head_32.S 4.2 KB
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/*
 *  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]
 *
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 * Page 0 is deliberately kept safe, since System Management Mode code in
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 * laptops may need to access the BIOS data stored there.  This is also
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 * useful for future device drivers that either access the BIOS via VM86
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 * mode.
 */

/*
 * High loaded stuff by Hans Lermen & Werner Almesberger, Feb. 1996
 */
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	.text
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#include <linux/init.h>
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#include <linux/linkage.h>
#include <asm/segment.h>
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#include <asm/page_types.h>
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#include <asm/boot.h>
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#include <asm/asm-offsets.h>
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	__HEAD
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ENTRY(startup_32)
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#ifdef CONFIG_EFI_STUB
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	jmp	preferred_addr

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	/*
	 * We don't need the return address, so set up the stack so
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	 * efi_main() can find its arguments.
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	 */
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ENTRY(efi_pe_entry)
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	add	$0x4, %esp

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	call	make_boot_params
	cmpl	$0, %eax
	je	1f
	movl	0x4(%esp), %esi
	movl	(%esp), %ecx
	pushl	%eax
	pushl	%esi
	pushl	%ecx
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	sub	$0x4, %esp
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ENTRY(efi_stub_entry)
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	add	$0x4, %esp
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	call	efi_main
	cmpl	$0, %eax
	movl	%eax, %esi
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	jne	2f
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	/* EFI init failed, so hang. */
	hlt
	jmp	1b
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	call	3f
3:
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	popl	%eax
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	subl	$3b, %eax
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	subl	BP_pref_address(%esi), %eax
	add	BP_code32_start(%esi), %eax
	leal	preferred_addr(%eax), %eax
	jmp	*%eax

preferred_addr:
#endif
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	cld
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	/*
	 * Test KEEP_SEGMENTS flag to see if the bootloader is asking
	 * us to not reload segments
	 */
	testb	$(1<<6), BP_loadflags(%esi)
	jnz	1f
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	cli
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	movl	$__BOOT_DS, %eax
	movl	%eax, %ds
	movl	%eax, %es
	movl	%eax, %fs
	movl	%eax, %gs
	movl	%eax, %ss
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1:
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/*
 * Calculate the delta between where we were compiled to run
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 * 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
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 * data at 0x1e4 (defined as a scratch field) are used as the stack
 * for this calculation. Only 4 bytes are needed.
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 */
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	leal	(BP_scratch+4)(%esi), %esp
	call	1f
1:	popl	%ebp
	subl	$1b, %ebp
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/*
 * %ebp contains the address we are loaded at by the boot loader and %ebx
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 * contains the address where we should move the kernel image temporarily
 * for safe in-place decompression.
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 */
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#ifdef CONFIG_RELOCATABLE
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	movl	%ebp, %ebx
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	movl	BP_kernel_alignment(%esi), %eax
	decl	%eax
	addl    %eax, %ebx
	notl	%eax
	andl    %eax, %ebx
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	cmpl	$LOAD_PHYSICAL_ADDR, %ebx
	jge	1f
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#endif
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	movl	$LOAD_PHYSICAL_ADDR, %ebx
1:
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	/* Target address to relocate to for decompression */
	addl	$z_extract_offset, %ebx
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	/* Set up the stack */
	leal	boot_stack_end(%ebx), %esp

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	/* Zero EFLAGS */
	pushl	$0
	popfl

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/*
 * Copy the compressed kernel to the end of our buffer
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 * where decompression in place becomes safe.
 */
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	pushl	%esi
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	leal	(_bss-4)(%ebp), %esi
	leal	(_bss-4)(%ebx), %edi
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	movl	$(_bss - startup_32), %ecx
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	shrl	$2, %ecx
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	std
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	rep	movsl
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	cld
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	popl	%esi
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/*
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 * Jump to the relocated address.
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 */
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	leal	relocated(%ebx), %eax
	jmp	*%eax
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ENDPROC(startup_32)

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	.text
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relocated:

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/*
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 * Clear BSS (stack is currently empty)
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 */
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	xorl	%eax, %eax
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	leal	_bss(%ebx), %edi
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	leal	_ebss(%ebx), %ecx
	subl	%edi, %ecx
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	shrl	$2, %ecx
	rep	stosl
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/*
 * Adjust our own GOT
 */
	leal	_got(%ebx), %edx
	leal	_egot(%ebx), %ecx
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	cmpl	%ecx, %edx
	jae	2f
	addl	%ebx, (%edx)
	addl	$4, %edx
	jmp	1b
2:

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/*
 * Do the decompression, and jump to the new kernel..
 */
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				/* push arguments for decompress_kernel: */
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	pushl	$z_output_len	/* decompressed length */
	leal	z_extract_offset_negative(%ebx), %ebp
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	pushl	%ebp		/* output address */
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	pushl	$z_input_len	/* input_len */
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	leal	input_data(%ebx), %eax
	pushl	%eax		/* input_data */
	leal	boot_heap(%ebx), %eax
	pushl	%eax		/* heap area */
	pushl	%esi		/* real mode pointer */
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	call	decompress_kernel /* returns kernel location in %eax */
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	addl	$24, %esp
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/*
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 * Jump to the decompressed kernel.
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 */
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	xorl	%ebx, %ebx
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	jmp	*%eax
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/*
 * Stack and heap for uncompression
 */
	.bss
	.balign 4
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boot_heap:
	.fill BOOT_HEAP_SIZE, 1, 0
boot_stack:
	.fill BOOT_STACK_SIZE, 1, 0
boot_stack_end: