]> Pileus Git - ~andy/linux/blob - drivers/s390/scsi/zfcp_qdio.c
Merge branch 'v4l_for_linus' of git://git.kernel.org/pub/scm/linux/kernel/git/mchehab...
[~andy/linux] / drivers / s390 / scsi / zfcp_qdio.c
1 /*
2  * zfcp device driver
3  *
4  * Setup and helper functions to access QDIO.
5  *
6  * Copyright IBM Corporation 2002, 2010
7  */
8
9 #define KMSG_COMPONENT "zfcp"
10 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
11
12 #include <linux/slab.h>
13 #include "zfcp_ext.h"
14 #include "zfcp_qdio.h"
15
16 #define QBUFF_PER_PAGE          (PAGE_SIZE / sizeof(struct qdio_buffer))
17
18 static bool enable_multibuffer;
19 module_param_named(datarouter, enable_multibuffer, bool, 0400);
20 MODULE_PARM_DESC(datarouter, "Enable hardware data router support");
21
22 static int zfcp_qdio_buffers_enqueue(struct qdio_buffer **sbal)
23 {
24         int pos;
25
26         for (pos = 0; pos < QDIO_MAX_BUFFERS_PER_Q; pos += QBUFF_PER_PAGE) {
27                 sbal[pos] = (struct qdio_buffer *) get_zeroed_page(GFP_KERNEL);
28                 if (!sbal[pos])
29                         return -ENOMEM;
30         }
31         for (pos = 0; pos < QDIO_MAX_BUFFERS_PER_Q; pos++)
32                 if (pos % QBUFF_PER_PAGE)
33                         sbal[pos] = sbal[pos - 1] + 1;
34         return 0;
35 }
36
37 static void zfcp_qdio_handler_error(struct zfcp_qdio *qdio, char *id,
38                                     unsigned int qdio_err)
39 {
40         struct zfcp_adapter *adapter = qdio->adapter;
41
42         dev_warn(&adapter->ccw_device->dev, "A QDIO problem occurred\n");
43
44         if (qdio_err & QDIO_ERROR_SLSB_STATE) {
45                 zfcp_qdio_siosl(adapter);
46                 zfcp_erp_adapter_shutdown(adapter, 0, id);
47                 return;
48         }
49         zfcp_erp_adapter_reopen(adapter,
50                                 ZFCP_STATUS_ADAPTER_LINK_UNPLUGGED |
51                                 ZFCP_STATUS_COMMON_ERP_FAILED, id);
52 }
53
54 static void zfcp_qdio_zero_sbals(struct qdio_buffer *sbal[], int first, int cnt)
55 {
56         int i, sbal_idx;
57
58         for (i = first; i < first + cnt; i++) {
59                 sbal_idx = i % QDIO_MAX_BUFFERS_PER_Q;
60                 memset(sbal[sbal_idx], 0, sizeof(struct qdio_buffer));
61         }
62 }
63
64 /* this needs to be called prior to updating the queue fill level */
65 static inline void zfcp_qdio_account(struct zfcp_qdio *qdio)
66 {
67         unsigned long long now, span;
68         int used;
69
70         now = get_clock_monotonic();
71         span = (now - qdio->req_q_time) >> 12;
72         used = QDIO_MAX_BUFFERS_PER_Q - atomic_read(&qdio->req_q_free);
73         qdio->req_q_util += used * span;
74         qdio->req_q_time = now;
75 }
76
77 static void zfcp_qdio_int_req(struct ccw_device *cdev, unsigned int qdio_err,
78                               int queue_no, int idx, int count,
79                               unsigned long parm)
80 {
81         struct zfcp_qdio *qdio = (struct zfcp_qdio *) parm;
82
83         if (unlikely(qdio_err)) {
84                 zfcp_qdio_handler_error(qdio, "qdireq1", qdio_err);
85                 return;
86         }
87
88         /* cleanup all SBALs being program-owned now */
89         zfcp_qdio_zero_sbals(qdio->req_q, idx, count);
90
91         spin_lock_irq(&qdio->stat_lock);
92         zfcp_qdio_account(qdio);
93         spin_unlock_irq(&qdio->stat_lock);
94         atomic_add(count, &qdio->req_q_free);
95         wake_up(&qdio->req_q_wq);
96 }
97
98 static void zfcp_qdio_int_resp(struct ccw_device *cdev, unsigned int qdio_err,
99                                int queue_no, int idx, int count,
100                                unsigned long parm)
101 {
102         struct zfcp_qdio *qdio = (struct zfcp_qdio *) parm;
103         struct zfcp_adapter *adapter = qdio->adapter;
104         struct qdio_buffer_element *sbale;
105         int sbal_no, sbal_idx;
106         void *pl[ZFCP_QDIO_MAX_SBALS_PER_REQ + 1];
107         u64 req_id;
108         u8 scount;
109
110         if (unlikely(qdio_err)) {
111                 memset(pl, 0, ZFCP_QDIO_MAX_SBALS_PER_REQ * sizeof(void *));
112                 if (zfcp_adapter_multi_buffer_active(adapter)) {
113                         sbale = qdio->res_q[idx]->element;
114                         req_id = (u64) sbale->addr;
115                         scount = sbale->scount + 1; /* incl. signaling SBAL */
116
117                         for (sbal_no = 0; sbal_no < scount; sbal_no++) {
118                                 sbal_idx = (idx + sbal_no) %
119                                         QDIO_MAX_BUFFERS_PER_Q;
120                                 pl[sbal_no] = qdio->res_q[sbal_idx];
121                         }
122                         zfcp_dbf_hba_def_err(adapter, req_id, scount, pl);
123                 }
124                 zfcp_qdio_handler_error(qdio, "qdires1", qdio_err);
125                 return;
126         }
127
128         /*
129          * go through all SBALs from input queue currently
130          * returned by QDIO layer
131          */
132         for (sbal_no = 0; sbal_no < count; sbal_no++) {
133                 sbal_idx = (idx + sbal_no) % QDIO_MAX_BUFFERS_PER_Q;
134                 /* go through all SBALEs of SBAL */
135                 zfcp_fsf_reqid_check(qdio, sbal_idx);
136         }
137
138         /*
139          * put SBALs back to response queue
140          */
141         if (do_QDIO(cdev, QDIO_FLAG_SYNC_INPUT, 0, idx, count))
142                 zfcp_erp_adapter_reopen(qdio->adapter, 0, "qdires2");
143 }
144
145 static struct qdio_buffer_element *
146 zfcp_qdio_sbal_chain(struct zfcp_qdio *qdio, struct zfcp_qdio_req *q_req)
147 {
148         struct qdio_buffer_element *sbale;
149
150         /* set last entry flag in current SBALE of current SBAL */
151         sbale = zfcp_qdio_sbale_curr(qdio, q_req);
152         sbale->eflags |= SBAL_EFLAGS_LAST_ENTRY;
153
154         /* don't exceed last allowed SBAL */
155         if (q_req->sbal_last == q_req->sbal_limit)
156                 return NULL;
157
158         /* set chaining flag in first SBALE of current SBAL */
159         sbale = zfcp_qdio_sbale_req(qdio, q_req);
160         sbale->sflags |= SBAL_SFLAGS0_MORE_SBALS;
161
162         /* calculate index of next SBAL */
163         q_req->sbal_last++;
164         q_req->sbal_last %= QDIO_MAX_BUFFERS_PER_Q;
165
166         /* keep this requests number of SBALs up-to-date */
167         q_req->sbal_number++;
168         BUG_ON(q_req->sbal_number > ZFCP_QDIO_MAX_SBALS_PER_REQ);
169
170         /* start at first SBALE of new SBAL */
171         q_req->sbale_curr = 0;
172
173         /* set storage-block type for new SBAL */
174         sbale = zfcp_qdio_sbale_curr(qdio, q_req);
175         sbale->sflags |= q_req->sbtype;
176
177         return sbale;
178 }
179
180 static struct qdio_buffer_element *
181 zfcp_qdio_sbale_next(struct zfcp_qdio *qdio, struct zfcp_qdio_req *q_req)
182 {
183         if (q_req->sbale_curr == qdio->max_sbale_per_sbal - 1)
184                 return zfcp_qdio_sbal_chain(qdio, q_req);
185         q_req->sbale_curr++;
186         return zfcp_qdio_sbale_curr(qdio, q_req);
187 }
188
189 /**
190  * zfcp_qdio_sbals_from_sg - fill SBALs from scatter-gather list
191  * @qdio: pointer to struct zfcp_qdio
192  * @q_req: pointer to struct zfcp_qdio_req
193  * @sg: scatter-gather list
194  * @max_sbals: upper bound for number of SBALs to be used
195  * Returns: zero or -EINVAL on error
196  */
197 int zfcp_qdio_sbals_from_sg(struct zfcp_qdio *qdio, struct zfcp_qdio_req *q_req,
198                             struct scatterlist *sg)
199 {
200         struct qdio_buffer_element *sbale;
201
202         /* set storage-block type for this request */
203         sbale = zfcp_qdio_sbale_req(qdio, q_req);
204         sbale->sflags |= q_req->sbtype;
205
206         for (; sg; sg = sg_next(sg)) {
207                 sbale = zfcp_qdio_sbale_next(qdio, q_req);
208                 if (!sbale) {
209                         atomic_inc(&qdio->req_q_full);
210                         zfcp_qdio_zero_sbals(qdio->req_q, q_req->sbal_first,
211                                              q_req->sbal_number);
212                         return -EINVAL;
213                 }
214                 sbale->addr = sg_virt(sg);
215                 sbale->length = sg->length;
216         }
217         return 0;
218 }
219
220 static int zfcp_qdio_sbal_check(struct zfcp_qdio *qdio)
221 {
222         spin_lock_irq(&qdio->req_q_lock);
223         if (atomic_read(&qdio->req_q_free) ||
224             !(atomic_read(&qdio->adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP))
225                 return 1;
226         spin_unlock_irq(&qdio->req_q_lock);
227         return 0;
228 }
229
230 /**
231  * zfcp_qdio_sbal_get - get free sbal in request queue, wait if necessary
232  * @qdio: pointer to struct zfcp_qdio
233  *
234  * The req_q_lock must be held by the caller of this function, and
235  * this function may only be called from process context; it will
236  * sleep when waiting for a free sbal.
237  *
238  * Returns: 0 on success, -EIO if there is no free sbal after waiting.
239  */
240 int zfcp_qdio_sbal_get(struct zfcp_qdio *qdio)
241 {
242         long ret;
243
244         spin_unlock_irq(&qdio->req_q_lock);
245         ret = wait_event_interruptible_timeout(qdio->req_q_wq,
246                                zfcp_qdio_sbal_check(qdio), 5 * HZ);
247
248         if (!(atomic_read(&qdio->adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP))
249                 return -EIO;
250
251         if (ret > 0)
252                 return 0;
253
254         if (!ret) {
255                 atomic_inc(&qdio->req_q_full);
256                 /* assume hanging outbound queue, try queue recovery */
257                 zfcp_erp_adapter_reopen(qdio->adapter, 0, "qdsbg_1");
258         }
259
260         spin_lock_irq(&qdio->req_q_lock);
261         return -EIO;
262 }
263
264 /**
265  * zfcp_qdio_send - set PCI flag in first SBALE and send req to QDIO
266  * @qdio: pointer to struct zfcp_qdio
267  * @q_req: pointer to struct zfcp_qdio_req
268  * Returns: 0 on success, error otherwise
269  */
270 int zfcp_qdio_send(struct zfcp_qdio *qdio, struct zfcp_qdio_req *q_req)
271 {
272         int retval;
273         u8 sbal_number = q_req->sbal_number;
274
275         spin_lock(&qdio->stat_lock);
276         zfcp_qdio_account(qdio);
277         spin_unlock(&qdio->stat_lock);
278
279         retval = do_QDIO(qdio->adapter->ccw_device, QDIO_FLAG_SYNC_OUTPUT, 0,
280                          q_req->sbal_first, sbal_number);
281
282         if (unlikely(retval)) {
283                 zfcp_qdio_zero_sbals(qdio->req_q, q_req->sbal_first,
284                                      sbal_number);
285                 return retval;
286         }
287
288         /* account for transferred buffers */
289         atomic_sub(sbal_number, &qdio->req_q_free);
290         qdio->req_q_idx += sbal_number;
291         qdio->req_q_idx %= QDIO_MAX_BUFFERS_PER_Q;
292
293         return 0;
294 }
295
296
297 static void zfcp_qdio_setup_init_data(struct qdio_initialize *id,
298                                       struct zfcp_qdio *qdio)
299 {
300         memset(id, 0, sizeof(*id));
301         id->cdev = qdio->adapter->ccw_device;
302         id->q_format = QDIO_ZFCP_QFMT;
303         memcpy(id->adapter_name, dev_name(&id->cdev->dev), 8);
304         ASCEBC(id->adapter_name, 8);
305         id->qib_rflags = QIB_RFLAGS_ENABLE_DATA_DIV;
306         if (enable_multibuffer)
307                 id->qdr_ac |= QDR_AC_MULTI_BUFFER_ENABLE;
308         id->no_input_qs = 1;
309         id->no_output_qs = 1;
310         id->input_handler = zfcp_qdio_int_resp;
311         id->output_handler = zfcp_qdio_int_req;
312         id->int_parm = (unsigned long) qdio;
313         id->input_sbal_addr_array = (void **) (qdio->res_q);
314         id->output_sbal_addr_array = (void **) (qdio->req_q);
315         id->scan_threshold =
316                 QDIO_MAX_BUFFERS_PER_Q - ZFCP_QDIO_MAX_SBALS_PER_REQ * 2;
317 }
318
319 /**
320  * zfcp_qdio_allocate - allocate queue memory and initialize QDIO data
321  * @adapter: pointer to struct zfcp_adapter
322  * Returns: -ENOMEM on memory allocation error or return value from
323  *          qdio_allocate
324  */
325 static int zfcp_qdio_allocate(struct zfcp_qdio *qdio)
326 {
327         struct qdio_initialize init_data;
328
329         if (zfcp_qdio_buffers_enqueue(qdio->req_q) ||
330             zfcp_qdio_buffers_enqueue(qdio->res_q))
331                 return -ENOMEM;
332
333         zfcp_qdio_setup_init_data(&init_data, qdio);
334         init_waitqueue_head(&qdio->req_q_wq);
335
336         return qdio_allocate(&init_data);
337 }
338
339 /**
340  * zfcp_close_qdio - close qdio queues for an adapter
341  * @qdio: pointer to structure zfcp_qdio
342  */
343 void zfcp_qdio_close(struct zfcp_qdio *qdio)
344 {
345         struct zfcp_adapter *adapter = qdio->adapter;
346         int idx, count;
347
348         if (!(atomic_read(&adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP))
349                 return;
350
351         /* clear QDIOUP flag, thus do_QDIO is not called during qdio_shutdown */
352         spin_lock_irq(&qdio->req_q_lock);
353         atomic_clear_mask(ZFCP_STATUS_ADAPTER_QDIOUP, &adapter->status);
354         spin_unlock_irq(&qdio->req_q_lock);
355
356         wake_up(&qdio->req_q_wq);
357
358         qdio_shutdown(adapter->ccw_device, QDIO_FLAG_CLEANUP_USING_CLEAR);
359
360         /* cleanup used outbound sbals */
361         count = atomic_read(&qdio->req_q_free);
362         if (count < QDIO_MAX_BUFFERS_PER_Q) {
363                 idx = (qdio->req_q_idx + count) % QDIO_MAX_BUFFERS_PER_Q;
364                 count = QDIO_MAX_BUFFERS_PER_Q - count;
365                 zfcp_qdio_zero_sbals(qdio->req_q, idx, count);
366         }
367         qdio->req_q_idx = 0;
368         atomic_set(&qdio->req_q_free, 0);
369 }
370
371 /**
372  * zfcp_qdio_open - prepare and initialize response queue
373  * @qdio: pointer to struct zfcp_qdio
374  * Returns: 0 on success, otherwise -EIO
375  */
376 int zfcp_qdio_open(struct zfcp_qdio *qdio)
377 {
378         struct qdio_buffer_element *sbale;
379         struct qdio_initialize init_data;
380         struct zfcp_adapter *adapter = qdio->adapter;
381         struct ccw_device *cdev = adapter->ccw_device;
382         struct qdio_ssqd_desc ssqd;
383         int cc;
384
385         if (atomic_read(&adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP)
386                 return -EIO;
387
388         atomic_clear_mask(ZFCP_STATUS_ADAPTER_SIOSL_ISSUED,
389                           &qdio->adapter->status);
390
391         zfcp_qdio_setup_init_data(&init_data, qdio);
392
393         if (qdio_establish(&init_data))
394                 goto failed_establish;
395
396         if (qdio_get_ssqd_desc(init_data.cdev, &ssqd))
397                 goto failed_qdio;
398
399         if (ssqd.qdioac2 & CHSC_AC2_DATA_DIV_ENABLED)
400                 atomic_set_mask(ZFCP_STATUS_ADAPTER_DATA_DIV_ENABLED,
401                                 &qdio->adapter->status);
402
403         if (ssqd.qdioac2 & CHSC_AC2_MULTI_BUFFER_ENABLED) {
404                 atomic_set_mask(ZFCP_STATUS_ADAPTER_MB_ACT, &adapter->status);
405                 qdio->max_sbale_per_sbal = QDIO_MAX_ELEMENTS_PER_BUFFER;
406         } else {
407                 atomic_clear_mask(ZFCP_STATUS_ADAPTER_MB_ACT, &adapter->status);
408                 qdio->max_sbale_per_sbal = QDIO_MAX_ELEMENTS_PER_BUFFER - 1;
409         }
410
411         qdio->max_sbale_per_req =
412                 ZFCP_QDIO_MAX_SBALS_PER_REQ * qdio->max_sbale_per_sbal
413                 - 2;
414         if (qdio_activate(cdev))
415                 goto failed_qdio;
416
417         for (cc = 0; cc < QDIO_MAX_BUFFERS_PER_Q; cc++) {
418                 sbale = &(qdio->res_q[cc]->element[0]);
419                 sbale->length = 0;
420                 sbale->eflags = SBAL_EFLAGS_LAST_ENTRY;
421                 sbale->sflags = 0;
422                 sbale->addr = NULL;
423         }
424
425         if (do_QDIO(cdev, QDIO_FLAG_SYNC_INPUT, 0, 0, QDIO_MAX_BUFFERS_PER_Q))
426                 goto failed_qdio;
427
428         /* set index of first available SBALS / number of available SBALS */
429         qdio->req_q_idx = 0;
430         atomic_set(&qdio->req_q_free, QDIO_MAX_BUFFERS_PER_Q);
431         atomic_set_mask(ZFCP_STATUS_ADAPTER_QDIOUP, &qdio->adapter->status);
432
433         if (adapter->scsi_host) {
434                 adapter->scsi_host->sg_tablesize = qdio->max_sbale_per_req;
435                 adapter->scsi_host->max_sectors = qdio->max_sbale_per_req * 8;
436         }
437
438         return 0;
439
440 failed_qdio:
441         qdio_shutdown(cdev, QDIO_FLAG_CLEANUP_USING_CLEAR);
442 failed_establish:
443         dev_err(&cdev->dev,
444                 "Setting up the QDIO connection to the FCP adapter failed\n");
445         return -EIO;
446 }
447
448 void zfcp_qdio_destroy(struct zfcp_qdio *qdio)
449 {
450         int p;
451
452         if (!qdio)
453                 return;
454
455         if (qdio->adapter->ccw_device)
456                 qdio_free(qdio->adapter->ccw_device);
457
458         for (p = 0; p < QDIO_MAX_BUFFERS_PER_Q; p += QBUFF_PER_PAGE) {
459                 free_page((unsigned long) qdio->req_q[p]);
460                 free_page((unsigned long) qdio->res_q[p]);
461         }
462
463         kfree(qdio);
464 }
465
466 int zfcp_qdio_setup(struct zfcp_adapter *adapter)
467 {
468         struct zfcp_qdio *qdio;
469
470         qdio = kzalloc(sizeof(struct zfcp_qdio), GFP_KERNEL);
471         if (!qdio)
472                 return -ENOMEM;
473
474         qdio->adapter = adapter;
475
476         if (zfcp_qdio_allocate(qdio)) {
477                 zfcp_qdio_destroy(qdio);
478                 return -ENOMEM;
479         }
480
481         spin_lock_init(&qdio->req_q_lock);
482         spin_lock_init(&qdio->stat_lock);
483
484         adapter->qdio = qdio;
485         return 0;
486 }
487
488 /**
489  * zfcp_qdio_siosl - Trigger logging in FCP channel
490  * @adapter: The zfcp_adapter where to trigger logging
491  *
492  * Call the cio siosl function to trigger hardware logging.  This
493  * wrapper function sets a flag to ensure hardware logging is only
494  * triggered once before going through qdio shutdown.
495  *
496  * The triggers are always run from qdio tasklet context, so no
497  * additional synchronization is necessary.
498  */
499 void zfcp_qdio_siosl(struct zfcp_adapter *adapter)
500 {
501         int rc;
502
503         if (atomic_read(&adapter->status) & ZFCP_STATUS_ADAPTER_SIOSL_ISSUED)
504                 return;
505
506         rc = ccw_device_siosl(adapter->ccw_device);
507         if (!rc)
508                 atomic_set_mask(ZFCP_STATUS_ADAPTER_SIOSL_ISSUED,
509                                 &adapter->status);
510 }