lparcfg.c 16 KB

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  1. /*
  2. * PowerPC64 LPAR Configuration Information Driver
  3. *
  4. * Dave Engebretsen engebret@us.ibm.com
  5. * Copyright (c) 2003 Dave Engebretsen
  6. * Will Schmidt willschm@us.ibm.com
  7. * SPLPAR updates, Copyright (c) 2003 Will Schmidt IBM Corporation.
  8. * seq_file updates, Copyright (c) 2004 Will Schmidt IBM Corporation.
  9. * Nathan Lynch nathanl@austin.ibm.com
  10. * Added lparcfg_write, Copyright (C) 2004 Nathan Lynch IBM Corporation.
  11. *
  12. * This program is free software; you can redistribute it and/or
  13. * modify it under the terms of the GNU General Public License
  14. * as published by the Free Software Foundation; either version
  15. * 2 of the License, or (at your option) any later version.
  16. *
  17. * This driver creates a proc file at /proc/ppc64/lparcfg which contains
  18. * keyword - value pairs that specify the configuration of the partition.
  19. */
  20. #include <linux/module.h>
  21. #include <linux/types.h>
  22. #include <linux/errno.h>
  23. #include <linux/proc_fs.h>
  24. #include <linux/init.h>
  25. #include <linux/seq_file.h>
  26. #include <asm/uaccess.h>
  27. #include <asm/iseries/hv_lp_config.h>
  28. #include <asm/lppaca.h>
  29. #include <asm/hvcall.h>
  30. #include <asm/firmware.h>
  31. #include <asm/rtas.h>
  32. #include <asm/system.h>
  33. #include <asm/time.h>
  34. #include <asm/prom.h>
  35. #include <asm/vdso_datapage.h>
  36. #define MODULE_VERS "1.7"
  37. #define MODULE_NAME "lparcfg"
  38. /* #define LPARCFG_DEBUG */
  39. static struct proc_dir_entry *proc_ppc64_lparcfg;
  40. #define LPARCFG_BUFF_SIZE 4096
  41. /*
  42. * Track sum of all purrs across all processors. This is used to further
  43. * calculate usage values by different applications
  44. */
  45. static unsigned long get_purr(void)
  46. {
  47. unsigned long sum_purr = 0;
  48. int cpu;
  49. for_each_possible_cpu(cpu) {
  50. if (firmware_has_feature(FW_FEATURE_ISERIES))
  51. sum_purr += lppaca[cpu].emulated_time_base;
  52. else {
  53. struct cpu_usage *cu;
  54. cu = &per_cpu(cpu_usage_array, cpu);
  55. sum_purr += cu->current_tb;
  56. }
  57. }
  58. return sum_purr;
  59. }
  60. #ifdef CONFIG_PPC_ISERIES
  61. /*
  62. * Methods used to fetch LPAR data when running on an iSeries platform.
  63. */
  64. static int iseries_lparcfg_data(struct seq_file *m, void *v)
  65. {
  66. unsigned long pool_id;
  67. int shared, entitled_capacity, max_entitled_capacity;
  68. int processors, max_processors;
  69. unsigned long purr = get_purr();
  70. shared = (int)(get_lppaca()->shared_proc);
  71. seq_printf(m, "system_active_processors=%d\n",
  72. (int)HvLpConfig_getSystemPhysicalProcessors());
  73. seq_printf(m, "system_potential_processors=%d\n",
  74. (int)HvLpConfig_getSystemPhysicalProcessors());
  75. processors = (int)HvLpConfig_getPhysicalProcessors();
  76. seq_printf(m, "partition_active_processors=%d\n", processors);
  77. max_processors = (int)HvLpConfig_getMaxPhysicalProcessors();
  78. seq_printf(m, "partition_potential_processors=%d\n", max_processors);
  79. if (shared) {
  80. entitled_capacity = HvLpConfig_getSharedProcUnits();
  81. max_entitled_capacity = HvLpConfig_getMaxSharedProcUnits();
  82. } else {
  83. entitled_capacity = processors * 100;
  84. max_entitled_capacity = max_processors * 100;
  85. }
  86. seq_printf(m, "partition_entitled_capacity=%d\n", entitled_capacity);
  87. seq_printf(m, "partition_max_entitled_capacity=%d\n",
  88. max_entitled_capacity);
  89. if (shared) {
  90. pool_id = HvLpConfig_getSharedPoolIndex();
  91. seq_printf(m, "pool=%d\n", (int)pool_id);
  92. seq_printf(m, "pool_capacity=%d\n",
  93. (int)(HvLpConfig_getNumProcsInSharedPool(pool_id) *
  94. 100));
  95. seq_printf(m, "purr=%ld\n", purr);
  96. }
  97. seq_printf(m, "shared_processor_mode=%d\n", shared);
  98. return 0;
  99. }
  100. #else /* CONFIG_PPC_ISERIES */
  101. static int iseries_lparcfg_data(struct seq_file *m, void *v)
  102. {
  103. return 0;
  104. }
  105. #endif /* CONFIG_PPC_ISERIES */
  106. #ifdef CONFIG_PPC_PSERIES
  107. /*
  108. * Methods used to fetch LPAR data when running on a pSeries platform.
  109. */
  110. /* find a better place for this function... */
  111. static void log_plpar_hcall_return(unsigned long rc, char *tag)
  112. {
  113. if (rc == 0) /* success, return */
  114. return;
  115. /* check for null tag ? */
  116. if (rc == H_HARDWARE)
  117. printk(KERN_INFO
  118. "plpar-hcall (%s) failed with hardware fault\n", tag);
  119. else if (rc == H_FUNCTION)
  120. printk(KERN_INFO
  121. "plpar-hcall (%s) failed; function not allowed\n", tag);
  122. else if (rc == H_AUTHORITY)
  123. printk(KERN_INFO
  124. "plpar-hcall (%s) failed; not authorized to this"
  125. " function\n", tag);
  126. else if (rc == H_PARAMETER)
  127. printk(KERN_INFO "plpar-hcall (%s) failed; Bad parameter(s)\n",
  128. tag);
  129. else
  130. printk(KERN_INFO
  131. "plpar-hcall (%s) failed with unexpected rc(0x%lx)\n",
  132. tag, rc);
  133. }
  134. /*
  135. * H_GET_PPP hcall returns info in 4 parms.
  136. * entitled_capacity,unallocated_capacity,
  137. * aggregation, resource_capability).
  138. *
  139. * R4 = Entitled Processor Capacity Percentage.
  140. * R5 = Unallocated Processor Capacity Percentage.
  141. * R6 (AABBCCDDEEFFGGHH).
  142. * XXXX - reserved (0)
  143. * XXXX - reserved (0)
  144. * XXXX - Group Number
  145. * XXXX - Pool Number.
  146. * R7 (IIJJKKLLMMNNOOPP).
  147. * XX - reserved. (0)
  148. * XX - bit 0-6 reserved (0). bit 7 is Capped indicator.
  149. * XX - variable processor Capacity Weight
  150. * XX - Unallocated Variable Processor Capacity Weight.
  151. * XXXX - Active processors in Physical Processor Pool.
  152. * XXXX - Processors active on platform.
  153. */
  154. static unsigned int h_get_ppp(unsigned long *entitled,
  155. unsigned long *unallocated,
  156. unsigned long *aggregation,
  157. unsigned long *resource)
  158. {
  159. unsigned long rc;
  160. rc = plpar_hcall_4out(H_GET_PPP, 0, 0, 0, 0, entitled, unallocated,
  161. aggregation, resource);
  162. log_plpar_hcall_return(rc, "H_GET_PPP");
  163. return rc;
  164. }
  165. static void h_pic(unsigned long *pool_idle_time, unsigned long *num_procs)
  166. {
  167. unsigned long rc;
  168. unsigned long dummy;
  169. rc = plpar_hcall(H_PIC, 0, 0, 0, 0, pool_idle_time, num_procs, &dummy);
  170. if (rc != H_AUTHORITY)
  171. log_plpar_hcall_return(rc, "H_PIC");
  172. }
  173. #define SPLPAR_CHARACTERISTICS_TOKEN 20
  174. #define SPLPAR_MAXLENGTH 1026*(sizeof(char))
  175. /*
  176. * parse_system_parameter_string()
  177. * Retrieve the potential_processors, max_entitled_capacity and friends
  178. * through the get-system-parameter rtas call. Replace keyword strings as
  179. * necessary.
  180. */
  181. static void parse_system_parameter_string(struct seq_file *m)
  182. {
  183. int call_status;
  184. unsigned char *local_buffer = kmalloc(SPLPAR_MAXLENGTH, GFP_KERNEL);
  185. if (!local_buffer) {
  186. printk(KERN_ERR "%s %s kmalloc failure at line %d \n",
  187. __FILE__, __FUNCTION__, __LINE__);
  188. return;
  189. }
  190. spin_lock(&rtas_data_buf_lock);
  191. memset(rtas_data_buf, 0, SPLPAR_MAXLENGTH);
  192. call_status = rtas_call(rtas_token("ibm,get-system-parameter"), 3, 1,
  193. NULL,
  194. SPLPAR_CHARACTERISTICS_TOKEN,
  195. __pa(rtas_data_buf),
  196. RTAS_DATA_BUF_SIZE);
  197. memcpy(local_buffer, rtas_data_buf, SPLPAR_MAXLENGTH);
  198. spin_unlock(&rtas_data_buf_lock);
  199. if (call_status != 0) {
  200. printk(KERN_INFO
  201. "%s %s Error calling get-system-parameter (0x%x)\n",
  202. __FILE__, __FUNCTION__, call_status);
  203. } else {
  204. int splpar_strlen;
  205. int idx, w_idx;
  206. char *workbuffer = kmalloc(SPLPAR_MAXLENGTH, GFP_KERNEL);
  207. if (!workbuffer) {
  208. printk(KERN_ERR "%s %s kmalloc failure at line %d \n",
  209. __FILE__, __FUNCTION__, __LINE__);
  210. kfree(local_buffer);
  211. return;
  212. }
  213. #ifdef LPARCFG_DEBUG
  214. printk(KERN_INFO "success calling get-system-parameter \n");
  215. #endif
  216. splpar_strlen = local_buffer[0] * 256 + local_buffer[1];
  217. local_buffer += 2; /* step over strlen value */
  218. memset(workbuffer, 0, SPLPAR_MAXLENGTH);
  219. w_idx = 0;
  220. idx = 0;
  221. while ((*local_buffer) && (idx < splpar_strlen)) {
  222. workbuffer[w_idx++] = local_buffer[idx++];
  223. if ((local_buffer[idx] == ',')
  224. || (local_buffer[idx] == '\0')) {
  225. workbuffer[w_idx] = '\0';
  226. if (w_idx) {
  227. /* avoid the empty string */
  228. seq_printf(m, "%s\n", workbuffer);
  229. }
  230. memset(workbuffer, 0, SPLPAR_MAXLENGTH);
  231. idx++; /* skip the comma */
  232. w_idx = 0;
  233. } else if (local_buffer[idx] == '=') {
  234. /* code here to replace workbuffer contents
  235. with different keyword strings */
  236. if (0 == strcmp(workbuffer, "MaxEntCap")) {
  237. strcpy(workbuffer,
  238. "partition_max_entitled_capacity");
  239. w_idx = strlen(workbuffer);
  240. }
  241. if (0 == strcmp(workbuffer, "MaxPlatProcs")) {
  242. strcpy(workbuffer,
  243. "system_potential_processors");
  244. w_idx = strlen(workbuffer);
  245. }
  246. }
  247. }
  248. kfree(workbuffer);
  249. local_buffer -= 2; /* back up over strlen value */
  250. }
  251. kfree(local_buffer);
  252. }
  253. /* Return the number of processors in the system.
  254. * This function reads through the device tree and counts
  255. * the virtual processors, this does not include threads.
  256. */
  257. static int lparcfg_count_active_processors(void)
  258. {
  259. struct device_node *cpus_dn = NULL;
  260. int count = 0;
  261. while ((cpus_dn = of_find_node_by_type(cpus_dn, "cpu"))) {
  262. #ifdef LPARCFG_DEBUG
  263. printk(KERN_ERR "cpus_dn %p \n", cpus_dn);
  264. #endif
  265. count++;
  266. }
  267. return count;
  268. }
  269. static int pseries_lparcfg_data(struct seq_file *m, void *v)
  270. {
  271. int partition_potential_processors;
  272. int partition_active_processors;
  273. struct device_node *rtas_node;
  274. int *lrdrp = NULL;
  275. rtas_node = find_path_device("/rtas");
  276. if (rtas_node)
  277. lrdrp = (int *)get_property(rtas_node, "ibm,lrdr-capacity",
  278. NULL);
  279. if (lrdrp == NULL) {
  280. partition_potential_processors = vdso_data->processorCount;
  281. } else {
  282. partition_potential_processors = *(lrdrp + 4);
  283. }
  284. partition_active_processors = lparcfg_count_active_processors();
  285. if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
  286. unsigned long h_entitled, h_unallocated;
  287. unsigned long h_aggregation, h_resource;
  288. unsigned long pool_idle_time, pool_procs;
  289. unsigned long purr;
  290. h_get_ppp(&h_entitled, &h_unallocated, &h_aggregation,
  291. &h_resource);
  292. seq_printf(m, "R4=0x%lx\n", h_entitled);
  293. seq_printf(m, "R5=0x%lx\n", h_unallocated);
  294. seq_printf(m, "R6=0x%lx\n", h_aggregation);
  295. seq_printf(m, "R7=0x%lx\n", h_resource);
  296. purr = get_purr();
  297. /* this call handles the ibm,get-system-parameter contents */
  298. parse_system_parameter_string(m);
  299. seq_printf(m, "partition_entitled_capacity=%ld\n", h_entitled);
  300. seq_printf(m, "group=%ld\n", (h_aggregation >> 2 * 8) & 0xffff);
  301. seq_printf(m, "system_active_processors=%ld\n",
  302. (h_resource >> 0 * 8) & 0xffff);
  303. /* pool related entries are apropriate for shared configs */
  304. if (lppaca[0].shared_proc) {
  305. h_pic(&pool_idle_time, &pool_procs);
  306. seq_printf(m, "pool=%ld\n",
  307. (h_aggregation >> 0 * 8) & 0xffff);
  308. /* report pool_capacity in percentage */
  309. seq_printf(m, "pool_capacity=%ld\n",
  310. ((h_resource >> 2 * 8) & 0xffff) * 100);
  311. seq_printf(m, "pool_idle_time=%ld\n", pool_idle_time);
  312. seq_printf(m, "pool_num_procs=%ld\n", pool_procs);
  313. }
  314. seq_printf(m, "unallocated_capacity_weight=%ld\n",
  315. (h_resource >> 4 * 8) & 0xFF);
  316. seq_printf(m, "capacity_weight=%ld\n",
  317. (h_resource >> 5 * 8) & 0xFF);
  318. seq_printf(m, "capped=%ld\n", (h_resource >> 6 * 8) & 0x01);
  319. seq_printf(m, "unallocated_capacity=%ld\n", h_unallocated);
  320. seq_printf(m, "purr=%ld\n", purr);
  321. } else { /* non SPLPAR case */
  322. seq_printf(m, "system_active_processors=%d\n",
  323. partition_potential_processors);
  324. seq_printf(m, "system_potential_processors=%d\n",
  325. partition_potential_processors);
  326. seq_printf(m, "partition_max_entitled_capacity=%d\n",
  327. partition_potential_processors * 100);
  328. seq_printf(m, "partition_entitled_capacity=%d\n",
  329. partition_active_processors * 100);
  330. }
  331. seq_printf(m, "partition_active_processors=%d\n",
  332. partition_active_processors);
  333. seq_printf(m, "partition_potential_processors=%d\n",
  334. partition_potential_processors);
  335. seq_printf(m, "shared_processor_mode=%d\n", lppaca[0].shared_proc);
  336. return 0;
  337. }
  338. /*
  339. * Interface for changing system parameters (variable capacity weight
  340. * and entitled capacity). Format of input is "param_name=value";
  341. * anything after value is ignored. Valid parameters at this time are
  342. * "partition_entitled_capacity" and "capacity_weight". We use
  343. * H_SET_PPP to alter parameters.
  344. *
  345. * This function should be invoked only on systems with
  346. * FW_FEATURE_SPLPAR.
  347. */
  348. static ssize_t lparcfg_write(struct file *file, const char __user * buf,
  349. size_t count, loff_t * off)
  350. {
  351. char *kbuf;
  352. char *tmp;
  353. u64 new_entitled, *new_entitled_ptr = &new_entitled;
  354. u8 new_weight, *new_weight_ptr = &new_weight;
  355. unsigned long current_entitled; /* parameters for h_get_ppp */
  356. unsigned long dummy;
  357. unsigned long resource;
  358. u8 current_weight;
  359. ssize_t retval = -ENOMEM;
  360. kbuf = kmalloc(count, GFP_KERNEL);
  361. if (!kbuf)
  362. goto out;
  363. retval = -EFAULT;
  364. if (copy_from_user(kbuf, buf, count))
  365. goto out;
  366. retval = -EINVAL;
  367. kbuf[count - 1] = '\0';
  368. tmp = strchr(kbuf, '=');
  369. if (!tmp)
  370. goto out;
  371. *tmp++ = '\0';
  372. if (!strcmp(kbuf, "partition_entitled_capacity")) {
  373. char *endp;
  374. *new_entitled_ptr = (u64) simple_strtoul(tmp, &endp, 10);
  375. if (endp == tmp)
  376. goto out;
  377. new_weight_ptr = &current_weight;
  378. } else if (!strcmp(kbuf, "capacity_weight")) {
  379. char *endp;
  380. *new_weight_ptr = (u8) simple_strtoul(tmp, &endp, 10);
  381. if (endp == tmp)
  382. goto out;
  383. new_entitled_ptr = &current_entitled;
  384. } else
  385. goto out;
  386. /* Get our current parameters */
  387. retval = h_get_ppp(&current_entitled, &dummy, &dummy, &resource);
  388. if (retval) {
  389. retval = -EIO;
  390. goto out;
  391. }
  392. current_weight = (resource >> 5 * 8) & 0xFF;
  393. pr_debug("%s: current_entitled = %lu, current_weight = %u\n",
  394. __FUNCTION__, current_entitled, current_weight);
  395. pr_debug("%s: new_entitled = %lu, new_weight = %u\n",
  396. __FUNCTION__, *new_entitled_ptr, *new_weight_ptr);
  397. retval = plpar_hcall_norets(H_SET_PPP, *new_entitled_ptr,
  398. *new_weight_ptr);
  399. if (retval == H_SUCCESS || retval == H_CONSTRAINED) {
  400. retval = count;
  401. } else if (retval == H_BUSY) {
  402. retval = -EBUSY;
  403. } else if (retval == H_HARDWARE) {
  404. retval = -EIO;
  405. } else if (retval == H_PARAMETER) {
  406. retval = -EINVAL;
  407. } else {
  408. printk(KERN_WARNING "%s: received unknown hv return code %ld",
  409. __FUNCTION__, retval);
  410. retval = -EIO;
  411. }
  412. out:
  413. kfree(kbuf);
  414. return retval;
  415. }
  416. #else /* CONFIG_PPC_PSERIES */
  417. static int pseries_lparcfg_data(struct seq_file *m, void *v)
  418. {
  419. return 0;
  420. }
  421. static ssize_t lparcfg_write(struct file *file, const char __user * buf,
  422. size_t count, loff_t * off)
  423. {
  424. return count;
  425. }
  426. #endif /* CONFIG_PPC_PSERIES */
  427. static int lparcfg_data(struct seq_file *m, void *v)
  428. {
  429. struct device_node *rootdn;
  430. const char *model = "";
  431. const char *system_id = "";
  432. const char *tmp;
  433. unsigned int *lp_index_ptr, lp_index = 0;
  434. seq_printf(m, "%s %s \n", MODULE_NAME, MODULE_VERS);
  435. rootdn = find_path_device("/");
  436. if (rootdn) {
  437. tmp = get_property(rootdn, "model", NULL);
  438. if (tmp) {
  439. model = tmp;
  440. /* Skip "IBM," - see platforms/iseries/dt.c */
  441. if (firmware_has_feature(FW_FEATURE_ISERIES))
  442. model += 4;
  443. }
  444. tmp = get_property(rootdn, "system-id", NULL);
  445. if (tmp) {
  446. system_id = tmp;
  447. /* Skip "IBM," - see platforms/iseries/dt.c */
  448. if (firmware_has_feature(FW_FEATURE_ISERIES))
  449. system_id += 4;
  450. }
  451. lp_index_ptr = (unsigned int *)
  452. get_property(rootdn, "ibm,partition-no", NULL);
  453. if (lp_index_ptr)
  454. lp_index = *lp_index_ptr;
  455. }
  456. seq_printf(m, "serial_number=%s\n", system_id);
  457. seq_printf(m, "system_type=%s\n", model);
  458. seq_printf(m, "partition_id=%d\n", (int)lp_index);
  459. if (firmware_has_feature(FW_FEATURE_ISERIES))
  460. return iseries_lparcfg_data(m, v);
  461. return pseries_lparcfg_data(m, v);
  462. }
  463. static int lparcfg_open(struct inode *inode, struct file *file)
  464. {
  465. return single_open(file, lparcfg_data, NULL);
  466. }
  467. struct file_operations lparcfg_fops = {
  468. .owner = THIS_MODULE,
  469. .read = seq_read,
  470. .open = lparcfg_open,
  471. .release = single_release,
  472. };
  473. int __init lparcfg_init(void)
  474. {
  475. struct proc_dir_entry *ent;
  476. mode_t mode = S_IRUSR | S_IRGRP | S_IROTH;
  477. /* Allow writing if we have FW_FEATURE_SPLPAR */
  478. if (firmware_has_feature(FW_FEATURE_SPLPAR) &&
  479. !firmware_has_feature(FW_FEATURE_ISERIES)) {
  480. lparcfg_fops.write = lparcfg_write;
  481. mode |= S_IWUSR;
  482. }
  483. ent = create_proc_entry("ppc64/lparcfg", mode, NULL);
  484. if (ent) {
  485. ent->proc_fops = &lparcfg_fops;
  486. ent->data = kmalloc(LPARCFG_BUFF_SIZE, GFP_KERNEL);
  487. if (!ent->data) {
  488. printk(KERN_ERR
  489. "Failed to allocate buffer for lparcfg\n");
  490. remove_proc_entry("lparcfg", ent->parent);
  491. return -ENOMEM;
  492. }
  493. } else {
  494. printk(KERN_ERR "Failed to create ppc64/lparcfg\n");
  495. return -EIO;
  496. }
  497. proc_ppc64_lparcfg = ent;
  498. return 0;
  499. }
  500. void __exit lparcfg_cleanup(void)
  501. {
  502. if (proc_ppc64_lparcfg) {
  503. kfree(proc_ppc64_lparcfg->data);
  504. remove_proc_entry("lparcfg", proc_ppc64_lparcfg->parent);
  505. }
  506. }
  507. module_init(lparcfg_init);
  508. module_exit(lparcfg_cleanup);
  509. MODULE_DESCRIPTION("Interface for LPAR configuration data");
  510. MODULE_AUTHOR("Dave Engebretsen");
  511. MODULE_LICENSE("GPL");