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v3.1
  1/*
  2 * Copyright IBM Corp. 2007, 2009
  3 *
  4 * Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>,
  5 *	      Peter Oberparleiter <peter.oberparleiter@de.ibm.com>
  6 */
  7
  8#define KMSG_COMPONENT "sclp_cmd"
  9#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
 10
 11#include <linux/completion.h>
 12#include <linux/init.h>
 13#include <linux/errno.h>
 14#include <linux/err.h>
 
 15#include <linux/slab.h>
 16#include <linux/string.h>
 17#include <linux/mm.h>
 18#include <linux/mmzone.h>
 19#include <linux/memory.h>
 
 20#include <linux/platform_device.h>
 
 21#include <asm/chpid.h>
 22#include <asm/sclp.h>
 23#include <asm/setup.h>
 
 
 24
 25#include "sclp.h"
 26
 27#define SCLP_CMDW_READ_SCP_INFO		0x00020001
 28#define SCLP_CMDW_READ_SCP_INFO_FORCED	0x00120001
 29
 30struct read_info_sccb {
 31	struct	sccb_header header;	/* 0-7 */
 32	u16	rnmax;			/* 8-9 */
 33	u8	rnsize;			/* 10 */
 34	u8	_reserved0[24 - 11];	/* 11-15 */
 35	u8	loadparm[8];		/* 24-31 */
 36	u8	_reserved1[48 - 32];	/* 32-47 */
 37	u64	facilities;		/* 48-55 */
 38	u8	_reserved2[84 - 56];	/* 56-83 */
 39	u8	fac84;			/* 84 */
 40	u8	_reserved3[91 - 85];	/* 85-90 */
 41	u8	flags;			/* 91 */
 42	u8	_reserved4[100 - 92];	/* 92-99 */
 43	u32	rnsize2;		/* 100-103 */
 44	u64	rnmax2;			/* 104-111 */
 45	u8	_reserved5[4096 - 112];	/* 112-4095 */
 46} __attribute__((packed, aligned(PAGE_SIZE)));
 47
 48static struct read_info_sccb __initdata early_read_info_sccb;
 49static int __initdata early_read_info_sccb_valid;
 50
 51u64 sclp_facilities;
 52static u8 sclp_fac84;
 53static unsigned long long rzm;
 54static unsigned long long rnmax;
 55
 56static int __init sclp_cmd_sync_early(sclp_cmdw_t cmd, void *sccb)
 57{
 58	int rc;
 59
 60	__ctl_set_bit(0, 9);
 61	rc = sclp_service_call(cmd, sccb);
 62	if (rc)
 63		goto out;
 64	__load_psw_mask(PSW_BASE_BITS | PSW_MASK_EXT |
 65			PSW_MASK_WAIT | PSW_DEFAULT_KEY);
 66	local_irq_disable();
 67out:
 68	/* Contents of the sccb might have changed. */
 69	barrier();
 70	__ctl_clear_bit(0, 9);
 71	return rc;
 72}
 73
 74static void __init sclp_read_info_early(void)
 75{
 76	int rc;
 77	int i;
 78	struct read_info_sccb *sccb;
 79	sclp_cmdw_t commands[] = {SCLP_CMDW_READ_SCP_INFO_FORCED,
 80				  SCLP_CMDW_READ_SCP_INFO};
 81
 82	sccb = &early_read_info_sccb;
 83	for (i = 0; i < ARRAY_SIZE(commands); i++) {
 84		do {
 85			memset(sccb, 0, sizeof(*sccb));
 86			sccb->header.length = sizeof(*sccb);
 87			sccb->header.function_code = 0x80;
 88			sccb->header.control_mask[2] = 0x80;
 89			rc = sclp_cmd_sync_early(commands[i], sccb);
 90		} while (rc == -EBUSY);
 91
 92		if (rc)
 93			break;
 94		if (sccb->header.response_code == 0x10) {
 95			early_read_info_sccb_valid = 1;
 96			break;
 97		}
 98		if (sccb->header.response_code != 0x1f0)
 99			break;
100	}
101}
102
103void __init sclp_facilities_detect(void)
104{
105	struct read_info_sccb *sccb;
106
107	sclp_read_info_early();
108	if (!early_read_info_sccb_valid)
109		return;
110
111	sccb = &early_read_info_sccb;
112	sclp_facilities = sccb->facilities;
113	sclp_fac84 = sccb->fac84;
114	rnmax = sccb->rnmax ? sccb->rnmax : sccb->rnmax2;
115	rzm = sccb->rnsize ? sccb->rnsize : sccb->rnsize2;
116	rzm <<= 20;
117}
118
119unsigned long long sclp_get_rnmax(void)
120{
121	return rnmax;
122}
123
124unsigned long long sclp_get_rzm(void)
125{
126	return rzm;
127}
128
129/*
130 * This function will be called after sclp_facilities_detect(), which gets
131 * called from early.c code. Therefore the sccb should have valid contents.
132 */
133void __init sclp_get_ipl_info(struct sclp_ipl_info *info)
134{
135	struct read_info_sccb *sccb;
136
137	if (!early_read_info_sccb_valid)
138		return;
139	sccb = &early_read_info_sccb;
140	info->is_valid = 1;
141	if (sccb->flags & 0x2)
142		info->has_dump = 1;
143	memcpy(&info->loadparm, &sccb->loadparm, LOADPARM_LEN);
144}
145
146static void sclp_sync_callback(struct sclp_req *req, void *data)
147{
148	struct completion *completion = data;
149
150	complete(completion);
151}
152
153static int do_sync_request(sclp_cmdw_t cmd, void *sccb)
 
 
 
 
 
154{
155	struct completion completion;
156	struct sclp_req *request;
157	int rc;
158
159	request = kzalloc(sizeof(*request), GFP_KERNEL);
160	if (!request)
161		return -ENOMEM;
 
 
162	request->command = cmd;
163	request->sccb = sccb;
164	request->status = SCLP_REQ_FILLED;
165	request->callback = sclp_sync_callback;
166	request->callback_data = &completion;
167	init_completion(&completion);
168
169	/* Perform sclp request. */
170	rc = sclp_add_request(request);
171	if (rc)
172		goto out;
173	wait_for_completion(&completion);
174
175	/* Check response. */
176	if (request->status != SCLP_REQ_DONE) {
177		pr_warning("sync request failed (cmd=0x%08x, "
178			   "status=0x%02x)\n", cmd, request->status);
179		rc = -EIO;
180	}
181out:
182	kfree(request);
183	return rc;
184}
185
186/*
187 * CPU configuration related functions.
188 */
189
190#define SCLP_CMDW_READ_CPU_INFO		0x00010001
191#define SCLP_CMDW_CONFIGURE_CPU		0x00110001
192#define SCLP_CMDW_DECONFIGURE_CPU	0x00100001
193
194struct read_cpu_info_sccb {
195	struct	sccb_header header;
196	u16	nr_configured;
197	u16	offset_configured;
198	u16	nr_standby;
199	u16	offset_standby;
200	u8	reserved[4096 - 16];
201} __attribute__((packed, aligned(PAGE_SIZE)));
202
203static void sclp_fill_cpu_info(struct sclp_cpu_info *info,
204			       struct read_cpu_info_sccb *sccb)
205{
206	char *page = (char *) sccb;
207
208	memset(info, 0, sizeof(*info));
209	info->configured = sccb->nr_configured;
210	info->standby = sccb->nr_standby;
211	info->combined = sccb->nr_configured + sccb->nr_standby;
212	info->has_cpu_type = sclp_fac84 & 0x1;
213	memcpy(&info->cpu, page + sccb->offset_configured,
214	       info->combined * sizeof(struct sclp_cpu_entry));
215}
216
217int sclp_get_cpu_info(struct sclp_cpu_info *info)
218{
219	int rc;
220	struct read_cpu_info_sccb *sccb;
221
222	if (!SCLP_HAS_CPU_INFO)
223		return -EOPNOTSUPP;
224	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
225	if (!sccb)
226		return -ENOMEM;
227	sccb->header.length = sizeof(*sccb);
228	rc = do_sync_request(SCLP_CMDW_READ_CPU_INFO, sccb);
 
229	if (rc)
230		goto out;
231	if (sccb->header.response_code != 0x0010) {
232		pr_warning("readcpuinfo failed (response=0x%04x)\n",
233			   sccb->header.response_code);
234		rc = -EIO;
235		goto out;
236	}
237	sclp_fill_cpu_info(info, sccb);
238out:
239	free_page((unsigned long) sccb);
240	return rc;
241}
242
243struct cpu_configure_sccb {
244	struct sccb_header header;
245} __attribute__((packed, aligned(8)));
246
247static int do_cpu_configure(sclp_cmdw_t cmd)
248{
249	struct cpu_configure_sccb *sccb;
250	int rc;
251
252	if (!SCLP_HAS_CPU_RECONFIG)
253		return -EOPNOTSUPP;
254	/*
255	 * This is not going to cross a page boundary since we force
256	 * kmalloc to have a minimum alignment of 8 bytes on s390.
257	 */
258	sccb = kzalloc(sizeof(*sccb), GFP_KERNEL | GFP_DMA);
259	if (!sccb)
260		return -ENOMEM;
261	sccb->header.length = sizeof(*sccb);
262	rc = do_sync_request(cmd, sccb);
263	if (rc)
264		goto out;
265	switch (sccb->header.response_code) {
266	case 0x0020:
267	case 0x0120:
268		break;
269	default:
270		pr_warning("configure cpu failed (cmd=0x%08x, "
271			   "response=0x%04x)\n", cmd,
272			   sccb->header.response_code);
273		rc = -EIO;
274		break;
275	}
276out:
277	kfree(sccb);
278	return rc;
279}
280
281int sclp_cpu_configure(u8 cpu)
282{
283	return do_cpu_configure(SCLP_CMDW_CONFIGURE_CPU | cpu << 8);
284}
285
286int sclp_cpu_deconfigure(u8 cpu)
287{
288	return do_cpu_configure(SCLP_CMDW_DECONFIGURE_CPU | cpu << 8);
289}
290
291#ifdef CONFIG_MEMORY_HOTPLUG
292
293static DEFINE_MUTEX(sclp_mem_mutex);
294static LIST_HEAD(sclp_mem_list);
295static u8 sclp_max_storage_id;
296static unsigned long sclp_storage_ids[256 / BITS_PER_LONG];
297static int sclp_mem_state_changed;
298
299struct memory_increment {
300	struct list_head list;
301	u16 rn;
302	int standby;
303	int usecount;
304};
305
306struct assign_storage_sccb {
307	struct sccb_header header;
308	u16 rn;
309} __packed;
310
311int arch_get_memory_phys_device(unsigned long start_pfn)
312{
313	if (!rzm)
314		return 0;
315	return PFN_PHYS(start_pfn) >> ilog2(rzm);
316}
317
318static unsigned long long rn2addr(u16 rn)
319{
320	return (unsigned long long) (rn - 1) * rzm;
321}
322
323static int do_assign_storage(sclp_cmdw_t cmd, u16 rn)
324{
325	struct assign_storage_sccb *sccb;
326	int rc;
327
328	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
329	if (!sccb)
330		return -ENOMEM;
331	sccb->header.length = PAGE_SIZE;
332	sccb->rn = rn;
333	rc = do_sync_request(cmd, sccb);
334	if (rc)
335		goto out;
336	switch (sccb->header.response_code) {
337	case 0x0020:
338	case 0x0120:
339		break;
340	default:
341		pr_warning("assign storage failed (cmd=0x%08x, "
342			   "response=0x%04x, rn=0x%04x)\n", cmd,
343			   sccb->header.response_code, rn);
344		rc = -EIO;
345		break;
346	}
347out:
348	free_page((unsigned long) sccb);
349	return rc;
350}
351
352static int sclp_assign_storage(u16 rn)
353{
354	return do_assign_storage(0x000d0001, rn);
 
 
 
 
 
 
 
 
355}
356
357static int sclp_unassign_storage(u16 rn)
358{
359	return do_assign_storage(0x000c0001, rn);
360}
361
362struct attach_storage_sccb {
363	struct sccb_header header;
364	u16 :16;
365	u16 assigned;
366	u32 :32;
367	u32 entries[0];
368} __packed;
369
370static int sclp_attach_storage(u8 id)
371{
372	struct attach_storage_sccb *sccb;
373	int rc;
374	int i;
375
376	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
377	if (!sccb)
378		return -ENOMEM;
379	sccb->header.length = PAGE_SIZE;
380	rc = do_sync_request(0x00080001 | id << 8, sccb);
 
381	if (rc)
382		goto out;
383	switch (sccb->header.response_code) {
384	case 0x0020:
385		set_bit(id, sclp_storage_ids);
386		for (i = 0; i < sccb->assigned; i++) {
387			if (sccb->entries[i])
388				sclp_unassign_storage(sccb->entries[i] >> 16);
389		}
390		break;
391	default:
392		rc = -EIO;
393		break;
394	}
395out:
396	free_page((unsigned long) sccb);
397	return rc;
398}
399
400static int sclp_mem_change_state(unsigned long start, unsigned long size,
401				 int online)
402{
403	struct memory_increment *incr;
404	unsigned long long istart;
405	int rc = 0;
406
407	list_for_each_entry(incr, &sclp_mem_list, list) {
408		istart = rn2addr(incr->rn);
409		if (start + size - 1 < istart)
410			break;
411		if (start > istart + rzm - 1)
412			continue;
413		if (online) {
414			if (incr->usecount++)
415				continue;
416			/*
417			 * Don't break the loop if one assign fails. Loop may
418			 * be walked again on CANCEL and we can't save
419			 * information if state changed before or not.
420			 * So continue and increase usecount for all increments.
421			 */
422			rc |= sclp_assign_storage(incr->rn);
423		} else {
424			if (--incr->usecount)
425				continue;
426			sclp_unassign_storage(incr->rn);
427		}
428	}
429	return rc ? -EIO : 0;
430}
431
432static int sclp_mem_notifier(struct notifier_block *nb,
433			     unsigned long action, void *data)
434{
435	unsigned long start, size;
436	struct memory_notify *arg;
437	unsigned char id;
438	int rc = 0;
439
440	arg = data;
441	start = arg->start_pfn << PAGE_SHIFT;
442	size = arg->nr_pages << PAGE_SHIFT;
443	mutex_lock(&sclp_mem_mutex);
444	for (id = 0; id <= sclp_max_storage_id; id++)
445		if (!test_bit(id, sclp_storage_ids))
446			sclp_attach_storage(id);
447	switch (action) {
448	case MEM_ONLINE:
449	case MEM_GOING_OFFLINE:
450	case MEM_CANCEL_OFFLINE:
451		break;
452	case MEM_GOING_ONLINE:
453		rc = sclp_mem_change_state(start, size, 1);
454		break;
455	case MEM_CANCEL_ONLINE:
456		sclp_mem_change_state(start, size, 0);
457		break;
458	case MEM_OFFLINE:
459		sclp_mem_change_state(start, size, 0);
460		break;
461	default:
462		rc = -EINVAL;
463		break;
464	}
465	if (!rc)
466		sclp_mem_state_changed = 1;
467	mutex_unlock(&sclp_mem_mutex);
468	return rc ? NOTIFY_BAD : NOTIFY_OK;
469}
470
471static struct notifier_block sclp_mem_nb = {
472	.notifier_call = sclp_mem_notifier,
473};
474
475static void __init add_memory_merged(u16 rn)
476{
477	static u16 first_rn, num;
478	unsigned long long start, size;
479
480	if (rn && first_rn && (first_rn + num == rn)) {
481		num++;
482		return;
483	}
484	if (!first_rn)
485		goto skip_add;
486	start = rn2addr(first_rn);
487	size = (unsigned long long ) num * rzm;
488	if (start >= VMEM_MAX_PHYS)
489		goto skip_add;
490	if (start + size > VMEM_MAX_PHYS)
491		size = VMEM_MAX_PHYS - start;
492	if (memory_end_set && (start >= memory_end))
493		goto skip_add;
494	if (memory_end_set && (start + size > memory_end))
495		size = memory_end - start;
496	add_memory(0, start, size);
497skip_add:
498	first_rn = rn;
499	num = 1;
500}
501
502static void __init sclp_add_standby_memory(void)
503{
504	struct memory_increment *incr;
505
506	list_for_each_entry(incr, &sclp_mem_list, list)
507		if (incr->standby)
508			add_memory_merged(incr->rn);
509	add_memory_merged(0);
510}
511
512static void __init insert_increment(u16 rn, int standby, int assigned)
513{
514	struct memory_increment *incr, *new_incr;
515	struct list_head *prev;
516	u16 last_rn;
517
518	new_incr = kzalloc(sizeof(*new_incr), GFP_KERNEL);
519	if (!new_incr)
520		return;
521	new_incr->rn = rn;
522	new_incr->standby = standby;
523	if (!standby)
524		new_incr->usecount = 1;
525	last_rn = 0;
526	prev = &sclp_mem_list;
527	list_for_each_entry(incr, &sclp_mem_list, list) {
528		if (assigned && incr->rn > rn)
529			break;
530		if (!assigned && incr->rn - last_rn > 1)
531			break;
532		last_rn = incr->rn;
533		prev = &incr->list;
534	}
535	if (!assigned)
536		new_incr->rn = last_rn + 1;
537	if (new_incr->rn > rnmax) {
538		kfree(new_incr);
539		return;
540	}
541	list_add(&new_incr->list, prev);
542}
543
544static int sclp_mem_freeze(struct device *dev)
545{
546	if (!sclp_mem_state_changed)
547		return 0;
548	pr_err("Memory hotplug state changed, suspend refused.\n");
549	return -EPERM;
550}
551
552struct read_storage_sccb {
553	struct sccb_header header;
554	u16 max_id;
555	u16 assigned;
556	u16 standby;
557	u16 :16;
558	u32 entries[0];
559} __packed;
560
561static const struct dev_pm_ops sclp_mem_pm_ops = {
562	.freeze		= sclp_mem_freeze,
563};
564
565static struct platform_driver sclp_mem_pdrv = {
566	.driver = {
567		.name	= "sclp_mem",
568		.pm	= &sclp_mem_pm_ops,
569	},
570};
571
572static int __init sclp_detect_standby_memory(void)
573{
574	struct platform_device *sclp_pdev;
575	struct read_storage_sccb *sccb;
576	int i, id, assigned, rc;
577
578	if (!early_read_info_sccb_valid)
579		return 0;
580	if ((sclp_facilities & 0xe00000000000ULL) != 0xe00000000000ULL)
581		return 0;
582	rc = -ENOMEM;
583	sccb = (void *) __get_free_page(GFP_KERNEL | GFP_DMA);
584	if (!sccb)
585		goto out;
586	assigned = 0;
587	for (id = 0; id <= sclp_max_storage_id; id++) {
588		memset(sccb, 0, PAGE_SIZE);
589		sccb->header.length = PAGE_SIZE;
590		rc = do_sync_request(0x00040001 | id << 8, sccb);
591		if (rc)
592			goto out;
593		switch (sccb->header.response_code) {
594		case 0x0010:
595			set_bit(id, sclp_storage_ids);
596			for (i = 0; i < sccb->assigned; i++) {
597				if (!sccb->entries[i])
598					continue;
599				assigned++;
600				insert_increment(sccb->entries[i] >> 16, 0, 1);
601			}
602			break;
603		case 0x0310:
604			break;
605		case 0x0410:
606			for (i = 0; i < sccb->assigned; i++) {
607				if (!sccb->entries[i])
608					continue;
609				assigned++;
610				insert_increment(sccb->entries[i] >> 16, 1, 1);
611			}
612			break;
613		default:
614			rc = -EIO;
615			break;
616		}
617		if (!rc)
618			sclp_max_storage_id = sccb->max_id;
619	}
620	if (rc || list_empty(&sclp_mem_list))
621		goto out;
622	for (i = 1; i <= rnmax - assigned; i++)
623		insert_increment(0, 1, 0);
624	rc = register_memory_notifier(&sclp_mem_nb);
625	if (rc)
626		goto out;
627	rc = platform_driver_register(&sclp_mem_pdrv);
628	if (rc)
629		goto out;
630	sclp_pdev = platform_device_register_simple("sclp_mem", -1, NULL, 0);
631	rc = IS_ERR(sclp_pdev) ? PTR_ERR(sclp_pdev) : 0;
632	if (rc)
633		goto out_driver;
634	sclp_add_standby_memory();
635	goto out;
636out_driver:
637	platform_driver_unregister(&sclp_mem_pdrv);
638out:
639	free_page((unsigned long) sccb);
640	return rc;
641}
642__initcall(sclp_detect_standby_memory);
643
644#endif /* CONFIG_MEMORY_HOTPLUG */
645
646/*
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
647 * Channel path configuration related functions.
648 */
649
650#define SCLP_CMDW_CONFIGURE_CHPATH		0x000f0001
651#define SCLP_CMDW_DECONFIGURE_CHPATH		0x000e0001
652#define SCLP_CMDW_READ_CHPATH_INFORMATION	0x00030001
653
654struct chp_cfg_sccb {
655	struct sccb_header header;
656	u8 ccm;
657	u8 reserved[6];
658	u8 cssid;
659} __attribute__((packed));
660
661static int do_chp_configure(sclp_cmdw_t cmd)
662{
663	struct chp_cfg_sccb *sccb;
664	int rc;
665
666	if (!SCLP_HAS_CHP_RECONFIG)
667		return -EOPNOTSUPP;
668	/* Prepare sccb. */
669	sccb = (struct chp_cfg_sccb *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
670	if (!sccb)
671		return -ENOMEM;
672	sccb->header.length = sizeof(*sccb);
673	rc = do_sync_request(cmd, sccb);
674	if (rc)
675		goto out;
676	switch (sccb->header.response_code) {
677	case 0x0020:
678	case 0x0120:
679	case 0x0440:
680	case 0x0450:
681		break;
682	default:
683		pr_warning("configure channel-path failed "
684			   "(cmd=0x%08x, response=0x%04x)\n", cmd,
685			   sccb->header.response_code);
686		rc = -EIO;
687		break;
688	}
689out:
690	free_page((unsigned long) sccb);
691	return rc;
692}
693
694/**
695 * sclp_chp_configure - perform configure channel-path sclp command
696 * @chpid: channel-path ID
697 *
698 * Perform configure channel-path command sclp command for specified chpid.
699 * Return 0 after command successfully finished, non-zero otherwise.
700 */
701int sclp_chp_configure(struct chp_id chpid)
702{
703	return do_chp_configure(SCLP_CMDW_CONFIGURE_CHPATH | chpid.id << 8);
704}
705
706/**
707 * sclp_chp_deconfigure - perform deconfigure channel-path sclp command
708 * @chpid: channel-path ID
709 *
710 * Perform deconfigure channel-path command sclp command for specified chpid
711 * and wait for completion. On success return 0. Return non-zero otherwise.
712 */
713int sclp_chp_deconfigure(struct chp_id chpid)
714{
715	return do_chp_configure(SCLP_CMDW_DECONFIGURE_CHPATH | chpid.id << 8);
716}
717
718struct chp_info_sccb {
719	struct sccb_header header;
720	u8 recognized[SCLP_CHP_INFO_MASK_SIZE];
721	u8 standby[SCLP_CHP_INFO_MASK_SIZE];
722	u8 configured[SCLP_CHP_INFO_MASK_SIZE];
723	u8 ccm;
724	u8 reserved[6];
725	u8 cssid;
726} __attribute__((packed));
727
728/**
729 * sclp_chp_read_info - perform read channel-path information sclp command
730 * @info: resulting channel-path information data
731 *
732 * Perform read channel-path information sclp command and wait for completion.
733 * On success, store channel-path information in @info and return 0. Return
734 * non-zero otherwise.
735 */
736int sclp_chp_read_info(struct sclp_chp_info *info)
737{
738	struct chp_info_sccb *sccb;
739	int rc;
740
741	if (!SCLP_HAS_CHP_INFO)
742		return -EOPNOTSUPP;
743	/* Prepare sccb. */
744	sccb = (struct chp_info_sccb *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
745	if (!sccb)
746		return -ENOMEM;
747	sccb->header.length = sizeof(*sccb);
748	rc = do_sync_request(SCLP_CMDW_READ_CHPATH_INFORMATION, sccb);
749	if (rc)
750		goto out;
751	if (sccb->header.response_code != 0x0010) {
752		pr_warning("read channel-path info failed "
753			   "(response=0x%04x)\n", sccb->header.response_code);
754		rc = -EIO;
755		goto out;
756	}
757	memcpy(info->recognized, sccb->recognized, SCLP_CHP_INFO_MASK_SIZE);
758	memcpy(info->standby, sccb->standby, SCLP_CHP_INFO_MASK_SIZE);
759	memcpy(info->configured, sccb->configured, SCLP_CHP_INFO_MASK_SIZE);
760out:
761	free_page((unsigned long) sccb);
762	return rc;
 
 
 
 
 
763}
v3.15
  1/*
  2 * Copyright IBM Corp. 2007,2012
  3 *
  4 * Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>,
  5 *	      Peter Oberparleiter <peter.oberparleiter@de.ibm.com>
  6 */
  7
  8#define KMSG_COMPONENT "sclp_cmd"
  9#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
 10
 11#include <linux/completion.h>
 12#include <linux/init.h>
 13#include <linux/errno.h>
 14#include <linux/err.h>
 15#include <linux/export.h>
 16#include <linux/slab.h>
 17#include <linux/string.h>
 18#include <linux/mm.h>
 19#include <linux/mmzone.h>
 20#include <linux/memory.h>
 21#include <linux/module.h>
 22#include <linux/platform_device.h>
 23#include <asm/ctl_reg.h>
 24#include <asm/chpid.h>
 
 25#include <asm/setup.h>
 26#include <asm/page.h>
 27#include <asm/sclp.h>
 28
 29#include "sclp.h"
 30
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 31static void sclp_sync_callback(struct sclp_req *req, void *data)
 32{
 33	struct completion *completion = data;
 34
 35	complete(completion);
 36}
 37
 38int sclp_sync_request(sclp_cmdw_t cmd, void *sccb)
 39{
 40	return sclp_sync_request_timeout(cmd, sccb, 0);
 41}
 42
 43int sclp_sync_request_timeout(sclp_cmdw_t cmd, void *sccb, int timeout)
 44{
 45	struct completion completion;
 46	struct sclp_req *request;
 47	int rc;
 48
 49	request = kzalloc(sizeof(*request), GFP_KERNEL);
 50	if (!request)
 51		return -ENOMEM;
 52	if (timeout)
 53		request->queue_timeout = timeout;
 54	request->command = cmd;
 55	request->sccb = sccb;
 56	request->status = SCLP_REQ_FILLED;
 57	request->callback = sclp_sync_callback;
 58	request->callback_data = &completion;
 59	init_completion(&completion);
 60
 61	/* Perform sclp request. */
 62	rc = sclp_add_request(request);
 63	if (rc)
 64		goto out;
 65	wait_for_completion(&completion);
 66
 67	/* Check response. */
 68	if (request->status != SCLP_REQ_DONE) {
 69		pr_warning("sync request failed (cmd=0x%08x, "
 70			   "status=0x%02x)\n", cmd, request->status);
 71		rc = -EIO;
 72	}
 73out:
 74	kfree(request);
 75	return rc;
 76}
 77
 78/*
 79 * CPU configuration related functions.
 80 */
 81
 82#define SCLP_CMDW_READ_CPU_INFO		0x00010001
 83#define SCLP_CMDW_CONFIGURE_CPU		0x00110001
 84#define SCLP_CMDW_DECONFIGURE_CPU	0x00100001
 85
 86struct read_cpu_info_sccb {
 87	struct	sccb_header header;
 88	u16	nr_configured;
 89	u16	offset_configured;
 90	u16	nr_standby;
 91	u16	offset_standby;
 92	u8	reserved[4096 - 16];
 93} __attribute__((packed, aligned(PAGE_SIZE)));
 94
 95static void sclp_fill_cpu_info(struct sclp_cpu_info *info,
 96			       struct read_cpu_info_sccb *sccb)
 97{
 98	char *page = (char *) sccb;
 99
100	memset(info, 0, sizeof(*info));
101	info->configured = sccb->nr_configured;
102	info->standby = sccb->nr_standby;
103	info->combined = sccb->nr_configured + sccb->nr_standby;
104	info->has_cpu_type = sclp_fac84 & 0x1;
105	memcpy(&info->cpu, page + sccb->offset_configured,
106	       info->combined * sizeof(struct sclp_cpu_entry));
107}
108
109int sclp_get_cpu_info(struct sclp_cpu_info *info)
110{
111	int rc;
112	struct read_cpu_info_sccb *sccb;
113
114	if (!SCLP_HAS_CPU_INFO)
115		return -EOPNOTSUPP;
116	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
117	if (!sccb)
118		return -ENOMEM;
119	sccb->header.length = sizeof(*sccb);
120	rc = sclp_sync_request_timeout(SCLP_CMDW_READ_CPU_INFO, sccb,
121				       SCLP_QUEUE_INTERVAL);
122	if (rc)
123		goto out;
124	if (sccb->header.response_code != 0x0010) {
125		pr_warning("readcpuinfo failed (response=0x%04x)\n",
126			   sccb->header.response_code);
127		rc = -EIO;
128		goto out;
129	}
130	sclp_fill_cpu_info(info, sccb);
131out:
132	free_page((unsigned long) sccb);
133	return rc;
134}
135
136struct cpu_configure_sccb {
137	struct sccb_header header;
138} __attribute__((packed, aligned(8)));
139
140static int do_cpu_configure(sclp_cmdw_t cmd)
141{
142	struct cpu_configure_sccb *sccb;
143	int rc;
144
145	if (!SCLP_HAS_CPU_RECONFIG)
146		return -EOPNOTSUPP;
147	/*
148	 * This is not going to cross a page boundary since we force
149	 * kmalloc to have a minimum alignment of 8 bytes on s390.
150	 */
151	sccb = kzalloc(sizeof(*sccb), GFP_KERNEL | GFP_DMA);
152	if (!sccb)
153		return -ENOMEM;
154	sccb->header.length = sizeof(*sccb);
155	rc = sclp_sync_request_timeout(cmd, sccb, SCLP_QUEUE_INTERVAL);
156	if (rc)
157		goto out;
158	switch (sccb->header.response_code) {
159	case 0x0020:
160	case 0x0120:
161		break;
162	default:
163		pr_warning("configure cpu failed (cmd=0x%08x, "
164			   "response=0x%04x)\n", cmd,
165			   sccb->header.response_code);
166		rc = -EIO;
167		break;
168	}
169out:
170	kfree(sccb);
171	return rc;
172}
173
174int sclp_cpu_configure(u8 cpu)
175{
176	return do_cpu_configure(SCLP_CMDW_CONFIGURE_CPU | cpu << 8);
177}
178
179int sclp_cpu_deconfigure(u8 cpu)
180{
181	return do_cpu_configure(SCLP_CMDW_DECONFIGURE_CPU | cpu << 8);
182}
183
184#ifdef CONFIG_MEMORY_HOTPLUG
185
186static DEFINE_MUTEX(sclp_mem_mutex);
187static LIST_HEAD(sclp_mem_list);
188static u8 sclp_max_storage_id;
189static unsigned long sclp_storage_ids[256 / BITS_PER_LONG];
190static int sclp_mem_state_changed;
191
192struct memory_increment {
193	struct list_head list;
194	u16 rn;
195	int standby;
 
196};
197
198struct assign_storage_sccb {
199	struct sccb_header header;
200	u16 rn;
201} __packed;
202
203int arch_get_memory_phys_device(unsigned long start_pfn)
204{
205	if (!sclp_rzm)
206		return 0;
207	return PFN_PHYS(start_pfn) >> ilog2(sclp_rzm);
208}
209
210static unsigned long long rn2addr(u16 rn)
211{
212	return (unsigned long long) (rn - 1) * sclp_rzm;
213}
214
215static int do_assign_storage(sclp_cmdw_t cmd, u16 rn)
216{
217	struct assign_storage_sccb *sccb;
218	int rc;
219
220	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
221	if (!sccb)
222		return -ENOMEM;
223	sccb->header.length = PAGE_SIZE;
224	sccb->rn = rn;
225	rc = sclp_sync_request_timeout(cmd, sccb, SCLP_QUEUE_INTERVAL);
226	if (rc)
227		goto out;
228	switch (sccb->header.response_code) {
229	case 0x0020:
230	case 0x0120:
231		break;
232	default:
233		pr_warning("assign storage failed (cmd=0x%08x, "
234			   "response=0x%04x, rn=0x%04x)\n", cmd,
235			   sccb->header.response_code, rn);
236		rc = -EIO;
237		break;
238	}
239out:
240	free_page((unsigned long) sccb);
241	return rc;
242}
243
244static int sclp_assign_storage(u16 rn)
245{
246	unsigned long long start;
247	int rc;
248
249	rc = do_assign_storage(0x000d0001, rn);
250	if (rc)
251		return rc;
252	start = rn2addr(rn);
253	storage_key_init_range(start, start + sclp_rzm);
254	return 0;
255}
256
257static int sclp_unassign_storage(u16 rn)
258{
259	return do_assign_storage(0x000c0001, rn);
260}
261
262struct attach_storage_sccb {
263	struct sccb_header header;
264	u16 :16;
265	u16 assigned;
266	u32 :32;
267	u32 entries[0];
268} __packed;
269
270static int sclp_attach_storage(u8 id)
271{
272	struct attach_storage_sccb *sccb;
273	int rc;
274	int i;
275
276	sccb = (void *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
277	if (!sccb)
278		return -ENOMEM;
279	sccb->header.length = PAGE_SIZE;
280	rc = sclp_sync_request_timeout(0x00080001 | id << 8, sccb,
281				       SCLP_QUEUE_INTERVAL);
282	if (rc)
283		goto out;
284	switch (sccb->header.response_code) {
285	case 0x0020:
286		set_bit(id, sclp_storage_ids);
287		for (i = 0; i < sccb->assigned; i++) {
288			if (sccb->entries[i])
289				sclp_unassign_storage(sccb->entries[i] >> 16);
290		}
291		break;
292	default:
293		rc = -EIO;
294		break;
295	}
296out:
297	free_page((unsigned long) sccb);
298	return rc;
299}
300
301static int sclp_mem_change_state(unsigned long start, unsigned long size,
302				 int online)
303{
304	struct memory_increment *incr;
305	unsigned long long istart;
306	int rc = 0;
307
308	list_for_each_entry(incr, &sclp_mem_list, list) {
309		istart = rn2addr(incr->rn);
310		if (start + size - 1 < istart)
311			break;
312		if (start > istart + sclp_rzm - 1)
313			continue;
314		if (online)
 
 
 
 
 
 
 
 
315			rc |= sclp_assign_storage(incr->rn);
316		else
 
 
317			sclp_unassign_storage(incr->rn);
 
318	}
319	return rc ? -EIO : 0;
320}
321
322static int sclp_mem_notifier(struct notifier_block *nb,
323			     unsigned long action, void *data)
324{
325	unsigned long start, size;
326	struct memory_notify *arg;
327	unsigned char id;
328	int rc = 0;
329
330	arg = data;
331	start = arg->start_pfn << PAGE_SHIFT;
332	size = arg->nr_pages << PAGE_SHIFT;
333	mutex_lock(&sclp_mem_mutex);
334	for_each_clear_bit(id, sclp_storage_ids, sclp_max_storage_id + 1)
335		sclp_attach_storage(id);
 
336	switch (action) {
337	case MEM_ONLINE:
338	case MEM_GOING_OFFLINE:
339	case MEM_CANCEL_OFFLINE:
340		break;
341	case MEM_GOING_ONLINE:
342		rc = sclp_mem_change_state(start, size, 1);
343		break;
344	case MEM_CANCEL_ONLINE:
345		sclp_mem_change_state(start, size, 0);
346		break;
347	case MEM_OFFLINE:
348		sclp_mem_change_state(start, size, 0);
349		break;
350	default:
351		rc = -EINVAL;
352		break;
353	}
354	if (!rc)
355		sclp_mem_state_changed = 1;
356	mutex_unlock(&sclp_mem_mutex);
357	return rc ? NOTIFY_BAD : NOTIFY_OK;
358}
359
360static struct notifier_block sclp_mem_nb = {
361	.notifier_call = sclp_mem_notifier,
362};
363
364static void __init add_memory_merged(u16 rn)
365{
366	static u16 first_rn, num;
367	unsigned long long start, size;
368
369	if (rn && first_rn && (first_rn + num == rn)) {
370		num++;
371		return;
372	}
373	if (!first_rn)
374		goto skip_add;
375	start = rn2addr(first_rn);
376	size = (unsigned long long) num * sclp_rzm;
377	if (start >= VMEM_MAX_PHYS)
378		goto skip_add;
379	if (start + size > VMEM_MAX_PHYS)
380		size = VMEM_MAX_PHYS - start;
381	if (memory_end_set && (start >= memory_end))
382		goto skip_add;
383	if (memory_end_set && (start + size > memory_end))
384		size = memory_end - start;
385	add_memory(0, start, size);
386skip_add:
387	first_rn = rn;
388	num = 1;
389}
390
391static void __init sclp_add_standby_memory(void)
392{
393	struct memory_increment *incr;
394
395	list_for_each_entry(incr, &sclp_mem_list, list)
396		if (incr->standby)
397			add_memory_merged(incr->rn);
398	add_memory_merged(0);
399}
400
401static void __init insert_increment(u16 rn, int standby, int assigned)
402{
403	struct memory_increment *incr, *new_incr;
404	struct list_head *prev;
405	u16 last_rn;
406
407	new_incr = kzalloc(sizeof(*new_incr), GFP_KERNEL);
408	if (!new_incr)
409		return;
410	new_incr->rn = rn;
411	new_incr->standby = standby;
 
 
412	last_rn = 0;
413	prev = &sclp_mem_list;
414	list_for_each_entry(incr, &sclp_mem_list, list) {
415		if (assigned && incr->rn > rn)
416			break;
417		if (!assigned && incr->rn - last_rn > 1)
418			break;
419		last_rn = incr->rn;
420		prev = &incr->list;
421	}
422	if (!assigned)
423		new_incr->rn = last_rn + 1;
424	if (new_incr->rn > sclp_rnmax) {
425		kfree(new_incr);
426		return;
427	}
428	list_add(&new_incr->list, prev);
429}
430
431static int sclp_mem_freeze(struct device *dev)
432{
433	if (!sclp_mem_state_changed)
434		return 0;
435	pr_err("Memory hotplug state changed, suspend refused.\n");
436	return -EPERM;
437}
438
439struct read_storage_sccb {
440	struct sccb_header header;
441	u16 max_id;
442	u16 assigned;
443	u16 standby;
444	u16 :16;
445	u32 entries[0];
446} __packed;
447
448static const struct dev_pm_ops sclp_mem_pm_ops = {
449	.freeze		= sclp_mem_freeze,
450};
451
452static struct platform_driver sclp_mem_pdrv = {
453	.driver = {
454		.name	= "sclp_mem",
455		.pm	= &sclp_mem_pm_ops,
456	},
457};
458
459static int __init sclp_detect_standby_memory(void)
460{
461	struct platform_device *sclp_pdev;
462	struct read_storage_sccb *sccb;
463	int i, id, assigned, rc;
464
465	if (OLDMEM_BASE) /* No standby memory in kdump mode */
466		return 0;
467	if ((sclp_facilities & 0xe00000000000ULL) != 0xe00000000000ULL)
468		return 0;
469	rc = -ENOMEM;
470	sccb = (void *) __get_free_page(GFP_KERNEL | GFP_DMA);
471	if (!sccb)
472		goto out;
473	assigned = 0;
474	for (id = 0; id <= sclp_max_storage_id; id++) {
475		memset(sccb, 0, PAGE_SIZE);
476		sccb->header.length = PAGE_SIZE;
477		rc = sclp_sync_request(0x00040001 | id << 8, sccb);
478		if (rc)
479			goto out;
480		switch (sccb->header.response_code) {
481		case 0x0010:
482			set_bit(id, sclp_storage_ids);
483			for (i = 0; i < sccb->assigned; i++) {
484				if (!sccb->entries[i])
485					continue;
486				assigned++;
487				insert_increment(sccb->entries[i] >> 16, 0, 1);
488			}
489			break;
490		case 0x0310:
491			break;
492		case 0x0410:
493			for (i = 0; i < sccb->assigned; i++) {
494				if (!sccb->entries[i])
495					continue;
496				assigned++;
497				insert_increment(sccb->entries[i] >> 16, 1, 1);
498			}
499			break;
500		default:
501			rc = -EIO;
502			break;
503		}
504		if (!rc)
505			sclp_max_storage_id = sccb->max_id;
506	}
507	if (rc || list_empty(&sclp_mem_list))
508		goto out;
509	for (i = 1; i <= sclp_rnmax - assigned; i++)
510		insert_increment(0, 1, 0);
511	rc = register_memory_notifier(&sclp_mem_nb);
512	if (rc)
513		goto out;
514	rc = platform_driver_register(&sclp_mem_pdrv);
515	if (rc)
516		goto out;
517	sclp_pdev = platform_device_register_simple("sclp_mem", -1, NULL, 0);
518	rc = PTR_ERR_OR_ZERO(sclp_pdev);
519	if (rc)
520		goto out_driver;
521	sclp_add_standby_memory();
522	goto out;
523out_driver:
524	platform_driver_unregister(&sclp_mem_pdrv);
525out:
526	free_page((unsigned long) sccb);
527	return rc;
528}
529__initcall(sclp_detect_standby_memory);
530
531#endif /* CONFIG_MEMORY_HOTPLUG */
532
533/*
534 * PCI I/O adapter configuration related functions.
535 */
536#define SCLP_CMDW_CONFIGURE_PCI			0x001a0001
537#define SCLP_CMDW_DECONFIGURE_PCI		0x001b0001
538
539#define SCLP_RECONFIG_PCI_ATPYE			2
540
541struct pci_cfg_sccb {
542	struct sccb_header header;
543	u8 atype;		/* adapter type */
544	u8 reserved1;
545	u16 reserved2;
546	u32 aid;		/* adapter identifier */
547} __packed;
548
549static int do_pci_configure(sclp_cmdw_t cmd, u32 fid)
550{
551	struct pci_cfg_sccb *sccb;
552	int rc;
553
554	if (!SCLP_HAS_PCI_RECONFIG)
555		return -EOPNOTSUPP;
556
557	sccb = (struct pci_cfg_sccb *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
558	if (!sccb)
559		return -ENOMEM;
560
561	sccb->header.length = PAGE_SIZE;
562	sccb->atype = SCLP_RECONFIG_PCI_ATPYE;
563	sccb->aid = fid;
564	rc = sclp_sync_request(cmd, sccb);
565	if (rc)
566		goto out;
567	switch (sccb->header.response_code) {
568	case 0x0020:
569	case 0x0120:
570		break;
571	default:
572		pr_warn("configure PCI I/O adapter failed: cmd=0x%08x  response=0x%04x\n",
573			cmd, sccb->header.response_code);
574		rc = -EIO;
575		break;
576	}
577out:
578	free_page((unsigned long) sccb);
579	return rc;
580}
581
582int sclp_pci_configure(u32 fid)
583{
584	return do_pci_configure(SCLP_CMDW_CONFIGURE_PCI, fid);
585}
586EXPORT_SYMBOL(sclp_pci_configure);
587
588int sclp_pci_deconfigure(u32 fid)
589{
590	return do_pci_configure(SCLP_CMDW_DECONFIGURE_PCI, fid);
591}
592EXPORT_SYMBOL(sclp_pci_deconfigure);
593
594/*
595 * Channel path configuration related functions.
596 */
597
598#define SCLP_CMDW_CONFIGURE_CHPATH		0x000f0001
599#define SCLP_CMDW_DECONFIGURE_CHPATH		0x000e0001
600#define SCLP_CMDW_READ_CHPATH_INFORMATION	0x00030001
601
602struct chp_cfg_sccb {
603	struct sccb_header header;
604	u8 ccm;
605	u8 reserved[6];
606	u8 cssid;
607} __attribute__((packed));
608
609static int do_chp_configure(sclp_cmdw_t cmd)
610{
611	struct chp_cfg_sccb *sccb;
612	int rc;
613
614	if (!SCLP_HAS_CHP_RECONFIG)
615		return -EOPNOTSUPP;
616	/* Prepare sccb. */
617	sccb = (struct chp_cfg_sccb *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
618	if (!sccb)
619		return -ENOMEM;
620	sccb->header.length = sizeof(*sccb);
621	rc = sclp_sync_request(cmd, sccb);
622	if (rc)
623		goto out;
624	switch (sccb->header.response_code) {
625	case 0x0020:
626	case 0x0120:
627	case 0x0440:
628	case 0x0450:
629		break;
630	default:
631		pr_warning("configure channel-path failed "
632			   "(cmd=0x%08x, response=0x%04x)\n", cmd,
633			   sccb->header.response_code);
634		rc = -EIO;
635		break;
636	}
637out:
638	free_page((unsigned long) sccb);
639	return rc;
640}
641
642/**
643 * sclp_chp_configure - perform configure channel-path sclp command
644 * @chpid: channel-path ID
645 *
646 * Perform configure channel-path command sclp command for specified chpid.
647 * Return 0 after command successfully finished, non-zero otherwise.
648 */
649int sclp_chp_configure(struct chp_id chpid)
650{
651	return do_chp_configure(SCLP_CMDW_CONFIGURE_CHPATH | chpid.id << 8);
652}
653
654/**
655 * sclp_chp_deconfigure - perform deconfigure channel-path sclp command
656 * @chpid: channel-path ID
657 *
658 * Perform deconfigure channel-path command sclp command for specified chpid
659 * and wait for completion. On success return 0. Return non-zero otherwise.
660 */
661int sclp_chp_deconfigure(struct chp_id chpid)
662{
663	return do_chp_configure(SCLP_CMDW_DECONFIGURE_CHPATH | chpid.id << 8);
664}
665
666struct chp_info_sccb {
667	struct sccb_header header;
668	u8 recognized[SCLP_CHP_INFO_MASK_SIZE];
669	u8 standby[SCLP_CHP_INFO_MASK_SIZE];
670	u8 configured[SCLP_CHP_INFO_MASK_SIZE];
671	u8 ccm;
672	u8 reserved[6];
673	u8 cssid;
674} __attribute__((packed));
675
676/**
677 * sclp_chp_read_info - perform read channel-path information sclp command
678 * @info: resulting channel-path information data
679 *
680 * Perform read channel-path information sclp command and wait for completion.
681 * On success, store channel-path information in @info and return 0. Return
682 * non-zero otherwise.
683 */
684int sclp_chp_read_info(struct sclp_chp_info *info)
685{
686	struct chp_info_sccb *sccb;
687	int rc;
688
689	if (!SCLP_HAS_CHP_INFO)
690		return -EOPNOTSUPP;
691	/* Prepare sccb. */
692	sccb = (struct chp_info_sccb *) get_zeroed_page(GFP_KERNEL | GFP_DMA);
693	if (!sccb)
694		return -ENOMEM;
695	sccb->header.length = sizeof(*sccb);
696	rc = sclp_sync_request(SCLP_CMDW_READ_CHPATH_INFORMATION, sccb);
697	if (rc)
698		goto out;
699	if (sccb->header.response_code != 0x0010) {
700		pr_warning("read channel-path info failed "
701			   "(response=0x%04x)\n", sccb->header.response_code);
702		rc = -EIO;
703		goto out;
704	}
705	memcpy(info->recognized, sccb->recognized, SCLP_CHP_INFO_MASK_SIZE);
706	memcpy(info->standby, sccb->standby, SCLP_CHP_INFO_MASK_SIZE);
707	memcpy(info->configured, sccb->configured, SCLP_CHP_INFO_MASK_SIZE);
708out:
709	free_page((unsigned long) sccb);
710	return rc;
711}
712
713bool sclp_has_sprp(void)
714{
715	return !!(sclp_fac84 & 0x2);
716}