mmu.c 84.3 KB
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/*
 * Kernel-based Virtual Machine driver for Linux
 *
 * This module enables machines with Intel VT-x extensions to run virtual
 * machines without emulation or binary translation.
 *
 * MMU support
 *
 * Copyright (C) 2006 Qumranet, Inc.
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 * Copyright 2010 Red Hat, Inc. and/or its affilates.
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 *
 * Authors:
 *   Yaniv Kamay  <yaniv@qumranet.com>
 *   Avi Kivity   <avi@qumranet.com>
 *
 * This work is licensed under the terms of the GNU GPL, version 2.  See
 * the COPYING file in the top-level directory.
 *
 */
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#include "mmu.h"
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#include "x86.h"
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#include "kvm_cache_regs.h"
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#include <linux/kvm_host.h>
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#include <linux/types.h>
#include <linux/string.h>
#include <linux/mm.h>
#include <linux/highmem.h>
#include <linux/module.h>
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#include <linux/swap.h>
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#include <linux/hugetlb.h>
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#include <linux/compiler.h>
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#include <linux/srcu.h>
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#include <linux/slab.h>
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#include <linux/uaccess.h>
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#include <asm/page.h>
#include <asm/cmpxchg.h>
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#include <asm/io.h>
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#include <asm/vmx.h>
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/*
 * When setting this variable to true it enables Two-Dimensional-Paging
 * where the hardware walks 2 page tables:
 * 1. the guest-virtual to guest-physical
 * 2. while doing 1. it walks guest-physical to host-physical
 * If the hardware supports that we don't need to do shadow paging.
 */
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bool tdp_enabled = false;
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#undef MMU_DEBUG

#undef AUDIT

#ifdef AUDIT
static void kvm_mmu_audit(struct kvm_vcpu *vcpu, const char *msg);
#else
static void kvm_mmu_audit(struct kvm_vcpu *vcpu, const char *msg) {}
#endif

#ifdef MMU_DEBUG

#define pgprintk(x...) do { if (dbg) printk(x); } while (0)
#define rmap_printk(x...) do { if (dbg) printk(x); } while (0)

#else

#define pgprintk(x...) do { } while (0)
#define rmap_printk(x...) do { } while (0)

#endif

#if defined(MMU_DEBUG) || defined(AUDIT)
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static int dbg = 0;
module_param(dbg, bool, 0644);
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#endif
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static int oos_shadow = 1;
module_param(oos_shadow, bool, 0644);

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#ifndef MMU_DEBUG
#define ASSERT(x) do { } while (0)
#else
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#define ASSERT(x)							\
	if (!(x)) {							\
		printk(KERN_WARNING "assertion failed %s:%d: %s\n",	\
		       __FILE__, __LINE__, #x);				\
	}
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#endif
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#define PT_FIRST_AVAIL_BITS_SHIFT 9
#define PT64_SECOND_AVAIL_BITS_SHIFT 52

#define PT64_LEVEL_BITS 9

#define PT64_LEVEL_SHIFT(level) \
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		(PAGE_SHIFT + (level - 1) * PT64_LEVEL_BITS)
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#define PT64_LEVEL_MASK(level) \
		(((1ULL << PT64_LEVEL_BITS) - 1) << PT64_LEVEL_SHIFT(level))

#define PT64_INDEX(address, level)\
	(((address) >> PT64_LEVEL_SHIFT(level)) & ((1 << PT64_LEVEL_BITS) - 1))


#define PT32_LEVEL_BITS 10

#define PT32_LEVEL_SHIFT(level) \
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		(PAGE_SHIFT + (level - 1) * PT32_LEVEL_BITS)
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#define PT32_LEVEL_MASK(level) \
		(((1ULL << PT32_LEVEL_BITS) - 1) << PT32_LEVEL_SHIFT(level))
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#define PT32_LVL_OFFSET_MASK(level) \
	(PT32_BASE_ADDR_MASK & ((1ULL << (PAGE_SHIFT + (((level) - 1) \
						* PT32_LEVEL_BITS))) - 1))
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#define PT32_INDEX(address, level)\
	(((address) >> PT32_LEVEL_SHIFT(level)) & ((1 << PT32_LEVEL_BITS) - 1))


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#define PT64_BASE_ADDR_MASK (((1ULL << 52) - 1) & ~(u64)(PAGE_SIZE-1))
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#define PT64_DIR_BASE_ADDR_MASK \
	(PT64_BASE_ADDR_MASK & ~((1ULL << (PAGE_SHIFT + PT64_LEVEL_BITS)) - 1))
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#define PT64_LVL_ADDR_MASK(level) \
	(PT64_BASE_ADDR_MASK & ~((1ULL << (PAGE_SHIFT + (((level) - 1) \
						* PT64_LEVEL_BITS))) - 1))
#define PT64_LVL_OFFSET_MASK(level) \
	(PT64_BASE_ADDR_MASK & ((1ULL << (PAGE_SHIFT + (((level) - 1) \
						* PT64_LEVEL_BITS))) - 1))
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#define PT32_BASE_ADDR_MASK PAGE_MASK
#define PT32_DIR_BASE_ADDR_MASK \
	(PAGE_MASK & ~((1ULL << (PAGE_SHIFT + PT32_LEVEL_BITS)) - 1))
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#define PT32_LVL_ADDR_MASK(level) \
	(PAGE_MASK & ~((1ULL << (PAGE_SHIFT + (((level) - 1) \
					    * PT32_LEVEL_BITS))) - 1))
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#define PT64_PERM_MASK (PT_PRESENT_MASK | PT_WRITABLE_MASK | PT_USER_MASK \
			| PT64_NX_MASK)
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#define RMAP_EXT 4

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#define ACC_EXEC_MASK    1
#define ACC_WRITE_MASK   PT_WRITABLE_MASK
#define ACC_USER_MASK    PT_USER_MASK
#define ACC_ALL          (ACC_EXEC_MASK | ACC_WRITE_MASK | ACC_USER_MASK)

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#include <trace/events/kvm.h>

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#define CREATE_TRACE_POINTS
#include "mmutrace.h"

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#define SPTE_HOST_WRITEABLE (1ULL << PT_FIRST_AVAIL_BITS_SHIFT)

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#define SHADOW_PT_INDEX(addr, level) PT64_INDEX(addr, level)

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struct kvm_rmap_desc {
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	u64 *sptes[RMAP_EXT];
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	struct kvm_rmap_desc *more;
};

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struct kvm_shadow_walk_iterator {
	u64 addr;
	hpa_t shadow_addr;
	int level;
	u64 *sptep;
	unsigned index;
};

#define for_each_shadow_entry(_vcpu, _addr, _walker)    \
	for (shadow_walk_init(&(_walker), _vcpu, _addr);	\
	     shadow_walk_okay(&(_walker));			\
	     shadow_walk_next(&(_walker)))

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typedef void (*mmu_parent_walk_fn) (struct kvm_mmu_page *sp, u64 *spte);
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static struct kmem_cache *pte_chain_cache;
static struct kmem_cache *rmap_desc_cache;
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static struct kmem_cache *mmu_page_header_cache;
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static u64 __read_mostly shadow_trap_nonpresent_pte;
static u64 __read_mostly shadow_notrap_nonpresent_pte;
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static u64 __read_mostly shadow_base_present_pte;
static u64 __read_mostly shadow_nx_mask;
static u64 __read_mostly shadow_x_mask;	/* mutual exclusive with nx_mask */
static u64 __read_mostly shadow_user_mask;
static u64 __read_mostly shadow_accessed_mask;
static u64 __read_mostly shadow_dirty_mask;
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static inline u64 rsvd_bits(int s, int e)
{
	return ((1ULL << (e - s + 1)) - 1) << s;
}

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void kvm_mmu_set_nonpresent_ptes(u64 trap_pte, u64 notrap_pte)
{
	shadow_trap_nonpresent_pte = trap_pte;
	shadow_notrap_nonpresent_pte = notrap_pte;
}
EXPORT_SYMBOL_GPL(kvm_mmu_set_nonpresent_ptes);

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void kvm_mmu_set_base_ptes(u64 base_pte)
{
	shadow_base_present_pte = base_pte;
}
EXPORT_SYMBOL_GPL(kvm_mmu_set_base_ptes);

void kvm_mmu_set_mask_ptes(u64 user_mask, u64 accessed_mask,
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		u64 dirty_mask, u64 nx_mask, u64 x_mask)
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{
	shadow_user_mask = user_mask;
	shadow_accessed_mask = accessed_mask;
	shadow_dirty_mask = dirty_mask;
	shadow_nx_mask = nx_mask;
	shadow_x_mask = x_mask;
}
EXPORT_SYMBOL_GPL(kvm_mmu_set_mask_ptes);

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static bool is_write_protection(struct kvm_vcpu *vcpu)
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{
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	return kvm_read_cr0_bits(vcpu, X86_CR0_WP);
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}

static int is_cpuid_PSE36(void)
{
	return 1;
}

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static int is_nx(struct kvm_vcpu *vcpu)
{
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	return vcpu->arch.efer & EFER_NX;
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}

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static int is_shadow_present_pte(u64 pte)
{
	return pte != shadow_trap_nonpresent_pte
		&& pte != shadow_notrap_nonpresent_pte;
}

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static int is_large_pte(u64 pte)
{
	return pte & PT_PAGE_SIZE_MASK;
}

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static int is_writable_pte(unsigned long pte)
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{
	return pte & PT_WRITABLE_MASK;
}

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static int is_dirty_gpte(unsigned long pte)
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{
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	return pte & PT_DIRTY_MASK;
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}

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static int is_rmap_spte(u64 pte)
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{
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	return is_shadow_present_pte(pte);
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}

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static int is_last_spte(u64 pte, int level)
{
	if (level == PT_PAGE_TABLE_LEVEL)
		return 1;
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	if (is_large_pte(pte))
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		return 1;
	return 0;
}

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static pfn_t spte_to_pfn(u64 pte)
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{
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	return (pte & PT64_BASE_ADDR_MASK) >> PAGE_SHIFT;
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}

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static gfn_t pse36_gfn_delta(u32 gpte)
{
	int shift = 32 - PT32_DIR_PSE36_SHIFT - PAGE_SHIFT;

	return (gpte & PT32_DIR_PSE36_MASK) << shift;
}

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static void __set_spte(u64 *sptep, u64 spte)
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{
#ifdef CONFIG_X86_64
	set_64bit((unsigned long *)sptep, spte);
#else
	set_64bit((unsigned long long *)sptep, spte);
#endif
}

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static u64 __xchg_spte(u64 *sptep, u64 new_spte)
{
#ifdef CONFIG_X86_64
	return xchg(sptep, new_spte);
#else
	u64 old_spte;

	do {
		old_spte = *sptep;
	} while (cmpxchg64(sptep, old_spte, new_spte) != old_spte);

	return old_spte;
#endif
}

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static void update_spte(u64 *sptep, u64 new_spte)
{
	u64 old_spte;

	if (!shadow_accessed_mask || (new_spte & shadow_accessed_mask)) {
		__set_spte(sptep, new_spte);
	} else {
		old_spte = __xchg_spte(sptep, new_spte);
		if (old_spte & shadow_accessed_mask)
			mark_page_accessed(pfn_to_page(spte_to_pfn(old_spte)));
	}
}

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static int mmu_topup_memory_cache(struct kvm_mmu_memory_cache *cache,
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				  struct kmem_cache *base_cache, int min)
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{
	void *obj;

	if (cache->nobjs >= min)
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		return 0;
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	while (cache->nobjs < ARRAY_SIZE(cache->objects)) {
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		obj = kmem_cache_zalloc(base_cache, GFP_KERNEL);
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		if (!obj)
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			return -ENOMEM;
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		cache->objects[cache->nobjs++] = obj;
	}
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	return 0;
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}

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static void mmu_free_memory_cache(struct kvm_mmu_memory_cache *mc,
				  struct kmem_cache *cache)
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{
	while (mc->nobjs)
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		kmem_cache_free(cache, mc->objects[--mc->nobjs]);
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}

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static int mmu_topup_memory_cache_page(struct kvm_mmu_memory_cache *cache,
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				       int min)
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{
	struct page *page;

	if (cache->nobjs >= min)
		return 0;
	while (cache->nobjs < ARRAY_SIZE(cache->objects)) {
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		page = alloc_page(GFP_KERNEL);
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		if (!page)
			return -ENOMEM;
		cache->objects[cache->nobjs++] = page_address(page);
	}
	return 0;
}

static void mmu_free_memory_cache_page(struct kvm_mmu_memory_cache *mc)
{
	while (mc->nobjs)
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		free_page((unsigned long)mc->objects[--mc->nobjs]);
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}

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static int mmu_topup_memory_caches(struct kvm_vcpu *vcpu)
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{
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	int r;

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	r = mmu_topup_memory_cache(&vcpu->arch.mmu_pte_chain_cache,
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				   pte_chain_cache, 4);
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	if (r)
		goto out;
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	r = mmu_topup_memory_cache(&vcpu->arch.mmu_rmap_desc_cache,
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				   rmap_desc_cache, 4);
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	if (r)
		goto out;
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	r = mmu_topup_memory_cache_page(&vcpu->arch.mmu_page_cache, 8);
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	if (r)
		goto out;
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	r = mmu_topup_memory_cache(&vcpu->arch.mmu_page_header_cache,
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				   mmu_page_header_cache, 4);
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out:
	return r;
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}

static void mmu_free_memory_caches(struct kvm_vcpu *vcpu)
{
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	mmu_free_memory_cache(&vcpu->arch.mmu_pte_chain_cache, pte_chain_cache);
	mmu_free_memory_cache(&vcpu->arch.mmu_rmap_desc_cache, rmap_desc_cache);
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	mmu_free_memory_cache_page(&vcpu->arch.mmu_page_cache);
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	mmu_free_memory_cache(&vcpu->arch.mmu_page_header_cache,
				mmu_page_header_cache);
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}

static void *mmu_memory_cache_alloc(struct kvm_mmu_memory_cache *mc,
				    size_t size)
{
	void *p;

	BUG_ON(!mc->nobjs);
	p = mc->objects[--mc->nobjs];
	return p;
}

static struct kvm_pte_chain *mmu_alloc_pte_chain(struct kvm_vcpu *vcpu)
{
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	return mmu_memory_cache_alloc(&vcpu->arch.mmu_pte_chain_cache,
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				      sizeof(struct kvm_pte_chain));
}

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static void mmu_free_pte_chain(struct kvm_pte_chain *pc)
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{
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	kmem_cache_free(pte_chain_cache, pc);
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}

static struct kvm_rmap_desc *mmu_alloc_rmap_desc(struct kvm_vcpu *vcpu)
{
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	return mmu_memory_cache_alloc(&vcpu->arch.mmu_rmap_desc_cache,
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				      sizeof(struct kvm_rmap_desc));
}

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static void mmu_free_rmap_desc(struct kvm_rmap_desc *rd)
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{
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	kmem_cache_free(rmap_desc_cache, rd);
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}

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static gfn_t kvm_mmu_page_get_gfn(struct kvm_mmu_page *sp, int index)
{
	if (!sp->role.direct)
		return sp->gfns[index];

	return sp->gfn + (index << ((sp->role.level - 1) * PT64_LEVEL_BITS));
}

static void kvm_mmu_page_set_gfn(struct kvm_mmu_page *sp, int index, gfn_t gfn)
{
	if (sp->role.direct)
		BUG_ON(gfn != kvm_mmu_page_get_gfn(sp, index));
	else
		sp->gfns[index] = gfn;
}

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/*
 * Return the pointer to the largepage write count for a given
 * gfn, handling slots that are not large page aligned.
 */
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static int *slot_largepage_idx(gfn_t gfn,
			       struct kvm_memory_slot *slot,
			       int level)
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{
	unsigned long idx;

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	idx = (gfn >> KVM_HPAGE_GFN_SHIFT(level)) -
	      (slot->base_gfn >> KVM_HPAGE_GFN_SHIFT(level));
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	return &slot->lpage_info[level - 2][idx].write_count;
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}

static void account_shadowed(struct kvm *kvm, gfn_t gfn)
{
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	struct kvm_memory_slot *slot;
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	int *write_count;
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	int i;
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	slot = gfn_to_memslot(kvm, gfn);
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	for (i = PT_DIRECTORY_LEVEL;
	     i < PT_PAGE_TABLE_LEVEL + KVM_NR_PAGE_SIZES; ++i) {
		write_count   = slot_largepage_idx(gfn, slot, i);
		*write_count += 1;
	}
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}

static void unaccount_shadowed(struct kvm *kvm, gfn_t gfn)
{
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	struct kvm_memory_slot *slot;
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	int *write_count;
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	int i;
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	slot = gfn_to_memslot(kvm, gfn);
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	for (i = PT_DIRECTORY_LEVEL;
	     i < PT_PAGE_TABLE_LEVEL + KVM_NR_PAGE_SIZES; ++i) {
		write_count   = slot_largepage_idx(gfn, slot, i);
		*write_count -= 1;
		WARN_ON(*write_count < 0);
	}
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}

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static int has_wrprotected_page(struct kvm *kvm,
				gfn_t gfn,
				int level)
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{
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	struct kvm_memory_slot *slot;
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	int *largepage_idx;

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	slot = gfn_to_memslot(kvm, gfn);
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	if (slot) {
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		largepage_idx = slot_largepage_idx(gfn, slot, level);
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		return *largepage_idx;
	}

	return 1;
}

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static int host_mapping_level(struct kvm *kvm, gfn_t gfn)
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{
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	unsigned long page_size;
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	int i, ret = 0;
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	page_size = kvm_host_page_size(kvm, gfn);
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	for (i = PT_PAGE_TABLE_LEVEL;
	     i < (PT_PAGE_TABLE_LEVEL + KVM_NR_PAGE_SIZES); ++i) {
		if (page_size >= KVM_HPAGE_SIZE(i))
			ret = i;
		else
			break;
	}

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	return ret;
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}

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static int mapping_level(struct kvm_vcpu *vcpu, gfn_t large_gfn)
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{
	struct kvm_memory_slot *slot;
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	int host_level, level, max_level;
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	slot = gfn_to_memslot(vcpu->kvm, large_gfn);
	if (slot && slot->dirty_bitmap)
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		return PT_PAGE_TABLE_LEVEL;
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	host_level = host_mapping_level(vcpu->kvm, large_gfn);

	if (host_level == PT_PAGE_TABLE_LEVEL)
		return host_level;

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	max_level = kvm_x86_ops->get_lpage_level() < host_level ?
		kvm_x86_ops->get_lpage_level() : host_level;

	for (level = PT_DIRECTORY_LEVEL; level <= max_level; ++level)
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		if (has_wrprotected_page(vcpu->kvm, large_gfn, level))
			break;

	return level - 1;
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}

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/*
 * Take gfn and return the reverse mapping to it.
 */

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static unsigned long *gfn_to_rmap(struct kvm *kvm, gfn_t gfn, int level)
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{
	struct kvm_memory_slot *slot;
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	unsigned long idx;
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	slot = gfn_to_memslot(kvm, gfn);
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	if (likely(level == PT_PAGE_TABLE_LEVEL))
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		return &slot->rmap[gfn - slot->base_gfn];

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	idx = (gfn >> KVM_HPAGE_GFN_SHIFT(level)) -
		(slot->base_gfn >> KVM_HPAGE_GFN_SHIFT(level));
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	return &slot->lpage_info[level - 2][idx].rmap_pde;
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}

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/*
 * Reverse mapping data structures:
 *
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 * If rmapp bit zero is zero, then rmapp point to the shadw page table entry
 * that points to page_address(page).
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 *
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 * If rmapp bit zero is one, (then rmap & ~1) points to a struct kvm_rmap_desc
 * containing more mappings.
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 *
 * Returns the number of rmap entries before the spte was added or zero if
 * the spte was not added.
 *
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 */
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static int rmap_add(struct kvm_vcpu *vcpu, u64 *spte, gfn_t gfn)
577
{
578
	struct kvm_mmu_page *sp;
579
	struct kvm_rmap_desc *desc;
580
	unsigned long *rmapp;
581
	int i, count = 0;
582

583
	if (!is_rmap_spte(*spte))
584
		return count;
585
	sp = page_header(__pa(spte));
586
	kvm_mmu_page_set_gfn(sp, spte - sp->spt, gfn);
587
	rmapp = gfn_to_rmap(vcpu->kvm, gfn, sp->role.level);
588
	if (!*rmapp) {
589
		rmap_printk("rmap_add: %p %llx 0->1\n", spte, *spte);
590 591
		*rmapp = (unsigned long)spte;
	} else if (!(*rmapp & 1)) {
592
		rmap_printk("rmap_add: %p %llx 1->many\n", spte, *spte);
593
		desc = mmu_alloc_rmap_desc(vcpu);
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Avi Kivity 已提交
594 595
		desc->sptes[0] = (u64 *)*rmapp;
		desc->sptes[1] = spte;
596
		*rmapp = (unsigned long)desc | 1;
597 598
	} else {
		rmap_printk("rmap_add: %p %llx many->many\n", spte, *spte);
599
		desc = (struct kvm_rmap_desc *)(*rmapp & ~1ul);
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600
		while (desc->sptes[RMAP_EXT-1] && desc->more) {
601
			desc = desc->more;
602 603
			count += RMAP_EXT;
		}
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Avi Kivity 已提交
604
		if (desc->sptes[RMAP_EXT-1]) {
605
			desc->more = mmu_alloc_rmap_desc(vcpu);
606 607
			desc = desc->more;
		}
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608
		for (i = 0; desc->sptes[i]; ++i)
609
			;
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610
		desc->sptes[i] = spte;
611
	}
612
	return count;
613 614
}

615
static void rmap_desc_remove_entry(unsigned long *rmapp,
616 617 618 619 620 621
				   struct kvm_rmap_desc *desc,
				   int i,
				   struct kvm_rmap_desc *prev_desc)
{
	int j;

A
Avi Kivity 已提交
622
	for (j = RMAP_EXT - 1; !desc->sptes[j] && j > i; --j)
623
		;
A
Avi Kivity 已提交
624 625
	desc->sptes[i] = desc->sptes[j];
	desc->sptes[j] = NULL;
626 627 628
	if (j != 0)
		return;
	if (!prev_desc && !desc->more)
A
Avi Kivity 已提交
629
		*rmapp = (unsigned long)desc->sptes[0];
630 631 632 633
	else
		if (prev_desc)
			prev_desc->more = desc->more;
		else
634
			*rmapp = (unsigned long)desc->more | 1;
635
	mmu_free_rmap_desc(desc);
636 637
}

638
static void rmap_remove(struct kvm *kvm, u64 *spte)
639 640 641
{
	struct kvm_rmap_desc *desc;
	struct kvm_rmap_desc *prev_desc;
642
	struct kvm_mmu_page *sp;
643
	gfn_t gfn;
644
	unsigned long *rmapp;
645 646
	int i;

647
	sp = page_header(__pa(spte));
648 649
	gfn = kvm_mmu_page_get_gfn(sp, spte - sp->spt);
	rmapp = gfn_to_rmap(kvm, gfn, sp->role.level);
650
	if (!*rmapp) {
651 652
		printk(KERN_ERR "rmap_remove: %p %llx 0->BUG\n", spte, *spte);
		BUG();
653
	} else if (!(*rmapp & 1)) {
654
		rmap_printk("rmap_remove:  %p %llx 1->0\n", spte, *spte);
655
		if ((u64 *)*rmapp != spte) {
656 657 658 659
			printk(KERN_ERR "rmap_remove:  %p %llx 1->BUG\n",
			       spte, *spte);
			BUG();
		}
660
		*rmapp = 0;
661 662
	} else {
		rmap_printk("rmap_remove:  %p %llx many->many\n", spte, *spte);
663
		desc = (struct kvm_rmap_desc *)(*rmapp & ~1ul);
664 665
		prev_desc = NULL;
		while (desc) {
A
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666 667
			for (i = 0; i < RMAP_EXT && desc->sptes[i]; ++i)
				if (desc->sptes[i] == spte) {
668
					rmap_desc_remove_entry(rmapp,
669
							       desc, i,
670 671 672 673 674 675
							       prev_desc);
					return;
				}
			prev_desc = desc;
			desc = desc->more;
		}
676
		pr_err("rmap_remove: %p %llx many->many\n", spte, *spte);
677 678 679 680
		BUG();
	}
}

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681 682
static void drop_spte(struct kvm *kvm, u64 *sptep, u64 new_spte)
{
683
	pfn_t pfn;
684
	u64 old_spte;
685

686 687
	old_spte = __xchg_spte(sptep, new_spte);
	if (!is_rmap_spte(old_spte))
688
		return;
689 690
	pfn = spte_to_pfn(old_spte);
	if (old_spte & shadow_accessed_mask)
691
		kvm_set_pfn_accessed(pfn);
692
	if (is_writable_pte(old_spte))
693
		kvm_set_pfn_dirty(pfn);
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694 695 696
	rmap_remove(kvm, sptep);
}

697
static u64 *rmap_next(struct kvm *kvm, unsigned long *rmapp, u64 *spte)
698 699
{
	struct kvm_rmap_desc *desc;
700 701 702 703 704 705 706 707 708 709 710 711 712
	u64 *prev_spte;
	int i;

	if (!*rmapp)
		return NULL;
	else if (!(*rmapp & 1)) {
		if (!spte)
			return (u64 *)*rmapp;
		return NULL;
	}
	desc = (struct kvm_rmap_desc *)(*rmapp & ~1ul);
	prev_spte = NULL;
	while (desc) {
A
Avi Kivity 已提交
713
		for (i = 0; i < RMAP_EXT && desc->sptes[i]; ++i) {
714
			if (prev_spte == spte)
A
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715 716
				return desc->sptes[i];
			prev_spte = desc->sptes[i];
717 718 719 720 721 722
		}
		desc = desc->more;
	}
	return NULL;
}

723
static int rmap_write_protect(struct kvm *kvm, u64 gfn)
724
{
725
	unsigned long *rmapp;
726
	u64 *spte;
727
	int i, write_protected = 0;
728

729
	rmapp = gfn_to_rmap(kvm, gfn, PT_PAGE_TABLE_LEVEL);
730

731 732
	spte = rmap_next(kvm, rmapp, NULL);
	while (spte) {
733 734 735
		BUG_ON(!spte);
		BUG_ON(!(*spte & PT_PRESENT_MASK));
		rmap_printk("rmap_write_protect: spte %p %llx\n", spte, *spte);
736
		if (is_writable_pte(*spte)) {
737
			update_spte(spte, *spte & ~PT_WRITABLE_MASK);
738 739
			write_protected = 1;
		}
740
		spte = rmap_next(kvm, rmapp, spte);
741
	}
742
	if (write_protected) {
743
		pfn_t pfn;
744 745

		spte = rmap_next(kvm, rmapp, NULL);
746 747
		pfn = spte_to_pfn(*spte);
		kvm_set_pfn_dirty(pfn);
748 749
	}

M
Marcelo Tosatti 已提交
750
	/* check for huge page mappings */
751 752 753 754 755 756 757 758 759
	for (i = PT_DIRECTORY_LEVEL;
	     i < PT_PAGE_TABLE_LEVEL + KVM_NR_PAGE_SIZES; ++i) {
		rmapp = gfn_to_rmap(kvm, gfn, i);
		spte = rmap_next(kvm, rmapp, NULL);
		while (spte) {
			BUG_ON(!spte);
			BUG_ON(!(*spte & PT_PRESENT_MASK));
			BUG_ON((*spte & (PT_PAGE_SIZE_MASK|PT_PRESENT_MASK)) != (PT_PAGE_SIZE_MASK|PT_PRESENT_MASK));
			pgprintk("rmap_write_protect(large): spte %p %llx %lld\n", spte, *spte, gfn);
760
			if (is_writable_pte(*spte)) {
A
Avi Kivity 已提交
761 762
				drop_spte(kvm, spte,
					  shadow_trap_nonpresent_pte);
763 764 765 766 767
				--kvm->stat.lpages;
				spte = NULL;
				write_protected = 1;
			}
			spte = rmap_next(kvm, rmapp, spte);
M
Marcelo Tosatti 已提交
768 769 770
		}
	}

771
	return write_protected;
772 773
}

F
Frederik Deweerdt 已提交
774 775
static int kvm_unmap_rmapp(struct kvm *kvm, unsigned long *rmapp,
			   unsigned long data)
776 777 778 779 780 781 782
{
	u64 *spte;
	int need_tlb_flush = 0;

	while ((spte = rmap_next(kvm, rmapp, NULL))) {
		BUG_ON(!(*spte & PT_PRESENT_MASK));
		rmap_printk("kvm_rmap_unmap_hva: spte %p %llx\n", spte, *spte);
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Avi Kivity 已提交
783
		drop_spte(kvm, spte, shadow_trap_nonpresent_pte);
784 785 786 787 788
		need_tlb_flush = 1;
	}
	return need_tlb_flush;
}

F
Frederik Deweerdt 已提交
789 790
static int kvm_set_pte_rmapp(struct kvm *kvm, unsigned long *rmapp,
			     unsigned long data)
791 792
{
	int need_flush = 0;
793
	u64 *spte, new_spte, old_spte;
794 795 796 797 798 799 800 801 802 803 804
	pte_t *ptep = (pte_t *)data;
	pfn_t new_pfn;

	WARN_ON(pte_huge(*ptep));
	new_pfn = pte_pfn(*ptep);
	spte = rmap_next(kvm, rmapp, NULL);
	while (spte) {
		BUG_ON(!is_shadow_present_pte(*spte));
		rmap_printk("kvm_set_pte_rmapp: spte %p %llx\n", spte, *spte);
		need_flush = 1;
		if (pte_write(*ptep)) {
A
Avi Kivity 已提交
805
			drop_spte(kvm, spte, shadow_trap_nonpresent_pte);
806 807 808 809 810 811 812
			spte = rmap_next(kvm, rmapp, NULL);
		} else {
			new_spte = *spte &~ (PT64_BASE_ADDR_MASK);
			new_spte |= (u64)new_pfn << PAGE_SHIFT;

			new_spte &= ~PT_WRITABLE_MASK;
			new_spte &= ~SPTE_HOST_WRITEABLE;
813
			new_spte &= ~shadow_accessed_mask;
814
			if (is_writable_pte(*spte))
815
				kvm_set_pfn_dirty(spte_to_pfn(*spte));
816 817 818 819
			old_spte = __xchg_spte(spte, new_spte);
			if (is_shadow_present_pte(old_spte)
			    && (old_spte & shadow_accessed_mask))
				mark_page_accessed(pfn_to_page(spte_to_pfn(old_spte)));
820 821 822 823 824 825 826 827 828
			spte = rmap_next(kvm, rmapp, spte);
		}
	}
	if (need_flush)
		kvm_flush_remote_tlbs(kvm);

	return 0;
}

F
Frederik Deweerdt 已提交
829 830
static int kvm_handle_hva(struct kvm *kvm, unsigned long hva,
			  unsigned long data,
831
			  int (*handler)(struct kvm *kvm, unsigned long *rmapp,
F
Frederik Deweerdt 已提交
832
					 unsigned long data))
833
{
834
	int i, j;
835
	int ret;
836
	int retval = 0;
837 838
	struct kvm_memslots *slots;

839
	slots = kvm_memslots(kvm);
840

841 842
	for (i = 0; i < slots->nmemslots; i++) {
		struct kvm_memory_slot *memslot = &slots->memslots[i];
843 844 845 846 847 848
		unsigned long start = memslot->userspace_addr;
		unsigned long end;

		end = start + (memslot->npages << PAGE_SHIFT);
		if (hva >= start && hva < end) {
			gfn_t gfn_offset = (hva - start) >> PAGE_SHIFT;
849

850
			ret = handler(kvm, &memslot->rmap[gfn_offset], data);
851 852 853 854

			for (j = 0; j < KVM_NR_PAGE_SIZES - 1; ++j) {
				int idx = gfn_offset;
				idx /= KVM_PAGES_PER_HPAGE(PT_DIRECTORY_LEVEL + j);
855
				ret |= handler(kvm,
856 857
					&memslot->lpage_info[j][idx].rmap_pde,
					data);
858
			}
859 860
			trace_kvm_age_page(hva, memslot, ret);
			retval |= ret;
861 862 863 864 865 866 867 868
		}
	}

	return retval;
}

int kvm_unmap_hva(struct kvm *kvm, unsigned long hva)
{
869 870 871 872 873
	return kvm_handle_hva(kvm, hva, 0, kvm_unmap_rmapp);
}

void kvm_set_spte_hva(struct kvm *kvm, unsigned long hva, pte_t pte)
{
F
Frederik Deweerdt 已提交
874
	kvm_handle_hva(kvm, hva, (unsigned long)&pte, kvm_set_pte_rmapp);
875 876
}

F
Frederik Deweerdt 已提交
877 878
static int kvm_age_rmapp(struct kvm *kvm, unsigned long *rmapp,
			 unsigned long data)
879 880 881 882
{
	u64 *spte;
	int young = 0;

883 884 885 886 887 888 889
	/*
	 * Emulate the accessed bit for EPT, by checking if this page has
	 * an EPT mapping, and clearing it if it does. On the next access,
	 * a new EPT mapping will be established.
	 * This has some overhead, but not as much as the cost of swapping
	 * out actively used pages or breaking up actively used hugepages.
	 */
890
	if (!shadow_accessed_mask)
891
		return kvm_unmap_rmapp(kvm, rmapp, data);
892

893 894 895 896 897 898 899 900 901 902 903 904 905 906 907
	spte = rmap_next(kvm, rmapp, NULL);
	while (spte) {
		int _young;
		u64 _spte = *spte;
		BUG_ON(!(_spte & PT_PRESENT_MASK));
		_young = _spte & PT_ACCESSED_MASK;
		if (_young) {
			young = 1;
			clear_bit(PT_ACCESSED_SHIFT, (unsigned long *)spte);
		}
		spte = rmap_next(kvm, rmapp, spte);
	}
	return young;
}

908 909
#define RMAP_RECYCLE_THRESHOLD 1000

910
static void rmap_recycle(struct kvm_vcpu *vcpu, u64 *spte, gfn_t gfn)
911 912
{
	unsigned long *rmapp;
913 914 915
	struct kvm_mmu_page *sp;

	sp = page_header(__pa(spte));
916

917
	rmapp = gfn_to_rmap(vcpu->kvm, gfn, sp->role.level);
918

919
	kvm_unmap_rmapp(vcpu->kvm, rmapp, 0);
920 921 922
	kvm_flush_remote_tlbs(vcpu->kvm);
}

923 924
int kvm_age_hva(struct kvm *kvm, unsigned long hva)
{
925
	return kvm_handle_hva(kvm, hva, 0, kvm_age_rmapp);
926 927
}

928
#ifdef MMU_DEBUG
929
static int is_empty_shadow_page(u64 *spt)
A
Avi Kivity 已提交
930
{
931 932 933
	u64 *pos;
	u64 *end;

934
	for (pos = spt, end = pos + PAGE_SIZE / sizeof(u64); pos != end; pos++)
935
		if (is_shadow_present_pte(*pos)) {
936
			printk(KERN_ERR "%s: %p %llx\n", __func__,
937
			       pos, *pos);
A
Avi Kivity 已提交
938
			return 0;
939
		}
A
Avi Kivity 已提交
940 941
	return 1;
}
942
#endif
A
Avi Kivity 已提交
943

944
static void kvm_mmu_free_page(struct kvm *kvm, struct kvm_mmu_page *sp)
945
{
946
	ASSERT(is_empty_shadow_page(sp->spt));
947
	hlist_del(&sp->hash_link);
948 949
	list_del(&sp->link);
	__free_page(virt_to_page(sp->spt));
950 951
	if (!sp->role.direct)
		__free_page(virt_to_page(sp->gfns));
952
	kmem_cache_free(mmu_page_header_cache, sp);
953
	++kvm->arch.n_free_mmu_pages;
954 955
}

956 957
static unsigned kvm_page_table_hashfn(gfn_t gfn)
{
958
	return gfn & ((1 << KVM_MMU_HASH_SHIFT) - 1);
959 960
}

961
static struct kvm_mmu_page *kvm_mmu_alloc_page(struct kvm_vcpu *vcpu,
962
					       u64 *parent_pte, int direct)
A
Avi Kivity 已提交
963
{
964
	struct kvm_mmu_page *sp;
A
Avi Kivity 已提交
965

966 967
	sp = mmu_memory_cache_alloc(&vcpu->arch.mmu_page_header_cache, sizeof *sp);
	sp->spt = mmu_memory_cache_alloc(&vcpu->arch.mmu_page_cache, PAGE_SIZE);
968 969 970
	if (!direct)
		sp->gfns = mmu_memory_cache_alloc(&vcpu->arch.mmu_page_cache,
						  PAGE_SIZE);
971
	set_page_private(virt_to_page(sp->spt), (unsigned long)sp);
972
	list_add(&sp->link, &vcpu->kvm->arch.active_mmu_pages);
973
	bitmap_zero(sp->slot_bitmap, KVM_MEMORY_SLOTS + KVM_PRIVATE_MEM_SLOTS);
974 975
	sp->multimapped = 0;
	sp->parent_pte = parent_pte;
976
	--vcpu->kvm->arch.n_free_mmu_pages;
977
	return sp;
A
Avi Kivity 已提交
978 979
}

980
static void mmu_page_add_parent_pte(struct kvm_vcpu *vcpu,
981
				    struct kvm_mmu_page *sp, u64 *parent_pte)
982 983 984 985 986 987 988
{
	struct kvm_pte_chain *pte_chain;
	struct hlist_node *node;
	int i;

	if (!parent_pte)
		return;
989 990
	if (!sp->multimapped) {
		u64 *old = sp->parent_pte;
991 992

		if (!old) {
993
			sp->parent_pte = parent_pte;
994 995
			return;
		}
996
		sp->multimapped = 1;
997
		pte_chain = mmu_alloc_pte_chain(vcpu);
998 999
		INIT_HLIST_HEAD(&sp->parent_ptes);
		hlist_add_head(&pte_chain->link, &sp->parent_ptes);
1000 1001
		pte_chain->parent_ptes[0] = old;
	}
1002
	hlist_for_each_entry(pte_chain, node, &sp->parent_ptes, link) {
1003 1004 1005 1006 1007 1008 1009 1010
		if (pte_chain->parent_ptes[NR_PTE_CHAIN_ENTRIES-1])
			continue;
		for (i = 0; i < NR_PTE_CHAIN_ENTRIES; ++i)
			if (!pte_chain->parent_ptes[i]) {
				pte_chain->parent_ptes[i] = parent_pte;
				return;
			}
	}
1011
	pte_chain = mmu_alloc_pte_chain(vcpu);
1012
	BUG_ON(!pte_chain);
1013
	hlist_add_head(&pte_chain->link, &sp->parent_ptes);
1014 1015 1016
	pte_chain->parent_ptes[0] = parent_pte;
}

1017
static void mmu_page_remove_parent_pte(struct kvm_mmu_page *sp,
1018 1019 1020 1021 1022 1023
				       u64 *parent_pte)
{
	struct kvm_pte_chain *pte_chain;
	struct hlist_node *node;
	int i;

1024 1025 1026
	if (!sp->multimapped) {
		BUG_ON(sp->parent_pte != parent_pte);
		sp->parent_pte = NULL;
1027 1028
		return;
	}
1029
	hlist_for_each_entry(pte_chain, node, &sp->parent_ptes, link)
1030 1031 1032 1033 1034
		for (i = 0; i < NR_PTE_CHAIN_ENTRIES; ++i) {
			if (!pte_chain->parent_ptes[i])
				break;
			if (pte_chain->parent_ptes[i] != parent_pte)
				continue;
1035 1036
			while (i + 1 < NR_PTE_CHAIN_ENTRIES
				&& pte_chain->parent_ptes[i + 1]) {
1037 1038 1039 1040 1041
				pte_chain->parent_ptes[i]
					= pte_chain->parent_ptes[i + 1];
				++i;
			}
			pte_chain->parent_ptes[i] = NULL;
1042 1043
			if (i == 0) {
				hlist_del(&pte_chain->link);
1044
				mmu_free_pte_chain(pte_chain);
1045 1046 1047
				if (hlist_empty(&sp->parent_ptes)) {
					sp->multimapped = 0;
					sp->parent_pte = NULL;
1048 1049
				}
			}
1050 1051 1052 1053 1054
			return;
		}
	BUG();
}

1055
static void mmu_parent_walk(struct kvm_mmu_page *sp, mmu_parent_walk_fn fn)
M
Marcelo Tosatti 已提交
1056 1057 1058 1059 1060 1061 1062 1063
{
	struct kvm_pte_chain *pte_chain;
	struct hlist_node *node;
	struct kvm_mmu_page *parent_sp;
	int i;

	if (!sp->multimapped && sp->parent_pte) {
		parent_sp = page_header(__pa(sp->parent_pte));
1064
		fn(parent_sp, sp->parent_pte);
M
Marcelo Tosatti 已提交
1065 1066
		return;
	}
1067

M
Marcelo Tosatti 已提交
1068 1069
	hlist_for_each_entry(pte_chain, node, &sp->parent_ptes, link)
		for (i = 0; i < NR_PTE_CHAIN_ENTRIES; ++i) {
1070 1071 1072
			u64 *spte = pte_chain->parent_ptes[i];

			if (!spte)
M
Marcelo Tosatti 已提交
1073
				break;
1074 1075
			parent_sp = page_header(__pa(spte));
			fn(parent_sp, spte);
M
Marcelo Tosatti 已提交
1076 1077 1078
		}
}

1079 1080
static void mark_unsync(struct kvm_mmu_page *sp, u64 *spte);
static void kvm_mmu_mark_parents_unsync(struct kvm_mmu_page *sp)
1081
{
1082
	mmu_parent_walk(sp, mark_unsync);
1083 1084
}

1085
static void mark_unsync(struct kvm_mmu_page *sp, u64 *spte)
1086
{
1087
	unsigned int index;
1088

1089 1090
	index = spte - sp->spt;
	if (__test_and_set_bit(index, sp->unsync_child_bitmap))
1091
		return;
1092
	if (sp->unsync_children++)
1093
		return;
1094
	kvm_mmu_mark_parents_unsync(sp);
1095 1096
}

1097 1098 1099 1100 1101 1102 1103 1104 1105
static void nonpaging_prefetch_page(struct kvm_vcpu *vcpu,
				    struct kvm_mmu_page *sp)
{
	int i;

	for (i = 0; i < PT64_ENT_PER_PAGE; ++i)
		sp->spt[i] = shadow_trap_nonpresent_pte;
}

1106
static int nonpaging_sync_page(struct kvm_vcpu *vcpu,
1107
			       struct kvm_mmu_page *sp, bool clear_unsync)
1108 1109 1110 1111
{
	return 1;
}

M
Marcelo Tosatti 已提交
1112 1113 1114 1115
static void nonpaging_invlpg(struct kvm_vcpu *vcpu, gva_t gva)
{
}

1116 1117 1118 1119 1120 1121 1122 1123 1124 1125
#define KVM_PAGE_ARRAY_NR 16

struct kvm_mmu_pages {
	struct mmu_page_and_offset {
		struct kvm_mmu_page *sp;
		unsigned int idx;
	} page[KVM_PAGE_ARRAY_NR];
	unsigned int nr;
};

1126 1127 1128 1129 1130
#define for_each_unsync_children(bitmap, idx)		\
	for (idx = find_first_bit(bitmap, 512);		\
	     idx < 512;					\
	     idx = find_next_bit(bitmap, 512, idx+1))

1131 1132
static int mmu_pages_add(struct kvm_mmu_pages *pvec, struct kvm_mmu_page *sp,
			 int idx)
1133
{
1134
	int i;
1135

1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
	if (sp->unsync)
		for (i=0; i < pvec->nr; i++)
			if (pvec->page[i].sp == sp)
				return 0;

	pvec->page[pvec->nr].sp = sp;
	pvec->page[pvec->nr].idx = idx;
	pvec->nr++;
	return (pvec->nr == KVM_PAGE_ARRAY_NR);
}

static int __mmu_unsync_walk(struct kvm_mmu_page *sp,
			   struct kvm_mmu_pages *pvec)
{
	int i, ret, nr_unsync_leaf = 0;
1151

1152
	for_each_unsync_children(sp->unsync_child_bitmap, i) {
1153
		struct kvm_mmu_page *child;
1154 1155
		u64 ent = sp->spt[i];

1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184
		if (!is_shadow_present_pte(ent) || is_large_pte(ent))
			goto clear_child_bitmap;

		child = page_header(ent & PT64_BASE_ADDR_MASK);

		if (child->unsync_children) {
			if (mmu_pages_add(pvec, child, i))
				return -ENOSPC;

			ret = __mmu_unsync_walk(child, pvec);
			if (!ret)
				goto clear_child_bitmap;
			else if (ret > 0)
				nr_unsync_leaf += ret;
			else
				return ret;
		} else if (child->unsync) {
			nr_unsync_leaf++;
			if (mmu_pages_add(pvec, child, i))
				return -ENOSPC;
		} else
			 goto clear_child_bitmap;

		continue;

clear_child_bitmap:
		__clear_bit(i, sp->unsync_child_bitmap);
		sp->unsync_children--;
		WARN_ON((int)sp->unsync_children < 0);
1185 1186 1187
	}


1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198
	return nr_unsync_leaf;
}

static int mmu_unsync_walk(struct kvm_mmu_page *sp,
			   struct kvm_mmu_pages *pvec)
{
	if (!sp->unsync_children)
		return 0;

	mmu_pages_add(pvec, sp, 0);
	return __mmu_unsync_walk(sp, pvec);
1199 1200 1201 1202 1203
}

static void kvm_unlink_unsync_page(struct kvm *kvm, struct kvm_mmu_page *sp)
{
	WARN_ON(!sp->unsync);
1204
	trace_kvm_mmu_sync_page(sp);
1205 1206 1207 1208
	sp->unsync = 0;
	--kvm->stat.mmu_unsync;
}

1209 1210 1211 1212
static int kvm_mmu_prepare_zap_page(struct kvm *kvm, struct kvm_mmu_page *sp,
				    struct list_head *invalid_list);
static void kvm_mmu_commit_zap_page(struct kvm *kvm,
				    struct list_head *invalid_list);
1213

1214 1215
#define for_each_gfn_sp(kvm, sp, gfn, pos)				\
  hlist_for_each_entry(sp, pos,						\
1216 1217 1218
   &(kvm)->arch.mmu_page_hash[kvm_page_table_hashfn(gfn)], hash_link)	\
	if ((sp)->gfn != (gfn)) {} else

1219 1220
#define for_each_gfn_indirect_valid_sp(kvm, sp, gfn, pos)		\
  hlist_for_each_entry(sp, pos,						\
1221 1222 1223 1224
   &(kvm)->arch.mmu_page_hash[kvm_page_table_hashfn(gfn)], hash_link)	\
		if ((sp)->gfn != (gfn) || (sp)->role.direct ||		\
			(sp)->role.invalid) {} else

1225
/* @sp->gfn should be write-protected at the call site */
1226
static int __kvm_sync_page(struct kvm_vcpu *vcpu, struct kvm_mmu_page *sp,
1227
			   struct list_head *invalid_list, bool clear_unsync)
1228
{
1229
	if (sp->role.cr4_pae != !!is_pae(vcpu)) {
1230
		kvm_mmu_prepare_zap_page(vcpu->kvm, sp, invalid_list);
1231 1232 1233
		return 1;
	}

1234
	if (clear_unsync)
1235 1236
		kvm_unlink_unsync_page(vcpu->kvm, sp);

1237
	if (vcpu->arch.mmu.sync_page(vcpu, sp, clear_unsync)) {
1238
		kvm_mmu_prepare_zap_page(vcpu->kvm, sp, invalid_list);
1239 1240 1241 1242 1243 1244 1245
		return 1;
	}

	kvm_mmu_flush_tlb(vcpu);
	return 0;
}

1246 1247 1248
static int kvm_sync_page_transient(struct kvm_vcpu *vcpu,
				   struct kvm_mmu_page *sp)
{
1249
	LIST_HEAD(invalid_list);
1250 1251
	int ret;

1252
	ret = __kvm_sync_page(vcpu, sp, &invalid_list, false);
1253
	if (ret)
1254 1255
		kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);

1256 1257 1258
	return ret;
}

1259 1260
static int kvm_sync_page(struct kvm_vcpu *vcpu, struct kvm_mmu_page *sp,
			 struct list_head *invalid_list)
1261
{
1262
	return __kvm_sync_page(vcpu, sp, invalid_list, true);
1263 1264
}

1265 1266 1267 1268
/* @gfn should be write-protected at the call site */
static void kvm_sync_pages(struct kvm_vcpu *vcpu,  gfn_t gfn)
{
	struct kvm_mmu_page *s;
1269
	struct hlist_node *node;
1270
	LIST_HEAD(invalid_list);
1271 1272
	bool flush = false;

1273
	for_each_gfn_indirect_valid_sp(vcpu->kvm, s, gfn, node) {
1274
		if (!s->unsync)
1275 1276 1277 1278
			continue;

		WARN_ON(s->role.level != PT_PAGE_TABLE_LEVEL);
		if ((s->role.cr4_pae != !!is_pae(vcpu)) ||
1279
			(vcpu->arch.mmu.sync_page(vcpu, s, true))) {
1280
			kvm_mmu_prepare_zap_page(vcpu->kvm, s, &invalid_list);
1281 1282 1283 1284 1285 1286
			continue;
		}
		kvm_unlink_unsync_page(vcpu->kvm, s);
		flush = true;
	}

1287
	kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
1288 1289 1290 1291
	if (flush)
		kvm_mmu_flush_tlb(vcpu);
}

1292 1293 1294
struct mmu_page_path {
	struct kvm_mmu_page *parent[PT64_ROOT_LEVEL-1];
	unsigned int idx[PT64_ROOT_LEVEL-1];
1295 1296
};

1297 1298 1299 1300 1301 1302
#define for_each_sp(pvec, sp, parents, i)			\
		for (i = mmu_pages_next(&pvec, &parents, -1),	\
			sp = pvec.page[i].sp;			\
			i < pvec.nr && ({ sp = pvec.page[i].sp; 1;});	\
			i = mmu_pages_next(&pvec, &parents, i))

1303 1304 1305
static int mmu_pages_next(struct kvm_mmu_pages *pvec,
			  struct mmu_page_path *parents,
			  int i)
1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323
{
	int n;

	for (n = i+1; n < pvec->nr; n++) {
		struct kvm_mmu_page *sp = pvec->page[n].sp;

		if (sp->role.level == PT_PAGE_TABLE_LEVEL) {
			parents->idx[0] = pvec->page[n].idx;
			return n;
		}

		parents->parent[sp->role.level-2] = sp;
		parents->idx[sp->role.level-1] = pvec->page[n].idx;
	}

	return n;
}

1324
static void mmu_pages_clear_parents(struct mmu_page_path *parents)
1325
{
1326 1327 1328 1329 1330
	struct kvm_mmu_page *sp;
	unsigned int level = 0;

	do {
		unsigned int idx = parents->idx[level];
1331

1332 1333 1334 1335 1336 1337 1338 1339 1340
		sp = parents->parent[level];
		if (!sp)
			return;

		--sp->unsync_children;
		WARN_ON((int)sp->unsync_children < 0);
		__clear_bit(idx, sp->unsync_child_bitmap);
		level++;
	} while (level < PT64_ROOT_LEVEL-1 && !sp->unsync_children);
1341 1342
}

1343 1344 1345
static void kvm_mmu_pages_init(struct kvm_mmu_page *parent,
			       struct mmu_page_path *parents,
			       struct kvm_mmu_pages *pvec)
1346
{
1347 1348 1349
	parents->parent[parent->role.level-1] = NULL;
	pvec->nr = 0;
}
1350

1351 1352 1353 1354 1355 1356 1357
static void mmu_sync_children(struct kvm_vcpu *vcpu,
			      struct kvm_mmu_page *parent)
{
	int i;
	struct kvm_mmu_page *sp;
	struct mmu_page_path parents;
	struct kvm_mmu_pages pages;
1358
	LIST_HEAD(invalid_list);
1359 1360 1361

	kvm_mmu_pages_init(parent, &parents, &pages);
	while (mmu_unsync_walk(parent, &pages)) {
1362 1363 1364 1365 1366 1367 1368 1369
		int protected = 0;

		for_each_sp(pages, sp, parents, i)
			protected |= rmap_write_protect(vcpu->kvm, sp->gfn);

		if (protected)
			kvm_flush_remote_tlbs(vcpu->kvm);

1370
		for_each_sp(pages, sp, parents, i) {
1371
			kvm_sync_page(vcpu, sp, &invalid_list);
1372 1373
			mmu_pages_clear_parents(&parents);
		}
1374
		kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
1375
		cond_resched_lock(&vcpu->kvm->mmu_lock);
1376 1377
		kvm_mmu_pages_init(parent, &parents, &pages);
	}
1378 1379
}

1380 1381 1382 1383
static struct kvm_mmu_page *kvm_mmu_get_page(struct kvm_vcpu *vcpu,
					     gfn_t gfn,
					     gva_t gaddr,
					     unsigned level,
1384
					     int direct,
1385
					     unsigned access,
1386
					     u64 *parent_pte)
1387 1388 1389
{
	union kvm_mmu_page_role role;
	unsigned quadrant;
1390
	struct kvm_mmu_page *sp;
1391
	struct hlist_node *node;
1392
	bool need_sync = false;
1393

1394
	role = vcpu->arch.mmu.base_role;
1395
	role.level = level;
1396
	role.direct = direct;
1397
	if (role.direct)
1398
		role.cr4_pae = 0;
1399
	role.access = access;
1400
	if (!tdp_enabled && vcpu->arch.mmu.root_level <= PT32_ROOT_LEVEL) {
1401 1402 1403 1404
		quadrant = gaddr >> (PAGE_SHIFT + (PT64_PT_BITS * level));
		quadrant &= (1 << ((PT32_PT_BITS - PT64_PT_BITS) * level)) - 1;
		role.quadrant = quadrant;
	}
1405
	for_each_gfn_sp(vcpu->kvm, sp, gfn, node) {
1406 1407
		if (!need_sync && sp->unsync)
			need_sync = true;
1408

1409 1410
		if (sp->role.word != role.word)
			continue;
1411

1412 1413
		if (sp->unsync && kvm_sync_page_transient(vcpu, sp))
			break;
1414

1415 1416
		mmu_page_add_parent_pte(vcpu, sp, parent_pte);
		if (sp->unsync_children) {
1417
			kvm_make_request(KVM_REQ_MMU_SYNC, vcpu);
1418 1419 1420
			kvm_mmu_mark_parents_unsync(sp);
		} else if (sp->unsync)
			kvm_mmu_mark_parents_unsync(sp);
1421

1422 1423 1424
		trace_kvm_mmu_get_page(sp, false);
		return sp;
	}
A
Avi Kivity 已提交
1425
	++vcpu->kvm->stat.mmu_cache_miss;
1426
	sp = kvm_mmu_alloc_page(vcpu, parent_pte, direct);
1427 1428 1429 1430
	if (!sp)
		return sp;
	sp->gfn = gfn;
	sp->role = role;
1431 1432
	hlist_add_head(&sp->hash_link,
		&vcpu->kvm->arch.mmu_page_hash[kvm_page_table_hashfn(gfn)]);
1433
	if (!direct) {
1434 1435
		if (rmap_write_protect(vcpu->kvm, gfn))
			kvm_flush_remote_tlbs(vcpu->kvm);
1436 1437 1438
		if (level > PT_PAGE_TABLE_LEVEL && need_sync)
			kvm_sync_pages(vcpu, gfn);

1439 1440
		account_shadowed(vcpu->kvm, gfn);
	}
1441 1442 1443 1444
	if (shadow_trap_nonpresent_pte != shadow_notrap_nonpresent_pte)
		vcpu->arch.mmu.prefetch_page(vcpu, sp);
	else
		nonpaging_prefetch_page(vcpu, sp);
A
Avi Kivity 已提交
1445
	trace_kvm_mmu_get_page(sp, true);
1446
	return sp;
1447 1448
}

1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468
static void shadow_walk_init(struct kvm_shadow_walk_iterator *iterator,
			     struct kvm_vcpu *vcpu, u64 addr)
{
	iterator->addr = addr;
	iterator->shadow_addr = vcpu->arch.mmu.root_hpa;
	iterator->level = vcpu->arch.mmu.shadow_root_level;
	if (iterator->level == PT32E_ROOT_LEVEL) {
		iterator->shadow_addr
			= vcpu->arch.mmu.pae_root[(addr >> 30) & 3];
		iterator->shadow_addr &= PT64_BASE_ADDR_MASK;
		--iterator->level;
		if (!iterator->shadow_addr)
			iterator->level = 0;
	}
}

static bool shadow_walk_okay(struct kvm_shadow_walk_iterator *iterator)
{
	if (iterator->level < PT_PAGE_TABLE_LEVEL)
		return false;
1469 1470 1471 1472 1473

	if (iterator->level == PT_PAGE_TABLE_LEVEL)
		if (is_large_pte(*iterator->sptep))
			return false;

1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484
	iterator->index = SHADOW_PT_INDEX(iterator->addr, iterator->level);
	iterator->sptep	= ((u64 *)__va(iterator->shadow_addr)) + iterator->index;
	return true;
}

static void shadow_walk_next(struct kvm_shadow_walk_iterator *iterator)
{
	iterator->shadow_addr = *iterator->sptep & PT64_BASE_ADDR_MASK;
	--iterator->level;
}

1485
static void kvm_mmu_page_unlink_children(struct kvm *kvm,
1486
					 struct kvm_mmu_page *sp)
1487
{
1488 1489 1490 1491
	unsigned i;
	u64 *pt;
	u64 ent;

1492
	pt = sp->spt;
1493 1494 1495 1496

	for (i = 0; i < PT64_ENT_PER_PAGE; ++i) {
		ent = pt[i];

M
Marcelo Tosatti 已提交
1497
		if (is_shadow_present_pte(ent)) {
1498
			if (!is_last_spte(ent, sp->role.level)) {
M
Marcelo Tosatti 已提交
1499 1500 1501 1502
				ent &= PT64_BASE_ADDR_MASK;
				mmu_page_remove_parent_pte(page_header(ent),
							   &pt[i]);
			} else {
1503 1504
				if (is_large_pte(ent))
					--kvm->stat.lpages;
A
Avi Kivity 已提交
1505 1506
				drop_spte(kvm, &pt[i],
					  shadow_trap_nonpresent_pte);
M
Marcelo Tosatti 已提交
1507 1508
			}
		}
1509
		pt[i] = shadow_trap_nonpresent_pte;
1510
	}
1511 1512
}

1513
static void kvm_mmu_put_page(struct kvm_mmu_page *sp, u64 *parent_pte)
1514
{
1515
	mmu_page_remove_parent_pte(sp, parent_pte);
1516 1517
}

1518 1519 1520
static void kvm_mmu_reset_last_pte_updated(struct kvm *kvm)
{
	int i;
1521
	struct kvm_vcpu *vcpu;
1522

1523 1524
	kvm_for_each_vcpu(i, vcpu, kvm)
		vcpu->arch.last_pte_updated = NULL;
1525 1526
}

1527
static void kvm_mmu_unlink_parents(struct kvm *kvm, struct kvm_mmu_page *sp)
1528 1529 1530
{
	u64 *parent_pte;

1531 1532 1533
	while (sp->multimapped || sp->parent_pte) {
		if (!sp->multimapped)
			parent_pte = sp->parent_pte;
1534 1535 1536
		else {
			struct kvm_pte_chain *chain;

1537
			chain = container_of(sp->parent_ptes.first,
1538 1539 1540
					     struct kvm_pte_chain, link);
			parent_pte = chain->parent_ptes[0];
		}
1541
		BUG_ON(!parent_pte);
1542
		kvm_mmu_put_page(sp, parent_pte);
A
Avi Kivity 已提交
1543
		__set_spte(parent_pte, shadow_trap_nonpresent_pte);
1544
	}
1545 1546
}

1547
static int mmu_zap_unsync_children(struct kvm *kvm,
1548 1549
				   struct kvm_mmu_page *parent,
				   struct list_head *invalid_list)
1550
{
1551 1552 1553
	int i, zapped = 0;
	struct mmu_page_path parents;
	struct kvm_mmu_pages pages;
1554

1555
	if (parent->role.level == PT_PAGE_TABLE_LEVEL)
1556
		return 0;
1557 1558 1559 1560 1561 1562

	kvm_mmu_pages_init(parent, &parents, &pages);
	while (mmu_unsync_walk(parent, &pages)) {
		struct kvm_mmu_page *sp;

		for_each_sp(pages, sp, parents, i) {
1563
			kvm_mmu_prepare_zap_page(kvm, sp, invalid_list);
1564
			mmu_pages_clear_parents(&parents);
1565
			zapped++;
1566 1567 1568 1569 1570
		}
		kvm_mmu_pages_init(parent, &parents, &pages);
	}

	return zapped;
1571 1572
}

1573 1574
static int kvm_mmu_prepare_zap_page(struct kvm *kvm, struct kvm_mmu_page *sp,
				    struct list_head *invalid_list)
1575
{
1576
	int ret;
A
Avi Kivity 已提交
1577

1578
	trace_kvm_mmu_prepare_zap_page(sp);
1579
	++kvm->stat.mmu_shadow_zapped;
1580
	ret = mmu_zap_unsync_children(kvm, sp, invalid_list);
1581
	kvm_mmu_page_unlink_children(kvm, sp);
1582
	kvm_mmu_unlink_parents(kvm, sp);
1583
	if (!sp->role.invalid && !sp->role.direct)
A
Avi Kivity 已提交
1584
		unaccount_shadowed(kvm, sp->gfn);
1585 1586
	if (sp->unsync)
		kvm_unlink_unsync_page(kvm, sp);
1587
	if (!sp->root_count) {
1588 1589
		/* Count self */
		ret++;
1590
		list_move(&sp->link, invalid_list);
1591
	} else {
A
Avi Kivity 已提交
1592
		list_move(&sp->link, &kvm->arch.active_mmu_pages);
1593 1594
		kvm_reload_remote_mmus(kvm);
	}
1595 1596

	sp->role.invalid = 1;
1597
	kvm_mmu_reset_last_pte_updated(kvm);
1598
	return ret;
1599 1600
}

1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618
static void kvm_mmu_commit_zap_page(struct kvm *kvm,
				    struct list_head *invalid_list)
{
	struct kvm_mmu_page *sp;

	if (list_empty(invalid_list))
		return;

	kvm_flush_remote_tlbs(kvm);

	do {
		sp = list_first_entry(invalid_list, struct kvm_mmu_page, link);
		WARN_ON(!sp->role.invalid || sp->root_count);
		kvm_mmu_free_page(kvm, sp);
	} while (!list_empty(invalid_list));

}

1619 1620 1621 1622 1623 1624
/*
 * Changing the number of mmu pages allocated to the vm
 * Note: if kvm_nr_mmu_pages is too small, you will get dead lock
 */
void kvm_mmu_change_mmu_pages(struct kvm *kvm, unsigned int kvm_nr_mmu_pages)
{
1625
	int used_pages;
1626
	LIST_HEAD(invalid_list);
1627 1628 1629 1630

	used_pages = kvm->arch.n_alloc_mmu_pages - kvm->arch.n_free_mmu_pages;
	used_pages = max(0, used_pages);

1631 1632 1633 1634 1635 1636
	/*
	 * If we set the number of mmu pages to be smaller be than the
	 * number of actived pages , we must to free some mmu pages before we
	 * change the value
	 */

1637
	if (used_pages > kvm_nr_mmu_pages) {
1638 1639
		while (used_pages > kvm_nr_mmu_pages &&
			!list_empty(&kvm->arch.active_mmu_pages)) {
1640 1641
			struct kvm_mmu_page *page;

1642
			page = container_of(kvm->arch.active_mmu_pages.prev,
1643
					    struct kvm_mmu_page, link);
1644 1645
			used_pages -= kvm_mmu_prepare_zap_page(kvm, page,
							       &invalid_list);
1646
		}
1647
		kvm_mmu_commit_zap_page(kvm, &invalid_list);
1648
		kvm_nr_mmu_pages = used_pages;
1649
		kvm->arch.n_free_mmu_pages = 0;
1650 1651
	}
	else
1652 1653
		kvm->arch.n_free_mmu_pages += kvm_nr_mmu_pages
					 - kvm->arch.n_alloc_mmu_pages;
1654

1655
	kvm->arch.n_alloc_mmu_pages = kvm_nr_mmu_pages;
1656 1657
}

1658
static int kvm_mmu_unprotect_page(struct kvm *kvm, gfn_t gfn)
1659
{
1660
	struct kvm_mmu_page *sp;
1661
	struct hlist_node *node;
1662
	LIST_HEAD(invalid_list);
1663 1664
	int r;

1665
	pgprintk("%s: looking for gfn %lx\n", __func__, gfn);
1666
	r = 0;
1667 1668

	for_each_gfn_indirect_valid_sp(kvm, sp, gfn, node) {
1669 1670 1671
		pgprintk("%s: gfn %lx role %x\n", __func__, gfn,
			 sp->role.word);
		r = 1;
1672
		kvm_mmu_prepare_zap_page(kvm, sp, &invalid_list);
1673
	}
1674
	kvm_mmu_commit_zap_page(kvm, &invalid_list);
1675
	return r;
1676 1677
}

1678
static void mmu_unshadow(struct kvm *kvm, gfn_t gfn)
1679
{
1680
	struct kvm_mmu_page *sp;
1681
	struct hlist_node *node;
1682
	LIST_HEAD(invalid_list);
1683

1684
	for_each_gfn_indirect_valid_sp(kvm, sp, gfn, node) {
1685 1686
		pgprintk("%s: zap %lx %x\n",
			 __func__, gfn, sp->role.word);
1687
		kvm_mmu_prepare_zap_page(kvm, sp, &invalid_list);
1688
	}
1689
	kvm_mmu_commit_zap_page(kvm, &invalid_list);
1690 1691
}

1692
static void page_header_update_slot(struct kvm *kvm, void *pte, gfn_t gfn)
A
Avi Kivity 已提交
1693
{
1694
	int slot = memslot_id(kvm, gfn);
1695
	struct kvm_mmu_page *sp = page_header(__pa(pte));
A
Avi Kivity 已提交
1696

1697
	__set_bit(slot, sp->slot_bitmap);
A
Avi Kivity 已提交
1698 1699
}

1700 1701 1702 1703 1704 1705 1706 1707 1708 1709
static void mmu_convert_notrap(struct kvm_mmu_page *sp)
{
	int i;
	u64 *pt = sp->spt;

	if (shadow_trap_nonpresent_pte == shadow_notrap_nonpresent_pte)
		return;

	for (i = 0; i < PT64_ENT_PER_PAGE; ++i) {
		if (pt[i] == shadow_notrap_nonpresent_pte)
A
Avi Kivity 已提交
1710
			__set_spte(&pt[i], shadow_trap_nonpresent_pte);
1711 1712 1713
	}
}

1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806
/*
 * The function is based on mtrr_type_lookup() in
 * arch/x86/kernel/cpu/mtrr/generic.c
 */
static int get_mtrr_type(struct mtrr_state_type *mtrr_state,
			 u64 start, u64 end)
{
	int i;
	u64 base, mask;
	u8 prev_match, curr_match;
	int num_var_ranges = KVM_NR_VAR_MTRR;

	if (!mtrr_state->enabled)
		return 0xFF;

	/* Make end inclusive end, instead of exclusive */
	end--;

	/* Look in fixed ranges. Just return the type as per start */
	if (mtrr_state->have_fixed && (start < 0x100000)) {
		int idx;

		if (start < 0x80000) {
			idx = 0;
			idx += (start >> 16);
			return mtrr_state->fixed_ranges[idx];
		} else if (start < 0xC0000) {
			idx = 1 * 8;
			idx += ((start - 0x80000) >> 14);
			return mtrr_state->fixed_ranges[idx];
		} else if (start < 0x1000000) {
			idx = 3 * 8;
			idx += ((start - 0xC0000) >> 12);
			return mtrr_state->fixed_ranges[idx];
		}
	}

	/*
	 * Look in variable ranges
	 * Look of multiple ranges matching this address and pick type
	 * as per MTRR precedence
	 */
	if (!(mtrr_state->enabled & 2))
		return mtrr_state->def_type;

	prev_match = 0xFF;
	for (i = 0; i < num_var_ranges; ++i) {
		unsigned short start_state, end_state;

		if (!(mtrr_state->var_ranges[i].mask_lo & (1 << 11)))
			continue;

		base = (((u64)mtrr_state->var_ranges[i].base_hi) << 32) +
		       (mtrr_state->var_ranges[i].base_lo & PAGE_MASK);
		mask = (((u64)mtrr_state->var_ranges[i].mask_hi) << 32) +
		       (mtrr_state->var_ranges[i].mask_lo & PAGE_MASK);

		start_state = ((start & mask) == (base & mask));
		end_state = ((end & mask) == (base & mask));
		if (start_state != end_state)
			return 0xFE;

		if ((start & mask) != (base & mask))
			continue;

		curr_match = mtrr_state->var_ranges[i].base_lo & 0xff;
		if (prev_match == 0xFF) {
			prev_match = curr_match;
			continue;
		}

		if (prev_match == MTRR_TYPE_UNCACHABLE ||
		    curr_match == MTRR_TYPE_UNCACHABLE)
			return MTRR_TYPE_UNCACHABLE;

		if ((prev_match == MTRR_TYPE_WRBACK &&
		     curr_match == MTRR_TYPE_WRTHROUGH) ||
		    (prev_match == MTRR_TYPE_WRTHROUGH &&
		     curr_match == MTRR_TYPE_WRBACK)) {
			prev_match = MTRR_TYPE_WRTHROUGH;
			curr_match = MTRR_TYPE_WRTHROUGH;
		}

		if (prev_match != curr_match)
			return MTRR_TYPE_UNCACHABLE;
	}

	if (prev_match != 0xFF)
		return prev_match;

	return mtrr_state->def_type;
}

1807
u8 kvm_get_guest_memory_type(struct kvm_vcpu *vcpu, gfn_t gfn)
1808 1809 1810 1811 1812 1813 1814 1815 1816
{
	u8 mtrr;

	mtrr = get_mtrr_type(&vcpu->arch.mtrr_state, gfn << PAGE_SHIFT,
			     (gfn << PAGE_SHIFT) + PAGE_SIZE);
	if (mtrr == 0xfe || mtrr == 0xff)
		mtrr = MTRR_TYPE_WRBACK;
	return mtrr;
}
1817
EXPORT_SYMBOL_GPL(kvm_get_guest_memory_type);
1818

1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829
static void __kvm_unsync_page(struct kvm_vcpu *vcpu, struct kvm_mmu_page *sp)
{
	trace_kvm_mmu_unsync_page(sp);
	++vcpu->kvm->stat.mmu_unsync;
	sp->unsync = 1;

	kvm_mmu_mark_parents_unsync(sp);
	mmu_convert_notrap(sp);
}

static void kvm_unsync_pages(struct kvm_vcpu *vcpu,  gfn_t gfn)
1830 1831
{
	struct kvm_mmu_page *s;
1832
	struct hlist_node *node;
1833

1834
	for_each_gfn_indirect_valid_sp(vcpu->kvm, s, gfn, node) {
1835
		if (s->unsync)
1836
			continue;
1837 1838
		WARN_ON(s->role.level != PT_PAGE_TABLE_LEVEL);
		__kvm_unsync_page(vcpu, s);
1839 1840 1841 1842 1843 1844
	}
}

static int mmu_need_write_protect(struct kvm_vcpu *vcpu, gfn_t gfn,
				  bool can_unsync)
{
1845
	struct kvm_mmu_page *s;
1846
	struct hlist_node *node;
1847 1848
	bool need_unsync = false;

1849
	for_each_gfn_indirect_valid_sp(vcpu->kvm, s, gfn, node) {
1850 1851 1852
		if (!can_unsync)
			return 1;

1853
		if (s->role.level != PT_PAGE_TABLE_LEVEL)
1854
			return 1;
1855 1856

		if (!need_unsync && !s->unsync) {
1857
			if (!oos_shadow)
1858 1859 1860
				return 1;
			need_unsync = true;
		}
1861
	}
1862 1863
	if (need_unsync)
		kvm_unsync_pages(vcpu, gfn);
1864 1865 1866
	return 0;
}

A
Avi Kivity 已提交
1867
static int set_spte(struct kvm_vcpu *vcpu, u64 *sptep,
M
Marcelo Tosatti 已提交
1868
		    unsigned pte_access, int user_fault,
1869
		    int write_fault, int dirty, int level,
1870
		    gfn_t gfn, pfn_t pfn, bool speculative,
1871
		    bool can_unsync, bool reset_host_protection)
1872 1873
{
	u64 spte;
M
Marcelo Tosatti 已提交
1874
	int ret = 0;
S
Sheng Yang 已提交
1875

1876 1877 1878 1879 1880
	/*
	 * We don't set the accessed bit, since we sometimes want to see
	 * whether the guest actually used the pte (in order to detect
	 * demand paging).
	 */
S
Sheng Yang 已提交
1881
	spte = shadow_base_present_pte | shadow_dirty_mask;
1882
	if (!speculative)
1883
		spte |= shadow_accessed_mask;
1884 1885
	if (!dirty)
		pte_access &= ~ACC_WRITE_MASK;
S
Sheng Yang 已提交
1886 1887 1888 1889
	if (pte_access & ACC_EXEC_MASK)
		spte |= shadow_x_mask;
	else
		spte |= shadow_nx_mask;
1890
	if (pte_access & ACC_USER_MASK)
S
Sheng Yang 已提交
1891
		spte |= shadow_user_mask;
1892
	if (level > PT_PAGE_TABLE_LEVEL)
M
Marcelo Tosatti 已提交
1893
		spte |= PT_PAGE_SIZE_MASK;
1894 1895 1896
	if (tdp_enabled)
		spte |= kvm_x86_ops->get_mt_mask(vcpu, gfn,
			kvm_is_mmio_pfn(pfn));
1897

1898 1899 1900
	if (reset_host_protection)
		spte |= SPTE_HOST_WRITEABLE;

1901
	spte |= (u64)pfn << PAGE_SHIFT;
1902 1903

	if ((pte_access & ACC_WRITE_MASK)
1904 1905
	    || (!tdp_enabled && write_fault && !is_write_protection(vcpu)
		&& !user_fault)) {
1906

1907 1908
		if (level > PT_PAGE_TABLE_LEVEL &&
		    has_wrprotected_page(vcpu->kvm, gfn, level)) {
1909
			ret = 1;
A
Avi Kivity 已提交
1910 1911
			drop_spte(vcpu->kvm, sptep, shadow_trap_nonpresent_pte);
			goto done;
1912 1913
		}

1914 1915
		spte |= PT_WRITABLE_MASK;

1916 1917 1918
		if (!tdp_enabled && !(pte_access & ACC_WRITE_MASK))
			spte &= ~PT_USER_MASK;

1919 1920 1921 1922 1923 1924
		/*
		 * Optimization: for pte sync, if spte was writable the hash
		 * lookup is unnecessary (and expensive). Write protection
		 * is responsibility of mmu_get_page / kvm_sync_page.
		 * Same reasoning can be applied to dirty page accounting.
		 */
1925
		if (!can_unsync && is_writable_pte(*sptep))
1926 1927
			goto set_pte;

1928
		if (mmu_need_write_protect(vcpu, gfn, can_unsync)) {
1929
			pgprintk("%s: found shadow page for %lx, marking ro\n",
1930
				 __func__, gfn);
M
Marcelo Tosatti 已提交
1931
			ret = 1;
1932
			pte_access &= ~ACC_WRITE_MASK;
1933
			if (is_writable_pte(spte))
1934 1935 1936 1937 1938 1939 1940
				spte &= ~PT_WRITABLE_MASK;
		}
	}

	if (pte_access & ACC_WRITE_MASK)
		mark_page_dirty(vcpu->kvm, gfn);

1941
set_pte:
1942
	update_spte(sptep, spte);
A
Avi Kivity 已提交
1943
done:
M
Marcelo Tosatti 已提交
1944 1945 1946
	return ret;
}

A
Avi Kivity 已提交
1947
static void mmu_set_spte(struct kvm_vcpu *vcpu, u64 *sptep,
M
Marcelo Tosatti 已提交
1948 1949
			 unsigned pt_access, unsigned pte_access,
			 int user_fault, int write_fault, int dirty,
1950
			 int *ptwrite, int level, gfn_t gfn,
1951 1952
			 pfn_t pfn, bool speculative,
			 bool reset_host_protection)
M
Marcelo Tosatti 已提交
1953 1954
{
	int was_rmapped = 0;
1955
	int was_writable = is_writable_pte(*sptep);
1956
	int rmap_count;
M
Marcelo Tosatti 已提交
1957 1958 1959

	pgprintk("%s: spte %llx access %x write_fault %d"
		 " user_fault %d gfn %lx\n",
A
Avi Kivity 已提交
1960
		 __func__, *sptep, pt_access,
M
Marcelo Tosatti 已提交
1961 1962
		 write_fault, user_fault, gfn);

A
Avi Kivity 已提交
1963
	if (is_rmap_spte(*sptep)) {
M
Marcelo Tosatti 已提交
1964 1965 1966 1967
		/*
		 * If we overwrite a PTE page pointer with a 2MB PMD, unlink
		 * the parent of the now unreachable PTE.
		 */
1968 1969
		if (level > PT_PAGE_TABLE_LEVEL &&
		    !is_large_pte(*sptep)) {
M
Marcelo Tosatti 已提交
1970
			struct kvm_mmu_page *child;
A
Avi Kivity 已提交
1971
			u64 pte = *sptep;
M
Marcelo Tosatti 已提交
1972 1973

			child = page_header(pte & PT64_BASE_ADDR_MASK);
A
Avi Kivity 已提交
1974
			mmu_page_remove_parent_pte(child, sptep);
1975 1976
			__set_spte(sptep, shadow_trap_nonpresent_pte);
			kvm_flush_remote_tlbs(vcpu->kvm);
A
Avi Kivity 已提交
1977
		} else if (pfn != spte_to_pfn(*sptep)) {
M
Marcelo Tosatti 已提交
1978
			pgprintk("hfn old %lx new %lx\n",
A
Avi Kivity 已提交
1979
				 spte_to_pfn(*sptep), pfn);
A
Avi Kivity 已提交
1980
			drop_spte(vcpu->kvm, sptep, shadow_trap_nonpresent_pte);
1981
			kvm_flush_remote_tlbs(vcpu->kvm);
1982 1983
		} else
			was_rmapped = 1;
M
Marcelo Tosatti 已提交
1984
	}
1985

A
Avi Kivity 已提交
1986
	if (set_spte(vcpu, sptep, pte_access, user_fault, write_fault,
1987 1988
		      dirty, level, gfn, pfn, speculative, true,
		      reset_host_protection)) {
M
Marcelo Tosatti 已提交
1989 1990
		if (write_fault)
			*ptwrite = 1;
1991
		kvm_mmu_flush_tlb(vcpu);
1992
	}
M
Marcelo Tosatti 已提交
1993

A
Avi Kivity 已提交
1994
	pgprintk("%s: setting spte %llx\n", __func__, *sptep);
M
Marcelo Tosatti 已提交
1995
	pgprintk("instantiating %s PTE (%s) at %ld (%llx) addr %p\n",
A
Avi Kivity 已提交
1996
		 is_large_pte(*sptep)? "2MB" : "4kB",
1997 1998
		 *sptep & PT_PRESENT_MASK ?"RW":"R", gfn,
		 *sptep, sptep);
A
Avi Kivity 已提交
1999
	if (!was_rmapped && is_large_pte(*sptep))
M
Marcelo Tosatti 已提交
2000 2001
		++vcpu->kvm->stat.lpages;

A
Avi Kivity 已提交
2002
	page_header_update_slot(vcpu->kvm, sptep, gfn);
2003
	if (!was_rmapped) {
2004
		rmap_count = rmap_add(vcpu, sptep, gfn);
2005
		kvm_release_pfn_clean(pfn);
2006
		if (rmap_count > RMAP_RECYCLE_THRESHOLD)
2007
			rmap_recycle(vcpu, sptep, gfn);
2008
	} else {
2009
		if (was_writable)
2010
			kvm_release_pfn_dirty(pfn);
2011
		else
2012
			kvm_release_pfn_clean(pfn);
2013
	}
2014
	if (speculative) {
A
Avi Kivity 已提交
2015
		vcpu->arch.last_pte_updated = sptep;
2016 2017
		vcpu->arch.last_pte_gfn = gfn;
	}
2018 2019
}

A
Avi Kivity 已提交
2020 2021 2022 2023
static void nonpaging_new_cr3(struct kvm_vcpu *vcpu)
{
}

2024
static int __direct_map(struct kvm_vcpu *vcpu, gpa_t v, int write,
2025
			int level, gfn_t gfn, pfn_t pfn)
2026
{
2027
	struct kvm_shadow_walk_iterator iterator;
2028
	struct kvm_mmu_page *sp;
2029
	int pt_write = 0;
2030
	gfn_t pseudo_gfn;
A
Avi Kivity 已提交
2031

2032
	for_each_shadow_entry(vcpu, (u64)gfn << PAGE_SHIFT, iterator) {
2033
		if (iterator.level == level) {
2034 2035
			mmu_set_spte(vcpu, iterator.sptep, ACC_ALL, ACC_ALL,
				     0, write, 1, &pt_write,
2036
				     level, gfn, pfn, false, true);
2037 2038
			++vcpu->stat.pf_fixed;
			break;
A
Avi Kivity 已提交
2039 2040
		}

2041
		if (*iterator.sptep == shadow_trap_nonpresent_pte) {
2042 2043 2044 2045
			u64 base_addr = iterator.addr;

			base_addr &= PT64_LVL_ADDR_MASK(iterator.level);
			pseudo_gfn = base_addr >> PAGE_SHIFT;
2046 2047 2048 2049 2050 2051 2052 2053
			sp = kvm_mmu_get_page(vcpu, pseudo_gfn, iterator.addr,
					      iterator.level - 1,
					      1, ACC_ALL, iterator.sptep);
			if (!sp) {
				pgprintk("nonpaging_map: ENOMEM\n");
				kvm_release_pfn_clean(pfn);
				return -ENOMEM;
			}
2054

A
Avi Kivity 已提交
2055 2056 2057 2058
			__set_spte(iterator.sptep,
				   __pa(sp->spt)
				   | PT_PRESENT_MASK | PT_WRITABLE_MASK
				   | shadow_user_mask | shadow_x_mask);
2059 2060 2061
		}
	}
	return pt_write;
A
Avi Kivity 已提交
2062 2063
}

2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084
static void kvm_send_hwpoison_signal(struct kvm *kvm, gfn_t gfn)
{
	char buf[1];
	void __user *hva;
	int r;

	/* Touch the page, so send SIGBUS */
	hva = (void __user *)gfn_to_hva(kvm, gfn);
	r = copy_from_user(buf, hva, 1);
}

static int kvm_handle_bad_page(struct kvm *kvm, gfn_t gfn, pfn_t pfn)
{
	kvm_release_pfn_clean(pfn);
	if (is_hwpoison_pfn(pfn)) {
		kvm_send_hwpoison_signal(kvm, gfn);
		return 0;
	}
	return 1;
}

2085 2086 2087
static int nonpaging_map(struct kvm_vcpu *vcpu, gva_t v, int write, gfn_t gfn)
{
	int r;
2088
	int level;
2089
	pfn_t pfn;
2090
	unsigned long mmu_seq;
2091

2092 2093 2094 2095 2096 2097 2098 2099 2100 2101
	level = mapping_level(vcpu, gfn);

	/*
	 * This path builds a PAE pagetable - so we can map 2mb pages at
	 * maximum. Therefore check if the level is larger than that.
	 */
	if (level > PT_DIRECTORY_LEVEL)
		level = PT_DIRECTORY_LEVEL;

	gfn &= ~(KVM_PAGES_PER_HPAGE(level) - 1);
M
Marcelo Tosatti 已提交
2102

2103
	mmu_seq = vcpu->kvm->mmu_notifier_seq;
2104
	smp_rmb();
2105
	pfn = gfn_to_pfn(vcpu->kvm, gfn);
2106

2107
	/* mmio */
2108 2109
	if (is_error_pfn(pfn))
		return kvm_handle_bad_page(vcpu->kvm, gfn, pfn);
2110

2111
	spin_lock(&vcpu->kvm->mmu_lock);
2112 2113
	if (mmu_notifier_retry(vcpu, mmu_seq))
		goto out_unlock;
2114
	kvm_mmu_free_some_pages(vcpu);
2115
	r = __direct_map(vcpu, v, write, level, gfn, pfn);
2116 2117 2118
	spin_unlock(&vcpu->kvm->mmu_lock);


2119
	return r;
2120 2121 2122 2123 2124

out_unlock:
	spin_unlock(&vcpu->kvm->mmu_lock);
	kvm_release_pfn_clean(pfn);
	return 0;
2125 2126 2127
}


2128 2129 2130
static void mmu_free_roots(struct kvm_vcpu *vcpu)
{
	int i;
2131
	struct kvm_mmu_page *sp;
2132
	LIST_HEAD(invalid_list);
2133

2134
	if (!VALID_PAGE(vcpu->arch.mmu.root_hpa))
A
Avi Kivity 已提交
2135
		return;
2136
	spin_lock(&vcpu->kvm->mmu_lock);
2137 2138
	if (vcpu->arch.mmu.shadow_root_level == PT64_ROOT_LEVEL) {
		hpa_t root = vcpu->arch.mmu.root_hpa;
2139

2140 2141
		sp = page_header(root);
		--sp->root_count;
2142 2143 2144 2145
		if (!sp->root_count && sp->role.invalid) {
			kvm_mmu_prepare_zap_page(vcpu->kvm, sp, &invalid_list);
			kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
		}
2146
		vcpu->arch.mmu.root_hpa = INVALID_PAGE;
2147
		spin_unlock(&vcpu->kvm->mmu_lock);
2148 2149 2150
		return;
	}
	for (i = 0; i < 4; ++i) {
2151
		hpa_t root = vcpu->arch.mmu.pae_root[i];
2152

A
Avi Kivity 已提交
2153 2154
		if (root) {
			root &= PT64_BASE_ADDR_MASK;
2155 2156
			sp = page_header(root);
			--sp->root_count;
2157
			if (!sp->root_count && sp->role.invalid)
2158 2159
				kvm_mmu_prepare_zap_page(vcpu->kvm, sp,
							 &invalid_list);
A
Avi Kivity 已提交
2160
		}
2161
		vcpu->arch.mmu.pae_root[i] = INVALID_PAGE;
2162
	}
2163
	kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
2164
	spin_unlock(&vcpu->kvm->mmu_lock);
2165
	vcpu->arch.mmu.root_hpa = INVALID_PAGE;
2166 2167
}

2168 2169 2170 2171 2172
static int mmu_check_root(struct kvm_vcpu *vcpu, gfn_t root_gfn)
{
	int ret = 0;

	if (!kvm_is_visible_gfn(vcpu->kvm, root_gfn)) {
2173
		kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
2174 2175 2176 2177 2178 2179 2180
		ret = 1;
	}

	return ret;
}

static int mmu_alloc_roots(struct kvm_vcpu *vcpu)
2181 2182
{
	int i;
2183
	gfn_t root_gfn;
2184
	struct kvm_mmu_page *sp;
2185
	int direct = 0;
A
Avi Kivity 已提交
2186
	u64 pdptr;
2187

2188
	root_gfn = vcpu->arch.cr3 >> PAGE_SHIFT;
2189

2190 2191
	if (vcpu->arch.mmu.shadow_root_level == PT64_ROOT_LEVEL) {
		hpa_t root = vcpu->arch.mmu.root_hpa;
2192 2193

		ASSERT(!VALID_PAGE(root));
2194 2195
		if (mmu_check_root(vcpu, root_gfn))
			return 1;
2196 2197 2198 2199
		if (tdp_enabled) {
			direct = 1;
			root_gfn = 0;
		}
2200
		spin_lock(&vcpu->kvm->mmu_lock);
2201
		kvm_mmu_free_some_pages(vcpu);
2202
		sp = kvm_mmu_get_page(vcpu, root_gfn, 0,
2203
				      PT64_ROOT_LEVEL, direct,
2204
				      ACC_ALL, NULL);
2205 2206
		root = __pa(sp->spt);
		++sp->root_count;
2207
		spin_unlock(&vcpu->kvm->mmu_lock);
2208
		vcpu->arch.mmu.root_hpa = root;
2209
		return 0;
2210
	}
2211
	direct = !is_paging(vcpu);
2212
	for (i = 0; i < 4; ++i) {
2213
		hpa_t root = vcpu->arch.mmu.pae_root[i];
2214 2215

		ASSERT(!VALID_PAGE(root));
2216
		if (vcpu->arch.mmu.root_level == PT32E_ROOT_LEVEL) {
A
Avi Kivity 已提交
2217
			pdptr = kvm_pdptr_read(vcpu, i);
2218
			if (!is_present_gpte(pdptr)) {
2219
				vcpu->arch.mmu.pae_root[i] = 0;
A
Avi Kivity 已提交
2220 2221
				continue;
			}
A
Avi Kivity 已提交
2222
			root_gfn = pdptr >> PAGE_SHIFT;
2223
		} else if (vcpu->arch.mmu.root_level == 0)
2224
			root_gfn = 0;
2225 2226
		if (mmu_check_root(vcpu, root_gfn))
			return 1;
2227 2228 2229 2230
		if (tdp_enabled) {
			direct = 1;
			root_gfn = i << 30;
		}
2231
		spin_lock(&vcpu->kvm->mmu_lock);
2232
		kvm_mmu_free_some_pages(vcpu);
2233
		sp = kvm_mmu_get_page(vcpu, root_gfn, i << 30,
2234
				      PT32_ROOT_LEVEL, direct,
2235
				      ACC_ALL, NULL);
2236 2237
		root = __pa(sp->spt);
		++sp->root_count;
2238 2239
		spin_unlock(&vcpu->kvm->mmu_lock);

2240
		vcpu->arch.mmu.pae_root[i] = root | PT_PRESENT_MASK;
2241
	}
2242
	vcpu->arch.mmu.root_hpa = __pa(vcpu->arch.mmu.pae_root);
2243
	return 0;
2244 2245
}

2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261
static void mmu_sync_roots(struct kvm_vcpu *vcpu)
{
	int i;
	struct kvm_mmu_page *sp;

	if (!VALID_PAGE(vcpu->arch.mmu.root_hpa))
		return;
	if (vcpu->arch.mmu.shadow_root_level == PT64_ROOT_LEVEL) {
		hpa_t root = vcpu->arch.mmu.root_hpa;
		sp = page_header(root);
		mmu_sync_children(vcpu, sp);
		return;
	}
	for (i = 0; i < 4; ++i) {
		hpa_t root = vcpu->arch.mmu.pae_root[i];

2262
		if (root && VALID_PAGE(root)) {
2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273
			root &= PT64_BASE_ADDR_MASK;
			sp = page_header(root);
			mmu_sync_children(vcpu, sp);
		}
	}
}

void kvm_mmu_sync_roots(struct kvm_vcpu *vcpu)
{
	spin_lock(&vcpu->kvm->mmu_lock);
	mmu_sync_roots(vcpu);
2274
	spin_unlock(&vcpu->kvm->mmu_lock);
2275 2276
}

2277 2278
static gpa_t nonpaging_gva_to_gpa(struct kvm_vcpu *vcpu, gva_t vaddr,
				  u32 access, u32 *error)
A
Avi Kivity 已提交
2279
{
2280 2281
	if (error)
		*error = 0;
A
Avi Kivity 已提交
2282 2283 2284 2285
	return vaddr;
}

static int nonpaging_page_fault(struct kvm_vcpu *vcpu, gva_t gva,
A
Avi Kivity 已提交
2286
				u32 error_code)
A
Avi Kivity 已提交
2287
{
2288
	gfn_t gfn;
2289
	int r;
A
Avi Kivity 已提交
2290

2291
	pgprintk("%s: gva %lx error %x\n", __func__, gva, error_code);
2292 2293 2294
	r = mmu_topup_memory_caches(vcpu);
	if (r)
		return r;
2295

A
Avi Kivity 已提交
2296
	ASSERT(vcpu);
2297
	ASSERT(VALID_PAGE(vcpu->arch.mmu.root_hpa));
A
Avi Kivity 已提交
2298

2299
	gfn = gva >> PAGE_SHIFT;
A
Avi Kivity 已提交
2300

2301 2302
	return nonpaging_map(vcpu, gva & PAGE_MASK,
			     error_code & PFERR_WRITE_MASK, gfn);
A
Avi Kivity 已提交
2303 2304
}

2305 2306 2307
static int tdp_page_fault(struct kvm_vcpu *vcpu, gva_t gpa,
				u32 error_code)
{
2308
	pfn_t pfn;
2309
	int r;
2310
	int level;
M
Marcelo Tosatti 已提交
2311
	gfn_t gfn = gpa >> PAGE_SHIFT;
2312
	unsigned long mmu_seq;
2313 2314 2315 2316 2317 2318 2319 2320

	ASSERT(vcpu);
	ASSERT(VALID_PAGE(vcpu->arch.mmu.root_hpa));

	r = mmu_topup_memory_caches(vcpu);
	if (r)
		return r;

2321 2322 2323 2324
	level = mapping_level(vcpu, gfn);

	gfn &= ~(KVM_PAGES_PER_HPAGE(level) - 1);

2325
	mmu_seq = vcpu->kvm->mmu_notifier_seq;
2326
	smp_rmb();
2327
	pfn = gfn_to_pfn(vcpu->kvm, gfn);
2328 2329
	if (is_error_pfn(pfn))
		return kvm_handle_bad_page(vcpu->kvm, gfn, pfn);
2330
	spin_lock(&vcpu->kvm->mmu_lock);
2331 2332
	if (mmu_notifier_retry(vcpu, mmu_seq))
		goto out_unlock;
2333 2334
	kvm_mmu_free_some_pages(vcpu);
	r = __direct_map(vcpu, gpa, error_code & PFERR_WRITE_MASK,
2335
			 level, gfn, pfn);
2336 2337 2338
	spin_unlock(&vcpu->kvm->mmu_lock);

	return r;
2339 2340 2341 2342 2343

out_unlock:
	spin_unlock(&vcpu->kvm->mmu_lock);
	kvm_release_pfn_clean(pfn);
	return 0;
2344 2345
}

A
Avi Kivity 已提交
2346 2347
static void nonpaging_free(struct kvm_vcpu *vcpu)
{
2348
	mmu_free_roots(vcpu);
A
Avi Kivity 已提交
2349 2350 2351 2352
}

static int nonpaging_init_context(struct kvm_vcpu *vcpu)
{
2353
	struct kvm_mmu *context = &vcpu->arch.mmu;
A
Avi Kivity 已提交
2354 2355 2356 2357 2358

	context->new_cr3 = nonpaging_new_cr3;
	context->page_fault = nonpaging_page_fault;
	context->gva_to_gpa = nonpaging_gva_to_gpa;
	context->free = nonpaging_free;
2359
	context->prefetch_page = nonpaging_prefetch_page;
2360
	context->sync_page = nonpaging_sync_page;
M
Marcelo Tosatti 已提交
2361
	context->invlpg = nonpaging_invlpg;
2362
	context->root_level = 0;
A
Avi Kivity 已提交
2363
	context->shadow_root_level = PT32E_ROOT_LEVEL;
A
Avi Kivity 已提交
2364
	context->root_hpa = INVALID_PAGE;
A
Avi Kivity 已提交
2365 2366 2367
	return 0;
}

2368
void kvm_mmu_flush_tlb(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2369
{
A
Avi Kivity 已提交
2370
	++vcpu->stat.tlb_flush;
2371
	kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu);
A
Avi Kivity 已提交
2372 2373 2374 2375
}

static void paging_new_cr3(struct kvm_vcpu *vcpu)
{
2376
	pgprintk("%s: cr3 %lx\n", __func__, vcpu->arch.cr3);
2377
	mmu_free_roots(vcpu);
A
Avi Kivity 已提交
2378 2379 2380 2381 2382 2383
}

static void inject_page_fault(struct kvm_vcpu *vcpu,
			      u64 addr,
			      u32 err_code)
{
2384
	kvm_inject_page_fault(vcpu, addr, err_code);
A
Avi Kivity 已提交
2385 2386 2387 2388 2389 2390 2391
}

static void paging_free(struct kvm_vcpu *vcpu)
{
	nonpaging_free(vcpu);
}

2392 2393 2394 2395 2396 2397 2398 2399
static bool is_rsvd_bits_set(struct kvm_vcpu *vcpu, u64 gpte, int level)
{
	int bit7;

	bit7 = (gpte >> 7) & 1;
	return (gpte & vcpu->arch.mmu.rsvd_bits_mask[bit7][level-1]) != 0;
}

A
Avi Kivity 已提交
2400 2401 2402 2403 2404 2405 2406 2407
#define PTTYPE 64
#include "paging_tmpl.h"
#undef PTTYPE

#define PTTYPE 32
#include "paging_tmpl.h"
#undef PTTYPE

2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420
static void reset_rsvds_bits_mask(struct kvm_vcpu *vcpu, int level)
{
	struct kvm_mmu *context = &vcpu->arch.mmu;
	int maxphyaddr = cpuid_maxphyaddr(vcpu);
	u64 exb_bit_rsvd = 0;

	if (!is_nx(vcpu))
		exb_bit_rsvd = rsvd_bits(63, 63);
	switch (level) {
	case PT32_ROOT_LEVEL:
		/* no rsvd bits for 2 level 4K page table entries */
		context->rsvd_bits_mask[0][1] = 0;
		context->rsvd_bits_mask[0][0] = 0;
2421 2422 2423 2424 2425 2426 2427
		context->rsvd_bits_mask[1][0] = context->rsvd_bits_mask[0][0];

		if (!is_pse(vcpu)) {
			context->rsvd_bits_mask[1][1] = 0;
			break;
		}

2428 2429 2430 2431 2432 2433 2434 2435
		if (is_cpuid_PSE36())
			/* 36bits PSE 4MB page */
			context->rsvd_bits_mask[1][1] = rsvd_bits(17, 21);
		else
			/* 32 bits PSE 4MB page */
			context->rsvd_bits_mask[1][1] = rsvd_bits(13, 21);
		break;
	case PT32E_ROOT_LEVEL:
2436 2437 2438
		context->rsvd_bits_mask[0][2] =
			rsvd_bits(maxphyaddr, 63) |
			rsvd_bits(7, 8) | rsvd_bits(1, 2);	/* PDPTE */
2439
		context->rsvd_bits_mask[0][1] = exb_bit_rsvd |
2440
			rsvd_bits(maxphyaddr, 62);	/* PDE */
2441 2442 2443 2444 2445
		context->rsvd_bits_mask[0][0] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 62); 	/* PTE */
		context->rsvd_bits_mask[1][1] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 62) |
			rsvd_bits(13, 20);		/* large page */
2446
		context->rsvd_bits_mask[1][0] = context->rsvd_bits_mask[0][0];
2447 2448 2449 2450 2451 2452 2453
		break;
	case PT64_ROOT_LEVEL:
		context->rsvd_bits_mask[0][3] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 51) | rsvd_bits(7, 8);
		context->rsvd_bits_mask[0][2] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 51) | rsvd_bits(7, 8);
		context->rsvd_bits_mask[0][1] = exb_bit_rsvd |
2454
			rsvd_bits(maxphyaddr, 51);
2455 2456 2457
		context->rsvd_bits_mask[0][0] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 51);
		context->rsvd_bits_mask[1][3] = context->rsvd_bits_mask[0][3];
2458 2459 2460
		context->rsvd_bits_mask[1][2] = exb_bit_rsvd |
			rsvd_bits(maxphyaddr, 51) |
			rsvd_bits(13, 29);
2461
		context->rsvd_bits_mask[1][1] = exb_bit_rsvd |
2462 2463
			rsvd_bits(maxphyaddr, 51) |
			rsvd_bits(13, 20);		/* large page */
2464
		context->rsvd_bits_mask[1][0] = context->rsvd_bits_mask[0][0];
2465 2466 2467 2468
		break;
	}
}

2469
static int paging64_init_context_common(struct kvm_vcpu *vcpu, int level)
A
Avi Kivity 已提交
2470
{
2471
	struct kvm_mmu *context = &vcpu->arch.mmu;
A
Avi Kivity 已提交
2472 2473 2474 2475 2476

	ASSERT(is_pae(vcpu));
	context->new_cr3 = paging_new_cr3;
	context->page_fault = paging64_page_fault;
	context->gva_to_gpa = paging64_gva_to_gpa;
2477
	context->prefetch_page = paging64_prefetch_page;
2478
	context->sync_page = paging64_sync_page;
M
Marcelo Tosatti 已提交
2479
	context->invlpg = paging64_invlpg;
A
Avi Kivity 已提交
2480
	context->free = paging_free;
2481 2482
	context->root_level = level;
	context->shadow_root_level = level;
A
Avi Kivity 已提交
2483
	context->root_hpa = INVALID_PAGE;
A
Avi Kivity 已提交
2484 2485 2486
	return 0;
}

2487 2488
static int paging64_init_context(struct kvm_vcpu *vcpu)
{
2489
	reset_rsvds_bits_mask(vcpu, PT64_ROOT_LEVEL);
2490 2491 2492
	return paging64_init_context_common(vcpu, PT64_ROOT_LEVEL);
}

A
Avi Kivity 已提交
2493 2494
static int paging32_init_context(struct kvm_vcpu *vcpu)
{
2495
	struct kvm_mmu *context = &vcpu->arch.mmu;
A
Avi Kivity 已提交
2496

2497
	reset_rsvds_bits_mask(vcpu, PT32_ROOT_LEVEL);
A
Avi Kivity 已提交
2498 2499 2500 2501
	context->new_cr3 = paging_new_cr3;
	context->page_fault = paging32_page_fault;
	context->gva_to_gpa = paging32_gva_to_gpa;
	context->free = paging_free;
2502
	context->prefetch_page = paging32_prefetch_page;
2503
	context->sync_page = paging32_sync_page;
M
Marcelo Tosatti 已提交
2504
	context->invlpg = paging32_invlpg;
A
Avi Kivity 已提交
2505 2506
	context->root_level = PT32_ROOT_LEVEL;
	context->shadow_root_level = PT32E_ROOT_LEVEL;
A
Avi Kivity 已提交
2507
	context->root_hpa = INVALID_PAGE;
A
Avi Kivity 已提交
2508 2509 2510 2511 2512
	return 0;
}

static int paging32E_init_context(struct kvm_vcpu *vcpu)
{
2513
	reset_rsvds_bits_mask(vcpu, PT32E_ROOT_LEVEL);
2514
	return paging64_init_context_common(vcpu, PT32E_ROOT_LEVEL);
A
Avi Kivity 已提交
2515 2516
}

2517 2518 2519 2520 2521 2522 2523 2524
static int init_kvm_tdp_mmu(struct kvm_vcpu *vcpu)
{
	struct kvm_mmu *context = &vcpu->arch.mmu;

	context->new_cr3 = nonpaging_new_cr3;
	context->page_fault = tdp_page_fault;
	context->free = nonpaging_free;
	context->prefetch_page = nonpaging_prefetch_page;
2525
	context->sync_page = nonpaging_sync_page;
M
Marcelo Tosatti 已提交
2526
	context->invlpg = nonpaging_invlpg;
2527
	context->shadow_root_level = kvm_x86_ops->get_tdp_level();
2528 2529 2530 2531 2532 2533
	context->root_hpa = INVALID_PAGE;

	if (!is_paging(vcpu)) {
		context->gva_to_gpa = nonpaging_gva_to_gpa;
		context->root_level = 0;
	} else if (is_long_mode(vcpu)) {
2534
		reset_rsvds_bits_mask(vcpu, PT64_ROOT_LEVEL);
2535 2536 2537
		context->gva_to_gpa = paging64_gva_to_gpa;
		context->root_level = PT64_ROOT_LEVEL;
	} else if (is_pae(vcpu)) {
2538
		reset_rsvds_bits_mask(vcpu, PT32E_ROOT_LEVEL);
2539 2540 2541
		context->gva_to_gpa = paging64_gva_to_gpa;
		context->root_level = PT32E_ROOT_LEVEL;
	} else {
2542
		reset_rsvds_bits_mask(vcpu, PT32_ROOT_LEVEL);
2543 2544 2545 2546 2547 2548 2549 2550
		context->gva_to_gpa = paging32_gva_to_gpa;
		context->root_level = PT32_ROOT_LEVEL;
	}

	return 0;
}

static int init_kvm_softmmu(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2551
{
2552 2553
	int r;

A
Avi Kivity 已提交
2554
	ASSERT(vcpu);
2555
	ASSERT(!VALID_PAGE(vcpu->arch.mmu.root_hpa));
A
Avi Kivity 已提交
2556 2557

	if (!is_paging(vcpu))
2558
		r = nonpaging_init_context(vcpu);
A
Avi Kivity 已提交
2559
	else if (is_long_mode(vcpu))
2560
		r = paging64_init_context(vcpu);
A
Avi Kivity 已提交
2561
	else if (is_pae(vcpu))
2562
		r = paging32E_init_context(vcpu);
A
Avi Kivity 已提交
2563
	else
2564 2565
		r = paging32_init_context(vcpu);

2566
	vcpu->arch.mmu.base_role.cr4_pae = !!is_pae(vcpu);
2567
	vcpu->arch.mmu.base_role.cr0_wp = is_write_protection(vcpu);
2568 2569

	return r;
A
Avi Kivity 已提交
2570 2571
}

2572 2573
static int init_kvm_mmu(struct kvm_vcpu *vcpu)
{
2574 2575
	vcpu->arch.update_pte.pfn = bad_pfn;

2576 2577 2578 2579 2580 2581
	if (tdp_enabled)
		return init_kvm_tdp_mmu(vcpu);
	else
		return init_kvm_softmmu(vcpu);
}

A
Avi Kivity 已提交
2582 2583 2584
static void destroy_kvm_mmu(struct kvm_vcpu *vcpu)
{
	ASSERT(vcpu);
2585 2586
	if (VALID_PAGE(vcpu->arch.mmu.root_hpa))
		/* mmu.free() should set root_hpa = INVALID_PAGE */
2587
		vcpu->arch.mmu.free(vcpu);
A
Avi Kivity 已提交
2588 2589 2590
}

int kvm_mmu_reset_context(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2591 2592 2593 2594
{
	destroy_kvm_mmu(vcpu);
	return init_kvm_mmu(vcpu);
}
2595
EXPORT_SYMBOL_GPL(kvm_mmu_reset_context);
A
Avi Kivity 已提交
2596 2597

int kvm_mmu_load(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2598
{
2599 2600
	int r;

2601
	r = mmu_topup_memory_caches(vcpu);
A
Avi Kivity 已提交
2602 2603
	if (r)
		goto out;
2604
	r = mmu_alloc_roots(vcpu);
2605
	spin_lock(&vcpu->kvm->mmu_lock);
2606
	mmu_sync_roots(vcpu);
2607
	spin_unlock(&vcpu->kvm->mmu_lock);
2608 2609
	if (r)
		goto out;
2610
	/* set_cr3() should ensure TLB has been flushed */
2611
	kvm_x86_ops->set_cr3(vcpu, vcpu->arch.mmu.root_hpa);
2612 2613
out:
	return r;
A
Avi Kivity 已提交
2614
}
A
Avi Kivity 已提交
2615 2616 2617 2618 2619 2620
EXPORT_SYMBOL_GPL(kvm_mmu_load);

void kvm_mmu_unload(struct kvm_vcpu *vcpu)
{
	mmu_free_roots(vcpu);
}
A
Avi Kivity 已提交
2621

2622
static void mmu_pte_write_zap_pte(struct kvm_vcpu *vcpu,
2623
				  struct kvm_mmu_page *sp,
2624 2625 2626 2627 2628 2629
				  u64 *spte)
{
	u64 pte;
	struct kvm_mmu_page *child;

	pte = *spte;
2630
	if (is_shadow_present_pte(pte)) {
2631
		if (is_last_spte(pte, sp->role.level))
A
Avi Kivity 已提交
2632
			drop_spte(vcpu->kvm, spte, shadow_trap_nonpresent_pte);
2633 2634
		else {
			child = page_header(pte & PT64_BASE_ADDR_MASK);
2635
			mmu_page_remove_parent_pte(child, spte);
2636 2637
		}
	}
A
Avi Kivity 已提交
2638
	__set_spte(spte, shadow_trap_nonpresent_pte);
M
Marcelo Tosatti 已提交
2639 2640
	if (is_large_pte(pte))
		--vcpu->kvm->stat.lpages;
2641 2642
}

2643
static void mmu_pte_write_new_pte(struct kvm_vcpu *vcpu,
2644
				  struct kvm_mmu_page *sp,
2645
				  u64 *spte,
2646
				  const void *new)
2647
{
2648
	if (sp->role.level != PT_PAGE_TABLE_LEVEL) {
2649 2650
		++vcpu->kvm->stat.mmu_pde_zapped;
		return;
2651
        }
2652

A
Avi Kivity 已提交
2653
	++vcpu->kvm->stat.mmu_pte_updated;
2654
	if (!sp->role.cr4_pae)
2655
		paging32_update_pte(vcpu, sp, spte, new);
2656
	else
2657
		paging64_update_pte(vcpu, sp, spte, new);
2658 2659
}

2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672
static bool need_remote_flush(u64 old, u64 new)
{
	if (!is_shadow_present_pte(old))
		return false;
	if (!is_shadow_present_pte(new))
		return true;
	if ((old ^ new) & PT64_BASE_ADDR_MASK)
		return true;
	old ^= PT64_NX_MASK;
	new ^= PT64_NX_MASK;
	return (old & ~new & PT64_PERM_MASK) != 0;
}

2673 2674
static void mmu_pte_write_flush_tlb(struct kvm_vcpu *vcpu, bool zap_page,
				    bool remote_flush, bool local_flush)
2675
{
2676 2677 2678 2679
	if (zap_page)
		return;

	if (remote_flush)
2680
		kvm_flush_remote_tlbs(vcpu->kvm);
2681
	else if (local_flush)
2682 2683 2684
		kvm_mmu_flush_tlb(vcpu);
}

2685 2686
static bool last_updated_pte_accessed(struct kvm_vcpu *vcpu)
{
2687
	u64 *spte = vcpu->arch.last_pte_updated;
2688

S
Sheng Yang 已提交
2689
	return !!(spte && (*spte & shadow_accessed_mask));
2690 2691
}

2692
static void mmu_guess_page_from_pte_write(struct kvm_vcpu *vcpu, gpa_t gpa,
2693
					  u64 gpte)
2694 2695
{
	gfn_t gfn;
2696
	pfn_t pfn;
2697

2698
	if (!is_present_gpte(gpte))
2699 2700
		return;
	gfn = (gpte & PT64_BASE_ADDR_MASK) >> PAGE_SHIFT;
2701

2702
	vcpu->arch.update_pte.mmu_seq = vcpu->kvm->mmu_notifier_seq;
2703
	smp_rmb();
2704
	pfn = gfn_to_pfn(vcpu->kvm, gfn);
2705

2706 2707
	if (is_error_pfn(pfn)) {
		kvm_release_pfn_clean(pfn);
2708 2709
		return;
	}
2710
	vcpu->arch.update_pte.gfn = gfn;
2711
	vcpu->arch.update_pte.pfn = pfn;
2712 2713
}

2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725
static void kvm_mmu_access_page(struct kvm_vcpu *vcpu, gfn_t gfn)
{
	u64 *spte = vcpu->arch.last_pte_updated;

	if (spte
	    && vcpu->arch.last_pte_gfn == gfn
	    && shadow_accessed_mask
	    && !(*spte & shadow_accessed_mask)
	    && is_shadow_present_pte(*spte))
		set_bit(PT_ACCESSED_SHIFT, (unsigned long *)spte);
}

2726
void kvm_mmu_pte_write(struct kvm_vcpu *vcpu, gpa_t gpa,
2727 2728
		       const u8 *new, int bytes,
		       bool guest_initiated)
2729
{
2730
	gfn_t gfn = gpa >> PAGE_SHIFT;
2731
	struct kvm_mmu_page *sp;
2732
	struct hlist_node *node;
2733
	LIST_HEAD(invalid_list);
2734
	u64 entry, gentry;
2735 2736
	u64 *spte;
	unsigned offset = offset_in_page(gpa);
2737
	unsigned pte_size;
2738
	unsigned page_offset;
2739
	unsigned misaligned;
2740
	unsigned quadrant;
2741
	int level;
2742
	int flooded = 0;
2743
	int npte;
2744
	int r;
2745
	int invlpg_counter;
2746 2747 2748
	bool remote_flush, local_flush, zap_page;

	zap_page = remote_flush = local_flush = false;
2749

2750
	pgprintk("%s: gpa %llx bytes %d\n", __func__, gpa, bytes);
2751

2752
	invlpg_counter = atomic_read(&vcpu->kvm->arch.invlpg_counter);
2753 2754 2755 2756 2757 2758 2759

	/*
	 * Assume that the pte write on a page table of the same type
	 * as the current vcpu paging mode.  This is nearly always true
	 * (might be false while changing modes).  Note it is verified later
	 * by update_pte().
	 */
2760
	if ((is_pae(vcpu) && bytes == 4) || !new) {
2761
		/* Handle a 32-bit guest writing two halves of a 64-bit gpte */
2762 2763 2764 2765 2766
		if (is_pae(vcpu)) {
			gpa &= ~(gpa_t)7;
			bytes = 8;
		}
		r = kvm_read_guest(vcpu->kvm, gpa, &gentry, min(bytes, 8));
2767 2768
		if (r)
			gentry = 0;
2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781
		new = (const u8 *)&gentry;
	}

	switch (bytes) {
	case 4:
		gentry = *(const u32 *)new;
		break;
	case 8:
		gentry = *(const u64 *)new;
		break;
	default:
		gentry = 0;
		break;
2782 2783 2784
	}

	mmu_guess_page_from_pte_write(vcpu, gpa, gentry);
2785
	spin_lock(&vcpu->kvm->mmu_lock);
2786 2787
	if (atomic_read(&vcpu->kvm->arch.invlpg_counter) != invlpg_counter)
		gentry = 0;
2788
	kvm_mmu_access_page(vcpu, gfn);
2789
	kvm_mmu_free_some_pages(vcpu);
A
Avi Kivity 已提交
2790
	++vcpu->kvm->stat.mmu_pte_write;
2791
	kvm_mmu_audit(vcpu, "pre pte write");
2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802
	if (guest_initiated) {
		if (gfn == vcpu->arch.last_pt_write_gfn
		    && !last_updated_pte_accessed(vcpu)) {
			++vcpu->arch.last_pt_write_count;
			if (vcpu->arch.last_pt_write_count >= 3)
				flooded = 1;
		} else {
			vcpu->arch.last_pt_write_gfn = gfn;
			vcpu->arch.last_pt_write_count = 1;
			vcpu->arch.last_pte_updated = NULL;
		}
2803
	}
2804

2805
	for_each_gfn_indirect_valid_sp(vcpu->kvm, sp, gfn, node) {
2806
		pte_size = sp->role.cr4_pae ? 8 : 4;
2807
		misaligned = (offset ^ (offset + bytes - 1)) & ~(pte_size - 1);
2808
		misaligned |= bytes < 4;
2809
		if (misaligned || flooded) {
2810 2811 2812 2813
			/*
			 * Misaligned accesses are too much trouble to fix
			 * up; also, they usually indicate a page is not used
			 * as a page table.
2814 2815 2816 2817 2818
			 *
			 * If we're seeing too many writes to a page,
			 * it may no longer be a page table, or we may be
			 * forking, in which case it is better to unmap the
			 * page.
2819 2820
			 */
			pgprintk("misaligned: gpa %llx bytes %d role %x\n",
2821
				 gpa, bytes, sp->role.word);
2822
			zap_page |= !!kvm_mmu_prepare_zap_page(vcpu->kvm, sp,
2823
						     &invalid_list);
A
Avi Kivity 已提交
2824
			++vcpu->kvm->stat.mmu_flooded;
2825 2826
			continue;
		}
2827
		page_offset = offset;
2828
		level = sp->role.level;
2829
		npte = 1;
2830
		if (!sp->role.cr4_pae) {
2831 2832 2833 2834 2835 2836 2837
			page_offset <<= 1;	/* 32->64 */
			/*
			 * A 32-bit pde maps 4MB while the shadow pdes map
			 * only 2MB.  So we need to double the offset again
			 * and zap two pdes instead of one.
			 */
			if (level == PT32_ROOT_LEVEL) {
2838
				page_offset &= ~7; /* kill rounding error */
2839 2840 2841
				page_offset <<= 1;
				npte = 2;
			}
2842
			quadrant = page_offset >> PAGE_SHIFT;
2843
			page_offset &= ~PAGE_MASK;
2844
			if (quadrant != sp->role.quadrant)
2845
				continue;
2846
		}
2847
		local_flush = true;
2848
		spte = &sp->spt[page_offset / sizeof(*spte)];
2849
		while (npte--) {
2850
			entry = *spte;
2851
			mmu_pte_write_zap_pte(vcpu, sp, spte);
2852 2853
			if (gentry)
				mmu_pte_write_new_pte(vcpu, sp, spte, &gentry);
2854 2855
			if (!remote_flush && need_remote_flush(entry, *spte))
				remote_flush = true;
2856
			++spte;
2857 2858
		}
	}
2859
	mmu_pte_write_flush_tlb(vcpu, zap_page, remote_flush, local_flush);
2860
	kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
2861
	kvm_mmu_audit(vcpu, "post pte write");
2862
	spin_unlock(&vcpu->kvm->mmu_lock);
2863 2864 2865
	if (!is_error_pfn(vcpu->arch.update_pte.pfn)) {
		kvm_release_pfn_clean(vcpu->arch.update_pte.pfn);
		vcpu->arch.update_pte.pfn = bad_pfn;
2866
	}
2867 2868
}

2869 2870
int kvm_mmu_unprotect_page_virt(struct kvm_vcpu *vcpu, gva_t gva)
{
2871 2872
	gpa_t gpa;
	int r;
2873

2874 2875 2876
	if (tdp_enabled)
		return 0;

2877
	gpa = kvm_mmu_gva_to_gpa_read(vcpu, gva, NULL);
2878

2879
	spin_lock(&vcpu->kvm->mmu_lock);
2880
	r = kvm_mmu_unprotect_page(vcpu->kvm, gpa >> PAGE_SHIFT);
2881
	spin_unlock(&vcpu->kvm->mmu_lock);
2882
	return r;
2883
}
2884
EXPORT_SYMBOL_GPL(kvm_mmu_unprotect_page_virt);
2885

2886
void __kvm_mmu_free_some_pages(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2887
{
2888
	int free_pages;
2889
	LIST_HEAD(invalid_list);
2890 2891 2892

	free_pages = vcpu->kvm->arch.n_free_mmu_pages;
	while (free_pages < KVM_REFILL_PAGES &&
2893
	       !list_empty(&vcpu->kvm->arch.active_mmu_pages)) {
2894
		struct kvm_mmu_page *sp;
A
Avi Kivity 已提交
2895

2896
		sp = container_of(vcpu->kvm->arch.active_mmu_pages.prev,
2897
				  struct kvm_mmu_page, link);
2898 2899
		free_pages += kvm_mmu_prepare_zap_page(vcpu->kvm, sp,
						       &invalid_list);
A
Avi Kivity 已提交
2900
		++vcpu->kvm->stat.mmu_recycled;
A
Avi Kivity 已提交
2901
	}
2902
	kvm_mmu_commit_zap_page(vcpu->kvm, &invalid_list);
A
Avi Kivity 已提交
2903 2904
}

2905 2906 2907 2908 2909
int kvm_mmu_page_fault(struct kvm_vcpu *vcpu, gva_t cr2, u32 error_code)
{
	int r;
	enum emulation_result er;

2910
	r = vcpu->arch.mmu.page_fault(vcpu, cr2, error_code);
2911 2912 2913 2914 2915 2916 2917 2918
	if (r < 0)
		goto out;

	if (!r) {
		r = 1;
		goto out;
	}

2919 2920 2921 2922
	r = mmu_topup_memory_caches(vcpu);
	if (r)
		goto out;

A
Avi Kivity 已提交
2923
	er = emulate_instruction(vcpu, cr2, error_code, 0);
2924 2925 2926 2927 2928 2929

	switch (er) {
	case EMULATE_DONE:
		return 1;
	case EMULATE_DO_MMIO:
		++vcpu->stat.mmio_exits;
2930
		/* fall through */
2931
	case EMULATE_FAIL:
2932
		return 0;
2933 2934 2935 2936 2937 2938 2939 2940
	default:
		BUG();
	}
out:
	return r;
}
EXPORT_SYMBOL_GPL(kvm_mmu_page_fault);

M
Marcelo Tosatti 已提交
2941 2942 2943 2944 2945 2946 2947 2948
void kvm_mmu_invlpg(struct kvm_vcpu *vcpu, gva_t gva)
{
	vcpu->arch.mmu.invlpg(vcpu, gva);
	kvm_mmu_flush_tlb(vcpu);
	++vcpu->stat.invlpg;
}
EXPORT_SYMBOL_GPL(kvm_mmu_invlpg);

2949 2950 2951 2952 2953 2954
void kvm_enable_tdp(void)
{
	tdp_enabled = true;
}
EXPORT_SYMBOL_GPL(kvm_enable_tdp);

2955 2956 2957 2958 2959 2960
void kvm_disable_tdp(void)
{
	tdp_enabled = false;
}
EXPORT_SYMBOL_GPL(kvm_disable_tdp);

A
Avi Kivity 已提交
2961 2962
static void free_mmu_pages(struct kvm_vcpu *vcpu)
{
2963
	free_page((unsigned long)vcpu->arch.mmu.pae_root);
A
Avi Kivity 已提交
2964 2965 2966 2967
}

static int alloc_mmu_pages(struct kvm_vcpu *vcpu)
{
2968
	struct page *page;
A
Avi Kivity 已提交
2969 2970 2971 2972
	int i;

	ASSERT(vcpu);

2973 2974 2975 2976 2977 2978 2979
	/*
	 * When emulating 32-bit mode, cr3 is only 32 bits even on x86_64.
	 * Therefore we need to allocate shadow page tables in the first
	 * 4GB of memory, which happens to fit the DMA32 zone.
	 */
	page = alloc_page(GFP_KERNEL | __GFP_DMA32);
	if (!page)
2980 2981
		return -ENOMEM;

2982
	vcpu->arch.mmu.pae_root = page_address(page);
2983
	for (i = 0; i < 4; ++i)
2984
		vcpu->arch.mmu.pae_root[i] = INVALID_PAGE;
2985

A
Avi Kivity 已提交
2986 2987 2988
	return 0;
}

2989
int kvm_mmu_create(struct kvm_vcpu *vcpu)
A
Avi Kivity 已提交
2990 2991
{
	ASSERT(vcpu);
2992
	ASSERT(!VALID_PAGE(vcpu->arch.mmu.root_hpa));
A
Avi Kivity 已提交
2993

2994 2995
	return alloc_mmu_pages(vcpu);
}
A
Avi Kivity 已提交
2996

2997 2998 2999
int kvm_mmu_setup(struct kvm_vcpu *vcpu)
{
	ASSERT(vcpu);
3000
	ASSERT(!VALID_PAGE(vcpu->arch.mmu.root_hpa));
3001

3002
	return init_kvm_mmu(vcpu);
A
Avi Kivity 已提交
3003 3004 3005 3006 3007 3008 3009 3010
}

void kvm_mmu_destroy(struct kvm_vcpu *vcpu)
{
	ASSERT(vcpu);

	destroy_kvm_mmu(vcpu);
	free_mmu_pages(vcpu);
3011
	mmu_free_memory_caches(vcpu);
A
Avi Kivity 已提交
3012 3013
}

3014
void kvm_mmu_slot_remove_write_access(struct kvm *kvm, int slot)
A
Avi Kivity 已提交
3015
{
3016
	struct kvm_mmu_page *sp;
A
Avi Kivity 已提交
3017

3018
	list_for_each_entry(sp, &kvm->arch.active_mmu_pages, link) {
A
Avi Kivity 已提交
3019 3020 3021
		int i;
		u64 *pt;

3022
		if (!test_bit(slot, sp->slot_bitmap))
A
Avi Kivity 已提交
3023 3024
			continue;

3025
		pt = sp->spt;
A
Avi Kivity 已提交
3026 3027
		for (i = 0; i < PT64_ENT_PER_PAGE; ++i)
			/* avoid RMW */
3028
			if (is_writable_pte(pt[i]))
A
Avi Kivity 已提交
3029 3030
				pt[i] &= ~PT_WRITABLE_MASK;
	}
3031
	kvm_flush_remote_tlbs(kvm);
A
Avi Kivity 已提交
3032
}
3033

3034
void kvm_mmu_zap_all(struct kvm *kvm)
D
Dor Laor 已提交
3035
{
3036
	struct kvm_mmu_page *sp, *node;
3037
	LIST_HEAD(invalid_list);
D
Dor Laor 已提交
3038

3039
	spin_lock(&kvm->mmu_lock);
3040
restart:
3041
	list_for_each_entry_safe(sp, node, &kvm->arch.active_mmu_pages, link)
3042
		if (kvm_mmu_prepare_zap_page(kvm, sp, &invalid_list))
3043 3044
			goto restart;

3045
	kvm_mmu_commit_zap_page(kvm, &invalid_list);
3046
	spin_unlock(&kvm->mmu_lock);
D
Dor Laor 已提交
3047 3048
}

3049 3050
static int kvm_mmu_remove_some_alloc_mmu_pages(struct kvm *kvm,
					       struct list_head *invalid_list)
3051 3052 3053 3054 3055
{
	struct kvm_mmu_page *page;

	page = container_of(kvm->arch.active_mmu_pages.prev,
			    struct kvm_mmu_page, link);
3056
	return kvm_mmu_prepare_zap_page(kvm, page, invalid_list);
3057 3058
}

3059
static int mmu_shrink(struct shrinker *shrink, int nr_to_scan, gfp_t gfp_mask)
3060 3061 3062 3063 3064 3065 3066 3067
{
	struct kvm *kvm;
	struct kvm *kvm_freed = NULL;
	int cache_count = 0;

	spin_lock(&kvm_lock);

	list_for_each_entry(kvm, &vm_list, vm_list) {
G
Gui Jianfeng 已提交
3068
		int npages, idx, freed_pages;
3069
		LIST_HEAD(invalid_list);
3070

3071
		idx = srcu_read_lock(&kvm->srcu);
3072 3073 3074 3075 3076
		spin_lock(&kvm->mmu_lock);
		npages = kvm->arch.n_alloc_mmu_pages -
			 kvm->arch.n_free_mmu_pages;
		cache_count += npages;
		if (!kvm_freed && nr_to_scan > 0 && npages > 0) {
3077 3078
			freed_pages = kvm_mmu_remove_some_alloc_mmu_pages(kvm,
							  &invalid_list);
G
Gui Jianfeng 已提交
3079
			cache_count -= freed_pages;
3080 3081 3082 3083
			kvm_freed = kvm;
		}
		nr_to_scan--;

3084
		kvm_mmu_commit_zap_page(kvm, &invalid_list);
3085
		spin_unlock(&kvm->mmu_lock);
3086
		srcu_read_unlock(&kvm->srcu, idx);
3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100
	}
	if (kvm_freed)
		list_move_tail(&kvm_freed->vm_list, &vm_list);

	spin_unlock(&kvm_lock);

	return cache_count;
}

static struct shrinker mmu_shrinker = {
	.shrink = mmu_shrink,
	.seeks = DEFAULT_SEEKS * 10,
};

I
Ingo Molnar 已提交
3101
static void mmu_destroy_caches(void)
3102 3103 3104 3105 3106
{
	if (pte_chain_cache)
		kmem_cache_destroy(pte_chain_cache);
	if (rmap_desc_cache)
		kmem_cache_destroy(rmap_desc_cache);
3107 3108
	if (mmu_page_header_cache)
		kmem_cache_destroy(mmu_page_header_cache);
3109 3110
}

3111 3112 3113 3114 3115 3116
void kvm_mmu_module_exit(void)
{
	mmu_destroy_caches();
	unregister_shrinker(&mmu_shrinker);
}

3117 3118 3119 3120
int kvm_mmu_module_init(void)
{
	pte_chain_cache = kmem_cache_create("kvm_pte_chain",
					    sizeof(struct kvm_pte_chain),
3121
					    0, 0, NULL);
3122 3123 3124 3125
	if (!pte_chain_cache)
		goto nomem;
	rmap_desc_cache = kmem_cache_create("kvm_rmap_desc",
					    sizeof(struct kvm_rmap_desc),
3126
					    0, 0, NULL);
3127 3128 3129
	if (!rmap_desc_cache)
		goto nomem;

3130 3131
	mmu_page_header_cache = kmem_cache_create("kvm_mmu_page_header",
						  sizeof(struct kvm_mmu_page),
3132
						  0, 0, NULL);
3133 3134 3135
	if (!mmu_page_header_cache)
		goto nomem;

3136 3137
	register_shrinker(&mmu_shrinker);

3138 3139 3140
	return 0;

nomem:
3141
	mmu_destroy_caches();
3142 3143 3144
	return -ENOMEM;
}

3145 3146 3147 3148 3149 3150 3151 3152
/*
 * Caculate mmu pages needed for kvm.
 */
unsigned int kvm_mmu_calculate_mmu_pages(struct kvm *kvm)
{
	int i;
	unsigned int nr_mmu_pages;
	unsigned int  nr_pages = 0;
3153
	struct kvm_memslots *slots;
3154

3155 3156
	slots = kvm_memslots(kvm);

3157 3158
	for (i = 0; i < slots->nmemslots; i++)
		nr_pages += slots->memslots[i].npages;
3159 3160 3161 3162 3163 3164 3165 3166

	nr_mmu_pages = nr_pages * KVM_PERMILLE_MMU_PAGES / 1000;
	nr_mmu_pages = max(nr_mmu_pages,
			(unsigned int) KVM_MIN_ALLOC_MMU_PAGES);

	return nr_mmu_pages;
}

3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201
static void *pv_mmu_peek_buffer(struct kvm_pv_mmu_op_buffer *buffer,
				unsigned len)
{
	if (len > buffer->len)
		return NULL;
	return buffer->ptr;
}

static void *pv_mmu_read_buffer(struct kvm_pv_mmu_op_buffer *buffer,
				unsigned len)
{
	void *ret;

	ret = pv_mmu_peek_buffer(buffer, len);
	if (!ret)
		return ret;
	buffer->ptr += len;
	buffer->len -= len;
	buffer->processed += len;
	return ret;
}

static int kvm_pv_mmu_write(struct kvm_vcpu *vcpu,
			     gpa_t addr, gpa_t value)
{
	int bytes = 8;
	int r;

	if (!is_long_mode(vcpu) && !is_pae(vcpu))
		bytes = 4;

	r = mmu_topup_memory_caches(vcpu);
	if (r)
		return r;

3202
	if (!emulator_write_phys(vcpu, addr, &value, bytes))
3203 3204 3205 3206 3207 3208 3209
		return -EFAULT;

	return 1;
}

static int kvm_pv_mmu_flush_tlb(struct kvm_vcpu *vcpu)
{
3210
	(void)kvm_set_cr3(vcpu, vcpu->arch.cr3);
3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263
	return 1;
}

static int kvm_pv_mmu_release_pt(struct kvm_vcpu *vcpu, gpa_t addr)
{
	spin_lock(&vcpu->kvm->mmu_lock);
	mmu_unshadow(vcpu->kvm, addr >> PAGE_SHIFT);
	spin_unlock(&vcpu->kvm->mmu_lock);
	return 1;
}

static int kvm_pv_mmu_op_one(struct kvm_vcpu *vcpu,
			     struct kvm_pv_mmu_op_buffer *buffer)
{
	struct kvm_mmu_op_header *header;

	header = pv_mmu_peek_buffer(buffer, sizeof *header);
	if (!header)
		return 0;
	switch (header->op) {
	case KVM_MMU_OP_WRITE_PTE: {
		struct kvm_mmu_op_write_pte *wpte;

		wpte = pv_mmu_read_buffer(buffer, sizeof *wpte);
		if (!wpte)
			return 0;
		return kvm_pv_mmu_write(vcpu, wpte->pte_phys,
					wpte->pte_val);
	}
	case KVM_MMU_OP_FLUSH_TLB: {
		struct kvm_mmu_op_flush_tlb *ftlb;

		ftlb = pv_mmu_read_buffer(buffer, sizeof *ftlb);
		if (!ftlb)
			return 0;
		return kvm_pv_mmu_flush_tlb(vcpu);
	}
	case KVM_MMU_OP_RELEASE_PT: {
		struct kvm_mmu_op_release_pt *rpt;

		rpt = pv_mmu_read_buffer(buffer, sizeof *rpt);
		if (!rpt)
			return 0;
		return kvm_pv_mmu_release_pt(vcpu, rpt->pt_phys);
	}
	default: return 0;
	}
}

int kvm_pv_mmu_op(struct kvm_vcpu *vcpu, unsigned long bytes,
		  gpa_t addr, unsigned long *ret)
{
	int r;
3264
	struct kvm_pv_mmu_op_buffer *buffer = &vcpu->arch.mmu_op_buffer;
3265

3266 3267 3268
	buffer->ptr = buffer->buf;
	buffer->len = min_t(unsigned long, bytes, sizeof buffer->buf);
	buffer->processed = 0;
3269

3270
	r = kvm_read_guest(vcpu->kvm, addr, buffer->buf, buffer->len);
3271 3272 3273
	if (r)
		goto out;

3274 3275
	while (buffer->len) {
		r = kvm_pv_mmu_op_one(vcpu, buffer);
3276 3277 3278 3279 3280 3281 3282 3283
		if (r < 0)
			goto out;
		if (r == 0)
			break;
	}

	r = 1;
out:
3284
	*ret = buffer->processed;
3285 3286 3287
	return r;
}

3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305
int kvm_mmu_get_spte_hierarchy(struct kvm_vcpu *vcpu, u64 addr, u64 sptes[4])
{
	struct kvm_shadow_walk_iterator iterator;
	int nr_sptes = 0;

	spin_lock(&vcpu->kvm->mmu_lock);
	for_each_shadow_entry(vcpu, addr, iterator) {
		sptes[iterator.level-1] = *iterator.sptep;
		nr_sptes++;
		if (!is_shadow_present_pte(*iterator.sptep))
			break;
	}
	spin_unlock(&vcpu->kvm->mmu_lock);

	return nr_sptes;
}
EXPORT_SYMBOL_GPL(kvm_mmu_get_spte_hierarchy);

3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317
#ifdef AUDIT

static const char *audit_msg;

static gva_t canonicalize(gva_t gva)
{
#ifdef CONFIG_X86_64
	gva = (long long)(gva << 16) >> 16;
#endif
	return gva;
}

3318

3319
typedef void (*inspect_spte_fn) (struct kvm *kvm, u64 *sptep);
3320 3321 3322 3323 3324 3325 3326 3327 3328 3329

static void __mmu_spte_walk(struct kvm *kvm, struct kvm_mmu_page *sp,
			    inspect_spte_fn fn)
{
	int i;

	for (i = 0; i < PT64_ENT_PER_PAGE; ++i) {
		u64 ent = sp->spt[i];

		if (is_shadow_present_pte(ent)) {
3330
			if (!is_last_spte(ent, sp->role.level)) {
3331 3332 3333
				struct kvm_mmu_page *child;
				child = page_header(ent & PT64_BASE_ADDR_MASK);
				__mmu_spte_walk(kvm, child, fn);
3334
			} else
3335
				fn(kvm, &sp->spt[i]);
3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364
		}
	}
}

static void mmu_spte_walk(struct kvm_vcpu *vcpu, inspect_spte_fn fn)
{
	int i;
	struct kvm_mmu_page *sp;

	if (!VALID_PAGE(vcpu->arch.mmu.root_hpa))
		return;
	if (vcpu->arch.mmu.shadow_root_level == PT64_ROOT_LEVEL) {
		hpa_t root = vcpu->arch.mmu.root_hpa;
		sp = page_header(root);
		__mmu_spte_walk(vcpu->kvm, sp, fn);
		return;
	}
	for (i = 0; i < 4; ++i) {
		hpa_t root = vcpu->arch.mmu.pae_root[i];

		if (root && VALID_PAGE(root)) {
			root &= PT64_BASE_ADDR_MASK;
			sp = page_header(root);
			__mmu_spte_walk(vcpu->kvm, sp, fn);
		}
	}
	return;
}

3365 3366 3367 3368 3369 3370 3371 3372 3373 3374
static void audit_mappings_page(struct kvm_vcpu *vcpu, u64 page_pte,
				gva_t va, int level)
{
	u64 *pt = __va(page_pte & PT64_BASE_ADDR_MASK);
	int i;
	gva_t va_delta = 1ul << (PAGE_SHIFT + 9 * (level - 1));

	for (i = 0; i < PT64_ENT_PER_PAGE; ++i, va += va_delta) {
		u64 ent = pt[i];

3375
		if (ent == shadow_trap_nonpresent_pte)
3376 3377 3378
			continue;

		va = canonicalize(va);
3379 3380 3381
		if (is_shadow_present_pte(ent) && !is_last_spte(ent, level))
			audit_mappings_page(vcpu, ent, va, level - 1);
		else {
3382
			gpa_t gpa = kvm_mmu_gva_to_gpa_read(vcpu, va, NULL);
J
Jan Kiszka 已提交
3383 3384 3385
			gfn_t gfn = gpa >> PAGE_SHIFT;
			pfn_t pfn = gfn_to_pfn(vcpu->kvm, gfn);
			hpa_t hpa = (hpa_t)pfn << PAGE_SHIFT;
3386

3387 3388 3389 3390 3391
			if (is_error_pfn(pfn)) {
				kvm_release_pfn_clean(pfn);
				continue;
			}

3392
			if (is_shadow_present_pte(ent)
3393
			    && (ent & PT64_BASE_ADDR_MASK) != hpa)
3394 3395
				printk(KERN_ERR "xx audit error: (%s) levels %d"
				       " gva %lx gpa %llx hpa %llx ent %llx %d\n",
3396
				       audit_msg, vcpu->arch.mmu.root_level,
M
Mike Day 已提交
3397 3398
				       va, gpa, hpa, ent,
				       is_shadow_present_pte(ent));
3399 3400 3401 3402
			else if (ent == shadow_notrap_nonpresent_pte
				 && !is_error_hpa(hpa))
				printk(KERN_ERR "audit: (%s) notrap shadow,"
				       " valid guest gva %lx\n", audit_msg, va);
3403
			kvm_release_pfn_clean(pfn);
3404

3405 3406 3407 3408 3409 3410
		}
	}
}

static void audit_mappings(struct kvm_vcpu *vcpu)
{
3411
	unsigned i;
3412

3413 3414
	if (vcpu->arch.mmu.root_level == 4)
		audit_mappings_page(vcpu, vcpu->arch.mmu.root_hpa, 0, 4);
3415 3416
	else
		for (i = 0; i < 4; ++i)
3417
			if (vcpu->arch.mmu.pae_root[i] & PT_PRESENT_MASK)
3418
				audit_mappings_page(vcpu,
3419
						    vcpu->arch.mmu.pae_root[i],
3420 3421 3422 3423 3424 3425
						    i << 30,
						    2);
}

static int count_rmaps(struct kvm_vcpu *vcpu)
{
3426 3427
	struct kvm *kvm = vcpu->kvm;
	struct kvm_memslots *slots;
3428
	int nmaps = 0;
3429
	int i, j, k, idx;
3430

3431
	idx = srcu_read_lock(&kvm->srcu);
3432
	slots = kvm_memslots(kvm);
3433
	for (i = 0; i < KVM_MEMORY_SLOTS; ++i) {
3434
		struct kvm_memory_slot *m = &slots->memslots[i];
3435 3436 3437
		struct kvm_rmap_desc *d;

		for (j = 0; j < m->npages; ++j) {
3438
			unsigned long *rmapp = &m->rmap[j];
3439

3440
			if (!*rmapp)
3441
				continue;
3442
			if (!(*rmapp & 1)) {
3443 3444 3445
				++nmaps;
				continue;
			}
3446
			d = (struct kvm_rmap_desc *)(*rmapp & ~1ul);
3447 3448
			while (d) {
				for (k = 0; k < RMAP_EXT; ++k)
A
Avi Kivity 已提交
3449
					if (d->sptes[k])
3450 3451 3452 3453 3454 3455 3456
						++nmaps;
					else
						break;
				d = d->more;
			}
		}
	}
3457
	srcu_read_unlock(&kvm->srcu, idx);
3458 3459 3460
	return nmaps;
}

3461
void inspect_spte_has_rmap(struct kvm *kvm, u64 *sptep)
3462 3463 3464 3465 3466
{
	unsigned long *rmapp;
	struct kvm_mmu_page *rev_sp;
	gfn_t gfn;

3467
	if (is_writable_pte(*sptep)) {
3468
		rev_sp = page_header(__pa(sptep));
3469
		gfn = kvm_mmu_page_get_gfn(rev_sp, sptep - rev_sp->spt);
3470 3471 3472 3473 3474 3475 3476

		if (!gfn_to_memslot(kvm, gfn)) {
			if (!printk_ratelimit())
				return;
			printk(KERN_ERR "%s: no memslot for gfn %ld\n",
					 audit_msg, gfn);
			printk(KERN_ERR "%s: index %ld of sp (gfn=%lx)\n",
3477
			       audit_msg, (long int)(sptep - rev_sp->spt),
3478 3479 3480 3481 3482
					rev_sp->gfn);
			dump_stack();
			return;
		}

3483
		rmapp = gfn_to_rmap(kvm, gfn, rev_sp->role.level);
3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500
		if (!*rmapp) {
			if (!printk_ratelimit())
				return;
			printk(KERN_ERR "%s: no rmap for writable spte %llx\n",
					 audit_msg, *sptep);
			dump_stack();
		}
	}

}

void audit_writable_sptes_have_rmaps(struct kvm_vcpu *vcpu)
{
	mmu_spte_walk(vcpu, inspect_spte_has_rmap);
}

static void check_writable_mappings_rmap(struct kvm_vcpu *vcpu)
3501
{
3502
	struct kvm_mmu_page *sp;
3503 3504
	int i;

3505
	list_for_each_entry(sp, &vcpu->kvm->arch.active_mmu_pages, link) {
3506
		u64 *pt = sp->spt;
3507

3508
		if (sp->role.level != PT_PAGE_TABLE_LEVEL)
3509 3510 3511 3512 3513 3514 3515
			continue;

		for (i = 0; i < PT64_ENT_PER_PAGE; ++i) {
			u64 ent = pt[i];

			if (!(ent & PT_PRESENT_MASK))
				continue;
3516
			if (!is_writable_pte(ent))
3517
				continue;
3518
			inspect_spte_has_rmap(vcpu->kvm, &pt[i]);
3519 3520
		}
	}
3521
	return;
3522 3523 3524 3525
}

static void audit_rmap(struct kvm_vcpu *vcpu)
{
3526 3527
	check_writable_mappings_rmap(vcpu);
	count_rmaps(vcpu);
3528 3529 3530 3531
}

static void audit_write_protection(struct kvm_vcpu *vcpu)
{
3532
	struct kvm_mmu_page *sp;
3533 3534
	struct kvm_memory_slot *slot;
	unsigned long *rmapp;
3535
	u64 *spte;
3536
	gfn_t gfn;
3537

3538
	list_for_each_entry(sp, &vcpu->kvm->arch.active_mmu_pages, link) {
3539
		if (sp->role.direct)
3540
			continue;
3541 3542
		if (sp->unsync)
			continue;
3543

A
Avi Kivity 已提交
3544
		slot = gfn_to_memslot(vcpu->kvm, sp->gfn);
3545
		rmapp = &slot->rmap[gfn - slot->base_gfn];
3546 3547 3548

		spte = rmap_next(vcpu->kvm, rmapp, NULL);
		while (spte) {
3549
			if (is_writable_pte(*spte))
3550 3551
				printk(KERN_ERR "%s: (%s) shadow page has "
				"writable mappings: gfn %lx role %x\n",
3552
			       __func__, audit_msg, sp->gfn,
3553
			       sp->role.word);
3554 3555
			spte = rmap_next(vcpu->kvm, rmapp, spte);
		}
3556 3557 3558 3559 3560 3561 3562 3563 3564 3565 3566
	}
}

static void kvm_mmu_audit(struct kvm_vcpu *vcpu, const char *msg)
{
	int olddbg = dbg;

	dbg = 0;
	audit_msg = msg;
	audit_rmap(vcpu);
	audit_write_protection(vcpu);
3567 3568
	if (strcmp("pre pte write", audit_msg) != 0)
		audit_mappings(vcpu);
3569
	audit_writable_sptes_have_rmaps(vcpu);
3570 3571 3572 3573
	dbg = olddbg;
}

#endif