mi-malloc  1.6
mimalloc-doc.h
1 /* ----------------------------------------------------------------------------
2 Copyright (c) 2018, Microsoft Research, Daan Leijen
3 This is free software; you can redistribute it and/or modify it under the
4 terms of the MIT license. A copy of the license can be found in the file
5 "LICENSE" at the root of this distribution.
6 -----------------------------------------------------------------------------*/
7 
8 #error "documentation file only!"
9 
10 
91 
95 
99 void mi_free(void* p);
100 
105 void* mi_malloc(size_t size);
106 
111 void* mi_zalloc(size_t size);
112 
122 void* mi_calloc(size_t count, size_t size);
123 
136 void* mi_realloc(void* p, size_t newsize);
137 
148 void* mi_recalloc(void* p, size_t count, size_t size);
149 
163 void* mi_expand(void* p, size_t newsize);
164 
174 void* mi_mallocn(size_t count, size_t size);
175 
185 void* mi_reallocn(void* p, size_t count, size_t size);
186 
203 void* mi_reallocf(void* p, size_t newsize);
204 
205 
214 char* mi_strdup(const char* s);
215 
225 char* mi_strndup(const char* s, size_t n);
226 
239 char* mi_realpath(const char* fname, char* resolved_name);
240 
242 
243 // ------------------------------------------------------
244 // Extended functionality
245 // ------------------------------------------------------
246 
250 
253 #define MI_SMALL_SIZE_MAX (128*sizeof(void*))
254 
262 void* mi_malloc_small(size_t size);
263 
271 void* mi_zalloc_small(size_t size);
272 
287 size_t mi_usable_size(void* p);
288 
298 size_t mi_good_size(size_t size);
299 
307 void mi_collect(bool force);
308 
313 void mi_stats_print(void* out);
314 
320 void mi_stats_print_out(mi_output_fun* out, void* arg);
321 
323 void mi_stats_reset(void);
324 
326 void mi_stats_merge(void);
327 
331 void mi_thread_init(void);
332 
337 void mi_thread_done(void);
338 
344 void mi_thread_stats_print_out(mi_output_fun* out, void* arg);
345 
352 typedef void (mi_deferred_free_fun)(bool force, unsigned long long heartbeat, void* arg);
353 
369 void mi_register_deferred_free(mi_deferred_free_fun* deferred_free, void* arg);
370 
376 typedef void (mi_output_fun)(const char* msg, void* arg);
377 
384 void mi_register_output(mi_output_fun* out, void* arg);
385 
391 typedef void (mi_error_fun)(int err, void* arg);
392 
408 void mi_register_error(mi_error_fun* errfun, void* arg);
409 
414 bool mi_is_in_heap_region(const void* p);
415 
416 
429 int mi_reserve_huge_os_pages_interleave(size_t pages, size_t numa_nodes, size_t timeout_msecs);
430 
443 int mi_reserve_huge_os_pages_at(size_t pages, int numa_node, size_t timeout_msecs);
444 
445 
450 bool mi_is_redirected();
451 
465 void mi_process_info(size_t* elapsed_msecs, size_t* user_msecs, size_t* system_msecs, size_t* current_rss, size_t* peak_rss, size_t* current_commit, size_t* peak_commit, size_t* page_faults);
466 
468 
469 // ------------------------------------------------------
470 // Aligned allocation
471 // ------------------------------------------------------
472 
478 
491 void* mi_malloc_aligned(size_t size, size_t alignment);
492 void* mi_zalloc_aligned(size_t size, size_t alignment);
493 void* mi_calloc_aligned(size_t count, size_t size, size_t alignment);
494 void* mi_realloc_aligned(void* p, size_t newsize, size_t alignment);
495 
506 void* mi_malloc_aligned_at(size_t size, size_t alignment, size_t offset);
507 void* mi_zalloc_aligned_at(size_t size, size_t alignment, size_t offset);
508 void* mi_calloc_aligned_at(size_t count, size_t size, size_t alignment, size_t offset);
509 void* mi_realloc_aligned_at(void* p, size_t newsize, size_t alignment, size_t offset);
510 
512 
518 
523 struct mi_heap_s;
524 
529 typedef struct mi_heap_s mi_heap_t;
530 
533 
541 void mi_heap_delete(mi_heap_t* heap);
542 
550 void mi_heap_destroy(mi_heap_t* heap);
551 
556 
560 
567 
569 void mi_heap_collect(mi_heap_t* heap, bool force);
570 
573 void* mi_heap_malloc(mi_heap_t* heap, size_t size);
574 
578 void* mi_heap_malloc_small(mi_heap_t* heap, size_t size);
579 
582 void* mi_heap_zalloc(mi_heap_t* heap, size_t size);
583 
586 void* mi_heap_calloc(mi_heap_t* heap, size_t count, size_t size);
587 
590 void* mi_heap_mallocn(mi_heap_t* heap, size_t count, size_t size);
591 
594 char* mi_heap_strdup(mi_heap_t* heap, const char* s);
595 
598 char* mi_heap_strndup(mi_heap_t* heap, const char* s, size_t n);
599 
602 char* mi_heap_realpath(mi_heap_t* heap, const char* fname, char* resolved_name);
603 
604 void* mi_heap_realloc(mi_heap_t* heap, void* p, size_t newsize);
605 void* mi_heap_reallocn(mi_heap_t* heap, void* p, size_t count, size_t size);
606 void* mi_heap_reallocf(mi_heap_t* heap, void* p, size_t newsize);
607 
608 void* mi_heap_malloc_aligned(mi_heap_t* heap, size_t size, size_t alignment);
609 void* mi_heap_malloc_aligned_at(mi_heap_t* heap, size_t size, size_t alignment, size_t offset);
610 void* mi_heap_zalloc_aligned(mi_heap_t* heap, size_t size, size_t alignment);
611 void* mi_heap_zalloc_aligned_at(mi_heap_t* heap, size_t size, size_t alignment, size_t offset);
612 void* mi_heap_calloc_aligned(mi_heap_t* heap, size_t count, size_t size, size_t alignment);
613 void* mi_heap_calloc_aligned_at(mi_heap_t* heap, size_t count, size_t size, size_t alignment, size_t offset);
614 void* mi_heap_realloc_aligned(mi_heap_t* heap, void* p, size_t newsize, size_t alignment);
615 void* mi_heap_realloc_aligned_at(mi_heap_t* heap, void* p, size_t newsize, size_t alignment, size_t offset);
616 
618 
619 
628 
629 void* mi_rezalloc(void* p, size_t newsize);
630 void* mi_recalloc(void* p, size_t newcount, size_t size) ;
631 
632 void* mi_rezalloc_aligned(void* p, size_t newsize, size_t alignment);
633 void* mi_rezalloc_aligned_at(void* p, size_t newsize, size_t alignment, size_t offset);
634 void* mi_recalloc_aligned(void* p, size_t newcount, size_t size, size_t alignment);
635 void* mi_recalloc_aligned_at(void* p, size_t newcount, size_t size, size_t alignment, size_t offset);
636 
637 void* mi_heap_rezalloc(mi_heap_t* heap, void* p, size_t newsize);
638 void* mi_heap_recalloc(mi_heap_t* heap, void* p, size_t newcount, size_t size);
639 
640 void* mi_heap_rezalloc_aligned(mi_heap_t* heap, void* p, size_t newsize, size_t alignment);
641 void* mi_heap_rezalloc_aligned_at(mi_heap_t* heap, void* p, size_t newsize, size_t alignment, size_t offset);
642 void* mi_heap_recalloc_aligned(mi_heap_t* heap, void* p, size_t newcount, size_t size, size_t alignment);
643 void* mi_heap_recalloc_aligned_at(mi_heap_t* heap, void* p, size_t newcount, size_t size, size_t alignment, size_t offset);
644 
646 
655 
667 #define mi_malloc_tp(tp) ((tp*)mi_malloc(sizeof(tp)))
668 
670 #define mi_zalloc_tp(tp) ((tp*)mi_zalloc(sizeof(tp)))
671 
673 #define mi_calloc_tp(tp,count) ((tp*)mi_calloc(count,sizeof(tp)))
674 
676 #define mi_mallocn_tp(tp,count) ((tp*)mi_mallocn(count,sizeof(tp)))
677 
679 #define mi_reallocn_tp(p,tp,count) ((tp*)mi_reallocn(p,count,sizeof(tp)))
680 
682 #define mi_heap_malloc_tp(hp,tp) ((tp*)mi_heap_malloc(hp,sizeof(tp)))
683 
685 #define mi_heap_zalloc_tp(hp,tp) ((tp*)mi_heap_zalloc(hp,sizeof(tp)))
686 
688 #define mi_heap_calloc_tp(hp,tp,count) ((tp*)mi_heap_calloc(hp,count,sizeof(tp)))
689 
691 #define mi_heap_mallocn_tp(hp,tp,count) ((tp*)mi_heap_mallocn(hp,count,sizeof(tp)))
692 
694 #define mi_heap_reallocn_tp(hp,p,tp,count) ((tp*)mi_heap_reallocn(p,count,sizeof(tp)))
695 
697 #define mi_heap_recalloc_tp(hp,p,tp,count) ((tp*)mi_heap_recalloc(p,count,sizeof(tp)))
698 
700 
706 
713 bool mi_heap_contains_block(mi_heap_t* heap, const void* p);
714 
723 bool mi_heap_check_owned(mi_heap_t* heap, const void* p);
724 
732 bool mi_check_owned(const void* p);
733 
736 typedef struct mi_heap_area_s {
737  void* blocks;
738  size_t reserved;
739  size_t committed;
740  size_t used;
741  size_t block_size;
743 
751 typedef bool (mi_block_visit_fun)(const mi_heap_t* heap, const mi_heap_area_t* area, void* block, size_t block_size, void* arg);
752 
764 bool mi_heap_visit_blocks(const mi_heap_t* heap, bool visit_all_blocks, mi_block_visit_fun* visitor, void* arg);
765 
767 
773 
775 typedef enum mi_option_e {
776  // stable options
780  // the following options are experimental
794 } mi_option_t;
795 
796 
797 bool mi_option_is_enabled(mi_option_t option);
798 void mi_option_enable(mi_option_t option);
799 void mi_option_disable(mi_option_t option);
800 void mi_option_set_enabled(mi_option_t option, bool enable);
801 void mi_option_set_enabled_default(mi_option_t option, bool enable);
802 
803 long mi_option_get(mi_option_t option);
804 void mi_option_set(mi_option_t option, long value);
805 void mi_option_set_default(mi_option_t option, long value);
806 
807 
809 
816 
817 void* mi_recalloc(void* p, size_t count, size_t size);
818 size_t mi_malloc_size(const void* p);
819 size_t mi_malloc_usable_size(const void *p);
820 
822 void mi_cfree(void* p);
823 
824 int mi_posix_memalign(void** p, size_t alignment, size_t size);
825 int mi__posix_memalign(void** p, size_t alignment, size_t size);
826 void* mi_memalign(size_t alignment, size_t size);
827 void* mi_valloc(size_t size);
828 
829 void* mi_pvalloc(size_t size);
830 void* mi_aligned_alloc(size_t alignment, size_t size);
831 void* mi_reallocarray(void* p, size_t count, size_t size);
832 
833 void mi_free_size(void* p, size_t size);
834 void mi_free_size_aligned(void* p, size_t size, size_t alignment);
835 void mi_free_aligned(void* p, size_t alignment);
836 
838 
851 
853 void* mi_new(std::size_t n) noexcept(false);
854 
856 void* mi_new_n(size_t count, size_t size) noexcept(false);
857 
859 void* mi_new_aligned(std::size_t n, std::align_val_t alignment) noexcept(false);
860 
862 void* mi_new_nothrow(size_t n);
863 
865 void* mi_new_aligned_nothrow(size_t n, size_t alignment);
866 
868 void* mi_new_realloc(void* p, size_t newsize);
869 
871 void* mi_new_reallocn(void* p, size_t newcount, size_t size);
872 
880 template<class T> struct mi_stl_allocator { }
881 
883 
size_t mi_usable_size(void *p)
Return the available bytes in a memory block.
void * mi_new_nothrow(size_t n)
like mi_malloc, but when out of memory, use std::get_new_handler but return NULL on failure.
void * mi_reallocn(void *p, size_t count, size_t size)
Re-allocate memory to count elements of size bytes.
void * mi_malloc_aligned(size_t size, size_t alignment)
Allocate size bytes aligned by alignment.
void * mi_recalloc_aligned_at(void *p, size_t newcount, size_t size, size_t alignment, size_t offset)
void mi_stats_reset(void)
Reset statistics.
void * mi_heap_realloc_aligned(mi_heap_t *heap, void *p, size_t newsize, size_t alignment)
bool mi_option_is_enabled(mi_option_t option)
void * mi_new_realloc(void *p, size_t newsize)
like mi_realloc(), but when out of memory, use std::get_new_handler and raise std::bad_alloc exceptio...
void * mi_recalloc(void *p, size_t count, size_t size)
Re-allocate memory to count elements of size bytes, with extra memory initialized to zero.
void * mi_mallocn(size_t count, size_t size)
Allocate count elements of size bytes.
size_t mi_malloc_size(const void *p)
void mi_option_set_enabled(mi_option_t option, bool enable)
int mi_posix_memalign(void **p, size_t alignment, size_t size)
void mi_stats_merge(void)
Merge thread local statistics with the main statistics and reset.
void * mi_new_n(size_t count, size_t size) noexcept(false)
like mi_mallocn(), but when out of memory, use std::get_new_handler and raise std::bad_alloc exceptio...
void mi_option_set_default(mi_option_t option, long value)
void mi_stats_print_out(mi_output_fun *out, void *arg)
Print the main statistics.
void() mi_error_fun(int err, void *arg)
Type of error callback functions.
Definition: mimalloc-doc.h:391
void * mi_rezalloc(void *p, size_t newsize)
Eagerly commit segments (4MiB) (enabled by default).
Definition: mimalloc-doc.h:781
void * mi_heap_zalloc(mi_heap_t *heap, size_t size)
Allocate zero-initialized in a specific heap.
void mi_option_set(mi_option_t option, long value)
Eagerly commit large (256MiB) memory regions (enabled by default, except on Windows)
Definition: mimalloc-doc.h:782
void mi_cfree(void *p)
Just as free but also checks if the pointer p belongs to our heap.
void * mi_recalloc_aligned(void *p, size_t newcount, size_t size, size_t alignment)
Definition: mimalloc-doc.h:793
void * mi_realloc_aligned_at(void *p, size_t newsize, size_t alignment, size_t offset)
void * blocks
start of the area containing heap blocks
Definition: mimalloc-doc.h:737
void * mi_realloc_aligned(void *p, size_t newsize, size_t alignment)
void mi_option_enable(mi_option_t option)
int mi__posix_memalign(void **p, size_t alignment, size_t size)
void mi_free(void *p)
Free previously allocated memory.
char * mi_heap_strdup(mi_heap_t *heap, const char *s)
Duplicate a string in a specific heap.
char * mi_heap_realpath(mi_heap_t *heap, const char *fname, char *resolved_name)
Resolve a file path name using a specific heap to allocate the result.
void * mi_heap_calloc_aligned_at(mi_heap_t *heap, size_t count, size_t size, size_t alignment, size_t offset)
void mi_process_info(size_t *elapsed_msecs, size_t *user_msecs, size_t *system_msecs, size_t *current_rss, size_t *peak_rss, size_t *current_commit, size_t *peak_commit, size_t *page_faults)
Return process information (time and memory usage).
void * mi_calloc_aligned(size_t count, size_t size, size_t alignment)
void * mi_heap_zalloc_aligned(mi_heap_t *heap, size_t size, size_t alignment)
void * mi_zalloc_small(size_t size)
Allocate a zero initialized small object.
char * mi_strndup(const char *s, size_t n)
Allocate and duplicate a string up to n bytes.
void * mi_expand(void *p, size_t newsize)
Try to re-allocate memory to newsize bytes in place.
void * mi_pvalloc(size_t size)
void mi_option_set_enabled_default(mi_option_t option, bool enable)
void * mi_heap_rezalloc_aligned_at(mi_heap_t *heap, void *p, size_t newsize, size_t alignment, size_t offset)
void * mi_zalloc(size_t size)
Allocate zero-initialized size bytes.
void * mi_heap_rezalloc(mi_heap_t *heap, void *p, size_t newsize)
The number of segments per thread to keep cached.
Definition: mimalloc-doc.h:785
void * mi_heap_calloc(mi_heap_t *heap, size_t count, size_t size)
Allocate count zero-initialized elements in a specific heap.
void * mi_heap_calloc_aligned(mi_heap_t *heap, size_t count, size_t size, size_t alignment)
bool mi_is_redirected()
Is the C runtime malloc API redirected?
size_t block_size
size in bytes of one block
Definition: mimalloc-doc.h:741
void * mi_reallocarray(void *p, size_t count, size_t size)
int mi_reserve_huge_os_pages_interleave(size_t pages, size_t numa_nodes, size_t timeout_msecs)
Reserve pages of huge OS pages (1GiB) evenly divided over numa_nodes nodes, but stops after at most t...
void() mi_deferred_free_fun(bool force, unsigned long long heartbeat, void *arg)
Type of deferred free functions.
Definition: mimalloc-doc.h:352
bool mi_is_in_heap_region(const void *p)
Is a pointer part of our heap?
void * mi_new_aligned(std::size_t n, std::align_val_t alignment) noexcept(false)
like mi_malloc_aligned(), but when out of memory, use std::get_new_handler and raise std::bad_alloc e...
void * mi_realloc(void *p, size_t newsize)
Re-allocate memory to newsize bytes.
The number of huge OS pages (1GiB in size) to reserve at the start of the program.
Definition: mimalloc-doc.h:784
void * mi_heap_reallocf(mi_heap_t *heap, void *p, size_t newsize)
void mi_free_size_aligned(void *p, size_t size, size_t alignment)
void * mi_rezalloc_aligned_at(void *p, size_t newsize, size_t alignment, size_t offset)
Reset page memory after mi_option_reset_delay milliseconds when it becomes free.
Definition: mimalloc-doc.h:786
void mi_thread_done(void)
Uninitialize mimalloc on a thread.
bool mi_heap_visit_blocks(const mi_heap_t *heap, bool visit_all_blocks, mi_block_visit_fun *visitor, void *arg)
Visit all areas and blocks in a heap.
Pretend there are at most N NUMA nodes.
Definition: mimalloc-doc.h:789
void * mi_malloc(size_t size)
Allocate size bytes.
void mi_register_error(mi_error_fun *errfun, void *arg)
Register an error callback function.
Experimental.
Definition: mimalloc-doc.h:790
char * mi_heap_strndup(mi_heap_t *heap, const char *s, size_t n)
Duplicate a string of at most length n in a specific heap.
bool() mi_block_visit_fun(const mi_heap_t *heap, const mi_heap_area_t *area, void *block, size_t block_size, void *arg)
Visitor function passed to mi_heap_visit_blocks()
Definition: mimalloc-doc.h:751
void * mi_heap_recalloc(mi_heap_t *heap, void *p, size_t newcount, size_t size)
void * mi_heap_malloc_aligned_at(mi_heap_t *heap, size_t size, size_t alignment, size_t offset)
char * mi_realpath(const char *fname, char *resolved_name)
Resolve a file path name.
Print error messages to stderr.
Definition: mimalloc-doc.h:777
Experimental.
Definition: mimalloc-doc.h:787
void * mi_heap_rezalloc_aligned(mi_heap_t *heap, void *p, size_t newsize, size_t alignment)
void * mi_new_aligned_nothrow(size_t n, size_t alignment)
like mi_malloc_aligned, but when out of memory, use std::get_new_handler but return NULL on failure.
void * mi_memalign(size_t alignment, size_t size)
void * mi_rezalloc_aligned(void *p, size_t newsize, size_t alignment)
bool mi_heap_contains_block(mi_heap_t *heap, const void *p)
Does a heap contain a pointer to a previously allocated block?
void mi_heap_collect(mi_heap_t *heap, bool force)
Release outstanding resources in a specific heap.
void * mi_heap_recalloc_aligned_at(mi_heap_t *heap, void *p, size_t newcount, size_t size, size_t alignment, size_t offset)
Print verbose messages to stderr.
Definition: mimalloc-doc.h:779
void * mi_zalloc_aligned_at(size_t size, size_t alignment, size_t offset)
void * mi_malloc_aligned_at(size_t size, size_t alignment, size_t offset)
Allocate size bytes aligned by alignment at a specified offset.
void mi_heap_delete(mi_heap_t *heap)
Delete a previously allocated heap.
OS tag to assign to mimalloc'd memory.
Definition: mimalloc-doc.h:792
mi_heap_t * mi_heap_get_default()
Get the default heap that is used for mi_malloc() et al.
int mi_reserve_huge_os_pages_at(size_t pages, int numa_node, size_t timeout_msecs)
Reserve pages of huge OS pages (1GiB) at a specific numa_node, but stops after at most timeout_msecs ...
void mi_option_disable(mi_option_t option)
void * mi_aligned_alloc(size_t alignment, size_t size)
void * mi_valloc(size_t size)
void mi_thread_init(void)
Initialize mimalloc on a thread.
size_t mi_good_size(size_t size)
Return the used allocation size.
void mi_stats_print(void *out)
Deprecated.
Experimental.
Definition: mimalloc-doc.h:791
void * mi_heap_recalloc_aligned(mi_heap_t *heap, void *p, size_t newcount, size_t size, size_t alignment)
void * mi_heap_mallocn(mi_heap_t *heap, size_t count, size_t size)
Allocate count elements in a specific heap.
An area of heap space contains blocks of a single size.
Definition: mimalloc-doc.h:736
void mi_thread_stats_print_out(mi_output_fun *out, void *arg)
Print out heap statistics for this thread.
Print statistics to stderr when the program is done.
Definition: mimalloc-doc.h:778
void * mi_zalloc_aligned(size_t size, size_t alignment)
size_t reserved
bytes reserved for this area
Definition: mimalloc-doc.h:738
struct mi_heap_s mi_heap_t
Type of first-class heaps.
Definition: mimalloc-doc.h:529
size_t used
bytes in use by allocated blocks
Definition: mimalloc-doc.h:740
void mi_register_deferred_free(mi_deferred_free_fun *deferred_free, void *arg)
Register a deferred free function.
void mi_free_size(void *p, size_t size)
void mi_collect(bool force)
Eagerly free memory.
void * mi_new_reallocn(void *p, size_t newcount, size_t size)
like mi_reallocn(), but when out of memory, use std::get_new_handler and raise std::bad_alloc excepti...
void mi_heap_destroy(mi_heap_t *heap)
Destroy a heap, freeing all its still allocated blocks.
void * mi_calloc_aligned_at(size_t count, size_t size, size_t alignment, size_t offset)
Use large OS pages (2MiB in size) if possible.
Definition: mimalloc-doc.h:783
void * mi_heap_reallocn(mi_heap_t *heap, void *p, size_t count, size_t size)
void mi_register_output(mi_output_fun *out, void *arg)
Register an output function.
std::allocator implementation for mimalloc for use in STL containers.
Definition: mimalloc-doc.h:880
void * mi_heap_malloc_small(mi_heap_t *heap, size_t size)
Allocate a small object in a specific heap.
void * mi_heap_realloc(mi_heap_t *heap, void *p, size_t newsize)
size_t mi_malloc_usable_size(const void *p)
void() mi_output_fun(const char *msg, void *arg)
Type of output functions.
Definition: mimalloc-doc.h:376
char * mi_strdup(const char *s)
Allocate and duplicate a string.
void * mi_heap_realloc_aligned_at(mi_heap_t *heap, void *p, size_t newsize, size_t alignment, size_t offset)
void * mi_reallocf(void *p, size_t newsize)
Re-allocate memory to newsize bytes,.
void * mi_calloc(size_t count, size_t size)
Allocate zero-initialized count elements of size bytes.
void * mi_heap_zalloc_aligned_at(mi_heap_t *heap, size_t size, size_t alignment, size_t offset)
void * mi_malloc_small(size_t size)
Allocate a small object.
bool mi_check_owned(const void *p)
Check safely if any pointer is part of the default heap of this thread.
void * mi_heap_malloc_aligned(mi_heap_t *heap, size_t size, size_t alignment)
long mi_option_get(mi_option_t option)
mi_heap_t * mi_heap_get_backing()
Get the backing heap.
void mi_free_aligned(void *p, size_t alignment)
void * mi_new(std::size_t n) noexcept(false)
like mi_malloc(), but when out of memory, use std::get_new_handler and raise std::bad_alloc exception...
Delay in milli-seconds before resetting a page (100ms by default)
Definition: mimalloc-doc.h:788
mi_heap_t * mi_heap_new()
Create a new heap that can be used for allocation.
void * mi_heap_malloc(mi_heap_t *heap, size_t size)
Allocate in a specific heap.
size_t committed
current committed bytes of this area
Definition: mimalloc-doc.h:739
mi_option_t
Runtime options.
Definition: mimalloc-doc.h:775
bool mi_heap_check_owned(mi_heap_t *heap, const void *p)
Check safely if any pointer is part of a heap.
mi_heap_t * mi_heap_set_default(mi_heap_t *heap)
Set the default heap to use for mi_malloc() et al.