1/** @file
2  The logic to process capsule.
3
4  Caution: This module requires additional review when modified.
5  This driver will have external input - capsule image.
6  This external input must be validated carefully to avoid security issue like
7  buffer overflow, integer overflow.
8
9  CapsuleDataCoalesce() will do basic validation before coalesce capsule data
10  into memory.
11
12(C) Copyright 2014 Hewlett-Packard Development Company, L.P.<BR>
13Copyright (c) 2011 - 2016, Intel Corporation. All rights reserved.<BR>
14This program and the accompanying materials
15are licensed and made available under the terms and conditions of the BSD License
16which accompanies this distribution.  The full text of the license may be found at
17http://opensource.org/licenses/bsd-license.php
18
19THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
20WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
21
22**/
23
24#include <Uefi.h>
25#include <PiPei.h>
26
27#include <Guid/CapsuleVendor.h>
28
29#include <Library/BaseMemoryLib.h>
30#include <Library/DebugLib.h>
31#include <Library/PrintLib.h>
32#include <Library/BaseLib.h>
33
34#include "CommonHeader.h"
35
36#define MIN_COALESCE_ADDR                     (1024 * 1024)
37
38/**
39  Given a pointer to the capsule block list, info on the available system
40  memory, and the size of a buffer, find a free block of memory where a
41  buffer of the given size can be copied to safely.
42
43  @param BlockList   Pointer to head of capsule block descriptors
44  @param MemBase     Pointer to the base of memory in which we want to find free space
45  @param MemSize     The size of the block of memory pointed to by MemBase
46  @param DataSize    How big a free block we want to find
47
48  @return A pointer to a memory block of at least DataSize that lies somewhere
49          between MemBase and (MemBase + MemSize). The memory pointed to does not
50          contain any of the capsule block descriptors or capsule blocks pointed to
51          by the BlockList.
52
53**/
54UINT8 *
55FindFreeMem (
56  EFI_CAPSULE_BLOCK_DESCRIPTOR     *BlockList,
57  UINT8                            *MemBase,
58  UINTN                             MemSize,
59  UINTN                             DataSize
60  );
61
62/**
63  The capsule block descriptors may be fragmented and spread all over memory.
64  To simplify the coalescing of capsule blocks, first coalesce all the
65  capsule block descriptors low in memory.
66
67  The descriptors passed in can be fragmented throughout memory. Here
68  they are relocated into memory to turn them into a contiguous (null
69  terminated) array.
70
71  @param PeiServices    pointer to PEI services table
72  @param BlockList      pointer to the capsule block descriptors
73  @param NumDescriptors number of capsule data block descriptors, whose Length is non-zero.
74  @param MemBase        base of system memory in which we can work
75  @param MemSize        size of the system memory pointed to by MemBase
76
77  @retval NULL    could not relocate the descriptors
78  @retval Pointer to the base of the successfully-relocated block descriptors.
79
80**/
81EFI_CAPSULE_BLOCK_DESCRIPTOR *
82RelocateBlockDescriptors (
83  IN EFI_PEI_SERVICES                  **PeiServices,
84  IN EFI_CAPSULE_BLOCK_DESCRIPTOR      *BlockList,
85  IN UINTN                              NumDescriptors,
86  IN UINT8                             *MemBase,
87  IN UINTN                             MemSize
88  );
89
90/**
91  Check every capsule header.
92
93  @param CapsuleHeader   The pointer to EFI_CAPSULE_HEADER
94
95  @retval FALSE  Capsule is OK
96  @retval TRUE   Capsule is corrupted
97
98**/
99BOOLEAN
100IsCapsuleCorrupted (
101  IN EFI_CAPSULE_HEADER       *CapsuleHeader
102  );
103
104/**
105  Determine if two buffers overlap in memory.
106
107  @param Buff1   pointer to first buffer
108  @param Size1   size of Buff1
109  @param Buff2   pointer to second buffer
110  @param Size2   size of Buff2
111
112  @retval TRUE    Buffers overlap in memory.
113  @retval FALSE   Buffer doesn't overlap.
114
115**/
116BOOLEAN
117IsOverlapped (
118  UINT8     *Buff1,
119  UINTN     Size1,
120  UINT8     *Buff2,
121  UINTN     Size2
122  );
123
124/**
125  Given a pointer to a capsule block descriptor, traverse the list to figure
126  out how many legitimate descriptors there are, and how big the capsule it
127  refers to is.
128
129  @param Desc            Pointer to the capsule block descriptors
130  @param NumDescriptors  Optional pointer to where to return the number of capsule data descriptors, whose Length is non-zero.
131  @param CapsuleSize     Optional pointer to where to return the capsule image size
132  @param CapsuleNumber   Optional pointer to where to return the number of capsule
133
134  @retval EFI_NOT_FOUND   No descriptors containing data in the list
135  @retval EFI_SUCCESS     Return data is valid
136
137**/
138EFI_STATUS
139GetCapsuleInfo (
140  IN EFI_CAPSULE_BLOCK_DESCRIPTOR   *Desc,
141  IN OUT UINTN                      *NumDescriptors OPTIONAL,
142  IN OUT UINTN                      *CapsuleSize OPTIONAL,
143  IN OUT UINTN                      *CapsuleNumber OPTIONAL
144  );
145
146/**
147  Given a pointer to the capsule block list, info on the available system
148  memory, and the size of a buffer, find a free block of memory where a
149  buffer of the given size can be copied to safely.
150
151  @param BlockList   Pointer to head of capsule block descriptors
152  @param MemBase     Pointer to the base of memory in which we want to find free space
153  @param MemSize     The size of the block of memory pointed to by MemBase
154  @param DataSize    How big a free block we want to find
155
156  @return A pointer to a memory block of at least DataSize that lies somewhere
157          between MemBase and (MemBase + MemSize). The memory pointed to does not
158          contain any of the capsule block descriptors or capsule blocks pointed to
159          by the BlockList.
160
161**/
162UINT8 *
163FindFreeMem (
164  EFI_CAPSULE_BLOCK_DESCRIPTOR      *BlockList,
165  UINT8                             *MemBase,
166  UINTN                             MemSize,
167  UINTN                             DataSize
168  )
169{
170  UINTN                           Size;
171  EFI_CAPSULE_BLOCK_DESCRIPTOR    *CurrDesc;
172  EFI_CAPSULE_BLOCK_DESCRIPTOR    *TempDesc;
173  UINT8                           *MemEnd;
174  BOOLEAN                         Failed;
175
176  //
177  // Need at least enough to copy the data to at the end of the buffer, so
178  // say the end is less the data size for easy comparisons here.
179  //
180  MemEnd    = MemBase + MemSize - DataSize;
181  CurrDesc  = BlockList;
182  //
183  // Go through all the descriptor blocks and see if any obstruct the range
184  //
185  while (CurrDesc != NULL) {
186    //
187    // Get the size of this block list and see if it's in the way
188    //
189    Failed    = FALSE;
190    TempDesc  = CurrDesc;
191    Size      = sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
192    while (TempDesc->Length != 0) {
193      Size += sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
194      TempDesc++;
195    }
196
197    if (IsOverlapped (MemBase, DataSize, (UINT8 *) CurrDesc, Size)) {
198      //
199      // Set our new base to the end of this block list and start all over
200      //
201      MemBase   = (UINT8 *) CurrDesc + Size;
202      CurrDesc  = BlockList;
203      if (MemBase > MemEnd) {
204        return NULL;
205      }
206
207      Failed = TRUE;
208    }
209    //
210    // Now go through all the blocks and make sure none are in the way
211    //
212    while ((CurrDesc->Length != 0) && (!Failed)) {
213      if (IsOverlapped (MemBase, DataSize, (UINT8 *) (UINTN) CurrDesc->Union.DataBlock, (UINTN) CurrDesc->Length)) {
214        //
215        // Set our new base to the end of this block and start all over
216        //
217        Failed    = TRUE;
218        MemBase   = (UINT8 *) ((UINTN) CurrDesc->Union.DataBlock) + CurrDesc->Length;
219        CurrDesc  = BlockList;
220        if (MemBase > MemEnd) {
221          return NULL;
222        }
223      }
224      CurrDesc++;
225    }
226    //
227    // Normal continuation -- jump to next block descriptor list
228    //
229    if (!Failed) {
230      CurrDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) CurrDesc->Union.ContinuationPointer;
231    }
232  }
233  return MemBase;
234}
235
236/**
237  Validate capsule by MemoryResource.
238
239  @param MemoryResource  Pointer to the buffer of memory resource descriptor.
240  @param Address         Address to be validated.
241  @param Size            Size to be validated.
242
243  @retval TRUE  No memory resource descriptor reported in HOB list before capsule Coalesce,
244                or it is valid in one MemoryResource.
245          FALSE It is not in any MemoryResource.
246
247**/
248BOOLEAN
249ValidateCapsuleByMemoryResource (
250  IN MEMORY_RESOURCE_DESCRIPTOR     *MemoryResource,
251  IN EFI_PHYSICAL_ADDRESS           Address,
252  IN UINT64                         Size
253  )
254{
255  UINTN             Index;
256
257  //
258  // Sanity Check
259  //
260  if (Size > MAX_ADDRESS) {
261    DEBUG ((EFI_D_ERROR, "ERROR: Size(0x%lx) > MAX_ADDRESS\n", Size));
262    return FALSE;
263  }
264
265  //
266  // Sanity Check
267  //
268  if (Address > (MAX_ADDRESS - Size)) {
269    DEBUG ((EFI_D_ERROR, "ERROR: Address(0x%lx) > (MAX_ADDRESS - Size(0x%lx))\n", Address, Size));
270    return FALSE;
271  }
272
273  if (MemoryResource == NULL) {
274    //
275    // No memory resource descriptor reported in HOB list before capsule Coalesce.
276    //
277    return TRUE;
278  }
279
280  for (Index = 0; MemoryResource[Index].ResourceLength != 0; Index++) {
281    if ((Address >= MemoryResource[Index].PhysicalStart) &&
282        ((Address + Size) <= (MemoryResource[Index].PhysicalStart + MemoryResource[Index].ResourceLength))) {
283      DEBUG ((EFI_D_INFO, "Address(0x%lx) Size(0x%lx) in MemoryResource[0x%x] - Start(0x%lx) Length(0x%lx)\n",
284                          Address, Size,
285                          Index, MemoryResource[Index].PhysicalStart, MemoryResource[Index].ResourceLength));
286      return TRUE;
287    }
288  }
289
290  DEBUG ((EFI_D_ERROR, "ERROR: Address(0x%lx) Size(0x%lx) not in any MemoryResource\n", Address, Size));
291  return FALSE;
292}
293
294/**
295  Check the integrity of the capsule descriptors.
296
297  @param BlockList       Pointer to the capsule descriptors
298  @param MemoryResource  Pointer to the buffer of memory resource descriptor.
299
300  @retval NULL           BlockList is not valid.
301  @retval LastBlockDesc  Last one Block in BlockList
302
303**/
304EFI_CAPSULE_BLOCK_DESCRIPTOR *
305ValidateCapsuleIntegrity (
306  IN EFI_CAPSULE_BLOCK_DESCRIPTOR    *BlockList,
307  IN MEMORY_RESOURCE_DESCRIPTOR      *MemoryResource
308  )
309{
310  EFI_CAPSULE_HEADER             *CapsuleHeader;
311  UINT64                         CapsuleSize;
312  UINTN                          CapsuleCount;
313  EFI_CAPSULE_BLOCK_DESCRIPTOR   *Ptr;
314
315  DEBUG ((EFI_D_INFO, "ValidateCapsuleIntegrity\n"));
316
317  //
318  // Go through the list to look for inconsistencies. Check for:
319  //   * misaligned block descriptors.
320  //   * The first capsule header guid
321  //   * The first capsule header flag
322  //   * The first capsule header HeaderSize
323  //   * Below check will be done in ValidateCapsuleByMemoryResource()
324  //     Length > MAX_ADDRESS
325  //     Ptr + sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR) > MAX_ADDRESS
326  //     DataBlock + Length > MAX_ADDRESS
327  //
328  CapsuleSize  = 0;
329  CapsuleCount = 0;
330  Ptr = BlockList;
331
332  if (!ValidateCapsuleByMemoryResource (MemoryResource, (EFI_PHYSICAL_ADDRESS) (UINTN) Ptr, sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR))) {
333    return NULL;
334  }
335
336  DEBUG ((EFI_D_INFO, "Ptr - 0x%x\n", Ptr));
337  DEBUG ((EFI_D_INFO, "Ptr->Length - 0x%x\n", Ptr->Length));
338  DEBUG ((EFI_D_INFO, "Ptr->Union - 0x%x\n", Ptr->Union.ContinuationPointer));
339  while ((Ptr->Length != 0) || (Ptr->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
340    //
341    // Make sure the descriptor is aligned at UINT64 in memory
342    //
343    if ((UINTN) Ptr & (sizeof(UINT64) - 1)) {
344      DEBUG ((EFI_D_ERROR, "ERROR: BlockList address failed alignment check\n"));
345      return NULL;
346    }
347
348    if (Ptr->Length == 0) {
349      //
350      // Descriptor points to another list of block descriptors somewhere
351      // else.
352      //
353      Ptr = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) Ptr->Union.ContinuationPointer;
354      if (!ValidateCapsuleByMemoryResource (MemoryResource, (EFI_PHYSICAL_ADDRESS) (UINTN) Ptr, sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR))) {
355        return NULL;
356      }
357      DEBUG ((EFI_D_INFO, "Ptr(C) - 0x%x\n", Ptr));
358      DEBUG ((EFI_D_INFO, "Ptr->Length - 0x%x\n", Ptr->Length));
359      DEBUG ((EFI_D_INFO, "Ptr->Union - 0x%x\n", Ptr->Union.ContinuationPointer));
360    } else {
361      if (!ValidateCapsuleByMemoryResource (MemoryResource, Ptr->Union.DataBlock, Ptr->Length)) {
362        return NULL;
363      }
364
365      //
366      //To enhance the reliability of check-up, the first capsule's header is checked here.
367      //More reliabilities check-up will do later.
368      //
369      if (CapsuleSize == 0) {
370        //
371        //Move to the first capsule to check its header.
372        //
373        CapsuleHeader = (EFI_CAPSULE_HEADER*)((UINTN)Ptr->Union.DataBlock);
374        //
375        // Sanity check
376        //
377        if (Ptr->Length < sizeof(EFI_CAPSULE_HEADER)) {
378          DEBUG ((EFI_D_ERROR, "ERROR: Ptr->Length(0x%lx) < sizeof(EFI_CAPSULE_HEADER)\n", Ptr->Length));
379          return NULL;
380        }
381        //
382        // Make sure HeaderSize field is valid
383        //
384        if (CapsuleHeader->HeaderSize > CapsuleHeader->CapsuleImageSize) {
385          DEBUG ((EFI_D_ERROR, "ERROR: CapsuleHeader->HeaderSize(0x%x) > CapsuleHeader->CapsuleImageSize(0x%x)\n", CapsuleHeader->HeaderSize, CapsuleHeader->CapsuleImageSize));
386          return NULL;
387        }
388        if (IsCapsuleCorrupted (CapsuleHeader)) {
389          return NULL;
390        }
391        CapsuleCount ++;
392        CapsuleSize = CapsuleHeader->CapsuleImageSize;
393      }
394
395      if (CapsuleSize >= Ptr->Length) {
396        CapsuleSize = CapsuleSize - Ptr->Length;
397      } else {
398        DEBUG ((EFI_D_ERROR, "ERROR: CapsuleSize(0x%lx) < Ptr->Length(0x%lx)\n", CapsuleSize, Ptr->Length));
399        //
400        // Sanity check
401        //
402        return NULL;
403      }
404
405      //
406      // Move to next BLOCK descriptor
407      //
408      Ptr++;
409      if (!ValidateCapsuleByMemoryResource (MemoryResource, (EFI_PHYSICAL_ADDRESS) (UINTN) Ptr, sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR))) {
410        return NULL;
411      }
412      DEBUG ((EFI_D_INFO, "Ptr(B) - 0x%x\n", Ptr));
413      DEBUG ((EFI_D_INFO, "Ptr->Length - 0x%x\n", Ptr->Length));
414      DEBUG ((EFI_D_INFO, "Ptr->Union - 0x%x\n", Ptr->Union.ContinuationPointer));
415    }
416  }
417
418  if (CapsuleCount == 0) {
419    //
420    // No any capsule is found in BlockList
421    //
422    DEBUG ((EFI_D_ERROR, "ERROR: CapsuleCount(0x%x) == 0\n", CapsuleCount));
423    return NULL;
424  }
425
426  if (CapsuleSize != 0) {
427    //
428    // Capsule data is incomplete.
429    //
430    DEBUG ((EFI_D_ERROR, "ERROR: CapsuleSize(0x%lx) != 0\n", CapsuleSize));
431    return NULL;
432  }
433
434  return Ptr;
435}
436
437/**
438  The capsule block descriptors may be fragmented and spread all over memory.
439  To simplify the coalescing of capsule blocks, first coalesce all the
440  capsule block descriptors low in memory.
441
442  The descriptors passed in can be fragmented throughout memory. Here
443  they are relocated into memory to turn them into a contiguous (null
444  terminated) array.
445
446  @param PeiServices    pointer to PEI services table
447  @param BlockList      pointer to the capsule block descriptors
448  @param NumDescriptors number of capsule data block descriptors, whose Length is non-zero.
449  @param MemBase        base of system memory in which we can work
450  @param MemSize        size of the system memory pointed to by MemBase
451
452  @retval NULL    could not relocate the descriptors
453  @retval Pointer to the base of the successfully-relocated block descriptors.
454
455**/
456EFI_CAPSULE_BLOCK_DESCRIPTOR  *
457RelocateBlockDescriptors (
458  IN EFI_PEI_SERVICES                   **PeiServices,
459  IN EFI_CAPSULE_BLOCK_DESCRIPTOR       *BlockList,
460  IN UINTN                              NumDescriptors,
461  IN UINT8                              *MemBase,
462  IN UINTN                              MemSize
463  )
464{
465  EFI_CAPSULE_BLOCK_DESCRIPTOR   *NewBlockList;
466  EFI_CAPSULE_BLOCK_DESCRIPTOR   *CurrBlockDescHead;
467  EFI_CAPSULE_BLOCK_DESCRIPTOR   *TempBlockDesc;
468  EFI_CAPSULE_BLOCK_DESCRIPTOR   *PrevBlockDescTail;
469  UINTN                          BufferSize;
470  UINT8                          *RelocBuffer;
471  UINTN                          BlockListSize;
472
473  //
474  // Get the info on the blocks and descriptors. Since we're going to move
475  // the descriptors low in memory, adjust the base/size values accordingly here.
476  // NumDescriptors is the number of legit data descriptors, so add one for
477  // a terminator. (Already done by caller, no check is needed.)
478  //
479
480  BufferSize    = NumDescriptors * sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
481  NewBlockList  = (EFI_CAPSULE_BLOCK_DESCRIPTOR *) MemBase;
482  if (MemSize < BufferSize) {
483    return NULL;
484  }
485
486  MemSize -= BufferSize;
487  MemBase += BufferSize;
488  //
489  // Go through all the blocks and make sure none are in the way
490  //
491  TempBlockDesc = BlockList;
492  while (TempBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
493    if (TempBlockDesc->Length == 0) {
494      //
495      // Next block of descriptors
496      //
497      TempBlockDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
498    } else {
499      //
500      // If the capsule data pointed to by this descriptor is in the way,
501      // move it.
502      //
503      if (IsOverlapped (
504            (UINT8 *) NewBlockList,
505            BufferSize,
506            (UINT8 *) (UINTN) TempBlockDesc->Union.DataBlock,
507            (UINTN) TempBlockDesc->Length
508            )) {
509        //
510        // Relocate the block
511        //
512        RelocBuffer = FindFreeMem (BlockList, MemBase, MemSize, (UINTN) TempBlockDesc->Length);
513        if (RelocBuffer == NULL) {
514          return NULL;
515        }
516
517        CopyMem ((VOID *) RelocBuffer, (VOID *) (UINTN) TempBlockDesc->Union.DataBlock, (UINTN) TempBlockDesc->Length);
518        DEBUG ((EFI_D_INFO, "Capsule relocate descriptors from/to/size  0x%lX 0x%lX 0x%lX\n", TempBlockDesc->Union.DataBlock, (UINT64)(UINTN)RelocBuffer, TempBlockDesc->Length));
519        TempBlockDesc->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocBuffer;
520      }
521      TempBlockDesc++;
522    }
523  }
524  //
525  // Now go through all the block descriptors to make sure that they're not
526  // in the memory region we want to copy them to.
527  //
528  CurrBlockDescHead = BlockList;
529  PrevBlockDescTail = NULL;
530  while ((CurrBlockDescHead != NULL) && (CurrBlockDescHead->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
531    //
532    // Get the size of this list then see if it overlaps our low region
533    //
534    TempBlockDesc = CurrBlockDescHead;
535    BlockListSize = sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
536    while (TempBlockDesc->Length != 0) {
537      BlockListSize += sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
538      TempBlockDesc++;
539    }
540
541    if (IsOverlapped (
542          (UINT8 *) NewBlockList,
543          BufferSize,
544          (UINT8 *) CurrBlockDescHead,
545          BlockListSize
546          )) {
547      //
548      // Overlaps, so move it out of the way
549      //
550      RelocBuffer = FindFreeMem (BlockList, MemBase, MemSize, BlockListSize);
551      if (RelocBuffer == NULL) {
552        return NULL;
553      }
554      CopyMem ((VOID *) RelocBuffer, (VOID *) CurrBlockDescHead, BlockListSize);
555      DEBUG ((EFI_D_INFO, "Capsule reloc descriptor block #2\n"));
556      //
557      // Point the previous block's next point to this copied version. If
558      // the tail pointer is null, then this is the first descriptor block.
559      //
560      if (PrevBlockDescTail == NULL) {
561        BlockList = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) RelocBuffer;
562      } else {
563        PrevBlockDescTail->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocBuffer;
564      }
565    }
566    //
567    // Save our new tail and jump to the next block list
568    //
569    PrevBlockDescTail = TempBlockDesc;
570    CurrBlockDescHead = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
571  }
572  //
573  // Cleared out low memory. Now copy the descriptors down there.
574  //
575  TempBlockDesc     = BlockList;
576  CurrBlockDescHead = NewBlockList;
577  while ((TempBlockDesc != NULL) && (TempBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
578    if (TempBlockDesc->Length != 0) {
579      CurrBlockDescHead->Union.DataBlock = TempBlockDesc->Union.DataBlock;
580      CurrBlockDescHead->Length = TempBlockDesc->Length;
581      CurrBlockDescHead++;
582      TempBlockDesc++;
583    } else {
584      TempBlockDesc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) TempBlockDesc->Union.ContinuationPointer;
585    }
586  }
587  //
588  // Null terminate
589  //
590  CurrBlockDescHead->Union.ContinuationPointer   = (EFI_PHYSICAL_ADDRESS) (UINTN) NULL;
591  CurrBlockDescHead->Length = 0;
592  return NewBlockList;
593}
594
595/**
596  Determine if two buffers overlap in memory.
597
598  @param Buff1   pointer to first buffer
599  @param Size1   size of Buff1
600  @param Buff2   pointer to second buffer
601  @param Size2   size of Buff2
602
603  @retval TRUE    Buffers overlap in memory.
604  @retval FALSE   Buffer doesn't overlap.
605
606**/
607BOOLEAN
608IsOverlapped (
609  UINT8     *Buff1,
610  UINTN     Size1,
611  UINT8     *Buff2,
612  UINTN     Size2
613  )
614{
615  //
616  // If buff1's end is less than the start of buff2, then it's ok.
617  // Also, if buff1's start is beyond buff2's end, then it's ok.
618  //
619  if (((Buff1 + Size1) <= Buff2) || (Buff1 >= (Buff2 + Size2))) {
620    return FALSE;
621  }
622
623  return TRUE;
624}
625
626/**
627  Given a pointer to a capsule block descriptor, traverse the list to figure
628  out how many legitimate descriptors there are, and how big the capsule it
629  refers to is.
630
631  @param Desc            Pointer to the capsule block descriptors
632  @param NumDescriptors  Optional pointer to where to return the number of capsule data descriptors, whose Length is non-zero.
633  @param CapsuleSize     Optional pointer to where to return the capsule image size
634  @param CapsuleNumber   Optional pointer to where to return the number of capsule
635
636  @retval EFI_NOT_FOUND   No descriptors containing data in the list
637  @retval EFI_SUCCESS     Return data is valid
638
639**/
640EFI_STATUS
641GetCapsuleInfo (
642  IN EFI_CAPSULE_BLOCK_DESCRIPTOR   *Desc,
643  IN OUT UINTN                      *NumDescriptors OPTIONAL,
644  IN OUT UINTN                      *CapsuleSize OPTIONAL,
645  IN OUT UINTN                      *CapsuleNumber OPTIONAL
646  )
647{
648  UINTN                          Count;
649  UINTN                          Size;
650  UINTN                          Number;
651  UINTN                          ThisCapsuleImageSize;
652  EFI_CAPSULE_HEADER             *CapsuleHeader;
653
654  DEBUG ((EFI_D_INFO, "GetCapsuleInfo enter\n"));
655
656  ASSERT (Desc != NULL);
657
658  Count = 0;
659  Size  = 0;
660  Number = 0;
661  ThisCapsuleImageSize = 0;
662
663  while (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
664    if (Desc->Length == 0) {
665      //
666      // Descriptor points to another list of block descriptors somewhere
667      //
668      Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) Desc->Union.ContinuationPointer;
669    } else {
670      //
671      // Sanity Check
672      // It is needed, because ValidateCapsuleIntegrity() only validate one individual capsule Size.
673      // While here we need check all capsules size.
674      //
675      if (Desc->Length >= (MAX_ADDRESS - Size)) {
676        DEBUG ((EFI_D_ERROR, "ERROR: Desc->Length(0x%lx) >= (MAX_ADDRESS - Size(0x%x))\n", Desc->Length, Size));
677        return EFI_OUT_OF_RESOURCES;
678      }
679      Size += (UINTN) Desc->Length;
680      Count++;
681
682      //
683      // See if this is first capsule's header
684      //
685      if (ThisCapsuleImageSize == 0) {
686        CapsuleHeader = (EFI_CAPSULE_HEADER*)((UINTN)Desc->Union.DataBlock);
687        //
688        // This has been checked in ValidateCapsuleIntegrity()
689        //
690        Number ++;
691        ThisCapsuleImageSize = CapsuleHeader->CapsuleImageSize;
692      }
693
694      //
695      // This has been checked in ValidateCapsuleIntegrity()
696      //
697      ASSERT (ThisCapsuleImageSize >= Desc->Length);
698      ThisCapsuleImageSize = (UINTN)(ThisCapsuleImageSize - Desc->Length);
699
700      //
701      // Move to next
702      //
703      Desc++;
704    }
705  }
706  //
707  // If no descriptors, then fail
708  //
709  if (Count == 0) {
710    DEBUG ((EFI_D_ERROR, "ERROR: Count == 0\n"));
711    return EFI_NOT_FOUND;
712  }
713
714  //
715  // checked in ValidateCapsuleIntegrity()
716  //
717  ASSERT (ThisCapsuleImageSize == 0);
718
719  if (NumDescriptors != NULL) {
720    *NumDescriptors = Count;
721  }
722
723  if (CapsuleSize != NULL) {
724    *CapsuleSize = Size;
725  }
726
727  if (CapsuleNumber != NULL) {
728    *CapsuleNumber = Number;
729  }
730
731  return EFI_SUCCESS;
732}
733
734/**
735  Check every capsule header.
736
737  @param CapsuleHeader   The pointer to EFI_CAPSULE_HEADER
738
739  @retval FALSE  Capsule is OK
740  @retval TRUE   Capsule is corrupted
741
742**/
743BOOLEAN
744IsCapsuleCorrupted (
745  IN EFI_CAPSULE_HEADER       *CapsuleHeader
746  )
747{
748  //
749  //A capsule to be updated across a system reset should contain CAPSULE_FLAGS_PERSIST_ACROSS_RESET.
750  //
751  if ((CapsuleHeader->Flags & CAPSULE_FLAGS_PERSIST_ACROSS_RESET) == 0) {
752    return TRUE;
753  }
754  //
755  //Make sure the flags combination is supported by the platform.
756  //
757  if ((CapsuleHeader->Flags & (CAPSULE_FLAGS_PERSIST_ACROSS_RESET | CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE)) == CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE) {
758    return TRUE;
759  }
760  if ((CapsuleHeader->Flags & (CAPSULE_FLAGS_PERSIST_ACROSS_RESET | CAPSULE_FLAGS_INITIATE_RESET)) == CAPSULE_FLAGS_INITIATE_RESET) {
761    return TRUE;
762  }
763
764  return FALSE;
765}
766
767/**
768  Try to verify the integrity of a capsule test pattern before the
769  capsule gets coalesced. This can be useful in narrowing down
770  where capsule data corruption occurs.
771
772  The test pattern mode fills in memory with a counting UINT32 value.
773  If the capsule is not divided up in a multiple of 4-byte blocks, then
774  things get messy doing the check. Therefore there are some cases
775  here where we just give up and skip the pre-coalesce check.
776
777  @param PeiServices  PEI services table
778  @param Desc         Pointer to capsule descriptors
779**/
780VOID
781CapsuleTestPatternPreCoalesce (
782  IN EFI_PEI_SERVICES              **PeiServices,
783  IN EFI_CAPSULE_BLOCK_DESCRIPTOR  *Desc
784  )
785{
786  UINT32  *TestPtr;
787  UINT32  TestCounter;
788  UINT32  TestSize;
789
790  DEBUG ((EFI_D_INFO, "CapsuleTestPatternPreCoalesce\n"));
791
792  //
793  // Find first data descriptor
794  //
795  while ((Desc->Length == 0) && (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
796    Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) Desc->Union.ContinuationPointer;
797  }
798
799  if (Desc->Union.ContinuationPointer == 0) {
800    return ;
801  }
802  //
803  // First one better be long enough to at least hold the test signature
804  //
805  if (Desc->Length < sizeof (UINT32)) {
806    DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce punted #1\n"));
807    return ;
808  }
809
810  TestPtr = (UINT32 *) (UINTN) Desc->Union.DataBlock;
811  //
812  // 0x54534554 "TEST"
813  //
814  if (*TestPtr != 0x54534554) {
815    return ;
816  }
817
818  TestCounter = 0;
819  TestSize    = (UINT32) Desc->Length - 2 * sizeof (UINT32);
820  //
821  // Skip over the signature and the size fields in the pattern data header
822  //
823  TestPtr += 2;
824  while (1) {
825    if ((TestSize & 0x03) != 0) {
826      DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce punted #2\n"));
827      return ;
828    }
829
830    while (TestSize > 0) {
831      if (*TestPtr != TestCounter) {
832        DEBUG ((EFI_D_INFO, "Capsule test pattern pre-coalesce failed data corruption check\n"));
833        return ;
834      }
835
836      TestSize -= sizeof (UINT32);
837      TestCounter++;
838      TestPtr++;
839    }
840    Desc++;
841    while ((Desc->Length == 0) && (Desc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
842      Desc = (EFI_CAPSULE_BLOCK_DESCRIPTOR  *) (UINTN) Desc->Union.ContinuationPointer;
843    }
844
845    if (Desc->Union.ContinuationPointer == (EFI_PHYSICAL_ADDRESS) (UINTN) NULL) {
846      return ;
847    }
848    TestSize = (UINT32) Desc->Length;
849    TestPtr  = (UINT32 *) (UINTN) Desc->Union.DataBlock;
850  }
851}
852
853/**
854  Checks for the presence of capsule descriptors.
855  Get capsule descriptors from variable CapsuleUpdateData, CapsuleUpdateData1, CapsuleUpdateData2...
856
857  @param BlockListBuffer            Pointer to the buffer of capsule descriptors variables
858  @param MemoryResource             Pointer to the buffer of memory resource descriptor.
859  @param BlockDescriptorList        Pointer to the capsule descriptors list
860
861  @retval EFI_SUCCESS               a valid capsule is present
862  @retval EFI_NOT_FOUND             if a valid capsule is not present
863**/
864EFI_STATUS
865BuildCapsuleDescriptors (
866  IN  EFI_PHYSICAL_ADDRESS            *BlockListBuffer,
867  IN  MEMORY_RESOURCE_DESCRIPTOR      *MemoryResource,
868  OUT EFI_CAPSULE_BLOCK_DESCRIPTOR    **BlockDescriptorList
869  )
870{
871  UINTN                            Index;
872  EFI_CAPSULE_BLOCK_DESCRIPTOR     *LastBlock;
873  EFI_CAPSULE_BLOCK_DESCRIPTOR     *TempBlock;
874  EFI_CAPSULE_BLOCK_DESCRIPTOR     *HeadBlock;
875
876  DEBUG ((EFI_D_INFO, "BuildCapsuleDescriptors enter\n"));
877
878  LastBlock         = NULL;
879  HeadBlock         = NULL;
880  TempBlock         = NULL;
881  Index             = 0;
882
883  while (BlockListBuffer[Index] != 0) {
884    //
885    // Test integrity of descriptors.
886    //
887    if (BlockListBuffer[Index] < MAX_ADDRESS) {
888      TempBlock = ValidateCapsuleIntegrity ((EFI_CAPSULE_BLOCK_DESCRIPTOR *)(UINTN)BlockListBuffer[Index], MemoryResource);
889      if (TempBlock != NULL) {
890        if (LastBlock == NULL) {
891          LastBlock = TempBlock;
892
893          //
894          // Return the base of the block descriptors
895          //
896          HeadBlock = (EFI_CAPSULE_BLOCK_DESCRIPTOR *)(UINTN)BlockListBuffer[Index];
897        } else {
898          //
899          // Combine the different BlockList into single BlockList.
900          //
901          LastBlock->Union.DataBlock = (EFI_PHYSICAL_ADDRESS)(UINTN)BlockListBuffer[Index];
902          LastBlock->Length          = 0;
903          LastBlock                  = TempBlock;
904        }
905      }
906    } else {
907      DEBUG ((EFI_D_ERROR, "ERROR: BlockListBuffer[Index](0x%lx) < MAX_ADDRESS\n", BlockListBuffer[Index]));
908    }
909    Index ++;
910  }
911
912  if (HeadBlock != NULL) {
913    *BlockDescriptorList = HeadBlock;
914    return EFI_SUCCESS;
915  }
916  return EFI_NOT_FOUND;
917}
918
919/**
920  The function to coalesce a fragmented capsule in memory.
921
922  Memory Map for coalesced capsule:
923  MemBase +   ---->+---------------------------+<-----------+
924  MemSize          | ------------------------- |            |
925                   | |  Capsule [Num-1]      | |            |
926                   | ------------------------- |            |
927                   | |  ................     | |            |
928                   | ------------------------- |            |
929                   | |  Capsule [1]          | |            |
930                   | ------------------------- |            |
931                   | |  Capsule [0]          | |            |
932                   | ------------------------- |            |
933                   |    Capsule Image          |            |
934CapsuleImageBase-->+---------------------------+
935                   | ------------------------- |            |
936                   | |  CapsuleOffset[Num-1] | |            |
937                   | ------------------------- |            |
938                   | |  ................     | |        CapsuleSize
939                   | ------------------------- |            |
940                   | |  CapsuleOffset[1]     | |            |
941                   | ------------------------- |            |
942                   | |  CapsuleOffset[0]     | |            |
943                   |---------------------------|            |
944                   | |  CapsuleNumber        | |            |
945                   | ------------------------- |            |
946                   | |  CapsuleAllImageSize  | |            |
947                   | ------------------------- |            |
948                   |    PrivateData            |            |
949     DestPtr  ---->+---------------------------+<-----------+
950                   |                           |            |
951                   |     FreeMem               |        FreeMemSize
952                   |                           |            |
953   FreeMemBase --->+---------------------------+<-----------+
954                   |    Terminator             |
955                   +---------------------------+
956                   |    BlockDescriptor n      |
957                   +---------------------------+
958                   |    .................      |
959                   +---------------------------+
960                   |    BlockDescriptor 1      |
961                   +---------------------------+
962                   |    BlockDescriptor 0      |
963                   +---------------------------+
964                   |    PrivateDataDesc 0      |
965      MemBase ---->+---------------------------+<----- BlockList
966
967  Caution: This function may receive untrusted input.
968  The capsule data is external input, so this routine will do basic validation before
969  coalesce capsule data into memory.
970
971  @param PeiServices        General purpose services available to every PEIM.
972  @param BlockListBuffer    Pointer to the buffer of Capsule Descriptor Variables.
973  @param MemoryResource     Pointer to the buffer of memory resource descriptor.
974  @param MemoryBase         Pointer to the base of a block of memory that we can walk
975                            all over while trying to coalesce our buffers.
976                            On output, this variable will hold the base address of
977                            a coalesced capsule.
978  @param MemorySize         Size of the memory region pointed to by MemoryBase.
979                            On output, this variable will contain the size of the
980                            coalesced capsule.
981
982  @retval EFI_NOT_FOUND     If we could not find the capsule descriptors.
983
984  @retval EFI_BUFFER_TOO_SMALL
985                            If we could not coalesce the capsule in the memory
986                            region provided to us.
987
988  @retval EFI_SUCCESS       Processed the capsule successfully.
989**/
990EFI_STATUS
991EFIAPI
992CapsuleDataCoalesce (
993  IN EFI_PEI_SERVICES                **PeiServices,
994  IN EFI_PHYSICAL_ADDRESS            *BlockListBuffer,
995  IN MEMORY_RESOURCE_DESCRIPTOR      *MemoryResource,
996  IN OUT VOID                        **MemoryBase,
997  IN OUT UINTN                       *MemorySize
998  )
999{
1000  VOID                           *NewCapsuleBase;
1001  VOID                           *CapsuleImageBase;
1002  UINTN                          CapsuleIndex;
1003  UINT8                          *FreeMemBase;
1004  UINT8                          *DestPtr;
1005  UINTN                          DestLength;
1006  UINT8                          *RelocPtr;
1007  UINTN                          CapsuleTimes;
1008  UINT64                         SizeLeft;
1009  UINT64                         CapsuleImageSize;
1010  UINTN                          CapsuleSize;
1011  UINTN                          CapsuleNumber;
1012  UINTN                          DescriptorsSize;
1013  UINTN                          FreeMemSize;
1014  UINTN                          NumDescriptors;
1015  BOOLEAN                        CapsuleBeginFlag;
1016  EFI_STATUS                     Status;
1017  EFI_CAPSULE_HEADER             *CapsuleHeader;
1018  EFI_CAPSULE_PEIM_PRIVATE_DATA  PrivateData;
1019  EFI_CAPSULE_PEIM_PRIVATE_DATA  *PrivateDataPtr;
1020  EFI_CAPSULE_BLOCK_DESCRIPTOR   *BlockList;
1021  EFI_CAPSULE_BLOCK_DESCRIPTOR   *CurrentBlockDesc;
1022  EFI_CAPSULE_BLOCK_DESCRIPTOR   *TempBlockDesc;
1023  EFI_CAPSULE_BLOCK_DESCRIPTOR   PrivateDataDesc[2];
1024
1025  DEBUG ((EFI_D_INFO, "CapsuleDataCoalesce enter\n"));
1026
1027  CapsuleIndex     = 0;
1028  SizeLeft         = 0;
1029  CapsuleTimes     = 0;
1030  CapsuleImageSize = 0;
1031  PrivateDataPtr   = NULL;
1032  CapsuleHeader    = NULL;
1033  CapsuleBeginFlag = TRUE;
1034  CapsuleSize      = 0;
1035  NumDescriptors   = 0;
1036
1037  //
1038  // Build capsule descriptors list
1039  //
1040  Status = BuildCapsuleDescriptors (BlockListBuffer, MemoryResource, &BlockList);
1041  if (EFI_ERROR (Status)) {
1042    return Status;
1043  }
1044
1045  DEBUG_CODE (
1046    CapsuleTestPatternPreCoalesce (PeiServices, BlockList);
1047  );
1048
1049  //
1050  // Get the size of our descriptors and the capsule size. GetCapsuleInfo()
1051  // returns the number of descriptors that actually point to data, so add
1052  // one for a terminator. Do that below.
1053  //
1054  Status = GetCapsuleInfo (BlockList, &NumDescriptors, &CapsuleSize, &CapsuleNumber);
1055  if (EFI_ERROR (Status)) {
1056    return Status;
1057  }
1058  DEBUG ((EFI_D_INFO, "CapsuleSize - 0x%x\n", CapsuleSize));
1059  DEBUG ((EFI_D_INFO, "CapsuleNumber - 0x%x\n", CapsuleNumber));
1060  DEBUG ((EFI_D_INFO, "NumDescriptors - 0x%x\n", NumDescriptors));
1061  if ((CapsuleSize == 0) || (NumDescriptors == 0) || (CapsuleNumber == 0)) {
1062    return EFI_NOT_FOUND;
1063  }
1064
1065  if (CapsuleNumber - 1 >= (MAX_ADDRESS - (sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA)  + sizeof(UINT64))) / sizeof(UINT64)) {
1066    DEBUG ((EFI_D_ERROR, "ERROR: CapsuleNumber - 0x%x\n", CapsuleNumber));
1067    return EFI_BUFFER_TOO_SMALL;
1068  }
1069
1070  //
1071  // Initialize our local copy of private data. When we're done, we'll create a
1072  // descriptor for it as well so that it can be put into free memory without
1073  // trashing anything.
1074  //
1075  PrivateData.Signature           = EFI_CAPSULE_PEIM_PRIVATE_DATA_SIGNATURE;
1076  PrivateData.CapsuleAllImageSize = (UINT64) CapsuleSize;
1077  PrivateData.CapsuleNumber       = (UINT64) CapsuleNumber;
1078  PrivateData.CapsuleOffset[0]    = 0;
1079  //
1080  // NOTE: Only data in sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) is valid, CapsuleOffset field is uninitialized at this moment.
1081  // The code sets partial length here for Descriptor.Length check, but later it will use full length to reserve those PrivateData region.
1082  //
1083  PrivateDataDesc[0].Union.DataBlock  = (EFI_PHYSICAL_ADDRESS) (UINTN) &PrivateData;
1084  PrivateDataDesc[0].Length           = sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA);
1085  PrivateDataDesc[1].Union.DataBlock  = (EFI_PHYSICAL_ADDRESS) (UINTN) BlockList;
1086  PrivateDataDesc[1].Length           = 0;
1087  //
1088  // Add PrivateDataDesc[0] in beginning, as it is new descriptor. PrivateDataDesc[1] is NOT needed.
1089  // In addition, one NULL terminator is added in the end. See RelocateBlockDescriptors().
1090  //
1091  NumDescriptors  += 2;
1092  //
1093  // Sanity check
1094  //
1095  if (CapsuleSize >= (MAX_ADDRESS - (sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) + (CapsuleNumber - 1) * sizeof(UINT64) + sizeof(UINT64)))) {
1096    DEBUG ((EFI_D_ERROR, "ERROR: CapsuleSize - 0x%x\n", CapsuleSize));
1097    return EFI_BUFFER_TOO_SMALL;
1098  }
1099  //
1100  // Need add sizeof(UINT64) for PrivateData alignment
1101  //
1102  CapsuleSize     += sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) + (CapsuleNumber - 1) * sizeof(UINT64) + sizeof(UINT64);
1103  BlockList        = PrivateDataDesc;
1104  //
1105  // Sanity check
1106  //
1107  if (NumDescriptors >= (MAX_ADDRESS / sizeof(EFI_CAPSULE_BLOCK_DESCRIPTOR))) {
1108    DEBUG ((EFI_D_ERROR, "ERROR: NumDescriptors - 0x%x\n", NumDescriptors));
1109    return EFI_BUFFER_TOO_SMALL;
1110  }
1111  DescriptorsSize  = NumDescriptors * sizeof (EFI_CAPSULE_BLOCK_DESCRIPTOR);
1112  //
1113  // Sanity check
1114  //
1115  if (DescriptorsSize >= (MAX_ADDRESS - CapsuleSize)) {
1116    DEBUG ((EFI_D_ERROR, "ERROR: DescriptorsSize - 0x%lx, CapsuleSize - 0x%lx\n", (UINT64)DescriptorsSize, (UINT64)CapsuleSize));
1117    return EFI_BUFFER_TOO_SMALL;
1118  }
1119
1120  //
1121  // Don't go below some min address. If the base is below it,
1122  // then move it up and adjust the size accordingly.
1123  //
1124  DEBUG ((EFI_D_INFO, "Capsule Memory range from 0x%8X to 0x%8X\n", (UINTN) *MemoryBase, (UINTN)*MemoryBase + *MemorySize));
1125  if ((UINTN)*MemoryBase < (UINTN) MIN_COALESCE_ADDR) {
1126    if (((UINTN)*MemoryBase + *MemorySize) < (UINTN) MIN_COALESCE_ADDR) {
1127      DEBUG ((EFI_D_ERROR, "ERROR: *MemoryBase + *MemorySize - 0x%x\n", (UINTN)*MemoryBase + *MemorySize));
1128      return EFI_BUFFER_TOO_SMALL;
1129    } else {
1130      *MemorySize = *MemorySize - ((UINTN) MIN_COALESCE_ADDR - (UINTN) *MemoryBase);
1131      *MemoryBase = (VOID *) (UINTN) MIN_COALESCE_ADDR;
1132    }
1133  }
1134
1135  if (*MemorySize <= (CapsuleSize + DescriptorsSize)) {
1136    DEBUG ((EFI_D_ERROR, "ERROR: CapsuleSize + DescriptorsSize - 0x%x\n", CapsuleSize + DescriptorsSize));
1137    return EFI_BUFFER_TOO_SMALL;
1138  }
1139
1140  FreeMemBase = *MemoryBase;
1141  FreeMemSize = *MemorySize;
1142  DEBUG ((EFI_D_INFO, "Capsule Free Memory from 0x%8X to 0x%8X\n", (UINTN) FreeMemBase, (UINTN) FreeMemBase + FreeMemSize));
1143
1144  //
1145  // Relocate all the block descriptors to low memory to make further
1146  // processing easier.
1147  //
1148  BlockList = RelocateBlockDescriptors (PeiServices, BlockList, NumDescriptors, FreeMemBase, FreeMemSize);
1149  if (BlockList == NULL) {
1150    //
1151    // Not enough room to relocate the descriptors
1152    //
1153    return EFI_BUFFER_TOO_SMALL;
1154  }
1155
1156  //
1157  // Take the top of memory for the capsule. UINT64 align up.
1158  //
1159  DestPtr         = FreeMemBase + FreeMemSize - CapsuleSize;
1160  DestPtr         = (UINT8 *) (((UINTN)DestPtr + sizeof (UINT64) - 1) & ~(sizeof (UINT64) - 1));
1161  FreeMemBase     = (UINT8 *) BlockList + DescriptorsSize;
1162  FreeMemSize     = (UINTN) DestPtr - (UINTN) FreeMemBase;
1163  NewCapsuleBase  = (VOID *) DestPtr;
1164  CapsuleImageBase = (UINT8 *)NewCapsuleBase + sizeof(EFI_CAPSULE_PEIM_PRIVATE_DATA) + (CapsuleNumber - 1) * sizeof(UINT64);
1165
1166  PrivateDataPtr = (EFI_CAPSULE_PEIM_PRIVATE_DATA *) NewCapsuleBase;
1167
1168  //
1169  // Move all the blocks to the top (high) of memory.
1170  // Relocate all the obstructing blocks. Note that the block descriptors
1171  // were coalesced when they were relocated, so we can just ++ the pointer.
1172  //
1173  CurrentBlockDesc = BlockList;
1174  while ((CurrentBlockDesc->Length != 0) || (CurrentBlockDesc->Union.ContinuationPointer != (EFI_PHYSICAL_ADDRESS) (UINTN) NULL)) {
1175    if (CapsuleTimes == 0) {
1176      //
1177      // The first entry is the block descriptor for EFI_CAPSULE_PEIM_PRIVATE_DATA.
1178      // CapsuleOffset field is uninitialized at this time. No need copy it, but need to reserve for future use.
1179      //
1180      ASSERT (CurrentBlockDesc->Union.DataBlock == (UINT64)(UINTN)&PrivateData);
1181      DestLength = sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) + (CapsuleNumber - 1) * sizeof(UINT64);
1182    } else {
1183      DestLength = (UINTN)CurrentBlockDesc->Length;
1184    }
1185    //
1186    // See if any of the remaining capsule blocks are in the way
1187    //
1188    TempBlockDesc = CurrentBlockDesc;
1189    while (TempBlockDesc->Length != 0) {
1190      //
1191      // Is this block in the way of where we want to copy the current descriptor to?
1192      //
1193      if (IsOverlapped (
1194            (UINT8 *) DestPtr,
1195            (UINTN) DestLength,
1196            (UINT8 *) (UINTN) TempBlockDesc->Union.DataBlock,
1197            (UINTN) TempBlockDesc->Length
1198            )) {
1199        //
1200        // Relocate the block
1201        //
1202        RelocPtr = FindFreeMem (BlockList, FreeMemBase, FreeMemSize, (UINTN) TempBlockDesc->Length);
1203        if (RelocPtr == NULL) {
1204          return EFI_BUFFER_TOO_SMALL;
1205        }
1206
1207        CopyMem ((VOID *) RelocPtr, (VOID *) (UINTN) TempBlockDesc->Union.DataBlock, (UINTN) TempBlockDesc->Length);
1208        DEBUG ((EFI_D_INFO, "Capsule reloc data block from 0x%8X to 0x%8X with size 0x%8X\n",
1209                (UINTN) TempBlockDesc->Union.DataBlock, (UINTN) RelocPtr, (UINTN) TempBlockDesc->Length));
1210
1211        TempBlockDesc->Union.DataBlock = (EFI_PHYSICAL_ADDRESS) (UINTN) RelocPtr;
1212      }
1213      //
1214      // Next descriptor
1215      //
1216      TempBlockDesc++;
1217    }
1218    //
1219    // Ok, we made it through. Copy the block.
1220    // we just support greping one capsule from the lists of block descs list.
1221    //
1222    CapsuleTimes ++;
1223    //
1224    //Skip the first block descriptor that filled with EFI_CAPSULE_PEIM_PRIVATE_DATA
1225    //
1226    if (CapsuleTimes > 1) {
1227      //
1228      //For every capsule entry point, check its header to determine whether to relocate it.
1229      //If it is invalid, skip it and move on to the next capsule. If it is valid, relocate it.
1230      //
1231      if (CapsuleBeginFlag) {
1232        CapsuleBeginFlag  = FALSE;
1233        CapsuleHeader     = (EFI_CAPSULE_HEADER*)(UINTN)CurrentBlockDesc->Union.DataBlock;
1234        SizeLeft          = CapsuleHeader->CapsuleImageSize;
1235
1236        //
1237        // No more check here is needed, because IsCapsuleCorrupted() already in ValidateCapsuleIntegrity()
1238        //
1239        ASSERT (CapsuleIndex < CapsuleNumber);
1240
1241        //
1242        // Relocate this capsule
1243        //
1244        CapsuleImageSize += SizeLeft;
1245        //
1246        // Cache the begin offset of this capsule
1247        //
1248        ASSERT (PrivateDataPtr->Signature == EFI_CAPSULE_PEIM_PRIVATE_DATA_SIGNATURE);
1249        ASSERT ((UINTN)DestPtr >= (UINTN)CapsuleImageBase);
1250        PrivateDataPtr->CapsuleOffset[CapsuleIndex++] = (UINT64)((UINTN)DestPtr - (UINTN)CapsuleImageBase);
1251      }
1252
1253      //
1254      // Below ASSERT is checked in ValidateCapsuleIntegrity()
1255      //
1256      ASSERT (CurrentBlockDesc->Length <= SizeLeft);
1257
1258      CopyMem ((VOID *) DestPtr, (VOID *) (UINTN) (CurrentBlockDesc->Union.DataBlock), (UINTN)CurrentBlockDesc->Length);
1259      DEBUG ((EFI_D_INFO, "Capsule coalesce block no.0x%lX from 0x%lX to 0x%lX with size 0x%lX\n",(UINT64)CapsuleTimes,
1260             CurrentBlockDesc->Union.DataBlock, (UINT64)(UINTN)DestPtr, CurrentBlockDesc->Length));
1261      DestPtr += CurrentBlockDesc->Length;
1262      SizeLeft -= CurrentBlockDesc->Length;
1263
1264      if (SizeLeft == 0) {
1265        //
1266        //Here is the end of the current capsule image.
1267        //
1268        CapsuleBeginFlag = TRUE;
1269      }
1270    } else {
1271      //
1272      // The first entry is the block descriptor for EFI_CAPSULE_PEIM_PRIVATE_DATA.
1273      // CapsuleOffset field is uninitialized at this time. No need copy it, but need to reserve for future use.
1274      //
1275      ASSERT (CurrentBlockDesc->Length == sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA));
1276      ASSERT ((UINTN)DestPtr == (UINTN)NewCapsuleBase);
1277      CopyMem ((VOID *) DestPtr, (VOID *) (UINTN) CurrentBlockDesc->Union.DataBlock, (UINTN) CurrentBlockDesc->Length);
1278      DestPtr += sizeof (EFI_CAPSULE_PEIM_PRIVATE_DATA) + (CapsuleNumber - 1) * sizeof(UINT64);
1279    }
1280    //
1281    //Walk through the block descriptor list.
1282    //
1283    CurrentBlockDesc++;
1284  }
1285  //
1286  // We return the base of memory we want reserved, and the size.
1287  // The memory peim should handle it appropriately from there.
1288  //
1289  *MemorySize = (UINTN) CapsuleSize;
1290  *MemoryBase = (VOID *) NewCapsuleBase;
1291
1292  ASSERT (PrivateDataPtr->Signature == EFI_CAPSULE_PEIM_PRIVATE_DATA_SIGNATURE);
1293  ASSERT (PrivateDataPtr->CapsuleAllImageSize == CapsuleImageSize);
1294  ASSERT (PrivateDataPtr->CapsuleNumber == CapsuleIndex);
1295
1296  return EFI_SUCCESS;
1297}
1298