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/*
 * include/linux/idr.h
 * 
 * 2002-10-18  written by Jim Houston jim.houston@ccur.com
 *	Copyright (C) 2002 by Concurrent Computer Corporation
 *
 * Small id to pointer translation service avoiding fixed sized
 * tables.
 */

#ifndef __IDR_H__
#define __IDR_H__

#include <linux/radix-tree.h>
#include <linux/gfp.h>
#include <linux/percpu.h>

struct idr {
	struct radix_tree_root	idr_rt;
	unsigned int		idr_base;
	unsigned int		idr_next;
};

/*
 * The IDR API does not expose the tagging functionality of the radix tree
 * to users.  Use tag 0 to track whether a node has free space below it.
 */
#define IDR_FREE	0

/* Set the IDR flag and the IDR_FREE tag */
#define IDR_RT_MARKER	(ROOT_IS_IDR | (__force gfp_t)			\
					(1 << (ROOT_TAG_SHIFT + IDR_FREE)))

#define IDR_INIT_BASE(name, base) {					\
	.idr_rt = RADIX_TREE_INIT(name, IDR_RT_MARKER),			\
	.idr_base = (base),						\
	.idr_next = 0,							\
}

/**
 * IDR_INIT() - Initialise an IDR.
 * @name: Name of IDR.
 *
 * A freshly-initialised IDR contains no IDs.
 */
#define IDR_INIT(name)	IDR_INIT_BASE(name, 0)

/**
 * DEFINE_IDR() - Define a statically-allocated IDR.
 * @name: Name of IDR.
 *
 * An IDR defined using this macro is ready for use with no additional
 * initialisation required.  It contains no IDs.
 */
#define DEFINE_IDR(name)	struct idr name = IDR_INIT(name)

/**
 * idr_get_cursor - Return the current position of the cyclic allocator
 * @idr: idr handle
 *
 * The value returned is the value that will be next returned from
 * idr_alloc_cyclic() if it is free (otherwise the search will start from
 * this position).
 */
static inline unsigned int idr_get_cursor(const struct idr *idr)
{
	return READ_ONCE(idr->idr_next);
}

/**
 * idr_set_cursor - Set the current position of the cyclic allocator
 * @idr: idr handle
 * @val: new position
 *
 * The next call to idr_alloc_cyclic() will return @val if it is free
 * (otherwise the search will start from this position).
 */
static inline void idr_set_cursor(struct idr *idr, unsigned int val)
{
	WRITE_ONCE(idr->idr_next, val);
}

/**
 * DOC: idr sync
 * idr synchronization (stolen from radix-tree.h)
 *
 * idr_find() is able to be called locklessly, using RCU. The caller must
 * ensure calls to this function are made within rcu_read_lock() regions.
 * Other readers (lock-free or otherwise) and modifications may be running
 * concurrently.
 *
 * It is still required that the caller manage the synchronization and
 * lifetimes of the items. So if RCU lock-free lookups are used, typically
 * this would mean that the items have their own locks, or are amenable to
 * lock-free access; and that the items are freed by RCU (or only freed after
 * having been deleted from the idr tree *and* a synchronize_rcu() grace
 * period).
 */

#define idr_lock(idr)		xa_lock(&(idr)->idr_rt)
#define idr_unlock(idr)		xa_unlock(&(idr)->idr_rt)
#define idr_lock_bh(idr)	xa_lock_bh(&(idr)->idr_rt)
#define idr_unlock_bh(idr)	xa_unlock_bh(&(idr)->idr_rt)
#define idr_lock_irq(idr)	xa_lock_irq(&(idr)->idr_rt)
#define idr_unlock_irq(idr)	xa_unlock_irq(&(idr)->idr_rt)
#define idr_lock_irqsave(idr, flags) \
				xa_lock_irqsave(&(idr)->idr_rt, flags)
#define idr_unlock_irqrestore(idr, flags) \
				xa_unlock_irqrestore(&(idr)->idr_rt, flags)

void idr_preload(gfp_t gfp_mask);

int idr_alloc(struct idr *, void *ptr, int start, int end, gfp_t);
int __must_check idr_alloc_u32(struct idr *, void *ptr, u32 *id,
				unsigned long max, gfp_t);
int idr_alloc_cyclic(struct idr *, void *ptr, int start, int end, gfp_t);
void *idr_remove(struct idr *, unsigned long id);
void *idr_find(const struct idr *, unsigned long id);
int idr_for_each(const struct idr *,
		 int (*fn)(int id, void *p, void *data), void *data);
void *idr_get_next(struct idr *, int *nextid);
void *idr_get_next_ul(struct idr *, unsigned long *nextid);
void *idr_replace(struct idr *, void *, unsigned long id);
void idr_destroy(struct idr *);

/**
