mirror of
https://github.com/neondatabase/neon.git
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360 lines
13 KiB
Rust
360 lines
13 KiB
Rust
//!
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//! Generate a tarball with files needed to bootstrap ComputeNode.
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//!
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//! TODO: this module has nothing to do with PostgreSQL pg_basebackup.
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//! It could use a better name.
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//!
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//! Stateless Postgres compute node is launched by sending a tarball
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//! which contains non-relational data (multixacts, clog, filenodemaps, twophase files),
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//! generated pg_control and dummy segment of WAL.
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//! This module is responsible for creation of such tarball
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//! from data stored in object storage.
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//!
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use anyhow::{ensure, Context, Result};
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use bytes::{BufMut, BytesMut};
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use log::*;
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use std::fmt::Write as FmtWrite;
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use std::io;
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use std::io::Write;
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use std::sync::Arc;
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use std::time::SystemTime;
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use tar::{Builder, EntryType, Header};
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use crate::reltag::SlruKind;
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use crate::repository::Timeline;
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use crate::DatadirTimelineImpl;
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use postgres_ffi::xlog_utils::*;
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use postgres_ffi::*;
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use zenith_utils::lsn::Lsn;
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/// This is short-living object only for the time of tarball creation,
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/// created mostly to avoid passing a lot of parameters between various functions
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/// used for constructing tarball.
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pub struct Basebackup<'a> {
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ar: Builder<&'a mut dyn Write>,
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timeline: &'a Arc<DatadirTimelineImpl>,
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pub lsn: Lsn,
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prev_record_lsn: Lsn,
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}
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// Create basebackup with non-rel data in it. Omit relational data.
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//
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// Currently we use empty lsn in two cases:
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// * During the basebackup right after timeline creation
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// * When working without safekeepers. In this situation it is important to match the lsn
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// we are taking basebackup on with the lsn that is used in pageserver's walreceiver
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// to start the replication.
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impl<'a> Basebackup<'a> {
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pub fn new(
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write: &'a mut dyn Write,
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timeline: &'a Arc<DatadirTimelineImpl>,
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req_lsn: Option<Lsn>,
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) -> Result<Basebackup<'a>> {
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// Compute postgres doesn't have any previous WAL files, but the first
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// record that it's going to write needs to include the LSN of the
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// previous record (xl_prev). We include prev_record_lsn in the
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// "zenith.signal" file, so that postgres can read it during startup.
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//
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// We don't keep full history of record boundaries in the page server,
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// however, only the predecessor of the latest record on each
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// timeline. So we can only provide prev_record_lsn when you take a
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// base backup at the end of the timeline, i.e. at last_record_lsn.
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// Even at the end of the timeline, we sometimes don't have a valid
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// prev_lsn value; that happens if the timeline was just branched from
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// an old LSN and it doesn't have any WAL of its own yet. We will set
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// prev_lsn to Lsn(0) if we cannot provide the correct value.
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let (backup_prev, backup_lsn) = if let Some(req_lsn) = req_lsn {
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// Backup was requested at a particular LSN. Wait for it to arrive.
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info!("waiting for {}", req_lsn);
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timeline.tline.wait_lsn(req_lsn)?;
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// If the requested point is the end of the timeline, we can
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// provide prev_lsn. (get_last_record_rlsn() might return it as
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// zero, though, if no WAL has been generated on this timeline
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// yet.)
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let end_of_timeline = timeline.tline.get_last_record_rlsn();
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if req_lsn == end_of_timeline.last {
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(end_of_timeline.prev, req_lsn)
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} else {
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(Lsn(0), req_lsn)
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}
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} else {
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// Backup was requested at end of the timeline.
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let end_of_timeline = timeline.tline.get_last_record_rlsn();
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(end_of_timeline.prev, end_of_timeline.last)
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};
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info!(
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"taking basebackup lsn={}, prev_lsn={}",
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backup_lsn, backup_prev
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);
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Ok(Basebackup {
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ar: Builder::new(write),
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timeline,
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lsn: backup_lsn,
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prev_record_lsn: backup_prev,
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})
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}
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pub fn send_tarball(&mut self) -> anyhow::Result<()> {
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// Create pgdata subdirs structure
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for dir in pg_constants::PGDATA_SUBDIRS.iter() {
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let header = new_tar_header_dir(*dir)?;
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self.ar.append(&header, &mut io::empty())?;
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}
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// Send empty config files.
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for filepath in pg_constants::PGDATA_SPECIAL_FILES.iter() {
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if *filepath == "pg_hba.conf" {
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let data = pg_constants::PG_HBA.as_bytes();
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let header = new_tar_header(filepath, data.len() as u64)?;
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self.ar.append(&header, data)?;
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} else {
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let header = new_tar_header(filepath, 0)?;
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self.ar.append(&header, &mut io::empty())?;
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}
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}
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// Gather non-relational files from object storage pages.
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for kind in [
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SlruKind::Clog,
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SlruKind::MultiXactOffsets,
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SlruKind::MultiXactMembers,
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] {
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for segno in self.timeline.list_slru_segments(kind, self.lsn)? {
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self.add_slru_segment(kind, segno)?;
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}
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}
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// Create tablespace directories
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for ((spcnode, dbnode), has_relmap_file) in self.timeline.list_dbdirs(self.lsn)? {
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self.add_dbdir(spcnode, dbnode, has_relmap_file)?;
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}
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for xid in self.timeline.list_twophase_files(self.lsn)? {
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self.add_twophase_file(xid)?;
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}
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// Generate pg_control and bootstrap WAL segment.
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self.add_pgcontrol_file()?;
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self.ar.finish()?;
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debug!("all tarred up!");
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Ok(())
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}
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//
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// Generate SLRU segment files from repository.
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//
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fn add_slru_segment(&mut self, slru: SlruKind, segno: u32) -> anyhow::Result<()> {
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let nblocks = self.timeline.get_slru_segment_size(slru, segno, self.lsn)?;
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let mut slru_buf: Vec<u8> =
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Vec::with_capacity(nblocks as usize * pg_constants::BLCKSZ as usize);
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for blknum in 0..nblocks {
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let img = self
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.timeline
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.get_slru_page_at_lsn(slru, segno, blknum, self.lsn)?;
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ensure!(img.len() == pg_constants::BLCKSZ as usize);
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slru_buf.extend_from_slice(&img);
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}
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let segname = format!("{}/{:>04X}", slru.to_str(), segno);
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let header = new_tar_header(&segname, slru_buf.len() as u64)?;
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self.ar.append(&header, slru_buf.as_slice())?;
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trace!("Added to basebackup slru {} relsize {}", segname, nblocks);
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Ok(())
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}
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//
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// Include database/tablespace directories.
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//
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// Each directory contains a PG_VERSION file, and the default database
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// directories also contain pg_filenode.map files.
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//
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fn add_dbdir(
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&mut self,
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spcnode: u32,
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dbnode: u32,
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has_relmap_file: bool,
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) -> anyhow::Result<()> {
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let relmap_img = if has_relmap_file {
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let img = self.timeline.get_relmap_file(spcnode, dbnode, self.lsn)?;
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ensure!(img.len() == 512);
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Some(img)
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} else {
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None
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};
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if spcnode == pg_constants::GLOBALTABLESPACE_OID {
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let version_bytes = pg_constants::PG_MAJORVERSION.as_bytes();
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let header = new_tar_header("PG_VERSION", version_bytes.len() as u64)?;
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self.ar.append(&header, version_bytes)?;
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let header = new_tar_header("global/PG_VERSION", version_bytes.len() as u64)?;
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self.ar.append(&header, version_bytes)?;
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if let Some(img) = relmap_img {
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// filenode map for global tablespace
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let header = new_tar_header("global/pg_filenode.map", img.len() as u64)?;
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self.ar.append(&header, &img[..])?;
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} else {
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warn!("global/pg_filenode.map is missing");
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}
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} else {
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// User defined tablespaces are not supported. However, as
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// a special case, if a tablespace/db directory is
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// completely empty, we can leave it out altogether. This
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// makes taking a base backup after the 'tablespace'
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// regression test pass, because the test drops the
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// created tablespaces after the tests.
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//
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// FIXME: this wouldn't be necessary, if we handled
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// XLOG_TBLSPC_DROP records. But we probably should just
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// throw an error on CREATE TABLESPACE in the first place.
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if !has_relmap_file
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&& self
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.timeline
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.list_rels(spcnode, dbnode, self.lsn)?
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.is_empty()
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{
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return Ok(());
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}
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// User defined tablespaces are not supported
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ensure!(spcnode == pg_constants::DEFAULTTABLESPACE_OID);
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// Append dir path for each database
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let path = format!("base/{}", dbnode);
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let header = new_tar_header_dir(&path)?;
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self.ar.append(&header, &mut io::empty())?;
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if let Some(img) = relmap_img {
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let dst_path = format!("base/{}/PG_VERSION", dbnode);
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let version_bytes = pg_constants::PG_MAJORVERSION.as_bytes();
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let header = new_tar_header(&dst_path, version_bytes.len() as u64)?;
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self.ar.append(&header, version_bytes)?;
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let relmap_path = format!("base/{}/pg_filenode.map", dbnode);
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let header = new_tar_header(&relmap_path, img.len() as u64)?;
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self.ar.append(&header, &img[..])?;
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}
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};
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Ok(())
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}
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//
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// Extract twophase state files
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//
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fn add_twophase_file(&mut self, xid: TransactionId) -> anyhow::Result<()> {
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let img = self.timeline.get_twophase_file(xid, self.lsn)?;
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let mut buf = BytesMut::new();
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buf.extend_from_slice(&img[..]);
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let crc = crc32c::crc32c(&img[..]);
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buf.put_u32_le(crc);
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let path = format!("pg_twophase/{:>08X}", xid);
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let header = new_tar_header(&path, buf.len() as u64)?;
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self.ar.append(&header, &buf[..])?;
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Ok(())
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}
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//
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// Add generated pg_control file and bootstrap WAL segment.
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// Also send zenith.signal file with extra bootstrap data.
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//
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fn add_pgcontrol_file(&mut self) -> anyhow::Result<()> {
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let checkpoint_bytes = self
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.timeline
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.get_checkpoint(self.lsn)
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.context("failed to get checkpoint bytes")?;
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let pg_control_bytes = self
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.timeline
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.get_control_file(self.lsn)
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.context("failed get control bytes")?;
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let mut pg_control = ControlFileData::decode(&pg_control_bytes)?;
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let mut checkpoint = CheckPoint::decode(&checkpoint_bytes)?;
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// Generate new pg_control needed for bootstrap
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checkpoint.redo = normalize_lsn(self.lsn, pg_constants::WAL_SEGMENT_SIZE).0;
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//reset some fields we don't want to preserve
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//TODO Check this.
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//We may need to determine the value from twophase data.
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checkpoint.oldestActiveXid = 0;
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//save new values in pg_control
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pg_control.checkPoint = 0;
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pg_control.checkPointCopy = checkpoint;
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pg_control.state = pg_constants::DB_SHUTDOWNED;
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// add zenith.signal file
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let mut zenith_signal = String::new();
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if self.prev_record_lsn == Lsn(0) {
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if self.lsn == self.timeline.tline.get_ancestor_lsn() {
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write!(zenith_signal, "PREV LSN: none")?;
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} else {
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write!(zenith_signal, "PREV LSN: invalid")?;
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}
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} else {
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write!(zenith_signal, "PREV LSN: {}", self.prev_record_lsn)?;
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}
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self.ar.append(
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&new_tar_header("zenith.signal", zenith_signal.len() as u64)?,
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zenith_signal.as_bytes(),
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)?;
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//send pg_control
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let pg_control_bytes = pg_control.encode();
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let header = new_tar_header("global/pg_control", pg_control_bytes.len() as u64)?;
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self.ar.append(&header, &pg_control_bytes[..])?;
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//send wal segment
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let segno = self.lsn.segment_number(pg_constants::WAL_SEGMENT_SIZE);
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let wal_file_name = XLogFileName(PG_TLI, segno, pg_constants::WAL_SEGMENT_SIZE);
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let wal_file_path = format!("pg_wal/{}", wal_file_name);
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let header = new_tar_header(&wal_file_path, pg_constants::WAL_SEGMENT_SIZE as u64)?;
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let wal_seg = generate_wal_segment(segno, pg_control.system_identifier);
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ensure!(wal_seg.len() == pg_constants::WAL_SEGMENT_SIZE);
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self.ar.append(&header, &wal_seg[..])?;
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Ok(())
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}
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}
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//
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// Create new tarball entry header
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//
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fn new_tar_header(path: &str, size: u64) -> anyhow::Result<Header> {
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let mut header = Header::new_gnu();
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header.set_size(size);
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header.set_path(path)?;
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header.set_mode(0b110000000); // -rw-------
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header.set_mtime(
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// use currenttime as last modified time
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SystemTime::now()
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.duration_since(SystemTime::UNIX_EPOCH)
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.unwrap()
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.as_secs(),
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);
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header.set_cksum();
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Ok(header)
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}
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fn new_tar_header_dir(path: &str) -> anyhow::Result<Header> {
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let mut header = Header::new_gnu();
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header.set_size(0);
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header.set_path(path)?;
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header.set_mode(0o755); // -rw-------
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header.set_entry_type(EntryType::dir());
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header.set_mtime(
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// use currenttime as last modified time
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SystemTime::now()
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.duration_since(SystemTime::UNIX_EPOCH)
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.unwrap()
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.as_secs(),
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);
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header.set_cksum();
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Ok(header)
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}
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