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Add device listener interface
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CommitLineData
3285cf4f
AP
1/*
2 * Copyright (C) 2010 Citrix Ltd.
3 *
4 * This work is licensed under the terms of the GNU GPL, version 2. See
5 * the COPYING file in the top-level directory.
6 *
6b620ca3
PB
7 * Contributions after 2012-01-13 are licensed under the terms of the
8 * GNU GPL, version 2 or (at your option) any later version.
3285cf4f
AP
9 */
10
9ce94e7c
AS
11#include <sys/mman.h>
12
a2cb15b0 13#include "hw/pci/pci.h"
0d09e41a
PB
14#include "hw/i386/pc.h"
15#include "hw/xen/xen_common.h"
16#include "hw/xen/xen_backend.h"
39f42439 17#include "qmp-commands.h"
3285cf4f 18
dccfcd0e 19#include "sysemu/char.h"
1de7afc9 20#include "qemu/range.h"
9c17d615 21#include "sysemu/xen-mapcache.h"
432d268c 22#include "trace.h"
022c62cb 23#include "exec/address-spaces.h"
432d268c 24
9ce94e7c
AS
25#include <xen/hvm/ioreq.h>
26#include <xen/hvm/params.h>
8a369e20 27#include <xen/hvm/e820.h>
9ce94e7c 28
04b0de0e 29//#define DEBUG_XEN_HVM
9ce94e7c 30
04b0de0e 31#ifdef DEBUG_XEN_HVM
9ce94e7c
AS
32#define DPRINTF(fmt, ...) \
33 do { fprintf(stderr, "xen: " fmt, ## __VA_ARGS__); } while (0)
34#else
35#define DPRINTF(fmt, ...) \
36 do { } while (0)
37#endif
38
ce76b8a8 39static MemoryRegion ram_memory, ram_640k, ram_lo, ram_hi;
c65adf9b 40static MemoryRegion *framebuffer;
39f42439 41static bool xen_in_migration;
ce76b8a8 42
9ce94e7c 43/* Compatibility with older version */
37f9e258
DS
44
45/* This allows QEMU to build on a system that has Xen 4.5 or earlier
46 * installed. This here (not in hw/xen/xen_common.h) because xen/hvm/ioreq.h
47 * needs to be included before this block and hw/xen/xen_common.h needs to
48 * be included before xen/hvm/ioreq.h
49 */
50#ifndef IOREQ_TYPE_VMWARE_PORT
51#define IOREQ_TYPE_VMWARE_PORT 3
52struct vmware_regs {
53 uint32_t esi;
54 uint32_t edi;
55 uint32_t ebx;
56 uint32_t ecx;
57 uint32_t edx;
58};
59typedef struct vmware_regs vmware_regs_t;
60
61struct shared_vmport_iopage {
62 struct vmware_regs vcpu_vmport_regs[1];
63};
64typedef struct shared_vmport_iopage shared_vmport_iopage_t;
65#endif
66
9ce94e7c
AS
67#if __XEN_LATEST_INTERFACE_VERSION__ < 0x0003020a
68static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i)
69{
70 return shared_page->vcpu_iodata[i].vp_eport;
71}
72static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu)
73{
74 return &shared_page->vcpu_iodata[vcpu].vp_ioreq;
75}
76# define FMT_ioreq_size PRIx64
77#else
78static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i)
79{
80 return shared_page->vcpu_ioreq[i].vp_eport;
81}
82static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu)
83{
84 return &shared_page->vcpu_ioreq[vcpu];
85}
86# define FMT_ioreq_size "u"
87#endif
fda1f768
SS
88#ifndef HVM_PARAM_BUFIOREQ_EVTCHN
89#define HVM_PARAM_BUFIOREQ_EVTCHN 26
90#endif
9ce94e7c
AS
91
92#define BUFFER_IO_MAX_DELAY 100
c1d322e6
SS
93/* Leave some slack so that hvmloader does not complain about lack of
94 * memory at boot time ("Could not allocate order=0 extent").
95 * Once hvmloader is modified to cope with that situation without
96 * printing warning messages, QEMU_SPARE_PAGES can be removed.
97 */
98#define QEMU_SPARE_PAGES 16
9ce94e7c 99
b4dd7802 100typedef struct XenPhysmap {
a8170e5e 101 hwaddr start_addr;
b4dd7802 102 ram_addr_t size;
dc6c4fe8 103 const char *name;
a8170e5e 104 hwaddr phys_offset;
b4dd7802
AP
105
106 QLIST_ENTRY(XenPhysmap) list;
107} XenPhysmap;
108
9ce94e7c
AS
109typedef struct XenIOState {
110 shared_iopage_t *shared_page;
37f9e258 111 shared_vmport_iopage_t *shared_vmport_page;
9ce94e7c
AS
112 buffered_iopage_t *buffered_io_page;
113 QEMUTimer *buffered_io_timer;
37f9e258 114 CPUState **cpu_by_vcpu_id;
9ce94e7c
AS
115 /* the evtchn port for polling the notification, */
116 evtchn_port_t *ioreq_local_port;
fda1f768
SS
117 /* evtchn local port for buffered io */
118 evtchn_port_t bufioreq_local_port;
9ce94e7c
AS
119 /* the evtchn fd for polling */
120 XenEvtchn xce_handle;
121 /* which vcpu we are serving */
122 int send_vcpu;
123
29321335 124 struct xs_handle *xenstore;
20581d20 125 MemoryListener memory_listener;
b4dd7802 126 QLIST_HEAD(, XenPhysmap) physmap;
a8170e5e 127 hwaddr free_phys_offset;
b4dd7802 128 const XenPhysmap *log_for_dirtybit;
29321335 129
9ce94e7c 130 Notifier exit;
da98c8eb 131 Notifier suspend;
11addd0a 132 Notifier wakeup;
9ce94e7c
AS
133} XenIOState;
134
41445300
AP
135/* Xen specific function for piix pci */
136
137int xen_pci_slot_get_pirq(PCIDevice *pci_dev, int irq_num)
138{
139 return irq_num + ((pci_dev->devfn >> 3) << 2);
140}
141
142void xen_piix3_set_irq(void *opaque, int irq_num, int level)
143{
144 xc_hvm_set_pci_intx_level(xen_xc, xen_domid, 0, 0, irq_num >> 2,
145 irq_num & 3, level);
146}
147
148void xen_piix_pci_write_config_client(uint32_t address, uint32_t val, int len)
149{
150 int i;
151
152 /* Scan for updates to PCI link routes (0x60-0x63). */
153 for (i = 0; i < len; i++) {
154 uint8_t v = (val >> (8 * i)) & 0xff;
155 if (v & 0x80) {
156 v = 0;
157 }
158 v &= 0xf;
159 if (((address + i) >= 0x60) && ((address + i) <= 0x63)) {
160 xc_hvm_set_pci_link_route(xen_xc, xen_domid, address + i - 0x60, v);
161 }
162 }
163}
164
f1dbf015
WL
165void xen_hvm_inject_msi(uint64_t addr, uint32_t data)
166{
4c9f8d1b 167 xen_xc_hvm_inject_msi(xen_xc, xen_domid, addr, data);
f1dbf015
WL
168}
169
da98c8eb 170static void xen_suspend_notifier(Notifier *notifier, void *data)
c9622478 171{
da98c8eb 172 xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 3);
c9622478
AP
173}
174
9c11a8ac
AP
175/* Xen Interrupt Controller */
176
177static void xen_set_irq(void *opaque, int irq, int level)
178{
179 xc_hvm_set_isa_irq_level(xen_xc, xen_domid, irq, level);
180}
181
182qemu_irq *xen_interrupt_controller_init(void)
183{
184 return qemu_allocate_irqs(xen_set_irq, NULL, 16);
185}
186
432d268c
JN
187/* Memory Ops */
188
3c2a9669
DS
189static void xen_ram_init(ram_addr_t *below_4g_mem_size,
190 ram_addr_t *above_4g_mem_size,
191 ram_addr_t ram_size, MemoryRegion **ram_memory_p)
432d268c 192{
ce76b8a8 193 MemoryRegion *sysmem = get_system_memory();
ce76b8a8 194 ram_addr_t block_len;
c4f5cdc5
DS
195 uint64_t user_lowmem = object_property_get_int(qdev_get_machine(),
196 PC_MACHINE_MAX_RAM_BELOW_4G,
197 &error_abort);
432d268c 198
a9dd38db 199 /* Handle the machine opt max-ram-below-4g. It is basically doing
c4f5cdc5
DS
200 * min(xen limit, user limit).
201 */
202 if (HVM_BELOW_4G_RAM_END <= user_lowmem) {
203 user_lowmem = HVM_BELOW_4G_RAM_END;
8a369e20 204 }
432d268c 205
c4f5cdc5
DS
206 if (ram_size >= user_lowmem) {
207 *above_4g_mem_size = ram_size - user_lowmem;
208 *below_4g_mem_size = user_lowmem;
432d268c 209 } else {
3c2a9669
DS
210 *above_4g_mem_size = 0;
211 *below_4g_mem_size = ram_size;
432d268c 212 }
c4f5cdc5
DS
213 if (!*above_4g_mem_size) {
214 block_len = ram_size;
215 } else {
216 /*
217 * Xen does not allocate the memory continuously, it keeps a
218 * hole of the size computed above or passed in.
219 */
220 block_len = (1ULL << 32) + *above_4g_mem_size;
221 }
49946538
HT
222 memory_region_init_ram(&ram_memory, NULL, "xen.ram", block_len,
223 &error_abort);
c4f5cdc5
DS
224 *ram_memory_p = &ram_memory;
225 vmstate_register_ram_global(&ram_memory);
432d268c 226
2c9b15ca 227 memory_region_init_alias(&ram_640k, NULL, "xen.ram.640k",
ce76b8a8
AK
228 &ram_memory, 0, 0xa0000);
229 memory_region_add_subregion(sysmem, 0, &ram_640k);
8a369e20
AP
230 /* Skip of the VGA IO memory space, it will be registered later by the VGA
231 * emulated device.
232 *
233 * The area between 0xc0000 and 0x100000 will be used by SeaBIOS to load
234 * the Options ROM, so it is registered here as RAM.
235 */
2c9b15ca 236 memory_region_init_alias(&ram_lo, NULL, "xen.ram.lo",
3c2a9669
DS
237 &ram_memory, 0xc0000,
238 *below_4g_mem_size - 0xc0000);
ce76b8a8 239 memory_region_add_subregion(sysmem, 0xc0000, &ram_lo);
3c2a9669 240 if (*above_4g_mem_size > 0) {
2c9b15ca 241 memory_region_init_alias(&ram_hi, NULL, "xen.ram.hi",
ce76b8a8 242 &ram_memory, 0x100000000ULL,
3c2a9669 243 *above_4g_mem_size);
ce76b8a8 244 memory_region_add_subregion(sysmem, 0x100000000ULL, &ram_hi);
432d268c 245 }
432d268c
JN
246}
247
fce537d4 248void xen_ram_alloc(ram_addr_t ram_addr, ram_addr_t size, MemoryRegion *mr)
432d268c
JN
249{
250 unsigned long nr_pfn;
251 xen_pfn_t *pfn_list;
252 int i;
c1d322e6
SS
253 xc_domaininfo_t info;
254 unsigned long free_pages;
432d268c 255
c234572d
AP
256 if (runstate_check(RUN_STATE_INMIGRATE)) {
257 /* RAM already populated in Xen */
258 fprintf(stderr, "%s: do not alloc "RAM_ADDR_FMT
259 " bytes of ram at "RAM_ADDR_FMT" when runstate is INMIGRATE\n",
260 __func__, size, ram_addr);
261 return;
262 }
263
ce76b8a8
AK
264 if (mr == &ram_memory) {
265 return;
266 }
267
432d268c
JN
268 trace_xen_ram_alloc(ram_addr, size);
269
270 nr_pfn = size >> TARGET_PAGE_BITS;
7267c094 271 pfn_list = g_malloc(sizeof (*pfn_list) * nr_pfn);
432d268c
JN
272
273 for (i = 0; i < nr_pfn; i++) {
274 pfn_list[i] = (ram_addr >> TARGET_PAGE_BITS) + i;
275 }
276
c1d322e6
SS
277 if ((xc_domain_getinfolist(xen_xc, xen_domid, 1, &info) != 1) ||
278 (info.domain != xen_domid)) {
279 hw_error("xc_domain_getinfolist failed");
280 }
281 free_pages = info.max_pages - info.tot_pages;
282 if (free_pages > QEMU_SPARE_PAGES) {
283 free_pages -= QEMU_SPARE_PAGES;
284 } else {
285 free_pages = 0;
286 }
287 if ((free_pages < nr_pfn) &&
288 (xc_domain_setmaxmem(xen_xc, xen_domid,
289 ((info.max_pages + nr_pfn - free_pages)
290 << (XC_PAGE_SHIFT - 10))) < 0)) {
291 hw_error("xc_domain_setmaxmem failed");
292 }
432d268c 293 if (xc_domain_populate_physmap_exact(xen_xc, xen_domid, nr_pfn, 0, 0, pfn_list)) {
f15fbc4b 294 hw_error("xen: failed to populate ram at " RAM_ADDR_FMT, ram_addr);
432d268c
JN
295 }
296
7267c094 297 g_free(pfn_list);
432d268c
JN
298}
299
b4dd7802 300static XenPhysmap *get_physmapping(XenIOState *state,
a8170e5e 301 hwaddr start_addr, ram_addr_t size)
b4dd7802
AP
302{
303 XenPhysmap *physmap = NULL;
304
305 start_addr &= TARGET_PAGE_MASK;
306
307 QLIST_FOREACH(physmap, &state->physmap, list) {
308 if (range_covers_byte(physmap->start_addr, physmap->size, start_addr)) {
309 return physmap;
310 }
311 }
312 return NULL;
313}
314
a8170e5e 315static hwaddr xen_phys_offset_to_gaddr(hwaddr start_addr,
cd1ba7de
AP
316 ram_addr_t size, void *opaque)
317{
a8170e5e 318 hwaddr addr = start_addr & TARGET_PAGE_MASK;
cd1ba7de
AP
319 XenIOState *xen_io_state = opaque;
320 XenPhysmap *physmap = NULL;
321
322 QLIST_FOREACH(physmap, &xen_io_state->physmap, list) {
323 if (range_covers_byte(physmap->phys_offset, physmap->size, addr)) {
324 return physmap->start_addr;
325 }
326 }
327
328 return start_addr;
329}
330
b4dd7802
AP
331#if CONFIG_XEN_CTRL_INTERFACE_VERSION >= 340
332static int xen_add_to_physmap(XenIOState *state,
a8170e5e 333 hwaddr start_addr,
b4dd7802 334 ram_addr_t size,
20581d20 335 MemoryRegion *mr,
a8170e5e 336 hwaddr offset_within_region)
b4dd7802
AP
337{
338 unsigned long i = 0;
339 int rc = 0;
340 XenPhysmap *physmap = NULL;
a8170e5e
AK
341 hwaddr pfn, start_gpfn;
342 hwaddr phys_offset = memory_region_get_ram_addr(mr);
d1814e08 343 char path[80], value[17];
3e1f5086 344 const char *mr_name;
b4dd7802
AP
345
346 if (get_physmapping(state, start_addr, size)) {
347 return 0;
348 }
349 if (size <= 0) {
350 return -1;
351 }
352
ebed8505
SS
353 /* Xen can only handle a single dirty log region for now and we want
354 * the linear framebuffer to be that region.
355 * Avoid tracking any regions that is not videoram and avoid tracking
356 * the legacy vga region. */
20581d20
AK
357 if (mr == framebuffer && start_addr > 0xbffff) {
358 goto go_physmap;
ebed8505
SS
359 }
360 return -1;
361
362go_physmap:
f1b8caf1
SE
363 DPRINTF("mapping vram to %"HWADDR_PRIx" - %"HWADDR_PRIx"\n",
364 start_addr, start_addr + size);
b4dd7802
AP
365
366 pfn = phys_offset >> TARGET_PAGE_BITS;
367 start_gpfn = start_addr >> TARGET_PAGE_BITS;
368 for (i = 0; i < size >> TARGET_PAGE_BITS; i++) {
369 unsigned long idx = pfn + i;
370 xen_pfn_t gpfn = start_gpfn + i;
371
372 rc = xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn);
373 if (rc) {
374 DPRINTF("add_to_physmap MFN %"PRI_xen_pfn" to PFN %"
375 PRI_xen_pfn" failed: %d\n", idx, gpfn, rc);
376 return -rc;
377 }
378 }
379
3e1f5086
PC
380 mr_name = memory_region_name(mr);
381
7267c094 382 physmap = g_malloc(sizeof (XenPhysmap));
b4dd7802
AP
383
384 physmap->start_addr = start_addr;
385 physmap->size = size;
3e1f5086 386 physmap->name = mr_name;
b4dd7802
AP
387 physmap->phys_offset = phys_offset;
388
389 QLIST_INSERT_HEAD(&state->physmap, physmap, list);
390
391 xc_domain_pin_memory_cacheattr(xen_xc, xen_domid,
392 start_addr >> TARGET_PAGE_BITS,
8b6bb0ad 393 (start_addr + size - 1) >> TARGET_PAGE_BITS,
b4dd7802 394 XEN_DOMCTL_MEM_CACHEATTR_WB);
d1814e08
SS
395
396 snprintf(path, sizeof(path),
397 "/local/domain/0/device-model/%d/physmap/%"PRIx64"/start_addr",
398 xen_domid, (uint64_t)phys_offset);
399 snprintf(value, sizeof(value), "%"PRIx64, (uint64_t)start_addr);
400 if (!xs_write(state->xenstore, 0, path, value, strlen(value))) {
401 return -1;
402 }
403 snprintf(path, sizeof(path),
404 "/local/domain/0/device-model/%d/physmap/%"PRIx64"/size",
405 xen_domid, (uint64_t)phys_offset);
406 snprintf(value, sizeof(value), "%"PRIx64, (uint64_t)size);
407 if (!xs_write(state->xenstore, 0, path, value, strlen(value))) {
408 return -1;
409 }
3e1f5086 410 if (mr_name) {
d1814e08
SS
411 snprintf(path, sizeof(path),
412 "/local/domain/0/device-model/%d/physmap/%"PRIx64"/name",
413 xen_domid, (uint64_t)phys_offset);
3e1f5086 414 if (!xs_write(state->xenstore, 0, path, mr_name, strlen(mr_name))) {
d1814e08
SS
415 return -1;
416 }
417 }
418
b4dd7802
AP
419 return 0;
420}
421
422static int xen_remove_from_physmap(XenIOState *state,
a8170e5e 423 hwaddr start_addr,
b4dd7802
AP
424 ram_addr_t size)
425{
426 unsigned long i = 0;
427 int rc = 0;
428 XenPhysmap *physmap = NULL;
a8170e5e 429 hwaddr phys_offset = 0;
b4dd7802
AP
430
431 physmap = get_physmapping(state, start_addr, size);
432 if (physmap == NULL) {
433 return -1;
434 }
435
436 phys_offset = physmap->phys_offset;
437 size = physmap->size;
438
d18e173a
WL
439 DPRINTF("unmapping vram to %"HWADDR_PRIx" - %"HWADDR_PRIx", at "
440 "%"HWADDR_PRIx"\n", start_addr, start_addr + size, phys_offset);
b4dd7802
AP
441
442 size >>= TARGET_PAGE_BITS;
443 start_addr >>= TARGET_PAGE_BITS;
444 phys_offset >>= TARGET_PAGE_BITS;
445 for (i = 0; i < size; i++) {
643f5932 446 xen_pfn_t idx = start_addr + i;
b4dd7802
AP
447 xen_pfn_t gpfn = phys_offset + i;
448
449 rc = xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn);
450 if (rc) {
451 fprintf(stderr, "add_to_physmap MFN %"PRI_xen_pfn" to PFN %"
452 PRI_xen_pfn" failed: %d\n", idx, gpfn, rc);
453 return -rc;
454 }
455 }
456
457 QLIST_REMOVE(physmap, list);
458 if (state->log_for_dirtybit == physmap) {
459 state->log_for_dirtybit = NULL;
460 }
c5633d99 461 g_free(physmap);
b4dd7802
AP
462
463 return 0;
464}
465
466#else
467static int xen_add_to_physmap(XenIOState *state,
a8170e5e 468 hwaddr start_addr,
b4dd7802 469 ram_addr_t size,
20581d20 470 MemoryRegion *mr,
a8170e5e 471 hwaddr offset_within_region)
b4dd7802
AP
472{
473 return -ENOSYS;
474}
475
476static int xen_remove_from_physmap(XenIOState *state,
a8170e5e 477 hwaddr start_addr,
b4dd7802
AP
478 ram_addr_t size)
479{
480 return -ENOSYS;
481}
482#endif
483
20581d20
AK
484static void xen_set_memory(struct MemoryListener *listener,
485 MemoryRegionSection *section,
486 bool add)
b4dd7802 487{
20581d20 488 XenIOState *state = container_of(listener, XenIOState, memory_listener);
a8170e5e 489 hwaddr start_addr = section->offset_within_address_space;
052e87b0 490 ram_addr_t size = int128_get64(section->size);
20581d20 491 bool log_dirty = memory_region_is_logging(section->mr);
b4dd7802
AP
492 hvmmem_type_t mem_type;
493
20581d20 494 if (!memory_region_is_ram(section->mr)) {
b4dd7802
AP
495 return;
496 }
497
20581d20
AK
498 if (!(section->mr != &ram_memory
499 && ( (log_dirty && add) || (!log_dirty && !add)))) {
500 return;
501 }
502
503 trace_xen_client_set_memory(start_addr, size, log_dirty);
b4dd7802
AP
504
505 start_addr &= TARGET_PAGE_MASK;
506 size = TARGET_PAGE_ALIGN(size);
20581d20
AK
507
508 if (add) {
509 if (!memory_region_is_rom(section->mr)) {
510 xen_add_to_physmap(state, start_addr, size,
511 section->mr, section->offset_within_region);
512 } else {
513 mem_type = HVMMEM_ram_ro;
514 if (xc_hvm_set_mem_type(xen_xc, xen_domid, mem_type,
515 start_addr >> TARGET_PAGE_BITS,
516 size >> TARGET_PAGE_BITS)) {
517 DPRINTF("xc_hvm_set_mem_type error, addr: "TARGET_FMT_plx"\n",
518 start_addr);
519 }
b4dd7802 520 }
20581d20 521 } else {
b4dd7802
AP
522 if (xen_remove_from_physmap(state, start_addr, size) < 0) {
523 DPRINTF("physmapping does not exist at "TARGET_FMT_plx"\n", start_addr);
524 }
b4dd7802
AP
525 }
526}
527
20581d20
AK
528static void xen_region_add(MemoryListener *listener,
529 MemoryRegionSection *section)
530{
dfde4e6e 531 memory_region_ref(section->mr);
20581d20
AK
532 xen_set_memory(listener, section, true);
533}
534
535static void xen_region_del(MemoryListener *listener,
536 MemoryRegionSection *section)
537{
538 xen_set_memory(listener, section, false);
dfde4e6e 539 memory_region_unref(section->mr);
20581d20
AK
540}
541
b18620cf 542static void xen_sync_dirty_bitmap(XenIOState *state,
a8170e5e 543 hwaddr start_addr,
b18620cf 544 ram_addr_t size)
b4dd7802 545{
a8170e5e 546 hwaddr npages = size >> TARGET_PAGE_BITS;
b4dd7802
AP
547 const int width = sizeof(unsigned long) * 8;
548 unsigned long bitmap[(npages + width - 1) / width];
549 int rc, i, j;
550 const XenPhysmap *physmap = NULL;
551
552 physmap = get_physmapping(state, start_addr, size);
553 if (physmap == NULL) {
554 /* not handled */
b18620cf 555 return;
b4dd7802
AP
556 }
557
558 if (state->log_for_dirtybit == NULL) {
559 state->log_for_dirtybit = physmap;
560 } else if (state->log_for_dirtybit != physmap) {
b18620cf
AP
561 /* Only one range for dirty bitmap can be tracked. */
562 return;
b4dd7802 563 }
b4dd7802
AP
564
565 rc = xc_hvm_track_dirty_vram(xen_xc, xen_domid,
566 start_addr >> TARGET_PAGE_BITS, npages,
567 bitmap);
b18620cf 568 if (rc < 0) {
74bc4151
RPM
569#ifndef ENODATA
570#define ENODATA ENOENT
571#endif
572 if (errno == ENODATA) {
8aba7dc0
AP
573 memory_region_set_dirty(framebuffer, 0, size);
574 DPRINTF("xen: track_dirty_vram failed (0x" TARGET_FMT_plx
b18620cf 575 ", 0x" TARGET_FMT_plx "): %s\n",
74bc4151 576 start_addr, start_addr + size, strerror(errno));
b18620cf
AP
577 }
578 return;
b4dd7802
AP
579 }
580
581 for (i = 0; i < ARRAY_SIZE(bitmap); i++) {
582 unsigned long map = bitmap[i];
583 while (map != 0) {
adf9d70b 584 j = ctzl(map);
b4dd7802 585 map &= ~(1ul << j);
5a97065b 586 memory_region_set_dirty(framebuffer,
fd4aa979
BS
587 (i * width + j) * TARGET_PAGE_SIZE,
588 TARGET_PAGE_SIZE);
b4dd7802
AP
589 };
590 }
b4dd7802
AP
591}
592
20581d20
AK
593static void xen_log_start(MemoryListener *listener,
594 MemoryRegionSection *section)
b4dd7802 595{
20581d20 596 XenIOState *state = container_of(listener, XenIOState, memory_listener);
b4dd7802 597
b18620cf 598 xen_sync_dirty_bitmap(state, section->offset_within_address_space,
052e87b0 599 int128_get64(section->size));
b4dd7802
AP
600}
601
20581d20 602static void xen_log_stop(MemoryListener *listener, MemoryRegionSection *section)
b4dd7802 603{
20581d20 604 XenIOState *state = container_of(listener, XenIOState, memory_listener);
b4dd7802
AP
605
606 state->log_for_dirtybit = NULL;
607 /* Disable dirty bit tracking */
b18620cf 608 xc_hvm_track_dirty_vram(xen_xc, xen_domid, 0, 0, NULL);
b4dd7802
AP
609}
610
20581d20 611static void xen_log_sync(MemoryListener *listener, MemoryRegionSection *section)
b4dd7802 612{
20581d20 613 XenIOState *state = container_of(listener, XenIOState, memory_listener);
b4dd7802 614
b18620cf 615 xen_sync_dirty_bitmap(state, section->offset_within_address_space,
052e87b0 616 int128_get64(section->size));
b4dd7802
AP
617}
618
20581d20
AK
619static void xen_log_global_start(MemoryListener *listener)
620{
39f42439
AP
621 if (xen_enabled()) {
622 xen_in_migration = true;
623 }
20581d20
AK
624}
625
626static void xen_log_global_stop(MemoryListener *listener)
b4dd7802 627{
39f42439 628 xen_in_migration = false;
b4dd7802
AP
629}
630
20581d20
AK
631static MemoryListener xen_memory_listener = {
632 .region_add = xen_region_add,
633 .region_del = xen_region_del,
b4dd7802
AP
634 .log_start = xen_log_start,
635 .log_stop = xen_log_stop,
20581d20
AK
636 .log_sync = xen_log_sync,
637 .log_global_start = xen_log_global_start,
638 .log_global_stop = xen_log_global_stop,
72e22d2f 639 .priority = 10,
b4dd7802 640};
432d268c 641
9ce94e7c
AS
642/* get the ioreq packets from share mem */
643static ioreq_t *cpu_get_ioreq_from_shared_memory(XenIOState *state, int vcpu)
644{
645 ioreq_t *req = xen_vcpu_ioreq(state->shared_page, vcpu);
646
647 if (req->state != STATE_IOREQ_READY) {
648 DPRINTF("I/O request not ready: "
649 "%x, ptr: %x, port: %"PRIx64", "
650 "data: %"PRIx64", count: %" FMT_ioreq_size ", size: %" FMT_ioreq_size "\n",
651 req->state, req->data_is_ptr, req->addr,
652 req->data, req->count, req->size);
653 return NULL;
654 }
655
656 xen_rmb(); /* see IOREQ_READY /then/ read contents of ioreq */
657
658 req->state = STATE_IOREQ_INPROCESS;
659 return req;
660}
661
662/* use poll to get the port notification */
663/* ioreq_vec--out,the */
664/* retval--the number of ioreq packet */
665static ioreq_t *cpu_get_ioreq(XenIOState *state)
666{
667 int i;
668 evtchn_port_t port;
669
670 port = xc_evtchn_pending(state->xce_handle);
fda1f768 671 if (port == state->bufioreq_local_port) {
bc72ad67
AB
672 timer_mod(state->buffered_io_timer,
673 BUFFER_IO_MAX_DELAY + qemu_clock_get_ms(QEMU_CLOCK_REALTIME));
fda1f768
SS
674 return NULL;
675 }
676
9ce94e7c 677 if (port != -1) {
1cd25a88 678 for (i = 0; i < max_cpus; i++) {
9ce94e7c
AS
679 if (state->ioreq_local_port[i] == port) {
680 break;
681 }
682 }
683
1cd25a88 684 if (i == max_cpus) {
9ce94e7c
AS
685 hw_error("Fatal error while trying to get io event!\n");
686 }
687
688 /* unmask the wanted port again */
689 xc_evtchn_unmask(state->xce_handle, port);
690
691 /* get the io packet from shared memory */
692 state->send_vcpu = i;
693 return cpu_get_ioreq_from_shared_memory(state, i);
694 }
695
696 /* read error or read nothing */
697 return NULL;
698}
699
700static uint32_t do_inp(pio_addr_t addr, unsigned long size)
701{
702 switch (size) {
703 case 1:
704 return cpu_inb(addr);
705 case 2:
706 return cpu_inw(addr);
707 case 4:
708 return cpu_inl(addr);
709 default:
710 hw_error("inp: bad size: %04"FMT_pioaddr" %lx", addr, size);
711 }
712}
713
714static void do_outp(pio_addr_t addr,
715 unsigned long size, uint32_t val)
716{
717 switch (size) {
718 case 1:
719 return cpu_outb(addr, val);
720 case 2:
721 return cpu_outw(addr, val);
722 case 4:
723 return cpu_outl(addr, val);
724 default:
725 hw_error("outp: bad size: %04"FMT_pioaddr" %lx", addr, size);
726 }
727}
728
a3864829
IJ
729/*
730 * Helper functions which read/write an object from/to physical guest
731 * memory, as part of the implementation of an ioreq.
732 *
733 * Equivalent to
734 * cpu_physical_memory_rw(addr + (req->df ? -1 : +1) * req->size * i,
735 * val, req->size, 0/1)
736 * except without the integer overflow problems.
737 */
738static void rw_phys_req_item(hwaddr addr,
739 ioreq_t *req, uint32_t i, void *val, int rw)
740{
741 /* Do everything unsigned so overflow just results in a truncated result
742 * and accesses to undesired parts of guest memory, which is up
743 * to the guest */
744 hwaddr offset = (hwaddr)req->size * i;
745 if (req->df) {
746 addr -= offset;
747 } else {
748 addr += offset;
749 }
750 cpu_physical_memory_rw(addr, val, req->size, rw);
751}
752
753static inline void read_phys_req_item(hwaddr addr,
754 ioreq_t *req, uint32_t i, void *val)
9ce94e7c 755{
a3864829
IJ
756 rw_phys_req_item(addr, req, i, val, 0);
757}
758static inline void write_phys_req_item(hwaddr addr,
759 ioreq_t *req, uint32_t i, void *val)
760{
761 rw_phys_req_item(addr, req, i, val, 1);
762}
9ce94e7c 763
a3864829
IJ
764
765static void cpu_ioreq_pio(ioreq_t *req)
766{
249e7e0f 767 uint32_t i;
9ce94e7c
AS
768
769 if (req->dir == IOREQ_READ) {
770 if (!req->data_is_ptr) {
771 req->data = do_inp(req->addr, req->size);
772 } else {
773 uint32_t tmp;
774
775 for (i = 0; i < req->count; i++) {
776 tmp = do_inp(req->addr, req->size);
a3864829 777 write_phys_req_item(req->data, req, i, &tmp);
9ce94e7c
AS
778 }
779 }
780 } else if (req->dir == IOREQ_WRITE) {
781 if (!req->data_is_ptr) {
782 do_outp(req->addr, req->size, req->data);
783 } else {
784 for (i = 0; i < req->count; i++) {
785 uint32_t tmp = 0;
786
a3864829 787 read_phys_req_item(req->data, req, i, &tmp);
9ce94e7c
AS
788 do_outp(req->addr, req->size, tmp);
789 }
790 }
791 }
792}
793
794static void cpu_ioreq_move(ioreq_t *req)
795{
249e7e0f 796 uint32_t i;
9ce94e7c
AS
797
798 if (!req->data_is_ptr) {
799 if (req->dir == IOREQ_READ) {
800 for (i = 0; i < req->count; i++) {
a3864829 801 read_phys_req_item(req->addr, req, i, &req->data);
9ce94e7c
AS
802 }
803 } else if (req->dir == IOREQ_WRITE) {
804 for (i = 0; i < req->count; i++) {
a3864829 805 write_phys_req_item(req->addr, req, i, &req->data);
9ce94e7c
AS
806 }
807 }
808 } else {
2b734340 809 uint64_t tmp;
9ce94e7c
AS
810
811 if (req->dir == IOREQ_READ) {
812 for (i = 0; i < req->count; i++) {
a3864829
IJ
813 read_phys_req_item(req->addr, req, i, &tmp);
814 write_phys_req_item(req->data, req, i, &tmp);
9ce94e7c
AS
815 }
816 } else if (req->dir == IOREQ_WRITE) {
817 for (i = 0; i < req->count; i++) {
a3864829
IJ
818 read_phys_req_item(req->data, req, i, &tmp);
819 write_phys_req_item(req->addr, req, i, &tmp);
9ce94e7c
AS
820 }
821 }
822 }
823}
824
37f9e258
DS
825static void regs_to_cpu(vmware_regs_t *vmport_regs, ioreq_t *req)
826{
827 X86CPU *cpu;
828 CPUX86State *env;
829
830 cpu = X86_CPU(current_cpu);
831 env = &cpu->env;
832 env->regs[R_EAX] = req->data;
833 env->regs[R_EBX] = vmport_regs->ebx;
834 env->regs[R_ECX] = vmport_regs->ecx;
835 env->regs[R_EDX] = vmport_regs->edx;
836 env->regs[R_ESI] = vmport_regs->esi;
837 env->regs[R_EDI] = vmport_regs->edi;
838}
839
840static void regs_from_cpu(vmware_regs_t *vmport_regs)
841{
842 X86CPU *cpu = X86_CPU(current_cpu);
843 CPUX86State *env = &cpu->env;
844
845 vmport_regs->ebx = env->regs[R_EBX];
846 vmport_regs->ecx = env->regs[R_ECX];
847 vmport_regs->edx = env->regs[R_EDX];
848 vmport_regs->esi = env->regs[R_ESI];
849 vmport_regs->edi = env->regs[R_EDI];
850}
851
852static void handle_vmport_ioreq(XenIOState *state, ioreq_t *req)
853{
854 vmware_regs_t *vmport_regs;
855
856 assert(state->shared_vmport_page);
857 vmport_regs =
858 &state->shared_vmport_page->vcpu_vmport_regs[state->send_vcpu];
859 QEMU_BUILD_BUG_ON(sizeof(*req) < sizeof(*vmport_regs));
860
861 current_cpu = state->cpu_by_vcpu_id[state->send_vcpu];
862 regs_to_cpu(vmport_regs, req);
863 cpu_ioreq_pio(req);
864 regs_from_cpu(vmport_regs);
865 current_cpu = NULL;
866}
867
868static void handle_ioreq(XenIOState *state, ioreq_t *req)
9ce94e7c
AS
869{
870 if (!req->data_is_ptr && (req->dir == IOREQ_WRITE) &&
871 (req->size < sizeof (target_ulong))) {
872 req->data &= ((target_ulong) 1 << (8 * req->size)) - 1;
873 }
874
875 switch (req->type) {
876 case IOREQ_TYPE_PIO:
877 cpu_ioreq_pio(req);
878 break;
879 case IOREQ_TYPE_COPY:
880 cpu_ioreq_move(req);
881 break;
37f9e258
DS
882 case IOREQ_TYPE_VMWARE_PORT:
883 handle_vmport_ioreq(state, req);
884 break;
9ce94e7c
AS
885 case IOREQ_TYPE_TIMEOFFSET:
886 break;
887 case IOREQ_TYPE_INVALIDATE:
e41d7c69 888 xen_invalidate_map_cache();
9ce94e7c
AS
889 break;
890 default:
891 hw_error("Invalid ioreq type 0x%x\n", req->type);
892 }
893}
894
fda1f768 895static int handle_buffered_iopage(XenIOState *state)
9ce94e7c
AS
896{
897 buf_ioreq_t *buf_req = NULL;
898 ioreq_t req;
899 int qw;
900
901 if (!state->buffered_io_page) {
fda1f768 902 return 0;
9ce94e7c
AS
903 }
904
fda1f768
SS
905 memset(&req, 0x00, sizeof(req));
906
9ce94e7c
AS
907 while (state->buffered_io_page->read_pointer != state->buffered_io_page->write_pointer) {
908 buf_req = &state->buffered_io_page->buf_ioreq[
909 state->buffered_io_page->read_pointer % IOREQ_BUFFER_SLOT_NUM];
910 req.size = 1UL << buf_req->size;
911 req.count = 1;
912 req.addr = buf_req->addr;
913 req.data = buf_req->data;
914 req.state = STATE_IOREQ_READY;
915 req.dir = buf_req->dir;
916 req.df = 1;
917 req.type = buf_req->type;
918 req.data_is_ptr = 0;
919 qw = (req.size == 8);
920 if (qw) {
921 buf_req = &state->buffered_io_page->buf_ioreq[
922 (state->buffered_io_page->read_pointer + 1) % IOREQ_BUFFER_SLOT_NUM];
923 req.data |= ((uint64_t)buf_req->data) << 32;
924 }
925
37f9e258 926 handle_ioreq(state, &req);
9ce94e7c
AS
927
928 xen_mb();
929 state->buffered_io_page->read_pointer += qw ? 2 : 1;
930 }
fda1f768
SS
931
932 return req.count;
9ce94e7c
AS
933}
934
935static void handle_buffered_io(void *opaque)
936{
937 XenIOState *state = opaque;
938
fda1f768 939 if (handle_buffered_iopage(state)) {
bc72ad67
AB
940 timer_mod(state->buffered_io_timer,
941 BUFFER_IO_MAX_DELAY + qemu_clock_get_ms(QEMU_CLOCK_REALTIME));
fda1f768 942 } else {
bc72ad67 943 timer_del(state->buffered_io_timer);
fda1f768
SS
944 xc_evtchn_unmask(state->xce_handle, state->bufioreq_local_port);
945 }
9ce94e7c
AS
946}
947
948static void cpu_handle_ioreq(void *opaque)
949{
950 XenIOState *state = opaque;
951 ioreq_t *req = cpu_get_ioreq(state);
952
953 handle_buffered_iopage(state);
954 if (req) {
37f9e258 955 handle_ioreq(state, req);
9ce94e7c
AS
956
957 if (req->state != STATE_IOREQ_INPROCESS) {
958 fprintf(stderr, "Badness in I/O request ... not in service?!: "
959 "%x, ptr: %x, port: %"PRIx64", "
37f9e258
DS
960 "data: %"PRIx64", count: %" FMT_ioreq_size
961 ", size: %" FMT_ioreq_size
962 ", type: %"FMT_ioreq_size"\n",
9ce94e7c 963 req->state, req->data_is_ptr, req->addr,
37f9e258 964 req->data, req->count, req->size, req->type);
180640ea 965 destroy_hvm_domain(false);
9ce94e7c
AS
966 return;
967 }
968
969 xen_wmb(); /* Update ioreq contents /then/ update state. */
970
971 /*
972 * We do this before we send the response so that the tools
973 * have the opportunity to pick up on the reset before the
974 * guest resumes and does a hlt with interrupts disabled which
975 * causes Xen to powerdown the domain.
976 */
1354869c 977 if (runstate_is_running()) {
9ce94e7c 978 if (qemu_shutdown_requested_get()) {
180640ea 979 destroy_hvm_domain(false);
9ce94e7c
AS
980 }
981 if (qemu_reset_requested_get()) {
e063eb1f 982 qemu_system_reset(VMRESET_REPORT);
180640ea 983 destroy_hvm_domain(true);
9ce94e7c
AS
984 }
985 }
986
987 req->state = STATE_IORESP_READY;
988 xc_evtchn_notify(state->xce_handle, state->ioreq_local_port[state->send_vcpu]);
989 }
990}
991
992static void xen_main_loop_prepare(XenIOState *state)
993{
994 int evtchn_fd = -1;
995
996 if (state->xce_handle != XC_HANDLER_INITIAL_VALUE) {
997 evtchn_fd = xc_evtchn_fd(state->xce_handle);
998 }
999
bc72ad67 1000 state->buffered_io_timer = timer_new_ms(QEMU_CLOCK_REALTIME, handle_buffered_io,
9ce94e7c 1001 state);
9ce94e7c
AS
1002
1003 if (evtchn_fd != -1) {
37f9e258
DS
1004 CPUState *cpu_state;
1005
1006 DPRINTF("%s: Init cpu_by_vcpu_id\n", __func__);
1007 CPU_FOREACH(cpu_state) {
1008 DPRINTF("%s: cpu_by_vcpu_id[%d]=%p\n",
1009 __func__, cpu_state->cpu_index, cpu_state);
1010 state->cpu_by_vcpu_id[cpu_state->cpu_index] = cpu_state;
1011 }
9ce94e7c
AS
1012 qemu_set_fd_handler(evtchn_fd, cpu_handle_ioreq, NULL, state);
1013 }
1014}
1015
1016
1dfb4dd9
LC
1017static void xen_hvm_change_state_handler(void *opaque, int running,
1018 RunState rstate)
9ce94e7c 1019{
9ce94e7c 1020 if (running) {
d208a85f 1021 xen_main_loop_prepare((XenIOState *)opaque);
9ce94e7c
AS
1022 }
1023}
1024
9e8dd451 1025static void xen_exit_notifier(Notifier *n, void *data)
9ce94e7c
AS
1026{
1027 XenIOState *state = container_of(n, XenIOState, exit);
1028
1029 xc_evtchn_close(state->xce_handle);
29321335 1030 xs_daemon_close(state->xenstore);
9ce94e7c
AS
1031}
1032
d1814e08
SS
1033static void xen_read_physmap(XenIOState *state)
1034{
1035 XenPhysmap *physmap = NULL;
1036 unsigned int len, num, i;
1037 char path[80], *value = NULL;
1038 char **entries = NULL;
1039
1040 snprintf(path, sizeof(path),
1041 "/local/domain/0/device-model/%d/physmap", xen_domid);
1042 entries = xs_directory(state->xenstore, 0, path, &num);
1043 if (entries == NULL)
1044 return;
1045
1046 for (i = 0; i < num; i++) {
1047 physmap = g_malloc(sizeof (XenPhysmap));
1048 physmap->phys_offset = strtoull(entries[i], NULL, 16);
1049 snprintf(path, sizeof(path),
1050 "/local/domain/0/device-model/%d/physmap/%s/start_addr",
1051 xen_domid, entries[i]);
1052 value = xs_read(state->xenstore, 0, path, &len);
1053 if (value == NULL) {
c5633d99 1054 g_free(physmap);
d1814e08
SS
1055 continue;
1056 }
1057 physmap->start_addr = strtoull(value, NULL, 16);
1058 free(value);
1059
1060 snprintf(path, sizeof(path),
1061 "/local/domain/0/device-model/%d/physmap/%s/size",
1062 xen_domid, entries[i]);
1063 value = xs_read(state->xenstore, 0, path, &len);
1064 if (value == NULL) {
c5633d99 1065 g_free(physmap);
d1814e08
SS
1066 continue;
1067 }
1068 physmap->size = strtoull(value, NULL, 16);
1069 free(value);
1070
1071 snprintf(path, sizeof(path),
1072 "/local/domain/0/device-model/%d/physmap/%s/name",
1073 xen_domid, entries[i]);
1074 physmap->name = xs_read(state->xenstore, 0, path, &len);
1075
1076 QLIST_INSERT_HEAD(&state->physmap, physmap, list);
1077 }
1078 free(entries);
d1814e08
SS
1079}
1080
11addd0a
LJ
1081static void xen_wakeup_notifier(Notifier *notifier, void *data)
1082{
1083 xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 0);
1084}
1085
6c5b0c0a 1086/* return 0 means OK, or -1 means critical issue -- will exit(1) */
3c2a9669
DS
1087int xen_hvm_init(ram_addr_t *below_4g_mem_size, ram_addr_t *above_4g_mem_size,
1088 MemoryRegion **ram_memory)
29d3ccde 1089{
9ce94e7c
AS
1090 int i, rc;
1091 unsigned long ioreq_pfn;
fda1f768 1092 unsigned long bufioreq_evtchn;
9ce94e7c
AS
1093 XenIOState *state;
1094
7267c094 1095 state = g_malloc0(sizeof (XenIOState));
9ce94e7c
AS
1096
1097 state->xce_handle = xen_xc_evtchn_open(NULL, 0);
1098 if (state->xce_handle == XC_HANDLER_INITIAL_VALUE) {
1099 perror("xen: event channel open");
6c5b0c0a 1100 return -1;
9ce94e7c
AS
1101 }
1102
29321335
AP
1103 state->xenstore = xs_daemon_open();
1104 if (state->xenstore == NULL) {
1105 perror("xen: xenstore open");
6c5b0c0a 1106 return -1;
29321335
AP
1107 }
1108
9ce94e7c
AS
1109 state->exit.notify = xen_exit_notifier;
1110 qemu_add_exit_notifier(&state->exit);
1111
da98c8eb
GH
1112 state->suspend.notify = xen_suspend_notifier;
1113 qemu_register_suspend_notifier(&state->suspend);
1114
11addd0a
LJ
1115 state->wakeup.notify = xen_wakeup_notifier;
1116 qemu_register_wakeup_notifier(&state->wakeup);
1117
9ce94e7c
AS
1118 xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_IOREQ_PFN, &ioreq_pfn);
1119 DPRINTF("shared page at pfn %lx\n", ioreq_pfn);
1120 state->shared_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE,
1121 PROT_READ|PROT_WRITE, ioreq_pfn);
1122 if (state->shared_page == NULL) {
1123 hw_error("map shared IO page returned error %d handle=" XC_INTERFACE_FMT,
1124 errno, xen_xc);
1125 }
1126
37f9e258
DS
1127 rc = xen_get_vmport_regs_pfn(xen_xc, xen_domid, &ioreq_pfn);
1128 if (!rc) {
1129 DPRINTF("shared vmport page at pfn %lx\n", ioreq_pfn);
1130 state->shared_vmport_page =
1131 xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE,
1132 PROT_READ|PROT_WRITE, ioreq_pfn);
1133 if (state->shared_vmport_page == NULL) {
1134 hw_error("map shared vmport IO page returned error %d handle="
1135 XC_INTERFACE_FMT, errno, xen_xc);
1136 }
1137 } else if (rc != -ENOSYS) {
1138 hw_error("get vmport regs pfn returned error %d, rc=%d", errno, rc);
1139 }
1140
9ce94e7c
AS
1141 xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_BUFIOREQ_PFN, &ioreq_pfn);
1142 DPRINTF("buffered io page at pfn %lx\n", ioreq_pfn);
1143 state->buffered_io_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE,
1144 PROT_READ|PROT_WRITE, ioreq_pfn);
1145 if (state->buffered_io_page == NULL) {
1146 hw_error("map buffered IO page returned error %d", errno);
1147 }
1148
37f9e258
DS
1149 /* Note: cpus is empty at this point in init */
1150 state->cpu_by_vcpu_id = g_malloc0(max_cpus * sizeof(CPUState *));
1151
1cd25a88 1152 state->ioreq_local_port = g_malloc0(max_cpus * sizeof (evtchn_port_t));
9ce94e7c
AS
1153
1154 /* FIXME: how about if we overflow the page here? */
1cd25a88 1155 for (i = 0; i < max_cpus; i++) {
9ce94e7c
AS
1156 rc = xc_evtchn_bind_interdomain(state->xce_handle, xen_domid,
1157 xen_vcpu_eport(state->shared_page, i));
1158 if (rc == -1) {
1159 fprintf(stderr, "bind interdomain ioctl error %d\n", errno);
1160 return -1;
1161 }
1162 state->ioreq_local_port[i] = rc;
1163 }
1164
fda1f768
SS
1165 rc = xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_BUFIOREQ_EVTCHN,
1166 &bufioreq_evtchn);
1167 if (rc < 0) {
1168 fprintf(stderr, "failed to get HVM_PARAM_BUFIOREQ_EVTCHN\n");
1169 return -1;
1170 }
1171 rc = xc_evtchn_bind_interdomain(state->xce_handle, xen_domid,
1172 (uint32_t)bufioreq_evtchn);
1173 if (rc == -1) {
1174 fprintf(stderr, "bind interdomain ioctl error %d\n", errno);
1175 return -1;
1176 }
1177 state->bufioreq_local_port = rc;
1178
432d268c 1179 /* Init RAM management */
cd1ba7de 1180 xen_map_cache_init(xen_phys_offset_to_gaddr, state);
3c2a9669 1181 xen_ram_init(below_4g_mem_size, above_4g_mem_size, ram_size, ram_memory);
432d268c 1182
fb4bb2b5 1183 qemu_add_vm_change_state_handler(xen_hvm_change_state_handler, state);
9ce94e7c 1184
20581d20 1185 state->memory_listener = xen_memory_listener;
b4dd7802 1186 QLIST_INIT(&state->physmap);
f6790af6 1187 memory_listener_register(&state->memory_listener, &address_space_memory);
b4dd7802
AP
1188 state->log_for_dirtybit = NULL;
1189
ad35a7da
SS
1190 /* Initialize backend core & drivers */
1191 if (xen_be_init() != 0) {
1192 fprintf(stderr, "%s: xen backend core setup failed\n", __FUNCTION__);
6c5b0c0a 1193 return -1;
ad35a7da
SS
1194 }
1195 xen_be_register("console", &xen_console_ops);
37cdfcf1 1196 xen_be_register("vkbd", &xen_kbdmouse_ops);
ad35a7da 1197 xen_be_register("qdisk", &xen_blkdev_ops);
d1814e08 1198 xen_read_physmap(state);
ad35a7da 1199
29d3ccde
AP
1200 return 0;
1201}
9ce94e7c 1202
180640ea 1203void destroy_hvm_domain(bool reboot)
9ce94e7c
AS
1204{
1205 XenXC xc_handle;
1206 int sts;
1207
1208 xc_handle = xen_xc_interface_open(0, 0, 0);
1209 if (xc_handle == XC_HANDLER_INITIAL_VALUE) {
1210 fprintf(stderr, "Cannot acquire xenctrl handle\n");
1211 } else {
180640ea
JB
1212 sts = xc_domain_shutdown(xc_handle, xen_domid,
1213 reboot ? SHUTDOWN_reboot : SHUTDOWN_poweroff);
9ce94e7c 1214 if (sts != 0) {
180640ea
JB
1215 fprintf(stderr, "xc_domain_shutdown failed to issue %s, "
1216 "sts %d, %s\n", reboot ? "reboot" : "poweroff",
1217 sts, strerror(errno));
9ce94e7c 1218 } else {
180640ea
JB
1219 fprintf(stderr, "Issued domain %d %s\n", xen_domid,
1220 reboot ? "reboot" : "poweroff");
9ce94e7c
AS
1221 }
1222 xc_interface_close(xc_handle);
1223 }
1224}
c65adf9b
AK
1225
1226void xen_register_framebuffer(MemoryRegion *mr)
1227{
1228 framebuffer = mr;
1229}
eaab4d60
AK
1230
1231void xen_shutdown_fatal_error(const char *fmt, ...)
1232{
1233 va_list ap;
1234
1235 va_start(ap, fmt);
1236 vfprintf(stderr, fmt, ap);
1237 va_end(ap);
1238 fprintf(stderr, "Will destroy the domain.\n");
1239 /* destroy the domain */
1240 qemu_system_shutdown_request();
1241}
910b38e4
AP
1242
1243void xen_modified_memory(ram_addr_t start, ram_addr_t length)
1244{
1245 if (unlikely(xen_in_migration)) {
1246 int rc;
1247 ram_addr_t start_pfn, nb_pages;
1248
1249 if (length == 0) {
1250 length = TARGET_PAGE_SIZE;
1251 }
1252 start_pfn = start >> TARGET_PAGE_BITS;
1253 nb_pages = ((start + length + TARGET_PAGE_SIZE - 1) >> TARGET_PAGE_BITS)
1254 - start_pfn;
1255 rc = xc_hvm_modified_memory(xen_xc, xen_domid, start_pfn, nb_pages);
1256 if (rc) {
1257 fprintf(stderr,
1258 "%s failed for "RAM_ADDR_FMT" ("RAM_ADDR_FMT"): %i, %s\n",
1259 __func__, start, nb_pages, rc, strerror(-rc));
1260 }
1261 }
1262}
04b0de0e
WL
1263
1264void qmp_xen_set_global_dirty_log(bool enable, Error **errp)
1265{
1266 if (enable) {
1267 memory_global_dirty_log_start();
1268 } else {
1269 memory_global_dirty_log_stop();
1270 }
1271}