xref: /openbmc/linux/include/scsi/libfc.h (revision c5cb444c)
1 /*
2  * Copyright(c) 2007 Intel Corporation. All rights reserved.
3  *
4  * This program is free software; you can redistribute it and/or modify it
5  * under the terms and conditions of the GNU General Public License,
6  * version 2, as published by the Free Software Foundation.
7  *
8  * This program is distributed in the hope it will be useful, but WITHOUT
9  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
11  * more details.
12  *
13  * You should have received a copy of the GNU General Public License along with
14  * this program; if not, write to the Free Software Foundation, Inc.,
15  * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
16  *
17  * Maintained at www.Open-FCoE.org
18  */
19 
20 #ifndef _LIBFC_H_
21 #define _LIBFC_H_
22 
23 #include <linux/timer.h>
24 #include <linux/if.h>
25 #include <linux/percpu.h>
26 
27 #include <scsi/scsi_transport.h>
28 #include <scsi/scsi_transport_fc.h>
29 #include <scsi/scsi_bsg_fc.h>
30 
31 #include <scsi/fc/fc_fcp.h>
32 #include <scsi/fc/fc_ns.h>
33 #include <scsi/fc/fc_ms.h>
34 #include <scsi/fc/fc_els.h>
35 #include <scsi/fc/fc_gs.h>
36 
37 #include <scsi/fc_frame.h>
38 
39 #define	FC_FC4_PROV_SIZE	(FC_TYPE_FCP + 1)	/* size of tables */
40 
41 /*
42  * libfc error codes
43  */
44 #define	FC_NO_ERR	0	/* no error */
45 #define	FC_EX_TIMEOUT	1	/* Exchange timeout */
46 #define	FC_EX_CLOSED	2	/* Exchange closed */
47 #define FC_EX_ALLOC_ERR	3	/* Exchange allocation failed */
48 #define FC_EX_XMIT_ERR	4	/* Exchange transmit failed */
49 #define FC_EX_ELS_RJT	5	/* ELS rejected */
50 #define FC_EX_INV_LOGIN	6	/* Login not completed */
51 #define FC_EX_SEQ_ERR	6	/* Exchange sequence error */
52 
53 /**
54  * enum fc_lport_state - Local port states
55  * @LPORT_ST_DISABLED: Disabled
56  * @LPORT_ST_FLOGI:    Fabric login (FLOGI) sent
57  * @LPORT_ST_DNS:      Waiting for name server remote port to become ready
58  * @LPORT_ST_RPN_ID:   Register port name by ID (RPN_ID) sent
59  * @LPORT_ST_RFT_ID:   Register Fibre Channel types by ID (RFT_ID) sent
60  * @LPORT_ST_RFF_ID:   Register FC-4 Features by ID (RFF_ID) sent
61  * @LPORT_ST_FDMI:     Waiting for mgmt server rport to become ready
62  * @LPORT_ST_RHBA:
63  * @LPORT_ST_SCR:      State Change Register (SCR) sent
64  * @LPORT_ST_READY:    Ready for use
65  * @LPORT_ST_LOGO:     Local port logout (LOGO) sent
66  * @LPORT_ST_RESET:    Local port reset
67  */
68 enum fc_lport_state {
69 	LPORT_ST_DISABLED = 0,
70 	LPORT_ST_FLOGI,
71 	LPORT_ST_DNS,
72 	LPORT_ST_RNN_ID,
73 	LPORT_ST_RSNN_NN,
74 	LPORT_ST_RSPN_ID,
75 	LPORT_ST_RFT_ID,
76 	LPORT_ST_RFF_ID,
77 	LPORT_ST_FDMI,
78 	LPORT_ST_RHBA,
79 	LPORT_ST_RPA,
80 	LPORT_ST_DHBA,
81 	LPORT_ST_DPRT,
82 	LPORT_ST_SCR,
83 	LPORT_ST_READY,
84 	LPORT_ST_LOGO,
85 	LPORT_ST_RESET
86 };
87 
88 enum fc_disc_event {
89 	DISC_EV_NONE = 0,
90 	DISC_EV_SUCCESS,
91 	DISC_EV_FAILED
92 };
93 
94 /**
95  * enum fc_rport_state - Remote port states
96  * @RPORT_ST_INIT:    Initialized
97  * @RPORT_ST_FLOGI:   Waiting for FLOGI completion for point-to-multipoint
98  * @RPORT_ST_PLOGI_WAIT:   Waiting for peer to login for point-to-multipoint
99  * @RPORT_ST_PLOGI:   Waiting for PLOGI completion
100  * @RPORT_ST_PRLI:    Waiting for PRLI completion
101  * @RPORT_ST_RTV:     Waiting for RTV completion
102  * @RPORT_ST_READY:   Ready for use
103  * @RPORT_ST_ADISC:   Discover Address sent
104  * @RPORT_ST_DELETE:  Remote port being deleted
105 */
106 enum fc_rport_state {
107 	RPORT_ST_INIT,
108 	RPORT_ST_FLOGI,
109 	RPORT_ST_PLOGI_WAIT,
110 	RPORT_ST_PLOGI,
111 	RPORT_ST_PRLI,
112 	RPORT_ST_RTV,
113 	RPORT_ST_READY,
114 	RPORT_ST_ADISC,
115 	RPORT_ST_DELETE,
116 };
117 
118 /**
119  * struct fc_disc_port - temporary discovery port to hold rport identifiers
120  * @lp:         Fibre Channel host port instance
121  * @peers:      Node for list management during discovery and RSCN processing
122  * @rport_work: Work struct for starting the rport state machine
123  * @port_id:    Port ID of the discovered port
124  */
125 struct fc_disc_port {
126 	struct fc_lport    *lp;
127 	struct list_head   peers;
128 	struct work_struct rport_work;
129 	u32                port_id;
130 };
131 
132 /**
133  * enum fc_rport_event - Remote port events
134  * @RPORT_EV_NONE:   No event
135  * @RPORT_EV_READY:  Remote port is ready for use
136  * @RPORT_EV_FAILED: State machine failed, remote port is not ready
137  * @RPORT_EV_STOP:   Remote port has been stopped
138  * @RPORT_EV_LOGO:   Remote port logout (LOGO) sent
139  */
140 enum fc_rport_event {
141 	RPORT_EV_NONE = 0,
142 	RPORT_EV_READY,
143 	RPORT_EV_FAILED,
144 	RPORT_EV_STOP,
145 	RPORT_EV_LOGO
146 };
147 
148 struct fc_rport_priv;
149 
150 /**
151  * struct fc_rport_operations - Operations for a remote port
152  * @event_callback: Function to be called for remote port events
153  */
154 struct fc_rport_operations {
155 	void (*event_callback)(struct fc_lport *, struct fc_rport_priv *,
156 			       enum fc_rport_event);
157 };
158 
159 /**
160  * struct fc_rport_libfc_priv - libfc internal information about a remote port
161  * @local_port: The associated local port
162  * @rp_state:   Indicates READY for I/O or DELETE when blocked
163  * @flags:      REC and RETRY supported flags
164  * @e_d_tov:    Error detect timeout value (in msec)
165  * @r_a_tov:    Resource allocation timeout value (in msec)
166  */
167 struct fc_rport_libfc_priv {
168 	struct fc_lport		   *local_port;
169 	enum fc_rport_state        rp_state;
170 	u16			   flags;
171 	#define FC_RP_FLAGS_REC_SUPPORTED	(1 << 0)
172 	#define FC_RP_FLAGS_RETRY		(1 << 1)
173 	#define FC_RP_STARTED			(1 << 2)
174 	#define FC_RP_FLAGS_CONF_REQ		(1 << 3)
175 	unsigned int	           e_d_tov;
176 	unsigned int	           r_a_tov;
177 };
178 
179 /**
180  * struct fc_rport_priv - libfc remote port and discovery info
181  * @local_port:     The associated local port
182  * @rport:          The FC transport remote port
183  * @kref:           Reference counter
184  * @rp_state:       Enumeration that tracks progress of PLOGI, PRLI,
185  *                  and RTV exchanges
186  * @ids:            The remote port identifiers and roles
187  * @flags:          STARTED, REC and RETRY_SUPPORTED flags
188  * @max_seq:        Maximum number of concurrent sequences
189  * @disc_id:        The discovery identifier
190  * @maxframe_size:  The maximum frame size
191  * @retries:        The retry count for the current state
192  * @major_retries:  The retry count for the entire PLOGI/PRLI state machine
193  * @e_d_tov:        Error detect timeout value (in msec)
194  * @r_a_tov:        Resource allocation timeout value (in msec)
195  * @rp_mutex:       The mutex that protects the remote port
196  * @retry_work:     Handle for retries
197  * @event_callback: Callback when READY, FAILED or LOGO states complete
198  * @prli_count:     Count of open PRLI sessions in providers
199  * @rcu:	    Structure used for freeing in an RCU-safe manner
200  */
201 struct fc_rport_priv {
202 	struct fc_lport		    *local_port;
203 	struct fc_rport		    *rport;
204 	struct kref		    kref;
205 	enum fc_rport_state         rp_state;
206 	struct fc_rport_identifiers ids;
207 	u16			    flags;
208 	u16		            max_seq;
209 	u16			    disc_id;
210 	u16			    maxframe_size;
211 	unsigned int	            retries;
212 	unsigned int	            major_retries;
213 	unsigned int	            e_d_tov;
214 	unsigned int	            r_a_tov;
215 	struct mutex                rp_mutex;
216 	struct delayed_work	    retry_work;
217 	enum fc_rport_event         event;
218 	struct fc_rport_operations  *ops;
219 	struct list_head            peers;
220 	struct work_struct          event_work;
221 	u32			    supported_classes;
222 	u16                         prli_count;
223 	struct rcu_head		    rcu;
224 	u16			    sp_features;
225 	u8			    spp_type;
226 	void			    (*lld_event_callback)(struct fc_lport *,
227 						      struct fc_rport_priv *,
228 						      enum fc_rport_event);
229 };
230 
231 /**
232  * struct fc_stats - fc stats structure
233  * @SecondsSinceLastReset: Seconds since the last reset
234  * @TxFrames:              Number of transmitted frames
235  * @TxWords:               Number of transmitted words
236  * @RxFrames:              Number of received frames
237  * @RxWords:               Number of received words
238  * @ErrorFrames:           Number of received error frames
239  * @DumpedFrames:          Number of dumped frames
240  * @FcpPktAllocFails:      Number of fcp packet allocation failures
241  * @FcpPktAborts:          Number of fcp packet aborts
242  * @FcpFrameAllocFails:    Number of fcp frame allocation failures
243  * @LinkFailureCount:      Number of link failures
244  * @LossOfSignalCount:     Number for signal losses
245  * @InvalidTxWordCount:    Number of invalid transmitted words
246  * @InvalidCRCCount:       Number of invalid CRCs
247  * @InputRequests:         Number of input requests
248  * @OutputRequests:        Number of output requests
249  * @ControlRequests:       Number of control requests
250  * @InputBytes:            Number of received bytes
251  * @OutputBytes:           Number of transmitted bytes
252  * @VLinkFailureCount:     Number of virtual link failures
253  * @MissDiscAdvCount:      Number of missing FIP discovery advertisement
254  */
255 struct fc_stats {
256 	u64		SecondsSinceLastReset;
257 	u64		TxFrames;
258 	u64		TxWords;
259 	u64		RxFrames;
260 	u64		RxWords;
261 	u64		ErrorFrames;
262 	u64		DumpedFrames;
263 	u64		FcpPktAllocFails;
264 	u64		FcpPktAborts;
265 	u64		FcpFrameAllocFails;
266 	u64		LinkFailureCount;
267 	u64		LossOfSignalCount;
268 	u64		InvalidTxWordCount;
269 	u64		InvalidCRCCount;
270 	u64		InputRequests;
271 	u64		OutputRequests;
272 	u64		ControlRequests;
273 	u64		InputBytes;
274 	u64		OutputBytes;
275 	u64		VLinkFailureCount;
276 	u64		MissDiscAdvCount;
277 };
278 
279 /**
280  * struct fc_seq_els_data - ELS data used for passing ELS specific responses
281  * @reason: The reason for rejection
282  * @explan: The explanation of the rejection
283  *
284  * Mainly used by the exchange manager layer.
285  */
286 struct fc_seq_els_data {
287 	enum fc_els_rjt_reason reason;
288 	enum fc_els_rjt_explan explan;
289 };
290 
291 /**
292  * struct fc_fcp_pkt - FCP request structure (one for each scsi_cmnd request)
293  * @lp:              The associated local port
294  * @state:           The state of the I/O
295  * @ref_cnt:         Reference count
296  * @scsi_pkt_lock:   Lock to protect the SCSI packet (must be taken before the
297  *                   host_lock if both are to be held at the same time)
298  * @cmd:             The SCSI command (set and clear with the host_lock held)
299  * @list:            Tracks queued commands (accessed with the host_lock held)
300  * @timer:           The command timer
301  * @tm_done:         Completion indicator
302  * @wait_for_comp:   Indicator to wait for completion of the I/O (in jiffies)
303  * @data_len:        The length of the data
304  * @cdb_cmd:         The CDB command
305  * @xfer_len:        The transfer length
306  * @xfer_ddp:        Indicates if this transfer used DDP (XID of the exchange
307  *                   will be set here if DDP was setup)
308  * @xfer_contig_end: The offset into the buffer if the buffer is contiguous
309  *                   (Tx and Rx)
310  * @max_payload:     The maximum payload size (in bytes)
311  * @io_status:       SCSI result (upper 24 bits)
312  * @cdb_status:      CDB status
313  * @status_code:     FCP I/O status
314  * @scsi_comp_flags: Completion flags (bit 3 Underrun bit 2: overrun)
315  * @req_flags:       Request flags (bit 0: read bit:1 write)
316  * @scsi_resid:      SCSI residule length
317  * @rport:           The remote port that the SCSI command is targeted at
318  * @seq_ptr:         The sequence that will carry the SCSI command
319  * @recov_retry:     Number of recovery retries
320  * @recov_seq:       The sequence for REC or SRR
321  */
322 struct fc_fcp_pkt {
323 	spinlock_t	  scsi_pkt_lock;
324 	atomic_t	  ref_cnt;
325 
326 	/* SCSI command and data transfer information */
327 	u32		  data_len;
328 
329 	/* SCSI I/O related information */
330 	struct scsi_cmnd  *cmd;
331 	struct list_head  list;
332 
333 	/* Housekeeping information */
334 	struct fc_lport   *lp;
335 	u8		  state;
336 
337 	/* SCSI/FCP return status */
338 	u8		  cdb_status;
339 	u8		  status_code;
340 	u8		  scsi_comp_flags;
341 	u32		  io_status;
342 	u32		  req_flags;
343 	u32		  scsi_resid;
344 
345 	/* Transport related veriables */
346 	size_t		  xfer_len;
347 	struct fcp_cmnd   cdb_cmd;
348 	u32		  xfer_contig_end;
349 	u16		  max_payload;
350 	u16		  xfer_ddp;
351 
352 	/* Associated structures */
353 	struct fc_rport	  *rport;
354 	struct fc_seq	  *seq_ptr;
355 
356 	/* Timeout/error related information */
357 	struct timer_list timer;
358 	int		  wait_for_comp;
359 	int		  timer_delay;
360 	u32		  recov_retry;
361 	struct fc_seq	  *recov_seq;
362 	struct completion tm_done;
363 } ____cacheline_aligned_in_smp;
364 
365 /*
366  * Structure and function definitions for managing Fibre Channel Exchanges
367  * and Sequences
368  *
369  * fc_exch holds state for one exchange and links to its active sequence.
370  *
371  * fc_seq holds the state for an individual sequence.
372  */
373 
374 struct fc_exch_mgr;
375 struct fc_exch_mgr_anchor;
376 extern u16 fc_cpu_mask;	/* cpu mask for possible cpus */
377 
378 /**
379  * struct fc_seq - FC sequence
380  * @id:       The sequence ID
381  * @ssb_stat: Status flags for the sequence status block (SSB)
382  * @cnt:      Number of frames sent so far
383  * @rec_data: FC-4 value for REC
384  */
385 struct fc_seq {
386 	u8  id;
387 	u16 ssb_stat;
388 	u16 cnt;
389 	u32 rec_data;
390 };
391 
392 #define FC_EX_DONE		(1 << 0) /* ep is completed */
393 #define FC_EX_RST_CLEANUP	(1 << 1) /* reset is forcing completion */
394 #define FC_EX_QUARANTINE	(1 << 2) /* exch is quarantined */
395 
396 /**
397  * struct fc_exch - Fibre Channel Exchange
398  * @em:           Exchange manager
399  * @pool:         Exchange pool
400  * @state:        The exchange's state
401  * @xid:          The exchange ID
402  * @ex_list:      Handle used by the EM to track free exchanges
403  * @ex_lock:      Lock that protects the exchange
404  * @ex_refcnt:    Reference count
405  * @timeout_work: Handle for timeout handler
406  * @lp:           The local port that this exchange is on
407  * @oxid:         Originator's exchange ID
408  * @rxid:         Responder's exchange ID
409  * @oid:          Originator's FCID
410  * @sid:          Source FCID
411  * @did:          Destination FCID
412  * @esb_stat:     ESB exchange status
413  * @r_a_tov:      Resouce allocation time out value (in msecs)
414  * @seq_id:       The next sequence ID to use
415  * @encaps:       encapsulation information for lower-level driver
416  * @f_ctl:        F_CTL flags for the sequence
417  * @fh_type:      The frame type
418  * @class:        The class of service
419  * @seq:          The sequence in use on this exchange
420  * @resp_active:  Number of tasks that are concurrently executing @resp().
421  * @resp_task:    If @resp_active > 0, either the task executing @resp(), the
422  *                task that has been interrupted to execute the soft-IRQ
423  *                executing @resp() or NULL if more than one task is executing
424  *                @resp concurrently.
425  * @resp_wq:      Waitqueue for the tasks waiting on @resp_active.
426  * @resp:         Callback for responses on this exchange
427  * @destructor:   Called when destroying the exchange
428  * @arg:          Passed as a void pointer to the resp() callback
429  *
430  * Locking notes: The ex_lock protects following items:
431  *	state, esb_stat, f_ctl, seq.ssb_stat
432  *	seq_id
433  *	sequence allocation
434  */
435 struct fc_exch {
436 	spinlock_t	    ex_lock;
437 	atomic_t	    ex_refcnt;
438 	enum fc_class	    class;
439 	struct fc_exch_mgr  *em;
440 	struct fc_exch_pool *pool;
441 	struct list_head    ex_list;
442 	struct fc_lport	    *lp;
443 	u32		    esb_stat;
444 	u8		    state;
445 	u8		    fh_type;
446 	u8		    seq_id;
447 	u8		    encaps;
448 	u16		    xid;
449 	u16		    oxid;
450 	u16		    rxid;
451 	u32		    oid;
452 	u32		    sid;
453 	u32		    did;
454 	u32		    r_a_tov;
455 	u32		    f_ctl;
456 	struct fc_seq       seq;
457 	int		    resp_active;
458 	struct task_struct  *resp_task;
459 	wait_queue_head_t   resp_wq;
460 	void		    (*resp)(struct fc_seq *, struct fc_frame *, void *);
461 	void		    *arg;
462 	void		    (*destructor)(struct fc_seq *, void *);
463 	struct delayed_work timeout_work;
464 } ____cacheline_aligned_in_smp;
465 #define	fc_seq_exch(sp) container_of(sp, struct fc_exch, seq)
466 
467 
468 struct libfc_function_template {
469 	/*
470 	 * Interface to send a FC frame
471 	 *
472 	 * STATUS: REQUIRED
473 	 */
474 	int (*frame_send)(struct fc_lport *, struct fc_frame *);
475 
476 	/*
477 	 * Interface to send ELS/CT frames
478 	 *
479 	 * STATUS: OPTIONAL
480 	 */
481 	struct fc_seq *(*elsct_send)(struct fc_lport *, u32 did,
482 				     struct fc_frame *, unsigned int op,
483 				     void (*resp)(struct fc_seq *,
484 					     struct fc_frame *, void *arg),
485 				     void *arg, u32 timer_msec);
486 
487 	/*
488 	 * Send the FC frame payload using a new exchange and sequence.
489 	 *
490 	 * The exchange response handler is set in this routine to resp()
491 	 * function pointer. It can be called in two scenarios: if a timeout
492 	 * occurs or if a response frame is received for the exchange. The
493 	 * fc_frame pointer in response handler will also indicate timeout
494 	 * as error using IS_ERR related macros.
495 	 *
496 	 * The exchange destructor handler is also set in this routine.
497 	 * The destructor handler is invoked by EM layer when exchange
498 	 * is about to free, this can be used by caller to free its
499 	 * resources along with exchange free.
500 	 *
501 	 * The arg is passed back to resp and destructor handler.
502 	 *
503 	 * The timeout value (in msec) for an exchange is set if non zero
504 	 * timer_msec argument is specified. The timer is canceled when
505 	 * it fires or when the exchange is done. The exchange timeout handler
506 	 * is registered by EM layer.
507 	 *
508 	 * STATUS: OPTIONAL
509 	 */
510 	struct fc_seq *(*exch_seq_send)(struct fc_lport *, struct fc_frame *,
511 					void (*resp)(struct fc_seq *,
512 						     struct fc_frame *,
513 						     void *),
514 					void (*destructor)(struct fc_seq *,
515 							   void *),
516 					void *, unsigned int timer_msec);
517 
518 	/*
519 	 * Sets up the DDP context for a given exchange id on the given
520 	 * scatterlist if LLD supports DDP for large receive.
521 	 *
522 	 * STATUS: OPTIONAL
523 	 */
524 	int (*ddp_setup)(struct fc_lport *, u16, struct scatterlist *,
525 			 unsigned int);
526 	/*
527 	 * Completes the DDP transfer and returns the length of data DDPed
528 	 * for the given exchange id.
529 	 *
530 	 * STATUS: OPTIONAL
531 	 */
532 	int (*ddp_done)(struct fc_lport *, u16);
533 	/*
534 	 * Sets up the DDP context for a given exchange id on the given
535 	 * scatterlist if LLD supports DDP for target.
536 	 *
537 	 * STATUS: OPTIONAL
538 	 */
539 	int (*ddp_target)(struct fc_lport *, u16, struct scatterlist *,
540 			  unsigned int);
541 	/*
542 	 * Allow LLD to fill its own Link Error Status Block
543 	 *
544 	 * STATUS: OPTIONAL
545 	 */
546 	void (*get_lesb)(struct fc_lport *, struct fc_els_lesb *lesb);
547 	/*
548 	 * Send a frame using an existing sequence and exchange.
549 	 *
550 	 * STATUS: OPTIONAL
551 	 */
552 	int (*seq_send)(struct fc_lport *, struct fc_seq *,
553 			struct fc_frame *);
554 
555 	/*
556 	 * Abort an exchange and sequence. Generally called because of a
557 	 * exchange timeout or an abort from the upper layer.
558 	 *
559 	 * A timer_msec can be specified for abort timeout, if non-zero
560 	 * timer_msec value is specified then exchange resp handler
561 	 * will be called with timeout error if no response to abort.
562 	 *
563 	 * STATUS: OPTIONAL
564 	 */
565 	int (*seq_exch_abort)(const struct fc_seq *,
566 			      unsigned int timer_msec);
567 
568 	/*
569 	 * Indicate that an exchange/sequence tuple is complete and the memory
570 	 * allocated for the related objects may be freed.
571 	 *
572 	 * STATUS: OPTIONAL
573 	 */
574 	void (*exch_done)(struct fc_seq *);
575 
576 	/*
577 	 * Start a new sequence on the same exchange/sequence tuple.
578 	 *
579 	 * STATUS: OPTIONAL
580 	 */
581 	struct fc_seq *(*seq_start_next)(struct fc_seq *);
582 
583 	/*
584 	 * Set a response handler for the exchange of the sequence.
585 	 *
586 	 * STATUS: OPTIONAL
587 	 */
588 	void (*seq_set_resp)(struct fc_seq *sp,
589 			     void (*resp)(struct fc_seq *, struct fc_frame *,
590 					  void *),
591 			     void *arg);
592 
593 	/*
594 	 * Assign a sequence for an incoming request frame.
595 	 *
596 	 * STATUS: OPTIONAL
597 	 */
598 	struct fc_seq *(*seq_assign)(struct fc_lport *, struct fc_frame *);
599 
600 	/*
601 	 * Release the reference on the sequence returned by seq_assign().
602 	 *
603 	 * STATUS: OPTIONAL
604 	 */
605 	void (*seq_release)(struct fc_seq *);
606 
607 	/*
608 	 * Reset an exchange manager, completing all sequences and exchanges.
609 	 * If s_id is non-zero, reset only exchanges originating from that FID.
610 	 * If d_id is non-zero, reset only exchanges sending to that FID.
611 	 *
612 	 * STATUS: OPTIONAL
613 	 */
614 	void (*exch_mgr_reset)(struct fc_lport *, u32 s_id, u32 d_id);
615 
616 	/*
617 	 * Flush the rport work queue. Generally used before shutdown.
618 	 *
619 	 * STATUS: OPTIONAL
620 	 */
621 	void (*rport_flush_queue)(void);
622 
623 	/*
624 	 * Set the local port FC_ID.
625 	 *
626 	 * This may be provided by the LLD to allow it to be
627 	 * notified when the local port is assigned a FC-ID.
628 	 *
629 	 * The frame, if non-NULL, is the incoming frame with the
630 	 * FLOGI LS_ACC or FLOGI, and may contain the granted MAC
631 	 * address for the LLD.  The frame pointer may be NULL if
632 	 * no MAC is associated with this assignment (LOGO or PLOGI).
633 	 *
634 	 * If FC_ID is non-zero, r_a_tov and e_d_tov must be valid.
635 	 *
636 	 * Note: this is called with the local port mutex held.
637 	 *
638 	 * STATUS: OPTIONAL
639 	 */
640 	void (*lport_set_port_id)(struct fc_lport *, u32 port_id,
641 				  struct fc_frame *);
642 
643 	/*
644 	 * Create a remote port with a given port ID
645 	 *
646 	 * STATUS: OPTIONAL
647 	 */
648 	struct fc_rport_priv *(*rport_create)(struct fc_lport *, u32);
649 
650 	/*
651 	 * Initiates the RP state machine. It is called from the LP module.
652 	 * This function will issue the following commands to the N_Port
653 	 * identified by the FC ID provided.
654 	 *
655 	 * - PLOGI
656 	 * - PRLI
657 	 * - RTV
658 	 *
659 	 * STATUS: OPTIONAL
660 	 */
661 	int (*rport_login)(struct fc_rport_priv *);
662 
663 	/*
664 	 * Logoff, and remove the rport from the transport if
665 	 * it had been added. This will send a LOGO to the target.
666 	 *
667 	 * STATUS: OPTIONAL
668 	 */
669 	int (*rport_logoff)(struct fc_rport_priv *);
670 
671 	/*
672 	 * Receive a request from a remote port.
673 	 *
674 	 * STATUS: OPTIONAL
675 	 */
676 	void (*rport_recv_req)(struct fc_lport *, struct fc_frame *);
677 
678 	/*
679 	 * lookup an rport by it's port ID.
680 	 *
681 	 * STATUS: OPTIONAL
682 	 */
683 	struct fc_rport_priv *(*rport_lookup)(const struct fc_lport *, u32);
684 
685 	/*
686 	 * Destroy an rport after final kref_put().
687 	 * The argument is a pointer to the kref inside the fc_rport_priv.
688 	 */
689 	void (*rport_destroy)(struct kref *);
690 
691 	/*
692 	 * Callback routine after the remote port is logged in
693 	 *
694 	 * STATUS: OPTIONAL
695 	 */
696 	void (*rport_event_callback)(struct fc_lport *,
697 				     struct fc_rport_priv *,
698 				     enum fc_rport_event);
699 
700 	/*
701 	 * Send a fcp cmd from fsp pkt.
702 	 * Called with the SCSI host lock unlocked and irqs disabled.
703 	 *
704 	 * The resp handler is called when FCP_RSP received.
705 	 *
706 	 * STATUS: OPTIONAL
707 	 */
708 	int (*fcp_cmd_send)(struct fc_lport *, struct fc_fcp_pkt *,
709 			    void (*resp)(struct fc_seq *, struct fc_frame *,
710 					 void *));
711 
712 	/*
713 	 * Cleanup the FCP layer, used during link down and reset
714 	 *
715 	 * STATUS: OPTIONAL
716 	 */
717 	void (*fcp_cleanup)(struct fc_lport *);
718 
719 	/*
720 	 * Abort all I/O on a local port
721 	 *
722 	 * STATUS: OPTIONAL
723 	 */
724 	void (*fcp_abort_io)(struct fc_lport *);
725 
726 	/*
727 	 * Receive a request for the discovery layer.
728 	 *
729 	 * STATUS: OPTIONAL
730 	 */
731 	void (*disc_recv_req)(struct fc_lport *, struct fc_frame *);
732 
733 	/*
734 	 * Start discovery for a local port.
735 	 *
736 	 * STATUS: OPTIONAL
737 	 */
738 	void (*disc_start)(void (*disc_callback)(struct fc_lport *,
739 						 enum fc_disc_event),
740 			   struct fc_lport *);
741 
742 	/*
743 	 * Stop discovery for a given lport. This will remove
744 	 * all discovered rports
745 	 *
746 	 * STATUS: OPTIONAL
747 	 */
748 	void (*disc_stop) (struct fc_lport *);
749 
750 	/*
751 	 * Stop discovery for a given lport. This will block
752 	 * until all discovered rports are deleted from the
753 	 * FC transport class
754 	 *
755 	 * STATUS: OPTIONAL
756 	 */
757 	void (*disc_stop_final) (struct fc_lport *);
758 };
759 
760 /**
761  * struct fc_disc - Discovery context
762  * @retry_count:   Number of retries
763  * @pending:       1 if discovery is pending, 0 if not
764  * @requested:     1 if discovery has been requested, 0 if not
765  * @seq_count:     Number of sequences used for discovery
766  * @buf_len:       Length of the discovery buffer
767  * @disc_id:       Discovery ID
768  * @rports:        List of discovered remote ports
769  * @priv:          Private pointer for use by discovery code
770  * @disc_mutex:    Mutex that protects the discovery context
771  * @partial_buf:   Partial name buffer (if names are returned
772  *                 in multiple frames)
773  * @disc_work:     handle for delayed work context
774  * @disc_callback: Callback routine called when discovery completes
775  */
776 struct fc_disc {
777 	unsigned char         retry_count;
778 	unsigned char         pending;
779 	unsigned char         requested;
780 	unsigned short        seq_count;
781 	unsigned char         buf_len;
782 	u16                   disc_id;
783 
784 	struct list_head      rports;
785 	void		      *priv;
786 	struct mutex	      disc_mutex;
787 	struct fc_gpn_ft_resp partial_buf;
788 	struct delayed_work   disc_work;
789 
790 	void (*disc_callback)(struct fc_lport *,
791 			      enum fc_disc_event);
792 };
793 
794 /*
795  * Local port notifier and events.
796  */
797 extern struct blocking_notifier_head fc_lport_notifier_head;
798 enum fc_lport_event {
799 	FC_LPORT_EV_ADD,
800 	FC_LPORT_EV_DEL,
801 };
802 
803 /**
804  * struct fc_lport - Local port
805  * @host:                  The SCSI host associated with a local port
806  * @ema_list:              Exchange manager anchor list
807  * @dns_rdata:             The directory server remote port
808  * @ms_rdata:		   The management server remote port
809  * @ptp_rdata:             Point to point remote port
810  * @scsi_priv:             FCP layer internal data
811  * @disc:                  Discovery context
812  * @vports:                Child vports if N_Port
813  * @vport:                 Parent vport if VN_Port
814  * @tt:                    Libfc function template
815  * @link_up:               Link state (1 = link up, 0 = link down)
816  * @qfull:                 Queue state (1 queue is full, 0 queue is not full)
817  * @state:                 Identifies the state
818  * @boot_time:             Timestamp indicating when the local port came online
819  * @host_stats:            SCSI host statistics
820  * @stats:                 FC local port stats (TODO separate libfc LLD stats)
821  * @retry_count:           Number of retries in the current state
822  * @port_id:               FC Port ID
823  * @wwpn:                  World Wide Port Name
824  * @wwnn:                  World Wide Node Name
825  * @service_params:        Common service parameters
826  * @e_d_tov:               Error detection timeout value
827  * @r_a_tov:               Resouce allocation timeout value
828  * @rnid_gen:              RNID information
829  * @sg_supp:               Indicates if scatter gather is supported
830  * @seq_offload:           Indicates if sequence offload is supported
831  * @crc_offload:           Indicates if CRC offload is supported
832  * @lro_enabled:           Indicates if large receive offload is supported
833  * @does_npiv:             Supports multiple vports
834  * @npiv_enabled:          Switch/fabric allows NPIV
835  * @mfs:                   The maximum Fibre Channel payload size
836  * @max_retry_count:       The maximum retry attempts
837  * @max_rport_retry_count: The maximum remote port retry attempts
838  * @rport_priv_size:       Size needed by driver after struct fc_rport_priv
839  * @lro_xid:               The maximum XID for LRO
840  * @lso_max:               The maximum large offload send size
841  * @fcts:                  FC-4 type mask
842  * @lp_mutex:              Mutex to protect the local port
843  * @list:                  Linkage on list of vport peers
844  * @retry_work:            Handle to local port for delayed retry context
845  * @prov:		   Pointers available for use by passive FC-4 providers
846  * @lport_list:            Linkage on module-wide list of local ports
847  */
848 struct fc_lport {
849 	/* Associations */
850 	struct Scsi_Host	       *host;
851 	struct list_head	       ema_list;
852 	struct fc_rport_priv	       *dns_rdata;
853 	struct fc_rport_priv	       *ms_rdata;
854 	struct fc_rport_priv	       *ptp_rdata;
855 	void			       *scsi_priv;
856 	struct fc_disc                 disc;
857 
858 	/* Virtual port information */
859 	struct list_head	       vports;
860 	struct fc_vport		       *vport;
861 
862 	/* Operational Information */
863 	struct libfc_function_template tt;
864 	u8			       link_up;
865 	u8			       qfull;
866 	u16			       vlan;
867 	enum fc_lport_state	       state;
868 	unsigned long		       boot_time;
869 	struct fc_host_statistics      host_stats;
870 	struct fc_stats	__percpu       *stats;
871 	u8			       retry_count;
872 
873 	/* Fabric information */
874 	u32                            port_id;
875 	u64			       wwpn;
876 	u64			       wwnn;
877 	unsigned int		       service_params;
878 	unsigned int		       e_d_tov;
879 	unsigned int		       r_a_tov;
880 	struct fc_els_rnid_gen	       rnid_gen;
881 
882 	/* Capabilities */
883 	u32			       sg_supp:1;
884 	u32			       seq_offload:1;
885 	u32			       crc_offload:1;
886 	u32			       lro_enabled:1;
887 	u32			       does_npiv:1;
888 	u32			       npiv_enabled:1;
889 	u32			       point_to_multipoint:1;
890 	u32			       fdmi_enabled:1;
891 	u32			       mfs;
892 	u8			       max_retry_count;
893 	u8			       max_rport_retry_count;
894 	u16			       rport_priv_size;
895 	u16			       link_speed;
896 	u16			       link_supported_speeds;
897 	u16			       lro_xid;
898 	unsigned int		       lso_max;
899 	struct fc_ns_fts	       fcts;
900 
901 	/* Miscellaneous */
902 	struct mutex                   lp_mutex;
903 	struct list_head               list;
904 	struct delayed_work	       retry_work;
905 	void			       *prov[FC_FC4_PROV_SIZE];
906 	struct list_head               lport_list;
907 };
908 
909 /**
910  * struct fc4_prov - FC-4 provider registration
911  * @prli:               Handler for incoming PRLI
912  * @prlo:               Handler for session reset
913  * @recv:		Handler for incoming request
914  * @module:		Pointer to module.  May be NULL.
915  */
916 struct fc4_prov {
917 	int (*prli)(struct fc_rport_priv *, u32 spp_len,
918 		    const struct fc_els_spp *spp_in,
919 		    struct fc_els_spp *spp_out);
920 	void (*prlo)(struct fc_rport_priv *);
921 	void (*recv)(struct fc_lport *, struct fc_frame *);
922 	struct module *module;
923 };
924 
925 /*
926  * Register FC-4 provider with libfc.
927  */
928 int fc_fc4_register_provider(enum fc_fh_type type, struct fc4_prov *);
929 void fc_fc4_deregister_provider(enum fc_fh_type type, struct fc4_prov *);
930 
931 /*
932  * FC_LPORT HELPER FUNCTIONS
933  *****************************/
934 
935 /**
936  * fc_lport_test_ready() - Determine if a local port is in the READY state
937  * @lport: The local port to test
938  */
939 static inline int fc_lport_test_ready(struct fc_lport *lport)
940 {
941 	return lport->state == LPORT_ST_READY;
942 }
943 
944 /**
945  * fc_set_wwnn() - Set the World Wide Node Name of a local port
946  * @lport: The local port whose WWNN is to be set
947  * @wwnn:  The new WWNN
948  */
949 static inline void fc_set_wwnn(struct fc_lport *lport, u64 wwnn)
950 {
951 	lport->wwnn = wwnn;
952 }
953 
954 /**
955  * fc_set_wwpn() - Set the World Wide Port Name of a local port
956  * @lport: The local port whose WWPN is to be set
957  * @wwnn:  The new WWPN
958  */
959 static inline void fc_set_wwpn(struct fc_lport *lport, u64 wwnn)
960 {
961 	lport->wwpn = wwnn;
962 }
963 
964 /**
965  * fc_lport_state_enter() - Change a local port's state
966  * @lport: The local port whose state is to change
967  * @state: The new state
968  */
969 static inline void fc_lport_state_enter(struct fc_lport *lport,
970 					enum fc_lport_state state)
971 {
972 	if (state != lport->state)
973 		lport->retry_count = 0;
974 	lport->state = state;
975 }
976 
977 /**
978  * fc_lport_init_stats() - Allocate per-CPU statistics for a local port
979  * @lport: The local port whose statistics are to be initialized
980  */
981 static inline int fc_lport_init_stats(struct fc_lport *lport)
982 {
983 	lport->stats = alloc_percpu(struct fc_stats);
984 	if (!lport->stats)
985 		return -ENOMEM;
986 	return 0;
987 }
988 
989 /**
990  * fc_lport_free_stats() - Free memory for a local port's statistics
991  * @lport: The local port whose statistics are to be freed
992  */
993 static inline void fc_lport_free_stats(struct fc_lport *lport)
994 {
995 	free_percpu(lport->stats);
996 }
997 
998 /**
999  * lport_priv() - Return the private data from a local port
1000  * @lport: The local port whose private data is to be retreived
1001  */
1002 static inline void *lport_priv(const struct fc_lport *lport)
1003 {
1004 	return (void *)(lport + 1);
1005 }
1006 
1007 /**
1008  * libfc_host_alloc() - Allocate a Scsi_Host with room for a local port and
1009  *                      LLD private data
1010  * @sht:       The SCSI host template
1011  * @priv_size: Size of private data
1012  *
1013  * Returns: libfc lport
1014  */
1015 static inline struct fc_lport *
1016 libfc_host_alloc(struct scsi_host_template *sht, int priv_size)
1017 {
1018 	struct fc_lport *lport;
1019 	struct Scsi_Host *shost;
1020 
1021 	shost = scsi_host_alloc(sht, sizeof(*lport) + priv_size);
1022 	if (!shost)
1023 		return NULL;
1024 	lport = shost_priv(shost);
1025 	lport->host = shost;
1026 	INIT_LIST_HEAD(&lport->ema_list);
1027 	INIT_LIST_HEAD(&lport->vports);
1028 	return lport;
1029 }
1030 
1031 /*
1032  * FC_FCP HELPER FUNCTIONS
1033  *****************************/
1034 static inline bool fc_fcp_is_read(const struct fc_fcp_pkt *fsp)
1035 {
1036 	if (fsp && fsp->cmd)
1037 		return fsp->cmd->sc_data_direction == DMA_FROM_DEVICE;
1038 	return false;
1039 }
1040 
1041 /*
1042  * LOCAL PORT LAYER
1043  *****************************/
1044 int fc_lport_init(struct fc_lport *);
1045 int fc_lport_destroy(struct fc_lport *);
1046 int fc_fabric_logoff(struct fc_lport *);
1047 int fc_fabric_login(struct fc_lport *);
1048 void __fc_linkup(struct fc_lport *);
1049 void fc_linkup(struct fc_lport *);
1050 void __fc_linkdown(struct fc_lport *);
1051 void fc_linkdown(struct fc_lport *);
1052 void fc_vport_setlink(struct fc_lport *);
1053 void fc_vports_linkchange(struct fc_lport *);
1054 int fc_lport_config(struct fc_lport *);
1055 int fc_lport_reset(struct fc_lport *);
1056 void fc_lport_recv(struct fc_lport *lport, struct fc_frame *fp);
1057 int fc_set_mfs(struct fc_lport *, u32 mfs);
1058 struct fc_lport *libfc_vport_create(struct fc_vport *, int privsize);
1059 struct fc_lport *fc_vport_id_lookup(struct fc_lport *, u32 port_id);
1060 int fc_lport_bsg_request(struct fc_bsg_job *);
1061 void fc_lport_set_local_id(struct fc_lport *, u32 port_id);
1062 void fc_lport_iterate(void (*func)(struct fc_lport *, void *), void *);
1063 
1064 /*
1065  * REMOTE PORT LAYER
1066  *****************************/
1067 int fc_rport_init(struct fc_lport *);
1068 void fc_rport_terminate_io(struct fc_rport *);
1069 
1070 /*
1071  * DISCOVERY LAYER
1072  *****************************/
1073 void fc_disc_init(struct fc_lport *);
1074 void fc_disc_config(struct fc_lport *, void *);
1075 
1076 static inline struct fc_lport *fc_disc_lport(struct fc_disc *disc)
1077 {
1078 	return container_of(disc, struct fc_lport, disc);
1079 }
1080 
1081 /*
1082  * FCP LAYER
1083  *****************************/
1084 int fc_fcp_init(struct fc_lport *);
1085 void fc_fcp_destroy(struct fc_lport *);
1086 
1087 /*
1088  * SCSI INTERACTION LAYER
1089  *****************************/
1090 int fc_queuecommand(struct Scsi_Host *, struct scsi_cmnd *);
1091 int fc_eh_abort(struct scsi_cmnd *);
1092 int fc_eh_device_reset(struct scsi_cmnd *);
1093 int fc_eh_host_reset(struct scsi_cmnd *);
1094 int fc_slave_alloc(struct scsi_device *);
1095 
1096 /*
1097  * ELS/CT interface
1098  *****************************/
1099 int fc_elsct_init(struct fc_lport *);
1100 struct fc_seq *fc_elsct_send(struct fc_lport *, u32 did,
1101 				    struct fc_frame *,
1102 				    unsigned int op,
1103 				    void (*resp)(struct fc_seq *,
1104 						 struct fc_frame *,
1105 						 void *arg),
1106 				    void *arg, u32 timer_msec);
1107 void fc_lport_flogi_resp(struct fc_seq *, struct fc_frame *, void *);
1108 void fc_lport_logo_resp(struct fc_seq *, struct fc_frame *, void *);
1109 void fc_fill_reply_hdr(struct fc_frame *, const struct fc_frame *,
1110 		       enum fc_rctl, u32 parm_offset);
1111 void fc_fill_hdr(struct fc_frame *, const struct fc_frame *,
1112 		 enum fc_rctl, u32 f_ctl, u16 seq_cnt, u32 parm_offset);
1113 
1114 
1115 /*
1116  * EXCHANGE MANAGER LAYER
1117  *****************************/
1118 int fc_exch_init(struct fc_lport *);
1119 void fc_exch_update_stats(struct fc_lport *lport);
1120 void fc_seq_els_rsp_send(struct fc_frame *, enum fc_els_cmd,
1121 			 struct fc_seq_els_data *);
1122 struct fc_exch_mgr_anchor *fc_exch_mgr_add(struct fc_lport *,
1123 					   struct fc_exch_mgr *,
1124 					   bool (*match)(struct fc_frame *));
1125 void fc_exch_mgr_del(struct fc_exch_mgr_anchor *);
1126 int fc_exch_mgr_list_clone(struct fc_lport *src, struct fc_lport *dst);
1127 struct fc_exch_mgr *fc_exch_mgr_alloc(struct fc_lport *, enum fc_class class,
1128 				      u16 min_xid, u16 max_xid,
1129 				      bool (*match)(struct fc_frame *));
1130 void fc_exch_mgr_free(struct fc_lport *);
1131 void fc_exch_recv(struct fc_lport *, struct fc_frame *);
1132 void fc_exch_mgr_reset(struct fc_lport *, u32 s_id, u32 d_id);
1133 
1134 /*
1135  * Functions for fc_functions_template
1136  */
1137 void fc_get_host_speed(struct Scsi_Host *);
1138 void fc_get_host_port_state(struct Scsi_Host *);
1139 void fc_set_rport_loss_tmo(struct fc_rport *, u32 timeout);
1140 struct fc_host_statistics *fc_get_host_stats(struct Scsi_Host *);
1141 
1142 #endif /* _LIBFC_H_ */
1143