1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * ISM driver for s390.
4 *
5 * Copyright IBM Corp. 2018
6 */
7 #define pr_fmt(fmt) "ism: " fmt
8
9 #include <linux/export.h>
10 #include <linux/module.h>
11 #include <linux/types.h>
12 #include <linux/interrupt.h>
13 #include <linux/device.h>
14 #include <linux/err.h>
15 #include <linux/ctype.h>
16 #include <linux/processor.h>
17
18 #include "ism.h"
19
20 MODULE_DESCRIPTION("ISM driver for s390");
21 MODULE_LICENSE("GPL");
22
23 #define DRV_NAME "ism"
24
25 static const struct pci_device_id ism_device_table[] = {
26 { PCI_VDEVICE(IBM, PCI_DEVICE_ID_IBM_ISM) },
27 { }
28 };
29 MODULE_DEVICE_TABLE(pci, ism_device_table);
30
31 static debug_info_t *ism_debug_info;
32
ism_cmd(struct ism_dev * ism,void * cmd)33 static int ism_cmd(struct ism_dev *ism, void *cmd)
34 {
35 struct ism_req_hdr *req = cmd;
36 struct ism_resp_hdr *resp = cmd;
37
38 spin_lock(&ism->cmd_lock);
39 __ism_write_cmd(ism, req + 1, sizeof(*req), req->len - sizeof(*req));
40 __ism_write_cmd(ism, req, 0, sizeof(*req));
41
42 WRITE_ONCE(resp->ret, ISM_ERROR);
43
44 __ism_read_cmd(ism, resp, 0, sizeof(*resp));
45 if (resp->ret) {
46 debug_text_event(ism_debug_info, 0, "cmd failure");
47 debug_event(ism_debug_info, 0, resp, sizeof(*resp));
48 goto out;
49 }
50 __ism_read_cmd(ism, resp + 1, sizeof(*resp), resp->len - sizeof(*resp));
51 out:
52 spin_unlock(&ism->cmd_lock);
53 return resp->ret;
54 }
55
ism_cmd_simple(struct ism_dev * ism,u32 cmd_code)56 static int ism_cmd_simple(struct ism_dev *ism, u32 cmd_code)
57 {
58 union ism_cmd_simple cmd;
59
60 memset(&cmd, 0, sizeof(cmd));
61 cmd.request.hdr.cmd = cmd_code;
62 cmd.request.hdr.len = sizeof(cmd.request);
63
64 return ism_cmd(ism, &cmd);
65 }
66
query_info(struct ism_dev * ism)67 static int query_info(struct ism_dev *ism)
68 {
69 union ism_qi cmd;
70
71 memset(&cmd, 0, sizeof(cmd));
72 cmd.request.hdr.cmd = ISM_QUERY_INFO;
73 cmd.request.hdr.len = sizeof(cmd.request);
74
75 if (ism_cmd(ism, &cmd))
76 goto out;
77
78 debug_text_event(ism_debug_info, 3, "query info");
79 debug_event(ism_debug_info, 3, &cmd.response, sizeof(cmd.response));
80 out:
81 return 0;
82 }
83
register_sba(struct ism_dev * ism)84 static int register_sba(struct ism_dev *ism)
85 {
86 union ism_reg_sba cmd;
87 dma_addr_t dma_handle;
88 struct ism_sba *sba;
89
90 sba = dma_alloc_coherent(&ism->pdev->dev, PAGE_SIZE, &dma_handle,
91 GFP_KERNEL);
92 if (!sba)
93 return -ENOMEM;
94
95 memset(&cmd, 0, sizeof(cmd));
96 cmd.request.hdr.cmd = ISM_REG_SBA;
97 cmd.request.hdr.len = sizeof(cmd.request);
98 cmd.request.sba = dma_handle;
99
100 if (ism_cmd(ism, &cmd)) {
101 dma_free_coherent(&ism->pdev->dev, PAGE_SIZE, sba, dma_handle);
102 return -EIO;
103 }
104
105 ism->sba = sba;
106 ism->sba_dma_addr = dma_handle;
107
108 return 0;
109 }
110
register_ieq(struct ism_dev * ism)111 static int register_ieq(struct ism_dev *ism)
112 {
113 union ism_reg_ieq cmd;
114 dma_addr_t dma_handle;
115 struct ism_eq *ieq;
116
117 ieq = dma_alloc_coherent(&ism->pdev->dev, PAGE_SIZE, &dma_handle,
118 GFP_KERNEL);
119 if (!ieq)
120 return -ENOMEM;
121
122 memset(&cmd, 0, sizeof(cmd));
123 cmd.request.hdr.cmd = ISM_REG_IEQ;
124 cmd.request.hdr.len = sizeof(cmd.request);
125 cmd.request.ieq = dma_handle;
126 cmd.request.len = sizeof(*ieq);
127
128 if (ism_cmd(ism, &cmd)) {
129 dma_free_coherent(&ism->pdev->dev, PAGE_SIZE, ieq, dma_handle);
130 return -EIO;
131 }
132
133 ism->ieq = ieq;
134 ism->ieq_idx = -1;
135 ism->ieq_dma_addr = dma_handle;
136
137 return 0;
138 }
139
unregister_sba(struct ism_dev * ism)140 static int unregister_sba(struct ism_dev *ism)
141 {
142 int ret;
143
144 if (!ism->sba)
145 return 0;
146
147 ret = ism_cmd_simple(ism, ISM_UNREG_SBA);
148 if (ret && ret != ISM_ERROR)
149 return -EIO;
150
151 return 0;
152 }
153
ism_free_sba(struct ism_dev * ism)154 static void ism_free_sba(struct ism_dev *ism)
155 {
156 dma_free_coherent(&ism->pdev->dev, PAGE_SIZE,
157 ism->sba, ism->sba_dma_addr);
158
159 ism->sba = NULL;
160 ism->sba_dma_addr = 0;
161 }
162
unregister_ieq(struct ism_dev * ism)163 static int unregister_ieq(struct ism_dev *ism)
164 {
165 int ret;
166
167 if (!ism->ieq)
168 return 0;
169
170 ret = ism_cmd_simple(ism, ISM_UNREG_IEQ);
171 if (ret && ret != ISM_ERROR)
172 return -EIO;
173
174 return 0;
175 }
176
ism_free_ieq(struct ism_dev * ism)177 static void ism_free_ieq(struct ism_dev *ism)
178 {
179 dma_free_coherent(&ism->pdev->dev, PAGE_SIZE,
180 ism->ieq, ism->ieq_dma_addr);
181
182 ism->ieq = NULL;
183 ism->ieq_dma_addr = 0;
184 }
185
ism_read_local_gid(struct dibs_dev * dibs)186 static int ism_read_local_gid(struct dibs_dev *dibs)
187 {
188 struct ism_dev *ism = dibs->drv_priv;
189 union ism_read_gid cmd;
190 int ret;
191
192 memset(&cmd, 0, sizeof(cmd));
193 cmd.request.hdr.cmd = ISM_READ_GID;
194 cmd.request.hdr.len = sizeof(cmd.request);
195
196 ret = ism_cmd(ism, &cmd);
197 if (ret)
198 goto out;
199
200 memset(&dibs->gid, 0, sizeof(dibs->gid));
201 memcpy(&dibs->gid, &cmd.response.gid, sizeof(cmd.response.gid));
202 out:
203 return ret;
204 }
205
ism_query_rgid(struct dibs_dev * dibs,const uuid_t * rgid,u32 vid_valid,u32 vid)206 static int ism_query_rgid(struct dibs_dev *dibs, const uuid_t *rgid,
207 u32 vid_valid, u32 vid)
208 {
209 struct ism_dev *ism = dibs->drv_priv;
210 union ism_query_rgid cmd;
211
212 memset(&cmd, 0, sizeof(cmd));
213 cmd.request.hdr.cmd = ISM_QUERY_RGID;
214 cmd.request.hdr.len = sizeof(cmd.request);
215
216 memcpy(&cmd.request.rgid, rgid, sizeof(cmd.request.rgid));
217 cmd.request.vlan_valid = vid_valid;
218 cmd.request.vlan_id = vid;
219
220 return ism_cmd(ism, &cmd);
221 }
222
ism_max_dmbs(void)223 static int ism_max_dmbs(void)
224 {
225 return ISM_NR_DMBS;
226 }
227
ism_free_dmb(struct ism_dev * ism,struct dibs_dmb * dmb)228 static void ism_free_dmb(struct ism_dev *ism, struct dibs_dmb *dmb)
229 {
230 clear_bit(dmb->idx, ism->sba_bitmap);
231 dma_unmap_page(&ism->pdev->dev, dmb->dma_addr, dmb->dmb_len,
232 DMA_FROM_DEVICE);
233 folio_put(virt_to_folio(dmb->cpu_addr));
234 }
235
ism_alloc_dmb(struct ism_dev * ism,struct dibs_dmb * dmb)236 static int ism_alloc_dmb(struct ism_dev *ism, struct dibs_dmb *dmb)
237 {
238 struct folio *folio;
239 unsigned long bit;
240 int rc;
241
242 if (PAGE_ALIGN(dmb->dmb_len) > dma_get_max_seg_size(&ism->pdev->dev))
243 return -EINVAL;
244
245 if (!dmb->idx) {
246 bit = find_next_zero_bit(ism->sba_bitmap, ISM_NR_DMBS,
247 ISM_DMB_BIT_OFFSET);
248 if (bit == ISM_NR_DMBS)
249 return -ENOSPC;
250
251 dmb->idx = bit;
252 }
253 if (dmb->idx < ISM_DMB_BIT_OFFSET ||
254 test_and_set_bit(dmb->idx, ism->sba_bitmap))
255 return -EINVAL;
256
257 folio = folio_alloc(GFP_KERNEL | __GFP_NOWARN | __GFP_NOMEMALLOC |
258 __GFP_NORETRY, get_order(dmb->dmb_len));
259
260 if (!folio) {
261 rc = -ENOMEM;
262 goto out_bit;
263 }
264
265 dmb->cpu_addr = folio_address(folio);
266 dmb->dma_addr = dma_map_page(&ism->pdev->dev,
267 virt_to_page(dmb->cpu_addr), 0,
268 dmb->dmb_len, DMA_FROM_DEVICE);
269 if (dma_mapping_error(&ism->pdev->dev, dmb->dma_addr)) {
270 rc = -ENOMEM;
271 goto out_free;
272 }
273
274 return 0;
275
276 out_free:
277 kfree(dmb->cpu_addr);
278 out_bit:
279 clear_bit(dmb->idx, ism->sba_bitmap);
280 return rc;
281 }
282
ism_register_dmb(struct dibs_dev * dibs,struct dibs_dmb * dmb,struct dibs_client * client)283 static int ism_register_dmb(struct dibs_dev *dibs, struct dibs_dmb *dmb,
284 struct dibs_client *client)
285 {
286 struct ism_dev *ism = dibs->drv_priv;
287 union ism_reg_dmb cmd;
288 unsigned long flags;
289 int ret;
290
291 ret = ism_alloc_dmb(ism, dmb);
292 if (ret)
293 goto out;
294
295 memset(&cmd, 0, sizeof(cmd));
296 cmd.request.hdr.cmd = ISM_REG_DMB;
297 cmd.request.hdr.len = sizeof(cmd.request);
298
299 cmd.request.dmb = dmb->dma_addr;
300 cmd.request.dmb_len = dmb->dmb_len;
301 cmd.request.sba_idx = dmb->idx;
302 cmd.request.vlan_valid = dmb->vlan_valid;
303 cmd.request.vlan_id = dmb->vlan_id;
304 memcpy(&cmd.request.rgid, &dmb->rgid, sizeof(u64));
305
306 ret = ism_cmd(ism, &cmd);
307 if (ret) {
308 ism_free_dmb(ism, dmb);
309 goto out;
310 }
311 dmb->dmb_tok = cmd.response.dmb_tok;
312 spin_lock_irqsave(&dibs->lock, flags);
313 dibs->dmb_clientid_arr[dmb->idx - ISM_DMB_BIT_OFFSET] = client->id;
314 spin_unlock_irqrestore(&dibs->lock, flags);
315 out:
316 return ret;
317 }
318
ism_unregister_dmb(struct dibs_dev * dibs,struct dibs_dmb * dmb)319 static int ism_unregister_dmb(struct dibs_dev *dibs, struct dibs_dmb *dmb)
320 {
321 struct ism_dev *ism = dibs->drv_priv;
322 union ism_unreg_dmb cmd;
323 unsigned long flags;
324 int ret;
325
326 memset(&cmd, 0, sizeof(cmd));
327 cmd.request.hdr.cmd = ISM_UNREG_DMB;
328 cmd.request.hdr.len = sizeof(cmd.request);
329
330 cmd.request.dmb_tok = dmb->dmb_tok;
331
332 spin_lock_irqsave(&dibs->lock, flags);
333 dibs->dmb_clientid_arr[dmb->idx - ISM_DMB_BIT_OFFSET] = NO_DIBS_CLIENT;
334 spin_unlock_irqrestore(&dibs->lock, flags);
335
336 ret = ism_cmd(ism, &cmd);
337 if (ret && ret != ISM_ERROR)
338 goto out;
339
340 ism_free_dmb(ism, dmb);
341 out:
342 return ret;
343 }
344
ism_add_vlan_id(struct dibs_dev * dibs,u64 vlan_id)345 static int ism_add_vlan_id(struct dibs_dev *dibs, u64 vlan_id)
346 {
347 struct ism_dev *ism = dibs->drv_priv;
348 union ism_set_vlan_id cmd;
349
350 memset(&cmd, 0, sizeof(cmd));
351 cmd.request.hdr.cmd = ISM_ADD_VLAN_ID;
352 cmd.request.hdr.len = sizeof(cmd.request);
353
354 cmd.request.vlan_id = vlan_id;
355
356 return ism_cmd(ism, &cmd);
357 }
358
ism_del_vlan_id(struct dibs_dev * dibs,u64 vlan_id)359 static int ism_del_vlan_id(struct dibs_dev *dibs, u64 vlan_id)
360 {
361 struct ism_dev *ism = dibs->drv_priv;
362 union ism_set_vlan_id cmd;
363
364 memset(&cmd, 0, sizeof(cmd));
365 cmd.request.hdr.cmd = ISM_DEL_VLAN_ID;
366 cmd.request.hdr.len = sizeof(cmd.request);
367
368 cmd.request.vlan_id = vlan_id;
369
370 return ism_cmd(ism, &cmd);
371 }
372
ism_signal_ieq(struct dibs_dev * dibs,const uuid_t * rgid,u32 trigger_irq,u32 event_code,u64 info)373 static int ism_signal_ieq(struct dibs_dev *dibs, const uuid_t *rgid,
374 u32 trigger_irq, u32 event_code, u64 info)
375 {
376 struct ism_dev *ism = dibs->drv_priv;
377 union ism_sig_ieq cmd;
378
379 memset(&cmd, 0, sizeof(cmd));
380 cmd.request.hdr.cmd = ISM_SIGNAL_IEQ;
381 cmd.request.hdr.len = sizeof(cmd.request);
382
383 memcpy(&cmd.request.rgid, rgid, sizeof(cmd.request.rgid));
384 cmd.request.trigger_irq = trigger_irq;
385 cmd.request.event_code = event_code;
386 cmd.request.info = info;
387
388 return ism_cmd(ism, &cmd);
389 }
390
max_bytes(unsigned int start,unsigned int len,unsigned int boundary)391 static unsigned int max_bytes(unsigned int start, unsigned int len,
392 unsigned int boundary)
393 {
394 return min(boundary - (start & (boundary - 1)), len);
395 }
396
ism_move(struct dibs_dev * dibs,u64 dmb_tok,unsigned int idx,bool sf,unsigned int offset,void * data,unsigned int size)397 static int ism_move(struct dibs_dev *dibs, u64 dmb_tok, unsigned int idx,
398 bool sf, unsigned int offset, void *data,
399 unsigned int size)
400 {
401 struct ism_dev *ism = dibs->drv_priv;
402 unsigned int bytes;
403 u64 dmb_req;
404 int ret;
405
406 while (size) {
407 bytes = max_bytes(offset, size, PAGE_SIZE);
408 dmb_req = ISM_CREATE_REQ(dmb_tok, idx, size == bytes ? sf : 0,
409 offset);
410
411 ret = __ism_move(ism, dmb_req, data, bytes);
412 if (ret)
413 return ret;
414
415 size -= bytes;
416 data += bytes;
417 offset += bytes;
418 }
419
420 return 0;
421 }
422
ism_get_chid(struct dibs_dev * dibs)423 static u16 ism_get_chid(struct dibs_dev *dibs)
424 {
425 struct ism_dev *ism = dibs->drv_priv;
426
427 if (!ism || !ism->pdev)
428 return 0;
429
430 return to_zpci(ism->pdev)->pchid;
431 }
432
ism_match_event_type(u32 s390_event_type)433 static int ism_match_event_type(u32 s390_event_type)
434 {
435 switch (s390_event_type) {
436 case ISM_EVENT_BUF:
437 return DIBS_BUF_EVENT;
438 case ISM_EVENT_DEV:
439 return DIBS_DEV_EVENT;
440 case ISM_EVENT_SWR:
441 return DIBS_SW_EVENT;
442 default:
443 return DIBS_OTHER_TYPE;
444 }
445 }
446
ism_match_event_subtype(u32 s390_event_subtype)447 static int ism_match_event_subtype(u32 s390_event_subtype)
448 {
449 switch (s390_event_subtype) {
450 case ISM_BUF_DMB_UNREGISTERED:
451 return DIBS_BUF_UNREGISTERED;
452 case ISM_DEV_GID_DISABLED:
453 return DIBS_DEV_DISABLED;
454 case ISM_DEV_GID_ERR_STATE:
455 return DIBS_DEV_ERR_STATE;
456 default:
457 return DIBS_OTHER_SUBTYPE;
458 }
459 }
460
ism_handle_event(struct ism_dev * ism)461 static void ism_handle_event(struct ism_dev *ism)
462 {
463 struct dibs_dev *dibs = ism->dibs;
464 struct dibs_event event;
465 struct ism_event *entry;
466 struct dibs_client *clt;
467 int i;
468
469 while ((ism->ieq_idx + 1) != READ_ONCE(ism->ieq->header.idx)) {
470 if (++ism->ieq_idx == ARRAY_SIZE(ism->ieq->entry))
471 ism->ieq_idx = 0;
472
473 entry = &ism->ieq->entry[ism->ieq_idx];
474 debug_event(ism_debug_info, 2, entry, sizeof(*entry));
475 __memset(&event, 0, sizeof(event));
476 event.type = ism_match_event_type(entry->type);
477 if (event.type == DIBS_SW_EVENT)
478 event.subtype = entry->code;
479 else
480 event.subtype = ism_match_event_subtype(entry->code);
481 event.time = entry->time;
482 event.data = entry->info;
483 switch (event.type) {
484 case DIBS_BUF_EVENT:
485 event.buffer_tok = entry->tok;
486 break;
487 case DIBS_DEV_EVENT:
488 case DIBS_SW_EVENT:
489 memcpy(&event.gid, &entry->tok, sizeof(u64));
490 }
491 for (i = 0; i < MAX_DIBS_CLIENTS; ++i) {
492 clt = dibs->subs[i];
493 if (clt)
494 clt->ops->handle_event(dibs, &event);
495 }
496 }
497 }
498
ism_handle_irq(int irq,void * data)499 static irqreturn_t ism_handle_irq(int irq, void *data)
500 {
501 struct ism_dev *ism = data;
502 unsigned long bit, end;
503 struct dibs_dev *dibs;
504 unsigned long *bv;
505 u16 dmbemask;
506 u8 client_id;
507
508 dibs = ism->dibs;
509
510 bv = (void *) &ism->sba->dmb_bits[ISM_DMB_WORD_OFFSET];
511 end = sizeof(ism->sba->dmb_bits) * BITS_PER_BYTE - ISM_DMB_BIT_OFFSET;
512
513 spin_lock(&dibs->lock);
514 ism->sba->s = 0;
515 barrier();
516 for (bit = 0;;) {
517 bit = find_next_bit_inv(bv, end, bit);
518 if (bit >= end)
519 break;
520
521 clear_bit_inv(bit, bv);
522 dmbemask = ism->sba->dmbe_mask[bit + ISM_DMB_BIT_OFFSET];
523 ism->sba->dmbe_mask[bit + ISM_DMB_BIT_OFFSET] = 0;
524 barrier();
525 client_id = dibs->dmb_clientid_arr[bit];
526 if (unlikely(client_id == NO_DIBS_CLIENT ||
527 !dibs->subs[client_id]))
528 continue;
529 dibs->subs[client_id]->ops->handle_irq(dibs,
530 bit + ISM_DMB_BIT_OFFSET,
531 dmbemask);
532 }
533
534 if (ism->sba->e) {
535 ism->sba->e = 0;
536 barrier();
537 ism_handle_event(ism);
538 }
539 spin_unlock(&dibs->lock);
540 return IRQ_HANDLED;
541 }
542
543 static const struct dibs_dev_ops ism_ops = {
544 .get_fabric_id = ism_get_chid,
545 .query_remote_gid = ism_query_rgid,
546 .max_dmbs = ism_max_dmbs,
547 .register_dmb = ism_register_dmb,
548 .unregister_dmb = ism_unregister_dmb,
549 .move_data = ism_move,
550 .add_vlan_id = ism_add_vlan_id,
551 .del_vlan_id = ism_del_vlan_id,
552 .signal_event = ism_signal_ieq,
553 };
554
ism_dev_init(struct ism_dev * ism)555 static int ism_dev_init(struct ism_dev *ism)
556 {
557 struct pci_dev *pdev = ism->pdev;
558 int ret;
559
560 ret = pci_alloc_irq_vectors(pdev, 1, 1, PCI_IRQ_MSI);
561 if (ret <= 0)
562 goto out;
563
564 ret = request_irq(pci_irq_vector(pdev, 0), ism_handle_irq, 0,
565 pci_name(pdev), ism);
566 if (ret)
567 goto free_vectors;
568
569 ret = register_sba(ism);
570 if (ret)
571 goto free_irq;
572
573 ret = register_ieq(ism);
574 if (ret)
575 goto unreg_sba;
576
577 query_info(ism);
578 return 0;
579
580 unreg_sba:
581 unregister_sba(ism);
582 ism_free_sba(ism);
583 free_irq:
584 free_irq(pci_irq_vector(pdev, 0), ism);
585 free_vectors:
586 pci_free_irq_vectors(pdev);
587 out:
588 return ret;
589 }
590
ism_dev_exit(struct ism_dev * ism)591 static void ism_dev_exit(struct ism_dev *ism)
592 {
593 struct pci_dev *pdev = ism->pdev;
594
595 /* ism will only generate new IRQs while ieq & sba are registered */
596 unregister_ieq(ism);
597 unregister_sba(ism);
598 /* drain ongoing irpt handlers */
599 free_irq(pci_irq_vector(pdev, 0), ism);
600 ism_free_ieq(ism);
601 ism_free_sba(ism);
602 pci_free_irq_vectors(pdev);
603 }
604
ism_probe(struct pci_dev * pdev,const struct pci_device_id * id)605 static int ism_probe(struct pci_dev *pdev, const struct pci_device_id *id)
606 {
607 struct dibs_dev *dibs;
608 struct zpci_dev *zdev;
609 struct ism_dev *ism;
610 int ret;
611
612 ism = kzalloc_obj(*ism);
613 if (!ism)
614 return -ENOMEM;
615
616 spin_lock_init(&ism->cmd_lock);
617 dev_set_drvdata(&pdev->dev, ism);
618 ism->pdev = pdev;
619
620 ret = pci_enable_device_mem(pdev);
621 if (ret)
622 goto err_dev;
623
624 ret = pci_request_mem_regions(pdev, DRV_NAME);
625 if (ret)
626 goto err_disable;
627
628 ret = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(64));
629 if (ret)
630 goto err_resource;
631
632 dma_set_seg_boundary(&pdev->dev, SZ_1M - 1);
633 dma_set_max_seg_size(&pdev->dev, SZ_1M);
634 pci_set_master(pdev);
635
636 dibs = dibs_dev_alloc();
637 if (!dibs) {
638 ret = -ENOMEM;
639 goto err_resource;
640 }
641 /* set this up before we enable interrupts */
642 ism->dibs = dibs;
643 dibs->drv_priv = ism;
644 dibs->ops = &ism_ops;
645
646 /* enable ism device, but any interrupts and events will be ignored
647 * before dibs_dev_add() adds it to any clients.
648 */
649 ret = ism_dev_init(ism);
650 if (ret)
651 goto err_dibs;
652
653 /* after ism_dev_init() we can call ism function to set gid */
654 ret = ism_read_local_gid(dibs);
655 if (ret)
656 goto err_ism;
657
658 dibs->dev.parent = &pdev->dev;
659
660 zdev = to_zpci(pdev);
661 dev_set_name(&dibs->dev, "ism%x", zdev->uid ? zdev->uid : zdev->fid);
662
663 ret = dibs_dev_add(dibs);
664 if (ret)
665 goto err_ism;
666
667 return 0;
668
669 err_ism:
670 ism_dev_exit(ism);
671 err_dibs:
672 /* pairs with dibs_dev_alloc() */
673 put_device(&dibs->dev);
674 err_resource:
675 pci_release_mem_regions(pdev);
676 err_disable:
677 pci_disable_device(pdev);
678 err_dev:
679 dev_set_drvdata(&pdev->dev, NULL);
680 kfree(ism);
681
682 return ret;
683 }
684
ism_remove(struct pci_dev * pdev)685 static void ism_remove(struct pci_dev *pdev)
686 {
687 struct ism_dev *ism = dev_get_drvdata(&pdev->dev);
688 struct dibs_dev *dibs = ism->dibs;
689
690 dibs_dev_del(dibs);
691 ism_dev_exit(ism);
692 /* pairs with dibs_dev_alloc() */
693 put_device(&dibs->dev);
694
695 pci_release_mem_regions(pdev);
696 pci_disable_device(pdev);
697 dev_set_drvdata(&pdev->dev, NULL);
698 kfree(ism);
699 }
700
701 static struct pci_driver ism_driver = {
702 .name = DRV_NAME,
703 .id_table = ism_device_table,
704 .probe = ism_probe,
705 .remove = ism_remove,
706 };
707
ism_init(void)708 static int __init ism_init(void)
709 {
710 int ret;
711
712 ism_debug_info = debug_register("ism", 2, 1, 16);
713 if (!ism_debug_info)
714 return -ENODEV;
715
716 debug_register_view(ism_debug_info, &debug_hex_ascii_view);
717 ret = pci_register_driver(&ism_driver);
718 if (ret)
719 debug_unregister(ism_debug_info);
720
721 return ret;
722 }
723
ism_exit(void)724 static void __exit ism_exit(void)
725 {
726 pci_unregister_driver(&ism_driver);
727 debug_unregister(ism_debug_info);
728 }
729
730 module_init(ism_init);
731 module_exit(ism_exit);
732