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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * c 2001 PPC 64 Team, IBM Corp
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License
6 * as published by the Free Software Foundation; either version
7 * 2 of the License, or (at your option) any later version.
8 *
9 * /dev/nvram driver for PPC64
10 *
11 * This perhaps should live in drivers/char
12 */
13
14
15#include <linux/types.h>
16#include <linux/errno.h>
17#include <linux/init.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070018#include <linux/spinlock.h>
Jim Kenistona5cf4b02011-02-09 13:00:09 +000019#include <linux/slab.h>
20#include <linux/kmsg_dump.h>
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +053021#include <linux/pstore.h>
Jim Keniston6c493682011-07-25 07:54:50 +000022#include <linux/ctype.h>
23#include <linux/zlib.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070024#include <asm/uaccess.h>
25#include <asm/nvram.h>
26#include <asm/rtas.h>
27#include <asm/prom.h>
28#include <asm/machdep.h>
29
Benjamin Herrenschmidt4e7c77a2010-07-29 15:28:20 +100030/* Max bytes to read/write in one go */
31#define NVRW_CNT 0x20
32
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +053033/*
34 * Set oops header version to distingush between old and new format header.
35 * lnx,oops-log partition max size is 4000, header version > 4000 will
36 * help in identifying new header.
37 */
38#define OOPS_HDR_VERSION 5000
39
Linus Torvalds1da177e2005-04-16 15:20:36 -070040static unsigned int nvram_size;
41static int nvram_fetch, nvram_store;
42static char nvram_buf[NVRW_CNT]; /* assume this is in the first 4GB */
43static DEFINE_SPINLOCK(nvram_lock);
44
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +100045struct err_log_info {
46 int error_type;
47 unsigned int seq_num;
48};
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +100049
Jim Keniston0f4ac132011-02-09 12:43:13 +000050struct nvram_os_partition {
51 const char *name;
52 int req_size; /* desired size, in bytes */
53 int min_size; /* minimum acceptable size (0 means req_size) */
Jim Kenistona5cf4b02011-02-09 13:00:09 +000054 long size; /* size of data portion (excluding err_log_info) */
Jim Keniston0f4ac132011-02-09 12:43:13 +000055 long index; /* offset of data portion of partition */
Aruna Balakrishnaiahedf38462013-06-06 00:21:59 +053056 bool os_partition; /* partition initialized by OS, not FW */
Jim Keniston0f4ac132011-02-09 12:43:13 +000057};
58
59static struct nvram_os_partition rtas_log_partition = {
60 .name = "ibm,rtas-log",
61 .req_size = 2079,
62 .min_size = 1055,
Aruna Balakrishnaiahedf38462013-06-06 00:21:59 +053063 .index = -1,
64 .os_partition = true
Jim Keniston0f4ac132011-02-09 12:43:13 +000065};
66
Jim Kenistona5cf4b02011-02-09 13:00:09 +000067static struct nvram_os_partition oops_log_partition = {
68 .name = "lnx,oops-log",
69 .req_size = 4000,
70 .min_size = 2000,
Aruna Balakrishnaiahedf38462013-06-06 00:21:59 +053071 .index = -1,
72 .os_partition = true
Jim Kenistona5cf4b02011-02-09 13:00:09 +000073};
74
Jim Keniston0f4ac132011-02-09 12:43:13 +000075static const char *pseries_nvram_os_partitions[] = {
76 "ibm,rtas-log",
Jim Kenistona5cf4b02011-02-09 13:00:09 +000077 "lnx,oops-log",
Jim Keniston0f4ac132011-02-09 12:43:13 +000078 NULL
79};
Benjamin Herrenschmidt9a866b82010-08-02 10:51:25 +100080
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +053081struct oops_log_info {
82 u16 version;
83 u16 report_length;
84 u64 timestamp;
85} __attribute__((packed));
86
Jim Kenistona5cf4b02011-02-09 13:00:09 +000087static void oops_to_nvram(struct kmsg_dumper *dumper,
Kay Sieverse2ae7152012-06-15 14:07:51 +020088 enum kmsg_dump_reason reason);
Jim Kenistona5cf4b02011-02-09 13:00:09 +000089
90static struct kmsg_dumper nvram_kmsg_dumper = {
91 .dump = oops_to_nvram
92};
93
94/* See clobbering_unread_rtas_event() */
95#define NVRAM_RTAS_READ_TIMEOUT 5 /* seconds */
96static unsigned long last_unread_rtas_event; /* timestamp */
97
Jim Keniston6c493682011-07-25 07:54:50 +000098/*
99 * For capturing and compressing an oops or panic report...
100
101 * big_oops_buf[] holds the uncompressed text we're capturing.
102 *
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530103 * oops_buf[] holds the compressed text, preceded by a oops header.
104 * oops header has u16 holding the version of oops header (to differentiate
105 * between old and new format header) followed by u16 holding the length of
106 * the compressed* text (*Or uncompressed, if compression fails.) and u64
107 * holding the timestamp. oops_buf[] gets written to NVRAM.
Jim Keniston6c493682011-07-25 07:54:50 +0000108 *
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530109 * oops_log_info points to the header. oops_data points to the compressed text.
Jim Keniston6c493682011-07-25 07:54:50 +0000110 *
111 * +- oops_buf
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530112 * | +- oops_data
113 * v v
114 * +-----------+-----------+-----------+------------------------+
115 * | version | length | timestamp | text |
116 * | (2 bytes) | (2 bytes) | (8 bytes) | (oops_data_sz bytes) |
117 * +-----------+-----------+-----------+------------------------+
Jim Keniston6c493682011-07-25 07:54:50 +0000118 * ^
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530119 * +- oops_log_info
Jim Keniston6c493682011-07-25 07:54:50 +0000120 *
121 * We preallocate these buffers during init to avoid kmalloc during oops/panic.
122 */
123static size_t big_oops_buf_sz;
124static char *big_oops_buf, *oops_buf;
Jim Keniston6c493682011-07-25 07:54:50 +0000125static char *oops_data;
126static size_t oops_data_sz;
127
128/* Compression parameters */
129#define COMPR_LEVEL 6
130#define WINDOW_BITS 12
131#define MEM_LEVEL 4
132static struct z_stream_s stream;
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000133
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530134#ifdef CONFIG_PSTORE
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530135static struct nvram_os_partition of_config_partition = {
136 .name = "of-config",
137 .index = -1,
138 .os_partition = false
139};
140
Aruna Balakrishnaiaha5e47972013-06-06 00:22:20 +0530141static struct nvram_os_partition common_partition = {
142 .name = "common",
143 .index = -1,
144 .os_partition = false
145};
146
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530147static enum pstore_type_id nvram_type_ids[] = {
148 PSTORE_TYPE_DMESG,
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530149 PSTORE_TYPE_PPC_RTAS,
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530150 PSTORE_TYPE_PPC_OF,
Aruna Balakrishnaiaha5e47972013-06-06 00:22:20 +0530151 PSTORE_TYPE_PPC_COMMON,
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530152 -1
153};
154static int read_type;
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530155static unsigned long last_rtas_event;
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530156#endif
157
Linus Torvalds1da177e2005-04-16 15:20:36 -0700158static ssize_t pSeries_nvram_read(char *buf, size_t count, loff_t *index)
159{
160 unsigned int i;
161 unsigned long len;
162 int done;
163 unsigned long flags;
164 char *p = buf;
165
166
167 if (nvram_size == 0 || nvram_fetch == RTAS_UNKNOWN_SERVICE)
168 return -ENODEV;
169
170 if (*index >= nvram_size)
171 return 0;
172
173 i = *index;
174 if (i + count > nvram_size)
175 count = nvram_size - i;
176
177 spin_lock_irqsave(&nvram_lock, flags);
178
179 for (; count != 0; count -= len) {
180 len = count;
181 if (len > NVRW_CNT)
182 len = NVRW_CNT;
183
184 if ((rtas_call(nvram_fetch, 3, 2, &done, i, __pa(nvram_buf),
185 len) != 0) || len != done) {
186 spin_unlock_irqrestore(&nvram_lock, flags);
187 return -EIO;
188 }
189
190 memcpy(p, nvram_buf, len);
191
192 p += len;
193 i += len;
194 }
195
196 spin_unlock_irqrestore(&nvram_lock, flags);
197
198 *index = i;
199 return p - buf;
200}
201
202static ssize_t pSeries_nvram_write(char *buf, size_t count, loff_t *index)
203{
204 unsigned int i;
205 unsigned long len;
206 int done;
207 unsigned long flags;
208 const char *p = buf;
209
210 if (nvram_size == 0 || nvram_store == RTAS_UNKNOWN_SERVICE)
211 return -ENODEV;
212
213 if (*index >= nvram_size)
214 return 0;
215
216 i = *index;
217 if (i + count > nvram_size)
218 count = nvram_size - i;
219
220 spin_lock_irqsave(&nvram_lock, flags);
221
222 for (; count != 0; count -= len) {
223 len = count;
224 if (len > NVRW_CNT)
225 len = NVRW_CNT;
226
227 memcpy(nvram_buf, p, len);
228
229 if ((rtas_call(nvram_store, 3, 2, &done, i, __pa(nvram_buf),
230 len) != 0) || len != done) {
231 spin_unlock_irqrestore(&nvram_lock, flags);
232 return -EIO;
233 }
234
235 p += len;
236 i += len;
237 }
238 spin_unlock_irqrestore(&nvram_lock, flags);
239
240 *index = i;
241 return p - buf;
242}
243
244static ssize_t pSeries_nvram_get_size(void)
245{
246 return nvram_size ? nvram_size : -ENODEV;
247}
248
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000249
Jim Keniston0f4ac132011-02-09 12:43:13 +0000250/* nvram_write_os_partition, nvram_write_error_log
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000251 *
252 * We need to buffer the error logs into nvram to ensure that we have
253 * the failure information to decode. If we have a severe error there
254 * is no way to guarantee that the OS or the machine is in a state to
255 * get back to user land and write the error to disk. For example if
256 * the SCSI device driver causes a Machine Check by writing to a bad
257 * IO address, there is no way of guaranteeing that the device driver
258 * is in any state that is would also be able to write the error data
259 * captured to disk, thus we buffer it in NVRAM for analysis on the
260 * next boot.
261 *
262 * In NVRAM the partition containing the error log buffer will looks like:
263 * Header (in bytes):
264 * +-----------+----------+--------+------------+------------------+
265 * | signature | checksum | length | name | data |
266 * |0 |1 |2 3|4 15|16 length-1|
267 * +-----------+----------+--------+------------+------------------+
268 *
269 * The 'data' section would look like (in bytes):
270 * +--------------+------------+-----------------------------------+
271 * | event_logged | sequence # | error log |
Jim Keniston0f4ac132011-02-09 12:43:13 +0000272 * |0 3|4 7|8 error_log_size-1|
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000273 * +--------------+------------+-----------------------------------+
274 *
275 * event_logged: 0 if event has not been logged to syslog, 1 if it has
276 * sequence #: The unique sequence # for each event. (until it wraps)
277 * error log: The error log from event_scan
278 */
Jim Keniston0f4ac132011-02-09 12:43:13 +0000279int nvram_write_os_partition(struct nvram_os_partition *part, char * buff,
280 int length, unsigned int err_type, unsigned int error_log_cnt)
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000281{
282 int rc;
283 loff_t tmp_index;
284 struct err_log_info info;
285
Jim Keniston0f4ac132011-02-09 12:43:13 +0000286 if (part->index == -1) {
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000287 return -ESPIPE;
288 }
289
Jim Keniston0f4ac132011-02-09 12:43:13 +0000290 if (length > part->size) {
291 length = part->size;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000292 }
293
294 info.error_type = err_type;
295 info.seq_num = error_log_cnt;
296
Jim Keniston0f4ac132011-02-09 12:43:13 +0000297 tmp_index = part->index;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000298
299 rc = ppc_md.nvram_write((char *)&info, sizeof(struct err_log_info), &tmp_index);
300 if (rc <= 0) {
Jim Keniston0f4ac132011-02-09 12:43:13 +0000301 pr_err("%s: Failed nvram_write (%d)\n", __FUNCTION__, rc);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000302 return rc;
303 }
304
305 rc = ppc_md.nvram_write(buff, length, &tmp_index);
306 if (rc <= 0) {
Jim Keniston0f4ac132011-02-09 12:43:13 +0000307 pr_err("%s: Failed nvram_write (%d)\n", __FUNCTION__, rc);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000308 return rc;
309 }
310
311 return 0;
312}
313
Jim Keniston0f4ac132011-02-09 12:43:13 +0000314int nvram_write_error_log(char * buff, int length,
315 unsigned int err_type, unsigned int error_log_cnt)
316{
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000317 int rc = nvram_write_os_partition(&rtas_log_partition, buff, length,
Jim Keniston0f4ac132011-02-09 12:43:13 +0000318 err_type, error_log_cnt);
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530319 if (!rc) {
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000320 last_unread_rtas_event = get_seconds();
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530321#ifdef CONFIG_PSTORE
322 last_rtas_event = get_seconds();
323#endif
324 }
325
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000326 return rc;
Jim Keniston0f4ac132011-02-09 12:43:13 +0000327}
328
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530329/* nvram_read_partition
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000330 *
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530331 * Reads nvram partition for at most 'length'
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000332 */
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530333int nvram_read_partition(struct nvram_os_partition *part, char *buff,
334 int length, unsigned int *err_type,
335 unsigned int *error_log_cnt)
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000336{
337 int rc;
338 loff_t tmp_index;
339 struct err_log_info info;
340
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530341 if (part->index == -1)
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000342 return -1;
343
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530344 if (length > part->size)
345 length = part->size;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000346
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530347 tmp_index = part->index;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000348
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530349 if (part->os_partition) {
350 rc = ppc_md.nvram_read((char *)&info,
351 sizeof(struct err_log_info),
352 &tmp_index);
353 if (rc <= 0) {
354 pr_err("%s: Failed nvram_read (%d)\n", __FUNCTION__,
355 rc);
356 return rc;
357 }
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000358 }
359
360 rc = ppc_md.nvram_read(buff, length, &tmp_index);
361 if (rc <= 0) {
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530362 pr_err("%s: Failed nvram_read (%d)\n", __FUNCTION__, rc);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000363 return rc;
364 }
365
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530366 if (part->os_partition) {
367 *error_log_cnt = info.seq_num;
368 *err_type = info.error_type;
369 }
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000370
371 return 0;
372}
373
Aruna Balakrishnaiah12674612013-06-06 00:21:16 +0530374/* nvram_read_error_log
375 *
376 * Reads nvram for error log for at most 'length'
377 */
378int nvram_read_error_log(char *buff, int length,
379 unsigned int *err_type, unsigned int *error_log_cnt)
380{
381 return nvram_read_partition(&rtas_log_partition, buff, length,
382 err_type, error_log_cnt);
383}
384
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000385/* This doesn't actually zero anything, but it sets the event_logged
386 * word to tell that this event is safely in syslog.
387 */
388int nvram_clear_error_log(void)
389{
390 loff_t tmp_index;
391 int clear_word = ERR_FLAG_ALREADY_LOGGED;
392 int rc;
393
Jim Keniston0f4ac132011-02-09 12:43:13 +0000394 if (rtas_log_partition.index == -1)
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000395 return -1;
396
Jim Keniston0f4ac132011-02-09 12:43:13 +0000397 tmp_index = rtas_log_partition.index;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000398
399 rc = ppc_md.nvram_write((char *)&clear_word, sizeof(int), &tmp_index);
400 if (rc <= 0) {
401 printk(KERN_ERR "nvram_clear_error_log: Failed nvram_write (%d)\n", rc);
402 return rc;
403 }
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000404 last_unread_rtas_event = 0;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000405
406 return 0;
407}
408
Jim Keniston0f4ac132011-02-09 12:43:13 +0000409/* pseries_nvram_init_os_partition
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000410 *
Jim Keniston0f4ac132011-02-09 12:43:13 +0000411 * This sets up a partition with an "OS" signature.
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000412 *
413 * The general strategy is the following:
Jim Keniston0f4ac132011-02-09 12:43:13 +0000414 * 1.) If a partition with the indicated name already exists...
415 * - If it's large enough, use it.
416 * - Otherwise, recycle it and keep going.
417 * 2.) Search for a free partition that is large enough.
418 * 3.) If there's not a free partition large enough, recycle any obsolete
419 * OS partitions and try again.
420 * 4.) Will first try getting a chunk that will satisfy the requested size.
421 * 5.) If a chunk of the requested size cannot be allocated, then try finding
422 * a chunk that will satisfy the minum needed.
423 *
424 * Returns 0 on success, else -1.
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000425 */
Jim Keniston0f4ac132011-02-09 12:43:13 +0000426static int __init pseries_nvram_init_os_partition(struct nvram_os_partition
427 *part)
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000428{
429 loff_t p;
430 int size;
431
432 /* Scan nvram for partitions */
433 nvram_scan_partitions();
434
Jim Keniston0f4ac132011-02-09 12:43:13 +0000435 /* Look for ours */
436 p = nvram_find_partition(part->name, NVRAM_SIG_OS, &size);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000437
438 /* Found one but too small, remove it */
Jim Keniston0f4ac132011-02-09 12:43:13 +0000439 if (p && size < part->min_size) {
440 pr_info("nvram: Found too small %s partition,"
441 " removing it...\n", part->name);
442 nvram_remove_partition(part->name, NVRAM_SIG_OS, NULL);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000443 p = 0;
444 }
445
446 /* Create one if we didn't find */
447 if (!p) {
Jim Keniston0f4ac132011-02-09 12:43:13 +0000448 p = nvram_create_partition(part->name, NVRAM_SIG_OS,
449 part->req_size, part->min_size);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000450 if (p == -ENOSPC) {
Jim Keniston0f4ac132011-02-09 12:43:13 +0000451 pr_info("nvram: No room to create %s partition, "
452 "deleting any obsolete OS partitions...\n",
453 part->name);
454 nvram_remove_partition(NULL, NVRAM_SIG_OS,
455 pseries_nvram_os_partitions);
456 p = nvram_create_partition(part->name, NVRAM_SIG_OS,
457 part->req_size, part->min_size);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000458 }
459 }
460
461 if (p <= 0) {
Jim Keniston0f4ac132011-02-09 12:43:13 +0000462 pr_err("nvram: Failed to find or create %s"
463 " partition, err %d\n", part->name, (int)p);
464 return -1;
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000465 }
466
Jim Keniston0f4ac132011-02-09 12:43:13 +0000467 part->index = p;
468 part->size = nvram_get_partition_size(p) - sizeof(struct err_log_info);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000469
470 return 0;
471}
Jim Keniston0f4ac132011-02-09 12:43:13 +0000472
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530473/*
474 * Are we using the ibm,rtas-log for oops/panic reports? And if so,
475 * would logging this oops/panic overwrite an RTAS event that rtas_errd
476 * hasn't had a chance to read and process? Return 1 if so, else 0.
477 *
478 * We assume that if rtas_errd hasn't read the RTAS event in
479 * NVRAM_RTAS_READ_TIMEOUT seconds, it's probably not going to.
480 */
481static int clobbering_unread_rtas_event(void)
482{
483 return (oops_log_partition.index == rtas_log_partition.index
484 && last_unread_rtas_event
485 && get_seconds() - last_unread_rtas_event <=
486 NVRAM_RTAS_READ_TIMEOUT);
487}
488
Aruna Balakrishnaiahfbfe86f2013-06-27 14:03:04 +0530489/* Derived from logfs_compress() */
490static int nvram_compress(const void *in, void *out, size_t inlen,
491 size_t outlen)
492{
493 int err, ret;
494
495 ret = -EIO;
496 err = zlib_deflateInit2(&stream, COMPR_LEVEL, Z_DEFLATED, WINDOW_BITS,
497 MEM_LEVEL, Z_DEFAULT_STRATEGY);
498 if (err != Z_OK)
499 goto error;
500
501 stream.next_in = in;
502 stream.avail_in = inlen;
503 stream.total_in = 0;
504 stream.next_out = out;
505 stream.avail_out = outlen;
506 stream.total_out = 0;
507
508 err = zlib_deflate(&stream, Z_FINISH);
509 if (err != Z_STREAM_END)
510 goto error;
511
512 err = zlib_deflateEnd(&stream);
513 if (err != Z_OK)
514 goto error;
515
516 if (stream.total_out >= stream.total_in)
517 goto error;
518
519 ret = stream.total_out;
520error:
521 return ret;
522}
523
524/* Compress the text from big_oops_buf into oops_buf. */
525static int zip_oops(size_t text_len)
526{
527 struct oops_log_info *oops_hdr = (struct oops_log_info *)oops_buf;
528 int zipped_len = nvram_compress(big_oops_buf, oops_data, text_len,
529 oops_data_sz);
530 if (zipped_len < 0) {
531 pr_err("nvram: compression failed; returned %d\n", zipped_len);
532 pr_err("nvram: logging uncompressed oops/panic report\n");
533 return -1;
534 }
535 oops_hdr->version = OOPS_HDR_VERSION;
536 oops_hdr->report_length = (u16) zipped_len;
537 oops_hdr->timestamp = get_seconds();
538 return 0;
539}
540
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530541#ifdef CONFIG_PSTORE
542static int nvram_pstore_open(struct pstore_info *psi)
543{
544 /* Reset the iterator to start reading partitions again */
545 read_type = -1;
546 return 0;
547}
548
549/**
550 * nvram_pstore_write - pstore write callback for nvram
551 * @type: Type of message logged
552 * @reason: reason behind dump (oops/panic)
553 * @id: identifier to indicate the write performed
554 * @part: pstore writes data to registered buffer in parts,
555 * part number will indicate the same.
556 * @count: Indicates oops count
Aruna Balakrishnaiah6bbbca72013-06-27 14:02:56 +0530557 * @hsize: Size of header added by pstore
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530558 * @size: number of bytes written to the registered buffer
559 * @psi: registered pstore_info structure
560 *
561 * Called by pstore_dump() when an oops or panic report is logged in the
562 * printk buffer.
563 * Returns 0 on successful write.
564 */
565static int nvram_pstore_write(enum pstore_type_id type,
566 enum kmsg_dump_reason reason,
567 u64 *id, unsigned int part, int count,
Aruna Balakrishnaiah6bbbca72013-06-27 14:02:56 +0530568 size_t hsize, size_t size,
569 struct pstore_info *psi)
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530570{
571 int rc;
572 struct oops_log_info *oops_hdr = (struct oops_log_info *) oops_buf;
573
574 /* part 1 has the recent messages from printk buffer */
575 if (part > 1 || type != PSTORE_TYPE_DMESG ||
576 clobbering_unread_rtas_event())
577 return -1;
578
579 oops_hdr->version = OOPS_HDR_VERSION;
580 oops_hdr->report_length = (u16) size;
581 oops_hdr->timestamp = get_seconds();
582 rc = nvram_write_os_partition(&oops_log_partition, oops_buf,
583 (int) (sizeof(*oops_hdr) + size), ERR_TYPE_KERNEL_PANIC,
584 count);
585
586 if (rc != 0)
587 return rc;
588
589 *id = part;
590 return 0;
591}
592
593/*
Aruna Balakrishnaiaha5e47972013-06-06 00:22:20 +0530594 * Reads the oops/panic report, rtas, of-config and common partition.
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530595 * Returns the length of the data we read from each partition.
596 * Returns 0 if we've been called before.
597 */
598static ssize_t nvram_pstore_read(u64 *id, enum pstore_type_id *type,
599 int *count, struct timespec *time, char **buf,
600 struct pstore_info *psi)
601{
602 struct oops_log_info *oops_hdr;
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530603 unsigned int err_type, id_no, size = 0;
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530604 struct nvram_os_partition *part = NULL;
605 char *buff = NULL;
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530606 int sig = 0;
607 loff_t p;
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530608
609 read_type++;
610
611 switch (nvram_type_ids[read_type]) {
612 case PSTORE_TYPE_DMESG:
613 part = &oops_log_partition;
614 *type = PSTORE_TYPE_DMESG;
615 break;
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530616 case PSTORE_TYPE_PPC_RTAS:
617 part = &rtas_log_partition;
618 *type = PSTORE_TYPE_PPC_RTAS;
619 time->tv_sec = last_rtas_event;
620 time->tv_nsec = 0;
621 break;
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530622 case PSTORE_TYPE_PPC_OF:
623 sig = NVRAM_SIG_OF;
624 part = &of_config_partition;
625 *type = PSTORE_TYPE_PPC_OF;
626 *id = PSTORE_TYPE_PPC_OF;
627 time->tv_sec = 0;
628 time->tv_nsec = 0;
629 break;
Aruna Balakrishnaiaha5e47972013-06-06 00:22:20 +0530630 case PSTORE_TYPE_PPC_COMMON:
631 sig = NVRAM_SIG_SYS;
632 part = &common_partition;
633 *type = PSTORE_TYPE_PPC_COMMON;
634 *id = PSTORE_TYPE_PPC_COMMON;
635 time->tv_sec = 0;
636 time->tv_nsec = 0;
637 break;
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530638 default:
639 return 0;
640 }
641
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530642 if (!part->os_partition) {
643 p = nvram_find_partition(part->name, sig, &size);
644 if (p <= 0) {
645 pr_err("nvram: Failed to find partition %s, "
646 "err %d\n", part->name, (int)p);
647 return 0;
648 }
649 part->index = p;
650 part->size = size;
651 }
652
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530653 buff = kmalloc(part->size, GFP_KERNEL);
654
655 if (!buff)
656 return -ENOMEM;
657
658 if (nvram_read_partition(part, buff, part->size, &err_type, &id_no)) {
659 kfree(buff);
660 return 0;
661 }
662
663 *count = 0;
Aruna Balakrishnaiahf33f7482013-06-06 00:22:10 +0530664
665 if (part->os_partition)
666 *id = id_no;
Aruna Balakrishnaiah69020ee2013-06-06 00:21:44 +0530667
668 if (nvram_type_ids[read_type] == PSTORE_TYPE_DMESG) {
669 oops_hdr = (struct oops_log_info *)buff;
670 *buf = buff + sizeof(*oops_hdr);
671 time->tv_sec = oops_hdr->timestamp;
672 time->tv_nsec = 0;
673 return oops_hdr->report_length;
674 }
675
676 *buf = buff;
677 return part->size;
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530678}
679
680static struct pstore_info nvram_pstore_info = {
681 .owner = THIS_MODULE,
682 .name = "nvram",
683 .open = nvram_pstore_open,
684 .read = nvram_pstore_read,
685 .write = nvram_pstore_write,
686};
687
688static int nvram_pstore_init(void)
689{
690 int rc = 0;
691
692 nvram_pstore_info.buf = oops_data;
693 nvram_pstore_info.bufsize = oops_data_sz;
694
695 rc = pstore_register(&nvram_pstore_info);
696 if (rc != 0)
697 pr_err("nvram: pstore_register() failed, defaults to "
698 "kmsg_dump; returned %d\n", rc);
699 else
700 /*TODO: Support compression when pstore is configured */
701 pr_info("nvram: Compression of oops text supported only when "
702 "pstore is not configured");
703
704 return rc;
705}
706#else
707static int nvram_pstore_init(void)
708{
709 return -1;
710}
711#endif
712
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000713static void __init nvram_init_oops_partition(int rtas_partition_exists)
714{
715 int rc;
716
717 rc = pseries_nvram_init_os_partition(&oops_log_partition);
718 if (rc != 0) {
719 if (!rtas_partition_exists)
720 return;
721 pr_notice("nvram: Using %s partition to log both"
722 " RTAS errors and oops/panic reports\n",
723 rtas_log_partition.name);
724 memcpy(&oops_log_partition, &rtas_log_partition,
725 sizeof(rtas_log_partition));
726 }
727 oops_buf = kmalloc(oops_log_partition.size, GFP_KERNEL);
Jim Keniston6c493682011-07-25 07:54:50 +0000728 if (!oops_buf) {
729 pr_err("nvram: No memory for %s partition\n",
730 oops_log_partition.name);
731 return;
732 }
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530733 oops_data = oops_buf + sizeof(struct oops_log_info);
734 oops_data_sz = oops_log_partition.size - sizeof(struct oops_log_info);
Jim Keniston6c493682011-07-25 07:54:50 +0000735
Aruna Balakrishnaiahd7563c92013-06-06 00:21:32 +0530736 rc = nvram_pstore_init();
737
738 if (!rc)
739 return;
740
Jim Keniston6c493682011-07-25 07:54:50 +0000741 /*
742 * Figure compression (preceded by elimination of each line's <n>
743 * severity prefix) will reduce the oops/panic report to at most
744 * 45% of its original size.
745 */
746 big_oops_buf_sz = (oops_data_sz * 100) / 45;
747 big_oops_buf = kmalloc(big_oops_buf_sz, GFP_KERNEL);
748 if (big_oops_buf) {
749 stream.workspace = kmalloc(zlib_deflate_workspacesize(
750 WINDOW_BITS, MEM_LEVEL), GFP_KERNEL);
751 if (!stream.workspace) {
752 pr_err("nvram: No memory for compression workspace; "
753 "skipping compression of %s partition data\n",
754 oops_log_partition.name);
755 kfree(big_oops_buf);
756 big_oops_buf = NULL;
757 }
758 } else {
759 pr_err("No memory for uncompressed %s data; "
760 "skipping compression\n", oops_log_partition.name);
761 stream.workspace = NULL;
762 }
763
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000764 rc = kmsg_dump_register(&nvram_kmsg_dumper);
765 if (rc != 0) {
766 pr_err("nvram: kmsg_dump_register() failed; returned %d\n", rc);
767 kfree(oops_buf);
Jim Keniston6c493682011-07-25 07:54:50 +0000768 kfree(big_oops_buf);
769 kfree(stream.workspace);
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000770 }
771}
772
Jim Keniston0f4ac132011-02-09 12:43:13 +0000773static int __init pseries_nvram_init_log_partitions(void)
774{
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000775 int rc;
776
777 rc = pseries_nvram_init_os_partition(&rtas_log_partition);
778 nvram_init_oops_partition(rc == 0);
Jim Keniston0f4ac132011-02-09 12:43:13 +0000779 return 0;
780}
781machine_arch_initcall(pseries, pseries_nvram_init_log_partitions);
Benjamin Herrenschmidtedc79a22010-08-02 11:18:09 +1000782
Linus Torvalds1da177e2005-04-16 15:20:36 -0700783int __init pSeries_nvram_init(void)
784{
785 struct device_node *nvram;
Jeremy Kerr954a46e2006-07-12 15:39:43 +1000786 const unsigned int *nbytes_p;
787 unsigned int proplen;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700788
789 nvram = of_find_node_by_type(NULL, "nvram");
790 if (nvram == NULL)
791 return -ENODEV;
792
Stephen Rothwelle2eb6392007-04-03 22:26:41 +1000793 nbytes_p = of_get_property(nvram, "#bytes", &proplen);
Julia Lawallbad52322008-06-09 22:20:04 +1000794 if (nbytes_p == NULL || proplen != sizeof(unsigned int)) {
795 of_node_put(nvram);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700796 return -EIO;
Julia Lawallbad52322008-06-09 22:20:04 +1000797 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700798
799 nvram_size = *nbytes_p;
800
801 nvram_fetch = rtas_token("nvram-fetch");
802 nvram_store = rtas_token("nvram-store");
803 printk(KERN_INFO "PPC64 nvram contains %d bytes\n", nvram_size);
804 of_node_put(nvram);
805
806 ppc_md.nvram_read = pSeries_nvram_read;
807 ppc_md.nvram_write = pSeries_nvram_write;
808 ppc_md.nvram_size = pSeries_nvram_get_size;
809
810 return 0;
811}
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000812
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000813
Jim Keniston6c493682011-07-25 07:54:50 +0000814/*
815 * This is our kmsg_dump callback, called after an oops or panic report
816 * has been written to the printk buffer. We want to capture as much
817 * of the printk buffer as possible. First, capture as much as we can
818 * that we think will compress sufficiently to fit in the lnx,oops-log
819 * partition. If that's too much, go back and capture uncompressed text.
820 */
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000821static void oops_to_nvram(struct kmsg_dumper *dumper,
Kay Sieverse2ae7152012-06-15 14:07:51 +0200822 enum kmsg_dump_reason reason)
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000823{
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530824 struct oops_log_info *oops_hdr = (struct oops_log_info *)oops_buf;
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000825 static unsigned int oops_count = 0;
Jim Keniston15d260b2011-03-25 12:47:58 +0000826 static bool panicking = false;
Anton Blanchard120a52c2011-11-30 15:46:45 +0000827 static DEFINE_SPINLOCK(lock);
828 unsigned long flags;
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000829 size_t text_len;
Jim Keniston6c493682011-07-25 07:54:50 +0000830 unsigned int err_type = ERR_TYPE_KERNEL_PANIC_GZ;
831 int rc = -1;
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000832
Jim Keniston15d260b2011-03-25 12:47:58 +0000833 switch (reason) {
834 case KMSG_DUMP_RESTART:
835 case KMSG_DUMP_HALT:
836 case KMSG_DUMP_POWEROFF:
837 /* These are almost always orderly shutdowns. */
838 return;
839 case KMSG_DUMP_OOPS:
Jim Keniston15d260b2011-03-25 12:47:58 +0000840 break;
841 case KMSG_DUMP_PANIC:
842 panicking = true;
843 break;
844 case KMSG_DUMP_EMERG:
845 if (panicking)
846 /* Panic report already captured. */
847 return;
848 break;
849 default:
850 pr_err("%s: ignoring unrecognized KMSG_DUMP_* reason %d\n",
851 __FUNCTION__, (int) reason);
852 return;
853 }
854
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000855 if (clobbering_unread_rtas_event())
856 return;
857
Anton Blanchard120a52c2011-11-30 15:46:45 +0000858 if (!spin_trylock_irqsave(&lock, flags))
859 return;
860
Jim Keniston6c493682011-07-25 07:54:50 +0000861 if (big_oops_buf) {
Kay Sieverse2ae7152012-06-15 14:07:51 +0200862 kmsg_dump_get_buffer(dumper, false,
863 big_oops_buf, big_oops_buf_sz, &text_len);
Jim Keniston6c493682011-07-25 07:54:50 +0000864 rc = zip_oops(text_len);
865 }
866 if (rc != 0) {
Kay Sieverse2ae7152012-06-15 14:07:51 +0200867 kmsg_dump_rewind(dumper);
Aruna Balakrishnaiah1bf247f2013-06-06 00:20:55 +0530868 kmsg_dump_get_buffer(dumper, false,
Kay Sieverse2ae7152012-06-15 14:07:51 +0200869 oops_data, oops_data_sz, &text_len);
Jim Keniston6c493682011-07-25 07:54:50 +0000870 err_type = ERR_TYPE_KERNEL_PANIC;
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530871 oops_hdr->version = OOPS_HDR_VERSION;
872 oops_hdr->report_length = (u16) text_len;
873 oops_hdr->timestamp = get_seconds();
Jim Keniston6c493682011-07-25 07:54:50 +0000874 }
875
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000876 (void) nvram_write_os_partition(&oops_log_partition, oops_buf,
Aruna Balakrishnaiahb1f70e12013-06-06 00:21:05 +0530877 (int) (sizeof(*oops_hdr) + oops_hdr->report_length), err_type,
878 ++oops_count);
Anton Blanchard120a52c2011-11-30 15:46:45 +0000879
880 spin_unlock_irqrestore(&lock, flags);
Jim Kenistona5cf4b02011-02-09 13:00:09 +0000881}