Files
pezkuwi-subxt/polkadot/node/test/service/src/lib.rs
T
Gavin Wood fd5f9292f5 FRAME: Create TransactionExtension as a replacement for SignedExtension (#2280)
Closes #2160

First part of [Extrinsic
Horizon](https://github.com/paritytech/polkadot-sdk/issues/2415)

Introduces a new trait `TransactionExtension` to replace
`SignedExtension`. Introduce the idea of transactions which obey the
runtime's extensions and have according Extension data (né Extra data)
yet do not have hard-coded signatures.

Deprecate the terminology of "Unsigned" when used for
transactions/extrinsics owing to there now being "proper" unsigned
transactions which obey the extension framework and "old-style" unsigned
which do not. Instead we have __*General*__ for the former and
__*Bare*__ for the latter. (Ultimately, the latter will be phased out as
a type of transaction, and Bare will only be used for Inherents.)

Types of extrinsic are now therefore:
- Bare (no hardcoded signature, no Extra data; used to be known as
"Unsigned")
- Bare transactions (deprecated): Gossiped, validated with
`ValidateUnsigned` (deprecated) and the `_bare_compat` bits of
`TransactionExtension` (deprecated).
  - Inherents: Not gossiped, validated with `ProvideInherent`.
- Extended (Extra data): Gossiped, validated via `TransactionExtension`.
  - Signed transactions (with a hardcoded signature).
  - General transactions (without a hardcoded signature).

`TransactionExtension` differs from `SignedExtension` because:
- A signature on the underlying transaction may validly not be present.
- It may alter the origin during validation.
- `pre_dispatch` is renamed to `prepare` and need not contain the checks
present in `validate`.
- `validate` and `prepare` is passed an `Origin` rather than a
`AccountId`.
- `validate` may pass arbitrary information into `prepare` via a new
user-specifiable type `Val`.
- `AdditionalSigned`/`additional_signed` is renamed to
`Implicit`/`implicit`. It is encoded *for the entire transaction* and
passed in to each extension as a new argument to `validate`. This
facilitates the ability of extensions to acts as underlying crypto.

There is a new `DispatchTransaction` trait which contains only default
function impls and is impl'ed for any `TransactionExtension` impler. It
provides several utility functions which reduce some of the tedium from
using `TransactionExtension` (indeed, none of its regular functions
should now need to be called directly).

Three transaction version discriminator ("versions") are now
permissible:
- 0b000000100: Bare (used to be called "Unsigned"): contains Signature
or Extra (extension data). After bare transactions are no longer
supported, this will strictly identify an Inherents only.
- 0b100000100: Old-school "Signed" Transaction: contains Signature and
Extra (extension data).
- 0b010000100: New-school "General" Transaction: contains Extra
(extension data), but no Signature.

For the New-school General Transaction, it becomes trivial for authors
to publish extensions to the mechanism for authorizing an Origin, e.g.
through new kinds of key-signing schemes, ZK proofs, pallet state,
mutations over pre-authenticated origins or any combination of the
above.

## Code Migration

### NOW: Getting it to build

Wrap your `SignedExtension`s in `AsTransactionExtension`. This should be
accompanied by renaming your aggregate type in line with the new
terminology. E.g. Before:

```rust
/// The SignedExtension to the basic transaction logic.
pub type SignedExtra = (
	/* snip */
	MySpecialSignedExtension,
);
/// Unchecked extrinsic type as expected by this runtime.
pub type UncheckedExtrinsic =
	generic::UncheckedExtrinsic<Address, RuntimeCall, Signature, SignedExtra>;
```

After:

```rust
/// The extension to the basic transaction logic.
pub type TxExtension = (
	/* snip */
	AsTransactionExtension<MySpecialSignedExtension>,
);
/// Unchecked extrinsic type as expected by this runtime.
pub type UncheckedExtrinsic =
	generic::UncheckedExtrinsic<Address, RuntimeCall, Signature, TxExtension>;
```

You'll also need to alter any transaction building logic to add a
`.into()` to make the conversion happen. E.g. Before:

```rust
fn construct_extrinsic(
		/* snip */
) -> UncheckedExtrinsic {
	let extra: SignedExtra = (
		/* snip */
		MySpecialSignedExtension::new(/* snip */),
	);
	let payload = SignedPayload::new(call.clone(), extra.clone()).unwrap();
	let signature = payload.using_encoded(|e| sender.sign(e));
	UncheckedExtrinsic::new_signed(
		/* snip */
		Signature::Sr25519(signature),
		extra,
	)
}
```

After:

```rust
fn construct_extrinsic(
		/* snip */
) -> UncheckedExtrinsic {
	let tx_ext: TxExtension = (
		/* snip */
		MySpecialSignedExtension::new(/* snip */).into(),
	);
	let payload = SignedPayload::new(call.clone(), tx_ext.clone()).unwrap();
	let signature = payload.using_encoded(|e| sender.sign(e));
	UncheckedExtrinsic::new_signed(
		/* snip */
		Signature::Sr25519(signature),
		tx_ext,
	)
}
```

### SOON: Migrating to `TransactionExtension`

Most `SignedExtension`s can be trivially converted to become a
`TransactionExtension`. There are a few things to know.

- Instead of a single trait like `SignedExtension`, you should now
implement two traits individually: `TransactionExtensionBase` and
`TransactionExtension`.
- Weights are now a thing and must be provided via the new function `fn
weight`.

#### `TransactionExtensionBase`

This trait takes care of anything which is not dependent on types
specific to your runtime, most notably `Call`.

- `AdditionalSigned`/`additional_signed` is renamed to
`Implicit`/`implicit`.
- Weight must be returned by implementing the `weight` function. If your
extension is associated with a pallet, you'll probably want to do this
via the pallet's existing benchmarking infrastructure.

#### `TransactionExtension`

Generally:
- `pre_dispatch` is now `prepare` and you *should not reexecute the
`validate` functionality in there*!
- You don't get an account ID any more; you get an origin instead. If
you need to presume an account ID, then you can use the trait function
`AsSystemOriginSigner::as_system_origin_signer`.
- You get an additional ticket, similar to `Pre`, called `Val`. This
defines data which is passed from `validate` into `prepare`. This is
important since you should not be duplicating logic from `validate` to
`prepare`, you need a way of passing your working from the former into
the latter. This is it.
- This trait takes two type parameters: `Call` and `Context`. `Call` is
the runtime call type which used to be an associated type; you can just
move it to become a type parameter for your trait impl. `Context` is not
currently used and you can safely implement over it as an unbounded
type.
- There's no `AccountId` associated type any more. Just remove it.

Regarding `validate`:
- You get three new parameters in `validate`; all can be ignored when
migrating from `SignedExtension`.
- `validate` returns a tuple on success; the second item in the tuple is
the new ticket type `Self::Val` which gets passed in to `prepare`. If
you use any information extracted during `validate` (off-chain and
on-chain, non-mutating) in `prepare` (on-chain, mutating) then you can
pass it through with this. For the tuple's last item, just return the
`origin` argument.

Regarding `prepare`:
- This is renamed from `pre_dispatch`, but there is one change:
- FUNCTIONALITY TO VALIDATE THE TRANSACTION NEED NOT BE DUPLICATED FROM
`validate`!!
- (This is different to `SignedExtension` which was required to run the
same checks in `pre_dispatch` as in `validate`.)

Regarding `post_dispatch`:
- Since there are no unsigned transactions handled by
`TransactionExtension`, `Pre` is always defined, so the first parameter
is `Self::Pre` rather than `Option<Self::Pre>`.

If you make use of `SignedExtension::validate_unsigned` or
`SignedExtension::pre_dispatch_unsigned`, then:
- Just use the regular versions of these functions instead.
- Have your logic execute in the case that the `origin` is `None`.
- Ensure your transaction creation logic creates a General Transaction
rather than a Bare Transaction; this means having to include all
`TransactionExtension`s' data.
- `ValidateUnsigned` can still be used (for now) if you need to be able
to construct transactions which contain none of the extension data,
however these will be phased out in stage 2 of the Transactions Horizon,
so you should consider moving to an extension-centric design.

## TODO

- [x] Introduce `CheckSignature` impl of `TransactionExtension` to
ensure it's possible to have crypto be done wholly in a
`TransactionExtension`.
- [x] Deprecate `SignedExtension` and move all uses in codebase to
`TransactionExtension`.
  - [x] `ChargeTransactionPayment`
  - [x] `DummyExtension`
  - [x] `ChargeAssetTxPayment` (asset-tx-payment)
  - [x] `ChargeAssetTxPayment` (asset-conversion-tx-payment)
  - [x] `CheckWeight`
  - [x] `CheckTxVersion`
  - [x] `CheckSpecVersion`
  - [x] `CheckNonce`
  - [x] `CheckNonZeroSender`
  - [x] `CheckMortality`
  - [x] `CheckGenesis`
  - [x] `CheckOnlySudoAccount`
  - [x] `WatchDummy`
  - [x] `PrevalidateAttests`
  - [x] `GenericSignedExtension`
  - [x] `SignedExtension` (chain-polkadot-bulletin)
  - [x] `RefundSignedExtensionAdapter`
- [x] Implement `fn weight` across the board.
- [ ] Go through all pre-existing extensions which assume an account
signer and explicitly handle the possibility of another kind of origin.
- [x] `CheckNonce` should probably succeed in the case of a non-account
origin.
- [x] `CheckNonZeroSender` should succeed in the case of a non-account
origin.
- [x] `ChargeTransactionPayment` and family should fail in the case of a
non-account origin.
  - [ ] 
- [x] Fix any broken tests.

---------

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434 lines
14 KiB
Rust

// Copyright (C) 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 test service only.
#![warn(missing_docs)]
pub mod chain_spec;
pub use chain_spec::*;
use futures::{future::Future, stream::StreamExt};
use polkadot_node_primitives::{CollationGenerationConfig, CollatorFn};
use polkadot_node_subsystem::messages::{CollationGenerationMessage, CollatorProtocolMessage};
use polkadot_overseer::Handle;
use polkadot_primitives::{Balance, CollatorPair, HeadData, Id as ParaId, ValidationCode};
use polkadot_runtime_common::BlockHashCount;
use polkadot_runtime_parachains::paras::{ParaGenesisArgs, ParaKind};
use polkadot_service::{
Error, FullClient, IsParachainNode, NewFull, OverseerGen, PrometheusConfig,
};
use polkadot_test_runtime::{
ParasCall, ParasSudoWrapperCall, Runtime, SignedPayload, SudoCall, TxExtension,
UncheckedExtrinsic, VERSION,
};
use sc_chain_spec::ChainSpec;
use sc_client_api::BlockchainEvents;
use sc_network::{
config::{NetworkConfiguration, TransportConfig},
multiaddr, NetworkStateInfo,
};
use sc_service::{
config::{
DatabaseSource, KeystoreConfig, MultiaddrWithPeerId, RpcBatchRequestConfig,
WasmExecutionMethod, WasmtimeInstantiationStrategy,
},
BasePath, BlocksPruning, Configuration, Role, RpcHandlers, TaskManager,
};
use sp_arithmetic::traits::SaturatedConversion;
use sp_blockchain::HeaderBackend;
use sp_keyring::Sr25519Keyring;
use sp_runtime::{codec::Encode, generic, traits::IdentifyAccount, MultiSigner};
use sp_state_machine::BasicExternalities;
use std::{
collections::HashSet,
net::{Ipv4Addr, SocketAddr},
path::PathBuf,
sync::Arc,
};
use substrate_test_client::{
BlockchainEventsExt, RpcHandlersExt, RpcTransactionError, RpcTransactionOutput,
};
/// The client type being used by the test service.
pub type Client = FullClient;
pub use polkadot_service::{FullBackend, GetLastTimestamp};
/// Create a new full node.
#[sc_tracing::logging::prefix_logs_with(config.network.node_name.as_str())]
pub fn new_full<OverseerGenerator: OverseerGen>(
config: Configuration,
is_parachain_node: IsParachainNode,
workers_path: Option<PathBuf>,
overseer_gen: OverseerGenerator,
) -> Result<NewFull, Error> {
let workers_path = Some(workers_path.unwrap_or_else(get_relative_workers_path_for_test));
polkadot_service::new_full(
config,
polkadot_service::NewFullParams {
is_parachain_node,
enable_beefy: true,
force_authoring_backoff: false,
jaeger_agent: None,
telemetry_worker_handle: None,
node_version: None,
secure_validator_mode: false,
workers_path,
workers_names: None,
overseer_gen,
overseer_message_channel_capacity_override: None,
malus_finality_delay: None,
hwbench: None,
},
)
}
fn get_relative_workers_path_for_test() -> PathBuf {
// If no explicit worker path is passed in, we need to specify it ourselves as test binaries
// are in the "deps/" directory, one level below where the worker binaries are generated.
let mut exe_path = std::env::current_exe()
.expect("for test purposes it's reasonable to expect that this will not fail");
let _ = exe_path.pop();
let _ = exe_path.pop();
exe_path
}
/// Returns a prometheus config usable for testing.
pub fn test_prometheus_config(port: u16) -> PrometheusConfig {
PrometheusConfig::new_with_default_registry(
SocketAddr::new(Ipv4Addr::LOCALHOST.into(), port),
"test-chain".to_string(),
)
}
/// Create a Polkadot `Configuration`.
///
/// By default an in-memory socket will be used, therefore you need to provide boot
/// nodes if you want the future node to be connected to other nodes.
///
/// The `storage_update_func` function will be executed in an externalities provided environment
/// and can be used to make adjustments to the runtime genesis storage.
pub fn node_config(
storage_update_func: impl Fn(),
tokio_handle: tokio::runtime::Handle,
key: Sr25519Keyring,
boot_nodes: Vec<MultiaddrWithPeerId>,
is_validator: bool,
) -> Configuration {
let base_path = BasePath::new_temp_dir().expect("could not create temporary directory");
let root = base_path.path().join(key.to_string());
let role = if is_validator { Role::Authority } else { Role::Full };
let key_seed = key.to_seed();
let mut spec = polkadot_local_testnet_config();
let mut storage = spec.as_storage_builder().build_storage().expect("could not build storage");
BasicExternalities::execute_with_storage(&mut storage, storage_update_func);
spec.set_storage(storage);
let mut network_config = NetworkConfiguration::new(
key_seed.to_string(),
"network/test/0.1",
Default::default(),
None,
);
network_config.boot_nodes = boot_nodes;
network_config.allow_non_globals_in_dht = true;
let addr: multiaddr::Multiaddr = multiaddr::Protocol::Memory(rand::random()).into();
network_config.listen_addresses.push(addr.clone());
network_config.public_addresses.push(addr);
network_config.transport = TransportConfig::MemoryOnly;
Configuration {
impl_name: "polkadot-test-node".to_string(),
impl_version: "0.1".to_string(),
role,
tokio_handle,
transaction_pool: Default::default(),
network: network_config,
keystore: KeystoreConfig::InMemory,
database: DatabaseSource::RocksDb { path: root.join("db"), cache_size: 128 },
trie_cache_maximum_size: Some(64 * 1024 * 1024),
state_pruning: Default::default(),
blocks_pruning: BlocksPruning::KeepFinalized,
chain_spec: Box::new(spec),
wasm_method: WasmExecutionMethod::Compiled {
instantiation_strategy: WasmtimeInstantiationStrategy::PoolingCopyOnWrite,
},
wasm_runtime_overrides: Default::default(),
rpc_addr: Default::default(),
rpc_max_request_size: Default::default(),
rpc_max_response_size: Default::default(),
rpc_max_connections: Default::default(),
rpc_cors: None,
rpc_methods: Default::default(),
rpc_id_provider: None,
rpc_max_subs_per_conn: Default::default(),
rpc_port: 9944,
rpc_message_buffer_capacity: Default::default(),
rpc_batch_config: RpcBatchRequestConfig::Unlimited,
rpc_rate_limit: None,
prometheus_config: None,
telemetry_endpoints: None,
default_heap_pages: None,
offchain_worker: Default::default(),
force_authoring: false,
disable_grandpa: false,
dev_key_seed: Some(key_seed),
tracing_targets: None,
tracing_receiver: Default::default(),
max_runtime_instances: 8,
runtime_cache_size: 2,
announce_block: true,
data_path: root,
base_path,
informant_output_format: Default::default(),
}
}
/// Run a test validator node that uses the test runtime and specified `config`.
pub fn run_validator_node(
config: Configuration,
worker_program_path: Option<PathBuf>,
) -> PolkadotTestNode {
let multiaddr = config.network.listen_addresses[0].clone();
let NewFull { task_manager, client, network, rpc_handlers, overseer_handle, .. } = new_full(
config,
IsParachainNode::No,
worker_program_path,
polkadot_service::ValidatorOverseerGen,
)
.expect("could not create Polkadot test service");
let overseer_handle = overseer_handle.expect("test node must have an overseer handle");
let peer_id = network.local_peer_id();
let addr = MultiaddrWithPeerId { multiaddr, peer_id };
PolkadotTestNode { task_manager, client, overseer_handle, addr, rpc_handlers }
}
/// Run a test collator node that uses the test runtime.
///
/// The node will be using an in-memory socket, therefore you need to provide boot nodes if you
/// want it to be connected to other nodes.
///
/// The `storage_update_func` function will be executed in an externalities provided environment
/// and can be used to make adjustments to the runtime genesis storage.
///
/// # Note
///
/// The collator functionality still needs to be registered at the node! This can be done using
/// [`PolkadotTestNode::register_collator`].
pub fn run_collator_node(
tokio_handle: tokio::runtime::Handle,
key: Sr25519Keyring,
storage_update_func: impl Fn(),
boot_nodes: Vec<MultiaddrWithPeerId>,
collator_pair: CollatorPair,
) -> PolkadotTestNode {
let config = node_config(storage_update_func, tokio_handle, key, boot_nodes, false);
let multiaddr = config.network.listen_addresses[0].clone();
let NewFull { task_manager, client, network, rpc_handlers, overseer_handle, .. } = new_full(
config,
IsParachainNode::Collator(collator_pair),
None,
polkadot_service::CollatorOverseerGen,
)
.expect("could not create Polkadot test service");
let overseer_handle = overseer_handle.expect("test node must have an overseer handle");
let peer_id = network.local_peer_id();
let addr = MultiaddrWithPeerId { multiaddr, peer_id };
PolkadotTestNode { task_manager, client, overseer_handle, addr, rpc_handlers }
}
/// A Polkadot test node instance used for testing.
pub struct PolkadotTestNode {
/// `TaskManager`'s instance.
pub task_manager: TaskManager,
/// Client's instance.
pub client: Arc<Client>,
/// A handle to Overseer.
pub overseer_handle: Handle,
/// The `MultiaddrWithPeerId` to this node. This is useful if you want to pass it as "boot
/// node" to other nodes.
pub addr: MultiaddrWithPeerId,
/// `RPCHandlers` to make RPC queries.
pub rpc_handlers: RpcHandlers,
}
impl PolkadotTestNode {
/// Send a sudo call to this node.
async fn send_sudo(
&self,
call: impl Into<polkadot_test_runtime::RuntimeCall>,
caller: Sr25519Keyring,
nonce: u32,
) -> Result<(), RpcTransactionError> {
let sudo = SudoCall::sudo { call: Box::new(call.into()) };
let extrinsic = construct_extrinsic(&self.client, sudo, caller, nonce);
self.rpc_handlers.send_transaction(extrinsic.into()).await.map(drop)
}
/// Send an extrinsic to this node.
pub async fn send_extrinsic(
&self,
function: impl Into<polkadot_test_runtime::RuntimeCall>,
caller: Sr25519Keyring,
) -> Result<RpcTransactionOutput, RpcTransactionError> {
let extrinsic = construct_extrinsic(&self.client, function, caller, 0);
self.rpc_handlers.send_transaction(extrinsic.into()).await
}
/// Register a parachain at this relay chain.
pub async fn register_parachain(
&self,
id: ParaId,
validation_code: impl Into<ValidationCode>,
genesis_head: impl Into<HeadData>,
) -> Result<(), RpcTransactionError> {
let validation_code: ValidationCode = validation_code.into();
let call = ParasSudoWrapperCall::sudo_schedule_para_initialize {
id,
genesis: ParaGenesisArgs {
genesis_head: genesis_head.into(),
validation_code: validation_code.clone(),
para_kind: ParaKind::Parachain,
},
};
self.send_sudo(call, Sr25519Keyring::Alice, 0).await?;
// Bypass pvf-checking.
let call = ParasCall::add_trusted_validation_code { validation_code };
self.send_sudo(call, Sr25519Keyring::Alice, 1).await
}
/// Wait for `count` blocks to be imported in the node and then exit. This function will not
/// return if no blocks are ever created, thus you should restrict the maximum amount of time of
/// the test execution.
pub fn wait_for_blocks(&self, count: usize) -> impl Future<Output = ()> {
self.client.wait_for_blocks(count)
}
/// Wait for `count` blocks to be finalized and then exit. Similarly with `wait_for_blocks` this
/// function will not return if no block are ever finalized.
pub async fn wait_for_finalized_blocks(&self, count: usize) {
let mut import_notification_stream = self.client.finality_notification_stream();
let mut blocks = HashSet::new();
while let Some(notification) = import_notification_stream.next().await {
blocks.insert(notification.hash);
if blocks.len() == count {
break
}
}
}
/// Register the collator functionality in the overseer of this node.
pub async fn register_collator(
&mut self,
collator_key: CollatorPair,
para_id: ParaId,
collator: CollatorFn,
) {
let config =
CollationGenerationConfig { key: collator_key, collator: Some(collator), para_id };
self.overseer_handle
.send_msg(CollationGenerationMessage::Initialize(config), "Collator")
.await;
self.overseer_handle
.send_msg(CollatorProtocolMessage::CollateOn(para_id), "Collator")
.await;
}
}
/// Construct an extrinsic that can be applied to the test runtime.
pub fn construct_extrinsic(
client: &Client,
function: impl Into<polkadot_test_runtime::RuntimeCall>,
caller: Sr25519Keyring,
nonce: u32,
) -> UncheckedExtrinsic {
let function = function.into();
let current_block_hash = client.info().best_hash;
let current_block = client.info().best_number.saturated_into();
let genesis_block = client.hash(0).unwrap().unwrap();
let period =
BlockHashCount::get().checked_next_power_of_two().map(|c| c / 2).unwrap_or(2) as u64;
let tip = 0;
let tx_ext: TxExtension = (
frame_system::CheckNonZeroSender::<Runtime>::new(),
frame_system::CheckSpecVersion::<Runtime>::new(),
frame_system::CheckTxVersion::<Runtime>::new(),
frame_system::CheckGenesis::<Runtime>::new(),
frame_system::CheckEra::<Runtime>::from(generic::Era::mortal(period, current_block)),
frame_system::CheckNonce::<Runtime>::from(nonce),
frame_system::CheckWeight::<Runtime>::new(),
pallet_transaction_payment::ChargeTransactionPayment::<Runtime>::from(tip),
)
.into();
let raw_payload = SignedPayload::from_raw(
function.clone(),
tx_ext.clone(),
(
(),
VERSION.spec_version,
VERSION.transaction_version,
genesis_block,
current_block_hash,
(),
(),
(),
),
);
let signature = raw_payload.using_encoded(|e| caller.sign(e));
UncheckedExtrinsic::new_signed(
function.clone(),
polkadot_test_runtime::Address::Id(caller.public().into()),
polkadot_primitives::Signature::Sr25519(signature.clone()),
tx_ext.clone(),
)
}
/// Construct a transfer extrinsic.
pub fn construct_transfer_extrinsic(
client: &Client,
origin: sp_keyring::AccountKeyring,
dest: sp_keyring::AccountKeyring,
value: Balance,
) -> UncheckedExtrinsic {
let function =
polkadot_test_runtime::RuntimeCall::Balances(pallet_balances::Call::transfer_allow_death {
dest: MultiSigner::from(dest.public()).into_account().into(),
value,
});
construct_extrinsic(client, function, origin, 0)
}