block: change ->make_request_fn() and users to return a queue cookie
[cascardo/linux.git] / drivers / block / null_blk.c
1 #include <linux/module.h>
2
3 #include <linux/moduleparam.h>
4 #include <linux/sched.h>
5 #include <linux/fs.h>
6 #include <linux/blkdev.h>
7 #include <linux/init.h>
8 #include <linux/slab.h>
9 #include <linux/blk-mq.h>
10 #include <linux/hrtimer.h>
11
12 struct nullb_cmd {
13         struct list_head list;
14         struct llist_node ll_list;
15         struct call_single_data csd;
16         struct request *rq;
17         struct bio *bio;
18         unsigned int tag;
19         struct nullb_queue *nq;
20 };
21
22 struct nullb_queue {
23         unsigned long *tag_map;
24         wait_queue_head_t wait;
25         unsigned int queue_depth;
26
27         struct nullb_cmd *cmds;
28 };
29
30 struct nullb {
31         struct list_head list;
32         unsigned int index;
33         struct request_queue *q;
34         struct gendisk *disk;
35         struct blk_mq_tag_set tag_set;
36         struct hrtimer timer;
37         unsigned int queue_depth;
38         spinlock_t lock;
39
40         struct nullb_queue *queues;
41         unsigned int nr_queues;
42 };
43
44 static LIST_HEAD(nullb_list);
45 static struct mutex lock;
46 static int null_major;
47 static int nullb_indexes;
48
49 struct completion_queue {
50         struct llist_head list;
51         struct hrtimer timer;
52 };
53
54 /*
55  * These are per-cpu for now, they will need to be configured by the
56  * complete_queues parameter and appropriately mapped.
57  */
58 static DEFINE_PER_CPU(struct completion_queue, completion_queues);
59
60 enum {
61         NULL_IRQ_NONE           = 0,
62         NULL_IRQ_SOFTIRQ        = 1,
63         NULL_IRQ_TIMER          = 2,
64 };
65
66 enum {
67         NULL_Q_BIO              = 0,
68         NULL_Q_RQ               = 1,
69         NULL_Q_MQ               = 2,
70 };
71
72 static int submit_queues;
73 module_param(submit_queues, int, S_IRUGO);
74 MODULE_PARM_DESC(submit_queues, "Number of submission queues");
75
76 static int home_node = NUMA_NO_NODE;
77 module_param(home_node, int, S_IRUGO);
78 MODULE_PARM_DESC(home_node, "Home node for the device");
79
80 static int queue_mode = NULL_Q_MQ;
81
82 static int null_param_store_val(const char *str, int *val, int min, int max)
83 {
84         int ret, new_val;
85
86         ret = kstrtoint(str, 10, &new_val);
87         if (ret)
88                 return -EINVAL;
89
90         if (new_val < min || new_val > max)
91                 return -EINVAL;
92
93         *val = new_val;
94         return 0;
95 }
96
97 static int null_set_queue_mode(const char *str, const struct kernel_param *kp)
98 {
99         return null_param_store_val(str, &queue_mode, NULL_Q_BIO, NULL_Q_MQ);
100 }
101
102 static const struct kernel_param_ops null_queue_mode_param_ops = {
103         .set    = null_set_queue_mode,
104         .get    = param_get_int,
105 };
106
107 device_param_cb(queue_mode, &null_queue_mode_param_ops, &queue_mode, S_IRUGO);
108 MODULE_PARM_DESC(queue_mode, "Block interface to use (0=bio,1=rq,2=multiqueue)");
109
110 static int gb = 250;
111 module_param(gb, int, S_IRUGO);
112 MODULE_PARM_DESC(gb, "Size in GB");
113
114 static int bs = 512;
115 module_param(bs, int, S_IRUGO);
116 MODULE_PARM_DESC(bs, "Block size (in bytes)");
117
118 static int nr_devices = 2;
119 module_param(nr_devices, int, S_IRUGO);
120 MODULE_PARM_DESC(nr_devices, "Number of devices to register");
121
122 static int irqmode = NULL_IRQ_SOFTIRQ;
123
124 static int null_set_irqmode(const char *str, const struct kernel_param *kp)
125 {
126         return null_param_store_val(str, &irqmode, NULL_IRQ_NONE,
127                                         NULL_IRQ_TIMER);
128 }
129
130 static const struct kernel_param_ops null_irqmode_param_ops = {
131         .set    = null_set_irqmode,
132         .get    = param_get_int,
133 };
134
135 device_param_cb(irqmode, &null_irqmode_param_ops, &irqmode, S_IRUGO);
136 MODULE_PARM_DESC(irqmode, "IRQ completion handler. 0-none, 1-softirq, 2-timer");
137
138 static int completion_nsec = 10000;
139 module_param(completion_nsec, int, S_IRUGO);
140 MODULE_PARM_DESC(completion_nsec, "Time in ns to complete a request in hardware. Default: 10,000ns");
141
142 static int hw_queue_depth = 64;
143 module_param(hw_queue_depth, int, S_IRUGO);
144 MODULE_PARM_DESC(hw_queue_depth, "Queue depth for each hardware queue. Default: 64");
145
146 static bool use_per_node_hctx = false;
147 module_param(use_per_node_hctx, bool, S_IRUGO);
148 MODULE_PARM_DESC(use_per_node_hctx, "Use per-node allocation for hardware context queues. Default: false");
149
150 static void put_tag(struct nullb_queue *nq, unsigned int tag)
151 {
152         clear_bit_unlock(tag, nq->tag_map);
153
154         if (waitqueue_active(&nq->wait))
155                 wake_up(&nq->wait);
156 }
157
158 static unsigned int get_tag(struct nullb_queue *nq)
159 {
160         unsigned int tag;
161
162         do {
163                 tag = find_first_zero_bit(nq->tag_map, nq->queue_depth);
164                 if (tag >= nq->queue_depth)
165                         return -1U;
166         } while (test_and_set_bit_lock(tag, nq->tag_map));
167
168         return tag;
169 }
170
171 static void free_cmd(struct nullb_cmd *cmd)
172 {
173         put_tag(cmd->nq, cmd->tag);
174 }
175
176 static struct nullb_cmd *__alloc_cmd(struct nullb_queue *nq)
177 {
178         struct nullb_cmd *cmd;
179         unsigned int tag;
180
181         tag = get_tag(nq);
182         if (tag != -1U) {
183                 cmd = &nq->cmds[tag];
184                 cmd->tag = tag;
185                 cmd->nq = nq;
186                 return cmd;
187         }
188
189         return NULL;
190 }
191
192 static struct nullb_cmd *alloc_cmd(struct nullb_queue *nq, int can_wait)
193 {
194         struct nullb_cmd *cmd;
195         DEFINE_WAIT(wait);
196
197         cmd = __alloc_cmd(nq);
198         if (cmd || !can_wait)
199                 return cmd;
200
201         do {
202                 prepare_to_wait(&nq->wait, &wait, TASK_UNINTERRUPTIBLE);
203                 cmd = __alloc_cmd(nq);
204                 if (cmd)
205                         break;
206
207                 io_schedule();
208         } while (1);
209
210         finish_wait(&nq->wait, &wait);
211         return cmd;
212 }
213
214 static void end_cmd(struct nullb_cmd *cmd)
215 {
216         switch (queue_mode)  {
217         case NULL_Q_MQ:
218                 blk_mq_end_request(cmd->rq, 0);
219                 return;
220         case NULL_Q_RQ:
221                 INIT_LIST_HEAD(&cmd->rq->queuelist);
222                 blk_end_request_all(cmd->rq, 0);
223                 break;
224         case NULL_Q_BIO:
225                 bio_endio(cmd->bio);
226                 break;
227         }
228
229         free_cmd(cmd);
230 }
231
232 static enum hrtimer_restart null_cmd_timer_expired(struct hrtimer *timer)
233 {
234         struct completion_queue *cq;
235         struct llist_node *entry;
236         struct nullb_cmd *cmd;
237
238         cq = &per_cpu(completion_queues, smp_processor_id());
239
240         while ((entry = llist_del_all(&cq->list)) != NULL) {
241                 entry = llist_reverse_order(entry);
242                 do {
243                         struct request_queue *q = NULL;
244
245                         cmd = container_of(entry, struct nullb_cmd, ll_list);
246                         entry = entry->next;
247                         if (cmd->rq)
248                                 q = cmd->rq->q;
249                         end_cmd(cmd);
250
251                         if (q && !q->mq_ops && blk_queue_stopped(q)) {
252                                 spin_lock(q->queue_lock);
253                                 if (blk_queue_stopped(q))
254                                         blk_start_queue(q);
255                                 spin_unlock(q->queue_lock);
256                         }
257                 } while (entry);
258         }
259
260         return HRTIMER_NORESTART;
261 }
262
263 static void null_cmd_end_timer(struct nullb_cmd *cmd)
264 {
265         struct completion_queue *cq = &per_cpu(completion_queues, get_cpu());
266
267         cmd->ll_list.next = NULL;
268         if (llist_add(&cmd->ll_list, &cq->list)) {
269                 ktime_t kt = ktime_set(0, completion_nsec);
270
271                 hrtimer_start(&cq->timer, kt, HRTIMER_MODE_REL_PINNED);
272         }
273
274         put_cpu();
275 }
276
277 static void null_softirq_done_fn(struct request *rq)
278 {
279         if (queue_mode == NULL_Q_MQ)
280                 end_cmd(blk_mq_rq_to_pdu(rq));
281         else
282                 end_cmd(rq->special);
283 }
284
285 static inline void null_handle_cmd(struct nullb_cmd *cmd)
286 {
287         /* Complete IO by inline, softirq or timer */
288         switch (irqmode) {
289         case NULL_IRQ_SOFTIRQ:
290                 switch (queue_mode)  {
291                 case NULL_Q_MQ:
292                         blk_mq_complete_request(cmd->rq, cmd->rq->errors);
293                         break;
294                 case NULL_Q_RQ:
295                         blk_complete_request(cmd->rq);
296                         break;
297                 case NULL_Q_BIO:
298                         /*
299                          * XXX: no proper submitting cpu information available.
300                          */
301                         end_cmd(cmd);
302                         break;
303                 }
304                 break;
305         case NULL_IRQ_NONE:
306                 end_cmd(cmd);
307                 break;
308         case NULL_IRQ_TIMER:
309                 null_cmd_end_timer(cmd);
310                 break;
311         }
312 }
313
314 static struct nullb_queue *nullb_to_queue(struct nullb *nullb)
315 {
316         int index = 0;
317
318         if (nullb->nr_queues != 1)
319                 index = raw_smp_processor_id() / ((nr_cpu_ids + nullb->nr_queues - 1) / nullb->nr_queues);
320
321         return &nullb->queues[index];
322 }
323
324 static blk_qc_t null_queue_bio(struct request_queue *q, struct bio *bio)
325 {
326         struct nullb *nullb = q->queuedata;
327         struct nullb_queue *nq = nullb_to_queue(nullb);
328         struct nullb_cmd *cmd;
329
330         cmd = alloc_cmd(nq, 1);
331         cmd->bio = bio;
332
333         null_handle_cmd(cmd);
334         return BLK_QC_T_NONE;
335 }
336
337 static int null_rq_prep_fn(struct request_queue *q, struct request *req)
338 {
339         struct nullb *nullb = q->queuedata;
340         struct nullb_queue *nq = nullb_to_queue(nullb);
341         struct nullb_cmd *cmd;
342
343         cmd = alloc_cmd(nq, 0);
344         if (cmd) {
345                 cmd->rq = req;
346                 req->special = cmd;
347                 return BLKPREP_OK;
348         }
349         blk_stop_queue(q);
350
351         return BLKPREP_DEFER;
352 }
353
354 static void null_request_fn(struct request_queue *q)
355 {
356         struct request *rq;
357
358         while ((rq = blk_fetch_request(q)) != NULL) {
359                 struct nullb_cmd *cmd = rq->special;
360
361                 spin_unlock_irq(q->queue_lock);
362                 null_handle_cmd(cmd);
363                 spin_lock_irq(q->queue_lock);
364         }
365 }
366
367 static int null_queue_rq(struct blk_mq_hw_ctx *hctx,
368                          const struct blk_mq_queue_data *bd)
369 {
370         struct nullb_cmd *cmd = blk_mq_rq_to_pdu(bd->rq);
371
372         cmd->rq = bd->rq;
373         cmd->nq = hctx->driver_data;
374
375         blk_mq_start_request(bd->rq);
376
377         null_handle_cmd(cmd);
378         return BLK_MQ_RQ_QUEUE_OK;
379 }
380
381 static void null_init_queue(struct nullb *nullb, struct nullb_queue *nq)
382 {
383         BUG_ON(!nullb);
384         BUG_ON(!nq);
385
386         init_waitqueue_head(&nq->wait);
387         nq->queue_depth = nullb->queue_depth;
388 }
389
390 static int null_init_hctx(struct blk_mq_hw_ctx *hctx, void *data,
391                           unsigned int index)
392 {
393         struct nullb *nullb = data;
394         struct nullb_queue *nq = &nullb->queues[index];
395
396         hctx->driver_data = nq;
397         null_init_queue(nullb, nq);
398         nullb->nr_queues++;
399
400         return 0;
401 }
402
403 static struct blk_mq_ops null_mq_ops = {
404         .queue_rq       = null_queue_rq,
405         .map_queue      = blk_mq_map_queue,
406         .init_hctx      = null_init_hctx,
407         .complete       = null_softirq_done_fn,
408 };
409
410 static void cleanup_queue(struct nullb_queue *nq)
411 {
412         kfree(nq->tag_map);
413         kfree(nq->cmds);
414 }
415
416 static void cleanup_queues(struct nullb *nullb)
417 {
418         int i;
419
420         for (i = 0; i < nullb->nr_queues; i++)
421                 cleanup_queue(&nullb->queues[i]);
422
423         kfree(nullb->queues);
424 }
425
426 static void null_del_dev(struct nullb *nullb)
427 {
428         list_del_init(&nullb->list);
429
430         del_gendisk(nullb->disk);
431         blk_cleanup_queue(nullb->q);
432         if (queue_mode == NULL_Q_MQ)
433                 blk_mq_free_tag_set(&nullb->tag_set);
434         put_disk(nullb->disk);
435         cleanup_queues(nullb);
436         kfree(nullb);
437 }
438
439 static int null_open(struct block_device *bdev, fmode_t mode)
440 {
441         return 0;
442 }
443
444 static void null_release(struct gendisk *disk, fmode_t mode)
445 {
446 }
447
448 static const struct block_device_operations null_fops = {
449         .owner =        THIS_MODULE,
450         .open =         null_open,
451         .release =      null_release,
452 };
453
454 static int setup_commands(struct nullb_queue *nq)
455 {
456         struct nullb_cmd *cmd;
457         int i, tag_size;
458
459         nq->cmds = kzalloc(nq->queue_depth * sizeof(*cmd), GFP_KERNEL);
460         if (!nq->cmds)
461                 return -ENOMEM;
462
463         tag_size = ALIGN(nq->queue_depth, BITS_PER_LONG) / BITS_PER_LONG;
464         nq->tag_map = kzalloc(tag_size * sizeof(unsigned long), GFP_KERNEL);
465         if (!nq->tag_map) {
466                 kfree(nq->cmds);
467                 return -ENOMEM;
468         }
469
470         for (i = 0; i < nq->queue_depth; i++) {
471                 cmd = &nq->cmds[i];
472                 INIT_LIST_HEAD(&cmd->list);
473                 cmd->ll_list.next = NULL;
474                 cmd->tag = -1U;
475         }
476
477         return 0;
478 }
479
480 static int setup_queues(struct nullb *nullb)
481 {
482         nullb->queues = kzalloc(submit_queues * sizeof(struct nullb_queue),
483                                                                 GFP_KERNEL);
484         if (!nullb->queues)
485                 return -ENOMEM;
486
487         nullb->nr_queues = 0;
488         nullb->queue_depth = hw_queue_depth;
489
490         return 0;
491 }
492
493 static int init_driver_queues(struct nullb *nullb)
494 {
495         struct nullb_queue *nq;
496         int i, ret = 0;
497
498         for (i = 0; i < submit_queues; i++) {
499                 nq = &nullb->queues[i];
500
501                 null_init_queue(nullb, nq);
502
503                 ret = setup_commands(nq);
504                 if (ret)
505                         return ret;
506                 nullb->nr_queues++;
507         }
508         return 0;
509 }
510
511 static int null_add_dev(void)
512 {
513         struct gendisk *disk;
514         struct nullb *nullb;
515         sector_t size;
516         int rv;
517
518         nullb = kzalloc_node(sizeof(*nullb), GFP_KERNEL, home_node);
519         if (!nullb) {
520                 rv = -ENOMEM;
521                 goto out;
522         }
523
524         spin_lock_init(&nullb->lock);
525
526         if (queue_mode == NULL_Q_MQ && use_per_node_hctx)
527                 submit_queues = nr_online_nodes;
528
529         rv = setup_queues(nullb);
530         if (rv)
531                 goto out_free_nullb;
532
533         if (queue_mode == NULL_Q_MQ) {
534                 nullb->tag_set.ops = &null_mq_ops;
535                 nullb->tag_set.nr_hw_queues = submit_queues;
536                 nullb->tag_set.queue_depth = hw_queue_depth;
537                 nullb->tag_set.numa_node = home_node;
538                 nullb->tag_set.cmd_size = sizeof(struct nullb_cmd);
539                 nullb->tag_set.flags = BLK_MQ_F_SHOULD_MERGE;
540                 nullb->tag_set.driver_data = nullb;
541
542                 rv = blk_mq_alloc_tag_set(&nullb->tag_set);
543                 if (rv)
544                         goto out_cleanup_queues;
545
546                 nullb->q = blk_mq_init_queue(&nullb->tag_set);
547                 if (IS_ERR(nullb->q)) {
548                         rv = -ENOMEM;
549                         goto out_cleanup_tags;
550                 }
551         } else if (queue_mode == NULL_Q_BIO) {
552                 nullb->q = blk_alloc_queue_node(GFP_KERNEL, home_node);
553                 if (!nullb->q) {
554                         rv = -ENOMEM;
555                         goto out_cleanup_queues;
556                 }
557                 blk_queue_make_request(nullb->q, null_queue_bio);
558                 rv = init_driver_queues(nullb);
559                 if (rv)
560                         goto out_cleanup_blk_queue;
561         } else {
562                 nullb->q = blk_init_queue_node(null_request_fn, &nullb->lock, home_node);
563                 if (!nullb->q) {
564                         rv = -ENOMEM;
565                         goto out_cleanup_queues;
566                 }
567                 blk_queue_prep_rq(nullb->q, null_rq_prep_fn);
568                 blk_queue_softirq_done(nullb->q, null_softirq_done_fn);
569                 rv = init_driver_queues(nullb);
570                 if (rv)
571                         goto out_cleanup_blk_queue;
572         }
573
574         nullb->q->queuedata = nullb;
575         queue_flag_set_unlocked(QUEUE_FLAG_NONROT, nullb->q);
576         queue_flag_clear_unlocked(QUEUE_FLAG_ADD_RANDOM, nullb->q);
577
578         disk = nullb->disk = alloc_disk_node(1, home_node);
579         if (!disk) {
580                 rv = -ENOMEM;
581                 goto out_cleanup_blk_queue;
582         }
583
584         mutex_lock(&lock);
585         list_add_tail(&nullb->list, &nullb_list);
586         nullb->index = nullb_indexes++;
587         mutex_unlock(&lock);
588
589         blk_queue_logical_block_size(nullb->q, bs);
590         blk_queue_physical_block_size(nullb->q, bs);
591
592         size = gb * 1024 * 1024 * 1024ULL;
593         set_capacity(disk, size >> 9);
594
595         disk->flags |= GENHD_FL_EXT_DEVT | GENHD_FL_SUPPRESS_PARTITION_INFO;
596         disk->major             = null_major;
597         disk->first_minor       = nullb->index;
598         disk->fops              = &null_fops;
599         disk->private_data      = nullb;
600         disk->queue             = nullb->q;
601         sprintf(disk->disk_name, "nullb%d", nullb->index);
602         add_disk(disk);
603         return 0;
604
605 out_cleanup_blk_queue:
606         blk_cleanup_queue(nullb->q);
607 out_cleanup_tags:
608         if (queue_mode == NULL_Q_MQ)
609                 blk_mq_free_tag_set(&nullb->tag_set);
610 out_cleanup_queues:
611         cleanup_queues(nullb);
612 out_free_nullb:
613         kfree(nullb);
614 out:
615         return rv;
616 }
617
618 static int __init null_init(void)
619 {
620         unsigned int i;
621
622         if (bs > PAGE_SIZE) {
623                 pr_warn("null_blk: invalid block size\n");
624                 pr_warn("null_blk: defaults block size to %lu\n", PAGE_SIZE);
625                 bs = PAGE_SIZE;
626         }
627
628         if (queue_mode == NULL_Q_MQ && use_per_node_hctx) {
629                 if (submit_queues < nr_online_nodes) {
630                         pr_warn("null_blk: submit_queues param is set to %u.",
631                                                         nr_online_nodes);
632                         submit_queues = nr_online_nodes;
633                 }
634         } else if (submit_queues > nr_cpu_ids)
635                 submit_queues = nr_cpu_ids;
636         else if (!submit_queues)
637                 submit_queues = 1;
638
639         mutex_init(&lock);
640
641         /* Initialize a separate list for each CPU for issuing softirqs */
642         for_each_possible_cpu(i) {
643                 struct completion_queue *cq = &per_cpu(completion_queues, i);
644
645                 init_llist_head(&cq->list);
646
647                 if (irqmode != NULL_IRQ_TIMER)
648                         continue;
649
650                 hrtimer_init(&cq->timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
651                 cq->timer.function = null_cmd_timer_expired;
652         }
653
654         null_major = register_blkdev(0, "nullb");
655         if (null_major < 0)
656                 return null_major;
657
658         for (i = 0; i < nr_devices; i++) {
659                 if (null_add_dev()) {
660                         unregister_blkdev(null_major, "nullb");
661                         return -EINVAL;
662                 }
663         }
664
665         pr_info("null: module loaded\n");
666         return 0;
667 }
668
669 static void __exit null_exit(void)
670 {
671         struct nullb *nullb;
672
673         unregister_blkdev(null_major, "nullb");
674
675         mutex_lock(&lock);
676         while (!list_empty(&nullb_list)) {
677                 nullb = list_entry(nullb_list.next, struct nullb, list);
678                 null_del_dev(nullb);
679         }
680         mutex_unlock(&lock);
681 }
682
683 module_init(null_init);
684 module_exit(null_exit);
685
686 MODULE_AUTHOR("Jens Axboe <jaxboe@fusionio.com>");
687 MODULE_LICENSE("GPL");