head_64.S 12.9 KB
Newer Older
1
/* SPDX-License-Identifier: GPL-2.0 */
L
Linus Torvalds 已提交
2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22
/*
 *  linux/boot/head.S
 *
 *  Copyright (C) 1991, 1992, 1993  Linus Torvalds
 */

/*
 *  head.S contains the 32-bit startup code.
 *
 * NOTE!!! Startup happens at absolute address 0x00001000, which is also where
 * the page directory will exist. The startup code will be overwritten by
 * the page directory. [According to comments etc elsewhere on a compressed
 * kernel it will end up at 0x1000 + 1Mb I hope so as I assume this. - AC]
 *
 * Page 0 is deliberately kept safe, since System Management Mode code in 
 * laptops may need to access the BIOS data stored there.  This is also
 * useful for future device drivers that either access the BIOS via VM86 
 * mode.
 */

/*
23
 * High loaded stuff by Hans Lermen & Werner Almesberger, Feb. 1996
L
Linus Torvalds 已提交
24
 */
25 26
	.code32
	.text
L
Linus Torvalds 已提交
27

28
#include <linux/init.h>
L
Linus Torvalds 已提交
29 30
#include <linux/linkage.h>
#include <asm/segment.h>
31
#include <asm/boot.h>
32
#include <asm/msr.h>
33
#include <asm/processor-flags.h>
34
#include <asm/asm-offsets.h>
35
#include <asm/bootparam.h>
36
#include "pgtable.h"
L
Linus Torvalds 已提交
37

38 39 40 41 42 43 44 45
/*
 * Locally defined symbols should be marked hidden:
 */
	.hidden _bss
	.hidden _ebss
	.hidden _got
	.hidden _egot

46
	__HEAD
L
Linus Torvalds 已提交
47
	.code32
48
ENTRY(startup_32)
49 50 51 52 53 54
	/*
	 * 32bit entry is 0 and it is ABI so immutable!
	 * If we come here directly from a bootloader,
	 * kernel(text+data+bss+brk) ramdisk, zero_page, command line
	 * all need to be under the 4G limit.
	 */
L
Linus Torvalds 已提交
55
	cld
56 57 58 59
	/*
	 * Test KEEP_SEGMENTS flag to see if the bootloader is asking
	 * us to not reload segments
	 */
60
	testb $KEEP_SEGMENTS, BP_loadflags(%esi)
61 62
	jnz 1f

L
Linus Torvalds 已提交
63
	cli
64
	movl	$(__BOOT_DS), %eax
65 66 67
	movl	%eax, %ds
	movl	%eax, %es
	movl	%eax, %ss
68
1:
69

70 71
/*
 * Calculate the delta between where we were compiled to run
72 73 74
 * at and where we were actually loaded at.  This can only be done
 * with a short local call on x86.  Nothing  else will tell us what
 * address we are running at.  The reserved chunk of the real-mode
75 76
 * data at 0x1e4 (defined as a scratch field) are used as the stack
 * for this calculation. Only 4 bytes are needed.
77
 */
78
	leal	(BP_scratch+4)(%esi), %esp
79 80 81 82
	call	1f
1:	popl	%ebp
	subl	$1b, %ebp

83
/* setup a stack and make sure cpu supports long mode. */
84
	movl	$boot_stack_end, %eax
85 86 87 88 89 90 91
	addl	%ebp, %eax
	movl	%eax, %esp

	call	verify_cpu
	testl	%eax, %eax
	jnz	no_longmode

92 93
/*
 * Compute the delta between where we were compiled to run at
94
 * and where the code will actually run at.
95 96
 *
 * %ebp contains the address we are loaded at by the boot loader and %ebx
97 98 99 100 101 102
 * contains the address where we should move the kernel image temporarily
 * for safe in-place decompression.
 */

#ifdef CONFIG_RELOCATABLE
	movl	%ebp, %ebx
103 104 105 106 107
	movl	BP_kernel_alignment(%esi), %eax
	decl	%eax
	addl	%eax, %ebx
	notl	%eax
	andl	%eax, %ebx
108 109
	cmpl	$LOAD_PHYSICAL_ADDR, %ebx
	jge	1f
110
#endif
111 112
	movl	$LOAD_PHYSICAL_ADDR, %ebx
1:
113

114
	/* Target address to relocate to for decompression */
115 116 117
	movl	BP_init_size(%esi), %eax
	subl	$_end, %eax
	addl	%eax, %ebx
L
Linus Torvalds 已提交
118 119

/*
120
 * Prepare for entering 64 bit mode
L
Linus Torvalds 已提交
121
 */
122 123

	/* Load new GDT with the 64bit segments using 32bit descriptor */
124
	addl	%ebp, gdt+2(%ebp)
125 126 127
	lgdt	gdt(%ebp)

	/* Enable PAE mode */
128 129
	movl	%cr4, %eax
	orl	$X86_CR4_PAE, %eax
130 131 132 133 134
	movl	%eax, %cr4

 /*
  * Build early 4G boot pagetable
  */
135 136 137 138 139 140 141 142 143 144 145 146 147
	/*
	 * If SEV is active then set the encryption mask in the page tables.
	 * This will insure that when the kernel is copied and decompressed
	 * it will be done so encrypted.
	 */
	call	get_sev_encryption_bit
	xorl	%edx, %edx
	testl	%eax, %eax
	jz	1f
	subl	$32, %eax	/* Encryption bit is always above bit 31 */
	bts	%eax, %edx	/* Set encryption mask for page tables */
1:

148
	/* Initialize Page tables to 0 */
149 150
	leal	pgtable(%ebx), %edi
	xorl	%eax, %eax
151
	movl	$(BOOT_INIT_PGT_SIZE/4), %ecx
152 153 154 155 156 157
	rep	stosl

	/* Build Level 4 */
	leal	pgtable + 0(%ebx), %edi
	leal	0x1007 (%edi), %eax
	movl	%eax, 0(%edi)
158
	addl	%edx, 4(%edi)
159 160 161 162 163 164

	/* Build Level 3 */
	leal	pgtable + 0x1000(%ebx), %edi
	leal	0x1007(%edi), %eax
	movl	$4, %ecx
1:	movl	%eax, 0x00(%edi)
165
	addl	%edx, 0x04(%edi)
166 167 168 169 170 171 172 173 174 175
	addl	$0x00001000, %eax
	addl	$8, %edi
	decl	%ecx
	jnz	1b

	/* Build Level 2 */
	leal	pgtable + 0x2000(%ebx), %edi
	movl	$0x00000183, %eax
	movl	$2048, %ecx
1:	movl	%eax, 0(%edi)
176
	addl	%edx, 4(%edi)
177 178 179 180 181 182 183 184 185 186 187 188 189 190 191
	addl	$0x00200000, %eax
	addl	$8, %edi
	decl	%ecx
	jnz	1b

	/* Enable the boot page tables */
	leal	pgtable(%ebx), %eax
	movl	%eax, %cr3

	/* Enable Long mode in EFER (Extended Feature Enable Register) */
	movl	$MSR_EFER, %ecx
	rdmsr
	btsl	$_EFER_LME, %eax
	wrmsr

192 193 194
	/* After gdt is loaded */
	xorl	%eax, %eax
	lldt	%ax
195
	movl    $__BOOT_TSS, %eax
196 197
	ltr	%ax

198 199
	/*
	 * Setup for the jump to 64bit mode
200 201 202 203 204 205 206 207 208 209
	 *
	 * When the jump is performend we will be in long mode but
	 * in 32bit compatibility mode with EFER.LME = 1, CS.L = 0, CS.D = 1
	 * (and in turn EFER.LMA = 1).	To jump into 64bit mode we use
	 * the new gdt/idt that has __KERNEL_CS with CS.L = 1.
	 * We place all of the values on our mini stack so lret can
	 * used to perform that far jump.
	 */
	pushl	$__KERNEL_CS
	leal	startup_64(%ebp), %eax
210 211 212 213 214 215 216
#ifdef CONFIG_EFI_MIXED
	movl	efi32_config(%ebp), %ebx
	cmp	$0, %ebx
	jz	1f
	leal	handover_entry(%ebp), %eax
1:
#endif
217 218 219
	pushl	%eax

	/* Enter paged protected Mode, activating Long Mode */
220
	movl	$(X86_CR0_PG | X86_CR0_PE), %eax /* Enable Paging and Protected mode */
221 222 223 224
	movl	%eax, %cr0

	/* Jump from 32bit compatibility mode into 64bit mode. */
	lret
225
ENDPROC(startup_32)
226

227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250
#ifdef CONFIG_EFI_MIXED
	.org 0x190
ENTRY(efi32_stub_entry)
	add	$0x4, %esp		/* Discard return address */
	popl	%ecx
	popl	%edx
	popl	%esi

	leal	(BP_scratch+4)(%esi), %esp
	call	1f
1:	pop	%ebp
	subl	$1b, %ebp

	movl	%ecx, efi32_config(%ebp)
	movl	%edx, efi32_config+8(%ebp)
	sgdtl	efi32_boot_gdt(%ebp)

	leal	efi32_config(%ebp), %eax
	movl	%eax, efi_config(%ebp)

	jmp	startup_32
ENDPROC(efi32_stub_entry)
#endif

251
	.code64
252
	.org 0x200
253
ENTRY(startup_64)
254
	/*
255
	 * 64bit entry is 0x200 and it is ABI so immutable!
256
	 * We come here either from startup_32 or directly from a
257 258 259 260 261 262
	 * 64bit bootloader.
	 * If we come here from a bootloader, kernel(text+data+bss+brk),
	 * ramdisk, zero_page, command line could be above 4G.
	 * We depend on an identity mapped page table being provided
	 * that maps our entire kernel(text+data+bss+brk), zero page
	 * and command line.
263 264 265 266 267 268 269
	 */

	/* Setup data segments. */
	xorl	%eax, %eax
	movl	%eax, %ds
	movl	%eax, %es
	movl	%eax, %ss
270 271
	movl	%eax, %fs
	movl	%eax, %gs
272

273 274
	/*
	 * Compute the decompressed kernel start address.  It is where
275 276 277 278 279
	 * we were loaded at aligned to a 2M boundary. %rbp contains the
	 * decompressed kernel start address.
	 *
	 * If it is a relocatable kernel then decompress and run the kernel
	 * from load address aligned to 2MB addr, otherwise decompress and
280
	 * run the kernel from LOAD_PHYSICAL_ADDR
281 282 283
	 *
	 * We cannot rely on the calculation done in 32-bit mode, since we
	 * may have been invoked via the 64-bit entry point.
284 285 286 287 288
	 */

	/* Start with the delta to where the kernel will run at. */
#ifdef CONFIG_RELOCATABLE
	leaq	startup_32(%rip) /* - $startup_32 */, %rbp
289 290 291 292 293
	movl	BP_kernel_alignment(%rsi), %eax
	decl	%eax
	addq	%rax, %rbp
	notq	%rax
	andq	%rax, %rbp
294 295
	cmpq	$LOAD_PHYSICAL_ADDR, %rbp
	jge	1f
296
#endif
297 298
	movq	$LOAD_PHYSICAL_ADDR, %rbp
1:
299

300
	/* Target address to relocate to for decompression */
301 302 303
	movl	BP_init_size(%rsi), %ebx
	subl	$_end, %ebx
	addq	%rbp, %rbx
304

305 306 307
	/* Set up the stack */
	leaq	boot_stack_end(%rbx), %rsp

308 309 310 311 312 313 314
	/*
	 * At this point we are in long mode with 4-level paging enabled,
	 * but we want to enable 5-level paging.
	 *
	 * The problem is that we cannot do it directly. Setting LA57 in
	 * long mode would trigger #GP. So we need to switch off long mode
	 * first.
315 316
	 */

317 318 319 320 321
	/* Make sure we have GDT with 32-bit code segment */
	leaq	gdt(%rip), %rax
	movq	%rax, gdt64+2(%rip)
	lgdt	gdt64(%rip)

322 323 324
	/*
	 * paging_prepare() sets up the trampoline and checks if we need to
	 * enable 5-level paging.
325
	 *
326 327
	 * Address of the trampoline is returned in RAX.
	 * Non zero RDX on return means we need to enable 5-level paging.
328
	 *
329 330
	 * RSI holds real mode data and needs to be preserved across
	 * this function call.
331
	 */
332 333 334 335 336 337 338 339 340 341
	pushq	%rsi
	call	paging_prepare
	popq	%rsi

	/* Save the trampoline address in RCX */
	movq	%rax, %rcx

	/* Check if we need to enable 5-level paging */
	cmpq	$0, %rdx
	jz	lvl5
342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362

	/* Clear additional page table */
	leaq	lvl5_pgtable(%rbx), %rdi
	xorq	%rax, %rax
	movq	$(PAGE_SIZE/8), %rcx
	rep	stosq

	/*
	 * Setup current CR3 as the first and only entry in a new top level
	 * page table.
	 */
	movq	%cr3, %rdi
	leaq	0x7 (%rdi), %rax
	movq	%rax, lvl5_pgtable(%rbx)

	/* Switch to compatibility mode (CS.L = 0 CS.D = 1) via far return */
	pushq	$__KERNEL32_CS
	leaq	compatible_mode(%rip), %rax
	pushq	%rax
	lretq
lvl5:
363 364
	/* Restore the stack, the 32-bit trampoline uses its own stack */
	leaq	boot_stack_end(%rbx), %rsp
365

366 367 368 369 370 371 372 373 374 375
	/*
	 * cleanup_trampoline() would restore trampoline memory.
	 *
	 * RSI holds real mode data and needs to be preserved across
	 * this function call.
	 */
	pushq	%rsi
	call	cleanup_trampoline
	popq	%rsi

376 377 378 379
	/* Zero EFLAGS */
	pushq	$0
	popfq

380 381
/*
 * Copy the compressed kernel to the end of our buffer
382 383
 * where decompression in place becomes safe.
 */
384 385 386
	pushq	%rsi
	leaq	(_bss-8)(%rip), %rsi
	leaq	(_bss-8)(%rbx), %rdi
387
	movq	$_bss /* - $startup_32 */, %rcx
388 389 390 391 392
	shrq	$3, %rcx
	std
	rep	movsq
	cld
	popq	%rsi
393 394 395 396 397 398 399

/*
 * Jump to the relocated address.
 */
	leaq	relocated(%rbx), %rax
	jmp	*%rax

400
#ifdef CONFIG_EFI_STUB
401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453

/* The entry point for the PE/COFF executable is efi_pe_entry. */
ENTRY(efi_pe_entry)
	movq	%rcx, efi64_config(%rip)	/* Handle */
	movq	%rdx, efi64_config+8(%rip) /* EFI System table pointer */

	leaq	efi64_config(%rip), %rax
	movq	%rax, efi_config(%rip)

	call	1f
1:	popq	%rbp
	subq	$1b, %rbp

	/*
	 * Relocate efi_config->call().
	 */
	addq	%rbp, efi64_config+40(%rip)

	movq	%rax, %rdi
	call	make_boot_params
	cmpq	$0,%rax
	je	fail
	mov	%rax, %rsi
	leaq	startup_32(%rip), %rax
	movl	%eax, BP_code32_start(%rsi)
	jmp	2f		/* Skip the relocation */

handover_entry:
	call	1f
1:	popq	%rbp
	subq	$1b, %rbp

	/*
	 * Relocate efi_config->call().
	 */
	movq	efi_config(%rip), %rax
	addq	%rbp, 40(%rax)
2:
	movq	efi_config(%rip), %rdi
	call	efi_main
	movq	%rax,%rsi
	cmpq	$0,%rax
	jne	2f
fail:
	/* EFI init failed, so hang. */
	hlt
	jmp	fail
2:
	movl	BP_code32_start(%esi), %eax
	leaq	startup_64(%rax), %rax
	jmp	*%rax
ENDPROC(efi_pe_entry)

454 455 456 457 458 459 460 461 462 463 464 465 466
	.org 0x390
ENTRY(efi64_stub_entry)
	movq	%rdi, efi64_config(%rip)	/* Handle */
	movq	%rsi, efi64_config+8(%rip) /* EFI System table pointer */

	leaq	efi64_config(%rip), %rax
	movq	%rax, efi_config(%rip)

	movq	%rdx, %rsi
	jmp	handover_entry
ENDPROC(efi64_stub_entry)
#endif

467
	.text
468 469
relocated:

L
Linus Torvalds 已提交
470
/*
471
 * Clear BSS (stack is currently empty)
L
Linus Torvalds 已提交
472
 */
473 474 475
	xorl	%eax, %eax
	leaq    _bss(%rip), %rdi
	leaq    _ebss(%rip), %rcx
476
	subq	%rdi, %rcx
477 478
	shrq	$3, %rcx
	rep	stosq
479

480 481 482 483 484 485 486 487 488 489 490 491 492
/*
 * Adjust our own GOT
 */
	leaq	_got(%rip), %rdx
	leaq	_egot(%rip), %rcx
1:
	cmpq	%rcx, %rdx
	jae	2f
	addq	%rbx, (%rdx)
	addq	$8, %rdx
	jmp	1b
2:
	
L
Linus Torvalds 已提交
493
/*
494
 * Do the extraction, and jump to the new kernel..
L
Linus Torvalds 已提交
495
 */
496 497 498 499 500 501
	pushq	%rsi			/* Save the real mode argument */
	movq	%rsi, %rdi		/* real mode address */
	leaq	boot_heap(%rip), %rsi	/* malloc area for uncompression */
	leaq	input_data(%rip), %rdx  /* input_data */
	movl	$z_input_len, %ecx	/* input_len */
	movq	%rbp, %r8		/* output target address */
502
	movq	$z_output_len, %r9	/* decompressed length, end of relocs */
503
	call	extract_kernel		/* returns kernel location in %rax */
504
	popq	%rsi
L
Linus Torvalds 已提交
505 506

/*
507
 * Jump to the decompressed kernel.
L
Linus Torvalds 已提交
508
 */
509
	jmp	*%rax
L
Linus Torvalds 已提交
510

511
	.code32
512
ENTRY(trampoline_32bit_src)
513
compatible_mode:
514
	/* Set up data and stack segments */
515 516 517 518
	movl	$__KERNEL_DS, %eax
	movl	%eax, %ds
	movl	%eax, %ss

519 520 521
	/* Set up new stack */
	leal	TRAMPOLINE_32BIT_STACK_END(%ecx), %esp

522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551
	/* Disable paging */
	movl	%cr0, %eax
	btrl	$X86_CR0_PG_BIT, %eax
	movl	%eax, %cr0

	/* Point CR3 to 5-level paging */
	leal	lvl5_pgtable(%ebx), %eax
	movl	%eax, %cr3

	/* Enable PAE and LA57 mode */
	movl	%cr4, %eax
	orl	$(X86_CR4_PAE | X86_CR4_LA57), %eax
	movl	%eax, %cr4

	/* Calculate address we are running at */
	call	1f
1:	popl	%edi
	subl	$1b, %edi

	/* Prepare stack for far return to Long Mode */
	pushl	$__KERNEL_CS
	leal	lvl5(%edi), %eax
	push	%eax

	/* Enable paging back */
	movl	$(X86_CR0_PG | X86_CR0_PE), %eax
	movl	%eax, %cr0

	lret

552 553 554 555 556 557 558 559
no_longmode:
	/* This isn't an x86-64 CPU so hang */
1:
	hlt
	jmp     1b

#include "../../kernel/verify_cpu.S"

560
	.data
561 562 563 564 565
gdt64:
	.word	gdt_end - gdt
	.long	0
	.word	0
	.quad   0
566 567 568 569
gdt:
	.word	gdt_end - gdt
	.long	gdt
	.word	0
570
	.quad	0x00cf9a000000ffff	/* __KERNEL32_CS */
571 572
	.quad	0x00af9a000000ffff	/* __KERNEL_CS */
	.quad	0x00cf92000000ffff	/* __KERNEL_DS */
573 574
	.quad	0x0080890000000000	/* TS descriptor */
	.quad   0x0000000000000000	/* TS continued */
575
gdt_end:
576

M
Matt Fleming 已提交
577
#ifdef CONFIG_EFI_STUB
578 579 580
efi_config:
	.quad	0

581 582 583
#ifdef CONFIG_EFI_MIXED
	.global efi32_config
efi32_config:
584
	.fill	5,8,0
585 586 587 588
	.quad	efi64_thunk
	.byte	0
#endif

589 590
	.global efi64_config
efi64_config:
591
	.fill	5,8,0
592
	.quad	efi_call
593
	.byte	1
M
Matt Fleming 已提交
594 595
#endif /* CONFIG_EFI_STUB */

596 597 598 599 600
/*
 * Stack and heap for uncompression
 */
	.bss
	.balign 4
601 602 603 604 605
boot_heap:
	.fill BOOT_HEAP_SIZE, 1, 0
boot_stack:
	.fill BOOT_STACK_SIZE, 1, 0
boot_stack_end:
606 607 608 609 610 611 612

/*
 * Space for page tables (not in .bss so not zeroed)
 */
	.section ".pgtable","a",@nobits
	.balign 4096
pgtable:
613
	.fill BOOT_PGT_SIZE, 1, 0
614 615
lvl5_pgtable:
	.fill PAGE_SIZE, 1, 0