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1
/*
2
 * USB Mass Storage Device emulation
3
 *
4
 * Copyright (c) 2006 CodeSourcery.
5
 * Written by Paul Brook
6
 *
7
 * This code is licenced under the LGPL.
8
 */
9

    
10
#include "qemu-common.h"
11
#include "qemu-option.h"
12
#include "qemu-config.h"
13
#include "usb.h"
14
#include "usb-desc.h"
15
#include "scsi.h"
16
#include "console.h"
17
#include "monitor.h"
18
#include "sysemu.h"
19
#include "blockdev.h"
20

    
21
//#define DEBUG_MSD
22

    
23
#ifdef DEBUG_MSD
24
#define DPRINTF(fmt, ...) \
25
do { printf("usb-msd: " fmt , ## __VA_ARGS__); } while (0)
26
#else
27
#define DPRINTF(fmt, ...) do {} while(0)
28
#endif
29

    
30
/* USB requests.  */
31
#define MassStorageReset  0xff
32
#define GetMaxLun         0xfe
33

    
34
enum USBMSDMode {
35
    USB_MSDM_CBW, /* Command Block.  */
36
    USB_MSDM_DATAOUT, /* Transfer data to device.  */
37
    USB_MSDM_DATAIN, /* Transfer data from device.  */
38
    USB_MSDM_CSW /* Command Status.  */
39
};
40

    
41
typedef struct {
42
    USBDevice dev;
43
    enum USBMSDMode mode;
44
    uint32_t scsi_len;
45
    uint8_t *scsi_buf;
46
    uint32_t usb_len;
47
    uint8_t *usb_buf;
48
    uint32_t data_len;
49
    uint32_t residue;
50
    uint32_t tag;
51
    SCSIRequest *req;
52
    SCSIBus bus;
53
    BlockConf conf;
54
    SCSIDevice *scsi_dev;
55
    uint32_t removable;
56
    int result;
57
    /* For async completion.  */
58
    USBPacket *packet;
59
} MSDState;
60

    
61
struct usb_msd_cbw {
62
    uint32_t sig;
63
    uint32_t tag;
64
    uint32_t data_len;
65
    uint8_t flags;
66
    uint8_t lun;
67
    uint8_t cmd_len;
68
    uint8_t cmd[16];
69
};
70

    
71
struct usb_msd_csw {
72
    uint32_t sig;
73
    uint32_t tag;
74
    uint32_t residue;
75
    uint8_t status;
76
};
77

    
78
enum {
79
    STR_MANUFACTURER = 1,
80
    STR_PRODUCT,
81
    STR_SERIALNUMBER,
82
    STR_CONFIG_FULL,
83
    STR_CONFIG_HIGH,
84
};
85

    
86
static const USBDescStrings desc_strings = {
87
    [STR_MANUFACTURER] = "QEMU " QEMU_VERSION,
88
    [STR_PRODUCT]      = "QEMU USB HARDDRIVE",
89
    [STR_SERIALNUMBER] = "1",
90
    [STR_CONFIG_FULL]  = "Full speed config (usb 1.1)",
91
    [STR_CONFIG_HIGH]  = "High speed config (usb 2.0)",
92
};
93

    
94
static const USBDescIface desc_iface_full = {
95
    .bInterfaceNumber              = 0,
96
    .bNumEndpoints                 = 2,
97
    .bInterfaceClass               = USB_CLASS_MASS_STORAGE,
98
    .bInterfaceSubClass            = 0x06, /* SCSI */
99
    .bInterfaceProtocol            = 0x50, /* Bulk */
100
    .eps = (USBDescEndpoint[]) {
101
        {
102
            .bEndpointAddress      = USB_DIR_IN | 0x01,
103
            .bmAttributes          = USB_ENDPOINT_XFER_BULK,
104
            .wMaxPacketSize        = 64,
105
        },{
106
            .bEndpointAddress      = USB_DIR_OUT | 0x02,
107
            .bmAttributes          = USB_ENDPOINT_XFER_BULK,
108
            .wMaxPacketSize        = 64,
109
        },
110
    }
111
};
112

    
113
static const USBDescDevice desc_device_full = {
114
    .bcdUSB                        = 0x0200,
115
    .bMaxPacketSize0               = 8,
116
    .bNumConfigurations            = 1,
117
    .confs = (USBDescConfig[]) {
118
        {
119
            .bNumInterfaces        = 1,
120
            .bConfigurationValue   = 1,
121
            .iConfiguration        = STR_CONFIG_FULL,
122
            .bmAttributes          = 0xc0,
123
            .nif = 1,
124
            .ifs = &desc_iface_full,
125
        },
126
    },
127
};
128

    
129
static const USBDescIface desc_iface_high = {
130
    .bInterfaceNumber              = 0,
131
    .bNumEndpoints                 = 2,
132
    .bInterfaceClass               = USB_CLASS_MASS_STORAGE,
133
    .bInterfaceSubClass            = 0x06, /* SCSI */
134
    .bInterfaceProtocol            = 0x50, /* Bulk */
135
    .eps = (USBDescEndpoint[]) {
136
        {
137
            .bEndpointAddress      = USB_DIR_IN | 0x01,
138
            .bmAttributes          = USB_ENDPOINT_XFER_BULK,
139
            .wMaxPacketSize        = 512,
140
        },{
141
            .bEndpointAddress      = USB_DIR_OUT | 0x02,
142
            .bmAttributes          = USB_ENDPOINT_XFER_BULK,
143
            .wMaxPacketSize        = 512,
144
        },
145
    }
146
};
147

    
148
static const USBDescDevice desc_device_high = {
149
    .bcdUSB                        = 0x0200,
150
    .bMaxPacketSize0               = 64,
151
    .bNumConfigurations            = 1,
152
    .confs = (USBDescConfig[]) {
153
        {
154
            .bNumInterfaces        = 1,
155
            .bConfigurationValue   = 1,
156
            .iConfiguration        = STR_CONFIG_HIGH,
157
            .bmAttributes          = 0xc0,
158
            .nif = 1,
159
            .ifs = &desc_iface_high,
160
        },
161
    },
162
};
163

    
164
static const USBDesc desc = {
165
    .id = {
166
        .idVendor          = 0,
167
        .idProduct         = 0,
168
        .bcdDevice         = 0,
169
        .iManufacturer     = STR_MANUFACTURER,
170
        .iProduct          = STR_PRODUCT,
171
        .iSerialNumber     = STR_SERIALNUMBER,
172
    },
173
    .full = &desc_device_full,
174
    .high = &desc_device_high,
175
    .str  = desc_strings,
176
};
177

    
178
static void usb_msd_copy_data(MSDState *s)
179
{
180
    uint32_t len;
181
    len = s->usb_len;
182
    if (len > s->scsi_len)
183
        len = s->scsi_len;
184
    if (s->mode == USB_MSDM_DATAIN) {
185
        memcpy(s->usb_buf, s->scsi_buf, len);
186
    } else {
187
        memcpy(s->scsi_buf, s->usb_buf, len);
188
    }
189
    s->usb_len -= len;
190
    s->scsi_len -= len;
191
    s->usb_buf += len;
192
    s->scsi_buf += len;
193
    s->data_len -= len;
194
    if (s->scsi_len == 0 || s->data_len == 0) {
195
        scsi_req_continue(s->req);
196
    }
197
}
198

    
199
static void usb_msd_send_status(MSDState *s, USBPacket *p)
200
{
201
    struct usb_msd_csw csw;
202
    int len;
203

    
204
    csw.sig = cpu_to_le32(0x53425355);
205
    csw.tag = cpu_to_le32(s->tag);
206
    csw.residue = s->residue;
207
    csw.status = s->result;
208

    
209
    len = MIN(sizeof(csw), p->len);
210
    memcpy(p->data, &csw, len);
211
}
212

    
213
static void usb_msd_transfer_data(SCSIRequest *req, uint32_t len)
214
{
215
    MSDState *s = DO_UPCAST(MSDState, dev.qdev, req->bus->qbus.parent);
216
    USBPacket *p = s->packet;
217

    
218
    if (req->tag != s->tag) {
219
        fprintf(stderr, "usb-msd: Unexpected SCSI Tag 0x%x\n", req->tag);
220
    }
221

    
222
    assert((s->mode == USB_MSDM_DATAOUT) == (req->cmd.mode == SCSI_XFER_TO_DEV));
223
    s->scsi_len = len;
224
    s->scsi_buf = scsi_req_get_buf(req);
225
    if (p) {
226
        usb_msd_copy_data(s);
227
        if (s->packet && s->usb_len == 0) {
228
            /* Set s->packet to NULL before calling usb_packet_complete
229
               because another request may be issued before
230
               usb_packet_complete returns.  */
231
            DPRINTF("Packet complete %p\n", p);
232
            s->packet = NULL;
233
            usb_packet_complete(&s->dev, p);
234
        }
235
    }
236
}
237

    
238
static void usb_msd_command_complete(SCSIRequest *req, uint32_t status)
239
{
240
    MSDState *s = DO_UPCAST(MSDState, dev.qdev, req->bus->qbus.parent);
241
    USBPacket *p = s->packet;
242

    
243
    if (req->tag != s->tag) {
244
        fprintf(stderr, "usb-msd: Unexpected SCSI Tag 0x%x\n", req->tag);
245
    }
246
    DPRINTF("Command complete %d\n", status);
247
    s->residue = s->data_len;
248
    s->result = status != 0;
249
    if (s->packet) {
250
        if (s->data_len == 0 && s->mode == USB_MSDM_DATAOUT) {
251
            /* A deferred packet with no write data remaining must be
252
               the status read packet.  */
253
            usb_msd_send_status(s, p);
254
            s->mode = USB_MSDM_CBW;
255
        } else {
256
            if (s->data_len) {
257
                s->data_len -= s->usb_len;
258
                if (s->mode == USB_MSDM_DATAIN) {
259
                    memset(s->usb_buf, 0, s->usb_len);
260
                }
261
                s->usb_len = 0;
262
            }
263
            if (s->data_len == 0) {
264
                s->mode = USB_MSDM_CSW;
265
            }
266
        }
267
        s->packet = NULL;
268
        usb_packet_complete(&s->dev, p);
269
    } else if (s->data_len == 0) {
270
        s->mode = USB_MSDM_CSW;
271
    }
272
    scsi_req_unref(req);
273
    s->req = NULL;
274
}
275

    
276
static void usb_msd_request_cancelled(SCSIRequest *req)
277
{
278
    MSDState *s = DO_UPCAST(MSDState, dev.qdev, req->bus->qbus.parent);
279

    
280
    if (req == s->req) {
281
        scsi_req_unref(s->req);
282
        s->req = NULL;
283
        s->packet = NULL;
284
        s->scsi_len = 0;
285
    }
286
}
287

    
288
static void usb_msd_handle_reset(USBDevice *dev)
289
{
290
    MSDState *s = (MSDState *)dev;
291

    
292
    DPRINTF("Reset\n");
293
    s->mode = USB_MSDM_CBW;
294
}
295

    
296
static int usb_msd_handle_control(USBDevice *dev, USBPacket *p,
297
               int request, int value, int index, int length, uint8_t *data)
298
{
299
    MSDState *s = (MSDState *)dev;
300
    int ret;
301

    
302
    ret = usb_desc_handle_control(dev, p, request, value, index, length, data);
303
    if (ret >= 0) {
304
        return ret;
305
    }
306

    
307
    ret = 0;
308
    switch (request) {
309
    case DeviceRequest | USB_REQ_GET_INTERFACE:
310
        data[0] = 0;
311
        ret = 1;
312
        break;
313
    case DeviceOutRequest | USB_REQ_SET_INTERFACE:
314
        ret = 0;
315
        break;
316
    case EndpointOutRequest | USB_REQ_CLEAR_FEATURE:
317
        ret = 0;
318
        break;
319
    case InterfaceOutRequest | USB_REQ_SET_INTERFACE:
320
        ret = 0;
321
        break;
322
        /* Class specific requests.  */
323
    case ClassInterfaceOutRequest | MassStorageReset:
324
        /* Reset state ready for the next CBW.  */
325
        s->mode = USB_MSDM_CBW;
326
        ret = 0;
327
        break;
328
    case ClassInterfaceRequest | GetMaxLun:
329
        data[0] = 0;
330
        ret = 1;
331
        break;
332
    default:
333
        ret = USB_RET_STALL;
334
        break;
335
    }
336
    return ret;
337
}
338

    
339
static void usb_msd_cancel_io(USBDevice *dev, USBPacket *p)
340
{
341
    MSDState *s = DO_UPCAST(MSDState, dev, dev);
342
    scsi_req_cancel(s->req);
343
}
344

    
345
static int usb_msd_handle_data(USBDevice *dev, USBPacket *p)
346
{
347
    MSDState *s = (MSDState *)dev;
348
    int ret = 0;
349
    struct usb_msd_cbw cbw;
350
    uint8_t devep = p->devep;
351
    uint8_t *data = p->data;
352
    int len = p->len;
353

    
354
    switch (p->pid) {
355
    case USB_TOKEN_OUT:
356
        if (devep != 2)
357
            goto fail;
358

    
359
        switch (s->mode) {
360
        case USB_MSDM_CBW:
361
            if (len != 31) {
362
                fprintf(stderr, "usb-msd: Bad CBW size");
363
                goto fail;
364
            }
365
            memcpy(&cbw, data, 31);
366
            if (le32_to_cpu(cbw.sig) != 0x43425355) {
367
                fprintf(stderr, "usb-msd: Bad signature %08x\n",
368
                        le32_to_cpu(cbw.sig));
369
                goto fail;
370
            }
371
            DPRINTF("Command on LUN %d\n", cbw.lun);
372
            if (cbw.lun != 0) {
373
                fprintf(stderr, "usb-msd: Bad LUN %d\n", cbw.lun);
374
                goto fail;
375
            }
376
            s->tag = le32_to_cpu(cbw.tag);
377
            s->data_len = le32_to_cpu(cbw.data_len);
378
            if (s->data_len == 0) {
379
                s->mode = USB_MSDM_CSW;
380
            } else if (cbw.flags & 0x80) {
381
                s->mode = USB_MSDM_DATAIN;
382
            } else {
383
                s->mode = USB_MSDM_DATAOUT;
384
            }
385
            DPRINTF("Command tag 0x%x flags %08x len %d data %d\n",
386
                    s->tag, cbw.flags, cbw.cmd_len, s->data_len);
387
            s->residue = 0;
388
            s->scsi_len = 0;
389
            s->req = scsi_req_new(s->scsi_dev, s->tag, 0);
390
            scsi_req_enqueue(s->req, cbw.cmd);
391
            /* ??? Should check that USB and SCSI data transfer
392
               directions match.  */
393
            if (s->mode != USB_MSDM_CSW && s->residue == 0) {
394
                scsi_req_continue(s->req);
395
            }
396
            ret = len;
397
            break;
398

    
399
        case USB_MSDM_DATAOUT:
400
            DPRINTF("Data out %d/%d\n", len, s->data_len);
401
            if (len > s->data_len)
402
                goto fail;
403

    
404
            s->usb_buf = data;
405
            s->usb_len = len;
406
            if (s->scsi_len) {
407
                usb_msd_copy_data(s);
408
            }
409
            if (s->residue && s->usb_len) {
410
                s->data_len -= s->usb_len;
411
                if (s->data_len == 0)
412
                    s->mode = USB_MSDM_CSW;
413
                s->usb_len = 0;
414
            }
415
            if (s->usb_len) {
416
                DPRINTF("Deferring packet %p\n", p);
417
                s->packet = p;
418
                ret = USB_RET_ASYNC;
419
            } else {
420
                ret = len;
421
            }
422
            break;
423

    
424
        default:
425
            DPRINTF("Unexpected write (len %d)\n", len);
426
            goto fail;
427
        }
428
        break;
429

    
430
    case USB_TOKEN_IN:
431
        if (devep != 1)
432
            goto fail;
433

    
434
        switch (s->mode) {
435
        case USB_MSDM_DATAOUT:
436
            if (s->data_len != 0 || len < 13)
437
                goto fail;
438
            /* Waiting for SCSI write to complete.  */
439
            s->packet = p;
440
            ret = USB_RET_ASYNC;
441
            break;
442

    
443
        case USB_MSDM_CSW:
444
            DPRINTF("Command status %d tag 0x%x, len %d\n",
445
                    s->result, s->tag, len);
446
            if (len < 13)
447
                goto fail;
448

    
449
            usb_msd_send_status(s, p);
450
            s->mode = USB_MSDM_CBW;
451
            ret = 13;
452
            break;
453

    
454
        case USB_MSDM_DATAIN:
455
            DPRINTF("Data in %d/%d, scsi_len %d\n", len, s->data_len, s->scsi_len);
456
            if (len > s->data_len)
457
                len = s->data_len;
458
            s->usb_buf = data;
459
            s->usb_len = len;
460
            if (s->scsi_len) {
461
                usb_msd_copy_data(s);
462
            }
463
            if (s->residue && s->usb_len) {
464
                s->data_len -= s->usb_len;
465
                memset(s->usb_buf, 0, s->usb_len);
466
                if (s->data_len == 0)
467
                    s->mode = USB_MSDM_CSW;
468
                s->usb_len = 0;
469
            }
470
            if (s->usb_len) {
471
                DPRINTF("Deferring packet %p\n", p);
472
                s->packet = p;
473
                ret = USB_RET_ASYNC;
474
            } else {
475
                ret = len;
476
            }
477
            break;
478

    
479
        default:
480
            DPRINTF("Unexpected read (len %d)\n", len);
481
            goto fail;
482
        }
483
        break;
484

    
485
    default:
486
        DPRINTF("Bad token\n");
487
    fail:
488
        ret = USB_RET_STALL;
489
        break;
490
    }
491

    
492
    return ret;
493
}
494

    
495
static void usb_msd_password_cb(void *opaque, int err)
496
{
497
    MSDState *s = opaque;
498

    
499
    if (!err)
500
        usb_device_attach(&s->dev);
501
    else
502
        qdev_unplug(&s->dev.qdev);
503
}
504

    
505
static const struct SCSIBusOps usb_msd_scsi_ops = {
506
    .transfer_data = usb_msd_transfer_data,
507
    .complete = usb_msd_command_complete,
508
    .cancel = usb_msd_request_cancelled
509
};
510

    
511
static int usb_msd_initfn(USBDevice *dev)
512
{
513
    MSDState *s = DO_UPCAST(MSDState, dev, dev);
514
    BlockDriverState *bs = s->conf.bs;
515
    DriveInfo *dinfo;
516

    
517
    if (!bs) {
518
        error_report("usb-msd: drive property not set");
519
        return -1;
520
    }
521

    
522
    /*
523
     * Hack alert: this pretends to be a block device, but it's really
524
     * a SCSI bus that can serve only a single device, which it
525
     * creates automatically.  But first it needs to detach from its
526
     * blockdev, or else scsi_bus_legacy_add_drive() dies when it
527
     * attaches again.
528
     *
529
     * The hack is probably a bad idea.
530
     */
531
    bdrv_detach(bs, &s->dev.qdev);
532
    s->conf.bs = NULL;
533

    
534
    dinfo = drive_get_by_blockdev(bs);
535
    if (dinfo && dinfo->serial) {
536
        usb_desc_set_string(dev, STR_SERIALNUMBER, dinfo->serial);
537
    }
538

    
539
    usb_desc_init(dev);
540
    scsi_bus_new(&s->bus, &s->dev.qdev, 0, 1, &usb_msd_scsi_ops);
541
    s->scsi_dev = scsi_bus_legacy_add_drive(&s->bus, bs, 0, !!s->removable);
542
    if (!s->scsi_dev) {
543
        return -1;
544
    }
545
    s->bus.qbus.allow_hotplug = 0;
546
    usb_msd_handle_reset(dev);
547

    
548
    if (bdrv_key_required(bs)) {
549
        if (cur_mon) {
550
            monitor_read_bdrv_key_start(cur_mon, bs, usb_msd_password_cb, s);
551
            s->dev.auto_attach = 0;
552
        } else {
553
            autostart = 0;
554
        }
555
    }
556

    
557
    add_boot_device_path(s->conf.bootindex, &dev->qdev, "/disk@0,0");
558
    return 0;
559
}
560

    
561
static USBDevice *usb_msd_init(const char *filename)
562
{
563
    static int nr=0;
564
    char id[8];
565
    QemuOpts *opts;
566
    DriveInfo *dinfo;
567
    USBDevice *dev;
568
    const char *p1;
569
    char fmt[32];
570

    
571
    /* parse -usbdevice disk: syntax into drive opts */
572
    snprintf(id, sizeof(id), "usb%d", nr++);
573
    opts = qemu_opts_create(qemu_find_opts("drive"), id, 0);
574

    
575
    p1 = strchr(filename, ':');
576
    if (p1++) {
577
        const char *p2;
578

    
579
        if (strstart(filename, "format=", &p2)) {
580
            int len = MIN(p1 - p2, sizeof(fmt));
581
            pstrcpy(fmt, len, p2);
582
            qemu_opt_set(opts, "format", fmt);
583
        } else if (*filename != ':') {
584
            printf("unrecognized USB mass-storage option %s\n", filename);
585
            return NULL;
586
        }
587
        filename = p1;
588
    }
589
    if (!*filename) {
590
        printf("block device specification needed\n");
591
        return NULL;
592
    }
593
    qemu_opt_set(opts, "file", filename);
594
    qemu_opt_set(opts, "if", "none");
595

    
596
    /* create host drive */
597
    dinfo = drive_init(opts, 0);
598
    if (!dinfo) {
599
        qemu_opts_del(opts);
600
        return NULL;
601
    }
602

    
603
    /* create guest device */
604
    dev = usb_create(NULL /* FIXME */, "usb-storage");
605
    if (!dev) {
606
        return NULL;
607
    }
608
    if (qdev_prop_set_drive(&dev->qdev, "drive", dinfo->bdrv) < 0) {
609
        qdev_free(&dev->qdev);
610
        return NULL;
611
    }
612
    if (qdev_init(&dev->qdev) < 0)
613
        return NULL;
614

    
615
    return dev;
616
}
617

    
618
static struct USBDeviceInfo msd_info = {
619
    .product_desc   = "QEMU USB MSD",
620
    .qdev.name      = "usb-storage",
621
    .qdev.fw_name      = "storage",
622
    .qdev.size      = sizeof(MSDState),
623
    .usb_desc       = &desc,
624
    .init           = usb_msd_initfn,
625
    .handle_packet  = usb_generic_handle_packet,
626
    .cancel_packet  = usb_msd_cancel_io,
627
    .handle_attach  = usb_desc_attach,
628
    .handle_reset   = usb_msd_handle_reset,
629
    .handle_control = usb_msd_handle_control,
630
    .handle_data    = usb_msd_handle_data,
631
    .usbdevice_name = "disk",
632
    .usbdevice_init = usb_msd_init,
633
    .qdev.props     = (Property[]) {
634
        DEFINE_BLOCK_PROPERTIES(MSDState, conf),
635
        DEFINE_PROP_BIT("removable", MSDState, removable, 0, false),
636
        DEFINE_PROP_END_OF_LIST(),
637
    },
638
};
639

    
640
static void usb_msd_register_devices(void)
641
{
642
    usb_qdev_register(&msd_info);
643
}
644
device_init(usb_msd_register_devices)