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Add support for backing up partial segments to remote storage. Disabled
by default, can be enabled with `--partial-backup-enabled`.
Safekeeper timeline has a background task which is subscribed to
`commit_lsn` and `flush_lsn` updates. After the partial segment was
updated (`flush_lsn` was changed), the segment will be uploaded to S3 in
about 15 minutes.
The filename format for partial segments is
`Segment_Term_Flush_Commit_skNN.partial`, where:
- `Segment` – the segment name, like `000000010000000000000001`
- `Term` – current term
- `Flush` – flush_lsn in hex format `{:016X}`, e.g. `00000000346BC568`
- `Commit` – commit_lsn in the same hex format
- `NN` – safekeeper_id, like `1`
The full object name example:
`000000010000000000000002_2_0000000002534868_0000000002534410_sk1.partial`
Each safekeeper will keep info about remote partial segments in its
control file. Code updates state in the control file before doing any S3
operations. This way control file stores information about all
potentially existing remote partial segments and can clean them up after
uploading a newer version.
Closes #6336
309 lines
10 KiB
Rust
309 lines
10 KiB
Rust
//! Control file serialization, deserialization and persistence.
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use anyhow::{bail, ensure, Context, Result};
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use byteorder::{LittleEndian, ReadBytesExt, WriteBytesExt};
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use camino::Utf8PathBuf;
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use tokio::fs::File;
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use tokio::io::AsyncWriteExt;
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use utils::crashsafe::durable_rename;
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use std::io::Read;
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use std::ops::Deref;
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use std::path::Path;
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use std::time::Instant;
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use crate::control_file_upgrade::upgrade_control_file;
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use crate::metrics::PERSIST_CONTROL_FILE_SECONDS;
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use crate::state::TimelinePersistentState;
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use utils::{bin_ser::LeSer, id::TenantTimelineId};
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use crate::SafeKeeperConf;
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pub const SK_MAGIC: u32 = 0xcafeceefu32;
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pub const SK_FORMAT_VERSION: u32 = 8;
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// contains persistent metadata for safekeeper
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const CONTROL_FILE_NAME: &str = "safekeeper.control";
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// needed to atomically update the state using `rename`
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const CONTROL_FILE_NAME_PARTIAL: &str = "safekeeper.control.partial";
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pub const CHECKSUM_SIZE: usize = std::mem::size_of::<u32>();
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/// Storage should keep actual state inside of it. It should implement Deref
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/// trait to access state fields and have persist method for updating that state.
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#[async_trait::async_trait]
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pub trait Storage: Deref<Target = TimelinePersistentState> {
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/// Persist safekeeper state on disk and update internal state.
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async fn persist(&mut self, s: &TimelinePersistentState) -> Result<()>;
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/// Timestamp of last persist.
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fn last_persist_at(&self) -> Instant;
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}
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#[derive(Debug)]
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pub struct FileStorage {
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// save timeline dir to avoid reconstructing it every time
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timeline_dir: Utf8PathBuf,
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conf: SafeKeeperConf,
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/// Last state persisted to disk.
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state: TimelinePersistentState,
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/// Not preserved across restarts.
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last_persist_at: Instant,
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}
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impl FileStorage {
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/// Initialize storage by loading state from disk.
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pub fn restore_new(ttid: &TenantTimelineId, conf: &SafeKeeperConf) -> Result<FileStorage> {
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let timeline_dir = conf.timeline_dir(ttid);
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let state = Self::load_control_file_conf(conf, ttid)?;
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Ok(FileStorage {
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timeline_dir,
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conf: conf.clone(),
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state,
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last_persist_at: Instant::now(),
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})
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}
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/// Create file storage for a new timeline, but don't persist it yet.
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pub fn create_new(
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timeline_dir: Utf8PathBuf,
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conf: &SafeKeeperConf,
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state: TimelinePersistentState,
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) -> Result<FileStorage> {
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let store = FileStorage {
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timeline_dir,
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conf: conf.clone(),
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state,
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last_persist_at: Instant::now(),
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};
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Ok(store)
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}
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/// Check the magic/version in the on-disk data and deserialize it, if possible.
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fn deser_sk_state(buf: &mut &[u8]) -> Result<TimelinePersistentState> {
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// Read the version independent part
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let magic = ReadBytesExt::read_u32::<LittleEndian>(buf)?;
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if magic != SK_MAGIC {
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bail!(
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"bad control file magic: {:X}, expected {:X}",
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magic,
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SK_MAGIC
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);
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}
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let version = ReadBytesExt::read_u32::<LittleEndian>(buf)?;
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if version == SK_FORMAT_VERSION {
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let res = TimelinePersistentState::des(buf)?;
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return Ok(res);
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}
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// try to upgrade
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upgrade_control_file(buf, version)
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}
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/// Load control file for given ttid at path specified by conf.
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pub fn load_control_file_conf(
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conf: &SafeKeeperConf,
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ttid: &TenantTimelineId,
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) -> Result<TimelinePersistentState> {
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let path = conf.timeline_dir(ttid).join(CONTROL_FILE_NAME);
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Self::load_control_file(path)
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}
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/// Read in the control file.
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pub fn load_control_file<P: AsRef<Path>>(
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control_file_path: P,
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) -> Result<TimelinePersistentState> {
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let mut control_file = std::fs::OpenOptions::new()
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.read(true)
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.write(true)
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.open(&control_file_path)
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.with_context(|| {
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format!(
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"failed to open control file at {}",
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control_file_path.as_ref().display(),
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)
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})?;
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let mut buf = Vec::new();
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control_file
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.read_to_end(&mut buf)
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.context("failed to read control file")?;
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let calculated_checksum = crc32c::crc32c(&buf[..buf.len() - CHECKSUM_SIZE]);
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let expected_checksum_bytes: &[u8; CHECKSUM_SIZE] =
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buf[buf.len() - CHECKSUM_SIZE..].try_into()?;
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let expected_checksum = u32::from_le_bytes(*expected_checksum_bytes);
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ensure!(
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calculated_checksum == expected_checksum,
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format!(
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"safekeeper control file checksum mismatch: expected {} got {}",
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expected_checksum, calculated_checksum
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)
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);
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let state = FileStorage::deser_sk_state(&mut &buf[..buf.len() - CHECKSUM_SIZE])
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.with_context(|| {
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format!(
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"while reading control file {}",
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control_file_path.as_ref().display(),
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)
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})?;
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Ok(state)
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}
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}
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impl Deref for FileStorage {
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type Target = TimelinePersistentState;
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fn deref(&self) -> &Self::Target {
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&self.state
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}
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}
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#[async_trait::async_trait]
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impl Storage for FileStorage {
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/// Persists state durably to the underlying storage.
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///
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/// For a description, see <https://lwn.net/Articles/457667/>.
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async fn persist(&mut self, s: &TimelinePersistentState) -> Result<()> {
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let _timer = PERSIST_CONTROL_FILE_SECONDS.start_timer();
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// write data to safekeeper.control.partial
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let control_partial_path = self.timeline_dir.join(CONTROL_FILE_NAME_PARTIAL);
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let mut control_partial = File::create(&control_partial_path).await.with_context(|| {
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format!(
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"failed to create partial control file at: {}",
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&control_partial_path
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)
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})?;
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let mut buf: Vec<u8> = Vec::new();
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WriteBytesExt::write_u32::<LittleEndian>(&mut buf, SK_MAGIC)?;
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WriteBytesExt::write_u32::<LittleEndian>(&mut buf, SK_FORMAT_VERSION)?;
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s.ser_into(&mut buf)?;
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// calculate checksum before resize
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let checksum = crc32c::crc32c(&buf);
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buf.extend_from_slice(&checksum.to_le_bytes());
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control_partial.write_all(&buf).await.with_context(|| {
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format!(
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"failed to write safekeeper state into control file at: {}",
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control_partial_path
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)
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})?;
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control_partial.flush().await.with_context(|| {
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format!(
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"failed to flush safekeeper state into control file at: {}",
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control_partial_path
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)
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})?;
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let control_path = self.timeline_dir.join(CONTROL_FILE_NAME);
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durable_rename(&control_partial_path, &control_path, !self.conf.no_sync).await?;
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// update internal state
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self.state = s.clone();
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Ok(())
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}
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fn last_persist_at(&self) -> Instant {
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self.last_persist_at
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}
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use tokio::fs;
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use utils::lsn::Lsn;
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fn stub_conf() -> SafeKeeperConf {
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let workdir = camino_tempfile::tempdir().unwrap().into_path();
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SafeKeeperConf {
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workdir,
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..SafeKeeperConf::dummy()
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}
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}
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async fn load_from_control_file(
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conf: &SafeKeeperConf,
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ttid: &TenantTimelineId,
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) -> Result<(FileStorage, TimelinePersistentState)> {
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fs::create_dir_all(conf.timeline_dir(ttid))
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.await
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.expect("failed to create timeline dir");
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Ok((
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FileStorage::restore_new(ttid, conf)?,
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FileStorage::load_control_file_conf(conf, ttid)?,
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))
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}
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async fn create(
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conf: &SafeKeeperConf,
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ttid: &TenantTimelineId,
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) -> Result<(FileStorage, TimelinePersistentState)> {
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fs::create_dir_all(conf.timeline_dir(ttid))
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.await
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.expect("failed to create timeline dir");
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let state = TimelinePersistentState::empty();
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let timeline_dir = conf.timeline_dir(ttid);
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let storage = FileStorage::create_new(timeline_dir, conf, state.clone())?;
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Ok((storage, state))
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}
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#[tokio::test]
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async fn test_read_write_safekeeper_state() {
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let conf = stub_conf();
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let ttid = TenantTimelineId::generate();
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{
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let (mut storage, mut state) =
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create(&conf, &ttid).await.expect("failed to create state");
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// change something
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state.commit_lsn = Lsn(42);
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storage
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.persist(&state)
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.await
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.expect("failed to persist state");
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}
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let (_, state) = load_from_control_file(&conf, &ttid)
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.await
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.expect("failed to read state");
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assert_eq!(state.commit_lsn, Lsn(42));
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}
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#[tokio::test]
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async fn test_safekeeper_state_checksum_mismatch() {
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let conf = stub_conf();
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let ttid = TenantTimelineId::generate();
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{
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let (mut storage, mut state) =
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create(&conf, &ttid).await.expect("failed to read state");
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// change something
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state.commit_lsn = Lsn(42);
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storage
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.persist(&state)
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.await
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.expect("failed to persist state");
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}
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let control_path = conf.timeline_dir(&ttid).join(CONTROL_FILE_NAME);
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let mut data = fs::read(&control_path).await.unwrap();
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data[0] += 1; // change the first byte of the file to fail checksum validation
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fs::write(&control_path, &data)
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.await
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.expect("failed to write control file");
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match load_from_control_file(&conf, &ttid).await {
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Err(err) => assert!(err
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.to_string()
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.contains("safekeeper control file checksum mismatch")),
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Ok(_) => panic!("expected error"),
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}
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}
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}
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