xref: /freebsd/sys/amd64/include/vmm.h (revision 072b47f31c4f9b331ccc09113ea77bc2ba849c05)
1 /*-
2  * Copyright (c) 2011 NetApp, Inc.
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  *
14  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
15  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
18  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24  * SUCH DAMAGE.
25  *
26  * $FreeBSD$
27  */
28 
29 #ifndef _VMM_H_
30 #define	_VMM_H_
31 
32 #ifdef _KERNEL
33 
34 #define	VM_MAX_NAMELEN	32
35 
36 struct vm;
37 struct vm_exception;
38 struct vm_memory_segment;
39 struct seg_desc;
40 struct vm_exit;
41 struct vm_run;
42 struct vhpet;
43 struct vioapic;
44 struct vlapic;
45 struct vmspace;
46 struct vm_object;
47 struct pmap;
48 
49 enum x2apic_state;
50 
51 typedef int	(*vmm_init_func_t)(int ipinum);
52 typedef int	(*vmm_cleanup_func_t)(void);
53 typedef void	(*vmm_resume_func_t)(void);
54 typedef void *	(*vmi_init_func_t)(struct vm *vm, struct pmap *pmap);
55 typedef int	(*vmi_run_func_t)(void *vmi, int vcpu, register_t rip,
56 				  struct pmap *pmap, void *rendezvous_cookie);
57 typedef void	(*vmi_cleanup_func_t)(void *vmi);
58 typedef int	(*vmi_get_register_t)(void *vmi, int vcpu, int num,
59 				      uint64_t *retval);
60 typedef int	(*vmi_set_register_t)(void *vmi, int vcpu, int num,
61 				      uint64_t val);
62 typedef int	(*vmi_get_desc_t)(void *vmi, int vcpu, int num,
63 				  struct seg_desc *desc);
64 typedef int	(*vmi_set_desc_t)(void *vmi, int vcpu, int num,
65 				  struct seg_desc *desc);
66 typedef int	(*vmi_get_cap_t)(void *vmi, int vcpu, int num, int *retval);
67 typedef int	(*vmi_set_cap_t)(void *vmi, int vcpu, int num, int val);
68 typedef struct vmspace * (*vmi_vmspace_alloc)(vm_offset_t min, vm_offset_t max);
69 typedef void	(*vmi_vmspace_free)(struct vmspace *vmspace);
70 typedef struct vlapic * (*vmi_vlapic_init)(void *vmi, int vcpu);
71 typedef void	(*vmi_vlapic_cleanup)(void *vmi, struct vlapic *vlapic);
72 
73 struct vmm_ops {
74 	vmm_init_func_t		init;		/* module wide initialization */
75 	vmm_cleanup_func_t	cleanup;
76 	vmm_resume_func_t	resume;
77 
78 	vmi_init_func_t		vminit;		/* vm-specific initialization */
79 	vmi_run_func_t		vmrun;
80 	vmi_cleanup_func_t	vmcleanup;
81 	vmi_get_register_t	vmgetreg;
82 	vmi_set_register_t	vmsetreg;
83 	vmi_get_desc_t		vmgetdesc;
84 	vmi_set_desc_t		vmsetdesc;
85 	vmi_get_cap_t		vmgetcap;
86 	vmi_set_cap_t		vmsetcap;
87 	vmi_vmspace_alloc	vmspace_alloc;
88 	vmi_vmspace_free	vmspace_free;
89 	vmi_vlapic_init		vlapic_init;
90 	vmi_vlapic_cleanup	vlapic_cleanup;
91 };
92 
93 extern struct vmm_ops vmm_ops_intel;
94 extern struct vmm_ops vmm_ops_amd;
95 
96 int vm_create(const char *name, struct vm **retvm);
97 void vm_destroy(struct vm *vm);
98 const char *vm_name(struct vm *vm);
99 int vm_malloc(struct vm *vm, vm_paddr_t gpa, size_t len);
100 int vm_map_mmio(struct vm *vm, vm_paddr_t gpa, size_t len, vm_paddr_t hpa);
101 int vm_unmap_mmio(struct vm *vm, vm_paddr_t gpa, size_t len);
102 void *vm_gpa_hold(struct vm *, vm_paddr_t gpa, size_t len, int prot,
103 		  void **cookie);
104 void vm_gpa_release(void *cookie);
105 int vm_gpabase2memseg(struct vm *vm, vm_paddr_t gpabase,
106 	      struct vm_memory_segment *seg);
107 int vm_get_memobj(struct vm *vm, vm_paddr_t gpa, size_t len,
108 		  vm_offset_t *offset, struct vm_object **object);
109 boolean_t vm_mem_allocated(struct vm *vm, vm_paddr_t gpa);
110 int vm_get_register(struct vm *vm, int vcpu, int reg, uint64_t *retval);
111 int vm_set_register(struct vm *vm, int vcpu, int reg, uint64_t val);
112 int vm_get_seg_desc(struct vm *vm, int vcpu, int reg,
113 		    struct seg_desc *ret_desc);
114 int vm_set_seg_desc(struct vm *vm, int vcpu, int reg,
115 		    struct seg_desc *desc);
116 int vm_run(struct vm *vm, struct vm_run *vmrun);
117 int vm_inject_nmi(struct vm *vm, int vcpu);
118 int vm_nmi_pending(struct vm *vm, int vcpuid);
119 void vm_nmi_clear(struct vm *vm, int vcpuid);
120 uint64_t *vm_guest_msrs(struct vm *vm, int cpu);
121 struct vlapic *vm_lapic(struct vm *vm, int cpu);
122 struct vioapic *vm_ioapic(struct vm *vm);
123 struct vhpet *vm_hpet(struct vm *vm);
124 int vm_get_capability(struct vm *vm, int vcpu, int type, int *val);
125 int vm_set_capability(struct vm *vm, int vcpu, int type, int val);
126 int vm_get_x2apic_state(struct vm *vm, int vcpu, enum x2apic_state *state);
127 int vm_set_x2apic_state(struct vm *vm, int vcpu, enum x2apic_state state);
128 int vm_apicid2vcpuid(struct vm *vm, int apicid);
129 void vm_activate_cpu(struct vm *vm, int vcpu);
130 cpuset_t vm_active_cpus(struct vm *vm);
131 struct vm_exit *vm_exitinfo(struct vm *vm, int vcpuid);
132 
133 /*
134  * Rendezvous all vcpus specified in 'dest' and execute 'func(arg)'.
135  * The rendezvous 'func(arg)' is not allowed to do anything that will
136  * cause the thread to be put to sleep.
137  *
138  * If the rendezvous is being initiated from a vcpu context then the
139  * 'vcpuid' must refer to that vcpu, otherwise it should be set to -1.
140  *
141  * The caller cannot hold any locks when initiating the rendezvous.
142  *
143  * The implementation of this API may cause vcpus other than those specified
144  * by 'dest' to be stalled. The caller should not rely on any vcpus making
145  * forward progress when the rendezvous is in progress.
146  */
147 typedef void (*vm_rendezvous_func_t)(struct vm *vm, int vcpuid, void *arg);
148 void vm_smp_rendezvous(struct vm *vm, int vcpuid, cpuset_t dest,
149     vm_rendezvous_func_t func, void *arg);
150 
151 static __inline int
152 vcpu_rendezvous_pending(void *rendezvous_cookie)
153 {
154 
155 	return (*(uintptr_t *)rendezvous_cookie != 0);
156 }
157 
158 /*
159  * Return 1 if device indicated by bus/slot/func is supposed to be a
160  * pci passthrough device.
161  *
162  * Return 0 otherwise.
163  */
164 int vmm_is_pptdev(int bus, int slot, int func);
165 
166 void *vm_iommu_domain(struct vm *vm);
167 
168 enum vcpu_state {
169 	VCPU_IDLE,
170 	VCPU_FROZEN,
171 	VCPU_RUNNING,
172 	VCPU_SLEEPING,
173 };
174 
175 int vcpu_set_state(struct vm *vm, int vcpu, enum vcpu_state state,
176     bool from_idle);
177 enum vcpu_state vcpu_get_state(struct vm *vm, int vcpu, int *hostcpu);
178 
179 static int __inline
180 vcpu_is_running(struct vm *vm, int vcpu, int *hostcpu)
181 {
182 	return (vcpu_get_state(vm, vcpu, hostcpu) == VCPU_RUNNING);
183 }
184 
185 void *vcpu_stats(struct vm *vm, int vcpu);
186 void vcpu_notify_event(struct vm *vm, int vcpuid, bool lapic_intr);
187 struct vmspace *vm_get_vmspace(struct vm *vm);
188 int vm_assign_pptdev(struct vm *vm, int bus, int slot, int func);
189 int vm_unassign_pptdev(struct vm *vm, int bus, int slot, int func);
190 struct vatpic *vm_atpic(struct vm *vm);
191 
192 /*
193  * Inject exception 'vme' into the guest vcpu. This function returns 0 on
194  * success and non-zero on failure.
195  *
196  * Wrapper functions like 'vm_inject_gp()' should be preferred to calling
197  * this function directly because they enforce the trap-like or fault-like
198  * behavior of an exception.
199  *
200  * This function should only be called in the context of the thread that is
201  * executing this vcpu.
202  */
203 int vm_inject_exception(struct vm *vm, int vcpuid, struct vm_exception *vme);
204 
205 /*
206  * Returns 0 if there is no exception pending for this vcpu. Returns 1 if an
207  * exception is pending and also updates 'vme'. The pending exception is
208  * cleared when this function returns.
209  *
210  * This function should only be called in the context of the thread that is
211  * executing this vcpu.
212  */
213 int vm_exception_pending(struct vm *vm, int vcpuid, struct vm_exception *vme);
214 
215 void vm_inject_gp(struct vm *vm, int vcpuid); /* general protection fault */
216 void vm_inject_ud(struct vm *vm, int vcpuid); /* undefined instruction fault */
217 
218 #endif	/* KERNEL */
219 
220 #include <machine/vmm_instruction_emul.h>
221 
222 #define	VM_MAXCPU	16			/* maximum virtual cpus */
223 
224 /*
225  * Identifiers for architecturally defined registers.
226  */
227 enum vm_reg_name {
228 	VM_REG_GUEST_RAX,
229 	VM_REG_GUEST_RBX,
230 	VM_REG_GUEST_RCX,
231 	VM_REG_GUEST_RDX,
232 	VM_REG_GUEST_RSI,
233 	VM_REG_GUEST_RDI,
234 	VM_REG_GUEST_RBP,
235 	VM_REG_GUEST_R8,
236 	VM_REG_GUEST_R9,
237 	VM_REG_GUEST_R10,
238 	VM_REG_GUEST_R11,
239 	VM_REG_GUEST_R12,
240 	VM_REG_GUEST_R13,
241 	VM_REG_GUEST_R14,
242 	VM_REG_GUEST_R15,
243 	VM_REG_GUEST_CR0,
244 	VM_REG_GUEST_CR3,
245 	VM_REG_GUEST_CR4,
246 	VM_REG_GUEST_DR7,
247 	VM_REG_GUEST_RSP,
248 	VM_REG_GUEST_RIP,
249 	VM_REG_GUEST_RFLAGS,
250 	VM_REG_GUEST_ES,
251 	VM_REG_GUEST_CS,
252 	VM_REG_GUEST_SS,
253 	VM_REG_GUEST_DS,
254 	VM_REG_GUEST_FS,
255 	VM_REG_GUEST_GS,
256 	VM_REG_GUEST_LDTR,
257 	VM_REG_GUEST_TR,
258 	VM_REG_GUEST_IDTR,
259 	VM_REG_GUEST_GDTR,
260 	VM_REG_GUEST_EFER,
261 	VM_REG_LAST
262 };
263 
264 /*
265  * Identifiers for optional vmm capabilities
266  */
267 enum vm_cap_type {
268 	VM_CAP_HALT_EXIT,
269 	VM_CAP_MTRAP_EXIT,
270 	VM_CAP_PAUSE_EXIT,
271 	VM_CAP_UNRESTRICTED_GUEST,
272 	VM_CAP_ENABLE_INVPCID,
273 	VM_CAP_MAX
274 };
275 
276 enum x2apic_state {
277 	X2APIC_DISABLED,
278 	X2APIC_ENABLED,
279 	X2APIC_STATE_LAST
280 };
281 
282 /*
283  * The 'access' field has the format specified in Table 21-2 of the Intel
284  * Architecture Manual vol 3b.
285  *
286  * XXX The contents of the 'access' field are architecturally defined except
287  * bit 16 - Segment Unusable.
288  */
289 struct seg_desc {
290 	uint64_t	base;
291 	uint32_t	limit;
292 	uint32_t	access;
293 };
294 
295 enum vm_exitcode {
296 	VM_EXITCODE_INOUT,
297 	VM_EXITCODE_VMX,
298 	VM_EXITCODE_BOGUS,
299 	VM_EXITCODE_RDMSR,
300 	VM_EXITCODE_WRMSR,
301 	VM_EXITCODE_HLT,
302 	VM_EXITCODE_MTRAP,
303 	VM_EXITCODE_PAUSE,
304 	VM_EXITCODE_PAGING,
305 	VM_EXITCODE_INST_EMUL,
306 	VM_EXITCODE_SPINUP_AP,
307 	VM_EXITCODE_SPINDOWN_CPU,
308 	VM_EXITCODE_RENDEZVOUS,
309 	VM_EXITCODE_IOAPIC_EOI,
310 	VM_EXITCODE_MAX
311 };
312 
313 struct vm_exit {
314 	enum vm_exitcode	exitcode;
315 	int			inst_length;	/* 0 means unknown */
316 	uint64_t		rip;
317 	union {
318 		struct {
319 			uint16_t	bytes:3;	/* 1 or 2 or 4 */
320 			uint16_t	in:1;		/* out is 0, in is 1 */
321 			uint16_t	string:1;
322 			uint16_t	rep:1;
323 			uint16_t	port;
324 			uint32_t	eax;		/* valid for out */
325 		} inout;
326 		struct {
327 			uint64_t	gpa;
328 			int		fault_type;
329 		} paging;
330 		struct {
331 			uint64_t	gpa;
332 			uint64_t	gla;
333 			uint64_t	cr3;
334 			enum vie_cpu_mode cpu_mode;
335 			enum vie_paging_mode paging_mode;
336 			struct vie	vie;
337 		} inst_emul;
338 		/*
339 		 * VMX specific payload. Used when there is no "better"
340 		 * exitcode to represent the VM-exit.
341 		 */
342 		struct {
343 			int		status;		/* vmx inst status */
344 			/*
345 			 * 'exit_reason' and 'exit_qualification' are valid
346 			 * only if 'status' is zero.
347 			 */
348 			uint32_t	exit_reason;
349 			uint64_t	exit_qualification;
350 			/*
351 			 * 'inst_error' and 'inst_type' are valid
352 			 * only if 'status' is non-zero.
353 			 */
354 			int		inst_type;
355 			int		inst_error;
356 		} vmx;
357 		struct {
358 			uint32_t	code;		/* ecx value */
359 			uint64_t	wval;
360 		} msr;
361 		struct {
362 			int		vcpu;
363 			uint64_t	rip;
364 		} spinup_ap;
365 		struct {
366 			uint64_t	rflags;
367 		} hlt;
368 		struct {
369 			int		vector;
370 		} ioapic_eoi;
371 	} u;
372 };
373 
374 #endif	/* _VMM_H_ */
375