freebsd-dev/sys/amd64/vmm/vmm_lapic.c
Neel Natu 2e25737a49 Calculate the number of host ticks until the next guest timer interrupt.
This information will be used in conjunction with guest "HLT exiting" to
yield the thread hosting the virtual cpu.

Obtained from:	NetApp
2012-10-20 08:23:05 +00:00

241 lines
5.2 KiB
C

/*-
* Copyright (c) 2011 NetApp, Inc.
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
* ARE DISCLAIMED. IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
* SUCH DAMAGE.
*
* $FreeBSD$
*/
#include <sys/cdefs.h>
__FBSDID("$FreeBSD$");
#include <sys/param.h>
#include <sys/systm.h>
#include <sys/smp.h>
#include <x86/specialreg.h>
#include <machine/vmm.h>
#include "vmm_ipi.h"
#include "vmm_lapic.h"
#include "vlapic.h"
#include "vmm_instruction_emul.h"
static int
lapic_write(struct vlapic *vlapic, u_int offset, uint64_t val)
{
int handled;
if (vlapic_op_mem_write(vlapic, offset, DWORD, val) == 0)
handled = 1;
else
handled = 0;
return (handled);
}
static int
lapic_read(struct vlapic *vlapic, u_int offset, uint64_t *rv)
{
int handled;
if (vlapic_op_mem_read(vlapic, offset, DWORD, rv) == 0)
handled = 1;
else
handled = 0;
return (handled);
}
int
lapic_pending_intr(struct vm *vm, int cpu)
{
struct vlapic *vlapic;
vlapic = vm_lapic(vm, cpu);
return (vlapic_pending_intr(vlapic));
}
void
lapic_intr_accepted(struct vm *vm, int cpu, int vector)
{
struct vlapic *vlapic;
vlapic = vm_lapic(vm, cpu);
vlapic_intr_accepted(vlapic, vector);
}
int
lapic_set_intr(struct vm *vm, int cpu, int vector)
{
struct vlapic *vlapic;
if (cpu < 0 || cpu >= VM_MAXCPU)
return (EINVAL);
if (vector < 32 || vector > 255)
return (EINVAL);
vlapic = vm_lapic(vm, cpu);
vlapic_set_intr_ready(vlapic, vector);
vm_interrupt_hostcpu(vm, cpu);
return (0);
}
int
lapic_timer_tick(struct vm *vm, int cpu)
{
struct vlapic *vlapic;
vlapic = vm_lapic(vm, cpu);
return (vlapic_timer_tick(vlapic));
}
static boolean_t
x2apic_msr(u_int msr)
{
if (msr >= 0x800 && msr <= 0xBFF)
return (TRUE);
else
return (FALSE);
}
static u_int
x2apic_msr_to_regoff(u_int msr)
{
return ((msr - 0x800) << 4);
}
boolean_t
lapic_msr(u_int msr)
{
if (x2apic_msr(msr) || (msr == MSR_APICBASE))
return (TRUE);
else
return (FALSE);
}
int
lapic_rdmsr(struct vm *vm, int cpu, u_int msr, uint64_t *rval)
{
int handled;
struct vlapic *vlapic;
vlapic = vm_lapic(vm, cpu);
if (msr == MSR_APICBASE) {
*rval = vlapic_get_apicbase(vlapic);
handled = 1;
} else
handled = lapic_read(vlapic, x2apic_msr_to_regoff(msr), rval);
return (handled);
}
int
lapic_wrmsr(struct vm *vm, int cpu, u_int msr, uint64_t val)
{
int handled;
struct vlapic *vlapic;
vlapic = vm_lapic(vm, cpu);
if (msr == MSR_APICBASE) {
vlapic_set_apicbase(vlapic, val);
handled = 1;
} else
handled = lapic_write(vlapic, x2apic_msr_to_regoff(msr), val);
return (handled);
}
int
lapic_mmio(struct vm *vm, int cpu, u_int offset, int read, struct vie *vie)
{
int handled, error;
uint64_t val;
struct vlapic *vlapic;
const int UNHANDLED = 0;
vlapic = vm_lapic(vm, cpu);
/* Only 32-bit accesses to local apic */
if (vie->op_size != VIE_OP_SIZE_32BIT)
return (UNHANDLED);
/*
* XXX
* The operand register in which we store the result of the
* read must be a GPR that we can modify even if the vcpu
* is "running". All the GPRs qualify except for %rsp.
*
* This is a limitation of the vm_set_register() API
* and can be fixed if necessary.
*/
if (vie->operand_register == VM_REG_GUEST_RSP)
return (UNHANDLED);
if (read) {
if ((vie->opcode_flags & VIE_F_TO_REG) == 0)
return (UNHANDLED);
if (vie->operand_register >= VM_REG_LAST)
return (UNHANDLED);
handled = lapic_read(vlapic, offset, &val);
if (handled) {
error = vm_set_register(vm, cpu, vie->operand_register,
val);
if (error)
panic("lapic_mmio: error %d setting gpr %d",
error, vie->operand_register);
}
} else {
if ((vie->opcode_flags & VIE_F_FROM_REG) &&
(vie->operand_register < VM_REG_LAST)) {
error = vm_get_register(vm, cpu, vie->operand_register,
&val);
if (error) {
panic("lapic_mmio: error %d getting gpr %d",
error, vie->operand_register);
}
} else if (vie->opcode_flags & VIE_F_FROM_IMM) {
val = vie->immediate;
} else {
return (UNHANDLED);
}
handled = lapic_write(vlapic, offset, val);
}
return (handled);
}