Contributors: 9
	  
        
          | Author | 
          Tokens | 
          Token Proportion | 
          Commits | 
          Commit Proportion | 
        
	  
	  
        
        
          | Takashi Iwai | 
          104 | 
          35.02% | 
          1 | 
          7.69% | 
        
        
          | Arne Jansen | 
          97 | 
          32.66% | 
          1 | 
          7.69% | 
        
        
          | Jan Schmidt | 
          32 | 
          10.77% | 
          2 | 
          15.38% | 
        
        
          | Shilong Wang | 
          29 | 
          9.76% | 
          2 | 
          15.38% | 
        
        
          | Qu Wenruo | 
          15 | 
          5.05% | 
          1 | 
          7.69% | 
        
        
          | David Sterba | 
          13 | 
          4.38% | 
          3 | 
          23.08% | 
        
        
          | Alexander Block | 
          4 | 
          1.35% | 
          1 | 
          7.69% | 
        
        
          | Daniel J Blueman | 
          2 | 
          0.67% | 
          1 | 
          7.69% | 
        
        
          | Chris Mason | 
          1 | 
          0.34% | 
          1 | 
          7.69% | 
        
	  
	  
        
          | Total | 
          297 | 
           | 
          13 | 
           | 
	    
	  
    
 
/* SPDX-License-Identifier: GPL-2.0 */
/*
 * Copyright (C) 2011 STRATO AG
 * written by Arne Jansen <sensille@gmx.net>
 */
#ifndef BTRFS_ULIST_H
#define BTRFS_ULIST_H
#include <linux/list.h>
#include <linux/rbtree.h>
/*
 * ulist is a generic data structure to hold a collection of unique u64
 * values. The only operations it supports is adding to the list and
 * enumerating it.
 * It is possible to store an auxiliary value along with the key.
 *
 */
struct ulist_iterator {
	struct list_head *cur_list;  /* hint to start search */
};
/*
 * element of the list
 */
struct ulist_node {
	u64 val;		/* value to store */
	u64 aux;		/* auxiliary value saved along with the val */
	struct list_head list;  /* used to link node */
	struct rb_node rb_node;	/* used to speed up search */
};
struct ulist {
	/*
	 * number of elements stored in list
	 */
	unsigned long nnodes;
	struct list_head nodes;
	struct rb_root root;
};
void ulist_init(struct ulist *ulist);
void ulist_release(struct ulist *ulist);
void ulist_reinit(struct ulist *ulist);
struct ulist *ulist_alloc(gfp_t gfp_mask);
void ulist_free(struct ulist *ulist);
int ulist_add(struct ulist *ulist, u64 val, u64 aux, gfp_t gfp_mask);
int ulist_add_merge(struct ulist *ulist, u64 val, u64 aux,
		    u64 *old_aux, gfp_t gfp_mask);
int ulist_del(struct ulist *ulist, u64 val, u64 aux);
/* just like ulist_add_merge() but take a pointer for the aux data */
static inline int ulist_add_merge_ptr(struct ulist *ulist, u64 val, void *aux,
				      void **old_aux, gfp_t gfp_mask)
{
#if BITS_PER_LONG == 32
	u64 old64 = (uintptr_t)*old_aux;
	int ret = ulist_add_merge(ulist, val, (uintptr_t)aux, &old64, gfp_mask);
	*old_aux = (void *)((uintptr_t)old64);
	return ret;
#else
	return ulist_add_merge(ulist, val, (u64)aux, (u64 *)old_aux, gfp_mask);
#endif
}
struct ulist_node *ulist_next(struct ulist *ulist,
			      struct ulist_iterator *uiter);
#define ULIST_ITER_INIT(uiter) ((uiter)->cur_list = NULL)
#endif