2006-09-06 17:50:20 +00:00
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// Physical memory allocator, intended to allocate
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2010-08-31 16:54:47 +00:00
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// memory for user processes, kernel stacks, page table pages,
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// and pipe buffers. Allocates 4096-byte pages.
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2006-06-12 15:22:12 +00:00
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#include "types.h"
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#include "defs.h"
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2006-07-12 11:15:38 +00:00
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#include "param.h"
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2011-07-29 11:31:27 +00:00
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#include "memlayout.h"
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2010-07-02 18:51:53 +00:00
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#include "mmu.h"
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2006-07-12 01:48:35 +00:00
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#include "spinlock.h"
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2011-09-13 17:14:52 +00:00
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void freerange(void *vstart, void *vend);
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extern char end[]; // first address after kernel loaded from ELF file
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2006-06-12 15:22:12 +00:00
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struct run {
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struct run *next;
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};
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2009-05-31 05:12:21 +00:00
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struct {
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struct spinlock lock;
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2011-09-13 17:14:52 +00:00
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int use_lock;
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2009-05-31 05:12:21 +00:00
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struct run *freelist;
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} kmem;
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2006-06-12 15:22:12 +00:00
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2011-09-13 17:14:52 +00:00
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// Initialization happens in two phases.
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// 1. main() calls kinit1() while still using entrypgdir to place just
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// the pages mapped by entrypgdir on free list.
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// 2. main() calls kinit2() with the rest of the physical pages
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// after installing a full page table that maps them on all cores.
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void
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kinit1(void *vstart, void *vend)
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2011-07-29 11:31:27 +00:00
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{
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2011-09-13 17:14:52 +00:00
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initlock(&kmem.lock, "kmem");
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kmem.use_lock = 0;
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freerange(vstart, vend);
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}
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2011-07-29 11:31:27 +00:00
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2011-09-13 17:14:52 +00:00
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void
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kinit2(void *vstart, void *vend)
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{
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freerange(vstart, vend);
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kmem.use_lock = 1;
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2011-07-29 11:31:27 +00:00
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}
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2010-09-19 11:18:42 +00:00
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2006-06-12 15:22:12 +00:00
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void
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2011-09-13 17:14:52 +00:00
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freerange(void *vstart, void *vend)
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2006-06-12 15:22:12 +00:00
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{
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2011-01-11 18:01:13 +00:00
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char *p;
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2011-09-13 17:14:52 +00:00
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p = (char*)PGROUNDUP((uint)vstart);
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for(; p + PGSIZE <= (char*)vend; p += PGSIZE)
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2010-08-31 23:21:33 +00:00
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kfree(p);
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2006-06-12 15:22:12 +00:00
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}
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2010-08-31 21:52:03 +00:00
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//PAGEBREAK: 21
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2010-08-31 16:54:47 +00:00
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// Free the page of physical memory pointed at by v,
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2006-09-07 14:12:30 +00:00
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// which normally should have been returned by a
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2010-08-31 16:54:47 +00:00
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// call to kalloc(). (The exception is when
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2006-09-07 14:12:30 +00:00
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// initializing the allocator; see kinit above.)
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2006-06-12 15:22:12 +00:00
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void
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2010-08-31 16:54:47 +00:00
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kfree(char *v)
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2006-06-12 15:22:12 +00:00
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{
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2010-08-31 16:54:47 +00:00
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struct run *r;
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2006-06-12 15:22:12 +00:00
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2011-08-17 00:23:17 +00:00
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if((uint)v % PGSIZE || v < end || v2p(v) >= PHYSTOP)
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2006-06-12 15:22:12 +00:00
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panic("kfree");
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2006-09-06 18:06:04 +00:00
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// Fill with junk to catch dangling refs.
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2010-08-31 16:54:47 +00:00
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memset(v, 1, PGSIZE);
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2006-07-01 21:26:01 +00:00
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2011-09-13 17:14:52 +00:00
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if(kmem.use_lock)
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acquire(&kmem.lock);
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2011-01-11 18:01:13 +00:00
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r = (struct run*)v;
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2010-08-31 16:54:47 +00:00
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r->next = kmem.freelist;
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kmem.freelist = r;
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2011-09-13 17:14:52 +00:00
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if(kmem.use_lock)
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release(&kmem.lock);
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2006-06-12 15:22:12 +00:00
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}
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2010-08-31 16:54:47 +00:00
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// Allocate one 4096-byte page of physical memory.
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// Returns a pointer that the kernel can use.
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2006-09-06 17:50:20 +00:00
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// Returns 0 if the memory cannot be allocated.
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2006-07-16 16:05:37 +00:00
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char*
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2011-01-11 18:01:13 +00:00
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kalloc(void)
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2006-06-12 15:22:12 +00:00
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{
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2010-08-31 16:54:47 +00:00
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struct run *r;
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2006-06-12 15:22:12 +00:00
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2011-09-13 17:14:52 +00:00
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if(kmem.use_lock)
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acquire(&kmem.lock);
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2010-08-31 16:54:47 +00:00
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r = kmem.freelist;
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if(r)
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kmem.freelist = r->next;
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2011-09-13 17:14:52 +00:00
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if(kmem.use_lock)
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release(&kmem.lock);
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2011-01-11 18:01:13 +00:00
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return (char*)r;
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2006-06-12 15:22:12 +00:00
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}
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2010-07-02 18:51:53 +00:00
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