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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 | * | |
7 | */ | |
8 | ||
9ce94e7c AS |
9 | #include <sys/mman.h> |
10 | ||
41445300 | 11 | #include "hw/pci.h" |
c9622478 | 12 | #include "hw/pc.h" |
3285cf4f AP |
13 | #include "hw/xen_common.h" |
14 | #include "hw/xen_backend.h" | |
15 | ||
b4dd7802 | 16 | #include "range.h" |
432d268c JN |
17 | #include "xen-mapcache.h" |
18 | #include "trace.h" | |
ce76b8a8 | 19 | #include "exec-memory.h" |
432d268c | 20 | |
9ce94e7c AS |
21 | #include <xen/hvm/ioreq.h> |
22 | #include <xen/hvm/params.h> | |
8a369e20 | 23 | #include <xen/hvm/e820.h> |
9ce94e7c AS |
24 | |
25 | //#define DEBUG_XEN | |
26 | ||
27 | #ifdef DEBUG_XEN | |
28 | #define DPRINTF(fmt, ...) \ | |
29 | do { fprintf(stderr, "xen: " fmt, ## __VA_ARGS__); } while (0) | |
30 | #else | |
31 | #define DPRINTF(fmt, ...) \ | |
32 | do { } while (0) | |
33 | #endif | |
34 | ||
ce76b8a8 AK |
35 | static MemoryRegion ram_memory, ram_640k, ram_lo, ram_hi; |
36 | ||
9ce94e7c AS |
37 | /* Compatibility with older version */ |
38 | #if __XEN_LATEST_INTERFACE_VERSION__ < 0x0003020a | |
39 | static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i) | |
40 | { | |
41 | return shared_page->vcpu_iodata[i].vp_eport; | |
42 | } | |
43 | static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu) | |
44 | { | |
45 | return &shared_page->vcpu_iodata[vcpu].vp_ioreq; | |
46 | } | |
47 | # define FMT_ioreq_size PRIx64 | |
48 | #else | |
49 | static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i) | |
50 | { | |
51 | return shared_page->vcpu_ioreq[i].vp_eport; | |
52 | } | |
53 | static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu) | |
54 | { | |
55 | return &shared_page->vcpu_ioreq[vcpu]; | |
56 | } | |
57 | # define FMT_ioreq_size "u" | |
58 | #endif | |
59 | ||
60 | #define BUFFER_IO_MAX_DELAY 100 | |
61 | ||
b4dd7802 AP |
62 | typedef struct XenPhysmap { |
63 | target_phys_addr_t start_addr; | |
64 | ram_addr_t size; | |
65 | target_phys_addr_t phys_offset; | |
66 | ||
67 | QLIST_ENTRY(XenPhysmap) list; | |
68 | } XenPhysmap; | |
69 | ||
9ce94e7c AS |
70 | typedef struct XenIOState { |
71 | shared_iopage_t *shared_page; | |
72 | buffered_iopage_t *buffered_io_page; | |
73 | QEMUTimer *buffered_io_timer; | |
74 | /* the evtchn port for polling the notification, */ | |
75 | evtchn_port_t *ioreq_local_port; | |
76 | /* the evtchn fd for polling */ | |
77 | XenEvtchn xce_handle; | |
78 | /* which vcpu we are serving */ | |
79 | int send_vcpu; | |
80 | ||
29321335 | 81 | struct xs_handle *xenstore; |
b4dd7802 AP |
82 | CPUPhysMemoryClient client; |
83 | QLIST_HEAD(, XenPhysmap) physmap; | |
84 | const XenPhysmap *log_for_dirtybit; | |
29321335 | 85 | |
9ce94e7c AS |
86 | Notifier exit; |
87 | } XenIOState; | |
88 | ||
41445300 AP |
89 | /* Xen specific function for piix pci */ |
90 | ||
91 | int xen_pci_slot_get_pirq(PCIDevice *pci_dev, int irq_num) | |
92 | { | |
93 | return irq_num + ((pci_dev->devfn >> 3) << 2); | |
94 | } | |
95 | ||
96 | void xen_piix3_set_irq(void *opaque, int irq_num, int level) | |
97 | { | |
98 | xc_hvm_set_pci_intx_level(xen_xc, xen_domid, 0, 0, irq_num >> 2, | |
99 | irq_num & 3, level); | |
100 | } | |
101 | ||
102 | void xen_piix_pci_write_config_client(uint32_t address, uint32_t val, int len) | |
103 | { | |
104 | int i; | |
105 | ||
106 | /* Scan for updates to PCI link routes (0x60-0x63). */ | |
107 | for (i = 0; i < len; i++) { | |
108 | uint8_t v = (val >> (8 * i)) & 0xff; | |
109 | if (v & 0x80) { | |
110 | v = 0; | |
111 | } | |
112 | v &= 0xf; | |
113 | if (((address + i) >= 0x60) && ((address + i) <= 0x63)) { | |
114 | xc_hvm_set_pci_link_route(xen_xc, xen_domid, address + i - 0x60, v); | |
115 | } | |
116 | } | |
117 | } | |
118 | ||
c9622478 AP |
119 | void xen_cmos_set_s3_resume(void *opaque, int irq, int level) |
120 | { | |
121 | pc_cmos_set_s3_resume(opaque, irq, level); | |
122 | if (level) { | |
123 | xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 3); | |
124 | } | |
125 | } | |
126 | ||
9c11a8ac AP |
127 | /* Xen Interrupt Controller */ |
128 | ||
129 | static void xen_set_irq(void *opaque, int irq, int level) | |
130 | { | |
131 | xc_hvm_set_isa_irq_level(xen_xc, xen_domid, irq, level); | |
132 | } | |
133 | ||
134 | qemu_irq *xen_interrupt_controller_init(void) | |
135 | { | |
136 | return qemu_allocate_irqs(xen_set_irq, NULL, 16); | |
137 | } | |
138 | ||
432d268c JN |
139 | /* Memory Ops */ |
140 | ||
141 | static void xen_ram_init(ram_addr_t ram_size) | |
142 | { | |
ce76b8a8 | 143 | MemoryRegion *sysmem = get_system_memory(); |
432d268c | 144 | ram_addr_t below_4g_mem_size, above_4g_mem_size = 0; |
ce76b8a8 | 145 | ram_addr_t block_len; |
432d268c | 146 | |
ce76b8a8 | 147 | block_len = ram_size; |
8a369e20 AP |
148 | if (ram_size >= HVM_BELOW_4G_RAM_END) { |
149 | /* Xen does not allocate the memory continuously, and keep a hole at | |
150 | * HVM_BELOW_4G_MMIO_START of HVM_BELOW_4G_MMIO_LENGTH | |
151 | */ | |
ce76b8a8 | 152 | block_len += HVM_BELOW_4G_MMIO_LENGTH; |
8a369e20 | 153 | } |
ce76b8a8 | 154 | memory_region_init_ram(&ram_memory, NULL, "xen.ram", block_len); |
432d268c | 155 | |
8a369e20 AP |
156 | if (ram_size >= HVM_BELOW_4G_RAM_END) { |
157 | above_4g_mem_size = ram_size - HVM_BELOW_4G_RAM_END; | |
158 | below_4g_mem_size = HVM_BELOW_4G_RAM_END; | |
432d268c JN |
159 | } else { |
160 | below_4g_mem_size = ram_size; | |
161 | } | |
162 | ||
ce76b8a8 AK |
163 | memory_region_init_alias(&ram_640k, "xen.ram.640k", |
164 | &ram_memory, 0, 0xa0000); | |
165 | memory_region_add_subregion(sysmem, 0, &ram_640k); | |
8a369e20 AP |
166 | /* Skip of the VGA IO memory space, it will be registered later by the VGA |
167 | * emulated device. | |
168 | * | |
169 | * The area between 0xc0000 and 0x100000 will be used by SeaBIOS to load | |
170 | * the Options ROM, so it is registered here as RAM. | |
171 | */ | |
ce76b8a8 AK |
172 | memory_region_init_alias(&ram_lo, "xen.ram.lo", |
173 | &ram_memory, 0xc0000, below_4g_mem_size - 0xc0000); | |
174 | memory_region_add_subregion(sysmem, 0xc0000, &ram_lo); | |
432d268c | 175 | if (above_4g_mem_size > 0) { |
ce76b8a8 AK |
176 | memory_region_init_alias(&ram_hi, "xen.ram.hi", |
177 | &ram_memory, 0x100000000ULL, | |
178 | above_4g_mem_size); | |
179 | memory_region_add_subregion(sysmem, 0x100000000ULL, &ram_hi); | |
432d268c | 180 | } |
432d268c JN |
181 | } |
182 | ||
fce537d4 | 183 | void xen_ram_alloc(ram_addr_t ram_addr, ram_addr_t size, MemoryRegion *mr) |
432d268c JN |
184 | { |
185 | unsigned long nr_pfn; | |
186 | xen_pfn_t *pfn_list; | |
187 | int i; | |
188 | ||
ce76b8a8 AK |
189 | if (mr == &ram_memory) { |
190 | return; | |
191 | } | |
192 | ||
432d268c JN |
193 | trace_xen_ram_alloc(ram_addr, size); |
194 | ||
195 | nr_pfn = size >> TARGET_PAGE_BITS; | |
7267c094 | 196 | pfn_list = g_malloc(sizeof (*pfn_list) * nr_pfn); |
432d268c JN |
197 | |
198 | for (i = 0; i < nr_pfn; i++) { | |
199 | pfn_list[i] = (ram_addr >> TARGET_PAGE_BITS) + i; | |
200 | } | |
201 | ||
202 | if (xc_domain_populate_physmap_exact(xen_xc, xen_domid, nr_pfn, 0, 0, pfn_list)) { | |
f15fbc4b | 203 | hw_error("xen: failed to populate ram at " RAM_ADDR_FMT, ram_addr); |
432d268c JN |
204 | } |
205 | ||
7267c094 | 206 | g_free(pfn_list); |
432d268c JN |
207 | } |
208 | ||
b4dd7802 AP |
209 | static XenPhysmap *get_physmapping(XenIOState *state, |
210 | target_phys_addr_t start_addr, ram_addr_t size) | |
211 | { | |
212 | XenPhysmap *physmap = NULL; | |
213 | ||
214 | start_addr &= TARGET_PAGE_MASK; | |
215 | ||
216 | QLIST_FOREACH(physmap, &state->physmap, list) { | |
217 | if (range_covers_byte(physmap->start_addr, physmap->size, start_addr)) { | |
218 | return physmap; | |
219 | } | |
220 | } | |
221 | return NULL; | |
222 | } | |
223 | ||
224 | #if CONFIG_XEN_CTRL_INTERFACE_VERSION >= 340 | |
225 | static int xen_add_to_physmap(XenIOState *state, | |
226 | target_phys_addr_t start_addr, | |
227 | ram_addr_t size, | |
228 | target_phys_addr_t phys_offset) | |
229 | { | |
230 | unsigned long i = 0; | |
231 | int rc = 0; | |
232 | XenPhysmap *physmap = NULL; | |
233 | target_phys_addr_t pfn, start_gpfn; | |
ebed8505 | 234 | RAMBlock *block; |
b4dd7802 AP |
235 | |
236 | if (get_physmapping(state, start_addr, size)) { | |
237 | return 0; | |
238 | } | |
239 | if (size <= 0) { | |
240 | return -1; | |
241 | } | |
242 | ||
ebed8505 SS |
243 | /* Xen can only handle a single dirty log region for now and we want |
244 | * the linear framebuffer to be that region. | |
245 | * Avoid tracking any regions that is not videoram and avoid tracking | |
246 | * the legacy vga region. */ | |
247 | QLIST_FOREACH(block, &ram_list.blocks, next) { | |
248 | if (!strcmp(block->idstr, "vga.vram") && block->offset == phys_offset | |
249 | && start_addr > 0xbffff) { | |
250 | goto go_physmap; | |
251 | } | |
252 | } | |
253 | return -1; | |
254 | ||
255 | go_physmap: | |
b4dd7802 AP |
256 | DPRINTF("mapping vram to %llx - %llx, from %llx\n", |
257 | start_addr, start_addr + size, phys_offset); | |
258 | ||
259 | pfn = phys_offset >> TARGET_PAGE_BITS; | |
260 | start_gpfn = start_addr >> TARGET_PAGE_BITS; | |
261 | for (i = 0; i < size >> TARGET_PAGE_BITS; i++) { | |
262 | unsigned long idx = pfn + i; | |
263 | xen_pfn_t gpfn = start_gpfn + i; | |
264 | ||
265 | rc = xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn); | |
266 | if (rc) { | |
267 | DPRINTF("add_to_physmap MFN %"PRI_xen_pfn" to PFN %" | |
268 | PRI_xen_pfn" failed: %d\n", idx, gpfn, rc); | |
269 | return -rc; | |
270 | } | |
271 | } | |
272 | ||
7267c094 | 273 | physmap = g_malloc(sizeof (XenPhysmap)); |
b4dd7802 AP |
274 | |
275 | physmap->start_addr = start_addr; | |
276 | physmap->size = size; | |
277 | physmap->phys_offset = phys_offset; | |
278 | ||
279 | QLIST_INSERT_HEAD(&state->physmap, physmap, list); | |
280 | ||
281 | xc_domain_pin_memory_cacheattr(xen_xc, xen_domid, | |
282 | start_addr >> TARGET_PAGE_BITS, | |
283 | (start_addr + size) >> TARGET_PAGE_BITS, | |
284 | XEN_DOMCTL_MEM_CACHEATTR_WB); | |
285 | return 0; | |
286 | } | |
287 | ||
288 | static int xen_remove_from_physmap(XenIOState *state, | |
289 | target_phys_addr_t start_addr, | |
290 | ram_addr_t size) | |
291 | { | |
292 | unsigned long i = 0; | |
293 | int rc = 0; | |
294 | XenPhysmap *physmap = NULL; | |
295 | target_phys_addr_t phys_offset = 0; | |
296 | ||
297 | physmap = get_physmapping(state, start_addr, size); | |
298 | if (physmap == NULL) { | |
299 | return -1; | |
300 | } | |
301 | ||
302 | phys_offset = physmap->phys_offset; | |
303 | size = physmap->size; | |
304 | ||
305 | DPRINTF("unmapping vram to %llx - %llx, from %llx\n", | |
306 | phys_offset, phys_offset + size, start_addr); | |
307 | ||
308 | size >>= TARGET_PAGE_BITS; | |
309 | start_addr >>= TARGET_PAGE_BITS; | |
310 | phys_offset >>= TARGET_PAGE_BITS; | |
311 | for (i = 0; i < size; i++) { | |
312 | unsigned long idx = start_addr + i; | |
313 | xen_pfn_t gpfn = phys_offset + i; | |
314 | ||
315 | rc = xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn); | |
316 | if (rc) { | |
317 | fprintf(stderr, "add_to_physmap MFN %"PRI_xen_pfn" to PFN %" | |
318 | PRI_xen_pfn" failed: %d\n", idx, gpfn, rc); | |
319 | return -rc; | |
320 | } | |
321 | } | |
322 | ||
323 | QLIST_REMOVE(physmap, list); | |
324 | if (state->log_for_dirtybit == physmap) { | |
325 | state->log_for_dirtybit = NULL; | |
326 | } | |
327 | free(physmap); | |
328 | ||
329 | return 0; | |
330 | } | |
331 | ||
332 | #else | |
333 | static int xen_add_to_physmap(XenIOState *state, | |
334 | target_phys_addr_t start_addr, | |
335 | ram_addr_t size, | |
336 | target_phys_addr_t phys_offset) | |
337 | { | |
338 | return -ENOSYS; | |
339 | } | |
340 | ||
341 | static int xen_remove_from_physmap(XenIOState *state, | |
342 | target_phys_addr_t start_addr, | |
343 | ram_addr_t size) | |
344 | { | |
345 | return -ENOSYS; | |
346 | } | |
347 | #endif | |
348 | ||
349 | static void xen_client_set_memory(struct CPUPhysMemoryClient *client, | |
350 | target_phys_addr_t start_addr, | |
351 | ram_addr_t size, | |
352 | ram_addr_t phys_offset, | |
353 | bool log_dirty) | |
354 | { | |
355 | XenIOState *state = container_of(client, XenIOState, client); | |
356 | ram_addr_t flags = phys_offset & ~TARGET_PAGE_MASK; | |
357 | hvmmem_type_t mem_type; | |
358 | ||
359 | if (!(start_addr != phys_offset | |
360 | && ( (log_dirty && flags < IO_MEM_UNASSIGNED) | |
361 | || (!log_dirty && flags == IO_MEM_UNASSIGNED)))) { | |
362 | return; | |
363 | } | |
364 | ||
365 | trace_xen_client_set_memory(start_addr, size, phys_offset, log_dirty); | |
366 | ||
367 | start_addr &= TARGET_PAGE_MASK; | |
368 | size = TARGET_PAGE_ALIGN(size); | |
369 | phys_offset &= TARGET_PAGE_MASK; | |
370 | ||
371 | switch (flags) { | |
372 | case IO_MEM_RAM: | |
373 | xen_add_to_physmap(state, start_addr, size, phys_offset); | |
374 | break; | |
375 | case IO_MEM_ROM: | |
376 | mem_type = HVMMEM_ram_ro; | |
377 | if (xc_hvm_set_mem_type(xen_xc, xen_domid, mem_type, | |
378 | start_addr >> TARGET_PAGE_BITS, | |
379 | size >> TARGET_PAGE_BITS)) { | |
380 | DPRINTF("xc_hvm_set_mem_type error, addr: "TARGET_FMT_plx"\n", | |
381 | start_addr); | |
382 | } | |
383 | break; | |
384 | case IO_MEM_UNASSIGNED: | |
385 | if (xen_remove_from_physmap(state, start_addr, size) < 0) { | |
386 | DPRINTF("physmapping does not exist at "TARGET_FMT_plx"\n", start_addr); | |
387 | } | |
388 | break; | |
389 | } | |
390 | } | |
391 | ||
392 | static int xen_sync_dirty_bitmap(XenIOState *state, | |
393 | target_phys_addr_t start_addr, | |
394 | ram_addr_t size) | |
395 | { | |
396 | target_phys_addr_t npages = size >> TARGET_PAGE_BITS; | |
397 | target_phys_addr_t vram_offset = 0; | |
398 | const int width = sizeof(unsigned long) * 8; | |
399 | unsigned long bitmap[(npages + width - 1) / width]; | |
400 | int rc, i, j; | |
401 | const XenPhysmap *physmap = NULL; | |
402 | ||
403 | physmap = get_physmapping(state, start_addr, size); | |
404 | if (physmap == NULL) { | |
405 | /* not handled */ | |
406 | return -1; | |
407 | } | |
408 | ||
409 | if (state->log_for_dirtybit == NULL) { | |
410 | state->log_for_dirtybit = physmap; | |
411 | } else if (state->log_for_dirtybit != physmap) { | |
412 | return -1; | |
413 | } | |
414 | vram_offset = physmap->phys_offset; | |
415 | ||
416 | rc = xc_hvm_track_dirty_vram(xen_xc, xen_domid, | |
417 | start_addr >> TARGET_PAGE_BITS, npages, | |
418 | bitmap); | |
419 | if (rc) { | |
420 | return rc; | |
421 | } | |
422 | ||
423 | for (i = 0; i < ARRAY_SIZE(bitmap); i++) { | |
424 | unsigned long map = bitmap[i]; | |
425 | while (map != 0) { | |
426 | j = ffsl(map) - 1; | |
427 | map &= ~(1ul << j); | |
428 | cpu_physical_memory_set_dirty(vram_offset + (i * width + j) * TARGET_PAGE_SIZE); | |
429 | }; | |
430 | } | |
431 | ||
432 | return 0; | |
433 | } | |
434 | ||
435 | static int xen_log_start(CPUPhysMemoryClient *client, target_phys_addr_t phys_addr, ram_addr_t size) | |
436 | { | |
437 | XenIOState *state = container_of(client, XenIOState, client); | |
438 | ||
439 | return xen_sync_dirty_bitmap(state, phys_addr, size); | |
440 | } | |
441 | ||
442 | static int xen_log_stop(CPUPhysMemoryClient *client, target_phys_addr_t phys_addr, ram_addr_t size) | |
443 | { | |
444 | XenIOState *state = container_of(client, XenIOState, client); | |
445 | ||
446 | state->log_for_dirtybit = NULL; | |
447 | /* Disable dirty bit tracking */ | |
448 | return xc_hvm_track_dirty_vram(xen_xc, xen_domid, 0, 0, NULL); | |
449 | } | |
450 | ||
451 | static int xen_client_sync_dirty_bitmap(struct CPUPhysMemoryClient *client, | |
452 | target_phys_addr_t start_addr, | |
453 | target_phys_addr_t end_addr) | |
454 | { | |
455 | XenIOState *state = container_of(client, XenIOState, client); | |
456 | ||
457 | return xen_sync_dirty_bitmap(state, start_addr, end_addr - start_addr); | |
458 | } | |
459 | ||
460 | static int xen_client_migration_log(struct CPUPhysMemoryClient *client, | |
461 | int enable) | |
462 | { | |
463 | return 0; | |
464 | } | |
465 | ||
466 | static CPUPhysMemoryClient xen_cpu_phys_memory_client = { | |
467 | .set_memory = xen_client_set_memory, | |
468 | .sync_dirty_bitmap = xen_client_sync_dirty_bitmap, | |
469 | .migration_log = xen_client_migration_log, | |
470 | .log_start = xen_log_start, | |
471 | .log_stop = xen_log_stop, | |
472 | }; | |
432d268c | 473 | |
29d3ccde AP |
474 | /* VCPU Operations, MMIO, IO ring ... */ |
475 | ||
476 | static void xen_reset_vcpu(void *opaque) | |
477 | { | |
478 | CPUState *env = opaque; | |
479 | ||
480 | env->halted = 1; | |
481 | } | |
482 | ||
483 | void xen_vcpu_init(void) | |
484 | { | |
485 | CPUState *first_cpu; | |
486 | ||
487 | if ((first_cpu = qemu_get_cpu(0))) { | |
488 | qemu_register_reset(xen_reset_vcpu, first_cpu); | |
489 | xen_reset_vcpu(first_cpu); | |
490 | } | |
491 | } | |
492 | ||
9ce94e7c AS |
493 | /* get the ioreq packets from share mem */ |
494 | static ioreq_t *cpu_get_ioreq_from_shared_memory(XenIOState *state, int vcpu) | |
495 | { | |
496 | ioreq_t *req = xen_vcpu_ioreq(state->shared_page, vcpu); | |
497 | ||
498 | if (req->state != STATE_IOREQ_READY) { | |
499 | DPRINTF("I/O request not ready: " | |
500 | "%x, ptr: %x, port: %"PRIx64", " | |
501 | "data: %"PRIx64", count: %" FMT_ioreq_size ", size: %" FMT_ioreq_size "\n", | |
502 | req->state, req->data_is_ptr, req->addr, | |
503 | req->data, req->count, req->size); | |
504 | return NULL; | |
505 | } | |
506 | ||
507 | xen_rmb(); /* see IOREQ_READY /then/ read contents of ioreq */ | |
508 | ||
509 | req->state = STATE_IOREQ_INPROCESS; | |
510 | return req; | |
511 | } | |
512 | ||
513 | /* use poll to get the port notification */ | |
514 | /* ioreq_vec--out,the */ | |
515 | /* retval--the number of ioreq packet */ | |
516 | static ioreq_t *cpu_get_ioreq(XenIOState *state) | |
517 | { | |
518 | int i; | |
519 | evtchn_port_t port; | |
520 | ||
521 | port = xc_evtchn_pending(state->xce_handle); | |
522 | if (port != -1) { | |
523 | for (i = 0; i < smp_cpus; i++) { | |
524 | if (state->ioreq_local_port[i] == port) { | |
525 | break; | |
526 | } | |
527 | } | |
528 | ||
529 | if (i == smp_cpus) { | |
530 | hw_error("Fatal error while trying to get io event!\n"); | |
531 | } | |
532 | ||
533 | /* unmask the wanted port again */ | |
534 | xc_evtchn_unmask(state->xce_handle, port); | |
535 | ||
536 | /* get the io packet from shared memory */ | |
537 | state->send_vcpu = i; | |
538 | return cpu_get_ioreq_from_shared_memory(state, i); | |
539 | } | |
540 | ||
541 | /* read error or read nothing */ | |
542 | return NULL; | |
543 | } | |
544 | ||
545 | static uint32_t do_inp(pio_addr_t addr, unsigned long size) | |
546 | { | |
547 | switch (size) { | |
548 | case 1: | |
549 | return cpu_inb(addr); | |
550 | case 2: | |
551 | return cpu_inw(addr); | |
552 | case 4: | |
553 | return cpu_inl(addr); | |
554 | default: | |
555 | hw_error("inp: bad size: %04"FMT_pioaddr" %lx", addr, size); | |
556 | } | |
557 | } | |
558 | ||
559 | static void do_outp(pio_addr_t addr, | |
560 | unsigned long size, uint32_t val) | |
561 | { | |
562 | switch (size) { | |
563 | case 1: | |
564 | return cpu_outb(addr, val); | |
565 | case 2: | |
566 | return cpu_outw(addr, val); | |
567 | case 4: | |
568 | return cpu_outl(addr, val); | |
569 | default: | |
570 | hw_error("outp: bad size: %04"FMT_pioaddr" %lx", addr, size); | |
571 | } | |
572 | } | |
573 | ||
574 | static void cpu_ioreq_pio(ioreq_t *req) | |
575 | { | |
576 | int i, sign; | |
577 | ||
578 | sign = req->df ? -1 : 1; | |
579 | ||
580 | if (req->dir == IOREQ_READ) { | |
581 | if (!req->data_is_ptr) { | |
582 | req->data = do_inp(req->addr, req->size); | |
583 | } else { | |
584 | uint32_t tmp; | |
585 | ||
586 | for (i = 0; i < req->count; i++) { | |
587 | tmp = do_inp(req->addr, req->size); | |
588 | cpu_physical_memory_write(req->data + (sign * i * req->size), | |
589 | (uint8_t *) &tmp, req->size); | |
590 | } | |
591 | } | |
592 | } else if (req->dir == IOREQ_WRITE) { | |
593 | if (!req->data_is_ptr) { | |
594 | do_outp(req->addr, req->size, req->data); | |
595 | } else { | |
596 | for (i = 0; i < req->count; i++) { | |
597 | uint32_t tmp = 0; | |
598 | ||
599 | cpu_physical_memory_read(req->data + (sign * i * req->size), | |
600 | (uint8_t*) &tmp, req->size); | |
601 | do_outp(req->addr, req->size, tmp); | |
602 | } | |
603 | } | |
604 | } | |
605 | } | |
606 | ||
607 | static void cpu_ioreq_move(ioreq_t *req) | |
608 | { | |
609 | int i, sign; | |
610 | ||
611 | sign = req->df ? -1 : 1; | |
612 | ||
613 | if (!req->data_is_ptr) { | |
614 | if (req->dir == IOREQ_READ) { | |
615 | for (i = 0; i < req->count; i++) { | |
616 | cpu_physical_memory_read(req->addr + (sign * i * req->size), | |
617 | (uint8_t *) &req->data, req->size); | |
618 | } | |
619 | } else if (req->dir == IOREQ_WRITE) { | |
620 | for (i = 0; i < req->count; i++) { | |
621 | cpu_physical_memory_write(req->addr + (sign * i * req->size), | |
622 | (uint8_t *) &req->data, req->size); | |
623 | } | |
624 | } | |
625 | } else { | |
2b734340 | 626 | uint64_t tmp; |
9ce94e7c AS |
627 | |
628 | if (req->dir == IOREQ_READ) { | |
629 | for (i = 0; i < req->count; i++) { | |
630 | cpu_physical_memory_read(req->addr + (sign * i * req->size), | |
631 | (uint8_t*) &tmp, req->size); | |
632 | cpu_physical_memory_write(req->data + (sign * i * req->size), | |
633 | (uint8_t*) &tmp, req->size); | |
634 | } | |
635 | } else if (req->dir == IOREQ_WRITE) { | |
636 | for (i = 0; i < req->count; i++) { | |
637 | cpu_physical_memory_read(req->data + (sign * i * req->size), | |
638 | (uint8_t*) &tmp, req->size); | |
639 | cpu_physical_memory_write(req->addr + (sign * i * req->size), | |
640 | (uint8_t*) &tmp, req->size); | |
641 | } | |
642 | } | |
643 | } | |
644 | } | |
645 | ||
646 | static void handle_ioreq(ioreq_t *req) | |
647 | { | |
648 | if (!req->data_is_ptr && (req->dir == IOREQ_WRITE) && | |
649 | (req->size < sizeof (target_ulong))) { | |
650 | req->data &= ((target_ulong) 1 << (8 * req->size)) - 1; | |
651 | } | |
652 | ||
653 | switch (req->type) { | |
654 | case IOREQ_TYPE_PIO: | |
655 | cpu_ioreq_pio(req); | |
656 | break; | |
657 | case IOREQ_TYPE_COPY: | |
658 | cpu_ioreq_move(req); | |
659 | break; | |
660 | case IOREQ_TYPE_TIMEOFFSET: | |
661 | break; | |
662 | case IOREQ_TYPE_INVALIDATE: | |
e41d7c69 | 663 | xen_invalidate_map_cache(); |
9ce94e7c AS |
664 | break; |
665 | default: | |
666 | hw_error("Invalid ioreq type 0x%x\n", req->type); | |
667 | } | |
668 | } | |
669 | ||
670 | static void handle_buffered_iopage(XenIOState *state) | |
671 | { | |
672 | buf_ioreq_t *buf_req = NULL; | |
673 | ioreq_t req; | |
674 | int qw; | |
675 | ||
676 | if (!state->buffered_io_page) { | |
677 | return; | |
678 | } | |
679 | ||
680 | while (state->buffered_io_page->read_pointer != state->buffered_io_page->write_pointer) { | |
681 | buf_req = &state->buffered_io_page->buf_ioreq[ | |
682 | state->buffered_io_page->read_pointer % IOREQ_BUFFER_SLOT_NUM]; | |
683 | req.size = 1UL << buf_req->size; | |
684 | req.count = 1; | |
685 | req.addr = buf_req->addr; | |
686 | req.data = buf_req->data; | |
687 | req.state = STATE_IOREQ_READY; | |
688 | req.dir = buf_req->dir; | |
689 | req.df = 1; | |
690 | req.type = buf_req->type; | |
691 | req.data_is_ptr = 0; | |
692 | qw = (req.size == 8); | |
693 | if (qw) { | |
694 | buf_req = &state->buffered_io_page->buf_ioreq[ | |
695 | (state->buffered_io_page->read_pointer + 1) % IOREQ_BUFFER_SLOT_NUM]; | |
696 | req.data |= ((uint64_t)buf_req->data) << 32; | |
697 | } | |
698 | ||
699 | handle_ioreq(&req); | |
700 | ||
701 | xen_mb(); | |
702 | state->buffered_io_page->read_pointer += qw ? 2 : 1; | |
703 | } | |
704 | } | |
705 | ||
706 | static void handle_buffered_io(void *opaque) | |
707 | { | |
708 | XenIOState *state = opaque; | |
709 | ||
710 | handle_buffered_iopage(state); | |
711 | qemu_mod_timer(state->buffered_io_timer, | |
712 | BUFFER_IO_MAX_DELAY + qemu_get_clock_ms(rt_clock)); | |
713 | } | |
714 | ||
715 | static void cpu_handle_ioreq(void *opaque) | |
716 | { | |
717 | XenIOState *state = opaque; | |
718 | ioreq_t *req = cpu_get_ioreq(state); | |
719 | ||
720 | handle_buffered_iopage(state); | |
721 | if (req) { | |
722 | handle_ioreq(req); | |
723 | ||
724 | if (req->state != STATE_IOREQ_INPROCESS) { | |
725 | fprintf(stderr, "Badness in I/O request ... not in service?!: " | |
726 | "%x, ptr: %x, port: %"PRIx64", " | |
727 | "data: %"PRIx64", count: %" FMT_ioreq_size ", size: %" FMT_ioreq_size "\n", | |
728 | req->state, req->data_is_ptr, req->addr, | |
729 | req->data, req->count, req->size); | |
730 | destroy_hvm_domain(); | |
731 | return; | |
732 | } | |
733 | ||
734 | xen_wmb(); /* Update ioreq contents /then/ update state. */ | |
735 | ||
736 | /* | |
737 | * We do this before we send the response so that the tools | |
738 | * have the opportunity to pick up on the reset before the | |
739 | * guest resumes and does a hlt with interrupts disabled which | |
740 | * causes Xen to powerdown the domain. | |
741 | */ | |
1354869c | 742 | if (runstate_is_running()) { |
9ce94e7c AS |
743 | if (qemu_shutdown_requested_get()) { |
744 | destroy_hvm_domain(); | |
745 | } | |
746 | if (qemu_reset_requested_get()) { | |
e063eb1f | 747 | qemu_system_reset(VMRESET_REPORT); |
9ce94e7c AS |
748 | } |
749 | } | |
750 | ||
751 | req->state = STATE_IORESP_READY; | |
752 | xc_evtchn_notify(state->xce_handle, state->ioreq_local_port[state->send_vcpu]); | |
753 | } | |
754 | } | |
755 | ||
0f51726a SS |
756 | static int store_dev_info(int domid, CharDriverState *cs, const char *string) |
757 | { | |
758 | struct xs_handle *xs = NULL; | |
759 | char *path = NULL; | |
760 | char *newpath = NULL; | |
761 | char *pts = NULL; | |
762 | int ret = -1; | |
763 | ||
764 | /* Only continue if we're talking to a pty. */ | |
765 | if (strncmp(cs->filename, "pty:", 4)) { | |
766 | return 0; | |
767 | } | |
768 | pts = cs->filename + 4; | |
769 | ||
770 | /* We now have everything we need to set the xenstore entry. */ | |
771 | xs = xs_open(0); | |
772 | if (xs == NULL) { | |
773 | fprintf(stderr, "Could not contact XenStore\n"); | |
774 | goto out; | |
775 | } | |
776 | ||
777 | path = xs_get_domain_path(xs, domid); | |
778 | if (path == NULL) { | |
779 | fprintf(stderr, "xs_get_domain_path() error\n"); | |
780 | goto out; | |
781 | } | |
782 | newpath = realloc(path, (strlen(path) + strlen(string) + | |
783 | strlen("/tty") + 1)); | |
784 | if (newpath == NULL) { | |
785 | fprintf(stderr, "realloc error\n"); | |
786 | goto out; | |
787 | } | |
788 | path = newpath; | |
789 | ||
790 | strcat(path, string); | |
791 | strcat(path, "/tty"); | |
792 | if (!xs_write(xs, XBT_NULL, path, pts, strlen(pts))) { | |
793 | fprintf(stderr, "xs_write for '%s' fail", string); | |
794 | goto out; | |
795 | } | |
796 | ret = 0; | |
797 | ||
798 | out: | |
799 | free(path); | |
800 | xs_close(xs); | |
801 | ||
802 | return ret; | |
803 | } | |
804 | ||
805 | void xenstore_store_pv_console_info(int i, CharDriverState *chr) | |
806 | { | |
807 | if (i == 0) { | |
808 | store_dev_info(xen_domid, chr, "/console"); | |
809 | } else { | |
810 | char buf[32]; | |
811 | snprintf(buf, sizeof(buf), "/device/console/%d", i); | |
812 | store_dev_info(xen_domid, chr, buf); | |
813 | } | |
814 | } | |
815 | ||
fb4bb2b5 | 816 | static void xenstore_record_dm_state(struct xs_handle *xs, const char *state) |
29321335 AP |
817 | { |
818 | char path[50]; | |
819 | ||
fb4bb2b5 AP |
820 | if (xs == NULL) { |
821 | fprintf(stderr, "xenstore connection not initialized\n"); | |
822 | exit(1); | |
823 | } | |
824 | ||
29321335 | 825 | snprintf(path, sizeof (path), "/local/domain/0/device-model/%u/state", xen_domid); |
fb4bb2b5 | 826 | if (!xs_write(xs, XBT_NULL, path, state, strlen(state))) { |
29321335 AP |
827 | fprintf(stderr, "error recording dm state\n"); |
828 | exit(1); | |
829 | } | |
830 | } | |
831 | ||
9ce94e7c AS |
832 | static void xen_main_loop_prepare(XenIOState *state) |
833 | { | |
834 | int evtchn_fd = -1; | |
835 | ||
836 | if (state->xce_handle != XC_HANDLER_INITIAL_VALUE) { | |
837 | evtchn_fd = xc_evtchn_fd(state->xce_handle); | |
838 | } | |
839 | ||
840 | state->buffered_io_timer = qemu_new_timer_ms(rt_clock, handle_buffered_io, | |
841 | state); | |
842 | qemu_mod_timer(state->buffered_io_timer, qemu_get_clock_ms(rt_clock)); | |
843 | ||
844 | if (evtchn_fd != -1) { | |
845 | qemu_set_fd_handler(evtchn_fd, cpu_handle_ioreq, NULL, state); | |
846 | } | |
847 | } | |
848 | ||
849 | ||
3285cf4f AP |
850 | /* Initialise Xen */ |
851 | ||
1dfb4dd9 LC |
852 | static void xen_change_state_handler(void *opaque, int running, |
853 | RunState state) | |
fb4bb2b5 AP |
854 | { |
855 | if (running) { | |
856 | /* record state running */ | |
857 | xenstore_record_dm_state(xenstore, "running"); | |
858 | } | |
859 | } | |
860 | ||
1dfb4dd9 LC |
861 | static void xen_hvm_change_state_handler(void *opaque, int running, |
862 | RunState rstate) | |
9ce94e7c | 863 | { |
1dfb4dd9 | 864 | XenIOState *xstate = opaque; |
9ce94e7c | 865 | if (running) { |
1dfb4dd9 | 866 | xen_main_loop_prepare(xstate); |
9ce94e7c AS |
867 | } |
868 | } | |
869 | ||
9e8dd451 | 870 | static void xen_exit_notifier(Notifier *n, void *data) |
9ce94e7c AS |
871 | { |
872 | XenIOState *state = container_of(n, XenIOState, exit); | |
873 | ||
874 | xc_evtchn_close(state->xce_handle); | |
29321335 | 875 | xs_daemon_close(state->xenstore); |
9ce94e7c AS |
876 | } |
877 | ||
3285cf4f AP |
878 | int xen_init(void) |
879 | { | |
880 | xen_xc = xen_xc_interface_open(0, 0, 0); | |
881 | if (xen_xc == XC_HANDLER_INITIAL_VALUE) { | |
882 | xen_be_printf(NULL, 0, "can't open xen interface\n"); | |
883 | return -1; | |
884 | } | |
fb4bb2b5 | 885 | qemu_add_vm_change_state_handler(xen_change_state_handler, NULL); |
3285cf4f AP |
886 | |
887 | return 0; | |
888 | } | |
29d3ccde AP |
889 | |
890 | int xen_hvm_init(void) | |
891 | { | |
9ce94e7c AS |
892 | int i, rc; |
893 | unsigned long ioreq_pfn; | |
894 | XenIOState *state; | |
895 | ||
7267c094 | 896 | state = g_malloc0(sizeof (XenIOState)); |
9ce94e7c AS |
897 | |
898 | state->xce_handle = xen_xc_evtchn_open(NULL, 0); | |
899 | if (state->xce_handle == XC_HANDLER_INITIAL_VALUE) { | |
900 | perror("xen: event channel open"); | |
901 | return -errno; | |
902 | } | |
903 | ||
29321335 AP |
904 | state->xenstore = xs_daemon_open(); |
905 | if (state->xenstore == NULL) { | |
906 | perror("xen: xenstore open"); | |
907 | return -errno; | |
908 | } | |
909 | ||
9ce94e7c AS |
910 | state->exit.notify = xen_exit_notifier; |
911 | qemu_add_exit_notifier(&state->exit); | |
912 | ||
913 | xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_IOREQ_PFN, &ioreq_pfn); | |
914 | DPRINTF("shared page at pfn %lx\n", ioreq_pfn); | |
915 | state->shared_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE, | |
916 | PROT_READ|PROT_WRITE, ioreq_pfn); | |
917 | if (state->shared_page == NULL) { | |
918 | hw_error("map shared IO page returned error %d handle=" XC_INTERFACE_FMT, | |
919 | errno, xen_xc); | |
920 | } | |
921 | ||
922 | xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_BUFIOREQ_PFN, &ioreq_pfn); | |
923 | DPRINTF("buffered io page at pfn %lx\n", ioreq_pfn); | |
924 | state->buffered_io_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE, | |
925 | PROT_READ|PROT_WRITE, ioreq_pfn); | |
926 | if (state->buffered_io_page == NULL) { | |
927 | hw_error("map buffered IO page returned error %d", errno); | |
928 | } | |
929 | ||
7267c094 | 930 | state->ioreq_local_port = g_malloc0(smp_cpus * sizeof (evtchn_port_t)); |
9ce94e7c AS |
931 | |
932 | /* FIXME: how about if we overflow the page here? */ | |
933 | for (i = 0; i < smp_cpus; i++) { | |
934 | rc = xc_evtchn_bind_interdomain(state->xce_handle, xen_domid, | |
935 | xen_vcpu_eport(state->shared_page, i)); | |
936 | if (rc == -1) { | |
937 | fprintf(stderr, "bind interdomain ioctl error %d\n", errno); | |
938 | return -1; | |
939 | } | |
940 | state->ioreq_local_port[i] = rc; | |
941 | } | |
942 | ||
432d268c | 943 | /* Init RAM management */ |
e41d7c69 | 944 | xen_map_cache_init(); |
432d268c JN |
945 | xen_ram_init(ram_size); |
946 | ||
fb4bb2b5 | 947 | qemu_add_vm_change_state_handler(xen_hvm_change_state_handler, state); |
9ce94e7c | 948 | |
b4dd7802 AP |
949 | state->client = xen_cpu_phys_memory_client; |
950 | QLIST_INIT(&state->physmap); | |
951 | cpu_register_phys_memory_client(&state->client); | |
952 | state->log_for_dirtybit = NULL; | |
953 | ||
ad35a7da SS |
954 | /* Initialize backend core & drivers */ |
955 | if (xen_be_init() != 0) { | |
956 | fprintf(stderr, "%s: xen backend core setup failed\n", __FUNCTION__); | |
957 | exit(1); | |
958 | } | |
959 | xen_be_register("console", &xen_console_ops); | |
37cdfcf1 | 960 | xen_be_register("vkbd", &xen_kbdmouse_ops); |
ad35a7da SS |
961 | xen_be_register("qdisk", &xen_blkdev_ops); |
962 | ||
29d3ccde AP |
963 | return 0; |
964 | } | |
9ce94e7c AS |
965 | |
966 | void destroy_hvm_domain(void) | |
967 | { | |
968 | XenXC xc_handle; | |
969 | int sts; | |
970 | ||
971 | xc_handle = xen_xc_interface_open(0, 0, 0); | |
972 | if (xc_handle == XC_HANDLER_INITIAL_VALUE) { | |
973 | fprintf(stderr, "Cannot acquire xenctrl handle\n"); | |
974 | } else { | |
975 | sts = xc_domain_shutdown(xc_handle, xen_domid, SHUTDOWN_poweroff); | |
976 | if (sts != 0) { | |
977 | fprintf(stderr, "? xc_domain_shutdown failed to issue poweroff, " | |
978 | "sts %d, %s\n", sts, strerror(errno)); | |
979 | } else { | |
980 | fprintf(stderr, "Issued domain %d poweroff\n", xen_domid); | |
981 | } | |
982 | xc_interface_close(xc_handle); | |
983 | } | |
984 | } |