mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-01 13:37:57 +00:00
9d6ed7ecae
Co-authored-by: Bastian Köcher <bkchr@users.noreply.github.com>
265 lines
8.1 KiB
Rust
265 lines
8.1 KiB
Rust
// Copyright 2021 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot 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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// Polkadot 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 Polkadot. If not, see <http://www.gnu.org/licenses/>.
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use always_assert::always;
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use async_std::path::{Path, PathBuf};
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use parity_scale_codec::{Decode, Encode};
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use polkadot_parachain::primitives::ValidationCodeHash;
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use std::{
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collections::HashMap,
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time::{Duration, SystemTime},
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};
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/// A final product of preparation process. Contains either a ready to run compiled artifact or
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/// a description what went wrong.
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#[derive(Encode, Decode)]
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pub enum Artifact {
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/// During the prevalidation stage of preparation an issue was found with the PVF.
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PrevalidationErr(String),
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/// Compilation failed for the given PVF.
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PreparationErr(String),
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/// This state indicates that the process assigned to prepare the artifact wasn't responsible
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/// or were killed. This state is reported by the validation host (not by the worker).
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DidntMakeIt,
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/// The PVF passed all the checks and is ready for execution.
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Compiled { compiled_artifact: Vec<u8> },
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}
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impl Artifact {
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/// Serializes this struct into a byte buffer.
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pub fn serialize(&self) -> Vec<u8> {
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self.encode()
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}
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/// Deserialize the given byte buffer to an artifact.
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pub fn deserialize(mut bytes: &[u8]) -> Result<Self, String> {
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Artifact::decode(&mut bytes).map_err(|e| format!("{:?}", e))
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}
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}
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/// Identifier of an artifact. Right now it only encodes a code hash of the PVF. But if we get to
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/// multiple engine implementations the artifact ID should include the engine type as well.
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#[derive(Clone, Debug, PartialEq, Eq, PartialOrd, Ord, Hash)]
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pub struct ArtifactId {
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pub(crate) code_hash: ValidationCodeHash,
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}
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impl ArtifactId {
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const PREFIX: &'static str = "wasmtime_";
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/// Creates a new artifact ID with the given hash.
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pub fn new(code_hash: ValidationCodeHash) -> Self {
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Self { code_hash }
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}
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/// Tries to recover the artifact id from the given file name.
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#[cfg(test)]
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pub fn from_file_name(file_name: &str) -> Option<Self> {
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use polkadot_core_primitives::Hash;
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use std::str::FromStr as _;
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let file_name = file_name.strip_prefix(Self::PREFIX)?;
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let code_hash = Hash::from_str(file_name).ok()?.into();
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Some(Self { code_hash })
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}
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/// Returns the expected path to this artifact given the root of the cache.
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pub fn path(&self, cache_path: &Path) -> PathBuf {
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let file_name = format!("{}{:#x}", Self::PREFIX, self.code_hash);
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cache_path.join(file_name)
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}
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}
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/// A bundle of the artifact ID and the path.
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///
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/// Rationale for having this is two-fold:
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///
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/// - While we can derive the artifact path from the artifact id, it makes sense to carry it around
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/// sometimes to avoid extra work.
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/// - At the same time, carrying only path limiting the ability for logging.
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#[derive(Debug, Clone)]
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pub struct ArtifactPathId {
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pub(crate) id: ArtifactId,
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pub(crate) path: PathBuf,
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}
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impl ArtifactPathId {
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pub(crate) fn new(artifact_id: ArtifactId, cache_path: &Path) -> Self {
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Self { path: artifact_id.path(cache_path), id: artifact_id }
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}
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}
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pub enum ArtifactState {
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/// The artifact is ready to be used by the executor.
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///
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/// That means that the artifact should be accessible through the path obtained by the artifact
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/// id (unless, it was removed externally).
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Prepared {
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/// The time when the artifact was the last time needed.
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///
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/// This is updated when we get the heads up for this artifact or when we just discover
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/// this file.
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last_time_needed: SystemTime,
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},
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/// A task to prepare this artifact is scheduled.
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Preparing,
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}
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/// A container of all known artifact ids and their states.
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pub struct Artifacts {
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artifacts: HashMap<ArtifactId, ArtifactState>,
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}
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impl Artifacts {
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/// Initialize a blank cache at the given path. This will clear everything present at the
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/// given path, to be populated over time.
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///
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/// The recognized artifacts will be filled in the table and unrecognized will be removed.
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pub async fn new(cache_path: &Path) -> Self {
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// Make sure that the cache path directory and all it's parents are created.
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// First delete the entire cache. Nodes are long-running so this should populate shortly.
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let _ = async_std::fs::remove_dir_all(cache_path).await;
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let _ = async_std::fs::create_dir_all(cache_path).await;
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Self { artifacts: HashMap::new() }
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}
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#[cfg(test)]
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pub(crate) fn empty() -> Self {
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Self { artifacts: HashMap::new() }
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}
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/// Returns the state of the given artifact by its ID.
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pub fn artifact_state_mut(&mut self, artifact_id: &ArtifactId) -> Option<&mut ArtifactState> {
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self.artifacts.get_mut(artifact_id)
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}
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/// Inform the table about the artifact with the given ID. The state will be set to "preparing".
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///
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/// This function must be used only for brand new artifacts and should never be used for
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/// replacing existing ones.
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pub fn insert_preparing(&mut self, artifact_id: ArtifactId) {
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// See the precondition.
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always!(self.artifacts.insert(artifact_id, ArtifactState::Preparing).is_none());
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}
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/// Insert an artifact with the given ID as "prepared".
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///
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/// This function must be used only for brand new artifacts and should never be used for
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/// replacing existing ones.
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#[cfg(test)]
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pub fn insert_prepared(&mut self, artifact_id: ArtifactId, last_time_needed: SystemTime) {
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// See the precondition.
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always!(self
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.artifacts
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.insert(artifact_id, ArtifactState::Prepared { last_time_needed })
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.is_none());
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}
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/// Remove and retrieve the artifacts from the table that are older than the supplied Time-To-Live.
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pub fn prune(&mut self, artifact_ttl: Duration) -> Vec<ArtifactId> {
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let now = SystemTime::now();
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let mut to_remove = vec![];
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for (k, v) in self.artifacts.iter() {
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if let ArtifactState::Prepared { last_time_needed, .. } = *v {
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if now
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.duration_since(last_time_needed)
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.map(|age| age > artifact_ttl)
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.unwrap_or(false)
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{
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to_remove.push(k.clone());
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}
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}
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}
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for artifact in &to_remove {
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self.artifacts.remove(artifact);
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}
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to_remove
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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::{ArtifactId, Artifacts};
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use async_std::path::Path;
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use sp_core::H256;
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use std::str::FromStr;
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#[test]
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fn from_file_name() {
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assert!(ArtifactId::from_file_name("").is_none());
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assert!(ArtifactId::from_file_name("junk").is_none());
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assert_eq!(
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ArtifactId::from_file_name(
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"wasmtime_0x0022800000000000000000000000000000000000000000000000000000000000"
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),
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Some(ArtifactId::new(
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hex_literal::hex![
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"0022800000000000000000000000000000000000000000000000000000000000"
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]
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.into()
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)),
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);
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}
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#[test]
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fn path() {
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let path = Path::new("/test");
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let hash =
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H256::from_str("1234567890123456789012345678901234567890123456789012345678901234")
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.unwrap()
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.into();
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assert_eq!(
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ArtifactId::new(hash).path(path).to_str(),
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Some(
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"/test/wasmtime_0x1234567890123456789012345678901234567890123456789012345678901234"
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),
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);
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}
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#[test]
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fn artifacts_removes_cache_on_startup() {
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let fake_cache_path = async_std::task::block_on(async move {
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crate::worker_common::tmpfile("test-cache").await.unwrap()
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});
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let fake_artifact_path = {
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let mut p = fake_cache_path.clone();
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p.push("wasmtime_0x1234567890123456789012345678901234567890123456789012345678901234");
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p
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};
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// create a tmp cache with 1 artifact.
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std::fs::create_dir_all(&fake_cache_path).unwrap();
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std::fs::File::create(fake_artifact_path).unwrap();
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// this should remove it and re-create.
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let p = &fake_cache_path;
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async_std::task::block_on(async { Artifacts::new(p).await });
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assert_eq!(std::fs::read_dir(&fake_cache_path).unwrap().count(), 0);
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std::fs::remove_dir_all(fake_cache_path).unwrap();
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}
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}
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