152 lines
4.0 KiB
C
152 lines
4.0 KiB
C
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#ifndef JEMALLOC_INTERNAL_LOCKEDINT_H
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#define JEMALLOC_INTERNAL_LOCKEDINT_H
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/*
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* In those architectures that support 64-bit atomics, we use atomic updates for
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* our 64-bit values. Otherwise, we use a plain uint64_t and synchronize
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* externally.
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*/
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typedef struct locked_u64_s locked_u64_t;
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#ifdef JEMALLOC_ATOMIC_U64
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struct locked_u64_s {
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atomic_u64_t val;
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};
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#else
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/* Must hold the associated mutex. */
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struct locked_u64_s {
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uint64_t val;
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};
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#endif
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typedef struct locked_zu_s locked_zu_t;
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struct locked_zu_s {
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atomic_zu_t val;
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};
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#ifndef JEMALLOC_ATOMIC_U64
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# define LOCKEDINT_MTX_DECLARE(name) malloc_mutex_t name;
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# define LOCKEDINT_MTX_INIT(ptr, name, rank, rank_mode) \
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malloc_mutex_init(ptr, name, rank, rank_mode)
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# define LOCKEDINT_MTX(mtx) (&(mtx))
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# define LOCKEDINT_MTX_LOCK(tsdn, mu) malloc_mutex_lock(tsdn, &(mu))
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# define LOCKEDINT_MTX_UNLOCK(tsdn, mu) malloc_mutex_unlock(tsdn, &(mu))
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#else
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# define LOCKEDINT_MTX_DECLARE(name)
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# define LOCKEDINT_MTX(ptr) NULL
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# define LOCKEDINT_MTX_INIT(ptr, name, rank, rank_mode) false
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# define LOCKEDINT_MTX_LOCK(tsdn, mu) do {} while (0)
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# define LOCKEDINT_MTX_UNLOCK(tsdn, mu) do {} while (0)
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#endif
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static inline uint64_t
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locked_read_u64(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_u64_t *p) {
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#ifdef JEMALLOC_ATOMIC_U64
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return atomic_load_u64(&p->val, ATOMIC_RELAXED);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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return p->val;
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#endif
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}
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static inline void
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locked_inc_u64(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_u64_t *p,
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uint64_t x) {
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#ifdef JEMALLOC_ATOMIC_U64
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atomic_fetch_add_u64(&p->val, x, ATOMIC_RELAXED);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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p->val += x;
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#endif
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}
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static inline void
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locked_dec_u64(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_u64_t *p,
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uint64_t x) {
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#ifdef JEMALLOC_ATOMIC_U64
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uint64_t r = atomic_fetch_sub_u64(&p->val, x, ATOMIC_RELAXED);
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assert(r - x <= r);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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p->val -= x;
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assert(p->val + x >= p->val);
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#endif
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}
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/*
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* Non-atomically sets *dst += src. *dst needs external synchronization.
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* This lets us avoid the cost of a fetch_add when its unnecessary (note that
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* the types here are atomic).
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*/
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static inline void
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locked_inc_u64_unsynchronized(locked_u64_t *dst, uint64_t src) {
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#ifdef JEMALLOC_ATOMIC_U64
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uint64_t cur_dst = atomic_load_u64(&dst->val, ATOMIC_RELAXED);
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atomic_store_u64(&dst->val, src + cur_dst, ATOMIC_RELAXED);
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#else
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dst->val += src;
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#endif
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}
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static inline uint64_t
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locked_read_u64_unsynchronized(locked_u64_t *p) {
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#ifdef JEMALLOC_ATOMIC_U64
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return atomic_load_u64(&p->val, ATOMIC_RELAXED);
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#else
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return p->val;
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#endif
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}
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static inline size_t
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locked_read_zu(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_zu_t *p) {
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#ifdef JEMALLOC_ATOMIC_U64
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return atomic_load_zu(&p->val, ATOMIC_RELAXED);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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return atomic_load_zu(&p->val, ATOMIC_RELAXED);
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#endif
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}
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static inline void
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locked_inc_zu(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_zu_t *p,
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size_t x) {
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#ifdef JEMALLOC_ATOMIC_U64
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atomic_fetch_add_zu(&p->val, x, ATOMIC_RELAXED);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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size_t cur = atomic_load_zu(&p->val, ATOMIC_RELAXED);
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atomic_store_zu(&p->val, cur + x, ATOMIC_RELAXED);
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#endif
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}
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static inline void
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locked_dec_zu(tsdn_t *tsdn, malloc_mutex_t *mtx, locked_zu_t *p,
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size_t x) {
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#ifdef JEMALLOC_ATOMIC_U64
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size_t r = atomic_fetch_sub_zu(&p->val, x, ATOMIC_RELAXED);
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assert(r - x <= r);
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#else
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malloc_mutex_assert_owner(tsdn, mtx);
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size_t cur = atomic_load_zu(&p->val, ATOMIC_RELAXED);
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atomic_store_zu(&p->val, cur - x, ATOMIC_RELAXED);
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#endif
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}
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/* Like the _u64 variant, needs an externally synchronized *dst. */
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static inline void
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locked_inc_zu_unsynchronized(locked_zu_t *dst, size_t src) {
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size_t cur_dst = atomic_load_zu(&dst->val, ATOMIC_RELAXED);
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atomic_store_zu(&dst->val, src + cur_dst, ATOMIC_RELAXED);
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}
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/*
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* Unlike the _u64 variant, this is safe to call unconditionally.
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*/
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static inline size_t
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locked_read_atomic_zu(locked_zu_t *p) {
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return atomic_load_zu(&p->val, ATOMIC_RELAXED);
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}
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#endif /* JEMALLOC_INTERNAL_LOCKEDINT_H */
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