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1#ifndef _LINUX_ELEVATOR_H 2#define _LINUX_ELEVATOR_H 3 4#include <linux/percpu.h> 5 6#ifdef CONFIG_BLOCK 7 8typedef int (elevator_merge_fn) (struct request_queue *, struct request **, 9 struct bio *); 10 11typedef void (elevator_merge_req_fn) (struct request_queue *, struct request *, struct request *); 12 13typedef void (elevator_merged_fn) (struct request_queue *, struct request *, int); 14 15typedef int (elevator_allow_merge_fn) (struct request_queue *, struct request *, struct bio *); 16 17typedef int (elevator_dispatch_fn) (struct request_queue *, int); 18 19typedef void (elevator_add_req_fn) (struct request_queue *, struct request *); 20typedef int (elevator_queue_empty_fn) (struct request_queue *); 21typedef struct request *(elevator_request_list_fn) (struct request_queue *, struct request *); 22typedef void (elevator_completed_req_fn) (struct request_queue *, struct request *); 23typedef int (elevator_may_queue_fn) (struct request_queue *, int); 24 25typedef int (elevator_set_req_fn) (struct request_queue *, struct request *, gfp_t); 26typedef void (elevator_put_req_fn) (struct request *); 27typedef void (elevator_activate_req_fn) (struct request_queue *, struct request *); 28typedef void (elevator_deactivate_req_fn) (struct request_queue *, struct request *); 29 30typedef void *(elevator_init_fn) (struct request_queue *); 31typedef void (elevator_exit_fn) (elevator_t *); 32 33struct elevator_ops 34{ 35 elevator_merge_fn *elevator_merge_fn; 36 elevator_merged_fn *elevator_merged_fn; 37 elevator_merge_req_fn *elevator_merge_req_fn; 38 elevator_allow_merge_fn *elevator_allow_merge_fn; 39 40 elevator_dispatch_fn *elevator_dispatch_fn; 41 elevator_add_req_fn *elevator_add_req_fn; 42 elevator_activate_req_fn *elevator_activate_req_fn; 43 elevator_deactivate_req_fn *elevator_deactivate_req_fn; 44 45 elevator_queue_empty_fn *elevator_queue_empty_fn; 46 elevator_completed_req_fn *elevator_completed_req_fn; 47 48 elevator_request_list_fn *elevator_former_req_fn; 49 elevator_request_list_fn *elevator_latter_req_fn; 50 51 elevator_set_req_fn *elevator_set_req_fn; 52 elevator_put_req_fn *elevator_put_req_fn; 53 54 elevator_may_queue_fn *elevator_may_queue_fn; 55 56 elevator_init_fn *elevator_init_fn; 57 elevator_exit_fn *elevator_exit_fn; 58 void (*trim)(struct io_context *); 59}; 60 61#define ELV_NAME_MAX (16) 62 63struct elv_fs_entry { 64 struct attribute attr; 65 ssize_t (*show)(elevator_t *, char *); 66 ssize_t (*store)(elevator_t *, const char *, size_t); 67}; 68 69/* 70 * identifies an elevator type, such as AS or deadline 71 */ 72struct elevator_type 73{ 74 struct list_head list; 75 struct elevator_ops ops; 76 struct elv_fs_entry *elevator_attrs; 77 char elevator_name[ELV_NAME_MAX]; 78 struct module *elevator_owner; 79}; 80 81/* 82 * each queue has an elevator_queue associated with it 83 */ 84struct elevator_queue 85{ 86 struct elevator_ops *ops; 87 void *elevator_data; 88 struct kobject kobj; 89 struct elevator_type *elevator_type; 90 struct mutex sysfs_lock; 91 struct hlist_head *hash; 92}; 93 94/* 95 * block elevator interface 96 */ 97extern void elv_dispatch_sort(struct request_queue *, struct request *); 98extern void elv_dispatch_add_tail(struct request_queue *, struct request *); 99extern void elv_add_request(struct request_queue *, struct request *, int, int); 100extern void __elv_add_request(struct request_queue *, struct request *, int, int); 101extern void elv_insert(struct request_queue *, struct request *, int); 102extern int elv_merge(struct request_queue *, struct request **, struct bio *); 103extern void elv_merge_requests(struct request_queue *, struct request *, 104 struct request *); 105extern void elv_merged_request(struct request_queue *, struct request *, int); 106extern void elv_dequeue_request(struct request_queue *, struct request *); 107extern void elv_requeue_request(struct request_queue *, struct request *); 108extern int elv_queue_empty(struct request_queue *); 109extern struct request *elv_next_request(struct request_queue *q); 110extern struct request *elv_former_request(struct request_queue *, struct request *); 111extern struct request *elv_latter_request(struct request_queue *, struct request *); 112extern int elv_register_queue(struct request_queue *q); 113extern void elv_unregister_queue(struct request_queue *q); 114extern int elv_may_queue(struct request_queue *, int); 115extern void elv_abort_queue(struct request_queue *); 116extern void elv_completed_request(struct request_queue *, struct request *); 117extern int elv_set_request(struct request_queue *, struct request *, gfp_t); 118extern void elv_put_request(struct request_queue *, struct request *); 119 120/* 121 * io scheduler registration 122 */ 123extern void elv_register(struct elevator_type *); 124extern void elv_unregister(struct elevator_type *); 125 126/* 127 * io scheduler sysfs switching 128 */ 129extern ssize_t elv_iosched_show(struct request_queue *, char *); 130extern ssize_t elv_iosched_store(struct request_queue *, const char *, size_t); 131 132extern int elevator_init(struct request_queue *, char *); 133extern void elevator_exit(elevator_t *); 134extern int elv_rq_merge_ok(struct request *, struct bio *); 135 136/* 137 * Helper functions. 138 */ 139extern struct request *elv_rb_former_request(struct request_queue *, struct request *); 140extern struct request *elv_rb_latter_request(struct request_queue *, struct request *); 141 142/* 143 * rb support functions. 144 */ 145extern struct request *elv_rb_add(struct rb_root *, struct request *); 146extern void elv_rb_del(struct rb_root *, struct request *); 147extern struct request *elv_rb_find(struct rb_root *, sector_t); 148 149/* 150 * Return values from elevator merger 151 */ 152#define ELEVATOR_NO_MERGE 0 153#define ELEVATOR_FRONT_MERGE 1 154#define ELEVATOR_BACK_MERGE 2 155 156/* 157 * Insertion selection 158 */ 159#define ELEVATOR_INSERT_FRONT 1 160#define ELEVATOR_INSERT_BACK 2 161#define ELEVATOR_INSERT_SORT 3 162#define ELEVATOR_INSERT_REQUEUE 4 163 164/* 165 * return values from elevator_may_queue_fn 166 */ 167enum { 168 ELV_MQUEUE_MAY, 169 ELV_MQUEUE_NO, 170 ELV_MQUEUE_MUST, 171}; 172 173#define rq_end_sector(rq) ((rq)->sector + (rq)->nr_sectors) 174#define rb_entry_rq(node) rb_entry((node), struct request, rb_node) 175 176/* 177 * Hack to reuse the csd.list list_head as the fifo time holder while 178 * the request is in the io scheduler. Saves an unsigned long in rq. 179 */ 180#define rq_fifo_time(rq) ((unsigned long) (rq)->csd.list.next) 181#define rq_set_fifo_time(rq,exp) ((rq)->csd.list.next = (void *) (exp)) 182#define rq_entry_fifo(ptr) list_entry((ptr), struct request, queuelist) 183#define rq_fifo_clear(rq) do { \ 184 list_del_init(&(rq)->queuelist); \ 185 INIT_LIST_HEAD(&(rq)->csd.list); \ 186 } while (0) 187 188/* 189 * io context count accounting 190 */ 191#define elv_ioc_count_mod(name, __val) \ 192 do { \ 193 preempt_disable(); \ 194 __get_cpu_var(name) += (__val); \ 195 preempt_enable(); \ 196 } while (0) 197 198#define elv_ioc_count_inc(name) elv_ioc_count_mod(name, 1) 199#define elv_ioc_count_dec(name) elv_ioc_count_mod(name, -1) 200 201#define elv_ioc_count_read(name) \ 202({ \ 203 unsigned long __val = 0; \ 204 int __cpu; \ 205 smp_wmb(); \ 206 for_each_possible_cpu(__cpu) \ 207 __val += per_cpu(name, __cpu); \ 208 __val; \ 209}) 210 211#endif /* CONFIG_BLOCK */ 212#endif