]> git.proxmox.com Git - mirror_edk2.git/blame - SecurityPkg/Library/DxeImageVerificationLib/DxeImageVerificationLib.c
SecurityPkg/DxeImageVerificationLib: Differentiate error/search result (1) (CVE-2019...
[mirror_edk2.git] / SecurityPkg / Library / DxeImageVerificationLib / DxeImageVerificationLib.c
CommitLineData
0c18794e 1/** @file\r
3cd2484e 2 Implement image verification services for secure boot service\r
0c18794e 3\r
dc204d5a
JY
4 Caution: This file requires additional review when modified.\r
5 This library will have external input - PE/COFF image.\r
6 This external input must be validated carefully to avoid security issue like\r
7 buffer overflow, integer overflow.\r
8\r
9 DxeImageVerificationLibImageRead() function will make sure the PE/COFF image content\r
10 read is within the image buffer.\r
11\r
12 DxeImageVerificationHandler(), HashPeImageByType(), HashPeImage() function will accept\r
13 untrusted PE/COFF image and validate its data structure within this image buffer before use.\r
14\r
b3548d32 15Copyright (c) 2009 - 2018, Intel Corporation. All rights reserved.<BR>\r
531c89a1 16(C) Copyright 2016 Hewlett Packard Enterprise Development LP<BR>\r
289b714b 17SPDX-License-Identifier: BSD-2-Clause-Patent\r
0c18794e 18\r
19**/\r
20\r
21#include "DxeImageVerificationLib.h"\r
22\r
dc204d5a
JY
23//\r
24// Caution: This is used by a function which may receive untrusted input.\r
25// These global variables hold PE/COFF image data, and they should be validated before use.\r
26//\r
0c18794e 27EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION mNtHeader;\r
45bf2c47 28UINT32 mPeCoffHeaderOffset;\r
0c18794e 29EFI_GUID mCertType;\r
30\r
dc204d5a
JY
31//\r
32// Information on current PE/COFF image\r
33//\r
34UINTN mImageSize;\r
35UINT8 *mImageBase = NULL;\r
36UINT8 mImageDigest[MAX_DIGEST_SIZE];\r
37UINTN mImageDigestSize;\r
38\r
0c18794e 39//\r
40// Notify string for authorization UI.\r
41//\r
42CHAR16 mNotifyString1[MAX_NOTIFY_STRING_LEN] = L"Image verification pass but not found in authorized database!";\r
43CHAR16 mNotifyString2[MAX_NOTIFY_STRING_LEN] = L"Launch this image anyway? (Yes/Defer/No)";\r
44//\r
45// Public Exponent of RSA Key.\r
46//\r
47CONST UINT8 mRsaE[] = { 0x01, 0x00, 0x01 };\r
48\r
49\r
50//\r
51// OID ASN.1 Value for Hash Algorithms\r
52//\r
53UINT8 mHashOidValue[] = {\r
0c18794e 54 0x2B, 0x0E, 0x03, 0x02, 0x1A, // OBJ_sha1\r
55 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x04, // OBJ_sha224\r
56 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x01, // OBJ_sha256\r
57 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x02, // OBJ_sha384\r
58 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x03, // OBJ_sha512\r
59 };\r
60\r
61HASH_TABLE mHash[] = {\r
20333c6d
QL
62 { L"SHA1", 20, &mHashOidValue[0], 5, Sha1GetContextSize, Sha1Init, Sha1Update, Sha1Final },\r
63 { L"SHA224", 28, &mHashOidValue[5], 9, NULL, NULL, NULL, NULL },\r
64 { L"SHA256", 32, &mHashOidValue[14], 9, Sha256GetContextSize, Sha256Init, Sha256Update, Sha256Final},\r
65 { L"SHA384", 48, &mHashOidValue[23], 9, Sha384GetContextSize, Sha384Init, Sha384Update, Sha384Final},\r
66 { L"SHA512", 64, &mHashOidValue[32], 9, Sha512GetContextSize, Sha512Init, Sha512Update, Sha512Final}\r
0c18794e 67};\r
68\r
531c89a1
CS
69EFI_STRING mHashTypeStr;\r
70\r
c1d93242
JY
71/**\r
72 SecureBoot Hook for processing image verification.\r
73\r
74 @param[in] VariableName Name of Variable to be found.\r
75 @param[in] VendorGuid Variable vendor GUID.\r
76 @param[in] DataSize Size of Data found. If size is less than the\r
77 data, this value contains the required size.\r
78 @param[in] Data Data pointer.\r
79\r
80**/\r
81VOID\r
82EFIAPI\r
83SecureBootHook (\r
84 IN CHAR16 *VariableName,\r
85 IN EFI_GUID *VendorGuid,\r
86 IN UINTN DataSize,\r
87 IN VOID *Data\r
88 );\r
89\r
28186d45
ED
90/**\r
91 Reads contents of a PE/COFF image in memory buffer.\r
92\r
dc204d5a
JY
93 Caution: This function may receive untrusted input.\r
94 PE/COFF image is external input, so this function will make sure the PE/COFF image content\r
95 read is within the image buffer.\r
96\r
28186d45
ED
97 @param FileHandle Pointer to the file handle to read the PE/COFF image.\r
98 @param FileOffset Offset into the PE/COFF image to begin the read operation.\r
20333c6d 99 @param ReadSize On input, the size in bytes of the requested read operation.\r
28186d45
ED
100 On output, the number of bytes actually read.\r
101 @param Buffer Output buffer that contains the data read from the PE/COFF image.\r
20333c6d
QL
102\r
103 @retval EFI_SUCCESS The specified portion of the PE/COFF image was read and the size\r
28186d45
ED
104**/\r
105EFI_STATUS\r
106EFIAPI\r
e0192326 107DxeImageVerificationLibImageRead (\r
28186d45
ED
108 IN VOID *FileHandle,\r
109 IN UINTN FileOffset,\r
110 IN OUT UINTN *ReadSize,\r
111 OUT VOID *Buffer\r
112 )\r
113{\r
114 UINTN EndPosition;\r
115\r
116 if (FileHandle == NULL || ReadSize == NULL || Buffer == NULL) {\r
20333c6d 117 return EFI_INVALID_PARAMETER;\r
28186d45
ED
118 }\r
119\r
120 if (MAX_ADDRESS - FileOffset < *ReadSize) {\r
121 return EFI_INVALID_PARAMETER;\r
122 }\r
123\r
124 EndPosition = FileOffset + *ReadSize;\r
125 if (EndPosition > mImageSize) {\r
126 *ReadSize = (UINT32)(mImageSize - FileOffset);\r
127 }\r
128\r
129 if (FileOffset >= mImageSize) {\r
130 *ReadSize = 0;\r
131 }\r
132\r
133 CopyMem (Buffer, (UINT8 *)((UINTN) FileHandle + FileOffset), *ReadSize);\r
134\r
135 return EFI_SUCCESS;\r
136}\r
137\r
0c18794e 138\r
139/**\r
140 Get the image type.\r
141\r
142 @param[in] File This is a pointer to the device path of the file that is\r
45bf2c47 143 being dispatched.\r
0c18794e 144\r
45bf2c47 145 @return UINT32 Image Type\r
0c18794e 146\r
147**/\r
148UINT32\r
149GetImageType (\r
150 IN CONST EFI_DEVICE_PATH_PROTOCOL *File\r
151 )\r
152{\r
153 EFI_STATUS Status;\r
45bf2c47 154 EFI_HANDLE DeviceHandle;\r
0c18794e 155 EFI_DEVICE_PATH_PROTOCOL *TempDevicePath;\r
156 EFI_BLOCK_IO_PROTOCOL *BlockIo;\r
157\r
5db28a67
LG
158 if (File == NULL) {\r
159 return IMAGE_UNKNOWN;\r
160 }\r
161\r
0c18794e 162 //\r
163 // First check to see if File is from a Firmware Volume\r
164 //\r
165 DeviceHandle = NULL;\r
45bf2c47 166 TempDevicePath = (EFI_DEVICE_PATH_PROTOCOL *) File;\r
0c18794e 167 Status = gBS->LocateDevicePath (\r
168 &gEfiFirmwareVolume2ProtocolGuid,\r
169 &TempDevicePath,\r
170 &DeviceHandle\r
171 );\r
172 if (!EFI_ERROR (Status)) {\r
173 Status = gBS->OpenProtocol (\r
174 DeviceHandle,\r
175 &gEfiFirmwareVolume2ProtocolGuid,\r
176 NULL,\r
177 NULL,\r
178 NULL,\r
179 EFI_OPEN_PROTOCOL_TEST_PROTOCOL\r
180 );\r
181 if (!EFI_ERROR (Status)) {\r
182 return IMAGE_FROM_FV;\r
183 }\r
184 }\r
185\r
186 //\r
187 // Next check to see if File is from a Block I/O device\r
188 //\r
189 DeviceHandle = NULL;\r
45bf2c47 190 TempDevicePath = (EFI_DEVICE_PATH_PROTOCOL *) File;\r
0c18794e 191 Status = gBS->LocateDevicePath (\r
192 &gEfiBlockIoProtocolGuid,\r
193 &TempDevicePath,\r
194 &DeviceHandle\r
195 );\r
196 if (!EFI_ERROR (Status)) {\r
197 BlockIo = NULL;\r
198 Status = gBS->OpenProtocol (\r
199 DeviceHandle,\r
200 &gEfiBlockIoProtocolGuid,\r
201 (VOID **) &BlockIo,\r
202 NULL,\r
203 NULL,\r
204 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
205 );\r
206 if (!EFI_ERROR (Status) && BlockIo != NULL) {\r
207 if (BlockIo->Media != NULL) {\r
208 if (BlockIo->Media->RemovableMedia) {\r
209 //\r
210 // Block I/O is present and specifies the media is removable\r
211 //\r
212 return IMAGE_FROM_REMOVABLE_MEDIA;\r
213 } else {\r
214 //\r
215 // Block I/O is present and specifies the media is not removable\r
216 //\r
217 return IMAGE_FROM_FIXED_MEDIA;\r
218 }\r
219 }\r
220 }\r
221 }\r
222\r
223 //\r
45bf2c47 224 // File is not in a Firmware Volume or on a Block I/O device, so check to see if\r
0c18794e 225 // the device path supports the Simple File System Protocol.\r
226 //\r
227 DeviceHandle = NULL;\r
45bf2c47 228 TempDevicePath = (EFI_DEVICE_PATH_PROTOCOL *) File;\r
0c18794e 229 Status = gBS->LocateDevicePath (\r
230 &gEfiSimpleFileSystemProtocolGuid,\r
231 &TempDevicePath,\r
232 &DeviceHandle\r
233 );\r
234 if (!EFI_ERROR (Status)) {\r
235 //\r
236 // Simple File System is present without Block I/O, so assume media is fixed.\r
237 //\r
238 return IMAGE_FROM_FIXED_MEDIA;\r
239 }\r
240\r
241 //\r
242 // File is not from an FV, Block I/O or Simple File System, so the only options\r
45bf2c47 243 // left are a PCI Option ROM and a Load File Protocol such as a PXE Boot from a NIC.\r
0c18794e 244 //\r
45bf2c47 245 TempDevicePath = (EFI_DEVICE_PATH_PROTOCOL *) File;\r
0c18794e 246 while (!IsDevicePathEndType (TempDevicePath)) {\r
247 switch (DevicePathType (TempDevicePath)) {\r
45bf2c47 248\r
0c18794e 249 case MEDIA_DEVICE_PATH:\r
250 if (DevicePathSubType (TempDevicePath) == MEDIA_RELATIVE_OFFSET_RANGE_DP) {\r
251 return IMAGE_FROM_OPTION_ROM;\r
252 }\r
253 break;\r
254\r
255 case MESSAGING_DEVICE_PATH:\r
256 if (DevicePathSubType(TempDevicePath) == MSG_MAC_ADDR_DP) {\r
257 return IMAGE_FROM_REMOVABLE_MEDIA;\r
45bf2c47 258 }\r
0c18794e 259 break;\r
260\r
261 default:\r
262 break;\r
263 }\r
264 TempDevicePath = NextDevicePathNode (TempDevicePath);\r
265 }\r
45bf2c47 266 return IMAGE_UNKNOWN;\r
0c18794e 267}\r
268\r
269/**\r
69f8bb52 270 Calculate hash of Pe/Coff image based on the authenticode image hashing in\r
0c18794e 271 PE/COFF Specification 8.0 Appendix A\r
b3548d32 272\r
dc204d5a
JY
273 Caution: This function may receive untrusted input.\r
274 PE/COFF image is external input, so this function will validate its data structure\r
275 within this image buffer before use.\r
276\r
b3548d32 277 Notes: PE/COFF image has been checked by BasePeCoffLib PeCoffLoaderGetImageInfo() in\r
89fb5aef
LG
278 its caller function DxeImageVerificationHandler().\r
279\r
0c18794e 280 @param[in] HashAlg Hash algorithm type.\r
45bf2c47 281\r
0c18794e 282 @retval TRUE Successfully hash image.\r
283 @retval FALSE Fail in hash image.\r
284\r
285**/\r
45bf2c47 286BOOLEAN\r
0c18794e 287HashPeImage (\r
288 IN UINT32 HashAlg\r
289 )\r
290{\r
291 BOOLEAN Status;\r
0c18794e 292 EFI_IMAGE_SECTION_HEADER *Section;\r
293 VOID *HashCtx;\r
294 UINTN CtxSize;\r
295 UINT8 *HashBase;\r
296 UINTN HashSize;\r
297 UINTN SumOfBytesHashed;\r
298 EFI_IMAGE_SECTION_HEADER *SectionHeader;\r
299 UINTN Index;\r
300 UINTN Pos;\r
551d8081 301 UINT32 CertSize;\r
302 UINT32 NumberOfRvaAndSizes;\r
45bf2c47 303\r
0c18794e 304 HashCtx = NULL;\r
305 SectionHeader = NULL;\r
306 Status = FALSE;\r
307\r
20333c6d 308 if ((HashAlg >= HASHALG_MAX)) {\r
0c18794e 309 return FALSE;\r
310 }\r
45bf2c47 311\r
0c18794e 312 //\r
313 // Initialize context of hash.\r
314 //\r
315 ZeroMem (mImageDigest, MAX_DIGEST_SIZE);\r
316\r
20333c6d
QL
317 switch (HashAlg) {\r
318 case HASHALG_SHA1:\r
319 mImageDigestSize = SHA1_DIGEST_SIZE;\r
320 mCertType = gEfiCertSha1Guid;\r
321 break;\r
322\r
323 case HASHALG_SHA256:\r
324 mImageDigestSize = SHA256_DIGEST_SIZE;\r
325 mCertType = gEfiCertSha256Guid;\r
326 break;\r
327\r
328 case HASHALG_SHA384:\r
329 mImageDigestSize = SHA384_DIGEST_SIZE;\r
330 mCertType = gEfiCertSha384Guid;\r
331 break;\r
332\r
333 case HASHALG_SHA512:\r
334 mImageDigestSize = SHA512_DIGEST_SIZE;\r
335 mCertType = gEfiCertSha512Guid;\r
336 break;\r
337\r
338 default:\r
0c18794e 339 return FALSE;\r
340 }\r
341\r
531c89a1 342 mHashTypeStr = mHash[HashAlg].Name;\r
0c18794e 343 CtxSize = mHash[HashAlg].GetContextSize();\r
45bf2c47 344\r
0c18794e 345 HashCtx = AllocatePool (CtxSize);\r
570b3d1a 346 if (HashCtx == NULL) {\r
347 return FALSE;\r
348 }\r
0c18794e 349\r
350 // 1. Load the image header into memory.\r
351\r
352 // 2. Initialize a SHA hash context.\r
353 Status = mHash[HashAlg].HashInit(HashCtx);\r
45bf2c47 354\r
0c18794e 355 if (!Status) {\r
356 goto Done;\r
357 }\r
551d8081 358\r
0c18794e 359 //\r
360 // Measuring PE/COFF Image Header;\r
361 // But CheckSum field and SECURITY data directory (certificate) are excluded\r
362 //\r
20333c6d 363\r
0c18794e 364 //\r
365 // 3. Calculate the distance from the base of the image header to the image checksum address.\r
366 // 4. Hash the image header from its base to beginning of the image checksum.\r
367 //\r
368 HashBase = mImageBase;\r
f199664c 369 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
0c18794e 370 //\r
371 // Use PE32 offset.\r
372 //\r
4333b99d 373 HashSize = (UINTN) (&mNtHeader.Pe32->OptionalHeader.CheckSum) - (UINTN) HashBase;\r
551d8081 374 NumberOfRvaAndSizes = mNtHeader.Pe32->OptionalHeader.NumberOfRvaAndSizes;\r
f199664c 375 } else if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR64_MAGIC) {\r
0c18794e 376 //\r
377 // Use PE32+ offset.\r
378 //\r
4333b99d 379 HashSize = (UINTN) (&mNtHeader.Pe32Plus->OptionalHeader.CheckSum) - (UINTN) HashBase;\r
551d8081 380 NumberOfRvaAndSizes = mNtHeader.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;\r
570b3d1a 381 } else {\r
382 //\r
383 // Invalid header magic number.\r
384 //\r
385 Status = FALSE;\r
386 goto Done;\r
0c18794e 387 }\r
388\r
389 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
390 if (!Status) {\r
391 goto Done;\r
392 }\r
551d8081 393\r
0c18794e 394 //\r
395 // 5. Skip over the image checksum (it occupies a single ULONG).\r
0c18794e 396 //\r
551d8081 397 if (NumberOfRvaAndSizes <= EFI_IMAGE_DIRECTORY_ENTRY_SECURITY) {\r
0c18794e 398 //\r
551d8081 399 // 6. Since there is no Cert Directory in optional header, hash everything\r
400 // from the end of the checksum to the end of image header.\r
0c18794e 401 //\r
f199664c 402 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
551d8081 403 //\r
404 // Use PE32 offset.\r
405 //\r
406 HashBase = (UINT8 *) &mNtHeader.Pe32->OptionalHeader.CheckSum + sizeof (UINT32);\r
4333b99d 407 HashSize = mNtHeader.Pe32->OptionalHeader.SizeOfHeaders - ((UINTN) HashBase - (UINTN) mImageBase);\r
551d8081 408 } else {\r
409 //\r
410 // Use PE32+ offset.\r
411 //\r
412 HashBase = (UINT8 *) &mNtHeader.Pe32Plus->OptionalHeader.CheckSum + sizeof (UINT32);\r
4333b99d 413 HashSize = mNtHeader.Pe32Plus->OptionalHeader.SizeOfHeaders - ((UINTN) HashBase - (UINTN) mImageBase);\r
551d8081 414 }\r
415\r
416 if (HashSize != 0) {\r
417 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
418 if (!Status) {\r
419 goto Done;\r
420 }\r
421 }\r
0c18794e 422 } else {\r
423 //\r
551d8081 424 // 7. Hash everything from the end of the checksum to the start of the Cert Directory.\r
45bf2c47 425 //\r
f199664c 426 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
551d8081 427 //\r
428 // Use PE32 offset.\r
429 //\r
430 HashBase = (UINT8 *) &mNtHeader.Pe32->OptionalHeader.CheckSum + sizeof (UINT32);\r
4333b99d 431 HashSize = (UINTN) (&mNtHeader.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY]) - (UINTN) HashBase;\r
551d8081 432 } else {\r
433 //\r
434 // Use PE32+ offset.\r
435 //\r
436 HashBase = (UINT8 *) &mNtHeader.Pe32Plus->OptionalHeader.CheckSum + sizeof (UINT32);\r
4333b99d 437 HashSize = (UINTN) (&mNtHeader.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY]) - (UINTN) HashBase;\r
551d8081 438 }\r
439\r
440 if (HashSize != 0) {\r
441 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
442 if (!Status) {\r
443 goto Done;\r
444 }\r
445 }\r
0c18794e 446\r
0c18794e 447 //\r
551d8081 448 // 8. Skip over the Cert Directory. (It is sizeof(IMAGE_DATA_DIRECTORY) bytes.)\r
449 // 9. Hash everything from the end of the Cert Directory to the end of image header.\r
0c18794e 450 //\r
f199664c 451 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
551d8081 452 //\r
453 // Use PE32 offset\r
454 //\r
455 HashBase = (UINT8 *) &mNtHeader.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY + 1];\r
4333b99d 456 HashSize = mNtHeader.Pe32->OptionalHeader.SizeOfHeaders - ((UINTN) HashBase - (UINTN) mImageBase);\r
551d8081 457 } else {\r
458 //\r
459 // Use PE32+ offset.\r
460 //\r
461 HashBase = (UINT8 *) &mNtHeader.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY + 1];\r
4333b99d 462 HashSize = mNtHeader.Pe32Plus->OptionalHeader.SizeOfHeaders - ((UINTN) HashBase - (UINTN) mImageBase);\r
551d8081 463 }\r
0c18794e 464\r
551d8081 465 if (HashSize != 0) {\r
466 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
467 if (!Status) {\r
468 goto Done;\r
469 }\r
20333c6d 470 }\r
0c18794e 471 }\r
551d8081 472\r
0c18794e 473 //\r
474 // 10. Set the SUM_OF_BYTES_HASHED to the size of the header.\r
475 //\r
f199664c 476 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
0c18794e 477 //\r
478 // Use PE32 offset.\r
479 //\r
480 SumOfBytesHashed = mNtHeader.Pe32->OptionalHeader.SizeOfHeaders;\r
481 } else {\r
482 //\r
483 // Use PE32+ offset\r
484 //\r
485 SumOfBytesHashed = mNtHeader.Pe32Plus->OptionalHeader.SizeOfHeaders;\r
486 }\r
487\r
570b3d1a 488\r
489 Section = (EFI_IMAGE_SECTION_HEADER *) (\r
490 mImageBase +\r
491 mPeCoffHeaderOffset +\r
492 sizeof (UINT32) +\r
493 sizeof (EFI_IMAGE_FILE_HEADER) +\r
494 mNtHeader.Pe32->FileHeader.SizeOfOptionalHeader\r
495 );\r
496\r
0c18794e 497 //\r
498 // 11. Build a temporary table of pointers to all the IMAGE_SECTION_HEADER\r
499 // structures in the image. The 'NumberOfSections' field of the image\r
500 // header indicates how big the table should be. Do not include any\r
501 // IMAGE_SECTION_HEADERs in the table whose 'SizeOfRawData' field is zero.\r
502 //\r
503 SectionHeader = (EFI_IMAGE_SECTION_HEADER *) AllocateZeroPool (sizeof (EFI_IMAGE_SECTION_HEADER) * mNtHeader.Pe32->FileHeader.NumberOfSections);\r
570b3d1a 504 if (SectionHeader == NULL) {\r
505 Status = FALSE;\r
506 goto Done;\r
507 }\r
0c18794e 508 //\r
509 // 12. Using the 'PointerToRawData' in the referenced section headers as\r
510 // a key, arrange the elements in the table in ascending order. In other\r
511 // words, sort the section headers according to the disk-file offset of\r
512 // the section.\r
513 //\r
0c18794e 514 for (Index = 0; Index < mNtHeader.Pe32->FileHeader.NumberOfSections; Index++) {\r
515 Pos = Index;\r
516 while ((Pos > 0) && (Section->PointerToRawData < SectionHeader[Pos - 1].PointerToRawData)) {\r
517 CopyMem (&SectionHeader[Pos], &SectionHeader[Pos - 1], sizeof (EFI_IMAGE_SECTION_HEADER));\r
518 Pos--;\r
519 }\r
520 CopyMem (&SectionHeader[Pos], Section, sizeof (EFI_IMAGE_SECTION_HEADER));\r
521 Section += 1;\r
522 }\r
523\r
524 //\r
525 // 13. Walk through the sorted table, bring the corresponding section\r
526 // into memory, and hash the entire section (using the 'SizeOfRawData'\r
527 // field in the section header to determine the amount of data to hash).\r
528 // 14. Add the section's 'SizeOfRawData' to SUM_OF_BYTES_HASHED .\r
529 // 15. Repeat steps 13 and 14 for all the sections in the sorted table.\r
530 //\r
531 for (Index = 0; Index < mNtHeader.Pe32->FileHeader.NumberOfSections; Index++) {\r
532 Section = &SectionHeader[Index];\r
533 if (Section->SizeOfRawData == 0) {\r
534 continue;\r
535 }\r
536 HashBase = mImageBase + Section->PointerToRawData;\r
537 HashSize = (UINTN) Section->SizeOfRawData;\r
538\r
539 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
540 if (!Status) {\r
541 goto Done;\r
542 }\r
543\r
544 SumOfBytesHashed += HashSize;\r
545 }\r
546\r
547 //\r
548 // 16. If the file size is greater than SUM_OF_BYTES_HASHED, there is extra\r
549 // data in the file that needs to be added to the hash. This data begins\r
550 // at file offset SUM_OF_BYTES_HASHED and its length is:\r
551 // FileSize - (CertDirectory->Size)\r
552 //\r
553 if (mImageSize > SumOfBytesHashed) {\r
554 HashBase = mImageBase + SumOfBytesHashed;\r
551d8081 555\r
556 if (NumberOfRvaAndSizes <= EFI_IMAGE_DIRECTORY_ENTRY_SECURITY) {\r
557 CertSize = 0;\r
0c18794e 558 } else {\r
f199664c 559 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
551d8081 560 //\r
561 // Use PE32 offset.\r
562 //\r
563 CertSize = mNtHeader.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size;\r
564 } else {\r
565 //\r
566 // Use PE32+ offset.\r
567 //\r
568 CertSize = mNtHeader.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size;\r
28186d45 569 }\r
0c18794e 570 }\r
571\r
551d8081 572 if (mImageSize > CertSize + SumOfBytesHashed) {\r
573 HashSize = (UINTN) (mImageSize - CertSize - SumOfBytesHashed);\r
574\r
575 Status = mHash[HashAlg].HashUpdate(HashCtx, HashBase, HashSize);\r
576 if (!Status) {\r
577 goto Done;\r
578 }\r
579 } else if (mImageSize < CertSize + SumOfBytesHashed) {\r
580 Status = FALSE;\r
0c18794e 581 goto Done;\r
582 }\r
583 }\r
551d8081 584\r
0c18794e 585 Status = mHash[HashAlg].HashFinal(HashCtx, mImageDigest);\r
586\r
587Done:\r
588 if (HashCtx != NULL) {\r
589 FreePool (HashCtx);\r
590 }\r
591 if (SectionHeader != NULL) {\r
592 FreePool (SectionHeader);\r
593 }\r
594 return Status;\r
595}\r
596\r
597/**\r
69f8bb52 598 Recognize the Hash algorithm in PE/COFF Authenticode and calculate hash of\r
45bf2c47 599 Pe/Coff image based on the authenticode image hashing in PE/COFF Specification\r
0c18794e 600 8.0 Appendix A\r
601\r
dc204d5a
JY
602 Caution: This function may receive untrusted input.\r
603 PE/COFF image is external input, so this function will validate its data structure\r
604 within this image buffer before use.\r
605\r
f6f9031f 606 @param[in] AuthData Pointer to the Authenticode Signature retrieved from signed image.\r
607 @param[in] AuthDataSize Size of the Authenticode Signature in bytes.\r
20333c6d 608\r
0c18794e 609 @retval EFI_UNSUPPORTED Hash algorithm is not supported.\r
610 @retval EFI_SUCCESS Hash successfully.\r
611\r
612**/\r
45bf2c47 613EFI_STATUS\r
0c18794e 614HashPeImageByType (\r
f6f9031f 615 IN UINT8 *AuthData,\r
616 IN UINTN AuthDataSize\r
0c18794e 617 )\r
618{\r
619 UINT8 Index;\r
badd40f9 620\r
45bf2c47 621 for (Index = 0; Index < HASHALG_MAX; Index++) {\r
0c18794e 622 //\r
623 // Check the Hash algorithm in PE/COFF Authenticode.\r
45bf2c47 624 // According to PKCS#7 Definition:\r
0c18794e 625 // SignedData ::= SEQUENCE {\r
626 // version Version,\r
627 // digestAlgorithms DigestAlgorithmIdentifiers,\r
628 // contentInfo ContentInfo,\r
629 // .... }\r
630 // The DigestAlgorithmIdentifiers can be used to determine the hash algorithm in PE/COFF hashing\r
631 // This field has the fixed offset (+32) in final Authenticode ASN.1 data.\r
bd0de396 632 // Fixed offset (+32) is calculated based on two bytes of length encoding.\r
45bf2c47 633 //\r
f6f9031f 634 if ((*(AuthData + 1) & TWO_BYTE_ENCODE) != TWO_BYTE_ENCODE) {\r
bd0de396 635 //\r
636 // Only support two bytes of Long Form of Length Encoding.\r
637 //\r
638 continue;\r
639 }\r
640\r
f6f9031f 641 if (AuthDataSize < 32 + mHash[Index].OidLength) {\r
badd40f9 642 return EFI_UNSUPPORTED;\r
643 }\r
644\r
f6f9031f 645 if (CompareMem (AuthData + 32, mHash[Index].OidValue, mHash[Index].OidLength) == 0) {\r
0c18794e 646 break;\r
647 }\r
648 }\r
649\r
650 if (Index == HASHALG_MAX) {\r
651 return EFI_UNSUPPORTED;\r
652 }\r
653\r
654 //\r
655 // HASH PE Image based on Hash algorithm in PE/COFF Authenticode.\r
656 //\r
657 if (!HashPeImage(Index)) {\r
658 return EFI_UNSUPPORTED;\r
659 }\r
660\r
661 return EFI_SUCCESS;\r
662}\r
663\r
664\r
665/**\r
666 Returns the size of a given image execution info table in bytes.\r
667\r
668 This function returns the size, in bytes, of the image execution info table specified by\r
669 ImageExeInfoTable. If ImageExeInfoTable is NULL, then 0 is returned.\r
670\r
671 @param ImageExeInfoTable A pointer to a image execution info table structure.\r
45bf2c47 672\r
0c18794e 673 @retval 0 If ImageExeInfoTable is NULL.\r
674 @retval Others The size of a image execution info table in bytes.\r
675\r
676**/\r
677UINTN\r
678GetImageExeInfoTableSize (\r
679 EFI_IMAGE_EXECUTION_INFO_TABLE *ImageExeInfoTable\r
680 )\r
681{\r
682 UINTN Index;\r
683 EFI_IMAGE_EXECUTION_INFO *ImageExeInfoItem;\r
684 UINTN TotalSize;\r
685\r
686 if (ImageExeInfoTable == NULL) {\r
687 return 0;\r
688 }\r
689\r
690 ImageExeInfoItem = (EFI_IMAGE_EXECUTION_INFO *) ((UINT8 *) ImageExeInfoTable + sizeof (EFI_IMAGE_EXECUTION_INFO_TABLE));\r
691 TotalSize = sizeof (EFI_IMAGE_EXECUTION_INFO_TABLE);\r
692 for (Index = 0; Index < ImageExeInfoTable->NumberOfImages; Index++) {\r
693 TotalSize += ReadUnaligned32 ((UINT32 *) &ImageExeInfoItem->InfoSize);\r
694 ImageExeInfoItem = (EFI_IMAGE_EXECUTION_INFO *) ((UINT8 *) ImageExeInfoItem + ReadUnaligned32 ((UINT32 *) &ImageExeInfoItem->InfoSize));\r
695 }\r
696\r
697 return TotalSize;\r
698}\r
699\r
700/**\r
701 Create an Image Execution Information Table entry and add it to system configuration table.\r
702\r
703 @param[in] Action Describes the action taken by the firmware regarding this image.\r
704 @param[in] Name Input a null-terminated, user-friendly name.\r
705 @param[in] DevicePath Input device path pointer.\r
706 @param[in] Signature Input signature info in EFI_SIGNATURE_LIST data structure.\r
6aa31db5 707 @param[in] SignatureSize Size of signature. Must be zero if Signature is NULL.\r
45bf2c47 708\r
0c18794e 709**/\r
710VOID\r
711AddImageExeInfo (\r
45bf2c47 712 IN EFI_IMAGE_EXECUTION_ACTION Action,\r
713 IN CHAR16 *Name OPTIONAL,\r
0c18794e 714 IN CONST EFI_DEVICE_PATH_PROTOCOL *DevicePath,\r
715 IN EFI_SIGNATURE_LIST *Signature OPTIONAL,\r
716 IN UINTN SignatureSize\r
717 )\r
718{\r
0c18794e 719 EFI_IMAGE_EXECUTION_INFO_TABLE *ImageExeInfoTable;\r
720 EFI_IMAGE_EXECUTION_INFO_TABLE *NewImageExeInfoTable;\r
721 EFI_IMAGE_EXECUTION_INFO *ImageExeInfoEntry;\r
722 UINTN ImageExeInfoTableSize;\r
723 UINTN NewImageExeInfoEntrySize;\r
724 UINTN NameStringLen;\r
725 UINTN DevicePathSize;\r
4fc08e8d 726 CHAR16 *NameStr;\r
0c18794e 727\r
0c18794e 728 ImageExeInfoTable = NULL;\r
729 NewImageExeInfoTable = NULL;\r
730 ImageExeInfoEntry = NULL;\r
731 NameStringLen = 0;\r
4fc08e8d 732 NameStr = NULL;\r
0c18794e 733\r
570b3d1a 734 if (DevicePath == NULL) {\r
735 return ;\r
736 }\r
45bf2c47 737\r
0c18794e 738 if (Name != NULL) {\r
739 NameStringLen = StrSize (Name);\r
b3d42170 740 } else {\r
741 NameStringLen = sizeof (CHAR16);\r
0c18794e 742 }\r
743\r
45bf2c47 744 EfiGetSystemConfigurationTable (&gEfiImageSecurityDatabaseGuid, (VOID **) &ImageExeInfoTable);\r
0c18794e 745 if (ImageExeInfoTable != NULL) {\r
746 //\r
747 // The table has been found!\r
d6b926e7 748 // We must enlarge the table to accommodate the new exe info entry.\r
0c18794e 749 //\r
750 ImageExeInfoTableSize = GetImageExeInfoTableSize (ImageExeInfoTable);\r
751 } else {\r
752 //\r
753 // Not Found!\r
754 // We should create a new table to append to the configuration table.\r
755 //\r
756 ImageExeInfoTableSize = sizeof (EFI_IMAGE_EXECUTION_INFO_TABLE);\r
757 }\r
758\r
759 DevicePathSize = GetDevicePathSize (DevicePath);\r
4fc08e8d
CZ
760\r
761 //\r
762 // Signature size can be odd. Pad after signature to ensure next EXECUTION_INFO entry align\r
763 //\r
6aa31db5 764 ASSERT (Signature != NULL || SignatureSize == 0);\r
4fc08e8d
CZ
765 NewImageExeInfoEntrySize = sizeof (EFI_IMAGE_EXECUTION_INFO) + NameStringLen + DevicePathSize + SignatureSize;\r
766\r
0c18794e 767 NewImageExeInfoTable = (EFI_IMAGE_EXECUTION_INFO_TABLE *) AllocateRuntimePool (ImageExeInfoTableSize + NewImageExeInfoEntrySize);\r
570b3d1a 768 if (NewImageExeInfoTable == NULL) {\r
769 return ;\r
770 }\r
0c18794e 771\r
772 if (ImageExeInfoTable != NULL) {\r
773 CopyMem (NewImageExeInfoTable, ImageExeInfoTable, ImageExeInfoTableSize);\r
774 } else {\r
775 NewImageExeInfoTable->NumberOfImages = 0;\r
776 }\r
777 NewImageExeInfoTable->NumberOfImages++;\r
778 ImageExeInfoEntry = (EFI_IMAGE_EXECUTION_INFO *) ((UINT8 *) NewImageExeInfoTable + ImageExeInfoTableSize);\r
779 //\r
ffccb935 780 // Update new item's information.\r
0c18794e 781 //\r
1fee5304
ED
782 WriteUnaligned32 ((UINT32 *) ImageExeInfoEntry, Action);\r
783 WriteUnaligned32 ((UINT32 *) ((UINT8 *) ImageExeInfoEntry + sizeof (EFI_IMAGE_EXECUTION_ACTION)), (UINT32) NewImageExeInfoEntrySize);\r
0c18794e 784\r
4fc08e8d 785 NameStr = (CHAR16 *)(ImageExeInfoEntry + 1);\r
0c18794e 786 if (Name != NULL) {\r
4fc08e8d 787 CopyMem ((UINT8 *) NameStr, Name, NameStringLen);\r
b3d42170 788 } else {\r
4fc08e8d 789 ZeroMem ((UINT8 *) NameStr, sizeof (CHAR16));\r
0c18794e 790 }\r
4fc08e8d 791\r
0c18794e 792 CopyMem (\r
4fc08e8d 793 (UINT8 *) NameStr + NameStringLen,\r
0c18794e 794 DevicePath,\r
795 DevicePathSize\r
796 );\r
797 if (Signature != NULL) {\r
798 CopyMem (\r
4fc08e8d 799 (UINT8 *) NameStr + NameStringLen + DevicePathSize,\r
0c18794e 800 Signature,\r
801 SignatureSize\r
802 );\r
803 }\r
804 //\r
805 // Update/replace the image execution table.\r
806 //\r
570b3d1a 807 gBS->InstallConfigurationTable (&gEfiImageSecurityDatabaseGuid, (VOID *) NewImageExeInfoTable);\r
45bf2c47 808\r
0c18794e 809 //\r
810 // Free Old table data!\r
811 //\r
812 if (ImageExeInfoTable != NULL) {\r
813 FreePool (ImageExeInfoTable);\r
814 }\r
815}\r
816\r
20333c6d
QL
817/**\r
818 Check whether the hash of an given X.509 certificate is in forbidden database (DBX).\r
819\r
820 @param[in] Certificate Pointer to X.509 Certificate that is searched for.\r
821 @param[in] CertSize Size of X.509 Certificate.\r
822 @param[in] SignatureList Pointer to the Signature List in forbidden database.\r
823 @param[in] SignatureListSize Size of Signature List.\r
824 @param[out] RevocationTime Return the time that the certificate was revoked.\r
a83dbf00 825 @param[out] IsFound Search result. Only valid if EFI_SUCCESS returned.\r
20333c6d 826\r
a83dbf00
JW
827 @retval EFI_SUCCESS Finished the search without any error.\r
828 @retval Others Error occurred in the search of database.\r
20333c6d
QL
829\r
830**/\r
a83dbf00 831EFI_STATUS\r
20333c6d
QL
832IsCertHashFoundInDatabase (\r
833 IN UINT8 *Certificate,\r
834 IN UINTN CertSize,\r
835 IN EFI_SIGNATURE_LIST *SignatureList,\r
836 IN UINTN SignatureListSize,\r
a83dbf00
JW
837 OUT EFI_TIME *RevocationTime,\r
838 OUT BOOLEAN *IsFound\r
20333c6d
QL
839 )\r
840{\r
a83dbf00 841 EFI_STATUS Status;\r
20333c6d
QL
842 EFI_SIGNATURE_LIST *DbxList;\r
843 UINTN DbxSize;\r
844 EFI_SIGNATURE_DATA *CertHash;\r
845 UINTN CertHashCount;\r
846 UINTN Index;\r
847 UINT32 HashAlg;\r
848 VOID *HashCtx;\r
849 UINT8 CertDigest[MAX_DIGEST_SIZE];\r
850 UINT8 *DbxCertHash;\r
851 UINTN SiglistHeaderSize;\r
12d95665
LQ
852 UINT8 *TBSCert;\r
853 UINTN TBSCertSize;\r
20333c6d 854\r
a83dbf00
JW
855 Status = EFI_ABORTED;\r
856 *IsFound = FALSE;\r
20333c6d
QL
857 DbxList = SignatureList;\r
858 DbxSize = SignatureListSize;\r
859 HashCtx = NULL;\r
860 HashAlg = HASHALG_MAX;\r
861\r
12d95665 862 if ((RevocationTime == NULL) || (DbxList == NULL)) {\r
a83dbf00 863 return EFI_INVALID_PARAMETER;\r
12d95665
LQ
864 }\r
865\r
866 //\r
867 // Retrieve the TBSCertificate from the X.509 Certificate.\r
868 //\r
869 if (!X509GetTBSCert (Certificate, CertSize, &TBSCert, &TBSCertSize)) {\r
a83dbf00 870 return Status;\r
12d95665 871 }\r
20333c6d
QL
872\r
873 while ((DbxSize > 0) && (SignatureListSize >= DbxList->SignatureListSize)) {\r
874 //\r
875 // Determine Hash Algorithm of Certificate in the forbidden database.\r
876 //\r
877 if (CompareGuid (&DbxList->SignatureType, &gEfiCertX509Sha256Guid)) {\r
878 HashAlg = HASHALG_SHA256;\r
879 } else if (CompareGuid (&DbxList->SignatureType, &gEfiCertX509Sha384Guid)) {\r
880 HashAlg = HASHALG_SHA384;\r
881 } else if (CompareGuid (&DbxList->SignatureType, &gEfiCertX509Sha512Guid)) {\r
882 HashAlg = HASHALG_SHA512;\r
883 } else {\r
884 DbxSize -= DbxList->SignatureListSize;\r
885 DbxList = (EFI_SIGNATURE_LIST *) ((UINT8 *) DbxList + DbxList->SignatureListSize);\r
886 continue;\r
887 }\r
888\r
889 //\r
12d95665 890 // Calculate the hash value of current TBSCertificate for comparision.\r
20333c6d
QL
891 //\r
892 if (mHash[HashAlg].GetContextSize == NULL) {\r
893 goto Done;\r
894 }\r
895 ZeroMem (CertDigest, MAX_DIGEST_SIZE);\r
896 HashCtx = AllocatePool (mHash[HashAlg].GetContextSize ());\r
897 if (HashCtx == NULL) {\r
898 goto Done;\r
899 }\r
a83dbf00 900 if (!mHash[HashAlg].HashInit (HashCtx)) {\r
20333c6d
QL
901 goto Done;\r
902 }\r
a83dbf00 903 if (!mHash[HashAlg].HashUpdate (HashCtx, TBSCert, TBSCertSize)) {\r
20333c6d
QL
904 goto Done;\r
905 }\r
a83dbf00 906 if (!mHash[HashAlg].HashFinal (HashCtx, CertDigest)) {\r
20333c6d
QL
907 goto Done;\r
908 }\r
909\r
fbb96072
JW
910 FreePool (HashCtx);\r
911 HashCtx = NULL;\r
912\r
20333c6d
QL
913 SiglistHeaderSize = sizeof (EFI_SIGNATURE_LIST) + DbxList->SignatureHeaderSize;\r
914 CertHash = (EFI_SIGNATURE_DATA *) ((UINT8 *) DbxList + SiglistHeaderSize);\r
915 CertHashCount = (DbxList->SignatureListSize - SiglistHeaderSize) / DbxList->SignatureSize;\r
916 for (Index = 0; Index < CertHashCount; Index++) {\r
917 //\r
918 // Iterate each Signature Data Node within this CertList for verify.\r
919 //\r
920 DbxCertHash = CertHash->SignatureData;\r
921 if (CompareMem (DbxCertHash, CertDigest, mHash[HashAlg].DigestLength) == 0) {\r
922 //\r
923 // Hash of Certificate is found in forbidden database.\r
924 //\r
a83dbf00
JW
925 Status = EFI_SUCCESS;\r
926 *IsFound = TRUE;\r
20333c6d
QL
927\r
928 //\r
929 // Return the revocation time.\r
930 //\r
931 CopyMem (RevocationTime, (EFI_TIME *)(DbxCertHash + mHash[HashAlg].DigestLength), sizeof (EFI_TIME));\r
932 goto Done;\r
933 }\r
934 CertHash = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertHash + DbxList->SignatureSize);\r
935 }\r
936\r
937 DbxSize -= DbxList->SignatureListSize;\r
938 DbxList = (EFI_SIGNATURE_LIST *) ((UINT8 *) DbxList + DbxList->SignatureListSize);\r
939 }\r
940\r
a83dbf00
JW
941 Status = EFI_SUCCESS;\r
942\r
20333c6d
QL
943Done:\r
944 if (HashCtx != NULL) {\r
945 FreePool (HashCtx);\r
946 }\r
947\r
a83dbf00 948 return Status;\r
20333c6d
QL
949}\r
950\r
0c18794e 951/**\r
952 Check whether signature is in specified database.\r
953\r
954 @param[in] VariableName Name of database variable that is searched in.\r
955 @param[in] Signature Pointer to signature that is searched for.\r
d6b926e7 956 @param[in] CertType Pointer to hash algorithm.\r
0c18794e 957 @param[in] SignatureSize Size of Signature.\r
958\r
959 @return TRUE Found the signature in the variable database.\r
960 @return FALSE Not found the signature in the variable database.\r
961\r
962**/\r
963BOOLEAN\r
964IsSignatureFoundInDatabase (\r
965 IN CHAR16 *VariableName,\r
45bf2c47 966 IN UINT8 *Signature,\r
0c18794e 967 IN EFI_GUID *CertType,\r
968 IN UINTN SignatureSize\r
969 )\r
970{\r
971 EFI_STATUS Status;\r
972 EFI_SIGNATURE_LIST *CertList;\r
973 EFI_SIGNATURE_DATA *Cert;\r
974 UINTN DataSize;\r
975 UINT8 *Data;\r
976 UINTN Index;\r
977 UINTN CertCount;\r
978 BOOLEAN IsFound;\r
20333c6d 979\r
0c18794e 980 //\r
981 // Read signature database variable.\r
982 //\r
983 IsFound = FALSE;\r
984 Data = NULL;\r
985 DataSize = 0;\r
986 Status = gRT->GetVariable (VariableName, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, NULL);\r
987 if (Status != EFI_BUFFER_TOO_SMALL) {\r
988 return FALSE;\r
989 }\r
990\r
991 Data = (UINT8 *) AllocateZeroPool (DataSize);\r
570b3d1a 992 if (Data == NULL) {\r
993 return FALSE;\r
994 }\r
0c18794e 995\r
996 Status = gRT->GetVariable (VariableName, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, Data);\r
997 if (EFI_ERROR (Status)) {\r
998 goto Done;\r
999 }\r
1000 //\r
d6b926e7 1001 // Enumerate all signature data in SigDB to check if signature exists for executable.\r
0c18794e 1002 //\r
1003 CertList = (EFI_SIGNATURE_LIST *) Data;\r
1004 while ((DataSize > 0) && (DataSize >= CertList->SignatureListSize)) {\r
7403ff5b 1005 CertCount = (CertList->SignatureListSize - sizeof (EFI_SIGNATURE_LIST) - CertList->SignatureHeaderSize) / CertList->SignatureSize;\r
0c18794e 1006 Cert = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertList + sizeof (EFI_SIGNATURE_LIST) + CertList->SignatureHeaderSize);\r
1007 if ((CertList->SignatureSize == sizeof(EFI_SIGNATURE_DATA) - 1 + SignatureSize) && (CompareGuid(&CertList->SignatureType, CertType))) {\r
1008 for (Index = 0; Index < CertCount; Index++) {\r
1009 if (CompareMem (Cert->SignatureData, Signature, SignatureSize) == 0) {\r
1010 //\r
1011 // Find the signature in database.\r
1012 //\r
1013 IsFound = TRUE;\r
5b196b06
ZC
1014 //\r
1015 // Entries in UEFI_IMAGE_SECURITY_DATABASE that are used to validate image should be measured\r
1016 //\r
1017 if (StrCmp(VariableName, EFI_IMAGE_SECURITY_DATABASE) == 0) {\r
1018 SecureBootHook (VariableName, &gEfiImageSecurityDatabaseGuid, CertList->SignatureSize, Cert);\r
1019 }\r
0c18794e 1020 break;\r
1021 }\r
1022\r
1023 Cert = (EFI_SIGNATURE_DATA *) ((UINT8 *) Cert + CertList->SignatureSize);\r
1024 }\r
1025\r
1026 if (IsFound) {\r
1027 break;\r
1028 }\r
1029 }\r
1030\r
1031 DataSize -= CertList->SignatureListSize;\r
1032 CertList = (EFI_SIGNATURE_LIST *) ((UINT8 *) CertList + CertList->SignatureListSize);\r
1033 }\r
1034\r
1035Done:\r
1036 if (Data != NULL) {\r
1037 FreePool (Data);\r
1038 }\r
1039\r
1040 return IsFound;\r
1041}\r
1042\r
1043/**\r
20333c6d 1044 Check whether the timestamp is valid by comparing the signing time and the revocation time.\r
0c18794e 1045\r
20333c6d
QL
1046 @param SigningTime A pointer to the signing time.\r
1047 @param RevocationTime A pointer to the revocation time.\r
45bf2c47 1048\r
20333c6d
QL
1049 @retval TRUE The SigningTime is not later than the RevocationTime.\r
1050 @retval FALSE The SigningTime is later than the RevocationTime.\r
0c18794e 1051\r
1052**/\r
45bf2c47 1053BOOLEAN\r
20333c6d
QL
1054IsValidSignatureByTimestamp (\r
1055 IN EFI_TIME *SigningTime,\r
1056 IN EFI_TIME *RevocationTime\r
1057 )\r
1058{\r
1059 if (SigningTime->Year != RevocationTime->Year) {\r
1060 return (BOOLEAN) (SigningTime->Year < RevocationTime->Year);\r
1061 } else if (SigningTime->Month != RevocationTime->Month) {\r
1062 return (BOOLEAN) (SigningTime->Month < RevocationTime->Month);\r
1063 } else if (SigningTime->Day != RevocationTime->Day) {\r
1064 return (BOOLEAN) (SigningTime->Day < RevocationTime->Day);\r
1065 } else if (SigningTime->Hour != RevocationTime->Hour) {\r
1066 return (BOOLEAN) (SigningTime->Hour < RevocationTime->Hour);\r
1067 } else if (SigningTime->Minute != RevocationTime->Minute) {\r
1068 return (BOOLEAN) (SigningTime->Minute < RevocationTime->Minute);\r
1069 }\r
1070\r
1071 return (BOOLEAN) (SigningTime->Second <= RevocationTime->Second);\r
1072}\r
1073\r
1074/**\r
1075 Check if the given time value is zero.\r
1076\r
1077 @param[in] Time Pointer of a time value.\r
1078\r
1079 @retval TRUE The Time is Zero.\r
1080 @retval FALSE The Time is not Zero.\r
1081\r
1082**/\r
1083BOOLEAN\r
1084IsTimeZero (\r
1085 IN EFI_TIME *Time\r
1086 )\r
1087{\r
1088 if ((Time->Year == 0) && (Time->Month == 0) && (Time->Day == 0) &&\r
1089 (Time->Hour == 0) && (Time->Minute == 0) && (Time->Second == 0)) {\r
1090 return TRUE;\r
1091 }\r
1092\r
1093 return FALSE;\r
1094}\r
1095\r
1096/**\r
b3548d32 1097 Check whether the timestamp signature is valid and the signing time is also earlier than\r
20333c6d
QL
1098 the revocation time.\r
1099\r
1100 @param[in] AuthData Pointer to the Authenticode signature retrieved from signed image.\r
1101 @param[in] AuthDataSize Size of the Authenticode signature in bytes.\r
1102 @param[in] RevocationTime The time that the certificate was revoked.\r
1103\r
b3548d32 1104 @retval TRUE Timestamp signature is valid and signing time is no later than the\r
20333c6d
QL
1105 revocation time.\r
1106 @retval FALSE Timestamp signature is not valid or the signing time is later than the\r
1107 revocation time.\r
1108\r
1109**/\r
1110BOOLEAN\r
1111PassTimestampCheck (\r
1112 IN UINT8 *AuthData,\r
1113 IN UINTN AuthDataSize,\r
1114 IN EFI_TIME *RevocationTime\r
1115 )\r
1116{\r
1117 EFI_STATUS Status;\r
1118 BOOLEAN VerifyStatus;\r
1119 EFI_SIGNATURE_LIST *CertList;\r
1120 EFI_SIGNATURE_DATA *Cert;\r
1121 UINT8 *DbtData;\r
1122 UINTN DbtDataSize;\r
1123 UINT8 *RootCert;\r
1124 UINTN RootCertSize;\r
1125 UINTN Index;\r
1126 UINTN CertCount;\r
1127 EFI_TIME SigningTime;\r
1128\r
1129 //\r
1130 // Variable Initialization\r
1131 //\r
1132 VerifyStatus = FALSE;\r
1133 DbtData = NULL;\r
1134 CertList = NULL;\r
1135 Cert = NULL;\r
1136 RootCert = NULL;\r
1137 RootCertSize = 0;\r
1138\r
1139 //\r
1140 // If RevocationTime is zero, the certificate shall be considered to always be revoked.\r
1141 //\r
1142 if (IsTimeZero (RevocationTime)) {\r
1143 return FALSE;\r
1144 }\r
1145\r
1146 //\r
1147 // RevocationTime is non-zero, the certificate should be considered to be revoked from that time and onwards.\r
1148 // Using the dbt to get the trusted TSA certificates.\r
1149 //\r
1150 DbtDataSize = 0;\r
1151 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE2, &gEfiImageSecurityDatabaseGuid, NULL, &DbtDataSize, NULL);\r
7e0699c0
QL
1152 if (Status != EFI_BUFFER_TOO_SMALL) {\r
1153 goto Done;\r
1154 }\r
1155 DbtData = (UINT8 *) AllocateZeroPool (DbtDataSize);\r
1156 if (DbtData == NULL) {\r
1157 goto Done;\r
1158 }\r
1159 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE2, &gEfiImageSecurityDatabaseGuid, NULL, &DbtDataSize, (VOID *) DbtData);\r
1160 if (EFI_ERROR (Status)) {\r
1161 goto Done;\r
20333c6d
QL
1162 }\r
1163\r
1164 CertList = (EFI_SIGNATURE_LIST *) DbtData;\r
1165 while ((DbtDataSize > 0) && (DbtDataSize >= CertList->SignatureListSize)) {\r
1166 if (CompareGuid (&CertList->SignatureType, &gEfiCertX509Guid)) {\r
1167 Cert = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertList + sizeof (EFI_SIGNATURE_LIST) + CertList->SignatureHeaderSize);\r
1168 CertCount = (CertList->SignatureListSize - sizeof (EFI_SIGNATURE_LIST) - CertList->SignatureHeaderSize) / CertList->SignatureSize;\r
1169 for (Index = 0; Index < CertCount; Index++) {\r
1170 //\r
1171 // Iterate each Signature Data Node within this CertList for verify.\r
1172 //\r
1173 RootCert = Cert->SignatureData;\r
1174 RootCertSize = CertList->SignatureSize - sizeof (EFI_GUID);\r
1175 //\r
1176 // Get the signing time if the timestamp signature is valid.\r
1177 //\r
1178 if (ImageTimestampVerify (AuthData, AuthDataSize, RootCert, RootCertSize, &SigningTime)) {\r
1179 //\r
1180 // The signer signature is valid only when the signing time is earlier than revocation time.\r
1181 //\r
1182 if (IsValidSignatureByTimestamp (&SigningTime, RevocationTime)) {\r
1183 VerifyStatus = TRUE;\r
1184 goto Done;\r
1185 }\r
1186 }\r
1187 Cert = (EFI_SIGNATURE_DATA *) ((UINT8 *) Cert + CertList->SignatureSize);\r
1188 }\r
1189 }\r
1190 DbtDataSize -= CertList->SignatureListSize;\r
1191 CertList = (EFI_SIGNATURE_LIST *) ((UINT8 *) CertList + CertList->SignatureListSize);\r
1192 }\r
1193\r
1194Done:\r
1195 if (DbtData != NULL) {\r
1196 FreePool (DbtData);\r
1197 }\r
1198\r
1199 return VerifyStatus;\r
1200}\r
1201\r
1202/**\r
1203 Check whether the image signature is forbidden by the forbidden database (dbx).\r
1204 The image is forbidden to load if any certificates for signing are revoked before signing time.\r
1205\r
560ac77e
ZC
1206 @param[in] AuthData Pointer to the Authenticode signature retrieved from the signed image.\r
1207 @param[in] AuthDataSize Size of the Authenticode signature in bytes.\r
20333c6d
QL
1208\r
1209 @retval TRUE Image is forbidden by dbx.\r
1210 @retval FALSE Image is not forbidden by dbx.\r
1211\r
1212**/\r
1213BOOLEAN\r
b3548d32 1214IsForbiddenByDbx (\r
560ac77e 1215 IN UINT8 *AuthData,\r
b3548d32 1216 IN UINTN AuthDataSize\r
20333c6d
QL
1217 )\r
1218{\r
1219 EFI_STATUS Status;\r
1220 BOOLEAN IsForbidden;\r
a83dbf00 1221 BOOLEAN IsFound;\r
20333c6d
QL
1222 UINT8 *Data;\r
1223 UINTN DataSize;\r
27c93c06
LQ
1224 EFI_SIGNATURE_LIST *CertList;\r
1225 UINTN CertListSize;\r
1226 EFI_SIGNATURE_DATA *CertData;\r
1227 UINT8 *RootCert;\r
1228 UINTN RootCertSize;\r
1229 UINTN CertCount;\r
20333c6d
QL
1230 UINTN Index;\r
1231 UINT8 *CertBuffer;\r
1232 UINTN BufferLength;\r
1233 UINT8 *TrustedCert;\r
1234 UINTN TrustedCertLength;\r
1235 UINT8 CertNumber;\r
1236 UINT8 *CertPtr;\r
1237 UINT8 *Cert;\r
1238 UINTN CertSize;\r
1239 EFI_TIME RevocationTime;\r
20333c6d
QL
1240 //\r
1241 // Variable Initialization\r
1242 //\r
1243 IsForbidden = FALSE;\r
1244 Data = NULL;\r
27c93c06
LQ
1245 CertList = NULL;\r
1246 CertData = NULL;\r
1247 RootCert = NULL;\r
1248 RootCertSize = 0;\r
20333c6d
QL
1249 Cert = NULL;\r
1250 CertBuffer = NULL;\r
1251 BufferLength = 0;\r
1252 TrustedCert = NULL;\r
1253 TrustedCertLength = 0;\r
1254\r
1255 //\r
1256 // The image will not be forbidden if dbx can't be got.\r
1257 //\r
1258 DataSize = 0;\r
1259 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE1, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, NULL);\r
7e0699c0
QL
1260 if (Status != EFI_BUFFER_TOO_SMALL) {\r
1261 return IsForbidden;\r
20333c6d 1262 }\r
7e0699c0
QL
1263 Data = (UINT8 *) AllocateZeroPool (DataSize);\r
1264 if (Data == NULL) {\r
1265 return IsForbidden;\r
1266 }\r
1267\r
1268 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE1, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, (VOID *) Data);\r
20333c6d
QL
1269 if (EFI_ERROR (Status)) {\r
1270 return IsForbidden;\r
1271 }\r
1272\r
27c93c06
LQ
1273 //\r
1274 // Verify image signature with RAW X509 certificates in DBX database.\r
1275 // If passed, the image will be forbidden.\r
1276 //\r
1277 CertList = (EFI_SIGNATURE_LIST *) Data;\r
1278 CertListSize = DataSize;\r
1279 while ((CertListSize > 0) && (CertListSize >= CertList->SignatureListSize)) {\r
1280 if (CompareGuid (&CertList->SignatureType, &gEfiCertX509Guid)) {\r
1281 CertData = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertList + sizeof (EFI_SIGNATURE_LIST) + CertList->SignatureHeaderSize);\r
1282 CertCount = (CertList->SignatureListSize - sizeof (EFI_SIGNATURE_LIST) - CertList->SignatureHeaderSize) / CertList->SignatureSize;\r
1283\r
1284 for (Index = 0; Index < CertCount; Index++) {\r
1285 //\r
1286 // Iterate each Signature Data Node within this CertList for verify.\r
1287 //\r
1288 RootCert = CertData->SignatureData;\r
1289 RootCertSize = CertList->SignatureSize - sizeof (EFI_GUID);\r
1290\r
1291 //\r
1292 // Call AuthenticodeVerify library to Verify Authenticode struct.\r
1293 //\r
1294 IsForbidden = AuthenticodeVerify (\r
1295 AuthData,\r
1296 AuthDataSize,\r
1297 RootCert,\r
1298 RootCertSize,\r
1299 mImageDigest,\r
1300 mImageDigestSize\r
1301 );\r
1302 if (IsForbidden) {\r
531c89a1 1303 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is signed but signature is forbidden by DBX.\n"));\r
27c93c06
LQ
1304 goto Done;\r
1305 }\r
1306\r
1307 CertData = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertData + CertList->SignatureSize);\r
1308 }\r
1309 }\r
1310\r
1311 CertListSize -= CertList->SignatureListSize;\r
1312 CertList = (EFI_SIGNATURE_LIST *) ((UINT8 *) CertList + CertList->SignatureListSize);\r
1313 }\r
1314\r
1315 //\r
1316 // Check X.509 Certificate Hash & Possible Timestamp.\r
1317 //\r
1318\r
20333c6d
QL
1319 //\r
1320 // Retrieve the certificate stack from AuthData\r
1321 // The output CertStack format will be:\r
1322 // UINT8 CertNumber;\r
1323 // UINT32 Cert1Length;\r
1324 // UINT8 Cert1[];\r
1325 // UINT32 Cert2Length;\r
1326 // UINT8 Cert2[];\r
1327 // ...\r
1328 // UINT32 CertnLength;\r
1329 // UINT8 Certn[];\r
1330 //\r
1331 Pkcs7GetSigners (AuthData, AuthDataSize, &CertBuffer, &BufferLength, &TrustedCert, &TrustedCertLength);\r
c13742b1 1332 if ((BufferLength == 0) || (CertBuffer == NULL) || (*CertBuffer) == 0) {\r
20333c6d
QL
1333 IsForbidden = TRUE;\r
1334 goto Done;\r
1335 }\r
1336\r
1337 //\r
27c93c06 1338 // Check if any hash of certificates embedded in AuthData is in the forbidden database.\r
20333c6d
QL
1339 //\r
1340 CertNumber = (UINT8) (*CertBuffer);\r
1341 CertPtr = CertBuffer + 1;\r
1342 for (Index = 0; Index < CertNumber; Index++) {\r
1343 CertSize = (UINTN) ReadUnaligned32 ((UINT32 *)CertPtr);\r
1344 Cert = (UINT8 *)CertPtr + sizeof (UINT32);\r
91422384
ZC
1345 //\r
1346 // Advance CertPtr to the next cert in image signer's cert list\r
1347 //\r
1348 CertPtr = CertPtr + sizeof (UINT32) + CertSize;\r
20333c6d 1349\r
a83dbf00
JW
1350 Status = IsCertHashFoundInDatabase (Cert, CertSize, (EFI_SIGNATURE_LIST *)Data, DataSize, &RevocationTime, &IsFound);\r
1351 if (EFI_ERROR (Status)) {\r
20333c6d 1352 //\r
a83dbf00
JW
1353 // Error in searching dbx. Consider it as 'found'. RevocationTime might\r
1354 // not be valid in such situation.\r
20333c6d
QL
1355 //\r
1356 IsForbidden = TRUE;\r
a83dbf00
JW
1357 } else if (IsFound) {\r
1358 //\r
1359 // Found Cert in dbx successfully. Check the timestamp signature and\r
1360 // signing time to determine if the image can be trusted.\r
1361 //\r
20333c6d
QL
1362 if (PassTimestampCheck (AuthData, AuthDataSize, &RevocationTime)) {\r
1363 IsForbidden = FALSE;\r
91422384
ZC
1364 //\r
1365 // Pass DBT check. Continue to check other certs in image signer's cert list against DBX, DBT\r
1366 //\r
1367 continue;\r
a83dbf00
JW
1368 } else {\r
1369 IsForbidden = TRUE;\r
1370 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is signed but signature failed the timestamp check.\n"));\r
1371 goto Done;\r
20333c6d 1372 }\r
20333c6d
QL
1373 }\r
1374\r
20333c6d
QL
1375 }\r
1376\r
1377Done:\r
1378 if (Data != NULL) {\r
1379 FreePool (Data);\r
1380 }\r
1381\r
1382 Pkcs7FreeSigners (CertBuffer);\r
1383 Pkcs7FreeSigners (TrustedCert);\r
1384\r
1385 return IsForbidden;\r
1386}\r
1387\r
4fc08e8d 1388\r
20333c6d
QL
1389/**\r
1390 Check whether the image signature can be verified by the trusted certificates in DB database.\r
1391\r
560ac77e
ZC
1392 @param[in] AuthData Pointer to the Authenticode signature retrieved from signed image.\r
1393 @param[in] AuthDataSize Size of the Authenticode signature in bytes.\r
20333c6d
QL
1394\r
1395 @retval TRUE Image passed verification using certificate in db.\r
1396 @retval FALSE Image didn't pass verification using certificate in db.\r
1397\r
1398**/\r
1399BOOLEAN\r
1400IsAllowedByDb (\r
560ac77e
ZC
1401 IN UINT8 *AuthData,\r
1402 IN UINTN AuthDataSize\r
0c18794e 1403 )\r
1404{\r
1405 EFI_STATUS Status;\r
1406 BOOLEAN VerifyStatus;\r
a83dbf00 1407 BOOLEAN IsFound;\r
0c18794e 1408 EFI_SIGNATURE_LIST *CertList;\r
4fc08e8d 1409 EFI_SIGNATURE_DATA *CertData;\r
0c18794e 1410 UINTN DataSize;\r
45bf2c47 1411 UINT8 *Data;\r
0c18794e 1412 UINT8 *RootCert;\r
1413 UINTN RootCertSize;\r
1414 UINTN Index;\r
1415 UINTN CertCount;\r
27c93c06
LQ
1416 UINTN DbxDataSize;\r
1417 UINT8 *DbxData;\r
1418 EFI_TIME RevocationTime;\r
0c18794e 1419\r
4fc08e8d
CZ
1420 Data = NULL;\r
1421 CertList = NULL;\r
1422 CertData = NULL;\r
1423 RootCert = NULL;\r
1424 DbxData = NULL;\r
1425 RootCertSize = 0;\r
1426 VerifyStatus = FALSE;\r
0c18794e 1427\r
adc68983
JW
1428 //\r
1429 // Fetch 'db' content. If 'db' doesn't exist or encounters problem to get the\r
1430 // data, return not-allowed-by-db (FALSE).\r
1431 //\r
0c18794e 1432 DataSize = 0;\r
20333c6d 1433 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, NULL);\r
adc68983
JW
1434 ASSERT (EFI_ERROR (Status));\r
1435 if (Status != EFI_BUFFER_TOO_SMALL) {\r
1436 return VerifyStatus;\r
1437 }\r
1438\r
1439 Data = (UINT8 *) AllocateZeroPool (DataSize);\r
1440 if (Data == NULL) {\r
1441 return VerifyStatus;\r
1442 }\r
1443\r
1444 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE, &gEfiImageSecurityDatabaseGuid, NULL, &DataSize, (VOID *) Data);\r
1445 if (EFI_ERROR (Status)) {\r
1446 goto Done;\r
1447 }\r
1448\r
1449 //\r
1450 // Fetch 'dbx' content. If 'dbx' doesn't exist, continue to check 'db'.\r
1451 // If any other errors occured, no need to check 'db' but just return\r
1452 // not-allowed-by-db (FALSE) to avoid bypass.\r
1453 //\r
1454 DbxDataSize = 0;\r
1455 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE1, &gEfiImageSecurityDatabaseGuid, NULL, &DbxDataSize, NULL);\r
1456 ASSERT (EFI_ERROR (Status));\r
1457 if (Status != EFI_BUFFER_TOO_SMALL) {\r
1458 if (Status != EFI_NOT_FOUND) {\r
1459 goto Done;\r
1460 }\r
1461 //\r
1462 // 'dbx' does not exist. Continue to check 'db'.\r
1463 //\r
1464 } else {\r
1465 //\r
1466 // 'dbx' exists. Get its content.\r
1467 //\r
1468 DbxData = (UINT8 *) AllocateZeroPool (DbxDataSize);\r
1469 if (DbxData == NULL) {\r
1470 goto Done;\r
570b3d1a 1471 }\r
0c18794e 1472\r
adc68983 1473 Status = gRT->GetVariable (EFI_IMAGE_SECURITY_DATABASE1, &gEfiImageSecurityDatabaseGuid, NULL, &DbxDataSize, (VOID *) DbxData);\r
0c18794e 1474 if (EFI_ERROR (Status)) {\r
1475 goto Done;\r
1476 }\r
adc68983 1477 }\r
45bf2c47 1478\r
adc68983
JW
1479 //\r
1480 // Find X509 certificate in Signature List to verify the signature in pkcs7 signed data.\r
1481 //\r
1482 CertList = (EFI_SIGNATURE_LIST *) Data;\r
1483 while ((DataSize > 0) && (DataSize >= CertList->SignatureListSize)) {\r
1484 if (CompareGuid (&CertList->SignatureType, &gEfiCertX509Guid)) {\r
1485 CertData = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertList + sizeof (EFI_SIGNATURE_LIST) + CertList->SignatureHeaderSize);\r
1486 CertCount = (CertList->SignatureListSize - sizeof (EFI_SIGNATURE_LIST) - CertList->SignatureHeaderSize) / CertList->SignatureSize;\r
20333c6d 1487\r
adc68983
JW
1488 for (Index = 0; Index < CertCount; Index++) {\r
1489 //\r
1490 // Iterate each Signature Data Node within this CertList for verify.\r
1491 //\r
1492 RootCert = CertData->SignatureData;\r
1493 RootCertSize = CertList->SignatureSize - sizeof (EFI_GUID);\r
45bf2c47 1494\r
adc68983
JW
1495 //\r
1496 // Call AuthenticodeVerify library to Verify Authenticode struct.\r
1497 //\r
1498 VerifyStatus = AuthenticodeVerify (\r
1499 AuthData,\r
1500 AuthDataSize,\r
1501 RootCert,\r
1502 RootCertSize,\r
1503 mImageDigest,\r
1504 mImageDigestSize\r
1505 );\r
1506 if (VerifyStatus) {\r
0c18794e 1507 //\r
adc68983 1508 // The image is signed and its signature is found in 'db'.\r
0c18794e 1509 //\r
adc68983 1510 if (DbxData != NULL) {\r
27c93c06
LQ
1511 //\r
1512 // Here We still need to check if this RootCert's Hash is revoked\r
1513 //\r
a83dbf00
JW
1514 Status = IsCertHashFoundInDatabase (RootCert, RootCertSize, (EFI_SIGNATURE_LIST *)DbxData, DbxDataSize, &RevocationTime, &IsFound);\r
1515 if (EFI_ERROR (Status)) {\r
1516 //\r
1517 // Error in searching dbx. Consider it as 'found'. RevocationTime might\r
1518 // not be valid in such situation.\r
1519 //\r
1520 VerifyStatus = FALSE;\r
1521 } else if (IsFound) {\r
27c93c06 1522 //\r
531c89a1 1523 // Check the timestamp signature and signing time to determine if the RootCert can be trusted.\r
27c93c06
LQ
1524 //\r
1525 VerifyStatus = PassTimestampCheck (AuthData, AuthDataSize, &RevocationTime);\r
531c89a1
CS
1526 if (!VerifyStatus) {\r
1527 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is signed and signature is accepted by DB, but its root cert failed the timestamp check.\n"));\r
1528 }\r
27c93c06 1529 }\r
0c18794e 1530 }\r
20333c6d 1531\r
adc68983
JW
1532 //\r
1533 // There's no 'dbx' to check revocation time against (must-be pass),\r
1534 // or, there's revocation time found in 'dbx' and checked againt 'dbt'\r
1535 // (maybe pass or fail, depending on timestamp compare result). Either\r
1536 // way the verification job has been completed at this point.\r
1537 //\r
1538 goto Done;\r
45bf2c47 1539 }\r
20333c6d 1540\r
adc68983
JW
1541 CertData = (EFI_SIGNATURE_DATA *) ((UINT8 *) CertData + CertList->SignatureSize);\r
1542 }\r
0c18794e 1543 }\r
adc68983
JW
1544\r
1545 DataSize -= CertList->SignatureListSize;\r
1546 CertList = (EFI_SIGNATURE_LIST *) ((UINT8 *) CertList + CertList->SignatureListSize);\r
0c18794e 1547 }\r
1548\r
45bf2c47 1549Done:\r
4fc08e8d 1550\r
27c93c06 1551 if (VerifyStatus) {\r
4fc08e8d 1552 SecureBootHook (EFI_IMAGE_SECURITY_DATABASE, &gEfiImageSecurityDatabaseGuid, CertList->SignatureSize, CertData);\r
27c93c06
LQ
1553 }\r
1554\r
45bf2c47 1555 if (Data != NULL) {\r
1556 FreePool (Data);\r
1557 }\r
27c93c06
LQ
1558 if (DbxData != NULL) {\r
1559 FreePool (DbxData);\r
1560 }\r
0c18794e 1561\r
45bf2c47 1562 return VerifyStatus;\r
1563}\r
0c18794e 1564\r
0c18794e 1565/**\r
1566 Provide verification service for signed images, which include both signature validation\r
45bf2c47 1567 and platform policy control. For signature types, both UEFI WIN_CERTIFICATE_UEFI_GUID and\r
0c18794e 1568 MSFT Authenticode type signatures are supported.\r
0c18794e 1569\r
45bf2c47 1570 In this implementation, only verify external executables when in USER MODE.\r
1571 Executables from FV is bypass, so pass in AuthenticationStatus is ignored.\r
1572\r
6de4c35f 1573 The image verification policy is:\r
50fe73a1 1574 If the image is signed,\r
6de4c35f 1575 At least one valid signature or at least one hash value of the image must match a record\r
1576 in the security database "db", and no valid signature nor any hash value of the image may\r
1577 be reflected in the security database "dbx".\r
50fe73a1 1578 Otherwise, the image is not signed,\r
6de4c35f 1579 The SHA256 hash value of the image must match a record in the security database "db", and\r
1580 not be reflected in the security data base "dbx".\r
45bf2c47 1581\r
dc204d5a
JY
1582 Caution: This function may receive untrusted input.\r
1583 PE/COFF image is external input, so this function will validate its data structure\r
1584 within this image buffer before use.\r
1585\r
45bf2c47 1586 @param[in] AuthenticationStatus\r
0c18794e 1587 This is the authentication status returned from the security\r
1588 measurement services for the input file.\r
1589 @param[in] File This is a pointer to the device path of the file that is\r
1590 being dispatched. This will optionally be used for logging.\r
1591 @param[in] FileBuffer File buffer matches the input file device path.\r
1592 @param[in] FileSize Size of File buffer matches the input file device path.\r
5db28a67
LG
1593 @param[in] BootPolicy A boot policy that was used to call LoadImage() UEFI service.\r
1594\r
1595 @retval EFI_SUCCESS The file specified by DevicePath and non-NULL\r
1596 FileBuffer did authenticate, and the platform policy dictates\r
1597 that the DXE Foundation may use the file.\r
1598 @retval EFI_SUCCESS The device path specified by NULL device path DevicePath\r
1599 and non-NULL FileBuffer did authenticate, and the platform\r
1600 policy dictates that the DXE Foundation may execute the image in\r
1601 FileBuffer.\r
0c18794e 1602 @retval EFI_SECURITY_VIOLATION The file specified by File did not authenticate, and\r
1603 the platform policy dictates that File should be placed\r
5db28a67
LG
1604 in the untrusted state. The image has been added to the file\r
1605 execution table.\r
1606 @retval EFI_ACCESS_DENIED The file specified by File and FileBuffer did not\r
1607 authenticate, and the platform policy dictates that the DXE\r
8b0932c1
LE
1608 Foundation may not use File. The image has\r
1609 been added to the file execution table.\r
0c18794e 1610\r
1611**/\r
1612EFI_STATUS\r
1613EFIAPI\r
1614DxeImageVerificationHandler (\r
1615 IN UINT32 AuthenticationStatus,\r
1616 IN CONST EFI_DEVICE_PATH_PROTOCOL *File,\r
1617 IN VOID *FileBuffer,\r
5db28a67
LG
1618 IN UINTN FileSize,\r
1619 IN BOOLEAN BootPolicy\r
0c18794e 1620 )\r
0c18794e 1621{\r
551d8081 1622 EFI_IMAGE_DOS_HEADER *DosHdr;\r
1e0f973b 1623 BOOLEAN IsVerified;\r
551d8081 1624 EFI_SIGNATURE_LIST *SignatureList;\r
1625 UINTN SignatureListSize;\r
1626 EFI_SIGNATURE_DATA *Signature;\r
1627 EFI_IMAGE_EXECUTION_ACTION Action;\r
1628 WIN_CERTIFICATE *WinCertificate;\r
1629 UINT32 Policy;\r
560ac77e 1630 UINT8 *SecureBoot;\r
551d8081 1631 PE_COFF_LOADER_IMAGE_CONTEXT ImageContext;\r
1632 UINT32 NumberOfRvaAndSizes;\r
f6f9031f 1633 WIN_CERTIFICATE_EFI_PKCS *PkcsCertData;\r
1634 WIN_CERTIFICATE_UEFI_GUID *WinCertUefiGuid;\r
1635 UINT8 *AuthData;\r
1636 UINTN AuthDataSize;\r
1637 EFI_IMAGE_DATA_DIRECTORY *SecDataDir;\r
6de4c35f 1638 UINT32 OffSet;\r
213cc100 1639 CHAR16 *NameStr;\r
61a9fa58 1640 RETURN_STATUS PeCoffStatus;\r
47650a5c 1641 EFI_STATUS HashStatus;\r
0c18794e 1642\r
0c18794e 1643 SignatureList = NULL;\r
1644 SignatureListSize = 0;\r
1645 WinCertificate = NULL;\r
f6f9031f 1646 SecDataDir = NULL;\r
1647 PkcsCertData = NULL;\r
0c18794e 1648 Action = EFI_IMAGE_EXECUTION_AUTH_UNTESTED;\r
1e0f973b 1649 IsVerified = FALSE;\r
6de4c35f 1650\r
4fc08e8d 1651\r
0c18794e 1652 //\r
1653 // Check the image type and get policy setting.\r
1654 //\r
1655 switch (GetImageType (File)) {\r
45bf2c47 1656\r
0c18794e 1657 case IMAGE_FROM_FV:\r
1658 Policy = ALWAYS_EXECUTE;\r
1659 break;\r
1660\r
1661 case IMAGE_FROM_OPTION_ROM:\r
1662 Policy = PcdGet32 (PcdOptionRomImageVerificationPolicy);\r
1663 break;\r
1664\r
1665 case IMAGE_FROM_REMOVABLE_MEDIA:\r
1666 Policy = PcdGet32 (PcdRemovableMediaImageVerificationPolicy);\r
1667 break;\r
1668\r
1669 case IMAGE_FROM_FIXED_MEDIA:\r
1670 Policy = PcdGet32 (PcdFixedMediaImageVerificationPolicy);\r
1671 break;\r
1672\r
1673 default:\r
45bf2c47 1674 Policy = DENY_EXECUTE_ON_SECURITY_VIOLATION;\r
0c18794e 1675 break;\r
1676 }\r
1677 //\r
1678 // If policy is always/never execute, return directly.\r
1679 //\r
1680 if (Policy == ALWAYS_EXECUTE) {\r
1681 return EFI_SUCCESS;\r
eccb856f
LE
1682 }\r
1683 if (Policy == NEVER_EXECUTE) {\r
0c18794e 1684 return EFI_ACCESS_DENIED;\r
1685 }\r
beda2356 1686\r
db44ea6c 1687 //\r
20333c6d 1688 // The policy QUERY_USER_ON_SECURITY_VIOLATION and ALLOW_EXECUTE_ON_SECURITY_VIOLATION\r
68fc0c73 1689 // violates the UEFI spec and has been removed.\r
db44ea6c 1690 //\r
68fc0c73
FS
1691 ASSERT (Policy != QUERY_USER_ON_SECURITY_VIOLATION && Policy != ALLOW_EXECUTE_ON_SECURITY_VIOLATION);\r
1692 if (Policy == QUERY_USER_ON_SECURITY_VIOLATION || Policy == ALLOW_EXECUTE_ON_SECURITY_VIOLATION) {\r
db44ea6c
FS
1693 CpuDeadLoop ();\r
1694 }\r
1695\r
560ac77e 1696 GetEfiGlobalVariable2 (EFI_SECURE_BOOT_MODE_NAME, (VOID**)&SecureBoot, NULL);\r
beda2356 1697 //\r
8f8ca22e 1698 // Skip verification if SecureBoot variable doesn't exist.\r
beda2356 1699 //\r
560ac77e 1700 if (SecureBoot == NULL) {\r
beda2356 1701 return EFI_SUCCESS;\r
1702 }\r
1703\r
1704 //\r
4fc08e8d 1705 // Skip verification if SecureBoot is disabled but not AuditMode\r
beda2356 1706 //\r
560ac77e
ZC
1707 if (*SecureBoot == SECURE_BOOT_MODE_DISABLE) {\r
1708 FreePool (SecureBoot);\r
beda2356 1709 return EFI_SUCCESS;\r
45bf2c47 1710 }\r
560ac77e 1711 FreePool (SecureBoot);\r
551d8081 1712\r
0c18794e 1713 //\r
1714 // Read the Dos header.\r
1715 //\r
570b3d1a 1716 if (FileBuffer == NULL) {\r
6d575927 1717 return EFI_ACCESS_DENIED;\r
570b3d1a 1718 }\r
551d8081 1719\r
0c18794e 1720 mImageBase = (UINT8 *) FileBuffer;\r
1721 mImageSize = FileSize;\r
28186d45
ED
1722\r
1723 ZeroMem (&ImageContext, sizeof (ImageContext));\r
1724 ImageContext.Handle = (VOID *) FileBuffer;\r
e0192326 1725 ImageContext.ImageRead = (PE_COFF_LOADER_READ_FILE) DxeImageVerificationLibImageRead;\r
28186d45
ED
1726\r
1727 //\r
1728 // Get information about the image being loaded\r
1729 //\r
61a9fa58
LE
1730 PeCoffStatus = PeCoffLoaderGetImageInfo (&ImageContext);\r
1731 if (RETURN_ERROR (PeCoffStatus)) {\r
28186d45
ED
1732 //\r
1733 // The information can't be got from the invalid PeImage\r
1734 //\r
531c89a1 1735 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: PeImage invalid. Cannot retrieve image information.\n"));\r
c602e974 1736 goto Failed;\r
28186d45
ED
1737 }\r
1738\r
badd40f9 1739 DosHdr = (EFI_IMAGE_DOS_HEADER *) mImageBase;\r
0c18794e 1740 if (DosHdr->e_magic == EFI_IMAGE_DOS_SIGNATURE) {\r
1741 //\r
45bf2c47 1742 // DOS image header is present,\r
0c18794e 1743 // so read the PE header after the DOS image header.\r
1744 //\r
1745 mPeCoffHeaderOffset = DosHdr->e_lfanew;\r
1746 } else {\r
1747 mPeCoffHeaderOffset = 0;\r
1748 }\r
1749 //\r
1750 // Check PE/COFF image.\r
1751 //\r
1752 mNtHeader.Pe32 = (EFI_IMAGE_NT_HEADERS32 *) (mImageBase + mPeCoffHeaderOffset);\r
1753 if (mNtHeader.Pe32->Signature != EFI_IMAGE_NT_SIGNATURE) {\r
1754 //\r
1755 // It is not a valid Pe/Coff file.\r
1756 //\r
531c89a1 1757 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Not a valid PE/COFF image.\n"));\r
c602e974 1758 goto Failed;\r
0c18794e 1759 }\r
1760\r
f199664c 1761 if (mNtHeader.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
0c18794e 1762 //\r
1763 // Use PE32 offset.\r
1764 //\r
551d8081 1765 NumberOfRvaAndSizes = mNtHeader.Pe32->OptionalHeader.NumberOfRvaAndSizes;\r
1766 if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_SECURITY) {\r
f6f9031f 1767 SecDataDir = (EFI_IMAGE_DATA_DIRECTORY *) &mNtHeader.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY];\r
20333c6d 1768 }\r
570b3d1a 1769 } else {\r
1770 //\r
551d8081 1771 // Use PE32+ offset.\r
570b3d1a 1772 //\r
551d8081 1773 NumberOfRvaAndSizes = mNtHeader.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;\r
1774 if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_SECURITY) {\r
f6f9031f 1775 SecDataDir = (EFI_IMAGE_DATA_DIRECTORY *) &mNtHeader.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY];\r
551d8081 1776 }\r
0c18794e 1777 }\r
1778\r
6de4c35f 1779 //\r
1780 // Start Image Validation.\r
1781 //\r
1782 if (SecDataDir == NULL || SecDataDir->Size == 0) {\r
0c18794e 1783 //\r
20333c6d 1784 // This image is not signed. The SHA256 hash value of the image must match a record in the security database "db",\r
6de4c35f 1785 // and not be reflected in the security data base "dbx".\r
0c18794e 1786 //\r
45bf2c47 1787 if (!HashPeImage (HASHALG_SHA256)) {\r
531c89a1 1788 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Failed to hash this image using %s.\n", mHashTypeStr));\r
c602e974 1789 goto Failed;\r
45bf2c47 1790 }\r
1791\r
1792 if (IsSignatureFoundInDatabase (EFI_IMAGE_SECURITY_DATABASE1, mImageDigest, &mCertType, mImageDigestSize)) {\r
1793 //\r
1794 // Image Hash is in forbidden database (DBX).\r
1795 //\r
531c89a1 1796 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is not signed and %s hash of image is forbidden by DBX.\n", mHashTypeStr));\r
c602e974 1797 goto Failed;\r
45bf2c47 1798 }\r
1799\r
1800 if (IsSignatureFoundInDatabase (EFI_IMAGE_SECURITY_DATABASE, mImageDigest, &mCertType, mImageDigestSize)) {\r
1801 //\r
1802 // Image Hash is in allowed database (DB).\r
1803 //\r
1804 return EFI_SUCCESS;\r
1805 }\r
1806\r
1807 //\r
1808 // Image Hash is not found in both forbidden and allowed database.\r
1809 //\r
531c89a1 1810 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is not signed and %s hash of image is not found in DB/DBX.\n", mHashTypeStr));\r
c602e974 1811 goto Failed;\r
0c18794e 1812 }\r
45bf2c47 1813\r
0c18794e 1814 //\r
20333c6d 1815 // Verify the signature of the image, multiple signatures are allowed as per PE/COFF Section 4.7\r
6de4c35f 1816 // "Attribute Certificate Table".\r
1817 // The first certificate starts at offset (SecDataDir->VirtualAddress) from the start of the file.\r
0c18794e 1818 //\r
6de4c35f 1819 for (OffSet = SecDataDir->VirtualAddress;\r
1820 OffSet < (SecDataDir->VirtualAddress + SecDataDir->Size);\r
2bf41ed7 1821 OffSet += (WinCertificate->dwLength + ALIGN_SIZE (WinCertificate->dwLength))) {\r
6de4c35f 1822 WinCertificate = (WIN_CERTIFICATE *) (mImageBase + OffSet);\r
1823 if ((SecDataDir->VirtualAddress + SecDataDir->Size - OffSet) <= sizeof (WIN_CERTIFICATE) ||\r
1824 (SecDataDir->VirtualAddress + SecDataDir->Size - OffSet) < WinCertificate->dwLength) {\r
1825 break;\r
1826 }\r
20333c6d 1827\r
0c18794e 1828 //\r
6de4c35f 1829 // Verify the image's Authenticode signature, only DER-encoded PKCS#7 signed data is supported.\r
0c18794e 1830 //\r
6de4c35f 1831 if (WinCertificate->wCertificateType == WIN_CERT_TYPE_PKCS_SIGNED_DATA) {\r
1832 //\r
20333c6d 1833 // The certificate is formatted as WIN_CERTIFICATE_EFI_PKCS which is described in the\r
6de4c35f 1834 // Authenticode specification.\r
1835 //\r
1836 PkcsCertData = (WIN_CERTIFICATE_EFI_PKCS *) WinCertificate;\r
1837 if (PkcsCertData->Hdr.dwLength <= sizeof (PkcsCertData->Hdr)) {\r
1838 break;\r
1839 }\r
1840 AuthData = PkcsCertData->CertData;\r
1841 AuthDataSize = PkcsCertData->Hdr.dwLength - sizeof(PkcsCertData->Hdr);\r
1842 } else if (WinCertificate->wCertificateType == WIN_CERT_TYPE_EFI_GUID) {\r
1843 //\r
1844 // The certificate is formatted as WIN_CERTIFICATE_UEFI_GUID which is described in UEFI Spec.\r
1845 //\r
1846 WinCertUefiGuid = (WIN_CERTIFICATE_UEFI_GUID *) WinCertificate;\r
1847 if (WinCertUefiGuid->Hdr.dwLength <= OFFSET_OF(WIN_CERTIFICATE_UEFI_GUID, CertData)) {\r
1848 break;\r
1849 }\r
1850 if (!CompareGuid (&WinCertUefiGuid->CertType, &gEfiCertPkcs7Guid)) {\r
1851 continue;\r
1852 }\r
1853 AuthData = WinCertUefiGuid->CertData;\r
1854 AuthDataSize = WinCertUefiGuid->Hdr.dwLength - OFFSET_OF(WIN_CERTIFICATE_UEFI_GUID, CertData);\r
1855 } else {\r
1856 if (WinCertificate->dwLength < sizeof (WIN_CERTIFICATE)) {\r
1857 break;\r
1858 }\r
1859 continue;\r
84bce75b 1860 }\r
6de4c35f 1861\r
47650a5c
LE
1862 HashStatus = HashPeImageByType (AuthData, AuthDataSize);\r
1863 if (EFI_ERROR (HashStatus)) {\r
6de4c35f 1864 continue;\r
0c18794e 1865 }\r
20333c6d 1866\r
f6f9031f 1867 //\r
6de4c35f 1868 // Check the digital signature against the revoked certificate in forbidden database (dbx).\r
f6f9031f 1869 //\r
560ac77e 1870 if (IsForbiddenByDbx (AuthData, AuthDataSize)) {\r
6de4c35f 1871 Action = EFI_IMAGE_EXECUTION_AUTH_SIG_FAILED;\r
1e0f973b 1872 IsVerified = FALSE;\r
6de4c35f 1873 break;\r
f6f9031f 1874 }\r
0c18794e 1875\r
1876 //\r
6de4c35f 1877 // Check the digital signature against the valid certificate in allowed database (db).\r
0c18794e 1878 //\r
1e0f973b 1879 if (!IsVerified) {\r
560ac77e 1880 if (IsAllowedByDb (AuthData, AuthDataSize)) {\r
1e0f973b 1881 IsVerified = TRUE;\r
6de4c35f 1882 }\r
0c18794e 1883 }\r
6de4c35f 1884\r
0c18794e 1885 //\r
6de4c35f 1886 // Check the image's hash value.\r
0c18794e 1887 //\r
6de4c35f 1888 if (IsSignatureFoundInDatabase (EFI_IMAGE_SECURITY_DATABASE1, mImageDigest, &mCertType, mImageDigestSize)) {\r
1889 Action = EFI_IMAGE_EXECUTION_AUTH_SIG_FOUND;\r
531c89a1 1890 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is signed but %s hash of image is found in DBX.\n", mHashTypeStr));\r
1e0f973b 1891 IsVerified = FALSE;\r
6de4c35f 1892 break;\r
eccb856f
LE
1893 }\r
1894 if (!IsVerified) {\r
6de4c35f 1895 if (IsSignatureFoundInDatabase (EFI_IMAGE_SECURITY_DATABASE, mImageDigest, &mCertType, mImageDigestSize)) {\r
1e0f973b 1896 IsVerified = TRUE;\r
531c89a1
CS
1897 } else {\r
1898 DEBUG ((DEBUG_INFO, "DxeImageVerificationLib: Image is signed but signature is not allowed by DB and %s hash of image is not found in DB/DBX.\n", mHashTypeStr));\r
6de4c35f 1899 }\r
45bf2c47 1900 }\r
50fe73a1 1901 }\r
1902\r
6de4c35f 1903 if (OffSet != (SecDataDir->VirtualAddress + SecDataDir->Size)) {\r
0c18794e 1904 //\r
d6b926e7 1905 // The Size in Certificate Table or the attribute certificate table is corrupted.\r
0c18794e 1906 //\r
1e0f973b 1907 IsVerified = FALSE;\r
6de4c35f 1908 }\r
20333c6d 1909\r
1e0f973b 1910 if (IsVerified) {\r
6de4c35f 1911 return EFI_SUCCESS;\r
eccb856f 1912 }\r
eccb856f
LE
1913 if (Action == EFI_IMAGE_EXECUTION_AUTH_SIG_FAILED || Action == EFI_IMAGE_EXECUTION_AUTH_SIG_FOUND) {\r
1914 //\r
1915 // Get image hash value as signature of executable.\r
1916 //\r
1917 SignatureListSize = sizeof (EFI_SIGNATURE_LIST) + sizeof (EFI_SIGNATURE_DATA) - 1 + mImageDigestSize;\r
1918 SignatureList = (EFI_SIGNATURE_LIST *) AllocateZeroPool (SignatureListSize);\r
1919 if (SignatureList == NULL) {\r
6aa31db5 1920 SignatureListSize = 0;\r
c602e974 1921 goto Failed;\r
50fe73a1 1922 }\r
eccb856f
LE
1923 SignatureList->SignatureHeaderSize = 0;\r
1924 SignatureList->SignatureListSize = (UINT32) SignatureListSize;\r
1925 SignatureList->SignatureSize = (UINT32) (sizeof (EFI_SIGNATURE_DATA) - 1 + mImageDigestSize);\r
1926 CopyMem (&SignatureList->SignatureType, &mCertType, sizeof (EFI_GUID));\r
1927 Signature = (EFI_SIGNATURE_DATA *) ((UINT8 *) SignatureList + sizeof (EFI_SIGNATURE_LIST));\r
1928 CopyMem (Signature->SignatureData, mImageDigest, mImageDigestSize);\r
0c18794e 1929 }\r
1930\r
c602e974
LE
1931Failed:\r
1932 //\r
8b0932c1
LE
1933 // Policy decides to defer or reject the image; add its information in image\r
1934 // executable information table in either case.\r
c602e974
LE
1935 //\r
1936 NameStr = ConvertDevicePathToText (File, FALSE, TRUE);\r
1937 AddImageExeInfo (Action, NameStr, File, SignatureList, SignatureListSize);\r
1938 if (NameStr != NULL) {\r
1939 DEBUG ((DEBUG_INFO, "The image doesn't pass verification: %s\n", NameStr));\r
1940 FreePool(NameStr);\r
0c18794e 1941 }\r
1942\r
1943 if (SignatureList != NULL) {\r
1944 FreePool (SignatureList);\r
1945 }\r
1946\r
8b0932c1
LE
1947 if (Policy == DEFER_EXECUTE_ON_SECURITY_VIOLATION) {\r
1948 return EFI_SECURITY_VIOLATION;\r
1949 }\r
1950 return EFI_ACCESS_DENIED;\r
0c18794e 1951}\r
1952\r
ffccb935
DG
1953/**\r
1954 On Ready To Boot Services Event notification handler.\r
1955\r
1956 Add the image execution information table if it is not in system configuration table.\r
1957\r
1958 @param[in] Event Event whose notification function is being invoked\r
1959 @param[in] Context Pointer to the notification function's context\r
1960\r
1961**/\r
1962VOID\r
1963EFIAPI\r
1964OnReadyToBoot (\r
1965 IN EFI_EVENT Event,\r
1966 IN VOID *Context\r
1967 )\r
1968{\r
1969 EFI_IMAGE_EXECUTION_INFO_TABLE *ImageExeInfoTable;\r
1970 UINTN ImageExeInfoTableSize;\r
1971\r
1972 EfiGetSystemConfigurationTable (&gEfiImageSecurityDatabaseGuid, (VOID **) &ImageExeInfoTable);\r
1973 if (ImageExeInfoTable != NULL) {\r
1974 return;\r
1975 }\r
1976\r
1977 ImageExeInfoTableSize = sizeof (EFI_IMAGE_EXECUTION_INFO_TABLE);\r
1978 ImageExeInfoTable = (EFI_IMAGE_EXECUTION_INFO_TABLE *) AllocateRuntimePool (ImageExeInfoTableSize);\r
1979 if (ImageExeInfoTable == NULL) {\r
1980 return ;\r
1981 }\r
1982\r
20333c6d 1983 ImageExeInfoTable->NumberOfImages = 0;\r
ffccb935
DG
1984 gBS->InstallConfigurationTable (&gEfiImageSecurityDatabaseGuid, (VOID *) ImageExeInfoTable);\r
1985\r
1986}\r
1987\r
0c18794e 1988/**\r
1989 Register security measurement handler.\r
1990\r
1991 @param ImageHandle ImageHandle of the loaded driver.\r
1992 @param SystemTable Pointer to the EFI System Table.\r
1993\r
1994 @retval EFI_SUCCESS The handlers were registered successfully.\r
1995**/\r
1996EFI_STATUS\r
1997EFIAPI\r
1998DxeImageVerificationLibConstructor (\r
1999 IN EFI_HANDLE ImageHandle,\r
2000 IN EFI_SYSTEM_TABLE *SystemTable\r
2001 )\r
2002{\r
ffccb935
DG
2003 EFI_EVENT Event;\r
2004\r
2005 //\r
2006 // Register the event to publish the image execution table.\r
2007 //\r
2008 EfiCreateEventReadyToBootEx (\r
2009 TPL_CALLBACK,\r
20333c6d
QL
2010 OnReadyToBoot,\r
2011 NULL,\r
ffccb935 2012 &Event\r
20333c6d 2013 );\r
ffccb935 2014\r
5db28a67 2015 return RegisterSecurity2Handler (\r
0c18794e 2016 DxeImageVerificationHandler,\r
2017 EFI_AUTH_OPERATION_VERIFY_IMAGE | EFI_AUTH_OPERATION_IMAGE_REQUIRED\r
45bf2c47 2018 );\r
0c18794e 2019}\r