260 lines
5.1 KiB
C
Executable File
260 lines
5.1 KiB
C
Executable File
/* Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T */
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/* All Rights Reserved */
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/* THIS IS UNPUBLISHED PROPRIETARY SOURCE CODE OF AT&T */
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/* The copyright notice above does not evidence any */
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/* actual or intended publication of such source code. */
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/*
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* Copyright (c) 1991, Sun Microsytems, Inc.
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*/
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#ident "@(#)textmem.c 1.9 93/12/25 SMI" /* SVR4/MNLS 1.1.2.1 */
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/*
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* Simplified version of malloc(), free() and realloc(), to be linked with
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* utilities that use [s]brk() and do not define their own version of the
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* routines.
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* The algorithm maps /dev/zero to get extra memory space.
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* Each call to mmap() creates a page. The pages are linked in a list.
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* Each page is divided in blocks. There is at least one block in a page.
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* New memory chunks are allocated on a first-fit basis.
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* Freed blocks are joined in larger blocks. Free pages are unmapped.
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*/
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#include <stdlib.h>
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#include <sys/types.h>
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#include <sys/mman.h>
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#include <fcntl.h>
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#include <errno.h>
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#include <unistd.h>
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#include <thread.h>
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#include <synch.h>
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#ifdef _REENTRANT
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static mutex_t lock = DEFAULTMUTEX;
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#endif _REENTRANT
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struct block {
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unsigned size; /* Space available for user */
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struct page *page; /* Backwards reference to page */
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int status;
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struct block *next;
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void *memstart[1];
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};
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struct page {
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unsigned size; /* Total page size (incl. header) */
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struct page *next;
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struct block block[1];
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};
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#define FREE 0
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#define BUSY 1
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#define HDR_BLOCK (sizeof(struct block) - sizeof(void *))
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#define HDR_PAGE (sizeof(struct page) - sizeof(void *))
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#define MINSZ sizeof(double)
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/* for convenience */
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#ifndef NULL
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#define NULL (0)
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#endif
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static int fd = -1;
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struct page *memstart;
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static int pagesize;
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static void defrag(), split();
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static void *malloc_unlocked();
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void *
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malloc(size)
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unsigned size;
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{
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void *retval;
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_mutex_lock(&lock);
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retval = malloc_unlocked(size);
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_mutex_unlock(&lock);
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return retval;
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}
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static void *
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malloc_unlocked(size)
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unsigned size;
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{
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struct block *block;
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struct page *page;
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if (fd == -1){
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if ((fd = open("/dev/zero", O_RDWR)) == -1)
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return 0;
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pagesize = sysconf(_SC_PAGESIZE);
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}
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size = align(size, MINSZ);
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/*
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* Try to locate necessary space
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*/
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for (page = memstart; page; page = page->next){
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for (block = page->block; block; block = block->next){
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if (block->status == FREE && block->size >= size)
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goto found;
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}
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}
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found:
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/*
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* Need to allocate a new page
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*/
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if (!page){
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unsigned totsize = size + HDR_PAGE;
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int totpage = align(totsize, pagesize);
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if ((page = (struct page *)mmap(0, totpage,
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PROT_READ|PROT_WRITE, MAP_PRIVATE, fd, 0)) == 0)
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return 0;
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page->next = memstart;
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memstart = page;
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page->size = totpage;
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block = page->block;
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block->next = 0;
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block->status = FREE;
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block->size = totpage - HDR_PAGE;
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block->page = page;
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}
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split(block, size);
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block->status = BUSY;
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return &block->memstart;
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}
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void *
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realloc(ptr, size)
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void *ptr;
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unsigned size;
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{
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struct block *block;
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unsigned osize;
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void *newptr;
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_mutex_lock(&lock);
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block = (struct block *)((char *)ptr - HDR_BLOCK);
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size = align(size, MINSZ);
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osize = block->size;
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/*
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* Join block with next one if it is free
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*/
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if (block->next && block->next->status == FREE){
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block->size += block->next->size + HDR_BLOCK;
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block->next = block->next->next;
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}
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if (size <= block->size){
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split(block, size);
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_mutex_unlock(&lock);
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return ptr;
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}
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newptr = malloc_unlocked(size);
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(void)memcpy(newptr, ptr, osize);
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block->status = FREE;
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defrag(block->page);
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_mutex_unlock(&lock);
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return newptr;
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}
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void
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free(ptr)
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void *ptr;
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{
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struct block *block;
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_mutex_lock(&lock);
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if (ptr == NULL) {
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_mutex_unlock(&lock);
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return;
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}
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block = (struct block *)((char *)ptr - HDR_BLOCK);
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block->status = FREE;
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defrag(block->page);
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_mutex_unlock(&lock);
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}
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/*
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* Align size on an appropriate boundary
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*/
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static
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align(size, bound)
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unsigned size;
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int bound;
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{
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if (size < bound)
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return bound;
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else
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return size + bound - 1 - (size + bound - 1) % bound;
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}
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static void
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split(block, size)
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struct block *block;
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unsigned size;
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{
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if (block->size > size + sizeof(struct block)){
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struct block *newblock;
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newblock = (struct block *)((char *)block + HDR_BLOCK + size);
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newblock->next = block->next;
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block->next = newblock;
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newblock->status = FREE;
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newblock->page = block->page;
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newblock->size = block->size - size - HDR_BLOCK;
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block->size = size;
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}
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}
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/*
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* Defragmentation
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*/
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static void
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defrag(page)
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struct page *page;
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{
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struct block *block;
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for (block = page->block ; block ; block = block->next){
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struct block *block2;
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if (block->status == BUSY)
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continue;
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for (block2 = block->next ; block2 && block2->status == FREE ;
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block2 = block2->next){
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block->next = block2->next;
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block->size += block2->size + HDR_BLOCK;
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}
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}
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/*
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* Free page
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*/
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if (page->block->size == page->size - HDR_PAGE){
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if (page == memstart)
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memstart = page->next;
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else {
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struct page *page2;
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for (page2 = memstart ; page2->next ; page2 = page2->next){
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if (page2->next == page){
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page2->next = page->next;
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break;
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}
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}
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}
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(void)munmap((caddr_t)page, page->size);
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}
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}
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