1 /* 2 * Virtio PCI Bindings 3 * 4 * Copyright IBM, Corp. 2007 5 * Copyright (c) 2009 CodeSourcery 6 * 7 * Authors: 8 * Anthony Liguori <aliguori@us.ibm.com> 9 * Paul Brook <paul@codesourcery.com> 10 * 11 * This work is licensed under the terms of the GNU GPL, version 2. See 12 * the COPYING file in the top-level directory. 13 * 14 * Contributions after 2012-01-13 are licensed under the terms of the 15 * GNU GPL, version 2 or (at your option) any later version. 16 */ 17 18 #include "qemu/osdep.h" 19 20 #include "standard-headers/linux/virtio_pci.h" 21 #include "hw/virtio/virtio.h" 22 #include "hw/virtio/virtio-blk.h" 23 #include "hw/virtio/virtio-net.h" 24 #include "hw/virtio/virtio-serial.h" 25 #include "hw/virtio/virtio-scsi.h" 26 #include "hw/virtio/virtio-balloon.h" 27 #include "hw/virtio/virtio-input.h" 28 #include "hw/pci/pci.h" 29 #include "qapi/error.h" 30 #include "qemu/error-report.h" 31 #include "hw/pci/msi.h" 32 #include "hw/pci/msix.h" 33 #include "hw/loader.h" 34 #include "sysemu/kvm.h" 35 #include "sysemu/block-backend.h" 36 #include "virtio-pci.h" 37 #include "qemu/range.h" 38 #include "hw/virtio/virtio-bus.h" 39 #include "qapi/visitor.h" 40 41 #define VIRTIO_PCI_REGION_SIZE(dev) VIRTIO_PCI_CONFIG_OFF(msix_present(dev)) 42 43 #undef VIRTIO_PCI_CONFIG 44 45 /* The remaining space is defined by each driver as the per-driver 46 * configuration space */ 47 #define VIRTIO_PCI_CONFIG_SIZE(dev) VIRTIO_PCI_CONFIG_OFF(msix_enabled(dev)) 48 49 static void virtio_pci_bus_new(VirtioBusState *bus, size_t bus_size, 50 VirtIOPCIProxy *dev); 51 static void virtio_pci_reset(DeviceState *qdev); 52 53 /* virtio device */ 54 /* DeviceState to VirtIOPCIProxy. For use off data-path. TODO: use QOM. */ 55 static inline VirtIOPCIProxy *to_virtio_pci_proxy(DeviceState *d) 56 { 57 return container_of(d, VirtIOPCIProxy, pci_dev.qdev); 58 } 59 60 /* DeviceState to VirtIOPCIProxy. Note: used on datapath, 61 * be careful and test performance if you change this. 62 */ 63 static inline VirtIOPCIProxy *to_virtio_pci_proxy_fast(DeviceState *d) 64 { 65 return container_of(d, VirtIOPCIProxy, pci_dev.qdev); 66 } 67 68 static void virtio_pci_notify(DeviceState *d, uint16_t vector) 69 { 70 VirtIOPCIProxy *proxy = to_virtio_pci_proxy_fast(d); 71 72 if (msix_enabled(&proxy->pci_dev)) 73 msix_notify(&proxy->pci_dev, vector); 74 else { 75 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 76 pci_set_irq(&proxy->pci_dev, vdev->isr & 1); 77 } 78 } 79 80 static void virtio_pci_save_config(DeviceState *d, QEMUFile *f) 81 { 82 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 83 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 84 85 pci_device_save(&proxy->pci_dev, f); 86 msix_save(&proxy->pci_dev, f); 87 if (msix_present(&proxy->pci_dev)) 88 qemu_put_be16(f, vdev->config_vector); 89 } 90 91 static void virtio_pci_load_modern_queue_state(VirtIOPCIQueue *vq, 92 QEMUFile *f) 93 { 94 vq->num = qemu_get_be16(f); 95 vq->enabled = qemu_get_be16(f); 96 vq->desc[0] = qemu_get_be32(f); 97 vq->desc[1] = qemu_get_be32(f); 98 vq->avail[0] = qemu_get_be32(f); 99 vq->avail[1] = qemu_get_be32(f); 100 vq->used[0] = qemu_get_be32(f); 101 vq->used[1] = qemu_get_be32(f); 102 } 103 104 static bool virtio_pci_has_extra_state(DeviceState *d) 105 { 106 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 107 108 return proxy->flags & VIRTIO_PCI_FLAG_MIGRATE_EXTRA; 109 } 110 111 static int get_virtio_pci_modern_state(QEMUFile *f, void *pv, size_t size) 112 { 113 VirtIOPCIProxy *proxy = pv; 114 int i; 115 116 proxy->dfselect = qemu_get_be32(f); 117 proxy->gfselect = qemu_get_be32(f); 118 proxy->guest_features[0] = qemu_get_be32(f); 119 proxy->guest_features[1] = qemu_get_be32(f); 120 for (i = 0; i < VIRTIO_QUEUE_MAX; i++) { 121 virtio_pci_load_modern_queue_state(&proxy->vqs[i], f); 122 } 123 124 return 0; 125 } 126 127 static void virtio_pci_save_modern_queue_state(VirtIOPCIQueue *vq, 128 QEMUFile *f) 129 { 130 qemu_put_be16(f, vq->num); 131 qemu_put_be16(f, vq->enabled); 132 qemu_put_be32(f, vq->desc[0]); 133 qemu_put_be32(f, vq->desc[1]); 134 qemu_put_be32(f, vq->avail[0]); 135 qemu_put_be32(f, vq->avail[1]); 136 qemu_put_be32(f, vq->used[0]); 137 qemu_put_be32(f, vq->used[1]); 138 } 139 140 static void put_virtio_pci_modern_state(QEMUFile *f, void *pv, size_t size) 141 { 142 VirtIOPCIProxy *proxy = pv; 143 int i; 144 145 qemu_put_be32(f, proxy->dfselect); 146 qemu_put_be32(f, proxy->gfselect); 147 qemu_put_be32(f, proxy->guest_features[0]); 148 qemu_put_be32(f, proxy->guest_features[1]); 149 for (i = 0; i < VIRTIO_QUEUE_MAX; i++) { 150 virtio_pci_save_modern_queue_state(&proxy->vqs[i], f); 151 } 152 } 153 154 static const VMStateInfo vmstate_info_virtio_pci_modern_state = { 155 .name = "virtqueue_state", 156 .get = get_virtio_pci_modern_state, 157 .put = put_virtio_pci_modern_state, 158 }; 159 160 static bool virtio_pci_modern_state_needed(void *opaque) 161 { 162 VirtIOPCIProxy *proxy = opaque; 163 164 return virtio_pci_modern(proxy); 165 } 166 167 static const VMStateDescription vmstate_virtio_pci_modern_state = { 168 .name = "virtio_pci/modern_state", 169 .version_id = 1, 170 .minimum_version_id = 1, 171 .needed = &virtio_pci_modern_state_needed, 172 .fields = (VMStateField[]) { 173 { 174 .name = "modern_state", 175 .version_id = 0, 176 .field_exists = NULL, 177 .size = 0, 178 .info = &vmstate_info_virtio_pci_modern_state, 179 .flags = VMS_SINGLE, 180 .offset = 0, 181 }, 182 VMSTATE_END_OF_LIST() 183 } 184 }; 185 186 static const VMStateDescription vmstate_virtio_pci = { 187 .name = "virtio_pci", 188 .version_id = 1, 189 .minimum_version_id = 1, 190 .minimum_version_id_old = 1, 191 .fields = (VMStateField[]) { 192 VMSTATE_END_OF_LIST() 193 }, 194 .subsections = (const VMStateDescription*[]) { 195 &vmstate_virtio_pci_modern_state, 196 NULL 197 } 198 }; 199 200 static void virtio_pci_save_extra_state(DeviceState *d, QEMUFile *f) 201 { 202 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 203 204 vmstate_save_state(f, &vmstate_virtio_pci, proxy, NULL); 205 } 206 207 static int virtio_pci_load_extra_state(DeviceState *d, QEMUFile *f) 208 { 209 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 210 211 return vmstate_load_state(f, &vmstate_virtio_pci, proxy, 1); 212 } 213 214 static void virtio_pci_save_queue(DeviceState *d, int n, QEMUFile *f) 215 { 216 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 217 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 218 219 if (msix_present(&proxy->pci_dev)) 220 qemu_put_be16(f, virtio_queue_vector(vdev, n)); 221 } 222 223 static int virtio_pci_load_config(DeviceState *d, QEMUFile *f) 224 { 225 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 226 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 227 228 int ret; 229 ret = pci_device_load(&proxy->pci_dev, f); 230 if (ret) { 231 return ret; 232 } 233 msix_unuse_all_vectors(&proxy->pci_dev); 234 msix_load(&proxy->pci_dev, f); 235 if (msix_present(&proxy->pci_dev)) { 236 qemu_get_be16s(f, &vdev->config_vector); 237 } else { 238 vdev->config_vector = VIRTIO_NO_VECTOR; 239 } 240 if (vdev->config_vector != VIRTIO_NO_VECTOR) { 241 return msix_vector_use(&proxy->pci_dev, vdev->config_vector); 242 } 243 return 0; 244 } 245 246 static int virtio_pci_load_queue(DeviceState *d, int n, QEMUFile *f) 247 { 248 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 249 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 250 251 uint16_t vector; 252 if (msix_present(&proxy->pci_dev)) { 253 qemu_get_be16s(f, &vector); 254 } else { 255 vector = VIRTIO_NO_VECTOR; 256 } 257 virtio_queue_set_vector(vdev, n, vector); 258 if (vector != VIRTIO_NO_VECTOR) { 259 return msix_vector_use(&proxy->pci_dev, vector); 260 } 261 262 return 0; 263 } 264 265 static bool virtio_pci_ioeventfd_started(DeviceState *d) 266 { 267 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 268 269 return proxy->ioeventfd_started; 270 } 271 272 static void virtio_pci_ioeventfd_set_started(DeviceState *d, bool started, 273 bool err) 274 { 275 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 276 277 proxy->ioeventfd_started = started; 278 } 279 280 static bool virtio_pci_ioeventfd_disabled(DeviceState *d) 281 { 282 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 283 284 return proxy->ioeventfd_disabled || 285 !(proxy->flags & VIRTIO_PCI_FLAG_USE_IOEVENTFD); 286 } 287 288 static void virtio_pci_ioeventfd_set_disabled(DeviceState *d, bool disabled) 289 { 290 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 291 292 proxy->ioeventfd_disabled = disabled; 293 } 294 295 #define QEMU_VIRTIO_PCI_QUEUE_MEM_MULT 0x1000 296 297 static inline int virtio_pci_queue_mem_mult(struct VirtIOPCIProxy *proxy) 298 { 299 return (proxy->flags & VIRTIO_PCI_FLAG_PAGE_PER_VQ) ? 300 QEMU_VIRTIO_PCI_QUEUE_MEM_MULT : 4; 301 } 302 303 static int virtio_pci_ioeventfd_assign(DeviceState *d, EventNotifier *notifier, 304 int n, bool assign) 305 { 306 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 307 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 308 VirtQueue *vq = virtio_get_queue(vdev, n); 309 bool legacy = virtio_pci_legacy(proxy); 310 bool modern = virtio_pci_modern(proxy); 311 bool fast_mmio = kvm_ioeventfd_any_length_enabled(); 312 bool modern_pio = proxy->flags & VIRTIO_PCI_FLAG_MODERN_PIO_NOTIFY; 313 MemoryRegion *modern_mr = &proxy->notify.mr; 314 MemoryRegion *modern_notify_mr = &proxy->notify_pio.mr; 315 MemoryRegion *legacy_mr = &proxy->bar; 316 hwaddr modern_addr = virtio_pci_queue_mem_mult(proxy) * 317 virtio_get_queue_index(vq); 318 hwaddr legacy_addr = VIRTIO_PCI_QUEUE_NOTIFY; 319 320 if (assign) { 321 if (modern) { 322 if (fast_mmio) { 323 memory_region_add_eventfd(modern_mr, modern_addr, 0, 324 false, n, notifier); 325 } else { 326 memory_region_add_eventfd(modern_mr, modern_addr, 2, 327 false, n, notifier); 328 } 329 if (modern_pio) { 330 memory_region_add_eventfd(modern_notify_mr, 0, 2, 331 true, n, notifier); 332 } 333 } 334 if (legacy) { 335 memory_region_add_eventfd(legacy_mr, legacy_addr, 2, 336 true, n, notifier); 337 } 338 } else { 339 if (modern) { 340 if (fast_mmio) { 341 memory_region_del_eventfd(modern_mr, modern_addr, 0, 342 false, n, notifier); 343 } else { 344 memory_region_del_eventfd(modern_mr, modern_addr, 2, 345 false, n, notifier); 346 } 347 if (modern_pio) { 348 memory_region_del_eventfd(modern_notify_mr, 0, 2, 349 true, n, notifier); 350 } 351 } 352 if (legacy) { 353 memory_region_del_eventfd(legacy_mr, legacy_addr, 2, 354 true, n, notifier); 355 } 356 } 357 return 0; 358 } 359 360 static void virtio_pci_start_ioeventfd(VirtIOPCIProxy *proxy) 361 { 362 virtio_bus_start_ioeventfd(&proxy->bus); 363 } 364 365 static void virtio_pci_stop_ioeventfd(VirtIOPCIProxy *proxy) 366 { 367 virtio_bus_stop_ioeventfd(&proxy->bus); 368 } 369 370 static void virtio_ioport_write(void *opaque, uint32_t addr, uint32_t val) 371 { 372 VirtIOPCIProxy *proxy = opaque; 373 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 374 hwaddr pa; 375 376 switch (addr) { 377 case VIRTIO_PCI_GUEST_FEATURES: 378 /* Guest does not negotiate properly? We have to assume nothing. */ 379 if (val & (1 << VIRTIO_F_BAD_FEATURE)) { 380 val = virtio_bus_get_vdev_bad_features(&proxy->bus); 381 } 382 virtio_set_features(vdev, val); 383 break; 384 case VIRTIO_PCI_QUEUE_PFN: 385 pa = (hwaddr)val << VIRTIO_PCI_QUEUE_ADDR_SHIFT; 386 if (pa == 0) { 387 virtio_pci_reset(DEVICE(proxy)); 388 } 389 else 390 virtio_queue_set_addr(vdev, vdev->queue_sel, pa); 391 break; 392 case VIRTIO_PCI_QUEUE_SEL: 393 if (val < VIRTIO_QUEUE_MAX) 394 vdev->queue_sel = val; 395 break; 396 case VIRTIO_PCI_QUEUE_NOTIFY: 397 if (val < VIRTIO_QUEUE_MAX) { 398 virtio_queue_notify(vdev, val); 399 } 400 break; 401 case VIRTIO_PCI_STATUS: 402 if (!(val & VIRTIO_CONFIG_S_DRIVER_OK)) { 403 virtio_pci_stop_ioeventfd(proxy); 404 } 405 406 virtio_set_status(vdev, val & 0xFF); 407 408 if (val & VIRTIO_CONFIG_S_DRIVER_OK) { 409 virtio_pci_start_ioeventfd(proxy); 410 } 411 412 if (vdev->status == 0) { 413 virtio_pci_reset(DEVICE(proxy)); 414 } 415 416 /* Linux before 2.6.34 drives the device without enabling 417 the PCI device bus master bit. Enable it automatically 418 for the guest. This is a PCI spec violation but so is 419 initiating DMA with bus master bit clear. */ 420 if (val == (VIRTIO_CONFIG_S_ACKNOWLEDGE | VIRTIO_CONFIG_S_DRIVER)) { 421 pci_default_write_config(&proxy->pci_dev, PCI_COMMAND, 422 proxy->pci_dev.config[PCI_COMMAND] | 423 PCI_COMMAND_MASTER, 1); 424 } 425 break; 426 case VIRTIO_MSI_CONFIG_VECTOR: 427 msix_vector_unuse(&proxy->pci_dev, vdev->config_vector); 428 /* Make it possible for guest to discover an error took place. */ 429 if (msix_vector_use(&proxy->pci_dev, val) < 0) 430 val = VIRTIO_NO_VECTOR; 431 vdev->config_vector = val; 432 break; 433 case VIRTIO_MSI_QUEUE_VECTOR: 434 msix_vector_unuse(&proxy->pci_dev, 435 virtio_queue_vector(vdev, vdev->queue_sel)); 436 /* Make it possible for guest to discover an error took place. */ 437 if (msix_vector_use(&proxy->pci_dev, val) < 0) 438 val = VIRTIO_NO_VECTOR; 439 virtio_queue_set_vector(vdev, vdev->queue_sel, val); 440 break; 441 default: 442 error_report("%s: unexpected address 0x%x value 0x%x", 443 __func__, addr, val); 444 break; 445 } 446 } 447 448 static uint32_t virtio_ioport_read(VirtIOPCIProxy *proxy, uint32_t addr) 449 { 450 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 451 uint32_t ret = 0xFFFFFFFF; 452 453 switch (addr) { 454 case VIRTIO_PCI_HOST_FEATURES: 455 ret = vdev->host_features; 456 break; 457 case VIRTIO_PCI_GUEST_FEATURES: 458 ret = vdev->guest_features; 459 break; 460 case VIRTIO_PCI_QUEUE_PFN: 461 ret = virtio_queue_get_addr(vdev, vdev->queue_sel) 462 >> VIRTIO_PCI_QUEUE_ADDR_SHIFT; 463 break; 464 case VIRTIO_PCI_QUEUE_NUM: 465 ret = virtio_queue_get_num(vdev, vdev->queue_sel); 466 break; 467 case VIRTIO_PCI_QUEUE_SEL: 468 ret = vdev->queue_sel; 469 break; 470 case VIRTIO_PCI_STATUS: 471 ret = vdev->status; 472 break; 473 case VIRTIO_PCI_ISR: 474 /* reading from the ISR also clears it. */ 475 ret = vdev->isr; 476 vdev->isr = 0; 477 pci_irq_deassert(&proxy->pci_dev); 478 break; 479 case VIRTIO_MSI_CONFIG_VECTOR: 480 ret = vdev->config_vector; 481 break; 482 case VIRTIO_MSI_QUEUE_VECTOR: 483 ret = virtio_queue_vector(vdev, vdev->queue_sel); 484 break; 485 default: 486 break; 487 } 488 489 return ret; 490 } 491 492 static uint64_t virtio_pci_config_read(void *opaque, hwaddr addr, 493 unsigned size) 494 { 495 VirtIOPCIProxy *proxy = opaque; 496 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 497 uint32_t config = VIRTIO_PCI_CONFIG_SIZE(&proxy->pci_dev); 498 uint64_t val = 0; 499 if (addr < config) { 500 return virtio_ioport_read(proxy, addr); 501 } 502 addr -= config; 503 504 switch (size) { 505 case 1: 506 val = virtio_config_readb(vdev, addr); 507 break; 508 case 2: 509 val = virtio_config_readw(vdev, addr); 510 if (virtio_is_big_endian(vdev)) { 511 val = bswap16(val); 512 } 513 break; 514 case 4: 515 val = virtio_config_readl(vdev, addr); 516 if (virtio_is_big_endian(vdev)) { 517 val = bswap32(val); 518 } 519 break; 520 } 521 return val; 522 } 523 524 static void virtio_pci_config_write(void *opaque, hwaddr addr, 525 uint64_t val, unsigned size) 526 { 527 VirtIOPCIProxy *proxy = opaque; 528 uint32_t config = VIRTIO_PCI_CONFIG_SIZE(&proxy->pci_dev); 529 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 530 if (addr < config) { 531 virtio_ioport_write(proxy, addr, val); 532 return; 533 } 534 addr -= config; 535 /* 536 * Virtio-PCI is odd. Ioports are LE but config space is target native 537 * endian. 538 */ 539 switch (size) { 540 case 1: 541 virtio_config_writeb(vdev, addr, val); 542 break; 543 case 2: 544 if (virtio_is_big_endian(vdev)) { 545 val = bswap16(val); 546 } 547 virtio_config_writew(vdev, addr, val); 548 break; 549 case 4: 550 if (virtio_is_big_endian(vdev)) { 551 val = bswap32(val); 552 } 553 virtio_config_writel(vdev, addr, val); 554 break; 555 } 556 } 557 558 static const MemoryRegionOps virtio_pci_config_ops = { 559 .read = virtio_pci_config_read, 560 .write = virtio_pci_config_write, 561 .impl = { 562 .min_access_size = 1, 563 .max_access_size = 4, 564 }, 565 .endianness = DEVICE_LITTLE_ENDIAN, 566 }; 567 568 /* Below are generic functions to do memcpy from/to an address space, 569 * without byteswaps, with input validation. 570 * 571 * As regular address_space_* APIs all do some kind of byteswap at least for 572 * some host/target combinations, we are forced to explicitly convert to a 573 * known-endianness integer value. 574 * It doesn't really matter which endian format to go through, so the code 575 * below selects the endian that causes the least amount of work on the given 576 * host. 577 * 578 * Note: host pointer must be aligned. 579 */ 580 static 581 void virtio_address_space_write(AddressSpace *as, hwaddr addr, 582 const uint8_t *buf, int len) 583 { 584 uint32_t val; 585 586 /* address_space_* APIs assume an aligned address. 587 * As address is under guest control, handle illegal values. 588 */ 589 addr &= ~(len - 1); 590 591 /* Make sure caller aligned buf properly */ 592 assert(!(((uintptr_t)buf) & (len - 1))); 593 594 switch (len) { 595 case 1: 596 val = pci_get_byte(buf); 597 address_space_stb(as, addr, val, MEMTXATTRS_UNSPECIFIED, NULL); 598 break; 599 case 2: 600 val = pci_get_word(buf); 601 address_space_stw_le(as, addr, val, MEMTXATTRS_UNSPECIFIED, NULL); 602 break; 603 case 4: 604 val = pci_get_long(buf); 605 address_space_stl_le(as, addr, val, MEMTXATTRS_UNSPECIFIED, NULL); 606 break; 607 default: 608 /* As length is under guest control, handle illegal values. */ 609 break; 610 } 611 } 612 613 static void 614 virtio_address_space_read(AddressSpace *as, hwaddr addr, uint8_t *buf, int len) 615 { 616 uint32_t val; 617 618 /* address_space_* APIs assume an aligned address. 619 * As address is under guest control, handle illegal values. 620 */ 621 addr &= ~(len - 1); 622 623 /* Make sure caller aligned buf properly */ 624 assert(!(((uintptr_t)buf) & (len - 1))); 625 626 switch (len) { 627 case 1: 628 val = address_space_ldub(as, addr, MEMTXATTRS_UNSPECIFIED, NULL); 629 pci_set_byte(buf, val); 630 break; 631 case 2: 632 val = address_space_lduw_le(as, addr, MEMTXATTRS_UNSPECIFIED, NULL); 633 pci_set_word(buf, val); 634 break; 635 case 4: 636 val = address_space_ldl_le(as, addr, MEMTXATTRS_UNSPECIFIED, NULL); 637 pci_set_long(buf, val); 638 break; 639 default: 640 /* As length is under guest control, handle illegal values. */ 641 break; 642 } 643 } 644 645 static void virtio_write_config(PCIDevice *pci_dev, uint32_t address, 646 uint32_t val, int len) 647 { 648 VirtIOPCIProxy *proxy = DO_UPCAST(VirtIOPCIProxy, pci_dev, pci_dev); 649 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 650 struct virtio_pci_cfg_cap *cfg; 651 652 pci_default_write_config(pci_dev, address, val, len); 653 654 if (range_covers_byte(address, len, PCI_COMMAND) && 655 !(pci_dev->config[PCI_COMMAND] & PCI_COMMAND_MASTER)) { 656 virtio_pci_stop_ioeventfd(proxy); 657 virtio_set_status(vdev, vdev->status & ~VIRTIO_CONFIG_S_DRIVER_OK); 658 } 659 660 if (proxy->config_cap && 661 ranges_overlap(address, len, proxy->config_cap + offsetof(struct virtio_pci_cfg_cap, 662 pci_cfg_data), 663 sizeof cfg->pci_cfg_data)) { 664 uint32_t off; 665 uint32_t len; 666 667 cfg = (void *)(proxy->pci_dev.config + proxy->config_cap); 668 off = le32_to_cpu(cfg->cap.offset); 669 len = le32_to_cpu(cfg->cap.length); 670 671 if (len == 1 || len == 2 || len == 4) { 672 assert(len <= sizeof cfg->pci_cfg_data); 673 virtio_address_space_write(&proxy->modern_as, off, 674 cfg->pci_cfg_data, len); 675 } 676 } 677 } 678 679 static uint32_t virtio_read_config(PCIDevice *pci_dev, 680 uint32_t address, int len) 681 { 682 VirtIOPCIProxy *proxy = DO_UPCAST(VirtIOPCIProxy, pci_dev, pci_dev); 683 struct virtio_pci_cfg_cap *cfg; 684 685 if (proxy->config_cap && 686 ranges_overlap(address, len, proxy->config_cap + offsetof(struct virtio_pci_cfg_cap, 687 pci_cfg_data), 688 sizeof cfg->pci_cfg_data)) { 689 uint32_t off; 690 uint32_t len; 691 692 cfg = (void *)(proxy->pci_dev.config + proxy->config_cap); 693 off = le32_to_cpu(cfg->cap.offset); 694 len = le32_to_cpu(cfg->cap.length); 695 696 if (len == 1 || len == 2 || len == 4) { 697 assert(len <= sizeof cfg->pci_cfg_data); 698 virtio_address_space_read(&proxy->modern_as, off, 699 cfg->pci_cfg_data, len); 700 } 701 } 702 703 return pci_default_read_config(pci_dev, address, len); 704 } 705 706 static int kvm_virtio_pci_vq_vector_use(VirtIOPCIProxy *proxy, 707 unsigned int queue_no, 708 unsigned int vector) 709 { 710 VirtIOIRQFD *irqfd = &proxy->vector_irqfd[vector]; 711 int ret; 712 713 if (irqfd->users == 0) { 714 ret = kvm_irqchip_add_msi_route(kvm_state, vector, &proxy->pci_dev); 715 if (ret < 0) { 716 return ret; 717 } 718 irqfd->virq = ret; 719 } 720 irqfd->users++; 721 return 0; 722 } 723 724 static void kvm_virtio_pci_vq_vector_release(VirtIOPCIProxy *proxy, 725 unsigned int vector) 726 { 727 VirtIOIRQFD *irqfd = &proxy->vector_irqfd[vector]; 728 if (--irqfd->users == 0) { 729 kvm_irqchip_release_virq(kvm_state, irqfd->virq); 730 } 731 } 732 733 static int kvm_virtio_pci_irqfd_use(VirtIOPCIProxy *proxy, 734 unsigned int queue_no, 735 unsigned int vector) 736 { 737 VirtIOIRQFD *irqfd = &proxy->vector_irqfd[vector]; 738 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 739 VirtQueue *vq = virtio_get_queue(vdev, queue_no); 740 EventNotifier *n = virtio_queue_get_guest_notifier(vq); 741 return kvm_irqchip_add_irqfd_notifier_gsi(kvm_state, n, NULL, irqfd->virq); 742 } 743 744 static void kvm_virtio_pci_irqfd_release(VirtIOPCIProxy *proxy, 745 unsigned int queue_no, 746 unsigned int vector) 747 { 748 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 749 VirtQueue *vq = virtio_get_queue(vdev, queue_no); 750 EventNotifier *n = virtio_queue_get_guest_notifier(vq); 751 VirtIOIRQFD *irqfd = &proxy->vector_irqfd[vector]; 752 int ret; 753 754 ret = kvm_irqchip_remove_irqfd_notifier_gsi(kvm_state, n, irqfd->virq); 755 assert(ret == 0); 756 } 757 758 static int kvm_virtio_pci_vector_use(VirtIOPCIProxy *proxy, int nvqs) 759 { 760 PCIDevice *dev = &proxy->pci_dev; 761 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 762 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 763 unsigned int vector; 764 int ret, queue_no; 765 766 for (queue_no = 0; queue_no < nvqs; queue_no++) { 767 if (!virtio_queue_get_num(vdev, queue_no)) { 768 break; 769 } 770 vector = virtio_queue_vector(vdev, queue_no); 771 if (vector >= msix_nr_vectors_allocated(dev)) { 772 continue; 773 } 774 ret = kvm_virtio_pci_vq_vector_use(proxy, queue_no, vector); 775 if (ret < 0) { 776 goto undo; 777 } 778 /* If guest supports masking, set up irqfd now. 779 * Otherwise, delay until unmasked in the frontend. 780 */ 781 if (vdev->use_guest_notifier_mask && k->guest_notifier_mask) { 782 ret = kvm_virtio_pci_irqfd_use(proxy, queue_no, vector); 783 if (ret < 0) { 784 kvm_virtio_pci_vq_vector_release(proxy, vector); 785 goto undo; 786 } 787 } 788 } 789 return 0; 790 791 undo: 792 while (--queue_no >= 0) { 793 vector = virtio_queue_vector(vdev, queue_no); 794 if (vector >= msix_nr_vectors_allocated(dev)) { 795 continue; 796 } 797 if (vdev->use_guest_notifier_mask && k->guest_notifier_mask) { 798 kvm_virtio_pci_irqfd_release(proxy, queue_no, vector); 799 } 800 kvm_virtio_pci_vq_vector_release(proxy, vector); 801 } 802 return ret; 803 } 804 805 static void kvm_virtio_pci_vector_release(VirtIOPCIProxy *proxy, int nvqs) 806 { 807 PCIDevice *dev = &proxy->pci_dev; 808 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 809 unsigned int vector; 810 int queue_no; 811 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 812 813 for (queue_no = 0; queue_no < nvqs; queue_no++) { 814 if (!virtio_queue_get_num(vdev, queue_no)) { 815 break; 816 } 817 vector = virtio_queue_vector(vdev, queue_no); 818 if (vector >= msix_nr_vectors_allocated(dev)) { 819 continue; 820 } 821 /* If guest supports masking, clean up irqfd now. 822 * Otherwise, it was cleaned when masked in the frontend. 823 */ 824 if (vdev->use_guest_notifier_mask && k->guest_notifier_mask) { 825 kvm_virtio_pci_irqfd_release(proxy, queue_no, vector); 826 } 827 kvm_virtio_pci_vq_vector_release(proxy, vector); 828 } 829 } 830 831 static int virtio_pci_vq_vector_unmask(VirtIOPCIProxy *proxy, 832 unsigned int queue_no, 833 unsigned int vector, 834 MSIMessage msg) 835 { 836 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 837 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 838 VirtQueue *vq = virtio_get_queue(vdev, queue_no); 839 EventNotifier *n = virtio_queue_get_guest_notifier(vq); 840 VirtIOIRQFD *irqfd; 841 int ret = 0; 842 843 if (proxy->vector_irqfd) { 844 irqfd = &proxy->vector_irqfd[vector]; 845 if (irqfd->msg.data != msg.data || irqfd->msg.address != msg.address) { 846 ret = kvm_irqchip_update_msi_route(kvm_state, irqfd->virq, msg, 847 &proxy->pci_dev); 848 if (ret < 0) { 849 return ret; 850 } 851 kvm_irqchip_commit_routes(kvm_state); 852 } 853 } 854 855 /* If guest supports masking, irqfd is already setup, unmask it. 856 * Otherwise, set it up now. 857 */ 858 if (vdev->use_guest_notifier_mask && k->guest_notifier_mask) { 859 k->guest_notifier_mask(vdev, queue_no, false); 860 /* Test after unmasking to avoid losing events. */ 861 if (k->guest_notifier_pending && 862 k->guest_notifier_pending(vdev, queue_no)) { 863 event_notifier_set(n); 864 } 865 } else { 866 ret = kvm_virtio_pci_irqfd_use(proxy, queue_no, vector); 867 } 868 return ret; 869 } 870 871 static void virtio_pci_vq_vector_mask(VirtIOPCIProxy *proxy, 872 unsigned int queue_no, 873 unsigned int vector) 874 { 875 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 876 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 877 878 /* If guest supports masking, keep irqfd but mask it. 879 * Otherwise, clean it up now. 880 */ 881 if (vdev->use_guest_notifier_mask && k->guest_notifier_mask) { 882 k->guest_notifier_mask(vdev, queue_no, true); 883 } else { 884 kvm_virtio_pci_irqfd_release(proxy, queue_no, vector); 885 } 886 } 887 888 static int virtio_pci_vector_unmask(PCIDevice *dev, unsigned vector, 889 MSIMessage msg) 890 { 891 VirtIOPCIProxy *proxy = container_of(dev, VirtIOPCIProxy, pci_dev); 892 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 893 VirtQueue *vq = virtio_vector_first_queue(vdev, vector); 894 int ret, index, unmasked = 0; 895 896 while (vq) { 897 index = virtio_get_queue_index(vq); 898 if (!virtio_queue_get_num(vdev, index)) { 899 break; 900 } 901 if (index < proxy->nvqs_with_notifiers) { 902 ret = virtio_pci_vq_vector_unmask(proxy, index, vector, msg); 903 if (ret < 0) { 904 goto undo; 905 } 906 ++unmasked; 907 } 908 vq = virtio_vector_next_queue(vq); 909 } 910 911 return 0; 912 913 undo: 914 vq = virtio_vector_first_queue(vdev, vector); 915 while (vq && unmasked >= 0) { 916 index = virtio_get_queue_index(vq); 917 if (index < proxy->nvqs_with_notifiers) { 918 virtio_pci_vq_vector_mask(proxy, index, vector); 919 --unmasked; 920 } 921 vq = virtio_vector_next_queue(vq); 922 } 923 return ret; 924 } 925 926 static void virtio_pci_vector_mask(PCIDevice *dev, unsigned vector) 927 { 928 VirtIOPCIProxy *proxy = container_of(dev, VirtIOPCIProxy, pci_dev); 929 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 930 VirtQueue *vq = virtio_vector_first_queue(vdev, vector); 931 int index; 932 933 while (vq) { 934 index = virtio_get_queue_index(vq); 935 if (!virtio_queue_get_num(vdev, index)) { 936 break; 937 } 938 if (index < proxy->nvqs_with_notifiers) { 939 virtio_pci_vq_vector_mask(proxy, index, vector); 940 } 941 vq = virtio_vector_next_queue(vq); 942 } 943 } 944 945 static void virtio_pci_vector_poll(PCIDevice *dev, 946 unsigned int vector_start, 947 unsigned int vector_end) 948 { 949 VirtIOPCIProxy *proxy = container_of(dev, VirtIOPCIProxy, pci_dev); 950 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 951 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 952 int queue_no; 953 unsigned int vector; 954 EventNotifier *notifier; 955 VirtQueue *vq; 956 957 for (queue_no = 0; queue_no < proxy->nvqs_with_notifiers; queue_no++) { 958 if (!virtio_queue_get_num(vdev, queue_no)) { 959 break; 960 } 961 vector = virtio_queue_vector(vdev, queue_no); 962 if (vector < vector_start || vector >= vector_end || 963 !msix_is_masked(dev, vector)) { 964 continue; 965 } 966 vq = virtio_get_queue(vdev, queue_no); 967 notifier = virtio_queue_get_guest_notifier(vq); 968 if (k->guest_notifier_pending) { 969 if (k->guest_notifier_pending(vdev, queue_no)) { 970 msix_set_pending(dev, vector); 971 } 972 } else if (event_notifier_test_and_clear(notifier)) { 973 msix_set_pending(dev, vector); 974 } 975 } 976 } 977 978 static int virtio_pci_set_guest_notifier(DeviceState *d, int n, bool assign, 979 bool with_irqfd) 980 { 981 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 982 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 983 VirtioDeviceClass *vdc = VIRTIO_DEVICE_GET_CLASS(vdev); 984 VirtQueue *vq = virtio_get_queue(vdev, n); 985 EventNotifier *notifier = virtio_queue_get_guest_notifier(vq); 986 987 if (assign) { 988 int r = event_notifier_init(notifier, 0); 989 if (r < 0) { 990 return r; 991 } 992 virtio_queue_set_guest_notifier_fd_handler(vq, true, with_irqfd); 993 } else { 994 virtio_queue_set_guest_notifier_fd_handler(vq, false, with_irqfd); 995 event_notifier_cleanup(notifier); 996 } 997 998 if (!msix_enabled(&proxy->pci_dev) && 999 vdev->use_guest_notifier_mask && 1000 vdc->guest_notifier_mask) { 1001 vdc->guest_notifier_mask(vdev, n, !assign); 1002 } 1003 1004 return 0; 1005 } 1006 1007 static bool virtio_pci_query_guest_notifiers(DeviceState *d) 1008 { 1009 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 1010 return msix_enabled(&proxy->pci_dev); 1011 } 1012 1013 static int virtio_pci_set_guest_notifiers(DeviceState *d, int nvqs, bool assign) 1014 { 1015 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 1016 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1017 VirtioDeviceClass *k = VIRTIO_DEVICE_GET_CLASS(vdev); 1018 int r, n; 1019 bool with_irqfd = msix_enabled(&proxy->pci_dev) && 1020 kvm_msi_via_irqfd_enabled(); 1021 1022 nvqs = MIN(nvqs, VIRTIO_QUEUE_MAX); 1023 1024 /* When deassigning, pass a consistent nvqs value 1025 * to avoid leaking notifiers. 1026 */ 1027 assert(assign || nvqs == proxy->nvqs_with_notifiers); 1028 1029 proxy->nvqs_with_notifiers = nvqs; 1030 1031 /* Must unset vector notifier while guest notifier is still assigned */ 1032 if ((proxy->vector_irqfd || k->guest_notifier_mask) && !assign) { 1033 msix_unset_vector_notifiers(&proxy->pci_dev); 1034 if (proxy->vector_irqfd) { 1035 kvm_virtio_pci_vector_release(proxy, nvqs); 1036 g_free(proxy->vector_irqfd); 1037 proxy->vector_irqfd = NULL; 1038 } 1039 } 1040 1041 for (n = 0; n < nvqs; n++) { 1042 if (!virtio_queue_get_num(vdev, n)) { 1043 break; 1044 } 1045 1046 r = virtio_pci_set_guest_notifier(d, n, assign, with_irqfd); 1047 if (r < 0) { 1048 goto assign_error; 1049 } 1050 } 1051 1052 /* Must set vector notifier after guest notifier has been assigned */ 1053 if ((with_irqfd || k->guest_notifier_mask) && assign) { 1054 if (with_irqfd) { 1055 proxy->vector_irqfd = 1056 g_malloc0(sizeof(*proxy->vector_irqfd) * 1057 msix_nr_vectors_allocated(&proxy->pci_dev)); 1058 r = kvm_virtio_pci_vector_use(proxy, nvqs); 1059 if (r < 0) { 1060 goto assign_error; 1061 } 1062 } 1063 r = msix_set_vector_notifiers(&proxy->pci_dev, 1064 virtio_pci_vector_unmask, 1065 virtio_pci_vector_mask, 1066 virtio_pci_vector_poll); 1067 if (r < 0) { 1068 goto notifiers_error; 1069 } 1070 } 1071 1072 return 0; 1073 1074 notifiers_error: 1075 if (with_irqfd) { 1076 assert(assign); 1077 kvm_virtio_pci_vector_release(proxy, nvqs); 1078 } 1079 1080 assign_error: 1081 /* We get here on assignment failure. Recover by undoing for VQs 0 .. n. */ 1082 assert(assign); 1083 while (--n >= 0) { 1084 virtio_pci_set_guest_notifier(d, n, !assign, with_irqfd); 1085 } 1086 return r; 1087 } 1088 1089 static void virtio_pci_vmstate_change(DeviceState *d, bool running) 1090 { 1091 VirtIOPCIProxy *proxy = to_virtio_pci_proxy(d); 1092 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1093 1094 if (running) { 1095 /* Old QEMU versions did not set bus master enable on status write. 1096 * Detect DRIVER set and enable it. 1097 */ 1098 if ((proxy->flags & VIRTIO_PCI_FLAG_BUS_MASTER_BUG_MIGRATION) && 1099 (vdev->status & VIRTIO_CONFIG_S_DRIVER) && 1100 !(proxy->pci_dev.config[PCI_COMMAND] & PCI_COMMAND_MASTER)) { 1101 pci_default_write_config(&proxy->pci_dev, PCI_COMMAND, 1102 proxy->pci_dev.config[PCI_COMMAND] | 1103 PCI_COMMAND_MASTER, 1); 1104 } 1105 virtio_pci_start_ioeventfd(proxy); 1106 } else { 1107 virtio_pci_stop_ioeventfd(proxy); 1108 } 1109 } 1110 1111 #ifdef CONFIG_VIRTFS 1112 static void virtio_9p_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 1113 { 1114 V9fsPCIState *dev = VIRTIO_9P_PCI(vpci_dev); 1115 DeviceState *vdev = DEVICE(&dev->vdev); 1116 1117 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 1118 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 1119 } 1120 1121 static Property virtio_9p_pci_properties[] = { 1122 DEFINE_PROP_BIT("ioeventfd", VirtIOPCIProxy, flags, 1123 VIRTIO_PCI_FLAG_USE_IOEVENTFD_BIT, true), 1124 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 2), 1125 DEFINE_PROP_END_OF_LIST(), 1126 }; 1127 1128 static void virtio_9p_pci_class_init(ObjectClass *klass, void *data) 1129 { 1130 DeviceClass *dc = DEVICE_CLASS(klass); 1131 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 1132 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 1133 1134 k->realize = virtio_9p_pci_realize; 1135 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 1136 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_9P; 1137 pcidev_k->revision = VIRTIO_PCI_ABI_VERSION; 1138 pcidev_k->class_id = 0x2; 1139 set_bit(DEVICE_CATEGORY_STORAGE, dc->categories); 1140 dc->props = virtio_9p_pci_properties; 1141 } 1142 1143 static void virtio_9p_pci_instance_init(Object *obj) 1144 { 1145 V9fsPCIState *dev = VIRTIO_9P_PCI(obj); 1146 1147 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 1148 TYPE_VIRTIO_9P); 1149 } 1150 1151 static const TypeInfo virtio_9p_pci_info = { 1152 .name = TYPE_VIRTIO_9P_PCI, 1153 .parent = TYPE_VIRTIO_PCI, 1154 .instance_size = sizeof(V9fsPCIState), 1155 .instance_init = virtio_9p_pci_instance_init, 1156 .class_init = virtio_9p_pci_class_init, 1157 }; 1158 #endif /* CONFIG_VIRTFS */ 1159 1160 /* 1161 * virtio-pci: This is the PCIDevice which has a virtio-pci-bus. 1162 */ 1163 1164 static int virtio_pci_query_nvectors(DeviceState *d) 1165 { 1166 VirtIOPCIProxy *proxy = VIRTIO_PCI(d); 1167 1168 return proxy->nvectors; 1169 } 1170 1171 static int virtio_pci_add_mem_cap(VirtIOPCIProxy *proxy, 1172 struct virtio_pci_cap *cap) 1173 { 1174 PCIDevice *dev = &proxy->pci_dev; 1175 int offset; 1176 1177 offset = pci_add_capability(dev, PCI_CAP_ID_VNDR, 0, cap->cap_len); 1178 assert(offset > 0); 1179 1180 assert(cap->cap_len >= sizeof *cap); 1181 memcpy(dev->config + offset + PCI_CAP_FLAGS, &cap->cap_len, 1182 cap->cap_len - PCI_CAP_FLAGS); 1183 1184 return offset; 1185 } 1186 1187 static uint64_t virtio_pci_common_read(void *opaque, hwaddr addr, 1188 unsigned size) 1189 { 1190 VirtIOPCIProxy *proxy = opaque; 1191 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1192 uint32_t val = 0; 1193 int i; 1194 1195 switch (addr) { 1196 case VIRTIO_PCI_COMMON_DFSELECT: 1197 val = proxy->dfselect; 1198 break; 1199 case VIRTIO_PCI_COMMON_DF: 1200 if (proxy->dfselect <= 1) { 1201 val = (vdev->host_features & ~VIRTIO_LEGACY_FEATURES) >> 1202 (32 * proxy->dfselect); 1203 } 1204 break; 1205 case VIRTIO_PCI_COMMON_GFSELECT: 1206 val = proxy->gfselect; 1207 break; 1208 case VIRTIO_PCI_COMMON_GF: 1209 if (proxy->gfselect < ARRAY_SIZE(proxy->guest_features)) { 1210 val = proxy->guest_features[proxy->gfselect]; 1211 } 1212 break; 1213 case VIRTIO_PCI_COMMON_MSIX: 1214 val = vdev->config_vector; 1215 break; 1216 case VIRTIO_PCI_COMMON_NUMQ: 1217 for (i = 0; i < VIRTIO_QUEUE_MAX; ++i) { 1218 if (virtio_queue_get_num(vdev, i)) { 1219 val = i + 1; 1220 } 1221 } 1222 break; 1223 case VIRTIO_PCI_COMMON_STATUS: 1224 val = vdev->status; 1225 break; 1226 case VIRTIO_PCI_COMMON_CFGGENERATION: 1227 val = vdev->generation; 1228 break; 1229 case VIRTIO_PCI_COMMON_Q_SELECT: 1230 val = vdev->queue_sel; 1231 break; 1232 case VIRTIO_PCI_COMMON_Q_SIZE: 1233 val = virtio_queue_get_num(vdev, vdev->queue_sel); 1234 break; 1235 case VIRTIO_PCI_COMMON_Q_MSIX: 1236 val = virtio_queue_vector(vdev, vdev->queue_sel); 1237 break; 1238 case VIRTIO_PCI_COMMON_Q_ENABLE: 1239 val = proxy->vqs[vdev->queue_sel].enabled; 1240 break; 1241 case VIRTIO_PCI_COMMON_Q_NOFF: 1242 /* Simply map queues in order */ 1243 val = vdev->queue_sel; 1244 break; 1245 case VIRTIO_PCI_COMMON_Q_DESCLO: 1246 val = proxy->vqs[vdev->queue_sel].desc[0]; 1247 break; 1248 case VIRTIO_PCI_COMMON_Q_DESCHI: 1249 val = proxy->vqs[vdev->queue_sel].desc[1]; 1250 break; 1251 case VIRTIO_PCI_COMMON_Q_AVAILLO: 1252 val = proxy->vqs[vdev->queue_sel].avail[0]; 1253 break; 1254 case VIRTIO_PCI_COMMON_Q_AVAILHI: 1255 val = proxy->vqs[vdev->queue_sel].avail[1]; 1256 break; 1257 case VIRTIO_PCI_COMMON_Q_USEDLO: 1258 val = proxy->vqs[vdev->queue_sel].used[0]; 1259 break; 1260 case VIRTIO_PCI_COMMON_Q_USEDHI: 1261 val = proxy->vqs[vdev->queue_sel].used[1]; 1262 break; 1263 default: 1264 val = 0; 1265 } 1266 1267 return val; 1268 } 1269 1270 static void virtio_pci_common_write(void *opaque, hwaddr addr, 1271 uint64_t val, unsigned size) 1272 { 1273 VirtIOPCIProxy *proxy = opaque; 1274 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1275 1276 switch (addr) { 1277 case VIRTIO_PCI_COMMON_DFSELECT: 1278 proxy->dfselect = val; 1279 break; 1280 case VIRTIO_PCI_COMMON_GFSELECT: 1281 proxy->gfselect = val; 1282 break; 1283 case VIRTIO_PCI_COMMON_GF: 1284 if (proxy->gfselect < ARRAY_SIZE(proxy->guest_features)) { 1285 proxy->guest_features[proxy->gfselect] = val; 1286 virtio_set_features(vdev, 1287 (((uint64_t)proxy->guest_features[1]) << 32) | 1288 proxy->guest_features[0]); 1289 } 1290 break; 1291 case VIRTIO_PCI_COMMON_MSIX: 1292 msix_vector_unuse(&proxy->pci_dev, vdev->config_vector); 1293 /* Make it possible for guest to discover an error took place. */ 1294 if (msix_vector_use(&proxy->pci_dev, val) < 0) { 1295 val = VIRTIO_NO_VECTOR; 1296 } 1297 vdev->config_vector = val; 1298 break; 1299 case VIRTIO_PCI_COMMON_STATUS: 1300 if (!(val & VIRTIO_CONFIG_S_DRIVER_OK)) { 1301 virtio_pci_stop_ioeventfd(proxy); 1302 } 1303 1304 virtio_set_status(vdev, val & 0xFF); 1305 1306 if (val & VIRTIO_CONFIG_S_DRIVER_OK) { 1307 virtio_pci_start_ioeventfd(proxy); 1308 } 1309 1310 if (vdev->status == 0) { 1311 virtio_pci_reset(DEVICE(proxy)); 1312 } 1313 1314 break; 1315 case VIRTIO_PCI_COMMON_Q_SELECT: 1316 if (val < VIRTIO_QUEUE_MAX) { 1317 vdev->queue_sel = val; 1318 } 1319 break; 1320 case VIRTIO_PCI_COMMON_Q_SIZE: 1321 proxy->vqs[vdev->queue_sel].num = val; 1322 break; 1323 case VIRTIO_PCI_COMMON_Q_MSIX: 1324 msix_vector_unuse(&proxy->pci_dev, 1325 virtio_queue_vector(vdev, vdev->queue_sel)); 1326 /* Make it possible for guest to discover an error took place. */ 1327 if (msix_vector_use(&proxy->pci_dev, val) < 0) { 1328 val = VIRTIO_NO_VECTOR; 1329 } 1330 virtio_queue_set_vector(vdev, vdev->queue_sel, val); 1331 break; 1332 case VIRTIO_PCI_COMMON_Q_ENABLE: 1333 /* TODO: need a way to put num back on reset. */ 1334 virtio_queue_set_num(vdev, vdev->queue_sel, 1335 proxy->vqs[vdev->queue_sel].num); 1336 virtio_queue_set_rings(vdev, vdev->queue_sel, 1337 ((uint64_t)proxy->vqs[vdev->queue_sel].desc[1]) << 32 | 1338 proxy->vqs[vdev->queue_sel].desc[0], 1339 ((uint64_t)proxy->vqs[vdev->queue_sel].avail[1]) << 32 | 1340 proxy->vqs[vdev->queue_sel].avail[0], 1341 ((uint64_t)proxy->vqs[vdev->queue_sel].used[1]) << 32 | 1342 proxy->vqs[vdev->queue_sel].used[0]); 1343 proxy->vqs[vdev->queue_sel].enabled = 1; 1344 break; 1345 case VIRTIO_PCI_COMMON_Q_DESCLO: 1346 proxy->vqs[vdev->queue_sel].desc[0] = val; 1347 break; 1348 case VIRTIO_PCI_COMMON_Q_DESCHI: 1349 proxy->vqs[vdev->queue_sel].desc[1] = val; 1350 break; 1351 case VIRTIO_PCI_COMMON_Q_AVAILLO: 1352 proxy->vqs[vdev->queue_sel].avail[0] = val; 1353 break; 1354 case VIRTIO_PCI_COMMON_Q_AVAILHI: 1355 proxy->vqs[vdev->queue_sel].avail[1] = val; 1356 break; 1357 case VIRTIO_PCI_COMMON_Q_USEDLO: 1358 proxy->vqs[vdev->queue_sel].used[0] = val; 1359 break; 1360 case VIRTIO_PCI_COMMON_Q_USEDHI: 1361 proxy->vqs[vdev->queue_sel].used[1] = val; 1362 break; 1363 default: 1364 break; 1365 } 1366 } 1367 1368 1369 static uint64_t virtio_pci_notify_read(void *opaque, hwaddr addr, 1370 unsigned size) 1371 { 1372 return 0; 1373 } 1374 1375 static void virtio_pci_notify_write(void *opaque, hwaddr addr, 1376 uint64_t val, unsigned size) 1377 { 1378 VirtIODevice *vdev = opaque; 1379 VirtIOPCIProxy *proxy = VIRTIO_PCI(DEVICE(vdev)->parent_bus->parent); 1380 unsigned queue = addr / virtio_pci_queue_mem_mult(proxy); 1381 1382 if (queue < VIRTIO_QUEUE_MAX) { 1383 virtio_queue_notify(vdev, queue); 1384 } 1385 } 1386 1387 static void virtio_pci_notify_write_pio(void *opaque, hwaddr addr, 1388 uint64_t val, unsigned size) 1389 { 1390 VirtIODevice *vdev = opaque; 1391 unsigned queue = val; 1392 1393 if (queue < VIRTIO_QUEUE_MAX) { 1394 virtio_queue_notify(vdev, queue); 1395 } 1396 } 1397 1398 static uint64_t virtio_pci_isr_read(void *opaque, hwaddr addr, 1399 unsigned size) 1400 { 1401 VirtIOPCIProxy *proxy = opaque; 1402 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1403 uint64_t val = vdev->isr; 1404 1405 vdev->isr = 0; 1406 pci_irq_deassert(&proxy->pci_dev); 1407 1408 return val; 1409 } 1410 1411 static void virtio_pci_isr_write(void *opaque, hwaddr addr, 1412 uint64_t val, unsigned size) 1413 { 1414 } 1415 1416 static uint64_t virtio_pci_device_read(void *opaque, hwaddr addr, 1417 unsigned size) 1418 { 1419 VirtIODevice *vdev = opaque; 1420 uint64_t val = 0; 1421 1422 switch (size) { 1423 case 1: 1424 val = virtio_config_modern_readb(vdev, addr); 1425 break; 1426 case 2: 1427 val = virtio_config_modern_readw(vdev, addr); 1428 break; 1429 case 4: 1430 val = virtio_config_modern_readl(vdev, addr); 1431 break; 1432 } 1433 return val; 1434 } 1435 1436 static void virtio_pci_device_write(void *opaque, hwaddr addr, 1437 uint64_t val, unsigned size) 1438 { 1439 VirtIODevice *vdev = opaque; 1440 switch (size) { 1441 case 1: 1442 virtio_config_modern_writeb(vdev, addr, val); 1443 break; 1444 case 2: 1445 virtio_config_modern_writew(vdev, addr, val); 1446 break; 1447 case 4: 1448 virtio_config_modern_writel(vdev, addr, val); 1449 break; 1450 } 1451 } 1452 1453 static void virtio_pci_modern_regions_init(VirtIOPCIProxy *proxy) 1454 { 1455 static const MemoryRegionOps common_ops = { 1456 .read = virtio_pci_common_read, 1457 .write = virtio_pci_common_write, 1458 .impl = { 1459 .min_access_size = 1, 1460 .max_access_size = 4, 1461 }, 1462 .endianness = DEVICE_LITTLE_ENDIAN, 1463 }; 1464 static const MemoryRegionOps isr_ops = { 1465 .read = virtio_pci_isr_read, 1466 .write = virtio_pci_isr_write, 1467 .impl = { 1468 .min_access_size = 1, 1469 .max_access_size = 4, 1470 }, 1471 .endianness = DEVICE_LITTLE_ENDIAN, 1472 }; 1473 static const MemoryRegionOps device_ops = { 1474 .read = virtio_pci_device_read, 1475 .write = virtio_pci_device_write, 1476 .impl = { 1477 .min_access_size = 1, 1478 .max_access_size = 4, 1479 }, 1480 .endianness = DEVICE_LITTLE_ENDIAN, 1481 }; 1482 static const MemoryRegionOps notify_ops = { 1483 .read = virtio_pci_notify_read, 1484 .write = virtio_pci_notify_write, 1485 .impl = { 1486 .min_access_size = 1, 1487 .max_access_size = 4, 1488 }, 1489 .endianness = DEVICE_LITTLE_ENDIAN, 1490 }; 1491 static const MemoryRegionOps notify_pio_ops = { 1492 .read = virtio_pci_notify_read, 1493 .write = virtio_pci_notify_write_pio, 1494 .impl = { 1495 .min_access_size = 1, 1496 .max_access_size = 4, 1497 }, 1498 .endianness = DEVICE_LITTLE_ENDIAN, 1499 }; 1500 1501 1502 memory_region_init_io(&proxy->common.mr, OBJECT(proxy), 1503 &common_ops, 1504 proxy, 1505 "virtio-pci-common", 1506 proxy->common.size); 1507 1508 memory_region_init_io(&proxy->isr.mr, OBJECT(proxy), 1509 &isr_ops, 1510 proxy, 1511 "virtio-pci-isr", 1512 proxy->isr.size); 1513 1514 memory_region_init_io(&proxy->device.mr, OBJECT(proxy), 1515 &device_ops, 1516 virtio_bus_get_device(&proxy->bus), 1517 "virtio-pci-device", 1518 proxy->device.size); 1519 1520 memory_region_init_io(&proxy->notify.mr, OBJECT(proxy), 1521 ¬ify_ops, 1522 virtio_bus_get_device(&proxy->bus), 1523 "virtio-pci-notify", 1524 proxy->notify.size); 1525 1526 memory_region_init_io(&proxy->notify_pio.mr, OBJECT(proxy), 1527 ¬ify_pio_ops, 1528 virtio_bus_get_device(&proxy->bus), 1529 "virtio-pci-notify-pio", 1530 proxy->notify_pio.size); 1531 } 1532 1533 static void virtio_pci_modern_region_map(VirtIOPCIProxy *proxy, 1534 VirtIOPCIRegion *region, 1535 struct virtio_pci_cap *cap, 1536 MemoryRegion *mr, 1537 uint8_t bar) 1538 { 1539 memory_region_add_subregion(mr, region->offset, ®ion->mr); 1540 1541 cap->cfg_type = region->type; 1542 cap->bar = bar; 1543 cap->offset = cpu_to_le32(region->offset); 1544 cap->length = cpu_to_le32(region->size); 1545 virtio_pci_add_mem_cap(proxy, cap); 1546 1547 } 1548 1549 static void virtio_pci_modern_mem_region_map(VirtIOPCIProxy *proxy, 1550 VirtIOPCIRegion *region, 1551 struct virtio_pci_cap *cap) 1552 { 1553 virtio_pci_modern_region_map(proxy, region, cap, 1554 &proxy->modern_bar, proxy->modern_mem_bar); 1555 } 1556 1557 static void virtio_pci_modern_io_region_map(VirtIOPCIProxy *proxy, 1558 VirtIOPCIRegion *region, 1559 struct virtio_pci_cap *cap) 1560 { 1561 virtio_pci_modern_region_map(proxy, region, cap, 1562 &proxy->io_bar, proxy->modern_io_bar); 1563 } 1564 1565 static void virtio_pci_modern_mem_region_unmap(VirtIOPCIProxy *proxy, 1566 VirtIOPCIRegion *region) 1567 { 1568 memory_region_del_subregion(&proxy->modern_bar, 1569 ®ion->mr); 1570 } 1571 1572 static void virtio_pci_modern_io_region_unmap(VirtIOPCIProxy *proxy, 1573 VirtIOPCIRegion *region) 1574 { 1575 memory_region_del_subregion(&proxy->io_bar, 1576 ®ion->mr); 1577 } 1578 1579 static void virtio_pci_pre_plugged(DeviceState *d, Error **errp) 1580 { 1581 VirtIOPCIProxy *proxy = VIRTIO_PCI(d); 1582 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1583 1584 if (virtio_pci_modern(proxy)) { 1585 virtio_add_feature(&vdev->host_features, VIRTIO_F_VERSION_1); 1586 } 1587 1588 virtio_add_feature(&vdev->host_features, VIRTIO_F_BAD_FEATURE); 1589 } 1590 1591 /* This is called by virtio-bus just after the device is plugged. */ 1592 static void virtio_pci_device_plugged(DeviceState *d, Error **errp) 1593 { 1594 VirtIOPCIProxy *proxy = VIRTIO_PCI(d); 1595 VirtioBusState *bus = &proxy->bus; 1596 bool legacy = virtio_pci_legacy(proxy); 1597 bool modern; 1598 bool modern_pio = proxy->flags & VIRTIO_PCI_FLAG_MODERN_PIO_NOTIFY; 1599 uint8_t *config; 1600 uint32_t size; 1601 VirtIODevice *vdev = virtio_bus_get_device(&proxy->bus); 1602 1603 /* 1604 * Virtio capabilities present without 1605 * VIRTIO_F_VERSION_1 confuses guests 1606 */ 1607 if (!virtio_has_feature(vdev->host_features, VIRTIO_F_VERSION_1)) { 1608 virtio_pci_disable_modern(proxy); 1609 1610 if (!legacy) { 1611 error_setg(errp, "Device doesn't support modern mode, and legacy" 1612 " mode is disabled"); 1613 error_append_hint(errp, "Set disable-legacy to off\n"); 1614 1615 return; 1616 } 1617 } 1618 1619 modern = virtio_pci_modern(proxy); 1620 1621 config = proxy->pci_dev.config; 1622 if (proxy->class_code) { 1623 pci_config_set_class(config, proxy->class_code); 1624 } 1625 1626 if (legacy) { 1627 /* legacy and transitional */ 1628 pci_set_word(config + PCI_SUBSYSTEM_VENDOR_ID, 1629 pci_get_word(config + PCI_VENDOR_ID)); 1630 pci_set_word(config + PCI_SUBSYSTEM_ID, virtio_bus_get_vdev_id(bus)); 1631 } else { 1632 /* pure virtio-1.0 */ 1633 pci_set_word(config + PCI_VENDOR_ID, 1634 PCI_VENDOR_ID_REDHAT_QUMRANET); 1635 pci_set_word(config + PCI_DEVICE_ID, 1636 0x1040 + virtio_bus_get_vdev_id(bus)); 1637 pci_config_set_revision(config, 1); 1638 } 1639 config[PCI_INTERRUPT_PIN] = 1; 1640 1641 1642 if (modern) { 1643 struct virtio_pci_cap cap = { 1644 .cap_len = sizeof cap, 1645 }; 1646 struct virtio_pci_notify_cap notify = { 1647 .cap.cap_len = sizeof notify, 1648 .notify_off_multiplier = 1649 cpu_to_le32(virtio_pci_queue_mem_mult(proxy)), 1650 }; 1651 struct virtio_pci_cfg_cap cfg = { 1652 .cap.cap_len = sizeof cfg, 1653 .cap.cfg_type = VIRTIO_PCI_CAP_PCI_CFG, 1654 }; 1655 struct virtio_pci_notify_cap notify_pio = { 1656 .cap.cap_len = sizeof notify, 1657 .notify_off_multiplier = cpu_to_le32(0x0), 1658 }; 1659 1660 struct virtio_pci_cfg_cap *cfg_mask; 1661 1662 virtio_pci_modern_regions_init(proxy); 1663 1664 virtio_pci_modern_mem_region_map(proxy, &proxy->common, &cap); 1665 virtio_pci_modern_mem_region_map(proxy, &proxy->isr, &cap); 1666 virtio_pci_modern_mem_region_map(proxy, &proxy->device, &cap); 1667 virtio_pci_modern_mem_region_map(proxy, &proxy->notify, ¬ify.cap); 1668 1669 if (modern_pio) { 1670 memory_region_init(&proxy->io_bar, OBJECT(proxy), 1671 "virtio-pci-io", 0x4); 1672 1673 pci_register_bar(&proxy->pci_dev, proxy->modern_io_bar, 1674 PCI_BASE_ADDRESS_SPACE_IO, &proxy->io_bar); 1675 1676 virtio_pci_modern_io_region_map(proxy, &proxy->notify_pio, 1677 ¬ify_pio.cap); 1678 } 1679 1680 pci_register_bar(&proxy->pci_dev, proxy->modern_mem_bar, 1681 PCI_BASE_ADDRESS_SPACE_MEMORY | 1682 PCI_BASE_ADDRESS_MEM_PREFETCH | 1683 PCI_BASE_ADDRESS_MEM_TYPE_64, 1684 &proxy->modern_bar); 1685 1686 proxy->config_cap = virtio_pci_add_mem_cap(proxy, &cfg.cap); 1687 cfg_mask = (void *)(proxy->pci_dev.wmask + proxy->config_cap); 1688 pci_set_byte(&cfg_mask->cap.bar, ~0x0); 1689 pci_set_long((uint8_t *)&cfg_mask->cap.offset, ~0x0); 1690 pci_set_long((uint8_t *)&cfg_mask->cap.length, ~0x0); 1691 pci_set_long(cfg_mask->pci_cfg_data, ~0x0); 1692 } 1693 1694 if (proxy->nvectors) { 1695 int err = msix_init_exclusive_bar(&proxy->pci_dev, proxy->nvectors, 1696 proxy->msix_bar); 1697 if (err) { 1698 /* Notice when a system that supports MSIx can't initialize it. */ 1699 if (err != -ENOTSUP) { 1700 error_report("unable to init msix vectors to %" PRIu32, 1701 proxy->nvectors); 1702 } 1703 proxy->nvectors = 0; 1704 } 1705 } 1706 1707 proxy->pci_dev.config_write = virtio_write_config; 1708 proxy->pci_dev.config_read = virtio_read_config; 1709 1710 if (legacy) { 1711 size = VIRTIO_PCI_REGION_SIZE(&proxy->pci_dev) 1712 + virtio_bus_get_vdev_config_len(bus); 1713 size = pow2ceil(size); 1714 1715 memory_region_init_io(&proxy->bar, OBJECT(proxy), 1716 &virtio_pci_config_ops, 1717 proxy, "virtio-pci", size); 1718 1719 pci_register_bar(&proxy->pci_dev, proxy->legacy_io_bar, 1720 PCI_BASE_ADDRESS_SPACE_IO, &proxy->bar); 1721 } 1722 1723 if (!kvm_has_many_ioeventfds()) { 1724 proxy->flags &= ~VIRTIO_PCI_FLAG_USE_IOEVENTFD; 1725 } 1726 } 1727 1728 static void virtio_pci_device_unplugged(DeviceState *d) 1729 { 1730 VirtIOPCIProxy *proxy = VIRTIO_PCI(d); 1731 bool modern = virtio_pci_modern(proxy); 1732 bool modern_pio = proxy->flags & VIRTIO_PCI_FLAG_MODERN_PIO_NOTIFY; 1733 1734 virtio_pci_stop_ioeventfd(proxy); 1735 1736 if (modern) { 1737 virtio_pci_modern_mem_region_unmap(proxy, &proxy->common); 1738 virtio_pci_modern_mem_region_unmap(proxy, &proxy->isr); 1739 virtio_pci_modern_mem_region_unmap(proxy, &proxy->device); 1740 virtio_pci_modern_mem_region_unmap(proxy, &proxy->notify); 1741 if (modern_pio) { 1742 virtio_pci_modern_io_region_unmap(proxy, &proxy->notify_pio); 1743 } 1744 } 1745 } 1746 1747 static void virtio_pci_realize(PCIDevice *pci_dev, Error **errp) 1748 { 1749 VirtIOPCIProxy *proxy = VIRTIO_PCI(pci_dev); 1750 VirtioPCIClass *k = VIRTIO_PCI_GET_CLASS(pci_dev); 1751 bool pcie_port = pci_bus_is_express(pci_dev->bus) && 1752 !pci_bus_is_root(pci_dev->bus); 1753 1754 /* 1755 * virtio pci bar layout used by default. 1756 * subclasses can re-arrange things if needed. 1757 * 1758 * region 0 -- virtio legacy io bar 1759 * region 1 -- msi-x bar 1760 * region 4+5 -- virtio modern memory (64bit) bar 1761 * 1762 */ 1763 proxy->legacy_io_bar = 0; 1764 proxy->msix_bar = 1; 1765 proxy->modern_io_bar = 2; 1766 proxy->modern_mem_bar = 4; 1767 1768 proxy->common.offset = 0x0; 1769 proxy->common.size = 0x1000; 1770 proxy->common.type = VIRTIO_PCI_CAP_COMMON_CFG; 1771 1772 proxy->isr.offset = 0x1000; 1773 proxy->isr.size = 0x1000; 1774 proxy->isr.type = VIRTIO_PCI_CAP_ISR_CFG; 1775 1776 proxy->device.offset = 0x2000; 1777 proxy->device.size = 0x1000; 1778 proxy->device.type = VIRTIO_PCI_CAP_DEVICE_CFG; 1779 1780 proxy->notify.offset = 0x3000; 1781 proxy->notify.size = virtio_pci_queue_mem_mult(proxy) * VIRTIO_QUEUE_MAX; 1782 proxy->notify.type = VIRTIO_PCI_CAP_NOTIFY_CFG; 1783 1784 proxy->notify_pio.offset = 0x0; 1785 proxy->notify_pio.size = 0x4; 1786 proxy->notify_pio.type = VIRTIO_PCI_CAP_NOTIFY_CFG; 1787 1788 /* subclasses can enforce modern, so do this unconditionally */ 1789 memory_region_init(&proxy->modern_bar, OBJECT(proxy), "virtio-pci", 1790 /* PCI BAR regions must be powers of 2 */ 1791 pow2ceil(proxy->notify.offset + proxy->notify.size)); 1792 1793 memory_region_init_alias(&proxy->modern_cfg, 1794 OBJECT(proxy), 1795 "virtio-pci-cfg", 1796 &proxy->modern_bar, 1797 0, 1798 memory_region_size(&proxy->modern_bar)); 1799 1800 address_space_init(&proxy->modern_as, &proxy->modern_cfg, "virtio-pci-cfg-as"); 1801 1802 if (proxy->disable_legacy == ON_OFF_AUTO_AUTO) { 1803 proxy->disable_legacy = pcie_port ? ON_OFF_AUTO_ON : ON_OFF_AUTO_OFF; 1804 } 1805 1806 if (!virtio_pci_modern(proxy) && !virtio_pci_legacy(proxy)) { 1807 error_setg(errp, "device cannot work as neither modern nor legacy mode" 1808 " is enabled"); 1809 error_append_hint(errp, "Set either disable-modern or disable-legacy" 1810 " to off\n"); 1811 return; 1812 } 1813 1814 if (pcie_port && pci_is_express(pci_dev)) { 1815 int pos; 1816 1817 pos = pcie_endpoint_cap_init(pci_dev, 0); 1818 assert(pos > 0); 1819 1820 pos = pci_add_capability(pci_dev, PCI_CAP_ID_PM, 0, PCI_PM_SIZEOF); 1821 assert(pos > 0); 1822 1823 /* 1824 * Indicates that this function complies with revision 1.2 of the 1825 * PCI Power Management Interface Specification. 1826 */ 1827 pci_set_word(pci_dev->config + pos + PCI_PM_PMC, 0x3); 1828 } else { 1829 /* 1830 * make future invocations of pci_is_express() return false 1831 * and pci_config_size() return PCI_CONFIG_SPACE_SIZE. 1832 */ 1833 pci_dev->cap_present &= ~QEMU_PCI_CAP_EXPRESS; 1834 } 1835 1836 virtio_pci_bus_new(&proxy->bus, sizeof(proxy->bus), proxy); 1837 if (k->realize) { 1838 k->realize(proxy, errp); 1839 } 1840 } 1841 1842 static void virtio_pci_exit(PCIDevice *pci_dev) 1843 { 1844 VirtIOPCIProxy *proxy = VIRTIO_PCI(pci_dev); 1845 1846 msix_uninit_exclusive_bar(pci_dev); 1847 address_space_destroy(&proxy->modern_as); 1848 } 1849 1850 static void virtio_pci_reset(DeviceState *qdev) 1851 { 1852 VirtIOPCIProxy *proxy = VIRTIO_PCI(qdev); 1853 VirtioBusState *bus = VIRTIO_BUS(&proxy->bus); 1854 int i; 1855 1856 virtio_pci_stop_ioeventfd(proxy); 1857 virtio_bus_reset(bus); 1858 msix_unuse_all_vectors(&proxy->pci_dev); 1859 1860 for (i = 0; i < VIRTIO_QUEUE_MAX; i++) { 1861 proxy->vqs[i].enabled = 0; 1862 } 1863 } 1864 1865 static Property virtio_pci_properties[] = { 1866 DEFINE_PROP_BIT("virtio-pci-bus-master-bug-migration", VirtIOPCIProxy, flags, 1867 VIRTIO_PCI_FLAG_BUS_MASTER_BUG_MIGRATION_BIT, false), 1868 DEFINE_PROP_ON_OFF_AUTO("disable-legacy", VirtIOPCIProxy, disable_legacy, 1869 ON_OFF_AUTO_AUTO), 1870 DEFINE_PROP_BOOL("disable-modern", VirtIOPCIProxy, disable_modern, false), 1871 DEFINE_PROP_BIT("migrate-extra", VirtIOPCIProxy, flags, 1872 VIRTIO_PCI_FLAG_MIGRATE_EXTRA_BIT, true), 1873 DEFINE_PROP_BIT("modern-pio-notify", VirtIOPCIProxy, flags, 1874 VIRTIO_PCI_FLAG_MODERN_PIO_NOTIFY_BIT, false), 1875 DEFINE_PROP_BIT("x-disable-pcie", VirtIOPCIProxy, flags, 1876 VIRTIO_PCI_FLAG_DISABLE_PCIE_BIT, false), 1877 DEFINE_PROP_BIT("page-per-vq", VirtIOPCIProxy, flags, 1878 VIRTIO_PCI_FLAG_PAGE_PER_VQ_BIT, false), 1879 DEFINE_PROP_END_OF_LIST(), 1880 }; 1881 1882 static void virtio_pci_dc_realize(DeviceState *qdev, Error **errp) 1883 { 1884 VirtioPCIClass *vpciklass = VIRTIO_PCI_GET_CLASS(qdev); 1885 VirtIOPCIProxy *proxy = VIRTIO_PCI(qdev); 1886 PCIDevice *pci_dev = &proxy->pci_dev; 1887 1888 if (!(proxy->flags & VIRTIO_PCI_FLAG_DISABLE_PCIE) && 1889 virtio_pci_modern(proxy)) { 1890 pci_dev->cap_present |= QEMU_PCI_CAP_EXPRESS; 1891 } 1892 1893 vpciklass->parent_dc_realize(qdev, errp); 1894 } 1895 1896 static void virtio_pci_class_init(ObjectClass *klass, void *data) 1897 { 1898 DeviceClass *dc = DEVICE_CLASS(klass); 1899 PCIDeviceClass *k = PCI_DEVICE_CLASS(klass); 1900 VirtioPCIClass *vpciklass = VIRTIO_PCI_CLASS(klass); 1901 1902 dc->props = virtio_pci_properties; 1903 k->realize = virtio_pci_realize; 1904 k->exit = virtio_pci_exit; 1905 k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 1906 k->revision = VIRTIO_PCI_ABI_VERSION; 1907 k->class_id = PCI_CLASS_OTHERS; 1908 vpciklass->parent_dc_realize = dc->realize; 1909 dc->realize = virtio_pci_dc_realize; 1910 dc->reset = virtio_pci_reset; 1911 } 1912 1913 static const TypeInfo virtio_pci_info = { 1914 .name = TYPE_VIRTIO_PCI, 1915 .parent = TYPE_PCI_DEVICE, 1916 .instance_size = sizeof(VirtIOPCIProxy), 1917 .class_init = virtio_pci_class_init, 1918 .class_size = sizeof(VirtioPCIClass), 1919 .abstract = true, 1920 }; 1921 1922 /* virtio-blk-pci */ 1923 1924 static Property virtio_blk_pci_properties[] = { 1925 DEFINE_PROP_UINT32("class", VirtIOPCIProxy, class_code, 0), 1926 DEFINE_PROP_BIT("ioeventfd", VirtIOPCIProxy, flags, 1927 VIRTIO_PCI_FLAG_USE_IOEVENTFD_BIT, true), 1928 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 2), 1929 DEFINE_PROP_END_OF_LIST(), 1930 }; 1931 1932 static void virtio_blk_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 1933 { 1934 VirtIOBlkPCI *dev = VIRTIO_BLK_PCI(vpci_dev); 1935 DeviceState *vdev = DEVICE(&dev->vdev); 1936 1937 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 1938 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 1939 } 1940 1941 static void virtio_blk_pci_class_init(ObjectClass *klass, void *data) 1942 { 1943 DeviceClass *dc = DEVICE_CLASS(klass); 1944 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 1945 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 1946 1947 set_bit(DEVICE_CATEGORY_STORAGE, dc->categories); 1948 dc->props = virtio_blk_pci_properties; 1949 k->realize = virtio_blk_pci_realize; 1950 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 1951 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_BLOCK; 1952 pcidev_k->revision = VIRTIO_PCI_ABI_VERSION; 1953 pcidev_k->class_id = PCI_CLASS_STORAGE_SCSI; 1954 } 1955 1956 static void virtio_blk_pci_instance_init(Object *obj) 1957 { 1958 VirtIOBlkPCI *dev = VIRTIO_BLK_PCI(obj); 1959 1960 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 1961 TYPE_VIRTIO_BLK); 1962 object_property_add_alias(obj, "iothread", OBJECT(&dev->vdev),"iothread", 1963 &error_abort); 1964 object_property_add_alias(obj, "bootindex", OBJECT(&dev->vdev), 1965 "bootindex", &error_abort); 1966 } 1967 1968 static const TypeInfo virtio_blk_pci_info = { 1969 .name = TYPE_VIRTIO_BLK_PCI, 1970 .parent = TYPE_VIRTIO_PCI, 1971 .instance_size = sizeof(VirtIOBlkPCI), 1972 .instance_init = virtio_blk_pci_instance_init, 1973 .class_init = virtio_blk_pci_class_init, 1974 }; 1975 1976 /* virtio-scsi-pci */ 1977 1978 static Property virtio_scsi_pci_properties[] = { 1979 DEFINE_PROP_BIT("ioeventfd", VirtIOPCIProxy, flags, 1980 VIRTIO_PCI_FLAG_USE_IOEVENTFD_BIT, true), 1981 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 1982 DEV_NVECTORS_UNSPECIFIED), 1983 DEFINE_PROP_END_OF_LIST(), 1984 }; 1985 1986 static void virtio_scsi_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 1987 { 1988 VirtIOSCSIPCI *dev = VIRTIO_SCSI_PCI(vpci_dev); 1989 DeviceState *vdev = DEVICE(&dev->vdev); 1990 VirtIOSCSICommon *vs = VIRTIO_SCSI_COMMON(vdev); 1991 DeviceState *proxy = DEVICE(vpci_dev); 1992 char *bus_name; 1993 1994 if (vpci_dev->nvectors == DEV_NVECTORS_UNSPECIFIED) { 1995 vpci_dev->nvectors = vs->conf.num_queues + 3; 1996 } 1997 1998 /* 1999 * For command line compatibility, this sets the virtio-scsi-device bus 2000 * name as before. 2001 */ 2002 if (proxy->id) { 2003 bus_name = g_strdup_printf("%s.0", proxy->id); 2004 virtio_device_set_child_bus_name(VIRTIO_DEVICE(vdev), bus_name); 2005 g_free(bus_name); 2006 } 2007 2008 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2009 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2010 } 2011 2012 static void virtio_scsi_pci_class_init(ObjectClass *klass, void *data) 2013 { 2014 DeviceClass *dc = DEVICE_CLASS(klass); 2015 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2016 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2017 2018 k->realize = virtio_scsi_pci_realize; 2019 set_bit(DEVICE_CATEGORY_STORAGE, dc->categories); 2020 dc->props = virtio_scsi_pci_properties; 2021 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2022 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_SCSI; 2023 pcidev_k->revision = 0x00; 2024 pcidev_k->class_id = PCI_CLASS_STORAGE_SCSI; 2025 } 2026 2027 static void virtio_scsi_pci_instance_init(Object *obj) 2028 { 2029 VirtIOSCSIPCI *dev = VIRTIO_SCSI_PCI(obj); 2030 2031 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2032 TYPE_VIRTIO_SCSI); 2033 object_property_add_alias(obj, "iothread", OBJECT(&dev->vdev), "iothread", 2034 &error_abort); 2035 } 2036 2037 static const TypeInfo virtio_scsi_pci_info = { 2038 .name = TYPE_VIRTIO_SCSI_PCI, 2039 .parent = TYPE_VIRTIO_PCI, 2040 .instance_size = sizeof(VirtIOSCSIPCI), 2041 .instance_init = virtio_scsi_pci_instance_init, 2042 .class_init = virtio_scsi_pci_class_init, 2043 }; 2044 2045 /* vhost-scsi-pci */ 2046 2047 #ifdef CONFIG_VHOST_SCSI 2048 static Property vhost_scsi_pci_properties[] = { 2049 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 2050 DEV_NVECTORS_UNSPECIFIED), 2051 DEFINE_PROP_END_OF_LIST(), 2052 }; 2053 2054 static void vhost_scsi_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2055 { 2056 VHostSCSIPCI *dev = VHOST_SCSI_PCI(vpci_dev); 2057 DeviceState *vdev = DEVICE(&dev->vdev); 2058 VirtIOSCSICommon *vs = VIRTIO_SCSI_COMMON(vdev); 2059 2060 if (vpci_dev->nvectors == DEV_NVECTORS_UNSPECIFIED) { 2061 vpci_dev->nvectors = vs->conf.num_queues + 3; 2062 } 2063 2064 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2065 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2066 } 2067 2068 static void vhost_scsi_pci_class_init(ObjectClass *klass, void *data) 2069 { 2070 DeviceClass *dc = DEVICE_CLASS(klass); 2071 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2072 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2073 k->realize = vhost_scsi_pci_realize; 2074 set_bit(DEVICE_CATEGORY_STORAGE, dc->categories); 2075 dc->props = vhost_scsi_pci_properties; 2076 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2077 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_SCSI; 2078 pcidev_k->revision = 0x00; 2079 pcidev_k->class_id = PCI_CLASS_STORAGE_SCSI; 2080 } 2081 2082 static void vhost_scsi_pci_instance_init(Object *obj) 2083 { 2084 VHostSCSIPCI *dev = VHOST_SCSI_PCI(obj); 2085 2086 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2087 TYPE_VHOST_SCSI); 2088 object_property_add_alias(obj, "bootindex", OBJECT(&dev->vdev), 2089 "bootindex", &error_abort); 2090 } 2091 2092 static const TypeInfo vhost_scsi_pci_info = { 2093 .name = TYPE_VHOST_SCSI_PCI, 2094 .parent = TYPE_VIRTIO_PCI, 2095 .instance_size = sizeof(VHostSCSIPCI), 2096 .instance_init = vhost_scsi_pci_instance_init, 2097 .class_init = vhost_scsi_pci_class_init, 2098 }; 2099 #endif 2100 2101 /* vhost-vsock-pci */ 2102 2103 #ifdef CONFIG_VHOST_VSOCK 2104 static Property vhost_vsock_pci_properties[] = { 2105 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 3), 2106 DEFINE_PROP_END_OF_LIST(), 2107 }; 2108 2109 static void vhost_vsock_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2110 { 2111 VHostVSockPCI *dev = VHOST_VSOCK_PCI(vpci_dev); 2112 DeviceState *vdev = DEVICE(&dev->vdev); 2113 2114 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2115 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2116 } 2117 2118 static void vhost_vsock_pci_class_init(ObjectClass *klass, void *data) 2119 { 2120 DeviceClass *dc = DEVICE_CLASS(klass); 2121 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2122 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2123 k->realize = vhost_vsock_pci_realize; 2124 set_bit(DEVICE_CATEGORY_MISC, dc->categories); 2125 dc->props = vhost_vsock_pci_properties; 2126 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2127 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_VSOCK; 2128 pcidev_k->revision = 0x00; 2129 pcidev_k->class_id = PCI_CLASS_COMMUNICATION_OTHER; 2130 } 2131 2132 static void vhost_vsock_pci_instance_init(Object *obj) 2133 { 2134 VHostVSockPCI *dev = VHOST_VSOCK_PCI(obj); 2135 2136 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2137 TYPE_VHOST_VSOCK); 2138 } 2139 2140 static const TypeInfo vhost_vsock_pci_info = { 2141 .name = TYPE_VHOST_VSOCK_PCI, 2142 .parent = TYPE_VIRTIO_PCI, 2143 .instance_size = sizeof(VHostVSockPCI), 2144 .instance_init = vhost_vsock_pci_instance_init, 2145 .class_init = vhost_vsock_pci_class_init, 2146 }; 2147 #endif 2148 2149 /* virtio-balloon-pci */ 2150 2151 static Property virtio_balloon_pci_properties[] = { 2152 DEFINE_PROP_UINT32("class", VirtIOPCIProxy, class_code, 0), 2153 DEFINE_PROP_END_OF_LIST(), 2154 }; 2155 2156 static void virtio_balloon_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2157 { 2158 VirtIOBalloonPCI *dev = VIRTIO_BALLOON_PCI(vpci_dev); 2159 DeviceState *vdev = DEVICE(&dev->vdev); 2160 2161 if (vpci_dev->class_code != PCI_CLASS_OTHERS && 2162 vpci_dev->class_code != PCI_CLASS_MEMORY_RAM) { /* qemu < 1.1 */ 2163 vpci_dev->class_code = PCI_CLASS_OTHERS; 2164 } 2165 2166 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2167 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2168 } 2169 2170 static void virtio_balloon_pci_class_init(ObjectClass *klass, void *data) 2171 { 2172 DeviceClass *dc = DEVICE_CLASS(klass); 2173 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2174 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2175 k->realize = virtio_balloon_pci_realize; 2176 set_bit(DEVICE_CATEGORY_MISC, dc->categories); 2177 dc->props = virtio_balloon_pci_properties; 2178 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2179 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_BALLOON; 2180 pcidev_k->revision = VIRTIO_PCI_ABI_VERSION; 2181 pcidev_k->class_id = PCI_CLASS_OTHERS; 2182 } 2183 2184 static void virtio_balloon_pci_instance_init(Object *obj) 2185 { 2186 VirtIOBalloonPCI *dev = VIRTIO_BALLOON_PCI(obj); 2187 2188 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2189 TYPE_VIRTIO_BALLOON); 2190 object_property_add_alias(obj, "guest-stats", OBJECT(&dev->vdev), 2191 "guest-stats", &error_abort); 2192 object_property_add_alias(obj, "guest-stats-polling-interval", 2193 OBJECT(&dev->vdev), 2194 "guest-stats-polling-interval", &error_abort); 2195 } 2196 2197 static const TypeInfo virtio_balloon_pci_info = { 2198 .name = TYPE_VIRTIO_BALLOON_PCI, 2199 .parent = TYPE_VIRTIO_PCI, 2200 .instance_size = sizeof(VirtIOBalloonPCI), 2201 .instance_init = virtio_balloon_pci_instance_init, 2202 .class_init = virtio_balloon_pci_class_init, 2203 }; 2204 2205 /* virtio-serial-pci */ 2206 2207 static void virtio_serial_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2208 { 2209 VirtIOSerialPCI *dev = VIRTIO_SERIAL_PCI(vpci_dev); 2210 DeviceState *vdev = DEVICE(&dev->vdev); 2211 DeviceState *proxy = DEVICE(vpci_dev); 2212 char *bus_name; 2213 2214 if (vpci_dev->class_code != PCI_CLASS_COMMUNICATION_OTHER && 2215 vpci_dev->class_code != PCI_CLASS_DISPLAY_OTHER && /* qemu 0.10 */ 2216 vpci_dev->class_code != PCI_CLASS_OTHERS) { /* qemu-kvm */ 2217 vpci_dev->class_code = PCI_CLASS_COMMUNICATION_OTHER; 2218 } 2219 2220 /* backwards-compatibility with machines that were created with 2221 DEV_NVECTORS_UNSPECIFIED */ 2222 if (vpci_dev->nvectors == DEV_NVECTORS_UNSPECIFIED) { 2223 vpci_dev->nvectors = dev->vdev.serial.max_virtserial_ports + 1; 2224 } 2225 2226 /* 2227 * For command line compatibility, this sets the virtio-serial-device bus 2228 * name as before. 2229 */ 2230 if (proxy->id) { 2231 bus_name = g_strdup_printf("%s.0", proxy->id); 2232 virtio_device_set_child_bus_name(VIRTIO_DEVICE(vdev), bus_name); 2233 g_free(bus_name); 2234 } 2235 2236 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2237 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2238 } 2239 2240 static Property virtio_serial_pci_properties[] = { 2241 DEFINE_PROP_BIT("ioeventfd", VirtIOPCIProxy, flags, 2242 VIRTIO_PCI_FLAG_USE_IOEVENTFD_BIT, true), 2243 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 2), 2244 DEFINE_PROP_UINT32("class", VirtIOPCIProxy, class_code, 0), 2245 DEFINE_PROP_END_OF_LIST(), 2246 }; 2247 2248 static void virtio_serial_pci_class_init(ObjectClass *klass, void *data) 2249 { 2250 DeviceClass *dc = DEVICE_CLASS(klass); 2251 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2252 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2253 k->realize = virtio_serial_pci_realize; 2254 set_bit(DEVICE_CATEGORY_INPUT, dc->categories); 2255 dc->props = virtio_serial_pci_properties; 2256 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2257 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_CONSOLE; 2258 pcidev_k->revision = VIRTIO_PCI_ABI_VERSION; 2259 pcidev_k->class_id = PCI_CLASS_COMMUNICATION_OTHER; 2260 } 2261 2262 static void virtio_serial_pci_instance_init(Object *obj) 2263 { 2264 VirtIOSerialPCI *dev = VIRTIO_SERIAL_PCI(obj); 2265 2266 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2267 TYPE_VIRTIO_SERIAL); 2268 } 2269 2270 static const TypeInfo virtio_serial_pci_info = { 2271 .name = TYPE_VIRTIO_SERIAL_PCI, 2272 .parent = TYPE_VIRTIO_PCI, 2273 .instance_size = sizeof(VirtIOSerialPCI), 2274 .instance_init = virtio_serial_pci_instance_init, 2275 .class_init = virtio_serial_pci_class_init, 2276 }; 2277 2278 /* virtio-net-pci */ 2279 2280 static Property virtio_net_properties[] = { 2281 DEFINE_PROP_BIT("ioeventfd", VirtIOPCIProxy, flags, 2282 VIRTIO_PCI_FLAG_USE_IOEVENTFD_BIT, false), 2283 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 3), 2284 DEFINE_PROP_END_OF_LIST(), 2285 }; 2286 2287 static void virtio_net_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2288 { 2289 DeviceState *qdev = DEVICE(vpci_dev); 2290 VirtIONetPCI *dev = VIRTIO_NET_PCI(vpci_dev); 2291 DeviceState *vdev = DEVICE(&dev->vdev); 2292 2293 virtio_net_set_netclient_name(&dev->vdev, qdev->id, 2294 object_get_typename(OBJECT(qdev))); 2295 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2296 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2297 } 2298 2299 static void virtio_net_pci_class_init(ObjectClass *klass, void *data) 2300 { 2301 DeviceClass *dc = DEVICE_CLASS(klass); 2302 PCIDeviceClass *k = PCI_DEVICE_CLASS(klass); 2303 VirtioPCIClass *vpciklass = VIRTIO_PCI_CLASS(klass); 2304 2305 k->romfile = "efi-virtio.rom"; 2306 k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2307 k->device_id = PCI_DEVICE_ID_VIRTIO_NET; 2308 k->revision = VIRTIO_PCI_ABI_VERSION; 2309 k->class_id = PCI_CLASS_NETWORK_ETHERNET; 2310 set_bit(DEVICE_CATEGORY_NETWORK, dc->categories); 2311 dc->props = virtio_net_properties; 2312 vpciklass->realize = virtio_net_pci_realize; 2313 } 2314 2315 static void virtio_net_pci_instance_init(Object *obj) 2316 { 2317 VirtIONetPCI *dev = VIRTIO_NET_PCI(obj); 2318 2319 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2320 TYPE_VIRTIO_NET); 2321 object_property_add_alias(obj, "bootindex", OBJECT(&dev->vdev), 2322 "bootindex", &error_abort); 2323 } 2324 2325 static const TypeInfo virtio_net_pci_info = { 2326 .name = TYPE_VIRTIO_NET_PCI, 2327 .parent = TYPE_VIRTIO_PCI, 2328 .instance_size = sizeof(VirtIONetPCI), 2329 .instance_init = virtio_net_pci_instance_init, 2330 .class_init = virtio_net_pci_class_init, 2331 }; 2332 2333 /* virtio-rng-pci */ 2334 2335 static void virtio_rng_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2336 { 2337 VirtIORngPCI *vrng = VIRTIO_RNG_PCI(vpci_dev); 2338 DeviceState *vdev = DEVICE(&vrng->vdev); 2339 Error *err = NULL; 2340 2341 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2342 object_property_set_bool(OBJECT(vdev), true, "realized", &err); 2343 if (err) { 2344 error_propagate(errp, err); 2345 return; 2346 } 2347 2348 object_property_set_link(OBJECT(vrng), 2349 OBJECT(vrng->vdev.conf.rng), "rng", 2350 NULL); 2351 } 2352 2353 static void virtio_rng_pci_class_init(ObjectClass *klass, void *data) 2354 { 2355 DeviceClass *dc = DEVICE_CLASS(klass); 2356 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2357 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2358 2359 k->realize = virtio_rng_pci_realize; 2360 set_bit(DEVICE_CATEGORY_MISC, dc->categories); 2361 2362 pcidev_k->vendor_id = PCI_VENDOR_ID_REDHAT_QUMRANET; 2363 pcidev_k->device_id = PCI_DEVICE_ID_VIRTIO_RNG; 2364 pcidev_k->revision = VIRTIO_PCI_ABI_VERSION; 2365 pcidev_k->class_id = PCI_CLASS_OTHERS; 2366 } 2367 2368 static void virtio_rng_initfn(Object *obj) 2369 { 2370 VirtIORngPCI *dev = VIRTIO_RNG_PCI(obj); 2371 2372 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2373 TYPE_VIRTIO_RNG); 2374 object_property_add_alias(obj, "rng", OBJECT(&dev->vdev), "rng", 2375 &error_abort); 2376 } 2377 2378 static const TypeInfo virtio_rng_pci_info = { 2379 .name = TYPE_VIRTIO_RNG_PCI, 2380 .parent = TYPE_VIRTIO_PCI, 2381 .instance_size = sizeof(VirtIORngPCI), 2382 .instance_init = virtio_rng_initfn, 2383 .class_init = virtio_rng_pci_class_init, 2384 }; 2385 2386 /* virtio-input-pci */ 2387 2388 static Property virtio_input_pci_properties[] = { 2389 DEFINE_PROP_UINT32("vectors", VirtIOPCIProxy, nvectors, 2), 2390 DEFINE_PROP_END_OF_LIST(), 2391 }; 2392 2393 static void virtio_input_pci_realize(VirtIOPCIProxy *vpci_dev, Error **errp) 2394 { 2395 VirtIOInputPCI *vinput = VIRTIO_INPUT_PCI(vpci_dev); 2396 DeviceState *vdev = DEVICE(&vinput->vdev); 2397 2398 qdev_set_parent_bus(vdev, BUS(&vpci_dev->bus)); 2399 virtio_pci_force_virtio_1(vpci_dev); 2400 object_property_set_bool(OBJECT(vdev), true, "realized", errp); 2401 } 2402 2403 static void virtio_input_pci_class_init(ObjectClass *klass, void *data) 2404 { 2405 DeviceClass *dc = DEVICE_CLASS(klass); 2406 VirtioPCIClass *k = VIRTIO_PCI_CLASS(klass); 2407 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2408 2409 dc->props = virtio_input_pci_properties; 2410 k->realize = virtio_input_pci_realize; 2411 set_bit(DEVICE_CATEGORY_INPUT, dc->categories); 2412 2413 pcidev_k->class_id = PCI_CLASS_INPUT_OTHER; 2414 } 2415 2416 static void virtio_input_hid_kbd_pci_class_init(ObjectClass *klass, void *data) 2417 { 2418 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2419 2420 pcidev_k->class_id = PCI_CLASS_INPUT_KEYBOARD; 2421 } 2422 2423 static void virtio_input_hid_mouse_pci_class_init(ObjectClass *klass, 2424 void *data) 2425 { 2426 PCIDeviceClass *pcidev_k = PCI_DEVICE_CLASS(klass); 2427 2428 pcidev_k->class_id = PCI_CLASS_INPUT_MOUSE; 2429 } 2430 2431 static void virtio_keyboard_initfn(Object *obj) 2432 { 2433 VirtIOInputHIDPCI *dev = VIRTIO_INPUT_HID_PCI(obj); 2434 2435 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2436 TYPE_VIRTIO_KEYBOARD); 2437 } 2438 2439 static void virtio_mouse_initfn(Object *obj) 2440 { 2441 VirtIOInputHIDPCI *dev = VIRTIO_INPUT_HID_PCI(obj); 2442 2443 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2444 TYPE_VIRTIO_MOUSE); 2445 } 2446 2447 static void virtio_tablet_initfn(Object *obj) 2448 { 2449 VirtIOInputHIDPCI *dev = VIRTIO_INPUT_HID_PCI(obj); 2450 2451 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2452 TYPE_VIRTIO_TABLET); 2453 } 2454 2455 static const TypeInfo virtio_input_pci_info = { 2456 .name = TYPE_VIRTIO_INPUT_PCI, 2457 .parent = TYPE_VIRTIO_PCI, 2458 .instance_size = sizeof(VirtIOInputPCI), 2459 .class_init = virtio_input_pci_class_init, 2460 .abstract = true, 2461 }; 2462 2463 static const TypeInfo virtio_input_hid_pci_info = { 2464 .name = TYPE_VIRTIO_INPUT_HID_PCI, 2465 .parent = TYPE_VIRTIO_INPUT_PCI, 2466 .instance_size = sizeof(VirtIOInputHIDPCI), 2467 .abstract = true, 2468 }; 2469 2470 static const TypeInfo virtio_keyboard_pci_info = { 2471 .name = TYPE_VIRTIO_KEYBOARD_PCI, 2472 .parent = TYPE_VIRTIO_INPUT_HID_PCI, 2473 .class_init = virtio_input_hid_kbd_pci_class_init, 2474 .instance_size = sizeof(VirtIOInputHIDPCI), 2475 .instance_init = virtio_keyboard_initfn, 2476 }; 2477 2478 static const TypeInfo virtio_mouse_pci_info = { 2479 .name = TYPE_VIRTIO_MOUSE_PCI, 2480 .parent = TYPE_VIRTIO_INPUT_HID_PCI, 2481 .class_init = virtio_input_hid_mouse_pci_class_init, 2482 .instance_size = sizeof(VirtIOInputHIDPCI), 2483 .instance_init = virtio_mouse_initfn, 2484 }; 2485 2486 static const TypeInfo virtio_tablet_pci_info = { 2487 .name = TYPE_VIRTIO_TABLET_PCI, 2488 .parent = TYPE_VIRTIO_INPUT_HID_PCI, 2489 .instance_size = sizeof(VirtIOInputHIDPCI), 2490 .instance_init = virtio_tablet_initfn, 2491 }; 2492 2493 #ifdef CONFIG_LINUX 2494 static void virtio_host_initfn(Object *obj) 2495 { 2496 VirtIOInputHostPCI *dev = VIRTIO_INPUT_HOST_PCI(obj); 2497 2498 virtio_instance_init_common(obj, &dev->vdev, sizeof(dev->vdev), 2499 TYPE_VIRTIO_INPUT_HOST); 2500 } 2501 2502 static const TypeInfo virtio_host_pci_info = { 2503 .name = TYPE_VIRTIO_INPUT_HOST_PCI, 2504 .parent = TYPE_VIRTIO_INPUT_PCI, 2505 .instance_size = sizeof(VirtIOInputHostPCI), 2506 .instance_init = virtio_host_initfn, 2507 }; 2508 #endif 2509 2510 /* virtio-pci-bus */ 2511 2512 static void virtio_pci_bus_new(VirtioBusState *bus, size_t bus_size, 2513 VirtIOPCIProxy *dev) 2514 { 2515 DeviceState *qdev = DEVICE(dev); 2516 char virtio_bus_name[] = "virtio-bus"; 2517 2518 qbus_create_inplace(bus, bus_size, TYPE_VIRTIO_PCI_BUS, qdev, 2519 virtio_bus_name); 2520 } 2521 2522 static void virtio_pci_bus_class_init(ObjectClass *klass, void *data) 2523 { 2524 BusClass *bus_class = BUS_CLASS(klass); 2525 VirtioBusClass *k = VIRTIO_BUS_CLASS(klass); 2526 bus_class->max_dev = 1; 2527 k->notify = virtio_pci_notify; 2528 k->save_config = virtio_pci_save_config; 2529 k->load_config = virtio_pci_load_config; 2530 k->save_queue = virtio_pci_save_queue; 2531 k->load_queue = virtio_pci_load_queue; 2532 k->save_extra_state = virtio_pci_save_extra_state; 2533 k->load_extra_state = virtio_pci_load_extra_state; 2534 k->has_extra_state = virtio_pci_has_extra_state; 2535 k->query_guest_notifiers = virtio_pci_query_guest_notifiers; 2536 k->set_guest_notifiers = virtio_pci_set_guest_notifiers; 2537 k->vmstate_change = virtio_pci_vmstate_change; 2538 k->pre_plugged = virtio_pci_pre_plugged; 2539 k->device_plugged = virtio_pci_device_plugged; 2540 k->device_unplugged = virtio_pci_device_unplugged; 2541 k->query_nvectors = virtio_pci_query_nvectors; 2542 k->ioeventfd_started = virtio_pci_ioeventfd_started; 2543 k->ioeventfd_set_started = virtio_pci_ioeventfd_set_started; 2544 k->ioeventfd_disabled = virtio_pci_ioeventfd_disabled; 2545 k->ioeventfd_set_disabled = virtio_pci_ioeventfd_set_disabled; 2546 k->ioeventfd_assign = virtio_pci_ioeventfd_assign; 2547 } 2548 2549 static const TypeInfo virtio_pci_bus_info = { 2550 .name = TYPE_VIRTIO_PCI_BUS, 2551 .parent = TYPE_VIRTIO_BUS, 2552 .instance_size = sizeof(VirtioPCIBusState), 2553 .class_init = virtio_pci_bus_class_init, 2554 }; 2555 2556 static void virtio_pci_register_types(void) 2557 { 2558 type_register_static(&virtio_rng_pci_info); 2559 type_register_static(&virtio_input_pci_info); 2560 type_register_static(&virtio_input_hid_pci_info); 2561 type_register_static(&virtio_keyboard_pci_info); 2562 type_register_static(&virtio_mouse_pci_info); 2563 type_register_static(&virtio_tablet_pci_info); 2564 #ifdef CONFIG_LINUX 2565 type_register_static(&virtio_host_pci_info); 2566 #endif 2567 type_register_static(&virtio_pci_bus_info); 2568 type_register_static(&virtio_pci_info); 2569 #ifdef CONFIG_VIRTFS 2570 type_register_static(&virtio_9p_pci_info); 2571 #endif 2572 type_register_static(&virtio_blk_pci_info); 2573 type_register_static(&virtio_scsi_pci_info); 2574 type_register_static(&virtio_balloon_pci_info); 2575 type_register_static(&virtio_serial_pci_info); 2576 type_register_static(&virtio_net_pci_info); 2577 #ifdef CONFIG_VHOST_SCSI 2578 type_register_static(&vhost_scsi_pci_info); 2579 #endif 2580 #ifdef CONFIG_VHOST_VSOCK 2581 type_register_static(&vhost_vsock_pci_info); 2582 #endif 2583 } 2584 2585 type_init(virtio_pci_register_types) 2586