The Design and Implementation of the FreeBSD Operating System, Second Edition
Now available: The Design and Implementation of the FreeBSD Operating System (Second Edition)


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FreeBSD/Linux Kernel Cross Reference
sys/amd64/include/vmm_instruction_emul.h

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    1 /*-
    2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
    3  *
    4  * Copyright (c) 2012 NetApp, Inc.
    5  * All rights reserved.
    6  *
    7  * Redistribution and use in source and binary forms, with or without
    8  * modification, are permitted provided that the following conditions
    9  * are met:
   10  * 1. Redistributions of source code must retain the above copyright
   11  *    notice, this list of conditions and the following disclaimer.
   12  * 2. Redistributions in binary form must reproduce the above copyright
   13  *    notice, this list of conditions and the following disclaimer in the
   14  *    documentation and/or other materials provided with the distribution.
   15  *
   16  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
   17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
   18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
   19  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
   20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
   21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
   22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
   23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
   24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
   25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
   26  * SUCH DAMAGE.
   27  *
   28  * $FreeBSD$
   29  */
   30 
   31 #ifndef _VMM_INSTRUCTION_EMUL_H_
   32 #define _VMM_INSTRUCTION_EMUL_H_
   33 
   34 #include <sys/mman.h>
   35 
   36 /*
   37  * Allow for different arguments to identify vCPUs in userspace vs the
   38  * kernel.  Eventually we should add struct vcpu in userland and
   39  * always use the kernel arguments removing these macros.
   40  */
   41 #ifdef _KERNEL
   42 #define VCPU_DECL       struct vcpu *vcpu
   43 #define VCPU_ARGS       vcpu
   44 #else
   45 #define VCPU_DECL       void *vm, int vcpuid
   46 #define VCPU_ARGS       vm, vcpuid
   47 #endif
   48 
   49 /*
   50  * Callback functions to read and write memory regions.
   51  */
   52 typedef int (*mem_region_read_t)(VCPU_DECL, uint64_t gpa,
   53                                  uint64_t *rval, int rsize, void *arg);
   54 
   55 typedef int (*mem_region_write_t)(VCPU_DECL, uint64_t gpa,
   56                                   uint64_t wval, int wsize, void *arg);
   57 
   58 /*
   59  * Emulate the decoded 'vie' instruction.
   60  *
   61  * The callbacks 'mrr' and 'mrw' emulate reads and writes to the memory region
   62  * containing 'gpa'. 'mrarg' is an opaque argument that is passed into the
   63  * callback functions.
   64  *
   65  * 'void *vm' should be 'struct vm *' when called from kernel context and
   66  * 'struct vmctx *' when called from user context.
   67  * s
   68  */
   69 int vmm_emulate_instruction(VCPU_DECL, uint64_t gpa, struct vie *vie,
   70     struct vm_guest_paging *paging, mem_region_read_t mrr,
   71     mem_region_write_t mrw, void *mrarg);
   72 
   73 int vie_update_register(VCPU_DECL, enum vm_reg_name reg,
   74     uint64_t val, int size);
   75 
   76 /*
   77  * Returns 1 if an alignment check exception should be injected and 0 otherwise.
   78  */
   79 int vie_alignment_check(int cpl, int operand_size, uint64_t cr0,
   80     uint64_t rflags, uint64_t gla);
   81 
   82 /* Returns 1 if the 'gla' is not canonical and 0 otherwise. */
   83 int vie_canonical_check(enum vm_cpu_mode cpu_mode, uint64_t gla);
   84 
   85 uint64_t vie_size2mask(int size);
   86 
   87 int vie_calculate_gla(enum vm_cpu_mode cpu_mode, enum vm_reg_name seg,
   88     struct seg_desc *desc, uint64_t off, int length, int addrsize, int prot,
   89     uint64_t *gla);
   90 
   91 #ifdef _KERNEL
   92 /*
   93  * APIs to fetch and decode the instruction from nested page fault handler.
   94  *
   95  * 'vie' must be initialized before calling 'vmm_fetch_instruction()'
   96  */
   97 int vmm_fetch_instruction(struct vcpu *vcpu,
   98                           struct vm_guest_paging *guest_paging,
   99                           uint64_t rip, int inst_length, struct vie *vie,
  100                           int *is_fault);
  101 
  102 /*
  103  * Translate the guest linear address 'gla' to a guest physical address.
  104  *
  105  * retval       is_fault        Interpretation
  106  *   0             0            'gpa' contains result of the translation
  107  *   0             1            An exception was injected into the guest
  108  * EFAULT         N/A           An unrecoverable hypervisor error occurred
  109  */
  110 int vm_gla2gpa(struct vcpu *vcpu, struct vm_guest_paging *paging,
  111     uint64_t gla, int prot, uint64_t *gpa, int *is_fault);
  112 
  113 /*
  114  * Like vm_gla2gpa, but no exceptions are injected into the guest and
  115  * PTEs are not changed.
  116  */
  117 int vm_gla2gpa_nofault(struct vcpu *vcpu, struct vm_guest_paging *paging,
  118     uint64_t gla, int prot, uint64_t *gpa, int *is_fault);
  119 #endif /* _KERNEL */
  120 
  121 void vie_restart(struct vie *vie);
  122 void vie_init(struct vie *vie, const char *inst_bytes, int inst_length);
  123 
  124 /*
  125  * Decode the instruction fetched into 'vie' so it can be emulated.
  126  *
  127  * 'gla' is the guest linear address provided by the hardware assist
  128  * that caused the nested page table fault. It is used to verify that
  129  * the software instruction decoding is in agreement with the hardware.
  130  * 
  131  * Some hardware assists do not provide the 'gla' to the hypervisor.
  132  * To skip the 'gla' verification for this or any other reason pass
  133  * in VIE_INVALID_GLA instead.
  134  */
  135 #ifdef _KERNEL
  136 #define VIE_INVALID_GLA         (1UL << 63)     /* a non-canonical address */
  137 int vmm_decode_instruction(struct vcpu *vcpu, uint64_t gla,
  138                            enum vm_cpu_mode cpu_mode, int csd, struct vie *vie);
  139 #else /* !_KERNEL */
  140 /*
  141  * Permit instruction decoding logic to be compiled outside of the kernel for
  142  * rapid iteration and validation.  No GLA validation is performed, obviously.
  143  */
  144 int vmm_decode_instruction(enum vm_cpu_mode cpu_mode, int csd,
  145     struct vie *vie);
  146 #endif  /* _KERNEL */
  147 
  148 #endif  /* _VMM_INSTRUCTION_EMUL_H_ */

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