blob: d9c7e940fa35c8140f0053d8190036b7b63d9339 [file] [log] [blame]
Sebastian Ottf30664e2012-08-28 16:50:38 +02001/*
2 * Block driver for s390 storage class memory.
3 *
4 * Copyright IBM Corp. 2012
5 * Author(s): Sebastian Ott <sebott@linux.vnet.ibm.com>
6 */
7
8#define KMSG_COMPONENT "scm_block"
9#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
10
11#include <linux/interrupt.h>
12#include <linux/spinlock.h>
13#include <linux/module.h>
14#include <linux/blkdev.h>
15#include <linux/genhd.h>
16#include <linux/slab.h>
17#include <linux/list.h>
18#include <asm/eadm.h>
19#include "scm_blk.h"
20
21debug_info_t *scm_debug;
22static int scm_major;
23static DEFINE_SPINLOCK(list_lock);
24static LIST_HEAD(inactive_requests);
25static unsigned int nr_requests = 64;
26static atomic_t nr_devices = ATOMIC_INIT(0);
27module_param(nr_requests, uint, S_IRUGO);
28MODULE_PARM_DESC(nr_requests, "Number of parallel requests.");
29
30MODULE_DESCRIPTION("Block driver for s390 storage class memory.");
31MODULE_LICENSE("GPL");
32MODULE_ALIAS("scm:scmdev*");
33
34static void __scm_free_rq(struct scm_request *scmrq)
35{
36 struct aob_rq_header *aobrq = to_aobrq(scmrq);
37
38 free_page((unsigned long) scmrq->aob);
39 free_page((unsigned long) scmrq->aidaw);
Sebastian Ott0d804b22012-08-28 16:51:19 +020040 __scm_free_rq_cluster(scmrq);
Sebastian Ottf30664e2012-08-28 16:50:38 +020041 kfree(aobrq);
42}
43
44static void scm_free_rqs(void)
45{
46 struct list_head *iter, *safe;
47 struct scm_request *scmrq;
48
49 spin_lock_irq(&list_lock);
50 list_for_each_safe(iter, safe, &inactive_requests) {
51 scmrq = list_entry(iter, struct scm_request, list);
52 list_del(&scmrq->list);
53 __scm_free_rq(scmrq);
54 }
55 spin_unlock_irq(&list_lock);
56}
57
58static int __scm_alloc_rq(void)
59{
60 struct aob_rq_header *aobrq;
61 struct scm_request *scmrq;
62
63 aobrq = kzalloc(sizeof(*aobrq) + sizeof(*scmrq), GFP_KERNEL);
64 if (!aobrq)
65 return -ENOMEM;
66
67 scmrq = (void *) aobrq->data;
68 scmrq->aidaw = (void *) get_zeroed_page(GFP_DMA);
69 scmrq->aob = (void *) get_zeroed_page(GFP_DMA);
70 if (!scmrq->aob || !scmrq->aidaw) {
71 __scm_free_rq(scmrq);
72 return -ENOMEM;
73 }
Sebastian Ott0d804b22012-08-28 16:51:19 +020074
75 if (__scm_alloc_rq_cluster(scmrq)) {
76 __scm_free_rq(scmrq);
77 return -ENOMEM;
78 }
79
Sebastian Ottf30664e2012-08-28 16:50:38 +020080 INIT_LIST_HEAD(&scmrq->list);
81 spin_lock_irq(&list_lock);
82 list_add(&scmrq->list, &inactive_requests);
83 spin_unlock_irq(&list_lock);
84
85 return 0;
86}
87
88static int scm_alloc_rqs(unsigned int nrqs)
89{
90 int ret = 0;
91
92 while (nrqs-- && !ret)
93 ret = __scm_alloc_rq();
94
95 return ret;
96}
97
98static struct scm_request *scm_request_fetch(void)
99{
100 struct scm_request *scmrq = NULL;
101
102 spin_lock(&list_lock);
103 if (list_empty(&inactive_requests))
104 goto out;
105 scmrq = list_first_entry(&inactive_requests, struct scm_request, list);
106 list_del(&scmrq->list);
107out:
108 spin_unlock(&list_lock);
109 return scmrq;
110}
111
112static void scm_request_done(struct scm_request *scmrq)
113{
114 unsigned long flags;
115
116 spin_lock_irqsave(&list_lock, flags);
117 list_add(&scmrq->list, &inactive_requests);
118 spin_unlock_irqrestore(&list_lock, flags);
119}
120
121static int scm_open(struct block_device *blkdev, fmode_t mode)
122{
123 return scm_get_ref();
124}
125
126static int scm_release(struct gendisk *gendisk, fmode_t mode)
127{
128 scm_put_ref();
129 return 0;
130}
131
132static const struct block_device_operations scm_blk_devops = {
133 .owner = THIS_MODULE,
134 .open = scm_open,
135 .release = scm_release,
136};
137
138static void scm_request_prepare(struct scm_request *scmrq)
139{
140 struct scm_blk_dev *bdev = scmrq->bdev;
141 struct scm_device *scmdev = bdev->gendisk->private_data;
142 struct aidaw *aidaw = scmrq->aidaw;
143 struct msb *msb = &scmrq->aob->msb[0];
144 struct req_iterator iter;
145 struct bio_vec *bv;
146
147 msb->bs = MSB_BS_4K;
148 scmrq->aob->request.msb_count = 1;
149 msb->scm_addr = scmdev->address +
150 ((u64) blk_rq_pos(scmrq->request) << 9);
151 msb->oc = (rq_data_dir(scmrq->request) == READ) ?
152 MSB_OC_READ : MSB_OC_WRITE;
153 msb->flags |= MSB_FLAG_IDA;
154 msb->data_addr = (u64) aidaw;
155
156 rq_for_each_segment(bv, scmrq->request, iter) {
157 WARN_ON(bv->bv_offset);
158 msb->blk_count += bv->bv_len >> 12;
159 aidaw->data_addr = (u64) page_address(bv->bv_page);
160 aidaw++;
161 }
162}
163
164static inline void scm_request_init(struct scm_blk_dev *bdev,
165 struct scm_request *scmrq,
166 struct request *req)
167{
168 struct aob_rq_header *aobrq = to_aobrq(scmrq);
169 struct aob *aob = scmrq->aob;
170
171 memset(aob, 0, sizeof(*aob));
172 memset(scmrq->aidaw, 0, PAGE_SIZE);
173 aobrq->scmdev = bdev->scmdev;
174 aob->request.cmd_code = ARQB_CMD_MOVE;
175 aob->request.data = (u64) aobrq;
176 scmrq->request = req;
177 scmrq->bdev = bdev;
178 scmrq->retries = 4;
179 scmrq->error = 0;
Sebastian Ott0d804b22012-08-28 16:51:19 +0200180 scm_request_cluster_init(scmrq);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200181}
182
183static void scm_ensure_queue_restart(struct scm_blk_dev *bdev)
184{
185 if (atomic_read(&bdev->queued_reqs)) {
186 /* Queue restart is triggered by the next interrupt. */
187 return;
188 }
189 blk_delay_queue(bdev->rq, SCM_QUEUE_DELAY);
190}
191
Sebastian Ott0d804b22012-08-28 16:51:19 +0200192void scm_request_requeue(struct scm_request *scmrq)
Sebastian Ottf30664e2012-08-28 16:50:38 +0200193{
194 struct scm_blk_dev *bdev = scmrq->bdev;
195
Sebastian Ott0d804b22012-08-28 16:51:19 +0200196 scm_release_cluster(scmrq);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200197 blk_requeue_request(bdev->rq, scmrq->request);
Sebastian Ott8360cb52013-02-28 12:07:27 +0100198 atomic_dec(&bdev->queued_reqs);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200199 scm_request_done(scmrq);
200 scm_ensure_queue_restart(bdev);
201}
202
Sebastian Ott0d804b22012-08-28 16:51:19 +0200203void scm_request_finish(struct scm_request *scmrq)
Sebastian Ottf30664e2012-08-28 16:50:38 +0200204{
Sebastian Ott8360cb52013-02-28 12:07:27 +0100205 struct scm_blk_dev *bdev = scmrq->bdev;
206
Sebastian Ott0d804b22012-08-28 16:51:19 +0200207 scm_release_cluster(scmrq);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200208 blk_end_request_all(scmrq->request, scmrq->error);
Sebastian Ott8360cb52013-02-28 12:07:27 +0100209 atomic_dec(&bdev->queued_reqs);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200210 scm_request_done(scmrq);
211}
212
213static void scm_blk_request(struct request_queue *rq)
214{
215 struct scm_device *scmdev = rq->queuedata;
216 struct scm_blk_dev *bdev = dev_get_drvdata(&scmdev->dev);
217 struct scm_request *scmrq;
218 struct request *req;
219 int ret;
220
221 while ((req = blk_peek_request(rq))) {
222 if (req->cmd_type != REQ_TYPE_FS)
223 continue;
224
225 scmrq = scm_request_fetch();
226 if (!scmrq) {
227 SCM_LOG(5, "no request");
228 scm_ensure_queue_restart(bdev);
229 return;
230 }
231 scm_request_init(bdev, scmrq, req);
Sebastian Ott0d804b22012-08-28 16:51:19 +0200232 if (!scm_reserve_cluster(scmrq)) {
233 SCM_LOG(5, "cluster busy");
234 scm_request_done(scmrq);
235 return;
236 }
237 if (scm_need_cluster_request(scmrq)) {
Sebastian Ott8360cb52013-02-28 12:07:27 +0100238 atomic_inc(&bdev->queued_reqs);
Sebastian Ott0d804b22012-08-28 16:51:19 +0200239 blk_start_request(req);
240 scm_initiate_cluster_request(scmrq);
241 return;
242 }
Sebastian Ottf30664e2012-08-28 16:50:38 +0200243 scm_request_prepare(scmrq);
Sebastian Ott8360cb52013-02-28 12:07:27 +0100244 atomic_inc(&bdev->queued_reqs);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200245 blk_start_request(req);
246
247 ret = scm_start_aob(scmrq->aob);
248 if (ret) {
249 SCM_LOG(5, "no subchannel");
250 scm_request_requeue(scmrq);
251 return;
252 }
Sebastian Ottf30664e2012-08-28 16:50:38 +0200253 }
254}
255
256static void __scmrq_log_error(struct scm_request *scmrq)
257{
258 struct aob *aob = scmrq->aob;
259
260 if (scmrq->error == -ETIMEDOUT)
261 SCM_LOG(1, "Request timeout");
262 else {
263 SCM_LOG(1, "Request error");
264 SCM_LOG_HEX(1, &aob->response, sizeof(aob->response));
265 }
266 if (scmrq->retries)
267 SCM_LOG(1, "Retry request");
268 else
269 pr_err("An I/O operation to SCM failed with rc=%d\n",
270 scmrq->error);
271}
272
273void scm_blk_irq(struct scm_device *scmdev, void *data, int error)
274{
275 struct scm_request *scmrq = data;
276 struct scm_blk_dev *bdev = scmrq->bdev;
277
278 scmrq->error = error;
279 if (error)
280 __scmrq_log_error(scmrq);
281
282 spin_lock(&bdev->lock);
283 list_add_tail(&scmrq->list, &bdev->finished_requests);
284 spin_unlock(&bdev->lock);
285 tasklet_hi_schedule(&bdev->tasklet);
286}
287
288static void scm_blk_tasklet(struct scm_blk_dev *bdev)
289{
290 struct scm_request *scmrq;
291 unsigned long flags;
292
293 spin_lock_irqsave(&bdev->lock, flags);
294 while (!list_empty(&bdev->finished_requests)) {
295 scmrq = list_first_entry(&bdev->finished_requests,
296 struct scm_request, list);
297 list_del(&scmrq->list);
298 spin_unlock_irqrestore(&bdev->lock, flags);
299
300 if (scmrq->error && scmrq->retries-- > 0) {
301 if (scm_start_aob(scmrq->aob)) {
302 spin_lock_irqsave(&bdev->rq_lock, flags);
303 scm_request_requeue(scmrq);
304 spin_unlock_irqrestore(&bdev->rq_lock, flags);
305 }
306 /* Request restarted or requeued, handle next. */
307 spin_lock_irqsave(&bdev->lock, flags);
308 continue;
309 }
Sebastian Ott0d804b22012-08-28 16:51:19 +0200310
311 if (scm_test_cluster_request(scmrq)) {
312 scm_cluster_request_irq(scmrq);
313 spin_lock_irqsave(&bdev->lock, flags);
314 continue;
315 }
316
Sebastian Ottf30664e2012-08-28 16:50:38 +0200317 scm_request_finish(scmrq);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200318 spin_lock_irqsave(&bdev->lock, flags);
319 }
320 spin_unlock_irqrestore(&bdev->lock, flags);
321 /* Look out for more requests. */
322 blk_run_queue(bdev->rq);
323}
324
325int scm_blk_dev_setup(struct scm_blk_dev *bdev, struct scm_device *scmdev)
326{
327 struct request_queue *rq;
328 int len, ret = -ENOMEM;
329 unsigned int devindex, nr_max_blk;
330
331 devindex = atomic_inc_return(&nr_devices) - 1;
332 /* scma..scmz + scmaa..scmzz */
333 if (devindex > 701) {
334 ret = -ENODEV;
335 goto out;
336 }
337
338 bdev->scmdev = scmdev;
339 spin_lock_init(&bdev->rq_lock);
340 spin_lock_init(&bdev->lock);
341 INIT_LIST_HEAD(&bdev->finished_requests);
342 atomic_set(&bdev->queued_reqs, 0);
343 tasklet_init(&bdev->tasklet,
344 (void (*)(unsigned long)) scm_blk_tasklet,
345 (unsigned long) bdev);
346
347 rq = blk_init_queue(scm_blk_request, &bdev->rq_lock);
348 if (!rq)
349 goto out;
350
351 bdev->rq = rq;
352 nr_max_blk = min(scmdev->nr_max_block,
353 (unsigned int) (PAGE_SIZE / sizeof(struct aidaw)));
354
355 blk_queue_logical_block_size(rq, 1 << 12);
356 blk_queue_max_hw_sectors(rq, nr_max_blk << 3); /* 8 * 512 = blk_size */
357 blk_queue_max_segments(rq, nr_max_blk);
358 queue_flag_set_unlocked(QUEUE_FLAG_NONROT, rq);
Sebastian Ott0d804b22012-08-28 16:51:19 +0200359 scm_blk_dev_cluster_setup(bdev);
Sebastian Ottf30664e2012-08-28 16:50:38 +0200360
361 bdev->gendisk = alloc_disk(SCM_NR_PARTS);
362 if (!bdev->gendisk)
363 goto out_queue;
364
365 rq->queuedata = scmdev;
366 bdev->gendisk->driverfs_dev = &scmdev->dev;
367 bdev->gendisk->private_data = scmdev;
368 bdev->gendisk->fops = &scm_blk_devops;
369 bdev->gendisk->queue = rq;
370 bdev->gendisk->major = scm_major;
371 bdev->gendisk->first_minor = devindex * SCM_NR_PARTS;
372
373 len = snprintf(bdev->gendisk->disk_name, DISK_NAME_LEN, "scm");
374 if (devindex > 25) {
375 len += snprintf(bdev->gendisk->disk_name + len,
376 DISK_NAME_LEN - len, "%c",
377 'a' + (devindex / 26) - 1);
378 devindex = devindex % 26;
379 }
380 snprintf(bdev->gendisk->disk_name + len, DISK_NAME_LEN - len, "%c",
381 'a' + devindex);
382
383 /* 512 byte sectors */
384 set_capacity(bdev->gendisk, scmdev->size >> 9);
385 add_disk(bdev->gendisk);
386 return 0;
387
388out_queue:
389 blk_cleanup_queue(rq);
390out:
391 atomic_dec(&nr_devices);
392 return ret;
393}
394
395void scm_blk_dev_cleanup(struct scm_blk_dev *bdev)
396{
397 tasklet_kill(&bdev->tasklet);
398 del_gendisk(bdev->gendisk);
399 blk_cleanup_queue(bdev->gendisk->queue);
400 put_disk(bdev->gendisk);
401}
402
403static int __init scm_blk_init(void)
404{
Sebastian Ott0d804b22012-08-28 16:51:19 +0200405 int ret = -EINVAL;
406
407 if (!scm_cluster_size_valid())
408 goto out;
Sebastian Ottf30664e2012-08-28 16:50:38 +0200409
410 ret = register_blkdev(0, "scm");
411 if (ret < 0)
412 goto out;
413
414 scm_major = ret;
415 if (scm_alloc_rqs(nr_requests))
416 goto out_unreg;
417
418 scm_debug = debug_register("scm_log", 16, 1, 16);
419 if (!scm_debug)
420 goto out_free;
421
422 debug_register_view(scm_debug, &debug_hex_ascii_view);
423 debug_set_level(scm_debug, 2);
424
425 ret = scm_drv_init();
426 if (ret)
427 goto out_dbf;
428
429 return ret;
430
431out_dbf:
432 debug_unregister(scm_debug);
433out_free:
434 scm_free_rqs();
435out_unreg:
436 unregister_blkdev(scm_major, "scm");
437out:
438 return ret;
439}
440module_init(scm_blk_init);
441
442static void __exit scm_blk_cleanup(void)
443{
444 scm_drv_cleanup();
445 debug_unregister(scm_debug);
446 scm_free_rqs();
447 unregister_blkdev(scm_major, "scm");
448}
449module_exit(scm_blk_cleanup);