Move a parked payload between arenas instead of cloning its heap

This commit is contained in:
Dennis Kobert
2026-09-01 22:51:18 +00:00
parent c12f8f1115
commit a6016b2c03

View File

@@ -1,4 +1,5 @@
use std::cell::UnsafeCell;
use std::collections::HashMap;
use std::marker::PhantomData;
use std::mem::MaybeUninit;
use std::sync::Mutex;
@@ -24,6 +25,11 @@ pub struct Arena {
/// Heap the parked payloads keep alive, which occupancy does not measure:
/// a park costs one pointer in the arena and owns its content outside it.
retained_heap: AtomicUsize,
/// Where [`Arena::move_park`] sent each moved park, as its offset here to
/// the header's address in the receiving arena, so a payload two records
/// share is moved once. Cleared by [`Arena::reset`], so a forwarding holds
/// for one generation.
forwarded: Mutex<HashMap<usize, usize>>,
}
impl std::fmt::Debug for Arena {
@@ -40,6 +46,21 @@ struct DropEntry {
retained: usize,
}
/// The glue a tombstoned entry carries: its payload was moved to another arena,
/// which now owns the obligation.
unsafe fn inert(_: *mut u8) {}
/// The entry parking `offset`, `None` where the arena holds no obligation for
/// it. Entries are pushed in reserve order, which is offset order, so the
/// search is exact; the scan covers a push order that concurrency interleaved.
fn entry_at(entries: &[DropEntry], offset: usize) -> Option<usize> {
let probe = entries.partition_point(|entry| entry.offset < offset);
match entries.get(probe).is_some_and(|entry| entry.offset == offset) {
true => Some(probe),
false => entries.iter().rposition(|entry| entry.offset == offset),
}
}
// SAFETY: disjoint regions are handed out by an atomic bump; a region is written
// only by its allocating caller before publication, and cross-thread hand-off is
// ordered by the Release/Acquire pair on the published handle word. Payloads are
@@ -92,6 +113,7 @@ impl Arena {
drops: Mutex::new(Vec::new()),
exhausted: AtomicBool::new(false),
retained_heap: AtomicUsize::new(0),
forwarded: Mutex::new(HashMap::new()),
})
}
@@ -106,6 +128,7 @@ impl Arena {
drops: Mutex::new(Vec::new()),
exhausted: AtomicBool::new(false),
retained_heap: AtomicUsize::new(0),
forwarded: Mutex::new(HashMap::new()),
}
}
@@ -205,6 +228,63 @@ impl Arena {
Some((unsafe { &*ptr }, weak))
}
/// Moves the payload at `src` out of this arena and into `dst`: the header's
/// own bytes are copied, its drop obligation is pushed onto `dst` with the
/// `retained` hint, and the entry here is tombstoned in place, its glue
/// swapped for [`inert`] so the reset costs nothing per entry to honour it.
/// The heap the payload owns is neither copied nor freed; ownership travels
/// with the obligation and is discharged by `dst`'s flush.
///
/// THE MOVE'S OWNERSHIP CONTRACT: the source header keeps its bytes and
/// stays readable to this generation's remaining sharers, but it owns
/// nothing, so no read of it may outlive `dst`'s flush. A payload moved
/// once is not moved again: its recorded destination is returned, so a
/// fan-out sharer's second move reaches the one header and the obligation
/// is never duplicated.
///
/// `dst` is credited `retained`, which is what a clone of the payload would
/// have credited it, and this arena is debited what its own park recorded,
/// so neither counter reads worse than it did before the move.
///
/// `None` where `src` is not this arena's park, where `T` is zero-sized
/// (whose parks share an offset and so cannot be told apart), or where
/// `dst` refused the header.
///
/// # Safety
/// `src` must address a live `T` this arena parked, and `T` must own all of
/// its content: the moved header may reference no storage of this arena.
pub unsafe fn move_park<T: Send + Sync>(&self, src: *const u8, dst: &Arena, retained: usize) -> Option<*const T> {
(size_of::<T>() != 0).then_some(())?;
let offset = (src as usize).checked_sub(self.base() as usize)?;
(offset < self.buf.len()).then_some(())?;
let mut forwarded = self.forwarded.lock().unwrap();
if let Some(&moved) = forwarded.get(&offset) {
return Some(moved as *const T);
}
let mut entries = self.drops.lock().unwrap();
let entry = entry_at(&entries, offset)?;
let slot = dst.alloc_scratch::<T>(1)?;
let target = slot.as_mut_ptr().cast::<T>();
// SAFETY: the caller's contract on `src`, into a freshly reserved,
// aligned, unaliased slot of the same type.
unsafe { std::ptr::copy_nonoverlapping(src.cast::<T>(), target, 1) };
let parked = std::mem::replace(&mut entries[entry].retained, 0);
entries[entry].drop_fn = inert;
drop(entries);
unsafe fn glue<T>(p: *mut u8) {
unsafe { p.cast::<T>().drop_in_place() }
}
dst.drops.lock().unwrap().push(DropEntry {
offset: target as usize - dst.base() as usize,
drop_fn: glue::<T>,
retained,
});
dst.retained_heap.fetch_add(retained, Ordering::Relaxed);
let _ = self.retained_heap.fetch_update(Ordering::Relaxed, Ordering::Relaxed, |current| Some(current.saturating_sub(parked)));
forwarded.insert(offset, target as usize);
Some(target.cast_const())
}
pub fn alloc_slice_copy<T: Copy + Send + Sync>(&self, src: &[T]) -> Option<&[T]> {
let buf = self.alloc_scratch::<T>(src.len())?;
for (slot, &value) in buf.iter_mut().zip(src) {
@@ -237,9 +317,14 @@ impl Arena {
/// `false` once generations are exhausted, parking the arena on [`PARKED_GENERATION`]
/// where every handle misses and further allocation is refused.
///
/// A park [`Arena::move_park`] handed to another arena carries [`inert`]
/// glue and a zeroed hint, so it costs the loop nothing beyond the call it
/// would have made anyway.
pub fn reset(&mut self) -> bool {
let base = self.base();
let entries = std::mem::take(self.drops.get_mut().unwrap());
self.forwarded.get_mut().unwrap().clear();
self.generation.store(PARKED_GENERATION, Ordering::Release);
for entry in entries.into_iter().rev() {
// SAFETY: registered at alloc time; insert-only means the region was
@@ -504,6 +589,86 @@ mod tests {
assert_eq!(arena.retained_heap(), 0, "the flush frees every parked payload");
}
#[test]
fn a_moved_park_carries_its_heap_and_its_obligation() {
let _guard = COUNTER_GUARD.lock().unwrap_or_else(PoisonError::into_inner);
let mut transient = Arena::new(1024).unwrap();
let mut persistent = Arena::new(1024).unwrap();
let owned = String::from("moved, never cloned");
let length = owned.len();
let heap = owned.as_ptr();
let (parked, _) = transient.alloc_sized(owned, length).unwrap();
let src = std::ptr::from_ref(parked).cast::<u8>();
let moved = unsafe { transient.move_park::<String>(src, &persistent, length) }.unwrap();
assert_eq!(unsafe { &*moved }.as_ptr(), heap, "the move copies the header and leaves the heap where it was");
assert!(persistent.contains(moved.cast()), "the header lands in the receiving arena");
assert_eq!(transient.retained_heap(), 0, "the parking arena gives the hint up");
assert_eq!(persistent.retained_heap(), length, "and the receiving arena takes it");
transient.reset();
assert_eq!(unsafe { &*moved }, "moved, never cloned", "the parking arena's reset leaves a moved payload alone");
persistent.reset();
assert_eq!(persistent.retained_heap(), 0, "the receiving flush frees it");
}
#[test]
fn a_park_two_records_share_moves_once_and_frees_once() {
let _guard = COUNTER_GUARD.lock().unwrap_or_else(PoisonError::into_inner);
static DROPS: AtomicU32 = AtomicU32::new(0);
struct Probe(#[allow(dead_code)] String);
impl Drop for Probe {
fn drop(&mut self) {
DROPS.fetch_add(1, Ordering::Relaxed);
}
}
DROPS.store(0, Ordering::Relaxed);
let mut transient = Arena::new(1024).unwrap();
let mut persistent = Arena::new(1024).unwrap();
let (parked, _) = transient.alloc_sized(Probe(String::from("shared by two records")), 21).unwrap();
let src = std::ptr::from_ref(parked).cast::<u8>();
let first = unsafe { transient.move_park::<Probe>(src, &persistent, 21) }.unwrap();
let second = unsafe { transient.move_park::<Probe>(src, &persistent, 21) }.unwrap();
assert_eq!(first, second, "the second move forwards to the header the first wrote");
assert_eq!(persistent.retained_heap(), 21, "the hint transfers once, not once per sharer");
transient.reset();
assert_eq!(DROPS.load(Ordering::Relaxed), 0, "a tombstoned entry is skipped by its arena's reset");
persistent.reset();
assert_eq!(DROPS.load(Ordering::Relaxed), 1, "the flush that owns the obligation frees it exactly once");
}
#[test]
fn the_forwarding_map_lives_one_generation() {
let _guard = COUNTER_GUARD.lock().unwrap_or_else(PoisonError::into_inner);
static DROPS: AtomicU32 = AtomicU32::new(0);
struct Probe(#[allow(dead_code)] String);
impl Drop for Probe {
fn drop(&mut self) {
DROPS.fetch_add(1, Ordering::Relaxed);
}
}
DROPS.store(0, Ordering::Relaxed);
let mut transient = Arena::new(1024).unwrap();
let mut persistent = Arena::new(1024).unwrap();
let (parked, _) = transient.alloc_sized(Probe(String::from("first generation")), 16).unwrap();
let src = std::ptr::from_ref(parked).cast::<u8>();
unsafe { transient.move_park::<Probe>(src, &persistent, 16) }.unwrap();
assert_eq!(transient.forwarded.lock().unwrap().len(), 1, "the move tombstoned the entry it left");
transient.reset();
assert!(transient.forwarded.lock().unwrap().is_empty(), "the tombstone set is empty after the reset");
transient.alloc_sized(Probe(String::from("second generation")), 16).unwrap();
transient.reset();
assert_eq!(DROPS.load(Ordering::Relaxed), 1, "a fresh park at a tombstoned offset drops normally");
persistent.reset();
assert_eq!(DROPS.load(Ordering::Relaxed), 2);
}
#[test]
fn occupancy_tracks_the_bump_and_clears_on_reset() {
let _guard = COUNTER_GUARD.lock().unwrap_or_else(PoisonError::into_inner);