1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * core function to access sclp interface
4 *
5 * Copyright IBM Corp. 1999, 2009
6 *
7 * Author(s): Martin Peschke <mpeschke@de.ibm.com>
8 * Martin Schwidefsky <schwidefsky@de.ibm.com>
9 */
10
11 #include <linux/kernel_stat.h>
12 #include <linux/module.h>
13 #include <linux/err.h>
14 #include <linux/panic_notifier.h>
15 #include <linux/spinlock.h>
16 #include <linux/interrupt.h>
17 #include <linux/timer.h>
18 #include <linux/reboot.h>
19 #include <linux/jiffies.h>
20 #include <linux/init.h>
21 #include <linux/platform_device.h>
22 #include <asm/types.h>
23 #include <asm/irq.h>
24 #include <asm/debug.h>
25
26 #include "sclp.h"
27
28 #define SCLP_HEADER "sclp: "
29
30 struct sclp_trace_entry {
31 char id[4] __nonstring;
32 u32 a;
33 u64 b;
34 };
35
36 #define SCLP_TRACE_ENTRY_SIZE sizeof(struct sclp_trace_entry)
37 #define SCLP_TRACE_MAX_SIZE 128
38 #define SCLP_TRACE_EVENT_MAX_SIZE 64
39
40 /* Debug trace area intended for all entries in abbreviated form. */
41 DEFINE_STATIC_DEBUG_INFO(sclp_debug, "sclp", 8, 1, SCLP_TRACE_ENTRY_SIZE,
42 &debug_hex_ascii_view);
43
44 /* Error trace area intended for full entries relating to failed requests. */
45 DEFINE_STATIC_DEBUG_INFO(sclp_debug_err, "sclp_err", 4, 1,
46 SCLP_TRACE_ENTRY_SIZE, &debug_hex_ascii_view);
47
48 /* Lock to protect internal data consistency. */
49 static DEFINE_SPINLOCK(sclp_lock);
50
51 /* Mask of events that we can send to the sclp interface. */
52 static sccb_mask_t sclp_receive_mask;
53
54 /* Mask of events that we can receive from the sclp interface. */
55 static sccb_mask_t sclp_send_mask;
56
57 /* List of registered event listeners and senders. */
58 static LIST_HEAD(sclp_reg_list);
59
60 /* List of queued requests. */
61 static LIST_HEAD(sclp_req_queue);
62
63 /* Data for read and init requests. */
64 static struct sclp_req sclp_read_req;
65 static struct sclp_req sclp_init_req;
66 static void *sclp_read_sccb;
67 static struct init_sccb *sclp_init_sccb;
68
69 /* Number of console pages to allocate, used by sclp_con.c and sclp_vt220.c */
70 int sclp_console_pages = SCLP_CONSOLE_PAGES;
71 /* Flag to indicate if buffer pages are dropped on buffer full condition */
72 bool sclp_console_drop = true;
73 /* Number of times the console dropped buffer pages */
74 unsigned long sclp_console_full;
75
76 /* The currently active SCLP command word. */
77 static sclp_cmdw_t active_cmd;
78
sclp_trace(int prio,char * id,u32 a,u64 b,bool err)79 static inline void sclp_trace(int prio, char *id, u32 a, u64 b, bool err)
80 {
81 struct sclp_trace_entry e;
82
83 memset(&e, 0, sizeof(e));
84 strtomem(e.id, id);
85 e.a = a;
86 e.b = b;
87 debug_event(&sclp_debug, prio, &e, sizeof(e));
88 if (err)
89 debug_event(&sclp_debug_err, 0, &e, sizeof(e));
90 }
91
no_zeroes_len(void * data,int len)92 static inline int no_zeroes_len(void *data, int len)
93 {
94 char *d = data;
95
96 /* Minimize trace area usage by not tracing trailing zeroes. */
97 while (len > SCLP_TRACE_ENTRY_SIZE && d[len - 1] == 0)
98 len--;
99
100 return len;
101 }
102
sclp_trace_bin(int prio,void * d,int len,int errlen)103 static inline void sclp_trace_bin(int prio, void *d, int len, int errlen)
104 {
105 debug_event(&sclp_debug, prio, d, no_zeroes_len(d, len));
106 if (errlen)
107 debug_event(&sclp_debug_err, 0, d, no_zeroes_len(d, errlen));
108 }
109
abbrev_len(sclp_cmdw_t cmd,struct sccb_header * sccb)110 static inline int abbrev_len(sclp_cmdw_t cmd, struct sccb_header *sccb)
111 {
112 struct evbuf_header *evbuf = (struct evbuf_header *)(sccb + 1);
113 int len = sccb->length, limit = SCLP_TRACE_MAX_SIZE;
114
115 /* Full SCCB tracing if debug level is set to max. */
116 if (sclp_debug.level == DEBUG_MAX_LEVEL)
117 return len;
118
119 /* Minimal tracing for console writes. */
120 if (cmd == SCLP_CMDW_WRITE_EVENT_DATA &&
121 (evbuf->type == EVTYP_MSG || evbuf->type == EVTYP_VT220MSG))
122 limit = SCLP_TRACE_ENTRY_SIZE;
123
124 return min(len, limit);
125 }
126
sclp_trace_sccb(int prio,char * id,u32 a,u64 b,sclp_cmdw_t cmd,struct sccb_header * sccb,bool err)127 static inline void sclp_trace_sccb(int prio, char *id, u32 a, u64 b,
128 sclp_cmdw_t cmd, struct sccb_header *sccb,
129 bool err)
130 {
131 sclp_trace(prio, id, a, b, err);
132 if (sccb) {
133 sclp_trace_bin(prio + 1, sccb, abbrev_len(cmd, sccb),
134 err ? sccb->length : 0);
135 }
136 }
137
sclp_trace_evbuf(int prio,char * id,u32 a,u64 b,struct evbuf_header * evbuf,bool err)138 static inline void sclp_trace_evbuf(int prio, char *id, u32 a, u64 b,
139 struct evbuf_header *evbuf, bool err)
140 {
141 sclp_trace(prio, id, a, b, err);
142 sclp_trace_bin(prio + 1, evbuf,
143 min((int)evbuf->length, (int)SCLP_TRACE_EVENT_MAX_SIZE),
144 err ? evbuf->length : 0);
145 }
146
sclp_trace_req(int prio,char * id,struct sclp_req * req,bool err)147 static inline void sclp_trace_req(int prio, char *id, struct sclp_req *req,
148 bool err)
149 {
150 struct sccb_header *sccb = req->sccb;
151 union {
152 struct {
153 u16 status;
154 u16 response;
155 u16 timeout;
156 u16 start_count;
157 };
158 u64 b;
159 } summary;
160
161 summary.status = req->status;
162 summary.response = sccb ? sccb->response_code : 0;
163 summary.timeout = (u16)req->queue_timeout;
164 summary.start_count = (u16)req->start_count;
165
166 sclp_trace(prio, id, __pa(sccb), summary.b, err);
167 }
168
sclp_trace_register(int prio,char * id,u32 a,u64 b,struct sclp_register * reg)169 static inline void sclp_trace_register(int prio, char *id, u32 a, u64 b,
170 struct sclp_register *reg)
171 {
172 struct {
173 u64 receive;
174 u64 send;
175 } d;
176
177 d.receive = reg->receive_mask;
178 d.send = reg->send_mask;
179
180 sclp_trace(prio, id, a, b, false);
181 sclp_trace_bin(prio, &d, sizeof(d), 0);
182 }
183
sclp_setup_console_pages(char * str)184 static int __init sclp_setup_console_pages(char *str)
185 {
186 int pages, rc;
187
188 rc = kstrtoint(str, 0, &pages);
189 if (!rc && pages >= SCLP_CONSOLE_PAGES)
190 sclp_console_pages = pages;
191 return 1;
192 }
193
194 __setup("sclp_con_pages=", sclp_setup_console_pages);
195
sclp_setup_console_drop(char * str)196 static int __init sclp_setup_console_drop(char *str)
197 {
198 return kstrtobool(str, &sclp_console_drop) == 0;
199 }
200
201 __setup("sclp_con_drop=", sclp_setup_console_drop);
202
203 /* Timer for request retries. */
204 static struct timer_list sclp_request_timer;
205
206 /* Timer for queued requests. */
207 static struct timer_list sclp_queue_timer;
208
209 /* Internal state: is a request active at the sclp? */
210 static volatile enum sclp_running_state_t {
211 sclp_running_state_idle,
212 sclp_running_state_running,
213 sclp_running_state_reset_pending
214 } sclp_running_state = sclp_running_state_idle;
215
216 /* Internal state: is a read request pending? */
217 static volatile enum sclp_reading_state_t {
218 sclp_reading_state_idle,
219 sclp_reading_state_reading
220 } sclp_reading_state = sclp_reading_state_idle;
221
222 /* Internal state: is the driver currently serving requests? */
223 static volatile enum sclp_activation_state_t {
224 sclp_activation_state_active,
225 sclp_activation_state_deactivating,
226 sclp_activation_state_inactive,
227 sclp_activation_state_activating
228 } sclp_activation_state = sclp_activation_state_active;
229
230 /* Internal state: is an init mask request pending? */
231 static volatile enum sclp_mask_state_t {
232 sclp_mask_state_idle,
233 sclp_mask_state_initializing
234 } sclp_mask_state = sclp_mask_state_idle;
235
236 /* Maximum retry counts */
237 #define SCLP_INIT_RETRY 3
238 #define SCLP_MASK_RETRY 3
239
240 /* Timeout intervals in seconds.*/
241 #define SCLP_BUSY_INTERVAL 10
242 #define SCLP_RETRY_INTERVAL 30
243
244 static void sclp_request_timeout(bool force_restart);
245 static void sclp_process_queue(void);
246 static void __sclp_make_read_req(void);
247 static int sclp_init_mask(int calculate);
248
249 static void
__sclp_queue_read_req(void)250 __sclp_queue_read_req(void)
251 {
252 if (sclp_reading_state == sclp_reading_state_idle) {
253 sclp_reading_state = sclp_reading_state_reading;
254 __sclp_make_read_req();
255 /* Add request to head of queue */
256 list_add(&sclp_read_req.list, &sclp_req_queue);
257 }
258 }
259
260 /* Set up request retry timer. Called while sclp_lock is locked. */
261 static inline void
__sclp_set_request_timer(unsigned long time,void (* cb)(struct timer_list *))262 __sclp_set_request_timer(unsigned long time, void (*cb)(struct timer_list *))
263 {
264 del_timer(&sclp_request_timer);
265 sclp_request_timer.function = cb;
266 sclp_request_timer.expires = jiffies + time;
267 add_timer(&sclp_request_timer);
268 }
269
sclp_request_timeout_restart(struct timer_list * unused)270 static void sclp_request_timeout_restart(struct timer_list *unused)
271 {
272 sclp_request_timeout(true);
273 }
274
sclp_request_timeout_normal(struct timer_list * unused)275 static void sclp_request_timeout_normal(struct timer_list *unused)
276 {
277 sclp_request_timeout(false);
278 }
279
280 /* Request timeout handler. Restart the request queue. If force_restart,
281 * force restart of running request. */
sclp_request_timeout(bool force_restart)282 static void sclp_request_timeout(bool force_restart)
283 {
284 unsigned long flags;
285
286 /* TMO: A timeout occurred (a=force_restart) */
287 sclp_trace(2, "TMO", force_restart, 0, true);
288
289 spin_lock_irqsave(&sclp_lock, flags);
290 if (force_restart) {
291 if (sclp_running_state == sclp_running_state_running) {
292 /* Break running state and queue NOP read event request
293 * to get a defined interface state. */
294 __sclp_queue_read_req();
295 sclp_running_state = sclp_running_state_idle;
296 }
297 } else {
298 __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
299 sclp_request_timeout_normal);
300 }
301 spin_unlock_irqrestore(&sclp_lock, flags);
302 sclp_process_queue();
303 }
304
305 /*
306 * Returns the expire value in jiffies of the next pending request timeout,
307 * if any. Needs to be called with sclp_lock.
308 */
__sclp_req_queue_find_next_timeout(void)309 static unsigned long __sclp_req_queue_find_next_timeout(void)
310 {
311 unsigned long expires_next = 0;
312 struct sclp_req *req;
313
314 list_for_each_entry(req, &sclp_req_queue, list) {
315 if (!req->queue_expires)
316 continue;
317 if (!expires_next ||
318 (time_before(req->queue_expires, expires_next)))
319 expires_next = req->queue_expires;
320 }
321 return expires_next;
322 }
323
324 /*
325 * Returns expired request, if any, and removes it from the list.
326 */
__sclp_req_queue_remove_expired_req(void)327 static struct sclp_req *__sclp_req_queue_remove_expired_req(void)
328 {
329 unsigned long flags, now;
330 struct sclp_req *req;
331
332 spin_lock_irqsave(&sclp_lock, flags);
333 now = jiffies;
334 /* Don't need list_for_each_safe because we break out after list_del */
335 list_for_each_entry(req, &sclp_req_queue, list) {
336 if (!req->queue_expires)
337 continue;
338 if (time_before_eq(req->queue_expires, now)) {
339 if (req->status == SCLP_REQ_QUEUED) {
340 req->status = SCLP_REQ_QUEUED_TIMEOUT;
341 list_del(&req->list);
342 goto out;
343 }
344 }
345 }
346 req = NULL;
347 out:
348 spin_unlock_irqrestore(&sclp_lock, flags);
349 return req;
350 }
351
352 /*
353 * Timeout handler for queued requests. Removes request from list and
354 * invokes callback. This timer can be set per request in situations where
355 * waiting too long would be harmful to the system, e.g. during SE reboot.
356 */
sclp_req_queue_timeout(struct timer_list * unused)357 static void sclp_req_queue_timeout(struct timer_list *unused)
358 {
359 unsigned long flags, expires_next;
360 struct sclp_req *req;
361
362 do {
363 req = __sclp_req_queue_remove_expired_req();
364
365 if (req) {
366 /* RQTM: Request timed out (a=sccb, b=summary) */
367 sclp_trace_req(2, "RQTM", req, true);
368 }
369
370 if (req && req->callback)
371 req->callback(req, req->callback_data);
372 } while (req);
373
374 spin_lock_irqsave(&sclp_lock, flags);
375 expires_next = __sclp_req_queue_find_next_timeout();
376 if (expires_next)
377 mod_timer(&sclp_queue_timer, expires_next);
378 spin_unlock_irqrestore(&sclp_lock, flags);
379 }
380
sclp_service_call_trace(sclp_cmdw_t command,void * sccb)381 static int sclp_service_call_trace(sclp_cmdw_t command, void *sccb)
382 {
383 static u64 srvc_count;
384 int rc;
385
386 /* SRV1: Service call about to be issued (a=command, b=sccb address) */
387 sclp_trace_sccb(0, "SRV1", command, (u64)sccb, command, sccb, false);
388
389 rc = sclp_service_call(command, sccb);
390
391 /* SRV2: Service call was issued (a=rc, b=SRVC sequence number) */
392 sclp_trace(0, "SRV2", -rc, ++srvc_count, rc != 0);
393
394 if (rc == 0)
395 active_cmd = command;
396
397 return rc;
398 }
399
400 /* Try to start a request. Return zero if the request was successfully
401 * started or if it will be started at a later time. Return non-zero otherwise.
402 * Called while sclp_lock is locked. */
403 static int
__sclp_start_request(struct sclp_req * req)404 __sclp_start_request(struct sclp_req *req)
405 {
406 int rc;
407
408 if (sclp_running_state != sclp_running_state_idle)
409 return 0;
410 del_timer(&sclp_request_timer);
411 rc = sclp_service_call_trace(req->command, req->sccb);
412 req->start_count++;
413
414 if (rc == 0) {
415 /* Successfully started request */
416 req->status = SCLP_REQ_RUNNING;
417 sclp_running_state = sclp_running_state_running;
418 __sclp_set_request_timer(SCLP_RETRY_INTERVAL * HZ,
419 sclp_request_timeout_restart);
420 return 0;
421 } else if (rc == -EBUSY) {
422 /* Try again later */
423 __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
424 sclp_request_timeout_normal);
425 return 0;
426 }
427 /* Request failed */
428 req->status = SCLP_REQ_FAILED;
429 return rc;
430 }
431
432 /* Try to start queued requests. */
433 static void
sclp_process_queue(void)434 sclp_process_queue(void)
435 {
436 struct sclp_req *req;
437 int rc;
438 unsigned long flags;
439
440 spin_lock_irqsave(&sclp_lock, flags);
441 if (sclp_running_state != sclp_running_state_idle) {
442 spin_unlock_irqrestore(&sclp_lock, flags);
443 return;
444 }
445 del_timer(&sclp_request_timer);
446 while (!list_empty(&sclp_req_queue)) {
447 req = list_entry(sclp_req_queue.next, struct sclp_req, list);
448 rc = __sclp_start_request(req);
449 if (rc == 0)
450 break;
451 /* Request failed */
452 if (req->start_count > 1) {
453 /* Cannot abort already submitted request - could still
454 * be active at the SCLP */
455 __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
456 sclp_request_timeout_normal);
457 break;
458 }
459 /* Post-processing for aborted request */
460 list_del(&req->list);
461
462 /* RQAB: Request aborted (a=sccb, b=summary) */
463 sclp_trace_req(2, "RQAB", req, true);
464
465 if (req->callback) {
466 spin_unlock_irqrestore(&sclp_lock, flags);
467 req->callback(req, req->callback_data);
468 spin_lock_irqsave(&sclp_lock, flags);
469 }
470 }
471 spin_unlock_irqrestore(&sclp_lock, flags);
472 }
473
__sclp_can_add_request(struct sclp_req * req)474 static int __sclp_can_add_request(struct sclp_req *req)
475 {
476 if (req == &sclp_init_req)
477 return 1;
478 if (sclp_init_state != sclp_init_state_initialized)
479 return 0;
480 if (sclp_activation_state != sclp_activation_state_active)
481 return 0;
482 return 1;
483 }
484
485 /* Queue a new request. Return zero on success, non-zero otherwise. */
486 int
sclp_add_request(struct sclp_req * req)487 sclp_add_request(struct sclp_req *req)
488 {
489 unsigned long flags;
490 int rc;
491
492 spin_lock_irqsave(&sclp_lock, flags);
493 if (!__sclp_can_add_request(req)) {
494 spin_unlock_irqrestore(&sclp_lock, flags);
495 return -EIO;
496 }
497
498 /* RQAD: Request was added (a=sccb, b=caller) */
499 sclp_trace(2, "RQAD", __pa(req->sccb), _RET_IP_, false);
500
501 req->status = SCLP_REQ_QUEUED;
502 req->start_count = 0;
503 list_add_tail(&req->list, &sclp_req_queue);
504 rc = 0;
505 if (req->queue_timeout) {
506 req->queue_expires = jiffies + req->queue_timeout * HZ;
507 if (!timer_pending(&sclp_queue_timer) ||
508 time_after(sclp_queue_timer.expires, req->queue_expires))
509 mod_timer(&sclp_queue_timer, req->queue_expires);
510 } else
511 req->queue_expires = 0;
512 /* Start if request is first in list */
513 if (sclp_running_state == sclp_running_state_idle &&
514 req->list.prev == &sclp_req_queue) {
515 rc = __sclp_start_request(req);
516 if (rc)
517 list_del(&req->list);
518 }
519 spin_unlock_irqrestore(&sclp_lock, flags);
520 return rc;
521 }
522
523 EXPORT_SYMBOL(sclp_add_request);
524
525 /* Dispatch events found in request buffer to registered listeners. Return 0
526 * if all events were dispatched, non-zero otherwise. */
527 static int
sclp_dispatch_evbufs(struct sccb_header * sccb)528 sclp_dispatch_evbufs(struct sccb_header *sccb)
529 {
530 unsigned long flags;
531 struct evbuf_header *evbuf;
532 struct list_head *l;
533 struct sclp_register *reg;
534 int offset;
535 int rc;
536
537 spin_lock_irqsave(&sclp_lock, flags);
538 rc = 0;
539 for (offset = sizeof(struct sccb_header); offset < sccb->length;
540 offset += evbuf->length) {
541 evbuf = (struct evbuf_header *) ((addr_t) sccb + offset);
542 /* Check for malformed hardware response */
543 if (evbuf->length == 0)
544 break;
545 /* Search for event handler */
546 reg = NULL;
547 list_for_each(l, &sclp_reg_list) {
548 reg = list_entry(l, struct sclp_register, list);
549 if (reg->receive_mask & SCLP_EVTYP_MASK(evbuf->type))
550 break;
551 else
552 reg = NULL;
553 }
554
555 /* EVNT: Event callback (b=receiver) */
556 sclp_trace_evbuf(2, "EVNT", 0, reg ? (u64)reg->receiver_fn : 0,
557 evbuf, !reg);
558
559 if (reg && reg->receiver_fn) {
560 spin_unlock_irqrestore(&sclp_lock, flags);
561 reg->receiver_fn(evbuf);
562 spin_lock_irqsave(&sclp_lock, flags);
563 } else if (reg == NULL)
564 rc = -EOPNOTSUPP;
565 }
566 spin_unlock_irqrestore(&sclp_lock, flags);
567 return rc;
568 }
569
570 /* Read event data request callback. */
571 static void
sclp_read_cb(struct sclp_req * req,void * data)572 sclp_read_cb(struct sclp_req *req, void *data)
573 {
574 unsigned long flags;
575 struct sccb_header *sccb;
576
577 sccb = (struct sccb_header *) req->sccb;
578 if (req->status == SCLP_REQ_DONE && (sccb->response_code == 0x20 ||
579 sccb->response_code == 0x220))
580 sclp_dispatch_evbufs(sccb);
581 spin_lock_irqsave(&sclp_lock, flags);
582 sclp_reading_state = sclp_reading_state_idle;
583 spin_unlock_irqrestore(&sclp_lock, flags);
584 }
585
586 /* Prepare read event data request. Called while sclp_lock is locked. */
__sclp_make_read_req(void)587 static void __sclp_make_read_req(void)
588 {
589 struct sccb_header *sccb;
590
591 sccb = (struct sccb_header *) sclp_read_sccb;
592 clear_page(sccb);
593 memset(&sclp_read_req, 0, sizeof(struct sclp_req));
594 sclp_read_req.command = SCLP_CMDW_READ_EVENT_DATA;
595 sclp_read_req.status = SCLP_REQ_QUEUED;
596 sclp_read_req.start_count = 0;
597 sclp_read_req.callback = sclp_read_cb;
598 sclp_read_req.sccb = sccb;
599 sccb->length = PAGE_SIZE;
600 sccb->function_code = 0;
601 sccb->control_mask[2] = 0x80;
602 }
603
604 /* Search request list for request with matching sccb. Return request if found,
605 * NULL otherwise. Called while sclp_lock is locked. */
606 static inline struct sclp_req *
__sclp_find_req(u32 sccb)607 __sclp_find_req(u32 sccb)
608 {
609 struct list_head *l;
610 struct sclp_req *req;
611
612 list_for_each(l, &sclp_req_queue) {
613 req = list_entry(l, struct sclp_req, list);
614 if (sccb == __pa(req->sccb))
615 return req;
616 }
617 return NULL;
618 }
619
ok_response(u32 sccb_int,sclp_cmdw_t cmd)620 static bool ok_response(u32 sccb_int, sclp_cmdw_t cmd)
621 {
622 struct sccb_header *sccb = (struct sccb_header *)__va(sccb_int);
623 struct evbuf_header *evbuf;
624 u16 response;
625
626 if (!sccb)
627 return true;
628
629 /* Check SCCB response. */
630 response = sccb->response_code & 0xff;
631 if (response != 0x10 && response != 0x20)
632 return false;
633
634 /* Check event-processed flag on outgoing events. */
635 if (cmd == SCLP_CMDW_WRITE_EVENT_DATA) {
636 evbuf = (struct evbuf_header *)(sccb + 1);
637 if (!(evbuf->flags & 0x80))
638 return false;
639 }
640
641 return true;
642 }
643
644 /* Handler for external interruption. Perform request post-processing.
645 * Prepare read event data request if necessary. Start processing of next
646 * request on queue. */
sclp_interrupt_handler(struct ext_code ext_code,unsigned int param32,unsigned long param64)647 static void sclp_interrupt_handler(struct ext_code ext_code,
648 unsigned int param32, unsigned long param64)
649 {
650 struct sclp_req *req;
651 u32 finished_sccb;
652 u32 evbuf_pending;
653
654 inc_irq_stat(IRQEXT_SCP);
655 spin_lock(&sclp_lock);
656 finished_sccb = param32 & 0xfffffff8;
657 evbuf_pending = param32 & 0x3;
658
659 /* INT: Interrupt received (a=intparm, b=cmd) */
660 sclp_trace_sccb(0, "INT", param32, active_cmd, active_cmd,
661 (struct sccb_header *)__va(finished_sccb),
662 !ok_response(finished_sccb, active_cmd));
663
664 if (finished_sccb) {
665 del_timer(&sclp_request_timer);
666 sclp_running_state = sclp_running_state_reset_pending;
667 req = __sclp_find_req(finished_sccb);
668 if (req) {
669 /* Request post-processing */
670 list_del(&req->list);
671 req->status = SCLP_REQ_DONE;
672
673 /* RQOK: Request success (a=sccb, b=summary) */
674 sclp_trace_req(2, "RQOK", req, false);
675
676 if (req->callback) {
677 spin_unlock(&sclp_lock);
678 req->callback(req, req->callback_data);
679 spin_lock(&sclp_lock);
680 }
681 } else {
682 /* UNEX: Unexpected SCCB completion (a=sccb address) */
683 sclp_trace(0, "UNEX", finished_sccb, 0, true);
684 }
685 sclp_running_state = sclp_running_state_idle;
686 active_cmd = 0;
687 }
688 if (evbuf_pending &&
689 sclp_activation_state == sclp_activation_state_active)
690 __sclp_queue_read_req();
691 spin_unlock(&sclp_lock);
692 sclp_process_queue();
693 }
694
695 /* Convert interval in jiffies to TOD ticks. */
696 static inline u64
sclp_tod_from_jiffies(unsigned long jiffies)697 sclp_tod_from_jiffies(unsigned long jiffies)
698 {
699 return (u64) (jiffies / HZ) << 32;
700 }
701
702 /* Wait until a currently running request finished. Note: while this function
703 * is running, no timers are served on the calling CPU. */
704 void
sclp_sync_wait(void)705 sclp_sync_wait(void)
706 {
707 unsigned long long old_tick;
708 struct ctlreg cr0, cr0_sync;
709 unsigned long flags;
710 static u64 sync_count;
711 u64 timeout;
712 int irq_context;
713
714 /* SYN1: Synchronous wait start (a=runstate, b=sync count) */
715 sclp_trace(4, "SYN1", sclp_running_state, ++sync_count, false);
716
717 /* We'll be disabling timer interrupts, so we need a custom timeout
718 * mechanism */
719 timeout = 0;
720 if (timer_pending(&sclp_request_timer)) {
721 /* Get timeout TOD value */
722 timeout = get_tod_clock_fast() +
723 sclp_tod_from_jiffies(sclp_request_timer.expires -
724 jiffies);
725 }
726 local_irq_save(flags);
727 /* Prevent bottom half from executing once we force interrupts open */
728 irq_context = in_interrupt();
729 if (!irq_context)
730 local_bh_disable();
731 /* Enable service-signal interruption, disable timer interrupts */
732 old_tick = local_tick_disable();
733 trace_hardirqs_on();
734 local_ctl_store(0, &cr0);
735 cr0_sync.val = cr0.val & ~CR0_IRQ_SUBCLASS_MASK;
736 cr0_sync.val |= 1UL << (63 - 54);
737 local_ctl_load(0, &cr0_sync);
738 arch_local_irq_enable_external();
739 /* Loop until driver state indicates finished request */
740 while (sclp_running_state != sclp_running_state_idle) {
741 /* Check for expired request timer */
742 if (get_tod_clock_fast() > timeout && del_timer(&sclp_request_timer))
743 sclp_request_timer.function(&sclp_request_timer);
744 cpu_relax();
745 }
746 local_irq_disable();
747 local_ctl_load(0, &cr0);
748 if (!irq_context)
749 _local_bh_enable();
750 local_tick_enable(old_tick);
751 local_irq_restore(flags);
752
753 /* SYN2: Synchronous wait end (a=runstate, b=sync_count) */
754 sclp_trace(4, "SYN2", sclp_running_state, sync_count, false);
755 }
756 EXPORT_SYMBOL(sclp_sync_wait);
757
758 /* Dispatch changes in send and receive mask to registered listeners. */
759 static void
sclp_dispatch_state_change(void)760 sclp_dispatch_state_change(void)
761 {
762 struct list_head *l;
763 struct sclp_register *reg;
764 unsigned long flags;
765 sccb_mask_t receive_mask;
766 sccb_mask_t send_mask;
767
768 do {
769 spin_lock_irqsave(&sclp_lock, flags);
770 reg = NULL;
771 list_for_each(l, &sclp_reg_list) {
772 reg = list_entry(l, struct sclp_register, list);
773 receive_mask = reg->send_mask & sclp_receive_mask;
774 send_mask = reg->receive_mask & sclp_send_mask;
775 if (reg->sclp_receive_mask != receive_mask ||
776 reg->sclp_send_mask != send_mask) {
777 reg->sclp_receive_mask = receive_mask;
778 reg->sclp_send_mask = send_mask;
779 break;
780 } else
781 reg = NULL;
782 }
783 spin_unlock_irqrestore(&sclp_lock, flags);
784 if (reg && reg->state_change_fn) {
785 /* STCG: State-change callback (b=callback) */
786 sclp_trace(2, "STCG", 0, (u64)reg->state_change_fn,
787 false);
788
789 reg->state_change_fn(reg);
790 }
791 } while (reg);
792 }
793
794 struct sclp_statechangebuf {
795 struct evbuf_header header;
796 u8 validity_sclp_active_facility_mask : 1;
797 u8 validity_sclp_receive_mask : 1;
798 u8 validity_sclp_send_mask : 1;
799 u8 validity_read_data_function_mask : 1;
800 u16 _zeros : 12;
801 u16 mask_length;
802 u64 sclp_active_facility_mask;
803 u8 masks[2 * 1021 + 4]; /* variable length */
804 /*
805 * u8 sclp_receive_mask[mask_length];
806 * u8 sclp_send_mask[mask_length];
807 * u32 read_data_function_mask;
808 */
809 } __attribute__((packed));
810
811
812 /* State change event callback. Inform listeners of changes. */
813 static void
sclp_state_change_cb(struct evbuf_header * evbuf)814 sclp_state_change_cb(struct evbuf_header *evbuf)
815 {
816 unsigned long flags;
817 struct sclp_statechangebuf *scbuf;
818
819 BUILD_BUG_ON(sizeof(struct sclp_statechangebuf) > PAGE_SIZE);
820
821 scbuf = (struct sclp_statechangebuf *) evbuf;
822 spin_lock_irqsave(&sclp_lock, flags);
823 if (scbuf->validity_sclp_receive_mask)
824 sclp_receive_mask = sccb_get_recv_mask(scbuf);
825 if (scbuf->validity_sclp_send_mask)
826 sclp_send_mask = sccb_get_send_mask(scbuf);
827 spin_unlock_irqrestore(&sclp_lock, flags);
828 if (scbuf->validity_sclp_active_facility_mask)
829 sclp.facilities = scbuf->sclp_active_facility_mask;
830 sclp_dispatch_state_change();
831 }
832
833 static struct sclp_register sclp_state_change_event = {
834 .receive_mask = EVTYP_STATECHANGE_MASK,
835 .receiver_fn = sclp_state_change_cb
836 };
837
838 /* Calculate receive and send mask of currently registered listeners.
839 * Called while sclp_lock is locked. */
840 static inline void
__sclp_get_mask(sccb_mask_t * receive_mask,sccb_mask_t * send_mask)841 __sclp_get_mask(sccb_mask_t *receive_mask, sccb_mask_t *send_mask)
842 {
843 struct list_head *l;
844 struct sclp_register *t;
845
846 *receive_mask = 0;
847 *send_mask = 0;
848 list_for_each(l, &sclp_reg_list) {
849 t = list_entry(l, struct sclp_register, list);
850 *receive_mask |= t->receive_mask;
851 *send_mask |= t->send_mask;
852 }
853 }
854
855 /* Register event listener. Return 0 on success, non-zero otherwise. */
856 int
sclp_register(struct sclp_register * reg)857 sclp_register(struct sclp_register *reg)
858 {
859 unsigned long flags;
860 sccb_mask_t receive_mask;
861 sccb_mask_t send_mask;
862 int rc;
863
864 /* REG: Event listener registered (b=caller) */
865 sclp_trace_register(2, "REG", 0, _RET_IP_, reg);
866
867 rc = sclp_init();
868 if (rc)
869 return rc;
870 spin_lock_irqsave(&sclp_lock, flags);
871 /* Check event mask for collisions */
872 __sclp_get_mask(&receive_mask, &send_mask);
873 if (reg->receive_mask & receive_mask || reg->send_mask & send_mask) {
874 spin_unlock_irqrestore(&sclp_lock, flags);
875 return -EBUSY;
876 }
877 /* Trigger initial state change callback */
878 reg->sclp_receive_mask = 0;
879 reg->sclp_send_mask = 0;
880 list_add(®->list, &sclp_reg_list);
881 spin_unlock_irqrestore(&sclp_lock, flags);
882 rc = sclp_init_mask(1);
883 if (rc) {
884 spin_lock_irqsave(&sclp_lock, flags);
885 list_del(®->list);
886 spin_unlock_irqrestore(&sclp_lock, flags);
887 }
888 return rc;
889 }
890
891 EXPORT_SYMBOL(sclp_register);
892
893 /* Unregister event listener. */
894 void
sclp_unregister(struct sclp_register * reg)895 sclp_unregister(struct sclp_register *reg)
896 {
897 unsigned long flags;
898
899 /* UREG: Event listener unregistered (b=caller) */
900 sclp_trace_register(2, "UREG", 0, _RET_IP_, reg);
901
902 spin_lock_irqsave(&sclp_lock, flags);
903 list_del(®->list);
904 spin_unlock_irqrestore(&sclp_lock, flags);
905 sclp_init_mask(1);
906 }
907
908 EXPORT_SYMBOL(sclp_unregister);
909
910 /* Remove event buffers which are marked processed. Return the number of
911 * remaining event buffers. */
912 int
sclp_remove_processed(struct sccb_header * sccb)913 sclp_remove_processed(struct sccb_header *sccb)
914 {
915 struct evbuf_header *evbuf;
916 int unprocessed;
917 u16 remaining;
918
919 evbuf = (struct evbuf_header *) (sccb + 1);
920 unprocessed = 0;
921 remaining = sccb->length - sizeof(struct sccb_header);
922 while (remaining > 0) {
923 remaining -= evbuf->length;
924 if (evbuf->flags & 0x80) {
925 sccb->length -= evbuf->length;
926 memcpy(evbuf, (void *) ((addr_t) evbuf + evbuf->length),
927 remaining);
928 } else {
929 unprocessed++;
930 evbuf = (struct evbuf_header *)
931 ((addr_t) evbuf + evbuf->length);
932 }
933 }
934 return unprocessed;
935 }
936
937 EXPORT_SYMBOL(sclp_remove_processed);
938
939 /* Prepare init mask request. Called while sclp_lock is locked. */
940 static inline void
__sclp_make_init_req(sccb_mask_t receive_mask,sccb_mask_t send_mask)941 __sclp_make_init_req(sccb_mask_t receive_mask, sccb_mask_t send_mask)
942 {
943 struct init_sccb *sccb = sclp_init_sccb;
944
945 clear_page(sccb);
946 memset(&sclp_init_req, 0, sizeof(struct sclp_req));
947 sclp_init_req.command = SCLP_CMDW_WRITE_EVENT_MASK;
948 sclp_init_req.status = SCLP_REQ_FILLED;
949 sclp_init_req.start_count = 0;
950 sclp_init_req.callback = NULL;
951 sclp_init_req.callback_data = NULL;
952 sclp_init_req.sccb = sccb;
953 sccb->header.length = sizeof(*sccb);
954 if (sclp_mask_compat_mode)
955 sccb->mask_length = SCLP_MASK_SIZE_COMPAT;
956 else
957 sccb->mask_length = sizeof(sccb_mask_t);
958 sccb_set_recv_mask(sccb, receive_mask);
959 sccb_set_send_mask(sccb, send_mask);
960 sccb_set_sclp_recv_mask(sccb, 0);
961 sccb_set_sclp_send_mask(sccb, 0);
962 }
963
964 /* Start init mask request. If calculate is non-zero, calculate the mask as
965 * requested by registered listeners. Use zero mask otherwise. Return 0 on
966 * success, non-zero otherwise. */
967 static int
sclp_init_mask(int calculate)968 sclp_init_mask(int calculate)
969 {
970 unsigned long flags;
971 struct init_sccb *sccb = sclp_init_sccb;
972 sccb_mask_t receive_mask;
973 sccb_mask_t send_mask;
974 int retry;
975 int rc;
976 unsigned long wait;
977
978 spin_lock_irqsave(&sclp_lock, flags);
979 /* Check if interface is in appropriate state */
980 if (sclp_mask_state != sclp_mask_state_idle) {
981 spin_unlock_irqrestore(&sclp_lock, flags);
982 return -EBUSY;
983 }
984 if (sclp_activation_state == sclp_activation_state_inactive) {
985 spin_unlock_irqrestore(&sclp_lock, flags);
986 return -EINVAL;
987 }
988 sclp_mask_state = sclp_mask_state_initializing;
989 /* Determine mask */
990 if (calculate)
991 __sclp_get_mask(&receive_mask, &send_mask);
992 else {
993 receive_mask = 0;
994 send_mask = 0;
995 }
996 rc = -EIO;
997 for (retry = 0; retry <= SCLP_MASK_RETRY; retry++) {
998 /* Prepare request */
999 __sclp_make_init_req(receive_mask, send_mask);
1000 spin_unlock_irqrestore(&sclp_lock, flags);
1001 if (sclp_add_request(&sclp_init_req)) {
1002 /* Try again later */
1003 wait = jiffies + SCLP_BUSY_INTERVAL * HZ;
1004 while (time_before(jiffies, wait))
1005 sclp_sync_wait();
1006 spin_lock_irqsave(&sclp_lock, flags);
1007 continue;
1008 }
1009 while (sclp_init_req.status != SCLP_REQ_DONE &&
1010 sclp_init_req.status != SCLP_REQ_FAILED)
1011 sclp_sync_wait();
1012 spin_lock_irqsave(&sclp_lock, flags);
1013 if (sclp_init_req.status == SCLP_REQ_DONE &&
1014 sccb->header.response_code == 0x20) {
1015 /* Successful request */
1016 if (calculate) {
1017 sclp_receive_mask = sccb_get_sclp_recv_mask(sccb);
1018 sclp_send_mask = sccb_get_sclp_send_mask(sccb);
1019 } else {
1020 sclp_receive_mask = 0;
1021 sclp_send_mask = 0;
1022 }
1023 spin_unlock_irqrestore(&sclp_lock, flags);
1024 sclp_dispatch_state_change();
1025 spin_lock_irqsave(&sclp_lock, flags);
1026 rc = 0;
1027 break;
1028 }
1029 }
1030 sclp_mask_state = sclp_mask_state_idle;
1031 spin_unlock_irqrestore(&sclp_lock, flags);
1032 return rc;
1033 }
1034
1035 /* Deactivate SCLP interface. On success, new requests will be rejected,
1036 * events will no longer be dispatched. Return 0 on success, non-zero
1037 * otherwise. */
1038 int
sclp_deactivate(void)1039 sclp_deactivate(void)
1040 {
1041 unsigned long flags;
1042 int rc;
1043
1044 spin_lock_irqsave(&sclp_lock, flags);
1045 /* Deactivate can only be called when active */
1046 if (sclp_activation_state != sclp_activation_state_active) {
1047 spin_unlock_irqrestore(&sclp_lock, flags);
1048 return -EINVAL;
1049 }
1050 sclp_activation_state = sclp_activation_state_deactivating;
1051 spin_unlock_irqrestore(&sclp_lock, flags);
1052 rc = sclp_init_mask(0);
1053 spin_lock_irqsave(&sclp_lock, flags);
1054 if (rc == 0)
1055 sclp_activation_state = sclp_activation_state_inactive;
1056 else
1057 sclp_activation_state = sclp_activation_state_active;
1058 spin_unlock_irqrestore(&sclp_lock, flags);
1059 return rc;
1060 }
1061
1062 EXPORT_SYMBOL(sclp_deactivate);
1063
1064 /* Reactivate SCLP interface after sclp_deactivate. On success, new
1065 * requests will be accepted, events will be dispatched again. Return 0 on
1066 * success, non-zero otherwise. */
1067 int
sclp_reactivate(void)1068 sclp_reactivate(void)
1069 {
1070 unsigned long flags;
1071 int rc;
1072
1073 spin_lock_irqsave(&sclp_lock, flags);
1074 /* Reactivate can only be called when inactive */
1075 if (sclp_activation_state != sclp_activation_state_inactive) {
1076 spin_unlock_irqrestore(&sclp_lock, flags);
1077 return -EINVAL;
1078 }
1079 sclp_activation_state = sclp_activation_state_activating;
1080 spin_unlock_irqrestore(&sclp_lock, flags);
1081 rc = sclp_init_mask(1);
1082 spin_lock_irqsave(&sclp_lock, flags);
1083 if (rc == 0)
1084 sclp_activation_state = sclp_activation_state_active;
1085 else
1086 sclp_activation_state = sclp_activation_state_inactive;
1087 spin_unlock_irqrestore(&sclp_lock, flags);
1088 return rc;
1089 }
1090
1091 EXPORT_SYMBOL(sclp_reactivate);
1092
1093 /* Handler for external interruption used during initialization. Modify
1094 * request state to done. */
sclp_check_handler(struct ext_code ext_code,unsigned int param32,unsigned long param64)1095 static void sclp_check_handler(struct ext_code ext_code,
1096 unsigned int param32, unsigned long param64)
1097 {
1098 u32 finished_sccb;
1099
1100 inc_irq_stat(IRQEXT_SCP);
1101 finished_sccb = param32 & 0xfffffff8;
1102 /* Is this the interrupt we are waiting for? */
1103 if (finished_sccb == 0)
1104 return;
1105 if (finished_sccb != __pa(sclp_init_sccb))
1106 panic("sclp: unsolicited interrupt for buffer at 0x%x\n",
1107 finished_sccb);
1108 spin_lock(&sclp_lock);
1109 if (sclp_running_state == sclp_running_state_running) {
1110 sclp_init_req.status = SCLP_REQ_DONE;
1111 sclp_running_state = sclp_running_state_idle;
1112 }
1113 spin_unlock(&sclp_lock);
1114 }
1115
1116 /* Initial init mask request timed out. Modify request state to failed. */
1117 static void
sclp_check_timeout(struct timer_list * unused)1118 sclp_check_timeout(struct timer_list *unused)
1119 {
1120 unsigned long flags;
1121
1122 spin_lock_irqsave(&sclp_lock, flags);
1123 if (sclp_running_state == sclp_running_state_running) {
1124 sclp_init_req.status = SCLP_REQ_FAILED;
1125 sclp_running_state = sclp_running_state_idle;
1126 }
1127 spin_unlock_irqrestore(&sclp_lock, flags);
1128 }
1129
1130 /* Perform a check of the SCLP interface. Return zero if the interface is
1131 * available and there are no pending requests from a previous instance.
1132 * Return non-zero otherwise. */
1133 static int
sclp_check_interface(void)1134 sclp_check_interface(void)
1135 {
1136 struct init_sccb *sccb;
1137 unsigned long flags;
1138 int retry;
1139 int rc;
1140
1141 spin_lock_irqsave(&sclp_lock, flags);
1142 /* Prepare init mask command */
1143 rc = register_external_irq(EXT_IRQ_SERVICE_SIG, sclp_check_handler);
1144 if (rc) {
1145 spin_unlock_irqrestore(&sclp_lock, flags);
1146 return rc;
1147 }
1148 for (retry = 0; retry <= SCLP_INIT_RETRY; retry++) {
1149 __sclp_make_init_req(0, 0);
1150 sccb = (struct init_sccb *) sclp_init_req.sccb;
1151 rc = sclp_service_call_trace(sclp_init_req.command, sccb);
1152 if (rc == -EIO)
1153 break;
1154 sclp_init_req.status = SCLP_REQ_RUNNING;
1155 sclp_running_state = sclp_running_state_running;
1156 __sclp_set_request_timer(SCLP_RETRY_INTERVAL * HZ,
1157 sclp_check_timeout);
1158 spin_unlock_irqrestore(&sclp_lock, flags);
1159 /* Enable service-signal interruption - needs to happen
1160 * with IRQs enabled. */
1161 irq_subclass_register(IRQ_SUBCLASS_SERVICE_SIGNAL);
1162 /* Wait for signal from interrupt or timeout */
1163 sclp_sync_wait();
1164 /* Disable service-signal interruption - needs to happen
1165 * with IRQs enabled. */
1166 irq_subclass_unregister(IRQ_SUBCLASS_SERVICE_SIGNAL);
1167 spin_lock_irqsave(&sclp_lock, flags);
1168 del_timer(&sclp_request_timer);
1169 rc = -EBUSY;
1170 if (sclp_init_req.status == SCLP_REQ_DONE) {
1171 if (sccb->header.response_code == 0x20) {
1172 rc = 0;
1173 break;
1174 } else if (sccb->header.response_code == 0x74f0) {
1175 if (!sclp_mask_compat_mode) {
1176 sclp_mask_compat_mode = true;
1177 retry = 0;
1178 }
1179 }
1180 }
1181 }
1182 unregister_external_irq(EXT_IRQ_SERVICE_SIG, sclp_check_handler);
1183 spin_unlock_irqrestore(&sclp_lock, flags);
1184 return rc;
1185 }
1186
1187 /* Reboot event handler. Reset send and receive mask to prevent pending SCLP
1188 * events from interfering with rebooted system. */
1189 static int
sclp_reboot_event(struct notifier_block * this,unsigned long event,void * ptr)1190 sclp_reboot_event(struct notifier_block *this, unsigned long event, void *ptr)
1191 {
1192 sclp_deactivate();
1193 return NOTIFY_DONE;
1194 }
1195
1196 static struct notifier_block sclp_reboot_notifier = {
1197 .notifier_call = sclp_reboot_event,
1198 .priority = INT_MIN,
1199 };
1200
con_pages_show(struct device_driver * dev,char * buf)1201 static ssize_t con_pages_show(struct device_driver *dev, char *buf)
1202 {
1203 return sysfs_emit(buf, "%i\n", sclp_console_pages);
1204 }
1205
1206 static DRIVER_ATTR_RO(con_pages);
1207
con_drop_store(struct device_driver * dev,const char * buf,size_t count)1208 static ssize_t con_drop_store(struct device_driver *dev, const char *buf, size_t count)
1209 {
1210 int rc;
1211
1212 rc = kstrtobool(buf, &sclp_console_drop);
1213 return rc ?: count;
1214 }
1215
con_drop_show(struct device_driver * dev,char * buf)1216 static ssize_t con_drop_show(struct device_driver *dev, char *buf)
1217 {
1218 return sysfs_emit(buf, "%i\n", sclp_console_drop);
1219 }
1220
1221 static DRIVER_ATTR_RW(con_drop);
1222
con_full_show(struct device_driver * dev,char * buf)1223 static ssize_t con_full_show(struct device_driver *dev, char *buf)
1224 {
1225 return sysfs_emit(buf, "%lu\n", sclp_console_full);
1226 }
1227
1228 static DRIVER_ATTR_RO(con_full);
1229
1230 static struct attribute *sclp_drv_attrs[] = {
1231 &driver_attr_con_pages.attr,
1232 &driver_attr_con_drop.attr,
1233 &driver_attr_con_full.attr,
1234 NULL,
1235 };
1236 static struct attribute_group sclp_drv_attr_group = {
1237 .attrs = sclp_drv_attrs,
1238 };
1239 static const struct attribute_group *sclp_drv_attr_groups[] = {
1240 &sclp_drv_attr_group,
1241 NULL,
1242 };
1243
1244 static struct platform_driver sclp_pdrv = {
1245 .driver = {
1246 .name = "sclp",
1247 .groups = sclp_drv_attr_groups,
1248 },
1249 };
1250
1251 /* Initialize SCLP driver. Return zero if driver is operational, non-zero
1252 * otherwise. */
sclp_init(void)1253 int sclp_init(void)
1254 {
1255 unsigned long flags;
1256 int rc = 0;
1257
1258 spin_lock_irqsave(&sclp_lock, flags);
1259 /* Check for previous or running initialization */
1260 if (sclp_init_state != sclp_init_state_uninitialized)
1261 goto fail_unlock;
1262 sclp_init_state = sclp_init_state_initializing;
1263 sclp_read_sccb = (void *) __get_free_page(GFP_ATOMIC | GFP_DMA);
1264 sclp_init_sccb = (void *) __get_free_page(GFP_ATOMIC | GFP_DMA);
1265 BUG_ON(!sclp_read_sccb || !sclp_init_sccb);
1266 /* Set up variables */
1267 list_add(&sclp_state_change_event.list, &sclp_reg_list);
1268 timer_setup(&sclp_request_timer, NULL, 0);
1269 timer_setup(&sclp_queue_timer, sclp_req_queue_timeout, 0);
1270 /* Check interface */
1271 spin_unlock_irqrestore(&sclp_lock, flags);
1272 rc = sclp_check_interface();
1273 spin_lock_irqsave(&sclp_lock, flags);
1274 if (rc)
1275 goto fail_init_state_uninitialized;
1276 /* Register reboot handler */
1277 rc = register_reboot_notifier(&sclp_reboot_notifier);
1278 if (rc)
1279 goto fail_init_state_uninitialized;
1280 /* Register interrupt handler */
1281 rc = register_external_irq(EXT_IRQ_SERVICE_SIG, sclp_interrupt_handler);
1282 if (rc)
1283 goto fail_unregister_reboot_notifier;
1284 sclp_init_state = sclp_init_state_initialized;
1285 spin_unlock_irqrestore(&sclp_lock, flags);
1286 /* Enable service-signal external interruption - needs to happen with
1287 * IRQs enabled. */
1288 irq_subclass_register(IRQ_SUBCLASS_SERVICE_SIGNAL);
1289 sclp_init_mask(1);
1290 return 0;
1291
1292 fail_unregister_reboot_notifier:
1293 unregister_reboot_notifier(&sclp_reboot_notifier);
1294 fail_init_state_uninitialized:
1295 list_del(&sclp_state_change_event.list);
1296 sclp_init_state = sclp_init_state_uninitialized;
1297 free_page((unsigned long) sclp_read_sccb);
1298 free_page((unsigned long) sclp_init_sccb);
1299 fail_unlock:
1300 spin_unlock_irqrestore(&sclp_lock, flags);
1301 return rc;
1302 }
1303
sclp_initcall(void)1304 static __init int sclp_initcall(void)
1305 {
1306 return platform_driver_register(&sclp_pdrv);
1307 }
1308
1309 arch_initcall(sclp_initcall);
1310