mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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8f819f4ba6
* Make Dispatchable return the actual weight consumed
Add PostInfo associated type to Dispatchable and have frame implement
Dispatchable { type PostInfo = PostDispatchInfo } where PostDispatchInfo
contains the actual weight consumed.
* Fix whitespace issues in docs
385 lines
11 KiB
Rust
385 lines
11 KiB
Rust
// Copyright 2017-2020 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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//! Testing utilities.
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use serde::{Serialize, Serializer, Deserialize, de::Error as DeError, Deserializer};
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use std::{fmt::Debug, ops::Deref, fmt, cell::RefCell};
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use crate::codec::{Codec, Encode, Decode};
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use crate::traits::{
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self, Checkable, Applyable, BlakeTwo256, OpaqueKeys,
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SignedExtension, Dispatchable,
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};
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use crate::traits::ValidateUnsigned;
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use crate::{generic, KeyTypeId, ApplyExtrinsicResult};
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pub use sp_core::{H256, sr25519};
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use sp_core::{crypto::{CryptoType, Dummy, key_types, Public}, U256};
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use crate::transaction_validity::{TransactionValidity, TransactionValidityError, TransactionSource};
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/// Authority Id
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#[derive(Default, PartialEq, Eq, Clone, Encode, Decode, Debug, Hash, Serialize, Deserialize, PartialOrd, Ord)]
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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: Public>(&self) -> T {
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let bytes: [u8; 32] = U256::from(self.0).into();
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T::from_slice(&bytes)
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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(&self.0 as *const u64 as *const _, std::mem::size_of::<u64>())
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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 UintAuthorityId {
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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 sp_application_crypto::RuntimeAppPublic for UintAuthorityId {
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const ID: KeyTypeId = key_types::DUMMY;
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type Signature = u64;
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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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let mut signature = [0u8; 8];
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msg.as_ref().iter()
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.chain(std::iter::repeat(&42u8))
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.take(8)
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.enumerate()
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.for_each(|(i, v)| { signature[i] = *v; });
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Some(u64::from_le_bytes(signature))
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}
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fn verify<M: AsRef<[u8]>>(&self, msg: &M, signature: &Self::Signature) -> bool {
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let mut msg_signature = [0u8; 8];
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msg.as_ref().iter()
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.chain(std::iter::repeat(&42))
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.take(8)
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.enumerate()
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.for_each(|(i, v)| { msg_signature[i] = *v; });
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u64::from_le_bytes(msg_signature) == *signature
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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 crate::BoundToRuntimeAppPublic for UintAuthorityId {
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type Public = Self;
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}
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/// Digest item
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pub type DigestItem = generic::DigestItem<H256>;
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/// Header Digest
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pub type Digest = generic::Digest<H256>;
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/// Block Header
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#[derive(PartialEq, Eq, Clone, Serialize, Debug, Encode, Decode, Default, parity_util_mem::MallocSizeOf)]
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#[serde(rename_all = "camelCase")]
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#[serde(deny_unknown_fields)]
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pub struct Header {
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/// Parent hash
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pub parent_hash: H256,
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/// Block Number
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pub number: u64,
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/// Post-execution state trie root
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pub state_root: H256,
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/// Merkle root of block's extrinsics
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pub extrinsics_root: H256,
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/// Digest items
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pub digest: Digest,
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}
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impl traits::Header for Header {
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type Number = u64;
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type Hashing = BlakeTwo256;
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type Hash = H256;
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fn number(&self) -> &Self::Number { &self.number }
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fn set_number(&mut self, num: Self::Number) { self.number = num }
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fn extrinsics_root(&self) -> &Self::Hash { &self.extrinsics_root }
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fn set_extrinsics_root(&mut self, root: Self::Hash) { self.extrinsics_root = root }
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fn state_root(&self) -> &Self::Hash { &self.state_root }
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fn set_state_root(&mut self, root: Self::Hash) { self.state_root = root }
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fn parent_hash(&self) -> &Self::Hash { &self.parent_hash }
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fn set_parent_hash(&mut self, hash: Self::Hash) { self.parent_hash = hash }
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fn digest(&self) -> &Digest { &self.digest }
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fn digest_mut(&mut self) -> &mut Digest { &mut self.digest }
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fn new(
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number: Self::Number,
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extrinsics_root: Self::Hash,
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state_root: Self::Hash,
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parent_hash: Self::Hash,
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digest: Digest,
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) -> Self {
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Header {
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number,
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extrinsics_root,
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state_root,
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parent_hash,
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digest,
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}
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}
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}
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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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..Default::default()
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}
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}
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}
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impl<'a> Deserialize<'a> for Header {
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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.what())))
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}
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}
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/// An opaque extrinsic wrapper type.
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#[derive(PartialEq, Eq, Clone, Debug, Encode, Decode, parity_util_mem::MallocSizeOf)]
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pub struct ExtrinsicWrapper<Xt>(Xt);
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impl<Xt> traits::Extrinsic for ExtrinsicWrapper<Xt>
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where Xt: parity_util_mem::MallocSizeOf
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{
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type Call = ();
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type SignaturePayload = ();
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fn is_signed(&self) -> Option<bool> {
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None
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}
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}
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impl<Xt: Encode> serde::Serialize for ExtrinsicWrapper<Xt> {
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fn serialize<S>(&self, seq: S) -> Result<S::Ok, S::Error> where S: ::serde::Serializer {
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self.using_encoded(|bytes| seq.serialize_bytes(bytes))
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}
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}
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impl<Xt> From<Xt> for ExtrinsicWrapper<Xt> {
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fn from(xt: Xt) -> Self {
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ExtrinsicWrapper(xt)
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}
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}
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impl<Xt> Deref for ExtrinsicWrapper<Xt> {
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type Target = Xt;
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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/// Testing block
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#[derive(PartialEq, Eq, Clone, Serialize, Debug, Encode, Decode, parity_util_mem::MallocSizeOf)]
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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: 'static + Codec + Sized + Send + Sync + Serialize + Clone + Eq + Debug + traits::Extrinsic> traits::Block
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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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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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fn encode_from(header: &Self::Header, extrinsics: &[Self::Extrinsic]) -> Vec<u8> {
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(header, extrinsics).encode()
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}
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}
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impl<'a, Xt> Deserialize<'a> for Block<Xt> where Block<Xt>: Decode {
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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.what())))
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}
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}
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/// Test transaction, tuple of (sender, call, signed_extra)
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/// with index only used if sender is some.
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///
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/// If sender is some then the transaction is signed otherwise it is unsigned.
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#[derive(PartialEq, Eq, Clone, Encode, Decode)]
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pub struct TestXt<Call, Extra> {
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/// Signature of the extrinsic.
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pub signature: Option<(u64, Extra)>,
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/// Call of the extrinsic.
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pub call: Call,
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}
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impl<Call, Extra> TestXt<Call, Extra> {
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/// Create a new `TextXt`.
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pub fn new(call: Call, signature: Option<(u64, Extra)>) -> Self {
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Self { call, signature }
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}
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}
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// Non-opaque extrinsics always 0.
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parity_util_mem::malloc_size_of_is_0!(any: TestXt<Call, Extra>);
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impl<Call, Extra> Serialize for TestXt<Call, Extra> where TestXt<Call, Extra>: Encode {
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fn serialize<S>(&self, seq: S) -> Result<S::Ok, S::Error> where S: Serializer {
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self.using_encoded(|bytes| seq.serialize_bytes(bytes))
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}
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}
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impl<Call, Extra> Debug for TestXt<Call, Extra> {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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write!(f, "TestXt({:?}, ...)", self.signature.as_ref().map(|x| &x.0))
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}
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}
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impl<Call: Codec + Sync + Send, Context, Extra> Checkable<Context> for TestXt<Call, Extra> {
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type Checked = Self;
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fn check(self, _: &Context) -> Result<Self::Checked, TransactionValidityError> { Ok(self) }
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}
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impl<Call: Codec + Sync + Send, Extra> traits::Extrinsic for TestXt<Call, Extra> {
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type Call = Call;
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type SignaturePayload = (u64, Extra);
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fn is_signed(&self) -> Option<bool> {
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Some(self.signature.is_some())
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}
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fn new(c: Call, sig: Option<Self::SignaturePayload>) -> Option<Self> {
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Some(TestXt { signature: sig, call: c })
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}
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}
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impl<Origin, Call, Extra, Info> Applyable for TestXt<Call, Extra> where
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Call: 'static + Sized + Send + Sync + Clone + Eq + Codec + Debug + Dispatchable<Origin=Origin>,
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Extra: SignedExtension<AccountId=u64, Call=Call, DispatchInfo=Info>,
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Origin: From<Option<u64>>,
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Info: Clone,
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{
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type Call = Call;
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type DispatchInfo = Info;
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/// Checks to see if this is a valid *transaction*. It returns information on it if so.
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fn validate<U: ValidateUnsigned<Call=Self::Call>>(
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&self,
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_source: TransactionSource,
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_info: Self::DispatchInfo,
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_len: usize,
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) -> TransactionValidity {
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Ok(Default::default())
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}
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/// Executes all necessary logic needed prior to dispatch and deconstructs into function call,
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/// index and sender.
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fn apply<U: ValidateUnsigned<Call=Self::Call>>(
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self,
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info: Self::DispatchInfo,
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len: usize,
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) -> ApplyExtrinsicResult {
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let maybe_who = if let Some((who, extra)) = self.signature {
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Extra::pre_dispatch(extra, &who, &self.call, info, len)?;
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Some(who)
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} else {
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Extra::pre_dispatch_unsigned(&self.call, info, len)?;
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None
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};
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Ok(self.call.dispatch(maybe_who.into()).map(|_| ()).map_err(|e| e.error))
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}
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}
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