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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * zfcp device driver
4  *
5  * Debug traces for zfcp.
6  *
7  * Copyright IBM Corp. 2002, 2018
8  */
9 
10 #define KMSG_COMPONENT "zfcp"
11 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
12 
13 #include <linux/module.h>
14 #include <linux/ctype.h>
15 #include <linux/slab.h>
16 #include <asm/debug.h>
17 #include "zfcp_dbf.h"
18 #include "zfcp_ext.h"
19 #include "zfcp_fc.h"
20 
21 static u32 dbfsize = 4;
22 
23 module_param(dbfsize, uint, 0400);
24 MODULE_PARM_DESC(dbfsize,
25 		 "number of pages for each debug feature area (default 4)");
26 
27 static u32 dbflevel = 3;
28 
29 module_param(dbflevel, uint, 0400);
30 MODULE_PARM_DESC(dbflevel,
31 		 "log level for each debug feature area "
32 		 "(default 3, range 0..6)");
33 
zfcp_dbf_plen(unsigned int offset)34 static inline unsigned int zfcp_dbf_plen(unsigned int offset)
35 {
36 	return sizeof(struct zfcp_dbf_pay) + offset - ZFCP_DBF_PAY_MAX_REC;
37 }
38 
39 static inline
zfcp_dbf_pl_write(struct zfcp_dbf * dbf,void * data,u16 length,char * area,u64 req_id)40 void zfcp_dbf_pl_write(struct zfcp_dbf *dbf, void *data, u16 length, char *area,
41 		       u64 req_id)
42 {
43 	struct zfcp_dbf_pay *pl = &dbf->pay_buf;
44 	u16 offset = 0, rec_length;
45 
46 	spin_lock(&dbf->pay_lock);
47 	memset(pl, 0, sizeof(*pl));
48 	pl->fsf_req_id = req_id;
49 	memcpy(pl->area, area, ZFCP_DBF_TAG_LEN);
50 
51 	while (offset < length) {
52 		rec_length = min((u16) ZFCP_DBF_PAY_MAX_REC,
53 				 (u16) (length - offset));
54 		memcpy(pl->data, data + offset, rec_length);
55 		debug_event(dbf->pay, 1, pl, zfcp_dbf_plen(rec_length));
56 
57 		offset += rec_length;
58 		pl->counter++;
59 	}
60 
61 	spin_unlock(&dbf->pay_lock);
62 }
63 
64 /**
65  * zfcp_dbf_hba_fsf_res - trace event for fsf responses
66  * @tag: tag indicating which kind of unsolicited status has been received
67  * @req: request for which a response was received
68  */
zfcp_dbf_hba_fsf_res(char * tag,int level,struct zfcp_fsf_req * req)69 void zfcp_dbf_hba_fsf_res(char *tag, int level, struct zfcp_fsf_req *req)
70 {
71 	struct zfcp_dbf *dbf = req->adapter->dbf;
72 	struct fsf_qtcb_prefix *q_pref = &req->qtcb->prefix;
73 	struct fsf_qtcb_header *q_head = &req->qtcb->header;
74 	struct zfcp_dbf_hba *rec = &dbf->hba_buf;
75 	unsigned long flags;
76 
77 	spin_lock_irqsave(&dbf->hba_lock, flags);
78 	memset(rec, 0, sizeof(*rec));
79 
80 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
81 	rec->id = ZFCP_DBF_HBA_RES;
82 	rec->fsf_req_id = req->req_id;
83 	rec->fsf_req_status = req->status;
84 	rec->fsf_cmd = req->fsf_command;
85 	rec->fsf_seq_no = req->seq_no;
86 	rec->u.res.req_issued = req->issued;
87 	rec->u.res.prot_status = q_pref->prot_status;
88 	rec->u.res.fsf_status = q_head->fsf_status;
89 	rec->u.res.port_handle = q_head->port_handle;
90 	rec->u.res.lun_handle = q_head->lun_handle;
91 
92 	memcpy(rec->u.res.prot_status_qual, &q_pref->prot_status_qual,
93 	       FSF_PROT_STATUS_QUAL_SIZE);
94 	memcpy(rec->u.res.fsf_status_qual, &q_head->fsf_status_qual,
95 	       FSF_STATUS_QUALIFIER_SIZE);
96 
97 	rec->pl_len = q_head->log_length;
98 	zfcp_dbf_pl_write(dbf, (char *)q_pref + q_head->log_start,
99 			  rec->pl_len, "fsf_res", req->req_id);
100 
101 	debug_event(dbf->hba, level, rec, sizeof(*rec));
102 	spin_unlock_irqrestore(&dbf->hba_lock, flags);
103 }
104 
105 /**
106  * zfcp_dbf_hba_fsf_uss - trace event for an unsolicited status buffer
107  * @tag: tag indicating which kind of unsolicited status has been received
108  * @req: request providing the unsolicited status
109  */
zfcp_dbf_hba_fsf_uss(char * tag,struct zfcp_fsf_req * req)110 void zfcp_dbf_hba_fsf_uss(char *tag, struct zfcp_fsf_req *req)
111 {
112 	struct zfcp_dbf *dbf = req->adapter->dbf;
113 	struct fsf_status_read_buffer *srb = req->data;
114 	struct zfcp_dbf_hba *rec = &dbf->hba_buf;
115 	static int const level = 2;
116 	unsigned long flags;
117 
118 	if (unlikely(!debug_level_enabled(dbf->hba, level)))
119 		return;
120 
121 	spin_lock_irqsave(&dbf->hba_lock, flags);
122 	memset(rec, 0, sizeof(*rec));
123 
124 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
125 	rec->id = ZFCP_DBF_HBA_USS;
126 	rec->fsf_req_id = req->req_id;
127 	rec->fsf_req_status = req->status;
128 	rec->fsf_cmd = req->fsf_command;
129 
130 	if (!srb)
131 		goto log;
132 
133 	rec->u.uss.status_type = srb->status_type;
134 	rec->u.uss.status_subtype = srb->status_subtype;
135 	rec->u.uss.d_id = ntoh24(srb->d_id);
136 	rec->u.uss.lun = srb->fcp_lun;
137 	memcpy(&rec->u.uss.queue_designator, &srb->queue_designator,
138 	       sizeof(rec->u.uss.queue_designator));
139 
140 	/* status read buffer payload length */
141 	rec->pl_len = (!srb->length) ? 0 : srb->length -
142 			offsetof(struct fsf_status_read_buffer, payload);
143 
144 	if (rec->pl_len)
145 		zfcp_dbf_pl_write(dbf, srb->payload.data, rec->pl_len,
146 				  "fsf_uss", req->req_id);
147 log:
148 	debug_event(dbf->hba, level, rec, sizeof(*rec));
149 	spin_unlock_irqrestore(&dbf->hba_lock, flags);
150 }
151 
152 /**
153  * zfcp_dbf_hba_bit_err - trace event for bit error conditions
154  * @tag: tag indicating which kind of unsolicited status has been received
155  * @req: request which caused the bit_error condition
156  */
zfcp_dbf_hba_bit_err(char * tag,struct zfcp_fsf_req * req)157 void zfcp_dbf_hba_bit_err(char *tag, struct zfcp_fsf_req *req)
158 {
159 	struct zfcp_dbf *dbf = req->adapter->dbf;
160 	struct zfcp_dbf_hba *rec = &dbf->hba_buf;
161 	struct fsf_status_read_buffer *sr_buf = req->data;
162 	static int const level = 1;
163 	unsigned long flags;
164 
165 	if (unlikely(!debug_level_enabled(dbf->hba, level)))
166 		return;
167 
168 	spin_lock_irqsave(&dbf->hba_lock, flags);
169 	memset(rec, 0, sizeof(*rec));
170 
171 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
172 	rec->id = ZFCP_DBF_HBA_BIT;
173 	rec->fsf_req_id = req->req_id;
174 	rec->fsf_req_status = req->status;
175 	rec->fsf_cmd = req->fsf_command;
176 	memcpy(&rec->u.be, &sr_buf->payload.bit_error,
177 	       sizeof(struct fsf_bit_error_payload));
178 
179 	debug_event(dbf->hba, level, rec, sizeof(*rec));
180 	spin_unlock_irqrestore(&dbf->hba_lock, flags);
181 }
182 
183 /**
184  * zfcp_dbf_hba_def_err - trace event for deferred error messages
185  * @adapter: pointer to struct zfcp_adapter
186  * @req_id: request id which caused the deferred error message
187  * @scount: number of sbals incl. the signaling sbal
188  * @pl: array of all involved sbals
189  */
zfcp_dbf_hba_def_err(struct zfcp_adapter * adapter,u64 req_id,u16 scount,void ** pl)190 void zfcp_dbf_hba_def_err(struct zfcp_adapter *adapter, u64 req_id, u16 scount,
191 			  void **pl)
192 {
193 	struct zfcp_dbf *dbf = adapter->dbf;
194 	struct zfcp_dbf_pay *payload = &dbf->pay_buf;
195 	unsigned long flags;
196 	static int const level = 1;
197 	u16 length;
198 
199 	if (unlikely(!debug_level_enabled(dbf->pay, level)))
200 		return;
201 
202 	if (!pl)
203 		return;
204 
205 	spin_lock_irqsave(&dbf->pay_lock, flags);
206 	memset(payload, 0, sizeof(*payload));
207 
208 	memcpy(payload->area, "def_err", 7);
209 	payload->fsf_req_id = req_id;
210 	payload->counter = 0;
211 	length = min((u16)sizeof(struct qdio_buffer),
212 		     (u16)ZFCP_DBF_PAY_MAX_REC);
213 
214 	while (payload->counter < scount && (char *)pl[payload->counter]) {
215 		memcpy(payload->data, (char *)pl[payload->counter], length);
216 		debug_event(dbf->pay, level, payload, zfcp_dbf_plen(length));
217 		payload->counter++;
218 	}
219 
220 	spin_unlock_irqrestore(&dbf->pay_lock, flags);
221 }
222 
223 /**
224  * zfcp_dbf_hba_basic - trace event for basic adapter events
225  * @adapter: pointer to struct zfcp_adapter
226  */
zfcp_dbf_hba_basic(char * tag,struct zfcp_adapter * adapter)227 void zfcp_dbf_hba_basic(char *tag, struct zfcp_adapter *adapter)
228 {
229 	struct zfcp_dbf *dbf = adapter->dbf;
230 	struct zfcp_dbf_hba *rec = &dbf->hba_buf;
231 	static int const level = 1;
232 	unsigned long flags;
233 
234 	if (unlikely(!debug_level_enabled(dbf->hba, level)))
235 		return;
236 
237 	spin_lock_irqsave(&dbf->hba_lock, flags);
238 	memset(rec, 0, sizeof(*rec));
239 
240 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
241 	rec->id = ZFCP_DBF_HBA_BASIC;
242 
243 	debug_event(dbf->hba, level, rec, sizeof(*rec));
244 	spin_unlock_irqrestore(&dbf->hba_lock, flags);
245 }
246 
zfcp_dbf_set_common(struct zfcp_dbf_rec * rec,struct zfcp_adapter * adapter,struct zfcp_port * port,struct scsi_device * sdev)247 static void zfcp_dbf_set_common(struct zfcp_dbf_rec *rec,
248 				struct zfcp_adapter *adapter,
249 				struct zfcp_port *port,
250 				struct scsi_device *sdev)
251 {
252 	rec->adapter_status = atomic_read(&adapter->status);
253 	if (port) {
254 		rec->port_status = atomic_read(&port->status);
255 		rec->wwpn = port->wwpn;
256 		rec->d_id = port->d_id;
257 	}
258 	if (sdev) {
259 		rec->lun_status = atomic_read(&sdev_to_zfcp(sdev)->status);
260 		rec->lun = zfcp_scsi_dev_lun(sdev);
261 	} else
262 		rec->lun = ZFCP_DBF_INVALID_LUN;
263 }
264 
265 /**
266  * zfcp_dbf_rec_trig - trace event related to triggered recovery
267  * @tag: identifier for event
268  * @adapter: adapter on which the erp_action should run
269  * @port: remote port involved in the erp_action
270  * @sdev: scsi device involved in the erp_action
271  * @want: wanted erp_action
272  * @need: required erp_action
273  *
274  * The adapter->erp_lock has to be held.
275  */
zfcp_dbf_rec_trig(char * tag,struct zfcp_adapter * adapter,struct zfcp_port * port,struct scsi_device * sdev,u8 want,u8 need)276 void zfcp_dbf_rec_trig(char *tag, struct zfcp_adapter *adapter,
277 		       struct zfcp_port *port, struct scsi_device *sdev,
278 		       u8 want, u8 need)
279 {
280 	struct zfcp_dbf *dbf = adapter->dbf;
281 	struct zfcp_dbf_rec *rec = &dbf->rec_buf;
282 	static int const level = 1;
283 	struct list_head *entry;
284 	unsigned long flags;
285 
286 	lockdep_assert_held(&adapter->erp_lock);
287 
288 	if (unlikely(!debug_level_enabled(dbf->rec, level)))
289 		return;
290 
291 	spin_lock_irqsave(&dbf->rec_lock, flags);
292 	memset(rec, 0, sizeof(*rec));
293 
294 	rec->id = ZFCP_DBF_REC_TRIG;
295 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
296 	zfcp_dbf_set_common(rec, adapter, port, sdev);
297 
298 	list_for_each(entry, &adapter->erp_ready_head)
299 		rec->u.trig.ready++;
300 
301 	list_for_each(entry, &adapter->erp_running_head)
302 		rec->u.trig.running++;
303 
304 	rec->u.trig.want = want;
305 	rec->u.trig.need = need;
306 
307 	debug_event(dbf->rec, level, rec, sizeof(*rec));
308 	spin_unlock_irqrestore(&dbf->rec_lock, flags);
309 }
310 
311 /**
312  * zfcp_dbf_rec_trig_lock - trace event related to triggered recovery with lock
313  * @tag: identifier for event
314  * @adapter: adapter on which the erp_action should run
315  * @port: remote port involved in the erp_action
316  * @sdev: scsi device involved in the erp_action
317  * @want: wanted erp_action
318  * @need: required erp_action
319  *
320  * The adapter->erp_lock must not be held.
321  */
zfcp_dbf_rec_trig_lock(char * tag,struct zfcp_adapter * adapter,struct zfcp_port * port,struct scsi_device * sdev,u8 want,u8 need)322 void zfcp_dbf_rec_trig_lock(char *tag, struct zfcp_adapter *adapter,
323 			    struct zfcp_port *port, struct scsi_device *sdev,
324 			    u8 want, u8 need)
325 {
326 	unsigned long flags;
327 
328 	read_lock_irqsave(&adapter->erp_lock, flags);
329 	zfcp_dbf_rec_trig(tag, adapter, port, sdev, want, need);
330 	read_unlock_irqrestore(&adapter->erp_lock, flags);
331 }
332 
333 /**
334  * zfcp_dbf_rec_run_lvl - trace event related to running recovery
335  * @level: trace level to be used for event
336  * @tag: identifier for event
337  * @erp: erp_action running
338  */
zfcp_dbf_rec_run_lvl(int level,char * tag,struct zfcp_erp_action * erp)339 void zfcp_dbf_rec_run_lvl(int level, char *tag, struct zfcp_erp_action *erp)
340 {
341 	struct zfcp_dbf *dbf = erp->adapter->dbf;
342 	struct zfcp_dbf_rec *rec = &dbf->rec_buf;
343 	unsigned long flags;
344 
345 	if (!debug_level_enabled(dbf->rec, level))
346 		return;
347 
348 	spin_lock_irqsave(&dbf->rec_lock, flags);
349 	memset(rec, 0, sizeof(*rec));
350 
351 	rec->id = ZFCP_DBF_REC_RUN;
352 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
353 	zfcp_dbf_set_common(rec, erp->adapter, erp->port, erp->sdev);
354 
355 	rec->u.run.fsf_req_id = erp->fsf_req_id;
356 	rec->u.run.rec_status = erp->status;
357 	rec->u.run.rec_step = erp->step;
358 	rec->u.run.rec_action = erp->action;
359 
360 	if (erp->sdev)
361 		rec->u.run.rec_count =
362 			atomic_read(&sdev_to_zfcp(erp->sdev)->erp_counter);
363 	else if (erp->port)
364 		rec->u.run.rec_count = atomic_read(&erp->port->erp_counter);
365 	else
366 		rec->u.run.rec_count = atomic_read(&erp->adapter->erp_counter);
367 
368 	debug_event(dbf->rec, level, rec, sizeof(*rec));
369 	spin_unlock_irqrestore(&dbf->rec_lock, flags);
370 }
371 
372 /**
373  * zfcp_dbf_rec_run - trace event related to running recovery
374  * @tag: identifier for event
375  * @erp: erp_action running
376  */
zfcp_dbf_rec_run(char * tag,struct zfcp_erp_action * erp)377 void zfcp_dbf_rec_run(char *tag, struct zfcp_erp_action *erp)
378 {
379 	zfcp_dbf_rec_run_lvl(1, tag, erp);
380 }
381 
382 /**
383  * zfcp_dbf_rec_run_wka - trace wka port event with info like running recovery
384  * @tag: identifier for event
385  * @wka_port: well known address port
386  * @req_id: request ID to correlate with potential HBA trace record
387  */
zfcp_dbf_rec_run_wka(char * tag,struct zfcp_fc_wka_port * wka_port,u64 req_id)388 void zfcp_dbf_rec_run_wka(char *tag, struct zfcp_fc_wka_port *wka_port,
389 			  u64 req_id)
390 {
391 	struct zfcp_dbf *dbf = wka_port->adapter->dbf;
392 	struct zfcp_dbf_rec *rec = &dbf->rec_buf;
393 	static int const level = 1;
394 	unsigned long flags;
395 
396 	if (unlikely(!debug_level_enabled(dbf->rec, level)))
397 		return;
398 
399 	spin_lock_irqsave(&dbf->rec_lock, flags);
400 	memset(rec, 0, sizeof(*rec));
401 
402 	rec->id = ZFCP_DBF_REC_RUN;
403 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
404 	rec->port_status = wka_port->status;
405 	rec->d_id = wka_port->d_id;
406 	rec->lun = ZFCP_DBF_INVALID_LUN;
407 
408 	rec->u.run.fsf_req_id = req_id;
409 	rec->u.run.rec_status = ~0;
410 	rec->u.run.rec_step = ~0;
411 	rec->u.run.rec_action = ~0;
412 	rec->u.run.rec_count = ~0;
413 
414 	debug_event(dbf->rec, level, rec, sizeof(*rec));
415 	spin_unlock_irqrestore(&dbf->rec_lock, flags);
416 }
417 
418 #define ZFCP_DBF_SAN_LEVEL 1
419 
420 static inline
zfcp_dbf_san(char * tag,struct zfcp_dbf * dbf,char * paytag,struct scatterlist * sg,u8 id,u16 len,u64 req_id,u32 d_id,u16 cap_len)421 void zfcp_dbf_san(char *tag, struct zfcp_dbf *dbf,
422 		  char *paytag, struct scatterlist *sg, u8 id, u16 len,
423 		  u64 req_id, u32 d_id, u16 cap_len)
424 {
425 	struct zfcp_dbf_san *rec = &dbf->san_buf;
426 	u16 rec_len;
427 	unsigned long flags;
428 	struct zfcp_dbf_pay *payload = &dbf->pay_buf;
429 	u16 pay_sum = 0;
430 
431 	spin_lock_irqsave(&dbf->san_lock, flags);
432 	memset(rec, 0, sizeof(*rec));
433 
434 	rec->id = id;
435 	rec->fsf_req_id = req_id;
436 	rec->d_id = d_id;
437 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
438 	rec->pl_len = len; /* full length even if we cap pay below */
439 	if (!sg)
440 		goto out;
441 	rec_len = min_t(unsigned int, sg->length, ZFCP_DBF_SAN_MAX_PAYLOAD);
442 	memcpy(rec->payload, sg_virt(sg), rec_len); /* part of 1st sg entry */
443 	if (len <= rec_len)
444 		goto out; /* skip pay record if full content in rec->payload */
445 
446 	/* if (len > rec_len):
447 	 * dump data up to cap_len ignoring small duplicate in rec->payload
448 	 */
449 	spin_lock(&dbf->pay_lock);
450 	memset(payload, 0, sizeof(*payload));
451 	memcpy(payload->area, paytag, ZFCP_DBF_TAG_LEN);
452 	payload->fsf_req_id = req_id;
453 	payload->counter = 0;
454 	for (; sg && pay_sum < cap_len; sg = sg_next(sg)) {
455 		u16 pay_len, offset = 0;
456 
457 		while (offset < sg->length && pay_sum < cap_len) {
458 			pay_len = min((u16)ZFCP_DBF_PAY_MAX_REC,
459 				      (u16)(sg->length - offset));
460 			/* cap_len <= pay_sum < cap_len+ZFCP_DBF_PAY_MAX_REC */
461 			memcpy(payload->data, sg_virt(sg) + offset, pay_len);
462 			debug_event(dbf->pay, ZFCP_DBF_SAN_LEVEL, payload,
463 				    zfcp_dbf_plen(pay_len));
464 			payload->counter++;
465 			offset += pay_len;
466 			pay_sum += pay_len;
467 		}
468 	}
469 	spin_unlock(&dbf->pay_lock);
470 
471 out:
472 	debug_event(dbf->san, ZFCP_DBF_SAN_LEVEL, rec, sizeof(*rec));
473 	spin_unlock_irqrestore(&dbf->san_lock, flags);
474 }
475 
476 /**
477  * zfcp_dbf_san_req - trace event for issued SAN request
478  * @tag: identifier for event
479  * @fsf_req: request containing issued CT data
480  * d_id: destination ID
481  */
zfcp_dbf_san_req(char * tag,struct zfcp_fsf_req * fsf,u32 d_id)482 void zfcp_dbf_san_req(char *tag, struct zfcp_fsf_req *fsf, u32 d_id)
483 {
484 	struct zfcp_dbf *dbf = fsf->adapter->dbf;
485 	struct zfcp_fsf_ct_els *ct_els = fsf->data;
486 	u16 length;
487 
488 	if (unlikely(!debug_level_enabled(dbf->san, ZFCP_DBF_SAN_LEVEL)))
489 		return;
490 
491 	length = (u16)zfcp_qdio_real_bytes(ct_els->req);
492 	zfcp_dbf_san(tag, dbf, "san_req", ct_els->req, ZFCP_DBF_SAN_REQ,
493 		     length, fsf->req_id, d_id, length);
494 }
495 
zfcp_dbf_san_res_cap_len_if_gpn_ft(char * tag,struct zfcp_fsf_req * fsf,u16 len)496 static u16 zfcp_dbf_san_res_cap_len_if_gpn_ft(char *tag,
497 					      struct zfcp_fsf_req *fsf,
498 					      u16 len)
499 {
500 	struct zfcp_fsf_ct_els *ct_els = fsf->data;
501 	struct fc_ct_hdr *reqh = sg_virt(ct_els->req);
502 	struct fc_ns_gid_ft *reqn = (struct fc_ns_gid_ft *)(reqh + 1);
503 	struct scatterlist *resp_entry = ct_els->resp;
504 	struct fc_ct_hdr *resph;
505 	struct fc_gpn_ft_resp *acc;
506 	int max_entries, x, last = 0;
507 
508 	if (!(memcmp(tag, "fsscth2", 7) == 0
509 	      && ct_els->d_id == FC_FID_DIR_SERV
510 	      && reqh->ct_rev == FC_CT_REV
511 	      && reqh->ct_in_id[0] == 0
512 	      && reqh->ct_in_id[1] == 0
513 	      && reqh->ct_in_id[2] == 0
514 	      && reqh->ct_fs_type == FC_FST_DIR
515 	      && reqh->ct_fs_subtype == FC_NS_SUBTYPE
516 	      && reqh->ct_options == 0
517 	      && reqh->_ct_resvd1 == 0
518 	      && reqh->ct_cmd == cpu_to_be16(FC_NS_GPN_FT)
519 	      /* reqh->ct_mr_size can vary so do not match but read below */
520 	      && reqh->_ct_resvd2 == 0
521 	      && reqh->ct_reason == 0
522 	      && reqh->ct_explan == 0
523 	      && reqh->ct_vendor == 0
524 	      && reqn->fn_resvd == 0
525 	      && reqn->fn_domain_id_scope == 0
526 	      && reqn->fn_area_id_scope == 0
527 	      && reqn->fn_fc4_type == FC_TYPE_FCP))
528 		return len; /* not GPN_FT response so do not cap */
529 
530 	acc = sg_virt(resp_entry);
531 
532 	/* cap all but accept CT responses to at least the CT header */
533 	resph = (struct fc_ct_hdr *)acc;
534 	if ((ct_els->status) ||
535 	    (resph->ct_cmd != cpu_to_be16(FC_FS_ACC)))
536 		return max(FC_CT_HDR_LEN, ZFCP_DBF_SAN_MAX_PAYLOAD);
537 
538 	max_entries = (be16_to_cpu(reqh->ct_mr_size) * 4 /
539 		       sizeof(struct fc_gpn_ft_resp))
540 		+ 1 /* zfcp_fc_scan_ports: bytes correct, entries off-by-one
541 		     * to account for header as 1st pseudo "entry" */;
542 
543 	/* the basic CT_IU preamble is the same size as one entry in the GPN_FT
544 	 * response, allowing us to skip special handling for it - just skip it
545 	 */
546 	for (x = 1; x < max_entries && !last; x++) {
547 		if (x % (ZFCP_FC_GPN_FT_ENT_PAGE + 1))
548 			acc++;
549 		else
550 			acc = sg_virt(++resp_entry);
551 
552 		last = acc->fp_flags & FC_NS_FID_LAST;
553 	}
554 	len = min(len, (u16)(x * sizeof(struct fc_gpn_ft_resp)));
555 	return len; /* cap after last entry */
556 }
557 
558 /**
559  * zfcp_dbf_san_res - trace event for received SAN request
560  * @tag: identifier for event
561  * @fsf_req: request containing issued CT data
562  */
zfcp_dbf_san_res(char * tag,struct zfcp_fsf_req * fsf)563 void zfcp_dbf_san_res(char *tag, struct zfcp_fsf_req *fsf)
564 {
565 	struct zfcp_dbf *dbf = fsf->adapter->dbf;
566 	struct zfcp_fsf_ct_els *ct_els = fsf->data;
567 	u16 length;
568 
569 	if (unlikely(!debug_level_enabled(dbf->san, ZFCP_DBF_SAN_LEVEL)))
570 		return;
571 
572 	length = (u16)zfcp_qdio_real_bytes(ct_els->resp);
573 	zfcp_dbf_san(tag, dbf, "san_res", ct_els->resp, ZFCP_DBF_SAN_RES,
574 		     length, fsf->req_id, ct_els->d_id,
575 		     zfcp_dbf_san_res_cap_len_if_gpn_ft(tag, fsf, length));
576 }
577 
578 /**
579  * zfcp_dbf_san_in_els - trace event for incoming ELS
580  * @tag: identifier for event
581  * @fsf_req: request containing issued CT data
582  */
zfcp_dbf_san_in_els(char * tag,struct zfcp_fsf_req * fsf)583 void zfcp_dbf_san_in_els(char *tag, struct zfcp_fsf_req *fsf)
584 {
585 	struct zfcp_dbf *dbf = fsf->adapter->dbf;
586 	struct fsf_status_read_buffer *srb =
587 		(struct fsf_status_read_buffer *) fsf->data;
588 	u16 length;
589 	struct scatterlist sg;
590 
591 	if (unlikely(!debug_level_enabled(dbf->san, ZFCP_DBF_SAN_LEVEL)))
592 		return;
593 
594 	length = (u16)(srb->length -
595 			offsetof(struct fsf_status_read_buffer, payload));
596 	sg_init_one(&sg, srb->payload.data, length);
597 	zfcp_dbf_san(tag, dbf, "san_els", &sg, ZFCP_DBF_SAN_ELS, length,
598 		     fsf->req_id, ntoh24(srb->d_id), length);
599 }
600 
601 /**
602  * zfcp_dbf_scsi - trace event for scsi commands
603  * @tag: identifier for event
604  * @sc: pointer to struct scsi_cmnd
605  * @fsf: pointer to struct zfcp_fsf_req
606  */
zfcp_dbf_scsi(char * tag,int level,struct scsi_cmnd * sc,struct zfcp_fsf_req * fsf)607 void zfcp_dbf_scsi(char *tag, int level, struct scsi_cmnd *sc,
608 		   struct zfcp_fsf_req *fsf)
609 {
610 	struct zfcp_adapter *adapter =
611 		(struct zfcp_adapter *) sc->device->host->hostdata[0];
612 	struct zfcp_dbf *dbf = adapter->dbf;
613 	struct zfcp_dbf_scsi *rec = &dbf->scsi_buf;
614 	struct fcp_resp_with_ext *fcp_rsp;
615 	struct fcp_resp_rsp_info *fcp_rsp_info;
616 	unsigned long flags;
617 
618 	spin_lock_irqsave(&dbf->scsi_lock, flags);
619 	memset(rec, 0, sizeof(*rec));
620 
621 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
622 	rec->id = ZFCP_DBF_SCSI_CMND;
623 	rec->scsi_result = sc->result;
624 	rec->scsi_retries = sc->retries;
625 	rec->scsi_allowed = sc->allowed;
626 	rec->scsi_id = sc->device->id;
627 	rec->scsi_lun = (u32)sc->device->lun;
628 	rec->scsi_lun_64_hi = (u32)(sc->device->lun >> 32);
629 	rec->host_scribble = (unsigned long)sc->host_scribble;
630 
631 	memcpy(rec->scsi_opcode, sc->cmnd,
632 	       min((int)sc->cmd_len, ZFCP_DBF_SCSI_OPCODE));
633 
634 	if (fsf) {
635 		rec->fsf_req_id = fsf->req_id;
636 		rec->pl_len = FCP_RESP_WITH_EXT;
637 		fcp_rsp = &(fsf->qtcb->bottom.io.fcp_rsp.iu);
638 		/* mandatory parts of FCP_RSP IU in this SCSI record */
639 		memcpy(&rec->fcp_rsp, fcp_rsp, FCP_RESP_WITH_EXT);
640 		if (fcp_rsp->resp.fr_flags & FCP_RSP_LEN_VAL) {
641 			fcp_rsp_info = (struct fcp_resp_rsp_info *) &fcp_rsp[1];
642 			rec->fcp_rsp_info = fcp_rsp_info->rsp_code;
643 			rec->pl_len += be32_to_cpu(fcp_rsp->ext.fr_rsp_len);
644 		}
645 		if (fcp_rsp->resp.fr_flags & FCP_SNS_LEN_VAL) {
646 			rec->pl_len += be32_to_cpu(fcp_rsp->ext.fr_sns_len);
647 		}
648 		/* complete FCP_RSP IU in associated PAYload record
649 		 * but only if there are optional parts
650 		 */
651 		if (fcp_rsp->resp.fr_flags != 0)
652 			zfcp_dbf_pl_write(
653 				dbf, fcp_rsp,
654 				/* at least one full PAY record
655 				 * but not beyond hardware response field
656 				 */
657 				min_t(u16, max_t(u16, rec->pl_len,
658 						 ZFCP_DBF_PAY_MAX_REC),
659 				      FSF_FCP_RSP_SIZE),
660 				"fcp_riu", fsf->req_id);
661 	}
662 
663 	debug_event(dbf->scsi, level, rec, sizeof(*rec));
664 	spin_unlock_irqrestore(&dbf->scsi_lock, flags);
665 }
666 
667 /**
668  * zfcp_dbf_scsi_eh() - Trace event for special cases of scsi_eh callbacks.
669  * @tag: Identifier for event.
670  * @adapter: Pointer to zfcp adapter as context for this event.
671  * @scsi_id: SCSI ID/target to indicate scope of task management function (TMF).
672  * @ret: Return value of calling function.
673  *
674  * This SCSI trace variant does not depend on any of:
675  * scsi_cmnd, zfcp_fsf_req, scsi_device.
676  */
zfcp_dbf_scsi_eh(char * tag,struct zfcp_adapter * adapter,unsigned int scsi_id,int ret)677 void zfcp_dbf_scsi_eh(char *tag, struct zfcp_adapter *adapter,
678 		      unsigned int scsi_id, int ret)
679 {
680 	struct zfcp_dbf *dbf = adapter->dbf;
681 	struct zfcp_dbf_scsi *rec = &dbf->scsi_buf;
682 	unsigned long flags;
683 	static int const level = 1;
684 
685 	if (unlikely(!debug_level_enabled(adapter->dbf->scsi, level)))
686 		return;
687 
688 	spin_lock_irqsave(&dbf->scsi_lock, flags);
689 	memset(rec, 0, sizeof(*rec));
690 
691 	memcpy(rec->tag, tag, ZFCP_DBF_TAG_LEN);
692 	rec->id = ZFCP_DBF_SCSI_CMND;
693 	rec->scsi_result = ret; /* re-use field, int is 4 bytes and fits */
694 	rec->scsi_retries = ~0;
695 	rec->scsi_allowed = ~0;
696 	rec->fcp_rsp_info = ~0;
697 	rec->scsi_id = scsi_id;
698 	rec->scsi_lun = (u32)ZFCP_DBF_INVALID_LUN;
699 	rec->scsi_lun_64_hi = (u32)(ZFCP_DBF_INVALID_LUN >> 32);
700 	rec->host_scribble = ~0;
701 	memset(rec->scsi_opcode, 0xff, ZFCP_DBF_SCSI_OPCODE);
702 
703 	debug_event(dbf->scsi, level, rec, sizeof(*rec));
704 	spin_unlock_irqrestore(&dbf->scsi_lock, flags);
705 }
706 
zfcp_dbf_reg(const char * name,int size,int rec_size)707 static debug_info_t *zfcp_dbf_reg(const char *name, int size, int rec_size)
708 {
709 	struct debug_info *d;
710 
711 	d = debug_register(name, size, 1, rec_size);
712 	if (!d)
713 		return NULL;
714 
715 	debug_register_view(d, &debug_hex_ascii_view);
716 	debug_set_level(d, dbflevel);
717 
718 	return d;
719 }
720 
zfcp_dbf_unregister(struct zfcp_dbf * dbf)721 static void zfcp_dbf_unregister(struct zfcp_dbf *dbf)
722 {
723 	if (!dbf)
724 		return;
725 
726 	debug_unregister(dbf->scsi);
727 	debug_unregister(dbf->san);
728 	debug_unregister(dbf->hba);
729 	debug_unregister(dbf->pay);
730 	debug_unregister(dbf->rec);
731 	kfree(dbf);
732 }
733 
734 /**
735  * zfcp_adapter_debug_register - registers debug feature for an adapter
736  * @adapter: pointer to adapter for which debug features should be registered
737  * return: -ENOMEM on error, 0 otherwise
738  */
zfcp_dbf_adapter_register(struct zfcp_adapter * adapter)739 int zfcp_dbf_adapter_register(struct zfcp_adapter *adapter)
740 {
741 	char name[DEBUG_MAX_NAME_LEN];
742 	struct zfcp_dbf *dbf;
743 
744 	dbf = kzalloc(sizeof(struct zfcp_dbf), GFP_KERNEL);
745 	if (!dbf)
746 		return -ENOMEM;
747 
748 	spin_lock_init(&dbf->pay_lock);
749 	spin_lock_init(&dbf->hba_lock);
750 	spin_lock_init(&dbf->san_lock);
751 	spin_lock_init(&dbf->scsi_lock);
752 	spin_lock_init(&dbf->rec_lock);
753 
754 	/* debug feature area which records recovery activity */
755 	sprintf(name, "zfcp_%s_rec", dev_name(&adapter->ccw_device->dev));
756 	dbf->rec = zfcp_dbf_reg(name, dbfsize, sizeof(struct zfcp_dbf_rec));
757 	if (!dbf->rec)
758 		goto err_out;
759 
760 	/* debug feature area which records HBA (FSF and QDIO) conditions */
761 	sprintf(name, "zfcp_%s_hba", dev_name(&adapter->ccw_device->dev));
762 	dbf->hba = zfcp_dbf_reg(name, dbfsize, sizeof(struct zfcp_dbf_hba));
763 	if (!dbf->hba)
764 		goto err_out;
765 
766 	/* debug feature area which records payload info */
767 	sprintf(name, "zfcp_%s_pay", dev_name(&adapter->ccw_device->dev));
768 	dbf->pay = zfcp_dbf_reg(name, dbfsize * 2, sizeof(struct zfcp_dbf_pay));
769 	if (!dbf->pay)
770 		goto err_out;
771 
772 	/* debug feature area which records SAN command failures and recovery */
773 	sprintf(name, "zfcp_%s_san", dev_name(&adapter->ccw_device->dev));
774 	dbf->san = zfcp_dbf_reg(name, dbfsize, sizeof(struct zfcp_dbf_san));
775 	if (!dbf->san)
776 		goto err_out;
777 
778 	/* debug feature area which records SCSI command failures and recovery */
779 	sprintf(name, "zfcp_%s_scsi", dev_name(&adapter->ccw_device->dev));
780 	dbf->scsi = zfcp_dbf_reg(name, dbfsize, sizeof(struct zfcp_dbf_scsi));
781 	if (!dbf->scsi)
782 		goto err_out;
783 
784 	adapter->dbf = dbf;
785 
786 	return 0;
787 err_out:
788 	zfcp_dbf_unregister(dbf);
789 	return -ENOMEM;
790 }
791 
792 /**
793  * zfcp_adapter_debug_unregister - unregisters debug feature for an adapter
794  * @adapter: pointer to adapter for which debug features should be unregistered
795  */
zfcp_dbf_adapter_unregister(struct zfcp_adapter * adapter)796 void zfcp_dbf_adapter_unregister(struct zfcp_adapter *adapter)
797 {
798 	struct zfcp_dbf *dbf = adapter->dbf;
799 
800 	adapter->dbf = NULL;
801 	zfcp_dbf_unregister(dbf);
802 }
803 
804