engines/exec: Code cleanup to remove leaks
[fio.git] / zbd.h
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CommitLineData
1/*
2 * Copyright (C) 2018 Western Digital Corporation or its affiliates.
3 *
4 * This file is released under the GPL.
5 */
6
7#ifndef FIO_ZBD_H
8#define FIO_ZBD_H
9
10#include "io_u.h"
11#include "ioengines.h"
12#include "oslib/blkzoned.h"
13#include "zbd_types.h"
14
15struct fio_file;
16
17enum io_u_action {
18 io_u_accept = 0,
19 io_u_eof = 1,
20};
21
22/**
23 * struct fio_zone_info - information about a single ZBD zone
24 * @start: zone start location (bytes)
25 * @wp: zone write pointer location (bytes)
26 * @capacity: maximum size usable from the start of a zone (bytes)
27 * @verify_block: number of blocks that have been verified for this zone
28 * @mutex: protects the modifiable members in this structure
29 * @type: zone type (BLK_ZONE_TYPE_*)
30 * @cond: zone state (BLK_ZONE_COND_*)
31 * @has_wp: whether or not this zone can have a valid write pointer
32 * @open: whether or not this zone is currently open. Only relevant if
33 * max_open_zones > 0.
34 * @reset_zone: whether or not this zone should be reset before writing to it
35 */
36struct fio_zone_info {
37 pthread_mutex_t mutex;
38 uint64_t start;
39 uint64_t wp;
40 uint64_t capacity;
41 uint32_t verify_block;
42 enum zbd_zone_type type:2;
43 enum zbd_zone_cond cond:4;
44 unsigned int has_wp:1;
45 unsigned int open:1;
46 unsigned int reset_zone:1;
47};
48
49/**
50 * zoned_block_device_info - zoned block device characteristics
51 * @model: Device model.
52 * @max_open_zones: global limit on the number of simultaneously opened
53 * sequential write zones. A zero value means unlimited open zones,
54 * and that open zones will not be tracked in the open_zones array.
55 * @mutex: Protects the modifiable members in this structure (refcount and
56 * num_open_zones).
57 * @zone_size: size of a single zone in bytes.
58 * @sectors_with_data: total size of data in all zones in units of 512 bytes
59 * @wp_sectors_with_data: total size of data in zones with write pointers in
60 * units of 512 bytes
61 * @zone_size_log2: log2 of the zone size in bytes if it is a power of 2 or 0
62 * if the zone size is not a power of 2.
63 * @nr_zones: number of zones
64 * @refcount: number of fio files that share this structure
65 * @num_open_zones: number of open zones
66 * @write_cnt: Number of writes since the latest zone reset triggered by
67 * the zone_reset_frequency fio job parameter.
68 * @open_zones: zone numbers of open zones
69 * @zone_info: description of the individual zones
70 *
71 * Only devices for which all zones have the same size are supported.
72 * Note: if the capacity is not a multiple of the zone size then the last zone
73 * will be smaller than 'zone_size'.
74 */
75struct zoned_block_device_info {
76 enum zbd_zoned_model model;
77 uint32_t max_open_zones;
78 pthread_mutex_t mutex;
79 uint64_t zone_size;
80 uint64_t sectors_with_data;
81 uint64_t wp_sectors_with_data;
82 uint32_t zone_size_log2;
83 uint32_t nr_zones;
84 uint32_t refcount;
85 uint32_t num_open_zones;
86 uint32_t write_cnt;
87 uint32_t open_zones[ZBD_MAX_OPEN_ZONES];
88 struct fio_zone_info zone_info[0];
89};
90
91int zbd_init_files(struct thread_data *td);
92void zbd_recalc_options_with_zone_granularity(struct thread_data *td);
93int zbd_setup_files(struct thread_data *td);
94void zbd_free_zone_info(struct fio_file *f);
95void zbd_file_reset(struct thread_data *td, struct fio_file *f);
96bool zbd_unaligned_write(int error_code);
97void setup_zbd_zone_mode(struct thread_data *td, struct io_u *io_u);
98enum fio_ddir zbd_adjust_ddir(struct thread_data *td, struct io_u *io_u,
99 enum fio_ddir ddir);
100enum io_u_action zbd_adjust_block(struct thread_data *td, struct io_u *io_u);
101char *zbd_write_status(const struct thread_stat *ts);
102
103static inline void zbd_close_file(struct fio_file *f)
104{
105 if (f->zbd_info)
106 zbd_free_zone_info(f);
107}
108
109static inline void zbd_queue_io_u(struct thread_data *td, struct io_u *io_u,
110 enum fio_q_status status)
111{
112 if (io_u->zbd_queue_io) {
113 io_u->zbd_queue_io(td, io_u, status, io_u->error == 0);
114 io_u->zbd_queue_io = NULL;
115 }
116}
117
118static inline void zbd_put_io_u(struct thread_data *td, struct io_u *io_u)
119{
120 if (io_u->zbd_put_io) {
121 io_u->zbd_put_io(td, io_u);
122 io_u->zbd_queue_io = NULL;
123 io_u->zbd_put_io = NULL;
124 }
125}
126
127#endif /* FIO_ZBD_H */