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HPA: Allow frequent reused alloc to bypass the slab_max_alloc limit, as long as
it's within the huge page size. These requests do not concern internal fragmentation with huge pages, since the entire range is expected to be accessed.
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b1792c80d2
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a2c5267409
6 changed files with 51 additions and 19 deletions
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@ -20,7 +20,7 @@ struct pai_s {
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* the results are not necessarily zeroed.
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*/
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size_t (*alloc_batch)(tsdn_t *tsdn, pai_t *self, size_t size,
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size_t nallocs, edata_list_active_t *results,
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size_t nallocs, edata_list_active_t *results, bool frequent_reuse,
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bool *deferred_work_generated);
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bool (*expand)(tsdn_t *tsdn, pai_t *self, edata_t *edata,
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size_t old_size, size_t new_size, bool zero,
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@ -50,9 +50,10 @@ pai_alloc(tsdn_t *tsdn, pai_t *self, size_t size, size_t alignment,
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static inline size_t
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pai_alloc_batch(tsdn_t *tsdn, pai_t *self, size_t size, size_t nallocs,
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edata_list_active_t *results, bool *deferred_work_generated) {
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edata_list_active_t *results, bool frequent_reuse,
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bool *deferred_work_generated) {
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return self->alloc_batch(tsdn, self, size, nallocs, results,
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deferred_work_generated);
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frequent_reuse, deferred_work_generated);
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}
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static inline bool
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@ -91,7 +92,8 @@ pai_time_until_deferred_work(tsdn_t *tsdn, pai_t *self) {
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* each item in the list.
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*/
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size_t pai_alloc_batch_default(tsdn_t *tsdn, pai_t *self, size_t size,
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size_t nallocs, edata_list_active_t *results, bool *deferred_work_generated);
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size_t nallocs, edata_list_active_t *results, bool frequent_reuse,
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bool *deferred_work_generated);
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/* Ditto, for dalloc. */
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void pai_dalloc_batch_default(tsdn_t *tsdn, pai_t *self,
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edata_list_active_t *list, bool *deferred_work_generated);
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