mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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68390d4085
* Init `RuntimeLogger` automatically for each runtime api call This pr change the runtime api in such a way to always and automatically enable the `RuntimeLogger`. This enables the user to use `log` or `tracing` from inside the runtime to create log messages. As logging introduces some extra code and especially increases the size of the wasm blob. It is advised to disable all logging completely with `sp-api/disable-logging` when doing the wasm builds for the on-chain wasm runtime. Besides these changes, the pr also brings most of the logging found in frame to the same format "runtime::*". * Update frame/im-online/src/lib.rs Co-authored-by: Guillaume Thiolliere <gui.thiolliere@gmail.com> * Update test-utils/runtime/Cargo.toml * Fix test * Don't use tracing in the runtime, as we don't support it :D * Fixes Co-authored-by: Guillaume Thiolliere <gui.thiolliere@gmail.com>
191 lines
5.0 KiB
Rust
191 lines
5.0 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2017-2021 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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//! Hash utilities.
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use codec::Codec;
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use sp_std::prelude::Vec;
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use sp_io::hashing::{blake2_128, blake2_256, twox_64, twox_128, twox_256};
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// This trait must be kept coherent with frame-support-procedural HasherKind usage
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pub trait Hashable: Sized {
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fn blake2_128(&self) -> [u8; 16];
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fn blake2_256(&self) -> [u8; 32];
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fn blake2_128_concat(&self) -> Vec<u8>;
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fn twox_128(&self) -> [u8; 16];
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fn twox_256(&self) -> [u8; 32];
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fn twox_64_concat(&self) -> Vec<u8>;
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fn identity(&self) -> Vec<u8>;
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}
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impl<T: Codec> Hashable for T {
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fn blake2_128(&self) -> [u8; 16] {
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self.using_encoded(blake2_128)
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}
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fn blake2_256(&self) -> [u8; 32] {
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self.using_encoded(blake2_256)
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}
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fn blake2_128_concat(&self) -> Vec<u8> {
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self.using_encoded(Blake2_128Concat::hash)
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}
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fn twox_128(&self) -> [u8; 16] {
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self.using_encoded(twox_128)
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}
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fn twox_256(&self) -> [u8; 32] {
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self.using_encoded(twox_256)
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}
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fn twox_64_concat(&self) -> Vec<u8> {
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self.using_encoded(Twox64Concat::hash)
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}
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fn identity(&self) -> Vec<u8> { self.encode() }
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}
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/// Hasher to use to hash keys to insert to storage.
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pub trait StorageHasher: 'static {
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const METADATA: frame_metadata::StorageHasher;
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type Output: AsRef<[u8]>;
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fn hash(x: &[u8]) -> Self::Output;
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}
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/// Hasher to use to hash keys to insert to storage.
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///
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/// Reversible hasher store the encoded key after the hash part.
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pub trait ReversibleStorageHasher: StorageHasher {
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/// Split the hash part out of the input.
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///
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/// I.e. for input `&[hash ++ key ++ some]` returns `&[key ++ some]`
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fn reverse(x: &[u8]) -> &[u8];
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}
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/// Store the key directly.
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pub struct Identity;
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impl StorageHasher for Identity {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Identity;
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type Output = Vec<u8>;
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fn hash(x: &[u8]) -> Vec<u8> {
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x.to_vec()
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}
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}
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impl ReversibleStorageHasher for Identity {
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fn reverse(x: &[u8]) -> &[u8] {
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x
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}
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}
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/// Hash storage keys with `concat(twox64(key), key)`
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pub struct Twox64Concat;
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impl StorageHasher for Twox64Concat {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Twox64Concat;
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type Output = Vec<u8>;
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fn hash(x: &[u8]) -> Vec<u8> {
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twox_64(x)
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.iter()
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.chain(x.into_iter())
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.cloned()
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.collect::<Vec<_>>()
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}
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}
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impl ReversibleStorageHasher for Twox64Concat {
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fn reverse(x: &[u8]) -> &[u8] {
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if x.len() < 8 {
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log::error!("Invalid reverse: hash length too short");
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return &[]
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}
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&x[8..]
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}
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}
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/// Hash storage keys with `concat(blake2_128(key), key)`
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pub struct Blake2_128Concat;
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impl StorageHasher for Blake2_128Concat {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Blake2_128Concat;
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type Output = Vec<u8>;
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fn hash(x: &[u8]) -> Vec<u8> {
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blake2_128(x)
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.iter()
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.chain(x.into_iter())
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.cloned()
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.collect::<Vec<_>>()
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}
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}
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impl ReversibleStorageHasher for Blake2_128Concat {
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fn reverse(x: &[u8]) -> &[u8] {
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if x.len() < 16 {
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log::error!("Invalid reverse: hash length too short");
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return &[]
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}
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&x[16..]
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}
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}
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/// Hash storage keys with blake2 128
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pub struct Blake2_128;
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impl StorageHasher for Blake2_128 {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Blake2_128;
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type Output = [u8; 16];
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fn hash(x: &[u8]) -> [u8; 16] {
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blake2_128(x)
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}
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}
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/// Hash storage keys with blake2 256
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pub struct Blake2_256;
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impl StorageHasher for Blake2_256 {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Blake2_256;
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type Output = [u8; 32];
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fn hash(x: &[u8]) -> [u8; 32] {
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blake2_256(x)
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}
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}
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/// Hash storage keys with twox 128
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pub struct Twox128;
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impl StorageHasher for Twox128 {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Twox128;
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type Output = [u8; 16];
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fn hash(x: &[u8]) -> [u8; 16] {
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twox_128(x)
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}
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}
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/// Hash storage keys with twox 256
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pub struct Twox256;
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impl StorageHasher for Twox256 {
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const METADATA: frame_metadata::StorageHasher = frame_metadata::StorageHasher::Twox256;
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type Output = [u8; 32];
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fn hash(x: &[u8]) -> [u8; 32] {
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twox_256(x)
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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#[test]
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fn test_twox_64_concat() {
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let r = Twox64Concat::hash(b"foo");
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assert_eq!(r.split_at(8), (&twox_128(b"foo")[..8], &b"foo"[..]))
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}
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#[test]
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fn test_blake2_128_concat() {
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let r = Blake2_128Concat::hash(b"foo");
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assert_eq!(r.split_at(16), (&blake2_128(b"foo")[..], &b"foo"[..]))
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}
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}
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