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slab.h revision 1.1
      1  1.1  riastrad /*	$NetBSD: slab.h,v 1.1 2018/08/27 15:45:06 riastradh Exp $	*/
      2  1.1  riastrad 
      3  1.1  riastrad /*-
      4  1.1  riastrad  * Copyright (c) 2013 The NetBSD Foundation, Inc.
      5  1.1  riastrad  * All rights reserved.
      6  1.1  riastrad  *
      7  1.1  riastrad  * This code is derived from software contributed to The NetBSD Foundation
      8  1.1  riastrad  * by Taylor R. Campbell.
      9  1.1  riastrad  *
     10  1.1  riastrad  * Redistribution and use in source and binary forms, with or without
     11  1.1  riastrad  * modification, are permitted provided that the following conditions
     12  1.1  riastrad  * are met:
     13  1.1  riastrad  * 1. Redistributions of source code must retain the above copyright
     14  1.1  riastrad  *    notice, this list of conditions and the following disclaimer.
     15  1.1  riastrad  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.1  riastrad  *    notice, this list of conditions and the following disclaimer in the
     17  1.1  riastrad  *    documentation and/or other materials provided with the distribution.
     18  1.1  riastrad  *
     19  1.1  riastrad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  1.1  riastrad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  1.1  riastrad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  1.1  riastrad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  1.1  riastrad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  1.1  riastrad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  1.1  riastrad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  1.1  riastrad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  1.1  riastrad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  1.1  riastrad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  1.1  riastrad  * POSSIBILITY OF SUCH DAMAGE.
     30  1.1  riastrad  */
     31  1.1  riastrad 
     32  1.1  riastrad #ifndef _LINUX_SLAB_H_
     33  1.1  riastrad #define _LINUX_SLAB_H_
     34  1.1  riastrad 
     35  1.1  riastrad #include <sys/kmem.h>
     36  1.1  riastrad #include <sys/malloc.h>
     37  1.1  riastrad 
     38  1.1  riastrad #include <machine/limits.h>
     39  1.1  riastrad 
     40  1.1  riastrad #include <uvm/uvm_extern.h>	/* For PAGE_SIZE.  */
     41  1.1  riastrad 
     42  1.1  riastrad #include <linux/gfp.h>
     43  1.1  riastrad 
     44  1.1  riastrad /* XXX Should use kmem, but Linux kfree doesn't take the size.  */
     45  1.1  riastrad 
     46  1.1  riastrad static inline int
     47  1.1  riastrad linux_gfp_to_malloc(gfp_t gfp)
     48  1.1  riastrad {
     49  1.1  riastrad 	int flags = 0;
     50  1.1  riastrad 
     51  1.1  riastrad 	/* This has no meaning to us.  */
     52  1.1  riastrad 	gfp &= ~__GFP_NOWARN;
     53  1.1  riastrad 	gfp &= ~__GFP_RECLAIMABLE;
     54  1.1  riastrad 
     55  1.1  riastrad 	/* Pretend this was the same as not passing __GFP_WAIT.  */
     56  1.1  riastrad 	if (ISSET(gfp, __GFP_NORETRY)) {
     57  1.1  riastrad 		gfp &= ~__GFP_NORETRY;
     58  1.1  riastrad 		gfp &= ~__GFP_WAIT;
     59  1.1  riastrad 	}
     60  1.1  riastrad 
     61  1.1  riastrad 	if (ISSET(gfp, __GFP_ZERO)) {
     62  1.1  riastrad 		flags |= M_ZERO;
     63  1.1  riastrad 		gfp &= ~__GFP_ZERO;
     64  1.1  riastrad 	}
     65  1.1  riastrad 
     66  1.1  riastrad 	/*
     67  1.1  riastrad 	 * XXX Handle other cases as they arise -- prefer to fail early
     68  1.1  riastrad 	 * rather than allocate memory without respecting parameters we
     69  1.1  riastrad 	 * don't understand.
     70  1.1  riastrad 	 */
     71  1.1  riastrad 	KASSERT((gfp == GFP_ATOMIC) ||
     72  1.1  riastrad 	    ((gfp & ~__GFP_WAIT) == (GFP_KERNEL & ~__GFP_WAIT)));
     73  1.1  riastrad 
     74  1.1  riastrad 	if (ISSET(gfp, __GFP_WAIT)) {
     75  1.1  riastrad 		flags |= M_WAITOK;
     76  1.1  riastrad 		gfp &= ~__GFP_WAIT;
     77  1.1  riastrad 	} else {
     78  1.1  riastrad 		flags |= M_NOWAIT;
     79  1.1  riastrad 	}
     80  1.1  riastrad 
     81  1.1  riastrad 	return flags;
     82  1.1  riastrad }
     83  1.1  riastrad 
     84  1.1  riastrad /*
     85  1.1  riastrad  * XXX vmalloc and kmalloc both use malloc(9).  If you change this, be
     86  1.1  riastrad  * sure to update vmalloc in <linux/vmalloc.h> and kvfree in
     87  1.1  riastrad  * <linux/mm.h>.
     88  1.1  riastrad  */
     89  1.1  riastrad 
     90  1.1  riastrad static inline void *
     91  1.1  riastrad kmalloc(size_t size, gfp_t gfp)
     92  1.1  riastrad {
     93  1.1  riastrad 	return malloc(size, M_TEMP, linux_gfp_to_malloc(gfp));
     94  1.1  riastrad }
     95  1.1  riastrad 
     96  1.1  riastrad static inline void *
     97  1.1  riastrad kzalloc(size_t size, gfp_t gfp)
     98  1.1  riastrad {
     99  1.1  riastrad 	return malloc(size, M_TEMP, (linux_gfp_to_malloc(gfp) | M_ZERO));
    100  1.1  riastrad }
    101  1.1  riastrad 
    102  1.1  riastrad static inline void *
    103  1.1  riastrad kmalloc_array(size_t n, size_t size, gfp_t gfp)
    104  1.1  riastrad {
    105  1.1  riastrad 	if ((size != 0) && (n > (SIZE_MAX / size)))
    106  1.1  riastrad 		return NULL;
    107  1.1  riastrad 	return malloc((n * size), M_TEMP, linux_gfp_to_malloc(gfp));
    108  1.1  riastrad }
    109  1.1  riastrad 
    110  1.1  riastrad static inline void *
    111  1.1  riastrad kcalloc(size_t n, size_t size, gfp_t gfp)
    112  1.1  riastrad {
    113  1.1  riastrad 	return kmalloc_array(n, size, (gfp | __GFP_ZERO));
    114  1.1  riastrad }
    115  1.1  riastrad 
    116  1.1  riastrad static inline void *
    117  1.1  riastrad krealloc(void *ptr, size_t size, gfp_t gfp)
    118  1.1  riastrad {
    119  1.1  riastrad 	return realloc(ptr, size, M_TEMP, linux_gfp_to_malloc(gfp));
    120  1.1  riastrad }
    121  1.1  riastrad 
    122  1.1  riastrad static inline void
    123  1.1  riastrad kfree(void *ptr)
    124  1.1  riastrad {
    125  1.1  riastrad 	if (ptr != NULL)
    126  1.1  riastrad 		free(ptr, M_TEMP);
    127  1.1  riastrad }
    128  1.1  riastrad 
    129  1.1  riastrad #define	SLAB_HWCACHE_ALIGN	1
    130  1.1  riastrad 
    131  1.1  riastrad struct kmem_cache {
    132  1.1  riastrad 	pool_cache_t	kc_pool_cache;
    133  1.1  riastrad 	size_t		kc_size;
    134  1.1  riastrad 	void		(*kc_ctor)(void *);
    135  1.1  riastrad };
    136  1.1  riastrad 
    137  1.1  riastrad static int
    138  1.1  riastrad kmem_cache_ctor(void *cookie, void *ptr, int flags __unused)
    139  1.1  riastrad {
    140  1.1  riastrad 	struct kmem_cache *const kc = cookie;
    141  1.1  riastrad 
    142  1.1  riastrad 	if (kc->kc_ctor)
    143  1.1  riastrad 		(*kc->kc_ctor)(ptr);
    144  1.1  riastrad 
    145  1.1  riastrad 	return 0;
    146  1.1  riastrad }
    147  1.1  riastrad 
    148  1.1  riastrad static inline struct kmem_cache *
    149  1.1  riastrad kmem_cache_create(const char *name, size_t size, size_t align,
    150  1.1  riastrad     unsigned long flags, void (*ctor)(void *))
    151  1.1  riastrad {
    152  1.1  riastrad 	struct kmem_cache *kc;
    153  1.1  riastrad 
    154  1.1  riastrad 	if (ISSET(flags, SLAB_HWCACHE_ALIGN))
    155  1.1  riastrad 		align = roundup(MAX(1, align), CACHE_LINE_SIZE);
    156  1.1  riastrad 
    157  1.1  riastrad 	kc = kmem_alloc(sizeof(*kc), KM_SLEEP);
    158  1.1  riastrad 	kc->kc_pool_cache = pool_cache_init(size, align, 0, 0, name, NULL,
    159  1.1  riastrad 	    IPL_NONE, &kmem_cache_ctor, NULL, kc);
    160  1.1  riastrad 	kc->kc_size = size;
    161  1.1  riastrad 	kc->kc_ctor = ctor;
    162  1.1  riastrad 
    163  1.1  riastrad 	return kc;
    164  1.1  riastrad }
    165  1.1  riastrad 
    166  1.1  riastrad static inline void
    167  1.1  riastrad kmem_cache_destroy(struct kmem_cache *kc)
    168  1.1  riastrad {
    169  1.1  riastrad 
    170  1.1  riastrad 	pool_cache_destroy(kc->kc_pool_cache);
    171  1.1  riastrad 	kmem_free(kc, sizeof(*kc));
    172  1.1  riastrad }
    173  1.1  riastrad 
    174  1.1  riastrad static inline void *
    175  1.1  riastrad kmem_cache_alloc(struct kmem_cache *kc, gfp_t gfp)
    176  1.1  riastrad {
    177  1.1  riastrad 	int flags = 0;
    178  1.1  riastrad 	void *ptr;
    179  1.1  riastrad 
    180  1.1  riastrad 	if (gfp & __GFP_WAIT)
    181  1.1  riastrad 		flags |= PR_NOWAIT;
    182  1.1  riastrad 	else
    183  1.1  riastrad 		flags |= PR_WAITOK;
    184  1.1  riastrad 
    185  1.1  riastrad 	ptr = pool_cache_get(kc->kc_pool_cache, flags);
    186  1.1  riastrad 	if (ptr == NULL)
    187  1.1  riastrad 		return NULL;
    188  1.1  riastrad 
    189  1.1  riastrad 	if (ISSET(gfp, __GFP_ZERO))
    190  1.1  riastrad 		(void)memset(ptr, 0, kc->kc_size);
    191  1.1  riastrad 
    192  1.1  riastrad 	return ptr;
    193  1.1  riastrad }
    194  1.1  riastrad 
    195  1.1  riastrad static inline void *
    196  1.1  riastrad kmem_cache_zalloc(struct kmem_cache *kc, gfp_t gfp)
    197  1.1  riastrad {
    198  1.1  riastrad 
    199  1.1  riastrad 	return kmem_cache_alloc(kc, (gfp | __GFP_ZERO));
    200  1.1  riastrad }
    201  1.1  riastrad 
    202  1.1  riastrad static inline void
    203  1.1  riastrad kmem_cache_free(struct kmem_cache *kc, void *ptr)
    204  1.1  riastrad {
    205  1.1  riastrad 
    206  1.1  riastrad 	pool_cache_put(kc->kc_pool_cache, ptr);
    207  1.1  riastrad }
    208  1.1  riastrad 
    209  1.1  riastrad #endif  /* _LINUX_SLAB_H_ */
    210