mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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fd2cb9ca83
* Add transaction_version * Semantic versioning for runtimes * Move new field to bottom * Versioning * Runtime versioning stuff. * Fix test * Adds tests and fixes bugs * Bump runtime Co-authored-by: Bastian Köcher <git@kchr.de>
428 lines
12 KiB
Rust
428 lines
12 KiB
Rust
// Copyright 2019-2020 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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//! Traits and accessor functions for calling into the Substrate Wasm runtime.
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//!
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//! The primary means of accessing the runtimes is through a cache which saves the reusable
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//! components of the runtime that are expensive to initialize.
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use std::sync::Arc;
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use crate::error::{Error, WasmError};
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use parking_lot::Mutex;
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use codec::Decode;
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use sp_core::traits::{Externalities, RuntimeCode, FetchRuntimeCode};
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use sp_version::RuntimeVersion;
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use std::panic::AssertUnwindSafe;
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use sc_executor_common::wasm_runtime::{WasmModule, WasmInstance};
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use sp_wasm_interface::Function;
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/// Specification of different methods of executing the runtime Wasm code.
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#[derive(Debug, PartialEq, Eq, Hash, Copy, Clone)]
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pub enum WasmExecutionMethod {
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/// Uses the Wasmi interpreter.
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Interpreted,
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/// Uses the Wasmtime compiled runtime.
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#[cfg(feature = "wasmtime")]
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Compiled,
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}
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impl Default for WasmExecutionMethod {
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fn default() -> WasmExecutionMethod {
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WasmExecutionMethod::Interpreted
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}
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}
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/// A Wasm runtime object along with its cached runtime version.
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struct VersionedRuntime {
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/// Runtime code hash.
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code_hash: Vec<u8>,
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/// Wasm runtime type.
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wasm_method: WasmExecutionMethod,
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/// Shared runtime that can spawn instances.
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module: Box<dyn WasmModule>,
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/// The number of WebAssembly heap pages this instance was created with.
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heap_pages: u64,
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/// Runtime version according to `Core_version` if any.
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version: Option<RuntimeVersion>,
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/// Cached instance pool.
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instances: Vec<Mutex<Option<Box<dyn WasmInstance>>>>,
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}
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impl VersionedRuntime {
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/// Run the given closure `f` with an instance of this runtime.
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fn with_instance<'c, R, F>(
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&self,
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ext: &mut dyn Externalities,
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f: F,
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) -> Result<R, Error>
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where F: FnOnce(
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&dyn WasmInstance,
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Option<&RuntimeVersion>,
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&mut dyn Externalities)
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-> Result<R, Error>,
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{
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// Find a free instance
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let instance = self.instances
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.iter()
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.enumerate()
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.find_map(|(index, i)| i.try_lock().map(|i| (index, i)));
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match instance {
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Some((index, mut locked)) => {
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let (instance, new_inst) = locked.take()
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.map(|r| Ok((r, false)))
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.unwrap_or_else(|| self.module.new_instance().map(|i| (i, true)))?;
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let result = f(&*instance, self.version.as_ref(), ext);
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if let Err(e) = &result {
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if new_inst {
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log::warn!(
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target: "wasm-runtime",
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"Fresh runtime instance failed with {:?}",
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e,
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)
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} else {
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log::warn!(
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target: "wasm-runtime",
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"Evicting failed runtime instance: {:?}",
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e,
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);
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}
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} else {
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*locked = Some(instance);
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if new_inst {
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log::debug!(
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target: "wasm-runtime",
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"Allocated WASM instance {}/{}",
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index + 1,
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self.instances.len(),
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);
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}
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}
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result
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},
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None => {
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log::warn!(target: "wasm-runtime", "Ran out of free WASM instances");
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// Allocate a new instance
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let instance = self.module.new_instance()?;
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f(&*instance, self.version.as_ref(), ext)
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}
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}
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}
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}
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const MAX_RUNTIMES: usize = 2;
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/// Cache for the runtimes.
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///
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/// When an instance is requested for the first time it is added to this cache. Metadata is kept
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/// with the instance so that it can be efficiently reinitialized.
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///
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/// When using the Wasmi interpreter execution method, the metadata includes the initial memory and
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/// values of mutable globals. Follow-up requests to fetch a runtime return this one instance with
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/// the memory reset to the initial memory. So, one runtime instance is reused for every fetch
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/// request.
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///
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/// The size of cache is equal to `MAX_RUNTIMES`.
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pub struct RuntimeCache {
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/// A cache of runtimes along with metadata.
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///
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/// Runtimes sorted by recent usage. The most recently used is at the front.
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runtimes: Mutex<[Option<Arc<VersionedRuntime>>; MAX_RUNTIMES]>,
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/// The size of the instances cache for each runtime.
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max_runtime_instances: usize,
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}
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impl RuntimeCache {
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/// Creates a new instance of a runtimes cache.
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pub fn new(max_runtime_instances: usize) -> RuntimeCache {
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RuntimeCache {
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runtimes: Default::default(),
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max_runtime_instances,
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}
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}
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/// Prepares a WASM module instance and executes given function for it.
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///
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/// This uses internal cache to find avaiable instance or create a new one.
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/// # Parameters
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///
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/// `code` - Provides external code or tells the executor to fetch it from storage.
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///
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/// `runtime_code` - The runtime wasm code used setup the runtime.
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///
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/// `default_heap_pages` - Number of 64KB pages to allocate for Wasm execution.
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///
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/// `wasm_method` - Type of WASM backend to use.
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///
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/// `host_functions` - The host functions that should be registered for the Wasm runtime.
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///
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/// `allow_missing_func_imports` - Ignore missing function imports.
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///
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/// `max_runtime_instances` - The size of the instances cache.
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///
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/// `f` - Function to execute.
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///
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/// # Returns result of `f` wrapped in an additonal result.
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/// In case of failure one of two errors can be returned:
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///
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/// `Err::InvalidCode` is returned for runtime code issues.
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///
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/// `Error::InvalidMemoryReference` is returned if no memory export with the
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/// identifier `memory` can be found in the runtime.
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pub fn with_instance<'c, R, F>(
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&self,
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runtime_code: &'c RuntimeCode<'c>,
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ext: &mut dyn Externalities,
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wasm_method: WasmExecutionMethod,
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default_heap_pages: u64,
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host_functions: &[&'static dyn Function],
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allow_missing_func_imports: bool,
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f: F,
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) -> Result<Result<R, Error>, Error>
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where F: FnOnce(
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&dyn WasmInstance,
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Option<&RuntimeVersion>,
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&mut dyn Externalities)
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-> Result<R, Error>,
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{
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let code_hash = &runtime_code.hash;
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let heap_pages = runtime_code.heap_pages.unwrap_or(default_heap_pages);
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let mut runtimes = self.runtimes.lock(); // this must be released prior to calling f
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let pos = runtimes.iter().position(|r| r.as_ref().map_or(
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false,
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|r| r.wasm_method == wasm_method &&
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r.code_hash == *code_hash &&
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r.heap_pages == heap_pages
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));
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let runtime = match pos {
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Some(n) => runtimes[n]
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.clone()
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.expect("`position` only returns `Some` for entries that are `Some`"),
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None => {
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let code = runtime_code.fetch_runtime_code().ok_or(WasmError::CodeNotFound)?;
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let result = create_versioned_wasm_runtime(
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&code,
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code_hash.clone(),
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ext,
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wasm_method,
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heap_pages,
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host_functions.into(),
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allow_missing_func_imports,
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self.max_runtime_instances,
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);
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if let Err(ref err) = result {
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log::warn!(target: "wasm-runtime", "Cannot create a runtime: {:?}", err);
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}
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Arc::new(result?)
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}
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};
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// Rearrange runtimes by last recently used.
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match pos {
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Some(0) => {},
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Some(n) => {
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for i in (1 .. n + 1).rev() {
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runtimes.swap(i, i - 1);
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}
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}
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None => {
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runtimes[MAX_RUNTIMES-1] = Some(runtime.clone());
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for i in (1 .. MAX_RUNTIMES).rev() {
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runtimes.swap(i, i - 1);
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}
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}
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}
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drop(runtimes);
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Ok(runtime.with_instance(ext, f))
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}
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}
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/// Create a wasm runtime with the given `code`.
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pub fn create_wasm_runtime_with_code(
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wasm_method: WasmExecutionMethod,
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heap_pages: u64,
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code: &[u8],
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host_functions: Vec<&'static dyn Function>,
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allow_missing_func_imports: bool,
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) -> Result<Box<dyn WasmModule>, WasmError> {
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match wasm_method {
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WasmExecutionMethod::Interpreted =>
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sc_executor_wasmi::create_runtime(
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code,
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heap_pages,
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host_functions,
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allow_missing_func_imports
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).map(|runtime| -> Box<dyn WasmModule> { Box::new(runtime) }),
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#[cfg(feature = "wasmtime")]
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WasmExecutionMethod::Compiled =>
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sc_executor_wasmtime::create_runtime(
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code,
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heap_pages,
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host_functions,
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allow_missing_func_imports
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).map(|runtime| -> Box<dyn WasmModule> { Box::new(runtime) }),
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}
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}
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fn decode_version(version: &[u8]) -> Result<RuntimeVersion, WasmError> {
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let v: RuntimeVersion = sp_api::OldRuntimeVersion::decode(&mut &version[..])
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.map_err(|_|
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WasmError::Instantiation(
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"failed to decode \"Core_version\" result using old runtime version".into(),
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)
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)?.into();
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let core_api_id = sp_core::hashing::blake2_64(b"Core");
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if v.has_api_with(&core_api_id, |v| v >= 3) {
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sp_api::RuntimeVersion::decode(&mut &version[..])
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.map_err(|_|
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WasmError::Instantiation("failed to decode \"Core_version\" result".into())
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)
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} else {
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Ok(v)
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}
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}
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fn create_versioned_wasm_runtime(
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code: &[u8],
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code_hash: Vec<u8>,
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ext: &mut dyn Externalities,
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wasm_method: WasmExecutionMethod,
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heap_pages: u64,
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host_functions: Vec<&'static dyn Function>,
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allow_missing_func_imports: bool,
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max_instances: usize,
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) -> Result<VersionedRuntime, WasmError> {
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#[cfg(not(target_os = "unknown"))]
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let time = std::time::Instant::now();
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let mut runtime = create_wasm_runtime_with_code(
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wasm_method,
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heap_pages,
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&code,
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host_functions,
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allow_missing_func_imports,
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)?;
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// Call to determine runtime version.
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let version_result = {
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// `ext` is already implicitly handled as unwind safe, as we store it in a global variable.
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let mut ext = AssertUnwindSafe(ext);
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// The following unwind safety assertion is OK because if the method call panics, the
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// runtime will be dropped.
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let runtime = AssertUnwindSafe(runtime.as_mut());
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crate::native_executor::with_externalities_safe(
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&mut **ext,
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move || runtime.new_instance()?.call("Core_version", &[])
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).map_err(|_| WasmError::Instantiation("panic in call to get runtime version".into()))?
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};
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let version = match version_result {
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Ok(version) => Some(decode_version(&version)?),
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Err(_) => None,
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};
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#[cfg(not(target_os = "unknown"))]
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log::debug!(
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target: "wasm-runtime",
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"Prepared new runtime version {:?} in {} ms.",
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version,
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time.elapsed().as_millis(),
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);
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let mut instances = Vec::with_capacity(max_instances);
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instances.resize_with(max_instances, || Mutex::new(None));
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Ok(VersionedRuntime {
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code_hash,
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module: runtime,
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version,
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heap_pages,
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wasm_method,
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instances,
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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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use sp_wasm_interface::HostFunctions;
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use sp_api::{Core, RuntimeApiInfo};
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use substrate_test_runtime::Block;
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use codec::Encode;
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#[test]
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fn host_functions_are_equal() {
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let host_functions = sp_io::SubstrateHostFunctions::host_functions();
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let equal = &host_functions[..] == &host_functions[..];
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assert!(equal, "Host functions are not equal");
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}
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#[test]
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fn old_runtime_version_decodes() {
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let old_runtime_version = sp_api::OldRuntimeVersion {
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spec_name: "test".into(),
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impl_name: "test".into(),
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authoring_version: 1,
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spec_version: 1,
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impl_version: 1,
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apis: sp_api::create_apis_vec!([(Core::<Block, Error = ()>::ID, 1)]),
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};
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let version = decode_version(&old_runtime_version.encode()).unwrap();
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assert_eq!(1, version.transaction_version);
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}
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#[test]
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fn old_runtime_version_decodes_fails_with_version_3() {
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let old_runtime_version = sp_api::OldRuntimeVersion {
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spec_name: "test".into(),
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impl_name: "test".into(),
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authoring_version: 1,
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spec_version: 1,
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impl_version: 1,
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apis: sp_api::create_apis_vec!([(Core::<Block, Error = ()>::ID, 3)]),
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};
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decode_version(&old_runtime_version.encode()).unwrap_err();
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}
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#[test]
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fn new_runtime_version_decodes() {
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let old_runtime_version = sp_api::RuntimeVersion {
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spec_name: "test".into(),
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impl_name: "test".into(),
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authoring_version: 1,
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spec_version: 1,
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impl_version: 1,
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apis: sp_api::create_apis_vec!([(Core::<Block, Error = ()>::ID, 3)]),
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transaction_version: 3,
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};
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let version = decode_version(&old_runtime_version.encode()).unwrap();
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assert_eq!(3, version.transaction_version);
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}
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}
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