processor_core.c 27 KB

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  1. /*
  2. * acpi_processor.c - ACPI Processor Driver ($Revision: 71 $)
  3. *
  4. * Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
  5. * Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
  6. * Copyright (C) 2004 Dominik Brodowski <linux@brodo.de>
  7. * Copyright (C) 2004 Anil S Keshavamurthy <anil.s.keshavamurthy@intel.com>
  8. * - Added processor hotplug support
  9. *
  10. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2 of the License, or (at
  15. * your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful, but
  18. * WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  20. * General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License along
  23. * with this program; if not, write to the Free Software Foundation, Inc.,
  24. * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
  25. *
  26. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  27. * TBD:
  28. * 1. Make # power states dynamic.
  29. * 2. Support duty_cycle values that span bit 4.
  30. * 3. Optimize by having scheduler determine business instead of
  31. * having us try to calculate it here.
  32. * 4. Need C1 timing -- must modify kernel (IRQ handler) to get this.
  33. */
  34. #include <linux/kernel.h>
  35. #include <linux/module.h>
  36. #include <linux/init.h>
  37. #include <linux/types.h>
  38. #include <linux/pci.h>
  39. #include <linux/pm.h>
  40. #include <linux/cpufreq.h>
  41. #include <linux/cpu.h>
  42. #include <linux/proc_fs.h>
  43. #include <linux/seq_file.h>
  44. #include <linux/dmi.h>
  45. #include <linux/moduleparam.h>
  46. #include <linux/cpuidle.h>
  47. #include <asm/io.h>
  48. #include <asm/system.h>
  49. #include <asm/cpu.h>
  50. #include <asm/delay.h>
  51. #include <asm/uaccess.h>
  52. #include <asm/processor.h>
  53. #include <asm/smp.h>
  54. #include <asm/acpi.h>
  55. #include <acpi/acpi_bus.h>
  56. #include <acpi/acpi_drivers.h>
  57. #include <acpi/processor.h>
  58. #define ACPI_PROCESSOR_COMPONENT 0x01000000
  59. #define ACPI_PROCESSOR_CLASS "processor"
  60. #define ACPI_PROCESSOR_DEVICE_NAME "Processor"
  61. #define ACPI_PROCESSOR_FILE_INFO "info"
  62. #define ACPI_PROCESSOR_FILE_THROTTLING "throttling"
  63. #define ACPI_PROCESSOR_FILE_LIMIT "limit"
  64. #define ACPI_PROCESSOR_NOTIFY_PERFORMANCE 0x80
  65. #define ACPI_PROCESSOR_NOTIFY_POWER 0x81
  66. #define ACPI_PROCESSOR_NOTIFY_THROTTLING 0x82
  67. #define ACPI_PROCESSOR_LIMIT_USER 0
  68. #define ACPI_PROCESSOR_LIMIT_THERMAL 1
  69. #define _COMPONENT ACPI_PROCESSOR_COMPONENT
  70. ACPI_MODULE_NAME("processor_core");
  71. MODULE_AUTHOR("Paul Diefenbaugh");
  72. MODULE_DESCRIPTION("ACPI Processor Driver");
  73. MODULE_LICENSE("GPL");
  74. static int acpi_processor_add(struct acpi_device *device);
  75. static int acpi_processor_start(struct acpi_device *device);
  76. static int acpi_processor_remove(struct acpi_device *device, int type);
  77. static int acpi_processor_info_open_fs(struct inode *inode, struct file *file);
  78. static void acpi_processor_notify(acpi_handle handle, u32 event, void *data);
  79. static acpi_status acpi_processor_hotadd_init(acpi_handle handle, int *p_cpu);
  80. static int acpi_processor_handle_eject(struct acpi_processor *pr);
  81. extern int acpi_processor_tstate_has_changed(struct acpi_processor *pr);
  82. static const struct acpi_device_id processor_device_ids[] = {
  83. {ACPI_PROCESSOR_HID, 0},
  84. {"", 0},
  85. };
  86. MODULE_DEVICE_TABLE(acpi, processor_device_ids);
  87. static struct acpi_driver acpi_processor_driver = {
  88. .name = "processor",
  89. .class = ACPI_PROCESSOR_CLASS,
  90. .ids = processor_device_ids,
  91. .ops = {
  92. .add = acpi_processor_add,
  93. .remove = acpi_processor_remove,
  94. .start = acpi_processor_start,
  95. .suspend = acpi_processor_suspend,
  96. .resume = acpi_processor_resume,
  97. },
  98. };
  99. #define INSTALL_NOTIFY_HANDLER 1
  100. #define UNINSTALL_NOTIFY_HANDLER 2
  101. static const struct file_operations acpi_processor_info_fops = {
  102. .open = acpi_processor_info_open_fs,
  103. .read = seq_read,
  104. .llseek = seq_lseek,
  105. .release = single_release,
  106. };
  107. struct acpi_processor *processors[NR_CPUS];
  108. struct acpi_processor_errata errata __read_mostly;
  109. /* --------------------------------------------------------------------------
  110. Errata Handling
  111. -------------------------------------------------------------------------- */
  112. static int acpi_processor_errata_piix4(struct pci_dev *dev)
  113. {
  114. u8 value1 = 0;
  115. u8 value2 = 0;
  116. if (!dev)
  117. return -EINVAL;
  118. /*
  119. * Note that 'dev' references the PIIX4 ACPI Controller.
  120. */
  121. switch (dev->revision) {
  122. case 0:
  123. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found PIIX4 A-step\n"));
  124. break;
  125. case 1:
  126. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found PIIX4 B-step\n"));
  127. break;
  128. case 2:
  129. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found PIIX4E\n"));
  130. break;
  131. case 3:
  132. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found PIIX4M\n"));
  133. break;
  134. default:
  135. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found unknown PIIX4\n"));
  136. break;
  137. }
  138. switch (dev->revision) {
  139. case 0: /* PIIX4 A-step */
  140. case 1: /* PIIX4 B-step */
  141. /*
  142. * See specification changes #13 ("Manual Throttle Duty Cycle")
  143. * and #14 ("Enabling and Disabling Manual Throttle"), plus
  144. * erratum #5 ("STPCLK# Deassertion Time") from the January
  145. * 2002 PIIX4 specification update. Applies to only older
  146. * PIIX4 models.
  147. */
  148. errata.piix4.throttle = 1;
  149. case 2: /* PIIX4E */
  150. case 3: /* PIIX4M */
  151. /*
  152. * See erratum #18 ("C3 Power State/BMIDE and Type-F DMA
  153. * Livelock") from the January 2002 PIIX4 specification update.
  154. * Applies to all PIIX4 models.
  155. */
  156. /*
  157. * BM-IDE
  158. * ------
  159. * Find the PIIX4 IDE Controller and get the Bus Master IDE
  160. * Status register address. We'll use this later to read
  161. * each IDE controller's DMA status to make sure we catch all
  162. * DMA activity.
  163. */
  164. dev = pci_get_subsys(PCI_VENDOR_ID_INTEL,
  165. PCI_DEVICE_ID_INTEL_82371AB,
  166. PCI_ANY_ID, PCI_ANY_ID, NULL);
  167. if (dev) {
  168. errata.piix4.bmisx = pci_resource_start(dev, 4);
  169. pci_dev_put(dev);
  170. }
  171. /*
  172. * Type-F DMA
  173. * ----------
  174. * Find the PIIX4 ISA Controller and read the Motherboard
  175. * DMA controller's status to see if Type-F (Fast) DMA mode
  176. * is enabled (bit 7) on either channel. Note that we'll
  177. * disable C3 support if this is enabled, as some legacy
  178. * devices won't operate well if fast DMA is disabled.
  179. */
  180. dev = pci_get_subsys(PCI_VENDOR_ID_INTEL,
  181. PCI_DEVICE_ID_INTEL_82371AB_0,
  182. PCI_ANY_ID, PCI_ANY_ID, NULL);
  183. if (dev) {
  184. pci_read_config_byte(dev, 0x76, &value1);
  185. pci_read_config_byte(dev, 0x77, &value2);
  186. if ((value1 & 0x80) || (value2 & 0x80))
  187. errata.piix4.fdma = 1;
  188. pci_dev_put(dev);
  189. }
  190. break;
  191. }
  192. if (errata.piix4.bmisx)
  193. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  194. "Bus master activity detection (BM-IDE) erratum enabled\n"));
  195. if (errata.piix4.fdma)
  196. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  197. "Type-F DMA livelock erratum (C3 disabled)\n"));
  198. return 0;
  199. }
  200. static int acpi_processor_errata(struct acpi_processor *pr)
  201. {
  202. int result = 0;
  203. struct pci_dev *dev = NULL;
  204. if (!pr)
  205. return -EINVAL;
  206. /*
  207. * PIIX4
  208. */
  209. dev = pci_get_subsys(PCI_VENDOR_ID_INTEL,
  210. PCI_DEVICE_ID_INTEL_82371AB_3, PCI_ANY_ID,
  211. PCI_ANY_ID, NULL);
  212. if (dev) {
  213. result = acpi_processor_errata_piix4(dev);
  214. pci_dev_put(dev);
  215. }
  216. return result;
  217. }
  218. /* --------------------------------------------------------------------------
  219. Common ACPI processor functions
  220. -------------------------------------------------------------------------- */
  221. /*
  222. * _PDC is required for a BIOS-OS handshake for most of the newer
  223. * ACPI processor features.
  224. */
  225. static int acpi_processor_set_pdc(struct acpi_processor *pr)
  226. {
  227. struct acpi_object_list *pdc_in = pr->pdc;
  228. acpi_status status = AE_OK;
  229. if (!pdc_in)
  230. return status;
  231. status = acpi_evaluate_object(pr->handle, "_PDC", pdc_in, NULL);
  232. if (ACPI_FAILURE(status))
  233. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  234. "Could not evaluate _PDC, using legacy perf. control...\n"));
  235. return status;
  236. }
  237. /* --------------------------------------------------------------------------
  238. FS Interface (/proc)
  239. -------------------------------------------------------------------------- */
  240. static struct proc_dir_entry *acpi_processor_dir = NULL;
  241. static int acpi_processor_info_seq_show(struct seq_file *seq, void *offset)
  242. {
  243. struct acpi_processor *pr = seq->private;
  244. if (!pr)
  245. goto end;
  246. seq_printf(seq, "processor id: %d\n"
  247. "acpi id: %d\n"
  248. "bus mastering control: %s\n"
  249. "power management: %s\n"
  250. "throttling control: %s\n"
  251. "limit interface: %s\n",
  252. pr->id,
  253. pr->acpi_id,
  254. pr->flags.bm_control ? "yes" : "no",
  255. pr->flags.power ? "yes" : "no",
  256. pr->flags.throttling ? "yes" : "no",
  257. pr->flags.limit ? "yes" : "no");
  258. end:
  259. return 0;
  260. }
  261. static int acpi_processor_info_open_fs(struct inode *inode, struct file *file)
  262. {
  263. return single_open(file, acpi_processor_info_seq_show,
  264. PDE(inode)->data);
  265. }
  266. static int acpi_processor_add_fs(struct acpi_device *device)
  267. {
  268. struct proc_dir_entry *entry = NULL;
  269. if (!acpi_device_dir(device)) {
  270. acpi_device_dir(device) = proc_mkdir(acpi_device_bid(device),
  271. acpi_processor_dir);
  272. if (!acpi_device_dir(device))
  273. return -ENODEV;
  274. }
  275. acpi_device_dir(device)->owner = THIS_MODULE;
  276. /* 'info' [R] */
  277. entry = create_proc_entry(ACPI_PROCESSOR_FILE_INFO,
  278. S_IRUGO, acpi_device_dir(device));
  279. if (!entry)
  280. return -EIO;
  281. else {
  282. entry->proc_fops = &acpi_processor_info_fops;
  283. entry->data = acpi_driver_data(device);
  284. entry->owner = THIS_MODULE;
  285. }
  286. /* 'throttling' [R/W] */
  287. entry = create_proc_entry(ACPI_PROCESSOR_FILE_THROTTLING,
  288. S_IFREG | S_IRUGO | S_IWUSR,
  289. acpi_device_dir(device));
  290. if (!entry)
  291. return -EIO;
  292. else {
  293. entry->proc_fops = &acpi_processor_throttling_fops;
  294. entry->data = acpi_driver_data(device);
  295. entry->owner = THIS_MODULE;
  296. }
  297. /* 'limit' [R/W] */
  298. entry = create_proc_entry(ACPI_PROCESSOR_FILE_LIMIT,
  299. S_IFREG | S_IRUGO | S_IWUSR,
  300. acpi_device_dir(device));
  301. if (!entry)
  302. return -EIO;
  303. else {
  304. entry->proc_fops = &acpi_processor_limit_fops;
  305. entry->data = acpi_driver_data(device);
  306. entry->owner = THIS_MODULE;
  307. }
  308. return 0;
  309. }
  310. static int acpi_processor_remove_fs(struct acpi_device *device)
  311. {
  312. if (acpi_device_dir(device)) {
  313. remove_proc_entry(ACPI_PROCESSOR_FILE_INFO,
  314. acpi_device_dir(device));
  315. remove_proc_entry(ACPI_PROCESSOR_FILE_THROTTLING,
  316. acpi_device_dir(device));
  317. remove_proc_entry(ACPI_PROCESSOR_FILE_LIMIT,
  318. acpi_device_dir(device));
  319. remove_proc_entry(acpi_device_bid(device), acpi_processor_dir);
  320. acpi_device_dir(device) = NULL;
  321. }
  322. return 0;
  323. }
  324. /* Use the acpiid in MADT to map cpus in case of SMP */
  325. #ifndef CONFIG_SMP
  326. static int get_cpu_id(acpi_handle handle, u32 acpi_id) {return -1;}
  327. #else
  328. static struct acpi_table_madt *madt;
  329. static int map_lapic_id(struct acpi_subtable_header *entry,
  330. u32 acpi_id, int *apic_id)
  331. {
  332. struct acpi_madt_local_apic *lapic =
  333. (struct acpi_madt_local_apic *)entry;
  334. if ((lapic->lapic_flags & ACPI_MADT_ENABLED) &&
  335. lapic->processor_id == acpi_id) {
  336. *apic_id = lapic->id;
  337. return 1;
  338. }
  339. return 0;
  340. }
  341. static int map_lsapic_id(struct acpi_subtable_header *entry,
  342. u32 acpi_id, int *apic_id)
  343. {
  344. struct acpi_madt_local_sapic *lsapic =
  345. (struct acpi_madt_local_sapic *)entry;
  346. /* Only check enabled APICs*/
  347. if (lsapic->lapic_flags & ACPI_MADT_ENABLED) {
  348. /* First check against id */
  349. if (lsapic->processor_id == acpi_id) {
  350. *apic_id = (lsapic->id << 8) | lsapic->eid;
  351. return 1;
  352. /* Check against optional uid */
  353. } else if (entry->length >= 16 &&
  354. lsapic->uid == acpi_id) {
  355. *apic_id = lsapic->uid;
  356. return 1;
  357. }
  358. }
  359. return 0;
  360. }
  361. static int map_madt_entry(u32 acpi_id)
  362. {
  363. unsigned long madt_end, entry;
  364. int apic_id = -1;
  365. if (!madt)
  366. return apic_id;
  367. entry = (unsigned long)madt;
  368. madt_end = entry + madt->header.length;
  369. /* Parse all entries looking for a match. */
  370. entry += sizeof(struct acpi_table_madt);
  371. while (entry + sizeof(struct acpi_subtable_header) < madt_end) {
  372. struct acpi_subtable_header *header =
  373. (struct acpi_subtable_header *)entry;
  374. if (header->type == ACPI_MADT_TYPE_LOCAL_APIC) {
  375. if (map_lapic_id(header, acpi_id, &apic_id))
  376. break;
  377. } else if (header->type == ACPI_MADT_TYPE_LOCAL_SAPIC) {
  378. if (map_lsapic_id(header, acpi_id, &apic_id))
  379. break;
  380. }
  381. entry += header->length;
  382. }
  383. return apic_id;
  384. }
  385. static int map_mat_entry(acpi_handle handle, u32 acpi_id)
  386. {
  387. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  388. union acpi_object *obj;
  389. struct acpi_subtable_header *header;
  390. int apic_id = -1;
  391. if (ACPI_FAILURE(acpi_evaluate_object(handle, "_MAT", NULL, &buffer)))
  392. goto exit;
  393. if (!buffer.length || !buffer.pointer)
  394. goto exit;
  395. obj = buffer.pointer;
  396. if (obj->type != ACPI_TYPE_BUFFER ||
  397. obj->buffer.length < sizeof(struct acpi_subtable_header)) {
  398. goto exit;
  399. }
  400. header = (struct acpi_subtable_header *)obj->buffer.pointer;
  401. if (header->type == ACPI_MADT_TYPE_LOCAL_APIC) {
  402. map_lapic_id(header, acpi_id, &apic_id);
  403. } else if (header->type == ACPI_MADT_TYPE_LOCAL_SAPIC) {
  404. map_lsapic_id(header, acpi_id, &apic_id);
  405. }
  406. exit:
  407. if (buffer.pointer)
  408. kfree(buffer.pointer);
  409. return apic_id;
  410. }
  411. static int get_cpu_id(acpi_handle handle, u32 acpi_id)
  412. {
  413. int i;
  414. int apic_id = -1;
  415. apic_id = map_mat_entry(handle, acpi_id);
  416. if (apic_id == -1)
  417. apic_id = map_madt_entry(acpi_id);
  418. if (apic_id == -1)
  419. return apic_id;
  420. for (i = 0; i < NR_CPUS; ++i) {
  421. if (cpu_physical_id(i) == apic_id)
  422. return i;
  423. }
  424. return -1;
  425. }
  426. #endif
  427. /* --------------------------------------------------------------------------
  428. Driver Interface
  429. -------------------------------------------------------------------------- */
  430. static int acpi_processor_get_info(struct acpi_processor *pr, unsigned has_uid)
  431. {
  432. acpi_status status = 0;
  433. union acpi_object object = { 0 };
  434. struct acpi_buffer buffer = { sizeof(union acpi_object), &object };
  435. int cpu_index;
  436. static int cpu0_initialized;
  437. if (!pr)
  438. return -EINVAL;
  439. if (num_online_cpus() > 1)
  440. errata.smp = TRUE;
  441. acpi_processor_errata(pr);
  442. /*
  443. * Check to see if we have bus mastering arbitration control. This
  444. * is required for proper C3 usage (to maintain cache coherency).
  445. */
  446. if (acpi_gbl_FADT.pm2_control_block && acpi_gbl_FADT.pm2_control_length) {
  447. pr->flags.bm_control = 1;
  448. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  449. "Bus mastering arbitration control present\n"));
  450. } else
  451. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  452. "No bus mastering arbitration control\n"));
  453. /* Check if it is a Device with HID and UID */
  454. if (has_uid) {
  455. unsigned long value;
  456. status = acpi_evaluate_integer(pr->handle, METHOD_NAME__UID,
  457. NULL, &value);
  458. if (ACPI_FAILURE(status)) {
  459. printk(KERN_ERR PREFIX "Evaluating processor _UID\n");
  460. return -ENODEV;
  461. }
  462. pr->acpi_id = value;
  463. } else {
  464. /*
  465. * Evalute the processor object. Note that it is common on SMP to
  466. * have the first (boot) processor with a valid PBLK address while
  467. * all others have a NULL address.
  468. */
  469. status = acpi_evaluate_object(pr->handle, NULL, NULL, &buffer);
  470. if (ACPI_FAILURE(status)) {
  471. printk(KERN_ERR PREFIX "Evaluating processor object\n");
  472. return -ENODEV;
  473. }
  474. /*
  475. * TBD: Synch processor ID (via LAPIC/LSAPIC structures) on SMP.
  476. * >>> 'acpi_get_processor_id(acpi_id, &id)' in arch/xxx/acpi.c
  477. */
  478. pr->acpi_id = object.processor.proc_id;
  479. }
  480. cpu_index = get_cpu_id(pr->handle, pr->acpi_id);
  481. /* Handle UP system running SMP kernel, with no LAPIC in MADT */
  482. if (!cpu0_initialized && (cpu_index == -1) &&
  483. (num_online_cpus() == 1)) {
  484. cpu_index = 0;
  485. }
  486. cpu0_initialized = 1;
  487. pr->id = cpu_index;
  488. /*
  489. * Extra Processor objects may be enumerated on MP systems with
  490. * less than the max # of CPUs. They should be ignored _iff
  491. * they are physically not present.
  492. */
  493. if (pr->id == -1) {
  494. if (ACPI_FAILURE
  495. (acpi_processor_hotadd_init(pr->handle, &pr->id))) {
  496. return -ENODEV;
  497. }
  498. }
  499. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Processor [%d:%d]\n", pr->id,
  500. pr->acpi_id));
  501. if (!object.processor.pblk_address)
  502. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No PBLK (NULL address)\n"));
  503. else if (object.processor.pblk_length != 6)
  504. printk(KERN_ERR PREFIX "Invalid PBLK length [%d]\n",
  505. object.processor.pblk_length);
  506. else {
  507. pr->throttling.address = object.processor.pblk_address;
  508. pr->throttling.duty_offset = acpi_gbl_FADT.duty_offset;
  509. pr->throttling.duty_width = acpi_gbl_FADT.duty_width;
  510. pr->pblk = object.processor.pblk_address;
  511. /*
  512. * We don't care about error returns - we just try to mark
  513. * these reserved so that nobody else is confused into thinking
  514. * that this region might be unused..
  515. *
  516. * (In particular, allocating the IO range for Cardbus)
  517. */
  518. request_region(pr->throttling.address, 6, "ACPI CPU throttle");
  519. }
  520. #ifdef CONFIG_CPU_FREQ
  521. acpi_processor_ppc_has_changed(pr);
  522. #endif
  523. acpi_processor_get_throttling_info(pr);
  524. acpi_processor_get_limit_info(pr);
  525. return 0;
  526. }
  527. static void *processor_device_array[NR_CPUS];
  528. static int __cpuinit acpi_processor_start(struct acpi_device *device)
  529. {
  530. int result = 0;
  531. acpi_status status = AE_OK;
  532. struct acpi_processor *pr;
  533. pr = acpi_driver_data(device);
  534. result = acpi_processor_get_info(pr, device->flags.unique_id);
  535. if (result) {
  536. /* Processor is physically not present */
  537. return 0;
  538. }
  539. BUG_ON((pr->id >= NR_CPUS) || (pr->id < 0));
  540. /*
  541. * Buggy BIOS check
  542. * ACPI id of processors can be reported wrongly by the BIOS.
  543. * Don't trust it blindly
  544. */
  545. if (processor_device_array[pr->id] != NULL &&
  546. processor_device_array[pr->id] != device) {
  547. printk(KERN_WARNING "BIOS reported wrong ACPI id"
  548. "for the processor\n");
  549. return -ENODEV;
  550. }
  551. processor_device_array[pr->id] = device;
  552. processors[pr->id] = pr;
  553. result = acpi_processor_add_fs(device);
  554. if (result)
  555. goto end;
  556. status = acpi_install_notify_handler(pr->handle, ACPI_DEVICE_NOTIFY,
  557. acpi_processor_notify, pr);
  558. /* _PDC call should be done before doing anything else (if reqd.). */
  559. arch_acpi_processor_init_pdc(pr);
  560. acpi_processor_set_pdc(pr);
  561. acpi_processor_power_init(pr, device);
  562. if (pr->flags.throttling) {
  563. printk(KERN_INFO PREFIX "%s [%s] (supports",
  564. acpi_device_name(device), acpi_device_bid(device));
  565. printk(" %d throttling states", pr->throttling.state_count);
  566. printk(")\n");
  567. }
  568. end:
  569. return result;
  570. }
  571. static void acpi_processor_notify(acpi_handle handle, u32 event, void *data)
  572. {
  573. struct acpi_processor *pr = data;
  574. struct acpi_device *device = NULL;
  575. if (!pr)
  576. return;
  577. if (acpi_bus_get_device(pr->handle, &device))
  578. return;
  579. switch (event) {
  580. case ACPI_PROCESSOR_NOTIFY_PERFORMANCE:
  581. acpi_processor_ppc_has_changed(pr);
  582. acpi_bus_generate_proc_event(device, event,
  583. pr->performance_platform_limit);
  584. acpi_bus_generate_netlink_event(device->pnp.device_class,
  585. device->dev.bus_id, event,
  586. pr->performance_platform_limit);
  587. break;
  588. case ACPI_PROCESSOR_NOTIFY_POWER:
  589. acpi_processor_cst_has_changed(pr);
  590. acpi_bus_generate_proc_event(device, event, 0);
  591. acpi_bus_generate_netlink_event(device->pnp.device_class,
  592. device->dev.bus_id, event, 0);
  593. break;
  594. case ACPI_PROCESSOR_NOTIFY_THROTTLING:
  595. acpi_processor_tstate_has_changed(pr);
  596. acpi_bus_generate_proc_event(device, event, 0);
  597. acpi_bus_generate_netlink_event(device->pnp.device_class,
  598. device->dev.bus_id, event, 0);
  599. default:
  600. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  601. "Unsupported event [0x%x]\n", event));
  602. break;
  603. }
  604. return;
  605. }
  606. static int acpi_cpu_soft_notify(struct notifier_block *nfb,
  607. unsigned long action, void *hcpu)
  608. {
  609. unsigned int cpu = (unsigned long)hcpu;
  610. struct acpi_processor *pr = processors[cpu];
  611. if (action == CPU_ONLINE && pr) {
  612. acpi_processor_ppc_has_changed(pr);
  613. acpi_processor_cst_has_changed(pr);
  614. acpi_processor_tstate_has_changed(pr);
  615. }
  616. return NOTIFY_OK;
  617. }
  618. static struct notifier_block acpi_cpu_notifier =
  619. {
  620. .notifier_call = acpi_cpu_soft_notify,
  621. };
  622. static int acpi_processor_add(struct acpi_device *device)
  623. {
  624. struct acpi_processor *pr = NULL;
  625. if (!device)
  626. return -EINVAL;
  627. pr = kzalloc(sizeof(struct acpi_processor), GFP_KERNEL);
  628. if (!pr)
  629. return -ENOMEM;
  630. pr->handle = device->handle;
  631. strcpy(acpi_device_name(device), ACPI_PROCESSOR_DEVICE_NAME);
  632. strcpy(acpi_device_class(device), ACPI_PROCESSOR_CLASS);
  633. acpi_driver_data(device) = pr;
  634. return 0;
  635. }
  636. static int acpi_processor_remove(struct acpi_device *device, int type)
  637. {
  638. acpi_status status = AE_OK;
  639. struct acpi_processor *pr = NULL;
  640. if (!device || !acpi_driver_data(device))
  641. return -EINVAL;
  642. pr = acpi_driver_data(device);
  643. if (pr->id >= NR_CPUS) {
  644. kfree(pr);
  645. return 0;
  646. }
  647. if (type == ACPI_BUS_REMOVAL_EJECT) {
  648. if (acpi_processor_handle_eject(pr))
  649. return -EINVAL;
  650. }
  651. acpi_processor_power_exit(pr, device);
  652. status = acpi_remove_notify_handler(pr->handle, ACPI_DEVICE_NOTIFY,
  653. acpi_processor_notify);
  654. acpi_processor_remove_fs(device);
  655. processors[pr->id] = NULL;
  656. kfree(pr);
  657. return 0;
  658. }
  659. #ifdef CONFIG_ACPI_HOTPLUG_CPU
  660. /****************************************************************************
  661. * Acpi processor hotplug support *
  662. ****************************************************************************/
  663. static int is_processor_present(acpi_handle handle);
  664. static int is_processor_present(acpi_handle handle)
  665. {
  666. acpi_status status;
  667. unsigned long sta = 0;
  668. status = acpi_evaluate_integer(handle, "_STA", NULL, &sta);
  669. if (ACPI_FAILURE(status) || !(sta & ACPI_STA_DEVICE_PRESENT)) {
  670. ACPI_EXCEPTION((AE_INFO, status, "Processor Device is not present"));
  671. return 0;
  672. }
  673. return 1;
  674. }
  675. static
  676. int acpi_processor_device_add(acpi_handle handle, struct acpi_device **device)
  677. {
  678. acpi_handle phandle;
  679. struct acpi_device *pdev;
  680. struct acpi_processor *pr;
  681. if (acpi_get_parent(handle, &phandle)) {
  682. return -ENODEV;
  683. }
  684. if (acpi_bus_get_device(phandle, &pdev)) {
  685. return -ENODEV;
  686. }
  687. if (acpi_bus_add(device, pdev, handle, ACPI_BUS_TYPE_PROCESSOR)) {
  688. return -ENODEV;
  689. }
  690. acpi_bus_start(*device);
  691. pr = acpi_driver_data(*device);
  692. if (!pr)
  693. return -ENODEV;
  694. if ((pr->id >= 0) && (pr->id < NR_CPUS)) {
  695. kobject_uevent(&(*device)->dev.kobj, KOBJ_ONLINE);
  696. }
  697. return 0;
  698. }
  699. static void
  700. acpi_processor_hotplug_notify(acpi_handle handle, u32 event, void *data)
  701. {
  702. struct acpi_processor *pr;
  703. struct acpi_device *device = NULL;
  704. int result;
  705. switch (event) {
  706. case ACPI_NOTIFY_BUS_CHECK:
  707. case ACPI_NOTIFY_DEVICE_CHECK:
  708. printk("Processor driver received %s event\n",
  709. (event == ACPI_NOTIFY_BUS_CHECK) ?
  710. "ACPI_NOTIFY_BUS_CHECK" : "ACPI_NOTIFY_DEVICE_CHECK");
  711. if (!is_processor_present(handle))
  712. break;
  713. if (acpi_bus_get_device(handle, &device)) {
  714. result = acpi_processor_device_add(handle, &device);
  715. if (result)
  716. printk(KERN_ERR PREFIX
  717. "Unable to add the device\n");
  718. break;
  719. }
  720. pr = acpi_driver_data(device);
  721. if (!pr) {
  722. printk(KERN_ERR PREFIX "Driver data is NULL\n");
  723. break;
  724. }
  725. if (pr->id >= 0 && (pr->id < NR_CPUS)) {
  726. kobject_uevent(&device->dev.kobj, KOBJ_OFFLINE);
  727. break;
  728. }
  729. result = acpi_processor_start(device);
  730. if ((!result) && ((pr->id >= 0) && (pr->id < NR_CPUS))) {
  731. kobject_uevent(&device->dev.kobj, KOBJ_ONLINE);
  732. } else {
  733. printk(KERN_ERR PREFIX "Device [%s] failed to start\n",
  734. acpi_device_bid(device));
  735. }
  736. break;
  737. case ACPI_NOTIFY_EJECT_REQUEST:
  738. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  739. "received ACPI_NOTIFY_EJECT_REQUEST\n"));
  740. if (acpi_bus_get_device(handle, &device)) {
  741. printk(KERN_ERR PREFIX
  742. "Device don't exist, dropping EJECT\n");
  743. break;
  744. }
  745. pr = acpi_driver_data(device);
  746. if (!pr) {
  747. printk(KERN_ERR PREFIX
  748. "Driver data is NULL, dropping EJECT\n");
  749. return;
  750. }
  751. if ((pr->id < NR_CPUS) && (cpu_present(pr->id)))
  752. kobject_uevent(&device->dev.kobj, KOBJ_OFFLINE);
  753. break;
  754. default:
  755. ACPI_DEBUG_PRINT((ACPI_DB_INFO,
  756. "Unsupported event [0x%x]\n", event));
  757. break;
  758. }
  759. return;
  760. }
  761. static acpi_status
  762. processor_walk_namespace_cb(acpi_handle handle,
  763. u32 lvl, void *context, void **rv)
  764. {
  765. acpi_status status;
  766. int *action = context;
  767. acpi_object_type type = 0;
  768. status = acpi_get_type(handle, &type);
  769. if (ACPI_FAILURE(status))
  770. return (AE_OK);
  771. if (type != ACPI_TYPE_PROCESSOR)
  772. return (AE_OK);
  773. switch (*action) {
  774. case INSTALL_NOTIFY_HANDLER:
  775. acpi_install_notify_handler(handle,
  776. ACPI_SYSTEM_NOTIFY,
  777. acpi_processor_hotplug_notify,
  778. NULL);
  779. break;
  780. case UNINSTALL_NOTIFY_HANDLER:
  781. acpi_remove_notify_handler(handle,
  782. ACPI_SYSTEM_NOTIFY,
  783. acpi_processor_hotplug_notify);
  784. break;
  785. default:
  786. break;
  787. }
  788. return (AE_OK);
  789. }
  790. static acpi_status acpi_processor_hotadd_init(acpi_handle handle, int *p_cpu)
  791. {
  792. if (!is_processor_present(handle)) {
  793. return AE_ERROR;
  794. }
  795. if (acpi_map_lsapic(handle, p_cpu))
  796. return AE_ERROR;
  797. if (arch_register_cpu(*p_cpu)) {
  798. acpi_unmap_lsapic(*p_cpu);
  799. return AE_ERROR;
  800. }
  801. return AE_OK;
  802. }
  803. static int acpi_processor_handle_eject(struct acpi_processor *pr)
  804. {
  805. if (cpu_online(pr->id)) {
  806. return (-EINVAL);
  807. }
  808. arch_unregister_cpu(pr->id);
  809. acpi_unmap_lsapic(pr->id);
  810. return (0);
  811. }
  812. #else
  813. static acpi_status acpi_processor_hotadd_init(acpi_handle handle, int *p_cpu)
  814. {
  815. return AE_ERROR;
  816. }
  817. static int acpi_processor_handle_eject(struct acpi_processor *pr)
  818. {
  819. return (-EINVAL);
  820. }
  821. #endif
  822. static
  823. void acpi_processor_install_hotplug_notify(void)
  824. {
  825. #ifdef CONFIG_ACPI_HOTPLUG_CPU
  826. int action = INSTALL_NOTIFY_HANDLER;
  827. acpi_walk_namespace(ACPI_TYPE_PROCESSOR,
  828. ACPI_ROOT_OBJECT,
  829. ACPI_UINT32_MAX,
  830. processor_walk_namespace_cb, &action, NULL);
  831. #endif
  832. register_hotcpu_notifier(&acpi_cpu_notifier);
  833. }
  834. static
  835. void acpi_processor_uninstall_hotplug_notify(void)
  836. {
  837. #ifdef CONFIG_ACPI_HOTPLUG_CPU
  838. int action = UNINSTALL_NOTIFY_HANDLER;
  839. acpi_walk_namespace(ACPI_TYPE_PROCESSOR,
  840. ACPI_ROOT_OBJECT,
  841. ACPI_UINT32_MAX,
  842. processor_walk_namespace_cb, &action, NULL);
  843. #endif
  844. unregister_hotcpu_notifier(&acpi_cpu_notifier);
  845. }
  846. /*
  847. * We keep the driver loaded even when ACPI is not running.
  848. * This is needed for the powernow-k8 driver, that works even without
  849. * ACPI, but needs symbols from this driver
  850. */
  851. static int __init acpi_processor_init(void)
  852. {
  853. int result = 0;
  854. memset(&processors, 0, sizeof(processors));
  855. memset(&errata, 0, sizeof(errata));
  856. #ifdef CONFIG_SMP
  857. if (ACPI_FAILURE(acpi_get_table(ACPI_SIG_MADT, 0,
  858. (struct acpi_table_header **)&madt)))
  859. madt = NULL;
  860. #endif
  861. acpi_processor_dir = proc_mkdir(ACPI_PROCESSOR_CLASS, acpi_root_dir);
  862. if (!acpi_processor_dir)
  863. return -ENOMEM;
  864. acpi_processor_dir->owner = THIS_MODULE;
  865. result = cpuidle_register_driver(&acpi_idle_driver);
  866. if (result < 0)
  867. goto out_proc;
  868. result = acpi_bus_register_driver(&acpi_processor_driver);
  869. if (result < 0)
  870. goto out_cpuidle;
  871. acpi_processor_install_hotplug_notify();
  872. acpi_thermal_cpufreq_init();
  873. acpi_processor_ppc_init();
  874. return 0;
  875. out_cpuidle:
  876. cpuidle_unregister_driver(&acpi_idle_driver);
  877. out_proc:
  878. remove_proc_entry(ACPI_PROCESSOR_CLASS, acpi_root_dir);
  879. return result;
  880. }
  881. static void __exit acpi_processor_exit(void)
  882. {
  883. acpi_processor_ppc_exit();
  884. acpi_thermal_cpufreq_exit();
  885. acpi_processor_uninstall_hotplug_notify();
  886. acpi_bus_unregister_driver(&acpi_processor_driver);
  887. cpuidle_unregister_driver(&acpi_idle_driver);
  888. remove_proc_entry(ACPI_PROCESSOR_CLASS, acpi_root_dir);
  889. return;
  890. }
  891. module_init(acpi_processor_init);
  892. module_exit(acpi_processor_exit);
  893. EXPORT_SYMBOL(acpi_processor_set_thermal_limit);
  894. MODULE_ALIAS("processor");