Coverage Report

Created: 2025-12-05 07:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/hbfa-fl/HBFA/UefiHostFuzzTestCasePkg/TestStub/VirtioPciDevice10StubLib/VirtioPciDevice10StubLib.c
Line
Count
Source
1
/** @file
2
3
Copyright (c) 2018, Intel Corporation. All rights reserved.<BR>
4
SPDX-License-Identifier: BSD-2-Clause-Patent
5
6
**/
7
#include <Uefi.h>
8
#include <stdio.h>
9
#include <stdlib.h>
10
11
#include <Library/BaseLib.h>
12
#include <Library/DebugLib.h>
13
#include <Library/BaseMemoryLib.h>
14
#include <Library/MemoryAllocationLib.h>
15
#include <Protocol/BlockIo.h>
16
#include <Protocol/VirtioDevice.h>
17
#include <Protocol/PciIo.h>
18
#include <Protocol/PciRootBridgeIo.h>
19
#include <Library/VirtioPciDeviceStubLib.h>
20
#include <IndustryStandard/Virtio10.h>
21
#include <Library/PciCapPciIoLib.h>
22
#include <Library/PciCapLib.h>
23
24
PCI_CFG_SPACE *PciCfg;
25
26
// VOID
27
// EFIAPI
28
// PrintByByte(UINT8* Content, UINT32 Len) {
29
//   UINT32 i;
30
//   for (i = 0; i < Len; i++) {
31
//     if (i % 16 == 0) printf ("\n");
32
//     printf ("%02x ", Content[i]);
33
//   }
34
//   printf ("\n");
35
// }
36
37
EFI_STATUS
38
EFIAPI
39
PciCapPciIoDeviceInit (
40
  IN  EFI_PCI_IO_PROTOCOL *PciIo,
41
  OUT PCI_CAP_DEV         **PciDevice
42
  );
43
44
VOID
45
EFIAPI
46
PciCapPciIoDeviceUninit (
47
  IN PCI_CAP_DEV *PciDevice
48
  );
49
50
RETURN_STATUS
51
EFIAPI
52
PciCapListInit (
53
  IN  PCI_CAP_DEV  *PciDevice,
54
  OUT PCI_CAP_LIST **CapList
55
  );
56
57
RETURN_STATUS
58
EFIAPI
59
PciCapListFindCap (
60
  IN  PCI_CAP_LIST   *CapList,
61
  IN  PCI_CAP_DOMAIN Domain,
62
  IN  UINT16         CapId,
63
  IN  UINT16         Instance,
64
  OUT PCI_CAP        **Cap    OPTIONAL
65
  );
66
67
RETURN_STATUS
68
EFIAPI
69
PciCapRead (
70
  IN  PCI_CAP_DEV *PciDevice,
71
  IN  PCI_CAP     *Cap,
72
  IN  UINT16      SourceOffsetInCap,
73
  OUT VOID        *DestinationBuffer,
74
  IN  UINT16      Size
75
  );
76
77
VOID
78
EFIAPI
79
PciCapListUninit (
80
  IN PCI_CAP_LIST *CapList
81
  );
82
83
EFI_STATUS
84
GetBarType (
85
  IN  EFI_PCI_IO_PROTOCOL  *PciIo,
86
  IN  UINT8                BarIndex,
87
  OUT VIRTIO_1_0_BAR_TYPE  *BarType
88
  )
89
178
{
90
178
  if (BarIndex >= sizeof(PciCfg->PciBasicCfg.Device.Bar)/sizeof(UINT32)) {
91
16
    return EFI_INVALID_PARAMETER;
92
16
  }
93
94
162
  if (PciCfg->PciBasicCfg.Device.Bar[BarIndex] & BIT0) {
95
88
    *BarType = Virtio10BarTypeIo;
96
88
  }
97
74
  else {
98
74
    *BarType = Virtio10BarTypeMem;
99
74
  }
100
101
162
  return EFI_SUCCESS;
102
178
}
103
104
STATIC
105
EFI_STATUS
106
Virtio10Transfer (
107
  IN     EFI_PCI_IO_PROTOCOL  *PciIo,
108
  IN     VIRTIO_1_0_CONFIG    *Config,
109
  IN     BOOLEAN              Write,
110
  IN     UINTN                FieldOffset,
111
  IN     UINTN                FieldSize,
112
  IN OUT VOID                 *Buffer
113
  )
114
2.27k
{
115
2.27k
  if (!Config->Exists ||
116
2.27k
      (FieldSize > Config->Length) ||
117
2.27k
      (FieldOffset > Config->Length - FieldSize))
118
0
  {
119
0
    return EFI_INVALID_PARAMETER;
120
0
  }
121
  
122
2.27k
  if (Write) {
123
1.48k
    CopyMem ((void *) (((UINT64) PciCfg->PciBasicCfg.Device.Bar[1] << 32) | PciCfg->PciBasicCfg.Device.Bar[0] + Config->Offset + FieldOffset), Buffer, FieldSize);
124
1.48k
  }
125
791
  else {
126
791
    CopyMem (Buffer, (void *) (((UINT64) PciCfg->PciBasicCfg.Device.Bar[1] << 32) | PciCfg->PciBasicCfg.Device.Bar[0] + Config->Offset + FieldOffset), FieldSize);
127
791
  }
128
129
2.27k
  return EFI_SUCCESS;
130
2.27k
}
131
132
STATIC
133
EFI_STATUS
134
EFIAPI
135
Virtio10GetDeviceFeatures (
136
  IN VIRTIO_DEVICE_PROTOCOL  *This,
137
  OUT UINT64                 *DeviceFeatures
138
  )
139
148
{
140
148
  VIRTIO_1_0_DEV  *Dev;
141
148
  UINT32          Selector;
142
148
  UINT32          Features32[2];
143
144
148
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
145
146
444
  for (Selector = 0; Selector < 2; ++Selector) {
147
296
    EFI_STATUS  Status;
148
149
    //
150
    // Select the low or high half of the features.
151
    //
152
296
    Status = Virtio10Transfer (
153
296
               Dev->PciIo,
154
296
               &Dev->CommonConfig,
155
296
               TRUE,
156
296
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DeviceFeatureSelect),
157
296
               sizeof Selector,
158
296
               &Selector
159
296
               );
160
296
    if (EFI_ERROR (Status)) {
161
0
      return Status;
162
0
    }
163
164
    //
165
    // Fetch that half.
166
    //
167
296
    Status = Virtio10Transfer (
168
296
               Dev->PciIo,
169
296
               &Dev->CommonConfig,
170
296
               FALSE,
171
296
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DeviceFeature),
172
296
               sizeof Features32[Selector],
173
296
               &Features32[Selector]
174
296
               );
175
296
    if (EFI_ERROR (Status)) {
176
0
      return Status;
177
0
    }
178
296
  }
179
180
148
  *DeviceFeatures = LShiftU64 (Features32[1], 32) | Features32[0];
181
148
  return EFI_SUCCESS;
182
148
}
183
184
STATIC
185
EFI_STATUS
186
EFIAPI
187
Virtio10SetGuestFeatures (
188
  IN VIRTIO_DEVICE_PROTOCOL  *This,
189
  IN UINT64                  Features
190
  )
191
62
{
192
62
  VIRTIO_1_0_DEV  *Dev;
193
62
  UINT32          Selector;
194
62
  UINT32          Features32[2];
195
196
62
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
197
198
62
  Features32[0] = (UINT32)Features;
199
62
  Features32[1] = (UINT32)RShiftU64 (Features, 32);
200
201
186
  for (Selector = 0; Selector < 2; ++Selector) {
202
124
    EFI_STATUS  Status;
203
204
    //
205
    // Select the low or high half of the features.
206
    //
207
124
    Status = Virtio10Transfer (
208
124
               Dev->PciIo,
209
124
               &Dev->CommonConfig,
210
124
               TRUE,
211
124
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DriverFeatureSelect),
212
124
               sizeof Selector,
213
124
               &Selector
214
124
               );
215
124
    if (EFI_ERROR (Status)) {
216
0
      return Status;
217
0
    }
218
219
    //
220
    // Write that half.
221
    //
222
124
    Status = Virtio10Transfer (
223
124
               Dev->PciIo,
224
124
               &Dev->CommonConfig,
225
124
               TRUE,
226
124
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DriverFeature),
227
124
               sizeof Features32[Selector],
228
124
               &Features32[Selector]
229
124
               );
230
231
124
    if (EFI_ERROR (Status)) {
232
0
      return Status;
233
0
    }
234
124
  }
235
236
62
  return EFI_SUCCESS;
237
62
}
238
239
STATIC
240
EFI_STATUS
241
EFIAPI
242
Virtio10SetQueueAddress (
243
  IN VIRTIO_DEVICE_PROTOCOL  *This,
244
  IN VRING                   *Ring,
245
  IN UINT64                  RingBaseShift
246
  )
247
56
{
248
56
  VIRTIO_1_0_DEV  *Dev;
249
56
  EFI_STATUS      Status;
250
56
  UINT64          Address;
251
56
  UINT16          Enable;
252
253
56
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
254
255
56
  Address  = (UINTN)Ring->Desc;
256
56
  Address += RingBaseShift;
257
56
  Status   = Virtio10Transfer (
258
56
               Dev->PciIo,
259
56
               &Dev->CommonConfig,
260
56
               TRUE,
261
56
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueDesc),
262
56
               sizeof Address,
263
56
               &Address
264
56
               );
265
56
  if (EFI_ERROR (Status)) {
266
0
    return Status;
267
0
  }
268
269
56
  Address  = (UINTN)Ring->Avail.Flags;
270
56
  Address += RingBaseShift;
271
56
  Status   = Virtio10Transfer (
272
56
               Dev->PciIo,
273
56
               &Dev->CommonConfig,
274
56
               TRUE,
275
56
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueAvail),
276
56
               sizeof Address,
277
56
               &Address
278
56
               );
279
56
  if (EFI_ERROR (Status)) {
280
0
    return Status;
281
0
  }
282
283
56
  Address  = (UINTN)Ring->Used.Flags;
284
56
  Address += RingBaseShift;
285
56
  Status   = Virtio10Transfer (
286
56
               Dev->PciIo,
287
56
               &Dev->CommonConfig,
288
56
               TRUE,
289
56
               OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueUsed),
290
56
               sizeof Address,
291
56
               &Address
292
56
               );
293
56
  if (EFI_ERROR (Status)) {
294
0
    return Status;
295
0
  }
296
297
56
  Enable = 1;
298
56
  Status = Virtio10Transfer (
299
56
             Dev->PciIo,
300
56
             &Dev->CommonConfig,
301
56
             TRUE,
302
56
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueEnable),
303
56
             sizeof Enable,
304
56
             &Enable
305
56
             );
306
56
  return Status;
307
56
}
308
309
STATIC
310
EFI_STATUS
311
EFIAPI
312
Virtio10SetQueueSel (
313
  IN VIRTIO_DEVICE_PROTOCOL  *This,
314
  IN UINT16                  Index
315
  )
316
62
{
317
62
  VIRTIO_1_0_DEV  *Dev;
318
62
  EFI_STATUS      Status;
319
320
62
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
321
322
62
  Status = Virtio10Transfer (
323
62
             Dev->PciIo,
324
62
             &Dev->CommonConfig,
325
62
             TRUE,
326
62
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueSelect),
327
62
             sizeof Index,
328
62
             &Index
329
62
             );
330
62
  return Status;
331
62
}
332
333
STATIC
334
EFI_STATUS
335
EFIAPI
336
Virtio10SetQueueNotify (
337
  IN VIRTIO_DEVICE_PROTOCOL  *This,
338
  IN UINT16                  Index
339
  )
340
0
{
341
0
  VIRTIO_1_0_DEV  *Dev;
342
0
  EFI_STATUS      Status;
343
0
  UINT16          SavedQueueSelect;
344
0
  UINT16          NotifyOffset;
345
346
0
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
347
348
  //
349
  // Read NotifyOffset first. NotifyOffset is queue specific, so we have
350
  // to stash & restore the current queue selector around it.
351
  //
352
  // So, start with saving the current queue selector.
353
  //
354
0
  Status = Virtio10Transfer (
355
0
             Dev->PciIo,
356
0
             &Dev->CommonConfig,
357
0
             FALSE,
358
0
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueSelect),
359
0
             sizeof SavedQueueSelect,
360
0
             &SavedQueueSelect
361
0
             );
362
0
  if (EFI_ERROR (Status)) {
363
0
    return Status;
364
0
  }
365
366
  //
367
  // Select the requested queue.
368
  //
369
0
  Status = Virtio10Transfer (
370
0
             Dev->PciIo,
371
0
             &Dev->CommonConfig,
372
0
             TRUE,
373
0
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueSelect),
374
0
             sizeof Index,
375
0
             &Index
376
0
             );
377
0
  if (EFI_ERROR (Status)) {
378
0
    return Status;
379
0
  }
380
381
  //
382
  // Read the QueueNotifyOff field.
383
  //
384
0
  Status = Virtio10Transfer (
385
0
             Dev->PciIo,
386
0
             &Dev->CommonConfig,
387
0
             FALSE,
388
0
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueNotifyOff),
389
0
             sizeof NotifyOffset,
390
0
             &NotifyOffset
391
0
             );
392
0
  if (EFI_ERROR (Status)) {
393
0
    return Status;
394
0
  }
395
396
  //
397
  // Re-select the original queue.
398
  //
399
0
  Status = Virtio10Transfer (
400
0
             Dev->PciIo,
401
0
             &Dev->CommonConfig,
402
0
             TRUE,
403
0
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueSelect),
404
0
             sizeof SavedQueueSelect,
405
0
             &SavedQueueSelect
406
0
             );
407
0
  if (EFI_ERROR (Status)) {
408
0
    return Status;
409
0
  }
410
411
  //
412
  // We can now kick the queue.
413
  //
414
0
  Status = Virtio10Transfer (
415
0
             Dev->PciIo,
416
0
             &Dev->NotifyConfig,
417
0
             TRUE,
418
0
             (UINTN)NotifyOffset * Dev->NotifyOffsetMultiplier,
419
0
             sizeof Index,
420
0
             &Index
421
0
             );
422
423
0
  return Status;
424
0
}
425
426
STATIC
427
EFI_STATUS
428
EFIAPI
429
Virtio10SetQueueAlign (
430
  IN VIRTIO_DEVICE_PROTOCOL  *This,
431
  IN UINT32                  Alignment
432
  )
433
56
{
434
56
  return (Alignment == EFI_PAGE_SIZE) ? EFI_SUCCESS : EFI_UNSUPPORTED;
435
56
}
436
437
STATIC
438
EFI_STATUS
439
EFIAPI
440
Virtio10SetPageSize (
441
  IN VIRTIO_DEVICE_PROTOCOL  *This,
442
  IN UINT32                  PageSize
443
  )
444
148
{
445
148
  return (PageSize == EFI_PAGE_SIZE) ? EFI_SUCCESS : EFI_UNSUPPORTED;
446
148
}
447
448
STATIC
449
EFI_STATUS
450
EFIAPI
451
Virtio10GetQueueNumMax (
452
  IN  VIRTIO_DEVICE_PROTOCOL  *This,
453
  OUT UINT16                  *QueueNumMax
454
  )
455
118
{
456
118
  VIRTIO_1_0_DEV  *Dev;
457
118
  EFI_STATUS      Status;
458
459
118
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
460
461
118
  Status = Virtio10Transfer (
462
118
             Dev->PciIo,
463
118
             &Dev->CommonConfig,
464
118
             FALSE,
465
118
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, QueueSize),
466
118
             sizeof *QueueNumMax,
467
118
             QueueNumMax
468
118
             );
469
470
118
  return Status;
471
118
}
472
473
STATIC
474
EFI_STATUS
475
EFIAPI
476
Virtio10SetQueueNum (
477
  IN VIRTIO_DEVICE_PROTOCOL  *This,
478
  IN UINT16                  QueueSize
479
  )
480
56
{
481
56
  EFI_STATUS  Status;
482
56
  UINT16      CurrentSize;
483
484
  //
485
  // This member function is required for VirtIo MMIO, and a no-op in
486
  // VirtIo PCI 0.9.5. In VirtIo 1.0, drivers can theoretically use this
487
  // member to reduce memory consumption, but none of our drivers do. So
488
  // just check that they set the size that is already in effect.
489
  //
490
56
  Status = Virtio10GetQueueNumMax (This, &CurrentSize);
491
56
  if (EFI_ERROR (Status)) {
492
0
    return Status;
493
0
  }
494
495
56
  return (CurrentSize == QueueSize) ? EFI_SUCCESS : EFI_UNSUPPORTED;
496
56
}
497
498
STATIC
499
EFI_STATUS
500
EFIAPI
501
Virtio10GetDeviceStatus (
502
  IN  VIRTIO_DEVICE_PROTOCOL  *This,
503
  OUT UINT8                   *DeviceStatus
504
  )
505
62
{
506
62
  VIRTIO_1_0_DEV  *Dev;
507
62
  EFI_STATUS      Status;
508
  
509
62
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
510
  
511
62
  Status = Virtio10Transfer (
512
62
             Dev->PciIo,
513
62
             &Dev->CommonConfig,
514
62
             FALSE,
515
62
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DeviceStatus),
516
62
             sizeof *DeviceStatus,
517
62
             DeviceStatus
518
62
             );
519
62
  return Status;
520
62
}
521
522
STATIC
523
EFI_STATUS
524
EFIAPI
525
Virtio10SetDeviceStatus (
526
  IN VIRTIO_DEVICE_PROTOCOL  *This,
527
  IN UINT8                   DeviceStatus
528
  )
529
654
{
530
654
  VIRTIO_1_0_DEV  *Dev;
531
654
  EFI_STATUS      Status;
532
533
654
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
534
535
654
  Status = Virtio10Transfer (
536
654
             Dev->PciIo,
537
654
             &Dev->CommonConfig,
538
654
             TRUE,
539
654
             OFFSET_OF (VIRTIO_PCI_COMMON_CFG, DeviceStatus),
540
654
             sizeof DeviceStatus,
541
654
             &DeviceStatus
542
654
             );
543
654
  return Status;
544
654
}
545
546
STATIC
547
EFI_STATUS
548
EFIAPI
549
Virtio10WriteDevice (
550
  IN VIRTIO_DEVICE_PROTOCOL  *This,
551
  IN UINTN                   FieldOffset,
552
  IN UINTN                   FieldSize,
553
  IN UINT64                  Value
554
  )
555
0
{
556
0
  VIRTIO_1_0_DEV  *Dev;
557
0
  EFI_STATUS      Status;
558
559
0
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
560
561
0
  Status = Virtio10Transfer (
562
0
             Dev->PciIo,
563
0
             &Dev->SpecificConfig,
564
0
             TRUE,
565
0
             FieldOffset,
566
0
             FieldSize,
567
0
             &Value
568
0
             );
569
0
  return Status;
570
0
}
571
572
STATIC
573
EFI_STATUS
574
EFIAPI
575
Virtio10ReadDevice (
576
  IN  VIRTIO_DEVICE_PROTOCOL  *This,
577
  IN  UINTN                   FieldOffset,
578
  IN  UINTN                   FieldSize,
579
  IN  UINTN                   BufferSize,
580
  OUT VOID                    *Buffer
581
  )
582
315
{
583
315
  VIRTIO_1_0_DEV  *Dev;
584
315
  EFI_STATUS      Status;
585
586
315
  if (FieldSize != BufferSize) {
587
0
    return EFI_INVALID_PARAMETER;
588
0
  }
589
590
315
  Dev = VIRTIO_1_0_FROM_VIRTIO_DEVICE (This);
591
592
315
  Status = Virtio10Transfer (
593
315
             Dev->PciIo,
594
315
             &Dev->SpecificConfig,
595
315
             FALSE,
596
315
             FieldOffset,
597
315
             FieldSize,
598
315
             Buffer
599
315
             );
600
315
  return Status;
601
315
}
602
603
STATIC
604
EFI_STATUS
605
EFIAPI
606
Virtio10AllocateSharedPages (
607
  IN     VIRTIO_DEVICE_PROTOCOL  *This,
608
  IN     UINTN                   Pages,
609
  IN OUT VOID                    **HostAddress
610
  )
611
56
{
612
56
  EFI_STATUS      Status = EFI_SUCCESS;
613
  
614
56
  *HostAddress = AllocatePages (Pages);
615
616
56
  if (*HostAddress == NULL) {
617
0
    Status = EFI_OUT_OF_RESOURCES;
618
0
  }
619
620
56
  return Status;
621
56
}
622
623
STATIC
624
VOID
625
EFIAPI
626
Virtio10FreeSharedPages (
627
  IN  VIRTIO_DEVICE_PROTOCOL  *This,
628
  IN  UINTN                   Pages,
629
  IN  VOID                    *HostAddress
630
  )
631
0
{
632
0
  FreePages(HostAddress, Pages);
633
0
}
634
635
STATIC
636
EFI_STATUS
637
EFIAPI
638
Virtio10MapSharedBuffer (
639
  IN     VIRTIO_DEVICE_PROTOCOL  *This,
640
  IN     VIRTIO_MAP_OPERATION    Operation,
641
  IN     VOID                    *HostAddress,
642
  IN OUT UINTN                   *NumberOfBytes,
643
  OUT    EFI_PHYSICAL_ADDRESS    *DeviceAddress,
644
  OUT    VOID                    **Mapping
645
  )
646
56
{
647
56
  return EFI_SUCCESS;
648
56
}
649
650
STATIC
651
EFI_STATUS
652
EFIAPI
653
Virtio10UnmapSharedBuffer (
654
  IN  VIRTIO_DEVICE_PROTOCOL  *This,
655
  IN  VOID                    *Mapping
656
  )
657
0
{
658
0
  return EFI_SUCCESS;
659
0
}
660
661
STATIC CONST VIRTIO_DEVICE_PROTOCOL  mVirtIoTemplate = {
662
  VIRTIO_SPEC_REVISION (1,     0, 0),
663
  0,                           // SubSystemDeviceId, filled in dynamically
664
  Virtio10GetDeviceFeatures,
665
  Virtio10SetGuestFeatures,
666
  Virtio10SetQueueAddress,
667
  Virtio10SetQueueSel,
668
  Virtio10SetQueueNotify,
669
  Virtio10SetQueueAlign,
670
  Virtio10SetPageSize,
671
  Virtio10GetQueueNumMax,
672
  Virtio10SetQueueNum,
673
  Virtio10GetDeviceStatus,
674
  Virtio10SetDeviceStatus,
675
  Virtio10WriteDevice,
676
  Virtio10ReadDevice,
677
  Virtio10AllocateSharedPages,
678
  Virtio10FreeSharedPages,
679
  Virtio10MapSharedBuffer,
680
  Virtio10UnmapSharedBuffer
681
};
682
683
EFI_STATUS
684
EFIAPI
685
FixPciCfg (
686
  IN OUT PCI_CFG_SPACE             *PciCfg,
687
  IN VIRTIO_PCI_CAP_COMMON_CONFIG  *PciCommonConfig
688
)
689
0
{ 
690
0
  PciCfg->PciBasicCfg.Device.Bar[0] = (UINT32) ((UINT64)PciCommonConfig);
691
 
692
0
  return EFI_SUCCESS;
693
0
}
694
695
STATIC
696
EFI_STATUS
697
ParseCapabilities (
698
  IN OUT VIRTIO_1_0_DEV *Device
699
  )
700
385
{
701
385
  EFI_STATUS   Status;
702
385
  PCI_CAP_DEV  *PciDevice;
703
385
  PCI_CAP_LIST *CapList;
704
385
  UINT16       VendorInstance;
705
385
  PCI_CAP      *VendorCap;
706
707
385
  Status = PciCapPciIoDeviceInit (Device->PciIo, &PciDevice);
708
385
  if (EFI_ERROR (Status)) {
709
0
    return Status;
710
0
  }
711
712
385
  Status = PciCapListInit (PciDevice, &CapList);
713
385
  if (EFI_ERROR (Status)) {
714
116
    goto UninitPciDevice;
715
116
  }
716
717
269
  for (VendorInstance = 0;
718
607
       !EFI_ERROR (PciCapListFindCap (CapList, PciCapNormal,
719
269
                     EFI_PCI_CAPABILITY_ID_VENDOR, VendorInstance,
720
269
                     &VendorCap));
721
385
       VendorInstance++) {
722
385
    UINT8             CapLen;
723
385
    VIRTIO_PCI_CAP    VirtIoCap;
724
385
    VIRTIO_1_0_CONFIG *ParsedConfig;
725
726
    //
727
    // Big enough to accommodate a VIRTIO_PCI_CAP structure?
728
    //
729
385
    Status = PciCapRead (PciDevice, VendorCap,
730
385
               OFFSET_OF (EFI_PCI_CAPABILITY_VENDOR_HDR, Length), &CapLen,
731
385
               sizeof CapLen);
732
385
    if (EFI_ERROR (Status)) {
733
0
      goto UninitCapList;
734
0
    }
735
385
    if (CapLen < sizeof VirtIoCap) {
736
      //
737
      // Too small, move to next.
738
      //
739
234
      continue;
740
234
    }
741
742
    //
743
    // Read interesting part of capability.
744
    //
745
151
    Status = PciCapRead (PciDevice, VendorCap, 0, &VirtIoCap, sizeof VirtIoCap);
746
151
    if (EFI_ERROR (Status)) {
747
36
      goto UninitCapList;
748
36
    }
749
750
115
    switch (VirtIoCap.ConfigType) {
751
31
    case VIRTIO_PCI_CAP_COMMON_CFG:
752
31
      ParsedConfig = &Device->CommonConfig;
753
31
      break;
754
40
    case VIRTIO_PCI_CAP_NOTIFY_CFG:
755
40
      ParsedConfig = &Device->NotifyConfig;
756
40
      break;
757
18
    case VIRTIO_PCI_CAP_DEVICE_CFG:
758
18
      ParsedConfig = &Device->SpecificConfig;
759
18
      break;
760
26
    default:
761
      //
762
      // Capability is not interesting.
763
      //
764
26
      continue;
765
115
    }
766
767
    //
768
    // Save the location of the register block into ParsedConfig.
769
    //
770
89
    Status = GetBarType (Device->PciIo, VirtIoCap.Bar, &ParsedConfig->BarType);
771
89
    if (EFI_ERROR (Status)) {
772
8
      goto UninitCapList;
773
8
    }
774
81
    ParsedConfig->Bar    = VirtIoCap.Bar;
775
81
    ParsedConfig->Offset = VirtIoCap.Offset;
776
81
    ParsedConfig->Length = VirtIoCap.Length;
777
778
81
    if (VirtIoCap.ConfigType == VIRTIO_PCI_CAP_NOTIFY_CFG) {
779
      //
780
      // This capability has an additional field called NotifyOffsetMultiplier;
781
      // parse it too.
782
      //
783
39
      if (CapLen < sizeof VirtIoCap + sizeof Device->NotifyOffsetMultiplier) {
784
        //
785
        // Too small, move to next.
786
        //
787
14
        continue;
788
14
      }
789
790
25
      Status = PciCapRead (PciDevice, VendorCap, sizeof VirtIoCap,
791
25
                 &Device->NotifyOffsetMultiplier,
792
25
                 sizeof Device->NotifyOffsetMultiplier);
793
25
      if (EFI_ERROR (Status)) {
794
3
        goto UninitCapList;
795
3
      }
796
25
    }
797
798
    //
799
    // Capability parsed successfully.
800
    //
801
64
    ParsedConfig->Exists = TRUE;
802
64
  }
803
804
222
  ASSERT_EFI_ERROR (Status);
805
806
269
UninitCapList:
807
269
  PciCapListUninit (CapList);
808
809
385
UninitPciDevice:
810
385
  PciCapPciIoDeviceUninit (PciDevice);
811
812
385
  return Status;
813
269
}
814
815
EFI_STATUS
816
EFIAPI
817
PciIoRead (
818
  IN EFI_PCI_IO_PROTOCOL       *PciIo,
819
  IN EFI_PCI_IO_PROTOCOL_WIDTH Width,
820
  IN UINT32                    Offset,
821
  IN UINTN                     Count,
822
  IN OUT VOID                  *Buffer
823
20.5k
) {
824
20.5k
  UINT16 Len = 0;
825
826
20.5k
  switch (Width)
827
20.5k
  {
828
6.73k
  case EfiPciIoWidthUint32:
829
6.73k
    Len = Count * sizeof(UINT32);
830
6.73k
    break;
831
12.2k
  case EfiPciIoWidthUint16:
832
12.2k
    Len = Count * sizeof(UINT16);
833
12.2k
    break;
834
1.58k
  case EfiPciIoWidthUint8:
835
1.58k
    Len = Count * sizeof(UINT8);
836
1.58k
    break;
837
0
  default:
838
0
    break;
839
20.5k
  }
840
841
20.5k
  CopyMem (Buffer, (void *) ((UINT64) PciCfg + Offset), Len);
842
20.5k
  return EFI_SUCCESS;
843
20.5k
}
844
845
EFI_STATUS
846
EFIAPI
847
InitVirtioPciDevice (
848
  IN OUT  VIRTIO_1_0_DEV         *Device,
849
  IN      UINT8                  *TestBuffer,
850
  IN      UINTN                  BufferSize,
851
  IN      EFI_PCI_IO_PROTOCOL    *PciIo
852
) 
853
491
{
854
  // VOID  *ConfigRegion;
855
  
856
  // ConfigRegion = (VOID *) AllocateZeroPool (sizeof (PCI_CFG_SPACE));
857
491
  PciCfg = (PCI_CFG_SPACE *) TestBuffer; 
858
859
  // CopyMem (PciCfg, (void *) TestBuffer, sizeof (PCI_CFG_SPACE));
860
  
861
491
  PciIo->Pci.Read = &PciIoRead;
862
863
491
  if ((PciCfg->PciBasicCfg.Hdr.VendorId == VIRTIO_VENDOR_ID) &&
864
450
      (PciCfg->PciBasicCfg.Hdr.DeviceId >= 0x1040) &&
865
429
      (PciCfg->PciBasicCfg.Hdr.DeviceId <= 0x107F) &&
866
415
      (PciCfg->PciBasicCfg.Hdr.RevisionID >= 0x01) &&
867
407
      (PciCfg->PciBasicCfg.Device.SubsystemID >= 0x40) &&
868
388
      ((PciCfg->PciBasicCfg.Hdr.Status & EFI_PCI_STATUS_CAPABILITY) != 0))
869
385
  {
870
385
    if (!((PciCfg->PciBasicCfg.Hdr.DeviceId != 0x1050) || !(PciCfg->PciBasicCfg.Hdr.ClassCode == PciCfg))) {
871
0
      return EFI_OUT_OF_RESOURCES;
872
0
    }
873
385
  }
874
106
  else {
875
106
      return EFI_OUT_OF_RESOURCES;
876
106
  }
877
878
385
  ParseCapabilities (Device);
879
880
385
  return EFI_SUCCESS;
881
491
}
882
883
884
EFI_STATUS
885
EFIAPI
886
ParseBufferAndInitVirtioPciDev10 (
887
  IN      UINT8                   *TestBuffer,
888
  IN      UINTN                   BufferSize,
889
  IN      VOID                    *ConfigRegion,
890
  IN OUT  VIRTIO_1_0_DEV          *Device
891
) 
892
284
{
893
284
  EFI_STATUS                    Status;
894
284
  EFI_PCI_IO_PROTOCOL           *PciIo;
895
284
  VIRTIO_BLK_CONFIG             *BlkConfig;
896
284
  VIRTIO_PCI_CAP_COMMON_CONFIG  *PciCommonConfig;
897
284
  VOID                          *PciNotifyConfig;
898
  // VOID                          *ConfigRegion;
899
900
  // ConfigRegion = (VOID *) AllocatePool(sizeof (PCI_CFG_SPACE) + sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG) + sizeof (VIRTIO_BLK_CONFIG) + 0x100);
901
284
  if (ConfigRegion == NULL) {
902
0
    return EFI_OUT_OF_RESOURCES;
903
0
  }
904
905
284
  if (BufferSize != sizeof (PCI_CFG_SPACE) + sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG) + sizeof (VIRTIO_BLK_CONFIG)) {
906
66
    goto FreeDevice;
907
66
  }
908
909
218
  Device->Signature = VIRTIO_1_0_SIGNATURE;
910
218
  CopyMem (&Device->VirtIo, &mVirtIoTemplate, sizeof (VIRTIO_DEVICE_PROTOCOL));
911
912
218
  PciCfg = (PCI_CFG_SPACE *) ConfigRegion;
913
218
  PciCommonConfig = (VIRTIO_PCI_CAP_COMMON_CONFIG *) ((UINT64) ConfigRegion + sizeof (PCI_CFG_SPACE));
914
218
  BlkConfig = (VIRTIO_BLK_CONFIG *) ((UINT64) ConfigRegion + sizeof (PCI_CFG_SPACE) + sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG));
915
218
  PciNotifyConfig = (VOID *) ((UINT64) ConfigRegion + sizeof (PCI_CFG_SPACE) + sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG) + sizeof (VIRTIO_BLK_CONFIG));
916
917
218
  CopyMem (PciCfg, (void *) TestBuffer, sizeof (PCI_CFG_SPACE));
918
  
919
218
  CopyMem (PciCommonConfig, 
920
218
           (void *) ((UINT64)TestBuffer + sizeof (PCI_CFG_SPACE)), 
921
218
           sizeof (VIRTIO_PCI_CAP_COMMON_CONFIG));
922
923
218
  CopyMem (BlkConfig,
924
218
           (void *) ((UINT64)TestBuffer + sizeof (PCI_CFG_SPACE) + sizeof (VIRTIO_PCI_CAP_COMMON_CONFIG)), 
925
218
           sizeof (VIRTIO_BLK_CONFIG));
926
927
218
  if ((PciCfg->PciBasicCfg.Hdr.VendorId == VIRTIO_VENDOR_ID) &&
928
196
      (PciCfg->PciBasicCfg.Hdr.DeviceId >= 0x1040) &&
929
182
      (PciCfg->PciBasicCfg.Hdr.DeviceId <= 0x107F) &&
930
166
      (PciCfg->PciBasicCfg.Hdr.RevisionID >= 0x01) &&
931
164
      (PciCfg->PciBasicCfg.Device.SubsystemID >= 0x40) &&
932
157
      ((PciCfg->PciBasicCfg.Hdr.Status & EFI_PCI_STATUS_CAPABILITY) != 0))
933
156
  {
934
156
    if (!((PciCfg->PciBasicCfg.Hdr.DeviceId != 0x1050) || !(PciCfg->PciBasicCfg.Hdr.ClassCode == PciCfg))) {
935
0
      goto FreeDevice;
936
0
    }
937
156
  }
938
62
  else {
939
62
      goto FreeDevice;
940
62
  }
941
942
156
  PciCfg->PciBasicCfg.Device.Bar[0] = (UINT32) ((UINT64)PciCommonConfig);
943
156
  PciCfg->PciBasicCfg.Device.Bar[1] = (UINT32) ((UINT64)PciCommonConfig >> 32);
944
  
945
156
  Device->VirtIo.SubSystemDeviceId = PciCfg->PciBasicCfg.Hdr.DeviceId - 0x1040;
946
947
156
  Device->CommonConfig.Offset   = 0;
948
156
  Device->CommonConfig.Bar      = 0;
949
156
  Device->CommonConfig.Exists   = TRUE;
950
156
  Device->CommonConfig.Length   = sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG);
951
  
952
156
  Device->NotifyConfig.Offset   = sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG) + sizeof (VIRTIO_BLK_CONFIG);
953
156
  Device->NotifyConfig.Bar      = 0;
954
156
  Device->NotifyConfig.Exists   = TRUE;
955
156
  Device->NotifyConfig.Length   = 0x100;
956
957
156
  Device->SpecificConfig.Offset = sizeof(VIRTIO_PCI_CAP_COMMON_CONFIG);
958
156
  Device->SpecificConfig.Bar    = 0;
959
156
  Device->SpecificConfig.Exists = TRUE;
960
156
  Device->SpecificConfig.Length = sizeof (VIRTIO_BLK_CONFIG);
961
962
  // if (Device->NotifyConfig.Length < (Device->CommonConfig.Offset * Device->NotifyOffsetMultiplier + 4)) {
963
  //   goto FreeDevice;
964
  // }
965
966
156
  return EFI_SUCCESS;
967
968
128
FreeDevice:
969
  // FreePool (ConfigRegion);
970
971
128
  return EFI_OUT_OF_RESOURCES;
972
218
}