1366f6083SPeter Grehan /*- 2366f6083SPeter Grehan * Copyright (c) 2011 NetApp, Inc. 3366f6083SPeter Grehan * All rights reserved. 4366f6083SPeter Grehan * 5366f6083SPeter Grehan * Redistribution and use in source and binary forms, with or without 6366f6083SPeter Grehan * modification, are permitted provided that the following conditions 7366f6083SPeter Grehan * are met: 8366f6083SPeter Grehan * 1. Redistributions of source code must retain the above copyright 9366f6083SPeter Grehan * notice, this list of conditions and the following disclaimer. 10366f6083SPeter Grehan * 2. Redistributions in binary form must reproduce the above copyright 11366f6083SPeter Grehan * notice, this list of conditions and the following disclaimer in the 12366f6083SPeter Grehan * documentation and/or other materials provided with the distribution. 13366f6083SPeter Grehan * 14366f6083SPeter Grehan * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND 15366f6083SPeter Grehan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 16366f6083SPeter Grehan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 17366f6083SPeter Grehan * ARE DISCLAIMED. IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE 18366f6083SPeter Grehan * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 19366f6083SPeter Grehan * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 20366f6083SPeter Grehan * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 21366f6083SPeter Grehan * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 22366f6083SPeter Grehan * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 23366f6083SPeter Grehan * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 24366f6083SPeter Grehan * SUCH DAMAGE. 25366f6083SPeter Grehan * 26366f6083SPeter Grehan * $FreeBSD$ 27366f6083SPeter Grehan */ 28366f6083SPeter Grehan 29366f6083SPeter Grehan #include <sys/cdefs.h> 30366f6083SPeter Grehan __FBSDID("$FreeBSD$"); 31366f6083SPeter Grehan 32366f6083SPeter Grehan #include <sys/param.h> 3338f1b189SPeter Grehan #include <sys/systm.h> 34366f6083SPeter Grehan #include <sys/kernel.h> 35366f6083SPeter Grehan #include <sys/module.h> 36366f6083SPeter Grehan #include <sys/sysctl.h> 37366f6083SPeter Grehan #include <sys/malloc.h> 38366f6083SPeter Grehan #include <sys/pcpu.h> 39366f6083SPeter Grehan #include <sys/lock.h> 40366f6083SPeter Grehan #include <sys/mutex.h> 41366f6083SPeter Grehan #include <sys/proc.h> 42318224bbSNeel Natu #include <sys/rwlock.h> 43366f6083SPeter Grehan #include <sys/sched.h> 44366f6083SPeter Grehan #include <sys/smp.h> 45366f6083SPeter Grehan #include <sys/systm.h> 46366f6083SPeter Grehan 47366f6083SPeter Grehan #include <vm/vm.h> 48318224bbSNeel Natu #include <vm/vm_object.h> 49318224bbSNeel Natu #include <vm/vm_page.h> 50318224bbSNeel Natu #include <vm/pmap.h> 51318224bbSNeel Natu #include <vm/vm_map.h> 52318224bbSNeel Natu #include <vm/vm_extern.h> 53318224bbSNeel Natu #include <vm/vm_param.h> 54366f6083SPeter Grehan 5563e62d39SJohn Baldwin #include <machine/cpu.h> 56366f6083SPeter Grehan #include <machine/vm.h> 57366f6083SPeter Grehan #include <machine/pcb.h> 5875dd3366SNeel Natu #include <machine/smp.h> 591c052192SNeel Natu #include <x86/psl.h> 6034a6b2d6SJohn Baldwin #include <x86/apicreg.h> 61318224bbSNeel Natu #include <machine/vmparam.h> 62366f6083SPeter Grehan 63366f6083SPeter Grehan #include <machine/vmm.h> 64565bbb86SNeel Natu #include <machine/vmm_dev.h> 65565bbb86SNeel Natu 66318224bbSNeel Natu #include "vmm_ktr.h" 67b01c2033SNeel Natu #include "vmm_host.h" 68366f6083SPeter Grehan #include "vmm_mem.h" 69366f6083SPeter Grehan #include "vmm_util.h" 7008e3ff32SNeel Natu #include "vhpet.h" 71565bbb86SNeel Natu #include "vioapic.h" 72366f6083SPeter Grehan #include "vlapic.h" 73366f6083SPeter Grehan #include "vmm_msr.h" 74366f6083SPeter Grehan #include "vmm_ipi.h" 75366f6083SPeter Grehan #include "vmm_stat.h" 76f76fc5d4SNeel Natu #include "vmm_lapic.h" 77366f6083SPeter Grehan 78366f6083SPeter Grehan #include "io/ppt.h" 79366f6083SPeter Grehan #include "io/iommu.h" 80366f6083SPeter Grehan 81366f6083SPeter Grehan struct vlapic; 82366f6083SPeter Grehan 83366f6083SPeter Grehan struct vcpu { 84366f6083SPeter Grehan int flags; 8575dd3366SNeel Natu enum vcpu_state state; 8675dd3366SNeel Natu struct mtx mtx; 87366f6083SPeter Grehan int hostcpu; /* host cpuid this vcpu last ran on */ 88366f6083SPeter Grehan uint64_t guest_msrs[VMM_MSR_NUM]; 89366f6083SPeter Grehan struct vlapic *vlapic; 90366f6083SPeter Grehan int vcpuid; 9138f1b189SPeter Grehan struct savefpu *guestfpu; /* guest fpu state */ 92366f6083SPeter Grehan void *stats; 9398ed632cSNeel Natu struct vm_exit exitinfo; 94e9027382SNeel Natu enum x2apic_state x2apic_state; 95f352ff0cSNeel Natu int nmi_pending; 96366f6083SPeter Grehan }; 97366f6083SPeter Grehan 98f76fc5d4SNeel Natu #define vcpu_lock_init(v) mtx_init(&((v)->mtx), "vcpu lock", 0, MTX_SPIN) 99f76fc5d4SNeel Natu #define vcpu_lock(v) mtx_lock_spin(&((v)->mtx)) 100f76fc5d4SNeel Natu #define vcpu_unlock(v) mtx_unlock_spin(&((v)->mtx)) 101318224bbSNeel Natu #define vcpu_assert_locked(v) mtx_assert(&((v)->mtx), MA_OWNED) 10275dd3366SNeel Natu 103318224bbSNeel Natu struct mem_seg { 104318224bbSNeel Natu vm_paddr_t gpa; 105318224bbSNeel Natu size_t len; 106318224bbSNeel Natu boolean_t wired; 107318224bbSNeel Natu vm_object_t object; 108318224bbSNeel Natu }; 109366f6083SPeter Grehan #define VM_MAX_MEMORY_SEGMENTS 2 110366f6083SPeter Grehan 111366f6083SPeter Grehan struct vm { 112366f6083SPeter Grehan void *cookie; /* processor-specific data */ 113366f6083SPeter Grehan void *iommu; /* iommu-specific data */ 11408e3ff32SNeel Natu struct vhpet *vhpet; /* virtual HPET */ 115565bbb86SNeel Natu struct vioapic *vioapic; /* virtual ioapic */ 116318224bbSNeel Natu struct vmspace *vmspace; /* guest's address space */ 117366f6083SPeter Grehan struct vcpu vcpu[VM_MAXCPU]; 118366f6083SPeter Grehan int num_mem_segs; 119318224bbSNeel Natu struct mem_seg mem_segs[VM_MAX_MEMORY_SEGMENTS]; 120366f6083SPeter Grehan char name[VM_MAX_NAMELEN]; 121366f6083SPeter Grehan 122366f6083SPeter Grehan /* 123a5615c90SPeter Grehan * Set of active vcpus. 124366f6083SPeter Grehan * An active vcpu is one that has been started implicitly (BSP) or 125366f6083SPeter Grehan * explicitly (AP) by sending it a startup ipi. 126366f6083SPeter Grehan */ 127a5615c90SPeter Grehan cpuset_t active_cpus; 128366f6083SPeter Grehan }; 129366f6083SPeter Grehan 130d5408b1dSNeel Natu static int vmm_initialized; 131d5408b1dSNeel Natu 132366f6083SPeter Grehan static struct vmm_ops *ops; 133366f6083SPeter Grehan #define VMM_INIT() (ops != NULL ? (*ops->init)() : 0) 134366f6083SPeter Grehan #define VMM_CLEANUP() (ops != NULL ? (*ops->cleanup)() : 0) 13563e62d39SJohn Baldwin #define VMM_RESUME() (ops != NULL ? (*ops->resume)() : 0) 136366f6083SPeter Grehan 137318224bbSNeel Natu #define VMINIT(vm, pmap) (ops != NULL ? (*ops->vminit)(vm, pmap): NULL) 138318224bbSNeel Natu #define VMRUN(vmi, vcpu, rip, pmap) \ 139318224bbSNeel Natu (ops != NULL ? (*ops->vmrun)(vmi, vcpu, rip, pmap) : ENXIO) 140366f6083SPeter Grehan #define VMCLEANUP(vmi) (ops != NULL ? (*ops->vmcleanup)(vmi) : NULL) 141318224bbSNeel Natu #define VMSPACE_ALLOC(min, max) \ 142318224bbSNeel Natu (ops != NULL ? (*ops->vmspace_alloc)(min, max) : NULL) 143318224bbSNeel Natu #define VMSPACE_FREE(vmspace) \ 144318224bbSNeel Natu (ops != NULL ? (*ops->vmspace_free)(vmspace) : ENXIO) 145366f6083SPeter Grehan #define VMGETREG(vmi, vcpu, num, retval) \ 146366f6083SPeter Grehan (ops != NULL ? (*ops->vmgetreg)(vmi, vcpu, num, retval) : ENXIO) 147366f6083SPeter Grehan #define VMSETREG(vmi, vcpu, num, val) \ 148366f6083SPeter Grehan (ops != NULL ? (*ops->vmsetreg)(vmi, vcpu, num, val) : ENXIO) 149366f6083SPeter Grehan #define VMGETDESC(vmi, vcpu, num, desc) \ 150366f6083SPeter Grehan (ops != NULL ? (*ops->vmgetdesc)(vmi, vcpu, num, desc) : ENXIO) 151366f6083SPeter Grehan #define VMSETDESC(vmi, vcpu, num, desc) \ 152366f6083SPeter Grehan (ops != NULL ? (*ops->vmsetdesc)(vmi, vcpu, num, desc) : ENXIO) 153366f6083SPeter Grehan #define VMINJECT(vmi, vcpu, type, vec, ec, ecv) \ 154366f6083SPeter Grehan (ops != NULL ? (*ops->vminject)(vmi, vcpu, type, vec, ec, ecv) : ENXIO) 155366f6083SPeter Grehan #define VMGETCAP(vmi, vcpu, num, retval) \ 156366f6083SPeter Grehan (ops != NULL ? (*ops->vmgetcap)(vmi, vcpu, num, retval) : ENXIO) 157366f6083SPeter Grehan #define VMSETCAP(vmi, vcpu, num, val) \ 158366f6083SPeter Grehan (ops != NULL ? (*ops->vmsetcap)(vmi, vcpu, num, val) : ENXIO) 159*de5ea6b6SNeel Natu #define VLAPIC_INIT(vmi, vcpu) \ 160*de5ea6b6SNeel Natu (ops != NULL ? (*ops->vlapic_init)(vmi, vcpu) : NULL) 161*de5ea6b6SNeel Natu #define VLAPIC_CLEANUP(vmi, vlapic) \ 162*de5ea6b6SNeel Natu (ops != NULL ? (*ops->vlapic_cleanup)(vmi, vlapic) : NULL) 163366f6083SPeter Grehan 164014a52f3SNeel Natu #define fpu_start_emulating() load_cr0(rcr0() | CR0_TS) 165014a52f3SNeel Natu #define fpu_stop_emulating() clts() 166366f6083SPeter Grehan 167366f6083SPeter Grehan static MALLOC_DEFINE(M_VM, "vm", "vm"); 168366f6083SPeter Grehan CTASSERT(VMM_MSR_NUM <= 64); /* msr_mask can keep track of up to 64 msrs */ 169366f6083SPeter Grehan 170366f6083SPeter Grehan /* statistics */ 17161592433SNeel Natu static VMM_STAT(VCPU_TOTAL_RUNTIME, "vcpu total runtime"); 172366f6083SPeter Grehan 173366f6083SPeter Grehan static void 174*de5ea6b6SNeel Natu vcpu_cleanup(struct vm *vm, int i) 175366f6083SPeter Grehan { 176*de5ea6b6SNeel Natu struct vcpu *vcpu = &vm->vcpu[i]; 177*de5ea6b6SNeel Natu 178*de5ea6b6SNeel Natu VLAPIC_CLEANUP(vm->cookie, vcpu->vlapic); 179366f6083SPeter Grehan vmm_stat_free(vcpu->stats); 18038f1b189SPeter Grehan fpu_save_area_free(vcpu->guestfpu); 181366f6083SPeter Grehan } 182366f6083SPeter Grehan 183366f6083SPeter Grehan static void 184366f6083SPeter Grehan vcpu_init(struct vm *vm, uint32_t vcpu_id) 185366f6083SPeter Grehan { 186366f6083SPeter Grehan struct vcpu *vcpu; 187366f6083SPeter Grehan 188366f6083SPeter Grehan vcpu = &vm->vcpu[vcpu_id]; 189366f6083SPeter Grehan 19075dd3366SNeel Natu vcpu_lock_init(vcpu); 19175dd3366SNeel Natu vcpu->hostcpu = NOCPU; 192366f6083SPeter Grehan vcpu->vcpuid = vcpu_id; 193*de5ea6b6SNeel Natu vcpu->vlapic = VLAPIC_INIT(vm->cookie, vcpu_id); 19473820fb0SNeel Natu vm_set_x2apic_state(vm, vcpu_id, X2APIC_ENABLED); 19538f1b189SPeter Grehan vcpu->guestfpu = fpu_save_area_alloc(); 19638f1b189SPeter Grehan fpu_save_area_reset(vcpu->guestfpu); 197366f6083SPeter Grehan vcpu->stats = vmm_stat_alloc(); 198366f6083SPeter Grehan } 199366f6083SPeter Grehan 20098ed632cSNeel Natu struct vm_exit * 20198ed632cSNeel Natu vm_exitinfo(struct vm *vm, int cpuid) 20298ed632cSNeel Natu { 20398ed632cSNeel Natu struct vcpu *vcpu; 20498ed632cSNeel Natu 20598ed632cSNeel Natu if (cpuid < 0 || cpuid >= VM_MAXCPU) 20698ed632cSNeel Natu panic("vm_exitinfo: invalid cpuid %d", cpuid); 20798ed632cSNeel Natu 20898ed632cSNeel Natu vcpu = &vm->vcpu[cpuid]; 20998ed632cSNeel Natu 21098ed632cSNeel Natu return (&vcpu->exitinfo); 21198ed632cSNeel Natu } 21298ed632cSNeel Natu 21363e62d39SJohn Baldwin static void 21463e62d39SJohn Baldwin vmm_resume(void) 21563e62d39SJohn Baldwin { 21663e62d39SJohn Baldwin VMM_RESUME(); 21763e62d39SJohn Baldwin } 21863e62d39SJohn Baldwin 219366f6083SPeter Grehan static int 220366f6083SPeter Grehan vmm_init(void) 221366f6083SPeter Grehan { 222366f6083SPeter Grehan int error; 223366f6083SPeter Grehan 224b01c2033SNeel Natu vmm_host_state_init(); 225366f6083SPeter Grehan vmm_ipi_init(); 226366f6083SPeter Grehan 227366f6083SPeter Grehan error = vmm_mem_init(); 228366f6083SPeter Grehan if (error) 229366f6083SPeter Grehan return (error); 230366f6083SPeter Grehan 231366f6083SPeter Grehan if (vmm_is_intel()) 232366f6083SPeter Grehan ops = &vmm_ops_intel; 233366f6083SPeter Grehan else if (vmm_is_amd()) 234366f6083SPeter Grehan ops = &vmm_ops_amd; 235366f6083SPeter Grehan else 236366f6083SPeter Grehan return (ENXIO); 237366f6083SPeter Grehan 238366f6083SPeter Grehan vmm_msr_init(); 23963e62d39SJohn Baldwin vmm_resume_p = vmm_resume; 240366f6083SPeter Grehan 241366f6083SPeter Grehan return (VMM_INIT()); 242366f6083SPeter Grehan } 243366f6083SPeter Grehan 244366f6083SPeter Grehan static int 245366f6083SPeter Grehan vmm_handler(module_t mod, int what, void *arg) 246366f6083SPeter Grehan { 247366f6083SPeter Grehan int error; 248366f6083SPeter Grehan 249366f6083SPeter Grehan switch (what) { 250366f6083SPeter Grehan case MOD_LOAD: 251366f6083SPeter Grehan vmmdev_init(); 252366f6083SPeter Grehan iommu_init(); 253366f6083SPeter Grehan error = vmm_init(); 254d5408b1dSNeel Natu if (error == 0) 255d5408b1dSNeel Natu vmm_initialized = 1; 256366f6083SPeter Grehan break; 257366f6083SPeter Grehan case MOD_UNLOAD: 258cdc5b9e7SNeel Natu error = vmmdev_cleanup(); 259cdc5b9e7SNeel Natu if (error == 0) { 26063e62d39SJohn Baldwin vmm_resume_p = NULL; 261366f6083SPeter Grehan iommu_cleanup(); 262366f6083SPeter Grehan vmm_ipi_cleanup(); 263366f6083SPeter Grehan error = VMM_CLEANUP(); 26481ef6611SPeter Grehan /* 26581ef6611SPeter Grehan * Something bad happened - prevent new 26681ef6611SPeter Grehan * VMs from being created 26781ef6611SPeter Grehan */ 26881ef6611SPeter Grehan if (error) 269d5408b1dSNeel Natu vmm_initialized = 0; 27081ef6611SPeter Grehan } 271366f6083SPeter Grehan break; 272366f6083SPeter Grehan default: 273366f6083SPeter Grehan error = 0; 274366f6083SPeter Grehan break; 275366f6083SPeter Grehan } 276366f6083SPeter Grehan return (error); 277366f6083SPeter Grehan } 278366f6083SPeter Grehan 279366f6083SPeter Grehan static moduledata_t vmm_kmod = { 280366f6083SPeter Grehan "vmm", 281366f6083SPeter Grehan vmm_handler, 282366f6083SPeter Grehan NULL 283366f6083SPeter Grehan }; 284366f6083SPeter Grehan 285366f6083SPeter Grehan /* 286e3f0800bSNeel Natu * vmm initialization has the following dependencies: 287e3f0800bSNeel Natu * 288e3f0800bSNeel Natu * - iommu initialization must happen after the pci passthru driver has had 289e3f0800bSNeel Natu * a chance to attach to any passthru devices (after SI_SUB_CONFIGURE). 290e3f0800bSNeel Natu * 291e3f0800bSNeel Natu * - VT-x initialization requires smp_rendezvous() and therefore must happen 292e3f0800bSNeel Natu * after SMP is fully functional (after SI_SUB_SMP). 293366f6083SPeter Grehan */ 294e3f0800bSNeel Natu DECLARE_MODULE(vmm, vmm_kmod, SI_SUB_SMP + 1, SI_ORDER_ANY); 295366f6083SPeter Grehan MODULE_VERSION(vmm, 1); 296366f6083SPeter Grehan 297366f6083SPeter Grehan SYSCTL_NODE(_hw, OID_AUTO, vmm, CTLFLAG_RW, NULL, NULL); 298366f6083SPeter Grehan 299d5408b1dSNeel Natu int 300d5408b1dSNeel Natu vm_create(const char *name, struct vm **retvm) 301366f6083SPeter Grehan { 302366f6083SPeter Grehan int i; 303366f6083SPeter Grehan struct vm *vm; 304318224bbSNeel Natu struct vmspace *vmspace; 305366f6083SPeter Grehan 306366f6083SPeter Grehan const int BSP = 0; 307366f6083SPeter Grehan 308d5408b1dSNeel Natu /* 309d5408b1dSNeel Natu * If vmm.ko could not be successfully initialized then don't attempt 310d5408b1dSNeel Natu * to create the virtual machine. 311d5408b1dSNeel Natu */ 312d5408b1dSNeel Natu if (!vmm_initialized) 313d5408b1dSNeel Natu return (ENXIO); 314d5408b1dSNeel Natu 315366f6083SPeter Grehan if (name == NULL || strlen(name) >= VM_MAX_NAMELEN) 316d5408b1dSNeel Natu return (EINVAL); 317366f6083SPeter Grehan 318318224bbSNeel Natu vmspace = VMSPACE_ALLOC(VM_MIN_ADDRESS, VM_MAXUSER_ADDRESS); 319318224bbSNeel Natu if (vmspace == NULL) 320318224bbSNeel Natu return (ENOMEM); 321318224bbSNeel Natu 322366f6083SPeter Grehan vm = malloc(sizeof(struct vm), M_VM, M_WAITOK | M_ZERO); 323366f6083SPeter Grehan strcpy(vm->name, name); 324318224bbSNeel Natu vm->cookie = VMINIT(vm, vmspace_pmap(vmspace)); 325565bbb86SNeel Natu vm->vioapic = vioapic_init(vm); 32608e3ff32SNeel Natu vm->vhpet = vhpet_init(vm); 327366f6083SPeter Grehan 328366f6083SPeter Grehan for (i = 0; i < VM_MAXCPU; i++) { 329366f6083SPeter Grehan vcpu_init(vm, i); 330366f6083SPeter Grehan guest_msrs_init(vm, i); 331366f6083SPeter Grehan } 332366f6083SPeter Grehan 333366f6083SPeter Grehan vm_activate_cpu(vm, BSP); 334318224bbSNeel Natu vm->vmspace = vmspace; 335366f6083SPeter Grehan 336d5408b1dSNeel Natu *retvm = vm; 337d5408b1dSNeel Natu return (0); 338366f6083SPeter Grehan } 339366f6083SPeter Grehan 340f7d51510SNeel Natu static void 341318224bbSNeel Natu vm_free_mem_seg(struct vm *vm, struct mem_seg *seg) 342f7d51510SNeel Natu { 3437ce04d0aSNeel Natu 344318224bbSNeel Natu if (seg->object != NULL) 345318224bbSNeel Natu vmm_mem_free(vm->vmspace, seg->gpa, seg->len); 346f7d51510SNeel Natu 347318224bbSNeel Natu bzero(seg, sizeof(*seg)); 348f7d51510SNeel Natu } 349f7d51510SNeel Natu 350366f6083SPeter Grehan void 351366f6083SPeter Grehan vm_destroy(struct vm *vm) 352366f6083SPeter Grehan { 353366f6083SPeter Grehan int i; 354366f6083SPeter Grehan 355366f6083SPeter Grehan ppt_unassign_all(vm); 356366f6083SPeter Grehan 357318224bbSNeel Natu if (vm->iommu != NULL) 358318224bbSNeel Natu iommu_destroy_domain(vm->iommu); 359318224bbSNeel Natu 36008e3ff32SNeel Natu vhpet_cleanup(vm->vhpet); 36108e3ff32SNeel Natu vioapic_cleanup(vm->vioapic); 36208e3ff32SNeel Natu 363366f6083SPeter Grehan for (i = 0; i < vm->num_mem_segs; i++) 364f7d51510SNeel Natu vm_free_mem_seg(vm, &vm->mem_segs[i]); 365f7d51510SNeel Natu 366f7d51510SNeel Natu vm->num_mem_segs = 0; 367366f6083SPeter Grehan 368366f6083SPeter Grehan for (i = 0; i < VM_MAXCPU; i++) 369*de5ea6b6SNeel Natu vcpu_cleanup(vm, i); 370366f6083SPeter Grehan 371318224bbSNeel Natu VMSPACE_FREE(vm->vmspace); 372366f6083SPeter Grehan 373366f6083SPeter Grehan VMCLEANUP(vm->cookie); 374366f6083SPeter Grehan 375366f6083SPeter Grehan free(vm, M_VM); 376366f6083SPeter Grehan } 377366f6083SPeter Grehan 378366f6083SPeter Grehan const char * 379366f6083SPeter Grehan vm_name(struct vm *vm) 380366f6083SPeter Grehan { 381366f6083SPeter Grehan return (vm->name); 382366f6083SPeter Grehan } 383366f6083SPeter Grehan 384366f6083SPeter Grehan int 385366f6083SPeter Grehan vm_map_mmio(struct vm *vm, vm_paddr_t gpa, size_t len, vm_paddr_t hpa) 386366f6083SPeter Grehan { 387318224bbSNeel Natu vm_object_t obj; 388366f6083SPeter Grehan 389318224bbSNeel Natu if ((obj = vmm_mmio_alloc(vm->vmspace, gpa, len, hpa)) == NULL) 390318224bbSNeel Natu return (ENOMEM); 391318224bbSNeel Natu else 392318224bbSNeel Natu return (0); 393366f6083SPeter Grehan } 394366f6083SPeter Grehan 395366f6083SPeter Grehan int 396366f6083SPeter Grehan vm_unmap_mmio(struct vm *vm, vm_paddr_t gpa, size_t len) 397366f6083SPeter Grehan { 398366f6083SPeter Grehan 399318224bbSNeel Natu vmm_mmio_free(vm->vmspace, gpa, len); 400318224bbSNeel Natu return (0); 401366f6083SPeter Grehan } 402366f6083SPeter Grehan 403318224bbSNeel Natu boolean_t 404318224bbSNeel Natu vm_mem_allocated(struct vm *vm, vm_paddr_t gpa) 405366f6083SPeter Grehan { 406341f19c9SNeel Natu int i; 407341f19c9SNeel Natu vm_paddr_t gpabase, gpalimit; 408341f19c9SNeel Natu 409341f19c9SNeel Natu for (i = 0; i < vm->num_mem_segs; i++) { 410341f19c9SNeel Natu gpabase = vm->mem_segs[i].gpa; 411341f19c9SNeel Natu gpalimit = gpabase + vm->mem_segs[i].len; 412341f19c9SNeel Natu if (gpa >= gpabase && gpa < gpalimit) 413318224bbSNeel Natu return (TRUE); /* 'gpa' is regular memory */ 414341f19c9SNeel Natu } 415341f19c9SNeel Natu 416318224bbSNeel Natu if (ppt_is_mmio(vm, gpa)) 417318224bbSNeel Natu return (TRUE); /* 'gpa' is pci passthru mmio */ 418318224bbSNeel Natu 419318224bbSNeel Natu return (FALSE); 420341f19c9SNeel Natu } 421341f19c9SNeel Natu 422341f19c9SNeel Natu int 423341f19c9SNeel Natu vm_malloc(struct vm *vm, vm_paddr_t gpa, size_t len) 424341f19c9SNeel Natu { 425318224bbSNeel Natu int available, allocated; 426318224bbSNeel Natu struct mem_seg *seg; 427318224bbSNeel Natu vm_object_t object; 428318224bbSNeel Natu vm_paddr_t g; 429366f6083SPeter Grehan 430341f19c9SNeel Natu if ((gpa & PAGE_MASK) || (len & PAGE_MASK) || len == 0) 431341f19c9SNeel Natu return (EINVAL); 432341f19c9SNeel Natu 433341f19c9SNeel Natu available = allocated = 0; 434341f19c9SNeel Natu g = gpa; 435341f19c9SNeel Natu while (g < gpa + len) { 436318224bbSNeel Natu if (vm_mem_allocated(vm, g)) 437341f19c9SNeel Natu allocated++; 438318224bbSNeel Natu else 439318224bbSNeel Natu available++; 440341f19c9SNeel Natu 441341f19c9SNeel Natu g += PAGE_SIZE; 442341f19c9SNeel Natu } 443341f19c9SNeel Natu 444366f6083SPeter Grehan /* 445341f19c9SNeel Natu * If there are some allocated and some available pages in the address 446341f19c9SNeel Natu * range then it is an error. 447366f6083SPeter Grehan */ 448341f19c9SNeel Natu if (allocated && available) 449341f19c9SNeel Natu return (EINVAL); 450341f19c9SNeel Natu 451341f19c9SNeel Natu /* 452341f19c9SNeel Natu * If the entire address range being requested has already been 453341f19c9SNeel Natu * allocated then there isn't anything more to do. 454341f19c9SNeel Natu */ 455341f19c9SNeel Natu if (allocated && available == 0) 456341f19c9SNeel Natu return (0); 457366f6083SPeter Grehan 458366f6083SPeter Grehan if (vm->num_mem_segs >= VM_MAX_MEMORY_SEGMENTS) 459366f6083SPeter Grehan return (E2BIG); 460366f6083SPeter Grehan 461f7d51510SNeel Natu seg = &vm->mem_segs[vm->num_mem_segs]; 462366f6083SPeter Grehan 463318224bbSNeel Natu if ((object = vmm_mem_alloc(vm->vmspace, gpa, len)) == NULL) 464318224bbSNeel Natu return (ENOMEM); 465318224bbSNeel Natu 466f7d51510SNeel Natu seg->gpa = gpa; 467318224bbSNeel Natu seg->len = len; 468318224bbSNeel Natu seg->object = object; 469318224bbSNeel Natu seg->wired = FALSE; 4707ce04d0aSNeel Natu 471366f6083SPeter Grehan vm->num_mem_segs++; 472341f19c9SNeel Natu 473366f6083SPeter Grehan return (0); 474366f6083SPeter Grehan } 475366f6083SPeter Grehan 476318224bbSNeel Natu static void 477318224bbSNeel Natu vm_gpa_unwire(struct vm *vm) 478366f6083SPeter Grehan { 479318224bbSNeel Natu int i, rv; 480318224bbSNeel Natu struct mem_seg *seg; 4814db4fb2cSNeel Natu 482318224bbSNeel Natu for (i = 0; i < vm->num_mem_segs; i++) { 483318224bbSNeel Natu seg = &vm->mem_segs[i]; 484318224bbSNeel Natu if (!seg->wired) 485318224bbSNeel Natu continue; 486366f6083SPeter Grehan 487318224bbSNeel Natu rv = vm_map_unwire(&vm->vmspace->vm_map, 488318224bbSNeel Natu seg->gpa, seg->gpa + seg->len, 489318224bbSNeel Natu VM_MAP_WIRE_USER | VM_MAP_WIRE_NOHOLES); 490318224bbSNeel Natu KASSERT(rv == KERN_SUCCESS, ("vm(%s) memory segment " 491318224bbSNeel Natu "%#lx/%ld could not be unwired: %d", 492318224bbSNeel Natu vm_name(vm), seg->gpa, seg->len, rv)); 493318224bbSNeel Natu 494318224bbSNeel Natu seg->wired = FALSE; 495318224bbSNeel Natu } 496318224bbSNeel Natu } 497318224bbSNeel Natu 498318224bbSNeel Natu static int 499318224bbSNeel Natu vm_gpa_wire(struct vm *vm) 500318224bbSNeel Natu { 501318224bbSNeel Natu int i, rv; 502318224bbSNeel Natu struct mem_seg *seg; 503318224bbSNeel Natu 504318224bbSNeel Natu for (i = 0; i < vm->num_mem_segs; i++) { 505318224bbSNeel Natu seg = &vm->mem_segs[i]; 506318224bbSNeel Natu if (seg->wired) 507318224bbSNeel Natu continue; 508318224bbSNeel Natu 509318224bbSNeel Natu /* XXX rlimits? */ 510318224bbSNeel Natu rv = vm_map_wire(&vm->vmspace->vm_map, 511318224bbSNeel Natu seg->gpa, seg->gpa + seg->len, 512318224bbSNeel Natu VM_MAP_WIRE_USER | VM_MAP_WIRE_NOHOLES); 513318224bbSNeel Natu if (rv != KERN_SUCCESS) 514318224bbSNeel Natu break; 515318224bbSNeel Natu 516318224bbSNeel Natu seg->wired = TRUE; 517318224bbSNeel Natu } 518318224bbSNeel Natu 519318224bbSNeel Natu if (i < vm->num_mem_segs) { 520318224bbSNeel Natu /* 521318224bbSNeel Natu * Undo the wiring before returning an error. 522318224bbSNeel Natu */ 523318224bbSNeel Natu vm_gpa_unwire(vm); 524318224bbSNeel Natu return (EAGAIN); 525318224bbSNeel Natu } 526318224bbSNeel Natu 527318224bbSNeel Natu return (0); 528318224bbSNeel Natu } 529318224bbSNeel Natu 530318224bbSNeel Natu static void 531318224bbSNeel Natu vm_iommu_modify(struct vm *vm, boolean_t map) 532318224bbSNeel Natu { 533318224bbSNeel Natu int i, sz; 534318224bbSNeel Natu vm_paddr_t gpa, hpa; 535318224bbSNeel Natu struct mem_seg *seg; 536318224bbSNeel Natu void *vp, *cookie, *host_domain; 537318224bbSNeel Natu 538318224bbSNeel Natu sz = PAGE_SIZE; 539318224bbSNeel Natu host_domain = iommu_host_domain(); 540318224bbSNeel Natu 541318224bbSNeel Natu for (i = 0; i < vm->num_mem_segs; i++) { 542318224bbSNeel Natu seg = &vm->mem_segs[i]; 543318224bbSNeel Natu KASSERT(seg->wired, ("vm(%s) memory segment %#lx/%ld not wired", 544318224bbSNeel Natu vm_name(vm), seg->gpa, seg->len)); 545318224bbSNeel Natu 546318224bbSNeel Natu gpa = seg->gpa; 547318224bbSNeel Natu while (gpa < seg->gpa + seg->len) { 548318224bbSNeel Natu vp = vm_gpa_hold(vm, gpa, PAGE_SIZE, VM_PROT_WRITE, 549318224bbSNeel Natu &cookie); 550318224bbSNeel Natu KASSERT(vp != NULL, ("vm(%s) could not map gpa %#lx", 551318224bbSNeel Natu vm_name(vm), gpa)); 552318224bbSNeel Natu 553318224bbSNeel Natu vm_gpa_release(cookie); 554318224bbSNeel Natu 555318224bbSNeel Natu hpa = DMAP_TO_PHYS((uintptr_t)vp); 556318224bbSNeel Natu if (map) { 557318224bbSNeel Natu iommu_create_mapping(vm->iommu, gpa, hpa, sz); 558318224bbSNeel Natu iommu_remove_mapping(host_domain, hpa, sz); 559318224bbSNeel Natu } else { 560318224bbSNeel Natu iommu_remove_mapping(vm->iommu, gpa, sz); 561318224bbSNeel Natu iommu_create_mapping(host_domain, hpa, hpa, sz); 562318224bbSNeel Natu } 563318224bbSNeel Natu 564318224bbSNeel Natu gpa += PAGE_SIZE; 565318224bbSNeel Natu } 566318224bbSNeel Natu } 567318224bbSNeel Natu 568318224bbSNeel Natu /* 569318224bbSNeel Natu * Invalidate the cached translations associated with the domain 570318224bbSNeel Natu * from which pages were removed. 571318224bbSNeel Natu */ 572318224bbSNeel Natu if (map) 573318224bbSNeel Natu iommu_invalidate_tlb(host_domain); 574318224bbSNeel Natu else 575318224bbSNeel Natu iommu_invalidate_tlb(vm->iommu); 576318224bbSNeel Natu } 577318224bbSNeel Natu 578318224bbSNeel Natu #define vm_iommu_unmap(vm) vm_iommu_modify((vm), FALSE) 579318224bbSNeel Natu #define vm_iommu_map(vm) vm_iommu_modify((vm), TRUE) 580318224bbSNeel Natu 581318224bbSNeel Natu int 582318224bbSNeel Natu vm_unassign_pptdev(struct vm *vm, int bus, int slot, int func) 583318224bbSNeel Natu { 584318224bbSNeel Natu int error; 585318224bbSNeel Natu 586318224bbSNeel Natu error = ppt_unassign_device(vm, bus, slot, func); 587318224bbSNeel Natu if (error) 588318224bbSNeel Natu return (error); 589318224bbSNeel Natu 590318224bbSNeel Natu if (ppt_num_devices(vm) == 0) { 591318224bbSNeel Natu vm_iommu_unmap(vm); 592318224bbSNeel Natu vm_gpa_unwire(vm); 593318224bbSNeel Natu } 594318224bbSNeel Natu return (0); 595318224bbSNeel Natu } 596318224bbSNeel Natu 597318224bbSNeel Natu int 598318224bbSNeel Natu vm_assign_pptdev(struct vm *vm, int bus, int slot, int func) 599318224bbSNeel Natu { 600318224bbSNeel Natu int error; 601318224bbSNeel Natu vm_paddr_t maxaddr; 602318224bbSNeel Natu 603318224bbSNeel Natu /* 604318224bbSNeel Natu * Virtual machines with pci passthru devices get special treatment: 605318224bbSNeel Natu * - the guest physical memory is wired 606318224bbSNeel Natu * - the iommu is programmed to do the 'gpa' to 'hpa' translation 607318224bbSNeel Natu * 608318224bbSNeel Natu * We need to do this before the first pci passthru device is attached. 609318224bbSNeel Natu */ 610318224bbSNeel Natu if (ppt_num_devices(vm) == 0) { 611318224bbSNeel Natu KASSERT(vm->iommu == NULL, 612318224bbSNeel Natu ("vm_assign_pptdev: iommu must be NULL")); 613318224bbSNeel Natu maxaddr = vmm_mem_maxaddr(); 614318224bbSNeel Natu vm->iommu = iommu_create_domain(maxaddr); 615318224bbSNeel Natu 616318224bbSNeel Natu error = vm_gpa_wire(vm); 617318224bbSNeel Natu if (error) 618318224bbSNeel Natu return (error); 619318224bbSNeel Natu 620318224bbSNeel Natu vm_iommu_map(vm); 621318224bbSNeel Natu } 622318224bbSNeel Natu 623318224bbSNeel Natu error = ppt_assign_device(vm, bus, slot, func); 624318224bbSNeel Natu return (error); 625318224bbSNeel Natu } 626318224bbSNeel Natu 627318224bbSNeel Natu void * 628318224bbSNeel Natu vm_gpa_hold(struct vm *vm, vm_paddr_t gpa, size_t len, int reqprot, 629318224bbSNeel Natu void **cookie) 630318224bbSNeel Natu { 631318224bbSNeel Natu int count, pageoff; 632318224bbSNeel Natu vm_page_t m; 633318224bbSNeel Natu 634318224bbSNeel Natu pageoff = gpa & PAGE_MASK; 635318224bbSNeel Natu if (len > PAGE_SIZE - pageoff) 636318224bbSNeel Natu panic("vm_gpa_hold: invalid gpa/len: 0x%016lx/%lu", gpa, len); 637318224bbSNeel Natu 638318224bbSNeel Natu count = vm_fault_quick_hold_pages(&vm->vmspace->vm_map, 639318224bbSNeel Natu trunc_page(gpa), PAGE_SIZE, reqprot, &m, 1); 640318224bbSNeel Natu 641318224bbSNeel Natu if (count == 1) { 642318224bbSNeel Natu *cookie = m; 643318224bbSNeel Natu return ((void *)(PHYS_TO_DMAP(VM_PAGE_TO_PHYS(m)) + pageoff)); 644318224bbSNeel Natu } else { 645318224bbSNeel Natu *cookie = NULL; 646318224bbSNeel Natu return (NULL); 647318224bbSNeel Natu } 648318224bbSNeel Natu } 649318224bbSNeel Natu 650318224bbSNeel Natu void 651318224bbSNeel Natu vm_gpa_release(void *cookie) 652318224bbSNeel Natu { 653318224bbSNeel Natu vm_page_t m = cookie; 654318224bbSNeel Natu 655318224bbSNeel Natu vm_page_lock(m); 656318224bbSNeel Natu vm_page_unhold(m); 657318224bbSNeel Natu vm_page_unlock(m); 658366f6083SPeter Grehan } 659366f6083SPeter Grehan 660366f6083SPeter Grehan int 661366f6083SPeter Grehan vm_gpabase2memseg(struct vm *vm, vm_paddr_t gpabase, 662366f6083SPeter Grehan struct vm_memory_segment *seg) 663366f6083SPeter Grehan { 664366f6083SPeter Grehan int i; 665366f6083SPeter Grehan 666366f6083SPeter Grehan for (i = 0; i < vm->num_mem_segs; i++) { 667366f6083SPeter Grehan if (gpabase == vm->mem_segs[i].gpa) { 668318224bbSNeel Natu seg->gpa = vm->mem_segs[i].gpa; 669318224bbSNeel Natu seg->len = vm->mem_segs[i].len; 670318224bbSNeel Natu seg->wired = vm->mem_segs[i].wired; 671366f6083SPeter Grehan return (0); 672366f6083SPeter Grehan } 673366f6083SPeter Grehan } 674366f6083SPeter Grehan return (-1); 675366f6083SPeter Grehan } 676366f6083SPeter Grehan 677366f6083SPeter Grehan int 678318224bbSNeel Natu vm_get_memobj(struct vm *vm, vm_paddr_t gpa, size_t len, 679318224bbSNeel Natu vm_offset_t *offset, struct vm_object **object) 680318224bbSNeel Natu { 681318224bbSNeel Natu int i; 682318224bbSNeel Natu size_t seg_len; 683318224bbSNeel Natu vm_paddr_t seg_gpa; 684318224bbSNeel Natu vm_object_t seg_obj; 685318224bbSNeel Natu 686318224bbSNeel Natu for (i = 0; i < vm->num_mem_segs; i++) { 687318224bbSNeel Natu if ((seg_obj = vm->mem_segs[i].object) == NULL) 688318224bbSNeel Natu continue; 689318224bbSNeel Natu 690318224bbSNeel Natu seg_gpa = vm->mem_segs[i].gpa; 691318224bbSNeel Natu seg_len = vm->mem_segs[i].len; 692318224bbSNeel Natu 693318224bbSNeel Natu if (gpa >= seg_gpa && gpa < seg_gpa + seg_len) { 694318224bbSNeel Natu *offset = gpa - seg_gpa; 695318224bbSNeel Natu *object = seg_obj; 696318224bbSNeel Natu vm_object_reference(seg_obj); 697318224bbSNeel Natu return (0); 698318224bbSNeel Natu } 699318224bbSNeel Natu } 700318224bbSNeel Natu 701318224bbSNeel Natu return (EINVAL); 702318224bbSNeel Natu } 703318224bbSNeel Natu 704318224bbSNeel Natu int 705366f6083SPeter Grehan vm_get_register(struct vm *vm, int vcpu, int reg, uint64_t *retval) 706366f6083SPeter Grehan { 707366f6083SPeter Grehan 708366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 709366f6083SPeter Grehan return (EINVAL); 710366f6083SPeter Grehan 711366f6083SPeter Grehan if (reg >= VM_REG_LAST) 712366f6083SPeter Grehan return (EINVAL); 713366f6083SPeter Grehan 714366f6083SPeter Grehan return (VMGETREG(vm->cookie, vcpu, reg, retval)); 715366f6083SPeter Grehan } 716366f6083SPeter Grehan 717366f6083SPeter Grehan int 718366f6083SPeter Grehan vm_set_register(struct vm *vm, int vcpu, int reg, uint64_t val) 719366f6083SPeter Grehan { 720366f6083SPeter Grehan 721366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 722366f6083SPeter Grehan return (EINVAL); 723366f6083SPeter Grehan 724366f6083SPeter Grehan if (reg >= VM_REG_LAST) 725366f6083SPeter Grehan return (EINVAL); 726366f6083SPeter Grehan 727366f6083SPeter Grehan return (VMSETREG(vm->cookie, vcpu, reg, val)); 728366f6083SPeter Grehan } 729366f6083SPeter Grehan 730366f6083SPeter Grehan static boolean_t 731366f6083SPeter Grehan is_descriptor_table(int reg) 732366f6083SPeter Grehan { 733366f6083SPeter Grehan 734366f6083SPeter Grehan switch (reg) { 735366f6083SPeter Grehan case VM_REG_GUEST_IDTR: 736366f6083SPeter Grehan case VM_REG_GUEST_GDTR: 737366f6083SPeter Grehan return (TRUE); 738366f6083SPeter Grehan default: 739366f6083SPeter Grehan return (FALSE); 740366f6083SPeter Grehan } 741366f6083SPeter Grehan } 742366f6083SPeter Grehan 743366f6083SPeter Grehan static boolean_t 744366f6083SPeter Grehan is_segment_register(int reg) 745366f6083SPeter Grehan { 746366f6083SPeter Grehan 747366f6083SPeter Grehan switch (reg) { 748366f6083SPeter Grehan case VM_REG_GUEST_ES: 749366f6083SPeter Grehan case VM_REG_GUEST_CS: 750366f6083SPeter Grehan case VM_REG_GUEST_SS: 751366f6083SPeter Grehan case VM_REG_GUEST_DS: 752366f6083SPeter Grehan case VM_REG_GUEST_FS: 753366f6083SPeter Grehan case VM_REG_GUEST_GS: 754366f6083SPeter Grehan case VM_REG_GUEST_TR: 755366f6083SPeter Grehan case VM_REG_GUEST_LDTR: 756366f6083SPeter Grehan return (TRUE); 757366f6083SPeter Grehan default: 758366f6083SPeter Grehan return (FALSE); 759366f6083SPeter Grehan } 760366f6083SPeter Grehan } 761366f6083SPeter Grehan 762366f6083SPeter Grehan int 763366f6083SPeter Grehan vm_get_seg_desc(struct vm *vm, int vcpu, int reg, 764366f6083SPeter Grehan struct seg_desc *desc) 765366f6083SPeter Grehan { 766366f6083SPeter Grehan 767366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 768366f6083SPeter Grehan return (EINVAL); 769366f6083SPeter Grehan 770366f6083SPeter Grehan if (!is_segment_register(reg) && !is_descriptor_table(reg)) 771366f6083SPeter Grehan return (EINVAL); 772366f6083SPeter Grehan 773366f6083SPeter Grehan return (VMGETDESC(vm->cookie, vcpu, reg, desc)); 774366f6083SPeter Grehan } 775366f6083SPeter Grehan 776366f6083SPeter Grehan int 777366f6083SPeter Grehan vm_set_seg_desc(struct vm *vm, int vcpu, int reg, 778366f6083SPeter Grehan struct seg_desc *desc) 779366f6083SPeter Grehan { 780366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 781366f6083SPeter Grehan return (EINVAL); 782366f6083SPeter Grehan 783366f6083SPeter Grehan if (!is_segment_register(reg) && !is_descriptor_table(reg)) 784366f6083SPeter Grehan return (EINVAL); 785366f6083SPeter Grehan 786366f6083SPeter Grehan return (VMSETDESC(vm->cookie, vcpu, reg, desc)); 787366f6083SPeter Grehan } 788366f6083SPeter Grehan 789366f6083SPeter Grehan static void 790366f6083SPeter Grehan restore_guest_fpustate(struct vcpu *vcpu) 791366f6083SPeter Grehan { 792366f6083SPeter Grehan 79338f1b189SPeter Grehan /* flush host state to the pcb */ 79438f1b189SPeter Grehan fpuexit(curthread); 795bd8572e0SNeel Natu 796bd8572e0SNeel Natu /* restore guest FPU state */ 797366f6083SPeter Grehan fpu_stop_emulating(); 79838f1b189SPeter Grehan fpurestore(vcpu->guestfpu); 799bd8572e0SNeel Natu 800bd8572e0SNeel Natu /* 801bd8572e0SNeel Natu * The FPU is now "dirty" with the guest's state so turn on emulation 802bd8572e0SNeel Natu * to trap any access to the FPU by the host. 803bd8572e0SNeel Natu */ 804bd8572e0SNeel Natu fpu_start_emulating(); 805366f6083SPeter Grehan } 806366f6083SPeter Grehan 807366f6083SPeter Grehan static void 808366f6083SPeter Grehan save_guest_fpustate(struct vcpu *vcpu) 809366f6083SPeter Grehan { 810366f6083SPeter Grehan 811bd8572e0SNeel Natu if ((rcr0() & CR0_TS) == 0) 812bd8572e0SNeel Natu panic("fpu emulation not enabled in host!"); 813bd8572e0SNeel Natu 814bd8572e0SNeel Natu /* save guest FPU state */ 815bd8572e0SNeel Natu fpu_stop_emulating(); 81638f1b189SPeter Grehan fpusave(vcpu->guestfpu); 817366f6083SPeter Grehan fpu_start_emulating(); 818366f6083SPeter Grehan } 819366f6083SPeter Grehan 82061592433SNeel Natu static VMM_STAT(VCPU_IDLE_TICKS, "number of ticks vcpu was idle"); 821f76fc5d4SNeel Natu 822318224bbSNeel Natu static int 823f80330a8SNeel Natu vcpu_set_state_locked(struct vcpu *vcpu, enum vcpu_state newstate, 824f80330a8SNeel Natu bool from_idle) 825366f6083SPeter Grehan { 826318224bbSNeel Natu int error; 827366f6083SPeter Grehan 828318224bbSNeel Natu vcpu_assert_locked(vcpu); 829366f6083SPeter Grehan 830f76fc5d4SNeel Natu /* 831f80330a8SNeel Natu * State transitions from the vmmdev_ioctl() must always begin from 832f80330a8SNeel Natu * the VCPU_IDLE state. This guarantees that there is only a single 833f80330a8SNeel Natu * ioctl() operating on a vcpu at any point. 834f80330a8SNeel Natu */ 835f80330a8SNeel Natu if (from_idle) { 836f80330a8SNeel Natu while (vcpu->state != VCPU_IDLE) 837f80330a8SNeel Natu msleep_spin(&vcpu->state, &vcpu->mtx, "vmstat", hz); 838f80330a8SNeel Natu } else { 839f80330a8SNeel Natu KASSERT(vcpu->state != VCPU_IDLE, ("invalid transition from " 840f80330a8SNeel Natu "vcpu idle state")); 841f80330a8SNeel Natu } 842f80330a8SNeel Natu 843f80330a8SNeel Natu /* 844318224bbSNeel Natu * The following state transitions are allowed: 845318224bbSNeel Natu * IDLE -> FROZEN -> IDLE 846318224bbSNeel Natu * FROZEN -> RUNNING -> FROZEN 847318224bbSNeel Natu * FROZEN -> SLEEPING -> FROZEN 848f76fc5d4SNeel Natu */ 849318224bbSNeel Natu switch (vcpu->state) { 850318224bbSNeel Natu case VCPU_IDLE: 851318224bbSNeel Natu case VCPU_RUNNING: 852318224bbSNeel Natu case VCPU_SLEEPING: 853318224bbSNeel Natu error = (newstate != VCPU_FROZEN); 854318224bbSNeel Natu break; 855318224bbSNeel Natu case VCPU_FROZEN: 856318224bbSNeel Natu error = (newstate == VCPU_FROZEN); 857318224bbSNeel Natu break; 858318224bbSNeel Natu default: 859318224bbSNeel Natu error = 1; 860318224bbSNeel Natu break; 861318224bbSNeel Natu } 862318224bbSNeel Natu 863f80330a8SNeel Natu if (error) 864f80330a8SNeel Natu return (EBUSY); 865318224bbSNeel Natu 866f80330a8SNeel Natu vcpu->state = newstate; 867f80330a8SNeel Natu if (newstate == VCPU_IDLE) 868f80330a8SNeel Natu wakeup(&vcpu->state); 869f80330a8SNeel Natu 870f80330a8SNeel Natu return (0); 871318224bbSNeel Natu } 872318224bbSNeel Natu 873318224bbSNeel Natu static void 874318224bbSNeel Natu vcpu_require_state(struct vm *vm, int vcpuid, enum vcpu_state newstate) 875318224bbSNeel Natu { 876318224bbSNeel Natu int error; 877318224bbSNeel Natu 878f80330a8SNeel Natu if ((error = vcpu_set_state(vm, vcpuid, newstate, false)) != 0) 879318224bbSNeel Natu panic("Error %d setting state to %d\n", error, newstate); 880318224bbSNeel Natu } 881318224bbSNeel Natu 882318224bbSNeel Natu static void 883318224bbSNeel Natu vcpu_require_state_locked(struct vcpu *vcpu, enum vcpu_state newstate) 884318224bbSNeel Natu { 885318224bbSNeel Natu int error; 886318224bbSNeel Natu 887f80330a8SNeel Natu if ((error = vcpu_set_state_locked(vcpu, newstate, false)) != 0) 888318224bbSNeel Natu panic("Error %d setting state to %d", error, newstate); 889318224bbSNeel Natu } 890318224bbSNeel Natu 891318224bbSNeel Natu /* 892318224bbSNeel Natu * Emulate a guest 'hlt' by sleeping until the vcpu is ready to run. 893318224bbSNeel Natu */ 894318224bbSNeel Natu static int 895becd9849SNeel Natu vm_handle_hlt(struct vm *vm, int vcpuid, bool intr_disabled, bool *retu) 896318224bbSNeel Natu { 8971c052192SNeel Natu struct vm_exit *vmexit; 898318224bbSNeel Natu struct vcpu *vcpu; 899fb03ca4eSNeel Natu int t, timo; 900318224bbSNeel Natu 901318224bbSNeel Natu vcpu = &vm->vcpu[vcpuid]; 902318224bbSNeel Natu 903f76fc5d4SNeel Natu vcpu_lock(vcpu); 904f76fc5d4SNeel Natu 905f76fc5d4SNeel Natu /* 906f76fc5d4SNeel Natu * Do a final check for pending NMI or interrupts before 907f76fc5d4SNeel Natu * really putting this thread to sleep. 908f76fc5d4SNeel Natu * 909f76fc5d4SNeel Natu * These interrupts could have happened any time after we 910f76fc5d4SNeel Natu * returned from VMRUN() and before we grabbed the vcpu lock. 911f76fc5d4SNeel Natu */ 9121c052192SNeel Natu if (!vm_nmi_pending(vm, vcpuid) && 9131c052192SNeel Natu (intr_disabled || vlapic_pending_intr(vcpu->vlapic) < 0)) { 914f76fc5d4SNeel Natu t = ticks; 915318224bbSNeel Natu vcpu_require_state_locked(vcpu, VCPU_SLEEPING); 9161c052192SNeel Natu if (vlapic_enabled(vcpu->vlapic)) { 917fb03ca4eSNeel Natu /* 918fb03ca4eSNeel Natu * XXX msleep_spin() is not interruptible so use the 919fb03ca4eSNeel Natu * 'timo' to put an upper bound on the sleep time. 920fb03ca4eSNeel Natu */ 921fb03ca4eSNeel Natu timo = hz; 922fb03ca4eSNeel Natu msleep_spin(vcpu, &vcpu->mtx, "vmidle", timo); 9231c052192SNeel Natu } else { 9241c052192SNeel Natu /* 9251c052192SNeel Natu * Spindown the vcpu if the apic is disabled and it 9261c052192SNeel Natu * had entered the halted state. 9271c052192SNeel Natu */ 928becd9849SNeel Natu *retu = true; 9291c052192SNeel Natu vmexit = vm_exitinfo(vm, vcpuid); 9301c052192SNeel Natu vmexit->exitcode = VM_EXITCODE_SPINDOWN_CPU; 9311c052192SNeel Natu VCPU_CTR0(vm, vcpuid, "spinning down cpu"); 9321c052192SNeel Natu } 933318224bbSNeel Natu vcpu_require_state_locked(vcpu, VCPU_FROZEN); 934f76fc5d4SNeel Natu vmm_stat_incr(vm, vcpuid, VCPU_IDLE_TICKS, ticks - t); 935f76fc5d4SNeel Natu } 936f76fc5d4SNeel Natu vcpu_unlock(vcpu); 937f76fc5d4SNeel Natu 938318224bbSNeel Natu return (0); 939318224bbSNeel Natu } 940318224bbSNeel Natu 941318224bbSNeel Natu static int 942becd9849SNeel Natu vm_handle_paging(struct vm *vm, int vcpuid, bool *retu) 943318224bbSNeel Natu { 944318224bbSNeel Natu int rv, ftype; 945318224bbSNeel Natu struct vm_map *map; 946318224bbSNeel Natu struct vcpu *vcpu; 947318224bbSNeel Natu struct vm_exit *vme; 948318224bbSNeel Natu 949318224bbSNeel Natu vcpu = &vm->vcpu[vcpuid]; 950318224bbSNeel Natu vme = &vcpu->exitinfo; 951318224bbSNeel Natu 952318224bbSNeel Natu ftype = vme->u.paging.fault_type; 953318224bbSNeel Natu KASSERT(ftype == VM_PROT_READ || 954318224bbSNeel Natu ftype == VM_PROT_WRITE || ftype == VM_PROT_EXECUTE, 955318224bbSNeel Natu ("vm_handle_paging: invalid fault_type %d", ftype)); 956318224bbSNeel Natu 957318224bbSNeel Natu if (ftype == VM_PROT_READ || ftype == VM_PROT_WRITE) { 958318224bbSNeel Natu rv = pmap_emulate_accessed_dirty(vmspace_pmap(vm->vmspace), 959318224bbSNeel Natu vme->u.paging.gpa, ftype); 960318224bbSNeel Natu if (rv == 0) 961318224bbSNeel Natu goto done; 962318224bbSNeel Natu } 963318224bbSNeel Natu 964318224bbSNeel Natu map = &vm->vmspace->vm_map; 965318224bbSNeel Natu rv = vm_fault(map, vme->u.paging.gpa, ftype, VM_FAULT_NORMAL); 966318224bbSNeel Natu 967513c8d33SNeel Natu VCPU_CTR3(vm, vcpuid, "vm_handle_paging rv = %d, gpa = %#lx, " 968513c8d33SNeel Natu "ftype = %d", rv, vme->u.paging.gpa, ftype); 969318224bbSNeel Natu 970318224bbSNeel Natu if (rv != KERN_SUCCESS) 971318224bbSNeel Natu return (EFAULT); 972318224bbSNeel Natu done: 973318224bbSNeel Natu /* restart execution at the faulting instruction */ 974318224bbSNeel Natu vme->inst_length = 0; 975318224bbSNeel Natu 976318224bbSNeel Natu return (0); 977318224bbSNeel Natu } 978318224bbSNeel Natu 979318224bbSNeel Natu static int 980becd9849SNeel Natu vm_handle_inst_emul(struct vm *vm, int vcpuid, bool *retu) 981318224bbSNeel Natu { 982318224bbSNeel Natu struct vie *vie; 983318224bbSNeel Natu struct vcpu *vcpu; 984318224bbSNeel Natu struct vm_exit *vme; 985318224bbSNeel Natu int error, inst_length; 986318224bbSNeel Natu uint64_t rip, gla, gpa, cr3; 987565bbb86SNeel Natu mem_region_read_t mread; 988565bbb86SNeel Natu mem_region_write_t mwrite; 989318224bbSNeel Natu 990318224bbSNeel Natu vcpu = &vm->vcpu[vcpuid]; 991318224bbSNeel Natu vme = &vcpu->exitinfo; 992318224bbSNeel Natu 993318224bbSNeel Natu rip = vme->rip; 994318224bbSNeel Natu inst_length = vme->inst_length; 995318224bbSNeel Natu 996318224bbSNeel Natu gla = vme->u.inst_emul.gla; 997318224bbSNeel Natu gpa = vme->u.inst_emul.gpa; 998318224bbSNeel Natu cr3 = vme->u.inst_emul.cr3; 999318224bbSNeel Natu vie = &vme->u.inst_emul.vie; 1000318224bbSNeel Natu 1001318224bbSNeel Natu vie_init(vie); 1002318224bbSNeel Natu 1003318224bbSNeel Natu /* Fetch, decode and emulate the faulting instruction */ 1004318224bbSNeel Natu if (vmm_fetch_instruction(vm, vcpuid, rip, inst_length, cr3, vie) != 0) 1005318224bbSNeel Natu return (EFAULT); 1006318224bbSNeel Natu 1007318224bbSNeel Natu if (vmm_decode_instruction(vm, vcpuid, gla, vie) != 0) 1008318224bbSNeel Natu return (EFAULT); 1009318224bbSNeel Natu 101008e3ff32SNeel Natu /* return to userland unless this is an in-kernel emulated device */ 1011565bbb86SNeel Natu if (gpa >= DEFAULT_APIC_BASE && gpa < DEFAULT_APIC_BASE + PAGE_SIZE) { 1012565bbb86SNeel Natu mread = lapic_mmio_read; 1013565bbb86SNeel Natu mwrite = lapic_mmio_write; 1014565bbb86SNeel Natu } else if (gpa >= VIOAPIC_BASE && gpa < VIOAPIC_BASE + VIOAPIC_SIZE) { 1015565bbb86SNeel Natu mread = vioapic_mmio_read; 1016565bbb86SNeel Natu mwrite = vioapic_mmio_write; 101708e3ff32SNeel Natu } else if (gpa >= VHPET_BASE && gpa < VHPET_BASE + VHPET_SIZE) { 101808e3ff32SNeel Natu mread = vhpet_mmio_read; 101908e3ff32SNeel Natu mwrite = vhpet_mmio_write; 1020565bbb86SNeel Natu } else { 1021becd9849SNeel Natu *retu = true; 1022318224bbSNeel Natu return (0); 1023318224bbSNeel Natu } 1024318224bbSNeel Natu 1025becd9849SNeel Natu error = vmm_emulate_instruction(vm, vcpuid, gpa, vie, mread, mwrite, 1026becd9849SNeel Natu retu); 1027318224bbSNeel Natu 1028318224bbSNeel Natu return (error); 1029318224bbSNeel Natu } 1030318224bbSNeel Natu 1031318224bbSNeel Natu int 1032318224bbSNeel Natu vm_run(struct vm *vm, struct vm_run *vmrun) 1033318224bbSNeel Natu { 1034318224bbSNeel Natu int error, vcpuid; 1035318224bbSNeel Natu struct vcpu *vcpu; 1036318224bbSNeel Natu struct pcb *pcb; 1037318224bbSNeel Natu uint64_t tscval, rip; 1038318224bbSNeel Natu struct vm_exit *vme; 1039becd9849SNeel Natu bool retu, intr_disabled; 1040318224bbSNeel Natu pmap_t pmap; 1041318224bbSNeel Natu 1042318224bbSNeel Natu vcpuid = vmrun->cpuid; 1043318224bbSNeel Natu 1044318224bbSNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1045318224bbSNeel Natu return (EINVAL); 1046318224bbSNeel Natu 1047318224bbSNeel Natu pmap = vmspace_pmap(vm->vmspace); 1048318224bbSNeel Natu vcpu = &vm->vcpu[vcpuid]; 1049318224bbSNeel Natu vme = &vcpu->exitinfo; 1050318224bbSNeel Natu rip = vmrun->rip; 1051318224bbSNeel Natu restart: 1052318224bbSNeel Natu critical_enter(); 1053318224bbSNeel Natu 1054318224bbSNeel Natu KASSERT(!CPU_ISSET(curcpu, &pmap->pm_active), 1055318224bbSNeel Natu ("vm_run: absurd pm_active")); 1056318224bbSNeel Natu 1057318224bbSNeel Natu tscval = rdtsc(); 1058318224bbSNeel Natu 1059318224bbSNeel Natu pcb = PCPU_GET(curpcb); 1060318224bbSNeel Natu set_pcb_flags(pcb, PCB_FULL_IRET); 1061318224bbSNeel Natu 1062318224bbSNeel Natu restore_guest_msrs(vm, vcpuid); 1063318224bbSNeel Natu restore_guest_fpustate(vcpu); 1064318224bbSNeel Natu 1065318224bbSNeel Natu vcpu_require_state(vm, vcpuid, VCPU_RUNNING); 1066318224bbSNeel Natu vcpu->hostcpu = curcpu; 1067318224bbSNeel Natu error = VMRUN(vm->cookie, vcpuid, rip, pmap); 1068318224bbSNeel Natu vcpu->hostcpu = NOCPU; 1069318224bbSNeel Natu vcpu_require_state(vm, vcpuid, VCPU_FROZEN); 1070318224bbSNeel Natu 1071318224bbSNeel Natu save_guest_fpustate(vcpu); 1072318224bbSNeel Natu restore_host_msrs(vm, vcpuid); 1073318224bbSNeel Natu 1074318224bbSNeel Natu vmm_stat_incr(vm, vcpuid, VCPU_TOTAL_RUNTIME, rdtsc() - tscval); 1075318224bbSNeel Natu 1076318224bbSNeel Natu critical_exit(); 1077318224bbSNeel Natu 1078318224bbSNeel Natu if (error == 0) { 1079becd9849SNeel Natu retu = false; 1080318224bbSNeel Natu switch (vme->exitcode) { 1081318224bbSNeel Natu case VM_EXITCODE_HLT: 1082becd9849SNeel Natu intr_disabled = ((vme->u.hlt.rflags & PSL_I) == 0); 10831c052192SNeel Natu error = vm_handle_hlt(vm, vcpuid, intr_disabled, &retu); 1084318224bbSNeel Natu break; 1085318224bbSNeel Natu case VM_EXITCODE_PAGING: 1086318224bbSNeel Natu error = vm_handle_paging(vm, vcpuid, &retu); 1087318224bbSNeel Natu break; 1088318224bbSNeel Natu case VM_EXITCODE_INST_EMUL: 1089318224bbSNeel Natu error = vm_handle_inst_emul(vm, vcpuid, &retu); 1090318224bbSNeel Natu break; 1091318224bbSNeel Natu default: 1092becd9849SNeel Natu retu = true; /* handled in userland */ 1093318224bbSNeel Natu break; 1094318224bbSNeel Natu } 1095318224bbSNeel Natu } 1096318224bbSNeel Natu 1097becd9849SNeel Natu if (error == 0 && retu == false) { 1098f76fc5d4SNeel Natu rip = vme->rip + vme->inst_length; 1099f76fc5d4SNeel Natu goto restart; 1100f76fc5d4SNeel Natu } 1101f76fc5d4SNeel Natu 1102318224bbSNeel Natu /* copy the exit information */ 1103318224bbSNeel Natu bcopy(vme, &vmrun->vm_exit, sizeof(struct vm_exit)); 1104366f6083SPeter Grehan return (error); 1105366f6083SPeter Grehan } 1106366f6083SPeter Grehan 1107366f6083SPeter Grehan int 1108366f6083SPeter Grehan vm_inject_event(struct vm *vm, int vcpuid, int type, 1109366f6083SPeter Grehan int vector, uint32_t code, int code_valid) 1110366f6083SPeter Grehan { 1111366f6083SPeter Grehan if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1112366f6083SPeter Grehan return (EINVAL); 1113366f6083SPeter Grehan 1114366f6083SPeter Grehan if ((type > VM_EVENT_NONE && type < VM_EVENT_MAX) == 0) 1115366f6083SPeter Grehan return (EINVAL); 1116366f6083SPeter Grehan 1117366f6083SPeter Grehan if (vector < 0 || vector > 255) 1118366f6083SPeter Grehan return (EINVAL); 1119366f6083SPeter Grehan 1120366f6083SPeter Grehan return (VMINJECT(vm->cookie, vcpuid, type, vector, code, code_valid)); 1121366f6083SPeter Grehan } 1122366f6083SPeter Grehan 112361592433SNeel Natu static VMM_STAT(VCPU_NMI_COUNT, "number of NMIs delivered to vcpu"); 1124366f6083SPeter Grehan 1125f352ff0cSNeel Natu int 1126f352ff0cSNeel Natu vm_inject_nmi(struct vm *vm, int vcpuid) 1127f352ff0cSNeel Natu { 1128f352ff0cSNeel Natu struct vcpu *vcpu; 1129f352ff0cSNeel Natu 1130f352ff0cSNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1131366f6083SPeter Grehan return (EINVAL); 1132366f6083SPeter Grehan 1133f352ff0cSNeel Natu vcpu = &vm->vcpu[vcpuid]; 1134f352ff0cSNeel Natu 1135f352ff0cSNeel Natu vcpu->nmi_pending = 1; 1136*de5ea6b6SNeel Natu vcpu_notify_event(vm, vcpuid, false); 1137f352ff0cSNeel Natu return (0); 1138f352ff0cSNeel Natu } 1139f352ff0cSNeel Natu 1140f352ff0cSNeel Natu int 1141f352ff0cSNeel Natu vm_nmi_pending(struct vm *vm, int vcpuid) 1142f352ff0cSNeel Natu { 1143f352ff0cSNeel Natu struct vcpu *vcpu; 1144f352ff0cSNeel Natu 1145f352ff0cSNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1146f352ff0cSNeel Natu panic("vm_nmi_pending: invalid vcpuid %d", vcpuid); 1147f352ff0cSNeel Natu 1148f352ff0cSNeel Natu vcpu = &vm->vcpu[vcpuid]; 1149f352ff0cSNeel Natu 1150f352ff0cSNeel Natu return (vcpu->nmi_pending); 1151f352ff0cSNeel Natu } 1152f352ff0cSNeel Natu 1153f352ff0cSNeel Natu void 1154f352ff0cSNeel Natu vm_nmi_clear(struct vm *vm, int vcpuid) 1155f352ff0cSNeel Natu { 1156f352ff0cSNeel Natu struct vcpu *vcpu; 1157f352ff0cSNeel Natu 1158f352ff0cSNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1159f352ff0cSNeel Natu panic("vm_nmi_pending: invalid vcpuid %d", vcpuid); 1160f352ff0cSNeel Natu 1161f352ff0cSNeel Natu vcpu = &vm->vcpu[vcpuid]; 1162f352ff0cSNeel Natu 1163f352ff0cSNeel Natu if (vcpu->nmi_pending == 0) 1164f352ff0cSNeel Natu panic("vm_nmi_clear: inconsistent nmi_pending state"); 1165f352ff0cSNeel Natu 1166f352ff0cSNeel Natu vcpu->nmi_pending = 0; 1167f352ff0cSNeel Natu vmm_stat_incr(vm, vcpuid, VCPU_NMI_COUNT, 1); 1168366f6083SPeter Grehan } 1169366f6083SPeter Grehan 1170366f6083SPeter Grehan int 1171366f6083SPeter Grehan vm_get_capability(struct vm *vm, int vcpu, int type, int *retval) 1172366f6083SPeter Grehan { 1173366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 1174366f6083SPeter Grehan return (EINVAL); 1175366f6083SPeter Grehan 1176366f6083SPeter Grehan if (type < 0 || type >= VM_CAP_MAX) 1177366f6083SPeter Grehan return (EINVAL); 1178366f6083SPeter Grehan 1179366f6083SPeter Grehan return (VMGETCAP(vm->cookie, vcpu, type, retval)); 1180366f6083SPeter Grehan } 1181366f6083SPeter Grehan 1182366f6083SPeter Grehan int 1183366f6083SPeter Grehan vm_set_capability(struct vm *vm, int vcpu, int type, int val) 1184366f6083SPeter Grehan { 1185366f6083SPeter Grehan if (vcpu < 0 || vcpu >= VM_MAXCPU) 1186366f6083SPeter Grehan return (EINVAL); 1187366f6083SPeter Grehan 1188366f6083SPeter Grehan if (type < 0 || type >= VM_CAP_MAX) 1189366f6083SPeter Grehan return (EINVAL); 1190366f6083SPeter Grehan 1191366f6083SPeter Grehan return (VMSETCAP(vm->cookie, vcpu, type, val)); 1192366f6083SPeter Grehan } 1193366f6083SPeter Grehan 1194366f6083SPeter Grehan uint64_t * 1195366f6083SPeter Grehan vm_guest_msrs(struct vm *vm, int cpu) 1196366f6083SPeter Grehan { 1197366f6083SPeter Grehan return (vm->vcpu[cpu].guest_msrs); 1198366f6083SPeter Grehan } 1199366f6083SPeter Grehan 1200366f6083SPeter Grehan struct vlapic * 1201366f6083SPeter Grehan vm_lapic(struct vm *vm, int cpu) 1202366f6083SPeter Grehan { 1203366f6083SPeter Grehan return (vm->vcpu[cpu].vlapic); 1204366f6083SPeter Grehan } 1205366f6083SPeter Grehan 1206565bbb86SNeel Natu struct vioapic * 1207565bbb86SNeel Natu vm_ioapic(struct vm *vm) 1208565bbb86SNeel Natu { 1209565bbb86SNeel Natu 1210565bbb86SNeel Natu return (vm->vioapic); 1211565bbb86SNeel Natu } 1212565bbb86SNeel Natu 121308e3ff32SNeel Natu struct vhpet * 121408e3ff32SNeel Natu vm_hpet(struct vm *vm) 121508e3ff32SNeel Natu { 121608e3ff32SNeel Natu 121708e3ff32SNeel Natu return (vm->vhpet); 121808e3ff32SNeel Natu } 121908e3ff32SNeel Natu 1220366f6083SPeter Grehan boolean_t 1221366f6083SPeter Grehan vmm_is_pptdev(int bus, int slot, int func) 1222366f6083SPeter Grehan { 122307044a96SNeel Natu int found, i, n; 122407044a96SNeel Natu int b, s, f; 1225366f6083SPeter Grehan char *val, *cp, *cp2; 1226366f6083SPeter Grehan 1227366f6083SPeter Grehan /* 122807044a96SNeel Natu * XXX 122907044a96SNeel Natu * The length of an environment variable is limited to 128 bytes which 123007044a96SNeel Natu * puts an upper limit on the number of passthru devices that may be 123107044a96SNeel Natu * specified using a single environment variable. 123207044a96SNeel Natu * 123307044a96SNeel Natu * Work around this by scanning multiple environment variable 123407044a96SNeel Natu * names instead of a single one - yuck! 1235366f6083SPeter Grehan */ 123607044a96SNeel Natu const char *names[] = { "pptdevs", "pptdevs2", "pptdevs3", NULL }; 123707044a96SNeel Natu 123807044a96SNeel Natu /* set pptdevs="1/2/3 4/5/6 7/8/9 10/11/12" */ 1239366f6083SPeter Grehan found = 0; 124007044a96SNeel Natu for (i = 0; names[i] != NULL && !found; i++) { 124107044a96SNeel Natu cp = val = getenv(names[i]); 1242366f6083SPeter Grehan while (cp != NULL && *cp != '\0') { 1243366f6083SPeter Grehan if ((cp2 = strchr(cp, ' ')) != NULL) 1244366f6083SPeter Grehan *cp2 = '\0'; 1245366f6083SPeter Grehan 1246366f6083SPeter Grehan n = sscanf(cp, "%d/%d/%d", &b, &s, &f); 1247366f6083SPeter Grehan if (n == 3 && bus == b && slot == s && func == f) { 1248366f6083SPeter Grehan found = 1; 1249366f6083SPeter Grehan break; 1250366f6083SPeter Grehan } 1251366f6083SPeter Grehan 1252366f6083SPeter Grehan if (cp2 != NULL) 1253366f6083SPeter Grehan *cp2++ = ' '; 1254366f6083SPeter Grehan 1255366f6083SPeter Grehan cp = cp2; 1256366f6083SPeter Grehan } 1257366f6083SPeter Grehan freeenv(val); 125807044a96SNeel Natu } 1259366f6083SPeter Grehan return (found); 1260366f6083SPeter Grehan } 1261366f6083SPeter Grehan 1262366f6083SPeter Grehan void * 1263366f6083SPeter Grehan vm_iommu_domain(struct vm *vm) 1264366f6083SPeter Grehan { 1265366f6083SPeter Grehan 1266366f6083SPeter Grehan return (vm->iommu); 1267366f6083SPeter Grehan } 1268366f6083SPeter Grehan 126975dd3366SNeel Natu int 1270f80330a8SNeel Natu vcpu_set_state(struct vm *vm, int vcpuid, enum vcpu_state newstate, 1271f80330a8SNeel Natu bool from_idle) 1272366f6083SPeter Grehan { 127375dd3366SNeel Natu int error; 1274366f6083SPeter Grehan struct vcpu *vcpu; 1275366f6083SPeter Grehan 1276366f6083SPeter Grehan if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1277366f6083SPeter Grehan panic("vm_set_run_state: invalid vcpuid %d", vcpuid); 1278366f6083SPeter Grehan 1279366f6083SPeter Grehan vcpu = &vm->vcpu[vcpuid]; 1280366f6083SPeter Grehan 128175dd3366SNeel Natu vcpu_lock(vcpu); 1282f80330a8SNeel Natu error = vcpu_set_state_locked(vcpu, newstate, from_idle); 128375dd3366SNeel Natu vcpu_unlock(vcpu); 128475dd3366SNeel Natu 128575dd3366SNeel Natu return (error); 128675dd3366SNeel Natu } 128775dd3366SNeel Natu 128875dd3366SNeel Natu enum vcpu_state 1289d3c11f40SPeter Grehan vcpu_get_state(struct vm *vm, int vcpuid, int *hostcpu) 1290366f6083SPeter Grehan { 1291366f6083SPeter Grehan struct vcpu *vcpu; 129275dd3366SNeel Natu enum vcpu_state state; 1293366f6083SPeter Grehan 1294366f6083SPeter Grehan if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1295366f6083SPeter Grehan panic("vm_get_run_state: invalid vcpuid %d", vcpuid); 1296366f6083SPeter Grehan 1297366f6083SPeter Grehan vcpu = &vm->vcpu[vcpuid]; 1298366f6083SPeter Grehan 129975dd3366SNeel Natu vcpu_lock(vcpu); 130075dd3366SNeel Natu state = vcpu->state; 1301d3c11f40SPeter Grehan if (hostcpu != NULL) 1302d3c11f40SPeter Grehan *hostcpu = vcpu->hostcpu; 130375dd3366SNeel Natu vcpu_unlock(vcpu); 1304366f6083SPeter Grehan 130575dd3366SNeel Natu return (state); 1306366f6083SPeter Grehan } 1307366f6083SPeter Grehan 1308366f6083SPeter Grehan void 1309366f6083SPeter Grehan vm_activate_cpu(struct vm *vm, int vcpuid) 1310366f6083SPeter Grehan { 1311366f6083SPeter Grehan 1312366f6083SPeter Grehan if (vcpuid >= 0 && vcpuid < VM_MAXCPU) 1313a5615c90SPeter Grehan CPU_SET(vcpuid, &vm->active_cpus); 1314366f6083SPeter Grehan } 1315366f6083SPeter Grehan 1316a5615c90SPeter Grehan cpuset_t 1317366f6083SPeter Grehan vm_active_cpus(struct vm *vm) 1318366f6083SPeter Grehan { 1319366f6083SPeter Grehan 1320366f6083SPeter Grehan return (vm->active_cpus); 1321366f6083SPeter Grehan } 1322366f6083SPeter Grehan 1323366f6083SPeter Grehan void * 1324366f6083SPeter Grehan vcpu_stats(struct vm *vm, int vcpuid) 1325366f6083SPeter Grehan { 1326366f6083SPeter Grehan 1327366f6083SPeter Grehan return (vm->vcpu[vcpuid].stats); 1328366f6083SPeter Grehan } 1329e9027382SNeel Natu 1330e9027382SNeel Natu int 1331e9027382SNeel Natu vm_get_x2apic_state(struct vm *vm, int vcpuid, enum x2apic_state *state) 1332e9027382SNeel Natu { 1333e9027382SNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1334e9027382SNeel Natu return (EINVAL); 1335e9027382SNeel Natu 1336e9027382SNeel Natu *state = vm->vcpu[vcpuid].x2apic_state; 1337e9027382SNeel Natu 1338e9027382SNeel Natu return (0); 1339e9027382SNeel Natu } 1340e9027382SNeel Natu 1341e9027382SNeel Natu int 1342e9027382SNeel Natu vm_set_x2apic_state(struct vm *vm, int vcpuid, enum x2apic_state state) 1343e9027382SNeel Natu { 1344e9027382SNeel Natu if (vcpuid < 0 || vcpuid >= VM_MAXCPU) 1345e9027382SNeel Natu return (EINVAL); 1346e9027382SNeel Natu 13473f23d3caSNeel Natu if (state >= X2APIC_STATE_LAST) 1348e9027382SNeel Natu return (EINVAL); 1349e9027382SNeel Natu 1350e9027382SNeel Natu vm->vcpu[vcpuid].x2apic_state = state; 1351e9027382SNeel Natu 135273820fb0SNeel Natu vlapic_set_x2apic_state(vm, vcpuid, state); 135373820fb0SNeel Natu 1354e9027382SNeel Natu return (0); 1355e9027382SNeel Natu } 135675dd3366SNeel Natu 135722821874SNeel Natu /* 135822821874SNeel Natu * This function is called to ensure that a vcpu "sees" a pending event 135922821874SNeel Natu * as soon as possible: 136022821874SNeel Natu * - If the vcpu thread is sleeping then it is woken up. 136122821874SNeel Natu * - If the vcpu is running on a different host_cpu then an IPI will be directed 136222821874SNeel Natu * to the host_cpu to cause the vcpu to trap into the hypervisor. 136322821874SNeel Natu */ 136475dd3366SNeel Natu void 1365*de5ea6b6SNeel Natu vcpu_notify_event(struct vm *vm, int vcpuid, bool lapic_intr) 136675dd3366SNeel Natu { 136775dd3366SNeel Natu int hostcpu; 136875dd3366SNeel Natu struct vcpu *vcpu; 136975dd3366SNeel Natu 137075dd3366SNeel Natu vcpu = &vm->vcpu[vcpuid]; 137175dd3366SNeel Natu 1372f76fc5d4SNeel Natu vcpu_lock(vcpu); 137375dd3366SNeel Natu hostcpu = vcpu->hostcpu; 1374f76fc5d4SNeel Natu if (hostcpu == NOCPU) { 1375318224bbSNeel Natu if (vcpu->state == VCPU_SLEEPING) 1376f76fc5d4SNeel Natu wakeup_one(vcpu); 1377f76fc5d4SNeel Natu } else { 1378f76fc5d4SNeel Natu if (vcpu->state != VCPU_RUNNING) 1379f76fc5d4SNeel Natu panic("invalid vcpu state %d", vcpu->state); 1380*de5ea6b6SNeel Natu if (hostcpu != curcpu) { 1381*de5ea6b6SNeel Natu if (lapic_intr) 1382*de5ea6b6SNeel Natu vlapic_post_intr(vcpu->vlapic, hostcpu); 1383*de5ea6b6SNeel Natu else 138475dd3366SNeel Natu ipi_cpu(hostcpu, vmm_ipinum); 138575dd3366SNeel Natu } 1386*de5ea6b6SNeel Natu } 1387f76fc5d4SNeel Natu vcpu_unlock(vcpu); 1388f76fc5d4SNeel Natu } 1389318224bbSNeel Natu 1390318224bbSNeel Natu struct vmspace * 1391318224bbSNeel Natu vm_get_vmspace(struct vm *vm) 1392318224bbSNeel Natu { 1393318224bbSNeel Natu 1394318224bbSNeel Natu return (vm->vmspace); 1395318224bbSNeel Natu } 1396565bbb86SNeel Natu 1397565bbb86SNeel Natu int 1398565bbb86SNeel Natu vm_apicid2vcpuid(struct vm *vm, int apicid) 1399565bbb86SNeel Natu { 1400565bbb86SNeel Natu /* 1401565bbb86SNeel Natu * XXX apic id is assumed to be numerically identical to vcpu id 1402565bbb86SNeel Natu */ 1403565bbb86SNeel Natu return (apicid); 1404565bbb86SNeel Natu } 1405