xref: /openbmc/linux/arch/x86/kvm/mtrr.c (revision 6a39bbc5da27c3b2520876b71e4f7b50f5313503)
1ff53604bSXiao Guangrong /*
2ff53604bSXiao Guangrong  * vMTRR implementation
3ff53604bSXiao Guangrong  *
4ff53604bSXiao Guangrong  * Copyright (C) 2006 Qumranet, Inc.
5ff53604bSXiao Guangrong  * Copyright 2010 Red Hat, Inc. and/or its affiliates.
6ff53604bSXiao Guangrong  * Copyright(C) 2015 Intel Corporation.
7ff53604bSXiao Guangrong  *
8ff53604bSXiao Guangrong  * Authors:
9ff53604bSXiao Guangrong  *   Yaniv Kamay  <yaniv@qumranet.com>
10ff53604bSXiao Guangrong  *   Avi Kivity   <avi@qumranet.com>
11ff53604bSXiao Guangrong  *   Marcelo Tosatti <mtosatti@redhat.com>
12ff53604bSXiao Guangrong  *   Paolo Bonzini <pbonzini@redhat.com>
13ff53604bSXiao Guangrong  *   Xiao Guangrong <guangrong.xiao@linux.intel.com>
14ff53604bSXiao Guangrong  *
15ff53604bSXiao Guangrong  * This work is licensed under the terms of the GNU GPL, version 2.  See
16ff53604bSXiao Guangrong  * the COPYING file in the top-level directory.
17ff53604bSXiao Guangrong  */
18ff53604bSXiao Guangrong 
19ff53604bSXiao Guangrong #include <linux/kvm_host.h>
20ff53604bSXiao Guangrong #include <asm/mtrr.h>
21ff53604bSXiao Guangrong 
22ff53604bSXiao Guangrong #include "cpuid.h"
23ff53604bSXiao Guangrong #include "mmu.h"
24ff53604bSXiao Guangrong 
2510fac2dcSXiao Guangrong #define IA32_MTRR_DEF_TYPE_E		(1ULL << 11)
2610fac2dcSXiao Guangrong #define IA32_MTRR_DEF_TYPE_FE		(1ULL << 10)
2710fac2dcSXiao Guangrong #define IA32_MTRR_DEF_TYPE_TYPE_MASK	(0xff)
2810fac2dcSXiao Guangrong 
29ff53604bSXiao Guangrong static bool msr_mtrr_valid(unsigned msr)
30ff53604bSXiao Guangrong {
31ff53604bSXiao Guangrong 	switch (msr) {
32ff53604bSXiao Guangrong 	case 0x200 ... 0x200 + 2 * KVM_NR_VAR_MTRR - 1:
33ff53604bSXiao Guangrong 	case MSR_MTRRfix64K_00000:
34ff53604bSXiao Guangrong 	case MSR_MTRRfix16K_80000:
35ff53604bSXiao Guangrong 	case MSR_MTRRfix16K_A0000:
36ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_C0000:
37ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_C8000:
38ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_D0000:
39ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_D8000:
40ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_E0000:
41ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_E8000:
42ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_F0000:
43ff53604bSXiao Guangrong 	case MSR_MTRRfix4K_F8000:
44ff53604bSXiao Guangrong 	case MSR_MTRRdefType:
45ff53604bSXiao Guangrong 	case MSR_IA32_CR_PAT:
46ff53604bSXiao Guangrong 		return true;
47ff53604bSXiao Guangrong 	case 0x2f8:
48ff53604bSXiao Guangrong 		return true;
49ff53604bSXiao Guangrong 	}
50ff53604bSXiao Guangrong 	return false;
51ff53604bSXiao Guangrong }
52ff53604bSXiao Guangrong 
53ff53604bSXiao Guangrong static bool valid_pat_type(unsigned t)
54ff53604bSXiao Guangrong {
55ff53604bSXiao Guangrong 	return t < 8 && (1 << t) & 0xf3; /* 0, 1, 4, 5, 6, 7 */
56ff53604bSXiao Guangrong }
57ff53604bSXiao Guangrong 
58ff53604bSXiao Guangrong static bool valid_mtrr_type(unsigned t)
59ff53604bSXiao Guangrong {
60ff53604bSXiao Guangrong 	return t < 8 && (1 << t) & 0x73; /* 0, 1, 4, 5, 6 */
61ff53604bSXiao Guangrong }
62ff53604bSXiao Guangrong 
63ff53604bSXiao Guangrong bool kvm_mtrr_valid(struct kvm_vcpu *vcpu, u32 msr, u64 data)
64ff53604bSXiao Guangrong {
65ff53604bSXiao Guangrong 	int i;
66ff53604bSXiao Guangrong 	u64 mask;
67ff53604bSXiao Guangrong 
68ff53604bSXiao Guangrong 	if (!msr_mtrr_valid(msr))
69ff53604bSXiao Guangrong 		return false;
70ff53604bSXiao Guangrong 
71ff53604bSXiao Guangrong 	if (msr == MSR_IA32_CR_PAT) {
72ff53604bSXiao Guangrong 		for (i = 0; i < 8; i++)
73ff53604bSXiao Guangrong 			if (!valid_pat_type((data >> (i * 8)) & 0xff))
74ff53604bSXiao Guangrong 				return false;
75ff53604bSXiao Guangrong 		return true;
76ff53604bSXiao Guangrong 	} else if (msr == MSR_MTRRdefType) {
77ff53604bSXiao Guangrong 		if (data & ~0xcff)
78ff53604bSXiao Guangrong 			return false;
79ff53604bSXiao Guangrong 		return valid_mtrr_type(data & 0xff);
80ff53604bSXiao Guangrong 	} else if (msr >= MSR_MTRRfix64K_00000 && msr <= MSR_MTRRfix4K_F8000) {
81ff53604bSXiao Guangrong 		for (i = 0; i < 8 ; i++)
82ff53604bSXiao Guangrong 			if (!valid_mtrr_type((data >> (i * 8)) & 0xff))
83ff53604bSXiao Guangrong 				return false;
84ff53604bSXiao Guangrong 		return true;
85ff53604bSXiao Guangrong 	}
86ff53604bSXiao Guangrong 
87ff53604bSXiao Guangrong 	/* variable MTRRs */
88ff53604bSXiao Guangrong 	WARN_ON(!(msr >= 0x200 && msr < 0x200 + 2 * KVM_NR_VAR_MTRR));
89ff53604bSXiao Guangrong 
90ff53604bSXiao Guangrong 	mask = (~0ULL) << cpuid_maxphyaddr(vcpu);
91ff53604bSXiao Guangrong 	if ((msr & 1) == 0) {
92ff53604bSXiao Guangrong 		/* MTRR base */
93ff53604bSXiao Guangrong 		if (!valid_mtrr_type(data & 0xff))
94ff53604bSXiao Guangrong 			return false;
95ff53604bSXiao Guangrong 		mask |= 0xf00;
96ff53604bSXiao Guangrong 	} else
97ff53604bSXiao Guangrong 		/* MTRR mask */
98ff53604bSXiao Guangrong 		mask |= 0x7ff;
99ff53604bSXiao Guangrong 	if (data & mask) {
100ff53604bSXiao Guangrong 		kvm_inject_gp(vcpu, 0);
101ff53604bSXiao Guangrong 		return false;
102ff53604bSXiao Guangrong 	}
103ff53604bSXiao Guangrong 
104ff53604bSXiao Guangrong 	return true;
105ff53604bSXiao Guangrong }
106ff53604bSXiao Guangrong EXPORT_SYMBOL_GPL(kvm_mtrr_valid);
107ff53604bSXiao Guangrong 
10810fac2dcSXiao Guangrong static bool mtrr_is_enabled(struct kvm_mtrr *mtrr_state)
10910fac2dcSXiao Guangrong {
11010fac2dcSXiao Guangrong 	return !!(mtrr_state->deftype & IA32_MTRR_DEF_TYPE_E);
11110fac2dcSXiao Guangrong }
11210fac2dcSXiao Guangrong 
11310fac2dcSXiao Guangrong static bool fixed_mtrr_is_enabled(struct kvm_mtrr *mtrr_state)
11410fac2dcSXiao Guangrong {
11510fac2dcSXiao Guangrong 	return !!(mtrr_state->deftype & IA32_MTRR_DEF_TYPE_FE);
11610fac2dcSXiao Guangrong }
11710fac2dcSXiao Guangrong 
11810fac2dcSXiao Guangrong static u8 mtrr_default_type(struct kvm_mtrr *mtrr_state)
11910fac2dcSXiao Guangrong {
12010fac2dcSXiao Guangrong 	return mtrr_state->deftype & IA32_MTRR_DEF_TYPE_TYPE_MASK;
12110fac2dcSXiao Guangrong }
12210fac2dcSXiao Guangrong 
123de9aef5eSXiao Guangrong /*
124de9aef5eSXiao Guangrong * Three terms are used in the following code:
125de9aef5eSXiao Guangrong * - segment, it indicates the address segments covered by fixed MTRRs.
126de9aef5eSXiao Guangrong * - unit, it corresponds to the MSR entry in the segment.
127de9aef5eSXiao Guangrong * - range, a range is covered in one memory cache type.
128de9aef5eSXiao Guangrong */
129de9aef5eSXiao Guangrong struct fixed_mtrr_segment {
130de9aef5eSXiao Guangrong 	u64 start;
131de9aef5eSXiao Guangrong 	u64 end;
132de9aef5eSXiao Guangrong 
133de9aef5eSXiao Guangrong 	int range_shift;
134de9aef5eSXiao Guangrong 
135de9aef5eSXiao Guangrong 	/* the start position in kvm_mtrr.fixed_ranges[]. */
136de9aef5eSXiao Guangrong 	int range_start;
137de9aef5eSXiao Guangrong };
138de9aef5eSXiao Guangrong 
139de9aef5eSXiao Guangrong static struct fixed_mtrr_segment fixed_seg_table[] = {
140de9aef5eSXiao Guangrong 	/* MSR_MTRRfix64K_00000, 1 unit. 64K fixed mtrr. */
141de9aef5eSXiao Guangrong 	{
142de9aef5eSXiao Guangrong 		.start = 0x0,
143de9aef5eSXiao Guangrong 		.end = 0x80000,
144de9aef5eSXiao Guangrong 		.range_shift = 16, /* 64K */
145de9aef5eSXiao Guangrong 		.range_start = 0,
146de9aef5eSXiao Guangrong 	},
147de9aef5eSXiao Guangrong 
148de9aef5eSXiao Guangrong 	/*
149de9aef5eSXiao Guangrong 	 * MSR_MTRRfix16K_80000 ... MSR_MTRRfix16K_A0000, 2 units,
150de9aef5eSXiao Guangrong 	 * 16K fixed mtrr.
151de9aef5eSXiao Guangrong 	 */
152de9aef5eSXiao Guangrong 	{
153de9aef5eSXiao Guangrong 		.start = 0x80000,
154de9aef5eSXiao Guangrong 		.end = 0xc0000,
155de9aef5eSXiao Guangrong 		.range_shift = 14, /* 16K */
156de9aef5eSXiao Guangrong 		.range_start = 8,
157de9aef5eSXiao Guangrong 	},
158de9aef5eSXiao Guangrong 
159de9aef5eSXiao Guangrong 	/*
160de9aef5eSXiao Guangrong 	 * MSR_MTRRfix4K_C0000 ... MSR_MTRRfix4K_F8000, 8 units,
161de9aef5eSXiao Guangrong 	 * 4K fixed mtrr.
162de9aef5eSXiao Guangrong 	 */
163de9aef5eSXiao Guangrong 	{
164de9aef5eSXiao Guangrong 		.start = 0xc0000,
165de9aef5eSXiao Guangrong 		.end = 0x100000,
166de9aef5eSXiao Guangrong 		.range_shift = 12, /* 12K */
167de9aef5eSXiao Guangrong 		.range_start = 24,
168de9aef5eSXiao Guangrong 	}
169de9aef5eSXiao Guangrong };
170de9aef5eSXiao Guangrong 
171de9aef5eSXiao Guangrong /*
172de9aef5eSXiao Guangrong  * The size of unit is covered in one MSR, one MSR entry contains
173de9aef5eSXiao Guangrong  * 8 ranges so that unit size is always 8 * 2^range_shift.
174de9aef5eSXiao Guangrong  */
175de9aef5eSXiao Guangrong static u64 fixed_mtrr_seg_unit_size(int seg)
176de9aef5eSXiao Guangrong {
177de9aef5eSXiao Guangrong 	return 8 << fixed_seg_table[seg].range_shift;
178de9aef5eSXiao Guangrong }
179de9aef5eSXiao Guangrong 
180de9aef5eSXiao Guangrong static bool fixed_msr_to_seg_unit(u32 msr, int *seg, int *unit)
181de9aef5eSXiao Guangrong {
182de9aef5eSXiao Guangrong 	switch (msr) {
183de9aef5eSXiao Guangrong 	case MSR_MTRRfix64K_00000:
184de9aef5eSXiao Guangrong 		*seg = 0;
185de9aef5eSXiao Guangrong 		*unit = 0;
186de9aef5eSXiao Guangrong 		break;
187de9aef5eSXiao Guangrong 	case MSR_MTRRfix16K_80000 ... MSR_MTRRfix16K_A0000:
188de9aef5eSXiao Guangrong 		*seg = 1;
189de9aef5eSXiao Guangrong 		*unit = msr - MSR_MTRRfix16K_80000;
190de9aef5eSXiao Guangrong 		break;
191de9aef5eSXiao Guangrong 	case MSR_MTRRfix4K_C0000 ... MSR_MTRRfix4K_F8000:
192de9aef5eSXiao Guangrong 		*seg = 2;
193de9aef5eSXiao Guangrong 		*unit = msr - MSR_MTRRfix4K_C0000;
194de9aef5eSXiao Guangrong 		break;
195de9aef5eSXiao Guangrong 	default:
196de9aef5eSXiao Guangrong 		return false;
197de9aef5eSXiao Guangrong 	}
198de9aef5eSXiao Guangrong 
199de9aef5eSXiao Guangrong 	return true;
200de9aef5eSXiao Guangrong }
201de9aef5eSXiao Guangrong 
202de9aef5eSXiao Guangrong static void fixed_mtrr_seg_unit_range(int seg, int unit, u64 *start, u64 *end)
203de9aef5eSXiao Guangrong {
204de9aef5eSXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg = &fixed_seg_table[seg];
205de9aef5eSXiao Guangrong 	u64 unit_size = fixed_mtrr_seg_unit_size(seg);
206de9aef5eSXiao Guangrong 
207de9aef5eSXiao Guangrong 	*start = mtrr_seg->start + unit * unit_size;
208de9aef5eSXiao Guangrong 	*end = *start + unit_size;
209de9aef5eSXiao Guangrong 	WARN_ON(*end > mtrr_seg->end);
210de9aef5eSXiao Guangrong }
211de9aef5eSXiao Guangrong 
212de9aef5eSXiao Guangrong static int fixed_mtrr_seg_unit_range_index(int seg, int unit)
213de9aef5eSXiao Guangrong {
214de9aef5eSXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg = &fixed_seg_table[seg];
215de9aef5eSXiao Guangrong 
216de9aef5eSXiao Guangrong 	WARN_ON(mtrr_seg->start + unit * fixed_mtrr_seg_unit_size(seg)
217de9aef5eSXiao Guangrong 		> mtrr_seg->end);
218de9aef5eSXiao Guangrong 
219de9aef5eSXiao Guangrong 	/* each unit has 8 ranges. */
220de9aef5eSXiao Guangrong 	return mtrr_seg->range_start + 8 * unit;
221de9aef5eSXiao Guangrong }
222de9aef5eSXiao Guangrong 
223f571c097SXiao Guangrong static int fixed_mtrr_seg_end_range_index(int seg)
224f571c097SXiao Guangrong {
225f571c097SXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg = &fixed_seg_table[seg];
226f571c097SXiao Guangrong 	int n;
227f571c097SXiao Guangrong 
228f571c097SXiao Guangrong 	n = (mtrr_seg->end - mtrr_seg->start) >> mtrr_seg->range_shift;
229f571c097SXiao Guangrong 	return mtrr_seg->range_start + n - 1;
230f571c097SXiao Guangrong }
231f571c097SXiao Guangrong 
232de9aef5eSXiao Guangrong static bool fixed_msr_to_range(u32 msr, u64 *start, u64 *end)
233de9aef5eSXiao Guangrong {
234de9aef5eSXiao Guangrong 	int seg, unit;
235de9aef5eSXiao Guangrong 
236de9aef5eSXiao Guangrong 	if (!fixed_msr_to_seg_unit(msr, &seg, &unit))
237de9aef5eSXiao Guangrong 		return false;
238de9aef5eSXiao Guangrong 
239de9aef5eSXiao Guangrong 	fixed_mtrr_seg_unit_range(seg, unit, start, end);
240de9aef5eSXiao Guangrong 	return true;
241de9aef5eSXiao Guangrong }
242de9aef5eSXiao Guangrong 
243de9aef5eSXiao Guangrong static int fixed_msr_to_range_index(u32 msr)
244de9aef5eSXiao Guangrong {
245de9aef5eSXiao Guangrong 	int seg, unit;
246de9aef5eSXiao Guangrong 
247de9aef5eSXiao Guangrong 	if (!fixed_msr_to_seg_unit(msr, &seg, &unit))
248de9aef5eSXiao Guangrong 		return -1;
249de9aef5eSXiao Guangrong 
250de9aef5eSXiao Guangrong 	return fixed_mtrr_seg_unit_range_index(seg, unit);
251de9aef5eSXiao Guangrong }
252de9aef5eSXiao Guangrong 
253f7bfb57bSXiao Guangrong static int fixed_mtrr_addr_to_seg(u64 addr)
254f7bfb57bSXiao Guangrong {
255f7bfb57bSXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg;
256f7bfb57bSXiao Guangrong 	int seg, seg_num = ARRAY_SIZE(fixed_seg_table);
257f7bfb57bSXiao Guangrong 
258f7bfb57bSXiao Guangrong 	for (seg = 0; seg < seg_num; seg++) {
259f7bfb57bSXiao Guangrong 		mtrr_seg = &fixed_seg_table[seg];
260f7bfb57bSXiao Guangrong 		if (mtrr_seg->start >= addr && addr < mtrr_seg->end)
261f7bfb57bSXiao Guangrong 			return seg;
262f7bfb57bSXiao Guangrong 	}
263f7bfb57bSXiao Guangrong 
264f7bfb57bSXiao Guangrong 	return -1;
265f7bfb57bSXiao Guangrong }
266f7bfb57bSXiao Guangrong 
267f7bfb57bSXiao Guangrong static int fixed_mtrr_addr_seg_to_range_index(u64 addr, int seg)
268f7bfb57bSXiao Guangrong {
269f7bfb57bSXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg;
270f7bfb57bSXiao Guangrong 	int index;
271f7bfb57bSXiao Guangrong 
272f7bfb57bSXiao Guangrong 	mtrr_seg = &fixed_seg_table[seg];
273f7bfb57bSXiao Guangrong 	index = mtrr_seg->range_start;
274f7bfb57bSXiao Guangrong 	index += (addr - mtrr_seg->start) >> mtrr_seg->range_shift;
275f7bfb57bSXiao Guangrong 	return index;
276f7bfb57bSXiao Guangrong }
277f7bfb57bSXiao Guangrong 
278f571c097SXiao Guangrong static u64 fixed_mtrr_range_end_addr(int seg, int index)
279f571c097SXiao Guangrong {
280f571c097SXiao Guangrong 	struct fixed_mtrr_segment *mtrr_seg = &fixed_seg_table[seg];
281f571c097SXiao Guangrong 	int pos = index - mtrr_seg->range_start;
282f571c097SXiao Guangrong 
283f571c097SXiao Guangrong 	return mtrr_seg->start + ((pos + 1) << mtrr_seg->range_shift);
284f571c097SXiao Guangrong }
285f571c097SXiao Guangrong 
286a13842dcSXiao Guangrong static void var_mtrr_range(struct kvm_mtrr_range *range, u64 *start, u64 *end)
287a13842dcSXiao Guangrong {
288a13842dcSXiao Guangrong 	u64 mask;
289a13842dcSXiao Guangrong 
290a13842dcSXiao Guangrong 	*start = range->base & PAGE_MASK;
291a13842dcSXiao Guangrong 
292a13842dcSXiao Guangrong 	mask = range->mask & PAGE_MASK;
293a13842dcSXiao Guangrong 	mask |= ~0ULL << boot_cpu_data.x86_phys_bits;
294a13842dcSXiao Guangrong 
295a13842dcSXiao Guangrong 	/* This cannot overflow because writing to the reserved bits of
296a13842dcSXiao Guangrong 	 * variable MTRRs causes a #GP.
297a13842dcSXiao Guangrong 	 */
298a13842dcSXiao Guangrong 	*end = (*start | ~mask) + 1;
299a13842dcSXiao Guangrong }
300a13842dcSXiao Guangrong 
301ff53604bSXiao Guangrong static void update_mtrr(struct kvm_vcpu *vcpu, u32 msr)
302ff53604bSXiao Guangrong {
30370109e7dSXiao Guangrong 	struct kvm_mtrr *mtrr_state = &vcpu->arch.mtrr_state;
304a13842dcSXiao Guangrong 	gfn_t start, end;
305ff53604bSXiao Guangrong 	int index;
306ff53604bSXiao Guangrong 
307ff53604bSXiao Guangrong 	if (msr == MSR_IA32_CR_PAT || !tdp_enabled ||
308ff53604bSXiao Guangrong 	      !kvm_arch_has_noncoherent_dma(vcpu->kvm))
309ff53604bSXiao Guangrong 		return;
310ff53604bSXiao Guangrong 
31110fac2dcSXiao Guangrong 	if (!mtrr_is_enabled(mtrr_state) && msr != MSR_MTRRdefType)
312ff53604bSXiao Guangrong 		return;
313ff53604bSXiao Guangrong 
314de9aef5eSXiao Guangrong 	/* fixed MTRRs. */
315de9aef5eSXiao Guangrong 	if (fixed_msr_to_range(msr, &start, &end)) {
316de9aef5eSXiao Guangrong 		if (!fixed_mtrr_is_enabled(mtrr_state))
317de9aef5eSXiao Guangrong 			return;
318de9aef5eSXiao Guangrong 	} else if (msr == MSR_MTRRdefType) {
319ff53604bSXiao Guangrong 		start = 0x0;
320ff53604bSXiao Guangrong 		end = ~0ULL;
321de9aef5eSXiao Guangrong 	} else {
322ff53604bSXiao Guangrong 		/* variable range MTRRs. */
323ff53604bSXiao Guangrong 		index = (msr - 0x200) / 2;
324a13842dcSXiao Guangrong 		var_mtrr_range(&mtrr_state->var_ranges[index], &start, &end);
325ff53604bSXiao Guangrong 	}
326ff53604bSXiao Guangrong 
327ff53604bSXiao Guangrong 	kvm_zap_gfn_range(vcpu->kvm, gpa_to_gfn(start), gpa_to_gfn(end));
328ff53604bSXiao Guangrong }
329ff53604bSXiao Guangrong 
33019efffa2SXiao Guangrong static bool var_mtrr_range_is_valid(struct kvm_mtrr_range *range)
33119efffa2SXiao Guangrong {
33219efffa2SXiao Guangrong 	return (range->mask & (1 << 11)) != 0;
33319efffa2SXiao Guangrong }
33419efffa2SXiao Guangrong 
33519efffa2SXiao Guangrong static void set_var_mtrr_msr(struct kvm_vcpu *vcpu, u32 msr, u64 data)
33619efffa2SXiao Guangrong {
33719efffa2SXiao Guangrong 	struct kvm_mtrr *mtrr_state = &vcpu->arch.mtrr_state;
33819efffa2SXiao Guangrong 	struct kvm_mtrr_range *tmp, *cur;
33919efffa2SXiao Guangrong 	int index, is_mtrr_mask;
34019efffa2SXiao Guangrong 
34119efffa2SXiao Guangrong 	index = (msr - 0x200) / 2;
34219efffa2SXiao Guangrong 	is_mtrr_mask = msr - 0x200 - 2 * index;
34319efffa2SXiao Guangrong 	cur = &mtrr_state->var_ranges[index];
34419efffa2SXiao Guangrong 
34519efffa2SXiao Guangrong 	/* remove the entry if it's in the list. */
34619efffa2SXiao Guangrong 	if (var_mtrr_range_is_valid(cur))
34719efffa2SXiao Guangrong 		list_del(&mtrr_state->var_ranges[index].node);
34819efffa2SXiao Guangrong 
34919efffa2SXiao Guangrong 	if (!is_mtrr_mask)
35019efffa2SXiao Guangrong 		cur->base = data;
35119efffa2SXiao Guangrong 	else
35219efffa2SXiao Guangrong 		cur->mask = data;
35319efffa2SXiao Guangrong 
35419efffa2SXiao Guangrong 	/* add it to the list if it's enabled. */
35519efffa2SXiao Guangrong 	if (var_mtrr_range_is_valid(cur)) {
35619efffa2SXiao Guangrong 		list_for_each_entry(tmp, &mtrr_state->head, node)
35719efffa2SXiao Guangrong 			if (cur->base >= tmp->base)
35819efffa2SXiao Guangrong 				break;
35919efffa2SXiao Guangrong 		list_add_tail(&cur->node, &tmp->node);
36019efffa2SXiao Guangrong 	}
36119efffa2SXiao Guangrong }
36219efffa2SXiao Guangrong 
363ff53604bSXiao Guangrong int kvm_mtrr_set_msr(struct kvm_vcpu *vcpu, u32 msr, u64 data)
364ff53604bSXiao Guangrong {
365de9aef5eSXiao Guangrong 	int index;
366ff53604bSXiao Guangrong 
367ff53604bSXiao Guangrong 	if (!kvm_mtrr_valid(vcpu, msr, data))
368ff53604bSXiao Guangrong 		return 1;
369ff53604bSXiao Guangrong 
370de9aef5eSXiao Guangrong 	index = fixed_msr_to_range_index(msr);
371de9aef5eSXiao Guangrong 	if (index >= 0)
372de9aef5eSXiao Guangrong 		*(u64 *)&vcpu->arch.mtrr_state.fixed_ranges[index] = data;
373de9aef5eSXiao Guangrong 	else if (msr == MSR_MTRRdefType)
37410fac2dcSXiao Guangrong 		vcpu->arch.mtrr_state.deftype = data;
375ff53604bSXiao Guangrong 	else if (msr == MSR_IA32_CR_PAT)
376ff53604bSXiao Guangrong 		vcpu->arch.pat = data;
377ff53604bSXiao Guangrong 	else
37819efffa2SXiao Guangrong 		set_var_mtrr_msr(vcpu, msr, data);
379ff53604bSXiao Guangrong 
380ff53604bSXiao Guangrong 	update_mtrr(vcpu, msr);
381ff53604bSXiao Guangrong 	return 0;
382ff53604bSXiao Guangrong }
383ff53604bSXiao Guangrong 
384ff53604bSXiao Guangrong int kvm_mtrr_get_msr(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
385ff53604bSXiao Guangrong {
386de9aef5eSXiao Guangrong 	int index;
387ff53604bSXiao Guangrong 
388eb839917SXiao Guangrong 	/* MSR_MTRRcap is a readonly MSR. */
389eb839917SXiao Guangrong 	if (msr == MSR_MTRRcap) {
390eb839917SXiao Guangrong 		/*
391eb839917SXiao Guangrong 		 * SMRR = 0
392eb839917SXiao Guangrong 		 * WC = 1
393eb839917SXiao Guangrong 		 * FIX = 1
394eb839917SXiao Guangrong 		 * VCNT = KVM_NR_VAR_MTRR
395eb839917SXiao Guangrong 		 */
396eb839917SXiao Guangrong 		*pdata = 0x500 | KVM_NR_VAR_MTRR;
397eb839917SXiao Guangrong 		return 0;
398eb839917SXiao Guangrong 	}
399eb839917SXiao Guangrong 
400ff53604bSXiao Guangrong 	if (!msr_mtrr_valid(msr))
401ff53604bSXiao Guangrong 		return 1;
402ff53604bSXiao Guangrong 
403de9aef5eSXiao Guangrong 	index = fixed_msr_to_range_index(msr);
404de9aef5eSXiao Guangrong 	if (index >= 0)
405de9aef5eSXiao Guangrong 		*pdata = *(u64 *)&vcpu->arch.mtrr_state.fixed_ranges[index];
406de9aef5eSXiao Guangrong 	else if (msr == MSR_MTRRdefType)
40710fac2dcSXiao Guangrong 		*pdata = vcpu->arch.mtrr_state.deftype;
408ff53604bSXiao Guangrong 	else if (msr == MSR_IA32_CR_PAT)
409ff53604bSXiao Guangrong 		*pdata = vcpu->arch.pat;
410ff53604bSXiao Guangrong 	else {	/* Variable MTRRs */
411de9aef5eSXiao Guangrong 		int is_mtrr_mask;
412ff53604bSXiao Guangrong 
413de9aef5eSXiao Guangrong 		index = (msr - 0x200) / 2;
414de9aef5eSXiao Guangrong 		is_mtrr_mask = msr - 0x200 - 2 * index;
415ff53604bSXiao Guangrong 		if (!is_mtrr_mask)
416de9aef5eSXiao Guangrong 			*pdata = vcpu->arch.mtrr_state.var_ranges[index].base;
417ff53604bSXiao Guangrong 		else
418de9aef5eSXiao Guangrong 			*pdata = vcpu->arch.mtrr_state.var_ranges[index].mask;
419ff53604bSXiao Guangrong 	}
420ff53604bSXiao Guangrong 
421ff53604bSXiao Guangrong 	return 0;
422ff53604bSXiao Guangrong }
423ff53604bSXiao Guangrong 
42419efffa2SXiao Guangrong void kvm_vcpu_mtrr_init(struct kvm_vcpu *vcpu)
42519efffa2SXiao Guangrong {
42619efffa2SXiao Guangrong 	INIT_LIST_HEAD(&vcpu->arch.mtrr_state.head);
42719efffa2SXiao Guangrong }
42819efffa2SXiao Guangrong 
429f571c097SXiao Guangrong struct mtrr_iter {
430f571c097SXiao Guangrong 	/* input fields. */
431f571c097SXiao Guangrong 	struct kvm_mtrr *mtrr_state;
432f571c097SXiao Guangrong 	u64 start;
433f571c097SXiao Guangrong 	u64 end;
434f571c097SXiao Guangrong 
435f571c097SXiao Guangrong 	/* output fields. */
436f571c097SXiao Guangrong 	int mem_type;
437f571c097SXiao Guangrong 	/* [start, end) is not fully covered in MTRRs? */
438f571c097SXiao Guangrong 	bool partial_map;
439f571c097SXiao Guangrong 
440f571c097SXiao Guangrong 	/* private fields. */
441f571c097SXiao Guangrong 	union {
442f571c097SXiao Guangrong 		/* used for fixed MTRRs. */
443f571c097SXiao Guangrong 		struct {
444f571c097SXiao Guangrong 			int index;
445f571c097SXiao Guangrong 			int seg;
446f571c097SXiao Guangrong 		};
447f571c097SXiao Guangrong 
448f571c097SXiao Guangrong 		/* used for var MTRRs. */
449f571c097SXiao Guangrong 		struct {
450f571c097SXiao Guangrong 			struct kvm_mtrr_range *range;
451f571c097SXiao Guangrong 			/* max address has been covered in var MTRRs. */
452f571c097SXiao Guangrong 			u64 start_max;
453f571c097SXiao Guangrong 		};
454f571c097SXiao Guangrong 	};
455f571c097SXiao Guangrong 
456f571c097SXiao Guangrong 	bool fixed;
457f571c097SXiao Guangrong };
458f571c097SXiao Guangrong 
459f571c097SXiao Guangrong static bool mtrr_lookup_fixed_start(struct mtrr_iter *iter)
460f571c097SXiao Guangrong {
461f571c097SXiao Guangrong 	int seg, index;
462f571c097SXiao Guangrong 
463f571c097SXiao Guangrong 	if (!fixed_mtrr_is_enabled(iter->mtrr_state))
464f571c097SXiao Guangrong 		return false;
465f571c097SXiao Guangrong 
466f571c097SXiao Guangrong 	seg = fixed_mtrr_addr_to_seg(iter->start);
467f571c097SXiao Guangrong 	if (seg < 0)
468f571c097SXiao Guangrong 		return false;
469f571c097SXiao Guangrong 
470f571c097SXiao Guangrong 	iter->fixed = true;
471f571c097SXiao Guangrong 	index = fixed_mtrr_addr_seg_to_range_index(iter->start, seg);
472f571c097SXiao Guangrong 	iter->index = index;
473f571c097SXiao Guangrong 	iter->seg = seg;
474f571c097SXiao Guangrong 	return true;
475f571c097SXiao Guangrong }
476f571c097SXiao Guangrong 
477f571c097SXiao Guangrong static bool match_var_range(struct mtrr_iter *iter,
478f571c097SXiao Guangrong 			    struct kvm_mtrr_range *range)
479f571c097SXiao Guangrong {
480f571c097SXiao Guangrong 	u64 start, end;
481f571c097SXiao Guangrong 
482f571c097SXiao Guangrong 	var_mtrr_range(range, &start, &end);
483f571c097SXiao Guangrong 	if (!(start >= iter->end || end <= iter->start)) {
484f571c097SXiao Guangrong 		iter->range = range;
485f571c097SXiao Guangrong 
486f571c097SXiao Guangrong 		/*
487f571c097SXiao Guangrong 		 * the function is called when we do kvm_mtrr.head walking.
488f571c097SXiao Guangrong 		 * Range has the minimum base address which interleaves
489f571c097SXiao Guangrong 		 * [looker->start_max, looker->end).
490f571c097SXiao Guangrong 		 */
491f571c097SXiao Guangrong 		iter->partial_map |= iter->start_max < start;
492f571c097SXiao Guangrong 
493f571c097SXiao Guangrong 		/* update the max address has been covered. */
494f571c097SXiao Guangrong 		iter->start_max = max(iter->start_max, end);
495f571c097SXiao Guangrong 		return true;
496f571c097SXiao Guangrong 	}
497f571c097SXiao Guangrong 
498f571c097SXiao Guangrong 	return false;
499f571c097SXiao Guangrong }
500f571c097SXiao Guangrong 
501f571c097SXiao Guangrong static void __mtrr_lookup_var_next(struct mtrr_iter *iter)
502f571c097SXiao Guangrong {
503f571c097SXiao Guangrong 	struct kvm_mtrr *mtrr_state = iter->mtrr_state;
504f571c097SXiao Guangrong 
505f571c097SXiao Guangrong 	list_for_each_entry_continue(iter->range, &mtrr_state->head, node)
506f571c097SXiao Guangrong 		if (match_var_range(iter, iter->range))
507f571c097SXiao Guangrong 			return;
508f571c097SXiao Guangrong 
509f571c097SXiao Guangrong 	iter->range = NULL;
510f571c097SXiao Guangrong 	iter->partial_map |= iter->start_max < iter->end;
511f571c097SXiao Guangrong }
512f571c097SXiao Guangrong 
513f571c097SXiao Guangrong static void mtrr_lookup_var_start(struct mtrr_iter *iter)
514f571c097SXiao Guangrong {
515f571c097SXiao Guangrong 	struct kvm_mtrr *mtrr_state = iter->mtrr_state;
516f571c097SXiao Guangrong 
517f571c097SXiao Guangrong 	iter->fixed = false;
518f571c097SXiao Guangrong 	iter->start_max = iter->start;
519f571c097SXiao Guangrong 	iter->range = list_prepare_entry(iter->range, &mtrr_state->head, node);
520f571c097SXiao Guangrong 
521f571c097SXiao Guangrong 	__mtrr_lookup_var_next(iter);
522f571c097SXiao Guangrong }
523f571c097SXiao Guangrong 
524f571c097SXiao Guangrong static void mtrr_lookup_fixed_next(struct mtrr_iter *iter)
525f571c097SXiao Guangrong {
526f571c097SXiao Guangrong 	/* terminate the lookup. */
527f571c097SXiao Guangrong 	if (fixed_mtrr_range_end_addr(iter->seg, iter->index) >= iter->end) {
528f571c097SXiao Guangrong 		iter->fixed = false;
529f571c097SXiao Guangrong 		iter->range = NULL;
530f571c097SXiao Guangrong 		return;
531f571c097SXiao Guangrong 	}
532f571c097SXiao Guangrong 
533f571c097SXiao Guangrong 	iter->index++;
534f571c097SXiao Guangrong 
535f571c097SXiao Guangrong 	/* have looked up for all fixed MTRRs. */
536f571c097SXiao Guangrong 	if (iter->index >= ARRAY_SIZE(iter->mtrr_state->fixed_ranges))
537f571c097SXiao Guangrong 		return mtrr_lookup_var_start(iter);
538f571c097SXiao Guangrong 
539f571c097SXiao Guangrong 	/* switch to next segment. */
540f571c097SXiao Guangrong 	if (iter->index > fixed_mtrr_seg_end_range_index(iter->seg))
541f571c097SXiao Guangrong 		iter->seg++;
542f571c097SXiao Guangrong }
543f571c097SXiao Guangrong 
544f571c097SXiao Guangrong static void mtrr_lookup_var_next(struct mtrr_iter *iter)
545f571c097SXiao Guangrong {
546f571c097SXiao Guangrong 	__mtrr_lookup_var_next(iter);
547f571c097SXiao Guangrong }
548f571c097SXiao Guangrong 
549f571c097SXiao Guangrong static void mtrr_lookup_start(struct mtrr_iter *iter)
550f571c097SXiao Guangrong {
551f571c097SXiao Guangrong 	if (!mtrr_is_enabled(iter->mtrr_state)) {
552f571c097SXiao Guangrong 		iter->partial_map = true;
553f571c097SXiao Guangrong 		return;
554f571c097SXiao Guangrong 	}
555f571c097SXiao Guangrong 
556f571c097SXiao Guangrong 	if (!mtrr_lookup_fixed_start(iter))
557f571c097SXiao Guangrong 		mtrr_lookup_var_start(iter);
558f571c097SXiao Guangrong }
559f571c097SXiao Guangrong 
560f571c097SXiao Guangrong static void mtrr_lookup_init(struct mtrr_iter *iter,
561f571c097SXiao Guangrong 			     struct kvm_mtrr *mtrr_state, u64 start, u64 end)
562f571c097SXiao Guangrong {
563f571c097SXiao Guangrong 	iter->mtrr_state = mtrr_state;
564f571c097SXiao Guangrong 	iter->start = start;
565f571c097SXiao Guangrong 	iter->end = end;
566f571c097SXiao Guangrong 	iter->partial_map = false;
567f571c097SXiao Guangrong 	iter->fixed = false;
568f571c097SXiao Guangrong 	iter->range = NULL;
569f571c097SXiao Guangrong 
570f571c097SXiao Guangrong 	mtrr_lookup_start(iter);
571f571c097SXiao Guangrong }
572f571c097SXiao Guangrong 
573f571c097SXiao Guangrong static bool mtrr_lookup_okay(struct mtrr_iter *iter)
574f571c097SXiao Guangrong {
575f571c097SXiao Guangrong 	if (iter->fixed) {
576f571c097SXiao Guangrong 		iter->mem_type = iter->mtrr_state->fixed_ranges[iter->index];
577f571c097SXiao Guangrong 		return true;
578f571c097SXiao Guangrong 	}
579f571c097SXiao Guangrong 
580f571c097SXiao Guangrong 	if (iter->range) {
581f571c097SXiao Guangrong 		iter->mem_type = iter->range->base & 0xff;
582f571c097SXiao Guangrong 		return true;
583f571c097SXiao Guangrong 	}
584f571c097SXiao Guangrong 
585f571c097SXiao Guangrong 	return false;
586f571c097SXiao Guangrong }
587f571c097SXiao Guangrong 
588f571c097SXiao Guangrong static void mtrr_lookup_next(struct mtrr_iter *iter)
589f571c097SXiao Guangrong {
590f571c097SXiao Guangrong 	if (iter->fixed)
591f571c097SXiao Guangrong 		mtrr_lookup_fixed_next(iter);
592f571c097SXiao Guangrong 	else
593f571c097SXiao Guangrong 		mtrr_lookup_var_next(iter);
594f571c097SXiao Guangrong }
595f571c097SXiao Guangrong 
596f571c097SXiao Guangrong #define mtrr_for_each_mem_type(_iter_, _mtrr_, _gpa_start_, _gpa_end_) \
597f571c097SXiao Guangrong 	for (mtrr_lookup_init(_iter_, _mtrr_, _gpa_start_, _gpa_end_); \
598f571c097SXiao Guangrong 	     mtrr_lookup_okay(_iter_); mtrr_lookup_next(_iter_))
599f571c097SXiao Guangrong 
6003f3f78b6SXiao Guangrong u8 kvm_mtrr_get_guest_memory_type(struct kvm_vcpu *vcpu, gfn_t gfn)
601ff53604bSXiao Guangrong {
6023f3f78b6SXiao Guangrong 	struct kvm_mtrr *mtrr_state = &vcpu->arch.mtrr_state;
603fa612137SXiao Guangrong 	struct mtrr_iter iter;
604fa612137SXiao Guangrong 	u64 start, end;
605fa612137SXiao Guangrong 	int type = -1;
6063f3f78b6SXiao Guangrong 	const int wt_wb_mask = (1 << MTRR_TYPE_WRBACK)
6073f3f78b6SXiao Guangrong 			       | (1 << MTRR_TYPE_WRTHROUGH);
6083f3f78b6SXiao Guangrong 
6093f3f78b6SXiao Guangrong 	start = gfn_to_gpa(gfn);
610fa612137SXiao Guangrong 	end = start + PAGE_SIZE;
611ff53604bSXiao Guangrong 
612fa612137SXiao Guangrong 	mtrr_for_each_mem_type(&iter, mtrr_state, start, end) {
613fa612137SXiao Guangrong 		int curr_type = iter.mem_type;
614ff53604bSXiao Guangrong 
6153f3f78b6SXiao Guangrong 		/*
6163f3f78b6SXiao Guangrong 		 * Please refer to Intel SDM Volume 3: 11.11.4.1 MTRR
6173f3f78b6SXiao Guangrong 		 * Precedences.
6183f3f78b6SXiao Guangrong 		 */
6193f3f78b6SXiao Guangrong 
6203f3f78b6SXiao Guangrong 		if (type == -1) {
6213f3f78b6SXiao Guangrong 			type = curr_type;
622ff53604bSXiao Guangrong 			continue;
623ff53604bSXiao Guangrong 		}
624ff53604bSXiao Guangrong 
6253f3f78b6SXiao Guangrong 		/*
6263f3f78b6SXiao Guangrong 		 * If two or more variable memory ranges match and the
6273f3f78b6SXiao Guangrong 		 * memory types are identical, then that memory type is
6283f3f78b6SXiao Guangrong 		 * used.
6293f3f78b6SXiao Guangrong 		 */
6303f3f78b6SXiao Guangrong 		if (type == curr_type)
6313f3f78b6SXiao Guangrong 			continue;
6323f3f78b6SXiao Guangrong 
6333f3f78b6SXiao Guangrong 		/*
6343f3f78b6SXiao Guangrong 		 * If two or more variable memory ranges match and one of
6353f3f78b6SXiao Guangrong 		 * the memory types is UC, the UC memory type used.
6363f3f78b6SXiao Guangrong 		 */
6373f3f78b6SXiao Guangrong 		if (curr_type == MTRR_TYPE_UNCACHABLE)
638ff53604bSXiao Guangrong 			return MTRR_TYPE_UNCACHABLE;
639ff53604bSXiao Guangrong 
6403f3f78b6SXiao Guangrong 		/*
6413f3f78b6SXiao Guangrong 		 * If two or more variable memory ranges match and the
6423f3f78b6SXiao Guangrong 		 * memory types are WT and WB, the WT memory type is used.
6433f3f78b6SXiao Guangrong 		 */
6443f3f78b6SXiao Guangrong 		if (((1 << type) & wt_wb_mask) &&
6453f3f78b6SXiao Guangrong 		      ((1 << curr_type) & wt_wb_mask)) {
6463f3f78b6SXiao Guangrong 			type = MTRR_TYPE_WRTHROUGH;
6473f3f78b6SXiao Guangrong 			continue;
648ff53604bSXiao Guangrong 		}
649ff53604bSXiao Guangrong 
6503f3f78b6SXiao Guangrong 		/*
6513f3f78b6SXiao Guangrong 		 * For overlaps not defined by the above rules, processor
6523f3f78b6SXiao Guangrong 		 * behavior is undefined.
6533f3f78b6SXiao Guangrong 		 */
6543f3f78b6SXiao Guangrong 
6553f3f78b6SXiao Guangrong 		/* We use WB for this undefined behavior. :( */
6563f3f78b6SXiao Guangrong 		return MTRR_TYPE_WRBACK;
657ff53604bSXiao Guangrong 	}
658ff53604bSXiao Guangrong 
659fa612137SXiao Guangrong 	/* It is not covered by MTRRs. */
660fa612137SXiao Guangrong 	if (iter.partial_map) {
661fa612137SXiao Guangrong 		/*
662fa612137SXiao Guangrong 		 * We just check one page, partially covered by MTRRs is
663fa612137SXiao Guangrong 		 * impossible.
664fa612137SXiao Guangrong 		 */
665fa612137SXiao Guangrong 		WARN_ON(type != -1);
666fa612137SXiao Guangrong 		type = mtrr_default_type(mtrr_state);
667fa612137SXiao Guangrong 	}
6683f3f78b6SXiao Guangrong 	return type;
669ff53604bSXiao Guangrong }
670ff53604bSXiao Guangrong EXPORT_SYMBOL_GPL(kvm_mtrr_get_guest_memory_type);
671*6a39bbc5SXiao Guangrong 
672*6a39bbc5SXiao Guangrong bool kvm_mtrr_check_gfn_range_consistency(struct kvm_vcpu *vcpu, gfn_t gfn,
673*6a39bbc5SXiao Guangrong 					  int page_num)
674*6a39bbc5SXiao Guangrong {
675*6a39bbc5SXiao Guangrong 	struct kvm_mtrr *mtrr_state = &vcpu->arch.mtrr_state;
676*6a39bbc5SXiao Guangrong 	struct mtrr_iter iter;
677*6a39bbc5SXiao Guangrong 	u64 start, end;
678*6a39bbc5SXiao Guangrong 	int type = -1;
679*6a39bbc5SXiao Guangrong 
680*6a39bbc5SXiao Guangrong 	start = gfn_to_gpa(gfn);
681*6a39bbc5SXiao Guangrong 	end = gfn_to_gpa(gfn + page_num);
682*6a39bbc5SXiao Guangrong 	mtrr_for_each_mem_type(&iter, mtrr_state, start, end) {
683*6a39bbc5SXiao Guangrong 		if (type == -1) {
684*6a39bbc5SXiao Guangrong 			type = iter.mem_type;
685*6a39bbc5SXiao Guangrong 			continue;
686*6a39bbc5SXiao Guangrong 		}
687*6a39bbc5SXiao Guangrong 
688*6a39bbc5SXiao Guangrong 		if (type != iter.mem_type)
689*6a39bbc5SXiao Guangrong 			return false;
690*6a39bbc5SXiao Guangrong 	}
691*6a39bbc5SXiao Guangrong 
692*6a39bbc5SXiao Guangrong 	if (!iter.partial_map)
693*6a39bbc5SXiao Guangrong 		return true;
694*6a39bbc5SXiao Guangrong 
695*6a39bbc5SXiao Guangrong 	if (type == -1)
696*6a39bbc5SXiao Guangrong 		return true;
697*6a39bbc5SXiao Guangrong 
698*6a39bbc5SXiao Guangrong 	return type == mtrr_default_type(mtrr_state);
699*6a39bbc5SXiao Guangrong }
700