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323 lines
7.8 KiB
C
323 lines
7.8 KiB
C
#define _xc_allocator_t _xc_allocator_bestfit_t
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#define _xc_allocator_block_t _xc_allocator_bestfit_block_t
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#include "xc_allocator.h"
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#undef _xc_allocator_t
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#undef _xc_allocator_block_t
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#ifdef TEST
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# include <limits.h>
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# include <stdio.h>
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# define XCACHE_DEBUG
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typedef int zend_bool;
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# define ZEND_ATTRIBUTE_PTR_FORMAT(a, b, c)
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# define zend_error(type, error) fprintf(stderr, "%s", error)
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#else
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# include <php.h>
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#endif
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#ifdef XCACHE_DEBUG
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# define ALLOC_DEBUG_BLOCK_CHECK
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#endif
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include "xc_shm.h"
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#include "util/xc_align.h"
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#include "util/xc_trace.h"
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#if 0
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#undef ALLOC_DEBUG_BLOCK_CHECK
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#endif
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#define CHAR_PTR(p) ((char *) (p))
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#define PADD(p, a) (CHAR_PTR(p) + a)
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#define PSUB(p1, p2) (CHAR_PTR(p1) - CHAR_PTR(p2))
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/* {{{ allocator */
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typedef struct _xc_allocator_bestfit_block_t xc_allocator_bestfit_block_t;
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struct _xc_allocator_bestfit_block_t {
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#ifdef ALLOC_DEBUG_BLOCK_CHECK
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unsigned int magic;
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#endif
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xc_memsize_t size; /* reserved even after alloc */
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xc_allocator_bestfit_block_t *next; /* not used after alloc */
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};
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typedef struct _xc_allocator_bestfit_t {
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const xc_allocator_vtable_t *vtable;
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xc_shm_t *shm;
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xc_memsize_t size;
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xc_memsize_t avail; /* total free */
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xc_allocator_bestfit_block_t headblock[1]; /* just as a pointer to first block*/
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} xc_allocator_bestfit_t;
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#ifndef XtOffsetOf
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# include <linux/stddef.h>
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# define XtOffsetOf(s_type, field) offsetof(s_type, field)
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#endif
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#define SizeOf(type, field) sizeof( ((type *) 0)->field )
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#define BLOCK_HEADER_SIZE() (ALIGN( XtOffsetOf(xc_allocator_bestfit_block_t, size) + SizeOf(xc_allocator_bestfit_block_t, size) ))
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#define BLOCK_MAGIC ((unsigned int) 0x87655678)
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/* }}} */
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static inline void xc_block_setup(xc_allocator_bestfit_block_t *b, xc_memsize_t size, xc_allocator_bestfit_block_t *next) /* {{{ */
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{
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#ifdef ALLOC_DEBUG_BLOCK_CHECK
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b->magic = BLOCK_MAGIC;
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#endif
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b->size = size;
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b->next = next;
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}
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/* }}} */
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#ifdef ALLOC_DEBUG_BLOCK_CHECK
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static void xc_block_check(xc_allocator_bestfit_block_t *b) /* {{{ */
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{
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if (b->magic != BLOCK_MAGIC) {
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fprintf(stderr, "0x%X != 0x%X magic wrong \n", b->magic, BLOCK_MAGIC);
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}
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}
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/* }}} */
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#else
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# define xc_block_check(b) do { } while(0)
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#endif
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static XC_ALLOCATOR_MALLOC(xc_allocator_bestfit_malloc) /* {{{ */
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{
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xc_allocator_bestfit_block_t *prev, *cur;
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xc_allocator_bestfit_block_t *newb, *b;
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xc_memsize_t realsize;
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xc_memsize_t minsize;
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void *p;
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/* [xc_allocator_bestfit_block_t:size|size] */
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realsize = BLOCK_HEADER_SIZE() + size;
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/* realsize is ALIGNed so next block start at ALIGNed address */
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realsize = ALIGN(realsize);
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TRACE("avail: %lu (%luKB). Allocate size: %lu realsize: %lu (%luKB)"
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, allocator->avail, allocator->avail / 1024
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, size
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, realsize, realsize / 1024
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);
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do {
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p = NULL;
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if (allocator->avail < realsize) {
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TRACE("%s", " oom");
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break;
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}
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b = NULL;
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minsize = ULONG_MAX;
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/* prev|cur */
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for (prev = allocator->headblock; prev->next; prev = cur) {
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/* while (prev->next != 0) { */
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cur = prev->next;
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xc_block_check(cur);
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if (cur->size == realsize) {
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/* found a perfect fit, stop searching */
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b = prev;
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break;
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}
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/* make sure we can split on the block */
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else if (cur->size > (sizeof(xc_allocator_bestfit_block_t) + realsize) &&
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cur->size < minsize) {
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/* cur is acceptable and memller */
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b = prev;
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minsize = cur->size;
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}
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prev = cur;
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}
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if (b == NULL) {
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TRACE("%s", " no fit chunk");
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break;
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}
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prev = b;
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cur = prev->next;
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p = PADD(cur, BLOCK_HEADER_SIZE());
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/* update the block header */
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allocator->avail -= realsize;
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/* perfect fit, just unlink */
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if (cur->size == realsize) {
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prev->next = cur->next;
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TRACE(" perfect fit. Got: %p", p);
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break;
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}
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/* make new free block after alloced space */
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/* save, as it might be overwrited by newb (cur->size is ok) */
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b = cur->next;
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/* prev|cur |next=b */
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newb = (xc_allocator_bestfit_block_t *)PADD(cur, realsize);
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xc_block_setup(newb, cur->size - realsize, b);
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cur->size = realsize;
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/* prev|cur|newb|next
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* `--^
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*/
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TRACE(" -> avail: %lu (%luKB). new next: %p offset: %lu %luKB. Got: %p"
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, allocator->avail, allocator->avail / 1024
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, newb
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, PSUB(newb, allocator), PSUB(newb, allocator) / 1024
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, p
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);
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prev->next = newb;
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/* prev|cur|newb|next
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* `-----^
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*/
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} while (0);
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return p;
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}
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/* }}} */
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static XC_ALLOCATOR_FREE(xc_allocator_bestfit_free) /* {{{ return block size freed */
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{
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xc_allocator_bestfit_block_t *cur, *b;
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int size;
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cur = (xc_allocator_bestfit_block_t *) (CHAR_PTR(p) - BLOCK_HEADER_SIZE());
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TRACE("freeing: %p, size=%lu", p, cur->size);
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xc_block_check(cur);
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assert((char*)allocator < (char*)cur && (char*)cur < (char*)allocator + allocator->size);
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/* find free block right before the p */
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b = allocator->headblock;
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while (b->next != 0 && b->next < cur) {
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b = b->next;
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}
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/* restore block */
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cur->next = b->next;
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b->next = cur;
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size = cur->size;
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TRACE(" avail %lu (%luKB)", allocator->avail, allocator->avail / 1024);
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allocator->avail += size;
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/* combine prev|cur */
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if (PADD(b, b->size) == (char *)cur) {
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b->size += cur->size;
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b->next = cur->next;
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cur = b;
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TRACE("%s", " combine prev");
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}
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/* combine cur|next */
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b = cur->next;
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if (PADD(cur, cur->size) == (char *)b) {
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cur->size += b->size;
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cur->next = b->next;
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TRACE("%s", " combine next");
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}
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TRACE(" -> avail %lu (%luKB)", allocator->avail, allocator->avail / 1024);
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return size;
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}
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/* }}} */
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static XC_ALLOCATOR_CALLOC(xc_allocator_bestfit_calloc) /* {{{ */
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{
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xc_memsize_t realsize = memb * size;
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void *p = xc_allocator_bestfit_malloc(allocator, realsize);
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if (p) {
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memset(p, 0, realsize);
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}
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return p;
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}
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/* }}} */
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static XC_ALLOCATOR_REALLOC(xc_allocator_bestfit_realloc) /* {{{ */
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{
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void *newp = xc_allocator_bestfit_malloc(allocator, size);
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if (p && newp) {
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memcpy(newp, p, size);
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xc_allocator_bestfit_free(allocator, p);
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}
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return newp;
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}
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/* }}} */
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static XC_ALLOCATOR_AVAIL(xc_allocator_bestfit_avail) /* {{{ */
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{
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return allocator->avail;
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}
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/* }}} */
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static XC_ALLOCATOR_SIZE(xc_allocator_bestfit_size) /* {{{ */
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{
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return allocator->size;
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}
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/* }}} */
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static XC_ALLOCATOR_FREEBLOCK_FIRST(xc_allocator_bestfit_freeblock_first) /* {{{ */
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{
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return allocator->headblock->next;
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}
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/* }}} */
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static XC_ALLOCATOR_FREEBLOCK_NEXT(xc_allocator_bestfit_freeblock_next) /* {{{ */
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{
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return block->next;
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}
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/* }}} */
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static XC_ALLOCATOR_BLOCK_SIZE(xc_allocator_bestfit_block_size) /* {{{ */
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{
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return block->size;
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}
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/* }}} */
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static XC_ALLOCATOR_BLOCK_OFFSET(xc_allocator_bestfit_block_offset) /* {{{ */
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{
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return ((char *) block) - ((char *) allocator);
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}
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/* }}} */
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static XC_ALLOCATOR_INIT(xc_allocator_bestfit_init) /* {{{ */
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{
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xc_allocator_bestfit_block_t *b;
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#define MINSIZE (ALIGN(sizeof(xc_allocator_bestfit_t)) + sizeof(xc_allocator_bestfit_block_t))
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/* requires at least the header and 1 tail block */
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if (size < MINSIZE) {
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fprintf(stderr, "xc_allocator_bestfit_init requires %lu bytes at least\n", (unsigned long) MINSIZE);
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return NULL;
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}
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TRACE("size=%lu", size);
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allocator->shm = shm;
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allocator->size = size;
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allocator->avail = size - MINSIZE;
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/* pointer to first block, right after ALIGNed header */
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b = allocator->headblock;
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xc_block_setup(b, 0, (xc_allocator_bestfit_block_t *) PADD(allocator, ALIGN(sizeof(xc_allocator_bestfit_t))));
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/* first block*/
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b = b->next;
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xc_block_setup(b, allocator->avail, 0);
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#undef MINSIZE
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return allocator;
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}
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/* }}} */
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static XC_ALLOCATOR_DESTROY(xc_allocator_bestfit_destroy) /* {{{ */
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{
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}
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/* }}} */
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static xc_allocator_vtable_t xc_allocator_bestfit = XC_ALLOCATOR_VTABLE(allocator_bestfit);
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void xc_allocator_bestfit_register() /* {{{ */
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{
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if (xc_allocator_register("bestfit", &xc_allocator_bestfit) == 0) {
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zend_error(E_ERROR, "XCache: failed to register allocator 'bestfit'");
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}
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}
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/* }}} */
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