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Merge branch 'x86-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel...
[linux.git] / drivers / s390 / crypto / ap_bus.c
CommitLineData
812141a9 1// SPDX-License-Identifier: GPL-2.0+
1534c382 2/*
75014550 3 * Copyright IBM Corp. 2006, 2012
1534c382
MS
4 * Author(s): Cornelia Huck <[email protected]>
5 * Martin Schwidefsky <[email protected]>
6 * Ralph Wuerthner <[email protected]>
cb17a636 7 * Felix Beck <[email protected]>
6bed05bc 8 * Holger Dengler <[email protected]>
1534c382
MS
9 *
10 * Adjunct processor bus.
1534c382
MS
11 */
12
136f7a1c
MS
13#define KMSG_COMPONENT "ap"
14#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
15
62d146ff 16#include <linux/kernel_stat.h>
50a0d46c 17#include <linux/moduleparam.h>
1534c382
MS
18#include <linux/init.h>
19#include <linux/delay.h>
20#include <linux/err.h>
21#include <linux/interrupt.h>
22#include <linux/workqueue.h>
5a0e3ad6 23#include <linux/slab.h>
1534c382
MS
24#include <linux/notifier.h>
25#include <linux/kthread.h>
26#include <linux/mutex.h>
83e9d5d2 27#include <linux/suspend.h>
cb17a636 28#include <asm/airq.h>
60063497 29#include <linux/atomic.h>
cb17a636 30#include <asm/isc.h>
fe137230
FB
31#include <linux/hrtimer.h>
32#include <linux/ktime.h>
a0616cde 33#include <asm/facility.h>
5d26a105 34#include <linux/crypto.h>
e28d2af4 35#include <linux/mod_devicetable.h>
cccd85bf 36#include <linux/debugfs.h>
7e0bdbe5 37#include <linux/ctype.h>
1534c382
MS
38
39#include "ap_bus.h"
cccd85bf 40#include "ap_debug.h"
1534c382 41
1749a81d 42/*
50a0d46c 43 * Module parameters; note though this file itself isn't modular.
1534c382
MS
44 */
45int ap_domain_index = -1; /* Adjunct Processor Domain Index */
fc1d3f02 46static DEFINE_SPINLOCK(ap_domain_lock);
ac2b96f3 47module_param_named(domain, ap_domain_index, int, 0440);
1534c382
MS
48MODULE_PARM_DESC(domain, "domain index for ap devices");
49EXPORT_SYMBOL(ap_domain_index);
50
ac2b96f3
HF
51static int ap_thread_flag;
52module_param_named(poll_thread, ap_thread_flag, int, 0440);
b90b34c6 53MODULE_PARM_DESC(poll_thread, "Turn on/off poll thread, default is 0 (off).");
1534c382 54
7e0bdbe5
HF
55static char *apm_str;
56module_param_named(apmask, apm_str, charp, 0440);
57MODULE_PARM_DESC(apmask, "AP bus adapter mask.");
58
59static char *aqm_str;
60module_param_named(aqmask, aqm_str, charp, 0440);
61MODULE_PARM_DESC(aqmask, "AP bus domain mask.");
62
e28d2af4
IT
63static struct device *ap_root_device;
64
65DEFINE_SPINLOCK(ap_list_lock);
66LIST_HEAD(ap_card_list);
67
00fab235
HF
68/* Default permissions (ioctl, card and domain masking) */
69struct ap_perms ap_perms;
70EXPORT_SYMBOL(ap_perms);
71DEFINE_MUTEX(ap_perms_mutex);
72EXPORT_SYMBOL(ap_perms_mutex);
7e0bdbe5 73
75014550 74static struct ap_config_info *ap_configuration;
e387753c 75static bool initialised;
1534c382 76
cccd85bf
HF
77/*
78 * AP bus related debug feature things.
79 */
cccd85bf
HF
80debug_info_t *ap_dbf_info;
81
1749a81d 82/*
8139b89d 83 * Workqueue timer for bus rescan.
1534c382 84 */
1534c382
MS
85static struct timer_list ap_config_timer;
86static int ap_config_time = AP_CONFIG_TIME;
3f3007af 87static void ap_scan_bus(struct work_struct *);
8139b89d 88static DECLARE_WORK(ap_scan_work, ap_scan_bus);
1534c382 89
1749a81d 90/*
cb17a636 91 * Tasklet & timer for AP request polling and interrupts
1534c382 92 */
3f3007af
MS
93static void ap_tasklet_fn(unsigned long);
94static DECLARE_TASKLET(ap_tasklet, ap_tasklet_fn, 0);
1534c382 95static DECLARE_WAIT_QUEUE_HEAD(ap_poll_wait);
ac2b96f3 96static struct task_struct *ap_poll_kthread;
1534c382 97static DEFINE_MUTEX(ap_poll_thread_mutex);
93521314 98static DEFINE_SPINLOCK(ap_poll_timer_lock);
fe137230 99static struct hrtimer ap_poll_timer;
ac2b96f3
HF
100/*
101 * In LPAR poll with 4kHz frequency. Poll every 250000 nanoseconds.
102 * If z/VM change to 1500000 nanoseconds to adjust to z/VM polling.
103 */
fe137230 104static unsigned long long poll_timeout = 250000;
1534c382 105
772f5472
FB
106/* Suspend flag */
107static int ap_suspend_flag;
889875a1
MS
108/* Maximum domain id */
109static int ap_max_domain_id;
ac2b96f3
HF
110/*
111 * Flag to check if domain was set through module parameter domain=. This is
5314af69 112 * important when supsend and resume is done in a z/VM environment where the
ac2b96f3
HF
113 * domain might change.
114 */
115static int user_set_domain;
772f5472
FB
116static struct bus_type ap_bus_type;
117
f4eae94f 118/* Adapter interrupt definitions */
3f3007af
MS
119static void ap_interrupt_handler(struct airq_struct *airq);
120
f4eae94f
MS
121static int ap_airq_flag;
122
123static struct airq_struct ap_airq = {
124 .handler = ap_interrupt_handler,
125 .isc = AP_ISC,
126};
127
cb17a636
FB
128/**
129 * ap_using_interrupts() - Returns non-zero if interrupt support is
130 * available.
131 */
132static inline int ap_using_interrupts(void)
133{
f4eae94f 134 return ap_airq_flag;
cb17a636
FB
135}
136
e28d2af4
IT
137/**
138 * ap_airq_ptr() - Get the address of the adapter interrupt indicator
139 *
140 * Returns the address of the local-summary-indicator of the adapter
141 * interrupt handler for AP, or NULL if adapter interrupts are not
142 * available.
143 */
144void *ap_airq_ptr(void)
145{
146 if (ap_using_interrupts())
147 return ap_airq.lsi_ptr;
148 return NULL;
149}
150
cb17a636
FB
151/**
152 * ap_interrupts_available(): Test if AP interrupts are available.
153 *
154 * Returns 1 if AP interrupts are available.
155 */
156static int ap_interrupts_available(void)
157{
86cd741b 158 return test_facility(65);
cb17a636
FB
159}
160
75014550
HD
161/**
162 * ap_configuration_available(): Test if AP configuration
163 * information is available.
164 *
165 * Returns 1 if AP configuration information is available.
166 */
167static int ap_configuration_available(void)
168{
86cd741b 169 return test_facility(12);
75014550
HD
170}
171
e7fc5146
TK
172/**
173 * ap_apft_available(): Test if AP facilities test (APFT)
174 * facility is available.
175 *
176 * Returns 1 if APFT is is available.
177 */
178static int ap_apft_available(void)
179{
180 return test_facility(15);
181}
182
9a564108
HF
183/*
184 * ap_qact_available(): Test if the PQAP(QACT) subfunction is available.
185 *
186 * Returns 1 if the QACT subfunction is available.
187 */
188static inline int ap_qact_available(void)
189{
190 if (ap_configuration)
191 return ap_configuration->qact;
192 return 0;
193}
194
050349b5
HF
195/*
196 * ap_query_configuration(): Fetch cryptographic config info
197 *
198 * Returns the ap configuration info fetched via PQAP(QCI).
199 * On success 0 is returned, on failure a negative errno
200 * is returned, e.g. if the PQAP(QCI) instruction is not
201 * available, the return value will be -EOPNOTSUPP.
202 */
f1b0a434 203static inline int ap_query_configuration(struct ap_config_info *info)
11d37673 204{
050349b5 205 if (!ap_configuration_available())
11d37673 206 return -EOPNOTSUPP;
050349b5
HF
207 if (!info)
208 return -EINVAL;
209 return ap_qci(info);
11d37673 210}
050349b5 211EXPORT_SYMBOL(ap_query_configuration);
11d37673 212
889875a1
MS
213/**
214 * ap_init_configuration(): Allocate and query configuration array.
215 */
216static void ap_init_configuration(void)
217{
218 if (!ap_configuration_available())
219 return;
220
221 ap_configuration = kzalloc(sizeof(*ap_configuration), GFP_KERNEL);
222 if (!ap_configuration)
223 return;
050349b5 224 if (ap_query_configuration(ap_configuration) != 0) {
889875a1
MS
225 kfree(ap_configuration);
226 ap_configuration = NULL;
227 return;
228 }
229}
230
231/*
232 * ap_test_config(): helper function to extract the nrth bit
233 * within the unsigned int array field.
234 */
235static inline int ap_test_config(unsigned int *field, unsigned int nr)
236{
237 return ap_test_bit((field + (nr >> 5)), (nr & 0x1f));
238}
239
240/*
241 * ap_test_config_card_id(): Test, whether an AP card ID is configured.
242 * @id AP card ID
243 *
244 * Returns 0 if the card is not configured
245 * 1 if the card is configured or
246 * if the configuration information is not available
247 */
248static inline int ap_test_config_card_id(unsigned int id)
249{
250 if (!ap_configuration) /* QCI not supported */
251 return 1;
252 return ap_test_config(ap_configuration->apm, id);
253}
254
255/*
256 * ap_test_config_domain(): Test, whether an AP usage domain is configured.
257 * @domain AP usage domain ID
258 *
259 * Returns 0 if the usage domain is not configured
260 * 1 if the usage domain is configured or
261 * if the configuration information is not available
262 */
263static inline int ap_test_config_domain(unsigned int domain)
264{
265 if (!ap_configuration) /* QCI not supported */
266 return domain < 16;
267 return ap_test_config(ap_configuration->aqm, domain);
268}
269
1534c382 270/**
1749a81d
FB
271 * ap_query_queue(): Check if an AP queue is available.
272 * @qid: The AP queue number
273 * @queue_depth: Pointer to queue depth value
274 * @device_type: Pointer to device type value
6acbe21f 275 * @facilities: Pointer to facility indicator
1534c382 276 */
6acbe21f
MS
277static int ap_query_queue(ap_qid_t qid, int *queue_depth, int *device_type,
278 unsigned int *facilities)
1534c382
MS
279{
280 struct ap_queue_status status;
6acbe21f 281 unsigned long info;
889875a1
MS
282 int nd;
283
e28d2af4 284 if (!ap_test_config_card_id(AP_QID_CARD(qid)))
889875a1 285 return -ENODEV;
1534c382 286
e7fc5146 287 status = ap_test_queue(qid, ap_apft_available(), &info);
c50a160c
IT
288 switch (status.response_code) {
289 case AP_RESPONSE_NORMAL:
6acbe21f
MS
290 *queue_depth = (int)(info & 0xff);
291 *device_type = (int)((info >> 24) & 0xff);
292 *facilities = (unsigned int)(info >> 32);
889875a1
MS
293 /* Update maximum domain id */
294 nd = (info >> 16) & 0xff;
c1c1368d 295 /* if N bit is available, z13 and newer */
889875a1
MS
296 if ((info & (1UL << 57)) && nd > 0)
297 ap_max_domain_id = nd;
c1c1368d
IT
298 else /* older machine types */
299 ap_max_domain_id = 15;
14878424
HF
300 switch (*device_type) {
301 /* For CEX2 and CEX3 the available functions
302 * are not refrected by the facilities bits.
303 * Instead it is coded into the type. So here
304 * modify the function bits based on the type.
305 */
306 case AP_DEVICE_TYPE_CEX2A:
307 case AP_DEVICE_TYPE_CEX3A:
308 *facilities |= 0x08000000;
309 break;
310 case AP_DEVICE_TYPE_CEX2C:
311 case AP_DEVICE_TYPE_CEX3C:
312 *facilities |= 0x10000000;
313 break;
314 default:
315 break;
316 }
c50a160c
IT
317 return 0;
318 case AP_RESPONSE_Q_NOT_AVAIL:
319 case AP_RESPONSE_DECONFIGURED:
320 case AP_RESPONSE_CHECKSTOPPED:
321 case AP_RESPONSE_INVALID_ADDRESS:
322 return -ENODEV;
323 case AP_RESPONSE_RESET_IN_PROGRESS:
324 case AP_RESPONSE_OTHERWISE_CHANGED:
325 case AP_RESPONSE_BUSY:
326 return -EBUSY;
327 default:
328 BUG();
1534c382 329 }
1534c382
MS
330}
331
e28d2af4 332void ap_wait(enum ap_wait wait)
3f3007af
MS
333{
334 ktime_t hr_time;
335
336 switch (wait) {
337 case AP_WAIT_AGAIN:
338 case AP_WAIT_INTERRUPT:
339 if (ap_using_interrupts())
340 break;
341 if (ap_poll_kthread) {
342 wake_up(&ap_poll_wait);
343 break;
344 }
345 /* Fall through */
346 case AP_WAIT_TIMEOUT:
347 spin_lock_bh(&ap_poll_timer_lock);
348 if (!hrtimer_is_queued(&ap_poll_timer)) {
8b0e1953 349 hr_time = poll_timeout;
3f3007af
MS
350 hrtimer_forward_now(&ap_poll_timer, hr_time);
351 hrtimer_restart(&ap_poll_timer);
352 }
353 spin_unlock_bh(&ap_poll_timer_lock);
354 break;
355 case AP_WAIT_NONE:
356 default:
357 break;
358 }
359}
360
3f3007af
MS
361/**
362 * ap_request_timeout(): Handling of request timeouts
cefbeb5d 363 * @t: timer making this callback
3f3007af
MS
364 *
365 * Handles request timeouts.
366 */
cefbeb5d 367void ap_request_timeout(struct timer_list *t)
3f3007af 368{
cefbeb5d 369 struct ap_queue *aq = from_timer(aq, t, timeout);
3f3007af
MS
370
371 if (ap_suspend_flag)
372 return;
e28d2af4
IT
373 spin_lock_bh(&aq->lock);
374 ap_wait(ap_sm_event(aq, AP_EVENT_TIMEOUT));
375 spin_unlock_bh(&aq->lock);
3f3007af
MS
376}
377
378/**
379 * ap_poll_timeout(): AP receive polling for finished AP requests.
380 * @unused: Unused pointer.
381 *
382 * Schedules the AP tasklet using a high resolution timer.
383 */
384static enum hrtimer_restart ap_poll_timeout(struct hrtimer *unused)
385{
386 if (!ap_suspend_flag)
387 tasklet_schedule(&ap_tasklet);
388 return HRTIMER_NORESTART;
389}
390
391/**
392 * ap_interrupt_handler() - Schedule ap_tasklet on interrupt
393 * @airq: pointer to adapter interrupt descriptor
394 */
395static void ap_interrupt_handler(struct airq_struct *airq)
396{
397 inc_irq_stat(IRQIO_APB);
398 if (!ap_suspend_flag)
399 tasklet_schedule(&ap_tasklet);
400}
401
402/**
403 * ap_tasklet_fn(): Tasklet to poll all AP devices.
404 * @dummy: Unused variable
405 *
406 * Poll all AP devices on the bus.
407 */
408static void ap_tasklet_fn(unsigned long dummy)
409{
e28d2af4
IT
410 struct ap_card *ac;
411 struct ap_queue *aq;
3f3007af
MS
412 enum ap_wait wait = AP_WAIT_NONE;
413
414 /* Reset the indicator if interrupts are used. Thus new interrupts can
415 * be received. Doing it in the beginning of the tasklet is therefor
416 * important that no requests on any AP get lost.
417 */
418 if (ap_using_interrupts())
419 xchg(ap_airq.lsi_ptr, 0);
420
e28d2af4
IT
421 spin_lock_bh(&ap_list_lock);
422 for_each_ap_card(ac) {
423 for_each_ap_queue(aq, ac) {
424 spin_lock_bh(&aq->lock);
425 wait = min(wait, ap_sm_event_loop(aq, AP_EVENT_POLL));
426 spin_unlock_bh(&aq->lock);
427 }
3f3007af 428 }
e28d2af4
IT
429 spin_unlock_bh(&ap_list_lock);
430
431 ap_wait(wait);
af512ed0
RW
432}
433
9af3e04e
MS
434static int ap_pending_requests(void)
435{
e28d2af4
IT
436 struct ap_card *ac;
437 struct ap_queue *aq;
438
439 spin_lock_bh(&ap_list_lock);
440 for_each_ap_card(ac) {
441 for_each_ap_queue(aq, ac) {
442 if (aq->queue_count == 0)
443 continue;
444 spin_unlock_bh(&ap_list_lock);
445 return 1;
9af3e04e 446 }
9af3e04e 447 }
e28d2af4
IT
448 spin_unlock_bh(&ap_list_lock);
449 return 0;
9af3e04e
MS
450}
451
83e9d5d2
MS
452/**
453 * ap_poll_thread(): Thread that polls for finished requests.
454 * @data: Unused pointer
455 *
456 * AP bus poll thread. The purpose of this thread is to poll for
457 * finished requests in a loop if there is a "free" cpu - that is
458 * a cpu that doesn't have anything better to do. The polling stops
459 * as soon as there is another task or if all messages have been
460 * delivered.
461 */
462static int ap_poll_thread(void *data)
463{
464 DECLARE_WAITQUEUE(wait, current);
83e9d5d2
MS
465
466 set_user_nice(current, MAX_NICE);
467 set_freezable();
468 while (!kthread_should_stop()) {
469 add_wait_queue(&ap_poll_wait, &wait);
470 set_current_state(TASK_INTERRUPTIBLE);
9af3e04e 471 if (ap_suspend_flag || !ap_pending_requests()) {
83e9d5d2
MS
472 schedule();
473 try_to_freeze();
474 }
475 set_current_state(TASK_RUNNING);
476 remove_wait_queue(&ap_poll_wait, &wait);
83e9d5d2
MS
477 if (need_resched()) {
478 schedule();
479 try_to_freeze();
480 continue;
481 }
3f3007af 482 ap_tasklet_fn(0);
9af3e04e
MS
483 }
484
83e9d5d2
MS
485 return 0;
486}
487
488static int ap_poll_thread_start(void)
489{
490 int rc;
491
492 if (ap_using_interrupts() || ap_poll_kthread)
493 return 0;
494 mutex_lock(&ap_poll_thread_mutex);
495 ap_poll_kthread = kthread_run(ap_poll_thread, NULL, "appoll");
9c705206 496 rc = PTR_ERR_OR_ZERO(ap_poll_kthread);
83e9d5d2
MS
497 if (rc)
498 ap_poll_kthread = NULL;
499 mutex_unlock(&ap_poll_thread_mutex);
500 return rc;
501}
502
503static void ap_poll_thread_stop(void)
504{
505 if (!ap_poll_kthread)
506 return;
507 mutex_lock(&ap_poll_thread_mutex);
508 kthread_stop(ap_poll_kthread);
509 ap_poll_kthread = NULL;
510 mutex_unlock(&ap_poll_thread_mutex);
511}
512
e28d2af4
IT
513#define is_card_dev(x) ((x)->parent == ap_root_device)
514#define is_queue_dev(x) ((x)->parent != ap_root_device)
1534c382
MS
515
516/**
1749a81d
FB
517 * ap_bus_match()
518 * @dev: Pointer to device
519 * @drv: Pointer to device_driver
520 *
1534c382
MS
521 * AP bus driver registration/unregistration.
522 */
523static int ap_bus_match(struct device *dev, struct device_driver *drv)
524{
1534c382
MS
525 struct ap_driver *ap_drv = to_ap_drv(drv);
526 struct ap_device_id *id;
527
1749a81d 528 /*
1534c382
MS
529 * Compare device type of the device with the list of
530 * supported types of the device_driver.
531 */
532 for (id = ap_drv->ids; id->match_flags; id++) {
e28d2af4
IT
533 if (is_card_dev(dev) &&
534 id->match_flags & AP_DEVICE_ID_MATCH_CARD_TYPE &&
535 id->dev_type == to_ap_dev(dev)->device_type)
536 return 1;
537 if (is_queue_dev(dev) &&
538 id->match_flags & AP_DEVICE_ID_MATCH_QUEUE_TYPE &&
539 id->dev_type == to_ap_dev(dev)->device_type)
540 return 1;
1534c382
MS
541 }
542 return 0;
543}
544
545/**
1749a81d
FB
546 * ap_uevent(): Uevent function for AP devices.
547 * @dev: Pointer to device
548 * @env: Pointer to kobj_uevent_env
549 *
550 * It sets up a single environment variable DEV_TYPE which contains the
551 * hardware device type.
1534c382 552 */
ac2b96f3 553static int ap_uevent(struct device *dev, struct kobj_uevent_env *env)
1534c382
MS
554{
555 struct ap_device *ap_dev = to_ap_dev(dev);
7eff2e7a 556 int retval = 0;
1534c382
MS
557
558 if (!ap_dev)
559 return -ENODEV;
560
561 /* Set up DEV_TYPE environment variable. */
7eff2e7a 562 retval = add_uevent_var(env, "DEV_TYPE=%04X", ap_dev->device_type);
bf62456e
ER
563 if (retval)
564 return retval;
565
66a4263b 566 /* Add MODALIAS= */
7eff2e7a 567 retval = add_uevent_var(env, "MODALIAS=ap:t%02X", ap_dev->device_type);
bf62456e 568
bf62456e 569 return retval;
1534c382
MS
570}
571
3e488c95 572static int ap_dev_suspend(struct device *dev)
772f5472
FB
573{
574 struct ap_device *ap_dev = to_ap_dev(dev);
772f5472 575
e28d2af4
IT
576 if (ap_dev->drv && ap_dev->drv->suspend)
577 ap_dev->drv->suspend(ap_dev);
578 return 0;
579}
580
581static int ap_dev_resume(struct device *dev)
582{
583 struct ap_device *ap_dev = to_ap_dev(dev);
584
585 if (ap_dev->drv && ap_dev->drv->resume)
586 ap_dev->drv->resume(ap_dev);
83e9d5d2
MS
587 return 0;
588}
5314af69 589
83e9d5d2
MS
590static void ap_bus_suspend(void)
591{
ac2b96f3 592 AP_DBF(DBF_DEBUG, "%s running\n", __func__);
cccd85bf 593
83e9d5d2
MS
594 ap_suspend_flag = 1;
595 /*
596 * Disable scanning for devices, thus we do not want to scan
597 * for them after removing.
598 */
8139b89d 599 flush_work(&ap_scan_work);
83e9d5d2
MS
600 tasklet_disable(&ap_tasklet);
601}
602
e28d2af4
IT
603static int __ap_card_devices_unregister(struct device *dev, void *dummy)
604{
605 if (is_card_dev(dev))
606 device_unregister(dev);
607 return 0;
608}
609
610static int __ap_queue_devices_unregister(struct device *dev, void *dummy)
611{
612 if (is_queue_dev(dev))
613 device_unregister(dev);
614 return 0;
615}
616
617static int __ap_queue_devices_with_id_unregister(struct device *dev, void *data)
83e9d5d2 618{
e28d2af4
IT
619 if (is_queue_dev(dev) &&
620 AP_QID_CARD(to_ap_queue(dev)->qid) == (int)(long) data)
621 device_unregister(dev);
83e9d5d2
MS
622 return 0;
623}
624
625static void ap_bus_resume(void)
772f5472 626{
f4eae94f 627 int rc;
772f5472 628
ac2b96f3 629 AP_DBF(DBF_DEBUG, "%s running\n", __func__);
cccd85bf 630
e28d2af4
IT
631 /* remove all queue devices */
632 bus_for_each_dev(&ap_bus_type, NULL, NULL,
633 __ap_queue_devices_unregister);
634 /* remove all card devices */
635 bus_for_each_dev(&ap_bus_type, NULL, NULL,
636 __ap_card_devices_unregister);
637
83e9d5d2
MS
638 /* Reset thin interrupt setting */
639 if (ap_interrupts_available() && !ap_using_interrupts()) {
640 rc = register_adapter_interrupt(&ap_airq);
641 ap_airq_flag = (rc == 0);
5314af69 642 }
83e9d5d2
MS
643 if (!ap_interrupts_available() && ap_using_interrupts()) {
644 unregister_adapter_interrupt(&ap_airq);
645 ap_airq_flag = 0;
646 }
647 /* Reset domain */
648 if (!user_set_domain)
649 ap_domain_index = -1;
650 /* Get things going again */
651 ap_suspend_flag = 0;
652 if (ap_airq_flag)
653 xchg(ap_airq.lsi_ptr, 0);
654 tasklet_enable(&ap_tasklet);
8139b89d 655 queue_work(system_long_wq, &ap_scan_work);
83e9d5d2 656}
772f5472 657
83e9d5d2
MS
658static int ap_power_event(struct notifier_block *this, unsigned long event,
659 void *ptr)
660{
661 switch (event) {
662 case PM_HIBERNATION_PREPARE:
663 case PM_SUSPEND_PREPARE:
664 ap_bus_suspend();
665 break;
666 case PM_POST_HIBERNATION:
667 case PM_POST_SUSPEND:
668 ap_bus_resume();
669 break;
670 default:
671 break;
672 }
673 return NOTIFY_DONE;
772f5472 674}
83e9d5d2
MS
675static struct notifier_block ap_power_notifier = {
676 .notifier_call = ap_power_event,
677};
772f5472 678
e28d2af4 679static SIMPLE_DEV_PM_OPS(ap_bus_pm_ops, ap_dev_suspend, ap_dev_resume);
3e488c95 680
1534c382
MS
681static struct bus_type ap_bus_type = {
682 .name = "ap",
683 .match = &ap_bus_match,
684 .uevent = &ap_uevent,
3e488c95 685 .pm = &ap_bus_pm_ops,
1534c382
MS
686};
687
7e0bdbe5
HF
688static int __ap_revise_reserved(struct device *dev, void *dummy)
689{
690 int rc, card, queue, devres, drvres;
691
692 if (is_queue_dev(dev)) {
693 card = AP_QID_CARD(to_ap_queue(dev)->qid);
694 queue = AP_QID_QUEUE(to_ap_queue(dev)->qid);
695 mutex_lock(&ap_perms_mutex);
696 devres = test_bit_inv(card, ap_perms.apm)
697 && test_bit_inv(queue, ap_perms.aqm);
698 mutex_unlock(&ap_perms_mutex);
699 drvres = to_ap_drv(dev->driver)->flags
700 & AP_DRIVER_FLAG_DEFAULT;
701 if (!!devres != !!drvres) {
702 AP_DBF(DBF_DEBUG, "reprobing queue=%02x.%04x\n",
703 card, queue);
704 rc = device_reprobe(dev);
705 }
706 }
707
708 return 0;
709}
710
711static void ap_bus_revise_bindings(void)
712{
713 bus_for_each_dev(&ap_bus_type, NULL, NULL, __ap_revise_reserved);
714}
715
716int ap_owned_by_def_drv(int card, int queue)
717{
718 int rc = 0;
719
720 if (card < 0 || card >= AP_DEVICES || queue < 0 || queue >= AP_DOMAINS)
721 return -EINVAL;
722
723 mutex_lock(&ap_perms_mutex);
724
725 if (test_bit_inv(card, ap_perms.apm)
726 && test_bit_inv(queue, ap_perms.aqm))
727 rc = 1;
728
729 mutex_unlock(&ap_perms_mutex);
730
731 return rc;
732}
733EXPORT_SYMBOL(ap_owned_by_def_drv);
734
735int ap_apqn_in_matrix_owned_by_def_drv(unsigned long *apm,
736 unsigned long *aqm)
737{
738 int card, queue, rc = 0;
739
740 mutex_lock(&ap_perms_mutex);
741
742 for (card = 0; !rc && card < AP_DEVICES; card++)
743 if (test_bit_inv(card, apm) &&
744 test_bit_inv(card, ap_perms.apm))
745 for (queue = 0; !rc && queue < AP_DOMAINS; queue++)
746 if (test_bit_inv(queue, aqm) &&
747 test_bit_inv(queue, ap_perms.aqm))
748 rc = 1;
749
750 mutex_unlock(&ap_perms_mutex);
751
752 return rc;
753}
754EXPORT_SYMBOL(ap_apqn_in_matrix_owned_by_def_drv);
755
1534c382
MS
756static int ap_device_probe(struct device *dev)
757{
758 struct ap_device *ap_dev = to_ap_dev(dev);
3f3007af 759 struct ap_driver *ap_drv = to_ap_drv(dev->driver);
7e0bdbe5
HF
760 int card, queue, devres, drvres, rc;
761
762 if (is_queue_dev(dev)) {
763 /*
764 * If the apqn is marked as reserved/used by ap bus and
765 * default drivers, only probe with drivers with the default
766 * flag set. If it is not marked, only probe with drivers
767 * with the default flag not set.
768 */
769 card = AP_QID_CARD(to_ap_queue(dev)->qid);
770 queue = AP_QID_QUEUE(to_ap_queue(dev)->qid);
771 mutex_lock(&ap_perms_mutex);
772 devres = test_bit_inv(card, ap_perms.apm)
773 && test_bit_inv(queue, ap_perms.aqm);
774 mutex_unlock(&ap_perms_mutex);
775 drvres = ap_drv->flags & AP_DRIVER_FLAG_DEFAULT;
776 if (!!devres != !!drvres)
777 return -ENODEV;
104f708f
HF
778 /* (re-)init queue's state machine */
779 ap_queue_reinit_state(to_ap_queue(dev));
7e0bdbe5 780 }
666e68e0 781
e3850508
HF
782 /* Add queue/card to list of active queues/cards */
783 spin_lock_bh(&ap_list_lock);
784 if (is_card_dev(dev))
785 list_add(&to_ap_card(dev)->list, &ap_card_list);
786 else
787 list_add(&to_ap_queue(dev)->list,
788 &to_ap_queue(dev)->card->queues);
789 spin_unlock_bh(&ap_list_lock);
790
3f3007af 791 ap_dev->drv = ap_drv;
1534c382 792 rc = ap_drv->probe ? ap_drv->probe(ap_dev) : -ENODEV;
e3850508
HF
793
794 if (rc) {
795 spin_lock_bh(&ap_list_lock);
796 if (is_card_dev(dev))
797 list_del_init(&to_ap_card(dev)->list);
798 else
799 list_del_init(&to_ap_queue(dev)->list);
800 spin_unlock_bh(&ap_list_lock);
3f3007af 801 ap_dev->drv = NULL;
e3850508
HF
802 }
803
1534c382
MS
804 return rc;
805}
806
1534c382
MS
807static int ap_device_remove(struct device *dev)
808{
809 struct ap_device *ap_dev = to_ap_dev(dev);
810 struct ap_driver *ap_drv = ap_dev->drv;
811
104f708f
HF
812 if (is_queue_dev(dev))
813 ap_queue_remove(to_ap_queue(dev));
e3850508
HF
814 if (ap_drv->remove)
815 ap_drv->remove(ap_dev);
816
817 /* Remove queue/card from list of active queues/cards */
e28d2af4
IT
818 spin_lock_bh(&ap_list_lock);
819 if (is_card_dev(dev))
820 list_del_init(&to_ap_card(dev)->list);
821 else
822 list_del_init(&to_ap_queue(dev)->list);
823 spin_unlock_bh(&ap_list_lock);
e3850508 824
1534c382
MS
825 return 0;
826}
827
828int ap_driver_register(struct ap_driver *ap_drv, struct module *owner,
829 char *name)
830{
831 struct device_driver *drv = &ap_drv->driver;
832
e387753c
SS
833 if (!initialised)
834 return -ENODEV;
835
1534c382
MS
836 drv->bus = &ap_bus_type;
837 drv->probe = ap_device_probe;
838 drv->remove = ap_device_remove;
839 drv->owner = owner;
840 drv->name = name;
841 return driver_register(drv);
842}
843EXPORT_SYMBOL(ap_driver_register);
844
845void ap_driver_unregister(struct ap_driver *ap_drv)
846{
847 driver_unregister(&ap_drv->driver);
848}
849EXPORT_SYMBOL(ap_driver_unregister);
850
dabecb29
HD
851void ap_bus_force_rescan(void)
852{
83e9d5d2
MS
853 if (ap_suspend_flag)
854 return;
56bbe686 855 /* processing a asynchronous bus rescan */
fcd0d1f6 856 del_timer(&ap_config_timer);
8139b89d
MS
857 queue_work(system_long_wq, &ap_scan_work);
858 flush_work(&ap_scan_work);
dabecb29
HD
859}
860EXPORT_SYMBOL(ap_bus_force_rescan);
861
1749a81d 862/*
3d8f60d3
HF
863 * hex2bitmap() - parse hex mask string and set bitmap.
864 * Valid strings are "0x012345678" with at least one valid hex number.
865 * Rest of the bitmap to the right is padded with 0. No spaces allowed
866 * within the string, the leading 0x may be omitted.
867 * Returns the bitmask with exactly the bits set as given by the hex
868 * string (both in big endian order).
1534c382 869 */
7e0bdbe5
HF
870static int hex2bitmap(const char *str, unsigned long *bitmap, int bits)
871{
872 int i, n, b;
873
874 /* bits needs to be a multiple of 8 */
875 if (bits & 0x07)
876 return -EINVAL;
877
7e0bdbe5
HF
878 if (str[0] == '0' && str[1] == 'x')
879 str++;
880 if (*str == 'x')
881 str++;
882
883 for (i = 0; isxdigit(*str) && i < bits; str++) {
884 b = hex_to_bin(*str);
885 for (n = 0; n < 4; n++)
886 if (b & (0x08 >> n))
887 set_bit_inv(i + n, bitmap);
888 i += 4;
889 }
890
3d8f60d3
HF
891 if (*str == '\n')
892 str++;
893 if (*str)
894 return -EINVAL;
895 return 0;
896}
897
898/*
fa108f95
MS
899 * modify_bitmap() - parse bitmask argument and modify an existing
900 * bit mask accordingly. A concatenation (done with ',') of these
901 * terms is recognized:
3d8f60d3
HF
902 * +<bitnr>[-<bitnr>] or -<bitnr>[-<bitnr>]
903 * <bitnr> may be any valid number (hex, decimal or octal) in the range
904 * 0...bits-1; the leading + or - is required. Here are some examples:
905 * +0-15,+32,-128,-0xFF
906 * -0-255,+1-16,+0x128
907 * +1,+2,+3,+4,-5,-7-10
fa108f95
MS
908 * Returns the new bitmap after all changes have been applied. Every
909 * positive value in the string will set a bit and every negative value
910 * in the string will clear a bit. As a bit may be touched more than once,
911 * the last 'operation' wins:
912 * +0-255,-128 = first bits 0-255 will be set, then bit 128 will be
913 * cleared again. All other bits are unmodified.
3d8f60d3 914 */
fa108f95 915static int modify_bitmap(const char *str, unsigned long *bitmap, int bits)
3d8f60d3
HF
916{
917 int a, i, z;
918 char *np, sign;
919
920 /* bits needs to be a multiple of 8 */
921 if (bits & 0x07)
7e0bdbe5
HF
922 return -EINVAL;
923
3d8f60d3
HF
924 while (*str) {
925 sign = *str++;
926 if (sign != '+' && sign != '-')
927 return -EINVAL;
928 a = z = simple_strtoul(str, &np, 0);
929 if (str == np || a >= bits)
930 return -EINVAL;
931 str = np;
932 if (*str == '-') {
933 z = simple_strtoul(++str, &np, 0);
934 if (str == np || a > z || z >= bits)
935 return -EINVAL;
936 str = np;
937 }
938 for (i = a; i <= z; i++)
fa108f95
MS
939 if (sign == '+')
940 set_bit_inv(i, bitmap);
941 else
942 clear_bit_inv(i, bitmap);
3d8f60d3
HF
943 while (*str == ',' || *str == '\n')
944 str++;
945 }
946
7e0bdbe5
HF
947 return 0;
948}
949
00fab235
HF
950int ap_parse_mask_str(const char *str,
951 unsigned long *bitmap, int bits,
952 struct mutex *lock)
3d8f60d3 953{
fa108f95
MS
954 unsigned long *newmap, size;
955 int rc;
3d8f60d3
HF
956
957 /* bits needs to be a multiple of 8 */
958 if (bits & 0x07)
959 return -EINVAL;
960
fa108f95
MS
961 size = BITS_TO_LONGS(bits)*sizeof(unsigned long);
962 newmap = kmalloc(size, GFP_KERNEL);
963 if (!newmap)
964 return -ENOMEM;
965 if (mutex_lock_interruptible(lock)) {
966 kfree(newmap);
967 return -ERESTARTSYS;
968 }
969
3d8f60d3 970 if (*str == '+' || *str == '-') {
fa108f95
MS
971 memcpy(newmap, bitmap, size);
972 rc = modify_bitmap(str, newmap, bits);
3d8f60d3 973 } else {
fa108f95
MS
974 memset(newmap, 0, size);
975 rc = hex2bitmap(str, newmap, bits);
3d8f60d3 976 }
fa108f95
MS
977 if (rc == 0)
978 memcpy(bitmap, newmap, size);
3d8f60d3 979 mutex_unlock(lock);
fa108f95
MS
980 kfree(newmap);
981 return rc;
3d8f60d3 982}
00fab235 983EXPORT_SYMBOL(ap_parse_mask_str);
3d8f60d3
HF
984
985/*
986 * AP bus attributes.
987 */
988
1534c382
MS
989static ssize_t ap_domain_show(struct bus_type *bus, char *buf)
990{
991 return snprintf(buf, PAGE_SIZE, "%d\n", ap_domain_index);
992}
993
fc1d3f02
IT
994static ssize_t ap_domain_store(struct bus_type *bus,
995 const char *buf, size_t count)
996{
997 int domain;
998
999 if (sscanf(buf, "%i\n", &domain) != 1 ||
7e0bdbe5
HF
1000 domain < 0 || domain > ap_max_domain_id ||
1001 !test_bit_inv(domain, ap_perms.aqm))
fc1d3f02
IT
1002 return -EINVAL;
1003 spin_lock_bh(&ap_domain_lock);
1004 ap_domain_index = domain;
1005 spin_unlock_bh(&ap_domain_lock);
cccd85bf 1006
ac994e80 1007 AP_DBF(DBF_DEBUG, "stored new default domain=%d\n", domain);
cccd85bf 1008
fc1d3f02
IT
1009 return count;
1010}
1011
ac2b96f3 1012static BUS_ATTR_RW(ap_domain);
1534c382 1013
91f3e3ea
IT
1014static ssize_t ap_control_domain_mask_show(struct bus_type *bus, char *buf)
1015{
889875a1
MS
1016 if (!ap_configuration) /* QCI not supported */
1017 return snprintf(buf, PAGE_SIZE, "not supported\n");
e28d2af4 1018
889875a1
MS
1019 return snprintf(buf, PAGE_SIZE,
1020 "0x%08x%08x%08x%08x%08x%08x%08x%08x\n",
91f3e3ea
IT
1021 ap_configuration->adm[0], ap_configuration->adm[1],
1022 ap_configuration->adm[2], ap_configuration->adm[3],
1023 ap_configuration->adm[4], ap_configuration->adm[5],
1024 ap_configuration->adm[6], ap_configuration->adm[7]);
91f3e3ea
IT
1025}
1026
ac2b96f3 1027static BUS_ATTR_RO(ap_control_domain_mask);
91f3e3ea 1028
e28d2af4
IT
1029static ssize_t ap_usage_domain_mask_show(struct bus_type *bus, char *buf)
1030{
1031 if (!ap_configuration) /* QCI not supported */
1032 return snprintf(buf, PAGE_SIZE, "not supported\n");
1033
1034 return snprintf(buf, PAGE_SIZE,
1035 "0x%08x%08x%08x%08x%08x%08x%08x%08x\n",
1036 ap_configuration->aqm[0], ap_configuration->aqm[1],
1037 ap_configuration->aqm[2], ap_configuration->aqm[3],
1038 ap_configuration->aqm[4], ap_configuration->aqm[5],
1039 ap_configuration->aqm[6], ap_configuration->aqm[7]);
1040}
1041
ac2b96f3 1042static BUS_ATTR_RO(ap_usage_domain_mask);
1534c382 1043
aa55bf5f
HF
1044static ssize_t ap_adapter_mask_show(struct bus_type *bus, char *buf)
1045{
1046 if (!ap_configuration) /* QCI not supported */
1047 return snprintf(buf, PAGE_SIZE, "not supported\n");
1048
1049 return snprintf(buf, PAGE_SIZE,
1050 "0x%08x%08x%08x%08x%08x%08x%08x%08x\n",
1051 ap_configuration->apm[0], ap_configuration->apm[1],
1052 ap_configuration->apm[2], ap_configuration->apm[3],
1053 ap_configuration->apm[4], ap_configuration->apm[5],
1054 ap_configuration->apm[6], ap_configuration->apm[7]);
1055}
1056
1057static BUS_ATTR_RO(ap_adapter_mask);
1058
cb17a636
FB
1059static ssize_t ap_interrupts_show(struct bus_type *bus, char *buf)
1060{
1061 return snprintf(buf, PAGE_SIZE, "%d\n",
1062 ap_using_interrupts() ? 1 : 0);
1063}
1064
ac2b96f3
HF
1065static BUS_ATTR_RO(ap_interrupts);
1066
1067static ssize_t config_time_show(struct bus_type *bus, char *buf)
1068{
1069 return snprintf(buf, PAGE_SIZE, "%d\n", ap_config_time);
1070}
cb17a636 1071
ac2b96f3
HF
1072static ssize_t config_time_store(struct bus_type *bus,
1073 const char *buf, size_t count)
1534c382
MS
1074{
1075 int time;
1076
1077 if (sscanf(buf, "%d\n", &time) != 1 || time < 5 || time > 120)
1078 return -EINVAL;
1079 ap_config_time = time;
fcd0d1f6 1080 mod_timer(&ap_config_timer, jiffies + ap_config_time * HZ);
1534c382
MS
1081 return count;
1082}
1083
ac2b96f3 1084static BUS_ATTR_RW(config_time);
1534c382 1085
ac2b96f3 1086static ssize_t poll_thread_show(struct bus_type *bus, char *buf)
1534c382
MS
1087{
1088 return snprintf(buf, PAGE_SIZE, "%d\n", ap_poll_kthread ? 1 : 0);
1089}
1090
ac2b96f3
HF
1091static ssize_t poll_thread_store(struct bus_type *bus,
1092 const char *buf, size_t count)
1534c382
MS
1093{
1094 int flag, rc;
1095
1096 if (sscanf(buf, "%d\n", &flag) != 1)
1097 return -EINVAL;
1098 if (flag) {
1099 rc = ap_poll_thread_start();
1100 if (rc)
83e9d5d2
MS
1101 count = rc;
1102 } else
1534c382
MS
1103 ap_poll_thread_stop();
1104 return count;
1105}
1106
ac2b96f3 1107static BUS_ATTR_RW(poll_thread);
1534c382 1108
fe137230
FB
1109static ssize_t poll_timeout_show(struct bus_type *bus, char *buf)
1110{
1111 return snprintf(buf, PAGE_SIZE, "%llu\n", poll_timeout);
1112}
1113
1114static ssize_t poll_timeout_store(struct bus_type *bus, const char *buf,
1115 size_t count)
1116{
1117 unsigned long long time;
1118 ktime_t hr_time;
1119
1120 /* 120 seconds = maximum poll interval */
cb17a636
FB
1121 if (sscanf(buf, "%llu\n", &time) != 1 || time < 1 ||
1122 time > 120000000000ULL)
fe137230
FB
1123 return -EINVAL;
1124 poll_timeout = time;
8b0e1953 1125 hr_time = poll_timeout;
fe137230 1126
8cc2af7c
IT
1127 spin_lock_bh(&ap_poll_timer_lock);
1128 hrtimer_cancel(&ap_poll_timer);
1129 hrtimer_set_expires(&ap_poll_timer, hr_time);
1130 hrtimer_start_expires(&ap_poll_timer, HRTIMER_MODE_ABS);
1131 spin_unlock_bh(&ap_poll_timer_lock);
1132
fe137230
FB
1133 return count;
1134}
1135
ac2b96f3 1136static BUS_ATTR_RW(poll_timeout);
fe137230 1137
5bc334bf
IT
1138static ssize_t ap_max_domain_id_show(struct bus_type *bus, char *buf)
1139{
889875a1
MS
1140 int max_domain_id;
1141
1142 if (ap_configuration)
1143 max_domain_id = ap_max_domain_id ? : -1;
1144 else
5bc334bf 1145 max_domain_id = 15;
5bc334bf
IT
1146 return snprintf(buf, PAGE_SIZE, "%d\n", max_domain_id);
1147}
1148
ac2b96f3 1149static BUS_ATTR_RO(ap_max_domain_id);
5bc334bf 1150
7e0bdbe5
HF
1151static ssize_t apmask_show(struct bus_type *bus, char *buf)
1152{
1153 int rc;
1154
1155 if (mutex_lock_interruptible(&ap_perms_mutex))
1156 return -ERESTARTSYS;
1157 rc = snprintf(buf, PAGE_SIZE,
1158 "0x%016lx%016lx%016lx%016lx\n",
1159 ap_perms.apm[0], ap_perms.apm[1],
1160 ap_perms.apm[2], ap_perms.apm[3]);
1161 mutex_unlock(&ap_perms_mutex);
1162
1163 return rc;
1164}
1165
1166static ssize_t apmask_store(struct bus_type *bus, const char *buf,
1167 size_t count)
1168{
3d8f60d3 1169 int rc;
7e0bdbe5 1170
00fab235 1171 rc = ap_parse_mask_str(buf, ap_perms.apm, AP_DEVICES, &ap_perms_mutex);
3d8f60d3
HF
1172 if (rc)
1173 return rc;
7e0bdbe5
HF
1174
1175 ap_bus_revise_bindings();
1176
1177 return count;
1178}
1179
1180static BUS_ATTR_RW(apmask);
1181
1182static ssize_t aqmask_show(struct bus_type *bus, char *buf)
1183{
1184 int rc;
1185
1186 if (mutex_lock_interruptible(&ap_perms_mutex))
1187 return -ERESTARTSYS;
1188 rc = snprintf(buf, PAGE_SIZE,
1189 "0x%016lx%016lx%016lx%016lx\n",
1190 ap_perms.aqm[0], ap_perms.aqm[1],
1191 ap_perms.aqm[2], ap_perms.aqm[3]);
1192 mutex_unlock(&ap_perms_mutex);
1193
1194 return rc;
1195}
1196
1197static ssize_t aqmask_store(struct bus_type *bus, const char *buf,
1198 size_t count)
1199{
3d8f60d3 1200 int rc;
7e0bdbe5 1201
00fab235 1202 rc = ap_parse_mask_str(buf, ap_perms.aqm, AP_DOMAINS, &ap_perms_mutex);
3d8f60d3
HF
1203 if (rc)
1204 return rc;
7e0bdbe5
HF
1205
1206 ap_bus_revise_bindings();
1207
1208 return count;
1209}
1210
1211static BUS_ATTR_RW(aqmask);
1212
1534c382
MS
1213static struct bus_attribute *const ap_bus_attrs[] = {
1214 &bus_attr_ap_domain,
91f3e3ea 1215 &bus_attr_ap_control_domain_mask,
e28d2af4 1216 &bus_attr_ap_usage_domain_mask,
aa55bf5f 1217 &bus_attr_ap_adapter_mask,
1534c382
MS
1218 &bus_attr_config_time,
1219 &bus_attr_poll_thread,
cb17a636 1220 &bus_attr_ap_interrupts,
fe137230 1221 &bus_attr_poll_timeout,
5bc334bf 1222 &bus_attr_ap_max_domain_id,
7e0bdbe5
HF
1223 &bus_attr_apmask,
1224 &bus_attr_aqmask,
fe137230 1225 NULL,
1534c382
MS
1226};
1227
1228/**
1c472d46
HP
1229 * ap_select_domain(): Select an AP domain if possible and we haven't
1230 * already done so before.
1534c382 1231 */
1c472d46 1232static void ap_select_domain(void)
1534c382 1233{
6acbe21f
MS
1234 int count, max_count, best_domain;
1235 struct ap_queue_status status;
1236 int i, j;
1534c382 1237
1749a81d 1238 /*
1534c382
MS
1239 * We want to use a single domain. Either the one specified with
1240 * the "domain=" parameter or the domain with the maximum number
1241 * of devices.
1242 */
fc1d3f02
IT
1243 spin_lock_bh(&ap_domain_lock);
1244 if (ap_domain_index >= 0) {
1534c382 1245 /* Domain has already been selected. */
fc1d3f02 1246 spin_unlock_bh(&ap_domain_lock);
1c472d46 1247 return;
fc1d3f02 1248 }
1534c382
MS
1249 best_domain = -1;
1250 max_count = 0;
1251 for (i = 0; i < AP_DOMAINS; i++) {
7e0bdbe5
HF
1252 if (!ap_test_config_domain(i) ||
1253 !test_bit_inv(i, ap_perms.aqm))
75014550 1254 continue;
1534c382
MS
1255 count = 0;
1256 for (j = 0; j < AP_DEVICES; j++) {
75014550
HD
1257 if (!ap_test_config_card_id(j))
1258 continue;
e7fc5146
TK
1259 status = ap_test_queue(AP_MKQID(j, i),
1260 ap_apft_available(),
1261 NULL);
6acbe21f 1262 if (status.response_code != AP_RESPONSE_NORMAL)
1534c382
MS
1263 continue;
1264 count++;
1265 }
1266 if (count > max_count) {
1267 max_count = count;
1268 best_domain = i;
1269 }
1270 }
ac2b96f3 1271 if (best_domain >= 0) {
1534c382 1272 ap_domain_index = best_domain;
ac994e80 1273 AP_DBF(DBF_DEBUG, "new ap_domain_index=%d\n", ap_domain_index);
1534c382 1274 }
fc1d3f02 1275 spin_unlock_bh(&ap_domain_lock);
1534c382
MS
1276}
1277
9a564108
HF
1278/*
1279 * This function checks the type and returns either 0 for not
1280 * supported or the highest compatible type value (which may
1281 * include the input type value).
1282 */
1283static int ap_get_compatible_type(ap_qid_t qid, int rawtype, unsigned int func)
1284{
1285 int comp_type = 0;
1286
1287 /* < CEX2A is not supported */
1288 if (rawtype < AP_DEVICE_TYPE_CEX2A)
1289 return 0;
1290 /* up to CEX6 known and fully supported */
1291 if (rawtype <= AP_DEVICE_TYPE_CEX6)
1292 return rawtype;
1293 /*
1294 * unknown new type > CEX6, check for compatibility
1295 * to the highest known and supported type which is
1296 * currently CEX6 with the help of the QACT function.
1297 */
1298 if (ap_qact_available()) {
1299 struct ap_queue_status status;
56c5c683 1300 union ap_qact_ap_info apinfo = {0};
9a564108
HF
1301
1302 apinfo.mode = (func >> 26) & 0x07;
1303 apinfo.cat = AP_DEVICE_TYPE_CEX6;
1304 status = ap_qact(qid, 0, &apinfo);
1305 if (status.response_code == AP_RESPONSE_NORMAL
1306 && apinfo.cat >= AP_DEVICE_TYPE_CEX2A
1307 && apinfo.cat <= AP_DEVICE_TYPE_CEX6)
1308 comp_type = apinfo.cat;
1309 }
1310 if (!comp_type)
1311 AP_DBF(DBF_WARN, "queue=%02x.%04x unable to map type %d\n",
1312 AP_QID_CARD(qid), AP_QID_QUEUE(qid), rawtype);
1313 else if (comp_type != rawtype)
1314 AP_DBF(DBF_INFO, "queue=%02x.%04x map type %d to %d\n",
1315 AP_QID_CARD(qid), AP_QID_QUEUE(qid), rawtype, comp_type);
1316 return comp_type;
1317}
1318
e28d2af4
IT
1319/*
1320 * helper function to be used with bus_find_dev
1321 * matches for the card device with the given id
1534c382 1322 */
e28d2af4 1323static int __match_card_device_with_id(struct device *dev, void *data)
1534c382 1324{
e28d2af4 1325 return is_card_dev(dev) && to_ap_card(dev)->id == (int)(long) data;
1534c382
MS
1326}
1327
e28d2af4
IT
1328/* helper function to be used with bus_find_dev
1329 * matches for the queue device with a given qid
1330 */
1331static int __match_queue_device_with_qid(struct device *dev, void *data)
1332{
1333 return is_queue_dev(dev) && to_ap_queue(dev)->qid == (int)(long) data;
1334}
1335
1336/**
1337 * ap_scan_bus(): Scan the AP bus for new devices
1338 * Runs periodically, workqueue timer (ap_config_time)
1339 */
4927b3f7 1340static void ap_scan_bus(struct work_struct *unused)
1534c382 1341{
e28d2af4
IT
1342 struct ap_queue *aq;
1343 struct ap_card *ac;
1534c382
MS
1344 struct device *dev;
1345 ap_qid_t qid;
9a564108
HF
1346 int comp_type, depth = 0, type = 0;
1347 unsigned int func = 0;
ac994e80 1348 int rc, id, dom, borked, domains, defdomdevs = 0;
1534c382 1349
ac2b96f3 1350 AP_DBF(DBF_DEBUG, "%s running\n", __func__);
cccd85bf 1351
050349b5 1352 ap_query_configuration(ap_configuration);
1c472d46 1353 ap_select_domain();
889875a1 1354
e28d2af4
IT
1355 for (id = 0; id < AP_DEVICES; id++) {
1356 /* check if device is registered */
1534c382 1357 dev = bus_find_device(&ap_bus_type, NULL,
e28d2af4
IT
1358 (void *)(long) id,
1359 __match_card_device_with_id);
1360 ac = dev ? to_ap_card(dev) : NULL;
1361 if (!ap_test_config_card_id(id)) {
1362 if (dev) {
1363 /* Card device has been removed from
1364 * configuration, remove the belonging
1365 * queue devices.
1366 */
1367 bus_for_each_dev(&ap_bus_type, NULL,
1368 (void *)(long) id,
1369 __ap_queue_devices_with_id_unregister);
1370 /* now remove the card device */
3f3007af 1371 device_unregister(dev);
e28d2af4
IT
1372 put_device(dev);
1373 }
1534c382
MS
1374 continue;
1375 }
e28d2af4
IT
1376 /* According to the configuration there should be a card
1377 * device, so check if there is at least one valid queue
1378 * and maybe create queue devices and the card device.
1379 */
1380 domains = 0;
1381 for (dom = 0; dom < AP_DOMAINS; dom++) {
1382 qid = AP_MKQID(id, dom);
1383 dev = bus_find_device(&ap_bus_type, NULL,
1384 (void *)(long) qid,
1385 __match_queue_device_with_qid);
1386 aq = dev ? to_ap_queue(dev) : NULL;
1387 if (!ap_test_config_domain(dom)) {
1388 if (dev) {
1389 /* Queue device exists but has been
1390 * removed from configuration.
1391 */
1392 device_unregister(dev);
1393 put_device(dev);
1394 }
1395 continue;
1396 }
9a564108 1397 rc = ap_query_queue(qid, &depth, &type, &func);
e28d2af4
IT
1398 if (dev) {
1399 spin_lock_bh(&aq->lock);
1400 if (rc == -ENODEV ||
1401 /* adapter reconfiguration */
9a564108 1402 (ac && ac->functions != func))
e28d2af4
IT
1403 aq->state = AP_STATE_BORKED;
1404 borked = aq->state == AP_STATE_BORKED;
1405 spin_unlock_bh(&aq->lock);
1406 if (borked) /* Remove broken device */
1407 device_unregister(dev);
1408 put_device(dev);
1409 if (!borked) {
1410 domains++;
ac994e80
HF
1411 if (dom == ap_domain_index)
1412 defdomdevs++;
e28d2af4
IT
1413 continue;
1414 }
1415 }
1416 if (rc)
1417 continue;
9a564108
HF
1418 /* a new queue device is needed, check out comp type */
1419 comp_type = ap_get_compatible_type(qid, type, func);
1420 if (!comp_type)
1421 continue;
1422 /* maybe a card device needs to be created first */
e28d2af4 1423 if (!ac) {
9a564108
HF
1424 ac = ap_card_create(id, depth, type,
1425 comp_type, func);
e28d2af4
IT
1426 if (!ac)
1427 continue;
1428 ac->ap_dev.device.bus = &ap_bus_type;
1429 ac->ap_dev.device.parent = ap_root_device;
1430 dev_set_name(&ac->ap_dev.device,
1431 "card%02x", id);
1432 /* Register card with AP bus */
1433 rc = device_register(&ac->ap_dev.device);
1434 if (rc) {
1435 put_device(&ac->ap_dev.device);
1436 ac = NULL;
1437 break;
1438 }
1439 /* get it and thus adjust reference counter */
1440 get_device(&ac->ap_dev.device);
e28d2af4
IT
1441 }
1442 /* now create the new queue device */
9a564108 1443 aq = ap_queue_create(qid, comp_type);
e28d2af4
IT
1444 if (!aq)
1445 continue;
1446 aq->card = ac;
1447 aq->ap_dev.device.bus = &ap_bus_type;
1448 aq->ap_dev.device.parent = &ac->ap_dev.device;
1449 dev_set_name(&aq->ap_dev.device,
1450 "%02x.%04x", id, dom);
e28d2af4
IT
1451 /* Register device */
1452 rc = device_register(&aq->ap_dev.device);
1453 if (rc) {
e28d2af4
IT
1454 put_device(&aq->ap_dev.device);
1455 continue;
1456 }
1457 domains++;
ac994e80
HF
1458 if (dom == ap_domain_index)
1459 defdomdevs++;
e28d2af4
IT
1460 } /* end domain loop */
1461 if (ac) {
1462 /* remove card dev if there are no queue devices */
1463 if (!domains)
1464 device_unregister(&ac->ap_dev.device);
1465 put_device(&ac->ap_dev.device);
3f3007af 1466 }
e28d2af4 1467 } /* end device loop */
ac994e80 1468
1c472d46 1469 if (ap_domain_index >= 0 && defdomdevs < 1)
ac2b96f3
HF
1470 AP_DBF(DBF_INFO,
1471 "no queue device with default domain %d available\n",
ac994e80
HF
1472 ap_domain_index);
1473
fcd0d1f6 1474 mod_timer(&ap_config_timer, jiffies + ap_config_time * HZ);
1534c382
MS
1475}
1476
cefbeb5d 1477static void ap_config_timeout(struct timer_list *unused)
1534c382 1478{
83e9d5d2
MS
1479 if (ap_suspend_flag)
1480 return;
8139b89d 1481 queue_work(system_long_wq, &ap_scan_work);
1534c382 1482}
13e742ba 1483
efda7ade 1484static int __init ap_debug_init(void)
cccd85bf 1485{
cccd85bf
HF
1486 ap_dbf_info = debug_register("ap", 1, 1,
1487 DBF_MAX_SPRINTF_ARGS * sizeof(long));
1488 debug_register_view(ap_dbf_info, &debug_sprintf_view);
1489 debug_set_level(ap_dbf_info, DBF_ERR);
1490
1491 return 0;
1492}
1493
7e0bdbe5
HF
1494static void __init ap_perms_init(void)
1495{
3d8f60d3 1496 /* all resources useable if no kernel parameter string given */
00fab235 1497 memset(&ap_perms.ioctlm, 0xFF, sizeof(ap_perms.ioctlm));
7e0bdbe5
HF
1498 memset(&ap_perms.apm, 0xFF, sizeof(ap_perms.apm));
1499 memset(&ap_perms.aqm, 0xFF, sizeof(ap_perms.aqm));
1500
3d8f60d3 1501 /* apm kernel parameter string */
7e0bdbe5 1502 if (apm_str) {
3d8f60d3 1503 memset(&ap_perms.apm, 0, sizeof(ap_perms.apm));
00fab235
HF
1504 ap_parse_mask_str(apm_str, ap_perms.apm, AP_DEVICES,
1505 &ap_perms_mutex);
7e0bdbe5 1506 }
7e0bdbe5 1507
3d8f60d3
HF
1508 /* aqm kernel parameter string */
1509 if (aqm_str) {
1510 memset(&ap_perms.aqm, 0, sizeof(ap_perms.aqm));
00fab235
HF
1511 ap_parse_mask_str(aqm_str, ap_perms.aqm, AP_DOMAINS,
1512 &ap_perms_mutex);
7e0bdbe5
HF
1513 }
1514}
1515
1534c382 1516/**
1749a81d
FB
1517 * ap_module_init(): The module initialization code.
1518 *
1519 * Initializes the module.
1534c382 1520 */
efda7ade 1521static int __init ap_module_init(void)
1534c382 1522{
889875a1 1523 int max_domain_id;
1534c382
MS
1524 int rc, i;
1525
cccd85bf
HF
1526 rc = ap_debug_init();
1527 if (rc)
1528 return rc;
1529
2395103b 1530 if (!ap_instructions_available()) {
889875a1
MS
1531 pr_warn("The hardware system does not support AP instructions\n");
1532 return -ENODEV;
1533 }
1534
00fab235 1535 /* set up the AP permissions (ioctls, ap and aq masks) */
7e0bdbe5
HF
1536 ap_perms_init();
1537
889875a1
MS
1538 /* Get AP configuration data if available */
1539 ap_init_configuration();
1540
1541 if (ap_configuration)
ac994e80
HF
1542 max_domain_id =
1543 ap_max_domain_id ? ap_max_domain_id : AP_DOMAINS - 1;
889875a1
MS
1544 else
1545 max_domain_id = 15;
7e0bdbe5
HF
1546 if (ap_domain_index < -1 || ap_domain_index > max_domain_id ||
1547 (ap_domain_index >= 0 &&
1548 !test_bit_inv(ap_domain_index, ap_perms.aqm))) {
889875a1
MS
1549 pr_warn("%d is not a valid cryptographic domain\n",
1550 ap_domain_index);
ac994e80 1551 ap_domain_index = -1;
1534c382 1552 }
5314af69
FB
1553 /* In resume callback we need to know if the user had set the domain.
1554 * If so, we can not just reset it.
1555 */
1556 if (ap_domain_index >= 0)
1557 user_set_domain = 1;
1558
cb17a636 1559 if (ap_interrupts_available()) {
f4eae94f
MS
1560 rc = register_adapter_interrupt(&ap_airq);
1561 ap_airq_flag = (rc == 0);
cb17a636
FB
1562 }
1563
1534c382
MS
1564 /* Create /sys/bus/ap. */
1565 rc = bus_register(&ap_bus_type);
1566 if (rc)
1567 goto out;
1568 for (i = 0; ap_bus_attrs[i]; i++) {
1569 rc = bus_create_file(&ap_bus_type, ap_bus_attrs[i]);
1570 if (rc)
1571 goto out_bus;
1572 }
1573
1574 /* Create /sys/devices/ap. */
035da16f 1575 ap_root_device = root_device_register("ap");
9c705206 1576 rc = PTR_ERR_OR_ZERO(ap_root_device);
1534c382
MS
1577 if (rc)
1578 goto out_bus;
1579
1749a81d 1580 /* Setup the AP bus rescan timer. */
cefbeb5d 1581 timer_setup(&ap_config_timer, ap_config_timeout, 0);
1534c382 1582
3f3007af
MS
1583 /*
1584 * Setup the high resultion poll timer.
fe137230
FB
1585 * If we are running under z/VM adjust polling to z/VM polling rate.
1586 */
1587 if (MACHINE_IS_VM)
1588 poll_timeout = 1500000;
93521314 1589 spin_lock_init(&ap_poll_timer_lock);
fe137230
FB
1590 hrtimer_init(&ap_poll_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
1591 ap_poll_timer.function = ap_poll_timeout;
1592
1534c382
MS
1593 /* Start the low priority AP bus poll thread. */
1594 if (ap_thread_flag) {
1595 rc = ap_poll_thread_start();
1596 if (rc)
1597 goto out_work;
1598 }
1599
83e9d5d2
MS
1600 rc = register_pm_notifier(&ap_power_notifier);
1601 if (rc)
1602 goto out_pm;
1603
8139b89d 1604 queue_work(system_long_wq, &ap_scan_work);
e387753c 1605 initialised = true;
3f3007af 1606
1534c382
MS
1607 return 0;
1608
83e9d5d2
MS
1609out_pm:
1610 ap_poll_thread_stop();
1534c382 1611out_work:
fe137230 1612 hrtimer_cancel(&ap_poll_timer);
035da16f 1613 root_device_unregister(ap_root_device);
1534c382
MS
1614out_bus:
1615 while (i--)
1616 bus_remove_file(&ap_bus_type, ap_bus_attrs[i]);
1617 bus_unregister(&ap_bus_type);
1618out:
f4eae94f
MS
1619 if (ap_using_interrupts())
1620 unregister_adapter_interrupt(&ap_airq);
889875a1 1621 kfree(ap_configuration);
1534c382
MS
1622 return rc;
1623}
50a0d46c 1624device_initcall(ap_module_init);
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