acpi.c 22 KB

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  1. /*
  2. * acpi.c - Architecture-Specific Low-Level ACPI Support
  3. *
  4. * Copyright (C) 1999 VA Linux Systems
  5. * Copyright (C) 1999,2000 Walt Drummond <drummond@valinux.com>
  6. * Copyright (C) 2000, 2002-2003 Hewlett-Packard Co.
  7. * David Mosberger-Tang <davidm@hpl.hp.com>
  8. * Copyright (C) 2000 Intel Corp.
  9. * Copyright (C) 2000,2001 J.I. Lee <jung-ik.lee@intel.com>
  10. * Copyright (C) 2001 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
  11. * Copyright (C) 2001 Jenna Hall <jenna.s.hall@intel.com>
  12. * Copyright (C) 2001 Takayoshi Kochi <t-kochi@bq.jp.nec.com>
  13. * Copyright (C) 2002 Erich Focht <efocht@ess.nec.de>
  14. * Copyright (C) 2004 Ashok Raj <ashok.raj@intel.com>
  15. *
  16. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  17. *
  18. * This program is free software; you can redistribute it and/or modify
  19. * it under the terms of the GNU General Public License as published by
  20. * the Free Software Foundation; either version 2 of the License, or
  21. * (at your option) any later version.
  22. *
  23. * This program is distributed in the hope that it will be useful,
  24. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  25. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  26. * GNU General Public License for more details.
  27. *
  28. * You should have received a copy of the GNU General Public License
  29. * along with this program; if not, write to the Free Software
  30. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  31. *
  32. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  33. */
  34. #include <linux/config.h>
  35. #include <linux/module.h>
  36. #include <linux/init.h>
  37. #include <linux/kernel.h>
  38. #include <linux/sched.h>
  39. #include <linux/smp.h>
  40. #include <linux/string.h>
  41. #include <linux/types.h>
  42. #include <linux/irq.h>
  43. #include <linux/acpi.h>
  44. #include <linux/efi.h>
  45. #include <linux/mmzone.h>
  46. #include <linux/nodemask.h>
  47. #include <asm/io.h>
  48. #include <asm/iosapic.h>
  49. #include <asm/machvec.h>
  50. #include <asm/page.h>
  51. #include <asm/system.h>
  52. #include <asm/numa.h>
  53. #include <asm/sal.h>
  54. #include <asm/cyclone.h>
  55. #define BAD_MADT_ENTRY(entry, end) ( \
  56. (!entry) || (unsigned long)entry + sizeof(*entry) > end || \
  57. ((acpi_table_entry_header *)entry)->length != sizeof(*entry))
  58. #define PREFIX "ACPI: "
  59. void (*pm_idle) (void);
  60. EXPORT_SYMBOL(pm_idle);
  61. void (*pm_power_off) (void);
  62. EXPORT_SYMBOL(pm_power_off);
  63. unsigned char acpi_kbd_controller_present = 1;
  64. unsigned char acpi_legacy_devices;
  65. static unsigned int __initdata acpi_madt_rev;
  66. unsigned int acpi_cpei_override;
  67. unsigned int acpi_cpei_phys_cpuid;
  68. #define MAX_SAPICS 256
  69. u16 ia64_acpiid_to_sapicid[MAX_SAPICS] =
  70. { [0 ... MAX_SAPICS - 1] = -1 };
  71. EXPORT_SYMBOL(ia64_acpiid_to_sapicid);
  72. const char *
  73. acpi_get_sysname (void)
  74. {
  75. #ifdef CONFIG_IA64_GENERIC
  76. unsigned long rsdp_phys;
  77. struct acpi20_table_rsdp *rsdp;
  78. struct acpi_table_xsdt *xsdt;
  79. struct acpi_table_header *hdr;
  80. rsdp_phys = acpi_find_rsdp();
  81. if (!rsdp_phys) {
  82. printk(KERN_ERR "ACPI 2.0 RSDP not found, default to \"dig\"\n");
  83. return "dig";
  84. }
  85. rsdp = (struct acpi20_table_rsdp *) __va(rsdp_phys);
  86. if (strncmp(rsdp->signature, RSDP_SIG, sizeof(RSDP_SIG) - 1)) {
  87. printk(KERN_ERR "ACPI 2.0 RSDP signature incorrect, default to \"dig\"\n");
  88. return "dig";
  89. }
  90. xsdt = (struct acpi_table_xsdt *) __va(rsdp->xsdt_address);
  91. hdr = &xsdt->header;
  92. if (strncmp(hdr->signature, XSDT_SIG, sizeof(XSDT_SIG) - 1)) {
  93. printk(KERN_ERR "ACPI 2.0 XSDT signature incorrect, default to \"dig\"\n");
  94. return "dig";
  95. }
  96. if (!strcmp(hdr->oem_id, "HP")) {
  97. return "hpzx1";
  98. }
  99. else if (!strcmp(hdr->oem_id, "SGI")) {
  100. return "sn2";
  101. }
  102. return "dig";
  103. #else
  104. # if defined (CONFIG_IA64_HP_SIM)
  105. return "hpsim";
  106. # elif defined (CONFIG_IA64_HP_ZX1)
  107. return "hpzx1";
  108. # elif defined (CONFIG_IA64_HP_ZX1_SWIOTLB)
  109. return "hpzx1_swiotlb";
  110. # elif defined (CONFIG_IA64_SGI_SN2)
  111. return "sn2";
  112. # elif defined (CONFIG_IA64_DIG)
  113. return "dig";
  114. # else
  115. # error Unknown platform. Fix acpi.c.
  116. # endif
  117. #endif
  118. }
  119. #ifdef CONFIG_ACPI_BOOT
  120. #define ACPI_MAX_PLATFORM_INTERRUPTS 256
  121. /* Array to record platform interrupt vectors for generic interrupt routing. */
  122. int platform_intr_list[ACPI_MAX_PLATFORM_INTERRUPTS] = {
  123. [0 ... ACPI_MAX_PLATFORM_INTERRUPTS - 1] = -1
  124. };
  125. enum acpi_irq_model_id acpi_irq_model = ACPI_IRQ_MODEL_IOSAPIC;
  126. /*
  127. * Interrupt routing API for device drivers. Provides interrupt vector for
  128. * a generic platform event. Currently only CPEI is implemented.
  129. */
  130. int
  131. acpi_request_vector (u32 int_type)
  132. {
  133. int vector = -1;
  134. if (int_type < ACPI_MAX_PLATFORM_INTERRUPTS) {
  135. /* corrected platform error interrupt */
  136. vector = platform_intr_list[int_type];
  137. } else
  138. printk(KERN_ERR "acpi_request_vector(): invalid interrupt type\n");
  139. return vector;
  140. }
  141. char *
  142. __acpi_map_table (unsigned long phys_addr, unsigned long size)
  143. {
  144. return __va(phys_addr);
  145. }
  146. /* --------------------------------------------------------------------------
  147. Boot-time Table Parsing
  148. -------------------------------------------------------------------------- */
  149. static int total_cpus __initdata;
  150. static int available_cpus __initdata;
  151. struct acpi_table_madt * acpi_madt __initdata;
  152. static u8 has_8259;
  153. static int __init
  154. acpi_parse_lapic_addr_ovr (
  155. acpi_table_entry_header *header, const unsigned long end)
  156. {
  157. struct acpi_table_lapic_addr_ovr *lapic;
  158. lapic = (struct acpi_table_lapic_addr_ovr *) header;
  159. if (BAD_MADT_ENTRY(lapic, end))
  160. return -EINVAL;
  161. if (lapic->address) {
  162. iounmap(ipi_base_addr);
  163. ipi_base_addr = ioremap(lapic->address, 0);
  164. }
  165. return 0;
  166. }
  167. static int __init
  168. acpi_parse_lsapic (acpi_table_entry_header *header, const unsigned long end)
  169. {
  170. struct acpi_table_lsapic *lsapic;
  171. lsapic = (struct acpi_table_lsapic *) header;
  172. if (BAD_MADT_ENTRY(lsapic, end))
  173. return -EINVAL;
  174. if (lsapic->flags.enabled) {
  175. #ifdef CONFIG_SMP
  176. smp_boot_data.cpu_phys_id[available_cpus] = (lsapic->id << 8) | lsapic->eid;
  177. #endif
  178. ia64_acpiid_to_sapicid[lsapic->acpi_id] = (lsapic->id << 8) | lsapic->eid;
  179. ++available_cpus;
  180. }
  181. total_cpus++;
  182. return 0;
  183. }
  184. static int __init
  185. acpi_parse_lapic_nmi (acpi_table_entry_header *header, const unsigned long end)
  186. {
  187. struct acpi_table_lapic_nmi *lacpi_nmi;
  188. lacpi_nmi = (struct acpi_table_lapic_nmi*) header;
  189. if (BAD_MADT_ENTRY(lacpi_nmi, end))
  190. return -EINVAL;
  191. /* TBD: Support lapic_nmi entries */
  192. return 0;
  193. }
  194. static int __init
  195. acpi_parse_iosapic (acpi_table_entry_header *header, const unsigned long end)
  196. {
  197. struct acpi_table_iosapic *iosapic;
  198. iosapic = (struct acpi_table_iosapic *) header;
  199. if (BAD_MADT_ENTRY(iosapic, end))
  200. return -EINVAL;
  201. iosapic_init(iosapic->address, iosapic->global_irq_base);
  202. return 0;
  203. }
  204. static int __init
  205. acpi_parse_plat_int_src (
  206. acpi_table_entry_header *header, const unsigned long end)
  207. {
  208. struct acpi_table_plat_int_src *plintsrc;
  209. int vector;
  210. plintsrc = (struct acpi_table_plat_int_src *) header;
  211. if (BAD_MADT_ENTRY(plintsrc, end))
  212. return -EINVAL;
  213. /*
  214. * Get vector assignment for this interrupt, set attributes,
  215. * and program the IOSAPIC routing table.
  216. */
  217. vector = iosapic_register_platform_intr(plintsrc->type,
  218. plintsrc->global_irq,
  219. plintsrc->iosapic_vector,
  220. plintsrc->eid,
  221. plintsrc->id,
  222. (plintsrc->flags.polarity == 1) ? IOSAPIC_POL_HIGH : IOSAPIC_POL_LOW,
  223. (plintsrc->flags.trigger == 1) ? IOSAPIC_EDGE : IOSAPIC_LEVEL);
  224. platform_intr_list[plintsrc->type] = vector;
  225. if (acpi_madt_rev > 1) {
  226. acpi_cpei_override = plintsrc->plint_flags.cpei_override_flag;
  227. }
  228. /*
  229. * Save the physical id, so we can check when its being removed
  230. */
  231. acpi_cpei_phys_cpuid = ((plintsrc->id << 8) | (plintsrc->eid)) & 0xffff;
  232. return 0;
  233. }
  234. unsigned int can_cpei_retarget(void)
  235. {
  236. extern int cpe_vector;
  237. /*
  238. * Only if CPEI is supported and the override flag
  239. * is present, otherwise return that its re-targettable
  240. * if we are in polling mode.
  241. */
  242. if (cpe_vector > 0 && !acpi_cpei_override)
  243. return 0;
  244. else
  245. return 1;
  246. }
  247. unsigned int is_cpu_cpei_target(unsigned int cpu)
  248. {
  249. unsigned int logical_id;
  250. logical_id = cpu_logical_id(acpi_cpei_phys_cpuid);
  251. if (logical_id == cpu)
  252. return 1;
  253. else
  254. return 0;
  255. }
  256. void set_cpei_target_cpu(unsigned int cpu)
  257. {
  258. acpi_cpei_phys_cpuid = cpu_physical_id(cpu);
  259. }
  260. unsigned int get_cpei_target_cpu(void)
  261. {
  262. return acpi_cpei_phys_cpuid;
  263. }
  264. static int __init
  265. acpi_parse_int_src_ovr (
  266. acpi_table_entry_header *header, const unsigned long end)
  267. {
  268. struct acpi_table_int_src_ovr *p;
  269. p = (struct acpi_table_int_src_ovr *) header;
  270. if (BAD_MADT_ENTRY(p, end))
  271. return -EINVAL;
  272. iosapic_override_isa_irq(p->bus_irq, p->global_irq,
  273. (p->flags.polarity == 1) ? IOSAPIC_POL_HIGH : IOSAPIC_POL_LOW,
  274. (p->flags.trigger == 1) ? IOSAPIC_EDGE : IOSAPIC_LEVEL);
  275. return 0;
  276. }
  277. static int __init
  278. acpi_parse_nmi_src (acpi_table_entry_header *header, const unsigned long end)
  279. {
  280. struct acpi_table_nmi_src *nmi_src;
  281. nmi_src = (struct acpi_table_nmi_src*) header;
  282. if (BAD_MADT_ENTRY(nmi_src, end))
  283. return -EINVAL;
  284. /* TBD: Support nimsrc entries */
  285. return 0;
  286. }
  287. static void __init
  288. acpi_madt_oem_check (char *oem_id, char *oem_table_id)
  289. {
  290. if (!strncmp(oem_id, "IBM", 3) &&
  291. (!strncmp(oem_table_id, "SERMOW", 6))) {
  292. /*
  293. * Unfortunately ITC_DRIFT is not yet part of the
  294. * official SAL spec, so the ITC_DRIFT bit is not
  295. * set by the BIOS on this hardware.
  296. */
  297. sal_platform_features |= IA64_SAL_PLATFORM_FEATURE_ITC_DRIFT;
  298. cyclone_setup();
  299. }
  300. }
  301. static int __init
  302. acpi_parse_madt (unsigned long phys_addr, unsigned long size)
  303. {
  304. if (!phys_addr || !size)
  305. return -EINVAL;
  306. acpi_madt = (struct acpi_table_madt *) __va(phys_addr);
  307. acpi_madt_rev = acpi_madt->header.revision;
  308. /* remember the value for reference after free_initmem() */
  309. #ifdef CONFIG_ITANIUM
  310. has_8259 = 1; /* Firmware on old Itanium systems is broken */
  311. #else
  312. has_8259 = acpi_madt->flags.pcat_compat;
  313. #endif
  314. iosapic_system_init(has_8259);
  315. /* Get base address of IPI Message Block */
  316. if (acpi_madt->lapic_address)
  317. ipi_base_addr = ioremap(acpi_madt->lapic_address, 0);
  318. printk(KERN_INFO PREFIX "Local APIC address %p\n", ipi_base_addr);
  319. acpi_madt_oem_check(acpi_madt->header.oem_id,
  320. acpi_madt->header.oem_table_id);
  321. return 0;
  322. }
  323. #ifdef CONFIG_ACPI_NUMA
  324. #undef SLIT_DEBUG
  325. #define PXM_FLAG_LEN ((MAX_PXM_DOMAINS + 1)/32)
  326. static int __initdata srat_num_cpus; /* number of cpus */
  327. static u32 __devinitdata pxm_flag[PXM_FLAG_LEN];
  328. #define pxm_bit_set(bit) (set_bit(bit,(void *)pxm_flag))
  329. #define pxm_bit_test(bit) (test_bit(bit,(void *)pxm_flag))
  330. /* maps to convert between proximity domain and logical node ID */
  331. int __devinitdata pxm_to_nid_map[MAX_PXM_DOMAINS];
  332. int __initdata nid_to_pxm_map[MAX_NUMNODES];
  333. static struct acpi_table_slit __initdata *slit_table;
  334. /*
  335. * ACPI 2.0 SLIT (System Locality Information Table)
  336. * http://devresource.hp.com/devresource/Docs/TechPapers/IA64/slit.pdf
  337. */
  338. void __init
  339. acpi_numa_slit_init (struct acpi_table_slit *slit)
  340. {
  341. u32 len;
  342. len = sizeof(struct acpi_table_header) + 8
  343. + slit->localities * slit->localities;
  344. if (slit->header.length != len) {
  345. printk(KERN_ERR "ACPI 2.0 SLIT: size mismatch: %d expected, %d actual\n",
  346. len, slit->header.length);
  347. memset(numa_slit, 10, sizeof(numa_slit));
  348. return;
  349. }
  350. slit_table = slit;
  351. }
  352. void __init
  353. acpi_numa_processor_affinity_init (struct acpi_table_processor_affinity *pa)
  354. {
  355. /* record this node in proximity bitmap */
  356. pxm_bit_set(pa->proximity_domain);
  357. node_cpuid[srat_num_cpus].phys_id = (pa->apic_id << 8) | (pa->lsapic_eid);
  358. /* nid should be overridden as logical node id later */
  359. node_cpuid[srat_num_cpus].nid = pa->proximity_domain;
  360. srat_num_cpus++;
  361. }
  362. void __init
  363. acpi_numa_memory_affinity_init (struct acpi_table_memory_affinity *ma)
  364. {
  365. unsigned long paddr, size;
  366. u8 pxm;
  367. struct node_memblk_s *p, *q, *pend;
  368. pxm = ma->proximity_domain;
  369. /* fill node memory chunk structure */
  370. paddr = ma->base_addr_hi;
  371. paddr = (paddr << 32) | ma->base_addr_lo;
  372. size = ma->length_hi;
  373. size = (size << 32) | ma->length_lo;
  374. /* Ignore disabled entries */
  375. if (!ma->flags.enabled)
  376. return;
  377. /* record this node in proximity bitmap */
  378. pxm_bit_set(pxm);
  379. /* Insertion sort based on base address */
  380. pend = &node_memblk[num_node_memblks];
  381. for (p = &node_memblk[0]; p < pend; p++) {
  382. if (paddr < p->start_paddr)
  383. break;
  384. }
  385. if (p < pend) {
  386. for (q = pend - 1; q >= p; q--)
  387. *(q + 1) = *q;
  388. }
  389. p->start_paddr = paddr;
  390. p->size = size;
  391. p->nid = pxm;
  392. num_node_memblks++;
  393. }
  394. void __init
  395. acpi_numa_arch_fixup (void)
  396. {
  397. int i, j, node_from, node_to;
  398. /* If there's no SRAT, fix the phys_id and mark node 0 online */
  399. if (srat_num_cpus == 0) {
  400. node_set_online(0);
  401. node_cpuid[0].phys_id = hard_smp_processor_id();
  402. return;
  403. }
  404. /*
  405. * MCD - This can probably be dropped now. No need for pxm ID to node ID
  406. * mapping with sparse node numbering iff MAX_PXM_DOMAINS <= MAX_NUMNODES.
  407. */
  408. /* calculate total number of nodes in system from PXM bitmap */
  409. memset(pxm_to_nid_map, -1, sizeof(pxm_to_nid_map));
  410. memset(nid_to_pxm_map, -1, sizeof(nid_to_pxm_map));
  411. nodes_clear(node_online_map);
  412. for (i = 0; i < MAX_PXM_DOMAINS; i++) {
  413. if (pxm_bit_test(i)) {
  414. int nid = num_online_nodes();
  415. pxm_to_nid_map[i] = nid;
  416. nid_to_pxm_map[nid] = i;
  417. node_set_online(nid);
  418. }
  419. }
  420. /* set logical node id in memory chunk structure */
  421. for (i = 0; i < num_node_memblks; i++)
  422. node_memblk[i].nid = pxm_to_nid_map[node_memblk[i].nid];
  423. /* assign memory bank numbers for each chunk on each node */
  424. for_each_online_node(i) {
  425. int bank;
  426. bank = 0;
  427. for (j = 0; j < num_node_memblks; j++)
  428. if (node_memblk[j].nid == i)
  429. node_memblk[j].bank = bank++;
  430. }
  431. /* set logical node id in cpu structure */
  432. for (i = 0; i < srat_num_cpus; i++)
  433. node_cpuid[i].nid = pxm_to_nid_map[node_cpuid[i].nid];
  434. printk(KERN_INFO "Number of logical nodes in system = %d\n", num_online_nodes());
  435. printk(KERN_INFO "Number of memory chunks in system = %d\n", num_node_memblks);
  436. if (!slit_table) return;
  437. memset(numa_slit, -1, sizeof(numa_slit));
  438. for (i=0; i<slit_table->localities; i++) {
  439. if (!pxm_bit_test(i))
  440. continue;
  441. node_from = pxm_to_nid_map[i];
  442. for (j=0; j<slit_table->localities; j++) {
  443. if (!pxm_bit_test(j))
  444. continue;
  445. node_to = pxm_to_nid_map[j];
  446. node_distance(node_from, node_to) =
  447. slit_table->entry[i*slit_table->localities + j];
  448. }
  449. }
  450. #ifdef SLIT_DEBUG
  451. printk("ACPI 2.0 SLIT locality table:\n");
  452. for_each_online_node(i) {
  453. for_each_online_node(j)
  454. printk("%03d ", node_distance(i,j));
  455. printk("\n");
  456. }
  457. #endif
  458. }
  459. #endif /* CONFIG_ACPI_NUMA */
  460. /*
  461. * success: return IRQ number (>=0)
  462. * failure: return < 0
  463. */
  464. int
  465. acpi_register_gsi (u32 gsi, int edge_level, int active_high_low)
  466. {
  467. if (has_8259 && gsi < 16)
  468. return isa_irq_to_vector(gsi);
  469. return iosapic_register_intr(gsi,
  470. (active_high_low == ACPI_ACTIVE_HIGH) ? IOSAPIC_POL_HIGH : IOSAPIC_POL_LOW,
  471. (edge_level == ACPI_EDGE_SENSITIVE) ? IOSAPIC_EDGE : IOSAPIC_LEVEL);
  472. }
  473. EXPORT_SYMBOL(acpi_register_gsi);
  474. #ifdef CONFIG_ACPI_DEALLOCATE_IRQ
  475. void
  476. acpi_unregister_gsi (u32 gsi)
  477. {
  478. iosapic_unregister_intr(gsi);
  479. }
  480. EXPORT_SYMBOL(acpi_unregister_gsi);
  481. #endif /* CONFIG_ACPI_DEALLOCATE_IRQ */
  482. static int __init
  483. acpi_parse_fadt (unsigned long phys_addr, unsigned long size)
  484. {
  485. struct acpi_table_header *fadt_header;
  486. struct fadt_descriptor_rev2 *fadt;
  487. if (!phys_addr || !size)
  488. return -EINVAL;
  489. fadt_header = (struct acpi_table_header *) __va(phys_addr);
  490. if (fadt_header->revision != 3)
  491. return -ENODEV; /* Only deal with ACPI 2.0 FADT */
  492. fadt = (struct fadt_descriptor_rev2 *) fadt_header;
  493. if (!(fadt->iapc_boot_arch & BAF_8042_KEYBOARD_CONTROLLER))
  494. acpi_kbd_controller_present = 0;
  495. if (fadt->iapc_boot_arch & BAF_LEGACY_DEVICES)
  496. acpi_legacy_devices = 1;
  497. acpi_register_gsi(fadt->sci_int, ACPI_LEVEL_SENSITIVE, ACPI_ACTIVE_LOW);
  498. return 0;
  499. }
  500. unsigned long __init
  501. acpi_find_rsdp (void)
  502. {
  503. unsigned long rsdp_phys = 0;
  504. if (efi.acpi20)
  505. rsdp_phys = __pa(efi.acpi20);
  506. else if (efi.acpi)
  507. printk(KERN_WARNING PREFIX "v1.0/r0.71 tables no longer supported\n");
  508. return rsdp_phys;
  509. }
  510. int __init
  511. acpi_boot_init (void)
  512. {
  513. /*
  514. * MADT
  515. * ----
  516. * Parse the Multiple APIC Description Table (MADT), if exists.
  517. * Note that this table provides platform SMP configuration
  518. * information -- the successor to MPS tables.
  519. */
  520. if (acpi_table_parse(ACPI_APIC, acpi_parse_madt) < 1) {
  521. printk(KERN_ERR PREFIX "Can't find MADT\n");
  522. goto skip_madt;
  523. }
  524. /* Local APIC */
  525. if (acpi_table_parse_madt(ACPI_MADT_LAPIC_ADDR_OVR, acpi_parse_lapic_addr_ovr, 0) < 0)
  526. printk(KERN_ERR PREFIX "Error parsing LAPIC address override entry\n");
  527. if (acpi_table_parse_madt(ACPI_MADT_LSAPIC, acpi_parse_lsapic, NR_CPUS) < 1)
  528. printk(KERN_ERR PREFIX "Error parsing MADT - no LAPIC entries\n");
  529. if (acpi_table_parse_madt(ACPI_MADT_LAPIC_NMI, acpi_parse_lapic_nmi, 0) < 0)
  530. printk(KERN_ERR PREFIX "Error parsing LAPIC NMI entry\n");
  531. /* I/O APIC */
  532. if (acpi_table_parse_madt(ACPI_MADT_IOSAPIC, acpi_parse_iosapic, NR_IOSAPICS) < 1)
  533. printk(KERN_ERR PREFIX "Error parsing MADT - no IOSAPIC entries\n");
  534. /* System-Level Interrupt Routing */
  535. if (acpi_table_parse_madt(ACPI_MADT_PLAT_INT_SRC, acpi_parse_plat_int_src, ACPI_MAX_PLATFORM_INTERRUPTS) < 0)
  536. printk(KERN_ERR PREFIX "Error parsing platform interrupt source entry\n");
  537. if (acpi_table_parse_madt(ACPI_MADT_INT_SRC_OVR, acpi_parse_int_src_ovr, 0) < 0)
  538. printk(KERN_ERR PREFIX "Error parsing interrupt source overrides entry\n");
  539. if (acpi_table_parse_madt(ACPI_MADT_NMI_SRC, acpi_parse_nmi_src, 0) < 0)
  540. printk(KERN_ERR PREFIX "Error parsing NMI SRC entry\n");
  541. skip_madt:
  542. /*
  543. * FADT says whether a legacy keyboard controller is present.
  544. * The FADT also contains an SCI_INT line, by which the system
  545. * gets interrupts such as power and sleep buttons. If it's not
  546. * on a Legacy interrupt, it needs to be setup.
  547. */
  548. if (acpi_table_parse(ACPI_FADT, acpi_parse_fadt) < 1)
  549. printk(KERN_ERR PREFIX "Can't find FADT\n");
  550. #ifdef CONFIG_SMP
  551. if (available_cpus == 0) {
  552. printk(KERN_INFO "ACPI: Found 0 CPUS; assuming 1\n");
  553. printk(KERN_INFO "CPU 0 (0x%04x)", hard_smp_processor_id());
  554. smp_boot_data.cpu_phys_id[available_cpus] = hard_smp_processor_id();
  555. available_cpus = 1; /* We've got at least one of these, no? */
  556. }
  557. smp_boot_data.cpu_count = available_cpus;
  558. smp_build_cpu_map();
  559. # ifdef CONFIG_ACPI_NUMA
  560. if (srat_num_cpus == 0) {
  561. int cpu, i = 1;
  562. for (cpu = 0; cpu < smp_boot_data.cpu_count; cpu++)
  563. if (smp_boot_data.cpu_phys_id[cpu] != hard_smp_processor_id())
  564. node_cpuid[i++].phys_id = smp_boot_data.cpu_phys_id[cpu];
  565. }
  566. build_cpu_to_node_map();
  567. # endif
  568. #endif
  569. /* Make boot-up look pretty */
  570. printk(KERN_INFO "%d CPUs available, %d CPUs total\n", available_cpus, total_cpus);
  571. return 0;
  572. }
  573. int
  574. acpi_gsi_to_irq (u32 gsi, unsigned int *irq)
  575. {
  576. int vector;
  577. if (has_8259 && gsi < 16)
  578. *irq = isa_irq_to_vector(gsi);
  579. else {
  580. vector = gsi_to_vector(gsi);
  581. if (vector == -1)
  582. return -1;
  583. *irq = vector;
  584. }
  585. return 0;
  586. }
  587. /*
  588. * ACPI based hotplug CPU support
  589. */
  590. #ifdef CONFIG_ACPI_HOTPLUG_CPU
  591. static
  592. int
  593. acpi_map_cpu2node(acpi_handle handle, int cpu, long physid)
  594. {
  595. #ifdef CONFIG_ACPI_NUMA
  596. int pxm_id;
  597. pxm_id = acpi_get_pxm(handle);
  598. /*
  599. * Assuming that the container driver would have set the proximity
  600. * domain and would have initialized pxm_to_nid_map[pxm_id] && pxm_flag
  601. */
  602. node_cpuid[cpu].nid = (pxm_id < 0) ? 0:
  603. pxm_to_nid_map[pxm_id];
  604. node_cpuid[cpu].phys_id = physid;
  605. #endif
  606. return(0);
  607. }
  608. int
  609. acpi_map_lsapic(acpi_handle handle, int *pcpu)
  610. {
  611. struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
  612. union acpi_object *obj;
  613. struct acpi_table_lsapic *lsapic;
  614. cpumask_t tmp_map;
  615. long physid;
  616. int cpu;
  617. if (ACPI_FAILURE(acpi_evaluate_object(handle, "_MAT", NULL, &buffer)))
  618. return -EINVAL;
  619. if (!buffer.length || !buffer.pointer)
  620. return -EINVAL;
  621. obj = buffer.pointer;
  622. if (obj->type != ACPI_TYPE_BUFFER ||
  623. obj->buffer.length < sizeof(*lsapic)) {
  624. acpi_os_free(buffer.pointer);
  625. return -EINVAL;
  626. }
  627. lsapic = (struct acpi_table_lsapic *)obj->buffer.pointer;
  628. if ((lsapic->header.type != ACPI_MADT_LSAPIC) ||
  629. (!lsapic->flags.enabled)) {
  630. acpi_os_free(buffer.pointer);
  631. return -EINVAL;
  632. }
  633. physid = ((lsapic->id <<8) | (lsapic->eid));
  634. acpi_os_free(buffer.pointer);
  635. buffer.length = ACPI_ALLOCATE_BUFFER;
  636. buffer.pointer = NULL;
  637. cpus_complement(tmp_map, cpu_present_map);
  638. cpu = first_cpu(tmp_map);
  639. if(cpu >= NR_CPUS)
  640. return -EINVAL;
  641. acpi_map_cpu2node(handle, cpu, physid);
  642. cpu_set(cpu, cpu_present_map);
  643. ia64_cpu_to_sapicid[cpu] = physid;
  644. ia64_acpiid_to_sapicid[lsapic->acpi_id] = ia64_cpu_to_sapicid[cpu];
  645. *pcpu = cpu;
  646. return(0);
  647. }
  648. EXPORT_SYMBOL(acpi_map_lsapic);
  649. int
  650. acpi_unmap_lsapic(int cpu)
  651. {
  652. int i;
  653. for (i=0; i<MAX_SAPICS; i++) {
  654. if (ia64_acpiid_to_sapicid[i] == ia64_cpu_to_sapicid[cpu]) {
  655. ia64_acpiid_to_sapicid[i] = -1;
  656. break;
  657. }
  658. }
  659. ia64_cpu_to_sapicid[cpu] = -1;
  660. cpu_clear(cpu,cpu_present_map);
  661. #ifdef CONFIG_ACPI_NUMA
  662. /* NUMA specific cleanup's */
  663. #endif
  664. return(0);
  665. }
  666. EXPORT_SYMBOL(acpi_unmap_lsapic);
  667. #endif /* CONFIG_ACPI_HOTPLUG_CPU */
  668. #ifdef CONFIG_ACPI_NUMA
  669. acpi_status __init
  670. acpi_map_iosapic (acpi_handle handle, u32 depth, void *context, void **ret)
  671. {
  672. struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
  673. union acpi_object *obj;
  674. struct acpi_table_iosapic *iosapic;
  675. unsigned int gsi_base;
  676. int pxm, node;
  677. /* Only care about objects w/ a method that returns the MADT */
  678. if (ACPI_FAILURE(acpi_evaluate_object(handle, "_MAT", NULL, &buffer)))
  679. return AE_OK;
  680. if (!buffer.length || !buffer.pointer)
  681. return AE_OK;
  682. obj = buffer.pointer;
  683. if (obj->type != ACPI_TYPE_BUFFER ||
  684. obj->buffer.length < sizeof(*iosapic)) {
  685. acpi_os_free(buffer.pointer);
  686. return AE_OK;
  687. }
  688. iosapic = (struct acpi_table_iosapic *)obj->buffer.pointer;
  689. if (iosapic->header.type != ACPI_MADT_IOSAPIC) {
  690. acpi_os_free(buffer.pointer);
  691. return AE_OK;
  692. }
  693. gsi_base = iosapic->global_irq_base;
  694. acpi_os_free(buffer.pointer);
  695. /*
  696. * OK, it's an IOSAPIC MADT entry, look for a _PXM value to tell
  697. * us which node to associate this with.
  698. */
  699. pxm = acpi_get_pxm(handle);
  700. if (pxm < 0)
  701. return AE_OK;
  702. node = pxm_to_nid_map[pxm];
  703. if (node >= MAX_NUMNODES || !node_online(node) ||
  704. cpus_empty(node_to_cpumask(node)))
  705. return AE_OK;
  706. /* We know a gsi to node mapping! */
  707. map_iosapic_to_node(gsi_base, node);
  708. return AE_OK;
  709. }
  710. #endif /* CONFIG_NUMA */
  711. #endif /* CONFIG_ACPI_BOOT */