1/*-
2 * Copyright (c) 2003, 2004, 2005, 2008 Silicon Graphics International Corp.
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions, and the following disclaimer,
10 *    without modification.
11 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
12 *    substantially similar to the "NO WARRANTY" disclaimer below
13 *    ("Disclaimer") and any redistribution must be conditioned upon
14 *    including a substantially similar Disclaimer requirement for further
15 *    binary redistribution.
16 *
17 * NO WARRANTY
18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
21 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
22 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
26 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
27 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 * POSSIBILITY OF SUCH DAMAGES.
29 *
30 * $Id: //depot/users/kenm/FreeBSD-test2/sys/cam/ctl/ctl_private.h#7 $
31 * $FreeBSD$
32 */
33/*
34 * CAM Target Layer driver private data structures/definitions.
35 *
36 * Author: Ken Merry <ken@FreeBSD.org>
37 */
38
39#ifndef	_CTL_PRIVATE_H_
40#define	_CTL_PRIVATE_H_
41
42/*
43 * SCSI vendor and product names.
44 */
45#define	CTL_VENDOR		"FREEBSD "
46#define	CTL_DIRECT_PRODUCT	"CTLDISK         "
47#define	CTL_PROCESSOR_PRODUCT	"CTLPROCESSOR    "
48#define	CTL_UNKNOWN_PRODUCT	"CTLDEVICE       "
49
50struct ctl_fe_ioctl_startstop_info {
51	struct cv			sem;
52	struct ctl_hard_startstop_info	hs_info;
53};
54
55struct ctl_fe_ioctl_bbrread_info {
56	struct cv			sem;
57	struct ctl_bbrread_info		*bbr_info;
58	int				wakeup_done;
59	struct mtx			*lock;
60};
61
62typedef enum {
63	CTL_IOCTL_INPROG,
64	CTL_IOCTL_DATAMOVE,
65	CTL_IOCTL_DONE
66} ctl_fe_ioctl_state;
67
68struct ctl_fe_ioctl_params {
69	struct cv		sem;
70	struct mtx		ioctl_mtx;
71	ctl_fe_ioctl_state	state;
72};
73
74#define	CTL_POOL_ENTRIES_INTERNAL	200
75#define	CTL_POOL_ENTRIES_EMERGENCY	300
76#define CTL_POOL_ENTRIES_OTHER_SC   200
77
78typedef enum {
79	CTL_POOL_INTERNAL,
80	CTL_POOL_FETD,
81	CTL_POOL_EMERGENCY,
82	CTL_POOL_IOCTL,
83	CTL_POOL_4OTHERSC
84} ctl_pool_type;
85
86typedef enum {
87	CTL_POOL_FLAG_NONE	= 0x00,
88	CTL_POOL_FLAG_INVALID	= 0x01
89} ctl_pool_flags;
90
91struct ctl_io_pool {
92	ctl_pool_type			type;
93	ctl_pool_flags			flags;
94	uint32_t			id;
95	struct ctl_softc		*ctl_softc;
96	uint32_t			refcount;
97	uint64_t			total_allocated;
98	uint64_t			total_freed;
99	int32_t				total_ctl_io;
100	int32_t				free_ctl_io;
101	STAILQ_HEAD(, ctl_io_hdr)	free_queue;
102	STAILQ_ENTRY(ctl_io_pool)	links;
103};
104
105typedef enum {
106	CTL_IOCTL_FLAG_NONE	= 0x00,
107	CTL_IOCTL_FLAG_ENABLED	= 0x01
108} ctl_ioctl_flags;
109
110struct ctl_ioctl_info {
111	ctl_ioctl_flags		flags;
112	uint32_t		cur_tag_num;
113	struct ctl_frontend	fe;
114	char			port_name[24];
115};
116
117typedef enum {
118	CTL_SER_BLOCK,
119	CTL_SER_EXTENT,
120	CTL_SER_PASS,
121	CTL_SER_SKIP
122} ctl_serialize_action;
123
124typedef enum {
125	CTL_ACTION_BLOCK,
126	CTL_ACTION_OVERLAP,
127	CTL_ACTION_OVERLAP_TAG,
128	CTL_ACTION_PASS,
129	CTL_ACTION_SKIP,
130	CTL_ACTION_ERROR
131} ctl_action;
132
133/*
134 * WARNING:  Keep the bottom nibble here free, we OR in the data direction
135 * flags for each command.
136 *
137 * Note:  "OK_ON_ALL_LUNS" == we don't have to have a lun configured
138 *        "OK_ON_BOTH"     == we have to have a lun configured
139 */
140typedef enum {
141	CTL_CMD_FLAG_NONE		= 0x0000,
142	CTL_CMD_FLAG_NO_SENSE		= 0x0010,
143	CTL_CMD_FLAG_OK_ON_ALL_LUNS	= 0x0020,
144	CTL_CMD_FLAG_ALLOW_ON_RESV	= 0x0040,
145	CTL_CMD_FLAG_OK_ON_PROC		= 0x0100,
146	CTL_CMD_FLAG_OK_ON_SLUN		= 0x0200,
147	CTL_CMD_FLAG_OK_ON_BOTH		= 0x0300,
148	CTL_CMD_FLAG_OK_ON_STOPPED	= 0x0400,
149	CTL_CMD_FLAG_OK_ON_INOPERABLE	= 0x0800,
150	CTL_CMD_FLAG_OK_ON_OFFLINE	= 0x1000,
151	CTL_CMD_FLAG_OK_ON_SECONDARY	= 0x2000,
152	CTL_CMD_FLAG_ALLOW_ON_PR_RESV   = 0x4000
153} ctl_cmd_flags;
154
155typedef enum {
156	CTL_SERIDX_TUR	= 0,
157	CTL_SERIDX_READ,
158	CTL_SERIDX_WRITE,
159	CTL_SERIDX_MD_SNS,
160	CTL_SERIDX_MD_SEL,
161	CTL_SERIDX_RQ_SNS,
162	CTL_SERIDX_INQ,
163	CTL_SERIDX_RD_CAP,
164	CTL_SERIDX_RESV,
165	CTL_SERIDX_REL,
166	CTL_SERIDX_LOG_SNS,
167	CTL_SERIDX_FORMAT,
168	CTL_SERIDX_START,
169	CTL_SERIDX_PRES_IN,
170	CTL_SERIDX_PRES_OUT,
171	CTL_SERIDX_MAIN_IN,
172	/* TBD: others to be filled in as needed */
173	CTL_SERIDX_COUNT, /* LAST, not a normal code, provides # codes */
174	CTL_SERIDX_INVLD = CTL_SERIDX_COUNT
175} ctl_seridx;
176
177typedef int	ctl_opfunc(struct ctl_scsiio *ctsio);
178
179struct ctl_cmd_entry {
180	ctl_opfunc		*execute;
181	ctl_seridx		seridx;
182	ctl_cmd_flags		flags;
183	ctl_lun_error_pattern	pattern;
184};
185
186typedef enum {
187	CTL_LUN_NONE		= 0x000,
188	CTL_LUN_CONTROL		= 0x001,
189	CTL_LUN_RESERVED	= 0x002,
190	CTL_LUN_INVALID		= 0x004,
191	CTL_LUN_DISABLED	= 0x008,
192	CTL_LUN_MALLOCED	= 0x010,
193	CTL_LUN_STOPPED		= 0x020,
194	CTL_LUN_INOPERABLE	= 0x040,
195	CTL_LUN_OFFLINE		= 0x080,
196	CTL_LUN_PR_RESERVED	= 0x100,
197	CTL_LUN_PRIMARY_SC	= 0x200,
198	CTL_LUN_SENSE_DESC	= 0x400
199} ctl_lun_flags;
200
201typedef enum {
202	CTLBLOCK_FLAG_NONE	= 0x00,
203	CTLBLOCK_FLAG_INVALID	= 0x01
204} ctlblock_flags;
205
206union ctl_softcs {
207	struct ctl_softc	*ctl_softc;
208	struct ctlblock_softc	*ctlblock_softc;
209};
210
211/*
212 * Mode page defaults.
213 */
214#if 0
215/*
216 * These values make Solaris trim off some of the capacity.
217 */
218#define	CTL_DEFAULT_SECTORS_PER_TRACK	63
219#define	CTL_DEFAULT_HEADS		255
220/*
221 * These values seem to work okay.
222 */
223#define	CTL_DEFAULT_SECTORS_PER_TRACK	63
224#define	CTL_DEFAULT_HEADS		16
225/*
226 * These values work reasonably well.
227 */
228#define	CTL_DEFAULT_SECTORS_PER_TRACK	512
229#define	CTL_DEFAULT_HEADS		64
230#endif
231
232/*
233 * Solaris is somewhat picky about how many heads and sectors per track you
234 * have defined in mode pages 3 and 4.  These values seem to cause Solaris
235 * to get the capacity more or less right when you run the format tool.
236 * They still have problems when dealing with devices larger than 1TB,
237 * but there isn't anything we can do about that.
238 *
239 * For smaller LUN sizes, this ends up causing the number of cylinders to
240 * work out to 0.  Solaris actually recognizes that and comes up with its
241 * own bogus geometry to fit the actual capacity of the drive.  They really
242 * should just give up on geometry and stick to the read capacity
243 * information alone for modern disk drives.
244 *
245 * One thing worth mentioning about Solaris' mkfs command is that it
246 * doesn't like sectors per track values larger than 256.  512 seems to
247 * work okay for format, but causes problems when you try to make a
248 * filesystem.
249 *
250 * Another caveat about these values:  the product of these two values
251 * really should be a power of 2.  This is because of the simplistic
252 * shift-based calculation that we have to use on the i386 platform to
253 * calculate the number of cylinders here.  (If you use a divide, you end
254 * up calling __udivdi3(), which is a hardware FP call on the PC.  On the
255 * XScale, it is done in software, so you can do that from inside the
256 * kernel.)
257 *
258 * So for the current values (256 S/T, 128 H), we get 32768, which works
259 * very nicely for calculating cylinders.
260 *
261 * If you want to change these values so that their product is no longer a
262 * power of 2, re-visit the calculation in ctl_init_page_index().  You may
263 * need to make it a bit more complicated to get the number of cylinders
264 * right.
265 */
266#define	CTL_DEFAULT_SECTORS_PER_TRACK	256
267#define	CTL_DEFAULT_HEADS		128
268
269#define	CTL_DEFAULT_ROTATION_RATE	10000
270
271struct ctl_page_index;
272
273typedef int	ctl_modesen_handler(struct ctl_scsiio *ctsio,
274				    struct ctl_page_index *page_index,
275				    int pc);
276typedef int	ctl_modesel_handler(struct ctl_scsiio *ctsio,
277				    struct ctl_page_index *page_index,
278				    uint8_t *page_ptr);
279
280typedef enum {
281	CTL_PAGE_FLAG_NONE	 = 0x00,
282	CTL_PAGE_FLAG_DISK_ONLY	 = 0x01
283} ctl_page_flags;
284
285struct ctl_page_index {
286	uint8_t			page_code;
287	uint8_t			subpage;
288	uint16_t		page_len;
289	uint8_t			*page_data;
290	ctl_page_flags		page_flags;
291	ctl_modesen_handler	*sense_handler;
292	ctl_modesel_handler	*select_handler;
293};
294
295#define	CTL_PAGE_CURRENT	0x00
296#define	CTL_PAGE_CHANGEABLE	0x01
297#define	CTL_PAGE_DEFAULT	0x02
298#define	CTL_PAGE_SAVED		0x03
299
300static const struct ctl_page_index page_index_template[] = {
301	{SMS_FORMAT_DEVICE_PAGE, 0, sizeof(struct scsi_format_page), NULL,
302	 CTL_PAGE_FLAG_DISK_ONLY, NULL, NULL},
303	{SMS_RIGID_DISK_PAGE, 0, sizeof(struct scsi_rigid_disk_page), NULL,
304	 CTL_PAGE_FLAG_DISK_ONLY, NULL, NULL},
305	{SMS_CACHING_PAGE, 0, sizeof(struct scsi_caching_page), NULL,
306	 CTL_PAGE_FLAG_DISK_ONLY, NULL, NULL},
307	{SMS_CONTROL_MODE_PAGE, 0, sizeof(struct scsi_control_page), NULL,
308	 CTL_PAGE_FLAG_NONE, NULL, ctl_control_page_handler},
309   	{SMS_VENDOR_SPECIFIC_PAGE | SMPH_SPF, PWR_SUBPAGE_CODE,
310	 sizeof(struct copan_power_subpage), NULL, CTL_PAGE_FLAG_NONE,
311	 ctl_power_sp_sense_handler, ctl_power_sp_handler},
312	{SMS_VENDOR_SPECIFIC_PAGE | SMPH_SPF, APS_SUBPAGE_CODE,
313	 sizeof(struct copan_aps_subpage), NULL, CTL_PAGE_FLAG_NONE,
314	 NULL, ctl_aps_sp_handler},
315	{SMS_VENDOR_SPECIFIC_PAGE | SMPH_SPF, DBGCNF_SUBPAGE_CODE,
316	 sizeof(struct copan_debugconf_subpage), NULL, CTL_PAGE_FLAG_NONE,
317	 ctl_debugconf_sp_sense_handler, ctl_debugconf_sp_select_handler},
318};
319
320#define	CTL_NUM_MODE_PAGES sizeof(page_index_template)/   \
321			   sizeof(page_index_template[0])
322
323struct ctl_mode_pages {
324	struct scsi_format_page		format_page[4];
325	struct scsi_rigid_disk_page	rigid_disk_page[4];
326	struct scsi_caching_page	caching_page[4];
327	struct scsi_control_page	control_page[4];
328	struct copan_power_subpage	power_subpage[4];
329	struct copan_aps_subpage	aps_subpage[4];
330	struct copan_debugconf_subpage	debugconf_subpage[4];
331	struct ctl_page_index		index[CTL_NUM_MODE_PAGES];
332};
333
334struct ctl_pending_sense {
335	ctl_ua_type		ua_pending;
336	struct scsi_sense_data	sense;
337};
338
339struct ctl_lun_delay_info {
340	ctl_delay_type		datamove_type;
341	uint32_t		datamove_delay;
342	ctl_delay_type		done_type;
343	uint32_t		done_delay;
344};
345
346typedef enum {
347	CTL_ERR_INJ_NONE	= 0x00,
348	CTL_ERR_INJ_ABORTED	= 0x01
349} ctl_err_inject_flags;
350
351typedef enum {
352	CTL_PR_FLAG_NONE	= 0x00,
353	CTL_PR_FLAG_REGISTERED	= 0x01,
354	CTL_PR_FLAG_ACTIVE_RES	= 0x02
355} ctl_per_res_flags;
356
357struct ctl_per_res_info {
358	struct scsi_per_res_key res_key;
359	uint8_t  registered;
360};
361
362#define CTL_PR_ALL_REGISTRANTS  0xFFFF
363#define CTL_PR_NO_RESERVATION   0xFFF0
364
365/*
366 * For report target port groups.
367 */
368#define NUM_TARGET_PORT_GROUPS	2
369#define NUM_PORTS_PER_GRP	2
370
371struct ctl_lun {
372	struct mtx			lun_lock;
373	struct ctl_id			target;
374	uint64_t			lun;
375	ctl_lun_flags			flags;
376	STAILQ_HEAD(,ctl_error_desc)	error_list;
377	uint64_t			error_serial;
378	struct ctl_softc		*ctl_softc;
379	struct ctl_be_lun		*be_lun;
380	struct ctl_backend_driver	*backend;
381	int				io_count;
382	struct ctl_lun_delay_info	delay_info;
383	int				sync_interval;
384	int				sync_count;
385	TAILQ_HEAD(ctl_ooaq, ctl_io_hdr)  ooa_queue;
386	TAILQ_HEAD(ctl_blockq,ctl_io_hdr) blocked_queue;
387	STAILQ_ENTRY(ctl_lun)		links;
388	STAILQ_ENTRY(ctl_lun)		run_links;
389	struct ctl_nexus		rsv_nexus;
390	uint32_t			have_ca[CTL_MAX_INITIATORS >> 5];
391	struct ctl_pending_sense	pending_sense[CTL_MAX_INITIATORS];
392	struct ctl_mode_pages		mode_pages;
393	struct ctl_lun_io_stats		stats;
394	struct ctl_per_res_info		per_res[2*CTL_MAX_INITIATORS];
395	unsigned int			PRGeneration;
396	int				pr_key_count;
397	uint16_t        		pr_res_idx;
398	uint8_t				res_type;
399	uint8_t				write_buffer[524288];
400};
401
402typedef enum {
403	CTL_FLAG_TASK_PENDING	= 0x01,
404	CTL_FLAG_REAL_SYNC	= 0x02,
405	CTL_FLAG_MASTER_SHELF	= 0x04
406} ctl_gen_flags;
407
408struct ctl_wwpn_iid {
409	int in_use;
410	uint64_t wwpn;
411	uint32_t iid;
412	int32_t port;
413};
414
415struct ctl_softc {
416	struct mtx ctl_lock;
417	struct cdev *dev;
418	int open_count;
419	struct ctl_id target;
420	int num_disks;
421	int num_luns;
422	ctl_gen_flags flags;
423	ctl_ha_mode ha_mode;
424	int inquiry_pq_no_lun;
425	struct sysctl_ctx_list sysctl_ctx;
426	struct sysctl_oid *sysctl_tree;
427	struct ctl_ioctl_info ioctl_info;
428	struct ctl_lun lun;
429	struct ctl_io_pool *internal_pool;
430	struct ctl_io_pool *emergency_pool;
431	struct ctl_io_pool *othersc_pool;
432	struct proc *work_thread;
433	int targ_online;
434	uint32_t ctl_lun_mask[CTL_MAX_LUNS >> 5];
435	struct ctl_lun *ctl_luns[CTL_MAX_LUNS];
436	struct ctl_wwpn_iid wwpn_iid[CTL_MAX_PORTS][CTL_MAX_INIT_PER_PORT];
437	uint32_t ctl_port_mask;
438	uint64_t aps_locked_lun;
439	STAILQ_HEAD(, ctl_lun) lun_list;
440	STAILQ_HEAD(, ctl_be_lun) pending_lun_queue;
441	STAILQ_HEAD(, ctl_io_hdr) task_queue;
442	STAILQ_HEAD(, ctl_io_hdr) incoming_queue;
443	STAILQ_HEAD(, ctl_io_hdr) rtr_queue;
444	STAILQ_HEAD(, ctl_io_hdr) done_queue;
445	STAILQ_HEAD(, ctl_io_hdr) isc_queue;
446	uint32_t num_frontends;
447	STAILQ_HEAD(, ctl_frontend) fe_list;
448	struct ctl_frontend *ctl_ports[CTL_MAX_PORTS];
449	uint32_t num_backends;
450	STAILQ_HEAD(, ctl_backend_driver) be_list;
451	uint32_t num_pools;
452	uint32_t cur_pool_id;
453	STAILQ_HEAD(, ctl_io_pool) io_pools;
454	time_t last_print_jiffies;
455	uint32_t skipped_prints;
456};
457
458#ifdef _KERNEL
459
460extern struct ctl_cmd_entry ctl_cmd_table[];
461
462uint32_t ctl_get_initindex(struct ctl_nexus *nexus);
463int ctl_pool_create(struct ctl_softc *ctl_softc, ctl_pool_type pool_type,
464		    uint32_t total_ctl_io, struct ctl_io_pool **npool);
465int ctl_pool_acquire(struct ctl_io_pool *pool);
466int ctl_pool_invalidate(struct ctl_io_pool *pool);
467int ctl_pool_release(struct ctl_io_pool *pool);
468void ctl_pool_free(struct ctl_softc *ctl_softc, struct ctl_io_pool *pool);
469int ctl_scsi_release(struct ctl_scsiio *ctsio);
470int ctl_scsi_reserve(struct ctl_scsiio *ctsio);
471int ctl_start_stop(struct ctl_scsiio *ctsio);
472int ctl_sync_cache(struct ctl_scsiio *ctsio);
473int ctl_format(struct ctl_scsiio *ctsio);
474int ctl_write_buffer(struct ctl_scsiio *ctsio);
475int ctl_mode_select(struct ctl_scsiio *ctsio);
476int ctl_mode_sense(struct ctl_scsiio *ctsio);
477int ctl_read_capacity(struct ctl_scsiio *ctsio);
478int ctl_service_action_in(struct ctl_scsiio *ctsio);
479int ctl_read_write(struct ctl_scsiio *ctsio);
480int ctl_report_luns(struct ctl_scsiio *ctsio);
481int ctl_request_sense(struct ctl_scsiio *ctsio);
482int ctl_tur(struct ctl_scsiio *ctsio);
483int ctl_inquiry(struct ctl_scsiio *ctsio);
484int ctl_persistent_reserve_in(struct ctl_scsiio *ctsio);
485int ctl_persistent_reserve_out(struct ctl_scsiio *ctsio);
486int ctl_maintenance_in(struct ctl_scsiio *ctsio);
487void ctl_done_lock(union ctl_io *io, int have_lock);
488int ctl_isc(struct ctl_scsiio *ctsio);
489
490#endif	/* _KERNEL */
491
492#endif	/* _CTL_PRIVATE_H_ */
493
494/*
495 * vim: ts=8
496 */
497