blob: e65a158dee645331f990ed31523becddd0bb307f [file] [log] [blame]
Avi Kivity6aa8b732006-12-10 02:21:36 -08001/*
2 * Kernel-based Virtual Machine driver for Linux
3 *
4 * This module enables machines with Intel VT-x extensions to run virtual
5 * machines without emulation or binary translation.
6 *
7 * Copyright (C) 2006 Qumranet, Inc.
Nicolas Kaiser9611c182010-10-06 14:23:22 +02008 * Copyright 2010 Red Hat, Inc. and/or its affiliates.
Avi Kivity6aa8b732006-12-10 02:21:36 -08009 *
10 * Authors:
11 * Avi Kivity <avi@qumranet.com>
12 * Yaniv Kamay <yaniv@qumranet.com>
13 *
14 * This work is licensed under the terms of the GNU GPL, version 2. See
15 * the COPYING file in the top-level directory.
16 *
17 */
18
Eddie Dong85f455f2007-07-06 12:20:49 +030019#include "irq.h"
Zhang Xiantao1d737c82007-12-14 09:35:10 +080020#include "mmu.h"
Avi Kivitye4956062007-06-28 14:15:57 -040021
Avi Kivityedf88412007-12-16 11:02:48 +020022#include <linux/kvm_host.h>
Avi Kivity6aa8b732006-12-10 02:21:36 -080023#include <linux/module.h>
Ahmed S. Darwish9d8f5492007-02-19 14:37:46 +020024#include <linux/kernel.h>
Avi Kivity6aa8b732006-12-10 02:21:36 -080025#include <linux/mm.h>
26#include <linux/highmem.h>
Alexey Dobriyane8edc6e2007-05-21 01:22:52 +040027#include <linux/sched.h>
Avi Kivityc7addb92007-09-16 18:58:32 +020028#include <linux/moduleparam.h>
Marcelo Tosatti229456f2009-06-17 09:22:14 -030029#include <linux/ftrace_event.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090030#include <linux/slab.h>
Shane Wangcafd6652010-04-29 12:09:01 -040031#include <linux/tboot.h>
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -030032#include "kvm_cache_regs.h"
Avi Kivity35920a32008-07-03 14:50:12 +030033#include "x86.h"
Avi Kivitye4956062007-06-28 14:15:57 -040034
Avi Kivity6aa8b732006-12-10 02:21:36 -080035#include <asm/io.h>
Anthony Liguori3b3be0d2006-12-13 00:33:43 -080036#include <asm/desc.h>
Eduardo Habkost13673a92008-11-17 19:03:13 -020037#include <asm/vmx.h>
Eduardo Habkost6210e372008-11-17 19:03:16 -020038#include <asm/virtext.h>
Andi Kleena0861c02009-06-08 17:37:09 +080039#include <asm/mce.h>
Dexuan Cui2acf9232010-06-10 11:27:12 +080040#include <asm/i387.h>
41#include <asm/xcr.h>
Avi Kivity6aa8b732006-12-10 02:21:36 -080042
Marcelo Tosatti229456f2009-06-17 09:22:14 -030043#include "trace.h"
44
Avi Kivity4ecac3f2008-05-13 13:23:38 +030045#define __ex(x) __kvm_handle_fault_on_reboot(x)
Avi Kivity5e520e62011-05-15 10:13:12 -040046#define __ex_clear(x, reg) \
47 ____kvm_handle_fault_on_reboot(x, "xor " reg " , " reg)
Avi Kivity4ecac3f2008-05-13 13:23:38 +030048
Avi Kivity6aa8b732006-12-10 02:21:36 -080049MODULE_AUTHOR("Qumranet");
50MODULE_LICENSE("GPL");
51
Avi Kivity4462d212009-03-23 17:53:37 +020052static int __read_mostly enable_vpid = 1;
Avi Kivity736caef2009-03-23 17:39:48 +020053module_param_named(vpid, enable_vpid, bool, 0444);
Sheng Yang2384d2b2008-01-17 15:14:33 +080054
Avi Kivity4462d212009-03-23 17:53:37 +020055static int __read_mostly flexpriority_enabled = 1;
Avi Kivity736caef2009-03-23 17:39:48 +020056module_param_named(flexpriority, flexpriority_enabled, bool, S_IRUGO);
Avi Kivity4c9fc8e2008-03-24 18:15:14 +020057
Avi Kivity4462d212009-03-23 17:53:37 +020058static int __read_mostly enable_ept = 1;
Avi Kivity736caef2009-03-23 17:39:48 +020059module_param_named(ept, enable_ept, bool, S_IRUGO);
Sheng Yangd56f5462008-04-25 10:13:16 +080060
Nitin A Kamble3a624e22009-06-08 11:34:16 -070061static int __read_mostly enable_unrestricted_guest = 1;
62module_param_named(unrestricted_guest,
63 enable_unrestricted_guest, bool, S_IRUGO);
64
Avi Kivity4462d212009-03-23 17:53:37 +020065static int __read_mostly emulate_invalid_guest_state = 0;
Avi Kivityc1f8bc02009-03-23 15:41:17 +020066module_param(emulate_invalid_guest_state, bool, S_IRUGO);
Mohammed Gamal04fa4d32008-08-17 16:39:48 +030067
Dongxiao Xub923e622010-05-11 18:29:45 +080068static int __read_mostly vmm_exclusive = 1;
69module_param(vmm_exclusive, bool, S_IRUGO);
70
Anthony Liguori443381a2010-12-06 10:53:38 -060071static int __read_mostly yield_on_hlt = 1;
72module_param(yield_on_hlt, bool, S_IRUGO);
73
Nadav Har'El801d3422011-05-25 23:02:23 +030074/*
75 * If nested=1, nested virtualization is supported, i.e., guests may use
76 * VMX and be a hypervisor for its own guests. If nested=0, guests may not
77 * use VMX instructions.
78 */
79static int __read_mostly nested = 0;
80module_param(nested, bool, S_IRUGO);
81
Avi Kivitycdc0e242009-12-06 17:21:14 +020082#define KVM_GUEST_CR0_MASK_UNRESTRICTED_GUEST \
83 (X86_CR0_WP | X86_CR0_NE | X86_CR0_NW | X86_CR0_CD)
84#define KVM_GUEST_CR0_MASK \
85 (KVM_GUEST_CR0_MASK_UNRESTRICTED_GUEST | X86_CR0_PG | X86_CR0_PE)
86#define KVM_VM_CR0_ALWAYS_ON_UNRESTRICTED_GUEST \
Avi Kivity81231c62010-01-24 16:26:40 +020087 (X86_CR0_WP | X86_CR0_NE)
Avi Kivitycdc0e242009-12-06 17:21:14 +020088#define KVM_VM_CR0_ALWAYS_ON \
89 (KVM_VM_CR0_ALWAYS_ON_UNRESTRICTED_GUEST | X86_CR0_PG | X86_CR0_PE)
Avi Kivity4c386092009-12-07 12:26:18 +020090#define KVM_CR4_GUEST_OWNED_BITS \
91 (X86_CR4_PVI | X86_CR4_DE | X86_CR4_PCE | X86_CR4_OSFXSR \
92 | X86_CR4_OSXMMEXCPT)
93
Avi Kivitycdc0e242009-12-06 17:21:14 +020094#define KVM_PMODE_VM_CR4_ALWAYS_ON (X86_CR4_PAE | X86_CR4_VMXE)
95#define KVM_RMODE_VM_CR4_ALWAYS_ON (X86_CR4_VME | X86_CR4_PAE | X86_CR4_VMXE)
96
Avi Kivity78ac8b42010-04-08 18:19:35 +030097#define RMODE_GUEST_OWNED_EFLAGS_BITS (~(X86_EFLAGS_IOPL | X86_EFLAGS_VM))
98
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +080099/*
100 * These 2 parameters are used to config the controls for Pause-Loop Exiting:
101 * ple_gap: upper bound on the amount of time between two successive
102 * executions of PAUSE in a loop. Also indicate if ple enabled.
Rik van Riel00c25bc2011-01-04 09:51:33 -0500103 * According to test, this time is usually smaller than 128 cycles.
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +0800104 * ple_window: upper bound on the amount of time a guest is allowed to execute
105 * in a PAUSE loop. Tests indicate that most spinlocks are held for
106 * less than 2^12 cycles
107 * Time is measured based on a counter that runs at the same rate as the TSC,
108 * refer SDM volume 3b section 21.6.13 & 22.1.3.
109 */
Rik van Riel00c25bc2011-01-04 09:51:33 -0500110#define KVM_VMX_DEFAULT_PLE_GAP 128
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +0800111#define KVM_VMX_DEFAULT_PLE_WINDOW 4096
112static int ple_gap = KVM_VMX_DEFAULT_PLE_GAP;
113module_param(ple_gap, int, S_IRUGO);
114
115static int ple_window = KVM_VMX_DEFAULT_PLE_WINDOW;
116module_param(ple_window, int, S_IRUGO);
117
Avi Kivity61d2ef22010-04-28 16:40:38 +0300118#define NR_AUTOLOAD_MSRS 1
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +0300119#define VMCS02_POOL_SIZE 1
Avi Kivity61d2ef22010-04-28 16:40:38 +0300120
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400121struct vmcs {
122 u32 revision_id;
123 u32 abort;
124 char data[0];
125};
126
Nadav Har'Eld462b812011-05-24 15:26:10 +0300127/*
128 * Track a VMCS that may be loaded on a certain CPU. If it is (cpu!=-1), also
129 * remember whether it was VMLAUNCHed, and maintain a linked list of all VMCSs
130 * loaded on this CPU (so we can clear them if the CPU goes down).
131 */
132struct loaded_vmcs {
133 struct vmcs *vmcs;
134 int cpu;
135 int launched;
136 struct list_head loaded_vmcss_on_cpu_link;
137};
138
Avi Kivity26bb0982009-09-07 11:14:12 +0300139struct shared_msr_entry {
140 unsigned index;
141 u64 data;
Avi Kivityd5696722009-12-02 12:28:47 +0200142 u64 mask;
Avi Kivity26bb0982009-09-07 11:14:12 +0300143};
144
Nadav Har'Elec378ae2011-05-25 23:02:54 +0300145/*
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300146 * struct vmcs12 describes the state that our guest hypervisor (L1) keeps for a
147 * single nested guest (L2), hence the name vmcs12. Any VMX implementation has
148 * a VMCS structure, and vmcs12 is our emulated VMX's VMCS. This structure is
149 * stored in guest memory specified by VMPTRLD, but is opaque to the guest,
150 * which must access it using VMREAD/VMWRITE/VMCLEAR instructions.
151 * More than one of these structures may exist, if L1 runs multiple L2 guests.
152 * nested_vmx_run() will use the data here to build a vmcs02: a VMCS for the
153 * underlying hardware which will be used to run L2.
154 * This structure is packed to ensure that its layout is identical across
155 * machines (necessary for live migration).
156 * If there are changes in this struct, VMCS12_REVISION must be changed.
157 */
Nadav Har'El22bd0352011-05-25 23:05:57 +0300158typedef u64 natural_width;
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300159struct __packed vmcs12 {
160 /* According to the Intel spec, a VMCS region must start with the
161 * following two fields. Then follow implementation-specific data.
162 */
163 u32 revision_id;
164 u32 abort;
Nadav Har'El22bd0352011-05-25 23:05:57 +0300165
Nadav Har'El27d6c862011-05-25 23:06:59 +0300166 u32 launch_state; /* set to 0 by VMCLEAR, to 1 by VMLAUNCH */
167 u32 padding[7]; /* room for future expansion */
168
Nadav Har'El22bd0352011-05-25 23:05:57 +0300169 u64 io_bitmap_a;
170 u64 io_bitmap_b;
171 u64 msr_bitmap;
172 u64 vm_exit_msr_store_addr;
173 u64 vm_exit_msr_load_addr;
174 u64 vm_entry_msr_load_addr;
175 u64 tsc_offset;
176 u64 virtual_apic_page_addr;
177 u64 apic_access_addr;
178 u64 ept_pointer;
179 u64 guest_physical_address;
180 u64 vmcs_link_pointer;
181 u64 guest_ia32_debugctl;
182 u64 guest_ia32_pat;
183 u64 guest_ia32_efer;
184 u64 guest_ia32_perf_global_ctrl;
185 u64 guest_pdptr0;
186 u64 guest_pdptr1;
187 u64 guest_pdptr2;
188 u64 guest_pdptr3;
189 u64 host_ia32_pat;
190 u64 host_ia32_efer;
191 u64 host_ia32_perf_global_ctrl;
192 u64 padding64[8]; /* room for future expansion */
193 /*
194 * To allow migration of L1 (complete with its L2 guests) between
195 * machines of different natural widths (32 or 64 bit), we cannot have
196 * unsigned long fields with no explict size. We use u64 (aliased
197 * natural_width) instead. Luckily, x86 is little-endian.
198 */
199 natural_width cr0_guest_host_mask;
200 natural_width cr4_guest_host_mask;
201 natural_width cr0_read_shadow;
202 natural_width cr4_read_shadow;
203 natural_width cr3_target_value0;
204 natural_width cr3_target_value1;
205 natural_width cr3_target_value2;
206 natural_width cr3_target_value3;
207 natural_width exit_qualification;
208 natural_width guest_linear_address;
209 natural_width guest_cr0;
210 natural_width guest_cr3;
211 natural_width guest_cr4;
212 natural_width guest_es_base;
213 natural_width guest_cs_base;
214 natural_width guest_ss_base;
215 natural_width guest_ds_base;
216 natural_width guest_fs_base;
217 natural_width guest_gs_base;
218 natural_width guest_ldtr_base;
219 natural_width guest_tr_base;
220 natural_width guest_gdtr_base;
221 natural_width guest_idtr_base;
222 natural_width guest_dr7;
223 natural_width guest_rsp;
224 natural_width guest_rip;
225 natural_width guest_rflags;
226 natural_width guest_pending_dbg_exceptions;
227 natural_width guest_sysenter_esp;
228 natural_width guest_sysenter_eip;
229 natural_width host_cr0;
230 natural_width host_cr3;
231 natural_width host_cr4;
232 natural_width host_fs_base;
233 natural_width host_gs_base;
234 natural_width host_tr_base;
235 natural_width host_gdtr_base;
236 natural_width host_idtr_base;
237 natural_width host_ia32_sysenter_esp;
238 natural_width host_ia32_sysenter_eip;
239 natural_width host_rsp;
240 natural_width host_rip;
241 natural_width paddingl[8]; /* room for future expansion */
242 u32 pin_based_vm_exec_control;
243 u32 cpu_based_vm_exec_control;
244 u32 exception_bitmap;
245 u32 page_fault_error_code_mask;
246 u32 page_fault_error_code_match;
247 u32 cr3_target_count;
248 u32 vm_exit_controls;
249 u32 vm_exit_msr_store_count;
250 u32 vm_exit_msr_load_count;
251 u32 vm_entry_controls;
252 u32 vm_entry_msr_load_count;
253 u32 vm_entry_intr_info_field;
254 u32 vm_entry_exception_error_code;
255 u32 vm_entry_instruction_len;
256 u32 tpr_threshold;
257 u32 secondary_vm_exec_control;
258 u32 vm_instruction_error;
259 u32 vm_exit_reason;
260 u32 vm_exit_intr_info;
261 u32 vm_exit_intr_error_code;
262 u32 idt_vectoring_info_field;
263 u32 idt_vectoring_error_code;
264 u32 vm_exit_instruction_len;
265 u32 vmx_instruction_info;
266 u32 guest_es_limit;
267 u32 guest_cs_limit;
268 u32 guest_ss_limit;
269 u32 guest_ds_limit;
270 u32 guest_fs_limit;
271 u32 guest_gs_limit;
272 u32 guest_ldtr_limit;
273 u32 guest_tr_limit;
274 u32 guest_gdtr_limit;
275 u32 guest_idtr_limit;
276 u32 guest_es_ar_bytes;
277 u32 guest_cs_ar_bytes;
278 u32 guest_ss_ar_bytes;
279 u32 guest_ds_ar_bytes;
280 u32 guest_fs_ar_bytes;
281 u32 guest_gs_ar_bytes;
282 u32 guest_ldtr_ar_bytes;
283 u32 guest_tr_ar_bytes;
284 u32 guest_interruptibility_info;
285 u32 guest_activity_state;
286 u32 guest_sysenter_cs;
287 u32 host_ia32_sysenter_cs;
288 u32 padding32[8]; /* room for future expansion */
289 u16 virtual_processor_id;
290 u16 guest_es_selector;
291 u16 guest_cs_selector;
292 u16 guest_ss_selector;
293 u16 guest_ds_selector;
294 u16 guest_fs_selector;
295 u16 guest_gs_selector;
296 u16 guest_ldtr_selector;
297 u16 guest_tr_selector;
298 u16 host_es_selector;
299 u16 host_cs_selector;
300 u16 host_ss_selector;
301 u16 host_ds_selector;
302 u16 host_fs_selector;
303 u16 host_gs_selector;
304 u16 host_tr_selector;
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300305};
306
307/*
308 * VMCS12_REVISION is an arbitrary id that should be changed if the content or
309 * layout of struct vmcs12 is changed. MSR_IA32_VMX_BASIC returns this id, and
310 * VMPTRLD verifies that the VMCS region that L1 is loading contains this id.
311 */
312#define VMCS12_REVISION 0x11e57ed0
313
314/*
315 * VMCS12_SIZE is the number of bytes L1 should allocate for the VMXON region
316 * and any VMCS region. Although only sizeof(struct vmcs12) are used by the
317 * current implementation, 4K are reserved to avoid future complications.
318 */
319#define VMCS12_SIZE 0x1000
320
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +0300321/* Used to remember the last vmcs02 used for some recently used vmcs12s */
322struct vmcs02_list {
323 struct list_head list;
324 gpa_t vmptr;
325 struct loaded_vmcs vmcs02;
326};
327
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300328/*
Nadav Har'Elec378ae2011-05-25 23:02:54 +0300329 * The nested_vmx structure is part of vcpu_vmx, and holds information we need
330 * for correct emulation of VMX (i.e., nested VMX) on this vcpu.
331 */
332struct nested_vmx {
333 /* Has the level1 guest done vmxon? */
334 bool vmxon;
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300335
336 /* The guest-physical address of the current VMCS L1 keeps for L2 */
337 gpa_t current_vmptr;
338 /* The host-usable pointer to the above */
339 struct page *current_vmcs12_page;
340 struct vmcs12 *current_vmcs12;
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +0300341
342 /* vmcs02_list cache of VMCSs recently used to run L2 guests */
343 struct list_head vmcs02_pool;
344 int vmcs02_num;
Nadav Har'Elfe3ef052011-05-25 23:10:02 +0300345 u64 vmcs01_tsc_offset;
Nadav Har'El644d7112011-05-25 23:12:35 +0300346 /* L2 must run next, and mustn't decide to exit to L1. */
347 bool nested_run_pending;
Nadav Har'Elfe3ef052011-05-25 23:10:02 +0300348 /*
349 * Guest pages referred to in vmcs02 with host-physical pointers, so
350 * we must keep them pinned while L2 runs.
351 */
352 struct page *apic_access_page;
Nadav Har'Elec378ae2011-05-25 23:02:54 +0300353};
354
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400355struct vcpu_vmx {
Rusty Russellfb3f0f52007-07-27 17:16:56 +1000356 struct kvm_vcpu vcpu;
Avi Kivity313dbd42008-07-17 18:04:30 +0300357 unsigned long host_rsp;
Avi Kivity29bd8a72007-09-10 17:27:03 +0300358 u8 fail;
Avi Kivity69c73022011-03-07 15:26:44 +0200359 u8 cpl;
Avi Kivity9d58b932011-03-07 16:52:07 +0200360 bool nmi_known_unmasked;
Avi Kivity51aa01d2010-07-20 14:31:20 +0300361 u32 exit_intr_info;
Avi Kivity1155f762007-11-22 11:30:47 +0200362 u32 idt_vectoring_info;
Avi Kivity6de12732011-03-07 12:51:22 +0200363 ulong rflags;
Avi Kivity26bb0982009-09-07 11:14:12 +0300364 struct shared_msr_entry *guest_msrs;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400365 int nmsrs;
366 int save_nmsrs;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400367#ifdef CONFIG_X86_64
Avi Kivity44ea2b12009-09-06 15:55:37 +0300368 u64 msr_host_kernel_gs_base;
369 u64 msr_guest_kernel_gs_base;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400370#endif
Nadav Har'Eld462b812011-05-24 15:26:10 +0300371 /*
372 * loaded_vmcs points to the VMCS currently used in this vcpu. For a
373 * non-nested (L1) guest, it always points to vmcs01. For a nested
374 * guest (L2), it points to a different VMCS.
375 */
376 struct loaded_vmcs vmcs01;
377 struct loaded_vmcs *loaded_vmcs;
378 bool __launched; /* temporary, used in vmx_vcpu_run */
Avi Kivity61d2ef22010-04-28 16:40:38 +0300379 struct msr_autoload {
380 unsigned nr;
381 struct vmx_msr_entry guest[NR_AUTOLOAD_MSRS];
382 struct vmx_msr_entry host[NR_AUTOLOAD_MSRS];
383 } msr_autoload;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400384 struct {
385 int loaded;
386 u16 fs_sel, gs_sel, ldt_sel;
Laurent Vivier152d3f22007-08-23 16:33:11 +0200387 int gs_ldt_reload_needed;
388 int fs_reload_needed;
Mike Dayd77c26f2007-10-08 09:02:08 -0400389 } host_state;
Avi Kivity9c8cba32007-11-22 11:42:59 +0200390 struct {
Avi Kivity7ffd92c2009-06-09 14:10:45 +0300391 int vm86_active;
Avi Kivity78ac8b42010-04-08 18:19:35 +0300392 ulong save_rflags;
Avi Kivity7ffd92c2009-06-09 14:10:45 +0300393 struct kvm_save_segment {
394 u16 selector;
395 unsigned long base;
396 u32 limit;
397 u32 ar;
398 } tr, es, ds, fs, gs;
Avi Kivity9c8cba32007-11-22 11:42:59 +0200399 } rmode;
Avi Kivity2fb92db2011-04-27 19:42:18 +0300400 struct {
401 u32 bitmask; /* 4 bits per segment (1 bit per field) */
402 struct kvm_save_segment seg[8];
403 } segment_cache;
Sheng Yang2384d2b2008-01-17 15:14:33 +0800404 int vpid;
Mohammed Gamal04fa4d32008-08-17 16:39:48 +0300405 bool emulation_required;
Jan Kiszka3b86cd92008-09-26 09:30:57 +0200406
407 /* Support for vnmi-less CPUs */
408 int soft_vnmi_blocked;
409 ktime_t entry_time;
410 s64 vnmi_blocked_time;
Andi Kleena0861c02009-06-08 17:37:09 +0800411 u32 exit_reason;
Sheng Yang4e47c7a2009-12-18 16:48:47 +0800412
413 bool rdtscp_enabled;
Nadav Har'Elec378ae2011-05-25 23:02:54 +0300414
415 /* Support for a guest hypervisor (nested VMX) */
416 struct nested_vmx nested;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400417};
418
Avi Kivity2fb92db2011-04-27 19:42:18 +0300419enum segment_cache_field {
420 SEG_FIELD_SEL = 0,
421 SEG_FIELD_BASE = 1,
422 SEG_FIELD_LIMIT = 2,
423 SEG_FIELD_AR = 3,
424
425 SEG_FIELD_NR = 4
426};
427
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400428static inline struct vcpu_vmx *to_vmx(struct kvm_vcpu *vcpu)
429{
Rusty Russellfb3f0f52007-07-27 17:16:56 +1000430 return container_of(vcpu, struct vcpu_vmx, vcpu);
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400431}
432
Nadav Har'El22bd0352011-05-25 23:05:57 +0300433#define VMCS12_OFFSET(x) offsetof(struct vmcs12, x)
434#define FIELD(number, name) [number] = VMCS12_OFFSET(name)
435#define FIELD64(number, name) [number] = VMCS12_OFFSET(name), \
436 [number##_HIGH] = VMCS12_OFFSET(name)+4
437
438static unsigned short vmcs_field_to_offset_table[] = {
439 FIELD(VIRTUAL_PROCESSOR_ID, virtual_processor_id),
440 FIELD(GUEST_ES_SELECTOR, guest_es_selector),
441 FIELD(GUEST_CS_SELECTOR, guest_cs_selector),
442 FIELD(GUEST_SS_SELECTOR, guest_ss_selector),
443 FIELD(GUEST_DS_SELECTOR, guest_ds_selector),
444 FIELD(GUEST_FS_SELECTOR, guest_fs_selector),
445 FIELD(GUEST_GS_SELECTOR, guest_gs_selector),
446 FIELD(GUEST_LDTR_SELECTOR, guest_ldtr_selector),
447 FIELD(GUEST_TR_SELECTOR, guest_tr_selector),
448 FIELD(HOST_ES_SELECTOR, host_es_selector),
449 FIELD(HOST_CS_SELECTOR, host_cs_selector),
450 FIELD(HOST_SS_SELECTOR, host_ss_selector),
451 FIELD(HOST_DS_SELECTOR, host_ds_selector),
452 FIELD(HOST_FS_SELECTOR, host_fs_selector),
453 FIELD(HOST_GS_SELECTOR, host_gs_selector),
454 FIELD(HOST_TR_SELECTOR, host_tr_selector),
455 FIELD64(IO_BITMAP_A, io_bitmap_a),
456 FIELD64(IO_BITMAP_B, io_bitmap_b),
457 FIELD64(MSR_BITMAP, msr_bitmap),
458 FIELD64(VM_EXIT_MSR_STORE_ADDR, vm_exit_msr_store_addr),
459 FIELD64(VM_EXIT_MSR_LOAD_ADDR, vm_exit_msr_load_addr),
460 FIELD64(VM_ENTRY_MSR_LOAD_ADDR, vm_entry_msr_load_addr),
461 FIELD64(TSC_OFFSET, tsc_offset),
462 FIELD64(VIRTUAL_APIC_PAGE_ADDR, virtual_apic_page_addr),
463 FIELD64(APIC_ACCESS_ADDR, apic_access_addr),
464 FIELD64(EPT_POINTER, ept_pointer),
465 FIELD64(GUEST_PHYSICAL_ADDRESS, guest_physical_address),
466 FIELD64(VMCS_LINK_POINTER, vmcs_link_pointer),
467 FIELD64(GUEST_IA32_DEBUGCTL, guest_ia32_debugctl),
468 FIELD64(GUEST_IA32_PAT, guest_ia32_pat),
469 FIELD64(GUEST_IA32_EFER, guest_ia32_efer),
470 FIELD64(GUEST_IA32_PERF_GLOBAL_CTRL, guest_ia32_perf_global_ctrl),
471 FIELD64(GUEST_PDPTR0, guest_pdptr0),
472 FIELD64(GUEST_PDPTR1, guest_pdptr1),
473 FIELD64(GUEST_PDPTR2, guest_pdptr2),
474 FIELD64(GUEST_PDPTR3, guest_pdptr3),
475 FIELD64(HOST_IA32_PAT, host_ia32_pat),
476 FIELD64(HOST_IA32_EFER, host_ia32_efer),
477 FIELD64(HOST_IA32_PERF_GLOBAL_CTRL, host_ia32_perf_global_ctrl),
478 FIELD(PIN_BASED_VM_EXEC_CONTROL, pin_based_vm_exec_control),
479 FIELD(CPU_BASED_VM_EXEC_CONTROL, cpu_based_vm_exec_control),
480 FIELD(EXCEPTION_BITMAP, exception_bitmap),
481 FIELD(PAGE_FAULT_ERROR_CODE_MASK, page_fault_error_code_mask),
482 FIELD(PAGE_FAULT_ERROR_CODE_MATCH, page_fault_error_code_match),
483 FIELD(CR3_TARGET_COUNT, cr3_target_count),
484 FIELD(VM_EXIT_CONTROLS, vm_exit_controls),
485 FIELD(VM_EXIT_MSR_STORE_COUNT, vm_exit_msr_store_count),
486 FIELD(VM_EXIT_MSR_LOAD_COUNT, vm_exit_msr_load_count),
487 FIELD(VM_ENTRY_CONTROLS, vm_entry_controls),
488 FIELD(VM_ENTRY_MSR_LOAD_COUNT, vm_entry_msr_load_count),
489 FIELD(VM_ENTRY_INTR_INFO_FIELD, vm_entry_intr_info_field),
490 FIELD(VM_ENTRY_EXCEPTION_ERROR_CODE, vm_entry_exception_error_code),
491 FIELD(VM_ENTRY_INSTRUCTION_LEN, vm_entry_instruction_len),
492 FIELD(TPR_THRESHOLD, tpr_threshold),
493 FIELD(SECONDARY_VM_EXEC_CONTROL, secondary_vm_exec_control),
494 FIELD(VM_INSTRUCTION_ERROR, vm_instruction_error),
495 FIELD(VM_EXIT_REASON, vm_exit_reason),
496 FIELD(VM_EXIT_INTR_INFO, vm_exit_intr_info),
497 FIELD(VM_EXIT_INTR_ERROR_CODE, vm_exit_intr_error_code),
498 FIELD(IDT_VECTORING_INFO_FIELD, idt_vectoring_info_field),
499 FIELD(IDT_VECTORING_ERROR_CODE, idt_vectoring_error_code),
500 FIELD(VM_EXIT_INSTRUCTION_LEN, vm_exit_instruction_len),
501 FIELD(VMX_INSTRUCTION_INFO, vmx_instruction_info),
502 FIELD(GUEST_ES_LIMIT, guest_es_limit),
503 FIELD(GUEST_CS_LIMIT, guest_cs_limit),
504 FIELD(GUEST_SS_LIMIT, guest_ss_limit),
505 FIELD(GUEST_DS_LIMIT, guest_ds_limit),
506 FIELD(GUEST_FS_LIMIT, guest_fs_limit),
507 FIELD(GUEST_GS_LIMIT, guest_gs_limit),
508 FIELD(GUEST_LDTR_LIMIT, guest_ldtr_limit),
509 FIELD(GUEST_TR_LIMIT, guest_tr_limit),
510 FIELD(GUEST_GDTR_LIMIT, guest_gdtr_limit),
511 FIELD(GUEST_IDTR_LIMIT, guest_idtr_limit),
512 FIELD(GUEST_ES_AR_BYTES, guest_es_ar_bytes),
513 FIELD(GUEST_CS_AR_BYTES, guest_cs_ar_bytes),
514 FIELD(GUEST_SS_AR_BYTES, guest_ss_ar_bytes),
515 FIELD(GUEST_DS_AR_BYTES, guest_ds_ar_bytes),
516 FIELD(GUEST_FS_AR_BYTES, guest_fs_ar_bytes),
517 FIELD(GUEST_GS_AR_BYTES, guest_gs_ar_bytes),
518 FIELD(GUEST_LDTR_AR_BYTES, guest_ldtr_ar_bytes),
519 FIELD(GUEST_TR_AR_BYTES, guest_tr_ar_bytes),
520 FIELD(GUEST_INTERRUPTIBILITY_INFO, guest_interruptibility_info),
521 FIELD(GUEST_ACTIVITY_STATE, guest_activity_state),
522 FIELD(GUEST_SYSENTER_CS, guest_sysenter_cs),
523 FIELD(HOST_IA32_SYSENTER_CS, host_ia32_sysenter_cs),
524 FIELD(CR0_GUEST_HOST_MASK, cr0_guest_host_mask),
525 FIELD(CR4_GUEST_HOST_MASK, cr4_guest_host_mask),
526 FIELD(CR0_READ_SHADOW, cr0_read_shadow),
527 FIELD(CR4_READ_SHADOW, cr4_read_shadow),
528 FIELD(CR3_TARGET_VALUE0, cr3_target_value0),
529 FIELD(CR3_TARGET_VALUE1, cr3_target_value1),
530 FIELD(CR3_TARGET_VALUE2, cr3_target_value2),
531 FIELD(CR3_TARGET_VALUE3, cr3_target_value3),
532 FIELD(EXIT_QUALIFICATION, exit_qualification),
533 FIELD(GUEST_LINEAR_ADDRESS, guest_linear_address),
534 FIELD(GUEST_CR0, guest_cr0),
535 FIELD(GUEST_CR3, guest_cr3),
536 FIELD(GUEST_CR4, guest_cr4),
537 FIELD(GUEST_ES_BASE, guest_es_base),
538 FIELD(GUEST_CS_BASE, guest_cs_base),
539 FIELD(GUEST_SS_BASE, guest_ss_base),
540 FIELD(GUEST_DS_BASE, guest_ds_base),
541 FIELD(GUEST_FS_BASE, guest_fs_base),
542 FIELD(GUEST_GS_BASE, guest_gs_base),
543 FIELD(GUEST_LDTR_BASE, guest_ldtr_base),
544 FIELD(GUEST_TR_BASE, guest_tr_base),
545 FIELD(GUEST_GDTR_BASE, guest_gdtr_base),
546 FIELD(GUEST_IDTR_BASE, guest_idtr_base),
547 FIELD(GUEST_DR7, guest_dr7),
548 FIELD(GUEST_RSP, guest_rsp),
549 FIELD(GUEST_RIP, guest_rip),
550 FIELD(GUEST_RFLAGS, guest_rflags),
551 FIELD(GUEST_PENDING_DBG_EXCEPTIONS, guest_pending_dbg_exceptions),
552 FIELD(GUEST_SYSENTER_ESP, guest_sysenter_esp),
553 FIELD(GUEST_SYSENTER_EIP, guest_sysenter_eip),
554 FIELD(HOST_CR0, host_cr0),
555 FIELD(HOST_CR3, host_cr3),
556 FIELD(HOST_CR4, host_cr4),
557 FIELD(HOST_FS_BASE, host_fs_base),
558 FIELD(HOST_GS_BASE, host_gs_base),
559 FIELD(HOST_TR_BASE, host_tr_base),
560 FIELD(HOST_GDTR_BASE, host_gdtr_base),
561 FIELD(HOST_IDTR_BASE, host_idtr_base),
562 FIELD(HOST_IA32_SYSENTER_ESP, host_ia32_sysenter_esp),
563 FIELD(HOST_IA32_SYSENTER_EIP, host_ia32_sysenter_eip),
564 FIELD(HOST_RSP, host_rsp),
565 FIELD(HOST_RIP, host_rip),
566};
567static const int max_vmcs_field = ARRAY_SIZE(vmcs_field_to_offset_table);
568
569static inline short vmcs_field_to_offset(unsigned long field)
570{
571 if (field >= max_vmcs_field || vmcs_field_to_offset_table[field] == 0)
572 return -1;
573 return vmcs_field_to_offset_table[field];
574}
575
Nadav Har'Ela9d30f32011-05-25 23:03:55 +0300576static inline struct vmcs12 *get_vmcs12(struct kvm_vcpu *vcpu)
577{
578 return to_vmx(vcpu)->nested.current_vmcs12;
579}
580
581static struct page *nested_get_page(struct kvm_vcpu *vcpu, gpa_t addr)
582{
583 struct page *page = gfn_to_page(vcpu->kvm, addr >> PAGE_SHIFT);
584 if (is_error_page(page)) {
585 kvm_release_page_clean(page);
586 return NULL;
587 }
588 return page;
589}
590
591static void nested_release_page(struct page *page)
592{
593 kvm_release_page_dirty(page);
594}
595
596static void nested_release_page_clean(struct page *page)
597{
598 kvm_release_page_clean(page);
599}
600
Sheng Yang4e1096d2008-07-06 19:16:51 +0800601static u64 construct_eptp(unsigned long root_hpa);
Dongxiao Xu4610c9c2010-05-11 18:29:48 +0800602static void kvm_cpu_vmxon(u64 addr);
603static void kvm_cpu_vmxoff(void);
Avi Kivityaff48ba2010-12-05 18:56:11 +0200604static void vmx_set_cr3(struct kvm_vcpu *vcpu, unsigned long cr3);
Gleb Natapov776e58e2011-03-13 12:34:27 +0200605static int vmx_set_tss_addr(struct kvm *kvm, unsigned int addr);
Avi Kivity75880a02007-06-20 11:20:04 +0300606
Avi Kivity6aa8b732006-12-10 02:21:36 -0800607static DEFINE_PER_CPU(struct vmcs *, vmxarea);
608static DEFINE_PER_CPU(struct vmcs *, current_vmcs);
Nadav Har'Eld462b812011-05-24 15:26:10 +0300609/*
610 * We maintain a per-CPU linked-list of VMCS loaded on that CPU. This is needed
611 * when a CPU is brought down, and we need to VMCLEAR all VMCSs loaded on it.
612 */
613static DEFINE_PER_CPU(struct list_head, loaded_vmcss_on_cpu);
Avi Kivity3444d7d2010-07-26 18:32:38 +0300614static DEFINE_PER_CPU(struct desc_ptr, host_gdt);
Avi Kivity6aa8b732006-12-10 02:21:36 -0800615
Avi Kivity3e7c73e2009-02-24 21:46:19 +0200616static unsigned long *vmx_io_bitmap_a;
617static unsigned long *vmx_io_bitmap_b;
Avi Kivity58972972009-02-24 22:26:47 +0200618static unsigned long *vmx_msr_bitmap_legacy;
619static unsigned long *vmx_msr_bitmap_longmode;
He, Qingfdef3ad2007-04-30 09:45:24 +0300620
Avi Kivity110312c2010-12-21 12:54:20 +0200621static bool cpu_has_load_ia32_efer;
622
Sheng Yang2384d2b2008-01-17 15:14:33 +0800623static DECLARE_BITMAP(vmx_vpid_bitmap, VMX_NR_VPIDS);
624static DEFINE_SPINLOCK(vmx_vpid_lock);
625
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +0300626static struct vmcs_config {
Avi Kivity6aa8b732006-12-10 02:21:36 -0800627 int size;
628 int order;
629 u32 revision_id;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +0300630 u32 pin_based_exec_ctrl;
631 u32 cpu_based_exec_ctrl;
Sheng Yangf78e0e22007-10-29 09:40:42 +0800632 u32 cpu_based_2nd_exec_ctrl;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +0300633 u32 vmexit_ctrl;
634 u32 vmentry_ctrl;
635} vmcs_config;
Avi Kivity6aa8b732006-12-10 02:21:36 -0800636
Hannes Ederefff9e52008-11-28 17:02:06 +0100637static struct vmx_capability {
Sheng Yangd56f5462008-04-25 10:13:16 +0800638 u32 ept;
639 u32 vpid;
640} vmx_capability;
641
Avi Kivity6aa8b732006-12-10 02:21:36 -0800642#define VMX_SEGMENT_FIELD(seg) \
643 [VCPU_SREG_##seg] = { \
644 .selector = GUEST_##seg##_SELECTOR, \
645 .base = GUEST_##seg##_BASE, \
646 .limit = GUEST_##seg##_LIMIT, \
647 .ar_bytes = GUEST_##seg##_AR_BYTES, \
648 }
649
650static struct kvm_vmx_segment_field {
651 unsigned selector;
652 unsigned base;
653 unsigned limit;
654 unsigned ar_bytes;
655} kvm_vmx_segment_fields[] = {
656 VMX_SEGMENT_FIELD(CS),
657 VMX_SEGMENT_FIELD(DS),
658 VMX_SEGMENT_FIELD(ES),
659 VMX_SEGMENT_FIELD(FS),
660 VMX_SEGMENT_FIELD(GS),
661 VMX_SEGMENT_FIELD(SS),
662 VMX_SEGMENT_FIELD(TR),
663 VMX_SEGMENT_FIELD(LDTR),
664};
665
Avi Kivity26bb0982009-09-07 11:14:12 +0300666static u64 host_efer;
667
Avi Kivity6de4f3a2009-05-31 22:58:47 +0300668static void ept_save_pdptrs(struct kvm_vcpu *vcpu);
669
Avi Kivity4d56c8a2007-04-19 14:28:44 +0300670/*
Brian Gerst8c065852010-07-17 09:03:26 -0400671 * Keep MSR_STAR at the end, as setup_msrs() will try to optimize it
Avi Kivity4d56c8a2007-04-19 14:28:44 +0300672 * away by decrementing the array size.
673 */
Avi Kivity6aa8b732006-12-10 02:21:36 -0800674static const u32 vmx_msr_index[] = {
Avi Kivity05b3e0c2006-12-13 00:33:45 -0800675#ifdef CONFIG_X86_64
Avi Kivity44ea2b12009-09-06 15:55:37 +0300676 MSR_SYSCALL_MASK, MSR_LSTAR, MSR_CSTAR,
Avi Kivity6aa8b732006-12-10 02:21:36 -0800677#endif
Brian Gerst8c065852010-07-17 09:03:26 -0400678 MSR_EFER, MSR_TSC_AUX, MSR_STAR,
Avi Kivity6aa8b732006-12-10 02:21:36 -0800679};
Ahmed S. Darwish9d8f5492007-02-19 14:37:46 +0200680#define NR_VMX_MSR ARRAY_SIZE(vmx_msr_index)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800681
Gui Jianfeng31299942010-03-15 17:29:09 +0800682static inline bool is_page_fault(u32 intr_info)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800683{
684 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VECTOR_MASK |
685 INTR_INFO_VALID_MASK)) ==
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +0100686 (INTR_TYPE_HARD_EXCEPTION | PF_VECTOR | INTR_INFO_VALID_MASK);
Avi Kivity6aa8b732006-12-10 02:21:36 -0800687}
688
Gui Jianfeng31299942010-03-15 17:29:09 +0800689static inline bool is_no_device(u32 intr_info)
Anthony Liguori2ab455c2007-04-27 09:29:49 +0300690{
691 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VECTOR_MASK |
692 INTR_INFO_VALID_MASK)) ==
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +0100693 (INTR_TYPE_HARD_EXCEPTION | NM_VECTOR | INTR_INFO_VALID_MASK);
Anthony Liguori2ab455c2007-04-27 09:29:49 +0300694}
695
Gui Jianfeng31299942010-03-15 17:29:09 +0800696static inline bool is_invalid_opcode(u32 intr_info)
Anthony Liguori7aa81cc2007-09-17 14:57:50 -0500697{
698 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VECTOR_MASK |
699 INTR_INFO_VALID_MASK)) ==
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +0100700 (INTR_TYPE_HARD_EXCEPTION | UD_VECTOR | INTR_INFO_VALID_MASK);
Anthony Liguori7aa81cc2007-09-17 14:57:50 -0500701}
702
Gui Jianfeng31299942010-03-15 17:29:09 +0800703static inline bool is_external_interrupt(u32 intr_info)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800704{
705 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VALID_MASK))
706 == (INTR_TYPE_EXT_INTR | INTR_INFO_VALID_MASK);
707}
708
Gui Jianfeng31299942010-03-15 17:29:09 +0800709static inline bool is_machine_check(u32 intr_info)
Andi Kleena0861c02009-06-08 17:37:09 +0800710{
711 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VECTOR_MASK |
712 INTR_INFO_VALID_MASK)) ==
713 (INTR_TYPE_HARD_EXCEPTION | MC_VECTOR | INTR_INFO_VALID_MASK);
714}
715
Gui Jianfeng31299942010-03-15 17:29:09 +0800716static inline bool cpu_has_vmx_msr_bitmap(void)
Sheng Yang25c5f222008-03-28 13:18:56 +0800717{
Sheng Yang04547152009-04-01 15:52:31 +0800718 return vmcs_config.cpu_based_exec_ctrl & CPU_BASED_USE_MSR_BITMAPS;
Sheng Yang25c5f222008-03-28 13:18:56 +0800719}
720
Gui Jianfeng31299942010-03-15 17:29:09 +0800721static inline bool cpu_has_vmx_tpr_shadow(void)
Yang, Sheng6e5d8652007-09-12 18:03:11 +0800722{
Sheng Yang04547152009-04-01 15:52:31 +0800723 return vmcs_config.cpu_based_exec_ctrl & CPU_BASED_TPR_SHADOW;
Yang, Sheng6e5d8652007-09-12 18:03:11 +0800724}
725
Gui Jianfeng31299942010-03-15 17:29:09 +0800726static inline bool vm_need_tpr_shadow(struct kvm *kvm)
Yang, Sheng6e5d8652007-09-12 18:03:11 +0800727{
Sheng Yang04547152009-04-01 15:52:31 +0800728 return (cpu_has_vmx_tpr_shadow()) && (irqchip_in_kernel(kvm));
Yang, Sheng6e5d8652007-09-12 18:03:11 +0800729}
730
Gui Jianfeng31299942010-03-15 17:29:09 +0800731static inline bool cpu_has_secondary_exec_ctrls(void)
Sheng Yangf78e0e22007-10-29 09:40:42 +0800732{
Sheng Yang04547152009-04-01 15:52:31 +0800733 return vmcs_config.cpu_based_exec_ctrl &
734 CPU_BASED_ACTIVATE_SECONDARY_CONTROLS;
Sheng Yangf78e0e22007-10-29 09:40:42 +0800735}
736
Avi Kivity774ead32007-12-26 13:57:04 +0200737static inline bool cpu_has_vmx_virtualize_apic_accesses(void)
Sheng Yangf78e0e22007-10-29 09:40:42 +0800738{
Sheng Yang04547152009-04-01 15:52:31 +0800739 return vmcs_config.cpu_based_2nd_exec_ctrl &
740 SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES;
741}
742
743static inline bool cpu_has_vmx_flexpriority(void)
744{
745 return cpu_has_vmx_tpr_shadow() &&
746 cpu_has_vmx_virtualize_apic_accesses();
Sheng Yangf78e0e22007-10-29 09:40:42 +0800747}
748
Marcelo Tosattie7997942009-06-11 12:07:40 -0300749static inline bool cpu_has_vmx_ept_execute_only(void)
750{
Gui Jianfeng31299942010-03-15 17:29:09 +0800751 return vmx_capability.ept & VMX_EPT_EXECUTE_ONLY_BIT;
Marcelo Tosattie7997942009-06-11 12:07:40 -0300752}
753
754static inline bool cpu_has_vmx_eptp_uncacheable(void)
755{
Gui Jianfeng31299942010-03-15 17:29:09 +0800756 return vmx_capability.ept & VMX_EPTP_UC_BIT;
Marcelo Tosattie7997942009-06-11 12:07:40 -0300757}
758
759static inline bool cpu_has_vmx_eptp_writeback(void)
760{
Gui Jianfeng31299942010-03-15 17:29:09 +0800761 return vmx_capability.ept & VMX_EPTP_WB_BIT;
Marcelo Tosattie7997942009-06-11 12:07:40 -0300762}
763
764static inline bool cpu_has_vmx_ept_2m_page(void)
765{
Gui Jianfeng31299942010-03-15 17:29:09 +0800766 return vmx_capability.ept & VMX_EPT_2MB_PAGE_BIT;
Marcelo Tosattie7997942009-06-11 12:07:40 -0300767}
768
Sheng Yang878403b2010-01-05 19:02:29 +0800769static inline bool cpu_has_vmx_ept_1g_page(void)
770{
Gui Jianfeng31299942010-03-15 17:29:09 +0800771 return vmx_capability.ept & VMX_EPT_1GB_PAGE_BIT;
Sheng Yang878403b2010-01-05 19:02:29 +0800772}
773
Sheng Yang4bc9b982010-06-02 14:05:24 +0800774static inline bool cpu_has_vmx_ept_4levels(void)
775{
776 return vmx_capability.ept & VMX_EPT_PAGE_WALK_4_BIT;
777}
778
Gui Jianfeng31299942010-03-15 17:29:09 +0800779static inline bool cpu_has_vmx_invept_individual_addr(void)
Sheng Yangd56f5462008-04-25 10:13:16 +0800780{
Gui Jianfeng31299942010-03-15 17:29:09 +0800781 return vmx_capability.ept & VMX_EPT_EXTENT_INDIVIDUAL_BIT;
Sheng Yangd56f5462008-04-25 10:13:16 +0800782}
783
Gui Jianfeng31299942010-03-15 17:29:09 +0800784static inline bool cpu_has_vmx_invept_context(void)
Sheng Yangd56f5462008-04-25 10:13:16 +0800785{
Gui Jianfeng31299942010-03-15 17:29:09 +0800786 return vmx_capability.ept & VMX_EPT_EXTENT_CONTEXT_BIT;
Sheng Yangd56f5462008-04-25 10:13:16 +0800787}
788
Gui Jianfeng31299942010-03-15 17:29:09 +0800789static inline bool cpu_has_vmx_invept_global(void)
Sheng Yangd56f5462008-04-25 10:13:16 +0800790{
Gui Jianfeng31299942010-03-15 17:29:09 +0800791 return vmx_capability.ept & VMX_EPT_EXTENT_GLOBAL_BIT;
Sheng Yangd56f5462008-04-25 10:13:16 +0800792}
793
Gui Jianfeng518c8ae2010-06-04 08:51:39 +0800794static inline bool cpu_has_vmx_invvpid_single(void)
795{
796 return vmx_capability.vpid & VMX_VPID_EXTENT_SINGLE_CONTEXT_BIT;
797}
798
Gui Jianfengb9d762f2010-06-07 10:32:29 +0800799static inline bool cpu_has_vmx_invvpid_global(void)
800{
801 return vmx_capability.vpid & VMX_VPID_EXTENT_GLOBAL_CONTEXT_BIT;
802}
803
Gui Jianfeng31299942010-03-15 17:29:09 +0800804static inline bool cpu_has_vmx_ept(void)
Sheng Yangd56f5462008-04-25 10:13:16 +0800805{
Sheng Yang04547152009-04-01 15:52:31 +0800806 return vmcs_config.cpu_based_2nd_exec_ctrl &
807 SECONDARY_EXEC_ENABLE_EPT;
Sheng Yangd56f5462008-04-25 10:13:16 +0800808}
809
Gui Jianfeng31299942010-03-15 17:29:09 +0800810static inline bool cpu_has_vmx_unrestricted_guest(void)
Nitin A Kamble3a624e22009-06-08 11:34:16 -0700811{
812 return vmcs_config.cpu_based_2nd_exec_ctrl &
813 SECONDARY_EXEC_UNRESTRICTED_GUEST;
814}
815
Gui Jianfeng31299942010-03-15 17:29:09 +0800816static inline bool cpu_has_vmx_ple(void)
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +0800817{
818 return vmcs_config.cpu_based_2nd_exec_ctrl &
819 SECONDARY_EXEC_PAUSE_LOOP_EXITING;
820}
821
Gui Jianfeng31299942010-03-15 17:29:09 +0800822static inline bool vm_need_virtualize_apic_accesses(struct kvm *kvm)
Sheng Yangf78e0e22007-10-29 09:40:42 +0800823{
Gui Jianfeng6d3e4352010-01-29 15:36:59 +0800824 return flexpriority_enabled && irqchip_in_kernel(kvm);
Sheng Yangf78e0e22007-10-29 09:40:42 +0800825}
826
Gui Jianfeng31299942010-03-15 17:29:09 +0800827static inline bool cpu_has_vmx_vpid(void)
Sheng Yang2384d2b2008-01-17 15:14:33 +0800828{
Sheng Yang04547152009-04-01 15:52:31 +0800829 return vmcs_config.cpu_based_2nd_exec_ctrl &
830 SECONDARY_EXEC_ENABLE_VPID;
Sheng Yang2384d2b2008-01-17 15:14:33 +0800831}
832
Gui Jianfeng31299942010-03-15 17:29:09 +0800833static inline bool cpu_has_vmx_rdtscp(void)
Sheng Yang4e47c7a2009-12-18 16:48:47 +0800834{
835 return vmcs_config.cpu_based_2nd_exec_ctrl &
836 SECONDARY_EXEC_RDTSCP;
837}
838
Gui Jianfeng31299942010-03-15 17:29:09 +0800839static inline bool cpu_has_virtual_nmis(void)
Sheng Yangf08864b2008-05-15 18:23:25 +0800840{
841 return vmcs_config.pin_based_exec_ctrl & PIN_BASED_VIRTUAL_NMIS;
842}
843
Sheng Yangf5f48ee2010-06-30 12:25:15 +0800844static inline bool cpu_has_vmx_wbinvd_exit(void)
845{
846 return vmcs_config.cpu_based_2nd_exec_ctrl &
847 SECONDARY_EXEC_WBINVD_EXITING;
848}
849
Sheng Yang04547152009-04-01 15:52:31 +0800850static inline bool report_flexpriority(void)
851{
852 return flexpriority_enabled;
853}
854
Nadav Har'Elfe3ef052011-05-25 23:10:02 +0300855static inline bool nested_cpu_has(struct vmcs12 *vmcs12, u32 bit)
856{
857 return vmcs12->cpu_based_vm_exec_control & bit;
858}
859
860static inline bool nested_cpu_has2(struct vmcs12 *vmcs12, u32 bit)
861{
862 return (vmcs12->cpu_based_vm_exec_control &
863 CPU_BASED_ACTIVATE_SECONDARY_CONTROLS) &&
864 (vmcs12->secondary_vm_exec_control & bit);
865}
866
Nadav Har'El644d7112011-05-25 23:12:35 +0300867static inline bool nested_cpu_has_virtual_nmis(struct vmcs12 *vmcs12,
868 struct kvm_vcpu *vcpu)
869{
870 return vmcs12->pin_based_vm_exec_control & PIN_BASED_VIRTUAL_NMIS;
871}
872
873static inline bool is_exception(u32 intr_info)
874{
875 return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VALID_MASK))
876 == (INTR_TYPE_HARD_EXCEPTION | INTR_INFO_VALID_MASK);
877}
878
879static void nested_vmx_vmexit(struct kvm_vcpu *vcpu);
Nadav Har'El7c177932011-05-25 23:12:04 +0300880static void nested_vmx_entry_failure(struct kvm_vcpu *vcpu,
881 struct vmcs12 *vmcs12,
882 u32 reason, unsigned long qualification);
883
Rusty Russell8b9cf982007-07-30 16:31:43 +1000884static int __find_msr_index(struct vcpu_vmx *vmx, u32 msr)
Avi Kivity7725f0b2006-12-13 00:34:01 -0800885{
886 int i;
887
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400888 for (i = 0; i < vmx->nmsrs; ++i)
Avi Kivity26bb0982009-09-07 11:14:12 +0300889 if (vmx_msr_index[vmx->guest_msrs[i].index] == msr)
Eddie Donga75beee2007-05-17 18:55:15 +0300890 return i;
891 return -1;
892}
893
Sheng Yang2384d2b2008-01-17 15:14:33 +0800894static inline void __invvpid(int ext, u16 vpid, gva_t gva)
895{
896 struct {
897 u64 vpid : 16;
898 u64 rsvd : 48;
899 u64 gva;
900 } operand = { vpid, 0, gva };
901
Avi Kivity4ecac3f2008-05-13 13:23:38 +0300902 asm volatile (__ex(ASM_VMX_INVVPID)
Sheng Yang2384d2b2008-01-17 15:14:33 +0800903 /* CF==1 or ZF==1 --> rc = -1 */
904 "; ja 1f ; ud2 ; 1:"
905 : : "a"(&operand), "c"(ext) : "cc", "memory");
906}
907
Sheng Yang14394422008-04-28 12:24:45 +0800908static inline void __invept(int ext, u64 eptp, gpa_t gpa)
909{
910 struct {
911 u64 eptp, gpa;
912 } operand = {eptp, gpa};
913
Avi Kivity4ecac3f2008-05-13 13:23:38 +0300914 asm volatile (__ex(ASM_VMX_INVEPT)
Sheng Yang14394422008-04-28 12:24:45 +0800915 /* CF==1 or ZF==1 --> rc = -1 */
916 "; ja 1f ; ud2 ; 1:\n"
917 : : "a" (&operand), "c" (ext) : "cc", "memory");
918}
919
Avi Kivity26bb0982009-09-07 11:14:12 +0300920static struct shared_msr_entry *find_msr_entry(struct vcpu_vmx *vmx, u32 msr)
Eddie Donga75beee2007-05-17 18:55:15 +0300921{
922 int i;
923
Rusty Russell8b9cf982007-07-30 16:31:43 +1000924 i = __find_msr_index(vmx, msr);
Eddie Donga75beee2007-05-17 18:55:15 +0300925 if (i >= 0)
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -0400926 return &vmx->guest_msrs[i];
Al Viro8b6d44c2007-02-09 16:38:40 +0000927 return NULL;
Avi Kivity7725f0b2006-12-13 00:34:01 -0800928}
929
Avi Kivity6aa8b732006-12-10 02:21:36 -0800930static void vmcs_clear(struct vmcs *vmcs)
931{
932 u64 phys_addr = __pa(vmcs);
933 u8 error;
934
Avi Kivity4ecac3f2008-05-13 13:23:38 +0300935 asm volatile (__ex(ASM_VMX_VMCLEAR_RAX) "; setna %0"
Avi Kivity16d8f722010-12-21 16:51:50 +0200936 : "=qm"(error) : "a"(&phys_addr), "m"(phys_addr)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800937 : "cc", "memory");
938 if (error)
939 printk(KERN_ERR "kvm: vmclear fail: %p/%llx\n",
940 vmcs, phys_addr);
941}
942
Nadav Har'Eld462b812011-05-24 15:26:10 +0300943static inline void loaded_vmcs_init(struct loaded_vmcs *loaded_vmcs)
944{
945 vmcs_clear(loaded_vmcs->vmcs);
946 loaded_vmcs->cpu = -1;
947 loaded_vmcs->launched = 0;
948}
949
Dongxiao Xu7725b892010-05-11 18:29:38 +0800950static void vmcs_load(struct vmcs *vmcs)
951{
952 u64 phys_addr = __pa(vmcs);
953 u8 error;
954
955 asm volatile (__ex(ASM_VMX_VMPTRLD_RAX) "; setna %0"
Avi Kivity16d8f722010-12-21 16:51:50 +0200956 : "=qm"(error) : "a"(&phys_addr), "m"(phys_addr)
Dongxiao Xu7725b892010-05-11 18:29:38 +0800957 : "cc", "memory");
958 if (error)
Nadav Har'El2844d842011-05-25 23:16:40 +0300959 printk(KERN_ERR "kvm: vmptrld %p/%llx failed\n",
Dongxiao Xu7725b892010-05-11 18:29:38 +0800960 vmcs, phys_addr);
961}
962
Nadav Har'Eld462b812011-05-24 15:26:10 +0300963static void __loaded_vmcs_clear(void *arg)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800964{
Nadav Har'Eld462b812011-05-24 15:26:10 +0300965 struct loaded_vmcs *loaded_vmcs = arg;
Ingo Molnard3b2c332007-01-05 16:36:23 -0800966 int cpu = raw_smp_processor_id();
Avi Kivity6aa8b732006-12-10 02:21:36 -0800967
Nadav Har'Eld462b812011-05-24 15:26:10 +0300968 if (loaded_vmcs->cpu != cpu)
969 return; /* vcpu migration can race with cpu offline */
970 if (per_cpu(current_vmcs, cpu) == loaded_vmcs->vmcs)
Avi Kivity6aa8b732006-12-10 02:21:36 -0800971 per_cpu(current_vmcs, cpu) = NULL;
Nadav Har'Eld462b812011-05-24 15:26:10 +0300972 list_del(&loaded_vmcs->loaded_vmcss_on_cpu_link);
973 loaded_vmcs_init(loaded_vmcs);
Avi Kivity6aa8b732006-12-10 02:21:36 -0800974}
975
Nadav Har'Eld462b812011-05-24 15:26:10 +0300976static void loaded_vmcs_clear(struct loaded_vmcs *loaded_vmcs)
Avi Kivity8d0be2b2007-02-12 00:54:46 -0800977{
Nadav Har'Eld462b812011-05-24 15:26:10 +0300978 if (loaded_vmcs->cpu != -1)
979 smp_call_function_single(
980 loaded_vmcs->cpu, __loaded_vmcs_clear, loaded_vmcs, 1);
Avi Kivity8d0be2b2007-02-12 00:54:46 -0800981}
982
Gui Jianfeng1760dd42010-06-07 10:33:27 +0800983static inline void vpid_sync_vcpu_single(struct vcpu_vmx *vmx)
Sheng Yang2384d2b2008-01-17 15:14:33 +0800984{
985 if (vmx->vpid == 0)
986 return;
987
Gui Jianfeng518c8ae2010-06-04 08:51:39 +0800988 if (cpu_has_vmx_invvpid_single())
989 __invvpid(VMX_VPID_EXTENT_SINGLE_CONTEXT, vmx->vpid, 0);
Sheng Yang2384d2b2008-01-17 15:14:33 +0800990}
991
Gui Jianfengb9d762f2010-06-07 10:32:29 +0800992static inline void vpid_sync_vcpu_global(void)
993{
994 if (cpu_has_vmx_invvpid_global())
995 __invvpid(VMX_VPID_EXTENT_ALL_CONTEXT, 0, 0);
996}
997
998static inline void vpid_sync_context(struct vcpu_vmx *vmx)
999{
1000 if (cpu_has_vmx_invvpid_single())
Gui Jianfeng1760dd42010-06-07 10:33:27 +08001001 vpid_sync_vcpu_single(vmx);
Gui Jianfengb9d762f2010-06-07 10:32:29 +08001002 else
1003 vpid_sync_vcpu_global();
1004}
1005
Sheng Yang14394422008-04-28 12:24:45 +08001006static inline void ept_sync_global(void)
1007{
1008 if (cpu_has_vmx_invept_global())
1009 __invept(VMX_EPT_EXTENT_GLOBAL, 0, 0);
1010}
1011
1012static inline void ept_sync_context(u64 eptp)
1013{
Avi Kivity089d0342009-03-23 18:26:32 +02001014 if (enable_ept) {
Sheng Yang14394422008-04-28 12:24:45 +08001015 if (cpu_has_vmx_invept_context())
1016 __invept(VMX_EPT_EXTENT_CONTEXT, eptp, 0);
1017 else
1018 ept_sync_global();
1019 }
1020}
1021
1022static inline void ept_sync_individual_addr(u64 eptp, gpa_t gpa)
1023{
Avi Kivity089d0342009-03-23 18:26:32 +02001024 if (enable_ept) {
Sheng Yang14394422008-04-28 12:24:45 +08001025 if (cpu_has_vmx_invept_individual_addr())
1026 __invept(VMX_EPT_EXTENT_INDIVIDUAL_ADDR,
1027 eptp, gpa);
1028 else
1029 ept_sync_context(eptp);
1030 }
1031}
1032
Avi Kivity96304212011-05-15 10:13:13 -04001033static __always_inline unsigned long vmcs_readl(unsigned long field)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001034{
Avi Kivity5e520e62011-05-15 10:13:12 -04001035 unsigned long value;
Avi Kivity6aa8b732006-12-10 02:21:36 -08001036
Avi Kivity5e520e62011-05-15 10:13:12 -04001037 asm volatile (__ex_clear(ASM_VMX_VMREAD_RDX_RAX, "%0")
1038 : "=a"(value) : "d"(field) : "cc");
Avi Kivity6aa8b732006-12-10 02:21:36 -08001039 return value;
1040}
1041
Avi Kivity96304212011-05-15 10:13:13 -04001042static __always_inline u16 vmcs_read16(unsigned long field)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001043{
1044 return vmcs_readl(field);
1045}
1046
Avi Kivity96304212011-05-15 10:13:13 -04001047static __always_inline u32 vmcs_read32(unsigned long field)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001048{
1049 return vmcs_readl(field);
1050}
1051
Avi Kivity96304212011-05-15 10:13:13 -04001052static __always_inline u64 vmcs_read64(unsigned long field)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001053{
Avi Kivity05b3e0c2006-12-13 00:33:45 -08001054#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08001055 return vmcs_readl(field);
1056#else
1057 return vmcs_readl(field) | ((u64)vmcs_readl(field+1) << 32);
1058#endif
1059}
1060
Avi Kivitye52de1b2007-01-05 16:36:56 -08001061static noinline void vmwrite_error(unsigned long field, unsigned long value)
1062{
1063 printk(KERN_ERR "vmwrite error: reg %lx value %lx (err %d)\n",
1064 field, value, vmcs_read32(VM_INSTRUCTION_ERROR));
1065 dump_stack();
1066}
1067
Avi Kivity6aa8b732006-12-10 02:21:36 -08001068static void vmcs_writel(unsigned long field, unsigned long value)
1069{
1070 u8 error;
1071
Avi Kivity4ecac3f2008-05-13 13:23:38 +03001072 asm volatile (__ex(ASM_VMX_VMWRITE_RAX_RDX) "; setna %0"
Mike Dayd77c26f2007-10-08 09:02:08 -04001073 : "=q"(error) : "a"(value), "d"(field) : "cc");
Avi Kivitye52de1b2007-01-05 16:36:56 -08001074 if (unlikely(error))
1075 vmwrite_error(field, value);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001076}
1077
1078static void vmcs_write16(unsigned long field, u16 value)
1079{
1080 vmcs_writel(field, value);
1081}
1082
1083static void vmcs_write32(unsigned long field, u32 value)
1084{
1085 vmcs_writel(field, value);
1086}
1087
1088static void vmcs_write64(unsigned long field, u64 value)
1089{
Avi Kivity6aa8b732006-12-10 02:21:36 -08001090 vmcs_writel(field, value);
Avi Kivity7682f2d2008-05-12 19:25:43 +03001091#ifndef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08001092 asm volatile ("");
1093 vmcs_writel(field+1, value >> 32);
1094#endif
1095}
1096
Anthony Liguori2ab455c2007-04-27 09:29:49 +03001097static void vmcs_clear_bits(unsigned long field, u32 mask)
1098{
1099 vmcs_writel(field, vmcs_readl(field) & ~mask);
1100}
1101
1102static void vmcs_set_bits(unsigned long field, u32 mask)
1103{
1104 vmcs_writel(field, vmcs_readl(field) | mask);
1105}
1106
Avi Kivity2fb92db2011-04-27 19:42:18 +03001107static void vmx_segment_cache_clear(struct vcpu_vmx *vmx)
1108{
1109 vmx->segment_cache.bitmask = 0;
1110}
1111
1112static bool vmx_segment_cache_test_set(struct vcpu_vmx *vmx, unsigned seg,
1113 unsigned field)
1114{
1115 bool ret;
1116 u32 mask = 1 << (seg * SEG_FIELD_NR + field);
1117
1118 if (!(vmx->vcpu.arch.regs_avail & (1 << VCPU_EXREG_SEGMENTS))) {
1119 vmx->vcpu.arch.regs_avail |= (1 << VCPU_EXREG_SEGMENTS);
1120 vmx->segment_cache.bitmask = 0;
1121 }
1122 ret = vmx->segment_cache.bitmask & mask;
1123 vmx->segment_cache.bitmask |= mask;
1124 return ret;
1125}
1126
1127static u16 vmx_read_guest_seg_selector(struct vcpu_vmx *vmx, unsigned seg)
1128{
1129 u16 *p = &vmx->segment_cache.seg[seg].selector;
1130
1131 if (!vmx_segment_cache_test_set(vmx, seg, SEG_FIELD_SEL))
1132 *p = vmcs_read16(kvm_vmx_segment_fields[seg].selector);
1133 return *p;
1134}
1135
1136static ulong vmx_read_guest_seg_base(struct vcpu_vmx *vmx, unsigned seg)
1137{
1138 ulong *p = &vmx->segment_cache.seg[seg].base;
1139
1140 if (!vmx_segment_cache_test_set(vmx, seg, SEG_FIELD_BASE))
1141 *p = vmcs_readl(kvm_vmx_segment_fields[seg].base);
1142 return *p;
1143}
1144
1145static u32 vmx_read_guest_seg_limit(struct vcpu_vmx *vmx, unsigned seg)
1146{
1147 u32 *p = &vmx->segment_cache.seg[seg].limit;
1148
1149 if (!vmx_segment_cache_test_set(vmx, seg, SEG_FIELD_LIMIT))
1150 *p = vmcs_read32(kvm_vmx_segment_fields[seg].limit);
1151 return *p;
1152}
1153
1154static u32 vmx_read_guest_seg_ar(struct vcpu_vmx *vmx, unsigned seg)
1155{
1156 u32 *p = &vmx->segment_cache.seg[seg].ar;
1157
1158 if (!vmx_segment_cache_test_set(vmx, seg, SEG_FIELD_AR))
1159 *p = vmcs_read32(kvm_vmx_segment_fields[seg].ar_bytes);
1160 return *p;
1161}
1162
Avi Kivityabd3f2d2007-05-02 17:57:40 +03001163static void update_exception_bitmap(struct kvm_vcpu *vcpu)
1164{
1165 u32 eb;
1166
Jan Kiszkafd7373c2010-01-20 18:20:20 +01001167 eb = (1u << PF_VECTOR) | (1u << UD_VECTOR) | (1u << MC_VECTOR) |
1168 (1u << NM_VECTOR) | (1u << DB_VECTOR);
1169 if ((vcpu->guest_debug &
1170 (KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP)) ==
1171 (KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP))
1172 eb |= 1u << BP_VECTOR;
Avi Kivity7ffd92c2009-06-09 14:10:45 +03001173 if (to_vmx(vcpu)->rmode.vm86_active)
Avi Kivityabd3f2d2007-05-02 17:57:40 +03001174 eb = ~0;
Avi Kivity089d0342009-03-23 18:26:32 +02001175 if (enable_ept)
Sheng Yang14394422008-04-28 12:24:45 +08001176 eb &= ~(1u << PF_VECTOR); /* bypass_guest_pf = 0 */
Avi Kivity02daab22009-12-30 12:40:26 +02001177 if (vcpu->fpu_active)
1178 eb &= ~(1u << NM_VECTOR);
Nadav Har'El36cf24e2011-05-25 23:15:08 +03001179
1180 /* When we are running a nested L2 guest and L1 specified for it a
1181 * certain exception bitmap, we must trap the same exceptions and pass
1182 * them to L1. When running L2, we will only handle the exceptions
1183 * specified above if L1 did not want them.
1184 */
1185 if (is_guest_mode(vcpu))
1186 eb |= get_vmcs12(vcpu)->exception_bitmap;
1187
Avi Kivityabd3f2d2007-05-02 17:57:40 +03001188 vmcs_write32(EXCEPTION_BITMAP, eb);
1189}
1190
Avi Kivity61d2ef22010-04-28 16:40:38 +03001191static void clear_atomic_switch_msr(struct vcpu_vmx *vmx, unsigned msr)
1192{
1193 unsigned i;
1194 struct msr_autoload *m = &vmx->msr_autoload;
1195
Avi Kivity110312c2010-12-21 12:54:20 +02001196 if (msr == MSR_EFER && cpu_has_load_ia32_efer) {
1197 vmcs_clear_bits(VM_ENTRY_CONTROLS, VM_ENTRY_LOAD_IA32_EFER);
1198 vmcs_clear_bits(VM_EXIT_CONTROLS, VM_EXIT_LOAD_IA32_EFER);
1199 return;
1200 }
1201
Avi Kivity61d2ef22010-04-28 16:40:38 +03001202 for (i = 0; i < m->nr; ++i)
1203 if (m->guest[i].index == msr)
1204 break;
1205
1206 if (i == m->nr)
1207 return;
1208 --m->nr;
1209 m->guest[i] = m->guest[m->nr];
1210 m->host[i] = m->host[m->nr];
1211 vmcs_write32(VM_ENTRY_MSR_LOAD_COUNT, m->nr);
1212 vmcs_write32(VM_EXIT_MSR_LOAD_COUNT, m->nr);
1213}
1214
1215static void add_atomic_switch_msr(struct vcpu_vmx *vmx, unsigned msr,
1216 u64 guest_val, u64 host_val)
1217{
1218 unsigned i;
1219 struct msr_autoload *m = &vmx->msr_autoload;
1220
Avi Kivity110312c2010-12-21 12:54:20 +02001221 if (msr == MSR_EFER && cpu_has_load_ia32_efer) {
1222 vmcs_write64(GUEST_IA32_EFER, guest_val);
1223 vmcs_write64(HOST_IA32_EFER, host_val);
1224 vmcs_set_bits(VM_ENTRY_CONTROLS, VM_ENTRY_LOAD_IA32_EFER);
1225 vmcs_set_bits(VM_EXIT_CONTROLS, VM_EXIT_LOAD_IA32_EFER);
1226 return;
1227 }
1228
Avi Kivity61d2ef22010-04-28 16:40:38 +03001229 for (i = 0; i < m->nr; ++i)
1230 if (m->guest[i].index == msr)
1231 break;
1232
1233 if (i == m->nr) {
1234 ++m->nr;
1235 vmcs_write32(VM_ENTRY_MSR_LOAD_COUNT, m->nr);
1236 vmcs_write32(VM_EXIT_MSR_LOAD_COUNT, m->nr);
1237 }
1238
1239 m->guest[i].index = msr;
1240 m->guest[i].value = guest_val;
1241 m->host[i].index = msr;
1242 m->host[i].value = host_val;
1243}
1244
Avi Kivity33ed6322007-05-02 16:54:03 +03001245static void reload_tss(void)
1246{
Avi Kivity33ed6322007-05-02 16:54:03 +03001247 /*
1248 * VT restores TR but not its size. Useless.
1249 */
Avi Kivityd3591922010-07-26 18:32:39 +03001250 struct desc_ptr *gdt = &__get_cpu_var(host_gdt);
Avi Kivitya5f61302008-02-20 17:57:21 +02001251 struct desc_struct *descs;
Avi Kivity33ed6322007-05-02 16:54:03 +03001252
Avi Kivityd3591922010-07-26 18:32:39 +03001253 descs = (void *)gdt->address;
Avi Kivity33ed6322007-05-02 16:54:03 +03001254 descs[GDT_ENTRY_TSS].type = 9; /* available TSS */
1255 load_TR_desc();
Avi Kivity33ed6322007-05-02 16:54:03 +03001256}
1257
Avi Kivity92c0d902009-10-29 11:00:16 +02001258static bool update_transition_efer(struct vcpu_vmx *vmx, int efer_offset)
Eddie Dong2cc51562007-05-21 07:28:09 +03001259{
Roel Kluin3a34a882009-08-04 02:08:45 -07001260 u64 guest_efer;
Avi Kivity51c6cf62007-08-29 03:48:05 +03001261 u64 ignore_bits;
Eddie Dong2cc51562007-05-21 07:28:09 +03001262
Avi Kivityf6801df2010-01-21 15:31:50 +02001263 guest_efer = vmx->vcpu.arch.efer;
Roel Kluin3a34a882009-08-04 02:08:45 -07001264
Avi Kivity51c6cf62007-08-29 03:48:05 +03001265 /*
1266 * NX is emulated; LMA and LME handled by hardware; SCE meaninless
1267 * outside long mode
1268 */
1269 ignore_bits = EFER_NX | EFER_SCE;
1270#ifdef CONFIG_X86_64
1271 ignore_bits |= EFER_LMA | EFER_LME;
1272 /* SCE is meaningful only in long mode on Intel */
1273 if (guest_efer & EFER_LMA)
1274 ignore_bits &= ~(u64)EFER_SCE;
1275#endif
Avi Kivity51c6cf62007-08-29 03:48:05 +03001276 guest_efer &= ~ignore_bits;
1277 guest_efer |= host_efer & ignore_bits;
Avi Kivity26bb0982009-09-07 11:14:12 +03001278 vmx->guest_msrs[efer_offset].data = guest_efer;
Avi Kivityd5696722009-12-02 12:28:47 +02001279 vmx->guest_msrs[efer_offset].mask = ~ignore_bits;
Avi Kivity84ad33e2010-04-28 16:42:29 +03001280
1281 clear_atomic_switch_msr(vmx, MSR_EFER);
1282 /* On ept, can't emulate nx, and must switch nx atomically */
1283 if (enable_ept && ((vmx->vcpu.arch.efer ^ host_efer) & EFER_NX)) {
1284 guest_efer = vmx->vcpu.arch.efer;
1285 if (!(guest_efer & EFER_LMA))
1286 guest_efer &= ~EFER_LME;
1287 add_atomic_switch_msr(vmx, MSR_EFER, guest_efer, host_efer);
1288 return false;
1289 }
1290
Avi Kivity26bb0982009-09-07 11:14:12 +03001291 return true;
Avi Kivity51c6cf62007-08-29 03:48:05 +03001292}
1293
Gleb Natapov2d49ec72010-02-25 12:43:09 +02001294static unsigned long segment_base(u16 selector)
1295{
Avi Kivityd3591922010-07-26 18:32:39 +03001296 struct desc_ptr *gdt = &__get_cpu_var(host_gdt);
Gleb Natapov2d49ec72010-02-25 12:43:09 +02001297 struct desc_struct *d;
1298 unsigned long table_base;
1299 unsigned long v;
1300
1301 if (!(selector & ~3))
1302 return 0;
1303
Avi Kivityd3591922010-07-26 18:32:39 +03001304 table_base = gdt->address;
Gleb Natapov2d49ec72010-02-25 12:43:09 +02001305
1306 if (selector & 4) { /* from ldt */
1307 u16 ldt_selector = kvm_read_ldt();
1308
1309 if (!(ldt_selector & ~3))
1310 return 0;
1311
1312 table_base = segment_base(ldt_selector);
1313 }
1314 d = (struct desc_struct *)(table_base + (selector & ~7));
1315 v = get_desc_base(d);
1316#ifdef CONFIG_X86_64
1317 if (d->s == 0 && (d->type == 2 || d->type == 9 || d->type == 11))
1318 v |= ((unsigned long)((struct ldttss_desc64 *)d)->base3) << 32;
1319#endif
1320 return v;
1321}
1322
1323static inline unsigned long kvm_read_tr_base(void)
1324{
1325 u16 tr;
1326 asm("str %0" : "=g"(tr));
1327 return segment_base(tr);
1328}
1329
Avi Kivity04d2cc72007-09-10 18:10:54 +03001330static void vmx_save_host_state(struct kvm_vcpu *vcpu)
Avi Kivity33ed6322007-05-02 16:54:03 +03001331{
Avi Kivity04d2cc72007-09-10 18:10:54 +03001332 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity26bb0982009-09-07 11:14:12 +03001333 int i;
Avi Kivity04d2cc72007-09-10 18:10:54 +03001334
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001335 if (vmx->host_state.loaded)
Avi Kivity33ed6322007-05-02 16:54:03 +03001336 return;
1337
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001338 vmx->host_state.loaded = 1;
Avi Kivity33ed6322007-05-02 16:54:03 +03001339 /*
1340 * Set host fs and gs selectors. Unfortunately, 22.2.3 does not
1341 * allow segment selectors with cpl > 0 or ti == 1.
1342 */
Avi Kivityd6e88ae2008-07-10 16:53:33 +03001343 vmx->host_state.ldt_sel = kvm_read_ldt();
Laurent Vivier152d3f22007-08-23 16:33:11 +02001344 vmx->host_state.gs_ldt_reload_needed = vmx->host_state.ldt_sel;
Avi Kivity9581d442010-10-19 16:46:55 +02001345 savesegment(fs, vmx->host_state.fs_sel);
Laurent Vivier152d3f22007-08-23 16:33:11 +02001346 if (!(vmx->host_state.fs_sel & 7)) {
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001347 vmcs_write16(HOST_FS_SELECTOR, vmx->host_state.fs_sel);
Laurent Vivier152d3f22007-08-23 16:33:11 +02001348 vmx->host_state.fs_reload_needed = 0;
1349 } else {
Avi Kivity33ed6322007-05-02 16:54:03 +03001350 vmcs_write16(HOST_FS_SELECTOR, 0);
Laurent Vivier152d3f22007-08-23 16:33:11 +02001351 vmx->host_state.fs_reload_needed = 1;
Avi Kivity33ed6322007-05-02 16:54:03 +03001352 }
Avi Kivity9581d442010-10-19 16:46:55 +02001353 savesegment(gs, vmx->host_state.gs_sel);
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001354 if (!(vmx->host_state.gs_sel & 7))
1355 vmcs_write16(HOST_GS_SELECTOR, vmx->host_state.gs_sel);
Avi Kivity33ed6322007-05-02 16:54:03 +03001356 else {
1357 vmcs_write16(HOST_GS_SELECTOR, 0);
Laurent Vivier152d3f22007-08-23 16:33:11 +02001358 vmx->host_state.gs_ldt_reload_needed = 1;
Avi Kivity33ed6322007-05-02 16:54:03 +03001359 }
1360
1361#ifdef CONFIG_X86_64
1362 vmcs_writel(HOST_FS_BASE, read_msr(MSR_FS_BASE));
1363 vmcs_writel(HOST_GS_BASE, read_msr(MSR_GS_BASE));
1364#else
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001365 vmcs_writel(HOST_FS_BASE, segment_base(vmx->host_state.fs_sel));
1366 vmcs_writel(HOST_GS_BASE, segment_base(vmx->host_state.gs_sel));
Avi Kivity33ed6322007-05-02 16:54:03 +03001367#endif
Avi Kivity707c0872007-05-02 17:33:43 +03001368
1369#ifdef CONFIG_X86_64
Avi Kivityc8770e72010-11-11 12:37:26 +02001370 rdmsrl(MSR_KERNEL_GS_BASE, vmx->msr_host_kernel_gs_base);
1371 if (is_long_mode(&vmx->vcpu))
Avi Kivity44ea2b12009-09-06 15:55:37 +03001372 wrmsrl(MSR_KERNEL_GS_BASE, vmx->msr_guest_kernel_gs_base);
Avi Kivity707c0872007-05-02 17:33:43 +03001373#endif
Avi Kivity26bb0982009-09-07 11:14:12 +03001374 for (i = 0; i < vmx->save_nmsrs; ++i)
1375 kvm_set_shared_msr(vmx->guest_msrs[i].index,
Avi Kivityd5696722009-12-02 12:28:47 +02001376 vmx->guest_msrs[i].data,
1377 vmx->guest_msrs[i].mask);
Avi Kivity33ed6322007-05-02 16:54:03 +03001378}
1379
Avi Kivitya9b21b62008-06-24 11:48:49 +03001380static void __vmx_load_host_state(struct vcpu_vmx *vmx)
Avi Kivity33ed6322007-05-02 16:54:03 +03001381{
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001382 if (!vmx->host_state.loaded)
Avi Kivity33ed6322007-05-02 16:54:03 +03001383 return;
1384
Avi Kivitye1beb1d2007-11-18 13:50:24 +02001385 ++vmx->vcpu.stat.host_state_reload;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001386 vmx->host_state.loaded = 0;
Avi Kivityc8770e72010-11-11 12:37:26 +02001387#ifdef CONFIG_X86_64
1388 if (is_long_mode(&vmx->vcpu))
1389 rdmsrl(MSR_KERNEL_GS_BASE, vmx->msr_guest_kernel_gs_base);
1390#endif
Laurent Vivier152d3f22007-08-23 16:33:11 +02001391 if (vmx->host_state.gs_ldt_reload_needed) {
Avi Kivityd6e88ae2008-07-10 16:53:33 +03001392 kvm_load_ldt(vmx->host_state.ldt_sel);
Avi Kivity33ed6322007-05-02 16:54:03 +03001393#ifdef CONFIG_X86_64
Avi Kivity9581d442010-10-19 16:46:55 +02001394 load_gs_index(vmx->host_state.gs_sel);
Avi Kivity9581d442010-10-19 16:46:55 +02001395#else
1396 loadsegment(gs, vmx->host_state.gs_sel);
Avi Kivity33ed6322007-05-02 16:54:03 +03001397#endif
Avi Kivity33ed6322007-05-02 16:54:03 +03001398 }
Avi Kivity0a77fe42010-10-19 18:48:35 +02001399 if (vmx->host_state.fs_reload_needed)
1400 loadsegment(fs, vmx->host_state.fs_sel);
Laurent Vivier152d3f22007-08-23 16:33:11 +02001401 reload_tss();
Avi Kivity44ea2b12009-09-06 15:55:37 +03001402#ifdef CONFIG_X86_64
Avi Kivityc8770e72010-11-11 12:37:26 +02001403 wrmsrl(MSR_KERNEL_GS_BASE, vmx->msr_host_kernel_gs_base);
Avi Kivity44ea2b12009-09-06 15:55:37 +03001404#endif
Avi Kivity1c11e712010-05-03 16:05:44 +03001405 if (current_thread_info()->status & TS_USEDFPU)
1406 clts();
Avi Kivity3444d7d2010-07-26 18:32:38 +03001407 load_gdt(&__get_cpu_var(host_gdt));
Avi Kivity33ed6322007-05-02 16:54:03 +03001408}
1409
Avi Kivitya9b21b62008-06-24 11:48:49 +03001410static void vmx_load_host_state(struct vcpu_vmx *vmx)
1411{
1412 preempt_disable();
1413 __vmx_load_host_state(vmx);
1414 preempt_enable();
1415}
1416
Avi Kivity6aa8b732006-12-10 02:21:36 -08001417/*
1418 * Switches to specified vcpu, until a matching vcpu_put(), but assumes
1419 * vcpu mutex is already taken.
1420 */
Avi Kivity15ad7142007-07-11 18:17:21 +03001421static void vmx_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001422{
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001423 struct vcpu_vmx *vmx = to_vmx(vcpu);
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08001424 u64 phys_addr = __pa(per_cpu(vmxarea, cpu));
Avi Kivity6aa8b732006-12-10 02:21:36 -08001425
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08001426 if (!vmm_exclusive)
1427 kvm_cpu_vmxon(phys_addr);
Nadav Har'Eld462b812011-05-24 15:26:10 +03001428 else if (vmx->loaded_vmcs->cpu != cpu)
1429 loaded_vmcs_clear(vmx->loaded_vmcs);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001430
Nadav Har'Eld462b812011-05-24 15:26:10 +03001431 if (per_cpu(current_vmcs, cpu) != vmx->loaded_vmcs->vmcs) {
1432 per_cpu(current_vmcs, cpu) = vmx->loaded_vmcs->vmcs;
1433 vmcs_load(vmx->loaded_vmcs->vmcs);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001434 }
1435
Nadav Har'Eld462b812011-05-24 15:26:10 +03001436 if (vmx->loaded_vmcs->cpu != cpu) {
Avi Kivityd3591922010-07-26 18:32:39 +03001437 struct desc_ptr *gdt = &__get_cpu_var(host_gdt);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001438 unsigned long sysenter_esp;
1439
Avi Kivitya8eeb042010-05-10 12:34:53 +03001440 kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu);
Dongxiao Xu92fe13b2010-05-11 18:29:42 +08001441 local_irq_disable();
Nadav Har'Eld462b812011-05-24 15:26:10 +03001442 list_add(&vmx->loaded_vmcs->loaded_vmcss_on_cpu_link,
1443 &per_cpu(loaded_vmcss_on_cpu, cpu));
Dongxiao Xu92fe13b2010-05-11 18:29:42 +08001444 local_irq_enable();
1445
Avi Kivity6aa8b732006-12-10 02:21:36 -08001446 /*
1447 * Linux uses per-cpu TSS and GDT, so set these when switching
1448 * processors.
1449 */
Avi Kivityd6e88ae2008-07-10 16:53:33 +03001450 vmcs_writel(HOST_TR_BASE, kvm_read_tr_base()); /* 22.2.4 */
Avi Kivityd3591922010-07-26 18:32:39 +03001451 vmcs_writel(HOST_GDTR_BASE, gdt->address); /* 22.2.4 */
Avi Kivity6aa8b732006-12-10 02:21:36 -08001452
1453 rdmsrl(MSR_IA32_SYSENTER_ESP, sysenter_esp);
1454 vmcs_writel(HOST_IA32_SYSENTER_ESP, sysenter_esp); /* 22.2.3 */
Nadav Har'Eld462b812011-05-24 15:26:10 +03001455 vmx->loaded_vmcs->cpu = cpu;
Avi Kivity6aa8b732006-12-10 02:21:36 -08001456 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08001457}
1458
1459static void vmx_vcpu_put(struct kvm_vcpu *vcpu)
1460{
Avi Kivitya9b21b62008-06-24 11:48:49 +03001461 __vmx_load_host_state(to_vmx(vcpu));
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08001462 if (!vmm_exclusive) {
Nadav Har'Eld462b812011-05-24 15:26:10 +03001463 __loaded_vmcs_clear(to_vmx(vcpu)->loaded_vmcs);
1464 vcpu->cpu = -1;
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08001465 kvm_cpu_vmxoff();
1466 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08001467}
1468
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001469static void vmx_fpu_activate(struct kvm_vcpu *vcpu)
1470{
Avi Kivity81231c62010-01-24 16:26:40 +02001471 ulong cr0;
1472
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001473 if (vcpu->fpu_active)
1474 return;
1475 vcpu->fpu_active = 1;
Avi Kivity81231c62010-01-24 16:26:40 +02001476 cr0 = vmcs_readl(GUEST_CR0);
1477 cr0 &= ~(X86_CR0_TS | X86_CR0_MP);
1478 cr0 |= kvm_read_cr0_bits(vcpu, X86_CR0_TS | X86_CR0_MP);
1479 vmcs_writel(GUEST_CR0, cr0);
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001480 update_exception_bitmap(vcpu);
Avi Kivityedcafe32009-12-30 18:07:40 +02001481 vcpu->arch.cr0_guest_owned_bits = X86_CR0_TS;
Nadav Har'El36cf24e2011-05-25 23:15:08 +03001482 if (is_guest_mode(vcpu))
1483 vcpu->arch.cr0_guest_owned_bits &=
1484 ~get_vmcs12(vcpu)->cr0_guest_host_mask;
Avi Kivityedcafe32009-12-30 18:07:40 +02001485 vmcs_writel(CR0_GUEST_HOST_MASK, ~vcpu->arch.cr0_guest_owned_bits);
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001486}
1487
Avi Kivityedcafe32009-12-30 18:07:40 +02001488static void vmx_decache_cr0_guest_bits(struct kvm_vcpu *vcpu);
1489
Nadav Har'Elfe3ef052011-05-25 23:10:02 +03001490/*
1491 * Return the cr0 value that a nested guest would read. This is a combination
1492 * of the real cr0 used to run the guest (guest_cr0), and the bits shadowed by
1493 * its hypervisor (cr0_read_shadow).
1494 */
1495static inline unsigned long nested_read_cr0(struct vmcs12 *fields)
1496{
1497 return (fields->guest_cr0 & ~fields->cr0_guest_host_mask) |
1498 (fields->cr0_read_shadow & fields->cr0_guest_host_mask);
1499}
1500static inline unsigned long nested_read_cr4(struct vmcs12 *fields)
1501{
1502 return (fields->guest_cr4 & ~fields->cr4_guest_host_mask) |
1503 (fields->cr4_read_shadow & fields->cr4_guest_host_mask);
1504}
1505
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001506static void vmx_fpu_deactivate(struct kvm_vcpu *vcpu)
1507{
Nadav Har'El36cf24e2011-05-25 23:15:08 +03001508 /* Note that there is no vcpu->fpu_active = 0 here. The caller must
1509 * set this *before* calling this function.
1510 */
Avi Kivityedcafe32009-12-30 18:07:40 +02001511 vmx_decache_cr0_guest_bits(vcpu);
Avi Kivity81231c62010-01-24 16:26:40 +02001512 vmcs_set_bits(GUEST_CR0, X86_CR0_TS | X86_CR0_MP);
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001513 update_exception_bitmap(vcpu);
Avi Kivityedcafe32009-12-30 18:07:40 +02001514 vcpu->arch.cr0_guest_owned_bits = 0;
1515 vmcs_writel(CR0_GUEST_HOST_MASK, ~vcpu->arch.cr0_guest_owned_bits);
Nadav Har'El36cf24e2011-05-25 23:15:08 +03001516 if (is_guest_mode(vcpu)) {
1517 /*
1518 * L1's specified read shadow might not contain the TS bit,
1519 * so now that we turned on shadowing of this bit, we need to
1520 * set this bit of the shadow. Like in nested_vmx_run we need
1521 * nested_read_cr0(vmcs12), but vmcs12->guest_cr0 is not yet
1522 * up-to-date here because we just decached cr0.TS (and we'll
1523 * only update vmcs12->guest_cr0 on nested exit).
1524 */
1525 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
1526 vmcs12->guest_cr0 = (vmcs12->guest_cr0 & ~X86_CR0_TS) |
1527 (vcpu->arch.cr0 & X86_CR0_TS);
1528 vmcs_writel(CR0_READ_SHADOW, nested_read_cr0(vmcs12));
1529 } else
1530 vmcs_writel(CR0_READ_SHADOW, vcpu->arch.cr0);
Avi Kivity5fd86fc2007-05-02 20:40:00 +03001531}
1532
Avi Kivity6aa8b732006-12-10 02:21:36 -08001533static unsigned long vmx_get_rflags(struct kvm_vcpu *vcpu)
1534{
Avi Kivity78ac8b42010-04-08 18:19:35 +03001535 unsigned long rflags, save_rflags;
Avi Kivity345dcaa2009-08-12 15:29:37 +03001536
Avi Kivity6de12732011-03-07 12:51:22 +02001537 if (!test_bit(VCPU_EXREG_RFLAGS, (ulong *)&vcpu->arch.regs_avail)) {
1538 __set_bit(VCPU_EXREG_RFLAGS, (ulong *)&vcpu->arch.regs_avail);
1539 rflags = vmcs_readl(GUEST_RFLAGS);
1540 if (to_vmx(vcpu)->rmode.vm86_active) {
1541 rflags &= RMODE_GUEST_OWNED_EFLAGS_BITS;
1542 save_rflags = to_vmx(vcpu)->rmode.save_rflags;
1543 rflags |= save_rflags & ~RMODE_GUEST_OWNED_EFLAGS_BITS;
1544 }
1545 to_vmx(vcpu)->rflags = rflags;
Avi Kivity78ac8b42010-04-08 18:19:35 +03001546 }
Avi Kivity6de12732011-03-07 12:51:22 +02001547 return to_vmx(vcpu)->rflags;
Avi Kivity6aa8b732006-12-10 02:21:36 -08001548}
1549
1550static void vmx_set_rflags(struct kvm_vcpu *vcpu, unsigned long rflags)
1551{
Avi Kivity6de12732011-03-07 12:51:22 +02001552 __set_bit(VCPU_EXREG_RFLAGS, (ulong *)&vcpu->arch.regs_avail);
Avi Kivity69c73022011-03-07 15:26:44 +02001553 __clear_bit(VCPU_EXREG_CPL, (ulong *)&vcpu->arch.regs_avail);
Avi Kivity6de12732011-03-07 12:51:22 +02001554 to_vmx(vcpu)->rflags = rflags;
Avi Kivity78ac8b42010-04-08 18:19:35 +03001555 if (to_vmx(vcpu)->rmode.vm86_active) {
1556 to_vmx(vcpu)->rmode.save_rflags = rflags;
Glauber de Oliveira Costa053de042008-01-30 13:31:27 +01001557 rflags |= X86_EFLAGS_IOPL | X86_EFLAGS_VM;
Avi Kivity78ac8b42010-04-08 18:19:35 +03001558 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08001559 vmcs_writel(GUEST_RFLAGS, rflags);
1560}
1561
Glauber Costa2809f5d2009-05-12 16:21:05 -04001562static u32 vmx_get_interrupt_shadow(struct kvm_vcpu *vcpu, int mask)
1563{
1564 u32 interruptibility = vmcs_read32(GUEST_INTERRUPTIBILITY_INFO);
1565 int ret = 0;
1566
1567 if (interruptibility & GUEST_INTR_STATE_STI)
Jan Kiszka48005f62010-02-19 19:38:07 +01001568 ret |= KVM_X86_SHADOW_INT_STI;
Glauber Costa2809f5d2009-05-12 16:21:05 -04001569 if (interruptibility & GUEST_INTR_STATE_MOV_SS)
Jan Kiszka48005f62010-02-19 19:38:07 +01001570 ret |= KVM_X86_SHADOW_INT_MOV_SS;
Glauber Costa2809f5d2009-05-12 16:21:05 -04001571
1572 return ret & mask;
1573}
1574
1575static void vmx_set_interrupt_shadow(struct kvm_vcpu *vcpu, int mask)
1576{
1577 u32 interruptibility_old = vmcs_read32(GUEST_INTERRUPTIBILITY_INFO);
1578 u32 interruptibility = interruptibility_old;
1579
1580 interruptibility &= ~(GUEST_INTR_STATE_STI | GUEST_INTR_STATE_MOV_SS);
1581
Jan Kiszka48005f62010-02-19 19:38:07 +01001582 if (mask & KVM_X86_SHADOW_INT_MOV_SS)
Glauber Costa2809f5d2009-05-12 16:21:05 -04001583 interruptibility |= GUEST_INTR_STATE_MOV_SS;
Jan Kiszka48005f62010-02-19 19:38:07 +01001584 else if (mask & KVM_X86_SHADOW_INT_STI)
Glauber Costa2809f5d2009-05-12 16:21:05 -04001585 interruptibility |= GUEST_INTR_STATE_STI;
1586
1587 if ((interruptibility != interruptibility_old))
1588 vmcs_write32(GUEST_INTERRUPTIBILITY_INFO, interruptibility);
1589}
1590
Avi Kivity6aa8b732006-12-10 02:21:36 -08001591static void skip_emulated_instruction(struct kvm_vcpu *vcpu)
1592{
1593 unsigned long rip;
Avi Kivity6aa8b732006-12-10 02:21:36 -08001594
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03001595 rip = kvm_rip_read(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001596 rip += vmcs_read32(VM_EXIT_INSTRUCTION_LEN);
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03001597 kvm_rip_write(vcpu, rip);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001598
Glauber Costa2809f5d2009-05-12 16:21:05 -04001599 /* skipping an emulated instruction also counts */
1600 vmx_set_interrupt_shadow(vcpu, 0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08001601}
1602
Anthony Liguori443381a2010-12-06 10:53:38 -06001603static void vmx_clear_hlt(struct kvm_vcpu *vcpu)
1604{
1605 /* Ensure that we clear the HLT state in the VMCS. We don't need to
1606 * explicitly skip the instruction because if the HLT state is set, then
1607 * the instruction is already executing and RIP has already been
1608 * advanced. */
1609 if (!yield_on_hlt &&
1610 vmcs_read32(GUEST_ACTIVITY_STATE) == GUEST_ACTIVITY_HLT)
1611 vmcs_write32(GUEST_ACTIVITY_STATE, GUEST_ACTIVITY_ACTIVE);
1612}
1613
Nadav Har'El0b6ac342011-05-25 23:13:36 +03001614/*
1615 * KVM wants to inject page-faults which it got to the guest. This function
1616 * checks whether in a nested guest, we need to inject them to L1 or L2.
1617 * This function assumes it is called with the exit reason in vmcs02 being
1618 * a #PF exception (this is the only case in which KVM injects a #PF when L2
1619 * is running).
1620 */
1621static int nested_pf_handled(struct kvm_vcpu *vcpu)
1622{
1623 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
1624
1625 /* TODO: also check PFEC_MATCH/MASK, not just EB.PF. */
1626 if (!(vmcs12->exception_bitmap & PF_VECTOR))
1627 return 0;
1628
1629 nested_vmx_vmexit(vcpu);
1630 return 1;
1631}
1632
Avi Kivity298101d2007-11-25 13:41:11 +02001633static void vmx_queue_exception(struct kvm_vcpu *vcpu, unsigned nr,
Joerg Roedelce7ddec2010-04-22 12:33:13 +02001634 bool has_error_code, u32 error_code,
1635 bool reinject)
Avi Kivity298101d2007-11-25 13:41:11 +02001636{
Jan Kiszka77ab6db2008-07-14 12:28:51 +02001637 struct vcpu_vmx *vmx = to_vmx(vcpu);
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +01001638 u32 intr_info = nr | INTR_INFO_VALID_MASK;
Jan Kiszka77ab6db2008-07-14 12:28:51 +02001639
Nadav Har'El0b6ac342011-05-25 23:13:36 +03001640 if (nr == PF_VECTOR && is_guest_mode(vcpu) &&
1641 nested_pf_handled(vcpu))
1642 return;
1643
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +01001644 if (has_error_code) {
Jan Kiszka77ab6db2008-07-14 12:28:51 +02001645 vmcs_write32(VM_ENTRY_EXCEPTION_ERROR_CODE, error_code);
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +01001646 intr_info |= INTR_INFO_DELIVER_CODE_MASK;
1647 }
Jan Kiszka77ab6db2008-07-14 12:28:51 +02001648
Avi Kivity7ffd92c2009-06-09 14:10:45 +03001649 if (vmx->rmode.vm86_active) {
Serge E. Hallyn71f98332011-04-13 09:12:54 -05001650 int inc_eip = 0;
1651 if (kvm_exception_is_soft(nr))
1652 inc_eip = vcpu->arch.event_exit_inst_len;
1653 if (kvm_inject_realmode_interrupt(vcpu, nr, inc_eip) != EMULATE_DONE)
Mohammed Gamala92601b2010-09-19 14:34:07 +02001654 kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
Jan Kiszka77ab6db2008-07-14 12:28:51 +02001655 return;
1656 }
1657
Gleb Natapov66fd3f72009-05-11 13:35:50 +03001658 if (kvm_exception_is_soft(nr)) {
1659 vmcs_write32(VM_ENTRY_INSTRUCTION_LEN,
1660 vmx->vcpu.arch.event_exit_inst_len);
Jan Kiszka8ab2d2e2008-12-15 13:52:10 +01001661 intr_info |= INTR_TYPE_SOFT_EXCEPTION;
1662 } else
1663 intr_info |= INTR_TYPE_HARD_EXCEPTION;
1664
1665 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD, intr_info);
Anthony Liguori443381a2010-12-06 10:53:38 -06001666 vmx_clear_hlt(vcpu);
Avi Kivity298101d2007-11-25 13:41:11 +02001667}
1668
Sheng Yang4e47c7a2009-12-18 16:48:47 +08001669static bool vmx_rdtscp_supported(void)
1670{
1671 return cpu_has_vmx_rdtscp();
1672}
1673
Avi Kivity6aa8b732006-12-10 02:21:36 -08001674/*
Eddie Donga75beee2007-05-17 18:55:15 +03001675 * Swap MSR entry in host/guest MSR entry array.
1676 */
Rusty Russell8b9cf982007-07-30 16:31:43 +10001677static void move_msr_up(struct vcpu_vmx *vmx, int from, int to)
Eddie Donga75beee2007-05-17 18:55:15 +03001678{
Avi Kivity26bb0982009-09-07 11:14:12 +03001679 struct shared_msr_entry tmp;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04001680
1681 tmp = vmx->guest_msrs[to];
1682 vmx->guest_msrs[to] = vmx->guest_msrs[from];
1683 vmx->guest_msrs[from] = tmp;
Eddie Donga75beee2007-05-17 18:55:15 +03001684}
1685
1686/*
Avi Kivitye38aea32007-04-19 13:22:48 +03001687 * Set up the vmcs to automatically save and restore system
1688 * msrs. Don't touch the 64-bit msrs if the guest is in legacy
1689 * mode, as fiddling with msrs is very expensive.
1690 */
Rusty Russell8b9cf982007-07-30 16:31:43 +10001691static void setup_msrs(struct vcpu_vmx *vmx)
Avi Kivitye38aea32007-04-19 13:22:48 +03001692{
Avi Kivity26bb0982009-09-07 11:14:12 +03001693 int save_nmsrs, index;
Avi Kivity58972972009-02-24 22:26:47 +02001694 unsigned long *msr_bitmap;
Avi Kivitye38aea32007-04-19 13:22:48 +03001695
Avi Kivity33f9c502008-02-27 16:06:57 +02001696 vmx_load_host_state(vmx);
Eddie Donga75beee2007-05-17 18:55:15 +03001697 save_nmsrs = 0;
Avi Kivity4d56c8a2007-04-19 14:28:44 +03001698#ifdef CONFIG_X86_64
Rusty Russell8b9cf982007-07-30 16:31:43 +10001699 if (is_long_mode(&vmx->vcpu)) {
Rusty Russell8b9cf982007-07-30 16:31:43 +10001700 index = __find_msr_index(vmx, MSR_SYSCALL_MASK);
Eddie Donga75beee2007-05-17 18:55:15 +03001701 if (index >= 0)
Rusty Russell8b9cf982007-07-30 16:31:43 +10001702 move_msr_up(vmx, index, save_nmsrs++);
1703 index = __find_msr_index(vmx, MSR_LSTAR);
Eddie Donga75beee2007-05-17 18:55:15 +03001704 if (index >= 0)
Rusty Russell8b9cf982007-07-30 16:31:43 +10001705 move_msr_up(vmx, index, save_nmsrs++);
1706 index = __find_msr_index(vmx, MSR_CSTAR);
Eddie Donga75beee2007-05-17 18:55:15 +03001707 if (index >= 0)
Rusty Russell8b9cf982007-07-30 16:31:43 +10001708 move_msr_up(vmx, index, save_nmsrs++);
Sheng Yang4e47c7a2009-12-18 16:48:47 +08001709 index = __find_msr_index(vmx, MSR_TSC_AUX);
1710 if (index >= 0 && vmx->rdtscp_enabled)
1711 move_msr_up(vmx, index, save_nmsrs++);
Eddie Donga75beee2007-05-17 18:55:15 +03001712 /*
Brian Gerst8c065852010-07-17 09:03:26 -04001713 * MSR_STAR is only needed on long mode guests, and only
Eddie Donga75beee2007-05-17 18:55:15 +03001714 * if efer.sce is enabled.
1715 */
Brian Gerst8c065852010-07-17 09:03:26 -04001716 index = __find_msr_index(vmx, MSR_STAR);
Avi Kivityf6801df2010-01-21 15:31:50 +02001717 if ((index >= 0) && (vmx->vcpu.arch.efer & EFER_SCE))
Rusty Russell8b9cf982007-07-30 16:31:43 +10001718 move_msr_up(vmx, index, save_nmsrs++);
Avi Kivity4d56c8a2007-04-19 14:28:44 +03001719 }
Eddie Donga75beee2007-05-17 18:55:15 +03001720#endif
Avi Kivity92c0d902009-10-29 11:00:16 +02001721 index = __find_msr_index(vmx, MSR_EFER);
1722 if (index >= 0 && update_transition_efer(vmx, index))
Avi Kivity26bb0982009-09-07 11:14:12 +03001723 move_msr_up(vmx, index, save_nmsrs++);
Avi Kivity4d56c8a2007-04-19 14:28:44 +03001724
Avi Kivity26bb0982009-09-07 11:14:12 +03001725 vmx->save_nmsrs = save_nmsrs;
Avi Kivity58972972009-02-24 22:26:47 +02001726
1727 if (cpu_has_vmx_msr_bitmap()) {
1728 if (is_long_mode(&vmx->vcpu))
1729 msr_bitmap = vmx_msr_bitmap_longmode;
1730 else
1731 msr_bitmap = vmx_msr_bitmap_legacy;
1732
1733 vmcs_write64(MSR_BITMAP, __pa(msr_bitmap));
1734 }
Avi Kivitye38aea32007-04-19 13:22:48 +03001735}
1736
1737/*
Avi Kivity6aa8b732006-12-10 02:21:36 -08001738 * reads and returns guest's timestamp counter "register"
1739 * guest_tsc = host_tsc + tsc_offset -- 21.3
1740 */
1741static u64 guest_read_tsc(void)
1742{
1743 u64 host_tsc, tsc_offset;
1744
1745 rdtscll(host_tsc);
1746 tsc_offset = vmcs_read64(TSC_OFFSET);
1747 return host_tsc + tsc_offset;
1748}
1749
1750/*
Joerg Roedel4051b182011-03-25 09:44:49 +01001751 * Empty call-back. Needs to be implemented when VMX enables the SET_TSC_KHZ
1752 * ioctl. In this case the call-back should update internal vmx state to make
1753 * the changes effective.
1754 */
1755static void vmx_set_tsc_khz(struct kvm_vcpu *vcpu, u32 user_tsc_khz)
1756{
1757 /* Nothing to do here */
1758}
1759
1760/*
Zachary Amsden99e3e302010-08-19 22:07:17 -10001761 * writes 'offset' into guest's timestamp counter offset register
Avi Kivity6aa8b732006-12-10 02:21:36 -08001762 */
Zachary Amsden99e3e302010-08-19 22:07:17 -10001763static void vmx_write_tsc_offset(struct kvm_vcpu *vcpu, u64 offset)
Avi Kivity6aa8b732006-12-10 02:21:36 -08001764{
Zachary Amsdenf4e1b3c2010-08-19 22:07:16 -10001765 vmcs_write64(TSC_OFFSET, offset);
Nadav Har'El79918252011-05-25 23:15:39 +03001766 if (is_guest_mode(vcpu))
1767 /*
1768 * We're here if L1 chose not to trap the TSC MSR. Since
1769 * prepare_vmcs12() does not copy tsc_offset, we need to also
1770 * set the vmcs12 field here.
1771 */
1772 get_vmcs12(vcpu)->tsc_offset = offset -
1773 to_vmx(vcpu)->nested.vmcs01_tsc_offset;
Avi Kivity6aa8b732006-12-10 02:21:36 -08001774}
1775
Zachary Amsdene48672f2010-08-19 22:07:23 -10001776static void vmx_adjust_tsc_offset(struct kvm_vcpu *vcpu, s64 adjustment)
1777{
1778 u64 offset = vmcs_read64(TSC_OFFSET);
1779 vmcs_write64(TSC_OFFSET, offset + adjustment);
Nadav Har'El79918252011-05-25 23:15:39 +03001780 if (is_guest_mode(vcpu)) {
1781 /* Even when running L2, the adjustment needs to apply to L1 */
1782 to_vmx(vcpu)->nested.vmcs01_tsc_offset += adjustment;
1783 }
Zachary Amsdene48672f2010-08-19 22:07:23 -10001784}
1785
Joerg Roedel857e4092011-03-25 09:44:50 +01001786static u64 vmx_compute_tsc_offset(struct kvm_vcpu *vcpu, u64 target_tsc)
1787{
1788 return target_tsc - native_read_tsc();
1789}
1790
Nadav Har'El801d3422011-05-25 23:02:23 +03001791static bool guest_cpuid_has_vmx(struct kvm_vcpu *vcpu)
1792{
1793 struct kvm_cpuid_entry2 *best = kvm_find_cpuid_entry(vcpu, 1, 0);
1794 return best && (best->ecx & (1 << (X86_FEATURE_VMX & 31)));
1795}
1796
1797/*
1798 * nested_vmx_allowed() checks whether a guest should be allowed to use VMX
1799 * instructions and MSRs (i.e., nested VMX). Nested VMX is disabled for
1800 * all guests if the "nested" module option is off, and can also be disabled
1801 * for a single guest by disabling its VMX cpuid bit.
1802 */
1803static inline bool nested_vmx_allowed(struct kvm_vcpu *vcpu)
1804{
1805 return nested && guest_cpuid_has_vmx(vcpu);
1806}
1807
Avi Kivity6aa8b732006-12-10 02:21:36 -08001808/*
Nadav Har'Elb87a51a2011-05-25 23:04:25 +03001809 * nested_vmx_setup_ctls_msrs() sets up variables containing the values to be
1810 * returned for the various VMX controls MSRs when nested VMX is enabled.
1811 * The same values should also be used to verify that vmcs12 control fields are
1812 * valid during nested entry from L1 to L2.
1813 * Each of these control msrs has a low and high 32-bit half: A low bit is on
1814 * if the corresponding bit in the (32-bit) control field *must* be on, and a
1815 * bit in the high half is on if the corresponding bit in the control field
1816 * may be on. See also vmx_control_verify().
1817 * TODO: allow these variables to be modified (downgraded) by module options
1818 * or other means.
1819 */
1820static u32 nested_vmx_procbased_ctls_low, nested_vmx_procbased_ctls_high;
1821static u32 nested_vmx_secondary_ctls_low, nested_vmx_secondary_ctls_high;
1822static u32 nested_vmx_pinbased_ctls_low, nested_vmx_pinbased_ctls_high;
1823static u32 nested_vmx_exit_ctls_low, nested_vmx_exit_ctls_high;
1824static u32 nested_vmx_entry_ctls_low, nested_vmx_entry_ctls_high;
1825static __init void nested_vmx_setup_ctls_msrs(void)
1826{
1827 /*
1828 * Note that as a general rule, the high half of the MSRs (bits in
1829 * the control fields which may be 1) should be initialized by the
1830 * intersection of the underlying hardware's MSR (i.e., features which
1831 * can be supported) and the list of features we want to expose -
1832 * because they are known to be properly supported in our code.
1833 * Also, usually, the low half of the MSRs (bits which must be 1) can
1834 * be set to 0, meaning that L1 may turn off any of these bits. The
1835 * reason is that if one of these bits is necessary, it will appear
1836 * in vmcs01 and prepare_vmcs02, when it bitwise-or's the control
1837 * fields of vmcs01 and vmcs02, will turn these bits off - and
1838 * nested_vmx_exit_handled() will not pass related exits to L1.
1839 * These rules have exceptions below.
1840 */
1841
1842 /* pin-based controls */
1843 /*
1844 * According to the Intel spec, if bit 55 of VMX_BASIC is off (as it is
1845 * in our case), bits 1, 2 and 4 (i.e., 0x16) must be 1 in this MSR.
1846 */
1847 nested_vmx_pinbased_ctls_low = 0x16 ;
1848 nested_vmx_pinbased_ctls_high = 0x16 |
1849 PIN_BASED_EXT_INTR_MASK | PIN_BASED_NMI_EXITING |
1850 PIN_BASED_VIRTUAL_NMIS;
1851
1852 /* exit controls */
1853 nested_vmx_exit_ctls_low = 0;
Nadav Har'Elb6f12502011-05-25 23:13:06 +03001854 /* Note that guest use of VM_EXIT_ACK_INTR_ON_EXIT is not supported. */
Nadav Har'Elb87a51a2011-05-25 23:04:25 +03001855#ifdef CONFIG_X86_64
1856 nested_vmx_exit_ctls_high = VM_EXIT_HOST_ADDR_SPACE_SIZE;
1857#else
1858 nested_vmx_exit_ctls_high = 0;
1859#endif
1860
1861 /* entry controls */
1862 rdmsr(MSR_IA32_VMX_ENTRY_CTLS,
1863 nested_vmx_entry_ctls_low, nested_vmx_entry_ctls_high);
1864 nested_vmx_entry_ctls_low = 0;
1865 nested_vmx_entry_ctls_high &=
1866 VM_ENTRY_LOAD_IA32_PAT | VM_ENTRY_IA32E_MODE;
1867
1868 /* cpu-based controls */
1869 rdmsr(MSR_IA32_VMX_PROCBASED_CTLS,
1870 nested_vmx_procbased_ctls_low, nested_vmx_procbased_ctls_high);
1871 nested_vmx_procbased_ctls_low = 0;
1872 nested_vmx_procbased_ctls_high &=
1873 CPU_BASED_VIRTUAL_INTR_PENDING | CPU_BASED_USE_TSC_OFFSETING |
1874 CPU_BASED_HLT_EXITING | CPU_BASED_INVLPG_EXITING |
1875 CPU_BASED_MWAIT_EXITING | CPU_BASED_CR3_LOAD_EXITING |
1876 CPU_BASED_CR3_STORE_EXITING |
1877#ifdef CONFIG_X86_64
1878 CPU_BASED_CR8_LOAD_EXITING | CPU_BASED_CR8_STORE_EXITING |
1879#endif
1880 CPU_BASED_MOV_DR_EXITING | CPU_BASED_UNCOND_IO_EXITING |
1881 CPU_BASED_USE_IO_BITMAPS | CPU_BASED_MONITOR_EXITING |
1882 CPU_BASED_ACTIVATE_SECONDARY_CONTROLS;
1883 /*
1884 * We can allow some features even when not supported by the
1885 * hardware. For example, L1 can specify an MSR bitmap - and we
1886 * can use it to avoid exits to L1 - even when L0 runs L2
1887 * without MSR bitmaps.
1888 */
1889 nested_vmx_procbased_ctls_high |= CPU_BASED_USE_MSR_BITMAPS;
1890
1891 /* secondary cpu-based controls */
1892 rdmsr(MSR_IA32_VMX_PROCBASED_CTLS2,
1893 nested_vmx_secondary_ctls_low, nested_vmx_secondary_ctls_high);
1894 nested_vmx_secondary_ctls_low = 0;
1895 nested_vmx_secondary_ctls_high &=
1896 SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES;
1897}
1898
1899static inline bool vmx_control_verify(u32 control, u32 low, u32 high)
1900{
1901 /*
1902 * Bits 0 in high must be 0, and bits 1 in low must be 1.
1903 */
1904 return ((control & high) | low) == control;
1905}
1906
1907static inline u64 vmx_control_msr(u32 low, u32 high)
1908{
1909 return low | ((u64)high << 32);
1910}
1911
1912/*
1913 * If we allow our guest to use VMX instructions (i.e., nested VMX), we should
1914 * also let it use VMX-specific MSRs.
1915 * vmx_get_vmx_msr() and vmx_set_vmx_msr() return 1 when we handled a
1916 * VMX-specific MSR, or 0 when we haven't (and the caller should handle it
1917 * like all other MSRs).
1918 */
1919static int vmx_get_vmx_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 *pdata)
1920{
1921 if (!nested_vmx_allowed(vcpu) && msr_index >= MSR_IA32_VMX_BASIC &&
1922 msr_index <= MSR_IA32_VMX_TRUE_ENTRY_CTLS) {
1923 /*
1924 * According to the spec, processors which do not support VMX
1925 * should throw a #GP(0) when VMX capability MSRs are read.
1926 */
1927 kvm_queue_exception_e(vcpu, GP_VECTOR, 0);
1928 return 1;
1929 }
1930
1931 switch (msr_index) {
1932 case MSR_IA32_FEATURE_CONTROL:
1933 *pdata = 0;
1934 break;
1935 case MSR_IA32_VMX_BASIC:
1936 /*
1937 * This MSR reports some information about VMX support. We
1938 * should return information about the VMX we emulate for the
1939 * guest, and the VMCS structure we give it - not about the
1940 * VMX support of the underlying hardware.
1941 */
1942 *pdata = VMCS12_REVISION |
1943 ((u64)VMCS12_SIZE << VMX_BASIC_VMCS_SIZE_SHIFT) |
1944 (VMX_BASIC_MEM_TYPE_WB << VMX_BASIC_MEM_TYPE_SHIFT);
1945 break;
1946 case MSR_IA32_VMX_TRUE_PINBASED_CTLS:
1947 case MSR_IA32_VMX_PINBASED_CTLS:
1948 *pdata = vmx_control_msr(nested_vmx_pinbased_ctls_low,
1949 nested_vmx_pinbased_ctls_high);
1950 break;
1951 case MSR_IA32_VMX_TRUE_PROCBASED_CTLS:
1952 case MSR_IA32_VMX_PROCBASED_CTLS:
1953 *pdata = vmx_control_msr(nested_vmx_procbased_ctls_low,
1954 nested_vmx_procbased_ctls_high);
1955 break;
1956 case MSR_IA32_VMX_TRUE_EXIT_CTLS:
1957 case MSR_IA32_VMX_EXIT_CTLS:
1958 *pdata = vmx_control_msr(nested_vmx_exit_ctls_low,
1959 nested_vmx_exit_ctls_high);
1960 break;
1961 case MSR_IA32_VMX_TRUE_ENTRY_CTLS:
1962 case MSR_IA32_VMX_ENTRY_CTLS:
1963 *pdata = vmx_control_msr(nested_vmx_entry_ctls_low,
1964 nested_vmx_entry_ctls_high);
1965 break;
1966 case MSR_IA32_VMX_MISC:
1967 *pdata = 0;
1968 break;
1969 /*
1970 * These MSRs specify bits which the guest must keep fixed (on or off)
1971 * while L1 is in VMXON mode (in L1's root mode, or running an L2).
1972 * We picked the standard core2 setting.
1973 */
1974#define VMXON_CR0_ALWAYSON (X86_CR0_PE | X86_CR0_PG | X86_CR0_NE)
1975#define VMXON_CR4_ALWAYSON X86_CR4_VMXE
1976 case MSR_IA32_VMX_CR0_FIXED0:
1977 *pdata = VMXON_CR0_ALWAYSON;
1978 break;
1979 case MSR_IA32_VMX_CR0_FIXED1:
1980 *pdata = -1ULL;
1981 break;
1982 case MSR_IA32_VMX_CR4_FIXED0:
1983 *pdata = VMXON_CR4_ALWAYSON;
1984 break;
1985 case MSR_IA32_VMX_CR4_FIXED1:
1986 *pdata = -1ULL;
1987 break;
1988 case MSR_IA32_VMX_VMCS_ENUM:
1989 *pdata = 0x1f;
1990 break;
1991 case MSR_IA32_VMX_PROCBASED_CTLS2:
1992 *pdata = vmx_control_msr(nested_vmx_secondary_ctls_low,
1993 nested_vmx_secondary_ctls_high);
1994 break;
1995 case MSR_IA32_VMX_EPT_VPID_CAP:
1996 /* Currently, no nested ept or nested vpid */
1997 *pdata = 0;
1998 break;
1999 default:
2000 return 0;
2001 }
2002
2003 return 1;
2004}
2005
2006static int vmx_set_vmx_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 data)
2007{
2008 if (!nested_vmx_allowed(vcpu))
2009 return 0;
2010
2011 if (msr_index == MSR_IA32_FEATURE_CONTROL)
2012 /* TODO: the right thing. */
2013 return 1;
2014 /*
2015 * No need to treat VMX capability MSRs specially: If we don't handle
2016 * them, handle_wrmsr will #GP(0), which is correct (they are readonly)
2017 */
2018 return 0;
2019}
2020
2021/*
Avi Kivity6aa8b732006-12-10 02:21:36 -08002022 * Reads an msr value (of 'msr_index') into 'pdata'.
2023 * Returns 0 on success, non-0 otherwise.
2024 * Assumes vcpu_load() was already called.
2025 */
2026static int vmx_get_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 *pdata)
2027{
2028 u64 data;
Avi Kivity26bb0982009-09-07 11:14:12 +03002029 struct shared_msr_entry *msr;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002030
2031 if (!pdata) {
2032 printk(KERN_ERR "BUG: get_msr called with NULL pdata\n");
2033 return -EINVAL;
2034 }
2035
2036 switch (msr_index) {
Avi Kivity05b3e0c2006-12-13 00:33:45 -08002037#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08002038 case MSR_FS_BASE:
2039 data = vmcs_readl(GUEST_FS_BASE);
2040 break;
2041 case MSR_GS_BASE:
2042 data = vmcs_readl(GUEST_GS_BASE);
2043 break;
Avi Kivity44ea2b12009-09-06 15:55:37 +03002044 case MSR_KERNEL_GS_BASE:
2045 vmx_load_host_state(to_vmx(vcpu));
2046 data = to_vmx(vcpu)->msr_guest_kernel_gs_base;
2047 break;
Avi Kivity26bb0982009-09-07 11:14:12 +03002048#endif
Avi Kivity6aa8b732006-12-10 02:21:36 -08002049 case MSR_EFER:
Avi Kivity3bab1f52006-12-29 16:49:48 -08002050 return kvm_get_msr_common(vcpu, msr_index, pdata);
Jaswinder Singh Rajputaf24a4e2009-05-15 18:42:05 +05302051 case MSR_IA32_TSC:
Avi Kivity6aa8b732006-12-10 02:21:36 -08002052 data = guest_read_tsc();
2053 break;
2054 case MSR_IA32_SYSENTER_CS:
2055 data = vmcs_read32(GUEST_SYSENTER_CS);
2056 break;
2057 case MSR_IA32_SYSENTER_EIP:
Avi Kivityf5b42c32007-03-06 12:05:53 +02002058 data = vmcs_readl(GUEST_SYSENTER_EIP);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002059 break;
2060 case MSR_IA32_SYSENTER_ESP:
Avi Kivityf5b42c32007-03-06 12:05:53 +02002061 data = vmcs_readl(GUEST_SYSENTER_ESP);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002062 break;
Sheng Yang4e47c7a2009-12-18 16:48:47 +08002063 case MSR_TSC_AUX:
2064 if (!to_vmx(vcpu)->rdtscp_enabled)
2065 return 1;
2066 /* Otherwise falls through */
Avi Kivity6aa8b732006-12-10 02:21:36 -08002067 default:
Avi Kivity26bb0982009-09-07 11:14:12 +03002068 vmx_load_host_state(to_vmx(vcpu));
Nadav Har'Elb87a51a2011-05-25 23:04:25 +03002069 if (vmx_get_vmx_msr(vcpu, msr_index, pdata))
2070 return 0;
Rusty Russell8b9cf982007-07-30 16:31:43 +10002071 msr = find_msr_entry(to_vmx(vcpu), msr_index);
Avi Kivity3bab1f52006-12-29 16:49:48 -08002072 if (msr) {
Gleb Natapov542423b2009-08-27 15:07:30 +03002073 vmx_load_host_state(to_vmx(vcpu));
Avi Kivity3bab1f52006-12-29 16:49:48 -08002074 data = msr->data;
2075 break;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002076 }
Avi Kivity3bab1f52006-12-29 16:49:48 -08002077 return kvm_get_msr_common(vcpu, msr_index, pdata);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002078 }
2079
2080 *pdata = data;
2081 return 0;
2082}
2083
2084/*
2085 * Writes msr value into into the appropriate "register".
2086 * Returns 0 on success, non-0 otherwise.
2087 * Assumes vcpu_load() was already called.
2088 */
2089static int vmx_set_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 data)
2090{
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04002091 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity26bb0982009-09-07 11:14:12 +03002092 struct shared_msr_entry *msr;
Eddie Dong2cc51562007-05-21 07:28:09 +03002093 int ret = 0;
2094
Avi Kivity6aa8b732006-12-10 02:21:36 -08002095 switch (msr_index) {
Avi Kivity3bab1f52006-12-29 16:49:48 -08002096 case MSR_EFER:
Avi Kivitya9b21b62008-06-24 11:48:49 +03002097 vmx_load_host_state(vmx);
Eddie Dong2cc51562007-05-21 07:28:09 +03002098 ret = kvm_set_msr_common(vcpu, msr_index, data);
Eddie Dong2cc51562007-05-21 07:28:09 +03002099 break;
Avi Kivity16175a72009-03-23 22:13:44 +02002100#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08002101 case MSR_FS_BASE:
Avi Kivity2fb92db2011-04-27 19:42:18 +03002102 vmx_segment_cache_clear(vmx);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002103 vmcs_writel(GUEST_FS_BASE, data);
2104 break;
2105 case MSR_GS_BASE:
Avi Kivity2fb92db2011-04-27 19:42:18 +03002106 vmx_segment_cache_clear(vmx);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002107 vmcs_writel(GUEST_GS_BASE, data);
2108 break;
Avi Kivity44ea2b12009-09-06 15:55:37 +03002109 case MSR_KERNEL_GS_BASE:
2110 vmx_load_host_state(vmx);
2111 vmx->msr_guest_kernel_gs_base = data;
2112 break;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002113#endif
2114 case MSR_IA32_SYSENTER_CS:
2115 vmcs_write32(GUEST_SYSENTER_CS, data);
2116 break;
2117 case MSR_IA32_SYSENTER_EIP:
Avi Kivityf5b42c32007-03-06 12:05:53 +02002118 vmcs_writel(GUEST_SYSENTER_EIP, data);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002119 break;
2120 case MSR_IA32_SYSENTER_ESP:
Avi Kivityf5b42c32007-03-06 12:05:53 +02002121 vmcs_writel(GUEST_SYSENTER_ESP, data);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002122 break;
Jaswinder Singh Rajputaf24a4e2009-05-15 18:42:05 +05302123 case MSR_IA32_TSC:
Zachary Amsden99e3e302010-08-19 22:07:17 -10002124 kvm_write_tsc(vcpu, data);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002125 break;
Sheng Yang468d4722008-10-09 16:01:55 +08002126 case MSR_IA32_CR_PAT:
2127 if (vmcs_config.vmentry_ctrl & VM_ENTRY_LOAD_IA32_PAT) {
2128 vmcs_write64(GUEST_IA32_PAT, data);
2129 vcpu->arch.pat = data;
2130 break;
2131 }
Sheng Yang4e47c7a2009-12-18 16:48:47 +08002132 ret = kvm_set_msr_common(vcpu, msr_index, data);
2133 break;
2134 case MSR_TSC_AUX:
2135 if (!vmx->rdtscp_enabled)
2136 return 1;
2137 /* Check reserved bit, higher 32 bits should be zero */
2138 if ((data >> 32) != 0)
2139 return 1;
2140 /* Otherwise falls through */
Avi Kivity6aa8b732006-12-10 02:21:36 -08002141 default:
Nadav Har'Elb87a51a2011-05-25 23:04:25 +03002142 if (vmx_set_vmx_msr(vcpu, msr_index, data))
2143 break;
Rusty Russell8b9cf982007-07-30 16:31:43 +10002144 msr = find_msr_entry(vmx, msr_index);
Avi Kivity3bab1f52006-12-29 16:49:48 -08002145 if (msr) {
Gleb Natapov542423b2009-08-27 15:07:30 +03002146 vmx_load_host_state(vmx);
Avi Kivity3bab1f52006-12-29 16:49:48 -08002147 msr->data = data;
2148 break;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002149 }
Eddie Dong2cc51562007-05-21 07:28:09 +03002150 ret = kvm_set_msr_common(vcpu, msr_index, data);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002151 }
2152
Eddie Dong2cc51562007-05-21 07:28:09 +03002153 return ret;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002154}
2155
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03002156static void vmx_cache_reg(struct kvm_vcpu *vcpu, enum kvm_reg reg)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002157{
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03002158 __set_bit(reg, (unsigned long *)&vcpu->arch.regs_avail);
2159 switch (reg) {
2160 case VCPU_REGS_RSP:
2161 vcpu->arch.regs[VCPU_REGS_RSP] = vmcs_readl(GUEST_RSP);
2162 break;
2163 case VCPU_REGS_RIP:
2164 vcpu->arch.regs[VCPU_REGS_RIP] = vmcs_readl(GUEST_RIP);
2165 break;
Avi Kivity6de4f3a2009-05-31 22:58:47 +03002166 case VCPU_EXREG_PDPTR:
2167 if (enable_ept)
2168 ept_save_pdptrs(vcpu);
2169 break;
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03002170 default:
2171 break;
2172 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08002173}
2174
Jan Kiszka355be0b2009-10-03 00:31:21 +02002175static void set_guest_debug(struct kvm_vcpu *vcpu, struct kvm_guest_debug *dbg)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002176{
Jan Kiszkaae675ef2008-12-15 13:52:10 +01002177 if (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP)
2178 vmcs_writel(GUEST_DR7, dbg->arch.debugreg[7]);
2179 else
2180 vmcs_writel(GUEST_DR7, vcpu->arch.dr7);
2181
Avi Kivityabd3f2d2007-05-02 17:57:40 +03002182 update_exception_bitmap(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002183}
2184
2185static __init int cpu_has_kvm_support(void)
2186{
Eduardo Habkost6210e372008-11-17 19:03:16 -02002187 return cpu_has_vmx();
Avi Kivity6aa8b732006-12-10 02:21:36 -08002188}
2189
2190static __init int vmx_disabled_by_bios(void)
2191{
2192 u64 msr;
2193
2194 rdmsrl(MSR_IA32_FEATURE_CONTROL, msr);
Shane Wangcafd6652010-04-29 12:09:01 -04002195 if (msr & FEATURE_CONTROL_LOCKED) {
Joseph Cihula23f3e992011-02-08 11:45:56 -08002196 /* launched w/ TXT and VMX disabled */
Shane Wangcafd6652010-04-29 12:09:01 -04002197 if (!(msr & FEATURE_CONTROL_VMXON_ENABLED_INSIDE_SMX)
2198 && tboot_enabled())
2199 return 1;
Joseph Cihula23f3e992011-02-08 11:45:56 -08002200 /* launched w/o TXT and VMX only enabled w/ TXT */
Shane Wangcafd6652010-04-29 12:09:01 -04002201 if (!(msr & FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX)
Joseph Cihula23f3e992011-02-08 11:45:56 -08002202 && (msr & FEATURE_CONTROL_VMXON_ENABLED_INSIDE_SMX)
Shane Wangf9335af2010-11-17 11:40:17 +08002203 && !tboot_enabled()) {
2204 printk(KERN_WARNING "kvm: disable TXT in the BIOS or "
Joseph Cihula23f3e992011-02-08 11:45:56 -08002205 "activate TXT before enabling KVM\n");
Shane Wangcafd6652010-04-29 12:09:01 -04002206 return 1;
Shane Wangf9335af2010-11-17 11:40:17 +08002207 }
Joseph Cihula23f3e992011-02-08 11:45:56 -08002208 /* launched w/o TXT and VMX disabled */
2209 if (!(msr & FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX)
2210 && !tboot_enabled())
2211 return 1;
Shane Wangcafd6652010-04-29 12:09:01 -04002212 }
2213
2214 return 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002215}
2216
Dongxiao Xu7725b892010-05-11 18:29:38 +08002217static void kvm_cpu_vmxon(u64 addr)
2218{
2219 asm volatile (ASM_VMX_VMXON_RAX
2220 : : "a"(&addr), "m"(addr)
2221 : "memory", "cc");
2222}
2223
Alexander Graf10474ae2009-09-15 11:37:46 +02002224static int hardware_enable(void *garbage)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002225{
2226 int cpu = raw_smp_processor_id();
2227 u64 phys_addr = __pa(per_cpu(vmxarea, cpu));
Shane Wangcafd6652010-04-29 12:09:01 -04002228 u64 old, test_bits;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002229
Alexander Graf10474ae2009-09-15 11:37:46 +02002230 if (read_cr4() & X86_CR4_VMXE)
2231 return -EBUSY;
2232
Nadav Har'Eld462b812011-05-24 15:26:10 +03002233 INIT_LIST_HEAD(&per_cpu(loaded_vmcss_on_cpu, cpu));
Avi Kivity6aa8b732006-12-10 02:21:36 -08002234 rdmsrl(MSR_IA32_FEATURE_CONTROL, old);
Shane Wangcafd6652010-04-29 12:09:01 -04002235
2236 test_bits = FEATURE_CONTROL_LOCKED;
2237 test_bits |= FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX;
2238 if (tboot_enabled())
2239 test_bits |= FEATURE_CONTROL_VMXON_ENABLED_INSIDE_SMX;
2240
2241 if ((old & test_bits) != test_bits) {
Avi Kivity6aa8b732006-12-10 02:21:36 -08002242 /* enable and lock */
Shane Wangcafd6652010-04-29 12:09:01 -04002243 wrmsrl(MSR_IA32_FEATURE_CONTROL, old | test_bits);
2244 }
Rusty Russell66aee912007-07-17 23:34:16 +10002245 write_cr4(read_cr4() | X86_CR4_VMXE); /* FIXME: not cpu hotplug safe */
Alexander Graf10474ae2009-09-15 11:37:46 +02002246
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08002247 if (vmm_exclusive) {
2248 kvm_cpu_vmxon(phys_addr);
2249 ept_sync_global();
2250 }
Alexander Graf10474ae2009-09-15 11:37:46 +02002251
Avi Kivity3444d7d2010-07-26 18:32:38 +03002252 store_gdt(&__get_cpu_var(host_gdt));
2253
Alexander Graf10474ae2009-09-15 11:37:46 +02002254 return 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002255}
2256
Nadav Har'Eld462b812011-05-24 15:26:10 +03002257static void vmclear_local_loaded_vmcss(void)
Avi Kivity543e4242008-05-13 16:22:47 +03002258{
2259 int cpu = raw_smp_processor_id();
Nadav Har'Eld462b812011-05-24 15:26:10 +03002260 struct loaded_vmcs *v, *n;
Avi Kivity543e4242008-05-13 16:22:47 +03002261
Nadav Har'Eld462b812011-05-24 15:26:10 +03002262 list_for_each_entry_safe(v, n, &per_cpu(loaded_vmcss_on_cpu, cpu),
2263 loaded_vmcss_on_cpu_link)
2264 __loaded_vmcs_clear(v);
Avi Kivity543e4242008-05-13 16:22:47 +03002265}
2266
Eduardo Habkost710ff4a2008-11-17 19:03:18 -02002267
2268/* Just like cpu_vmxoff(), but with the __kvm_handle_fault_on_reboot()
2269 * tricks.
2270 */
2271static void kvm_cpu_vmxoff(void)
2272{
2273 asm volatile (__ex(ASM_VMX_VMXOFF) : : : "cc");
Eduardo Habkost710ff4a2008-11-17 19:03:18 -02002274}
2275
Avi Kivity6aa8b732006-12-10 02:21:36 -08002276static void hardware_disable(void *garbage)
2277{
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08002278 if (vmm_exclusive) {
Nadav Har'Eld462b812011-05-24 15:26:10 +03002279 vmclear_local_loaded_vmcss();
Dongxiao Xu4610c9c2010-05-11 18:29:48 +08002280 kvm_cpu_vmxoff();
2281 }
Dongxiao Xu7725b892010-05-11 18:29:38 +08002282 write_cr4(read_cr4() & ~X86_CR4_VMXE);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002283}
2284
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002285static __init int adjust_vmx_controls(u32 ctl_min, u32 ctl_opt,
Mike Dayd77c26f2007-10-08 09:02:08 -04002286 u32 msr, u32 *result)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002287{
2288 u32 vmx_msr_low, vmx_msr_high;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002289 u32 ctl = ctl_min | ctl_opt;
2290
2291 rdmsr(msr, vmx_msr_low, vmx_msr_high);
2292
2293 ctl &= vmx_msr_high; /* bit == 0 in high word ==> must be zero */
2294 ctl |= vmx_msr_low; /* bit == 1 in low word ==> must be one */
2295
2296 /* Ensure minimum (required) set of control bits are supported. */
2297 if (ctl_min & ~ctl)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002298 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002299
2300 *result = ctl;
2301 return 0;
2302}
2303
Avi Kivity110312c2010-12-21 12:54:20 +02002304static __init bool allow_1_setting(u32 msr, u32 ctl)
2305{
2306 u32 vmx_msr_low, vmx_msr_high;
2307
2308 rdmsr(msr, vmx_msr_low, vmx_msr_high);
2309 return vmx_msr_high & ctl;
2310}
2311
Yang, Sheng002c7f72007-07-31 14:23:01 +03002312static __init int setup_vmcs_config(struct vmcs_config *vmcs_conf)
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002313{
2314 u32 vmx_msr_low, vmx_msr_high;
Sheng Yangd56f5462008-04-25 10:13:16 +08002315 u32 min, opt, min2, opt2;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002316 u32 _pin_based_exec_control = 0;
2317 u32 _cpu_based_exec_control = 0;
Sheng Yangf78e0e22007-10-29 09:40:42 +08002318 u32 _cpu_based_2nd_exec_control = 0;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002319 u32 _vmexit_control = 0;
2320 u32 _vmentry_control = 0;
2321
2322 min = PIN_BASED_EXT_INTR_MASK | PIN_BASED_NMI_EXITING;
Sheng Yangf08864b2008-05-15 18:23:25 +08002323 opt = PIN_BASED_VIRTUAL_NMIS;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002324 if (adjust_vmx_controls(min, opt, MSR_IA32_VMX_PINBASED_CTLS,
2325 &_pin_based_exec_control) < 0)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002326 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002327
Anthony Liguori443381a2010-12-06 10:53:38 -06002328 min =
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002329#ifdef CONFIG_X86_64
2330 CPU_BASED_CR8_LOAD_EXITING |
2331 CPU_BASED_CR8_STORE_EXITING |
2332#endif
Sheng Yangd56f5462008-04-25 10:13:16 +08002333 CPU_BASED_CR3_LOAD_EXITING |
2334 CPU_BASED_CR3_STORE_EXITING |
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002335 CPU_BASED_USE_IO_BITMAPS |
2336 CPU_BASED_MOV_DR_EXITING |
Marcelo Tosattia7052892008-09-23 13:18:35 -03002337 CPU_BASED_USE_TSC_OFFSETING |
Sheng Yang59708672009-12-15 13:29:54 +08002338 CPU_BASED_MWAIT_EXITING |
2339 CPU_BASED_MONITOR_EXITING |
Marcelo Tosattia7052892008-09-23 13:18:35 -03002340 CPU_BASED_INVLPG_EXITING;
Anthony Liguori443381a2010-12-06 10:53:38 -06002341
2342 if (yield_on_hlt)
2343 min |= CPU_BASED_HLT_EXITING;
2344
Sheng Yangf78e0e22007-10-29 09:40:42 +08002345 opt = CPU_BASED_TPR_SHADOW |
Sheng Yang25c5f222008-03-28 13:18:56 +08002346 CPU_BASED_USE_MSR_BITMAPS |
Sheng Yangf78e0e22007-10-29 09:40:42 +08002347 CPU_BASED_ACTIVATE_SECONDARY_CONTROLS;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002348 if (adjust_vmx_controls(min, opt, MSR_IA32_VMX_PROCBASED_CTLS,
2349 &_cpu_based_exec_control) < 0)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002350 return -EIO;
Yang, Sheng6e5d8652007-09-12 18:03:11 +08002351#ifdef CONFIG_X86_64
2352 if ((_cpu_based_exec_control & CPU_BASED_TPR_SHADOW))
2353 _cpu_based_exec_control &= ~CPU_BASED_CR8_LOAD_EXITING &
2354 ~CPU_BASED_CR8_STORE_EXITING;
2355#endif
Sheng Yangf78e0e22007-10-29 09:40:42 +08002356 if (_cpu_based_exec_control & CPU_BASED_ACTIVATE_SECONDARY_CONTROLS) {
Sheng Yangd56f5462008-04-25 10:13:16 +08002357 min2 = 0;
2358 opt2 = SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES |
Sheng Yang2384d2b2008-01-17 15:14:33 +08002359 SECONDARY_EXEC_WBINVD_EXITING |
Sheng Yangd56f5462008-04-25 10:13:16 +08002360 SECONDARY_EXEC_ENABLE_VPID |
Nitin A Kamble3a624e22009-06-08 11:34:16 -07002361 SECONDARY_EXEC_ENABLE_EPT |
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08002362 SECONDARY_EXEC_UNRESTRICTED_GUEST |
Sheng Yang4e47c7a2009-12-18 16:48:47 +08002363 SECONDARY_EXEC_PAUSE_LOOP_EXITING |
2364 SECONDARY_EXEC_RDTSCP;
Sheng Yangd56f5462008-04-25 10:13:16 +08002365 if (adjust_vmx_controls(min2, opt2,
2366 MSR_IA32_VMX_PROCBASED_CTLS2,
Sheng Yangf78e0e22007-10-29 09:40:42 +08002367 &_cpu_based_2nd_exec_control) < 0)
2368 return -EIO;
2369 }
2370#ifndef CONFIG_X86_64
2371 if (!(_cpu_based_2nd_exec_control &
2372 SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES))
2373 _cpu_based_exec_control &= ~CPU_BASED_TPR_SHADOW;
2374#endif
Sheng Yangd56f5462008-04-25 10:13:16 +08002375 if (_cpu_based_2nd_exec_control & SECONDARY_EXEC_ENABLE_EPT) {
Marcelo Tosattia7052892008-09-23 13:18:35 -03002376 /* CR3 accesses and invlpg don't need to cause VM Exits when EPT
2377 enabled */
Gleb Natapov5fff7d22009-08-27 18:41:30 +03002378 _cpu_based_exec_control &= ~(CPU_BASED_CR3_LOAD_EXITING |
2379 CPU_BASED_CR3_STORE_EXITING |
2380 CPU_BASED_INVLPG_EXITING);
Sheng Yangd56f5462008-04-25 10:13:16 +08002381 rdmsr(MSR_IA32_VMX_EPT_VPID_CAP,
2382 vmx_capability.ept, vmx_capability.vpid);
2383 }
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002384
2385 min = 0;
2386#ifdef CONFIG_X86_64
2387 min |= VM_EXIT_HOST_ADDR_SPACE_SIZE;
2388#endif
Sheng Yang468d4722008-10-09 16:01:55 +08002389 opt = VM_EXIT_SAVE_IA32_PAT | VM_EXIT_LOAD_IA32_PAT;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002390 if (adjust_vmx_controls(min, opt, MSR_IA32_VMX_EXIT_CTLS,
2391 &_vmexit_control) < 0)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002392 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002393
Sheng Yang468d4722008-10-09 16:01:55 +08002394 min = 0;
2395 opt = VM_ENTRY_LOAD_IA32_PAT;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002396 if (adjust_vmx_controls(min, opt, MSR_IA32_VMX_ENTRY_CTLS,
2397 &_vmentry_control) < 0)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002398 return -EIO;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002399
Nguyen Anh Quynhc68876f2006-12-29 16:49:54 -08002400 rdmsr(MSR_IA32_VMX_BASIC, vmx_msr_low, vmx_msr_high);
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002401
2402 /* IA-32 SDM Vol 3B: VMCS size is never greater than 4kB. */
2403 if ((vmx_msr_high & 0x1fff) > PAGE_SIZE)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002404 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002405
2406#ifdef CONFIG_X86_64
2407 /* IA-32 SDM Vol 3B: 64-bit CPUs always have VMX_BASIC_MSR[48]==0. */
2408 if (vmx_msr_high & (1u<<16))
Yang, Sheng002c7f72007-07-31 14:23:01 +03002409 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002410#endif
2411
2412 /* Require Write-Back (WB) memory type for VMCS accesses. */
2413 if (((vmx_msr_high >> 18) & 15) != 6)
Yang, Sheng002c7f72007-07-31 14:23:01 +03002414 return -EIO;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002415
Yang, Sheng002c7f72007-07-31 14:23:01 +03002416 vmcs_conf->size = vmx_msr_high & 0x1fff;
2417 vmcs_conf->order = get_order(vmcs_config.size);
2418 vmcs_conf->revision_id = vmx_msr_low;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002419
Yang, Sheng002c7f72007-07-31 14:23:01 +03002420 vmcs_conf->pin_based_exec_ctrl = _pin_based_exec_control;
2421 vmcs_conf->cpu_based_exec_ctrl = _cpu_based_exec_control;
Sheng Yangf78e0e22007-10-29 09:40:42 +08002422 vmcs_conf->cpu_based_2nd_exec_ctrl = _cpu_based_2nd_exec_control;
Yang, Sheng002c7f72007-07-31 14:23:01 +03002423 vmcs_conf->vmexit_ctrl = _vmexit_control;
2424 vmcs_conf->vmentry_ctrl = _vmentry_control;
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002425
Avi Kivity110312c2010-12-21 12:54:20 +02002426 cpu_has_load_ia32_efer =
2427 allow_1_setting(MSR_IA32_VMX_ENTRY_CTLS,
2428 VM_ENTRY_LOAD_IA32_EFER)
2429 && allow_1_setting(MSR_IA32_VMX_EXIT_CTLS,
2430 VM_EXIT_LOAD_IA32_EFER);
2431
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002432 return 0;
Nguyen Anh Quynhc68876f2006-12-29 16:49:54 -08002433}
Avi Kivity6aa8b732006-12-10 02:21:36 -08002434
2435static struct vmcs *alloc_vmcs_cpu(int cpu)
2436{
2437 int node = cpu_to_node(cpu);
2438 struct page *pages;
2439 struct vmcs *vmcs;
2440
Mel Gorman6484eb32009-06-16 15:31:54 -07002441 pages = alloc_pages_exact_node(node, GFP_KERNEL, vmcs_config.order);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002442 if (!pages)
2443 return NULL;
2444 vmcs = page_address(pages);
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002445 memset(vmcs, 0, vmcs_config.size);
2446 vmcs->revision_id = vmcs_config.revision_id; /* vmcs revision id */
Avi Kivity6aa8b732006-12-10 02:21:36 -08002447 return vmcs;
2448}
2449
2450static struct vmcs *alloc_vmcs(void)
2451{
Ingo Molnard3b2c332007-01-05 16:36:23 -08002452 return alloc_vmcs_cpu(raw_smp_processor_id());
Avi Kivity6aa8b732006-12-10 02:21:36 -08002453}
2454
2455static void free_vmcs(struct vmcs *vmcs)
2456{
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03002457 free_pages((unsigned long)vmcs, vmcs_config.order);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002458}
2459
Nadav Har'Eld462b812011-05-24 15:26:10 +03002460/*
2461 * Free a VMCS, but before that VMCLEAR it on the CPU where it was last loaded
2462 */
2463static void free_loaded_vmcs(struct loaded_vmcs *loaded_vmcs)
2464{
2465 if (!loaded_vmcs->vmcs)
2466 return;
2467 loaded_vmcs_clear(loaded_vmcs);
2468 free_vmcs(loaded_vmcs->vmcs);
2469 loaded_vmcs->vmcs = NULL;
2470}
2471
Sam Ravnborg39959582007-06-01 00:47:13 -07002472static void free_kvm_area(void)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002473{
2474 int cpu;
2475
Zachary Amsden3230bb42009-09-29 11:38:37 -10002476 for_each_possible_cpu(cpu) {
Avi Kivity6aa8b732006-12-10 02:21:36 -08002477 free_vmcs(per_cpu(vmxarea, cpu));
Zachary Amsden3230bb42009-09-29 11:38:37 -10002478 per_cpu(vmxarea, cpu) = NULL;
2479 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08002480}
2481
Avi Kivity6aa8b732006-12-10 02:21:36 -08002482static __init int alloc_kvm_area(void)
2483{
2484 int cpu;
2485
Zachary Amsden3230bb42009-09-29 11:38:37 -10002486 for_each_possible_cpu(cpu) {
Avi Kivity6aa8b732006-12-10 02:21:36 -08002487 struct vmcs *vmcs;
2488
2489 vmcs = alloc_vmcs_cpu(cpu);
2490 if (!vmcs) {
2491 free_kvm_area();
2492 return -ENOMEM;
2493 }
2494
2495 per_cpu(vmxarea, cpu) = vmcs;
2496 }
2497 return 0;
2498}
2499
2500static __init int hardware_setup(void)
2501{
Yang, Sheng002c7f72007-07-31 14:23:01 +03002502 if (setup_vmcs_config(&vmcs_config) < 0)
2503 return -EIO;
Joerg Roedel50a37eb2008-01-31 14:57:38 +01002504
2505 if (boot_cpu_has(X86_FEATURE_NX))
2506 kvm_enable_efer_bits(EFER_NX);
2507
Sheng Yang93ba03c2009-04-01 15:52:32 +08002508 if (!cpu_has_vmx_vpid())
2509 enable_vpid = 0;
2510
Sheng Yang4bc9b982010-06-02 14:05:24 +08002511 if (!cpu_has_vmx_ept() ||
2512 !cpu_has_vmx_ept_4levels()) {
Sheng Yang93ba03c2009-04-01 15:52:32 +08002513 enable_ept = 0;
Nitin A Kamble3a624e22009-06-08 11:34:16 -07002514 enable_unrestricted_guest = 0;
2515 }
2516
2517 if (!cpu_has_vmx_unrestricted_guest())
2518 enable_unrestricted_guest = 0;
Sheng Yang93ba03c2009-04-01 15:52:32 +08002519
2520 if (!cpu_has_vmx_flexpriority())
2521 flexpriority_enabled = 0;
2522
Gleb Natapov95ba8273132009-04-21 17:45:08 +03002523 if (!cpu_has_vmx_tpr_shadow())
2524 kvm_x86_ops->update_cr8_intercept = NULL;
2525
Marcelo Tosatti54dee992009-06-11 12:07:44 -03002526 if (enable_ept && !cpu_has_vmx_ept_2m_page())
2527 kvm_disable_largepages();
2528
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08002529 if (!cpu_has_vmx_ple())
2530 ple_gap = 0;
2531
Nadav Har'Elb87a51a2011-05-25 23:04:25 +03002532 if (nested)
2533 nested_vmx_setup_ctls_msrs();
2534
Avi Kivity6aa8b732006-12-10 02:21:36 -08002535 return alloc_kvm_area();
2536}
2537
2538static __exit void hardware_unsetup(void)
2539{
2540 free_kvm_area();
2541}
2542
Avi Kivity6aa8b732006-12-10 02:21:36 -08002543static void fix_pmode_dataseg(int seg, struct kvm_save_segment *save)
2544{
2545 struct kvm_vmx_segment_field *sf = &kvm_vmx_segment_fields[seg];
2546
Avi Kivity6af11b92007-03-19 13:18:10 +02002547 if (vmcs_readl(sf->base) == save->base && (save->base & AR_S_MASK)) {
Avi Kivity6aa8b732006-12-10 02:21:36 -08002548 vmcs_write16(sf->selector, save->selector);
2549 vmcs_writel(sf->base, save->base);
2550 vmcs_write32(sf->limit, save->limit);
2551 vmcs_write32(sf->ar_bytes, save->ar);
2552 } else {
2553 u32 dpl = (vmcs_read16(sf->selector) & SELECTOR_RPL_MASK)
2554 << AR_DPL_SHIFT;
2555 vmcs_write32(sf->ar_bytes, 0x93 | dpl);
2556 }
2557}
2558
2559static void enter_pmode(struct kvm_vcpu *vcpu)
2560{
2561 unsigned long flags;
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002562 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002563
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002564 vmx->emulation_required = 1;
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002565 vmx->rmode.vm86_active = 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002566
Avi Kivity2fb92db2011-04-27 19:42:18 +03002567 vmx_segment_cache_clear(vmx);
2568
Avi Kivityd0ba64f2011-01-03 14:28:51 +02002569 vmcs_write16(GUEST_TR_SELECTOR, vmx->rmode.tr.selector);
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002570 vmcs_writel(GUEST_TR_BASE, vmx->rmode.tr.base);
2571 vmcs_write32(GUEST_TR_LIMIT, vmx->rmode.tr.limit);
2572 vmcs_write32(GUEST_TR_AR_BYTES, vmx->rmode.tr.ar);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002573
2574 flags = vmcs_readl(GUEST_RFLAGS);
Avi Kivity78ac8b42010-04-08 18:19:35 +03002575 flags &= RMODE_GUEST_OWNED_EFLAGS_BITS;
2576 flags |= vmx->rmode.save_rflags & ~RMODE_GUEST_OWNED_EFLAGS_BITS;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002577 vmcs_writel(GUEST_RFLAGS, flags);
2578
Rusty Russell66aee912007-07-17 23:34:16 +10002579 vmcs_writel(GUEST_CR4, (vmcs_readl(GUEST_CR4) & ~X86_CR4_VME) |
2580 (vmcs_readl(CR4_READ_SHADOW) & X86_CR4_VME));
Avi Kivity6aa8b732006-12-10 02:21:36 -08002581
2582 update_exception_bitmap(vcpu);
2583
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002584 if (emulate_invalid_guest_state)
2585 return;
2586
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002587 fix_pmode_dataseg(VCPU_SREG_ES, &vmx->rmode.es);
2588 fix_pmode_dataseg(VCPU_SREG_DS, &vmx->rmode.ds);
2589 fix_pmode_dataseg(VCPU_SREG_GS, &vmx->rmode.gs);
2590 fix_pmode_dataseg(VCPU_SREG_FS, &vmx->rmode.fs);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002591
Avi Kivity2fb92db2011-04-27 19:42:18 +03002592 vmx_segment_cache_clear(vmx);
2593
Avi Kivity6aa8b732006-12-10 02:21:36 -08002594 vmcs_write16(GUEST_SS_SELECTOR, 0);
2595 vmcs_write32(GUEST_SS_AR_BYTES, 0x93);
2596
2597 vmcs_write16(GUEST_CS_SELECTOR,
2598 vmcs_read16(GUEST_CS_SELECTOR) & ~SELECTOR_RPL_MASK);
2599 vmcs_write32(GUEST_CS_AR_BYTES, 0x9b);
2600}
2601
Mike Dayd77c26f2007-10-08 09:02:08 -04002602static gva_t rmode_tss_base(struct kvm *kvm)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002603{
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08002604 if (!kvm->arch.tss_addr) {
Marcelo Tosattibc6678a2009-12-23 14:35:21 -02002605 struct kvm_memslots *slots;
2606 gfn_t base_gfn;
2607
Lai Jiangshan90d83dc2010-04-19 17:41:23 +08002608 slots = kvm_memslots(kvm);
Avi Kivityf495c6e2010-06-10 17:21:29 +03002609 base_gfn = slots->memslots[0].base_gfn +
Marcelo Tosatti46a26bf2009-12-23 14:35:16 -02002610 kvm->memslots->memslots[0].npages - 3;
Izik Eiduscbc94022007-10-25 00:29:55 +02002611 return base_gfn << PAGE_SHIFT;
2612 }
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08002613 return kvm->arch.tss_addr;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002614}
2615
2616static void fix_rmode_seg(int seg, struct kvm_save_segment *save)
2617{
2618 struct kvm_vmx_segment_field *sf = &kvm_vmx_segment_fields[seg];
2619
2620 save->selector = vmcs_read16(sf->selector);
2621 save->base = vmcs_readl(sf->base);
2622 save->limit = vmcs_read32(sf->limit);
2623 save->ar = vmcs_read32(sf->ar_bytes);
Jan Kiszka15b00f32007-11-19 10:21:45 +01002624 vmcs_write16(sf->selector, save->base >> 4);
Gleb Natapov444e8632010-12-27 17:25:04 +02002625 vmcs_write32(sf->base, save->base & 0xffff0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002626 vmcs_write32(sf->limit, 0xffff);
2627 vmcs_write32(sf->ar_bytes, 0xf3);
Gleb Natapov444e8632010-12-27 17:25:04 +02002628 if (save->base & 0xf)
2629 printk_once(KERN_WARNING "kvm: segment base is not paragraph"
2630 " aligned when entering protected mode (seg=%d)",
2631 seg);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002632}
2633
2634static void enter_rmode(struct kvm_vcpu *vcpu)
2635{
2636 unsigned long flags;
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002637 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002638
Nitin A Kamble3a624e22009-06-08 11:34:16 -07002639 if (enable_unrestricted_guest)
2640 return;
2641
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002642 vmx->emulation_required = 1;
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002643 vmx->rmode.vm86_active = 1;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002644
Gleb Natapov776e58e2011-03-13 12:34:27 +02002645 /*
2646 * Very old userspace does not call KVM_SET_TSS_ADDR before entering
2647 * vcpu. Call it here with phys address pointing 16M below 4G.
2648 */
2649 if (!vcpu->kvm->arch.tss_addr) {
2650 printk_once(KERN_WARNING "kvm: KVM_SET_TSS_ADDR need to be "
2651 "called before entering vcpu\n");
2652 srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx);
2653 vmx_set_tss_addr(vcpu->kvm, 0xfeffd000);
2654 vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
2655 }
2656
Avi Kivity2fb92db2011-04-27 19:42:18 +03002657 vmx_segment_cache_clear(vmx);
2658
Avi Kivityd0ba64f2011-01-03 14:28:51 +02002659 vmx->rmode.tr.selector = vmcs_read16(GUEST_TR_SELECTOR);
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002660 vmx->rmode.tr.base = vmcs_readl(GUEST_TR_BASE);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002661 vmcs_writel(GUEST_TR_BASE, rmode_tss_base(vcpu->kvm));
2662
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002663 vmx->rmode.tr.limit = vmcs_read32(GUEST_TR_LIMIT);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002664 vmcs_write32(GUEST_TR_LIMIT, RMODE_TSS_SIZE - 1);
2665
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002666 vmx->rmode.tr.ar = vmcs_read32(GUEST_TR_AR_BYTES);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002667 vmcs_write32(GUEST_TR_AR_BYTES, 0x008b);
2668
2669 flags = vmcs_readl(GUEST_RFLAGS);
Avi Kivity78ac8b42010-04-08 18:19:35 +03002670 vmx->rmode.save_rflags = flags;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002671
Glauber de Oliveira Costa053de042008-01-30 13:31:27 +01002672 flags |= X86_EFLAGS_IOPL | X86_EFLAGS_VM;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002673
2674 vmcs_writel(GUEST_RFLAGS, flags);
Rusty Russell66aee912007-07-17 23:34:16 +10002675 vmcs_writel(GUEST_CR4, vmcs_readl(GUEST_CR4) | X86_CR4_VME);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002676 update_exception_bitmap(vcpu);
2677
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002678 if (emulate_invalid_guest_state)
2679 goto continue_rmode;
2680
Avi Kivity6aa8b732006-12-10 02:21:36 -08002681 vmcs_write16(GUEST_SS_SELECTOR, vmcs_readl(GUEST_SS_BASE) >> 4);
2682 vmcs_write32(GUEST_SS_LIMIT, 0xffff);
2683 vmcs_write32(GUEST_SS_AR_BYTES, 0xf3);
2684
2685 vmcs_write32(GUEST_CS_AR_BYTES, 0xf3);
Michael Riepeabacf8d2006-12-22 01:05:45 -08002686 vmcs_write32(GUEST_CS_LIMIT, 0xffff);
Avi Kivity8cb5b032007-03-20 18:40:40 +02002687 if (vmcs_readl(GUEST_CS_BASE) == 0xffff0000)
2688 vmcs_writel(GUEST_CS_BASE, 0xf0000);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002689 vmcs_write16(GUEST_CS_SELECTOR, vmcs_readl(GUEST_CS_BASE) >> 4);
2690
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002691 fix_rmode_seg(VCPU_SREG_ES, &vmx->rmode.es);
2692 fix_rmode_seg(VCPU_SREG_DS, &vmx->rmode.ds);
2693 fix_rmode_seg(VCPU_SREG_GS, &vmx->rmode.gs);
2694 fix_rmode_seg(VCPU_SREG_FS, &vmx->rmode.fs);
Avi Kivity75880a02007-06-20 11:20:04 +03002695
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03002696continue_rmode:
Eddie Dong8668a3c2007-10-10 14:26:45 +08002697 kvm_mmu_reset_context(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002698}
2699
Amit Shah401d10d2009-02-20 22:53:37 +05302700static void vmx_set_efer(struct kvm_vcpu *vcpu, u64 efer)
2701{
2702 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity26bb0982009-09-07 11:14:12 +03002703 struct shared_msr_entry *msr = find_msr_entry(vmx, MSR_EFER);
2704
2705 if (!msr)
2706 return;
Amit Shah401d10d2009-02-20 22:53:37 +05302707
Avi Kivity44ea2b12009-09-06 15:55:37 +03002708 /*
2709 * Force kernel_gs_base reloading before EFER changes, as control
2710 * of this msr depends on is_long_mode().
2711 */
2712 vmx_load_host_state(to_vmx(vcpu));
Avi Kivityf6801df2010-01-21 15:31:50 +02002713 vcpu->arch.efer = efer;
Amit Shah401d10d2009-02-20 22:53:37 +05302714 if (efer & EFER_LMA) {
2715 vmcs_write32(VM_ENTRY_CONTROLS,
2716 vmcs_read32(VM_ENTRY_CONTROLS) |
2717 VM_ENTRY_IA32E_MODE);
2718 msr->data = efer;
2719 } else {
2720 vmcs_write32(VM_ENTRY_CONTROLS,
2721 vmcs_read32(VM_ENTRY_CONTROLS) &
2722 ~VM_ENTRY_IA32E_MODE);
2723
2724 msr->data = efer & ~EFER_LME;
2725 }
2726 setup_msrs(vmx);
2727}
2728
Avi Kivity05b3e0c2006-12-13 00:33:45 -08002729#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08002730
2731static void enter_lmode(struct kvm_vcpu *vcpu)
2732{
2733 u32 guest_tr_ar;
2734
Avi Kivity2fb92db2011-04-27 19:42:18 +03002735 vmx_segment_cache_clear(to_vmx(vcpu));
2736
Avi Kivity6aa8b732006-12-10 02:21:36 -08002737 guest_tr_ar = vmcs_read32(GUEST_TR_AR_BYTES);
2738 if ((guest_tr_ar & AR_TYPE_MASK) != AR_TYPE_BUSY_64_TSS) {
2739 printk(KERN_DEBUG "%s: tss fixup for long mode. \n",
Harvey Harrisonb8688d52008-03-03 12:59:56 -08002740 __func__);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002741 vmcs_write32(GUEST_TR_AR_BYTES,
2742 (guest_tr_ar & ~AR_TYPE_MASK)
2743 | AR_TYPE_BUSY_64_TSS);
2744 }
Avi Kivityda38f432010-07-06 11:30:49 +03002745 vmx_set_efer(vcpu, vcpu->arch.efer | EFER_LMA);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002746}
2747
2748static void exit_lmode(struct kvm_vcpu *vcpu)
2749{
Avi Kivity6aa8b732006-12-10 02:21:36 -08002750 vmcs_write32(VM_ENTRY_CONTROLS,
2751 vmcs_read32(VM_ENTRY_CONTROLS)
Li, Xin B1e4e6e02007-08-01 21:49:10 +03002752 & ~VM_ENTRY_IA32E_MODE);
Avi Kivityda38f432010-07-06 11:30:49 +03002753 vmx_set_efer(vcpu, vcpu->arch.efer & ~EFER_LMA);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002754}
2755
2756#endif
2757
Sheng Yang2384d2b2008-01-17 15:14:33 +08002758static void vmx_flush_tlb(struct kvm_vcpu *vcpu)
2759{
Gui Jianfengb9d762f2010-06-07 10:32:29 +08002760 vpid_sync_context(to_vmx(vcpu));
Xiao Guangrongdd180b32010-07-03 16:02:42 +08002761 if (enable_ept) {
2762 if (!VALID_PAGE(vcpu->arch.mmu.root_hpa))
2763 return;
Sheng Yang4e1096d2008-07-06 19:16:51 +08002764 ept_sync_context(construct_eptp(vcpu->arch.mmu.root_hpa));
Xiao Guangrongdd180b32010-07-03 16:02:42 +08002765 }
Sheng Yang2384d2b2008-01-17 15:14:33 +08002766}
2767
Avi Kivitye8467fd2009-12-29 18:43:06 +02002768static void vmx_decache_cr0_guest_bits(struct kvm_vcpu *vcpu)
2769{
2770 ulong cr0_guest_owned_bits = vcpu->arch.cr0_guest_owned_bits;
2771
2772 vcpu->arch.cr0 &= ~cr0_guest_owned_bits;
2773 vcpu->arch.cr0 |= vmcs_readl(GUEST_CR0) & cr0_guest_owned_bits;
2774}
2775
Avi Kivityaff48ba2010-12-05 18:56:11 +02002776static void vmx_decache_cr3(struct kvm_vcpu *vcpu)
2777{
2778 if (enable_ept && is_paging(vcpu))
2779 vcpu->arch.cr3 = vmcs_readl(GUEST_CR3);
2780 __set_bit(VCPU_EXREG_CR3, (ulong *)&vcpu->arch.regs_avail);
2781}
2782
Anthony Liguori25c4c272007-04-27 09:29:21 +03002783static void vmx_decache_cr4_guest_bits(struct kvm_vcpu *vcpu)
Avi Kivity399badf2007-01-05 16:36:38 -08002784{
Avi Kivityfc78f512009-12-07 12:16:48 +02002785 ulong cr4_guest_owned_bits = vcpu->arch.cr4_guest_owned_bits;
2786
2787 vcpu->arch.cr4 &= ~cr4_guest_owned_bits;
2788 vcpu->arch.cr4 |= vmcs_readl(GUEST_CR4) & cr4_guest_owned_bits;
Avi Kivity399badf2007-01-05 16:36:38 -08002789}
2790
Sheng Yang14394422008-04-28 12:24:45 +08002791static void ept_load_pdptrs(struct kvm_vcpu *vcpu)
2792{
Avi Kivity6de4f3a2009-05-31 22:58:47 +03002793 if (!test_bit(VCPU_EXREG_PDPTR,
2794 (unsigned long *)&vcpu->arch.regs_dirty))
2795 return;
2796
Sheng Yang14394422008-04-28 12:24:45 +08002797 if (is_paging(vcpu) && is_pae(vcpu) && !is_long_mode(vcpu)) {
Joerg Roedelff03a072010-09-10 17:30:57 +02002798 vmcs_write64(GUEST_PDPTR0, vcpu->arch.mmu.pdptrs[0]);
2799 vmcs_write64(GUEST_PDPTR1, vcpu->arch.mmu.pdptrs[1]);
2800 vmcs_write64(GUEST_PDPTR2, vcpu->arch.mmu.pdptrs[2]);
2801 vmcs_write64(GUEST_PDPTR3, vcpu->arch.mmu.pdptrs[3]);
Sheng Yang14394422008-04-28 12:24:45 +08002802 }
2803}
2804
Avi Kivity8f5d5492009-05-31 18:41:29 +03002805static void ept_save_pdptrs(struct kvm_vcpu *vcpu)
2806{
2807 if (is_paging(vcpu) && is_pae(vcpu) && !is_long_mode(vcpu)) {
Joerg Roedelff03a072010-09-10 17:30:57 +02002808 vcpu->arch.mmu.pdptrs[0] = vmcs_read64(GUEST_PDPTR0);
2809 vcpu->arch.mmu.pdptrs[1] = vmcs_read64(GUEST_PDPTR1);
2810 vcpu->arch.mmu.pdptrs[2] = vmcs_read64(GUEST_PDPTR2);
2811 vcpu->arch.mmu.pdptrs[3] = vmcs_read64(GUEST_PDPTR3);
Avi Kivity8f5d5492009-05-31 18:41:29 +03002812 }
Avi Kivity6de4f3a2009-05-31 22:58:47 +03002813
2814 __set_bit(VCPU_EXREG_PDPTR,
2815 (unsigned long *)&vcpu->arch.regs_avail);
2816 __set_bit(VCPU_EXREG_PDPTR,
2817 (unsigned long *)&vcpu->arch.regs_dirty);
Avi Kivity8f5d5492009-05-31 18:41:29 +03002818}
2819
Nadav Har'El5e1746d2011-05-25 23:03:24 +03002820static int vmx_set_cr4(struct kvm_vcpu *vcpu, unsigned long cr4);
Sheng Yang14394422008-04-28 12:24:45 +08002821
2822static void ept_update_paging_mode_cr0(unsigned long *hw_cr0,
2823 unsigned long cr0,
2824 struct kvm_vcpu *vcpu)
2825{
Marcelo Tosatti5233dd52011-06-06 14:27:47 -03002826 if (!test_bit(VCPU_EXREG_CR3, (ulong *)&vcpu->arch.regs_avail))
2827 vmx_decache_cr3(vcpu);
Sheng Yang14394422008-04-28 12:24:45 +08002828 if (!(cr0 & X86_CR0_PG)) {
2829 /* From paging/starting to nonpaging */
2830 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL,
Sheng Yang65267ea2008-06-18 14:43:38 +08002831 vmcs_read32(CPU_BASED_VM_EXEC_CONTROL) |
Sheng Yang14394422008-04-28 12:24:45 +08002832 (CPU_BASED_CR3_LOAD_EXITING |
2833 CPU_BASED_CR3_STORE_EXITING));
2834 vcpu->arch.cr0 = cr0;
Avi Kivityfc78f512009-12-07 12:16:48 +02002835 vmx_set_cr4(vcpu, kvm_read_cr4(vcpu));
Sheng Yang14394422008-04-28 12:24:45 +08002836 } else if (!is_paging(vcpu)) {
2837 /* From nonpaging to paging */
2838 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL,
Sheng Yang65267ea2008-06-18 14:43:38 +08002839 vmcs_read32(CPU_BASED_VM_EXEC_CONTROL) &
Sheng Yang14394422008-04-28 12:24:45 +08002840 ~(CPU_BASED_CR3_LOAD_EXITING |
2841 CPU_BASED_CR3_STORE_EXITING));
2842 vcpu->arch.cr0 = cr0;
Avi Kivityfc78f512009-12-07 12:16:48 +02002843 vmx_set_cr4(vcpu, kvm_read_cr4(vcpu));
Sheng Yang14394422008-04-28 12:24:45 +08002844 }
Sheng Yang95eb84a2009-08-19 09:52:18 +08002845
2846 if (!(cr0 & X86_CR0_WP))
2847 *hw_cr0 &= ~X86_CR0_WP;
Sheng Yang14394422008-04-28 12:24:45 +08002848}
2849
Avi Kivity6aa8b732006-12-10 02:21:36 -08002850static void vmx_set_cr0(struct kvm_vcpu *vcpu, unsigned long cr0)
2851{
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002852 struct vcpu_vmx *vmx = to_vmx(vcpu);
Nitin A Kamble3a624e22009-06-08 11:34:16 -07002853 unsigned long hw_cr0;
2854
2855 if (enable_unrestricted_guest)
2856 hw_cr0 = (cr0 & ~KVM_GUEST_CR0_MASK_UNRESTRICTED_GUEST)
2857 | KVM_VM_CR0_ALWAYS_ON_UNRESTRICTED_GUEST;
2858 else
2859 hw_cr0 = (cr0 & ~KVM_GUEST_CR0_MASK) | KVM_VM_CR0_ALWAYS_ON;
Sheng Yang14394422008-04-28 12:24:45 +08002860
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002861 if (vmx->rmode.vm86_active && (cr0 & X86_CR0_PE))
Avi Kivity6aa8b732006-12-10 02:21:36 -08002862 enter_pmode(vcpu);
2863
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002864 if (!vmx->rmode.vm86_active && !(cr0 & X86_CR0_PE))
Avi Kivity6aa8b732006-12-10 02:21:36 -08002865 enter_rmode(vcpu);
2866
Avi Kivity05b3e0c2006-12-13 00:33:45 -08002867#ifdef CONFIG_X86_64
Avi Kivityf6801df2010-01-21 15:31:50 +02002868 if (vcpu->arch.efer & EFER_LME) {
Rusty Russell707d92fa2007-07-17 23:19:08 +10002869 if (!is_paging(vcpu) && (cr0 & X86_CR0_PG))
Avi Kivity6aa8b732006-12-10 02:21:36 -08002870 enter_lmode(vcpu);
Rusty Russell707d92fa2007-07-17 23:19:08 +10002871 if (is_paging(vcpu) && !(cr0 & X86_CR0_PG))
Avi Kivity6aa8b732006-12-10 02:21:36 -08002872 exit_lmode(vcpu);
2873 }
2874#endif
2875
Avi Kivity089d0342009-03-23 18:26:32 +02002876 if (enable_ept)
Sheng Yang14394422008-04-28 12:24:45 +08002877 ept_update_paging_mode_cr0(&hw_cr0, cr0, vcpu);
2878
Avi Kivity02daab22009-12-30 12:40:26 +02002879 if (!vcpu->fpu_active)
Avi Kivity81231c62010-01-24 16:26:40 +02002880 hw_cr0 |= X86_CR0_TS | X86_CR0_MP;
Avi Kivity02daab22009-12-30 12:40:26 +02002881
Avi Kivity6aa8b732006-12-10 02:21:36 -08002882 vmcs_writel(CR0_READ_SHADOW, cr0);
Sheng Yang14394422008-04-28 12:24:45 +08002883 vmcs_writel(GUEST_CR0, hw_cr0);
Zhang Xiantaoad312c72007-12-13 23:50:52 +08002884 vcpu->arch.cr0 = cr0;
Avi Kivity69c73022011-03-07 15:26:44 +02002885 __clear_bit(VCPU_EXREG_CPL, (ulong *)&vcpu->arch.regs_avail);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002886}
2887
Sheng Yang14394422008-04-28 12:24:45 +08002888static u64 construct_eptp(unsigned long root_hpa)
2889{
2890 u64 eptp;
2891
2892 /* TODO write the value reading from MSR */
2893 eptp = VMX_EPT_DEFAULT_MT |
2894 VMX_EPT_DEFAULT_GAW << VMX_EPT_GAW_EPTP_SHIFT;
2895 eptp |= (root_hpa & PAGE_MASK);
2896
2897 return eptp;
2898}
2899
Avi Kivity6aa8b732006-12-10 02:21:36 -08002900static void vmx_set_cr3(struct kvm_vcpu *vcpu, unsigned long cr3)
2901{
Sheng Yang14394422008-04-28 12:24:45 +08002902 unsigned long guest_cr3;
2903 u64 eptp;
2904
2905 guest_cr3 = cr3;
Avi Kivity089d0342009-03-23 18:26:32 +02002906 if (enable_ept) {
Sheng Yang14394422008-04-28 12:24:45 +08002907 eptp = construct_eptp(cr3);
2908 vmcs_write64(EPT_POINTER, eptp);
Avi Kivity9f8fe502010-12-05 17:30:00 +02002909 guest_cr3 = is_paging(vcpu) ? kvm_read_cr3(vcpu) :
Sheng Yangb927a3c2009-07-21 10:42:48 +08002910 vcpu->kvm->arch.ept_identity_map_addr;
Marcelo Tosatti7c93be42009-10-26 16:48:33 -02002911 ept_load_pdptrs(vcpu);
Sheng Yang14394422008-04-28 12:24:45 +08002912 }
2913
Sheng Yang2384d2b2008-01-17 15:14:33 +08002914 vmx_flush_tlb(vcpu);
Sheng Yang14394422008-04-28 12:24:45 +08002915 vmcs_writel(GUEST_CR3, guest_cr3);
Avi Kivity6aa8b732006-12-10 02:21:36 -08002916}
2917
Nadav Har'El5e1746d2011-05-25 23:03:24 +03002918static int vmx_set_cr4(struct kvm_vcpu *vcpu, unsigned long cr4)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002919{
Avi Kivity7ffd92c2009-06-09 14:10:45 +03002920 unsigned long hw_cr4 = cr4 | (to_vmx(vcpu)->rmode.vm86_active ?
Sheng Yang14394422008-04-28 12:24:45 +08002921 KVM_RMODE_VM_CR4_ALWAYS_ON : KVM_PMODE_VM_CR4_ALWAYS_ON);
2922
Nadav Har'El5e1746d2011-05-25 23:03:24 +03002923 if (cr4 & X86_CR4_VMXE) {
2924 /*
2925 * To use VMXON (and later other VMX instructions), a guest
2926 * must first be able to turn on cr4.VMXE (see handle_vmon()).
2927 * So basically the check on whether to allow nested VMX
2928 * is here.
2929 */
2930 if (!nested_vmx_allowed(vcpu))
2931 return 1;
2932 } else if (to_vmx(vcpu)->nested.vmxon)
2933 return 1;
2934
Zhang Xiantaoad312c72007-12-13 23:50:52 +08002935 vcpu->arch.cr4 = cr4;
Avi Kivitybc230082009-12-08 12:14:42 +02002936 if (enable_ept) {
2937 if (!is_paging(vcpu)) {
2938 hw_cr4 &= ~X86_CR4_PAE;
2939 hw_cr4 |= X86_CR4_PSE;
2940 } else if (!(cr4 & X86_CR4_PAE)) {
2941 hw_cr4 &= ~X86_CR4_PAE;
2942 }
2943 }
Sheng Yang14394422008-04-28 12:24:45 +08002944
2945 vmcs_writel(CR4_READ_SHADOW, cr4);
2946 vmcs_writel(GUEST_CR4, hw_cr4);
Nadav Har'El5e1746d2011-05-25 23:03:24 +03002947 return 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002948}
2949
Avi Kivity6aa8b732006-12-10 02:21:36 -08002950static void vmx_get_segment(struct kvm_vcpu *vcpu,
2951 struct kvm_segment *var, int seg)
2952{
Avi Kivitya9179492011-01-03 14:28:52 +02002953 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivitya9179492011-01-03 14:28:52 +02002954 struct kvm_save_segment *save;
Avi Kivity6aa8b732006-12-10 02:21:36 -08002955 u32 ar;
2956
Avi Kivitya9179492011-01-03 14:28:52 +02002957 if (vmx->rmode.vm86_active
2958 && (seg == VCPU_SREG_TR || seg == VCPU_SREG_ES
2959 || seg == VCPU_SREG_DS || seg == VCPU_SREG_FS
2960 || seg == VCPU_SREG_GS)
2961 && !emulate_invalid_guest_state) {
2962 switch (seg) {
2963 case VCPU_SREG_TR: save = &vmx->rmode.tr; break;
2964 case VCPU_SREG_ES: save = &vmx->rmode.es; break;
2965 case VCPU_SREG_DS: save = &vmx->rmode.ds; break;
2966 case VCPU_SREG_FS: save = &vmx->rmode.fs; break;
2967 case VCPU_SREG_GS: save = &vmx->rmode.gs; break;
2968 default: BUG();
2969 }
2970 var->selector = save->selector;
2971 var->base = save->base;
2972 var->limit = save->limit;
2973 ar = save->ar;
2974 if (seg == VCPU_SREG_TR
Avi Kivity2fb92db2011-04-27 19:42:18 +03002975 || var->selector == vmx_read_guest_seg_selector(vmx, seg))
Avi Kivitya9179492011-01-03 14:28:52 +02002976 goto use_saved_rmode_seg;
2977 }
Avi Kivity2fb92db2011-04-27 19:42:18 +03002978 var->base = vmx_read_guest_seg_base(vmx, seg);
2979 var->limit = vmx_read_guest_seg_limit(vmx, seg);
2980 var->selector = vmx_read_guest_seg_selector(vmx, seg);
2981 ar = vmx_read_guest_seg_ar(vmx, seg);
Avi Kivitya9179492011-01-03 14:28:52 +02002982use_saved_rmode_seg:
Avi Kivity9fd4a3b2009-01-04 23:43:42 +02002983 if ((ar & AR_UNUSABLE_MASK) && !emulate_invalid_guest_state)
Avi Kivity6aa8b732006-12-10 02:21:36 -08002984 ar = 0;
2985 var->type = ar & 15;
2986 var->s = (ar >> 4) & 1;
2987 var->dpl = (ar >> 5) & 3;
2988 var->present = (ar >> 7) & 1;
2989 var->avl = (ar >> 12) & 1;
2990 var->l = (ar >> 13) & 1;
2991 var->db = (ar >> 14) & 1;
2992 var->g = (ar >> 15) & 1;
2993 var->unusable = (ar >> 16) & 1;
2994}
2995
Avi Kivitya9179492011-01-03 14:28:52 +02002996static u64 vmx_get_segment_base(struct kvm_vcpu *vcpu, int seg)
2997{
Avi Kivitya9179492011-01-03 14:28:52 +02002998 struct kvm_segment s;
2999
3000 if (to_vmx(vcpu)->rmode.vm86_active) {
3001 vmx_get_segment(vcpu, &s, seg);
3002 return s.base;
3003 }
Avi Kivity2fb92db2011-04-27 19:42:18 +03003004 return vmx_read_guest_seg_base(to_vmx(vcpu), seg);
Avi Kivitya9179492011-01-03 14:28:52 +02003005}
3006
Avi Kivity69c73022011-03-07 15:26:44 +02003007static int __vmx_get_cpl(struct kvm_vcpu *vcpu)
Izik Eidus2e4d2652008-03-24 19:38:34 +02003008{
Avi Kivity3eeb3282010-01-21 15:31:48 +02003009 if (!is_protmode(vcpu))
Izik Eidus2e4d2652008-03-24 19:38:34 +02003010 return 0;
3011
Avi Kivityf4c63e52011-03-07 14:54:28 +02003012 if (!is_long_mode(vcpu)
3013 && (kvm_get_rflags(vcpu) & X86_EFLAGS_VM)) /* if virtual 8086 */
Izik Eidus2e4d2652008-03-24 19:38:34 +02003014 return 3;
3015
Avi Kivity2fb92db2011-04-27 19:42:18 +03003016 return vmx_read_guest_seg_selector(to_vmx(vcpu), VCPU_SREG_CS) & 3;
Izik Eidus2e4d2652008-03-24 19:38:34 +02003017}
3018
Avi Kivity69c73022011-03-07 15:26:44 +02003019static int vmx_get_cpl(struct kvm_vcpu *vcpu)
3020{
3021 if (!test_bit(VCPU_EXREG_CPL, (ulong *)&vcpu->arch.regs_avail)) {
3022 __set_bit(VCPU_EXREG_CPL, (ulong *)&vcpu->arch.regs_avail);
3023 to_vmx(vcpu)->cpl = __vmx_get_cpl(vcpu);
3024 }
3025 return to_vmx(vcpu)->cpl;
3026}
3027
3028
Avi Kivity653e3102007-05-07 10:55:37 +03003029static u32 vmx_segment_access_rights(struct kvm_segment *var)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003030{
Avi Kivity6aa8b732006-12-10 02:21:36 -08003031 u32 ar;
3032
Avi Kivity653e3102007-05-07 10:55:37 +03003033 if (var->unusable)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003034 ar = 1 << 16;
3035 else {
3036 ar = var->type & 15;
3037 ar |= (var->s & 1) << 4;
3038 ar |= (var->dpl & 3) << 5;
3039 ar |= (var->present & 1) << 7;
3040 ar |= (var->avl & 1) << 12;
3041 ar |= (var->l & 1) << 13;
3042 ar |= (var->db & 1) << 14;
3043 ar |= (var->g & 1) << 15;
3044 }
Uri Lublinf7fbf1f2006-12-13 00:34:00 -08003045 if (ar == 0) /* a 0 value means unusable */
3046 ar = AR_UNUSABLE_MASK;
Avi Kivity653e3102007-05-07 10:55:37 +03003047
3048 return ar;
3049}
3050
3051static void vmx_set_segment(struct kvm_vcpu *vcpu,
3052 struct kvm_segment *var, int seg)
3053{
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003054 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity653e3102007-05-07 10:55:37 +03003055 struct kvm_vmx_segment_field *sf = &kvm_vmx_segment_fields[seg];
3056 u32 ar;
3057
Avi Kivity2fb92db2011-04-27 19:42:18 +03003058 vmx_segment_cache_clear(vmx);
3059
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003060 if (vmx->rmode.vm86_active && seg == VCPU_SREG_TR) {
Gleb Natapova8ba6c22011-02-21 12:07:58 +02003061 vmcs_write16(sf->selector, var->selector);
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003062 vmx->rmode.tr.selector = var->selector;
3063 vmx->rmode.tr.base = var->base;
3064 vmx->rmode.tr.limit = var->limit;
3065 vmx->rmode.tr.ar = vmx_segment_access_rights(var);
Avi Kivity653e3102007-05-07 10:55:37 +03003066 return;
3067 }
3068 vmcs_writel(sf->base, var->base);
3069 vmcs_write32(sf->limit, var->limit);
3070 vmcs_write16(sf->selector, var->selector);
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003071 if (vmx->rmode.vm86_active && var->s) {
Avi Kivity653e3102007-05-07 10:55:37 +03003072 /*
3073 * Hack real-mode segments into vm86 compatibility.
3074 */
3075 if (var->base == 0xffff0000 && var->selector == 0xf000)
3076 vmcs_writel(sf->base, 0xf0000);
3077 ar = 0xf3;
3078 } else
3079 ar = vmx_segment_access_rights(var);
Nitin A Kamble3a624e22009-06-08 11:34:16 -07003080
3081 /*
3082 * Fix the "Accessed" bit in AR field of segment registers for older
3083 * qemu binaries.
3084 * IA32 arch specifies that at the time of processor reset the
3085 * "Accessed" bit in the AR field of segment registers is 1. And qemu
3086 * is setting it to 0 in the usedland code. This causes invalid guest
3087 * state vmexit when "unrestricted guest" mode is turned on.
3088 * Fix for this setup issue in cpu_reset is being pushed in the qemu
3089 * tree. Newer qemu binaries with that qemu fix would not need this
3090 * kvm hack.
3091 */
3092 if (enable_unrestricted_guest && (seg != VCPU_SREG_LDTR))
3093 ar |= 0x1; /* Accessed */
3094
Avi Kivity6aa8b732006-12-10 02:21:36 -08003095 vmcs_write32(sf->ar_bytes, ar);
Avi Kivity69c73022011-03-07 15:26:44 +02003096 __clear_bit(VCPU_EXREG_CPL, (ulong *)&vcpu->arch.regs_avail);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003097}
3098
Avi Kivity6aa8b732006-12-10 02:21:36 -08003099static void vmx_get_cs_db_l_bits(struct kvm_vcpu *vcpu, int *db, int *l)
3100{
Avi Kivity2fb92db2011-04-27 19:42:18 +03003101 u32 ar = vmx_read_guest_seg_ar(to_vmx(vcpu), VCPU_SREG_CS);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003102
3103 *db = (ar >> 14) & 1;
3104 *l = (ar >> 13) & 1;
3105}
3106
Gleb Natapov89a27f42010-02-16 10:51:48 +02003107static void vmx_get_idt(struct kvm_vcpu *vcpu, struct desc_ptr *dt)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003108{
Gleb Natapov89a27f42010-02-16 10:51:48 +02003109 dt->size = vmcs_read32(GUEST_IDTR_LIMIT);
3110 dt->address = vmcs_readl(GUEST_IDTR_BASE);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003111}
3112
Gleb Natapov89a27f42010-02-16 10:51:48 +02003113static void vmx_set_idt(struct kvm_vcpu *vcpu, struct desc_ptr *dt)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003114{
Gleb Natapov89a27f42010-02-16 10:51:48 +02003115 vmcs_write32(GUEST_IDTR_LIMIT, dt->size);
3116 vmcs_writel(GUEST_IDTR_BASE, dt->address);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003117}
3118
Gleb Natapov89a27f42010-02-16 10:51:48 +02003119static void vmx_get_gdt(struct kvm_vcpu *vcpu, struct desc_ptr *dt)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003120{
Gleb Natapov89a27f42010-02-16 10:51:48 +02003121 dt->size = vmcs_read32(GUEST_GDTR_LIMIT);
3122 dt->address = vmcs_readl(GUEST_GDTR_BASE);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003123}
3124
Gleb Natapov89a27f42010-02-16 10:51:48 +02003125static void vmx_set_gdt(struct kvm_vcpu *vcpu, struct desc_ptr *dt)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003126{
Gleb Natapov89a27f42010-02-16 10:51:48 +02003127 vmcs_write32(GUEST_GDTR_LIMIT, dt->size);
3128 vmcs_writel(GUEST_GDTR_BASE, dt->address);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003129}
3130
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003131static bool rmode_segment_valid(struct kvm_vcpu *vcpu, int seg)
3132{
3133 struct kvm_segment var;
3134 u32 ar;
3135
3136 vmx_get_segment(vcpu, &var, seg);
3137 ar = vmx_segment_access_rights(&var);
3138
3139 if (var.base != (var.selector << 4))
3140 return false;
3141 if (var.limit != 0xffff)
3142 return false;
3143 if (ar != 0xf3)
3144 return false;
3145
3146 return true;
3147}
3148
3149static bool code_segment_valid(struct kvm_vcpu *vcpu)
3150{
3151 struct kvm_segment cs;
3152 unsigned int cs_rpl;
3153
3154 vmx_get_segment(vcpu, &cs, VCPU_SREG_CS);
3155 cs_rpl = cs.selector & SELECTOR_RPL_MASK;
3156
Avi Kivity1872a3f2009-01-04 23:26:52 +02003157 if (cs.unusable)
3158 return false;
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003159 if (~cs.type & (AR_TYPE_CODE_MASK|AR_TYPE_ACCESSES_MASK))
3160 return false;
3161 if (!cs.s)
3162 return false;
Avi Kivity1872a3f2009-01-04 23:26:52 +02003163 if (cs.type & AR_TYPE_WRITEABLE_MASK) {
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003164 if (cs.dpl > cs_rpl)
3165 return false;
Avi Kivity1872a3f2009-01-04 23:26:52 +02003166 } else {
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003167 if (cs.dpl != cs_rpl)
3168 return false;
3169 }
3170 if (!cs.present)
3171 return false;
3172
3173 /* TODO: Add Reserved field check, this'll require a new member in the kvm_segment_field structure */
3174 return true;
3175}
3176
3177static bool stack_segment_valid(struct kvm_vcpu *vcpu)
3178{
3179 struct kvm_segment ss;
3180 unsigned int ss_rpl;
3181
3182 vmx_get_segment(vcpu, &ss, VCPU_SREG_SS);
3183 ss_rpl = ss.selector & SELECTOR_RPL_MASK;
3184
Avi Kivity1872a3f2009-01-04 23:26:52 +02003185 if (ss.unusable)
3186 return true;
3187 if (ss.type != 3 && ss.type != 7)
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003188 return false;
3189 if (!ss.s)
3190 return false;
3191 if (ss.dpl != ss_rpl) /* DPL != RPL */
3192 return false;
3193 if (!ss.present)
3194 return false;
3195
3196 return true;
3197}
3198
3199static bool data_segment_valid(struct kvm_vcpu *vcpu, int seg)
3200{
3201 struct kvm_segment var;
3202 unsigned int rpl;
3203
3204 vmx_get_segment(vcpu, &var, seg);
3205 rpl = var.selector & SELECTOR_RPL_MASK;
3206
Avi Kivity1872a3f2009-01-04 23:26:52 +02003207 if (var.unusable)
3208 return true;
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003209 if (!var.s)
3210 return false;
3211 if (!var.present)
3212 return false;
3213 if (~var.type & (AR_TYPE_CODE_MASK|AR_TYPE_WRITEABLE_MASK)) {
3214 if (var.dpl < rpl) /* DPL < RPL */
3215 return false;
3216 }
3217
3218 /* TODO: Add other members to kvm_segment_field to allow checking for other access
3219 * rights flags
3220 */
3221 return true;
3222}
3223
3224static bool tr_valid(struct kvm_vcpu *vcpu)
3225{
3226 struct kvm_segment tr;
3227
3228 vmx_get_segment(vcpu, &tr, VCPU_SREG_TR);
3229
Avi Kivity1872a3f2009-01-04 23:26:52 +02003230 if (tr.unusable)
3231 return false;
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003232 if (tr.selector & SELECTOR_TI_MASK) /* TI = 1 */
3233 return false;
Avi Kivity1872a3f2009-01-04 23:26:52 +02003234 if (tr.type != 3 && tr.type != 11) /* TODO: Check if guest is in IA32e mode */
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003235 return false;
3236 if (!tr.present)
3237 return false;
3238
3239 return true;
3240}
3241
3242static bool ldtr_valid(struct kvm_vcpu *vcpu)
3243{
3244 struct kvm_segment ldtr;
3245
3246 vmx_get_segment(vcpu, &ldtr, VCPU_SREG_LDTR);
3247
Avi Kivity1872a3f2009-01-04 23:26:52 +02003248 if (ldtr.unusable)
3249 return true;
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003250 if (ldtr.selector & SELECTOR_TI_MASK) /* TI = 1 */
3251 return false;
3252 if (ldtr.type != 2)
3253 return false;
3254 if (!ldtr.present)
3255 return false;
3256
3257 return true;
3258}
3259
3260static bool cs_ss_rpl_check(struct kvm_vcpu *vcpu)
3261{
3262 struct kvm_segment cs, ss;
3263
3264 vmx_get_segment(vcpu, &cs, VCPU_SREG_CS);
3265 vmx_get_segment(vcpu, &ss, VCPU_SREG_SS);
3266
3267 return ((cs.selector & SELECTOR_RPL_MASK) ==
3268 (ss.selector & SELECTOR_RPL_MASK));
3269}
3270
3271/*
3272 * Check if guest state is valid. Returns true if valid, false if
3273 * not.
3274 * We assume that registers are always usable
3275 */
3276static bool guest_state_valid(struct kvm_vcpu *vcpu)
3277{
3278 /* real mode guest state checks */
Avi Kivity3eeb3282010-01-21 15:31:48 +02003279 if (!is_protmode(vcpu)) {
Mohammed Gamal648dfaa2008-08-17 16:38:32 +03003280 if (!rmode_segment_valid(vcpu, VCPU_SREG_CS))
3281 return false;
3282 if (!rmode_segment_valid(vcpu, VCPU_SREG_SS))
3283 return false;
3284 if (!rmode_segment_valid(vcpu, VCPU_SREG_DS))
3285 return false;
3286 if (!rmode_segment_valid(vcpu, VCPU_SREG_ES))
3287 return false;
3288 if (!rmode_segment_valid(vcpu, VCPU_SREG_FS))
3289 return false;
3290 if (!rmode_segment_valid(vcpu, VCPU_SREG_GS))
3291 return false;
3292 } else {
3293 /* protected mode guest state checks */
3294 if (!cs_ss_rpl_check(vcpu))
3295 return false;
3296 if (!code_segment_valid(vcpu))
3297 return false;
3298 if (!stack_segment_valid(vcpu))
3299 return false;
3300 if (!data_segment_valid(vcpu, VCPU_SREG_DS))
3301 return false;
3302 if (!data_segment_valid(vcpu, VCPU_SREG_ES))
3303 return false;
3304 if (!data_segment_valid(vcpu, VCPU_SREG_FS))
3305 return false;
3306 if (!data_segment_valid(vcpu, VCPU_SREG_GS))
3307 return false;
3308 if (!tr_valid(vcpu))
3309 return false;
3310 if (!ldtr_valid(vcpu))
3311 return false;
3312 }
3313 /* TODO:
3314 * - Add checks on RIP
3315 * - Add checks on RFLAGS
3316 */
3317
3318 return true;
3319}
3320
Mike Dayd77c26f2007-10-08 09:02:08 -04003321static int init_rmode_tss(struct kvm *kvm)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003322{
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003323 gfn_t fn;
Izik Eidus195aefd2007-10-01 22:14:18 +02003324 u16 data = 0;
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003325 int r, idx, ret = 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003326
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003327 idx = srcu_read_lock(&kvm->srcu);
3328 fn = rmode_tss_base(kvm) >> PAGE_SHIFT;
Izik Eidus195aefd2007-10-01 22:14:18 +02003329 r = kvm_clear_guest_page(kvm, fn, 0, PAGE_SIZE);
3330 if (r < 0)
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003331 goto out;
Izik Eidus195aefd2007-10-01 22:14:18 +02003332 data = TSS_BASE_SIZE + TSS_REDIRECTION_SIZE;
Sheng Yang464d17c2008-08-13 14:10:33 +08003333 r = kvm_write_guest_page(kvm, fn++, &data,
3334 TSS_IOPB_BASE_OFFSET, sizeof(u16));
Izik Eidus195aefd2007-10-01 22:14:18 +02003335 if (r < 0)
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003336 goto out;
Izik Eidus195aefd2007-10-01 22:14:18 +02003337 r = kvm_clear_guest_page(kvm, fn++, 0, PAGE_SIZE);
3338 if (r < 0)
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003339 goto out;
Izik Eidus195aefd2007-10-01 22:14:18 +02003340 r = kvm_clear_guest_page(kvm, fn, 0, PAGE_SIZE);
3341 if (r < 0)
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003342 goto out;
Izik Eidus195aefd2007-10-01 22:14:18 +02003343 data = ~0;
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003344 r = kvm_write_guest_page(kvm, fn, &data,
3345 RMODE_TSS_SIZE - 2 * PAGE_SIZE - 1,
3346 sizeof(u8));
Izik Eidus195aefd2007-10-01 22:14:18 +02003347 if (r < 0)
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003348 goto out;
3349
3350 ret = 1;
3351out:
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003352 srcu_read_unlock(&kvm->srcu, idx);
Marcelo Tosatti10589a42007-12-20 19:18:22 -05003353 return ret;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003354}
3355
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003356static int init_rmode_identity_map(struct kvm *kvm)
3357{
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003358 int i, idx, r, ret;
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003359 pfn_t identity_map_pfn;
3360 u32 tmp;
3361
Avi Kivity089d0342009-03-23 18:26:32 +02003362 if (!enable_ept)
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003363 return 1;
3364 if (unlikely(!kvm->arch.ept_identity_pagetable)) {
3365 printk(KERN_ERR "EPT: identity-mapping pagetable "
3366 "haven't been allocated!\n");
3367 return 0;
3368 }
3369 if (likely(kvm->arch.ept_identity_pagetable_done))
3370 return 1;
3371 ret = 0;
Sheng Yangb927a3c2009-07-21 10:42:48 +08003372 identity_map_pfn = kvm->arch.ept_identity_map_addr >> PAGE_SHIFT;
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003373 idx = srcu_read_lock(&kvm->srcu);
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003374 r = kvm_clear_guest_page(kvm, identity_map_pfn, 0, PAGE_SIZE);
3375 if (r < 0)
3376 goto out;
3377 /* Set up identity-mapping pagetable for EPT in real mode */
3378 for (i = 0; i < PT32_ENT_PER_PAGE; i++) {
3379 tmp = (i << 22) + (_PAGE_PRESENT | _PAGE_RW | _PAGE_USER |
3380 _PAGE_ACCESSED | _PAGE_DIRTY | _PAGE_PSE);
3381 r = kvm_write_guest_page(kvm, identity_map_pfn,
3382 &tmp, i * sizeof(tmp), sizeof(tmp));
3383 if (r < 0)
3384 goto out;
3385 }
3386 kvm->arch.ept_identity_pagetable_done = true;
3387 ret = 1;
3388out:
Xiao Guangrong40dcaa92011-03-09 15:41:04 +08003389 srcu_read_unlock(&kvm->srcu, idx);
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003390 return ret;
3391}
3392
Avi Kivity6aa8b732006-12-10 02:21:36 -08003393static void seg_setup(int seg)
3394{
3395 struct kvm_vmx_segment_field *sf = &kvm_vmx_segment_fields[seg];
Nitin A Kamble3a624e22009-06-08 11:34:16 -07003396 unsigned int ar;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003397
3398 vmcs_write16(sf->selector, 0);
3399 vmcs_writel(sf->base, 0);
3400 vmcs_write32(sf->limit, 0xffff);
Nitin A Kamble3a624e22009-06-08 11:34:16 -07003401 if (enable_unrestricted_guest) {
3402 ar = 0x93;
3403 if (seg == VCPU_SREG_CS)
3404 ar |= 0x08; /* code segment */
3405 } else
3406 ar = 0xf3;
3407
3408 vmcs_write32(sf->ar_bytes, ar);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003409}
3410
Sheng Yangf78e0e22007-10-29 09:40:42 +08003411static int alloc_apic_access_page(struct kvm *kvm)
3412{
3413 struct kvm_userspace_memory_region kvm_userspace_mem;
3414 int r = 0;
3415
Marcelo Tosatti79fac952009-12-23 14:35:26 -02003416 mutex_lock(&kvm->slots_lock);
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08003417 if (kvm->arch.apic_access_page)
Sheng Yangf78e0e22007-10-29 09:40:42 +08003418 goto out;
3419 kvm_userspace_mem.slot = APIC_ACCESS_PAGE_PRIVATE_MEMSLOT;
3420 kvm_userspace_mem.flags = 0;
3421 kvm_userspace_mem.guest_phys_addr = 0xfee00000ULL;
3422 kvm_userspace_mem.memory_size = PAGE_SIZE;
3423 r = __kvm_set_memory_region(kvm, &kvm_userspace_mem, 0);
3424 if (r)
3425 goto out;
Izik Eidus72dc67a2008-02-10 18:04:15 +02003426
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08003427 kvm->arch.apic_access_page = gfn_to_page(kvm, 0xfee00);
Sheng Yangf78e0e22007-10-29 09:40:42 +08003428out:
Marcelo Tosatti79fac952009-12-23 14:35:26 -02003429 mutex_unlock(&kvm->slots_lock);
Sheng Yangf78e0e22007-10-29 09:40:42 +08003430 return r;
3431}
3432
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003433static int alloc_identity_pagetable(struct kvm *kvm)
3434{
3435 struct kvm_userspace_memory_region kvm_userspace_mem;
3436 int r = 0;
3437
Marcelo Tosatti79fac952009-12-23 14:35:26 -02003438 mutex_lock(&kvm->slots_lock);
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003439 if (kvm->arch.ept_identity_pagetable)
3440 goto out;
3441 kvm_userspace_mem.slot = IDENTITY_PAGETABLE_PRIVATE_MEMSLOT;
3442 kvm_userspace_mem.flags = 0;
Sheng Yangb927a3c2009-07-21 10:42:48 +08003443 kvm_userspace_mem.guest_phys_addr =
3444 kvm->arch.ept_identity_map_addr;
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003445 kvm_userspace_mem.memory_size = PAGE_SIZE;
3446 r = __kvm_set_memory_region(kvm, &kvm_userspace_mem, 0);
3447 if (r)
3448 goto out;
3449
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003450 kvm->arch.ept_identity_pagetable = gfn_to_page(kvm,
Sheng Yangb927a3c2009-07-21 10:42:48 +08003451 kvm->arch.ept_identity_map_addr >> PAGE_SHIFT);
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003452out:
Marcelo Tosatti79fac952009-12-23 14:35:26 -02003453 mutex_unlock(&kvm->slots_lock);
Sheng Yangb7ebfb02008-04-25 21:44:52 +08003454 return r;
3455}
3456
Sheng Yang2384d2b2008-01-17 15:14:33 +08003457static void allocate_vpid(struct vcpu_vmx *vmx)
3458{
3459 int vpid;
3460
3461 vmx->vpid = 0;
Avi Kivity919818a2009-03-23 18:01:29 +02003462 if (!enable_vpid)
Sheng Yang2384d2b2008-01-17 15:14:33 +08003463 return;
3464 spin_lock(&vmx_vpid_lock);
3465 vpid = find_first_zero_bit(vmx_vpid_bitmap, VMX_NR_VPIDS);
3466 if (vpid < VMX_NR_VPIDS) {
3467 vmx->vpid = vpid;
3468 __set_bit(vpid, vmx_vpid_bitmap);
3469 }
3470 spin_unlock(&vmx_vpid_lock);
3471}
3472
Lai Jiangshancdbecfc2010-04-17 16:41:47 +08003473static void free_vpid(struct vcpu_vmx *vmx)
3474{
3475 if (!enable_vpid)
3476 return;
3477 spin_lock(&vmx_vpid_lock);
3478 if (vmx->vpid != 0)
3479 __clear_bit(vmx->vpid, vmx_vpid_bitmap);
3480 spin_unlock(&vmx_vpid_lock);
3481}
3482
Avi Kivity58972972009-02-24 22:26:47 +02003483static void __vmx_disable_intercept_for_msr(unsigned long *msr_bitmap, u32 msr)
Sheng Yang25c5f222008-03-28 13:18:56 +08003484{
Avi Kivity3e7c73e2009-02-24 21:46:19 +02003485 int f = sizeof(unsigned long);
Sheng Yang25c5f222008-03-28 13:18:56 +08003486
3487 if (!cpu_has_vmx_msr_bitmap())
3488 return;
3489
3490 /*
3491 * See Intel PRM Vol. 3, 20.6.9 (MSR-Bitmap Address). Early manuals
3492 * have the write-low and read-high bitmap offsets the wrong way round.
3493 * We can control MSRs 0x00000000-0x00001fff and 0xc0000000-0xc0001fff.
3494 */
Sheng Yang25c5f222008-03-28 13:18:56 +08003495 if (msr <= 0x1fff) {
Avi Kivity3e7c73e2009-02-24 21:46:19 +02003496 __clear_bit(msr, msr_bitmap + 0x000 / f); /* read-low */
3497 __clear_bit(msr, msr_bitmap + 0x800 / f); /* write-low */
Sheng Yang25c5f222008-03-28 13:18:56 +08003498 } else if ((msr >= 0xc0000000) && (msr <= 0xc0001fff)) {
3499 msr &= 0x1fff;
Avi Kivity3e7c73e2009-02-24 21:46:19 +02003500 __clear_bit(msr, msr_bitmap + 0x400 / f); /* read-high */
3501 __clear_bit(msr, msr_bitmap + 0xc00 / f); /* write-high */
Sheng Yang25c5f222008-03-28 13:18:56 +08003502 }
Sheng Yang25c5f222008-03-28 13:18:56 +08003503}
3504
Avi Kivity58972972009-02-24 22:26:47 +02003505static void vmx_disable_intercept_for_msr(u32 msr, bool longmode_only)
3506{
3507 if (!longmode_only)
3508 __vmx_disable_intercept_for_msr(vmx_msr_bitmap_legacy, msr);
3509 __vmx_disable_intercept_for_msr(vmx_msr_bitmap_longmode, msr);
3510}
3511
Avi Kivity6aa8b732006-12-10 02:21:36 -08003512/*
Nadav Har'Ela3a8ff82011-05-25 23:09:01 +03003513 * Set up the vmcs's constant host-state fields, i.e., host-state fields that
3514 * will not change in the lifetime of the guest.
3515 * Note that host-state that does change is set elsewhere. E.g., host-state
3516 * that is set differently for each CPU is set in vmx_vcpu_load(), not here.
3517 */
3518static void vmx_set_constant_host_state(void)
3519{
3520 u32 low32, high32;
3521 unsigned long tmpl;
3522 struct desc_ptr dt;
3523
3524 vmcs_writel(HOST_CR0, read_cr0() | X86_CR0_TS); /* 22.2.3 */
3525 vmcs_writel(HOST_CR4, read_cr4()); /* 22.2.3, 22.2.5 */
3526 vmcs_writel(HOST_CR3, read_cr3()); /* 22.2.3 FIXME: shadow tables */
3527
3528 vmcs_write16(HOST_CS_SELECTOR, __KERNEL_CS); /* 22.2.4 */
3529 vmcs_write16(HOST_DS_SELECTOR, __KERNEL_DS); /* 22.2.4 */
3530 vmcs_write16(HOST_ES_SELECTOR, __KERNEL_DS); /* 22.2.4 */
3531 vmcs_write16(HOST_SS_SELECTOR, __KERNEL_DS); /* 22.2.4 */
3532 vmcs_write16(HOST_TR_SELECTOR, GDT_ENTRY_TSS*8); /* 22.2.4 */
3533
3534 native_store_idt(&dt);
3535 vmcs_writel(HOST_IDTR_BASE, dt.address); /* 22.2.4 */
3536
3537 asm("mov $.Lkvm_vmx_return, %0" : "=r"(tmpl));
3538 vmcs_writel(HOST_RIP, tmpl); /* 22.2.5 */
3539
3540 rdmsr(MSR_IA32_SYSENTER_CS, low32, high32);
3541 vmcs_write32(HOST_IA32_SYSENTER_CS, low32);
3542 rdmsrl(MSR_IA32_SYSENTER_EIP, tmpl);
3543 vmcs_writel(HOST_IA32_SYSENTER_EIP, tmpl); /* 22.2.3 */
3544
3545 if (vmcs_config.vmexit_ctrl & VM_EXIT_LOAD_IA32_PAT) {
3546 rdmsr(MSR_IA32_CR_PAT, low32, high32);
3547 vmcs_write64(HOST_IA32_PAT, low32 | ((u64) high32 << 32));
3548 }
3549}
3550
Nadav Har'Elbf8179a2011-05-25 23:09:31 +03003551static void set_cr4_guest_host_mask(struct vcpu_vmx *vmx)
3552{
3553 vmx->vcpu.arch.cr4_guest_owned_bits = KVM_CR4_GUEST_OWNED_BITS;
3554 if (enable_ept)
3555 vmx->vcpu.arch.cr4_guest_owned_bits |= X86_CR4_PGE;
Nadav Har'Elfe3ef052011-05-25 23:10:02 +03003556 if (is_guest_mode(&vmx->vcpu))
3557 vmx->vcpu.arch.cr4_guest_owned_bits &=
3558 ~get_vmcs12(&vmx->vcpu)->cr4_guest_host_mask;
Nadav Har'Elbf8179a2011-05-25 23:09:31 +03003559 vmcs_writel(CR4_GUEST_HOST_MASK, ~vmx->vcpu.arch.cr4_guest_owned_bits);
3560}
3561
3562static u32 vmx_exec_control(struct vcpu_vmx *vmx)
3563{
3564 u32 exec_control = vmcs_config.cpu_based_exec_ctrl;
3565 if (!vm_need_tpr_shadow(vmx->vcpu.kvm)) {
3566 exec_control &= ~CPU_BASED_TPR_SHADOW;
3567#ifdef CONFIG_X86_64
3568 exec_control |= CPU_BASED_CR8_STORE_EXITING |
3569 CPU_BASED_CR8_LOAD_EXITING;
3570#endif
3571 }
3572 if (!enable_ept)
3573 exec_control |= CPU_BASED_CR3_STORE_EXITING |
3574 CPU_BASED_CR3_LOAD_EXITING |
3575 CPU_BASED_INVLPG_EXITING;
3576 return exec_control;
3577}
3578
3579static u32 vmx_secondary_exec_control(struct vcpu_vmx *vmx)
3580{
3581 u32 exec_control = vmcs_config.cpu_based_2nd_exec_ctrl;
3582 if (!vm_need_virtualize_apic_accesses(vmx->vcpu.kvm))
3583 exec_control &= ~SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES;
3584 if (vmx->vpid == 0)
3585 exec_control &= ~SECONDARY_EXEC_ENABLE_VPID;
3586 if (!enable_ept) {
3587 exec_control &= ~SECONDARY_EXEC_ENABLE_EPT;
3588 enable_unrestricted_guest = 0;
3589 }
3590 if (!enable_unrestricted_guest)
3591 exec_control &= ~SECONDARY_EXEC_UNRESTRICTED_GUEST;
3592 if (!ple_gap)
3593 exec_control &= ~SECONDARY_EXEC_PAUSE_LOOP_EXITING;
3594 return exec_control;
3595}
3596
Xiao Guangrongce88dec2011-07-12 03:33:44 +08003597static void ept_set_mmio_spte_mask(void)
3598{
3599 /*
3600 * EPT Misconfigurations can be generated if the value of bits 2:0
3601 * of an EPT paging-structure entry is 110b (write/execute).
3602 * Also, magic bits (0xffull << 49) is set to quickly identify mmio
3603 * spte.
3604 */
3605 kvm_mmu_set_mmio_spte_mask(0xffull << 49 | 0x6ull);
3606}
3607
Nadav Har'Ela3a8ff82011-05-25 23:09:01 +03003608/*
Avi Kivity6aa8b732006-12-10 02:21:36 -08003609 * Sets up the vmcs for emulated real mode.
3610 */
Rusty Russell8b9cf982007-07-30 16:31:43 +10003611static int vmx_vcpu_setup(struct vcpu_vmx *vmx)
Avi Kivity6aa8b732006-12-10 02:21:36 -08003612{
Jan Kiszka2e4ce7f2011-06-01 12:57:30 +02003613#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08003614 unsigned long a;
Jan Kiszka2e4ce7f2011-06-01 12:57:30 +02003615#endif
Avi Kivity6aa8b732006-12-10 02:21:36 -08003616 int i;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003617
Avi Kivity6aa8b732006-12-10 02:21:36 -08003618 /* I/O */
Avi Kivity3e7c73e2009-02-24 21:46:19 +02003619 vmcs_write64(IO_BITMAP_A, __pa(vmx_io_bitmap_a));
3620 vmcs_write64(IO_BITMAP_B, __pa(vmx_io_bitmap_b));
Avi Kivity6aa8b732006-12-10 02:21:36 -08003621
Sheng Yang25c5f222008-03-28 13:18:56 +08003622 if (cpu_has_vmx_msr_bitmap())
Avi Kivity58972972009-02-24 22:26:47 +02003623 vmcs_write64(MSR_BITMAP, __pa(vmx_msr_bitmap_legacy));
Sheng Yang25c5f222008-03-28 13:18:56 +08003624
Avi Kivity6aa8b732006-12-10 02:21:36 -08003625 vmcs_write64(VMCS_LINK_POINTER, -1ull); /* 22.3.1.5 */
3626
Avi Kivity6aa8b732006-12-10 02:21:36 -08003627 /* Control */
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03003628 vmcs_write32(PIN_BASED_VM_EXEC_CONTROL,
3629 vmcs_config.pin_based_exec_ctrl);
Yang, Sheng6e5d8652007-09-12 18:03:11 +08003630
Nadav Har'Elbf8179a2011-05-25 23:09:31 +03003631 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, vmx_exec_control(vmx));
Avi Kivity6aa8b732006-12-10 02:21:36 -08003632
Sheng Yang83ff3b92007-11-21 14:33:25 +08003633 if (cpu_has_secondary_exec_ctrls()) {
Nadav Har'Elbf8179a2011-05-25 23:09:31 +03003634 vmcs_write32(SECONDARY_VM_EXEC_CONTROL,
3635 vmx_secondary_exec_control(vmx));
Sheng Yang83ff3b92007-11-21 14:33:25 +08003636 }
Sheng Yangf78e0e22007-10-29 09:40:42 +08003637
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08003638 if (ple_gap) {
3639 vmcs_write32(PLE_GAP, ple_gap);
3640 vmcs_write32(PLE_WINDOW, ple_window);
3641 }
3642
Xiao Guangrongc3707952011-07-12 03:28:04 +08003643 vmcs_write32(PAGE_FAULT_ERROR_CODE_MASK, 0);
3644 vmcs_write32(PAGE_FAULT_ERROR_CODE_MATCH, 0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003645 vmcs_write32(CR3_TARGET_COUNT, 0); /* 22.2.1 */
3646
Avi Kivity9581d442010-10-19 16:46:55 +02003647 vmcs_write16(HOST_FS_SELECTOR, 0); /* 22.2.4 */
3648 vmcs_write16(HOST_GS_SELECTOR, 0); /* 22.2.4 */
Nadav Har'Ela3a8ff82011-05-25 23:09:01 +03003649 vmx_set_constant_host_state();
Avi Kivity05b3e0c2006-12-13 00:33:45 -08003650#ifdef CONFIG_X86_64
Avi Kivity6aa8b732006-12-10 02:21:36 -08003651 rdmsrl(MSR_FS_BASE, a);
3652 vmcs_writel(HOST_FS_BASE, a); /* 22.2.4 */
3653 rdmsrl(MSR_GS_BASE, a);
3654 vmcs_writel(HOST_GS_BASE, a); /* 22.2.4 */
3655#else
3656 vmcs_writel(HOST_FS_BASE, 0); /* 22.2.4 */
3657 vmcs_writel(HOST_GS_BASE, 0); /* 22.2.4 */
3658#endif
3659
Eddie Dong2cc51562007-05-21 07:28:09 +03003660 vmcs_write32(VM_EXIT_MSR_STORE_COUNT, 0);
3661 vmcs_write32(VM_EXIT_MSR_LOAD_COUNT, 0);
Avi Kivity61d2ef22010-04-28 16:40:38 +03003662 vmcs_write64(VM_EXIT_MSR_LOAD_ADDR, __pa(vmx->msr_autoload.host));
Eddie Dong2cc51562007-05-21 07:28:09 +03003663 vmcs_write32(VM_ENTRY_MSR_LOAD_COUNT, 0);
Avi Kivity61d2ef22010-04-28 16:40:38 +03003664 vmcs_write64(VM_ENTRY_MSR_LOAD_ADDR, __pa(vmx->msr_autoload.guest));
Avi Kivity6aa8b732006-12-10 02:21:36 -08003665
Sheng Yang468d4722008-10-09 16:01:55 +08003666 if (vmcs_config.vmentry_ctrl & VM_ENTRY_LOAD_IA32_PAT) {
Nadav Har'Ela3a8ff82011-05-25 23:09:01 +03003667 u32 msr_low, msr_high;
3668 u64 host_pat;
Sheng Yang468d4722008-10-09 16:01:55 +08003669 rdmsr(MSR_IA32_CR_PAT, msr_low, msr_high);
3670 host_pat = msr_low | ((u64) msr_high << 32);
3671 /* Write the default value follow host pat */
3672 vmcs_write64(GUEST_IA32_PAT, host_pat);
3673 /* Keep arch.pat sync with GUEST_IA32_PAT */
3674 vmx->vcpu.arch.pat = host_pat;
3675 }
3676
Avi Kivity6aa8b732006-12-10 02:21:36 -08003677 for (i = 0; i < NR_VMX_MSR; ++i) {
3678 u32 index = vmx_msr_index[i];
3679 u32 data_low, data_high;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04003680 int j = vmx->nmsrs;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003681
3682 if (rdmsr_safe(index, &data_low, &data_high) < 0)
3683 continue;
Avi Kivity432bd6c2007-01-31 23:48:13 -08003684 if (wrmsr_safe(index, data_low, data_high) < 0)
3685 continue;
Avi Kivity26bb0982009-09-07 11:14:12 +03003686 vmx->guest_msrs[j].index = i;
3687 vmx->guest_msrs[j].data = 0;
Avi Kivityd5696722009-12-02 12:28:47 +02003688 vmx->guest_msrs[j].mask = -1ull;
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04003689 ++vmx->nmsrs;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003690 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08003691
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03003692 vmcs_write32(VM_EXIT_CONTROLS, vmcs_config.vmexit_ctrl);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003693
3694 /* 22.2.1, 20.8.1 */
Yang, Sheng1c3d14fe2007-07-29 11:07:42 +03003695 vmcs_write32(VM_ENTRY_CONTROLS, vmcs_config.vmentry_ctrl);
3696
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003697 vmcs_writel(CR0_GUEST_HOST_MASK, ~0UL);
Nadav Har'Elbf8179a2011-05-25 23:09:31 +03003698 set_cr4_guest_host_mask(vmx);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003699
Zachary Amsden99e3e302010-08-19 22:07:17 -10003700 kvm_write_tsc(&vmx->vcpu, 0);
Sheng Yangf78e0e22007-10-29 09:40:42 +08003701
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003702 return 0;
3703}
3704
3705static int vmx_vcpu_reset(struct kvm_vcpu *vcpu)
3706{
3707 struct vcpu_vmx *vmx = to_vmx(vcpu);
3708 u64 msr;
Xiao Guangrong4b9d3a02010-06-08 10:15:51 +08003709 int ret;
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003710
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03003711 vcpu->arch.regs_avail = ~((1 << VCPU_REGS_RIP) | (1 << VCPU_REGS_RSP));
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003712
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003713 vmx->rmode.vm86_active = 0;
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003714
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003715 vmx->soft_vnmi_blocked = 0;
3716
Zhang Xiantaoad312c72007-12-13 23:50:52 +08003717 vmx->vcpu.arch.regs[VCPU_REGS_RDX] = get_rdx_init_val();
Avi Kivity2d3ad1f2008-02-24 11:20:43 +02003718 kvm_set_cr8(&vmx->vcpu, 0);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003719 msr = 0xfee00000 | MSR_IA32_APICBASE_ENABLE;
Gleb Natapovc5af89b2009-06-09 15:56:26 +03003720 if (kvm_vcpu_is_bsp(&vmx->vcpu))
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003721 msr |= MSR_IA32_APICBASE_BSP;
3722 kvm_set_apic_base(&vmx->vcpu, msr);
3723
Jan Kiszka10ab25c2010-05-25 16:01:50 +02003724 ret = fx_init(&vmx->vcpu);
3725 if (ret != 0)
3726 goto out;
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003727
Avi Kivity2fb92db2011-04-27 19:42:18 +03003728 vmx_segment_cache_clear(vmx);
3729
Avi Kivity5706be02008-08-20 15:07:31 +03003730 seg_setup(VCPU_SREG_CS);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003731 /*
3732 * GUEST_CS_BASE should really be 0xffff0000, but VT vm86 mode
3733 * insists on having GUEST_CS_BASE == GUEST_CS_SELECTOR << 4. Sigh.
3734 */
Gleb Natapovc5af89b2009-06-09 15:56:26 +03003735 if (kvm_vcpu_is_bsp(&vmx->vcpu)) {
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003736 vmcs_write16(GUEST_CS_SELECTOR, 0xf000);
3737 vmcs_writel(GUEST_CS_BASE, 0x000f0000);
3738 } else {
Zhang Xiantaoad312c72007-12-13 23:50:52 +08003739 vmcs_write16(GUEST_CS_SELECTOR, vmx->vcpu.arch.sipi_vector << 8);
3740 vmcs_writel(GUEST_CS_BASE, vmx->vcpu.arch.sipi_vector << 12);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003741 }
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003742
3743 seg_setup(VCPU_SREG_DS);
3744 seg_setup(VCPU_SREG_ES);
3745 seg_setup(VCPU_SREG_FS);
3746 seg_setup(VCPU_SREG_GS);
3747 seg_setup(VCPU_SREG_SS);
3748
3749 vmcs_write16(GUEST_TR_SELECTOR, 0);
3750 vmcs_writel(GUEST_TR_BASE, 0);
3751 vmcs_write32(GUEST_TR_LIMIT, 0xffff);
3752 vmcs_write32(GUEST_TR_AR_BYTES, 0x008b);
3753
3754 vmcs_write16(GUEST_LDTR_SELECTOR, 0);
3755 vmcs_writel(GUEST_LDTR_BASE, 0);
3756 vmcs_write32(GUEST_LDTR_LIMIT, 0xffff);
3757 vmcs_write32(GUEST_LDTR_AR_BYTES, 0x00082);
3758
3759 vmcs_write32(GUEST_SYSENTER_CS, 0);
3760 vmcs_writel(GUEST_SYSENTER_ESP, 0);
3761 vmcs_writel(GUEST_SYSENTER_EIP, 0);
3762
3763 vmcs_writel(GUEST_RFLAGS, 0x02);
Gleb Natapovc5af89b2009-06-09 15:56:26 +03003764 if (kvm_vcpu_is_bsp(&vmx->vcpu))
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03003765 kvm_rip_write(vcpu, 0xfff0);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003766 else
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03003767 kvm_rip_write(vcpu, 0);
3768 kvm_register_write(vcpu, VCPU_REGS_RSP, 0);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003769
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003770 vmcs_writel(GUEST_DR7, 0x400);
3771
3772 vmcs_writel(GUEST_GDTR_BASE, 0);
3773 vmcs_write32(GUEST_GDTR_LIMIT, 0xffff);
3774
3775 vmcs_writel(GUEST_IDTR_BASE, 0);
3776 vmcs_write32(GUEST_IDTR_LIMIT, 0xffff);
3777
Anthony Liguori443381a2010-12-06 10:53:38 -06003778 vmcs_write32(GUEST_ACTIVITY_STATE, GUEST_ACTIVITY_ACTIVE);
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003779 vmcs_write32(GUEST_INTERRUPTIBILITY_INFO, 0);
3780 vmcs_write32(GUEST_PENDING_DBG_EXCEPTIONS, 0);
3781
Avi Kivitye00c8cf2007-10-21 11:00:39 +02003782 /* Special registers */
3783 vmcs_write64(GUEST_IA32_DEBUGCTL, 0);
3784
3785 setup_msrs(vmx);
3786
Avi Kivity6aa8b732006-12-10 02:21:36 -08003787 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD, 0); /* 22.2.1 */
3788
Sheng Yangf78e0e22007-10-29 09:40:42 +08003789 if (cpu_has_vmx_tpr_shadow()) {
3790 vmcs_write64(VIRTUAL_APIC_PAGE_ADDR, 0);
3791 if (vm_need_tpr_shadow(vmx->vcpu.kvm))
3792 vmcs_write64(VIRTUAL_APIC_PAGE_ADDR,
Takuya Yoshikawaafc20182011-03-05 12:40:20 +09003793 __pa(vmx->vcpu.arch.apic->regs));
Sheng Yangf78e0e22007-10-29 09:40:42 +08003794 vmcs_write32(TPR_THRESHOLD, 0);
3795 }
3796
3797 if (vm_need_virtualize_apic_accesses(vmx->vcpu.kvm))
3798 vmcs_write64(APIC_ACCESS_ADDR,
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08003799 page_to_phys(vmx->vcpu.kvm->arch.apic_access_page));
Avi Kivity6aa8b732006-12-10 02:21:36 -08003800
Sheng Yang2384d2b2008-01-17 15:14:33 +08003801 if (vmx->vpid != 0)
3802 vmcs_write16(VIRTUAL_PROCESSOR_ID, vmx->vpid);
3803
Eduardo Habkostfa400522009-10-24 02:49:58 -02003804 vmx->vcpu.arch.cr0 = X86_CR0_NW | X86_CR0_CD | X86_CR0_ET;
Avi Kivity4d4ec082009-12-29 18:07:30 +02003805 vmx_set_cr0(&vmx->vcpu, kvm_read_cr0(vcpu)); /* enter rmode */
Rusty Russell8b9cf982007-07-30 16:31:43 +10003806 vmx_set_cr4(&vmx->vcpu, 0);
Rusty Russell8b9cf982007-07-30 16:31:43 +10003807 vmx_set_efer(&vmx->vcpu, 0);
Rusty Russell8b9cf982007-07-30 16:31:43 +10003808 vmx_fpu_activate(&vmx->vcpu);
3809 update_exception_bitmap(&vmx->vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08003810
Gui Jianfengb9d762f2010-06-07 10:32:29 +08003811 vpid_sync_context(vmx);
Sheng Yang2384d2b2008-01-17 15:14:33 +08003812
Marcelo Tosatti3200f402008-03-29 20:17:59 -03003813 ret = 0;
Avi Kivity6aa8b732006-12-10 02:21:36 -08003814
Mohammed Gamala89a8fb2008-08-17 16:42:16 +03003815 /* HACK: Don't enable emulation on guest boot/reset */
3816 vmx->emulation_required = 0;
3817
Avi Kivity6aa8b732006-12-10 02:21:36 -08003818out:
3819 return ret;
3820}
3821
Nadav Har'Elb6f12502011-05-25 23:13:06 +03003822/*
3823 * In nested virtualization, check if L1 asked to exit on external interrupts.
3824 * For most existing hypervisors, this will always return true.
3825 */
3826static bool nested_exit_on_intr(struct kvm_vcpu *vcpu)
3827{
3828 return get_vmcs12(vcpu)->pin_based_vm_exec_control &
3829 PIN_BASED_EXT_INTR_MASK;
3830}
3831
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003832static void enable_irq_window(struct kvm_vcpu *vcpu)
3833{
3834 u32 cpu_based_vm_exec_control;
Nadav Har'Elb6f12502011-05-25 23:13:06 +03003835 if (is_guest_mode(vcpu) && nested_exit_on_intr(vcpu))
3836 /* We can get here when nested_run_pending caused
3837 * vmx_interrupt_allowed() to return false. In this case, do
3838 * nothing - the interrupt will be injected later.
3839 */
3840 return;
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003841
3842 cpu_based_vm_exec_control = vmcs_read32(CPU_BASED_VM_EXEC_CONTROL);
3843 cpu_based_vm_exec_control |= CPU_BASED_VIRTUAL_INTR_PENDING;
3844 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, cpu_based_vm_exec_control);
3845}
3846
3847static void enable_nmi_window(struct kvm_vcpu *vcpu)
3848{
3849 u32 cpu_based_vm_exec_control;
3850
3851 if (!cpu_has_virtual_nmis()) {
3852 enable_irq_window(vcpu);
3853 return;
3854 }
3855
Avi Kivity30bd0c42010-11-01 23:20:48 +02003856 if (vmcs_read32(GUEST_INTERRUPTIBILITY_INFO) & GUEST_INTR_STATE_STI) {
3857 enable_irq_window(vcpu);
3858 return;
3859 }
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003860 cpu_based_vm_exec_control = vmcs_read32(CPU_BASED_VM_EXEC_CONTROL);
3861 cpu_based_vm_exec_control |= CPU_BASED_VIRTUAL_NMI_PENDING;
3862 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, cpu_based_vm_exec_control);
3863}
3864
Gleb Natapov66fd3f72009-05-11 13:35:50 +03003865static void vmx_inject_irq(struct kvm_vcpu *vcpu)
Eddie Dong85f455f2007-07-06 12:20:49 +03003866{
Avi Kivity9c8cba32007-11-22 11:42:59 +02003867 struct vcpu_vmx *vmx = to_vmx(vcpu);
Gleb Natapov66fd3f72009-05-11 13:35:50 +03003868 uint32_t intr;
3869 int irq = vcpu->arch.interrupt.nr;
Avi Kivity9c8cba32007-11-22 11:42:59 +02003870
Marcelo Tosatti229456f2009-06-17 09:22:14 -03003871 trace_kvm_inj_virq(irq);
Feng (Eric) Liu2714d1d2008-04-10 15:31:10 -04003872
Avi Kivityfa89a812008-09-01 15:57:51 +03003873 ++vcpu->stat.irq_injections;
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003874 if (vmx->rmode.vm86_active) {
Serge E. Hallyn71f98332011-04-13 09:12:54 -05003875 int inc_eip = 0;
3876 if (vcpu->arch.interrupt.soft)
3877 inc_eip = vcpu->arch.event_exit_inst_len;
3878 if (kvm_inject_realmode_interrupt(vcpu, irq, inc_eip) != EMULATE_DONE)
Mohammed Gamala92601b2010-09-19 14:34:07 +02003879 kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
Eddie Dong85f455f2007-07-06 12:20:49 +03003880 return;
3881 }
Gleb Natapov66fd3f72009-05-11 13:35:50 +03003882 intr = irq | INTR_INFO_VALID_MASK;
3883 if (vcpu->arch.interrupt.soft) {
3884 intr |= INTR_TYPE_SOFT_INTR;
3885 vmcs_write32(VM_ENTRY_INSTRUCTION_LEN,
3886 vmx->vcpu.arch.event_exit_inst_len);
3887 } else
3888 intr |= INTR_TYPE_EXT_INTR;
3889 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD, intr);
Anthony Liguori443381a2010-12-06 10:53:38 -06003890 vmx_clear_hlt(vcpu);
Eddie Dong85f455f2007-07-06 12:20:49 +03003891}
3892
Sheng Yangf08864b2008-05-15 18:23:25 +08003893static void vmx_inject_nmi(struct kvm_vcpu *vcpu)
3894{
Jan Kiszka66a5a342008-09-26 09:30:51 +02003895 struct vcpu_vmx *vmx = to_vmx(vcpu);
3896
Nadav Har'El0b6ac342011-05-25 23:13:36 +03003897 if (is_guest_mode(vcpu))
3898 return;
3899
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003900 if (!cpu_has_virtual_nmis()) {
3901 /*
3902 * Tracking the NMI-blocked state in software is built upon
3903 * finding the next open IRQ window. This, in turn, depends on
3904 * well-behaving guests: They have to keep IRQs disabled at
3905 * least as long as the NMI handler runs. Otherwise we may
3906 * cause NMI nesting, maybe breaking the guest. But as this is
3907 * highly unlikely, we can live with the residual risk.
3908 */
3909 vmx->soft_vnmi_blocked = 1;
3910 vmx->vnmi_blocked_time = 0;
3911 }
3912
Jan Kiszka487b3912008-09-26 09:30:56 +02003913 ++vcpu->stat.nmi_injections;
Avi Kivity9d58b932011-03-07 16:52:07 +02003914 vmx->nmi_known_unmasked = false;
Avi Kivity7ffd92c2009-06-09 14:10:45 +03003915 if (vmx->rmode.vm86_active) {
Serge E. Hallyn71f98332011-04-13 09:12:54 -05003916 if (kvm_inject_realmode_interrupt(vcpu, NMI_VECTOR, 0) != EMULATE_DONE)
Mohammed Gamala92601b2010-09-19 14:34:07 +02003917 kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
Jan Kiszka66a5a342008-09-26 09:30:51 +02003918 return;
3919 }
Sheng Yangf08864b2008-05-15 18:23:25 +08003920 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD,
3921 INTR_TYPE_NMI_INTR | INTR_INFO_VALID_MASK | NMI_VECTOR);
Anthony Liguori443381a2010-12-06 10:53:38 -06003922 vmx_clear_hlt(vcpu);
Sheng Yangf08864b2008-05-15 18:23:25 +08003923}
3924
Gleb Natapovc4282df2009-04-21 17:45:07 +03003925static int vmx_nmi_allowed(struct kvm_vcpu *vcpu)
Jan Kiszka33f089c2008-09-26 09:30:49 +02003926{
Jan Kiszka3b86cd92008-09-26 09:30:57 +02003927 if (!cpu_has_virtual_nmis() && to_vmx(vcpu)->soft_vnmi_blocked)
Gleb Natapovc4282df2009-04-21 17:45:07 +03003928 return 0;
Jan Kiszka33f089c2008-09-26 09:30:49 +02003929
Gleb Natapovc4282df2009-04-21 17:45:07 +03003930 return !(vmcs_read32(GUEST_INTERRUPTIBILITY_INFO) &
Avi Kivity30bd0c42010-11-01 23:20:48 +02003931 (GUEST_INTR_STATE_MOV_SS | GUEST_INTR_STATE_STI
3932 | GUEST_INTR_STATE_NMI));
Jan Kiszka33f089c2008-09-26 09:30:49 +02003933}
3934
Jan Kiszka3cfc3092009-11-12 01:04:25 +01003935static bool vmx_get_nmi_mask(struct kvm_vcpu *vcpu)
3936{
3937 if (!cpu_has_virtual_nmis())
3938 return to_vmx(vcpu)->soft_vnmi_blocked;
Avi Kivity9d58b932011-03-07 16:52:07 +02003939 if (to_vmx(vcpu)->nmi_known_unmasked)
3940 return false;
Avi Kivityc332c832010-05-04 12:24:12 +03003941 return vmcs_read32(GUEST_INTERRUPTIBILITY_INFO) & GUEST_INTR_STATE_NMI;
Jan Kiszka3cfc3092009-11-12 01:04:25 +01003942}
3943
3944static void vmx_set_nmi_mask(struct kvm_vcpu *vcpu, bool masked)
3945{
3946 struct vcpu_vmx *vmx = to_vmx(vcpu);
3947
3948 if (!cpu_has_virtual_nmis()) {
3949 if (vmx->soft_vnmi_blocked != masked) {
3950 vmx->soft_vnmi_blocked = masked;
3951 vmx->vnmi_blocked_time = 0;
3952 }
3953 } else {
Avi Kivity9d58b932011-03-07 16:52:07 +02003954 vmx->nmi_known_unmasked = !masked;
Jan Kiszka3cfc3092009-11-12 01:04:25 +01003955 if (masked)
3956 vmcs_set_bits(GUEST_INTERRUPTIBILITY_INFO,
3957 GUEST_INTR_STATE_NMI);
3958 else
3959 vmcs_clear_bits(GUEST_INTERRUPTIBILITY_INFO,
3960 GUEST_INTR_STATE_NMI);
3961 }
3962}
3963
Gleb Natapov78646122009-03-23 12:12:11 +02003964static int vmx_interrupt_allowed(struct kvm_vcpu *vcpu)
3965{
Nadav Har'Elb6f12502011-05-25 23:13:06 +03003966 if (is_guest_mode(vcpu) && nested_exit_on_intr(vcpu)) {
3967 struct vmcs12 *vmcs12;
3968 if (to_vmx(vcpu)->nested.nested_run_pending)
3969 return 0;
3970 nested_vmx_vmexit(vcpu);
3971 vmcs12 = get_vmcs12(vcpu);
3972 vmcs12->vm_exit_reason = EXIT_REASON_EXTERNAL_INTERRUPT;
3973 vmcs12->vm_exit_intr_info = 0;
3974 /* fall through to normal code, but now in L1, not L2 */
3975 }
3976
Gleb Natapovc4282df2009-04-21 17:45:07 +03003977 return (vmcs_readl(GUEST_RFLAGS) & X86_EFLAGS_IF) &&
3978 !(vmcs_read32(GUEST_INTERRUPTIBILITY_INFO) &
3979 (GUEST_INTR_STATE_STI | GUEST_INTR_STATE_MOV_SS));
Gleb Natapov78646122009-03-23 12:12:11 +02003980}
3981
Izik Eiduscbc94022007-10-25 00:29:55 +02003982static int vmx_set_tss_addr(struct kvm *kvm, unsigned int addr)
3983{
3984 int ret;
3985 struct kvm_userspace_memory_region tss_mem = {
Sheng Yang6fe63972008-10-16 17:30:58 +08003986 .slot = TSS_PRIVATE_MEMSLOT,
Izik Eiduscbc94022007-10-25 00:29:55 +02003987 .guest_phys_addr = addr,
3988 .memory_size = PAGE_SIZE * 3,
3989 .flags = 0,
3990 };
3991
3992 ret = kvm_set_memory_region(kvm, &tss_mem, 0);
3993 if (ret)
3994 return ret;
Zhang Xiantaobfc6d222007-12-14 10:20:16 +08003995 kvm->arch.tss_addr = addr;
Gleb Natapov93ea5382011-02-21 12:07:59 +02003996 if (!init_rmode_tss(kvm))
3997 return -ENOMEM;
3998
Izik Eiduscbc94022007-10-25 00:29:55 +02003999 return 0;
4000}
4001
Avi Kivity6aa8b732006-12-10 02:21:36 -08004002static int handle_rmode_exception(struct kvm_vcpu *vcpu,
4003 int vec, u32 err_code)
4004{
Nitin A Kambleb3f37702007-05-17 15:50:34 +03004005 /*
4006 * Instruction with address size override prefix opcode 0x67
4007 * Cause the #SS fault with 0 error code in VM86 mode.
4008 */
4009 if (((vec == GP_VECTOR) || (vec == SS_VECTOR)) && err_code == 0)
Andre Przywara51d8b662010-12-21 11:12:02 +01004010 if (emulate_instruction(vcpu, 0) == EMULATE_DONE)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004011 return 1;
Jan Kiszka77ab6db2008-07-14 12:28:51 +02004012 /*
4013 * Forward all other exceptions that are valid in real mode.
4014 * FIXME: Breaks guest debugging in real mode, needs to be fixed with
4015 * the required debugging infrastructure rework.
4016 */
4017 switch (vec) {
Jan Kiszka77ab6db2008-07-14 12:28:51 +02004018 case DB_VECTOR:
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004019 if (vcpu->guest_debug &
4020 (KVM_GUESTDBG_SINGLESTEP | KVM_GUESTDBG_USE_HW_BP))
4021 return 0;
4022 kvm_queue_exception(vcpu, vec);
4023 return 1;
Jan Kiszka77ab6db2008-07-14 12:28:51 +02004024 case BP_VECTOR:
Jan Kiszkac573cd22010-02-23 17:47:53 +01004025 /*
4026 * Update instruction length as we may reinject the exception
4027 * from user space while in guest debugging mode.
4028 */
4029 to_vmx(vcpu)->vcpu.arch.event_exit_inst_len =
4030 vmcs_read32(VM_EXIT_INSTRUCTION_LEN);
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004031 if (vcpu->guest_debug & KVM_GUESTDBG_USE_SW_BP)
4032 return 0;
4033 /* fall through */
4034 case DE_VECTOR:
Jan Kiszka77ab6db2008-07-14 12:28:51 +02004035 case OF_VECTOR:
4036 case BR_VECTOR:
4037 case UD_VECTOR:
4038 case DF_VECTOR:
4039 case SS_VECTOR:
4040 case GP_VECTOR:
4041 case MF_VECTOR:
4042 kvm_queue_exception(vcpu, vec);
4043 return 1;
4044 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004045 return 0;
4046}
4047
Andi Kleena0861c02009-06-08 17:37:09 +08004048/*
4049 * Trigger machine check on the host. We assume all the MSRs are already set up
4050 * by the CPU and that we still run on the same CPU as the MCE occurred on.
4051 * We pass a fake environment to the machine check handler because we want
4052 * the guest to be always treated like user space, no matter what context
4053 * it used internally.
4054 */
4055static void kvm_machine_check(void)
4056{
4057#if defined(CONFIG_X86_MCE) && defined(CONFIG_X86_64)
4058 struct pt_regs regs = {
4059 .cs = 3, /* Fake ring 3 no matter what the guest ran on */
4060 .flags = X86_EFLAGS_IF,
4061 };
4062
4063 do_machine_check(&regs, 0);
4064#endif
4065}
4066
Avi Kivity851ba692009-08-24 11:10:17 +03004067static int handle_machine_check(struct kvm_vcpu *vcpu)
Andi Kleena0861c02009-06-08 17:37:09 +08004068{
4069 /* already handled by vcpu_run */
4070 return 1;
4071}
4072
Avi Kivity851ba692009-08-24 11:10:17 +03004073static int handle_exception(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004074{
Avi Kivity1155f762007-11-22 11:30:47 +02004075 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity851ba692009-08-24 11:10:17 +03004076 struct kvm_run *kvm_run = vcpu->run;
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004077 u32 intr_info, ex_no, error_code;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004078 unsigned long cr2, rip, dr6;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004079 u32 vect_info;
4080 enum emulation_result er;
4081
Avi Kivity1155f762007-11-22 11:30:47 +02004082 vect_info = vmx->idt_vectoring_info;
Avi Kivity88786472011-03-07 17:39:45 +02004083 intr_info = vmx->exit_intr_info;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004084
Andi Kleena0861c02009-06-08 17:37:09 +08004085 if (is_machine_check(intr_info))
Avi Kivity851ba692009-08-24 11:10:17 +03004086 return handle_machine_check(vcpu);
Andi Kleena0861c02009-06-08 17:37:09 +08004087
Avi Kivity6aa8b732006-12-10 02:21:36 -08004088 if ((vect_info & VECTORING_INFO_VALID_MASK) &&
Avi Kivity65ac7262009-11-04 11:59:01 +02004089 !is_page_fault(intr_info)) {
4090 vcpu->run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
4091 vcpu->run->internal.suberror = KVM_INTERNAL_ERROR_SIMUL_EX;
4092 vcpu->run->internal.ndata = 2;
4093 vcpu->run->internal.data[0] = vect_info;
4094 vcpu->run->internal.data[1] = intr_info;
4095 return 0;
4096 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004097
Jan Kiszkae4a41882008-09-26 09:30:46 +02004098 if ((intr_info & INTR_INFO_INTR_TYPE_MASK) == INTR_TYPE_NMI_INTR)
Avi Kivity1b6269d2007-10-09 12:12:19 +02004099 return 1; /* already handled by vmx_vcpu_run() */
Anthony Liguori2ab455c2007-04-27 09:29:49 +03004100
4101 if (is_no_device(intr_info)) {
Avi Kivity5fd86fc2007-05-02 20:40:00 +03004102 vmx_fpu_activate(vcpu);
Anthony Liguori2ab455c2007-04-27 09:29:49 +03004103 return 1;
4104 }
4105
Anthony Liguori7aa81cc2007-09-17 14:57:50 -05004106 if (is_invalid_opcode(intr_info)) {
Andre Przywara51d8b662010-12-21 11:12:02 +01004107 er = emulate_instruction(vcpu, EMULTYPE_TRAP_UD);
Anthony Liguori7aa81cc2007-09-17 14:57:50 -05004108 if (er != EMULATE_DONE)
Avi Kivity7ee5d9402007-11-25 15:22:50 +02004109 kvm_queue_exception(vcpu, UD_VECTOR);
Anthony Liguori7aa81cc2007-09-17 14:57:50 -05004110 return 1;
4111 }
4112
Avi Kivity6aa8b732006-12-10 02:21:36 -08004113 error_code = 0;
Ryan Harper2e113842008-02-11 10:26:38 -06004114 if (intr_info & INTR_INFO_DELIVER_CODE_MASK)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004115 error_code = vmcs_read32(VM_EXIT_INTR_ERROR_CODE);
4116 if (is_page_fault(intr_info)) {
Sheng Yang14394422008-04-28 12:24:45 +08004117 /* EPT won't cause page fault directly */
Avi Kivity089d0342009-03-23 18:26:32 +02004118 if (enable_ept)
Sheng Yang14394422008-04-28 12:24:45 +08004119 BUG();
Avi Kivity6aa8b732006-12-10 02:21:36 -08004120 cr2 = vmcs_readl(EXIT_QUALIFICATION);
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004121 trace_kvm_page_fault(cr2, error_code);
4122
Gleb Natapov3298b752009-05-11 13:35:46 +03004123 if (kvm_event_needs_reinjection(vcpu))
Avi Kivity577bdc42008-07-19 08:57:05 +03004124 kvm_mmu_unprotect_page_virt(vcpu, cr2);
Andre Przywaradc25e892010-12-21 11:12:07 +01004125 return kvm_mmu_page_fault(vcpu, cr2, error_code, NULL, 0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004126 }
4127
Avi Kivity7ffd92c2009-06-09 14:10:45 +03004128 if (vmx->rmode.vm86_active &&
Avi Kivity6aa8b732006-12-10 02:21:36 -08004129 handle_rmode_exception(vcpu, intr_info & INTR_INFO_VECTOR_MASK,
Avi Kivity72d6e5a2007-06-05 16:15:51 +03004130 error_code)) {
Zhang Xiantaoad312c72007-12-13 23:50:52 +08004131 if (vcpu->arch.halt_request) {
4132 vcpu->arch.halt_request = 0;
Avi Kivity72d6e5a2007-06-05 16:15:51 +03004133 return kvm_emulate_halt(vcpu);
4134 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004135 return 1;
Avi Kivity72d6e5a2007-06-05 16:15:51 +03004136 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004137
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004138 ex_no = intr_info & INTR_INFO_VECTOR_MASK;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004139 switch (ex_no) {
4140 case DB_VECTOR:
4141 dr6 = vmcs_readl(EXIT_QUALIFICATION);
4142 if (!(vcpu->guest_debug &
4143 (KVM_GUESTDBG_SINGLESTEP | KVM_GUESTDBG_USE_HW_BP))) {
4144 vcpu->arch.dr6 = dr6 | DR6_FIXED_1;
4145 kvm_queue_exception(vcpu, DB_VECTOR);
4146 return 1;
4147 }
4148 kvm_run->debug.arch.dr6 = dr6 | DR6_FIXED_1;
4149 kvm_run->debug.arch.dr7 = vmcs_readl(GUEST_DR7);
4150 /* fall through */
4151 case BP_VECTOR:
Jan Kiszkac573cd22010-02-23 17:47:53 +01004152 /*
4153 * Update instruction length as we may reinject #BP from
4154 * user space while in guest debugging mode. Reading it for
4155 * #DB as well causes no harm, it is not used in that case.
4156 */
4157 vmx->vcpu.arch.event_exit_inst_len =
4158 vmcs_read32(VM_EXIT_INSTRUCTION_LEN);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004159 kvm_run->exit_reason = KVM_EXIT_DEBUG;
Avi Kivity0a434bb2011-04-28 15:59:33 +03004160 rip = kvm_rip_read(vcpu);
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004161 kvm_run->debug.arch.pc = vmcs_readl(GUEST_CS_BASE) + rip;
4162 kvm_run->debug.arch.exception = ex_no;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004163 break;
4164 default:
Jan Kiszkad0bfb942008-12-15 13:52:10 +01004165 kvm_run->exit_reason = KVM_EXIT_EXCEPTION;
4166 kvm_run->ex.exception = ex_no;
4167 kvm_run->ex.error_code = error_code;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004168 break;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004169 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004170 return 0;
4171}
4172
Avi Kivity851ba692009-08-24 11:10:17 +03004173static int handle_external_interrupt(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004174{
Avi Kivity1165f5f2007-04-19 17:27:43 +03004175 ++vcpu->stat.irq_exits;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004176 return 1;
4177}
4178
Avi Kivity851ba692009-08-24 11:10:17 +03004179static int handle_triple_fault(struct kvm_vcpu *vcpu)
Avi Kivity988ad742007-02-12 00:54:36 -08004180{
Avi Kivity851ba692009-08-24 11:10:17 +03004181 vcpu->run->exit_reason = KVM_EXIT_SHUTDOWN;
Avi Kivity988ad742007-02-12 00:54:36 -08004182 return 0;
4183}
Avi Kivity6aa8b732006-12-10 02:21:36 -08004184
Avi Kivity851ba692009-08-24 11:10:17 +03004185static int handle_io(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004186{
He, Qingbfdaab02007-09-12 14:18:28 +08004187 unsigned long exit_qualification;
Jan Kiszka34c33d12009-02-08 13:28:15 +01004188 int size, in, string;
Avi Kivity039576c2007-03-20 12:46:50 +02004189 unsigned port;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004190
He, Qingbfdaab02007-09-12 14:18:28 +08004191 exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
Avi Kivity039576c2007-03-20 12:46:50 +02004192 string = (exit_qualification & 16) != 0;
Laurent Viviere70669a2007-08-05 10:36:40 +03004193 in = (exit_qualification & 8) != 0;
Laurent Viviere70669a2007-08-05 10:36:40 +03004194
Gleb Natapovcf8f70b2010-03-18 15:20:23 +02004195 ++vcpu->stat.io_exits;
4196
4197 if (string || in)
Andre Przywara51d8b662010-12-21 11:12:02 +01004198 return emulate_instruction(vcpu, 0) == EMULATE_DONE;
Gleb Natapovcf8f70b2010-03-18 15:20:23 +02004199
4200 port = exit_qualification >> 16;
4201 size = (exit_qualification & 7) + 1;
Guillaume Thouvenine93f36b2008-10-28 10:51:30 +01004202 skip_emulated_instruction(vcpu);
Gleb Natapovcf8f70b2010-03-18 15:20:23 +02004203
4204 return kvm_fast_pio_out(vcpu, size, port);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004205}
4206
Ingo Molnar102d8322007-02-19 14:37:47 +02004207static void
4208vmx_patch_hypercall(struct kvm_vcpu *vcpu, unsigned char *hypercall)
4209{
4210 /*
4211 * Patch in the VMCALL instruction:
4212 */
4213 hypercall[0] = 0x0f;
4214 hypercall[1] = 0x01;
4215 hypercall[2] = 0xc1;
Ingo Molnar102d8322007-02-19 14:37:47 +02004216}
4217
Nadav Har'Eleeadf9e2011-05-25 23:14:38 +03004218/* called to set cr0 as approriate for a mov-to-cr0 exit. */
4219static int handle_set_cr0(struct kvm_vcpu *vcpu, unsigned long val)
4220{
4221 if (to_vmx(vcpu)->nested.vmxon &&
4222 ((val & VMXON_CR0_ALWAYSON) != VMXON_CR0_ALWAYSON))
4223 return 1;
4224
4225 if (is_guest_mode(vcpu)) {
4226 /*
4227 * We get here when L2 changed cr0 in a way that did not change
4228 * any of L1's shadowed bits (see nested_vmx_exit_handled_cr),
4229 * but did change L0 shadowed bits. This can currently happen
4230 * with the TS bit: L0 may want to leave TS on (for lazy fpu
4231 * loading) while pretending to allow the guest to change it.
4232 */
4233 if (kvm_set_cr0(vcpu, (val & vcpu->arch.cr0_guest_owned_bits) |
4234 (vcpu->arch.cr0 & ~vcpu->arch.cr0_guest_owned_bits)))
4235 return 1;
4236 vmcs_writel(CR0_READ_SHADOW, val);
4237 return 0;
4238 } else
4239 return kvm_set_cr0(vcpu, val);
4240}
4241
4242static int handle_set_cr4(struct kvm_vcpu *vcpu, unsigned long val)
4243{
4244 if (is_guest_mode(vcpu)) {
4245 if (kvm_set_cr4(vcpu, (val & vcpu->arch.cr4_guest_owned_bits) |
4246 (vcpu->arch.cr4 & ~vcpu->arch.cr4_guest_owned_bits)))
4247 return 1;
4248 vmcs_writel(CR4_READ_SHADOW, val);
4249 return 0;
4250 } else
4251 return kvm_set_cr4(vcpu, val);
4252}
4253
4254/* called to set cr0 as approriate for clts instruction exit. */
4255static void handle_clts(struct kvm_vcpu *vcpu)
4256{
4257 if (is_guest_mode(vcpu)) {
4258 /*
4259 * We get here when L2 did CLTS, and L1 didn't shadow CR0.TS
4260 * but we did (!fpu_active). We need to keep GUEST_CR0.TS on,
4261 * just pretend it's off (also in arch.cr0 for fpu_activate).
4262 */
4263 vmcs_writel(CR0_READ_SHADOW,
4264 vmcs_readl(CR0_READ_SHADOW) & ~X86_CR0_TS);
4265 vcpu->arch.cr0 &= ~X86_CR0_TS;
4266 } else
4267 vmx_set_cr0(vcpu, kvm_read_cr0_bits(vcpu, ~X86_CR0_TS));
4268}
4269
Avi Kivity851ba692009-08-24 11:10:17 +03004270static int handle_cr(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004271{
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004272 unsigned long exit_qualification, val;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004273 int cr;
4274 int reg;
Avi Kivity49a9b072010-06-10 17:02:14 +03004275 int err;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004276
He, Qingbfdaab02007-09-12 14:18:28 +08004277 exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004278 cr = exit_qualification & 15;
4279 reg = (exit_qualification >> 8) & 15;
4280 switch ((exit_qualification >> 4) & 3) {
4281 case 0: /* mov to cr */
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004282 val = kvm_register_read(vcpu, reg);
4283 trace_kvm_cr_write(cr, val);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004284 switch (cr) {
4285 case 0:
Nadav Har'Eleeadf9e2011-05-25 23:14:38 +03004286 err = handle_set_cr0(vcpu, val);
Andre Przywaradb8fcef2010-12-21 11:12:01 +01004287 kvm_complete_insn_gp(vcpu, err);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004288 return 1;
4289 case 3:
Avi Kivity23902182010-06-10 17:02:16 +03004290 err = kvm_set_cr3(vcpu, val);
Andre Przywaradb8fcef2010-12-21 11:12:01 +01004291 kvm_complete_insn_gp(vcpu, err);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004292 return 1;
4293 case 4:
Nadav Har'Eleeadf9e2011-05-25 23:14:38 +03004294 err = handle_set_cr4(vcpu, val);
Andre Przywaradb8fcef2010-12-21 11:12:01 +01004295 kvm_complete_insn_gp(vcpu, err);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004296 return 1;
Gleb Natapov0a5fff192009-04-21 17:45:06 +03004297 case 8: {
4298 u8 cr8_prev = kvm_get_cr8(vcpu);
4299 u8 cr8 = kvm_register_read(vcpu, reg);
Andre Przywaraeea1cff2010-12-21 11:12:00 +01004300 err = kvm_set_cr8(vcpu, cr8);
Andre Przywaradb8fcef2010-12-21 11:12:01 +01004301 kvm_complete_insn_gp(vcpu, err);
Gleb Natapov0a5fff192009-04-21 17:45:06 +03004302 if (irqchip_in_kernel(vcpu->kvm))
4303 return 1;
4304 if (cr8_prev <= cr8)
4305 return 1;
Avi Kivity851ba692009-08-24 11:10:17 +03004306 vcpu->run->exit_reason = KVM_EXIT_SET_TPR;
Gleb Natapov0a5fff192009-04-21 17:45:06 +03004307 return 0;
4308 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004309 };
4310 break;
Anthony Liguori25c4c272007-04-27 09:29:21 +03004311 case 2: /* clts */
Nadav Har'Eleeadf9e2011-05-25 23:14:38 +03004312 handle_clts(vcpu);
Avi Kivity4d4ec082009-12-29 18:07:30 +02004313 trace_kvm_cr_write(0, kvm_read_cr0(vcpu));
Anthony Liguori25c4c272007-04-27 09:29:21 +03004314 skip_emulated_instruction(vcpu);
Avi Kivity6b52d182010-01-21 15:31:47 +02004315 vmx_fpu_activate(vcpu);
Anthony Liguori25c4c272007-04-27 09:29:21 +03004316 return 1;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004317 case 1: /*mov from cr*/
4318 switch (cr) {
4319 case 3:
Avi Kivity9f8fe502010-12-05 17:30:00 +02004320 val = kvm_read_cr3(vcpu);
4321 kvm_register_write(vcpu, reg, val);
4322 trace_kvm_cr_read(cr, val);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004323 skip_emulated_instruction(vcpu);
4324 return 1;
4325 case 8:
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004326 val = kvm_get_cr8(vcpu);
4327 kvm_register_write(vcpu, reg, val);
4328 trace_kvm_cr_read(cr, val);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004329 skip_emulated_instruction(vcpu);
4330 return 1;
4331 }
4332 break;
4333 case 3: /* lmsw */
Avi Kivitya1f83a72009-12-29 17:33:58 +02004334 val = (exit_qualification >> LMSW_SOURCE_DATA_SHIFT) & 0x0f;
Avi Kivity4d4ec082009-12-29 18:07:30 +02004335 trace_kvm_cr_write(0, (kvm_read_cr0(vcpu) & ~0xful) | val);
Avi Kivitya1f83a72009-12-29 17:33:58 +02004336 kvm_lmsw(vcpu, val);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004337
4338 skip_emulated_instruction(vcpu);
4339 return 1;
4340 default:
4341 break;
4342 }
Avi Kivity851ba692009-08-24 11:10:17 +03004343 vcpu->run->exit_reason = 0;
Rusty Russellf0242472007-08-01 10:48:02 +10004344 pr_unimpl(vcpu, "unhandled control register: op %d cr %d\n",
Avi Kivity6aa8b732006-12-10 02:21:36 -08004345 (int)(exit_qualification >> 4) & 3, cr);
4346 return 0;
4347}
4348
Avi Kivity851ba692009-08-24 11:10:17 +03004349static int handle_dr(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004350{
He, Qingbfdaab02007-09-12 14:18:28 +08004351 unsigned long exit_qualification;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004352 int dr, reg;
4353
Jan Kiszkaf2483412010-01-20 18:20:20 +01004354 /* Do not handle if the CPL > 0, will trigger GP on re-entry */
Avi Kivity0a79b002009-09-01 12:03:25 +03004355 if (!kvm_require_cpl(vcpu, 0))
4356 return 1;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004357 dr = vmcs_readl(GUEST_DR7);
4358 if (dr & DR7_GD) {
4359 /*
4360 * As the vm-exit takes precedence over the debug trap, we
4361 * need to emulate the latter, either for the host or the
4362 * guest debugging itself.
4363 */
4364 if (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP) {
Avi Kivity851ba692009-08-24 11:10:17 +03004365 vcpu->run->debug.arch.dr6 = vcpu->arch.dr6;
4366 vcpu->run->debug.arch.dr7 = dr;
4367 vcpu->run->debug.arch.pc =
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004368 vmcs_readl(GUEST_CS_BASE) +
4369 vmcs_readl(GUEST_RIP);
Avi Kivity851ba692009-08-24 11:10:17 +03004370 vcpu->run->debug.arch.exception = DB_VECTOR;
4371 vcpu->run->exit_reason = KVM_EXIT_DEBUG;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004372 return 0;
4373 } else {
4374 vcpu->arch.dr7 &= ~DR7_GD;
4375 vcpu->arch.dr6 |= DR6_BD;
4376 vmcs_writel(GUEST_DR7, vcpu->arch.dr7);
4377 kvm_queue_exception(vcpu, DB_VECTOR);
4378 return 1;
4379 }
4380 }
4381
He, Qingbfdaab02007-09-12 14:18:28 +08004382 exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004383 dr = exit_qualification & DEBUG_REG_ACCESS_NUM;
4384 reg = DEBUG_REG_ACCESS_REG(exit_qualification);
4385 if (exit_qualification & TYPE_MOV_FROM_DR) {
Gleb Natapov020df072010-04-13 10:05:23 +03004386 unsigned long val;
4387 if (!kvm_get_dr(vcpu, dr, &val))
4388 kvm_register_write(vcpu, reg, val);
4389 } else
4390 kvm_set_dr(vcpu, dr, vcpu->arch.regs[reg]);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004391 skip_emulated_instruction(vcpu);
4392 return 1;
4393}
4394
Gleb Natapov020df072010-04-13 10:05:23 +03004395static void vmx_set_dr7(struct kvm_vcpu *vcpu, unsigned long val)
4396{
4397 vmcs_writel(GUEST_DR7, val);
4398}
4399
Avi Kivity851ba692009-08-24 11:10:17 +03004400static int handle_cpuid(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004401{
Avi Kivity06465c52007-02-28 20:46:53 +02004402 kvm_emulate_cpuid(vcpu);
4403 return 1;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004404}
4405
Avi Kivity851ba692009-08-24 11:10:17 +03004406static int handle_rdmsr(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004407{
Zhang Xiantaoad312c72007-12-13 23:50:52 +08004408 u32 ecx = vcpu->arch.regs[VCPU_REGS_RCX];
Avi Kivity6aa8b732006-12-10 02:21:36 -08004409 u64 data;
4410
4411 if (vmx_get_msr(vcpu, ecx, &data)) {
Avi Kivity59200272010-01-25 19:47:02 +02004412 trace_kvm_msr_read_ex(ecx);
Avi Kivityc1a5d4f2007-11-25 14:12:03 +02004413 kvm_inject_gp(vcpu, 0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004414 return 1;
4415 }
4416
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004417 trace_kvm_msr_read(ecx, data);
Feng (Eric) Liu2714d1d2008-04-10 15:31:10 -04004418
Avi Kivity6aa8b732006-12-10 02:21:36 -08004419 /* FIXME: handling of bits 32:63 of rax, rdx */
Zhang Xiantaoad312c72007-12-13 23:50:52 +08004420 vcpu->arch.regs[VCPU_REGS_RAX] = data & -1u;
4421 vcpu->arch.regs[VCPU_REGS_RDX] = (data >> 32) & -1u;
Avi Kivity6aa8b732006-12-10 02:21:36 -08004422 skip_emulated_instruction(vcpu);
4423 return 1;
4424}
4425
Avi Kivity851ba692009-08-24 11:10:17 +03004426static int handle_wrmsr(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004427{
Zhang Xiantaoad312c72007-12-13 23:50:52 +08004428 u32 ecx = vcpu->arch.regs[VCPU_REGS_RCX];
4429 u64 data = (vcpu->arch.regs[VCPU_REGS_RAX] & -1u)
4430 | ((u64)(vcpu->arch.regs[VCPU_REGS_RDX] & -1u) << 32);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004431
4432 if (vmx_set_msr(vcpu, ecx, data) != 0) {
Avi Kivity59200272010-01-25 19:47:02 +02004433 trace_kvm_msr_write_ex(ecx, data);
Avi Kivityc1a5d4f2007-11-25 14:12:03 +02004434 kvm_inject_gp(vcpu, 0);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004435 return 1;
4436 }
4437
Avi Kivity59200272010-01-25 19:47:02 +02004438 trace_kvm_msr_write(ecx, data);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004439 skip_emulated_instruction(vcpu);
4440 return 1;
4441}
4442
Avi Kivity851ba692009-08-24 11:10:17 +03004443static int handle_tpr_below_threshold(struct kvm_vcpu *vcpu)
Yang, Sheng6e5d8652007-09-12 18:03:11 +08004444{
Avi Kivity3842d132010-07-27 12:30:24 +03004445 kvm_make_request(KVM_REQ_EVENT, vcpu);
Yang, Sheng6e5d8652007-09-12 18:03:11 +08004446 return 1;
4447}
4448
Avi Kivity851ba692009-08-24 11:10:17 +03004449static int handle_interrupt_window(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004450{
Eddie Dong85f455f2007-07-06 12:20:49 +03004451 u32 cpu_based_vm_exec_control;
4452
4453 /* clear pending irq */
4454 cpu_based_vm_exec_control = vmcs_read32(CPU_BASED_VM_EXEC_CONTROL);
4455 cpu_based_vm_exec_control &= ~CPU_BASED_VIRTUAL_INTR_PENDING;
4456 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, cpu_based_vm_exec_control);
Feng (Eric) Liu2714d1d2008-04-10 15:31:10 -04004457
Avi Kivity3842d132010-07-27 12:30:24 +03004458 kvm_make_request(KVM_REQ_EVENT, vcpu);
4459
Jan Kiszkaa26bf122008-09-26 09:30:45 +02004460 ++vcpu->stat.irq_window_exits;
Feng (Eric) Liu2714d1d2008-04-10 15:31:10 -04004461
Dor Laorc1150d82007-01-05 16:36:24 -08004462 /*
4463 * If the user space waits to inject interrupts, exit as soon as
4464 * possible
4465 */
Gleb Natapov80618232009-04-21 17:44:56 +03004466 if (!irqchip_in_kernel(vcpu->kvm) &&
Avi Kivity851ba692009-08-24 11:10:17 +03004467 vcpu->run->request_interrupt_window &&
Gleb Natapov80618232009-04-21 17:44:56 +03004468 !kvm_cpu_has_interrupt(vcpu)) {
Avi Kivity851ba692009-08-24 11:10:17 +03004469 vcpu->run->exit_reason = KVM_EXIT_IRQ_WINDOW_OPEN;
Dor Laorc1150d82007-01-05 16:36:24 -08004470 return 0;
4471 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08004472 return 1;
4473}
4474
Avi Kivity851ba692009-08-24 11:10:17 +03004475static int handle_halt(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08004476{
4477 skip_emulated_instruction(vcpu);
Avi Kivityd3bef152007-06-05 15:53:05 +03004478 return kvm_emulate_halt(vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08004479}
4480
Avi Kivity851ba692009-08-24 11:10:17 +03004481static int handle_vmcall(struct kvm_vcpu *vcpu)
Ingo Molnarc21415e2007-02-19 14:37:47 +02004482{
Dor Laor510043d2007-02-19 18:25:43 +02004483 skip_emulated_instruction(vcpu);
Anthony Liguori7aa81cc2007-09-17 14:57:50 -05004484 kvm_emulate_hypercall(vcpu);
4485 return 1;
Ingo Molnarc21415e2007-02-19 14:37:47 +02004486}
4487
Gleb Natapovec25d5e2010-11-01 15:35:01 +02004488static int handle_invd(struct kvm_vcpu *vcpu)
4489{
Andre Przywara51d8b662010-12-21 11:12:02 +01004490 return emulate_instruction(vcpu, 0) == EMULATE_DONE;
Gleb Natapovec25d5e2010-11-01 15:35:01 +02004491}
4492
Avi Kivity851ba692009-08-24 11:10:17 +03004493static int handle_invlpg(struct kvm_vcpu *vcpu)
Marcelo Tosattia7052892008-09-23 13:18:35 -03004494{
Sheng Yangf9c617f2009-03-25 10:08:52 +08004495 unsigned long exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
Marcelo Tosattia7052892008-09-23 13:18:35 -03004496
4497 kvm_mmu_invlpg(vcpu, exit_qualification);
4498 skip_emulated_instruction(vcpu);
4499 return 1;
4500}
4501
Avi Kivity851ba692009-08-24 11:10:17 +03004502static int handle_wbinvd(struct kvm_vcpu *vcpu)
Eddie Donge5edaa02007-11-11 12:28:35 +02004503{
4504 skip_emulated_instruction(vcpu);
Sheng Yangf5f48ee2010-06-30 12:25:15 +08004505 kvm_emulate_wbinvd(vcpu);
Eddie Donge5edaa02007-11-11 12:28:35 +02004506 return 1;
4507}
4508
Dexuan Cui2acf9232010-06-10 11:27:12 +08004509static int handle_xsetbv(struct kvm_vcpu *vcpu)
4510{
4511 u64 new_bv = kvm_read_edx_eax(vcpu);
4512 u32 index = kvm_register_read(vcpu, VCPU_REGS_RCX);
4513
4514 if (kvm_set_xcr(vcpu, index, new_bv) == 0)
4515 skip_emulated_instruction(vcpu);
4516 return 1;
4517}
4518
Avi Kivity851ba692009-08-24 11:10:17 +03004519static int handle_apic_access(struct kvm_vcpu *vcpu)
Sheng Yangf78e0e22007-10-29 09:40:42 +08004520{
Andre Przywara51d8b662010-12-21 11:12:02 +01004521 return emulate_instruction(vcpu, 0) == EMULATE_DONE;
Sheng Yangf78e0e22007-10-29 09:40:42 +08004522}
4523
Avi Kivity851ba692009-08-24 11:10:17 +03004524static int handle_task_switch(struct kvm_vcpu *vcpu)
Izik Eidus37817f22008-03-24 23:14:53 +02004525{
Jan Kiszka60637aa2008-09-26 09:30:47 +02004526 struct vcpu_vmx *vmx = to_vmx(vcpu);
Izik Eidus37817f22008-03-24 23:14:53 +02004527 unsigned long exit_qualification;
Jan Kiszkae269fb22010-04-14 15:51:09 +02004528 bool has_error_code = false;
4529 u32 error_code = 0;
Izik Eidus37817f22008-03-24 23:14:53 +02004530 u16 tss_selector;
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004531 int reason, type, idt_v;
4532
4533 idt_v = (vmx->idt_vectoring_info & VECTORING_INFO_VALID_MASK);
4534 type = (vmx->idt_vectoring_info & VECTORING_INFO_TYPE_MASK);
Izik Eidus37817f22008-03-24 23:14:53 +02004535
4536 exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
4537
4538 reason = (u32)exit_qualification >> 30;
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004539 if (reason == TASK_SWITCH_GATE && idt_v) {
4540 switch (type) {
4541 case INTR_TYPE_NMI_INTR:
4542 vcpu->arch.nmi_injected = false;
Avi Kivity654f06f2011-03-23 15:02:47 +02004543 vmx_set_nmi_mask(vcpu, true);
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004544 break;
4545 case INTR_TYPE_EXT_INTR:
Gleb Natapov66fd3f72009-05-11 13:35:50 +03004546 case INTR_TYPE_SOFT_INTR:
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004547 kvm_clear_interrupt_queue(vcpu);
4548 break;
4549 case INTR_TYPE_HARD_EXCEPTION:
Jan Kiszkae269fb22010-04-14 15:51:09 +02004550 if (vmx->idt_vectoring_info &
4551 VECTORING_INFO_DELIVER_CODE_MASK) {
4552 has_error_code = true;
4553 error_code =
4554 vmcs_read32(IDT_VECTORING_ERROR_CODE);
4555 }
4556 /* fall through */
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004557 case INTR_TYPE_SOFT_EXCEPTION:
4558 kvm_clear_exception_queue(vcpu);
4559 break;
4560 default:
4561 break;
4562 }
Jan Kiszka60637aa2008-09-26 09:30:47 +02004563 }
Izik Eidus37817f22008-03-24 23:14:53 +02004564 tss_selector = exit_qualification;
4565
Gleb Natapov64a7ec02009-03-30 16:03:29 +03004566 if (!idt_v || (type != INTR_TYPE_HARD_EXCEPTION &&
4567 type != INTR_TYPE_EXT_INTR &&
4568 type != INTR_TYPE_NMI_INTR))
4569 skip_emulated_instruction(vcpu);
4570
Gleb Natapovacb54512010-04-15 21:03:50 +03004571 if (kvm_task_switch(vcpu, tss_selector, reason,
4572 has_error_code, error_code) == EMULATE_FAIL) {
4573 vcpu->run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
4574 vcpu->run->internal.suberror = KVM_INTERNAL_ERROR_EMULATION;
4575 vcpu->run->internal.ndata = 0;
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004576 return 0;
Gleb Natapovacb54512010-04-15 21:03:50 +03004577 }
Jan Kiszka42dbaa52008-12-15 13:52:10 +01004578
4579 /* clear all local breakpoint enable flags */
4580 vmcs_writel(GUEST_DR7, vmcs_readl(GUEST_DR7) & ~55);
4581
4582 /*
4583 * TODO: What about debug traps on tss switch?
4584 * Are we supposed to inject them and update dr6?
4585 */
4586
4587 return 1;
Izik Eidus37817f22008-03-24 23:14:53 +02004588}
4589
Avi Kivity851ba692009-08-24 11:10:17 +03004590static int handle_ept_violation(struct kvm_vcpu *vcpu)
Sheng Yang14394422008-04-28 12:24:45 +08004591{
Sheng Yangf9c617f2009-03-25 10:08:52 +08004592 unsigned long exit_qualification;
Sheng Yang14394422008-04-28 12:24:45 +08004593 gpa_t gpa;
Sheng Yang14394422008-04-28 12:24:45 +08004594 int gla_validity;
Sheng Yang14394422008-04-28 12:24:45 +08004595
Sheng Yangf9c617f2009-03-25 10:08:52 +08004596 exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
Sheng Yang14394422008-04-28 12:24:45 +08004597
4598 if (exit_qualification & (1 << 6)) {
4599 printk(KERN_ERR "EPT: GPA exceeds GAW!\n");
Jan Kiszka7f582ab2009-07-22 23:53:01 +02004600 return -EINVAL;
Sheng Yang14394422008-04-28 12:24:45 +08004601 }
4602
4603 gla_validity = (exit_qualification >> 7) & 0x3;
4604 if (gla_validity != 0x3 && gla_validity != 0x1 && gla_validity != 0) {
4605 printk(KERN_ERR "EPT: Handling EPT violation failed!\n");
4606 printk(KERN_ERR "EPT: GPA: 0x%lx, GVA: 0x%lx\n",
4607 (long unsigned int)vmcs_read64(GUEST_PHYSICAL_ADDRESS),
Sheng Yangf9c617f2009-03-25 10:08:52 +08004608 vmcs_readl(GUEST_LINEAR_ADDRESS));
Sheng Yang14394422008-04-28 12:24:45 +08004609 printk(KERN_ERR "EPT: Exit qualification is 0x%lx\n",
4610 (long unsigned int)exit_qualification);
Avi Kivity851ba692009-08-24 11:10:17 +03004611 vcpu->run->exit_reason = KVM_EXIT_UNKNOWN;
4612 vcpu->run->hw.hardware_exit_reason = EXIT_REASON_EPT_VIOLATION;
Avi Kivity596ae892009-06-03 14:12:10 +03004613 return 0;
Sheng Yang14394422008-04-28 12:24:45 +08004614 }
4615
4616 gpa = vmcs_read64(GUEST_PHYSICAL_ADDRESS);
Marcelo Tosatti229456f2009-06-17 09:22:14 -03004617 trace_kvm_page_fault(gpa, exit_qualification);
Andre Przywaradc25e892010-12-21 11:12:07 +01004618 return kvm_mmu_page_fault(vcpu, gpa, exit_qualification & 0x3, NULL, 0);
Sheng Yang14394422008-04-28 12:24:45 +08004619}
4620
Marcelo Tosatti68f89402009-06-11 12:07:43 -03004621static u64 ept_rsvd_mask(u64 spte, int level)
4622{
4623 int i;
4624 u64 mask = 0;
4625
4626 for (i = 51; i > boot_cpu_data.x86_phys_bits; i--)
4627 mask |= (1ULL << i);
4628
4629 if (level > 2)
4630 /* bits 7:3 reserved */
4631 mask |= 0xf8;
4632 else if (level == 2) {
4633 if (spte & (1ULL << 7))
4634 /* 2MB ref, bits 20:12 reserved */
4635 mask |= 0x1ff000;
4636 else
4637 /* bits 6:3 reserved */
4638 mask |= 0x78;
4639 }
4640
4641 return mask;
4642}
4643
4644static void ept_misconfig_inspect_spte(struct kvm_vcpu *vcpu, u64 spte,
4645 int level)
4646{
4647 printk(KERN_ERR "%s: spte 0x%llx level %d\n", __func__, spte, level);
4648
4649 /* 010b (write-only) */
4650 WARN_ON((spte & 0x7) == 0x2);
4651
4652 /* 110b (write/execute) */
4653 WARN_ON((spte & 0x7) == 0x6);
4654
4655 /* 100b (execute-only) and value not supported by logical processor */
4656 if (!cpu_has_vmx_ept_execute_only())
4657 WARN_ON((spte & 0x7) == 0x4);
4658
4659 /* not 000b */
4660 if ((spte & 0x7)) {
4661 u64 rsvd_bits = spte & ept_rsvd_mask(spte, level);
4662
4663 if (rsvd_bits != 0) {
4664 printk(KERN_ERR "%s: rsvd_bits = 0x%llx\n",
4665 __func__, rsvd_bits);
4666 WARN_ON(1);
4667 }
4668
4669 if (level == 1 || (level == 2 && (spte & (1ULL << 7)))) {
4670 u64 ept_mem_type = (spte & 0x38) >> 3;
4671
4672 if (ept_mem_type == 2 || ept_mem_type == 3 ||
4673 ept_mem_type == 7) {
4674 printk(KERN_ERR "%s: ept_mem_type=0x%llx\n",
4675 __func__, ept_mem_type);
4676 WARN_ON(1);
4677 }
4678 }
4679 }
4680}
4681
Avi Kivity851ba692009-08-24 11:10:17 +03004682static int handle_ept_misconfig(struct kvm_vcpu *vcpu)
Marcelo Tosatti68f89402009-06-11 12:07:43 -03004683{
4684 u64 sptes[4];
Xiao Guangrongce88dec2011-07-12 03:33:44 +08004685 int nr_sptes, i, ret;
Marcelo Tosatti68f89402009-06-11 12:07:43 -03004686 gpa_t gpa;
4687
4688 gpa = vmcs_read64(GUEST_PHYSICAL_ADDRESS);
4689
Xiao Guangrongce88dec2011-07-12 03:33:44 +08004690 ret = handle_mmio_page_fault_common(vcpu, gpa, true);
4691 if (likely(ret == 1))
4692 return x86_emulate_instruction(vcpu, gpa, 0, NULL, 0) ==
4693 EMULATE_DONE;
4694 if (unlikely(!ret))
4695 return 1;
4696
4697 /* It is the real ept misconfig */
Marcelo Tosatti68f89402009-06-11 12:07:43 -03004698 printk(KERN_ERR "EPT: Misconfiguration.\n");
4699 printk(KERN_ERR "EPT: GPA: 0x%llx\n", gpa);
4700
4701 nr_sptes = kvm_mmu_get_spte_hierarchy(vcpu, gpa, sptes);
4702
4703 for (i = PT64_ROOT_LEVEL; i > PT64_ROOT_LEVEL - nr_sptes; --i)
4704 ept_misconfig_inspect_spte(vcpu, sptes[i-1], i);
4705
Avi Kivity851ba692009-08-24 11:10:17 +03004706 vcpu->run->exit_reason = KVM_EXIT_UNKNOWN;
4707 vcpu->run->hw.hardware_exit_reason = EXIT_REASON_EPT_MISCONFIG;
Marcelo Tosatti68f89402009-06-11 12:07:43 -03004708
4709 return 0;
4710}
4711
Avi Kivity851ba692009-08-24 11:10:17 +03004712static int handle_nmi_window(struct kvm_vcpu *vcpu)
Sheng Yangf08864b2008-05-15 18:23:25 +08004713{
4714 u32 cpu_based_vm_exec_control;
4715
4716 /* clear pending NMI */
4717 cpu_based_vm_exec_control = vmcs_read32(CPU_BASED_VM_EXEC_CONTROL);
4718 cpu_based_vm_exec_control &= ~CPU_BASED_VIRTUAL_NMI_PENDING;
4719 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, cpu_based_vm_exec_control);
4720 ++vcpu->stat.nmi_window_exits;
Avi Kivity3842d132010-07-27 12:30:24 +03004721 kvm_make_request(KVM_REQ_EVENT, vcpu);
Sheng Yangf08864b2008-05-15 18:23:25 +08004722
4723 return 1;
4724}
4725
Mohammed Gamal80ced182009-09-01 12:48:18 +02004726static int handle_invalid_guest_state(struct kvm_vcpu *vcpu)
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004727{
Avi Kivity8b3079a2009-01-05 12:10:54 +02004728 struct vcpu_vmx *vmx = to_vmx(vcpu);
4729 enum emulation_result err = EMULATE_DONE;
Mohammed Gamal80ced182009-09-01 12:48:18 +02004730 int ret = 1;
Avi Kivity49e9d552010-09-19 14:34:08 +02004731 u32 cpu_exec_ctrl;
4732 bool intr_window_requested;
4733
4734 cpu_exec_ctrl = vmcs_read32(CPU_BASED_VM_EXEC_CONTROL);
4735 intr_window_requested = cpu_exec_ctrl & CPU_BASED_VIRTUAL_INTR_PENDING;
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004736
4737 while (!guest_state_valid(vcpu)) {
Avi Kivity49e9d552010-09-19 14:34:08 +02004738 if (intr_window_requested
4739 && (kvm_get_rflags(&vmx->vcpu) & X86_EFLAGS_IF))
4740 return handle_interrupt_window(&vmx->vcpu);
4741
Andre Przywara51d8b662010-12-21 11:12:02 +01004742 err = emulate_instruction(vcpu, 0);
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004743
Mohammed Gamal80ced182009-09-01 12:48:18 +02004744 if (err == EMULATE_DO_MMIO) {
4745 ret = 0;
4746 goto out;
4747 }
Guillaume Thouvenin1d5a4d92008-10-29 09:39:42 +01004748
Gleb Natapov6d77dbf2010-05-10 11:16:56 +03004749 if (err != EMULATE_DONE)
4750 return 0;
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004751
4752 if (signal_pending(current))
Mohammed Gamal80ced182009-09-01 12:48:18 +02004753 goto out;
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004754 if (need_resched())
4755 schedule();
4756 }
4757
Mohammed Gamal80ced182009-09-01 12:48:18 +02004758 vmx->emulation_required = 0;
4759out:
4760 return ret;
Mohammed Gamalea953ef2008-08-17 16:47:05 +03004761}
4762
Avi Kivity6aa8b732006-12-10 02:21:36 -08004763/*
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08004764 * Indicate a busy-waiting vcpu in spinlock. We do not enable the PAUSE
4765 * exiting, so only get here on cpu with PAUSE-Loop-Exiting.
4766 */
Marcelo Tosatti9fb41ba2009-10-12 19:37:31 -03004767static int handle_pause(struct kvm_vcpu *vcpu)
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08004768{
4769 skip_emulated_instruction(vcpu);
4770 kvm_vcpu_on_spin(vcpu);
4771
4772 return 1;
4773}
4774
Sheng Yang59708672009-12-15 13:29:54 +08004775static int handle_invalid_op(struct kvm_vcpu *vcpu)
4776{
4777 kvm_queue_exception(vcpu, UD_VECTOR);
4778 return 1;
4779}
4780
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08004781/*
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +03004782 * To run an L2 guest, we need a vmcs02 based on the L1-specified vmcs12.
4783 * We could reuse a single VMCS for all the L2 guests, but we also want the
4784 * option to allocate a separate vmcs02 for each separate loaded vmcs12 - this
4785 * allows keeping them loaded on the processor, and in the future will allow
4786 * optimizations where prepare_vmcs02 doesn't need to set all the fields on
4787 * every entry if they never change.
4788 * So we keep, in vmx->nested.vmcs02_pool, a cache of size VMCS02_POOL_SIZE
4789 * (>=0) with a vmcs02 for each recently loaded vmcs12s, most recent first.
4790 *
4791 * The following functions allocate and free a vmcs02 in this pool.
4792 */
4793
4794/* Get a VMCS from the pool to use as vmcs02 for the current vmcs12. */
4795static struct loaded_vmcs *nested_get_current_vmcs02(struct vcpu_vmx *vmx)
4796{
4797 struct vmcs02_list *item;
4798 list_for_each_entry(item, &vmx->nested.vmcs02_pool, list)
4799 if (item->vmptr == vmx->nested.current_vmptr) {
4800 list_move(&item->list, &vmx->nested.vmcs02_pool);
4801 return &item->vmcs02;
4802 }
4803
4804 if (vmx->nested.vmcs02_num >= max(VMCS02_POOL_SIZE, 1)) {
4805 /* Recycle the least recently used VMCS. */
4806 item = list_entry(vmx->nested.vmcs02_pool.prev,
4807 struct vmcs02_list, list);
4808 item->vmptr = vmx->nested.current_vmptr;
4809 list_move(&item->list, &vmx->nested.vmcs02_pool);
4810 return &item->vmcs02;
4811 }
4812
4813 /* Create a new VMCS */
4814 item = (struct vmcs02_list *)
4815 kmalloc(sizeof(struct vmcs02_list), GFP_KERNEL);
4816 if (!item)
4817 return NULL;
4818 item->vmcs02.vmcs = alloc_vmcs();
4819 if (!item->vmcs02.vmcs) {
4820 kfree(item);
4821 return NULL;
4822 }
4823 loaded_vmcs_init(&item->vmcs02);
4824 item->vmptr = vmx->nested.current_vmptr;
4825 list_add(&(item->list), &(vmx->nested.vmcs02_pool));
4826 vmx->nested.vmcs02_num++;
4827 return &item->vmcs02;
4828}
4829
4830/* Free and remove from pool a vmcs02 saved for a vmcs12 (if there is one) */
4831static void nested_free_vmcs02(struct vcpu_vmx *vmx, gpa_t vmptr)
4832{
4833 struct vmcs02_list *item;
4834 list_for_each_entry(item, &vmx->nested.vmcs02_pool, list)
4835 if (item->vmptr == vmptr) {
4836 free_loaded_vmcs(&item->vmcs02);
4837 list_del(&item->list);
4838 kfree(item);
4839 vmx->nested.vmcs02_num--;
4840 return;
4841 }
4842}
4843
4844/*
4845 * Free all VMCSs saved for this vcpu, except the one pointed by
4846 * vmx->loaded_vmcs. These include the VMCSs in vmcs02_pool (except the one
4847 * currently used, if running L2), and vmcs01 when running L2.
4848 */
4849static void nested_free_all_saved_vmcss(struct vcpu_vmx *vmx)
4850{
4851 struct vmcs02_list *item, *n;
4852 list_for_each_entry_safe(item, n, &vmx->nested.vmcs02_pool, list) {
4853 if (vmx->loaded_vmcs != &item->vmcs02)
4854 free_loaded_vmcs(&item->vmcs02);
4855 list_del(&item->list);
4856 kfree(item);
4857 }
4858 vmx->nested.vmcs02_num = 0;
4859
4860 if (vmx->loaded_vmcs != &vmx->vmcs01)
4861 free_loaded_vmcs(&vmx->vmcs01);
4862}
4863
4864/*
Nadav Har'Elec378ae2011-05-25 23:02:54 +03004865 * Emulate the VMXON instruction.
4866 * Currently, we just remember that VMX is active, and do not save or even
4867 * inspect the argument to VMXON (the so-called "VMXON pointer") because we
4868 * do not currently need to store anything in that guest-allocated memory
4869 * region. Consequently, VMCLEAR and VMPTRLD also do not verify that the their
4870 * argument is different from the VMXON pointer (which the spec says they do).
4871 */
4872static int handle_vmon(struct kvm_vcpu *vcpu)
4873{
4874 struct kvm_segment cs;
4875 struct vcpu_vmx *vmx = to_vmx(vcpu);
4876
4877 /* The Intel VMX Instruction Reference lists a bunch of bits that
4878 * are prerequisite to running VMXON, most notably cr4.VMXE must be
4879 * set to 1 (see vmx_set_cr4() for when we allow the guest to set this).
4880 * Otherwise, we should fail with #UD. We test these now:
4881 */
4882 if (!kvm_read_cr4_bits(vcpu, X86_CR4_VMXE) ||
4883 !kvm_read_cr0_bits(vcpu, X86_CR0_PE) ||
4884 (vmx_get_rflags(vcpu) & X86_EFLAGS_VM)) {
4885 kvm_queue_exception(vcpu, UD_VECTOR);
4886 return 1;
4887 }
4888
4889 vmx_get_segment(vcpu, &cs, VCPU_SREG_CS);
4890 if (is_long_mode(vcpu) && !cs.l) {
4891 kvm_queue_exception(vcpu, UD_VECTOR);
4892 return 1;
4893 }
4894
4895 if (vmx_get_cpl(vcpu)) {
4896 kvm_inject_gp(vcpu, 0);
4897 return 1;
4898 }
4899
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +03004900 INIT_LIST_HEAD(&(vmx->nested.vmcs02_pool));
4901 vmx->nested.vmcs02_num = 0;
4902
Nadav Har'Elec378ae2011-05-25 23:02:54 +03004903 vmx->nested.vmxon = true;
4904
4905 skip_emulated_instruction(vcpu);
4906 return 1;
4907}
4908
4909/*
4910 * Intel's VMX Instruction Reference specifies a common set of prerequisites
4911 * for running VMX instructions (except VMXON, whose prerequisites are
4912 * slightly different). It also specifies what exception to inject otherwise.
4913 */
4914static int nested_vmx_check_permission(struct kvm_vcpu *vcpu)
4915{
4916 struct kvm_segment cs;
4917 struct vcpu_vmx *vmx = to_vmx(vcpu);
4918
4919 if (!vmx->nested.vmxon) {
4920 kvm_queue_exception(vcpu, UD_VECTOR);
4921 return 0;
4922 }
4923
4924 vmx_get_segment(vcpu, &cs, VCPU_SREG_CS);
4925 if ((vmx_get_rflags(vcpu) & X86_EFLAGS_VM) ||
4926 (is_long_mode(vcpu) && !cs.l)) {
4927 kvm_queue_exception(vcpu, UD_VECTOR);
4928 return 0;
4929 }
4930
4931 if (vmx_get_cpl(vcpu)) {
4932 kvm_inject_gp(vcpu, 0);
4933 return 0;
4934 }
4935
4936 return 1;
4937}
4938
4939/*
4940 * Free whatever needs to be freed from vmx->nested when L1 goes down, or
4941 * just stops using VMX.
4942 */
4943static void free_nested(struct vcpu_vmx *vmx)
4944{
4945 if (!vmx->nested.vmxon)
4946 return;
4947 vmx->nested.vmxon = false;
Nadav Har'Ela9d30f32011-05-25 23:03:55 +03004948 if (vmx->nested.current_vmptr != -1ull) {
4949 kunmap(vmx->nested.current_vmcs12_page);
4950 nested_release_page(vmx->nested.current_vmcs12_page);
4951 vmx->nested.current_vmptr = -1ull;
4952 vmx->nested.current_vmcs12 = NULL;
4953 }
Nadav Har'Elfe3ef052011-05-25 23:10:02 +03004954 /* Unpin physical memory we referred to in current vmcs02 */
4955 if (vmx->nested.apic_access_page) {
4956 nested_release_page(vmx->nested.apic_access_page);
4957 vmx->nested.apic_access_page = 0;
4958 }
Nadav Har'Elff2f6fe2011-05-25 23:05:27 +03004959
4960 nested_free_all_saved_vmcss(vmx);
Nadav Har'Elec378ae2011-05-25 23:02:54 +03004961}
4962
4963/* Emulate the VMXOFF instruction */
4964static int handle_vmoff(struct kvm_vcpu *vcpu)
4965{
4966 if (!nested_vmx_check_permission(vcpu))
4967 return 1;
4968 free_nested(to_vmx(vcpu));
4969 skip_emulated_instruction(vcpu);
4970 return 1;
4971}
4972
4973/*
Nadav Har'El064aea72011-05-25 23:04:56 +03004974 * Decode the memory-address operand of a vmx instruction, as recorded on an
4975 * exit caused by such an instruction (run by a guest hypervisor).
4976 * On success, returns 0. When the operand is invalid, returns 1 and throws
4977 * #UD or #GP.
4978 */
4979static int get_vmx_mem_address(struct kvm_vcpu *vcpu,
4980 unsigned long exit_qualification,
4981 u32 vmx_instruction_info, gva_t *ret)
4982{
4983 /*
4984 * According to Vol. 3B, "Information for VM Exits Due to Instruction
4985 * Execution", on an exit, vmx_instruction_info holds most of the
4986 * addressing components of the operand. Only the displacement part
4987 * is put in exit_qualification (see 3B, "Basic VM-Exit Information").
4988 * For how an actual address is calculated from all these components,
4989 * refer to Vol. 1, "Operand Addressing".
4990 */
4991 int scaling = vmx_instruction_info & 3;
4992 int addr_size = (vmx_instruction_info >> 7) & 7;
4993 bool is_reg = vmx_instruction_info & (1u << 10);
4994 int seg_reg = (vmx_instruction_info >> 15) & 7;
4995 int index_reg = (vmx_instruction_info >> 18) & 0xf;
4996 bool index_is_valid = !(vmx_instruction_info & (1u << 22));
4997 int base_reg = (vmx_instruction_info >> 23) & 0xf;
4998 bool base_is_valid = !(vmx_instruction_info & (1u << 27));
4999
5000 if (is_reg) {
5001 kvm_queue_exception(vcpu, UD_VECTOR);
5002 return 1;
5003 }
5004
5005 /* Addr = segment_base + offset */
5006 /* offset = base + [index * scale] + displacement */
5007 *ret = vmx_get_segment_base(vcpu, seg_reg);
5008 if (base_is_valid)
5009 *ret += kvm_register_read(vcpu, base_reg);
5010 if (index_is_valid)
5011 *ret += kvm_register_read(vcpu, index_reg)<<scaling;
5012 *ret += exit_qualification; /* holds the displacement */
5013
5014 if (addr_size == 1) /* 32 bit */
5015 *ret &= 0xffffffff;
5016
5017 /*
5018 * TODO: throw #GP (and return 1) in various cases that the VM*
5019 * instructions require it - e.g., offset beyond segment limit,
5020 * unusable or unreadable/unwritable segment, non-canonical 64-bit
5021 * address, and so on. Currently these are not checked.
5022 */
5023 return 0;
5024}
5025
5026/*
Nadav Har'El0140cae2011-05-25 23:06:28 +03005027 * The following 3 functions, nested_vmx_succeed()/failValid()/failInvalid(),
5028 * set the success or error code of an emulated VMX instruction, as specified
5029 * by Vol 2B, VMX Instruction Reference, "Conventions".
5030 */
5031static void nested_vmx_succeed(struct kvm_vcpu *vcpu)
5032{
5033 vmx_set_rflags(vcpu, vmx_get_rflags(vcpu)
5034 & ~(X86_EFLAGS_CF | X86_EFLAGS_PF | X86_EFLAGS_AF |
5035 X86_EFLAGS_ZF | X86_EFLAGS_SF | X86_EFLAGS_OF));
5036}
5037
5038static void nested_vmx_failInvalid(struct kvm_vcpu *vcpu)
5039{
5040 vmx_set_rflags(vcpu, (vmx_get_rflags(vcpu)
5041 & ~(X86_EFLAGS_PF | X86_EFLAGS_AF | X86_EFLAGS_ZF |
5042 X86_EFLAGS_SF | X86_EFLAGS_OF))
5043 | X86_EFLAGS_CF);
5044}
5045
5046static void nested_vmx_failValid(struct kvm_vcpu *vcpu,
5047 u32 vm_instruction_error)
5048{
5049 if (to_vmx(vcpu)->nested.current_vmptr == -1ull) {
5050 /*
5051 * failValid writes the error number to the current VMCS, which
5052 * can't be done there isn't a current VMCS.
5053 */
5054 nested_vmx_failInvalid(vcpu);
5055 return;
5056 }
5057 vmx_set_rflags(vcpu, (vmx_get_rflags(vcpu)
5058 & ~(X86_EFLAGS_CF | X86_EFLAGS_PF | X86_EFLAGS_AF |
5059 X86_EFLAGS_SF | X86_EFLAGS_OF))
5060 | X86_EFLAGS_ZF);
5061 get_vmcs12(vcpu)->vm_instruction_error = vm_instruction_error;
5062}
5063
Nadav Har'El27d6c862011-05-25 23:06:59 +03005064/* Emulate the VMCLEAR instruction */
5065static int handle_vmclear(struct kvm_vcpu *vcpu)
5066{
5067 struct vcpu_vmx *vmx = to_vmx(vcpu);
5068 gva_t gva;
5069 gpa_t vmptr;
5070 struct vmcs12 *vmcs12;
5071 struct page *page;
5072 struct x86_exception e;
5073
5074 if (!nested_vmx_check_permission(vcpu))
5075 return 1;
5076
5077 if (get_vmx_mem_address(vcpu, vmcs_readl(EXIT_QUALIFICATION),
5078 vmcs_read32(VMX_INSTRUCTION_INFO), &gva))
5079 return 1;
5080
5081 if (kvm_read_guest_virt(&vcpu->arch.emulate_ctxt, gva, &vmptr,
5082 sizeof(vmptr), &e)) {
5083 kvm_inject_page_fault(vcpu, &e);
5084 return 1;
5085 }
5086
5087 if (!IS_ALIGNED(vmptr, PAGE_SIZE)) {
5088 nested_vmx_failValid(vcpu, VMXERR_VMCLEAR_INVALID_ADDRESS);
5089 skip_emulated_instruction(vcpu);
5090 return 1;
5091 }
5092
5093 if (vmptr == vmx->nested.current_vmptr) {
5094 kunmap(vmx->nested.current_vmcs12_page);
5095 nested_release_page(vmx->nested.current_vmcs12_page);
5096 vmx->nested.current_vmptr = -1ull;
5097 vmx->nested.current_vmcs12 = NULL;
5098 }
5099
5100 page = nested_get_page(vcpu, vmptr);
5101 if (page == NULL) {
5102 /*
5103 * For accurate processor emulation, VMCLEAR beyond available
5104 * physical memory should do nothing at all. However, it is
5105 * possible that a nested vmx bug, not a guest hypervisor bug,
5106 * resulted in this case, so let's shut down before doing any
5107 * more damage:
5108 */
5109 kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
5110 return 1;
5111 }
5112 vmcs12 = kmap(page);
5113 vmcs12->launch_state = 0;
5114 kunmap(page);
5115 nested_release_page(page);
5116
5117 nested_free_vmcs02(vmx, vmptr);
5118
5119 skip_emulated_instruction(vcpu);
5120 nested_vmx_succeed(vcpu);
5121 return 1;
5122}
5123
Nadav Har'Elcd232ad2011-05-25 23:10:33 +03005124static int nested_vmx_run(struct kvm_vcpu *vcpu, bool launch);
5125
5126/* Emulate the VMLAUNCH instruction */
5127static int handle_vmlaunch(struct kvm_vcpu *vcpu)
5128{
5129 return nested_vmx_run(vcpu, true);
5130}
5131
5132/* Emulate the VMRESUME instruction */
5133static int handle_vmresume(struct kvm_vcpu *vcpu)
5134{
5135
5136 return nested_vmx_run(vcpu, false);
5137}
5138
Nadav Har'El49f705c2011-05-25 23:08:30 +03005139enum vmcs_field_type {
5140 VMCS_FIELD_TYPE_U16 = 0,
5141 VMCS_FIELD_TYPE_U64 = 1,
5142 VMCS_FIELD_TYPE_U32 = 2,
5143 VMCS_FIELD_TYPE_NATURAL_WIDTH = 3
5144};
5145
5146static inline int vmcs_field_type(unsigned long field)
5147{
5148 if (0x1 & field) /* the *_HIGH fields are all 32 bit */
5149 return VMCS_FIELD_TYPE_U32;
5150 return (field >> 13) & 0x3 ;
5151}
5152
5153static inline int vmcs_field_readonly(unsigned long field)
5154{
5155 return (((field >> 10) & 0x3) == 1);
5156}
5157
5158/*
5159 * Read a vmcs12 field. Since these can have varying lengths and we return
5160 * one type, we chose the biggest type (u64) and zero-extend the return value
5161 * to that size. Note that the caller, handle_vmread, might need to use only
5162 * some of the bits we return here (e.g., on 32-bit guests, only 32 bits of
5163 * 64-bit fields are to be returned).
5164 */
5165static inline bool vmcs12_read_any(struct kvm_vcpu *vcpu,
5166 unsigned long field, u64 *ret)
5167{
5168 short offset = vmcs_field_to_offset(field);
5169 char *p;
5170
5171 if (offset < 0)
5172 return 0;
5173
5174 p = ((char *)(get_vmcs12(vcpu))) + offset;
5175
5176 switch (vmcs_field_type(field)) {
5177 case VMCS_FIELD_TYPE_NATURAL_WIDTH:
5178 *ret = *((natural_width *)p);
5179 return 1;
5180 case VMCS_FIELD_TYPE_U16:
5181 *ret = *((u16 *)p);
5182 return 1;
5183 case VMCS_FIELD_TYPE_U32:
5184 *ret = *((u32 *)p);
5185 return 1;
5186 case VMCS_FIELD_TYPE_U64:
5187 *ret = *((u64 *)p);
5188 return 1;
5189 default:
5190 return 0; /* can never happen. */
5191 }
5192}
5193
5194/*
5195 * VMX instructions which assume a current vmcs12 (i.e., that VMPTRLD was
5196 * used before) all generate the same failure when it is missing.
5197 */
5198static int nested_vmx_check_vmcs12(struct kvm_vcpu *vcpu)
5199{
5200 struct vcpu_vmx *vmx = to_vmx(vcpu);
5201 if (vmx->nested.current_vmptr == -1ull) {
5202 nested_vmx_failInvalid(vcpu);
5203 skip_emulated_instruction(vcpu);
5204 return 0;
5205 }
5206 return 1;
5207}
5208
5209static int handle_vmread(struct kvm_vcpu *vcpu)
5210{
5211 unsigned long field;
5212 u64 field_value;
5213 unsigned long exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
5214 u32 vmx_instruction_info = vmcs_read32(VMX_INSTRUCTION_INFO);
5215 gva_t gva = 0;
5216
5217 if (!nested_vmx_check_permission(vcpu) ||
5218 !nested_vmx_check_vmcs12(vcpu))
5219 return 1;
5220
5221 /* Decode instruction info and find the field to read */
5222 field = kvm_register_read(vcpu, (((vmx_instruction_info) >> 28) & 0xf));
5223 /* Read the field, zero-extended to a u64 field_value */
5224 if (!vmcs12_read_any(vcpu, field, &field_value)) {
5225 nested_vmx_failValid(vcpu, VMXERR_UNSUPPORTED_VMCS_COMPONENT);
5226 skip_emulated_instruction(vcpu);
5227 return 1;
5228 }
5229 /*
5230 * Now copy part of this value to register or memory, as requested.
5231 * Note that the number of bits actually copied is 32 or 64 depending
5232 * on the guest's mode (32 or 64 bit), not on the given field's length.
5233 */
5234 if (vmx_instruction_info & (1u << 10)) {
5235 kvm_register_write(vcpu, (((vmx_instruction_info) >> 3) & 0xf),
5236 field_value);
5237 } else {
5238 if (get_vmx_mem_address(vcpu, exit_qualification,
5239 vmx_instruction_info, &gva))
5240 return 1;
5241 /* _system ok, as nested_vmx_check_permission verified cpl=0 */
5242 kvm_write_guest_virt_system(&vcpu->arch.emulate_ctxt, gva,
5243 &field_value, (is_long_mode(vcpu) ? 8 : 4), NULL);
5244 }
5245
5246 nested_vmx_succeed(vcpu);
5247 skip_emulated_instruction(vcpu);
5248 return 1;
5249}
5250
5251
5252static int handle_vmwrite(struct kvm_vcpu *vcpu)
5253{
5254 unsigned long field;
5255 gva_t gva;
5256 unsigned long exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
5257 u32 vmx_instruction_info = vmcs_read32(VMX_INSTRUCTION_INFO);
5258 char *p;
5259 short offset;
5260 /* The value to write might be 32 or 64 bits, depending on L1's long
5261 * mode, and eventually we need to write that into a field of several
5262 * possible lengths. The code below first zero-extends the value to 64
5263 * bit (field_value), and then copies only the approriate number of
5264 * bits into the vmcs12 field.
5265 */
5266 u64 field_value = 0;
5267 struct x86_exception e;
5268
5269 if (!nested_vmx_check_permission(vcpu) ||
5270 !nested_vmx_check_vmcs12(vcpu))
5271 return 1;
5272
5273 if (vmx_instruction_info & (1u << 10))
5274 field_value = kvm_register_read(vcpu,
5275 (((vmx_instruction_info) >> 3) & 0xf));
5276 else {
5277 if (get_vmx_mem_address(vcpu, exit_qualification,
5278 vmx_instruction_info, &gva))
5279 return 1;
5280 if (kvm_read_guest_virt(&vcpu->arch.emulate_ctxt, gva,
5281 &field_value, (is_long_mode(vcpu) ? 8 : 4), &e)) {
5282 kvm_inject_page_fault(vcpu, &e);
5283 return 1;
5284 }
5285 }
5286
5287
5288 field = kvm_register_read(vcpu, (((vmx_instruction_info) >> 28) & 0xf));
5289 if (vmcs_field_readonly(field)) {
5290 nested_vmx_failValid(vcpu,
5291 VMXERR_VMWRITE_READ_ONLY_VMCS_COMPONENT);
5292 skip_emulated_instruction(vcpu);
5293 return 1;
5294 }
5295
5296 offset = vmcs_field_to_offset(field);
5297 if (offset < 0) {
5298 nested_vmx_failValid(vcpu, VMXERR_UNSUPPORTED_VMCS_COMPONENT);
5299 skip_emulated_instruction(vcpu);
5300 return 1;
5301 }
5302 p = ((char *) get_vmcs12(vcpu)) + offset;
5303
5304 switch (vmcs_field_type(field)) {
5305 case VMCS_FIELD_TYPE_U16:
5306 *(u16 *)p = field_value;
5307 break;
5308 case VMCS_FIELD_TYPE_U32:
5309 *(u32 *)p = field_value;
5310 break;
5311 case VMCS_FIELD_TYPE_U64:
5312 *(u64 *)p = field_value;
5313 break;
5314 case VMCS_FIELD_TYPE_NATURAL_WIDTH:
5315 *(natural_width *)p = field_value;
5316 break;
5317 default:
5318 nested_vmx_failValid(vcpu, VMXERR_UNSUPPORTED_VMCS_COMPONENT);
5319 skip_emulated_instruction(vcpu);
5320 return 1;
5321 }
5322
5323 nested_vmx_succeed(vcpu);
5324 skip_emulated_instruction(vcpu);
5325 return 1;
5326}
5327
Nadav Har'El63846662011-05-25 23:07:29 +03005328/* Emulate the VMPTRLD instruction */
5329static int handle_vmptrld(struct kvm_vcpu *vcpu)
5330{
5331 struct vcpu_vmx *vmx = to_vmx(vcpu);
5332 gva_t gva;
5333 gpa_t vmptr;
5334 struct x86_exception e;
5335
5336 if (!nested_vmx_check_permission(vcpu))
5337 return 1;
5338
5339 if (get_vmx_mem_address(vcpu, vmcs_readl(EXIT_QUALIFICATION),
5340 vmcs_read32(VMX_INSTRUCTION_INFO), &gva))
5341 return 1;
5342
5343 if (kvm_read_guest_virt(&vcpu->arch.emulate_ctxt, gva, &vmptr,
5344 sizeof(vmptr), &e)) {
5345 kvm_inject_page_fault(vcpu, &e);
5346 return 1;
5347 }
5348
5349 if (!IS_ALIGNED(vmptr, PAGE_SIZE)) {
5350 nested_vmx_failValid(vcpu, VMXERR_VMPTRLD_INVALID_ADDRESS);
5351 skip_emulated_instruction(vcpu);
5352 return 1;
5353 }
5354
5355 if (vmx->nested.current_vmptr != vmptr) {
5356 struct vmcs12 *new_vmcs12;
5357 struct page *page;
5358 page = nested_get_page(vcpu, vmptr);
5359 if (page == NULL) {
5360 nested_vmx_failInvalid(vcpu);
5361 skip_emulated_instruction(vcpu);
5362 return 1;
5363 }
5364 new_vmcs12 = kmap(page);
5365 if (new_vmcs12->revision_id != VMCS12_REVISION) {
5366 kunmap(page);
5367 nested_release_page_clean(page);
5368 nested_vmx_failValid(vcpu,
5369 VMXERR_VMPTRLD_INCORRECT_VMCS_REVISION_ID);
5370 skip_emulated_instruction(vcpu);
5371 return 1;
5372 }
5373 if (vmx->nested.current_vmptr != -1ull) {
5374 kunmap(vmx->nested.current_vmcs12_page);
5375 nested_release_page(vmx->nested.current_vmcs12_page);
5376 }
5377
5378 vmx->nested.current_vmptr = vmptr;
5379 vmx->nested.current_vmcs12 = new_vmcs12;
5380 vmx->nested.current_vmcs12_page = page;
5381 }
5382
5383 nested_vmx_succeed(vcpu);
5384 skip_emulated_instruction(vcpu);
5385 return 1;
5386}
5387
Nadav Har'El6a4d7552011-05-25 23:08:00 +03005388/* Emulate the VMPTRST instruction */
5389static int handle_vmptrst(struct kvm_vcpu *vcpu)
5390{
5391 unsigned long exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
5392 u32 vmx_instruction_info = vmcs_read32(VMX_INSTRUCTION_INFO);
5393 gva_t vmcs_gva;
5394 struct x86_exception e;
5395
5396 if (!nested_vmx_check_permission(vcpu))
5397 return 1;
5398
5399 if (get_vmx_mem_address(vcpu, exit_qualification,
5400 vmx_instruction_info, &vmcs_gva))
5401 return 1;
5402 /* ok to use *_system, as nested_vmx_check_permission verified cpl=0 */
5403 if (kvm_write_guest_virt_system(&vcpu->arch.emulate_ctxt, vmcs_gva,
5404 (void *)&to_vmx(vcpu)->nested.current_vmptr,
5405 sizeof(u64), &e)) {
5406 kvm_inject_page_fault(vcpu, &e);
5407 return 1;
5408 }
5409 nested_vmx_succeed(vcpu);
5410 skip_emulated_instruction(vcpu);
5411 return 1;
5412}
5413
Nadav Har'El0140cae2011-05-25 23:06:28 +03005414/*
Avi Kivity6aa8b732006-12-10 02:21:36 -08005415 * The exit handlers return 1 if the exit was handled fully and guest execution
5416 * may resume. Otherwise they set the kvm_run parameter to indicate what needs
5417 * to be done to userspace and return 0.
5418 */
Avi Kivity851ba692009-08-24 11:10:17 +03005419static int (*kvm_vmx_exit_handlers[])(struct kvm_vcpu *vcpu) = {
Avi Kivity6aa8b732006-12-10 02:21:36 -08005420 [EXIT_REASON_EXCEPTION_NMI] = handle_exception,
5421 [EXIT_REASON_EXTERNAL_INTERRUPT] = handle_external_interrupt,
Avi Kivity988ad742007-02-12 00:54:36 -08005422 [EXIT_REASON_TRIPLE_FAULT] = handle_triple_fault,
Sheng Yangf08864b2008-05-15 18:23:25 +08005423 [EXIT_REASON_NMI_WINDOW] = handle_nmi_window,
Avi Kivity6aa8b732006-12-10 02:21:36 -08005424 [EXIT_REASON_IO_INSTRUCTION] = handle_io,
Avi Kivity6aa8b732006-12-10 02:21:36 -08005425 [EXIT_REASON_CR_ACCESS] = handle_cr,
5426 [EXIT_REASON_DR_ACCESS] = handle_dr,
5427 [EXIT_REASON_CPUID] = handle_cpuid,
5428 [EXIT_REASON_MSR_READ] = handle_rdmsr,
5429 [EXIT_REASON_MSR_WRITE] = handle_wrmsr,
5430 [EXIT_REASON_PENDING_INTERRUPT] = handle_interrupt_window,
5431 [EXIT_REASON_HLT] = handle_halt,
Gleb Natapovec25d5e2010-11-01 15:35:01 +02005432 [EXIT_REASON_INVD] = handle_invd,
Marcelo Tosattia7052892008-09-23 13:18:35 -03005433 [EXIT_REASON_INVLPG] = handle_invlpg,
Ingo Molnarc21415e2007-02-19 14:37:47 +02005434 [EXIT_REASON_VMCALL] = handle_vmcall,
Nadav Har'El27d6c862011-05-25 23:06:59 +03005435 [EXIT_REASON_VMCLEAR] = handle_vmclear,
Nadav Har'Elcd232ad2011-05-25 23:10:33 +03005436 [EXIT_REASON_VMLAUNCH] = handle_vmlaunch,
Nadav Har'El63846662011-05-25 23:07:29 +03005437 [EXIT_REASON_VMPTRLD] = handle_vmptrld,
Nadav Har'El6a4d7552011-05-25 23:08:00 +03005438 [EXIT_REASON_VMPTRST] = handle_vmptrst,
Nadav Har'El49f705c2011-05-25 23:08:30 +03005439 [EXIT_REASON_VMREAD] = handle_vmread,
Nadav Har'Elcd232ad2011-05-25 23:10:33 +03005440 [EXIT_REASON_VMRESUME] = handle_vmresume,
Nadav Har'El49f705c2011-05-25 23:08:30 +03005441 [EXIT_REASON_VMWRITE] = handle_vmwrite,
Nadav Har'Elec378ae2011-05-25 23:02:54 +03005442 [EXIT_REASON_VMOFF] = handle_vmoff,
5443 [EXIT_REASON_VMON] = handle_vmon,
Sheng Yangf78e0e22007-10-29 09:40:42 +08005444 [EXIT_REASON_TPR_BELOW_THRESHOLD] = handle_tpr_below_threshold,
5445 [EXIT_REASON_APIC_ACCESS] = handle_apic_access,
Eddie Donge5edaa02007-11-11 12:28:35 +02005446 [EXIT_REASON_WBINVD] = handle_wbinvd,
Dexuan Cui2acf9232010-06-10 11:27:12 +08005447 [EXIT_REASON_XSETBV] = handle_xsetbv,
Izik Eidus37817f22008-03-24 23:14:53 +02005448 [EXIT_REASON_TASK_SWITCH] = handle_task_switch,
Andi Kleena0861c02009-06-08 17:37:09 +08005449 [EXIT_REASON_MCE_DURING_VMENTRY] = handle_machine_check,
Marcelo Tosatti68f89402009-06-11 12:07:43 -03005450 [EXIT_REASON_EPT_VIOLATION] = handle_ept_violation,
5451 [EXIT_REASON_EPT_MISCONFIG] = handle_ept_misconfig,
Zhai, Edwin4b8d54f2009-10-09 18:03:20 +08005452 [EXIT_REASON_PAUSE_INSTRUCTION] = handle_pause,
Sheng Yang59708672009-12-15 13:29:54 +08005453 [EXIT_REASON_MWAIT_INSTRUCTION] = handle_invalid_op,
5454 [EXIT_REASON_MONITOR_INSTRUCTION] = handle_invalid_op,
Avi Kivity6aa8b732006-12-10 02:21:36 -08005455};
5456
5457static const int kvm_vmx_max_exit_handlers =
Robert P. J. Day50a34852007-06-03 13:35:29 -04005458 ARRAY_SIZE(kvm_vmx_exit_handlers);
Avi Kivity6aa8b732006-12-10 02:21:36 -08005459
Nadav Har'El644d7112011-05-25 23:12:35 +03005460/*
5461 * Return 1 if we should exit from L2 to L1 to handle an MSR access access,
5462 * rather than handle it ourselves in L0. I.e., check whether L1 expressed
5463 * disinterest in the current event (read or write a specific MSR) by using an
5464 * MSR bitmap. This may be the case even when L0 doesn't use MSR bitmaps.
5465 */
5466static bool nested_vmx_exit_handled_msr(struct kvm_vcpu *vcpu,
5467 struct vmcs12 *vmcs12, u32 exit_reason)
5468{
5469 u32 msr_index = vcpu->arch.regs[VCPU_REGS_RCX];
5470 gpa_t bitmap;
5471
5472 if (!nested_cpu_has(get_vmcs12(vcpu), CPU_BASED_USE_MSR_BITMAPS))
5473 return 1;
5474
5475 /*
5476 * The MSR_BITMAP page is divided into four 1024-byte bitmaps,
5477 * for the four combinations of read/write and low/high MSR numbers.
5478 * First we need to figure out which of the four to use:
5479 */
5480 bitmap = vmcs12->msr_bitmap;
5481 if (exit_reason == EXIT_REASON_MSR_WRITE)
5482 bitmap += 2048;
5483 if (msr_index >= 0xc0000000) {
5484 msr_index -= 0xc0000000;
5485 bitmap += 1024;
5486 }
5487
5488 /* Then read the msr_index'th bit from this bitmap: */
5489 if (msr_index < 1024*8) {
5490 unsigned char b;
5491 kvm_read_guest(vcpu->kvm, bitmap + msr_index/8, &b, 1);
5492 return 1 & (b >> (msr_index & 7));
5493 } else
5494 return 1; /* let L1 handle the wrong parameter */
5495}
5496
5497/*
5498 * Return 1 if we should exit from L2 to L1 to handle a CR access exit,
5499 * rather than handle it ourselves in L0. I.e., check if L1 wanted to
5500 * intercept (via guest_host_mask etc.) the current event.
5501 */
5502static bool nested_vmx_exit_handled_cr(struct kvm_vcpu *vcpu,
5503 struct vmcs12 *vmcs12)
5504{
5505 unsigned long exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
5506 int cr = exit_qualification & 15;
5507 int reg = (exit_qualification >> 8) & 15;
5508 unsigned long val = kvm_register_read(vcpu, reg);
5509
5510 switch ((exit_qualification >> 4) & 3) {
5511 case 0: /* mov to cr */
5512 switch (cr) {
5513 case 0:
5514 if (vmcs12->cr0_guest_host_mask &
5515 (val ^ vmcs12->cr0_read_shadow))
5516 return 1;
5517 break;
5518 case 3:
5519 if ((vmcs12->cr3_target_count >= 1 &&
5520 vmcs12->cr3_target_value0 == val) ||
5521 (vmcs12->cr3_target_count >= 2 &&
5522 vmcs12->cr3_target_value1 == val) ||
5523 (vmcs12->cr3_target_count >= 3 &&
5524 vmcs12->cr3_target_value2 == val) ||
5525 (vmcs12->cr3_target_count >= 4 &&
5526 vmcs12->cr3_target_value3 == val))
5527 return 0;
5528 if (nested_cpu_has(vmcs12, CPU_BASED_CR3_LOAD_EXITING))
5529 return 1;
5530 break;
5531 case 4:
5532 if (vmcs12->cr4_guest_host_mask &
5533 (vmcs12->cr4_read_shadow ^ val))
5534 return 1;
5535 break;
5536 case 8:
5537 if (nested_cpu_has(vmcs12, CPU_BASED_CR8_LOAD_EXITING))
5538 return 1;
5539 break;
5540 }
5541 break;
5542 case 2: /* clts */
5543 if ((vmcs12->cr0_guest_host_mask & X86_CR0_TS) &&
5544 (vmcs12->cr0_read_shadow & X86_CR0_TS))
5545 return 1;
5546 break;
5547 case 1: /* mov from cr */
5548 switch (cr) {
5549 case 3:
5550 if (vmcs12->cpu_based_vm_exec_control &
5551 CPU_BASED_CR3_STORE_EXITING)
5552 return 1;
5553 break;
5554 case 8:
5555 if (vmcs12->cpu_based_vm_exec_control &
5556 CPU_BASED_CR8_STORE_EXITING)
5557 return 1;
5558 break;
5559 }
5560 break;
5561 case 3: /* lmsw */
5562 /*
5563 * lmsw can change bits 1..3 of cr0, and only set bit 0 of
5564 * cr0. Other attempted changes are ignored, with no exit.
5565 */
5566 if (vmcs12->cr0_guest_host_mask & 0xe &
5567 (val ^ vmcs12->cr0_read_shadow))
5568 return 1;
5569 if ((vmcs12->cr0_guest_host_mask & 0x1) &&
5570 !(vmcs12->cr0_read_shadow & 0x1) &&
5571 (val & 0x1))
5572 return 1;
5573 break;
5574 }
5575 return 0;
5576}
5577
5578/*
5579 * Return 1 if we should exit from L2 to L1 to handle an exit, or 0 if we
5580 * should handle it ourselves in L0 (and then continue L2). Only call this
5581 * when in is_guest_mode (L2).
5582 */
5583static bool nested_vmx_exit_handled(struct kvm_vcpu *vcpu)
5584{
5585 u32 exit_reason = vmcs_read32(VM_EXIT_REASON);
5586 u32 intr_info = vmcs_read32(VM_EXIT_INTR_INFO);
5587 struct vcpu_vmx *vmx = to_vmx(vcpu);
5588 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
5589
5590 if (vmx->nested.nested_run_pending)
5591 return 0;
5592
5593 if (unlikely(vmx->fail)) {
5594 printk(KERN_INFO "%s failed vm entry %x\n",
5595 __func__, vmcs_read32(VM_INSTRUCTION_ERROR));
5596 return 1;
5597 }
5598
5599 switch (exit_reason) {
5600 case EXIT_REASON_EXCEPTION_NMI:
5601 if (!is_exception(intr_info))
5602 return 0;
5603 else if (is_page_fault(intr_info))
5604 return enable_ept;
5605 return vmcs12->exception_bitmap &
5606 (1u << (intr_info & INTR_INFO_VECTOR_MASK));
5607 case EXIT_REASON_EXTERNAL_INTERRUPT:
5608 return 0;
5609 case EXIT_REASON_TRIPLE_FAULT:
5610 return 1;
5611 case EXIT_REASON_PENDING_INTERRUPT:
5612 case EXIT_REASON_NMI_WINDOW:
5613 /*
5614 * prepare_vmcs02() set the CPU_BASED_VIRTUAL_INTR_PENDING bit
5615 * (aka Interrupt Window Exiting) only when L1 turned it on,
5616 * so if we got a PENDING_INTERRUPT exit, this must be for L1.
5617 * Same for NMI Window Exiting.
5618 */
5619 return 1;
5620 case EXIT_REASON_TASK_SWITCH:
5621 return 1;
5622 case EXIT_REASON_CPUID:
5623 return 1;
5624 case EXIT_REASON_HLT:
5625 return nested_cpu_has(vmcs12, CPU_BASED_HLT_EXITING);
5626 case EXIT_REASON_INVD:
5627 return 1;
5628 case EXIT_REASON_INVLPG:
5629 return nested_cpu_has(vmcs12, CPU_BASED_INVLPG_EXITING);
5630 case EXIT_REASON_RDPMC:
5631 return nested_cpu_has(vmcs12, CPU_BASED_RDPMC_EXITING);
5632 case EXIT_REASON_RDTSC:
5633 return nested_cpu_has(vmcs12, CPU_BASED_RDTSC_EXITING);
5634 case EXIT_REASON_VMCALL: case EXIT_REASON_VMCLEAR:
5635 case EXIT_REASON_VMLAUNCH: case EXIT_REASON_VMPTRLD:
5636 case EXIT_REASON_VMPTRST: case EXIT_REASON_VMREAD:
5637 case EXIT_REASON_VMRESUME: case EXIT_REASON_VMWRITE:
5638 case EXIT_REASON_VMOFF: case EXIT_REASON_VMON:
5639 /*
5640 * VMX instructions trap unconditionally. This allows L1 to
5641 * emulate them for its L2 guest, i.e., allows 3-level nesting!
5642 */
5643 return 1;
5644 case EXIT_REASON_CR_ACCESS:
5645 return nested_vmx_exit_handled_cr(vcpu, vmcs12);
5646 case EXIT_REASON_DR_ACCESS:
5647 return nested_cpu_has(vmcs12, CPU_BASED_MOV_DR_EXITING);
5648 case EXIT_REASON_IO_INSTRUCTION:
5649 /* TODO: support IO bitmaps */
5650 return 1;
5651 case EXIT_REASON_MSR_READ:
5652 case EXIT_REASON_MSR_WRITE:
5653 return nested_vmx_exit_handled_msr(vcpu, vmcs12, exit_reason);
5654 case EXIT_REASON_INVALID_STATE:
5655 return 1;
5656 case EXIT_REASON_MWAIT_INSTRUCTION:
5657 return nested_cpu_has(vmcs12, CPU_BASED_MWAIT_EXITING);
5658 case EXIT_REASON_MONITOR_INSTRUCTION:
5659 return nested_cpu_has(vmcs12, CPU_BASED_MONITOR_EXITING);
5660 case EXIT_REASON_PAUSE_INSTRUCTION:
5661 return nested_cpu_has(vmcs12, CPU_BASED_PAUSE_EXITING) ||
5662 nested_cpu_has2(vmcs12,
5663 SECONDARY_EXEC_PAUSE_LOOP_EXITING);
5664 case EXIT_REASON_MCE_DURING_VMENTRY:
5665 return 0;
5666 case EXIT_REASON_TPR_BELOW_THRESHOLD:
5667 return 1;
5668 case EXIT_REASON_APIC_ACCESS:
5669 return nested_cpu_has2(vmcs12,
5670 SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES);
5671 case EXIT_REASON_EPT_VIOLATION:
5672 case EXIT_REASON_EPT_MISCONFIG:
5673 return 0;
5674 case EXIT_REASON_WBINVD:
5675 return nested_cpu_has2(vmcs12, SECONDARY_EXEC_WBINVD_EXITING);
5676 case EXIT_REASON_XSETBV:
5677 return 1;
5678 default:
5679 return 1;
5680 }
5681}
5682
Avi Kivity586f9602010-11-18 13:09:54 +02005683static void vmx_get_exit_info(struct kvm_vcpu *vcpu, u64 *info1, u64 *info2)
5684{
5685 *info1 = vmcs_readl(EXIT_QUALIFICATION);
5686 *info2 = vmcs_read32(VM_EXIT_INTR_INFO);
5687}
5688
Avi Kivity6aa8b732006-12-10 02:21:36 -08005689/*
5690 * The guest has exited. See if we can fix it or if we need userspace
5691 * assistance.
5692 */
Avi Kivity851ba692009-08-24 11:10:17 +03005693static int vmx_handle_exit(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08005694{
Avi Kivity29bd8a72007-09-10 17:27:03 +03005695 struct vcpu_vmx *vmx = to_vmx(vcpu);
Andi Kleena0861c02009-06-08 17:37:09 +08005696 u32 exit_reason = vmx->exit_reason;
Avi Kivity1155f762007-11-22 11:30:47 +02005697 u32 vectoring_info = vmx->idt_vectoring_info;
Avi Kivity29bd8a72007-09-10 17:27:03 +03005698
Avi Kivityaa179112010-11-17 18:44:19 +02005699 trace_kvm_exit(exit_reason, vcpu, KVM_ISA_VMX);
Feng (Eric) Liu2714d1d2008-04-10 15:31:10 -04005700
Mohammed Gamal80ced182009-09-01 12:48:18 +02005701 /* If guest state is invalid, start emulating */
5702 if (vmx->emulation_required && emulate_invalid_guest_state)
5703 return handle_invalid_guest_state(vcpu);
Guillaume Thouvenin1d5a4d92008-10-29 09:39:42 +01005704
Nadav Har'Elb6f12502011-05-25 23:13:06 +03005705 /*
5706 * the KVM_REQ_EVENT optimization bit is only on for one entry, and if
5707 * we did not inject a still-pending event to L1 now because of
5708 * nested_run_pending, we need to re-enable this bit.
5709 */
5710 if (vmx->nested.nested_run_pending)
5711 kvm_make_request(KVM_REQ_EVENT, vcpu);
5712
Nadav Har'El509c75e2011-06-02 11:54:52 +03005713 if (!is_guest_mode(vcpu) && (exit_reason == EXIT_REASON_VMLAUNCH ||
5714 exit_reason == EXIT_REASON_VMRESUME))
Nadav Har'El644d7112011-05-25 23:12:35 +03005715 vmx->nested.nested_run_pending = 1;
5716 else
5717 vmx->nested.nested_run_pending = 0;
5718
5719 if (is_guest_mode(vcpu) && nested_vmx_exit_handled(vcpu)) {
5720 nested_vmx_vmexit(vcpu);
5721 return 1;
5722 }
5723
Mohammed Gamal51207022010-05-31 22:40:54 +03005724 if (exit_reason & VMX_EXIT_REASONS_FAILED_VMENTRY) {
5725 vcpu->run->exit_reason = KVM_EXIT_FAIL_ENTRY;
5726 vcpu->run->fail_entry.hardware_entry_failure_reason
5727 = exit_reason;
5728 return 0;
5729 }
5730
Avi Kivity29bd8a72007-09-10 17:27:03 +03005731 if (unlikely(vmx->fail)) {
Avi Kivity851ba692009-08-24 11:10:17 +03005732 vcpu->run->exit_reason = KVM_EXIT_FAIL_ENTRY;
5733 vcpu->run->fail_entry.hardware_entry_failure_reason
Avi Kivity29bd8a72007-09-10 17:27:03 +03005734 = vmcs_read32(VM_INSTRUCTION_ERROR);
5735 return 0;
5736 }
Avi Kivity6aa8b732006-12-10 02:21:36 -08005737
Mike Dayd77c26f2007-10-08 09:02:08 -04005738 if ((vectoring_info & VECTORING_INFO_VALID_MASK) &&
Sheng Yang14394422008-04-28 12:24:45 +08005739 (exit_reason != EXIT_REASON_EXCEPTION_NMI &&
Jan Kiszka60637aa2008-09-26 09:30:47 +02005740 exit_reason != EXIT_REASON_EPT_VIOLATION &&
5741 exit_reason != EXIT_REASON_TASK_SWITCH))
5742 printk(KERN_WARNING "%s: unexpected, valid vectoring info "
5743 "(0x%x) and exit reason is 0x%x\n",
5744 __func__, vectoring_info, exit_reason);
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005745
Nadav Har'El644d7112011-05-25 23:12:35 +03005746 if (unlikely(!cpu_has_virtual_nmis() && vmx->soft_vnmi_blocked &&
5747 !(is_guest_mode(vcpu) && nested_cpu_has_virtual_nmis(
5748 get_vmcs12(vcpu), vcpu)))) {
Gleb Natapovc4282df2009-04-21 17:45:07 +03005749 if (vmx_interrupt_allowed(vcpu)) {
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005750 vmx->soft_vnmi_blocked = 0;
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005751 } else if (vmx->vnmi_blocked_time > 1000000000LL &&
Jan Kiszka45312202008-12-11 16:54:54 +01005752 vcpu->arch.nmi_pending) {
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005753 /*
5754 * This CPU don't support us in finding the end of an
5755 * NMI-blocked window if the guest runs with IRQs
5756 * disabled. So we pull the trigger after 1 s of
5757 * futile waiting, but inform the user about this.
5758 */
5759 printk(KERN_WARNING "%s: Breaking out of NMI-blocked "
5760 "state on VCPU %d after 1 s timeout\n",
5761 __func__, vcpu->vcpu_id);
5762 vmx->soft_vnmi_blocked = 0;
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005763 }
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005764 }
5765
Avi Kivity6aa8b732006-12-10 02:21:36 -08005766 if (exit_reason < kvm_vmx_max_exit_handlers
5767 && kvm_vmx_exit_handlers[exit_reason])
Avi Kivity851ba692009-08-24 11:10:17 +03005768 return kvm_vmx_exit_handlers[exit_reason](vcpu);
Avi Kivity6aa8b732006-12-10 02:21:36 -08005769 else {
Avi Kivity851ba692009-08-24 11:10:17 +03005770 vcpu->run->exit_reason = KVM_EXIT_UNKNOWN;
5771 vcpu->run->hw.hardware_exit_reason = exit_reason;
Avi Kivity6aa8b732006-12-10 02:21:36 -08005772 }
5773 return 0;
5774}
5775
Gleb Natapov95ba8273132009-04-21 17:45:08 +03005776static void update_cr8_intercept(struct kvm_vcpu *vcpu, int tpr, int irr)
Yang, Sheng6e5d8652007-09-12 18:03:11 +08005777{
Gleb Natapov95ba8273132009-04-21 17:45:08 +03005778 if (irr == -1 || tpr < irr) {
Yang, Sheng6e5d8652007-09-12 18:03:11 +08005779 vmcs_write32(TPR_THRESHOLD, 0);
5780 return;
5781 }
5782
Gleb Natapov95ba8273132009-04-21 17:45:08 +03005783 vmcs_write32(TPR_THRESHOLD, irr);
Yang, Sheng6e5d8652007-09-12 18:03:11 +08005784}
5785
Avi Kivity51aa01d2010-07-20 14:31:20 +03005786static void vmx_complete_atomic_exit(struct vcpu_vmx *vmx)
Avi Kivitycf393f72008-07-01 16:20:21 +03005787{
Avi Kivity00eba012011-03-07 17:24:54 +02005788 u32 exit_intr_info;
5789
5790 if (!(vmx->exit_reason == EXIT_REASON_MCE_DURING_VMENTRY
5791 || vmx->exit_reason == EXIT_REASON_EXCEPTION_NMI))
5792 return;
5793
Avi Kivityc5ca8e52011-03-07 17:37:37 +02005794 vmx->exit_intr_info = vmcs_read32(VM_EXIT_INTR_INFO);
Avi Kivity00eba012011-03-07 17:24:54 +02005795 exit_intr_info = vmx->exit_intr_info;
Andi Kleena0861c02009-06-08 17:37:09 +08005796
5797 /* Handle machine checks before interrupts are enabled */
Avi Kivity00eba012011-03-07 17:24:54 +02005798 if (is_machine_check(exit_intr_info))
Andi Kleena0861c02009-06-08 17:37:09 +08005799 kvm_machine_check();
5800
Gleb Natapov20f65982009-05-11 13:35:55 +03005801 /* We need to handle NMIs before interrupts are enabled */
Avi Kivity00eba012011-03-07 17:24:54 +02005802 if ((exit_intr_info & INTR_INFO_INTR_TYPE_MASK) == INTR_TYPE_NMI_INTR &&
Zhang, Yanminff9d07a2010-04-19 13:32:45 +08005803 (exit_intr_info & INTR_INFO_VALID_MASK)) {
5804 kvm_before_handle_nmi(&vmx->vcpu);
Gleb Natapov20f65982009-05-11 13:35:55 +03005805 asm("int $2");
Zhang, Yanminff9d07a2010-04-19 13:32:45 +08005806 kvm_after_handle_nmi(&vmx->vcpu);
5807 }
Avi Kivity51aa01d2010-07-20 14:31:20 +03005808}
Gleb Natapov20f65982009-05-11 13:35:55 +03005809
Avi Kivity51aa01d2010-07-20 14:31:20 +03005810static void vmx_recover_nmi_blocking(struct vcpu_vmx *vmx)
5811{
Avi Kivityc5ca8e52011-03-07 17:37:37 +02005812 u32 exit_intr_info;
Avi Kivity51aa01d2010-07-20 14:31:20 +03005813 bool unblock_nmi;
5814 u8 vector;
5815 bool idtv_info_valid;
5816
5817 idtv_info_valid = vmx->idt_vectoring_info & VECTORING_INFO_VALID_MASK;
Gleb Natapov20f65982009-05-11 13:35:55 +03005818
Avi Kivitycf393f72008-07-01 16:20:21 +03005819 if (cpu_has_virtual_nmis()) {
Avi Kivity9d58b932011-03-07 16:52:07 +02005820 if (vmx->nmi_known_unmasked)
5821 return;
Avi Kivityc5ca8e52011-03-07 17:37:37 +02005822 /*
5823 * Can't use vmx->exit_intr_info since we're not sure what
5824 * the exit reason is.
5825 */
5826 exit_intr_info = vmcs_read32(VM_EXIT_INTR_INFO);
Avi Kivitycf393f72008-07-01 16:20:21 +03005827 unblock_nmi = (exit_intr_info & INTR_INFO_UNBLOCK_NMI) != 0;
5828 vector = exit_intr_info & INTR_INFO_VECTOR_MASK;
5829 /*
Gleb Natapov7b4a25c2009-03-30 16:03:08 +03005830 * SDM 3: 27.7.1.2 (September 2008)
Avi Kivitycf393f72008-07-01 16:20:21 +03005831 * Re-set bit "block by NMI" before VM entry if vmexit caused by
5832 * a guest IRET fault.
Gleb Natapov7b4a25c2009-03-30 16:03:08 +03005833 * SDM 3: 23.2.2 (September 2008)
5834 * Bit 12 is undefined in any of the following cases:
5835 * If the VM exit sets the valid bit in the IDT-vectoring
5836 * information field.
5837 * If the VM exit is due to a double fault.
Avi Kivitycf393f72008-07-01 16:20:21 +03005838 */
Gleb Natapov7b4a25c2009-03-30 16:03:08 +03005839 if ((exit_intr_info & INTR_INFO_VALID_MASK) && unblock_nmi &&
5840 vector != DF_VECTOR && !idtv_info_valid)
Avi Kivitycf393f72008-07-01 16:20:21 +03005841 vmcs_set_bits(GUEST_INTERRUPTIBILITY_INFO,
5842 GUEST_INTR_STATE_NMI);
Avi Kivity9d58b932011-03-07 16:52:07 +02005843 else
5844 vmx->nmi_known_unmasked =
5845 !(vmcs_read32(GUEST_INTERRUPTIBILITY_INFO)
5846 & GUEST_INTR_STATE_NMI);
Jan Kiszka3b86cd92008-09-26 09:30:57 +02005847 } else if (unlikely(vmx->soft_vnmi_blocked))
5848 vmx->vnmi_blocked_time +=
5849 ktime_to_ns(ktime_sub(ktime_get(), vmx->entry_time));
Avi Kivity51aa01d2010-07-20 14:31:20 +03005850}
5851
Avi Kivity83422e12010-07-20 14:43:23 +03005852static void __vmx_complete_interrupts(struct vcpu_vmx *vmx,
5853 u32 idt_vectoring_info,
5854 int instr_len_field,
5855 int error_code_field)
Avi Kivity51aa01d2010-07-20 14:31:20 +03005856{
Avi Kivity51aa01d2010-07-20 14:31:20 +03005857 u8 vector;
5858 int type;
5859 bool idtv_info_valid;
5860
5861 idtv_info_valid = idt_vectoring_info & VECTORING_INFO_VALID_MASK;
Avi Kivity668f6122008-07-02 09:28:55 +03005862
Gleb Natapov37b96e92009-03-30 16:03:13 +03005863 vmx->vcpu.arch.nmi_injected = false;
5864 kvm_clear_exception_queue(&vmx->vcpu);
5865 kvm_clear_interrupt_queue(&vmx->vcpu);
5866
5867 if (!idtv_info_valid)
5868 return;
5869
Avi Kivity3842d132010-07-27 12:30:24 +03005870 kvm_make_request(KVM_REQ_EVENT, &vmx->vcpu);
5871
Avi Kivity668f6122008-07-02 09:28:55 +03005872 vector = idt_vectoring_info & VECTORING_INFO_VECTOR_MASK;
5873 type = idt_vectoring_info & VECTORING_INFO_TYPE_MASK;
Gleb Natapov37b96e92009-03-30 16:03:13 +03005874
Gleb Natapov64a7ec02009-03-30 16:03:29 +03005875 switch (type) {
Gleb Natapov37b96e92009-03-30 16:03:13 +03005876 case INTR_TYPE_NMI_INTR:
5877 vmx->vcpu.arch.nmi_injected = true;
Avi Kivity668f6122008-07-02 09:28:55 +03005878 /*
Gleb Natapov7b4a25c2009-03-30 16:03:08 +03005879 * SDM 3: 27.7.1.2 (September 2008)
Gleb Natapov37b96e92009-03-30 16:03:13 +03005880 * Clear bit "block by NMI" before VM entry if a NMI
5881 * delivery faulted.
Avi Kivity668f6122008-07-02 09:28:55 +03005882 */
Avi Kivity654f06f2011-03-23 15:02:47 +02005883 vmx_set_nmi_mask(&vmx->vcpu, false);
Gleb Natapov37b96e92009-03-30 16:03:13 +03005884 break;
Gleb Natapov37b96e92009-03-30 16:03:13 +03005885 case INTR_TYPE_SOFT_EXCEPTION:
Gleb Natapov66fd3f72009-05-11 13:35:50 +03005886 vmx->vcpu.arch.event_exit_inst_len =
Avi Kivity83422e12010-07-20 14:43:23 +03005887 vmcs_read32(instr_len_field);
Gleb Natapov66fd3f72009-05-11 13:35:50 +03005888 /* fall through */
5889 case INTR_TYPE_HARD_EXCEPTION:
Avi Kivity35920a32008-07-03 14:50:12 +03005890 if (idt_vectoring_info & VECTORING_INFO_DELIVER_CODE_MASK) {
Avi Kivity83422e12010-07-20 14:43:23 +03005891 u32 err = vmcs_read32(error_code_field);
Gleb Natapov37b96e92009-03-30 16:03:13 +03005892 kvm_queue_exception_e(&vmx->vcpu, vector, err);
Avi Kivity35920a32008-07-03 14:50:12 +03005893 } else
5894 kvm_queue_exception(&vmx->vcpu, vector);
Gleb Natapov37b96e92009-03-30 16:03:13 +03005895 break;
Gleb Natapov66fd3f72009-05-11 13:35:50 +03005896 case INTR_TYPE_SOFT_INTR:
5897 vmx->vcpu.arch.event_exit_inst_len =
Avi Kivity83422e12010-07-20 14:43:23 +03005898 vmcs_read32(instr_len_field);
Gleb Natapov66fd3f72009-05-11 13:35:50 +03005899 /* fall through */
Gleb Natapov37b96e92009-03-30 16:03:13 +03005900 case INTR_TYPE_EXT_INTR:
Gleb Natapov66fd3f72009-05-11 13:35:50 +03005901 kvm_queue_interrupt(&vmx->vcpu, vector,
5902 type == INTR_TYPE_SOFT_INTR);
Gleb Natapov37b96e92009-03-30 16:03:13 +03005903 break;
5904 default:
5905 break;
Avi Kivityf7d92382008-07-03 16:14:28 +03005906 }
Avi Kivitycf393f72008-07-01 16:20:21 +03005907}
5908
Avi Kivity83422e12010-07-20 14:43:23 +03005909static void vmx_complete_interrupts(struct vcpu_vmx *vmx)
5910{
Nadav Har'El66c78ae2011-05-25 23:14:07 +03005911 if (is_guest_mode(&vmx->vcpu))
5912 return;
Avi Kivity83422e12010-07-20 14:43:23 +03005913 __vmx_complete_interrupts(vmx, vmx->idt_vectoring_info,
5914 VM_EXIT_INSTRUCTION_LEN,
5915 IDT_VECTORING_ERROR_CODE);
5916}
5917
Avi Kivityb463a6f2010-07-20 15:06:17 +03005918static void vmx_cancel_injection(struct kvm_vcpu *vcpu)
5919{
Nadav Har'El66c78ae2011-05-25 23:14:07 +03005920 if (is_guest_mode(vcpu))
5921 return;
Avi Kivityb463a6f2010-07-20 15:06:17 +03005922 __vmx_complete_interrupts(to_vmx(vcpu),
5923 vmcs_read32(VM_ENTRY_INTR_INFO_FIELD),
5924 VM_ENTRY_INSTRUCTION_LEN,
5925 VM_ENTRY_EXCEPTION_ERROR_CODE);
5926
5927 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD, 0);
5928}
5929
Avi Kivityc8019492008-07-14 14:44:59 +03005930#ifdef CONFIG_X86_64
5931#define R "r"
5932#define Q "q"
5933#else
5934#define R "e"
5935#define Q "l"
5936#endif
5937
Lai Jiangshana3b5ba42011-02-11 14:29:40 +08005938static void __noclone vmx_vcpu_run(struct kvm_vcpu *vcpu)
Avi Kivity6aa8b732006-12-10 02:21:36 -08005939{
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04005940 struct vcpu_vmx *vmx = to_vmx(vcpu);
Avi Kivity104f2262010-11-18 13:12:52 +02005941
Nadav Har'El66c78ae2011-05-25 23:14:07 +03005942 if (is_guest_mode(vcpu) && !vmx->nested.nested_run_pending) {
5943 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
5944 if (vmcs12->idt_vectoring_info_field &
5945 VECTORING_INFO_VALID_MASK) {
5946 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD,
5947 vmcs12->idt_vectoring_info_field);
5948 vmcs_write32(VM_ENTRY_INSTRUCTION_LEN,
5949 vmcs12->vm_exit_instruction_len);
5950 if (vmcs12->idt_vectoring_info_field &
5951 VECTORING_INFO_DELIVER_CODE_MASK)
5952 vmcs_write32(VM_ENTRY_EXCEPTION_ERROR_CODE,
5953 vmcs12->idt_vectoring_error_code);
5954 }
5955 }
5956
Avi Kivity104f2262010-11-18 13:12:52 +02005957 /* Record the guest's net vcpu time for enforced NMI injections. */
5958 if (unlikely(!cpu_has_virtual_nmis() && vmx->soft_vnmi_blocked))
5959 vmx->entry_time = ktime_get();
5960
5961 /* Don't enter VMX if guest state is invalid, let the exit handler
5962 start emulation until we arrive back to a valid state */
5963 if (vmx->emulation_required && emulate_invalid_guest_state)
5964 return;
5965
5966 if (test_bit(VCPU_REGS_RSP, (unsigned long *)&vcpu->arch.regs_dirty))
5967 vmcs_writel(GUEST_RSP, vcpu->arch.regs[VCPU_REGS_RSP]);
5968 if (test_bit(VCPU_REGS_RIP, (unsigned long *)&vcpu->arch.regs_dirty))
5969 vmcs_writel(GUEST_RIP, vcpu->arch.regs[VCPU_REGS_RIP]);
5970
5971 /* When single-stepping over STI and MOV SS, we must clear the
5972 * corresponding interruptibility bits in the guest state. Otherwise
5973 * vmentry fails as it then expects bit 14 (BS) in pending debug
5974 * exceptions being set, but that's not correct for the guest debugging
5975 * case. */
5976 if (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP)
5977 vmx_set_interrupt_shadow(vcpu, 0);
5978
Nadav Har'Eld462b812011-05-24 15:26:10 +03005979 vmx->__launched = vmx->loaded_vmcs->launched;
Avi Kivity104f2262010-11-18 13:12:52 +02005980 asm(
Avi Kivity6aa8b732006-12-10 02:21:36 -08005981 /* Store host registers */
Avi Kivityc8019492008-07-14 14:44:59 +03005982 "push %%"R"dx; push %%"R"bp;"
Avi Kivity40712fa2011-01-06 18:09:12 +02005983 "push %%"R"cx \n\t" /* placeholder for guest rcx */
Avi Kivityc8019492008-07-14 14:44:59 +03005984 "push %%"R"cx \n\t"
Avi Kivity313dbd42008-07-17 18:04:30 +03005985 "cmp %%"R"sp, %c[host_rsp](%0) \n\t"
5986 "je 1f \n\t"
5987 "mov %%"R"sp, %c[host_rsp](%0) \n\t"
Avi Kivity4ecac3f2008-05-13 13:23:38 +03005988 __ex(ASM_VMX_VMWRITE_RSP_RDX) "\n\t"
Avi Kivity313dbd42008-07-17 18:04:30 +03005989 "1: \n\t"
Avi Kivityd3edefc2009-06-16 12:33:56 +03005990 /* Reload cr2 if changed */
5991 "mov %c[cr2](%0), %%"R"ax \n\t"
5992 "mov %%cr2, %%"R"dx \n\t"
5993 "cmp %%"R"ax, %%"R"dx \n\t"
5994 "je 2f \n\t"
5995 "mov %%"R"ax, %%cr2 \n\t"
5996 "2: \n\t"
Avi Kivity6aa8b732006-12-10 02:21:36 -08005997 /* Check if vmlaunch of vmresume is needed */
Avi Kivitye08aa782007-11-15 18:06:18 +02005998 "cmpl $0, %c[launched](%0) \n\t"
Avi Kivity6aa8b732006-12-10 02:21:36 -08005999 /* Load guest registers. Don't clobber flags. */
Avi Kivityc8019492008-07-14 14:44:59 +03006000 "mov %c[rax](%0), %%"R"ax \n\t"
6001 "mov %c[rbx](%0), %%"R"bx \n\t"
6002 "mov %c[rdx](%0), %%"R"dx \n\t"
6003 "mov %c[rsi](%0), %%"R"si \n\t"
6004 "mov %c[rdi](%0), %%"R"di \n\t"
6005 "mov %c[rbp](%0), %%"R"bp \n\t"
Avi Kivity05b3e0c2006-12-13 00:33:45 -08006006#ifdef CONFIG_X86_64
Avi Kivitye08aa782007-11-15 18:06:18 +02006007 "mov %c[r8](%0), %%r8 \n\t"
6008 "mov %c[r9](%0), %%r9 \n\t"
6009 "mov %c[r10](%0), %%r10 \n\t"
6010 "mov %c[r11](%0), %%r11 \n\t"
6011 "mov %c[r12](%0), %%r12 \n\t"
6012 "mov %c[r13](%0), %%r13 \n\t"
6013 "mov %c[r14](%0), %%r14 \n\t"
6014 "mov %c[r15](%0), %%r15 \n\t"
Avi Kivity6aa8b732006-12-10 02:21:36 -08006015#endif
Avi Kivityc8019492008-07-14 14:44:59 +03006016 "mov %c[rcx](%0), %%"R"cx \n\t" /* kills %0 (ecx) */
6017
Avi Kivity6aa8b732006-12-10 02:21:36 -08006018 /* Enter guest mode */
Avi Kivitycd2276a2007-05-14 20:41:13 +03006019 "jne .Llaunched \n\t"
Avi Kivity4ecac3f2008-05-13 13:23:38 +03006020 __ex(ASM_VMX_VMLAUNCH) "\n\t"
Avi Kivitycd2276a2007-05-14 20:41:13 +03006021 "jmp .Lkvm_vmx_return \n\t"
Avi Kivity4ecac3f2008-05-13 13:23:38 +03006022 ".Llaunched: " __ex(ASM_VMX_VMRESUME) "\n\t"
Avi Kivitycd2276a2007-05-14 20:41:13 +03006023 ".Lkvm_vmx_return: "
Avi Kivity6aa8b732006-12-10 02:21:36 -08006024 /* Save guest registers, load host registers, keep flags */
Avi Kivity40712fa2011-01-06 18:09:12 +02006025 "mov %0, %c[wordsize](%%"R"sp) \n\t"
6026 "pop %0 \n\t"
Avi Kivityc8019492008-07-14 14:44:59 +03006027 "mov %%"R"ax, %c[rax](%0) \n\t"
6028 "mov %%"R"bx, %c[rbx](%0) \n\t"
Avi Kivity1c696d02011-01-06 18:09:11 +02006029 "pop"Q" %c[rcx](%0) \n\t"
Avi Kivityc8019492008-07-14 14:44:59 +03006030 "mov %%"R"dx, %c[rdx](%0) \n\t"
6031 "mov %%"R"si, %c[rsi](%0) \n\t"
6032 "mov %%"R"di, %c[rdi](%0) \n\t"
6033 "mov %%"R"bp, %c[rbp](%0) \n\t"
Avi Kivity05b3e0c2006-12-13 00:33:45 -08006034#ifdef CONFIG_X86_64
Avi Kivitye08aa782007-11-15 18:06:18 +02006035 "mov %%r8, %c[r8](%0) \n\t"
6036 "mov %%r9, %c[r9](%0) \n\t"
6037 "mov %%r10, %c[r10](%0) \n\t"
6038 "mov %%r11, %c[r11](%0) \n\t"
6039 "mov %%r12, %c[r12](%0) \n\t"
6040 "mov %%r13, %c[r13](%0) \n\t"
6041 "mov %%r14, %c[r14](%0) \n\t"
6042 "mov %%r15, %c[r15](%0) \n\t"
Avi Kivity6aa8b732006-12-10 02:21:36 -08006043#endif
Avi Kivityc8019492008-07-14 14:44:59 +03006044 "mov %%cr2, %%"R"ax \n\t"
6045 "mov %%"R"ax, %c[cr2](%0) \n\t"
6046
Avi Kivity1c696d02011-01-06 18:09:11 +02006047 "pop %%"R"bp; pop %%"R"dx \n\t"
Avi Kivitye08aa782007-11-15 18:06:18 +02006048 "setbe %c[fail](%0) \n\t"
6049 : : "c"(vmx), "d"((unsigned long)HOST_RSP),
Nadav Har'Eld462b812011-05-24 15:26:10 +03006050 [launched]"i"(offsetof(struct vcpu_vmx, __launched)),
Avi Kivitye08aa782007-11-15 18:06:18 +02006051 [fail]"i"(offsetof(struct vcpu_vmx, fail)),
Avi Kivity313dbd42008-07-17 18:04:30 +03006052 [host_rsp]"i"(offsetof(struct vcpu_vmx, host_rsp)),
Zhang Xiantaoad312c72007-12-13 23:50:52 +08006053 [rax]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RAX])),
6054 [rbx]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RBX])),
6055 [rcx]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RCX])),
6056 [rdx]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RDX])),
6057 [rsi]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RSI])),
6058 [rdi]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RDI])),
6059 [rbp]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_RBP])),
Avi Kivity05b3e0c2006-12-13 00:33:45 -08006060#ifdef CONFIG_X86_64
Zhang Xiantaoad312c72007-12-13 23:50:52 +08006061 [r8]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R8])),
6062 [r9]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R9])),
6063 [r10]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R10])),
6064 [r11]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R11])),
6065 [r12]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R12])),
6066 [r13]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R13])),
6067 [r14]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R14])),
6068 [r15]"i"(offsetof(struct vcpu_vmx, vcpu.arch.regs[VCPU_REGS_R15])),
Avi Kivity6aa8b732006-12-10 02:21:36 -08006069#endif
Avi Kivity40712fa2011-01-06 18:09:12 +02006070 [cr2]"i"(offsetof(struct vcpu_vmx, vcpu.arch.cr2)),
6071 [wordsize]"i"(sizeof(ulong))
Laurent Vivierc2036302007-10-25 14:18:52 +02006072 : "cc", "memory"
Jan Kiszka07d6f552010-09-28 16:37:42 +02006073 , R"ax", R"bx", R"di", R"si"
Laurent Vivierc2036302007-10-25 14:18:52 +02006074#ifdef CONFIG_X86_64
Laurent Vivierc2036302007-10-25 14:18:52 +02006075 , "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15"
6076#endif
6077 );
Avi Kivity6aa8b732006-12-10 02:21:36 -08006078
Avi Kivity6de4f3a2009-05-31 22:58:47 +03006079 vcpu->arch.regs_avail = ~((1 << VCPU_REGS_RIP) | (1 << VCPU_REGS_RSP)
Avi Kivity6de12732011-03-07 12:51:22 +02006080 | (1 << VCPU_EXREG_RFLAGS)
Avi Kivity69c73022011-03-07 15:26:44 +02006081 | (1 << VCPU_EXREG_CPL)
Avi Kivityaff48ba2010-12-05 18:56:11 +02006082 | (1 << VCPU_EXREG_PDPTR)
Avi Kivity2fb92db2011-04-27 19:42:18 +03006083 | (1 << VCPU_EXREG_SEGMENTS)
Avi Kivityaff48ba2010-12-05 18:56:11 +02006084 | (1 << VCPU_EXREG_CR3));
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03006085 vcpu->arch.regs_dirty = 0;
6086
Avi Kivity1155f762007-11-22 11:30:47 +02006087 vmx->idt_vectoring_info = vmcs_read32(IDT_VECTORING_INFO_FIELD);
6088
Nadav Har'El66c78ae2011-05-25 23:14:07 +03006089 if (is_guest_mode(vcpu)) {
6090 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
6091 vmcs12->idt_vectoring_info_field = vmx->idt_vectoring_info;
6092 if (vmx->idt_vectoring_info & VECTORING_INFO_VALID_MASK) {
6093 vmcs12->idt_vectoring_error_code =
6094 vmcs_read32(IDT_VECTORING_ERROR_CODE);
6095 vmcs12->vm_exit_instruction_len =
6096 vmcs_read32(VM_EXIT_INSTRUCTION_LEN);
6097 }
6098 }
6099
Mike Dayd77c26f2007-10-08 09:02:08 -04006100 asm("mov %0, %%ds; mov %0, %%es" : : "r"(__USER_DS));
Nadav Har'Eld462b812011-05-24 15:26:10 +03006101 vmx->loaded_vmcs->launched = 1;
Avi Kivity1b6269d2007-10-09 12:12:19 +02006102
Avi Kivity51aa01d2010-07-20 14:31:20 +03006103 vmx->exit_reason = vmcs_read32(VM_EXIT_REASON);
Avi Kivity51aa01d2010-07-20 14:31:20 +03006104
6105 vmx_complete_atomic_exit(vmx);
6106 vmx_recover_nmi_blocking(vmx);
Avi Kivitycf393f72008-07-01 16:20:21 +03006107 vmx_complete_interrupts(vmx);
Avi Kivity6aa8b732006-12-10 02:21:36 -08006108}
6109
Avi Kivityc8019492008-07-14 14:44:59 +03006110#undef R
6111#undef Q
6112
Avi Kivity6aa8b732006-12-10 02:21:36 -08006113static void vmx_free_vcpu(struct kvm_vcpu *vcpu)
6114{
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006115 struct vcpu_vmx *vmx = to_vmx(vcpu);
6116
Lai Jiangshancdbecfc2010-04-17 16:41:47 +08006117 free_vpid(vmx);
Nadav Har'Elec378ae2011-05-25 23:02:54 +03006118 free_nested(vmx);
Nadav Har'Eld462b812011-05-24 15:26:10 +03006119 free_loaded_vmcs(vmx->loaded_vmcs);
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006120 kfree(vmx->guest_msrs);
6121 kvm_vcpu_uninit(vcpu);
Rusty Russella4770342007-08-01 14:46:11 +10006122 kmem_cache_free(kvm_vcpu_cache, vmx);
Avi Kivity6aa8b732006-12-10 02:21:36 -08006123}
6124
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006125static struct kvm_vcpu *vmx_create_vcpu(struct kvm *kvm, unsigned int id)
Avi Kivity6aa8b732006-12-10 02:21:36 -08006126{
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006127 int err;
Rusty Russellc16f8622007-07-30 21:12:19 +10006128 struct vcpu_vmx *vmx = kmem_cache_zalloc(kvm_vcpu_cache, GFP_KERNEL);
Avi Kivity15ad7142007-07-11 18:17:21 +03006129 int cpu;
Avi Kivity6aa8b732006-12-10 02:21:36 -08006130
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04006131 if (!vmx)
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006132 return ERR_PTR(-ENOMEM);
6133
Sheng Yang2384d2b2008-01-17 15:14:33 +08006134 allocate_vpid(vmx);
6135
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006136 err = kvm_vcpu_init(&vmx->vcpu, kvm, id);
6137 if (err)
6138 goto free_vcpu;
Ingo Molnar965b58a2007-01-05 16:36:23 -08006139
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04006140 vmx->guest_msrs = kmalloc(PAGE_SIZE, GFP_KERNEL);
Jan Kiszkabe6d05c2011-04-13 01:27:55 +02006141 err = -ENOMEM;
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006142 if (!vmx->guest_msrs) {
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006143 goto uninit_vcpu;
6144 }
Ingo Molnar965b58a2007-01-05 16:36:23 -08006145
Nadav Har'Eld462b812011-05-24 15:26:10 +03006146 vmx->loaded_vmcs = &vmx->vmcs01;
6147 vmx->loaded_vmcs->vmcs = alloc_vmcs();
6148 if (!vmx->loaded_vmcs->vmcs)
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006149 goto free_msrs;
Nadav Har'Eld462b812011-05-24 15:26:10 +03006150 if (!vmm_exclusive)
6151 kvm_cpu_vmxon(__pa(per_cpu(vmxarea, raw_smp_processor_id())));
6152 loaded_vmcs_init(vmx->loaded_vmcs);
6153 if (!vmm_exclusive)
6154 kvm_cpu_vmxoff();
Gregory Haskinsa2fa3e92007-07-27 08:13:10 -04006155
Avi Kivity15ad7142007-07-11 18:17:21 +03006156 cpu = get_cpu();
6157 vmx_vcpu_load(&vmx->vcpu, cpu);
Zachary Amsdene48672f2010-08-19 22:07:23 -10006158 vmx->vcpu.cpu = cpu;
Rusty Russell8b9cf982007-07-30 16:31:43 +10006159 err = vmx_vcpu_setup(vmx);
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006160 vmx_vcpu_put(&vmx->vcpu);
Avi Kivity15ad7142007-07-11 18:17:21 +03006161 put_cpu();
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006162 if (err)
6163 goto free_vmcs;
Marcelo Tosatti5e4a0b32008-02-14 21:21:43 -02006164 if (vm_need_virtualize_apic_accesses(kvm))
Jan Kiszkabe6d05c2011-04-13 01:27:55 +02006165 err = alloc_apic_access_page(kvm);
6166 if (err)
Marcelo Tosatti5e4a0b32008-02-14 21:21:43 -02006167 goto free_vmcs;
Ingo Molnar965b58a2007-01-05 16:36:23 -08006168
Sheng Yangb927a3c2009-07-21 10:42:48 +08006169 if (enable_ept) {
6170 if (!kvm->arch.ept_identity_map_addr)
6171 kvm->arch.ept_identity_map_addr =
6172 VMX_EPT_IDENTITY_PAGETABLE_ADDR;
Gleb Natapov93ea5382011-02-21 12:07:59 +02006173 err = -ENOMEM;
Sheng Yangb7ebfb02008-04-25 21:44:52 +08006174 if (alloc_identity_pagetable(kvm) != 0)
6175 goto free_vmcs;
Gleb Natapov93ea5382011-02-21 12:07:59 +02006176 if (!init_rmode_identity_map(kvm))
6177 goto free_vmcs;
Sheng Yangb927a3c2009-07-21 10:42:48 +08006178 }
Sheng Yangb7ebfb02008-04-25 21:44:52 +08006179
Nadav Har'Ela9d30f32011-05-25 23:03:55 +03006180 vmx->nested.current_vmptr = -1ull;
6181 vmx->nested.current_vmcs12 = NULL;
6182
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006183 return &vmx->vcpu;
Ingo Molnar965b58a2007-01-05 16:36:23 -08006184
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006185free_vmcs:
Nadav Har'Eld462b812011-05-24 15:26:10 +03006186 free_vmcs(vmx->loaded_vmcs->vmcs);
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006187free_msrs:
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006188 kfree(vmx->guest_msrs);
6189uninit_vcpu:
6190 kvm_vcpu_uninit(&vmx->vcpu);
6191free_vcpu:
Lai Jiangshancdbecfc2010-04-17 16:41:47 +08006192 free_vpid(vmx);
Rusty Russella4770342007-08-01 14:46:11 +10006193 kmem_cache_free(kvm_vcpu_cache, vmx);
Rusty Russellfb3f0f52007-07-27 17:16:56 +10006194 return ERR_PTR(err);
Avi Kivity6aa8b732006-12-10 02:21:36 -08006195}
6196
Yang, Sheng002c7f72007-07-31 14:23:01 +03006197static void __init vmx_check_processor_compat(void *rtn)
6198{
6199 struct vmcs_config vmcs_conf;
6200
6201 *(int *)rtn = 0;
6202 if (setup_vmcs_config(&vmcs_conf) < 0)
6203 *(int *)rtn = -EIO;
6204 if (memcmp(&vmcs_config, &vmcs_conf, sizeof(struct vmcs_config)) != 0) {
6205 printk(KERN_ERR "kvm: CPU %d feature inconsistency!\n",
6206 smp_processor_id());
6207 *(int *)rtn = -EIO;
6208 }
6209}
6210
Sheng Yang67253af2008-04-25 10:20:22 +08006211static int get_ept_level(void)
6212{
6213 return VMX_EPT_DEFAULT_GAW + 1;
6214}
6215
Sheng Yang4b12f0d2009-04-27 20:35:42 +08006216static u64 vmx_get_mt_mask(struct kvm_vcpu *vcpu, gfn_t gfn, bool is_mmio)
Sheng Yang64d4d522008-10-09 16:01:57 +08006217{
Sheng Yang4b12f0d2009-04-27 20:35:42 +08006218 u64 ret;
6219
Sheng Yang522c68c2009-04-27 20:35:43 +08006220 /* For VT-d and EPT combination
6221 * 1. MMIO: always map as UC
6222 * 2. EPT with VT-d:
6223 * a. VT-d without snooping control feature: can't guarantee the
6224 * result, try to trust guest.
6225 * b. VT-d with snooping control feature: snooping control feature of
6226 * VT-d engine can guarantee the cache correctness. Just set it
6227 * to WB to keep consistent with host. So the same as item 3.
Sheng Yanga19a6d12010-02-09 16:41:53 +08006228 * 3. EPT without VT-d: always map as WB and set IPAT=1 to keep
Sheng Yang522c68c2009-04-27 20:35:43 +08006229 * consistent with host MTRR
6230 */
Sheng Yang4b12f0d2009-04-27 20:35:42 +08006231 if (is_mmio)
6232 ret = MTRR_TYPE_UNCACHABLE << VMX_EPT_MT_EPTE_SHIFT;
Sheng Yang522c68c2009-04-27 20:35:43 +08006233 else if (vcpu->kvm->arch.iommu_domain &&
6234 !(vcpu->kvm->arch.iommu_flags & KVM_IOMMU_CACHE_COHERENCY))
6235 ret = kvm_get_guest_memory_type(vcpu, gfn) <<
6236 VMX_EPT_MT_EPTE_SHIFT;
Sheng Yang4b12f0d2009-04-27 20:35:42 +08006237 else
Sheng Yang522c68c2009-04-27 20:35:43 +08006238 ret = (MTRR_TYPE_WRBACK << VMX_EPT_MT_EPTE_SHIFT)
Sheng Yanga19a6d12010-02-09 16:41:53 +08006239 | VMX_EPT_IPAT_BIT;
Sheng Yang4b12f0d2009-04-27 20:35:42 +08006240
6241 return ret;
Sheng Yang64d4d522008-10-09 16:01:57 +08006242}
6243
Avi Kivityf4c9e872009-12-28 16:06:35 +02006244#define _ER(x) { EXIT_REASON_##x, #x }
6245
Marcelo Tosatti229456f2009-06-17 09:22:14 -03006246static const struct trace_print_flags vmx_exit_reasons_str[] = {
Avi Kivityf4c9e872009-12-28 16:06:35 +02006247 _ER(EXCEPTION_NMI),
6248 _ER(EXTERNAL_INTERRUPT),
6249 _ER(TRIPLE_FAULT),
6250 _ER(PENDING_INTERRUPT),
6251 _ER(NMI_WINDOW),
6252 _ER(TASK_SWITCH),
6253 _ER(CPUID),
6254 _ER(HLT),
6255 _ER(INVLPG),
6256 _ER(RDPMC),
6257 _ER(RDTSC),
6258 _ER(VMCALL),
6259 _ER(VMCLEAR),
6260 _ER(VMLAUNCH),
6261 _ER(VMPTRLD),
6262 _ER(VMPTRST),
6263 _ER(VMREAD),
6264 _ER(VMRESUME),
6265 _ER(VMWRITE),
6266 _ER(VMOFF),
6267 _ER(VMON),
6268 _ER(CR_ACCESS),
6269 _ER(DR_ACCESS),
6270 _ER(IO_INSTRUCTION),
6271 _ER(MSR_READ),
6272 _ER(MSR_WRITE),
6273 _ER(MWAIT_INSTRUCTION),
6274 _ER(MONITOR_INSTRUCTION),
6275 _ER(PAUSE_INSTRUCTION),
6276 _ER(MCE_DURING_VMENTRY),
6277 _ER(TPR_BELOW_THRESHOLD),
6278 _ER(APIC_ACCESS),
6279 _ER(EPT_VIOLATION),
6280 _ER(EPT_MISCONFIG),
6281 _ER(WBINVD),
Marcelo Tosatti229456f2009-06-17 09:22:14 -03006282 { -1, NULL }
6283};
6284
Avi Kivityf4c9e872009-12-28 16:06:35 +02006285#undef _ER
6286
Sheng Yang17cc3932010-01-05 19:02:27 +08006287static int vmx_get_lpage_level(void)
Joerg Roedel344f4142009-07-27 16:30:48 +02006288{
Sheng Yang878403b2010-01-05 19:02:29 +08006289 if (enable_ept && !cpu_has_vmx_ept_1g_page())
6290 return PT_DIRECTORY_LEVEL;
6291 else
6292 /* For shadow and EPT supported 1GB page */
6293 return PT_PDPE_LEVEL;
Joerg Roedel344f4142009-07-27 16:30:48 +02006294}
6295
Sheng Yang0e851882009-12-18 16:48:46 +08006296static void vmx_cpuid_update(struct kvm_vcpu *vcpu)
6297{
Sheng Yang4e47c7a2009-12-18 16:48:47 +08006298 struct kvm_cpuid_entry2 *best;
6299 struct vcpu_vmx *vmx = to_vmx(vcpu);
6300 u32 exec_control;
6301
6302 vmx->rdtscp_enabled = false;
6303 if (vmx_rdtscp_supported()) {
6304 exec_control = vmcs_read32(SECONDARY_VM_EXEC_CONTROL);
6305 if (exec_control & SECONDARY_EXEC_RDTSCP) {
6306 best = kvm_find_cpuid_entry(vcpu, 0x80000001, 0);
6307 if (best && (best->edx & bit(X86_FEATURE_RDTSCP)))
6308 vmx->rdtscp_enabled = true;
6309 else {
6310 exec_control &= ~SECONDARY_EXEC_RDTSCP;
6311 vmcs_write32(SECONDARY_VM_EXEC_CONTROL,
6312 exec_control);
6313 }
6314 }
6315 }
Sheng Yang0e851882009-12-18 16:48:46 +08006316}
6317
Joerg Roedeld4330ef2010-04-22 12:33:11 +02006318static void vmx_set_supported_cpuid(u32 func, struct kvm_cpuid_entry2 *entry)
6319{
Nadav Har'El7b8050f2011-05-25 23:16:10 +03006320 if (func == 1 && nested)
6321 entry->ecx |= bit(X86_FEATURE_VMX);
Joerg Roedeld4330ef2010-04-22 12:33:11 +02006322}
6323
Nadav Har'Elfe3ef052011-05-25 23:10:02 +03006324/*
6325 * prepare_vmcs02 is called when the L1 guest hypervisor runs its nested
6326 * L2 guest. L1 has a vmcs for L2 (vmcs12), and this function "merges" it
6327 * with L0's requirements for its guest (a.k.a. vmsc01), so we can run the L2
6328 * guest in a way that will both be appropriate to L1's requests, and our
6329 * needs. In addition to modifying the active vmcs (which is vmcs02), this
6330 * function also has additional necessary side-effects, like setting various
6331 * vcpu->arch fields.
6332 */
6333static void prepare_vmcs02(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
6334{
6335 struct vcpu_vmx *vmx = to_vmx(vcpu);
6336 u32 exec_control;
6337
6338 vmcs_write16(GUEST_ES_SELECTOR, vmcs12->guest_es_selector);
6339 vmcs_write16(GUEST_CS_SELECTOR, vmcs12->guest_cs_selector);
6340 vmcs_write16(GUEST_SS_SELECTOR, vmcs12->guest_ss_selector);
6341 vmcs_write16(GUEST_DS_SELECTOR, vmcs12->guest_ds_selector);
6342 vmcs_write16(GUEST_FS_SELECTOR, vmcs12->guest_fs_selector);
6343 vmcs_write16(GUEST_GS_SELECTOR, vmcs12->guest_gs_selector);
6344 vmcs_write16(GUEST_LDTR_SELECTOR, vmcs12->guest_ldtr_selector);
6345 vmcs_write16(GUEST_TR_SELECTOR, vmcs12->guest_tr_selector);
6346 vmcs_write32(GUEST_ES_LIMIT, vmcs12->guest_es_limit);
6347 vmcs_write32(GUEST_CS_LIMIT, vmcs12->guest_cs_limit);
6348 vmcs_write32(GUEST_SS_LIMIT, vmcs12->guest_ss_limit);
6349 vmcs_write32(GUEST_DS_LIMIT, vmcs12->guest_ds_limit);
6350 vmcs_write32(GUEST_FS_LIMIT, vmcs12->guest_fs_limit);
6351 vmcs_write32(GUEST_GS_LIMIT, vmcs12->guest_gs_limit);
6352 vmcs_write32(GUEST_LDTR_LIMIT, vmcs12->guest_ldtr_limit);
6353 vmcs_write32(GUEST_TR_LIMIT, vmcs12->guest_tr_limit);
6354 vmcs_write32(GUEST_GDTR_LIMIT, vmcs12->guest_gdtr_limit);
6355 vmcs_write32(GUEST_IDTR_LIMIT, vmcs12->guest_idtr_limit);
6356 vmcs_write32(GUEST_ES_AR_BYTES, vmcs12->guest_es_ar_bytes);
6357 vmcs_write32(GUEST_CS_AR_BYTES, vmcs12->guest_cs_ar_bytes);
6358 vmcs_write32(GUEST_SS_AR_BYTES, vmcs12->guest_ss_ar_bytes);
6359 vmcs_write32(GUEST_DS_AR_BYTES, vmcs12->guest_ds_ar_bytes);
6360 vmcs_write32(GUEST_FS_AR_BYTES, vmcs12->guest_fs_ar_bytes);
6361 vmcs_write32(GUEST_GS_AR_BYTES, vmcs12->guest_gs_ar_bytes);
6362 vmcs_write32(GUEST_LDTR_AR_BYTES, vmcs12->guest_ldtr_ar_bytes);
6363 vmcs_write32(GUEST_TR_AR_BYTES, vmcs12->guest_tr_ar_bytes);
6364 vmcs_writel(GUEST_ES_BASE, vmcs12->guest_es_base);
6365 vmcs_writel(GUEST_CS_BASE, vmcs12->guest_cs_base);
6366 vmcs_writel(GUEST_SS_BASE, vmcs12->guest_ss_base);
6367 vmcs_writel(GUEST_DS_BASE, vmcs12->guest_ds_base);
6368 vmcs_writel(GUEST_FS_BASE, vmcs12->guest_fs_base);
6369 vmcs_writel(GUEST_GS_BASE, vmcs12->guest_gs_base);
6370 vmcs_writel(GUEST_LDTR_BASE, vmcs12->guest_ldtr_base);
6371 vmcs_writel(GUEST_TR_BASE, vmcs12->guest_tr_base);
6372 vmcs_writel(GUEST_GDTR_BASE, vmcs12->guest_gdtr_base);
6373 vmcs_writel(GUEST_IDTR_BASE, vmcs12->guest_idtr_base);
6374
6375 vmcs_write64(GUEST_IA32_DEBUGCTL, vmcs12->guest_ia32_debugctl);
6376 vmcs_write32(VM_ENTRY_INTR_INFO_FIELD,
6377 vmcs12->vm_entry_intr_info_field);
6378 vmcs_write32(VM_ENTRY_EXCEPTION_ERROR_CODE,
6379 vmcs12->vm_entry_exception_error_code);
6380 vmcs_write32(VM_ENTRY_INSTRUCTION_LEN,
6381 vmcs12->vm_entry_instruction_len);
6382 vmcs_write32(GUEST_INTERRUPTIBILITY_INFO,
6383 vmcs12->guest_interruptibility_info);
6384 vmcs_write32(GUEST_ACTIVITY_STATE, vmcs12->guest_activity_state);
6385 vmcs_write32(GUEST_SYSENTER_CS, vmcs12->guest_sysenter_cs);
6386 vmcs_writel(GUEST_DR7, vmcs12->guest_dr7);
6387 vmcs_writel(GUEST_RFLAGS, vmcs12->guest_rflags);
6388 vmcs_writel(GUEST_PENDING_DBG_EXCEPTIONS,
6389 vmcs12->guest_pending_dbg_exceptions);
6390 vmcs_writel(GUEST_SYSENTER_ESP, vmcs12->guest_sysenter_esp);
6391 vmcs_writel(GUEST_SYSENTER_EIP, vmcs12->guest_sysenter_eip);
6392
6393 vmcs_write64(VMCS_LINK_POINTER, -1ull);
6394
6395 vmcs_write32(PIN_BASED_VM_EXEC_CONTROL,
6396 (vmcs_config.pin_based_exec_ctrl |
6397 vmcs12->pin_based_vm_exec_control));
6398
6399 /*
6400 * Whether page-faults are trapped is determined by a combination of
6401 * 3 settings: PFEC_MASK, PFEC_MATCH and EXCEPTION_BITMAP.PF.
6402 * If enable_ept, L0 doesn't care about page faults and we should
6403 * set all of these to L1's desires. However, if !enable_ept, L0 does
6404 * care about (at least some) page faults, and because it is not easy
6405 * (if at all possible?) to merge L0 and L1's desires, we simply ask
6406 * to exit on each and every L2 page fault. This is done by setting
6407 * MASK=MATCH=0 and (see below) EB.PF=1.
6408 * Note that below we don't need special code to set EB.PF beyond the
6409 * "or"ing of the EB of vmcs01 and vmcs12, because when enable_ept,
6410 * vmcs01's EB.PF is 0 so the "or" will take vmcs12's value, and when
6411 * !enable_ept, EB.PF is 1, so the "or" will always be 1.
6412 *
6413 * A problem with this approach (when !enable_ept) is that L1 may be
6414 * injected with more page faults than it asked for. This could have
6415 * caused problems, but in practice existing hypervisors don't care.
6416 * To fix this, we will need to emulate the PFEC checking (on the L1
6417 * page tables), using walk_addr(), when injecting PFs to L1.
6418 */
6419 vmcs_write32(PAGE_FAULT_ERROR_CODE_MASK,
6420 enable_ept ? vmcs12->page_fault_error_code_mask : 0);
6421 vmcs_write32(PAGE_FAULT_ERROR_CODE_MATCH,
6422 enable_ept ? vmcs12->page_fault_error_code_match : 0);
6423
6424 if (cpu_has_secondary_exec_ctrls()) {
6425 u32 exec_control = vmx_secondary_exec_control(vmx);
6426 if (!vmx->rdtscp_enabled)
6427 exec_control &= ~SECONDARY_EXEC_RDTSCP;
6428 /* Take the following fields only from vmcs12 */
6429 exec_control &= ~SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES;
6430 if (nested_cpu_has(vmcs12,
6431 CPU_BASED_ACTIVATE_SECONDARY_CONTROLS))
6432 exec_control |= vmcs12->secondary_vm_exec_control;
6433
6434 if (exec_control & SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES) {
6435 /*
6436 * Translate L1 physical address to host physical
6437 * address for vmcs02. Keep the page pinned, so this
6438 * physical address remains valid. We keep a reference
6439 * to it so we can release it later.
6440 */
6441 if (vmx->nested.apic_access_page) /* shouldn't happen */
6442 nested_release_page(vmx->nested.apic_access_page);
6443 vmx->nested.apic_access_page =
6444 nested_get_page(vcpu, vmcs12->apic_access_addr);
6445 /*
6446 * If translation failed, no matter: This feature asks
6447 * to exit when accessing the given address, and if it
6448 * can never be accessed, this feature won't do
6449 * anything anyway.
6450 */
6451 if (!vmx->nested.apic_access_page)
6452 exec_control &=
6453 ~SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES;
6454 else
6455 vmcs_write64(APIC_ACCESS_ADDR,
6456 page_to_phys(vmx->nested.apic_access_page));
6457 }
6458
6459 vmcs_write32(SECONDARY_VM_EXEC_CONTROL, exec_control);
6460 }
6461
6462
6463 /*
6464 * Set host-state according to L0's settings (vmcs12 is irrelevant here)
6465 * Some constant fields are set here by vmx_set_constant_host_state().
6466 * Other fields are different per CPU, and will be set later when
6467 * vmx_vcpu_load() is called, and when vmx_save_host_state() is called.
6468 */
6469 vmx_set_constant_host_state();
6470
6471 /*
6472 * HOST_RSP is normally set correctly in vmx_vcpu_run() just before
6473 * entry, but only if the current (host) sp changed from the value
6474 * we wrote last (vmx->host_rsp). This cache is no longer relevant
6475 * if we switch vmcs, and rather than hold a separate cache per vmcs,
6476 * here we just force the write to happen on entry.
6477 */
6478 vmx->host_rsp = 0;
6479
6480 exec_control = vmx_exec_control(vmx); /* L0's desires */
6481 exec_control &= ~CPU_BASED_VIRTUAL_INTR_PENDING;
6482 exec_control &= ~CPU_BASED_VIRTUAL_NMI_PENDING;
6483 exec_control &= ~CPU_BASED_TPR_SHADOW;
6484 exec_control |= vmcs12->cpu_based_vm_exec_control;
6485 /*
6486 * Merging of IO and MSR bitmaps not currently supported.
6487 * Rather, exit every time.
6488 */
6489 exec_control &= ~CPU_BASED_USE_MSR_BITMAPS;
6490 exec_control &= ~CPU_BASED_USE_IO_BITMAPS;
6491 exec_control |= CPU_BASED_UNCOND_IO_EXITING;
6492
6493 vmcs_write32(CPU_BASED_VM_EXEC_CONTROL, exec_control);
6494
6495 /* EXCEPTION_BITMAP and CR0_GUEST_HOST_MASK should basically be the
6496 * bitwise-or of what L1 wants to trap for L2, and what we want to
6497 * trap. Note that CR0.TS also needs updating - we do this later.
6498 */
6499 update_exception_bitmap(vcpu);
6500 vcpu->arch.cr0_guest_owned_bits &= ~vmcs12->cr0_guest_host_mask;
6501 vmcs_writel(CR0_GUEST_HOST_MASK, ~vcpu->arch.cr0_guest_owned_bits);
6502
6503 /* Note: IA32_MODE, LOAD_IA32_EFER are modified by vmx_set_efer below */
6504 vmcs_write32(VM_EXIT_CONTROLS,
6505 vmcs12->vm_exit_controls | vmcs_config.vmexit_ctrl);
6506 vmcs_write32(VM_ENTRY_CONTROLS, vmcs12->vm_entry_controls |
6507 (vmcs_config.vmentry_ctrl & ~VM_ENTRY_IA32E_MODE));
6508
6509 if (vmcs12->vm_entry_controls & VM_ENTRY_LOAD_IA32_PAT)
6510 vmcs_write64(GUEST_IA32_PAT, vmcs12->guest_ia32_pat);
6511 else if (vmcs_config.vmentry_ctrl & VM_ENTRY_LOAD_IA32_PAT)
6512 vmcs_write64(GUEST_IA32_PAT, vmx->vcpu.arch.pat);
6513
6514
6515 set_cr4_guest_host_mask(vmx);
6516
6517 vmcs_write64(TSC_OFFSET,
6518 vmx->nested.vmcs01_tsc_offset + vmcs12->tsc_offset);
6519
6520 if (enable_vpid) {
6521 /*
6522 * Trivially support vpid by letting L2s share their parent
6523 * L1's vpid. TODO: move to a more elaborate solution, giving
6524 * each L2 its own vpid and exposing the vpid feature to L1.
6525 */
6526 vmcs_write16(VIRTUAL_PROCESSOR_ID, vmx->vpid);
6527 vmx_flush_tlb(vcpu);
6528 }
6529
6530 if (vmcs12->vm_entry_controls & VM_ENTRY_LOAD_IA32_EFER)
6531 vcpu->arch.efer = vmcs12->guest_ia32_efer;
6532 if (vmcs12->vm_entry_controls & VM_ENTRY_IA32E_MODE)
6533 vcpu->arch.efer |= (EFER_LMA | EFER_LME);
6534 else
6535 vcpu->arch.efer &= ~(EFER_LMA | EFER_LME);
6536 /* Note: modifies VM_ENTRY/EXIT_CONTROLS and GUEST/HOST_IA32_EFER */
6537 vmx_set_efer(vcpu, vcpu->arch.efer);
6538
6539 /*
6540 * This sets GUEST_CR0 to vmcs12->guest_cr0, with possibly a modified
6541 * TS bit (for lazy fpu) and bits which we consider mandatory enabled.
6542 * The CR0_READ_SHADOW is what L2 should have expected to read given
6543 * the specifications by L1; It's not enough to take
6544 * vmcs12->cr0_read_shadow because on our cr0_guest_host_mask we we
6545 * have more bits than L1 expected.
6546 */
6547 vmx_set_cr0(vcpu, vmcs12->guest_cr0);
6548 vmcs_writel(CR0_READ_SHADOW, nested_read_cr0(vmcs12));
6549
6550 vmx_set_cr4(vcpu, vmcs12->guest_cr4);
6551 vmcs_writel(CR4_READ_SHADOW, nested_read_cr4(vmcs12));
6552
6553 /* shadow page tables on either EPT or shadow page tables */
6554 kvm_set_cr3(vcpu, vmcs12->guest_cr3);
6555 kvm_mmu_reset_context(vcpu);
6556
6557 kvm_register_write(vcpu, VCPU_REGS_RSP, vmcs12->guest_rsp);
6558 kvm_register_write(vcpu, VCPU_REGS_RIP, vmcs12->guest_rip);
6559}
6560
Nadav Har'Elcd232ad2011-05-25 23:10:33 +03006561/*
6562 * nested_vmx_run() handles a nested entry, i.e., a VMLAUNCH or VMRESUME on L1
6563 * for running an L2 nested guest.
6564 */
6565static int nested_vmx_run(struct kvm_vcpu *vcpu, bool launch)
6566{
6567 struct vmcs12 *vmcs12;
6568 struct vcpu_vmx *vmx = to_vmx(vcpu);
6569 int cpu;
6570 struct loaded_vmcs *vmcs02;
6571
6572 if (!nested_vmx_check_permission(vcpu) ||
6573 !nested_vmx_check_vmcs12(vcpu))
6574 return 1;
6575
6576 skip_emulated_instruction(vcpu);
6577 vmcs12 = get_vmcs12(vcpu);
6578
Nadav Har'El7c177932011-05-25 23:12:04 +03006579 /*
6580 * The nested entry process starts with enforcing various prerequisites
6581 * on vmcs12 as required by the Intel SDM, and act appropriately when
6582 * they fail: As the SDM explains, some conditions should cause the
6583 * instruction to fail, while others will cause the instruction to seem
6584 * to succeed, but return an EXIT_REASON_INVALID_STATE.
6585 * To speed up the normal (success) code path, we should avoid checking
6586 * for misconfigurations which will anyway be caught by the processor
6587 * when using the merged vmcs02.
6588 */
6589 if (vmcs12->launch_state == launch) {
6590 nested_vmx_failValid(vcpu,
6591 launch ? VMXERR_VMLAUNCH_NONCLEAR_VMCS
6592 : VMXERR_VMRESUME_NONLAUNCHED_VMCS);
6593 return 1;
6594 }
6595
6596 if ((vmcs12->cpu_based_vm_exec_control & CPU_BASED_USE_MSR_BITMAPS) &&
6597 !IS_ALIGNED(vmcs12->msr_bitmap, PAGE_SIZE)) {
6598 /*TODO: Also verify bits beyond physical address width are 0*/
6599 nested_vmx_failValid(vcpu, VMXERR_ENTRY_INVALID_CONTROL_FIELD);
6600 return 1;
6601 }
6602
6603 if (nested_cpu_has2(vmcs12, SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES) &&
6604 !IS_ALIGNED(vmcs12->apic_access_addr, PAGE_SIZE)) {
6605 /*TODO: Also verify bits beyond physical address width are 0*/
6606 nested_vmx_failValid(vcpu, VMXERR_ENTRY_INVALID_CONTROL_FIELD);
6607 return 1;
6608 }
6609
6610 if (vmcs12->vm_entry_msr_load_count > 0 ||
6611 vmcs12->vm_exit_msr_load_count > 0 ||
6612 vmcs12->vm_exit_msr_store_count > 0) {
6613 if (printk_ratelimit())
6614 printk(KERN_WARNING
6615 "%s: VMCS MSR_{LOAD,STORE} unsupported\n", __func__);
6616 nested_vmx_failValid(vcpu, VMXERR_ENTRY_INVALID_CONTROL_FIELD);
6617 return 1;
6618 }
6619
6620 if (!vmx_control_verify(vmcs12->cpu_based_vm_exec_control,
6621 nested_vmx_procbased_ctls_low, nested_vmx_procbased_ctls_high) ||
6622 !vmx_control_verify(vmcs12->secondary_vm_exec_control,
6623 nested_vmx_secondary_ctls_low, nested_vmx_secondary_ctls_high) ||
6624 !vmx_control_verify(vmcs12->pin_based_vm_exec_control,
6625 nested_vmx_pinbased_ctls_low, nested_vmx_pinbased_ctls_high) ||
6626 !vmx_control_verify(vmcs12->vm_exit_controls,
6627 nested_vmx_exit_ctls_low, nested_vmx_exit_ctls_high) ||
6628 !vmx_control_verify(vmcs12->vm_entry_controls,
6629 nested_vmx_entry_ctls_low, nested_vmx_entry_ctls_high))
6630 {
6631 nested_vmx_failValid(vcpu, VMXERR_ENTRY_INVALID_CONTROL_FIELD);
6632 return 1;
6633 }
6634
6635 if (((vmcs12->host_cr0 & VMXON_CR0_ALWAYSON) != VMXON_CR0_ALWAYSON) ||
6636 ((vmcs12->host_cr4 & VMXON_CR4_ALWAYSON) != VMXON_CR4_ALWAYSON)) {
6637 nested_vmx_failValid(vcpu,
6638 VMXERR_ENTRY_INVALID_HOST_STATE_FIELD);
6639 return 1;
6640 }
6641
6642 if (((vmcs12->guest_cr0 & VMXON_CR0_ALWAYSON) != VMXON_CR0_ALWAYSON) ||
6643 ((vmcs12->guest_cr4 & VMXON_CR4_ALWAYSON) != VMXON_CR4_ALWAYSON)) {
6644 nested_vmx_entry_failure(vcpu, vmcs12,
6645 EXIT_REASON_INVALID_STATE, ENTRY_FAIL_DEFAULT);
6646 return 1;
6647 }
6648 if (vmcs12->vmcs_link_pointer != -1ull) {
6649 nested_vmx_entry_failure(vcpu, vmcs12,
6650 EXIT_REASON_INVALID_STATE, ENTRY_FAIL_VMCS_LINK_PTR);
6651 return 1;
6652 }
6653
6654 /*
6655 * We're finally done with prerequisite checking, and can start with
6656 * the nested entry.
6657 */
6658
Nadav Har'Elcd232ad2011-05-25 23:10:33 +03006659 vmcs02 = nested_get_current_vmcs02(vmx);
6660 if (!vmcs02)
6661 return -ENOMEM;
6662
6663 enter_guest_mode(vcpu);
6664
6665 vmx->nested.vmcs01_tsc_offset = vmcs_read64(TSC_OFFSET);
6666
6667 cpu = get_cpu();
6668 vmx->loaded_vmcs = vmcs02;
6669 vmx_vcpu_put(vcpu);
6670 vmx_vcpu_load(vcpu, cpu);
6671 vcpu->cpu = cpu;
6672 put_cpu();
6673
6674 vmcs12->launch_state = 1;
6675
6676 prepare_vmcs02(vcpu, vmcs12);
6677
6678 /*
6679 * Note no nested_vmx_succeed or nested_vmx_fail here. At this point
6680 * we are no longer running L1, and VMLAUNCH/VMRESUME has not yet
6681 * returned as far as L1 is concerned. It will only return (and set
6682 * the success flag) when L2 exits (see nested_vmx_vmexit()).
6683 */
6684 return 1;
6685}
6686
Nadav Har'El4704d0b2011-05-25 23:11:34 +03006687/*
6688 * On a nested exit from L2 to L1, vmcs12.guest_cr0 might not be up-to-date
6689 * because L2 may have changed some cr0 bits directly (CRO_GUEST_HOST_MASK).
6690 * This function returns the new value we should put in vmcs12.guest_cr0.
6691 * It's not enough to just return the vmcs02 GUEST_CR0. Rather,
6692 * 1. Bits that neither L0 nor L1 trapped, were set directly by L2 and are now
6693 * available in vmcs02 GUEST_CR0. (Note: It's enough to check that L0
6694 * didn't trap the bit, because if L1 did, so would L0).
6695 * 2. Bits that L1 asked to trap (and therefore L0 also did) could not have
6696 * been modified by L2, and L1 knows it. So just leave the old value of
6697 * the bit from vmcs12.guest_cr0. Note that the bit from vmcs02 GUEST_CR0
6698 * isn't relevant, because if L0 traps this bit it can set it to anything.
6699 * 3. Bits that L1 didn't trap, but L0 did. L1 believes the guest could have
6700 * changed these bits, and therefore they need to be updated, but L0
6701 * didn't necessarily allow them to be changed in GUEST_CR0 - and rather
6702 * put them in vmcs02 CR0_READ_SHADOW. So take these bits from there.
6703 */
6704static inline unsigned long
6705vmcs12_guest_cr0(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
6706{
6707 return
6708 /*1*/ (vmcs_readl(GUEST_CR0) & vcpu->arch.cr0_guest_owned_bits) |
6709 /*2*/ (vmcs12->guest_cr0 & vmcs12->cr0_guest_host_mask) |
6710 /*3*/ (vmcs_readl(CR0_READ_SHADOW) & ~(vmcs12->cr0_guest_host_mask |
6711 vcpu->arch.cr0_guest_owned_bits));
6712}
6713
6714static inline unsigned long
6715vmcs12_guest_cr4(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
6716{
6717 return
6718 /*1*/ (vmcs_readl(GUEST_CR4) & vcpu->arch.cr4_guest_owned_bits) |
6719 /*2*/ (vmcs12->guest_cr4 & vmcs12->cr4_guest_host_mask) |
6720 /*3*/ (vmcs_readl(CR4_READ_SHADOW) & ~(vmcs12->cr4_guest_host_mask |
6721 vcpu->arch.cr4_guest_owned_bits));
6722}
6723
6724/*
6725 * prepare_vmcs12 is part of what we need to do when the nested L2 guest exits
6726 * and we want to prepare to run its L1 parent. L1 keeps a vmcs for L2 (vmcs12),
6727 * and this function updates it to reflect the changes to the guest state while
6728 * L2 was running (and perhaps made some exits which were handled directly by L0
6729 * without going back to L1), and to reflect the exit reason.
6730 * Note that we do not have to copy here all VMCS fields, just those that
6731 * could have changed by the L2 guest or the exit - i.e., the guest-state and
6732 * exit-information fields only. Other fields are modified by L1 with VMWRITE,
6733 * which already writes to vmcs12 directly.
6734 */
6735void prepare_vmcs12(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
6736{
6737 /* update guest state fields: */
6738 vmcs12->guest_cr0 = vmcs12_guest_cr0(vcpu, vmcs12);
6739 vmcs12->guest_cr4 = vmcs12_guest_cr4(vcpu, vmcs12);
6740
6741 kvm_get_dr(vcpu, 7, (unsigned long *)&vmcs12->guest_dr7);
6742 vmcs12->guest_rsp = kvm_register_read(vcpu, VCPU_REGS_RSP);
6743 vmcs12->guest_rip = kvm_register_read(vcpu, VCPU_REGS_RIP);
6744 vmcs12->guest_rflags = vmcs_readl(GUEST_RFLAGS);
6745
6746 vmcs12->guest_es_selector = vmcs_read16(GUEST_ES_SELECTOR);
6747 vmcs12->guest_cs_selector = vmcs_read16(GUEST_CS_SELECTOR);
6748 vmcs12->guest_ss_selector = vmcs_read16(GUEST_SS_SELECTOR);
6749 vmcs12->guest_ds_selector = vmcs_read16(GUEST_DS_SELECTOR);
6750 vmcs12->guest_fs_selector = vmcs_read16(GUEST_FS_SELECTOR);
6751 vmcs12->guest_gs_selector = vmcs_read16(GUEST_GS_SELECTOR);
6752 vmcs12->guest_ldtr_selector = vmcs_read16(GUEST_LDTR_SELECTOR);
6753 vmcs12->guest_tr_selector = vmcs_read16(GUEST_TR_SELECTOR);
6754 vmcs12->guest_es_limit = vmcs_read32(GUEST_ES_LIMIT);
6755 vmcs12->guest_cs_limit = vmcs_read32(GUEST_CS_LIMIT);
6756 vmcs12->guest_ss_limit = vmcs_read32(GUEST_SS_LIMIT);
6757 vmcs12->guest_ds_limit = vmcs_read32(GUEST_DS_LIMIT);
6758 vmcs12->guest_fs_limit = vmcs_read32(GUEST_FS_LIMIT);
6759 vmcs12->guest_gs_limit = vmcs_read32(GUEST_GS_LIMIT);
6760 vmcs12->guest_ldtr_limit = vmcs_read32(GUEST_LDTR_LIMIT);
6761 vmcs12->guest_tr_limit = vmcs_read32(GUEST_TR_LIMIT);
6762 vmcs12->guest_gdtr_limit = vmcs_read32(GUEST_GDTR_LIMIT);
6763 vmcs12->guest_idtr_limit = vmcs_read32(GUEST_IDTR_LIMIT);
6764 vmcs12->guest_es_ar_bytes = vmcs_read32(GUEST_ES_AR_BYTES);
6765 vmcs12->guest_cs_ar_bytes = vmcs_read32(GUEST_CS_AR_BYTES);
6766 vmcs12->guest_ss_ar_bytes = vmcs_read32(GUEST_SS_AR_BYTES);
6767 vmcs12->guest_ds_ar_bytes = vmcs_read32(GUEST_DS_AR_BYTES);
6768 vmcs12->guest_fs_ar_bytes = vmcs_read32(GUEST_FS_AR_BYTES);
6769 vmcs12->guest_gs_ar_bytes = vmcs_read32(GUEST_GS_AR_BYTES);
6770 vmcs12->guest_ldtr_ar_bytes = vmcs_read32(GUEST_LDTR_AR_BYTES);
6771 vmcs12->guest_tr_ar_bytes = vmcs_read32(GUEST_TR_AR_BYTES);
6772 vmcs12->guest_es_base = vmcs_readl(GUEST_ES_BASE);
6773 vmcs12->guest_cs_base = vmcs_readl(GUEST_CS_BASE);
6774 vmcs12->guest_ss_base = vmcs_readl(GUEST_SS_BASE);
6775 vmcs12->guest_ds_base = vmcs_readl(GUEST_DS_BASE);
6776 vmcs12->guest_fs_base = vmcs_readl(GUEST_FS_BASE);
6777 vmcs12->guest_gs_base = vmcs_readl(GUEST_GS_BASE);
6778 vmcs12->guest_ldtr_base = vmcs_readl(GUEST_LDTR_BASE);
6779 vmcs12->guest_tr_base = vmcs_readl(GUEST_TR_BASE);
6780 vmcs12->guest_gdtr_base = vmcs_readl(GUEST_GDTR_BASE);
6781 vmcs12->guest_idtr_base = vmcs_readl(GUEST_IDTR_BASE);
6782
6783 vmcs12->guest_activity_state = vmcs_read32(GUEST_ACTIVITY_STATE);
6784 vmcs12->guest_interruptibility_info =
6785 vmcs_read32(GUEST_INTERRUPTIBILITY_INFO);
6786 vmcs12->guest_pending_dbg_exceptions =
6787 vmcs_readl(GUEST_PENDING_DBG_EXCEPTIONS);
6788
6789 /* TODO: These cannot have changed unless we have MSR bitmaps and
6790 * the relevant bit asks not to trap the change */
6791 vmcs12->guest_ia32_debugctl = vmcs_read64(GUEST_IA32_DEBUGCTL);
6792 if (vmcs12->vm_entry_controls & VM_EXIT_SAVE_IA32_PAT)
6793 vmcs12->guest_ia32_pat = vmcs_read64(GUEST_IA32_PAT);
6794 vmcs12->guest_sysenter_cs = vmcs_read32(GUEST_SYSENTER_CS);
6795 vmcs12->guest_sysenter_esp = vmcs_readl(GUEST_SYSENTER_ESP);
6796 vmcs12->guest_sysenter_eip = vmcs_readl(GUEST_SYSENTER_EIP);
6797
6798 /* update exit information fields: */
6799
6800 vmcs12->vm_exit_reason = vmcs_read32(VM_EXIT_REASON);
6801 vmcs12->exit_qualification = vmcs_readl(EXIT_QUALIFICATION);
6802
6803 vmcs12->vm_exit_intr_info = vmcs_read32(VM_EXIT_INTR_INFO);
6804 vmcs12->vm_exit_intr_error_code = vmcs_read32(VM_EXIT_INTR_ERROR_CODE);
6805 vmcs12->idt_vectoring_info_field =
6806 vmcs_read32(IDT_VECTORING_INFO_FIELD);
6807 vmcs12->idt_vectoring_error_code =
6808 vmcs_read32(IDT_VECTORING_ERROR_CODE);
6809 vmcs12->vm_exit_instruction_len = vmcs_read32(VM_EXIT_INSTRUCTION_LEN);
6810 vmcs12->vmx_instruction_info = vmcs_read32(VMX_INSTRUCTION_INFO);
6811
6812 /* clear vm-entry fields which are to be cleared on exit */
6813 if (!(vmcs12->vm_exit_reason & VMX_EXIT_REASONS_FAILED_VMENTRY))
6814 vmcs12->vm_entry_intr_info_field &= ~INTR_INFO_VALID_MASK;
6815}
6816
6817/*
6818 * A part of what we need to when the nested L2 guest exits and we want to
6819 * run its L1 parent, is to reset L1's guest state to the host state specified
6820 * in vmcs12.
6821 * This function is to be called not only on normal nested exit, but also on
6822 * a nested entry failure, as explained in Intel's spec, 3B.23.7 ("VM-Entry
6823 * Failures During or After Loading Guest State").
6824 * This function should be called when the active VMCS is L1's (vmcs01).
6825 */
6826void load_vmcs12_host_state(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
6827{
6828 if (vmcs12->vm_exit_controls & VM_EXIT_LOAD_IA32_EFER)
6829 vcpu->arch.efer = vmcs12->host_ia32_efer;
6830 if (vmcs12->vm_exit_controls & VM_EXIT_HOST_ADDR_SPACE_SIZE)
6831 vcpu->arch.efer |= (EFER_LMA | EFER_LME);
6832 else
6833 vcpu->arch.efer &= ~(EFER_LMA | EFER_LME);
6834 vmx_set_efer(vcpu, vcpu->arch.efer);
6835
6836 kvm_register_write(vcpu, VCPU_REGS_RSP, vmcs12->host_rsp);
6837 kvm_register_write(vcpu, VCPU_REGS_RIP, vmcs12->host_rip);
6838 /*
6839 * Note that calling vmx_set_cr0 is important, even if cr0 hasn't
6840 * actually changed, because it depends on the current state of
6841 * fpu_active (which may have changed).
6842 * Note that vmx_set_cr0 refers to efer set above.
6843 */
6844 kvm_set_cr0(vcpu, vmcs12->host_cr0);
6845 /*
6846 * If we did fpu_activate()/fpu_deactivate() during L2's run, we need
6847 * to apply the same changes to L1's vmcs. We just set cr0 correctly,
6848 * but we also need to update cr0_guest_host_mask and exception_bitmap.
6849 */
6850 update_exception_bitmap(vcpu);
6851 vcpu->arch.cr0_guest_owned_bits = (vcpu->fpu_active ? X86_CR0_TS : 0);
6852 vmcs_writel(CR0_GUEST_HOST_MASK, ~vcpu->arch.cr0_guest_owned_bits);
6853
6854 /*
6855 * Note that CR4_GUEST_HOST_MASK is already set in the original vmcs01
6856 * (KVM doesn't change it)- no reason to call set_cr4_guest_host_mask();
6857 */
6858 vcpu->arch.cr4_guest_owned_bits = ~vmcs_readl(CR4_GUEST_HOST_MASK);
6859 kvm_set_cr4(vcpu, vmcs12->host_cr4);
6860
6861 /* shadow page tables on either EPT or shadow page tables */
6862 kvm_set_cr3(vcpu, vmcs12->host_cr3);
6863 kvm_mmu_reset_context(vcpu);
6864
6865 if (enable_vpid) {
6866 /*
6867 * Trivially support vpid by letting L2s share their parent
6868 * L1's vpid. TODO: move to a more elaborate solution, giving
6869 * each L2 its own vpid and exposing the vpid feature to L1.
6870 */
6871 vmx_flush_tlb(vcpu);
6872 }
6873
6874
6875 vmcs_write32(GUEST_SYSENTER_CS, vmcs12->host_ia32_sysenter_cs);
6876 vmcs_writel(GUEST_SYSENTER_ESP, vmcs12->host_ia32_sysenter_esp);
6877 vmcs_writel(GUEST_SYSENTER_EIP, vmcs12->host_ia32_sysenter_eip);
6878 vmcs_writel(GUEST_IDTR_BASE, vmcs12->host_idtr_base);
6879 vmcs_writel(GUEST_GDTR_BASE, vmcs12->host_gdtr_base);
6880 vmcs_writel(GUEST_TR_BASE, vmcs12->host_tr_base);
6881 vmcs_writel(GUEST_GS_BASE, vmcs12->host_gs_base);
6882 vmcs_writel(GUEST_FS_BASE, vmcs12->host_fs_base);
6883 vmcs_write16(GUEST_ES_SELECTOR, vmcs12->host_es_selector);
6884 vmcs_write16(GUEST_CS_SELECTOR, vmcs12->host_cs_selector);
6885 vmcs_write16(GUEST_SS_SELECTOR, vmcs12->host_ss_selector);
6886 vmcs_write16(GUEST_DS_SELECTOR, vmcs12->host_ds_selector);
6887 vmcs_write16(GUEST_FS_SELECTOR, vmcs12->host_fs_selector);
6888 vmcs_write16(GUEST_GS_SELECTOR, vmcs12->host_gs_selector);
6889 vmcs_write16(GUEST_TR_SELECTOR, vmcs12->host_tr_selector);
6890
6891 if (vmcs12->vm_exit_controls & VM_EXIT_LOAD_IA32_PAT)
6892 vmcs_write64(GUEST_IA32_PAT, vmcs12->host_ia32_pat);
6893 if (vmcs12->vm_exit_controls & VM_EXIT_LOAD_IA32_PERF_GLOBAL_CTRL)
6894 vmcs_write64(GUEST_IA32_PERF_GLOBAL_CTRL,
6895 vmcs12->host_ia32_perf_global_ctrl);
6896}
6897
6898/*
6899 * Emulate an exit from nested guest (L2) to L1, i.e., prepare to run L1
6900 * and modify vmcs12 to make it see what it would expect to see there if
6901 * L2 was its real guest. Must only be called when in L2 (is_guest_mode())
6902 */
6903static void nested_vmx_vmexit(struct kvm_vcpu *vcpu)
6904{
6905 struct vcpu_vmx *vmx = to_vmx(vcpu);
6906 int cpu;
6907 struct vmcs12 *vmcs12 = get_vmcs12(vcpu);
6908
6909 leave_guest_mode(vcpu);
6910 prepare_vmcs12(vcpu, vmcs12);
6911
6912 cpu = get_cpu();
6913 vmx->loaded_vmcs = &vmx->vmcs01;
6914 vmx_vcpu_put(vcpu);
6915 vmx_vcpu_load(vcpu, cpu);
6916 vcpu->cpu = cpu;
6917 put_cpu();
6918
6919 /* if no vmcs02 cache requested, remove the one we used */
6920 if (VMCS02_POOL_SIZE == 0)
6921 nested_free_vmcs02(vmx, vmx->nested.current_vmptr);
6922
6923 load_vmcs12_host_state(vcpu, vmcs12);
6924
6925 /* Update TSC_OFFSET if vmx_adjust_tsc_offset() was used while L2 ran */
6926 vmcs_write64(TSC_OFFSET, vmx->nested.vmcs01_tsc_offset);
6927
6928 /* This is needed for same reason as it was needed in prepare_vmcs02 */
6929 vmx->host_rsp = 0;
6930
6931 /* Unpin physical memory we referred to in vmcs02 */
6932 if (vmx->nested.apic_access_page) {
6933 nested_release_page(vmx->nested.apic_access_page);
6934 vmx->nested.apic_access_page = 0;
6935 }
6936
6937 /*
6938 * Exiting from L2 to L1, we're now back to L1 which thinks it just
6939 * finished a VMLAUNCH or VMRESUME instruction, so we need to set the
6940 * success or failure flag accordingly.
6941 */
6942 if (unlikely(vmx->fail)) {
6943 vmx->fail = 0;
6944 nested_vmx_failValid(vcpu, vmcs_read32(VM_INSTRUCTION_ERROR));
6945 } else
6946 nested_vmx_succeed(vcpu);
6947}
6948
Nadav Har'El7c177932011-05-25 23:12:04 +03006949/*
6950 * L1's failure to enter L2 is a subset of a normal exit, as explained in
6951 * 23.7 "VM-entry failures during or after loading guest state" (this also
6952 * lists the acceptable exit-reason and exit-qualification parameters).
6953 * It should only be called before L2 actually succeeded to run, and when
6954 * vmcs01 is current (it doesn't leave_guest_mode() or switch vmcss).
6955 */
6956static void nested_vmx_entry_failure(struct kvm_vcpu *vcpu,
6957 struct vmcs12 *vmcs12,
6958 u32 reason, unsigned long qualification)
6959{
6960 load_vmcs12_host_state(vcpu, vmcs12);
6961 vmcs12->vm_exit_reason = reason | VMX_EXIT_REASONS_FAILED_VMENTRY;
6962 vmcs12->exit_qualification = qualification;
6963 nested_vmx_succeed(vcpu);
6964}
6965
Joerg Roedel8a76d7f2011-04-04 12:39:27 +02006966static int vmx_check_intercept(struct kvm_vcpu *vcpu,
6967 struct x86_instruction_info *info,
6968 enum x86_intercept_stage stage)
6969{
6970 return X86EMUL_CONTINUE;
6971}
6972
Christian Ehrhardtcbdd1be2007-09-09 15:41:59 +03006973static struct kvm_x86_ops vmx_x86_ops = {
Avi Kivity6aa8b732006-12-10 02:21:36 -08006974 .cpu_has_kvm_support = cpu_has_kvm_support,
6975 .disabled_by_bios = vmx_disabled_by_bios,
6976 .hardware_setup = hardware_setup,
6977 .hardware_unsetup = hardware_unsetup,
Yang, Sheng002c7f72007-07-31 14:23:01 +03006978 .check_processor_compatibility = vmx_check_processor_compat,
Avi Kivity6aa8b732006-12-10 02:21:36 -08006979 .hardware_enable = hardware_enable,
6980 .hardware_disable = hardware_disable,
Sheng Yang04547152009-04-01 15:52:31 +08006981 .cpu_has_accelerated_tpr = report_flexpriority,
Avi Kivity6aa8b732006-12-10 02:21:36 -08006982
6983 .vcpu_create = vmx_create_vcpu,
6984 .vcpu_free = vmx_free_vcpu,
Avi Kivity04d2cc72007-09-10 18:10:54 +03006985 .vcpu_reset = vmx_vcpu_reset,
Avi Kivity6aa8b732006-12-10 02:21:36 -08006986
Avi Kivity04d2cc72007-09-10 18:10:54 +03006987 .prepare_guest_switch = vmx_save_host_state,
Avi Kivity6aa8b732006-12-10 02:21:36 -08006988 .vcpu_load = vmx_vcpu_load,
6989 .vcpu_put = vmx_vcpu_put,
6990
6991 .set_guest_debug = set_guest_debug,
6992 .get_msr = vmx_get_msr,
6993 .set_msr = vmx_set_msr,
6994 .get_segment_base = vmx_get_segment_base,
6995 .get_segment = vmx_get_segment,
6996 .set_segment = vmx_set_segment,
Izik Eidus2e4d2652008-03-24 19:38:34 +02006997 .get_cpl = vmx_get_cpl,
Avi Kivity6aa8b732006-12-10 02:21:36 -08006998 .get_cs_db_l_bits = vmx_get_cs_db_l_bits,
Avi Kivitye8467fd2009-12-29 18:43:06 +02006999 .decache_cr0_guest_bits = vmx_decache_cr0_guest_bits,
Avi Kivityaff48ba2010-12-05 18:56:11 +02007000 .decache_cr3 = vmx_decache_cr3,
Anthony Liguori25c4c272007-04-27 09:29:21 +03007001 .decache_cr4_guest_bits = vmx_decache_cr4_guest_bits,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007002 .set_cr0 = vmx_set_cr0,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007003 .set_cr3 = vmx_set_cr3,
7004 .set_cr4 = vmx_set_cr4,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007005 .set_efer = vmx_set_efer,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007006 .get_idt = vmx_get_idt,
7007 .set_idt = vmx_set_idt,
7008 .get_gdt = vmx_get_gdt,
7009 .set_gdt = vmx_set_gdt,
Gleb Natapov020df072010-04-13 10:05:23 +03007010 .set_dr7 = vmx_set_dr7,
Marcelo Tosatti5fdbf972008-06-27 14:58:02 -03007011 .cache_reg = vmx_cache_reg,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007012 .get_rflags = vmx_get_rflags,
7013 .set_rflags = vmx_set_rflags,
Avi Kivityebcbab42010-02-07 11:56:52 +02007014 .fpu_activate = vmx_fpu_activate,
Avi Kivity02daab22009-12-30 12:40:26 +02007015 .fpu_deactivate = vmx_fpu_deactivate,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007016
7017 .tlb_flush = vmx_flush_tlb,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007018
Avi Kivity6aa8b732006-12-10 02:21:36 -08007019 .run = vmx_vcpu_run,
Avi Kivity6062d012009-03-23 17:35:17 +02007020 .handle_exit = vmx_handle_exit,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007021 .skip_emulated_instruction = skip_emulated_instruction,
Glauber Costa2809f5d2009-05-12 16:21:05 -04007022 .set_interrupt_shadow = vmx_set_interrupt_shadow,
7023 .get_interrupt_shadow = vmx_get_interrupt_shadow,
Ingo Molnar102d8322007-02-19 14:37:47 +02007024 .patch_hypercall = vmx_patch_hypercall,
Eddie Dong2a8067f2007-08-06 16:29:07 +03007025 .set_irq = vmx_inject_irq,
Gleb Natapov95ba8273132009-04-21 17:45:08 +03007026 .set_nmi = vmx_inject_nmi,
Avi Kivity298101d2007-11-25 13:41:11 +02007027 .queue_exception = vmx_queue_exception,
Avi Kivityb463a6f2010-07-20 15:06:17 +03007028 .cancel_injection = vmx_cancel_injection,
Gleb Natapov78646122009-03-23 12:12:11 +02007029 .interrupt_allowed = vmx_interrupt_allowed,
Gleb Natapov95ba8273132009-04-21 17:45:08 +03007030 .nmi_allowed = vmx_nmi_allowed,
Jan Kiszka3cfc3092009-11-12 01:04:25 +01007031 .get_nmi_mask = vmx_get_nmi_mask,
7032 .set_nmi_mask = vmx_set_nmi_mask,
Gleb Natapov95ba8273132009-04-21 17:45:08 +03007033 .enable_nmi_window = enable_nmi_window,
7034 .enable_irq_window = enable_irq_window,
7035 .update_cr8_intercept = update_cr8_intercept,
Gleb Natapov95ba8273132009-04-21 17:45:08 +03007036
Izik Eiduscbc94022007-10-25 00:29:55 +02007037 .set_tss_addr = vmx_set_tss_addr,
Sheng Yang67253af2008-04-25 10:20:22 +08007038 .get_tdp_level = get_ept_level,
Sheng Yang4b12f0d2009-04-27 20:35:42 +08007039 .get_mt_mask = vmx_get_mt_mask,
Marcelo Tosatti229456f2009-06-17 09:22:14 -03007040
Avi Kivity586f9602010-11-18 13:09:54 +02007041 .get_exit_info = vmx_get_exit_info,
Marcelo Tosatti229456f2009-06-17 09:22:14 -03007042 .exit_reasons_str = vmx_exit_reasons_str,
Avi Kivity586f9602010-11-18 13:09:54 +02007043
Sheng Yang17cc3932010-01-05 19:02:27 +08007044 .get_lpage_level = vmx_get_lpage_level,
Sheng Yang0e851882009-12-18 16:48:46 +08007045
7046 .cpuid_update = vmx_cpuid_update,
Sheng Yang4e47c7a2009-12-18 16:48:47 +08007047
7048 .rdtscp_supported = vmx_rdtscp_supported,
Joerg Roedeld4330ef2010-04-22 12:33:11 +02007049
7050 .set_supported_cpuid = vmx_set_supported_cpuid,
Sheng Yangf5f48ee2010-06-30 12:25:15 +08007051
7052 .has_wbinvd_exit = cpu_has_vmx_wbinvd_exit,
Zachary Amsden99e3e302010-08-19 22:07:17 -10007053
Joerg Roedel4051b182011-03-25 09:44:49 +01007054 .set_tsc_khz = vmx_set_tsc_khz,
Zachary Amsden99e3e302010-08-19 22:07:17 -10007055 .write_tsc_offset = vmx_write_tsc_offset,
Zachary Amsdene48672f2010-08-19 22:07:23 -10007056 .adjust_tsc_offset = vmx_adjust_tsc_offset,
Joerg Roedel857e4092011-03-25 09:44:50 +01007057 .compute_tsc_offset = vmx_compute_tsc_offset,
Joerg Roedel1c97f0a2010-09-10 17:30:41 +02007058
7059 .set_tdp_cr3 = vmx_set_cr3,
Joerg Roedel8a76d7f2011-04-04 12:39:27 +02007060
7061 .check_intercept = vmx_check_intercept,
Avi Kivity6aa8b732006-12-10 02:21:36 -08007062};
7063
7064static int __init vmx_init(void)
7065{
Avi Kivity26bb0982009-09-07 11:14:12 +03007066 int r, i;
7067
7068 rdmsrl_safe(MSR_EFER, &host_efer);
7069
7070 for (i = 0; i < NR_VMX_MSR; ++i)
7071 kvm_define_shared_msr(i, vmx_msr_index[i]);
He, Qingfdef3ad2007-04-30 09:45:24 +03007072
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007073 vmx_io_bitmap_a = (unsigned long *)__get_free_page(GFP_KERNEL);
He, Qingfdef3ad2007-04-30 09:45:24 +03007074 if (!vmx_io_bitmap_a)
7075 return -ENOMEM;
7076
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007077 vmx_io_bitmap_b = (unsigned long *)__get_free_page(GFP_KERNEL);
He, Qingfdef3ad2007-04-30 09:45:24 +03007078 if (!vmx_io_bitmap_b) {
7079 r = -ENOMEM;
7080 goto out;
7081 }
7082
Avi Kivity58972972009-02-24 22:26:47 +02007083 vmx_msr_bitmap_legacy = (unsigned long *)__get_free_page(GFP_KERNEL);
7084 if (!vmx_msr_bitmap_legacy) {
Sheng Yang25c5f222008-03-28 13:18:56 +08007085 r = -ENOMEM;
7086 goto out1;
7087 }
7088
Avi Kivity58972972009-02-24 22:26:47 +02007089 vmx_msr_bitmap_longmode = (unsigned long *)__get_free_page(GFP_KERNEL);
7090 if (!vmx_msr_bitmap_longmode) {
7091 r = -ENOMEM;
7092 goto out2;
7093 }
7094
He, Qingfdef3ad2007-04-30 09:45:24 +03007095 /*
7096 * Allow direct access to the PC debug port (it is often used for I/O
7097 * delays, but the vmexits simply slow things down).
7098 */
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007099 memset(vmx_io_bitmap_a, 0xff, PAGE_SIZE);
7100 clear_bit(0x80, vmx_io_bitmap_a);
He, Qingfdef3ad2007-04-30 09:45:24 +03007101
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007102 memset(vmx_io_bitmap_b, 0xff, PAGE_SIZE);
He, Qingfdef3ad2007-04-30 09:45:24 +03007103
Avi Kivity58972972009-02-24 22:26:47 +02007104 memset(vmx_msr_bitmap_legacy, 0xff, PAGE_SIZE);
7105 memset(vmx_msr_bitmap_longmode, 0xff, PAGE_SIZE);
Sheng Yang25c5f222008-03-28 13:18:56 +08007106
Sheng Yang2384d2b2008-01-17 15:14:33 +08007107 set_bit(0, vmx_vpid_bitmap); /* 0 is reserved for host */
7108
Avi Kivity0ee75be2010-04-28 15:39:01 +03007109 r = kvm_init(&vmx_x86_ops, sizeof(struct vcpu_vmx),
7110 __alignof__(struct vcpu_vmx), THIS_MODULE);
He, Qingfdef3ad2007-04-30 09:45:24 +03007111 if (r)
Avi Kivity58972972009-02-24 22:26:47 +02007112 goto out3;
Sheng Yang25c5f222008-03-28 13:18:56 +08007113
Avi Kivity58972972009-02-24 22:26:47 +02007114 vmx_disable_intercept_for_msr(MSR_FS_BASE, false);
7115 vmx_disable_intercept_for_msr(MSR_GS_BASE, false);
7116 vmx_disable_intercept_for_msr(MSR_KERNEL_GS_BASE, true);
7117 vmx_disable_intercept_for_msr(MSR_IA32_SYSENTER_CS, false);
7118 vmx_disable_intercept_for_msr(MSR_IA32_SYSENTER_ESP, false);
7119 vmx_disable_intercept_for_msr(MSR_IA32_SYSENTER_EIP, false);
He, Qingfdef3ad2007-04-30 09:45:24 +03007120
Avi Kivity089d0342009-03-23 18:26:32 +02007121 if (enable_ept) {
Sheng Yang534e38b2008-09-08 15:12:30 +08007122 kvm_mmu_set_mask_ptes(0ull, 0ull, 0ull, 0ull,
Sheng Yang4b12f0d2009-04-27 20:35:42 +08007123 VMX_EPT_EXECUTABLE_MASK);
Xiao Guangrongce88dec2011-07-12 03:33:44 +08007124 ept_set_mmio_spte_mask();
Sheng Yang5fdbcb92008-07-16 09:25:40 +08007125 kvm_enable_tdp();
7126 } else
7127 kvm_disable_tdp();
Sheng Yang14394422008-04-28 12:24:45 +08007128
He, Qingfdef3ad2007-04-30 09:45:24 +03007129 return 0;
7130
Avi Kivity58972972009-02-24 22:26:47 +02007131out3:
7132 free_page((unsigned long)vmx_msr_bitmap_longmode);
Sheng Yang25c5f222008-03-28 13:18:56 +08007133out2:
Avi Kivity58972972009-02-24 22:26:47 +02007134 free_page((unsigned long)vmx_msr_bitmap_legacy);
He, Qingfdef3ad2007-04-30 09:45:24 +03007135out1:
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007136 free_page((unsigned long)vmx_io_bitmap_b);
He, Qingfdef3ad2007-04-30 09:45:24 +03007137out:
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007138 free_page((unsigned long)vmx_io_bitmap_a);
He, Qingfdef3ad2007-04-30 09:45:24 +03007139 return r;
Avi Kivity6aa8b732006-12-10 02:21:36 -08007140}
7141
7142static void __exit vmx_exit(void)
7143{
Avi Kivity58972972009-02-24 22:26:47 +02007144 free_page((unsigned long)vmx_msr_bitmap_legacy);
7145 free_page((unsigned long)vmx_msr_bitmap_longmode);
Avi Kivity3e7c73e2009-02-24 21:46:19 +02007146 free_page((unsigned long)vmx_io_bitmap_b);
7147 free_page((unsigned long)vmx_io_bitmap_a);
He, Qingfdef3ad2007-04-30 09:45:24 +03007148
Zhang Xiantaocb498ea2007-11-14 20:39:31 +08007149 kvm_exit();
Avi Kivity6aa8b732006-12-10 02:21:36 -08007150}
7151
7152module_init(vmx_init)
7153module_exit(vmx_exit)