some comment changes
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parent
50f8850366
commit
8e1d1ec934
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@ -5,7 +5,7 @@
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.set CR0_PE_ON,0x1 # protected mode enable flag
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#########################################################################
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# ENTRY POINT
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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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4
buf.h
4
buf.h
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@ -6,5 +6,5 @@ struct buf {
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struct buf *next;
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uchar data[512];
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};
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#define B_BUSY 0x1
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#define B_VALID 0x2
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#define B_BUSY 0x1 // buffer is locked by some process
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#define B_VALID 0x2 // buffer contains the data of the sector
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2
fs.c
2
fs.c
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@ -160,7 +160,7 @@ iget(uint dev, uint inum)
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return nip;
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}
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// Copy ip->d, which has changed, to disk.
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// Copy inode in memory, which has changed, to disk.
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// Caller must have locked ip.
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void
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iupdate(struct inode *ip)
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4
init.c
4
init.c
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@ -17,8 +17,8 @@ main(void)
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mknod("console", T_DEV, 1, 1);
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open("console", O_RDWR);
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}
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dup(0);
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dup(0);
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dup(0); // stdout
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dup(0); // stderr
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for(;;){
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pid = fork();
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2
kalloc.c
2
kalloc.c
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@ -35,7 +35,7 @@ kinit(void)
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initlock(&kalloc_lock, "kalloc");
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start = (char*) &end;
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start = (char*) (((uint)start + PAGE) & ~(PAGE-1));
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mem = 256; // assume 256 pages of RAM
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mem = 256; // assume computer has 256 pages of RAM
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cprintf("mem = %d\n", mem * PAGE);
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kfree(start, mem * PAGE);
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}
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4
main.c
4
main.c
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@ -15,7 +15,7 @@ extern uchar _binary__init_start[], _binary__init_size[];
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void process0();
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// CPU 0 starts running C code here.
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// Bootstrap processor starts running C code here.
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// This is called main0 not main so that it can have
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// a void return type. Gcc can't handle functions named
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// main that don't return int. Really.
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@ -28,7 +28,7 @@ main0(void)
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// clear BSS
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memset(edata, 0, end - edata);
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// switch to cpu0's cpu stack
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// switch to bootstrap processor's stack
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asm volatile("movl %0, %%esp" : : "r" (cpus[0].mpstack + MPSTACK - 32));
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asm volatile("movl %0, %%ebp" : : "r" (cpus[0].mpstack + MPSTACK));
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13
spinlock.c
13
spinlock.c
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@ -51,10 +51,9 @@ acquire(struct spinlock *lock)
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while(cmpxchg(0, 1, &lock->locked) == 1)
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;
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// Now that lock is acquired, make sure
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// we wait for all pending writes from other
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// processors.
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cpuid(0, 0, 0, 0, 0); // memory barrier
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// Serialize instructions: now that lock is acquired, make sure
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// we wait for all pending writes from other processors.
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cpuid(0, 0, 0, 0, 0); // memory barrier (see Ch 7 of IA-32 manual, vol 3)
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// Record info about lock acquisition for debugging.
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// The +10 is only so that we can tell the difference
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@ -74,9 +73,9 @@ release(struct spinlock *lock)
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lock->pcs[0] = 0;
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lock->cpu = 0xffffffff;
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// Before unlocking the lock, make sure to flush
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// any pending memory writes from this processor.
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cpuid(0, 0, 0, 0, 0); // memory barrier
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// Serialize instructions: before unlocking the lock, make sure
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// to flush any pending memory writes from this processor.
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cpuid(0, 0, 0, 0, 0); // memory barrier (see Ch 7 of IA-32 manual, vol 3)
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lock->locked = 0;
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if(--cpus[cpu()].nlock == 0)
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