mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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f4afdd2f0b
* Revamp crypto API and make seeds work better in subkey * Final tweaks * Update tests * line spacing * Avoid escapes in hex constants * Fix build * Another fix * More fixes * Minor nits
260 lines
6.6 KiB
Rust
260 lines
6.6 KiB
Rust
// Copyright 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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//! Implementation of the transaction factory trait, which enables
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//! using the cli to manufacture transactions and distribute them
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//! to accounts.
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use rand::{Rng, SeedableRng};
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use rand::rngs::StdRng;
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use parity_codec::Decode;
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use keyring::sr25519::Keyring;
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use node_primitives::Hash;
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use node_runtime::{Call, CheckedExtrinsic, UncheckedExtrinsic, BalancesCall};
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use primitives::sr25519;
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use primitives::crypto::Pair;
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use parity_codec::Encode;
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use sr_primitives::generic::Era;
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use sr_primitives::traits::{Block as BlockT, Header as HeaderT};
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use substrate_service::ServiceFactory;
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use transaction_factory::RuntimeAdapter;
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use transaction_factory::modes::Mode;
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use crate::service;
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use inherents::InherentData;
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use timestamp;
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use finality_tracker;
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// TODO get via api: <timestamp::Module<T>>::minimum_period(). See #2587.
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const MINIMUM_PERIOD: u64 = 99;
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pub struct FactoryState<N> {
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block_no: N,
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mode: Mode,
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start_number: u64,
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rounds: u64,
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round: u64,
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block_in_round: u64,
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num: u64,
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}
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type Number = <<node_primitives::Block as BlockT>::Header as HeaderT>::Number;
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impl RuntimeAdapter for FactoryState<Number> {
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type AccountId = node_primitives::AccountId;
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type Balance = node_primitives::Balance;
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type Block = node_primitives::Block;
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type Phase = sr_primitives::generic::Phase;
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type Secret = sr25519::Pair;
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type Index = node_primitives::Index;
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type Number = Number;
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fn new(
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mode: Mode,
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num: u64,
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rounds: u64,
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) -> FactoryState<Self::Number> {
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FactoryState {
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mode,
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num: num,
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round: 0,
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rounds,
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block_in_round: 0,
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block_no: 0,
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start_number: 0,
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}
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}
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fn block_no(&self) -> Self::Number {
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self.block_no
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}
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fn block_in_round(&self) -> Self::Number {
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self.block_in_round
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}
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fn rounds(&self) -> Self::Number {
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self.rounds
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}
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fn num(&self) -> Self::Number {
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self.num
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}
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fn round(&self) -> Self::Number {
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self.round
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}
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fn start_number(&self) -> Self::Number {
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self.start_number
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}
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fn mode(&self) -> &Mode {
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&self.mode
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}
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fn set_block_no(&mut self, val: Self::Number) {
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self.block_no = val;
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}
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fn set_block_in_round(&mut self, val: Self::Number) {
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self.block_in_round = val;
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}
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fn set_round(&mut self, val: Self::Number) {
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self.round = val;
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}
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fn transfer_extrinsic(
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&self,
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sender: &Self::AccountId,
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key: &Self::Secret,
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destination: &Self::AccountId,
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amount: &Self::Number,
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prior_block_hash: &<Self::Block as BlockT>::Hash,
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) -> <Self::Block as BlockT>::Extrinsic {
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let index = self.extract_index(&sender, prior_block_hash);
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let phase = self.extract_phase(*prior_block_hash);
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sign::<service::Factory, Self>(CheckedExtrinsic {
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signed: Some((sender.clone(), index)),
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function: Call::Balances(
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BalancesCall::transfer(
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indices::address::Address::Id(
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destination.clone().into()
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),
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(*amount).into()
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)
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)
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}, key, &prior_block_hash, phase)
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}
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fn inherent_extrinsics(&self) -> InherentData {
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let timestamp = self.block_no * MINIMUM_PERIOD;
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let mut inherent = InherentData::new();
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inherent.put_data(timestamp::INHERENT_IDENTIFIER, ×tamp)
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.expect("Failed putting timestamp inherent");
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inherent.put_data(finality_tracker::INHERENT_IDENTIFIER, &self.block_no)
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.expect("Failed putting finalized number inherent");
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inherent
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}
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fn minimum_balance() -> Self::Number {
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// TODO get correct amount via api. See #2587.
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1337
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}
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fn master_account_id() -> Self::AccountId {
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Keyring::Alice.pair().public()
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}
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fn master_account_secret() -> Self::Secret {
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Keyring::Alice.pair()
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}
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/// Generates a random `AccountId` from `seed`.
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fn gen_random_account_id(seed: &Self::Number) -> Self::AccountId {
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let pair: sr25519::Pair = sr25519::Pair::from_seed(&gen_seed_bytes(*seed));
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pair.public().into()
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}
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/// Generates a random `Secret` from `seed`.
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fn gen_random_account_secret(seed: &Self::Number) -> Self::Secret {
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let pair: sr25519::Pair = sr25519::Pair::from_seed(&gen_seed_bytes(*seed));
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pair
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}
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fn extract_index(
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&self,
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_account_id: &Self::AccountId,
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_block_hash: &<Self::Block as BlockT>::Hash,
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) -> Self::Index {
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// TODO get correct index for account via api. See #2587.
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// This currently prevents the factory from being used
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// without a preceding purge of the database.
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if self.mode == Mode::MasterToN || self.mode == Mode::MasterTo1 {
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self.block_no()
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} else {
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match self.round() {
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0 =>
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// if round is 0 all transactions will be done with master as a sender
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self.block_no(),
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_ =>
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// if round is e.g. 1 every sender account will be new and not yet have
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// any transactions done
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0
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}
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}
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}
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fn extract_phase(
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&self,
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_block_hash: <Self::Block as BlockT>::Hash
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) -> Self::Phase {
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// TODO get correct phase via api. See #2587.
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// This currently prevents the factory from being used
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// without a preceding purge of the database.
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self.block_no
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}
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}
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fn gen_seed_bytes(seed: u64) -> [u8; 32] {
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let mut rng: StdRng = SeedableRng::seed_from_u64(seed);
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let mut seed_bytes = [0u8; 32];
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for i in 0..32 {
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seed_bytes[i] = rng.gen::<u8>();
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}
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seed_bytes
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}
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/// Creates an `UncheckedExtrinsic` containing the appropriate signature for
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/// a `CheckedExtrinsics`.
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fn sign<F: ServiceFactory, RA: RuntimeAdapter>(
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xt: CheckedExtrinsic,
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key: &sr25519::Pair,
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prior_block_hash: &Hash,
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phase: u64,
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) -> <RA::Block as BlockT>::Extrinsic {
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let s = match xt.signed {
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Some((signed, index)) => {
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let era = Era::mortal(256, phase);
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let payload = (index.into(), xt.function, era, prior_block_hash);
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let signature = payload.using_encoded(|b| {
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if b.len() > 256 {
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key.sign(&sr_io::blake2_256(b))
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} else {
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key.sign(b)
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}
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}).into();
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UncheckedExtrinsic {
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signature: Some((indices::address::Address::Id(signed), signature, payload.0, era)),
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function: payload.1,
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}
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}
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None => UncheckedExtrinsic {
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signature: None,
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function: xt.function,
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},
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};
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let e = Encode::encode(&s);
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Decode::decode(&mut &e[..]).expect("Failed to decode signed unchecked extrinsic")
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}
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