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1 05330448 aliguori
/*
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 * QEMU KVM support
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 *
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 * Copyright IBM, Corp. 2008
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 *           Red Hat, Inc. 2008
6 05330448 aliguori
 *
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 * Authors:
8 05330448 aliguori
 *  Anthony Liguori   <aliguori@us.ibm.com>
9 5832d1f2 aliguori
 *  Glauber Costa     <gcosta@redhat.com>
10 05330448 aliguori
 *
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 * This work is licensed under the terms of the GNU GPL, version 2 or later.
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 * See the COPYING file in the top-level directory.
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 *
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 */
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#include <sys/types.h>
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#include <sys/ioctl.h>
18 05330448 aliguori
#include <sys/mman.h>
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#include <stdarg.h>
20 05330448 aliguori
21 05330448 aliguori
#include <linux/kvm.h>
22 05330448 aliguori
23 05330448 aliguori
#include "qemu-common.h"
24 85199474 Marcelo Tosatti
#include "qemu-barrier.h"
25 05330448 aliguori
#include "sysemu.h"
26 d33a1810 Jan Kiszka
#include "hw/hw.h"
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#include "gdbstub.h"
28 05330448 aliguori
#include "kvm.h"
29 8369e01c Marcelo Tosatti
#include "bswap.h"
30 05330448 aliguori
31 d2f2b8a7 Stefan Hajnoczi
/* This check must be after config-host.h is included */
32 d2f2b8a7 Stefan Hajnoczi
#ifdef CONFIG_EVENTFD
33 d2f2b8a7 Stefan Hajnoczi
#include <sys/eventfd.h>
34 d2f2b8a7 Stefan Hajnoczi
#endif
35 d2f2b8a7 Stefan Hajnoczi
36 f65ed4c1 aliguori
/* KVM uses PAGE_SIZE in it's definition of COALESCED_MMIO_MAX */
37 f65ed4c1 aliguori
#define PAGE_SIZE TARGET_PAGE_SIZE
38 f65ed4c1 aliguori
39 05330448 aliguori
//#define DEBUG_KVM
40 05330448 aliguori
41 05330448 aliguori
#ifdef DEBUG_KVM
42 8c0d577e Blue Swirl
#define DPRINTF(fmt, ...) \
43 05330448 aliguori
    do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
44 05330448 aliguori
#else
45 8c0d577e Blue Swirl
#define DPRINTF(fmt, ...) \
46 05330448 aliguori
    do { } while (0)
47 05330448 aliguori
#endif
48 05330448 aliguori
49 34fc643f aliguori
typedef struct KVMSlot
50 34fc643f aliguori
{
51 c227f099 Anthony Liguori
    target_phys_addr_t start_addr;
52 c227f099 Anthony Liguori
    ram_addr_t memory_size;
53 c227f099 Anthony Liguori
    ram_addr_t phys_offset;
54 34fc643f aliguori
    int slot;
55 34fc643f aliguori
    int flags;
56 34fc643f aliguori
} KVMSlot;
57 05330448 aliguori
58 5832d1f2 aliguori
typedef struct kvm_dirty_log KVMDirtyLog;
59 5832d1f2 aliguori
60 05330448 aliguori
struct KVMState
61 05330448 aliguori
{
62 05330448 aliguori
    KVMSlot slots[32];
63 05330448 aliguori
    int fd;
64 05330448 aliguori
    int vmfd;
65 f65ed4c1 aliguori
    int coalesced_mmio;
66 62a2744c Sheng Yang
    struct kvm_coalesced_mmio_ring *coalesced_mmio_ring;
67 e69917e2 Jan Kiszka
    int broken_set_mem_region;
68 4495d6a7 Jan Kiszka
    int migration_log;
69 a0fb002c Jan Kiszka
    int vcpu_events;
70 b0b1d690 Jan Kiszka
    int robust_singlestep;
71 ff44f1a3 Jan Kiszka
    int debugregs;
72 e22a25c9 aliguori
#ifdef KVM_CAP_SET_GUEST_DEBUG
73 e22a25c9 aliguori
    struct kvm_sw_breakpoint_head kvm_sw_breakpoints;
74 e22a25c9 aliguori
#endif
75 6f725c13 Glauber Costa
    int irqchip_in_kernel;
76 6f725c13 Glauber Costa
    int pit_in_kernel;
77 f1665b21 Sheng Yang
    int xsave, xcrs;
78 d2f2b8a7 Stefan Hajnoczi
    int many_ioeventfds;
79 05330448 aliguori
};
80 05330448 aliguori
81 6a7af8cb Jan Kiszka
KVMState *kvm_state;
82 05330448 aliguori
83 94a8d39a Jan Kiszka
static const KVMCapabilityInfo kvm_required_capabilites[] = {
84 94a8d39a Jan Kiszka
    KVM_CAP_INFO(USER_MEMORY),
85 94a8d39a Jan Kiszka
    KVM_CAP_INFO(DESTROY_MEMORY_REGION_WORKS),
86 94a8d39a Jan Kiszka
    KVM_CAP_LAST_INFO
87 94a8d39a Jan Kiszka
};
88 94a8d39a Jan Kiszka
89 05330448 aliguori
static KVMSlot *kvm_alloc_slot(KVMState *s)
90 05330448 aliguori
{
91 05330448 aliguori
    int i;
92 05330448 aliguori
93 05330448 aliguori
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
94 a426e122 Jan Kiszka
        if (s->slots[i].memory_size == 0) {
95 05330448 aliguori
            return &s->slots[i];
96 a426e122 Jan Kiszka
        }
97 05330448 aliguori
    }
98 05330448 aliguori
99 d3f8d37f aliguori
    fprintf(stderr, "%s: no free slot available\n", __func__);
100 d3f8d37f aliguori
    abort();
101 d3f8d37f aliguori
}
102 d3f8d37f aliguori
103 d3f8d37f aliguori
static KVMSlot *kvm_lookup_matching_slot(KVMState *s,
104 c227f099 Anthony Liguori
                                         target_phys_addr_t start_addr,
105 c227f099 Anthony Liguori
                                         target_phys_addr_t end_addr)
106 d3f8d37f aliguori
{
107 d3f8d37f aliguori
    int i;
108 d3f8d37f aliguori
109 d3f8d37f aliguori
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
110 d3f8d37f aliguori
        KVMSlot *mem = &s->slots[i];
111 d3f8d37f aliguori
112 d3f8d37f aliguori
        if (start_addr == mem->start_addr &&
113 d3f8d37f aliguori
            end_addr == mem->start_addr + mem->memory_size) {
114 d3f8d37f aliguori
            return mem;
115 d3f8d37f aliguori
        }
116 d3f8d37f aliguori
    }
117 d3f8d37f aliguori
118 05330448 aliguori
    return NULL;
119 05330448 aliguori
}
120 05330448 aliguori
121 6152e2ae aliguori
/*
122 6152e2ae aliguori
 * Find overlapping slot with lowest start address
123 6152e2ae aliguori
 */
124 6152e2ae aliguori
static KVMSlot *kvm_lookup_overlapping_slot(KVMState *s,
125 c227f099 Anthony Liguori
                                            target_phys_addr_t start_addr,
126 c227f099 Anthony Liguori
                                            target_phys_addr_t end_addr)
127 05330448 aliguori
{
128 6152e2ae aliguori
    KVMSlot *found = NULL;
129 05330448 aliguori
    int i;
130 05330448 aliguori
131 05330448 aliguori
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
132 05330448 aliguori
        KVMSlot *mem = &s->slots[i];
133 05330448 aliguori
134 6152e2ae aliguori
        if (mem->memory_size == 0 ||
135 6152e2ae aliguori
            (found && found->start_addr < mem->start_addr)) {
136 6152e2ae aliguori
            continue;
137 6152e2ae aliguori
        }
138 6152e2ae aliguori
139 6152e2ae aliguori
        if (end_addr > mem->start_addr &&
140 6152e2ae aliguori
            start_addr < mem->start_addr + mem->memory_size) {
141 6152e2ae aliguori
            found = mem;
142 6152e2ae aliguori
        }
143 05330448 aliguori
    }
144 05330448 aliguori
145 6152e2ae aliguori
    return found;
146 05330448 aliguori
}
147 05330448 aliguori
148 983dfc3b Huang Ying
int kvm_physical_memory_addr_from_ram(KVMState *s, ram_addr_t ram_addr,
149 983dfc3b Huang Ying
                                      target_phys_addr_t *phys_addr)
150 983dfc3b Huang Ying
{
151 983dfc3b Huang Ying
    int i;
152 983dfc3b Huang Ying
153 983dfc3b Huang Ying
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
154 983dfc3b Huang Ying
        KVMSlot *mem = &s->slots[i];
155 983dfc3b Huang Ying
156 983dfc3b Huang Ying
        if (ram_addr >= mem->phys_offset &&
157 983dfc3b Huang Ying
            ram_addr < mem->phys_offset + mem->memory_size) {
158 983dfc3b Huang Ying
            *phys_addr = mem->start_addr + (ram_addr - mem->phys_offset);
159 983dfc3b Huang Ying
            return 1;
160 983dfc3b Huang Ying
        }
161 983dfc3b Huang Ying
    }
162 983dfc3b Huang Ying
163 983dfc3b Huang Ying
    return 0;
164 983dfc3b Huang Ying
}
165 983dfc3b Huang Ying
166 5832d1f2 aliguori
static int kvm_set_user_memory_region(KVMState *s, KVMSlot *slot)
167 5832d1f2 aliguori
{
168 5832d1f2 aliguori
    struct kvm_userspace_memory_region mem;
169 5832d1f2 aliguori
170 5832d1f2 aliguori
    mem.slot = slot->slot;
171 5832d1f2 aliguori
    mem.guest_phys_addr = slot->start_addr;
172 5832d1f2 aliguori
    mem.memory_size = slot->memory_size;
173 b2e0a138 Michael S. Tsirkin
    mem.userspace_addr = (unsigned long)qemu_safe_ram_ptr(slot->phys_offset);
174 5832d1f2 aliguori
    mem.flags = slot->flags;
175 4495d6a7 Jan Kiszka
    if (s->migration_log) {
176 4495d6a7 Jan Kiszka
        mem.flags |= KVM_MEM_LOG_DIRTY_PAGES;
177 4495d6a7 Jan Kiszka
    }
178 5832d1f2 aliguori
    return kvm_vm_ioctl(s, KVM_SET_USER_MEMORY_REGION, &mem);
179 5832d1f2 aliguori
}
180 5832d1f2 aliguori
181 8d2ba1fb Jan Kiszka
static void kvm_reset_vcpu(void *opaque)
182 8d2ba1fb Jan Kiszka
{
183 8d2ba1fb Jan Kiszka
    CPUState *env = opaque;
184 8d2ba1fb Jan Kiszka
185 caa5af0f Jan Kiszka
    kvm_arch_reset_vcpu(env);
186 8d2ba1fb Jan Kiszka
}
187 5832d1f2 aliguori
188 6f725c13 Glauber Costa
int kvm_irqchip_in_kernel(void)
189 6f725c13 Glauber Costa
{
190 6f725c13 Glauber Costa
    return kvm_state->irqchip_in_kernel;
191 6f725c13 Glauber Costa
}
192 6f725c13 Glauber Costa
193 6f725c13 Glauber Costa
int kvm_pit_in_kernel(void)
194 6f725c13 Glauber Costa
{
195 6f725c13 Glauber Costa
    return kvm_state->pit_in_kernel;
196 6f725c13 Glauber Costa
}
197 6f725c13 Glauber Costa
198 05330448 aliguori
int kvm_init_vcpu(CPUState *env)
199 05330448 aliguori
{
200 05330448 aliguori
    KVMState *s = kvm_state;
201 05330448 aliguori
    long mmap_size;
202 05330448 aliguori
    int ret;
203 05330448 aliguori
204 8c0d577e Blue Swirl
    DPRINTF("kvm_init_vcpu\n");
205 05330448 aliguori
206 984b5181 aliguori
    ret = kvm_vm_ioctl(s, KVM_CREATE_VCPU, env->cpu_index);
207 05330448 aliguori
    if (ret < 0) {
208 8c0d577e Blue Swirl
        DPRINTF("kvm_create_vcpu failed\n");
209 05330448 aliguori
        goto err;
210 05330448 aliguori
    }
211 05330448 aliguori
212 05330448 aliguori
    env->kvm_fd = ret;
213 05330448 aliguori
    env->kvm_state = s;
214 d841b6c4 Jan Kiszka
    env->kvm_vcpu_dirty = 1;
215 05330448 aliguori
216 05330448 aliguori
    mmap_size = kvm_ioctl(s, KVM_GET_VCPU_MMAP_SIZE, 0);
217 05330448 aliguori
    if (mmap_size < 0) {
218 748a680b Jan Kiszka
        ret = mmap_size;
219 8c0d577e Blue Swirl
        DPRINTF("KVM_GET_VCPU_MMAP_SIZE failed\n");
220 05330448 aliguori
        goto err;
221 05330448 aliguori
    }
222 05330448 aliguori
223 05330448 aliguori
    env->kvm_run = mmap(NULL, mmap_size, PROT_READ | PROT_WRITE, MAP_SHARED,
224 05330448 aliguori
                        env->kvm_fd, 0);
225 05330448 aliguori
    if (env->kvm_run == MAP_FAILED) {
226 05330448 aliguori
        ret = -errno;
227 8c0d577e Blue Swirl
        DPRINTF("mmap'ing vcpu state failed\n");
228 05330448 aliguori
        goto err;
229 05330448 aliguori
    }
230 05330448 aliguori
231 a426e122 Jan Kiszka
    if (s->coalesced_mmio && !s->coalesced_mmio_ring) {
232 a426e122 Jan Kiszka
        s->coalesced_mmio_ring =
233 a426e122 Jan Kiszka
            (void *)env->kvm_run + s->coalesced_mmio * PAGE_SIZE;
234 a426e122 Jan Kiszka
    }
235 62a2744c Sheng Yang
236 05330448 aliguori
    ret = kvm_arch_init_vcpu(env);
237 8d2ba1fb Jan Kiszka
    if (ret == 0) {
238 a08d4367 Jan Kiszka
        qemu_register_reset(kvm_reset_vcpu, env);
239 caa5af0f Jan Kiszka
        kvm_arch_reset_vcpu(env);
240 8d2ba1fb Jan Kiszka
    }
241 05330448 aliguori
err:
242 05330448 aliguori
    return ret;
243 05330448 aliguori
}
244 05330448 aliguori
245 5832d1f2 aliguori
/*
246 5832d1f2 aliguori
 * dirty pages logging control
247 5832d1f2 aliguori
 */
248 25254bbc Michael S. Tsirkin
249 25254bbc Michael S. Tsirkin
static int kvm_mem_flags(KVMState *s, bool log_dirty)
250 25254bbc Michael S. Tsirkin
{
251 25254bbc Michael S. Tsirkin
    return log_dirty ? KVM_MEM_LOG_DIRTY_PAGES : 0;
252 25254bbc Michael S. Tsirkin
}
253 25254bbc Michael S. Tsirkin
254 25254bbc Michael S. Tsirkin
static int kvm_slot_dirty_pages_log_change(KVMSlot *mem, bool log_dirty)
255 5832d1f2 aliguori
{
256 5832d1f2 aliguori
    KVMState *s = kvm_state;
257 25254bbc Michael S. Tsirkin
    int flags, mask = KVM_MEM_LOG_DIRTY_PAGES;
258 4495d6a7 Jan Kiszka
    int old_flags;
259 4495d6a7 Jan Kiszka
260 4495d6a7 Jan Kiszka
    old_flags = mem->flags;
261 5832d1f2 aliguori
262 25254bbc Michael S. Tsirkin
    flags = (mem->flags & ~mask) | kvm_mem_flags(s, log_dirty);
263 5832d1f2 aliguori
    mem->flags = flags;
264 5832d1f2 aliguori
265 4495d6a7 Jan Kiszka
    /* If nothing changed effectively, no need to issue ioctl */
266 4495d6a7 Jan Kiszka
    if (s->migration_log) {
267 4495d6a7 Jan Kiszka
        flags |= KVM_MEM_LOG_DIRTY_PAGES;
268 4495d6a7 Jan Kiszka
    }
269 25254bbc Michael S. Tsirkin
270 4495d6a7 Jan Kiszka
    if (flags == old_flags) {
271 25254bbc Michael S. Tsirkin
        return 0;
272 4495d6a7 Jan Kiszka
    }
273 4495d6a7 Jan Kiszka
274 5832d1f2 aliguori
    return kvm_set_user_memory_region(s, mem);
275 5832d1f2 aliguori
}
276 5832d1f2 aliguori
277 25254bbc Michael S. Tsirkin
static int kvm_dirty_pages_log_change(target_phys_addr_t phys_addr,
278 25254bbc Michael S. Tsirkin
                                      ram_addr_t size, bool log_dirty)
279 25254bbc Michael S. Tsirkin
{
280 25254bbc Michael S. Tsirkin
    KVMState *s = kvm_state;
281 25254bbc Michael S. Tsirkin
    KVMSlot *mem = kvm_lookup_matching_slot(s, phys_addr, phys_addr + size);
282 25254bbc Michael S. Tsirkin
283 25254bbc Michael S. Tsirkin
    if (mem == NULL)  {
284 25254bbc Michael S. Tsirkin
        fprintf(stderr, "BUG: %s: invalid parameters " TARGET_FMT_plx "-"
285 25254bbc Michael S. Tsirkin
                TARGET_FMT_plx "\n", __func__, phys_addr,
286 25254bbc Michael S. Tsirkin
                (target_phys_addr_t)(phys_addr + size - 1));
287 25254bbc Michael S. Tsirkin
        return -EINVAL;
288 25254bbc Michael S. Tsirkin
    }
289 25254bbc Michael S. Tsirkin
    return kvm_slot_dirty_pages_log_change(mem, log_dirty);
290 25254bbc Michael S. Tsirkin
}
291 25254bbc Michael S. Tsirkin
292 e5896b12 Anthony PERARD
static int kvm_log_start(CPUPhysMemoryClient *client,
293 e5896b12 Anthony PERARD
                         target_phys_addr_t phys_addr, ram_addr_t size)
294 5832d1f2 aliguori
{
295 25254bbc Michael S. Tsirkin
    return kvm_dirty_pages_log_change(phys_addr, size, true);
296 5832d1f2 aliguori
}
297 5832d1f2 aliguori
298 e5896b12 Anthony PERARD
static int kvm_log_stop(CPUPhysMemoryClient *client,
299 e5896b12 Anthony PERARD
                        target_phys_addr_t phys_addr, ram_addr_t size)
300 5832d1f2 aliguori
{
301 25254bbc Michael S. Tsirkin
    return kvm_dirty_pages_log_change(phys_addr, size, false);
302 5832d1f2 aliguori
}
303 5832d1f2 aliguori
304 7b8f3b78 Michael S. Tsirkin
static int kvm_set_migration_log(int enable)
305 4495d6a7 Jan Kiszka
{
306 4495d6a7 Jan Kiszka
    KVMState *s = kvm_state;
307 4495d6a7 Jan Kiszka
    KVMSlot *mem;
308 4495d6a7 Jan Kiszka
    int i, err;
309 4495d6a7 Jan Kiszka
310 4495d6a7 Jan Kiszka
    s->migration_log = enable;
311 4495d6a7 Jan Kiszka
312 4495d6a7 Jan Kiszka
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
313 4495d6a7 Jan Kiszka
        mem = &s->slots[i];
314 4495d6a7 Jan Kiszka
315 70fedd76 Alex Williamson
        if (!mem->memory_size) {
316 70fedd76 Alex Williamson
            continue;
317 70fedd76 Alex Williamson
        }
318 4495d6a7 Jan Kiszka
        if (!!(mem->flags & KVM_MEM_LOG_DIRTY_PAGES) == enable) {
319 4495d6a7 Jan Kiszka
            continue;
320 4495d6a7 Jan Kiszka
        }
321 4495d6a7 Jan Kiszka
        err = kvm_set_user_memory_region(s, mem);
322 4495d6a7 Jan Kiszka
        if (err) {
323 4495d6a7 Jan Kiszka
            return err;
324 4495d6a7 Jan Kiszka
        }
325 4495d6a7 Jan Kiszka
    }
326 4495d6a7 Jan Kiszka
    return 0;
327 4495d6a7 Jan Kiszka
}
328 4495d6a7 Jan Kiszka
329 8369e01c Marcelo Tosatti
/* get kvm's dirty pages bitmap and update qemu's */
330 8369e01c Marcelo Tosatti
static int kvm_get_dirty_pages_log_range(unsigned long start_addr,
331 8369e01c Marcelo Tosatti
                                         unsigned long *bitmap,
332 8369e01c Marcelo Tosatti
                                         unsigned long offset,
333 8369e01c Marcelo Tosatti
                                         unsigned long mem_size)
334 96c1606b Alexander Graf
{
335 8369e01c Marcelo Tosatti
    unsigned int i, j;
336 8369e01c Marcelo Tosatti
    unsigned long page_number, addr, addr1, c;
337 8369e01c Marcelo Tosatti
    ram_addr_t ram_addr;
338 8369e01c Marcelo Tosatti
    unsigned int len = ((mem_size / TARGET_PAGE_SIZE) + HOST_LONG_BITS - 1) /
339 8369e01c Marcelo Tosatti
        HOST_LONG_BITS;
340 8369e01c Marcelo Tosatti
341 8369e01c Marcelo Tosatti
    /*
342 8369e01c Marcelo Tosatti
     * bitmap-traveling is faster than memory-traveling (for addr...)
343 8369e01c Marcelo Tosatti
     * especially when most of the memory is not dirty.
344 8369e01c Marcelo Tosatti
     */
345 8369e01c Marcelo Tosatti
    for (i = 0; i < len; i++) {
346 8369e01c Marcelo Tosatti
        if (bitmap[i] != 0) {
347 8369e01c Marcelo Tosatti
            c = leul_to_cpu(bitmap[i]);
348 8369e01c Marcelo Tosatti
            do {
349 8369e01c Marcelo Tosatti
                j = ffsl(c) - 1;
350 8369e01c Marcelo Tosatti
                c &= ~(1ul << j);
351 8369e01c Marcelo Tosatti
                page_number = i * HOST_LONG_BITS + j;
352 8369e01c Marcelo Tosatti
                addr1 = page_number * TARGET_PAGE_SIZE;
353 8369e01c Marcelo Tosatti
                addr = offset + addr1;
354 8369e01c Marcelo Tosatti
                ram_addr = cpu_get_physical_page_desc(addr);
355 8369e01c Marcelo Tosatti
                cpu_physical_memory_set_dirty(ram_addr);
356 8369e01c Marcelo Tosatti
            } while (c != 0);
357 8369e01c Marcelo Tosatti
        }
358 8369e01c Marcelo Tosatti
    }
359 8369e01c Marcelo Tosatti
    return 0;
360 96c1606b Alexander Graf
}
361 96c1606b Alexander Graf
362 8369e01c Marcelo Tosatti
#define ALIGN(x, y)  (((x)+(y)-1) & ~((y)-1))
363 8369e01c Marcelo Tosatti
364 5832d1f2 aliguori
/**
365 5832d1f2 aliguori
 * kvm_physical_sync_dirty_bitmap - Grab dirty bitmap from kernel space
366 5832d1f2 aliguori
 * This function updates qemu's dirty bitmap using cpu_physical_memory_set_dirty().
367 5832d1f2 aliguori
 * This means all bits are set to dirty.
368 5832d1f2 aliguori
 *
369 d3f8d37f aliguori
 * @start_add: start of logged region.
370 5832d1f2 aliguori
 * @end_addr: end of logged region.
371 5832d1f2 aliguori
 */
372 7b8f3b78 Michael S. Tsirkin
static int kvm_physical_sync_dirty_bitmap(target_phys_addr_t start_addr,
373 a426e122 Jan Kiszka
                                          target_phys_addr_t end_addr)
374 5832d1f2 aliguori
{
375 5832d1f2 aliguori
    KVMState *s = kvm_state;
376 151f7749 Jan Kiszka
    unsigned long size, allocated_size = 0;
377 151f7749 Jan Kiszka
    KVMDirtyLog d;
378 151f7749 Jan Kiszka
    KVMSlot *mem;
379 151f7749 Jan Kiszka
    int ret = 0;
380 5832d1f2 aliguori
381 151f7749 Jan Kiszka
    d.dirty_bitmap = NULL;
382 151f7749 Jan Kiszka
    while (start_addr < end_addr) {
383 151f7749 Jan Kiszka
        mem = kvm_lookup_overlapping_slot(s, start_addr, end_addr);
384 151f7749 Jan Kiszka
        if (mem == NULL) {
385 151f7749 Jan Kiszka
            break;
386 151f7749 Jan Kiszka
        }
387 5832d1f2 aliguori
388 51b0c606 Michael Tokarev
        /* XXX bad kernel interface alert
389 51b0c606 Michael Tokarev
         * For dirty bitmap, kernel allocates array of size aligned to
390 51b0c606 Michael Tokarev
         * bits-per-long.  But for case when the kernel is 64bits and
391 51b0c606 Michael Tokarev
         * the userspace is 32bits, userspace can't align to the same
392 51b0c606 Michael Tokarev
         * bits-per-long, since sizeof(long) is different between kernel
393 51b0c606 Michael Tokarev
         * and user space.  This way, userspace will provide buffer which
394 51b0c606 Michael Tokarev
         * may be 4 bytes less than the kernel will use, resulting in
395 51b0c606 Michael Tokarev
         * userspace memory corruption (which is not detectable by valgrind
396 51b0c606 Michael Tokarev
         * too, in most cases).
397 51b0c606 Michael Tokarev
         * So for now, let's align to 64 instead of HOST_LONG_BITS here, in
398 51b0c606 Michael Tokarev
         * a hope that sizeof(long) wont become >8 any time soon.
399 51b0c606 Michael Tokarev
         */
400 51b0c606 Michael Tokarev
        size = ALIGN(((mem->memory_size) >> TARGET_PAGE_BITS),
401 51b0c606 Michael Tokarev
                     /*HOST_LONG_BITS*/ 64) / 8;
402 151f7749 Jan Kiszka
        if (!d.dirty_bitmap) {
403 151f7749 Jan Kiszka
            d.dirty_bitmap = qemu_malloc(size);
404 151f7749 Jan Kiszka
        } else if (size > allocated_size) {
405 151f7749 Jan Kiszka
            d.dirty_bitmap = qemu_realloc(d.dirty_bitmap, size);
406 151f7749 Jan Kiszka
        }
407 151f7749 Jan Kiszka
        allocated_size = size;
408 151f7749 Jan Kiszka
        memset(d.dirty_bitmap, 0, allocated_size);
409 5832d1f2 aliguori
410 151f7749 Jan Kiszka
        d.slot = mem->slot;
411 5832d1f2 aliguori
412 6e489f3f Anthony Liguori
        if (kvm_vm_ioctl(s, KVM_GET_DIRTY_LOG, &d) == -1) {
413 8c0d577e Blue Swirl
            DPRINTF("ioctl failed %d\n", errno);
414 151f7749 Jan Kiszka
            ret = -1;
415 151f7749 Jan Kiszka
            break;
416 151f7749 Jan Kiszka
        }
417 5832d1f2 aliguori
418 8369e01c Marcelo Tosatti
        kvm_get_dirty_pages_log_range(mem->start_addr, d.dirty_bitmap,
419 8369e01c Marcelo Tosatti
                                      mem->start_addr, mem->memory_size);
420 8369e01c Marcelo Tosatti
        start_addr = mem->start_addr + mem->memory_size;
421 5832d1f2 aliguori
    }
422 5832d1f2 aliguori
    qemu_free(d.dirty_bitmap);
423 151f7749 Jan Kiszka
424 151f7749 Jan Kiszka
    return ret;
425 5832d1f2 aliguori
}
426 5832d1f2 aliguori
427 c227f099 Anthony Liguori
int kvm_coalesce_mmio_region(target_phys_addr_t start, ram_addr_t size)
428 f65ed4c1 aliguori
{
429 f65ed4c1 aliguori
    int ret = -ENOSYS;
430 f65ed4c1 aliguori
    KVMState *s = kvm_state;
431 f65ed4c1 aliguori
432 f65ed4c1 aliguori
    if (s->coalesced_mmio) {
433 f65ed4c1 aliguori
        struct kvm_coalesced_mmio_zone zone;
434 f65ed4c1 aliguori
435 f65ed4c1 aliguori
        zone.addr = start;
436 f65ed4c1 aliguori
        zone.size = size;
437 f65ed4c1 aliguori
438 f65ed4c1 aliguori
        ret = kvm_vm_ioctl(s, KVM_REGISTER_COALESCED_MMIO, &zone);
439 f65ed4c1 aliguori
    }
440 f65ed4c1 aliguori
441 f65ed4c1 aliguori
    return ret;
442 f65ed4c1 aliguori
}
443 f65ed4c1 aliguori
444 c227f099 Anthony Liguori
int kvm_uncoalesce_mmio_region(target_phys_addr_t start, ram_addr_t size)
445 f65ed4c1 aliguori
{
446 f65ed4c1 aliguori
    int ret = -ENOSYS;
447 f65ed4c1 aliguori
    KVMState *s = kvm_state;
448 f65ed4c1 aliguori
449 f65ed4c1 aliguori
    if (s->coalesced_mmio) {
450 f65ed4c1 aliguori
        struct kvm_coalesced_mmio_zone zone;
451 f65ed4c1 aliguori
452 f65ed4c1 aliguori
        zone.addr = start;
453 f65ed4c1 aliguori
        zone.size = size;
454 f65ed4c1 aliguori
455 f65ed4c1 aliguori
        ret = kvm_vm_ioctl(s, KVM_UNREGISTER_COALESCED_MMIO, &zone);
456 f65ed4c1 aliguori
    }
457 f65ed4c1 aliguori
458 f65ed4c1 aliguori
    return ret;
459 f65ed4c1 aliguori
}
460 f65ed4c1 aliguori
461 ad7b8b33 Anthony Liguori
int kvm_check_extension(KVMState *s, unsigned int extension)
462 ad7b8b33 Anthony Liguori
{
463 ad7b8b33 Anthony Liguori
    int ret;
464 ad7b8b33 Anthony Liguori
465 ad7b8b33 Anthony Liguori
    ret = kvm_ioctl(s, KVM_CHECK_EXTENSION, extension);
466 ad7b8b33 Anthony Liguori
    if (ret < 0) {
467 ad7b8b33 Anthony Liguori
        ret = 0;
468 ad7b8b33 Anthony Liguori
    }
469 ad7b8b33 Anthony Liguori
470 ad7b8b33 Anthony Liguori
    return ret;
471 ad7b8b33 Anthony Liguori
}
472 ad7b8b33 Anthony Liguori
473 d2f2b8a7 Stefan Hajnoczi
static int kvm_check_many_ioeventfds(void)
474 d2f2b8a7 Stefan Hajnoczi
{
475 d0dcac83 Stefan Hajnoczi
    /* Userspace can use ioeventfd for io notification.  This requires a host
476 d0dcac83 Stefan Hajnoczi
     * that supports eventfd(2) and an I/O thread; since eventfd does not
477 d0dcac83 Stefan Hajnoczi
     * support SIGIO it cannot interrupt the vcpu.
478 d0dcac83 Stefan Hajnoczi
     *
479 d0dcac83 Stefan Hajnoczi
     * Older kernels have a 6 device limit on the KVM io bus.  Find out so we
480 d2f2b8a7 Stefan Hajnoczi
     * can avoid creating too many ioeventfds.
481 d2f2b8a7 Stefan Hajnoczi
     */
482 d0dcac83 Stefan Hajnoczi
#if defined(CONFIG_EVENTFD) && defined(CONFIG_IOTHREAD)
483 d2f2b8a7 Stefan Hajnoczi
    int ioeventfds[7];
484 d2f2b8a7 Stefan Hajnoczi
    int i, ret = 0;
485 d2f2b8a7 Stefan Hajnoczi
    for (i = 0; i < ARRAY_SIZE(ioeventfds); i++) {
486 d2f2b8a7 Stefan Hajnoczi
        ioeventfds[i] = eventfd(0, EFD_CLOEXEC);
487 d2f2b8a7 Stefan Hajnoczi
        if (ioeventfds[i] < 0) {
488 d2f2b8a7 Stefan Hajnoczi
            break;
489 d2f2b8a7 Stefan Hajnoczi
        }
490 d2f2b8a7 Stefan Hajnoczi
        ret = kvm_set_ioeventfd_pio_word(ioeventfds[i], 0, i, true);
491 d2f2b8a7 Stefan Hajnoczi
        if (ret < 0) {
492 d2f2b8a7 Stefan Hajnoczi
            close(ioeventfds[i]);
493 d2f2b8a7 Stefan Hajnoczi
            break;
494 d2f2b8a7 Stefan Hajnoczi
        }
495 d2f2b8a7 Stefan Hajnoczi
    }
496 d2f2b8a7 Stefan Hajnoczi
497 d2f2b8a7 Stefan Hajnoczi
    /* Decide whether many devices are supported or not */
498 d2f2b8a7 Stefan Hajnoczi
    ret = i == ARRAY_SIZE(ioeventfds);
499 d2f2b8a7 Stefan Hajnoczi
500 d2f2b8a7 Stefan Hajnoczi
    while (i-- > 0) {
501 d2f2b8a7 Stefan Hajnoczi
        kvm_set_ioeventfd_pio_word(ioeventfds[i], 0, i, false);
502 d2f2b8a7 Stefan Hajnoczi
        close(ioeventfds[i]);
503 d2f2b8a7 Stefan Hajnoczi
    }
504 d2f2b8a7 Stefan Hajnoczi
    return ret;
505 d2f2b8a7 Stefan Hajnoczi
#else
506 d2f2b8a7 Stefan Hajnoczi
    return 0;
507 d2f2b8a7 Stefan Hajnoczi
#endif
508 d2f2b8a7 Stefan Hajnoczi
}
509 d2f2b8a7 Stefan Hajnoczi
510 94a8d39a Jan Kiszka
static const KVMCapabilityInfo *
511 94a8d39a Jan Kiszka
kvm_check_extension_list(KVMState *s, const KVMCapabilityInfo *list)
512 94a8d39a Jan Kiszka
{
513 94a8d39a Jan Kiszka
    while (list->name) {
514 94a8d39a Jan Kiszka
        if (!kvm_check_extension(s, list->value)) {
515 94a8d39a Jan Kiszka
            return list;
516 94a8d39a Jan Kiszka
        }
517 94a8d39a Jan Kiszka
        list++;
518 94a8d39a Jan Kiszka
    }
519 94a8d39a Jan Kiszka
    return NULL;
520 94a8d39a Jan Kiszka
}
521 94a8d39a Jan Kiszka
522 a426e122 Jan Kiszka
static void kvm_set_phys_mem(target_phys_addr_t start_addr, ram_addr_t size,
523 25254bbc Michael S. Tsirkin
                             ram_addr_t phys_offset, bool log_dirty)
524 46dbef6a Michael S. Tsirkin
{
525 46dbef6a Michael S. Tsirkin
    KVMState *s = kvm_state;
526 46dbef6a Michael S. Tsirkin
    ram_addr_t flags = phys_offset & ~TARGET_PAGE_MASK;
527 46dbef6a Michael S. Tsirkin
    KVMSlot *mem, old;
528 46dbef6a Michael S. Tsirkin
    int err;
529 46dbef6a Michael S. Tsirkin
530 14542fea Gleb Natapov
    /* kvm works in page size chunks, but the function may be called
531 14542fea Gleb Natapov
       with sub-page size and unaligned start address. */
532 14542fea Gleb Natapov
    size = TARGET_PAGE_ALIGN(size);
533 14542fea Gleb Natapov
    start_addr = TARGET_PAGE_ALIGN(start_addr);
534 46dbef6a Michael S. Tsirkin
535 46dbef6a Michael S. Tsirkin
    /* KVM does not support read-only slots */
536 46dbef6a Michael S. Tsirkin
    phys_offset &= ~IO_MEM_ROM;
537 46dbef6a Michael S. Tsirkin
538 46dbef6a Michael S. Tsirkin
    while (1) {
539 46dbef6a Michael S. Tsirkin
        mem = kvm_lookup_overlapping_slot(s, start_addr, start_addr + size);
540 46dbef6a Michael S. Tsirkin
        if (!mem) {
541 46dbef6a Michael S. Tsirkin
            break;
542 46dbef6a Michael S. Tsirkin
        }
543 46dbef6a Michael S. Tsirkin
544 46dbef6a Michael S. Tsirkin
        if (flags < IO_MEM_UNASSIGNED && start_addr >= mem->start_addr &&
545 46dbef6a Michael S. Tsirkin
            (start_addr + size <= mem->start_addr + mem->memory_size) &&
546 46dbef6a Michael S. Tsirkin
            (phys_offset - start_addr == mem->phys_offset - mem->start_addr)) {
547 46dbef6a Michael S. Tsirkin
            /* The new slot fits into the existing one and comes with
548 25254bbc Michael S. Tsirkin
             * identical parameters - update flags and done. */
549 25254bbc Michael S. Tsirkin
            kvm_slot_dirty_pages_log_change(mem, log_dirty);
550 46dbef6a Michael S. Tsirkin
            return;
551 46dbef6a Michael S. Tsirkin
        }
552 46dbef6a Michael S. Tsirkin
553 46dbef6a Michael S. Tsirkin
        old = *mem;
554 46dbef6a Michael S. Tsirkin
555 46dbef6a Michael S. Tsirkin
        /* unregister the overlapping slot */
556 46dbef6a Michael S. Tsirkin
        mem->memory_size = 0;
557 46dbef6a Michael S. Tsirkin
        err = kvm_set_user_memory_region(s, mem);
558 46dbef6a Michael S. Tsirkin
        if (err) {
559 46dbef6a Michael S. Tsirkin
            fprintf(stderr, "%s: error unregistering overlapping slot: %s\n",
560 46dbef6a Michael S. Tsirkin
                    __func__, strerror(-err));
561 46dbef6a Michael S. Tsirkin
            abort();
562 46dbef6a Michael S. Tsirkin
        }
563 46dbef6a Michael S. Tsirkin
564 46dbef6a Michael S. Tsirkin
        /* Workaround for older KVM versions: we can't join slots, even not by
565 46dbef6a Michael S. Tsirkin
         * unregistering the previous ones and then registering the larger
566 46dbef6a Michael S. Tsirkin
         * slot. We have to maintain the existing fragmentation. Sigh.
567 46dbef6a Michael S. Tsirkin
         *
568 46dbef6a Michael S. Tsirkin
         * This workaround assumes that the new slot starts at the same
569 46dbef6a Michael S. Tsirkin
         * address as the first existing one. If not or if some overlapping
570 46dbef6a Michael S. Tsirkin
         * slot comes around later, we will fail (not seen in practice so far)
571 46dbef6a Michael S. Tsirkin
         * - and actually require a recent KVM version. */
572 46dbef6a Michael S. Tsirkin
        if (s->broken_set_mem_region &&
573 46dbef6a Michael S. Tsirkin
            old.start_addr == start_addr && old.memory_size < size &&
574 46dbef6a Michael S. Tsirkin
            flags < IO_MEM_UNASSIGNED) {
575 46dbef6a Michael S. Tsirkin
            mem = kvm_alloc_slot(s);
576 46dbef6a Michael S. Tsirkin
            mem->memory_size = old.memory_size;
577 46dbef6a Michael S. Tsirkin
            mem->start_addr = old.start_addr;
578 46dbef6a Michael S. Tsirkin
            mem->phys_offset = old.phys_offset;
579 25254bbc Michael S. Tsirkin
            mem->flags = kvm_mem_flags(s, log_dirty);
580 46dbef6a Michael S. Tsirkin
581 46dbef6a Michael S. Tsirkin
            err = kvm_set_user_memory_region(s, mem);
582 46dbef6a Michael S. Tsirkin
            if (err) {
583 46dbef6a Michael S. Tsirkin
                fprintf(stderr, "%s: error updating slot: %s\n", __func__,
584 46dbef6a Michael S. Tsirkin
                        strerror(-err));
585 46dbef6a Michael S. Tsirkin
                abort();
586 46dbef6a Michael S. Tsirkin
            }
587 46dbef6a Michael S. Tsirkin
588 46dbef6a Michael S. Tsirkin
            start_addr += old.memory_size;
589 46dbef6a Michael S. Tsirkin
            phys_offset += old.memory_size;
590 46dbef6a Michael S. Tsirkin
            size -= old.memory_size;
591 46dbef6a Michael S. Tsirkin
            continue;
592 46dbef6a Michael S. Tsirkin
        }
593 46dbef6a Michael S. Tsirkin
594 46dbef6a Michael S. Tsirkin
        /* register prefix slot */
595 46dbef6a Michael S. Tsirkin
        if (old.start_addr < start_addr) {
596 46dbef6a Michael S. Tsirkin
            mem = kvm_alloc_slot(s);
597 46dbef6a Michael S. Tsirkin
            mem->memory_size = start_addr - old.start_addr;
598 46dbef6a Michael S. Tsirkin
            mem->start_addr = old.start_addr;
599 46dbef6a Michael S. Tsirkin
            mem->phys_offset = old.phys_offset;
600 25254bbc Michael S. Tsirkin
            mem->flags =  kvm_mem_flags(s, log_dirty);
601 46dbef6a Michael S. Tsirkin
602 46dbef6a Michael S. Tsirkin
            err = kvm_set_user_memory_region(s, mem);
603 46dbef6a Michael S. Tsirkin
            if (err) {
604 46dbef6a Michael S. Tsirkin
                fprintf(stderr, "%s: error registering prefix slot: %s\n",
605 46dbef6a Michael S. Tsirkin
                        __func__, strerror(-err));
606 d4d6868f Alexander Graf
#ifdef TARGET_PPC
607 d4d6868f Alexander Graf
                fprintf(stderr, "%s: This is probably because your kernel's " \
608 d4d6868f Alexander Graf
                                "PAGE_SIZE is too big. Please try to use 4k " \
609 d4d6868f Alexander Graf
                                "PAGE_SIZE!\n", __func__);
610 d4d6868f Alexander Graf
#endif
611 46dbef6a Michael S. Tsirkin
                abort();
612 46dbef6a Michael S. Tsirkin
            }
613 46dbef6a Michael S. Tsirkin
        }
614 46dbef6a Michael S. Tsirkin
615 46dbef6a Michael S. Tsirkin
        /* register suffix slot */
616 46dbef6a Michael S. Tsirkin
        if (old.start_addr + old.memory_size > start_addr + size) {
617 46dbef6a Michael S. Tsirkin
            ram_addr_t size_delta;
618 46dbef6a Michael S. Tsirkin
619 46dbef6a Michael S. Tsirkin
            mem = kvm_alloc_slot(s);
620 46dbef6a Michael S. Tsirkin
            mem->start_addr = start_addr + size;
621 46dbef6a Michael S. Tsirkin
            size_delta = mem->start_addr - old.start_addr;
622 46dbef6a Michael S. Tsirkin
            mem->memory_size = old.memory_size - size_delta;
623 46dbef6a Michael S. Tsirkin
            mem->phys_offset = old.phys_offset + size_delta;
624 25254bbc Michael S. Tsirkin
            mem->flags = kvm_mem_flags(s, log_dirty);
625 46dbef6a Michael S. Tsirkin
626 46dbef6a Michael S. Tsirkin
            err = kvm_set_user_memory_region(s, mem);
627 46dbef6a Michael S. Tsirkin
            if (err) {
628 46dbef6a Michael S. Tsirkin
                fprintf(stderr, "%s: error registering suffix slot: %s\n",
629 46dbef6a Michael S. Tsirkin
                        __func__, strerror(-err));
630 46dbef6a Michael S. Tsirkin
                abort();
631 46dbef6a Michael S. Tsirkin
            }
632 46dbef6a Michael S. Tsirkin
        }
633 46dbef6a Michael S. Tsirkin
    }
634 46dbef6a Michael S. Tsirkin
635 46dbef6a Michael S. Tsirkin
    /* in case the KVM bug workaround already "consumed" the new slot */
636 a426e122 Jan Kiszka
    if (!size) {
637 46dbef6a Michael S. Tsirkin
        return;
638 a426e122 Jan Kiszka
    }
639 46dbef6a Michael S. Tsirkin
    /* KVM does not need to know about this memory */
640 a426e122 Jan Kiszka
    if (flags >= IO_MEM_UNASSIGNED) {
641 46dbef6a Michael S. Tsirkin
        return;
642 a426e122 Jan Kiszka
    }
643 46dbef6a Michael S. Tsirkin
    mem = kvm_alloc_slot(s);
644 46dbef6a Michael S. Tsirkin
    mem->memory_size = size;
645 46dbef6a Michael S. Tsirkin
    mem->start_addr = start_addr;
646 46dbef6a Michael S. Tsirkin
    mem->phys_offset = phys_offset;
647 25254bbc Michael S. Tsirkin
    mem->flags = kvm_mem_flags(s, log_dirty);
648 46dbef6a Michael S. Tsirkin
649 46dbef6a Michael S. Tsirkin
    err = kvm_set_user_memory_region(s, mem);
650 46dbef6a Michael S. Tsirkin
    if (err) {
651 46dbef6a Michael S. Tsirkin
        fprintf(stderr, "%s: error registering slot: %s\n", __func__,
652 46dbef6a Michael S. Tsirkin
                strerror(-err));
653 46dbef6a Michael S. Tsirkin
        abort();
654 46dbef6a Michael S. Tsirkin
    }
655 46dbef6a Michael S. Tsirkin
}
656 46dbef6a Michael S. Tsirkin
657 7b8f3b78 Michael S. Tsirkin
static void kvm_client_set_memory(struct CPUPhysMemoryClient *client,
658 a426e122 Jan Kiszka
                                  target_phys_addr_t start_addr,
659 0fd542fb Michael S. Tsirkin
                                  ram_addr_t size, ram_addr_t phys_offset,
660 0fd542fb Michael S. Tsirkin
                                  bool log_dirty)
661 7b8f3b78 Michael S. Tsirkin
{
662 25254bbc Michael S. Tsirkin
    kvm_set_phys_mem(start_addr, size, phys_offset, log_dirty);
663 7b8f3b78 Michael S. Tsirkin
}
664 7b8f3b78 Michael S. Tsirkin
665 7b8f3b78 Michael S. Tsirkin
static int kvm_client_sync_dirty_bitmap(struct CPUPhysMemoryClient *client,
666 a426e122 Jan Kiszka
                                        target_phys_addr_t start_addr,
667 a426e122 Jan Kiszka
                                        target_phys_addr_t end_addr)
668 7b8f3b78 Michael S. Tsirkin
{
669 a426e122 Jan Kiszka
    return kvm_physical_sync_dirty_bitmap(start_addr, end_addr);
670 7b8f3b78 Michael S. Tsirkin
}
671 7b8f3b78 Michael S. Tsirkin
672 7b8f3b78 Michael S. Tsirkin
static int kvm_client_migration_log(struct CPUPhysMemoryClient *client,
673 a426e122 Jan Kiszka
                                    int enable)
674 7b8f3b78 Michael S. Tsirkin
{
675 a426e122 Jan Kiszka
    return kvm_set_migration_log(enable);
676 7b8f3b78 Michael S. Tsirkin
}
677 7b8f3b78 Michael S. Tsirkin
678 7b8f3b78 Michael S. Tsirkin
static CPUPhysMemoryClient kvm_cpu_phys_memory_client = {
679 a426e122 Jan Kiszka
    .set_memory = kvm_client_set_memory,
680 a426e122 Jan Kiszka
    .sync_dirty_bitmap = kvm_client_sync_dirty_bitmap,
681 a426e122 Jan Kiszka
    .migration_log = kvm_client_migration_log,
682 e5896b12 Anthony PERARD
    .log_start = kvm_log_start,
683 e5896b12 Anthony PERARD
    .log_stop = kvm_log_stop,
684 7b8f3b78 Michael S. Tsirkin
};
685 7b8f3b78 Michael S. Tsirkin
686 aa7f74d1 Jan Kiszka
static void kvm_handle_interrupt(CPUState *env, int mask)
687 aa7f74d1 Jan Kiszka
{
688 aa7f74d1 Jan Kiszka
    env->interrupt_request |= mask;
689 aa7f74d1 Jan Kiszka
690 aa7f74d1 Jan Kiszka
    if (!qemu_cpu_is_self(env)) {
691 aa7f74d1 Jan Kiszka
        qemu_cpu_kick(env);
692 aa7f74d1 Jan Kiszka
    }
693 aa7f74d1 Jan Kiszka
}
694 aa7f74d1 Jan Kiszka
695 cad1e282 Jan Kiszka
int kvm_init(void)
696 05330448 aliguori
{
697 168ccc11 Jan Kiszka
    static const char upgrade_note[] =
698 168ccc11 Jan Kiszka
        "Please upgrade to at least kernel 2.6.29 or recent kvm-kmod\n"
699 168ccc11 Jan Kiszka
        "(see http://sourceforge.net/projects/kvm).\n";
700 05330448 aliguori
    KVMState *s;
701 94a8d39a Jan Kiszka
    const KVMCapabilityInfo *missing_cap;
702 05330448 aliguori
    int ret;
703 05330448 aliguori
    int i;
704 05330448 aliguori
705 05330448 aliguori
    s = qemu_mallocz(sizeof(KVMState));
706 05330448 aliguori
707 e22a25c9 aliguori
#ifdef KVM_CAP_SET_GUEST_DEBUG
708 72cf2d4f Blue Swirl
    QTAILQ_INIT(&s->kvm_sw_breakpoints);
709 e22a25c9 aliguori
#endif
710 a426e122 Jan Kiszka
    for (i = 0; i < ARRAY_SIZE(s->slots); i++) {
711 05330448 aliguori
        s->slots[i].slot = i;
712 a426e122 Jan Kiszka
    }
713 05330448 aliguori
    s->vmfd = -1;
714 40ff6d7e Kevin Wolf
    s->fd = qemu_open("/dev/kvm", O_RDWR);
715 05330448 aliguori
    if (s->fd == -1) {
716 05330448 aliguori
        fprintf(stderr, "Could not access KVM kernel module: %m\n");
717 05330448 aliguori
        ret = -errno;
718 05330448 aliguori
        goto err;
719 05330448 aliguori
    }
720 05330448 aliguori
721 05330448 aliguori
    ret = kvm_ioctl(s, KVM_GET_API_VERSION, 0);
722 05330448 aliguori
    if (ret < KVM_API_VERSION) {
723 a426e122 Jan Kiszka
        if (ret > 0) {
724 05330448 aliguori
            ret = -EINVAL;
725 a426e122 Jan Kiszka
        }
726 05330448 aliguori
        fprintf(stderr, "kvm version too old\n");
727 05330448 aliguori
        goto err;
728 05330448 aliguori
    }
729 05330448 aliguori
730 05330448 aliguori
    if (ret > KVM_API_VERSION) {
731 05330448 aliguori
        ret = -EINVAL;
732 05330448 aliguori
        fprintf(stderr, "kvm version not supported\n");
733 05330448 aliguori
        goto err;
734 05330448 aliguori
    }
735 05330448 aliguori
736 05330448 aliguori
    s->vmfd = kvm_ioctl(s, KVM_CREATE_VM, 0);
737 0104dcac Alexander Graf
    if (s->vmfd < 0) {
738 0104dcac Alexander Graf
#ifdef TARGET_S390X
739 0104dcac Alexander Graf
        fprintf(stderr, "Please add the 'switch_amode' kernel parameter to "
740 0104dcac Alexander Graf
                        "your host kernel command line\n");
741 0104dcac Alexander Graf
#endif
742 05330448 aliguori
        goto err;
743 0104dcac Alexander Graf
    }
744 05330448 aliguori
745 94a8d39a Jan Kiszka
    missing_cap = kvm_check_extension_list(s, kvm_required_capabilites);
746 94a8d39a Jan Kiszka
    if (!missing_cap) {
747 94a8d39a Jan Kiszka
        missing_cap =
748 94a8d39a Jan Kiszka
            kvm_check_extension_list(s, kvm_arch_required_capabilities);
749 05330448 aliguori
    }
750 94a8d39a Jan Kiszka
    if (missing_cap) {
751 ad7b8b33 Anthony Liguori
        ret = -EINVAL;
752 94a8d39a Jan Kiszka
        fprintf(stderr, "kvm does not support %s\n%s",
753 94a8d39a Jan Kiszka
                missing_cap->name, upgrade_note);
754 d85dc283 aliguori
        goto err;
755 d85dc283 aliguori
    }
756 d85dc283 aliguori
757 ad7b8b33 Anthony Liguori
    s->coalesced_mmio = kvm_check_extension(s, KVM_CAP_COALESCED_MMIO);
758 f65ed4c1 aliguori
759 e69917e2 Jan Kiszka
    s->broken_set_mem_region = 1;
760 14a09518 Lai Jiangshan
    ret = kvm_check_extension(s, KVM_CAP_JOIN_MEMORY_REGIONS_WORKS);
761 e69917e2 Jan Kiszka
    if (ret > 0) {
762 e69917e2 Jan Kiszka
        s->broken_set_mem_region = 0;
763 e69917e2 Jan Kiszka
    }
764 e69917e2 Jan Kiszka
765 a0fb002c Jan Kiszka
#ifdef KVM_CAP_VCPU_EVENTS
766 a0fb002c Jan Kiszka
    s->vcpu_events = kvm_check_extension(s, KVM_CAP_VCPU_EVENTS);
767 a0fb002c Jan Kiszka
#endif
768 a0fb002c Jan Kiszka
769 b0b1d690 Jan Kiszka
    s->robust_singlestep =
770 b0b1d690 Jan Kiszka
        kvm_check_extension(s, KVM_CAP_X86_ROBUST_SINGLESTEP);
771 b0b1d690 Jan Kiszka
772 ff44f1a3 Jan Kiszka
#ifdef KVM_CAP_DEBUGREGS
773 ff44f1a3 Jan Kiszka
    s->debugregs = kvm_check_extension(s, KVM_CAP_DEBUGREGS);
774 ff44f1a3 Jan Kiszka
#endif
775 ff44f1a3 Jan Kiszka
776 f1665b21 Sheng Yang
#ifdef KVM_CAP_XSAVE
777 f1665b21 Sheng Yang
    s->xsave = kvm_check_extension(s, KVM_CAP_XSAVE);
778 f1665b21 Sheng Yang
#endif
779 f1665b21 Sheng Yang
780 f1665b21 Sheng Yang
#ifdef KVM_CAP_XCRS
781 f1665b21 Sheng Yang
    s->xcrs = kvm_check_extension(s, KVM_CAP_XCRS);
782 f1665b21 Sheng Yang
#endif
783 f1665b21 Sheng Yang
784 cad1e282 Jan Kiszka
    ret = kvm_arch_init(s);
785 a426e122 Jan Kiszka
    if (ret < 0) {
786 05330448 aliguori
        goto err;
787 a426e122 Jan Kiszka
    }
788 05330448 aliguori
789 05330448 aliguori
    kvm_state = s;
790 7b8f3b78 Michael S. Tsirkin
    cpu_register_phys_memory_client(&kvm_cpu_phys_memory_client);
791 05330448 aliguori
792 d2f2b8a7 Stefan Hajnoczi
    s->many_ioeventfds = kvm_check_many_ioeventfds();
793 d2f2b8a7 Stefan Hajnoczi
794 aa7f74d1 Jan Kiszka
    cpu_interrupt_handler = kvm_handle_interrupt;
795 aa7f74d1 Jan Kiszka
796 05330448 aliguori
    return 0;
797 05330448 aliguori
798 05330448 aliguori
err:
799 05330448 aliguori
    if (s) {
800 a426e122 Jan Kiszka
        if (s->vmfd != -1) {
801 05330448 aliguori
            close(s->vmfd);
802 a426e122 Jan Kiszka
        }
803 a426e122 Jan Kiszka
        if (s->fd != -1) {
804 05330448 aliguori
            close(s->fd);
805 a426e122 Jan Kiszka
        }
806 05330448 aliguori
    }
807 05330448 aliguori
    qemu_free(s);
808 05330448 aliguori
809 05330448 aliguori
    return ret;
810 05330448 aliguori
}
811 05330448 aliguori
812 b30e93e9 Jan Kiszka
static void kvm_handle_io(uint16_t port, void *data, int direction, int size,
813 b30e93e9 Jan Kiszka
                          uint32_t count)
814 05330448 aliguori
{
815 05330448 aliguori
    int i;
816 05330448 aliguori
    uint8_t *ptr = data;
817 05330448 aliguori
818 05330448 aliguori
    for (i = 0; i < count; i++) {
819 05330448 aliguori
        if (direction == KVM_EXIT_IO_IN) {
820 05330448 aliguori
            switch (size) {
821 05330448 aliguori
            case 1:
822 afcea8cb Blue Swirl
                stb_p(ptr, cpu_inb(port));
823 05330448 aliguori
                break;
824 05330448 aliguori
            case 2:
825 afcea8cb Blue Swirl
                stw_p(ptr, cpu_inw(port));
826 05330448 aliguori
                break;
827 05330448 aliguori
            case 4:
828 afcea8cb Blue Swirl
                stl_p(ptr, cpu_inl(port));
829 05330448 aliguori
                break;
830 05330448 aliguori
            }
831 05330448 aliguori
        } else {
832 05330448 aliguori
            switch (size) {
833 05330448 aliguori
            case 1:
834 afcea8cb Blue Swirl
                cpu_outb(port, ldub_p(ptr));
835 05330448 aliguori
                break;
836 05330448 aliguori
            case 2:
837 afcea8cb Blue Swirl
                cpu_outw(port, lduw_p(ptr));
838 05330448 aliguori
                break;
839 05330448 aliguori
            case 4:
840 afcea8cb Blue Swirl
                cpu_outl(port, ldl_p(ptr));
841 05330448 aliguori
                break;
842 05330448 aliguori
            }
843 05330448 aliguori
        }
844 05330448 aliguori
845 05330448 aliguori
        ptr += size;
846 05330448 aliguori
    }
847 05330448 aliguori
}
848 05330448 aliguori
849 73aaec4a Jan Kiszka
static int kvm_handle_internal_error(CPUState *env, struct kvm_run *run)
850 7c80eef8 Marcelo Tosatti
{
851 bb44e0d1 Jan Kiszka
    fprintf(stderr, "KVM internal error.");
852 7c80eef8 Marcelo Tosatti
    if (kvm_check_extension(kvm_state, KVM_CAP_INTERNAL_ERROR_DATA)) {
853 7c80eef8 Marcelo Tosatti
        int i;
854 7c80eef8 Marcelo Tosatti
855 bb44e0d1 Jan Kiszka
        fprintf(stderr, " Suberror: %d\n", run->internal.suberror);
856 7c80eef8 Marcelo Tosatti
        for (i = 0; i < run->internal.ndata; ++i) {
857 7c80eef8 Marcelo Tosatti
            fprintf(stderr, "extra data[%d]: %"PRIx64"\n",
858 7c80eef8 Marcelo Tosatti
                    i, (uint64_t)run->internal.data[i]);
859 7c80eef8 Marcelo Tosatti
        }
860 bb44e0d1 Jan Kiszka
    } else {
861 bb44e0d1 Jan Kiszka
        fprintf(stderr, "\n");
862 7c80eef8 Marcelo Tosatti
    }
863 7c80eef8 Marcelo Tosatti
    if (run->internal.suberror == KVM_INTERNAL_ERROR_EMULATION) {
864 7c80eef8 Marcelo Tosatti
        fprintf(stderr, "emulation failure\n");
865 a426e122 Jan Kiszka
        if (!kvm_arch_stop_on_emulation_error(env)) {
866 f5c848ee Jan Kiszka
            cpu_dump_state(env, stderr, fprintf, CPU_DUMP_CODE);
867 d73cd8f4 Jan Kiszka
            return EXCP_INTERRUPT;
868 a426e122 Jan Kiszka
        }
869 7c80eef8 Marcelo Tosatti
    }
870 7c80eef8 Marcelo Tosatti
    /* FIXME: Should trigger a qmp message to let management know
871 7c80eef8 Marcelo Tosatti
     * something went wrong.
872 7c80eef8 Marcelo Tosatti
     */
873 73aaec4a Jan Kiszka
    return -1;
874 7c80eef8 Marcelo Tosatti
}
875 7c80eef8 Marcelo Tosatti
876 62a2744c Sheng Yang
void kvm_flush_coalesced_mmio_buffer(void)
877 f65ed4c1 aliguori
{
878 f65ed4c1 aliguori
    KVMState *s = kvm_state;
879 62a2744c Sheng Yang
    if (s->coalesced_mmio_ring) {
880 62a2744c Sheng Yang
        struct kvm_coalesced_mmio_ring *ring = s->coalesced_mmio_ring;
881 f65ed4c1 aliguori
        while (ring->first != ring->last) {
882 f65ed4c1 aliguori
            struct kvm_coalesced_mmio *ent;
883 f65ed4c1 aliguori
884 f65ed4c1 aliguori
            ent = &ring->coalesced_mmio[ring->first];
885 f65ed4c1 aliguori
886 f65ed4c1 aliguori
            cpu_physical_memory_write(ent->phys_addr, ent->data, ent->len);
887 85199474 Marcelo Tosatti
            smp_wmb();
888 f65ed4c1 aliguori
            ring->first = (ring->first + 1) % KVM_COALESCED_MMIO_MAX;
889 f65ed4c1 aliguori
        }
890 f65ed4c1 aliguori
    }
891 f65ed4c1 aliguori
}
892 f65ed4c1 aliguori
893 2705d56a Jan Kiszka
static void do_kvm_cpu_synchronize_state(void *_env)
894 4c0960c0 Avi Kivity
{
895 2705d56a Jan Kiszka
    CPUState *env = _env;
896 2705d56a Jan Kiszka
897 9ded2744 Jan Kiszka
    if (!env->kvm_vcpu_dirty) {
898 4c0960c0 Avi Kivity
        kvm_arch_get_registers(env);
899 9ded2744 Jan Kiszka
        env->kvm_vcpu_dirty = 1;
900 4c0960c0 Avi Kivity
    }
901 4c0960c0 Avi Kivity
}
902 4c0960c0 Avi Kivity
903 2705d56a Jan Kiszka
void kvm_cpu_synchronize_state(CPUState *env)
904 2705d56a Jan Kiszka
{
905 a426e122 Jan Kiszka
    if (!env->kvm_vcpu_dirty) {
906 2705d56a Jan Kiszka
        run_on_cpu(env, do_kvm_cpu_synchronize_state, env);
907 a426e122 Jan Kiszka
    }
908 2705d56a Jan Kiszka
}
909 2705d56a Jan Kiszka
910 ea375f9a Jan Kiszka
void kvm_cpu_synchronize_post_reset(CPUState *env)
911 ea375f9a Jan Kiszka
{
912 ea375f9a Jan Kiszka
    kvm_arch_put_registers(env, KVM_PUT_RESET_STATE);
913 ea375f9a Jan Kiszka
    env->kvm_vcpu_dirty = 0;
914 ea375f9a Jan Kiszka
}
915 ea375f9a Jan Kiszka
916 ea375f9a Jan Kiszka
void kvm_cpu_synchronize_post_init(CPUState *env)
917 ea375f9a Jan Kiszka
{
918 ea375f9a Jan Kiszka
    kvm_arch_put_registers(env, KVM_PUT_FULL_STATE);
919 ea375f9a Jan Kiszka
    env->kvm_vcpu_dirty = 0;
920 ea375f9a Jan Kiszka
}
921 ea375f9a Jan Kiszka
922 05330448 aliguori
int kvm_cpu_exec(CPUState *env)
923 05330448 aliguori
{
924 05330448 aliguori
    struct kvm_run *run = env->kvm_run;
925 7cbb533f Jan Kiszka
    int ret, run_ret;
926 05330448 aliguori
927 8c0d577e Blue Swirl
    DPRINTF("kvm_cpu_exec()\n");
928 05330448 aliguori
929 99036865 Jan Kiszka
    if (kvm_arch_process_async_events(env)) {
930 9ccfac9e Jan Kiszka
        env->exit_request = 0;
931 6792a57b Jan Kiszka
        return EXCP_HLT;
932 9ccfac9e Jan Kiszka
    }
933 0af691d7 Marcelo Tosatti
934 6792a57b Jan Kiszka
    cpu_single_env = env;
935 6792a57b Jan Kiszka
936 9ccfac9e Jan Kiszka
    do {
937 9ded2744 Jan Kiszka
        if (env->kvm_vcpu_dirty) {
938 ea375f9a Jan Kiszka
            kvm_arch_put_registers(env, KVM_PUT_RUNTIME_STATE);
939 9ded2744 Jan Kiszka
            env->kvm_vcpu_dirty = 0;
940 4c0960c0 Avi Kivity
        }
941 4c0960c0 Avi Kivity
942 8c14c173 Jan Kiszka
        kvm_arch_pre_run(env, run);
943 9ccfac9e Jan Kiszka
        if (env->exit_request) {
944 9ccfac9e Jan Kiszka
            DPRINTF("interrupt exit requested\n");
945 9ccfac9e Jan Kiszka
            /*
946 9ccfac9e Jan Kiszka
             * KVM requires us to reenter the kernel after IO exits to complete
947 9ccfac9e Jan Kiszka
             * instruction emulation. This self-signal will ensure that we
948 9ccfac9e Jan Kiszka
             * leave ASAP again.
949 9ccfac9e Jan Kiszka
             */
950 9ccfac9e Jan Kiszka
            qemu_cpu_kick_self();
951 9ccfac9e Jan Kiszka
        }
952 273faf1b Marcelo Tosatti
        cpu_single_env = NULL;
953 d549db5a Glauber Costa
        qemu_mutex_unlock_iothread();
954 9ccfac9e Jan Kiszka
955 7cbb533f Jan Kiszka
        run_ret = kvm_vcpu_ioctl(env, KVM_RUN, 0);
956 9ccfac9e Jan Kiszka
957 d549db5a Glauber Costa
        qemu_mutex_lock_iothread();
958 273faf1b Marcelo Tosatti
        cpu_single_env = env;
959 05330448 aliguori
        kvm_arch_post_run(env, run);
960 05330448 aliguori
961 b0c883b5 Jan Kiszka
        kvm_flush_coalesced_mmio_buffer();
962 b0c883b5 Jan Kiszka
963 7cbb533f Jan Kiszka
        if (run_ret < 0) {
964 dc77d341 Jan Kiszka
            if (run_ret == -EINTR || run_ret == -EAGAIN) {
965 dc77d341 Jan Kiszka
                DPRINTF("io window exit\n");
966 d73cd8f4 Jan Kiszka
                ret = EXCP_INTERRUPT;
967 dc77d341 Jan Kiszka
                break;
968 dc77d341 Jan Kiszka
            }
969 7cbb533f Jan Kiszka
            DPRINTF("kvm run failed %s\n", strerror(-run_ret));
970 05330448 aliguori
            abort();
971 05330448 aliguori
        }
972 05330448 aliguori
973 05330448 aliguori
        switch (run->exit_reason) {
974 05330448 aliguori
        case KVM_EXIT_IO:
975 8c0d577e Blue Swirl
            DPRINTF("handle_io\n");
976 b30e93e9 Jan Kiszka
            kvm_handle_io(run->io.port,
977 b30e93e9 Jan Kiszka
                          (uint8_t *)run + run->io.data_offset,
978 b30e93e9 Jan Kiszka
                          run->io.direction,
979 b30e93e9 Jan Kiszka
                          run->io.size,
980 b30e93e9 Jan Kiszka
                          run->io.count);
981 d73cd8f4 Jan Kiszka
            ret = 0;
982 05330448 aliguori
            break;
983 05330448 aliguori
        case KVM_EXIT_MMIO:
984 8c0d577e Blue Swirl
            DPRINTF("handle_mmio\n");
985 05330448 aliguori
            cpu_physical_memory_rw(run->mmio.phys_addr,
986 05330448 aliguori
                                   run->mmio.data,
987 05330448 aliguori
                                   run->mmio.len,
988 05330448 aliguori
                                   run->mmio.is_write);
989 d73cd8f4 Jan Kiszka
            ret = 0;
990 05330448 aliguori
            break;
991 05330448 aliguori
        case KVM_EXIT_IRQ_WINDOW_OPEN:
992 8c0d577e Blue Swirl
            DPRINTF("irq_window_open\n");
993 d73cd8f4 Jan Kiszka
            ret = EXCP_INTERRUPT;
994 05330448 aliguori
            break;
995 05330448 aliguori
        case KVM_EXIT_SHUTDOWN:
996 8c0d577e Blue Swirl
            DPRINTF("shutdown\n");
997 05330448 aliguori
            qemu_system_reset_request();
998 d73cd8f4 Jan Kiszka
            ret = EXCP_INTERRUPT;
999 05330448 aliguori
            break;
1000 05330448 aliguori
        case KVM_EXIT_UNKNOWN:
1001 bb44e0d1 Jan Kiszka
            fprintf(stderr, "KVM: unknown exit, hardware reason %" PRIx64 "\n",
1002 bb44e0d1 Jan Kiszka
                    (uint64_t)run->hw.hardware_exit_reason);
1003 73aaec4a Jan Kiszka
            ret = -1;
1004 05330448 aliguori
            break;
1005 7c80eef8 Marcelo Tosatti
        case KVM_EXIT_INTERNAL_ERROR:
1006 73aaec4a Jan Kiszka
            ret = kvm_handle_internal_error(env, run);
1007 7c80eef8 Marcelo Tosatti
            break;
1008 05330448 aliguori
        default:
1009 8c0d577e Blue Swirl
            DPRINTF("kvm_arch_handle_exit\n");
1010 05330448 aliguori
            ret = kvm_arch_handle_exit(env, run);
1011 05330448 aliguori
            break;
1012 05330448 aliguori
        }
1013 d73cd8f4 Jan Kiszka
    } while (ret == 0);
1014 05330448 aliguori
1015 73aaec4a Jan Kiszka
    if (ret < 0) {
1016 f5c848ee Jan Kiszka
        cpu_dump_state(env, stderr, fprintf, CPU_DUMP_CODE);
1017 e07bbac5 Jan Kiszka
        vm_stop(VMSTOP_PANIC);
1018 becfc390 aliguori
    }
1019 becfc390 aliguori
1020 6792a57b Jan Kiszka
    env->exit_request = 0;
1021 6792a57b Jan Kiszka
    cpu_single_env = NULL;
1022 05330448 aliguori
    return ret;
1023 05330448 aliguori
}
1024 05330448 aliguori
1025 984b5181 aliguori
int kvm_ioctl(KVMState *s, int type, ...)
1026 05330448 aliguori
{
1027 05330448 aliguori
    int ret;
1028 984b5181 aliguori
    void *arg;
1029 984b5181 aliguori
    va_list ap;
1030 05330448 aliguori
1031 984b5181 aliguori
    va_start(ap, type);
1032 984b5181 aliguori
    arg = va_arg(ap, void *);
1033 984b5181 aliguori
    va_end(ap);
1034 984b5181 aliguori
1035 984b5181 aliguori
    ret = ioctl(s->fd, type, arg);
1036 a426e122 Jan Kiszka
    if (ret == -1) {
1037 05330448 aliguori
        ret = -errno;
1038 a426e122 Jan Kiszka
    }
1039 05330448 aliguori
    return ret;
1040 05330448 aliguori
}
1041 05330448 aliguori
1042 984b5181 aliguori
int kvm_vm_ioctl(KVMState *s, int type, ...)
1043 05330448 aliguori
{
1044 05330448 aliguori
    int ret;
1045 984b5181 aliguori
    void *arg;
1046 984b5181 aliguori
    va_list ap;
1047 984b5181 aliguori
1048 984b5181 aliguori
    va_start(ap, type);
1049 984b5181 aliguori
    arg = va_arg(ap, void *);
1050 984b5181 aliguori
    va_end(ap);
1051 05330448 aliguori
1052 984b5181 aliguori
    ret = ioctl(s->vmfd, type, arg);
1053 a426e122 Jan Kiszka
    if (ret == -1) {
1054 05330448 aliguori
        ret = -errno;
1055 a426e122 Jan Kiszka
    }
1056 05330448 aliguori
    return ret;
1057 05330448 aliguori
}
1058 05330448 aliguori
1059 984b5181 aliguori
int kvm_vcpu_ioctl(CPUState *env, int type, ...)
1060 05330448 aliguori
{
1061 05330448 aliguori
    int ret;
1062 984b5181 aliguori
    void *arg;
1063 984b5181 aliguori
    va_list ap;
1064 984b5181 aliguori
1065 984b5181 aliguori
    va_start(ap, type);
1066 984b5181 aliguori
    arg = va_arg(ap, void *);
1067 984b5181 aliguori
    va_end(ap);
1068 05330448 aliguori
1069 984b5181 aliguori
    ret = ioctl(env->kvm_fd, type, arg);
1070 a426e122 Jan Kiszka
    if (ret == -1) {
1071 05330448 aliguori
        ret = -errno;
1072 a426e122 Jan Kiszka
    }
1073 05330448 aliguori
    return ret;
1074 05330448 aliguori
}
1075 bd322087 aliguori
1076 bd322087 aliguori
int kvm_has_sync_mmu(void)
1077 bd322087 aliguori
{
1078 94a8d39a Jan Kiszka
    return kvm_check_extension(kvm_state, KVM_CAP_SYNC_MMU);
1079 bd322087 aliguori
}
1080 e22a25c9 aliguori
1081 a0fb002c Jan Kiszka
int kvm_has_vcpu_events(void)
1082 a0fb002c Jan Kiszka
{
1083 a0fb002c Jan Kiszka
    return kvm_state->vcpu_events;
1084 a0fb002c Jan Kiszka
}
1085 a0fb002c Jan Kiszka
1086 b0b1d690 Jan Kiszka
int kvm_has_robust_singlestep(void)
1087 b0b1d690 Jan Kiszka
{
1088 b0b1d690 Jan Kiszka
    return kvm_state->robust_singlestep;
1089 b0b1d690 Jan Kiszka
}
1090 b0b1d690 Jan Kiszka
1091 ff44f1a3 Jan Kiszka
int kvm_has_debugregs(void)
1092 ff44f1a3 Jan Kiszka
{
1093 ff44f1a3 Jan Kiszka
    return kvm_state->debugregs;
1094 ff44f1a3 Jan Kiszka
}
1095 ff44f1a3 Jan Kiszka
1096 f1665b21 Sheng Yang
int kvm_has_xsave(void)
1097 f1665b21 Sheng Yang
{
1098 f1665b21 Sheng Yang
    return kvm_state->xsave;
1099 f1665b21 Sheng Yang
}
1100 f1665b21 Sheng Yang
1101 f1665b21 Sheng Yang
int kvm_has_xcrs(void)
1102 f1665b21 Sheng Yang
{
1103 f1665b21 Sheng Yang
    return kvm_state->xcrs;
1104 f1665b21 Sheng Yang
}
1105 f1665b21 Sheng Yang
1106 d2f2b8a7 Stefan Hajnoczi
int kvm_has_many_ioeventfds(void)
1107 d2f2b8a7 Stefan Hajnoczi
{
1108 d2f2b8a7 Stefan Hajnoczi
    if (!kvm_enabled()) {
1109 d2f2b8a7 Stefan Hajnoczi
        return 0;
1110 d2f2b8a7 Stefan Hajnoczi
    }
1111 d2f2b8a7 Stefan Hajnoczi
    return kvm_state->many_ioeventfds;
1112 d2f2b8a7 Stefan Hajnoczi
}
1113 d2f2b8a7 Stefan Hajnoczi
1114 6f0437e8 Jan Kiszka
void kvm_setup_guest_memory(void *start, size_t size)
1115 6f0437e8 Jan Kiszka
{
1116 6f0437e8 Jan Kiszka
    if (!kvm_has_sync_mmu()) {
1117 e78815a5 Andreas Fรคrber
        int ret = qemu_madvise(start, size, QEMU_MADV_DONTFORK);
1118 6f0437e8 Jan Kiszka
1119 6f0437e8 Jan Kiszka
        if (ret) {
1120 e78815a5 Andreas Fรคrber
            perror("qemu_madvise");
1121 e78815a5 Andreas Fรคrber
            fprintf(stderr,
1122 e78815a5 Andreas Fรคrber
                    "Need MADV_DONTFORK in absence of synchronous KVM MMU\n");
1123 6f0437e8 Jan Kiszka
            exit(1);
1124 6f0437e8 Jan Kiszka
        }
1125 6f0437e8 Jan Kiszka
    }
1126 6f0437e8 Jan Kiszka
}
1127 6f0437e8 Jan Kiszka
1128 e22a25c9 aliguori
#ifdef KVM_CAP_SET_GUEST_DEBUG
1129 e22a25c9 aliguori
struct kvm_sw_breakpoint *kvm_find_sw_breakpoint(CPUState *env,
1130 e22a25c9 aliguori
                                                 target_ulong pc)
1131 e22a25c9 aliguori
{
1132 e22a25c9 aliguori
    struct kvm_sw_breakpoint *bp;
1133 e22a25c9 aliguori
1134 72cf2d4f Blue Swirl
    QTAILQ_FOREACH(bp, &env->kvm_state->kvm_sw_breakpoints, entry) {
1135 a426e122 Jan Kiszka
        if (bp->pc == pc) {
1136 e22a25c9 aliguori
            return bp;
1137 a426e122 Jan Kiszka
        }
1138 e22a25c9 aliguori
    }
1139 e22a25c9 aliguori
    return NULL;
1140 e22a25c9 aliguori
}
1141 e22a25c9 aliguori
1142 e22a25c9 aliguori
int kvm_sw_breakpoints_active(CPUState *env)
1143 e22a25c9 aliguori
{
1144 72cf2d4f Blue Swirl
    return !QTAILQ_EMPTY(&env->kvm_state->kvm_sw_breakpoints);
1145 e22a25c9 aliguori
}
1146 e22a25c9 aliguori
1147 452e4751 Glauber Costa
struct kvm_set_guest_debug_data {
1148 452e4751 Glauber Costa
    struct kvm_guest_debug dbg;
1149 452e4751 Glauber Costa
    CPUState *env;
1150 452e4751 Glauber Costa
    int err;
1151 452e4751 Glauber Costa
};
1152 452e4751 Glauber Costa
1153 452e4751 Glauber Costa
static void kvm_invoke_set_guest_debug(void *data)
1154 452e4751 Glauber Costa
{
1155 452e4751 Glauber Costa
    struct kvm_set_guest_debug_data *dbg_data = data;
1156 b3807725 Jan Kiszka
    CPUState *env = dbg_data->env;
1157 b3807725 Jan Kiszka
1158 b3807725 Jan Kiszka
    dbg_data->err = kvm_vcpu_ioctl(env, KVM_SET_GUEST_DEBUG, &dbg_data->dbg);
1159 452e4751 Glauber Costa
}
1160 452e4751 Glauber Costa
1161 e22a25c9 aliguori
int kvm_update_guest_debug(CPUState *env, unsigned long reinject_trap)
1162 e22a25c9 aliguori
{
1163 452e4751 Glauber Costa
    struct kvm_set_guest_debug_data data;
1164 e22a25c9 aliguori
1165 b0b1d690 Jan Kiszka
    data.dbg.control = reinject_trap;
1166 e22a25c9 aliguori
1167 b0b1d690 Jan Kiszka
    if (env->singlestep_enabled) {
1168 b0b1d690 Jan Kiszka
        data.dbg.control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_SINGLESTEP;
1169 b0b1d690 Jan Kiszka
    }
1170 452e4751 Glauber Costa
    kvm_arch_update_guest_debug(env, &data.dbg);
1171 452e4751 Glauber Costa
    data.env = env;
1172 e22a25c9 aliguori
1173 be41cbe0 Jan Kiszka
    run_on_cpu(env, kvm_invoke_set_guest_debug, &data);
1174 452e4751 Glauber Costa
    return data.err;
1175 e22a25c9 aliguori
}
1176 e22a25c9 aliguori
1177 e22a25c9 aliguori
int kvm_insert_breakpoint(CPUState *current_env, target_ulong addr,
1178 e22a25c9 aliguori
                          target_ulong len, int type)
1179 e22a25c9 aliguori
{
1180 e22a25c9 aliguori
    struct kvm_sw_breakpoint *bp;
1181 e22a25c9 aliguori
    CPUState *env;
1182 e22a25c9 aliguori
    int err;
1183 e22a25c9 aliguori
1184 e22a25c9 aliguori
    if (type == GDB_BREAKPOINT_SW) {
1185 e22a25c9 aliguori
        bp = kvm_find_sw_breakpoint(current_env, addr);
1186 e22a25c9 aliguori
        if (bp) {
1187 e22a25c9 aliguori
            bp->use_count++;
1188 e22a25c9 aliguori
            return 0;
1189 e22a25c9 aliguori
        }
1190 e22a25c9 aliguori
1191 e22a25c9 aliguori
        bp = qemu_malloc(sizeof(struct kvm_sw_breakpoint));
1192 a426e122 Jan Kiszka
        if (!bp) {
1193 e22a25c9 aliguori
            return -ENOMEM;
1194 a426e122 Jan Kiszka
        }
1195 e22a25c9 aliguori
1196 e22a25c9 aliguori
        bp->pc = addr;
1197 e22a25c9 aliguori
        bp->use_count = 1;
1198 e22a25c9 aliguori
        err = kvm_arch_insert_sw_breakpoint(current_env, bp);
1199 e22a25c9 aliguori
        if (err) {
1200 4a043713 Paolo Bonzini
            qemu_free(bp);
1201 e22a25c9 aliguori
            return err;
1202 e22a25c9 aliguori
        }
1203 e22a25c9 aliguori
1204 72cf2d4f Blue Swirl
        QTAILQ_INSERT_HEAD(&current_env->kvm_state->kvm_sw_breakpoints,
1205 e22a25c9 aliguori
                          bp, entry);
1206 e22a25c9 aliguori
    } else {
1207 e22a25c9 aliguori
        err = kvm_arch_insert_hw_breakpoint(addr, len, type);
1208 a426e122 Jan Kiszka
        if (err) {
1209 e22a25c9 aliguori
            return err;
1210 a426e122 Jan Kiszka
        }
1211 e22a25c9 aliguori
    }
1212 e22a25c9 aliguori
1213 e22a25c9 aliguori
    for (env = first_cpu; env != NULL; env = env->next_cpu) {
1214 e22a25c9 aliguori
        err = kvm_update_guest_debug(env, 0);
1215 a426e122 Jan Kiszka
        if (err) {
1216 e22a25c9 aliguori
            return err;
1217 a426e122 Jan Kiszka
        }
1218 e22a25c9 aliguori
    }
1219 e22a25c9 aliguori
    return 0;
1220 e22a25c9 aliguori
}
1221 e22a25c9 aliguori
1222 e22a25c9 aliguori
int kvm_remove_breakpoint(CPUState *current_env, target_ulong addr,
1223 e22a25c9 aliguori
                          target_ulong len, int type)
1224 e22a25c9 aliguori
{
1225 e22a25c9 aliguori
    struct kvm_sw_breakpoint *bp;
1226 e22a25c9 aliguori
    CPUState *env;
1227 e22a25c9 aliguori
    int err;
1228 e22a25c9 aliguori
1229 e22a25c9 aliguori
    if (type == GDB_BREAKPOINT_SW) {
1230 e22a25c9 aliguori
        bp = kvm_find_sw_breakpoint(current_env, addr);
1231 a426e122 Jan Kiszka
        if (!bp) {
1232 e22a25c9 aliguori
            return -ENOENT;
1233 a426e122 Jan Kiszka
        }
1234 e22a25c9 aliguori
1235 e22a25c9 aliguori
        if (bp->use_count > 1) {
1236 e22a25c9 aliguori
            bp->use_count--;
1237 e22a25c9 aliguori
            return 0;
1238 e22a25c9 aliguori
        }
1239 e22a25c9 aliguori
1240 e22a25c9 aliguori
        err = kvm_arch_remove_sw_breakpoint(current_env, bp);
1241 a426e122 Jan Kiszka
        if (err) {
1242 e22a25c9 aliguori
            return err;
1243 a426e122 Jan Kiszka
        }
1244 e22a25c9 aliguori
1245 72cf2d4f Blue Swirl
        QTAILQ_REMOVE(&current_env->kvm_state->kvm_sw_breakpoints, bp, entry);
1246 e22a25c9 aliguori
        qemu_free(bp);
1247 e22a25c9 aliguori
    } else {
1248 e22a25c9 aliguori
        err = kvm_arch_remove_hw_breakpoint(addr, len, type);
1249 a426e122 Jan Kiszka
        if (err) {
1250 e22a25c9 aliguori
            return err;
1251 a426e122 Jan Kiszka
        }
1252 e22a25c9 aliguori
    }
1253 e22a25c9 aliguori
1254 e22a25c9 aliguori
    for (env = first_cpu; env != NULL; env = env->next_cpu) {
1255 e22a25c9 aliguori
        err = kvm_update_guest_debug(env, 0);
1256 a426e122 Jan Kiszka
        if (err) {
1257 e22a25c9 aliguori
            return err;
1258 a426e122 Jan Kiszka
        }
1259 e22a25c9 aliguori
    }
1260 e22a25c9 aliguori
    return 0;
1261 e22a25c9 aliguori
}
1262 e22a25c9 aliguori
1263 e22a25c9 aliguori
void kvm_remove_all_breakpoints(CPUState *current_env)
1264 e22a25c9 aliguori
{
1265 e22a25c9 aliguori
    struct kvm_sw_breakpoint *bp, *next;
1266 e22a25c9 aliguori
    KVMState *s = current_env->kvm_state;
1267 e22a25c9 aliguori
    CPUState *env;
1268 e22a25c9 aliguori
1269 72cf2d4f Blue Swirl
    QTAILQ_FOREACH_SAFE(bp, &s->kvm_sw_breakpoints, entry, next) {
1270 e22a25c9 aliguori
        if (kvm_arch_remove_sw_breakpoint(current_env, bp) != 0) {
1271 e22a25c9 aliguori
            /* Try harder to find a CPU that currently sees the breakpoint. */
1272 e22a25c9 aliguori
            for (env = first_cpu; env != NULL; env = env->next_cpu) {
1273 a426e122 Jan Kiszka
                if (kvm_arch_remove_sw_breakpoint(env, bp) == 0) {
1274 e22a25c9 aliguori
                    break;
1275 a426e122 Jan Kiszka
                }
1276 e22a25c9 aliguori
            }
1277 e22a25c9 aliguori
        }
1278 e22a25c9 aliguori
    }
1279 e22a25c9 aliguori
    kvm_arch_remove_all_hw_breakpoints();
1280 e22a25c9 aliguori
1281 a426e122 Jan Kiszka
    for (env = first_cpu; env != NULL; env = env->next_cpu) {
1282 e22a25c9 aliguori
        kvm_update_guest_debug(env, 0);
1283 a426e122 Jan Kiszka
    }
1284 e22a25c9 aliguori
}
1285 e22a25c9 aliguori
1286 e22a25c9 aliguori
#else /* !KVM_CAP_SET_GUEST_DEBUG */
1287 e22a25c9 aliguori
1288 e22a25c9 aliguori
int kvm_update_guest_debug(CPUState *env, unsigned long reinject_trap)
1289 e22a25c9 aliguori
{
1290 e22a25c9 aliguori
    return -EINVAL;
1291 e22a25c9 aliguori
}
1292 e22a25c9 aliguori
1293 e22a25c9 aliguori
int kvm_insert_breakpoint(CPUState *current_env, target_ulong addr,
1294 e22a25c9 aliguori
                          target_ulong len, int type)
1295 e22a25c9 aliguori
{
1296 e22a25c9 aliguori
    return -EINVAL;
1297 e22a25c9 aliguori
}
1298 e22a25c9 aliguori
1299 e22a25c9 aliguori
int kvm_remove_breakpoint(CPUState *current_env, target_ulong addr,
1300 e22a25c9 aliguori
                          target_ulong len, int type)
1301 e22a25c9 aliguori
{
1302 e22a25c9 aliguori
    return -EINVAL;
1303 e22a25c9 aliguori
}
1304 e22a25c9 aliguori
1305 e22a25c9 aliguori
void kvm_remove_all_breakpoints(CPUState *current_env)
1306 e22a25c9 aliguori
{
1307 e22a25c9 aliguori
}
1308 e22a25c9 aliguori
#endif /* !KVM_CAP_SET_GUEST_DEBUG */
1309 cc84de95 Marcelo Tosatti
1310 cc84de95 Marcelo Tosatti
int kvm_set_signal_mask(CPUState *env, const sigset_t *sigset)
1311 cc84de95 Marcelo Tosatti
{
1312 cc84de95 Marcelo Tosatti
    struct kvm_signal_mask *sigmask;
1313 cc84de95 Marcelo Tosatti
    int r;
1314 cc84de95 Marcelo Tosatti
1315 a426e122 Jan Kiszka
    if (!sigset) {
1316 cc84de95 Marcelo Tosatti
        return kvm_vcpu_ioctl(env, KVM_SET_SIGNAL_MASK, NULL);
1317 a426e122 Jan Kiszka
    }
1318 cc84de95 Marcelo Tosatti
1319 cc84de95 Marcelo Tosatti
    sigmask = qemu_malloc(sizeof(*sigmask) + sizeof(*sigset));
1320 cc84de95 Marcelo Tosatti
1321 cc84de95 Marcelo Tosatti
    sigmask->len = 8;
1322 cc84de95 Marcelo Tosatti
    memcpy(sigmask->sigset, sigset, sizeof(*sigset));
1323 cc84de95 Marcelo Tosatti
    r = kvm_vcpu_ioctl(env, KVM_SET_SIGNAL_MASK, sigmask);
1324 4a043713 Paolo Bonzini
    qemu_free(sigmask);
1325 cc84de95 Marcelo Tosatti
1326 cc84de95 Marcelo Tosatti
    return r;
1327 cc84de95 Marcelo Tosatti
}
1328 ca821806 Michael S. Tsirkin
1329 44f1a3d8 Cam Macdonell
int kvm_set_ioeventfd_mmio_long(int fd, uint32_t addr, uint32_t val, bool assign)
1330 44f1a3d8 Cam Macdonell
{
1331 44f1a3d8 Cam Macdonell
    int ret;
1332 44f1a3d8 Cam Macdonell
    struct kvm_ioeventfd iofd;
1333 44f1a3d8 Cam Macdonell
1334 44f1a3d8 Cam Macdonell
    iofd.datamatch = val;
1335 44f1a3d8 Cam Macdonell
    iofd.addr = addr;
1336 44f1a3d8 Cam Macdonell
    iofd.len = 4;
1337 44f1a3d8 Cam Macdonell
    iofd.flags = KVM_IOEVENTFD_FLAG_DATAMATCH;
1338 44f1a3d8 Cam Macdonell
    iofd.fd = fd;
1339 44f1a3d8 Cam Macdonell
1340 44f1a3d8 Cam Macdonell
    if (!kvm_enabled()) {
1341 44f1a3d8 Cam Macdonell
        return -ENOSYS;
1342 44f1a3d8 Cam Macdonell
    }
1343 44f1a3d8 Cam Macdonell
1344 44f1a3d8 Cam Macdonell
    if (!assign) {
1345 44f1a3d8 Cam Macdonell
        iofd.flags |= KVM_IOEVENTFD_FLAG_DEASSIGN;
1346 44f1a3d8 Cam Macdonell
    }
1347 44f1a3d8 Cam Macdonell
1348 44f1a3d8 Cam Macdonell
    ret = kvm_vm_ioctl(kvm_state, KVM_IOEVENTFD, &iofd);
1349 44f1a3d8 Cam Macdonell
1350 44f1a3d8 Cam Macdonell
    if (ret < 0) {
1351 44f1a3d8 Cam Macdonell
        return -errno;
1352 44f1a3d8 Cam Macdonell
    }
1353 44f1a3d8 Cam Macdonell
1354 44f1a3d8 Cam Macdonell
    return 0;
1355 44f1a3d8 Cam Macdonell
}
1356 44f1a3d8 Cam Macdonell
1357 ca821806 Michael S. Tsirkin
int kvm_set_ioeventfd_pio_word(int fd, uint16_t addr, uint16_t val, bool assign)
1358 ca821806 Michael S. Tsirkin
{
1359 ca821806 Michael S. Tsirkin
    struct kvm_ioeventfd kick = {
1360 ca821806 Michael S. Tsirkin
        .datamatch = val,
1361 ca821806 Michael S. Tsirkin
        .addr = addr,
1362 ca821806 Michael S. Tsirkin
        .len = 2,
1363 ca821806 Michael S. Tsirkin
        .flags = KVM_IOEVENTFD_FLAG_DATAMATCH | KVM_IOEVENTFD_FLAG_PIO,
1364 ca821806 Michael S. Tsirkin
        .fd = fd,
1365 ca821806 Michael S. Tsirkin
    };
1366 ca821806 Michael S. Tsirkin
    int r;
1367 a426e122 Jan Kiszka
    if (!kvm_enabled()) {
1368 ca821806 Michael S. Tsirkin
        return -ENOSYS;
1369 a426e122 Jan Kiszka
    }
1370 a426e122 Jan Kiszka
    if (!assign) {
1371 ca821806 Michael S. Tsirkin
        kick.flags |= KVM_IOEVENTFD_FLAG_DEASSIGN;
1372 a426e122 Jan Kiszka
    }
1373 ca821806 Michael S. Tsirkin
    r = kvm_vm_ioctl(kvm_state, KVM_IOEVENTFD, &kick);
1374 a426e122 Jan Kiszka
    if (r < 0) {
1375 ca821806 Michael S. Tsirkin
        return r;
1376 a426e122 Jan Kiszka
    }
1377 ca821806 Michael S. Tsirkin
    return 0;
1378 98c8573e Paolo Bonzini
}
1379 a1b87fe0 Jan Kiszka
1380 a1b87fe0 Jan Kiszka
int kvm_on_sigbus_vcpu(CPUState *env, int code, void *addr)
1381 a1b87fe0 Jan Kiszka
{
1382 a1b87fe0 Jan Kiszka
    return kvm_arch_on_sigbus_vcpu(env, code, addr);
1383 a1b87fe0 Jan Kiszka
}
1384 a1b87fe0 Jan Kiszka
1385 a1b87fe0 Jan Kiszka
int kvm_on_sigbus(int code, void *addr)
1386 a1b87fe0 Jan Kiszka
{
1387 a1b87fe0 Jan Kiszka
    return kvm_arch_on_sigbus(code, addr);
1388 a1b87fe0 Jan Kiszka
}