1 /*
2 * libqos virtio driver
3 *
4 * Copyright (c) 2014 Marc Marí
5 *
6 * This work is licensed under the terms of the GNU GPL, version 2 or later.
7 * See the COPYING file in the top-level directory.
8 */
9
10 #include "qemu/osdep.h"
11 #include "qemu/bswap.h"
12 #include "../libqtest.h"
13 #include "virtio.h"
14 #include "standard-headers/linux/virtio_config.h"
15 #include "standard-headers/linux/virtio_ring.h"
16
17 /*
18 * qtest_readX/writeX() functions transfer host endian from/to guest endian.
19 * This works great for Legacy VIRTIO devices where we need guest endian
20 * accesses. For VIRTIO 1.0 the vring is little-endian so the automatic guest
21 * endianness conversion is not wanted.
22 *
23 * The following qvirtio_readX/writeX() functions handle Legacy and VIRTIO 1.0
24 * accesses seamlessly.
25 */
qvirtio_readw(QVirtioDevice * d,QTestState * qts,uint64_t addr)26 static uint16_t qvirtio_readw(QVirtioDevice *d, QTestState *qts, uint64_t addr)
27 {
28 uint16_t val = qtest_readw(qts, addr);
29
30 if (d->features & (1ull << VIRTIO_F_VERSION_1) && qtest_big_endian(qts)) {
31 val = bswap16(val);
32 }
33 return val;
34 }
35
qvirtio_readl(QVirtioDevice * d,QTestState * qts,uint64_t addr)36 static uint32_t qvirtio_readl(QVirtioDevice *d, QTestState *qts, uint64_t addr)
37 {
38 uint32_t val = qtest_readl(qts, addr);
39
40 if (d->features & (1ull << VIRTIO_F_VERSION_1) && qtest_big_endian(qts)) {
41 val = bswap32(val);
42 }
43 return val;
44 }
45
qvirtio_writew(QVirtioDevice * d,QTestState * qts,uint64_t addr,uint16_t val)46 static void qvirtio_writew(QVirtioDevice *d, QTestState *qts,
47 uint64_t addr, uint16_t val)
48 {
49 if (d->features & (1ull << VIRTIO_F_VERSION_1) && qtest_big_endian(qts)) {
50 val = bswap16(val);
51 }
52 qtest_writew(qts, addr, val);
53 }
54
qvirtio_writel(QVirtioDevice * d,QTestState * qts,uint64_t addr,uint32_t val)55 static void qvirtio_writel(QVirtioDevice *d, QTestState *qts,
56 uint64_t addr, uint32_t val)
57 {
58 if (d->features & (1ull << VIRTIO_F_VERSION_1) && qtest_big_endian(qts)) {
59 val = bswap32(val);
60 }
61 qtest_writel(qts, addr, val);
62 }
63
qvirtio_writeq(QVirtioDevice * d,QTestState * qts,uint64_t addr,uint64_t val)64 static void qvirtio_writeq(QVirtioDevice *d, QTestState *qts,
65 uint64_t addr, uint64_t val)
66 {
67 if (d->features & (1ull << VIRTIO_F_VERSION_1) && qtest_big_endian(qts)) {
68 val = bswap64(val);
69 }
70 qtest_writeq(qts, addr, val);
71 }
72
qvirtio_config_readb(QVirtioDevice * d,uint64_t addr)73 uint8_t qvirtio_config_readb(QVirtioDevice *d, uint64_t addr)
74 {
75 g_assert_true(d->features_negotiated);
76 return d->bus->config_readb(d, addr);
77 }
78
qvirtio_config_readw(QVirtioDevice * d,uint64_t addr)79 uint16_t qvirtio_config_readw(QVirtioDevice *d, uint64_t addr)
80 {
81 g_assert_true(d->features_negotiated);
82 return d->bus->config_readw(d, addr);
83 }
84
qvirtio_config_readl(QVirtioDevice * d,uint64_t addr)85 uint32_t qvirtio_config_readl(QVirtioDevice *d, uint64_t addr)
86 {
87 g_assert_true(d->features_negotiated);
88 return d->bus->config_readl(d, addr);
89 }
90
qvirtio_config_readq(QVirtioDevice * d,uint64_t addr)91 uint64_t qvirtio_config_readq(QVirtioDevice *d, uint64_t addr)
92 {
93 g_assert_true(d->features_negotiated);
94 return d->bus->config_readq(d, addr);
95 }
96
qvirtio_get_features(QVirtioDevice * d)97 uint64_t qvirtio_get_features(QVirtioDevice *d)
98 {
99 return d->bus->get_features(d);
100 }
101
qvirtio_set_features(QVirtioDevice * d,uint64_t features)102 void qvirtio_set_features(QVirtioDevice *d, uint64_t features)
103 {
104 g_assert(!(features & QVIRTIO_F_BAD_FEATURE));
105
106 d->features = features;
107 d->bus->set_features(d, features);
108
109 /*
110 * This could be a separate function for drivers that want to access
111 * configuration space before setting FEATURES_OK, but no existing users
112 * need that and it's less code for callers if this is done implicitly.
113 */
114 if (features & (1ull << VIRTIO_F_VERSION_1)) {
115 uint8_t status = d->bus->get_status(d) |
116 VIRTIO_CONFIG_S_FEATURES_OK;
117
118 d->bus->set_status(d, status);
119 g_assert_cmphex(d->bus->get_status(d), ==, status);
120 }
121
122 d->features_negotiated = true;
123 }
124
qvirtqueue_setup(QVirtioDevice * d,QGuestAllocator * alloc,uint16_t index)125 QVirtQueue *qvirtqueue_setup(QVirtioDevice *d,
126 QGuestAllocator *alloc, uint16_t index)
127 {
128 g_assert_true(d->features_negotiated);
129 return d->bus->virtqueue_setup(d, alloc, index);
130 }
131
qvirtqueue_cleanup(const QVirtioBus * bus,QVirtQueue * vq,QGuestAllocator * alloc)132 void qvirtqueue_cleanup(const QVirtioBus *bus, QVirtQueue *vq,
133 QGuestAllocator *alloc)
134 {
135 return bus->virtqueue_cleanup(vq, alloc);
136 }
137
qvirtio_reset(QVirtioDevice * d)138 void qvirtio_reset(QVirtioDevice *d)
139 {
140 d->bus->set_status(d, 0);
141 g_assert_cmphex(d->bus->get_status(d), ==, 0);
142 d->features_negotiated = false;
143 }
144
qvirtio_set_acknowledge(QVirtioDevice * d)145 void qvirtio_set_acknowledge(QVirtioDevice *d)
146 {
147 d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_ACKNOWLEDGE);
148 g_assert_cmphex(d->bus->get_status(d), ==, VIRTIO_CONFIG_S_ACKNOWLEDGE);
149 }
150
qvirtio_set_driver(QVirtioDevice * d)151 void qvirtio_set_driver(QVirtioDevice *d)
152 {
153 d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_DRIVER);
154 g_assert_cmphex(d->bus->get_status(d), ==,
155 VIRTIO_CONFIG_S_DRIVER | VIRTIO_CONFIG_S_ACKNOWLEDGE);
156 }
157
qvirtio_set_driver_ok(QVirtioDevice * d)158 void qvirtio_set_driver_ok(QVirtioDevice *d)
159 {
160 d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_DRIVER_OK);
161 g_assert_cmphex(d->bus->get_status(d), ==, VIRTIO_CONFIG_S_DRIVER_OK |
162 VIRTIO_CONFIG_S_DRIVER | VIRTIO_CONFIG_S_ACKNOWLEDGE |
163 (d->features & (1ull << VIRTIO_F_VERSION_1) ?
164 VIRTIO_CONFIG_S_FEATURES_OK : 0));
165 }
166
qvirtio_wait_queue_isr(QTestState * qts,QVirtioDevice * d,QVirtQueue * vq,gint64 timeout_us)167 void qvirtio_wait_queue_isr(QTestState *qts, QVirtioDevice *d,
168 QVirtQueue *vq, gint64 timeout_us)
169 {
170 gint64 start_time = g_get_monotonic_time();
171
172 for (;;) {
173 if (d->bus->get_queue_isr_status(d, vq)) {
174 return;
175 }
176 g_assert(g_get_monotonic_time() - start_time <= timeout_us);
177 }
178 }
179
180 /* Wait for the status byte at given guest memory address to be set
181 *
182 * The virtqueue interrupt must not be raised, making this useful for testing
183 * event_index functionality.
184 */
qvirtio_wait_status_byte_no_isr(QTestState * qts,QVirtioDevice * d,QVirtQueue * vq,uint64_t addr,gint64 timeout_us)185 uint8_t qvirtio_wait_status_byte_no_isr(QTestState *qts, QVirtioDevice *d,
186 QVirtQueue *vq,
187 uint64_t addr,
188 gint64 timeout_us)
189 {
190 gint64 start_time = g_get_monotonic_time();
191 uint8_t val;
192
193 while ((val = qtest_readb(qts, addr)) == 0xff) {
194 g_assert(!d->bus->get_queue_isr_status(d, vq));
195 g_assert(g_get_monotonic_time() - start_time <= timeout_us);
196 }
197 return val;
198 }
199
200 /*
201 * qvirtio_wait_used_elem:
202 * @desc_idx: The next expected vq->desc[] index in the used ring
203 * @len: A pointer that is filled with the length written into the buffer, may
204 * be NULL
205 * @timeout_us: How many microseconds to wait before failing
206 *
207 * This function waits for the next completed request on the used ring.
208 */
qvirtio_wait_used_elem(QTestState * qts,QVirtioDevice * d,QVirtQueue * vq,uint32_t desc_idx,uint32_t * len,gint64 timeout_us)209 void qvirtio_wait_used_elem(QTestState *qts, QVirtioDevice *d,
210 QVirtQueue *vq,
211 uint32_t desc_idx,
212 uint32_t *len,
213 gint64 timeout_us)
214 {
215 gint64 start_time = g_get_monotonic_time();
216
217 for (;;) {
218 uint32_t got_desc_idx;
219
220
221 if (d->bus->get_queue_isr_status(d, vq) &&
222 qvirtqueue_get_buf(qts, vq, &got_desc_idx, len)) {
223 g_assert_cmpint(got_desc_idx, ==, desc_idx);
224 return;
225 }
226 g_assert(g_get_monotonic_time() - start_time <= timeout_us);
227 }
228 }
229
qvirtio_wait_config_isr(QVirtioDevice * d,gint64 timeout_us)230 void qvirtio_wait_config_isr(QVirtioDevice *d, gint64 timeout_us)
231 {
232 d->bus->wait_config_isr_status(d, timeout_us);
233 }
234
qvring_init(QTestState * qts,const QGuestAllocator * alloc,QVirtQueue * vq,uint64_t addr)235 void qvring_init(QTestState *qts, const QGuestAllocator *alloc, QVirtQueue *vq,
236 uint64_t addr)
237 {
238 int i;
239
240 vq->desc = addr;
241 vq->avail = vq->desc + vq->size * sizeof(struct vring_desc);
242 vq->used = (uint64_t)((vq->avail + sizeof(uint16_t) * (3 + vq->size)
243 + vq->align - 1) & ~(vq->align - 1));
244
245 for (i = 0; i < vq->size - 1; i++) {
246 /* vq->desc[i].addr */
247 qvirtio_writeq(vq->vdev, qts, vq->desc + (16 * i), 0);
248 /* vq->desc[i].next */
249 qvirtio_writew(vq->vdev, qts, vq->desc + (16 * i) + 14, i + 1);
250 }
251
252 /* vq->avail->flags */
253 qvirtio_writew(vq->vdev, qts, vq->avail, 0);
254 /* vq->avail->idx */
255 qvirtio_writew(vq->vdev, qts, vq->avail + 2, 0);
256 /* vq->avail->used_event */
257 qvirtio_writew(vq->vdev, qts, vq->avail + 4 + (2 * vq->size), 0);
258
259 /* vq->used->flags */
260 qvirtio_writew(vq->vdev, qts, vq->used, 0);
261 /* vq->used->idx */
262 qvirtio_writew(vq->vdev, qts, vq->used + 2, 0);
263 /* vq->used->avail_event */
264 qvirtio_writew(vq->vdev, qts, vq->used + 4 +
265 sizeof(struct vring_used_elem) * vq->size, 0);
266 }
267
qvring_indirect_desc_setup(QTestState * qs,QVirtioDevice * d,QGuestAllocator * alloc,uint16_t elem)268 QVRingIndirectDesc *qvring_indirect_desc_setup(QTestState *qs, QVirtioDevice *d,
269 QGuestAllocator *alloc,
270 uint16_t elem)
271 {
272 int i;
273 QVRingIndirectDesc *indirect = g_malloc(sizeof(*indirect));
274
275 indirect->index = 0;
276 indirect->elem = elem;
277 indirect->desc = guest_alloc(alloc, sizeof(struct vring_desc) * elem);
278
279 for (i = 0; i < elem; ++i) {
280 /* indirect->desc[i].addr */
281 qvirtio_writeq(d, qs, indirect->desc + (16 * i), 0);
282
283 /*
284 * If it's not the last element of the ring, set
285 * the chain (VRING_DESC_F_NEXT) flag and
286 * desc->next. Clear the last element - there's
287 * no guarantee that guest_alloc() will do it.
288 */
289 if (i != elem - 1) {
290 /* indirect->desc[i].flags */
291 qvirtio_writew(d, qs, indirect->desc + (16 * i) + 12,
292 VRING_DESC_F_NEXT);
293
294 /* indirect->desc[i].next */
295 qvirtio_writew(d, qs, indirect->desc + (16 * i) + 14, i + 1);
296 } else {
297 qvirtio_writew(d, qs, indirect->desc + (16 * i) + 12, 0);
298 qvirtio_writew(d, qs, indirect->desc + (16 * i) + 14, 0);
299 }
300 }
301
302 return indirect;
303 }
304
qvring_indirect_desc_add(QVirtioDevice * d,QTestState * qts,QVRingIndirectDesc * indirect,uint64_t data,uint32_t len,bool write)305 void qvring_indirect_desc_add(QVirtioDevice *d, QTestState *qts,
306 QVRingIndirectDesc *indirect,
307 uint64_t data, uint32_t len, bool write)
308 {
309 uint16_t flags;
310
311 g_assert_cmpint(indirect->index, <, indirect->elem);
312
313 flags = qvirtio_readw(d, qts, indirect->desc +
314 (16 * indirect->index) + 12);
315
316 if (write) {
317 flags |= VRING_DESC_F_WRITE;
318 }
319
320 /* indirect->desc[indirect->index].addr */
321 qvirtio_writeq(d, qts, indirect->desc + (16 * indirect->index), data);
322 /* indirect->desc[indirect->index].len */
323 qvirtio_writel(d, qts, indirect->desc + (16 * indirect->index) + 8, len);
324 /* indirect->desc[indirect->index].flags */
325 qvirtio_writew(d, qts, indirect->desc + (16 * indirect->index) + 12,
326 flags);
327
328 indirect->index++;
329 }
330
qvirtqueue_add(QTestState * qts,QVirtQueue * vq,uint64_t data,uint32_t len,bool write,bool next)331 uint32_t qvirtqueue_add(QTestState *qts, QVirtQueue *vq, uint64_t data,
332 uint32_t len, bool write, bool next)
333 {
334 uint16_t flags = 0;
335 vq->num_free--;
336
337 if (write) {
338 flags |= VRING_DESC_F_WRITE;
339 }
340
341 if (next) {
342 flags |= VRING_DESC_F_NEXT;
343 }
344
345 /* vq->desc[vq->free_head].addr */
346 qvirtio_writeq(vq->vdev, qts, vq->desc + (16 * vq->free_head), data);
347 /* vq->desc[vq->free_head].len */
348 qvirtio_writel(vq->vdev, qts, vq->desc + (16 * vq->free_head) + 8, len);
349 /* vq->desc[vq->free_head].flags */
350 qvirtio_writew(vq->vdev, qts, vq->desc + (16 * vq->free_head) + 12, flags);
351
352 return vq->free_head++; /* Return and increase, in this order */
353 }
354
qvirtqueue_add_indirect(QTestState * qts,QVirtQueue * vq,QVRingIndirectDesc * indirect)355 uint32_t qvirtqueue_add_indirect(QTestState *qts, QVirtQueue *vq,
356 QVRingIndirectDesc *indirect)
357 {
358 g_assert(vq->indirect);
359 g_assert_cmpint(vq->size, >=, indirect->elem);
360 g_assert_cmpint(indirect->index, ==, indirect->elem);
361
362 vq->num_free--;
363
364 /* vq->desc[vq->free_head].addr */
365 qvirtio_writeq(vq->vdev, qts, vq->desc + (16 * vq->free_head),
366 indirect->desc);
367 /* vq->desc[vq->free_head].len */
368 qvirtio_writel(vq->vdev, qts, vq->desc + (16 * vq->free_head) + 8,
369 sizeof(struct vring_desc) * indirect->elem);
370 /* vq->desc[vq->free_head].flags */
371 qvirtio_writew(vq->vdev, qts, vq->desc + (16 * vq->free_head) + 12,
372 VRING_DESC_F_INDIRECT);
373
374 return vq->free_head++; /* Return and increase, in this order */
375 }
376
qvirtqueue_kick(QTestState * qts,QVirtioDevice * d,QVirtQueue * vq,uint32_t free_head)377 void qvirtqueue_kick(QTestState *qts, QVirtioDevice *d, QVirtQueue *vq,
378 uint32_t free_head)
379 {
380 /* vq->avail->idx */
381 uint16_t idx = qvirtio_readw(d, qts, vq->avail + 2);
382 /* vq->used->flags */
383 uint16_t flags;
384 /* vq->used->avail_event */
385 uint16_t avail_event;
386
387 /* vq->avail->ring[idx % vq->size] */
388 qvirtio_writew(d, qts, vq->avail + 4 + (2 * (idx % vq->size)), free_head);
389 /* vq->avail->idx */
390 qvirtio_writew(d, qts, vq->avail + 2, idx + 1);
391
392 /* Must read after idx is updated */
393 flags = qvirtio_readw(d, qts, vq->used);
394 avail_event = qvirtio_readw(d, qts, vq->used + 4 +
395 sizeof(struct vring_used_elem) * vq->size);
396
397 /* < 1 because we add elements to avail queue one by one */
398 if ((flags & VRING_USED_F_NO_NOTIFY) == 0 &&
399 (!vq->event || (uint16_t)(idx-avail_event) < 1)) {
400 d->bus->virtqueue_kick(d, vq);
401 }
402 }
403
404 /*
405 * qvirtqueue_get_buf:
406 * @desc_idx: A pointer that is filled with the vq->desc[] index, may be NULL
407 * @len: A pointer that is filled with the length written into the buffer, may
408 * be NULL
409 *
410 * This function gets the next used element if there is one ready.
411 *
412 * Returns: true if an element was ready, false otherwise
413 */
qvirtqueue_get_buf(QTestState * qts,QVirtQueue * vq,uint32_t * desc_idx,uint32_t * len)414 bool qvirtqueue_get_buf(QTestState *qts, QVirtQueue *vq, uint32_t *desc_idx,
415 uint32_t *len)
416 {
417 uint16_t idx;
418 uint64_t elem_addr, addr;
419
420 idx = qvirtio_readw(vq->vdev, qts,
421 vq->used + offsetof(struct vring_used, idx));
422 if (idx == vq->last_used_idx) {
423 return false;
424 }
425
426 elem_addr = vq->used +
427 offsetof(struct vring_used, ring) +
428 (vq->last_used_idx % vq->size) *
429 sizeof(struct vring_used_elem);
430
431 if (desc_idx) {
432 addr = elem_addr + offsetof(struct vring_used_elem, id);
433 *desc_idx = qvirtio_readl(vq->vdev, qts, addr);
434 }
435
436 if (len) {
437 addr = elem_addr + offsetof(struct vring_used_elem, len);
438 *len = qvirtio_readw(vq->vdev, qts, addr);
439 }
440
441 vq->last_used_idx++;
442 return true;
443 }
444
qvirtqueue_set_used_event(QTestState * qts,QVirtQueue * vq,uint16_t idx)445 void qvirtqueue_set_used_event(QTestState *qts, QVirtQueue *vq, uint16_t idx)
446 {
447 g_assert(vq->event);
448
449 /* vq->avail->used_event */
450 qvirtio_writew(vq->vdev, qts, vq->avail + 4 + (2 * vq->size), idx);
451 }
452
qvirtio_start_device(QVirtioDevice * vdev)453 void qvirtio_start_device(QVirtioDevice *vdev)
454 {
455 qvirtio_reset(vdev);
456 qvirtio_set_acknowledge(vdev);
457 qvirtio_set_driver(vdev);
458 }
459
qvirtio_is_big_endian(QVirtioDevice * d)460 bool qvirtio_is_big_endian(QVirtioDevice *d)
461 {
462 return d->big_endian;
463 }
464