Merge branch 'master' of ssh://master.kernel.org/pub/scm/linux/kernel/git/mason/btrfs...
[pandora-kernel.git] / arch / x86 / kernel / apic / es7000_32.c
1 /*
2  * Written by: Garry Forsgren, Unisys Corporation
3  *             Natalie Protasevich, Unisys Corporation
4  *
5  * This file contains the code to configure and interface
6  * with Unisys ES7000 series hardware system manager.
7  *
8  * Copyright (c) 2003 Unisys Corporation.
9  * Copyright (C) 2009, Red Hat, Inc., Ingo Molnar
10  *
11  *   All Rights Reserved.
12  *
13  * This program is free software; you can redistribute it and/or modify it
14  * under the terms of version 2 of the GNU General Public License as
15  * published by the Free Software Foundation.
16  *
17  * This program is distributed in the hope that it would be useful, but
18  * WITHOUT ANY WARRANTY; without even the implied warranty of
19  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
20  *
21  * You should have received a copy of the GNU General Public License along
22  * with this program; if not, write the Free Software Foundation, Inc., 59
23  * Temple Place - Suite 330, Boston MA 02111-1307, USA.
24  *
25  * Contact information: Unisys Corporation, Township Line & Union Meeting
26  * Roads-A, Unisys Way, Blue Bell, Pennsylvania, 19424, or:
27  *
28  * http://www.unisys.com
29  */
30
31 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
32
33 #include <linux/notifier.h>
34 #include <linux/spinlock.h>
35 #include <linux/cpumask.h>
36 #include <linux/threads.h>
37 #include <linux/kernel.h>
38 #include <linux/module.h>
39 #include <linux/reboot.h>
40 #include <linux/string.h>
41 #include <linux/types.h>
42 #include <linux/errno.h>
43 #include <linux/acpi.h>
44 #include <linux/init.h>
45 #include <linux/nmi.h>
46 #include <linux/smp.h>
47 #include <linux/io.h>
48
49 #include <asm/apicdef.h>
50 #include <asm/atomic.h>
51 #include <asm/fixmap.h>
52 #include <asm/mpspec.h>
53 #include <asm/setup.h>
54 #include <asm/apic.h>
55 #include <asm/ipi.h>
56
57 /*
58  * ES7000 chipsets
59  */
60
61 #define NON_UNISYS                      0
62 #define ES7000_CLASSIC                  1
63 #define ES7000_ZORRO                    2
64
65 #define MIP_REG                         1
66 #define MIP_PSAI_REG                    4
67
68 #define MIP_BUSY                        1
69 #define MIP_SPIN                        0xf0000
70 #define MIP_VALID                       0x0100000000000000ULL
71 #define MIP_SW_APIC                     0x1020b
72
73 #define MIP_PORT(val)                   ((val >> 32) & 0xffff)
74
75 #define MIP_RD_LO(val)                  (val & 0xffffffff)
76
77 struct mip_reg {
78         unsigned long long              off_0x00;
79         unsigned long long              off_0x08;
80         unsigned long long              off_0x10;
81         unsigned long long              off_0x18;
82         unsigned long long              off_0x20;
83         unsigned long long              off_0x28;
84         unsigned long long              off_0x30;
85         unsigned long long              off_0x38;
86 };
87
88 struct mip_reg_info {
89         unsigned long long              mip_info;
90         unsigned long long              delivery_info;
91         unsigned long long              host_reg;
92         unsigned long long              mip_reg;
93 };
94
95 struct psai {
96         unsigned long long              entry_type;
97         unsigned long long              addr;
98         unsigned long long              bep_addr;
99 };
100
101 #ifdef CONFIG_ACPI
102
103 struct es7000_oem_table {
104         struct acpi_table_header        Header;
105         u32                             OEMTableAddr;
106         u32                             OEMTableSize;
107 };
108
109 static unsigned long                    oem_addrX;
110 static unsigned long                    oem_size;
111
112 #endif
113
114 /*
115  * ES7000 Globals
116  */
117
118 static volatile unsigned long           *psai;
119 static struct mip_reg                   *mip_reg;
120 static struct mip_reg                   *host_reg;
121 static int                              mip_port;
122 static unsigned long                    mip_addr;
123 static unsigned long                    host_addr;
124
125 int                                     es7000_plat;
126
127 /*
128  * GSI override for ES7000 platforms.
129  */
130
131 static unsigned int                     base;
132
133 static int
134 es7000_rename_gsi(int ioapic, int gsi)
135 {
136         if (es7000_plat == ES7000_ZORRO)
137                 return gsi;
138
139         if (!base) {
140                 int i;
141                 for (i = 0; i < nr_ioapics; i++)
142                         base += nr_ioapic_registers[i];
143         }
144
145         if (!ioapic && (gsi < 16))
146                 gsi += base;
147
148         return gsi;
149 }
150
151 static int __cpuinit wakeup_secondary_cpu_via_mip(int cpu, unsigned long eip)
152 {
153         unsigned long vect = 0, psaival = 0;
154
155         if (psai == NULL)
156                 return -1;
157
158         vect = ((unsigned long)__pa(eip)/0x1000) << 16;
159         psaival = (0x1000000 | vect | cpu);
160
161         while (*psai & 0x1000000)
162                 ;
163
164         *psai = psaival;
165
166         return 0;
167 }
168
169 static int es7000_apic_is_cluster(void)
170 {
171         /* MPENTIUMIII */
172         if (boot_cpu_data.x86 == 6 &&
173             (boot_cpu_data.x86_model >= 7 && boot_cpu_data.x86_model <= 11))
174                 return 1;
175
176         return 0;
177 }
178
179 static void setup_unisys(void)
180 {
181         /*
182          * Determine the generation of the ES7000 currently running.
183          *
184          * es7000_plat = 1 if the machine is a 5xx ES7000 box
185          * es7000_plat = 2 if the machine is a x86_64 ES7000 box
186          *
187          */
188         if (!(boot_cpu_data.x86 <= 15 && boot_cpu_data.x86_model <= 2))
189                 es7000_plat = ES7000_ZORRO;
190         else
191                 es7000_plat = ES7000_CLASSIC;
192         ioapic_renumber_irq = es7000_rename_gsi;
193 }
194
195 /*
196  * Parse the OEM Table:
197  */
198 static int parse_unisys_oem(char *oemptr)
199 {
200         int                     i;
201         int                     success = 0;
202         unsigned char           type, size;
203         unsigned long           val;
204         char                    *tp = NULL;
205         struct psai             *psaip = NULL;
206         struct mip_reg_info     *mi;
207         struct mip_reg          *host, *mip;
208
209         tp = oemptr;
210
211         tp += 8;
212
213         for (i = 0; i <= 6; i++) {
214                 type = *tp++;
215                 size = *tp++;
216                 tp -= 2;
217                 switch (type) {
218                 case MIP_REG:
219                         mi = (struct mip_reg_info *)tp;
220                         val = MIP_RD_LO(mi->host_reg);
221                         host_addr = val;
222                         host = (struct mip_reg *)val;
223                         host_reg = __va(host);
224                         val = MIP_RD_LO(mi->mip_reg);
225                         mip_port = MIP_PORT(mi->mip_info);
226                         mip_addr = val;
227                         mip = (struct mip_reg *)val;
228                         mip_reg = __va(mip);
229                         pr_debug("host_reg = 0x%lx\n",
230                                  (unsigned long)host_reg);
231                         pr_debug("mip_reg = 0x%lx\n",
232                                  (unsigned long)mip_reg);
233                         success++;
234                         break;
235                 case MIP_PSAI_REG:
236                         psaip = (struct psai *)tp;
237                         if (tp != NULL) {
238                                 if (psaip->addr)
239                                         psai = __va(psaip->addr);
240                                 else
241                                         psai = NULL;
242                                 success++;
243                         }
244                         break;
245                 default:
246                         break;
247                 }
248                 tp += size;
249         }
250
251         if (success < 2)
252                 es7000_plat = NON_UNISYS;
253         else
254                 setup_unisys();
255
256         return es7000_plat;
257 }
258
259 #ifdef CONFIG_ACPI
260 static int __init find_unisys_acpi_oem_table(unsigned long *oem_addr)
261 {
262         struct acpi_table_header *header = NULL;
263         struct es7000_oem_table *table;
264         acpi_size tbl_size;
265         acpi_status ret;
266         int i = 0;
267
268         for (;;) {
269                 ret = acpi_get_table_with_size("OEM1", i++, &header, &tbl_size);
270                 if (!ACPI_SUCCESS(ret))
271                         return -1;
272
273                 if (!memcmp((char *) &header->oem_id, "UNISYS", 6))
274                         break;
275
276                 early_acpi_os_unmap_memory(header, tbl_size);
277         }
278
279         table = (void *)header;
280
281         oem_addrX       = table->OEMTableAddr;
282         oem_size        = table->OEMTableSize;
283
284         early_acpi_os_unmap_memory(header, tbl_size);
285
286         *oem_addr       = (unsigned long)__acpi_map_table(oem_addrX, oem_size);
287
288         return 0;
289 }
290
291 static void __init unmap_unisys_acpi_oem_table(unsigned long oem_addr)
292 {
293         if (!oem_addr)
294                 return;
295
296         __acpi_unmap_table((char *)oem_addr, oem_size);
297 }
298
299 static int es7000_check_dsdt(void)
300 {
301         struct acpi_table_header header;
302
303         if (ACPI_SUCCESS(acpi_get_table_header(ACPI_SIG_DSDT, 0, &header)) &&
304             !strncmp(header.oem_id, "UNISYS", 6))
305                 return 1;
306         return 0;
307 }
308
309 static int es7000_acpi_ret;
310
311 /* Hook from generic ACPI tables.c */
312 static int __init es7000_acpi_madt_oem_check(char *oem_id, char *oem_table_id)
313 {
314         unsigned long oem_addr = 0;
315         int check_dsdt;
316         int ret = 0;
317
318         /* check dsdt at first to avoid clear fix_map for oem_addr */
319         check_dsdt = es7000_check_dsdt();
320
321         if (!find_unisys_acpi_oem_table(&oem_addr)) {
322                 if (check_dsdt) {
323                         ret = parse_unisys_oem((char *)oem_addr);
324                 } else {
325                         setup_unisys();
326                         ret = 1;
327                 }
328                 /*
329                  * we need to unmap it
330                  */
331                 unmap_unisys_acpi_oem_table(oem_addr);
332         }
333
334         es7000_acpi_ret = ret;
335
336         return ret && !es7000_apic_is_cluster();
337 }
338
339 static int es7000_acpi_madt_oem_check_cluster(char *oem_id, char *oem_table_id)
340 {
341         int ret = es7000_acpi_ret;
342
343         return ret && es7000_apic_is_cluster();
344 }
345
346 #else /* !CONFIG_ACPI: */
347 static int es7000_acpi_madt_oem_check(char *oem_id, char *oem_table_id)
348 {
349         return 0;
350 }
351
352 static int es7000_acpi_madt_oem_check_cluster(char *oem_id, char *oem_table_id)
353 {
354         return 0;
355 }
356 #endif /* !CONFIG_ACPI */
357
358 static void es7000_spin(int n)
359 {
360         int i = 0;
361
362         while (i++ < n)
363                 rep_nop();
364 }
365
366 static int es7000_mip_write(struct mip_reg *mip_reg)
367 {
368         int status = 0;
369         int spin;
370
371         spin = MIP_SPIN;
372         while ((host_reg->off_0x38 & MIP_VALID) != 0) {
373                 if (--spin <= 0) {
374                         WARN(1, "Timeout waiting for Host Valid Flag\n");
375                         return -1;
376                 }
377                 es7000_spin(MIP_SPIN);
378         }
379
380         memcpy(host_reg, mip_reg, sizeof(struct mip_reg));
381         outb(1, mip_port);
382
383         spin = MIP_SPIN;
384
385         while ((mip_reg->off_0x38 & MIP_VALID) == 0) {
386                 if (--spin <= 0) {
387                         WARN(1, "Timeout waiting for MIP Valid Flag\n");
388                         return -1;
389                 }
390                 es7000_spin(MIP_SPIN);
391         }
392
393         status = (mip_reg->off_0x00 & 0xffff0000000000ULL) >> 48;
394         mip_reg->off_0x38 &= ~MIP_VALID;
395
396         return status;
397 }
398
399 static void es7000_enable_apic_mode(void)
400 {
401         struct mip_reg es7000_mip_reg;
402         int mip_status;
403
404         if (!es7000_plat)
405                 return;
406
407         pr_info("Enabling APIC mode.\n");
408         memset(&es7000_mip_reg, 0, sizeof(struct mip_reg));
409         es7000_mip_reg.off_0x00 = MIP_SW_APIC;
410         es7000_mip_reg.off_0x38 = MIP_VALID;
411
412         while ((mip_status = es7000_mip_write(&es7000_mip_reg)) != 0)
413                 WARN(1, "Command failed, status = %x\n", mip_status);
414 }
415
416 static void es7000_vector_allocation_domain(int cpu, struct cpumask *retmask)
417 {
418         /* Careful. Some cpus do not strictly honor the set of cpus
419          * specified in the interrupt destination when using lowest
420          * priority interrupt delivery mode.
421          *
422          * In particular there was a hyperthreading cpu observed to
423          * deliver interrupts to the wrong hyperthread when only one
424          * hyperthread was specified in the interrupt desitination.
425          */
426         cpumask_clear(retmask);
427         cpumask_bits(retmask)[0] = APIC_ALL_CPUS;
428 }
429
430
431 static void es7000_wait_for_init_deassert(atomic_t *deassert)
432 {
433         while (!atomic_read(deassert))
434                 cpu_relax();
435 }
436
437 static unsigned int es7000_get_apic_id(unsigned long x)
438 {
439         return (x >> 24) & 0xFF;
440 }
441
442 static void es7000_send_IPI_mask(const struct cpumask *mask, int vector)
443 {
444         default_send_IPI_mask_sequence_phys(mask, vector);
445 }
446
447 static void es7000_send_IPI_allbutself(int vector)
448 {
449         default_send_IPI_mask_allbutself_phys(cpu_online_mask, vector);
450 }
451
452 static void es7000_send_IPI_all(int vector)
453 {
454         es7000_send_IPI_mask(cpu_online_mask, vector);
455 }
456
457 static int es7000_apic_id_registered(void)
458 {
459         return 1;
460 }
461
462 static const struct cpumask *target_cpus_cluster(void)
463 {
464         return cpu_all_mask;
465 }
466
467 static const struct cpumask *es7000_target_cpus(void)
468 {
469         return cpumask_of(smp_processor_id());
470 }
471
472 static unsigned long es7000_check_apicid_used(physid_mask_t *map, int apicid)
473 {
474         return 0;
475 }
476
477 static unsigned long es7000_check_apicid_present(int bit)
478 {
479         return physid_isset(bit, phys_cpu_present_map);
480 }
481
482 static unsigned long calculate_ldr(int cpu)
483 {
484         unsigned long id = per_cpu(x86_bios_cpu_apicid, cpu);
485
486         return SET_APIC_LOGICAL_ID(id);
487 }
488
489 /*
490  * Set up the logical destination ID.
491  *
492  * Intel recommends to set DFR, LdR and TPR before enabling
493  * an APIC.  See e.g. "AP-388 82489DX User's Manual" (Intel
494  * document number 292116).  So here it goes...
495  */
496 static void es7000_init_apic_ldr_cluster(void)
497 {
498         unsigned long val;
499         int cpu = smp_processor_id();
500
501         apic_write(APIC_DFR, APIC_DFR_CLUSTER);
502         val = calculate_ldr(cpu);
503         apic_write(APIC_LDR, val);
504 }
505
506 static void es7000_init_apic_ldr(void)
507 {
508         unsigned long val;
509         int cpu = smp_processor_id();
510
511         apic_write(APIC_DFR, APIC_DFR_FLAT);
512         val = calculate_ldr(cpu);
513         apic_write(APIC_LDR, val);
514 }
515
516 static void es7000_setup_apic_routing(void)
517 {
518         int apic = per_cpu(x86_bios_cpu_apicid, smp_processor_id());
519
520         pr_info("Enabling APIC mode:  %s. Using %d I/O APICs, target cpus %lx\n",
521                 (apic_version[apic] == 0x14) ?
522                         "Physical Cluster" : "Logical Cluster",
523                 nr_ioapics, cpumask_bits(es7000_target_cpus())[0]);
524 }
525
526 static int es7000_apicid_to_node(int logical_apicid)
527 {
528         return 0;
529 }
530
531
532 static int es7000_cpu_present_to_apicid(int mps_cpu)
533 {
534         if (!mps_cpu)
535                 return boot_cpu_physical_apicid;
536         else if (mps_cpu < nr_cpu_ids)
537                 return per_cpu(x86_bios_cpu_apicid, mps_cpu);
538         else
539                 return BAD_APICID;
540 }
541
542 static int cpu_id;
543
544 static void es7000_apicid_to_cpu_present(int phys_apicid, physid_mask_t *retmap)
545 {
546         physid_set_mask_of_physid(cpu_id, retmap);
547         ++cpu_id;
548 }
549
550 /* Mapping from cpu number to logical apicid */
551 static int es7000_cpu_to_logical_apicid(int cpu)
552 {
553 #ifdef CONFIG_SMP
554         if (cpu >= nr_cpu_ids)
555                 return BAD_APICID;
556         return cpu_2_logical_apicid[cpu];
557 #else
558         return logical_smp_processor_id();
559 #endif
560 }
561
562 static void es7000_ioapic_phys_id_map(physid_mask_t *phys_map, physid_mask_t *retmap)
563 {
564         /* For clustered we don't have a good way to do this yet - hack */
565         physids_promote(0xFFL, retmap);
566 }
567
568 static int es7000_check_phys_apicid_present(int cpu_physical_apicid)
569 {
570         boot_cpu_physical_apicid = read_apic_id();
571         return 1;
572 }
573
574 static unsigned int es7000_cpu_mask_to_apicid(const struct cpumask *cpumask)
575 {
576         unsigned int round = 0;
577         int cpu, uninitialized_var(apicid);
578
579         /*
580          * The cpus in the mask must all be on the apic cluster.
581          */
582         for_each_cpu(cpu, cpumask) {
583                 int new_apicid = es7000_cpu_to_logical_apicid(cpu);
584
585                 if (round && APIC_CLUSTER(apicid) != APIC_CLUSTER(new_apicid)) {
586                         WARN(1, "Not a valid mask!");
587
588                         return BAD_APICID;
589                 }
590                 apicid = new_apicid;
591                 round++;
592         }
593         return apicid;
594 }
595
596 static unsigned int
597 es7000_cpu_mask_to_apicid_and(const struct cpumask *inmask,
598                               const struct cpumask *andmask)
599 {
600         int apicid = es7000_cpu_to_logical_apicid(0);
601         cpumask_var_t cpumask;
602
603         if (!alloc_cpumask_var(&cpumask, GFP_ATOMIC))
604                 return apicid;
605
606         cpumask_and(cpumask, inmask, andmask);
607         cpumask_and(cpumask, cpumask, cpu_online_mask);
608         apicid = es7000_cpu_mask_to_apicid(cpumask);
609
610         free_cpumask_var(cpumask);
611
612         return apicid;
613 }
614
615 static int es7000_phys_pkg_id(int cpuid_apic, int index_msb)
616 {
617         return cpuid_apic >> index_msb;
618 }
619
620 static int probe_es7000(void)
621 {
622         /* probed later in mptable/ACPI hooks */
623         return 0;
624 }
625
626 static int es7000_mps_ret;
627 static int es7000_mps_oem_check(struct mpc_table *mpc, char *oem,
628                 char *productid)
629 {
630         int ret = 0;
631
632         if (mpc->oemptr) {
633                 struct mpc_oemtable *oem_table =
634                         (struct mpc_oemtable *)mpc->oemptr;
635
636                 if (!strncmp(oem, "UNISYS", 6))
637                         ret = parse_unisys_oem((char *)oem_table);
638         }
639
640         es7000_mps_ret = ret;
641
642         return ret && !es7000_apic_is_cluster();
643 }
644
645 static int es7000_mps_oem_check_cluster(struct mpc_table *mpc, char *oem,
646                 char *productid)
647 {
648         int ret = es7000_mps_ret;
649
650         return ret && es7000_apic_is_cluster();
651 }
652
653 /* We've been warned by a false positive warning.Use __refdata to keep calm. */
654 struct apic __refdata apic_es7000_cluster = {
655
656         .name                           = "es7000",
657         .probe                          = probe_es7000,
658         .acpi_madt_oem_check            = es7000_acpi_madt_oem_check_cluster,
659         .apic_id_registered             = es7000_apic_id_registered,
660
661         .irq_delivery_mode              = dest_LowestPrio,
662         /* logical delivery broadcast to all procs: */
663         .irq_dest_mode                  = 1,
664
665         .target_cpus                    = target_cpus_cluster,
666         .disable_esr                    = 1,
667         .dest_logical                   = 0,
668         .check_apicid_used              = es7000_check_apicid_used,
669         .check_apicid_present           = es7000_check_apicid_present,
670
671         .vector_allocation_domain       = es7000_vector_allocation_domain,
672         .init_apic_ldr                  = es7000_init_apic_ldr_cluster,
673
674         .ioapic_phys_id_map             = es7000_ioapic_phys_id_map,
675         .setup_apic_routing             = es7000_setup_apic_routing,
676         .multi_timer_check              = NULL,
677         .apicid_to_node                 = es7000_apicid_to_node,
678         .cpu_to_logical_apicid          = es7000_cpu_to_logical_apicid,
679         .cpu_present_to_apicid          = es7000_cpu_present_to_apicid,
680         .apicid_to_cpu_present          = es7000_apicid_to_cpu_present,
681         .setup_portio_remap             = NULL,
682         .check_phys_apicid_present      = es7000_check_phys_apicid_present,
683         .enable_apic_mode               = es7000_enable_apic_mode,
684         .phys_pkg_id                    = es7000_phys_pkg_id,
685         .mps_oem_check                  = es7000_mps_oem_check_cluster,
686
687         .get_apic_id                    = es7000_get_apic_id,
688         .set_apic_id                    = NULL,
689         .apic_id_mask                   = 0xFF << 24,
690
691         .cpu_mask_to_apicid             = es7000_cpu_mask_to_apicid,
692         .cpu_mask_to_apicid_and         = es7000_cpu_mask_to_apicid_and,
693
694         .send_IPI_mask                  = es7000_send_IPI_mask,
695         .send_IPI_mask_allbutself       = NULL,
696         .send_IPI_allbutself            = es7000_send_IPI_allbutself,
697         .send_IPI_all                   = es7000_send_IPI_all,
698         .send_IPI_self                  = default_send_IPI_self,
699
700         .wakeup_secondary_cpu           = wakeup_secondary_cpu_via_mip,
701
702         .trampoline_phys_low            = 0x467,
703         .trampoline_phys_high           = 0x469,
704
705         .wait_for_init_deassert         = NULL,
706
707         /* Nothing to do for most platforms, since cleared by the INIT cycle: */
708         .smp_callin_clear_local_apic    = NULL,
709         .inquire_remote_apic            = default_inquire_remote_apic,
710
711         .read                           = native_apic_mem_read,
712         .write                          = native_apic_mem_write,
713         .icr_read                       = native_apic_icr_read,
714         .icr_write                      = native_apic_icr_write,
715         .wait_icr_idle                  = native_apic_wait_icr_idle,
716         .safe_wait_icr_idle             = native_safe_apic_wait_icr_idle,
717 };
718
719 struct apic __refdata apic_es7000 = {
720
721         .name                           = "es7000",
722         .probe                          = probe_es7000,
723         .acpi_madt_oem_check            = es7000_acpi_madt_oem_check,
724         .apic_id_registered             = es7000_apic_id_registered,
725
726         .irq_delivery_mode              = dest_Fixed,
727         /* phys delivery to target CPUs: */
728         .irq_dest_mode                  = 0,
729
730         .target_cpus                    = es7000_target_cpus,
731         .disable_esr                    = 1,
732         .dest_logical                   = 0,
733         .check_apicid_used              = es7000_check_apicid_used,
734         .check_apicid_present           = es7000_check_apicid_present,
735
736         .vector_allocation_domain       = es7000_vector_allocation_domain,
737         .init_apic_ldr                  = es7000_init_apic_ldr,
738
739         .ioapic_phys_id_map             = es7000_ioapic_phys_id_map,
740         .setup_apic_routing             = es7000_setup_apic_routing,
741         .multi_timer_check              = NULL,
742         .apicid_to_node                 = es7000_apicid_to_node,
743         .cpu_to_logical_apicid          = es7000_cpu_to_logical_apicid,
744         .cpu_present_to_apicid          = es7000_cpu_present_to_apicid,
745         .apicid_to_cpu_present          = es7000_apicid_to_cpu_present,
746         .setup_portio_remap             = NULL,
747         .check_phys_apicid_present      = es7000_check_phys_apicid_present,
748         .enable_apic_mode               = es7000_enable_apic_mode,
749         .phys_pkg_id                    = es7000_phys_pkg_id,
750         .mps_oem_check                  = es7000_mps_oem_check,
751
752         .get_apic_id                    = es7000_get_apic_id,
753         .set_apic_id                    = NULL,
754         .apic_id_mask                   = 0xFF << 24,
755
756         .cpu_mask_to_apicid             = es7000_cpu_mask_to_apicid,
757         .cpu_mask_to_apicid_and         = es7000_cpu_mask_to_apicid_and,
758
759         .send_IPI_mask                  = es7000_send_IPI_mask,
760         .send_IPI_mask_allbutself       = NULL,
761         .send_IPI_allbutself            = es7000_send_IPI_allbutself,
762         .send_IPI_all                   = es7000_send_IPI_all,
763         .send_IPI_self                  = default_send_IPI_self,
764
765         .trampoline_phys_low            = 0x467,
766         .trampoline_phys_high           = 0x469,
767
768         .wait_for_init_deassert         = es7000_wait_for_init_deassert,
769
770         /* Nothing to do for most platforms, since cleared by the INIT cycle: */
771         .smp_callin_clear_local_apic    = NULL,
772         .inquire_remote_apic            = default_inquire_remote_apic,
773
774         .read                           = native_apic_mem_read,
775         .write                          = native_apic_mem_write,
776         .icr_read                       = native_apic_icr_read,
777         .icr_write                      = native_apic_icr_write,
778         .wait_icr_idle                  = native_apic_wait_icr_idle,
779         .safe_wait_icr_idle             = native_safe_apic_wait_icr_idle,
780 };