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https://github.com/jemalloc/jemalloc
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f9c0b5f7f8
This lets us easily see what fraction of flush load is being taken up by the bins, and helps guide future optimization approaches (for example: should we prefetch during cache bin fills? It depends on how many objects the average fill pops out of the batch).
150 lines
4.3 KiB
C
150 lines
4.3 KiB
C
#ifndef JEMALLOC_INTERNAL_BIN_H
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#define JEMALLOC_INTERNAL_BIN_H
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#include "jemalloc/internal/jemalloc_preamble.h"
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#include "jemalloc/internal/batcher.h"
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#include "jemalloc/internal/bin_stats.h"
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#include "jemalloc/internal/bin_types.h"
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#include "jemalloc/internal/edata.h"
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#include "jemalloc/internal/mutex.h"
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#include "jemalloc/internal/sc.h"
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#define BIN_REMOTE_FREE_ELEMS_MAX 16
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#ifdef JEMALLOC_JET
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extern void (*bin_batching_test_after_push_hook)(size_t idx);
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extern void (*bin_batching_test_mid_pop_hook)(size_t elems_to_pop);
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extern void (*bin_batching_test_after_unlock_hook)(unsigned slab_dalloc_count,
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bool list_empty);
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#endif
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#ifdef JEMALLOC_JET
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extern unsigned bin_batching_test_ndalloc_slabs_max;
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#else
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static const unsigned bin_batching_test_ndalloc_slabs_max = (unsigned)-1;
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#endif
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JEMALLOC_ALWAYS_INLINE void
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bin_batching_test_after_push(size_t idx) {
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(void)idx;
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#ifdef JEMALLOC_JET
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if (bin_batching_test_after_push_hook != NULL) {
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bin_batching_test_after_push_hook(idx);
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}
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#endif
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}
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JEMALLOC_ALWAYS_INLINE void
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bin_batching_test_mid_pop(size_t elems_to_pop) {
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(void)elems_to_pop;
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#ifdef JEMALLOC_JET
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if (bin_batching_test_mid_pop_hook != NULL) {
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bin_batching_test_mid_pop_hook(elems_to_pop);
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}
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#endif
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}
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JEMALLOC_ALWAYS_INLINE void
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bin_batching_test_after_unlock(unsigned slab_dalloc_count, bool list_empty) {
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(void)slab_dalloc_count;
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(void)list_empty;
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#ifdef JEMALLOC_JET
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if (bin_batching_test_after_unlock_hook != NULL) {
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bin_batching_test_after_unlock_hook(slab_dalloc_count,
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list_empty);
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}
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#endif
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}
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/*
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* A bin contains a set of extents that are currently being used for slab
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* allocations.
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*/
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typedef struct bin_s bin_t;
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struct bin_s {
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/* All operations on bin_t fields require lock ownership. */
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malloc_mutex_t lock;
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/*
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* Bin statistics. These get touched every time the lock is acquired,
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* so put them close by in the hopes of getting some cache locality.
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*/
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bin_stats_t stats;
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/*
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* Current slab being used to service allocations of this bin's size
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* class. slabcur is independent of slabs_{nonfull,full}; whenever
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* slabcur is reassigned, the previous slab must be deallocated or
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* inserted into slabs_{nonfull,full}.
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*/
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edata_t *slabcur;
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/*
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* Heap of non-full slabs. This heap is used to assure that new
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* allocations come from the non-full slab that is oldest/lowest in
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* memory.
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*/
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edata_heap_t slabs_nonfull;
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/* List used to track full slabs. */
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edata_list_active_t slabs_full;
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};
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typedef struct bin_remote_free_data_s bin_remote_free_data_t;
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struct bin_remote_free_data_s {
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void *ptr;
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edata_t *slab;
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};
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typedef struct bin_with_batch_s bin_with_batch_t;
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struct bin_with_batch_s {
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bin_t bin;
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batcher_t remote_frees;
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bin_remote_free_data_t remote_free_data[BIN_REMOTE_FREE_ELEMS_MAX];
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};
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/* A set of sharded bins of the same size class. */
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typedef struct bins_s bins_t;
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struct bins_s {
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/* Sharded bins. Dynamically sized. */
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bin_t *bin_shards;
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};
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void bin_shard_sizes_boot(unsigned bin_shard_sizes[SC_NBINS]);
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bool bin_update_shard_size(unsigned bin_shards[SC_NBINS], size_t start_size,
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size_t end_size, size_t nshards);
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/* Initializes a bin to empty. Returns true on error. */
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bool bin_init(bin_t *bin, unsigned binind);
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/* Forking. */
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void bin_prefork(tsdn_t *tsdn, bin_t *bin, bool has_batch);
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void bin_postfork_parent(tsdn_t *tsdn, bin_t *bin, bool has_batch);
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void bin_postfork_child(tsdn_t *tsdn, bin_t *bin, bool has_batch);
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/* Stats. */
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static inline void
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bin_stats_merge(tsdn_t *tsdn, bin_stats_data_t *dst_bin_stats, bin_t *bin) {
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malloc_mutex_lock(tsdn, &bin->lock);
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malloc_mutex_prof_accum(tsdn, &dst_bin_stats->mutex_data, &bin->lock);
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bin_stats_t *stats = &dst_bin_stats->stats_data;
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stats->nmalloc += bin->stats.nmalloc;
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stats->ndalloc += bin->stats.ndalloc;
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stats->nrequests += bin->stats.nrequests;
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stats->curregs += bin->stats.curregs;
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stats->nfills += bin->stats.nfills;
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stats->nflushes += bin->stats.nflushes;
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stats->nslabs += bin->stats.nslabs;
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stats->reslabs += bin->stats.reslabs;
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stats->curslabs += bin->stats.curslabs;
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stats->nonfull_slabs += bin->stats.nonfull_slabs;
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stats->batch_failed_pushes += bin->stats.batch_failed_pushes;
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stats->batch_pushes += bin->stats.batch_pushes;
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stats->batch_pushed_elems += bin->stats.batch_pushed_elems;
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malloc_mutex_unlock(tsdn, &bin->lock);
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}
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#endif /* JEMALLOC_INTERNAL_BIN_H */
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