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1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _LINUX_GENHD_H
3 #define _LINUX_GENHD_H
4
5 /*
6 * genhd.h Copyright (C) 1992 Drew Eckhardt
7 * Generic hard disk header file by
8 * Drew Eckhardt
9 *
10 * <drew@colorado.edu>
11 */
12
13 #include <linux/types.h>
14 #include <linux/kdev_t.h>
15 #include <linux/rcupdate.h>
16 #include <linux/slab.h>
17 #include <linux/percpu-refcount.h>
18 #include <linux/uuid.h>
19
20 #ifdef CONFIG_BLOCK
21
22 #define dev_to_disk(device) container_of((device), struct gendisk, part0.__dev)
23 #define dev_to_part(device) container_of((device), struct hd_struct, __dev)
24 #define disk_to_dev(disk) (&(disk)->part0.__dev)
25 #define part_to_dev(part) (&((part)->__dev))
26
27 extern struct device_type part_type;
28 extern struct kobject *block_depr;
29 extern struct class block_class;
30
31 enum {
32 /* These three have identical behaviour; use the second one if DOS FDISK gets
33 confused about extended/logical partitions starting past cylinder 1023. */
34 DOS_EXTENDED_PARTITION = 5,
35 LINUX_EXTENDED_PARTITION = 0x85,
36 WIN98_EXTENDED_PARTITION = 0x0f,
37
38 SUN_WHOLE_DISK = DOS_EXTENDED_PARTITION,
39
40 LINUX_SWAP_PARTITION = 0x82,
41 LINUX_DATA_PARTITION = 0x83,
42 LINUX_LVM_PARTITION = 0x8e,
43 LINUX_RAID_PARTITION = 0xfd, /* autodetect RAID partition */
44
45 SOLARIS_X86_PARTITION = LINUX_SWAP_PARTITION,
46 NEW_SOLARIS_X86_PARTITION = 0xbf,
47
48 DM6_AUX1PARTITION = 0x51, /* no DDO: use xlated geom */
49 DM6_AUX3PARTITION = 0x53, /* no DDO: use xlated geom */
50 DM6_PARTITION = 0x54, /* has DDO: use xlated geom & offset */
51 EZD_PARTITION = 0x55, /* EZ-DRIVE */
52
53 FREEBSD_PARTITION = 0xa5, /* FreeBSD Partition ID */
54 OPENBSD_PARTITION = 0xa6, /* OpenBSD Partition ID */
55 NETBSD_PARTITION = 0xa9, /* NetBSD Partition ID */
56 BSDI_PARTITION = 0xb7, /* BSDI Partition ID */
57 MINIX_PARTITION = 0x81, /* Minix Partition ID */
58 UNIXWARE_PARTITION = 0x63, /* Same as GNU_HURD and SCO Unix */
59 };
60
61 #define DISK_MAX_PARTS 256
62 #define DISK_NAME_LEN 32
63
64 #include <linux/major.h>
65 #include <linux/device.h>
66 #include <linux/smp.h>
67 #include <linux/string.h>
68 #include <linux/fs.h>
69 #include <linux/workqueue.h>
70
71 struct partition {
72 unsigned char boot_ind; /* 0x80 - active */
73 unsigned char head; /* starting head */
74 unsigned char sector; /* starting sector */
75 unsigned char cyl; /* starting cylinder */
76 unsigned char sys_ind; /* What partition type */
77 unsigned char end_head; /* end head */
78 unsigned char end_sector; /* end sector */
79 unsigned char end_cyl; /* end cylinder */
80 __le32 start_sect; /* starting sector counting from 0 */
81 __le32 nr_sects; /* nr of sectors in partition */
82 } __attribute__((packed));
83
84 struct disk_stats {
85 unsigned long sectors[2]; /* READs and WRITEs */
86 unsigned long ios[2];
87 unsigned long merges[2];
88 unsigned long ticks[2];
89 unsigned long io_ticks;
90 unsigned long time_in_queue;
91 };
92
93 #define PARTITION_META_INFO_VOLNAMELTH 64
94 /*
95 * Enough for the string representation of any kind of UUID plus NULL.
96 * EFI UUID is 36 characters. MSDOS UUID is 11 characters.
97 */
98 #define PARTITION_META_INFO_UUIDLTH (UUID_STRING_LEN + 1)
99
100 struct partition_meta_info {
101 char uuid[PARTITION_META_INFO_UUIDLTH];
102 u8 volname[PARTITION_META_INFO_VOLNAMELTH];
103 };
104
105 struct hd_struct {
106 sector_t start_sect;
107 /*
108 * nr_sects is protected by sequence counter. One might extend a
109 * partition while IO is happening to it and update of nr_sects
110 * can be non-atomic on 32bit machines with 64bit sector_t.
111 */
112 sector_t nr_sects;
113 seqcount_t nr_sects_seq;
114 sector_t alignment_offset;
115 unsigned int discard_alignment;
116 struct device __dev;
117 struct kobject *holder_dir;
118 int policy, partno;
119 struct partition_meta_info *info;
120 #ifdef CONFIG_FAIL_MAKE_REQUEST
121 int make_it_fail;
122 #endif
123 unsigned long stamp;
124 atomic_t in_flight[2];
125 #ifdef CONFIG_SMP
126 struct disk_stats __percpu *dkstats;
127 #else
128 struct disk_stats dkstats;
129 #endif
130 struct percpu_ref ref;
131 struct rcu_work rcu_work;
132 };
133
134 #define GENHD_FL_REMOVABLE 1
135 /* 2 is unused */
136 #define GENHD_FL_MEDIA_CHANGE_NOTIFY 4
137 #define GENHD_FL_CD 8
138 #define GENHD_FL_UP 16
139 #define GENHD_FL_SUPPRESS_PARTITION_INFO 32
140 #define GENHD_FL_EXT_DEVT 64 /* allow extended devt */
141 #define GENHD_FL_NATIVE_CAPACITY 128
142 #define GENHD_FL_BLOCK_EVENTS_ON_EXCL_WRITE 256
143 #define GENHD_FL_NO_PART_SCAN 512
144 #define GENHD_FL_HIDDEN 1024
145
146 enum {
147 DISK_EVENT_MEDIA_CHANGE = 1 << 0, /* media changed */
148 DISK_EVENT_EJECT_REQUEST = 1 << 1, /* eject requested */
149 };
150
151 struct disk_part_tbl {
152 struct rcu_head rcu_head;
153 int len;
154 struct hd_struct __rcu *last_lookup;
155 struct hd_struct __rcu *part[];
156 };
157
158 struct disk_events;
159 struct badblocks;
160
161 #if defined(CONFIG_BLK_DEV_INTEGRITY)
162
163 struct blk_integrity {
164 const struct blk_integrity_profile *profile;
165 unsigned char flags;
166 unsigned char tuple_size;
167 unsigned char interval_exp;
168 unsigned char tag_size;
169 };
170
171 #endif /* CONFIG_BLK_DEV_INTEGRITY */
172
173 struct gendisk {
174 /* major, first_minor and minors are input parameters only,
175 * don't use directly. Use disk_devt() and disk_max_parts().
176 */
177 int major; /* major number of driver */
178 int first_minor;
179 int minors; /* maximum number of minors, =1 for
180 * disks that can't be partitioned. */
181
182 char disk_name[DISK_NAME_LEN]; /* name of major driver */
183 char *(*devnode)(struct gendisk *gd, umode_t *mode);
184
185 unsigned int events; /* supported events */
186 unsigned int async_events; /* async events, subset of all */
187
188 /* Array of pointers to partitions indexed by partno.
189 * Protected with matching bdev lock but stat and other
190 * non-critical accesses use RCU. Always access through
191 * helpers.
192 */
193 struct disk_part_tbl __rcu *part_tbl;
194 struct hd_struct part0;
195
196 const struct block_device_operations *fops;
197 struct request_queue *queue;
198 void *private_data;
199
200 int flags;
201 struct kobject *slave_dir;
202
203 struct timer_rand_state *random;
204 atomic_t sync_io; /* RAID */
205 struct disk_events *ev;
206 #ifdef CONFIG_BLK_DEV_INTEGRITY
207 struct kobject integrity_kobj;
208 #endif /* CONFIG_BLK_DEV_INTEGRITY */
209 int node_id;
210 struct badblocks *bb;
211 struct lockdep_map lockdep_map;
212 };
213
214 static inline struct gendisk *part_to_disk(struct hd_struct *part)
215 {
216 if (likely(part)) {
217 if (part->partno)
218 return dev_to_disk(part_to_dev(part)->parent);
219 else
220 return dev_to_disk(part_to_dev(part));
221 }
222 return NULL;
223 }
224
225 static inline int disk_max_parts(struct gendisk *disk)
226 {
227 if (disk->flags & GENHD_FL_EXT_DEVT)
228 return DISK_MAX_PARTS;
229 return disk->minors;
230 }
231
232 static inline bool disk_part_scan_enabled(struct gendisk *disk)
233 {
234 return disk_max_parts(disk) > 1 &&
235 !(disk->flags & GENHD_FL_NO_PART_SCAN);
236 }
237
238 static inline dev_t disk_devt(struct gendisk *disk)
239 {
240 return MKDEV(disk->major, disk->first_minor);
241 }
242
243 static inline dev_t part_devt(struct hd_struct *part)
244 {
245 return part_to_dev(part)->devt;
246 }
247
248 extern struct hd_struct *__disk_get_part(struct gendisk *disk, int partno);
249 extern struct hd_struct *disk_get_part(struct gendisk *disk, int partno);
250
251 static inline void disk_put_part(struct hd_struct *part)
252 {
253 if (likely(part))
254 put_device(part_to_dev(part));
255 }
256
257 /*
258 * Smarter partition iterator without context limits.
259 */
260 #define DISK_PITER_REVERSE (1 << 0) /* iterate in the reverse direction */
261 #define DISK_PITER_INCL_EMPTY (1 << 1) /* include 0-sized parts */
262 #define DISK_PITER_INCL_PART0 (1 << 2) /* include partition 0 */
263 #define DISK_PITER_INCL_EMPTY_PART0 (1 << 3) /* include empty partition 0 */
264
265 struct disk_part_iter {
266 struct gendisk *disk;
267 struct hd_struct *part;
268 int idx;
269 unsigned int flags;
270 };
271
272 extern void disk_part_iter_init(struct disk_part_iter *piter,
273 struct gendisk *disk, unsigned int flags);
274 extern struct hd_struct *disk_part_iter_next(struct disk_part_iter *piter);
275 extern void disk_part_iter_exit(struct disk_part_iter *piter);
276
277 extern struct hd_struct *disk_map_sector_rcu(struct gendisk *disk,
278 sector_t sector);
279
280 /*
281 * Macros to operate on percpu disk statistics:
282 *
283 * {disk|part|all}_stat_{add|sub|inc|dec}() modify the stat counters
284 * and should be called between disk_stat_lock() and
285 * disk_stat_unlock().
286 *
287 * part_stat_read() can be called at any time.
288 *
289 * part_stat_{add|set_all}() and {init|free}_part_stats are for
290 * internal use only.
291 */
292 #ifdef CONFIG_SMP
293 #define part_stat_lock() ({ rcu_read_lock(); get_cpu(); })
294 #define part_stat_unlock() do { put_cpu(); rcu_read_unlock(); } while (0)
295
296 #define __part_stat_add(cpu, part, field, addnd) \
297 (per_cpu_ptr((part)->dkstats, (cpu))->field += (addnd))
298
299 #define part_stat_read(part, field) \
300 ({ \
301 typeof((part)->dkstats->field) res = 0; \
302 unsigned int _cpu; \
303 for_each_possible_cpu(_cpu) \
304 res += per_cpu_ptr((part)->dkstats, _cpu)->field; \
305 res; \
306 })
307
308 static inline void part_stat_set_all(struct hd_struct *part, int value)
309 {
310 int i;
311
312 for_each_possible_cpu(i)
313 memset(per_cpu_ptr(part->dkstats, i), value,
314 sizeof(struct disk_stats));
315 }
316
317 static inline int init_part_stats(struct hd_struct *part)
318 {
319 part->dkstats = alloc_percpu(struct disk_stats);
320 if (!part->dkstats)
321 return 0;
322 return 1;
323 }
324
325 static inline void free_part_stats(struct hd_struct *part)
326 {
327 free_percpu(part->dkstats);
328 }
329
330 #else /* !CONFIG_SMP */
331 #define part_stat_lock() ({ rcu_read_lock(); 0; })
332 #define part_stat_unlock() rcu_read_unlock()
333
334 #define __part_stat_add(cpu, part, field, addnd) \
335 ((part)->dkstats.field += addnd)
336
337 #define part_stat_read(part, field) ((part)->dkstats.field)
338
339 static inline void part_stat_set_all(struct hd_struct *part, int value)
340 {
341 memset(&part->dkstats, value, sizeof(struct disk_stats));
342 }
343
344 static inline int init_part_stats(struct hd_struct *part)
345 {
346 return 1;
347 }
348
349 static inline void free_part_stats(struct hd_struct *part)
350 {
351 }
352
353 #endif /* CONFIG_SMP */
354
355 #define part_stat_add(cpu, part, field, addnd) do { \
356 __part_stat_add((cpu), (part), field, addnd); \
357 if ((part)->partno) \
358 __part_stat_add((cpu), &part_to_disk((part))->part0, \
359 field, addnd); \
360 } while (0)
361
362 #define part_stat_dec(cpu, gendiskp, field) \
363 part_stat_add(cpu, gendiskp, field, -1)
364 #define part_stat_inc(cpu, gendiskp, field) \
365 part_stat_add(cpu, gendiskp, field, 1)
366 #define part_stat_sub(cpu, gendiskp, field, subnd) \
367 part_stat_add(cpu, gendiskp, field, -subnd)
368
369 void part_in_flight(struct request_queue *q, struct hd_struct *part,
370 unsigned int inflight[2]);
371 void part_in_flight_rw(struct request_queue *q, struct hd_struct *part,
372 unsigned int inflight[2]);
373 void part_dec_in_flight(struct request_queue *q, struct hd_struct *part,
374 int rw);
375 void part_inc_in_flight(struct request_queue *q, struct hd_struct *part,
376 int rw);
377
378 static inline struct partition_meta_info *alloc_part_info(struct gendisk *disk)
379 {
380 if (disk)
381 return kzalloc_node(sizeof(struct partition_meta_info),
382 GFP_KERNEL, disk->node_id);
383 return kzalloc(sizeof(struct partition_meta_info), GFP_KERNEL);
384 }
385
386 static inline void free_part_info(struct hd_struct *part)
387 {
388 kfree(part->info);
389 }
390
391 /* block/blk-core.c */
392 extern void part_round_stats(struct request_queue *q, int cpu, struct hd_struct *part);
393
394 /* block/genhd.c */
395 extern void device_add_disk(struct device *parent, struct gendisk *disk);
396 static inline void add_disk(struct gendisk *disk)
397 {
398 device_add_disk(NULL, disk);
399 }
400
401 extern void del_gendisk(struct gendisk *gp);
402 extern struct gendisk *get_gendisk(dev_t dev, int *partno);
403 extern struct block_device *bdget_disk(struct gendisk *disk, int partno);
404
405 extern void set_device_ro(struct block_device *bdev, int flag);
406 extern void set_disk_ro(struct gendisk *disk, int flag);
407
408 static inline int get_disk_ro(struct gendisk *disk)
409 {
410 return disk->part0.policy;
411 }
412
413 extern void disk_block_events(struct gendisk *disk);
414 extern void disk_unblock_events(struct gendisk *disk);
415 extern void disk_flush_events(struct gendisk *disk, unsigned int mask);
416 extern unsigned int disk_clear_events(struct gendisk *disk, unsigned int mask);
417
418 /* drivers/char/random.c */
419 extern void add_disk_randomness(struct gendisk *disk) __latent_entropy;
420 extern void rand_initialize_disk(struct gendisk *disk);
421
422 static inline sector_t get_start_sect(struct block_device *bdev)
423 {
424 return bdev->bd_part->start_sect;
425 }
426 static inline sector_t get_capacity(struct gendisk *disk)
427 {
428 return disk->part0.nr_sects;
429 }
430 static inline void set_capacity(struct gendisk *disk, sector_t size)
431 {
432 disk->part0.nr_sects = size;
433 }
434
435 #ifdef CONFIG_SOLARIS_X86_PARTITION
436
437 #define SOLARIS_X86_NUMSLICE 16
438 #define SOLARIS_X86_VTOC_SANE (0x600DDEEEUL)
439
440 struct solaris_x86_slice {
441 __le16 s_tag; /* ID tag of partition */
442 __le16 s_flag; /* permission flags */
443 __le32 s_start; /* start sector no of partition */
444 __le32 s_size; /* # of blocks in partition */
445 };
446
447 struct solaris_x86_vtoc {
448 unsigned int v_bootinfo[3]; /* info needed by mboot (unsupported) */
449 __le32 v_sanity; /* to verify vtoc sanity */
450 __le32 v_version; /* layout version */
451 char v_volume[8]; /* volume name */
452 __le16 v_sectorsz; /* sector size in bytes */
453 __le16 v_nparts; /* number of partitions */
454 unsigned int v_reserved[10]; /* free space */
455 struct solaris_x86_slice
456 v_slice[SOLARIS_X86_NUMSLICE]; /* slice headers */
457 unsigned int timestamp[SOLARIS_X86_NUMSLICE]; /* timestamp (unsupported) */
458 char v_asciilabel[128]; /* for compatibility */
459 };
460
461 #endif /* CONFIG_SOLARIS_X86_PARTITION */
462
463 #ifdef CONFIG_BSD_DISKLABEL
464 /*
465 * BSD disklabel support by Yossi Gottlieb <yogo@math.tau.ac.il>
466 * updated by Marc Espie <Marc.Espie@openbsd.org>
467 */
468
469 /* check against BSD src/sys/sys/disklabel.h for consistency */
470
471 #define BSD_DISKMAGIC (0x82564557UL) /* The disk magic number */
472 #define BSD_MAXPARTITIONS 16
473 #define OPENBSD_MAXPARTITIONS 16
474 #define BSD_FS_UNUSED 0 /* disklabel unused partition entry ID */
475 struct bsd_disklabel {
476 __le32 d_magic; /* the magic number */
477 __s16 d_type; /* drive type */
478 __s16 d_subtype; /* controller/d_type specific */
479 char d_typename[16]; /* type name, e.g. "eagle" */
480 char d_packname[16]; /* pack identifier */
481 __u32 d_secsize; /* # of bytes per sector */
482 __u32 d_nsectors; /* # of data sectors per track */
483 __u32 d_ntracks; /* # of tracks per cylinder */
484 __u32 d_ncylinders; /* # of data cylinders per unit */
485 __u32 d_secpercyl; /* # of data sectors per cylinder */
486 __u32 d_secperunit; /* # of data sectors per unit */
487 __u16 d_sparespertrack; /* # of spare sectors per track */
488 __u16 d_sparespercyl; /* # of spare sectors per cylinder */
489 __u32 d_acylinders; /* # of alt. cylinders per unit */
490 __u16 d_rpm; /* rotational speed */
491 __u16 d_interleave; /* hardware sector interleave */
492 __u16 d_trackskew; /* sector 0 skew, per track */
493 __u16 d_cylskew; /* sector 0 skew, per cylinder */
494 __u32 d_headswitch; /* head switch time, usec */
495 __u32 d_trkseek; /* track-to-track seek, usec */
496 __u32 d_flags; /* generic flags */
497 #define NDDATA 5
498 __u32 d_drivedata[NDDATA]; /* drive-type specific information */
499 #define NSPARE 5
500 __u32 d_spare[NSPARE]; /* reserved for future use */
501 __le32 d_magic2; /* the magic number (again) */
502 __le16 d_checksum; /* xor of data incl. partitions */
503
504 /* filesystem and partition information: */
505 __le16 d_npartitions; /* number of partitions in following */
506 __le32 d_bbsize; /* size of boot area at sn0, bytes */
507 __le32 d_sbsize; /* max size of fs superblock, bytes */
508 struct bsd_partition { /* the partition table */
509 __le32 p_size; /* number of sectors in partition */
510 __le32 p_offset; /* starting sector */
511 __le32 p_fsize; /* filesystem basic fragment size */
512 __u8 p_fstype; /* filesystem type, see below */
513 __u8 p_frag; /* filesystem fragments per block */
514 __le16 p_cpg; /* filesystem cylinders per group */
515 } d_partitions[BSD_MAXPARTITIONS]; /* actually may be more */
516 };
517
518 #endif /* CONFIG_BSD_DISKLABEL */
519
520 #ifdef CONFIG_UNIXWARE_DISKLABEL
521 /*
522 * Unixware slices support by Andrzej Krzysztofowicz <ankry@mif.pg.gda.pl>
523 * and Krzysztof G. Baranowski <kgb@knm.org.pl>
524 */
525
526 #define UNIXWARE_DISKMAGIC (0xCA5E600DUL) /* The disk magic number */
527 #define UNIXWARE_DISKMAGIC2 (0x600DDEEEUL) /* The slice table magic nr */
528 #define UNIXWARE_NUMSLICE 16
529 #define UNIXWARE_FS_UNUSED 0 /* Unused slice entry ID */
530
531 struct unixware_slice {
532 __le16 s_label; /* label */
533 __le16 s_flags; /* permission flags */
534 __le32 start_sect; /* starting sector */
535 __le32 nr_sects; /* number of sectors in slice */
536 };
537
538 struct unixware_disklabel {
539 __le32 d_type; /* drive type */
540 __le32 d_magic; /* the magic number */
541 __le32 d_version; /* version number */
542 char d_serial[12]; /* serial number of the device */
543 __le32 d_ncylinders; /* # of data cylinders per device */
544 __le32 d_ntracks; /* # of tracks per cylinder */
545 __le32 d_nsectors; /* # of data sectors per track */
546 __le32 d_secsize; /* # of bytes per sector */
547 __le32 d_part_start; /* # of first sector of this partition */
548 __le32 d_unknown1[12]; /* ? */
549 __le32 d_alt_tbl; /* byte offset of alternate table */
550 __le32 d_alt_len; /* byte length of alternate table */
551 __le32 d_phys_cyl; /* # of physical cylinders per device */
552 __le32 d_phys_trk; /* # of physical tracks per cylinder */
553 __le32 d_phys_sec; /* # of physical sectors per track */
554 __le32 d_phys_bytes; /* # of physical bytes per sector */
555 __le32 d_unknown2; /* ? */
556 __le32 d_unknown3; /* ? */
557 __le32 d_pad[8]; /* pad */
558
559 struct unixware_vtoc {
560 __le32 v_magic; /* the magic number */
561 __le32 v_version; /* version number */
562 char v_name[8]; /* volume name */
563 __le16 v_nslices; /* # of slices */
564 __le16 v_unknown1; /* ? */
565 __le32 v_reserved[10]; /* reserved */
566 struct unixware_slice
567 v_slice[UNIXWARE_NUMSLICE]; /* slice headers */
568 } vtoc;
569
570 }; /* 408 */
571
572 #endif /* CONFIG_UNIXWARE_DISKLABEL */
573
574 #ifdef CONFIG_MINIX_SUBPARTITION
575 # define MINIX_NR_SUBPARTITIONS 4
576 #endif /* CONFIG_MINIX_SUBPARTITION */
577
578 #define ADDPART_FLAG_NONE 0
579 #define ADDPART_FLAG_RAID 1
580 #define ADDPART_FLAG_WHOLEDISK 2
581
582 extern int blk_alloc_devt(struct hd_struct *part, dev_t *devt);
583 extern void blk_free_devt(dev_t devt);
584 extern void blk_invalidate_devt(dev_t devt);
585 extern dev_t blk_lookup_devt(const char *name, int partno);
586 extern char *disk_name (struct gendisk *hd, int partno, char *buf);
587
588 extern int disk_expand_part_tbl(struct gendisk *disk, int target);
589 extern int rescan_partitions(struct gendisk *disk, struct block_device *bdev);
590 extern int invalidate_partitions(struct gendisk *disk, struct block_device *bdev);
591 extern struct hd_struct * __must_check add_partition(struct gendisk *disk,
592 int partno, sector_t start,
593 sector_t len, int flags,
594 struct partition_meta_info
595 *info);
596 extern void __delete_partition(struct percpu_ref *);
597 extern void delete_partition(struct gendisk *, int);
598 extern void printk_all_partitions(void);
599
600 extern struct gendisk *__alloc_disk_node(int minors, int node_id);
601 extern struct kobject *get_disk(struct gendisk *disk);
602 extern void put_disk(struct gendisk *disk);
603 extern void blk_register_region(dev_t devt, unsigned long range,
604 struct module *module,
605 struct kobject *(*probe)(dev_t, int *, void *),
606 int (*lock)(dev_t, void *),
607 void *data);
608 extern void blk_unregister_region(dev_t devt, unsigned long range);
609
610 extern ssize_t part_size_show(struct device *dev,
611 struct device_attribute *attr, char *buf);
612 extern ssize_t part_stat_show(struct device *dev,
613 struct device_attribute *attr, char *buf);
614 extern ssize_t part_inflight_show(struct device *dev,
615 struct device_attribute *attr, char *buf);
616 #ifdef CONFIG_FAIL_MAKE_REQUEST
617 extern ssize_t part_fail_show(struct device *dev,
618 struct device_attribute *attr, char *buf);
619 extern ssize_t part_fail_store(struct device *dev,
620 struct device_attribute *attr,
621 const char *buf, size_t count);
622 #endif /* CONFIG_FAIL_MAKE_REQUEST */
623
624 #define alloc_disk_node(minors, node_id) \
625 ({ \
626 static struct lock_class_key __key; \
627 const char *__name; \
628 struct gendisk *__disk; \
629 \
630 __name = "(gendisk_completion)"#minors"("#node_id")"; \
631 \
632 __disk = __alloc_disk_node(minors, node_id); \
633 \
634 if (__disk) \
635 lockdep_init_map(&__disk->lockdep_map, __name, &__key, 0); \
636 \
637 __disk; \
638 })
639
640 #define alloc_disk(minors) alloc_disk_node(minors, NUMA_NO_NODE)
641
642 static inline int hd_ref_init(struct hd_struct *part)
643 {
644 if (percpu_ref_init(&part->ref, __delete_partition, 0,
645 GFP_KERNEL))
646 return -ENOMEM;
647 return 0;
648 }
649
650 static inline void hd_struct_get(struct hd_struct *part)
651 {
652 percpu_ref_get(&part->ref);
653 }
654
655 static inline int hd_struct_try_get(struct hd_struct *part)
656 {
657 return percpu_ref_tryget_live(&part->ref);
658 }
659
660 static inline void hd_struct_put(struct hd_struct *part)
661 {
662 percpu_ref_put(&part->ref);
663 }
664
665 static inline void hd_struct_kill(struct hd_struct *part)
666 {
667 percpu_ref_kill(&part->ref);
668 }
669
670 static inline void hd_free_part(struct hd_struct *part)
671 {
672 free_part_stats(part);
673 free_part_info(part);
674 percpu_ref_exit(&part->ref);
675 }
676
677 /*
678 * Any access of part->nr_sects which is not protected by partition
679 * bd_mutex or gendisk bdev bd_mutex, should be done using this
680 * accessor function.
681 *
682 * Code written along the lines of i_size_read() and i_size_write().
683 * CONFIG_PREEMPT case optimizes the case of UP kernel with preemption
684 * on.
685 */
686 static inline sector_t part_nr_sects_read(struct hd_struct *part)
687 {
688 #if BITS_PER_LONG==32 && defined(CONFIG_LBDAF) && defined(CONFIG_SMP)
689 sector_t nr_sects;
690 unsigned seq;
691 do {
692 seq = read_seqcount_begin(&part->nr_sects_seq);
693 nr_sects = part->nr_sects;
694 } while (read_seqcount_retry(&part->nr_sects_seq, seq));
695 return nr_sects;
696 #elif BITS_PER_LONG==32 && defined(CONFIG_LBDAF) && defined(CONFIG_PREEMPT)
697 sector_t nr_sects;
698
699 preempt_disable();
700 nr_sects = part->nr_sects;
701 preempt_enable();
702 return nr_sects;
703 #else
704 return part->nr_sects;
705 #endif
706 }
707
708 /*
709 * Should be called with mutex lock held (typically bd_mutex) of partition
710 * to provide mutual exlusion among writers otherwise seqcount might be
711 * left in wrong state leaving the readers spinning infinitely.
712 */
713 static inline void part_nr_sects_write(struct hd_struct *part, sector_t size)
714 {
715 #if BITS_PER_LONG==32 && defined(CONFIG_LBDAF) && defined(CONFIG_SMP)
716 write_seqcount_begin(&part->nr_sects_seq);
717 part->nr_sects = size;
718 write_seqcount_end(&part->nr_sects_seq);
719 #elif BITS_PER_LONG==32 && defined(CONFIG_LBDAF) && defined(CONFIG_PREEMPT)
720 preempt_disable();
721 part->nr_sects = size;
722 preempt_enable();
723 #else
724 part->nr_sects = size;
725 #endif
726 }
727
728 #if defined(CONFIG_BLK_DEV_INTEGRITY)
729 extern void blk_integrity_add(struct gendisk *);
730 extern void blk_integrity_del(struct gendisk *);
731 #else /* CONFIG_BLK_DEV_INTEGRITY */
732 static inline void blk_integrity_add(struct gendisk *disk) { }
733 static inline void blk_integrity_del(struct gendisk *disk) { }
734 #endif /* CONFIG_BLK_DEV_INTEGRITY */
735
736 #else /* CONFIG_BLOCK */
737
738 static inline void printk_all_partitions(void) { }
739
740 static inline dev_t blk_lookup_devt(const char *name, int partno)
741 {
742 dev_t devt = MKDEV(0, 0);
743 return devt;
744 }
745 #endif /* CONFIG_BLOCK */
746
747 #endif /* _LINUX_GENHD_H */