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Commit | Line | Data |
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65501a74 AW |
1 | /* |
2 | * vfio based device assignment support | |
3 | * | |
4 | * Copyright Red Hat, Inc. 2012 | |
5 | * | |
6 | * Authors: | |
7 | * Alex Williamson <[email protected]> | |
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 ([email protected]) | |
15 | * Copyright (c) 2007, Neocleus, Guy Zana ([email protected]) | |
16 | * Copyright (C) 2008, Qumranet, Amit Shah ([email protected]) | |
17 | * Copyright (C) 2008, Red Hat, Amit Shah ([email protected]) | |
18 | * Copyright (C) 2008, IBM, Muli Ben-Yehuda ([email protected]) | |
19 | */ | |
20 | ||
c6eacb1a | 21 | #include "qemu/osdep.h" |
6dcfdbad | 22 | #include <linux/vfio.h> |
65501a74 | 23 | #include <sys/ioctl.h> |
65501a74 | 24 | |
83c9f4ca PB |
25 | #include "hw/pci/msi.h" |
26 | #include "hw/pci/msix.h" | |
0282abf0 | 27 | #include "hw/pci/pci_bridge.h" |
1de7afc9 | 28 | #include "qemu/error-report.h" |
922a01a0 | 29 | #include "qemu/option.h" |
1de7afc9 | 30 | #include "qemu/range.h" |
6dcfdbad AW |
31 | #include "sysemu/kvm.h" |
32 | #include "sysemu/sysemu.h" | |
78f33d2b | 33 | #include "pci.h" |
385f57cf | 34 | #include "trace.h" |
1108b2f8 | 35 | #include "qapi/error.h" |
4b943029 | 36 | |
65501a74 AW |
37 | #define MSIX_CAP_LENGTH 12 |
38 | ||
9ee27d73 | 39 | static void vfio_disable_interrupts(VFIOPCIDevice *vdev); |
9ee27d73 | 40 | static void vfio_mmap_set_enabled(VFIOPCIDevice *vdev, bool enabled); |
65501a74 | 41 | |
ea486926 AW |
42 | /* |
43 | * Disabling BAR mmaping can be slow, but toggling it around INTx can | |
44 | * also be a huge overhead. We try to get the best of both worlds by | |
45 | * waiting until an interrupt to disable mmaps (subsequent transitions | |
46 | * to the same state are effectively no overhead). If the interrupt has | |
47 | * been serviced and the time gap is long enough, we re-enable mmaps for | |
48 | * performance. This works well for things like graphics cards, which | |
49 | * may not use their interrupt at all and are penalized to an unusable | |
50 | * level by read/write BAR traps. Other devices, like NICs, have more | |
51 | * regular interrupts and see much better latency by staying in non-mmap | |
52 | * mode. We therefore set the default mmap_timeout such that a ping | |
53 | * is just enough to keep the mmap disabled. Users can experiment with | |
54 | * other options with the x-intx-mmap-timeout-ms parameter (a value of | |
55 | * zero disables the timer). | |
56 | */ | |
57 | static void vfio_intx_mmap_enable(void *opaque) | |
58 | { | |
9ee27d73 | 59 | VFIOPCIDevice *vdev = opaque; |
ea486926 AW |
60 | |
61 | if (vdev->intx.pending) { | |
bc72ad67 AB |
62 | timer_mod(vdev->intx.mmap_timer, |
63 | qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL) + vdev->intx.mmap_timeout); | |
ea486926 AW |
64 | return; |
65 | } | |
66 | ||
67 | vfio_mmap_set_enabled(vdev, true); | |
68 | } | |
69 | ||
65501a74 AW |
70 | static void vfio_intx_interrupt(void *opaque) |
71 | { | |
9ee27d73 | 72 | VFIOPCIDevice *vdev = opaque; |
65501a74 AW |
73 | |
74 | if (!event_notifier_test_and_clear(&vdev->intx.interrupt)) { | |
75 | return; | |
76 | } | |
77 | ||
df92ee44 | 78 | trace_vfio_intx_interrupt(vdev->vbasedev.name, 'A' + vdev->intx.pin); |
65501a74 AW |
79 | |
80 | vdev->intx.pending = true; | |
68919cac | 81 | pci_irq_assert(&vdev->pdev); |
ea486926 AW |
82 | vfio_mmap_set_enabled(vdev, false); |
83 | if (vdev->intx.mmap_timeout) { | |
bc72ad67 AB |
84 | timer_mod(vdev->intx.mmap_timer, |
85 | qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL) + vdev->intx.mmap_timeout); | |
ea486926 | 86 | } |
65501a74 AW |
87 | } |
88 | ||
870cb6f1 | 89 | static void vfio_intx_eoi(VFIODevice *vbasedev) |
65501a74 | 90 | { |
a664477d EA |
91 | VFIOPCIDevice *vdev = container_of(vbasedev, VFIOPCIDevice, vbasedev); |
92 | ||
65501a74 AW |
93 | if (!vdev->intx.pending) { |
94 | return; | |
95 | } | |
96 | ||
870cb6f1 | 97 | trace_vfio_intx_eoi(vbasedev->name); |
65501a74 AW |
98 | |
99 | vdev->intx.pending = false; | |
68919cac | 100 | pci_irq_deassert(&vdev->pdev); |
a664477d | 101 | vfio_unmask_single_irqindex(vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
65501a74 AW |
102 | } |
103 | ||
7dfb3424 | 104 | static void vfio_intx_enable_kvm(VFIOPCIDevice *vdev, Error **errp) |
e1d1e586 AW |
105 | { |
106 | #ifdef CONFIG_KVM | |
107 | struct kvm_irqfd irqfd = { | |
108 | .fd = event_notifier_get_fd(&vdev->intx.interrupt), | |
109 | .gsi = vdev->intx.route.irq, | |
110 | .flags = KVM_IRQFD_FLAG_RESAMPLE, | |
111 | }; | |
112 | struct vfio_irq_set *irq_set; | |
113 | int ret, argsz; | |
114 | int32_t *pfd; | |
115 | ||
46746dba | 116 | if (vdev->no_kvm_intx || !kvm_irqfds_enabled() || |
e1d1e586 | 117 | vdev->intx.route.mode != PCI_INTX_ENABLED || |
9fc0e2d8 | 118 | !kvm_resamplefds_enabled()) { |
e1d1e586 AW |
119 | return; |
120 | } | |
121 | ||
122 | /* Get to a known interrupt state */ | |
123 | qemu_set_fd_handler(irqfd.fd, NULL, NULL, vdev); | |
5546a621 | 124 | vfio_mask_single_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
e1d1e586 | 125 | vdev->intx.pending = false; |
68919cac | 126 | pci_irq_deassert(&vdev->pdev); |
e1d1e586 AW |
127 | |
128 | /* Get an eventfd for resample/unmask */ | |
129 | if (event_notifier_init(&vdev->intx.unmask, 0)) { | |
7dfb3424 | 130 | error_setg(errp, "event_notifier_init failed eoi"); |
e1d1e586 AW |
131 | goto fail; |
132 | } | |
133 | ||
134 | /* KVM triggers it, VFIO listens for it */ | |
135 | irqfd.resamplefd = event_notifier_get_fd(&vdev->intx.unmask); | |
136 | ||
137 | if (kvm_vm_ioctl(kvm_state, KVM_IRQFD, &irqfd)) { | |
7dfb3424 | 138 | error_setg_errno(errp, errno, "failed to setup resample irqfd"); |
e1d1e586 AW |
139 | goto fail_irqfd; |
140 | } | |
141 | ||
142 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
143 | ||
144 | irq_set = g_malloc0(argsz); | |
145 | irq_set->argsz = argsz; | |
146 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | VFIO_IRQ_SET_ACTION_UNMASK; | |
147 | irq_set->index = VFIO_PCI_INTX_IRQ_INDEX; | |
148 | irq_set->start = 0; | |
149 | irq_set->count = 1; | |
150 | pfd = (int32_t *)&irq_set->data; | |
151 | ||
152 | *pfd = irqfd.resamplefd; | |
153 | ||
5546a621 | 154 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
e1d1e586 AW |
155 | g_free(irq_set); |
156 | if (ret) { | |
7dfb3424 | 157 | error_setg_errno(errp, -ret, "failed to setup INTx unmask fd"); |
e1d1e586 AW |
158 | goto fail_vfio; |
159 | } | |
160 | ||
161 | /* Let'em rip */ | |
5546a621 | 162 | vfio_unmask_single_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
e1d1e586 AW |
163 | |
164 | vdev->intx.kvm_accel = true; | |
165 | ||
870cb6f1 | 166 | trace_vfio_intx_enable_kvm(vdev->vbasedev.name); |
e1d1e586 AW |
167 | |
168 | return; | |
169 | ||
170 | fail_vfio: | |
171 | irqfd.flags = KVM_IRQFD_FLAG_DEASSIGN; | |
172 | kvm_vm_ioctl(kvm_state, KVM_IRQFD, &irqfd); | |
173 | fail_irqfd: | |
174 | event_notifier_cleanup(&vdev->intx.unmask); | |
175 | fail: | |
176 | qemu_set_fd_handler(irqfd.fd, vfio_intx_interrupt, NULL, vdev); | |
5546a621 | 177 | vfio_unmask_single_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
e1d1e586 AW |
178 | #endif |
179 | } | |
180 | ||
870cb6f1 | 181 | static void vfio_intx_disable_kvm(VFIOPCIDevice *vdev) |
e1d1e586 AW |
182 | { |
183 | #ifdef CONFIG_KVM | |
184 | struct kvm_irqfd irqfd = { | |
185 | .fd = event_notifier_get_fd(&vdev->intx.interrupt), | |
186 | .gsi = vdev->intx.route.irq, | |
187 | .flags = KVM_IRQFD_FLAG_DEASSIGN, | |
188 | }; | |
189 | ||
190 | if (!vdev->intx.kvm_accel) { | |
191 | return; | |
192 | } | |
193 | ||
194 | /* | |
195 | * Get to a known state, hardware masked, QEMU ready to accept new | |
196 | * interrupts, QEMU IRQ de-asserted. | |
197 | */ | |
5546a621 | 198 | vfio_mask_single_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
e1d1e586 | 199 | vdev->intx.pending = false; |
68919cac | 200 | pci_irq_deassert(&vdev->pdev); |
e1d1e586 AW |
201 | |
202 | /* Tell KVM to stop listening for an INTx irqfd */ | |
203 | if (kvm_vm_ioctl(kvm_state, KVM_IRQFD, &irqfd)) { | |
312fd5f2 | 204 | error_report("vfio: Error: Failed to disable INTx irqfd: %m"); |
e1d1e586 AW |
205 | } |
206 | ||
207 | /* We only need to close the eventfd for VFIO to cleanup the kernel side */ | |
208 | event_notifier_cleanup(&vdev->intx.unmask); | |
209 | ||
210 | /* QEMU starts listening for interrupt events. */ | |
211 | qemu_set_fd_handler(irqfd.fd, vfio_intx_interrupt, NULL, vdev); | |
212 | ||
213 | vdev->intx.kvm_accel = false; | |
214 | ||
215 | /* If we've missed an event, let it re-fire through QEMU */ | |
5546a621 | 216 | vfio_unmask_single_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
e1d1e586 | 217 | |
870cb6f1 | 218 | trace_vfio_intx_disable_kvm(vdev->vbasedev.name); |
e1d1e586 AW |
219 | #endif |
220 | } | |
221 | ||
870cb6f1 | 222 | static void vfio_intx_update(PCIDevice *pdev) |
e1d1e586 | 223 | { |
9ee27d73 | 224 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
e1d1e586 | 225 | PCIINTxRoute route; |
7dfb3424 | 226 | Error *err = NULL; |
e1d1e586 AW |
227 | |
228 | if (vdev->interrupt != VFIO_INT_INTx) { | |
229 | return; | |
230 | } | |
231 | ||
232 | route = pci_device_route_intx_to_irq(&vdev->pdev, vdev->intx.pin); | |
233 | ||
234 | if (!pci_intx_route_changed(&vdev->intx.route, &route)) { | |
235 | return; /* Nothing changed */ | |
236 | } | |
237 | ||
870cb6f1 AW |
238 | trace_vfio_intx_update(vdev->vbasedev.name, |
239 | vdev->intx.route.irq, route.irq); | |
e1d1e586 | 240 | |
870cb6f1 | 241 | vfio_intx_disable_kvm(vdev); |
e1d1e586 AW |
242 | |
243 | vdev->intx.route = route; | |
244 | ||
245 | if (route.mode != PCI_INTX_ENABLED) { | |
246 | return; | |
247 | } | |
248 | ||
7dfb3424 EA |
249 | vfio_intx_enable_kvm(vdev, &err); |
250 | if (err) { | |
251 | error_reportf_err(err, WARN_PREFIX, vdev->vbasedev.name); | |
252 | } | |
e1d1e586 AW |
253 | |
254 | /* Re-enable the interrupt in cased we missed an EOI */ | |
870cb6f1 | 255 | vfio_intx_eoi(&vdev->vbasedev); |
e1d1e586 AW |
256 | } |
257 | ||
7dfb3424 | 258 | static int vfio_intx_enable(VFIOPCIDevice *vdev, Error **errp) |
65501a74 | 259 | { |
65501a74 | 260 | uint8_t pin = vfio_pci_read_config(&vdev->pdev, PCI_INTERRUPT_PIN, 1); |
96d2c2c5 | 261 | int ret, argsz, retval = 0; |
1a403133 AW |
262 | struct vfio_irq_set *irq_set; |
263 | int32_t *pfd; | |
7dfb3424 | 264 | Error *err = NULL; |
65501a74 | 265 | |
ea486926 | 266 | if (!pin) { |
65501a74 AW |
267 | return 0; |
268 | } | |
269 | ||
270 | vfio_disable_interrupts(vdev); | |
271 | ||
272 | vdev->intx.pin = pin - 1; /* Pin A (1) -> irq[0] */ | |
68919cac | 273 | pci_config_set_interrupt_pin(vdev->pdev.config, pin); |
e1d1e586 AW |
274 | |
275 | #ifdef CONFIG_KVM | |
276 | /* | |
277 | * Only conditional to avoid generating error messages on platforms | |
278 | * where we won't actually use the result anyway. | |
279 | */ | |
9fc0e2d8 | 280 | if (kvm_irqfds_enabled() && kvm_resamplefds_enabled()) { |
e1d1e586 AW |
281 | vdev->intx.route = pci_device_route_intx_to_irq(&vdev->pdev, |
282 | vdev->intx.pin); | |
283 | } | |
284 | #endif | |
285 | ||
65501a74 AW |
286 | ret = event_notifier_init(&vdev->intx.interrupt, 0); |
287 | if (ret) { | |
7dfb3424 | 288 | error_setg_errno(errp, -ret, "event_notifier_init failed"); |
65501a74 AW |
289 | return ret; |
290 | } | |
291 | ||
1a403133 AW |
292 | argsz = sizeof(*irq_set) + sizeof(*pfd); |
293 | ||
294 | irq_set = g_malloc0(argsz); | |
295 | irq_set->argsz = argsz; | |
296 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | VFIO_IRQ_SET_ACTION_TRIGGER; | |
297 | irq_set->index = VFIO_PCI_INTX_IRQ_INDEX; | |
298 | irq_set->start = 0; | |
299 | irq_set->count = 1; | |
300 | pfd = (int32_t *)&irq_set->data; | |
301 | ||
302 | *pfd = event_notifier_get_fd(&vdev->intx.interrupt); | |
303 | qemu_set_fd_handler(*pfd, vfio_intx_interrupt, NULL, vdev); | |
65501a74 | 304 | |
5546a621 | 305 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
1a403133 | 306 | if (ret) { |
7dfb3424 | 307 | error_setg_errno(errp, -ret, "failed to setup INTx fd"); |
1a403133 | 308 | qemu_set_fd_handler(*pfd, NULL, NULL, vdev); |
ce59af2d | 309 | event_notifier_cleanup(&vdev->intx.interrupt); |
96d2c2c5 PMD |
310 | retval = -errno; |
311 | goto cleanup; | |
65501a74 AW |
312 | } |
313 | ||
7dfb3424 EA |
314 | vfio_intx_enable_kvm(vdev, &err); |
315 | if (err) { | |
316 | error_reportf_err(err, WARN_PREFIX, vdev->vbasedev.name); | |
317 | } | |
e1d1e586 | 318 | |
65501a74 AW |
319 | vdev->interrupt = VFIO_INT_INTx; |
320 | ||
870cb6f1 | 321 | trace_vfio_intx_enable(vdev->vbasedev.name); |
65501a74 | 322 | |
96d2c2c5 PMD |
323 | cleanup: |
324 | g_free(irq_set); | |
325 | ||
326 | return retval; | |
65501a74 AW |
327 | } |
328 | ||
870cb6f1 | 329 | static void vfio_intx_disable(VFIOPCIDevice *vdev) |
65501a74 AW |
330 | { |
331 | int fd; | |
332 | ||
bc72ad67 | 333 | timer_del(vdev->intx.mmap_timer); |
870cb6f1 | 334 | vfio_intx_disable_kvm(vdev); |
5546a621 | 335 | vfio_disable_irqindex(&vdev->vbasedev, VFIO_PCI_INTX_IRQ_INDEX); |
65501a74 | 336 | vdev->intx.pending = false; |
68919cac | 337 | pci_irq_deassert(&vdev->pdev); |
65501a74 AW |
338 | vfio_mmap_set_enabled(vdev, true); |
339 | ||
340 | fd = event_notifier_get_fd(&vdev->intx.interrupt); | |
341 | qemu_set_fd_handler(fd, NULL, NULL, vdev); | |
342 | event_notifier_cleanup(&vdev->intx.interrupt); | |
343 | ||
344 | vdev->interrupt = VFIO_INT_NONE; | |
345 | ||
870cb6f1 | 346 | trace_vfio_intx_disable(vdev->vbasedev.name); |
65501a74 AW |
347 | } |
348 | ||
349 | /* | |
350 | * MSI/X | |
351 | */ | |
352 | static void vfio_msi_interrupt(void *opaque) | |
353 | { | |
354 | VFIOMSIVector *vector = opaque; | |
9ee27d73 | 355 | VFIOPCIDevice *vdev = vector->vdev; |
0de70dc7 AW |
356 | MSIMessage (*get_msg)(PCIDevice *dev, unsigned vector); |
357 | void (*notify)(PCIDevice *dev, unsigned vector); | |
358 | MSIMessage msg; | |
65501a74 AW |
359 | int nr = vector - vdev->msi_vectors; |
360 | ||
361 | if (!event_notifier_test_and_clear(&vector->interrupt)) { | |
362 | return; | |
363 | } | |
364 | ||
b3ebc10c | 365 | if (vdev->interrupt == VFIO_INT_MSIX) { |
0de70dc7 AW |
366 | get_msg = msix_get_message; |
367 | notify = msix_notify; | |
95239e16 AW |
368 | |
369 | /* A masked vector firing needs to use the PBA, enable it */ | |
370 | if (msix_is_masked(&vdev->pdev, nr)) { | |
371 | set_bit(nr, vdev->msix->pending); | |
372 | memory_region_set_enabled(&vdev->pdev.msix_pba_mmio, true); | |
373 | trace_vfio_msix_pba_enable(vdev->vbasedev.name); | |
374 | } | |
9035f8c0 | 375 | } else if (vdev->interrupt == VFIO_INT_MSI) { |
0de70dc7 AW |
376 | get_msg = msi_get_message; |
377 | notify = msi_notify; | |
b3ebc10c AW |
378 | } else { |
379 | abort(); | |
380 | } | |
381 | ||
0de70dc7 | 382 | msg = get_msg(&vdev->pdev, nr); |
bc5baffa | 383 | trace_vfio_msi_interrupt(vdev->vbasedev.name, nr, msg.address, msg.data); |
0de70dc7 | 384 | notify(&vdev->pdev, nr); |
65501a74 AW |
385 | } |
386 | ||
9ee27d73 | 387 | static int vfio_enable_vectors(VFIOPCIDevice *vdev, bool msix) |
65501a74 AW |
388 | { |
389 | struct vfio_irq_set *irq_set; | |
390 | int ret = 0, i, argsz; | |
391 | int32_t *fds; | |
392 | ||
393 | argsz = sizeof(*irq_set) + (vdev->nr_vectors * sizeof(*fds)); | |
394 | ||
395 | irq_set = g_malloc0(argsz); | |
396 | irq_set->argsz = argsz; | |
397 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | VFIO_IRQ_SET_ACTION_TRIGGER; | |
398 | irq_set->index = msix ? VFIO_PCI_MSIX_IRQ_INDEX : VFIO_PCI_MSI_IRQ_INDEX; | |
399 | irq_set->start = 0; | |
400 | irq_set->count = vdev->nr_vectors; | |
401 | fds = (int32_t *)&irq_set->data; | |
402 | ||
403 | for (i = 0; i < vdev->nr_vectors; i++) { | |
c048be5c AW |
404 | int fd = -1; |
405 | ||
406 | /* | |
407 | * MSI vs MSI-X - The guest has direct access to MSI mask and pending | |
408 | * bits, therefore we always use the KVM signaling path when setup. | |
409 | * MSI-X mask and pending bits are emulated, so we want to use the | |
410 | * KVM signaling path only when configured and unmasked. | |
411 | */ | |
412 | if (vdev->msi_vectors[i].use) { | |
413 | if (vdev->msi_vectors[i].virq < 0 || | |
414 | (msix && msix_is_masked(&vdev->pdev, i))) { | |
415 | fd = event_notifier_get_fd(&vdev->msi_vectors[i].interrupt); | |
416 | } else { | |
417 | fd = event_notifier_get_fd(&vdev->msi_vectors[i].kvm_interrupt); | |
418 | } | |
65501a74 | 419 | } |
c048be5c AW |
420 | |
421 | fds[i] = fd; | |
65501a74 AW |
422 | } |
423 | ||
5546a621 | 424 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
65501a74 AW |
425 | |
426 | g_free(irq_set); | |
427 | ||
65501a74 AW |
428 | return ret; |
429 | } | |
430 | ||
46746dba | 431 | static void vfio_add_kvm_msi_virq(VFIOPCIDevice *vdev, VFIOMSIVector *vector, |
d1f6af6a | 432 | int vector_n, bool msix) |
f4d45d47 AW |
433 | { |
434 | int virq; | |
435 | ||
d1f6af6a | 436 | if ((msix && vdev->no_kvm_msix) || (!msix && vdev->no_kvm_msi)) { |
f4d45d47 AW |
437 | return; |
438 | } | |
439 | ||
440 | if (event_notifier_init(&vector->kvm_interrupt, 0)) { | |
441 | return; | |
442 | } | |
443 | ||
d1f6af6a | 444 | virq = kvm_irqchip_add_msi_route(kvm_state, vector_n, &vdev->pdev); |
f4d45d47 AW |
445 | if (virq < 0) { |
446 | event_notifier_cleanup(&vector->kvm_interrupt); | |
447 | return; | |
448 | } | |
449 | ||
1c9b71a7 | 450 | if (kvm_irqchip_add_irqfd_notifier_gsi(kvm_state, &vector->kvm_interrupt, |
f4d45d47 AW |
451 | NULL, virq) < 0) { |
452 | kvm_irqchip_release_virq(kvm_state, virq); | |
453 | event_notifier_cleanup(&vector->kvm_interrupt); | |
454 | return; | |
455 | } | |
456 | ||
f4d45d47 AW |
457 | vector->virq = virq; |
458 | } | |
459 | ||
460 | static void vfio_remove_kvm_msi_virq(VFIOMSIVector *vector) | |
461 | { | |
1c9b71a7 EA |
462 | kvm_irqchip_remove_irqfd_notifier_gsi(kvm_state, &vector->kvm_interrupt, |
463 | vector->virq); | |
f4d45d47 AW |
464 | kvm_irqchip_release_virq(kvm_state, vector->virq); |
465 | vector->virq = -1; | |
466 | event_notifier_cleanup(&vector->kvm_interrupt); | |
467 | } | |
468 | ||
dc9f06ca PF |
469 | static void vfio_update_kvm_msi_virq(VFIOMSIVector *vector, MSIMessage msg, |
470 | PCIDevice *pdev) | |
f4d45d47 | 471 | { |
dc9f06ca | 472 | kvm_irqchip_update_msi_route(kvm_state, vector->virq, msg, pdev); |
3f1fea0f | 473 | kvm_irqchip_commit_routes(kvm_state); |
f4d45d47 AW |
474 | } |
475 | ||
b0223e29 AW |
476 | static int vfio_msix_vector_do_use(PCIDevice *pdev, unsigned int nr, |
477 | MSIMessage *msg, IOHandler *handler) | |
65501a74 | 478 | { |
9ee27d73 | 479 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
65501a74 AW |
480 | VFIOMSIVector *vector; |
481 | int ret; | |
482 | ||
df92ee44 | 483 | trace_vfio_msix_vector_do_use(vdev->vbasedev.name, nr); |
65501a74 | 484 | |
65501a74 | 485 | vector = &vdev->msi_vectors[nr]; |
65501a74 | 486 | |
f4d45d47 AW |
487 | if (!vector->use) { |
488 | vector->vdev = vdev; | |
489 | vector->virq = -1; | |
490 | if (event_notifier_init(&vector->interrupt, 0)) { | |
491 | error_report("vfio: Error: event_notifier_init failed"); | |
492 | } | |
493 | vector->use = true; | |
494 | msix_vector_use(pdev, nr); | |
65501a74 AW |
495 | } |
496 | ||
f4d45d47 AW |
497 | qemu_set_fd_handler(event_notifier_get_fd(&vector->interrupt), |
498 | handler, NULL, vector); | |
499 | ||
65501a74 AW |
500 | /* |
501 | * Attempt to enable route through KVM irqchip, | |
502 | * default to userspace handling if unavailable. | |
503 | */ | |
f4d45d47 AW |
504 | if (vector->virq >= 0) { |
505 | if (!msg) { | |
506 | vfio_remove_kvm_msi_virq(vector); | |
507 | } else { | |
dc9f06ca | 508 | vfio_update_kvm_msi_virq(vector, *msg, pdev); |
65501a74 | 509 | } |
f4d45d47 | 510 | } else { |
6d17a018 DG |
511 | if (msg) { |
512 | vfio_add_kvm_msi_virq(vdev, vector, nr, true); | |
513 | } | |
65501a74 AW |
514 | } |
515 | ||
516 | /* | |
517 | * We don't want to have the host allocate all possible MSI vectors | |
518 | * for a device if they're not in use, so we shutdown and incrementally | |
519 | * increase them as needed. | |
520 | */ | |
521 | if (vdev->nr_vectors < nr + 1) { | |
5546a621 | 522 | vfio_disable_irqindex(&vdev->vbasedev, VFIO_PCI_MSIX_IRQ_INDEX); |
65501a74 AW |
523 | vdev->nr_vectors = nr + 1; |
524 | ret = vfio_enable_vectors(vdev, true); | |
525 | if (ret) { | |
312fd5f2 | 526 | error_report("vfio: failed to enable vectors, %d", ret); |
65501a74 | 527 | } |
65501a74 | 528 | } else { |
1a403133 AW |
529 | int argsz; |
530 | struct vfio_irq_set *irq_set; | |
531 | int32_t *pfd; | |
532 | ||
533 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
534 | ||
535 | irq_set = g_malloc0(argsz); | |
536 | irq_set->argsz = argsz; | |
537 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
538 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
539 | irq_set->index = VFIO_PCI_MSIX_IRQ_INDEX; | |
540 | irq_set->start = nr; | |
541 | irq_set->count = 1; | |
542 | pfd = (int32_t *)&irq_set->data; | |
543 | ||
f4d45d47 AW |
544 | if (vector->virq >= 0) { |
545 | *pfd = event_notifier_get_fd(&vector->kvm_interrupt); | |
546 | } else { | |
547 | *pfd = event_notifier_get_fd(&vector->interrupt); | |
548 | } | |
1a403133 | 549 | |
5546a621 | 550 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
1a403133 | 551 | g_free(irq_set); |
65501a74 | 552 | if (ret) { |
312fd5f2 | 553 | error_report("vfio: failed to modify vector, %d", ret); |
65501a74 | 554 | } |
65501a74 AW |
555 | } |
556 | ||
95239e16 AW |
557 | /* Disable PBA emulation when nothing more is pending. */ |
558 | clear_bit(nr, vdev->msix->pending); | |
559 | if (find_first_bit(vdev->msix->pending, | |
560 | vdev->nr_vectors) == vdev->nr_vectors) { | |
561 | memory_region_set_enabled(&vdev->pdev.msix_pba_mmio, false); | |
562 | trace_vfio_msix_pba_disable(vdev->vbasedev.name); | |
563 | } | |
564 | ||
65501a74 AW |
565 | return 0; |
566 | } | |
567 | ||
b0223e29 AW |
568 | static int vfio_msix_vector_use(PCIDevice *pdev, |
569 | unsigned int nr, MSIMessage msg) | |
570 | { | |
571 | return vfio_msix_vector_do_use(pdev, nr, &msg, vfio_msi_interrupt); | |
572 | } | |
573 | ||
65501a74 AW |
574 | static void vfio_msix_vector_release(PCIDevice *pdev, unsigned int nr) |
575 | { | |
9ee27d73 | 576 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
65501a74 | 577 | VFIOMSIVector *vector = &vdev->msi_vectors[nr]; |
65501a74 | 578 | |
df92ee44 | 579 | trace_vfio_msix_vector_release(vdev->vbasedev.name, nr); |
65501a74 AW |
580 | |
581 | /* | |
f4d45d47 AW |
582 | * There are still old guests that mask and unmask vectors on every |
583 | * interrupt. If we're using QEMU bypass with a KVM irqfd, leave all of | |
584 | * the KVM setup in place, simply switch VFIO to use the non-bypass | |
585 | * eventfd. We'll then fire the interrupt through QEMU and the MSI-X | |
586 | * core will mask the interrupt and set pending bits, allowing it to | |
587 | * be re-asserted on unmask. Nothing to do if already using QEMU mode. | |
65501a74 | 588 | */ |
f4d45d47 AW |
589 | if (vector->virq >= 0) { |
590 | int argsz; | |
591 | struct vfio_irq_set *irq_set; | |
592 | int32_t *pfd; | |
1a403133 | 593 | |
f4d45d47 | 594 | argsz = sizeof(*irq_set) + sizeof(*pfd); |
1a403133 | 595 | |
f4d45d47 AW |
596 | irq_set = g_malloc0(argsz); |
597 | irq_set->argsz = argsz; | |
598 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
599 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
600 | irq_set->index = VFIO_PCI_MSIX_IRQ_INDEX; | |
601 | irq_set->start = nr; | |
602 | irq_set->count = 1; | |
603 | pfd = (int32_t *)&irq_set->data; | |
1a403133 | 604 | |
f4d45d47 | 605 | *pfd = event_notifier_get_fd(&vector->interrupt); |
1a403133 | 606 | |
5546a621 | 607 | ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
65501a74 | 608 | |
f4d45d47 | 609 | g_free(irq_set); |
65501a74 | 610 | } |
65501a74 AW |
611 | } |
612 | ||
0de70dc7 | 613 | static void vfio_msix_enable(VFIOPCIDevice *vdev) |
fd704adc AW |
614 | { |
615 | vfio_disable_interrupts(vdev); | |
616 | ||
bdd81add | 617 | vdev->msi_vectors = g_new0(VFIOMSIVector, vdev->msix->entries); |
fd704adc AW |
618 | |
619 | vdev->interrupt = VFIO_INT_MSIX; | |
620 | ||
b0223e29 AW |
621 | /* |
622 | * Some communication channels between VF & PF or PF & fw rely on the | |
623 | * physical state of the device and expect that enabling MSI-X from the | |
624 | * guest enables the same on the host. When our guest is Linux, the | |
625 | * guest driver call to pci_enable_msix() sets the enabling bit in the | |
626 | * MSI-X capability, but leaves the vector table masked. We therefore | |
627 | * can't rely on a vector_use callback (from request_irq() in the guest) | |
628 | * to switch the physical device into MSI-X mode because that may come a | |
629 | * long time after pci_enable_msix(). This code enables vector 0 with | |
630 | * triggering to userspace, then immediately release the vector, leaving | |
631 | * the physical device with no vectors enabled, but MSI-X enabled, just | |
632 | * like the guest view. | |
633 | */ | |
634 | vfio_msix_vector_do_use(&vdev->pdev, 0, NULL, NULL); | |
635 | vfio_msix_vector_release(&vdev->pdev, 0); | |
636 | ||
fd704adc | 637 | if (msix_set_vector_notifiers(&vdev->pdev, vfio_msix_vector_use, |
bbef882c | 638 | vfio_msix_vector_release, NULL)) { |
312fd5f2 | 639 | error_report("vfio: msix_set_vector_notifiers failed"); |
fd704adc AW |
640 | } |
641 | ||
0de70dc7 | 642 | trace_vfio_msix_enable(vdev->vbasedev.name); |
fd704adc AW |
643 | } |
644 | ||
0de70dc7 | 645 | static void vfio_msi_enable(VFIOPCIDevice *vdev) |
65501a74 AW |
646 | { |
647 | int ret, i; | |
648 | ||
649 | vfio_disable_interrupts(vdev); | |
650 | ||
651 | vdev->nr_vectors = msi_nr_vectors_allocated(&vdev->pdev); | |
652 | retry: | |
bdd81add | 653 | vdev->msi_vectors = g_new0(VFIOMSIVector, vdev->nr_vectors); |
65501a74 AW |
654 | |
655 | for (i = 0; i < vdev->nr_vectors; i++) { | |
65501a74 AW |
656 | VFIOMSIVector *vector = &vdev->msi_vectors[i]; |
657 | ||
658 | vector->vdev = vdev; | |
f4d45d47 | 659 | vector->virq = -1; |
65501a74 AW |
660 | vector->use = true; |
661 | ||
662 | if (event_notifier_init(&vector->interrupt, 0)) { | |
312fd5f2 | 663 | error_report("vfio: Error: event_notifier_init failed"); |
65501a74 AW |
664 | } |
665 | ||
f4d45d47 AW |
666 | qemu_set_fd_handler(event_notifier_get_fd(&vector->interrupt), |
667 | vfio_msi_interrupt, NULL, vector); | |
668 | ||
65501a74 AW |
669 | /* |
670 | * Attempt to enable route through KVM irqchip, | |
671 | * default to userspace handling if unavailable. | |
672 | */ | |
d1f6af6a | 673 | vfio_add_kvm_msi_virq(vdev, vector, i, false); |
65501a74 AW |
674 | } |
675 | ||
f4d45d47 AW |
676 | /* Set interrupt type prior to possible interrupts */ |
677 | vdev->interrupt = VFIO_INT_MSI; | |
678 | ||
65501a74 AW |
679 | ret = vfio_enable_vectors(vdev, false); |
680 | if (ret) { | |
681 | if (ret < 0) { | |
312fd5f2 | 682 | error_report("vfio: Error: Failed to setup MSI fds: %m"); |
65501a74 AW |
683 | } else if (ret != vdev->nr_vectors) { |
684 | error_report("vfio: Error: Failed to enable %d " | |
312fd5f2 | 685 | "MSI vectors, retry with %d", vdev->nr_vectors, ret); |
65501a74 AW |
686 | } |
687 | ||
688 | for (i = 0; i < vdev->nr_vectors; i++) { | |
689 | VFIOMSIVector *vector = &vdev->msi_vectors[i]; | |
690 | if (vector->virq >= 0) { | |
f4d45d47 | 691 | vfio_remove_kvm_msi_virq(vector); |
65501a74 | 692 | } |
f4d45d47 AW |
693 | qemu_set_fd_handler(event_notifier_get_fd(&vector->interrupt), |
694 | NULL, NULL, NULL); | |
65501a74 AW |
695 | event_notifier_cleanup(&vector->interrupt); |
696 | } | |
697 | ||
698 | g_free(vdev->msi_vectors); | |
699 | ||
700 | if (ret > 0 && ret != vdev->nr_vectors) { | |
701 | vdev->nr_vectors = ret; | |
702 | goto retry; | |
703 | } | |
704 | vdev->nr_vectors = 0; | |
705 | ||
f4d45d47 AW |
706 | /* |
707 | * Failing to setup MSI doesn't really fall within any specification. | |
708 | * Let's try leaving interrupts disabled and hope the guest figures | |
709 | * out to fall back to INTx for this device. | |
710 | */ | |
711 | error_report("vfio: Error: Failed to enable MSI"); | |
712 | vdev->interrupt = VFIO_INT_NONE; | |
713 | ||
65501a74 AW |
714 | return; |
715 | } | |
716 | ||
0de70dc7 | 717 | trace_vfio_msi_enable(vdev->vbasedev.name, vdev->nr_vectors); |
65501a74 AW |
718 | } |
719 | ||
0de70dc7 | 720 | static void vfio_msi_disable_common(VFIOPCIDevice *vdev) |
fd704adc | 721 | { |
7dfb3424 | 722 | Error *err = NULL; |
f4d45d47 AW |
723 | int i; |
724 | ||
725 | for (i = 0; i < vdev->nr_vectors; i++) { | |
726 | VFIOMSIVector *vector = &vdev->msi_vectors[i]; | |
727 | if (vdev->msi_vectors[i].use) { | |
728 | if (vector->virq >= 0) { | |
729 | vfio_remove_kvm_msi_virq(vector); | |
730 | } | |
731 | qemu_set_fd_handler(event_notifier_get_fd(&vector->interrupt), | |
732 | NULL, NULL, NULL); | |
733 | event_notifier_cleanup(&vector->interrupt); | |
734 | } | |
735 | } | |
736 | ||
fd704adc AW |
737 | g_free(vdev->msi_vectors); |
738 | vdev->msi_vectors = NULL; | |
739 | vdev->nr_vectors = 0; | |
740 | vdev->interrupt = VFIO_INT_NONE; | |
741 | ||
7dfb3424 EA |
742 | vfio_intx_enable(vdev, &err); |
743 | if (err) { | |
744 | error_reportf_err(err, ERR_PREFIX, vdev->vbasedev.name); | |
745 | } | |
fd704adc AW |
746 | } |
747 | ||
0de70dc7 | 748 | static void vfio_msix_disable(VFIOPCIDevice *vdev) |
fd704adc | 749 | { |
3e40ba0f AW |
750 | int i; |
751 | ||
fd704adc AW |
752 | msix_unset_vector_notifiers(&vdev->pdev); |
753 | ||
3e40ba0f AW |
754 | /* |
755 | * MSI-X will only release vectors if MSI-X is still enabled on the | |
756 | * device, check through the rest and release it ourselves if necessary. | |
757 | */ | |
758 | for (i = 0; i < vdev->nr_vectors; i++) { | |
759 | if (vdev->msi_vectors[i].use) { | |
760 | vfio_msix_vector_release(&vdev->pdev, i); | |
f4d45d47 | 761 | msix_vector_unuse(&vdev->pdev, i); |
3e40ba0f AW |
762 | } |
763 | } | |
764 | ||
fd704adc | 765 | if (vdev->nr_vectors) { |
5546a621 | 766 | vfio_disable_irqindex(&vdev->vbasedev, VFIO_PCI_MSIX_IRQ_INDEX); |
fd704adc AW |
767 | } |
768 | ||
0de70dc7 | 769 | vfio_msi_disable_common(vdev); |
fd704adc | 770 | |
95239e16 AW |
771 | memset(vdev->msix->pending, 0, |
772 | BITS_TO_LONGS(vdev->msix->entries) * sizeof(unsigned long)); | |
773 | ||
0de70dc7 | 774 | trace_vfio_msix_disable(vdev->vbasedev.name); |
fd704adc AW |
775 | } |
776 | ||
0de70dc7 | 777 | static void vfio_msi_disable(VFIOPCIDevice *vdev) |
65501a74 | 778 | { |
5546a621 | 779 | vfio_disable_irqindex(&vdev->vbasedev, VFIO_PCI_MSI_IRQ_INDEX); |
0de70dc7 | 780 | vfio_msi_disable_common(vdev); |
65501a74 | 781 | |
0de70dc7 | 782 | trace_vfio_msi_disable(vdev->vbasedev.name); |
65501a74 AW |
783 | } |
784 | ||
9ee27d73 | 785 | static void vfio_update_msi(VFIOPCIDevice *vdev) |
c7679d45 AW |
786 | { |
787 | int i; | |
788 | ||
789 | for (i = 0; i < vdev->nr_vectors; i++) { | |
790 | VFIOMSIVector *vector = &vdev->msi_vectors[i]; | |
791 | MSIMessage msg; | |
792 | ||
793 | if (!vector->use || vector->virq < 0) { | |
794 | continue; | |
795 | } | |
796 | ||
797 | msg = msi_get_message(&vdev->pdev, i); | |
dc9f06ca | 798 | vfio_update_kvm_msi_virq(vector, msg, &vdev->pdev); |
c7679d45 AW |
799 | } |
800 | } | |
801 | ||
9ee27d73 | 802 | static void vfio_pci_load_rom(VFIOPCIDevice *vdev) |
6f864e6e | 803 | { |
46900226 | 804 | struct vfio_region_info *reg_info; |
6f864e6e AW |
805 | uint64_t size; |
806 | off_t off = 0; | |
7d489dcd | 807 | ssize_t bytes; |
6f864e6e | 808 | |
46900226 AW |
809 | if (vfio_get_region_info(&vdev->vbasedev, |
810 | VFIO_PCI_ROM_REGION_INDEX, ®_info)) { | |
6f864e6e AW |
811 | error_report("vfio: Error getting ROM info: %m"); |
812 | return; | |
813 | } | |
814 | ||
46900226 AW |
815 | trace_vfio_pci_load_rom(vdev->vbasedev.name, (unsigned long)reg_info->size, |
816 | (unsigned long)reg_info->offset, | |
817 | (unsigned long)reg_info->flags); | |
818 | ||
819 | vdev->rom_size = size = reg_info->size; | |
820 | vdev->rom_offset = reg_info->offset; | |
6f864e6e | 821 | |
46900226 | 822 | g_free(reg_info); |
6f864e6e AW |
823 | |
824 | if (!vdev->rom_size) { | |
e638073c | 825 | vdev->rom_read_failed = true; |
d20b43df | 826 | error_report("vfio-pci: Cannot read device rom at " |
df92ee44 | 827 | "%s", vdev->vbasedev.name); |
d20b43df BD |
828 | error_printf("Device option ROM contents are probably invalid " |
829 | "(check dmesg).\nSkip option ROM probe with rombar=0, " | |
830 | "or load from file with romfile=\n"); | |
6f864e6e AW |
831 | return; |
832 | } | |
833 | ||
834 | vdev->rom = g_malloc(size); | |
835 | memset(vdev->rom, 0xff, size); | |
836 | ||
837 | while (size) { | |
5546a621 EA |
838 | bytes = pread(vdev->vbasedev.fd, vdev->rom + off, |
839 | size, vdev->rom_offset + off); | |
6f864e6e AW |
840 | if (bytes == 0) { |
841 | break; | |
842 | } else if (bytes > 0) { | |
843 | off += bytes; | |
844 | size -= bytes; | |
845 | } else { | |
846 | if (errno == EINTR || errno == EAGAIN) { | |
847 | continue; | |
848 | } | |
849 | error_report("vfio: Error reading device ROM: %m"); | |
850 | break; | |
851 | } | |
852 | } | |
e2e5ee9c AW |
853 | |
854 | /* | |
855 | * Test the ROM signature against our device, if the vendor is correct | |
856 | * but the device ID doesn't match, store the correct device ID and | |
857 | * recompute the checksum. Intel IGD devices need this and are known | |
858 | * to have bogus checksums so we can't simply adjust the checksum. | |
859 | */ | |
860 | if (pci_get_word(vdev->rom) == 0xaa55 && | |
861 | pci_get_word(vdev->rom + 0x18) + 8 < vdev->rom_size && | |
862 | !memcmp(vdev->rom + pci_get_word(vdev->rom + 0x18), "PCIR", 4)) { | |
863 | uint16_t vid, did; | |
864 | ||
865 | vid = pci_get_word(vdev->rom + pci_get_word(vdev->rom + 0x18) + 4); | |
866 | did = pci_get_word(vdev->rom + pci_get_word(vdev->rom + 0x18) + 6); | |
867 | ||
868 | if (vid == vdev->vendor_id && did != vdev->device_id) { | |
869 | int i; | |
870 | uint8_t csum, *data = vdev->rom; | |
871 | ||
872 | pci_set_word(vdev->rom + pci_get_word(vdev->rom + 0x18) + 6, | |
873 | vdev->device_id); | |
874 | data[6] = 0; | |
875 | ||
876 | for (csum = 0, i = 0; i < vdev->rom_size; i++) { | |
877 | csum += data[i]; | |
878 | } | |
879 | ||
880 | data[6] = -csum; | |
881 | } | |
882 | } | |
6f864e6e AW |
883 | } |
884 | ||
885 | static uint64_t vfio_rom_read(void *opaque, hwaddr addr, unsigned size) | |
886 | { | |
9ee27d73 | 887 | VFIOPCIDevice *vdev = opaque; |
75bd0c72 ND |
888 | union { |
889 | uint8_t byte; | |
890 | uint16_t word; | |
891 | uint32_t dword; | |
892 | uint64_t qword; | |
893 | } val; | |
894 | uint64_t data = 0; | |
6f864e6e AW |
895 | |
896 | /* Load the ROM lazily when the guest tries to read it */ | |
db01eedb | 897 | if (unlikely(!vdev->rom && !vdev->rom_read_failed)) { |
6f864e6e AW |
898 | vfio_pci_load_rom(vdev); |
899 | } | |
900 | ||
6758008e | 901 | memcpy(&val, vdev->rom + addr, |
6f864e6e AW |
902 | (addr < vdev->rom_size) ? MIN(size, vdev->rom_size - addr) : 0); |
903 | ||
75bd0c72 ND |
904 | switch (size) { |
905 | case 1: | |
906 | data = val.byte; | |
907 | break; | |
908 | case 2: | |
909 | data = le16_to_cpu(val.word); | |
910 | break; | |
911 | case 4: | |
912 | data = le32_to_cpu(val.dword); | |
913 | break; | |
914 | default: | |
915 | hw_error("vfio: unsupported read size, %d bytes\n", size); | |
916 | break; | |
917 | } | |
918 | ||
df92ee44 | 919 | trace_vfio_rom_read(vdev->vbasedev.name, addr, size, data); |
6f864e6e | 920 | |
75bd0c72 | 921 | return data; |
6f864e6e AW |
922 | } |
923 | ||
64fa25a0 AW |
924 | static void vfio_rom_write(void *opaque, hwaddr addr, |
925 | uint64_t data, unsigned size) | |
926 | { | |
927 | } | |
928 | ||
6f864e6e AW |
929 | static const MemoryRegionOps vfio_rom_ops = { |
930 | .read = vfio_rom_read, | |
64fa25a0 | 931 | .write = vfio_rom_write, |
6758008e | 932 | .endianness = DEVICE_LITTLE_ENDIAN, |
6f864e6e AW |
933 | }; |
934 | ||
9ee27d73 | 935 | static void vfio_pci_size_rom(VFIOPCIDevice *vdev) |
6f864e6e | 936 | { |
b1c50c5f | 937 | uint32_t orig, size = cpu_to_le32((uint32_t)PCI_ROM_ADDRESS_MASK); |
6f864e6e | 938 | off_t offset = vdev->config_offset + PCI_ROM_ADDRESS; |
4b943029 | 939 | DeviceState *dev = DEVICE(vdev); |
062ed5d8 | 940 | char *name; |
5546a621 | 941 | int fd = vdev->vbasedev.fd; |
6f864e6e AW |
942 | |
943 | if (vdev->pdev.romfile || !vdev->pdev.rom_bar) { | |
4b943029 BD |
944 | /* Since pci handles romfile, just print a message and return */ |
945 | if (vfio_blacklist_opt_rom(vdev) && vdev->pdev.romfile) { | |
7df9381b AW |
946 | error_printf("Warning : Device at %s is known to cause system instability issues during option rom execution. Proceeding anyway since user specified romfile\n", |
947 | vdev->vbasedev.name); | |
4b943029 | 948 | } |
6f864e6e AW |
949 | return; |
950 | } | |
951 | ||
952 | /* | |
953 | * Use the same size ROM BAR as the physical device. The contents | |
954 | * will get filled in later when the guest tries to read it. | |
955 | */ | |
5546a621 EA |
956 | if (pread(fd, &orig, 4, offset) != 4 || |
957 | pwrite(fd, &size, 4, offset) != 4 || | |
958 | pread(fd, &size, 4, offset) != 4 || | |
959 | pwrite(fd, &orig, 4, offset) != 4) { | |
7df9381b | 960 | error_report("%s(%s) failed: %m", __func__, vdev->vbasedev.name); |
6f864e6e AW |
961 | return; |
962 | } | |
963 | ||
b1c50c5f | 964 | size = ~(le32_to_cpu(size) & PCI_ROM_ADDRESS_MASK) + 1; |
6f864e6e AW |
965 | |
966 | if (!size) { | |
967 | return; | |
968 | } | |
969 | ||
4b943029 BD |
970 | if (vfio_blacklist_opt_rom(vdev)) { |
971 | if (dev->opts && qemu_opt_get(dev->opts, "rombar")) { | |
7df9381b AW |
972 | error_printf("Warning : Device at %s is known to cause system instability issues during option rom execution. Proceeding anyway since user specified non zero value for rombar\n", |
973 | vdev->vbasedev.name); | |
4b943029 | 974 | } else { |
7df9381b AW |
975 | error_printf("Warning : Rom loading for device at %s has been disabled due to system instability issues. Specify rombar=1 or romfile to force\n", |
976 | vdev->vbasedev.name); | |
4b943029 BD |
977 | return; |
978 | } | |
979 | } | |
980 | ||
df92ee44 | 981 | trace_vfio_pci_size_rom(vdev->vbasedev.name, size); |
6f864e6e | 982 | |
062ed5d8 | 983 | name = g_strdup_printf("vfio[%s].rom", vdev->vbasedev.name); |
6f864e6e AW |
984 | |
985 | memory_region_init_io(&vdev->pdev.rom, OBJECT(vdev), | |
986 | &vfio_rom_ops, vdev, name, size); | |
062ed5d8 | 987 | g_free(name); |
6f864e6e AW |
988 | |
989 | pci_register_bar(&vdev->pdev, PCI_ROM_SLOT, | |
990 | PCI_BASE_ADDRESS_SPACE_MEMORY, &vdev->pdev.rom); | |
991 | ||
992 | vdev->pdev.has_rom = true; | |
e638073c | 993 | vdev->rom_read_failed = false; |
6f864e6e AW |
994 | } |
995 | ||
c00d61d8 | 996 | void vfio_vga_write(void *opaque, hwaddr addr, |
f15689c7 AW |
997 | uint64_t data, unsigned size) |
998 | { | |
999 | VFIOVGARegion *region = opaque; | |
1000 | VFIOVGA *vga = container_of(region, VFIOVGA, region[region->nr]); | |
1001 | union { | |
1002 | uint8_t byte; | |
1003 | uint16_t word; | |
1004 | uint32_t dword; | |
1005 | uint64_t qword; | |
1006 | } buf; | |
1007 | off_t offset = vga->fd_offset + region->offset + addr; | |
1008 | ||
1009 | switch (size) { | |
1010 | case 1: | |
1011 | buf.byte = data; | |
1012 | break; | |
1013 | case 2: | |
1014 | buf.word = cpu_to_le16(data); | |
1015 | break; | |
1016 | case 4: | |
1017 | buf.dword = cpu_to_le32(data); | |
1018 | break; | |
1019 | default: | |
4e505ddd | 1020 | hw_error("vfio: unsupported write size, %d bytes", size); |
f15689c7 AW |
1021 | break; |
1022 | } | |
1023 | ||
1024 | if (pwrite(vga->fd, &buf, size, offset) != size) { | |
1025 | error_report("%s(,0x%"HWADDR_PRIx", 0x%"PRIx64", %d) failed: %m", | |
1026 | __func__, region->offset + addr, data, size); | |
1027 | } | |
1028 | ||
385f57cf | 1029 | trace_vfio_vga_write(region->offset + addr, data, size); |
f15689c7 AW |
1030 | } |
1031 | ||
c00d61d8 | 1032 | uint64_t vfio_vga_read(void *opaque, hwaddr addr, unsigned size) |
f15689c7 AW |
1033 | { |
1034 | VFIOVGARegion *region = opaque; | |
1035 | VFIOVGA *vga = container_of(region, VFIOVGA, region[region->nr]); | |
1036 | union { | |
1037 | uint8_t byte; | |
1038 | uint16_t word; | |
1039 | uint32_t dword; | |
1040 | uint64_t qword; | |
1041 | } buf; | |
1042 | uint64_t data = 0; | |
1043 | off_t offset = vga->fd_offset + region->offset + addr; | |
1044 | ||
1045 | if (pread(vga->fd, &buf, size, offset) != size) { | |
1046 | error_report("%s(,0x%"HWADDR_PRIx", %d) failed: %m", | |
1047 | __func__, region->offset + addr, size); | |
1048 | return (uint64_t)-1; | |
1049 | } | |
1050 | ||
1051 | switch (size) { | |
1052 | case 1: | |
1053 | data = buf.byte; | |
1054 | break; | |
1055 | case 2: | |
1056 | data = le16_to_cpu(buf.word); | |
1057 | break; | |
1058 | case 4: | |
1059 | data = le32_to_cpu(buf.dword); | |
1060 | break; | |
1061 | default: | |
4e505ddd | 1062 | hw_error("vfio: unsupported read size, %d bytes", size); |
f15689c7 AW |
1063 | break; |
1064 | } | |
1065 | ||
385f57cf | 1066 | trace_vfio_vga_read(region->offset + addr, size, data); |
f15689c7 AW |
1067 | |
1068 | return data; | |
1069 | } | |
1070 | ||
1071 | static const MemoryRegionOps vfio_vga_ops = { | |
1072 | .read = vfio_vga_read, | |
1073 | .write = vfio_vga_write, | |
1074 | .endianness = DEVICE_LITTLE_ENDIAN, | |
1075 | }; | |
1076 | ||
95251725 YX |
1077 | /* |
1078 | * Expand memory region of sub-page(size < PAGE_SIZE) MMIO BAR to page | |
1079 | * size if the BAR is in an exclusive page in host so that we could map | |
1080 | * this BAR to guest. But this sub-page BAR may not occupy an exclusive | |
1081 | * page in guest. So we should set the priority of the expanded memory | |
1082 | * region to zero in case of overlap with BARs which share the same page | |
1083 | * with the sub-page BAR in guest. Besides, we should also recover the | |
1084 | * size of this sub-page BAR when its base address is changed in guest | |
1085 | * and not page aligned any more. | |
1086 | */ | |
1087 | static void vfio_sub_page_bar_update_mapping(PCIDevice *pdev, int bar) | |
1088 | { | |
1089 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); | |
1090 | VFIORegion *region = &vdev->bars[bar].region; | |
3a286732 | 1091 | MemoryRegion *mmap_mr, *region_mr, *base_mr; |
95251725 YX |
1092 | PCIIORegion *r; |
1093 | pcibus_t bar_addr; | |
1094 | uint64_t size = region->size; | |
1095 | ||
1096 | /* Make sure that the whole region is allowed to be mmapped */ | |
1097 | if (region->nr_mmaps != 1 || !region->mmaps[0].mmap || | |
1098 | region->mmaps[0].size != region->size) { | |
1099 | return; | |
1100 | } | |
1101 | ||
1102 | r = &pdev->io_regions[bar]; | |
1103 | bar_addr = r->addr; | |
3a286732 AW |
1104 | base_mr = vdev->bars[bar].mr; |
1105 | region_mr = region->mem; | |
95251725 YX |
1106 | mmap_mr = ®ion->mmaps[0].mem; |
1107 | ||
1108 | /* If BAR is mapped and page aligned, update to fill PAGE_SIZE */ | |
1109 | if (bar_addr != PCI_BAR_UNMAPPED && | |
1110 | !(bar_addr & ~qemu_real_host_page_mask)) { | |
1111 | size = qemu_real_host_page_size; | |
1112 | } | |
1113 | ||
1114 | memory_region_transaction_begin(); | |
1115 | ||
3a286732 AW |
1116 | if (vdev->bars[bar].size < size) { |
1117 | memory_region_set_size(base_mr, size); | |
1118 | } | |
1119 | memory_region_set_size(region_mr, size); | |
95251725 | 1120 | memory_region_set_size(mmap_mr, size); |
3a286732 AW |
1121 | if (size != vdev->bars[bar].size && memory_region_is_mapped(base_mr)) { |
1122 | memory_region_del_subregion(r->address_space, base_mr); | |
95251725 | 1123 | memory_region_add_subregion_overlap(r->address_space, |
3a286732 | 1124 | bar_addr, base_mr, 0); |
95251725 YX |
1125 | } |
1126 | ||
1127 | memory_region_transaction_commit(); | |
1128 | } | |
1129 | ||
65501a74 AW |
1130 | /* |
1131 | * PCI config space | |
1132 | */ | |
c00d61d8 | 1133 | uint32_t vfio_pci_read_config(PCIDevice *pdev, uint32_t addr, int len) |
65501a74 | 1134 | { |
9ee27d73 | 1135 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
4b5d5e87 | 1136 | uint32_t emu_bits = 0, emu_val = 0, phys_val = 0, val; |
65501a74 | 1137 | |
4b5d5e87 AW |
1138 | memcpy(&emu_bits, vdev->emulated_config_bits + addr, len); |
1139 | emu_bits = le32_to_cpu(emu_bits); | |
65501a74 | 1140 | |
4b5d5e87 AW |
1141 | if (emu_bits) { |
1142 | emu_val = pci_default_read_config(pdev, addr, len); | |
1143 | } | |
1144 | ||
1145 | if (~emu_bits & (0xffffffffU >> (32 - len * 8))) { | |
1146 | ssize_t ret; | |
1147 | ||
5546a621 EA |
1148 | ret = pread(vdev->vbasedev.fd, &phys_val, len, |
1149 | vdev->config_offset + addr); | |
4b5d5e87 | 1150 | if (ret != len) { |
7df9381b AW |
1151 | error_report("%s(%s, 0x%x, 0x%x) failed: %m", |
1152 | __func__, vdev->vbasedev.name, addr, len); | |
65501a74 AW |
1153 | return -errno; |
1154 | } | |
4b5d5e87 | 1155 | phys_val = le32_to_cpu(phys_val); |
65501a74 AW |
1156 | } |
1157 | ||
4b5d5e87 | 1158 | val = (emu_val & emu_bits) | (phys_val & ~emu_bits); |
65501a74 | 1159 | |
df92ee44 | 1160 | trace_vfio_pci_read_config(vdev->vbasedev.name, addr, len, val); |
65501a74 AW |
1161 | |
1162 | return val; | |
1163 | } | |
1164 | ||
c00d61d8 AW |
1165 | void vfio_pci_write_config(PCIDevice *pdev, |
1166 | uint32_t addr, uint32_t val, int len) | |
65501a74 | 1167 | { |
9ee27d73 | 1168 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
65501a74 AW |
1169 | uint32_t val_le = cpu_to_le32(val); |
1170 | ||
df92ee44 | 1171 | trace_vfio_pci_write_config(vdev->vbasedev.name, addr, val, len); |
65501a74 AW |
1172 | |
1173 | /* Write everything to VFIO, let it filter out what we can't write */ | |
5546a621 EA |
1174 | if (pwrite(vdev->vbasedev.fd, &val_le, len, vdev->config_offset + addr) |
1175 | != len) { | |
7df9381b AW |
1176 | error_report("%s(%s, 0x%x, 0x%x, 0x%x) failed: %m", |
1177 | __func__, vdev->vbasedev.name, addr, val, len); | |
65501a74 AW |
1178 | } |
1179 | ||
65501a74 AW |
1180 | /* MSI/MSI-X Enabling/Disabling */ |
1181 | if (pdev->cap_present & QEMU_PCI_CAP_MSI && | |
1182 | ranges_overlap(addr, len, pdev->msi_cap, vdev->msi_cap_size)) { | |
1183 | int is_enabled, was_enabled = msi_enabled(pdev); | |
1184 | ||
1185 | pci_default_write_config(pdev, addr, val, len); | |
1186 | ||
1187 | is_enabled = msi_enabled(pdev); | |
1188 | ||
c7679d45 AW |
1189 | if (!was_enabled) { |
1190 | if (is_enabled) { | |
0de70dc7 | 1191 | vfio_msi_enable(vdev); |
c7679d45 AW |
1192 | } |
1193 | } else { | |
1194 | if (!is_enabled) { | |
0de70dc7 | 1195 | vfio_msi_disable(vdev); |
c7679d45 AW |
1196 | } else { |
1197 | vfio_update_msi(vdev); | |
1198 | } | |
65501a74 | 1199 | } |
4b5d5e87 | 1200 | } else if (pdev->cap_present & QEMU_PCI_CAP_MSIX && |
65501a74 AW |
1201 | ranges_overlap(addr, len, pdev->msix_cap, MSIX_CAP_LENGTH)) { |
1202 | int is_enabled, was_enabled = msix_enabled(pdev); | |
1203 | ||
1204 | pci_default_write_config(pdev, addr, val, len); | |
1205 | ||
1206 | is_enabled = msix_enabled(pdev); | |
1207 | ||
1208 | if (!was_enabled && is_enabled) { | |
0de70dc7 | 1209 | vfio_msix_enable(vdev); |
65501a74 | 1210 | } else if (was_enabled && !is_enabled) { |
0de70dc7 | 1211 | vfio_msix_disable(vdev); |
65501a74 | 1212 | } |
95251725 YX |
1213 | } else if (ranges_overlap(addr, len, PCI_BASE_ADDRESS_0, 24) || |
1214 | range_covers_byte(addr, len, PCI_COMMAND)) { | |
1215 | pcibus_t old_addr[PCI_NUM_REGIONS - 1]; | |
1216 | int bar; | |
1217 | ||
1218 | for (bar = 0; bar < PCI_ROM_SLOT; bar++) { | |
1219 | old_addr[bar] = pdev->io_regions[bar].addr; | |
1220 | } | |
1221 | ||
1222 | pci_default_write_config(pdev, addr, val, len); | |
1223 | ||
1224 | for (bar = 0; bar < PCI_ROM_SLOT; bar++) { | |
1225 | if (old_addr[bar] != pdev->io_regions[bar].addr && | |
3a286732 AW |
1226 | vdev->bars[bar].region.size > 0 && |
1227 | vdev->bars[bar].region.size < qemu_real_host_page_size) { | |
95251725 YX |
1228 | vfio_sub_page_bar_update_mapping(pdev, bar); |
1229 | } | |
1230 | } | |
4b5d5e87 AW |
1231 | } else { |
1232 | /* Write everything to QEMU to keep emulated bits correct */ | |
1233 | pci_default_write_config(pdev, addr, val, len); | |
65501a74 AW |
1234 | } |
1235 | } | |
1236 | ||
65501a74 AW |
1237 | /* |
1238 | * Interrupt setup | |
1239 | */ | |
9ee27d73 | 1240 | static void vfio_disable_interrupts(VFIOPCIDevice *vdev) |
65501a74 | 1241 | { |
b3e27c3a AW |
1242 | /* |
1243 | * More complicated than it looks. Disabling MSI/X transitions the | |
1244 | * device to INTx mode (if supported). Therefore we need to first | |
1245 | * disable MSI/X and then cleanup by disabling INTx. | |
1246 | */ | |
1247 | if (vdev->interrupt == VFIO_INT_MSIX) { | |
0de70dc7 | 1248 | vfio_msix_disable(vdev); |
b3e27c3a | 1249 | } else if (vdev->interrupt == VFIO_INT_MSI) { |
0de70dc7 | 1250 | vfio_msi_disable(vdev); |
b3e27c3a AW |
1251 | } |
1252 | ||
1253 | if (vdev->interrupt == VFIO_INT_INTx) { | |
870cb6f1 | 1254 | vfio_intx_disable(vdev); |
65501a74 AW |
1255 | } |
1256 | } | |
1257 | ||
7ef165b9 | 1258 | static int vfio_msi_setup(VFIOPCIDevice *vdev, int pos, Error **errp) |
65501a74 AW |
1259 | { |
1260 | uint16_t ctrl; | |
1261 | bool msi_64bit, msi_maskbit; | |
1262 | int ret, entries; | |
1108b2f8 | 1263 | Error *err = NULL; |
65501a74 | 1264 | |
5546a621 | 1265 | if (pread(vdev->vbasedev.fd, &ctrl, sizeof(ctrl), |
65501a74 | 1266 | vdev->config_offset + pos + PCI_CAP_FLAGS) != sizeof(ctrl)) { |
7ef165b9 | 1267 | error_setg_errno(errp, errno, "failed reading MSI PCI_CAP_FLAGS"); |
65501a74 AW |
1268 | return -errno; |
1269 | } | |
1270 | ctrl = le16_to_cpu(ctrl); | |
1271 | ||
1272 | msi_64bit = !!(ctrl & PCI_MSI_FLAGS_64BIT); | |
1273 | msi_maskbit = !!(ctrl & PCI_MSI_FLAGS_MASKBIT); | |
1274 | entries = 1 << ((ctrl & PCI_MSI_FLAGS_QMASK) >> 1); | |
1275 | ||
0de70dc7 | 1276 | trace_vfio_msi_setup(vdev->vbasedev.name, pos); |
65501a74 | 1277 | |
1108b2f8 | 1278 | ret = msi_init(&vdev->pdev, pos, entries, msi_64bit, msi_maskbit, &err); |
65501a74 | 1279 | if (ret < 0) { |
e43b9a5a AW |
1280 | if (ret == -ENOTSUP) { |
1281 | return 0; | |
1282 | } | |
7ef165b9 EA |
1283 | error_prepend(&err, "msi_init failed: "); |
1284 | error_propagate(errp, err); | |
65501a74 AW |
1285 | return ret; |
1286 | } | |
1287 | vdev->msi_cap_size = 0xa + (msi_maskbit ? 0xa : 0) + (msi_64bit ? 0x4 : 0); | |
1288 | ||
1289 | return 0; | |
1290 | } | |
1291 | ||
db0da029 AW |
1292 | static void vfio_pci_fixup_msix_region(VFIOPCIDevice *vdev) |
1293 | { | |
1294 | off_t start, end; | |
1295 | VFIORegion *region = &vdev->bars[vdev->msix->table_bar].region; | |
1296 | ||
ae0215b2 AK |
1297 | /* |
1298 | * If the host driver allows mapping of a MSIX data, we are going to | |
1299 | * do map the entire BAR and emulate MSIX table on top of that. | |
1300 | */ | |
1301 | if (vfio_has_region_cap(&vdev->vbasedev, region->nr, | |
1302 | VFIO_REGION_INFO_CAP_MSIX_MAPPABLE)) { | |
1303 | return; | |
1304 | } | |
1305 | ||
db0da029 AW |
1306 | /* |
1307 | * We expect to find a single mmap covering the whole BAR, anything else | |
1308 | * means it's either unsupported or already setup. | |
1309 | */ | |
1310 | if (region->nr_mmaps != 1 || region->mmaps[0].offset || | |
1311 | region->size != region->mmaps[0].size) { | |
1312 | return; | |
1313 | } | |
1314 | ||
1315 | /* MSI-X table start and end aligned to host page size */ | |
1316 | start = vdev->msix->table_offset & qemu_real_host_page_mask; | |
1317 | end = REAL_HOST_PAGE_ALIGN((uint64_t)vdev->msix->table_offset + | |
1318 | (vdev->msix->entries * PCI_MSIX_ENTRY_SIZE)); | |
1319 | ||
1320 | /* | |
1321 | * Does the MSI-X table cover the beginning of the BAR? The whole BAR? | |
1322 | * NB - Host page size is necessarily a power of two and so is the PCI | |
1323 | * BAR (not counting EA yet), therefore if we have host page aligned | |
1324 | * @start and @end, then any remainder of the BAR before or after those | |
1325 | * must be at least host page sized and therefore mmap'able. | |
1326 | */ | |
1327 | if (!start) { | |
1328 | if (end >= region->size) { | |
1329 | region->nr_mmaps = 0; | |
1330 | g_free(region->mmaps); | |
1331 | region->mmaps = NULL; | |
1332 | trace_vfio_msix_fixup(vdev->vbasedev.name, | |
1333 | vdev->msix->table_bar, 0, 0); | |
1334 | } else { | |
1335 | region->mmaps[0].offset = end; | |
1336 | region->mmaps[0].size = region->size - end; | |
1337 | trace_vfio_msix_fixup(vdev->vbasedev.name, | |
1338 | vdev->msix->table_bar, region->mmaps[0].offset, | |
1339 | region->mmaps[0].offset + region->mmaps[0].size); | |
1340 | } | |
1341 | ||
1342 | /* Maybe it's aligned at the end of the BAR */ | |
1343 | } else if (end >= region->size) { | |
1344 | region->mmaps[0].size = start; | |
1345 | trace_vfio_msix_fixup(vdev->vbasedev.name, | |
1346 | vdev->msix->table_bar, region->mmaps[0].offset, | |
1347 | region->mmaps[0].offset + region->mmaps[0].size); | |
1348 | ||
1349 | /* Otherwise it must split the BAR */ | |
1350 | } else { | |
1351 | region->nr_mmaps = 2; | |
1352 | region->mmaps = g_renew(VFIOMmap, region->mmaps, 2); | |
1353 | ||
1354 | memcpy(®ion->mmaps[1], ®ion->mmaps[0], sizeof(VFIOMmap)); | |
1355 | ||
1356 | region->mmaps[0].size = start; | |
1357 | trace_vfio_msix_fixup(vdev->vbasedev.name, | |
1358 | vdev->msix->table_bar, region->mmaps[0].offset, | |
1359 | region->mmaps[0].offset + region->mmaps[0].size); | |
1360 | ||
1361 | region->mmaps[1].offset = end; | |
1362 | region->mmaps[1].size = region->size - end; | |
1363 | trace_vfio_msix_fixup(vdev->vbasedev.name, | |
1364 | vdev->msix->table_bar, region->mmaps[1].offset, | |
1365 | region->mmaps[1].offset + region->mmaps[1].size); | |
1366 | } | |
1367 | } | |
1368 | ||
89d5202e AW |
1369 | static void vfio_pci_relocate_msix(VFIOPCIDevice *vdev, Error **errp) |
1370 | { | |
1371 | int target_bar = -1; | |
1372 | size_t msix_sz; | |
1373 | ||
1374 | if (!vdev->msix || vdev->msix_relo == OFF_AUTOPCIBAR_OFF) { | |
1375 | return; | |
1376 | } | |
1377 | ||
1378 | /* The actual minimum size of MSI-X structures */ | |
1379 | msix_sz = (vdev->msix->entries * PCI_MSIX_ENTRY_SIZE) + | |
1380 | (QEMU_ALIGN_UP(vdev->msix->entries, 64) / 8); | |
1381 | /* Round up to host pages, we don't want to share a page */ | |
1382 | msix_sz = REAL_HOST_PAGE_ALIGN(msix_sz); | |
1383 | /* PCI BARs must be a power of 2 */ | |
1384 | msix_sz = pow2ceil(msix_sz); | |
1385 | ||
1386 | if (vdev->msix_relo == OFF_AUTOPCIBAR_AUTO) { | |
1387 | /* | |
1388 | * TODO: Lookup table for known devices. | |
1389 | * | |
1390 | * Logically we might use an algorithm here to select the BAR adding | |
1391 | * the least additional MMIO space, but we cannot programatically | |
1392 | * predict the driver dependency on BAR ordering or sizing, therefore | |
1393 | * 'auto' becomes a lookup for combinations reported to work. | |
1394 | */ | |
1395 | if (target_bar < 0) { | |
1396 | error_setg(errp, "No automatic MSI-X relocation available for " | |
1397 | "device %04x:%04x", vdev->vendor_id, vdev->device_id); | |
1398 | return; | |
1399 | } | |
1400 | } else { | |
1401 | target_bar = (int)(vdev->msix_relo - OFF_AUTOPCIBAR_BAR0); | |
1402 | } | |
1403 | ||
1404 | /* I/O port BARs cannot host MSI-X structures */ | |
1405 | if (vdev->bars[target_bar].ioport) { | |
1406 | error_setg(errp, "Invalid MSI-X relocation BAR %d, " | |
1407 | "I/O port BAR", target_bar); | |
1408 | return; | |
1409 | } | |
1410 | ||
1411 | /* Cannot use a BAR in the "shadow" of a 64-bit BAR */ | |
1412 | if (!vdev->bars[target_bar].size && | |
1413 | target_bar > 0 && vdev->bars[target_bar - 1].mem64) { | |
1414 | error_setg(errp, "Invalid MSI-X relocation BAR %d, " | |
1415 | "consumed by 64-bit BAR %d", target_bar, target_bar - 1); | |
1416 | return; | |
1417 | } | |
1418 | ||
1419 | /* 2GB max size for 32-bit BARs, cannot double if already > 1G */ | |
1420 | if (vdev->bars[target_bar].size > (1 * 1024 * 1024 * 1024) && | |
1421 | !vdev->bars[target_bar].mem64) { | |
1422 | error_setg(errp, "Invalid MSI-X relocation BAR %d, " | |
1423 | "no space to extend 32-bit BAR", target_bar); | |
1424 | return; | |
1425 | } | |
1426 | ||
1427 | /* | |
1428 | * If adding a new BAR, test if we can make it 64bit. We make it | |
1429 | * prefetchable since QEMU MSI-X emulation has no read side effects | |
1430 | * and doing so makes mapping more flexible. | |
1431 | */ | |
1432 | if (!vdev->bars[target_bar].size) { | |
1433 | if (target_bar < (PCI_ROM_SLOT - 1) && | |
1434 | !vdev->bars[target_bar + 1].size) { | |
1435 | vdev->bars[target_bar].mem64 = true; | |
1436 | vdev->bars[target_bar].type = PCI_BASE_ADDRESS_MEM_TYPE_64; | |
1437 | } | |
1438 | vdev->bars[target_bar].type |= PCI_BASE_ADDRESS_MEM_PREFETCH; | |
1439 | vdev->bars[target_bar].size = msix_sz; | |
1440 | vdev->msix->table_offset = 0; | |
1441 | } else { | |
1442 | vdev->bars[target_bar].size = MAX(vdev->bars[target_bar].size * 2, | |
1443 | msix_sz * 2); | |
1444 | /* | |
1445 | * Due to above size calc, MSI-X always starts halfway into the BAR, | |
1446 | * which will always be a separate host page. | |
1447 | */ | |
1448 | vdev->msix->table_offset = vdev->bars[target_bar].size / 2; | |
1449 | } | |
1450 | ||
1451 | vdev->msix->table_bar = target_bar; | |
1452 | vdev->msix->pba_bar = target_bar; | |
1453 | /* Requires 8-byte alignment, but PCI_MSIX_ENTRY_SIZE guarantees that */ | |
1454 | vdev->msix->pba_offset = vdev->msix->table_offset + | |
1455 | (vdev->msix->entries * PCI_MSIX_ENTRY_SIZE); | |
1456 | ||
1457 | trace_vfio_msix_relo(vdev->vbasedev.name, | |
1458 | vdev->msix->table_bar, vdev->msix->table_offset); | |
1459 | } | |
1460 | ||
65501a74 AW |
1461 | /* |
1462 | * We don't have any control over how pci_add_capability() inserts | |
1463 | * capabilities into the chain. In order to setup MSI-X we need a | |
1464 | * MemoryRegion for the BAR. In order to setup the BAR and not | |
1465 | * attempt to mmap the MSI-X table area, which VFIO won't allow, we | |
1466 | * need to first look for where the MSI-X table lives. So we | |
1467 | * unfortunately split MSI-X setup across two functions. | |
1468 | */ | |
ec3bcf42 | 1469 | static void vfio_msix_early_setup(VFIOPCIDevice *vdev, Error **errp) |
65501a74 AW |
1470 | { |
1471 | uint8_t pos; | |
1472 | uint16_t ctrl; | |
1473 | uint32_t table, pba; | |
5546a621 | 1474 | int fd = vdev->vbasedev.fd; |
b5bd049f | 1475 | VFIOMSIXInfo *msix; |
65501a74 AW |
1476 | |
1477 | pos = pci_find_capability(&vdev->pdev, PCI_CAP_ID_MSIX); | |
1478 | if (!pos) { | |
ec3bcf42 | 1479 | return; |
65501a74 AW |
1480 | } |
1481 | ||
5546a621 | 1482 | if (pread(fd, &ctrl, sizeof(ctrl), |
b58b17f7 | 1483 | vdev->config_offset + pos + PCI_MSIX_FLAGS) != sizeof(ctrl)) { |
008d0e2d | 1484 | error_setg_errno(errp, errno, "failed to read PCI MSIX FLAGS"); |
ec3bcf42 | 1485 | return; |
65501a74 AW |
1486 | } |
1487 | ||
5546a621 | 1488 | if (pread(fd, &table, sizeof(table), |
65501a74 | 1489 | vdev->config_offset + pos + PCI_MSIX_TABLE) != sizeof(table)) { |
008d0e2d | 1490 | error_setg_errno(errp, errno, "failed to read PCI MSIX TABLE"); |
ec3bcf42 | 1491 | return; |
65501a74 AW |
1492 | } |
1493 | ||
5546a621 | 1494 | if (pread(fd, &pba, sizeof(pba), |
65501a74 | 1495 | vdev->config_offset + pos + PCI_MSIX_PBA) != sizeof(pba)) { |
008d0e2d | 1496 | error_setg_errno(errp, errno, "failed to read PCI MSIX PBA"); |
ec3bcf42 | 1497 | return; |
65501a74 AW |
1498 | } |
1499 | ||
1500 | ctrl = le16_to_cpu(ctrl); | |
1501 | table = le32_to_cpu(table); | |
1502 | pba = le32_to_cpu(pba); | |
1503 | ||
b5bd049f AW |
1504 | msix = g_malloc0(sizeof(*msix)); |
1505 | msix->table_bar = table & PCI_MSIX_FLAGS_BIRMASK; | |
1506 | msix->table_offset = table & ~PCI_MSIX_FLAGS_BIRMASK; | |
1507 | msix->pba_bar = pba & PCI_MSIX_FLAGS_BIRMASK; | |
1508 | msix->pba_offset = pba & ~PCI_MSIX_FLAGS_BIRMASK; | |
1509 | msix->entries = (ctrl & PCI_MSIX_FLAGS_QSIZE) + 1; | |
65501a74 | 1510 | |
43302969 GL |
1511 | /* |
1512 | * Test the size of the pba_offset variable and catch if it extends outside | |
1513 | * of the specified BAR. If it is the case, we need to apply a hardware | |
1514 | * specific quirk if the device is known or we have a broken configuration. | |
1515 | */ | |
b5bd049f | 1516 | if (msix->pba_offset >= vdev->bars[msix->pba_bar].region.size) { |
43302969 GL |
1517 | /* |
1518 | * Chelsio T5 Virtual Function devices are encoded as 0x58xx for T5 | |
1519 | * adapters. The T5 hardware returns an incorrect value of 0x8000 for | |
1520 | * the VF PBA offset while the BAR itself is only 8k. The correct value | |
1521 | * is 0x1000, so we hard code that here. | |
1522 | */ | |
ff635e37 AW |
1523 | if (vdev->vendor_id == PCI_VENDOR_ID_CHELSIO && |
1524 | (vdev->device_id & 0xff00) == 0x5800) { | |
b5bd049f | 1525 | msix->pba_offset = 0x1000; |
43302969 | 1526 | } else { |
008d0e2d EA |
1527 | error_setg(errp, "hardware reports invalid configuration, " |
1528 | "MSIX PBA outside of specified BAR"); | |
b5bd049f | 1529 | g_free(msix); |
ec3bcf42 | 1530 | return; |
43302969 GL |
1531 | } |
1532 | } | |
1533 | ||
0de70dc7 | 1534 | trace_vfio_msix_early_setup(vdev->vbasedev.name, pos, msix->table_bar, |
b5bd049f AW |
1535 | msix->table_offset, msix->entries); |
1536 | vdev->msix = msix; | |
65501a74 | 1537 | |
db0da029 | 1538 | vfio_pci_fixup_msix_region(vdev); |
89d5202e AW |
1539 | |
1540 | vfio_pci_relocate_msix(vdev, errp); | |
65501a74 AW |
1541 | } |
1542 | ||
7ef165b9 | 1543 | static int vfio_msix_setup(VFIOPCIDevice *vdev, int pos, Error **errp) |
65501a74 AW |
1544 | { |
1545 | int ret; | |
ee640c62 | 1546 | Error *err = NULL; |
65501a74 | 1547 | |
95239e16 AW |
1548 | vdev->msix->pending = g_malloc0(BITS_TO_LONGS(vdev->msix->entries) * |
1549 | sizeof(unsigned long)); | |
65501a74 | 1550 | ret = msix_init(&vdev->pdev, vdev->msix->entries, |
3a286732 | 1551 | vdev->bars[vdev->msix->table_bar].mr, |
65501a74 | 1552 | vdev->msix->table_bar, vdev->msix->table_offset, |
3a286732 | 1553 | vdev->bars[vdev->msix->pba_bar].mr, |
ee640c62 C |
1554 | vdev->msix->pba_bar, vdev->msix->pba_offset, pos, |
1555 | &err); | |
65501a74 | 1556 | if (ret < 0) { |
e43b9a5a | 1557 | if (ret == -ENOTSUP) { |
ee640c62 | 1558 | error_report_err(err); |
e43b9a5a AW |
1559 | return 0; |
1560 | } | |
ee640c62 C |
1561 | |
1562 | error_propagate(errp, err); | |
65501a74 AW |
1563 | return ret; |
1564 | } | |
1565 | ||
95239e16 AW |
1566 | /* |
1567 | * The PCI spec suggests that devices provide additional alignment for | |
1568 | * MSI-X structures and avoid overlapping non-MSI-X related registers. | |
1569 | * For an assigned device, this hopefully means that emulation of MSI-X | |
1570 | * structures does not affect the performance of the device. If devices | |
1571 | * fail to provide that alignment, a significant performance penalty may | |
1572 | * result, for instance Mellanox MT27500 VFs: | |
1573 | * http://www.spinics.net/lists/kvm/msg125881.html | |
1574 | * | |
1575 | * The PBA is simply not that important for such a serious regression and | |
1576 | * most drivers do not appear to look at it. The solution for this is to | |
1577 | * disable the PBA MemoryRegion unless it's being used. We disable it | |
1578 | * here and only enable it if a masked vector fires through QEMU. As the | |
1579 | * vector-use notifier is called, which occurs on unmask, we test whether | |
1580 | * PBA emulation is needed and again disable if not. | |
1581 | */ | |
1582 | memory_region_set_enabled(&vdev->pdev.msix_pba_mmio, false); | |
1583 | ||
fcad0d21 AK |
1584 | /* |
1585 | * The emulated machine may provide a paravirt interface for MSIX setup | |
1586 | * so it is not strictly necessary to emulate MSIX here. This becomes | |
1587 | * helpful when frequently accessed MMIO registers are located in | |
1588 | * subpages adjacent to the MSIX table but the MSIX data containing page | |
1589 | * cannot be mapped because of a host page size bigger than the MSIX table | |
1590 | * alignment. | |
1591 | */ | |
1592 | if (object_property_get_bool(OBJECT(qdev_get_machine()), | |
1593 | "vfio-no-msix-emulation", NULL)) { | |
1594 | memory_region_set_enabled(&vdev->pdev.msix_table_mmio, false); | |
1595 | } | |
1596 | ||
65501a74 AW |
1597 | return 0; |
1598 | } | |
1599 | ||
9ee27d73 | 1600 | static void vfio_teardown_msi(VFIOPCIDevice *vdev) |
65501a74 AW |
1601 | { |
1602 | msi_uninit(&vdev->pdev); | |
1603 | ||
1604 | if (vdev->msix) { | |
a664477d | 1605 | msix_uninit(&vdev->pdev, |
3a286732 AW |
1606 | vdev->bars[vdev->msix->table_bar].mr, |
1607 | vdev->bars[vdev->msix->pba_bar].mr); | |
95239e16 | 1608 | g_free(vdev->msix->pending); |
65501a74 AW |
1609 | } |
1610 | } | |
1611 | ||
1612 | /* | |
1613 | * Resource setup | |
1614 | */ | |
9ee27d73 | 1615 | static void vfio_mmap_set_enabled(VFIOPCIDevice *vdev, bool enabled) |
65501a74 AW |
1616 | { |
1617 | int i; | |
1618 | ||
1619 | for (i = 0; i < PCI_ROM_SLOT; i++) { | |
db0da029 | 1620 | vfio_region_mmaps_set_enabled(&vdev->bars[i].region, enabled); |
65501a74 AW |
1621 | } |
1622 | } | |
1623 | ||
3a286732 | 1624 | static void vfio_bar_prepare(VFIOPCIDevice *vdev, int nr) |
65501a74 AW |
1625 | { |
1626 | VFIOBAR *bar = &vdev->bars[nr]; | |
1627 | ||
65501a74 | 1628 | uint32_t pci_bar; |
65501a74 AW |
1629 | int ret; |
1630 | ||
1631 | /* Skip both unimplemented BARs and the upper half of 64bit BARS. */ | |
2d82f8a3 | 1632 | if (!bar->region.size) { |
65501a74 AW |
1633 | return; |
1634 | } | |
1635 | ||
65501a74 | 1636 | /* Determine what type of BAR this is for registration */ |
5546a621 | 1637 | ret = pread(vdev->vbasedev.fd, &pci_bar, sizeof(pci_bar), |
65501a74 AW |
1638 | vdev->config_offset + PCI_BASE_ADDRESS_0 + (4 * nr)); |
1639 | if (ret != sizeof(pci_bar)) { | |
312fd5f2 | 1640 | error_report("vfio: Failed to read BAR %d (%m)", nr); |
65501a74 AW |
1641 | return; |
1642 | } | |
1643 | ||
1644 | pci_bar = le32_to_cpu(pci_bar); | |
39360f0b AW |
1645 | bar->ioport = (pci_bar & PCI_BASE_ADDRESS_SPACE_IO); |
1646 | bar->mem64 = bar->ioport ? 0 : (pci_bar & PCI_BASE_ADDRESS_MEM_TYPE_64); | |
3a286732 AW |
1647 | bar->type = pci_bar & (bar->ioport ? ~PCI_BASE_ADDRESS_IO_MASK : |
1648 | ~PCI_BASE_ADDRESS_MEM_MASK); | |
1649 | bar->size = bar->region.size; | |
1650 | } | |
1651 | ||
1652 | static void vfio_bars_prepare(VFIOPCIDevice *vdev) | |
1653 | { | |
1654 | int i; | |
1655 | ||
1656 | for (i = 0; i < PCI_ROM_SLOT; i++) { | |
1657 | vfio_bar_prepare(vdev, i); | |
1658 | } | |
1659 | } | |
1660 | ||
1661 | static void vfio_bar_register(VFIOPCIDevice *vdev, int nr) | |
1662 | { | |
1663 | VFIOBAR *bar = &vdev->bars[nr]; | |
1664 | char *name; | |
65501a74 | 1665 | |
3a286732 AW |
1666 | if (!bar->size) { |
1667 | return; | |
65501a74 | 1668 | } |
7076eabc | 1669 | |
3a286732 AW |
1670 | bar->mr = g_new0(MemoryRegion, 1); |
1671 | name = g_strdup_printf("%s base BAR %d", vdev->vbasedev.name, nr); | |
1672 | memory_region_init_io(bar->mr, OBJECT(vdev), NULL, NULL, name, bar->size); | |
1673 | g_free(name); | |
1674 | ||
1675 | if (bar->region.size) { | |
1676 | memory_region_add_subregion(bar->mr, 0, bar->region.mem); | |
1677 | ||
1678 | if (vfio_region_mmap(&bar->region)) { | |
1679 | error_report("Failed to mmap %s BAR %d. Performance may be slow", | |
1680 | vdev->vbasedev.name, nr); | |
1681 | } | |
1682 | } | |
1683 | ||
1684 | pci_register_bar(&vdev->pdev, nr, bar->type, bar->mr); | |
65501a74 AW |
1685 | } |
1686 | ||
3a286732 | 1687 | static void vfio_bars_register(VFIOPCIDevice *vdev) |
65501a74 AW |
1688 | { |
1689 | int i; | |
1690 | ||
1691 | for (i = 0; i < PCI_ROM_SLOT; i++) { | |
3a286732 | 1692 | vfio_bar_register(vdev, i); |
65501a74 AW |
1693 | } |
1694 | } | |
1695 | ||
2d82f8a3 | 1696 | static void vfio_bars_exit(VFIOPCIDevice *vdev) |
65501a74 AW |
1697 | { |
1698 | int i; | |
1699 | ||
1700 | for (i = 0; i < PCI_ROM_SLOT; i++) { | |
3a286732 AW |
1701 | VFIOBAR *bar = &vdev->bars[i]; |
1702 | ||
2d82f8a3 | 1703 | vfio_bar_quirk_exit(vdev, i); |
3a286732 AW |
1704 | vfio_region_exit(&bar->region); |
1705 | if (bar->region.size) { | |
1706 | memory_region_del_subregion(bar->mr, bar->region.mem); | |
1707 | } | |
65501a74 | 1708 | } |
f15689c7 | 1709 | |
2d82f8a3 | 1710 | if (vdev->vga) { |
f15689c7 | 1711 | pci_unregister_vga(&vdev->pdev); |
2d82f8a3 | 1712 | vfio_vga_quirk_exit(vdev); |
f15689c7 | 1713 | } |
65501a74 AW |
1714 | } |
1715 | ||
2d82f8a3 | 1716 | static void vfio_bars_finalize(VFIOPCIDevice *vdev) |
ba5e6bfa PB |
1717 | { |
1718 | int i; | |
1719 | ||
1720 | for (i = 0; i < PCI_ROM_SLOT; i++) { | |
3a286732 AW |
1721 | VFIOBAR *bar = &vdev->bars[i]; |
1722 | ||
2d82f8a3 | 1723 | vfio_bar_quirk_finalize(vdev, i); |
3a286732 AW |
1724 | vfio_region_finalize(&bar->region); |
1725 | if (bar->size) { | |
1726 | object_unparent(OBJECT(bar->mr)); | |
1727 | g_free(bar->mr); | |
1728 | } | |
ba5e6bfa PB |
1729 | } |
1730 | ||
2d82f8a3 AW |
1731 | if (vdev->vga) { |
1732 | vfio_vga_quirk_finalize(vdev); | |
1733 | for (i = 0; i < ARRAY_SIZE(vdev->vga->region); i++) { | |
1734 | object_unparent(OBJECT(&vdev->vga->region[i].mem)); | |
1735 | } | |
1736 | g_free(vdev->vga); | |
ba5e6bfa PB |
1737 | } |
1738 | } | |
1739 | ||
65501a74 AW |
1740 | /* |
1741 | * General setup | |
1742 | */ | |
1743 | static uint8_t vfio_std_cap_max_size(PCIDevice *pdev, uint8_t pos) | |
1744 | { | |
88caf177 CF |
1745 | uint8_t tmp; |
1746 | uint16_t next = PCI_CONFIG_SPACE_SIZE; | |
65501a74 AW |
1747 | |
1748 | for (tmp = pdev->config[PCI_CAPABILITY_LIST]; tmp; | |
3fc1c182 | 1749 | tmp = pdev->config[tmp + PCI_CAP_LIST_NEXT]) { |
65501a74 AW |
1750 | if (tmp > pos && tmp < next) { |
1751 | next = tmp; | |
1752 | } | |
1753 | } | |
1754 | ||
1755 | return next - pos; | |
1756 | } | |
1757 | ||
325ae8d5 CF |
1758 | |
1759 | static uint16_t vfio_ext_cap_max_size(const uint8_t *config, uint16_t pos) | |
1760 | { | |
1761 | uint16_t tmp, next = PCIE_CONFIG_SPACE_SIZE; | |
1762 | ||
1763 | for (tmp = PCI_CONFIG_SPACE_SIZE; tmp; | |
1764 | tmp = PCI_EXT_CAP_NEXT(pci_get_long(config + tmp))) { | |
1765 | if (tmp > pos && tmp < next) { | |
1766 | next = tmp; | |
1767 | } | |
1768 | } | |
1769 | ||
1770 | return next - pos; | |
1771 | } | |
1772 | ||
96adc5c7 AW |
1773 | static void vfio_set_word_bits(uint8_t *buf, uint16_t val, uint16_t mask) |
1774 | { | |
1775 | pci_set_word(buf, (pci_get_word(buf) & ~mask) | val); | |
1776 | } | |
1777 | ||
9ee27d73 | 1778 | static void vfio_add_emulated_word(VFIOPCIDevice *vdev, int pos, |
96adc5c7 AW |
1779 | uint16_t val, uint16_t mask) |
1780 | { | |
1781 | vfio_set_word_bits(vdev->pdev.config + pos, val, mask); | |
1782 | vfio_set_word_bits(vdev->pdev.wmask + pos, ~mask, mask); | |
1783 | vfio_set_word_bits(vdev->emulated_config_bits + pos, mask, mask); | |
1784 | } | |
1785 | ||
1786 | static void vfio_set_long_bits(uint8_t *buf, uint32_t val, uint32_t mask) | |
1787 | { | |
1788 | pci_set_long(buf, (pci_get_long(buf) & ~mask) | val); | |
1789 | } | |
1790 | ||
9ee27d73 | 1791 | static void vfio_add_emulated_long(VFIOPCIDevice *vdev, int pos, |
96adc5c7 AW |
1792 | uint32_t val, uint32_t mask) |
1793 | { | |
1794 | vfio_set_long_bits(vdev->pdev.config + pos, val, mask); | |
1795 | vfio_set_long_bits(vdev->pdev.wmask + pos, ~mask, mask); | |
1796 | vfio_set_long_bits(vdev->emulated_config_bits + pos, mask, mask); | |
1797 | } | |
1798 | ||
7ef165b9 EA |
1799 | static int vfio_setup_pcie_cap(VFIOPCIDevice *vdev, int pos, uint8_t size, |
1800 | Error **errp) | |
96adc5c7 AW |
1801 | { |
1802 | uint16_t flags; | |
1803 | uint8_t type; | |
1804 | ||
1805 | flags = pci_get_word(vdev->pdev.config + pos + PCI_CAP_FLAGS); | |
1806 | type = (flags & PCI_EXP_FLAGS_TYPE) >> 4; | |
1807 | ||
1808 | if (type != PCI_EXP_TYPE_ENDPOINT && | |
1809 | type != PCI_EXP_TYPE_LEG_END && | |
1810 | type != PCI_EXP_TYPE_RC_END) { | |
1811 | ||
7ef165b9 EA |
1812 | error_setg(errp, "assignment of PCIe type 0x%x " |
1813 | "devices is not currently supported", type); | |
96adc5c7 AW |
1814 | return -EINVAL; |
1815 | } | |
1816 | ||
fd56e061 DG |
1817 | if (!pci_bus_is_express(pci_get_bus(&vdev->pdev))) { |
1818 | PCIBus *bus = pci_get_bus(&vdev->pdev); | |
0282abf0 AW |
1819 | PCIDevice *bridge; |
1820 | ||
96adc5c7 | 1821 | /* |
0282abf0 AW |
1822 | * Traditionally PCI device assignment exposes the PCIe capability |
1823 | * as-is on non-express buses. The reason being that some drivers | |
1824 | * simply assume that it's there, for example tg3. However when | |
1825 | * we're running on a native PCIe machine type, like Q35, we need | |
1826 | * to hide the PCIe capability. The reason for this is twofold; | |
1827 | * first Windows guests get a Code 10 error when the PCIe capability | |
1828 | * is exposed in this configuration. Therefore express devices won't | |
1829 | * work at all unless they're attached to express buses in the VM. | |
1830 | * Second, a native PCIe machine introduces the possibility of fine | |
1831 | * granularity IOMMUs supporting both translation and isolation. | |
1832 | * Guest code to discover the IOMMU visibility of a device, such as | |
1833 | * IOMMU grouping code on Linux, is very aware of device types and | |
1834 | * valid transitions between bus types. An express device on a non- | |
1835 | * express bus is not a valid combination on bare metal systems. | |
1836 | * | |
1837 | * Drivers that require a PCIe capability to make the device | |
1838 | * functional are simply going to need to have their devices placed | |
1839 | * on a PCIe bus in the VM. | |
96adc5c7 | 1840 | */ |
0282abf0 AW |
1841 | while (!pci_bus_is_root(bus)) { |
1842 | bridge = pci_bridge_get_device(bus); | |
fd56e061 | 1843 | bus = pci_get_bus(bridge); |
0282abf0 AW |
1844 | } |
1845 | ||
1846 | if (pci_bus_is_express(bus)) { | |
1847 | return 0; | |
1848 | } | |
1849 | ||
fd56e061 | 1850 | } else if (pci_bus_is_root(pci_get_bus(&vdev->pdev))) { |
96adc5c7 AW |
1851 | /* |
1852 | * On a Root Complex bus Endpoints become Root Complex Integrated | |
1853 | * Endpoints, which changes the type and clears the LNK & LNK2 fields. | |
1854 | */ | |
1855 | if (type == PCI_EXP_TYPE_ENDPOINT) { | |
1856 | vfio_add_emulated_word(vdev, pos + PCI_CAP_FLAGS, | |
1857 | PCI_EXP_TYPE_RC_END << 4, | |
1858 | PCI_EXP_FLAGS_TYPE); | |
1859 | ||
1860 | /* Link Capabilities, Status, and Control goes away */ | |
1861 | if (size > PCI_EXP_LNKCTL) { | |
1862 | vfio_add_emulated_long(vdev, pos + PCI_EXP_LNKCAP, 0, ~0); | |
1863 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKCTL, 0, ~0); | |
1864 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKSTA, 0, ~0); | |
1865 | ||
1866 | #ifndef PCI_EXP_LNKCAP2 | |
1867 | #define PCI_EXP_LNKCAP2 44 | |
1868 | #endif | |
1869 | #ifndef PCI_EXP_LNKSTA2 | |
1870 | #define PCI_EXP_LNKSTA2 50 | |
1871 | #endif | |
1872 | /* Link 2 Capabilities, Status, and Control goes away */ | |
1873 | if (size > PCI_EXP_LNKCAP2) { | |
1874 | vfio_add_emulated_long(vdev, pos + PCI_EXP_LNKCAP2, 0, ~0); | |
1875 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKCTL2, 0, ~0); | |
1876 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKSTA2, 0, ~0); | |
1877 | } | |
1878 | } | |
1879 | ||
1880 | } else if (type == PCI_EXP_TYPE_LEG_END) { | |
1881 | /* | |
1882 | * Legacy endpoints don't belong on the root complex. Windows | |
1883 | * seems to be happier with devices if we skip the capability. | |
1884 | */ | |
1885 | return 0; | |
1886 | } | |
1887 | ||
1888 | } else { | |
1889 | /* | |
1890 | * Convert Root Complex Integrated Endpoints to regular endpoints. | |
1891 | * These devices don't support LNK/LNK2 capabilities, so make them up. | |
1892 | */ | |
1893 | if (type == PCI_EXP_TYPE_RC_END) { | |
1894 | vfio_add_emulated_word(vdev, pos + PCI_CAP_FLAGS, | |
1895 | PCI_EXP_TYPE_ENDPOINT << 4, | |
1896 | PCI_EXP_FLAGS_TYPE); | |
1897 | vfio_add_emulated_long(vdev, pos + PCI_EXP_LNKCAP, | |
1898 | PCI_EXP_LNK_MLW_1 | PCI_EXP_LNK_LS_25, ~0); | |
1899 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKCTL, 0, ~0); | |
1900 | } | |
1901 | ||
1902 | /* Mark the Link Status bits as emulated to allow virtual negotiation */ | |
1903 | vfio_add_emulated_word(vdev, pos + PCI_EXP_LNKSTA, | |
1904 | pci_get_word(vdev->pdev.config + pos + | |
1905 | PCI_EXP_LNKSTA), | |
1906 | PCI_EXP_LNKCAP_MLW | PCI_EXP_LNKCAP_SLS); | |
1907 | } | |
1908 | ||
47985727 AW |
1909 | /* |
1910 | * Intel 82599 SR-IOV VFs report an invalid PCIe capability version 0 | |
1911 | * (Niantic errate #35) causing Windows to error with a Code 10 for the | |
1912 | * device on Q35. Fixup any such devices to report version 1. If we | |
1913 | * were to remove the capability entirely the guest would lose extended | |
1914 | * config space. | |
1915 | */ | |
1916 | if ((flags & PCI_EXP_FLAGS_VERS) == 0) { | |
1917 | vfio_add_emulated_word(vdev, pos + PCI_CAP_FLAGS, | |
1918 | 1, PCI_EXP_FLAGS_VERS); | |
1919 | } | |
1920 | ||
9a7c2a59 MZ |
1921 | pos = pci_add_capability(&vdev->pdev, PCI_CAP_ID_EXP, pos, size, |
1922 | errp); | |
1923 | if (pos < 0) { | |
1924 | return pos; | |
96adc5c7 AW |
1925 | } |
1926 | ||
9a7c2a59 MZ |
1927 | vdev->pdev.exp.exp_cap = pos; |
1928 | ||
96adc5c7 AW |
1929 | return pos; |
1930 | } | |
1931 | ||
9ee27d73 | 1932 | static void vfio_check_pcie_flr(VFIOPCIDevice *vdev, uint8_t pos) |
befe5176 AW |
1933 | { |
1934 | uint32_t cap = pci_get_long(vdev->pdev.config + pos + PCI_EXP_DEVCAP); | |
1935 | ||
1936 | if (cap & PCI_EXP_DEVCAP_FLR) { | |
df92ee44 | 1937 | trace_vfio_check_pcie_flr(vdev->vbasedev.name); |
befe5176 AW |
1938 | vdev->has_flr = true; |
1939 | } | |
1940 | } | |
1941 | ||
9ee27d73 | 1942 | static void vfio_check_pm_reset(VFIOPCIDevice *vdev, uint8_t pos) |
befe5176 AW |
1943 | { |
1944 | uint16_t csr = pci_get_word(vdev->pdev.config + pos + PCI_PM_CTRL); | |
1945 | ||
1946 | if (!(csr & PCI_PM_CTRL_NO_SOFT_RESET)) { | |
df92ee44 | 1947 | trace_vfio_check_pm_reset(vdev->vbasedev.name); |
befe5176 AW |
1948 | vdev->has_pm_reset = true; |
1949 | } | |
1950 | } | |
1951 | ||
9ee27d73 | 1952 | static void vfio_check_af_flr(VFIOPCIDevice *vdev, uint8_t pos) |
befe5176 AW |
1953 | { |
1954 | uint8_t cap = pci_get_byte(vdev->pdev.config + pos + PCI_AF_CAP); | |
1955 | ||
1956 | if ((cap & PCI_AF_CAP_TP) && (cap & PCI_AF_CAP_FLR)) { | |
df92ee44 | 1957 | trace_vfio_check_af_flr(vdev->vbasedev.name); |
befe5176 AW |
1958 | vdev->has_flr = true; |
1959 | } | |
1960 | } | |
1961 | ||
7ef165b9 | 1962 | static int vfio_add_std_cap(VFIOPCIDevice *vdev, uint8_t pos, Error **errp) |
65501a74 AW |
1963 | { |
1964 | PCIDevice *pdev = &vdev->pdev; | |
1965 | uint8_t cap_id, next, size; | |
1966 | int ret; | |
1967 | ||
1968 | cap_id = pdev->config[pos]; | |
3fc1c182 | 1969 | next = pdev->config[pos + PCI_CAP_LIST_NEXT]; |
65501a74 AW |
1970 | |
1971 | /* | |
1972 | * If it becomes important to configure capabilities to their actual | |
1973 | * size, use this as the default when it's something we don't recognize. | |
1974 | * Since QEMU doesn't actually handle many of the config accesses, | |
1975 | * exact size doesn't seem worthwhile. | |
1976 | */ | |
1977 | size = vfio_std_cap_max_size(pdev, pos); | |
1978 | ||
1979 | /* | |
1980 | * pci_add_capability always inserts the new capability at the head | |
1981 | * of the chain. Therefore to end up with a chain that matches the | |
1982 | * physical device, we insert from the end by making this recursive. | |
3fc1c182 | 1983 | * This is also why we pre-calculate size above as cached config space |
65501a74 AW |
1984 | * will be changed as we unwind the stack. |
1985 | */ | |
1986 | if (next) { | |
7ef165b9 | 1987 | ret = vfio_add_std_cap(vdev, next, errp); |
65501a74 | 1988 | if (ret) { |
5b31c822 | 1989 | return ret; |
65501a74 AW |
1990 | } |
1991 | } else { | |
96adc5c7 AW |
1992 | /* Begin the rebuild, use QEMU emulated list bits */ |
1993 | pdev->config[PCI_CAPABILITY_LIST] = 0; | |
1994 | vdev->emulated_config_bits[PCI_CAPABILITY_LIST] = 0xff; | |
1995 | vdev->emulated_config_bits[PCI_STATUS] |= PCI_STATUS_CAP_LIST; | |
e3f79f3b AW |
1996 | |
1997 | ret = vfio_add_virt_caps(vdev, errp); | |
1998 | if (ret) { | |
1999 | return ret; | |
2000 | } | |
65501a74 AW |
2001 | } |
2002 | ||
e3f79f3b AW |
2003 | /* Scale down size, esp in case virt caps were added above */ |
2004 | size = MIN(size, vfio_std_cap_max_size(pdev, pos)); | |
2005 | ||
96adc5c7 | 2006 | /* Use emulated next pointer to allow dropping caps */ |
3fc1c182 | 2007 | pci_set_byte(vdev->emulated_config_bits + pos + PCI_CAP_LIST_NEXT, 0xff); |
96adc5c7 | 2008 | |
65501a74 AW |
2009 | switch (cap_id) { |
2010 | case PCI_CAP_ID_MSI: | |
7ef165b9 | 2011 | ret = vfio_msi_setup(vdev, pos, errp); |
65501a74 | 2012 | break; |
96adc5c7 | 2013 | case PCI_CAP_ID_EXP: |
befe5176 | 2014 | vfio_check_pcie_flr(vdev, pos); |
7ef165b9 | 2015 | ret = vfio_setup_pcie_cap(vdev, pos, size, errp); |
96adc5c7 | 2016 | break; |
65501a74 | 2017 | case PCI_CAP_ID_MSIX: |
7ef165b9 | 2018 | ret = vfio_msix_setup(vdev, pos, errp); |
65501a74 | 2019 | break; |
ba661818 | 2020 | case PCI_CAP_ID_PM: |
befe5176 | 2021 | vfio_check_pm_reset(vdev, pos); |
ba661818 | 2022 | vdev->pm_cap = pos; |
27841278 | 2023 | ret = pci_add_capability(pdev, cap_id, pos, size, errp); |
befe5176 AW |
2024 | break; |
2025 | case PCI_CAP_ID_AF: | |
2026 | vfio_check_af_flr(vdev, pos); | |
27841278 | 2027 | ret = pci_add_capability(pdev, cap_id, pos, size, errp); |
befe5176 | 2028 | break; |
65501a74 | 2029 | default: |
27841278 | 2030 | ret = pci_add_capability(pdev, cap_id, pos, size, errp); |
65501a74 AW |
2031 | break; |
2032 | } | |
5b31c822 | 2033 | |
65501a74 | 2034 | if (ret < 0) { |
7ef165b9 EA |
2035 | error_prepend(errp, |
2036 | "failed to add PCI capability 0x%x[0x%x]@0x%x: ", | |
2037 | cap_id, size, pos); | |
65501a74 AW |
2038 | return ret; |
2039 | } | |
2040 | ||
2041 | return 0; | |
2042 | } | |
2043 | ||
7ef165b9 | 2044 | static void vfio_add_ext_cap(VFIOPCIDevice *vdev) |
325ae8d5 CF |
2045 | { |
2046 | PCIDevice *pdev = &vdev->pdev; | |
2047 | uint32_t header; | |
2048 | uint16_t cap_id, next, size; | |
2049 | uint8_t cap_ver; | |
2050 | uint8_t *config; | |
2051 | ||
e37dac06 | 2052 | /* Only add extended caps if we have them and the guest can see them */ |
fd56e061 | 2053 | if (!pci_is_express(pdev) || !pci_bus_is_express(pci_get_bus(pdev)) || |
e37dac06 | 2054 | !pci_get_long(pdev->config + PCI_CONFIG_SPACE_SIZE)) { |
7ef165b9 | 2055 | return; |
e37dac06 AW |
2056 | } |
2057 | ||
325ae8d5 CF |
2058 | /* |
2059 | * pcie_add_capability always inserts the new capability at the tail | |
2060 | * of the chain. Therefore to end up with a chain that matches the | |
2061 | * physical device, we cache the config space to avoid overwriting | |
2062 | * the original config space when we parse the extended capabilities. | |
2063 | */ | |
2064 | config = g_memdup(pdev->config, vdev->config_size); | |
2065 | ||
e37dac06 AW |
2066 | /* |
2067 | * Extended capabilities are chained with each pointing to the next, so we | |
2068 | * can drop anything other than the head of the chain simply by modifying | |
d0d1cd70 AW |
2069 | * the previous next pointer. Seed the head of the chain here such that |
2070 | * we can simply skip any capabilities we want to drop below, regardless | |
2071 | * of their position in the chain. If this stub capability still exists | |
2072 | * after we add the capabilities we want to expose, update the capability | |
2073 | * ID to zero. Note that we cannot seed with the capability header being | |
2074 | * zero as this conflicts with definition of an absent capability chain | |
2075 | * and prevents capabilities beyond the head of the list from being added. | |
2076 | * By replacing the dummy capability ID with zero after walking the device | |
2077 | * chain, we also transparently mark extended capabilities as absent if | |
2078 | * no capabilities were added. Note that the PCIe spec defines an absence | |
2079 | * of extended capabilities to be determined by a value of zero for the | |
2080 | * capability ID, version, AND next pointer. A non-zero next pointer | |
2081 | * should be sufficient to indicate additional capabilities are present, | |
2082 | * which will occur if we call pcie_add_capability() below. The entire | |
2083 | * first dword is emulated to support this. | |
2084 | * | |
2085 | * NB. The kernel side does similar masking, so be prepared that our | |
2086 | * view of the device may also contain a capability ID zero in the head | |
2087 | * of the chain. Skip it for the same reason that we cannot seed the | |
2088 | * chain with a zero capability. | |
e37dac06 AW |
2089 | */ |
2090 | pci_set_long(pdev->config + PCI_CONFIG_SPACE_SIZE, | |
2091 | PCI_EXT_CAP(0xFFFF, 0, 0)); | |
2092 | pci_set_long(pdev->wmask + PCI_CONFIG_SPACE_SIZE, 0); | |
2093 | pci_set_long(vdev->emulated_config_bits + PCI_CONFIG_SPACE_SIZE, ~0); | |
2094 | ||
325ae8d5 CF |
2095 | for (next = PCI_CONFIG_SPACE_SIZE; next; |
2096 | next = PCI_EXT_CAP_NEXT(pci_get_long(config + next))) { | |
2097 | header = pci_get_long(config + next); | |
2098 | cap_id = PCI_EXT_CAP_ID(header); | |
2099 | cap_ver = PCI_EXT_CAP_VER(header); | |
2100 | ||
2101 | /* | |
2102 | * If it becomes important to configure extended capabilities to their | |
2103 | * actual size, use this as the default when it's something we don't | |
2104 | * recognize. Since QEMU doesn't actually handle many of the config | |
2105 | * accesses, exact size doesn't seem worthwhile. | |
2106 | */ | |
2107 | size = vfio_ext_cap_max_size(config, next); | |
2108 | ||
325ae8d5 CF |
2109 | /* Use emulated next pointer to allow dropping extended caps */ |
2110 | pci_long_test_and_set_mask(vdev->emulated_config_bits + next, | |
2111 | PCI_EXT_CAP_NEXT_MASK); | |
e37dac06 AW |
2112 | |
2113 | switch (cap_id) { | |
d0d1cd70 | 2114 | case 0: /* kernel masked capability */ |
e37dac06 | 2115 | case PCI_EXT_CAP_ID_SRIOV: /* Read-only VF BARs confuse OVMF */ |
383a7af7 | 2116 | case PCI_EXT_CAP_ID_ARI: /* XXX Needs next function virtualization */ |
e37dac06 AW |
2117 | trace_vfio_add_ext_cap_dropped(vdev->vbasedev.name, cap_id, next); |
2118 | break; | |
2119 | default: | |
2120 | pcie_add_capability(pdev, cap_id, cap_ver, next, size); | |
2121 | } | |
2122 | ||
2123 | } | |
2124 | ||
2125 | /* Cleanup chain head ID if necessary */ | |
2126 | if (pci_get_word(pdev->config + PCI_CONFIG_SPACE_SIZE) == 0xFFFF) { | |
2127 | pci_set_word(pdev->config + PCI_CONFIG_SPACE_SIZE, 0); | |
325ae8d5 CF |
2128 | } |
2129 | ||
2130 | g_free(config); | |
7ef165b9 | 2131 | return; |
325ae8d5 CF |
2132 | } |
2133 | ||
7ef165b9 | 2134 | static int vfio_add_capabilities(VFIOPCIDevice *vdev, Error **errp) |
65501a74 AW |
2135 | { |
2136 | PCIDevice *pdev = &vdev->pdev; | |
325ae8d5 | 2137 | int ret; |
65501a74 AW |
2138 | |
2139 | if (!(pdev->config[PCI_STATUS] & PCI_STATUS_CAP_LIST) || | |
2140 | !pdev->config[PCI_CAPABILITY_LIST]) { | |
2141 | return 0; /* Nothing to add */ | |
2142 | } | |
2143 | ||
7ef165b9 | 2144 | ret = vfio_add_std_cap(vdev, pdev->config[PCI_CAPABILITY_LIST], errp); |
325ae8d5 CF |
2145 | if (ret) { |
2146 | return ret; | |
2147 | } | |
2148 | ||
7ef165b9 EA |
2149 | vfio_add_ext_cap(vdev); |
2150 | return 0; | |
65501a74 AW |
2151 | } |
2152 | ||
9ee27d73 | 2153 | static void vfio_pci_pre_reset(VFIOPCIDevice *vdev) |
f16f39c3 AW |
2154 | { |
2155 | PCIDevice *pdev = &vdev->pdev; | |
2156 | uint16_t cmd; | |
2157 | ||
2158 | vfio_disable_interrupts(vdev); | |
2159 | ||
2160 | /* Make sure the device is in D0 */ | |
2161 | if (vdev->pm_cap) { | |
2162 | uint16_t pmcsr; | |
2163 | uint8_t state; | |
2164 | ||
2165 | pmcsr = vfio_pci_read_config(pdev, vdev->pm_cap + PCI_PM_CTRL, 2); | |
2166 | state = pmcsr & PCI_PM_CTRL_STATE_MASK; | |
2167 | if (state) { | |
2168 | pmcsr &= ~PCI_PM_CTRL_STATE_MASK; | |
2169 | vfio_pci_write_config(pdev, vdev->pm_cap + PCI_PM_CTRL, pmcsr, 2); | |
2170 | /* vfio handles the necessary delay here */ | |
2171 | pmcsr = vfio_pci_read_config(pdev, vdev->pm_cap + PCI_PM_CTRL, 2); | |
2172 | state = pmcsr & PCI_PM_CTRL_STATE_MASK; | |
2173 | if (state) { | |
4e505ddd | 2174 | error_report("vfio: Unable to power on device, stuck in D%d", |
f16f39c3 AW |
2175 | state); |
2176 | } | |
2177 | } | |
2178 | } | |
2179 | ||
2180 | /* | |
2181 | * Stop any ongoing DMA by disconecting I/O, MMIO, and bus master. | |
2182 | * Also put INTx Disable in known state. | |
2183 | */ | |
2184 | cmd = vfio_pci_read_config(pdev, PCI_COMMAND, 2); | |
2185 | cmd &= ~(PCI_COMMAND_IO | PCI_COMMAND_MEMORY | PCI_COMMAND_MASTER | | |
2186 | PCI_COMMAND_INTX_DISABLE); | |
2187 | vfio_pci_write_config(pdev, PCI_COMMAND, cmd, 2); | |
2188 | } | |
2189 | ||
9ee27d73 | 2190 | static void vfio_pci_post_reset(VFIOPCIDevice *vdev) |
f16f39c3 | 2191 | { |
7dfb3424 | 2192 | Error *err = NULL; |
a52a4c47 | 2193 | int nr; |
7dfb3424 EA |
2194 | |
2195 | vfio_intx_enable(vdev, &err); | |
2196 | if (err) { | |
2197 | error_reportf_err(err, ERR_PREFIX, vdev->vbasedev.name); | |
2198 | } | |
a52a4c47 IY |
2199 | |
2200 | for (nr = 0; nr < PCI_NUM_REGIONS - 1; ++nr) { | |
2201 | off_t addr = vdev->config_offset + PCI_BASE_ADDRESS_0 + (4 * nr); | |
2202 | uint32_t val = 0; | |
2203 | uint32_t len = sizeof(val); | |
2204 | ||
2205 | if (pwrite(vdev->vbasedev.fd, &val, len, addr) != len) { | |
2206 | error_report("%s(%s) reset bar %d failed: %m", __func__, | |
2207 | vdev->vbasedev.name, nr); | |
2208 | } | |
2209 | } | |
469d02de AW |
2210 | |
2211 | vfio_quirk_reset(vdev); | |
f16f39c3 AW |
2212 | } |
2213 | ||
7df9381b | 2214 | static bool vfio_pci_host_match(PCIHostDeviceAddress *addr, const char *name) |
f16f39c3 | 2215 | { |
7df9381b AW |
2216 | char tmp[13]; |
2217 | ||
2218 | sprintf(tmp, "%04x:%02x:%02x.%1x", addr->domain, | |
2219 | addr->bus, addr->slot, addr->function); | |
2220 | ||
2221 | return (strcmp(tmp, name) == 0); | |
f16f39c3 AW |
2222 | } |
2223 | ||
9ee27d73 | 2224 | static int vfio_pci_hot_reset(VFIOPCIDevice *vdev, bool single) |
f16f39c3 AW |
2225 | { |
2226 | VFIOGroup *group; | |
2227 | struct vfio_pci_hot_reset_info *info; | |
2228 | struct vfio_pci_dependent_device *devices; | |
2229 | struct vfio_pci_hot_reset *reset; | |
2230 | int32_t *fds; | |
2231 | int ret, i, count; | |
2232 | bool multi = false; | |
2233 | ||
df92ee44 | 2234 | trace_vfio_pci_hot_reset(vdev->vbasedev.name, single ? "one" : "multi"); |
f16f39c3 | 2235 | |
893bfc3c C |
2236 | if (!single) { |
2237 | vfio_pci_pre_reset(vdev); | |
2238 | } | |
b47d8efa | 2239 | vdev->vbasedev.needs_reset = false; |
f16f39c3 AW |
2240 | |
2241 | info = g_malloc0(sizeof(*info)); | |
2242 | info->argsz = sizeof(*info); | |
2243 | ||
5546a621 | 2244 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_GET_PCI_HOT_RESET_INFO, info); |
f16f39c3 AW |
2245 | if (ret && errno != ENOSPC) { |
2246 | ret = -errno; | |
2247 | if (!vdev->has_pm_reset) { | |
7df9381b AW |
2248 | error_report("vfio: Cannot reset device %s, " |
2249 | "no available reset mechanism.", vdev->vbasedev.name); | |
f16f39c3 AW |
2250 | } |
2251 | goto out_single; | |
2252 | } | |
2253 | ||
2254 | count = info->count; | |
2255 | info = g_realloc(info, sizeof(*info) + (count * sizeof(*devices))); | |
2256 | info->argsz = sizeof(*info) + (count * sizeof(*devices)); | |
2257 | devices = &info->devices[0]; | |
2258 | ||
5546a621 | 2259 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_GET_PCI_HOT_RESET_INFO, info); |
f16f39c3 AW |
2260 | if (ret) { |
2261 | ret = -errno; | |
2262 | error_report("vfio: hot reset info failed: %m"); | |
2263 | goto out_single; | |
2264 | } | |
2265 | ||
df92ee44 | 2266 | trace_vfio_pci_hot_reset_has_dep_devices(vdev->vbasedev.name); |
f16f39c3 AW |
2267 | |
2268 | /* Verify that we have all the groups required */ | |
2269 | for (i = 0; i < info->count; i++) { | |
2270 | PCIHostDeviceAddress host; | |
9ee27d73 | 2271 | VFIOPCIDevice *tmp; |
b47d8efa | 2272 | VFIODevice *vbasedev_iter; |
f16f39c3 AW |
2273 | |
2274 | host.domain = devices[i].segment; | |
2275 | host.bus = devices[i].bus; | |
2276 | host.slot = PCI_SLOT(devices[i].devfn); | |
2277 | host.function = PCI_FUNC(devices[i].devfn); | |
2278 | ||
385f57cf | 2279 | trace_vfio_pci_hot_reset_dep_devices(host.domain, |
f16f39c3 AW |
2280 | host.bus, host.slot, host.function, devices[i].group_id); |
2281 | ||
7df9381b | 2282 | if (vfio_pci_host_match(&host, vdev->vbasedev.name)) { |
f16f39c3 AW |
2283 | continue; |
2284 | } | |
2285 | ||
62356b72 | 2286 | QLIST_FOREACH(group, &vfio_group_list, next) { |
f16f39c3 AW |
2287 | if (group->groupid == devices[i].group_id) { |
2288 | break; | |
2289 | } | |
2290 | } | |
2291 | ||
2292 | if (!group) { | |
2293 | if (!vdev->has_pm_reset) { | |
df92ee44 | 2294 | error_report("vfio: Cannot reset device %s, " |
f16f39c3 | 2295 | "depends on group %d which is not owned.", |
df92ee44 | 2296 | vdev->vbasedev.name, devices[i].group_id); |
f16f39c3 AW |
2297 | } |
2298 | ret = -EPERM; | |
2299 | goto out; | |
2300 | } | |
2301 | ||
2302 | /* Prep dependent devices for reset and clear our marker. */ | |
b47d8efa | 2303 | QLIST_FOREACH(vbasedev_iter, &group->device_list, next) { |
7da624e2 AW |
2304 | if (!vbasedev_iter->dev->realized || |
2305 | vbasedev_iter->type != VFIO_DEVICE_TYPE_PCI) { | |
b47d8efa EA |
2306 | continue; |
2307 | } | |
2308 | tmp = container_of(vbasedev_iter, VFIOPCIDevice, vbasedev); | |
7df9381b | 2309 | if (vfio_pci_host_match(&host, tmp->vbasedev.name)) { |
f16f39c3 | 2310 | if (single) { |
f16f39c3 AW |
2311 | ret = -EINVAL; |
2312 | goto out_single; | |
2313 | } | |
2314 | vfio_pci_pre_reset(tmp); | |
b47d8efa | 2315 | tmp->vbasedev.needs_reset = false; |
f16f39c3 AW |
2316 | multi = true; |
2317 | break; | |
2318 | } | |
2319 | } | |
2320 | } | |
2321 | ||
2322 | if (!single && !multi) { | |
f16f39c3 AW |
2323 | ret = -EINVAL; |
2324 | goto out_single; | |
2325 | } | |
2326 | ||
2327 | /* Determine how many group fds need to be passed */ | |
2328 | count = 0; | |
62356b72 | 2329 | QLIST_FOREACH(group, &vfio_group_list, next) { |
f16f39c3 AW |
2330 | for (i = 0; i < info->count; i++) { |
2331 | if (group->groupid == devices[i].group_id) { | |
2332 | count++; | |
2333 | break; | |
2334 | } | |
2335 | } | |
2336 | } | |
2337 | ||
2338 | reset = g_malloc0(sizeof(*reset) + (count * sizeof(*fds))); | |
2339 | reset->argsz = sizeof(*reset) + (count * sizeof(*fds)); | |
2340 | fds = &reset->group_fds[0]; | |
2341 | ||
2342 | /* Fill in group fds */ | |
62356b72 | 2343 | QLIST_FOREACH(group, &vfio_group_list, next) { |
f16f39c3 AW |
2344 | for (i = 0; i < info->count; i++) { |
2345 | if (group->groupid == devices[i].group_id) { | |
2346 | fds[reset->count++] = group->fd; | |
2347 | break; | |
2348 | } | |
2349 | } | |
2350 | } | |
2351 | ||
2352 | /* Bus reset! */ | |
5546a621 | 2353 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_PCI_HOT_RESET, reset); |
f16f39c3 AW |
2354 | g_free(reset); |
2355 | ||
df92ee44 | 2356 | trace_vfio_pci_hot_reset_result(vdev->vbasedev.name, |
385f57cf | 2357 | ret ? "%m" : "Success"); |
f16f39c3 AW |
2358 | |
2359 | out: | |
2360 | /* Re-enable INTx on affected devices */ | |
2361 | for (i = 0; i < info->count; i++) { | |
2362 | PCIHostDeviceAddress host; | |
9ee27d73 | 2363 | VFIOPCIDevice *tmp; |
b47d8efa | 2364 | VFIODevice *vbasedev_iter; |
f16f39c3 AW |
2365 | |
2366 | host.domain = devices[i].segment; | |
2367 | host.bus = devices[i].bus; | |
2368 | host.slot = PCI_SLOT(devices[i].devfn); | |
2369 | host.function = PCI_FUNC(devices[i].devfn); | |
2370 | ||
7df9381b | 2371 | if (vfio_pci_host_match(&host, vdev->vbasedev.name)) { |
f16f39c3 AW |
2372 | continue; |
2373 | } | |
2374 | ||
62356b72 | 2375 | QLIST_FOREACH(group, &vfio_group_list, next) { |
f16f39c3 AW |
2376 | if (group->groupid == devices[i].group_id) { |
2377 | break; | |
2378 | } | |
2379 | } | |
2380 | ||
2381 | if (!group) { | |
2382 | break; | |
2383 | } | |
2384 | ||
b47d8efa | 2385 | QLIST_FOREACH(vbasedev_iter, &group->device_list, next) { |
7da624e2 AW |
2386 | if (!vbasedev_iter->dev->realized || |
2387 | vbasedev_iter->type != VFIO_DEVICE_TYPE_PCI) { | |
b47d8efa EA |
2388 | continue; |
2389 | } | |
2390 | tmp = container_of(vbasedev_iter, VFIOPCIDevice, vbasedev); | |
7df9381b | 2391 | if (vfio_pci_host_match(&host, tmp->vbasedev.name)) { |
f16f39c3 AW |
2392 | vfio_pci_post_reset(tmp); |
2393 | break; | |
2394 | } | |
2395 | } | |
2396 | } | |
2397 | out_single: | |
893bfc3c C |
2398 | if (!single) { |
2399 | vfio_pci_post_reset(vdev); | |
2400 | } | |
f16f39c3 AW |
2401 | g_free(info); |
2402 | ||
2403 | return ret; | |
2404 | } | |
2405 | ||
2406 | /* | |
2407 | * We want to differentiate hot reset of mulitple in-use devices vs hot reset | |
2408 | * of a single in-use device. VFIO_DEVICE_RESET will already handle the case | |
2409 | * of doing hot resets when there is only a single device per bus. The in-use | |
2410 | * here refers to how many VFIODevices are affected. A hot reset that affects | |
2411 | * multiple devices, but only a single in-use device, means that we can call | |
2412 | * it from our bus ->reset() callback since the extent is effectively a single | |
2413 | * device. This allows us to make use of it in the hotplug path. When there | |
2414 | * are multiple in-use devices, we can only trigger the hot reset during a | |
2415 | * system reset and thus from our reset handler. We separate _one vs _multi | |
2416 | * here so that we don't overlap and do a double reset on the system reset | |
2417 | * path where both our reset handler and ->reset() callback are used. Calling | |
2418 | * _one() will only do a hot reset for the one in-use devices case, calling | |
2419 | * _multi() will do nothing if a _one() would have been sufficient. | |
2420 | */ | |
9ee27d73 | 2421 | static int vfio_pci_hot_reset_one(VFIOPCIDevice *vdev) |
f16f39c3 AW |
2422 | { |
2423 | return vfio_pci_hot_reset(vdev, true); | |
2424 | } | |
2425 | ||
b47d8efa | 2426 | static int vfio_pci_hot_reset_multi(VFIODevice *vbasedev) |
f16f39c3 | 2427 | { |
b47d8efa | 2428 | VFIOPCIDevice *vdev = container_of(vbasedev, VFIOPCIDevice, vbasedev); |
f16f39c3 AW |
2429 | return vfio_pci_hot_reset(vdev, false); |
2430 | } | |
2431 | ||
b47d8efa EA |
2432 | static void vfio_pci_compute_needs_reset(VFIODevice *vbasedev) |
2433 | { | |
2434 | VFIOPCIDevice *vdev = container_of(vbasedev, VFIOPCIDevice, vbasedev); | |
2435 | if (!vbasedev->reset_works || (!vdev->has_flr && vdev->has_pm_reset)) { | |
2436 | vbasedev->needs_reset = true; | |
2437 | } | |
2438 | } | |
2439 | ||
2440 | static VFIODeviceOps vfio_pci_ops = { | |
2441 | .vfio_compute_needs_reset = vfio_pci_compute_needs_reset, | |
2442 | .vfio_hot_reset_multi = vfio_pci_hot_reset_multi, | |
870cb6f1 | 2443 | .vfio_eoi = vfio_intx_eoi, |
b47d8efa EA |
2444 | }; |
2445 | ||
cde4279b | 2446 | int vfio_populate_vga(VFIOPCIDevice *vdev, Error **errp) |
e593c021 AW |
2447 | { |
2448 | VFIODevice *vbasedev = &vdev->vbasedev; | |
2449 | struct vfio_region_info *reg_info; | |
2450 | int ret; | |
2451 | ||
4225f2b6 AW |
2452 | ret = vfio_get_region_info(vbasedev, VFIO_PCI_VGA_REGION_INDEX, ®_info); |
2453 | if (ret) { | |
cde4279b EA |
2454 | error_setg_errno(errp, -ret, |
2455 | "failed getting region info for VGA region index %d", | |
2456 | VFIO_PCI_VGA_REGION_INDEX); | |
4225f2b6 AW |
2457 | return ret; |
2458 | } | |
e593c021 | 2459 | |
4225f2b6 AW |
2460 | if (!(reg_info->flags & VFIO_REGION_INFO_FLAG_READ) || |
2461 | !(reg_info->flags & VFIO_REGION_INFO_FLAG_WRITE) || | |
2462 | reg_info->size < 0xbffff + 1) { | |
cde4279b EA |
2463 | error_setg(errp, "unexpected VGA info, flags 0x%lx, size 0x%lx", |
2464 | (unsigned long)reg_info->flags, | |
2465 | (unsigned long)reg_info->size); | |
4225f2b6 AW |
2466 | g_free(reg_info); |
2467 | return -EINVAL; | |
2468 | } | |
e593c021 | 2469 | |
4225f2b6 | 2470 | vdev->vga = g_new0(VFIOVGA, 1); |
e593c021 | 2471 | |
4225f2b6 AW |
2472 | vdev->vga->fd_offset = reg_info->offset; |
2473 | vdev->vga->fd = vdev->vbasedev.fd; | |
e593c021 | 2474 | |
4225f2b6 | 2475 | g_free(reg_info); |
e593c021 | 2476 | |
4225f2b6 AW |
2477 | vdev->vga->region[QEMU_PCI_VGA_MEM].offset = QEMU_PCI_VGA_MEM_BASE; |
2478 | vdev->vga->region[QEMU_PCI_VGA_MEM].nr = QEMU_PCI_VGA_MEM; | |
2479 | QLIST_INIT(&vdev->vga->region[QEMU_PCI_VGA_MEM].quirks); | |
e593c021 | 2480 | |
182bca45 AW |
2481 | memory_region_init_io(&vdev->vga->region[QEMU_PCI_VGA_MEM].mem, |
2482 | OBJECT(vdev), &vfio_vga_ops, | |
2483 | &vdev->vga->region[QEMU_PCI_VGA_MEM], | |
2484 | "vfio-vga-mmio@0xa0000", | |
2485 | QEMU_PCI_VGA_MEM_SIZE); | |
2486 | ||
4225f2b6 AW |
2487 | vdev->vga->region[QEMU_PCI_VGA_IO_LO].offset = QEMU_PCI_VGA_IO_LO_BASE; |
2488 | vdev->vga->region[QEMU_PCI_VGA_IO_LO].nr = QEMU_PCI_VGA_IO_LO; | |
2489 | QLIST_INIT(&vdev->vga->region[QEMU_PCI_VGA_IO_LO].quirks); | |
e593c021 | 2490 | |
182bca45 AW |
2491 | memory_region_init_io(&vdev->vga->region[QEMU_PCI_VGA_IO_LO].mem, |
2492 | OBJECT(vdev), &vfio_vga_ops, | |
2493 | &vdev->vga->region[QEMU_PCI_VGA_IO_LO], | |
2494 | "vfio-vga-io@0x3b0", | |
2495 | QEMU_PCI_VGA_IO_LO_SIZE); | |
2496 | ||
4225f2b6 AW |
2497 | vdev->vga->region[QEMU_PCI_VGA_IO_HI].offset = QEMU_PCI_VGA_IO_HI_BASE; |
2498 | vdev->vga->region[QEMU_PCI_VGA_IO_HI].nr = QEMU_PCI_VGA_IO_HI; | |
2499 | QLIST_INIT(&vdev->vga->region[QEMU_PCI_VGA_IO_HI].quirks); | |
e593c021 | 2500 | |
182bca45 AW |
2501 | memory_region_init_io(&vdev->vga->region[QEMU_PCI_VGA_IO_HI].mem, |
2502 | OBJECT(vdev), &vfio_vga_ops, | |
2503 | &vdev->vga->region[QEMU_PCI_VGA_IO_HI], | |
2504 | "vfio-vga-io@0x3c0", | |
2505 | QEMU_PCI_VGA_IO_HI_SIZE); | |
2506 | ||
2507 | pci_register_vga(&vdev->pdev, &vdev->vga->region[QEMU_PCI_VGA_MEM].mem, | |
2508 | &vdev->vga->region[QEMU_PCI_VGA_IO_LO].mem, | |
2509 | &vdev->vga->region[QEMU_PCI_VGA_IO_HI].mem); | |
2510 | ||
e593c021 AW |
2511 | return 0; |
2512 | } | |
2513 | ||
e04cff9d | 2514 | static void vfio_populate_device(VFIOPCIDevice *vdev, Error **errp) |
65501a74 | 2515 | { |
217e9fdc | 2516 | VFIODevice *vbasedev = &vdev->vbasedev; |
46900226 | 2517 | struct vfio_region_info *reg_info; |
7b4b0e9e | 2518 | struct vfio_irq_info irq_info = { .argsz = sizeof(irq_info) }; |
d13dd2d7 | 2519 | int i, ret = -1; |
65501a74 AW |
2520 | |
2521 | /* Sanity check device */ | |
d13dd2d7 | 2522 | if (!(vbasedev->flags & VFIO_DEVICE_FLAGS_PCI)) { |
2312d907 | 2523 | error_setg(errp, "this isn't a PCI device"); |
e04cff9d | 2524 | return; |
65501a74 AW |
2525 | } |
2526 | ||
d13dd2d7 | 2527 | if (vbasedev->num_regions < VFIO_PCI_CONFIG_REGION_INDEX + 1) { |
2312d907 EA |
2528 | error_setg(errp, "unexpected number of io regions %u", |
2529 | vbasedev->num_regions); | |
e04cff9d | 2530 | return; |
65501a74 AW |
2531 | } |
2532 | ||
d13dd2d7 | 2533 | if (vbasedev->num_irqs < VFIO_PCI_MSIX_IRQ_INDEX + 1) { |
2312d907 | 2534 | error_setg(errp, "unexpected number of irqs %u", vbasedev->num_irqs); |
e04cff9d | 2535 | return; |
65501a74 AW |
2536 | } |
2537 | ||
2538 | for (i = VFIO_PCI_BAR0_REGION_INDEX; i < VFIO_PCI_ROM_REGION_INDEX; i++) { | |
db0da029 AW |
2539 | char *name = g_strdup_printf("%s BAR %d", vbasedev->name, i); |
2540 | ||
2541 | ret = vfio_region_setup(OBJECT(vdev), vbasedev, | |
2542 | &vdev->bars[i].region, i, name); | |
2543 | g_free(name); | |
2544 | ||
65501a74 | 2545 | if (ret) { |
2312d907 | 2546 | error_setg_errno(errp, -ret, "failed to get region %d info", i); |
e04cff9d | 2547 | return; |
65501a74 AW |
2548 | } |
2549 | ||
7076eabc | 2550 | QLIST_INIT(&vdev->bars[i].quirks); |
46900226 | 2551 | } |
65501a74 | 2552 | |
46900226 AW |
2553 | ret = vfio_get_region_info(vbasedev, |
2554 | VFIO_PCI_CONFIG_REGION_INDEX, ®_info); | |
65501a74 | 2555 | if (ret) { |
2312d907 | 2556 | error_setg_errno(errp, -ret, "failed to get config info"); |
e04cff9d | 2557 | return; |
65501a74 AW |
2558 | } |
2559 | ||
d13dd2d7 | 2560 | trace_vfio_populate_device_config(vdev->vbasedev.name, |
46900226 AW |
2561 | (unsigned long)reg_info->size, |
2562 | (unsigned long)reg_info->offset, | |
2563 | (unsigned long)reg_info->flags); | |
65501a74 | 2564 | |
46900226 | 2565 | vdev->config_size = reg_info->size; |
6a659bbf AW |
2566 | if (vdev->config_size == PCI_CONFIG_SPACE_SIZE) { |
2567 | vdev->pdev.cap_present &= ~QEMU_PCI_CAP_EXPRESS; | |
2568 | } | |
46900226 AW |
2569 | vdev->config_offset = reg_info->offset; |
2570 | ||
2571 | g_free(reg_info); | |
65501a74 | 2572 | |
e593c021 | 2573 | if (vdev->features & VFIO_FEATURE_ENABLE_VGA) { |
2312d907 | 2574 | ret = vfio_populate_vga(vdev, errp); |
f15689c7 | 2575 | if (ret) { |
2312d907 | 2576 | error_append_hint(errp, "device does not support " |
cde4279b | 2577 | "requested feature x-vga\n"); |
e04cff9d | 2578 | return; |
f15689c7 | 2579 | } |
f15689c7 | 2580 | } |
47cbe50c | 2581 | |
7b4b0e9e VMP |
2582 | irq_info.index = VFIO_PCI_ERR_IRQ_INDEX; |
2583 | ||
5546a621 | 2584 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_GET_IRQ_INFO, &irq_info); |
7b4b0e9e VMP |
2585 | if (ret) { |
2586 | /* This can fail for an old kernel or legacy PCI dev */ | |
d13dd2d7 | 2587 | trace_vfio_populate_device_get_irq_info_failure(); |
7b4b0e9e VMP |
2588 | } else if (irq_info.count == 1) { |
2589 | vdev->pci_aer = true; | |
2590 | } else { | |
2312d907 | 2591 | error_report(WARN_PREFIX |
8fbf47c3 | 2592 | "Could not enable error recovery for the device", |
df92ee44 | 2593 | vbasedev->name); |
7b4b0e9e | 2594 | } |
d13dd2d7 EA |
2595 | } |
2596 | ||
9ee27d73 | 2597 | static void vfio_put_device(VFIOPCIDevice *vdev) |
65501a74 | 2598 | { |
462037c9 | 2599 | g_free(vdev->vbasedev.name); |
db0da029 AW |
2600 | g_free(vdev->msix); |
2601 | ||
d13dd2d7 | 2602 | vfio_put_base_device(&vdev->vbasedev); |
65501a74 AW |
2603 | } |
2604 | ||
7b4b0e9e VMP |
2605 | static void vfio_err_notifier_handler(void *opaque) |
2606 | { | |
9ee27d73 | 2607 | VFIOPCIDevice *vdev = opaque; |
7b4b0e9e VMP |
2608 | |
2609 | if (!event_notifier_test_and_clear(&vdev->err_notifier)) { | |
2610 | return; | |
2611 | } | |
2612 | ||
2613 | /* | |
2614 | * TBD. Retrieve the error details and decide what action | |
2615 | * needs to be taken. One of the actions could be to pass | |
2616 | * the error to the guest and have the guest driver recover | |
2617 | * from the error. This requires that PCIe capabilities be | |
2618 | * exposed to the guest. For now, we just terminate the | |
2619 | * guest to contain the error. | |
2620 | */ | |
2621 | ||
7df9381b | 2622 | error_report("%s(%s) Unrecoverable error detected. Please collect any data possible and then kill the guest", __func__, vdev->vbasedev.name); |
7b4b0e9e | 2623 | |
ba29776f | 2624 | vm_stop(RUN_STATE_INTERNAL_ERROR); |
7b4b0e9e VMP |
2625 | } |
2626 | ||
2627 | /* | |
2628 | * Registers error notifier for devices supporting error recovery. | |
2629 | * If we encounter a failure in this function, we report an error | |
2630 | * and continue after disabling error recovery support for the | |
2631 | * device. | |
2632 | */ | |
9ee27d73 | 2633 | static void vfio_register_err_notifier(VFIOPCIDevice *vdev) |
7b4b0e9e VMP |
2634 | { |
2635 | int ret; | |
2636 | int argsz; | |
2637 | struct vfio_irq_set *irq_set; | |
2638 | int32_t *pfd; | |
2639 | ||
2640 | if (!vdev->pci_aer) { | |
2641 | return; | |
2642 | } | |
2643 | ||
2644 | if (event_notifier_init(&vdev->err_notifier, 0)) { | |
8fbf47c3 | 2645 | error_report("vfio: Unable to init event notifier for error detection"); |
7b4b0e9e VMP |
2646 | vdev->pci_aer = false; |
2647 | return; | |
2648 | } | |
2649 | ||
2650 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
2651 | ||
2652 | irq_set = g_malloc0(argsz); | |
2653 | irq_set->argsz = argsz; | |
2654 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
2655 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
2656 | irq_set->index = VFIO_PCI_ERR_IRQ_INDEX; | |
2657 | irq_set->start = 0; | |
2658 | irq_set->count = 1; | |
2659 | pfd = (int32_t *)&irq_set->data; | |
2660 | ||
2661 | *pfd = event_notifier_get_fd(&vdev->err_notifier); | |
2662 | qemu_set_fd_handler(*pfd, vfio_err_notifier_handler, NULL, vdev); | |
2663 | ||
5546a621 | 2664 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
7b4b0e9e | 2665 | if (ret) { |
8fbf47c3 | 2666 | error_report("vfio: Failed to set up error notification"); |
7b4b0e9e VMP |
2667 | qemu_set_fd_handler(*pfd, NULL, NULL, vdev); |
2668 | event_notifier_cleanup(&vdev->err_notifier); | |
2669 | vdev->pci_aer = false; | |
2670 | } | |
2671 | g_free(irq_set); | |
2672 | } | |
2673 | ||
9ee27d73 | 2674 | static void vfio_unregister_err_notifier(VFIOPCIDevice *vdev) |
7b4b0e9e VMP |
2675 | { |
2676 | int argsz; | |
2677 | struct vfio_irq_set *irq_set; | |
2678 | int32_t *pfd; | |
2679 | int ret; | |
2680 | ||
2681 | if (!vdev->pci_aer) { | |
2682 | return; | |
2683 | } | |
2684 | ||
2685 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
2686 | ||
2687 | irq_set = g_malloc0(argsz); | |
2688 | irq_set->argsz = argsz; | |
2689 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
2690 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
2691 | irq_set->index = VFIO_PCI_ERR_IRQ_INDEX; | |
2692 | irq_set->start = 0; | |
2693 | irq_set->count = 1; | |
2694 | pfd = (int32_t *)&irq_set->data; | |
2695 | *pfd = -1; | |
2696 | ||
5546a621 | 2697 | ret = ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set); |
7b4b0e9e | 2698 | if (ret) { |
8fbf47c3 | 2699 | error_report("vfio: Failed to de-assign error fd: %m"); |
7b4b0e9e VMP |
2700 | } |
2701 | g_free(irq_set); | |
2702 | qemu_set_fd_handler(event_notifier_get_fd(&vdev->err_notifier), | |
2703 | NULL, NULL, vdev); | |
2704 | event_notifier_cleanup(&vdev->err_notifier); | |
2705 | } | |
2706 | ||
47cbe50c AW |
2707 | static void vfio_req_notifier_handler(void *opaque) |
2708 | { | |
2709 | VFIOPCIDevice *vdev = opaque; | |
35c7cb4c | 2710 | Error *err = NULL; |
47cbe50c AW |
2711 | |
2712 | if (!event_notifier_test_and_clear(&vdev->req_notifier)) { | |
2713 | return; | |
2714 | } | |
2715 | ||
35c7cb4c AW |
2716 | qdev_unplug(&vdev->pdev.qdev, &err); |
2717 | if (err) { | |
2718 | error_reportf_err(err, WARN_PREFIX, vdev->vbasedev.name); | |
2719 | } | |
47cbe50c AW |
2720 | } |
2721 | ||
2722 | static void vfio_register_req_notifier(VFIOPCIDevice *vdev) | |
2723 | { | |
2724 | struct vfio_irq_info irq_info = { .argsz = sizeof(irq_info), | |
2725 | .index = VFIO_PCI_REQ_IRQ_INDEX }; | |
2726 | int argsz; | |
2727 | struct vfio_irq_set *irq_set; | |
2728 | int32_t *pfd; | |
2729 | ||
2730 | if (!(vdev->features & VFIO_FEATURE_ENABLE_REQ)) { | |
2731 | return; | |
2732 | } | |
2733 | ||
2734 | if (ioctl(vdev->vbasedev.fd, | |
2735 | VFIO_DEVICE_GET_IRQ_INFO, &irq_info) < 0 || irq_info.count < 1) { | |
2736 | return; | |
2737 | } | |
2738 | ||
2739 | if (event_notifier_init(&vdev->req_notifier, 0)) { | |
2740 | error_report("vfio: Unable to init event notifier for device request"); | |
2741 | return; | |
2742 | } | |
2743 | ||
2744 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
2745 | ||
2746 | irq_set = g_malloc0(argsz); | |
2747 | irq_set->argsz = argsz; | |
2748 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
2749 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
2750 | irq_set->index = VFIO_PCI_REQ_IRQ_INDEX; | |
2751 | irq_set->start = 0; | |
2752 | irq_set->count = 1; | |
2753 | pfd = (int32_t *)&irq_set->data; | |
2754 | ||
2755 | *pfd = event_notifier_get_fd(&vdev->req_notifier); | |
2756 | qemu_set_fd_handler(*pfd, vfio_req_notifier_handler, NULL, vdev); | |
2757 | ||
2758 | if (ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set)) { | |
2759 | error_report("vfio: Failed to set up device request notification"); | |
2760 | qemu_set_fd_handler(*pfd, NULL, NULL, vdev); | |
2761 | event_notifier_cleanup(&vdev->req_notifier); | |
2762 | } else { | |
2763 | vdev->req_enabled = true; | |
2764 | } | |
2765 | ||
2766 | g_free(irq_set); | |
2767 | } | |
2768 | ||
2769 | static void vfio_unregister_req_notifier(VFIOPCIDevice *vdev) | |
2770 | { | |
2771 | int argsz; | |
2772 | struct vfio_irq_set *irq_set; | |
2773 | int32_t *pfd; | |
2774 | ||
2775 | if (!vdev->req_enabled) { | |
2776 | return; | |
2777 | } | |
2778 | ||
2779 | argsz = sizeof(*irq_set) + sizeof(*pfd); | |
2780 | ||
2781 | irq_set = g_malloc0(argsz); | |
2782 | irq_set->argsz = argsz; | |
2783 | irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | | |
2784 | VFIO_IRQ_SET_ACTION_TRIGGER; | |
2785 | irq_set->index = VFIO_PCI_REQ_IRQ_INDEX; | |
2786 | irq_set->start = 0; | |
2787 | irq_set->count = 1; | |
2788 | pfd = (int32_t *)&irq_set->data; | |
2789 | *pfd = -1; | |
2790 | ||
2791 | if (ioctl(vdev->vbasedev.fd, VFIO_DEVICE_SET_IRQS, irq_set)) { | |
2792 | error_report("vfio: Failed to de-assign device request fd: %m"); | |
2793 | } | |
2794 | g_free(irq_set); | |
2795 | qemu_set_fd_handler(event_notifier_get_fd(&vdev->req_notifier), | |
2796 | NULL, NULL, vdev); | |
2797 | event_notifier_cleanup(&vdev->req_notifier); | |
2798 | ||
2799 | vdev->req_enabled = false; | |
2800 | } | |
2801 | ||
1a22aca1 | 2802 | static void vfio_realize(PCIDevice *pdev, Error **errp) |
65501a74 | 2803 | { |
b47d8efa EA |
2804 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
2805 | VFIODevice *vbasedev_iter; | |
65501a74 | 2806 | VFIOGroup *group; |
7df9381b | 2807 | char *tmp, group_path[PATH_MAX], *group_name; |
ec3bcf42 | 2808 | Error *err = NULL; |
65501a74 AW |
2809 | ssize_t len; |
2810 | struct stat st; | |
2811 | int groupid; | |
581406e0 | 2812 | int i, ret; |
65501a74 | 2813 | |
7df9381b | 2814 | if (!vdev->vbasedev.sysfsdev) { |
4a946268 EA |
2815 | if (!(~vdev->host.domain || ~vdev->host.bus || |
2816 | ~vdev->host.slot || ~vdev->host.function)) { | |
2817 | error_setg(errp, "No provided host device"); | |
6e4e6f0d DJS |
2818 | error_append_hint(errp, "Use -device vfio-pci,host=DDDD:BB:DD.F " |
2819 | "or -device vfio-pci,sysfsdev=PATH_TO_DEVICE\n"); | |
4a946268 EA |
2820 | return; |
2821 | } | |
7df9381b AW |
2822 | vdev->vbasedev.sysfsdev = |
2823 | g_strdup_printf("/sys/bus/pci/devices/%04x:%02x:%02x.%01x", | |
2824 | vdev->host.domain, vdev->host.bus, | |
2825 | vdev->host.slot, vdev->host.function); | |
2826 | } | |
2827 | ||
2828 | if (stat(vdev->vbasedev.sysfsdev, &st) < 0) { | |
1a22aca1 EA |
2829 | error_setg_errno(errp, errno, "no such host device"); |
2830 | error_prepend(errp, ERR_PREFIX, vdev->vbasedev.sysfsdev); | |
2831 | return; | |
65501a74 AW |
2832 | } |
2833 | ||
3e015d81 | 2834 | vdev->vbasedev.name = g_path_get_basename(vdev->vbasedev.sysfsdev); |
b47d8efa | 2835 | vdev->vbasedev.ops = &vfio_pci_ops; |
462037c9 | 2836 | vdev->vbasedev.type = VFIO_DEVICE_TYPE_PCI; |
7da624e2 | 2837 | vdev->vbasedev.dev = &vdev->pdev.qdev; |
462037c9 | 2838 | |
7df9381b AW |
2839 | tmp = g_strdup_printf("%s/iommu_group", vdev->vbasedev.sysfsdev); |
2840 | len = readlink(tmp, group_path, sizeof(group_path)); | |
2841 | g_free(tmp); | |
65501a74 | 2842 | |
7df9381b | 2843 | if (len <= 0 || len >= sizeof(group_path)) { |
1a22aca1 EA |
2844 | error_setg_errno(errp, len < 0 ? errno : ENAMETOOLONG, |
2845 | "no iommu_group found"); | |
426ec904 | 2846 | goto error; |
65501a74 AW |
2847 | } |
2848 | ||
7df9381b | 2849 | group_path[len] = 0; |
65501a74 | 2850 | |
7df9381b | 2851 | group_name = basename(group_path); |
65501a74 | 2852 | if (sscanf(group_name, "%d", &groupid) != 1) { |
1a22aca1 | 2853 | error_setg_errno(errp, errno, "failed to read %s", group_path); |
426ec904 | 2854 | goto error; |
65501a74 AW |
2855 | } |
2856 | ||
1a22aca1 | 2857 | trace_vfio_realize(vdev->vbasedev.name, groupid); |
65501a74 | 2858 | |
1a22aca1 | 2859 | group = vfio_get_group(groupid, pci_device_iommu_address_space(pdev), errp); |
65501a74 | 2860 | if (!group) { |
426ec904 | 2861 | goto error; |
65501a74 AW |
2862 | } |
2863 | ||
b47d8efa EA |
2864 | QLIST_FOREACH(vbasedev_iter, &group->device_list, next) { |
2865 | if (strcmp(vbasedev_iter->name, vdev->vbasedev.name) == 0) { | |
1a22aca1 | 2866 | error_setg(errp, "device is already attached"); |
65501a74 | 2867 | vfio_put_group(group); |
426ec904 | 2868 | goto error; |
65501a74 AW |
2869 | } |
2870 | } | |
2871 | ||
1a22aca1 | 2872 | ret = vfio_get_device(group, vdev->vbasedev.name, &vdev->vbasedev, errp); |
65501a74 | 2873 | if (ret) { |
65501a74 | 2874 | vfio_put_group(group); |
426ec904 | 2875 | goto error; |
65501a74 AW |
2876 | } |
2877 | ||
e04cff9d EA |
2878 | vfio_populate_device(vdev, &err); |
2879 | if (err) { | |
2880 | error_propagate(errp, err); | |
2312d907 | 2881 | goto error; |
217e9fdc PB |
2882 | } |
2883 | ||
65501a74 | 2884 | /* Get a copy of config space */ |
5546a621 | 2885 | ret = pread(vdev->vbasedev.fd, vdev->pdev.config, |
65501a74 AW |
2886 | MIN(pci_config_size(&vdev->pdev), vdev->config_size), |
2887 | vdev->config_offset); | |
2888 | if (ret < (int)MIN(pci_config_size(&vdev->pdev), vdev->config_size)) { | |
2889 | ret = ret < 0 ? -errno : -EFAULT; | |
1a22aca1 | 2890 | error_setg_errno(errp, -ret, "failed to read device config space"); |
426ec904 | 2891 | goto error; |
65501a74 AW |
2892 | } |
2893 | ||
4b5d5e87 AW |
2894 | /* vfio emulates a lot for us, but some bits need extra love */ |
2895 | vdev->emulated_config_bits = g_malloc0(vdev->config_size); | |
2896 | ||
2897 | /* QEMU can choose to expose the ROM or not */ | |
2898 | memset(vdev->emulated_config_bits + PCI_ROM_ADDRESS, 0xff, 4); | |
04f336b0 AW |
2899 | /* QEMU can also add or extend BARs */ |
2900 | memset(vdev->emulated_config_bits + PCI_BASE_ADDRESS_0, 0xff, 6 * 4); | |
4b5d5e87 | 2901 | |
89dcccc5 AW |
2902 | /* |
2903 | * The PCI spec reserves vendor ID 0xffff as an invalid value. The | |
2904 | * device ID is managed by the vendor and need only be a 16-bit value. | |
2905 | * Allow any 16-bit value for subsystem so they can be hidden or changed. | |
2906 | */ | |
2907 | if (vdev->vendor_id != PCI_ANY_ID) { | |
2908 | if (vdev->vendor_id >= 0xffff) { | |
1a22aca1 | 2909 | error_setg(errp, "invalid PCI vendor ID provided"); |
426ec904 | 2910 | goto error; |
89dcccc5 AW |
2911 | } |
2912 | vfio_add_emulated_word(vdev, PCI_VENDOR_ID, vdev->vendor_id, ~0); | |
2913 | trace_vfio_pci_emulated_vendor_id(vdev->vbasedev.name, vdev->vendor_id); | |
2914 | } else { | |
2915 | vdev->vendor_id = pci_get_word(pdev->config + PCI_VENDOR_ID); | |
2916 | } | |
2917 | ||
2918 | if (vdev->device_id != PCI_ANY_ID) { | |
2919 | if (vdev->device_id > 0xffff) { | |
1a22aca1 | 2920 | error_setg(errp, "invalid PCI device ID provided"); |
426ec904 | 2921 | goto error; |
89dcccc5 AW |
2922 | } |
2923 | vfio_add_emulated_word(vdev, PCI_DEVICE_ID, vdev->device_id, ~0); | |
2924 | trace_vfio_pci_emulated_device_id(vdev->vbasedev.name, vdev->device_id); | |
2925 | } else { | |
2926 | vdev->device_id = pci_get_word(pdev->config + PCI_DEVICE_ID); | |
2927 | } | |
2928 | ||
2929 | if (vdev->sub_vendor_id != PCI_ANY_ID) { | |
2930 | if (vdev->sub_vendor_id > 0xffff) { | |
1a22aca1 | 2931 | error_setg(errp, "invalid PCI subsystem vendor ID provided"); |
426ec904 | 2932 | goto error; |
89dcccc5 AW |
2933 | } |
2934 | vfio_add_emulated_word(vdev, PCI_SUBSYSTEM_VENDOR_ID, | |
2935 | vdev->sub_vendor_id, ~0); | |
2936 | trace_vfio_pci_emulated_sub_vendor_id(vdev->vbasedev.name, | |
2937 | vdev->sub_vendor_id); | |
2938 | } | |
2939 | ||
2940 | if (vdev->sub_device_id != PCI_ANY_ID) { | |
2941 | if (vdev->sub_device_id > 0xffff) { | |
1a22aca1 | 2942 | error_setg(errp, "invalid PCI subsystem device ID provided"); |
426ec904 | 2943 | goto error; |
89dcccc5 AW |
2944 | } |
2945 | vfio_add_emulated_word(vdev, PCI_SUBSYSTEM_ID, vdev->sub_device_id, ~0); | |
2946 | trace_vfio_pci_emulated_sub_device_id(vdev->vbasedev.name, | |
2947 | vdev->sub_device_id); | |
2948 | } | |
ff635e37 | 2949 | |
4b5d5e87 AW |
2950 | /* QEMU can change multi-function devices to single function, or reverse */ |
2951 | vdev->emulated_config_bits[PCI_HEADER_TYPE] = | |
2952 | PCI_HEADER_TYPE_MULTI_FUNCTION; | |
2953 | ||
187d6232 AW |
2954 | /* Restore or clear multifunction, this is always controlled by QEMU */ |
2955 | if (vdev->pdev.cap_present & QEMU_PCI_CAP_MULTIFUNCTION) { | |
2956 | vdev->pdev.config[PCI_HEADER_TYPE] |= PCI_HEADER_TYPE_MULTI_FUNCTION; | |
2957 | } else { | |
2958 | vdev->pdev.config[PCI_HEADER_TYPE] &= ~PCI_HEADER_TYPE_MULTI_FUNCTION; | |
2959 | } | |
2960 | ||
65501a74 AW |
2961 | /* |
2962 | * Clear host resource mapping info. If we choose not to register a | |
2963 | * BAR, such as might be the case with the option ROM, we can get | |
2964 | * confusing, unwritable, residual addresses from the host here. | |
2965 | */ | |
2966 | memset(&vdev->pdev.config[PCI_BASE_ADDRESS_0], 0, 24); | |
2967 | memset(&vdev->pdev.config[PCI_ROM_ADDRESS], 0, 4); | |
2968 | ||
6f864e6e | 2969 | vfio_pci_size_rom(vdev); |
65501a74 | 2970 | |
89d5202e AW |
2971 | vfio_bars_prepare(vdev); |
2972 | ||
ec3bcf42 EA |
2973 | vfio_msix_early_setup(vdev, &err); |
2974 | if (err) { | |
2975 | error_propagate(errp, err); | |
008d0e2d | 2976 | goto error; |
65501a74 AW |
2977 | } |
2978 | ||
3a286732 | 2979 | vfio_bars_register(vdev); |
65501a74 | 2980 | |
1a22aca1 | 2981 | ret = vfio_add_capabilities(vdev, errp); |
65501a74 AW |
2982 | if (ret) { |
2983 | goto out_teardown; | |
2984 | } | |
2985 | ||
182bca45 AW |
2986 | if (vdev->vga) { |
2987 | vfio_vga_quirk_setup(vdev); | |
2988 | } | |
2989 | ||
581406e0 AW |
2990 | for (i = 0; i < PCI_ROM_SLOT; i++) { |
2991 | vfio_bar_quirk_setup(vdev, i); | |
2992 | } | |
2993 | ||
6ced0bba AW |
2994 | if (!vdev->igd_opregion && |
2995 | vdev->features & VFIO_FEATURE_ENABLE_IGD_OPREGION) { | |
2996 | struct vfio_region_info *opregion; | |
2997 | ||
2998 | if (vdev->pdev.qdev.hotplugged) { | |
1a22aca1 | 2999 | error_setg(errp, |
426ec904 EA |
3000 | "cannot support IGD OpRegion feature on hotplugged " |
3001 | "device"); | |
6ced0bba AW |
3002 | goto out_teardown; |
3003 | } | |
3004 | ||
3005 | ret = vfio_get_dev_region_info(&vdev->vbasedev, | |
3006 | VFIO_REGION_TYPE_PCI_VENDOR_TYPE | PCI_VENDOR_ID_INTEL, | |
3007 | VFIO_REGION_SUBTYPE_INTEL_IGD_OPREGION, &opregion); | |
3008 | if (ret) { | |
1a22aca1 | 3009 | error_setg_errno(errp, -ret, |
426ec904 | 3010 | "does not support requested IGD OpRegion feature"); |
6ced0bba AW |
3011 | goto out_teardown; |
3012 | } | |
3013 | ||
1a22aca1 | 3014 | ret = vfio_pci_igd_opregion_init(vdev, opregion, errp); |
6ced0bba AW |
3015 | g_free(opregion); |
3016 | if (ret) { | |
6ced0bba AW |
3017 | goto out_teardown; |
3018 | } | |
3019 | } | |
3020 | ||
4b5d5e87 AW |
3021 | /* QEMU emulates all of MSI & MSIX */ |
3022 | if (pdev->cap_present & QEMU_PCI_CAP_MSIX) { | |
3023 | memset(vdev->emulated_config_bits + pdev->msix_cap, 0xff, | |
3024 | MSIX_CAP_LENGTH); | |
3025 | } | |
3026 | ||
3027 | if (pdev->cap_present & QEMU_PCI_CAP_MSI) { | |
3028 | memset(vdev->emulated_config_bits + pdev->msi_cap, 0xff, | |
3029 | vdev->msi_cap_size); | |
3030 | } | |
3031 | ||
65501a74 | 3032 | if (vfio_pci_read_config(&vdev->pdev, PCI_INTERRUPT_PIN, 1)) { |
bc72ad67 | 3033 | vdev->intx.mmap_timer = timer_new_ms(QEMU_CLOCK_VIRTUAL, |
ea486926 | 3034 | vfio_intx_mmap_enable, vdev); |
870cb6f1 | 3035 | pci_device_set_intx_routing_notifier(&vdev->pdev, vfio_intx_update); |
1a22aca1 | 3036 | ret = vfio_intx_enable(vdev, errp); |
65501a74 AW |
3037 | if (ret) { |
3038 | goto out_teardown; | |
3039 | } | |
3040 | } | |
3041 | ||
a9994687 GH |
3042 | if (vdev->display != ON_OFF_AUTO_OFF) { |
3043 | ret = vfio_display_probe(vdev, errp); | |
3044 | if (ret) { | |
3045 | goto out_teardown; | |
3046 | } | |
3047 | } | |
3048 | ||
7b4b0e9e | 3049 | vfio_register_err_notifier(vdev); |
47cbe50c | 3050 | vfio_register_req_notifier(vdev); |
c9c50009 | 3051 | vfio_setup_resetfn_quirk(vdev); |
c29029dd | 3052 | |
1a22aca1 | 3053 | return; |
65501a74 AW |
3054 | |
3055 | out_teardown: | |
3056 | pci_device_set_intx_routing_notifier(&vdev->pdev, NULL); | |
3057 | vfio_teardown_msi(vdev); | |
2d82f8a3 | 3058 | vfio_bars_exit(vdev); |
426ec904 | 3059 | error: |
1a22aca1 | 3060 | error_prepend(errp, ERR_PREFIX, vdev->vbasedev.name); |
77a10d04 PB |
3061 | } |
3062 | ||
3063 | static void vfio_instance_finalize(Object *obj) | |
3064 | { | |
3065 | PCIDevice *pci_dev = PCI_DEVICE(obj); | |
3066 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pci_dev); | |
3067 | VFIOGroup *group = vdev->vbasedev.group; | |
3068 | ||
a9994687 | 3069 | vfio_display_finalize(vdev); |
2d82f8a3 | 3070 | vfio_bars_finalize(vdev); |
4b5d5e87 | 3071 | g_free(vdev->emulated_config_bits); |
77a10d04 | 3072 | g_free(vdev->rom); |
c4c45e94 AW |
3073 | /* |
3074 | * XXX Leaking igd_opregion is not an oversight, we can't remove the | |
3075 | * fw_cfg entry therefore leaking this allocation seems like the safest | |
3076 | * option. | |
3077 | * | |
3078 | * g_free(vdev->igd_opregion); | |
3079 | */ | |
65501a74 AW |
3080 | vfio_put_device(vdev); |
3081 | vfio_put_group(group); | |
65501a74 AW |
3082 | } |
3083 | ||
3084 | static void vfio_exitfn(PCIDevice *pdev) | |
3085 | { | |
9ee27d73 | 3086 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
65501a74 | 3087 | |
47cbe50c | 3088 | vfio_unregister_req_notifier(vdev); |
7b4b0e9e | 3089 | vfio_unregister_err_notifier(vdev); |
65501a74 AW |
3090 | pci_device_set_intx_routing_notifier(&vdev->pdev, NULL); |
3091 | vfio_disable_interrupts(vdev); | |
ea486926 | 3092 | if (vdev->intx.mmap_timer) { |
bc72ad67 | 3093 | timer_free(vdev->intx.mmap_timer); |
ea486926 | 3094 | } |
65501a74 | 3095 | vfio_teardown_msi(vdev); |
2d82f8a3 | 3096 | vfio_bars_exit(vdev); |
65501a74 AW |
3097 | } |
3098 | ||
3099 | static void vfio_pci_reset(DeviceState *dev) | |
3100 | { | |
3101 | PCIDevice *pdev = DO_UPCAST(PCIDevice, qdev, dev); | |
9ee27d73 | 3102 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, pdev); |
65501a74 | 3103 | |
df92ee44 | 3104 | trace_vfio_pci_reset(vdev->vbasedev.name); |
5834a83f | 3105 | |
f16f39c3 | 3106 | vfio_pci_pre_reset(vdev); |
ba661818 | 3107 | |
8983e3e3 TZ |
3108 | if (vdev->display != ON_OFF_AUTO_OFF) { |
3109 | vfio_display_reset(vdev); | |
3110 | } | |
3111 | ||
5655f931 AW |
3112 | if (vdev->resetfn && !vdev->resetfn(vdev)) { |
3113 | goto post_reset; | |
3114 | } | |
3115 | ||
b47d8efa EA |
3116 | if (vdev->vbasedev.reset_works && |
3117 | (vdev->has_flr || !vdev->has_pm_reset) && | |
5546a621 | 3118 | !ioctl(vdev->vbasedev.fd, VFIO_DEVICE_RESET)) { |
df92ee44 | 3119 | trace_vfio_pci_reset_flr(vdev->vbasedev.name); |
f16f39c3 | 3120 | goto post_reset; |
ba661818 AW |
3121 | } |
3122 | ||
f16f39c3 AW |
3123 | /* See if we can do our own bus reset */ |
3124 | if (!vfio_pci_hot_reset_one(vdev)) { | |
3125 | goto post_reset; | |
3126 | } | |
5834a83f | 3127 | |
f16f39c3 | 3128 | /* If nothing else works and the device supports PM reset, use it */ |
b47d8efa | 3129 | if (vdev->vbasedev.reset_works && vdev->has_pm_reset && |
5546a621 | 3130 | !ioctl(vdev->vbasedev.fd, VFIO_DEVICE_RESET)) { |
df92ee44 | 3131 | trace_vfio_pci_reset_pm(vdev->vbasedev.name); |
f16f39c3 | 3132 | goto post_reset; |
65501a74 | 3133 | } |
5834a83f | 3134 | |
f16f39c3 AW |
3135 | post_reset: |
3136 | vfio_pci_post_reset(vdev); | |
65501a74 AW |
3137 | } |
3138 | ||
abc5b3bf GA |
3139 | static void vfio_instance_init(Object *obj) |
3140 | { | |
3141 | PCIDevice *pci_dev = PCI_DEVICE(obj); | |
9ee27d73 | 3142 | VFIOPCIDevice *vdev = DO_UPCAST(VFIOPCIDevice, pdev, PCI_DEVICE(obj)); |
abc5b3bf GA |
3143 | |
3144 | device_add_bootindex_property(obj, &vdev->bootindex, | |
3145 | "bootindex", NULL, | |
3146 | &pci_dev->qdev, NULL); | |
4a946268 EA |
3147 | vdev->host.domain = ~0U; |
3148 | vdev->host.bus = ~0U; | |
3149 | vdev->host.slot = ~0U; | |
3150 | vdev->host.function = ~0U; | |
dfbee78d AW |
3151 | |
3152 | vdev->nv_gpudirect_clique = 0xFF; | |
d61a363d YB |
3153 | |
3154 | /* QEMU_PCI_CAP_EXPRESS initialization does not depend on QEMU command | |
3155 | * line, therefore, no need to wait to realize like other devices */ | |
3156 | pci_dev->cap_present |= QEMU_PCI_CAP_EXPRESS; | |
abc5b3bf GA |
3157 | } |
3158 | ||
65501a74 | 3159 | static Property vfio_pci_dev_properties[] = { |
9ee27d73 | 3160 | DEFINE_PROP_PCI_HOST_DEVADDR("host", VFIOPCIDevice, host), |
7df9381b | 3161 | DEFINE_PROP_STRING("sysfsdev", VFIOPCIDevice, vbasedev.sysfsdev), |
a9994687 GH |
3162 | DEFINE_PROP_ON_OFF_AUTO("display", VFIOPCIDevice, |
3163 | display, ON_OFF_AUTO_AUTO), | |
9ee27d73 | 3164 | DEFINE_PROP_UINT32("x-intx-mmap-timeout-ms", VFIOPCIDevice, |
ea486926 | 3165 | intx.mmap_timeout, 1100), |
9ee27d73 | 3166 | DEFINE_PROP_BIT("x-vga", VFIOPCIDevice, features, |
f15689c7 | 3167 | VFIO_FEATURE_ENABLE_VGA_BIT, false), |
47cbe50c AW |
3168 | DEFINE_PROP_BIT("x-req", VFIOPCIDevice, features, |
3169 | VFIO_FEATURE_ENABLE_REQ_BIT, true), | |
6ced0bba AW |
3170 | DEFINE_PROP_BIT("x-igd-opregion", VFIOPCIDevice, features, |
3171 | VFIO_FEATURE_ENABLE_IGD_OPREGION_BIT, false), | |
5e15d79b | 3172 | DEFINE_PROP_BOOL("x-no-mmap", VFIOPCIDevice, vbasedev.no_mmap, false), |
46746dba AW |
3173 | DEFINE_PROP_BOOL("x-no-kvm-intx", VFIOPCIDevice, no_kvm_intx, false), |
3174 | DEFINE_PROP_BOOL("x-no-kvm-msi", VFIOPCIDevice, no_kvm_msi, false), | |
3175 | DEFINE_PROP_BOOL("x-no-kvm-msix", VFIOPCIDevice, no_kvm_msix, false), | |
db32d0f4 AW |
3176 | DEFINE_PROP_BOOL("x-no-geforce-quirks", VFIOPCIDevice, |
3177 | no_geforce_quirks, false), | |
89dcccc5 AW |
3178 | DEFINE_PROP_UINT32("x-pci-vendor-id", VFIOPCIDevice, vendor_id, PCI_ANY_ID), |
3179 | DEFINE_PROP_UINT32("x-pci-device-id", VFIOPCIDevice, device_id, PCI_ANY_ID), | |
3180 | DEFINE_PROP_UINT32("x-pci-sub-vendor-id", VFIOPCIDevice, | |
3181 | sub_vendor_id, PCI_ANY_ID), | |
3182 | DEFINE_PROP_UINT32("x-pci-sub-device-id", VFIOPCIDevice, | |
3183 | sub_device_id, PCI_ANY_ID), | |
c4c45e94 | 3184 | DEFINE_PROP_UINT32("x-igd-gms", VFIOPCIDevice, igd_gms, 0), |
dfbee78d AW |
3185 | DEFINE_PROP_UNSIGNED_NODEFAULT("x-nv-gpudirect-clique", VFIOPCIDevice, |
3186 | nv_gpudirect_clique, | |
3187 | qdev_prop_nv_gpudirect_clique, uint8_t), | |
89d5202e AW |
3188 | DEFINE_PROP_OFF_AUTO_PCIBAR("x-msix-relocation", VFIOPCIDevice, msix_relo, |
3189 | OFF_AUTOPCIBAR_OFF), | |
65501a74 AW |
3190 | /* |
3191 | * TODO - support passed fds... is this necessary? | |
9ee27d73 EA |
3192 | * DEFINE_PROP_STRING("vfiofd", VFIOPCIDevice, vfiofd_name), |
3193 | * DEFINE_PROP_STRING("vfiogroupfd, VFIOPCIDevice, vfiogroupfd_name), | |
65501a74 AW |
3194 | */ |
3195 | DEFINE_PROP_END_OF_LIST(), | |
3196 | }; | |
3197 | ||
d9f0e638 AW |
3198 | static const VMStateDescription vfio_pci_vmstate = { |
3199 | .name = "vfio-pci", | |
3200 | .unmigratable = 1, | |
3201 | }; | |
65501a74 AW |
3202 | |
3203 | static void vfio_pci_dev_class_init(ObjectClass *klass, void *data) | |
3204 | { | |
3205 | DeviceClass *dc = DEVICE_CLASS(klass); | |
3206 | PCIDeviceClass *pdc = PCI_DEVICE_CLASS(klass); | |
3207 | ||
3208 | dc->reset = vfio_pci_reset; | |
3209 | dc->props = vfio_pci_dev_properties; | |
d9f0e638 AW |
3210 | dc->vmsd = &vfio_pci_vmstate; |
3211 | dc->desc = "VFIO-based PCI device assignment"; | |
125ee0ed | 3212 | set_bit(DEVICE_CATEGORY_MISC, dc->categories); |
1a22aca1 | 3213 | pdc->realize = vfio_realize; |
65501a74 AW |
3214 | pdc->exit = vfio_exitfn; |
3215 | pdc->config_read = vfio_pci_read_config; | |
3216 | pdc->config_write = vfio_pci_write_config; | |
3217 | } | |
3218 | ||
3219 | static const TypeInfo vfio_pci_dev_info = { | |
3220 | .name = "vfio-pci", | |
3221 | .parent = TYPE_PCI_DEVICE, | |
9ee27d73 | 3222 | .instance_size = sizeof(VFIOPCIDevice), |
65501a74 | 3223 | .class_init = vfio_pci_dev_class_init, |
abc5b3bf | 3224 | .instance_init = vfio_instance_init, |
77a10d04 | 3225 | .instance_finalize = vfio_instance_finalize, |
a5fa336f EH |
3226 | .interfaces = (InterfaceInfo[]) { |
3227 | { INTERFACE_PCIE_DEVICE }, | |
3228 | { INTERFACE_CONVENTIONAL_PCI_DEVICE }, | |
3229 | { } | |
3230 | }, | |
65501a74 AW |
3231 | }; |
3232 | ||
3233 | static void register_vfio_pci_dev_type(void) | |
3234 | { | |
3235 | type_register_static(&vfio_pci_dev_info); | |
3236 | } | |
3237 | ||
3238 | type_init(register_vfio_pci_dev_type) |