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mm, slab: restore kerneldoc for kmem_cache_create()
As kmem_cache_create() became a _Generic() wrapper macro, it currently has no kerneldoc despite being the main API to use. Add it. Also adjust kmem_cache_create_usercopy() kerneldoc to indicate it is now a legacy wrapper. Also expand the kerneldoc for struct kmem_cache_args, especially for the freeptr_offset field, where important details were removed with the removal of kmem_cache_create_rcu(). Signed-off-by: Vlastimil Babka <vbabka@suse.cz> Reviewed-by: Christian Brauner <brauner@kernel.org>
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@ -242,19 +242,72 @@ bool slab_is_available(void);
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/**
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* struct kmem_cache_args - Less common arguments for kmem_cache_create()
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* @align: The required alignment for the objects.
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* @useroffset: Usercopy region offset
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* @usersize: Usercopy region size
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* @freeptr_offset: Custom offset for the free pointer in RCU caches
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* @use_freeptr_offset: Whether a @freeptr_offset is used
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* @ctor: A constructor for the objects.
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*
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* Any uninitialized fields of the structure are interpreted as unused. The
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* exception is @freeptr_offset where %0 is a valid value, so
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* @use_freeptr_offset must be also set to %true in order to interpret the field
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* as used. For @useroffset %0 is also valid, but only with non-%0
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* @usersize.
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*
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* When %NULL args is passed to kmem_cache_create(), it is equivalent to all
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* fields unused.
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*/
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struct kmem_cache_args {
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/**
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* @align: The required alignment for the objects.
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*
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* %0 means no specific alignment is requested.
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*/
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unsigned int align;
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/**
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* @useroffset: Usercopy region offset.
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*
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* %0 is a valid offset, when @usersize is non-%0
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*/
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unsigned int useroffset;
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/**
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* @usersize: Usercopy region size.
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*
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* %0 means no usercopy region is specified.
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*/
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unsigned int usersize;
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/**
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* @freeptr_offset: Custom offset for the free pointer
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* in &SLAB_TYPESAFE_BY_RCU caches
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*
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* By default &SLAB_TYPESAFE_BY_RCU caches place the free pointer
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* outside of the object. This might cause the object to grow in size.
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* Cache creators that have a reason to avoid this can specify a custom
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* free pointer offset in their struct where the free pointer will be
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* placed.
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*
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* Note that placing the free pointer inside the object requires the
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* caller to ensure that no fields are invalidated that are required to
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* guard against object recycling (See &SLAB_TYPESAFE_BY_RCU for
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* details).
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*
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* Using %0 as a value for @freeptr_offset is valid. If @freeptr_offset
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* is specified, %use_freeptr_offset must be set %true.
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*
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* Note that @ctor currently isn't supported with custom free pointers
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* as a @ctor requires an external free pointer.
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*/
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unsigned int freeptr_offset;
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/**
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* @use_freeptr_offset: Whether a @freeptr_offset is used.
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*/
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bool use_freeptr_offset;
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/**
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* @ctor: A constructor for the objects.
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*
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* The constructor is invoked for each object in a newly allocated slab
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* page. It is the cache user's responsibility to free object in the
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* same state as after calling the constructor, or deal appropriately
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* with any differences between a freshly constructed and a reallocated
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* object.
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*
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* %NULL means no constructor.
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*/
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void (*ctor)(void *);
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};
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@ -275,30 +328,20 @@ __kmem_cache_create(const char *name, unsigned int size, unsigned int align,
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}
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/**
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* kmem_cache_create_usercopy - Create a cache with a region suitable
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* for copying to userspace
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* kmem_cache_create_usercopy - Create a kmem cache with a region suitable
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* for copying to userspace.
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* @name: A string which is used in /proc/slabinfo to identify this cache.
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* @size: The size of objects to be created in this cache.
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* @align: The required alignment for the objects.
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* @flags: SLAB flags
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* @useroffset: Usercopy region offset
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* @usersize: Usercopy region size
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* @ctor: A constructor for the objects.
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* @ctor: A constructor for the objects, or %NULL.
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*
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* Cannot be called within a interrupt, but can be interrupted.
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* The @ctor is run when new pages are allocated by the cache.
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*
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* The flags are
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*
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* %SLAB_POISON - Poison the slab with a known test pattern (a5a5a5a5)
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* to catch references to uninitialised memory.
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*
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* %SLAB_RED_ZONE - Insert `Red` zones around the allocated memory to check
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* for buffer overruns.
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*
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* %SLAB_HWCACHE_ALIGN - Align the objects in this cache to a hardware
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* cacheline. This can be beneficial if you're counting cycles as closely
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* as davem.
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* This is a legacy wrapper, new code should use either KMEM_CACHE_USERCOPY()
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* if whitelisting a single field is sufficient, or kmem_cache_create() with
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* the necessary parameters passed via the args parameter (see
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* &struct kmem_cache_args)
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*
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* Return: a pointer to the cache on success, NULL on failure.
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*/
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@ -333,6 +376,31 @@ __kmem_cache_default_args(const char *name, unsigned int size,
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return __kmem_cache_create_args(name, size, &kmem_default_args, flags);
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}
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/**
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* kmem_cache_create - Create a kmem cache.
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* @__name: A string which is used in /proc/slabinfo to identify this cache.
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* @__object_size: The size of objects to be created in this cache.
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* @__args: Optional arguments, see &struct kmem_cache_args. Passing %NULL
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* means defaults will be used for all the arguments.
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*
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* This is currently implemented as a macro using ``_Generic()`` to call
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* either the new variant of the function, or a legacy one.
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*
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* The new variant has 4 parameters:
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* ``kmem_cache_create(name, object_size, args, flags)``
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*
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* See __kmem_cache_create_args() which implements this.
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*
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* The legacy variant has 5 parameters:
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* ``kmem_cache_create(name, object_size, align, flags, ctor)``
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*
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* The align and ctor parameters map to the respective fields of
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* &struct kmem_cache_args
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*
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* Context: Cannot be called within a interrupt, but can be interrupted.
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*
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* Return: a pointer to the cache on success, NULL on failure.
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*/
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#define kmem_cache_create(__name, __object_size, __args, ...) \
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_Generic((__args), \
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struct kmem_cache_args *: __kmem_cache_create_args, \
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@ -239,13 +239,17 @@ out:
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}
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/**
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* __kmem_cache_create_args - Create a kmem cache
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* __kmem_cache_create_args - Create a kmem cache.
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* @name: A string which is used in /proc/slabinfo to identify this cache.
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* @object_size: The size of objects to be created in this cache.
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* @args: Arguments for the cache creation (see struct kmem_cache_args).
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* @args: Additional arguments for the cache creation (see
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* &struct kmem_cache_args).
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* @flags: See %SLAB_* flags for an explanation of individual @flags.
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*
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* Cannot be called within a interrupt, but can be interrupted.
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* Not to be called directly, use the kmem_cache_create() wrapper with the same
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* parameters.
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*
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* Context: Cannot be called within a interrupt, but can be interrupted.
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*
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* Return: a pointer to the cache on success, NULL on failure.
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*/
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