1 /* SPDX-License-Identifier: GPL-2.0-only */
2 /*
3  * tools/testing/selftests/kvm/include/kvm_util.h
4  *
5  * Copyright (C) 2018, Google LLC.
6  */
7 #ifndef SELFTEST_KVM_UTIL_H
8 #define SELFTEST_KVM_UTIL_H
9 
10 #include "test_util.h"
11 
12 #include "asm/kvm.h"
13 #include "linux/list.h"
14 #include "linux/kvm.h"
15 #include <sys/ioctl.h>
16 
17 #include "sparsebit.h"
18 
19 #define KVM_DEV_PATH "/dev/kvm"
20 #define KVM_MAX_VCPUS 512
21 
22 #define NSEC_PER_SEC 1000000000L
23 
24 /*
25  * Callers of kvm_util only have an incomplete/opaque description of the
26  * structure kvm_util is using to maintain the state of a VM.
27  */
28 struct kvm_vm;
29 
30 typedef uint64_t vm_paddr_t; /* Virtual Machine (Guest) physical address */
31 typedef uint64_t vm_vaddr_t; /* Virtual Machine (Guest) virtual address */
32 
33 /* Minimum allocated guest virtual and physical addresses */
34 #define KVM_UTIL_MIN_VADDR		0x2000
35 #define KVM_GUEST_PAGE_TABLE_MIN_PADDR	0x180000
36 
37 #define DEFAULT_GUEST_PHY_PAGES		512
38 #define DEFAULT_GUEST_STACK_VADDR_MIN	0xab6000
39 #define DEFAULT_STACK_PGS		5
40 
41 enum vm_guest_mode {
42 	VM_MODE_P52V48_4K,
43 	VM_MODE_P52V48_64K,
44 	VM_MODE_P48V48_4K,
45 	VM_MODE_P48V48_64K,
46 	VM_MODE_P40V48_4K,
47 	VM_MODE_P40V48_64K,
48 	VM_MODE_PXXV48_4K,	/* For 48bits VA but ANY bits PA */
49 	VM_MODE_P47V64_4K,
50 	VM_MODE_P44V64_4K,
51 	NUM_VM_MODES,
52 };
53 
54 #if defined(__aarch64__)
55 
56 #define VM_MODE_DEFAULT			VM_MODE_P40V48_4K
57 #define MIN_PAGE_SHIFT			12U
58 #define ptes_per_page(page_size)	((page_size) / 8)
59 
60 #elif defined(__x86_64__)
61 
62 #define VM_MODE_DEFAULT			VM_MODE_PXXV48_4K
63 #define MIN_PAGE_SHIFT			12U
64 #define ptes_per_page(page_size)	((page_size) / 8)
65 
66 #elif defined(__s390x__)
67 
68 #define VM_MODE_DEFAULT			VM_MODE_P44V64_4K
69 #define MIN_PAGE_SHIFT			12U
70 #define ptes_per_page(page_size)	((page_size) / 16)
71 
72 #endif
73 
74 #define MIN_PAGE_SIZE		(1U << MIN_PAGE_SHIFT)
75 #define PTES_PER_MIN_PAGE	ptes_per_page(MIN_PAGE_SIZE)
76 
77 struct vm_guest_mode_params {
78 	unsigned int pa_bits;
79 	unsigned int va_bits;
80 	unsigned int page_size;
81 	unsigned int page_shift;
82 };
83 extern const struct vm_guest_mode_params vm_guest_mode_params[];
84 
85 int open_kvm_dev_path_or_exit(void);
86 int kvm_check_cap(long cap);
87 int vm_enable_cap(struct kvm_vm *vm, struct kvm_enable_cap *cap);
88 int vcpu_enable_cap(struct kvm_vm *vm, uint32_t vcpu_id,
89 		    struct kvm_enable_cap *cap);
90 void vm_enable_dirty_ring(struct kvm_vm *vm, uint32_t ring_size);
91 const char *vm_guest_mode_string(uint32_t i);
92 
93 struct kvm_vm *vm_create(enum vm_guest_mode mode, uint64_t phy_pages, int perm);
94 void kvm_vm_free(struct kvm_vm *vmp);
95 void kvm_vm_restart(struct kvm_vm *vmp, int perm);
96 void kvm_vm_release(struct kvm_vm *vmp);
97 void kvm_vm_get_dirty_log(struct kvm_vm *vm, int slot, void *log);
98 void kvm_vm_clear_dirty_log(struct kvm_vm *vm, int slot, void *log,
99 			    uint64_t first_page, uint32_t num_pages);
100 uint32_t kvm_vm_reset_dirty_ring(struct kvm_vm *vm);
101 
102 int kvm_memcmp_hva_gva(void *hva, struct kvm_vm *vm, const vm_vaddr_t gva,
103 		       size_t len);
104 
105 void kvm_vm_elf_load(struct kvm_vm *vm, const char *filename);
106 
107 void vm_dump(FILE *stream, struct kvm_vm *vm, uint8_t indent);
108 
109 /*
110  * VM VCPU Dump
111  *
112  * Input Args:
113  *   stream - Output FILE stream
114  *   vm     - Virtual Machine
115  *   vcpuid - VCPU ID
116  *   indent - Left margin indent amount
117  *
118  * Output Args: None
119  *
120  * Return: None
121  *
122  * Dumps the current state of the VCPU specified by @vcpuid, within the VM
123  * given by @vm, to the FILE stream given by @stream.
124  */
125 void vcpu_dump(FILE *stream, struct kvm_vm *vm, uint32_t vcpuid,
126 	       uint8_t indent);
127 
128 void vm_create_irqchip(struct kvm_vm *vm);
129 
130 void vm_userspace_mem_region_add(struct kvm_vm *vm,
131 	enum vm_mem_backing_src_type src_type,
132 	uint64_t guest_paddr, uint32_t slot, uint64_t npages,
133 	uint32_t flags);
134 
135 void vcpu_ioctl(struct kvm_vm *vm, uint32_t vcpuid, unsigned long ioctl,
136 		void *arg);
137 int _vcpu_ioctl(struct kvm_vm *vm, uint32_t vcpuid, unsigned long ioctl,
138 		void *arg);
139 void vm_ioctl(struct kvm_vm *vm, unsigned long ioctl, void *arg);
140 int _vm_ioctl(struct kvm_vm *vm, unsigned long cmd, void *arg);
141 void kvm_ioctl(struct kvm_vm *vm, unsigned long ioctl, void *arg);
142 int _kvm_ioctl(struct kvm_vm *vm, unsigned long ioctl, void *arg);
143 void vm_mem_region_set_flags(struct kvm_vm *vm, uint32_t slot, uint32_t flags);
144 void vm_mem_region_move(struct kvm_vm *vm, uint32_t slot, uint64_t new_gpa);
145 void vm_mem_region_delete(struct kvm_vm *vm, uint32_t slot);
146 void vm_vcpu_add(struct kvm_vm *vm, uint32_t vcpuid);
147 vm_vaddr_t vm_vaddr_alloc(struct kvm_vm *vm, size_t sz, vm_vaddr_t vaddr_min);
148 vm_vaddr_t vm_vaddr_alloc_pages(struct kvm_vm *vm, int nr_pages);
149 vm_vaddr_t vm_vaddr_alloc_page(struct kvm_vm *vm);
150 
151 void virt_map(struct kvm_vm *vm, uint64_t vaddr, uint64_t paddr,
152 	      unsigned int npages);
153 void *addr_gpa2hva(struct kvm_vm *vm, vm_paddr_t gpa);
154 void *addr_gva2hva(struct kvm_vm *vm, vm_vaddr_t gva);
155 vm_paddr_t addr_hva2gpa(struct kvm_vm *vm, void *hva);
156 void *addr_gpa2alias(struct kvm_vm *vm, vm_paddr_t gpa);
157 
158 /*
159  * Address Guest Virtual to Guest Physical
160  *
161  * Input Args:
162  *   vm - Virtual Machine
163  *   gva - VM virtual address
164  *
165  * Output Args: None
166  *
167  * Return:
168  *   Equivalent VM physical address
169  *
170  * Returns the VM physical address of the translated VM virtual
171  * address given by @gva.
172  */
173 vm_paddr_t addr_gva2gpa(struct kvm_vm *vm, vm_vaddr_t gva);
174 
175 struct kvm_run *vcpu_state(struct kvm_vm *vm, uint32_t vcpuid);
176 void vcpu_run(struct kvm_vm *vm, uint32_t vcpuid);
177 int _vcpu_run(struct kvm_vm *vm, uint32_t vcpuid);
178 int vcpu_get_fd(struct kvm_vm *vm, uint32_t vcpuid);
179 void vcpu_run_complete_io(struct kvm_vm *vm, uint32_t vcpuid);
180 void vcpu_set_guest_debug(struct kvm_vm *vm, uint32_t vcpuid,
181 			  struct kvm_guest_debug *debug);
182 void vcpu_set_mp_state(struct kvm_vm *vm, uint32_t vcpuid,
183 		       struct kvm_mp_state *mp_state);
184 struct kvm_reg_list *vcpu_get_reg_list(struct kvm_vm *vm, uint32_t vcpuid);
185 void vcpu_regs_get(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_regs *regs);
186 void vcpu_regs_set(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_regs *regs);
187 
188 /*
189  * VM VCPU Args Set
190  *
191  * Input Args:
192  *   vm - Virtual Machine
193  *   vcpuid - VCPU ID
194  *   num - number of arguments
195  *   ... - arguments, each of type uint64_t
196  *
197  * Output Args: None
198  *
199  * Return: None
200  *
201  * Sets the first @num function input registers of the VCPU with @vcpuid,
202  * per the C calling convention of the architecture, to the values given
203  * as variable args. Each of the variable args is expected to be of type
204  * uint64_t. The maximum @num can be is specific to the architecture.
205  */
206 void vcpu_args_set(struct kvm_vm *vm, uint32_t vcpuid, unsigned int num, ...);
207 
208 void vcpu_sregs_get(struct kvm_vm *vm, uint32_t vcpuid,
209 		    struct kvm_sregs *sregs);
210 void vcpu_sregs_set(struct kvm_vm *vm, uint32_t vcpuid,
211 		    struct kvm_sregs *sregs);
212 int _vcpu_sregs_set(struct kvm_vm *vm, uint32_t vcpuid,
213 		    struct kvm_sregs *sregs);
214 void vcpu_fpu_get(struct kvm_vm *vm, uint32_t vcpuid,
215 		  struct kvm_fpu *fpu);
216 void vcpu_fpu_set(struct kvm_vm *vm, uint32_t vcpuid,
217 		  struct kvm_fpu *fpu);
218 void vcpu_get_reg(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_one_reg *reg);
219 void vcpu_set_reg(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_one_reg *reg);
220 #ifdef __KVM_HAVE_VCPU_EVENTS
221 void vcpu_events_get(struct kvm_vm *vm, uint32_t vcpuid,
222 		     struct kvm_vcpu_events *events);
223 void vcpu_events_set(struct kvm_vm *vm, uint32_t vcpuid,
224 		     struct kvm_vcpu_events *events);
225 #endif
226 #ifdef __x86_64__
227 void vcpu_nested_state_get(struct kvm_vm *vm, uint32_t vcpuid,
228 			   struct kvm_nested_state *state);
229 int vcpu_nested_state_set(struct kvm_vm *vm, uint32_t vcpuid,
230 			  struct kvm_nested_state *state, bool ignore_error);
231 #endif
232 void *vcpu_map_dirty_ring(struct kvm_vm *vm, uint32_t vcpuid);
233 
234 int _kvm_device_check_attr(int dev_fd, uint32_t group, uint64_t attr);
235 int kvm_device_check_attr(int dev_fd, uint32_t group, uint64_t attr);
236 int _kvm_create_device(struct kvm_vm *vm, uint64_t type, bool test, int *fd);
237 int kvm_create_device(struct kvm_vm *vm, uint64_t type, bool test);
238 int _kvm_device_access(int dev_fd, uint32_t group, uint64_t attr,
239 		       void *val, bool write);
240 int kvm_device_access(int dev_fd, uint32_t group, uint64_t attr,
241 		      void *val, bool write);
242 
243 int _vcpu_has_device_attr(struct kvm_vm *vm, uint32_t vcpuid, uint32_t group,
244 			  uint64_t attr);
245 int vcpu_has_device_attr(struct kvm_vm *vm, uint32_t vcpuid, uint32_t group,
246 			 uint64_t attr);
247 int _vcpu_access_device_attr(struct kvm_vm *vm, uint32_t vcpuid, uint32_t group,
248 			  uint64_t attr, void *val, bool write);
249 int vcpu_access_device_attr(struct kvm_vm *vm, uint32_t vcpuid, uint32_t group,
250 			 uint64_t attr, void *val, bool write);
251 
252 const char *exit_reason_str(unsigned int exit_reason);
253 
254 void virt_pgd_alloc(struct kvm_vm *vm);
255 
256 /*
257  * VM Virtual Page Map
258  *
259  * Input Args:
260  *   vm - Virtual Machine
261  *   vaddr - VM Virtual Address
262  *   paddr - VM Physical Address
263  *   memslot - Memory region slot for new virtual translation tables
264  *
265  * Output Args: None
266  *
267  * Return: None
268  *
269  * Within @vm, creates a virtual translation for the page starting
270  * at @vaddr to the page starting at @paddr.
271  */
272 void virt_pg_map(struct kvm_vm *vm, uint64_t vaddr, uint64_t paddr);
273 
274 vm_paddr_t vm_phy_page_alloc(struct kvm_vm *vm, vm_paddr_t paddr_min,
275 			     uint32_t memslot);
276 vm_paddr_t vm_phy_pages_alloc(struct kvm_vm *vm, size_t num,
277 			      vm_paddr_t paddr_min, uint32_t memslot);
278 vm_paddr_t vm_alloc_page_table(struct kvm_vm *vm);
279 
280 /*
281  * Create a VM with reasonable defaults
282  *
283  * Input Args:
284  *   vcpuid - The id of the single VCPU to add to the VM.
285  *   extra_mem_pages - The number of extra pages to add (this will
286  *                     decide how much extra space we will need to
287  *                     setup the page tables using memslot 0)
288  *   guest_code - The vCPU's entry point
289  *
290  * Output Args: None
291  *
292  * Return:
293  *   Pointer to opaque structure that describes the created VM.
294  */
295 struct kvm_vm *vm_create_default(uint32_t vcpuid, uint64_t extra_mem_pages,
296 				 void *guest_code);
297 
298 /* Same as vm_create_default, but can be used for more than one vcpu */
299 struct kvm_vm *vm_create_default_with_vcpus(uint32_t nr_vcpus, uint64_t extra_mem_pages,
300 					    uint32_t num_percpu_pages, void *guest_code,
301 					    uint32_t vcpuids[]);
302 
303 /* Like vm_create_default_with_vcpus, but accepts mode and slot0 memory as a parameter */
304 struct kvm_vm *vm_create_with_vcpus(enum vm_guest_mode mode, uint32_t nr_vcpus,
305 				    uint64_t slot0_mem_pages, uint64_t extra_mem_pages,
306 				    uint32_t num_percpu_pages, void *guest_code,
307 				    uint32_t vcpuids[]);
308 
309 /*
310  * Adds a vCPU with reasonable defaults (e.g. a stack)
311  *
312  * Input Args:
313  *   vm - Virtual Machine
314  *   vcpuid - The id of the VCPU to add to the VM.
315  *   guest_code - The vCPU's entry point
316  */
317 void vm_vcpu_add_default(struct kvm_vm *vm, uint32_t vcpuid, void *guest_code);
318 
319 bool vm_is_unrestricted_guest(struct kvm_vm *vm);
320 
321 unsigned int vm_get_page_size(struct kvm_vm *vm);
322 unsigned int vm_get_page_shift(struct kvm_vm *vm);
323 uint64_t vm_get_max_gfn(struct kvm_vm *vm);
324 int vm_get_fd(struct kvm_vm *vm);
325 
326 unsigned int vm_calc_num_guest_pages(enum vm_guest_mode mode, size_t size);
327 unsigned int vm_num_host_pages(enum vm_guest_mode mode, unsigned int num_guest_pages);
328 unsigned int vm_num_guest_pages(enum vm_guest_mode mode, unsigned int num_host_pages);
329 static inline unsigned int
330 vm_adjust_num_guest_pages(enum vm_guest_mode mode, unsigned int num_guest_pages)
331 {
332 	unsigned int n;
333 	n = vm_num_guest_pages(mode, vm_num_host_pages(mode, num_guest_pages));
334 #ifdef __s390x__
335 	/* s390 requires 1M aligned guest sizes */
336 	n = (n + 255) & ~255;
337 #endif
338 	return n;
339 }
340 
341 struct kvm_userspace_memory_region *
342 kvm_userspace_memory_region_find(struct kvm_vm *vm, uint64_t start,
343 				 uint64_t end);
344 
345 struct kvm_dirty_log *
346 allocate_kvm_dirty_log(struct kvm_userspace_memory_region *region);
347 
348 int vm_create_device(struct kvm_vm *vm, struct kvm_create_device *cd);
349 
350 #define sync_global_to_guest(vm, g) ({				\
351 	typeof(g) *_p = addr_gva2hva(vm, (vm_vaddr_t)&(g));	\
352 	memcpy(_p, &(g), sizeof(g));				\
353 })
354 
355 #define sync_global_from_guest(vm, g) ({			\
356 	typeof(g) *_p = addr_gva2hva(vm, (vm_vaddr_t)&(g));	\
357 	memcpy(&(g), _p, sizeof(g));				\
358 })
359 
360 void assert_on_unhandled_exception(struct kvm_vm *vm, uint32_t vcpuid);
361 
362 /* Common ucalls */
363 enum {
364 	UCALL_NONE,
365 	UCALL_SYNC,
366 	UCALL_ABORT,
367 	UCALL_DONE,
368 	UCALL_UNHANDLED,
369 };
370 
371 #define UCALL_MAX_ARGS 6
372 
373 struct ucall {
374 	uint64_t cmd;
375 	uint64_t args[UCALL_MAX_ARGS];
376 };
377 
378 void ucall_init(struct kvm_vm *vm, void *arg);
379 void ucall_uninit(struct kvm_vm *vm);
380 void ucall(uint64_t cmd, int nargs, ...);
381 uint64_t get_ucall(struct kvm_vm *vm, uint32_t vcpu_id, struct ucall *uc);
382 
383 #define GUEST_SYNC_ARGS(stage, arg1, arg2, arg3, arg4)	\
384 				ucall(UCALL_SYNC, 6, "hello", stage, arg1, arg2, arg3, arg4)
385 #define GUEST_SYNC(stage)	ucall(UCALL_SYNC, 2, "hello", stage)
386 #define GUEST_DONE()		ucall(UCALL_DONE, 0)
387 #define __GUEST_ASSERT(_condition, _condstr, _nargs, _args...) do {    \
388 	if (!(_condition))                                              \
389 		ucall(UCALL_ABORT, 2 + _nargs,                          \
390 			"Failed guest assert: "                         \
391 			_condstr, __LINE__, _args);                     \
392 } while (0)
393 
394 #define GUEST_ASSERT(_condition) \
395 	__GUEST_ASSERT(_condition, #_condition, 0, 0)
396 
397 #define GUEST_ASSERT_1(_condition, arg1) \
398 	__GUEST_ASSERT(_condition, #_condition, 1, (arg1))
399 
400 #define GUEST_ASSERT_2(_condition, arg1, arg2) \
401 	__GUEST_ASSERT(_condition, #_condition, 2, (arg1), (arg2))
402 
403 #define GUEST_ASSERT_3(_condition, arg1, arg2, arg3) \
404 	__GUEST_ASSERT(_condition, #_condition, 3, (arg1), (arg2), (arg3))
405 
406 #define GUEST_ASSERT_4(_condition, arg1, arg2, arg3, arg4) \
407 	__GUEST_ASSERT(_condition, #_condition, 4, (arg1), (arg2), (arg3), (arg4))
408 
409 #define GUEST_ASSERT_EQ(a, b) __GUEST_ASSERT((a) == (b), #a " == " #b, 2, a, b)
410 
411 int vm_get_stats_fd(struct kvm_vm *vm);
412 int vcpu_get_stats_fd(struct kvm_vm *vm, uint32_t vcpuid);
413 
414 uint32_t guest_get_vcpuid(void);
415 
416 #endif /* SELFTEST_KVM_UTIL_H */
417