1 /* 2 * x86 KVM CPU type initialization 3 * 4 * Copyright 2021 SUSE LLC 5 * 6 * This work is licensed under the terms of the GNU GPL, version 2 or later. 7 * See the COPYING file in the top-level directory. 8 */ 9 10 #include "qemu/osdep.h" 11 #include "cpu.h" 12 #include "host-cpu.h" 13 #include "qapi/error.h" 14 #include "system/system.h" 15 #include "hw/boards.h" 16 17 #include "kvm_i386.h" 18 #include "accel/accel-cpu-target.h" 19 20 static void kvm_set_guest_phys_bits(CPUState *cs) 21 { 22 X86CPU *cpu = X86_CPU(cs); 23 uint32_t eax, guest_phys_bits; 24 25 eax = kvm_arch_get_supported_cpuid(cs->kvm_state, 0x80000008, 0, R_EAX); 26 guest_phys_bits = (eax >> 16) & 0xff; 27 if (!guest_phys_bits) { 28 return; 29 } 30 cpu->guest_phys_bits = guest_phys_bits; 31 if (cpu->guest_phys_bits > cpu->phys_bits) { 32 cpu->guest_phys_bits = cpu->phys_bits; 33 } 34 35 if (cpu->host_phys_bits && cpu->host_phys_bits_limit && 36 cpu->guest_phys_bits > cpu->host_phys_bits_limit) { 37 cpu->guest_phys_bits = cpu->host_phys_bits_limit; 38 } 39 } 40 41 static bool kvm_cpu_realizefn(CPUState *cs, Error **errp) 42 { 43 X86CPU *cpu = X86_CPU(cs); 44 X86CPUClass *xcc = X86_CPU_GET_CLASS(cpu); 45 CPUX86State *env = &cpu->env; 46 bool ret; 47 48 /* 49 * The realize order is important, since x86_cpu_realize() checks if 50 * nothing else has been set by the user (or by accelerators) in 51 * cpu->ucode_rev and cpu->phys_bits, and updates the CPUID results in 52 * mwait.ecx. 53 * This accel realization code also assumes cpu features are already expanded. 54 * 55 * realize order: 56 * 57 * x86_cpu_realizefn(): 58 * x86_cpu_expand_features() 59 * cpu_exec_realizefn(): 60 * accel_cpu_common_realize() 61 * kvm_cpu_realizefn() 62 * host_cpu_realizefn() 63 * kvm_set_guest_phys_bits() 64 * check/update ucode_rev, phys_bits, guest_phys_bits, mwait 65 * cpu_common_realizefn() (via xcc->parent_realize) 66 */ 67 if (xcc->max_features) { 68 if (enable_cpu_pm) { 69 if (kvm_has_waitpkg()) { 70 env->features[FEAT_7_0_ECX] |= CPUID_7_0_ECX_WAITPKG; 71 } 72 73 if (env->features[FEAT_1_ECX] & CPUID_EXT_MONITOR) { 74 host_cpuid(5, 0, &cpu->mwait.eax, &cpu->mwait.ebx, 75 &cpu->mwait.ecx, &cpu->mwait.edx); 76 } 77 } 78 if (cpu->ucode_rev == 0) { 79 cpu->ucode_rev = 80 kvm_arch_get_supported_msr_feature(kvm_state, 81 MSR_IA32_UCODE_REV); 82 } 83 } 84 ret = host_cpu_realizefn(cs, errp); 85 if (!ret) { 86 return ret; 87 } 88 89 if ((env->features[FEAT_8000_0001_EDX] & CPUID_EXT2_LM) && 90 cpu->guest_phys_bits == -1) { 91 kvm_set_guest_phys_bits(cs); 92 } 93 94 return true; 95 } 96 97 static bool lmce_supported(void) 98 { 99 uint64_t mce_cap = 0; 100 101 if (kvm_ioctl(kvm_state, KVM_X86_GET_MCE_CAP_SUPPORTED, &mce_cap) < 0) { 102 return false; 103 } 104 return !!(mce_cap & MCG_LMCE_P); 105 } 106 107 static void kvm_cpu_max_instance_init(X86CPU *cpu) 108 { 109 CPUX86State *env = &cpu->env; 110 KVMState *s = kvm_state; 111 112 object_property_set_bool(OBJECT(cpu), "pmu", true, &error_abort); 113 114 if (lmce_supported()) { 115 object_property_set_bool(OBJECT(cpu), "lmce", true, &error_abort); 116 } 117 118 env->cpuid_min_level = 119 kvm_arch_get_supported_cpuid(s, 0x0, 0, R_EAX); 120 env->cpuid_min_xlevel = 121 kvm_arch_get_supported_cpuid(s, 0x80000000, 0, R_EAX); 122 env->cpuid_min_xlevel2 = 123 kvm_arch_get_supported_cpuid(s, 0xC0000000, 0, R_EAX); 124 } 125 126 static void kvm_cpu_xsave_init(void) 127 { 128 static bool first = true; 129 uint32_t eax, ebx, ecx, edx; 130 int i; 131 132 if (!first) { 133 return; 134 } 135 first = false; 136 137 /* x87 and SSE states are in the legacy region of the XSAVE area. */ 138 x86_ext_save_areas[XSTATE_FP_BIT].offset = 0; 139 x86_ext_save_areas[XSTATE_SSE_BIT].offset = 0; 140 141 for (i = XSTATE_SSE_BIT + 1; i < XSAVE_STATE_AREA_COUNT; i++) { 142 ExtSaveArea *esa = &x86_ext_save_areas[i]; 143 144 if (!esa->size) { 145 continue; 146 } 147 host_cpuid(0xd, i, &eax, &ebx, &ecx, &edx); 148 if (eax != 0) { 149 assert(esa->size == eax); 150 esa->offset = ebx; 151 esa->ecx = ecx; 152 } 153 } 154 } 155 156 /* 157 * KVM-specific features that are automatically added/removed 158 * from cpudef models when KVM is enabled. 159 * Only for builtin_x86_defs models initialized with x86_register_cpudef_types. 160 * 161 * NOTE: features can be enabled by default only if they were 162 * already available in the oldest kernel version supported 163 * by the KVM accelerator (see "OS requirements" section at 164 * docs/system/target-i386.rst) 165 */ 166 static PropValue kvm_default_props[] = { 167 { "kvmclock", "on" }, 168 { "kvm-nopiodelay", "on" }, 169 { "kvm-asyncpf", "on" }, 170 { "kvm-steal-time", "on" }, 171 { "kvm-pv-eoi", "on" }, 172 { "kvmclock-stable-bit", "on" }, 173 { "x2apic", "on" }, 174 { "kvm-msi-ext-dest-id", "off" }, 175 { "acpi", "off" }, 176 { "monitor", "off" }, 177 { "svm", "off" }, 178 { NULL, NULL }, 179 }; 180 181 /* 182 * Only for builtin_x86_defs models initialized with x86_register_cpudef_types. 183 */ 184 static void x86_cpu_change_kvm_default(const char *prop, const char *value) 185 { 186 PropValue *pv; 187 for (pv = kvm_default_props; pv->prop; pv++) { 188 if (!strcmp(pv->prop, prop)) { 189 pv->value = value; 190 break; 191 } 192 } 193 194 /* 195 * It is valid to call this function only for properties that 196 * are already present in the kvm_default_props table. 197 */ 198 assert(pv->prop); 199 } 200 201 static void kvm_cpu_instance_init(CPUState *cs) 202 { 203 X86CPU *cpu = X86_CPU(cs); 204 X86CPUClass *xcc = X86_CPU_GET_CLASS(cpu); 205 206 host_cpu_instance_init(cpu); 207 208 if (xcc->model) { 209 /* only applies to builtin_x86_defs cpus */ 210 if (!kvm_irqchip_in_kernel()) { 211 x86_cpu_change_kvm_default("x2apic", "off"); 212 } else if (kvm_irqchip_is_split()) { 213 x86_cpu_change_kvm_default("kvm-msi-ext-dest-id", "on"); 214 } 215 216 /* Special cases not set in the X86CPUDefinition structs: */ 217 x86_cpu_apply_props(cpu, kvm_default_props); 218 } 219 220 if (xcc->max_features) { 221 kvm_cpu_max_instance_init(cpu); 222 } 223 224 kvm_cpu_xsave_init(); 225 } 226 227 static void kvm_cpu_accel_class_init(ObjectClass *oc, const void *data) 228 { 229 AccelCPUClass *acc = ACCEL_CPU_CLASS(oc); 230 231 acc->cpu_target_realize = kvm_cpu_realizefn; 232 acc->cpu_instance_init = kvm_cpu_instance_init; 233 } 234 static const TypeInfo kvm_cpu_accel_type_info = { 235 .name = ACCEL_CPU_NAME("kvm"), 236 237 .parent = TYPE_ACCEL_CPU, 238 .class_init = kvm_cpu_accel_class_init, 239 .abstract = true, 240 }; 241 static void kvm_cpu_accel_register_types(void) 242 { 243 type_register_static(&kvm_cpu_accel_type_info); 244 } 245 type_init(kvm_cpu_accel_register_types); 246