xv6: boot loader adjustments
do Bochs breakpoint and spin in bootasm.S. not needed in bootmain too. fix readseg bug (rounding of va). zero segments when memsz > filesz. no need to clear BSS in kernel main. make bootother.S like bootasm.S
This commit is contained in:
parent
8220135362
commit
b7f653dc49
4 changed files with 41 additions and 31 deletions
24
bootasm.S
24
bootasm.S
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@ -5,13 +5,13 @@
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# memory at physical address 0x7c00 and starts executing in real mode
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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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# with %cs=0 %ip=7c00.
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.set PROT_MODE_CSEG, 0x8 # kernel code segment selector
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.set CSEG32, 0x8 # kernel code segment selector
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.set PROT_MODE_DSEG, 0x10 # kernel data segment selector
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.set DSEG32, 0x10 # kernel data segment selector
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.set CR0_PE_ON, 0x1 # protected mode enable flag
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.set CR0_PE, 0x1 # protected mode enable flag
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.code16 # Assemble for 16-bit mode
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.globl start
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.globl start
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start:
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start:
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.code16 # Assemble for 16-bit mode
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cli # Disable interrupts
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cli # Disable interrupts
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cld # String operations increment
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cld # String operations increment
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@ -48,17 +48,17 @@ seta20.2:
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# effective memory map does not change during the switch.
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# effective memory map does not change during the switch.
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lgdt gdtdesc
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lgdt gdtdesc
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movl %cr0, %eax
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movl %cr0, %eax
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orl $CR0_PE_ON, %eax
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orl $CR0_PE, %eax
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movl %eax, %cr0
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movl %eax, %cr0
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# Jump to next instruction, but in 32-bit code segment.
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# Jump to next instruction, but in 32-bit code segment.
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# Switches processor into 32-bit mode.
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# Switches processor into 32-bit mode.
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ljmp $PROT_MODE_CSEG, $protcseg
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ljmp $CSEG32, $start32
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.code32 # Assemble for 32-bit mode
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.code32 # Assemble for 32-bit mode
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protcseg:
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start32:
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# Set up the protected-mode data segment registers
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# Set up the protected-mode data segment registers
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movw $PROT_MODE_DSEG, %ax # Our data segment selector
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movw $DSEG32, %ax # Our data segment selector
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movw %ax, %ds # -> DS: Data Segment
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movw %ax, %ds # -> DS: Data Segment
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movw %ax, %es # -> ES: Extra Segment
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movw %ax, %es # -> ES: Extra Segment
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movw %ax, %fs # -> FS
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movw %ax, %fs # -> FS
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@ -69,7 +69,13 @@ protcseg:
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movl $start, %esp
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movl $start, %esp
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call bootmain
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call bootmain
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# If bootmain returns (it shouldn't), loop.
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# If bootmain returns (it shouldn't), trigger a Bochs
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# breakpoint if running under Bochs, then loop.
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movw $0x8a00, %ax # 0x8a00 -> port 0x8a00
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movw %ax, %dx
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outw %ax, %dx
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movw $0x8e00, %ax # 0x8e00 -> port 0x8a00
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outw %ax, %dx
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spin:
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spin:
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jmp spin
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jmp spin
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29
bootmain.c
29
bootmain.c
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@ -11,7 +11,7 @@
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#define SECTSIZE 512
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#define SECTSIZE 512
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void readseg(uint, uint, uint);
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void readseg(uchar*, uint, uint);
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void
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void
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bootmain(void)
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bootmain(void)
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@ -19,32 +19,31 @@ bootmain(void)
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struct elfhdr *elf;
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struct elfhdr *elf;
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struct proghdr *ph, *eph;
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struct proghdr *ph, *eph;
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void (*entry)(void);
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void (*entry)(void);
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uchar* va;
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elf = (struct elfhdr*)0x10000; // scratch space
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elf = (struct elfhdr*)0x10000; // scratch space
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// Read 1st page off disk
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// Read 1st page off disk
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readseg((uint)elf, SECTSIZE*8, 0);
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readseg((uchar*)elf, 4096, 0);
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// Is this an ELF executable?
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// Is this an ELF executable?
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if(elf->magic != ELF_MAGIC)
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if(elf->magic != ELF_MAGIC)
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goto bad;
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return; // let bootasm.S handle error
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// Load each program segment (ignores ph flags).
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// Load each program segment (ignores ph flags).
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ph = (struct proghdr*)((uchar*)elf + elf->phoff);
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ph = (struct proghdr*)((uchar*)elf + elf->phoff);
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eph = ph + elf->phnum;
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eph = ph + elf->phnum;
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for(; ph < eph; ph++)
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for(; ph < eph; ph++) {
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readseg(ph->va & 0xFFFFFF, ph->memsz, ph->offset);
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va = (uchar*)(ph->va & 0xFFFFFF);
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readseg(va, ph->filesz, ph->offset);
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if(ph->memsz > ph->filesz)
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stosb(va + ph->filesz, 0, ph->memsz - ph->filesz);
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}
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// Call the entry point from the ELF header.
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// Call the entry point from the ELF header.
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// Does not return!
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// Does not return!
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entry = (void(*)(void))(elf->entry & 0xFFFFFF);
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entry = (void(*)(void))(elf->entry & 0xFFFFFF);
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entry();
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entry();
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bad:
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outw(0x8A00, 0x8A00);
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outw(0x8A00, 0x8E00);
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for(;;)
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;
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}
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}
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void
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void
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@ -76,14 +75,14 @@ readsect(void *dst, uint offset)
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// Read 'count' bytes at 'offset' from kernel into virtual address 'va'.
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// Read 'count' bytes at 'offset' from kernel into virtual address 'va'.
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// Might copy more than asked.
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// Might copy more than asked.
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void
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void
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readseg(uint va, uint count, uint offset)
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readseg(uchar* va, uint count, uint offset)
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{
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{
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uint eva;
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uchar* eva;
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eva = va + count;
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eva = va + count;
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// Round down to sector boundary.
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// Round down to sector boundary.
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va &= ~(SECTSIZE - 1);
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va -= offset % SECTSIZE;
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// Translate from bytes to sectors; kernel starts at sector 1.
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// Translate from bytes to sectors; kernel starts at sector 1.
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offset = (offset / SECTSIZE) + 1;
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offset = (offset / SECTSIZE) + 1;
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@ -92,5 +91,5 @@ readseg(uint va, uint count, uint offset)
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// We'd write more to memory than asked, but it doesn't matter --
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// We'd write more to memory than asked, but it doesn't matter --
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// we load in increasing order.
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// we load in increasing order.
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for(; va < eva; va += SECTSIZE, offset++)
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for(; va < eva; va += SECTSIZE, offset++)
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readsect((uchar*)va, offset);
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readsect(va, offset);
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}
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}
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12
bootother.S
12
bootother.S
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@ -61,7 +61,17 @@ protcseg:
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movl start-4, %esp
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movl start-4, %esp
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movl start-8, %eax
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movl start-8, %eax
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jmp *%eax
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call *%eax
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# If bootmain returns (it shouldn't), trigger a Bochs
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# breakpoint if running under Bochs, then loop.
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movw $0x8a00, %ax # 0x8a00 -> port 0x8a00
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movw %ax, %dx
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outw %ax, %dx
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movw $0x8e00, %ax # 0x8e00 -> port 0x8a00
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outw %ax, %dx
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spin:
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jmp spin
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# Bootstrap GDT
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# Bootstrap GDT
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.p2align 2 # force 4 byte alignment
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.p2align 2 # force 4 byte alignment
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5
main.c
5
main.c
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@ -12,11 +12,6 @@ static void mpmain(void) __attribute__((noreturn));
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int
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int
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main(void)
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main(void)
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{
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{
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extern char edata[], end[];
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// clear BSS
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memset(edata, 0, end - edata);
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mp_init(); // collect info about this machine
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mp_init(); // collect info about this machine
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lapic_init(mp_bcpu());
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lapic_init(mp_bcpu());
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cprintf("\ncpu%d: starting xv6\n\n", cpu());
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cprintf("\ncpu%d: starting xv6\n\n", cpu());
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