sysinfo.c 12 KB

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  1. /*
  2. * Copyright IBM Corp. 2001, 2009
  3. * Author(s): Ulrich Weigand <Ulrich.Weigand@de.ibm.com>,
  4. * Martin Schwidefsky <schwidefsky@de.ibm.com>,
  5. */
  6. #include <linux/kernel.h>
  7. #include <linux/mm.h>
  8. #include <linux/proc_fs.h>
  9. #include <linux/seq_file.h>
  10. #include <linux/init.h>
  11. #include <linux/delay.h>
  12. #include <linux/module.h>
  13. #include <asm/ebcdic.h>
  14. #include <asm/sysinfo.h>
  15. #include <asm/cpcmd.h>
  16. /* Sigh, math-emu. Don't ask. */
  17. #include <asm/sfp-util.h>
  18. #include <math-emu/soft-fp.h>
  19. #include <math-emu/single.h>
  20. static inline int stsi_0(void)
  21. {
  22. int rc = stsi(NULL, 0, 0, 0);
  23. return rc == -ENOSYS ? rc : (((unsigned int) rc) >> 28);
  24. }
  25. static int stsi_1_1_1(struct sysinfo_1_1_1 *info, char *page, int len)
  26. {
  27. if (stsi(info, 1, 1, 1) == -ENOSYS)
  28. return len;
  29. EBCASC(info->manufacturer, sizeof(info->manufacturer));
  30. EBCASC(info->type, sizeof(info->type));
  31. EBCASC(info->model, sizeof(info->model));
  32. EBCASC(info->sequence, sizeof(info->sequence));
  33. EBCASC(info->plant, sizeof(info->plant));
  34. EBCASC(info->model_capacity, sizeof(info->model_capacity));
  35. EBCASC(info->model_perm_cap, sizeof(info->model_perm_cap));
  36. EBCASC(info->model_temp_cap, sizeof(info->model_temp_cap));
  37. len += sprintf(page + len, "Manufacturer: %-16.16s\n",
  38. info->manufacturer);
  39. len += sprintf(page + len, "Type: %-4.4s\n",
  40. info->type);
  41. if (info->model[0] != '\0')
  42. /*
  43. * Sigh: the model field has been renamed with System z9
  44. * to model_capacity and a new model field has been added
  45. * after the plant field. To avoid confusing older programs
  46. * the "Model:" prints "model_capacity model" or just
  47. * "model_capacity" if the model string is empty .
  48. */
  49. len += sprintf(page + len,
  50. "Model: %-16.16s %-16.16s\n",
  51. info->model_capacity, info->model);
  52. else
  53. len += sprintf(page + len, "Model: %-16.16s\n",
  54. info->model_capacity);
  55. len += sprintf(page + len, "Sequence Code: %-16.16s\n",
  56. info->sequence);
  57. len += sprintf(page + len, "Plant: %-4.4s\n",
  58. info->plant);
  59. len += sprintf(page + len, "Model Capacity: %-16.16s %08u\n",
  60. info->model_capacity, *(u32 *) info->model_cap_rating);
  61. if (info->model_perm_cap[0] != '\0')
  62. len += sprintf(page + len,
  63. "Model Perm. Capacity: %-16.16s %08u\n",
  64. info->model_perm_cap,
  65. *(u32 *) info->model_perm_cap_rating);
  66. if (info->model_temp_cap[0] != '\0')
  67. len += sprintf(page + len,
  68. "Model Temp. Capacity: %-16.16s %08u\n",
  69. info->model_temp_cap,
  70. *(u32 *) info->model_temp_cap_rating);
  71. return len;
  72. }
  73. static int stsi_1_2_2(struct sysinfo_1_2_2 *info, char *page, int len)
  74. {
  75. struct sysinfo_1_2_2_extension *ext;
  76. int i;
  77. if (stsi(info, 1, 2, 2) == -ENOSYS)
  78. return len;
  79. ext = (struct sysinfo_1_2_2_extension *)
  80. ((unsigned long) info + info->acc_offset);
  81. len += sprintf(page + len, "\n");
  82. len += sprintf(page + len, "CPUs Total: %d\n",
  83. info->cpus_total);
  84. len += sprintf(page + len, "CPUs Configured: %d\n",
  85. info->cpus_configured);
  86. len += sprintf(page + len, "CPUs Standby: %d\n",
  87. info->cpus_standby);
  88. len += sprintf(page + len, "CPUs Reserved: %d\n",
  89. info->cpus_reserved);
  90. if (info->format == 1) {
  91. /*
  92. * Sigh 2. According to the specification the alternate
  93. * capability field is a 32 bit floating point number
  94. * if the higher order 8 bits are not zero. Printing
  95. * a floating point number in the kernel is a no-no,
  96. * always print the number as 32 bit unsigned integer.
  97. * The user-space needs to know about the strange
  98. * encoding of the alternate cpu capability.
  99. */
  100. len += sprintf(page + len, "Capability: %u %u\n",
  101. info->capability, ext->alt_capability);
  102. for (i = 2; i <= info->cpus_total; i++)
  103. len += sprintf(page + len,
  104. "Adjustment %02d-way: %u %u\n",
  105. i, info->adjustment[i-2],
  106. ext->alt_adjustment[i-2]);
  107. } else {
  108. len += sprintf(page + len, "Capability: %u\n",
  109. info->capability);
  110. for (i = 2; i <= info->cpus_total; i++)
  111. len += sprintf(page + len,
  112. "Adjustment %02d-way: %u\n",
  113. i, info->adjustment[i-2]);
  114. }
  115. if (info->secondary_capability != 0)
  116. len += sprintf(page + len, "Secondary Capability: %d\n",
  117. info->secondary_capability);
  118. return len;
  119. }
  120. static int stsi_2_2_2(struct sysinfo_2_2_2 *info, char *page, int len)
  121. {
  122. if (stsi(info, 2, 2, 2) == -ENOSYS)
  123. return len;
  124. EBCASC(info->name, sizeof(info->name));
  125. len += sprintf(page + len, "\n");
  126. len += sprintf(page + len, "LPAR Number: %d\n",
  127. info->lpar_number);
  128. len += sprintf(page + len, "LPAR Characteristics: ");
  129. if (info->characteristics & LPAR_CHAR_DEDICATED)
  130. len += sprintf(page + len, "Dedicated ");
  131. if (info->characteristics & LPAR_CHAR_SHARED)
  132. len += sprintf(page + len, "Shared ");
  133. if (info->characteristics & LPAR_CHAR_LIMITED)
  134. len += sprintf(page + len, "Limited ");
  135. len += sprintf(page + len, "\n");
  136. len += sprintf(page + len, "LPAR Name: %-8.8s\n",
  137. info->name);
  138. len += sprintf(page + len, "LPAR Adjustment: %d\n",
  139. info->caf);
  140. len += sprintf(page + len, "LPAR CPUs Total: %d\n",
  141. info->cpus_total);
  142. len += sprintf(page + len, "LPAR CPUs Configured: %d\n",
  143. info->cpus_configured);
  144. len += sprintf(page + len, "LPAR CPUs Standby: %d\n",
  145. info->cpus_standby);
  146. len += sprintf(page + len, "LPAR CPUs Reserved: %d\n",
  147. info->cpus_reserved);
  148. len += sprintf(page + len, "LPAR CPUs Dedicated: %d\n",
  149. info->cpus_dedicated);
  150. len += sprintf(page + len, "LPAR CPUs Shared: %d\n",
  151. info->cpus_shared);
  152. return len;
  153. }
  154. static int stsi_3_2_2(struct sysinfo_3_2_2 *info, char *page, int len)
  155. {
  156. int i;
  157. if (stsi(info, 3, 2, 2) == -ENOSYS)
  158. return len;
  159. for (i = 0; i < info->count; i++) {
  160. EBCASC(info->vm[i].name, sizeof(info->vm[i].name));
  161. EBCASC(info->vm[i].cpi, sizeof(info->vm[i].cpi));
  162. len += sprintf(page + len, "\n");
  163. len += sprintf(page + len, "VM%02d Name: %-8.8s\n",
  164. i, info->vm[i].name);
  165. len += sprintf(page + len, "VM%02d Control Program: %-16.16s\n",
  166. i, info->vm[i].cpi);
  167. len += sprintf(page + len, "VM%02d Adjustment: %d\n",
  168. i, info->vm[i].caf);
  169. len += sprintf(page + len, "VM%02d CPUs Total: %d\n",
  170. i, info->vm[i].cpus_total);
  171. len += sprintf(page + len, "VM%02d CPUs Configured: %d\n",
  172. i, info->vm[i].cpus_configured);
  173. len += sprintf(page + len, "VM%02d CPUs Standby: %d\n",
  174. i, info->vm[i].cpus_standby);
  175. len += sprintf(page + len, "VM%02d CPUs Reserved: %d\n",
  176. i, info->vm[i].cpus_reserved);
  177. }
  178. return len;
  179. }
  180. static int proc_read_sysinfo(char *page, char **start,
  181. off_t off, int count,
  182. int *eof, void *data)
  183. {
  184. unsigned long info = get_zeroed_page(GFP_KERNEL);
  185. int level, len;
  186. if (!info)
  187. return 0;
  188. len = 0;
  189. level = stsi_0();
  190. if (level >= 1)
  191. len = stsi_1_1_1((struct sysinfo_1_1_1 *) info, page, len);
  192. if (level >= 1)
  193. len = stsi_1_2_2((struct sysinfo_1_2_2 *) info, page, len);
  194. if (level >= 2)
  195. len = stsi_2_2_2((struct sysinfo_2_2_2 *) info, page, len);
  196. if (level >= 3)
  197. len = stsi_3_2_2((struct sysinfo_3_2_2 *) info, page, len);
  198. free_page(info);
  199. return len;
  200. }
  201. static __init int create_proc_sysinfo(void)
  202. {
  203. create_proc_read_entry("sysinfo", 0444, NULL,
  204. proc_read_sysinfo, NULL);
  205. return 0;
  206. }
  207. device_initcall(create_proc_sysinfo);
  208. /*
  209. * Service levels interface.
  210. */
  211. static DECLARE_RWSEM(service_level_sem);
  212. static LIST_HEAD(service_level_list);
  213. int register_service_level(struct service_level *slr)
  214. {
  215. struct service_level *ptr;
  216. down_write(&service_level_sem);
  217. list_for_each_entry(ptr, &service_level_list, list)
  218. if (ptr == slr) {
  219. up_write(&service_level_sem);
  220. return -EEXIST;
  221. }
  222. list_add_tail(&slr->list, &service_level_list);
  223. up_write(&service_level_sem);
  224. return 0;
  225. }
  226. EXPORT_SYMBOL(register_service_level);
  227. int unregister_service_level(struct service_level *slr)
  228. {
  229. struct service_level *ptr, *next;
  230. int rc = -ENOENT;
  231. down_write(&service_level_sem);
  232. list_for_each_entry_safe(ptr, next, &service_level_list, list) {
  233. if (ptr != slr)
  234. continue;
  235. list_del(&ptr->list);
  236. rc = 0;
  237. break;
  238. }
  239. up_write(&service_level_sem);
  240. return rc;
  241. }
  242. EXPORT_SYMBOL(unregister_service_level);
  243. static void *service_level_start(struct seq_file *m, loff_t *pos)
  244. {
  245. down_read(&service_level_sem);
  246. return seq_list_start(&service_level_list, *pos);
  247. }
  248. static void *service_level_next(struct seq_file *m, void *p, loff_t *pos)
  249. {
  250. return seq_list_next(p, &service_level_list, pos);
  251. }
  252. static void service_level_stop(struct seq_file *m, void *p)
  253. {
  254. up_read(&service_level_sem);
  255. }
  256. static int service_level_show(struct seq_file *m, void *p)
  257. {
  258. struct service_level *slr;
  259. slr = list_entry(p, struct service_level, list);
  260. slr->seq_print(m, slr);
  261. return 0;
  262. }
  263. static const struct seq_operations service_level_seq_ops = {
  264. .start = service_level_start,
  265. .next = service_level_next,
  266. .stop = service_level_stop,
  267. .show = service_level_show
  268. };
  269. static int service_level_open(struct inode *inode, struct file *file)
  270. {
  271. return seq_open(file, &service_level_seq_ops);
  272. }
  273. static const struct file_operations service_level_ops = {
  274. .open = service_level_open,
  275. .read = seq_read,
  276. .llseek = seq_lseek,
  277. .release = seq_release
  278. };
  279. static void service_level_vm_print(struct seq_file *m,
  280. struct service_level *slr)
  281. {
  282. char *query_buffer, *str;
  283. query_buffer = kmalloc(1024, GFP_KERNEL | GFP_DMA);
  284. if (!query_buffer)
  285. return;
  286. cpcmd("QUERY CPLEVEL", query_buffer, 1024, NULL);
  287. str = strchr(query_buffer, '\n');
  288. if (str)
  289. *str = 0;
  290. seq_printf(m, "VM: %s\n", query_buffer);
  291. kfree(query_buffer);
  292. }
  293. static struct service_level service_level_vm = {
  294. .seq_print = service_level_vm_print
  295. };
  296. static __init int create_proc_service_level(void)
  297. {
  298. proc_create("service_levels", 0, NULL, &service_level_ops);
  299. if (MACHINE_IS_VM)
  300. register_service_level(&service_level_vm);
  301. return 0;
  302. }
  303. subsys_initcall(create_proc_service_level);
  304. /*
  305. * Bogomips calculation based on cpu capability.
  306. */
  307. int get_cpu_capability(unsigned int *capability)
  308. {
  309. struct sysinfo_1_2_2 *info;
  310. int rc;
  311. info = (void *) get_zeroed_page(GFP_KERNEL);
  312. if (!info)
  313. return -ENOMEM;
  314. rc = stsi(info, 1, 2, 2);
  315. if (rc == -ENOSYS)
  316. goto out;
  317. rc = 0;
  318. *capability = info->capability;
  319. out:
  320. free_page((unsigned long) info);
  321. return rc;
  322. }
  323. /*
  324. * CPU capability might have changed. Therefore recalculate loops_per_jiffy.
  325. */
  326. void s390_adjust_jiffies(void)
  327. {
  328. struct sysinfo_1_2_2 *info;
  329. const unsigned int fmil = 0x4b189680; /* 1e7 as 32-bit float. */
  330. FP_DECL_S(SA); FP_DECL_S(SB); FP_DECL_S(SR);
  331. FP_DECL_EX;
  332. unsigned int capability;
  333. info = (void *) get_zeroed_page(GFP_KERNEL);
  334. if (!info)
  335. return;
  336. if (stsi(info, 1, 2, 2) != -ENOSYS) {
  337. /*
  338. * Major sigh. The cpu capability encoding is "special".
  339. * If the first 9 bits of info->capability are 0 then it
  340. * is a 32 bit unsigned integer in the range 0 .. 2^23.
  341. * If the first 9 bits are != 0 then it is a 32 bit float.
  342. * In addition a lower value indicates a proportionally
  343. * higher cpu capacity. Bogomips are the other way round.
  344. * To get to a halfway suitable number we divide 1e7
  345. * by the cpu capability number. Yes, that means a floating
  346. * point division .. math-emu here we come :-)
  347. */
  348. FP_UNPACK_SP(SA, &fmil);
  349. if ((info->capability >> 23) == 0)
  350. FP_FROM_INT_S(SB, info->capability, 32, int);
  351. else
  352. FP_UNPACK_SP(SB, &info->capability);
  353. FP_DIV_S(SR, SA, SB);
  354. FP_TO_INT_S(capability, SR, 32, 0);
  355. } else
  356. /*
  357. * Really old machine without stsi block for basic
  358. * cpu information. Report 42.0 bogomips.
  359. */
  360. capability = 42;
  361. loops_per_jiffy = capability * (500000/HZ);
  362. free_page((unsigned long) info);
  363. }
  364. /*
  365. * calibrate the delay loop
  366. */
  367. void __cpuinit calibrate_delay(void)
  368. {
  369. s390_adjust_jiffies();
  370. /* Print the good old Bogomips line .. */
  371. printk(KERN_DEBUG "Calibrating delay loop (skipped)... "
  372. "%lu.%02lu BogoMIPS preset\n", loops_per_jiffy/(500000/HZ),
  373. (loops_per_jiffy/(5000/HZ)) % 100);
  374. }