ram.c 14 KB

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  1. /*
  2. * RAM Oops/Panic logger
  3. *
  4. * Copyright (C) 2010 Marco Stornelli <marco.stornelli@gmail.com>
  5. * Copyright (C) 2011 Kees Cook <keescook@chromium.org>
  6. *
  7. * This program is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU General Public License
  9. * version 2 as published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but
  12. * WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  19. * 02110-1301 USA
  20. *
  21. */
  22. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  23. #include <linux/kernel.h>
  24. #include <linux/err.h>
  25. #include <linux/module.h>
  26. #include <linux/version.h>
  27. #include <linux/pstore.h>
  28. #include <linux/time.h>
  29. #include <linux/io.h>
  30. #include <linux/ioport.h>
  31. #include <linux/platform_device.h>
  32. #include <linux/slab.h>
  33. #include <linux/compiler.h>
  34. #include <linux/pstore_ram.h>
  35. #define RAMOOPS_KERNMSG_HDR "===="
  36. #define MIN_MEM_SIZE 4096UL
  37. static ulong record_size = MIN_MEM_SIZE;
  38. module_param(record_size, ulong, 0400);
  39. MODULE_PARM_DESC(record_size,
  40. "size of each dump done on oops/panic");
  41. static ulong ramoops_console_size = MIN_MEM_SIZE;
  42. module_param_named(console_size, ramoops_console_size, ulong, 0400);
  43. MODULE_PARM_DESC(console_size, "size of kernel console log");
  44. static ulong ramoops_ftrace_size = MIN_MEM_SIZE;
  45. module_param_named(ftrace_size, ramoops_ftrace_size, ulong, 0400);
  46. MODULE_PARM_DESC(ftrace_size, "size of ftrace log");
  47. static ulong mem_address;
  48. module_param(mem_address, ulong, 0400);
  49. MODULE_PARM_DESC(mem_address,
  50. "start of reserved RAM used to store oops/panic logs");
  51. static ulong mem_size;
  52. module_param(mem_size, ulong, 0400);
  53. MODULE_PARM_DESC(mem_size,
  54. "size of reserved RAM used to store oops/panic logs");
  55. static int dump_oops = 1;
  56. module_param(dump_oops, int, 0600);
  57. MODULE_PARM_DESC(dump_oops,
  58. "set to 1 to dump oopses, 0 to only dump panics (default 1)");
  59. static int ramoops_ecc;
  60. module_param_named(ecc, ramoops_ecc, int, 0600);
  61. MODULE_PARM_DESC(ramoops_ecc,
  62. "if non-zero, the option enables ECC support and specifies "
  63. "ECC buffer size in bytes (1 is a special value, means 16 "
  64. "bytes ECC)");
  65. struct ramoops_context {
  66. struct persistent_ram_zone **przs;
  67. struct persistent_ram_zone *cprz;
  68. struct persistent_ram_zone *fprz;
  69. phys_addr_t phys_addr;
  70. unsigned long size;
  71. size_t record_size;
  72. size_t console_size;
  73. size_t ftrace_size;
  74. int dump_oops;
  75. int ecc_size;
  76. unsigned int max_dump_cnt;
  77. unsigned int dump_write_cnt;
  78. unsigned int dump_read_cnt;
  79. unsigned int console_read_cnt;
  80. unsigned int ftrace_read_cnt;
  81. struct pstore_info pstore;
  82. };
  83. static struct platform_device *dummy;
  84. static struct ramoops_platform_data *dummy_data;
  85. static int ramoops_pstore_open(struct pstore_info *psi)
  86. {
  87. struct ramoops_context *cxt = psi->data;
  88. cxt->dump_read_cnt = 0;
  89. cxt->console_read_cnt = 0;
  90. return 0;
  91. }
  92. static struct persistent_ram_zone *
  93. ramoops_get_next_prz(struct persistent_ram_zone *przs[], uint *c, uint max,
  94. u64 *id,
  95. enum pstore_type_id *typep, enum pstore_type_id type,
  96. bool update)
  97. {
  98. struct persistent_ram_zone *prz;
  99. int i = (*c)++;
  100. if (i >= max)
  101. return NULL;
  102. prz = przs[i];
  103. if (update) {
  104. /* Update old/shadowed buffer. */
  105. persistent_ram_save_old(prz);
  106. if (!persistent_ram_old_size(prz))
  107. return NULL;
  108. }
  109. *typep = type;
  110. *id = i;
  111. return prz;
  112. }
  113. static ssize_t ramoops_pstore_read(u64 *id, enum pstore_type_id *type,
  114. int *count, struct timespec *time,
  115. char **buf, struct pstore_info *psi)
  116. {
  117. ssize_t size;
  118. struct ramoops_context *cxt = psi->data;
  119. struct persistent_ram_zone *prz;
  120. prz = ramoops_get_next_prz(cxt->przs, &cxt->dump_read_cnt,
  121. cxt->max_dump_cnt, id, type,
  122. PSTORE_TYPE_DMESG, 1);
  123. if (!prz)
  124. prz = ramoops_get_next_prz(&cxt->cprz, &cxt->console_read_cnt,
  125. 1, id, type, PSTORE_TYPE_CONSOLE, 0);
  126. if (!prz)
  127. prz = ramoops_get_next_prz(&cxt->fprz, &cxt->ftrace_read_cnt,
  128. 1, id, type, PSTORE_TYPE_FTRACE, 0);
  129. if (!prz)
  130. return 0;
  131. /* TODO(kees): Bogus time for the moment. */
  132. time->tv_sec = 0;
  133. time->tv_nsec = 0;
  134. size = persistent_ram_old_size(prz);
  135. *buf = kmalloc(size, GFP_KERNEL);
  136. if (*buf == NULL)
  137. return -ENOMEM;
  138. memcpy(*buf, persistent_ram_old(prz), size);
  139. return size;
  140. }
  141. static size_t ramoops_write_kmsg_hdr(struct persistent_ram_zone *prz)
  142. {
  143. char *hdr;
  144. struct timespec timestamp;
  145. size_t len;
  146. /* Report zeroed timestamp if called before timekeeping has resumed. */
  147. if (__getnstimeofday(&timestamp)) {
  148. timestamp.tv_sec = 0;
  149. timestamp.tv_nsec = 0;
  150. }
  151. hdr = kasprintf(GFP_ATOMIC, RAMOOPS_KERNMSG_HDR "%lu.%lu\n",
  152. (long)timestamp.tv_sec, (long)(timestamp.tv_nsec / 1000));
  153. WARN_ON_ONCE(!hdr);
  154. len = hdr ? strlen(hdr) : 0;
  155. persistent_ram_write(prz, hdr, len);
  156. kfree(hdr);
  157. return len;
  158. }
  159. static int notrace ramoops_pstore_write_buf(enum pstore_type_id type,
  160. enum kmsg_dump_reason reason,
  161. u64 *id, unsigned int part,
  162. const char *buf, size_t size,
  163. struct pstore_info *psi)
  164. {
  165. struct ramoops_context *cxt = psi->data;
  166. struct persistent_ram_zone *prz;
  167. size_t hlen;
  168. if (type == PSTORE_TYPE_CONSOLE) {
  169. if (!cxt->cprz)
  170. return -ENOMEM;
  171. persistent_ram_write(cxt->cprz, buf, size);
  172. return 0;
  173. } else if (type == PSTORE_TYPE_FTRACE) {
  174. if (!cxt->fprz)
  175. return -ENOMEM;
  176. persistent_ram_write(cxt->fprz, buf, size);
  177. return 0;
  178. }
  179. if (type != PSTORE_TYPE_DMESG)
  180. return -EINVAL;
  181. /* Out of the various dmesg dump types, ramoops is currently designed
  182. * to only store crash logs, rather than storing general kernel logs.
  183. */
  184. if (reason != KMSG_DUMP_OOPS &&
  185. reason != KMSG_DUMP_PANIC)
  186. return -EINVAL;
  187. /* Skip Oopes when configured to do so. */
  188. if (reason == KMSG_DUMP_OOPS && !cxt->dump_oops)
  189. return -EINVAL;
  190. /* Explicitly only take the first part of any new crash.
  191. * If our buffer is larger than kmsg_bytes, this can never happen,
  192. * and if our buffer is smaller than kmsg_bytes, we don't want the
  193. * report split across multiple records.
  194. */
  195. if (part != 1)
  196. return -ENOSPC;
  197. if (!cxt->przs)
  198. return -ENOSPC;
  199. prz = cxt->przs[cxt->dump_write_cnt];
  200. hlen = ramoops_write_kmsg_hdr(prz);
  201. if (size + hlen > prz->buffer_size)
  202. size = prz->buffer_size - hlen;
  203. persistent_ram_write(prz, buf, size);
  204. cxt->dump_write_cnt = (cxt->dump_write_cnt + 1) % cxt->max_dump_cnt;
  205. return 0;
  206. }
  207. static int ramoops_pstore_erase(enum pstore_type_id type, u64 id, int count,
  208. struct timespec time, struct pstore_info *psi)
  209. {
  210. struct ramoops_context *cxt = psi->data;
  211. struct persistent_ram_zone *prz;
  212. switch (type) {
  213. case PSTORE_TYPE_DMESG:
  214. if (id >= cxt->max_dump_cnt)
  215. return -EINVAL;
  216. prz = cxt->przs[id];
  217. break;
  218. case PSTORE_TYPE_CONSOLE:
  219. prz = cxt->cprz;
  220. break;
  221. case PSTORE_TYPE_FTRACE:
  222. prz = cxt->fprz;
  223. break;
  224. default:
  225. return -EINVAL;
  226. }
  227. persistent_ram_free_old(prz);
  228. persistent_ram_zap(prz);
  229. return 0;
  230. }
  231. static struct ramoops_context oops_cxt = {
  232. .pstore = {
  233. .owner = THIS_MODULE,
  234. .name = "ramoops",
  235. .open = ramoops_pstore_open,
  236. .read = ramoops_pstore_read,
  237. .write_buf = ramoops_pstore_write_buf,
  238. .erase = ramoops_pstore_erase,
  239. },
  240. };
  241. static void ramoops_free_przs(struct ramoops_context *cxt)
  242. {
  243. int i;
  244. if (!cxt->przs)
  245. return;
  246. for (i = 0; !IS_ERR_OR_NULL(cxt->przs[i]); i++)
  247. persistent_ram_free(cxt->przs[i]);
  248. kfree(cxt->przs);
  249. }
  250. static int ramoops_init_przs(struct device *dev, struct ramoops_context *cxt,
  251. phys_addr_t *paddr, size_t dump_mem_sz)
  252. {
  253. int err = -ENOMEM;
  254. int i;
  255. if (!cxt->record_size)
  256. return 0;
  257. if (*paddr + dump_mem_sz - cxt->phys_addr > cxt->size) {
  258. dev_err(dev, "no room for dumps\n");
  259. return -ENOMEM;
  260. }
  261. cxt->max_dump_cnt = dump_mem_sz / cxt->record_size;
  262. if (!cxt->max_dump_cnt)
  263. return -ENOMEM;
  264. cxt->przs = kzalloc(sizeof(*cxt->przs) * cxt->max_dump_cnt,
  265. GFP_KERNEL);
  266. if (!cxt->przs) {
  267. dev_err(dev, "failed to initialize a prz array for dumps\n");
  268. return -ENOMEM;
  269. }
  270. for (i = 0; i < cxt->max_dump_cnt; i++) {
  271. size_t sz = cxt->record_size;
  272. cxt->przs[i] = persistent_ram_new(*paddr, sz, 0, cxt->ecc_size);
  273. if (IS_ERR(cxt->przs[i])) {
  274. err = PTR_ERR(cxt->przs[i]);
  275. dev_err(dev, "failed to request mem region (0x%zx@0x%llx): %d\n",
  276. sz, (unsigned long long)*paddr, err);
  277. goto fail_prz;
  278. }
  279. *paddr += sz;
  280. }
  281. return 0;
  282. fail_prz:
  283. ramoops_free_przs(cxt);
  284. return err;
  285. }
  286. static int ramoops_init_prz(struct device *dev, struct ramoops_context *cxt,
  287. struct persistent_ram_zone **prz,
  288. phys_addr_t *paddr, size_t sz, u32 sig)
  289. {
  290. if (!sz)
  291. return 0;
  292. if (*paddr + sz - cxt->phys_addr > cxt->size) {
  293. dev_err(dev, "no room for mem region (0x%zx@0x%llx) in (0x%lx@0x%llx)\n",
  294. sz, (unsigned long long)*paddr,
  295. cxt->size, (unsigned long long)cxt->phys_addr);
  296. return -ENOMEM;
  297. }
  298. *prz = persistent_ram_new(*paddr, sz, sig, cxt->ecc_size);
  299. if (IS_ERR(*prz)) {
  300. int err = PTR_ERR(*prz);
  301. dev_err(dev, "failed to request mem region (0x%zx@0x%llx): %d\n",
  302. sz, (unsigned long long)*paddr, err);
  303. return err;
  304. }
  305. persistent_ram_zap(*prz);
  306. *paddr += sz;
  307. return 0;
  308. }
  309. static int ramoops_probe(struct platform_device *pdev)
  310. {
  311. struct device *dev = &pdev->dev;
  312. struct ramoops_platform_data *pdata = pdev->dev.platform_data;
  313. struct ramoops_context *cxt = &oops_cxt;
  314. size_t dump_mem_sz;
  315. phys_addr_t paddr;
  316. int err = -EINVAL;
  317. /* Only a single ramoops area allowed at a time, so fail extra
  318. * probes.
  319. */
  320. if (cxt->max_dump_cnt)
  321. goto fail_out;
  322. if (!pdata->mem_size || (!pdata->record_size && !pdata->console_size &&
  323. !pdata->ftrace_size)) {
  324. pr_err("The memory size and the record/console size must be "
  325. "non-zero\n");
  326. goto fail_out;
  327. }
  328. if (!is_power_of_2(pdata->mem_size))
  329. pdata->mem_size = rounddown_pow_of_two(pdata->mem_size);
  330. if (!is_power_of_2(pdata->record_size))
  331. pdata->record_size = rounddown_pow_of_two(pdata->record_size);
  332. if (!is_power_of_2(pdata->console_size))
  333. pdata->console_size = rounddown_pow_of_two(pdata->console_size);
  334. if (!is_power_of_2(pdata->ftrace_size))
  335. pdata->ftrace_size = rounddown_pow_of_two(pdata->ftrace_size);
  336. cxt->dump_read_cnt = 0;
  337. cxt->size = pdata->mem_size;
  338. cxt->phys_addr = pdata->mem_address;
  339. cxt->record_size = pdata->record_size;
  340. cxt->console_size = pdata->console_size;
  341. cxt->ftrace_size = pdata->ftrace_size;
  342. cxt->dump_oops = pdata->dump_oops;
  343. cxt->ecc_size = pdata->ecc_size;
  344. paddr = cxt->phys_addr;
  345. dump_mem_sz = cxt->size - cxt->console_size - cxt->ftrace_size;
  346. err = ramoops_init_przs(dev, cxt, &paddr, dump_mem_sz);
  347. if (err)
  348. goto fail_out;
  349. err = ramoops_init_prz(dev, cxt, &cxt->cprz, &paddr,
  350. cxt->console_size, 0);
  351. if (err)
  352. goto fail_init_cprz;
  353. err = ramoops_init_prz(dev, cxt, &cxt->fprz, &paddr, cxt->ftrace_size,
  354. LINUX_VERSION_CODE);
  355. if (err)
  356. goto fail_init_fprz;
  357. if (!cxt->przs && !cxt->cprz && !cxt->fprz) {
  358. pr_err("memory size too small, minimum is %zu\n",
  359. cxt->console_size + cxt->record_size +
  360. cxt->ftrace_size);
  361. goto fail_cnt;
  362. }
  363. cxt->pstore.data = cxt;
  364. /*
  365. * Console can handle any buffer size, so prefer LOG_LINE_MAX. If we
  366. * have to handle dumps, we must have at least record_size buffer. And
  367. * for ftrace, bufsize is irrelevant (if bufsize is 0, buf will be
  368. * ZERO_SIZE_PTR).
  369. */
  370. if (cxt->console_size)
  371. cxt->pstore.bufsize = 1024; /* LOG_LINE_MAX */
  372. cxt->pstore.bufsize = max(cxt->record_size, cxt->pstore.bufsize);
  373. cxt->pstore.buf = kmalloc(cxt->pstore.bufsize, GFP_KERNEL);
  374. spin_lock_init(&cxt->pstore.buf_lock);
  375. if (!cxt->pstore.buf) {
  376. pr_err("cannot allocate pstore buffer\n");
  377. goto fail_clear;
  378. }
  379. err = pstore_register(&cxt->pstore);
  380. if (err) {
  381. pr_err("registering with pstore failed\n");
  382. goto fail_buf;
  383. }
  384. /*
  385. * Update the module parameter variables as well so they are visible
  386. * through /sys/module/ramoops/parameters/
  387. */
  388. mem_size = pdata->mem_size;
  389. mem_address = pdata->mem_address;
  390. record_size = pdata->record_size;
  391. dump_oops = pdata->dump_oops;
  392. pr_info("attached 0x%lx@0x%llx, ecc: %d\n",
  393. cxt->size, (unsigned long long)cxt->phys_addr,
  394. cxt->ecc_size);
  395. return 0;
  396. fail_buf:
  397. kfree(cxt->pstore.buf);
  398. fail_clear:
  399. cxt->pstore.bufsize = 0;
  400. cxt->max_dump_cnt = 0;
  401. fail_cnt:
  402. kfree(cxt->fprz);
  403. fail_init_fprz:
  404. kfree(cxt->cprz);
  405. fail_init_cprz:
  406. ramoops_free_przs(cxt);
  407. fail_out:
  408. return err;
  409. }
  410. static int __exit ramoops_remove(struct platform_device *pdev)
  411. {
  412. #if 0
  413. /* TODO(kees): We cannot unload ramoops since pstore doesn't support
  414. * unregistering yet.
  415. */
  416. struct ramoops_context *cxt = &oops_cxt;
  417. iounmap(cxt->virt_addr);
  418. release_mem_region(cxt->phys_addr, cxt->size);
  419. cxt->max_dump_cnt = 0;
  420. /* TODO(kees): When pstore supports unregistering, call it here. */
  421. kfree(cxt->pstore.buf);
  422. cxt->pstore.bufsize = 0;
  423. return 0;
  424. #endif
  425. return -EBUSY;
  426. }
  427. static struct platform_driver ramoops_driver = {
  428. .probe = ramoops_probe,
  429. .remove = __exit_p(ramoops_remove),
  430. .driver = {
  431. .name = "ramoops",
  432. .owner = THIS_MODULE,
  433. },
  434. };
  435. static void ramoops_register_dummy(void)
  436. {
  437. if (!mem_size)
  438. return;
  439. pr_info("using module parameters\n");
  440. dummy_data = kzalloc(sizeof(*dummy_data), GFP_KERNEL);
  441. if (!dummy_data) {
  442. pr_info("could not allocate pdata\n");
  443. return;
  444. }
  445. dummy_data->mem_size = mem_size;
  446. dummy_data->mem_address = mem_address;
  447. dummy_data->record_size = record_size;
  448. dummy_data->console_size = ramoops_console_size;
  449. dummy_data->ftrace_size = ramoops_ftrace_size;
  450. dummy_data->dump_oops = dump_oops;
  451. /*
  452. * For backwards compatibility ramoops.ecc=1 means 16 bytes ECC
  453. * (using 1 byte for ECC isn't much of use anyway).
  454. */
  455. dummy_data->ecc_size = ramoops_ecc == 1 ? 16 : ramoops_ecc;
  456. dummy = platform_device_register_data(NULL, "ramoops", -1,
  457. dummy_data, sizeof(struct ramoops_platform_data));
  458. if (IS_ERR(dummy)) {
  459. pr_info("could not create platform device: %ld\n",
  460. PTR_ERR(dummy));
  461. }
  462. }
  463. static int __init ramoops_init(void)
  464. {
  465. ramoops_register_dummy();
  466. return platform_driver_register(&ramoops_driver);
  467. }
  468. postcore_initcall(ramoops_init);
  469. static void __exit ramoops_exit(void)
  470. {
  471. platform_driver_unregister(&ramoops_driver);
  472. platform_device_unregister(dummy);
  473. kfree(dummy_data);
  474. }
  475. module_exit(ramoops_exit);
  476. MODULE_LICENSE("GPL");
  477. MODULE_AUTHOR("Marco Stornelli <marco.stornelli@gmail.com>");
  478. MODULE_DESCRIPTION("RAM Oops/Panic logger/driver");