Merge branches 'turbostat' and 'x86_energy_perf_policy' into tools
[pandora-kernel.git] / arch / x86 / kernel / apic / x2apic_uv_x.c
1 /*
2  * This file is subject to the terms and conditions of the GNU General Public
3  * License.  See the file "COPYING" in the main directory of this archive
4  * for more details.
5  *
6  * SGI UV APIC functions (note: not an Intel compatible APIC)
7  *
8  * Copyright (C) 2007-2010 Silicon Graphics, Inc. All rights reserved.
9  */
10 #include <linux/cpumask.h>
11 #include <linux/hardirq.h>
12 #include <linux/proc_fs.h>
13 #include <linux/threads.h>
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/string.h>
17 #include <linux/ctype.h>
18 #include <linux/sched.h>
19 #include <linux/timer.h>
20 #include <linux/slab.h>
21 #include <linux/cpu.h>
22 #include <linux/init.h>
23 #include <linux/io.h>
24 #include <linux/pci.h>
25 #include <linux/kdebug.h>
26
27 #include <asm/uv/uv_mmrs.h>
28 #include <asm/uv/uv_hub.h>
29 #include <asm/current.h>
30 #include <asm/pgtable.h>
31 #include <asm/uv/bios.h>
32 #include <asm/uv/uv.h>
33 #include <asm/apic.h>
34 #include <asm/ipi.h>
35 #include <asm/smp.h>
36 #include <asm/x86_init.h>
37
38 DEFINE_PER_CPU(int, x2apic_extra_bits);
39
40 #define PR_DEVEL(fmt, args...)  pr_devel("%s: " fmt, __func__, args)
41
42 static enum uv_system_type uv_system_type;
43 static u64 gru_start_paddr, gru_end_paddr;
44 static union uvh_apicid uvh_apicid;
45 int uv_min_hub_revision_id;
46 EXPORT_SYMBOL_GPL(uv_min_hub_revision_id);
47 unsigned int uv_apicid_hibits;
48 EXPORT_SYMBOL_GPL(uv_apicid_hibits);
49 static DEFINE_SPINLOCK(uv_nmi_lock);
50
51 static inline bool is_GRU_range(u64 start, u64 end)
52 {
53         return start >= gru_start_paddr && end <= gru_end_paddr;
54 }
55
56 static bool uv_is_untracked_pat_range(u64 start, u64 end)
57 {
58         return is_ISA_range(start, end) || is_GRU_range(start, end);
59 }
60
61 static int early_get_nodeid(void)
62 {
63         union uvh_node_id_u node_id;
64         unsigned long *mmr;
65
66         mmr = early_ioremap(UV_LOCAL_MMR_BASE | UVH_NODE_ID, sizeof(*mmr));
67         node_id.v = *mmr;
68         early_iounmap(mmr, sizeof(*mmr));
69
70         /* Currently, all blades have same revision number */
71         uv_min_hub_revision_id = node_id.s.revision;
72
73         return node_id.s.node_id;
74 }
75
76 static void __init early_get_apic_pnode_shift(void)
77 {
78         unsigned long *mmr;
79
80         mmr = early_ioremap(UV_LOCAL_MMR_BASE | UVH_APICID, sizeof(*mmr));
81         uvh_apicid.v = *mmr;
82         early_iounmap(mmr, sizeof(*mmr));
83         if (!uvh_apicid.v)
84                 /*
85                  * Old bios, use default value
86                  */
87                 uvh_apicid.s.pnode_shift = UV_APIC_PNODE_SHIFT;
88 }
89
90 /*
91  * Add an extra bit as dictated by bios to the destination apicid of
92  * interrupts potentially passing through the UV HUB.  This prevents
93  * a deadlock between interrupts and IO port operations.
94  */
95 static void __init uv_set_apicid_hibit(void)
96 {
97         union uvh_lb_target_physical_apic_id_mask_u apicid_mask;
98         unsigned long *mmr;
99
100         mmr = early_ioremap(UV_LOCAL_MMR_BASE |
101                 UVH_LB_TARGET_PHYSICAL_APIC_ID_MASK, sizeof(*mmr));
102         apicid_mask.v = *mmr;
103         early_iounmap(mmr, sizeof(*mmr));
104         uv_apicid_hibits = apicid_mask.s.bit_enables & UV_APICID_HIBIT_MASK;
105 }
106
107 static int __init uv_acpi_madt_oem_check(char *oem_id, char *oem_table_id)
108 {
109         int nodeid;
110
111         if (!strcmp(oem_id, "SGI")) {
112                 nodeid = early_get_nodeid();
113                 early_get_apic_pnode_shift();
114                 x86_platform.is_untracked_pat_range =  uv_is_untracked_pat_range;
115                 x86_platform.nmi_init = uv_nmi_init;
116                 if (!strcmp(oem_table_id, "UVL"))
117                         uv_system_type = UV_LEGACY_APIC;
118                 else if (!strcmp(oem_table_id, "UVX"))
119                         uv_system_type = UV_X2APIC;
120                 else if (!strcmp(oem_table_id, "UVH")) {
121                         __get_cpu_var(x2apic_extra_bits) =
122                                 nodeid << (uvh_apicid.s.pnode_shift - 1);
123                         uv_system_type = UV_NON_UNIQUE_APIC;
124                         uv_set_apicid_hibit();
125                         return 1;
126                 }
127         }
128         return 0;
129 }
130
131 enum uv_system_type get_uv_system_type(void)
132 {
133         return uv_system_type;
134 }
135
136 int is_uv_system(void)
137 {
138         return uv_system_type != UV_NONE;
139 }
140 EXPORT_SYMBOL_GPL(is_uv_system);
141
142 DEFINE_PER_CPU(struct uv_hub_info_s, __uv_hub_info);
143 EXPORT_PER_CPU_SYMBOL_GPL(__uv_hub_info);
144
145 struct uv_blade_info *uv_blade_info;
146 EXPORT_SYMBOL_GPL(uv_blade_info);
147
148 short *uv_node_to_blade;
149 EXPORT_SYMBOL_GPL(uv_node_to_blade);
150
151 short *uv_cpu_to_blade;
152 EXPORT_SYMBOL_GPL(uv_cpu_to_blade);
153
154 short uv_possible_blades;
155 EXPORT_SYMBOL_GPL(uv_possible_blades);
156
157 unsigned long sn_rtc_cycles_per_second;
158 EXPORT_SYMBOL(sn_rtc_cycles_per_second);
159
160 static const struct cpumask *uv_target_cpus(void)
161 {
162         return cpu_online_mask;
163 }
164
165 static void uv_vector_allocation_domain(int cpu, struct cpumask *retmask)
166 {
167         cpumask_clear(retmask);
168         cpumask_set_cpu(cpu, retmask);
169 }
170
171 static int __cpuinit uv_wakeup_secondary(int phys_apicid, unsigned long start_rip)
172 {
173 #ifdef CONFIG_SMP
174         unsigned long val;
175         int pnode;
176
177         pnode = uv_apicid_to_pnode(phys_apicid);
178         phys_apicid |= uv_apicid_hibits;
179         val = (1UL << UVH_IPI_INT_SEND_SHFT) |
180             (phys_apicid << UVH_IPI_INT_APIC_ID_SHFT) |
181             ((start_rip << UVH_IPI_INT_VECTOR_SHFT) >> 12) |
182             APIC_DM_INIT;
183         uv_write_global_mmr64(pnode, UVH_IPI_INT, val);
184         mdelay(10);
185
186         val = (1UL << UVH_IPI_INT_SEND_SHFT) |
187             (phys_apicid << UVH_IPI_INT_APIC_ID_SHFT) |
188             ((start_rip << UVH_IPI_INT_VECTOR_SHFT) >> 12) |
189             APIC_DM_STARTUP;
190         uv_write_global_mmr64(pnode, UVH_IPI_INT, val);
191
192         atomic_set(&init_deasserted, 1);
193 #endif
194         return 0;
195 }
196
197 static void uv_send_IPI_one(int cpu, int vector)
198 {
199         unsigned long apicid;
200         int pnode;
201
202         apicid = per_cpu(x86_cpu_to_apicid, cpu);
203         pnode = uv_apicid_to_pnode(apicid);
204         uv_hub_send_ipi(pnode, apicid, vector);
205 }
206
207 static void uv_send_IPI_mask(const struct cpumask *mask, int vector)
208 {
209         unsigned int cpu;
210
211         for_each_cpu(cpu, mask)
212                 uv_send_IPI_one(cpu, vector);
213 }
214
215 static void uv_send_IPI_mask_allbutself(const struct cpumask *mask, int vector)
216 {
217         unsigned int this_cpu = smp_processor_id();
218         unsigned int cpu;
219
220         for_each_cpu(cpu, mask) {
221                 if (cpu != this_cpu)
222                         uv_send_IPI_one(cpu, vector);
223         }
224 }
225
226 static void uv_send_IPI_allbutself(int vector)
227 {
228         unsigned int this_cpu = smp_processor_id();
229         unsigned int cpu;
230
231         for_each_online_cpu(cpu) {
232                 if (cpu != this_cpu)
233                         uv_send_IPI_one(cpu, vector);
234         }
235 }
236
237 static void uv_send_IPI_all(int vector)
238 {
239         uv_send_IPI_mask(cpu_online_mask, vector);
240 }
241
242 static int uv_apic_id_registered(void)
243 {
244         return 1;
245 }
246
247 static void uv_init_apic_ldr(void)
248 {
249 }
250
251 static unsigned int uv_cpu_mask_to_apicid(const struct cpumask *cpumask)
252 {
253         /*
254          * We're using fixed IRQ delivery, can only return one phys APIC ID.
255          * May as well be the first.
256          */
257         int cpu = cpumask_first(cpumask);
258
259         if ((unsigned)cpu < nr_cpu_ids)
260                 return per_cpu(x86_cpu_to_apicid, cpu) | uv_apicid_hibits;
261         else
262                 return BAD_APICID;
263 }
264
265 static unsigned int
266 uv_cpu_mask_to_apicid_and(const struct cpumask *cpumask,
267                           const struct cpumask *andmask)
268 {
269         int cpu;
270
271         /*
272          * We're using fixed IRQ delivery, can only return one phys APIC ID.
273          * May as well be the first.
274          */
275         for_each_cpu_and(cpu, cpumask, andmask) {
276                 if (cpumask_test_cpu(cpu, cpu_online_mask))
277                         break;
278         }
279         return per_cpu(x86_cpu_to_apicid, cpu) | uv_apicid_hibits;
280 }
281
282 static unsigned int x2apic_get_apic_id(unsigned long x)
283 {
284         unsigned int id;
285
286         WARN_ON(preemptible() && num_online_cpus() > 1);
287         id = x | __get_cpu_var(x2apic_extra_bits);
288
289         return id;
290 }
291
292 static unsigned long set_apic_id(unsigned int id)
293 {
294         unsigned long x;
295
296         /* maskout x2apic_extra_bits ? */
297         x = id;
298         return x;
299 }
300
301 static unsigned int uv_read_apic_id(void)
302 {
303
304         return x2apic_get_apic_id(apic_read(APIC_ID));
305 }
306
307 static int uv_phys_pkg_id(int initial_apicid, int index_msb)
308 {
309         return uv_read_apic_id() >> index_msb;
310 }
311
312 static void uv_send_IPI_self(int vector)
313 {
314         apic_write(APIC_SELF_IPI, vector);
315 }
316
317 struct apic __refdata apic_x2apic_uv_x = {
318
319         .name                           = "UV large system",
320         .probe                          = NULL,
321         .acpi_madt_oem_check            = uv_acpi_madt_oem_check,
322         .apic_id_registered             = uv_apic_id_registered,
323
324         .irq_delivery_mode              = dest_Fixed,
325         .irq_dest_mode                  = 0, /* physical */
326
327         .target_cpus                    = uv_target_cpus,
328         .disable_esr                    = 0,
329         .dest_logical                   = APIC_DEST_LOGICAL,
330         .check_apicid_used              = NULL,
331         .check_apicid_present           = NULL,
332
333         .vector_allocation_domain       = uv_vector_allocation_domain,
334         .init_apic_ldr                  = uv_init_apic_ldr,
335
336         .ioapic_phys_id_map             = NULL,
337         .setup_apic_routing             = NULL,
338         .multi_timer_check              = NULL,
339         .apicid_to_node                 = NULL,
340         .cpu_to_logical_apicid          = NULL,
341         .cpu_present_to_apicid          = default_cpu_present_to_apicid,
342         .apicid_to_cpu_present          = NULL,
343         .setup_portio_remap             = NULL,
344         .check_phys_apicid_present      = default_check_phys_apicid_present,
345         .enable_apic_mode               = NULL,
346         .phys_pkg_id                    = uv_phys_pkg_id,
347         .mps_oem_check                  = NULL,
348
349         .get_apic_id                    = x2apic_get_apic_id,
350         .set_apic_id                    = set_apic_id,
351         .apic_id_mask                   = 0xFFFFFFFFu,
352
353         .cpu_mask_to_apicid             = uv_cpu_mask_to_apicid,
354         .cpu_mask_to_apicid_and         = uv_cpu_mask_to_apicid_and,
355
356         .send_IPI_mask                  = uv_send_IPI_mask,
357         .send_IPI_mask_allbutself       = uv_send_IPI_mask_allbutself,
358         .send_IPI_allbutself            = uv_send_IPI_allbutself,
359         .send_IPI_all                   = uv_send_IPI_all,
360         .send_IPI_self                  = uv_send_IPI_self,
361
362         .wakeup_secondary_cpu           = uv_wakeup_secondary,
363         .trampoline_phys_low            = DEFAULT_TRAMPOLINE_PHYS_LOW,
364         .trampoline_phys_high           = DEFAULT_TRAMPOLINE_PHYS_HIGH,
365         .wait_for_init_deassert         = NULL,
366         .smp_callin_clear_local_apic    = NULL,
367         .inquire_remote_apic            = NULL,
368
369         .read                           = native_apic_msr_read,
370         .write                          = native_apic_msr_write,
371         .icr_read                       = native_x2apic_icr_read,
372         .icr_write                      = native_x2apic_icr_write,
373         .wait_icr_idle                  = native_x2apic_wait_icr_idle,
374         .safe_wait_icr_idle             = native_safe_x2apic_wait_icr_idle,
375 };
376
377 static __cpuinit void set_x2apic_extra_bits(int pnode)
378 {
379         __get_cpu_var(x2apic_extra_bits) = (pnode << 6);
380 }
381
382 /*
383  * Called on boot cpu.
384  */
385 static __init int boot_pnode_to_blade(int pnode)
386 {
387         int blade;
388
389         for (blade = 0; blade < uv_num_possible_blades(); blade++)
390                 if (pnode == uv_blade_info[blade].pnode)
391                         return blade;
392         BUG();
393 }
394
395 struct redir_addr {
396         unsigned long redirect;
397         unsigned long alias;
398 };
399
400 #define DEST_SHIFT UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_0_MMR_DEST_BASE_SHFT
401
402 static __initdata struct redir_addr redir_addrs[] = {
403         {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_0_MMR, UVH_RH_GAM_ALIAS210_OVERLAY_CONFIG_0_MMR},
404         {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_1_MMR, UVH_RH_GAM_ALIAS210_OVERLAY_CONFIG_1_MMR},
405         {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_2_MMR, UVH_RH_GAM_ALIAS210_OVERLAY_CONFIG_2_MMR},
406 };
407
408 static __init void get_lowmem_redirect(unsigned long *base, unsigned long *size)
409 {
410         union uvh_rh_gam_alias210_overlay_config_2_mmr_u alias;
411         union uvh_rh_gam_alias210_redirect_config_2_mmr_u redirect;
412         int i;
413
414         for (i = 0; i < ARRAY_SIZE(redir_addrs); i++) {
415                 alias.v = uv_read_local_mmr(redir_addrs[i].alias);
416                 if (alias.s.enable && alias.s.base == 0) {
417                         *size = (1UL << alias.s.m_alias);
418                         redirect.v = uv_read_local_mmr(redir_addrs[i].redirect);
419                         *base = (unsigned long)redirect.s.dest_base << DEST_SHIFT;
420                         return;
421                 }
422         }
423         *base = *size = 0;
424 }
425
426 enum map_type {map_wb, map_uc};
427
428 static __init void map_high(char *id, unsigned long base, int pshift,
429                         int bshift, int max_pnode, enum map_type map_type)
430 {
431         unsigned long bytes, paddr;
432
433         paddr = base << pshift;
434         bytes = (1UL << bshift) * (max_pnode + 1);
435         printk(KERN_INFO "UV: Map %s_HI 0x%lx - 0x%lx\n", id, paddr,
436                                                 paddr + bytes);
437         if (map_type == map_uc)
438                 init_extra_mapping_uc(paddr, bytes);
439         else
440                 init_extra_mapping_wb(paddr, bytes);
441
442 }
443 static __init void map_gru_high(int max_pnode)
444 {
445         union uvh_rh_gam_gru_overlay_config_mmr_u gru;
446         int shift = UVH_RH_GAM_GRU_OVERLAY_CONFIG_MMR_BASE_SHFT;
447
448         gru.v = uv_read_local_mmr(UVH_RH_GAM_GRU_OVERLAY_CONFIG_MMR);
449         if (gru.s.enable) {
450                 map_high("GRU", gru.s.base, shift, shift, max_pnode, map_wb);
451                 gru_start_paddr = ((u64)gru.s.base << shift);
452                 gru_end_paddr = gru_start_paddr + (1UL << shift) * (max_pnode + 1);
453
454         }
455 }
456
457 static __init void map_mmr_high(int max_pnode)
458 {
459         union uvh_rh_gam_mmr_overlay_config_mmr_u mmr;
460         int shift = UVH_RH_GAM_MMR_OVERLAY_CONFIG_MMR_BASE_SHFT;
461
462         mmr.v = uv_read_local_mmr(UVH_RH_GAM_MMR_OVERLAY_CONFIG_MMR);
463         if (mmr.s.enable)
464                 map_high("MMR", mmr.s.base, shift, shift, max_pnode, map_uc);
465 }
466
467 static __init void map_mmioh_high(int max_pnode)
468 {
469         union uvh_rh_gam_mmioh_overlay_config_mmr_u mmioh;
470         int shift = UVH_RH_GAM_MMIOH_OVERLAY_CONFIG_MMR_BASE_SHFT;
471
472         mmioh.v = uv_read_local_mmr(UVH_RH_GAM_MMIOH_OVERLAY_CONFIG_MMR);
473         if (mmioh.s.enable)
474                 map_high("MMIOH", mmioh.s.base, shift, mmioh.s.m_io,
475                         max_pnode, map_uc);
476 }
477
478 static __init void map_low_mmrs(void)
479 {
480         init_extra_mapping_uc(UV_GLOBAL_MMR32_BASE, UV_GLOBAL_MMR32_SIZE);
481         init_extra_mapping_uc(UV_LOCAL_MMR_BASE, UV_LOCAL_MMR_SIZE);
482 }
483
484 static __init void uv_rtc_init(void)
485 {
486         long status;
487         u64 ticks_per_sec;
488
489         status = uv_bios_freq_base(BIOS_FREQ_BASE_REALTIME_CLOCK,
490                                         &ticks_per_sec);
491         if (status != BIOS_STATUS_SUCCESS || ticks_per_sec < 100000) {
492                 printk(KERN_WARNING
493                         "unable to determine platform RTC clock frequency, "
494                         "guessing.\n");
495                 /* BIOS gives wrong value for clock freq. so guess */
496                 sn_rtc_cycles_per_second = 1000000000000UL / 30000UL;
497         } else
498                 sn_rtc_cycles_per_second = ticks_per_sec;
499 }
500
501 /*
502  * percpu heartbeat timer
503  */
504 static void uv_heartbeat(unsigned long ignored)
505 {
506         struct timer_list *timer = &uv_hub_info->scir.timer;
507         unsigned char bits = uv_hub_info->scir.state;
508
509         /* flip heartbeat bit */
510         bits ^= SCIR_CPU_HEARTBEAT;
511
512         /* is this cpu idle? */
513         if (idle_cpu(raw_smp_processor_id()))
514                 bits &= ~SCIR_CPU_ACTIVITY;
515         else
516                 bits |= SCIR_CPU_ACTIVITY;
517
518         /* update system controller interface reg */
519         uv_set_scir_bits(bits);
520
521         /* enable next timer period */
522         mod_timer_pinned(timer, jiffies + SCIR_CPU_HB_INTERVAL);
523 }
524
525 static void __cpuinit uv_heartbeat_enable(int cpu)
526 {
527         while (!uv_cpu_hub_info(cpu)->scir.enabled) {
528                 struct timer_list *timer = &uv_cpu_hub_info(cpu)->scir.timer;
529
530                 uv_set_cpu_scir_bits(cpu, SCIR_CPU_HEARTBEAT|SCIR_CPU_ACTIVITY);
531                 setup_timer(timer, uv_heartbeat, cpu);
532                 timer->expires = jiffies + SCIR_CPU_HB_INTERVAL;
533                 add_timer_on(timer, cpu);
534                 uv_cpu_hub_info(cpu)->scir.enabled = 1;
535
536                 /* also ensure that boot cpu is enabled */
537                 cpu = 0;
538         }
539 }
540
541 #ifdef CONFIG_HOTPLUG_CPU
542 static void __cpuinit uv_heartbeat_disable(int cpu)
543 {
544         if (uv_cpu_hub_info(cpu)->scir.enabled) {
545                 uv_cpu_hub_info(cpu)->scir.enabled = 0;
546                 del_timer(&uv_cpu_hub_info(cpu)->scir.timer);
547         }
548         uv_set_cpu_scir_bits(cpu, 0xff);
549 }
550
551 /*
552  * cpu hotplug notifier
553  */
554 static __cpuinit int uv_scir_cpu_notify(struct notifier_block *self,
555                                        unsigned long action, void *hcpu)
556 {
557         long cpu = (long)hcpu;
558
559         switch (action) {
560         case CPU_ONLINE:
561                 uv_heartbeat_enable(cpu);
562                 break;
563         case CPU_DOWN_PREPARE:
564                 uv_heartbeat_disable(cpu);
565                 break;
566         default:
567                 break;
568         }
569         return NOTIFY_OK;
570 }
571
572 static __init void uv_scir_register_cpu_notifier(void)
573 {
574         hotcpu_notifier(uv_scir_cpu_notify, 0);
575 }
576
577 #else /* !CONFIG_HOTPLUG_CPU */
578
579 static __init void uv_scir_register_cpu_notifier(void)
580 {
581 }
582
583 static __init int uv_init_heartbeat(void)
584 {
585         int cpu;
586
587         if (is_uv_system())
588                 for_each_online_cpu(cpu)
589                         uv_heartbeat_enable(cpu);
590         return 0;
591 }
592
593 late_initcall(uv_init_heartbeat);
594
595 #endif /* !CONFIG_HOTPLUG_CPU */
596
597 /* Direct Legacy VGA I/O traffic to designated IOH */
598 int uv_set_vga_state(struct pci_dev *pdev, bool decode,
599                       unsigned int command_bits, bool change_bridge)
600 {
601         int domain, bus, rc;
602
603         PR_DEVEL("devfn %x decode %d cmd %x chg_brdg %d\n",
604                         pdev->devfn, decode, command_bits, change_bridge);
605
606         if (!change_bridge)
607                 return 0;
608
609         if ((command_bits & PCI_COMMAND_IO) == 0)
610                 return 0;
611
612         domain = pci_domain_nr(pdev->bus);
613         bus = pdev->bus->number;
614
615         rc = uv_bios_set_legacy_vga_target(decode, domain, bus);
616         PR_DEVEL("vga decode %d %x:%x, rc: %d\n", decode, domain, bus, rc);
617
618         return rc;
619 }
620
621 /*
622  * Called on each cpu to initialize the per_cpu UV data area.
623  * FIXME: hotplug not supported yet
624  */
625 void __cpuinit uv_cpu_init(void)
626 {
627         /* CPU 0 initilization will be done via uv_system_init. */
628         if (!uv_blade_info)
629                 return;
630
631         uv_blade_info[uv_numa_blade_id()].nr_online_cpus++;
632
633         if (get_uv_system_type() == UV_NON_UNIQUE_APIC)
634                 set_x2apic_extra_bits(uv_hub_info->pnode);
635 }
636
637 /*
638  * When NMI is received, print a stack trace.
639  */
640 int uv_handle_nmi(struct notifier_block *self, unsigned long reason, void *data)
641 {
642         if (reason != DIE_NMI_IPI)
643                 return NOTIFY_OK;
644
645         if (in_crash_kexec)
646                 /* do nothing if entering the crash kernel */
647                 return NOTIFY_OK;
648         /*
649          * Use a lock so only one cpu prints at a time
650          * to prevent intermixed output.
651          */
652         spin_lock(&uv_nmi_lock);
653         pr_info("NMI stack dump cpu %u:\n", smp_processor_id());
654         dump_stack();
655         spin_unlock(&uv_nmi_lock);
656
657         return NOTIFY_STOP;
658 }
659
660 static struct notifier_block uv_dump_stack_nmi_nb = {
661         .notifier_call  = uv_handle_nmi
662 };
663
664 void uv_register_nmi_notifier(void)
665 {
666         if (register_die_notifier(&uv_dump_stack_nmi_nb))
667                 printk(KERN_WARNING "UV NMI handler failed to register\n");
668 }
669
670 void uv_nmi_init(void)
671 {
672         unsigned int value;
673
674         /*
675          * Unmask NMI on all cpus
676          */
677         value = apic_read(APIC_LVT1) | APIC_DM_NMI;
678         value &= ~APIC_LVT_MASKED;
679         apic_write(APIC_LVT1, value);
680 }
681
682 void __init uv_system_init(void)
683 {
684         union uvh_rh_gam_config_mmr_u  m_n_config;
685         union uvh_node_id_u node_id;
686         unsigned long gnode_upper, lowmem_redir_base, lowmem_redir_size;
687         int bytes, nid, cpu, lcpu, pnode, blade, i, j, m_val, n_val;
688         int gnode_extra, max_pnode = 0;
689         unsigned long mmr_base, present, paddr;
690         unsigned short pnode_mask;
691
692         map_low_mmrs();
693
694         m_n_config.v = uv_read_local_mmr(UVH_RH_GAM_CONFIG_MMR );
695         m_val = m_n_config.s.m_skt;
696         n_val = m_n_config.s.n_skt;
697         mmr_base =
698             uv_read_local_mmr(UVH_RH_GAM_MMR_OVERLAY_CONFIG_MMR) &
699             ~UV_MMR_ENABLE;
700         pnode_mask = (1 << n_val) - 1;
701         node_id.v = uv_read_local_mmr(UVH_NODE_ID);
702         gnode_extra = (node_id.s.node_id & ~((1 << n_val) - 1)) >> 1;
703         gnode_upper = ((unsigned long)gnode_extra  << m_val);
704         printk(KERN_DEBUG "UV: N %d, M %d, gnode_upper 0x%lx, gnode_extra 0x%x\n",
705                         n_val, m_val, gnode_upper, gnode_extra);
706
707         printk(KERN_DEBUG "UV: global MMR base 0x%lx\n", mmr_base);
708
709         for(i = 0; i < UVH_NODE_PRESENT_TABLE_DEPTH; i++)
710                 uv_possible_blades +=
711                   hweight64(uv_read_local_mmr( UVH_NODE_PRESENT_TABLE + i * 8));
712         printk(KERN_DEBUG "UV: Found %d blades\n", uv_num_possible_blades());
713
714         bytes = sizeof(struct uv_blade_info) * uv_num_possible_blades();
715         uv_blade_info = kmalloc(bytes, GFP_KERNEL);
716         BUG_ON(!uv_blade_info);
717         for (blade = 0; blade < uv_num_possible_blades(); blade++)
718                 uv_blade_info[blade].memory_nid = -1;
719
720         get_lowmem_redirect(&lowmem_redir_base, &lowmem_redir_size);
721
722         bytes = sizeof(uv_node_to_blade[0]) * num_possible_nodes();
723         uv_node_to_blade = kmalloc(bytes, GFP_KERNEL);
724         BUG_ON(!uv_node_to_blade);
725         memset(uv_node_to_blade, 255, bytes);
726
727         bytes = sizeof(uv_cpu_to_blade[0]) * num_possible_cpus();
728         uv_cpu_to_blade = kmalloc(bytes, GFP_KERNEL);
729         BUG_ON(!uv_cpu_to_blade);
730         memset(uv_cpu_to_blade, 255, bytes);
731
732         blade = 0;
733         for (i = 0; i < UVH_NODE_PRESENT_TABLE_DEPTH; i++) {
734                 present = uv_read_local_mmr(UVH_NODE_PRESENT_TABLE + i * 8);
735                 for (j = 0; j < 64; j++) {
736                         if (!test_bit(j, &present))
737                                 continue;
738                         pnode = (i * 64 + j);
739                         uv_blade_info[blade].pnode = pnode;
740                         uv_blade_info[blade].nr_possible_cpus = 0;
741                         uv_blade_info[blade].nr_online_cpus = 0;
742                         max_pnode = max(pnode, max_pnode);
743                         blade++;
744                 }
745         }
746
747         uv_bios_init();
748         uv_bios_get_sn_info(0, &uv_type, &sn_partition_id, &sn_coherency_id,
749                             &sn_region_size, &system_serial_number);
750         uv_rtc_init();
751
752         for_each_present_cpu(cpu) {
753                 int apicid = per_cpu(x86_cpu_to_apicid, cpu);
754
755                 nid = cpu_to_node(cpu);
756                 /*
757                  * apic_pnode_shift must be set before calling uv_apicid_to_pnode();
758                  */
759                 uv_cpu_hub_info(cpu)->apic_pnode_shift = uvh_apicid.s.pnode_shift;
760                 pnode = uv_apicid_to_pnode(apicid);
761                 blade = boot_pnode_to_blade(pnode);
762                 lcpu = uv_blade_info[blade].nr_possible_cpus;
763                 uv_blade_info[blade].nr_possible_cpus++;
764
765                 /* Any node on the blade, else will contain -1. */
766                 uv_blade_info[blade].memory_nid = nid;
767
768                 uv_cpu_hub_info(cpu)->lowmem_remap_base = lowmem_redir_base;
769                 uv_cpu_hub_info(cpu)->lowmem_remap_top = lowmem_redir_size;
770                 uv_cpu_hub_info(cpu)->m_val = m_val;
771                 uv_cpu_hub_info(cpu)->n_val = n_val;
772                 uv_cpu_hub_info(cpu)->numa_blade_id = blade;
773                 uv_cpu_hub_info(cpu)->blade_processor_id = lcpu;
774                 uv_cpu_hub_info(cpu)->pnode = pnode;
775                 uv_cpu_hub_info(cpu)->pnode_mask = pnode_mask;
776                 uv_cpu_hub_info(cpu)->gpa_mask = (1UL << (m_val + n_val)) - 1;
777                 uv_cpu_hub_info(cpu)->gnode_upper = gnode_upper;
778                 uv_cpu_hub_info(cpu)->gnode_extra = gnode_extra;
779                 uv_cpu_hub_info(cpu)->global_mmr_base = mmr_base;
780                 uv_cpu_hub_info(cpu)->coherency_domain_number = sn_coherency_id;
781                 uv_cpu_hub_info(cpu)->scir.offset = uv_scir_offset(apicid);
782                 uv_node_to_blade[nid] = blade;
783                 uv_cpu_to_blade[cpu] = blade;
784         }
785
786         /* Add blade/pnode info for nodes without cpus */
787         for_each_online_node(nid) {
788                 if (uv_node_to_blade[nid] >= 0)
789                         continue;
790                 paddr = node_start_pfn(nid) << PAGE_SHIFT;
791                 paddr = uv_soc_phys_ram_to_gpa(paddr);
792                 pnode = (paddr >> m_val) & pnode_mask;
793                 blade = boot_pnode_to_blade(pnode);
794                 uv_node_to_blade[nid] = blade;
795         }
796
797         map_gru_high(max_pnode);
798         map_mmr_high(max_pnode);
799         map_mmioh_high(max_pnode);
800
801         uv_cpu_init();
802         uv_scir_register_cpu_notifier();
803         uv_register_nmi_notifier();
804         proc_mkdir("sgi_uv", NULL);
805
806         /* register Legacy VGA I/O redirection handler */
807         pci_register_set_vga_state(uv_set_vga_state);
808 }