#![warn(unused_extern_crates)]
use crate::Cli;
use codec::Encode;
use frame_benchmarking_cli::SUBSTRATE_REFERENCE_HARDWARE;
use frame_system_rpc_runtime_api::AccountNonceApi;
use futures::prelude::*;
use kitchensink_runtime::RuntimeApi;
use node_executor::ExecutorDispatch;
use node_primitives::Block;
use sc_client_api::{Backend, BlockBackend};
use sc_consensus_babe::{self, SlotProportion};
use sc_executor::NativeElseWasmExecutor;
use sc_network::{event::Event, NetworkEventStream, NetworkService};
use sc_network_common::sync::warp::WarpSyncParams;
use sc_network_sync::SyncingService;
use sc_service::{config::Configuration, error::Error as ServiceError, RpcHandlers, TaskManager};
use sc_statement_store::Store as StatementStore;
use sc_telemetry::{Telemetry, TelemetryWorker};
use sc_transaction_pool_api::OffchainTransactionPoolFactory;
use sp_api::ProvideRuntimeApi;
use sp_core::crypto::Pair;
use sp_runtime::{generic, traits::Block as BlockT, SaturatedConversion};
use std::sync::Arc;
pub type FullClient =
sc_service::TFullClient<Block, RuntimeApi, NativeElseWasmExecutor<ExecutorDispatch>>;
type FullBackend = sc_service::TFullBackend<Block>;
type FullSelectChain = sc_consensus::LongestChain<FullBackend, Block>;
type FullGrandpaBlockImport =
grandpa::GrandpaBlockImport<FullBackend, Block, FullClient, FullSelectChain>;
pub type TransactionPool = sc_transaction_pool::FullPool<Block, FullClient>;
const GRANDPA_JUSTIFICATION_PERIOD: u32 = 512;
pub fn fetch_nonce(client: &FullClient, account: sp_core::sr25519::Pair) -> u32 {
let best_hash = client.chain_info().best_hash;
client
.runtime_api()
.account_nonce(best_hash, account.public().into())
.expect("Fetching account nonce works; qed")
}
pub fn create_extrinsic(
client: &FullClient,
sender: sp_core::sr25519::Pair,
function: impl Into<kitchensink_runtime::RuntimeCall>,
nonce: Option<u32>,
) -> kitchensink_runtime::UncheckedExtrinsic {
let function = function.into();
let genesis_hash = client.block_hash(0).ok().flatten().expect("Genesis block exists; qed");
let best_hash = client.chain_info().best_hash;
let best_block = client.chain_info().best_number;
let nonce = nonce.unwrap_or_else(|| fetch_nonce(client, sender.clone()));
let period = kitchensink_runtime::BlockHashCount::get()
.checked_next_power_of_two()
.map(|c| c / 2)
.unwrap_or(2) as u64;
let tip = 0;
let extra: kitchensink_runtime::SignedExtra = (
frame_system::CheckNonZeroSender::<kitchensink_runtime::Runtime>::new(),
frame_system::CheckSpecVersion::<kitchensink_runtime::Runtime>::new(),
frame_system::CheckTxVersion::<kitchensink_runtime::Runtime>::new(),
frame_system::CheckGenesis::<kitchensink_runtime::Runtime>::new(),
frame_system::CheckEra::<kitchensink_runtime::Runtime>::from(generic::Era::mortal(
period,
best_block.saturated_into(),
)),
frame_system::CheckNonce::<kitchensink_runtime::Runtime>::from(nonce),
frame_system::CheckWeight::<kitchensink_runtime::Runtime>::new(),
pallet_asset_conversion_tx_payment::ChargeAssetTxPayment::<kitchensink_runtime::Runtime>::from(
tip, None,
),
);
let raw_payload = kitchensink_runtime::SignedPayload::from_raw(
function.clone(),
extra.clone(),
(
(),
kitchensink_runtime::VERSION.spec_version,
kitchensink_runtime::VERSION.transaction_version,
genesis_hash,
best_hash,
(),
(),
(),
),
);
let signature = raw_payload.using_encoded(|e| sender.sign(e));
kitchensink_runtime::UncheckedExtrinsic::new_signed(
function,
sp_runtime::AccountId32::from(sender.public()).into(),
kitchensink_runtime::Signature::Sr25519(signature),
extra,
)
}
pub fn new_partial(
config: &Configuration,
) -> Result<
sc_service::PartialComponents<
FullClient,
FullBackend,
FullSelectChain,
sc_consensus::DefaultImportQueue<Block>,
sc_transaction_pool::FullPool<Block, FullClient>,
(
impl Fn(
node_rpc::DenyUnsafe,
sc_rpc::SubscriptionTaskExecutor,
) -> Result<jsonrpsee::RpcModule<()>, sc_service::Error>,
(
sc_consensus_babe::BabeBlockImport<Block, FullClient, FullGrandpaBlockImport>,
grandpa::LinkHalf<Block, FullClient, FullSelectChain>,
sc_consensus_babe::BabeLink<Block>,
),
grandpa::SharedVoterState,
Option<Telemetry>,
Arc<StatementStore>,
),
>,
ServiceError,
> {
let telemetry = config
.telemetry_endpoints
.clone()
.filter(|x| !x.is_empty())
.map(|endpoints| -> Result<_, sc_telemetry::Error> {
let worker = TelemetryWorker::new(16)?;
let telemetry = worker.handle().new_telemetry(endpoints);
Ok((worker, telemetry))
})
.transpose()?;
let executor = sc_service::new_native_or_wasm_executor(&config);
let (client, backend, keystore_container, task_manager) =
sc_service::new_full_parts::<Block, RuntimeApi, _>(
config,
telemetry.as_ref().map(|(_, telemetry)| telemetry.handle()),
executor,
)?;
let client = Arc::new(client);
let telemetry = telemetry.map(|(worker, telemetry)| {
task_manager.spawn_handle().spawn("telemetry", None, worker.run());
telemetry
});
let select_chain = sc_consensus::LongestChain::new(backend.clone());
let transaction_pool = sc_transaction_pool::BasicPool::new_full(
config.transaction_pool.clone(),
config.role.is_authority().into(),
config.prometheus_registry(),
task_manager.spawn_essential_handle(),
client.clone(),
);
let (grandpa_block_import, grandpa_link) = grandpa::block_import(
client.clone(),
GRANDPA_JUSTIFICATION_PERIOD,
&(client.clone() as Arc<_>),
select_chain.clone(),
telemetry.as_ref().map(|x| x.handle()),
)?;
let justification_import = grandpa_block_import.clone();
let (block_import, babe_link) = sc_consensus_babe::block_import(
sc_consensus_babe::configuration(&*client)?,
grandpa_block_import,
client.clone(),
)?;
let slot_duration = babe_link.config().slot_duration();
let (import_queue, babe_worker_handle) =
sc_consensus_babe::import_queue(sc_consensus_babe::ImportQueueParams {
link: babe_link.clone(),
block_import: block_import.clone(),
justification_import: Some(Box::new(justification_import)),
client: client.clone(),
select_chain: select_chain.clone(),
create_inherent_data_providers: move |_, ()| async move {
let timestamp = sp_timestamp::InherentDataProvider::from_system_time();
let slot =
sp_consensus_babe::inherents::InherentDataProvider::from_timestamp_and_slot_duration(
*timestamp,
slot_duration,
);
Ok((slot, timestamp))
},
spawner: &task_manager.spawn_essential_handle(),
registry: config.prometheus_registry(),
telemetry: telemetry.as_ref().map(|x| x.handle()),
offchain_tx_pool_factory: OffchainTransactionPoolFactory::new(transaction_pool.clone()),
})?;
let import_setup = (block_import, grandpa_link, babe_link);
let statement_store = sc_statement_store::Store::new_shared(
&config.data_path,
Default::default(),
client.clone(),
keystore_container.local_keystore(),
config.prometheus_registry(),
&task_manager.spawn_handle(),
)
.map_err(|e| ServiceError::Other(format!("Statement store error: {:?}", e)))?;
let (rpc_extensions_builder, rpc_setup) = {
let (_, grandpa_link, _) = &import_setup;
let justification_stream = grandpa_link.justification_stream();
let shared_authority_set = grandpa_link.shared_authority_set().clone();
let shared_voter_state = grandpa::SharedVoterState::empty();
let shared_voter_state2 = shared_voter_state.clone();
let finality_proof_provider = grandpa::FinalityProofProvider::new_for_service(
backend.clone(),
Some(shared_authority_set.clone()),
);
let client = client.clone();
let pool = transaction_pool.clone();
let select_chain = select_chain.clone();
let keystore = keystore_container.keystore();
let chain_spec = config.chain_spec.cloned_box();
let rpc_backend = backend.clone();
let rpc_statement_store = statement_store.clone();
let rpc_extensions_builder = move |deny_unsafe, subscription_executor| {
let deps = node_rpc::FullDeps {
client: client.clone(),
pool: pool.clone(),
select_chain: select_chain.clone(),
chain_spec: chain_spec.cloned_box(),
deny_unsafe,
babe: node_rpc::BabeDeps {
keystore: keystore.clone(),
babe_worker_handle: babe_worker_handle.clone(),
},
grandpa: node_rpc::GrandpaDeps {
shared_voter_state: shared_voter_state.clone(),
shared_authority_set: shared_authority_set.clone(),
justification_stream: justification_stream.clone(),
subscription_executor,
finality_provider: finality_proof_provider.clone(),
},
statement_store: rpc_statement_store.clone(),
backend: rpc_backend.clone(),
};
node_rpc::create_full(deps).map_err(Into::into)
};
(rpc_extensions_builder, shared_voter_state2)
};
Ok(sc_service::PartialComponents {
client,
backend,
task_manager,
keystore_container,
select_chain,
import_queue,
transaction_pool,
other: (rpc_extensions_builder, import_setup, rpc_setup, telemetry, statement_store),
})
}
pub struct NewFullBase {
pub task_manager: TaskManager,
pub client: Arc<FullClient>,
pub network: Arc<NetworkService<Block, <Block as BlockT>::Hash>>,
pub sync: Arc<SyncingService<Block>>,
pub transaction_pool: Arc<TransactionPool>,
pub rpc_handlers: RpcHandlers,
}
pub fn new_full_base(
config: Configuration,
disable_hardware_benchmarks: bool,
with_startup_data: impl FnOnce(
&sc_consensus_babe::BabeBlockImport<Block, FullClient, FullGrandpaBlockImport>,
&sc_consensus_babe::BabeLink<Block>,
),
) -> Result<NewFullBase, ServiceError> {
let hwbench = (!disable_hardware_benchmarks)
.then_some(config.database.path().map(|database_path| {
let _ = std::fs::create_dir_all(&database_path);
sc_sysinfo::gather_hwbench(Some(database_path))
}))
.flatten();
let sc_service::PartialComponents {
client,
backend,
mut task_manager,
import_queue,
keystore_container,
select_chain,
transaction_pool,
other: (rpc_builder, import_setup, rpc_setup, mut telemetry, statement_store),
} = new_partial(&config)?;
let shared_voter_state = rpc_setup;
let auth_disc_publish_non_global_ips = config.network.allow_non_globals_in_dht;
let mut net_config = sc_network::config::FullNetworkConfiguration::new(&config.network);
let grandpa_protocol_name = grandpa::protocol_standard_name(
&client.block_hash(0).ok().flatten().expect("Genesis block exists; qed"),
&config.chain_spec,
);
net_config.add_notification_protocol(grandpa::grandpa_peers_set_config(
grandpa_protocol_name.clone(),
));
let statement_handler_proto = sc_network_statement::StatementHandlerPrototype::new(
client
.block_hash(0u32.into())
.ok()
.flatten()
.expect("Genesis block exists; qed"),
config.chain_spec.fork_id(),
);
net_config.add_notification_protocol(statement_handler_proto.set_config());
let warp_sync = Arc::new(grandpa::warp_proof::NetworkProvider::new(
backend.clone(),
import_setup.1.shared_authority_set().clone(),
Vec::default(),
));
let (network, system_rpc_tx, tx_handler_controller, network_starter, sync_service) =
sc_service::build_network(sc_service::BuildNetworkParams {
config: &config,
net_config,
client: client.clone(),
transaction_pool: transaction_pool.clone(),
spawn_handle: task_manager.spawn_handle(),
import_queue,
block_announce_validator_builder: None,
warp_sync_params: Some(WarpSyncParams::WithProvider(warp_sync)),
})?;
let role = config.role.clone();
let force_authoring = config.force_authoring;
let backoff_authoring_blocks =
Some(sc_consensus_slots::BackoffAuthoringOnFinalizedHeadLagging::default());
let name = config.network.node_name.clone();
let enable_grandpa = !config.disable_grandpa;
let prometheus_registry = config.prometheus_registry().cloned();
let enable_offchain_worker = config.offchain_worker.enabled;
let rpc_handlers = sc_service::spawn_tasks(sc_service::SpawnTasksParams {
config,
backend: backend.clone(),
client: client.clone(),
keystore: keystore_container.keystore(),
network: network.clone(),
rpc_builder: Box::new(rpc_builder),
transaction_pool: transaction_pool.clone(),
task_manager: &mut task_manager,
system_rpc_tx,
tx_handler_controller,
sync_service: sync_service.clone(),
telemetry: telemetry.as_mut(),
})?;
if let Some(hwbench) = hwbench {
sc_sysinfo::print_hwbench(&hwbench);
if !SUBSTRATE_REFERENCE_HARDWARE.check_hardware(&hwbench) && role.is_authority() {
log::warn!(
"⚠️ The hardware does not meet the minimal requirements for role 'Authority'."
);
}
if let Some(ref mut telemetry) = telemetry {
let telemetry_handle = telemetry.handle();
task_manager.spawn_handle().spawn(
"telemetry_hwbench",
None,
sc_sysinfo::initialize_hwbench_telemetry(telemetry_handle, hwbench),
);
}
}
let (block_import, grandpa_link, babe_link) = import_setup;
(with_startup_data)(&block_import, &babe_link);
if let sc_service::config::Role::Authority { .. } = &role {
let proposer = sc_basic_authorship::ProposerFactory::new(
task_manager.spawn_handle(),
client.clone(),
transaction_pool.clone(),
prometheus_registry.as_ref(),
telemetry.as_ref().map(|x| x.handle()),
);
let client_clone = client.clone();
let slot_duration = babe_link.config().slot_duration();
let babe_config = sc_consensus_babe::BabeParams {
keystore: keystore_container.keystore(),
client: client.clone(),
select_chain,
env: proposer,
block_import,
sync_oracle: sync_service.clone(),
justification_sync_link: sync_service.clone(),
create_inherent_data_providers: move |parent, ()| {
let client_clone = client_clone.clone();
async move {
let timestamp = sp_timestamp::InherentDataProvider::from_system_time();
let slot =
sp_consensus_babe::inherents::InherentDataProvider::from_timestamp_and_slot_duration(
*timestamp,
slot_duration,
);
let storage_proof =
sp_transaction_storage_proof::registration::new_data_provider(
&*client_clone,
&parent,
)?;
Ok((slot, timestamp, storage_proof))
}
},
force_authoring,
backoff_authoring_blocks,
babe_link,
block_proposal_slot_portion: SlotProportion::new(0.5),
max_block_proposal_slot_portion: None,
telemetry: telemetry.as_ref().map(|x| x.handle()),
};
let babe = sc_consensus_babe::start_babe(babe_config)?;
task_manager.spawn_essential_handle().spawn_blocking(
"babe-proposer",
Some("block-authoring"),
babe,
);
}
if role.is_authority() {
let authority_discovery_role =
sc_authority_discovery::Role::PublishAndDiscover(keystore_container.keystore());
let dht_event_stream =
network.event_stream("authority-discovery").filter_map(|e| async move {
match e {
Event::Dht(e) => Some(e),
_ => None,
}
});
let (authority_discovery_worker, _service) =
sc_authority_discovery::new_worker_and_service_with_config(
sc_authority_discovery::WorkerConfig {
publish_non_global_ips: auth_disc_publish_non_global_ips,
..Default::default()
},
client.clone(),
network.clone(),
Box::pin(dht_event_stream),
authority_discovery_role,
prometheus_registry.clone(),
);
task_manager.spawn_handle().spawn(
"authority-discovery-worker",
Some("networking"),
authority_discovery_worker.run(),
);
}
let keystore = if role.is_authority() { Some(keystore_container.keystore()) } else { None };
let grandpa_config = grandpa::Config {
gossip_duration: std::time::Duration::from_millis(333),
justification_generation_period: GRANDPA_JUSTIFICATION_PERIOD,
name: Some(name),
observer_enabled: false,
keystore,
local_role: role.clone(),
telemetry: telemetry.as_ref().map(|x| x.handle()),
protocol_name: grandpa_protocol_name,
};
if enable_grandpa {
let grandpa_config = grandpa::GrandpaParams {
config: grandpa_config,
link: grandpa_link,
network: network.clone(),
sync: Arc::new(sync_service.clone()),
telemetry: telemetry.as_ref().map(|x| x.handle()),
voting_rule: grandpa::VotingRulesBuilder::default().build(),
prometheus_registry: prometheus_registry.clone(),
shared_voter_state,
offchain_tx_pool_factory: OffchainTransactionPoolFactory::new(transaction_pool.clone()),
};
task_manager.spawn_essential_handle().spawn_blocking(
"grandpa-voter",
None,
grandpa::run_grandpa_voter(grandpa_config)?,
);
}
let statement_protocol_executor = {
let spawn_handle = task_manager.spawn_handle();
Box::new(move |fut| {
spawn_handle.spawn("network-statement-validator", Some("networking"), fut);
})
};
let statement_handler = statement_handler_proto.build(
network.clone(),
sync_service.clone(),
statement_store.clone(),
prometheus_registry.as_ref(),
statement_protocol_executor,
)?;
task_manager.spawn_handle().spawn(
"network-statement-handler",
Some("networking"),
statement_handler.run(),
);
if enable_offchain_worker {
task_manager.spawn_handle().spawn(
"offchain-workers-runner",
"offchain-work",
sc_offchain::OffchainWorkers::new(sc_offchain::OffchainWorkerOptions {
runtime_api_provider: client.clone(),
keystore: Some(keystore_container.keystore()),
offchain_db: backend.offchain_storage(),
transaction_pool: Some(OffchainTransactionPoolFactory::new(
transaction_pool.clone(),
)),
network_provider: network.clone(),
is_validator: role.is_authority(),
enable_http_requests: true,
custom_extensions: move |_| {
vec![Box::new(statement_store.clone().as_statement_store_ext()) as Box<_>]
},
})
.run(client.clone(), task_manager.spawn_handle())
.boxed(),
);
}
network_starter.start_network();
Ok(NewFullBase {
task_manager,
client,
network,
sync: sync_service,
transaction_pool,
rpc_handlers,
})
}
pub fn new_full(config: Configuration, cli: Cli) -> Result<TaskManager, ServiceError> {
let database_source = config.database.clone();
let task_manager = new_full_base(config, cli.no_hardware_benchmarks, |_, _| ())
.map(|NewFullBase { task_manager, .. }| task_manager)?;
sc_storage_monitor::StorageMonitorService::try_spawn(
cli.storage_monitor,
database_source,
&task_manager.spawn_essential_handle(),
)
.map_err(|e| ServiceError::Application(e.into()))?;
Ok(task_manager)
}
#[cfg(test)]
mod tests {
use crate::service::{new_full_base, NewFullBase};
use codec::Encode;
use kitchensink_runtime::{
constants::{currency::CENTS, time::SLOT_DURATION},
Address, BalancesCall, RuntimeCall, UncheckedExtrinsic,
};
use node_primitives::{Block, DigestItem, Signature};
use sc_client_api::BlockBackend;
use sc_consensus::{BlockImport, BlockImportParams, ForkChoiceStrategy};
use sc_consensus_babe::{BabeIntermediate, CompatibleDigestItem, INTERMEDIATE_KEY};
use sc_consensus_epochs::descendent_query;
use sc_keystore::LocalKeystore;
use sc_service_test::TestNetNode;
use sc_transaction_pool_api::{ChainEvent, MaintainedTransactionPool};
use sp_consensus::{BlockOrigin, Environment, Proposer};
use sp_core::crypto::Pair;
use sp_inherents::InherentDataProvider;
use sp_keyring::AccountKeyring;
use sp_keystore::KeystorePtr;
use sp_runtime::{
generic::{Digest, Era, SignedPayload},
key_types::BABE,
traits::{Block as BlockT, Header as HeaderT, IdentifyAccount, Verify},
RuntimeAppPublic,
};
use sp_timestamp;
use std::sync::Arc;
type AccountPublic = <Signature as Verify>::Signer;
#[test]
#[ignore]
fn test_sync() {
sp_tracing::try_init_simple();
let keystore_path = tempfile::tempdir().expect("Creates keystore path");
let keystore: KeystorePtr = LocalKeystore::open(keystore_path.path(), None)
.expect("Creates keystore")
.into();
let alice: sp_consensus_babe::AuthorityId = keystore
.sr25519_generate_new(BABE, Some("//Alice"))
.expect("Creates authority pair")
.into();
let chain_spec = crate::chain_spec::tests::integration_test_config_with_single_authority();
let mut slot = 1u64;
let bob = Arc::new(AccountKeyring::Bob.pair());
let charlie = Arc::new(AccountKeyring::Charlie.pair());
let mut index = 0;
sc_service_test::sync(
chain_spec,
|config| {
let mut setup_handles = None;
let NewFullBase { task_manager, client, network, sync, transaction_pool, .. } =
new_full_base(
config,
false,
|block_import: &sc_consensus_babe::BabeBlockImport<Block, _, _>,
babe_link: &sc_consensus_babe::BabeLink<Block>| {
setup_handles = Some((block_import.clone(), babe_link.clone()));
},
)?;
let node = sc_service_test::TestNetComponents::new(
task_manager,
client,
network,
sync,
transaction_pool,
);
Ok((node, setup_handles.unwrap()))
},
|service, &mut (ref mut block_import, ref babe_link)| {
let parent_hash = service.client().chain_info().best_hash;
let parent_header = service.client().header(parent_hash).unwrap().unwrap();
let parent_number = *parent_header.number();
futures::executor::block_on(service.transaction_pool().maintain(
ChainEvent::NewBestBlock { hash: parent_header.hash(), tree_route: None },
));
let mut proposer_factory = sc_basic_authorship::ProposerFactory::new(
service.spawn_handle(),
service.client(),
service.transaction_pool(),
None,
None,
);
let mut digest = Digest::default();
let (babe_pre_digest, epoch_descriptor) = loop {
let epoch_descriptor = babe_link
.epoch_changes()
.shared_data()
.epoch_descriptor_for_child_of(
descendent_query(&*service.client()),
&parent_hash,
parent_number,
slot.into(),
)
.unwrap()
.unwrap();
let epoch = babe_link
.epoch_changes()
.shared_data()
.epoch_data(&epoch_descriptor, |slot| {
sc_consensus_babe::Epoch::genesis(babe_link.config(), slot)
})
.unwrap();
if let Some(babe_pre_digest) =
sc_consensus_babe::authorship::claim_slot(slot.into(), &epoch, &keystore)
.map(|(digest, _)| digest)
{
break (babe_pre_digest, epoch_descriptor)
}
slot += 1;
};
let inherent_data = futures::executor::block_on(
(
sp_timestamp::InherentDataProvider::new(
std::time::Duration::from_millis(SLOT_DURATION * slot).into(),
),
sp_consensus_babe::inherents::InherentDataProvider::new(slot.into()),
)
.create_inherent_data(),
)
.expect("Creates inherent data");
digest.push(<DigestItem as CompatibleDigestItem>::babe_pre_digest(babe_pre_digest));
let new_block = futures::executor::block_on(async move {
let proposer = proposer_factory.init(&parent_header).await;
proposer
.unwrap()
.propose(inherent_data, digest, std::time::Duration::from_secs(1), None)
.await
})
.expect("Error making test block")
.block;
let (new_header, new_body) = new_block.deconstruct();
let pre_hash = new_header.hash();
let to_sign = pre_hash.encode();
let signature = keystore
.sr25519_sign(sp_consensus_babe::AuthorityId::ID, alice.as_ref(), &to_sign)
.unwrap()
.unwrap();
let item = <DigestItem as CompatibleDigestItem>::babe_seal(signature.into());
slot += 1;
let mut params = BlockImportParams::new(BlockOrigin::File, new_header);
params.post_digests.push(item);
params.body = Some(new_body);
params.insert_intermediate(
INTERMEDIATE_KEY,
BabeIntermediate::<Block> { epoch_descriptor },
);
params.fork_choice = Some(ForkChoiceStrategy::LongestChain);
futures::executor::block_on(block_import.import_block(params))
.expect("error importing test block");
},
|service, _| {
let amount = 5 * CENTS;
let to: Address = AccountPublic::from(bob.public()).into_account().into();
let from: Address = AccountPublic::from(charlie.public()).into_account().into();
let genesis_hash = service.client().block_hash(0).unwrap().unwrap();
let best_hash = service.client().chain_info().best_hash;
let (spec_version, transaction_version) = {
let version = service.client().runtime_version_at(best_hash).unwrap();
(version.spec_version, version.transaction_version)
};
let signer = charlie.clone();
let function = RuntimeCall::Balances(BalancesCall::transfer_allow_death {
dest: to.into(),
value: amount,
});
let check_non_zero_sender = frame_system::CheckNonZeroSender::new();
let check_spec_version = frame_system::CheckSpecVersion::new();
let check_tx_version = frame_system::CheckTxVersion::new();
let check_genesis = frame_system::CheckGenesis::new();
let check_era = frame_system::CheckEra::from(Era::Immortal);
let check_nonce = frame_system::CheckNonce::from(index);
let check_weight = frame_system::CheckWeight::new();
let tx_payment =
pallet_asset_conversion_tx_payment::ChargeAssetTxPayment::from(0, None);
let extra = (
check_non_zero_sender,
check_spec_version,
check_tx_version,
check_genesis,
check_era,
check_nonce,
check_weight,
tx_payment,
);
let raw_payload = SignedPayload::from_raw(
function,
extra,
((), spec_version, transaction_version, genesis_hash, genesis_hash, (), (), ()),
);
let signature = raw_payload.using_encoded(|payload| signer.sign(payload));
let (function, extra, _) = raw_payload.deconstruct();
index += 1;
UncheckedExtrinsic::new_signed(function, from.into(), signature.into(), extra)
.into()
},
);
}
#[test]
#[ignore]
fn test_consensus() {
sp_tracing::try_init_simple();
sc_service_test::consensus(
crate::chain_spec::tests::integration_test_config_with_two_authorities(),
|config| {
let NewFullBase { task_manager, client, network, sync, transaction_pool, .. } =
new_full_base(config, false, |_, _| ())?;
Ok(sc_service_test::TestNetComponents::new(
task_manager,
client,
network,
sync,
transaction_pool,
))
},
vec!["//Alice".into(), "//Bob".into()],
)
}
}