Rework comments a bit.
Move initialization of %sp after protected mode jump and change to %esp.
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2036534834
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5d1f4b8a3a
1 changed files with 25 additions and 29 deletions
54
bootasm.S
54
bootasm.S
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@ -1,27 +1,18 @@
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#include "asm.h"
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.set PROT_MODE_CSEG,0x8 # code segment selector
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.set PROT_MODE_DSEG,0x10 # data segment selector
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.set CR0_PE_ON,0x1 # protected mode enable flag
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# Start the first CPU: switch to 32-bit protected mode, jump into C.
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# The BIOS loads this code from the first sector of the hard disk into
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# memory at physical address 0x7c00 and starts executing in real mode
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# with %cs=0 %ip=7c00.
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#########################################################################
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# ENTRY POINT for the bootstrap processor
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# This code should be stored in the first sector of the hard disk.
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# After the BIOS initializes the hardware on startup or system reset,
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# it loads this code at physical address 0x7c00 - 0x7d00 (512 bytes).
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# Then the BIOS jumps to the beginning of it, address 0x7c00,
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# while running in 16-bit real-mode (8086 compatibility mode).
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# The Code Segment register (CS) is initially zero on entry.
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#
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# This code switches into 32-bit protected mode so that all of
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# memory can accessed, then calls into C.
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#########################################################################
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.set PROT_MODE_CSEG, 0x8 # kernel code segment selector
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.set PROT_MODE_DSEG, 0x10 # kernel data segment selector
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.set CR0_PE_ON, 0x1 # protected mode enable flag
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.globl start # Entry point
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start:
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.code16 # This runs in real mode
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cli # Disable interrupts
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cld # String operations increment
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# Set up the important data segment registers (DS, ES, SS).
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xorw %ax,%ax # Segment number zero
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@ -29,26 +20,25 @@ start:
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movw %ax,%es # -> Extra Segment
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movw %ax,%ss # -> Stack Segment
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# Set up the stack pointer, growing downward from 0x7c00.
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movw $start,%sp # Stack Pointer
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# Enable A20:
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# For backwards compatibility with the earliest PCs, physical
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# address line 20 is tied low, so that addresses higher than
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# 1MB wrap around to zero by default. This code undoes this.
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seta20.1:
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inb $0x64,%al # Get status
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testb $0x2,%al # Busy?
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jnz seta20.1 # Yes
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movb $0xd1,%al # Command: Write
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outb %al,$0x64 # output port
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inb $0x64,%al # Wait for not busy
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testb $0x2,%al
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jnz seta20.1
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movb $0xd1,%al # 0xd1 -> port 0x64
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outb %al,$0x64
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seta20.2:
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inb $0x64,%al # Get status
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testb $0x2,%al # Busy?
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jnz seta20.2 # Yes
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movb $0xdf,%al # Enable
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outb %al,$0x60 # A20
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inb $0x64,%al # Wait for not busy
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testb $0x2,%al
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jnz seta20.2
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movb $0xdf,%al # 0xdf -> port 0x60
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outb %al,$0x60
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# Switch from real to protected mode
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# The descriptors in our GDT allow all physical memory to be accessed.
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@ -80,16 +70,22 @@ protcseg:
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movw %ax, %fs # -> FS
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movw %ax, %gs # -> GS
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movw %ax, %ss # -> SS: Stack Segment
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# Set up the stack pointer, growing downward from 0x7c00.
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movl $start, %esp
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call cmain # finish the boot load from C.
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# cmain() should not return
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spin:
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jmp spin # ..but in case it does, spin
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# Bootstrap GDT
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.p2align 2 # force 4 byte alignment
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gdt:
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SEG_NULLASM # null seg
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SEG_ASM(STA_X|STA_R, 0x0, 0xffffffff) # code seg
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SEG_ASM(STA_W, 0x0, 0xffffffff) # data seg
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gdtdesc:
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.word 0x17 # sizeof(gdt) - 1
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.long gdt # address gdt
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