mirror of
https://github.com/jemalloc/jemalloc.git
synced 2026-07-22 20:53:07 +00:00
Rather than protecting dss operations with a mutex, use atomic operations. This has negligible impact on synchronization overhead during typical dss allocation, but is a substantial improvement for extent_in_dss() and the newly added extent_dss_mergeable(), which can be called multiple times during extent deallocations. This change also has the advantage of avoiding tsd in deallocation paths associated with purging, which resolves potential deadlocks during thread exit due to attempted tsd resurrection. This resolves #425.
349 lines
9.5 KiB
C
349 lines
9.5 KiB
C
#define JEMALLOC_LARGE_C_
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#include "jemalloc/internal/jemalloc_internal.h"
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/******************************************************************************/
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void *
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large_malloc(tsdn_t *tsdn, arena_t *arena, size_t usize, bool zero)
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{
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assert(usize == s2u(usize));
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return (large_palloc(tsdn, arena, usize, CACHELINE, zero));
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}
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void *
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large_palloc(tsdn_t *tsdn, arena_t *arena, size_t usize, size_t alignment,
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bool zero)
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{
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size_t ausize;
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extent_t *extent;
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bool is_zeroed;
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UNUSED bool idump JEMALLOC_CC_SILENCE_INIT(false);
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assert(!tsdn_null(tsdn) || arena != NULL);
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ausize = sa2u(usize, alignment);
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if (unlikely(ausize == 0 || ausize > LARGE_MAXCLASS))
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return (NULL);
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/*
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* Copy zero into is_zeroed and pass the copy to extent_alloc(), so that
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* it is possible to make correct junk/zero fill decisions below.
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*/
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is_zeroed = zero;
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if (likely(!tsdn_null(tsdn)))
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arena = arena_choose(tsdn_tsd(tsdn), arena);
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if (unlikely(arena == NULL) || (extent = arena_extent_alloc_large(tsdn,
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arena, usize, alignment, &is_zeroed)) == NULL)
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return (NULL);
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/* Insert extent into large. */
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malloc_mutex_lock(tsdn, &arena->large_mtx);
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ql_elm_new(extent, ql_link);
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ql_tail_insert(&arena->large, extent, ql_link);
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malloc_mutex_unlock(tsdn, &arena->large_mtx);
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if (config_prof && arena_prof_accum(tsdn, arena, usize))
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prof_idump(tsdn);
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if (zero || (config_fill && unlikely(opt_zero))) {
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if (!is_zeroed) {
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memset(extent_addr_get(extent), 0,
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extent_usize_get(extent));
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}
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} else if (config_fill && unlikely(opt_junk_alloc)) {
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memset(extent_addr_get(extent), JEMALLOC_ALLOC_JUNK,
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extent_usize_get(extent));
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}
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arena_decay_tick(tsdn, arena);
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return (extent_addr_get(extent));
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}
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#ifdef JEMALLOC_JET
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#undef large_dalloc_junk
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#define large_dalloc_junk JEMALLOC_N(n_large_dalloc_junk)
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#endif
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void
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large_dalloc_junk(void *ptr, size_t usize)
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{
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memset(ptr, JEMALLOC_FREE_JUNK, usize);
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}
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#ifdef JEMALLOC_JET
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#undef large_dalloc_junk
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#define large_dalloc_junk JEMALLOC_N(large_dalloc_junk)
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large_dalloc_junk_t *large_dalloc_junk = JEMALLOC_N(n_large_dalloc_junk);
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#endif
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#ifdef JEMALLOC_JET
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#undef large_dalloc_maybe_junk
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#define large_dalloc_maybe_junk JEMALLOC_N(n_large_dalloc_maybe_junk)
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#endif
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void
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large_dalloc_maybe_junk(void *ptr, size_t usize)
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{
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if (config_fill && have_dss && unlikely(opt_junk_free)) {
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/*
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* Only bother junk filling if the extent isn't about to be
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* unmapped.
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*/
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if (!config_munmap || (have_dss && extent_in_dss(ptr)))
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large_dalloc_junk(ptr, usize);
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}
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}
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#ifdef JEMALLOC_JET
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#undef large_dalloc_maybe_junk
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#define large_dalloc_maybe_junk JEMALLOC_N(large_dalloc_maybe_junk)
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large_dalloc_maybe_junk_t *large_dalloc_maybe_junk =
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JEMALLOC_N(n_large_dalloc_maybe_junk);
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#endif
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static bool
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large_ralloc_no_move_shrink(tsdn_t *tsdn, extent_t *extent, size_t usize)
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{
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arena_t *arena = extent_arena_get(extent);
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size_t oldusize = extent_usize_get(extent);
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extent_hooks_t *extent_hooks = extent_hooks_get(arena);
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size_t diff = extent_size_get(extent) - (usize + large_pad);
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assert(oldusize > usize);
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/* Split excess pages. */
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if (diff != 0) {
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extent_t *trail = extent_split_wrapper(tsdn, arena,
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&extent_hooks, extent, usize + large_pad, usize, diff,
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diff);
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if (trail == NULL)
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return (true);
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if (config_fill && unlikely(opt_junk_free)) {
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large_dalloc_maybe_junk(extent_addr_get(trail),
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extent_usize_get(trail));
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}
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arena_extent_cache_dalloc(tsdn, arena, &extent_hooks, trail);
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}
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arena_extent_ralloc_large_shrink(tsdn, arena, extent, oldusize);
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return (false);
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}
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static bool
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large_ralloc_no_move_expand(tsdn_t *tsdn, extent_t *extent, size_t usize,
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bool zero)
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{
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arena_t *arena = extent_arena_get(extent);
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size_t oldusize = extent_usize_get(extent);
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bool is_zeroed_trail = false;
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extent_hooks_t *extent_hooks = extent_hooks_get(arena);
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size_t trailsize = usize - extent_usize_get(extent);
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extent_t *trail;
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if ((trail = arena_extent_cache_alloc(tsdn, arena, &extent_hooks,
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extent_past_get(extent), trailsize, CACHELINE, &is_zeroed_trail))
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== NULL) {
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bool commit = true;
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if ((trail = extent_alloc_wrapper(tsdn, arena, &extent_hooks,
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extent_past_get(extent), trailsize, 0, CACHELINE,
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&is_zeroed_trail, &commit, false)) == NULL)
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return (true);
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}
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if (extent_merge_wrapper(tsdn, arena, &extent_hooks, extent, trail)) {
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extent_dalloc_wrapper(tsdn, arena, &extent_hooks, trail);
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return (true);
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}
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if (zero || (config_fill && unlikely(opt_zero))) {
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if (config_cache_oblivious) {
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/*
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* Zero the trailing bytes of the original allocation's
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* last page, since they are in an indeterminate state.
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* There will always be trailing bytes, because ptr's
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* offset from the beginning of the extent is a multiple
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* of CACHELINE in [0 .. PAGE).
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*/
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void *zbase = (void *)
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((uintptr_t)extent_addr_get(extent) + oldusize);
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void *zpast = PAGE_ADDR2BASE((void *)((uintptr_t)zbase +
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PAGE));
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size_t nzero = (uintptr_t)zpast - (uintptr_t)zbase;
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assert(nzero > 0);
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memset(zbase, 0, nzero);
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}
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if (!is_zeroed_trail) {
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memset((void *)((uintptr_t)extent_addr_get(extent) +
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oldusize), 0, usize - oldusize);
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}
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} else if (config_fill && unlikely(opt_junk_alloc)) {
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memset((void *)((uintptr_t)extent_addr_get(extent) + oldusize),
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JEMALLOC_ALLOC_JUNK, usize - oldusize);
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}
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arena_extent_ralloc_large_expand(tsdn, arena, extent, oldusize);
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return (false);
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}
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bool
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large_ralloc_no_move(tsdn_t *tsdn, extent_t *extent, size_t usize_min,
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size_t usize_max, bool zero)
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{
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assert(s2u(extent_usize_get(extent)) == extent_usize_get(extent));
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/* The following should have been caught by callers. */
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assert(usize_min > 0 && usize_max <= LARGE_MAXCLASS);
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/* Both allocation sizes must be large to avoid a move. */
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assert(extent_usize_get(extent) >= LARGE_MINCLASS && usize_max >=
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LARGE_MINCLASS);
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if (usize_max > extent_usize_get(extent)) {
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/* Attempt to expand the allocation in-place. */
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if (!large_ralloc_no_move_expand(tsdn, extent, usize_max,
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zero)) {
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arena_decay_tick(tsdn, extent_arena_get(extent));
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return (false);
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}
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/* Try again, this time with usize_min. */
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if (usize_min < usize_max && usize_min >
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extent_usize_get(extent) &&
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large_ralloc_no_move_expand(tsdn, extent, usize_min,
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zero)) {
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arena_decay_tick(tsdn, extent_arena_get(extent));
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return (false);
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}
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}
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/*
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* Avoid moving the allocation if the existing extent size accommodates
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* the new size.
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*/
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if (extent_usize_get(extent) >= usize_min && extent_usize_get(extent) <=
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usize_max) {
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arena_decay_tick(tsdn, extent_arena_get(extent));
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return (false);
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}
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/* Attempt to shrink the allocation in-place. */
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if (extent_usize_get(extent) > usize_max) {
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if (!large_ralloc_no_move_shrink(tsdn, extent, usize_max)) {
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arena_decay_tick(tsdn, extent_arena_get(extent));
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return (false);
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}
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}
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return (true);
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}
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static void *
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large_ralloc_move_helper(tsdn_t *tsdn, arena_t *arena, size_t usize,
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size_t alignment, bool zero)
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{
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if (alignment <= CACHELINE)
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return (large_malloc(tsdn, arena, usize, zero));
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return (large_palloc(tsdn, arena, usize, alignment, zero));
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}
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void *
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large_ralloc(tsdn_t *tsdn, arena_t *arena, extent_t *extent, size_t usize,
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size_t alignment, bool zero, tcache_t *tcache)
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{
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void *ret;
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size_t copysize;
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/* The following should have been caught by callers. */
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assert(usize > 0 && usize <= LARGE_MAXCLASS);
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/* Both allocation sizes must be large to avoid a move. */
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assert(extent_usize_get(extent) >= LARGE_MINCLASS && usize >=
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LARGE_MINCLASS);
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/* Try to avoid moving the allocation. */
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if (!large_ralloc_no_move(tsdn, extent, usize, usize, zero))
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return (extent_addr_get(extent));
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/*
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* usize and old size are different enough that we need to use a
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* different size class. In that case, fall back to allocating new
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* space and copying.
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*/
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ret = large_ralloc_move_helper(tsdn, arena, usize, alignment, zero);
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if (ret == NULL)
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return (NULL);
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copysize = (usize < extent_usize_get(extent)) ? usize :
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extent_usize_get(extent);
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memcpy(ret, extent_addr_get(extent), copysize);
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isdalloct(tsdn, extent, extent_addr_get(extent),
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extent_usize_get(extent), tcache, true);
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return (ret);
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}
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/*
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* junked_locked indicates whether the extent's data have been junk-filled, and
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* whether the arena's lock is currently held. The arena's large_mtx is
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* independent of these considerations.
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*/
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static void
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large_dalloc_impl(tsdn_t *tsdn, extent_t *extent, bool junked_locked)
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{
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arena_t *arena;
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arena = extent_arena_get(extent);
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malloc_mutex_lock(tsdn, &arena->large_mtx);
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ql_remove(&arena->large, extent, ql_link);
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malloc_mutex_unlock(tsdn, &arena->large_mtx);
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if (!junked_locked) {
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large_dalloc_maybe_junk(extent_addr_get(extent),
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extent_usize_get(extent));
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}
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arena_extent_dalloc_large(tsdn, arena, extent, junked_locked);
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if (!junked_locked)
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arena_decay_tick(tsdn, arena);
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}
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void
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large_dalloc_junked_locked(tsdn_t *tsdn, extent_t *extent)
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{
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large_dalloc_impl(tsdn, extent, true);
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}
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void
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large_dalloc(tsdn_t *tsdn, extent_t *extent)
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{
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large_dalloc_impl(tsdn, extent, false);
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}
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size_t
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large_salloc(tsdn_t *tsdn, const extent_t *extent)
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{
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return (extent_usize_get(extent));
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}
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prof_tctx_t *
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large_prof_tctx_get(tsdn_t *tsdn, const extent_t *extent)
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{
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return (extent_prof_tctx_get(extent));
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}
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void
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large_prof_tctx_set(tsdn_t *tsdn, extent_t *extent, prof_tctx_t *tctx)
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{
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extent_prof_tctx_set(extent, tctx);
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}
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void
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large_prof_tctx_reset(tsdn_t *tsdn, extent_t *extent)
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{
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large_prof_tctx_set(tsdn, extent, (prof_tctx_t *)(uintptr_t)1U);
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}
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