ACPI: silence ia64 build warning
[pandora-kernel.git] / arch / ia64 / kernel / acpi.c
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
35 #include <linux/config.h>
36 #include <linux/module.h>
37 #include <linux/init.h>
38 #include <linux/kernel.h>
39 #include <linux/sched.h>
40 #include <linux/smp.h>
41 #include <linux/string.h>
42 #include <linux/types.h>
43 #include <linux/irq.h>
44 #include <linux/acpi.h>
45 #include <linux/efi.h>
46 #include <linux/mmzone.h>
47 #include <linux/nodemask.h>
48 #include <asm/io.h>
49 #include <asm/iosapic.h>
50 #include <asm/machvec.h>
51 #include <asm/page.h>
52 #include <asm/system.h>
53 #include <asm/numa.h>
54 #include <asm/sal.h>
55 #include <asm/cyclone.h>
56
57 #define BAD_MADT_ENTRY(entry, end) (                                        \
58                 (!entry) || (unsigned long)entry + sizeof(*entry) > end ||  \
59                 ((acpi_table_entry_header *)entry)->length != sizeof(*entry))
60
61 #define PREFIX                  "ACPI: "
62
63 void (*pm_idle) (void);
64 EXPORT_SYMBOL(pm_idle);
65 void (*pm_power_off) (void);
66 EXPORT_SYMBOL(pm_power_off);
67
68 unsigned char acpi_kbd_controller_present = 1;
69 unsigned char acpi_legacy_devices;
70
71 unsigned int acpi_cpei_override;
72 unsigned int acpi_cpei_phys_cpuid;
73
74 #define MAX_SAPICS 256
75 u16 ia64_acpiid_to_sapicid[MAX_SAPICS] = {[0 ... MAX_SAPICS - 1] = -1 };
76
77 EXPORT_SYMBOL(ia64_acpiid_to_sapicid);
78
79 const char *acpi_get_sysname(void)
80 {
81 #ifdef CONFIG_IA64_GENERIC
82         unsigned long rsdp_phys;
83         struct acpi20_table_rsdp *rsdp;
84         struct acpi_table_xsdt *xsdt;
85         struct acpi_table_header *hdr;
86
87         rsdp_phys = acpi_find_rsdp();
88         if (!rsdp_phys) {
89                 printk(KERN_ERR
90                        "ACPI 2.0 RSDP not found, default to \"dig\"\n");
91                 return "dig";
92         }
93
94         rsdp = (struct acpi20_table_rsdp *)__va(rsdp_phys);
95         if (strncmp(rsdp->signature, RSDP_SIG, sizeof(RSDP_SIG) - 1)) {
96                 printk(KERN_ERR
97                        "ACPI 2.0 RSDP signature incorrect, default to \"dig\"\n");
98                 return "dig";
99         }
100
101         xsdt = (struct acpi_table_xsdt *)__va(rsdp->xsdt_address);
102         hdr = &xsdt->header;
103         if (strncmp(hdr->signature, XSDT_SIG, sizeof(XSDT_SIG) - 1)) {
104                 printk(KERN_ERR
105                        "ACPI 2.0 XSDT signature incorrect, default to \"dig\"\n");
106                 return "dig";
107         }
108
109         if (!strcmp(hdr->oem_id, "HP")) {
110                 return "hpzx1";
111         } else if (!strcmp(hdr->oem_id, "SGI")) {
112                 return "sn2";
113         }
114
115         return "dig";
116 #else
117 # if defined (CONFIG_IA64_HP_SIM)
118         return "hpsim";
119 # elif defined (CONFIG_IA64_HP_ZX1)
120         return "hpzx1";
121 # elif defined (CONFIG_IA64_HP_ZX1_SWIOTLB)
122         return "hpzx1_swiotlb";
123 # elif defined (CONFIG_IA64_SGI_SN2)
124         return "sn2";
125 # elif defined (CONFIG_IA64_DIG)
126         return "dig";
127 # else
128 #       error Unknown platform.  Fix acpi.c.
129 # endif
130 #endif
131 }
132
133 #ifdef CONFIG_ACPI
134
135 #define ACPI_MAX_PLATFORM_INTERRUPTS    256
136
137 /* Array to record platform interrupt vectors for generic interrupt routing. */
138 int platform_intr_list[ACPI_MAX_PLATFORM_INTERRUPTS] = {
139         [0 ... ACPI_MAX_PLATFORM_INTERRUPTS - 1] = -1
140 };
141
142 enum acpi_irq_model_id acpi_irq_model = ACPI_IRQ_MODEL_IOSAPIC;
143
144 /*
145  * Interrupt routing API for device drivers.  Provides interrupt vector for
146  * a generic platform event.  Currently only CPEI is implemented.
147  */
148 int acpi_request_vector(u32 int_type)
149 {
150         int vector = -1;
151
152         if (int_type < ACPI_MAX_PLATFORM_INTERRUPTS) {
153                 /* corrected platform error interrupt */
154                 vector = platform_intr_list[int_type];
155         } else
156                 printk(KERN_ERR
157                        "acpi_request_vector(): invalid interrupt type\n");
158         return vector;
159 }
160
161 char *__acpi_map_table(unsigned long phys_addr, unsigned long size)
162 {
163         return __va(phys_addr);
164 }
165
166 /* --------------------------------------------------------------------------
167                             Boot-time Table Parsing
168    -------------------------------------------------------------------------- */
169
170 static int total_cpus __initdata;
171 static int available_cpus __initdata;
172 struct acpi_table_madt *acpi_madt __initdata;
173 static u8 has_8259;
174
175 static int __init
176 acpi_parse_lapic_addr_ovr(acpi_table_entry_header * header,
177                           const unsigned long end)
178 {
179         struct acpi_table_lapic_addr_ovr *lapic;
180
181         lapic = (struct acpi_table_lapic_addr_ovr *)header;
182
183         if (BAD_MADT_ENTRY(lapic, end))
184                 return -EINVAL;
185
186         if (lapic->address) {
187                 iounmap(ipi_base_addr);
188                 ipi_base_addr = ioremap(lapic->address, 0);
189         }
190         return 0;
191 }
192
193 static int __init
194 acpi_parse_lsapic(acpi_table_entry_header * header, const unsigned long end)
195 {
196         struct acpi_table_lsapic *lsapic;
197
198         lsapic = (struct acpi_table_lsapic *)header;
199
200         if (BAD_MADT_ENTRY(lsapic, end))
201                 return -EINVAL;
202
203         if (lsapic->flags.enabled) {
204 #ifdef CONFIG_SMP
205                 smp_boot_data.cpu_phys_id[available_cpus] =
206                     (lsapic->id << 8) | lsapic->eid;
207 #endif
208                 ia64_acpiid_to_sapicid[lsapic->acpi_id] =
209                     (lsapic->id << 8) | lsapic->eid;
210                 ++available_cpus;
211         }
212
213         total_cpus++;
214         return 0;
215 }
216
217 static int __init
218 acpi_parse_lapic_nmi(acpi_table_entry_header * header, const unsigned long end)
219 {
220         struct acpi_table_lapic_nmi *lacpi_nmi;
221
222         lacpi_nmi = (struct acpi_table_lapic_nmi *)header;
223
224         if (BAD_MADT_ENTRY(lacpi_nmi, end))
225                 return -EINVAL;
226
227         /* TBD: Support lapic_nmi entries */
228         return 0;
229 }
230
231 static int __init
232 acpi_parse_iosapic(acpi_table_entry_header * header, const unsigned long end)
233 {
234         struct acpi_table_iosapic *iosapic;
235
236         iosapic = (struct acpi_table_iosapic *)header;
237
238         if (BAD_MADT_ENTRY(iosapic, end))
239                 return -EINVAL;
240
241         return iosapic_init(iosapic->address, iosapic->global_irq_base);
242 }
243
244 static unsigned int __initdata acpi_madt_rev;
245
246 static int __init
247 acpi_parse_plat_int_src(acpi_table_entry_header * header,
248                         const unsigned long end)
249 {
250         struct acpi_table_plat_int_src *plintsrc;
251         int vector;
252
253         plintsrc = (struct acpi_table_plat_int_src *)header;
254
255         if (BAD_MADT_ENTRY(plintsrc, end))
256                 return -EINVAL;
257
258         /*
259          * Get vector assignment for this interrupt, set attributes,
260          * and program the IOSAPIC routing table.
261          */
262         vector = iosapic_register_platform_intr(plintsrc->type,
263                                                 plintsrc->global_irq,
264                                                 plintsrc->iosapic_vector,
265                                                 plintsrc->eid,
266                                                 plintsrc->id,
267                                                 (plintsrc->flags.polarity ==
268                                                  1) ? IOSAPIC_POL_HIGH :
269                                                 IOSAPIC_POL_LOW,
270                                                 (plintsrc->flags.trigger ==
271                                                  1) ? IOSAPIC_EDGE :
272                                                 IOSAPIC_LEVEL);
273
274         platform_intr_list[plintsrc->type] = vector;
275         if (acpi_madt_rev > 1) {
276                 acpi_cpei_override = plintsrc->plint_flags.cpei_override_flag;
277         }
278
279         /*
280          * Save the physical id, so we can check when its being removed
281          */
282         acpi_cpei_phys_cpuid = ((plintsrc->id << 8) | (plintsrc->eid)) & 0xffff;
283
284         return 0;
285 }
286
287 #ifdef CONFIG_HOTPLUG_CPU
288 unsigned int can_cpei_retarget(void)
289 {
290         extern int cpe_vector;
291         extern unsigned int force_cpei_retarget;
292
293         /*
294          * Only if CPEI is supported and the override flag
295          * is present, otherwise return that its re-targettable
296          * if we are in polling mode.
297          */
298         if (cpe_vector > 0) {
299                 if (acpi_cpei_override || force_cpei_retarget)
300                         return 1;
301                 else
302                         return 0;
303         }
304         return 1;
305 }
306
307 unsigned int is_cpu_cpei_target(unsigned int cpu)
308 {
309         unsigned int logical_id;
310
311         logical_id = cpu_logical_id(acpi_cpei_phys_cpuid);
312
313         if (logical_id == cpu)
314                 return 1;
315         else
316                 return 0;
317 }
318
319 void set_cpei_target_cpu(unsigned int cpu)
320 {
321         acpi_cpei_phys_cpuid = cpu_physical_id(cpu);
322 }
323 #endif
324
325 unsigned int get_cpei_target_cpu(void)
326 {
327         return acpi_cpei_phys_cpuid;
328 }
329
330 static int __init
331 acpi_parse_int_src_ovr(acpi_table_entry_header * header,
332                        const unsigned long end)
333 {
334         struct acpi_table_int_src_ovr *p;
335
336         p = (struct acpi_table_int_src_ovr *)header;
337
338         if (BAD_MADT_ENTRY(p, end))
339                 return -EINVAL;
340
341         iosapic_override_isa_irq(p->bus_irq, p->global_irq,
342                                  (p->flags.polarity ==
343                                   1) ? IOSAPIC_POL_HIGH : IOSAPIC_POL_LOW,
344                                  (p->flags.trigger ==
345                                   1) ? IOSAPIC_EDGE : IOSAPIC_LEVEL);
346         return 0;
347 }
348
349 static int __init
350 acpi_parse_nmi_src(acpi_table_entry_header * header, const unsigned long end)
351 {
352         struct acpi_table_nmi_src *nmi_src;
353
354         nmi_src = (struct acpi_table_nmi_src *)header;
355
356         if (BAD_MADT_ENTRY(nmi_src, end))
357                 return -EINVAL;
358
359         /* TBD: Support nimsrc entries */
360         return 0;
361 }
362
363 static void __init acpi_madt_oem_check(char *oem_id, char *oem_table_id)
364 {
365         if (!strncmp(oem_id, "IBM", 3) && (!strncmp(oem_table_id, "SERMOW", 6))) {
366
367                 /*
368                  * Unfortunately ITC_DRIFT is not yet part of the
369                  * official SAL spec, so the ITC_DRIFT bit is not
370                  * set by the BIOS on this hardware.
371                  */
372                 sal_platform_features |= IA64_SAL_PLATFORM_FEATURE_ITC_DRIFT;
373
374                 cyclone_setup();
375         }
376 }
377
378 static int __init acpi_parse_madt(unsigned long phys_addr, unsigned long size)
379 {
380         if (!phys_addr || !size)
381                 return -EINVAL;
382
383         acpi_madt = (struct acpi_table_madt *)__va(phys_addr);
384
385         acpi_madt_rev = acpi_madt->header.revision;
386
387         /* remember the value for reference after free_initmem() */
388 #ifdef CONFIG_ITANIUM
389         has_8259 = 1;           /* Firmware on old Itanium systems is broken */
390 #else
391         has_8259 = acpi_madt->flags.pcat_compat;
392 #endif
393         iosapic_system_init(has_8259);
394
395         /* Get base address of IPI Message Block */
396
397         if (acpi_madt->lapic_address)
398                 ipi_base_addr = ioremap(acpi_madt->lapic_address, 0);
399
400         printk(KERN_INFO PREFIX "Local APIC address %p\n", ipi_base_addr);
401
402         acpi_madt_oem_check(acpi_madt->header.oem_id,
403                             acpi_madt->header.oem_table_id);
404
405         return 0;
406 }
407
408 #ifdef CONFIG_ACPI_NUMA
409
410 #undef SLIT_DEBUG
411
412 #define PXM_FLAG_LEN ((MAX_PXM_DOMAINS + 1)/32)
413
414 static int __initdata srat_num_cpus;    /* number of cpus */
415 static u32 __devinitdata pxm_flag[PXM_FLAG_LEN];
416 #define pxm_bit_set(bit)        (set_bit(bit,(void *)pxm_flag))
417 #define pxm_bit_test(bit)       (test_bit(bit,(void *)pxm_flag))
418 /* maps to convert between proximity domain and logical node ID */
419 int __devinitdata pxm_to_nid_map[MAX_PXM_DOMAINS];
420 int __initdata nid_to_pxm_map[MAX_NUMNODES];
421 static struct acpi_table_slit __initdata *slit_table;
422
423 static int get_processor_proximity_domain(struct acpi_table_processor_affinity *pa)
424 {
425         int pxm;
426
427         pxm = pa->proximity_domain;
428         if (ia64_platform_is("sn2"))
429                 pxm += pa->reserved[0] << 8;
430         return pxm;
431 }
432
433 static int get_memory_proximity_domain(struct acpi_table_memory_affinity *ma)
434 {
435         int pxm;
436
437         pxm = ma->proximity_domain;
438         if (ia64_platform_is("sn2"))
439                 pxm += ma->reserved1[0] << 8;
440         return pxm;
441 }
442
443 /*
444  * ACPI 2.0 SLIT (System Locality Information Table)
445  * http://devresource.hp.com/devresource/Docs/TechPapers/IA64/slit.pdf
446  */
447 void __init acpi_numa_slit_init(struct acpi_table_slit *slit)
448 {
449         u32 len;
450
451         len = sizeof(struct acpi_table_header) + 8
452             + slit->localities * slit->localities;
453         if (slit->header.length != len) {
454                 printk(KERN_ERR
455                        "ACPI 2.0 SLIT: size mismatch: %d expected, %d actual\n",
456                        len, slit->header.length);
457                 memset(numa_slit, 10, sizeof(numa_slit));
458                 return;
459         }
460         slit_table = slit;
461 }
462
463 void __init
464 acpi_numa_processor_affinity_init(struct acpi_table_processor_affinity *pa)
465 {
466         int pxm;
467
468         if (!pa->flags.enabled)
469                 return;
470
471         pxm = get_processor_proximity_domain(pa);
472
473         /* record this node in proximity bitmap */
474         pxm_bit_set(pxm);
475
476         node_cpuid[srat_num_cpus].phys_id =
477             (pa->apic_id << 8) | (pa->lsapic_eid);
478         /* nid should be overridden as logical node id later */
479         node_cpuid[srat_num_cpus].nid = pxm;
480         srat_num_cpus++;
481 }
482
483 void __init
484 acpi_numa_memory_affinity_init(struct acpi_table_memory_affinity *ma)
485 {
486         unsigned long paddr, size;
487         int pxm;
488         struct node_memblk_s *p, *q, *pend;
489
490         pxm = get_memory_proximity_domain(ma);
491
492         /* fill node memory chunk structure */
493         paddr = ma->base_addr_hi;
494         paddr = (paddr << 32) | ma->base_addr_lo;
495         size = ma->length_hi;
496         size = (size << 32) | ma->length_lo;
497
498         /* Ignore disabled entries */
499         if (!ma->flags.enabled)
500                 return;
501
502         /* record this node in proximity bitmap */
503         pxm_bit_set(pxm);
504
505         /* Insertion sort based on base address */
506         pend = &node_memblk[num_node_memblks];
507         for (p = &node_memblk[0]; p < pend; p++) {
508                 if (paddr < p->start_paddr)
509                         break;
510         }
511         if (p < pend) {
512                 for (q = pend - 1; q >= p; q--)
513                         *(q + 1) = *q;
514         }
515         p->start_paddr = paddr;
516         p->size = size;
517         p->nid = pxm;
518         num_node_memblks++;
519 }
520
521 void __init acpi_numa_arch_fixup(void)
522 {
523         int i, j, node_from, node_to;
524
525         /* If there's no SRAT, fix the phys_id and mark node 0 online */
526         if (srat_num_cpus == 0) {
527                 node_set_online(0);
528                 node_cpuid[0].phys_id = hard_smp_processor_id();
529                 return;
530         }
531
532         /*
533          * MCD - This can probably be dropped now.  No need for pxm ID to node ID
534          * mapping with sparse node numbering iff MAX_PXM_DOMAINS <= MAX_NUMNODES.
535          */
536         /* calculate total number of nodes in system from PXM bitmap */
537         memset(pxm_to_nid_map, -1, sizeof(pxm_to_nid_map));
538         memset(nid_to_pxm_map, -1, sizeof(nid_to_pxm_map));
539         nodes_clear(node_online_map);
540         for (i = 0; i < MAX_PXM_DOMAINS; i++) {
541                 if (pxm_bit_test(i)) {
542                         int nid = num_online_nodes();
543                         pxm_to_nid_map[i] = nid;
544                         nid_to_pxm_map[nid] = i;
545                         node_set_online(nid);
546                 }
547         }
548
549         /* set logical node id in memory chunk structure */
550         for (i = 0; i < num_node_memblks; i++)
551                 node_memblk[i].nid = pxm_to_nid_map[node_memblk[i].nid];
552
553         /* assign memory bank numbers for each chunk on each node */
554         for_each_online_node(i) {
555                 int bank;
556
557                 bank = 0;
558                 for (j = 0; j < num_node_memblks; j++)
559                         if (node_memblk[j].nid == i)
560                                 node_memblk[j].bank = bank++;
561         }
562
563         /* set logical node id in cpu structure */
564         for (i = 0; i < srat_num_cpus; i++)
565                 node_cpuid[i].nid = pxm_to_nid_map[node_cpuid[i].nid];
566
567         printk(KERN_INFO "Number of logical nodes in system = %d\n",
568                num_online_nodes());
569         printk(KERN_INFO "Number of memory chunks in system = %d\n",
570                num_node_memblks);
571
572         if (!slit_table)
573                 return;
574         memset(numa_slit, -1, sizeof(numa_slit));
575         for (i = 0; i < slit_table->localities; i++) {
576                 if (!pxm_bit_test(i))
577                         continue;
578                 node_from = pxm_to_nid_map[i];
579                 for (j = 0; j < slit_table->localities; j++) {
580                         if (!pxm_bit_test(j))
581                                 continue;
582                         node_to = pxm_to_nid_map[j];
583                         node_distance(node_from, node_to) =
584                             slit_table->entry[i * slit_table->localities + j];
585                 }
586         }
587
588 #ifdef SLIT_DEBUG
589         printk("ACPI 2.0 SLIT locality table:\n");
590         for_each_online_node(i) {
591                 for_each_online_node(j)
592                     printk("%03d ", node_distance(i, j));
593                 printk("\n");
594         }
595 #endif
596 }
597 #endif                          /* CONFIG_ACPI_NUMA */
598
599 /*
600  * success: return IRQ number (>=0)
601  * failure: return < 0
602  */
603 int acpi_register_gsi(u32 gsi, int triggering, int polarity)
604 {
605         if (has_8259 && gsi < 16)
606                 return isa_irq_to_vector(gsi);
607
608         return iosapic_register_intr(gsi,
609                                      (polarity ==
610                                       ACPI_ACTIVE_HIGH) ? IOSAPIC_POL_HIGH :
611                                      IOSAPIC_POL_LOW,
612                                      (triggering ==
613                                       ACPI_EDGE_SENSITIVE) ? IOSAPIC_EDGE :
614                                      IOSAPIC_LEVEL);
615 }
616
617 EXPORT_SYMBOL(acpi_register_gsi);
618
619 void acpi_unregister_gsi(u32 gsi)
620 {
621         iosapic_unregister_intr(gsi);
622 }
623
624 EXPORT_SYMBOL(acpi_unregister_gsi);
625
626 static int __init acpi_parse_fadt(unsigned long phys_addr, unsigned long size)
627 {
628         struct acpi_table_header *fadt_header;
629         struct fadt_descriptor_rev2 *fadt;
630
631         if (!phys_addr || !size)
632                 return -EINVAL;
633
634         fadt_header = (struct acpi_table_header *)__va(phys_addr);
635         if (fadt_header->revision != 3)
636                 return -ENODEV; /* Only deal with ACPI 2.0 FADT */
637
638         fadt = (struct fadt_descriptor_rev2 *)fadt_header;
639
640         if (!(fadt->iapc_boot_arch & BAF_8042_KEYBOARD_CONTROLLER))
641                 acpi_kbd_controller_present = 0;
642
643         if (fadt->iapc_boot_arch & BAF_LEGACY_DEVICES)
644                 acpi_legacy_devices = 1;
645
646         acpi_register_gsi(fadt->sci_int, ACPI_LEVEL_SENSITIVE, ACPI_ACTIVE_LOW);
647         return 0;
648 }
649
650 unsigned long __init acpi_find_rsdp(void)
651 {
652         unsigned long rsdp_phys = 0;
653
654         if (efi.acpi20 != EFI_INVALID_TABLE_ADDR)
655                 rsdp_phys = efi.acpi20;
656         else if (efi.acpi != EFI_INVALID_TABLE_ADDR)
657                 printk(KERN_WARNING PREFIX
658                        "v1.0/r0.71 tables no longer supported\n");
659         return rsdp_phys;
660 }
661
662 int __init acpi_boot_init(void)
663 {
664
665         /*
666          * MADT
667          * ----
668          * Parse the Multiple APIC Description Table (MADT), if exists.
669          * Note that this table provides platform SMP configuration
670          * information -- the successor to MPS tables.
671          */
672
673         if (acpi_table_parse(ACPI_APIC, acpi_parse_madt) < 1) {
674                 printk(KERN_ERR PREFIX "Can't find MADT\n");
675                 goto skip_madt;
676         }
677
678         /* Local APIC */
679
680         if (acpi_table_parse_madt
681             (ACPI_MADT_LAPIC_ADDR_OVR, acpi_parse_lapic_addr_ovr, 0) < 0)
682                 printk(KERN_ERR PREFIX
683                        "Error parsing LAPIC address override entry\n");
684
685         if (acpi_table_parse_madt(ACPI_MADT_LSAPIC, acpi_parse_lsapic, NR_CPUS)
686             < 1)
687                 printk(KERN_ERR PREFIX
688                        "Error parsing MADT - no LAPIC entries\n");
689
690         if (acpi_table_parse_madt(ACPI_MADT_LAPIC_NMI, acpi_parse_lapic_nmi, 0)
691             < 0)
692                 printk(KERN_ERR PREFIX "Error parsing LAPIC NMI entry\n");
693
694         /* I/O APIC */
695
696         if (acpi_table_parse_madt
697             (ACPI_MADT_IOSAPIC, acpi_parse_iosapic, NR_IOSAPICS) < 1)
698                 printk(KERN_ERR PREFIX
699                        "Error parsing MADT - no IOSAPIC entries\n");
700
701         /* System-Level Interrupt Routing */
702
703         if (acpi_table_parse_madt
704             (ACPI_MADT_PLAT_INT_SRC, acpi_parse_plat_int_src,
705              ACPI_MAX_PLATFORM_INTERRUPTS) < 0)
706                 printk(KERN_ERR PREFIX
707                        "Error parsing platform interrupt source entry\n");
708
709         if (acpi_table_parse_madt
710             (ACPI_MADT_INT_SRC_OVR, acpi_parse_int_src_ovr, 0) < 0)
711                 printk(KERN_ERR PREFIX
712                        "Error parsing interrupt source overrides entry\n");
713
714         if (acpi_table_parse_madt(ACPI_MADT_NMI_SRC, acpi_parse_nmi_src, 0) < 0)
715                 printk(KERN_ERR PREFIX "Error parsing NMI SRC entry\n");
716       skip_madt:
717
718         /*
719          * FADT says whether a legacy keyboard controller is present.
720          * The FADT also contains an SCI_INT line, by which the system
721          * gets interrupts such as power and sleep buttons.  If it's not
722          * on a Legacy interrupt, it needs to be setup.
723          */
724         if (acpi_table_parse(ACPI_FADT, acpi_parse_fadt) < 1)
725                 printk(KERN_ERR PREFIX "Can't find FADT\n");
726
727 #ifdef CONFIG_SMP
728         if (available_cpus == 0) {
729                 printk(KERN_INFO "ACPI: Found 0 CPUS; assuming 1\n");
730                 printk(KERN_INFO "CPU 0 (0x%04x)", hard_smp_processor_id());
731                 smp_boot_data.cpu_phys_id[available_cpus] =
732                     hard_smp_processor_id();
733                 available_cpus = 1;     /* We've got at least one of these, no? */
734         }
735         smp_boot_data.cpu_count = available_cpus;
736
737         smp_build_cpu_map();
738 # ifdef CONFIG_ACPI_NUMA
739         if (srat_num_cpus == 0) {
740                 int cpu, i = 1;
741                 for (cpu = 0; cpu < smp_boot_data.cpu_count; cpu++)
742                         if (smp_boot_data.cpu_phys_id[cpu] !=
743                             hard_smp_processor_id())
744                                 node_cpuid[i++].phys_id =
745                                     smp_boot_data.cpu_phys_id[cpu];
746         }
747 # endif
748 #endif
749 #ifdef CONFIG_ACPI_NUMA
750         build_cpu_to_node_map();
751 #endif
752         /* Make boot-up look pretty */
753         printk(KERN_INFO "%d CPUs available, %d CPUs total\n", available_cpus,
754                total_cpus);
755         return 0;
756 }
757
758 int acpi_gsi_to_irq(u32 gsi, unsigned int *irq)
759 {
760         int vector;
761
762         if (has_8259 && gsi < 16)
763                 *irq = isa_irq_to_vector(gsi);
764         else {
765                 vector = gsi_to_vector(gsi);
766                 if (vector == -1)
767                         return -1;
768
769                 *irq = vector;
770         }
771         return 0;
772 }
773
774 /*
775  *  ACPI based hotplug CPU support
776  */
777 #ifdef CONFIG_ACPI_HOTPLUG_CPU
778 static
779 int acpi_map_cpu2node(acpi_handle handle, int cpu, long physid)
780 {
781 #ifdef CONFIG_ACPI_NUMA
782         int pxm_id;
783
784         pxm_id = acpi_get_pxm(handle);
785
786         /*
787          * Assuming that the container driver would have set the proximity
788          * domain and would have initialized pxm_to_nid_map[pxm_id] && pxm_flag
789          */
790         node_cpuid[cpu].nid = (pxm_id < 0) ? 0 : pxm_to_nid_map[pxm_id];
791
792         node_cpuid[cpu].phys_id = physid;
793 #endif
794         return (0);
795 }
796
797 int additional_cpus __initdata = -1;
798
799 static __init int setup_additional_cpus(char *s)
800 {
801         if (s)
802                 additional_cpus = simple_strtol(s, NULL, 0);
803
804         return 0;
805 }
806
807 early_param("additional_cpus", setup_additional_cpus);
808
809 /*
810  * cpu_possible_map should be static, it cannot change as cpu's
811  * are onlined, or offlined. The reason is per-cpu data-structures
812  * are allocated by some modules at init time, and dont expect to
813  * do this dynamically on cpu arrival/departure.
814  * cpu_present_map on the other hand can change dynamically.
815  * In case when cpu_hotplug is not compiled, then we resort to current
816  * behaviour, which is cpu_possible == cpu_present.
817  * - Ashok Raj
818  *
819  * Three ways to find out the number of additional hotplug CPUs:
820  * - If the BIOS specified disabled CPUs in ACPI/mptables use that.
821  * - The user can overwrite it with additional_cpus=NUM
822  * - Otherwise don't reserve additional CPUs.
823  */
824 __init void prefill_possible_map(void)
825 {
826         int i;
827         int possible, disabled_cpus;
828
829         disabled_cpus = total_cpus - available_cpus;
830
831         if (additional_cpus == -1) {
832                 if (disabled_cpus > 0)
833                         additional_cpus = disabled_cpus;
834                 else
835                         additional_cpus = 0;
836         }
837
838         possible = available_cpus + additional_cpus;
839
840         if (possible > NR_CPUS)
841                 possible = NR_CPUS;
842
843         printk(KERN_INFO "SMP: Allowing %d CPUs, %d hotplug CPUs\n",
844                 possible, max((possible - available_cpus), 0));
845
846         for (i = 0; i < possible; i++)
847                 cpu_set(i, cpu_possible_map);
848 }
849
850 int acpi_map_lsapic(acpi_handle handle, int *pcpu)
851 {
852         struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
853         union acpi_object *obj;
854         struct acpi_table_lsapic *lsapic;
855         cpumask_t tmp_map;
856         long physid;
857         int cpu;
858
859         if (ACPI_FAILURE(acpi_evaluate_object(handle, "_MAT", NULL, &buffer)))
860                 return -EINVAL;
861
862         if (!buffer.length || !buffer.pointer)
863                 return -EINVAL;
864
865         obj = buffer.pointer;
866         if (obj->type != ACPI_TYPE_BUFFER ||
867             obj->buffer.length < sizeof(*lsapic)) {
868                 acpi_os_free(buffer.pointer);
869                 return -EINVAL;
870         }
871
872         lsapic = (struct acpi_table_lsapic *)obj->buffer.pointer;
873
874         if ((lsapic->header.type != ACPI_MADT_LSAPIC) ||
875             (!lsapic->flags.enabled)) {
876                 acpi_os_free(buffer.pointer);
877                 return -EINVAL;
878         }
879
880         physid = ((lsapic->id << 8) | (lsapic->eid));
881
882         acpi_os_free(buffer.pointer);
883         buffer.length = ACPI_ALLOCATE_BUFFER;
884         buffer.pointer = NULL;
885
886         cpus_complement(tmp_map, cpu_present_map);
887         cpu = first_cpu(tmp_map);
888         if (cpu >= NR_CPUS)
889                 return -EINVAL;
890
891         acpi_map_cpu2node(handle, cpu, physid);
892
893         cpu_set(cpu, cpu_present_map);
894         ia64_cpu_to_sapicid[cpu] = physid;
895         ia64_acpiid_to_sapicid[lsapic->acpi_id] = ia64_cpu_to_sapicid[cpu];
896
897         *pcpu = cpu;
898         return (0);
899 }
900
901 EXPORT_SYMBOL(acpi_map_lsapic);
902
903 int acpi_unmap_lsapic(int cpu)
904 {
905         int i;
906
907         for (i = 0; i < MAX_SAPICS; i++) {
908                 if (ia64_acpiid_to_sapicid[i] == ia64_cpu_to_sapicid[cpu]) {
909                         ia64_acpiid_to_sapicid[i] = -1;
910                         break;
911                 }
912         }
913         ia64_cpu_to_sapicid[cpu] = -1;
914         cpu_clear(cpu, cpu_present_map);
915
916 #ifdef CONFIG_ACPI_NUMA
917         /* NUMA specific cleanup's */
918 #endif
919
920         return (0);
921 }
922
923 EXPORT_SYMBOL(acpi_unmap_lsapic);
924 #endif                          /* CONFIG_ACPI_HOTPLUG_CPU */
925
926 #ifdef CONFIG_ACPI_NUMA
927 static acpi_status __devinit
928 acpi_map_iosapic(acpi_handle handle, u32 depth, void *context, void **ret)
929 {
930         struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
931         union acpi_object *obj;
932         struct acpi_table_iosapic *iosapic;
933         unsigned int gsi_base;
934         int pxm, node;
935
936         /* Only care about objects w/ a method that returns the MADT */
937         if (ACPI_FAILURE(acpi_evaluate_object(handle, "_MAT", NULL, &buffer)))
938                 return AE_OK;
939
940         if (!buffer.length || !buffer.pointer)
941                 return AE_OK;
942
943         obj = buffer.pointer;
944         if (obj->type != ACPI_TYPE_BUFFER ||
945             obj->buffer.length < sizeof(*iosapic)) {
946                 acpi_os_free(buffer.pointer);
947                 return AE_OK;
948         }
949
950         iosapic = (struct acpi_table_iosapic *)obj->buffer.pointer;
951
952         if (iosapic->header.type != ACPI_MADT_IOSAPIC) {
953                 acpi_os_free(buffer.pointer);
954                 return AE_OK;
955         }
956
957         gsi_base = iosapic->global_irq_base;
958
959         acpi_os_free(buffer.pointer);
960
961         /*
962          * OK, it's an IOSAPIC MADT entry, look for a _PXM value to tell
963          * us which node to associate this with.
964          */
965         pxm = acpi_get_pxm(handle);
966         if (pxm < 0)
967                 return AE_OK;
968
969         node = pxm_to_nid_map[pxm];
970
971         if (node >= MAX_NUMNODES || !node_online(node) ||
972             cpus_empty(node_to_cpumask(node)))
973                 return AE_OK;
974
975         /* We know a gsi to node mapping! */
976         map_iosapic_to_node(gsi_base, node);
977         return AE_OK;
978 }
979
980 static int __init
981 acpi_map_iosapics (void)
982 {
983         acpi_get_devices(NULL, acpi_map_iosapic, NULL, NULL);
984         return 0;
985 }
986
987 fs_initcall(acpi_map_iosapics);
988 #endif                          /* CONFIG_ACPI_NUMA */
989
990 int acpi_register_ioapic(acpi_handle handle, u64 phys_addr, u32 gsi_base)
991 {
992         int err;
993
994         if ((err = iosapic_init(phys_addr, gsi_base)))
995                 return err;
996
997 #ifdef CONFIG_ACPI_NUMA
998         acpi_map_iosapic(handle, 0, NULL, NULL);
999 #endif                          /* CONFIG_ACPI_NUMA */
1000
1001         return 0;
1002 }
1003
1004 EXPORT_SYMBOL(acpi_register_ioapic);
1005
1006 int acpi_unregister_ioapic(acpi_handle handle, u32 gsi_base)
1007 {
1008         return iosapic_remove(gsi_base);
1009 }
1010
1011 EXPORT_SYMBOL(acpi_unregister_ioapic);
1012
1013 #endif                          /* CONFIG_ACPI */