mirror of
https://github.com/denoland/deno.git
synced 2024-12-27 01:29:14 -05:00
371 lines
10 KiB
Rust
371 lines
10 KiB
Rust
use std::collections::HashMap;
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use std::path::Path;
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use std::path::PathBuf;
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use deno_core::error::AnyError;
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use deno_core::parking_lot::Mutex;
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use deno_core::serde_json;
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use deno_runtime::deno_webstorage::rusqlite::params;
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use deno_runtime::deno_webstorage::rusqlite::Connection;
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use serde::Serialize;
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use tokio::task::JoinHandle;
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/// Cache used to skip formatting/linting a file again when we
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/// know it is already formatted or has no lint diagnostics.
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pub struct IncrementalCache(Option<IncrementalCacheInner>);
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impl IncrementalCache {
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pub fn new<TState: Serialize>(
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db_file_path: &Path,
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state: &TState,
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initial_file_paths: &[PathBuf],
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) -> Self {
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// if creating the incremental cache fails, then we
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// treat it as not having a cache
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let result =
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IncrementalCacheInner::new(db_file_path, state, initial_file_paths);
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IncrementalCache(match result {
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Ok(inner) => Some(inner),
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Err(err) => {
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log::debug!("Creating the incremental cache failed.\n{:#}", err);
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// Maybe the cache file is corrupt. Attempt to remove
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// the cache file for next time
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let _ = std::fs::remove_file(db_file_path);
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None
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}
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})
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}
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pub fn is_file_same(&self, file_path: &Path, file_text: &str) -> bool {
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if let Some(inner) = &self.0 {
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inner.is_file_same(file_path, file_text)
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} else {
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false
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}
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}
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pub fn update_file(&self, file_path: &Path, file_text: &str) {
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if let Some(inner) = &self.0 {
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inner.update_file(file_path, file_text)
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}
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}
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pub async fn wait_completion(&self) {
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if let Some(inner) = &self.0 {
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inner.wait_completion().await;
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}
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}
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}
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enum ReceiverMessage {
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Update(PathBuf, u64),
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Exit,
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}
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struct IncrementalCacheInner {
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previous_hashes: HashMap<PathBuf, u64>,
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sender: tokio::sync::mpsc::UnboundedSender<ReceiverMessage>,
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handle: Mutex<Option<JoinHandle<()>>>,
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}
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impl IncrementalCacheInner {
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pub fn new<TState: Serialize>(
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db_file_path: &Path,
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state: &TState,
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initial_file_paths: &[PathBuf],
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) -> Result<Self, AnyError> {
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let state_hash =
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fast_insecure_hash(serde_json::to_string(state).unwrap().as_bytes());
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let sql_cache = SqlIncrementalCache::new(db_file_path, state_hash)?;
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Ok(Self::from_sql_incremental_cache(
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sql_cache,
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initial_file_paths,
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))
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}
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fn from_sql_incremental_cache(
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cache: SqlIncrementalCache,
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initial_file_paths: &[PathBuf],
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) -> Self {
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let mut previous_hashes = HashMap::new();
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for path in initial_file_paths {
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if let Some(hash) = cache.get_source_hash(path) {
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previous_hashes.insert(path.to_path_buf(), hash);
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}
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}
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let (sender, mut receiver) =
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tokio::sync::mpsc::unbounded_channel::<ReceiverMessage>();
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// sqlite isn't `Sync`, so we do all the updating on a dedicated task
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let handle = tokio::task::spawn(async move {
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while let Some(message) = receiver.recv().await {
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match message {
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ReceiverMessage::Update(path, hash) => {
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let _ = cache.set_source_hash(&path, hash);
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}
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ReceiverMessage::Exit => break,
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}
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}
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});
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IncrementalCacheInner {
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previous_hashes,
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sender,
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handle: Mutex::new(Some(handle)),
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}
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}
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pub fn is_file_same(&self, file_path: &Path, file_text: &str) -> bool {
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match self.previous_hashes.get(file_path) {
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Some(hash) => *hash == fast_insecure_hash(file_text.as_bytes()),
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None => false,
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}
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}
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pub fn update_file(&self, file_path: &Path, file_text: &str) {
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let hash = fast_insecure_hash(file_text.as_bytes());
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if let Some(previous_hash) = self.previous_hashes.get(file_path) {
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if *previous_hash == hash {
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return; // do not bother updating the db file because nothing has changed
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}
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}
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let _ = self
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.sender
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.send(ReceiverMessage::Update(file_path.to_path_buf(), hash));
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}
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pub async fn wait_completion(&self) {
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if self.sender.send(ReceiverMessage::Exit).is_err() {
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return;
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}
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let handle = self.handle.lock().take();
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if let Some(handle) = handle {
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handle.await.unwrap();
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}
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}
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}
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struct SqlIncrementalCache {
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conn: Connection,
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/// A hash of the state used to produce the formatting/linting other than
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/// the CLI version. This state is a hash of the configuration and ensures
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/// we format/lint a file when the configuration changes.
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state_hash: u64,
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}
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impl SqlIncrementalCache {
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pub fn new(db_file_path: &Path, state_hash: u64) -> Result<Self, AnyError> {
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let conn = Connection::open(db_file_path)?;
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Self::from_connection(conn, state_hash, crate::version::deno())
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}
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fn from_connection(
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conn: Connection,
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state_hash: u64,
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cli_version: String,
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) -> Result<Self, AnyError> {
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run_pragma(&conn)?;
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create_tables(&conn, cli_version)?;
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Ok(Self { conn, state_hash })
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}
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pub fn get_source_hash(&self, path: &Path) -> Option<u64> {
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match self.get_source_hash_result(path) {
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Ok(option) => option,
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Err(err) => {
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if cfg!(debug_assertions) {
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panic!("Error retrieving hash: {}", err);
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} else {
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// fail silently when not debugging
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None
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}
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}
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}
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}
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fn get_source_hash_result(
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&self,
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path: &Path,
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) -> Result<Option<u64>, AnyError> {
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let query = "
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SELECT
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source_hash
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FROM
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incrementalcache
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WHERE
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file_path=?1
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AND state_hash=?2
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LIMIT 1";
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let mut stmt = self.conn.prepare_cached(query)?;
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let mut rows = stmt
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.query(params![path.to_string_lossy(), self.state_hash.to_string()])?;
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if let Some(row) = rows.next()? {
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let hash: String = row.get(0)?;
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Ok(Some(hash.parse::<u64>()?))
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} else {
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Ok(None)
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}
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}
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pub fn set_source_hash(
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&self,
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path: &Path,
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source_hash: u64,
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) -> Result<(), AnyError> {
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let sql = "
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INSERT OR REPLACE INTO
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incrementalcache (file_path, state_hash, source_hash)
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VALUES
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(?1, ?2, ?3)";
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let mut stmt = self.conn.prepare_cached(sql)?;
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stmt.execute(params![
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path.to_string_lossy(),
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&self.state_hash.to_string(),
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&source_hash.to_string(),
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])?;
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Ok(())
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}
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}
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fn run_pragma(conn: &Connection) -> Result<(), AnyError> {
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// Enable write-ahead-logging and tweak some other stuff
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let initial_pragmas = "
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-- enable write-ahead-logging mode
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PRAGMA journal_mode=WAL;
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PRAGMA synchronous=NORMAL;
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PRAGMA temp_store=memory;
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PRAGMA page_size=4096;
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PRAGMA mmap_size=6000000;
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PRAGMA optimize;
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";
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conn.execute_batch(initial_pragmas)?;
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Ok(())
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}
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fn create_tables(
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conn: &Connection,
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cli_version: String,
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) -> Result<(), AnyError> {
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// INT doesn't store up to u64, so use TEXT
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conn.execute(
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"CREATE TABLE IF NOT EXISTS incrementalcache (
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file_path TEXT PRIMARY KEY,
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state_hash TEXT NOT NULL,
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source_hash TEXT NOT NULL
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)",
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[],
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)?;
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conn.execute(
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"CREATE TABLE IF NOT EXISTS info (
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key TEXT PRIMARY KEY,
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value TEXT NOT NULL
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)",
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[],
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)?;
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// delete the cache when the CLI version changes
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let data_cli_version: Option<String> = conn
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.query_row(
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"SELECT value FROM info WHERE key='CLI_VERSION' LIMIT 1",
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[],
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|row| row.get(0),
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)
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.ok();
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if data_cli_version != Some(cli_version.to_string()) {
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conn.execute("DELETE FROM incrementalcache", params![])?;
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let mut stmt = conn
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.prepare("INSERT OR REPLACE INTO info (key, value) VALUES (?1, ?2)")?;
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stmt.execute(params!["CLI_VERSION", &cli_version])?;
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}
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Ok(())
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}
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/// Very fast non-cryptographically secure hash.
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fn fast_insecure_hash(bytes: &[u8]) -> u64 {
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use std::hash::Hasher;
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use twox_hash::XxHash64;
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let mut hasher = XxHash64::default();
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hasher.write(bytes);
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hasher.finish()
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}
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#[cfg(test)]
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mod test {
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use std::path::PathBuf;
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use super::*;
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#[test]
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pub fn sql_cache_general_use() {
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let conn = Connection::open_in_memory().unwrap();
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let cache =
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SqlIncrementalCache::from_connection(conn, 1, "1.0.0".to_string())
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.unwrap();
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let path = PathBuf::from("/mod.ts");
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assert_eq!(cache.get_source_hash(&path), None);
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cache.set_source_hash(&path, 2).unwrap();
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assert_eq!(cache.get_source_hash(&path), Some(2));
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// try changing the cli version (should clear)
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let conn = cache.conn;
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let mut cache =
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SqlIncrementalCache::from_connection(conn, 1, "2.0.0".to_string())
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.unwrap();
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assert_eq!(cache.get_source_hash(&path), None);
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// add back the file to the cache
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cache.set_source_hash(&path, 2).unwrap();
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assert_eq!(cache.get_source_hash(&path), Some(2));
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// try changing the state hash
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cache.state_hash = 2;
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assert_eq!(cache.get_source_hash(&path), None);
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cache.state_hash = 1;
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// should return now that everything is back
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assert_eq!(cache.get_source_hash(&path), Some(2));
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// recreating the cache should not remove the data because the CLI version and state hash is the same
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let conn = cache.conn;
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let cache =
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SqlIncrementalCache::from_connection(conn, 1, "2.0.0".to_string())
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.unwrap();
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assert_eq!(cache.get_source_hash(&path), Some(2));
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// now try replacing and using another path
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cache.set_source_hash(&path, 3).unwrap();
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cache.set_source_hash(&path, 4).unwrap();
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let path2 = PathBuf::from("/mod2.ts");
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cache.set_source_hash(&path2, 5).unwrap();
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assert_eq!(cache.get_source_hash(&path), Some(4));
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assert_eq!(cache.get_source_hash(&path2), Some(5));
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}
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#[tokio::test]
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pub async fn incremental_cache_general_use() {
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let conn = Connection::open_in_memory().unwrap();
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let sql_cache =
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SqlIncrementalCache::from_connection(conn, 1, "1.0.0".to_string())
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.unwrap();
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let file_path = PathBuf::from("/mod.ts");
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let file_text = "test";
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let file_hash = fast_insecure_hash(file_text.as_bytes());
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sql_cache.set_source_hash(&file_path, file_hash).unwrap();
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let cache = IncrementalCacheInner::from_sql_incremental_cache(
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sql_cache,
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&[file_path.clone()],
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);
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assert!(cache.is_file_same(&file_path, "test"));
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assert!(!cache.is_file_same(&file_path, "other"));
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// just ensure this doesn't panic
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cache.update_file(&file_path, "other");
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}
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}
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