mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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10fc88f6b1
* Integrate srml/im-online * Fix all build errors with old aura. * Fix most of the build errors. * Builds and tests seem to pass (I will not trust this commit yet) * Apply suggestions from code review Co-Authored-By: Robert Habermeier <rphmeier@gmail.com> * Kill some warnings. * fix panics on 0 validators * Fix dev chain. * Fix author stuff * fix im online integration. * Some tweaks * Introduce app-crypto * Initial build work * codec update / tweaks * patch polkadot-erasure-coding input * More fixes for new crypto * More fixes * Update parachains module * evamp parachain crypto * More crypto work. * Chain spec and service. * ChainSpec stuff * Last bits for a clean build * Tweak coment * adapt polkadot-validation to the new keystore * polkadot-network compiles, but tests don't * Integrate the new parachain validation stuff * delete message_routing file * make polkadot-network tests compile and pass * runtime tests compile and pass * update substrate ref * service compiles * all tests pass * Add TODO, change branch back to polkadot-master * Lock file * TODOs done * Issue number * Remove old tODO * Remove commented code
195 lines
4.7 KiB
Rust
195 lines
4.7 KiB
Rust
// Copyright 2017 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot 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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// Polkadot 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 Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! Basic parachain that adds a number as part of its state.
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use polkadot_parachain as parachain;
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use crate::parachain::{IncomingMessage, ValidationParams};
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use crate::DummyExt;
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use codec::{Decode, Encode};
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/// Head data for this parachain.
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#[derive(Default, Clone, Encode, Decode)]
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struct HeadData {
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/// Block number
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number: u64,
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/// parent block keccak256
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parent_hash: [u8; 32],
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/// hash of post-execution state.
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post_state: [u8; 32],
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}
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/// Block data for this parachain.
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#[derive(Default, Clone, Encode, Decode)]
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struct BlockData {
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/// State to begin from.
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state: u64,
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/// Amount to add (overflowing)
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add: u64,
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}
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#[derive(Encode, Decode)]
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struct AddMessage {
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/// amount to add.
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amount: u64,
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}
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const TEST_CODE: &[u8] = adder::WASM_BINARY;
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fn hash_state(state: u64) -> [u8; 32] {
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tiny_keccak::keccak256(state.encode().as_slice())
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}
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fn hash_head(head: &HeadData) -> [u8; 32] {
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tiny_keccak::keccak256(head.encode().as_slice())
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}
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#[test]
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pub fn execute_good_on_parent() {
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let parent_head = HeadData {
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number: 0,
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parent_hash: [0; 32],
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post_state: hash_state(0),
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};
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let block_data = BlockData {
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state: 0,
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add: 512,
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};
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let ret = parachain::wasm_executor::validate_candidate(
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TEST_CODE,
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ValidationParams {
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parent_head: parent_head.encode(),
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block_data: block_data.encode(),
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ingress: Vec::new(),
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},
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&mut DummyExt,
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parachain::wasm_executor::ExecutionMode::RemoteTest,
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).unwrap();
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let new_head = HeadData::decode(&mut &ret.head_data[..]).unwrap();
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assert_eq!(new_head.number, 1);
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assert_eq!(new_head.parent_hash, hash_head(&parent_head));
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assert_eq!(new_head.post_state, hash_state(512));
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}
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#[test]
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fn execute_good_chain_on_parent() {
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let mut number = 0;
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let mut parent_hash = [0; 32];
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let mut last_state = 0;
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for add in 0..10 {
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let parent_head = HeadData {
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number,
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parent_hash,
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post_state: hash_state(last_state),
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};
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let block_data = BlockData {
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state: last_state,
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add,
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};
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let ret = parachain::wasm_executor::validate_candidate(
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TEST_CODE,
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ValidationParams {
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parent_head: parent_head.encode(),
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block_data: block_data.encode(),
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ingress: Vec::new(),
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},
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&mut DummyExt,
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parachain::wasm_executor::ExecutionMode::RemoteTest,
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).unwrap();
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let new_head = HeadData::decode(&mut &ret.head_data[..]).unwrap();
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assert_eq!(new_head.number, number + 1);
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assert_eq!(new_head.parent_hash, hash_head(&parent_head));
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assert_eq!(new_head.post_state, hash_state(last_state + add));
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number += 1;
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parent_hash = hash_head(&new_head);
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last_state += add;
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}
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}
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#[test]
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fn execute_bad_on_parent() {
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let parent_head = HeadData {
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number: 0,
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parent_hash: [0; 32],
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post_state: hash_state(0),
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};
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let block_data = BlockData {
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state: 256, // start state is wrong.
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add: 256,
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};
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let _ret = parachain::wasm_executor::validate_candidate(
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TEST_CODE,
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ValidationParams {
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parent_head: parent_head.encode(),
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block_data: block_data.encode(),
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ingress: Vec::new(),
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},
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&mut DummyExt,
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parachain::wasm_executor::ExecutionMode::RemoteTest,
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).unwrap_err();
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}
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#[test]
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fn processes_messages() {
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let parent_head = HeadData {
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number: 0,
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parent_hash: [0; 32],
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post_state: hash_state(0),
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};
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let block_data = BlockData {
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state: 0,
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add: 512,
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};
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let bad_message_data = vec![1];
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assert!(AddMessage::decode(&mut &bad_message_data[..]).is_err());
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let ret = parachain::wasm_executor::validate_candidate(
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TEST_CODE,
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ValidationParams {
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parent_head: parent_head.encode(),
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block_data: block_data.encode(),
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ingress: vec![
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IncomingMessage { source: 1.into(), data: (AddMessage { amount: 256 }).encode() },
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IncomingMessage { source: 2.into(), data: bad_message_data },
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IncomingMessage { source: 3.into(), data: (AddMessage { amount: 256 }).encode() },
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],
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},
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&mut DummyExt,
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parachain::wasm_executor::ExecutionMode::RemoteTest,
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).unwrap();
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let new_head = HeadData::decode(&mut &ret.head_data[..]).unwrap();
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assert_eq!(new_head.number, 1);
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assert_eq!(new_head.parent_hash, hash_head(&parent_head));
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assert_eq!(new_head.post_state, hash_state(1024));
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}
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