use crate::bucket::versioning_sys::BucketVersioningSys; use crate::cache_value::metacache_set::{ListPathRawOptions, list_path_raw}; use crate::config::com::{CONFIG_PREFIX, read_config, save_config}; use crate::disk::error::DiskError; use crate::disk::{BUCKET_META_PREFIX, RUSTFS_META_BUCKET}; use crate::error::{Error, Result}; use crate::error::{ StorageError, is_err_bucket_exists, is_err_bucket_not_found, is_err_data_movement_overwrite, is_err_object_not_found, is_err_version_not_found, }; use crate::heal::data_usage::DATA_USAGE_CACHE_NAME; use crate::heal::heal_commands::HealOpts; use crate::new_object_layer_fn; use crate::notification_sys::get_global_notification_sys; use crate::set_disk::SetDisks; use crate::store_api::{ BucketOptions, CompletePart, GetObjectReader, MakeBucketOptions, ObjectIO, ObjectOptions, PutObjReader, StorageAPI, }; use crate::{sets::Sets, store::ECStore}; use ::workers::workers::Workers; use byteorder::{ByteOrder, LittleEndian, WriteBytesExt}; use common::defer; use futures::future::BoxFuture; use http::HeaderMap; use rmp_serde::{Deserializer, Serializer}; use rustfs_filemeta::{MetaCacheEntries, MetaCacheEntry, MetadataResolutionParams}; use rustfs_rio::{HashReader, WarpReader}; use rustfs_utils::path::{SLASH_SEPARATOR, encode_dir_object, path_join}; use serde::{Deserialize, Serialize}; use std::collections::HashMap; use std::fmt::Display; use std::io::{Cursor, Write}; use std::path::PathBuf; use std::sync::Arc; use time::{Duration, OffsetDateTime}; use tokio::io::{AsyncReadExt, BufReader}; use tokio::sync::broadcast::Receiver as B_Receiver; use tracing::{error, info, warn}; pub const POOL_META_NAME: &str = "pool.bin"; pub const POOL_META_FORMAT: u16 = 1; pub const POOL_META_VERSION: u16 = 1; #[derive(Debug, Clone, Serialize, Deserialize)] pub struct PoolStatus { #[serde(rename = "id")] pub id: usize, #[serde(rename = "cmdline")] pub cmd_line: String, #[serde(rename = "lastUpdate", with = "time::serde::rfc3339")] pub last_update: OffsetDateTime, #[serde(rename = "decommissionInfo")] pub decommission: Option, } #[derive(Debug, Clone, Default, Serialize, Deserialize)] pub struct PoolMeta { pub version: u16, pub pools: Vec, pub dont_save: bool, } impl PoolMeta { pub fn new(pools: &[Arc], prev_meta: &PoolMeta) -> Self { let mut new_meta = Self { version: POOL_META_VERSION, pools: Vec::new(), ..Default::default() }; for (idx, pool) in pools.iter().enumerate() { let mut skip = false; for current_pool in prev_meta.pools.iter() { if current_pool.cmd_line == pool.endpoints.cmd_line { new_meta.pools.push(current_pool.clone()); skip = true; break; } } if skip { continue; } new_meta.pools.push(PoolStatus { cmd_line: pool.endpoints.cmd_line.clone(), id: idx, last_update: OffsetDateTime::now_utc(), decommission: None, }); } new_meta } pub fn is_suspended(&self, idx: usize) -> bool { if idx >= self.pools.len() { return false; } self.pools[idx].decommission.is_some() } pub async fn load(&mut self, pool: Arc, _pools: Vec>) -> Result<()> { let data = match read_config(pool, POOL_META_NAME).await { Ok(data) => { if data.is_empty() { return Ok(()); } else if data.len() <= 4 { return Err(Error::other("poolMeta: no data")); } data } Err(err) => { if err == Error::ConfigNotFound { return Ok(()); } return Err(err); } }; let format = LittleEndian::read_u16(&data[0..2]); if format != POOL_META_FORMAT { return Err(Error::other(format!("PoolMeta: unknown format: {}", format))); } let version = LittleEndian::read_u16(&data[2..4]); if version != POOL_META_VERSION { return Err(Error::other(format!("PoolMeta: unknown version: {}", version))); } let mut buf = Deserializer::new(Cursor::new(&data[4..])); let meta: PoolMeta = Deserialize::deserialize(&mut buf)?; *self = meta; if self.version != POOL_META_VERSION { return Err(Error::other(format!("unexpected PoolMeta version: {}", self.version))); } Ok(()) } pub async fn save(&self, pools: Vec>) -> Result<()> { if self.dont_save { return Ok(()); } let mut data = Vec::new(); data.write_u16::(POOL_META_FORMAT)?; data.write_u16::(POOL_META_VERSION)?; let mut buf = Vec::new(); self.serialize(&mut Serializer::new(&mut buf))?; data.write_all(&buf)?; for pool in pools { save_config(pool, POOL_META_NAME, data.clone()).await?; } Ok(()) } pub fn decommission_cancel(&mut self, idx: usize) -> bool { if let Some(stats) = self.pools.get_mut(idx) { if let Some(d) = &stats.decommission { if !d.canceled { stats.last_update = OffsetDateTime::now_utc(); let mut pd = d.clone(); pd.start_time = None; pd.canceled = true; pd.failed = false; pd.complete = false; stats.decommission = Some(pd); true } else { false } } else { false } } else { false } } pub fn decommission_failed(&mut self, idx: usize) -> bool { if let Some(stats) = self.pools.get_mut(idx) { if let Some(d) = &stats.decommission { if !d.failed { stats.last_update = OffsetDateTime::now_utc(); let mut pd = d.clone(); pd.start_time = None; pd.canceled = false; pd.failed = true; pd.complete = false; stats.decommission = Some(pd); true } else { false } } else { false } } else { false } } pub fn decommission_complete(&mut self, idx: usize) -> bool { if let Some(stats) = self.pools.get_mut(idx) { if let Some(d) = &stats.decommission { if !d.complete { stats.last_update = OffsetDateTime::now_utc(); let mut pd = d.clone(); pd.start_time = None; pd.canceled = false; pd.failed = false; pd.complete = true; stats.decommission = Some(pd); true } else { false } } else { false } } else { false } } pub fn decommission(&mut self, idx: usize, pi: PoolSpaceInfo) -> Result<()> { if let Some(pool) = self.pools.get_mut(idx) { if let Some(ref info) = pool.decommission { if !info.complete && !info.failed && !info.canceled { return Err(StorageError::DecommissionAlreadyRunning); } } let now = OffsetDateTime::now_utc(); pool.last_update = now; pool.decommission = Some(PoolDecommissionInfo { start_time: Some(now), start_size: pi.free, total_size: pi.total, current_size: pi.free, ..Default::default() }); } Ok(()) } pub fn queue_buckets(&mut self, idx: usize, bks: Vec) { for bk in bks.iter() { if let Some(dec) = self.pools[idx].decommission.as_mut() { dec.bucket_push(bk); } } } pub fn pending_buckets(&self, idx: usize) -> Vec { let mut list = Vec::new(); if let Some(pool) = self.pools.get(idx) { if let Some(ref info) = pool.decommission { for bk in info.queued_buckets.iter() { let (name, prefix) = path2_bucket_object(bk); list.push(DecomBucketInfo { name, prefix }); } } } list } pub fn is_bucket_decommissioned(&self, idx: usize, bucket: String) -> bool { if let Some(ref info) = self.pools[idx].decommission { info.is_bucket_decommissioned(&bucket) } else { false } } pub fn bucket_done(&mut self, idx: usize, bucket: String) -> bool { if let Some(pool) = self.pools.get_mut(idx) { if let Some(info) = pool.decommission.as_mut() { info.bucket_pop(&bucket) } else { false } } else { false } } pub fn count_item(&mut self, idx: usize, size: usize, failed: bool) { if let Some(pool) = self.pools.get_mut(idx) { if let Some(info) = pool.decommission.as_mut() { if failed { info.items_decommission_failed += 1; info.bytes_failed += size; } else { info.items_decommissioned += 1; info.bytes_done += size; } } } } pub fn track_current_bucket_object(&mut self, idx: usize, bucket: String, object: String) { if self.pools.get(idx).is_none_or(|v| v.decommission.is_none()) { return; } if let Some(pool) = self.pools.get_mut(idx) { if let Some(info) = pool.decommission.as_mut() { info.object = object; info.bucket = bucket; } } } pub async fn update_after(&mut self, idx: usize, pools: Vec>, duration: Duration) -> Result { if self.pools.get(idx).is_none_or(|v| v.decommission.is_none()) { return Err(Error::other("InvalidArgument")); } let now = OffsetDateTime::now_utc(); if now.unix_timestamp() - self.pools[idx].last_update.unix_timestamp() > duration.whole_seconds() { self.pools[idx].last_update = now; self.save(pools).await?; return Ok(true); } Ok(false) } #[allow(dead_code)] pub fn validate(&self, pools: Vec>) -> Result { struct PoolInfo { position: usize, completed: bool, decom_started: bool, } let mut remembered_pools = HashMap::new(); for (idx, pool) in self.pools.iter().enumerate() { let mut complete = false; let mut decom_started = false; if let Some(decommission) = &pool.decommission { if decommission.complete { complete = true; } decom_started = true; } remembered_pools.insert( pool.cmd_line.clone(), PoolInfo { position: idx, completed: complete, decom_started, }, ); } let mut specified_pools = HashMap::new(); for (idx, pool) in pools.iter().enumerate() { specified_pools.insert(pool.endpoints.cmd_line.clone(), idx); } let mut update = false; // 检查指定的池是否需要从已退役的池中移除。 for k in specified_pools.keys() { if let Some(pi) = remembered_pools.get(k) { if pi.completed { error!( "pool({}) = {} is decommissioned, please remove from server command line", pi.position + 1, k ); // return Err(Error::other(format!( // "pool({}) = {} is decommissioned, please remove from server command line", // pi.position + 1, // k // ))); } } else { // 如果之前记住的池不再存在,允许更新,因为可能是添加了一个新池。 update = true; } } if specified_pools.len() == remembered_pools.len() { for (k, pi) in remembered_pools.iter() { if let Some(pos) = specified_pools.get(k) { if *pos != pi.position { update = true; // 池的顺序发生了变化,允许更新。 } } } } if !update { update = specified_pools.len() != remembered_pools.len(); } Ok(update) } pub fn return_resumable_pools(&self) -> Vec { let mut new_pools = Vec::new(); for pool in &self.pools { if let Some(decommission) = &pool.decommission { if decommission.complete || decommission.canceled { // 不需要恢复的情况: // - 退役已完成 // - 退役已取消 continue; } // 其他情况需要恢复 new_pools.push(pool.clone()); } } new_pools } } fn path2_bucket_object(name: &str) -> (String, String) { path2_bucket_object_with_base_path("", name) } fn path2_bucket_object_with_base_path(base_path: &str, path: &str) -> (String, String) { // Trim the base path and leading slash let trimmed_path = path .strip_prefix(base_path) .unwrap_or(path) .strip_prefix(SLASH_SEPARATOR) .unwrap_or(path); // Find the position of the first '/' let pos = trimmed_path.find(SLASH_SEPARATOR).unwrap_or(trimmed_path.len()); // Split into bucket and prefix let bucket = &trimmed_path[0..pos]; let prefix = &trimmed_path[pos + 1..]; // +1 to skip the '/' character if it exists (bucket.to_string(), prefix.to_string()) } #[derive(Debug, Clone, Serialize, Deserialize, Default)] pub struct PoolDecommissionInfo { #[serde(rename = "startTime", with = "time::serde::rfc3339::option")] pub start_time: Option, #[serde(rename = "startSize")] pub start_size: usize, #[serde(rename = "totalSize")] pub total_size: usize, #[serde(rename = "currentSize")] pub current_size: usize, #[serde(rename = "complete")] pub complete: bool, #[serde(rename = "failed")] pub failed: bool, #[serde(rename = "canceled")] pub canceled: bool, #[serde(skip)] pub queued_buckets: Vec, #[serde(skip)] pub decommissioned_buckets: Vec, #[serde(skip)] pub bucket: String, #[serde(skip)] pub prefix: String, #[serde(skip)] pub object: String, #[serde(rename = "objectsDecommissioned")] pub items_decommissioned: usize, #[serde(rename = "objectsDecommissionedFailed")] pub items_decommission_failed: usize, #[serde(rename = "bytesDecommissioned")] pub bytes_done: usize, #[serde(rename = "bytesDecommissionedFailed")] pub bytes_failed: usize, } impl PoolDecommissionInfo { pub fn bucket_push(&mut self, bucket: &DecomBucketInfo) { for b in self.queued_buckets.iter() { if self.is_bucket_decommissioned(b) { return; } if b == &bucket.to_string() { return; } } self.queued_buckets.push(bucket.to_string()); self.bucket = bucket.name.clone(); self.prefix = bucket.prefix.clone(); } pub fn is_bucket_decommissioned(&self, bucket: &String) -> bool { for b in self.decommissioned_buckets.iter() { if b == bucket { return true; } } false } pub fn bucket_pop(&mut self, bucket: &String) -> bool { self.decommissioned_buckets.push(bucket.clone()); let mut found = None; for (i, b) in self.queued_buckets.iter().enumerate() { if b == bucket { found = Some(i); break; } } if let Some(i) = found { self.queued_buckets.remove(i); if &self.bucket == bucket { self.bucket = "".to_owned(); self.prefix = "".to_owned(); self.object = "".to_owned(); } return true; } false } } #[derive(Debug)] pub struct PoolSpaceInfo { pub free: usize, pub total: usize, pub used: usize, } #[derive(Debug, Default, Clone)] pub struct DecomBucketInfo { pub name: String, pub prefix: String, } impl Display for DecomBucketInfo { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { write!( f, "{}", path_join(&[PathBuf::from(self.name.clone()), PathBuf::from(self.prefix.clone())]).to_string_lossy() ) } } impl ECStore { pub async fn status(&self, idx: usize) -> Result { let space_info = self.get_decommission_pool_space_info(idx).await?; let pool_meta = self.pool_meta.read().await; let mut pool_info = pool_meta.pools[idx].clone(); if let Some(d) = pool_info.decommission.as_mut() { d.total_size = space_info.total; d.current_size = space_info.free; } else { pool_info.decommission = Some(PoolDecommissionInfo { total_size: space_info.total, current_size: space_info.free, ..Default::default() }); } Ok(pool_info) } async fn get_decommission_pool_space_info(&self, idx: usize) -> Result { if let Some(sets) = self.pools.get(idx) { let mut info = sets.storage_info().await; info.backend = self.backend_info().await; let total = get_total_usable_capacity(&info.disks, &info); let free = get_total_usable_capacity_free(&info.disks, &info); Ok(PoolSpaceInfo { free, total, used: total - free, }) } else { Err(Error::other("InvalidArgument")) } } #[tracing::instrument(skip(self))] pub async fn decommission_cancel(&self, idx: usize) -> Result<()> { if self.single_pool() { return Err(Error::other("InvalidArgument")); } let Some(has_canceler) = self.decommission_cancelers.get(idx) else { return Err(Error::other("InvalidArgument")); }; if has_canceler.is_none() { return Err(StorageError::DecommissionNotStarted); } let mut lock = self.pool_meta.write().await; if lock.decommission_cancel(idx) { lock.save(self.pools.clone()).await?; drop(lock); if let Some(notification_sys) = get_global_notification_sys() { notification_sys.reload_pool_meta().await; } } Ok(()) } pub async fn is_decommission_running(&self) -> bool { let pool_meta = self.pool_meta.read().await; for pool in pool_meta.pools.iter() { if let Some(ref info) = pool.decommission { if !info.complete && !info.failed && !info.canceled { return true; } } } false } #[tracing::instrument(skip(self, rx))] pub async fn decommission(&self, rx: B_Receiver, indices: Vec) -> Result<()> { warn!("decommission: {:?}", indices); if indices.is_empty() { return Err(Error::other("InvalidArgument")); } if self.single_pool() { return Err(Error::other("InvalidArgument")); } self.start_decommission(indices.clone()).await?; tokio::spawn(async move { let Some(store) = new_object_layer_fn() else { error!("store not init"); return; }; for idx in indices.iter() { store.do_decommission_in_routine(rx.resubscribe(), *idx).await; } }); Ok(()) } #[allow(unused_assignments)] #[tracing::instrument(skip(self, set, wk, rcfg))] async fn decommission_entry( self: &Arc, idx: usize, entry: MetaCacheEntry, bucket: String, set: Arc, wk: Arc, rcfg: Option, ) { warn!("decommission_entry: {} {}", &bucket, &entry.name); wk.give().await; if entry.is_dir() { warn!("decommission_entry: skip dir {}", &entry.name); return; } let mut fivs = match entry.file_info_versions(&bucket) { Ok(f) => f, Err(err) => { error!("decommission_pool: file_info_versions err {:?}", &err); return; } }; fivs.versions.sort_by(|a, b| b.mod_time.cmp(&a.mod_time)); let mut decommissioned: usize = 0; let expired: usize = 0; for version in fivs.versions.iter() { // TODO: filterLifecycle let remaining_versions = fivs.versions.len() - expired; if version.deleted && remaining_versions == 1 && rcfg.is_none() { // decommissioned += 1; info!("decommission_pool: DELETE marked object with no other non-current versions will be skipped"); continue; } let version_id = version.version_id.map(|v| v.to_string()); let mut ignore = false; let mut failure = false; let mut error = None; if version.deleted { // TODO: other params if let Err(err) = self .delete_object( bucket.as_str(), &version.name, ObjectOptions { versioned: true, version_id: version_id.clone(), mod_time: version.mod_time, src_pool_idx: idx, data_movement: true, delete_marker: true, skip_decommissioned: true, ..Default::default() }, ) .await { if is_err_object_not_found(&err) || is_err_version_not_found(&err) || is_err_data_movement_overwrite(&err) { ignore = true; continue; } failure = true; error = Some(err) } { self.pool_meta.write().await.count_item(idx, 0, failure); } if !failure { decommissioned += 1; } info!( "decommission_pool: DecomCopyDeleteMarker {} {} {:?} {:?}", &bucket, &version.name, &version_id, error ); continue; } for _i in 0..3 { if version.is_remote() { // TODO: DecomTieredObject } let bucket = bucket.clone(); let rd = match set .get_object_reader( bucket.as_str(), &encode_dir_object(&version.name), None, HeaderMap::new(), &ObjectOptions { version_id: version_id.clone(), no_lock: true, ..Default::default() }, ) .await { Ok(rd) => rd, Err(err) => { if is_err_object_not_found(&err) || is_err_version_not_found(&err) { ignore = true; break; } if !ignore { // if bucket == RUSTFS_META_BUCKET && version.name.contains(DATA_USAGE_CACHE_NAME) { ignore = true; error!("decommission_pool: ignore data usage cache {}", &version.name); break; } } failure = true; error!("decommission_pool: get_object_reader err {:?}", &err); continue; } }; let bucket_name = bucket.clone(); let object_name = rd.object_info.name.clone(); if let Err(err) = self.clone().decommission_object(idx, bucket, rd).await { if is_err_object_not_found(&err) || is_err_version_not_found(&err) || is_err_data_movement_overwrite(&err) { ignore = true; break; } failure = true; error!("decommission_pool: decommission_object err {:?}", &err); continue; } warn!( "decommission_pool: decommission_object done {}/{} {}", &bucket_name, &object_name, &version.name ); failure = false; break; } if ignore { info!("decommission_pool: ignore {}", &version.name); continue; } { self.pool_meta.write().await.count_item(idx, decommissioned, failure); } if failure { break; } decommissioned += 1; } if decommissioned == fivs.versions.len() { if let Err(err) = set .delete_object( bucket.as_str(), &encode_dir_object(&entry.name), ObjectOptions { delete_prefix: true, delete_prefix_object: true, ..Default::default() }, ) .await { error!("decommission_pool: delete_object err {:?}", &err); } } { let mut pool_meta = self.pool_meta.write().await; pool_meta.track_current_bucket_object(idx, bucket.clone(), entry.name.clone()); let ok = pool_meta .update_after(idx, self.pools.clone(), Duration::seconds(30)) .await .unwrap_or_default(); drop(pool_meta); if ok { if let Some(notification_sys) = get_global_notification_sys() { notification_sys.reload_pool_meta().await; } } } warn!("decommission_pool: decommission_entry done {} {}", &bucket, &entry.name); } #[tracing::instrument(skip(self, rx))] async fn decommission_pool( self: &Arc, rx: B_Receiver, idx: usize, pool: Arc, bi: DecomBucketInfo, ) -> Result<()> { let wk = Workers::new(pool.disk_set.len() * 2).map_err(Error::other)?; // let mut vc = None; // replication let rcfg: Option = None; if bi.name != RUSTFS_META_BUCKET { let _versioning = BucketVersioningSys::get(&bi.name).await?; // vc = Some(versioning); // TODO: LifecycleSys // TODO: BucketObjectLockSys // TODO: ReplicationConfig } for (set_idx, set) in pool.disk_set.iter().enumerate() { wk.clone().take().await; warn!("decommission_pool: decommission_pool {} {}", set_idx, &bi.name); let decommission_entry: ListCallback = Arc::new({ let this = Arc::clone(self); let bucket = bi.name.clone(); let wk = wk.clone(); let set = set.clone(); let rcfg = rcfg.clone(); move |entry: MetaCacheEntry| { let this = this.clone(); let bucket = bucket.clone(); let wk = wk.clone(); let set = set.clone(); let rcfg = rcfg.clone(); Box::pin(async move { wk.take().await; this.decommission_entry(idx, entry, bucket, set, wk, rcfg).await }) } }); let set = set.clone(); let mut rx = rx.resubscribe(); let bi = bi.clone(); let set_id = set_idx; let wk_clone = wk.clone(); tokio::spawn(async move { loop { if rx.try_recv().is_ok() { warn!("decommission_pool: cancel {}", set_id); break; } warn!("decommission_pool: list_objects_to_decommission {} {}", set_id, &bi.name); match set .list_objects_to_decommission(rx.resubscribe(), bi.clone(), decommission_entry.clone()) .await { Ok(_) => { warn!("decommission_pool: list_objects_to_decommission {} done", set_id); break; } Err(err) => { error!("decommission_pool: list_objects_to_decommission {} err {:?}", set_id, &err); if is_err_bucket_not_found(&err) { warn!("decommission_pool: list_objects_to_decommission {} volume not found", set_id); break; } tokio::time::sleep(tokio::time::Duration::from_secs(5)).await; } } } wk_clone.give().await; }); } warn!("decommission_pool: decommission_pool wait {} {}", idx, &bi.name); wk.wait().await; warn!("decommission_pool: decommission_pool done {} {}", idx, &bi.name); Ok(()) } #[tracing::instrument(skip(self, rx))] pub async fn do_decommission_in_routine(self: &Arc, rx: B_Receiver, idx: usize) { if let Err(err) = self.decommission_in_background(rx, idx).await { error!("decom err {:?}", &err); if let Err(er) = self.decommission_failed(idx).await { error!("decom failed err {:?}", &er); } else { warn!("decommission: decommission_failed {}", idx); } return; } warn!("decommission: decommission_in_background complete {}", idx); let (failed, cmd_line) = { let pool_meta = self.pool_meta.read().await; let failed = { if let Some(info) = &pool_meta.pools[idx].decommission { info.items_decommission_failed > 0 } else { false } }; let cmd_line = pool_meta.pools[idx].cmd_line.clone(); (failed, cmd_line) }; if !failed { warn!("Decommissioning complete for pool {}, verifying for any pending objects", cmd_line); if let Err(er) = self.decommission_failed(idx).await { error!("decom failed err {:?}", &er); } } else if let Err(er) = self.complete_decommission(idx).await { error!("decom complete err {:?}", &er); } warn!("Decommissioning complete for pool {}", cmd_line); } #[tracing::instrument(skip(self))] pub async fn decommission_failed(&self, idx: usize) -> Result<()> { if self.single_pool() { return Err(Error::other("errInvalidArgument")); } let mut pool_meta = self.pool_meta.write().await; if pool_meta.decommission_failed(idx) { pool_meta.save(self.pools.clone()).await?; drop(pool_meta); if let Some(notification_sys) = get_global_notification_sys() { notification_sys.reload_pool_meta().await; } } Ok(()) } #[tracing::instrument(skip(self))] pub async fn complete_decommission(&self, idx: usize) -> Result<()> { if self.single_pool() { return Err(Error::other("errInvalidArgument")); } let mut pool_meta = self.pool_meta.write().await; if pool_meta.decommission_complete(idx) { pool_meta.save(self.pools.clone()).await?; drop(pool_meta); if let Some(notification_sys) = get_global_notification_sys() { notification_sys.reload_pool_meta().await; } } Ok(()) } #[tracing::instrument(skip(self, rx))] async fn decommission_in_background(self: &Arc, rx: B_Receiver, idx: usize) -> Result<()> { let pool = self.pools[idx].clone(); let pending = { let pool_meta = self.pool_meta.read().await; pool_meta.pending_buckets(idx) }; for bucket in pending.iter() { let is_decommissioned = { let pool_meta = self.pool_meta.read().await; pool_meta.is_bucket_decommissioned(idx, bucket.to_string()) }; if is_decommissioned { warn!("decommission: already done, moving on {}", bucket.to_string()); { let mut pool_meta = self.pool_meta.write().await; if pool_meta.bucket_done(idx, bucket.to_string()) { if let Err(err) = pool_meta.save(self.pools.clone()).await { error!("decom pool_meta.save err {:?}", err); } } } continue; } warn!("decommission: currently on bucket {}", &bucket.name); if let Err(err) = self .decommission_pool(rx.resubscribe(), idx, pool.clone(), bucket.clone()) .await { error!("decommission: decommission_pool err {:?}", &err); return Err(err); } else { warn!("decommission: decommission_pool done {}", &bucket.name); } { let mut pool_meta = self.pool_meta.write().await; if pool_meta.bucket_done(idx, bucket.to_string()) { if let Err(err) = pool_meta.save(self.pools.clone()).await { error!("decom pool_meta.save err {:?}", err); } } warn!("decommission: decommission_pool bucket_done {}", &bucket.name); } } Ok(()) } #[tracing::instrument(skip(self))] pub async fn start_decommission(&self, indices: Vec) -> Result<()> { if indices.is_empty() { return Err(Error::other("errInvalidArgument")); } if self.single_pool() { return Err(Error::other("errInvalidArgument")); } let decom_buckets = self.get_buckets_to_decommission().await?; for bk in decom_buckets.iter() { let _ = self.heal_bucket(&bk.name, &HealOpts::default()).await; } let meta_buckets = [ path_join(&[PathBuf::from(RUSTFS_META_BUCKET), PathBuf::from(CONFIG_PREFIX)]), path_join(&[PathBuf::from(RUSTFS_META_BUCKET), PathBuf::from(BUCKET_META_PREFIX)]), ]; for bk in meta_buckets.iter() { if let Err(err) = self .make_bucket(bk.to_string_lossy().to_string().as_str(), &MakeBucketOptions::default()) .await { if !is_err_bucket_exists(&err) { return Err(err); } } } let mut pool_meta = self.pool_meta.write().await; for idx in indices.iter() { let pi = self.get_decommission_pool_space_info(*idx).await?; pool_meta.decommission(*idx, pi)?; pool_meta.queue_buckets(*idx, decom_buckets.clone()); } pool_meta.save(self.pools.clone()).await?; if let Some(notification_sys) = get_global_notification_sys() { notification_sys.reload_pool_meta().await; } Ok(()) } async fn get_buckets_to_decommission(&self) -> Result> { let buckets = self.list_bucket(&BucketOptions::default()).await?; let mut ret: Vec = buckets .iter() .map(|v| DecomBucketInfo { name: v.name.clone(), ..Default::default() }) .collect(); ret.push(DecomBucketInfo { name: RUSTFS_META_BUCKET.to_owned(), prefix: CONFIG_PREFIX.to_owned(), }); ret.push(DecomBucketInfo { name: RUSTFS_META_BUCKET.to_owned(), prefix: BUCKET_META_PREFIX.to_owned(), }); Ok(ret) } #[tracing::instrument(skip(self, rd))] async fn decommission_object(self: Arc, pool_idx: usize, bucket: String, rd: GetObjectReader) -> Result<()> { warn!("decommission_object: start {} {}", &bucket, &rd.object_info.name); let object_info = rd.object_info.clone(); // TODO: check : use size or actual_size ? let _actual_size = object_info.get_actual_size()?; if object_info.is_multipart() { let res = match self .new_multipart_upload( &bucket, &object_info.name, &ObjectOptions { version_id: object_info.version_id.as_ref().map(|v| v.to_string()), user_defined: object_info.user_defined.clone(), src_pool_idx: pool_idx, data_movement: true, ..Default::default() }, ) .await { Ok(res) => res, Err(err) => { error!("decommission_object: new_multipart_upload err {:?}", &err); return Err(err); } }; defer!(|| async { if let Err(err) = self .abort_multipart_upload(&bucket, &object_info.name, &res.upload_id, &ObjectOptions::default()) .await { error!("decommission_object: abort_multipart_upload err {:?}", &err); } }); let mut parts = vec![CompletePart::default(); object_info.parts.len()]; let mut reader = rd.stream; for (i, part) in object_info.parts.iter().enumerate() { let mut chunk = vec![0u8; part.size]; reader.read_exact(&mut chunk).await?; let mut data = PutObjReader::from_vec(chunk); let pi = match self .put_object_part( &bucket, &object_info.name, &res.upload_id, part.number, &mut data, &ObjectOptions { preserve_etag: Some(part.etag.clone()), ..Default::default() }, ) .await { Ok(pi) => pi, Err(err) => { error!("decommission_object: put_object_part {} err {:?}", i, &err); return Err(err); } }; warn!("decommission_object: put_object_part {} done {} {}", i, &bucket, &object_info.name); parts[i] = CompletePart { part_num: pi.part_num, etag: pi.etag, }; } if let Err(err) = self .clone() .complete_multipart_upload( &bucket, &object_info.name, &res.upload_id, parts, &ObjectOptions { data_movement: true, mod_time: object_info.mod_time, ..Default::default() }, ) .await { error!("decommission_object: complete_multipart_upload err {:?}", &err); return Err(err); } warn!("decommission_object: complete_multipart_upload done {} {}", &bucket, &object_info.name); return Ok(()); } let reader = BufReader::new(rd.stream); let hrd = HashReader::new(Box::new(WarpReader::new(reader)), object_info.size, object_info.size, None, false)?; let mut data = PutObjReader::new(hrd); if let Err(err) = self .put_object( &bucket, &object_info.name, &mut data, &ObjectOptions { src_pool_idx: pool_idx, data_movement: true, version_id: object_info.version_id.as_ref().map(|v| v.to_string()), mod_time: object_info.mod_time, user_defined: object_info.user_defined.clone(), preserve_etag: object_info.etag.clone(), ..Default::default() }, ) .await { error!("decommission_object: put_object err {:?}", &err); return Err(err); } warn!("decommission_object: put_object done {} {}", &bucket, &object_info.name); Ok(()) } } // impl Fn(MetaCacheEntry) -> impl Future> pub type ListCallback = Arc BoxFuture<'static, ()> + Send + Sync + 'static>; impl SetDisks { #[tracing::instrument(skip(self, rx, cb_func))] async fn list_objects_to_decommission( self: &Arc, rx: B_Receiver, bucket_info: DecomBucketInfo, cb_func: ListCallback, ) -> Result<()> { let (disks, _) = self.get_online_disks_with_healing(false).await; if disks.is_empty() { return Err(Error::other("errNoDiskAvailable")); } let listing_quorum = self.set_drive_count.div_ceil(2); let resolver = MetadataResolutionParams { dir_quorum: listing_quorum, obj_quorum: listing_quorum, bucket: bucket_info.name.clone(), ..Default::default() }; let cb1 = cb_func.clone(); list_path_raw( rx, ListPathRawOptions { disks: disks.iter().cloned().map(Some).collect(), bucket: bucket_info.name.clone(), path: bucket_info.prefix.clone(), recursice: true, min_disks: listing_quorum, agreed: Some(Box::new(move |entry: MetaCacheEntry| Box::pin(cb1(entry)))), partial: Some(Box::new(move |entries: MetaCacheEntries, _: &[Option]| { let resolver = resolver.clone(); let cb_func = cb_func.clone(); match entries.resolve(resolver) { Some(entry) => { warn!("decommission_pool: list_objects_to_decommission get {}", &entry.name); Box::pin(async move { cb_func(entry).await; }) } None => { warn!("decommission_pool: list_objects_to_decommission get none"); Box::pin(async {}) } } })), ..Default::default() }, ) .await?; Ok(()) } } pub fn get_total_usable_capacity(disks: &[madmin::Disk], info: &madmin::StorageInfo) -> usize { let mut capacity = 0; for disk in disks.iter() { if disk.pool_index < 0 || info.backend.standard_sc_data.len() <= disk.pool_index as usize { continue; } if (disk.disk_index as usize) < info.backend.standard_sc_data[disk.pool_index as usize] { capacity += disk.total_space as usize; } } capacity } pub fn get_total_usable_capacity_free(disks: &[madmin::Disk], info: &madmin::StorageInfo) -> usize { let mut capacity = 0; for disk in disks.iter() { if disk.pool_index < 0 || info.backend.standard_sc_data.len() <= disk.pool_index as usize { continue; } if (disk.disk_index as usize) < info.backend.standard_sc_data[disk.pool_index as usize] { capacity += disk.available_space as usize; } } capacity }