blob: 8615bf6b27c9aeffec42988c753397000a9dd0c6 [file] [log] [blame]
aliguori05330442008-11-05 16:29:27 +00001/*
2 * QEMU KVM support
3 *
4 * Copyright IBM, Corp. 2008
aliguori5832d1f2008-11-24 19:36:26 +00005 * Red Hat, Inc. 2008
aliguori05330442008-11-05 16:29:27 +00006 *
7 * Authors:
8 * Anthony Liguori <aliguori@us.ibm.com>
aliguori5832d1f2008-11-24 19:36:26 +00009 * Glauber Costa <gcosta@redhat.com>
aliguori05330442008-11-05 16:29:27 +000010 *
11 * This work is licensed under the terms of the GNU GPL, version 2 or later.
12 * See the COPYING file in the top-level directory.
13 *
14 */
15
16#include <sys/types.h>
17#include <sys/ioctl.h>
18#include <sys/mman.h>
aliguori984b5182008-11-13 19:21:00 +000019#include <stdarg.h>
aliguori05330442008-11-05 16:29:27 +000020
21#include <linux/kvm.h>
22
23#include "qemu-common.h"
24#include "sysemu.h"
25#include "kvm.h"
26
27//#define DEBUG_KVM
28
29#ifdef DEBUG_KVM
30#define dprintf(fmt, ...) \
31 do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
32#else
33#define dprintf(fmt, ...) \
34 do { } while (0)
35#endif
36
aliguori34fc6432008-11-19 17:41:58 +000037typedef struct KVMSlot
38{
39 target_phys_addr_t start_addr;
40 ram_addr_t memory_size;
41 ram_addr_t phys_offset;
42 int slot;
43 int flags;
44} KVMSlot;
aliguori05330442008-11-05 16:29:27 +000045
aliguori5832d1f2008-11-24 19:36:26 +000046typedef struct kvm_dirty_log KVMDirtyLog;
47
aliguori05330442008-11-05 16:29:27 +000048int kvm_allowed = 0;
49
50struct KVMState
51{
52 KVMSlot slots[32];
53 int fd;
54 int vmfd;
55};
56
57static KVMState *kvm_state;
58
59static KVMSlot *kvm_alloc_slot(KVMState *s)
60{
61 int i;
62
63 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
aliguori62d60e82008-11-18 15:41:18 +000064 /* KVM private memory slots */
65 if (i >= 8 && i < 12)
66 continue;
aliguori05330442008-11-05 16:29:27 +000067 if (s->slots[i].memory_size == 0)
68 return &s->slots[i];
69 }
70
71 return NULL;
72}
73
74static KVMSlot *kvm_lookup_slot(KVMState *s, target_phys_addr_t start_addr)
75{
76 int i;
77
78 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
79 KVMSlot *mem = &s->slots[i];
80
aliguori34fc6432008-11-19 17:41:58 +000081 if (start_addr >= mem->start_addr &&
82 start_addr < (mem->start_addr + mem->memory_size))
aliguori05330442008-11-05 16:29:27 +000083 return mem;
84 }
85
86 return NULL;
87}
88
aliguori5832d1f2008-11-24 19:36:26 +000089static int kvm_set_user_memory_region(KVMState *s, KVMSlot *slot)
90{
91 struct kvm_userspace_memory_region mem;
92
93 mem.slot = slot->slot;
94 mem.guest_phys_addr = slot->start_addr;
95 mem.memory_size = slot->memory_size;
96 mem.userspace_addr = (unsigned long)phys_ram_base + slot->phys_offset;
97 mem.flags = slot->flags;
98
99 return kvm_vm_ioctl(s, KVM_SET_USER_MEMORY_REGION, &mem);
100}
101
102
aliguori05330442008-11-05 16:29:27 +0000103int kvm_init_vcpu(CPUState *env)
104{
105 KVMState *s = kvm_state;
106 long mmap_size;
107 int ret;
108
109 dprintf("kvm_init_vcpu\n");
110
aliguori984b5182008-11-13 19:21:00 +0000111 ret = kvm_vm_ioctl(s, KVM_CREATE_VCPU, env->cpu_index);
aliguori05330442008-11-05 16:29:27 +0000112 if (ret < 0) {
113 dprintf("kvm_create_vcpu failed\n");
114 goto err;
115 }
116
117 env->kvm_fd = ret;
118 env->kvm_state = s;
119
120 mmap_size = kvm_ioctl(s, KVM_GET_VCPU_MMAP_SIZE, 0);
121 if (mmap_size < 0) {
122 dprintf("KVM_GET_VCPU_MMAP_SIZE failed\n");
123 goto err;
124 }
125
126 env->kvm_run = mmap(NULL, mmap_size, PROT_READ | PROT_WRITE, MAP_SHARED,
127 env->kvm_fd, 0);
128 if (env->kvm_run == MAP_FAILED) {
129 ret = -errno;
130 dprintf("mmap'ing vcpu state failed\n");
131 goto err;
132 }
133
134 ret = kvm_arch_init_vcpu(env);
135
136err:
137 return ret;
138}
139
aliguori5832d1f2008-11-24 19:36:26 +0000140/*
141 * dirty pages logging control
142 */
143static int kvm_dirty_pages_log_change(target_phys_addr_t phys_addr, target_phys_addr_t end_addr,
144 unsigned flags,
145 unsigned mask)
146{
147 KVMState *s = kvm_state;
148 KVMSlot *mem = kvm_lookup_slot(s, phys_addr);
149 if (mem == NULL) {
150 dprintf("invalid parameters %llx-%llx\n", phys_addr, end_addr);
151 return -EINVAL;
152 }
153
154 flags = (mem->flags & ~mask) | flags;
155 /* Nothing changed, no need to issue ioctl */
156 if (flags == mem->flags)
157 return 0;
158
159 mem->flags = flags;
160
161 return kvm_set_user_memory_region(s, mem);
162}
163
164int kvm_log_start(target_phys_addr_t phys_addr, target_phys_addr_t end_addr)
165{
166 return kvm_dirty_pages_log_change(phys_addr, end_addr,
167 KVM_MEM_LOG_DIRTY_PAGES,
168 KVM_MEM_LOG_DIRTY_PAGES);
169}
170
171int kvm_log_stop(target_phys_addr_t phys_addr, target_phys_addr_t end_addr)
172{
173 return kvm_dirty_pages_log_change(phys_addr, end_addr,
174 0,
175 KVM_MEM_LOG_DIRTY_PAGES);
176}
177
178/**
179 * kvm_physical_sync_dirty_bitmap - Grab dirty bitmap from kernel space
180 * This function updates qemu's dirty bitmap using cpu_physical_memory_set_dirty().
181 * This means all bits are set to dirty.
182 *
183 * @start_add: start of logged region. This is what we use to search the memslot
184 * @end_addr: end of logged region.
185 */
186void kvm_physical_sync_dirty_bitmap(target_phys_addr_t start_addr, target_phys_addr_t end_addr)
187{
188 KVMState *s = kvm_state;
189 KVMDirtyLog d;
190 KVMSlot *mem = kvm_lookup_slot(s, start_addr);
191 unsigned long alloc_size;
192 ram_addr_t addr;
193 target_phys_addr_t phys_addr = start_addr;
194
195 dprintf("sync addr: %llx into %lx\n", start_addr, mem->phys_offset);
196 if (mem == NULL) {
197 fprintf(stderr, "BUG: %s: invalid parameters\n", __func__);
198 return;
199 }
200
201 alloc_size = mem->memory_size >> TARGET_PAGE_BITS / sizeof(d.dirty_bitmap);
202 d.dirty_bitmap = qemu_mallocz(alloc_size);
203
204 if (d.dirty_bitmap == NULL) {
205 dprintf("Could not allocate dirty bitmap\n");
206 return;
207 }
208
209 d.slot = mem->slot;
210 dprintf("slot %d, phys_addr %llx, uaddr: %llx\n",
211 d.slot, mem->start_addr, mem->phys_offset);
212
213 if (kvm_vm_ioctl(s, KVM_GET_DIRTY_LOG, &d) == -1) {
214 dprintf("ioctl failed %d\n", errno);
215 goto out;
216 }
217
218 phys_addr = start_addr;
219 for (addr = mem->phys_offset; phys_addr < end_addr; phys_addr+= TARGET_PAGE_SIZE, addr += TARGET_PAGE_SIZE) {
220 unsigned long *bitmap = (unsigned long *)d.dirty_bitmap;
221 unsigned nr = (phys_addr - start_addr) >> TARGET_PAGE_BITS;
222 unsigned word = nr / (sizeof(*bitmap) * 8);
223 unsigned bit = nr % (sizeof(*bitmap) * 8);
224 if ((bitmap[word] >> bit) & 1)
225 cpu_physical_memory_set_dirty(addr);
226 }
227out:
228 qemu_free(d.dirty_bitmap);
229}
230
aliguori05330442008-11-05 16:29:27 +0000231int kvm_init(int smp_cpus)
232{
233 KVMState *s;
234 int ret;
235 int i;
236
237 if (smp_cpus > 1)
238 return -EINVAL;
239
240 s = qemu_mallocz(sizeof(KVMState));
241 if (s == NULL)
242 return -ENOMEM;
243
244 for (i = 0; i < ARRAY_SIZE(s->slots); i++)
245 s->slots[i].slot = i;
246
247 s->vmfd = -1;
248 s->fd = open("/dev/kvm", O_RDWR);
249 if (s->fd == -1) {
250 fprintf(stderr, "Could not access KVM kernel module: %m\n");
251 ret = -errno;
252 goto err;
253 }
254
255 ret = kvm_ioctl(s, KVM_GET_API_VERSION, 0);
256 if (ret < KVM_API_VERSION) {
257 if (ret > 0)
258 ret = -EINVAL;
259 fprintf(stderr, "kvm version too old\n");
260 goto err;
261 }
262
263 if (ret > KVM_API_VERSION) {
264 ret = -EINVAL;
265 fprintf(stderr, "kvm version not supported\n");
266 goto err;
267 }
268
269 s->vmfd = kvm_ioctl(s, KVM_CREATE_VM, 0);
270 if (s->vmfd < 0)
271 goto err;
272
273 /* initially, KVM allocated its own memory and we had to jump through
274 * hooks to make phys_ram_base point to this. Modern versions of KVM
275 * just use a user allocated buffer so we can use phys_ram_base
276 * unmodified. Make sure we have a sufficiently modern version of KVM.
277 */
aliguori984b5182008-11-13 19:21:00 +0000278 ret = kvm_ioctl(s, KVM_CHECK_EXTENSION, KVM_CAP_USER_MEMORY);
aliguori05330442008-11-05 16:29:27 +0000279 if (ret <= 0) {
280 if (ret == 0)
281 ret = -EINVAL;
282 fprintf(stderr, "kvm does not support KVM_CAP_USER_MEMORY\n");
283 goto err;
284 }
285
aliguorid85dc282008-12-09 19:59:09 +0000286 /* There was a nasty bug in < kvm-80 that prevents memory slots from being
287 * destroyed properly. Since we rely on this capability, refuse to work
288 * with any kernel without this capability. */
289 ret = kvm_ioctl(s, KVM_CHECK_EXTENSION,
290 KVM_CAP_DESTROY_MEMORY_REGION_WORKS);
291 if (ret <= 0) {
292 if (ret == 0)
293 ret = -EINVAL;
294
295 fprintf(stderr,
296 "KVM kernel module broken (DESTROY_MEMORY_REGION)\n"
297 "Please upgrade to at least kvm-81.\n");
298 goto err;
299 }
300
aliguori05330442008-11-05 16:29:27 +0000301 ret = kvm_arch_init(s, smp_cpus);
302 if (ret < 0)
303 goto err;
304
305 kvm_state = s;
306
307 return 0;
308
309err:
310 if (s) {
311 if (s->vmfd != -1)
312 close(s->vmfd);
313 if (s->fd != -1)
314 close(s->fd);
315 }
316 qemu_free(s);
317
318 return ret;
319}
320
321static int kvm_handle_io(CPUState *env, uint16_t port, void *data,
322 int direction, int size, uint32_t count)
323{
324 int i;
325 uint8_t *ptr = data;
326
327 for (i = 0; i < count; i++) {
328 if (direction == KVM_EXIT_IO_IN) {
329 switch (size) {
330 case 1:
331 stb_p(ptr, cpu_inb(env, port));
332 break;
333 case 2:
334 stw_p(ptr, cpu_inw(env, port));
335 break;
336 case 4:
337 stl_p(ptr, cpu_inl(env, port));
338 break;
339 }
340 } else {
341 switch (size) {
342 case 1:
343 cpu_outb(env, port, ldub_p(ptr));
344 break;
345 case 2:
346 cpu_outw(env, port, lduw_p(ptr));
347 break;
348 case 4:
349 cpu_outl(env, port, ldl_p(ptr));
350 break;
351 }
352 }
353
354 ptr += size;
355 }
356
357 return 1;
358}
359
360int kvm_cpu_exec(CPUState *env)
361{
362 struct kvm_run *run = env->kvm_run;
363 int ret;
364
365 dprintf("kvm_cpu_exec()\n");
366
367 do {
368 kvm_arch_pre_run(env, run);
369
370 if ((env->interrupt_request & CPU_INTERRUPT_EXIT)) {
371 dprintf("interrupt exit requested\n");
372 ret = 0;
373 break;
374 }
375
376 ret = kvm_vcpu_ioctl(env, KVM_RUN, 0);
377 kvm_arch_post_run(env, run);
378
379 if (ret == -EINTR || ret == -EAGAIN) {
380 dprintf("io window exit\n");
381 ret = 0;
382 break;
383 }
384
385 if (ret < 0) {
386 dprintf("kvm run failed %s\n", strerror(-ret));
387 abort();
388 }
389
390 ret = 0; /* exit loop */
391 switch (run->exit_reason) {
392 case KVM_EXIT_IO:
393 dprintf("handle_io\n");
394 ret = kvm_handle_io(env, run->io.port,
395 (uint8_t *)run + run->io.data_offset,
396 run->io.direction,
397 run->io.size,
398 run->io.count);
399 break;
400 case KVM_EXIT_MMIO:
401 dprintf("handle_mmio\n");
402 cpu_physical_memory_rw(run->mmio.phys_addr,
403 run->mmio.data,
404 run->mmio.len,
405 run->mmio.is_write);
406 ret = 1;
407 break;
408 case KVM_EXIT_IRQ_WINDOW_OPEN:
409 dprintf("irq_window_open\n");
410 break;
411 case KVM_EXIT_SHUTDOWN:
412 dprintf("shutdown\n");
413 qemu_system_reset_request();
414 ret = 1;
415 break;
416 case KVM_EXIT_UNKNOWN:
417 dprintf("kvm_exit_unknown\n");
418 break;
419 case KVM_EXIT_FAIL_ENTRY:
420 dprintf("kvm_exit_fail_entry\n");
421 break;
422 case KVM_EXIT_EXCEPTION:
423 dprintf("kvm_exit_exception\n");
424 break;
425 case KVM_EXIT_DEBUG:
426 dprintf("kvm_exit_debug\n");
427 break;
428 default:
429 dprintf("kvm_arch_handle_exit\n");
430 ret = kvm_arch_handle_exit(env, run);
431 break;
432 }
433 } while (ret > 0);
434
aliguoribecfc392008-11-10 15:55:14 +0000435 if ((env->interrupt_request & CPU_INTERRUPT_EXIT)) {
436 env->interrupt_request &= ~CPU_INTERRUPT_EXIT;
437 env->exception_index = EXCP_INTERRUPT;
438 }
439
aliguori05330442008-11-05 16:29:27 +0000440 return ret;
441}
442
443void kvm_set_phys_mem(target_phys_addr_t start_addr,
444 ram_addr_t size,
445 ram_addr_t phys_offset)
446{
447 KVMState *s = kvm_state;
448 ram_addr_t flags = phys_offset & ~TARGET_PAGE_MASK;
449 KVMSlot *mem;
450
451 /* KVM does not support read-only slots */
452 phys_offset &= ~IO_MEM_ROM;
453
454 mem = kvm_lookup_slot(s, start_addr);
455 if (mem) {
aliguoria3d68412008-11-19 15:09:54 +0000456 if ((flags == IO_MEM_UNASSIGNED) || (flags >= TLB_MMIO)) {
aliguori05330442008-11-05 16:29:27 +0000457 mem->memory_size = 0;
aliguori34fc6432008-11-19 17:41:58 +0000458 mem->start_addr = start_addr;
459 mem->phys_offset = 0;
aliguori05330442008-11-05 16:29:27 +0000460 mem->flags = 0;
461
aliguori34fc6432008-11-19 17:41:58 +0000462 kvm_set_user_memory_region(s, mem);
463 } else if (start_addr >= mem->start_addr &&
464 (start_addr + size) <= (mem->start_addr +
aliguori62d60e82008-11-18 15:41:18 +0000465 mem->memory_size)) {
466 KVMSlot slot;
467 target_phys_addr_t mem_start;
468 ram_addr_t mem_size, mem_offset;
aliguori05330442008-11-05 16:29:27 +0000469
aliguori62d60e82008-11-18 15:41:18 +0000470 /* Not splitting */
aliguori34fc6432008-11-19 17:41:58 +0000471 if ((phys_offset - (start_addr - mem->start_addr)) ==
472 mem->phys_offset)
aliguori62d60e82008-11-18 15:41:18 +0000473 return;
474
475 /* unregister whole slot */
476 memcpy(&slot, mem, sizeof(slot));
477 mem->memory_size = 0;
aliguori34fc6432008-11-19 17:41:58 +0000478 kvm_set_user_memory_region(s, mem);
aliguori62d60e82008-11-18 15:41:18 +0000479
480 /* register prefix slot */
aliguori34fc6432008-11-19 17:41:58 +0000481 mem_start = slot.start_addr;
482 mem_size = start_addr - slot.start_addr;
483 mem_offset = slot.phys_offset;
aliguori62d60e82008-11-18 15:41:18 +0000484 if (mem_size)
485 kvm_set_phys_mem(mem_start, mem_size, mem_offset);
486
487 /* register new slot */
488 kvm_set_phys_mem(start_addr, size, phys_offset);
489
490 /* register suffix slot */
491 mem_start = start_addr + size;
492 mem_offset += mem_size + size;
493 mem_size = slot.memory_size - mem_size - size;
494 if (mem_size)
495 kvm_set_phys_mem(mem_start, mem_size, mem_offset);
496
497 return;
498 } else {
499 printf("Registering overlapping slot\n");
500 abort();
501 }
502 }
aliguori05330442008-11-05 16:29:27 +0000503 /* KVM does not need to know about this memory */
504 if (flags >= IO_MEM_UNASSIGNED)
505 return;
506
507 mem = kvm_alloc_slot(s);
508 mem->memory_size = size;
aliguori34fc6432008-11-19 17:41:58 +0000509 mem->start_addr = start_addr;
510 mem->phys_offset = phys_offset;
aliguori05330442008-11-05 16:29:27 +0000511 mem->flags = 0;
512
aliguori34fc6432008-11-19 17:41:58 +0000513 kvm_set_user_memory_region(s, mem);
aliguori05330442008-11-05 16:29:27 +0000514 /* FIXME deal with errors */
515}
516
aliguori984b5182008-11-13 19:21:00 +0000517int kvm_ioctl(KVMState *s, int type, ...)
aliguori05330442008-11-05 16:29:27 +0000518{
519 int ret;
aliguori984b5182008-11-13 19:21:00 +0000520 void *arg;
521 va_list ap;
aliguori05330442008-11-05 16:29:27 +0000522
aliguori984b5182008-11-13 19:21:00 +0000523 va_start(ap, type);
524 arg = va_arg(ap, void *);
525 va_end(ap);
526
527 ret = ioctl(s->fd, type, arg);
aliguori05330442008-11-05 16:29:27 +0000528 if (ret == -1)
529 ret = -errno;
530
531 return ret;
532}
533
aliguori984b5182008-11-13 19:21:00 +0000534int kvm_vm_ioctl(KVMState *s, int type, ...)
aliguori05330442008-11-05 16:29:27 +0000535{
536 int ret;
aliguori984b5182008-11-13 19:21:00 +0000537 void *arg;
538 va_list ap;
aliguori05330442008-11-05 16:29:27 +0000539
aliguori984b5182008-11-13 19:21:00 +0000540 va_start(ap, type);
541 arg = va_arg(ap, void *);
542 va_end(ap);
543
544 ret = ioctl(s->vmfd, type, arg);
aliguori05330442008-11-05 16:29:27 +0000545 if (ret == -1)
546 ret = -errno;
547
548 return ret;
549}
550
aliguori984b5182008-11-13 19:21:00 +0000551int kvm_vcpu_ioctl(CPUState *env, int type, ...)
aliguori05330442008-11-05 16:29:27 +0000552{
553 int ret;
aliguori984b5182008-11-13 19:21:00 +0000554 void *arg;
555 va_list ap;
aliguori05330442008-11-05 16:29:27 +0000556
aliguori984b5182008-11-13 19:21:00 +0000557 va_start(ap, type);
558 arg = va_arg(ap, void *);
559 va_end(ap);
560
561 ret = ioctl(env->kvm_fd, type, arg);
aliguori05330442008-11-05 16:29:27 +0000562 if (ret == -1)
563 ret = -errno;
564
565 return ret;
566}
aliguoribd322082008-12-04 20:33:06 +0000567
568int kvm_has_sync_mmu(void)
569{
570 KVMState *s = kvm_state;
571
572#ifdef KVM_CAP_SYNC_MMU
573 if (kvm_ioctl(s, KVM_CHECK_EXTENSION, KVM_CAP_SYNC_MMU) > 0)
574 return 1;
575#endif
576
577 return 0;
578}