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1
/*
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 * Virtio Block Device
3
 *
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 * Copyright IBM, Corp. 2007
5
 *
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 * Authors:
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 *  Anthony Liguori   <aliguori@us.ibm.com>
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 *
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 * This work is licensed under the terms of the GNU GPL, version 2.  See
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 * the COPYING file in the top-level directory.
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 *
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 */
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#include <qemu-common.h>
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#include <sysemu.h>
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#include "virtio-blk.h"
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#include "block_int.h"
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#ifdef __linux__
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# include <scsi/sg.h>
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#endif
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typedef struct VirtIOBlock
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{
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    VirtIODevice vdev;
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    BlockDriverState *bs;
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    VirtQueue *vq;
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    void *rq;
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    QEMUBH *bh;
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    BlockConf *conf;
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    unsigned short sector_mask;
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} VirtIOBlock;
32

    
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static VirtIOBlock *to_virtio_blk(VirtIODevice *vdev)
34
{
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    return (VirtIOBlock *)vdev;
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}
37

    
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typedef struct VirtIOBlockReq
39
{
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    VirtIOBlock *dev;
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    VirtQueueElement elem;
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    struct virtio_blk_inhdr *in;
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    struct virtio_blk_outhdr *out;
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    struct virtio_scsi_inhdr *scsi;
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    QEMUIOVector qiov;
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    struct VirtIOBlockReq *next;
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} VirtIOBlockReq;
48

    
49
static void virtio_blk_req_complete(VirtIOBlockReq *req, int status)
50
{
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    VirtIOBlock *s = req->dev;
52

    
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    req->in->status = status;
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    virtqueue_push(s->vq, &req->elem, req->qiov.size + sizeof(*req->in));
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    virtio_notify(&s->vdev, s->vq);
56

    
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    qemu_free(req);
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}
59

    
60
static int virtio_blk_handle_rw_error(VirtIOBlockReq *req, int error,
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    int is_read)
62
{
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    BlockInterfaceErrorAction action =
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        drive_get_on_error(req->dev->bs, is_read);
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    VirtIOBlock *s = req->dev;
66

    
67
    if (action == BLOCK_ERR_IGNORE) {
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        bdrv_mon_event(s->bs, BDRV_ACTION_IGNORE, is_read);
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        return 0;
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    }
71

    
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    if ((error == ENOSPC && action == BLOCK_ERR_STOP_ENOSPC)
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            || action == BLOCK_ERR_STOP_ANY) {
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        req->next = s->rq;
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        s->rq = req;
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        bdrv_mon_event(s->bs, BDRV_ACTION_STOP, is_read);
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        vm_stop(0);
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    } else {
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        virtio_blk_req_complete(req, VIRTIO_BLK_S_IOERR);
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        bdrv_mon_event(s->bs, BDRV_ACTION_REPORT, is_read);
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    }
82

    
83
    return 1;
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}
85

    
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static void virtio_blk_rw_complete(void *opaque, int ret)
87
{
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    VirtIOBlockReq *req = opaque;
89

    
90
    if (ret) {
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        int is_read = !(req->out->type & VIRTIO_BLK_T_OUT);
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        if (virtio_blk_handle_rw_error(req, -ret, is_read))
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            return;
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    }
95

    
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    virtio_blk_req_complete(req, VIRTIO_BLK_S_OK);
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}
98

    
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static void virtio_blk_flush_complete(void *opaque, int ret)
100
{
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    VirtIOBlockReq *req = opaque;
102

    
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    virtio_blk_req_complete(req, ret ? VIRTIO_BLK_S_IOERR : VIRTIO_BLK_S_OK);
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}
105

    
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static VirtIOBlockReq *virtio_blk_alloc_request(VirtIOBlock *s)
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{
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    VirtIOBlockReq *req = qemu_malloc(sizeof(*req));
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    req->dev = s;
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    req->qiov.size = 0;
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    req->next = NULL;
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    return req;
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}
114

    
115
static VirtIOBlockReq *virtio_blk_get_request(VirtIOBlock *s)
116
{
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    VirtIOBlockReq *req = virtio_blk_alloc_request(s);
118

    
119
    if (req != NULL) {
120
        if (!virtqueue_pop(s->vq, &req->elem)) {
121
            qemu_free(req);
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            return NULL;
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        }
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    }
125

    
126
    return req;
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}
128

    
129
#ifdef __linux__
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static void virtio_blk_handle_scsi(VirtIOBlockReq *req)
131
{
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    struct sg_io_hdr hdr;
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    int ret;
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    int status;
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    int i;
136

    
137
    /*
138
     * We require at least one output segment each for the virtio_blk_outhdr
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     * and the SCSI command block.
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     *
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     * We also at least require the virtio_blk_inhdr, the virtio_scsi_inhdr
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     * and the sense buffer pointer in the input segments.
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     */
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    if (req->elem.out_num < 2 || req->elem.in_num < 3) {
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        virtio_blk_req_complete(req, VIRTIO_BLK_S_IOERR);
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        return;
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    }
148

    
149
    /*
150
     * No support for bidirection commands yet.
151
     */
152
    if (req->elem.out_num > 2 && req->elem.in_num > 3) {
153
        virtio_blk_req_complete(req, VIRTIO_BLK_S_UNSUPP);
154
        return;
155
    }
156

    
157
    /*
158
     * The scsi inhdr is placed in the second-to-last input segment, just
159
     * before the regular inhdr.
160
     */
161
    req->scsi = (void *)req->elem.in_sg[req->elem.in_num - 2].iov_base;
162

    
163
    memset(&hdr, 0, sizeof(struct sg_io_hdr));
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    hdr.interface_id = 'S';
165
    hdr.cmd_len = req->elem.out_sg[1].iov_len;
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    hdr.cmdp = req->elem.out_sg[1].iov_base;
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    hdr.dxfer_len = 0;
168

    
169
    if (req->elem.out_num > 2) {
170
        /*
171
         * If there are more than the minimally required 2 output segments
172
         * there is write payload starting from the third iovec.
173
         */
174
        hdr.dxfer_direction = SG_DXFER_TO_DEV;
175
        hdr.iovec_count = req->elem.out_num - 2;
176

    
177
        for (i = 0; i < hdr.iovec_count; i++)
178
            hdr.dxfer_len += req->elem.out_sg[i + 2].iov_len;
179

    
180
        hdr.dxferp = req->elem.out_sg + 2;
181

    
182
    } else if (req->elem.in_num > 3) {
183
        /*
184
         * If we have more than 3 input segments the guest wants to actually
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         * read data.
186
         */
187
        hdr.dxfer_direction = SG_DXFER_FROM_DEV;
188
        hdr.iovec_count = req->elem.in_num - 3;
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        for (i = 0; i < hdr.iovec_count; i++)
190
            hdr.dxfer_len += req->elem.in_sg[i].iov_len;
191

    
192
        hdr.dxferp = req->elem.in_sg;
193
    } else {
194
        /*
195
         * Some SCSI commands don't actually transfer any data.
196
         */
197
        hdr.dxfer_direction = SG_DXFER_NONE;
198
    }
199

    
200
    hdr.sbp = req->elem.in_sg[req->elem.in_num - 3].iov_base;
201
    hdr.mx_sb_len = req->elem.in_sg[req->elem.in_num - 3].iov_len;
202

    
203
    ret = bdrv_ioctl(req->dev->bs, SG_IO, &hdr);
204
    if (ret) {
205
        status = VIRTIO_BLK_S_UNSUPP;
206
        hdr.status = ret;
207
        hdr.resid = hdr.dxfer_len;
208
    } else if (hdr.status) {
209
        status = VIRTIO_BLK_S_IOERR;
210
    } else {
211
        status = VIRTIO_BLK_S_OK;
212
    }
213

    
214
    req->scsi->errors = hdr.status;
215
    req->scsi->residual = hdr.resid;
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    req->scsi->sense_len = hdr.sb_len_wr;
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    req->scsi->data_len = hdr.dxfer_len;
218

    
219
    virtio_blk_req_complete(req, status);
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}
221
#else
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static void virtio_blk_handle_scsi(VirtIOBlockReq *req)
223
{
224
    virtio_blk_req_complete(req, VIRTIO_BLK_S_UNSUPP);
225
}
226
#endif /* __linux__ */
227

    
228
static void do_multiwrite(BlockDriverState *bs, BlockRequest *blkreq,
229
    int num_writes)
230
{
231
    int i, ret;
232
    ret = bdrv_aio_multiwrite(bs, blkreq, num_writes);
233

    
234
    if (ret != 0) {
235
        for (i = 0; i < num_writes; i++) {
236
            if (blkreq[i].error) {
237
                virtio_blk_rw_complete(blkreq[i].opaque, -EIO);
238
            }
239
        }
240
    }
241
}
242

    
243
static void virtio_blk_handle_flush(BlockRequest *blkreq, int *num_writes,
244
    VirtIOBlockReq *req, BlockDriverState **old_bs)
245
{
246
    BlockDriverAIOCB *acb;
247

    
248
    /*
249
     * Make sure all outstanding writes are posted to the backing device.
250
     */
251
    if (*old_bs != NULL) {
252
        do_multiwrite(*old_bs, blkreq, *num_writes);
253
    }
254
    *num_writes = 0;
255
    *old_bs = req->dev->bs;
256

    
257
    acb = bdrv_aio_flush(req->dev->bs, virtio_blk_flush_complete, req);
258
    if (!acb) {
259
        virtio_blk_req_complete(req, VIRTIO_BLK_S_IOERR);
260
    }
261
}
262

    
263
static void virtio_blk_handle_write(BlockRequest *blkreq, int *num_writes,
264
    VirtIOBlockReq *req, BlockDriverState **old_bs)
265
{
266
    if (req->out->sector & req->dev->sector_mask) {
267
        virtio_blk_rw_complete(req, -EIO);
268
        return;
269
    }
270

    
271
    if (req->dev->bs != *old_bs || *num_writes == 32) {
272
        if (*old_bs != NULL) {
273
            do_multiwrite(*old_bs, blkreq, *num_writes);
274
        }
275
        *num_writes = 0;
276
        *old_bs = req->dev->bs;
277
    }
278

    
279
    blkreq[*num_writes].sector = req->out->sector;
280
    blkreq[*num_writes].nb_sectors = req->qiov.size / 512;
281
    blkreq[*num_writes].qiov = &req->qiov;
282
    blkreq[*num_writes].cb = virtio_blk_rw_complete;
283
    blkreq[*num_writes].opaque = req;
284
    blkreq[*num_writes].error = 0;
285

    
286
    (*num_writes)++;
287
}
288

    
289
static void virtio_blk_handle_read(VirtIOBlockReq *req)
290
{
291
    BlockDriverAIOCB *acb;
292

    
293
    if (req->out->sector & req->dev->sector_mask) {
294
        virtio_blk_rw_complete(req, -EIO);
295
        return;
296
    }
297

    
298
    acb = bdrv_aio_readv(req->dev->bs, req->out->sector, &req->qiov,
299
                         req->qiov.size / 512, virtio_blk_rw_complete, req);
300
    if (!acb) {
301
        virtio_blk_rw_complete(req, -EIO);
302
    }
303
}
304

    
305
typedef struct MultiReqBuffer {
306
    BlockRequest        blkreq[32];
307
    int                 num_writes;
308
    BlockDriverState    *old_bs;
309
} MultiReqBuffer;
310

    
311
static void virtio_blk_handle_request(VirtIOBlockReq *req,
312
    MultiReqBuffer *mrb)
313
{
314
    if (req->elem.out_num < 1 || req->elem.in_num < 1) {
315
        fprintf(stderr, "virtio-blk missing headers\n");
316
        exit(1);
317
    }
318

    
319
    if (req->elem.out_sg[0].iov_len < sizeof(*req->out) ||
320
        req->elem.in_sg[req->elem.in_num - 1].iov_len < sizeof(*req->in)) {
321
        fprintf(stderr, "virtio-blk header not in correct element\n");
322
        exit(1);
323
    }
324

    
325
    req->out = (void *)req->elem.out_sg[0].iov_base;
326
    req->in = (void *)req->elem.in_sg[req->elem.in_num - 1].iov_base;
327

    
328
    if (req->out->type & VIRTIO_BLK_T_FLUSH) {
329
        virtio_blk_handle_flush(mrb->blkreq, &mrb->num_writes,
330
            req, &mrb->old_bs);
331
    } else if (req->out->type & VIRTIO_BLK_T_SCSI_CMD) {
332
        virtio_blk_handle_scsi(req);
333
    } else if (req->out->type & VIRTIO_BLK_T_OUT) {
334
        qemu_iovec_init_external(&req->qiov, &req->elem.out_sg[1],
335
                                 req->elem.out_num - 1);
336
        virtio_blk_handle_write(mrb->blkreq, &mrb->num_writes,
337
            req, &mrb->old_bs);
338
    } else {
339
        qemu_iovec_init_external(&req->qiov, &req->elem.in_sg[0],
340
                                 req->elem.in_num - 1);
341
        virtio_blk_handle_read(req);
342
    }
343
}
344

    
345
static void virtio_blk_handle_output(VirtIODevice *vdev, VirtQueue *vq)
346
{
347
    VirtIOBlock *s = to_virtio_blk(vdev);
348
    VirtIOBlockReq *req;
349
    MultiReqBuffer mrb = {
350
        .num_writes = 0,
351
        .old_bs = NULL,
352
    };
353

    
354
    while ((req = virtio_blk_get_request(s))) {
355
        virtio_blk_handle_request(req, &mrb);
356
    }
357

    
358
    if (mrb.num_writes > 0) {
359
        do_multiwrite(mrb.old_bs, mrb.blkreq, mrb.num_writes);
360
    }
361

    
362
    /*
363
     * FIXME: Want to check for completions before returning to guest mode,
364
     * so cached reads and writes are reported as quickly as possible. But
365
     * that should be done in the generic block layer.
366
     */
367
}
368

    
369
static void virtio_blk_dma_restart_bh(void *opaque)
370
{
371
    VirtIOBlock *s = opaque;
372
    VirtIOBlockReq *req = s->rq;
373
    MultiReqBuffer mrb = {
374
        .num_writes = 0,
375
        .old_bs = NULL,
376
    };
377

    
378
    qemu_bh_delete(s->bh);
379
    s->bh = NULL;
380

    
381
    s->rq = NULL;
382

    
383
    while (req) {
384
        virtio_blk_handle_request(req, &mrb);
385
        req = req->next;
386
    }
387

    
388
    if (mrb.num_writes > 0) {
389
        do_multiwrite(mrb.old_bs, mrb.blkreq, mrb.num_writes);
390
    }
391
}
392

    
393
static void virtio_blk_dma_restart_cb(void *opaque, int running, int reason)
394
{
395
    VirtIOBlock *s = opaque;
396

    
397
    if (!running)
398
        return;
399

    
400
    if (!s->bh) {
401
        s->bh = qemu_bh_new(virtio_blk_dma_restart_bh, s);
402
        qemu_bh_schedule(s->bh);
403
    }
404
}
405

    
406
static void virtio_blk_reset(VirtIODevice *vdev)
407
{
408
    /*
409
     * This should cancel pending requests, but can't do nicely until there
410
     * are per-device request lists.
411
     */
412
    qemu_aio_flush();
413
}
414

    
415
/* coalesce internal state, copy to pci i/o region 0
416
 */
417
static void virtio_blk_update_config(VirtIODevice *vdev, uint8_t *config)
418
{
419
    VirtIOBlock *s = to_virtio_blk(vdev);
420
    struct virtio_blk_config blkcfg;
421
    uint64_t capacity;
422
    int cylinders, heads, secs;
423

    
424
    bdrv_get_geometry(s->bs, &capacity);
425
    bdrv_get_geometry_hint(s->bs, &cylinders, &heads, &secs);
426
    memset(&blkcfg, 0, sizeof(blkcfg));
427
    stq_raw(&blkcfg.capacity, capacity);
428
    stl_raw(&blkcfg.seg_max, 128 - 2);
429
    stw_raw(&blkcfg.cylinders, cylinders);
430
    blkcfg.heads = heads;
431
    blkcfg.sectors = secs & ~s->sector_mask;
432
    blkcfg.blk_size = s->conf->logical_block_size;
433
    blkcfg.size_max = 0;
434
    blkcfg.physical_block_exp = get_physical_block_exp(s->conf);
435
    blkcfg.alignment_offset = 0;
436
    blkcfg.min_io_size = s->conf->min_io_size / blkcfg.blk_size;
437
    blkcfg.opt_io_size = s->conf->opt_io_size / blkcfg.blk_size;
438
    memcpy(config, &blkcfg, sizeof(struct virtio_blk_config));
439
}
440

    
441
static uint32_t virtio_blk_get_features(VirtIODevice *vdev, uint32_t features)
442
{
443
    VirtIOBlock *s = to_virtio_blk(vdev);
444

    
445
    features |= (1 << VIRTIO_BLK_F_SEG_MAX);
446
    features |= (1 << VIRTIO_BLK_F_GEOMETRY);
447
    features |= (1 << VIRTIO_BLK_F_TOPOLOGY);
448
    features |= (1 << VIRTIO_BLK_F_BLK_SIZE);
449

    
450
    if (bdrv_enable_write_cache(s->bs))
451
        features |= (1 << VIRTIO_BLK_F_WCACHE);
452
    
453
    if (bdrv_is_read_only(s->bs))
454
        features |= 1 << VIRTIO_BLK_F_RO;
455

    
456
    return features;
457
}
458

    
459
static void virtio_blk_save(QEMUFile *f, void *opaque)
460
{
461
    VirtIOBlock *s = opaque;
462
    VirtIOBlockReq *req = s->rq;
463

    
464
    virtio_save(&s->vdev, f);
465
    
466
    while (req) {
467
        qemu_put_sbyte(f, 1);
468
        qemu_put_buffer(f, (unsigned char*)&req->elem, sizeof(req->elem));
469
        req = req->next;
470
    }
471
    qemu_put_sbyte(f, 0);
472
}
473

    
474
static int virtio_blk_load(QEMUFile *f, void *opaque, int version_id)
475
{
476
    VirtIOBlock *s = opaque;
477

    
478
    if (version_id != 2)
479
        return -EINVAL;
480

    
481
    virtio_load(&s->vdev, f);
482
    while (qemu_get_sbyte(f)) {
483
        VirtIOBlockReq *req = virtio_blk_alloc_request(s);
484
        qemu_get_buffer(f, (unsigned char*)&req->elem, sizeof(req->elem));
485
        req->next = s->rq;
486
        s->rq = req->next;
487
    }
488

    
489
    return 0;
490
}
491

    
492
VirtIODevice *virtio_blk_init(DeviceState *dev, BlockConf *conf)
493
{
494
    VirtIOBlock *s;
495
    int cylinders, heads, secs;
496
    static int virtio_blk_id;
497

    
498
    s = (VirtIOBlock *)virtio_common_init("virtio-blk", VIRTIO_ID_BLOCK,
499
                                          sizeof(struct virtio_blk_config),
500
                                          sizeof(VirtIOBlock));
501

    
502
    s->vdev.get_config = virtio_blk_update_config;
503
    s->vdev.get_features = virtio_blk_get_features;
504
    s->vdev.reset = virtio_blk_reset;
505
    s->bs = conf->dinfo->bdrv;
506
    s->conf = conf;
507
    s->rq = NULL;
508
    s->sector_mask = (s->conf->logical_block_size / 512) - 1;
509
    bdrv_guess_geometry(s->bs, &cylinders, &heads, &secs);
510

    
511
    s->vq = virtio_add_queue(&s->vdev, 128, virtio_blk_handle_output);
512

    
513
    qemu_add_vm_change_state_handler(virtio_blk_dma_restart_cb, s);
514
    register_savevm("virtio-blk", virtio_blk_id++, 2,
515
                    virtio_blk_save, virtio_blk_load, s);
516

    
517
    return &s->vdev;
518
}