proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
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}
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#[test]
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fn get_block_receipts() {
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let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let cur_status = status(provider.client.chain_info());
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let my_status = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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provider.client.add_blocks(1000, EachBlockWith::Nothing);
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let cur_status = status(provider.client.chain_info());
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{
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let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &my_status);
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}
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// find the first 10 block hashes starting with `f` because receipts are only provided
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// by the test client in that case.
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let block_hashes: Vec<H256> = (0..1000)
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.map(|i| provider.client.block_header(BlockId::Number(i)).unwrap().hash())
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.filter(|hash| format!("{}", hash).starts_with("f"))
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.take(10)
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.collect();
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let mut builder = RequestBuilder::default();
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let mut receipts = Vec::new();
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for hash in block_hashes.iter().cloned() {
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builder.push(Request::Receipts(IncompleteReceiptsRequest { hash: hash.into() })).unwrap();
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receipts.push(Response::Receipts(provider.client.block_receipts(CompleteReceiptsRequest {
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hash: hash
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}).unwrap()));
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}
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let req_id = 111;
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let requests = builder.build();
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let request_body = make_packet(req_id, &requests);
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let response = {
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assert_eq!(receipts.len(), 10);
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let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
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let mut response_stream = RlpStream::new_list(3);
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response_stream.append(&req_id).append(&new_creds).append_list(&receipts);
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response_stream.out()
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};
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let expected = Expect::Respond(packet::RESPONSE, response);
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proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
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}
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#[test]
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fn get_state_proofs() {
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let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let provider = TestProvider(provider);
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let cur_status = status(provider.0.client.chain_info());
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{
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let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body.clone()));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &packet_body);
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}
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let req_id = 112;
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let key1: H256 = U256::from(11223344).into();
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let key2: H256 = U256::from(99988887).into();
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let mut builder = RequestBuilder::default();
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builder.push(Request::Account(IncompleteAccountRequest {
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block_hash: H256::default().into(),
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address_hash: key1.into(),
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})).unwrap();
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builder.push(Request::Storage(IncompleteStorageRequest {
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block_hash: H256::default().into(),
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address_hash: key1.into(),
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key_hash: key2.into(),
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})).unwrap();
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let requests = builder.build();
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let request_body = make_packet(req_id, &requests);
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let response = {
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let responses = vec![
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Response::Account(provider.account_proof(CompleteAccountRequest {
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block_hash: H256::default(),
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address_hash: key1,
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}).unwrap()),
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Response::Storage(provider.storage_proof(CompleteStorageRequest {
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block_hash: H256::default(),
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address_hash: key1,
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key_hash: key2,
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}).unwrap()),
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];
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let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
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let mut response_stream = RlpStream::new_list(3);
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response_stream.append(&req_id).append(&new_creds).append_list(&responses);
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response_stream.out()
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};
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let expected = Expect::Respond(packet::RESPONSE, response);
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proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
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}
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#[test]
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fn get_contract_code() {
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let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
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let capabilities = capabilities();
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let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
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let cur_status = status(provider.client.chain_info());
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{
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let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
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proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body.clone()));
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proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &packet_body);
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}
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let req_id = 112;
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let key1: H256 = U256::from(11223344).into();
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let key2: H256 = U256::from(99988887).into();
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let request = Request::Code(IncompleteCodeRequest {
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block_hash: key1.into(),
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code_hash: key2.into(),
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});
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let requests = encode_single(request.clone());
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let request_body = make_packet(req_id, &requests);
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let response = {
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let response = vec![Response::Code(CodeResponse {
|
|
code: key1.iter().chain(key2.iter()).cloned().collect(),
|
|
})];
|
|
|
|
let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
|
|
|
|
let mut response_stream = RlpStream::new_list(3);
|
|
|
|
response_stream.append(&req_id).append(&new_creds).append_list(&response);
|
|
response_stream.out()
|
|
};
|
|
|
|
let expected = Expect::Respond(packet::RESPONSE, response);
|
|
proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
|
|
}
|
|
|
|
#[test]
|
|
fn proof_of_execution() {
|
|
let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
|
|
let capabilities = capabilities();
|
|
|
|
let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
|
|
|
|
let cur_status = status(provider.client.chain_info());
|
|
|
|
{
|
|
let packet_body = write_handshake(&cur_status, &capabilities, Some(&flow_params));
|
|
proto.on_connect(&1, &Expect::Send(1, packet::STATUS, packet_body.clone()));
|
|
proto.handle_packet(&Expect::Nothing, &1, packet::STATUS, &packet_body);
|
|
}
|
|
|
|
let req_id = 112;
|
|
let mut request = Request::Execution(request::IncompleteExecutionRequest {
|
|
block_hash: H256::default().into(),
|
|
from: Address::default(),
|
|
action: Action::Call(Address::default()),
|
|
gas: 100.into(),
|
|
gas_price: 0.into(),
|
|
value: 0.into(),
|
|
data: Vec::new(),
|
|
});
|
|
|
|
// first: a valid amount to request execution of.
|
|
let requests = encode_single(request.clone());
|
|
let request_body = make_packet(req_id, &requests);
|
|
|
|
let response = {
|
|
let new_creds = *flow_params.limit() - flow_params.compute_cost_multi(requests.requests());
|
|
|
|
let mut response_stream = RlpStream::new_list(3);
|
|
response_stream.append(&req_id).append(&new_creds).begin_list(0);
|
|
|
|
response_stream.out()
|
|
};
|
|
|
|
let expected = Expect::Respond(packet::RESPONSE, response);
|
|
proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
|
|
|
|
// next: way too much requested gas.
|
|
if let Request::Execution(ref mut req) = request {
|
|
req.gas = 100_000_000.into();
|
|
}
|
|
let req_id = 113;
|
|
let requests = encode_single(request.clone());
|
|
let request_body = make_packet(req_id, &requests);
|
|
|
|
let expected = Expect::Punish(1);
|
|
proto.handle_packet(&expected, &1, packet::REQUEST, &request_body);
|
|
}
|
|
|
|
#[test]
|
|
fn id_guard() {
|
|
use super::request_set::RequestSet;
|
|
use super::ReqId;
|
|
|
|
let flow_params = FlowParams::new(5_000_000.into(), Default::default(), 0.into());
|
|
let capabilities = capabilities();
|
|
|
|
let (provider, proto) = setup(flow_params.clone(), capabilities.clone());
|
|
|
|
let req_id_1 = ReqId(5143);
|
|
let req_id_2 = ReqId(1111);
|
|
|
|
let req = encode_single(Request::Headers(IncompleteHeadersRequest {
|
|
start: HashOrNumber::Number(5u64).into(),
|
|
max: 100,
|
|
skip: 0,
|
|
reverse: false,
|
|
}));
|
|
|
|
let peer_id = 9876;
|
|
|
|
let mut pending_requests = RequestSet::default();
|
|
|
|
pending_requests.insert(req_id_1, req.clone(), ::time::SteadyTime::now());
|
|
pending_requests.insert(req_id_2, req, ::time::SteadyTime::now());
|
|
|
|
proto.peers.write().insert(peer_id, ::util::Mutex::new(Peer {
|
|
local_credits: flow_params.create_credits(),
|
|
status: status(provider.client.chain_info()),
|
|
capabilities: capabilities.clone(),
|
|
remote_flow: Some((flow_params.create_credits(), flow_params)),
|
|
sent_head: provider.client.chain_info().best_block_hash,
|
|
last_update: ::time::SteadyTime::now(),
|
|
pending_requests: pending_requests,
|
|
failed_requests: Vec::new(),
|
|
}));
|
|
|
|
// first, malformed responses.
|
|
{
|
|
let mut stream = RlpStream::new_list(3);
|
|
stream.append(&req_id_1.0);
|
|
stream.append(&4_000_000usize);
|
|
stream.begin_list(2).append(&125usize).append(&3usize);
|
|
|
|
let packet = stream.out();
|
|
assert!(proto.response(&peer_id, &Expect::Nothing, UntrustedRlp::new(&packet)).is_err());
|
|
}
|
|
|
|
// next, do an unexpected response.
|
|
{
|
|
let mut stream = RlpStream::new_list(3);
|
|
stream.append(&10000usize);
|
|
stream.append(&3_000_000usize);
|
|
stream.begin_list(0);
|
|
|
|
let packet = stream.out();
|
|
assert!(proto.response(&peer_id, &Expect::Nothing, UntrustedRlp::new(&packet)).is_err());
|
|
}
|
|
|
|
// lastly, do a valid (but empty) response.
|
|
{
|
|
let mut stream = RlpStream::new_list(3);
|
|
stream.append(&req_id_2.0);
|
|
stream.append(&3_000_000usize);
|
|
stream.begin_list(0);
|
|
|
|
let packet = stream.out();
|
|
assert!(proto.response(&peer_id, &Expect::Nothing, UntrustedRlp::new(&packet)).is_ok());
|
|
}
|
|
|
|
let peers = proto.peers.read();
|
|
if let Some(ref peer_info) = peers.get(&peer_id) {
|
|
let peer_info = peer_info.lock();
|
|
assert!(peer_info.pending_requests.collect_ids::<Vec<_>>().is_empty());
|
|
assert_eq!(peer_info.failed_requests, &[req_id_1]);
|
|
}
|
|
}
|