XArray: Handle NULL pointers differently for allocation
For allocating XArrays, it makes sense to distinguish beteen erasing an entry and storing NULL. Storing NULL keeps the index allocated with a NULL pointer associated with it while xa_erase() frees the index. Some existing IDR users rely on this ability. Signed-off-by: Matthew Wilcox <willy@infradead.org>
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@ -119,18 +119,27 @@ Finally, you can remove all entries from an XArray by calling
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to free the entries first. You can do this by iterating over all present
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entries in the XArray using the :c:func:`xa_for_each` iterator.
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ID assignment
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-------------
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Allocating XArrays
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------------------
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If you use :c:func:`DEFINE_XARRAY_ALLOC` to define the XArray, or
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initialise it by passing ``XA_FLAGS_ALLOC`` to :c:func:`xa_init_flags`,
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the XArray changes to track whether entries are in use or not.
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You can call :c:func:`xa_alloc` to store the entry at any unused index
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in the XArray. If you need to modify the array from interrupt context,
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you can use :c:func:`xa_alloc_bh` or :c:func:`xa_alloc_irq` to disable
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interrupts while allocating the ID. Unlike :c:func:`xa_store`, allocating
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a ``NULL`` pointer does not delete an entry. Instead it reserves an
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entry like :c:func:`xa_reserve` and you can release it using either
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:c:func:`xa_erase` or :c:func:`xa_release`. To use ID assignment, the
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XArray must be defined with :c:func:`DEFINE_XARRAY_ALLOC`, or initialised
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by passing ``XA_FLAGS_ALLOC`` to :c:func:`xa_init_flags`,
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interrupts while allocating the ID.
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Using :c:func:`xa_store`, :c:func:`xa_cmpxchg` or :c:func:`xa_insert`
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will mark the entry as being allocated. Unlike a normal XArray, storing
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``NULL`` will mark the entry as being in use, like :c:func:`xa_reserve`.
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To free an entry, use :c:func:`xa_erase` (or :c:func:`xa_release` if
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you only want to free the entry if it's ``NULL``).
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You cannot use ``XA_MARK_0`` with an allocating XArray as this mark
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is used to track whether an entry is free or not. The other marks are
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available for your use.
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Memory allocation
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-----------------
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@ -338,7 +347,8 @@ to :c:func:`xas_retry`, and retry the operation if it returns ``true``.
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- :c:func:`xa_is_zero`
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- Zero entries appear as ``NULL`` through the Normal API, but occupy
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an entry in the XArray which can be used to reserve the index for
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future use.
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future use. This is used by allocating XArrays for allocated entries
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which are ``NULL``.
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Other internal entries may be added in the future. As far as possible, they
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will be handled by :c:func:`xas_retry`.
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13
lib/xarray.c
13
lib/xarray.c
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@ -1382,10 +1382,12 @@ void *__xa_store(struct xarray *xa, unsigned long index, void *entry, gfp_t gfp)
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if (WARN_ON_ONCE(xa_is_internal(entry)))
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return XA_ERROR(-EINVAL);
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if (xa_track_free(xa) && !entry)
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entry = XA_ZERO_ENTRY;
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do {
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curr = xas_store(&xas, entry);
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if (xa_track_free(xa) && entry)
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if (xa_track_free(xa))
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xas_clear_mark(&xas, XA_FREE_MARK);
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} while (__xas_nomem(&xas, gfp));
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@ -1446,6 +1448,8 @@ void *__xa_cmpxchg(struct xarray *xa, unsigned long index,
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if (WARN_ON_ONCE(xa_is_internal(entry)))
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return XA_ERROR(-EINVAL);
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if (xa_track_free(xa) && !entry)
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entry = XA_ZERO_ENTRY;
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do {
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curr = xas_load(&xas);
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@ -1453,7 +1457,7 @@ void *__xa_cmpxchg(struct xarray *xa, unsigned long index,
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curr = NULL;
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if (curr == old) {
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xas_store(&xas, entry);
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if (xa_track_free(xa) && entry)
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if (xa_track_free(xa))
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xas_clear_mark(&xas, XA_FREE_MARK);
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}
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} while (__xas_nomem(&xas, gfp));
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@ -1487,8 +1491,11 @@ int __xa_reserve(struct xarray *xa, unsigned long index, gfp_t gfp)
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do {
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curr = xas_load(&xas);
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if (!curr)
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if (!curr) {
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xas_store(&xas, XA_ZERO_ENTRY);
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if (xa_track_free(xa))
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xas_clear_mark(&xas, XA_FREE_MARK);
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}
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} while (__xas_nomem(&xas, gfp));
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return xas_error(&xas);
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