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