node.c 13 KB

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  1. /*
  2. * drivers/base/node.c - basic Node class support
  3. */
  4. #include <linux/sysdev.h>
  5. #include <linux/module.h>
  6. #include <linux/init.h>
  7. #include <linux/mm.h>
  8. #include <linux/memory.h>
  9. #include <linux/node.h>
  10. #include <linux/hugetlb.h>
  11. #include <linux/cpumask.h>
  12. #include <linux/topology.h>
  13. #include <linux/nodemask.h>
  14. #include <linux/cpu.h>
  15. #include <linux/device.h>
  16. #include <linux/swap.h>
  17. static struct sysdev_class node_class = {
  18. .name = "node",
  19. };
  20. static ssize_t node_read_cpumap(struct sys_device *dev, int type, char *buf)
  21. {
  22. struct node *node_dev = to_node(dev);
  23. const struct cpumask *mask = cpumask_of_node(node_dev->sysdev.id);
  24. int len;
  25. /* 2008/04/07: buf currently PAGE_SIZE, need 9 chars per 32 bits. */
  26. BUILD_BUG_ON((NR_CPUS/32 * 9) > (PAGE_SIZE-1));
  27. len = type?
  28. cpulist_scnprintf(buf, PAGE_SIZE-2, mask) :
  29. cpumask_scnprintf(buf, PAGE_SIZE-2, mask);
  30. buf[len++] = '\n';
  31. buf[len] = '\0';
  32. return len;
  33. }
  34. static inline ssize_t node_read_cpumask(struct sys_device *dev,
  35. struct sysdev_attribute *attr, char *buf)
  36. {
  37. return node_read_cpumap(dev, 0, buf);
  38. }
  39. static inline ssize_t node_read_cpulist(struct sys_device *dev,
  40. struct sysdev_attribute *attr, char *buf)
  41. {
  42. return node_read_cpumap(dev, 1, buf);
  43. }
  44. static SYSDEV_ATTR(cpumap, S_IRUGO, node_read_cpumask, NULL);
  45. static SYSDEV_ATTR(cpulist, S_IRUGO, node_read_cpulist, NULL);
  46. #define K(x) ((x) << (PAGE_SHIFT - 10))
  47. static ssize_t node_read_meminfo(struct sys_device * dev,
  48. struct sysdev_attribute *attr, char * buf)
  49. {
  50. int n;
  51. int nid = dev->id;
  52. struct sysinfo i;
  53. si_meminfo_node(&i, nid);
  54. n = sprintf(buf, "\n"
  55. "Node %d MemTotal: %8lu kB\n"
  56. "Node %d MemFree: %8lu kB\n"
  57. "Node %d MemUsed: %8lu kB\n"
  58. "Node %d Active: %8lu kB\n"
  59. "Node %d Inactive: %8lu kB\n"
  60. "Node %d Active(anon): %8lu kB\n"
  61. "Node %d Inactive(anon): %8lu kB\n"
  62. "Node %d Active(file): %8lu kB\n"
  63. "Node %d Inactive(file): %8lu kB\n"
  64. "Node %d Unevictable: %8lu kB\n"
  65. "Node %d Mlocked: %8lu kB\n"
  66. #ifdef CONFIG_HIGHMEM
  67. "Node %d HighTotal: %8lu kB\n"
  68. "Node %d HighFree: %8lu kB\n"
  69. "Node %d LowTotal: %8lu kB\n"
  70. "Node %d LowFree: %8lu kB\n"
  71. #endif
  72. "Node %d Dirty: %8lu kB\n"
  73. "Node %d Writeback: %8lu kB\n"
  74. "Node %d FilePages: %8lu kB\n"
  75. "Node %d Mapped: %8lu kB\n"
  76. "Node %d AnonPages: %8lu kB\n"
  77. "Node %d Shmem: %8lu kB\n"
  78. "Node %d KernelStack: %8lu kB\n"
  79. "Node %d PageTables: %8lu kB\n"
  80. "Node %d NFS_Unstable: %8lu kB\n"
  81. "Node %d Bounce: %8lu kB\n"
  82. "Node %d WritebackTmp: %8lu kB\n"
  83. "Node %d Slab: %8lu kB\n"
  84. "Node %d SReclaimable: %8lu kB\n"
  85. "Node %d SUnreclaim: %8lu kB\n",
  86. nid, K(i.totalram),
  87. nid, K(i.freeram),
  88. nid, K(i.totalram - i.freeram),
  89. nid, K(node_page_state(nid, NR_ACTIVE_ANON) +
  90. node_page_state(nid, NR_ACTIVE_FILE)),
  91. nid, K(node_page_state(nid, NR_INACTIVE_ANON) +
  92. node_page_state(nid, NR_INACTIVE_FILE)),
  93. nid, K(node_page_state(nid, NR_ACTIVE_ANON)),
  94. nid, K(node_page_state(nid, NR_INACTIVE_ANON)),
  95. nid, K(node_page_state(nid, NR_ACTIVE_FILE)),
  96. nid, K(node_page_state(nid, NR_INACTIVE_FILE)),
  97. nid, K(node_page_state(nid, NR_UNEVICTABLE)),
  98. nid, K(node_page_state(nid, NR_MLOCK)),
  99. #ifdef CONFIG_HIGHMEM
  100. nid, K(i.totalhigh),
  101. nid, K(i.freehigh),
  102. nid, K(i.totalram - i.totalhigh),
  103. nid, K(i.freeram - i.freehigh),
  104. #endif
  105. nid, K(node_page_state(nid, NR_FILE_DIRTY)),
  106. nid, K(node_page_state(nid, NR_WRITEBACK)),
  107. nid, K(node_page_state(nid, NR_FILE_PAGES)),
  108. nid, K(node_page_state(nid, NR_FILE_MAPPED)),
  109. nid, K(node_page_state(nid, NR_ANON_PAGES)),
  110. nid, K(node_page_state(nid, NR_SHMEM)),
  111. nid, node_page_state(nid, NR_KERNEL_STACK) *
  112. THREAD_SIZE / 1024,
  113. nid, K(node_page_state(nid, NR_PAGETABLE)),
  114. nid, K(node_page_state(nid, NR_UNSTABLE_NFS)),
  115. nid, K(node_page_state(nid, NR_BOUNCE)),
  116. nid, K(node_page_state(nid, NR_WRITEBACK_TEMP)),
  117. nid, K(node_page_state(nid, NR_SLAB_RECLAIMABLE) +
  118. node_page_state(nid, NR_SLAB_UNRECLAIMABLE)),
  119. nid, K(node_page_state(nid, NR_SLAB_RECLAIMABLE)),
  120. nid, K(node_page_state(nid, NR_SLAB_UNRECLAIMABLE)));
  121. n += hugetlb_report_node_meminfo(nid, buf + n);
  122. return n;
  123. }
  124. #undef K
  125. static SYSDEV_ATTR(meminfo, S_IRUGO, node_read_meminfo, NULL);
  126. static ssize_t node_read_numastat(struct sys_device * dev,
  127. struct sysdev_attribute *attr, char * buf)
  128. {
  129. return sprintf(buf,
  130. "numa_hit %lu\n"
  131. "numa_miss %lu\n"
  132. "numa_foreign %lu\n"
  133. "interleave_hit %lu\n"
  134. "local_node %lu\n"
  135. "other_node %lu\n",
  136. node_page_state(dev->id, NUMA_HIT),
  137. node_page_state(dev->id, NUMA_MISS),
  138. node_page_state(dev->id, NUMA_FOREIGN),
  139. node_page_state(dev->id, NUMA_INTERLEAVE_HIT),
  140. node_page_state(dev->id, NUMA_LOCAL),
  141. node_page_state(dev->id, NUMA_OTHER));
  142. }
  143. static SYSDEV_ATTR(numastat, S_IRUGO, node_read_numastat, NULL);
  144. static ssize_t node_read_distance(struct sys_device * dev,
  145. struct sysdev_attribute *attr, char * buf)
  146. {
  147. int nid = dev->id;
  148. int len = 0;
  149. int i;
  150. /* buf currently PAGE_SIZE, need ~4 chars per node */
  151. BUILD_BUG_ON(MAX_NUMNODES*4 > PAGE_SIZE/2);
  152. for_each_online_node(i)
  153. len += sprintf(buf + len, "%s%d", i ? " " : "", node_distance(nid, i));
  154. len += sprintf(buf + len, "\n");
  155. return len;
  156. }
  157. static SYSDEV_ATTR(distance, S_IRUGO, node_read_distance, NULL);
  158. /*
  159. * register_node - Setup a sysfs device for a node.
  160. * @num - Node number to use when creating the device.
  161. *
  162. * Initialize and register the node device.
  163. */
  164. int register_node(struct node *node, int num, struct node *parent)
  165. {
  166. int error;
  167. node->sysdev.id = num;
  168. node->sysdev.cls = &node_class;
  169. error = sysdev_register(&node->sysdev);
  170. if (!error){
  171. sysdev_create_file(&node->sysdev, &attr_cpumap);
  172. sysdev_create_file(&node->sysdev, &attr_cpulist);
  173. sysdev_create_file(&node->sysdev, &attr_meminfo);
  174. sysdev_create_file(&node->sysdev, &attr_numastat);
  175. sysdev_create_file(&node->sysdev, &attr_distance);
  176. scan_unevictable_register_node(node);
  177. }
  178. return error;
  179. }
  180. /**
  181. * unregister_node - unregister a node device
  182. * @node: node going away
  183. *
  184. * Unregisters a node device @node. All the devices on the node must be
  185. * unregistered before calling this function.
  186. */
  187. void unregister_node(struct node *node)
  188. {
  189. sysdev_remove_file(&node->sysdev, &attr_cpumap);
  190. sysdev_remove_file(&node->sysdev, &attr_cpulist);
  191. sysdev_remove_file(&node->sysdev, &attr_meminfo);
  192. sysdev_remove_file(&node->sysdev, &attr_numastat);
  193. sysdev_remove_file(&node->sysdev, &attr_distance);
  194. scan_unevictable_unregister_node(node);
  195. sysdev_unregister(&node->sysdev);
  196. }
  197. struct node node_devices[MAX_NUMNODES];
  198. /*
  199. * register cpu under node
  200. */
  201. int register_cpu_under_node(unsigned int cpu, unsigned int nid)
  202. {
  203. if (node_online(nid)) {
  204. struct sys_device *obj = get_cpu_sysdev(cpu);
  205. if (!obj)
  206. return 0;
  207. return sysfs_create_link(&node_devices[nid].sysdev.kobj,
  208. &obj->kobj,
  209. kobject_name(&obj->kobj));
  210. }
  211. return 0;
  212. }
  213. int unregister_cpu_under_node(unsigned int cpu, unsigned int nid)
  214. {
  215. if (node_online(nid)) {
  216. struct sys_device *obj = get_cpu_sysdev(cpu);
  217. if (obj)
  218. sysfs_remove_link(&node_devices[nid].sysdev.kobj,
  219. kobject_name(&obj->kobj));
  220. }
  221. return 0;
  222. }
  223. #ifdef CONFIG_MEMORY_HOTPLUG_SPARSE
  224. #define page_initialized(page) (page->lru.next)
  225. static int get_nid_for_pfn(unsigned long pfn)
  226. {
  227. struct page *page;
  228. if (!pfn_valid_within(pfn))
  229. return -1;
  230. page = pfn_to_page(pfn);
  231. if (!page_initialized(page))
  232. return -1;
  233. return pfn_to_nid(pfn);
  234. }
  235. /* register memory section under specified node if it spans that node */
  236. int register_mem_sect_under_node(struct memory_block *mem_blk, int nid)
  237. {
  238. unsigned long pfn, sect_start_pfn, sect_end_pfn;
  239. if (!mem_blk)
  240. return -EFAULT;
  241. if (!node_online(nid))
  242. return 0;
  243. sect_start_pfn = section_nr_to_pfn(mem_blk->phys_index);
  244. sect_end_pfn = sect_start_pfn + PAGES_PER_SECTION - 1;
  245. for (pfn = sect_start_pfn; pfn <= sect_end_pfn; pfn++) {
  246. int page_nid;
  247. page_nid = get_nid_for_pfn(pfn);
  248. if (page_nid < 0)
  249. continue;
  250. if (page_nid != nid)
  251. continue;
  252. return sysfs_create_link_nowarn(&node_devices[nid].sysdev.kobj,
  253. &mem_blk->sysdev.kobj,
  254. kobject_name(&mem_blk->sysdev.kobj));
  255. }
  256. /* mem section does not span the specified node */
  257. return 0;
  258. }
  259. /* unregister memory section under all nodes that it spans */
  260. int unregister_mem_sect_under_nodes(struct memory_block *mem_blk)
  261. {
  262. nodemask_t unlinked_nodes;
  263. unsigned long pfn, sect_start_pfn, sect_end_pfn;
  264. if (!mem_blk)
  265. return -EFAULT;
  266. nodes_clear(unlinked_nodes);
  267. sect_start_pfn = section_nr_to_pfn(mem_blk->phys_index);
  268. sect_end_pfn = sect_start_pfn + PAGES_PER_SECTION - 1;
  269. for (pfn = sect_start_pfn; pfn <= sect_end_pfn; pfn++) {
  270. int nid;
  271. nid = get_nid_for_pfn(pfn);
  272. if (nid < 0)
  273. continue;
  274. if (!node_online(nid))
  275. continue;
  276. if (node_test_and_set(nid, unlinked_nodes))
  277. continue;
  278. sysfs_remove_link(&node_devices[nid].sysdev.kobj,
  279. kobject_name(&mem_blk->sysdev.kobj));
  280. }
  281. return 0;
  282. }
  283. static int link_mem_sections(int nid)
  284. {
  285. unsigned long start_pfn = NODE_DATA(nid)->node_start_pfn;
  286. unsigned long end_pfn = start_pfn + NODE_DATA(nid)->node_spanned_pages;
  287. unsigned long pfn;
  288. int err = 0;
  289. for (pfn = start_pfn; pfn < end_pfn; pfn += PAGES_PER_SECTION) {
  290. unsigned long section_nr = pfn_to_section_nr(pfn);
  291. struct mem_section *mem_sect;
  292. struct memory_block *mem_blk;
  293. int ret;
  294. if (!present_section_nr(section_nr))
  295. continue;
  296. mem_sect = __nr_to_section(section_nr);
  297. mem_blk = find_memory_block(mem_sect);
  298. ret = register_mem_sect_under_node(mem_blk, nid);
  299. if (!err)
  300. err = ret;
  301. /* discard ref obtained in find_memory_block() */
  302. kobject_put(&mem_blk->sysdev.kobj);
  303. }
  304. return err;
  305. }
  306. #else
  307. static int link_mem_sections(int nid) { return 0; }
  308. #endif /* CONFIG_MEMORY_HOTPLUG_SPARSE */
  309. int register_one_node(int nid)
  310. {
  311. int error = 0;
  312. int cpu;
  313. if (node_online(nid)) {
  314. int p_node = parent_node(nid);
  315. struct node *parent = NULL;
  316. if (p_node != nid)
  317. parent = &node_devices[p_node];
  318. error = register_node(&node_devices[nid], nid, parent);
  319. /* link cpu under this node */
  320. for_each_present_cpu(cpu) {
  321. if (cpu_to_node(cpu) == nid)
  322. register_cpu_under_node(cpu, nid);
  323. }
  324. /* link memory sections under this node */
  325. error = link_mem_sections(nid);
  326. }
  327. return error;
  328. }
  329. void unregister_one_node(int nid)
  330. {
  331. unregister_node(&node_devices[nid]);
  332. }
  333. /*
  334. * node states attributes
  335. */
  336. static ssize_t print_nodes_state(enum node_states state, char *buf)
  337. {
  338. int n;
  339. n = nodelist_scnprintf(buf, PAGE_SIZE, node_states[state]);
  340. if (n > 0 && PAGE_SIZE > n + 1) {
  341. *(buf + n++) = '\n';
  342. *(buf + n++) = '\0';
  343. }
  344. return n;
  345. }
  346. static ssize_t print_nodes_possible(struct sysdev_class *class, char *buf)
  347. {
  348. return print_nodes_state(N_POSSIBLE, buf);
  349. }
  350. static ssize_t print_nodes_online(struct sysdev_class *class, char *buf)
  351. {
  352. return print_nodes_state(N_ONLINE, buf);
  353. }
  354. static ssize_t print_nodes_has_normal_memory(struct sysdev_class *class,
  355. char *buf)
  356. {
  357. return print_nodes_state(N_NORMAL_MEMORY, buf);
  358. }
  359. static ssize_t print_nodes_has_cpu(struct sysdev_class *class, char *buf)
  360. {
  361. return print_nodes_state(N_CPU, buf);
  362. }
  363. static SYSDEV_CLASS_ATTR(possible, 0444, print_nodes_possible, NULL);
  364. static SYSDEV_CLASS_ATTR(online, 0444, print_nodes_online, NULL);
  365. static SYSDEV_CLASS_ATTR(has_normal_memory, 0444, print_nodes_has_normal_memory,
  366. NULL);
  367. static SYSDEV_CLASS_ATTR(has_cpu, 0444, print_nodes_has_cpu, NULL);
  368. #ifdef CONFIG_HIGHMEM
  369. static ssize_t print_nodes_has_high_memory(struct sysdev_class *class,
  370. char *buf)
  371. {
  372. return print_nodes_state(N_HIGH_MEMORY, buf);
  373. }
  374. static SYSDEV_CLASS_ATTR(has_high_memory, 0444, print_nodes_has_high_memory,
  375. NULL);
  376. #endif
  377. struct sysdev_class_attribute *node_state_attr[] = {
  378. &attr_possible,
  379. &attr_online,
  380. &attr_has_normal_memory,
  381. #ifdef CONFIG_HIGHMEM
  382. &attr_has_high_memory,
  383. #endif
  384. &attr_has_cpu,
  385. };
  386. static int node_states_init(void)
  387. {
  388. int i;
  389. int err = 0;
  390. for (i = 0; i < NR_NODE_STATES; i++) {
  391. int ret;
  392. ret = sysdev_class_create_file(&node_class, node_state_attr[i]);
  393. if (!err)
  394. err = ret;
  395. }
  396. return err;
  397. }
  398. static int __init register_node_type(void)
  399. {
  400. int ret;
  401. ret = sysdev_class_register(&node_class);
  402. if (!ret)
  403. ret = node_states_init();
  404. /*
  405. * Note: we're not going to unregister the node class if we fail
  406. * to register the node state class attribute files.
  407. */
  408. return ret;
  409. }
  410. postcore_initcall(register_node_type);