2 * Copyright (C) 2016 Veertu Inc,
3 * Copyright (C) 2017 Google Inc,
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License as published by the Free Software Foundation; either
8 * version 2.1 of the License, or (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Lesser General Public License for more details.
15 * You should have received a copy of the GNU Lesser General Public
16 * License along with this program; if not, see <http://www.gnu.org/licenses/>.
19 #include "qemu/osdep.h"
22 #include "x86_decode.h"
27 #include "x86_descr.h"
29 /* static uint32_t x86_segment_access_rights(struct x86_segment_descriptor *var)
39 ar |= (var->s & 1) << 4;
40 ar |= (var->dpl & 3) << 5;
41 ar |= (var->p & 1) << 7;
42 ar |= (var->avl & 1) << 12;
43 ar |= (var->l & 1) << 13;
44 ar |= (var->db & 1) << 14;
45 ar |= (var->g & 1) << 15;
49 bool x86_read_segment_descriptor(struct CPUState *cpu,
50 struct x86_segment_descriptor *desc,
51 x68_segment_selector sel)
56 memset(desc, 0, sizeof(*desc));
58 /* valid gdt descriptors start from index 1 */
59 if (!sel.index && GDT_SEL == sel.ti) {
63 if (GDT_SEL == sel.ti) {
64 base = rvmcs(cpu->hvf->fd, VMCS_GUEST_GDTR_BASE);
65 limit = rvmcs(cpu->hvf->fd, VMCS_GUEST_GDTR_LIMIT);
67 base = rvmcs(cpu->hvf->fd, VMCS_GUEST_LDTR_BASE);
68 limit = rvmcs(cpu->hvf->fd, VMCS_GUEST_LDTR_LIMIT);
71 if (sel.index * 8 >= limit) {
75 vmx_read_mem(cpu, desc, base + sel.index * 8, sizeof(*desc));
79 bool x86_write_segment_descriptor(struct CPUState *cpu,
80 struct x86_segment_descriptor *desc,
81 x68_segment_selector sel)
86 if (GDT_SEL == sel.ti) {
87 base = rvmcs(cpu->hvf->fd, VMCS_GUEST_GDTR_BASE);
88 limit = rvmcs(cpu->hvf->fd, VMCS_GUEST_GDTR_LIMIT);
90 base = rvmcs(cpu->hvf->fd, VMCS_GUEST_LDTR_BASE);
91 limit = rvmcs(cpu->hvf->fd, VMCS_GUEST_LDTR_LIMIT);
94 if (sel.index * 8 >= limit) {
95 printf("%s: gdt limit\n", __func__);
98 vmx_write_mem(cpu, base + sel.index * 8, desc, sizeof(*desc));
102 bool x86_read_call_gate(struct CPUState *cpu, struct x86_call_gate *idt_desc,
105 target_ulong base = rvmcs(cpu->hvf->fd, VMCS_GUEST_IDTR_BASE);
106 uint32_t limit = rvmcs(cpu->hvf->fd, VMCS_GUEST_IDTR_LIMIT);
108 memset(idt_desc, 0, sizeof(*idt_desc));
109 if (gate * 8 >= limit) {
110 printf("%s: idt limit\n", __func__);
114 vmx_read_mem(cpu, idt_desc, base + gate * 8, sizeof(*idt_desc));
118 bool x86_is_protected(struct CPUState *cpu)
120 uint64_t cr0 = rvmcs(cpu->hvf->fd, VMCS_GUEST_CR0);
121 return cr0 & CR0_PE_MASK;
124 bool x86_is_real(struct CPUState *cpu)
126 return !x86_is_protected(cpu);
129 bool x86_is_v8086(struct CPUState *cpu)
131 X86CPU *x86_cpu = X86_CPU(cpu);
132 CPUX86State *env = &x86_cpu->env;
133 return x86_is_protected(cpu) && (env->eflags & VM_MASK);
136 bool x86_is_long_mode(struct CPUState *cpu)
138 return rvmcs(cpu->hvf->fd, VMCS_GUEST_IA32_EFER) & MSR_EFER_LMA;
141 bool x86_is_long64_mode(struct CPUState *cpu)
143 struct vmx_segment desc;
144 vmx_read_segment_descriptor(cpu, &desc, R_CS);
146 return x86_is_long_mode(cpu) && ((desc.ar >> 13) & 1);
149 bool x86_is_paging_mode(struct CPUState *cpu)
151 uint64_t cr0 = rvmcs(cpu->hvf->fd, VMCS_GUEST_CR0);
152 return cr0 & CR0_PG_MASK;
155 bool x86_is_pae_enabled(struct CPUState *cpu)
157 uint64_t cr4 = rvmcs(cpu->hvf->fd, VMCS_GUEST_CR4);
158 return cr4 & CR4_PAE_MASK;
161 target_ulong linear_addr(struct CPUState *cpu, target_ulong addr, X86Seg seg)
163 return vmx_read_segment_base(cpu, seg) + addr;
166 target_ulong linear_addr_size(struct CPUState *cpu, target_ulong addr, int size,
171 addr = (uint16_t)addr;
174 addr = (uint32_t)addr;
179 return linear_addr(cpu, addr, seg);
182 target_ulong linear_rip(struct CPUState *cpu, target_ulong rip)
184 return linear_addr(cpu, rip, R_CS);