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v6.8
  1/* SPDX-License-Identifier: GPL-2.0 */
  2#ifndef _SCSI_DISK_H
  3#define _SCSI_DISK_H
  4
  5/*
  6 * More than enough for everybody ;)  The huge number of majors
  7 * is a leftover from 16bit dev_t days, we don't really need that
  8 * much numberspace.
  9 */
 10#define SD_MAJORS	16
 11
 12/*
 13 * Time out in seconds for disks and Magneto-opticals (which are slower).
 14 */
 15#define SD_TIMEOUT		(30 * HZ)
 16#define SD_MOD_TIMEOUT		(75 * HZ)
 17/*
 18 * Flush timeout is a multiplier over the standard device timeout which is
 19 * user modifiable via sysfs but initially set to SD_TIMEOUT
 20 */
 21#define SD_FLUSH_TIMEOUT_MULTIPLIER	2
 22#define SD_WRITE_SAME_TIMEOUT	(120 * HZ)
 23
 24/*
 25 * Number of allowed retries
 26 */
 27#define SD_MAX_RETRIES		5
 28#define SD_PASSTHROUGH_RETRIES	1
 29#define SD_MAX_MEDIUM_TIMEOUTS	2
 30
 31/*
 32 * Size of the initial data buffer for mode and read capacity data
 33 */
 34#define SD_BUF_SIZE		512
 35
 36/*
 37 * Number of sectors at the end of the device to avoid multi-sector
 38 * accesses to in the case of last_sector_bug
 39 */
 40#define SD_LAST_BUGGY_SECTORS	8
 41
 42enum {
 43	SD_EXT_CDB_SIZE = 32,	/* Extended CDB size */
 44	SD_MEMPOOL_SIZE = 2,	/* CDB pool size */
 45};
 46
 47enum {
 48	SD_DEF_XFER_BLOCKS = 0xffff,
 49	SD_MAX_XFER_BLOCKS = 0xffffffff,
 50	SD_MAX_WS10_BLOCKS = 0xffff,
 51	SD_MAX_WS16_BLOCKS = 0x7fffff,
 52};
 53
 54enum {
 55	SD_LBP_FULL = 0,	/* Full logical block provisioning */
 56	SD_LBP_UNMAP,		/* Use UNMAP command */
 57	SD_LBP_WS16,		/* Use WRITE SAME(16) with UNMAP bit */
 58	SD_LBP_WS10,		/* Use WRITE SAME(10) with UNMAP bit */
 59	SD_LBP_ZERO,		/* Use WRITE SAME(10) with zero payload */
 60	SD_LBP_DISABLE,		/* Discard disabled due to failed cmd */
 61};
 62
 63enum {
 64	SD_ZERO_WRITE = 0,	/* Use WRITE(10/16) command */
 65	SD_ZERO_WS,		/* Use WRITE SAME(10/16) command */
 66	SD_ZERO_WS16_UNMAP,	/* Use WRITE SAME(16) with UNMAP */
 67	SD_ZERO_WS10_UNMAP,	/* Use WRITE SAME(10) with UNMAP */
 68};
 69
 70/**
 71 * struct zoned_disk_info - Specific properties of a ZBC SCSI device.
 72 * @nr_zones: number of zones.
 73 * @zone_blocks: number of logical blocks per zone.
 74 *
 75 * This data structure holds the ZBC SCSI device properties that are retrieved
 76 * twice: a first time before the gendisk capacity is known and a second time
 77 * after the gendisk capacity is known.
 78 */
 79struct zoned_disk_info {
 80	u32		nr_zones;
 81	u32		zone_blocks;
 82};
 83
 84struct scsi_disk {
 
 85	struct scsi_device *device;
 86
 87	/*
 88	 * disk_dev is used to show attributes in /sys/class/scsi_disk/,
 89	 * but otherwise not really needed.  Do not use for refcounting.
 90	 */
 91	struct device	disk_dev;
 92	struct gendisk	*disk;
 93	struct opal_dev *opal_dev;
 94#ifdef CONFIG_BLK_DEV_ZONED
 95	/* Updated during revalidation before the gendisk capacity is known. */
 96	struct zoned_disk_info	early_zone_info;
 97	/* Updated during revalidation after the gendisk capacity is known. */
 98	struct zoned_disk_info	zone_info;
 99	u32		zones_optimal_open;
100	u32		zones_optimal_nonseq;
101	u32		zones_max_open;
102	/*
103	 * Either zero or a power of two. If not zero it means that the offset
104	 * between zone starting LBAs is constant.
105	 */
106	u32		zone_starting_lba_gran;
107	u32		*zones_wp_offset;
108	spinlock_t	zones_wp_offset_lock;
109	u32		*rev_wp_offset;
110	struct mutex	rev_mutex;
111	struct work_struct zone_wp_offset_work;
112	char		*zone_wp_update_buf;
113#endif
114	atomic_t	openers;
115	sector_t	capacity;	/* size in logical blocks */
116	int		max_retries;
117	u32		min_xfer_blocks;
118	u32		max_xfer_blocks;
119	u32		opt_xfer_blocks;
120	u32		max_ws_blocks;
121	u32		max_unmap_blocks;
122	u32		unmap_granularity;
123	u32		unmap_alignment;
124	u32		index;
125	unsigned int	physical_block_size;
126	unsigned int	max_medium_access_timeouts;
127	unsigned int	medium_access_timed_out;
128	u8		media_present;
129	u8		write_prot;
130	u8		protection_type;/* Data Integrity Field */
131	u8		provisioning_mode;
132	u8		zeroing_mode;
133	u8		nr_actuators;		/* Number of actuators */
134	bool		suspended;	/* Disk is suspended (stopped) */
135	unsigned	ATO : 1;	/* state of disk ATO bit */
136	unsigned	cache_override : 1; /* temp override of WCE,RCD */
137	unsigned	WCE : 1;	/* state of disk WCE bit */
138	unsigned	RCD : 1;	/* state of disk RCD bit, unused */
139	unsigned	DPOFUA : 1;	/* state of disk DPOFUA bit */
140	unsigned	first_scan : 1;
141	unsigned	lbpme : 1;
142	unsigned	lbprz : 1;
143	unsigned	lbpu : 1;
144	unsigned	lbpws : 1;
145	unsigned	lbpws10 : 1;
146	unsigned	lbpvpd : 1;
147	unsigned	ws10 : 1;
148	unsigned	ws16 : 1;
149	unsigned	rc_basis: 2;
150	unsigned	zoned: 2;
151	unsigned	urswrz : 1;
152	unsigned	security : 1;
153	unsigned	ignore_medium_access_errors : 1;
154};
155#define to_scsi_disk(obj) container_of(obj, struct scsi_disk, disk_dev)
156
157static inline struct scsi_disk *scsi_disk(struct gendisk *disk)
158{
159	return disk->private_data;
160}
161
162#define sd_printk(prefix, sdsk, fmt, a...)				\
163        (sdsk)->disk ?							\
164	      sdev_prefix_printk(prefix, (sdsk)->device,		\
165				 (sdsk)->disk->disk_name, fmt, ##a) :	\
166	      sdev_printk(prefix, (sdsk)->device, fmt, ##a)
167
168#define sd_first_printk(prefix, sdsk, fmt, a...)			\
169	do {								\
170		if ((sdsk)->first_scan)					\
171			sd_printk(prefix, sdsk, fmt, ##a);		\
172	} while (0)
173
174static inline int scsi_medium_access_command(struct scsi_cmnd *scmd)
175{
176	switch (scmd->cmnd[0]) {
177	case READ_6:
178	case READ_10:
179	case READ_12:
180	case READ_16:
181	case SYNCHRONIZE_CACHE:
182	case VERIFY:
183	case VERIFY_12:
184	case VERIFY_16:
185	case WRITE_6:
186	case WRITE_10:
187	case WRITE_12:
188	case WRITE_16:
189	case WRITE_SAME:
190	case WRITE_SAME_16:
191	case UNMAP:
192		return 1;
193	case VARIABLE_LENGTH_CMD:
194		switch (scmd->cmnd[9]) {
195		case READ_32:
196		case VERIFY_32:
197		case WRITE_32:
198		case WRITE_SAME_32:
199			return 1;
200		}
201	}
202
203	return 0;
204}
205
206static inline sector_t logical_to_sectors(struct scsi_device *sdev, sector_t blocks)
207{
208	return blocks << (ilog2(sdev->sector_size) - 9);
209}
210
211static inline unsigned int logical_to_bytes(struct scsi_device *sdev, sector_t blocks)
212{
213	return blocks * sdev->sector_size;
214}
215
216static inline sector_t bytes_to_logical(struct scsi_device *sdev, unsigned int bytes)
217{
218	return bytes >> ilog2(sdev->sector_size);
219}
220
221static inline sector_t sectors_to_logical(struct scsi_device *sdev, sector_t sector)
 
 
 
 
222{
223	return sector >> (ilog2(sdev->sector_size) - 9);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
224}
225
226#ifdef CONFIG_BLK_DEV_INTEGRITY
227
228extern void sd_dif_config_host(struct scsi_disk *);
 
 
229
230#else /* CONFIG_BLK_DEV_INTEGRITY */
231
232static inline void sd_dif_config_host(struct scsi_disk *disk)
233{
234}
 
 
 
 
 
 
 
235
236#endif /* CONFIG_BLK_DEV_INTEGRITY */
237
238static inline int sd_is_zoned(struct scsi_disk *sdkp)
239{
240	return sdkp->zoned == 1 || sdkp->device->type == TYPE_ZBC;
241}
242
243#ifdef CONFIG_BLK_DEV_ZONED
244
245void sd_zbc_free_zone_info(struct scsi_disk *sdkp);
246int sd_zbc_read_zones(struct scsi_disk *sdkp, u8 buf[SD_BUF_SIZE]);
247int sd_zbc_revalidate_zones(struct scsi_disk *sdkp);
248blk_status_t sd_zbc_setup_zone_mgmt_cmnd(struct scsi_cmnd *cmd,
249					 unsigned char op, bool all);
250unsigned int sd_zbc_complete(struct scsi_cmnd *cmd, unsigned int good_bytes,
251			     struct scsi_sense_hdr *sshdr);
252int sd_zbc_report_zones(struct gendisk *disk, sector_t sector,
253		unsigned int nr_zones, report_zones_cb cb, void *data);
254
255blk_status_t sd_zbc_prepare_zone_append(struct scsi_cmnd *cmd, sector_t *lba,
256				        unsigned int nr_blocks);
257
258#else /* CONFIG_BLK_DEV_ZONED */
259
260static inline void sd_zbc_free_zone_info(struct scsi_disk *sdkp) {}
261
262static inline int sd_zbc_read_zones(struct scsi_disk *sdkp, u8 buf[SD_BUF_SIZE])
263{
264	return 0;
265}
266
267static inline int sd_zbc_revalidate_zones(struct scsi_disk *sdkp)
268{
269	return 0;
270}
271
272static inline blk_status_t sd_zbc_setup_zone_mgmt_cmnd(struct scsi_cmnd *cmd,
273						       unsigned char op,
274						       bool all)
275{
276	return BLK_STS_TARGET;
 
277}
278
279static inline unsigned int sd_zbc_complete(struct scsi_cmnd *cmd,
280			unsigned int good_bytes, struct scsi_sense_hdr *sshdr)
 
281{
282	return good_bytes;
283}
284
285static inline blk_status_t sd_zbc_prepare_zone_append(struct scsi_cmnd *cmd,
286						      sector_t *lba,
287						      unsigned int nr_blocks)
288{
289	return BLK_STS_TARGET;
290}
291
292#define sd_zbc_report_zones NULL
 
 
293
294#endif /* CONFIG_BLK_DEV_ZONED */
295
296void sd_print_sense_hdr(struct scsi_disk *sdkp, struct scsi_sense_hdr *sshdr);
297void sd_print_result(const struct scsi_disk *sdkp, const char *msg, int result);
298
299#endif /* _SCSI_DISK_H */
v4.10.11
 
  1#ifndef _SCSI_DISK_H
  2#define _SCSI_DISK_H
  3
  4/*
  5 * More than enough for everybody ;)  The huge number of majors
  6 * is a leftover from 16bit dev_t days, we don't really need that
  7 * much numberspace.
  8 */
  9#define SD_MAJORS	16
 10
 11/*
 12 * Time out in seconds for disks and Magneto-opticals (which are slower).
 13 */
 14#define SD_TIMEOUT		(30 * HZ)
 15#define SD_MOD_TIMEOUT		(75 * HZ)
 16/*
 17 * Flush timeout is a multiplier over the standard device timeout which is
 18 * user modifiable via sysfs but initially set to SD_TIMEOUT
 19 */
 20#define SD_FLUSH_TIMEOUT_MULTIPLIER	2
 21#define SD_WRITE_SAME_TIMEOUT	(120 * HZ)
 22
 23/*
 24 * Number of allowed retries
 25 */
 26#define SD_MAX_RETRIES		5
 27#define SD_PASSTHROUGH_RETRIES	1
 28#define SD_MAX_MEDIUM_TIMEOUTS	2
 29
 30/*
 31 * Size of the initial data buffer for mode and read capacity data
 32 */
 33#define SD_BUF_SIZE		512
 34
 35/*
 36 * Number of sectors at the end of the device to avoid multi-sector
 37 * accesses to in the case of last_sector_bug
 38 */
 39#define SD_LAST_BUGGY_SECTORS	8
 40
 41enum {
 42	SD_EXT_CDB_SIZE = 32,	/* Extended CDB size */
 43	SD_MEMPOOL_SIZE = 2,	/* CDB pool size */
 44};
 45
 46enum {
 47	SD_DEF_XFER_BLOCKS = 0xffff,
 48	SD_MAX_XFER_BLOCKS = 0xffffffff,
 49	SD_MAX_WS10_BLOCKS = 0xffff,
 50	SD_MAX_WS16_BLOCKS = 0x7fffff,
 51};
 52
 53enum {
 54	SD_LBP_FULL = 0,	/* Full logical block provisioning */
 55	SD_LBP_UNMAP,		/* Use UNMAP command */
 56	SD_LBP_WS16,		/* Use WRITE SAME(16) with UNMAP bit */
 57	SD_LBP_WS10,		/* Use WRITE SAME(10) with UNMAP bit */
 58	SD_LBP_ZERO,		/* Use WRITE SAME(10) with zero payload */
 59	SD_LBP_DISABLE,		/* Discard disabled due to failed cmd */
 60};
 61
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 62struct scsi_disk {
 63	struct scsi_driver *driver;	/* always &sd_template */
 64	struct scsi_device *device;
 65	struct device	dev;
 
 
 
 
 
 66	struct gendisk	*disk;
 
 67#ifdef CONFIG_BLK_DEV_ZONED
 68	unsigned int	nr_zones;
 69	unsigned int	zone_blocks;
 70	unsigned int	zone_shift;
 71	unsigned long	*zones_wlock;
 72	unsigned int	zones_optimal_open;
 73	unsigned int	zones_optimal_nonseq;
 74	unsigned int	zones_max_open;
 
 
 
 
 
 
 
 
 
 
 
 75#endif
 76	atomic_t	openers;
 77	sector_t	capacity;	/* size in logical blocks */
 
 
 78	u32		max_xfer_blocks;
 79	u32		opt_xfer_blocks;
 80	u32		max_ws_blocks;
 81	u32		max_unmap_blocks;
 82	u32		unmap_granularity;
 83	u32		unmap_alignment;
 84	u32		index;
 85	unsigned int	physical_block_size;
 86	unsigned int	max_medium_access_timeouts;
 87	unsigned int	medium_access_timed_out;
 88	u8		media_present;
 89	u8		write_prot;
 90	u8		protection_type;/* Data Integrity Field */
 91	u8		provisioning_mode;
 
 
 
 92	unsigned	ATO : 1;	/* state of disk ATO bit */
 93	unsigned	cache_override : 1; /* temp override of WCE,RCD */
 94	unsigned	WCE : 1;	/* state of disk WCE bit */
 95	unsigned	RCD : 1;	/* state of disk RCD bit, unused */
 96	unsigned	DPOFUA : 1;	/* state of disk DPOFUA bit */
 97	unsigned	first_scan : 1;
 98	unsigned	lbpme : 1;
 99	unsigned	lbprz : 1;
100	unsigned	lbpu : 1;
101	unsigned	lbpws : 1;
102	unsigned	lbpws10 : 1;
103	unsigned	lbpvpd : 1;
104	unsigned	ws10 : 1;
105	unsigned	ws16 : 1;
106	unsigned	rc_basis: 2;
107	unsigned	zoned: 2;
108	unsigned	urswrz : 1;
 
 
109};
110#define to_scsi_disk(obj) container_of(obj,struct scsi_disk,dev)
111
112static inline struct scsi_disk *scsi_disk(struct gendisk *disk)
113{
114	return container_of(disk->private_data, struct scsi_disk, driver);
115}
116
117#define sd_printk(prefix, sdsk, fmt, a...)				\
118        (sdsk)->disk ?							\
119	      sdev_prefix_printk(prefix, (sdsk)->device,		\
120				 (sdsk)->disk->disk_name, fmt, ##a) :	\
121	      sdev_printk(prefix, (sdsk)->device, fmt, ##a)
122
123#define sd_first_printk(prefix, sdsk, fmt, a...)			\
124	do {								\
125		if ((sdkp)->first_scan)					\
126			sd_printk(prefix, sdsk, fmt, ##a);		\
127	} while (0)
128
129static inline int scsi_medium_access_command(struct scsi_cmnd *scmd)
130{
131	switch (scmd->cmnd[0]) {
132	case READ_6:
133	case READ_10:
134	case READ_12:
135	case READ_16:
136	case SYNCHRONIZE_CACHE:
137	case VERIFY:
138	case VERIFY_12:
139	case VERIFY_16:
140	case WRITE_6:
141	case WRITE_10:
142	case WRITE_12:
143	case WRITE_16:
144	case WRITE_SAME:
145	case WRITE_SAME_16:
146	case UNMAP:
147		return 1;
148	case VARIABLE_LENGTH_CMD:
149		switch (scmd->cmnd[9]) {
150		case READ_32:
151		case VERIFY_32:
152		case WRITE_32:
153		case WRITE_SAME_32:
154			return 1;
155		}
156	}
157
158	return 0;
159}
160
161static inline sector_t logical_to_sectors(struct scsi_device *sdev, sector_t blocks)
162{
163	return blocks << (ilog2(sdev->sector_size) - 9);
164}
165
166static inline unsigned int logical_to_bytes(struct scsi_device *sdev, sector_t blocks)
167{
168	return blocks * sdev->sector_size;
169}
170
171static inline sector_t sectors_to_logical(struct scsi_device *sdev, sector_t sector)
172{
173	return sector >> (ilog2(sdev->sector_size) - 9);
174}
175
176/*
177 * Look up the DIX operation based on whether the command is read or
178 * write and whether dix and dif are enabled.
179 */
180static inline unsigned int sd_prot_op(bool write, bool dix, bool dif)
181{
182	/* Lookup table: bit 2 (write), bit 1 (dix), bit 0 (dif) */
183	const unsigned int ops[] = {	/* wrt dix dif */
184		SCSI_PROT_NORMAL,	/*  0	0   0  */
185		SCSI_PROT_READ_STRIP,	/*  0	0   1  */
186		SCSI_PROT_READ_INSERT,	/*  0	1   0  */
187		SCSI_PROT_READ_PASS,	/*  0	1   1  */
188		SCSI_PROT_NORMAL,	/*  1	0   0  */
189		SCSI_PROT_WRITE_INSERT, /*  1	0   1  */
190		SCSI_PROT_WRITE_STRIP,	/*  1	1   0  */
191		SCSI_PROT_WRITE_PASS,	/*  1	1   1  */
192	};
193
194	return ops[write << 2 | dix << 1 | dif];
195}
196
197/*
198 * Returns a mask of the protection flags that are valid for a given DIX
199 * operation.
200 */
201static inline unsigned int sd_prot_flag_mask(unsigned int prot_op)
202{
203	const unsigned int flag_mask[] = {
204		[SCSI_PROT_NORMAL]		= 0,
205
206		[SCSI_PROT_READ_STRIP]		= SCSI_PROT_TRANSFER_PI |
207						  SCSI_PROT_GUARD_CHECK |
208						  SCSI_PROT_REF_CHECK |
209						  SCSI_PROT_REF_INCREMENT,
210
211		[SCSI_PROT_READ_INSERT]		= SCSI_PROT_REF_INCREMENT |
212						  SCSI_PROT_IP_CHECKSUM,
213
214		[SCSI_PROT_READ_PASS]		= SCSI_PROT_TRANSFER_PI |
215						  SCSI_PROT_GUARD_CHECK |
216						  SCSI_PROT_REF_CHECK |
217						  SCSI_PROT_REF_INCREMENT |
218						  SCSI_PROT_IP_CHECKSUM,
219
220		[SCSI_PROT_WRITE_INSERT]	= SCSI_PROT_TRANSFER_PI |
221						  SCSI_PROT_REF_INCREMENT,
222
223		[SCSI_PROT_WRITE_STRIP]		= SCSI_PROT_GUARD_CHECK |
224						  SCSI_PROT_REF_CHECK |
225						  SCSI_PROT_REF_INCREMENT |
226						  SCSI_PROT_IP_CHECKSUM,
227
228		[SCSI_PROT_WRITE_PASS]		= SCSI_PROT_TRANSFER_PI |
229						  SCSI_PROT_GUARD_CHECK |
230						  SCSI_PROT_REF_CHECK |
231						  SCSI_PROT_REF_INCREMENT |
232						  SCSI_PROT_IP_CHECKSUM,
233	};
234
235	return flag_mask[prot_op];
236}
237
238#ifdef CONFIG_BLK_DEV_INTEGRITY
239
240extern void sd_dif_config_host(struct scsi_disk *);
241extern void sd_dif_prepare(struct scsi_cmnd *scmd);
242extern void sd_dif_complete(struct scsi_cmnd *, unsigned int);
243
244#else /* CONFIG_BLK_DEV_INTEGRITY */
245
246static inline void sd_dif_config_host(struct scsi_disk *disk)
247{
248}
249static inline int sd_dif_prepare(struct scsi_cmnd *scmd)
250{
251	return 0;
252}
253static inline void sd_dif_complete(struct scsi_cmnd *cmd, unsigned int a)
254{
255}
256
257#endif /* CONFIG_BLK_DEV_INTEGRITY */
258
259static inline int sd_is_zoned(struct scsi_disk *sdkp)
260{
261	return sdkp->zoned == 1 || sdkp->device->type == TYPE_ZBC;
262}
263
264#ifdef CONFIG_BLK_DEV_ZONED
265
266extern int sd_zbc_read_zones(struct scsi_disk *sdkp, unsigned char *buffer);
267extern void sd_zbc_remove(struct scsi_disk *sdkp);
268extern void sd_zbc_print_zones(struct scsi_disk *sdkp);
269extern int sd_zbc_setup_write_cmnd(struct scsi_cmnd *cmd);
270extern void sd_zbc_cancel_write_cmnd(struct scsi_cmnd *cmd);
271extern int sd_zbc_setup_report_cmnd(struct scsi_cmnd *cmd);
272extern int sd_zbc_setup_reset_cmnd(struct scsi_cmnd *cmd);
273extern void sd_zbc_complete(struct scsi_cmnd *cmd, unsigned int good_bytes,
274			    struct scsi_sense_hdr *sshdr);
 
 
 
275
276#else /* CONFIG_BLK_DEV_ZONED */
277
278static inline int sd_zbc_read_zones(struct scsi_disk *sdkp,
279				    unsigned char *buf)
 
280{
281	return 0;
282}
283
284static inline void sd_zbc_remove(struct scsi_disk *sdkp) {}
285
286static inline void sd_zbc_print_zones(struct scsi_disk *sdkp) {}
 
287
288static inline int sd_zbc_setup_write_cmnd(struct scsi_cmnd *cmd)
 
 
289{
290	/* Let the drive fail requests */
291	return BLKPREP_OK;
292}
293
294static inline void sd_zbc_cancel_write_cmnd(struct scsi_cmnd *cmd) {}
295
296static inline int sd_zbc_setup_report_cmnd(struct scsi_cmnd *cmd)
297{
298	return BLKPREP_INVALID;
299}
300
301static inline int sd_zbc_setup_reset_cmnd(struct scsi_cmnd *cmd)
 
 
302{
303	return BLKPREP_INVALID;
304}
305
306static inline void sd_zbc_complete(struct scsi_cmnd *cmd,
307				   unsigned int good_bytes,
308				   struct scsi_sense_hdr *sshdr) {}
309
310#endif /* CONFIG_BLK_DEV_ZONED */
 
 
 
311
312#endif /* _SCSI_DISK_H */