License cleanup: add SPDX GPL-2.0 license identifier to files with no license
[linux-2.6-block.git] / include / linux / blk_types.h
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b2441318 1/* SPDX-License-Identifier: GPL-2.0 */
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2/*
3 * Block data types and constants. Directly include this file only to
4 * break include dependency loop.
5 */
6#ifndef __LINUX_BLK_TYPES_H
7#define __LINUX_BLK_TYPES_H
8
7cc01581 9#include <linux/types.h>
0781e79e 10#include <linux/bvec.h>
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11
12struct bio_set;
13struct bio;
14struct bio_integrity_payload;
15struct page;
16struct block_device;
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17struct io_context;
18struct cgroup_subsys_state;
4246a0b6 19typedef void (bio_end_io_t) (struct bio *);
7cc01581 20
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21/*
22 * Block error status values. See block/blk-core:blk_errors for the details.
23 */
24typedef u8 __bitwise blk_status_t;
25#define BLK_STS_OK 0
26#define BLK_STS_NOTSUPP ((__force blk_status_t)1)
27#define BLK_STS_TIMEOUT ((__force blk_status_t)2)
28#define BLK_STS_NOSPC ((__force blk_status_t)3)
29#define BLK_STS_TRANSPORT ((__force blk_status_t)4)
30#define BLK_STS_TARGET ((__force blk_status_t)5)
31#define BLK_STS_NEXUS ((__force blk_status_t)6)
32#define BLK_STS_MEDIUM ((__force blk_status_t)7)
33#define BLK_STS_PROTECTION ((__force blk_status_t)8)
34#define BLK_STS_RESOURCE ((__force blk_status_t)9)
35#define BLK_STS_IOERR ((__force blk_status_t)10)
36
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37/* hack for device mapper, don't use elsewhere: */
38#define BLK_STS_DM_REQUEUE ((__force blk_status_t)11)
39
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40#define BLK_STS_AGAIN ((__force blk_status_t)12)
41
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42struct blk_issue_stat {
43 u64 stat;
44};
45
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46/*
47 * main unit of I/O for the block layer and lower layers (ie drivers and
48 * stacking drivers)
49 */
50struct bio {
7cc01581 51 struct bio *bi_next; /* request queue link */
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52 struct gendisk *bi_disk;
53 u8 bi_partno;
4e4cbee9 54 blk_status_t bi_status;
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55 unsigned int bi_opf; /* bottom bits req flags,
56 * top bits REQ_OP. Use
57 * accessors.
4e1b2d52 58 */
dbde775c 59 unsigned short bi_flags; /* status, etc and bvec pool number */
43b62ce3 60 unsigned short bi_ioprio;
cb6934f8 61 unsigned short bi_write_hint;
7cc01581 62
4f024f37 63 struct bvec_iter bi_iter;
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64
65 /* Number of segments in this BIO after
66 * physical address coalescing is performed.
67 */
68 unsigned int bi_phys_segments;
69
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70 /*
71 * To keep track of the max segment size, we account for the
72 * sizes of the first and last mergeable segments in this bio.
73 */
74 unsigned int bi_seg_front_size;
75 unsigned int bi_seg_back_size;
76
c4cf5261 77 atomic_t __bi_remaining;
196d38bc 78
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79 bio_end_io_t *bi_end_io;
80
81 void *bi_private;
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82#ifdef CONFIG_BLK_CGROUP
83 /*
84 * Optional ioc and css associated with this bio. Put on bio
85 * release. Read comment on top of bio_associate_current().
86 */
87 struct io_context *bi_ioc;
88 struct cgroup_subsys_state *bi_css;
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89#ifdef CONFIG_BLK_DEV_THROTTLING_LOW
90 void *bi_cg_private;
b9147dd1 91 struct blk_issue_stat bi_issue_stat;
9e234eea 92#endif
852c788f 93#endif
180b2f95 94 union {
7cc01581 95#if defined(CONFIG_BLK_DEV_INTEGRITY)
180b2f95 96 struct bio_integrity_payload *bi_integrity; /* data integrity */
7cc01581 97#endif
180b2f95 98 };
7cc01581 99
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100 unsigned short bi_vcnt; /* how many bio_vec's */
101
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102 /*
103 * Everything starting with bi_max_vecs will be preserved by bio_reset()
104 */
105
4f024f37 106 unsigned short bi_max_vecs; /* max bvl_vecs we can hold */
f44b48c7 107
dac56212 108 atomic_t __bi_cnt; /* pin count */
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109
110 struct bio_vec *bi_io_vec; /* the actual vec list */
111
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112 struct bio_set *bi_pool;
113
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114 /*
115 * We can inline a number of vecs at the end of the bio, to avoid
116 * double allocations for a small number of bio_vecs. This member
117 * MUST obviously be kept at the very end of the bio.
118 */
119 struct bio_vec bi_inline_vecs[0];
120};
121
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122#define BIO_RESET_BYTES offsetof(struct bio, bi_max_vecs)
123
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124/*
125 * bio flags
126 */
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127#define BIO_SEG_VALID 1 /* bi_phys_segments valid */
128#define BIO_CLONED 2 /* doesn't own data */
129#define BIO_BOUNCED 3 /* bio is a bounce bio */
130#define BIO_USER_MAPPED 4 /* contains user pages */
131#define BIO_NULL_MAPPED 5 /* contains invalid user pages */
132#define BIO_QUIET 6 /* Make BIO Quiet */
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133#define BIO_CHAIN 7 /* chained bio, ->bi_remaining in effect */
134#define BIO_REFFED 8 /* bio has elevated ->bi_cnt */
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135#define BIO_THROTTLED 9 /* This bio has already been subjected to
136 * throttling rules. Don't do it again. */
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137#define BIO_TRACE_COMPLETION 10 /* bio_endio() should trace the final completion
138 * of this bio. */
dbde775c 139/* See BVEC_POOL_OFFSET below before adding new flags */
f44b48c7 140
7cc01581 141/*
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142 * We support 6 different bvec pools, the last one is magic in that it
143 * is backed by a mempool.
7cc01581 144 */
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145#define BVEC_POOL_NR 6
146#define BVEC_POOL_MAX (BVEC_POOL_NR - 1)
147
148/*
dbde775c 149 * Top 3 bits of bio flags indicate the pool the bvecs came from. We add
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150 * 1 to the actual index so that 0 indicates that there are no bvecs to be
151 * freed.
152 */
dbde775c 153#define BVEC_POOL_BITS (3)
c0acf12a 154#define BVEC_POOL_OFFSET (16 - BVEC_POOL_BITS)
ed996a52 155#define BVEC_POOL_IDX(bio) ((bio)->bi_flags >> BVEC_POOL_OFFSET)
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156#if (1<< BVEC_POOL_BITS) < (BVEC_POOL_NR+1)
157# error "BVEC_POOL_BITS is too small"
158#endif
159
160/*
161 * Flags starting here get preserved by bio_reset() - this includes
162 * only BVEC_POOL_IDX()
163 */
164#define BIO_RESET_BITS BVEC_POOL_OFFSET
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165
166/*
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167 * Operations and flags common to the bio and request structures.
168 * We use 8 bits for encoding the operation, and the remaining 24 for flags.
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169 *
170 * The least significant bit of the operation number indicates the data
171 * transfer direction:
172 *
173 * - if the least significant bit is set transfers are TO the device
174 * - if the least significant bit is not set transfers are FROM the device
175 *
176 * If a operation does not transfer data the least significant bit has no
177 * meaning.
7cc01581 178 */
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179#define REQ_OP_BITS 8
180#define REQ_OP_MASK ((1 << REQ_OP_BITS) - 1)
181#define REQ_FLAG_BITS 24
182
183enum req_opf {
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184 /* read sectors from the device */
185 REQ_OP_READ = 0,
186 /* write sectors to the device */
187 REQ_OP_WRITE = 1,
188 /* flush the volatile write cache */
189 REQ_OP_FLUSH = 2,
190 /* discard sectors */
191 REQ_OP_DISCARD = 3,
192 /* get zone information */
193 REQ_OP_ZONE_REPORT = 4,
194 /* securely erase sectors */
195 REQ_OP_SECURE_ERASE = 5,
196 /* seset a zone write pointer */
197 REQ_OP_ZONE_RESET = 6,
198 /* write the same sector many times */
199 REQ_OP_WRITE_SAME = 7,
a6f0788e 200 /* write the zero filled sector many times */
1d62ac13 201 REQ_OP_WRITE_ZEROES = 9,
ef295ecf 202
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203 /* SCSI passthrough using struct scsi_request */
204 REQ_OP_SCSI_IN = 32,
205 REQ_OP_SCSI_OUT = 33,
206 /* Driver private requests */
207 REQ_OP_DRV_IN = 34,
208 REQ_OP_DRV_OUT = 35,
209
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210 REQ_OP_LAST,
211};
212
213enum req_flag_bits {
214 __REQ_FAILFAST_DEV = /* no driver retries of device errors */
215 REQ_OP_BITS,
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216 __REQ_FAILFAST_TRANSPORT, /* no driver retries of transport errors */
217 __REQ_FAILFAST_DRIVER, /* no driver retries of driver errors */
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218 __REQ_SYNC, /* request is sync (sync write or read) */
219 __REQ_META, /* metadata io request */
65299a3b 220 __REQ_PRIO, /* boost priority in cfq */
bd1c1c21 221 __REQ_NOMERGE, /* don't touch this for merging */
a2b80967 222 __REQ_IDLE, /* anticipate more IO after this one */
180b2f95 223 __REQ_INTEGRITY, /* I/O includes block integrity payload */
8e4bf844 224 __REQ_FUA, /* forced unit access */
28a8f0d3 225 __REQ_PREFLUSH, /* request for cache flush */
188bd2b1 226 __REQ_RAHEAD, /* read ahead, can fail anytime */
1d796d6a 227 __REQ_BACKGROUND, /* background IO */
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228
229 /* command specific flags for REQ_OP_WRITE_ZEROES: */
230 __REQ_NOUNMAP, /* do not free blocks when zeroing */
231
03a07c92 232 __REQ_NOWAIT, /* Don't wait if request will block */
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233 __REQ_NR_BITS, /* stops here */
234};
235
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236#define REQ_FAILFAST_DEV (1ULL << __REQ_FAILFAST_DEV)
237#define REQ_FAILFAST_TRANSPORT (1ULL << __REQ_FAILFAST_TRANSPORT)
238#define REQ_FAILFAST_DRIVER (1ULL << __REQ_FAILFAST_DRIVER)
239#define REQ_SYNC (1ULL << __REQ_SYNC)
240#define REQ_META (1ULL << __REQ_META)
241#define REQ_PRIO (1ULL << __REQ_PRIO)
ef295ecf 242#define REQ_NOMERGE (1ULL << __REQ_NOMERGE)
a2b80967 243#define REQ_IDLE (1ULL << __REQ_IDLE)
180b2f95 244#define REQ_INTEGRITY (1ULL << __REQ_INTEGRITY)
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245#define REQ_FUA (1ULL << __REQ_FUA)
246#define REQ_PREFLUSH (1ULL << __REQ_PREFLUSH)
247#define REQ_RAHEAD (1ULL << __REQ_RAHEAD)
1d796d6a 248#define REQ_BACKGROUND (1ULL << __REQ_BACKGROUND)
7cc01581 249
d928be9f 250#define REQ_NOUNMAP (1ULL << __REQ_NOUNMAP)
03a07c92 251#define REQ_NOWAIT (1ULL << __REQ_NOWAIT)
d928be9f 252
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253#define REQ_FAILFAST_MASK \
254 (REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT | REQ_FAILFAST_DRIVER)
7cc01581 255
e2a60da7 256#define REQ_NOMERGE_FLAGS \
e8064021 257 (REQ_NOMERGE | REQ_PREFLUSH | REQ_FUA)
e2a60da7 258
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259#define bio_op(bio) \
260 ((bio)->bi_opf & REQ_OP_MASK)
261#define req_op(req) \
262 ((req)->cmd_flags & REQ_OP_MASK)
7cc01581 263
ef295ecf 264/* obsolete, don't use in new code */
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265static inline void bio_set_op_attrs(struct bio *bio, unsigned op,
266 unsigned op_flags)
267{
268 bio->bi_opf = op | op_flags;
269}
c11f0c0b 270
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271static inline bool op_is_write(unsigned int op)
272{
273 return (op & 1);
274}
275
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276/*
277 * Check if the bio or request is one that needs special treatment in the
278 * flush state machine.
279 */
280static inline bool op_is_flush(unsigned int op)
281{
282 return op & (REQ_FUA | REQ_PREFLUSH);
283}
284
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285/*
286 * Reads are always treated as synchronous, as are requests with the FUA or
287 * PREFLUSH flag. Other operations may be marked as synchronous using the
288 * REQ_SYNC flag.
289 */
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290static inline bool op_is_sync(unsigned int op)
291{
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292 return (op & REQ_OP_MASK) == REQ_OP_READ ||
293 (op & (REQ_SYNC | REQ_FUA | REQ_PREFLUSH));
ef295ecf 294}
c11f0c0b 295
dece1635 296typedef unsigned int blk_qc_t;
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297#define BLK_QC_T_NONE -1U
298#define BLK_QC_T_SHIFT 16
299#define BLK_QC_T_INTERNAL (1U << 31)
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300
301static inline bool blk_qc_t_valid(blk_qc_t cookie)
302{
303 return cookie != BLK_QC_T_NONE;
304}
305
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306static inline blk_qc_t blk_tag_to_qc_t(unsigned int tag, unsigned int queue_num,
307 bool internal)
dece1635 308{
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309 blk_qc_t ret = tag | (queue_num << BLK_QC_T_SHIFT);
310
311 if (internal)
312 ret |= BLK_QC_T_INTERNAL;
313
314 return ret;
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315}
316
317static inline unsigned int blk_qc_t_to_queue_num(blk_qc_t cookie)
318{
fd2d3326 319 return (cookie & ~BLK_QC_T_INTERNAL) >> BLK_QC_T_SHIFT;
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320}
321
322static inline unsigned int blk_qc_t_to_tag(blk_qc_t cookie)
323{
e3a7a3bf 324 return cookie & ((1u << BLK_QC_T_SHIFT) - 1);
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325}
326
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327static inline bool blk_qc_t_is_internal(blk_qc_t cookie)
328{
329 return (cookie & BLK_QC_T_INTERNAL) != 0;
330}
331
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332struct blk_rq_stat {
333 s64 mean;
334 u64 min;
335 u64 max;
336 s32 nr_samples;
337 s32 nr_batch;
338 u64 batch;
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339};
340
7cc01581 341#endif /* __LINUX_BLK_TYPES_H */