mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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36ef4c067b
* Add ability to supply extra storage in test-client * Don't use native_equivalent in tests. * Get rid of native_equivalent * Try to make fields private * Apply Basti's suggestions Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com>
1141 lines
32 KiB
Rust
1141 lines
32 KiB
Rust
// Copyright 2018-2019 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate 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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// Substrate 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 Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! A `CodeExecutor` specialization which uses natively compiled runtime when the wasm to be
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//! executed is equivalent to the natively compiled code.
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#![cfg_attr(feature = "benchmarks", feature(test))]
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#[cfg(feature = "benchmarks")] extern crate test;
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pub use substrate_executor::NativeExecutor;
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pub use substrate_executor::RuntimesCache;
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use substrate_executor::native_executor_instance;
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// Declare an instance of the native executor named `Executor`. Include the wasm binary as the
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// equivalent wasm code.
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native_executor_instance!(
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pub Executor,
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node_runtime::api::dispatch,
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node_runtime::native_version
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);
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#[cfg(test)]
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mod tests {
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use super::Executor;
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use {balances, contracts, indices, system, timestamp};
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use runtime_io;
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use substrate_executor::WasmExecutor;
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use codec::{Encode, Decode, Joiner};
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use runtime_support::{Hashable, StorageValue, StorageMap, assert_eq_error_rate, traits::Currency};
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use state_machine::{CodeExecutor, Externalities, TestExternalities as CoreTestExternalities};
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use primitives::{
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twox_128, blake2_256, Blake2Hasher, NeverNativeValue, NativeOrEncoded, map
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};
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use sr_primitives::traits::{Header as HeaderT, Hash as HashT, Convert};
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use sr_primitives::{ApplyOutcome, ApplyError, ApplyResult};
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use sr_primitives::weights::{WeightMultiplier, GetDispatchInfo};
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use contracts::ContractAddressFor;
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use system::{EventRecord, Phase};
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use node_primitives::{Hash, BlockNumber, Balance};
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use node_runtime::{
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Header, Block, UncheckedExtrinsic, CheckedExtrinsic, Call, Runtime, Balances, BuildStorage,
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System, Event,
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TransferFee, TransactionBaseFee, TransactionByteFee,
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};
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use node_runtime::constants::currency::*;
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use node_runtime::impls::WeightToFee;
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use node_testing::keyring::*;
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use wabt;
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/// The wasm runtime code.
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///
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/// `compact` since it is after post-processing with wasm-gc which performs tree-shaking thus
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/// making the binary slimmer. There is a convention to use compact version of the runtime
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/// as canonical. This is why `native_executor_instance` also uses the compact version of the
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/// runtime.
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const COMPACT_CODE: &[u8] = node_runtime::WASM_BINARY;
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/// The wasm runtime binary which hasn't undergone the compacting process.
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///
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/// The idea here is to pass it as the current runtime code to the executor so the executor will
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/// have to execute provided wasm code instead of the native equivalent. This trick is used to
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/// test code paths that differ between native and wasm versions.
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const BLOATY_CODE: &[u8] = node_runtime::WASM_BINARY_BLOATY;
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const GENESIS_HASH: [u8; 32] = [69u8; 32];
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const VERSION: u32 = node_runtime::VERSION.spec_version;
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type TestExternalities<H> = CoreTestExternalities<H, u64>;
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fn sign(xt: CheckedExtrinsic) -> UncheckedExtrinsic {
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node_testing::keyring::sign(xt, VERSION, GENESIS_HASH)
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}
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/// Default transfer fee
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fn transfer_fee<E: Encode>(extrinsic: &E) -> Balance {
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let length_fee = TransactionBaseFee::get() +
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TransactionByteFee::get() *
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(extrinsic.encode().len() as Balance);
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let weight = default_transfer_call().get_dispatch_info().weight;
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// NOTE: this is really hard to apply, since the multiplier of each block needs to be fetched
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// before the block, while we compute this after the block.
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// weight = <system::Module<Runtime>>::next_weight_multiplier().apply_to(weight);
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let weight_fee = <Runtime as balances::Trait>::WeightToFee::convert(weight);
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length_fee + weight_fee + TransferFee::get()
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}
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fn default_transfer_call() -> balances::Call<Runtime> {
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balances::Call::transfer::<Runtime>(bob().into(), 69 * DOLLARS)
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}
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fn xt() -> UncheckedExtrinsic {
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sign(CheckedExtrinsic {
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signed: Some((alice(), signed_extra(0, 0))),
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function: Call::Balances(default_transfer_call()),
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})
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}
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fn from_block_number(n: u32) -> Header {
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Header::new(n, Default::default(), Default::default(), [69; 32].into(), Default::default())
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}
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fn executor() -> ::substrate_executor::NativeExecutor<Executor> {
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substrate_executor::NativeExecutor::new(None)
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}
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#[test]
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fn panic_execution_with_foreign_code_gives_error() {
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let mut t = TestExternalities::<Blake2Hasher>::new_with_code(BLOATY_CODE, (map![
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blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
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69_u128.encode()
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},
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twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
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69_u128.encode()
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},
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twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => {
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0_u128.encode()
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},
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blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => {
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vec![0u8; 32]
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}
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], map![]));
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_initialize_block",
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&vec![].and(&from_block_number(1u32)),
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true,
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None,
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).0;
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assert!(r.is_ok());
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let v = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"BlockBuilder_apply_extrinsic",
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&vec![].and(&xt()),
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true,
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None,
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).0.unwrap();
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let r = ApplyResult::decode(&mut &v.as_encoded()[..]).unwrap();
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assert_eq!(r, Err(ApplyError::CantPay));
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}
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#[test]
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fn bad_extrinsic_with_native_equivalent_code_gives_error() {
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let mut t = TestExternalities::<Blake2Hasher>::new_with_code(COMPACT_CODE, (map![
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blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
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69_u128.encode()
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},
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twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
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69_u128.encode()
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},
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twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => {
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0_u128.encode()
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},
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blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => {
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vec![0u8; 32]
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}
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], map![]));
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_initialize_block",
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&vec![].and(&from_block_number(1u32)),
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true,
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None,
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).0;
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assert!(r.is_ok());
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let v = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"BlockBuilder_apply_extrinsic",
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&vec![].and(&xt()),
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true,
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None,
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).0.unwrap();
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let r = ApplyResult::decode(&mut &v.as_encoded()[..]).unwrap();
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assert_eq!(r, Err(ApplyError::CantPay));
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}
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#[test]
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fn successful_execution_with_native_equivalent_code_gives_ok() {
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let mut t = TestExternalities::<Blake2Hasher>::new_with_code(COMPACT_CODE, (map![
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blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
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(111 * DOLLARS).encode()
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},
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twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
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(111 * DOLLARS).encode()
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},
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twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => vec![0u8; 16],
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blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => vec![0u8; 32]
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], map![]));
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_initialize_block",
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&vec![].and(&from_block_number(1u32)),
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true,
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None,
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).0;
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assert!(r.is_ok());
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"BlockBuilder_apply_extrinsic",
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&vec![].and(&xt()),
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true,
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None,
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).0;
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assert!(r.is_ok());
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runtime_io::with_externalities(&mut t, || {
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assert_eq!(Balances::total_balance(&alice()), 42 * DOLLARS - transfer_fee(&xt()));
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assert_eq!(Balances::total_balance(&bob()), 69 * DOLLARS);
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});
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}
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#[test]
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fn successful_execution_with_foreign_code_gives_ok() {
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let mut t = TestExternalities::<Blake2Hasher>::new_with_code(BLOATY_CODE, (map![
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blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
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(111 * DOLLARS).encode()
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},
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twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
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(111 * DOLLARS).encode()
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},
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twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => vec![0u8; 16],
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blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => vec![0u8; 32]
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], map![]));
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_initialize_block",
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&vec![].and(&from_block_number(1u32)),
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true,
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None,
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).0;
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assert!(r.is_ok());
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let r = executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"BlockBuilder_apply_extrinsic",
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&vec![].and(&xt()),
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true,
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None,
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).0;
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assert!(r.is_ok());
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runtime_io::with_externalities(&mut t, || {
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assert_eq!(Balances::total_balance(&alice()), 42 * DOLLARS - transfer_fee(&xt()));
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assert_eq!(Balances::total_balance(&bob()), 69 * DOLLARS);
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});
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}
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fn new_test_ext(code: &[u8], support_changes_trie: bool) -> TestExternalities<Blake2Hasher> {
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let mut ext = TestExternalities::new_with_code(
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code,
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node_testing::genesis::config(support_changes_trie, Some(code)).build_storage().unwrap(),
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);
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ext.changes_trie_storage().insert(0, GENESIS_HASH.into(), Default::default());
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ext
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}
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fn construct_block(
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env: &mut TestExternalities<Blake2Hasher>,
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number: BlockNumber,
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parent_hash: Hash,
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extrinsics: Vec<CheckedExtrinsic>,
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) -> (Vec<u8>, Hash) {
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use trie::{TrieConfiguration, trie_types::Layout};
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// sign extrinsics.
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let extrinsics = extrinsics.into_iter().map(sign).collect::<Vec<_>>();
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// calculate the header fields that we can.
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let extrinsics_root = Layout::<Blake2Hasher>::ordered_trie_root(
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extrinsics.iter().map(Encode::encode)
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).to_fixed_bytes()
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.into();
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let header = Header {
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parent_hash,
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number,
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extrinsics_root,
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state_root: Default::default(),
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digest: Default::default(),
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};
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// execute the block to get the real header.
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executor().call::<_, NeverNativeValue, fn() -> _>(
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env,
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"Core_initialize_block",
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&header.encode(),
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true,
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None,
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).0.unwrap();
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for i in extrinsics.iter() {
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executor().call::<_, NeverNativeValue, fn() -> _>(
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env,
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"BlockBuilder_apply_extrinsic",
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&i.encode(),
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true,
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None,
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).0.unwrap();
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}
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let header = match executor().call::<_, NeverNativeValue, fn() -> _>(
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env,
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"BlockBuilder_finalize_block",
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&[0u8;0],
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true,
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None,
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).0.unwrap() {
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NativeOrEncoded::Native(_) => unreachable!(),
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NativeOrEncoded::Encoded(h) => Header::decode(&mut &h[..]).unwrap(),
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};
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let hash = header.blake2_256();
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(Block { header, extrinsics }.encode(), hash.into())
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}
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fn changes_trie_block() -> (Vec<u8>, Hash) {
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construct_block(
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&mut new_test_ext(COMPACT_CODE, true),
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1,
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GENESIS_HASH.into(),
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vec![
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CheckedExtrinsic {
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signed: None,
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function: Call::Timestamp(timestamp::Call::set(42 * 1000)),
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},
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CheckedExtrinsic {
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signed: Some((alice(), signed_extra(0, 0))),
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function: Call::Balances(balances::Call::transfer(bob().into(), 69 * DOLLARS)),
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},
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]
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)
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}
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// block 1 and 2 must be created together to ensure transactions are only signed once (since they
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// are not guaranteed to be deterministic) and to ensure that the correct state is propagated
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// from block1's execution to block2 to derive the correct storage_root.
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fn blocks() -> ((Vec<u8>, Hash), (Vec<u8>, Hash)) {
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let mut t = new_test_ext(COMPACT_CODE, false);
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let block1 = construct_block(
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&mut t,
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1,
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GENESIS_HASH.into(),
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vec![
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CheckedExtrinsic {
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signed: None,
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function: Call::Timestamp(timestamp::Call::set(42 * 1000)),
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},
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CheckedExtrinsic {
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signed: Some((alice(), signed_extra(0, 0))),
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function: Call::Balances(balances::Call::transfer(bob().into(), 69 * DOLLARS)),
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},
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]
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);
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let block2 = construct_block(
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&mut t,
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2,
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block1.1.clone(),
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vec![
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CheckedExtrinsic {
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signed: None,
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function: Call::Timestamp(timestamp::Call::set(52 * 1000)),
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},
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CheckedExtrinsic {
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signed: Some((bob(), signed_extra(0, 0))),
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function: Call::Balances(balances::Call::transfer(alice().into(), 5 * DOLLARS)),
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},
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CheckedExtrinsic {
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signed: Some((alice(), signed_extra(1, 0))),
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function: Call::Balances(balances::Call::transfer(bob().into(), 15 * DOLLARS)),
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}
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]
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);
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// session change => consensus authorities change => authorities change digest item appears
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let digest = Header::decode(&mut &block2.0[..]).unwrap().digest;
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assert_eq!(digest.logs().len(), 0);
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(block1, block2)
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}
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fn block_with_size(time: u64, nonce: u32, size: usize) -> (Vec<u8>, Hash) {
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construct_block(
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&mut new_test_ext(COMPACT_CODE, false),
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1,
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GENESIS_HASH.into(),
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vec![
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CheckedExtrinsic {
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signed: None,
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function: Call::Timestamp(timestamp::Call::set(time * 1000)),
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},
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CheckedExtrinsic {
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signed: Some((alice(), signed_extra(nonce, 0))),
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function: Call::System(system::Call::remark(vec![0; size])),
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}
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]
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)
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}
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|
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#[test]
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fn full_native_block_import_works() {
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let mut t = new_test_ext(COMPACT_CODE, false);
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let (block1, block2) = blocks();
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executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_execute_block",
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&block1.0,
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true,
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None,
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|
).0.unwrap();
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runtime_io::with_externalities(&mut t, || {
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assert_eq!(Balances::total_balance(&alice()), 42 * DOLLARS - transfer_fee(&xt()));
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assert_eq!(Balances::total_balance(&bob()), 169 * DOLLARS);
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let events = vec![
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EventRecord {
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|
phase: Phase::ApplyExtrinsic(0),
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event: Event::system(system::Event::ExtrinsicSuccess),
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topics: vec![],
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},
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EventRecord {
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phase: Phase::ApplyExtrinsic(1),
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event: Event::balances(balances::RawEvent::Transfer(
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alice().into(),
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bob().into(),
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69 * DOLLARS,
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1 * CENTS
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)),
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topics: vec![],
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},
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EventRecord {
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phase: Phase::ApplyExtrinsic(1),
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event: Event::system(system::Event::ExtrinsicSuccess),
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topics: vec![],
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},
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];
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assert_eq!(System::events(), events);
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});
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executor().call::<_, NeverNativeValue, fn() -> _>(
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&mut t,
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"Core_execute_block",
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&block2.0,
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|
true,
|
|
None,
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|
).0.unwrap();
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|
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runtime_io::with_externalities(&mut t, || {
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|
// NOTE: fees differ slightly in tests that execute more than one block due to the
|
|
// weight update. Hence, using `assert_eq_error_rate`.
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|
assert_eq_error_rate!(
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Balances::total_balance(&alice()),
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32 * DOLLARS - 2 * transfer_fee(&xt()),
|
|
10_000
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);
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|
assert_eq_error_rate!(
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Balances::total_balance(&bob()),
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179 * DOLLARS - transfer_fee(&xt()),
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10_000
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);
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let events = vec![
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EventRecord {
|
|
phase: Phase::ApplyExtrinsic(0),
|
|
event: Event::system(system::Event::ExtrinsicSuccess),
|
|
topics: vec![],
|
|
},
|
|
EventRecord {
|
|
phase: Phase::ApplyExtrinsic(1),
|
|
event: Event::balances(
|
|
balances::RawEvent::Transfer(
|
|
bob().into(),
|
|
alice().into(),
|
|
5 * DOLLARS,
|
|
1 * CENTS,
|
|
)
|
|
),
|
|
topics: vec![],
|
|
},
|
|
EventRecord {
|
|
phase: Phase::ApplyExtrinsic(1),
|
|
event: Event::system(system::Event::ExtrinsicSuccess),
|
|
topics: vec![],
|
|
},
|
|
EventRecord {
|
|
phase: Phase::ApplyExtrinsic(2),
|
|
event: Event::balances(
|
|
balances::RawEvent::Transfer(
|
|
alice().into(),
|
|
bob().into(),
|
|
15 * DOLLARS,
|
|
1 * CENTS,
|
|
)
|
|
),
|
|
topics: vec![],
|
|
},
|
|
EventRecord {
|
|
phase: Phase::ApplyExtrinsic(2),
|
|
event: Event::system(system::Event::ExtrinsicSuccess),
|
|
topics: vec![],
|
|
},
|
|
];
|
|
assert_eq!(System::events(), events);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn full_wasm_block_import_works() {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
let (block1, block2) = blocks();
|
|
|
|
WasmExecutor::new().call(&mut t, 8, COMPACT_CODE, "Core_execute_block", &block1.0).unwrap();
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
assert_eq!(Balances::total_balance(&alice()), 42 * DOLLARS - transfer_fee(&xt()));
|
|
assert_eq!(Balances::total_balance(&bob()), 169 * DOLLARS);
|
|
});
|
|
|
|
WasmExecutor::new().call(&mut t, 8, COMPACT_CODE, "Core_execute_block", &block2.0).unwrap();
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
assert_eq_error_rate!(
|
|
Balances::total_balance(&alice()),
|
|
32 * DOLLARS - 2 * transfer_fee(&xt()),
|
|
10_000
|
|
);
|
|
assert_eq_error_rate!(
|
|
Balances::total_balance(&bob()),
|
|
179 * DOLLARS - 1 * transfer_fee(&xt()),
|
|
10_000
|
|
);
|
|
});
|
|
}
|
|
|
|
const CODE_TRANSFER: &str = r#"
|
|
(module
|
|
;; ext_call(
|
|
;; callee_ptr: u32,
|
|
;; callee_len: u32,
|
|
;; gas: u64,
|
|
;; value_ptr: u32,
|
|
;; value_len: u32,
|
|
;; input_data_ptr: u32,
|
|
;; input_data_len: u32
|
|
;; ) -> u32
|
|
(import "env" "ext_call" (func $ext_call (param i32 i32 i64 i32 i32 i32 i32) (result i32)))
|
|
(import "env" "ext_scratch_size" (func $ext_scratch_size (result i32)))
|
|
(import "env" "ext_scratch_read" (func $ext_scratch_read (param i32 i32 i32)))
|
|
(import "env" "memory" (memory 1 1))
|
|
(func (export "deploy")
|
|
)
|
|
(func (export "call")
|
|
(block $fail
|
|
;; load and check the input data (which is stored in the scratch buffer).
|
|
;; fail if the input size is not != 4
|
|
(br_if $fail
|
|
(i32.ne
|
|
(i32.const 4)
|
|
(call $ext_scratch_size)
|
|
)
|
|
)
|
|
|
|
(call $ext_scratch_read
|
|
(i32.const 0)
|
|
(i32.const 0)
|
|
(i32.const 4)
|
|
)
|
|
|
|
|
|
(br_if $fail
|
|
(i32.ne
|
|
(i32.load8_u (i32.const 0))
|
|
(i32.const 0)
|
|
)
|
|
)
|
|
(br_if $fail
|
|
(i32.ne
|
|
(i32.load8_u (i32.const 1))
|
|
(i32.const 1)
|
|
)
|
|
)
|
|
(br_if $fail
|
|
(i32.ne
|
|
(i32.load8_u (i32.const 2))
|
|
(i32.const 2)
|
|
)
|
|
)
|
|
(br_if $fail
|
|
(i32.ne
|
|
(i32.load8_u (i32.const 3))
|
|
(i32.const 3)
|
|
)
|
|
)
|
|
|
|
(drop
|
|
(call $ext_call
|
|
(i32.const 4) ;; Pointer to "callee" address.
|
|
(i32.const 32) ;; Length of "callee" address.
|
|
(i64.const 0) ;; How much gas to devote for the execution. 0 = all.
|
|
(i32.const 36) ;; Pointer to the buffer with value to transfer
|
|
(i32.const 16) ;; Length of the buffer with value to transfer.
|
|
(i32.const 0) ;; Pointer to input data buffer address
|
|
(i32.const 0) ;; Length of input data buffer
|
|
)
|
|
)
|
|
|
|
(return)
|
|
)
|
|
unreachable
|
|
)
|
|
;; Destination AccountId to transfer the funds.
|
|
;; Represented by H256 (32 bytes long) in little endian.
|
|
(data (i32.const 4)
|
|
"\09\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00"
|
|
"\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00"
|
|
"\00\00\00\00"
|
|
)
|
|
;; Amount of value to transfer.
|
|
;; Represented by u128 (16 bytes long) in little endian.
|
|
(data (i32.const 36)
|
|
"\06\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00\00"
|
|
"\00\00"
|
|
)
|
|
)
|
|
"#;
|
|
|
|
#[test]
|
|
fn deploying_wasm_contract_should_work() {
|
|
let transfer_code = wabt::wat2wasm(CODE_TRANSFER).unwrap();
|
|
let transfer_ch = <Runtime as system::Trait>::Hashing::hash(&transfer_code);
|
|
|
|
let addr = <Runtime as contracts::Trait>::DetermineContractAddress::contract_address_for(
|
|
&transfer_ch,
|
|
&[],
|
|
&charlie(),
|
|
);
|
|
|
|
let b = construct_block(
|
|
&mut new_test_ext(COMPACT_CODE, false),
|
|
1,
|
|
GENESIS_HASH.into(),
|
|
vec![
|
|
CheckedExtrinsic {
|
|
signed: None,
|
|
function: Call::Timestamp(timestamp::Call::set(42 * 1000)),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(0, 0))),
|
|
function: Call::Contracts(
|
|
contracts::Call::put_code::<Runtime>(10_000, transfer_code)
|
|
),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(1, 0))),
|
|
function: Call::Contracts(
|
|
contracts::Call::create::<Runtime>(1 * DOLLARS, 10_000, transfer_ch, Vec::new())
|
|
),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(2, 0))),
|
|
function: Call::Contracts(
|
|
contracts::Call::call::<Runtime>(
|
|
indices::address::Address::Id(addr.clone()),
|
|
10,
|
|
10_000,
|
|
vec![0x00, 0x01, 0x02, 0x03]
|
|
)
|
|
),
|
|
},
|
|
]
|
|
);
|
|
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
WasmExecutor::new().call(&mut t, 8, COMPACT_CODE,"Core_execute_block", &b.0).unwrap();
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
// Verify that the contract constructor worked well and code of TRANSFER contract is actually deployed.
|
|
assert_eq!(
|
|
&contracts::ContractInfoOf::<Runtime>::get(addr)
|
|
.and_then(|c| c.get_alive())
|
|
.unwrap()
|
|
.code_hash,
|
|
&transfer_ch
|
|
);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn wasm_big_block_import_fails() {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
let result = WasmExecutor::new().call(
|
|
&mut t,
|
|
4,
|
|
COMPACT_CODE,
|
|
"Core_execute_block",
|
|
&block_with_size(42, 0, 120_000).0
|
|
);
|
|
assert!(result.is_err()); // Err(Wasmi(Trap(Trap { kind: Host(AllocatorOutOfSpace) })))
|
|
}
|
|
|
|
#[test]
|
|
fn native_big_block_import_succeeds() {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block_with_size(42, 0, 120_000).0,
|
|
true,
|
|
None,
|
|
).0.unwrap();
|
|
}
|
|
|
|
#[test]
|
|
fn native_big_block_import_fails_on_fallback() {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
assert!(
|
|
executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block_with_size(42, 0, 120_000).0,
|
|
false,
|
|
None,
|
|
).0.is_err()
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn panic_execution_gives_error() {
|
|
let mut t = TestExternalities::<Blake2Hasher>::new_with_code(BLOATY_CODE, (map![
|
|
blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
|
|
0_u128.encode()
|
|
},
|
|
twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
|
|
0_u128.encode()
|
|
},
|
|
twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => vec![0u8; 16],
|
|
blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => vec![0u8; 32]
|
|
], map![]));
|
|
|
|
let r = WasmExecutor::new()
|
|
.call(&mut t, 8, COMPACT_CODE, "Core_initialize_block", &vec![].and(&from_block_number(1u32)));
|
|
assert!(r.is_ok());
|
|
let r = WasmExecutor::new()
|
|
.call(&mut t, 8, COMPACT_CODE, "BlockBuilder_apply_extrinsic", &vec![].and(&xt())).unwrap();
|
|
let r = ApplyResult::decode(&mut &r[..]).unwrap();
|
|
assert_eq!(r, Err(ApplyError::CantPay));
|
|
}
|
|
|
|
#[test]
|
|
fn successful_execution_gives_ok() {
|
|
let mut t = TestExternalities::<Blake2Hasher>::new_with_code(COMPACT_CODE, (map![
|
|
blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
|
|
(111 * DOLLARS).encode()
|
|
},
|
|
twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
|
|
(111 * DOLLARS).encode()
|
|
},
|
|
twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => vec![0u8; 16],
|
|
blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => vec![0u8; 32]
|
|
], map![]));
|
|
|
|
let r = WasmExecutor::new()
|
|
.call(&mut t, 8, COMPACT_CODE, "Core_initialize_block", &vec![].and(&from_block_number(1u32)));
|
|
assert!(r.is_ok());
|
|
let r = WasmExecutor::new()
|
|
.call(&mut t, 8, COMPACT_CODE, "BlockBuilder_apply_extrinsic", &vec![].and(&xt())).unwrap();
|
|
let r = ApplyResult::decode(&mut &r[..]).unwrap();
|
|
assert_eq!(r, Ok(ApplyOutcome::Success));
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
assert_eq!(Balances::total_balance(&alice()), 42 * DOLLARS - 1 * transfer_fee(&xt()));
|
|
assert_eq!(Balances::total_balance(&bob()), 69 * DOLLARS);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn full_native_block_import_works_with_changes_trie() {
|
|
let block1 = changes_trie_block();
|
|
let block_data = block1.0;
|
|
let block = Block::decode(&mut &block_data[..]).unwrap();
|
|
|
|
let mut t = new_test_ext(COMPACT_CODE, true);
|
|
executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block.encode(),
|
|
true,
|
|
None,
|
|
).0.unwrap();
|
|
|
|
assert!(t.storage_changes_root(GENESIS_HASH.into()).unwrap().is_some());
|
|
}
|
|
|
|
#[test]
|
|
fn full_wasm_block_import_works_with_changes_trie() {
|
|
let block1 = changes_trie_block();
|
|
|
|
let mut t = new_test_ext(COMPACT_CODE, true);
|
|
WasmExecutor::new().call(&mut t, 8, COMPACT_CODE, "Core_execute_block", &block1.0).unwrap();
|
|
|
|
assert!(t.storage_changes_root(GENESIS_HASH.into()).unwrap().is_some());
|
|
}
|
|
|
|
#[test]
|
|
fn should_import_block_with_test_client() {
|
|
use node_testing::client::{ClientExt, TestClientBuilderExt, TestClientBuilder, consensus::BlockOrigin};
|
|
|
|
let client = TestClientBuilder::new().build();
|
|
let block1 = changes_trie_block();
|
|
let block_data = block1.0;
|
|
let block = node_primitives::Block::decode(&mut &block_data[..]).unwrap();
|
|
|
|
client.import(BlockOrigin::Own, block).unwrap();
|
|
}
|
|
|
|
|
|
#[test]
|
|
fn weight_multiplier_increases_and_decreases_on_big_weight() {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
|
|
let mut prev_multiplier = WeightMultiplier::default();
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
assert_eq!(System::next_weight_multiplier(), prev_multiplier);
|
|
});
|
|
|
|
let mut tt = new_test_ext(COMPACT_CODE, false);
|
|
|
|
// big one in terms of weight.
|
|
let block1 = construct_block(
|
|
&mut tt,
|
|
1,
|
|
GENESIS_HASH.into(),
|
|
vec![
|
|
CheckedExtrinsic {
|
|
signed: None,
|
|
function: Call::Timestamp(timestamp::Call::set(42 * 1000)),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(0, 0))),
|
|
function: Call::System(system::Call::fill_block()),
|
|
}
|
|
]
|
|
);
|
|
|
|
// small one in terms of weight.
|
|
let block2 = construct_block(
|
|
&mut tt,
|
|
2,
|
|
block1.1.clone(),
|
|
vec![
|
|
CheckedExtrinsic {
|
|
signed: None,
|
|
function: Call::Timestamp(timestamp::Call::set(52 * 1000)),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(1, 0))),
|
|
function: Call::System(system::Call::remark(vec![0; 1])),
|
|
}
|
|
]
|
|
);
|
|
|
|
println!("++ Block 1 size: {} / Block 2 size {}", block1.0.encode().len(), block2.0.encode().len());
|
|
|
|
// execute a big block.
|
|
executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block1.0,
|
|
true,
|
|
None,
|
|
).0.unwrap();
|
|
|
|
// weight multiplier is increased for next block.
|
|
runtime_io::with_externalities(&mut t, || {
|
|
let fm = System::next_weight_multiplier();
|
|
println!("After a big block: {:?} -> {:?}", prev_multiplier, fm);
|
|
assert!(fm > prev_multiplier);
|
|
prev_multiplier = fm;
|
|
});
|
|
|
|
// execute a big block.
|
|
executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block2.0,
|
|
true,
|
|
None,
|
|
).0.unwrap();
|
|
|
|
// weight multiplier is increased for next block.
|
|
runtime_io::with_externalities(&mut t, || {
|
|
let fm = System::next_weight_multiplier();
|
|
println!("After a small block: {:?} -> {:?}", prev_multiplier, fm);
|
|
assert!(fm < prev_multiplier);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn transaction_fee_is_correct_ultimate() {
|
|
// This uses the exact values of substrate-node.
|
|
//
|
|
// weight of transfer call as of now: 1_000_000
|
|
// if weight of the cheapest weight would be 10^7, this would be 10^9, which is:
|
|
// - 1 MILLICENTS in substrate node.
|
|
// - 1 milldot based on current polkadot runtime.
|
|
// (this baed on assigning 0.1 CENT to the cheapest tx with `weight = 100`)
|
|
let mut t = TestExternalities::<Blake2Hasher>::new_with_code(COMPACT_CODE, (map![
|
|
blake2_256(&<balances::FreeBalance<Runtime>>::key_for(alice())).to_vec() => {
|
|
(100 * DOLLARS).encode()
|
|
},
|
|
blake2_256(&<balances::FreeBalance<Runtime>>::key_for(bob())).to_vec() => {
|
|
(10 * DOLLARS).encode()
|
|
},
|
|
twox_128(<balances::TotalIssuance<Runtime>>::key()).to_vec() => {
|
|
(110 * DOLLARS).encode()
|
|
},
|
|
twox_128(<indices::NextEnumSet<Runtime>>::key()).to_vec() => vec![0u8; 16],
|
|
blake2_256(&<system::BlockHash<Runtime>>::key_for(0)).to_vec() => vec![0u8; 32]
|
|
], map![]));
|
|
|
|
let tip = 1_000_000;
|
|
let xt = sign(CheckedExtrinsic {
|
|
signed: Some((alice(), signed_extra(0, tip))),
|
|
function: Call::Balances(default_transfer_call()),
|
|
});
|
|
|
|
let r = executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_initialize_block",
|
|
&vec![].and(&from_block_number(1u32)),
|
|
true,
|
|
None,
|
|
).0;
|
|
|
|
assert!(r.is_ok());
|
|
let r = executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"BlockBuilder_apply_extrinsic",
|
|
&vec![].and(&xt.clone()),
|
|
true,
|
|
None,
|
|
).0;
|
|
assert!(r.is_ok());
|
|
|
|
runtime_io::with_externalities(&mut t, || {
|
|
assert_eq!(Balances::total_balance(&bob()), (10 + 69) * DOLLARS);
|
|
// Components deducted from alice's balances:
|
|
// - Weight fee
|
|
// - Length fee
|
|
// - Tip
|
|
// - Creation-fee of bob's account.
|
|
let mut balance_alice = (100 - 69) * DOLLARS;
|
|
|
|
let length_fee = TransactionBaseFee::get() +
|
|
TransactionByteFee::get() *
|
|
(xt.clone().encode().len() as Balance);
|
|
balance_alice -= length_fee;
|
|
|
|
let weight = default_transfer_call().get_dispatch_info().weight;
|
|
let weight_fee = WeightToFee::convert(weight);
|
|
|
|
// we know that weight to fee multiplier is effect-less in block 1.
|
|
assert_eq!(weight_fee as Balance, MILLICENTS);
|
|
balance_alice -= weight_fee;
|
|
|
|
balance_alice -= tip;
|
|
balance_alice -= TransferFee::get();
|
|
|
|
assert_eq!(Balances::total_balance(&alice()), balance_alice);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
#[should_panic]
|
|
#[cfg(feature = "stress-test")]
|
|
fn block_weight_capacity_report() {
|
|
// Just report how many transfer calls you could fit into a block. The number should at least
|
|
// be a few hundred (250 at the time of writing but can change over time). Runs until panic.
|
|
|
|
// execution ext.
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
// setup ext.
|
|
let mut tt = new_test_ext(COMPACT_CODE, false);
|
|
|
|
let factor = 50;
|
|
let mut time = 10;
|
|
let mut nonce: Index = 0;
|
|
let mut block_number = 1;
|
|
let mut previous_hash: Hash = GENESIS_HASH.into();
|
|
|
|
loop {
|
|
let num_transfers = block_number * factor;
|
|
let mut xts = (0..num_transfers).map(|i| CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(nonce + i as Index, 0))),
|
|
function: Call::Balances(balances::Call::transfer(bob().into(), 0)),
|
|
}).collect::<Vec<CheckedExtrinsic>>();
|
|
|
|
xts.insert(0, CheckedExtrinsic {
|
|
signed: None,
|
|
function: Call::Timestamp(timestamp::Call::set(time * 1000)),
|
|
});
|
|
|
|
// NOTE: this is super slow. Can probably be improved.
|
|
let block = construct_block(
|
|
&mut tt,
|
|
block_number,
|
|
previous_hash,
|
|
xts
|
|
);
|
|
|
|
let len = block.0.len();
|
|
print!(
|
|
"++ Executing block with {} transfers. Block size = {} bytes / {} kb / {} mb",
|
|
num_transfers,
|
|
len,
|
|
len / 1024,
|
|
len / 1024 / 1024,
|
|
);
|
|
|
|
let r = executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block.0,
|
|
true,
|
|
None,
|
|
).0;
|
|
|
|
println!(" || Result = {:?}", r);
|
|
assert!(r.is_ok());
|
|
|
|
previous_hash = block.1;
|
|
nonce += num_transfers;
|
|
time += 10;
|
|
block_number += 1;
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
#[should_panic]
|
|
#[cfg(feature = "stress-test")]
|
|
fn block_length_capacity_report() {
|
|
// Just report how big a block can get. Executes until panic. Should be ignored unless if
|
|
// manually inspected. The number should at least be a few megabytes (5 at the time of
|
|
// writing but can change over time).
|
|
|
|
// execution ext.
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
// setup ext.
|
|
let mut tt = new_test_ext(COMPACT_CODE, false);
|
|
|
|
let factor = 256 * 1024;
|
|
let mut time = 10;
|
|
let mut nonce: Index = 0;
|
|
let mut block_number = 1;
|
|
let mut previous_hash: Hash = GENESIS_HASH.into();
|
|
|
|
loop {
|
|
// NOTE: this is super slow. Can probably be improved.
|
|
let block = construct_block(
|
|
&mut tt,
|
|
block_number,
|
|
previous_hash,
|
|
vec![
|
|
CheckedExtrinsic {
|
|
signed: None,
|
|
function: Call::Timestamp(timestamp::Call::set(time * 1000)),
|
|
},
|
|
CheckedExtrinsic {
|
|
signed: Some((charlie(), signed_extra(nonce, 0))),
|
|
function: Call::System(system::Call::remark(vec![0u8; (block_number * factor) as usize])),
|
|
},
|
|
]
|
|
);
|
|
|
|
let len = block.0.len();
|
|
print!(
|
|
"++ Executing block with big remark. Block size = {} bytes / {} kb / {} mb",
|
|
len,
|
|
len / 1024,
|
|
len / 1024 / 1024,
|
|
);
|
|
|
|
let r = executor().call::<_, NeverNativeValue, fn() -> _>(
|
|
&mut t,
|
|
"Core_execute_block",
|
|
&block.0,
|
|
true,
|
|
None,
|
|
).0;
|
|
|
|
println!(" || Result = {:?}", r);
|
|
assert!(r.is_ok());
|
|
|
|
previous_hash = block.1;
|
|
nonce += 1;
|
|
time += 10;
|
|
block_number += 1;
|
|
}
|
|
}
|
|
|
|
#[cfg(feature = "benchmarks")]
|
|
mod benches {
|
|
use super::*;
|
|
use test::Bencher;
|
|
|
|
#[bench]
|
|
fn wasm_execute_block(b: &mut Bencher) {
|
|
let (block1, block2) = blocks();
|
|
|
|
b.iter(|| {
|
|
let mut t = new_test_ext(COMPACT_CODE, false);
|
|
WasmExecutor::new().call(&mut t, "Core_execute_block", &block1.0).unwrap();
|
|
WasmExecutor::new().call(&mut t, "Core_execute_block", &block2.0).unwrap();
|
|
});
|
|
}
|
|
}
|
|
}
|