blob: 8bdd1106ff36c9ee8d5a04cde5329ed19e475bcd [file] [log] [blame]
Jun Nakajima1321c762011-03-04 17:17:45 -08001/*
2 * QEMU KVM support
3 *
4 * Copyright IBM, Corp. 2008
5 * Red Hat, Inc. 2008
6 *
7 * Authors:
8 * Anthony Liguori <aliguori@us.ibm.com>
9 * Glauber Costa <gcosta@redhat.com>
10 *
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>
19#include <stdarg.h>
20
21#include <linux/kvm.h>
22
David 'Digit' Turner9b3a4b02014-01-23 00:52:54 +010023#include "cpu.h"
Jun Nakajima1321c762011-03-04 17:17:45 -080024#include "qemu-common.h"
David 'Digit' Turner34c48ff2013-12-15 00:25:03 +010025#include "sysemu/sysemu.h"
Jun Nakajima1321c762011-03-04 17:17:45 -080026#include "hw/hw.h"
David 'Digit' Turner852088c2013-12-14 23:04:12 +010027#include "exec/gdbstub.h"
David 'Digit' Turner34c48ff2013-12-15 00:25:03 +010028#include "sysemu/kvm.h"
Jun Nakajima1321c762011-03-04 17:17:45 -080029
30/* KVM uses PAGE_SIZE in it's definition of COALESCED_MMIO_MAX */
31#define PAGE_SIZE TARGET_PAGE_SIZE
32
33//#define DEBUG_KVM
34
35#ifdef DEBUG_KVM
36#define dprintf(fmt, ...) \
37 do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
38#else
39#define dprintf(fmt, ...) \
40 do { } while (0)
41#endif
42
43typedef struct KVMSlot
44{
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +010045 hwaddr start_addr;
Jun Nakajima1321c762011-03-04 17:17:45 -080046 ram_addr_t memory_size;
47 ram_addr_t phys_offset;
48 int slot;
49 int flags;
50} KVMSlot;
51
52typedef struct kvm_dirty_log KVMDirtyLog;
53
54int kvm_allowed = 0;
55
56struct KVMState
57{
58 KVMSlot slots[32];
59 int fd;
60 int vmfd;
61 int coalesced_mmio;
62 int broken_set_mem_region;
63 int migration_log;
64#ifdef KVM_CAP_SET_GUEST_DEBUG
65 struct kvm_sw_breakpoint_head kvm_sw_breakpoints;
66#endif
67};
68
69static KVMState *kvm_state;
70
71static KVMSlot *kvm_alloc_slot(KVMState *s)
72{
73 int i;
74
75 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
76 /* KVM private memory slots */
77 if (i >= 8 && i < 12)
78 continue;
79 if (s->slots[i].memory_size == 0)
80 return &s->slots[i];
81 }
82
83 fprintf(stderr, "%s: no free slot available\n", __func__);
84 abort();
85}
86
87static KVMSlot *kvm_lookup_matching_slot(KVMState *s,
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +010088 hwaddr start_addr,
89 hwaddr end_addr)
Jun Nakajima1321c762011-03-04 17:17:45 -080090{
91 int i;
92
93 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
94 KVMSlot *mem = &s->slots[i];
95
96 if (start_addr == mem->start_addr &&
97 end_addr == mem->start_addr + mem->memory_size) {
98 return mem;
99 }
100 }
101
102 return NULL;
103}
104
105/*
106 * Find overlapping slot with lowest start address
107 */
108static KVMSlot *kvm_lookup_overlapping_slot(KVMState *s,
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100109 hwaddr start_addr,
110 hwaddr end_addr)
Jun Nakajima1321c762011-03-04 17:17:45 -0800111{
112 KVMSlot *found = NULL;
113 int i;
114
115 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
116 KVMSlot *mem = &s->slots[i];
117
118 if (mem->memory_size == 0 ||
119 (found && found->start_addr < mem->start_addr)) {
120 continue;
121 }
122
123 if (end_addr > mem->start_addr &&
124 start_addr < mem->start_addr + mem->memory_size) {
125 found = mem;
126 }
127 }
128
129 return found;
130}
131
132static int kvm_set_user_memory_region(KVMState *s, KVMSlot *slot)
133{
134 struct kvm_userspace_memory_region mem;
135
136 mem.slot = slot->slot;
137 mem.guest_phys_addr = slot->start_addr;
138 mem.memory_size = slot->memory_size;
139 mem.userspace_addr = (unsigned long)qemu_get_ram_ptr(slot->phys_offset);
140 mem.flags = slot->flags;
141 if (s->migration_log) {
142 mem.flags |= KVM_MEM_LOG_DIRTY_PAGES;
143 }
144 return kvm_vm_ioctl(s, KVM_SET_USER_MEMORY_REGION, &mem);
145}
146
147
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100148int kvm_init_vcpu(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -0800149{
150 KVMState *s = kvm_state;
151 long mmap_size;
152 int ret;
153
154 dprintf("kvm_init_vcpu\n");
155
David 'Digit' Turner66576782014-03-24 16:57:57 +0100156 ret = kvm_vm_ioctl(s, KVM_CREATE_VCPU, cpu->cpu_index);
Jun Nakajima1321c762011-03-04 17:17:45 -0800157 if (ret < 0) {
158 dprintf("kvm_create_vcpu failed\n");
159 goto err;
160 }
161
David 'Digit' Turner66576782014-03-24 16:57:57 +0100162 cpu->kvm_fd = ret;
163 cpu->kvm_state = s;
Jun Nakajima1321c762011-03-04 17:17:45 -0800164
165 mmap_size = kvm_ioctl(s, KVM_GET_VCPU_MMAP_SIZE, 0);
166 if (mmap_size < 0) {
167 dprintf("KVM_GET_VCPU_MMAP_SIZE failed\n");
168 goto err;
169 }
170
David 'Digit' Turner66576782014-03-24 16:57:57 +0100171 cpu->kvm_run = mmap(NULL, mmap_size, PROT_READ | PROT_WRITE, MAP_SHARED,
172 cpu->kvm_fd, 0);
173 if (cpu->kvm_run == MAP_FAILED) {
Jun Nakajima1321c762011-03-04 17:17:45 -0800174 ret = -errno;
175 dprintf("mmap'ing vcpu state failed\n");
176 goto err;
177 }
178
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100179 ret = kvm_arch_init_vcpu(cpu);
Jun Nakajima1321c762011-03-04 17:17:45 -0800180
181err:
182 return ret;
183}
184
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100185int kvm_put_mp_state(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -0800186{
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100187 CPUArchState *env = cpu->env_ptr;
Jun Nakajima1321c762011-03-04 17:17:45 -0800188 struct kvm_mp_state mp_state = { .mp_state = env->mp_state };
189
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100190 return kvm_vcpu_ioctl(cpu, KVM_SET_MP_STATE, &mp_state);
Jun Nakajima1321c762011-03-04 17:17:45 -0800191}
192
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100193int kvm_get_mp_state(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -0800194{
195 struct kvm_mp_state mp_state;
196 int ret;
197
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100198 ret = kvm_vcpu_ioctl(cpu, KVM_GET_MP_STATE, &mp_state);
Jun Nakajima1321c762011-03-04 17:17:45 -0800199 if (ret < 0) {
200 return ret;
201 }
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100202 CPUArchState *env = cpu->env_ptr;
Jun Nakajima1321c762011-03-04 17:17:45 -0800203 env->mp_state = mp_state.mp_state;
204 return 0;
205}
206
207int kvm_sync_vcpus(void)
208{
David 'Digit' Turner66576782014-03-24 16:57:57 +0100209 CPUState *cpu;
Jun Nakajima1321c762011-03-04 17:17:45 -0800210
David 'Digit' Turner66576782014-03-24 16:57:57 +0100211 CPU_FOREACH(cpu) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100212 int ret = kvm_arch_put_registers(cpu);
Jun Nakajima1321c762011-03-04 17:17:45 -0800213 if (ret)
214 return ret;
215 }
216
217 return 0;
218}
219
220/*
221 * dirty pages logging control
222 */
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100223static int kvm_dirty_pages_log_change(hwaddr phys_addr,
Jun Nakajima1321c762011-03-04 17:17:45 -0800224 ram_addr_t size, int flags, int mask)
225{
226 KVMState *s = kvm_state;
227 KVMSlot *mem = kvm_lookup_matching_slot(s, phys_addr, phys_addr + size);
228 int old_flags;
229
230 if (mem == NULL) {
231 fprintf(stderr, "BUG: %s: invalid parameters " TARGET_FMT_plx "-"
David 'Digit' Turnera2c14f92014-02-04 01:02:30 +0100232 TARGET_FMT_plx "\n", __func__, (hwaddr)phys_addr,
233 (hwaddr)(phys_addr + size - 1));
Jun Nakajima1321c762011-03-04 17:17:45 -0800234 return -EINVAL;
235 }
236
237 old_flags = mem->flags;
238
239 flags = (mem->flags & ~mask) | flags;
240 mem->flags = flags;
241
242 /* If nothing changed effectively, no need to issue ioctl */
243 if (s->migration_log) {
244 flags |= KVM_MEM_LOG_DIRTY_PAGES;
245 }
246 if (flags == old_flags) {
247 return 0;
248 }
249
250 return kvm_set_user_memory_region(s, mem);
251}
252
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100253int kvm_log_start(hwaddr phys_addr, ram_addr_t size)
Jun Nakajima1321c762011-03-04 17:17:45 -0800254{
255 return kvm_dirty_pages_log_change(phys_addr, size,
256 KVM_MEM_LOG_DIRTY_PAGES,
257 KVM_MEM_LOG_DIRTY_PAGES);
258}
259
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100260int kvm_log_stop(hwaddr phys_addr, ram_addr_t size)
Jun Nakajima1321c762011-03-04 17:17:45 -0800261{
262 return kvm_dirty_pages_log_change(phys_addr, size,
263 0,
264 KVM_MEM_LOG_DIRTY_PAGES);
265}
266
267int kvm_set_migration_log(int enable)
268{
269 KVMState *s = kvm_state;
270 KVMSlot *mem;
271 int i, err;
272
273 s->migration_log = enable;
274
275 for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
276 mem = &s->slots[i];
277
278 if (!!(mem->flags & KVM_MEM_LOG_DIRTY_PAGES) == enable) {
279 continue;
280 }
281 err = kvm_set_user_memory_region(s, mem);
282 if (err) {
283 return err;
284 }
285 }
286 return 0;
287}
288
289/**
290 * kvm_physical_sync_dirty_bitmap - Grab dirty bitmap from kernel space
291 * This function updates qemu's dirty bitmap using cpu_physical_memory_set_dirty().
292 * This means all bits are set to dirty.
293 *
294 * @start_add: start of logged region.
295 * @end_addr: end of logged region.
296 */
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100297int kvm_physical_sync_dirty_bitmap(hwaddr start_addr,
298 hwaddr end_addr)
Jun Nakajima1321c762011-03-04 17:17:45 -0800299{
300 KVMState *s = kvm_state;
301 unsigned long size, allocated_size = 0;
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100302 hwaddr phys_addr;
Jun Nakajima1321c762011-03-04 17:17:45 -0800303 ram_addr_t addr;
304 KVMDirtyLog d;
305 KVMSlot *mem;
306 int ret = 0;
307
308 d.dirty_bitmap = NULL;
309 while (start_addr < end_addr) {
310 mem = kvm_lookup_overlapping_slot(s, start_addr, end_addr);
311 if (mem == NULL) {
312 break;
313 }
314
315 size = ((mem->memory_size >> TARGET_PAGE_BITS) + 7) / 8;
316 if (!d.dirty_bitmap) {
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100317 d.dirty_bitmap = g_malloc(size);
Jun Nakajima1321c762011-03-04 17:17:45 -0800318 } else if (size > allocated_size) {
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100319 d.dirty_bitmap = g_realloc(d.dirty_bitmap, size);
Jun Nakajima1321c762011-03-04 17:17:45 -0800320 }
321 allocated_size = size;
322 memset(d.dirty_bitmap, 0, allocated_size);
323
324 d.slot = mem->slot;
325
326 if (kvm_vm_ioctl(s, KVM_GET_DIRTY_LOG, &d) == -1) {
327 dprintf("ioctl failed %d\n", errno);
328 ret = -1;
329 break;
330 }
331
332 for (phys_addr = mem->start_addr, addr = mem->phys_offset;
333 phys_addr < mem->start_addr + mem->memory_size;
334 phys_addr += TARGET_PAGE_SIZE, addr += TARGET_PAGE_SIZE) {
335 unsigned long *bitmap = (unsigned long *)d.dirty_bitmap;
336 unsigned nr = (phys_addr - mem->start_addr) >> TARGET_PAGE_BITS;
337 unsigned word = nr / (sizeof(*bitmap) * 8);
338 unsigned bit = nr % (sizeof(*bitmap) * 8);
339
340 if ((bitmap[word] >> bit) & 1) {
341 cpu_physical_memory_set_dirty(addr);
342 }
343 }
344 start_addr = phys_addr;
345 }
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100346 g_free(d.dirty_bitmap);
Jun Nakajima1321c762011-03-04 17:17:45 -0800347
348 return ret;
349}
350
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100351int kvm_coalesce_mmio_region(hwaddr start, ram_addr_t size)
Jun Nakajima1321c762011-03-04 17:17:45 -0800352{
353 int ret = -ENOSYS;
354#ifdef KVM_CAP_COALESCED_MMIO
355 KVMState *s = kvm_state;
356
357 if (s->coalesced_mmio) {
358 struct kvm_coalesced_mmio_zone zone;
359
360 zone.addr = start;
361 zone.size = size;
362
363 ret = kvm_vm_ioctl(s, KVM_REGISTER_COALESCED_MMIO, &zone);
364 }
365#endif
366
367 return ret;
368}
369
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100370int kvm_uncoalesce_mmio_region(hwaddr start, ram_addr_t size)
Jun Nakajima1321c762011-03-04 17:17:45 -0800371{
372 int ret = -ENOSYS;
373#ifdef KVM_CAP_COALESCED_MMIO
374 KVMState *s = kvm_state;
375
376 if (s->coalesced_mmio) {
377 struct kvm_coalesced_mmio_zone zone;
378
379 zone.addr = start;
380 zone.size = size;
381
382 ret = kvm_vm_ioctl(s, KVM_UNREGISTER_COALESCED_MMIO, &zone);
383 }
384#endif
385
386 return ret;
387}
388
389int kvm_check_extension(KVMState *s, unsigned int extension)
390{
391 int ret;
392
393 ret = kvm_ioctl(s, KVM_CHECK_EXTENSION, extension);
394 if (ret < 0) {
395 ret = 0;
396 }
397
398 return ret;
399}
400
401static void kvm_reset_vcpus(void *opaque)
402{
403 kvm_sync_vcpus();
404}
405
406int kvm_init(int smp_cpus)
407{
408 static const char upgrade_note[] =
409 "Please upgrade to at least kernel 2.6.29 or recent kvm-kmod\n"
410 "(see http://sourceforge.net/projects/kvm).\n";
411 KVMState *s;
412 int ret;
413 int i;
414
415 if (smp_cpus > 1) {
416 fprintf(stderr, "No SMP KVM support, use '-smp 1'\n");
417 return -EINVAL;
418 }
419
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100420 s = g_malloc0(sizeof(KVMState));
Jun Nakajima1321c762011-03-04 17:17:45 -0800421
422#ifdef KVM_CAP_SET_GUEST_DEBUG
423 QTAILQ_INIT(&s->kvm_sw_breakpoints);
424#endif
425 for (i = 0; i < ARRAY_SIZE(s->slots); i++)
426 s->slots[i].slot = i;
427
428 s->vmfd = -1;
429 s->fd = open("/dev/kvm", O_RDWR);
430 if (s->fd == -1) {
Jun Nakajima1321c762011-03-04 17:17:45 -0800431 ret = -errno;
Andy McFadden7876c702012-03-15 13:17:57 -0700432 fprintf(stderr, "Could not access KVM kernel module: %m\n");
Jun Nakajima1321c762011-03-04 17:17:45 -0800433 goto err;
434 }
435
436 ret = kvm_ioctl(s, KVM_GET_API_VERSION, 0);
437 if (ret < KVM_API_VERSION) {
438 if (ret > 0)
439 ret = -EINVAL;
440 fprintf(stderr, "kvm version too old\n");
441 goto err;
442 }
443
444 if (ret > KVM_API_VERSION) {
445 ret = -EINVAL;
446 fprintf(stderr, "kvm version not supported\n");
447 goto err;
448 }
449
Tom Knych1d0e5942013-01-18 09:52:43 -0800450 do {
451 s->vmfd = kvm_ioctl(s, KVM_CREATE_VM, 0);
452 } while (s->vmfd < 0 && (EINTR == errno || EAGAIN == errno));
453
Andy McFadden7876c702012-03-15 13:17:57 -0700454 if (s->vmfd < 0) {
455 ret = -errno;
Tom Knych1d0e5942013-01-18 09:52:43 -0800456 fprintf(stderr, "ioctl(KVM_CREATE_VM) failed: %d %s\n", errno, strerror(errno));
Jun Nakajima1321c762011-03-04 17:17:45 -0800457 goto err;
Andy McFadden7876c702012-03-15 13:17:57 -0700458 }
Jun Nakajima1321c762011-03-04 17:17:45 -0800459
460 /* initially, KVM allocated its own memory and we had to jump through
461 * hooks to make phys_ram_base point to this. Modern versions of KVM
462 * just use a user allocated buffer so we can use regular pages
463 * unmodified. Make sure we have a sufficiently modern version of KVM.
464 */
465 if (!kvm_check_extension(s, KVM_CAP_USER_MEMORY)) {
466 ret = -EINVAL;
467 fprintf(stderr, "kvm does not support KVM_CAP_USER_MEMORY\n%s",
468 upgrade_note);
469 goto err;
470 }
471
472 /* There was a nasty bug in < kvm-80 that prevents memory slots from being
473 * destroyed properly. Since we rely on this capability, refuse to work
474 * with any kernel without this capability. */
475 if (!kvm_check_extension(s, KVM_CAP_DESTROY_MEMORY_REGION_WORKS)) {
476 ret = -EINVAL;
477
478 fprintf(stderr,
479 "KVM kernel module broken (DESTROY_MEMORY_REGION).\n%s",
480 upgrade_note);
481 goto err;
482 }
483
484#ifdef KVM_CAP_COALESCED_MMIO
485 s->coalesced_mmio = kvm_check_extension(s, KVM_CAP_COALESCED_MMIO);
486#else
487 s->coalesced_mmio = 0;
488#endif
489
490 s->broken_set_mem_region = 1;
491#ifdef KVM_CAP_JOIN_MEMORY_REGIONS_WORKS
492 ret = kvm_ioctl(s, KVM_CHECK_EXTENSION, KVM_CAP_JOIN_MEMORY_REGIONS_WORKS);
493 if (ret > 0) {
494 s->broken_set_mem_region = 0;
495 }
496#endif
497
498 ret = kvm_arch_init(s, smp_cpus);
499 if (ret < 0)
500 goto err;
501
502 qemu_register_reset(kvm_reset_vcpus, INT_MAX, NULL);
503
504 kvm_state = s;
505
506 return 0;
507
508err:
509 if (s) {
510 if (s->vmfd != -1)
511 close(s->vmfd);
512 if (s->fd != -1)
513 close(s->fd);
514 }
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100515 g_free(s);
Jun Nakajima1321c762011-03-04 17:17:45 -0800516
517 return ret;
518}
519
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100520static int kvm_handle_io(CPUState *cpu, uint16_t port, void *data,
Jun Nakajima1321c762011-03-04 17:17:45 -0800521 int direction, int size, uint32_t count)
522{
523 int i;
524 uint8_t *ptr = data;
525
526 for (i = 0; i < count; i++) {
527 if (direction == KVM_EXIT_IO_IN) {
528 switch (size) {
529 case 1:
530 stb_p(ptr, cpu_inb(port));
531 break;
532 case 2:
533 stw_p(ptr, cpu_inw(port));
534 break;
535 case 4:
536 stl_p(ptr, cpu_inl(port));
537 break;
538 }
539 } else {
540 switch (size) {
541 case 1:
542 cpu_outb(port, ldub_p(ptr));
543 break;
544 case 2:
545 cpu_outw(port, lduw_p(ptr));
546 break;
547 case 4:
548 cpu_outl(port, ldl_p(ptr));
549 break;
550 }
551 }
552
553 ptr += size;
554 }
555
556 return 1;
557}
558
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100559static void kvm_run_coalesced_mmio(CPUState *cpu, struct kvm_run *run)
Jun Nakajima1321c762011-03-04 17:17:45 -0800560{
561#ifdef KVM_CAP_COALESCED_MMIO
562 KVMState *s = kvm_state;
563 if (s->coalesced_mmio) {
564 struct kvm_coalesced_mmio_ring *ring;
565
566 ring = (void *)run + (s->coalesced_mmio * TARGET_PAGE_SIZE);
567 while (ring->first != ring->last) {
568 struct kvm_coalesced_mmio *ent;
569
570 ent = &ring->coalesced_mmio[ring->first];
571
572 cpu_physical_memory_write(ent->phys_addr, ent->data, ent->len);
573 /* FIXME smp_wmb() */
574 ring->first = (ring->first + 1) % KVM_COALESCED_MMIO_MAX;
575 }
576 }
577#endif
578}
579
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100580int kvm_cpu_exec(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -0800581{
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100582 CPUArchState *env = cpu->env_ptr;
David 'Digit' Turner66576782014-03-24 16:57:57 +0100583 struct kvm_run *run = cpu->kvm_run;
Jun Nakajima1321c762011-03-04 17:17:45 -0800584 int ret;
585
586 dprintf("kvm_cpu_exec()\n");
587
588 do {
David 'Digit' Turner66576782014-03-24 16:57:57 +0100589 if (cpu->exit_request) {
Jun Nakajima1321c762011-03-04 17:17:45 -0800590 dprintf("interrupt exit requested\n");
591 ret = 0;
592 break;
593 }
594
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100595 kvm_arch_pre_run(cpu, run);
596 ret = kvm_arch_vcpu_run(cpu);
597 kvm_arch_post_run(cpu, run);
Jun Nakajima1321c762011-03-04 17:17:45 -0800598
599 if (ret == -EINTR || ret == -EAGAIN) {
600 dprintf("io window exit\n");
601 ret = 0;
602 break;
603 }
604
605 if (ret < 0) {
606 dprintf("kvm run failed %s\n", strerror(-ret));
607 abort();
608 }
609
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100610 kvm_run_coalesced_mmio(cpu, run);
Jun Nakajima1321c762011-03-04 17:17:45 -0800611
612 ret = 0; /* exit loop */
613 switch (run->exit_reason) {
614 case KVM_EXIT_IO:
615 dprintf("handle_io\n");
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100616 ret = kvm_handle_io(cpu, run->io.port,
Jun Nakajima1321c762011-03-04 17:17:45 -0800617 (uint8_t *)run + run->io.data_offset,
618 run->io.direction,
619 run->io.size,
620 run->io.count);
621 break;
622 case KVM_EXIT_MMIO:
623 dprintf("handle_mmio\n");
624 cpu_physical_memory_rw(run->mmio.phys_addr,
625 run->mmio.data,
626 run->mmio.len,
627 run->mmio.is_write);
628 ret = 1;
629 break;
630 case KVM_EXIT_IRQ_WINDOW_OPEN:
631 dprintf("irq_window_open\n");
632 break;
633 case KVM_EXIT_SHUTDOWN:
634 dprintf("shutdown\n");
635 qemu_system_reset_request();
636 ret = 1;
637 break;
638 case KVM_EXIT_UNKNOWN:
639 dprintf("kvm_exit_unknown\n");
640 break;
641 case KVM_EXIT_FAIL_ENTRY:
642 dprintf("kvm_exit_fail_entry\n");
643 break;
644 case KVM_EXIT_EXCEPTION:
645 dprintf("kvm_exit_exception\n");
646 break;
647 case KVM_EXIT_DEBUG:
648 dprintf("kvm_exit_debug\n");
649#ifdef KVM_CAP_SET_GUEST_DEBUG
650 if (kvm_arch_debug(&run->debug.arch)) {
David 'Digit' Turner0b1a8452014-03-25 17:37:52 +0100651 gdb_set_stop_cpu(cpu);
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100652 vm_stop(EXCP_DEBUG);\
Jun Nakajima1321c762011-03-04 17:17:45 -0800653 env->exception_index = EXCP_DEBUG;
654 return 0;
655 }
656 /* re-enter, this exception was guest-internal */
657 ret = 1;
658#endif /* KVM_CAP_SET_GUEST_DEBUG */
659 break;
660 default:
661 dprintf("kvm_arch_handle_exit\n");
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100662 ret = kvm_arch_handle_exit(cpu, run);
Jun Nakajima1321c762011-03-04 17:17:45 -0800663 break;
664 }
665 } while (ret > 0);
666
David 'Digit' Turner66576782014-03-24 16:57:57 +0100667 if (cpu->exit_request) {
668 cpu->exit_request = 0;
Jun Nakajima1321c762011-03-04 17:17:45 -0800669 env->exception_index = EXCP_INTERRUPT;
670 }
671
672 return ret;
673}
674
David 'Digit' Turnerbcde1092014-01-09 23:19:19 +0100675void kvm_set_phys_mem(hwaddr start_addr,
Jun Nakajima1321c762011-03-04 17:17:45 -0800676 ram_addr_t size,
677 ram_addr_t phys_offset)
678{
679 KVMState *s = kvm_state;
680 ram_addr_t flags = phys_offset & ~TARGET_PAGE_MASK;
681 KVMSlot *mem, old;
682 int err;
683
684 if (start_addr & ~TARGET_PAGE_MASK) {
685 if (flags >= IO_MEM_UNASSIGNED) {
686 if (!kvm_lookup_overlapping_slot(s, start_addr,
687 start_addr + size)) {
688 return;
689 }
690 fprintf(stderr, "Unaligned split of a KVM memory slot\n");
691 } else {
692 fprintf(stderr, "Only page-aligned memory slots supported\n");
693 }
694 abort();
695 }
696
697 /* KVM does not support read-only slots */
698 phys_offset &= ~IO_MEM_ROM;
699
700 while (1) {
701 mem = kvm_lookup_overlapping_slot(s, start_addr, start_addr + size);
702 if (!mem) {
703 break;
704 }
705
706 if (flags < IO_MEM_UNASSIGNED && start_addr >= mem->start_addr &&
707 (start_addr + size <= mem->start_addr + mem->memory_size) &&
708 (phys_offset - start_addr == mem->phys_offset - mem->start_addr)) {
709 /* The new slot fits into the existing one and comes with
710 * identical parameters - nothing to be done. */
711 return;
712 }
713
714 old = *mem;
715
716 /* unregister the overlapping slot */
717 mem->memory_size = 0;
718 err = kvm_set_user_memory_region(s, mem);
719 if (err) {
720 fprintf(stderr, "%s: error unregistering overlapping slot: %s\n",
721 __func__, strerror(-err));
722 abort();
723 }
724
725 /* Workaround for older KVM versions: we can't join slots, even not by
726 * unregistering the previous ones and then registering the larger
727 * slot. We have to maintain the existing fragmentation. Sigh.
728 *
729 * This workaround assumes that the new slot starts at the same
730 * address as the first existing one. If not or if some overlapping
731 * slot comes around later, we will fail (not seen in practice so far)
732 * - and actually require a recent KVM version. */
733 if (s->broken_set_mem_region &&
734 old.start_addr == start_addr && old.memory_size < size &&
735 flags < IO_MEM_UNASSIGNED) {
736 mem = kvm_alloc_slot(s);
737 mem->memory_size = old.memory_size;
738 mem->start_addr = old.start_addr;
739 mem->phys_offset = old.phys_offset;
740 mem->flags = 0;
741
742 err = kvm_set_user_memory_region(s, mem);
743 if (err) {
744 fprintf(stderr, "%s: error updating slot: %s\n", __func__,
745 strerror(-err));
746 abort();
747 }
748
749 start_addr += old.memory_size;
750 phys_offset += old.memory_size;
751 size -= old.memory_size;
752 continue;
753 }
754
755 /* register prefix slot */
756 if (old.start_addr < start_addr) {
757 mem = kvm_alloc_slot(s);
758 mem->memory_size = start_addr - old.start_addr;
759 mem->start_addr = old.start_addr;
760 mem->phys_offset = old.phys_offset;
761 mem->flags = 0;
762
763 err = kvm_set_user_memory_region(s, mem);
764 if (err) {
765 fprintf(stderr, "%s: error registering prefix slot: %s\n",
766 __func__, strerror(-err));
767 abort();
768 }
769 }
770
771 /* register suffix slot */
772 if (old.start_addr + old.memory_size > start_addr + size) {
773 ram_addr_t size_delta;
774
775 mem = kvm_alloc_slot(s);
776 mem->start_addr = start_addr + size;
777 size_delta = mem->start_addr - old.start_addr;
778 mem->memory_size = old.memory_size - size_delta;
779 mem->phys_offset = old.phys_offset + size_delta;
780 mem->flags = 0;
781
782 err = kvm_set_user_memory_region(s, mem);
783 if (err) {
784 fprintf(stderr, "%s: error registering suffix slot: %s\n",
785 __func__, strerror(-err));
786 abort();
787 }
788 }
789 }
790
791 /* in case the KVM bug workaround already "consumed" the new slot */
792 if (!size)
793 return;
794
795 /* KVM does not need to know about this memory */
796 if (flags >= IO_MEM_UNASSIGNED)
797 return;
798
799 mem = kvm_alloc_slot(s);
800 mem->memory_size = size;
801 mem->start_addr = start_addr;
802 mem->phys_offset = phys_offset;
803 mem->flags = 0;
804
805 err = kvm_set_user_memory_region(s, mem);
806 if (err) {
807 fprintf(stderr, "%s: error registering slot: %s\n", __func__,
808 strerror(-err));
809 abort();
810 }
811}
812
813int kvm_ioctl(KVMState *s, int type, ...)
814{
815 int ret;
816 void *arg;
817 va_list ap;
818
819 va_start(ap, type);
820 arg = va_arg(ap, void *);
821 va_end(ap);
822
823 ret = ioctl(s->fd, type, arg);
824 if (ret == -1)
825 ret = -errno;
826
827 return ret;
828}
829
830int kvm_vm_ioctl(KVMState *s, int type, ...)
831{
832 int ret;
833 void *arg;
834 va_list ap;
835
836 va_start(ap, type);
837 arg = va_arg(ap, void *);
838 va_end(ap);
839
840 ret = ioctl(s->vmfd, type, arg);
841 if (ret == -1)
842 ret = -errno;
843
844 return ret;
845}
846
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100847int kvm_vcpu_ioctl(CPUState *cpu, int type, ...)
Jun Nakajima1321c762011-03-04 17:17:45 -0800848{
849 int ret;
850 void *arg;
851 va_list ap;
852
853 va_start(ap, type);
854 arg = va_arg(ap, void *);
855 va_end(ap);
856
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100857 ret = ioctl(cpu->kvm_fd, type, arg);
Jun Nakajima1321c762011-03-04 17:17:45 -0800858 if (ret == -1)
859 ret = -errno;
860
861 return ret;
862}
863
864int kvm_has_sync_mmu(void)
865{
866#ifdef KVM_CAP_SYNC_MMU
867 KVMState *s = kvm_state;
868
869 return kvm_check_extension(s, KVM_CAP_SYNC_MMU);
870#else
871 return 0;
872#endif
873}
874
875void kvm_setup_guest_memory(void *start, size_t size)
876{
877 if (!kvm_has_sync_mmu()) {
878#ifdef MADV_DONTFORK
879 int ret = madvise(start, size, MADV_DONTFORK);
880
881 if (ret) {
882 perror("madvice");
883 exit(1);
884 }
885#else
886 fprintf(stderr,
887 "Need MADV_DONTFORK in absence of synchronous KVM MMU\n");
888 exit(1);
889#endif
890 }
891}
892
893#ifdef KVM_CAP_SET_GUEST_DEBUG
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100894struct kvm_sw_breakpoint *kvm_find_sw_breakpoint(CPUState *cpu,
Jun Nakajima1321c762011-03-04 17:17:45 -0800895 target_ulong pc)
896{
897 struct kvm_sw_breakpoint *bp;
898
David 'Digit' Turner66576782014-03-24 16:57:57 +0100899 QTAILQ_FOREACH(bp, &cpu->kvm_state->kvm_sw_breakpoints, entry) {
Jun Nakajima1321c762011-03-04 17:17:45 -0800900 if (bp->pc == pc)
901 return bp;
902 }
903 return NULL;
904}
905
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100906int kvm_sw_breakpoints_active(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -0800907{
David 'Digit' Turner66576782014-03-24 16:57:57 +0100908 return !QTAILQ_EMPTY(&cpu->kvm_state->kvm_sw_breakpoints);
Jun Nakajima1321c762011-03-04 17:17:45 -0800909}
910
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100911int kvm_update_guest_debug(CPUState *cpu, unsigned long reinject_trap)
Jun Nakajima1321c762011-03-04 17:17:45 -0800912{
913 struct kvm_guest_debug dbg;
914
915 dbg.control = 0;
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100916 if (cpu->singlestep_enabled)
Jun Nakajima1321c762011-03-04 17:17:45 -0800917 dbg.control = KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_SINGLESTEP;
918
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100919 kvm_arch_update_guest_debug(cpu, &dbg);
Jun Nakajima1321c762011-03-04 17:17:45 -0800920 dbg.control |= reinject_trap;
921
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100922 return kvm_vcpu_ioctl(cpu, KVM_SET_GUEST_DEBUG, &dbg);
Jun Nakajima1321c762011-03-04 17:17:45 -0800923}
924
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100925int kvm_insert_breakpoint(CPUState *cpu, target_ulong addr,
Jun Nakajima1321c762011-03-04 17:17:45 -0800926 target_ulong len, int type)
927{
928 struct kvm_sw_breakpoint *bp;
Jun Nakajima1321c762011-03-04 17:17:45 -0800929 int err;
930
931 if (type == GDB_BREAKPOINT_SW) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100932 bp = kvm_find_sw_breakpoint(cpu, addr);
Jun Nakajima1321c762011-03-04 17:17:45 -0800933 if (bp) {
934 bp->use_count++;
935 return 0;
936 }
937
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100938 bp = g_malloc(sizeof(struct kvm_sw_breakpoint));
Jun Nakajima1321c762011-03-04 17:17:45 -0800939 if (!bp)
940 return -ENOMEM;
941
942 bp->pc = addr;
943 bp->use_count = 1;
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100944 err = kvm_arch_insert_sw_breakpoint(cpu, bp);
Jun Nakajima1321c762011-03-04 17:17:45 -0800945 if (err) {
946 free(bp);
947 return err;
948 }
949
David 'Digit' Turner66576782014-03-24 16:57:57 +0100950 QTAILQ_INSERT_HEAD(&cpu->kvm_state->kvm_sw_breakpoints,
Jun Nakajima1321c762011-03-04 17:17:45 -0800951 bp, entry);
952 } else {
953 err = kvm_arch_insert_hw_breakpoint(addr, len, type);
954 if (err)
955 return err;
956 }
957
David 'Digit' Turner66576782014-03-24 16:57:57 +0100958 CPU_FOREACH(cpu) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100959 err = kvm_update_guest_debug(cpu, 0);
Jun Nakajima1321c762011-03-04 17:17:45 -0800960 if (err)
961 return err;
962 }
963 return 0;
964}
965
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100966int kvm_remove_breakpoint(CPUState *cpu, target_ulong addr,
Jun Nakajima1321c762011-03-04 17:17:45 -0800967 target_ulong len, int type)
968{
969 struct kvm_sw_breakpoint *bp;
Jun Nakajima1321c762011-03-04 17:17:45 -0800970 int err;
971
972 if (type == GDB_BREAKPOINT_SW) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100973 bp = kvm_find_sw_breakpoint(cpu, addr);
Jun Nakajima1321c762011-03-04 17:17:45 -0800974 if (!bp)
975 return -ENOENT;
976
977 if (bp->use_count > 1) {
978 bp->use_count--;
979 return 0;
980 }
981
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100982 err = kvm_arch_remove_sw_breakpoint(cpu, bp);
Jun Nakajima1321c762011-03-04 17:17:45 -0800983 if (err)
984 return err;
985
David 'Digit' Turner66576782014-03-24 16:57:57 +0100986 QTAILQ_REMOVE(&cpu->kvm_state->kvm_sw_breakpoints, bp, entry);
David 'Digit' Turneraa8236d2014-01-10 17:02:29 +0100987 g_free(bp);
Jun Nakajima1321c762011-03-04 17:17:45 -0800988 } else {
989 err = kvm_arch_remove_hw_breakpoint(addr, len, type);
990 if (err)
991 return err;
992 }
993
David 'Digit' Turner66576782014-03-24 16:57:57 +0100994 CPU_FOREACH(cpu) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +0100995 err = kvm_update_guest_debug(cpu, 0);
Jun Nakajima1321c762011-03-04 17:17:45 -0800996 if (err)
997 return err;
998 }
999 return 0;
1000}
1001
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001002void kvm_remove_all_breakpoints(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -08001003{
1004 struct kvm_sw_breakpoint *bp, *next;
David 'Digit' Turner66576782014-03-24 16:57:57 +01001005 KVMState *s = cpu->kvm_state;
Jun Nakajima1321c762011-03-04 17:17:45 -08001006
1007 QTAILQ_FOREACH_SAFE(bp, &s->kvm_sw_breakpoints, entry, next) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001008 if (kvm_arch_remove_sw_breakpoint(cpu, bp) != 0) {
Jun Nakajima1321c762011-03-04 17:17:45 -08001009 /* Try harder to find a CPU that currently sees the breakpoint. */
David 'Digit' Turner66576782014-03-24 16:57:57 +01001010 CPU_FOREACH(cpu) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001011 if (kvm_arch_remove_sw_breakpoint(cpu, bp) == 0)
Jun Nakajima1321c762011-03-04 17:17:45 -08001012 break;
1013 }
1014 }
1015 }
1016 kvm_arch_remove_all_hw_breakpoints();
1017
David 'Digit' Turner66576782014-03-24 16:57:57 +01001018 CPU_FOREACH(cpu) {
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001019 kvm_update_guest_debug(cpu, 0);
David 'Digit' Turner4ab12252014-03-24 11:29:53 +01001020 }
Jun Nakajima1321c762011-03-04 17:17:45 -08001021}
1022
1023#else /* !KVM_CAP_SET_GUEST_DEBUG */
1024
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001025int kvm_update_guest_debug(CPUState *cpu, unsigned long reinject_trap)
Jun Nakajima1321c762011-03-04 17:17:45 -08001026{
1027 return -EINVAL;
1028}
1029
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001030int kvm_insert_breakpoint(CPUState *cpu, target_ulong addr,
Jun Nakajima1321c762011-03-04 17:17:45 -08001031 target_ulong len, int type)
1032{
1033 return -EINVAL;
1034}
1035
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001036int kvm_remove_breakpoint(CPUState *cpu, target_ulong addr,
Jun Nakajima1321c762011-03-04 17:17:45 -08001037 target_ulong len, int type)
1038{
1039 return -EINVAL;
1040}
1041
David 'Digit' Turnere36a6832014-03-25 18:02:39 +01001042void kvm_remove_all_breakpoints(CPUState *cpu)
Jun Nakajima1321c762011-03-04 17:17:45 -08001043{
1044}
1045#endif /* !KVM_CAP_SET_GUEST_DEBUG */