forked from Deuxfleurs/garage
374 lines
8.5 KiB
Rust
374 lines
8.5 KiB
Rust
use std::sync::Arc;
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use serde::{Deserialize, Serialize};
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use tokio::sync::watch;
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use crate::data::*;
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use crate::error::Error;
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use crate::rpc_client::*;
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use crate::rpc_server::*;
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use crate::server::Garage;
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use crate::table::*;
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use crate::*;
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use crate::block_ref_table::*;
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use crate::bucket_table::*;
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use crate::version_table::*;
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pub const ADMIN_RPC_TIMEOUT: Duration = Duration::from_secs(30);
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pub const ADMIN_RPC_PATH: &str = "_admin";
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#[derive(Debug, Serialize, Deserialize)]
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pub enum AdminRPC {
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BucketOperation(BucketOperation),
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LaunchRepair(RepairOpt),
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// Replies
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Ok(String),
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BucketList(Vec<String>),
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BucketInfo(Bucket),
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}
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impl RpcMessage for AdminRPC {}
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pub struct AdminRpcHandler {
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garage: Arc<Garage>,
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rpc_client: Arc<RpcClient<AdminRPC>>,
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}
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impl AdminRpcHandler {
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pub fn new(garage: Arc<Garage>) -> Arc<Self> {
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let rpc_client = garage.system.clone().rpc_client::<AdminRPC>(ADMIN_RPC_PATH);
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Arc::new(Self { garage, rpc_client })
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}
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pub fn register_handler(self: Arc<Self>, rpc_server: &mut RpcServer) {
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rpc_server.add_handler::<AdminRPC, _, _>(ADMIN_RPC_PATH.to_string(), move |msg, _addr| {
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let self2 = self.clone();
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async move {
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match msg {
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AdminRPC::BucketOperation(bo) => self2.handle_bucket_cmd(bo).await,
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AdminRPC::LaunchRepair(opt) => self2.handle_launch_repair(opt).await,
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_ => Err(Error::BadRequest(format!("Invalid RPC"))),
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}
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}
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});
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}
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async fn handle_bucket_cmd(&self, cmd: BucketOperation) -> Result<AdminRPC, Error> {
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match cmd {
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BucketOperation::List => {
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let bucket_names = self
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.garage
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.bucket_table
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.get_range(&EmptyKey, None, Some(()), 10000)
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.await?
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.iter()
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.map(|b| b.name.to_string())
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.collect::<Vec<_>>();
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Ok(AdminRPC::BucketList(bucket_names))
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}
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BucketOperation::Info(query) => {
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let bucket = self
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.garage
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.bucket_table
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.get(&EmptyKey, &query.name)
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.await?
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.filter(|b| !b.deleted);
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match bucket {
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Some(b) => Ok(AdminRPC::BucketInfo(b)),
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None => Err(Error::BadRequest(format!(
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"Bucket {} not found",
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query.name
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))),
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}
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}
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BucketOperation::Create(query) => {
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let bucket = self.garage.bucket_table.get(&EmptyKey, &query.name).await?;
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if bucket.as_ref().filter(|b| !b.deleted).is_some() {
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return Err(Error::BadRequest(format!(
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"Bucket {} already exists",
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query.name
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)));
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}
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let new_time = match bucket {
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Some(b) => std::cmp::max(b.timestamp + 1, now_msec()),
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None => now_msec(),
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};
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self.garage
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.bucket_table
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.insert(&Bucket {
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name: query.name.clone(),
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timestamp: new_time,
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deleted: false,
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authorized_keys: vec![],
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})
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.await?;
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Ok(AdminRPC::Ok(format!("Bucket {} was created.", query.name)))
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}
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BucketOperation::Delete(query) => {
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let bucket = match self
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.garage
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.bucket_table
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.get(&EmptyKey, &query.name)
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.await?
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.filter(|b| !b.deleted)
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{
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None => {
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return Err(Error::BadRequest(format!(
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"Bucket {} does not exist",
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query.name
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)));
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}
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Some(b) => b,
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};
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let objects = self
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.garage
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.object_table
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.get_range(&query.name, None, Some(()), 10)
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.await?;
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if !objects.is_empty() {
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return Err(Error::BadRequest(format!(
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"Bucket {} is not empty",
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query.name
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)));
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}
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if !query.yes {
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return Err(Error::BadRequest(format!(
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"Add --yes flag to really perform this operation"
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)));
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}
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self.garage
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.bucket_table
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.insert(&Bucket {
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name: query.name.clone(),
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timestamp: std::cmp::max(bucket.timestamp + 1, now_msec()),
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deleted: true,
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authorized_keys: vec![],
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})
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.await?;
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Ok(AdminRPC::Ok(format!("Bucket {} was deleted.", query.name)))
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}
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_ => {
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// TODO
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Err(Error::Message(format!("Not implemented")))
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}
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}
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}
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async fn handle_launch_repair(self: &Arc<Self>, opt: RepairOpt) -> Result<AdminRPC, Error> {
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if !opt.yes {
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return Err(Error::BadRequest(format!(
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"Please provide the --yes flag to initiate repair operations."
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)));
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}
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if opt.all_nodes {
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let mut opt_to_send = opt.clone();
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opt_to_send.all_nodes = false;
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let mut failures = vec![];
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let ring = self.garage.system.ring.borrow().clone();
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for node in ring.config.members.keys() {
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if self
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.rpc_client
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.call(
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node,
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AdminRPC::LaunchRepair(opt_to_send.clone()),
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ADMIN_RPC_TIMEOUT,
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)
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.await
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.is_err()
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{
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failures.push(node.clone());
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}
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}
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if failures.is_empty() {
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Ok(AdminRPC::Ok(format!("Repair launched on all nodes")))
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} else {
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Err(Error::Message(format!(
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"Could not launch repair on nodes: {:?} (launched successfully on other nodes)",
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failures
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)))
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}
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} else {
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let self2 = self.clone();
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self.garage
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.system
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.background
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.spawn_worker("Repair worker".into(), move |must_exit| async move {
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self2.repair_worker(opt, must_exit).await
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})
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.await;
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Ok(AdminRPC::Ok(format!(
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"Repair launched on {:?}",
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self.garage.system.id
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)))
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}
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}
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async fn repair_worker(
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self: Arc<Self>,
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opt: RepairOpt,
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must_exit: watch::Receiver<bool>,
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) -> Result<(), Error> {
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let todo = |x| opt.what.as_ref().map(|y| *y == x).unwrap_or(true);
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if todo(RepairWhat::Tables) {
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info!("Launching a full sync of tables");
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self.garage
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.bucket_table
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.syncer
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.load_full()
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.unwrap()
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.add_full_scan()
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.await;
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self.garage
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.object_table
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.syncer
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.load_full()
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.unwrap()
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.add_full_scan()
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.await;
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self.garage
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.version_table
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.syncer
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.load_full()
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.unwrap()
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.add_full_scan()
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.await;
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self.garage
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.block_ref_table
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.syncer
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.load_full()
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.unwrap()
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.add_full_scan()
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.await;
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}
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// TODO: wait for full sync to finish before proceeding to the rest?
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if todo(RepairWhat::Versions) {
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info!("Repairing the versions table");
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self.repair_versions(&must_exit).await?;
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}
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if todo(RepairWhat::BlockRefs) {
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info!("Repairing the block refs table");
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self.repair_block_ref(&must_exit).await?;
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}
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if opt.what.is_none() {
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info!("Repairing the RC");
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self.repair_rc(&must_exit).await?;
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}
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if todo(RepairWhat::Blocks) {
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info!("Repairing the stored blocks");
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self.garage
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.block_manager
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.repair_data_store(&must_exit)
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.await?;
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}
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Ok(())
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}
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async fn repair_versions(&self, must_exit: &watch::Receiver<bool>) -> Result<(), Error> {
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let mut pos = vec![];
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while let Some((item_key, item_bytes)) = self.garage.version_table.store.get_gt(&pos)? {
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pos = item_key.to_vec();
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let version = rmp_serde::decode::from_read_ref::<_, Version>(item_bytes.as_ref())?;
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if version.deleted {
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continue;
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}
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let object = self
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.garage
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.object_table
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.get(&version.bucket, &version.key)
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.await?;
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let version_exists = match object {
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Some(o) => o.versions.iter().any(|x| x.uuid == version.uuid),
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None => {
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warn!(
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"Repair versions: object for version {:?} not found",
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version
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);
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false
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}
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};
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if !version_exists {
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info!("Repair versions: marking version as deleted: {:?}", version);
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self.garage
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.version_table
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.insert(&Version {
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uuid: version.uuid,
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deleted: true,
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blocks: vec![],
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bucket: version.bucket,
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key: version.key,
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})
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.await?;
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}
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if *must_exit.borrow() {
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break;
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}
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}
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Ok(())
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}
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async fn repair_block_ref(&self, must_exit: &watch::Receiver<bool>) -> Result<(), Error> {
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let mut pos = vec![];
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while let Some((item_key, item_bytes)) = self.garage.block_ref_table.store.get_gt(&pos)? {
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pos = item_key.to_vec();
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let block_ref = rmp_serde::decode::from_read_ref::<_, BlockRef>(item_bytes.as_ref())?;
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if block_ref.deleted {
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continue;
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}
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let version = self
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.garage
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.version_table
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.get(&block_ref.version, &EmptyKey)
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.await?;
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let ref_exists = match version {
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Some(v) => !v.deleted,
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None => {
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warn!(
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"Block ref repair: version for block ref {:?} not found",
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block_ref
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);
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false
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}
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};
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if !ref_exists {
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info!(
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"Repair block ref: marking block_ref as deleted: {:?}",
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block_ref
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);
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self.garage
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.block_ref_table
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.insert(&BlockRef {
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block: block_ref.block,
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version: block_ref.version,
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deleted: true,
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})
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.await?;
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}
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if *must_exit.borrow() {
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break;
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}
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}
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Ok(())
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}
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async fn repair_rc(&self, _must_exit: &watch::Receiver<bool>) -> Result<(), Error> {
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// TODO
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warn!("repair_rc: not implemented");
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Ok(())
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}
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}
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