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/*
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/*
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 * Copyright (C) 2005 Ondrej Palkovsky
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 * Copyright (C) 2006 Ondrej Palkovsky
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 * All rights reserved.
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 * All rights reserved.
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 *
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 *
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 * Redistribution and use in source and binary forms, with or without
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 * Redistribution and use in source and binary forms, with or without
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 * modification, are permitted provided that the following conditions
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 * modification, are permitted provided that the following conditions
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 * are met:
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 * are met:
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#define SLAB_MAG_SIZE  4
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#define SLAB_MAG_SIZE  4
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/** If object size is less, store control structure inside SLAB */
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/** If object size is less, store control structure inside SLAB */
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#define SLAB_INSIDE_SIZE   (PAGE_SIZE / 6)
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#define SLAB_INSIDE_SIZE   (PAGE_SIZE / 6)
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/* slab_alloc constants */
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/** Maximum wasted space we allow for cache */
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#define SLAB_ATOMIC       0x1 /**< Do not sleep when no free memory, 
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#define SLAB_MAX_BADNESS(cache)   ((PAGE_SIZE << (cache)->order) / 4)
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                   may return NULL */
-
 
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#define SLAB_NO_RECLAIM   0x2 /**< Do not try to call slab_reclaim, if no
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                 free memory is found - avoid deadlock */
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/* slab_reclaim constants */
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/* slab_reclaim constants */
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#define SLAB_RECLAIM_ALL  0x1 /**< Reclaim all possible memory, because
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#define SLAB_RECLAIM_ALL  0x1 /**< Reclaim all possible memory, because
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                   *   we are in memory stress */
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                   *   we are in memory stress */
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#define SLAB_CACHE_NOMAGAZINE 0x1 /**< Do not use per-cpu cache */
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#define SLAB_CACHE_NOMAGAZINE 0x1 /**< Do not use per-cpu cache */
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#define SLAB_CACHE_SLINSIDE   0x2 /**< Have control structure inside SLAB */
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#define SLAB_CACHE_SLINSIDE   0x2 /**< Have control structure inside SLAB */
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typedef struct {
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typedef struct {
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    link_t link;
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    link_t link;
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    count_t busy;
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    count_t busy;  /**< Count of full slots in magazine */
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    count_t size;
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    count_t size;  /**< Number of slots in magazine */
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    void *objs[0];
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    void *objs[0]; /**< Slots in magazine */
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}slab_magazine_t;
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}slab_magazine_t;
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typedef struct {
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typedef struct {
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    char *name;
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    char *name;
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    SPINLOCK_DECLARE(lock);
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    SPINLOCK_DECLARE(lock);
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    link_t link;
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    link_t link;
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    /* Configuration */
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    /* Configuration */
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    size_t size;
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    size_t align;
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    size_t size;      /**< Size of SLAB position - align_up(sizeof(obj)) */
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    int (*constructor)(void *obj, int kmflag);
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    int (*constructor)(void *obj, int kmflag);
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    void (*destructor)(void *obj);
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    void (*destructor)(void *obj);
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    int flags;
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    int flags;        /**< Flags changing behaviour of cache */
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    /* Computed values */
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    /* Computed values */
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    int pages;
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    __u8 order;        /**< Order of frames to be allocated */
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    int objects;
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    int objects;      /**< Number of objects that fit in */
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    /* Statistics */
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    /* Statistics */
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    /* Slabs */
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    /* Slabs */
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    link_t full_slabs;
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    link_t full_slabs;     /**< List of full slabs */
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    link_t partial_slabs;
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    link_t partial_slabs;  /**< List of partial slabs */
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    /* Magazines  */
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    /* Magazines  */
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    link_t magazines;
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    link_t magazines;      /**< List o full magazines */
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    /* CPU cache */
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    /** CPU cache */
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    struct {
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    struct {
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        slab_magazine_t *current;
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        slab_magazine_t *current;
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        slab_magazine_t *last;
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        slab_magazine_t *last;
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        SPINLOCK_DECLARE(lock);
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        SPINLOCK_DECLARE(lock);
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    }mag_cache[0];
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    }mag_cache[0];
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}slab_cache_t;
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}slab_cache_t;
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typedef struct {
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    slab_cache_t *cache; /**< Pointer to parent cache */
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    void *start;       /**< Start address of first available item */
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    count_t available; /**< Count of available items in this slab */
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    index_t nextavail; /**< The index of next available item */
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}slab_slab_t;
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slab_cache_t * slab_cache_create(char *name,
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extern slab_cache_t * slab_cache_create(char *name,
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                 size_t size,
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                    size_t size,
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                 size_t align,
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                    size_t align,
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                 int (*constructor)(void *obj, int kmflag),
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                    int (*constructor)(void *obj, int kmflag),
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                 void (*destructor)(void *obj),
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                    void (*destructor)(void *obj),
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                 int flags);
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                    int flags);
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void slab_cache_destroy(slab_cache_t *cache);
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extern void slab_cache_destroy(slab_cache_t *cache);
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void * slab_alloc(slab_cache_t *cache, int flags);
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extern void * slab_alloc(slab_cache_t *cache, int flags);
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void slab_free(slab_cache_t *cache, void *obj);
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extern void slab_free(slab_cache_t *cache, void *obj);
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count_t slab_reclaim(int flags);
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extern count_t slab_reclaim(int flags);
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/** Initialize SLAB subsytem */
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/** Initialize SLAB subsytem */
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void slab_cache_init(void);
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extern void slab_cache_init(void);
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/* KConsole debug */
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/* KConsole debug */
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void slab_print_list(void);
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extern void slab_print_list(void);
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#endif
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#endif