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5 changed files with 17 additions and 28 deletions

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@ -5,7 +5,7 @@ weight = 40
Garage is meant to work on old, second-hand hardware.
In particular, this makes it likely that some of your drives will fail, and some manual intervention will be needed.
Fear not! For Garage is fully equipped to handle drive failures, in most common cases.
Fear not! Garage is fully equipped to handle drive failures, in most common cases.
## A note on availability of Garage
@ -61,7 +61,7 @@ garage repair -a --yes blocks
This will re-synchronize blocks of data that are missing to the new HDD, reading them from copies located on other nodes.
You can check on the advancement of this process by doing the following command:
You can check on the advancement of this process by doing the following command:
```bash
garage stats -a

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@ -211,16 +211,12 @@ impl Tree {
/// Returns the old value if there was one
#[inline]
pub fn insert<T: AsRef<[u8]>, U: AsRef<[u8]>>(
&self,
key: T,
value: U,
) -> Result<Option<Value>> {
pub fn insert<T: AsRef<[u8]>, U: AsRef<[u8]>>(&self, key: T, value: U) -> Result<()> {
self.0.insert(self.1, key.as_ref(), value.as_ref())
}
/// Returns the old value if there was one
#[inline]
pub fn remove<T: AsRef<[u8]>>(&self, key: T) -> Result<Option<Value>> {
pub fn remove<T: AsRef<[u8]>>(&self, key: T) -> Result<()> {
self.0.remove(self.1, key.as_ref())
}
/// Clears all values from the tree
@ -339,8 +335,8 @@ pub(crate) trait IDb: Send + Sync {
fn get(&self, tree: usize, key: &[u8]) -> Result<Option<Value>>;
fn len(&self, tree: usize) -> Result<usize>;
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<Option<Value>>;
fn remove(&self, tree: usize, key: &[u8]) -> Result<Option<Value>>;
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<()>;
fn remove(&self, tree: usize, key: &[u8]) -> Result<()>;
fn clear(&self, tree: usize) -> Result<()>;
fn iter(&self, tree: usize) -> Result<ValueIter<'_>>;

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@ -132,22 +132,20 @@ impl IDb for LmdbDb {
Ok(tree.len(&tx)?.try_into().unwrap())
}
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<Option<Value>> {
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<()> {
let tree = self.get_tree(tree)?;
let mut tx = self.db.write_txn()?;
let old_val = tree.get(&tx, key)?.map(Vec::from);
tree.put(&mut tx, key, value)?;
tx.commit()?;
Ok(old_val)
Ok(())
}
fn remove(&self, tree: usize, key: &[u8]) -> Result<Option<Value>> {
fn remove(&self, tree: usize, key: &[u8]) -> Result<()> {
let tree = self.get_tree(tree)?;
let mut tx = self.db.write_txn()?;
let old_val = tree.get(&tx, key)?.map(Vec::from);
tree.delete(&mut tx, key)?;
tx.commit()?;
Ok(old_val)
Ok(())
}
fn clear(&self, tree: usize) -> Result<()> {

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@ -169,7 +169,7 @@ impl IDb for SqliteDb {
}
}
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<Option<Value>> {
fn insert(&self, tree: usize, key: &[u8], value: &[u8]) -> Result<()> {
let tree = self.get_tree(tree)?;
let db = self.db.get()?;
let lock = self.write_lock.lock();
@ -184,23 +184,18 @@ impl IDb for SqliteDb {
assert_eq!(n, 1);
drop(lock);
Ok(old_val)
Ok(())
}
fn remove(&self, tree: usize, key: &[u8]) -> Result<Option<Value>> {
fn remove(&self, tree: usize, key: &[u8]) -> Result<()> {
let tree = self.get_tree(tree)?;
let db = self.db.get()?;
let lock = self.write_lock.lock();
let old_val = self.internal_get(&db, &tree, key)?;
if old_val.is_some() {
let n = db.execute(&format!("DELETE FROM {} WHERE k = ?1", tree), params![key])?;
assert_eq!(n, 1);
}
let n = db.execute(&format!("DELETE FROM {} WHERE k = ?1", tree), params![key])?;
drop(lock);
Ok(old_val)
Ok(())
}
fn clear(&self, tree: usize) -> Result<()> {

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@ -12,7 +12,7 @@ fn test_suite(db: Db) {
// ---- test simple insert/delete ----
assert!(tree.insert(ka, va).unwrap().is_none());
assert!(tree.insert(ka, va).is_ok());
assert_eq!(tree.get(ka).unwrap().unwrap(), va);
assert_eq!(tree.len().unwrap(), 1);
@ -50,7 +50,7 @@ fn test_suite(db: Db) {
assert!(iter.next().is_none());
drop(iter);
assert!(tree.insert(kb, vc).unwrap().is_none());
assert!(tree.insert(kb, vc).is_ok());
assert_eq!(tree.get(kb).unwrap().unwrap(), vc);
let mut iter = tree.iter().unwrap();