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1da177e4 1/*
1da177e4
LT
2 * Copyright (C) 1995 Linus Torvalds
3 *
4 * Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999
5 *
6 * Memory region support
7 * David Parsons <orc@pell.chi.il.us>, July-August 1999
8 *
9 * Added E820 sanitization routine (removes overlapping memory regions);
10 * Brian Moyle <bmoyle@mvista.com>, February 2001
11 *
12 * Moved CPU detection code to cpu/${cpu}.c
13 * Patrick Mochel <mochel@osdl.org>, March 2002
14 *
15 * Provisions for empty E820 memory regions (reported by certain BIOSes).
16 * Alex Achenbach <xela@slit.de>, December 2002.
17 *
18 */
19
20/*
21 * This file handles the architecture-dependent parts of initialization
22 */
23
24#include <linux/sched.h>
25#include <linux/mm.h>
05b79bdc 26#include <linux/mmzone.h>
894673ee 27#include <linux/screen_info.h>
1da177e4
LT
28#include <linux/ioport.h>
29#include <linux/acpi.h>
efafc8b2 30#include <linux/sfi.h>
1da177e4
LT
31#include <linux/apm_bios.h>
32#include <linux/initrd.h>
33#include <linux/bootmem.h>
72d7c3b3 34#include <linux/memblock.h>
1da177e4
LT
35#include <linux/seq_file.h>
36#include <linux/console.h>
1da177e4
LT
37#include <linux/root_dev.h>
38#include <linux/highmem.h>
186f4360 39#include <linux/export.h>
1da177e4
LT
40#include <linux/efi.h>
41#include <linux/init.h>
42#include <linux/edd.h>
138fe4e0 43#include <linux/iscsi_ibft.h>
1da177e4 44#include <linux/nodemask.h>
1bc3b91a 45#include <linux/kexec.h>
e9928674 46#include <linux/dmi.h>
22a9835c 47#include <linux/pfn.h>
376ff035 48#include <linux/pci.h>
46d671b5 49#include <asm/pci-direct.h>
f212ec4b 50#include <linux/init_ohci1394_dma.h>
790c73f6 51#include <linux/kvm_para.h>
0a2b9a6e 52#include <linux/dma-contiguous.h>
1bc3b91a 53
46d671b5
YL
54#include <linux/errno.h>
55#include <linux/kernel.h>
56#include <linux/stddef.h>
57#include <linux/unistd.h>
58#include <linux/ptrace.h>
46d671b5
YL
59#include <linux/user.h>
60#include <linux/delay.h>
46d671b5
YL
61
62#include <linux/kallsyms.h>
46d671b5
YL
63#include <linux/cpufreq.h>
64#include <linux/dma-mapping.h>
65#include <linux/ctype.h>
66#include <linux/uaccess.h>
f80de0c3 67#include <linux/security.h>
46d671b5
YL
68
69#include <linux/percpu.h>
70#include <linux/crash_dump.h>
69575d38 71#include <linux/tboot.h>
b3c869d3 72#include <linux/jiffies.h>
b9d05200 73#include <linux/mem_encrypt.h>
46d671b5 74
1b5aeebf 75#include <linux/usb/xhci-dbgp.h>
1da177e4 76#include <video/edid.h>
1bc3b91a 77
093af8d7 78#include <asm/mtrr.h>
9635b47d 79#include <asm/apic.h>
084ee1c6 80#include <asm/realmode.h>
66441bd3 81#include <asm/e820/api.h>
1da177e4
LT
82#include <asm/mpspec.h>
83#include <asm/setup.h>
55f26239 84#include <asm/efi.h>
8e6dafd6
IM
85#include <asm/timer.h>
86#include <asm/i8259.h>
1da177e4
LT
87#include <asm/sections.h>
88#include <asm/io_apic.h>
89#include <asm/ist.h>
1164dd00 90#include <asm/setup_arch.h>
ce3fe6b2 91#include <asm/bios_ebda.h>
00bf4098 92#include <asm/cacheflush.h>
2fde61fd 93#include <asm/processor.h>
cc9f7a0c 94#include <asm/bugs.h>
ef7f0d6a 95#include <asm/kasan.h>
1da177e4 96
46d671b5 97#include <asm/vsyscall.h>
6e5385d4 98#include <asm/cpu.h>
46d671b5
YL
99#include <asm/desc.h>
100#include <asm/dma.h>
46a7fa27 101#include <asm/iommu.h>
1d9b16d1 102#include <asm/gart.h>
46d671b5
YL
103#include <asm/mmu_context.h>
104#include <asm/proto.h>
105
46d671b5 106#include <asm/paravirt.h>
88b094fb 107#include <asm/hypervisor.h>
fd699c76 108#include <asm/olpc_ofw.h>
46d671b5
YL
109
110#include <asm/percpu.h>
46d671b5
YL
111#include <asm/topology.h>
112#include <asm/apicdef.h>
23ac4ae8 113#include <asm/amd_nb.h>
a2202aa2 114#include <asm/mce.h>
f49aa448 115#include <asm/alternative.h>
da6b737b 116#include <asm/prom.h>
9a2bc335 117#include <asm/microcode.h>
c1192f84 118#include <asm/mmu_context.h>
0483e1fa 119#include <asm/kaslr.h>
ee9f8fce 120#include <asm/unwind.h>
46d671b5 121
2b72394e 122/*
66520ebc
JS
123 * max_low_pfn_mapped: highest direct mapped pfn under 4GB
124 * max_pfn_mapped: highest direct mapped pfn over 4GB
125 *
09821ff1 126 * The direct mapping only covers E820_TYPE_RAM regions, so the ranges and gaps are
66520ebc 127 * represented by pfn_mapped
2b72394e
PE
128 */
129unsigned long max_low_pfn_mapped;
130unsigned long max_pfn_mapped;
131
e808bae2 132#ifdef CONFIG_DMI
796216a5 133RESERVE_BRK(dmi_alloc, 65536);
e808bae2 134#endif
796216a5 135
c0b5842a 136
93dbda7c
JF
137static __initdata unsigned long _brk_start = (unsigned long)__brk_base;
138unsigned long _brk_end = (unsigned long)__brk_base;
139
217b8ce8 140struct boot_params boot_params;
217b8ce8 141
4046d6e8
LT
142/*
143 * Machine setup..
144 */
145static struct resource data_resource = {
146 .name = "Kernel data",
147 .start = 0,
148 .end = 0,
149 .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM
150};
151
152static struct resource code_resource = {
153 .name = "Kernel code",
154 .start = 0,
155 .end = 0,
156 .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM
157};
158
159static struct resource bss_resource = {
160 .name = "Kernel bss",
161 .start = 0,
162 .end = 0,
163 .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM
164};
165
166
7dea23ec 167#ifdef CONFIG_X86_32
6415813b
MK
168/* cpu data as detected by the assembly code in head_32.S */
169struct cpuinfo_x86 new_cpu_data;
170
1da177e4 171/* common cpu data for all cpus */
6415813b 172struct cpuinfo_x86 boot_cpu_data __read_mostly;
129f6946 173EXPORT_SYMBOL(boot_cpu_data);
1da177e4 174
0c254e38
AS
175unsigned int def_to_bigsmp;
176
1da177e4
LT
177/* for MCA, but anyone else can use it if they want */
178unsigned int machine_id;
179unsigned int machine_submodel_id;
180unsigned int BIOS_revision;
1da177e4 181
7dea23ec
YL
182struct apm_info apm_info;
183EXPORT_SYMBOL(apm_info);
184
185#if defined(CONFIG_X86_SPEEDSTEP_SMI) || \
186 defined(CONFIG_X86_SPEEDSTEP_SMI_MODULE)
187struct ist_info ist_info;
188EXPORT_SYMBOL(ist_info);
189#else
190struct ist_info ist_info;
191#endif
192
193#else
ed26dbe5
JF
194struct cpuinfo_x86 boot_cpu_data __read_mostly = {
195 .x86_phys_bits = MAX_PHYSMEM_BITS,
196};
7dea23ec
YL
197EXPORT_SYMBOL(boot_cpu_data);
198#endif
199
200
201#if !defined(CONFIG_X86_PAE) || defined(CONFIG_X86_64)
404f6aac 202__visible unsigned long mmu_cr4_features __ro_after_init;
7dea23ec 203#else
404f6aac 204__visible unsigned long mmu_cr4_features __ro_after_init = X86_CR4_PAE;
7dea23ec
YL
205#endif
206
5031296c
PA
207/* Boot loader ID and version as integers, for the benefit of proc_dointvec */
208int bootloader_type, bootloader_version;
1da177e4 209
1da177e4
LT
210/*
211 * Setup options
212 */
1da177e4 213struct screen_info screen_info;
129f6946 214EXPORT_SYMBOL(screen_info);
1da177e4 215struct edid_info edid_info;
5e518d76 216EXPORT_SYMBOL_GPL(edid_info);
1da177e4 217
1da177e4
LT
218extern int root_mountflags;
219
e44b7b75 220unsigned long saved_video_mode;
1da177e4 221
cf8fa920 222#define RAMDISK_IMAGE_START_MASK 0x07FF
1da177e4 223#define RAMDISK_PROMPT_FLAG 0x8000
cf8fa920 224#define RAMDISK_LOAD_FLAG 0x4000
1da177e4 225
4e498b66 226static char __initdata command_line[COMMAND_LINE_SIZE];
516cbf37
TB
227#ifdef CONFIG_CMDLINE_BOOL
228static char __initdata builtin_cmdline[COMMAND_LINE_SIZE] = CONFIG_CMDLINE;
229#endif
1da177e4 230
1da177e4
LT
231#if defined(CONFIG_EDD) || defined(CONFIG_EDD_MODULE)
232struct edd edd;
233#ifdef CONFIG_EDD_MODULE
234EXPORT_SYMBOL(edd);
235#endif
236/**
237 * copy_edd() - Copy the BIOS EDD information
238 * from boot_params into a safe place.
239 *
240 */
9eaa192d 241static inline void __init copy_edd(void)
1da177e4 242{
30c82645
PA
243 memcpy(edd.mbr_signature, boot_params.edd_mbr_sig_buffer,
244 sizeof(edd.mbr_signature));
245 memcpy(edd.edd_info, boot_params.eddbuf, sizeof(edd.edd_info));
246 edd.mbr_signature_nr = boot_params.edd_mbr_sig_buf_entries;
247 edd.edd_info_nr = boot_params.eddbuf_entries;
1da177e4
LT
248}
249#else
9eaa192d 250static inline void __init copy_edd(void)
1da177e4
LT
251{
252}
253#endif
254
5368a2be
PA
255void * __init extend_brk(size_t size, size_t align)
256{
257 size_t mask = align - 1;
258 void *ret;
259
260 BUG_ON(_brk_start == 0);
261 BUG_ON(align & mask);
262
263 _brk_end = (_brk_end + mask) & ~mask;
264 BUG_ON((char *)(_brk_end + size) > __brk_limit);
265
266 ret = (void *)_brk_end;
267 _brk_end += size;
268
269 memset(ret, 0, size);
270
271 return ret;
272}
273
148b2098 274#ifdef CONFIG_X86_32
e5f15b45 275static void __init cleanup_highmap(void)
f005fe12
YL
276{
277}
854c879f
PE
278#endif
279
5368a2be
PA
280static void __init reserve_brk(void)
281{
282 if (_brk_end > _brk_start)
fc8d7826
AD
283 memblock_reserve(__pa_symbol(_brk_start),
284 _brk_end - _brk_start);
5368a2be
PA
285
286 /* Mark brk area as locked down and no longer taking any
287 new allocations */
288 _brk_start = 0;
289}
290
5aa3d718
BP
291u64 relocated_ramdisk;
292
cf8fa920
PA
293#ifdef CONFIG_BLK_DEV_INITRD
294
a8a51a88
YL
295static u64 __init get_ramdisk_image(void)
296{
297 u64 ramdisk_image = boot_params.hdr.ramdisk_image;
298
ee92d815
YL
299 ramdisk_image |= (u64)boot_params.ext_ramdisk_image << 32;
300
a8a51a88
YL
301 return ramdisk_image;
302}
303static u64 __init get_ramdisk_size(void)
304{
305 u64 ramdisk_size = boot_params.hdr.ramdisk_size;
306
ee92d815
YL
307 ramdisk_size |= (u64)boot_params.ext_ramdisk_size << 32;
308
a8a51a88
YL
309 return ramdisk_size;
310}
311
eb1379cb 312static void __init relocate_initrd(void)
cf8fa920 313{
c967da6a 314 /* Assume only end is not page aligned */
a8a51a88
YL
315 u64 ramdisk_image = get_ramdisk_image();
316 u64 ramdisk_size = get_ramdisk_size();
c967da6a 317 u64 area_size = PAGE_ALIGN(ramdisk_size);
cf8fa920 318
e8c57d40 319 /* We need to move the initrd down into directly mapped mem */
5aa3d718
BP
320 relocated_ramdisk = memblock_find_in_range(0, PFN_PHYS(max_pfn_mapped),
321 area_size, PAGE_SIZE);
cf8fa920 322
5aa3d718 323 if (!relocated_ramdisk)
3945e2c9 324 panic("Cannot find place for new RAMDISK of size %lld\n",
5aa3d718 325 ramdisk_size);
3945e2c9 326
e8c57d40 327 /* Note: this includes all the mem currently occupied by
cf8fa920 328 the initrd, we rely on that fact to keep the data intact. */
5aa3d718
BP
329 memblock_reserve(relocated_ramdisk, area_size);
330 initrd_start = relocated_ramdisk + PAGE_OFFSET;
cf8fa920 331 initrd_end = initrd_start + ramdisk_size;
365811d6 332 printk(KERN_INFO "Allocated new RAMDISK: [mem %#010llx-%#010llx]\n",
5aa3d718 333 relocated_ramdisk, relocated_ramdisk + ramdisk_size - 1);
cf8fa920 334
5dd2c4bd
MS
335 copy_from_early_mem((void *)initrd_start, ramdisk_image, ramdisk_size);
336
365811d6
BH
337 printk(KERN_INFO "Move RAMDISK from [mem %#010llx-%#010llx] to"
338 " [mem %#010llx-%#010llx]\n",
ba5b14cc 339 ramdisk_image, ramdisk_image + ramdisk_size - 1,
5aa3d718 340 relocated_ramdisk, relocated_ramdisk + ramdisk_size - 1);
eb1379cb 341}
9a27f5c5 342
1b8c78be
YL
343static void __init early_reserve_initrd(void)
344{
345 /* Assume only end is not page aligned */
a8a51a88
YL
346 u64 ramdisk_image = get_ramdisk_image();
347 u64 ramdisk_size = get_ramdisk_size();
1b8c78be
YL
348 u64 ramdisk_end = PAGE_ALIGN(ramdisk_image + ramdisk_size);
349
350 if (!boot_params.hdr.type_of_loader ||
351 !ramdisk_image || !ramdisk_size)
352 return; /* No initrd provided by bootloader */
353
354 memblock_reserve(ramdisk_image, ramdisk_end - ramdisk_image);
355}
eb1379cb
YL
356static void __init reserve_initrd(void)
357{
c967da6a 358 /* Assume only end is not page aligned */
a8a51a88
YL
359 u64 ramdisk_image = get_ramdisk_image();
360 u64 ramdisk_size = get_ramdisk_size();
c967da6a 361 u64 ramdisk_end = PAGE_ALIGN(ramdisk_image + ramdisk_size);
e8c57d40 362 u64 mapped_size;
eb1379cb
YL
363
364 if (!boot_params.hdr.type_of_loader ||
365 !ramdisk_image || !ramdisk_size)
366 return; /* No initrd provided by bootloader */
367
368 initrd_start = 0;
369
595ad9af 370 mapped_size = memblock_mem_size(max_pfn_mapped);
e8c57d40 371 if (ramdisk_size >= (mapped_size>>1))
ab7b64e9
PJ
372 panic("initrd too large to handle, "
373 "disabling initrd (%lld needed, %lld available)\n",
e8c57d40 374 ramdisk_size, mapped_size>>1);
eb1379cb 375
365811d6
BH
376 printk(KERN_INFO "RAMDISK: [mem %#010llx-%#010llx]\n", ramdisk_image,
377 ramdisk_end - 1);
eb1379cb 378
74f27655 379 if (pfn_range_is_mapped(PFN_DOWN(ramdisk_image),
e8c57d40
YL
380 PFN_DOWN(ramdisk_end))) {
381 /* All are mapped, easy case */
eb1379cb
YL
382 initrd_start = ramdisk_image + PAGE_OFFSET;
383 initrd_end = initrd_start + ramdisk_size;
384 return;
385 }
386
eb1379cb 387 relocate_initrd();
8c5dd8f4 388
24aa0788 389 memblock_free(ramdisk_image, ramdisk_end - ramdisk_image);
cf8fa920 390}
af06f8b7 391
225c37d7 392#else
1b8c78be
YL
393static void __init early_reserve_initrd(void)
394{
395}
eb1379cb 396static void __init reserve_initrd(void)
225c37d7
YL
397{
398}
cf8fa920
PA
399#endif /* CONFIG_BLK_DEV_INITRD */
400
29f784e3 401static void __init parse_setup_data(void)
257b0fde
YL
402{
403 struct setup_data *data;
30e46b57 404 u64 pa_data, pa_next;
257b0fde 405
257b0fde
YL
406 pa_data = boot_params.hdr.setup_data;
407 while (pa_data) {
7389882c 408 u32 data_len, data_type;
f1c2b357 409
7389882c 410 data = early_memremap(pa_data, sizeof(*data));
f1c2b357 411 data_len = data->len + sizeof(struct setup_data);
30e46b57
LC
412 data_type = data->type;
413 pa_next = data->next;
8d4a40bc 414 early_memunmap(data, sizeof(*data));
f1c2b357 415
30e46b57 416 switch (data_type) {
257b0fde 417 case SETUP_E820_EXT:
914053c0 418 e820__memory_setup_extended(pa_data, data_len);
257b0fde 419 break;
da6b737b
SAS
420 case SETUP_DTB:
421 add_dtb(pa_data);
257b0fde 422 break;
1fec0533
DY
423 case SETUP_EFI:
424 parse_efi_setup(pa_data, data_len);
425 break;
257b0fde
YL
426 default:
427 break;
428 }
30e46b57 429 pa_data = pa_next;
257b0fde
YL
430 }
431}
432
a9ce6bc1 433static void __init memblock_x86_reserve_range_setup_data(void)
a0a0becd
YL
434{
435 struct setup_data *data;
436 u64 pa_data;
a0a0becd 437
a0a0becd
YL
438 pa_data = boot_params.hdr.setup_data;
439 while (pa_data) {
88b4c146 440 data = early_memremap(pa_data, sizeof(*data));
24aa0788 441 memblock_reserve(pa_data, sizeof(*data) + data->len);
a0a0becd 442 pa_data = data->next;
8d4a40bc 443 early_memunmap(data, sizeof(*data));
a0a0becd
YL
444 }
445}
446
ccb4defa
YL
447/*
448 * --------- Crashkernel reservation ------------------------------
449 */
450
2965faa5 451#ifdef CONFIG_KEXEC_CORE
32105f7f 452
606134f7
BP
453/* 16M alignment for crash kernel regions */
454#define CRASH_ALIGN (16 << 20)
455
7f8595bf
PA
456/*
457 * Keep the crash kernel below this limit. On 32 bits earlier kernels
458 * would limit the kernel to the low 512 MiB due to mapping restrictions.
55a20ee7 459 * On 64bit, old kexec-tools need to under 896MiB.
7f8595bf
PA
460 */
461#ifdef CONFIG_X86_32
97eac21b
BP
462# define CRASH_ADDR_LOW_MAX (512 << 20)
463# define CRASH_ADDR_HIGH_MAX (512 << 20)
7f8595bf 464#else
97eac21b
BP
465# define CRASH_ADDR_LOW_MAX (896UL << 20)
466# define CRASH_ADDR_HIGH_MAX MAXMEM
7f8595bf
PA
467#endif
468
eb6db83d 469static int __init reserve_crashkernel_low(void)
0212f915
YL
470{
471#ifdef CONFIG_X86_64
f56d5578 472 unsigned long long base, low_base = 0, low_size = 0;
0212f915 473 unsigned long total_low_mem;
0212f915
YL
474 int ret;
475
97eac21b
BP
476 total_low_mem = memblock_mem_size(1UL << (32 - PAGE_SHIFT));
477
adbc742b 478 /* crashkernel=Y,low */
97eac21b 479 ret = parse_crashkernel_low(boot_command_line, total_low_mem, &low_size, &base);
f56d5578 480 if (ret) {
c729de8f
YL
481 /*
482 * two parts from lib/swiotlb.c:
94fb9334
JR
483 * -swiotlb size: user-specified with swiotlb= or default.
484 *
485 * -swiotlb overflow buffer: now hardcoded to 32k. We round it
486 * to 8M for other buffers that may need to stay low too. Also
487 * make sure we allocate enough extra low memory so that we
488 * don't run out of DMA buffers for 32-bit devices.
c729de8f 489 */
97eac21b 490 low_size = max(swiotlb_size_or_default() + (8UL << 20), 256UL << 20);
c729de8f 491 } else {
adbc742b 492 /* passed with crashkernel=0,low ? */
c729de8f 493 if (!low_size)
eb6db83d 494 return 0;
c729de8f 495 }
0212f915 496
fe2d48b8 497 low_base = memblock_find_in_range(0, 1ULL << 32, low_size, CRASH_ALIGN);
0212f915 498 if (!low_base) {
eb6db83d
BH
499 pr_err("Cannot reserve %ldMB crashkernel low memory, please try smaller size.\n",
500 (unsigned long)(low_size >> 20));
501 return -ENOMEM;
0212f915 502 }
0212f915 503
6f376057
BP
504 ret = memblock_reserve(low_base, low_size);
505 if (ret) {
506 pr_err("%s: Error reserving crashkernel low memblock.\n", __func__);
507 return ret;
0212f915
YL
508 }
509
0212f915 510 pr_info("Reserving %ldMB of low memory at %ldMB for crashkernel (System low RAM: %ldMB)\n",
97eac21b
BP
511 (unsigned long)(low_size >> 20),
512 (unsigned long)(low_base >> 20),
513 (unsigned long)(total_low_mem >> 20));
514
0212f915
YL
515 crashk_low_res.start = low_base;
516 crashk_low_res.end = low_base + low_size - 1;
517 insert_resource(&iomem_resource, &crashk_low_res);
7f8595bf 518#endif
eb6db83d 519 return 0;
0212f915 520}
7f8595bf 521
29f784e3 522static void __init reserve_crashkernel(void)
ccb4defa 523{
f56d5578 524 unsigned long long crash_size, crash_base, total_mem;
55a20ee7 525 bool high = false;
ccb4defa
YL
526 int ret;
527
09c71bfd 528 total_mem = memblock_phys_mem_size();
ccb4defa 529
55a20ee7 530 /* crashkernel=XM */
97eac21b 531 ret = parse_crashkernel(boot_command_line, total_mem, &crash_size, &crash_base);
55a20ee7 532 if (ret != 0 || crash_size <= 0) {
adbc742b 533 /* crashkernel=X,high */
55a20ee7 534 ret = parse_crashkernel_high(boot_command_line, total_mem,
97eac21b 535 &crash_size, &crash_base);
55a20ee7
YL
536 if (ret != 0 || crash_size <= 0)
537 return;
538 high = true;
539 }
32105f7f
BW
540
541 /* 0 means: find the address automatically */
542 if (crash_base <= 0) {
9f4c1396 543 /*
a8d4c824
XP
544 * Set CRASH_ADDR_LOW_MAX upper bound for crash memory,
545 * as old kexec-tools loads bzImage below that, unless
546 * "crashkernel=size[KMG],high" is specified.
9f4c1396 547 */
606134f7 548 crash_base = memblock_find_in_range(CRASH_ALIGN,
97eac21b
BP
549 high ? CRASH_ADDR_HIGH_MAX
550 : CRASH_ADDR_LOW_MAX,
606134f7 551 crash_size, CRASH_ALIGN);
1f5026a7 552 if (!crash_base) {
44280733 553 pr_info("crashkernel reservation failed - No suitable area found.\n");
ccb4defa
YL
554 return;
555 }
0212f915 556
32105f7f 557 } else {
44280733
YL
558 unsigned long long start;
559
9f4c1396 560 start = memblock_find_in_range(crash_base,
97eac21b
BP
561 crash_base + crash_size,
562 crash_size, 1 << 20);
44280733
YL
563 if (start != crash_base) {
564 pr_info("crashkernel reservation failed - memory is in use.\n");
ccb4defa
YL
565 return;
566 }
32105f7f 567 }
6f376057
BP
568 ret = memblock_reserve(crash_base, crash_size);
569 if (ret) {
570 pr_err("%s: Error reserving crashkernel memblock.\n", __func__);
571 return;
572 }
ccb4defa 573
eb6db83d
BH
574 if (crash_base >= (1ULL << 32) && reserve_crashkernel_low()) {
575 memblock_free(crash_base, crash_size);
576 return;
577 }
ccb4defa 578
f56d5578
BP
579 pr_info("Reserving %ldMB of memory at %ldMB for crashkernel (System RAM: %ldMB)\n",
580 (unsigned long)(crash_size >> 20),
581 (unsigned long)(crash_base >> 20),
582 (unsigned long)(total_mem >> 20));
ccb4defa 583
32105f7f
BW
584 crashk_res.start = crash_base;
585 crashk_res.end = crash_base + crash_size - 1;
586 insert_resource(&iomem_resource, &crashk_res);
ccb4defa
YL
587}
588#else
29f784e3 589static void __init reserve_crashkernel(void)
ccb4defa
YL
590{
591}
592#endif
593
bdba0e70
YL
594static struct resource standard_io_resources[] = {
595 { .name = "dma1", .start = 0x00, .end = 0x1f,
596 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
597 { .name = "pic1", .start = 0x20, .end = 0x21,
598 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
599 { .name = "timer0", .start = 0x40, .end = 0x43,
600 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
601 { .name = "timer1", .start = 0x50, .end = 0x53,
602 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
603 { .name = "keyboard", .start = 0x60, .end = 0x60,
604 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
605 { .name = "keyboard", .start = 0x64, .end = 0x64,
606 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
607 { .name = "dma page reg", .start = 0x80, .end = 0x8f,
608 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
609 { .name = "pic2", .start = 0xa0, .end = 0xa1,
610 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
611 { .name = "dma2", .start = 0xc0, .end = 0xdf,
612 .flags = IORESOURCE_BUSY | IORESOURCE_IO },
613 { .name = "fpu", .start = 0xf0, .end = 0xff,
614 .flags = IORESOURCE_BUSY | IORESOURCE_IO }
615};
616
8fee697d 617void __init reserve_standard_io_resources(void)
bdba0e70
YL
618{
619 int i;
620
621 /* request I/O space for devices used on all i[345]86 PCs */
622 for (i = 0; i < ARRAY_SIZE(standard_io_resources); i++)
623 request_resource(&ioport_resource, &standard_io_resources[i]);
624
625}
626
042be38e
YL
627static __init void reserve_ibft_region(void)
628{
629 unsigned long addr, size = 0;
630
631 addr = find_ibft_region(&size);
632
633 if (size)
24aa0788 634 memblock_reserve(addr, size);
042be38e
YL
635}
636
a9acc536
JB
637static bool __init snb_gfx_workaround_needed(void)
638{
e43b3cec 639#ifdef CONFIG_PCI
a9acc536
JB
640 int i;
641 u16 vendor, devid;
ab3cd867 642 static const __initconst u16 snb_ids[] = {
a9acc536
JB
643 0x0102,
644 0x0112,
645 0x0122,
646 0x0106,
647 0x0116,
648 0x0126,
649 0x010a,
650 };
651
652 /* Assume no if something weird is going on with PCI */
653 if (!early_pci_allowed())
654 return false;
655
656 vendor = read_pci_config_16(0, 2, 0, PCI_VENDOR_ID);
657 if (vendor != 0x8086)
658 return false;
659
660 devid = read_pci_config_16(0, 2, 0, PCI_DEVICE_ID);
661 for (i = 0; i < ARRAY_SIZE(snb_ids); i++)
662 if (devid == snb_ids[i])
663 return true;
e43b3cec 664#endif
a9acc536
JB
665
666 return false;
667}
668
669/*
670 * Sandy Bridge graphics has trouble with certain ranges, exclude
671 * them from allocation.
672 */
673static void __init trim_snb_memory(void)
674{
ab3cd867 675 static const __initconst unsigned long bad_pages[] = {
a9acc536
JB
676 0x20050000,
677 0x20110000,
678 0x20130000,
679 0x20138000,
680 0x40004000,
681 };
682 int i;
683
684 if (!snb_gfx_workaround_needed())
685 return;
686
687 printk(KERN_DEBUG "reserving inaccessible SNB gfx pages\n");
688
689 /*
690 * Reserve all memory below the 1 MB mark that has not
691 * already been reserved.
692 */
693 memblock_reserve(0, 1<<20);
694
695 for (i = 0; i < ARRAY_SIZE(bad_pages); i++) {
696 if (memblock_reserve(bad_pages[i], PAGE_SIZE))
697 printk(KERN_WARNING "failed to reserve 0x%08lx\n",
698 bad_pages[i]);
699 }
700}
701
702/*
703 * Here we put platform-specific memory range workarounds, i.e.
704 * memory known to be corrupt or otherwise in need to be reserved on
705 * specific platforms.
706 *
707 * If this gets used more widely it could use a real dispatch mechanism.
708 */
709static void __init trim_platform_memory_ranges(void)
710{
711 trim_snb_memory();
712}
713
1b5576e6
YL
714static void __init trim_bios_range(void)
715{
716 /*
717 * A special case is the first 4Kb of memory;
718 * This is a BIOS owned area, not kernel ram, but generally
719 * not listed as such in the E820 table.
d0cd7425
PA
720 *
721 * This typically reserves additional memory (64KiB by default)
722 * since some BIOSes are known to corrupt low memory. See the
9ea77bdb 723 * Kconfig help text for X86_RESERVE_LOW.
1b5576e6 724 */
09821ff1 725 e820__range_update(0, PAGE_SIZE, E820_TYPE_RAM, E820_TYPE_RESERVED);
d0cd7425 726
1b5576e6
YL
727 /*
728 * special case: Some BIOSen report the PC BIOS
729 * area (640->1Mb) as ram even though it is not.
730 * take them out.
731 */
09821ff1 732 e820__range_remove(BIOS_BEGIN, BIOS_END - BIOS_BEGIN, E820_TYPE_RAM, 1);
a9acc536 733
f9748fa0 734 e820__update_table(e820_table);
1b5576e6
YL
735}
736
b422a309
YL
737/* called before trim_bios_range() to spare extra sanitize */
738static void __init e820_add_kernel_range(void)
739{
740 u64 start = __pa_symbol(_text);
741 u64 size = __pa_symbol(_end) - start;
742
743 /*
09821ff1 744 * Complain if .text .data and .bss are not marked as E820_TYPE_RAM and
b422a309
YL
745 * attempt to fix it by adding the range. We may have a confused BIOS,
746 * or the user may have used memmap=exactmap or memmap=xxM$yyM to
747 * exclude kernel range. If we really are running on top non-RAM,
748 * we will crash later anyways.
749 */
09821ff1 750 if (e820__mapped_all(start, start + size, E820_TYPE_RAM))
b422a309
YL
751 return;
752
09821ff1
IM
753 pr_warn(".text .data .bss are not marked as E820_TYPE_RAM!\n");
754 e820__range_remove(start, size, E820_TYPE_RAM, 0);
755 e820__range_add(start, size, E820_TYPE_RAM);
b422a309
YL
756}
757
95c96084
PA
758static unsigned reserve_low = CONFIG_X86_RESERVE_LOW << 10;
759
9ea77bdb
PA
760static int __init parse_reservelow(char *p)
761{
762 unsigned long long size;
763
764 if (!p)
765 return -EINVAL;
766
767 size = memparse(p, &p);
768
769 if (size < 4096)
770 size = 4096;
771
772 if (size > 640*1024)
773 size = 640*1024;
774
775 reserve_low = size;
776
777 return 0;
778}
779
780early_param("reservelow", parse_reservelow);
781
95c96084
PA
782static void __init trim_low_memory_range(void)
783{
784 memblock_reserve(0, ALIGN(reserve_low, PAGE_SIZE));
785}
786
f32360ef
KC
787/*
788 * Dump out kernel offset information on panic.
789 */
790static int
791dump_kernel_offset(struct notifier_block *self, unsigned long v, void *p)
792{
78cac48c
BP
793 if (kaslr_enabled()) {
794 pr_emerg("Kernel Offset: 0x%lx from 0x%lx (relocation range: 0x%lx-0x%lx)\n",
4545c898 795 kaslr_offset(),
78cac48c
BP
796 __START_KERNEL,
797 __START_KERNEL_map,
798 MODULES_VADDR-1);
799 } else {
800 pr_emerg("Kernel Offset: disabled\n");
801 }
f32360ef
KC
802
803 return 0;
804}
805
1da177e4
LT
806/*
807 * Determine if we were loaded by an EFI loader. If so, then we have also been
808 * passed the efi memmap, systab, etc., so we should use these data structures
809 * for initialization. Note, the efi init code path is determined by the
810 * global efi_enabled. This allows the same kernel image to be used on existing
811 * systems (with a traditional BIOS) as well as on EFI systems.
812 */
76934ed4
YL
813/*
814 * setup_arch - architecture-specific boot-time initializations
815 *
816 * Note: On x86_64, fixmaps are ready for use even before this is called.
817 */
818
1da177e4
LT
819void __init setup_arch(char **cmdline_p)
820{
6c902b65
YL
821 memblock_reserve(__pa_symbol(_text),
822 (unsigned long)__bss_stop - (unsigned long)_text);
823
e0e5efb4
AK
824 /*
825 * Make sure page 0 is always reserved because on systems with
826 * L1TF its contents can be leaked to user processes.
827 */
828 memblock_reserve(0, PAGE_SIZE);
829
1b8c78be
YL
830 early_reserve_initrd();
831
6c902b65
YL
832 /*
833 * At this point everything still needed from the boot loader
834 * or BIOS or kernel text should be early reserved or marked not
835 * RAM in e820. All other memory is free game.
836 */
837
76934ed4 838#ifdef CONFIG_X86_32
1da177e4 839 memcpy(&boot_cpu_data, &new_cpu_data, sizeof(new_cpu_data));
b40827fa
BP
840
841 /*
842 * copy kernel address range established so far and switch
843 * to the proper swapper page table
844 */
845 clone_pgd_range(swapper_pg_dir + KERNEL_PGD_BOUNDARY,
846 initial_page_table + KERNEL_PGD_BOUNDARY,
847 KERNEL_PGD_PTRS);
848
849 load_cr3(swapper_pg_dir);
2075244f
BD
850 /*
851 * Note: Quark X1000 CPUs advertise PGE incorrectly and require
852 * a cr3 based tlb flush, so the following __flush_tlb_all()
853 * will not flush anything because the cpu quirk which clears
854 * X86_FEATURE_PGE has not been invoked yet. Though due to the
855 * load_cr3() above the TLB has been flushed already. The
856 * quirk is invoked before subsequent calls to __flush_tlb_all()
857 * so proper operation is guaranteed.
858 */
b40827fa 859 __flush_tlb_all();
76934ed4
YL
860#else
861 printk(KERN_INFO "Command line: %s\n", boot_command_line);
862#endif
1da177e4 863
9863c90f
AK
864 /*
865 * If we have OLPC OFW, we might end up relocating the fixmap due to
866 * reserve_top(), so do this before touching the ioremap area.
867 */
fd699c76
AS
868 olpc_ofw_detect();
869
433f8924 870 idt_setup_early_traps();
9e882c92 871 early_cpu_init();
1a98fd14
JF
872 early_ioremap_init();
873
fd699c76
AS
874 setup_olpc_ofw_pgd();
875
30c82645
PA
876 ROOT_DEV = old_decode_dev(boot_params.hdr.root_dev);
877 screen_info = boot_params.screen_info;
878 edid_info = boot_params.edid_info;
76934ed4 879#ifdef CONFIG_X86_32
30c82645
PA
880 apm_info.bios = boot_params.apm_bios_info;
881 ist_info = boot_params.ist_info;
76934ed4
YL
882#endif
883 saved_video_mode = boot_params.hdr.vid_mode;
30c82645 884 bootloader_type = boot_params.hdr.type_of_loader;
5031296c
PA
885 if ((bootloader_type >> 4) == 0xe) {
886 bootloader_type &= 0xf;
887 bootloader_type |= (boot_params.hdr.ext_loader_type+0x10) << 4;
888 }
889 bootloader_version = bootloader_type & 0xf;
890 bootloader_version |= boot_params.hdr.ext_loader_ver << 4;
1da177e4
LT
891
892#ifdef CONFIG_BLK_DEV_RAM
30c82645
PA
893 rd_image_start = boot_params.hdr.ram_size & RAMDISK_IMAGE_START_MASK;
894 rd_prompt = ((boot_params.hdr.ram_size & RAMDISK_PROMPT_FLAG) != 0);
895 rd_doload = ((boot_params.hdr.ram_size & RAMDISK_LOAD_FLAG) != 0);
1da177e4 896#endif
7465252e
YL
897#ifdef CONFIG_EFI
898 if (!strncmp((char *)&boot_params.efi_info.efi_loader_signature,
9402973d 899 EFI32_LOADER_SIGNATURE, 4)) {
3e909599 900 set_bit(EFI_BOOT, &efi.flags);
1adbfa35 901 } else if (!strncmp((char *)&boot_params.efi_info.efi_loader_signature,
9402973d 902 EFI64_LOADER_SIGNATURE, 4)) {
3e909599
MF
903 set_bit(EFI_BOOT, &efi.flags);
904 set_bit(EFI_64BIT, &efi.flags);
7465252e
YL
905 }
906#endif
907
42bbdb43 908 x86_init.oem.arch_setup();
2215e69d 909
419afdf5 910 iomem_resource.end = (1ULL << boot_cpu_data.x86_phys_bits) - 1;
103e2063 911 e820__memory_setup();
28bb2237
YL
912 parse_setup_data();
913
1da177e4
LT
914 copy_edd();
915
30c82645 916 if (!boot_params.hdr.root_flags)
1da177e4
LT
917 root_mountflags &= ~MS_RDONLY;
918 init_mm.start_code = (unsigned long) _text;
919 init_mm.end_code = (unsigned long) _etext;
920 init_mm.end_data = (unsigned long) _edata;
93dbda7c 921 init_mm.brk = _brk_end;
fe3d197f
DH
922
923 mpx_mm_init(&init_mm);
1da177e4 924
4046d6e8
LT
925 code_resource.start = __pa_symbol(_text);
926 code_resource.end = __pa_symbol(_etext)-1;
927 data_resource.start = __pa_symbol(_etext);
928 data_resource.end = __pa_symbol(_edata)-1;
929 bss_resource.start = __pa_symbol(__bss_start);
930 bss_resource.end = __pa_symbol(__bss_stop)-1;
931
516cbf37
TB
932#ifdef CONFIG_CMDLINE_BOOL
933#ifdef CONFIG_CMDLINE_OVERRIDE
934 strlcpy(boot_command_line, builtin_cmdline, COMMAND_LINE_SIZE);
935#else
936 if (builtin_cmdline[0]) {
937 /* append boot loader cmdline to builtin */
938 strlcat(builtin_cmdline, " ", COMMAND_LINE_SIZE);
939 strlcat(builtin_cmdline, boot_command_line, COMMAND_LINE_SIZE);
940 strlcpy(boot_command_line, builtin_cmdline, COMMAND_LINE_SIZE);
941 }
942#endif
943#endif
944
eda6da92
YL
945 strlcpy(command_line, boot_command_line, COMMAND_LINE_SIZE);
946 *cmdline_p = command_line;
947
eda6da92 948 /*
4b0f3b81
KC
949 * x86_configure_nx() is called before parse_early_param() to detect
950 * whether hardware doesn't support NX (so that the early EHCI debug
951 * console setup can safely call set_fixmap()). It may then be called
952 * again from within noexec_setup() during parsing early parameters
953 * to honor the respective command line option.
eda6da92 954 */
4763ed4d 955 x86_configure_nx();
eda6da92
YL
956
957 parse_early_param();
958
835bcec5
DY
959 if (efi_enabled(EFI_BOOT))
960 efi_memblock_x86_reserve_range();
39fa104d
RA
961#ifdef CONFIG_MEMORY_HOTPLUG
962 /*
963 * Memory used by the kernel cannot be hot-removed because Linux
964 * cannot migrate the kernel pages. When memory hotplug is
965 * enabled, we should prevent memblock from allocating memory
966 * for the kernel.
967 *
968 * ACPI SRAT records all hotpluggable memory ranges. But before
969 * SRAT is parsed, we don't know about it.
970 *
971 * The kernel image is loaded into memory at very early time. We
972 * cannot prevent this anyway. So on NUMA system, we set any
973 * node the kernel resides in as un-hotpluggable.
974 *
975 * Since on modern servers, one node could have double-digit
976 * gigabytes memory, we can assume the memory around the kernel
977 * image is also un-hotpluggable. So before SRAT is parsed, just
978 * allocate memory near the kernel image to try the best to keep
979 * the kernel away from hotpluggable memory.
980 */
981 if (movable_node_is_enabled())
982 memblock_set_bottom_up(true);
983#endif
984
4b0f3b81 985 x86_report_nx();
0ad5bce7 986
28bb2237 987 /* after early param, so could get panic from serial */
a9ce6bc1 988 memblock_x86_reserve_range_setup_data();
28bb2237 989
76934ed4 990 if (acpi_mps_check()) {
3eb11edc 991#ifdef CONFIG_X86_LOCAL_APIC
76934ed4 992 disable_apic = 1;
3eb11edc 993#endif
988781dc 994 setup_clear_cpu_cap(X86_FEATURE_APIC);
3c999f14
YL
995 }
996
dc7c65db
LT
997#ifdef CONFIG_PCI
998 if (pci_early_dump_regs)
999 early_dump_pci_devices();
1000#endif
1001
1a127034 1002 e820__reserve_setup_data();
9641bdaf 1003 e820__finish_early_params();
1a3f239d 1004
83e68189 1005 if (efi_enabled(EFI_BOOT))
ff0c0874
BM
1006 efi_init();
1007
f80de0c3
DH
1008 efi_set_secure_boot(boot_params.secure_boot);
1009 init_lockdown();
1010
2216d199 1011 dmi_scan_machine();
dd6dad42 1012 dmi_memdev_walk();
98e5e1bf 1013 dmi_set_dump_stack_arch_desc();
2216d199 1014
88b094fb
AK
1015 /*
1016 * VMware detection requires dmi to be available, so this
a1652bb8 1017 * needs to be done after dmi_scan_machine(), for the boot CPU.
88b094fb 1018 */
2d826404 1019 init_hypervisor_platform();
88b094fb 1020
f7cf5a5b 1021 x86_init.resources.probe_roms();
41c094fd 1022
4046d6e8
LT
1023 /* after parse_early_param, so could debug it */
1024 insert_resource(&iomem_resource, &code_resource);
1025 insert_resource(&iomem_resource, &data_resource);
1026 insert_resource(&iomem_resource, &bss_resource);
1027
b422a309 1028 e820_add_kernel_range();
1b5576e6 1029 trim_bios_range();
76934ed4 1030#ifdef CONFIG_X86_32
cc9f7a0c 1031 if (ppro_with_ram_bug()) {
09821ff1
IM
1032 e820__range_update(0x70000000ULL, 0x40000ULL, E820_TYPE_RAM,
1033 E820_TYPE_RESERVED);
f9748fa0 1034 e820__update_table(e820_table);
cc9f7a0c 1035 printk(KERN_INFO "fixed physical RAM map:\n");
be0c3f0f 1036 e820__print_table("bad_ppro");
cc9f7a0c 1037 }
76934ed4
YL
1038#else
1039 early_gart_iommu_check();
1040#endif
cc9f7a0c 1041
7b2a0a6c
YL
1042 /*
1043 * partially used pages are not usable - thus
1044 * we are rounding upwards:
1045 */
0c6fc11a 1046 max_pfn = e820__end_of_ram_pfn();
7b2a0a6c 1047
093af8d7
YL
1048 /* update e820 for memory not covered by WB MTRRs */
1049 mtrr_bp_init();
2dc807b3 1050 if (mtrr_trim_uncached_memory(max_pfn))
0c6fc11a 1051 max_pfn = e820__end_of_ram_pfn();
76c32418 1052
8dd33030
IM
1053 max_possible_pfn = max_pfn;
1054
99c13b8c
MP
1055 /*
1056 * This call is required when the CPU does not support PAT. If
1057 * mtrr_bp_init() invoked it already via pat_init() the call has no
1058 * effect.
1059 */
1060 init_cache_modes();
1061
c7d2361f
TG
1062 /*
1063 * Define random base addresses for memory sections after max_pfn is
1064 * defined and before each memory section base is used.
1065 */
1066 kernel_randomize_memory();
1067
76934ed4 1068#ifdef CONFIG_X86_32
4e29684c 1069 /* max_low_pfn get updated here */
2ec65f8b 1070 find_low_pfn_range();
76934ed4 1071#else
06cd9a7d 1072 check_x2apic();
76934ed4
YL
1073
1074 /* How many end-of-memory variables you have, grandma! */
1075 /* need this before calling reserve_initrd */
f361a450 1076 if (max_pfn > (1UL<<(32 - PAGE_SHIFT)))
0c6fc11a 1077 max_low_pfn = e820__end_of_low_ram_pfn();
f361a450
YL
1078 else
1079 max_low_pfn = max_pfn;
1080
76934ed4 1081 high_memory = (void *)__va(max_pfn * PAGE_SIZE - 1) + 1;
5394f80f
JF
1082#endif
1083
893f38d1
YL
1084 /*
1085 * Find and reserve possible boot-time SMP configuration:
1086 */
1087 find_smp_config();
1088
042be38e
YL
1089 reserve_ibft_region();
1090
8d57470d
YL
1091 early_alloc_pgt_buf();
1092
72d7c3b3 1093 /*
4918e228 1094 * Need to conclude brk, before e820__memblock_setup()
72d7c3b3
YL
1095 * it could use memblock_find_in_range, could overlap with
1096 * brk area.
1097 */
1098 reserve_brk();
1099
e5f15b45
YL
1100 cleanup_highmap();
1101
2449f343 1102 memblock_set_current_limit(ISA_END_ADDRESS);
4918e228 1103 e820__memblock_setup();
72d7c3b3 1104
4971531a
MF
1105 reserve_bios_regions();
1106
1107 if (efi_enabled(EFI_MEMMAP)) {
0f96a99d 1108 efi_fake_memmap();
b05b9f5f 1109 efi_find_mirror();
3dad6f7f 1110 efi_esrt_init();
007b7560 1111
4971531a
MF
1112 /*
1113 * The EFI specification says that boot service code won't be
1114 * called after ExitBootServices(). This is, in fact, a lie.
1115 */
916f676f 1116 efi_reserve_boot_services();
4971531a 1117 }
916f676f 1118
72d7c3b3 1119 /* preallocate 4k for mptable mpc */
5da217ca 1120 e820__memblock_alloc_reserved_mpc_new();
72d7c3b3
YL
1121
1122#ifdef CONFIG_X86_CHECK_BIOS_CORRUPTION
1123 setup_bios_corruption_check();
1124#endif
1125
10054230 1126#ifdef CONFIG_X86_32
365811d6
BH
1127 printk(KERN_DEBUG "initial memory mapped: [mem 0x00000000-%#010lx]\n",
1128 (max_pfn_mapped<<PAGE_SHIFT) - 1);
10054230 1129#endif
72d7c3b3 1130
4f7b9226 1131 reserve_real_mode();
893f38d1 1132
a9acc536 1133 trim_platform_memory_ranges();
95c96084 1134 trim_low_memory_range();
a9acc536 1135
22ddfcaa 1136 init_mem_mapping();
1bbbbe77 1137
433f8924 1138 idt_setup_early_pf();
1bbbbe77 1139
18bc7bd5
AL
1140 /*
1141 * Update mmu_cr4_features (and, indirectly, trampoline_cr4_features)
1142 * with the current CR4 value. This may not be necessary, but
1143 * auditing all the early-boot CR4 manipulation would be needed to
1144 * rule it out.
c7ad5ad2
AL
1145 *
1146 * Mask off features that don't work outside long mode (just
1147 * PCIDE for now).
18bc7bd5 1148 */
c7ad5ad2 1149 mmu_cr4_features = __read_cr4() & ~X86_CR4_PCIDE;
18bc7bd5 1150
4ce7a869 1151 memblock_set_current_limit(get_max_mapped());
4e29684c 1152
e7b37895
YL
1153 /*
1154 * NOTE: On x86-32, only from this point on, fixmaps are ready for use.
1155 */
1156
1157#ifdef CONFIG_PROVIDE_OHCI1394_DMA_INIT
1158 if (init_ohci1394_dma_early)
1159 init_ohci1394_dma_on_all_controllers();
1160#endif
162a7e75
MT
1161 /* Allocate bigger log buffer */
1162 setup_log_buf(1);
e7b37895 1163
2ec65f8b
YL
1164 reserve_initrd();
1165
da3d3f98 1166 acpi_table_upgrade();
53aac44c 1167
76934ed4 1168 vsmp_init();
76934ed4 1169
1c6e5503
YL
1170 io_delay_init();
1171
630b3aff
LW
1172 early_platform_quirks();
1173
1c6e5503
YL
1174 /*
1175 * Parse the ACPI tables for possible boot-time SMP configuration.
1176 */
20e6926d
YL
1177 acpi_boot_table_init();
1178
1179 early_acpi_boot_init();
1180
d8fc3afc 1181 initmem_init();
3c325f82 1182 dma_contiguous_reserve(max_pfn_mapped << PAGE_SHIFT);
fa591c4a
TC
1183
1184 /*
1185 * Reserve memory for crash kernel after SRAT is parsed so that it
1186 * won't consume hotpluggable memory.
1187 */
1188 reserve_crashkernel();
1189
6f2a7536 1190 memblock_find_dma_reserve();
91467bdf 1191
90993cdd 1192#ifdef CONFIG_KVM_GUEST
790c73f6
GOC
1193 kvmclock_init();
1194#endif
1195
ccb64941
BO
1196 tsc_early_delay_calibrate();
1197 if (!early_xdbc_setup_hardware())
1198 early_xdbc_register_console();
1199
7737b215 1200 x86_init.paging.pagetable_init();
f212ec4b 1201
ef7f0d6a
AR
1202 kasan_init();
1203
d2b6dc61 1204 /*
8ef0c251
TG
1205 * Sync back kernel address range.
1206 *
1207 * FIXME: Can the later sync in setup_cpu_entry_areas() replace
1208 * this call?
d2b6dc61 1209 */
8ef0c251 1210 sync_initial_page_table();
d2b6dc61 1211
31625340
JC
1212 tboot_probe();
1213
76934ed4 1214 map_vsyscall();
76934ed4 1215
1a3f239d 1216 generic_apic_probe();
1da177e4 1217
54ef3400 1218 early_quirks();
d44647b0 1219
295deae4
YL
1220 /*
1221 * Read APIC and some other early information from ACPI tables.
1222 */
1da177e4 1223 acpi_boot_init();
efafc8b2 1224 sfi_init();
a906fdaa 1225 x86_dtb_init();
04606618 1226
295deae4
YL
1227 /*
1228 * get boot-time SMP configuration:
1229 */
a91bf718 1230 get_smp_config();
76934ed4 1231
1e90a13d
TG
1232 /*
1233 * Systems w/o ACPI and mptables might not have it mapped the local
1234 * APIC yet, but prefill_possible_map() might need to access it.
1235 */
1236 init_apic_mappings();
1237
329513a3 1238 prefill_possible_map();
301e6190 1239
5f4765f9 1240 init_cpu_to_node();
5f4765f9 1241
ca1b8862 1242 io_apic_init_mappings();
9d6a4d08 1243
f3614646 1244 x86_init.hyper.guest_late_init();
1da177e4 1245
1506c8dc 1246 e820__reserve_resources();
090d7171 1247 e820__register_nosave_regions(max_low_pfn);
1da177e4 1248
8fee697d 1249 x86_init.resources.reserve_resources();
41c094fd 1250
2df908ba 1251 e820__setup_pci_gap();
41c094fd 1252
1da177e4
LT
1253#ifdef CONFIG_VT
1254#if defined(CONFIG_VGA_CONSOLE)
83e68189 1255 if (!efi_enabled(EFI_BOOT) || (efi_mem_type(0xa0000) != EFI_CONVENTIONAL_MEMORY))
1da177e4
LT
1256 conswitchp = &vga_con;
1257#elif defined(CONFIG_DUMMY_CONSOLE)
1258 conswitchp = &dummy_con;
1259#endif
1260#endif
6f30c1ac 1261 x86_init.oem.banner();
a2202aa2 1262
6b617e22
FT
1263 x86_init.timers.wallclock_init();
1264
a2202aa2 1265 mcheck_init();
f49aa448 1266
dc326fca 1267 arch_init_ideal_nops();
b3c869d3
JS
1268
1269 register_refined_jiffies(CLOCK_TICK_RATE);
5189c2a7
OJ
1270
1271#ifdef CONFIG_EFI
a5d90c92
BP
1272 if (efi_enabled(EFI_BOOT))
1273 efi_apply_memmap_quirks();
5189c2a7 1274#endif
ee9f8fce
JP
1275
1276 unwind_init();
1da177e4 1277}
5649b7c3 1278
9be1b56a
IM
1279#ifdef CONFIG_X86_32
1280
8fee697d
TG
1281static struct resource video_ram_resource = {
1282 .name = "Video RAM area",
1283 .start = 0xa0000,
1284 .end = 0xbffff,
1285 .flags = IORESOURCE_BUSY | IORESOURCE_MEM
9be1b56a
IM
1286};
1287
8fee697d 1288void __init i386_reserve_resources(void)
9be1b56a 1289{
8fee697d
TG
1290 request_resource(&iomem_resource, &video_ram_resource);
1291 reserve_standard_io_resources();
9be1b56a
IM
1292}
1293
9be1b56a 1294#endif /* CONFIG_X86_32 */
f32360ef
KC
1295
1296static struct notifier_block kernel_offset_notifier = {
1297 .notifier_call = dump_kernel_offset
1298};
1299
1300static int __init register_kernel_offset_dumper(void)
1301{
1302 atomic_notifier_chain_register(&panic_notifier_list,
1303 &kernel_offset_notifier);
1304 return 0;
1305}
1306__initcall(register_kernel_offset_dumper);
c1192f84
DH
1307
1308void arch_show_smap(struct seq_file *m, struct vm_area_struct *vma)
1309{
1310 if (!boot_cpu_has(X86_FEATURE_OSPKE))
1311 return;
1312
1313 seq_printf(m, "ProtectionKey: %8u\n", vma_pkey(vma));
1314}