xref: /qemu/hw/vfio/device.c (revision 7be29f2f1a3f5b037d27eedbd5df9f441e8c8c16)
1 /*
2  * VFIO device
3  *
4  * Copyright Red Hat, Inc. 2012
5  *
6  * Authors:
7  *  Alex Williamson <alex.williamson@redhat.com>
8  *
9  * This work is licensed under the terms of the GNU GPL, version 2.  See
10  * the COPYING file in the top-level directory.
11  *
12  * Based on qemu-kvm device-assignment:
13  *  Adapted for KVM by Qumranet.
14  *  Copyright (c) 2007, Neocleus, Alex Novik (alex@neocleus.com)
15  *  Copyright (c) 2007, Neocleus, Guy Zana (guy@neocleus.com)
16  *  Copyright (C) 2008, Qumranet, Amit Shah (amit.shah@qumranet.com)
17  *  Copyright (C) 2008, Red Hat, Amit Shah (amit.shah@redhat.com)
18  *  Copyright (C) 2008, IBM, Muli Ben-Yehuda (muli@il.ibm.com)
19  */
20 
21 #include "qemu/osdep.h"
22 #include <sys/ioctl.h>
23 
24 #include "hw/vfio/vfio-device.h"
25 #include "hw/vfio/pci.h"
26 #include "hw/hw.h"
27 #include "trace.h"
28 #include "qapi/error.h"
29 #include "qemu/error-report.h"
30 #include "qemu/units.h"
31 #include "monitor/monitor.h"
32 #include "vfio-helpers.h"
33 
34 VFIODeviceList vfio_device_list =
35     QLIST_HEAD_INITIALIZER(vfio_device_list);
36 
37 /*
38  * We want to differentiate hot reset of multiple in-use devices vs
39  * hot reset of a single in-use device. VFIO_DEVICE_RESET will already
40  * handle the case of doing hot resets when there is only a single
41  * device per bus. The in-use here refers to how many VFIODevices are
42  * affected. A hot reset that affects multiple devices, but only a
43  * single in-use device, means that we can call it from our bus
44  * ->reset() callback since the extent is effectively a single
45  * device. This allows us to make use of it in the hotplug path. When
46  * there are multiple in-use devices, we can only trigger the hot
47  * reset during a system reset and thus from our reset handler. We
48  * separate _one vs _multi here so that we don't overlap and do a
49  * double reset on the system reset path where both our reset handler
50  * and ->reset() callback are used. Calling _one() will only do a hot
51  * reset for the one in-use devices case, calling _multi() will do
52  * nothing if a _one() would have been sufficient.
53  */
vfio_device_reset_handler(void * opaque)54 void vfio_device_reset_handler(void *opaque)
55 {
56     VFIODevice *vbasedev;
57 
58     trace_vfio_device_reset_handler();
59     QLIST_FOREACH(vbasedev, &vfio_device_list, global_next) {
60         if (vbasedev->dev->realized) {
61             vbasedev->ops->vfio_compute_needs_reset(vbasedev);
62         }
63     }
64 
65     QLIST_FOREACH(vbasedev, &vfio_device_list, global_next) {
66         if (vbasedev->dev->realized && vbasedev->needs_reset) {
67             vbasedev->ops->vfio_hot_reset_multi(vbasedev);
68         }
69     }
70 }
71 
72 /*
73  * Common VFIO interrupt disable
74  */
vfio_device_irq_disable(VFIODevice * vbasedev,int index)75 void vfio_device_irq_disable(VFIODevice *vbasedev, int index)
76 {
77     struct vfio_irq_set irq_set = {
78         .argsz = sizeof(irq_set),
79         .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_TRIGGER,
80         .index = index,
81         .start = 0,
82         .count = 0,
83     };
84 
85     vbasedev->io_ops->set_irqs(vbasedev, &irq_set);
86 }
87 
vfio_device_irq_unmask(VFIODevice * vbasedev,int index)88 void vfio_device_irq_unmask(VFIODevice *vbasedev, int index)
89 {
90     struct vfio_irq_set irq_set = {
91         .argsz = sizeof(irq_set),
92         .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_UNMASK,
93         .index = index,
94         .start = 0,
95         .count = 1,
96     };
97 
98     vbasedev->io_ops->set_irqs(vbasedev, &irq_set);
99 }
100 
vfio_device_irq_mask(VFIODevice * vbasedev,int index)101 void vfio_device_irq_mask(VFIODevice *vbasedev, int index)
102 {
103     struct vfio_irq_set irq_set = {
104         .argsz = sizeof(irq_set),
105         .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_MASK,
106         .index = index,
107         .start = 0,
108         .count = 1,
109     };
110 
111     vbasedev->io_ops->set_irqs(vbasedev, &irq_set);
112 }
113 
action_to_str(int action)114 static inline const char *action_to_str(int action)
115 {
116     switch (action) {
117     case VFIO_IRQ_SET_ACTION_MASK:
118         return "MASK";
119     case VFIO_IRQ_SET_ACTION_UNMASK:
120         return "UNMASK";
121     case VFIO_IRQ_SET_ACTION_TRIGGER:
122         return "TRIGGER";
123     default:
124         return "UNKNOWN ACTION";
125     }
126 }
127 
index_to_str(VFIODevice * vbasedev,int index)128 static const char *index_to_str(VFIODevice *vbasedev, int index)
129 {
130     if (vbasedev->type != VFIO_DEVICE_TYPE_PCI) {
131         return NULL;
132     }
133 
134     switch (index) {
135     case VFIO_PCI_INTX_IRQ_INDEX:
136         return "INTX";
137     case VFIO_PCI_MSI_IRQ_INDEX:
138         return "MSI";
139     case VFIO_PCI_MSIX_IRQ_INDEX:
140         return "MSIX";
141     case VFIO_PCI_ERR_IRQ_INDEX:
142         return "ERR";
143     case VFIO_PCI_REQ_IRQ_INDEX:
144         return "REQ";
145     default:
146         return NULL;
147     }
148 }
149 
vfio_device_irq_set_signaling(VFIODevice * vbasedev,int index,int subindex,int action,int fd,Error ** errp)150 bool vfio_device_irq_set_signaling(VFIODevice *vbasedev, int index, int subindex,
151                                    int action, int fd, Error **errp)
152 {
153     ERRP_GUARD();
154     g_autofree struct vfio_irq_set *irq_set = NULL;
155     int argsz;
156     const char *name;
157     int32_t *pfd;
158 
159     argsz = sizeof(*irq_set) + sizeof(*pfd);
160 
161     irq_set = g_malloc0(argsz);
162     irq_set->argsz = argsz;
163     irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | action;
164     irq_set->index = index;
165     irq_set->start = subindex;
166     irq_set->count = 1;
167     pfd = (int32_t *)&irq_set->data;
168     *pfd = fd;
169 
170     if (!vbasedev->io_ops->set_irqs(vbasedev, irq_set)) {
171         return true;
172     }
173 
174     error_setg_errno(errp, errno, "VFIO_DEVICE_SET_IRQS failure");
175 
176     name = index_to_str(vbasedev, index);
177     if (name) {
178         error_prepend(errp, "%s-%d: ", name, subindex);
179     } else {
180         error_prepend(errp, "index %d-%d: ", index, subindex);
181     }
182     error_prepend(errp,
183                   "Failed to %s %s eventfd signaling for interrupt ",
184                   fd < 0 ? "tear down" : "set up", action_to_str(action));
185     return false;
186 }
187 
vfio_device_get_irq_info(VFIODevice * vbasedev,int index,struct vfio_irq_info * info)188 int vfio_device_get_irq_info(VFIODevice *vbasedev, int index,
189                              struct vfio_irq_info *info)
190 {
191     memset(info, 0, sizeof(*info));
192 
193     info->argsz = sizeof(*info);
194     info->index = index;
195 
196     return vbasedev->io_ops->get_irq_info(vbasedev, info);
197 }
198 
vfio_device_get_region_info(VFIODevice * vbasedev,int index,struct vfio_region_info ** info)199 int vfio_device_get_region_info(VFIODevice *vbasedev, int index,
200                                 struct vfio_region_info **info)
201 {
202     size_t argsz = sizeof(struct vfio_region_info);
203     int ret;
204 
205     /* check cache */
206     if (vbasedev->reginfo[index] != NULL) {
207         *info = vbasedev->reginfo[index];
208         return 0;
209     }
210 
211     *info = g_malloc0(argsz);
212 
213     (*info)->index = index;
214 retry:
215     (*info)->argsz = argsz;
216 
217     ret = vbasedev->io_ops->get_region_info(vbasedev, *info);
218     if (ret != 0) {
219         g_free(*info);
220         *info = NULL;
221         return ret;
222     }
223 
224     if ((*info)->argsz > argsz) {
225         argsz = (*info)->argsz;
226         *info = g_realloc(*info, argsz);
227 
228         goto retry;
229     }
230 
231     /* fill cache */
232     vbasedev->reginfo[index] = *info;
233 
234     return 0;
235 }
236 
vfio_device_get_region_info_type(VFIODevice * vbasedev,uint32_t type,uint32_t subtype,struct vfio_region_info ** info)237 int vfio_device_get_region_info_type(VFIODevice *vbasedev, uint32_t type,
238                                      uint32_t subtype, struct vfio_region_info **info)
239 {
240     int i;
241 
242     for (i = 0; i < vbasedev->num_regions; i++) {
243         struct vfio_info_cap_header *hdr;
244         struct vfio_region_info_cap_type *cap_type;
245 
246         if (vfio_device_get_region_info(vbasedev, i, info)) {
247             continue;
248         }
249 
250         hdr = vfio_get_region_info_cap(*info, VFIO_REGION_INFO_CAP_TYPE);
251         if (!hdr) {
252             continue;
253         }
254 
255         cap_type = container_of(hdr, struct vfio_region_info_cap_type, header);
256 
257         trace_vfio_device_get_region_info_type(vbasedev->name, i,
258                                                cap_type->type, cap_type->subtype);
259 
260         if (cap_type->type == type && cap_type->subtype == subtype) {
261             return 0;
262         }
263     }
264 
265     *info = NULL;
266     return -ENODEV;
267 }
268 
vfio_device_has_region_cap(VFIODevice * vbasedev,int region,uint16_t cap_type)269 bool vfio_device_has_region_cap(VFIODevice *vbasedev, int region, uint16_t cap_type)
270 {
271     struct vfio_region_info *info = NULL;
272     bool ret = false;
273 
274     if (!vfio_device_get_region_info(vbasedev, region, &info)) {
275         if (vfio_get_region_info_cap(info, cap_type)) {
276             ret = true;
277         }
278     }
279 
280     return ret;
281 }
282 
vfio_device_get_name(VFIODevice * vbasedev,Error ** errp)283 bool vfio_device_get_name(VFIODevice *vbasedev, Error **errp)
284 {
285     ERRP_GUARD();
286     struct stat st;
287 
288     if (vbasedev->fd < 0) {
289         if (stat(vbasedev->sysfsdev, &st) < 0) {
290             error_setg_errno(errp, errno, "no such host device");
291             error_prepend(errp, VFIO_MSG_PREFIX, vbasedev->sysfsdev);
292             return false;
293         }
294         /* User may specify a name, e.g: VFIO platform device */
295         if (!vbasedev->name) {
296             vbasedev->name = g_path_get_basename(vbasedev->sysfsdev);
297         }
298     } else {
299         if (!vbasedev->iommufd) {
300             error_setg(errp, "Use FD passing only with iommufd backend");
301             return false;
302         }
303         /*
304          * Give a name with fd so any function printing out vbasedev->name
305          * will not break.
306          */
307         if (!vbasedev->name) {
308             vbasedev->name = g_strdup_printf("VFIO_FD%d", vbasedev->fd);
309         }
310     }
311 
312     return true;
313 }
314 
vfio_device_set_fd(VFIODevice * vbasedev,const char * str,Error ** errp)315 void vfio_device_set_fd(VFIODevice *vbasedev, const char *str, Error **errp)
316 {
317     ERRP_GUARD();
318     int fd = monitor_fd_param(monitor_cur(), str, errp);
319 
320     if (fd < 0) {
321         error_prepend(errp, "Could not parse remote object fd %s:", str);
322         return;
323     }
324     vbasedev->fd = fd;
325 }
326 
327 static VFIODeviceIOOps vfio_device_io_ops_ioctl;
328 
vfio_device_init(VFIODevice * vbasedev,int type,VFIODeviceOps * ops,DeviceState * dev,bool ram_discard)329 void vfio_device_init(VFIODevice *vbasedev, int type, VFIODeviceOps *ops,
330                       DeviceState *dev, bool ram_discard)
331 {
332     vbasedev->type = type;
333     vbasedev->ops = ops;
334     vbasedev->io_ops = &vfio_device_io_ops_ioctl;
335     vbasedev->dev = dev;
336     vbasedev->fd = -1;
337 
338     vbasedev->ram_block_discard_allowed = ram_discard;
339 }
340 
vfio_device_get_aw_bits(VFIODevice * vdev)341 int vfio_device_get_aw_bits(VFIODevice *vdev)
342 {
343     /*
344      * iova_ranges is a sorted list. For old kernels that support
345      * VFIO but not support query of iova ranges, iova_ranges is NULL,
346      * in this case HOST_IOMMU_DEVICE_CAP_AW_BITS_MAX(64) is returned.
347      */
348     GList *l = g_list_last(vdev->bcontainer->iova_ranges);
349 
350     if (l) {
351         Range *range = l->data;
352         return range_get_last_bit(range) + 1;
353     }
354 
355     return HOST_IOMMU_DEVICE_CAP_AW_BITS_MAX;
356 }
357 
vfio_device_is_mdev(VFIODevice * vbasedev)358 bool vfio_device_is_mdev(VFIODevice *vbasedev)
359 {
360     g_autofree char *subsys = NULL;
361     g_autofree char *tmp = NULL;
362 
363     if (!vbasedev->sysfsdev) {
364         return false;
365     }
366 
367     tmp = g_strdup_printf("%s/subsystem", vbasedev->sysfsdev);
368     subsys = realpath(tmp, NULL);
369     return subsys && (strcmp(subsys, "/sys/bus/mdev") == 0);
370 }
371 
vfio_device_hiod_create_and_realize(VFIODevice * vbasedev,const char * typename,Error ** errp)372 bool vfio_device_hiod_create_and_realize(VFIODevice *vbasedev,
373                                          const char *typename, Error **errp)
374 {
375     HostIOMMUDevice *hiod;
376 
377     if (vbasedev->mdev) {
378         return true;
379     }
380 
381     hiod = HOST_IOMMU_DEVICE(object_new(typename));
382 
383     if (!HOST_IOMMU_DEVICE_GET_CLASS(hiod)->realize(hiod, vbasedev, errp)) {
384         object_unref(hiod);
385         return false;
386     }
387 
388     vbasedev->hiod = hiod;
389     return true;
390 }
391 
vfio_get_vfio_device(Object * obj)392 VFIODevice *vfio_get_vfio_device(Object *obj)
393 {
394     if (object_dynamic_cast(obj, TYPE_VFIO_PCI)) {
395         return &VFIO_PCI_BASE(obj)->vbasedev;
396     } else {
397         return NULL;
398     }
399 }
400 
vfio_device_attach_by_iommu_type(const char * iommu_type,char * name,VFIODevice * vbasedev,AddressSpace * as,Error ** errp)401 bool vfio_device_attach_by_iommu_type(const char *iommu_type, char *name,
402                                       VFIODevice *vbasedev, AddressSpace *as,
403                                       Error **errp)
404 {
405     const VFIOIOMMUClass *ops =
406         VFIO_IOMMU_CLASS(object_class_by_name(iommu_type));
407 
408     assert(ops);
409 
410     return ops->attach_device(name, vbasedev, as, errp);
411 }
412 
vfio_device_attach(char * name,VFIODevice * vbasedev,AddressSpace * as,Error ** errp)413 bool vfio_device_attach(char *name, VFIODevice *vbasedev,
414                         AddressSpace *as, Error **errp)
415 {
416     const char *iommu_type = vbasedev->iommufd ?
417                              TYPE_VFIO_IOMMU_IOMMUFD :
418                              TYPE_VFIO_IOMMU_LEGACY;
419 
420     return vfio_device_attach_by_iommu_type(iommu_type, name, vbasedev,
421                                             as, errp);
422 }
423 
vfio_device_detach(VFIODevice * vbasedev)424 void vfio_device_detach(VFIODevice *vbasedev)
425 {
426     if (!vbasedev->bcontainer) {
427         return;
428     }
429     VFIO_IOMMU_GET_CLASS(vbasedev->bcontainer)->detach_device(vbasedev);
430 }
431 
vfio_device_prepare(VFIODevice * vbasedev,VFIOContainerBase * bcontainer,struct vfio_device_info * info)432 void vfio_device_prepare(VFIODevice *vbasedev, VFIOContainerBase *bcontainer,
433                          struct vfio_device_info *info)
434 {
435     vbasedev->num_irqs = info->num_irqs;
436     vbasedev->num_regions = info->num_regions;
437     vbasedev->flags = info->flags;
438     vbasedev->reset_works = !!(info->flags & VFIO_DEVICE_FLAGS_RESET);
439 
440     vbasedev->bcontainer = bcontainer;
441     QLIST_INSERT_HEAD(&bcontainer->device_list, vbasedev, container_next);
442 
443     QLIST_INSERT_HEAD(&vfio_device_list, vbasedev, global_next);
444 
445     vbasedev->reginfo = g_new0(struct vfio_region_info *,
446                                vbasedev->num_regions);
447 }
448 
vfio_device_unprepare(VFIODevice * vbasedev)449 void vfio_device_unprepare(VFIODevice *vbasedev)
450 {
451     int i;
452 
453     for (i = 0; i < vbasedev->num_regions; i++) {
454         g_free(vbasedev->reginfo[i]);
455     }
456     g_free(vbasedev->reginfo);
457     vbasedev->reginfo = NULL;
458 
459     QLIST_REMOVE(vbasedev, container_next);
460     QLIST_REMOVE(vbasedev, global_next);
461     vbasedev->bcontainer = NULL;
462 }
463 
464 /*
465  * Traditional ioctl() based io
466  */
467 
vfio_device_io_device_feature(VFIODevice * vbasedev,struct vfio_device_feature * feature)468 static int vfio_device_io_device_feature(VFIODevice *vbasedev,
469                                          struct vfio_device_feature *feature)
470 {
471     int ret;
472 
473     ret = ioctl(vbasedev->fd, VFIO_DEVICE_FEATURE, feature);
474 
475     return ret < 0 ? -errno : ret;
476 }
477 
vfio_device_io_get_region_info(VFIODevice * vbasedev,struct vfio_region_info * info)478 static int vfio_device_io_get_region_info(VFIODevice *vbasedev,
479                                           struct vfio_region_info *info)
480 {
481     int ret;
482 
483     ret = ioctl(vbasedev->fd, VFIO_DEVICE_GET_REGION_INFO, info);
484 
485     return ret < 0 ? -errno : ret;
486 }
487 
vfio_device_io_get_irq_info(VFIODevice * vbasedev,struct vfio_irq_info * info)488 static int vfio_device_io_get_irq_info(VFIODevice *vbasedev,
489                                        struct vfio_irq_info *info)
490 {
491     int ret;
492 
493     ret = ioctl(vbasedev->fd, VFIO_DEVICE_GET_IRQ_INFO, info);
494 
495     return ret < 0 ? -errno : ret;
496 }
497 
vfio_device_io_set_irqs(VFIODevice * vbasedev,struct vfio_irq_set * irqs)498 static int vfio_device_io_set_irqs(VFIODevice *vbasedev,
499                                    struct vfio_irq_set *irqs)
500 {
501     int ret;
502 
503     ret = ioctl(vbasedev->fd, VFIO_DEVICE_SET_IRQS, irqs);
504 
505     return ret < 0 ? -errno : ret;
506 }
507 
vfio_device_io_region_read(VFIODevice * vbasedev,uint8_t index,off_t off,uint32_t size,void * data)508 static int vfio_device_io_region_read(VFIODevice *vbasedev, uint8_t index,
509                                       off_t off, uint32_t size, void *data)
510 {
511     struct vfio_region_info *info;
512     int ret;
513 
514     ret = vfio_device_get_region_info(vbasedev, index, &info);
515     if (ret != 0) {
516         return ret;
517     }
518 
519     ret = pread(vbasedev->fd, data, size, info->offset + off);
520 
521     return ret < 0 ? -errno : ret;
522 }
523 
vfio_device_io_region_write(VFIODevice * vbasedev,uint8_t index,off_t off,uint32_t size,void * data)524 static int vfio_device_io_region_write(VFIODevice *vbasedev, uint8_t index,
525                                        off_t off, uint32_t size, void *data)
526 {
527     struct vfio_region_info *info;
528     int ret;
529 
530     ret = vfio_device_get_region_info(vbasedev, index, &info);
531     if (ret != 0) {
532         return ret;
533     }
534 
535     ret = pwrite(vbasedev->fd, data, size, info->offset + off);
536 
537     return ret < 0 ? -errno : ret;
538 }
539 
540 static VFIODeviceIOOps vfio_device_io_ops_ioctl = {
541     .device_feature = vfio_device_io_device_feature,
542     .get_region_info = vfio_device_io_get_region_info,
543     .get_irq_info = vfio_device_io_get_irq_info,
544     .set_irqs = vfio_device_io_set_irqs,
545     .region_read = vfio_device_io_region_read,
546     .region_write = vfio_device_io_region_write,
547 };
548