1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Virtio PCI driver - common functionality for all device versions 4 * 5 * This module allows virtio devices to be used over a virtual PCI device. 6 * This can be used with QEMU based VMMs like KVM or Xen. 7 * 8 * Copyright IBM Corp. 2007 9 * Copyright Red Hat, Inc. 2014 10 * 11 * Authors: 12 * Anthony Liguori <aliguori@us.ibm.com> 13 * Rusty Russell <rusty@rustcorp.com.au> 14 * Michael S. Tsirkin <mst@redhat.com> 15 */ 16 17 #include "virtio_pci_common.h" 18 19 static bool force_legacy = false; 20 21 #if IS_ENABLED(CONFIG_VIRTIO_PCI_LEGACY) 22 module_param(force_legacy, bool, 0444); 23 MODULE_PARM_DESC(force_legacy, 24 "Force legacy mode for transitional virtio 1 devices"); 25 #endif 26 27 /* wait for pending irq handlers */ 28 void vp_synchronize_vectors(struct virtio_device *vdev) 29 { 30 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 31 int i; 32 33 if (vp_dev->intx_enabled) 34 synchronize_irq(vp_dev->pci_dev->irq); 35 36 for (i = 0; i < vp_dev->msix_vectors; ++i) 37 synchronize_irq(pci_irq_vector(vp_dev->pci_dev, i)); 38 } 39 40 /* the notify function used when creating a virt queue */ 41 bool vp_notify(struct virtqueue *vq) 42 { 43 /* we write the queue's selector into the notification register to 44 * signal the other end */ 45 iowrite16(vq->index, (void __iomem *)vq->priv); 46 return true; 47 } 48 49 /* Notify all slow path virtqueues on an interrupt. */ 50 static void vp_vring_slow_path_interrupt(int irq, 51 struct virtio_pci_device *vp_dev) 52 { 53 struct virtio_pci_vq_info *info; 54 unsigned long flags; 55 56 spin_lock_irqsave(&vp_dev->lock, flags); 57 list_for_each_entry(info, &vp_dev->slow_virtqueues, node) 58 vring_interrupt(irq, info->vq); 59 spin_unlock_irqrestore(&vp_dev->lock, flags); 60 } 61 62 /* Handle a configuration change: Tell driver if it wants to know. */ 63 static irqreturn_t vp_config_changed(int irq, void *opaque) 64 { 65 struct virtio_pci_device *vp_dev = opaque; 66 67 virtio_config_changed(&vp_dev->vdev); 68 vp_vring_slow_path_interrupt(irq, vp_dev); 69 return IRQ_HANDLED; 70 } 71 72 /* Notify all virtqueues on an interrupt. */ 73 static irqreturn_t vp_vring_interrupt(int irq, void *opaque) 74 { 75 struct virtio_pci_device *vp_dev = opaque; 76 struct virtio_pci_vq_info *info; 77 irqreturn_t ret = IRQ_NONE; 78 unsigned long flags; 79 80 spin_lock_irqsave(&vp_dev->lock, flags); 81 list_for_each_entry(info, &vp_dev->virtqueues, node) { 82 if (vring_interrupt(irq, info->vq) == IRQ_HANDLED) 83 ret = IRQ_HANDLED; 84 } 85 spin_unlock_irqrestore(&vp_dev->lock, flags); 86 87 return ret; 88 } 89 90 /* A small wrapper to also acknowledge the interrupt when it's handled. 91 * I really need an EIO hook for the vring so I can ack the interrupt once we 92 * know that we'll be handling the IRQ but before we invoke the callback since 93 * the callback may notify the host which results in the host attempting to 94 * raise an interrupt that we would then mask once we acknowledged the 95 * interrupt. */ 96 static irqreturn_t vp_interrupt(int irq, void *opaque) 97 { 98 struct virtio_pci_device *vp_dev = opaque; 99 u8 isr; 100 101 /* reading the ISR has the effect of also clearing it so it's very 102 * important to save off the value. */ 103 isr = ioread8(vp_dev->isr); 104 105 /* It's definitely not us if the ISR was not high */ 106 if (!isr) 107 return IRQ_NONE; 108 109 /* Configuration change? Tell driver if it wants to know. */ 110 if (isr & VIRTIO_PCI_ISR_CONFIG) 111 vp_config_changed(irq, opaque); 112 113 return vp_vring_interrupt(irq, opaque); 114 } 115 116 static int vp_request_msix_vectors(struct virtio_device *vdev, int nvectors, 117 bool per_vq_vectors, struct irq_affinity *desc) 118 { 119 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 120 const char *name = dev_name(&vp_dev->vdev.dev); 121 unsigned int flags = PCI_IRQ_MSIX; 122 unsigned int i, v; 123 int err = -ENOMEM; 124 125 vp_dev->msix_vectors = nvectors; 126 127 vp_dev->msix_names = kmalloc_array(nvectors, 128 sizeof(*vp_dev->msix_names), 129 GFP_KERNEL); 130 if (!vp_dev->msix_names) 131 goto error; 132 vp_dev->msix_affinity_masks 133 = kcalloc(nvectors, sizeof(*vp_dev->msix_affinity_masks), 134 GFP_KERNEL); 135 if (!vp_dev->msix_affinity_masks) 136 goto error; 137 for (i = 0; i < nvectors; ++i) 138 if (!alloc_cpumask_var(&vp_dev->msix_affinity_masks[i], 139 GFP_KERNEL)) 140 goto error; 141 142 if (!per_vq_vectors) 143 desc = NULL; 144 145 if (desc) { 146 flags |= PCI_IRQ_AFFINITY; 147 desc->pre_vectors++; /* virtio config vector */ 148 } 149 150 err = pci_alloc_irq_vectors_affinity(vp_dev->pci_dev, nvectors, 151 nvectors, flags, desc); 152 if (err < 0) 153 goto error; 154 vp_dev->msix_enabled = 1; 155 156 /* Set the vector used for configuration */ 157 v = vp_dev->msix_used_vectors; 158 snprintf(vp_dev->msix_names[v], sizeof *vp_dev->msix_names, 159 "%s-config", name); 160 err = request_irq(pci_irq_vector(vp_dev->pci_dev, v), 161 vp_config_changed, 0, vp_dev->msix_names[v], 162 vp_dev); 163 if (err) 164 goto error; 165 ++vp_dev->msix_used_vectors; 166 167 v = vp_dev->config_vector(vp_dev, v); 168 /* Verify we had enough resources to assign the vector */ 169 if (v == VIRTIO_MSI_NO_VECTOR) { 170 err = -EBUSY; 171 goto error; 172 } 173 174 if (!per_vq_vectors) { 175 /* Shared vector for all VQs */ 176 v = vp_dev->msix_used_vectors; 177 snprintf(vp_dev->msix_names[v], sizeof *vp_dev->msix_names, 178 "%s-virtqueues", name); 179 err = request_irq(pci_irq_vector(vp_dev->pci_dev, v), 180 vp_vring_interrupt, 0, vp_dev->msix_names[v], 181 vp_dev); 182 if (err) 183 goto error; 184 ++vp_dev->msix_used_vectors; 185 } 186 return 0; 187 error: 188 return err; 189 } 190 191 static bool vp_is_slow_path_vector(u16 msix_vec) 192 { 193 return msix_vec == VP_MSIX_CONFIG_VECTOR; 194 } 195 196 static struct virtqueue *vp_setup_vq(struct virtio_device *vdev, unsigned int index, 197 void (*callback)(struct virtqueue *vq), 198 const char *name, 199 bool ctx, 200 u16 msix_vec, 201 struct virtio_pci_vq_info **p_info) 202 { 203 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 204 struct virtio_pci_vq_info *info = kmalloc(sizeof *info, GFP_KERNEL); 205 struct virtqueue *vq; 206 unsigned long flags; 207 208 /* fill out our structure that represents an active queue */ 209 if (!info) 210 return ERR_PTR(-ENOMEM); 211 212 vq = vp_dev->setup_vq(vp_dev, info, index, callback, name, ctx, 213 msix_vec); 214 if (IS_ERR(vq)) 215 goto out_info; 216 217 info->vq = vq; 218 if (callback) { 219 spin_lock_irqsave(&vp_dev->lock, flags); 220 if (!vp_is_slow_path_vector(msix_vec)) 221 list_add(&info->node, &vp_dev->virtqueues); 222 else 223 list_add(&info->node, &vp_dev->slow_virtqueues); 224 spin_unlock_irqrestore(&vp_dev->lock, flags); 225 } else { 226 INIT_LIST_HEAD(&info->node); 227 } 228 229 *p_info = info; 230 return vq; 231 232 out_info: 233 kfree(info); 234 return vq; 235 } 236 237 static void vp_del_vq(struct virtqueue *vq) 238 { 239 struct virtio_pci_device *vp_dev = to_vp_device(vq->vdev); 240 struct virtio_pci_vq_info *info = vp_dev->vqs[vq->index]; 241 unsigned long flags; 242 243 /* 244 * If it fails during re-enable reset vq. This way we won't rejoin 245 * info->node to the queue. Prevent unexpected irqs. 246 */ 247 if (!vq->reset) { 248 spin_lock_irqsave(&vp_dev->lock, flags); 249 list_del(&info->node); 250 spin_unlock_irqrestore(&vp_dev->lock, flags); 251 } 252 253 vp_dev->del_vq(info); 254 kfree(info); 255 } 256 257 /* the config->del_vqs() implementation */ 258 void vp_del_vqs(struct virtio_device *vdev) 259 { 260 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 261 struct virtqueue *vq, *n; 262 int i; 263 264 list_for_each_entry_safe(vq, n, &vdev->vqs, list) { 265 if (vp_dev->per_vq_vectors) { 266 int v = vp_dev->vqs[vq->index]->msix_vector; 267 268 if (v != VIRTIO_MSI_NO_VECTOR && 269 !vp_is_slow_path_vector(v)) { 270 int irq = pci_irq_vector(vp_dev->pci_dev, v); 271 272 irq_update_affinity_hint(irq, NULL); 273 free_irq(irq, vq); 274 } 275 } 276 vp_del_vq(vq); 277 } 278 vp_dev->per_vq_vectors = false; 279 280 if (vp_dev->intx_enabled) { 281 free_irq(vp_dev->pci_dev->irq, vp_dev); 282 vp_dev->intx_enabled = 0; 283 } 284 285 for (i = 0; i < vp_dev->msix_used_vectors; ++i) 286 free_irq(pci_irq_vector(vp_dev->pci_dev, i), vp_dev); 287 288 if (vp_dev->msix_affinity_masks) { 289 for (i = 0; i < vp_dev->msix_vectors; i++) 290 free_cpumask_var(vp_dev->msix_affinity_masks[i]); 291 } 292 293 if (vp_dev->msix_enabled) { 294 /* Disable the vector used for configuration */ 295 vp_dev->config_vector(vp_dev, VIRTIO_MSI_NO_VECTOR); 296 297 pci_free_irq_vectors(vp_dev->pci_dev); 298 vp_dev->msix_enabled = 0; 299 } 300 301 vp_dev->msix_vectors = 0; 302 vp_dev->msix_used_vectors = 0; 303 kfree(vp_dev->msix_names); 304 vp_dev->msix_names = NULL; 305 kfree(vp_dev->msix_affinity_masks); 306 vp_dev->msix_affinity_masks = NULL; 307 kfree(vp_dev->vqs); 308 vp_dev->vqs = NULL; 309 } 310 311 enum vp_vq_vector_policy { 312 VP_VQ_VECTOR_POLICY_EACH, 313 VP_VQ_VECTOR_POLICY_SHARED_SLOW, 314 VP_VQ_VECTOR_POLICY_SHARED, 315 }; 316 317 static struct virtqueue * 318 vp_find_one_vq_msix(struct virtio_device *vdev, int queue_idx, 319 vq_callback_t *callback, const char *name, bool ctx, 320 bool slow_path, int *allocated_vectors, 321 enum vp_vq_vector_policy vector_policy, 322 struct virtio_pci_vq_info **p_info) 323 { 324 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 325 struct virtqueue *vq; 326 u16 msix_vec; 327 int err; 328 329 if (!callback) 330 msix_vec = VIRTIO_MSI_NO_VECTOR; 331 else if (vector_policy == VP_VQ_VECTOR_POLICY_EACH || 332 (vector_policy == VP_VQ_VECTOR_POLICY_SHARED_SLOW && 333 !slow_path)) 334 msix_vec = (*allocated_vectors)++; 335 else if (vector_policy != VP_VQ_VECTOR_POLICY_EACH && 336 slow_path) 337 msix_vec = VP_MSIX_CONFIG_VECTOR; 338 else 339 msix_vec = VP_MSIX_VQ_VECTOR; 340 vq = vp_setup_vq(vdev, queue_idx, callback, name, ctx, msix_vec, 341 p_info); 342 if (IS_ERR(vq)) 343 return vq; 344 345 if (vector_policy == VP_VQ_VECTOR_POLICY_SHARED || 346 msix_vec == VIRTIO_MSI_NO_VECTOR || 347 vp_is_slow_path_vector(msix_vec)) 348 return vq; 349 350 /* allocate per-vq irq if available and necessary */ 351 snprintf(vp_dev->msix_names[msix_vec], sizeof(*vp_dev->msix_names), 352 "%s-%s", dev_name(&vp_dev->vdev.dev), name); 353 err = request_irq(pci_irq_vector(vp_dev->pci_dev, msix_vec), 354 vring_interrupt, 0, 355 vp_dev->msix_names[msix_vec], vq); 356 if (err) { 357 vp_del_vq(vq); 358 return ERR_PTR(err); 359 } 360 361 return vq; 362 } 363 364 static int vp_find_vqs_msix(struct virtio_device *vdev, unsigned int nvqs, 365 struct virtqueue *vqs[], 366 struct virtqueue_info vqs_info[], 367 enum vp_vq_vector_policy vector_policy, 368 struct irq_affinity *desc) 369 { 370 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 371 struct virtio_pci_admin_vq *avq = &vp_dev->admin_vq; 372 struct virtqueue_info *vqi; 373 int i, err, nvectors, allocated_vectors, queue_idx = 0; 374 struct virtqueue *vq; 375 bool per_vq_vectors; 376 u16 avq_num = 0; 377 378 vp_dev->vqs = kcalloc(nvqs, sizeof(*vp_dev->vqs), GFP_KERNEL); 379 if (!vp_dev->vqs) 380 return -ENOMEM; 381 382 if (vp_dev->avq_index) { 383 err = vp_dev->avq_index(vdev, &avq->vq_index, &avq_num); 384 if (err) 385 goto error_find; 386 } 387 388 per_vq_vectors = vector_policy != VP_VQ_VECTOR_POLICY_SHARED; 389 390 if (per_vq_vectors) { 391 /* Best option: one for change interrupt, one per vq. */ 392 nvectors = 1; 393 for (i = 0; i < nvqs; ++i) { 394 vqi = &vqs_info[i]; 395 if (vqi->name && vqi->callback) 396 ++nvectors; 397 } 398 if (avq_num && vector_policy == VP_VQ_VECTOR_POLICY_EACH) 399 ++nvectors; 400 } else { 401 /* Second best: one for change, shared for all vqs. */ 402 nvectors = 2; 403 } 404 405 err = vp_request_msix_vectors(vdev, nvectors, per_vq_vectors, desc); 406 if (err) 407 goto error_find; 408 409 vp_dev->per_vq_vectors = per_vq_vectors; 410 allocated_vectors = vp_dev->msix_used_vectors; 411 for (i = 0; i < nvqs; ++i) { 412 vqi = &vqs_info[i]; 413 if (!vqi->name) { 414 vqs[i] = NULL; 415 continue; 416 } 417 vqs[i] = vp_find_one_vq_msix(vdev, queue_idx++, vqi->callback, 418 vqi->name, vqi->ctx, false, 419 &allocated_vectors, vector_policy, 420 &vp_dev->vqs[i]); 421 if (IS_ERR(vqs[i])) { 422 err = PTR_ERR(vqs[i]); 423 goto error_find; 424 } 425 } 426 427 if (!avq_num) 428 return 0; 429 sprintf(avq->name, "avq.%u", avq->vq_index); 430 vq = vp_find_one_vq_msix(vdev, avq->vq_index, vp_modern_avq_done, 431 avq->name, false, true, &allocated_vectors, 432 vector_policy, &vp_dev->admin_vq.info); 433 if (IS_ERR(vq)) { 434 err = PTR_ERR(vq); 435 goto error_find; 436 } 437 438 return 0; 439 440 error_find: 441 vp_del_vqs(vdev); 442 return err; 443 } 444 445 static int vp_find_vqs_intx(struct virtio_device *vdev, unsigned int nvqs, 446 struct virtqueue *vqs[], 447 struct virtqueue_info vqs_info[]) 448 { 449 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 450 struct virtio_pci_admin_vq *avq = &vp_dev->admin_vq; 451 int i, err, queue_idx = 0; 452 struct virtqueue *vq; 453 u16 avq_num = 0; 454 455 vp_dev->vqs = kcalloc(nvqs, sizeof(*vp_dev->vqs), GFP_KERNEL); 456 if (!vp_dev->vqs) 457 return -ENOMEM; 458 459 if (vp_dev->avq_index) { 460 err = vp_dev->avq_index(vdev, &avq->vq_index, &avq_num); 461 if (err) 462 goto out_del_vqs; 463 } 464 465 err = request_irq(vp_dev->pci_dev->irq, vp_interrupt, IRQF_SHARED, 466 dev_name(&vdev->dev), vp_dev); 467 if (err) 468 goto out_del_vqs; 469 470 vp_dev->intx_enabled = 1; 471 vp_dev->per_vq_vectors = false; 472 for (i = 0; i < nvqs; ++i) { 473 struct virtqueue_info *vqi = &vqs_info[i]; 474 475 if (!vqi->name) { 476 vqs[i] = NULL; 477 continue; 478 } 479 vqs[i] = vp_setup_vq(vdev, queue_idx++, vqi->callback, 480 vqi->name, vqi->ctx, 481 VIRTIO_MSI_NO_VECTOR, &vp_dev->vqs[i]); 482 if (IS_ERR(vqs[i])) { 483 err = PTR_ERR(vqs[i]); 484 goto out_del_vqs; 485 } 486 } 487 488 if (!avq_num) 489 return 0; 490 sprintf(avq->name, "avq.%u", avq->vq_index); 491 vq = vp_setup_vq(vdev, queue_idx++, vp_modern_avq_done, avq->name, 492 false, VIRTIO_MSI_NO_VECTOR, 493 &vp_dev->admin_vq.info); 494 if (IS_ERR(vq)) { 495 err = PTR_ERR(vq); 496 goto out_del_vqs; 497 } 498 499 return 0; 500 out_del_vqs: 501 vp_del_vqs(vdev); 502 return err; 503 } 504 505 /* the config->find_vqs() implementation */ 506 int vp_find_vqs(struct virtio_device *vdev, unsigned int nvqs, 507 struct virtqueue *vqs[], struct virtqueue_info vqs_info[], 508 struct irq_affinity *desc) 509 { 510 int err; 511 512 /* Try MSI-X with one vector per queue. */ 513 err = vp_find_vqs_msix(vdev, nvqs, vqs, vqs_info, 514 VP_VQ_VECTOR_POLICY_EACH, desc); 515 if (!err) 516 return 0; 517 /* Fallback: MSI-X with one shared vector for config and 518 * slow path queues, one vector per queue for the rest. 519 */ 520 err = vp_find_vqs_msix(vdev, nvqs, vqs, vqs_info, 521 VP_VQ_VECTOR_POLICY_SHARED_SLOW, desc); 522 if (!err) 523 return 0; 524 /* Fallback: MSI-X with one vector for config, one shared for queues. */ 525 err = vp_find_vqs_msix(vdev, nvqs, vqs, vqs_info, 526 VP_VQ_VECTOR_POLICY_SHARED, desc); 527 if (!err) 528 return 0; 529 /* Is there an interrupt? If not give up. */ 530 if (!(to_vp_device(vdev)->pci_dev->irq)) 531 return err; 532 /* Finally fall back to regular interrupts. */ 533 return vp_find_vqs_intx(vdev, nvqs, vqs, vqs_info); 534 } 535 536 const char *vp_bus_name(struct virtio_device *vdev) 537 { 538 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 539 540 return pci_name(vp_dev->pci_dev); 541 } 542 543 /* Setup the affinity for a virtqueue: 544 * - force the affinity for per vq vector 545 * - OR over all affinities for shared MSI 546 * - ignore the affinity request if we're using INTX 547 */ 548 int vp_set_vq_affinity(struct virtqueue *vq, const struct cpumask *cpu_mask) 549 { 550 struct virtio_device *vdev = vq->vdev; 551 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 552 struct virtio_pci_vq_info *info = vp_dev->vqs[vq->index]; 553 struct cpumask *mask; 554 unsigned int irq; 555 556 if (!vq->callback) 557 return -EINVAL; 558 559 if (vp_dev->msix_enabled) { 560 mask = vp_dev->msix_affinity_masks[info->msix_vector]; 561 irq = pci_irq_vector(vp_dev->pci_dev, info->msix_vector); 562 if (!cpu_mask) 563 irq_update_affinity_hint(irq, NULL); 564 else { 565 cpumask_copy(mask, cpu_mask); 566 irq_set_affinity_and_hint(irq, mask); 567 } 568 } 569 return 0; 570 } 571 572 const struct cpumask *vp_get_vq_affinity(struct virtio_device *vdev, int index) 573 { 574 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 575 576 if (!vp_dev->per_vq_vectors || 577 vp_dev->vqs[index]->msix_vector == VIRTIO_MSI_NO_VECTOR || 578 vp_is_slow_path_vector(vp_dev->vqs[index]->msix_vector)) 579 return NULL; 580 581 return pci_irq_get_affinity(vp_dev->pci_dev, 582 vp_dev->vqs[index]->msix_vector); 583 } 584 585 #ifdef CONFIG_PM_SLEEP 586 static int virtio_pci_freeze(struct device *dev) 587 { 588 struct pci_dev *pci_dev = to_pci_dev(dev); 589 struct virtio_pci_device *vp_dev = pci_get_drvdata(pci_dev); 590 int ret; 591 592 ret = virtio_device_freeze(&vp_dev->vdev); 593 594 if (!ret) 595 pci_disable_device(pci_dev); 596 return ret; 597 } 598 599 static int virtio_pci_restore(struct device *dev) 600 { 601 struct pci_dev *pci_dev = to_pci_dev(dev); 602 struct virtio_pci_device *vp_dev = pci_get_drvdata(pci_dev); 603 int ret; 604 605 ret = pci_enable_device(pci_dev); 606 if (ret) 607 return ret; 608 609 pci_set_master(pci_dev); 610 return virtio_device_restore(&vp_dev->vdev); 611 } 612 613 static bool vp_supports_pm_no_reset(struct device *dev) 614 { 615 struct pci_dev *pci_dev = to_pci_dev(dev); 616 u16 pmcsr; 617 618 if (!pci_dev->pm_cap) 619 return false; 620 621 pci_read_config_word(pci_dev, pci_dev->pm_cap + PCI_PM_CTRL, &pmcsr); 622 if (PCI_POSSIBLE_ERROR(pmcsr)) { 623 dev_err(dev, "Unable to query pmcsr"); 624 return false; 625 } 626 627 return pmcsr & PCI_PM_CTRL_NO_SOFT_RESET; 628 } 629 630 static int virtio_pci_suspend(struct device *dev) 631 { 632 return vp_supports_pm_no_reset(dev) ? 0 : virtio_pci_freeze(dev); 633 } 634 635 static int virtio_pci_resume(struct device *dev) 636 { 637 return vp_supports_pm_no_reset(dev) ? 0 : virtio_pci_restore(dev); 638 } 639 640 static const struct dev_pm_ops virtio_pci_pm_ops = { 641 .suspend = virtio_pci_suspend, 642 .resume = virtio_pci_resume, 643 .freeze = virtio_pci_freeze, 644 .thaw = virtio_pci_restore, 645 .poweroff = virtio_pci_freeze, 646 .restore = virtio_pci_restore, 647 }; 648 #endif 649 650 651 /* Qumranet donated their vendor ID for devices 0x1000 thru 0x10FF. */ 652 static const struct pci_device_id virtio_pci_id_table[] = { 653 { PCI_DEVICE(PCI_VENDOR_ID_REDHAT_QUMRANET, PCI_ANY_ID) }, 654 { 0 } 655 }; 656 657 MODULE_DEVICE_TABLE(pci, virtio_pci_id_table); 658 659 static void virtio_pci_release_dev(struct device *_d) 660 { 661 struct virtio_device *vdev = dev_to_virtio(_d); 662 struct virtio_pci_device *vp_dev = to_vp_device(vdev); 663 664 /* As struct device is a kobject, it's not safe to 665 * free the memory (including the reference counter itself) 666 * until it's release callback. */ 667 kfree(vp_dev); 668 } 669 670 static int virtio_pci_probe(struct pci_dev *pci_dev, 671 const struct pci_device_id *id) 672 { 673 struct virtio_pci_device *vp_dev, *reg_dev = NULL; 674 int rc; 675 676 /* allocate our structure and fill it out */ 677 vp_dev = kzalloc(sizeof(struct virtio_pci_device), GFP_KERNEL); 678 if (!vp_dev) 679 return -ENOMEM; 680 681 pci_set_drvdata(pci_dev, vp_dev); 682 vp_dev->vdev.dev.parent = &pci_dev->dev; 683 vp_dev->vdev.dev.release = virtio_pci_release_dev; 684 vp_dev->pci_dev = pci_dev; 685 INIT_LIST_HEAD(&vp_dev->virtqueues); 686 INIT_LIST_HEAD(&vp_dev->slow_virtqueues); 687 spin_lock_init(&vp_dev->lock); 688 689 /* enable the device */ 690 rc = pci_enable_device(pci_dev); 691 if (rc) 692 goto err_enable_device; 693 694 if (force_legacy) { 695 rc = virtio_pci_legacy_probe(vp_dev); 696 /* Also try modern mode if we can't map BAR0 (no IO space). */ 697 if (rc == -ENODEV || rc == -ENOMEM) 698 rc = virtio_pci_modern_probe(vp_dev); 699 if (rc) 700 goto err_probe; 701 } else { 702 rc = virtio_pci_modern_probe(vp_dev); 703 if (rc == -ENODEV) 704 rc = virtio_pci_legacy_probe(vp_dev); 705 if (rc) 706 goto err_probe; 707 } 708 709 pci_set_master(pci_dev); 710 711 rc = register_virtio_device(&vp_dev->vdev); 712 reg_dev = vp_dev; 713 if (rc) 714 goto err_register; 715 716 return 0; 717 718 err_register: 719 if (vp_dev->is_legacy) 720 virtio_pci_legacy_remove(vp_dev); 721 else 722 virtio_pci_modern_remove(vp_dev); 723 err_probe: 724 pci_disable_device(pci_dev); 725 err_enable_device: 726 if (reg_dev) 727 put_device(&vp_dev->vdev.dev); 728 else 729 kfree(vp_dev); 730 return rc; 731 } 732 733 static void virtio_pci_remove(struct pci_dev *pci_dev) 734 { 735 struct virtio_pci_device *vp_dev = pci_get_drvdata(pci_dev); 736 struct device *dev = get_device(&vp_dev->vdev.dev); 737 738 /* 739 * Device is marked broken on surprise removal so that virtio upper 740 * layers can abort any ongoing operation. 741 */ 742 if (!pci_device_is_present(pci_dev)) 743 virtio_break_device(&vp_dev->vdev); 744 745 pci_disable_sriov(pci_dev); 746 747 unregister_virtio_device(&vp_dev->vdev); 748 749 if (vp_dev->is_legacy) 750 virtio_pci_legacy_remove(vp_dev); 751 else 752 virtio_pci_modern_remove(vp_dev); 753 754 pci_disable_device(pci_dev); 755 put_device(dev); 756 } 757 758 static int virtio_pci_sriov_configure(struct pci_dev *pci_dev, int num_vfs) 759 { 760 struct virtio_pci_device *vp_dev = pci_get_drvdata(pci_dev); 761 struct virtio_device *vdev = &vp_dev->vdev; 762 int ret; 763 764 if (!(vdev->config->get_status(vdev) & VIRTIO_CONFIG_S_DRIVER_OK)) 765 return -EBUSY; 766 767 if (!__virtio_test_bit(vdev, VIRTIO_F_SR_IOV)) 768 return -EINVAL; 769 770 if (pci_vfs_assigned(pci_dev)) 771 return -EPERM; 772 773 if (num_vfs == 0) { 774 pci_disable_sriov(pci_dev); 775 return 0; 776 } 777 778 ret = pci_enable_sriov(pci_dev, num_vfs); 779 if (ret < 0) 780 return ret; 781 782 return num_vfs; 783 } 784 785 static struct pci_driver virtio_pci_driver = { 786 .name = "virtio-pci", 787 .id_table = virtio_pci_id_table, 788 .probe = virtio_pci_probe, 789 .remove = virtio_pci_remove, 790 #ifdef CONFIG_PM_SLEEP 791 .driver.pm = &virtio_pci_pm_ops, 792 #endif 793 .sriov_configure = virtio_pci_sriov_configure, 794 }; 795 796 struct virtio_device *virtio_pci_vf_get_pf_dev(struct pci_dev *pdev) 797 { 798 struct virtio_pci_device *pf_vp_dev; 799 800 pf_vp_dev = pci_iov_get_pf_drvdata(pdev, &virtio_pci_driver); 801 if (IS_ERR(pf_vp_dev)) 802 return NULL; 803 804 return &pf_vp_dev->vdev; 805 } 806 807 module_pci_driver(virtio_pci_driver); 808 809 MODULE_AUTHOR("Anthony Liguori <aliguori@us.ibm.com>"); 810 MODULE_DESCRIPTION("virtio-pci"); 811 MODULE_LICENSE("GPL"); 812 MODULE_VERSION("1"); 813