249 lines
5.6 KiB
C
249 lines
5.6 KiB
C
#include "malunal/allocators/pool.h"
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typedef struct free_t free_t;
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typedef free_t* free_mptr_t;
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typedef const free_t* free_iptr_t;
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struct free_t {
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free_mptr_t next;
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};
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typedef struct {
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allocator_t allocator;
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allocator_mptr_t upstream;
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malunal_size_t stride;
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malunal_size_t count;
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malunal_size_t capacity;
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malunal_mptr_t buffer;
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free_mptr_t freelist;
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} impl_t;
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typedef impl_t* impl_mptr_t;
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typedef const impl_t* impl_iptr_t;
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_Static_assert(
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sizeof(pool_allocator_t) == sizeof(impl_t),
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"Pool allocator must be the size of its implemenation"
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);
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static
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error_t
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pool_allocator_acquire_impl(
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pool_allocator_mptr_t allocator,
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malunal_size_t size,
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malunal_mptr_t* out
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) {
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MALUNAL_UNUSED(size);
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return pool_allocator_acquire(allocator, out);
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}
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static
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error_t
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pool_allocator_dispose_impl(
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pool_allocator_mptr_t allocator,
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malunal_mptr_t address,
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malunal_size_t size
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) {
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MALUNAL_UNUSED(size);
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return pool_allocator_dispose(allocator, address);
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}
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static const
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allocator_vtable_t pool_allocator_vtable = {
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.acquire = (allocator_acquire_pfn_t)&pool_allocator_acquire_impl,
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.dispose = (allocator_dispose_pfn_t)&pool_allocator_dispose_impl
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};
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error_t
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pool_allocator_stride(
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pool_allocator_iptr_t allocator,
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malunal_size_t* out
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_iptr_t self = (impl_iptr_t)allocator;
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*out = self->stride;
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return NO_ERROR;
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}
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error_t
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pool_allocator_count(
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pool_allocator_iptr_t allocator,
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malunal_size_t* out
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_iptr_t self = (impl_iptr_t)allocator;
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*out = self->count;
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return NO_ERROR;
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}
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error_t
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pool_allocator_capacity(
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pool_allocator_iptr_t allocator,
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malunal_size_t* out
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_iptr_t self = (impl_iptr_t)allocator;
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*out = self->capacity;
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return NO_ERROR;
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}
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error_t
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pool_allocator_init(
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malunal_size_t stride,
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malunal_size_t capacity,
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allocator_mptr_t upstream,
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pool_allocator_mptr_t allocator
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) {
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if (stride < 8)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_FAILURE
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};
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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if (upstream == null)
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upstream = libc_allocator();
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malunal_mptr_t address;
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malunal_size_t bytes = stride * capacity;
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error_t result = allocator_acquire(upstream, bytes, &address);
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if (result.domain != null)
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return result;
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malunal_size_t index;
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malunal_uint8_t* asbytes = (malunal_uint8_t*)address;
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free_mptr_t chunk = (free_mptr_t)address;
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for (index = 1; index < capacity; index++)
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chunk = chunk->next = (free_mptr_t)(asbytes + stride * index);
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impl_mptr_t self = (impl_mptr_t)allocator;
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self->allocator = (allocator_t){ &pool_allocator_vtable };
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self->upstream = upstream;
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self->stride = stride;
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self->count = 0;
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self->capacity = capacity;
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self->buffer = address;
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self->freelist = chunk;
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return NO_ERROR;
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}
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error_t
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pool_allocator_acquire(
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pool_allocator_mptr_t allocator,
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malunal_mptr_t* out
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_mptr_t self = (impl_mptr_t)allocator;
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if (self->count == self->capacity)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_OUT_OF_MEMORY
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};
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free_mptr_t prev = self->freelist;
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free_mptr_t curr = prev;
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free_mptr_t next = prev->next;
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while (next != null) {
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prev = curr;
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curr = next;
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next = next->next;
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}
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*out = curr;
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self->count++;
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if (curr == self->freelist)
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self->freelist = null;
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else
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prev->next = null;
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return NO_ERROR;
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}
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error_t
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pool_allocator_dispose(
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pool_allocator_mptr_t allocator,
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malunal_mptr_t address
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_mptr_t self = (impl_mptr_t)allocator;
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malunal_uint8_t* addr = address;
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malunal_uint8_t* beg = self->buffer;
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malunal_uint8_t* end = beg + self->stride * self->capacity;
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if (addr < beg || addr > end)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NOT_MY_ADDRESS
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};
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if (self->freelist == null) {
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self->freelist = (free_mptr_t)addr;
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self->freelist->next = null;
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self->count--;
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return NO_ERROR;
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}
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free_mptr_t chunk = self->freelist;
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while (chunk->next != null)
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chunk = chunk->next;
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chunk->next = (free_mptr_t)addr;
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chunk->next->next = null;
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self->count--;
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return NO_ERROR;
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}
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error_t
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pool_allocator_free(
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pool_allocator_mptr_t allocator
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) {
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if (allocator == null)
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return (error_t) {
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.domain = &ERROR_DOMAIN_ALLOCATOR_T,
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.code = ALLOCATOR_ERROR_NULL_ALLOCATOR
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};
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impl_mptr_t self = (impl_mptr_t)allocator;
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error_t result = allocator_dispose(
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self->upstream,
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self->buffer,
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self->stride * self->capacity
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);
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if (result.domain != null)
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return result;
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self->stride = 0;
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self->count = 0;
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self->capacity = 0;
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self->buffer = null;
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self->freelist = null;
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return NO_ERROR;
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}
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