xref: /linux/drivers/s390/cio/cio.c (revision 2277ab4a1df50e05bc732fe9488d4e902bb8399a)
1 /*
2  *  drivers/s390/cio/cio.c
3  *   S/390 common I/O routines -- low level i/o calls
4  *
5  *    Copyright IBM Corp. 1999,2008
6  *    Author(s): Ingo Adlung (adlung@de.ibm.com)
7  *		 Cornelia Huck (cornelia.huck@de.ibm.com)
8  *		 Arnd Bergmann (arndb@de.ibm.com)
9  *		 Martin Schwidefsky (schwidefsky@de.ibm.com)
10  */
11 
12 #define KMSG_COMPONENT "cio"
13 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
14 
15 #include <linux/ftrace.h>
16 #include <linux/module.h>
17 #include <linux/init.h>
18 #include <linux/slab.h>
19 #include <linux/device.h>
20 #include <linux/kernel_stat.h>
21 #include <linux/interrupt.h>
22 #include <asm/cio.h>
23 #include <asm/delay.h>
24 #include <asm/irq.h>
25 #include <asm/irq_regs.h>
26 #include <asm/setup.h>
27 #include <asm/reset.h>
28 #include <asm/ipl.h>
29 #include <asm/chpid.h>
30 #include <asm/airq.h>
31 #include <asm/isc.h>
32 #include <asm/cputime.h>
33 #include <asm/fcx.h>
34 #include <asm/nmi.h>
35 #include <asm/crw.h>
36 #include "cio.h"
37 #include "css.h"
38 #include "chsc.h"
39 #include "ioasm.h"
40 #include "io_sch.h"
41 #include "blacklist.h"
42 #include "cio_debug.h"
43 #include "chp.h"
44 
45 debug_info_t *cio_debug_msg_id;
46 debug_info_t *cio_debug_trace_id;
47 debug_info_t *cio_debug_crw_id;
48 
49 /*
50  * Function: cio_debug_init
51  * Initializes three debug logs for common I/O:
52  * - cio_msg logs generic cio messages
53  * - cio_trace logs the calling of different functions
54  * - cio_crw logs machine check related cio messages
55  */
56 static int __init cio_debug_init(void)
57 {
58 	cio_debug_msg_id = debug_register("cio_msg", 16, 1, 16 * sizeof(long));
59 	if (!cio_debug_msg_id)
60 		goto out_unregister;
61 	debug_register_view(cio_debug_msg_id, &debug_sprintf_view);
62 	debug_set_level(cio_debug_msg_id, 2);
63 	cio_debug_trace_id = debug_register("cio_trace", 16, 1, 16);
64 	if (!cio_debug_trace_id)
65 		goto out_unregister;
66 	debug_register_view(cio_debug_trace_id, &debug_hex_ascii_view);
67 	debug_set_level(cio_debug_trace_id, 2);
68 	cio_debug_crw_id = debug_register("cio_crw", 16, 1, 16 * sizeof(long));
69 	if (!cio_debug_crw_id)
70 		goto out_unregister;
71 	debug_register_view(cio_debug_crw_id, &debug_sprintf_view);
72 	debug_set_level(cio_debug_crw_id, 4);
73 	return 0;
74 
75 out_unregister:
76 	if (cio_debug_msg_id)
77 		debug_unregister(cio_debug_msg_id);
78 	if (cio_debug_trace_id)
79 		debug_unregister(cio_debug_trace_id);
80 	if (cio_debug_crw_id)
81 		debug_unregister(cio_debug_crw_id);
82 	return -1;
83 }
84 
85 arch_initcall (cio_debug_init);
86 
87 int
88 cio_set_options (struct subchannel *sch, int flags)
89 {
90        sch->options.suspend = (flags & DOIO_ALLOW_SUSPEND) != 0;
91        sch->options.prefetch = (flags & DOIO_DENY_PREFETCH) != 0;
92        sch->options.inter = (flags & DOIO_SUPPRESS_INTER) != 0;
93        return 0;
94 }
95 
96 /* FIXME: who wants to use this? */
97 int
98 cio_get_options (struct subchannel *sch)
99 {
100        int flags;
101 
102        flags = 0;
103        if (sch->options.suspend)
104 		flags |= DOIO_ALLOW_SUSPEND;
105        if (sch->options.prefetch)
106 		flags |= DOIO_DENY_PREFETCH;
107        if (sch->options.inter)
108 		flags |= DOIO_SUPPRESS_INTER;
109        return flags;
110 }
111 
112 static int
113 cio_start_handle_notoper(struct subchannel *sch, __u8 lpm)
114 {
115 	char dbf_text[15];
116 
117 	if (lpm != 0)
118 		sch->lpm &= ~lpm;
119 	else
120 		sch->lpm = 0;
121 
122 	CIO_MSG_EVENT(2, "cio_start: 'not oper' status for "
123 		      "subchannel 0.%x.%04x!\n", sch->schid.ssid,
124 		      sch->schid.sch_no);
125 
126 	if (cio_update_schib(sch))
127 		return -ENODEV;
128 
129 	sprintf(dbf_text, "no%s", dev_name(&sch->dev));
130 	CIO_TRACE_EVENT(0, dbf_text);
131 	CIO_HEX_EVENT(0, &sch->schib, sizeof (struct schib));
132 
133 	return (sch->lpm ? -EACCES : -ENODEV);
134 }
135 
136 int
137 cio_start_key (struct subchannel *sch,	/* subchannel structure */
138 	       struct ccw1 * cpa,	/* logical channel prog addr */
139 	       __u8 lpm,		/* logical path mask */
140 	       __u8 key)                /* storage key */
141 {
142 	char dbf_txt[15];
143 	int ccode;
144 	union orb *orb;
145 
146 	CIO_TRACE_EVENT(4, "stIO");
147 	CIO_TRACE_EVENT(4, dev_name(&sch->dev));
148 
149 	orb = &to_io_private(sch)->orb;
150 	memset(orb, 0, sizeof(union orb));
151 	/* sch is always under 2G. */
152 	orb->cmd.intparm = (u32)(addr_t)sch;
153 	orb->cmd.fmt = 1;
154 
155 	orb->cmd.pfch = sch->options.prefetch == 0;
156 	orb->cmd.spnd = sch->options.suspend;
157 	orb->cmd.ssic = sch->options.suspend && sch->options.inter;
158 	orb->cmd.lpm = (lpm != 0) ? lpm : sch->lpm;
159 #ifdef CONFIG_64BIT
160 	/*
161 	 * for 64 bit we always support 64 bit IDAWs with 4k page size only
162 	 */
163 	orb->cmd.c64 = 1;
164 	orb->cmd.i2k = 0;
165 #endif
166 	orb->cmd.key = key >> 4;
167 	/* issue "Start Subchannel" */
168 	orb->cmd.cpa = (__u32) __pa(cpa);
169 	ccode = ssch(sch->schid, orb);
170 
171 	/* process condition code */
172 	sprintf(dbf_txt, "ccode:%d", ccode);
173 	CIO_TRACE_EVENT(4, dbf_txt);
174 
175 	switch (ccode) {
176 	case 0:
177 		/*
178 		 * initialize device status information
179 		 */
180 		sch->schib.scsw.cmd.actl |= SCSW_ACTL_START_PEND;
181 		return 0;
182 	case 1:		/* status pending */
183 	case 2:		/* busy */
184 		return -EBUSY;
185 	case 3:		/* device/path not operational */
186 		return cio_start_handle_notoper(sch, lpm);
187 	default:
188 		return ccode;
189 	}
190 }
191 
192 int
193 cio_start (struct subchannel *sch, struct ccw1 *cpa, __u8 lpm)
194 {
195 	return cio_start_key(sch, cpa, lpm, PAGE_DEFAULT_KEY);
196 }
197 
198 /*
199  * resume suspended I/O operation
200  */
201 int
202 cio_resume (struct subchannel *sch)
203 {
204 	char dbf_txt[15];
205 	int ccode;
206 
207 	CIO_TRACE_EVENT (4, "resIO");
208 	CIO_TRACE_EVENT(4, dev_name(&sch->dev));
209 
210 	ccode = rsch (sch->schid);
211 
212 	sprintf (dbf_txt, "ccode:%d", ccode);
213 	CIO_TRACE_EVENT (4, dbf_txt);
214 
215 	switch (ccode) {
216 	case 0:
217 		sch->schib.scsw.cmd.actl |= SCSW_ACTL_RESUME_PEND;
218 		return 0;
219 	case 1:
220 		return -EBUSY;
221 	case 2:
222 		return -EINVAL;
223 	default:
224 		/*
225 		 * useless to wait for request completion
226 		 *  as device is no longer operational !
227 		 */
228 		return -ENODEV;
229 	}
230 }
231 
232 /*
233  * halt I/O operation
234  */
235 int
236 cio_halt(struct subchannel *sch)
237 {
238 	char dbf_txt[15];
239 	int ccode;
240 
241 	if (!sch)
242 		return -ENODEV;
243 
244 	CIO_TRACE_EVENT (2, "haltIO");
245 	CIO_TRACE_EVENT(2, dev_name(&sch->dev));
246 
247 	/*
248 	 * Issue "Halt subchannel" and process condition code
249 	 */
250 	ccode = hsch (sch->schid);
251 
252 	sprintf (dbf_txt, "ccode:%d", ccode);
253 	CIO_TRACE_EVENT (2, dbf_txt);
254 
255 	switch (ccode) {
256 	case 0:
257 		sch->schib.scsw.cmd.actl |= SCSW_ACTL_HALT_PEND;
258 		return 0;
259 	case 1:		/* status pending */
260 	case 2:		/* busy */
261 		return -EBUSY;
262 	default:		/* device not operational */
263 		return -ENODEV;
264 	}
265 }
266 
267 /*
268  * Clear I/O operation
269  */
270 int
271 cio_clear(struct subchannel *sch)
272 {
273 	char dbf_txt[15];
274 	int ccode;
275 
276 	if (!sch)
277 		return -ENODEV;
278 
279 	CIO_TRACE_EVENT (2, "clearIO");
280 	CIO_TRACE_EVENT(2, dev_name(&sch->dev));
281 
282 	/*
283 	 * Issue "Clear subchannel" and process condition code
284 	 */
285 	ccode = csch (sch->schid);
286 
287 	sprintf (dbf_txt, "ccode:%d", ccode);
288 	CIO_TRACE_EVENT (2, dbf_txt);
289 
290 	switch (ccode) {
291 	case 0:
292 		sch->schib.scsw.cmd.actl |= SCSW_ACTL_CLEAR_PEND;
293 		return 0;
294 	default:		/* device not operational */
295 		return -ENODEV;
296 	}
297 }
298 
299 /*
300  * Function: cio_cancel
301  * Issues a "Cancel Subchannel" on the specified subchannel
302  * Note: We don't need any fancy intparms and flags here
303  *	 since xsch is executed synchronously.
304  * Only for common I/O internal use as for now.
305  */
306 int
307 cio_cancel (struct subchannel *sch)
308 {
309 	char dbf_txt[15];
310 	int ccode;
311 
312 	if (!sch)
313 		return -ENODEV;
314 
315 	CIO_TRACE_EVENT (2, "cancelIO");
316 	CIO_TRACE_EVENT(2, dev_name(&sch->dev));
317 
318 	ccode = xsch (sch->schid);
319 
320 	sprintf (dbf_txt, "ccode:%d", ccode);
321 	CIO_TRACE_EVENT (2, dbf_txt);
322 
323 	switch (ccode) {
324 	case 0:		/* success */
325 		/* Update information in scsw. */
326 		if (cio_update_schib(sch))
327 			return -ENODEV;
328 		return 0;
329 	case 1:		/* status pending */
330 		return -EBUSY;
331 	case 2:		/* not applicable */
332 		return -EINVAL;
333 	default:	/* not oper */
334 		return -ENODEV;
335 	}
336 }
337 
338 
339 static void cio_apply_config(struct subchannel *sch, struct schib *schib)
340 {
341 	schib->pmcw.intparm = sch->config.intparm;
342 	schib->pmcw.mbi = sch->config.mbi;
343 	schib->pmcw.isc = sch->config.isc;
344 	schib->pmcw.ena = sch->config.ena;
345 	schib->pmcw.mme = sch->config.mme;
346 	schib->pmcw.mp = sch->config.mp;
347 	schib->pmcw.csense = sch->config.csense;
348 	schib->pmcw.mbfc = sch->config.mbfc;
349 	if (sch->config.mbfc)
350 		schib->mba = sch->config.mba;
351 }
352 
353 static int cio_check_config(struct subchannel *sch, struct schib *schib)
354 {
355 	return (schib->pmcw.intparm == sch->config.intparm) &&
356 		(schib->pmcw.mbi == sch->config.mbi) &&
357 		(schib->pmcw.isc == sch->config.isc) &&
358 		(schib->pmcw.ena == sch->config.ena) &&
359 		(schib->pmcw.mme == sch->config.mme) &&
360 		(schib->pmcw.mp == sch->config.mp) &&
361 		(schib->pmcw.csense == sch->config.csense) &&
362 		(schib->pmcw.mbfc == sch->config.mbfc) &&
363 		(!sch->config.mbfc || (schib->mba == sch->config.mba));
364 }
365 
366 /*
367  * cio_commit_config - apply configuration to the subchannel
368  */
369 int cio_commit_config(struct subchannel *sch)
370 {
371 	struct schib schib;
372 	int ccode, retry, ret = 0;
373 
374 	if (stsch(sch->schid, &schib) || !css_sch_is_valid(&schib))
375 		return -ENODEV;
376 
377 	for (retry = 0; retry < 5; retry++) {
378 		/* copy desired changes to local schib */
379 		cio_apply_config(sch, &schib);
380 		ccode = msch_err(sch->schid, &schib);
381 		if (ccode < 0) /* -EIO if msch gets a program check. */
382 			return ccode;
383 		switch (ccode) {
384 		case 0: /* successful */
385 			if (stsch(sch->schid, &schib) ||
386 			    !css_sch_is_valid(&schib))
387 				return -ENODEV;
388 			if (cio_check_config(sch, &schib)) {
389 				/* commit changes from local schib */
390 				memcpy(&sch->schib, &schib, sizeof(schib));
391 				return 0;
392 			}
393 			ret = -EAGAIN;
394 			break;
395 		case 1: /* status pending */
396 			return -EBUSY;
397 		case 2: /* busy */
398 			udelay(100); /* allow for recovery */
399 			ret = -EBUSY;
400 			break;
401 		case 3: /* not operational */
402 			return -ENODEV;
403 		}
404 	}
405 	return ret;
406 }
407 
408 /**
409  * cio_update_schib - Perform stsch and update schib if subchannel is valid.
410  * @sch: subchannel on which to perform stsch
411  * Return zero on success, -ENODEV otherwise.
412  */
413 int cio_update_schib(struct subchannel *sch)
414 {
415 	struct schib schib;
416 
417 	if (stsch(sch->schid, &schib) || !css_sch_is_valid(&schib))
418 		return -ENODEV;
419 
420 	memcpy(&sch->schib, &schib, sizeof(schib));
421 	return 0;
422 }
423 EXPORT_SYMBOL_GPL(cio_update_schib);
424 
425 /**
426  * cio_enable_subchannel - enable a subchannel.
427  * @sch: subchannel to be enabled
428  * @intparm: interruption parameter to set
429  */
430 int cio_enable_subchannel(struct subchannel *sch, u32 intparm)
431 {
432 	char dbf_txt[15];
433 	int retry;
434 	int ret;
435 
436 	CIO_TRACE_EVENT (2, "ensch");
437 	CIO_TRACE_EVENT(2, dev_name(&sch->dev));
438 
439 	if (sch_is_pseudo_sch(sch))
440 		return -EINVAL;
441 	if (cio_update_schib(sch))
442 		return -ENODEV;
443 
444 	sch->config.ena = 1;
445 	sch->config.isc = sch->isc;
446 	sch->config.intparm = intparm;
447 
448 	for (retry = 0; retry < 3; retry++) {
449 		ret = cio_commit_config(sch);
450 		if (ret == -EIO) {
451 			/*
452 			 * Got a program check in msch. Try without
453 			 * the concurrent sense bit the next time.
454 			 */
455 			sch->config.csense = 0;
456 		} else if (ret == -EBUSY) {
457 			struct irb irb;
458 			if (tsch(sch->schid, &irb) != 0)
459 				break;
460 		} else
461 			break;
462 	}
463 	sprintf (dbf_txt, "ret:%d", ret);
464 	CIO_TRACE_EVENT (2, dbf_txt);
465 	return ret;
466 }
467 EXPORT_SYMBOL_GPL(cio_enable_subchannel);
468 
469 /**
470  * cio_disable_subchannel - disable a subchannel.
471  * @sch: subchannel to disable
472  */
473 int cio_disable_subchannel(struct subchannel *sch)
474 {
475 	char dbf_txt[15];
476 	int retry;
477 	int ret;
478 
479 	CIO_TRACE_EVENT (2, "dissch");
480 	CIO_TRACE_EVENT(2, dev_name(&sch->dev));
481 
482 	if (sch_is_pseudo_sch(sch))
483 		return 0;
484 	if (cio_update_schib(sch))
485 		return -ENODEV;
486 
487 	sch->config.ena = 0;
488 
489 	for (retry = 0; retry < 3; retry++) {
490 		ret = cio_commit_config(sch);
491 		if (ret == -EBUSY) {
492 			struct irb irb;
493 			if (tsch(sch->schid, &irb) != 0)
494 				break;
495 		} else
496 			break;
497 	}
498 	sprintf (dbf_txt, "ret:%d", ret);
499 	CIO_TRACE_EVENT (2, dbf_txt);
500 	return ret;
501 }
502 EXPORT_SYMBOL_GPL(cio_disable_subchannel);
503 
504 int cio_create_sch_lock(struct subchannel *sch)
505 {
506 	sch->lock = kmalloc(sizeof(spinlock_t), GFP_KERNEL);
507 	if (!sch->lock)
508 		return -ENOMEM;
509 	spin_lock_init(sch->lock);
510 	return 0;
511 }
512 
513 static int cio_check_devno_blacklisted(struct subchannel *sch)
514 {
515 	if (is_blacklisted(sch->schid.ssid, sch->schib.pmcw.dev)) {
516 		/*
517 		 * This device must not be known to Linux. So we simply
518 		 * say that there is no device and return ENODEV.
519 		 */
520 		CIO_MSG_EVENT(6, "Blacklisted device detected "
521 			      "at devno %04X, subchannel set %x\n",
522 			      sch->schib.pmcw.dev, sch->schid.ssid);
523 		return -ENODEV;
524 	}
525 	return 0;
526 }
527 
528 static int cio_validate_io_subchannel(struct subchannel *sch)
529 {
530 	/* Initialization for io subchannels. */
531 	if (!css_sch_is_valid(&sch->schib))
532 		return -ENODEV;
533 
534 	/* Devno is valid. */
535 	return cio_check_devno_blacklisted(sch);
536 }
537 
538 static int cio_validate_msg_subchannel(struct subchannel *sch)
539 {
540 	/* Initialization for message subchannels. */
541 	if (!css_sch_is_valid(&sch->schib))
542 		return -ENODEV;
543 
544 	/* Devno is valid. */
545 	return cio_check_devno_blacklisted(sch);
546 }
547 
548 /**
549  * cio_validate_subchannel - basic validation of subchannel
550  * @sch: subchannel structure to be filled out
551  * @schid: subchannel id
552  *
553  * Find out subchannel type and initialize struct subchannel.
554  * Return codes:
555  *   0 on success
556  *   -ENXIO for non-defined subchannels
557  *   -ENODEV for invalid subchannels or blacklisted devices
558  *   -EIO for subchannels in an invalid subchannel set
559  */
560 int cio_validate_subchannel(struct subchannel *sch, struct subchannel_id schid)
561 {
562 	char dbf_txt[15];
563 	int ccode;
564 	int err;
565 
566 	sprintf(dbf_txt, "valsch%x", schid.sch_no);
567 	CIO_TRACE_EVENT(4, dbf_txt);
568 
569 	/* Nuke all fields. */
570 	memset(sch, 0, sizeof(struct subchannel));
571 
572 	sch->schid = schid;
573 	if (cio_is_console(schid)) {
574 		sch->lock = cio_get_console_lock();
575 	} else {
576 		err = cio_create_sch_lock(sch);
577 		if (err)
578 			goto out;
579 	}
580 	mutex_init(&sch->reg_mutex);
581 	/* Set a name for the subchannel */
582 	if (cio_is_console(schid))
583 		sch->dev.init_name = cio_get_console_sch_name(schid);
584 	else
585 		dev_set_name(&sch->dev, "0.%x.%04x", schid.ssid, schid.sch_no);
586 
587 	/*
588 	 * The first subchannel that is not-operational (ccode==3)
589 	 *  indicates that there aren't any more devices available.
590 	 * If stsch gets an exception, it means the current subchannel set
591 	 *  is not valid.
592 	 */
593 	ccode = stsch_err (schid, &sch->schib);
594 	if (ccode) {
595 		err = (ccode == 3) ? -ENXIO : ccode;
596 		goto out;
597 	}
598 	/* Copy subchannel type from path management control word. */
599 	sch->st = sch->schib.pmcw.st;
600 
601 	switch (sch->st) {
602 	case SUBCHANNEL_TYPE_IO:
603 		err = cio_validate_io_subchannel(sch);
604 		break;
605 	case SUBCHANNEL_TYPE_MSG:
606 		err = cio_validate_msg_subchannel(sch);
607 		break;
608 	default:
609 		err = 0;
610 	}
611 	if (err)
612 		goto out;
613 
614 	CIO_MSG_EVENT(4, "Subchannel 0.%x.%04x reports subchannel type %04X\n",
615 		      sch->schid.ssid, sch->schid.sch_no, sch->st);
616 	return 0;
617 out:
618 	if (!cio_is_console(schid))
619 		kfree(sch->lock);
620 	sch->lock = NULL;
621 	return err;
622 }
623 
624 /*
625  * do_IRQ() handles all normal I/O device IRQ's (the special
626  *	    SMP cross-CPU interrupts have their own specific
627  *	    handlers).
628  *
629  */
630 void __irq_entry do_IRQ(struct pt_regs *regs)
631 {
632 	struct tpi_info *tpi_info;
633 	struct subchannel *sch;
634 	struct irb *irb;
635 	struct pt_regs *old_regs;
636 
637 	old_regs = set_irq_regs(regs);
638 	s390_idle_check();
639 	irq_enter();
640 	if (S390_lowcore.int_clock >= S390_lowcore.clock_comparator)
641 		/* Serve timer interrupts first. */
642 		clock_comparator_work();
643 	/*
644 	 * Get interrupt information from lowcore
645 	 */
646 	tpi_info = (struct tpi_info *) __LC_SUBCHANNEL_ID;
647 	irb = (struct irb *) __LC_IRB;
648 	do {
649 		kstat_cpu(smp_processor_id()).irqs[IO_INTERRUPT]++;
650 		/*
651 		 * Non I/O-subchannel thin interrupts are processed differently
652 		 */
653 		if (tpi_info->adapter_IO == 1 &&
654 		    tpi_info->int_type == IO_INTERRUPT_TYPE) {
655 			do_adapter_IO(tpi_info->isc);
656 			continue;
657 		}
658 		sch = (struct subchannel *)(unsigned long)tpi_info->intparm;
659 		if (!sch) {
660 			/* Clear pending interrupt condition. */
661 			tsch(tpi_info->schid, irb);
662 			continue;
663 		}
664 		spin_lock(sch->lock);
665 		/* Store interrupt response block to lowcore. */
666 		if (tsch(tpi_info->schid, irb) == 0) {
667 			/* Keep subchannel information word up to date. */
668 			memcpy (&sch->schib.scsw, &irb->scsw,
669 				sizeof (irb->scsw));
670 			/* Call interrupt handler if there is one. */
671 			if (sch->driver && sch->driver->irq)
672 				sch->driver->irq(sch);
673 		}
674 		spin_unlock(sch->lock);
675 		/*
676 		 * Are more interrupts pending?
677 		 * If so, the tpi instruction will update the lowcore
678 		 * to hold the info for the next interrupt.
679 		 * We don't do this for VM because a tpi drops the cpu
680 		 * out of the sie which costs more cycles than it saves.
681 		 */
682 	} while (!MACHINE_IS_VM && tpi (NULL) != 0);
683 	irq_exit();
684 	set_irq_regs(old_regs);
685 }
686 
687 #ifdef CONFIG_CCW_CONSOLE
688 static struct subchannel console_subchannel;
689 static char console_sch_name[10] = "0.x.xxxx";
690 static struct io_subchannel_private console_priv;
691 static int console_subchannel_in_use;
692 
693 /*
694  * Use tpi to get a pending interrupt, call the interrupt handler and
695  * return a pointer to the subchannel structure.
696  */
697 static int cio_tpi(void)
698 {
699 	struct tpi_info *tpi_info;
700 	struct subchannel *sch;
701 	struct irb *irb;
702 	int irq_context;
703 
704 	tpi_info = (struct tpi_info *) __LC_SUBCHANNEL_ID;
705 	if (tpi(NULL) != 1)
706 		return 0;
707 	irb = (struct irb *) __LC_IRB;
708 	/* Store interrupt response block to lowcore. */
709 	if (tsch(tpi_info->schid, irb) != 0)
710 		/* Not status pending or not operational. */
711 		return 1;
712 	sch = (struct subchannel *)(unsigned long)tpi_info->intparm;
713 	if (!sch)
714 		return 1;
715 	irq_context = in_interrupt();
716 	if (!irq_context)
717 		local_bh_disable();
718 	irq_enter();
719 	spin_lock(sch->lock);
720 	memcpy(&sch->schib.scsw, &irb->scsw, sizeof(union scsw));
721 	if (sch->driver && sch->driver->irq)
722 		sch->driver->irq(sch);
723 	spin_unlock(sch->lock);
724 	irq_exit();
725 	if (!irq_context)
726 		_local_bh_enable();
727 	return 1;
728 }
729 
730 void *cio_get_console_priv(void)
731 {
732 	return &console_priv;
733 }
734 
735 /*
736  * busy wait for the next interrupt on the console
737  */
738 void wait_cons_dev(void)
739 	__releases(console_subchannel.lock)
740 	__acquires(console_subchannel.lock)
741 {
742 	unsigned long cr6      __attribute__ ((aligned (8)));
743 	unsigned long save_cr6 __attribute__ ((aligned (8)));
744 
745 	/*
746 	 * before entering the spinlock we may already have
747 	 * processed the interrupt on a different CPU...
748 	 */
749 	if (!console_subchannel_in_use)
750 		return;
751 
752 	/* disable all but the console isc */
753 	__ctl_store (save_cr6, 6, 6);
754 	cr6 = 1UL << (31 - CONSOLE_ISC);
755 	__ctl_load (cr6, 6, 6);
756 
757 	do {
758 		spin_unlock(console_subchannel.lock);
759 		if (!cio_tpi())
760 			cpu_relax();
761 		spin_lock(console_subchannel.lock);
762 	} while (console_subchannel.schib.scsw.cmd.actl != 0);
763 	/*
764 	 * restore previous isc value
765 	 */
766 	__ctl_load (save_cr6, 6, 6);
767 }
768 
769 static int
770 cio_test_for_console(struct subchannel_id schid, void *data)
771 {
772 	if (stsch_err(schid, &console_subchannel.schib) != 0)
773 		return -ENXIO;
774 	if ((console_subchannel.schib.pmcw.st == SUBCHANNEL_TYPE_IO) &&
775 	    console_subchannel.schib.pmcw.dnv &&
776 	    (console_subchannel.schib.pmcw.dev == console_devno)) {
777 		console_irq = schid.sch_no;
778 		return 1; /* found */
779 	}
780 	return 0;
781 }
782 
783 
784 static int
785 cio_get_console_sch_no(void)
786 {
787 	struct subchannel_id schid;
788 
789 	init_subchannel_id(&schid);
790 	if (console_irq != -1) {
791 		/* VM provided us with the irq number of the console. */
792 		schid.sch_no = console_irq;
793 		if (stsch(schid, &console_subchannel.schib) != 0 ||
794 		    (console_subchannel.schib.pmcw.st != SUBCHANNEL_TYPE_IO) ||
795 		    !console_subchannel.schib.pmcw.dnv)
796 			return -1;
797 		console_devno = console_subchannel.schib.pmcw.dev;
798 	} else if (console_devno != -1) {
799 		/* At least the console device number is known. */
800 		for_each_subchannel(cio_test_for_console, NULL);
801 		if (console_irq == -1)
802 			return -1;
803 	} else {
804 		/* unlike in 2.4, we cannot autoprobe here, since
805 		 * the channel subsystem is not fully initialized.
806 		 * With some luck, the HWC console can take over */
807 		return -1;
808 	}
809 	return console_irq;
810 }
811 
812 struct subchannel *
813 cio_probe_console(void)
814 {
815 	int sch_no, ret;
816 	struct subchannel_id schid;
817 
818 	if (xchg(&console_subchannel_in_use, 1) != 0)
819 		return ERR_PTR(-EBUSY);
820 	sch_no = cio_get_console_sch_no();
821 	if (sch_no == -1) {
822 		console_subchannel_in_use = 0;
823 		pr_warning("No CCW console was found\n");
824 		return ERR_PTR(-ENODEV);
825 	}
826 	memset(&console_subchannel, 0, sizeof(struct subchannel));
827 	init_subchannel_id(&schid);
828 	schid.sch_no = sch_no;
829 	ret = cio_validate_subchannel(&console_subchannel, schid);
830 	if (ret) {
831 		console_subchannel_in_use = 0;
832 		return ERR_PTR(-ENODEV);
833 	}
834 
835 	/*
836 	 * enable console I/O-interrupt subclass
837 	 */
838 	isc_register(CONSOLE_ISC);
839 	console_subchannel.config.isc = CONSOLE_ISC;
840 	console_subchannel.config.intparm = (u32)(addr_t)&console_subchannel;
841 	ret = cio_commit_config(&console_subchannel);
842 	if (ret) {
843 		isc_unregister(CONSOLE_ISC);
844 		console_subchannel_in_use = 0;
845 		return ERR_PTR(ret);
846 	}
847 	return &console_subchannel;
848 }
849 
850 void
851 cio_release_console(void)
852 {
853 	console_subchannel.config.intparm = 0;
854 	cio_commit_config(&console_subchannel);
855 	isc_unregister(CONSOLE_ISC);
856 	console_subchannel_in_use = 0;
857 }
858 
859 /* Bah... hack to catch console special sausages. */
860 int
861 cio_is_console(struct subchannel_id schid)
862 {
863 	if (!console_subchannel_in_use)
864 		return 0;
865 	return schid_equal(&schid, &console_subchannel.schid);
866 }
867 
868 struct subchannel *
869 cio_get_console_subchannel(void)
870 {
871 	if (!console_subchannel_in_use)
872 		return NULL;
873 	return &console_subchannel;
874 }
875 
876 const char *cio_get_console_sch_name(struct subchannel_id schid)
877 {
878 	snprintf(console_sch_name, 10, "0.%x.%04x", schid.ssid, schid.sch_no);
879 	return (const char *)console_sch_name;
880 }
881 
882 #endif
883 static int
884 __disable_subchannel_easy(struct subchannel_id schid, struct schib *schib)
885 {
886 	int retry, cc;
887 
888 	cc = 0;
889 	for (retry=0;retry<3;retry++) {
890 		schib->pmcw.ena = 0;
891 		cc = msch(schid, schib);
892 		if (cc)
893 			return (cc==3?-ENODEV:-EBUSY);
894 		if (stsch(schid, schib) || !css_sch_is_valid(schib))
895 			return -ENODEV;
896 		if (!schib->pmcw.ena)
897 			return 0;
898 	}
899 	return -EBUSY; /* uhm... */
900 }
901 
902 static int
903 __clear_io_subchannel_easy(struct subchannel_id schid)
904 {
905 	int retry;
906 
907 	if (csch(schid))
908 		return -ENODEV;
909 	for (retry=0;retry<20;retry++) {
910 		struct tpi_info ti;
911 
912 		if (tpi(&ti)) {
913 			tsch(ti.schid, (struct irb *)__LC_IRB);
914 			if (schid_equal(&ti.schid, &schid))
915 				return 0;
916 		}
917 		udelay_simple(100);
918 	}
919 	return -EBUSY;
920 }
921 
922 static void __clear_chsc_subchannel_easy(void)
923 {
924 	/* It seems we can only wait for a bit here :/ */
925 	udelay_simple(100);
926 }
927 
928 static int pgm_check_occured;
929 
930 static void cio_reset_pgm_check_handler(void)
931 {
932 	pgm_check_occured = 1;
933 }
934 
935 static int stsch_reset(struct subchannel_id schid, struct schib *addr)
936 {
937 	int rc;
938 
939 	pgm_check_occured = 0;
940 	s390_base_pgm_handler_fn = cio_reset_pgm_check_handler;
941 	rc = stsch(schid, addr);
942 	s390_base_pgm_handler_fn = NULL;
943 
944 	/* The program check handler could have changed pgm_check_occured. */
945 	barrier();
946 
947 	if (pgm_check_occured)
948 		return -EIO;
949 	else
950 		return rc;
951 }
952 
953 static int __shutdown_subchannel_easy(struct subchannel_id schid, void *data)
954 {
955 	struct schib schib;
956 
957 	if (stsch_reset(schid, &schib))
958 		return -ENXIO;
959 	if (!schib.pmcw.ena)
960 		return 0;
961 	switch(__disable_subchannel_easy(schid, &schib)) {
962 	case 0:
963 	case -ENODEV:
964 		break;
965 	default: /* -EBUSY */
966 		switch (schib.pmcw.st) {
967 		case SUBCHANNEL_TYPE_IO:
968 			if (__clear_io_subchannel_easy(schid))
969 				goto out; /* give up... */
970 			break;
971 		case SUBCHANNEL_TYPE_CHSC:
972 			__clear_chsc_subchannel_easy();
973 			break;
974 		default:
975 			/* No default clear strategy */
976 			break;
977 		}
978 		stsch(schid, &schib);
979 		__disable_subchannel_easy(schid, &schib);
980 	}
981 out:
982 	return 0;
983 }
984 
985 static atomic_t chpid_reset_count;
986 
987 static void s390_reset_chpids_mcck_handler(void)
988 {
989 	struct crw crw;
990 	struct mci *mci;
991 
992 	/* Check for pending channel report word. */
993 	mci = (struct mci *)&S390_lowcore.mcck_interruption_code;
994 	if (!mci->cp)
995 		return;
996 	/* Process channel report words. */
997 	while (stcrw(&crw) == 0) {
998 		/* Check for responses to RCHP. */
999 		if (crw.slct && crw.rsc == CRW_RSC_CPATH)
1000 			atomic_dec(&chpid_reset_count);
1001 	}
1002 }
1003 
1004 #define RCHP_TIMEOUT (30 * USEC_PER_SEC)
1005 static void css_reset(void)
1006 {
1007 	int i, ret;
1008 	unsigned long long timeout;
1009 	struct chp_id chpid;
1010 
1011 	/* Reset subchannels. */
1012 	for_each_subchannel(__shutdown_subchannel_easy,  NULL);
1013 	/* Reset channel paths. */
1014 	s390_base_mcck_handler_fn = s390_reset_chpids_mcck_handler;
1015 	/* Enable channel report machine checks. */
1016 	__ctl_set_bit(14, 28);
1017 	/* Temporarily reenable machine checks. */
1018 	local_mcck_enable();
1019 	chp_id_init(&chpid);
1020 	for (i = 0; i <= __MAX_CHPID; i++) {
1021 		chpid.id = i;
1022 		ret = rchp(chpid);
1023 		if ((ret == 0) || (ret == 2))
1024 			/*
1025 			 * rchp either succeeded, or another rchp is already
1026 			 * in progress. In either case, we'll get a crw.
1027 			 */
1028 			atomic_inc(&chpid_reset_count);
1029 	}
1030 	/* Wait for machine check for all channel paths. */
1031 	timeout = get_clock() + (RCHP_TIMEOUT << 12);
1032 	while (atomic_read(&chpid_reset_count) != 0) {
1033 		if (get_clock() > timeout)
1034 			break;
1035 		cpu_relax();
1036 	}
1037 	/* Disable machine checks again. */
1038 	local_mcck_disable();
1039 	/* Disable channel report machine checks. */
1040 	__ctl_clear_bit(14, 28);
1041 	s390_base_mcck_handler_fn = NULL;
1042 }
1043 
1044 static struct reset_call css_reset_call = {
1045 	.fn = css_reset,
1046 };
1047 
1048 static int __init init_css_reset_call(void)
1049 {
1050 	atomic_set(&chpid_reset_count, 0);
1051 	register_reset_call(&css_reset_call);
1052 	return 0;
1053 }
1054 
1055 arch_initcall(init_css_reset_call);
1056 
1057 struct sch_match_id {
1058 	struct subchannel_id schid;
1059 	struct ccw_dev_id devid;
1060 	int rc;
1061 };
1062 
1063 static int __reipl_subchannel_match(struct subchannel_id schid, void *data)
1064 {
1065 	struct schib schib;
1066 	struct sch_match_id *match_id = data;
1067 
1068 	if (stsch_reset(schid, &schib))
1069 		return -ENXIO;
1070 	if ((schib.pmcw.st == SUBCHANNEL_TYPE_IO) && schib.pmcw.dnv &&
1071 	    (schib.pmcw.dev == match_id->devid.devno) &&
1072 	    (schid.ssid == match_id->devid.ssid)) {
1073 		match_id->schid = schid;
1074 		match_id->rc = 0;
1075 		return 1;
1076 	}
1077 	return 0;
1078 }
1079 
1080 static int reipl_find_schid(struct ccw_dev_id *devid,
1081 			    struct subchannel_id *schid)
1082 {
1083 	struct sch_match_id match_id;
1084 
1085 	match_id.devid = *devid;
1086 	match_id.rc = -ENODEV;
1087 	for_each_subchannel(__reipl_subchannel_match, &match_id);
1088 	if (match_id.rc == 0)
1089 		*schid = match_id.schid;
1090 	return match_id.rc;
1091 }
1092 
1093 extern void do_reipl_asm(__u32 schid);
1094 
1095 /* Make sure all subchannels are quiet before we re-ipl an lpar. */
1096 void reipl_ccw_dev(struct ccw_dev_id *devid)
1097 {
1098 	struct subchannel_id schid;
1099 
1100 	s390_reset_system();
1101 	if (reipl_find_schid(devid, &schid) != 0)
1102 		panic("IPL Device not found\n");
1103 	do_reipl_asm(*((__u32*)&schid));
1104 }
1105 
1106 int __init cio_get_iplinfo(struct cio_iplinfo *iplinfo)
1107 {
1108 	struct subchannel_id schid;
1109 	struct schib schib;
1110 
1111 	schid = *(struct subchannel_id *)__LC_SUBCHANNEL_ID;
1112 	if (!schid.one)
1113 		return -ENODEV;
1114 	if (stsch(schid, &schib))
1115 		return -ENODEV;
1116 	if (schib.pmcw.st != SUBCHANNEL_TYPE_IO)
1117 		return -ENODEV;
1118 	if (!schib.pmcw.dnv)
1119 		return -ENODEV;
1120 	iplinfo->devno = schib.pmcw.dev;
1121 	iplinfo->is_qdio = schib.pmcw.qf;
1122 	return 0;
1123 }
1124 
1125 /**
1126  * cio_tm_start_key - perform start function
1127  * @sch: subchannel on which to perform the start function
1128  * @tcw: transport-command word to be started
1129  * @lpm: mask of paths to use
1130  * @key: storage key to use for storage access
1131  *
1132  * Start the tcw on the given subchannel. Return zero on success, non-zero
1133  * otherwise.
1134  */
1135 int cio_tm_start_key(struct subchannel *sch, struct tcw *tcw, u8 lpm, u8 key)
1136 {
1137 	int cc;
1138 	union orb *orb = &to_io_private(sch)->orb;
1139 
1140 	memset(orb, 0, sizeof(union orb));
1141 	orb->tm.intparm = (u32) (addr_t) sch;
1142 	orb->tm.key = key >> 4;
1143 	orb->tm.b = 1;
1144 	orb->tm.lpm = lpm ? lpm : sch->lpm;
1145 	orb->tm.tcw = (u32) (addr_t) tcw;
1146 	cc = ssch(sch->schid, orb);
1147 	switch (cc) {
1148 	case 0:
1149 		return 0;
1150 	case 1:
1151 	case 2:
1152 		return -EBUSY;
1153 	default:
1154 		return cio_start_handle_notoper(sch, lpm);
1155 	}
1156 }
1157 
1158 /**
1159  * cio_tm_intrg - perform interrogate function
1160  * @sch - subchannel on which to perform the interrogate function
1161  *
1162  * If the specified subchannel is running in transport-mode, perform the
1163  * interrogate function. Return zero on success, non-zero otherwie.
1164  */
1165 int cio_tm_intrg(struct subchannel *sch)
1166 {
1167 	int cc;
1168 
1169 	if (!to_io_private(sch)->orb.tm.b)
1170 		return -EINVAL;
1171 	cc = xsch(sch->schid);
1172 	switch (cc) {
1173 	case 0:
1174 	case 2:
1175 		return 0;
1176 	case 1:
1177 		return -EBUSY;
1178 	default:
1179 		return -ENODEV;
1180 	}
1181 }
1182