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#include "types.h"
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#include "defs.h"
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#include "param.h"
#include "mmu.h"
#include "proc.h"
#include "x86.h"

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static void bootothers(void);
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static void mpmain(void) __attribute__((noreturn));
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// Bootstrap processor starts running C code here.
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int
main(void)
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{
  mpinit(); // collect info about this machine
  lapicinit(mpbcpu());
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  ksegment();
  picinit();       // interrupt controller
  ioapicinit();    // another interrupt controller
  consoleinit();   // I/O devices & their interrupts
  uartinit();      // serial port
  pminit();        // physical memory for kernel
  jkstack();       // Jump to mainc on a proper-allocated kernel stack 
}
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void
mainc(void)
{
  cprintf("cpus %p cpu %p\n", cpus, cpu);
  cprintf("\ncpu%d: starting xv6\n\n", cpu->id);
  vminit();        // virtual memory
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  pinit();         // process table
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  tvinit();        // trap vectors
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  binit();         // buffer cache
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  fileinit();      // file table
  iinit();         // inode cache
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  ideinit();       // disk
  cprintf("ismp: %d\n", ismp);
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  if(!ismp)
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    timerinit();   // uniprocessor timer
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  userinit();      // first user process
  // bootothers();    // start other processors  XXX fix where to boot from
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  // Finish setting up this processor in mpmain.
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  mpmain();
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}
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// Bootstrap processor gets here after setting up the hardware.
// Additional processors start here.
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static void
mpmain(void)
{
  if(cpunum() != mpbcpu()) {
    ksegment();
    cprintf("other cpu\n");
    vminit();
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    lapicinit(cpunum());
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  cprintf("cpu%d: mpmain\n", cpu->id);
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  idtinit();
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  xchg(&cpu->booted, 1);
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  cprintf("cpu%d: scheduling\n", cpu->id);
  scheduler();
}

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static void
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bootothers(void)
{
  extern uchar _binary_bootother_start[], _binary_bootother_size[];
  uchar *code;
  struct cpu *c;
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  char *stack;
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  // Write bootstrap code to unused memory at 0x7000.
  code = (uchar*)0x7000;
  memmove(code, _binary_bootother_start, (uint)_binary_bootother_size);

  for(c = cpus; c < cpus+ncpu; c++){
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    if(c == cpus+cpunum())  // We've started already.
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      continue;

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    // Fill in %esp, %eip and start code on cpu.
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    stack = kalloc(KSTACKSIZE);
    *(void**)(code-4) = stack + KSTACKSIZE;
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    *(void**)(code-8) = mpmain;
    cprintf("lapicstartap\n");
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    lapicstartap(c->id, (uint)code);
    cprintf("lapicstartap done\n");
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    // Wait for cpu to get through bootstrap.
    while(c->booted == 0)
      ;

    cprintf("lapicstartap booted\n");