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https://git.deuxfleurs.fr/Deuxfleurs/garage.git
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Refactoring on repair commands
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parent
28c015d9ff
commit
6b47c294f5
5 changed files with 105 additions and 92 deletions
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@ -265,7 +265,7 @@ pub struct RepairOpt {
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pub yes: bool,
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#[structopt(subcommand)]
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pub what: Option<RepairWhat>,
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pub what: RepairWhat,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug, Eq, PartialEq, Clone)]
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@ -283,8 +283,8 @@ pub enum RepairWhat {
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#[structopt(name = "block_refs")]
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BlockRefs,
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/// Verify integrity of all blocks on disc (extremely slow, i/o intensive)
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#[structopt(name = "blocks_integrity")]
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BlockIntegrity {
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#[structopt(name = "scrub")]
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Scrub {
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/// Limit on i/o speed, in B/s
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#[structopt(name = "limit")]
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limit: Option<usize>,
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@ -27,9 +27,8 @@ impl Repair {
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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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match opt.what {
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RepairWhat::Tables => {
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info!("Launching a full sync of tables");
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self.garage.bucket_table.syncer.add_full_sync();
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self.garage.object_table.syncer.add_full_sync();
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@ -37,40 +36,29 @@ impl Repair {
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self.garage.block_ref_table.syncer.add_full_sync();
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self.garage.key_table.syncer.add_full_sync();
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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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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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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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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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if let Some(RepairWhat::BlockIntegrity { limit }) = opt.what {
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RepairWhat::Scrub { limit } => {
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info!("Verifying integrity of stored blocks");
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self.garage
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.block_manager
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.verify_data_store_integrity(&must_exit, limit)
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.scrub_data_store(&must_exit, limit)
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.await?;
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}
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}
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Ok(())
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}
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@ -158,10 +146,4 @@ impl Repair {
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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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@ -10,11 +10,11 @@ use serde::{Deserialize, Serialize};
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use tokio::fs;
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use tokio::io::{AsyncReadExt, AsyncWriteExt};
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use tokio::sync::{watch, Mutex, Notify};
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use tokio::time::Instant;
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use garage_util::data::*;
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use garage_util::error::Error;
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use garage_util::time::*;
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use garage_util::token_bucket::TokenBucket;
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use garage_rpc::system::System;
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use garage_rpc::*;
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@ -209,6 +209,35 @@ impl BlockManager {
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.await
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}
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/// Verify integrity of each block on disk. Use `speed_limit` to limit the load generated by
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/// this function.
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pub async fn scrub_data_store(
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&self,
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must_exit: &watch::Receiver<bool>,
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speed_limit: Option<usize>,
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) -> Result<(), Error> {
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let token_bucket = speed_limit.map(|rate| TokenBucket::new(rate as u64));
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self.for_each_file(
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token_bucket,
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move |mut token_bucket, hash| {
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async move {
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let len = match self.read_block(&hash).await {
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Ok(BlockRpc::PutBlock(PutBlockMessage { data, .. })) => data.len(),
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Ok(_) => unreachable!(),
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Err(_) => 0, // resync and warn message made by read_block if necessary
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};
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if let Some(tb) = &mut token_bucket {
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tb.take(len as u64).await;
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}
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Ok(token_bucket)
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}
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},
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must_exit,
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)
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.await
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}
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/// Get lenght of resync queue
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pub fn resync_queue_len(&self) -> usize {
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self.resync_queue.len()
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@ -553,45 +582,6 @@ impl BlockManager {
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}
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.boxed()
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}
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/// Verify integrity of each block on disk. Use `speed_limit` to limit the load generated by
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/// this function.
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pub async fn verify_data_store_integrity(
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&self,
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must_exit: &watch::Receiver<bool>,
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speed_limit: Option<usize>,
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) -> Result<(), Error> {
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let last_refill = Instant::now();
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let token_left = speed_limit.unwrap_or(0);
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self.for_each_file(
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(last_refill, token_left),
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move |(last_refill, token_left), hash| {
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async move {
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let len = match self.read_block(&hash).await {
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Ok(BlockRpc::PutBlock(PutBlockMessage { data, .. })) => data.len(),
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Ok(_) => unreachable!(),
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Err(_) => 0, // resync and warn message made by read_block if necessary
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};
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if let Some(speed_limit) = speed_limit {
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// throttling logic
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if let Some(t) = token_left.checked_sub(len) {
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// token bucket not empty yet
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Ok((last_refill, t))
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} else {
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// token bucket empty. Sleep and refill
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tokio::time::sleep_until(last_refill + Duration::from_secs(1)).await;
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Ok((Instant::now(), speed_limit))
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}
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} else {
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Ok((last_refill, token_left)) // actually not used
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}
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}
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},
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must_exit,
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)
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.await
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}
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}
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#[async_trait]
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@ -9,3 +9,4 @@ pub mod data;
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pub mod error;
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pub mod persister;
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pub mod time;
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pub mod token_bucket;
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40
src/util/token_bucket.rs
Normal file
40
src/util/token_bucket.rs
Normal file
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@ -0,0 +1,40 @@
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use std::time::{Duration, Instant};
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use tokio::time::sleep;
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pub struct TokenBucket {
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// Replenish rate: number of tokens per second
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replenish_rate: u64,
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// Current number of tokens
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tokens: u64,
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// Last replenish time
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last_replenish: Instant,
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}
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impl TokenBucket {
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pub fn new(replenish_rate: u64) -> Self {
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Self {
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replenish_rate,
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tokens: 0,
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last_replenish: Instant::now(),
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}
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}
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pub async fn take(&mut self, tokens: u64) {
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while self.tokens < tokens {
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let needed = tokens - self.tokens;
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let delay = (needed as f64) / (self.replenish_rate as f64);
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sleep(Duration::from_secs_f64(delay)).await;
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self.replenish();
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}
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self.tokens -= tokens;
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}
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pub fn replenish(&mut self) {
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let now = Instant::now();
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let new_tokens =
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((now - self.last_replenish).as_secs_f64() * (self.replenish_rate as f64)) as u64;
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self.tokens += new_tokens;
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self.last_replenish = now;
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}
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}
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