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nvmm_x86_vmx.c revision 1.36.2.3
      1  1.36.2.3  martin /*	$NetBSD: nvmm_x86_vmx.c,v 1.36.2.3 2019/11/10 12:58:30 martin Exp $	*/
      2       1.1    maxv 
      3       1.1    maxv /*
      4  1.36.2.3  martin  * Copyright (c) 2018-2019 The NetBSD Foundation, Inc.
      5       1.1    maxv  * All rights reserved.
      6       1.1    maxv  *
      7       1.1    maxv  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1    maxv  * by Maxime Villard.
      9       1.1    maxv  *
     10       1.1    maxv  * Redistribution and use in source and binary forms, with or without
     11       1.1    maxv  * modification, are permitted provided that the following conditions
     12       1.1    maxv  * are met:
     13       1.1    maxv  * 1. Redistributions of source code must retain the above copyright
     14       1.1    maxv  *    notice, this list of conditions and the following disclaimer.
     15       1.1    maxv  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1    maxv  *    notice, this list of conditions and the following disclaimer in the
     17       1.1    maxv  *    documentation and/or other materials provided with the distribution.
     18       1.1    maxv  *
     19       1.1    maxv  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1    maxv  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1    maxv  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1    maxv  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1    maxv  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1    maxv  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1    maxv  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1    maxv  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1    maxv  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1    maxv  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1    maxv  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1    maxv  */
     31       1.1    maxv 
     32       1.1    maxv #include <sys/cdefs.h>
     33  1.36.2.3  martin __KERNEL_RCSID(0, "$NetBSD: nvmm_x86_vmx.c,v 1.36.2.3 2019/11/10 12:58:30 martin Exp $");
     34       1.1    maxv 
     35       1.1    maxv #include <sys/param.h>
     36       1.1    maxv #include <sys/systm.h>
     37       1.1    maxv #include <sys/kernel.h>
     38       1.1    maxv #include <sys/kmem.h>
     39       1.1    maxv #include <sys/cpu.h>
     40       1.1    maxv #include <sys/xcall.h>
     41      1.20    maxv #include <sys/mman.h>
     42       1.1    maxv 
     43       1.1    maxv #include <uvm/uvm.h>
     44       1.1    maxv #include <uvm/uvm_page.h>
     45       1.1    maxv 
     46       1.1    maxv #include <x86/cputypes.h>
     47       1.1    maxv #include <x86/specialreg.h>
     48       1.1    maxv #include <x86/pmap.h>
     49       1.1    maxv #include <x86/dbregs.h>
     50       1.4    maxv #include <x86/cpu_counter.h>
     51       1.1    maxv #include <machine/cpuvar.h>
     52       1.1    maxv 
     53       1.1    maxv #include <dev/nvmm/nvmm.h>
     54       1.1    maxv #include <dev/nvmm/nvmm_internal.h>
     55       1.1    maxv #include <dev/nvmm/x86/nvmm_x86.h>
     56       1.1    maxv 
     57       1.1    maxv int _vmx_vmxon(paddr_t *pa);
     58       1.1    maxv int _vmx_vmxoff(void);
     59       1.1    maxv int vmx_vmlaunch(uint64_t *gprs);
     60       1.1    maxv int vmx_vmresume(uint64_t *gprs);
     61       1.1    maxv 
     62       1.1    maxv #define vmx_vmxon(a) \
     63       1.1    maxv 	if (__predict_false(_vmx_vmxon(a) != 0)) { \
     64       1.1    maxv 		panic("%s: VMXON failed", __func__); \
     65       1.1    maxv 	}
     66       1.1    maxv #define vmx_vmxoff() \
     67       1.1    maxv 	if (__predict_false(_vmx_vmxoff() != 0)) { \
     68       1.1    maxv 		panic("%s: VMXOFF failed", __func__); \
     69       1.1    maxv 	}
     70      1.28    maxv 
     71      1.28    maxv struct ept_desc {
     72      1.28    maxv 	uint64_t eptp;
     73      1.28    maxv 	uint64_t mbz;
     74      1.28    maxv } __packed;
     75      1.28    maxv 
     76      1.28    maxv struct vpid_desc {
     77      1.28    maxv 	uint64_t vpid;
     78      1.28    maxv 	uint64_t addr;
     79      1.28    maxv } __packed;
     80      1.28    maxv 
     81      1.28    maxv static inline void
     82      1.28    maxv vmx_invept(uint64_t op, struct ept_desc *desc)
     83      1.28    maxv {
     84      1.28    maxv 	asm volatile (
     85      1.28    maxv 		"invept		%[desc],%[op];"
     86      1.28    maxv 		"jz		vmx_insn_failvalid;"
     87      1.28    maxv 		"jc		vmx_insn_failinvalid;"
     88      1.28    maxv 		:
     89      1.28    maxv 		: [desc] "m" (*desc), [op] "r" (op)
     90      1.28    maxv 		: "memory", "cc"
     91      1.28    maxv 	);
     92      1.28    maxv }
     93      1.28    maxv 
     94      1.28    maxv static inline void
     95      1.28    maxv vmx_invvpid(uint64_t op, struct vpid_desc *desc)
     96      1.28    maxv {
     97      1.28    maxv 	asm volatile (
     98      1.28    maxv 		"invvpid	%[desc],%[op];"
     99      1.28    maxv 		"jz		vmx_insn_failvalid;"
    100      1.28    maxv 		"jc		vmx_insn_failinvalid;"
    101      1.28    maxv 		:
    102      1.28    maxv 		: [desc] "m" (*desc), [op] "r" (op)
    103      1.28    maxv 		: "memory", "cc"
    104      1.28    maxv 	);
    105      1.28    maxv }
    106      1.28    maxv 
    107      1.28    maxv static inline uint64_t
    108      1.28    maxv vmx_vmread(uint64_t field)
    109      1.28    maxv {
    110      1.28    maxv 	uint64_t value;
    111      1.28    maxv 
    112      1.28    maxv 	asm volatile (
    113      1.28    maxv 		"vmread		%[field],%[value];"
    114      1.28    maxv 		"jz		vmx_insn_failvalid;"
    115      1.28    maxv 		"jc		vmx_insn_failinvalid;"
    116      1.28    maxv 		: [value] "=r" (value)
    117      1.28    maxv 		: [field] "r" (field)
    118      1.28    maxv 		: "cc"
    119      1.28    maxv 	);
    120      1.28    maxv 
    121      1.28    maxv 	return value;
    122      1.28    maxv }
    123      1.28    maxv 
    124      1.28    maxv static inline void
    125      1.28    maxv vmx_vmwrite(uint64_t field, uint64_t value)
    126      1.28    maxv {
    127      1.28    maxv 	asm volatile (
    128      1.28    maxv 		"vmwrite	%[value],%[field];"
    129      1.28    maxv 		"jz		vmx_insn_failvalid;"
    130      1.28    maxv 		"jc		vmx_insn_failinvalid;"
    131      1.28    maxv 		:
    132      1.28    maxv 		: [field] "r" (field), [value] "r" (value)
    133      1.28    maxv 		: "cc"
    134      1.28    maxv 	);
    135      1.28    maxv }
    136      1.28    maxv 
    137      1.28    maxv static inline paddr_t
    138      1.28    maxv vmx_vmptrst(void)
    139      1.28    maxv {
    140      1.28    maxv 	paddr_t pa;
    141      1.28    maxv 
    142      1.28    maxv 	asm volatile (
    143      1.28    maxv 		"vmptrst	%[pa];"
    144      1.28    maxv 		:
    145      1.28    maxv 		: [pa] "m" (*(paddr_t *)&pa)
    146      1.28    maxv 		: "memory"
    147      1.28    maxv 	);
    148      1.28    maxv 
    149      1.28    maxv 	return pa;
    150      1.28    maxv }
    151      1.28    maxv 
    152      1.28    maxv static inline void
    153      1.28    maxv vmx_vmptrld(paddr_t *pa)
    154      1.28    maxv {
    155      1.28    maxv 	asm volatile (
    156      1.28    maxv 		"vmptrld	%[pa];"
    157      1.28    maxv 		"jz		vmx_insn_failvalid;"
    158      1.28    maxv 		"jc		vmx_insn_failinvalid;"
    159      1.28    maxv 		:
    160      1.28    maxv 		: [pa] "m" (*pa)
    161      1.28    maxv 		: "memory", "cc"
    162      1.28    maxv 	);
    163      1.28    maxv }
    164      1.28    maxv 
    165      1.28    maxv static inline void
    166      1.28    maxv vmx_vmclear(paddr_t *pa)
    167      1.28    maxv {
    168      1.28    maxv 	asm volatile (
    169      1.28    maxv 		"vmclear	%[pa];"
    170      1.28    maxv 		"jz		vmx_insn_failvalid;"
    171      1.28    maxv 		"jc		vmx_insn_failinvalid;"
    172      1.28    maxv 		:
    173      1.28    maxv 		: [pa] "m" (*pa)
    174      1.28    maxv 		: "memory", "cc"
    175      1.28    maxv 	);
    176      1.28    maxv }
    177       1.1    maxv 
    178       1.1    maxv #define MSR_IA32_FEATURE_CONTROL	0x003A
    179       1.1    maxv #define		IA32_FEATURE_CONTROL_LOCK	__BIT(0)
    180       1.1    maxv #define		IA32_FEATURE_CONTROL_IN_SMX	__BIT(1)
    181       1.1    maxv #define		IA32_FEATURE_CONTROL_OUT_SMX	__BIT(2)
    182       1.1    maxv 
    183       1.1    maxv #define MSR_IA32_VMX_BASIC		0x0480
    184       1.1    maxv #define		IA32_VMX_BASIC_IDENT		__BITS(30,0)
    185       1.1    maxv #define		IA32_VMX_BASIC_DATA_SIZE	__BITS(44,32)
    186       1.1    maxv #define		IA32_VMX_BASIC_MEM_WIDTH	__BIT(48)
    187       1.1    maxv #define		IA32_VMX_BASIC_DUAL		__BIT(49)
    188       1.1    maxv #define		IA32_VMX_BASIC_MEM_TYPE		__BITS(53,50)
    189       1.1    maxv #define			MEM_TYPE_UC		0
    190       1.1    maxv #define			MEM_TYPE_WB		6
    191       1.1    maxv #define		IA32_VMX_BASIC_IO_REPORT	__BIT(54)
    192       1.1    maxv #define		IA32_VMX_BASIC_TRUE_CTLS	__BIT(55)
    193       1.1    maxv 
    194       1.1    maxv #define MSR_IA32_VMX_PINBASED_CTLS		0x0481
    195       1.1    maxv #define MSR_IA32_VMX_PROCBASED_CTLS		0x0482
    196       1.1    maxv #define MSR_IA32_VMX_EXIT_CTLS			0x0483
    197       1.1    maxv #define MSR_IA32_VMX_ENTRY_CTLS			0x0484
    198       1.1    maxv #define MSR_IA32_VMX_PROCBASED_CTLS2		0x048B
    199       1.1    maxv 
    200       1.1    maxv #define MSR_IA32_VMX_TRUE_PINBASED_CTLS		0x048D
    201       1.1    maxv #define MSR_IA32_VMX_TRUE_PROCBASED_CTLS	0x048E
    202       1.1    maxv #define MSR_IA32_VMX_TRUE_EXIT_CTLS		0x048F
    203       1.1    maxv #define MSR_IA32_VMX_TRUE_ENTRY_CTLS		0x0490
    204       1.1    maxv 
    205       1.1    maxv #define MSR_IA32_VMX_CR0_FIXED0			0x0486
    206       1.1    maxv #define MSR_IA32_VMX_CR0_FIXED1			0x0487
    207       1.1    maxv #define MSR_IA32_VMX_CR4_FIXED0			0x0488
    208       1.1    maxv #define MSR_IA32_VMX_CR4_FIXED1			0x0489
    209       1.1    maxv 
    210       1.1    maxv #define MSR_IA32_VMX_EPT_VPID_CAP	0x048C
    211       1.1    maxv #define		IA32_VMX_EPT_VPID_WALKLENGTH_4		__BIT(6)
    212       1.1    maxv #define		IA32_VMX_EPT_VPID_UC			__BIT(8)
    213       1.1    maxv #define		IA32_VMX_EPT_VPID_WB			__BIT(14)
    214       1.1    maxv #define		IA32_VMX_EPT_VPID_INVEPT		__BIT(20)
    215       1.1    maxv #define		IA32_VMX_EPT_VPID_FLAGS_AD		__BIT(21)
    216       1.1    maxv #define		IA32_VMX_EPT_VPID_INVEPT_CONTEXT	__BIT(25)
    217       1.1    maxv #define		IA32_VMX_EPT_VPID_INVEPT_ALL		__BIT(26)
    218       1.1    maxv #define		IA32_VMX_EPT_VPID_INVVPID		__BIT(32)
    219       1.1    maxv #define		IA32_VMX_EPT_VPID_INVVPID_ADDR		__BIT(40)
    220       1.1    maxv #define		IA32_VMX_EPT_VPID_INVVPID_CONTEXT	__BIT(41)
    221       1.1    maxv #define		IA32_VMX_EPT_VPID_INVVPID_ALL		__BIT(42)
    222       1.1    maxv #define		IA32_VMX_EPT_VPID_INVVPID_CONTEXT_NOG	__BIT(43)
    223       1.1    maxv 
    224       1.1    maxv /* -------------------------------------------------------------------------- */
    225       1.1    maxv 
    226       1.1    maxv /* 16-bit control fields */
    227       1.1    maxv #define VMCS_VPID				0x00000000
    228       1.1    maxv #define VMCS_PIR_VECTOR				0x00000002
    229       1.1    maxv #define VMCS_EPTP_INDEX				0x00000004
    230       1.1    maxv /* 16-bit guest-state fields */
    231       1.1    maxv #define VMCS_GUEST_ES_SELECTOR			0x00000800
    232       1.1    maxv #define VMCS_GUEST_CS_SELECTOR			0x00000802
    233       1.1    maxv #define VMCS_GUEST_SS_SELECTOR			0x00000804
    234       1.1    maxv #define VMCS_GUEST_DS_SELECTOR			0x00000806
    235       1.1    maxv #define VMCS_GUEST_FS_SELECTOR			0x00000808
    236       1.1    maxv #define VMCS_GUEST_GS_SELECTOR			0x0000080A
    237       1.1    maxv #define VMCS_GUEST_LDTR_SELECTOR		0x0000080C
    238       1.1    maxv #define VMCS_GUEST_TR_SELECTOR			0x0000080E
    239       1.1    maxv #define VMCS_GUEST_INTR_STATUS			0x00000810
    240       1.1    maxv #define VMCS_PML_INDEX				0x00000812
    241       1.1    maxv /* 16-bit host-state fields */
    242       1.1    maxv #define VMCS_HOST_ES_SELECTOR			0x00000C00
    243       1.1    maxv #define VMCS_HOST_CS_SELECTOR			0x00000C02
    244       1.1    maxv #define VMCS_HOST_SS_SELECTOR			0x00000C04
    245       1.1    maxv #define VMCS_HOST_DS_SELECTOR			0x00000C06
    246       1.1    maxv #define VMCS_HOST_FS_SELECTOR			0x00000C08
    247       1.1    maxv #define VMCS_HOST_GS_SELECTOR			0x00000C0A
    248       1.1    maxv #define VMCS_HOST_TR_SELECTOR			0x00000C0C
    249       1.1    maxv /* 64-bit control fields */
    250       1.1    maxv #define VMCS_IO_BITMAP_A			0x00002000
    251       1.1    maxv #define VMCS_IO_BITMAP_B			0x00002002
    252       1.1    maxv #define VMCS_MSR_BITMAP				0x00002004
    253       1.1    maxv #define VMCS_EXIT_MSR_STORE_ADDRESS		0x00002006
    254       1.1    maxv #define VMCS_EXIT_MSR_LOAD_ADDRESS		0x00002008
    255       1.1    maxv #define VMCS_ENTRY_MSR_LOAD_ADDRESS		0x0000200A
    256       1.1    maxv #define VMCS_EXECUTIVE_VMCS			0x0000200C
    257       1.1    maxv #define VMCS_PML_ADDRESS			0x0000200E
    258       1.1    maxv #define VMCS_TSC_OFFSET				0x00002010
    259       1.1    maxv #define VMCS_VIRTUAL_APIC			0x00002012
    260       1.1    maxv #define VMCS_APIC_ACCESS			0x00002014
    261       1.1    maxv #define VMCS_PIR_DESC				0x00002016
    262       1.1    maxv #define VMCS_VM_CONTROL				0x00002018
    263       1.1    maxv #define VMCS_EPTP				0x0000201A
    264       1.1    maxv #define		EPTP_TYPE			__BITS(2,0)
    265       1.1    maxv #define			EPTP_TYPE_UC		0
    266       1.1    maxv #define			EPTP_TYPE_WB		6
    267       1.1    maxv #define		EPTP_WALKLEN			__BITS(5,3)
    268       1.1    maxv #define		EPTP_FLAGS_AD			__BIT(6)
    269       1.1    maxv #define		EPTP_PHYSADDR			__BITS(63,12)
    270       1.1    maxv #define VMCS_EOI_EXIT0				0x0000201C
    271       1.1    maxv #define VMCS_EOI_EXIT1				0x0000201E
    272       1.1    maxv #define VMCS_EOI_EXIT2				0x00002020
    273       1.1    maxv #define VMCS_EOI_EXIT3				0x00002022
    274       1.1    maxv #define VMCS_EPTP_LIST				0x00002024
    275       1.1    maxv #define VMCS_VMREAD_BITMAP			0x00002026
    276       1.1    maxv #define VMCS_VMWRITE_BITMAP			0x00002028
    277       1.1    maxv #define VMCS_VIRTUAL_EXCEPTION			0x0000202A
    278       1.1    maxv #define VMCS_XSS_EXIT_BITMAP			0x0000202C
    279       1.1    maxv #define VMCS_ENCLS_EXIT_BITMAP			0x0000202E
    280      1.22    maxv #define VMCS_SUBPAGE_PERM_TABLE_PTR		0x00002030
    281       1.1    maxv #define VMCS_TSC_MULTIPLIER			0x00002032
    282       1.1    maxv /* 64-bit read-only fields */
    283       1.1    maxv #define VMCS_GUEST_PHYSICAL_ADDRESS		0x00002400
    284       1.1    maxv /* 64-bit guest-state fields */
    285       1.1    maxv #define VMCS_LINK_POINTER			0x00002800
    286       1.1    maxv #define VMCS_GUEST_IA32_DEBUGCTL		0x00002802
    287       1.1    maxv #define VMCS_GUEST_IA32_PAT			0x00002804
    288       1.1    maxv #define VMCS_GUEST_IA32_EFER			0x00002806
    289       1.1    maxv #define VMCS_GUEST_IA32_PERF_GLOBAL_CTRL	0x00002808
    290       1.1    maxv #define VMCS_GUEST_PDPTE0			0x0000280A
    291       1.1    maxv #define VMCS_GUEST_PDPTE1			0x0000280C
    292       1.1    maxv #define VMCS_GUEST_PDPTE2			0x0000280E
    293       1.1    maxv #define VMCS_GUEST_PDPTE3			0x00002810
    294       1.1    maxv #define VMCS_GUEST_BNDCFGS			0x00002812
    295       1.1    maxv /* 64-bit host-state fields */
    296       1.1    maxv #define VMCS_HOST_IA32_PAT			0x00002C00
    297       1.1    maxv #define VMCS_HOST_IA32_EFER			0x00002C02
    298       1.1    maxv #define VMCS_HOST_IA32_PERF_GLOBAL_CTRL		0x00002C04
    299       1.1    maxv /* 32-bit control fields */
    300       1.1    maxv #define VMCS_PINBASED_CTLS			0x00004000
    301       1.1    maxv #define		PIN_CTLS_INT_EXITING		__BIT(0)
    302       1.1    maxv #define		PIN_CTLS_NMI_EXITING		__BIT(3)
    303       1.1    maxv #define		PIN_CTLS_VIRTUAL_NMIS		__BIT(5)
    304       1.1    maxv #define		PIN_CTLS_ACTIVATE_PREEMPT_TIMER	__BIT(6)
    305      1.22    maxv #define		PIN_CTLS_PROCESS_POSTED_INTS	__BIT(7)
    306       1.1    maxv #define VMCS_PROCBASED_CTLS			0x00004002
    307       1.1    maxv #define		PROC_CTLS_INT_WINDOW_EXITING	__BIT(2)
    308       1.1    maxv #define		PROC_CTLS_USE_TSC_OFFSETTING	__BIT(3)
    309       1.1    maxv #define		PROC_CTLS_HLT_EXITING		__BIT(7)
    310       1.1    maxv #define		PROC_CTLS_INVLPG_EXITING	__BIT(9)
    311       1.1    maxv #define		PROC_CTLS_MWAIT_EXITING		__BIT(10)
    312       1.1    maxv #define		PROC_CTLS_RDPMC_EXITING		__BIT(11)
    313       1.1    maxv #define		PROC_CTLS_RDTSC_EXITING		__BIT(12)
    314       1.1    maxv #define		PROC_CTLS_RCR3_EXITING		__BIT(15)
    315       1.1    maxv #define		PROC_CTLS_LCR3_EXITING		__BIT(16)
    316       1.1    maxv #define		PROC_CTLS_RCR8_EXITING		__BIT(19)
    317       1.1    maxv #define		PROC_CTLS_LCR8_EXITING		__BIT(20)
    318       1.1    maxv #define		PROC_CTLS_USE_TPR_SHADOW	__BIT(21)
    319       1.1    maxv #define		PROC_CTLS_NMI_WINDOW_EXITING	__BIT(22)
    320       1.1    maxv #define		PROC_CTLS_DR_EXITING		__BIT(23)
    321       1.1    maxv #define		PROC_CTLS_UNCOND_IO_EXITING	__BIT(24)
    322       1.1    maxv #define		PROC_CTLS_USE_IO_BITMAPS	__BIT(25)
    323       1.1    maxv #define		PROC_CTLS_MONITOR_TRAP_FLAG	__BIT(27)
    324       1.1    maxv #define		PROC_CTLS_USE_MSR_BITMAPS	__BIT(28)
    325       1.1    maxv #define		PROC_CTLS_MONITOR_EXITING	__BIT(29)
    326       1.1    maxv #define		PROC_CTLS_PAUSE_EXITING		__BIT(30)
    327       1.1    maxv #define		PROC_CTLS_ACTIVATE_CTLS2	__BIT(31)
    328       1.1    maxv #define VMCS_EXCEPTION_BITMAP			0x00004004
    329       1.1    maxv #define VMCS_PF_ERROR_MASK			0x00004006
    330       1.1    maxv #define VMCS_PF_ERROR_MATCH			0x00004008
    331       1.1    maxv #define VMCS_CR3_TARGET_COUNT			0x0000400A
    332       1.1    maxv #define VMCS_EXIT_CTLS				0x0000400C
    333       1.1    maxv #define		EXIT_CTLS_SAVE_DEBUG_CONTROLS	__BIT(2)
    334       1.1    maxv #define		EXIT_CTLS_HOST_LONG_MODE	__BIT(9)
    335       1.1    maxv #define		EXIT_CTLS_LOAD_PERFGLOBALCTRL	__BIT(12)
    336       1.1    maxv #define		EXIT_CTLS_ACK_INTERRUPT		__BIT(15)
    337       1.1    maxv #define		EXIT_CTLS_SAVE_PAT		__BIT(18)
    338       1.1    maxv #define		EXIT_CTLS_LOAD_PAT		__BIT(19)
    339       1.1    maxv #define		EXIT_CTLS_SAVE_EFER		__BIT(20)
    340       1.1    maxv #define		EXIT_CTLS_LOAD_EFER		__BIT(21)
    341       1.1    maxv #define		EXIT_CTLS_SAVE_PREEMPT_TIMER	__BIT(22)
    342       1.1    maxv #define		EXIT_CTLS_CLEAR_BNDCFGS		__BIT(23)
    343       1.1    maxv #define		EXIT_CTLS_CONCEAL_PT		__BIT(24)
    344       1.1    maxv #define VMCS_EXIT_MSR_STORE_COUNT		0x0000400E
    345       1.1    maxv #define VMCS_EXIT_MSR_LOAD_COUNT		0x00004010
    346       1.1    maxv #define VMCS_ENTRY_CTLS				0x00004012
    347       1.1    maxv #define		ENTRY_CTLS_LOAD_DEBUG_CONTROLS	__BIT(2)
    348       1.1    maxv #define		ENTRY_CTLS_LONG_MODE		__BIT(9)
    349       1.1    maxv #define		ENTRY_CTLS_SMM			__BIT(10)
    350       1.1    maxv #define		ENTRY_CTLS_DISABLE_DUAL		__BIT(11)
    351       1.1    maxv #define		ENTRY_CTLS_LOAD_PERFGLOBALCTRL	__BIT(13)
    352       1.1    maxv #define		ENTRY_CTLS_LOAD_PAT		__BIT(14)
    353       1.1    maxv #define		ENTRY_CTLS_LOAD_EFER		__BIT(15)
    354       1.1    maxv #define		ENTRY_CTLS_LOAD_BNDCFGS		__BIT(16)
    355       1.1    maxv #define		ENTRY_CTLS_CONCEAL_PT		__BIT(17)
    356       1.1    maxv #define VMCS_ENTRY_MSR_LOAD_COUNT		0x00004014
    357       1.1    maxv #define VMCS_ENTRY_INTR_INFO			0x00004016
    358       1.1    maxv #define		INTR_INFO_VECTOR		__BITS(7,0)
    359      1.17    maxv #define		INTR_INFO_TYPE			__BITS(10,8)
    360      1.17    maxv #define			INTR_TYPE_EXT_INT	0
    361      1.17    maxv #define			INTR_TYPE_NMI		2
    362      1.17    maxv #define			INTR_TYPE_HW_EXC	3
    363      1.17    maxv #define			INTR_TYPE_SW_INT	4
    364      1.17    maxv #define			INTR_TYPE_PRIV_SW_EXC	5
    365      1.17    maxv #define			INTR_TYPE_SW_EXC	6
    366      1.17    maxv #define			INTR_TYPE_OTHER		7
    367       1.1    maxv #define		INTR_INFO_ERROR			__BIT(11)
    368       1.1    maxv #define		INTR_INFO_VALID			__BIT(31)
    369       1.1    maxv #define VMCS_ENTRY_EXCEPTION_ERROR		0x00004018
    370       1.1    maxv #define VMCS_ENTRY_INST_LENGTH			0x0000401A
    371       1.1    maxv #define VMCS_TPR_THRESHOLD			0x0000401C
    372       1.1    maxv #define VMCS_PROCBASED_CTLS2			0x0000401E
    373       1.1    maxv #define		PROC_CTLS2_VIRT_APIC_ACCESSES	__BIT(0)
    374       1.1    maxv #define		PROC_CTLS2_ENABLE_EPT		__BIT(1)
    375       1.1    maxv #define		PROC_CTLS2_DESC_TABLE_EXITING	__BIT(2)
    376       1.1    maxv #define		PROC_CTLS2_ENABLE_RDTSCP	__BIT(3)
    377       1.1    maxv #define		PROC_CTLS2_VIRT_X2APIC		__BIT(4)
    378       1.1    maxv #define		PROC_CTLS2_ENABLE_VPID		__BIT(5)
    379       1.1    maxv #define		PROC_CTLS2_WBINVD_EXITING	__BIT(6)
    380       1.1    maxv #define		PROC_CTLS2_UNRESTRICTED_GUEST	__BIT(7)
    381       1.1    maxv #define		PROC_CTLS2_APIC_REG_VIRT	__BIT(8)
    382       1.1    maxv #define		PROC_CTLS2_VIRT_INT_DELIVERY	__BIT(9)
    383       1.1    maxv #define		PROC_CTLS2_PAUSE_LOOP_EXITING	__BIT(10)
    384       1.1    maxv #define		PROC_CTLS2_RDRAND_EXITING	__BIT(11)
    385       1.1    maxv #define		PROC_CTLS2_INVPCID_ENABLE	__BIT(12)
    386       1.1    maxv #define		PROC_CTLS2_VMFUNC_ENABLE	__BIT(13)
    387       1.1    maxv #define		PROC_CTLS2_VMCS_SHADOWING	__BIT(14)
    388       1.1    maxv #define		PROC_CTLS2_ENCLS_EXITING	__BIT(15)
    389       1.1    maxv #define		PROC_CTLS2_RDSEED_EXITING	__BIT(16)
    390       1.1    maxv #define		PROC_CTLS2_PML_ENABLE		__BIT(17)
    391       1.1    maxv #define		PROC_CTLS2_EPT_VIOLATION	__BIT(18)
    392       1.1    maxv #define		PROC_CTLS2_CONCEAL_VMX_FROM_PT	__BIT(19)
    393       1.1    maxv #define		PROC_CTLS2_XSAVES_ENABLE	__BIT(20)
    394       1.1    maxv #define		PROC_CTLS2_MODE_BASED_EXEC_EPT	__BIT(22)
    395      1.22    maxv #define		PROC_CTLS2_SUBPAGE_PERMISSIONS	__BIT(23)
    396       1.1    maxv #define		PROC_CTLS2_USE_TSC_SCALING	__BIT(25)
    397      1.22    maxv #define		PROC_CTLS2_ENCLV_EXITING	__BIT(28)
    398       1.1    maxv #define VMCS_PLE_GAP				0x00004020
    399       1.1    maxv #define VMCS_PLE_WINDOW				0x00004022
    400       1.1    maxv /* 32-bit read-only data fields */
    401       1.1    maxv #define VMCS_INSTRUCTION_ERROR			0x00004400
    402       1.1    maxv #define VMCS_EXIT_REASON			0x00004402
    403       1.1    maxv #define VMCS_EXIT_INTR_INFO			0x00004404
    404       1.1    maxv #define VMCS_EXIT_INTR_ERRCODE			0x00004406
    405       1.1    maxv #define VMCS_IDT_VECTORING_INFO			0x00004408
    406       1.1    maxv #define VMCS_IDT_VECTORING_ERROR		0x0000440A
    407       1.1    maxv #define VMCS_EXIT_INSTRUCTION_LENGTH		0x0000440C
    408       1.1    maxv #define VMCS_EXIT_INSTRUCTION_INFO		0x0000440E
    409       1.1    maxv /* 32-bit guest-state fields */
    410       1.1    maxv #define VMCS_GUEST_ES_LIMIT			0x00004800
    411       1.1    maxv #define VMCS_GUEST_CS_LIMIT			0x00004802
    412       1.1    maxv #define VMCS_GUEST_SS_LIMIT			0x00004804
    413       1.1    maxv #define VMCS_GUEST_DS_LIMIT			0x00004806
    414       1.1    maxv #define VMCS_GUEST_FS_LIMIT			0x00004808
    415       1.1    maxv #define VMCS_GUEST_GS_LIMIT			0x0000480A
    416       1.1    maxv #define VMCS_GUEST_LDTR_LIMIT			0x0000480C
    417       1.1    maxv #define VMCS_GUEST_TR_LIMIT			0x0000480E
    418       1.1    maxv #define VMCS_GUEST_GDTR_LIMIT			0x00004810
    419       1.1    maxv #define VMCS_GUEST_IDTR_LIMIT			0x00004812
    420       1.1    maxv #define VMCS_GUEST_ES_ACCESS_RIGHTS		0x00004814
    421       1.1    maxv #define VMCS_GUEST_CS_ACCESS_RIGHTS		0x00004816
    422       1.1    maxv #define VMCS_GUEST_SS_ACCESS_RIGHTS		0x00004818
    423       1.1    maxv #define VMCS_GUEST_DS_ACCESS_RIGHTS		0x0000481A
    424       1.1    maxv #define VMCS_GUEST_FS_ACCESS_RIGHTS		0x0000481C
    425       1.1    maxv #define VMCS_GUEST_GS_ACCESS_RIGHTS		0x0000481E
    426       1.1    maxv #define VMCS_GUEST_LDTR_ACCESS_RIGHTS		0x00004820
    427       1.1    maxv #define VMCS_GUEST_TR_ACCESS_RIGHTS		0x00004822
    428       1.1    maxv #define VMCS_GUEST_INTERRUPTIBILITY		0x00004824
    429       1.1    maxv #define		INT_STATE_STI			__BIT(0)
    430       1.1    maxv #define		INT_STATE_MOVSS			__BIT(1)
    431       1.1    maxv #define		INT_STATE_SMI			__BIT(2)
    432       1.1    maxv #define		INT_STATE_NMI			__BIT(3)
    433       1.1    maxv #define		INT_STATE_ENCLAVE		__BIT(4)
    434       1.1    maxv #define VMCS_GUEST_ACTIVITY			0x00004826
    435       1.1    maxv #define VMCS_GUEST_SMBASE			0x00004828
    436       1.1    maxv #define VMCS_GUEST_IA32_SYSENTER_CS		0x0000482A
    437       1.1    maxv #define VMCS_PREEMPTION_TIMER_VALUE		0x0000482E
    438       1.1    maxv /* 32-bit host state fields */
    439       1.1    maxv #define VMCS_HOST_IA32_SYSENTER_CS		0x00004C00
    440       1.1    maxv /* Natural-Width control fields */
    441       1.1    maxv #define VMCS_CR0_MASK				0x00006000
    442       1.1    maxv #define VMCS_CR4_MASK				0x00006002
    443       1.1    maxv #define VMCS_CR0_SHADOW				0x00006004
    444       1.1    maxv #define VMCS_CR4_SHADOW				0x00006006
    445       1.1    maxv #define VMCS_CR3_TARGET0			0x00006008
    446       1.1    maxv #define VMCS_CR3_TARGET1			0x0000600A
    447       1.1    maxv #define VMCS_CR3_TARGET2			0x0000600C
    448       1.1    maxv #define VMCS_CR3_TARGET3			0x0000600E
    449       1.1    maxv /* Natural-Width read-only fields */
    450       1.1    maxv #define VMCS_EXIT_QUALIFICATION			0x00006400
    451       1.1    maxv #define VMCS_IO_RCX				0x00006402
    452       1.1    maxv #define VMCS_IO_RSI				0x00006404
    453       1.1    maxv #define VMCS_IO_RDI				0x00006406
    454       1.1    maxv #define VMCS_IO_RIP				0x00006408
    455       1.1    maxv #define VMCS_GUEST_LINEAR_ADDRESS		0x0000640A
    456       1.1    maxv /* Natural-Width guest-state fields */
    457       1.1    maxv #define VMCS_GUEST_CR0				0x00006800
    458       1.1    maxv #define VMCS_GUEST_CR3				0x00006802
    459       1.1    maxv #define VMCS_GUEST_CR4				0x00006804
    460       1.1    maxv #define VMCS_GUEST_ES_BASE			0x00006806
    461       1.1    maxv #define VMCS_GUEST_CS_BASE			0x00006808
    462       1.1    maxv #define VMCS_GUEST_SS_BASE			0x0000680A
    463       1.1    maxv #define VMCS_GUEST_DS_BASE			0x0000680C
    464       1.1    maxv #define VMCS_GUEST_FS_BASE			0x0000680E
    465       1.1    maxv #define VMCS_GUEST_GS_BASE			0x00006810
    466       1.1    maxv #define VMCS_GUEST_LDTR_BASE			0x00006812
    467       1.1    maxv #define VMCS_GUEST_TR_BASE			0x00006814
    468       1.1    maxv #define VMCS_GUEST_GDTR_BASE			0x00006816
    469       1.1    maxv #define VMCS_GUEST_IDTR_BASE			0x00006818
    470       1.1    maxv #define VMCS_GUEST_DR7				0x0000681A
    471       1.1    maxv #define VMCS_GUEST_RSP				0x0000681C
    472       1.1    maxv #define VMCS_GUEST_RIP				0x0000681E
    473       1.1    maxv #define VMCS_GUEST_RFLAGS			0x00006820
    474       1.1    maxv #define VMCS_GUEST_PENDING_DBG_EXCEPTIONS	0x00006822
    475       1.1    maxv #define VMCS_GUEST_IA32_SYSENTER_ESP		0x00006824
    476       1.1    maxv #define VMCS_GUEST_IA32_SYSENTER_EIP		0x00006826
    477       1.1    maxv /* Natural-Width host-state fields */
    478       1.1    maxv #define VMCS_HOST_CR0				0x00006C00
    479       1.1    maxv #define VMCS_HOST_CR3				0x00006C02
    480       1.1    maxv #define VMCS_HOST_CR4				0x00006C04
    481       1.1    maxv #define VMCS_HOST_FS_BASE			0x00006C06
    482       1.1    maxv #define VMCS_HOST_GS_BASE			0x00006C08
    483       1.1    maxv #define VMCS_HOST_TR_BASE			0x00006C0A
    484       1.1    maxv #define VMCS_HOST_GDTR_BASE			0x00006C0C
    485       1.1    maxv #define VMCS_HOST_IDTR_BASE			0x00006C0E
    486       1.1    maxv #define VMCS_HOST_IA32_SYSENTER_ESP		0x00006C10
    487       1.1    maxv #define VMCS_HOST_IA32_SYSENTER_EIP		0x00006C12
    488       1.1    maxv #define VMCS_HOST_RSP				0x00006C14
    489       1.1    maxv #define VMCS_HOST_RIP				0x00006c16
    490       1.1    maxv 
    491       1.1    maxv /* VMX basic exit reasons. */
    492       1.1    maxv #define VMCS_EXITCODE_EXC_NMI			0
    493       1.1    maxv #define VMCS_EXITCODE_EXT_INT			1
    494       1.1    maxv #define VMCS_EXITCODE_SHUTDOWN			2
    495       1.1    maxv #define VMCS_EXITCODE_INIT			3
    496       1.1    maxv #define VMCS_EXITCODE_SIPI			4
    497       1.1    maxv #define VMCS_EXITCODE_SMI			5
    498       1.1    maxv #define VMCS_EXITCODE_OTHER_SMI			6
    499       1.1    maxv #define VMCS_EXITCODE_INT_WINDOW		7
    500       1.1    maxv #define VMCS_EXITCODE_NMI_WINDOW		8
    501       1.1    maxv #define VMCS_EXITCODE_TASK_SWITCH		9
    502       1.1    maxv #define VMCS_EXITCODE_CPUID			10
    503       1.1    maxv #define VMCS_EXITCODE_GETSEC			11
    504       1.1    maxv #define VMCS_EXITCODE_HLT			12
    505       1.1    maxv #define VMCS_EXITCODE_INVD			13
    506       1.1    maxv #define VMCS_EXITCODE_INVLPG			14
    507       1.1    maxv #define VMCS_EXITCODE_RDPMC			15
    508       1.1    maxv #define VMCS_EXITCODE_RDTSC			16
    509       1.1    maxv #define VMCS_EXITCODE_RSM			17
    510       1.1    maxv #define VMCS_EXITCODE_VMCALL			18
    511       1.1    maxv #define VMCS_EXITCODE_VMCLEAR			19
    512       1.1    maxv #define VMCS_EXITCODE_VMLAUNCH			20
    513       1.1    maxv #define VMCS_EXITCODE_VMPTRLD			21
    514       1.1    maxv #define VMCS_EXITCODE_VMPTRST			22
    515       1.1    maxv #define VMCS_EXITCODE_VMREAD			23
    516       1.1    maxv #define VMCS_EXITCODE_VMRESUME			24
    517       1.1    maxv #define VMCS_EXITCODE_VMWRITE			25
    518       1.1    maxv #define VMCS_EXITCODE_VMXOFF			26
    519       1.1    maxv #define VMCS_EXITCODE_VMXON			27
    520       1.1    maxv #define VMCS_EXITCODE_CR			28
    521       1.1    maxv #define VMCS_EXITCODE_DR			29
    522       1.1    maxv #define VMCS_EXITCODE_IO			30
    523       1.1    maxv #define VMCS_EXITCODE_RDMSR			31
    524       1.1    maxv #define VMCS_EXITCODE_WRMSR			32
    525       1.1    maxv #define VMCS_EXITCODE_FAIL_GUEST_INVALID	33
    526       1.1    maxv #define VMCS_EXITCODE_FAIL_MSR_INVALID		34
    527       1.1    maxv #define VMCS_EXITCODE_MWAIT			36
    528       1.1    maxv #define VMCS_EXITCODE_TRAP_FLAG			37
    529       1.1    maxv #define VMCS_EXITCODE_MONITOR			39
    530       1.1    maxv #define VMCS_EXITCODE_PAUSE			40
    531       1.1    maxv #define VMCS_EXITCODE_FAIL_MACHINE_CHECK	41
    532       1.1    maxv #define VMCS_EXITCODE_TPR_BELOW			43
    533       1.1    maxv #define VMCS_EXITCODE_APIC_ACCESS		44
    534       1.1    maxv #define VMCS_EXITCODE_VEOI			45
    535       1.1    maxv #define VMCS_EXITCODE_GDTR_IDTR			46
    536       1.1    maxv #define VMCS_EXITCODE_LDTR_TR			47
    537       1.1    maxv #define VMCS_EXITCODE_EPT_VIOLATION		48
    538       1.1    maxv #define VMCS_EXITCODE_EPT_MISCONFIG		49
    539       1.1    maxv #define VMCS_EXITCODE_INVEPT			50
    540       1.1    maxv #define VMCS_EXITCODE_RDTSCP			51
    541       1.1    maxv #define VMCS_EXITCODE_PREEMPT_TIMEOUT		52
    542       1.1    maxv #define VMCS_EXITCODE_INVVPID			53
    543       1.1    maxv #define VMCS_EXITCODE_WBINVD			54
    544       1.1    maxv #define VMCS_EXITCODE_XSETBV			55
    545       1.1    maxv #define VMCS_EXITCODE_APIC_WRITE		56
    546       1.1    maxv #define VMCS_EXITCODE_RDRAND			57
    547       1.1    maxv #define VMCS_EXITCODE_INVPCID			58
    548       1.1    maxv #define VMCS_EXITCODE_VMFUNC			59
    549       1.1    maxv #define VMCS_EXITCODE_ENCLS			60
    550       1.1    maxv #define VMCS_EXITCODE_RDSEED			61
    551       1.1    maxv #define VMCS_EXITCODE_PAGE_LOG_FULL		62
    552       1.1    maxv #define VMCS_EXITCODE_XSAVES			63
    553       1.1    maxv #define VMCS_EXITCODE_XRSTORS			64
    554       1.1    maxv 
    555       1.1    maxv /* -------------------------------------------------------------------------- */
    556       1.1    maxv 
    557      1.31    maxv static void vmx_vcpu_state_provide(struct nvmm_cpu *, uint64_t);
    558      1.31    maxv static void vmx_vcpu_state_commit(struct nvmm_cpu *);
    559      1.31    maxv 
    560       1.1    maxv #define VMX_MSRLIST_STAR		0
    561       1.1    maxv #define VMX_MSRLIST_LSTAR		1
    562       1.1    maxv #define VMX_MSRLIST_CSTAR		2
    563       1.1    maxv #define VMX_MSRLIST_SFMASK		3
    564       1.1    maxv #define VMX_MSRLIST_KERNELGSBASE	4
    565       1.1    maxv #define VMX_MSRLIST_EXIT_NMSR		5
    566       1.1    maxv #define VMX_MSRLIST_L1DFLUSH		5
    567       1.1    maxv 
    568       1.1    maxv /* On entry, we may do +1 to include L1DFLUSH. */
    569       1.1    maxv static size_t vmx_msrlist_entry_nmsr __read_mostly = VMX_MSRLIST_EXIT_NMSR;
    570       1.1    maxv 
    571       1.1    maxv struct vmxon {
    572       1.1    maxv 	uint32_t ident;
    573       1.1    maxv #define VMXON_IDENT_REVISION	__BITS(30,0)
    574       1.1    maxv 
    575       1.1    maxv 	uint8_t data[PAGE_SIZE - 4];
    576       1.1    maxv } __packed;
    577       1.1    maxv 
    578       1.1    maxv CTASSERT(sizeof(struct vmxon) == PAGE_SIZE);
    579       1.1    maxv 
    580       1.1    maxv struct vmxoncpu {
    581       1.1    maxv 	vaddr_t va;
    582       1.1    maxv 	paddr_t pa;
    583       1.1    maxv };
    584       1.1    maxv 
    585       1.1    maxv static struct vmxoncpu vmxoncpu[MAXCPUS];
    586       1.1    maxv 
    587       1.1    maxv struct vmcs {
    588       1.1    maxv 	uint32_t ident;
    589       1.1    maxv #define VMCS_IDENT_REVISION	__BITS(30,0)
    590       1.1    maxv #define VMCS_IDENT_SHADOW	__BIT(31)
    591       1.1    maxv 
    592       1.1    maxv 	uint32_t abort;
    593       1.1    maxv 	uint8_t data[PAGE_SIZE - 8];
    594       1.1    maxv } __packed;
    595       1.1    maxv 
    596       1.1    maxv CTASSERT(sizeof(struct vmcs) == PAGE_SIZE);
    597       1.1    maxv 
    598       1.1    maxv struct msr_entry {
    599       1.1    maxv 	uint32_t msr;
    600       1.1    maxv 	uint32_t rsvd;
    601       1.1    maxv 	uint64_t val;
    602       1.1    maxv } __packed;
    603       1.1    maxv 
    604       1.1    maxv #define VPID_MAX	0xFFFF
    605       1.1    maxv 
    606       1.1    maxv /* Make sure we never run out of VPIDs. */
    607       1.1    maxv CTASSERT(VPID_MAX-1 >= NVMM_MAX_MACHINES * NVMM_MAX_VCPUS);
    608       1.1    maxv 
    609       1.1    maxv static uint64_t vmx_tlb_flush_op __read_mostly;
    610       1.1    maxv static uint64_t vmx_ept_flush_op __read_mostly;
    611       1.1    maxv static uint64_t vmx_eptp_type __read_mostly;
    612       1.1    maxv 
    613       1.1    maxv static uint64_t vmx_pinbased_ctls __read_mostly;
    614       1.1    maxv static uint64_t vmx_procbased_ctls __read_mostly;
    615       1.1    maxv static uint64_t vmx_procbased_ctls2 __read_mostly;
    616       1.1    maxv static uint64_t vmx_entry_ctls __read_mostly;
    617       1.1    maxv static uint64_t vmx_exit_ctls __read_mostly;
    618       1.1    maxv 
    619       1.1    maxv static uint64_t vmx_cr0_fixed0 __read_mostly;
    620       1.1    maxv static uint64_t vmx_cr0_fixed1 __read_mostly;
    621       1.1    maxv static uint64_t vmx_cr4_fixed0 __read_mostly;
    622       1.1    maxv static uint64_t vmx_cr4_fixed1 __read_mostly;
    623       1.1    maxv 
    624      1.13    maxv extern bool pmap_ept_has_ad;
    625      1.13    maxv 
    626       1.1    maxv #define VMX_PINBASED_CTLS_ONE	\
    627       1.1    maxv 	(PIN_CTLS_INT_EXITING| \
    628       1.1    maxv 	 PIN_CTLS_NMI_EXITING| \
    629       1.1    maxv 	 PIN_CTLS_VIRTUAL_NMIS)
    630       1.1    maxv 
    631       1.1    maxv #define VMX_PINBASED_CTLS_ZERO	0
    632       1.1    maxv 
    633       1.1    maxv #define VMX_PROCBASED_CTLS_ONE	\
    634       1.1    maxv 	(PROC_CTLS_USE_TSC_OFFSETTING| \
    635       1.1    maxv 	 PROC_CTLS_HLT_EXITING| \
    636       1.1    maxv 	 PROC_CTLS_MWAIT_EXITING | \
    637       1.1    maxv 	 PROC_CTLS_RDPMC_EXITING | \
    638       1.1    maxv 	 PROC_CTLS_RCR8_EXITING | \
    639       1.1    maxv 	 PROC_CTLS_LCR8_EXITING | \
    640       1.1    maxv 	 PROC_CTLS_UNCOND_IO_EXITING | /* no I/O bitmap */ \
    641       1.1    maxv 	 PROC_CTLS_USE_MSR_BITMAPS | \
    642       1.1    maxv 	 PROC_CTLS_MONITOR_EXITING | \
    643       1.1    maxv 	 PROC_CTLS_ACTIVATE_CTLS2)
    644       1.1    maxv 
    645       1.1    maxv #define VMX_PROCBASED_CTLS_ZERO	\
    646       1.1    maxv 	(PROC_CTLS_RCR3_EXITING| \
    647       1.1    maxv 	 PROC_CTLS_LCR3_EXITING)
    648       1.1    maxv 
    649       1.1    maxv #define VMX_PROCBASED_CTLS2_ONE	\
    650       1.1    maxv 	(PROC_CTLS2_ENABLE_EPT| \
    651       1.1    maxv 	 PROC_CTLS2_ENABLE_VPID| \
    652       1.1    maxv 	 PROC_CTLS2_UNRESTRICTED_GUEST)
    653       1.1    maxv 
    654       1.1    maxv #define VMX_PROCBASED_CTLS2_ZERO	0
    655       1.1    maxv 
    656       1.1    maxv #define VMX_ENTRY_CTLS_ONE	\
    657       1.1    maxv 	(ENTRY_CTLS_LOAD_DEBUG_CONTROLS| \
    658       1.1    maxv 	 ENTRY_CTLS_LOAD_EFER| \
    659       1.1    maxv 	 ENTRY_CTLS_LOAD_PAT)
    660       1.1    maxv 
    661       1.1    maxv #define VMX_ENTRY_CTLS_ZERO	\
    662       1.1    maxv 	(ENTRY_CTLS_SMM| \
    663       1.1    maxv 	 ENTRY_CTLS_DISABLE_DUAL)
    664       1.1    maxv 
    665       1.1    maxv #define VMX_EXIT_CTLS_ONE	\
    666       1.1    maxv 	(EXIT_CTLS_SAVE_DEBUG_CONTROLS| \
    667       1.1    maxv 	 EXIT_CTLS_HOST_LONG_MODE| \
    668       1.1    maxv 	 EXIT_CTLS_SAVE_PAT| \
    669       1.1    maxv 	 EXIT_CTLS_LOAD_PAT| \
    670       1.1    maxv 	 EXIT_CTLS_SAVE_EFER| \
    671       1.1    maxv 	 EXIT_CTLS_LOAD_EFER)
    672       1.1    maxv 
    673       1.1    maxv #define VMX_EXIT_CTLS_ZERO	0
    674       1.1    maxv 
    675       1.1    maxv static uint8_t *vmx_asidmap __read_mostly;
    676       1.1    maxv static uint32_t vmx_maxasid __read_mostly;
    677       1.1    maxv static kmutex_t vmx_asidlock __cacheline_aligned;
    678       1.1    maxv 
    679       1.1    maxv #define VMX_XCR0_MASK_DEFAULT	(XCR0_X87|XCR0_SSE)
    680       1.1    maxv static uint64_t vmx_xcr0_mask __read_mostly;
    681       1.1    maxv 
    682       1.1    maxv #define VMX_NCPUIDS	32
    683       1.1    maxv 
    684       1.1    maxv #define VMCS_NPAGES	1
    685       1.1    maxv #define VMCS_SIZE	(VMCS_NPAGES * PAGE_SIZE)
    686       1.1    maxv 
    687       1.1    maxv #define MSRBM_NPAGES	1
    688       1.1    maxv #define MSRBM_SIZE	(MSRBM_NPAGES * PAGE_SIZE)
    689       1.1    maxv 
    690       1.1    maxv #define EFER_TLB_FLUSH \
    691       1.1    maxv 	(EFER_NXE|EFER_LMA|EFER_LME)
    692       1.1    maxv #define CR0_TLB_FLUSH \
    693       1.1    maxv 	(CR0_PG|CR0_WP|CR0_CD|CR0_NW)
    694       1.1    maxv #define CR4_TLB_FLUSH \
    695       1.1    maxv 	(CR4_PGE|CR4_PAE|CR4_PSE)
    696       1.1    maxv 
    697       1.1    maxv /* -------------------------------------------------------------------------- */
    698       1.1    maxv 
    699       1.1    maxv struct vmx_machdata {
    700       1.9    maxv 	volatile uint64_t mach_htlb_gen;
    701       1.1    maxv };
    702       1.1    maxv 
    703  1.36.2.3  martin static const size_t vmx_vcpu_conf_sizes[NVMM_X86_VCPU_NCONF] = {
    704  1.36.2.3  martin 	[NVMM_VCPU_CONF_MD(NVMM_VCPU_CONF_CPUID)] =
    705  1.36.2.3  martin 	    sizeof(struct nvmm_vcpu_conf_cpuid),
    706  1.36.2.3  martin 	[NVMM_VCPU_CONF_MD(NVMM_VCPU_CONF_TPR)] =
    707  1.36.2.3  martin 	    sizeof(struct nvmm_vcpu_conf_tpr)
    708       1.1    maxv };
    709       1.1    maxv 
    710       1.1    maxv struct vmx_cpudata {
    711       1.1    maxv 	/* General */
    712       1.1    maxv 	uint64_t asid;
    713       1.8    maxv 	bool gtlb_want_flush;
    714      1.21    maxv 	bool gtsc_want_update;
    715       1.9    maxv 	uint64_t vcpu_htlb_gen;
    716       1.9    maxv 	kcpuset_t *htlb_want_flush;
    717       1.1    maxv 
    718       1.1    maxv 	/* VMCS */
    719       1.1    maxv 	struct vmcs *vmcs;
    720       1.1    maxv 	paddr_t vmcs_pa;
    721       1.1    maxv 	size_t vmcs_refcnt;
    722      1.19    maxv 	struct cpu_info *vmcs_ci;
    723      1.19    maxv 	bool vmcs_launched;
    724       1.1    maxv 
    725       1.1    maxv 	/* MSR bitmap */
    726       1.1    maxv 	uint8_t *msrbm;
    727       1.1    maxv 	paddr_t msrbm_pa;
    728       1.1    maxv 
    729       1.1    maxv 	/* Host state */
    730       1.1    maxv 	uint64_t hxcr0;
    731       1.1    maxv 	uint64_t star;
    732       1.1    maxv 	uint64_t lstar;
    733       1.1    maxv 	uint64_t cstar;
    734       1.1    maxv 	uint64_t sfmask;
    735       1.1    maxv 	uint64_t kernelgsbase;
    736       1.1    maxv 	bool ts_set;
    737       1.1    maxv 	struct xsave_header hfpu __aligned(64);
    738       1.1    maxv 
    739      1.24    maxv 	/* Intr state */
    740       1.1    maxv 	bool int_window_exit;
    741       1.1    maxv 	bool nmi_window_exit;
    742      1.24    maxv 	bool evt_pending;
    743       1.1    maxv 
    744       1.1    maxv 	/* Guest state */
    745       1.1    maxv 	struct msr_entry *gmsr;
    746       1.1    maxv 	paddr_t gmsr_pa;
    747       1.5    maxv 	uint64_t gmsr_misc_enable;
    748       1.1    maxv 	uint64_t gcr2;
    749       1.1    maxv 	uint64_t gcr8;
    750       1.1    maxv 	uint64_t gxcr0;
    751       1.1    maxv 	uint64_t gprs[NVMM_X64_NGPR];
    752       1.1    maxv 	uint64_t drs[NVMM_X64_NDR];
    753      1.21    maxv 	uint64_t gtsc;
    754       1.1    maxv 	struct xsave_header gfpu __aligned(64);
    755  1.36.2.3  martin 
    756  1.36.2.3  martin 	/* VCPU configuration. */
    757  1.36.2.3  martin 	bool cpuidpresent[VMX_NCPUIDS];
    758  1.36.2.3  martin 	struct nvmm_vcpu_conf_cpuid cpuid[VMX_NCPUIDS];
    759  1.36.2.3  martin 	struct nvmm_vcpu_conf_tpr tpr;
    760       1.1    maxv };
    761       1.1    maxv 
    762       1.1    maxv static const struct {
    763       1.2    maxv 	uint64_t selector;
    764       1.2    maxv 	uint64_t attrib;
    765       1.2    maxv 	uint64_t limit;
    766       1.1    maxv 	uint64_t base;
    767       1.1    maxv } vmx_guest_segs[NVMM_X64_NSEG] = {
    768       1.1    maxv 	[NVMM_X64_SEG_ES] = {
    769       1.1    maxv 		VMCS_GUEST_ES_SELECTOR,
    770       1.1    maxv 		VMCS_GUEST_ES_ACCESS_RIGHTS,
    771       1.1    maxv 		VMCS_GUEST_ES_LIMIT,
    772       1.1    maxv 		VMCS_GUEST_ES_BASE
    773       1.1    maxv 	},
    774       1.1    maxv 	[NVMM_X64_SEG_CS] = {
    775       1.1    maxv 		VMCS_GUEST_CS_SELECTOR,
    776       1.1    maxv 		VMCS_GUEST_CS_ACCESS_RIGHTS,
    777       1.1    maxv 		VMCS_GUEST_CS_LIMIT,
    778       1.1    maxv 		VMCS_GUEST_CS_BASE
    779       1.1    maxv 	},
    780       1.1    maxv 	[NVMM_X64_SEG_SS] = {
    781       1.1    maxv 		VMCS_GUEST_SS_SELECTOR,
    782       1.1    maxv 		VMCS_GUEST_SS_ACCESS_RIGHTS,
    783       1.1    maxv 		VMCS_GUEST_SS_LIMIT,
    784       1.1    maxv 		VMCS_GUEST_SS_BASE
    785       1.1    maxv 	},
    786       1.1    maxv 	[NVMM_X64_SEG_DS] = {
    787       1.1    maxv 		VMCS_GUEST_DS_SELECTOR,
    788       1.1    maxv 		VMCS_GUEST_DS_ACCESS_RIGHTS,
    789       1.1    maxv 		VMCS_GUEST_DS_LIMIT,
    790       1.1    maxv 		VMCS_GUEST_DS_BASE
    791       1.1    maxv 	},
    792       1.1    maxv 	[NVMM_X64_SEG_FS] = {
    793       1.1    maxv 		VMCS_GUEST_FS_SELECTOR,
    794       1.1    maxv 		VMCS_GUEST_FS_ACCESS_RIGHTS,
    795       1.1    maxv 		VMCS_GUEST_FS_LIMIT,
    796       1.1    maxv 		VMCS_GUEST_FS_BASE
    797       1.1    maxv 	},
    798       1.1    maxv 	[NVMM_X64_SEG_GS] = {
    799       1.1    maxv 		VMCS_GUEST_GS_SELECTOR,
    800       1.1    maxv 		VMCS_GUEST_GS_ACCESS_RIGHTS,
    801       1.1    maxv 		VMCS_GUEST_GS_LIMIT,
    802       1.1    maxv 		VMCS_GUEST_GS_BASE
    803       1.1    maxv 	},
    804       1.1    maxv 	[NVMM_X64_SEG_GDT] = {
    805       1.1    maxv 		0, /* doesn't exist */
    806       1.1    maxv 		0, /* doesn't exist */
    807       1.1    maxv 		VMCS_GUEST_GDTR_LIMIT,
    808       1.1    maxv 		VMCS_GUEST_GDTR_BASE
    809       1.1    maxv 	},
    810       1.1    maxv 	[NVMM_X64_SEG_IDT] = {
    811       1.1    maxv 		0, /* doesn't exist */
    812       1.1    maxv 		0, /* doesn't exist */
    813       1.1    maxv 		VMCS_GUEST_IDTR_LIMIT,
    814       1.1    maxv 		VMCS_GUEST_IDTR_BASE
    815       1.1    maxv 	},
    816       1.1    maxv 	[NVMM_X64_SEG_LDT] = {
    817       1.1    maxv 		VMCS_GUEST_LDTR_SELECTOR,
    818       1.1    maxv 		VMCS_GUEST_LDTR_ACCESS_RIGHTS,
    819       1.1    maxv 		VMCS_GUEST_LDTR_LIMIT,
    820       1.1    maxv 		VMCS_GUEST_LDTR_BASE
    821       1.1    maxv 	},
    822       1.1    maxv 	[NVMM_X64_SEG_TR] = {
    823       1.1    maxv 		VMCS_GUEST_TR_SELECTOR,
    824       1.1    maxv 		VMCS_GUEST_TR_ACCESS_RIGHTS,
    825       1.1    maxv 		VMCS_GUEST_TR_LIMIT,
    826       1.1    maxv 		VMCS_GUEST_TR_BASE
    827       1.1    maxv 	}
    828       1.1    maxv };
    829       1.1    maxv 
    830       1.1    maxv /* -------------------------------------------------------------------------- */
    831       1.1    maxv 
    832       1.1    maxv static uint64_t
    833       1.1    maxv vmx_get_revision(void)
    834       1.1    maxv {
    835       1.1    maxv 	uint64_t msr;
    836       1.1    maxv 
    837       1.1    maxv 	msr = rdmsr(MSR_IA32_VMX_BASIC);
    838       1.1    maxv 	msr &= IA32_VMX_BASIC_IDENT;
    839       1.1    maxv 
    840       1.1    maxv 	return msr;
    841       1.1    maxv }
    842       1.1    maxv 
    843       1.1    maxv static void
    844      1.19    maxv vmx_vmclear_ipi(void *arg1, void *arg2)
    845      1.19    maxv {
    846      1.19    maxv 	paddr_t vmcs_pa = (paddr_t)arg1;
    847      1.19    maxv 	vmx_vmclear(&vmcs_pa);
    848      1.19    maxv }
    849      1.19    maxv 
    850      1.19    maxv static void
    851      1.19    maxv vmx_vmclear_remote(struct cpu_info *ci, paddr_t vmcs_pa)
    852      1.19    maxv {
    853      1.19    maxv 	uint64_t xc;
    854      1.19    maxv 	int bound;
    855      1.19    maxv 
    856      1.19    maxv 	KASSERT(kpreempt_disabled());
    857      1.19    maxv 
    858      1.19    maxv 	bound = curlwp_bind();
    859      1.19    maxv 	kpreempt_enable();
    860      1.19    maxv 
    861      1.19    maxv 	xc = xc_unicast(XC_HIGHPRI, vmx_vmclear_ipi, (void *)vmcs_pa, NULL, ci);
    862      1.19    maxv 	xc_wait(xc);
    863      1.19    maxv 
    864      1.19    maxv 	kpreempt_disable();
    865      1.19    maxv 	curlwp_bindx(bound);
    866      1.19    maxv }
    867      1.19    maxv 
    868      1.19    maxv static void
    869       1.1    maxv vmx_vmcs_enter(struct nvmm_cpu *vcpu)
    870       1.1    maxv {
    871       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
    872      1.19    maxv 	struct cpu_info *vmcs_ci;
    873       1.1    maxv 	paddr_t oldpa __diagused;
    874       1.1    maxv 
    875       1.1    maxv 	cpudata->vmcs_refcnt++;
    876       1.1    maxv 	if (cpudata->vmcs_refcnt > 1) {
    877       1.1    maxv #ifdef DIAGNOSTIC
    878       1.1    maxv 		KASSERT(kpreempt_disabled());
    879      1.28    maxv 		oldpa = vmx_vmptrst();
    880       1.1    maxv 		KASSERT(oldpa == cpudata->vmcs_pa);
    881       1.1    maxv #endif
    882       1.1    maxv 		return;
    883       1.1    maxv 	}
    884       1.1    maxv 
    885      1.19    maxv 	vmcs_ci = cpudata->vmcs_ci;
    886      1.19    maxv 	cpudata->vmcs_ci = (void *)0x00FFFFFFFFFFFFFF; /* clobber */
    887      1.19    maxv 
    888       1.1    maxv 	kpreempt_disable();
    889       1.1    maxv 
    890      1.19    maxv 	if (vmcs_ci == NULL) {
    891      1.19    maxv 		/* This VMCS is loaded for the first time. */
    892      1.19    maxv 		vmx_vmclear(&cpudata->vmcs_pa);
    893      1.19    maxv 		cpudata->vmcs_launched = false;
    894      1.19    maxv 	} else if (vmcs_ci != curcpu()) {
    895      1.19    maxv 		/* This VMCS is active on a remote CPU. */
    896      1.19    maxv 		vmx_vmclear_remote(vmcs_ci, cpudata->vmcs_pa);
    897      1.19    maxv 		cpudata->vmcs_launched = false;
    898      1.19    maxv 	} else {
    899      1.19    maxv 		/* This VMCS is active on curcpu, nothing to do. */
    900      1.19    maxv 	}
    901       1.1    maxv 
    902       1.1    maxv 	vmx_vmptrld(&cpudata->vmcs_pa);
    903       1.1    maxv }
    904       1.1    maxv 
    905       1.1    maxv static void
    906       1.1    maxv vmx_vmcs_leave(struct nvmm_cpu *vcpu)
    907       1.1    maxv {
    908       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
    909       1.1    maxv 
    910       1.1    maxv 	KASSERT(kpreempt_disabled());
    911      1.18    maxv #ifdef DIAGNOSTIC
    912      1.28    maxv 	KASSERT(vmx_vmptrst() == cpudata->vmcs_pa);
    913      1.18    maxv #endif
    914       1.1    maxv 	KASSERT(cpudata->vmcs_refcnt > 0);
    915       1.1    maxv 	cpudata->vmcs_refcnt--;
    916       1.1    maxv 
    917       1.1    maxv 	if (cpudata->vmcs_refcnt > 0) {
    918       1.1    maxv 		return;
    919       1.1    maxv 	}
    920       1.1    maxv 
    921      1.19    maxv 	cpudata->vmcs_ci = curcpu();
    922      1.19    maxv 	kpreempt_enable();
    923      1.19    maxv }
    924      1.19    maxv 
    925      1.19    maxv static void
    926      1.19    maxv vmx_vmcs_destroy(struct nvmm_cpu *vcpu)
    927      1.19    maxv {
    928      1.19    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
    929      1.19    maxv 
    930      1.19    maxv 	KASSERT(kpreempt_disabled());
    931      1.19    maxv #ifdef DIAGNOSTIC
    932      1.28    maxv 	KASSERT(vmx_vmptrst() == cpudata->vmcs_pa);
    933      1.19    maxv #endif
    934      1.19    maxv 	KASSERT(cpudata->vmcs_refcnt == 1);
    935      1.19    maxv 	cpudata->vmcs_refcnt--;
    936      1.19    maxv 
    937       1.1    maxv 	vmx_vmclear(&cpudata->vmcs_pa);
    938       1.1    maxv 	kpreempt_enable();
    939       1.1    maxv }
    940       1.1    maxv 
    941       1.1    maxv /* -------------------------------------------------------------------------- */
    942       1.1    maxv 
    943       1.1    maxv static void
    944       1.1    maxv vmx_event_waitexit_enable(struct nvmm_cpu *vcpu, bool nmi)
    945       1.1    maxv {
    946       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
    947       1.1    maxv 	uint64_t ctls1;
    948       1.1    maxv 
    949      1.28    maxv 	ctls1 = vmx_vmread(VMCS_PROCBASED_CTLS);
    950       1.1    maxv 
    951       1.1    maxv 	if (nmi) {
    952       1.1    maxv 		// XXX INT_STATE_NMI?
    953       1.1    maxv 		ctls1 |= PROC_CTLS_NMI_WINDOW_EXITING;
    954       1.1    maxv 		cpudata->nmi_window_exit = true;
    955       1.1    maxv 	} else {
    956       1.1    maxv 		ctls1 |= PROC_CTLS_INT_WINDOW_EXITING;
    957       1.1    maxv 		cpudata->int_window_exit = true;
    958       1.1    maxv 	}
    959       1.1    maxv 
    960       1.1    maxv 	vmx_vmwrite(VMCS_PROCBASED_CTLS, ctls1);
    961       1.1    maxv }
    962       1.1    maxv 
    963       1.1    maxv static void
    964       1.1    maxv vmx_event_waitexit_disable(struct nvmm_cpu *vcpu, bool nmi)
    965       1.1    maxv {
    966       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
    967       1.1    maxv 	uint64_t ctls1;
    968       1.1    maxv 
    969      1.28    maxv 	ctls1 = vmx_vmread(VMCS_PROCBASED_CTLS);
    970       1.1    maxv 
    971       1.1    maxv 	if (nmi) {
    972       1.1    maxv 		ctls1 &= ~PROC_CTLS_NMI_WINDOW_EXITING;
    973       1.1    maxv 		cpudata->nmi_window_exit = false;
    974       1.1    maxv 	} else {
    975       1.1    maxv 		ctls1 &= ~PROC_CTLS_INT_WINDOW_EXITING;
    976       1.1    maxv 		cpudata->int_window_exit = false;
    977       1.1    maxv 	}
    978       1.1    maxv 
    979       1.1    maxv 	vmx_vmwrite(VMCS_PROCBASED_CTLS, ctls1);
    980       1.1    maxv }
    981       1.1    maxv 
    982       1.1    maxv static inline int
    983  1.36.2.3  martin vmx_event_has_error(uint8_t vector)
    984       1.1    maxv {
    985       1.1    maxv 	switch (vector) {
    986       1.1    maxv 	case 8:		/* #DF */
    987       1.1    maxv 	case 10:	/* #TS */
    988       1.1    maxv 	case 11:	/* #NP */
    989       1.1    maxv 	case 12:	/* #SS */
    990       1.1    maxv 	case 13:	/* #GP */
    991       1.1    maxv 	case 14:	/* #PF */
    992       1.1    maxv 	case 17:	/* #AC */
    993       1.1    maxv 	case 30:	/* #SX */
    994       1.1    maxv 		return 1;
    995       1.1    maxv 	default:
    996       1.1    maxv 		return 0;
    997       1.1    maxv 	}
    998       1.1    maxv }
    999       1.1    maxv 
   1000       1.1    maxv static int
   1001      1.33    maxv vmx_vcpu_inject(struct nvmm_cpu *vcpu)
   1002       1.1    maxv {
   1003      1.33    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   1004       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1005      1.32    maxv 	int type = 0, err = 0, ret = EINVAL;
   1006  1.36.2.3  martin 	u_int evtype;
   1007  1.36.2.3  martin 	uint8_t vector;
   1008  1.36.2.3  martin 	uint64_t info, error;
   1009      1.33    maxv 
   1010      1.33    maxv 	evtype = comm->event.type;
   1011      1.33    maxv 	vector = comm->event.vector;
   1012  1.36.2.3  martin 	error = comm->event.u.excp.error;
   1013      1.33    maxv 	__insn_barrier();
   1014       1.1    maxv 
   1015       1.1    maxv 	vmx_vmcs_enter(vcpu);
   1016       1.1    maxv 
   1017      1.33    maxv 	switch (evtype) {
   1018  1.36.2.3  martin 	case NVMM_VCPU_EVENT_EXCP:
   1019      1.33    maxv 		if (vector == 2 || vector >= 32)
   1020       1.1    maxv 			goto out;
   1021      1.33    maxv 		if (vector == 3 || vector == 0)
   1022       1.1    maxv 			goto out;
   1023      1.17    maxv 		type = INTR_TYPE_HW_EXC;
   1024      1.33    maxv 		err = vmx_event_has_error(vector);
   1025       1.1    maxv 		break;
   1026  1.36.2.3  martin 	case NVMM_VCPU_EVENT_INTR:
   1027  1.36.2.3  martin 		type = INTR_TYPE_EXT_INT;
   1028  1.36.2.3  martin 		if (vector == 2) {
   1029  1.36.2.3  martin 			type = INTR_TYPE_NMI;
   1030  1.36.2.3  martin 			vmx_event_waitexit_enable(vcpu, true);
   1031  1.36.2.3  martin 		}
   1032  1.36.2.3  martin 		err = 0;
   1033  1.36.2.3  martin 		break;
   1034       1.1    maxv 	default:
   1035       1.1    maxv 		goto out;
   1036       1.1    maxv 	}
   1037       1.1    maxv 
   1038       1.1    maxv 	info =
   1039  1.36.2.3  martin 	    __SHIFTIN((uint64_t)vector, INTR_INFO_VECTOR) |
   1040  1.36.2.3  martin 	    __SHIFTIN((uint64_t)type, INTR_INFO_TYPE) |
   1041  1.36.2.3  martin 	    __SHIFTIN((uint64_t)err, INTR_INFO_ERROR) |
   1042  1.36.2.3  martin 	    __SHIFTIN((uint64_t)1, INTR_INFO_VALID);
   1043       1.1    maxv 	vmx_vmwrite(VMCS_ENTRY_INTR_INFO, info);
   1044      1.33    maxv 	vmx_vmwrite(VMCS_ENTRY_EXCEPTION_ERROR, error);
   1045       1.1    maxv 
   1046      1.24    maxv 	cpudata->evt_pending = true;
   1047      1.32    maxv 	ret = 0;
   1048      1.24    maxv 
   1049       1.1    maxv out:
   1050       1.1    maxv 	vmx_vmcs_leave(vcpu);
   1051       1.1    maxv 	return ret;
   1052       1.1    maxv }
   1053       1.1    maxv 
   1054       1.1    maxv static void
   1055      1.33    maxv vmx_inject_ud(struct nvmm_cpu *vcpu)
   1056       1.1    maxv {
   1057      1.33    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   1058       1.1    maxv 	int ret __diagused;
   1059       1.1    maxv 
   1060  1.36.2.3  martin 	comm->event.type = NVMM_VCPU_EVENT_EXCP;
   1061      1.33    maxv 	comm->event.vector = 6;
   1062  1.36.2.3  martin 	comm->event.u.excp.error = 0;
   1063       1.1    maxv 
   1064      1.33    maxv 	ret = vmx_vcpu_inject(vcpu);
   1065       1.1    maxv 	KASSERT(ret == 0);
   1066       1.1    maxv }
   1067       1.1    maxv 
   1068       1.1    maxv static void
   1069      1.33    maxv vmx_inject_gp(struct nvmm_cpu *vcpu)
   1070       1.1    maxv {
   1071      1.33    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   1072       1.1    maxv 	int ret __diagused;
   1073       1.1    maxv 
   1074  1.36.2.3  martin 	comm->event.type = NVMM_VCPU_EVENT_EXCP;
   1075      1.33    maxv 	comm->event.vector = 13;
   1076  1.36.2.3  martin 	comm->event.u.excp.error = 0;
   1077       1.1    maxv 
   1078      1.33    maxv 	ret = vmx_vcpu_inject(vcpu);
   1079       1.1    maxv 	KASSERT(ret == 0);
   1080       1.1    maxv }
   1081       1.1    maxv 
   1082      1.33    maxv static inline int
   1083      1.33    maxv vmx_vcpu_event_commit(struct nvmm_cpu *vcpu)
   1084      1.33    maxv {
   1085      1.33    maxv 	if (__predict_true(!vcpu->comm->event_commit)) {
   1086      1.33    maxv 		return 0;
   1087      1.33    maxv 	}
   1088      1.33    maxv 	vcpu->comm->event_commit = false;
   1089      1.33    maxv 	return vmx_vcpu_inject(vcpu);
   1090      1.33    maxv }
   1091      1.33    maxv 
   1092       1.1    maxv static inline void
   1093       1.1    maxv vmx_inkernel_advance(void)
   1094       1.1    maxv {
   1095       1.1    maxv 	uint64_t rip, inslen, intstate;
   1096       1.1    maxv 
   1097       1.1    maxv 	/*
   1098       1.1    maxv 	 * Maybe we should also apply single-stepping and debug exceptions.
   1099       1.1    maxv 	 * Matters for guest-ring3, because it can execute 'cpuid' under a
   1100       1.1    maxv 	 * debugger.
   1101       1.1    maxv 	 */
   1102      1.28    maxv 	inslen = vmx_vmread(VMCS_EXIT_INSTRUCTION_LENGTH);
   1103      1.28    maxv 	rip = vmx_vmread(VMCS_GUEST_RIP);
   1104       1.1    maxv 	vmx_vmwrite(VMCS_GUEST_RIP, rip + inslen);
   1105      1.28    maxv 	intstate = vmx_vmread(VMCS_GUEST_INTERRUPTIBILITY);
   1106       1.1    maxv 	vmx_vmwrite(VMCS_GUEST_INTERRUPTIBILITY,
   1107       1.1    maxv 	    intstate & ~(INT_STATE_STI|INT_STATE_MOVSS));
   1108       1.1    maxv }
   1109       1.1    maxv 
   1110       1.1    maxv static void
   1111  1.36.2.3  martin vmx_exit_invalid(struct nvmm_vcpu_exit *exit, uint64_t code)
   1112  1.36.2.1  martin {
   1113  1.36.2.1  martin 	exit->u.inv.hwcode = code;
   1114  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_INVALID;
   1115  1.36.2.1  martin }
   1116  1.36.2.1  martin 
   1117  1.36.2.1  martin static void
   1118      1.17    maxv vmx_exit_exc_nmi(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1119  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1120      1.17    maxv {
   1121      1.17    maxv 	uint64_t qual;
   1122      1.17    maxv 
   1123      1.28    maxv 	qual = vmx_vmread(VMCS_EXIT_INTR_INFO);
   1124      1.17    maxv 
   1125      1.17    maxv 	if ((qual & INTR_INFO_VALID) == 0) {
   1126      1.17    maxv 		goto error;
   1127      1.17    maxv 	}
   1128      1.17    maxv 	if (__SHIFTOUT(qual, INTR_INFO_TYPE) != INTR_TYPE_NMI) {
   1129      1.17    maxv 		goto error;
   1130      1.17    maxv 	}
   1131      1.17    maxv 
   1132  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_NONE;
   1133      1.17    maxv 	return;
   1134      1.17    maxv 
   1135      1.17    maxv error:
   1136  1.36.2.1  martin 	vmx_exit_invalid(exit, VMCS_EXITCODE_EXC_NMI);
   1137      1.17    maxv }
   1138      1.17    maxv 
   1139      1.17    maxv static void
   1140       1.1    maxv vmx_inkernel_handle_cpuid(struct nvmm_cpu *vcpu, uint64_t eax, uint64_t ecx)
   1141       1.1    maxv {
   1142       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1143       1.6    maxv 	uint64_t cr4;
   1144       1.1    maxv 
   1145       1.1    maxv 	switch (eax) {
   1146       1.1    maxv 	case 0x00000001:
   1147      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RAX] &= nvmm_cpuid_00000001.eax;
   1148      1.16    maxv 
   1149       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] &= ~CPUID_LOCAL_APIC_ID;
   1150       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] |= __SHIFTIN(vcpu->cpuid,
   1151       1.1    maxv 		    CPUID_LOCAL_APIC_ID);
   1152      1.16    maxv 
   1153      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] &= nvmm_cpuid_00000001.ecx;
   1154      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] |= CPUID2_RAZ;
   1155  1.36.2.3  martin 		if (vmx_procbased_ctls2 & PROC_CTLS2_INVPCID_ENABLE) {
   1156  1.36.2.3  martin 			cpudata->gprs[NVMM_X64_GPR_RCX] |= CPUID2_PCID;
   1157  1.36.2.3  martin 		}
   1158      1.16    maxv 
   1159      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RDX] &= nvmm_cpuid_00000001.edx;
   1160       1.6    maxv 
   1161       1.6    maxv 		/* CPUID2_OSXSAVE depends on CR4. */
   1162      1.28    maxv 		cr4 = vmx_vmread(VMCS_GUEST_CR4);
   1163       1.6    maxv 		if (!(cr4 & CR4_OSXSAVE)) {
   1164       1.6    maxv 			cpudata->gprs[NVMM_X64_GPR_RCX] &= ~CPUID2_OSXSAVE;
   1165       1.6    maxv 		}
   1166       1.1    maxv 		break;
   1167       1.1    maxv 	case 0x00000005:
   1168       1.1    maxv 	case 0x00000006:
   1169       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RAX] = 0;
   1170       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] = 0;
   1171       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] = 0;
   1172       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RDX] = 0;
   1173       1.1    maxv 		break;
   1174       1.1    maxv 	case 0x00000007:
   1175      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RAX] &= nvmm_cpuid_00000007.eax;
   1176      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] &= nvmm_cpuid_00000007.ebx;
   1177      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] &= nvmm_cpuid_00000007.ecx;
   1178      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RDX] &= nvmm_cpuid_00000007.edx;
   1179  1.36.2.3  martin 		if (vmx_procbased_ctls2 & PROC_CTLS2_INVPCID_ENABLE) {
   1180  1.36.2.3  martin 			cpudata->gprs[NVMM_X64_GPR_RBX] |= CPUID_SEF_INVPCID;
   1181  1.36.2.3  martin 		}
   1182  1.36.2.3  martin 		break;
   1183  1.36.2.3  martin 	case 0x0000000A:
   1184  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RAX] = 0;
   1185  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RBX] = 0;
   1186  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RCX] = 0;
   1187  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RDX] = 0;
   1188       1.1    maxv 		break;
   1189       1.1    maxv 	case 0x0000000D:
   1190       1.6    maxv 		if (vmx_xcr0_mask == 0) {
   1191       1.1    maxv 			break;
   1192       1.1    maxv 		}
   1193       1.6    maxv 		switch (ecx) {
   1194       1.6    maxv 		case 0:
   1195       1.6    maxv 			cpudata->gprs[NVMM_X64_GPR_RAX] = vmx_xcr0_mask & 0xFFFFFFFF;
   1196       1.6    maxv 			if (cpudata->gxcr0 & XCR0_SSE) {
   1197       1.6    maxv 				cpudata->gprs[NVMM_X64_GPR_RBX] = sizeof(struct fxsave);
   1198       1.6    maxv 			} else {
   1199       1.6    maxv 				cpudata->gprs[NVMM_X64_GPR_RBX] = sizeof(struct save87);
   1200       1.6    maxv 			}
   1201       1.6    maxv 			cpudata->gprs[NVMM_X64_GPR_RBX] += 64; /* XSAVE header */
   1202      1.26    maxv 			cpudata->gprs[NVMM_X64_GPR_RCX] = sizeof(struct fxsave) + 64;
   1203       1.6    maxv 			cpudata->gprs[NVMM_X64_GPR_RDX] = vmx_xcr0_mask >> 32;
   1204       1.6    maxv 			break;
   1205       1.6    maxv 		case 1:
   1206       1.6    maxv 			cpudata->gprs[NVMM_X64_GPR_RAX] &= ~CPUID_PES1_XSAVES;
   1207       1.6    maxv 			break;
   1208       1.1    maxv 		}
   1209       1.1    maxv 		break;
   1210       1.1    maxv 	case 0x40000000:
   1211       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] = 0;
   1212       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] = 0;
   1213       1.1    maxv 		cpudata->gprs[NVMM_X64_GPR_RDX] = 0;
   1214       1.1    maxv 		memcpy(&cpudata->gprs[NVMM_X64_GPR_RBX], "___ ", 4);
   1215       1.1    maxv 		memcpy(&cpudata->gprs[NVMM_X64_GPR_RCX], "NVMM", 4);
   1216       1.1    maxv 		memcpy(&cpudata->gprs[NVMM_X64_GPR_RDX], " ___", 4);
   1217       1.1    maxv 		break;
   1218       1.1    maxv 	case 0x80000001:
   1219      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RAX] &= nvmm_cpuid_80000001.eax;
   1220      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RBX] &= nvmm_cpuid_80000001.ebx;
   1221      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RCX] &= nvmm_cpuid_80000001.ecx;
   1222      1.16    maxv 		cpudata->gprs[NVMM_X64_GPR_RDX] &= nvmm_cpuid_80000001.edx;
   1223       1.1    maxv 		break;
   1224       1.1    maxv 	default:
   1225       1.1    maxv 		break;
   1226       1.1    maxv 	}
   1227       1.1    maxv }
   1228       1.1    maxv 
   1229       1.1    maxv static void
   1230  1.36.2.3  martin vmx_exit_insn(struct nvmm_vcpu_exit *exit, uint64_t reason)
   1231  1.36.2.3  martin {
   1232  1.36.2.3  martin 	uint64_t inslen, rip;
   1233  1.36.2.3  martin 
   1234  1.36.2.3  martin 	inslen = vmx_vmread(VMCS_EXIT_INSTRUCTION_LENGTH);
   1235  1.36.2.3  martin 	rip = vmx_vmread(VMCS_GUEST_RIP);
   1236  1.36.2.3  martin 	exit->u.insn.npc = rip + inslen;
   1237  1.36.2.3  martin 	exit->reason = reason;
   1238  1.36.2.3  martin }
   1239  1.36.2.3  martin 
   1240  1.36.2.3  martin static void
   1241       1.1    maxv vmx_exit_cpuid(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1242  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1243       1.1    maxv {
   1244       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1245  1.36.2.3  martin 	struct nvmm_vcpu_conf_cpuid *cpuid;
   1246       1.1    maxv 	uint64_t eax, ecx;
   1247       1.1    maxv 	u_int descs[4];
   1248       1.1    maxv 	size_t i;
   1249       1.1    maxv 
   1250       1.1    maxv 	eax = cpudata->gprs[NVMM_X64_GPR_RAX];
   1251       1.1    maxv 	ecx = cpudata->gprs[NVMM_X64_GPR_RCX];
   1252       1.1    maxv 	x86_cpuid2(eax, ecx, descs);
   1253       1.1    maxv 
   1254       1.1    maxv 	cpudata->gprs[NVMM_X64_GPR_RAX] = descs[0];
   1255       1.1    maxv 	cpudata->gprs[NVMM_X64_GPR_RBX] = descs[1];
   1256       1.1    maxv 	cpudata->gprs[NVMM_X64_GPR_RCX] = descs[2];
   1257       1.1    maxv 	cpudata->gprs[NVMM_X64_GPR_RDX] = descs[3];
   1258       1.1    maxv 
   1259      1.25    maxv 	vmx_inkernel_handle_cpuid(vcpu, eax, ecx);
   1260      1.25    maxv 
   1261       1.1    maxv 	for (i = 0; i < VMX_NCPUIDS; i++) {
   1262  1.36.2.3  martin 		if (!cpudata->cpuidpresent[i]) {
   1263       1.1    maxv 			continue;
   1264       1.1    maxv 		}
   1265  1.36.2.3  martin 		cpuid = &cpudata->cpuid[i];
   1266       1.1    maxv 		if (cpuid->leaf != eax) {
   1267       1.1    maxv 			continue;
   1268       1.1    maxv 		}
   1269       1.1    maxv 
   1270  1.36.2.3  martin 		if (cpuid->exit) {
   1271  1.36.2.3  martin 			vmx_exit_insn(exit, NVMM_VCPU_EXIT_CPUID);
   1272  1.36.2.3  martin 			return;
   1273  1.36.2.3  martin 		}
   1274  1.36.2.3  martin 		KASSERT(cpuid->mask);
   1275  1.36.2.3  martin 
   1276       1.1    maxv 		/* del */
   1277  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RAX] &= ~cpuid->u.mask.del.eax;
   1278  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RBX] &= ~cpuid->u.mask.del.ebx;
   1279  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RCX] &= ~cpuid->u.mask.del.ecx;
   1280  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RDX] &= ~cpuid->u.mask.del.edx;
   1281       1.1    maxv 
   1282       1.1    maxv 		/* set */
   1283  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RAX] |= cpuid->u.mask.set.eax;
   1284  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RBX] |= cpuid->u.mask.set.ebx;
   1285  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RCX] |= cpuid->u.mask.set.ecx;
   1286  1.36.2.3  martin 		cpudata->gprs[NVMM_X64_GPR_RDX] |= cpuid->u.mask.set.edx;
   1287       1.1    maxv 
   1288       1.1    maxv 		break;
   1289       1.1    maxv 	}
   1290       1.1    maxv 
   1291       1.1    maxv 	vmx_inkernel_advance();
   1292  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_NONE;
   1293       1.1    maxv }
   1294       1.1    maxv 
   1295       1.1    maxv static void
   1296       1.1    maxv vmx_exit_hlt(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1297  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1298       1.1    maxv {
   1299       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1300       1.1    maxv 	uint64_t rflags;
   1301       1.1    maxv 
   1302       1.1    maxv 	if (cpudata->int_window_exit) {
   1303      1.28    maxv 		rflags = vmx_vmread(VMCS_GUEST_RFLAGS);
   1304       1.1    maxv 		if (rflags & PSL_I) {
   1305       1.1    maxv 			vmx_event_waitexit_disable(vcpu, false);
   1306       1.1    maxv 		}
   1307       1.1    maxv 	}
   1308       1.1    maxv 
   1309       1.1    maxv 	vmx_inkernel_advance();
   1310  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_HALTED;
   1311       1.1    maxv }
   1312       1.1    maxv 
   1313       1.1    maxv #define VMX_QUAL_CR_NUM		__BITS(3,0)
   1314       1.1    maxv #define VMX_QUAL_CR_TYPE	__BITS(5,4)
   1315       1.1    maxv #define		CR_TYPE_WRITE	0
   1316       1.1    maxv #define		CR_TYPE_READ	1
   1317       1.1    maxv #define		CR_TYPE_CLTS	2
   1318       1.1    maxv #define		CR_TYPE_LMSW	3
   1319       1.1    maxv #define VMX_QUAL_CR_LMSW_OPMEM	__BIT(6)
   1320       1.1    maxv #define VMX_QUAL_CR_GPR		__BITS(11,8)
   1321       1.1    maxv #define VMX_QUAL_CR_LMSW_SRC	__BIT(31,16)
   1322       1.1    maxv 
   1323       1.1    maxv static inline int
   1324       1.1    maxv vmx_check_cr(uint64_t crval, uint64_t fixed0, uint64_t fixed1)
   1325       1.1    maxv {
   1326       1.1    maxv 	/* Bits set to 1 in fixed0 are fixed to 1. */
   1327       1.1    maxv 	if ((crval & fixed0) != fixed0) {
   1328       1.1    maxv 		return -1;
   1329       1.1    maxv 	}
   1330       1.1    maxv 	/* Bits set to 0 in fixed1 are fixed to 0. */
   1331       1.1    maxv 	if (crval & ~fixed1) {
   1332       1.1    maxv 		return -1;
   1333       1.1    maxv 	}
   1334       1.1    maxv 	return 0;
   1335       1.1    maxv }
   1336       1.1    maxv 
   1337       1.1    maxv static int
   1338       1.1    maxv vmx_inkernel_handle_cr0(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1339       1.1    maxv     uint64_t qual)
   1340       1.1    maxv {
   1341       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1342       1.1    maxv 	uint64_t type, gpr, cr0;
   1343      1.11    maxv 	uint64_t efer, ctls1;
   1344       1.1    maxv 
   1345       1.1    maxv 	type = __SHIFTOUT(qual, VMX_QUAL_CR_TYPE);
   1346       1.1    maxv 	if (type != CR_TYPE_WRITE) {
   1347       1.1    maxv 		return -1;
   1348       1.1    maxv 	}
   1349       1.1    maxv 
   1350       1.1    maxv 	gpr = __SHIFTOUT(qual, VMX_QUAL_CR_GPR);
   1351       1.1    maxv 	KASSERT(gpr < 16);
   1352       1.1    maxv 
   1353       1.1    maxv 	if (gpr == NVMM_X64_GPR_RSP) {
   1354      1.28    maxv 		gpr = vmx_vmread(VMCS_GUEST_RSP);
   1355       1.1    maxv 	} else {
   1356       1.1    maxv 		gpr = cpudata->gprs[gpr];
   1357       1.1    maxv 	}
   1358       1.1    maxv 
   1359       1.1    maxv 	cr0 = gpr | CR0_NE | CR0_ET;
   1360       1.1    maxv 	cr0 &= ~(CR0_NW|CR0_CD);
   1361       1.1    maxv 
   1362       1.1    maxv 	if (vmx_check_cr(cr0, vmx_cr0_fixed0, vmx_cr0_fixed1) == -1) {
   1363       1.1    maxv 		return -1;
   1364       1.1    maxv 	}
   1365       1.1    maxv 
   1366      1.11    maxv 	/*
   1367      1.11    maxv 	 * XXX Handle 32bit PAE paging, need to set PDPTEs, fetched manually
   1368      1.11    maxv 	 * from CR3.
   1369      1.11    maxv 	 */
   1370      1.11    maxv 
   1371      1.11    maxv 	if (cr0 & CR0_PG) {
   1372      1.28    maxv 		ctls1 = vmx_vmread(VMCS_ENTRY_CTLS);
   1373      1.28    maxv 		efer = vmx_vmread(VMCS_GUEST_IA32_EFER);
   1374      1.11    maxv 		if (efer & EFER_LME) {
   1375      1.11    maxv 			ctls1 |= ENTRY_CTLS_LONG_MODE;
   1376      1.11    maxv 			efer |= EFER_LMA;
   1377      1.11    maxv 		} else {
   1378      1.11    maxv 			ctls1 &= ~ENTRY_CTLS_LONG_MODE;
   1379      1.11    maxv 			efer &= ~EFER_LMA;
   1380      1.11    maxv 		}
   1381      1.11    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_EFER, efer);
   1382      1.11    maxv 		vmx_vmwrite(VMCS_ENTRY_CTLS, ctls1);
   1383      1.11    maxv 	}
   1384      1.11    maxv 
   1385       1.1    maxv 	vmx_vmwrite(VMCS_GUEST_CR0, cr0);
   1386       1.1    maxv 	vmx_inkernel_advance();
   1387       1.1    maxv 	return 0;
   1388       1.1    maxv }
   1389       1.1    maxv 
   1390       1.1    maxv static int
   1391       1.1    maxv vmx_inkernel_handle_cr4(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1392       1.1    maxv     uint64_t qual)
   1393       1.1    maxv {
   1394       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1395       1.1    maxv 	uint64_t type, gpr, cr4;
   1396       1.1    maxv 
   1397       1.1    maxv 	type = __SHIFTOUT(qual, VMX_QUAL_CR_TYPE);
   1398       1.1    maxv 	if (type != CR_TYPE_WRITE) {
   1399       1.1    maxv 		return -1;
   1400       1.1    maxv 	}
   1401       1.1    maxv 
   1402       1.1    maxv 	gpr = __SHIFTOUT(qual, VMX_QUAL_CR_GPR);
   1403       1.1    maxv 	KASSERT(gpr < 16);
   1404       1.1    maxv 
   1405       1.1    maxv 	if (gpr == NVMM_X64_GPR_RSP) {
   1406      1.28    maxv 		gpr = vmx_vmread(VMCS_GUEST_RSP);
   1407       1.1    maxv 	} else {
   1408       1.1    maxv 		gpr = cpudata->gprs[gpr];
   1409       1.1    maxv 	}
   1410       1.1    maxv 
   1411       1.1    maxv 	cr4 = gpr | CR4_VMXE;
   1412       1.1    maxv 
   1413       1.1    maxv 	if (vmx_check_cr(cr4, vmx_cr4_fixed0, vmx_cr4_fixed1) == -1) {
   1414       1.1    maxv 		return -1;
   1415       1.1    maxv 	}
   1416       1.1    maxv 
   1417       1.1    maxv 	vmx_vmwrite(VMCS_GUEST_CR4, cr4);
   1418       1.1    maxv 	vmx_inkernel_advance();
   1419       1.1    maxv 	return 0;
   1420       1.1    maxv }
   1421       1.1    maxv 
   1422       1.1    maxv static int
   1423       1.1    maxv vmx_inkernel_handle_cr8(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1424  1.36.2.3  martin     uint64_t qual, struct nvmm_vcpu_exit *exit)
   1425       1.1    maxv {
   1426       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1427       1.1    maxv 	uint64_t type, gpr;
   1428       1.1    maxv 	bool write;
   1429       1.1    maxv 
   1430       1.1    maxv 	type = __SHIFTOUT(qual, VMX_QUAL_CR_TYPE);
   1431       1.1    maxv 	if (type == CR_TYPE_WRITE) {
   1432       1.1    maxv 		write = true;
   1433       1.1    maxv 	} else if (type == CR_TYPE_READ) {
   1434       1.1    maxv 		write = false;
   1435       1.1    maxv 	} else {
   1436       1.1    maxv 		return -1;
   1437       1.1    maxv 	}
   1438       1.1    maxv 
   1439       1.1    maxv 	gpr = __SHIFTOUT(qual, VMX_QUAL_CR_GPR);
   1440       1.1    maxv 	KASSERT(gpr < 16);
   1441       1.1    maxv 
   1442       1.1    maxv 	if (write) {
   1443       1.1    maxv 		if (gpr == NVMM_X64_GPR_RSP) {
   1444      1.28    maxv 			cpudata->gcr8 = vmx_vmread(VMCS_GUEST_RSP);
   1445       1.1    maxv 		} else {
   1446       1.1    maxv 			cpudata->gcr8 = cpudata->gprs[gpr];
   1447       1.1    maxv 		}
   1448  1.36.2.3  martin 		if (cpudata->tpr.exit_changed) {
   1449  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_TPR_CHANGED;
   1450  1.36.2.3  martin 		}
   1451       1.1    maxv 	} else {
   1452       1.1    maxv 		if (gpr == NVMM_X64_GPR_RSP) {
   1453       1.1    maxv 			vmx_vmwrite(VMCS_GUEST_RSP, cpudata->gcr8);
   1454       1.1    maxv 		} else {
   1455       1.1    maxv 			cpudata->gprs[gpr] = cpudata->gcr8;
   1456       1.1    maxv 		}
   1457       1.1    maxv 	}
   1458       1.1    maxv 
   1459       1.1    maxv 	vmx_inkernel_advance();
   1460       1.1    maxv 	return 0;
   1461       1.1    maxv }
   1462       1.1    maxv 
   1463       1.1    maxv static void
   1464       1.1    maxv vmx_exit_cr(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1465  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1466       1.1    maxv {
   1467       1.1    maxv 	uint64_t qual;
   1468       1.1    maxv 	int ret;
   1469       1.1    maxv 
   1470  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_NONE;
   1471  1.36.2.3  martin 
   1472      1.28    maxv 	qual = vmx_vmread(VMCS_EXIT_QUALIFICATION);
   1473       1.1    maxv 
   1474       1.1    maxv 	switch (__SHIFTOUT(qual, VMX_QUAL_CR_NUM)) {
   1475       1.1    maxv 	case 0:
   1476       1.1    maxv 		ret = vmx_inkernel_handle_cr0(mach, vcpu, qual);
   1477       1.1    maxv 		break;
   1478       1.1    maxv 	case 4:
   1479       1.1    maxv 		ret = vmx_inkernel_handle_cr4(mach, vcpu, qual);
   1480       1.1    maxv 		break;
   1481       1.1    maxv 	case 8:
   1482  1.36.2.3  martin 		ret = vmx_inkernel_handle_cr8(mach, vcpu, qual, exit);
   1483       1.1    maxv 		break;
   1484       1.1    maxv 	default:
   1485       1.1    maxv 		ret = -1;
   1486       1.1    maxv 		break;
   1487       1.1    maxv 	}
   1488       1.1    maxv 
   1489       1.1    maxv 	if (ret == -1) {
   1490      1.33    maxv 		vmx_inject_gp(vcpu);
   1491       1.1    maxv 	}
   1492       1.1    maxv }
   1493       1.1    maxv 
   1494       1.1    maxv #define VMX_QUAL_IO_SIZE	__BITS(2,0)
   1495       1.1    maxv #define		IO_SIZE_8	0
   1496       1.1    maxv #define		IO_SIZE_16	1
   1497       1.1    maxv #define		IO_SIZE_32	3
   1498       1.1    maxv #define VMX_QUAL_IO_IN		__BIT(3)
   1499       1.1    maxv #define VMX_QUAL_IO_STR		__BIT(4)
   1500       1.1    maxv #define VMX_QUAL_IO_REP		__BIT(5)
   1501       1.1    maxv #define VMX_QUAL_IO_DX		__BIT(6)
   1502       1.1    maxv #define VMX_QUAL_IO_PORT	__BITS(31,16)
   1503       1.1    maxv 
   1504       1.1    maxv #define VMX_INFO_IO_ADRSIZE	__BITS(9,7)
   1505       1.1    maxv #define		IO_ADRSIZE_16	0
   1506       1.1    maxv #define		IO_ADRSIZE_32	1
   1507       1.1    maxv #define		IO_ADRSIZE_64	2
   1508       1.1    maxv #define VMX_INFO_IO_SEG		__BITS(17,15)
   1509       1.1    maxv 
   1510       1.1    maxv static void
   1511       1.1    maxv vmx_exit_io(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1512  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1513       1.1    maxv {
   1514       1.1    maxv 	uint64_t qual, info, inslen, rip;
   1515       1.1    maxv 
   1516      1.28    maxv 	qual = vmx_vmread(VMCS_EXIT_QUALIFICATION);
   1517      1.28    maxv 	info = vmx_vmread(VMCS_EXIT_INSTRUCTION_INFO);
   1518       1.1    maxv 
   1519  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_IO;
   1520       1.1    maxv 
   1521  1.36.2.3  martin 	exit->u.io.in = (qual & VMX_QUAL_IO_IN) != 0;
   1522       1.1    maxv 	exit->u.io.port = __SHIFTOUT(qual, VMX_QUAL_IO_PORT);
   1523       1.1    maxv 
   1524       1.1    maxv 	KASSERT(__SHIFTOUT(info, VMX_INFO_IO_SEG) < 6);
   1525      1.15    maxv 	exit->u.io.seg = __SHIFTOUT(info, VMX_INFO_IO_SEG);
   1526       1.1    maxv 
   1527       1.1    maxv 	if (__SHIFTOUT(info, VMX_INFO_IO_ADRSIZE) == IO_ADRSIZE_64) {
   1528       1.1    maxv 		exit->u.io.address_size = 8;
   1529       1.1    maxv 	} else if (__SHIFTOUT(info, VMX_INFO_IO_ADRSIZE) == IO_ADRSIZE_32) {
   1530       1.1    maxv 		exit->u.io.address_size = 4;
   1531       1.1    maxv 	} else if (__SHIFTOUT(info, VMX_INFO_IO_ADRSIZE) == IO_ADRSIZE_16) {
   1532       1.1    maxv 		exit->u.io.address_size = 2;
   1533       1.1    maxv 	}
   1534       1.1    maxv 
   1535       1.1    maxv 	if (__SHIFTOUT(qual, VMX_QUAL_IO_SIZE) == IO_SIZE_32) {
   1536       1.1    maxv 		exit->u.io.operand_size = 4;
   1537       1.1    maxv 	} else if (__SHIFTOUT(qual, VMX_QUAL_IO_SIZE) == IO_SIZE_16) {
   1538       1.1    maxv 		exit->u.io.operand_size = 2;
   1539       1.1    maxv 	} else if (__SHIFTOUT(qual, VMX_QUAL_IO_SIZE) == IO_SIZE_8) {
   1540       1.1    maxv 		exit->u.io.operand_size = 1;
   1541       1.1    maxv 	}
   1542       1.1    maxv 
   1543       1.1    maxv 	exit->u.io.rep = (qual & VMX_QUAL_IO_REP) != 0;
   1544       1.1    maxv 	exit->u.io.str = (qual & VMX_QUAL_IO_STR) != 0;
   1545       1.1    maxv 
   1546  1.36.2.3  martin 	if (exit->u.io.in && exit->u.io.str) {
   1547       1.1    maxv 		exit->u.io.seg = NVMM_X64_SEG_ES;
   1548       1.1    maxv 	}
   1549       1.1    maxv 
   1550      1.28    maxv 	inslen = vmx_vmread(VMCS_EXIT_INSTRUCTION_LENGTH);
   1551      1.28    maxv 	rip = vmx_vmread(VMCS_GUEST_RIP);
   1552       1.1    maxv 	exit->u.io.npc = rip + inslen;
   1553      1.31    maxv 
   1554      1.31    maxv 	vmx_vcpu_state_provide(vcpu,
   1555      1.31    maxv 	    NVMM_X64_STATE_GPRS | NVMM_X64_STATE_SEGS |
   1556      1.31    maxv 	    NVMM_X64_STATE_CRS | NVMM_X64_STATE_MSRS);
   1557       1.1    maxv }
   1558       1.1    maxv 
   1559       1.1    maxv static const uint64_t msr_ignore_list[] = {
   1560       1.1    maxv 	MSR_BIOS_SIGN,
   1561       1.1    maxv 	MSR_IA32_PLATFORM_ID
   1562       1.1    maxv };
   1563       1.1    maxv 
   1564       1.1    maxv static bool
   1565       1.1    maxv vmx_inkernel_handle_msr(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1566  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1567       1.1    maxv {
   1568       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1569       1.1    maxv 	uint64_t val;
   1570       1.1    maxv 	size_t i;
   1571       1.1    maxv 
   1572  1.36.2.3  martin 	if (exit->reason == NVMM_VCPU_EXIT_RDMSR) {
   1573  1.36.2.3  martin 		if (exit->u.rdmsr.msr == MSR_CR_PAT) {
   1574      1.28    maxv 			val = vmx_vmread(VMCS_GUEST_IA32_PAT);
   1575       1.1    maxv 			cpudata->gprs[NVMM_X64_GPR_RAX] = (val & 0xFFFFFFFF);
   1576       1.1    maxv 			cpudata->gprs[NVMM_X64_GPR_RDX] = (val >> 32);
   1577       1.1    maxv 			goto handled;
   1578       1.1    maxv 		}
   1579  1.36.2.3  martin 		if (exit->u.rdmsr.msr == MSR_MISC_ENABLE) {
   1580       1.5    maxv 			val = cpudata->gmsr_misc_enable;
   1581       1.5    maxv 			cpudata->gprs[NVMM_X64_GPR_RAX] = (val & 0xFFFFFFFF);
   1582       1.5    maxv 			cpudata->gprs[NVMM_X64_GPR_RDX] = (val >> 32);
   1583       1.5    maxv 			goto handled;
   1584       1.5    maxv 		}
   1585       1.1    maxv 		for (i = 0; i < __arraycount(msr_ignore_list); i++) {
   1586  1.36.2.3  martin 			if (msr_ignore_list[i] != exit->u.rdmsr.msr)
   1587       1.1    maxv 				continue;
   1588       1.1    maxv 			val = 0;
   1589       1.1    maxv 			cpudata->gprs[NVMM_X64_GPR_RAX] = (val & 0xFFFFFFFF);
   1590       1.1    maxv 			cpudata->gprs[NVMM_X64_GPR_RDX] = (val >> 32);
   1591       1.1    maxv 			goto handled;
   1592       1.1    maxv 		}
   1593  1.36.2.3  martin 	} else {
   1594  1.36.2.3  martin 		if (exit->u.wrmsr.msr == MSR_TSC) {
   1595  1.36.2.3  martin 			cpudata->gtsc = exit->u.wrmsr.val;
   1596      1.21    maxv 			cpudata->gtsc_want_update = true;
   1597       1.4    maxv 			goto handled;
   1598       1.4    maxv 		}
   1599  1.36.2.3  martin 		if (exit->u.wrmsr.msr == MSR_CR_PAT) {
   1600  1.36.2.3  martin 			val = exit->u.wrmsr.val;
   1601      1.23    maxv 			if (__predict_false(!nvmm_x86_pat_validate(val))) {
   1602      1.23    maxv 				goto error;
   1603      1.23    maxv 			}
   1604      1.23    maxv 			vmx_vmwrite(VMCS_GUEST_IA32_PAT, val);
   1605       1.1    maxv 			goto handled;
   1606       1.1    maxv 		}
   1607  1.36.2.3  martin 		if (exit->u.wrmsr.msr == MSR_MISC_ENABLE) {
   1608       1.5    maxv 			/* Don't care. */
   1609       1.5    maxv 			goto handled;
   1610       1.5    maxv 		}
   1611       1.1    maxv 		for (i = 0; i < __arraycount(msr_ignore_list); i++) {
   1612  1.36.2.3  martin 			if (msr_ignore_list[i] != exit->u.wrmsr.msr)
   1613       1.1    maxv 				continue;
   1614       1.1    maxv 			goto handled;
   1615       1.1    maxv 		}
   1616       1.1    maxv 	}
   1617       1.1    maxv 
   1618       1.1    maxv 	return false;
   1619       1.1    maxv 
   1620       1.1    maxv handled:
   1621       1.1    maxv 	vmx_inkernel_advance();
   1622       1.1    maxv 	return true;
   1623      1.23    maxv 
   1624      1.23    maxv error:
   1625      1.33    maxv 	vmx_inject_gp(vcpu);
   1626      1.23    maxv 	return true;
   1627       1.1    maxv }
   1628       1.1    maxv 
   1629       1.1    maxv static void
   1630  1.36.2.3  martin vmx_exit_rdmsr(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1631  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1632       1.1    maxv {
   1633       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1634       1.1    maxv 	uint64_t inslen, rip;
   1635       1.1    maxv 
   1636  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_RDMSR;
   1637  1.36.2.3  martin 	exit->u.rdmsr.msr = (cpudata->gprs[NVMM_X64_GPR_RCX] & 0xFFFFFFFF);
   1638  1.36.2.3  martin 
   1639  1.36.2.3  martin 	if (vmx_inkernel_handle_msr(mach, vcpu, exit)) {
   1640  1.36.2.3  martin 		exit->reason = NVMM_VCPU_EXIT_NONE;
   1641  1.36.2.3  martin 		return;
   1642       1.1    maxv 	}
   1643       1.1    maxv 
   1644  1.36.2.3  martin 	inslen = vmx_vmread(VMCS_EXIT_INSTRUCTION_LENGTH);
   1645  1.36.2.3  martin 	rip = vmx_vmread(VMCS_GUEST_RIP);
   1646  1.36.2.3  martin 	exit->u.rdmsr.npc = rip + inslen;
   1647       1.1    maxv 
   1648  1.36.2.3  martin 	vmx_vcpu_state_provide(vcpu, NVMM_X64_STATE_GPRS);
   1649  1.36.2.3  martin }
   1650  1.36.2.3  martin 
   1651  1.36.2.3  martin static void
   1652  1.36.2.3  martin vmx_exit_wrmsr(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1653  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1654  1.36.2.3  martin {
   1655  1.36.2.3  martin 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1656  1.36.2.3  martin 	uint64_t rdx, rax, inslen, rip;
   1657  1.36.2.3  martin 
   1658  1.36.2.3  martin 	rdx = cpudata->gprs[NVMM_X64_GPR_RDX];
   1659  1.36.2.3  martin 	rax = cpudata->gprs[NVMM_X64_GPR_RAX];
   1660  1.36.2.3  martin 
   1661  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_WRMSR;
   1662  1.36.2.3  martin 	exit->u.wrmsr.msr = (cpudata->gprs[NVMM_X64_GPR_RCX] & 0xFFFFFFFF);
   1663  1.36.2.3  martin 	exit->u.wrmsr.val = (rdx << 32) | (rax & 0xFFFFFFFF);
   1664       1.1    maxv 
   1665       1.1    maxv 	if (vmx_inkernel_handle_msr(mach, vcpu, exit)) {
   1666  1.36.2.3  martin 		exit->reason = NVMM_VCPU_EXIT_NONE;
   1667       1.1    maxv 		return;
   1668       1.1    maxv 	}
   1669       1.1    maxv 
   1670      1.28    maxv 	inslen = vmx_vmread(VMCS_EXIT_INSTRUCTION_LENGTH);
   1671      1.28    maxv 	rip = vmx_vmread(VMCS_GUEST_RIP);
   1672  1.36.2.3  martin 	exit->u.wrmsr.npc = rip + inslen;
   1673      1.31    maxv 
   1674      1.31    maxv 	vmx_vcpu_state_provide(vcpu, NVMM_X64_STATE_GPRS);
   1675       1.1    maxv }
   1676       1.1    maxv 
   1677       1.1    maxv static void
   1678       1.1    maxv vmx_exit_xsetbv(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1679  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1680       1.1    maxv {
   1681       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1682       1.1    maxv 	uint16_t val;
   1683       1.1    maxv 
   1684  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_NONE;
   1685       1.1    maxv 
   1686       1.1    maxv 	val = (cpudata->gprs[NVMM_X64_GPR_RDX] << 32) |
   1687       1.1    maxv 	    (cpudata->gprs[NVMM_X64_GPR_RAX] & 0xFFFFFFFF);
   1688       1.1    maxv 
   1689       1.1    maxv 	if (__predict_false(cpudata->gprs[NVMM_X64_GPR_RCX] != 0)) {
   1690       1.1    maxv 		goto error;
   1691       1.1    maxv 	} else if (__predict_false((val & ~vmx_xcr0_mask) != 0)) {
   1692       1.1    maxv 		goto error;
   1693       1.1    maxv 	} else if (__predict_false((val & XCR0_X87) == 0)) {
   1694       1.1    maxv 		goto error;
   1695       1.1    maxv 	}
   1696       1.1    maxv 
   1697       1.1    maxv 	cpudata->gxcr0 = val;
   1698       1.1    maxv 
   1699       1.1    maxv 	vmx_inkernel_advance();
   1700       1.1    maxv 	return;
   1701       1.1    maxv 
   1702       1.1    maxv error:
   1703      1.33    maxv 	vmx_inject_gp(vcpu);
   1704       1.1    maxv }
   1705       1.1    maxv 
   1706       1.1    maxv #define VMX_EPT_VIOLATION_READ		__BIT(0)
   1707       1.1    maxv #define VMX_EPT_VIOLATION_WRITE		__BIT(1)
   1708       1.1    maxv #define VMX_EPT_VIOLATION_EXECUTE	__BIT(2)
   1709       1.1    maxv 
   1710       1.1    maxv static void
   1711       1.1    maxv vmx_exit_epf(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1712  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1713       1.1    maxv {
   1714       1.1    maxv 	uint64_t perm;
   1715       1.1    maxv 	gpaddr_t gpa;
   1716       1.1    maxv 
   1717      1.28    maxv 	gpa = vmx_vmread(VMCS_GUEST_PHYSICAL_ADDRESS);
   1718       1.1    maxv 
   1719  1.36.2.3  martin 	exit->reason = NVMM_VCPU_EXIT_MEMORY;
   1720      1.28    maxv 	perm = vmx_vmread(VMCS_EXIT_QUALIFICATION);
   1721       1.7    maxv 	if (perm & VMX_EPT_VIOLATION_WRITE)
   1722      1.20    maxv 		exit->u.mem.prot = PROT_WRITE;
   1723       1.7    maxv 	else if (perm & VMX_EPT_VIOLATION_EXECUTE)
   1724      1.20    maxv 		exit->u.mem.prot = PROT_EXEC;
   1725       1.7    maxv 	else
   1726      1.20    maxv 		exit->u.mem.prot = PROT_READ;
   1727       1.7    maxv 	exit->u.mem.gpa = gpa;
   1728       1.7    maxv 	exit->u.mem.inst_len = 0;
   1729      1.31    maxv 
   1730      1.31    maxv 	vmx_vcpu_state_provide(vcpu,
   1731      1.31    maxv 	    NVMM_X64_STATE_GPRS | NVMM_X64_STATE_SEGS |
   1732      1.31    maxv 	    NVMM_X64_STATE_CRS | NVMM_X64_STATE_MSRS);
   1733       1.1    maxv }
   1734       1.1    maxv 
   1735       1.9    maxv /* -------------------------------------------------------------------------- */
   1736       1.9    maxv 
   1737       1.1    maxv static void
   1738       1.1    maxv vmx_vcpu_guest_fpu_enter(struct nvmm_cpu *vcpu)
   1739       1.1    maxv {
   1740       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1741       1.1    maxv 
   1742       1.1    maxv 	cpudata->ts_set = (rcr0() & CR0_TS) != 0;
   1743       1.1    maxv 
   1744       1.1    maxv 	fpu_area_save(&cpudata->hfpu, vmx_xcr0_mask);
   1745       1.1    maxv 	fpu_area_restore(&cpudata->gfpu, vmx_xcr0_mask);
   1746       1.1    maxv 
   1747       1.1    maxv 	if (vmx_xcr0_mask != 0) {
   1748       1.1    maxv 		cpudata->hxcr0 = rdxcr(0);
   1749       1.1    maxv 		wrxcr(0, cpudata->gxcr0);
   1750       1.1    maxv 	}
   1751       1.1    maxv }
   1752       1.1    maxv 
   1753       1.1    maxv static void
   1754       1.1    maxv vmx_vcpu_guest_fpu_leave(struct nvmm_cpu *vcpu)
   1755       1.1    maxv {
   1756       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1757       1.1    maxv 
   1758       1.1    maxv 	if (vmx_xcr0_mask != 0) {
   1759       1.1    maxv 		cpudata->gxcr0 = rdxcr(0);
   1760       1.1    maxv 		wrxcr(0, cpudata->hxcr0);
   1761       1.1    maxv 	}
   1762       1.1    maxv 
   1763       1.1    maxv 	fpu_area_save(&cpudata->gfpu, vmx_xcr0_mask);
   1764       1.1    maxv 	fpu_area_restore(&cpudata->hfpu, vmx_xcr0_mask);
   1765       1.1    maxv 
   1766       1.1    maxv 	if (cpudata->ts_set) {
   1767       1.1    maxv 		stts();
   1768       1.1    maxv 	}
   1769       1.1    maxv }
   1770       1.1    maxv 
   1771       1.1    maxv static void
   1772       1.1    maxv vmx_vcpu_guest_dbregs_enter(struct nvmm_cpu *vcpu)
   1773       1.1    maxv {
   1774       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1775       1.1    maxv 
   1776       1.1    maxv 	x86_dbregs_save(curlwp);
   1777       1.1    maxv 
   1778       1.1    maxv 	ldr7(0);
   1779       1.1    maxv 
   1780       1.1    maxv 	ldr0(cpudata->drs[NVMM_X64_DR_DR0]);
   1781       1.1    maxv 	ldr1(cpudata->drs[NVMM_X64_DR_DR1]);
   1782       1.1    maxv 	ldr2(cpudata->drs[NVMM_X64_DR_DR2]);
   1783       1.1    maxv 	ldr3(cpudata->drs[NVMM_X64_DR_DR3]);
   1784       1.1    maxv 	ldr6(cpudata->drs[NVMM_X64_DR_DR6]);
   1785       1.1    maxv }
   1786       1.1    maxv 
   1787       1.1    maxv static void
   1788       1.1    maxv vmx_vcpu_guest_dbregs_leave(struct nvmm_cpu *vcpu)
   1789       1.1    maxv {
   1790       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1791       1.1    maxv 
   1792       1.1    maxv 	cpudata->drs[NVMM_X64_DR_DR0] = rdr0();
   1793       1.1    maxv 	cpudata->drs[NVMM_X64_DR_DR1] = rdr1();
   1794       1.1    maxv 	cpudata->drs[NVMM_X64_DR_DR2] = rdr2();
   1795       1.1    maxv 	cpudata->drs[NVMM_X64_DR_DR3] = rdr3();
   1796       1.1    maxv 	cpudata->drs[NVMM_X64_DR_DR6] = rdr6();
   1797       1.1    maxv 
   1798       1.1    maxv 	x86_dbregs_restore(curlwp);
   1799       1.1    maxv }
   1800       1.1    maxv 
   1801       1.1    maxv static void
   1802       1.1    maxv vmx_vcpu_guest_misc_enter(struct nvmm_cpu *vcpu)
   1803       1.1    maxv {
   1804       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1805       1.1    maxv 
   1806       1.1    maxv 	/* This gets restored automatically by the CPU. */
   1807       1.1    maxv 	vmx_vmwrite(VMCS_HOST_FS_BASE, rdmsr(MSR_FSBASE));
   1808       1.1    maxv 	vmx_vmwrite(VMCS_HOST_CR3, rcr3());
   1809       1.1    maxv 	vmx_vmwrite(VMCS_HOST_CR4, rcr4());
   1810       1.1    maxv 
   1811       1.1    maxv 	cpudata->kernelgsbase = rdmsr(MSR_KERNELGSBASE);
   1812       1.1    maxv }
   1813       1.1    maxv 
   1814       1.1    maxv static void
   1815       1.1    maxv vmx_vcpu_guest_misc_leave(struct nvmm_cpu *vcpu)
   1816       1.1    maxv {
   1817       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1818       1.1    maxv 
   1819       1.1    maxv 	wrmsr(MSR_STAR, cpudata->star);
   1820       1.1    maxv 	wrmsr(MSR_LSTAR, cpudata->lstar);
   1821       1.1    maxv 	wrmsr(MSR_CSTAR, cpudata->cstar);
   1822       1.1    maxv 	wrmsr(MSR_SFMASK, cpudata->sfmask);
   1823       1.1    maxv 	wrmsr(MSR_KERNELGSBASE, cpudata->kernelgsbase);
   1824       1.1    maxv }
   1825       1.1    maxv 
   1826       1.9    maxv /* -------------------------------------------------------------------------- */
   1827       1.8    maxv 
   1828       1.1    maxv #define VMX_INVVPID_ADDRESS		0
   1829       1.1    maxv #define VMX_INVVPID_CONTEXT		1
   1830       1.1    maxv #define VMX_INVVPID_ALL			2
   1831       1.1    maxv #define VMX_INVVPID_CONTEXT_NOGLOBAL	3
   1832       1.1    maxv 
   1833       1.1    maxv #define VMX_INVEPT_CONTEXT		1
   1834       1.1    maxv #define VMX_INVEPT_ALL			2
   1835       1.1    maxv 
   1836       1.8    maxv static inline void
   1837       1.8    maxv vmx_gtlb_catchup(struct nvmm_cpu *vcpu, int hcpu)
   1838       1.8    maxv {
   1839       1.8    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1840       1.8    maxv 
   1841       1.8    maxv 	if (vcpu->hcpu_last != hcpu) {
   1842       1.8    maxv 		cpudata->gtlb_want_flush = true;
   1843       1.8    maxv 	}
   1844       1.8    maxv }
   1845       1.8    maxv 
   1846       1.9    maxv static inline void
   1847       1.9    maxv vmx_htlb_catchup(struct nvmm_cpu *vcpu, int hcpu)
   1848       1.9    maxv {
   1849       1.9    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1850       1.9    maxv 	struct ept_desc ept_desc;
   1851       1.9    maxv 
   1852       1.9    maxv 	if (__predict_true(!kcpuset_isset(cpudata->htlb_want_flush, hcpu))) {
   1853       1.9    maxv 		return;
   1854       1.9    maxv 	}
   1855       1.9    maxv 
   1856      1.28    maxv 	ept_desc.eptp = vmx_vmread(VMCS_EPTP);
   1857       1.9    maxv 	ept_desc.mbz = 0;
   1858       1.9    maxv 	vmx_invept(vmx_ept_flush_op, &ept_desc);
   1859       1.9    maxv 	kcpuset_clear(cpudata->htlb_want_flush, hcpu);
   1860       1.9    maxv }
   1861       1.9    maxv 
   1862       1.9    maxv static inline uint64_t
   1863       1.9    maxv vmx_htlb_flush(struct vmx_machdata *machdata, struct vmx_cpudata *cpudata)
   1864       1.9    maxv {
   1865       1.9    maxv 	struct ept_desc ept_desc;
   1866       1.9    maxv 	uint64_t machgen;
   1867       1.9    maxv 
   1868       1.9    maxv 	machgen = machdata->mach_htlb_gen;
   1869       1.9    maxv 	if (__predict_true(machgen == cpudata->vcpu_htlb_gen)) {
   1870       1.9    maxv 		return machgen;
   1871       1.9    maxv 	}
   1872       1.9    maxv 
   1873       1.9    maxv 	kcpuset_copy(cpudata->htlb_want_flush, kcpuset_running);
   1874       1.9    maxv 
   1875      1.28    maxv 	ept_desc.eptp = vmx_vmread(VMCS_EPTP);
   1876       1.9    maxv 	ept_desc.mbz = 0;
   1877       1.9    maxv 	vmx_invept(vmx_ept_flush_op, &ept_desc);
   1878       1.9    maxv 
   1879       1.9    maxv 	return machgen;
   1880       1.9    maxv }
   1881       1.9    maxv 
   1882       1.9    maxv static inline void
   1883       1.9    maxv vmx_htlb_flush_ack(struct vmx_cpudata *cpudata, uint64_t machgen)
   1884       1.9    maxv {
   1885       1.9    maxv 	cpudata->vcpu_htlb_gen = machgen;
   1886       1.9    maxv 	kcpuset_clear(cpudata->htlb_want_flush, cpu_number());
   1887       1.9    maxv }
   1888       1.9    maxv 
   1889      1.29    maxv static inline void
   1890      1.29    maxv vmx_exit_evt(struct vmx_cpudata *cpudata)
   1891      1.29    maxv {
   1892      1.29    maxv 	uint64_t info, err;
   1893      1.29    maxv 
   1894      1.29    maxv 	cpudata->evt_pending = false;
   1895      1.29    maxv 
   1896      1.29    maxv 	info = vmx_vmread(VMCS_IDT_VECTORING_INFO);
   1897      1.29    maxv 	if (__predict_true((info & INTR_INFO_VALID) == 0)) {
   1898      1.29    maxv 		return;
   1899      1.29    maxv 	}
   1900      1.29    maxv 	err = vmx_vmread(VMCS_IDT_VECTORING_ERROR);
   1901      1.29    maxv 
   1902      1.29    maxv 	vmx_vmwrite(VMCS_ENTRY_INTR_INFO, info);
   1903      1.29    maxv 	vmx_vmwrite(VMCS_ENTRY_EXCEPTION_ERROR, err);
   1904      1.29    maxv 
   1905      1.29    maxv 	cpudata->evt_pending = true;
   1906      1.29    maxv }
   1907      1.29    maxv 
   1908       1.1    maxv static int
   1909       1.1    maxv vmx_vcpu_run(struct nvmm_machine *mach, struct nvmm_cpu *vcpu,
   1910  1.36.2.3  martin     struct nvmm_vcpu_exit *exit)
   1911       1.1    maxv {
   1912      1.31    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   1913       1.1    maxv 	struct vmx_machdata *machdata = mach->machdata;
   1914       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   1915       1.1    maxv 	struct vpid_desc vpid_desc;
   1916       1.1    maxv 	struct cpu_info *ci;
   1917       1.1    maxv 	uint64_t exitcode;
   1918       1.1    maxv 	uint64_t intstate;
   1919       1.9    maxv 	uint64_t machgen;
   1920       1.1    maxv 	int hcpu, s, ret;
   1921      1.19    maxv 	bool launched;
   1922       1.1    maxv 
   1923       1.1    maxv 	vmx_vmcs_enter(vcpu);
   1924      1.31    maxv 
   1925      1.33    maxv 	if (__predict_false(vmx_vcpu_event_commit(vcpu) != 0)) {
   1926      1.33    maxv 		vmx_vmcs_leave(vcpu);
   1927      1.33    maxv 		return EINVAL;
   1928      1.33    maxv 	}
   1929      1.31    maxv 	vmx_vcpu_state_commit(vcpu);
   1930      1.31    maxv 	comm->state_cached = 0;
   1931      1.31    maxv 
   1932       1.1    maxv 	ci = curcpu();
   1933       1.1    maxv 	hcpu = cpu_number();
   1934      1.19    maxv 	launched = cpudata->vmcs_launched;
   1935       1.1    maxv 
   1936       1.8    maxv 	vmx_gtlb_catchup(vcpu, hcpu);
   1937       1.9    maxv 	vmx_htlb_catchup(vcpu, hcpu);
   1938       1.1    maxv 
   1939       1.1    maxv 	if (vcpu->hcpu_last != hcpu) {
   1940       1.1    maxv 		vmx_vmwrite(VMCS_HOST_TR_SELECTOR, ci->ci_tss_sel);
   1941       1.1    maxv 		vmx_vmwrite(VMCS_HOST_TR_BASE, (uint64_t)ci->ci_tss);
   1942       1.1    maxv 		vmx_vmwrite(VMCS_HOST_GDTR_BASE, (uint64_t)ci->ci_gdt);
   1943       1.1    maxv 		vmx_vmwrite(VMCS_HOST_GS_BASE, rdmsr(MSR_GSBASE));
   1944      1.21    maxv 		cpudata->gtsc_want_update = true;
   1945       1.1    maxv 		vcpu->hcpu_last = hcpu;
   1946       1.1    maxv 	}
   1947       1.1    maxv 
   1948       1.1    maxv 	vmx_vcpu_guest_dbregs_enter(vcpu);
   1949       1.1    maxv 	vmx_vcpu_guest_misc_enter(vcpu);
   1950       1.1    maxv 
   1951       1.1    maxv 	while (1) {
   1952       1.8    maxv 		if (cpudata->gtlb_want_flush) {
   1953       1.1    maxv 			vpid_desc.vpid = cpudata->asid;
   1954       1.1    maxv 			vpid_desc.addr = 0;
   1955       1.1    maxv 			vmx_invvpid(vmx_tlb_flush_op, &vpid_desc);
   1956       1.8    maxv 			cpudata->gtlb_want_flush = false;
   1957       1.1    maxv 		}
   1958       1.1    maxv 
   1959      1.21    maxv 		if (__predict_false(cpudata->gtsc_want_update)) {
   1960      1.21    maxv 			vmx_vmwrite(VMCS_TSC_OFFSET, cpudata->gtsc - rdtsc());
   1961      1.21    maxv 			cpudata->gtsc_want_update = false;
   1962      1.21    maxv 		}
   1963      1.21    maxv 
   1964       1.1    maxv 		s = splhigh();
   1965       1.9    maxv 		machgen = vmx_htlb_flush(machdata, cpudata);
   1966       1.1    maxv 		vmx_vcpu_guest_fpu_enter(vcpu);
   1967       1.1    maxv 		lcr2(cpudata->gcr2);
   1968       1.1    maxv 		if (launched) {
   1969       1.1    maxv 			ret = vmx_vmresume(cpudata->gprs);
   1970       1.1    maxv 		} else {
   1971       1.1    maxv 			ret = vmx_vmlaunch(cpudata->gprs);
   1972       1.1    maxv 		}
   1973       1.1    maxv 		cpudata->gcr2 = rcr2();
   1974       1.1    maxv 		vmx_vcpu_guest_fpu_leave(vcpu);
   1975       1.9    maxv 		vmx_htlb_flush_ack(cpudata, machgen);
   1976       1.1    maxv 		splx(s);
   1977       1.1    maxv 
   1978       1.1    maxv 		if (__predict_false(ret != 0)) {
   1979  1.36.2.1  martin 			vmx_exit_invalid(exit, -1);
   1980       1.1    maxv 			break;
   1981       1.1    maxv 		}
   1982      1.29    maxv 		vmx_exit_evt(cpudata);
   1983       1.1    maxv 
   1984       1.1    maxv 		launched = true;
   1985       1.1    maxv 
   1986      1.28    maxv 		exitcode = vmx_vmread(VMCS_EXIT_REASON);
   1987       1.1    maxv 		exitcode &= __BITS(15,0);
   1988       1.1    maxv 
   1989       1.1    maxv 		switch (exitcode) {
   1990      1.17    maxv 		case VMCS_EXITCODE_EXC_NMI:
   1991      1.17    maxv 			vmx_exit_exc_nmi(mach, vcpu, exit);
   1992      1.17    maxv 			break;
   1993       1.1    maxv 		case VMCS_EXITCODE_EXT_INT:
   1994  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_NONE;
   1995       1.1    maxv 			break;
   1996       1.1    maxv 		case VMCS_EXITCODE_CPUID:
   1997       1.1    maxv 			vmx_exit_cpuid(mach, vcpu, exit);
   1998       1.1    maxv 			break;
   1999       1.1    maxv 		case VMCS_EXITCODE_HLT:
   2000       1.1    maxv 			vmx_exit_hlt(mach, vcpu, exit);
   2001       1.1    maxv 			break;
   2002       1.1    maxv 		case VMCS_EXITCODE_CR:
   2003       1.1    maxv 			vmx_exit_cr(mach, vcpu, exit);
   2004       1.1    maxv 			break;
   2005       1.1    maxv 		case VMCS_EXITCODE_IO:
   2006       1.1    maxv 			vmx_exit_io(mach, vcpu, exit);
   2007       1.1    maxv 			break;
   2008       1.1    maxv 		case VMCS_EXITCODE_RDMSR:
   2009  1.36.2.3  martin 			vmx_exit_rdmsr(mach, vcpu, exit);
   2010       1.1    maxv 			break;
   2011       1.1    maxv 		case VMCS_EXITCODE_WRMSR:
   2012  1.36.2.3  martin 			vmx_exit_wrmsr(mach, vcpu, exit);
   2013       1.1    maxv 			break;
   2014       1.1    maxv 		case VMCS_EXITCODE_SHUTDOWN:
   2015  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_SHUTDOWN;
   2016       1.1    maxv 			break;
   2017       1.1    maxv 		case VMCS_EXITCODE_MONITOR:
   2018  1.36.2.3  martin 			vmx_exit_insn(exit, NVMM_VCPU_EXIT_MONITOR);
   2019       1.1    maxv 			break;
   2020       1.1    maxv 		case VMCS_EXITCODE_MWAIT:
   2021  1.36.2.3  martin 			vmx_exit_insn(exit, NVMM_VCPU_EXIT_MWAIT);
   2022       1.1    maxv 			break;
   2023       1.1    maxv 		case VMCS_EXITCODE_XSETBV:
   2024       1.1    maxv 			vmx_exit_xsetbv(mach, vcpu, exit);
   2025       1.1    maxv 			break;
   2026       1.1    maxv 		case VMCS_EXITCODE_RDPMC:
   2027       1.1    maxv 		case VMCS_EXITCODE_RDTSCP:
   2028       1.1    maxv 		case VMCS_EXITCODE_INVVPID:
   2029       1.1    maxv 		case VMCS_EXITCODE_INVEPT:
   2030       1.1    maxv 		case VMCS_EXITCODE_VMCALL:
   2031       1.1    maxv 		case VMCS_EXITCODE_VMCLEAR:
   2032       1.1    maxv 		case VMCS_EXITCODE_VMLAUNCH:
   2033       1.1    maxv 		case VMCS_EXITCODE_VMPTRLD:
   2034       1.1    maxv 		case VMCS_EXITCODE_VMPTRST:
   2035       1.1    maxv 		case VMCS_EXITCODE_VMREAD:
   2036       1.1    maxv 		case VMCS_EXITCODE_VMRESUME:
   2037       1.1    maxv 		case VMCS_EXITCODE_VMWRITE:
   2038       1.1    maxv 		case VMCS_EXITCODE_VMXOFF:
   2039       1.1    maxv 		case VMCS_EXITCODE_VMXON:
   2040      1.33    maxv 			vmx_inject_ud(vcpu);
   2041  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_NONE;
   2042       1.1    maxv 			break;
   2043       1.1    maxv 		case VMCS_EXITCODE_EPT_VIOLATION:
   2044       1.1    maxv 			vmx_exit_epf(mach, vcpu, exit);
   2045       1.1    maxv 			break;
   2046       1.1    maxv 		case VMCS_EXITCODE_INT_WINDOW:
   2047       1.1    maxv 			vmx_event_waitexit_disable(vcpu, false);
   2048  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_INT_READY;
   2049       1.1    maxv 			break;
   2050       1.1    maxv 		case VMCS_EXITCODE_NMI_WINDOW:
   2051       1.1    maxv 			vmx_event_waitexit_disable(vcpu, true);
   2052  1.36.2.3  martin 			exit->reason = NVMM_VCPU_EXIT_NMI_READY;
   2053       1.1    maxv 			break;
   2054       1.1    maxv 		default:
   2055      1.27    maxv 			vmx_exit_invalid(exit, exitcode);
   2056       1.1    maxv 			break;
   2057       1.1    maxv 		}
   2058       1.1    maxv 
   2059       1.1    maxv 		/* If no reason to return to userland, keep rolling. */
   2060       1.1    maxv 		if (curcpu()->ci_schedstate.spc_flags & SPCF_SHOULDYIELD) {
   2061       1.1    maxv 			break;
   2062       1.1    maxv 		}
   2063       1.1    maxv 		if (curcpu()->ci_data.cpu_softints != 0) {
   2064       1.1    maxv 			break;
   2065       1.1    maxv 		}
   2066       1.1    maxv 		if (curlwp->l_flag & LW_USERRET) {
   2067       1.1    maxv 			break;
   2068       1.1    maxv 		}
   2069  1.36.2.3  martin 		if (exit->reason != NVMM_VCPU_EXIT_NONE) {
   2070       1.1    maxv 			break;
   2071       1.1    maxv 		}
   2072       1.1    maxv 	}
   2073       1.1    maxv 
   2074      1.19    maxv 	cpudata->vmcs_launched = launched;
   2075      1.19    maxv 
   2076      1.28    maxv 	cpudata->gtsc = vmx_vmread(VMCS_TSC_OFFSET) + rdtsc();
   2077      1.21    maxv 
   2078       1.1    maxv 	vmx_vcpu_guest_misc_leave(vcpu);
   2079       1.1    maxv 	vmx_vcpu_guest_dbregs_leave(vcpu);
   2080       1.1    maxv 
   2081  1.36.2.3  martin 	exit->exitstate.rflags = vmx_vmread(VMCS_GUEST_RFLAGS);
   2082  1.36.2.3  martin 	exit->exitstate.cr8 = cpudata->gcr8;
   2083      1.28    maxv 	intstate = vmx_vmread(VMCS_GUEST_INTERRUPTIBILITY);
   2084  1.36.2.3  martin 	exit->exitstate.int_shadow =
   2085       1.1    maxv 	    (intstate & (INT_STATE_STI|INT_STATE_MOVSS)) != 0;
   2086  1.36.2.3  martin 	exit->exitstate.int_window_exiting = cpudata->int_window_exit;
   2087  1.36.2.3  martin 	exit->exitstate.nmi_window_exiting = cpudata->nmi_window_exit;
   2088  1.36.2.3  martin 	exit->exitstate.evt_pending = cpudata->evt_pending;
   2089       1.1    maxv 
   2090       1.1    maxv 	vmx_vmcs_leave(vcpu);
   2091       1.1    maxv 
   2092       1.1    maxv 	return 0;
   2093       1.1    maxv }
   2094       1.1    maxv 
   2095       1.1    maxv /* -------------------------------------------------------------------------- */
   2096       1.1    maxv 
   2097       1.1    maxv static int
   2098       1.1    maxv vmx_memalloc(paddr_t *pa, vaddr_t *va, size_t npages)
   2099       1.1    maxv {
   2100       1.1    maxv 	struct pglist pglist;
   2101       1.1    maxv 	paddr_t _pa;
   2102       1.1    maxv 	vaddr_t _va;
   2103       1.1    maxv 	size_t i;
   2104       1.1    maxv 	int ret;
   2105       1.1    maxv 
   2106       1.1    maxv 	ret = uvm_pglistalloc(npages * PAGE_SIZE, 0, ~0UL, PAGE_SIZE, 0,
   2107       1.1    maxv 	    &pglist, 1, 0);
   2108       1.1    maxv 	if (ret != 0)
   2109       1.1    maxv 		return ENOMEM;
   2110       1.1    maxv 	_pa = TAILQ_FIRST(&pglist)->phys_addr;
   2111       1.1    maxv 	_va = uvm_km_alloc(kernel_map, npages * PAGE_SIZE, 0,
   2112       1.1    maxv 	    UVM_KMF_VAONLY | UVM_KMF_NOWAIT);
   2113       1.1    maxv 	if (_va == 0)
   2114       1.1    maxv 		goto error;
   2115       1.1    maxv 
   2116       1.1    maxv 	for (i = 0; i < npages; i++) {
   2117       1.1    maxv 		pmap_kenter_pa(_va + i * PAGE_SIZE, _pa + i * PAGE_SIZE,
   2118       1.1    maxv 		    VM_PROT_READ | VM_PROT_WRITE, PMAP_WRITE_BACK);
   2119       1.1    maxv 	}
   2120       1.1    maxv 	pmap_update(pmap_kernel());
   2121       1.1    maxv 
   2122       1.1    maxv 	memset((void *)_va, 0, npages * PAGE_SIZE);
   2123       1.1    maxv 
   2124       1.1    maxv 	*pa = _pa;
   2125       1.1    maxv 	*va = _va;
   2126       1.1    maxv 	return 0;
   2127       1.1    maxv 
   2128       1.1    maxv error:
   2129       1.1    maxv 	for (i = 0; i < npages; i++) {
   2130       1.1    maxv 		uvm_pagefree(PHYS_TO_VM_PAGE(_pa + i * PAGE_SIZE));
   2131       1.1    maxv 	}
   2132       1.1    maxv 	return ENOMEM;
   2133       1.1    maxv }
   2134       1.1    maxv 
   2135       1.1    maxv static void
   2136       1.1    maxv vmx_memfree(paddr_t pa, vaddr_t va, size_t npages)
   2137       1.1    maxv {
   2138       1.1    maxv 	size_t i;
   2139       1.1    maxv 
   2140       1.1    maxv 	pmap_kremove(va, npages * PAGE_SIZE);
   2141       1.1    maxv 	pmap_update(pmap_kernel());
   2142       1.1    maxv 	uvm_km_free(kernel_map, va, npages * PAGE_SIZE, UVM_KMF_VAONLY);
   2143       1.1    maxv 	for (i = 0; i < npages; i++) {
   2144       1.1    maxv 		uvm_pagefree(PHYS_TO_VM_PAGE(pa + i * PAGE_SIZE));
   2145       1.1    maxv 	}
   2146       1.1    maxv }
   2147       1.1    maxv 
   2148       1.1    maxv /* -------------------------------------------------------------------------- */
   2149       1.1    maxv 
   2150       1.1    maxv static void
   2151       1.1    maxv vmx_vcpu_msr_allow(uint8_t *bitmap, uint64_t msr, bool read, bool write)
   2152       1.1    maxv {
   2153       1.1    maxv 	uint64_t byte;
   2154       1.1    maxv 	uint8_t bitoff;
   2155       1.1    maxv 
   2156       1.1    maxv 	if (msr < 0x00002000) {
   2157       1.1    maxv 		/* Range 1 */
   2158       1.1    maxv 		byte = ((msr - 0x00000000) / 8) + 0;
   2159       1.1    maxv 	} else if (msr >= 0xC0000000 && msr < 0xC0002000) {
   2160       1.1    maxv 		/* Range 2 */
   2161       1.1    maxv 		byte = ((msr - 0xC0000000) / 8) + 1024;
   2162       1.1    maxv 	} else {
   2163       1.1    maxv 		panic("%s: wrong range", __func__);
   2164       1.1    maxv 	}
   2165       1.1    maxv 
   2166       1.1    maxv 	bitoff = (msr & 0x7);
   2167       1.1    maxv 
   2168       1.1    maxv 	if (read) {
   2169       1.1    maxv 		bitmap[byte] &= ~__BIT(bitoff);
   2170       1.1    maxv 	}
   2171       1.1    maxv 	if (write) {
   2172       1.1    maxv 		bitmap[2048 + byte] &= ~__BIT(bitoff);
   2173       1.1    maxv 	}
   2174       1.1    maxv }
   2175       1.1    maxv 
   2176      1.15    maxv #define VMX_SEG_ATTRIB_TYPE		__BITS(3,0)
   2177      1.15    maxv #define VMX_SEG_ATTRIB_S		__BIT(4)
   2178      1.12    maxv #define VMX_SEG_ATTRIB_DPL		__BITS(6,5)
   2179      1.12    maxv #define VMX_SEG_ATTRIB_P		__BIT(7)
   2180      1.12    maxv #define VMX_SEG_ATTRIB_AVL		__BIT(12)
   2181      1.15    maxv #define VMX_SEG_ATTRIB_L		__BIT(13)
   2182      1.15    maxv #define VMX_SEG_ATTRIB_DEF		__BIT(14)
   2183      1.15    maxv #define VMX_SEG_ATTRIB_G		__BIT(15)
   2184      1.12    maxv #define VMX_SEG_ATTRIB_UNUSABLE		__BIT(16)
   2185      1.12    maxv 
   2186       1.1    maxv static void
   2187      1.12    maxv vmx_vcpu_setstate_seg(const struct nvmm_x64_state_seg *segs, int idx)
   2188       1.1    maxv {
   2189      1.12    maxv 	uint64_t attrib;
   2190       1.1    maxv 
   2191      1.12    maxv 	attrib =
   2192      1.12    maxv 	    __SHIFTIN(segs[idx].attrib.type, VMX_SEG_ATTRIB_TYPE) |
   2193      1.15    maxv 	    __SHIFTIN(segs[idx].attrib.s, VMX_SEG_ATTRIB_S) |
   2194      1.12    maxv 	    __SHIFTIN(segs[idx].attrib.dpl, VMX_SEG_ATTRIB_DPL) |
   2195      1.12    maxv 	    __SHIFTIN(segs[idx].attrib.p, VMX_SEG_ATTRIB_P) |
   2196      1.12    maxv 	    __SHIFTIN(segs[idx].attrib.avl, VMX_SEG_ATTRIB_AVL) |
   2197      1.15    maxv 	    __SHIFTIN(segs[idx].attrib.l, VMX_SEG_ATTRIB_L) |
   2198      1.15    maxv 	    __SHIFTIN(segs[idx].attrib.def, VMX_SEG_ATTRIB_DEF) |
   2199      1.15    maxv 	    __SHIFTIN(segs[idx].attrib.g, VMX_SEG_ATTRIB_G) |
   2200      1.12    maxv 	    (!segs[idx].attrib.p ? VMX_SEG_ATTRIB_UNUSABLE : 0);
   2201       1.1    maxv 
   2202      1.12    maxv 	if (idx != NVMM_X64_SEG_GDT && idx != NVMM_X64_SEG_IDT) {
   2203      1.12    maxv 		vmx_vmwrite(vmx_guest_segs[idx].selector, segs[idx].selector);
   2204      1.12    maxv 		vmx_vmwrite(vmx_guest_segs[idx].attrib, attrib);
   2205      1.12    maxv 	}
   2206      1.12    maxv 	vmx_vmwrite(vmx_guest_segs[idx].limit, segs[idx].limit);
   2207      1.12    maxv 	vmx_vmwrite(vmx_guest_segs[idx].base, segs[idx].base);
   2208      1.12    maxv }
   2209       1.1    maxv 
   2210      1.12    maxv static void
   2211      1.12    maxv vmx_vcpu_getstate_seg(struct nvmm_x64_state_seg *segs, int idx)
   2212      1.12    maxv {
   2213      1.28    maxv 	uint64_t selector = 0, attrib = 0, base, limit;
   2214       1.1    maxv 
   2215      1.12    maxv 	if (idx != NVMM_X64_SEG_GDT && idx != NVMM_X64_SEG_IDT) {
   2216      1.28    maxv 		selector = vmx_vmread(vmx_guest_segs[idx].selector);
   2217      1.28    maxv 		attrib = vmx_vmread(vmx_guest_segs[idx].attrib);
   2218      1.12    maxv 	}
   2219      1.28    maxv 	limit = vmx_vmread(vmx_guest_segs[idx].limit);
   2220      1.28    maxv 	base = vmx_vmread(vmx_guest_segs[idx].base);
   2221       1.1    maxv 
   2222      1.15    maxv 	segs[idx].selector = selector;
   2223      1.15    maxv 	segs[idx].limit = limit;
   2224      1.15    maxv 	segs[idx].base = base;
   2225      1.12    maxv 	segs[idx].attrib.type = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_TYPE);
   2226      1.15    maxv 	segs[idx].attrib.s = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_S);
   2227      1.12    maxv 	segs[idx].attrib.dpl = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_DPL);
   2228      1.12    maxv 	segs[idx].attrib.p = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_P);
   2229      1.12    maxv 	segs[idx].attrib.avl = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_AVL);
   2230      1.15    maxv 	segs[idx].attrib.l = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_L);
   2231      1.15    maxv 	segs[idx].attrib.def = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_DEF);
   2232      1.15    maxv 	segs[idx].attrib.g = __SHIFTOUT(attrib, VMX_SEG_ATTRIB_G);
   2233      1.12    maxv 	if (attrib & VMX_SEG_ATTRIB_UNUSABLE) {
   2234      1.12    maxv 		segs[idx].attrib.p = 0;
   2235      1.12    maxv 	}
   2236      1.12    maxv }
   2237       1.1    maxv 
   2238      1.12    maxv static inline bool
   2239      1.12    maxv vmx_state_tlb_flush(const struct nvmm_x64_state *state, uint64_t flags)
   2240      1.12    maxv {
   2241      1.12    maxv 	uint64_t cr0, cr3, cr4, efer;
   2242       1.1    maxv 
   2243      1.12    maxv 	if (flags & NVMM_X64_STATE_CRS) {
   2244      1.28    maxv 		cr0 = vmx_vmread(VMCS_GUEST_CR0);
   2245      1.12    maxv 		if ((cr0 ^ state->crs[NVMM_X64_CR_CR0]) & CR0_TLB_FLUSH) {
   2246      1.12    maxv 			return true;
   2247      1.12    maxv 		}
   2248      1.28    maxv 		cr3 = vmx_vmread(VMCS_GUEST_CR3);
   2249      1.12    maxv 		if (cr3 != state->crs[NVMM_X64_CR_CR3]) {
   2250      1.12    maxv 			return true;
   2251      1.12    maxv 		}
   2252      1.28    maxv 		cr4 = vmx_vmread(VMCS_GUEST_CR4);
   2253      1.12    maxv 		if ((cr4 ^ state->crs[NVMM_X64_CR_CR4]) & CR4_TLB_FLUSH) {
   2254      1.12    maxv 			return true;
   2255      1.12    maxv 		}
   2256      1.12    maxv 	}
   2257       1.1    maxv 
   2258      1.12    maxv 	if (flags & NVMM_X64_STATE_MSRS) {
   2259      1.28    maxv 		efer = vmx_vmread(VMCS_GUEST_IA32_EFER);
   2260      1.12    maxv 		if ((efer ^
   2261      1.12    maxv 		     state->msrs[NVMM_X64_MSR_EFER]) & EFER_TLB_FLUSH) {
   2262      1.12    maxv 			return true;
   2263      1.12    maxv 		}
   2264      1.12    maxv 	}
   2265       1.1    maxv 
   2266      1.12    maxv 	return false;
   2267      1.12    maxv }
   2268       1.1    maxv 
   2269      1.12    maxv static void
   2270      1.31    maxv vmx_vcpu_setstate(struct nvmm_cpu *vcpu)
   2271      1.12    maxv {
   2272      1.31    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   2273      1.31    maxv 	const struct nvmm_x64_state *state = &comm->state;
   2274      1.12    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2275      1.12    maxv 	struct fxsave *fpustate;
   2276      1.12    maxv 	uint64_t ctls1, intstate;
   2277      1.31    maxv 	uint64_t flags;
   2278      1.31    maxv 
   2279      1.31    maxv 	flags = comm->state_wanted;
   2280       1.1    maxv 
   2281      1.12    maxv 	vmx_vmcs_enter(vcpu);
   2282       1.1    maxv 
   2283      1.12    maxv 	if (vmx_state_tlb_flush(state, flags)) {
   2284      1.12    maxv 		cpudata->gtlb_want_flush = true;
   2285      1.12    maxv 	}
   2286       1.1    maxv 
   2287      1.12    maxv 	if (flags & NVMM_X64_STATE_SEGS) {
   2288      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_CS);
   2289      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_DS);
   2290      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_ES);
   2291      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_FS);
   2292      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_GS);
   2293      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_SS);
   2294      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_GDT);
   2295      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_IDT);
   2296      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_LDT);
   2297      1.12    maxv 		vmx_vcpu_setstate_seg(state->segs, NVMM_X64_SEG_TR);
   2298      1.12    maxv 	}
   2299       1.5    maxv 
   2300      1.12    maxv 	CTASSERT(sizeof(cpudata->gprs) == sizeof(state->gprs));
   2301      1.12    maxv 	if (flags & NVMM_X64_STATE_GPRS) {
   2302      1.12    maxv 		memcpy(cpudata->gprs, state->gprs, sizeof(state->gprs));
   2303       1.1    maxv 
   2304      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_RIP, state->gprs[NVMM_X64_GPR_RIP]);
   2305      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_RSP, state->gprs[NVMM_X64_GPR_RSP]);
   2306      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_RFLAGS, state->gprs[NVMM_X64_GPR_RFLAGS]);
   2307      1.12    maxv 	}
   2308      1.12    maxv 
   2309      1.12    maxv 	if (flags & NVMM_X64_STATE_CRS) {
   2310      1.12    maxv 		/*
   2311      1.12    maxv 		 * CR0_NE and CR4_VMXE are mandatory.
   2312      1.12    maxv 		 */
   2313      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_CR0,
   2314      1.12    maxv 		    state->crs[NVMM_X64_CR_CR0] | CR0_NE);
   2315      1.12    maxv 		cpudata->gcr2 = state->crs[NVMM_X64_CR_CR2];
   2316      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_CR3, state->crs[NVMM_X64_CR_CR3]); // XXX PDPTE?
   2317      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_CR4,
   2318      1.12    maxv 		    state->crs[NVMM_X64_CR_CR4] | CR4_VMXE);
   2319      1.12    maxv 		cpudata->gcr8 = state->crs[NVMM_X64_CR_CR8];
   2320       1.1    maxv 
   2321      1.12    maxv 		if (vmx_xcr0_mask != 0) {
   2322      1.12    maxv 			/* Clear illegal XCR0 bits, set mandatory X87 bit. */
   2323      1.12    maxv 			cpudata->gxcr0 = state->crs[NVMM_X64_CR_XCR0];
   2324      1.12    maxv 			cpudata->gxcr0 &= vmx_xcr0_mask;
   2325      1.12    maxv 			cpudata->gxcr0 |= XCR0_X87;
   2326      1.12    maxv 		}
   2327      1.12    maxv 	}
   2328       1.1    maxv 
   2329      1.12    maxv 	CTASSERT(sizeof(cpudata->drs) == sizeof(state->drs));
   2330      1.12    maxv 	if (flags & NVMM_X64_STATE_DRS) {
   2331      1.12    maxv 		memcpy(cpudata->drs, state->drs, sizeof(state->drs));
   2332       1.1    maxv 
   2333      1.12    maxv 		cpudata->drs[NVMM_X64_DR_DR6] &= 0xFFFFFFFF;
   2334      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_DR7, cpudata->drs[NVMM_X64_DR_DR7]);
   2335      1.12    maxv 	}
   2336       1.1    maxv 
   2337      1.12    maxv 	if (flags & NVMM_X64_STATE_MSRS) {
   2338      1.12    maxv 		cpudata->gmsr[VMX_MSRLIST_STAR].val =
   2339      1.12    maxv 		    state->msrs[NVMM_X64_MSR_STAR];
   2340      1.12    maxv 		cpudata->gmsr[VMX_MSRLIST_LSTAR].val =
   2341      1.12    maxv 		    state->msrs[NVMM_X64_MSR_LSTAR];
   2342      1.12    maxv 		cpudata->gmsr[VMX_MSRLIST_CSTAR].val =
   2343      1.12    maxv 		    state->msrs[NVMM_X64_MSR_CSTAR];
   2344      1.12    maxv 		cpudata->gmsr[VMX_MSRLIST_SFMASK].val =
   2345      1.12    maxv 		    state->msrs[NVMM_X64_MSR_SFMASK];
   2346      1.12    maxv 		cpudata->gmsr[VMX_MSRLIST_KERNELGSBASE].val =
   2347      1.12    maxv 		    state->msrs[NVMM_X64_MSR_KERNELGSBASE];
   2348       1.1    maxv 
   2349      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_EFER,
   2350      1.12    maxv 		    state->msrs[NVMM_X64_MSR_EFER]);
   2351      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_PAT,
   2352      1.12    maxv 		    state->msrs[NVMM_X64_MSR_PAT]);
   2353      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_SYSENTER_CS,
   2354      1.12    maxv 		    state->msrs[NVMM_X64_MSR_SYSENTER_CS]);
   2355      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_SYSENTER_ESP,
   2356      1.12    maxv 		    state->msrs[NVMM_X64_MSR_SYSENTER_ESP]);
   2357      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_IA32_SYSENTER_EIP,
   2358      1.12    maxv 		    state->msrs[NVMM_X64_MSR_SYSENTER_EIP]);
   2359       1.1    maxv 
   2360      1.21    maxv 		cpudata->gtsc = state->msrs[NVMM_X64_MSR_TSC];
   2361      1.21    maxv 		cpudata->gtsc_want_update = true;
   2362      1.21    maxv 
   2363      1.12    maxv 		/* ENTRY_CTLS_LONG_MODE must match EFER_LMA. */
   2364      1.28    maxv 		ctls1 = vmx_vmread(VMCS_ENTRY_CTLS);
   2365      1.12    maxv 		if (state->msrs[NVMM_X64_MSR_EFER] & EFER_LMA) {
   2366      1.12    maxv 			ctls1 |= ENTRY_CTLS_LONG_MODE;
   2367      1.12    maxv 		} else {
   2368      1.12    maxv 			ctls1 &= ~ENTRY_CTLS_LONG_MODE;
   2369      1.12    maxv 		}
   2370      1.12    maxv 		vmx_vmwrite(VMCS_ENTRY_CTLS, ctls1);
   2371      1.12    maxv 	}
   2372       1.1    maxv 
   2373      1.24    maxv 	if (flags & NVMM_X64_STATE_INTR) {
   2374      1.28    maxv 		intstate = vmx_vmread(VMCS_GUEST_INTERRUPTIBILITY);
   2375      1.12    maxv 		intstate &= ~(INT_STATE_STI|INT_STATE_MOVSS);
   2376      1.24    maxv 		if (state->intr.int_shadow) {
   2377      1.12    maxv 			intstate |= INT_STATE_MOVSS;
   2378      1.12    maxv 		}
   2379      1.12    maxv 		vmx_vmwrite(VMCS_GUEST_INTERRUPTIBILITY, intstate);
   2380       1.1    maxv 
   2381      1.24    maxv 		if (state->intr.int_window_exiting) {
   2382      1.12    maxv 			vmx_event_waitexit_enable(vcpu, false);
   2383      1.12    maxv 		} else {
   2384      1.12    maxv 			vmx_event_waitexit_disable(vcpu, false);
   2385      1.12    maxv 		}
   2386       1.1    maxv 
   2387      1.24    maxv 		if (state->intr.nmi_window_exiting) {
   2388      1.12    maxv 			vmx_event_waitexit_enable(vcpu, true);
   2389      1.12    maxv 		} else {
   2390      1.12    maxv 			vmx_event_waitexit_disable(vcpu, true);
   2391      1.12    maxv 		}
   2392      1.12    maxv 	}
   2393       1.9    maxv 
   2394      1.12    maxv 	CTASSERT(sizeof(cpudata->gfpu.xsh_fxsave) == sizeof(state->fpu));
   2395      1.12    maxv 	if (flags & NVMM_X64_STATE_FPU) {
   2396      1.12    maxv 		memcpy(cpudata->gfpu.xsh_fxsave, &state->fpu,
   2397      1.12    maxv 		    sizeof(state->fpu));
   2398       1.1    maxv 
   2399      1.12    maxv 		fpustate = (struct fxsave *)cpudata->gfpu.xsh_fxsave;
   2400      1.12    maxv 		fpustate->fx_mxcsr_mask &= x86_fpu_mxcsr_mask;
   2401      1.12    maxv 		fpustate->fx_mxcsr &= fpustate->fx_mxcsr_mask;
   2402       1.1    maxv 
   2403      1.12    maxv 		if (vmx_xcr0_mask != 0) {
   2404      1.12    maxv 			/* Reset XSTATE_BV, to force a reload. */
   2405      1.12    maxv 			cpudata->gfpu.xsh_xstate_bv = vmx_xcr0_mask;
   2406      1.12    maxv 		}
   2407       1.1    maxv 	}
   2408       1.1    maxv 
   2409      1.12    maxv 	vmx_vmcs_leave(vcpu);
   2410      1.31    maxv 
   2411      1.31    maxv 	comm->state_wanted = 0;
   2412      1.31    maxv 	comm->state_cached |= flags;
   2413       1.1    maxv }
   2414       1.1    maxv 
   2415       1.1    maxv static void
   2416      1.31    maxv vmx_vcpu_getstate(struct nvmm_cpu *vcpu)
   2417       1.1    maxv {
   2418      1.31    maxv 	struct nvmm_comm_page *comm = vcpu->comm;
   2419      1.31    maxv 	struct nvmm_x64_state *state = &comm->state;
   2420       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2421      1.31    maxv 	uint64_t intstate, flags;
   2422      1.31    maxv 
   2423      1.31    maxv 	flags = comm->state_wanted;
   2424       1.1    maxv 
   2425       1.1    maxv 	vmx_vmcs_enter(vcpu);
   2426       1.1    maxv 
   2427      1.12    maxv 	if (flags & NVMM_X64_STATE_SEGS) {
   2428      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_CS);
   2429      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_DS);
   2430      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_ES);
   2431      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_FS);
   2432      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_GS);
   2433      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_SS);
   2434      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_GDT);
   2435      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_IDT);
   2436      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_LDT);
   2437      1.12    maxv 		vmx_vcpu_getstate_seg(state->segs, NVMM_X64_SEG_TR);
   2438      1.12    maxv 	}
   2439      1.12    maxv 
   2440      1.12    maxv 	CTASSERT(sizeof(cpudata->gprs) == sizeof(state->gprs));
   2441      1.12    maxv 	if (flags & NVMM_X64_STATE_GPRS) {
   2442      1.12    maxv 		memcpy(state->gprs, cpudata->gprs, sizeof(state->gprs));
   2443      1.12    maxv 
   2444      1.28    maxv 		state->gprs[NVMM_X64_GPR_RIP] = vmx_vmread(VMCS_GUEST_RIP);
   2445      1.28    maxv 		state->gprs[NVMM_X64_GPR_RSP] = vmx_vmread(VMCS_GUEST_RSP);
   2446      1.28    maxv 		state->gprs[NVMM_X64_GPR_RFLAGS] = vmx_vmread(VMCS_GUEST_RFLAGS);
   2447      1.12    maxv 	}
   2448      1.12    maxv 
   2449      1.12    maxv 	if (flags & NVMM_X64_STATE_CRS) {
   2450      1.28    maxv 		state->crs[NVMM_X64_CR_CR0] = vmx_vmread(VMCS_GUEST_CR0);
   2451      1.12    maxv 		state->crs[NVMM_X64_CR_CR2] = cpudata->gcr2;
   2452      1.28    maxv 		state->crs[NVMM_X64_CR_CR3] = vmx_vmread(VMCS_GUEST_CR3);
   2453      1.28    maxv 		state->crs[NVMM_X64_CR_CR4] = vmx_vmread(VMCS_GUEST_CR4);
   2454      1.12    maxv 		state->crs[NVMM_X64_CR_CR8] = cpudata->gcr8;
   2455      1.12    maxv 		state->crs[NVMM_X64_CR_XCR0] = cpudata->gxcr0;
   2456      1.12    maxv 
   2457      1.12    maxv 		/* Hide VMXE. */
   2458      1.12    maxv 		state->crs[NVMM_X64_CR_CR4] &= ~CR4_VMXE;
   2459      1.12    maxv 	}
   2460      1.12    maxv 
   2461      1.12    maxv 	CTASSERT(sizeof(cpudata->drs) == sizeof(state->drs));
   2462      1.12    maxv 	if (flags & NVMM_X64_STATE_DRS) {
   2463      1.12    maxv 		memcpy(state->drs, cpudata->drs, sizeof(state->drs));
   2464      1.12    maxv 
   2465      1.28    maxv 		state->drs[NVMM_X64_DR_DR7] = vmx_vmread(VMCS_GUEST_DR7);
   2466      1.12    maxv 	}
   2467       1.9    maxv 
   2468      1.12    maxv 	if (flags & NVMM_X64_STATE_MSRS) {
   2469      1.12    maxv 		state->msrs[NVMM_X64_MSR_STAR] =
   2470      1.12    maxv 		    cpudata->gmsr[VMX_MSRLIST_STAR].val;
   2471      1.12    maxv 		state->msrs[NVMM_X64_MSR_LSTAR] =
   2472      1.12    maxv 		    cpudata->gmsr[VMX_MSRLIST_LSTAR].val;
   2473      1.12    maxv 		state->msrs[NVMM_X64_MSR_CSTAR] =
   2474      1.12    maxv 		    cpudata->gmsr[VMX_MSRLIST_CSTAR].val;
   2475      1.12    maxv 		state->msrs[NVMM_X64_MSR_SFMASK] =
   2476      1.12    maxv 		    cpudata->gmsr[VMX_MSRLIST_SFMASK].val;
   2477      1.12    maxv 		state->msrs[NVMM_X64_MSR_KERNELGSBASE] =
   2478      1.12    maxv 		    cpudata->gmsr[VMX_MSRLIST_KERNELGSBASE].val;
   2479      1.28    maxv 		state->msrs[NVMM_X64_MSR_EFER] =
   2480      1.28    maxv 		    vmx_vmread(VMCS_GUEST_IA32_EFER);
   2481      1.28    maxv 		state->msrs[NVMM_X64_MSR_PAT] =
   2482      1.28    maxv 		    vmx_vmread(VMCS_GUEST_IA32_PAT);
   2483      1.28    maxv 		state->msrs[NVMM_X64_MSR_SYSENTER_CS] =
   2484      1.28    maxv 		    vmx_vmread(VMCS_GUEST_IA32_SYSENTER_CS);
   2485      1.28    maxv 		state->msrs[NVMM_X64_MSR_SYSENTER_ESP] =
   2486      1.28    maxv 		    vmx_vmread(VMCS_GUEST_IA32_SYSENTER_ESP);
   2487      1.28    maxv 		state->msrs[NVMM_X64_MSR_SYSENTER_EIP] =
   2488      1.28    maxv 		    vmx_vmread(VMCS_GUEST_IA32_SYSENTER_EIP);
   2489      1.21    maxv 		state->msrs[NVMM_X64_MSR_TSC] = cpudata->gtsc;
   2490      1.12    maxv 	}
   2491       1.1    maxv 
   2492      1.24    maxv 	if (flags & NVMM_X64_STATE_INTR) {
   2493      1.28    maxv 		intstate = vmx_vmread(VMCS_GUEST_INTERRUPTIBILITY);
   2494      1.24    maxv 		state->intr.int_shadow =
   2495      1.12    maxv 		    (intstate & (INT_STATE_STI|INT_STATE_MOVSS)) != 0;
   2496      1.24    maxv 		state->intr.int_window_exiting = cpudata->int_window_exit;
   2497      1.24    maxv 		state->intr.nmi_window_exiting = cpudata->nmi_window_exit;
   2498      1.24    maxv 		state->intr.evt_pending = cpudata->evt_pending;
   2499      1.12    maxv 	}
   2500       1.1    maxv 
   2501      1.12    maxv 	CTASSERT(sizeof(cpudata->gfpu.xsh_fxsave) == sizeof(state->fpu));
   2502      1.12    maxv 	if (flags & NVMM_X64_STATE_FPU) {
   2503      1.12    maxv 		memcpy(&state->fpu, cpudata->gfpu.xsh_fxsave,
   2504      1.12    maxv 		    sizeof(state->fpu));
   2505       1.1    maxv 	}
   2506      1.12    maxv 
   2507      1.12    maxv 	vmx_vmcs_leave(vcpu);
   2508      1.31    maxv 
   2509      1.31    maxv 	comm->state_wanted = 0;
   2510      1.31    maxv 	comm->state_cached |= flags;
   2511      1.31    maxv }
   2512      1.31    maxv 
   2513      1.31    maxv static void
   2514      1.31    maxv vmx_vcpu_state_provide(struct nvmm_cpu *vcpu, uint64_t flags)
   2515      1.31    maxv {
   2516      1.31    maxv 	vcpu->comm->state_wanted = flags;
   2517      1.31    maxv 	vmx_vcpu_getstate(vcpu);
   2518      1.31    maxv }
   2519      1.31    maxv 
   2520      1.31    maxv static void
   2521      1.31    maxv vmx_vcpu_state_commit(struct nvmm_cpu *vcpu)
   2522      1.31    maxv {
   2523      1.31    maxv 	vcpu->comm->state_wanted = vcpu->comm->state_commit;
   2524      1.31    maxv 	vcpu->comm->state_commit = 0;
   2525      1.31    maxv 	vmx_vcpu_setstate(vcpu);
   2526       1.1    maxv }
   2527       1.1    maxv 
   2528      1.12    maxv /* -------------------------------------------------------------------------- */
   2529      1.12    maxv 
   2530       1.1    maxv static void
   2531      1.12    maxv vmx_asid_alloc(struct nvmm_cpu *vcpu)
   2532       1.1    maxv {
   2533      1.12    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2534      1.12    maxv 	size_t i, oct, bit;
   2535      1.12    maxv 
   2536      1.12    maxv 	mutex_enter(&vmx_asidlock);
   2537      1.12    maxv 
   2538      1.12    maxv 	for (i = 0; i < vmx_maxasid; i++) {
   2539      1.12    maxv 		oct = i / 8;
   2540      1.12    maxv 		bit = i % 8;
   2541      1.12    maxv 
   2542      1.12    maxv 		if (vmx_asidmap[oct] & __BIT(bit)) {
   2543      1.12    maxv 			continue;
   2544      1.12    maxv 		}
   2545      1.12    maxv 
   2546      1.12    maxv 		cpudata->asid = i;
   2547       1.1    maxv 
   2548      1.12    maxv 		vmx_asidmap[oct] |= __BIT(bit);
   2549      1.12    maxv 		vmx_vmwrite(VMCS_VPID, i);
   2550      1.12    maxv 		mutex_exit(&vmx_asidlock);
   2551      1.12    maxv 		return;
   2552       1.1    maxv 	}
   2553       1.1    maxv 
   2554      1.12    maxv 	mutex_exit(&vmx_asidlock);
   2555      1.12    maxv 
   2556      1.12    maxv 	panic("%s: impossible", __func__);
   2557       1.1    maxv }
   2558       1.1    maxv 
   2559      1.12    maxv static void
   2560      1.12    maxv vmx_asid_free(struct nvmm_cpu *vcpu)
   2561       1.1    maxv {
   2562      1.12    maxv 	size_t oct, bit;
   2563      1.12    maxv 	uint64_t asid;
   2564       1.1    maxv 
   2565      1.28    maxv 	asid = vmx_vmread(VMCS_VPID);
   2566       1.1    maxv 
   2567      1.12    maxv 	oct = asid / 8;
   2568      1.12    maxv 	bit = asid % 8;
   2569       1.1    maxv 
   2570      1.12    maxv 	mutex_enter(&vmx_asidlock);
   2571      1.12    maxv 	vmx_asidmap[oct] &= ~__BIT(bit);
   2572      1.12    maxv 	mutex_exit(&vmx_asidlock);
   2573       1.1    maxv }
   2574       1.1    maxv 
   2575       1.1    maxv static void
   2576      1.12    maxv vmx_vcpu_init(struct nvmm_machine *mach, struct nvmm_cpu *vcpu)
   2577       1.1    maxv {
   2578       1.1    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2579      1.12    maxv 	struct vmcs *vmcs = cpudata->vmcs;
   2580      1.12    maxv 	struct msr_entry *gmsr = cpudata->gmsr;
   2581      1.12    maxv 	extern uint8_t vmx_resume_rip;
   2582      1.12    maxv 	uint64_t rev, eptp;
   2583       1.1    maxv 
   2584      1.12    maxv 	rev = vmx_get_revision();
   2585       1.1    maxv 
   2586      1.12    maxv 	memset(vmcs, 0, VMCS_SIZE);
   2587      1.12    maxv 	vmcs->ident = __SHIFTIN(rev, VMCS_IDENT_REVISION);
   2588      1.12    maxv 	vmcs->abort = 0;
   2589       1.1    maxv 
   2590      1.12    maxv 	vmx_vmcs_enter(vcpu);
   2591       1.1    maxv 
   2592      1.12    maxv 	/* No link pointer. */
   2593      1.12    maxv 	vmx_vmwrite(VMCS_LINK_POINTER, 0xFFFFFFFFFFFFFFFF);
   2594       1.1    maxv 
   2595      1.12    maxv 	/* Install the CTLSs. */
   2596      1.12    maxv 	vmx_vmwrite(VMCS_PINBASED_CTLS, vmx_pinbased_ctls);
   2597      1.12    maxv 	vmx_vmwrite(VMCS_PROCBASED_CTLS, vmx_procbased_ctls);
   2598      1.12    maxv 	vmx_vmwrite(VMCS_PROCBASED_CTLS2, vmx_procbased_ctls2);
   2599      1.12    maxv 	vmx_vmwrite(VMCS_ENTRY_CTLS, vmx_entry_ctls);
   2600      1.12    maxv 	vmx_vmwrite(VMCS_EXIT_CTLS, vmx_exit_ctls);
   2601       1.1    maxv 
   2602      1.12    maxv 	/* Allow direct access to certain MSRs. */
   2603      1.12    maxv 	memset(cpudata->msrbm, 0xFF, MSRBM_SIZE);
   2604      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_EFER, true, true);
   2605      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_STAR, true, true);
   2606      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_LSTAR, true, true);
   2607      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_CSTAR, true, true);
   2608      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_SFMASK, true, true);
   2609      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_KERNELGSBASE, true, true);
   2610      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_SYSENTER_CS, true, true);
   2611      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_SYSENTER_ESP, true, true);
   2612      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_SYSENTER_EIP, true, true);
   2613      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_FSBASE, true, true);
   2614      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_GSBASE, true, true);
   2615      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_TSC, true, false);
   2616      1.12    maxv 	vmx_vcpu_msr_allow(cpudata->msrbm, MSR_IA32_ARCH_CAPABILITIES,
   2617      1.12    maxv 	    true, false);
   2618      1.12    maxv 	vmx_vmwrite(VMCS_MSR_BITMAP, (uint64_t)cpudata->msrbm_pa);
   2619       1.1    maxv 
   2620      1.12    maxv 	/*
   2621      1.12    maxv 	 * List of Guest MSRs loaded on VMENTRY, saved on VMEXIT. This
   2622      1.12    maxv 	 * includes the L1D_FLUSH MSR, to mitigate L1TF.
   2623      1.12    maxv 	 */
   2624      1.12    maxv 	gmsr[VMX_MSRLIST_STAR].msr = MSR_STAR;
   2625      1.12    maxv 	gmsr[VMX_MSRLIST_STAR].val = 0;
   2626      1.12    maxv 	gmsr[VMX_MSRLIST_LSTAR].msr = MSR_LSTAR;
   2627      1.12    maxv 	gmsr[VMX_MSRLIST_LSTAR].val = 0;
   2628      1.12    maxv 	gmsr[VMX_MSRLIST_CSTAR].msr = MSR_CSTAR;
   2629      1.12    maxv 	gmsr[VMX_MSRLIST_CSTAR].val = 0;
   2630      1.12    maxv 	gmsr[VMX_MSRLIST_SFMASK].msr = MSR_SFMASK;
   2631      1.12    maxv 	gmsr[VMX_MSRLIST_SFMASK].val = 0;
   2632      1.12    maxv 	gmsr[VMX_MSRLIST_KERNELGSBASE].msr = MSR_KERNELGSBASE;
   2633      1.12    maxv 	gmsr[VMX_MSRLIST_KERNELGSBASE].val = 0;
   2634      1.12    maxv 	gmsr[VMX_MSRLIST_L1DFLUSH].msr = MSR_IA32_FLUSH_CMD;
   2635      1.12    maxv 	gmsr[VMX_MSRLIST_L1DFLUSH].val = IA32_FLUSH_CMD_L1D_FLUSH;
   2636      1.12    maxv 	vmx_vmwrite(VMCS_ENTRY_MSR_LOAD_ADDRESS, cpudata->gmsr_pa);
   2637      1.12    maxv 	vmx_vmwrite(VMCS_EXIT_MSR_STORE_ADDRESS, cpudata->gmsr_pa);
   2638      1.12    maxv 	vmx_vmwrite(VMCS_ENTRY_MSR_LOAD_COUNT, vmx_msrlist_entry_nmsr);
   2639      1.12    maxv 	vmx_vmwrite(VMCS_EXIT_MSR_STORE_COUNT, VMX_MSRLIST_EXIT_NMSR);
   2640       1.1    maxv 
   2641      1.12    maxv 	/* Force CR0_NW and CR0_CD to zero, CR0_ET to one. */
   2642      1.12    maxv 	vmx_vmwrite(VMCS_CR0_MASK, CR0_NW|CR0_CD|CR0_ET);
   2643      1.12    maxv 	vmx_vmwrite(VMCS_CR0_SHADOW, CR0_ET);
   2644       1.1    maxv 
   2645      1.12    maxv 	/* Force CR4_VMXE to zero. */
   2646      1.12    maxv 	vmx_vmwrite(VMCS_CR4_MASK, CR4_VMXE);
   2647       1.1    maxv 
   2648      1.12    maxv 	/* Set the Host state for resuming. */
   2649      1.12    maxv 	vmx_vmwrite(VMCS_HOST_RIP, (uint64_t)&vmx_resume_rip);
   2650      1.12    maxv 	vmx_vmwrite(VMCS_HOST_CS_SELECTOR, GSEL(GCODE_SEL, SEL_KPL));
   2651      1.12    maxv 	vmx_vmwrite(VMCS_HOST_SS_SELECTOR, GSEL(GDATA_SEL, SEL_KPL));
   2652      1.12    maxv 	vmx_vmwrite(VMCS_HOST_DS_SELECTOR, GSEL(GDATA_SEL, SEL_KPL));
   2653      1.12    maxv 	vmx_vmwrite(VMCS_HOST_ES_SELECTOR, GSEL(GDATA_SEL, SEL_KPL));
   2654      1.12    maxv 	vmx_vmwrite(VMCS_HOST_FS_SELECTOR, 0);
   2655      1.12    maxv 	vmx_vmwrite(VMCS_HOST_GS_SELECTOR, 0);
   2656      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IA32_SYSENTER_CS, 0);
   2657      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IA32_SYSENTER_ESP, 0);
   2658      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IA32_SYSENTER_EIP, 0);
   2659      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IDTR_BASE, (uint64_t)idt);
   2660      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IA32_PAT, rdmsr(MSR_CR_PAT));
   2661      1.12    maxv 	vmx_vmwrite(VMCS_HOST_IA32_EFER, rdmsr(MSR_EFER));
   2662      1.12    maxv 	vmx_vmwrite(VMCS_HOST_CR0, rcr0());
   2663       1.1    maxv 
   2664      1.12    maxv 	/* Generate ASID. */
   2665      1.12    maxv 	vmx_asid_alloc(vcpu);
   2666       1.1    maxv 
   2667      1.12    maxv 	/* Enable Extended Paging, 4-Level. */
   2668      1.12    maxv 	eptp =
   2669      1.12    maxv 	    __SHIFTIN(vmx_eptp_type, EPTP_TYPE) |
   2670      1.12    maxv 	    __SHIFTIN(4-1, EPTP_WALKLEN) |
   2671      1.13    maxv 	    (pmap_ept_has_ad ? EPTP_FLAGS_AD : 0) |
   2672      1.12    maxv 	    mach->vm->vm_map.pmap->pm_pdirpa[0];
   2673      1.12    maxv 	vmx_vmwrite(VMCS_EPTP, eptp);
   2674       1.1    maxv 
   2675      1.12    maxv 	/* Init IA32_MISC_ENABLE. */
   2676      1.12    maxv 	cpudata->gmsr_misc_enable = rdmsr(MSR_MISC_ENABLE);
   2677      1.12    maxv 	cpudata->gmsr_misc_enable &=
   2678      1.12    maxv 	    ~(IA32_MISC_PERFMON_EN|IA32_MISC_EISST_EN|IA32_MISC_MWAIT_EN);
   2679      1.12    maxv 	cpudata->gmsr_misc_enable |=
   2680      1.12    maxv 	    (IA32_MISC_BTS_UNAVAIL|IA32_MISC_PEBS_UNAVAIL);
   2681       1.1    maxv 
   2682      1.12    maxv 	/* Init XSAVE header. */
   2683      1.12    maxv 	cpudata->gfpu.xsh_xstate_bv = vmx_xcr0_mask;
   2684      1.12    maxv 	cpudata->gfpu.xsh_xcomp_bv = 0;
   2685       1.1    maxv 
   2686      1.12    maxv 	/* These MSRs are static. */
   2687      1.12    maxv 	cpudata->star = rdmsr(MSR_STAR);
   2688      1.35    maxv 	cpudata->lstar = rdmsr(MSR_LSTAR);
   2689      1.12    maxv 	cpudata->cstar = rdmsr(MSR_CSTAR);
   2690      1.12    maxv 	cpudata->sfmask = rdmsr(MSR_SFMASK);
   2691       1.1    maxv 
   2692      1.14    maxv 	/* Install the RESET state. */
   2693      1.31    maxv 	memcpy(&vcpu->comm->state, &nvmm_x86_reset_state,
   2694      1.31    maxv 	    sizeof(nvmm_x86_reset_state));
   2695      1.31    maxv 	vcpu->comm->state_wanted = NVMM_X64_STATE_ALL;
   2696      1.31    maxv 	vcpu->comm->state_cached = 0;
   2697      1.31    maxv 	vmx_vcpu_setstate(vcpu);
   2698      1.14    maxv 
   2699       1.1    maxv 	vmx_vmcs_leave(vcpu);
   2700       1.1    maxv }
   2701       1.1    maxv 
   2702      1.12    maxv static int
   2703      1.12    maxv vmx_vcpu_create(struct nvmm_machine *mach, struct nvmm_cpu *vcpu)
   2704       1.1    maxv {
   2705      1.12    maxv 	struct vmx_cpudata *cpudata;
   2706      1.12    maxv 	int error;
   2707       1.1    maxv 
   2708      1.12    maxv 	/* Allocate the VMX cpudata. */
   2709      1.12    maxv 	cpudata = (struct vmx_cpudata *)uvm_km_alloc(kernel_map,
   2710      1.12    maxv 	    roundup(sizeof(*cpudata), PAGE_SIZE), 0,
   2711      1.12    maxv 	    UVM_KMF_WIRED|UVM_KMF_ZERO);
   2712      1.12    maxv 	vcpu->cpudata = cpudata;
   2713       1.1    maxv 
   2714      1.12    maxv 	/* VMCS */
   2715      1.12    maxv 	error = vmx_memalloc(&cpudata->vmcs_pa, (vaddr_t *)&cpudata->vmcs,
   2716      1.12    maxv 	    VMCS_NPAGES);
   2717      1.12    maxv 	if (error)
   2718      1.12    maxv 		goto error;
   2719       1.1    maxv 
   2720      1.12    maxv 	/* MSR Bitmap */
   2721      1.12    maxv 	error = vmx_memalloc(&cpudata->msrbm_pa, (vaddr_t *)&cpudata->msrbm,
   2722      1.12    maxv 	    MSRBM_NPAGES);
   2723      1.12    maxv 	if (error)
   2724      1.12    maxv 		goto error;
   2725       1.1    maxv 
   2726      1.12    maxv 	/* Guest MSR List */
   2727      1.12    maxv 	error = vmx_memalloc(&cpudata->gmsr_pa, (vaddr_t *)&cpudata->gmsr, 1);
   2728      1.12    maxv 	if (error)
   2729      1.12    maxv 		goto error;
   2730       1.1    maxv 
   2731      1.12    maxv 	kcpuset_create(&cpudata->htlb_want_flush, true);
   2732       1.1    maxv 
   2733      1.12    maxv 	/* Init the VCPU info. */
   2734      1.12    maxv 	vmx_vcpu_init(mach, vcpu);
   2735       1.1    maxv 
   2736      1.12    maxv 	return 0;
   2737       1.1    maxv 
   2738      1.12    maxv error:
   2739      1.12    maxv 	if (cpudata->vmcs_pa) {
   2740      1.12    maxv 		vmx_memfree(cpudata->vmcs_pa, (vaddr_t)cpudata->vmcs,
   2741      1.12    maxv 		    VMCS_NPAGES);
   2742      1.12    maxv 	}
   2743      1.12    maxv 	if (cpudata->msrbm_pa) {
   2744      1.12    maxv 		vmx_memfree(cpudata->msrbm_pa, (vaddr_t)cpudata->msrbm,
   2745      1.12    maxv 		    MSRBM_NPAGES);
   2746      1.12    maxv 	}
   2747      1.12    maxv 	if (cpudata->gmsr_pa) {
   2748      1.12    maxv 		vmx_memfree(cpudata->gmsr_pa, (vaddr_t)cpudata->gmsr, 1);
   2749       1.1    maxv 	}
   2750       1.1    maxv 
   2751      1.12    maxv 	kmem_free(cpudata, sizeof(*cpudata));
   2752      1.12    maxv 	return error;
   2753      1.12    maxv }
   2754       1.1    maxv 
   2755      1.12    maxv static void
   2756      1.12    maxv vmx_vcpu_destroy(struct nvmm_machine *mach, struct nvmm_cpu *vcpu)
   2757      1.12    maxv {
   2758      1.12    maxv 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2759       1.1    maxv 
   2760      1.12    maxv 	vmx_vmcs_enter(vcpu);
   2761      1.12    maxv 	vmx_asid_free(vcpu);
   2762      1.19    maxv 	vmx_vmcs_destroy(vcpu);
   2763       1.1    maxv 
   2764      1.12    maxv 	kcpuset_destroy(cpudata->htlb_want_flush);
   2765       1.1    maxv 
   2766      1.12    maxv 	vmx_memfree(cpudata->vmcs_pa, (vaddr_t)cpudata->vmcs, VMCS_NPAGES);
   2767      1.12    maxv 	vmx_memfree(cpudata->msrbm_pa, (vaddr_t)cpudata->msrbm, MSRBM_NPAGES);
   2768      1.12    maxv 	vmx_memfree(cpudata->gmsr_pa, (vaddr_t)cpudata->gmsr, 1);
   2769      1.12    maxv 	uvm_km_free(kernel_map, (vaddr_t)cpudata,
   2770      1.12    maxv 	    roundup(sizeof(*cpudata), PAGE_SIZE), UVM_KMF_WIRED);
   2771       1.1    maxv }
   2772       1.1    maxv 
   2773       1.1    maxv /* -------------------------------------------------------------------------- */
   2774       1.1    maxv 
   2775  1.36.2.3  martin static int
   2776  1.36.2.3  martin vmx_vcpu_configure_cpuid(struct vmx_cpudata *cpudata, void *data)
   2777  1.36.2.3  martin {
   2778  1.36.2.3  martin 	struct nvmm_vcpu_conf_cpuid *cpuid = data;
   2779  1.36.2.3  martin 	size_t i;
   2780  1.36.2.3  martin 
   2781  1.36.2.3  martin 	if (__predict_false(cpuid->mask && cpuid->exit)) {
   2782  1.36.2.3  martin 		return EINVAL;
   2783  1.36.2.3  martin 	}
   2784  1.36.2.3  martin 	if (__predict_false(cpuid->mask &&
   2785  1.36.2.3  martin 	    ((cpuid->u.mask.set.eax & cpuid->u.mask.del.eax) ||
   2786  1.36.2.3  martin 	     (cpuid->u.mask.set.ebx & cpuid->u.mask.del.ebx) ||
   2787  1.36.2.3  martin 	     (cpuid->u.mask.set.ecx & cpuid->u.mask.del.ecx) ||
   2788  1.36.2.3  martin 	     (cpuid->u.mask.set.edx & cpuid->u.mask.del.edx)))) {
   2789  1.36.2.3  martin 		return EINVAL;
   2790  1.36.2.3  martin 	}
   2791  1.36.2.3  martin 
   2792  1.36.2.3  martin 	/* If unset, delete, to restore the default behavior. */
   2793  1.36.2.3  martin 	if (!cpuid->mask && !cpuid->exit) {
   2794  1.36.2.3  martin 		for (i = 0; i < VMX_NCPUIDS; i++) {
   2795  1.36.2.3  martin 			if (!cpudata->cpuidpresent[i]) {
   2796  1.36.2.3  martin 				continue;
   2797  1.36.2.3  martin 			}
   2798  1.36.2.3  martin 			if (cpudata->cpuid[i].leaf == cpuid->leaf) {
   2799  1.36.2.3  martin 				cpudata->cpuidpresent[i] = false;
   2800  1.36.2.3  martin 			}
   2801  1.36.2.3  martin 		}
   2802  1.36.2.3  martin 		return 0;
   2803  1.36.2.3  martin 	}
   2804  1.36.2.3  martin 
   2805  1.36.2.3  martin 	/* If already here, replace. */
   2806  1.36.2.3  martin 	for (i = 0; i < VMX_NCPUIDS; i++) {
   2807  1.36.2.3  martin 		if (!cpudata->cpuidpresent[i]) {
   2808  1.36.2.3  martin 			continue;
   2809  1.36.2.3  martin 		}
   2810  1.36.2.3  martin 		if (cpudata->cpuid[i].leaf == cpuid->leaf) {
   2811  1.36.2.3  martin 			memcpy(&cpudata->cpuid[i], cpuid,
   2812  1.36.2.3  martin 			    sizeof(struct nvmm_vcpu_conf_cpuid));
   2813  1.36.2.3  martin 			return 0;
   2814  1.36.2.3  martin 		}
   2815  1.36.2.3  martin 	}
   2816  1.36.2.3  martin 
   2817  1.36.2.3  martin 	/* Not here, insert. */
   2818  1.36.2.3  martin 	for (i = 0; i < VMX_NCPUIDS; i++) {
   2819  1.36.2.3  martin 		if (!cpudata->cpuidpresent[i]) {
   2820  1.36.2.3  martin 			cpudata->cpuidpresent[i] = true;
   2821  1.36.2.3  martin 			memcpy(&cpudata->cpuid[i], cpuid,
   2822  1.36.2.3  martin 			    sizeof(struct nvmm_vcpu_conf_cpuid));
   2823  1.36.2.3  martin 			return 0;
   2824  1.36.2.3  martin 		}
   2825  1.36.2.3  martin 	}
   2826  1.36.2.3  martin 
   2827  1.36.2.3  martin 	return ENOBUFS;
   2828  1.36.2.3  martin }
   2829  1.36.2.3  martin 
   2830  1.36.2.3  martin static int
   2831  1.36.2.3  martin vmx_vcpu_configure_tpr(struct vmx_cpudata *cpudata, void *data)
   2832  1.36.2.3  martin {
   2833  1.36.2.3  martin 	struct nvmm_vcpu_conf_tpr *tpr = data;
   2834  1.36.2.3  martin 
   2835  1.36.2.3  martin 	memcpy(&cpudata->tpr, tpr, sizeof(*tpr));
   2836  1.36.2.3  martin 	return 0;
   2837  1.36.2.3  martin }
   2838  1.36.2.3  martin 
   2839  1.36.2.3  martin static int
   2840  1.36.2.3  martin vmx_vcpu_configure(struct nvmm_cpu *vcpu, uint64_t op, void *data)
   2841  1.36.2.3  martin {
   2842  1.36.2.3  martin 	struct vmx_cpudata *cpudata = vcpu->cpudata;
   2843  1.36.2.3  martin 
   2844  1.36.2.3  martin 	switch (op) {
   2845  1.36.2.3  martin 	case NVMM_VCPU_CONF_MD(NVMM_VCPU_CONF_CPUID):
   2846  1.36.2.3  martin 		return vmx_vcpu_configure_cpuid(cpudata, data);
   2847  1.36.2.3  martin 	case NVMM_VCPU_CONF_MD(NVMM_VCPU_CONF_TPR):
   2848  1.36.2.3  martin 		return vmx_vcpu_configure_tpr(cpudata, data);
   2849  1.36.2.3  martin 	default:
   2850  1.36.2.3  martin 		return EINVAL;
   2851  1.36.2.3  martin 	}
   2852  1.36.2.3  martin }
   2853  1.36.2.3  martin 
   2854  1.36.2.3  martin /* -------------------------------------------------------------------------- */
   2855  1.36.2.3  martin 
   2856       1.1    maxv static void
   2857       1.1    maxv vmx_tlb_flush(struct pmap *pm)
   2858       1.1    maxv {
   2859       1.1    maxv 	struct nvmm_machine *mach = pm->pm_data;
   2860       1.1    maxv 	struct vmx_machdata *machdata = mach->machdata;
   2861       1.1    maxv 
   2862       1.9    maxv 	atomic_inc_64(&machdata->mach_htlb_gen);
   2863       1.1    maxv 
   2864       1.9    maxv 	/* Generates IPIs, which cause #VMEXITs. */
   2865  1.36.2.2  martin 	pmap_tlb_shootdown(pmap_kernel(), -1, PTE_G, TLBSHOOT_UPDATE);
   2866       1.1    maxv }
   2867       1.1    maxv 
   2868       1.1    maxv static void
   2869       1.1    maxv vmx_machine_create(struct nvmm_machine *mach)
   2870       1.1    maxv {
   2871       1.1    maxv 	struct pmap *pmap = mach->vm->vm_map.pmap;
   2872       1.1    maxv 	struct vmx_machdata *machdata;
   2873       1.1    maxv 
   2874       1.1    maxv 	/* Convert to EPT. */
   2875       1.1    maxv 	pmap_ept_transform(pmap);
   2876       1.1    maxv 
   2877       1.1    maxv 	/* Fill in pmap info. */
   2878       1.1    maxv 	pmap->pm_data = (void *)mach;
   2879       1.1    maxv 	pmap->pm_tlb_flush = vmx_tlb_flush;
   2880       1.1    maxv 
   2881       1.1    maxv 	machdata = kmem_zalloc(sizeof(struct vmx_machdata), KM_SLEEP);
   2882       1.1    maxv 	mach->machdata = machdata;
   2883       1.1    maxv 
   2884       1.9    maxv 	/* Start with an hTLB flush everywhere. */
   2885       1.9    maxv 	machdata->mach_htlb_gen = 1;
   2886       1.1    maxv }
   2887       1.1    maxv 
   2888       1.1    maxv static void
   2889       1.1    maxv vmx_machine_destroy(struct nvmm_machine *mach)
   2890       1.1    maxv {
   2891       1.1    maxv 	struct vmx_machdata *machdata = mach->machdata;
   2892       1.1    maxv 
   2893       1.1    maxv 	kmem_free(machdata, sizeof(struct vmx_machdata));
   2894       1.1    maxv }
   2895       1.1    maxv 
   2896       1.1    maxv static int
   2897       1.1    maxv vmx_machine_configure(struct nvmm_machine *mach, uint64_t op, void *data)
   2898       1.1    maxv {
   2899  1.36.2.3  martin 	panic("%s: impossible", __func__);
   2900  1.36.2.3  martin }
   2901  1.36.2.3  martin 
   2902  1.36.2.3  martin /* -------------------------------------------------------------------------- */
   2903  1.36.2.3  martin 
   2904  1.36.2.3  martin #define CTLS_ONE_ALLOWED(msrval, bitoff) \
   2905  1.36.2.3  martin 	((msrval & __BIT(32 + bitoff)) != 0)
   2906  1.36.2.3  martin #define CTLS_ZERO_ALLOWED(msrval, bitoff) \
   2907  1.36.2.3  martin 	((msrval & __BIT(bitoff)) == 0)
   2908  1.36.2.3  martin 
   2909  1.36.2.3  martin static int
   2910  1.36.2.3  martin vmx_check_ctls(uint64_t msr_ctls, uint64_t msr_true_ctls, uint64_t set_one)
   2911  1.36.2.3  martin {
   2912  1.36.2.3  martin 	uint64_t basic, val, true_val;
   2913  1.36.2.3  martin 	bool has_true;
   2914       1.1    maxv 	size_t i;
   2915       1.1    maxv 
   2916  1.36.2.3  martin 	basic = rdmsr(MSR_IA32_VMX_BASIC);
   2917  1.36.2.3  martin 	has_true = (basic & IA32_VMX_BASIC_TRUE_CTLS) != 0;
   2918       1.1    maxv 
   2919  1.36.2.3  martin 	val = rdmsr(msr_ctls);
   2920  1.36.2.3  martin 	if (has_true) {
   2921  1.36.2.3  martin 		true_val = rdmsr(msr_true_ctls);
   2922  1.36.2.3  martin 	} else {
   2923  1.36.2.3  martin 		true_val = val;
   2924       1.1    maxv 	}
   2925       1.1    maxv 
   2926  1.36.2.3  martin 	for (i = 0; i < 32; i++) {
   2927  1.36.2.3  martin 		if (!(set_one & __BIT(i))) {
   2928       1.1    maxv 			continue;
   2929       1.1    maxv 		}
   2930  1.36.2.3  martin 		if (!CTLS_ONE_ALLOWED(true_val, i)) {
   2931  1.36.2.3  martin 			return -1;
   2932       1.1    maxv 		}
   2933       1.1    maxv 	}
   2934       1.1    maxv 
   2935  1.36.2.3  martin 	return 0;
   2936       1.1    maxv }
   2937       1.1    maxv 
   2938       1.1    maxv static int
   2939       1.1    maxv vmx_init_ctls(uint64_t msr_ctls, uint64_t msr_true_ctls,
   2940       1.1    maxv     uint64_t set_one, uint64_t set_zero, uint64_t *res)
   2941       1.1    maxv {
   2942       1.1    maxv 	uint64_t basic, val, true_val;
   2943       1.1    maxv 	bool one_allowed, zero_allowed, has_true;
   2944       1.1    maxv 	size_t i;
   2945       1.1    maxv 
   2946       1.1    maxv 	basic = rdmsr(MSR_IA32_VMX_BASIC);
   2947       1.1    maxv 	has_true = (basic & IA32_VMX_BASIC_TRUE_CTLS) != 0;
   2948       1.1    maxv 
   2949       1.1    maxv 	val = rdmsr(msr_ctls);
   2950       1.1    maxv 	if (has_true) {
   2951       1.1    maxv 		true_val = rdmsr(msr_true_ctls);
   2952       1.1    maxv 	} else {
   2953       1.1    maxv 		true_val = val;
   2954       1.1    maxv 	}
   2955       1.1    maxv 
   2956       1.1    maxv 	for (i = 0; i < 32; i++) {
   2957  1.36.2.3  martin 		one_allowed = CTLS_ONE_ALLOWED(true_val, i);
   2958  1.36.2.3  martin 		zero_allowed = CTLS_ZERO_ALLOWED(true_val, i);
   2959       1.1    maxv 
   2960       1.1    maxv 		if (zero_allowed && !one_allowed) {
   2961       1.1    maxv 			if (set_one & __BIT(i))
   2962       1.1    maxv 				return -1;
   2963       1.1    maxv 			*res &= ~__BIT(i);
   2964       1.1    maxv 		} else if (one_allowed && !zero_allowed) {
   2965       1.1    maxv 			if (set_zero & __BIT(i))
   2966       1.1    maxv 				return -1;
   2967       1.1    maxv 			*res |= __BIT(i);
   2968       1.1    maxv 		} else {
   2969       1.1    maxv 			if (set_zero & __BIT(i)) {
   2970       1.1    maxv 				*res &= ~__BIT(i);
   2971       1.1    maxv 			} else if (set_one & __BIT(i)) {
   2972       1.1    maxv 				*res |= __BIT(i);
   2973       1.1    maxv 			} else if (!has_true) {
   2974       1.1    maxv 				*res &= ~__BIT(i);
   2975  1.36.2.3  martin 			} else if (CTLS_ZERO_ALLOWED(val, i)) {
   2976       1.1    maxv 				*res &= ~__BIT(i);
   2977  1.36.2.3  martin 			} else if (CTLS_ONE_ALLOWED(val, i)) {
   2978       1.1    maxv 				*res |= __BIT(i);
   2979       1.1    maxv 			} else {
   2980       1.1    maxv 				return -1;
   2981       1.1    maxv 			}
   2982       1.1    maxv 		}
   2983       1.1    maxv 	}
   2984       1.1    maxv 
   2985       1.1    maxv 	return 0;
   2986       1.1    maxv }
   2987       1.1    maxv 
   2988       1.1    maxv static bool
   2989       1.1    maxv vmx_ident(void)
   2990       1.1    maxv {
   2991       1.1    maxv 	uint64_t msr;
   2992       1.1    maxv 	int ret;
   2993       1.1    maxv 
   2994       1.1    maxv 	if (!(cpu_feature[1] & CPUID2_VMX)) {
   2995       1.1    maxv 		return false;
   2996       1.1    maxv 	}
   2997       1.1    maxv 
   2998       1.1    maxv 	msr = rdmsr(MSR_IA32_FEATURE_CONTROL);
   2999       1.1    maxv 	if ((msr & IA32_FEATURE_CONTROL_LOCK) == 0) {
   3000       1.1    maxv 		return false;
   3001       1.1    maxv 	}
   3002      1.36    maxv 	if ((msr & IA32_FEATURE_CONTROL_OUT_SMX) == 0) {
   3003      1.36    maxv 		return false;
   3004      1.36    maxv 	}
   3005       1.1    maxv 
   3006       1.1    maxv 	msr = rdmsr(MSR_IA32_VMX_BASIC);
   3007       1.1    maxv 	if ((msr & IA32_VMX_BASIC_IO_REPORT) == 0) {
   3008       1.1    maxv 		return false;
   3009       1.1    maxv 	}
   3010       1.1    maxv 	if (__SHIFTOUT(msr, IA32_VMX_BASIC_MEM_TYPE) != MEM_TYPE_WB) {
   3011       1.1    maxv 		return false;
   3012       1.1    maxv 	}
   3013       1.1    maxv 
   3014       1.1    maxv 	/* PG and PE are reported, even if Unrestricted Guests is supported. */
   3015       1.1    maxv 	vmx_cr0_fixed0 = rdmsr(MSR_IA32_VMX_CR0_FIXED0) & ~(CR0_PG|CR0_PE);
   3016       1.1    maxv 	vmx_cr0_fixed1 = rdmsr(MSR_IA32_VMX_CR0_FIXED1) | (CR0_PG|CR0_PE);
   3017       1.1    maxv 	ret = vmx_check_cr(rcr0(), vmx_cr0_fixed0, vmx_cr0_fixed1);
   3018       1.1    maxv 	if (ret == -1) {
   3019       1.1    maxv 		return false;
   3020       1.1    maxv 	}
   3021       1.1    maxv 
   3022       1.1    maxv 	vmx_cr4_fixed0 = rdmsr(MSR_IA32_VMX_CR4_FIXED0);
   3023       1.1    maxv 	vmx_cr4_fixed1 = rdmsr(MSR_IA32_VMX_CR4_FIXED1);
   3024       1.1    maxv 	ret = vmx_check_cr(rcr4() | CR4_VMXE, vmx_cr4_fixed0, vmx_cr4_fixed1);
   3025       1.1    maxv 	if (ret == -1) {
   3026       1.1    maxv 		return false;
   3027       1.1    maxv 	}
   3028       1.1    maxv 
   3029       1.1    maxv 	/* Init the CTLSs right now, and check for errors. */
   3030       1.1    maxv 	ret = vmx_init_ctls(
   3031       1.1    maxv 	    MSR_IA32_VMX_PINBASED_CTLS, MSR_IA32_VMX_TRUE_PINBASED_CTLS,
   3032       1.1    maxv 	    VMX_PINBASED_CTLS_ONE, VMX_PINBASED_CTLS_ZERO,
   3033       1.1    maxv 	    &vmx_pinbased_ctls);
   3034       1.1    maxv 	if (ret == -1) {
   3035       1.1    maxv 		return false;
   3036       1.1    maxv 	}
   3037       1.1    maxv 	ret = vmx_init_ctls(
   3038       1.1    maxv 	    MSR_IA32_VMX_PROCBASED_CTLS, MSR_IA32_VMX_TRUE_PROCBASED_CTLS,
   3039       1.1    maxv 	    VMX_PROCBASED_CTLS_ONE, VMX_PROCBASED_CTLS_ZERO,
   3040       1.1    maxv 	    &vmx_procbased_ctls);
   3041       1.1    maxv 	if (ret == -1) {
   3042       1.1    maxv 		return false;
   3043       1.1    maxv 	}
   3044       1.1    maxv 	ret = vmx_init_ctls(
   3045       1.1    maxv 	    MSR_IA32_VMX_PROCBASED_CTLS2, MSR_IA32_VMX_PROCBASED_CTLS2,
   3046       1.1    maxv 	    VMX_PROCBASED_CTLS2_ONE, VMX_PROCBASED_CTLS2_ZERO,
   3047       1.1    maxv 	    &vmx_procbased_ctls2);
   3048       1.1    maxv 	if (ret == -1) {
   3049       1.1    maxv 		return false;
   3050       1.1    maxv 	}
   3051  1.36.2.3  martin 	ret = vmx_check_ctls(
   3052  1.36.2.3  martin 	    MSR_IA32_VMX_PROCBASED_CTLS2, MSR_IA32_VMX_PROCBASED_CTLS2,
   3053  1.36.2.3  martin 	    PROC_CTLS2_INVPCID_ENABLE);
   3054  1.36.2.3  martin 	if (ret != -1) {
   3055  1.36.2.3  martin 		vmx_procbased_ctls2 |= PROC_CTLS2_INVPCID_ENABLE;
   3056  1.36.2.3  martin 	}
   3057       1.1    maxv 	ret = vmx_init_ctls(
   3058       1.1    maxv 	    MSR_IA32_VMX_ENTRY_CTLS, MSR_IA32_VMX_TRUE_ENTRY_CTLS,
   3059       1.1    maxv 	    VMX_ENTRY_CTLS_ONE, VMX_ENTRY_CTLS_ZERO,
   3060       1.1    maxv 	    &vmx_entry_ctls);
   3061       1.1    maxv 	if (ret == -1) {
   3062       1.1    maxv 		return false;
   3063       1.1    maxv 	}
   3064       1.1    maxv 	ret = vmx_init_ctls(
   3065       1.1    maxv 	    MSR_IA32_VMX_EXIT_CTLS, MSR_IA32_VMX_TRUE_EXIT_CTLS,
   3066       1.1    maxv 	    VMX_EXIT_CTLS_ONE, VMX_EXIT_CTLS_ZERO,
   3067       1.1    maxv 	    &vmx_exit_ctls);
   3068       1.1    maxv 	if (ret == -1) {
   3069       1.1    maxv 		return false;
   3070       1.1    maxv 	}
   3071       1.1    maxv 
   3072      1.10    maxv 	msr = rdmsr(MSR_IA32_VMX_EPT_VPID_CAP);
   3073      1.10    maxv 	if ((msr & IA32_VMX_EPT_VPID_WALKLENGTH_4) == 0) {
   3074      1.10    maxv 		return false;
   3075      1.10    maxv 	}
   3076      1.10    maxv 	if ((msr & IA32_VMX_EPT_VPID_INVEPT) == 0) {
   3077      1.10    maxv 		return false;
   3078      1.10    maxv 	}
   3079      1.10    maxv 	if ((msr & IA32_VMX_EPT_VPID_INVVPID) == 0) {
   3080      1.10    maxv 		return false;
   3081      1.10    maxv 	}
   3082      1.13    maxv 	if ((msr & IA32_VMX_EPT_VPID_FLAGS_AD) != 0) {
   3083      1.13    maxv 		pmap_ept_has_ad = true;
   3084      1.13    maxv 	} else {
   3085      1.13    maxv 		pmap_ept_has_ad = false;
   3086      1.10    maxv 	}
   3087      1.10    maxv 	if (!(msr & IA32_VMX_EPT_VPID_UC) && !(msr & IA32_VMX_EPT_VPID_WB)) {
   3088      1.10    maxv 		return false;
   3089      1.10    maxv 	}
   3090      1.10    maxv 
   3091       1.1    maxv 	return true;
   3092       1.1    maxv }
   3093       1.1    maxv 
   3094       1.1    maxv static void
   3095      1.12    maxv vmx_init_asid(uint32_t maxasid)
   3096      1.12    maxv {
   3097      1.12    maxv 	size_t allocsz;
   3098      1.12    maxv 
   3099      1.12    maxv 	mutex_init(&vmx_asidlock, MUTEX_DEFAULT, IPL_NONE);
   3100      1.12    maxv 
   3101      1.12    maxv 	vmx_maxasid = maxasid;
   3102      1.12    maxv 	allocsz = roundup(maxasid, 8) / 8;
   3103      1.12    maxv 	vmx_asidmap = kmem_zalloc(allocsz, KM_SLEEP);
   3104      1.12    maxv 
   3105      1.12    maxv 	/* ASID 0 is reserved for the host. */
   3106      1.12    maxv 	vmx_asidmap[0] |= __BIT(0);
   3107      1.12    maxv }
   3108      1.12    maxv 
   3109      1.12    maxv static void
   3110       1.1    maxv vmx_change_cpu(void *arg1, void *arg2)
   3111       1.1    maxv {
   3112       1.1    maxv 	struct cpu_info *ci = curcpu();
   3113       1.1    maxv 	bool enable = (bool)arg1;
   3114       1.1    maxv 	uint64_t cr4;
   3115       1.1    maxv 
   3116       1.1    maxv 	if (!enable) {
   3117       1.1    maxv 		vmx_vmxoff();
   3118       1.1    maxv 	}
   3119       1.1    maxv 
   3120       1.1    maxv 	cr4 = rcr4();
   3121       1.1    maxv 	if (enable) {
   3122       1.1    maxv 		cr4 |= CR4_VMXE;
   3123       1.1    maxv 	} else {
   3124       1.1    maxv 		cr4 &= ~CR4_VMXE;
   3125       1.1    maxv 	}
   3126       1.1    maxv 	lcr4(cr4);
   3127       1.1    maxv 
   3128       1.1    maxv 	if (enable) {
   3129       1.1    maxv 		vmx_vmxon(&vmxoncpu[cpu_index(ci)].pa);
   3130       1.1    maxv 	}
   3131       1.1    maxv }
   3132       1.1    maxv 
   3133       1.1    maxv static void
   3134       1.1    maxv vmx_init_l1tf(void)
   3135       1.1    maxv {
   3136       1.1    maxv 	u_int descs[4];
   3137       1.1    maxv 	uint64_t msr;
   3138       1.1    maxv 
   3139       1.1    maxv 	if (cpuid_level < 7) {
   3140       1.1    maxv 		return;
   3141       1.1    maxv 	}
   3142       1.1    maxv 
   3143       1.1    maxv 	x86_cpuid(7, descs);
   3144       1.1    maxv 
   3145       1.1    maxv 	if (descs[3] & CPUID_SEF_ARCH_CAP) {
   3146       1.1    maxv 		msr = rdmsr(MSR_IA32_ARCH_CAPABILITIES);
   3147       1.1    maxv 		if (msr & IA32_ARCH_SKIP_L1DFL_VMENTRY) {
   3148       1.1    maxv 			/* No mitigation needed. */
   3149       1.1    maxv 			return;
   3150       1.1    maxv 		}
   3151       1.1    maxv 	}
   3152       1.1    maxv 
   3153       1.1    maxv 	if (descs[3] & CPUID_SEF_L1D_FLUSH) {
   3154       1.1    maxv 		/* Enable hardware mitigation. */
   3155       1.1    maxv 		vmx_msrlist_entry_nmsr += 1;
   3156       1.1    maxv 	}
   3157       1.1    maxv }
   3158       1.1    maxv 
   3159       1.1    maxv static void
   3160       1.1    maxv vmx_init(void)
   3161       1.1    maxv {
   3162       1.1    maxv 	CPU_INFO_ITERATOR cii;
   3163       1.1    maxv 	struct cpu_info *ci;
   3164       1.1    maxv 	uint64_t xc, msr;
   3165       1.1    maxv 	struct vmxon *vmxon;
   3166       1.1    maxv 	uint32_t revision;
   3167       1.1    maxv 	paddr_t pa;
   3168       1.1    maxv 	vaddr_t va;
   3169       1.1    maxv 	int error;
   3170       1.1    maxv 
   3171       1.1    maxv 	/* Init the ASID bitmap (VPID). */
   3172       1.1    maxv 	vmx_init_asid(VPID_MAX);
   3173       1.1    maxv 
   3174       1.1    maxv 	/* Init the XCR0 mask. */
   3175       1.1    maxv 	vmx_xcr0_mask = VMX_XCR0_MASK_DEFAULT & x86_xsave_features;
   3176       1.1    maxv 
   3177       1.1    maxv 	/* Init the TLB flush op, the EPT flush op and the EPTP type. */
   3178       1.1    maxv 	msr = rdmsr(MSR_IA32_VMX_EPT_VPID_CAP);
   3179       1.1    maxv 	if ((msr & IA32_VMX_EPT_VPID_INVVPID_CONTEXT) != 0) {
   3180       1.1    maxv 		vmx_tlb_flush_op = VMX_INVVPID_CONTEXT;
   3181       1.1    maxv 	} else {
   3182       1.1    maxv 		vmx_tlb_flush_op = VMX_INVVPID_ALL;
   3183       1.1    maxv 	}
   3184       1.1    maxv 	if ((msr & IA32_VMX_EPT_VPID_INVEPT_CONTEXT) != 0) {
   3185       1.1    maxv 		vmx_ept_flush_op = VMX_INVEPT_CONTEXT;
   3186       1.1    maxv 	} else {
   3187       1.1    maxv 		vmx_ept_flush_op = VMX_INVEPT_ALL;
   3188       1.1    maxv 	}
   3189       1.1    maxv 	if ((msr & IA32_VMX_EPT_VPID_WB) != 0) {
   3190       1.1    maxv 		vmx_eptp_type = EPTP_TYPE_WB;
   3191       1.1    maxv 	} else {
   3192       1.1    maxv 		vmx_eptp_type = EPTP_TYPE_UC;
   3193       1.1    maxv 	}
   3194       1.1    maxv 
   3195       1.1    maxv 	/* Init the L1TF mitigation. */
   3196       1.1    maxv 	vmx_init_l1tf();
   3197       1.1    maxv 
   3198       1.1    maxv 	memset(vmxoncpu, 0, sizeof(vmxoncpu));
   3199       1.1    maxv 	revision = vmx_get_revision();
   3200       1.1    maxv 
   3201       1.1    maxv 	for (CPU_INFO_FOREACH(cii, ci)) {
   3202       1.1    maxv 		error = vmx_memalloc(&pa, &va, 1);
   3203       1.1    maxv 		if (error) {
   3204       1.1    maxv 			panic("%s: out of memory", __func__);
   3205       1.1    maxv 		}
   3206       1.1    maxv 		vmxoncpu[cpu_index(ci)].pa = pa;
   3207       1.1    maxv 		vmxoncpu[cpu_index(ci)].va = va;
   3208       1.1    maxv 
   3209       1.1    maxv 		vmxon = (struct vmxon *)vmxoncpu[cpu_index(ci)].va;
   3210       1.1    maxv 		vmxon->ident = __SHIFTIN(revision, VMXON_IDENT_REVISION);
   3211       1.1    maxv 	}
   3212       1.1    maxv 
   3213       1.1    maxv 	xc = xc_broadcast(0, vmx_change_cpu, (void *)true, NULL);
   3214       1.1    maxv 	xc_wait(xc);
   3215       1.1    maxv }
   3216       1.1    maxv 
   3217       1.1    maxv static void
   3218       1.1    maxv vmx_fini_asid(void)
   3219       1.1    maxv {
   3220       1.1    maxv 	size_t allocsz;
   3221       1.1    maxv 
   3222       1.1    maxv 	allocsz = roundup(vmx_maxasid, 8) / 8;
   3223       1.1    maxv 	kmem_free(vmx_asidmap, allocsz);
   3224       1.1    maxv 
   3225       1.1    maxv 	mutex_destroy(&vmx_asidlock);
   3226       1.1    maxv }
   3227       1.1    maxv 
   3228       1.1    maxv static void
   3229       1.1    maxv vmx_fini(void)
   3230       1.1    maxv {
   3231       1.1    maxv 	uint64_t xc;
   3232       1.1    maxv 	size_t i;
   3233       1.1    maxv 
   3234       1.1    maxv 	xc = xc_broadcast(0, vmx_change_cpu, (void *)false, NULL);
   3235       1.1    maxv 	xc_wait(xc);
   3236       1.1    maxv 
   3237       1.1    maxv 	for (i = 0; i < MAXCPUS; i++) {
   3238       1.1    maxv 		if (vmxoncpu[i].pa != 0)
   3239       1.1    maxv 			vmx_memfree(vmxoncpu[i].pa, vmxoncpu[i].va, 1);
   3240       1.1    maxv 	}
   3241       1.1    maxv 
   3242       1.1    maxv 	vmx_fini_asid();
   3243       1.1    maxv }
   3244       1.1    maxv 
   3245       1.1    maxv static void
   3246       1.1    maxv vmx_capability(struct nvmm_capability *cap)
   3247       1.1    maxv {
   3248  1.36.2.3  martin 	cap->arch.mach_conf_support = 0;
   3249  1.36.2.3  martin 	cap->arch.vcpu_conf_support =
   3250  1.36.2.3  martin 	    NVMM_CAP_ARCH_VCPU_CONF_CPUID |
   3251  1.36.2.3  martin 	    NVMM_CAP_ARCH_VCPU_CONF_TPR;
   3252      1.30    maxv 	cap->arch.xcr0_mask = vmx_xcr0_mask;
   3253      1.30    maxv 	cap->arch.mxcsr_mask = x86_fpu_mxcsr_mask;
   3254      1.30    maxv 	cap->arch.conf_cpuid_maxops = VMX_NCPUIDS;
   3255       1.1    maxv }
   3256       1.1    maxv 
   3257       1.1    maxv const struct nvmm_impl nvmm_x86_vmx = {
   3258       1.1    maxv 	.ident = vmx_ident,
   3259       1.1    maxv 	.init = vmx_init,
   3260       1.1    maxv 	.fini = vmx_fini,
   3261       1.1    maxv 	.capability = vmx_capability,
   3262  1.36.2.3  martin 	.mach_conf_max = NVMM_X86_MACH_NCONF,
   3263  1.36.2.3  martin 	.mach_conf_sizes = NULL,
   3264  1.36.2.3  martin 	.vcpu_conf_max = NVMM_X86_VCPU_NCONF,
   3265  1.36.2.3  martin 	.vcpu_conf_sizes = vmx_vcpu_conf_sizes,
   3266       1.1    maxv 	.state_size = sizeof(struct nvmm_x64_state),
   3267       1.1    maxv 	.machine_create = vmx_machine_create,
   3268       1.1    maxv 	.machine_destroy = vmx_machine_destroy,
   3269       1.1    maxv 	.machine_configure = vmx_machine_configure,
   3270       1.1    maxv 	.vcpu_create = vmx_vcpu_create,
   3271       1.1    maxv 	.vcpu_destroy = vmx_vcpu_destroy,
   3272  1.36.2.3  martin 	.vcpu_configure = vmx_vcpu_configure,
   3273       1.1    maxv 	.vcpu_setstate = vmx_vcpu_setstate,
   3274       1.1    maxv 	.vcpu_getstate = vmx_vcpu_getstate,
   3275       1.1    maxv 	.vcpu_inject = vmx_vcpu_inject,
   3276       1.1    maxv 	.vcpu_run = vmx_vcpu_run
   3277       1.1    maxv };
   3278