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vlib: add a dlmalloc module (#12974)
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1491
vlib/dlmalloc/dlmalloc.v
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1491
vlib/dlmalloc/dlmalloc.v
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File diff suppressed because it is too large
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116
vlib/dlmalloc/dlmalloc_sys_nix.c.v
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116
vlib/dlmalloc/dlmalloc_sys_nix.c.v
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module dlmalloc
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#include <sys/mman.h>
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#include <unistd.h>
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fn C.munmap(ptr voidptr, size usize) int
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fn C.mremap(ptr voidptr, old usize, new usize, flags usize) voidptr
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fn C.mmap(base voidptr, len usize, prot int, flags int, fd int, offset i64) voidptr
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pub enum Mm_prot {
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prot_read = 0x1
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prot_write = 0x2
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prot_exec = 0x4
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prot_none = 0x0
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prot_growsdown = 0x01000000
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prot_growsup = 0x02000000
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}
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pub enum Map_flags {
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map_shared = 0x01
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map_private = 0x02
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map_shared_validate = 0x03
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map_type = 0x0f
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map_fixed = 0x10
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map_file = 0x00
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map_anonymous = 0x20
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map_huge_shift = 26
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map_huge_mask = 0x3f
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}
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enum MemProt {
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prot_read = 0x1
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prot_write = 0x2
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prot_exec = 0x4
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prot_none = 0x0
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prot_growsdown = 0x01000000
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prot_growsup = 0x02000000
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}
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enum MapFlags {
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map_shared = 0x01
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map_private = 0x02
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map_shared_validate = 0x03
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map_type = 0x0f
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map_fixed = 0x10
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map_file = 0x00
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map_anonymous = 0x20
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map_huge_shift = 26
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map_huge_mask = 0x3f
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}
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fn system_alloc(_ voidptr, size usize) (voidptr, usize, u32) {
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unsafe {
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mem_prot := MemProt(int(MemProt.prot_read) | int(MemProt.prot_write))
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map_flags := MapFlags(int(MapFlags.map_private) | int(MapFlags.map_anonymous))
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addr := C.mmap(voidptr(0), size, int(mem_prot), int(map_flags), -1, 0)
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if addr == voidptr(-1) {
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return voidptr(0), 0, 0
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} else {
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return addr, size, 0
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}
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}
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}
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fn system_remap(_ voidptr, ptr voidptr, oldsize usize, newsize usize, can_move bool) voidptr {
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return voidptr(0)
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}
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fn system_free_part(_ voidptr, ptr voidptr, oldsize usize, newsize usize) bool {
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$if linux {
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unsafe {
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rc := C.mremap(ptr, oldsize, newsize, 0)
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if rc != voidptr(-1) {
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return true
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}
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return C.munmap(voidptr(usize(ptr) + newsize), oldsize - newsize) == 0
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}
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} $else $if macos {
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unsafe {
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return C.munmap(voidptr(usize(ptr) + newsize), oldsize - newsize) == 0
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}
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}
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return false
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}
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fn system_free(_ voidptr, ptr voidptr, size usize) bool {
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unsafe {
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return C.munmap(ptr, size) == 0
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}
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}
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fn system_can_release_part(_ voidptr, _ u32) bool {
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return true
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}
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fn system_allocates_zeros(_ voidptr) bool {
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return true
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}
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fn system_page_size(_ voidptr) usize {
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return 4096
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}
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pub fn get_system_allocator() Allocator {
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return Allocator{
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alloc: system_alloc
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remap: system_remap
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free_part: system_free_part
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free_: system_free
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can_release_part: system_can_release_part
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allocates_zeros: system_allocates_zeros
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page_size: system_page_size
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data: voidptr(0)
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}
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}
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42
vlib/dlmalloc/dlmalloc_sys_windows.c.v
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42
vlib/dlmalloc/dlmalloc_sys_windows.c.v
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module dlmalloc
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fn system_alloc(_ voidptr, size usize) (voidptr, usize, u32) {
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return voidptr(0), 0, 0
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}
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fn system_remap(_ voidptr, ptr voidptr, oldsize usize, newsize usize, can_move bool) voidptr {
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return voidptr(0)
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}
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fn system_free_part(_ voidptr, ptr voidptr, oldsize usize, newsize usize) bool {
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return false
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}
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fn system_free(_ voidptr, ptr voidptr, size usize) bool {
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return false
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}
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fn system_can_release_part(_ voidptr, _ u32) bool {
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return false
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}
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fn system_allocates_zeros(_ voidptr) bool {
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return false
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}
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fn system_page_size(_ voidptr) usize {
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return 4096
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}
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pub fn get_system_allocator() Allocator {
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return Allocator{
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alloc: system_alloc
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remap: system_remap
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free_part: system_free_part
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free_: system_free
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can_release_part: system_can_release_part
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allocates_zeros: system_allocates_zeros
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page_size: system_page_size
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data: voidptr(0)
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}
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}
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63
vlib/dlmalloc/global.v
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63
vlib/dlmalloc/global.v
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[has_globals]
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module dlmalloc
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__global global = new(get_system_allocator())
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/// malloc allocates `size` bytes.
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///
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/// Returns a null pointer if allocation fails. Returns a valid pointer
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/// otherwise.
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[unsafe]
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pub fn malloc(size usize) voidptr {
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unsafe {
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return global.malloc(size)
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}
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}
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// free deallocates a `ptr`.
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[unsafe]
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pub fn free(ptr voidptr) {
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unsafe {
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global.free_(ptr)
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}
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}
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// Same as `malloc`, except if the allocation succeeds it's guaranteed to
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// point to `size` bytes of zeros.
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[unsafe]
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pub fn calloc(size usize) voidptr {
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unsafe {
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return global.calloc(size)
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}
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}
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// realloc reallocates `ptr`, a previous allocation with `old_size` and
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// to have `new_size`.
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//
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//
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// Returns a null pointer if the memory couldn't be reallocated, but `ptr`
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// is still valid. Returns a valid pointer and frees `ptr` if the request
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// is satisfied.
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[unsafe]
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pub fn realloc(ptr voidptr, oldsize usize, newsize usize) voidptr {
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unsafe {
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_ := oldsize
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return global.realloc(ptr, newsize)
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}
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}
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// memalign allocates `size` bytes with `align` align.
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//
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//
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// Returns a null pointer if allocation fails. Returns a valid pointer otherwise.
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[unsafe]
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pub fn memalign(size usize, align usize) voidptr {
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unsafe {
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if align <= malloc_alignment {
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return global.malloc(size)
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} else {
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return global.memalign(align, size)
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}
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}
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}
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