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// Copyright 2021 Parity Technologies (UK) Ltd.
// This file is part of Polkadot.
// Polkadot is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Polkadot is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
//! # Polkadot Staking Miner.
//!
//! Simple bot capable of monitoring a polkadot (and cousins) chain and submitting solutions to the
//! `pallet-election-provider-multi-phase`. See `--help` for more details.
//!
//! # Implementation Notes:
//!
//! - First draft: Be aware that this is the first draft and there might be bugs, or undefined
//! behaviors. Don't attach this bot to an account with lots of funds.
//! - Quick to crash: The bot is written so that it only continues to work if everything goes well.
//! In case of any failure (RPC, logic, IO), it will crash. This was a decision to simplify the
//! development. It is intended to run this bot with a `restart = true` way, so that it reports it
//! crash, but resumes work thereafter.
mod dry_run;
mod emergency_solution;
mod monitor;
mod prelude;
mod rpc_helpers;
mod signer;
pub(crate) use prelude::*;
pub(crate) use signer::get_account_info;
use frame_election_provider_support::NposSolver;
use frame_support::traits::Get;
use jsonrpsee_ws_client::{WsClient, WsClientBuilder};
use remote_externalities::{Builder, Mode, OnlineConfig};
use sp_npos_elections::ExtendedBalance;
use sp_runtime::traits::Block as BlockT;
use structopt::StructOpt;
pub(crate) enum AnyRuntime {
Polkadot,
Kusama,
Westend,
}
pub(crate) static mut RUNTIME: AnyRuntime = AnyRuntime::Polkadot;
macro_rules! construct_runtime_prelude {
($runtime:ident) => { paste::paste! {
#[allow(unused_import)]
pub(crate) mod [<$runtime _runtime_exports>] {
pub(crate) use crate::prelude::EPM;
pub(crate) use [<$runtime _runtime>]::*;
pub(crate) use crate::monitor::[<monitor_cmd_ $runtime>] as monitor_cmd;
pub(crate) use crate::dry_run::[<dry_run_cmd_ $runtime>] as dry_run_cmd;
pub(crate) use crate::emergency_solution::[<emergency_solution_cmd_ $runtime>] as emergency_solution_cmd;
pub(crate) use private::{[<create_uxt_ $runtime>] as create_uxt};
mod private {
use super::*;
pub(crate) fn [<create_uxt_ $runtime>](
raw_solution: EPM::RawSolution<EPM::SolutionOf<Runtime>>,
witness: u32,
signer: crate::signer::Signer,
nonce: crate::prelude::Index,
tip: crate::prelude::Balance,
era: sp_runtime::generic::Era,
) -> UncheckedExtrinsic {
use codec::Encode as _;
use sp_core::Pair as _;
use sp_runtime::traits::StaticLookup as _;
let crate::signer::Signer { account, pair, .. } = signer;
let local_call = EPMCall::<Runtime>::submit { raw_solution: Box::new(raw_solution), num_signed_submissions: witness };
let call: Call = <EPMCall<Runtime> as std::convert::TryInto<Call>>::try_into(local_call)
.expect("election provider pallet must exist in the runtime, thus \
inner call can be converted, qed."
);
let extra: SignedExtra = crate::[<signed_ext_builder_ $runtime>](nonce, tip, era);
let raw_payload = SignedPayload::new(call, extra).expect("creating signed payload infallible; qed.");
let signature = raw_payload.using_encoded(|payload| {
pair.clone().sign(payload)
});
let (call, extra, _) = raw_payload.deconstruct();
let address = <Runtime as frame_system::Config>::Lookup::unlookup(account.clone());
let extrinsic = UncheckedExtrinsic::new_signed(call, address, signature.into(), extra);
log::debug!(
target: crate::LOG_TARGET, "constructed extrinsic {} with length {}",
sp_core::hexdisplay::HexDisplay::from(&extrinsic.encode()),
extrinsic.encode().len(),
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);
extrinsic
}
}
}}
};
}
// NOTE: we might be able to use some code from the bridges repo here.
fn signed_ext_builder_polkadot(
nonce: Index,
tip: Balance,
era: sp_runtime::generic::Era,
) -> polkadot_runtime_exports::SignedExtra {
use polkadot_runtime_exports::Runtime;
(
frame_system::CheckSpecVersion::<Runtime>::new(),
frame_system::CheckTxVersion::<Runtime>::new(),
frame_system::CheckGenesis::<Runtime>::new(),
frame_system::CheckMortality::<Runtime>::from(era),
frame_system::CheckNonce::<Runtime>::from(nonce),
frame_system::CheckWeight::<Runtime>::new(),
pallet_transaction_payment::ChargeTransactionPayment::<Runtime>::from(tip),
runtime_common::claims::PrevalidateAttests::<Runtime>::new(),
)
}
fn signed_ext_builder_kusama(
nonce: Index,
tip: Balance,
era: sp_runtime::generic::Era,
) -> kusama_runtime_exports::SignedExtra {
use kusama_runtime_exports::Runtime;
(
frame_system::CheckSpecVersion::<Runtime>::new(),
frame_system::CheckTxVersion::<Runtime>::new(),
frame_system::CheckGenesis::<Runtime>::new(),
frame_system::CheckMortality::<Runtime>::from(era),
frame_system::CheckNonce::<Runtime>::from(nonce),
frame_system::CheckWeight::<Runtime>::new(),
pallet_transaction_payment::ChargeTransactionPayment::<Runtime>::from(tip),
)
}
fn signed_ext_builder_westend(
nonce: Index,
tip: Balance,
era: sp_runtime::generic::Era,
) -> westend_runtime_exports::SignedExtra {
use westend_runtime_exports::Runtime;
(
frame_system::CheckSpecVersion::<Runtime>::new(),
frame_system::CheckTxVersion::<Runtime>::new(),
frame_system::CheckGenesis::<Runtime>::new(),
frame_system::CheckMortality::<Runtime>::from(era),
frame_system::CheckNonce::<Runtime>::from(nonce),
frame_system::CheckWeight::<Runtime>::new(),
pallet_transaction_payment::ChargeTransactionPayment::<Runtime>::from(tip),
)
}
construct_runtime_prelude!(polkadot);
construct_runtime_prelude!(kusama);
construct_runtime_prelude!(westend);
// NOTE: this is no longer used extensively, most of the per-runtime stuff us delegated to
// `construct_runtime_prelude` and macro's the import directly from it. A part of the code is also
// still generic over `T`. My hope is to still make everything generic over a `Runtime`, but sadly
// that is not currently possible as each runtime has its unique `Call`, and all Calls are not
// sharing any generic trait. In other words, to create the `UncheckedExtrinsic` of each chain, you
// need the concrete `Call` of that chain as well.
#[macro_export]
macro_rules! any_runtime {
($($code:tt)*) => {
unsafe {
match $crate::RUNTIME {
$crate::AnyRuntime::Polkadot => {
use $crate::polkadot_runtime_exports::*;
$($code)*
},
$crate::AnyRuntime::Kusama => {
use $crate::kusama_runtime_exports::*;
$($code)*
},
$crate::AnyRuntime::Westend => {
use $crate::westend_runtime_exports::*;
$($code)*
}
}
}
}
}
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/// Same as [`any_runtime`], but instead of returning a `Result`, this simply returns `()`. Useful
/// for situations where the result is not useful and un-ergonomic to handle.
#[macro_export]
macro_rules! any_runtime_unit {
($($code:tt)*) => {
unsafe {
match $crate::RUNTIME {
$crate::AnyRuntime::Polkadot => {
#[allow(unused)]
use $crate::polkadot_runtime_exports::*;
let _ = $($code)*;
},
$crate::AnyRuntime::Kusama => {
#[allow(unused)]
use $crate::kusama_runtime_exports::*;
let _ = $($code)*;
},
$crate::AnyRuntime::Westend => {
#[allow(unused)]
use $crate::westend_runtime_exports::*;
let _ = $($code)*;
}
}
}
}
}
#[derive(frame_support::DebugNoBound, thiserror::Error)]
enum Error<T: EPM::Config> {
JsonRpsee(#[from] jsonrpsee_ws_client::types::Error),
RpcHelperError(#[from] rpc_helpers::RpcHelperError),
Codec(#[from] codec::Error),
Crypto(sp_core::crypto::SecretStringError),
RemoteExternalities(&'static str),
PalletMiner(EPM::unsigned::MinerError<T>),
PalletElection(EPM::ElectionError<T>),
PalletFeasibility(EPM::FeasibilityError),
AccountDoesNotExists,
IncorrectPhase,
AlreadySubmitted,
impl<T: EPM::Config> From<sp_core::crypto::SecretStringError> for Error<T> {
fn from(e: sp_core::crypto::SecretStringError) -> Error<T> {
impl<T: EPM::Config> From<EPM::unsigned::MinerError<T>> for Error<T> {
fn from(e: EPM::unsigned::MinerError<T>) -> Error<T> {
impl<T: EPM::Config> From<EPM::ElectionError<T>> for Error<T> {
fn from(e: EPM::ElectionError<T>) -> Error<T> {
impl<T: EPM::Config> From<EPM::FeasibilityError> for Error<T> {
fn from(e: EPM::FeasibilityError) -> Error<T> {
impl<T: EPM::Config> std::fmt::Display for Error<T> {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
<Error<T> as std::fmt::Debug>::fmt(self, f)
}
}
#[derive(Debug, Clone, StructOpt)]
enum Command {
/// Monitor for the phase being signed, then compute.
Monitor(MonitorConfig),
/// Just compute a solution now, and don't submit it.
DryRun(DryRunConfig),
/// Provide a solution that can be submitted to the chain as an emergency response.
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#[derive(Debug, Clone, StructOpt)]
enum Solvers {
SeqPhragmen {
#[structopt(long, default_value = "10")]
iterations: usize,
},
PhragMMS {
#[structopt(long, default_value = "10")]
iterations: usize,
},
}
/// Mine a solution with the given `solver`.
fn mine_with<T>(
solver: &Solvers,
ext: &mut Ext,
) -> Result<(EPM::RawSolution<EPM::SolutionOf<T>>, u32), Error<T>>
where
T: EPM::Config,
T::Solver: NposSolver<Error = sp_npos_elections::Error>,
{
use frame_election_provider_support::{PhragMMS, SequentialPhragmen};
match solver {
Solvers::SeqPhragmen { iterations } => {
BalanceIterations::set(*iterations);
mine_unchecked::<
T,
SequentialPhragmen<
<T as frame_system::Config>::AccountId,
sp_runtime::Perbill,
Balancing,
>,
>(ext, false)
},
Solvers::PhragMMS { iterations } => {
BalanceIterations::set(*iterations);
mine_unchecked::<
T,
PhragMMS<<T as frame_system::Config>::AccountId, sp_runtime::Perbill, Balancing>,
>(ext, false)
},
}
}
frame_support::parameter_types! {
/// Number of balancing iterations for a solution algorithm. Set based on the [`Solvers`] CLI
/// config.
pub static BalanceIterations: usize = 10;
pub static Balancing: Option<(usize, ExtendedBalance)> = Some((BalanceIterations::get(), 0));
}
#[derive(Debug, Clone, StructOpt)]
struct MonitorConfig {
/// They type of event to listen to.
///
/// Typically, finalized is safer and there is no chance of anything going wrong, but it can be
/// slower. It is recommended to use finalized, if the duration of the signed phase is longer
/// than the the finality delay.
#[structopt(long, default_value = "head", possible_values = &["head", "finalized"])]
listen: String,
#[structopt(subcommand)]
solver: Solvers,
}
#[derive(Debug, Clone, StructOpt)]
struct DryRunConfig {
/// The block hash at which scraping happens. If none is provided, the latest head is used.
#[structopt(long)]
at: Option<Hash>,
#[structopt(subcommand)]
solver: Solvers,
}
#[derive(Debug, Clone, StructOpt)]
struct SharedConfig {
#[structopt(long, short, default_value = DEFAULT_URI, env = "URI")]
/// The seed of a funded account in hex.
/// WARNING: Don't use an account with a large stash for this. Based on how the bot is
/// configured, it might re-try and lose funds through transaction fees/deposits.
#[structopt(long, short, env = "SEED")]
seed: String,
}
#[derive(Debug, Clone, StructOpt)]
struct Opt {
#[structopt(flatten)]
shared: SharedConfig,
#[structopt(subcommand)]
command: Command,
}
/// Build the Ext at hash with all the data of `ElectionProviderMultiPhase` and any additional
/// pallets.
async fn create_election_ext<T: EPM::Config, B: BlockT>(
uri: String,
at: Option<B::Hash>,
) -> Result<Ext, Error<T>> {
use frame_support::{storage::generator::StorageMap, traits::PalletInfo};
let mut modules = vec![<T as frame_system::Config>::PalletInfo::name::<EPM::Pallet<T>>()
.expect("Pallet always has name; qed.")
.to_string()];
modules.extend(additional);
Builder::<B>::new()
.mode(Mode::Online(OnlineConfig {
transport: uri.into(),
at,
.inject_hashed_prefix(&<frame_system::BlockHash<T>>::prefix_hash())
.inject_hashed_key(&[twox_128(b"System"), twox_128(b"Number")].concat())
.build()
.await
.map_err(|why| Error::RemoteExternalities(why))
}
/// Compute the election at the given block number. It expects to NOT be `Phase::Off`. In other
/// words, the snapshot must exists on the given externalities.
fn mine_unchecked<T, S>(
) -> Result<(EPM::RawSolution<EPM::SolutionOf<T>>, u32), Error<T>>
where
T: EPM::Config,
S: NposSolver<
Error = <<T as EPM::Config>::Solver as NposSolver>::Error,
AccountId = <<T as EPM::Config>::Solver as NposSolver>::AccountId,
>,
{
let (solution, _) =
<EPM::Pallet<T>>::mine_solution::<S>().map_err::<Error<T>, _>(Into::into)?;
let _ = <EPM::Pallet<T>>::feasibility_check(
solution.clone(),
EPM::ElectionCompute::Signed,
)?;
}
let witness = <EPM::SignedSubmissions<T>>::decode_len().unwrap_or_default();
Ok((solution, witness as u32))
})
}
#[allow(unused)]
fn mine_dpos<T: EPM::Config>(ext: &mut Ext) -> Result<(), Error<T>> {
ext.execute_with(|| {
use std::collections::BTreeMap;
use EPM::RoundSnapshot;
let RoundSnapshot { voters, .. } = EPM::Snapshot::<T>::get().unwrap();
let desired_targets = EPM::DesiredTargets::<T>::get().unwrap();
let mut candidates_and_backing = BTreeMap::<T::AccountId, u128>::new();
voters.into_iter().for_each(|(who, stake, targets)| {
if targets.is_empty() {
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}
let share: u128 = (stake as u128) / (targets.len() as u128);
for target in targets {
*candidates_and_backing.entry(target.clone()).or_default() += share
}
});
let mut candidates_and_backing =
candidates_and_backing.into_iter().collect::<Vec<(_, _)>>();
candidates_and_backing.sort_by_key(|(_, total_stake)| *total_stake);
let winners = candidates_and_backing
.into_iter()
.rev()
.take(desired_targets as usize)
.collect::<Vec<_>>();
let score = {
let min_staker = *winners.last().map(|(_, stake)| stake).unwrap();
let sum_stake = winners.iter().fold(0u128, |acc, (_, stake)| acc + stake);
let sum_squared = winners.iter().fold(0u128, |acc, (_, stake)| acc + stake);
[min_staker, sum_stake, sum_squared]
};
println!("mined a dpos-like solution with score = {:?}", score);
Ok(())
})
}
pub(crate) async fn check_versions<T: frame_system::Config + EPM::Config>(
client: &WsClient,
print: bool,
) -> Result<(), Error<T>> {
let linked_version = T::Version::get();
let on_chain_version = rpc_helpers::rpc::<sp_version::RuntimeVersion>(
client,
"state_getRuntimeVersion",
params! {},
)
.await
.expect("runtime version RPC should always work; qed");
if print {
log::info!(target: LOG_TARGET, "linked version {:?}", linked_version);
log::info!(target: LOG_TARGET, "on-chain version {:?}", on_chain_version);
}
if linked_version != on_chain_version {
log::error!(
target: LOG_TARGET,
"VERSION MISMATCH: any transaction will fail with bad-proof"
);
Err(Error::VersionMismatch)
} else {
Ok(())
}
}
env_logger::Builder::from_default_env()
.format_module_path(true)
.format_level(true)
.init();
let Opt { shared, command } = Opt::from_args();
log::debug!(target: LOG_TARGET, "attempting to connect to {:?}", shared.uri);
let client = loop {
let maybe_client = WsClientBuilder::default()
.connection_timeout(std::time::Duration::new(20, 0))
.max_request_body_size(u32::MAX)
.build(&shared.uri)
.await;
match maybe_client {
Ok(client) => break client,
Err(why) => {
log::warn!(
target: LOG_TARGET,
"failed to connect to client due to {:?}, retrying soon..",
why
);
std::thread::sleep(std::time::Duration::from_millis(2500));
}
};
let chain = rpc_helpers::rpc::<String>(&client, "system_chain", params! {})
.await
.expect("system_chain infallible; qed.");
match chain.to_lowercase().as_str() {
"polkadot" | "development" => {
sp_core::crypto::set_default_ss58_version(
sp_core::crypto::Ss58AddressFormat::PolkadotAccount,
);
sub_tokens::dynamic::set_name("DOT");
sub_tokens::dynamic::set_decimal_points(10_000_000_000);
// safety: this program will always be single threaded, thus accessing global static is
// safe.
unsafe {
RUNTIME = AnyRuntime::Polkadot;
}
"kusama" | "kusama-dev" => {
sp_core::crypto::set_default_ss58_version(
sp_core::crypto::Ss58AddressFormat::KusamaAccount,
);
sub_tokens::dynamic::set_name("KSM");
sub_tokens::dynamic::set_decimal_points(1_000_000_000_000);
// safety: this program will always be single threaded, thus accessing global static is
// safe.
unsafe {
RUNTIME = AnyRuntime::Kusama;
}
"westend" => {
sp_core::crypto::set_default_ss58_version(
sp_core::crypto::Ss58AddressFormat::PolkadotAccount,
);
sub_tokens::dynamic::set_name("WND");
sub_tokens::dynamic::set_decimal_points(1_000_000_000_000);
// safety: this program will always be single threaded, thus accessing global static is
// safe.
unsafe {
RUNTIME = AnyRuntime::Westend;
}
_ => {
eprintln!("unexpected chain: {:?}", chain);
}
log::info!(target: LOG_TARGET, "connected to chain {:?}", chain);
any_runtime_unit! {
check_versions::<Runtime>(&client, true).await
};
signer::signer_uri_from_string::<Runtime>(&shared.seed, &client)
.await
.expect("Provided account is invalid, terminating.")
};
let outcome = any_runtime! {
match command.clone() {
Command::Monitor(c) => monitor_cmd(&client, shared, c, signer_account).await
.map_err(|e| {
log::error!(target: LOG_TARGET, "Monitor error: {:?}", e);
}),
Command::DryRun(c) => dry_run_cmd(&client, shared, c, signer_account).await
.map_err(|e| {
log::error!(target: LOG_TARGET, "DryRun error: {:?}", e);
}),
Command::EmergencySolution => emergency_solution_cmd(shared.clone()).await
.map_err(|e| {
log::error!(target: LOG_TARGET, "EmergencySolution error: {:?}", e);
}),
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}
};
log::info!(target: LOG_TARGET, "round of execution finished. outcome = {:?}", outcome);
}
#[cfg(test)]
mod tests {
use super::*;
fn get_version<T: frame_system::Config>() -> sp_version::RuntimeVersion {
T::Version::get()
}
#[test]
fn any_runtime_works() {
unsafe {
RUNTIME = AnyRuntime::Polkadot;
}
let polkadot_version = any_runtime! { get_version::<Runtime>() };
unsafe {
RUNTIME = AnyRuntime::Kusama;
}
let kusama_version = any_runtime! { get_version::<Runtime>() };
assert_eq!(polkadot_version.spec_name, "polkadot".into());
assert_eq!(kusama_version.spec_name, "kusama".into());
}
}