virtio.c revision 1.31 1 1.31 jakllsch /* $NetBSD: virtio.c,v 1.31 2018/06/02 22:43:15 jakllsch Exp $ */
2 1.1 hannken
3 1.1 hannken /*
4 1.1 hannken * Copyright (c) 2010 Minoura Makoto.
5 1.1 hannken * All rights reserved.
6 1.1 hannken *
7 1.1 hannken * Redistribution and use in source and binary forms, with or without
8 1.1 hannken * modification, are permitted provided that the following conditions
9 1.1 hannken * are met:
10 1.1 hannken * 1. Redistributions of source code must retain the above copyright
11 1.1 hannken * notice, this list of conditions and the following disclaimer.
12 1.1 hannken * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 hannken * notice, this list of conditions and the following disclaimer in the
14 1.1 hannken * documentation and/or other materials provided with the distribution.
15 1.1 hannken *
16 1.1 hannken * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 hannken * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 hannken * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 hannken * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 hannken * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 hannken * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 hannken * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 hannken * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 hannken * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.1 hannken * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 hannken */
27 1.1 hannken
28 1.1 hannken #include <sys/cdefs.h>
29 1.31 jakllsch __KERNEL_RCSID(0, "$NetBSD: virtio.c,v 1.31 2018/06/02 22:43:15 jakllsch Exp $");
30 1.1 hannken
31 1.1 hannken #include <sys/param.h>
32 1.1 hannken #include <sys/systm.h>
33 1.1 hannken #include <sys/kernel.h>
34 1.1 hannken #include <sys/atomic.h>
35 1.1 hannken #include <sys/bus.h>
36 1.1 hannken #include <sys/device.h>
37 1.1 hannken #include <sys/kmem.h>
38 1.18 pgoyette #include <sys/module.h>
39 1.1 hannken
40 1.1 hannken #include <dev/pci/pcidevs.h>
41 1.1 hannken #include <dev/pci/pcireg.h>
42 1.1 hannken #include <dev/pci/pcivar.h>
43 1.1 hannken
44 1.22 jdolecek #define VIRTIO_PRIVATE
45 1.22 jdolecek
46 1.29 cherry #include <dev/pci/virtioreg.h> /* XXX: move to non-pci */
47 1.29 cherry #include <dev/pci/virtiovar.h> /* XXX: move to non-pci */
48 1.1 hannken
49 1.1 hannken #define MINSEG_INDIRECT 2 /* use indirect if nsegs >= this value */
50 1.1 hannken
51 1.1 hannken static void virtio_init_vq(struct virtio_softc *,
52 1.1 hannken struct virtqueue *, const bool);
53 1.1 hannken
54 1.29 cherry void
55 1.1 hannken virtio_set_status(struct virtio_softc *sc, int status)
56 1.1 hannken {
57 1.31 jakllsch sc->sc_ops->set_status(sc, status);
58 1.11 ozaki }
59 1.11 ozaki
60 1.1 hannken /*
61 1.1 hannken * Reset the device.
62 1.1 hannken */
63 1.1 hannken /*
64 1.1 hannken * To reset the device to a known state, do following:
65 1.1 hannken * virtio_reset(sc); // this will stop the device activity
66 1.1 hannken * <dequeue finished requests>; // virtio_dequeue() still can be called
67 1.1 hannken * <revoke pending requests in the vqs if any>;
68 1.1 hannken * virtio_reinit_begin(sc); // dequeue prohibitted
69 1.1 hannken * newfeatures = virtio_negotiate_features(sc, requestedfeatures);
70 1.1 hannken * <some other initialization>;
71 1.1 hannken * virtio_reinit_end(sc); // device activated; enqueue allowed
72 1.1 hannken * Once attached, feature negotiation can only be allowed after virtio_reset.
73 1.1 hannken */
74 1.1 hannken void
75 1.1 hannken virtio_reset(struct virtio_softc *sc)
76 1.1 hannken {
77 1.1 hannken virtio_device_reset(sc);
78 1.1 hannken }
79 1.1 hannken
80 1.1 hannken void
81 1.1 hannken virtio_reinit_start(struct virtio_softc *sc)
82 1.1 hannken {
83 1.1 hannken int i;
84 1.1 hannken
85 1.1 hannken virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_ACK);
86 1.1 hannken virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_DRIVER);
87 1.1 hannken for (i = 0; i < sc->sc_nvqs; i++) {
88 1.1 hannken int n;
89 1.1 hannken struct virtqueue *vq = &sc->sc_vqs[i];
90 1.31 jakllsch n = sc->sc_ops->read_queue_size(sc, vq->vq_index);
91 1.1 hannken if (n == 0) /* vq disappeared */
92 1.1 hannken continue;
93 1.1 hannken if (n != vq->vq_num) {
94 1.1 hannken panic("%s: virtqueue size changed, vq index %d\n",
95 1.1 hannken device_xname(sc->sc_dev),
96 1.1 hannken vq->vq_index);
97 1.1 hannken }
98 1.1 hannken virtio_init_vq(sc, vq, true);
99 1.31 jakllsch sc->sc_ops->setup_queue(sc, vq->vq_index,
100 1.31 jakllsch vq->vq_dmamap->dm_segs[0].ds_addr / VIRTIO_PAGE_SIZE);
101 1.11 ozaki }
102 1.1 hannken }
103 1.1 hannken
104 1.1 hannken void
105 1.1 hannken virtio_reinit_end(struct virtio_softc *sc)
106 1.1 hannken {
107 1.1 hannken virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_DRIVER_OK);
108 1.1 hannken }
109 1.1 hannken
110 1.1 hannken /*
111 1.1 hannken * Feature negotiation.
112 1.1 hannken */
113 1.1 hannken uint32_t
114 1.1 hannken virtio_negotiate_features(struct virtio_softc *sc, uint32_t guest_features)
115 1.1 hannken {
116 1.1 hannken uint32_t r;
117 1.1 hannken
118 1.1 hannken if (!(device_cfdata(sc->sc_dev)->cf_flags & 1) &&
119 1.1 hannken !(device_cfdata(sc->sc_child)->cf_flags & 1)) /* XXX */
120 1.1 hannken guest_features |= VIRTIO_F_RING_INDIRECT_DESC;
121 1.31 jakllsch r = sc->sc_ops->neg_features(sc, guest_features);
122 1.1 hannken sc->sc_features = r;
123 1.1 hannken if (r & VIRTIO_F_RING_INDIRECT_DESC)
124 1.1 hannken sc->sc_indirect = true;
125 1.1 hannken else
126 1.1 hannken sc->sc_indirect = false;
127 1.1 hannken
128 1.1 hannken return r;
129 1.1 hannken }
130 1.1 hannken
131 1.1 hannken /*
132 1.1 hannken * Device configuration registers.
133 1.1 hannken */
134 1.1 hannken uint8_t
135 1.1 hannken virtio_read_device_config_1(struct virtio_softc *sc, int index)
136 1.1 hannken {
137 1.31 jakllsch return sc->sc_ops->read_dev_cfg_1(sc, index);
138 1.1 hannken }
139 1.1 hannken
140 1.1 hannken uint16_t
141 1.1 hannken virtio_read_device_config_2(struct virtio_softc *sc, int index)
142 1.1 hannken {
143 1.31 jakllsch return sc->sc_ops->read_dev_cfg_2(sc, index);
144 1.1 hannken }
145 1.1 hannken
146 1.1 hannken uint32_t
147 1.1 hannken virtio_read_device_config_4(struct virtio_softc *sc, int index)
148 1.1 hannken {
149 1.31 jakllsch return sc->sc_ops->read_dev_cfg_4(sc, index);
150 1.1 hannken }
151 1.1 hannken
152 1.1 hannken uint64_t
153 1.1 hannken virtio_read_device_config_8(struct virtio_softc *sc, int index)
154 1.1 hannken {
155 1.31 jakllsch return sc->sc_ops->read_dev_cfg_8(sc, index);
156 1.1 hannken }
157 1.1 hannken
158 1.1 hannken void
159 1.1 hannken virtio_write_device_config_1(struct virtio_softc *sc,
160 1.1 hannken int index, uint8_t value)
161 1.1 hannken {
162 1.31 jakllsch return sc->sc_ops->write_dev_cfg_1(sc, index, value);
163 1.1 hannken }
164 1.1 hannken
165 1.1 hannken void
166 1.1 hannken virtio_write_device_config_2(struct virtio_softc *sc,
167 1.1 hannken int index, uint16_t value)
168 1.1 hannken {
169 1.31 jakllsch return sc->sc_ops->write_dev_cfg_2(sc, index, value);
170 1.1 hannken }
171 1.1 hannken
172 1.1 hannken void
173 1.1 hannken virtio_write_device_config_4(struct virtio_softc *sc,
174 1.1 hannken int index, uint32_t value)
175 1.1 hannken {
176 1.31 jakllsch return sc->sc_ops->write_dev_cfg_4(sc, index, value);
177 1.1 hannken }
178 1.1 hannken
179 1.1 hannken void
180 1.1 hannken virtio_write_device_config_8(struct virtio_softc *sc,
181 1.1 hannken int index, uint64_t value)
182 1.1 hannken {
183 1.31 jakllsch return sc->sc_ops->write_dev_cfg_8(sc, index, value);
184 1.1 hannken }
185 1.1 hannken
186 1.1 hannken /*
187 1.1 hannken * Interrupt handler.
188 1.1 hannken */
189 1.8 ozaki static void
190 1.8 ozaki virtio_soft_intr(void *arg)
191 1.8 ozaki {
192 1.8 ozaki struct virtio_softc *sc = arg;
193 1.8 ozaki
194 1.8 ozaki KASSERT(sc->sc_intrhand != NULL);
195 1.8 ozaki
196 1.8 ozaki (sc->sc_intrhand)(sc);
197 1.8 ozaki }
198 1.8 ozaki
199 1.1 hannken /*
200 1.1 hannken * dmamap sync operations for a virtqueue.
201 1.1 hannken */
202 1.1 hannken static inline void
203 1.1 hannken vq_sync_descs(struct virtio_softc *sc, struct virtqueue *vq, int ops)
204 1.1 hannken {
205 1.1 hannken /* availoffset == sizeof(vring_desc)*vq_num */
206 1.1 hannken bus_dmamap_sync(sc->sc_dmat, vq->vq_dmamap, 0, vq->vq_availoffset,
207 1.1 hannken ops);
208 1.1 hannken }
209 1.1 hannken
210 1.1 hannken static inline void
211 1.1 hannken vq_sync_aring(struct virtio_softc *sc, struct virtqueue *vq, int ops)
212 1.1 hannken {
213 1.1 hannken bus_dmamap_sync(sc->sc_dmat, vq->vq_dmamap,
214 1.1 hannken vq->vq_availoffset,
215 1.1 hannken offsetof(struct vring_avail, ring)
216 1.1 hannken + vq->vq_num * sizeof(uint16_t),
217 1.1 hannken ops);
218 1.1 hannken }
219 1.1 hannken
220 1.1 hannken static inline void
221 1.1 hannken vq_sync_uring(struct virtio_softc *sc, struct virtqueue *vq, int ops)
222 1.1 hannken {
223 1.1 hannken bus_dmamap_sync(sc->sc_dmat, vq->vq_dmamap,
224 1.1 hannken vq->vq_usedoffset,
225 1.1 hannken offsetof(struct vring_used, ring)
226 1.1 hannken + vq->vq_num * sizeof(struct vring_used_elem),
227 1.1 hannken ops);
228 1.1 hannken }
229 1.1 hannken
230 1.1 hannken static inline void
231 1.1 hannken vq_sync_indirect(struct virtio_softc *sc, struct virtqueue *vq, int slot,
232 1.1 hannken int ops)
233 1.1 hannken {
234 1.1 hannken int offset = vq->vq_indirectoffset
235 1.1 hannken + sizeof(struct vring_desc) * vq->vq_maxnsegs * slot;
236 1.1 hannken
237 1.1 hannken bus_dmamap_sync(sc->sc_dmat, vq->vq_dmamap,
238 1.1 hannken offset, sizeof(struct vring_desc) * vq->vq_maxnsegs,
239 1.1 hannken ops);
240 1.1 hannken }
241 1.1 hannken
242 1.1 hannken /*
243 1.1 hannken * Can be used as sc_intrhand.
244 1.1 hannken */
245 1.1 hannken /*
246 1.1 hannken * Scan vq, bus_dmamap_sync for the vqs (not for the payload),
247 1.1 hannken * and calls (*vq_done)() if some entries are consumed.
248 1.1 hannken */
249 1.1 hannken int
250 1.1 hannken virtio_vq_intr(struct virtio_softc *sc)
251 1.1 hannken {
252 1.1 hannken struct virtqueue *vq;
253 1.1 hannken int i, r = 0;
254 1.1 hannken
255 1.1 hannken for (i = 0; i < sc->sc_nvqs; i++) {
256 1.1 hannken vq = &sc->sc_vqs[i];
257 1.1 hannken if (vq->vq_queued) {
258 1.1 hannken vq->vq_queued = 0;
259 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_POSTWRITE);
260 1.1 hannken }
261 1.1 hannken vq_sync_uring(sc, vq, BUS_DMASYNC_POSTREAD);
262 1.1 hannken membar_consumer();
263 1.1 hannken if (vq->vq_used_idx != vq->vq_used->idx) {
264 1.1 hannken if (vq->vq_done)
265 1.1 hannken r |= (vq->vq_done)(vq);
266 1.1 hannken }
267 1.1 hannken }
268 1.1 hannken
269 1.1 hannken return r;
270 1.1 hannken }
271 1.1 hannken
272 1.1 hannken /*
273 1.1 hannken * Start/stop vq interrupt. No guarantee.
274 1.1 hannken */
275 1.1 hannken void
276 1.1 hannken virtio_stop_vq_intr(struct virtio_softc *sc, struct virtqueue *vq)
277 1.1 hannken {
278 1.1 hannken vq->vq_avail->flags |= VRING_AVAIL_F_NO_INTERRUPT;
279 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_PREWRITE);
280 1.1 hannken vq->vq_queued++;
281 1.1 hannken }
282 1.1 hannken
283 1.1 hannken void
284 1.1 hannken virtio_start_vq_intr(struct virtio_softc *sc, struct virtqueue *vq)
285 1.1 hannken {
286 1.1 hannken vq->vq_avail->flags &= ~VRING_AVAIL_F_NO_INTERRUPT;
287 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_PREWRITE);
288 1.1 hannken vq->vq_queued++;
289 1.1 hannken }
290 1.1 hannken
291 1.1 hannken /*
292 1.1 hannken * Initialize vq structure.
293 1.1 hannken */
294 1.1 hannken static void
295 1.15 msaitoh virtio_init_vq(struct virtio_softc *sc, struct virtqueue *vq,
296 1.15 msaitoh const bool reinit)
297 1.1 hannken {
298 1.1 hannken int i, j;
299 1.1 hannken int vq_size = vq->vq_num;
300 1.1 hannken
301 1.1 hannken memset(vq->vq_vaddr, 0, vq->vq_bytesize);
302 1.1 hannken
303 1.1 hannken /* build the indirect descriptor chain */
304 1.1 hannken if (vq->vq_indirect != NULL) {
305 1.1 hannken struct vring_desc *vd;
306 1.1 hannken
307 1.1 hannken for (i = 0; i < vq_size; i++) {
308 1.1 hannken vd = vq->vq_indirect;
309 1.1 hannken vd += vq->vq_maxnsegs * i;
310 1.23 martin for (j = 0; j < vq->vq_maxnsegs-1; j++) {
311 1.1 hannken vd[j].next = j + 1;
312 1.23 martin }
313 1.1 hannken }
314 1.1 hannken }
315 1.1 hannken
316 1.1 hannken /* free slot management */
317 1.1 hannken SIMPLEQ_INIT(&vq->vq_freelist);
318 1.1 hannken for (i = 0; i < vq_size; i++) {
319 1.1 hannken SIMPLEQ_INSERT_TAIL(&vq->vq_freelist,
320 1.1 hannken &vq->vq_entries[i], qe_list);
321 1.1 hannken vq->vq_entries[i].qe_index = i;
322 1.1 hannken }
323 1.1 hannken if (!reinit)
324 1.1 hannken mutex_init(&vq->vq_freelist_lock, MUTEX_SPIN, sc->sc_ipl);
325 1.1 hannken
326 1.1 hannken /* enqueue/dequeue status */
327 1.1 hannken vq->vq_avail_idx = 0;
328 1.1 hannken vq->vq_used_idx = 0;
329 1.1 hannken vq->vq_queued = 0;
330 1.1 hannken if (!reinit) {
331 1.1 hannken mutex_init(&vq->vq_aring_lock, MUTEX_SPIN, sc->sc_ipl);
332 1.1 hannken mutex_init(&vq->vq_uring_lock, MUTEX_SPIN, sc->sc_ipl);
333 1.1 hannken }
334 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_PREWRITE);
335 1.1 hannken vq_sync_uring(sc, vq, BUS_DMASYNC_PREREAD);
336 1.1 hannken vq->vq_queued++;
337 1.1 hannken }
338 1.1 hannken
339 1.1 hannken /*
340 1.1 hannken * Allocate/free a vq.
341 1.1 hannken */
342 1.1 hannken int
343 1.15 msaitoh virtio_alloc_vq(struct virtio_softc *sc, struct virtqueue *vq, int index,
344 1.15 msaitoh int maxsegsize, int maxnsegs, const char *name)
345 1.1 hannken {
346 1.1 hannken int vq_size, allocsize1, allocsize2, allocsize3, allocsize = 0;
347 1.1 hannken int rsegs, r;
348 1.1 hannken #define VIRTQUEUE_ALIGN(n) (((n)+(VIRTIO_PAGE_SIZE-1))& \
349 1.1 hannken ~(VIRTIO_PAGE_SIZE-1))
350 1.1 hannken
351 1.22 jdolecek /* Make sure callers allocate vqs in order */
352 1.22 jdolecek KASSERT(sc->sc_nvqs == index);
353 1.22 jdolecek
354 1.1 hannken memset(vq, 0, sizeof(*vq));
355 1.1 hannken
356 1.31 jakllsch vq_size = sc->sc_ops->read_queue_size(sc, index);
357 1.1 hannken if (vq_size == 0) {
358 1.1 hannken aprint_error_dev(sc->sc_dev,
359 1.1 hannken "virtqueue not exist, index %d for %s\n",
360 1.1 hannken index, name);
361 1.1 hannken goto err;
362 1.1 hannken }
363 1.1 hannken /* allocsize1: descriptor table + avail ring + pad */
364 1.1 hannken allocsize1 = VIRTQUEUE_ALIGN(sizeof(struct vring_desc)*vq_size
365 1.1 hannken + sizeof(uint16_t)*(2+vq_size));
366 1.1 hannken /* allocsize2: used ring + pad */
367 1.1 hannken allocsize2 = VIRTQUEUE_ALIGN(sizeof(uint16_t)*2
368 1.1 hannken + sizeof(struct vring_used_elem)*vq_size);
369 1.1 hannken /* allocsize3: indirect table */
370 1.1 hannken if (sc->sc_indirect && maxnsegs >= MINSEG_INDIRECT)
371 1.1 hannken allocsize3 = sizeof(struct vring_desc) * maxnsegs * vq_size;
372 1.1 hannken else
373 1.1 hannken allocsize3 = 0;
374 1.1 hannken allocsize = allocsize1 + allocsize2 + allocsize3;
375 1.1 hannken
376 1.1 hannken /* alloc and map the memory */
377 1.1 hannken r = bus_dmamem_alloc(sc->sc_dmat, allocsize, VIRTIO_PAGE_SIZE, 0,
378 1.1 hannken &vq->vq_segs[0], 1, &rsegs, BUS_DMA_NOWAIT);
379 1.1 hannken if (r != 0) {
380 1.1 hannken aprint_error_dev(sc->sc_dev,
381 1.1 hannken "virtqueue %d for %s allocation failed, "
382 1.1 hannken "error code %d\n", index, name, r);
383 1.1 hannken goto err;
384 1.1 hannken }
385 1.1 hannken r = bus_dmamem_map(sc->sc_dmat, &vq->vq_segs[0], 1, allocsize,
386 1.1 hannken &vq->vq_vaddr, BUS_DMA_NOWAIT);
387 1.1 hannken if (r != 0) {
388 1.1 hannken aprint_error_dev(sc->sc_dev,
389 1.1 hannken "virtqueue %d for %s map failed, "
390 1.1 hannken "error code %d\n", index, name, r);
391 1.1 hannken goto err;
392 1.1 hannken }
393 1.1 hannken r = bus_dmamap_create(sc->sc_dmat, allocsize, 1, allocsize, 0,
394 1.1 hannken BUS_DMA_NOWAIT, &vq->vq_dmamap);
395 1.1 hannken if (r != 0) {
396 1.1 hannken aprint_error_dev(sc->sc_dev,
397 1.1 hannken "virtqueue %d for %s dmamap creation failed, "
398 1.1 hannken "error code %d\n", index, name, r);
399 1.1 hannken goto err;
400 1.1 hannken }
401 1.1 hannken r = bus_dmamap_load(sc->sc_dmat, vq->vq_dmamap,
402 1.1 hannken vq->vq_vaddr, allocsize, NULL, BUS_DMA_NOWAIT);
403 1.1 hannken if (r != 0) {
404 1.1 hannken aprint_error_dev(sc->sc_dev,
405 1.1 hannken "virtqueue %d for %s dmamap load failed, "
406 1.1 hannken "error code %d\n", index, name, r);
407 1.1 hannken goto err;
408 1.1 hannken }
409 1.1 hannken
410 1.1 hannken /* set the vq address */
411 1.31 jakllsch sc->sc_ops->setup_queue(sc, vq->vq_index,
412 1.31 jakllsch vq->vq_dmamap->dm_segs[0].ds_addr / VIRTIO_PAGE_SIZE);
413 1.1 hannken
414 1.1 hannken /* remember addresses and offsets for later use */
415 1.1 hannken vq->vq_owner = sc;
416 1.1 hannken vq->vq_num = vq_size;
417 1.1 hannken vq->vq_index = index;
418 1.1 hannken vq->vq_desc = vq->vq_vaddr;
419 1.1 hannken vq->vq_availoffset = sizeof(struct vring_desc)*vq_size;
420 1.1 hannken vq->vq_avail = (void*)(((char*)vq->vq_desc) + vq->vq_availoffset);
421 1.1 hannken vq->vq_usedoffset = allocsize1;
422 1.1 hannken vq->vq_used = (void*)(((char*)vq->vq_desc) + vq->vq_usedoffset);
423 1.1 hannken if (allocsize3 > 0) {
424 1.1 hannken vq->vq_indirectoffset = allocsize1 + allocsize2;
425 1.1 hannken vq->vq_indirect = (void*)(((char*)vq->vq_desc)
426 1.1 hannken + vq->vq_indirectoffset);
427 1.1 hannken }
428 1.1 hannken vq->vq_bytesize = allocsize;
429 1.1 hannken vq->vq_maxsegsize = maxsegsize;
430 1.1 hannken vq->vq_maxnsegs = maxnsegs;
431 1.1 hannken
432 1.1 hannken /* free slot management */
433 1.1 hannken vq->vq_entries = kmem_zalloc(sizeof(struct vq_entry)*vq_size,
434 1.1 hannken KM_NOSLEEP);
435 1.1 hannken if (vq->vq_entries == NULL) {
436 1.1 hannken r = ENOMEM;
437 1.1 hannken goto err;
438 1.1 hannken }
439 1.1 hannken
440 1.1 hannken virtio_init_vq(sc, vq, false);
441 1.1 hannken
442 1.1 hannken aprint_verbose_dev(sc->sc_dev,
443 1.1 hannken "allocated %u byte for virtqueue %d for %s, "
444 1.1 hannken "size %d\n", allocsize, index, name, vq_size);
445 1.1 hannken if (allocsize3 > 0)
446 1.1 hannken aprint_verbose_dev(sc->sc_dev,
447 1.1 hannken "using %d byte (%d entries) "
448 1.1 hannken "indirect descriptors\n",
449 1.1 hannken allocsize3, maxnsegs * vq_size);
450 1.22 jdolecek
451 1.22 jdolecek sc->sc_nvqs++;
452 1.22 jdolecek
453 1.1 hannken return 0;
454 1.1 hannken
455 1.1 hannken err:
456 1.31 jakllsch sc->sc_ops->setup_queue(sc, vq->vq_index, 0);
457 1.1 hannken if (vq->vq_dmamap)
458 1.1 hannken bus_dmamap_destroy(sc->sc_dmat, vq->vq_dmamap);
459 1.1 hannken if (vq->vq_vaddr)
460 1.1 hannken bus_dmamem_unmap(sc->sc_dmat, vq->vq_vaddr, allocsize);
461 1.1 hannken if (vq->vq_segs[0].ds_addr)
462 1.1 hannken bus_dmamem_free(sc->sc_dmat, &vq->vq_segs[0], 1);
463 1.1 hannken memset(vq, 0, sizeof(*vq));
464 1.1 hannken
465 1.1 hannken return -1;
466 1.1 hannken }
467 1.1 hannken
468 1.1 hannken int
469 1.1 hannken virtio_free_vq(struct virtio_softc *sc, struct virtqueue *vq)
470 1.1 hannken {
471 1.1 hannken struct vq_entry *qe;
472 1.1 hannken int i = 0;
473 1.1 hannken
474 1.1 hannken /* device must be already deactivated */
475 1.1 hannken /* confirm the vq is empty */
476 1.1 hannken SIMPLEQ_FOREACH(qe, &vq->vq_freelist, qe_list) {
477 1.1 hannken i++;
478 1.1 hannken }
479 1.1 hannken if (i != vq->vq_num) {
480 1.1 hannken printf("%s: freeing non-empty vq, index %d\n",
481 1.1 hannken device_xname(sc->sc_dev), vq->vq_index);
482 1.1 hannken return EBUSY;
483 1.1 hannken }
484 1.1 hannken
485 1.1 hannken /* tell device that there's no virtqueue any longer */
486 1.31 jakllsch sc->sc_ops->setup_queue(sc, vq->vq_index, 0);
487 1.1 hannken
488 1.14 christos kmem_free(vq->vq_entries, sizeof(*vq->vq_entries) * vq->vq_num);
489 1.1 hannken bus_dmamap_unload(sc->sc_dmat, vq->vq_dmamap);
490 1.1 hannken bus_dmamap_destroy(sc->sc_dmat, vq->vq_dmamap);
491 1.1 hannken bus_dmamem_unmap(sc->sc_dmat, vq->vq_vaddr, vq->vq_bytesize);
492 1.1 hannken bus_dmamem_free(sc->sc_dmat, &vq->vq_segs[0], 1);
493 1.1 hannken mutex_destroy(&vq->vq_freelist_lock);
494 1.1 hannken mutex_destroy(&vq->vq_uring_lock);
495 1.1 hannken mutex_destroy(&vq->vq_aring_lock);
496 1.1 hannken memset(vq, 0, sizeof(*vq));
497 1.1 hannken
498 1.22 jdolecek sc->sc_nvqs--;
499 1.22 jdolecek
500 1.1 hannken return 0;
501 1.1 hannken }
502 1.1 hannken
503 1.1 hannken /*
504 1.1 hannken * Free descriptor management.
505 1.1 hannken */
506 1.1 hannken static struct vq_entry *
507 1.1 hannken vq_alloc_entry(struct virtqueue *vq)
508 1.1 hannken {
509 1.1 hannken struct vq_entry *qe;
510 1.1 hannken
511 1.1 hannken mutex_enter(&vq->vq_freelist_lock);
512 1.1 hannken if (SIMPLEQ_EMPTY(&vq->vq_freelist)) {
513 1.1 hannken mutex_exit(&vq->vq_freelist_lock);
514 1.1 hannken return NULL;
515 1.1 hannken }
516 1.1 hannken qe = SIMPLEQ_FIRST(&vq->vq_freelist);
517 1.1 hannken SIMPLEQ_REMOVE_HEAD(&vq->vq_freelist, qe_list);
518 1.1 hannken mutex_exit(&vq->vq_freelist_lock);
519 1.1 hannken
520 1.1 hannken return qe;
521 1.1 hannken }
522 1.1 hannken
523 1.1 hannken static void
524 1.1 hannken vq_free_entry(struct virtqueue *vq, struct vq_entry *qe)
525 1.1 hannken {
526 1.1 hannken mutex_enter(&vq->vq_freelist_lock);
527 1.1 hannken SIMPLEQ_INSERT_TAIL(&vq->vq_freelist, qe, qe_list);
528 1.1 hannken mutex_exit(&vq->vq_freelist_lock);
529 1.1 hannken
530 1.1 hannken return;
531 1.1 hannken }
532 1.1 hannken
533 1.1 hannken /*
534 1.1 hannken * Enqueue several dmamaps as a single request.
535 1.1 hannken */
536 1.1 hannken /*
537 1.1 hannken * Typical usage:
538 1.1 hannken * <queue size> number of followings are stored in arrays
539 1.1 hannken * - command blocks (in dmamem) should be pre-allocated and mapped
540 1.1 hannken * - dmamaps for command blocks should be pre-allocated and loaded
541 1.1 hannken * - dmamaps for payload should be pre-allocated
542 1.1 hannken * r = virtio_enqueue_prep(sc, vq, &slot); // allocate a slot
543 1.1 hannken * if (r) // currently 0 or EAGAIN
544 1.1 hannken * return r;
545 1.1 hannken * r = bus_dmamap_load(dmat, dmamap_payload[slot], data, count, ..);
546 1.1 hannken * if (r) {
547 1.1 hannken * virtio_enqueue_abort(sc, vq, slot);
548 1.1 hannken * return r;
549 1.1 hannken * }
550 1.1 hannken * r = virtio_enqueue_reserve(sc, vq, slot,
551 1.1 hannken * dmamap_payload[slot]->dm_nsegs+1);
552 1.1 hannken * // ^ +1 for command
553 1.1 hannken * if (r) { // currently 0 or EAGAIN
554 1.1 hannken * bus_dmamap_unload(dmat, dmamap_payload[slot]);
555 1.1 hannken * return r; // do not call abort()
556 1.1 hannken * }
557 1.1 hannken * <setup and prepare commands>
558 1.1 hannken * bus_dmamap_sync(dmat, dmamap_cmd[slot],... BUS_DMASYNC_PREWRITE);
559 1.1 hannken * bus_dmamap_sync(dmat, dmamap_payload[slot],...);
560 1.1 hannken * virtio_enqueue(sc, vq, slot, dmamap_cmd[slot], false);
561 1.1 hannken * virtio_enqueue(sc, vq, slot, dmamap_payload[slot], iswrite);
562 1.1 hannken * virtio_enqueue_commit(sc, vq, slot, true);
563 1.1 hannken */
564 1.1 hannken
565 1.1 hannken /*
566 1.1 hannken * enqueue_prep: allocate a slot number
567 1.1 hannken */
568 1.1 hannken int
569 1.1 hannken virtio_enqueue_prep(struct virtio_softc *sc, struct virtqueue *vq, int *slotp)
570 1.1 hannken {
571 1.1 hannken struct vq_entry *qe1;
572 1.1 hannken
573 1.1 hannken KASSERT(slotp != NULL);
574 1.1 hannken
575 1.1 hannken qe1 = vq_alloc_entry(vq);
576 1.1 hannken if (qe1 == NULL)
577 1.1 hannken return EAGAIN;
578 1.1 hannken /* next slot is not allocated yet */
579 1.1 hannken qe1->qe_next = -1;
580 1.1 hannken *slotp = qe1->qe_index;
581 1.1 hannken
582 1.1 hannken return 0;
583 1.1 hannken }
584 1.1 hannken
585 1.1 hannken /*
586 1.1 hannken * enqueue_reserve: allocate remaining slots and build the descriptor chain.
587 1.1 hannken */
588 1.1 hannken int
589 1.1 hannken virtio_enqueue_reserve(struct virtio_softc *sc, struct virtqueue *vq,
590 1.1 hannken int slot, int nsegs)
591 1.1 hannken {
592 1.1 hannken int indirect;
593 1.1 hannken struct vq_entry *qe1 = &vq->vq_entries[slot];
594 1.1 hannken
595 1.1 hannken KASSERT(qe1->qe_next == -1);
596 1.1 hannken KASSERT(1 <= nsegs && nsegs <= vq->vq_num);
597 1.1 hannken
598 1.1 hannken if ((vq->vq_indirect != NULL) &&
599 1.1 hannken (nsegs >= MINSEG_INDIRECT) &&
600 1.1 hannken (nsegs <= vq->vq_maxnsegs))
601 1.1 hannken indirect = 1;
602 1.1 hannken else
603 1.1 hannken indirect = 0;
604 1.1 hannken qe1->qe_indirect = indirect;
605 1.1 hannken
606 1.1 hannken if (indirect) {
607 1.1 hannken struct vring_desc *vd;
608 1.1 hannken int i;
609 1.1 hannken
610 1.1 hannken vd = &vq->vq_desc[qe1->qe_index];
611 1.1 hannken vd->addr = vq->vq_dmamap->dm_segs[0].ds_addr
612 1.1 hannken + vq->vq_indirectoffset;
613 1.1 hannken vd->addr += sizeof(struct vring_desc)
614 1.1 hannken * vq->vq_maxnsegs * qe1->qe_index;
615 1.1 hannken vd->len = sizeof(struct vring_desc) * nsegs;
616 1.1 hannken vd->flags = VRING_DESC_F_INDIRECT;
617 1.1 hannken
618 1.1 hannken vd = vq->vq_indirect;
619 1.1 hannken vd += vq->vq_maxnsegs * qe1->qe_index;
620 1.1 hannken qe1->qe_desc_base = vd;
621 1.1 hannken
622 1.1 hannken for (i = 0; i < nsegs-1; i++) {
623 1.1 hannken vd[i].flags = VRING_DESC_F_NEXT;
624 1.1 hannken }
625 1.1 hannken vd[i].flags = 0;
626 1.1 hannken qe1->qe_next = 0;
627 1.1 hannken
628 1.1 hannken return 0;
629 1.1 hannken } else {
630 1.1 hannken struct vring_desc *vd;
631 1.1 hannken struct vq_entry *qe;
632 1.1 hannken int i, s;
633 1.1 hannken
634 1.1 hannken vd = &vq->vq_desc[0];
635 1.1 hannken qe1->qe_desc_base = vd;
636 1.1 hannken qe1->qe_next = qe1->qe_index;
637 1.1 hannken s = slot;
638 1.1 hannken for (i = 0; i < nsegs - 1; i++) {
639 1.1 hannken qe = vq_alloc_entry(vq);
640 1.1 hannken if (qe == NULL) {
641 1.1 hannken vd[s].flags = 0;
642 1.1 hannken virtio_enqueue_abort(sc, vq, slot);
643 1.1 hannken return EAGAIN;
644 1.1 hannken }
645 1.1 hannken vd[s].flags = VRING_DESC_F_NEXT;
646 1.1 hannken vd[s].next = qe->qe_index;
647 1.1 hannken s = qe->qe_index;
648 1.1 hannken }
649 1.1 hannken vd[s].flags = 0;
650 1.1 hannken
651 1.1 hannken return 0;
652 1.1 hannken }
653 1.1 hannken }
654 1.1 hannken
655 1.1 hannken /*
656 1.1 hannken * enqueue: enqueue a single dmamap.
657 1.1 hannken */
658 1.1 hannken int
659 1.1 hannken virtio_enqueue(struct virtio_softc *sc, struct virtqueue *vq, int slot,
660 1.1 hannken bus_dmamap_t dmamap, bool write)
661 1.1 hannken {
662 1.1 hannken struct vq_entry *qe1 = &vq->vq_entries[slot];
663 1.1 hannken struct vring_desc *vd = qe1->qe_desc_base;
664 1.1 hannken int i;
665 1.1 hannken int s = qe1->qe_next;
666 1.1 hannken
667 1.1 hannken KASSERT(s >= 0);
668 1.1 hannken KASSERT(dmamap->dm_nsegs > 0);
669 1.1 hannken
670 1.1 hannken for (i = 0; i < dmamap->dm_nsegs; i++) {
671 1.1 hannken vd[s].addr = dmamap->dm_segs[i].ds_addr;
672 1.1 hannken vd[s].len = dmamap->dm_segs[i].ds_len;
673 1.1 hannken if (!write)
674 1.1 hannken vd[s].flags |= VRING_DESC_F_WRITE;
675 1.1 hannken s = vd[s].next;
676 1.1 hannken }
677 1.1 hannken qe1->qe_next = s;
678 1.1 hannken
679 1.1 hannken return 0;
680 1.1 hannken }
681 1.1 hannken
682 1.1 hannken int
683 1.1 hannken virtio_enqueue_p(struct virtio_softc *sc, struct virtqueue *vq, int slot,
684 1.1 hannken bus_dmamap_t dmamap, bus_addr_t start, bus_size_t len,
685 1.1 hannken bool write)
686 1.1 hannken {
687 1.1 hannken struct vq_entry *qe1 = &vq->vq_entries[slot];
688 1.1 hannken struct vring_desc *vd = qe1->qe_desc_base;
689 1.1 hannken int s = qe1->qe_next;
690 1.1 hannken
691 1.1 hannken KASSERT(s >= 0);
692 1.1 hannken KASSERT(dmamap->dm_nsegs == 1); /* XXX */
693 1.1 hannken KASSERT((dmamap->dm_segs[0].ds_len > start) &&
694 1.1 hannken (dmamap->dm_segs[0].ds_len >= start + len));
695 1.1 hannken
696 1.1 hannken vd[s].addr = dmamap->dm_segs[0].ds_addr + start;
697 1.1 hannken vd[s].len = len;
698 1.1 hannken if (!write)
699 1.1 hannken vd[s].flags |= VRING_DESC_F_WRITE;
700 1.1 hannken qe1->qe_next = vd[s].next;
701 1.1 hannken
702 1.1 hannken return 0;
703 1.1 hannken }
704 1.1 hannken
705 1.1 hannken /*
706 1.1 hannken * enqueue_commit: add it to the aring.
707 1.1 hannken */
708 1.1 hannken int
709 1.1 hannken virtio_enqueue_commit(struct virtio_softc *sc, struct virtqueue *vq, int slot,
710 1.1 hannken bool notifynow)
711 1.1 hannken {
712 1.1 hannken struct vq_entry *qe1;
713 1.1 hannken
714 1.1 hannken if (slot < 0) {
715 1.1 hannken mutex_enter(&vq->vq_aring_lock);
716 1.1 hannken goto notify;
717 1.1 hannken }
718 1.1 hannken vq_sync_descs(sc, vq, BUS_DMASYNC_PREWRITE);
719 1.1 hannken qe1 = &vq->vq_entries[slot];
720 1.1 hannken if (qe1->qe_indirect)
721 1.1 hannken vq_sync_indirect(sc, vq, slot, BUS_DMASYNC_PREWRITE);
722 1.1 hannken mutex_enter(&vq->vq_aring_lock);
723 1.1 hannken vq->vq_avail->ring[(vq->vq_avail_idx++) % vq->vq_num] = slot;
724 1.1 hannken
725 1.1 hannken notify:
726 1.1 hannken if (notifynow) {
727 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_PREWRITE);
728 1.1 hannken vq_sync_uring(sc, vq, BUS_DMASYNC_PREREAD);
729 1.1 hannken membar_producer();
730 1.1 hannken vq->vq_avail->idx = vq->vq_avail_idx;
731 1.1 hannken vq_sync_aring(sc, vq, BUS_DMASYNC_PREWRITE);
732 1.1 hannken membar_producer();
733 1.1 hannken vq->vq_queued++;
734 1.1 hannken vq_sync_uring(sc, vq, BUS_DMASYNC_POSTREAD);
735 1.1 hannken membar_consumer();
736 1.1 hannken if (!(vq->vq_used->flags & VRING_USED_F_NO_NOTIFY))
737 1.31 jakllsch sc->sc_ops->kick(sc, vq->vq_index);
738 1.1 hannken }
739 1.1 hannken mutex_exit(&vq->vq_aring_lock);
740 1.1 hannken
741 1.1 hannken return 0;
742 1.1 hannken }
743 1.1 hannken
744 1.1 hannken /*
745 1.1 hannken * enqueue_abort: rollback.
746 1.1 hannken */
747 1.1 hannken int
748 1.1 hannken virtio_enqueue_abort(struct virtio_softc *sc, struct virtqueue *vq, int slot)
749 1.1 hannken {
750 1.1 hannken struct vq_entry *qe = &vq->vq_entries[slot];
751 1.1 hannken struct vring_desc *vd;
752 1.1 hannken int s;
753 1.1 hannken
754 1.1 hannken if (qe->qe_next < 0) {
755 1.1 hannken vq_free_entry(vq, qe);
756 1.1 hannken return 0;
757 1.1 hannken }
758 1.1 hannken
759 1.1 hannken s = slot;
760 1.1 hannken vd = &vq->vq_desc[0];
761 1.1 hannken while (vd[s].flags & VRING_DESC_F_NEXT) {
762 1.1 hannken s = vd[s].next;
763 1.1 hannken vq_free_entry(vq, qe);
764 1.1 hannken qe = &vq->vq_entries[s];
765 1.1 hannken }
766 1.1 hannken vq_free_entry(vq, qe);
767 1.1 hannken return 0;
768 1.1 hannken }
769 1.1 hannken
770 1.1 hannken /*
771 1.1 hannken * Dequeue a request.
772 1.1 hannken */
773 1.1 hannken /*
774 1.1 hannken * dequeue: dequeue a request from uring; dmamap_sync for uring is
775 1.1 hannken * already done in the interrupt handler.
776 1.1 hannken */
777 1.1 hannken int
778 1.1 hannken virtio_dequeue(struct virtio_softc *sc, struct virtqueue *vq,
779 1.1 hannken int *slotp, int *lenp)
780 1.1 hannken {
781 1.1 hannken uint16_t slot, usedidx;
782 1.1 hannken struct vq_entry *qe;
783 1.1 hannken
784 1.1 hannken if (vq->vq_used_idx == vq->vq_used->idx)
785 1.1 hannken return ENOENT;
786 1.1 hannken mutex_enter(&vq->vq_uring_lock);
787 1.1 hannken usedidx = vq->vq_used_idx++;
788 1.1 hannken mutex_exit(&vq->vq_uring_lock);
789 1.1 hannken usedidx %= vq->vq_num;
790 1.1 hannken slot = vq->vq_used->ring[usedidx].id;
791 1.1 hannken qe = &vq->vq_entries[slot];
792 1.1 hannken
793 1.1 hannken if (qe->qe_indirect)
794 1.1 hannken vq_sync_indirect(sc, vq, slot, BUS_DMASYNC_POSTWRITE);
795 1.1 hannken
796 1.1 hannken if (slotp)
797 1.1 hannken *slotp = slot;
798 1.1 hannken if (lenp)
799 1.1 hannken *lenp = vq->vq_used->ring[usedidx].len;
800 1.1 hannken
801 1.1 hannken return 0;
802 1.1 hannken }
803 1.1 hannken
804 1.1 hannken /*
805 1.1 hannken * dequeue_commit: complete dequeue; the slot is recycled for future use.
806 1.1 hannken * if you forget to call this the slot will be leaked.
807 1.1 hannken */
808 1.1 hannken int
809 1.1 hannken virtio_dequeue_commit(struct virtio_softc *sc, struct virtqueue *vq, int slot)
810 1.1 hannken {
811 1.1 hannken struct vq_entry *qe = &vq->vq_entries[slot];
812 1.1 hannken struct vring_desc *vd = &vq->vq_desc[0];
813 1.1 hannken int s = slot;
814 1.1 hannken
815 1.1 hannken while (vd[s].flags & VRING_DESC_F_NEXT) {
816 1.1 hannken s = vd[s].next;
817 1.1 hannken vq_free_entry(vq, qe);
818 1.1 hannken qe = &vq->vq_entries[s];
819 1.1 hannken }
820 1.1 hannken vq_free_entry(vq, qe);
821 1.1 hannken
822 1.1 hannken return 0;
823 1.1 hannken }
824 1.18 pgoyette
825 1.22 jdolecek /*
826 1.22 jdolecek * Attach a child, fill all the members.
827 1.22 jdolecek */
828 1.22 jdolecek void
829 1.22 jdolecek virtio_child_attach_start(struct virtio_softc *sc, device_t child, int ipl,
830 1.22 jdolecek struct virtqueue *vqs,
831 1.22 jdolecek virtio_callback config_change,
832 1.22 jdolecek virtio_callback intr_hand,
833 1.22 jdolecek int req_flags, int req_features, const char *feat_bits)
834 1.22 jdolecek {
835 1.22 jdolecek char buf[256];
836 1.22 jdolecek int features;
837 1.22 jdolecek
838 1.22 jdolecek sc->sc_child = child;
839 1.22 jdolecek sc->sc_ipl = ipl;
840 1.22 jdolecek sc->sc_vqs = vqs;
841 1.22 jdolecek sc->sc_config_change = config_change;
842 1.22 jdolecek sc->sc_intrhand = intr_hand;
843 1.22 jdolecek sc->sc_flags = req_flags;
844 1.22 jdolecek
845 1.22 jdolecek features = virtio_negotiate_features(sc, req_features);
846 1.22 jdolecek snprintb(buf, sizeof(buf), feat_bits, features);
847 1.22 jdolecek aprint_normal(": Features: %s\n", buf);
848 1.22 jdolecek aprint_naive("\n");
849 1.22 jdolecek }
850 1.22 jdolecek
851 1.22 jdolecek int
852 1.22 jdolecek virtio_child_attach_finish(struct virtio_softc *sc)
853 1.22 jdolecek {
854 1.22 jdolecek int r;
855 1.22 jdolecek
856 1.31 jakllsch r = sc->sc_ops->setup_interrupts(sc);
857 1.22 jdolecek if (r != 0) {
858 1.22 jdolecek aprint_error_dev(sc->sc_dev, "failed to setup interrupts\n");
859 1.31 jakllsch goto fail;
860 1.31 jakllsch }
861 1.31 jakllsch
862 1.31 jakllsch KASSERT(sc->sc_soft_ih == NULL);
863 1.31 jakllsch if (sc->sc_flags & VIRTIO_F_PCI_INTR_SOFTINT) {
864 1.31 jakllsch u_int flags = SOFTINT_NET;
865 1.31 jakllsch if (sc->sc_flags & VIRTIO_F_PCI_INTR_MPSAFE)
866 1.31 jakllsch flags |= SOFTINT_MPSAFE;
867 1.31 jakllsch
868 1.31 jakllsch sc->sc_soft_ih = softint_establish(flags, virtio_soft_intr, sc);
869 1.31 jakllsch if (sc->sc_soft_ih == NULL) {
870 1.31 jakllsch sc->sc_ops->free_interrupts(sc);
871 1.31 jakllsch aprint_error_dev(sc->sc_dev,
872 1.31 jakllsch "failed to establish soft interrupt\n");
873 1.31 jakllsch goto fail;
874 1.31 jakllsch }
875 1.22 jdolecek }
876 1.22 jdolecek
877 1.22 jdolecek virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_DRIVER_OK);
878 1.31 jakllsch return 0;
879 1.22 jdolecek
880 1.31 jakllsch fail:
881 1.31 jakllsch virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_FAILED);
882 1.31 jakllsch return 1;
883 1.22 jdolecek }
884 1.22 jdolecek
885 1.22 jdolecek void
886 1.22 jdolecek virtio_child_detach(struct virtio_softc *sc)
887 1.22 jdolecek {
888 1.22 jdolecek sc->sc_child = NULL;
889 1.22 jdolecek sc->sc_vqs = NULL;
890 1.22 jdolecek
891 1.22 jdolecek virtio_device_reset(sc);
892 1.22 jdolecek
893 1.31 jakllsch sc->sc_ops->free_interrupts(sc);
894 1.31 jakllsch
895 1.31 jakllsch if (sc->sc_soft_ih) {
896 1.31 jakllsch softint_disestablish(sc->sc_soft_ih);
897 1.31 jakllsch sc->sc_soft_ih = NULL;
898 1.31 jakllsch }
899 1.22 jdolecek }
900 1.22 jdolecek
901 1.22 jdolecek void
902 1.22 jdolecek virtio_child_attach_failed(struct virtio_softc *sc)
903 1.22 jdolecek {
904 1.22 jdolecek virtio_child_detach(sc);
905 1.22 jdolecek
906 1.22 jdolecek virtio_set_status(sc, VIRTIO_CONFIG_DEVICE_STATUS_FAILED);
907 1.22 jdolecek
908 1.22 jdolecek sc->sc_child = VIRTIO_CHILD_FAILED;
909 1.22 jdolecek }
910 1.22 jdolecek
911 1.22 jdolecek bus_dma_tag_t
912 1.22 jdolecek virtio_dmat(struct virtio_softc *sc)
913 1.22 jdolecek {
914 1.22 jdolecek return sc->sc_dmat;
915 1.22 jdolecek }
916 1.22 jdolecek
917 1.22 jdolecek device_t
918 1.22 jdolecek virtio_child(struct virtio_softc *sc)
919 1.22 jdolecek {
920 1.22 jdolecek return sc->sc_child;
921 1.22 jdolecek }
922 1.22 jdolecek
923 1.22 jdolecek int
924 1.22 jdolecek virtio_intrhand(struct virtio_softc *sc)
925 1.22 jdolecek {
926 1.22 jdolecek return (sc->sc_intrhand)(sc);
927 1.22 jdolecek }
928 1.22 jdolecek
929 1.22 jdolecek uint32_t
930 1.22 jdolecek virtio_features(struct virtio_softc *sc)
931 1.22 jdolecek {
932 1.22 jdolecek return sc->sc_features;
933 1.22 jdolecek }
934 1.22 jdolecek
935 1.18 pgoyette MODULE(MODULE_CLASS_DRIVER, virtio, "pci");
936 1.18 pgoyette
937 1.18 pgoyette #ifdef _MODULE
938 1.18 pgoyette #include "ioconf.c"
939 1.18 pgoyette #endif
940 1.18 pgoyette
941 1.18 pgoyette static int
942 1.18 pgoyette virtio_modcmd(modcmd_t cmd, void *opaque)
943 1.18 pgoyette {
944 1.18 pgoyette int error = 0;
945 1.18 pgoyette
946 1.18 pgoyette #ifdef _MODULE
947 1.18 pgoyette switch (cmd) {
948 1.18 pgoyette case MODULE_CMD_INIT:
949 1.18 pgoyette error = config_init_component(cfdriver_ioconf_virtio,
950 1.18 pgoyette cfattach_ioconf_virtio, cfdata_ioconf_virtio);
951 1.18 pgoyette break;
952 1.18 pgoyette case MODULE_CMD_FINI:
953 1.18 pgoyette error = config_fini_component(cfdriver_ioconf_virtio,
954 1.18 pgoyette cfattach_ioconf_virtio, cfdata_ioconf_virtio);
955 1.18 pgoyette break;
956 1.18 pgoyette default:
957 1.18 pgoyette error = ENOTTY;
958 1.18 pgoyette break;
959 1.18 pgoyette }
960 1.18 pgoyette #endif
961 1.18 pgoyette
962 1.18 pgoyette return error;
963 1.18 pgoyette }
964