x86: SGI UV: Add volatile semantics to macros that access chipset registers
[deliverable/linux.git] / arch / x86 / kernel / apic / x2apic_uv_x.c
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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 *
9f5314fb 8 * Copyright (C) 2007-2008 Silicon Graphics, Inc. All rights reserved.
ac23d4ee 9 */
ac23d4ee 10#include <linux/cpumask.h>
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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>
ac23d4ee 16#include <linux/string.h>
ac23d4ee 17#include <linux/ctype.h>
ac23d4ee 18#include <linux/sched.h>
7f1baa06 19#include <linux/timer.h>
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20#include <linux/cpu.h>
21#include <linux/init.h>
27229ca6 22#include <linux/io.h>
0b1da1c8 23
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24#include <asm/uv/uv_mmrs.h>
25#include <asm/uv/uv_hub.h>
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26#include <asm/current.h>
27#include <asm/pgtable.h>
7019cc2d 28#include <asm/uv/bios.h>
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29#include <asm/uv/uv.h>
30#include <asm/apic.h>
31#include <asm/ipi.h>
32#include <asm/smp.h>
ac23d4ee 33
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34DEFINE_PER_CPU(int, x2apic_extra_bits);
35
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36static enum uv_system_type uv_system_type;
37
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38static int early_get_nodeid(void)
39{
40 union uvh_node_id_u node_id;
41 unsigned long *mmr;
42
43 mmr = early_ioremap(UV_LOCAL_MMR_BASE | UVH_NODE_ID, sizeof(*mmr));
44 node_id.v = *mmr;
45 early_iounmap(mmr, sizeof(*mmr));
46 return node_id.s.node_id;
47}
48
52459ab9 49static int __init uv_acpi_madt_oem_check(char *oem_id, char *oem_table_id)
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50{
51 if (!strcmp(oem_id, "SGI")) {
52 if (!strcmp(oem_table_id, "UVL"))
53 uv_system_type = UV_LEGACY_APIC;
54 else if (!strcmp(oem_table_id, "UVX"))
55 uv_system_type = UV_X2APIC;
56 else if (!strcmp(oem_table_id, "UVH")) {
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57 __get_cpu_var(x2apic_extra_bits) =
58 early_get_nodeid() << (UV_APIC_PNODE_SHIFT - 1);
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59 uv_system_type = UV_NON_UNIQUE_APIC;
60 return 1;
61 }
62 }
63 return 0;
64}
65
66enum uv_system_type get_uv_system_type(void)
67{
68 return uv_system_type;
69}
70
71int is_uv_system(void)
72{
73 return uv_system_type != UV_NONE;
74}
8067794b 75EXPORT_SYMBOL_GPL(is_uv_system);
1b9b89e7 76
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77DEFINE_PER_CPU(struct uv_hub_info_s, __uv_hub_info);
78EXPORT_PER_CPU_SYMBOL_GPL(__uv_hub_info);
79
80struct uv_blade_info *uv_blade_info;
81EXPORT_SYMBOL_GPL(uv_blade_info);
82
83short *uv_node_to_blade;
84EXPORT_SYMBOL_GPL(uv_node_to_blade);
85
86short *uv_cpu_to_blade;
87EXPORT_SYMBOL_GPL(uv_cpu_to_blade);
88
89short uv_possible_blades;
90EXPORT_SYMBOL_GPL(uv_possible_blades);
91
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92unsigned long sn_rtc_cycles_per_second;
93EXPORT_SYMBOL(sn_rtc_cycles_per_second);
94
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95/* Start with all IRQs pointing to boot CPU. IRQ balancing will shift them. */
96
bcda016e 97static const struct cpumask *uv_target_cpus(void)
ac23d4ee 98{
bcda016e 99 return cpumask_of(0);
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100}
101
bcda016e 102static void uv_vector_allocation_domain(int cpu, struct cpumask *retmask)
ac23d4ee 103{
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104 cpumask_clear(retmask);
105 cpumask_set_cpu(cpu, retmask);
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106}
107
667c5296 108static int __cpuinit uv_wakeup_secondary(int phys_apicid, unsigned long start_rip)
ac23d4ee 109{
0b1da1c8 110#ifdef CONFIG_SMP
ac23d4ee 111 unsigned long val;
9f5314fb 112 int pnode;
ac23d4ee 113
9f5314fb 114 pnode = uv_apicid_to_pnode(phys_apicid);
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115 val = (1UL << UVH_IPI_INT_SEND_SHFT) |
116 (phys_apicid << UVH_IPI_INT_APIC_ID_SHFT) |
2b6163bf 117 ((start_rip << UVH_IPI_INT_VECTOR_SHFT) >> 12) |
34d05591 118 APIC_DM_INIT;
9f5314fb 119 uv_write_global_mmr64(pnode, UVH_IPI_INT, val);
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120 mdelay(10);
121
122 val = (1UL << UVH_IPI_INT_SEND_SHFT) |
123 (phys_apicid << UVH_IPI_INT_APIC_ID_SHFT) |
2b6163bf 124 ((start_rip << UVH_IPI_INT_VECTOR_SHFT) >> 12) |
34d05591 125 APIC_DM_STARTUP;
9f5314fb 126 uv_write_global_mmr64(pnode, UVH_IPI_INT, val);
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127
128 atomic_set(&init_deasserted, 1);
0b1da1c8 129#endif
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130 return 0;
131}
132
133static void uv_send_IPI_one(int cpu, int vector)
134{
66666e50 135 unsigned long apicid;
9f5314fb 136 int pnode;
ac23d4ee 137
1e0b5d00 138 apicid = per_cpu(x86_cpu_to_apicid, cpu);
9f5314fb 139 pnode = uv_apicid_to_pnode(apicid);
66666e50 140 uv_hub_send_ipi(pnode, apicid, vector);
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141}
142
bcda016e 143static void uv_send_IPI_mask(const struct cpumask *mask, int vector)
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144{
145 unsigned int cpu;
146
bcda016e 147 for_each_cpu(cpu, mask)
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148 uv_send_IPI_one(cpu, vector);
149}
150
bcda016e 151static void uv_send_IPI_mask_allbutself(const struct cpumask *mask, int vector)
e7986739 152{
e7986739 153 unsigned int this_cpu = smp_processor_id();
dac5f412 154 unsigned int cpu;
e7986739 155
dac5f412 156 for_each_cpu(cpu, mask) {
e7986739 157 if (cpu != this_cpu)
ac23d4ee 158 uv_send_IPI_one(cpu, vector);
dac5f412 159 }
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160}
161
162static void uv_send_IPI_allbutself(int vector)
163{
e7986739 164 unsigned int this_cpu = smp_processor_id();
dac5f412 165 unsigned int cpu;
ac23d4ee 166
dac5f412 167 for_each_online_cpu(cpu) {
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168 if (cpu != this_cpu)
169 uv_send_IPI_one(cpu, vector);
dac5f412 170 }
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171}
172
173static void uv_send_IPI_all(int vector)
174{
bcda016e 175 uv_send_IPI_mask(cpu_online_mask, vector);
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176}
177
178static int uv_apic_id_registered(void)
179{
180 return 1;
181}
182
277d1f58 183static void uv_init_apic_ldr(void)
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184{
185}
186
bcda016e 187static unsigned int uv_cpu_mask_to_apicid(const struct cpumask *cpumask)
ac23d4ee 188{
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189 /*
190 * We're using fixed IRQ delivery, can only return one phys APIC ID.
191 * May as well be the first.
192 */
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193 int cpu = cpumask_first(cpumask);
194
247bc6ca 195 if ((unsigned)cpu < nr_cpu_ids)
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196 return per_cpu(x86_cpu_to_apicid, cpu);
197 else
198 return BAD_APICID;
199}
200
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201static unsigned int
202uv_cpu_mask_to_apicid_and(const struct cpumask *cpumask,
203 const struct cpumask *andmask)
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204{
205 int cpu;
206
207 /*
208 * We're using fixed IRQ delivery, can only return one phys APIC ID.
209 * May as well be the first.
210 */
debccb3e 211 for_each_cpu_and(cpu, cpumask, andmask) {
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212 if (cpumask_test_cpu(cpu, cpu_online_mask))
213 break;
debccb3e 214 }
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215 if (cpu < nr_cpu_ids)
216 return per_cpu(x86_cpu_to_apicid, cpu);
debccb3e 217
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218 return BAD_APICID;
219}
220
ca6c8ed4 221static unsigned int x2apic_get_apic_id(unsigned long x)
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222{
223 unsigned int id;
224
225 WARN_ON(preemptible() && num_online_cpus() > 1);
f910a9dc 226 id = x | __get_cpu_var(x2apic_extra_bits);
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227
228 return id;
229}
230
1b9b89e7 231static unsigned long set_apic_id(unsigned int id)
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232{
233 unsigned long x;
234
235 /* maskout x2apic_extra_bits ? */
236 x = id;
237 return x;
238}
239
240static unsigned int uv_read_apic_id(void)
241{
242
ca6c8ed4 243 return x2apic_get_apic_id(apic_read(APIC_ID));
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244}
245
d4c9a9f3 246static int uv_phys_pkg_id(int initial_apicid, int index_msb)
ac23d4ee 247{
0c81c746 248 return uv_read_apic_id() >> index_msb;
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249}
250
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251static void uv_send_IPI_self(int vector)
252{
253 apic_write(APIC_SELF_IPI, vector);
254}
ac23d4ee 255
52459ab9 256struct apic __refdata apic_x2apic_uv_x = {
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257
258 .name = "UV large system",
259 .probe = NULL,
260 .acpi_madt_oem_check = uv_acpi_madt_oem_check,
261 .apic_id_registered = uv_apic_id_registered,
262
f8987a10 263 .irq_delivery_mode = dest_Fixed,
c5997fa8 264 .irq_dest_mode = 0, /* physical */
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265
266 .target_cpus = uv_target_cpus,
08125d3e 267 .disable_esr = 0,
bdb1a9b6 268 .dest_logical = APIC_DEST_LOGICAL,
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269 .check_apicid_used = NULL,
270 .check_apicid_present = NULL,
271
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272 .vector_allocation_domain = uv_vector_allocation_domain,
273 .init_apic_ldr = uv_init_apic_ldr,
274
275 .ioapic_phys_id_map = NULL,
276 .setup_apic_routing = NULL,
277 .multi_timer_check = NULL,
278 .apicid_to_node = NULL,
279 .cpu_to_logical_apicid = NULL,
a21769a4 280 .cpu_present_to_apicid = default_cpu_present_to_apicid,
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281 .apicid_to_cpu_present = NULL,
282 .setup_portio_remap = NULL,
a27a6210 283 .check_phys_apicid_present = default_check_phys_apicid_present,
c7967329 284 .enable_apic_mode = NULL,
d4c9a9f3 285 .phys_pkg_id = uv_phys_pkg_id,
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286 .mps_oem_check = NULL,
287
ca6c8ed4 288 .get_apic_id = x2apic_get_apic_id,
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289 .set_apic_id = set_apic_id,
290 .apic_id_mask = 0xFFFFFFFFu,
291
292 .cpu_mask_to_apicid = uv_cpu_mask_to_apicid,
293 .cpu_mask_to_apicid_and = uv_cpu_mask_to_apicid_and,
294
295 .send_IPI_mask = uv_send_IPI_mask,
296 .send_IPI_mask_allbutself = uv_send_IPI_mask_allbutself,
297 .send_IPI_allbutself = uv_send_IPI_allbutself,
298 .send_IPI_all = uv_send_IPI_all,
299 .send_IPI_self = uv_send_IPI_self,
300
1f5bcabf 301 .wakeup_secondary_cpu = uv_wakeup_secondary,
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302 .trampoline_phys_low = DEFAULT_TRAMPOLINE_PHYS_LOW,
303 .trampoline_phys_high = DEFAULT_TRAMPOLINE_PHYS_HIGH,
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304 .wait_for_init_deassert = NULL,
305 .smp_callin_clear_local_apic = NULL,
c7967329 306 .inquire_remote_apic = NULL,
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307
308 .read = native_apic_msr_read,
309 .write = native_apic_msr_write,
310 .icr_read = native_x2apic_icr_read,
311 .icr_write = native_x2apic_icr_write,
312 .wait_icr_idle = native_x2apic_wait_icr_idle,
313 .safe_wait_icr_idle = native_safe_x2apic_wait_icr_idle,
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314};
315
9f5314fb 316static __cpuinit void set_x2apic_extra_bits(int pnode)
ac23d4ee 317{
9f5314fb 318 __get_cpu_var(x2apic_extra_bits) = (pnode << 6);
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319}
320
321/*
322 * Called on boot cpu.
323 */
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324static __init int boot_pnode_to_blade(int pnode)
325{
326 int blade;
327
328 for (blade = 0; blade < uv_num_possible_blades(); blade++)
329 if (pnode == uv_blade_info[blade].pnode)
330 return blade;
331 BUG();
332}
333
334struct redir_addr {
335 unsigned long redirect;
336 unsigned long alias;
337};
338
339#define DEST_SHIFT UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_0_MMR_DEST_BASE_SHFT
340
341static __initdata struct redir_addr redir_addrs[] = {
342 {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_0_MMR, UVH_SI_ALIAS0_OVERLAY_CONFIG},
343 {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_1_MMR, UVH_SI_ALIAS1_OVERLAY_CONFIG},
344 {UVH_RH_GAM_ALIAS210_REDIRECT_CONFIG_2_MMR, UVH_SI_ALIAS2_OVERLAY_CONFIG},
345};
346
347static __init void get_lowmem_redirect(unsigned long *base, unsigned long *size)
348{
349 union uvh_si_alias0_overlay_config_u alias;
350 union uvh_rh_gam_alias210_redirect_config_2_mmr_u redirect;
351 int i;
352
353 for (i = 0; i < ARRAY_SIZE(redir_addrs); i++) {
354 alias.v = uv_read_local_mmr(redir_addrs[i].alias);
355 if (alias.s.base == 0) {
356 *size = (1UL << alias.s.m_alias);
357 redirect.v = uv_read_local_mmr(redir_addrs[i].redirect);
358 *base = (unsigned long)redirect.s.dest_base << DEST_SHIFT;
359 return;
360 }
361 }
362 BUG();
363}
364
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365enum map_type {map_wb, map_uc};
366
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367static __init void map_high(char *id, unsigned long base, int shift,
368 int max_pnode, enum map_type map_type)
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369{
370 unsigned long bytes, paddr;
371
372 paddr = base << shift;
d2f904bb 373 bytes = (1UL << shift) * (max_pnode + 1);
83f5d894 374 printk(KERN_INFO "UV: Map %s_HI 0x%lx - 0x%lx\n", id, paddr,
0b1da1c8 375 paddr + bytes);
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376 if (map_type == map_uc)
377 init_extra_mapping_uc(paddr, bytes);
378 else
379 init_extra_mapping_wb(paddr, bytes);
380
381}
382static __init void map_gru_high(int max_pnode)
383{
384 union uvh_rh_gam_gru_overlay_config_mmr_u gru;
385 int shift = UVH_RH_GAM_GRU_OVERLAY_CONFIG_MMR_BASE_SHFT;
386
387 gru.v = uv_read_local_mmr(UVH_RH_GAM_GRU_OVERLAY_CONFIG_MMR);
388 if (gru.s.enable)
d2f904bb 389 map_high("GRU", gru.s.base, shift, max_pnode, map_wb);
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390}
391
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392static __init void map_mmioh_high(int max_pnode)
393{
394 union uvh_rh_gam_mmioh_overlay_config_mmr_u mmioh;
395 int shift = UVH_RH_GAM_MMIOH_OVERLAY_CONFIG_MMR_BASE_SHFT;
396
397 mmioh.v = uv_read_local_mmr(UVH_RH_GAM_MMIOH_OVERLAY_CONFIG_MMR);
398 if (mmioh.s.enable)
d2f904bb 399 map_high("MMIOH", mmioh.s.base, shift, max_pnode, map_uc);
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400}
401
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402static __init void uv_rtc_init(void)
403{
922402f1
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404 long status;
405 u64 ticks_per_sec;
7019cc2d 406
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407 status = uv_bios_freq_base(BIOS_FREQ_BASE_REALTIME_CLOCK,
408 &ticks_per_sec);
409 if (status != BIOS_STATUS_SUCCESS || ticks_per_sec < 100000) {
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410 printk(KERN_WARNING
411 "unable to determine platform RTC clock frequency, "
412 "guessing.\n");
413 /* BIOS gives wrong value for clock freq. so guess */
414 sn_rtc_cycles_per_second = 1000000000000UL / 30000UL;
415 } else
416 sn_rtc_cycles_per_second = ticks_per_sec;
417}
418
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419/*
420 * percpu heartbeat timer
421 */
422static void uv_heartbeat(unsigned long ignored)
423{
424 struct timer_list *timer = &uv_hub_info->scir.timer;
425 unsigned char bits = uv_hub_info->scir.state;
426
427 /* flip heartbeat bit */
428 bits ^= SCIR_CPU_HEARTBEAT;
429
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430 /* is this cpu idle? */
431 if (idle_cpu(raw_smp_processor_id()))
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432 bits &= ~SCIR_CPU_ACTIVITY;
433 else
434 bits |= SCIR_CPU_ACTIVITY;
435
436 /* update system controller interface reg */
437 uv_set_scir_bits(bits);
438
439 /* enable next timer period */
5c333864 440 mod_timer_pinned(timer, jiffies + SCIR_CPU_HB_INTERVAL);
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441}
442
443static void __cpuinit uv_heartbeat_enable(int cpu)
444{
445 if (!uv_cpu_hub_info(cpu)->scir.enabled) {
446 struct timer_list *timer = &uv_cpu_hub_info(cpu)->scir.timer;
447
448 uv_set_cpu_scir_bits(cpu, SCIR_CPU_HEARTBEAT|SCIR_CPU_ACTIVITY);
449 setup_timer(timer, uv_heartbeat, cpu);
450 timer->expires = jiffies + SCIR_CPU_HB_INTERVAL;
451 add_timer_on(timer, cpu);
452 uv_cpu_hub_info(cpu)->scir.enabled = 1;
453 }
454
455 /* check boot cpu */
456 if (!uv_cpu_hub_info(0)->scir.enabled)
457 uv_heartbeat_enable(0);
458}
459
77be80e4 460#ifdef CONFIG_HOTPLUG_CPU
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461static void __cpuinit uv_heartbeat_disable(int cpu)
462{
463 if (uv_cpu_hub_info(cpu)->scir.enabled) {
464 uv_cpu_hub_info(cpu)->scir.enabled = 0;
465 del_timer(&uv_cpu_hub_info(cpu)->scir.timer);
466 }
467 uv_set_cpu_scir_bits(cpu, 0xff);
468}
469
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470/*
471 * cpu hotplug notifier
472 */
473static __cpuinit int uv_scir_cpu_notify(struct notifier_block *self,
474 unsigned long action, void *hcpu)
475{
476 long cpu = (long)hcpu;
477
478 switch (action) {
479 case CPU_ONLINE:
480 uv_heartbeat_enable(cpu);
481 break;
482 case CPU_DOWN_PREPARE:
483 uv_heartbeat_disable(cpu);
484 break;
485 default:
486 break;
487 }
488 return NOTIFY_OK;
489}
490
491static __init void uv_scir_register_cpu_notifier(void)
492{
493 hotcpu_notifier(uv_scir_cpu_notify, 0);
494}
495
496#else /* !CONFIG_HOTPLUG_CPU */
497
498static __init void uv_scir_register_cpu_notifier(void)
499{
500}
501
502static __init int uv_init_heartbeat(void)
503{
504 int cpu;
505
506 if (is_uv_system())
507 for_each_online_cpu(cpu)
508 uv_heartbeat_enable(cpu);
509 return 0;
510}
511
512late_initcall(uv_init_heartbeat);
513
514#endif /* !CONFIG_HOTPLUG_CPU */
515
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516/*
517 * Called on each cpu to initialize the per_cpu UV data area.
0b1da1c8 518 * FIXME: hotplug not supported yet
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519 */
520void __cpuinit uv_cpu_init(void)
521{
522 /* CPU 0 initilization will be done via uv_system_init. */
523 if (!uv_blade_info)
524 return;
525
526 uv_blade_info[uv_numa_blade_id()].nr_online_cpus++;
527
528 if (get_uv_system_type() == UV_NON_UNIQUE_APIC)
529 set_x2apic_extra_bits(uv_hub_info->pnode);
530}
531
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532
533void __init uv_system_init(void)
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534{
535 union uvh_si_addr_map_config_u m_n_config;
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536 union uvh_node_id_u node_id;
537 unsigned long gnode_upper, lowmem_redir_base, lowmem_redir_size;
538 int bytes, nid, cpu, lcpu, pnode, blade, i, j, m_val, n_val;
c4ed3f04 539 int gnode_extra, max_pnode = 0;
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540 unsigned long mmr_base, present, paddr;
541 unsigned short pnode_mask;
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542
543 m_n_config.v = uv_read_local_mmr(UVH_SI_ADDR_MAP_CONFIG);
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544 m_val = m_n_config.s.m_skt;
545 n_val = m_n_config.s.n_skt;
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546 mmr_base =
547 uv_read_local_mmr(UVH_RH_GAM_MMR_OVERLAY_CONFIG_MMR) &
548 ~UV_MMR_ENABLE;
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549 pnode_mask = (1 << n_val) - 1;
550 node_id.v = uv_read_local_mmr(UVH_NODE_ID);
551 gnode_extra = (node_id.s.node_id & ~((1 << n_val) - 1)) >> 1;
552 gnode_upper = ((unsigned long)gnode_extra << m_val);
553 printk(KERN_DEBUG "UV: N %d, M %d, gnode_upper 0x%lx, gnode_extra 0x%x\n",
554 n_val, m_val, gnode_upper, gnode_extra);
555
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556 printk(KERN_DEBUG "UV: global MMR base 0x%lx\n", mmr_base);
557
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558 for(i = 0; i < UVH_NODE_PRESENT_TABLE_DEPTH; i++)
559 uv_possible_blades +=
560 hweight64(uv_read_local_mmr( UVH_NODE_PRESENT_TABLE + i * 8));
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561 printk(KERN_DEBUG "UV: Found %d blades\n", uv_num_possible_blades());
562
563 bytes = sizeof(struct uv_blade_info) * uv_num_possible_blades();
ef020ab0 564 uv_blade_info = kmalloc(bytes, GFP_KERNEL);
9a8709d4 565 BUG_ON(!uv_blade_info);
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566 for (blade = 0; blade < uv_num_possible_blades(); blade++)
567 uv_blade_info[blade].memory_nid = -1;
ac23d4ee 568
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569 get_lowmem_redirect(&lowmem_redir_base, &lowmem_redir_size);
570
ac23d4ee 571 bytes = sizeof(uv_node_to_blade[0]) * num_possible_nodes();
ef020ab0 572 uv_node_to_blade = kmalloc(bytes, GFP_KERNEL);
9a8709d4 573 BUG_ON(!uv_node_to_blade);
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574 memset(uv_node_to_blade, 255, bytes);
575
576 bytes = sizeof(uv_cpu_to_blade[0]) * num_possible_cpus();
ef020ab0 577 uv_cpu_to_blade = kmalloc(bytes, GFP_KERNEL);
9a8709d4 578 BUG_ON(!uv_cpu_to_blade);
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579 memset(uv_cpu_to_blade, 255, bytes);
580
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581 blade = 0;
582 for (i = 0; i < UVH_NODE_PRESENT_TABLE_DEPTH; i++) {
583 present = uv_read_local_mmr(UVH_NODE_PRESENT_TABLE + i * 8);
584 for (j = 0; j < 64; j++) {
585 if (!test_bit(j, &present))
586 continue;
587 uv_blade_info[blade].pnode = (i * 64 + j);
588 uv_blade_info[blade].nr_possible_cpus = 0;
ac23d4ee 589 uv_blade_info[blade].nr_online_cpus = 0;
9f5314fb 590 blade++;
ac23d4ee 591 }
9f5314fb 592 }
ac23d4ee 593
7f594232 594 uv_bios_init();
922402f1 595 uv_bios_get_sn_info(0, &uv_type, &sn_partition_id,
b0f20989 596 &sn_coherency_id, &sn_region_size);
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597 uv_rtc_init();
598
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599 for_each_present_cpu(cpu) {
600 nid = cpu_to_node(cpu);
601 pnode = uv_apicid_to_pnode(per_cpu(x86_cpu_to_apicid, cpu));
602 blade = boot_pnode_to_blade(pnode);
603 lcpu = uv_blade_info[blade].nr_possible_cpus;
604 uv_blade_info[blade].nr_possible_cpus++;
605
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606 /* Any node on the blade, else will contain -1. */
607 uv_blade_info[blade].memory_nid = nid;
608
9f5314fb 609 uv_cpu_hub_info(cpu)->lowmem_remap_base = lowmem_redir_base;
189f67c4 610 uv_cpu_hub_info(cpu)->lowmem_remap_top = lowmem_redir_size;
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611 uv_cpu_hub_info(cpu)->m_val = m_val;
612 uv_cpu_hub_info(cpu)->n_val = m_val;
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613 uv_cpu_hub_info(cpu)->numa_blade_id = blade;
614 uv_cpu_hub_info(cpu)->blade_processor_id = lcpu;
9f5314fb 615 uv_cpu_hub_info(cpu)->pnode = pnode;
6a891a24 616 uv_cpu_hub_info(cpu)->pnode_mask = pnode_mask;
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617 uv_cpu_hub_info(cpu)->gpa_mask = (1 << (m_val + n_val)) - 1;
618 uv_cpu_hub_info(cpu)->gnode_upper = gnode_upper;
c4ed3f04 619 uv_cpu_hub_info(cpu)->gnode_extra = gnode_extra;
ac23d4ee 620 uv_cpu_hub_info(cpu)->global_mmr_base = mmr_base;
b0f20989 621 uv_cpu_hub_info(cpu)->coherency_domain_number = sn_coherency_id;
7f1baa06 622 uv_cpu_hub_info(cpu)->scir.offset = SCIR_LOCAL_MMR_BASE + lcpu;
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623 uv_node_to_blade[nid] = blade;
624 uv_cpu_to_blade[cpu] = blade;
83f5d894 625 max_pnode = max(pnode, max_pnode);
ac23d4ee 626
83f5d894 627 printk(KERN_DEBUG "UV: cpu %d, apicid 0x%x, pnode %d, nid %d, "
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628 "lcpu %d, blade %d\n",
629 cpu, per_cpu(x86_cpu_to_apicid, cpu), pnode, nid,
630 lcpu, blade);
ac23d4ee 631 }
83f5d894 632
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633 /* Add blade/pnode info for nodes without cpus */
634 for_each_online_node(nid) {
635 if (uv_node_to_blade[nid] >= 0)
636 continue;
637 paddr = node_start_pfn(nid) << PAGE_SHIFT;
fc61e663 638 paddr = uv_soc_phys_ram_to_gpa(paddr);
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639 pnode = (paddr >> m_val) & pnode_mask;
640 blade = boot_pnode_to_blade(pnode);
641 uv_node_to_blade[nid] = blade;
cc5e4fa1 642 max_pnode = max(pnode, max_pnode);
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643 }
644
83f5d894 645 map_gru_high(max_pnode);
83f5d894 646 map_mmioh_high(max_pnode);
ac23d4ee 647
8da077d6 648 uv_cpu_init();
7f1baa06 649 uv_scir_register_cpu_notifier();
a3d732f9 650 proc_mkdir("sgi_uv", NULL);
ac23d4ee 651}
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