xref: /openbmc/linux/drivers/s390/char/zcore.c (revision 64c70b1c)
1 /*
2  * zcore module to export memory content and register sets for creating system
3  * dumps on SCSI disks (zfcpdump). The "zcore/mem" debugfs file shows the same
4  * dump format as s390 standalone dumps.
5  *
6  * For more information please refer to Documentation/s390/zfcpdump.txt
7  *
8  * Copyright IBM Corp. 2003,2007
9  * Author(s): Michael Holzheu
10  */
11 
12 #include <linux/init.h>
13 #include <linux/miscdevice.h>
14 #include <linux/utsname.h>
15 #include <linux/debugfs.h>
16 #include <asm/ipl.h>
17 #include <asm/sclp.h>
18 #include <asm/setup.h>
19 #include <asm/sigp.h>
20 #include <asm/uaccess.h>
21 #include <asm/debug.h>
22 #include <asm/processor.h>
23 #include <asm/irqflags.h>
24 #include "sclp.h"
25 
26 #define TRACE(x...) debug_sprintf_event(zcore_dbf, 1, x)
27 #define MSG(x...) printk( KERN_ALERT x )
28 #define ERROR_MSG(x...) printk ( KERN_ALERT "DUMP: " x )
29 
30 #define TO_USER		0
31 #define TO_KERNEL	1
32 
33 enum arch_id {
34 	ARCH_S390	= 0,
35 	ARCH_S390X	= 1,
36 };
37 
38 /* dump system info */
39 
40 struct sys_info {
41 	enum arch_id	arch;
42 	unsigned long	sa_base;
43 	u32		sa_size;
44 	int		cpu_map[NR_CPUS];
45 	unsigned long	mem_size;
46 	union save_area	lc_mask;
47 };
48 
49 static struct sys_info sys_info;
50 static struct debug_info *zcore_dbf;
51 static int hsa_available;
52 static struct dentry *zcore_dir;
53 static struct dentry *zcore_file;
54 
55 /*
56  * Copy memory from HSA to kernel or user memory (not reentrant):
57  *
58  * @dest:  Kernel or user buffer where memory should be copied to
59  * @src:   Start address within HSA where data should be copied
60  * @count: Size of buffer, which should be copied
61  * @mode:  Either TO_KERNEL or TO_USER
62  */
63 static int memcpy_hsa(void *dest, unsigned long src, size_t count, int mode)
64 {
65 	int offs, blk_num;
66 	static char buf[PAGE_SIZE] __attribute__((__aligned__(PAGE_SIZE)));
67 
68 	if (count == 0)
69 		return 0;
70 
71 	/* copy first block */
72 	offs = 0;
73 	if ((src % PAGE_SIZE) != 0) {
74 		blk_num = src / PAGE_SIZE + 2;
75 		if (sclp_sdias_copy(buf, blk_num, 1)) {
76 			TRACE("sclp_sdias_copy() failed\n");
77 			return -EIO;
78 		}
79 		offs = min((PAGE_SIZE - (src % PAGE_SIZE)), count);
80 		if (mode == TO_USER) {
81 			if (copy_to_user((__force __user void*) dest,
82 					 buf + (src % PAGE_SIZE), offs))
83 				return -EFAULT;
84 		} else
85 			memcpy(dest, buf + (src % PAGE_SIZE), offs);
86 	}
87 	if (offs == count)
88 		goto out;
89 
90 	/* copy middle */
91 	for (; (offs + PAGE_SIZE) <= count; offs += PAGE_SIZE) {
92 		blk_num = (src + offs) / PAGE_SIZE + 2;
93 		if (sclp_sdias_copy(buf, blk_num, 1)) {
94 			TRACE("sclp_sdias_copy() failed\n");
95 			return -EIO;
96 		}
97 		if (mode == TO_USER) {
98 			if (copy_to_user((__force __user void*) dest + offs,
99 					 buf, PAGE_SIZE))
100 				return -EFAULT;
101 		} else
102 			memcpy(dest + offs, buf, PAGE_SIZE);
103 	}
104 	if (offs == count)
105 		goto out;
106 
107 	/* copy last block */
108 	blk_num = (src + offs) / PAGE_SIZE + 2;
109 	if (sclp_sdias_copy(buf, blk_num, 1)) {
110 		TRACE("sclp_sdias_copy() failed\n");
111 		return -EIO;
112 	}
113 	if (mode == TO_USER) {
114 		if (copy_to_user((__force __user void*) dest + offs, buf,
115 				 PAGE_SIZE))
116 			return -EFAULT;
117 	} else
118 		memcpy(dest + offs, buf, count - offs);
119 out:
120 	return 0;
121 }
122 
123 static int memcpy_hsa_user(void __user *dest, unsigned long src, size_t count)
124 {
125 	return memcpy_hsa((void __force *) dest, src, count, TO_USER);
126 }
127 
128 static int memcpy_hsa_kernel(void *dest, unsigned long src, size_t count)
129 {
130 	return memcpy_hsa(dest, src, count, TO_KERNEL);
131 }
132 
133 static int memcpy_real(void *dest, unsigned long src, size_t count)
134 {
135 	unsigned long flags;
136 	int rc = -EFAULT;
137 	register unsigned long _dest asm("2") = (unsigned long) dest;
138 	register unsigned long _len1 asm("3") = (unsigned long) count;
139 	register unsigned long _src  asm("4") = src;
140 	register unsigned long _len2 asm("5") = (unsigned long) count;
141 
142 	if (count == 0)
143 		return 0;
144 	flags = __raw_local_irq_stnsm(0xf8); /* switch to real mode */
145 	asm volatile (
146 		"0:	mvcle	%1,%2,0x0\n"
147 		"1:	jo	0b\n"
148 		"	lhi	%0,0x0\n"
149 		"2:\n"
150 		EX_TABLE(1b,2b)
151 		: "+d" (rc)
152 		: "d" (_dest), "d" (_src), "d" (_len1), "d" (_len2)
153 		: "cc", "memory");
154 	__raw_local_irq_ssm(flags);
155 
156 	return rc;
157 }
158 
159 static int memcpy_real_user(void __user *dest, unsigned long src, size_t count)
160 {
161 	static char buf[4096];
162 	int offs = 0, size;
163 
164 	while (offs < count) {
165 		size = min(sizeof(buf), count - offs);
166 		if (memcpy_real(buf, src + offs, size))
167 			return -EFAULT;
168 		if (copy_to_user(dest + offs, buf, size))
169 			return -EFAULT;
170 		offs += size;
171 	}
172 	return 0;
173 }
174 
175 #ifdef __s390x__
176 /*
177  * Convert s390x (64 bit) cpu info to s390 (32 bit) cpu info
178  */
179 static void __init s390x_to_s390_regs(union save_area *out, union save_area *in,
180 				      int cpu)
181 {
182 	int i;
183 
184 	for (i = 0; i < 16; i++) {
185 		out->s390.gp_regs[i] = in->s390x.gp_regs[i] & 0x00000000ffffffff;
186 		out->s390.acc_regs[i] = in->s390x.acc_regs[i];
187 		out->s390.ctrl_regs[i] =
188 			in->s390x.ctrl_regs[i] & 0x00000000ffffffff;
189 	}
190 	/* locore for 31 bit has only space for fpregs 0,2,4,6 */
191 	out->s390.fp_regs[0] = in->s390x.fp_regs[0];
192 	out->s390.fp_regs[1] = in->s390x.fp_regs[2];
193 	out->s390.fp_regs[2] = in->s390x.fp_regs[4];
194 	out->s390.fp_regs[3] = in->s390x.fp_regs[6];
195 	memcpy(&(out->s390.psw[0]), &(in->s390x.psw[0]), 4);
196 	out->s390.psw[1] |= 0x8; /* set bit 12 */
197 	memcpy(&(out->s390.psw[4]),&(in->s390x.psw[12]), 4);
198 	out->s390.psw[4] |= 0x80; /* set (31bit) addressing bit */
199 	out->s390.pref_reg = in->s390x.pref_reg;
200 	out->s390.timer = in->s390x.timer;
201 	out->s390.clk_cmp = in->s390x.clk_cmp;
202 }
203 
204 static void __init s390x_to_s390_save_areas(void)
205 {
206 	int i = 1;
207 	static union save_area tmp;
208 
209 	while (zfcpdump_save_areas[i]) {
210 		s390x_to_s390_regs(&tmp, zfcpdump_save_areas[i], i);
211 		memcpy(zfcpdump_save_areas[i], &tmp, sizeof(tmp));
212 		i++;
213 	}
214 }
215 
216 #endif /* __s390x__ */
217 
218 static int __init init_cpu_info(enum arch_id arch)
219 {
220 	union save_area *sa;
221 
222 	/* get info for boot cpu from lowcore, stored in the HSA */
223 
224 	sa = kmalloc(sizeof(*sa), GFP_KERNEL);
225 	if (!sa) {
226 		ERROR_MSG("kmalloc failed: %s: %i\n",__FUNCTION__, __LINE__);
227 		return -ENOMEM;
228 	}
229 	if (memcpy_hsa_kernel(sa, sys_info.sa_base, sys_info.sa_size) < 0) {
230 		ERROR_MSG("could not copy from HSA\n");
231 		kfree(sa);
232 		return -EIO;
233 	}
234 	zfcpdump_save_areas[0] = sa;
235 
236 #ifdef __s390x__
237 	/* convert s390x regs to s390, if we are dumping an s390 Linux */
238 
239 	if (arch == ARCH_S390)
240 		s390x_to_s390_save_areas();
241 #endif
242 
243 	return 0;
244 }
245 
246 static DEFINE_MUTEX(zcore_mutex);
247 
248 #define DUMP_VERSION	0x3
249 #define DUMP_MAGIC	0xa8190173618f23fdULL
250 #define DUMP_ARCH_S390X	2
251 #define DUMP_ARCH_S390	1
252 #define HEADER_SIZE	4096
253 
254 /* dump header dumped according to s390 crash dump format */
255 
256 struct zcore_header {
257 	u64 magic;
258 	u32 version;
259 	u32 header_size;
260 	u32 dump_level;
261 	u32 page_size;
262 	u64 mem_size;
263 	u64 mem_start;
264 	u64 mem_end;
265 	u32 num_pages;
266 	u32 pad1;
267 	u64 tod;
268 	cpuid_t cpu_id;
269 	u32 arch_id;
270 	u32 volnr;
271 	u32 build_arch;
272 	u64 rmem_size;
273 	char pad2[4016];
274 } __attribute__((packed,__aligned__(16)));
275 
276 static struct zcore_header zcore_header = {
277 	.magic		= DUMP_MAGIC,
278 	.version	= DUMP_VERSION,
279 	.header_size	= 4096,
280 	.dump_level	= 0,
281 	.page_size	= PAGE_SIZE,
282 	.mem_start	= 0,
283 #ifdef __s390x__
284 	.build_arch	= DUMP_ARCH_S390X,
285 #else
286 	.build_arch	= DUMP_ARCH_S390,
287 #endif
288 };
289 
290 /*
291  * Copy lowcore info to buffer. Use map in order to copy only register parts.
292  *
293  * @buf:    User buffer
294  * @sa:     Pointer to save area
295  * @sa_off: Offset in save area to copy
296  * @len:    Number of bytes to copy
297  */
298 static int copy_lc(void __user *buf, void *sa, int sa_off, int len)
299 {
300 	int i;
301 	char *lc_mask = (char*)&sys_info.lc_mask;
302 
303 	for (i = 0; i < len; i++) {
304 		if (!lc_mask[i + sa_off])
305 			continue;
306 		if (copy_to_user(buf + i, sa + sa_off + i, 1))
307 			return -EFAULT;
308 	}
309 	return 0;
310 }
311 
312 /*
313  * Copy lowcores info to memory, if necessary
314  *
315  * @buf:   User buffer
316  * @addr:  Start address of buffer in dump memory
317  * @count: Size of buffer
318  */
319 static int zcore_add_lc(char __user *buf, unsigned long start, size_t count)
320 {
321 	unsigned long end;
322 	int i = 0;
323 
324 	if (count == 0)
325 		return 0;
326 
327 	end = start + count;
328 	while (zfcpdump_save_areas[i]) {
329 		unsigned long cp_start, cp_end; /* copy range */
330 		unsigned long sa_start, sa_end; /* save area range */
331 		unsigned long prefix;
332 		unsigned long sa_off, len, buf_off;
333 
334 		if (sys_info.arch == ARCH_S390)
335 			prefix = zfcpdump_save_areas[i]->s390.pref_reg;
336 		else
337 			prefix = zfcpdump_save_areas[i]->s390x.pref_reg;
338 
339 		sa_start = prefix + sys_info.sa_base;
340 		sa_end = prefix + sys_info.sa_base + sys_info.sa_size;
341 
342 		if ((end < sa_start) || (start > sa_end))
343 			goto next;
344 		cp_start = max(start, sa_start);
345 		cp_end = min(end, sa_end);
346 
347 		buf_off = cp_start - start;
348 		sa_off = cp_start - sa_start;
349 		len = cp_end - cp_start;
350 
351 		TRACE("copy_lc for: %lx\n", start);
352 		if (copy_lc(buf + buf_off, zfcpdump_save_areas[i], sa_off, len))
353 			return -EFAULT;
354 next:
355 		i++;
356 	}
357 	return 0;
358 }
359 
360 /*
361  * Read routine for zcore character device
362  * First 4K are dump header
363  * Next 32MB are HSA Memory
364  * Rest is read from absolute Memory
365  */
366 static ssize_t zcore_read(struct file *file, char __user *buf, size_t count,
367 			  loff_t *ppos)
368 {
369 	unsigned long mem_start; /* Start address in memory */
370 	size_t mem_offs;	 /* Offset in dump memory */
371 	size_t hdr_count;	 /* Size of header part of output buffer */
372 	size_t size;
373 	int rc;
374 
375 	mutex_lock(&zcore_mutex);
376 
377 	if (*ppos > (sys_info.mem_size + HEADER_SIZE)) {
378 		rc = -EINVAL;
379 		goto fail;
380 	}
381 
382 	count = min(count, (size_t) (sys_info.mem_size + HEADER_SIZE - *ppos));
383 
384 	/* Copy dump header */
385 	if (*ppos < HEADER_SIZE) {
386 		size = min(count, (size_t) (HEADER_SIZE - *ppos));
387 		if (copy_to_user(buf, &zcore_header + *ppos, size)) {
388 			rc = -EFAULT;
389 			goto fail;
390 		}
391 		hdr_count = size;
392 		mem_start = 0;
393 	} else {
394 		hdr_count = 0;
395 		mem_start = *ppos - HEADER_SIZE;
396 	}
397 
398 	mem_offs = 0;
399 
400 	/* Copy from HSA data */
401 	if (*ppos < (ZFCPDUMP_HSA_SIZE + HEADER_SIZE)) {
402 		size = min((count - hdr_count), (size_t) (ZFCPDUMP_HSA_SIZE
403 			   - mem_start));
404 		rc = memcpy_hsa_user(buf + hdr_count, mem_start, size);
405 		if (rc)
406 			goto fail;
407 
408 		mem_offs += size;
409 	}
410 
411 	/* Copy from real mem */
412 	size = count - mem_offs - hdr_count;
413 	rc = memcpy_real_user(buf + hdr_count + mem_offs, mem_start + mem_offs,
414 			      size);
415 	if (rc)
416 		goto fail;
417 
418 	/*
419 	 * Since s390 dump analysis tools like lcrash or crash
420 	 * expect register sets in the prefix pages of the cpus,
421 	 * we copy them into the read buffer, if necessary.
422 	 * buf + hdr_count: Start of memory part of output buffer
423 	 * mem_start: Start memory address to copy from
424 	 * count - hdr_count: Size of memory area to copy
425 	 */
426 	if (zcore_add_lc(buf + hdr_count, mem_start, count - hdr_count)) {
427 		rc = -EFAULT;
428 		goto fail;
429 	}
430 	*ppos += count;
431 fail:
432 	mutex_unlock(&zcore_mutex);
433 	return (rc < 0) ? rc : count;
434 }
435 
436 static int zcore_open(struct inode *inode, struct file *filp)
437 {
438 	if (!hsa_available)
439 		return -ENODATA;
440 	else
441 		return capable(CAP_SYS_RAWIO) ? 0 : -EPERM;
442 }
443 
444 static int zcore_release(struct inode *inode, struct file *filep)
445 {
446 	diag308(DIAG308_REL_HSA, NULL);
447 	hsa_available = 0;
448 	return 0;
449 }
450 
451 static loff_t zcore_lseek(struct file *file, loff_t offset, int orig)
452 {
453 	loff_t rc;
454 
455 	mutex_lock(&zcore_mutex);
456 	switch (orig) {
457 	case 0:
458 		file->f_pos = offset;
459 		rc = file->f_pos;
460 		break;
461 	case 1:
462 		file->f_pos += offset;
463 		rc = file->f_pos;
464 		break;
465 	default:
466 		rc = -EINVAL;
467 	}
468 	mutex_unlock(&zcore_mutex);
469 	return rc;
470 }
471 
472 static struct file_operations zcore_fops = {
473 	.owner		= THIS_MODULE,
474 	.llseek		= zcore_lseek,
475 	.read		= zcore_read,
476 	.open		= zcore_open,
477 	.release	= zcore_release,
478 };
479 
480 
481 static void __init set_s390_lc_mask(union save_area *map)
482 {
483 	memset(&map->s390.ext_save, 0xff, sizeof(map->s390.ext_save));
484 	memset(&map->s390.timer, 0xff, sizeof(map->s390.timer));
485 	memset(&map->s390.clk_cmp, 0xff, sizeof(map->s390.clk_cmp));
486 	memset(&map->s390.psw, 0xff, sizeof(map->s390.psw));
487 	memset(&map->s390.pref_reg, 0xff, sizeof(map->s390.pref_reg));
488 	memset(&map->s390.acc_regs, 0xff, sizeof(map->s390.acc_regs));
489 	memset(&map->s390.fp_regs, 0xff, sizeof(map->s390.fp_regs));
490 	memset(&map->s390.gp_regs, 0xff, sizeof(map->s390.gp_regs));
491 	memset(&map->s390.ctrl_regs, 0xff, sizeof(map->s390.ctrl_regs));
492 }
493 
494 static void __init set_s390x_lc_mask(union save_area *map)
495 {
496 	memset(&map->s390x.fp_regs, 0xff, sizeof(map->s390x.fp_regs));
497 	memset(&map->s390x.gp_regs, 0xff, sizeof(map->s390x.gp_regs));
498 	memset(&map->s390x.psw, 0xff, sizeof(map->s390x.psw));
499 	memset(&map->s390x.pref_reg, 0xff, sizeof(map->s390x.pref_reg));
500 	memset(&map->s390x.fp_ctrl_reg, 0xff, sizeof(map->s390x.fp_ctrl_reg));
501 	memset(&map->s390x.tod_reg, 0xff, sizeof(map->s390x.tod_reg));
502 	memset(&map->s390x.timer, 0xff, sizeof(map->s390x.timer));
503 	memset(&map->s390x.clk_cmp, 0xff, sizeof(map->s390x.clk_cmp));
504 	memset(&map->s390x.acc_regs, 0xff, sizeof(map->s390x.acc_regs));
505 	memset(&map->s390x.ctrl_regs, 0xff, sizeof(map->s390x.ctrl_regs));
506 }
507 
508 /*
509  * Initialize dump globals for a given architecture
510  */
511 static int __init sys_info_init(enum arch_id arch)
512 {
513 	switch (arch) {
514 	case ARCH_S390X:
515 		MSG("DETECTED 'S390X (64 bit) OS'\n");
516 		sys_info.sa_base = SAVE_AREA_BASE_S390X;
517 		sys_info.sa_size = sizeof(struct save_area_s390x);
518 		set_s390x_lc_mask(&sys_info.lc_mask);
519 		break;
520 	case ARCH_S390:
521 		MSG("DETECTED 'S390 (32 bit) OS'\n");
522 		sys_info.sa_base = SAVE_AREA_BASE_S390;
523 		sys_info.sa_size = sizeof(struct save_area_s390);
524 		set_s390_lc_mask(&sys_info.lc_mask);
525 		break;
526 	default:
527 		ERROR_MSG("unknown architecture 0x%x.\n",arch);
528 		return -EINVAL;
529 	}
530 	sys_info.arch = arch;
531 	if (init_cpu_info(arch)) {
532 		ERROR_MSG("get cpu info failed\n");
533 		return -ENOMEM;
534 	}
535 	sys_info.mem_size = real_memory_size;
536 
537 	return 0;
538 }
539 
540 static int __init check_sdias(void)
541 {
542 	int rc, act_hsa_size;
543 
544 	rc = sclp_sdias_blk_count();
545 	if (rc < 0) {
546 		ERROR_MSG("Could not determine HSA size\n");
547 		return rc;
548 	}
549 	act_hsa_size = (rc - 1) * PAGE_SIZE;
550 	if (act_hsa_size < ZFCPDUMP_HSA_SIZE) {
551 		ERROR_MSG("HSA size too small: %i\n", act_hsa_size);
552 		return -EINVAL;
553 	}
554 	return 0;
555 }
556 
557 static void __init zcore_header_init(int arch, struct zcore_header *hdr)
558 {
559 	if (arch == ARCH_S390X)
560 		hdr->arch_id = DUMP_ARCH_S390X;
561 	else
562 		hdr->arch_id = DUMP_ARCH_S390;
563 	hdr->mem_size = sys_info.mem_size;
564 	hdr->rmem_size = sys_info.mem_size;
565 	hdr->mem_end = sys_info.mem_size;
566 	hdr->num_pages = sys_info.mem_size / PAGE_SIZE;
567 	hdr->tod = get_clock();
568 	get_cpu_id(&hdr->cpu_id);
569 }
570 
571 static int __init zcore_init(void)
572 {
573 	unsigned char arch;
574 	int rc;
575 
576 	if (ipl_info.type != IPL_TYPE_FCP_DUMP)
577 		return -ENODATA;
578 
579 	zcore_dbf = debug_register("zcore", 4, 1, 4 * sizeof(long));
580 	debug_register_view(zcore_dbf, &debug_sprintf_view);
581 	debug_set_level(zcore_dbf, 6);
582 
583 	TRACE("devno:  %x\n", ipl_info.data.fcp.dev_id.devno);
584 	TRACE("wwpn:   %llx\n", (unsigned long long) ipl_info.data.fcp.wwpn);
585 	TRACE("lun:    %llx\n", (unsigned long long) ipl_info.data.fcp.lun);
586 
587 	rc = sclp_sdias_init();
588 	if (rc)
589 		goto fail;
590 
591 	rc = check_sdias();
592 	if (rc) {
593 		ERROR_MSG("Dump initialization failed\n");
594 		goto fail;
595 	}
596 
597 	rc = memcpy_hsa_kernel(&arch, __LC_AR_MODE_ID, 1);
598 	if (rc) {
599 		ERROR_MSG("sdial memcpy for arch id failed\n");
600 		goto fail;
601 	}
602 
603 #ifndef __s390x__
604 	if (arch == ARCH_S390X) {
605 		ERROR_MSG("32 bit dumper can't dump 64 bit system!\n");
606 		rc = -EINVAL;
607 		goto fail;
608 	}
609 #endif
610 
611 	rc = sys_info_init(arch);
612 	if (rc) {
613 		ERROR_MSG("arch init failed\n");
614 		goto fail;
615 	}
616 
617 	zcore_header_init(arch, &zcore_header);
618 
619 	zcore_dir = debugfs_create_dir("zcore" , NULL);
620 	if (!zcore_dir) {
621 		rc = -ENOMEM;
622 		goto fail;
623 	}
624 	zcore_file = debugfs_create_file("mem", S_IRUSR, zcore_dir, NULL,
625 					 &zcore_fops);
626 	if (!zcore_file) {
627 		debugfs_remove(zcore_dir);
628 		rc = -ENOMEM;
629 		goto fail;
630 	}
631 	hsa_available = 1;
632 	return 0;
633 
634 fail:
635 	diag308(DIAG308_REL_HSA, NULL);
636 	return rc;
637 }
638 
639 static void __exit zcore_exit(void)
640 {
641 	debug_unregister(zcore_dbf);
642 	sclp_sdias_exit();
643 	diag308(DIAG308_REL_HSA, NULL);
644 }
645 
646 MODULE_AUTHOR("Copyright IBM Corp. 2003,2007");
647 MODULE_DESCRIPTION("zcore module for zfcpdump support");
648 MODULE_LICENSE("GPL");
649 
650 subsys_initcall(zcore_init);
651 module_exit(zcore_exit);
652