326 lines
7.7 KiB
Rust
326 lines
7.7 KiB
Rust
// This file is part of Bizinikiwi.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! Testing utilities.
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use crate::{
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codec::{Codec, Decode, DecodeWithMemTracking, Encode, EncodeLike, MaxEncodedLen},
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generic::{self, LazyBlock, UncheckedExtrinsic},
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scale_info::TypeInfo,
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traits::{self, BlakeTwo256, Dispatchable, LazyExtrinsic, OpaqueKeys},
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DispatchResultWithInfo, KeyTypeId, OpaqueExtrinsic,
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};
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use pezsp_core::crypto::{key_types, ByteArray, CryptoType, Dummy};
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pub use pezsp_core::{sr25519, H256};
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use serde::{de::Error as DeError, Deserialize, Deserializer, Serialize};
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use std::{cell::RefCell, fmt::Debug};
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/// A dummy type which can be used instead of regular cryptographic primitives.
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///
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/// 1. Wraps a `u64` `AccountId` and is able to `IdentifyAccount`.
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/// 2. Can be converted to any `Public` key.
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/// 3. Implements `RuntimeAppPublic` so it can be used instead of regular application-specific
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/// crypto.
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#[derive(
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Default,
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PartialEq,
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Eq,
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Clone,
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Encode,
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Decode,
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DecodeWithMemTracking,
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Debug,
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Hash,
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Serialize,
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Deserialize,
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PartialOrd,
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Ord,
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MaxEncodedLen,
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TypeInfo,
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)]
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pub struct UintAuthorityId(pub u64);
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impl From<u64> for UintAuthorityId {
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fn from(id: u64) -> Self {
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UintAuthorityId(id)
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}
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}
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impl From<UintAuthorityId> for u64 {
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fn from(id: UintAuthorityId) -> u64 {
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id.0
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}
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}
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impl UintAuthorityId {
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/// Convert this authority ID into a public key.
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pub fn to_public_key<T: ByteArray>(&self) -> T {
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let mut bytes = [0u8; 32];
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bytes[0..8].copy_from_slice(&self.0.to_le_bytes());
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T::from_slice(&bytes).unwrap()
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}
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/// Set the list of keys returned by the runtime call for all keys of that type.
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pub fn set_all_keys<T: Into<UintAuthorityId>>(keys: impl IntoIterator<Item = T>) {
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ALL_KEYS.with(|l| *l.borrow_mut() = keys.into_iter().map(Into::into).collect())
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}
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}
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impl CryptoType for UintAuthorityId {
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type Pair = Dummy;
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}
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impl AsRef<[u8]> for UintAuthorityId {
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fn as_ref(&self) -> &[u8] {
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// Unsafe, i know, but it's test code and it's just there because it's really convenient to
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// keep `UintAuthorityId` as a u64 under the hood.
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unsafe {
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std::slice::from_raw_parts(
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&self.0 as *const u64 as *const _,
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std::mem::size_of::<u64>(),
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)
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}
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}
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}
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thread_local! {
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/// A list of all UintAuthorityId keys returned to the runtime.
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static ALL_KEYS: RefCell<Vec<UintAuthorityId>> = RefCell::new(vec![]);
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}
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impl pezsp_application_crypto::RuntimeAppPublic for UintAuthorityId {
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const ID: KeyTypeId = key_types::DUMMY;
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type Signature = TestSignature;
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type ProofOfPossession = TestSignature;
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fn all() -> Vec<Self> {
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ALL_KEYS.with(|l| l.borrow().clone())
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}
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fn generate_pair(_: Option<Vec<u8>>) -> Self {
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use rand::RngCore;
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UintAuthorityId(rand::thread_rng().next_u64())
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}
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fn sign<M: AsRef<[u8]>>(&self, msg: &M) -> Option<Self::Signature> {
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Some(TestSignature(self.0, msg.as_ref().to_vec()))
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}
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fn verify<M: AsRef<[u8]>>(&self, msg: &M, signature: &Self::Signature) -> bool {
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traits::Verify::verify(signature, msg.as_ref(), &self.0)
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}
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fn generate_proof_of_possession(&mut self, _owner: &[u8]) -> Option<Self::Signature> {
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None
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}
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fn verify_proof_of_possession(&self, _owner: &[u8], _pop: &Self::Signature) -> bool {
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false
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}
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fn to_raw_vec(&self) -> Vec<u8> {
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AsRef::<[u8]>::as_ref(self).to_vec()
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}
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}
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impl OpaqueKeys for UintAuthorityId {
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type KeyTypeIdProviders = ();
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fn key_ids() -> &'static [KeyTypeId] {
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&[key_types::DUMMY]
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}
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fn get_raw(&self, _: KeyTypeId) -> &[u8] {
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self.as_ref()
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}
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fn get<T: Decode>(&self, _: KeyTypeId) -> Option<T> {
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self.using_encoded(|mut x| T::decode(&mut x)).ok()
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}
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}
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impl traits::IdentifyAccount for UintAuthorityId {
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type AccountId = u64;
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fn into_account(self) -> Self::AccountId {
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self.0
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}
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}
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impl traits::Verify for UintAuthorityId {
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type Signer = Self;
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fn verify<L: traits::Lazy<[u8]>>(
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&self,
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_msg: L,
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signer: &<Self::Signer as traits::IdentifyAccount>::AccountId,
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) -> bool {
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self.0 == *signer
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}
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}
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/// A dummy signature type, to match `UintAuthorityId`.
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#[derive(
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Eq,
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PartialEq,
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Clone,
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Debug,
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Hash,
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Serialize,
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Deserialize,
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Encode,
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Decode,
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DecodeWithMemTracking,
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TypeInfo,
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)]
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pub struct TestSignature(pub u64, pub Vec<u8>);
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impl traits::Verify for TestSignature {
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type Signer = UintAuthorityId;
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fn verify<L: traits::Lazy<[u8]>>(&self, mut msg: L, signer: &u64) -> bool {
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signer == &self.0 && msg.get() == &self.1[..]
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}
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}
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/// Digest item
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pub type DigestItem = generic::DigestItem;
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/// Header Digest
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pub type Digest = generic::Digest;
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/// Block Header
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pub type Header = generic::Header<u64, BlakeTwo256>;
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impl Header {
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/// A new header with the given number and default hash for all other fields.
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pub fn new_from_number(number: <Self as traits::Header>::Number) -> Self {
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Self {
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number,
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extrinsics_root: Default::default(),
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state_root: Default::default(),
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parent_hash: Default::default(),
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digest: Default::default(),
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}
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}
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}
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/// Testing block
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#[derive(
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PartialEq, Eq, Clone, Serialize, Debug, Encode, Decode, DecodeWithMemTracking, TypeInfo,
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)]
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pub struct Block<Xt> {
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/// Block header
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pub header: Header,
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/// List of extrinsics
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pub extrinsics: Vec<Xt>,
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}
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impl<Xt> traits::HeaderProvider for Block<Xt> {
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type HeaderT = Header;
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}
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impl<Xt: Into<OpaqueExtrinsic>> From<Block<Xt>> for LazyBlock<Header, Xt> {
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fn from(block: Block<Xt>) -> Self {
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LazyBlock::new(block.header, block.extrinsics)
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}
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}
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impl<Xt> EncodeLike<LazyBlock<Header, Xt>> for Block<Xt>
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where
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Block<Xt>: Encode,
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LazyBlock<Header, Xt>: Encode,
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{
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}
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impl<Xt> EncodeLike<Block<Xt>> for LazyBlock<Header, Xt>
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where
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Block<Xt>: Encode,
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LazyBlock<Header, Xt>: Encode,
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{
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}
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impl<
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Xt: 'static
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+ Codec
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+ DecodeWithMemTracking
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+ Sized
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+ Send
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+ Sync
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+ Serialize
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+ Clone
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+ Eq
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+ Debug
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+ traits::ExtrinsicLike
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+ Into<OpaqueExtrinsic>
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+ LazyExtrinsic,
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> traits::Block for Block<Xt>
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{
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type Extrinsic = Xt;
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type Header = Header;
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type Hash = <Header as traits::Header>::Hash;
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type LazyBlock = LazyBlock<Header, Xt>;
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fn header(&self) -> &Self::Header {
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&self.header
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}
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fn extrinsics(&self) -> &[Self::Extrinsic] {
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&self.extrinsics[..]
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}
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fn deconstruct(self) -> (Self::Header, Vec<Self::Extrinsic>) {
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(self.header, self.extrinsics)
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}
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fn new(header: Self::Header, extrinsics: Vec<Self::Extrinsic>) -> Self {
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Block { header, extrinsics }
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}
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}
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impl<'a, Xt> Deserialize<'a> for Block<Xt>
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where
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Block<Xt>: Decode,
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{
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fn deserialize<D: Deserializer<'a>>(de: D) -> Result<Self, D::Error> {
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let r = <Vec<u8>>::deserialize(de)?;
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Decode::decode(&mut &r[..])
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.map_err(|e| DeError::custom(format!("Invalid value passed into decode: {}", e)))
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}
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}
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/// Extrinsic type with `u64` accounts and mocked signatures, used in testing.
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pub type TestXt<Call, Extra> = UncheckedExtrinsic<u64, Call, (), Extra>;
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/// Wrapper over a `u64` that can be used as a `RuntimeCall`.
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#[derive(PartialEq, Eq, Debug, Clone, Encode, Decode, DecodeWithMemTracking, TypeInfo)]
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pub struct MockCallU64(pub u64);
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impl Dispatchable for MockCallU64 {
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type RuntimeOrigin = u64;
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type Config = ();
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type Info = ();
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type PostInfo = ();
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fn dispatch(self, _origin: Self::RuntimeOrigin) -> DispatchResultWithInfo<Self::PostInfo> {
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Ok(())
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}
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}
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impl From<u64> for MockCallU64 {
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fn from(value: u64) -> Self {
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Self(value)
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}
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}
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