qemu/tests/libqos/virtio.c
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   1/*
   2 * libqos virtio driver
   3 *
   4 * Copyright (c) 2014 Marc MarĂ­
   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 "libqtest.h"
  12#include "libqos/virtio.h"
  13#include "standard-headers/linux/virtio_config.h"
  14#include "standard-headers/linux/virtio_ring.h"
  15
  16uint8_t qvirtio_config_readb(QVirtioDevice *d, uint64_t addr)
  17{
  18    return d->bus->config_readb(d, addr);
  19}
  20
  21uint16_t qvirtio_config_readw(QVirtioDevice *d, uint64_t addr)
  22{
  23    return d->bus->config_readw(d, addr);
  24}
  25
  26uint32_t qvirtio_config_readl(QVirtioDevice *d, uint64_t addr)
  27{
  28    return d->bus->config_readl(d, addr);
  29}
  30
  31uint64_t qvirtio_config_readq(QVirtioDevice *d, uint64_t addr)
  32{
  33    return d->bus->config_readq(d, addr);
  34}
  35
  36uint32_t qvirtio_get_features(QVirtioDevice *d)
  37{
  38    return d->bus->get_features(d);
  39}
  40
  41void qvirtio_set_features(QVirtioDevice *d, uint32_t features)
  42{
  43    d->features = features;
  44    d->bus->set_features(d, features);
  45}
  46
  47QVirtQueue *qvirtqueue_setup(QVirtioDevice *d,
  48                             QGuestAllocator *alloc, uint16_t index)
  49{
  50    return d->bus->virtqueue_setup(d, alloc, index);
  51}
  52
  53void qvirtqueue_cleanup(const QVirtioBus *bus, QVirtQueue *vq,
  54                        QGuestAllocator *alloc)
  55{
  56    return bus->virtqueue_cleanup(vq, alloc);
  57}
  58
  59void qvirtio_reset(QVirtioDevice *d)
  60{
  61    d->bus->set_status(d, 0);
  62    g_assert_cmphex(d->bus->get_status(d), ==, 0);
  63}
  64
  65void qvirtio_set_acknowledge(QVirtioDevice *d)
  66{
  67    d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_ACKNOWLEDGE);
  68    g_assert_cmphex(d->bus->get_status(d), ==, VIRTIO_CONFIG_S_ACKNOWLEDGE);
  69}
  70
  71void qvirtio_set_driver(QVirtioDevice *d)
  72{
  73    d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_DRIVER);
  74    g_assert_cmphex(d->bus->get_status(d), ==,
  75                    VIRTIO_CONFIG_S_DRIVER | VIRTIO_CONFIG_S_ACKNOWLEDGE);
  76}
  77
  78void qvirtio_set_driver_ok(QVirtioDevice *d)
  79{
  80    d->bus->set_status(d, d->bus->get_status(d) | VIRTIO_CONFIG_S_DRIVER_OK);
  81    g_assert_cmphex(d->bus->get_status(d), ==, VIRTIO_CONFIG_S_DRIVER_OK |
  82                    VIRTIO_CONFIG_S_DRIVER | VIRTIO_CONFIG_S_ACKNOWLEDGE);
  83}
  84
  85void qvirtio_wait_queue_isr(QVirtioDevice *d,
  86                            QVirtQueue *vq, gint64 timeout_us)
  87{
  88    gint64 start_time = g_get_monotonic_time();
  89
  90    for (;;) {
  91        clock_step(100);
  92        if (d->bus->get_queue_isr_status(d, vq)) {
  93            return;
  94        }
  95        g_assert(g_get_monotonic_time() - start_time <= timeout_us);
  96    }
  97}
  98
  99/* Wait for the status byte at given guest memory address to be set
 100 *
 101 * The virtqueue interrupt must not be raised, making this useful for testing
 102 * event_index functionality.
 103 */
 104uint8_t qvirtio_wait_status_byte_no_isr(QVirtioDevice *d,
 105                                        QVirtQueue *vq,
 106                                        uint64_t addr,
 107                                        gint64 timeout_us)
 108{
 109    gint64 start_time = g_get_monotonic_time();
 110    uint8_t val;
 111
 112    while ((val = readb(addr)) == 0xff) {
 113        clock_step(100);
 114        g_assert(!d->bus->get_queue_isr_status(d, vq));
 115        g_assert(g_get_monotonic_time() - start_time <= timeout_us);
 116    }
 117    return val;
 118}
 119
 120/*
 121 * qvirtio_wait_used_elem:
 122 * @desc_idx: The next expected vq->desc[] index in the used ring
 123 * @len: A pointer that is filled with the length written into the buffer, may
 124 *       be NULL
 125 * @timeout_us: How many microseconds to wait before failing
 126 *
 127 * This function waits for the next completed request on the used ring.
 128 */
 129void qvirtio_wait_used_elem(QVirtioDevice *d,
 130                            QVirtQueue *vq,
 131                            uint32_t desc_idx,
 132                            uint32_t *len,
 133                            gint64 timeout_us)
 134{
 135    gint64 start_time = g_get_monotonic_time();
 136
 137    for (;;) {
 138        uint32_t got_desc_idx;
 139
 140        clock_step(100);
 141
 142        if (d->bus->get_queue_isr_status(d, vq) &&
 143            qvirtqueue_get_buf(vq, &got_desc_idx, len)) {
 144            g_assert_cmpint(got_desc_idx, ==, desc_idx);
 145            return;
 146        }
 147
 148        g_assert(g_get_monotonic_time() - start_time <= timeout_us);
 149    }
 150}
 151
 152void qvirtio_wait_config_isr(QVirtioDevice *d, gint64 timeout_us)
 153{
 154    gint64 start_time = g_get_monotonic_time();
 155
 156    for (;;) {
 157        clock_step(100);
 158        if (d->bus->get_config_isr_status(d)) {
 159            return;
 160        }
 161        g_assert(g_get_monotonic_time() - start_time <= timeout_us);
 162    }
 163}
 164
 165void qvring_init(const QGuestAllocator *alloc, QVirtQueue *vq, uint64_t addr)
 166{
 167    int i;
 168
 169    vq->desc = addr;
 170    vq->avail = vq->desc + vq->size * sizeof(struct vring_desc);
 171    vq->used = (uint64_t)((vq->avail + sizeof(uint16_t) * (3 + vq->size)
 172        + vq->align - 1) & ~(vq->align - 1));
 173
 174    for (i = 0; i < vq->size - 1; i++) {
 175        /* vq->desc[i].addr */
 176        writeq(vq->desc + (16 * i), 0);
 177        /* vq->desc[i].next */
 178        writew(vq->desc + (16 * i) + 14, i + 1);
 179    }
 180
 181    /* vq->avail->flags */
 182    writew(vq->avail, 0);
 183    /* vq->avail->idx */
 184    writew(vq->avail + 2, 0);
 185    /* vq->avail->used_event */
 186    writew(vq->avail + 4 + (2 * vq->size), 0);
 187
 188    /* vq->used->flags */
 189    writew(vq->used, 0);
 190    /* vq->used->avail_event */
 191    writew(vq->used + 2 + sizeof(struct vring_used_elem) * vq->size, 0);
 192}
 193
 194QVRingIndirectDesc *qvring_indirect_desc_setup(QVirtioDevice *d,
 195                                        QGuestAllocator *alloc, uint16_t elem)
 196{
 197    int i;
 198    QVRingIndirectDesc *indirect = g_malloc(sizeof(*indirect));
 199
 200    indirect->index = 0;
 201    indirect->elem = elem;
 202    indirect->desc = guest_alloc(alloc, sizeof(struct vring_desc) * elem);
 203
 204    for (i = 0; i < elem - 1; ++i) {
 205        /* indirect->desc[i].addr */
 206        writeq(indirect->desc + (16 * i), 0);
 207        /* indirect->desc[i].flags */
 208        writew(indirect->desc + (16 * i) + 12, VRING_DESC_F_NEXT);
 209        /* indirect->desc[i].next */
 210        writew(indirect->desc + (16 * i) + 14, i + 1);
 211    }
 212
 213    return indirect;
 214}
 215
 216void qvring_indirect_desc_add(QVRingIndirectDesc *indirect, uint64_t data,
 217                                                    uint32_t len, bool write)
 218{
 219    uint16_t flags;
 220
 221    g_assert_cmpint(indirect->index, <, indirect->elem);
 222
 223    flags = readw(indirect->desc + (16 * indirect->index) + 12);
 224
 225    if (write) {
 226        flags |= VRING_DESC_F_WRITE;
 227    }
 228
 229    /* indirect->desc[indirect->index].addr */
 230    writeq(indirect->desc + (16 * indirect->index), data);
 231    /* indirect->desc[indirect->index].len */
 232    writel(indirect->desc + (16 * indirect->index) + 8, len);
 233    /* indirect->desc[indirect->index].flags */
 234    writew(indirect->desc + (16 * indirect->index) + 12, flags);
 235
 236    indirect->index++;
 237}
 238
 239uint32_t qvirtqueue_add(QVirtQueue *vq, uint64_t data, uint32_t len, bool write,
 240                                                                    bool next)
 241{
 242    uint16_t flags = 0;
 243    vq->num_free--;
 244
 245    if (write) {
 246        flags |= VRING_DESC_F_WRITE;
 247    }
 248
 249    if (next) {
 250        flags |= VRING_DESC_F_NEXT;
 251    }
 252
 253    /* vq->desc[vq->free_head].addr */
 254    writeq(vq->desc + (16 * vq->free_head), data);
 255    /* vq->desc[vq->free_head].len */
 256    writel(vq->desc + (16 * vq->free_head) + 8, len);
 257    /* vq->desc[vq->free_head].flags */
 258    writew(vq->desc + (16 * vq->free_head) + 12, flags);
 259
 260    return vq->free_head++; /* Return and increase, in this order */
 261}
 262
 263uint32_t qvirtqueue_add_indirect(QVirtQueue *vq, QVRingIndirectDesc *indirect)
 264{
 265    g_assert(vq->indirect);
 266    g_assert_cmpint(vq->size, >=, indirect->elem);
 267    g_assert_cmpint(indirect->index, ==, indirect->elem);
 268
 269    vq->num_free--;
 270
 271    /* vq->desc[vq->free_head].addr */
 272    writeq(vq->desc + (16 * vq->free_head), indirect->desc);
 273    /* vq->desc[vq->free_head].len */
 274    writel(vq->desc + (16 * vq->free_head) + 8,
 275           sizeof(struct vring_desc) * indirect->elem);
 276    /* vq->desc[vq->free_head].flags */
 277    writew(vq->desc + (16 * vq->free_head) + 12, VRING_DESC_F_INDIRECT);
 278
 279    return vq->free_head++; /* Return and increase, in this order */
 280}
 281
 282void qvirtqueue_kick(QVirtioDevice *d, QVirtQueue *vq, uint32_t free_head)
 283{
 284    /* vq->avail->idx */
 285    uint16_t idx = readw(vq->avail + 2);
 286    /* vq->used->flags */
 287    uint16_t flags;
 288    /* vq->used->avail_event */
 289    uint16_t avail_event;
 290
 291    /* vq->avail->ring[idx % vq->size] */
 292    writew(vq->avail + 4 + (2 * (idx % vq->size)), free_head);
 293    /* vq->avail->idx */
 294    writew(vq->avail + 2, idx + 1);
 295
 296    /* Must read after idx is updated */
 297    flags = readw(vq->avail);
 298    avail_event = readw(vq->used + 4 +
 299                                sizeof(struct vring_used_elem) * vq->size);
 300
 301    /* < 1 because we add elements to avail queue one by one */
 302    if ((flags & VRING_USED_F_NO_NOTIFY) == 0 &&
 303                            (!vq->event || (uint16_t)(idx-avail_event) < 1)) {
 304        d->bus->virtqueue_kick(d, vq);
 305    }
 306}
 307
 308/*
 309 * qvirtqueue_get_buf:
 310 * @desc_idx: A pointer that is filled with the vq->desc[] index, may be NULL
 311 * @len: A pointer that is filled with the length written into the buffer, may
 312 *       be NULL
 313 *
 314 * This function gets the next used element if there is one ready.
 315 *
 316 * Returns: true if an element was ready, false otherwise
 317 */
 318bool qvirtqueue_get_buf(QVirtQueue *vq, uint32_t *desc_idx, uint32_t *len)
 319{
 320    uint16_t idx;
 321    uint64_t elem_addr;
 322
 323    idx = readw(vq->used + offsetof(struct vring_used, idx));
 324    if (idx == vq->last_used_idx) {
 325        return false;
 326    }
 327
 328    elem_addr = vq->used +
 329        offsetof(struct vring_used, ring) +
 330        (vq->last_used_idx % vq->size) *
 331        sizeof(struct vring_used_elem);
 332
 333    if (desc_idx) {
 334        *desc_idx = readl(elem_addr + offsetof(struct vring_used_elem, id));
 335    }
 336
 337    if (len) {
 338        *len = readw(elem_addr + offsetof(struct vring_used_elem, len));
 339    }
 340
 341    vq->last_used_idx++;
 342    return true;
 343}
 344
 345void qvirtqueue_set_used_event(QVirtQueue *vq, uint16_t idx)
 346{
 347    g_assert(vq->event);
 348
 349    /* vq->avail->used_event */
 350    writew(vq->avail + 4 + (2 * vq->size), idx);
 351}
 352
 353void qvirtio_start_device(QVirtioDevice *vdev)
 354{
 355    qvirtio_reset(vdev);
 356    qvirtio_set_acknowledge(vdev);
 357    qvirtio_set_driver(vdev);
 358}
 359
 360bool qvirtio_is_big_endian(QVirtioDevice *d)
 361{
 362    return d->big_endian;
 363}
 364