page-types.c 20 KB

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  1. /*
  2. * page-types: Tool for querying page flags
  3. *
  4. * Copyright (C) 2009 Intel corporation
  5. *
  6. * Authors: Wu Fengguang <fengguang.wu@intel.com>
  7. *
  8. * Released under the General Public License (GPL).
  9. */
  10. #define _LARGEFILE64_SOURCE
  11. #include <stdio.h>
  12. #include <stdlib.h>
  13. #include <unistd.h>
  14. #include <stdint.h>
  15. #include <stdarg.h>
  16. #include <string.h>
  17. #include <getopt.h>
  18. #include <limits.h>
  19. #include <assert.h>
  20. #include <sys/types.h>
  21. #include <sys/errno.h>
  22. #include <sys/fcntl.h>
  23. /*
  24. * pagemap kernel ABI bits
  25. */
  26. #define PM_ENTRY_BYTES sizeof(uint64_t)
  27. #define PM_STATUS_BITS 3
  28. #define PM_STATUS_OFFSET (64 - PM_STATUS_BITS)
  29. #define PM_STATUS_MASK (((1LL << PM_STATUS_BITS) - 1) << PM_STATUS_OFFSET)
  30. #define PM_STATUS(nr) (((nr) << PM_STATUS_OFFSET) & PM_STATUS_MASK)
  31. #define PM_PSHIFT_BITS 6
  32. #define PM_PSHIFT_OFFSET (PM_STATUS_OFFSET - PM_PSHIFT_BITS)
  33. #define PM_PSHIFT_MASK (((1LL << PM_PSHIFT_BITS) - 1) << PM_PSHIFT_OFFSET)
  34. #define PM_PSHIFT(x) (((u64) (x) << PM_PSHIFT_OFFSET) & PM_PSHIFT_MASK)
  35. #define PM_PFRAME_MASK ((1LL << PM_PSHIFT_OFFSET) - 1)
  36. #define PM_PFRAME(x) ((x) & PM_PFRAME_MASK)
  37. #define PM_PRESENT PM_STATUS(4LL)
  38. #define PM_SWAP PM_STATUS(2LL)
  39. /*
  40. * kernel page flags
  41. */
  42. #define KPF_BYTES 8
  43. #define PROC_KPAGEFLAGS "/proc/kpageflags"
  44. /* copied from kpageflags_read() */
  45. #define KPF_LOCKED 0
  46. #define KPF_ERROR 1
  47. #define KPF_REFERENCED 2
  48. #define KPF_UPTODATE 3
  49. #define KPF_DIRTY 4
  50. #define KPF_LRU 5
  51. #define KPF_ACTIVE 6
  52. #define KPF_SLAB 7
  53. #define KPF_WRITEBACK 8
  54. #define KPF_RECLAIM 9
  55. #define KPF_BUDDY 10
  56. /* [11-20] new additions in 2.6.31 */
  57. #define KPF_MMAP 11
  58. #define KPF_ANON 12
  59. #define KPF_SWAPCACHE 13
  60. #define KPF_SWAPBACKED 14
  61. #define KPF_COMPOUND_HEAD 15
  62. #define KPF_COMPOUND_TAIL 16
  63. #define KPF_HUGE 17
  64. #define KPF_UNEVICTABLE 18
  65. #define KPF_HWPOISON 19
  66. #define KPF_NOPAGE 20
  67. #define KPF_KSM 21
  68. /* [32-] kernel hacking assistances */
  69. #define KPF_RESERVED 32
  70. #define KPF_MLOCKED 33
  71. #define KPF_MAPPEDTODISK 34
  72. #define KPF_PRIVATE 35
  73. #define KPF_PRIVATE_2 36
  74. #define KPF_OWNER_PRIVATE 37
  75. #define KPF_ARCH 38
  76. #define KPF_UNCACHED 39
  77. /* [48-] take some arbitrary free slots for expanding overloaded flags
  78. * not part of kernel API
  79. */
  80. #define KPF_READAHEAD 48
  81. #define KPF_SLOB_FREE 49
  82. #define KPF_SLUB_FROZEN 50
  83. #define KPF_SLUB_DEBUG 51
  84. #define KPF_ALL_BITS ((uint64_t)~0ULL)
  85. #define KPF_HACKERS_BITS (0xffffULL << 32)
  86. #define KPF_OVERLOADED_BITS (0xffffULL << 48)
  87. #define BIT(name) (1ULL << KPF_##name)
  88. #define BITS_COMPOUND (BIT(COMPOUND_HEAD) | BIT(COMPOUND_TAIL))
  89. static char *page_flag_names[] = {
  90. [KPF_LOCKED] = "L:locked",
  91. [KPF_ERROR] = "E:error",
  92. [KPF_REFERENCED] = "R:referenced",
  93. [KPF_UPTODATE] = "U:uptodate",
  94. [KPF_DIRTY] = "D:dirty",
  95. [KPF_LRU] = "l:lru",
  96. [KPF_ACTIVE] = "A:active",
  97. [KPF_SLAB] = "S:slab",
  98. [KPF_WRITEBACK] = "W:writeback",
  99. [KPF_RECLAIM] = "I:reclaim",
  100. [KPF_BUDDY] = "B:buddy",
  101. [KPF_MMAP] = "M:mmap",
  102. [KPF_ANON] = "a:anonymous",
  103. [KPF_SWAPCACHE] = "s:swapcache",
  104. [KPF_SWAPBACKED] = "b:swapbacked",
  105. [KPF_COMPOUND_HEAD] = "H:compound_head",
  106. [KPF_COMPOUND_TAIL] = "T:compound_tail",
  107. [KPF_HUGE] = "G:huge",
  108. [KPF_UNEVICTABLE] = "u:unevictable",
  109. [KPF_HWPOISON] = "X:hwpoison",
  110. [KPF_NOPAGE] = "n:nopage",
  111. [KPF_KSM] = "x:ksm",
  112. [KPF_RESERVED] = "r:reserved",
  113. [KPF_MLOCKED] = "m:mlocked",
  114. [KPF_MAPPEDTODISK] = "d:mappedtodisk",
  115. [KPF_PRIVATE] = "P:private",
  116. [KPF_PRIVATE_2] = "p:private_2",
  117. [KPF_OWNER_PRIVATE] = "O:owner_private",
  118. [KPF_ARCH] = "h:arch",
  119. [KPF_UNCACHED] = "c:uncached",
  120. [KPF_READAHEAD] = "I:readahead",
  121. [KPF_SLOB_FREE] = "P:slob_free",
  122. [KPF_SLUB_FROZEN] = "A:slub_frozen",
  123. [KPF_SLUB_DEBUG] = "E:slub_debug",
  124. };
  125. /*
  126. * data structures
  127. */
  128. static int opt_raw; /* for kernel developers */
  129. static int opt_list; /* list pages (in ranges) */
  130. static int opt_no_summary; /* don't show summary */
  131. static pid_t opt_pid; /* process to walk */
  132. #define MAX_ADDR_RANGES 1024
  133. static int nr_addr_ranges;
  134. static unsigned long opt_offset[MAX_ADDR_RANGES];
  135. static unsigned long opt_size[MAX_ADDR_RANGES];
  136. #define MAX_VMAS 10240
  137. static int nr_vmas;
  138. static unsigned long pg_start[MAX_VMAS];
  139. static unsigned long pg_end[MAX_VMAS];
  140. #define MAX_BIT_FILTERS 64
  141. static int nr_bit_filters;
  142. static uint64_t opt_mask[MAX_BIT_FILTERS];
  143. static uint64_t opt_bits[MAX_BIT_FILTERS];
  144. static int page_size;
  145. static int pagemap_fd;
  146. static int kpageflags_fd;
  147. static int opt_hwpoison;
  148. static int opt_unpoison;
  149. static char *hwpoison_debug_fs = "/debug/hwpoison";
  150. static int hwpoison_inject_fd;
  151. static int hwpoison_forget_fd;
  152. #define HASH_SHIFT 13
  153. #define HASH_SIZE (1 << HASH_SHIFT)
  154. #define HASH_MASK (HASH_SIZE - 1)
  155. #define HASH_KEY(flags) (flags & HASH_MASK)
  156. static unsigned long total_pages;
  157. static unsigned long nr_pages[HASH_SIZE];
  158. static uint64_t page_flags[HASH_SIZE];
  159. /*
  160. * helper functions
  161. */
  162. #define ARRAY_SIZE(x) (sizeof(x) / sizeof((x)[0]))
  163. #define min_t(type, x, y) ({ \
  164. type __min1 = (x); \
  165. type __min2 = (y); \
  166. __min1 < __min2 ? __min1 : __min2; })
  167. #define max_t(type, x, y) ({ \
  168. type __max1 = (x); \
  169. type __max2 = (y); \
  170. __max1 > __max2 ? __max1 : __max2; })
  171. static unsigned long pages2mb(unsigned long pages)
  172. {
  173. return (pages * page_size) >> 20;
  174. }
  175. static void fatal(const char *x, ...)
  176. {
  177. va_list ap;
  178. va_start(ap, x);
  179. vfprintf(stderr, x, ap);
  180. va_end(ap);
  181. exit(EXIT_FAILURE);
  182. }
  183. static int checked_open(const char *pathname, int flags)
  184. {
  185. int fd = open(pathname, flags);
  186. if (fd < 0) {
  187. perror(pathname);
  188. exit(EXIT_FAILURE);
  189. }
  190. return fd;
  191. }
  192. /*
  193. * pagemap/kpageflags routines
  194. */
  195. static unsigned long do_u64_read(int fd, char *name,
  196. uint64_t *buf,
  197. unsigned long index,
  198. unsigned long count)
  199. {
  200. long bytes;
  201. if (index > ULONG_MAX / 8)
  202. fatal("index overflow: %lu\n", index);
  203. if (lseek(fd, index * 8, SEEK_SET) < 0) {
  204. perror(name);
  205. exit(EXIT_FAILURE);
  206. }
  207. bytes = read(fd, buf, count * 8);
  208. if (bytes < 0) {
  209. perror(name);
  210. exit(EXIT_FAILURE);
  211. }
  212. if (bytes % 8)
  213. fatal("partial read: %lu bytes\n", bytes);
  214. return bytes / 8;
  215. }
  216. static unsigned long kpageflags_read(uint64_t *buf,
  217. unsigned long index,
  218. unsigned long pages)
  219. {
  220. return do_u64_read(kpageflags_fd, PROC_KPAGEFLAGS, buf, index, pages);
  221. }
  222. static unsigned long pagemap_read(uint64_t *buf,
  223. unsigned long index,
  224. unsigned long pages)
  225. {
  226. return do_u64_read(pagemap_fd, "/proc/pid/pagemap", buf, index, pages);
  227. }
  228. static unsigned long pagemap_pfn(uint64_t val)
  229. {
  230. unsigned long pfn;
  231. if (val & PM_PRESENT)
  232. pfn = PM_PFRAME(val);
  233. else
  234. pfn = 0;
  235. return pfn;
  236. }
  237. /*
  238. * page flag names
  239. */
  240. static char *page_flag_name(uint64_t flags)
  241. {
  242. static char buf[65];
  243. int present;
  244. int i, j;
  245. for (i = 0, j = 0; i < ARRAY_SIZE(page_flag_names); i++) {
  246. present = (flags >> i) & 1;
  247. if (!page_flag_names[i]) {
  248. if (present)
  249. fatal("unkown flag bit %d\n", i);
  250. continue;
  251. }
  252. buf[j++] = present ? page_flag_names[i][0] : '_';
  253. }
  254. return buf;
  255. }
  256. static char *page_flag_longname(uint64_t flags)
  257. {
  258. static char buf[1024];
  259. int i, n;
  260. for (i = 0, n = 0; i < ARRAY_SIZE(page_flag_names); i++) {
  261. if (!page_flag_names[i])
  262. continue;
  263. if ((flags >> i) & 1)
  264. n += snprintf(buf + n, sizeof(buf) - n, "%s,",
  265. page_flag_names[i] + 2);
  266. }
  267. if (n)
  268. n--;
  269. buf[n] = '\0';
  270. return buf;
  271. }
  272. /*
  273. * page list and summary
  274. */
  275. static void show_page_range(unsigned long voffset,
  276. unsigned long offset, uint64_t flags)
  277. {
  278. static uint64_t flags0;
  279. static unsigned long voff;
  280. static unsigned long index;
  281. static unsigned long count;
  282. if (flags == flags0 && offset == index + count &&
  283. (!opt_pid || voffset == voff + count)) {
  284. count++;
  285. return;
  286. }
  287. if (count) {
  288. if (opt_pid)
  289. printf("%lx\t", voff);
  290. printf("%lx\t%lx\t%s\n",
  291. index, count, page_flag_name(flags0));
  292. }
  293. flags0 = flags;
  294. index = offset;
  295. voff = voffset;
  296. count = 1;
  297. }
  298. static void show_page(unsigned long voffset,
  299. unsigned long offset, uint64_t flags)
  300. {
  301. if (opt_pid)
  302. printf("%lx\t", voffset);
  303. printf("%lx\t%s\n", offset, page_flag_name(flags));
  304. }
  305. static void show_summary(void)
  306. {
  307. int i;
  308. printf(" flags\tpage-count MB"
  309. " symbolic-flags\t\t\tlong-symbolic-flags\n");
  310. for (i = 0; i < ARRAY_SIZE(nr_pages); i++) {
  311. if (nr_pages[i])
  312. printf("0x%016llx\t%10lu %8lu %s\t%s\n",
  313. (unsigned long long)page_flags[i],
  314. nr_pages[i],
  315. pages2mb(nr_pages[i]),
  316. page_flag_name(page_flags[i]),
  317. page_flag_longname(page_flags[i]));
  318. }
  319. printf(" total\t%10lu %8lu\n",
  320. total_pages, pages2mb(total_pages));
  321. }
  322. /*
  323. * page flag filters
  324. */
  325. static int bit_mask_ok(uint64_t flags)
  326. {
  327. int i;
  328. for (i = 0; i < nr_bit_filters; i++) {
  329. if (opt_bits[i] == KPF_ALL_BITS) {
  330. if ((flags & opt_mask[i]) == 0)
  331. return 0;
  332. } else {
  333. if ((flags & opt_mask[i]) != opt_bits[i])
  334. return 0;
  335. }
  336. }
  337. return 1;
  338. }
  339. static uint64_t expand_overloaded_flags(uint64_t flags)
  340. {
  341. /* SLOB/SLUB overload several page flags */
  342. if (flags & BIT(SLAB)) {
  343. if (flags & BIT(PRIVATE))
  344. flags ^= BIT(PRIVATE) | BIT(SLOB_FREE);
  345. if (flags & BIT(ACTIVE))
  346. flags ^= BIT(ACTIVE) | BIT(SLUB_FROZEN);
  347. if (flags & BIT(ERROR))
  348. flags ^= BIT(ERROR) | BIT(SLUB_DEBUG);
  349. }
  350. /* PG_reclaim is overloaded as PG_readahead in the read path */
  351. if ((flags & (BIT(RECLAIM) | BIT(WRITEBACK))) == BIT(RECLAIM))
  352. flags ^= BIT(RECLAIM) | BIT(READAHEAD);
  353. return flags;
  354. }
  355. static uint64_t well_known_flags(uint64_t flags)
  356. {
  357. /* hide flags intended only for kernel hacker */
  358. flags &= ~KPF_HACKERS_BITS;
  359. /* hide non-hugeTLB compound pages */
  360. if ((flags & BITS_COMPOUND) && !(flags & BIT(HUGE)))
  361. flags &= ~BITS_COMPOUND;
  362. return flags;
  363. }
  364. static uint64_t kpageflags_flags(uint64_t flags)
  365. {
  366. flags = expand_overloaded_flags(flags);
  367. if (!opt_raw)
  368. flags = well_known_flags(flags);
  369. return flags;
  370. }
  371. /*
  372. * page actions
  373. */
  374. static void prepare_hwpoison_fd(void)
  375. {
  376. char buf[100];
  377. if (opt_hwpoison && !hwpoison_inject_fd) {
  378. sprintf(buf, "%s/corrupt-pfn", hwpoison_debug_fs);
  379. hwpoison_inject_fd = checked_open(buf, O_WRONLY);
  380. }
  381. if (opt_unpoison && !hwpoison_forget_fd) {
  382. sprintf(buf, "%s/renew-pfn", hwpoison_debug_fs);
  383. hwpoison_forget_fd = checked_open(buf, O_WRONLY);
  384. }
  385. }
  386. static int hwpoison_page(unsigned long offset)
  387. {
  388. char buf[100];
  389. int len;
  390. len = sprintf(buf, "0x%lx\n", offset);
  391. len = write(hwpoison_inject_fd, buf, len);
  392. if (len < 0) {
  393. perror("hwpoison inject");
  394. return len;
  395. }
  396. return 0;
  397. }
  398. static int unpoison_page(unsigned long offset)
  399. {
  400. char buf[100];
  401. int len;
  402. len = sprintf(buf, "0x%lx\n", offset);
  403. len = write(hwpoison_forget_fd, buf, len);
  404. if (len < 0) {
  405. perror("hwpoison forget");
  406. return len;
  407. }
  408. return 0;
  409. }
  410. /*
  411. * page frame walker
  412. */
  413. static int hash_slot(uint64_t flags)
  414. {
  415. int k = HASH_KEY(flags);
  416. int i;
  417. /* Explicitly reserve slot 0 for flags 0: the following logic
  418. * cannot distinguish an unoccupied slot from slot (flags==0).
  419. */
  420. if (flags == 0)
  421. return 0;
  422. /* search through the remaining (HASH_SIZE-1) slots */
  423. for (i = 1; i < ARRAY_SIZE(page_flags); i++, k++) {
  424. if (!k || k >= ARRAY_SIZE(page_flags))
  425. k = 1;
  426. if (page_flags[k] == 0) {
  427. page_flags[k] = flags;
  428. return k;
  429. }
  430. if (page_flags[k] == flags)
  431. return k;
  432. }
  433. fatal("hash table full: bump up HASH_SHIFT?\n");
  434. exit(EXIT_FAILURE);
  435. }
  436. static void add_page(unsigned long voffset,
  437. unsigned long offset, uint64_t flags)
  438. {
  439. flags = kpageflags_flags(flags);
  440. if (!bit_mask_ok(flags))
  441. return;
  442. if (opt_hwpoison)
  443. hwpoison_page(offset);
  444. if (opt_unpoison)
  445. unpoison_page(offset);
  446. if (opt_list == 1)
  447. show_page_range(voffset, offset, flags);
  448. else if (opt_list == 2)
  449. show_page(voffset, offset, flags);
  450. nr_pages[hash_slot(flags)]++;
  451. total_pages++;
  452. }
  453. #define KPAGEFLAGS_BATCH (64 << 10) /* 64k pages */
  454. static void walk_pfn(unsigned long voffset,
  455. unsigned long index,
  456. unsigned long count)
  457. {
  458. uint64_t buf[KPAGEFLAGS_BATCH];
  459. unsigned long batch;
  460. unsigned long pages;
  461. unsigned long i;
  462. while (count) {
  463. batch = min_t(unsigned long, count, KPAGEFLAGS_BATCH);
  464. pages = kpageflags_read(buf, index, batch);
  465. if (pages == 0)
  466. break;
  467. for (i = 0; i < pages; i++)
  468. add_page(voffset + i, index + i, buf[i]);
  469. index += pages;
  470. count -= pages;
  471. }
  472. }
  473. #define PAGEMAP_BATCH (64 << 10)
  474. static void walk_vma(unsigned long index, unsigned long count)
  475. {
  476. uint64_t buf[PAGEMAP_BATCH];
  477. unsigned long batch;
  478. unsigned long pages;
  479. unsigned long pfn;
  480. unsigned long i;
  481. while (count) {
  482. batch = min_t(unsigned long, count, PAGEMAP_BATCH);
  483. pages = pagemap_read(buf, index, batch);
  484. if (pages == 0)
  485. break;
  486. for (i = 0; i < pages; i++) {
  487. pfn = pagemap_pfn(buf[i]);
  488. if (pfn)
  489. walk_pfn(index + i, pfn, 1);
  490. }
  491. index += pages;
  492. count -= pages;
  493. }
  494. }
  495. static void walk_task(unsigned long index, unsigned long count)
  496. {
  497. const unsigned long end = index + count;
  498. unsigned long start;
  499. int i = 0;
  500. while (index < end) {
  501. while (pg_end[i] <= index)
  502. if (++i >= nr_vmas)
  503. return;
  504. if (pg_start[i] >= end)
  505. return;
  506. start = max_t(unsigned long, pg_start[i], index);
  507. index = min_t(unsigned long, pg_end[i], end);
  508. assert(start < index);
  509. walk_vma(start, index - start);
  510. }
  511. }
  512. static void add_addr_range(unsigned long offset, unsigned long size)
  513. {
  514. if (nr_addr_ranges >= MAX_ADDR_RANGES)
  515. fatal("too many addr ranges\n");
  516. opt_offset[nr_addr_ranges] = offset;
  517. opt_size[nr_addr_ranges] = min_t(unsigned long, size, ULONG_MAX-offset);
  518. nr_addr_ranges++;
  519. }
  520. static void walk_addr_ranges(void)
  521. {
  522. int i;
  523. kpageflags_fd = checked_open(PROC_KPAGEFLAGS, O_RDONLY);
  524. if (!nr_addr_ranges)
  525. add_addr_range(0, ULONG_MAX);
  526. for (i = 0; i < nr_addr_ranges; i++)
  527. if (!opt_pid)
  528. walk_pfn(0, opt_offset[i], opt_size[i]);
  529. else
  530. walk_task(opt_offset[i], opt_size[i]);
  531. close(kpageflags_fd);
  532. }
  533. /*
  534. * user interface
  535. */
  536. static const char *page_flag_type(uint64_t flag)
  537. {
  538. if (flag & KPF_HACKERS_BITS)
  539. return "(r)";
  540. if (flag & KPF_OVERLOADED_BITS)
  541. return "(o)";
  542. return " ";
  543. }
  544. static void usage(void)
  545. {
  546. int i, j;
  547. printf(
  548. "page-types [options]\n"
  549. " -r|--raw Raw mode, for kernel developers\n"
  550. " -a|--addr addr-spec Walk a range of pages\n"
  551. " -b|--bits bits-spec Walk pages with specified bits\n"
  552. " -p|--pid pid Walk process address space\n"
  553. #if 0 /* planned features */
  554. " -f|--file filename Walk file address space\n"
  555. #endif
  556. " -l|--list Show page details in ranges\n"
  557. " -L|--list-each Show page details one by one\n"
  558. " -N|--no-summary Don't show summay info\n"
  559. " -X|--hwpoison hwpoison pages\n"
  560. " -x|--unpoison unpoison pages\n"
  561. " -h|--help Show this usage message\n"
  562. "addr-spec:\n"
  563. " N one page at offset N (unit: pages)\n"
  564. " N+M pages range from N to N+M-1\n"
  565. " N,M pages range from N to M-1\n"
  566. " N, pages range from N to end\n"
  567. " ,M pages range from 0 to M-1\n"
  568. "bits-spec:\n"
  569. " bit1,bit2 (flags & (bit1|bit2)) != 0\n"
  570. " bit1,bit2=bit1 (flags & (bit1|bit2)) == bit1\n"
  571. " bit1,~bit2 (flags & (bit1|bit2)) == bit1\n"
  572. " =bit1,bit2 flags == (bit1|bit2)\n"
  573. "bit-names:\n"
  574. );
  575. for (i = 0, j = 0; i < ARRAY_SIZE(page_flag_names); i++) {
  576. if (!page_flag_names[i])
  577. continue;
  578. printf("%16s%s", page_flag_names[i] + 2,
  579. page_flag_type(1ULL << i));
  580. if (++j > 3) {
  581. j = 0;
  582. putchar('\n');
  583. }
  584. }
  585. printf("\n "
  586. "(r) raw mode bits (o) overloaded bits\n");
  587. }
  588. static unsigned long long parse_number(const char *str)
  589. {
  590. unsigned long long n;
  591. n = strtoll(str, NULL, 0);
  592. if (n == 0 && str[0] != '0')
  593. fatal("invalid name or number: %s\n", str);
  594. return n;
  595. }
  596. static void parse_pid(const char *str)
  597. {
  598. FILE *file;
  599. char buf[5000];
  600. opt_pid = parse_number(str);
  601. sprintf(buf, "/proc/%d/pagemap", opt_pid);
  602. pagemap_fd = checked_open(buf, O_RDONLY);
  603. sprintf(buf, "/proc/%d/maps", opt_pid);
  604. file = fopen(buf, "r");
  605. if (!file) {
  606. perror(buf);
  607. exit(EXIT_FAILURE);
  608. }
  609. while (fgets(buf, sizeof(buf), file) != NULL) {
  610. unsigned long vm_start;
  611. unsigned long vm_end;
  612. unsigned long long pgoff;
  613. int major, minor;
  614. char r, w, x, s;
  615. unsigned long ino;
  616. int n;
  617. n = sscanf(buf, "%lx-%lx %c%c%c%c %llx %x:%x %lu",
  618. &vm_start,
  619. &vm_end,
  620. &r, &w, &x, &s,
  621. &pgoff,
  622. &major, &minor,
  623. &ino);
  624. if (n < 10) {
  625. fprintf(stderr, "unexpected line: %s\n", buf);
  626. continue;
  627. }
  628. pg_start[nr_vmas] = vm_start / page_size;
  629. pg_end[nr_vmas] = vm_end / page_size;
  630. if (++nr_vmas >= MAX_VMAS) {
  631. fprintf(stderr, "too many VMAs\n");
  632. break;
  633. }
  634. }
  635. fclose(file);
  636. }
  637. static void parse_file(const char *name)
  638. {
  639. }
  640. static void parse_addr_range(const char *optarg)
  641. {
  642. unsigned long offset;
  643. unsigned long size;
  644. char *p;
  645. p = strchr(optarg, ',');
  646. if (!p)
  647. p = strchr(optarg, '+');
  648. if (p == optarg) {
  649. offset = 0;
  650. size = parse_number(p + 1);
  651. } else if (p) {
  652. offset = parse_number(optarg);
  653. if (p[1] == '\0')
  654. size = ULONG_MAX;
  655. else {
  656. size = parse_number(p + 1);
  657. if (*p == ',') {
  658. if (size < offset)
  659. fatal("invalid range: %lu,%lu\n",
  660. offset, size);
  661. size -= offset;
  662. }
  663. }
  664. } else {
  665. offset = parse_number(optarg);
  666. size = 1;
  667. }
  668. add_addr_range(offset, size);
  669. }
  670. static void add_bits_filter(uint64_t mask, uint64_t bits)
  671. {
  672. if (nr_bit_filters >= MAX_BIT_FILTERS)
  673. fatal("too much bit filters\n");
  674. opt_mask[nr_bit_filters] = mask;
  675. opt_bits[nr_bit_filters] = bits;
  676. nr_bit_filters++;
  677. }
  678. static uint64_t parse_flag_name(const char *str, int len)
  679. {
  680. int i;
  681. if (!*str || !len)
  682. return 0;
  683. if (len <= 8 && !strncmp(str, "compound", len))
  684. return BITS_COMPOUND;
  685. for (i = 0; i < ARRAY_SIZE(page_flag_names); i++) {
  686. if (!page_flag_names[i])
  687. continue;
  688. if (!strncmp(str, page_flag_names[i] + 2, len))
  689. return 1ULL << i;
  690. }
  691. return parse_number(str);
  692. }
  693. static uint64_t parse_flag_names(const char *str, int all)
  694. {
  695. const char *p = str;
  696. uint64_t flags = 0;
  697. while (1) {
  698. if (*p == ',' || *p == '=' || *p == '\0') {
  699. if ((*str != '~') || (*str == '~' && all && *++str))
  700. flags |= parse_flag_name(str, p - str);
  701. if (*p != ',')
  702. break;
  703. str = p + 1;
  704. }
  705. p++;
  706. }
  707. return flags;
  708. }
  709. static void parse_bits_mask(const char *optarg)
  710. {
  711. uint64_t mask;
  712. uint64_t bits;
  713. const char *p;
  714. p = strchr(optarg, '=');
  715. if (p == optarg) {
  716. mask = KPF_ALL_BITS;
  717. bits = parse_flag_names(p + 1, 0);
  718. } else if (p) {
  719. mask = parse_flag_names(optarg, 0);
  720. bits = parse_flag_names(p + 1, 0);
  721. } else if (strchr(optarg, '~')) {
  722. mask = parse_flag_names(optarg, 1);
  723. bits = parse_flag_names(optarg, 0);
  724. } else {
  725. mask = parse_flag_names(optarg, 0);
  726. bits = KPF_ALL_BITS;
  727. }
  728. add_bits_filter(mask, bits);
  729. }
  730. static struct option opts[] = {
  731. { "raw" , 0, NULL, 'r' },
  732. { "pid" , 1, NULL, 'p' },
  733. { "file" , 1, NULL, 'f' },
  734. { "addr" , 1, NULL, 'a' },
  735. { "bits" , 1, NULL, 'b' },
  736. { "list" , 0, NULL, 'l' },
  737. { "list-each" , 0, NULL, 'L' },
  738. { "no-summary", 0, NULL, 'N' },
  739. { "hwpoison" , 0, NULL, 'X' },
  740. { "unpoison" , 0, NULL, 'x' },
  741. { "help" , 0, NULL, 'h' },
  742. { NULL , 0, NULL, 0 }
  743. };
  744. int main(int argc, char *argv[])
  745. {
  746. int c;
  747. page_size = getpagesize();
  748. while ((c = getopt_long(argc, argv,
  749. "rp:f:a:b:lLNXxh", opts, NULL)) != -1) {
  750. switch (c) {
  751. case 'r':
  752. opt_raw = 1;
  753. break;
  754. case 'p':
  755. parse_pid(optarg);
  756. break;
  757. case 'f':
  758. parse_file(optarg);
  759. break;
  760. case 'a':
  761. parse_addr_range(optarg);
  762. break;
  763. case 'b':
  764. parse_bits_mask(optarg);
  765. break;
  766. case 'l':
  767. opt_list = 1;
  768. break;
  769. case 'L':
  770. opt_list = 2;
  771. break;
  772. case 'N':
  773. opt_no_summary = 1;
  774. break;
  775. case 'X':
  776. opt_hwpoison = 1;
  777. prepare_hwpoison_fd();
  778. break;
  779. case 'x':
  780. opt_unpoison = 1;
  781. prepare_hwpoison_fd();
  782. break;
  783. case 'h':
  784. usage();
  785. exit(0);
  786. default:
  787. usage();
  788. exit(1);
  789. }
  790. }
  791. if (opt_list && opt_pid)
  792. printf("voffset\t");
  793. if (opt_list == 1)
  794. printf("offset\tlen\tflags\n");
  795. if (opt_list == 2)
  796. printf("offset\tflags\n");
  797. walk_addr_ranges();
  798. if (opt_list == 1)
  799. show_page_range(0, 0, 0); /* drain the buffer */
  800. if (opt_no_summary)
  801. return 0;
  802. if (opt_list)
  803. printf("\n\n");
  804. show_summary();
  805. return 0;
  806. }