improve internal item counter mechanisms and implement bucket quotas #326
6 changed files with 106 additions and 108 deletions
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@ -10,7 +10,7 @@ use garage_rpc::ring::Ring;
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use garage_table::util::*;
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use garage_model::garage::Garage;
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use garage_model::k2v::counter_table::{BYTES, CONFLICTS, ENTRIES, VALUES};
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use garage_model::k2v::item_table::{BYTES, CONFLICTS, ENTRIES, VALUES};
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use crate::k2v::error::*;
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use crate::k2v::range::read_range;
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@ -27,7 +27,7 @@ use crate::key_table::*;
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#[cfg(feature = "k2v")]
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use crate::index_counter::*;
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#[cfg(feature = "k2v")]
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use crate::k2v::{counter_table::*, item_table::*, poll::*, rpc::*};
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use crate::k2v::{item_table::*, poll::*, rpc::*};
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/// An entire Garage full of data
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pub struct Garage {
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@ -66,7 +66,7 @@ pub struct GarageK2V {
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/// Table containing K2V items
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pub item_table: Arc<Table<K2VItemTable, TableShardedReplication>>,
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/// Indexing table containing K2V item counters
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pub counter_table: Arc<IndexCounter<K2VCounterTable>>,
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pub counter_table: Arc<IndexCounter<K2VItem>>,
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/// K2V RPC handler
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pub rpc: Arc<K2VRpcHandler>,
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}
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@ -17,25 +17,30 @@ use garage_table::crdt::*;
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use garage_table::replication::TableShardedReplication;
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use garage_table::*;
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pub trait CounterSchema: Clone + PartialEq + Send + Sync + 'static {
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const NAME: &'static str;
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type P: PartitionKey + Clone + PartialEq + Serialize + for<'de> Deserialize<'de> + Send + Sync;
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type S: SortKey + Clone + PartialEq + Serialize + for<'de> Deserialize<'de> + Send + Sync;
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pub trait CountedItem: Clone + PartialEq + Send + Sync + 'static {
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const COUNTER_TABLE_NAME: &'static str;
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type CP: PartitionKey + Clone + PartialEq + Serialize + for<'de> Deserialize<'de> + Send + Sync;
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type CS: SortKey + Clone + PartialEq + Serialize + for<'de> Deserialize<'de> + Send + Sync;
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fn counter_partition_key(&self) -> &Self::CP;
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fn counter_sort_key(&self) -> &Self::CS;
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fn counts(&self) -> Vec<(&'static str, i64)>;
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}
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/// A counter entry in the global table
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#[derive(PartialEq, Clone, Debug, Serialize, Deserialize)]
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pub struct CounterEntry<T: CounterSchema> {
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pub pk: T::P,
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pub sk: T::S,
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#[derive(Clone, PartialEq, Debug, Serialize, Deserialize)]
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pub struct CounterEntry<T: CountedItem> {
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pub pk: T::CP,
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pub sk: T::CS,
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pub values: BTreeMap<String, CounterValue>,
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}
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impl<T: CounterSchema> Entry<T::P, T::S> for CounterEntry<T> {
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fn partition_key(&self) -> &T::P {
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impl<T: CountedItem> Entry<T::CP, T::CS> for CounterEntry<T> {
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fn partition_key(&self) -> &T::CP {
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&self.pk
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}
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fn sort_key(&self) -> &T::S {
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fn sort_key(&self) -> &T::CS {
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&self.sk
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}
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fn is_tombstone(&self) -> bool {
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@ -45,7 +50,7 @@ impl<T: CounterSchema> Entry<T::P, T::S> for CounterEntry<T> {
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}
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}
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impl<T: CounterSchema> CounterEntry<T> {
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impl<T: CountedItem> CounterEntry<T> {
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pub fn filtered_values(&self, ring: &Ring) -> HashMap<String, i64> {
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let nodes = &ring.layout.node_id_vec[..];
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self.filtered_values_with_nodes(nodes)
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@ -78,7 +83,7 @@ pub struct CounterValue {
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pub node_values: BTreeMap<Uuid, (u64, i64)>,
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}
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impl<T: CounterSchema> Crdt for CounterEntry<T> {
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impl<T: CountedItem> Crdt for CounterEntry<T> {
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fn merge(&mut self, other: &Self) {
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for (name, e2) in other.values.iter() {
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if let Some(e) = self.values.get_mut(name) {
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@ -104,15 +109,15 @@ impl Crdt for CounterValue {
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}
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}
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pub struct CounterTable<T: CounterSchema> {
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pub struct CounterTable<T: CountedItem> {
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_phantom_t: PhantomData<T>,
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}
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impl<T: CounterSchema> TableSchema for CounterTable<T> {
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const TABLE_NAME: &'static str = T::NAME;
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impl<T: CountedItem> TableSchema for CounterTable<T> {
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const TABLE_NAME: &'static str = T::COUNTER_TABLE_NAME;
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type P = T::P;
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type S = T::S;
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type P = T::CP;
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type S = T::CS;
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type E = CounterEntry<T>;
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type Filter = (DeletedFilter, Vec<Uuid>);
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@ -131,14 +136,14 @@ impl<T: CounterSchema> TableSchema for CounterTable<T> {
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// ----
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pub struct IndexCounter<T: CounterSchema> {
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pub struct IndexCounter<T: CountedItem> {
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this_node: Uuid,
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local_counter: db::Tree,
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propagate_tx: mpsc::UnboundedSender<(T::P, T::S, LocalCounterEntry)>,
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propagate_tx: mpsc::UnboundedSender<(T::CP, T::CS, LocalCounterEntry)>,
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pub table: Arc<Table<CounterTable<T>, TableShardedReplication>>,
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}
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impl<T: CounterSchema> IndexCounter<T> {
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impl<T: CountedItem> IndexCounter<T> {
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pub fn new(
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system: Arc<System>,
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replication: TableShardedReplication,
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@ -151,7 +156,7 @@ impl<T: CounterSchema> IndexCounter<T> {
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let this = Arc::new(Self {
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this_node: system.id,
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local_counter: db
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.open_tree(format!("local_counter:{}", T::NAME))
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.open_tree(format!("local_counter:{}", T::COUNTER_TABLE_NAME))
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.expect("Unable to open local counter tree"),
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propagate_tx,
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table: Table::new(
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@ -166,7 +171,7 @@ impl<T: CounterSchema> IndexCounter<T> {
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let this2 = this.clone();
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background.spawn_worker(
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format!("{} index counter propagator", T::NAME),
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format!("{} index counter propagator", T::COUNTER_TABLE_NAME),
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move |must_exit| this2.clone().propagate_loop(propagate_rx, must_exit),
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);
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this
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@ -175,10 +180,26 @@ impl<T: CounterSchema> IndexCounter<T> {
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pub fn count(
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&self,
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tx: &mut db::Transaction,
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pk: &T::P,
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sk: &T::S,
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counts: &[(&str, i64)],
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old: Option<&T>,
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new: Option<&T>,
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) -> db::TxResult<(), Error> {
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let pk = old
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.map(|e| e.counter_partition_key())
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.unwrap_or_else(|| new.unwrap().counter_partition_key());
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let sk = old
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.map(|e| e.counter_sort_key())
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.unwrap_or_else(|| new.unwrap().counter_sort_key());
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// calculate counter differences
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let mut counts = HashMap::new();
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for (k, v) in old.map(|x| x.counts()).unwrap_or_default() {
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*counts.entry(k).or_insert(0) -= v;
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}
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for (k, v) in new.map(|x| x.counts()).unwrap_or_default() {
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*counts.entry(k).or_insert(0) += v;
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}
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// update local counter table
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let tree_key = self.table.data.tree_key(pk, sk);
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let mut entry = match tx.get(&self.local_counter, &tree_key[..])? {
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@ -213,7 +234,7 @@ impl<T: CounterSchema> IndexCounter<T> {
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async fn propagate_loop(
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self: Arc<Self>,
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mut propagate_rx: mpsc::UnboundedReceiver<(T::P, T::S, LocalCounterEntry)>,
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mut propagate_rx: mpsc::UnboundedReceiver<(T::CP, T::CS, LocalCounterEntry)>,
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must_exit: watch::Receiver<bool>,
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) {
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// This loop batches updates to counters to be sent all at once.
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@ -255,10 +276,10 @@ impl<T: CounterSchema> IndexCounter<T> {
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if let Err(e) = self.table.insert_many(entries).await {
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errors += 1;
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if errors >= 2 && *must_exit.borrow() {
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error!("({}) Could not propagate {} counter values: {}, these counters will not be updated correctly.", T::NAME, buf.len(), e);
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error!("({}) Could not propagate {} counter values: {}, these counters will not be updated correctly.", T::COUNTER_TABLE_NAME, buf.len(), e);
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break;
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}
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warn!("({}) Could not propagate {} counter values: {}, retrying in 5 seconds (retry #{})", T::NAME, buf.len(), e, errors);
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warn!("({}) Could not propagate {} counter values: {}, retrying in 5 seconds (retry #{})", T::COUNTER_TABLE_NAME, buf.len(), e, errors);
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tokio::time::sleep(Duration::from_secs(5)).await;
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continue;
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}
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@ -280,11 +301,11 @@ struct LocalCounterEntry {
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}
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impl LocalCounterEntry {
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fn into_counter_entry<T: CounterSchema>(
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fn into_counter_entry<T: CountedItem>(
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self,
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this_node: Uuid,
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pk: T::P,
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sk: T::S,
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pk: T::CP,
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sk: T::CS,
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) -> CounterEntry<T> {
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CounterEntry {
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pk,
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@ -1,20 +0,0 @@
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use garage_util::data::*;
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use crate::index_counter::*;
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pub const ENTRIES: &str = "entries";
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pub const CONFLICTS: &str = "conflicts";
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pub const VALUES: &str = "values";
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pub const BYTES: &str = "bytes";
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#[derive(PartialEq, Clone)]
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pub struct K2VCounterTable;
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impl CounterSchema for K2VCounterTable {
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const NAME: &'static str = "k2v_index_counter";
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// Partition key = bucket id
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type P = Uuid;
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// Sort key = K2V item's partition key
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type S = String;
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}
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@ -10,9 +10,13 @@ use garage_table::*;
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use crate::index_counter::*;
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use crate::k2v::causality::*;
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use crate::k2v::counter_table::*;
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use crate::k2v::poll::*;
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pub const ENTRIES: &str = "entries";
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pub const CONFLICTS: &str = "conflicts";
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pub const VALUES: &str = "values";
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pub const BYTES: &str = "bytes";
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#[derive(PartialEq, Clone, Debug, Serialize, Deserialize)]
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pub struct K2VItem {
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pub partition: K2VItemPartition,
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@ -112,27 +116,6 @@ impl K2VItem {
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ent.discard();
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}
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}
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// returns counters: (non-deleted entries, conflict entries, non-tombstone values, bytes used)
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fn stats(&self) -> (i64, i64, i64, i64) {
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let values = self.values();
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let n_entries = if self.is_tombstone() { 0 } else { 1 };
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let n_conflicts = if values.len() > 1 { 1 } else { 0 };
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let n_values = values
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.iter()
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.filter(|v| matches!(v, DvvsValue::Value(_)))
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.count() as i64;
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let n_bytes = values
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.iter()
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.map(|v| match v {
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DvvsValue::Deleted => 0,
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DvvsValue::Value(v) => v.len() as i64,
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})
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.sum();
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(n_entries, n_conflicts, n_values, n_bytes)
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}
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}
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impl DvvsEntry {
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@ -204,7 +187,7 @@ impl Entry<K2VItemPartition, String> for K2VItem {
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}
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pub struct K2VItemTable {
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pub(crate) counter_table: Arc<IndexCounter<K2VCounterTable>>,
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pub(crate) counter_table: Arc<IndexCounter<K2VItem>>,
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pub(crate) subscriptions: Arc<SubscriptionManager>,
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}
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@ -229,40 +212,14 @@ impl TableSchema for K2VItemTable {
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new: Option<&Self::E>,
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) -> db::TxOpResult<()> {
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// 1. Count
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let (old_entries, old_conflicts, old_values, old_bytes) = match old {
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None => (0, 0, 0, 0),
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Some(e) => e.stats(),
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};
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let (new_entries, new_conflicts, new_values, new_bytes) = match new {
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None => (0, 0, 0, 0),
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Some(e) => e.stats(),
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};
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let count_pk = old
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.map(|e| e.partition.bucket_id)
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.unwrap_or_else(|| new.unwrap().partition.bucket_id);
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let count_sk = old
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.map(|e| &e.partition.partition_key)
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.unwrap_or_else(|| &new.unwrap().partition.partition_key);
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let counter_res = self.counter_table.count(
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tx,
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&count_pk,
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count_sk,
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&[
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(ENTRIES, new_entries - old_entries),
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(CONFLICTS, new_conflicts - old_conflicts),
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(VALUES, new_values - old_values),
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(BYTES, new_bytes - old_bytes),
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],
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);
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let counter_res = self.counter_table.count(tx, old, new);
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if let Err(e) = db::unabort(counter_res)? {
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// This result can be returned by `counter_table.count()` for instance
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// if messagepack serialization or deserialization fails at some step.
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// Warn admin but ignore this error for now, that's all we can do.
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error!(
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"Unable to update K2V item counter for bucket {:?} partition {}: {}. Index values will be wrong!",
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count_pk, count_sk, e
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"Unable to update K2V item counter: {}. Index values will be wrong!",
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e
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);
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}
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@ -282,6 +239,47 @@ impl TableSchema for K2VItemTable {
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}
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}
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impl CountedItem for K2VItem {
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const COUNTER_TABLE_NAME: &'static str = "k2v_index_counter";
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// Partition key = bucket id
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type CP = Uuid;
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// Sort key = K2V item's partition key
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type CS = String;
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fn counter_partition_key(&self) -> &Uuid {
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&self.partition.bucket_id
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}
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fn counter_sort_key(&self) -> &String {
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&self.partition.partition_key
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}
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fn counts(&self) -> Vec<(&'static str, i64)> {
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let values = self.values();
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let n_entries = if self.is_tombstone() { 0 } else { 1 };
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let n_conflicts = if values.len() > 1 { 1 } else { 0 };
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let n_values = values
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.iter()
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.filter(|v| matches!(v, DvvsValue::Value(_)))
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.count() as i64;
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let n_bytes = values
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.iter()
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.map(|v| match v {
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DvvsValue::Deleted => 0,
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DvvsValue::Value(v) => v.len() as i64,
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})
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.sum();
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vec![
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(ENTRIES, n_entries),
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(CONFLICTS, n_conflicts),
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(VALUES, n_values),
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(BYTES, n_bytes),
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]
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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|
|
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@ -1,6 +1,5 @@
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pub mod causality;
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pub mod counter_table;
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pub mod item_table;
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pub mod poll;
|
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|
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