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30fdf114 1/** @file\r
97fa0ee9 2This file contains the internal functions required to generate a Firmware Volume.\r
30fdf114 3\r
3c3277f2 4Copyright (c) 2004 - 2018, Intel Corporation. All rights reserved.<BR>\r
4afd3d04 5Portions Copyright (c) 2011 - 2013, ARM Ltd. All rights reserved.<BR>\r
eca22f36 6Portions Copyright (c) 2016 HP Development Company, L.P.<BR>\r
ad1db975 7Portions Copyright (c) 2020, Hewlett Packard Enterprise Development LP. All rights reserved.<BR>\r
2e351cbe 8SPDX-License-Identifier: BSD-2-Clause-Patent\r
30fdf114 9\r
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10**/\r
11\r
12//\r
13// Include files\r
14//\r
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15\r
16#if defined(__FreeBSD__)\r
17#include <uuid.h>\r
18#elif defined(__GNUC__)\r
30fdf114 19#include <uuid/uuid.h>\r
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20#endif\r
21#ifdef __GNUC__\r
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22#include <sys/stat.h>\r
23#endif\r
24#include <string.h>\r
25#ifndef __GNUC__\r
26#include <io.h>\r
27#endif\r
28#include <assert.h>\r
29\r
47746688
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30#include <Guid/FfsSectionAlignmentPadding.h>\r
31\r
006c2647 32#include "WinNtInclude.h"\r
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33#include "GenFvInternalLib.h"\r
34#include "FvLib.h"\r
35#include "PeCoffLib.h"\r
30fdf114 36\r
eca22f36
EC
37#define ARM64_UNCONDITIONAL_JUMP_INSTRUCTION 0x14000000\r
38\r
ca177387
EC
39/*\r
40 * Arm instruction to jump to Fv entry instruction in Arm or Thumb mode.\r
41 * From ARM Arch Ref Manual versions b/c/d, section A8.8.25 BL, BLX (immediate)\r
42 * BLX (encoding A2) branches to offset in Thumb instruction set mode.\r
43 * BL (encoding A1) branches to offset in Arm instruction set mode.\r
44 */\r
45#define ARM_JUMP_OFFSET_MAX 0xffffff\r
46#define ARM_JUMP_TO_ARM(Offset) (0xeb000000 | ((Offset - 8) >> 2))\r
47\r
48#define _ARM_JUMP_TO_THUMB(Imm32) (0xfa000000 | \\r
49 (((Imm32) & (1 << 1)) << (24 - 1)) | \\r
50 (((Imm32) >> 2) & 0x7fffff))\r
51#define ARM_JUMP_TO_THUMB(Offset) _ARM_JUMP_TO_THUMB((Offset) - 8)\r
52\r
53/*\r
54 * Arm instruction to return from exception (MOVS PC, LR)\r
55 */\r
56#define ARM_RETURN_FROM_EXCEPTION 0xE1B0F07E\r
57\r
30fdf114 58BOOLEAN mArm = FALSE;\r
ad1db975 59BOOLEAN mRiscV = FALSE;\r
30fdf114 60STATIC UINT32 MaxFfsAlignment = 0;\r
9425b349 61BOOLEAN VtfFileFlag = FALSE;\r
30fdf114 62\r
47746688 63EFI_GUID mEfiFirmwareVolumeTopFileGuid = EFI_FFS_VOLUME_TOP_FILE_GUID;\r
30fdf114 64EFI_GUID mFileGuidArray [MAX_NUMBER_OF_FILES_IN_FV];\r
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65EFI_GUID mZeroGuid = {0x0, 0x0, 0x0, {0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}};\r
66EFI_GUID mDefaultCapsuleGuid = {0x3B6686BD, 0x0D76, 0x4030, { 0xB7, 0x0E, 0xB5, 0x51, 0x9E, 0x2F, 0xC5, 0xA0 }};\r
67EFI_GUID mEfiFfsSectionAlignmentPaddingGuid = EFI_FFS_SECTION_ALIGNMENT_PADDING_GUID;\r
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68\r
69CHAR8 *mFvbAttributeName[] = {\r
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70 EFI_FVB2_READ_DISABLED_CAP_STRING,\r
71 EFI_FVB2_READ_ENABLED_CAP_STRING,\r
72 EFI_FVB2_READ_STATUS_STRING,\r
30fdf114 73 EFI_FVB2_WRITE_DISABLED_CAP_STRING,\r
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74 EFI_FVB2_WRITE_ENABLED_CAP_STRING,\r
75 EFI_FVB2_WRITE_STATUS_STRING,\r
76 EFI_FVB2_LOCK_CAP_STRING,\r
77 EFI_FVB2_LOCK_STATUS_STRING,\r
30fdf114 78 NULL,\r
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79 EFI_FVB2_STICKY_WRITE_STRING,\r
80 EFI_FVB2_MEMORY_MAPPED_STRING,\r
81 EFI_FVB2_ERASE_POLARITY_STRING,\r
82 EFI_FVB2_READ_LOCK_CAP_STRING,\r
83 EFI_FVB2_READ_LOCK_STATUS_STRING,\r
84 EFI_FVB2_WRITE_LOCK_CAP_STRING,\r
85 EFI_FVB2_WRITE_LOCK_STATUS_STRING\r
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86};\r
87\r
88CHAR8 *mFvbAlignmentName[] = {\r
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89 EFI_FVB2_ALIGNMENT_1_STRING,\r
90 EFI_FVB2_ALIGNMENT_2_STRING,\r
91 EFI_FVB2_ALIGNMENT_4_STRING,\r
92 EFI_FVB2_ALIGNMENT_8_STRING,\r
93 EFI_FVB2_ALIGNMENT_16_STRING,\r
94 EFI_FVB2_ALIGNMENT_32_STRING,\r
95 EFI_FVB2_ALIGNMENT_64_STRING,\r
96 EFI_FVB2_ALIGNMENT_128_STRING,\r
97 EFI_FVB2_ALIGNMENT_256_STRING,\r
98 EFI_FVB2_ALIGNMENT_512_STRING,\r
99 EFI_FVB2_ALIGNMENT_1K_STRING,\r
100 EFI_FVB2_ALIGNMENT_2K_STRING,\r
101 EFI_FVB2_ALIGNMENT_4K_STRING,\r
102 EFI_FVB2_ALIGNMENT_8K_STRING,\r
103 EFI_FVB2_ALIGNMENT_16K_STRING,\r
104 EFI_FVB2_ALIGNMENT_32K_STRING,\r
105 EFI_FVB2_ALIGNMENT_64K_STRING,\r
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106 EFI_FVB2_ALIGNMENT_128K_STRING,\r
107 EFI_FVB2_ALIGNMENT_256K_STRING,\r
2bcc713e 108 EFI_FVB2_ALIGNMENT_512K_STRING,\r
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109 EFI_FVB2_ALIGNMENT_1M_STRING,\r
110 EFI_FVB2_ALIGNMENT_2M_STRING,\r
111 EFI_FVB2_ALIGNMENT_4M_STRING,\r
112 EFI_FVB2_ALIGNMENT_8M_STRING,\r
113 EFI_FVB2_ALIGNMENT_16M_STRING,\r
114 EFI_FVB2_ALIGNMENT_32M_STRING,\r
115 EFI_FVB2_ALIGNMENT_64M_STRING,\r
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116 EFI_FVB2_ALIGNMENT_128M_STRING,\r
117 EFI_FVB2_ALIGNMENT_256M_STRING,\r
118 EFI_FVB2_ALIGNMENT_512M_STRING,\r
f7496d71 119 EFI_FVB2_ALIGNMENT_1G_STRING,\r
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120 EFI_FVB2_ALIGNMENT_2G_STRING\r
121};\r
122\r
123//\r
124// This data array will be located at the base of the Firmware Volume Header (FVH)\r
125// in the boot block. It must not exceed 14 bytes of code. The last 2 bytes\r
126// will be used to keep the FVH checksum consistent.\r
fb0b35e0 127// This code will be run in response to a startup IPI for HT-enabled systems.\r
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128//\r
129#define SIZEOF_STARTUP_DATA_ARRAY 0x10\r
130\r
131UINT8 m128kRecoveryStartupApDataArray[SIZEOF_STARTUP_DATA_ARRAY] = {\r
132 //\r
133 // EA D0 FF 00 F0 ; far jmp F000:FFD0\r
134 // 0, 0, 0, 0, 0, 0, 0, 0, 0, ; Reserved bytes\r
135 // 0, 0 ; Checksum Padding\r
136 //\r
137 0xEA,\r
138 0xD0,\r
139 0xFF,\r
140 0x0,\r
141 0xF0,\r
142 0x00,\r
143 0x00,\r
144 0x00,\r
145 0x00,\r
146 0x00,\r
147 0x00,\r
148 0x00,\r
149 0x00,\r
150 0x00,\r
151 0x00,\r
152 0x00\r
153};\r
154\r
155UINT8 m64kRecoveryStartupApDataArray[SIZEOF_STARTUP_DATA_ARRAY] = {\r
156 //\r
157 // EB CE ; jmp short ($-0x30)\r
158 // ; (from offset 0x0 to offset 0xFFD0)\r
159 // 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, ; Reserved bytes\r
160 // 0, 0 ; Checksum Padding\r
161 //\r
162 0xEB,\r
163 0xCE,\r
164 0x00,\r
165 0x00,\r
166 0x00,\r
167 0x00,\r
168 0x00,\r
169 0x00,\r
170 0x00,\r
171 0x00,\r
172 0x00,\r
173 0x00,\r
174 0x00,\r
175 0x00,\r
176 0x00,\r
177 0x00\r
178};\r
179\r
180FV_INFO mFvDataInfo;\r
181CAP_INFO mCapDataInfo;\r
e8a47801 182BOOLEAN mIsLargeFfs = FALSE;\r
30fdf114 183\r
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184EFI_PHYSICAL_ADDRESS mFvBaseAddress[0x10];\r
185UINT32 mFvBaseAddressNumber = 0;\r
186\r
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187EFI_STATUS\r
188ParseFvInf (\r
189 IN MEMORY_FILE *InfFile,\r
190 OUT FV_INFO *FvInfo\r
191 )\r
192/*++\r
193\r
194Routine Description:\r
195\r
196 This function parses a FV.INF file and copies info into a FV_INFO structure.\r
197\r
198Arguments:\r
199\r
200 InfFile Memory file image.\r
201 FvInfo Information read from INF file.\r
202\r
203Returns:\r
204\r
205 EFI_SUCCESS INF file information successfully retrieved.\r
206 EFI_ABORTED INF file has an invalid format.\r
207 EFI_NOT_FOUND A required string was not found in the INF file.\r
208--*/\r
209{\r
1be2ed90 210 CHAR8 Value[MAX_LONG_FILE_PATH];\r
30fdf114 211 UINT64 Value64;\r
fd171542 212 UINTN Index;\r
213 UINTN Number;\r
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214 EFI_STATUS Status;\r
215 EFI_GUID GuidValue;\r
216\r
217 //\r
218 // Read the FV base address\r
219 //\r
220 if (!mFvDataInfo.BaseAddressSet) {\r
221 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_FV_BASE_ADDRESS_STRING, 0, Value);\r
222 if (Status == EFI_SUCCESS) {\r
223 //\r
224 // Get the base address\r
225 //\r
226 Status = AsciiStringToUint64 (Value, FALSE, &Value64);\r
227 if (EFI_ERROR (Status)) {\r
228 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_FV_BASE_ADDRESS_STRING, Value);\r
229 return EFI_ABORTED;\r
230 }\r
231 DebugMsg (NULL, 0, 9, "rebase address", "%s = %s", EFI_FV_BASE_ADDRESS_STRING, Value);\r
232\r
233 FvInfo->BaseAddress = Value64;\r
79b74a03 234 FvInfo->BaseAddressSet = TRUE;\r
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235 }\r
236 }\r
237\r
238 //\r
239 // Read the FV File System Guid\r
240 //\r
241 if (!FvInfo->FvFileSystemGuidSet) {\r
242 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_FV_FILESYSTEMGUID_STRING, 0, Value);\r
243 if (Status == EFI_SUCCESS) {\r
244 //\r
245 // Get the guid value\r
246 //\r
247 Status = StringToGuid (Value, &GuidValue);\r
248 if (EFI_ERROR (Status)) {\r
249 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_FV_FILESYSTEMGUID_STRING, Value);\r
250 return EFI_ABORTED;\r
251 }\r
252 memcpy (&FvInfo->FvFileSystemGuid, &GuidValue, sizeof (EFI_GUID));\r
253 FvInfo->FvFileSystemGuidSet = TRUE;\r
254 }\r
255 }\r
256\r
257 //\r
b303ea72 258 // Read the FV Extension Header File Name\r
30fdf114 259 //\r
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260 Status = FindToken (InfFile, ATTRIBUTES_SECTION_STRING, EFI_FV_EXT_HEADER_FILE_NAME, 0, Value);\r
261 if (Status == EFI_SUCCESS) {\r
262 strcpy (FvInfo->FvExtHeaderFile, Value);\r
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LG
263 }\r
264\r
265 //\r
266 // Read the FV file name\r
267 //\r
268 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_FV_FILE_NAME_STRING, 0, Value);\r
269 if (Status == EFI_SUCCESS) {\r
270 //\r
271 // copy the file name\r
272 //\r
273 strcpy (FvInfo->FvName, Value);\r
274 }\r
f7496d71 275\r
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276 //\r
277 // Read Fv Attribute\r
278 //\r
279 for (Index = 0; Index < sizeof (mFvbAttributeName)/sizeof (CHAR8 *); Index ++) {\r
280 if ((mFvbAttributeName [Index] != NULL) && \\r
281 (FindToken (InfFile, ATTRIBUTES_SECTION_STRING, mFvbAttributeName [Index], 0, Value) == EFI_SUCCESS)) {\r
282 if ((strcmp (Value, TRUE_STRING) == 0) || (strcmp (Value, ONE_STRING) == 0)) {\r
283 FvInfo->FvAttributes |= 1 << Index;\r
284 } else if ((strcmp (Value, FALSE_STRING) != 0) && (strcmp (Value, ZERO_STRING) != 0)) {\r
285 Error (NULL, 0, 2000, "Invalid parameter", "%s expected %s | %s", mFvbAttributeName [Index], TRUE_STRING, FALSE_STRING);\r
286 return EFI_ABORTED;\r
287 }\r
288 }\r
289 }\r
290\r
291 //\r
292 // Read Fv Alignment\r
293 //\r
294 for (Index = 0; Index < sizeof (mFvbAlignmentName)/sizeof (CHAR8 *); Index ++) {\r
295 if (FindToken (InfFile, ATTRIBUTES_SECTION_STRING, mFvbAlignmentName [Index], 0, Value) == EFI_SUCCESS) {\r
296 if (strcmp (Value, TRUE_STRING) == 0) {\r
297 FvInfo->FvAttributes |= Index << 16;\r
298 DebugMsg (NULL, 0, 9, "FV file alignment", "Align = %s", mFvbAlignmentName [Index]);\r
299 break;\r
300 }\r
301 }\r
302 }\r
303\r
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304 //\r
305 // Read weak alignment flag\r
306 //\r
307 Status = FindToken (InfFile, ATTRIBUTES_SECTION_STRING, EFI_FV_WEAK_ALIGNMENT_STRING, 0, Value);\r
308 if (Status == EFI_SUCCESS) {\r
309 if ((strcmp (Value, TRUE_STRING) == 0) || (strcmp (Value, ONE_STRING) == 0)) {\r
310 FvInfo->FvAttributes |= EFI_FVB2_WEAK_ALIGNMENT;\r
311 } else if ((strcmp (Value, FALSE_STRING) != 0) && (strcmp (Value, ZERO_STRING) != 0)) {\r
312 Error (NULL, 0, 2000, "Invalid parameter", "Weak alignment value expected one of TRUE, FALSE, 1 or 0.");\r
313 return EFI_ABORTED;\r
314 }\r
315 }\r
316\r
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317 //\r
318 // Read block maps\r
319 //\r
320 for (Index = 0; Index < MAX_NUMBER_OF_FV_BLOCKS; Index++) {\r
321 if (FvInfo->FvBlocks[Index].Length == 0) {\r
322 //\r
323 // Read block size\r
324 //\r
325 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_BLOCK_SIZE_STRING, Index, Value);\r
326\r
327 if (Status == EFI_SUCCESS) {\r
328 //\r
329 // Update the size of block\r
330 //\r
331 Status = AsciiStringToUint64 (Value, FALSE, &Value64);\r
332 if (EFI_ERROR (Status)) {\r
333 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_BLOCK_SIZE_STRING, Value);\r
334 return EFI_ABORTED;\r
335 }\r
336\r
337 FvInfo->FvBlocks[Index].Length = (UINT32) Value64;\r
338 DebugMsg (NULL, 0, 9, "FV Block Size", "%s = %s", EFI_BLOCK_SIZE_STRING, Value);\r
339 } else {\r
340 //\r
341 // If there is no blocks size, but there is the number of block, then we have a mismatched pair\r
342 // and should return an error.\r
343 //\r
344 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_NUM_BLOCKS_STRING, Index, Value);\r
345 if (!EFI_ERROR (Status)) {\r
346 Error (NULL, 0, 2000, "Invalid parameter", "both %s and %s must be specified.", EFI_NUM_BLOCKS_STRING, EFI_BLOCK_SIZE_STRING);\r
347 return EFI_ABORTED;\r
348 } else {\r
349 //\r
350 // We are done\r
351 //\r
352 break;\r
353 }\r
354 }\r
355\r
356 //\r
357 // Read blocks number\r
358 //\r
359 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_NUM_BLOCKS_STRING, Index, Value);\r
360\r
361 if (Status == EFI_SUCCESS) {\r
362 //\r
363 // Update the number of blocks\r
364 //\r
365 Status = AsciiStringToUint64 (Value, FALSE, &Value64);\r
366 if (EFI_ERROR (Status)) {\r
367 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_NUM_BLOCKS_STRING, Value);\r
368 return EFI_ABORTED;\r
369 }\r
370\r
371 FvInfo->FvBlocks[Index].NumBlocks = (UINT32) Value64;\r
372 DebugMsg (NULL, 0, 9, "FV Block Number", "%s = %s", EFI_NUM_BLOCKS_STRING, Value);\r
373 }\r
374 }\r
375 }\r
376\r
377 if (Index == 0) {\r
378 Error (NULL, 0, 2001, "Missing required argument", "block size.");\r
379 return EFI_ABORTED;\r
380 }\r
381\r
382 //\r
383 // Read files\r
384 //\r
385 Number = 0;\r
386 for (Number = 0; Number < MAX_NUMBER_OF_FILES_IN_FV; Number ++) {\r
387 if (FvInfo->FvFiles[Number][0] == '\0') {\r
388 break;\r
389 }\r
390 }\r
391\r
6f30cefd 392 for (Index = 0; Number + Index < MAX_NUMBER_OF_FILES_IN_FV; Index++) {\r
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LG
393 //\r
394 // Read the FFS file list\r
395 //\r
396 Status = FindToken (InfFile, FILES_SECTION_STRING, EFI_FILE_NAME_STRING, Index, Value);\r
397\r
398 if (Status == EFI_SUCCESS) {\r
399 //\r
400 // Add the file\r
401 //\r
402 strcpy (FvInfo->FvFiles[Number + Index], Value);\r
fd171542 403 DebugMsg (NULL, 0, 9, "FV component file", "the %uth name is %s", (unsigned) Index, Value);\r
30fdf114
LG
404 } else {\r
405 break;\r
406 }\r
407 }\r
408\r
409 if ((Index + Number) == 0) {\r
410 Warning (NULL, 0, 0, "FV components are not specified.", NULL);\r
411 }\r
412\r
413 return EFI_SUCCESS;\r
414}\r
415\r
416VOID\r
417UpdateFfsFileState (\r
418 IN EFI_FFS_FILE_HEADER *FfsFile,\r
419 IN EFI_FIRMWARE_VOLUME_HEADER *FvHeader\r
420 )\r
421/*++\r
422\r
423Routine Description:\r
424\r
425 This function changes the FFS file attributes based on the erase polarity\r
f7496d71 426 of the FV. Update the reserved bits of State to EFI_FVB2_ERASE_POLARITY.\r
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LG
427\r
428Arguments:\r
429\r
430 FfsFile File header.\r
431 FvHeader FV header.\r
432\r
433Returns:\r
434\r
435 None\r
436\r
437--*/\r
438{\r
439 if (FvHeader->Attributes & EFI_FVB2_ERASE_POLARITY) {\r
440 FfsFile->State = (UINT8)~(FfsFile->State);\r
441 // FfsFile->State |= ~(UINT8) EFI_FILE_ALL_STATE_BITS;\r
442 }\r
443}\r
444\r
445EFI_STATUS\r
446ReadFfsAlignment (\r
447 IN EFI_FFS_FILE_HEADER *FfsFile,\r
448 IN OUT UINT32 *Alignment\r
449 )\r
450/*++\r
451\r
452Routine Description:\r
453\r
454 This function determines the alignment of the FFS input file from the file\r
455 attributes.\r
456\r
457Arguments:\r
458\r
459 FfsFile FFS file to parse\r
460 Alignment The minimum required alignment offset of the FFS file\r
461\r
462Returns:\r
463\r
464 EFI_SUCCESS The function completed successfully.\r
465 EFI_INVALID_PARAMETER One of the input parameters was invalid.\r
466 EFI_ABORTED An error occurred.\r
467\r
468--*/\r
469{\r
470 //\r
471 // Verify input parameters.\r
472 //\r
473 if (FfsFile == NULL || Alignment == NULL) {\r
474 return EFI_INVALID_PARAMETER;\r
475 }\r
476\r
477 switch ((FfsFile->Attributes >> 3) & 0x07) {\r
478\r
479 case 0:\r
480 //\r
2bc3256c 481 // 1 byte alignment\r
fb0b35e0 482 //if bit 1 have set, 128K byte alignment\r
30fdf114 483 //\r
e921f58d
YZ
484 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
485 *Alignment = 17;\r
486 } else {\r
487 *Alignment = 0;\r
488 }\r
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LG
489 break;\r
490\r
491 case 1:\r
492 //\r
493 // 16 byte alignment\r
e921f58d 494 //if bit 1 have set, 256K byte alignment\r
30fdf114 495 //\r
e921f58d
YZ
496 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
497 *Alignment = 18;\r
498 } else {\r
499 *Alignment = 4;\r
500 }\r
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501 break;\r
502\r
503 case 2:\r
504 //\r
505 // 128 byte alignment\r
e921f58d 506 //if bit 1 have set, 512K byte alignment\r
30fdf114 507 //\r
e921f58d
YZ
508 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
509 *Alignment = 19;\r
510 } else {\r
511 *Alignment = 7;\r
512 }\r
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513 break;\r
514\r
515 case 3:\r
516 //\r
517 // 512 byte alignment\r
e921f58d 518 //if bit 1 have set, 1M byte alignment\r
30fdf114 519 //\r
e921f58d
YZ
520 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
521 *Alignment = 20;\r
522 } else {\r
523 *Alignment = 9;\r
524 }\r
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525 break;\r
526\r
527 case 4:\r
528 //\r
529 // 1K byte alignment\r
e921f58d 530 //if bit 1 have set, 2M byte alignment\r
30fdf114 531 //\r
e921f58d
YZ
532 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
533 *Alignment = 21;\r
534 } else {\r
535 *Alignment = 10;\r
536 }\r
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LG
537 break;\r
538\r
539 case 5:\r
540 //\r
541 // 4K byte alignment\r
e921f58d 542 //if bit 1 have set, 4M byte alignment\r
30fdf114 543 //\r
e921f58d
YZ
544 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
545 *Alignment = 22;\r
546 } else {\r
547 *Alignment = 12;\r
548 }\r
30fdf114
LG
549 break;\r
550\r
551 case 6:\r
552 //\r
553 // 32K byte alignment\r
e921f58d 554 //if bit 1 have set , 8M byte alignment\r
30fdf114 555 //\r
e921f58d
YZ
556 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
557 *Alignment = 23;\r
558 } else {\r
559 *Alignment = 15;\r
560 }\r
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LG
561 break;\r
562\r
563 case 7:\r
564 //\r
565 // 64K byte alignment\r
e921f58d 566 //if bit 1 have set, 16M alignment\r
30fdf114 567 //\r
e921f58d
YZ
568 if (FfsFile->Attributes & FFS_ATTRIB_DATA_ALIGNMENT2) {\r
569 *Alignment = 24;\r
570 } else {\r
571 *Alignment = 16;\r
572 }\r
30fdf114
LG
573 break;\r
574\r
575 default:\r
576 break;\r
577 }\r
578\r
579 return EFI_SUCCESS;\r
580}\r
581\r
582EFI_STATUS\r
583AddPadFile (\r
584 IN OUT MEMORY_FILE *FvImage,\r
585 IN UINT32 DataAlignment,\r
fd171542 586 IN VOID *FvEnd,\r
e8a47801
LG
587 IN EFI_FIRMWARE_VOLUME_EXT_HEADER *ExtHeader,\r
588 IN UINT32 NextFfsSize\r
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589 )\r
590/*++\r
591\r
592Routine Description:\r
593\r
594 This function adds a pad file to the FV image if it required to align the\r
595 data of the next file.\r
596\r
597Arguments:\r
598\r
fd171542 599 FvImage The memory image of the FV to add it to.\r
600 The current offset must be valid.\r
30fdf114 601 DataAlignment The data alignment of the next FFS file.\r
fd171542 602 FvEnd End of the empty data in FvImage.\r
f7496d71 603 ExtHeader PI FvExtHeader Optional\r
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604\r
605Returns:\r
606\r
607 EFI_SUCCESS The function completed successfully.\r
608 EFI_INVALID_PARAMETER One of the input parameters was invalid.\r
609 EFI_OUT_OF_RESOURCES Insufficient resources exist in the FV to complete\r
610 the pad file add.\r
611\r
612--*/\r
613{\r
614 EFI_FFS_FILE_HEADER *PadFile;\r
615 UINTN PadFileSize;\r
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616 UINT32 NextFfsHeaderSize;\r
617 UINT32 CurFfsHeaderSize;\r
9425b349 618 UINT32 Index;\r
30fdf114 619\r
9425b349 620 Index = 0;\r
e8a47801 621 CurFfsHeaderSize = sizeof (EFI_FFS_FILE_HEADER);\r
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622 //\r
623 // Verify input parameters.\r
624 //\r
625 if (FvImage == NULL) {\r
626 return EFI_INVALID_PARAMETER;\r
627 }\r
628\r
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629 //\r
630 // Calculate the pad file size\r
631 //\r
30fdf114 632\r
fd171542 633 //\r
634 // Append extension header size\r
635 //\r
636 if (ExtHeader != NULL) {\r
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637 PadFileSize = ExtHeader->ExtHeaderSize;\r
638 if (PadFileSize + sizeof (EFI_FFS_FILE_HEADER) >= MAX_FFS_SIZE) {\r
639 CurFfsHeaderSize = sizeof (EFI_FFS_FILE_HEADER2);\r
640 }\r
641 PadFileSize += CurFfsHeaderSize;\r
642 } else {\r
643 NextFfsHeaderSize = sizeof (EFI_FFS_FILE_HEADER);\r
644 if (NextFfsSize >= MAX_FFS_SIZE) {\r
645 NextFfsHeaderSize = sizeof (EFI_FFS_FILE_HEADER2);\r
646 }\r
647 //\r
648 // Check if a pad file is necessary\r
649 //\r
650 if (((UINTN) FvImage->CurrentFilePointer - (UINTN) FvImage->FileImage + NextFfsHeaderSize) % DataAlignment == 0) {\r
651 return EFI_SUCCESS;\r
652 }\r
653 PadFileSize = (UINTN) FvImage->CurrentFilePointer - (UINTN) FvImage->FileImage + sizeof (EFI_FFS_FILE_HEADER) + NextFfsHeaderSize;\r
654 //\r
655 // Add whatever it takes to get to the next aligned address\r
656 //\r
657 while ((PadFileSize % DataAlignment) != 0) {\r
658 PadFileSize++;\r
659 }\r
660 //\r
661 // Subtract the next file header size\r
662 //\r
663 PadFileSize -= NextFfsHeaderSize;\r
664 //\r
665 // Subtract the starting offset to get size\r
666 //\r
667 PadFileSize -= (UINTN) FvImage->CurrentFilePointer - (UINTN) FvImage->FileImage;\r
fd171542 668 }\r
669\r
670 //\r
671 // Verify that we have enough space for the file header\r
672 //\r
673 if (((UINTN) FvImage->CurrentFilePointer + PadFileSize) > (UINTN) FvEnd) {\r
674 return EFI_OUT_OF_RESOURCES;\r
675 }\r
676\r
677 //\r
678 // Write pad file header\r
679 //\r
680 PadFile = (EFI_FFS_FILE_HEADER *) FvImage->CurrentFilePointer;\r
681\r
682 //\r
683 // Write PadFile FFS header with PadType, don't need to set PAD file guid in its header.\r
684 //\r
685 PadFile->Type = EFI_FV_FILETYPE_FFS_PAD;\r
686 PadFile->Attributes = 0;\r
687\r
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688 //\r
689 // Write pad file size (calculated size minus next file header size)\r
690 //\r
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691 if (PadFileSize >= MAX_FFS_SIZE) {\r
692 memset(PadFile->Size, 0, sizeof(UINT8) * 3);\r
693 ((EFI_FFS_FILE_HEADER2 *)PadFile)->ExtendedSize = PadFileSize;\r
694 PadFile->Attributes |= FFS_ATTRIB_LARGE_FILE;\r
695 } else {\r
696 PadFile->Size[0] = (UINT8) (PadFileSize & 0xFF);\r
697 PadFile->Size[1] = (UINT8) ((PadFileSize >> 8) & 0xFF);\r
698 PadFile->Size[2] = (UINT8) ((PadFileSize >> 16) & 0xFF);\r
699 }\r
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700\r
701 //\r
702 // Fill in checksums and state, they must be 0 for checksumming.\r
703 //\r
704 PadFile->IntegrityCheck.Checksum.Header = 0;\r
705 PadFile->IntegrityCheck.Checksum.File = 0;\r
706 PadFile->State = 0;\r
e8a47801 707 PadFile->IntegrityCheck.Checksum.Header = CalculateChecksum8 ((UINT8 *) PadFile, CurFfsHeaderSize);\r
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708 PadFile->IntegrityCheck.Checksum.File = FFS_FIXED_CHECKSUM;\r
709\r
710 PadFile->State = EFI_FILE_HEADER_CONSTRUCTION | EFI_FILE_HEADER_VALID | EFI_FILE_DATA_VALID;\r
711 UpdateFfsFileState (\r
712 (EFI_FFS_FILE_HEADER *) PadFile,\r
713 (EFI_FIRMWARE_VOLUME_HEADER *) FvImage->FileImage\r
714 );\r
fd171542 715\r
716 //\r
717 // Update the current FV pointer\r
718 //\r
719 FvImage->CurrentFilePointer += PadFileSize;\r
720\r
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721 if (ExtHeader != NULL) {\r
722 //\r
723 // Copy Fv Extension Header and Set Fv Extension header offset\r
724 //\r
9425b349
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725 if (ExtHeader->ExtHeaderSize > sizeof (EFI_FIRMWARE_VOLUME_EXT_HEADER)) {\r
726 for (Index = sizeof (EFI_FIRMWARE_VOLUME_EXT_HEADER); Index < ExtHeader->ExtHeaderSize;) {\r
727 if (((EFI_FIRMWARE_VOLUME_EXT_ENTRY *)((UINT8 *)ExtHeader + Index))-> ExtEntryType == EFI_FV_EXT_TYPE_USED_SIZE_TYPE) {\r
728 if (VtfFileFlag) {\r
729 ((EFI_FIRMWARE_VOLUME_EXT_ENTRY_USED_SIZE_TYPE *)((UINT8 *)ExtHeader + Index))->UsedSize = mFvTotalSize;\r
730 } else {\r
731 ((EFI_FIRMWARE_VOLUME_EXT_ENTRY_USED_SIZE_TYPE *)((UINT8 *)ExtHeader + Index))->UsedSize = mFvTakenSize;\r
732 }\r
733 break;\r
734 }\r
735 Index += ((EFI_FIRMWARE_VOLUME_EXT_ENTRY *)((UINT8 *)ExtHeader + Index))-> ExtEntrySize;\r
736 }\r
737 }\r
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738 memcpy ((UINT8 *)PadFile + CurFfsHeaderSize, ExtHeader, ExtHeader->ExtHeaderSize);\r
739 ((EFI_FIRMWARE_VOLUME_HEADER *) FvImage->FileImage)->ExtHeaderOffset = (UINT16) ((UINTN) ((UINT8 *)PadFile + CurFfsHeaderSize) - (UINTN) FvImage->FileImage);\r
f7496d71 740 //\r
fb0b35e0 741 // Make next file start at QWord Boundary\r
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742 //\r
743 while (((UINTN) FvImage->CurrentFilePointer & (EFI_FFS_FILE_HEADER_ALIGNMENT - 1)) != 0) {\r
744 FvImage->CurrentFilePointer++;\r
745 }\r
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746 }\r
747\r
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748 return EFI_SUCCESS;\r
749}\r
750\r
751BOOLEAN\r
752IsVtfFile (\r
753 IN EFI_FFS_FILE_HEADER *FileBuffer\r
754 )\r
755/*++\r
756\r
757Routine Description:\r
758\r
759 This function checks the header to validate if it is a VTF file\r
760\r
761Arguments:\r
762\r
763 FileBuffer Buffer in which content of a file has been read.\r
764\r
765Returns:\r
766\r
767 TRUE If this is a VTF file\r
768 FALSE If this is not a VTF file\r
769\r
770--*/\r
771{\r
772 if (!memcmp (&FileBuffer->Name, &mEfiFirmwareVolumeTopFileGuid, sizeof (EFI_GUID))) {\r
773 return TRUE;\r
774 } else {\r
775 return FALSE;\r
776 }\r
777}\r
778\r
779EFI_STATUS\r
780WriteMapFile (\r
781 IN OUT FILE *FvMapFile,\r
782 IN CHAR8 *FileName,\r
f7496d71 783 IN EFI_FFS_FILE_HEADER *FfsFile,\r
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784 IN EFI_PHYSICAL_ADDRESS ImageBaseAddress,\r
785 IN PE_COFF_LOADER_IMAGE_CONTEXT *pImageContext\r
786 )\r
787/*++\r
788\r
789Routine Description:\r
790\r
791 This function gets the basic debug information (entrypoint, baseaddress, .text, .data section base address)\r
792 from PE/COFF image and abstracts Pe Map file information and add them into FvMap file for Debug.\r
793\r
794Arguments:\r
795\r
796 FvMapFile A pointer to FvMap File\r
797 FileName Ffs File PathName\r
79714906 798 FfsFile A pointer to Ffs file image.\r
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799 ImageBaseAddress PeImage Base Address.\r
800 pImageContext Image Context Information.\r
801\r
802Returns:\r
803\r
804 EFI_SUCCESS Added required map information.\r
805\r
806--*/\r
807{\r
1be2ed90 808 CHAR8 PeMapFileName [MAX_LONG_FILE_PATH];\r
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809 CHAR8 *Cptr, *Cptr2;\r
810 CHAR8 FileGuidName [MAX_LINE_LEN];\r
811 FILE *PeMapFile;\r
812 CHAR8 Line [MAX_LINE_LEN];\r
813 CHAR8 KeyWord [MAX_LINE_LEN];\r
0cecb1f9 814 CHAR8 KeyWord2 [MAX_LINE_LEN];\r
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815 CHAR8 FunctionName [MAX_LINE_LEN];\r
816 EFI_PHYSICAL_ADDRESS FunctionAddress;\r
817 UINT32 FunctionType;\r
818 CHAR8 FunctionTypeName [MAX_LINE_LEN];\r
819 UINT32 Index;\r
820 UINT32 AddressOfEntryPoint;\r
821 UINT32 Offset;\r
822 EFI_IMAGE_OPTIONAL_HEADER_UNION *ImgHdr;\r
823 EFI_TE_IMAGE_HEADER *TEImageHeader;\r
824 EFI_IMAGE_SECTION_HEADER *SectionHeader;\r
488ace56 825 long long TempLongAddress;\r
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826 UINT32 TextVirtualAddress;\r
827 UINT32 DataVirtualAddress;\r
828 EFI_PHYSICAL_ADDRESS LinkTimeBaseAddress;\r
0cecb1f9 829 BOOLEAN IsUseClang;\r
52302d4d 830\r
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831 //\r
832 // Init local variable\r
833 //\r
834 FunctionType = 0;\r
835 //\r
f7496d71 836 // Print FileGuid to string buffer.\r
30fdf114 837 //\r
79714906 838 PrintGuidToBuffer (&FfsFile->Name, (UINT8 *)FileGuidName, MAX_LINE_LEN, TRUE);\r
f7496d71 839\r
30fdf114 840 //\r
f7496d71 841 // Construct Map file Name\r
30fdf114 842 //\r
fc42d0e8
HW
843 if (strlen (FileName) >= MAX_LONG_FILE_PATH) {\r
844 return EFI_ABORTED;\r
845 }\r
846 strncpy (PeMapFileName, FileName, MAX_LONG_FILE_PATH - 1);\r
847 PeMapFileName[MAX_LONG_FILE_PATH - 1] = 0;\r
f7496d71 848\r
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849 //\r
850 // Change '\\' to '/', unified path format.\r
851 //\r
852 Cptr = PeMapFileName;\r
853 while (*Cptr != '\0') {\r
854 if (*Cptr == '\\') {\r
855 *Cptr = FILE_SEP_CHAR;\r
856 }\r
857 Cptr ++;\r
858 }\r
f7496d71 859\r
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860 //\r
861 // Get Map file\r
f7496d71 862 //\r
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863 Cptr = PeMapFileName + strlen (PeMapFileName);\r
864 while ((*Cptr != '.') && (Cptr >= PeMapFileName)) {\r
865 Cptr --;\r
866 }\r
867 if (Cptr < PeMapFileName) {\r
868 return EFI_NOT_FOUND;\r
869 } else {\r
870 *(Cptr + 1) = 'm';\r
871 *(Cptr + 2) = 'a';\r
872 *(Cptr + 3) = 'p';\r
873 *(Cptr + 4) = '\0';\r
874 }\r
875\r
876 //\r
877 // Get module Name\r
878 //\r
879 Cptr2 = Cptr;\r
880 while ((*Cptr != FILE_SEP_CHAR) && (Cptr >= PeMapFileName)) {\r
881 Cptr --;\r
882 }\r
f7496d71 883 *Cptr2 = '\0';\r
fc42d0e8
HW
884 if (strlen (Cptr + 1) >= MAX_LINE_LEN) {\r
885 return EFI_ABORTED;\r
886 }\r
887 strncpy (KeyWord, Cptr + 1, MAX_LINE_LEN - 1);\r
888 KeyWord[MAX_LINE_LEN - 1] = 0;\r
f7496d71 889 *Cptr2 = '.';\r
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890\r
891 //\r
892 // AddressOfEntryPoint and Offset in Image\r
893 //\r
894 if (!pImageContext->IsTeImage) {\r
f7496d71
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895 ImgHdr = (EFI_IMAGE_OPTIONAL_HEADER_UNION *) ((UINT8 *) pImageContext->Handle + pImageContext->PeCoffHeaderOffset);\r
896 AddressOfEntryPoint = ImgHdr->Pe32.OptionalHeader.AddressOfEntryPoint;\r
897 Offset = 0;\r
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898 SectionHeader = (EFI_IMAGE_SECTION_HEADER *) (\r
899 (UINT8 *) ImgHdr +\r
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900 sizeof (UINT32) +\r
901 sizeof (EFI_IMAGE_FILE_HEADER) +\r
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902 ImgHdr->Pe32.FileHeader.SizeOfOptionalHeader\r
903 );\r
904 Index = ImgHdr->Pe32.FileHeader.NumberOfSections;\r
905 } else {\r
f7496d71 906 TEImageHeader = (EFI_TE_IMAGE_HEADER *) pImageContext->Handle;\r
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907 AddressOfEntryPoint = TEImageHeader->AddressOfEntryPoint;\r
908 Offset = TEImageHeader->StrippedSize - sizeof (EFI_TE_IMAGE_HEADER);\r
909 SectionHeader = (EFI_IMAGE_SECTION_HEADER *) (TEImageHeader + 1);\r
910 Index = TEImageHeader->NumberOfSections;\r
911 }\r
52302d4d 912\r
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913 //\r
914 // module information output\r
915 //\r
916 if (ImageBaseAddress == 0) {\r
917 fprintf (FvMapFile, "%s (dummy) (", KeyWord);\r
52302d4d 918 fprintf (FvMapFile, "BaseAddress=%010llx, ", (unsigned long long) ImageBaseAddress);\r
30fdf114 919 } else {\r
52302d4d
LG
920 fprintf (FvMapFile, "%s (Fixed Flash Address, ", KeyWord);\r
921 fprintf (FvMapFile, "BaseAddress=0x%010llx, ", (unsigned long long) (ImageBaseAddress + Offset));\r
30fdf114 922 }\r
79714906 923\r
76e8aac1
YF
924 fprintf (FvMapFile, "EntryPoint=0x%010llx, ", (unsigned long long) (ImageBaseAddress + AddressOfEntryPoint));\r
925 if (!pImageContext->IsTeImage) {\r
926 fprintf (FvMapFile, "Type=PE");\r
927 } else {\r
928 fprintf (FvMapFile, "Type=TE");\r
929 }\r
f7496d71
LG
930 fprintf (FvMapFile, ")\n");\r
931\r
52302d4d
LG
932 fprintf (FvMapFile, "(GUID=%s", FileGuidName);\r
933 TextVirtualAddress = 0;\r
934 DataVirtualAddress = 0;\r
30fdf114 935 for (; Index > 0; Index --, SectionHeader ++) {\r
52302d4d 936 if (stricmp ((CHAR8 *)SectionHeader->Name, ".text") == 0) {\r
f7496d71
LG
937 TextVirtualAddress = SectionHeader->VirtualAddress;\r
938 } else if (stricmp ((CHAR8 *)SectionHeader->Name, ".data") == 0) {\r
939 DataVirtualAddress = SectionHeader->VirtualAddress;\r
940 } else if (stricmp ((CHAR8 *)SectionHeader->Name, ".sdata") == 0) {\r
941 DataVirtualAddress = SectionHeader->VirtualAddress;\r
942 }\r
30fdf114 943 }\r
52302d4d
LG
944 fprintf (FvMapFile, " .textbaseaddress=0x%010llx", (unsigned long long) (ImageBaseAddress + TextVirtualAddress));\r
945 fprintf (FvMapFile, " .databaseaddress=0x%010llx", (unsigned long long) (ImageBaseAddress + DataVirtualAddress));\r
946 fprintf (FvMapFile, ")\n\n");\r
f7496d71 947\r
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948 //\r
949 // Open PeMapFile\r
950 //\r
1be2ed90 951 PeMapFile = fopen (LongFilePath (PeMapFileName), "r");\r
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952 if (PeMapFile == NULL) {\r
953 // fprintf (stdout, "can't open %s file to reading\n", PeMapFileName);\r
954 return EFI_ABORTED;\r
955 }\r
956 VerboseMsg ("The map file is %s", PeMapFileName);\r
f7496d71 957\r
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958 //\r
959 // Output Functions information into Fv Map file\r
960 //\r
52302d4d 961 LinkTimeBaseAddress = 0;\r
0cecb1f9 962 IsUseClang = FALSE;\r
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963 while (fgets (Line, MAX_LINE_LEN, PeMapFile) != NULL) {\r
964 //\r
965 // Skip blank line\r
966 //\r
967 if (Line[0] == 0x0a) {\r
968 FunctionType = 0;\r
969 continue;\r
970 }\r
971 //\r
972 // By Address and Static keyword\r
f7496d71 973 //\r
30fdf114
LG
974 if (FunctionType == 0) {\r
975 sscanf (Line, "%s", KeyWord);\r
976 if (stricmp (KeyWord, "Address") == 0) {\r
0cecb1f9
ZL
977 sscanf (Line, "%s %s", KeyWord, KeyWord2);\r
978 if (stricmp (KeyWord2, "Size") == 0) {\r
979 IsUseClang = TRUE;\r
980 FunctionType = 1;\r
981 continue;\r
982 }\r
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983 //\r
984 // function list\r
985 //\r
986 FunctionType = 1;\r
987 fgets (Line, MAX_LINE_LEN, PeMapFile);\r
988 } else if (stricmp (KeyWord, "Static") == 0) {\r
989 //\r
990 // static function list\r
991 //\r
992 FunctionType = 2;\r
993 fgets (Line, MAX_LINE_LEN, PeMapFile);\r
52302d4d
LG
994 } else if (stricmp (KeyWord, "Preferred") ==0) {\r
995 sscanf (Line + strlen (" Preferred load address is"), "%llx", &TempLongAddress);\r
996 LinkTimeBaseAddress = (UINT64) TempLongAddress;\r
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LG
997 }\r
998 continue;\r
999 }\r
1000 //\r
1001 // Printf Function Information\r
1002 //\r
1003 if (FunctionType == 1) {\r
0cecb1f9
ZL
1004 if (IsUseClang) {\r
1005 sscanf (Line, "%llx %s %s %s", &TempLongAddress, KeyWord, KeyWord2, FunctionTypeName);\r
1006 FunctionAddress = (UINT64) TempLongAddress;\r
1007 if (FunctionTypeName [0] == '_' ) {\r
1008 fprintf (FvMapFile, " 0x%010llx ", (unsigned long long) (ImageBaseAddress + FunctionAddress - LinkTimeBaseAddress));\r
1009 fprintf (FvMapFile, "%s\n", FunctionTypeName);\r
1010 }\r
1011 } else {\r
1012 sscanf (Line, "%s %s %llx %s", KeyWord, FunctionName, &TempLongAddress, FunctionTypeName);\r
1013 FunctionAddress = (UINT64) TempLongAddress;\r
1014 if (FunctionTypeName [1] == '\0' && (FunctionTypeName [0] == 'f' || FunctionTypeName [0] == 'F')) {\r
1015 fprintf (FvMapFile, " 0x%010llx ", (unsigned long long) (ImageBaseAddress + FunctionAddress - LinkTimeBaseAddress));\r
1016 fprintf (FvMapFile, "%s\n", FunctionName);\r
1017 }\r
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LG
1018 }\r
1019 } else if (FunctionType == 2) {\r
fd171542 1020 sscanf (Line, "%s %s %llx %s", KeyWord, FunctionName, &TempLongAddress, FunctionTypeName);\r
1021 FunctionAddress = (UINT64) TempLongAddress;\r
30fdf114 1022 if (FunctionTypeName [1] == '\0' && (FunctionTypeName [0] == 'f' || FunctionTypeName [0] == 'F')) {\r
52302d4d 1023 fprintf (FvMapFile, " 0x%010llx ", (unsigned long long) (ImageBaseAddress + FunctionAddress - LinkTimeBaseAddress));\r
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LG
1024 fprintf (FvMapFile, "%s\n", FunctionName);\r
1025 }\r
1026 }\r
1027 }\r
1028 //\r
1029 // Close PeMap file\r
1030 //\r
1031 fprintf (FvMapFile, "\n\n");\r
1032 fclose (PeMapFile);\r
f7496d71 1033\r
30fdf114
LG
1034 return EFI_SUCCESS;\r
1035}\r
1036\r
47746688
AB
1037STATIC\r
1038BOOLEAN\r
1039AdjustInternalFfsPadding (\r
1040 IN OUT EFI_FFS_FILE_HEADER *FfsFile,\r
1041 IN OUT MEMORY_FILE *FvImage,\r
1042 IN UINTN Alignment,\r
1043 IN OUT UINTN *FileSize\r
1044 )\r
1045/*++\r
1046\r
1047Routine Description:\r
1048\r
1049 This function looks for a dedicated alignment padding section in the FFS, and\r
1050 shrinks it to the size required to line up subsequent sections correctly.\r
1051\r
1052Arguments:\r
1053\r
1054 FfsFile A pointer to Ffs file image.\r
1055 FvImage The memory image of the FV to adjust it to.\r
1056 Alignment Current file alignment\r
1057 FileSize Reference to a variable holding the size of the FFS file\r
1058\r
1059Returns:\r
1060\r
1061 TRUE Padding section was found and updated successfully\r
1062 FALSE Otherwise\r
1063\r
1064--*/\r
1065{\r
1066 EFI_FILE_SECTION_POINTER PadSection;\r
1067 UINT8 *Remainder;\r
1068 EFI_STATUS Status;\r
1069 UINT32 FfsHeaderLength;\r
1070 UINT32 FfsFileLength;\r
1071 UINT32 PadSize;\r
1072 UINTN Misalignment;\r
1073 EFI_FFS_INTEGRITY_CHECK *IntegrityCheck;\r
1074\r
1075 //\r
1076 // Figure out the misalignment: all FFS sections are aligned relative to the\r
1077 // start of the FFS payload, so use that as the base of the misalignment\r
1078 // computation.\r
1079 //\r
1080 FfsHeaderLength = GetFfsHeaderLength(FfsFile);\r
1081 Misalignment = (UINTN) FvImage->CurrentFilePointer -\r
1082 (UINTN) FvImage->FileImage + FfsHeaderLength;\r
1083 Misalignment &= Alignment - 1;\r
1084 if (Misalignment == 0) {\r
1085 // Nothing to do, return success\r
1086 return TRUE;\r
1087 }\r
1088\r
1089 //\r
1090 // We only apply this optimization to FFS files with the FIXED attribute set,\r
1091 // since the FFS will not be loadable at arbitrary offsets anymore after\r
1092 // we adjust the size of the padding section.\r
1093 //\r
1094 if ((FfsFile->Attributes & FFS_ATTRIB_FIXED) == 0) {\r
1095 return FALSE;\r
1096 }\r
1097\r
1098 //\r
1099 // Look for a dedicated padding section that we can adjust to compensate\r
1100 // for the misalignment. If such a padding section exists, it precedes all\r
1101 // sections with alignment requirements, and so the adjustment will correct\r
1102 // all of them.\r
1103 //\r
1104 Status = GetSectionByType (FfsFile, EFI_SECTION_FREEFORM_SUBTYPE_GUID, 1,\r
1105 &PadSection);\r
1106 if (EFI_ERROR (Status) ||\r
1107 CompareGuid (&PadSection.FreeformSubtypeSection->SubTypeGuid,\r
1108 &mEfiFfsSectionAlignmentPaddingGuid) != 0) {\r
1109 return FALSE;\r
1110 }\r
1111\r
1112 //\r
1113 // Find out if the size of the padding section is sufficient to compensate\r
1114 // for the misalignment.\r
1115 //\r
1116 PadSize = GetSectionFileLength (PadSection.CommonHeader);\r
1117 if (Misalignment > PadSize - sizeof (EFI_FREEFORM_SUBTYPE_GUID_SECTION)) {\r
1118 return FALSE;\r
1119 }\r
1120\r
1121 //\r
1122 // Move the remainder of the FFS file towards the front, and adjust the\r
1123 // file size output parameter.\r
1124 //\r
1125 Remainder = (UINT8 *) PadSection.CommonHeader + PadSize;\r
1126 memmove (Remainder - Misalignment, Remainder,\r
1127 *FileSize - (UINTN) (Remainder - (UINTN) FfsFile));\r
1128 *FileSize -= Misalignment;\r
1129\r
1130 //\r
1131 // Update the padding section's length with the new values. Note that the\r
1132 // padding is always < 64 KB, so we can ignore EFI_COMMON_SECTION_HEADER2\r
1133 // ExtendedSize.\r
1134 //\r
1135 PadSize -= Misalignment;\r
1136 PadSection.CommonHeader->Size[0] = (UINT8) (PadSize & 0xff);\r
1137 PadSection.CommonHeader->Size[1] = (UINT8) ((PadSize & 0xff00) >> 8);\r
1138 PadSection.CommonHeader->Size[2] = (UINT8) ((PadSize & 0xff0000) >> 16);\r
1139\r
1140 //\r
1141 // Update the FFS header with the new overall length\r
1142 //\r
1143 FfsFileLength = GetFfsFileLength (FfsFile) - Misalignment;\r
1144 if (FfsHeaderLength > sizeof(EFI_FFS_FILE_HEADER)) {\r
1145 ((EFI_FFS_FILE_HEADER2 *)FfsFile)->ExtendedSize = FfsFileLength;\r
1146 } else {\r
1147 FfsFile->Size[0] = (UINT8) (FfsFileLength & 0x000000FF);\r
1148 FfsFile->Size[1] = (UINT8) ((FfsFileLength & 0x0000FF00) >> 8);\r
1149 FfsFile->Size[2] = (UINT8) ((FfsFileLength & 0x00FF0000) >> 16);\r
1150 }\r
1151\r
1152 //\r
1153 // Clear the alignment bits: these have become meaningless now that we have\r
1154 // adjusted the padding section.\r
1155 //\r
e921f58d 1156 FfsFile->Attributes &= ~(FFS_ATTRIB_DATA_ALIGNMENT | FFS_ATTRIB_DATA_ALIGNMENT2);\r
47746688
AB
1157\r
1158 //\r
1159 // Recalculate the FFS header checksum. Instead of setting Header and State\r
1160 // both to zero, set Header to (UINT8)(-State) so State preserves its original\r
1161 // value\r
1162 //\r
1163 IntegrityCheck = &FfsFile->IntegrityCheck;\r
1164 IntegrityCheck->Checksum.Header = (UINT8) (0x100 - FfsFile->State);\r
1165 IntegrityCheck->Checksum.File = 0;\r
1166\r
1167 IntegrityCheck->Checksum.Header = CalculateChecksum8 (\r
1168 (UINT8 *) FfsFile, FfsHeaderLength);\r
1169\r
1170 if (FfsFile->Attributes & FFS_ATTRIB_CHECKSUM) {\r
1171 //\r
1172 // Ffs header checksum = zero, so only need to calculate ffs body.\r
1173 //\r
1174 IntegrityCheck->Checksum.File = CalculateChecksum8 (\r
1175 (UINT8 *) FfsFile + FfsHeaderLength,\r
1176 FfsFileLength - FfsHeaderLength);\r
1177 } else {\r
1178 IntegrityCheck->Checksum.File = FFS_FIXED_CHECKSUM;\r
1179 }\r
1180\r
1181 return TRUE;\r
1182}\r
1183\r
30fdf114
LG
1184EFI_STATUS\r
1185AddFile (\r
1186 IN OUT MEMORY_FILE *FvImage,\r
1187 IN FV_INFO *FvInfo,\r
1188 IN UINTN Index,\r
1189 IN OUT EFI_FFS_FILE_HEADER **VtfFileImage,\r
52302d4d
LG
1190 IN FILE *FvMapFile,\r
1191 IN FILE *FvReportFile\r
30fdf114
LG
1192 )\r
1193/*++\r
1194\r
1195Routine Description:\r
1196\r
1197 This function adds a file to the FV image. The file will pad to the\r
1198 appropriate alignment if required.\r
1199\r
1200Arguments:\r
1201\r
1202 FvImage The memory image of the FV to add it to. The current offset\r
1203 must be valid.\r
1204 FvInfo Pointer to information about the FV.\r
1205 Index The file in the FvInfo file list to add.\r
1206 VtfFileImage A pointer to the VTF file within the FvImage. If this is equal\r
1207 to the end of the FvImage then no VTF previously found.\r
1208 FvMapFile Pointer to FvMap File\r
52302d4d 1209 FvReportFile Pointer to FvReport File\r
30fdf114
LG
1210\r
1211Returns:\r
1212\r
1213 EFI_SUCCESS The function completed successfully.\r
1214 EFI_INVALID_PARAMETER One of the input parameters was invalid.\r
1215 EFI_ABORTED An error occurred.\r
1216 EFI_OUT_OF_RESOURCES Insufficient resources exist to complete the add.\r
1217\r
1218--*/\r
1219{\r
1220 FILE *NewFile;\r
1221 UINTN FileSize;\r
1222 UINT8 *FileBuffer;\r
1223 UINTN NumBytesRead;\r
1224 UINT32 CurrentFileAlignment;\r
1225 EFI_STATUS Status;\r
1226 UINTN Index1;\r
52302d4d 1227 UINT8 FileGuidString[PRINTED_GUID_BUFFER_SIZE];\r
f7496d71 1228\r
30fdf114
LG
1229 Index1 = 0;\r
1230 //\r
1231 // Verify input parameters.\r
1232 //\r
1233 if (FvImage == NULL || FvInfo == NULL || FvInfo->FvFiles[Index][0] == 0 || VtfFileImage == NULL) {\r
1234 return EFI_INVALID_PARAMETER;\r
1235 }\r
1236\r
1237 //\r
1238 // Read the file to add\r
1239 //\r
1be2ed90 1240 NewFile = fopen (LongFilePath (FvInfo->FvFiles[Index]), "rb");\r
30fdf114
LG
1241\r
1242 if (NewFile == NULL) {\r
1243 Error (NULL, 0, 0001, "Error opening file", FvInfo->FvFiles[Index]);\r
1244 return EFI_ABORTED;\r
1245 }\r
1246\r
1247 //\r
1248 // Get the file size\r
1249 //\r
1250 FileSize = _filelength (fileno (NewFile));\r
1251\r
1252 //\r
1253 // Read the file into a buffer\r
1254 //\r
1255 FileBuffer = malloc (FileSize);\r
1256 if (FileBuffer == NULL) {\r
320ba37a 1257 fclose (NewFile);\r
fb0b35e0 1258 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated!");\r
30fdf114
LG
1259 return EFI_OUT_OF_RESOURCES;\r
1260 }\r
1261\r
1262 NumBytesRead = fread (FileBuffer, sizeof (UINT8), FileSize, NewFile);\r
1263\r
1264 //\r
1265 // Done with the file, from this point on we will just use the buffer read.\r
1266 //\r
1267 fclose (NewFile);\r
f7496d71 1268\r
30fdf114
LG
1269 //\r
1270 // Verify read successful\r
1271 //\r
1272 if (NumBytesRead != sizeof (UINT8) * FileSize) {\r
1273 free (FileBuffer);\r
1274 Error (NULL, 0, 0004, "Error reading file", FvInfo->FvFiles[Index]);\r
1275 return EFI_ABORTED;\r
1276 }\r
f7496d71 1277\r
30fdf114
LG
1278 //\r
1279 // For None PI Ffs file, directly add them into FvImage.\r
1280 //\r
1281 if (!FvInfo->IsPiFvImage) {\r
1282 memcpy (FvImage->CurrentFilePointer, FileBuffer, FileSize);\r
1283 if (FvInfo->SizeofFvFiles[Index] > FileSize) {\r
f7496d71 1284 FvImage->CurrentFilePointer += FvInfo->SizeofFvFiles[Index];\r
30fdf114 1285 } else {\r
f7496d71 1286 FvImage->CurrentFilePointer += FileSize;\r
30fdf114
LG
1287 }\r
1288 goto Done;\r
1289 }\r
f7496d71 1290\r
30fdf114
LG
1291 //\r
1292 // Verify Ffs file\r
1293 //\r
1294 Status = VerifyFfsFile ((EFI_FFS_FILE_HEADER *)FileBuffer);\r
1295 if (EFI_ERROR (Status)) {\r
1296 free (FileBuffer);\r
d0acc87a 1297 Error (NULL, 0, 3000, "Invalid", "%s is not a valid FFS file.", FvInfo->FvFiles[Index]);\r
30fdf114
LG
1298 return EFI_INVALID_PARAMETER;\r
1299 }\r
1300\r
1301 //\r
1302 // Verify space exists to add the file\r
1303 //\r
1304 if (FileSize > (UINTN) ((UINTN) *VtfFileImage - (UINTN) FvImage->CurrentFilePointer)) {\r
1305 free (FileBuffer);\r
1306 Error (NULL, 0, 4002, "Resource", "FV space is full, not enough room to add file %s.", FvInfo->FvFiles[Index]);\r
1307 return EFI_OUT_OF_RESOURCES;\r
1308 }\r
1309\r
1310 //\r
1311 // Verify the input file is the duplicated file in this Fv image\r
1312 //\r
1313 for (Index1 = 0; Index1 < Index; Index1 ++) {\r
1314 if (CompareGuid ((EFI_GUID *) FileBuffer, &mFileGuidArray [Index1]) == 0) {\r
fd171542 1315 Error (NULL, 0, 2000, "Invalid parameter", "the %dth file and %uth file have the same file GUID.", (unsigned) Index1 + 1, (unsigned) Index + 1);\r
30fdf114 1316 PrintGuid ((EFI_GUID *) FileBuffer);\r
6db97871 1317 free (FileBuffer);\r
30fdf114
LG
1318 return EFI_INVALID_PARAMETER;\r
1319 }\r
1320 }\r
1321 CopyMem (&mFileGuidArray [Index], FileBuffer, sizeof (EFI_GUID));\r
1322\r
1323 //\r
1324 // Update the file state based on polarity of the FV.\r
1325 //\r
1326 UpdateFfsFileState (\r
1327 (EFI_FFS_FILE_HEADER *) FileBuffer,\r
1328 (EFI_FIRMWARE_VOLUME_HEADER *) FvImage->FileImage\r
1329 );\r
1330\r
1331 //\r
1332 // Check if alignment is required\r
1333 //\r
1334 ReadFfsAlignment ((EFI_FFS_FILE_HEADER *) FileBuffer, &CurrentFileAlignment);\r
f7496d71 1335\r
30fdf114
LG
1336 //\r
1337 // Find the largest alignment of all the FFS files in the FV\r
1338 //\r
1339 if (CurrentFileAlignment > MaxFfsAlignment) {\r
1340 MaxFfsAlignment = CurrentFileAlignment;\r
1341 }\r
1342 //\r
1343 // If we have a VTF file, add it at the top.\r
1344 //\r
1345 if (IsVtfFile ((EFI_FFS_FILE_HEADER *) FileBuffer)) {\r
1346 if ((UINTN) *VtfFileImage == (UINTN) FvImage->Eof) {\r
1347 //\r
1348 // No previous VTF, add this one.\r
1349 //\r
1350 *VtfFileImage = (EFI_FFS_FILE_HEADER *) (UINTN) ((UINTN) FvImage->FileImage + FvInfo->Size - FileSize);\r
1351 //\r
1352 // Sanity check. The file MUST align appropriately\r
1353 //\r
e8a47801 1354 if (((UINTN) *VtfFileImage + GetFfsHeaderLength((EFI_FFS_FILE_HEADER *)FileBuffer) - (UINTN) FvImage->FileImage) % (1 << CurrentFileAlignment)) {\r
fd171542 1355 Error (NULL, 0, 3000, "Invalid", "VTF file cannot be aligned on a %u-byte boundary.", (unsigned) (1 << CurrentFileAlignment));\r
30fdf114
LG
1356 free (FileBuffer);\r
1357 return EFI_ABORTED;\r
1358 }\r
1359 //\r
f7496d71 1360 // Rebase the PE or TE image in FileBuffer of FFS file for XIP\r
30fdf114
LG
1361 // Rebase for the debug genfvmap tool\r
1362 //\r
b36d134f
LG
1363 Status = FfsRebase (FvInfo, FvInfo->FvFiles[Index], (EFI_FFS_FILE_HEADER *) FileBuffer, (UINTN) *VtfFileImage - (UINTN) FvImage->FileImage, FvMapFile);\r
1364 if (EFI_ERROR (Status)) {\r
1365 Error (NULL, 0, 3000, "Invalid", "Could not rebase %s.", FvInfo->FvFiles[Index]);\r
1366 return Status;\r
f7496d71 1367 }\r
30fdf114
LG
1368 //\r
1369 // copy VTF File\r
1370 //\r
1371 memcpy (*VtfFileImage, FileBuffer, FileSize);\r
f7496d71
LG
1372\r
1373 PrintGuidToBuffer ((EFI_GUID *) FileBuffer, FileGuidString, sizeof (FileGuidString), TRUE);\r
52302d4d
LG
1374 fprintf (FvReportFile, "0x%08X %s\n", (unsigned)(UINTN) (((UINT8 *)*VtfFileImage) - (UINTN)FvImage->FileImage), FileGuidString);\r
1375\r
30fdf114
LG
1376 free (FileBuffer);\r
1377 DebugMsg (NULL, 0, 9, "Add VTF FFS file in FV image", NULL);\r
1378 return EFI_SUCCESS;\r
1379 } else {\r
1380 //\r
1381 // Already found a VTF file.\r
1382 //\r
1383 Error (NULL, 0, 3000, "Invalid", "multiple VTF files are not permitted within a single FV.");\r
1384 free (FileBuffer);\r
1385 return EFI_ABORTED;\r
1386 }\r
1387 }\r
1388\r
1389 //\r
1390 // Add pad file if necessary\r
1391 //\r
47746688
AB
1392 if (!AdjustInternalFfsPadding ((EFI_FFS_FILE_HEADER *) FileBuffer, FvImage,\r
1393 1 << CurrentFileAlignment, &FileSize)) {\r
1394 Status = AddPadFile (FvImage, 1 << CurrentFileAlignment, *VtfFileImage, NULL, FileSize);\r
1395 if (EFI_ERROR (Status)) {\r
1396 Error (NULL, 0, 4002, "Resource", "FV space is full, could not add pad file for data alignment property.");\r
1397 free (FileBuffer);\r
1398 return EFI_ABORTED;\r
1399 }\r
30fdf114
LG
1400 }\r
1401 //\r
1402 // Add file\r
1403 //\r
fd171542 1404 if ((UINTN) (FvImage->CurrentFilePointer + FileSize) <= (UINTN) (*VtfFileImage)) {\r
30fdf114 1405 //\r
f7496d71 1406 // Rebase the PE or TE image in FileBuffer of FFS file for XIP.\r
30fdf114
LG
1407 // Rebase Bs and Rt drivers for the debug genfvmap tool.\r
1408 //\r
b36d134f 1409 Status = FfsRebase (FvInfo, FvInfo->FvFiles[Index], (EFI_FFS_FILE_HEADER *) FileBuffer, (UINTN) FvImage->CurrentFilePointer - (UINTN) FvImage->FileImage, FvMapFile);\r
f7496d71
LG
1410 if (EFI_ERROR (Status)) {\r
1411 Error (NULL, 0, 3000, "Invalid", "Could not rebase %s.", FvInfo->FvFiles[Index]);\r
1412 return Status;\r
1413 }\r
30fdf114
LG
1414 //\r
1415 // Copy the file\r
1416 //\r
1417 memcpy (FvImage->CurrentFilePointer, FileBuffer, FileSize);\r
f7496d71 1418 PrintGuidToBuffer ((EFI_GUID *) FileBuffer, FileGuidString, sizeof (FileGuidString), TRUE);\r
52302d4d 1419 fprintf (FvReportFile, "0x%08X %s\n", (unsigned) (FvImage->CurrentFilePointer - FvImage->FileImage), FileGuidString);\r
30fdf114
LG
1420 FvImage->CurrentFilePointer += FileSize;\r
1421 } else {\r
1422 Error (NULL, 0, 4002, "Resource", "FV space is full, cannot add file %s.", FvInfo->FvFiles[Index]);\r
1423 free (FileBuffer);\r
1424 return EFI_ABORTED;\r
1425 }\r
1426 //\r
fb0b35e0 1427 // Make next file start at QWord Boundary\r
30fdf114
LG
1428 //\r
1429 while (((UINTN) FvImage->CurrentFilePointer & (EFI_FFS_FILE_HEADER_ALIGNMENT - 1)) != 0) {\r
1430 FvImage->CurrentFilePointer++;\r
1431 }\r
1432\r
f7496d71 1433Done:\r
30fdf114
LG
1434 //\r
1435 // Free allocated memory.\r
1436 //\r
1437 free (FileBuffer);\r
1438\r
1439 return EFI_SUCCESS;\r
1440}\r
1441\r
1442EFI_STATUS\r
1443PadFvImage (\r
1444 IN MEMORY_FILE *FvImage,\r
1445 IN EFI_FFS_FILE_HEADER *VtfFileImage\r
1446 )\r
1447/*++\r
1448\r
1449Routine Description:\r
1450\r
1451 This function places a pad file between the last file in the FV and the VTF\r
1452 file if the VTF file exists.\r
1453\r
1454Arguments:\r
1455\r
1456 FvImage Memory file for the FV memory image\r
1457 VtfFileImage The address of the VTF file. If this is the end of the FV\r
1458 image, no VTF exists and no pad file is needed.\r
1459\r
1460Returns:\r
1461\r
1462 EFI_SUCCESS Completed successfully.\r
1463 EFI_INVALID_PARAMETER One of the input parameters was NULL.\r
1464\r
1465--*/\r
1466{\r
1467 EFI_FFS_FILE_HEADER *PadFile;\r
1468 UINTN FileSize;\r
e8a47801 1469 UINT32 FfsHeaderSize;\r
30fdf114
LG
1470\r
1471 //\r
1472 // If there is no VTF or the VTF naturally follows the previous file without a\r
1473 // pad file, then there's nothing to do\r
1474 //\r
1475 if ((UINTN) VtfFileImage == (UINTN) FvImage->Eof || \\r
1476 ((UINTN) VtfFileImage == (UINTN) FvImage->CurrentFilePointer)) {\r
1477 return EFI_SUCCESS;\r
1478 }\r
1479\r
fd171542 1480 if ((UINTN) VtfFileImage < (UINTN) FvImage->CurrentFilePointer) {\r
1481 return EFI_INVALID_PARAMETER;\r
1482 }\r
1483\r
30fdf114
LG
1484 //\r
1485 // Pad file starts at beginning of free space\r
1486 //\r
1487 PadFile = (EFI_FFS_FILE_HEADER *) FvImage->CurrentFilePointer;\r
1488\r
1489 //\r
f7496d71 1490 // write PadFile FFS header with PadType, don't need to set PAD file guid in its header.\r
30fdf114
LG
1491 //\r
1492 PadFile->Type = EFI_FV_FILETYPE_FFS_PAD;\r
1493 PadFile->Attributes = 0;\r
1494\r
1495 //\r
1496 // FileSize includes the EFI_FFS_FILE_HEADER\r
1497 //\r
1498 FileSize = (UINTN) VtfFileImage - (UINTN) FvImage->CurrentFilePointer;\r
e8a47801
LG
1499 if (FileSize >= MAX_FFS_SIZE) {\r
1500 PadFile->Attributes |= FFS_ATTRIB_LARGE_FILE;\r
1501 memset(PadFile->Size, 0, sizeof(UINT8) * 3);\r
1502 ((EFI_FFS_FILE_HEADER2 *)PadFile)->ExtendedSize = FileSize;\r
1503 FfsHeaderSize = sizeof(EFI_FFS_FILE_HEADER2);\r
1504 mIsLargeFfs = TRUE;\r
1505 } else {\r
1506 PadFile->Size[0] = (UINT8) (FileSize & 0x000000FF);\r
1507 PadFile->Size[1] = (UINT8) ((FileSize & 0x0000FF00) >> 8);\r
1508 PadFile->Size[2] = (UINT8) ((FileSize & 0x00FF0000) >> 16);\r
1509 FfsHeaderSize = sizeof(EFI_FFS_FILE_HEADER);\r
1510 }\r
30fdf114
LG
1511\r
1512 //\r
1513 // Fill in checksums and state, must be zero during checksum calculation.\r
1514 //\r
1515 PadFile->IntegrityCheck.Checksum.Header = 0;\r
1516 PadFile->IntegrityCheck.Checksum.File = 0;\r
1517 PadFile->State = 0;\r
e8a47801 1518 PadFile->IntegrityCheck.Checksum.Header = CalculateChecksum8 ((UINT8 *) PadFile, FfsHeaderSize);\r
30fdf114
LG
1519 PadFile->IntegrityCheck.Checksum.File = FFS_FIXED_CHECKSUM;\r
1520\r
1521 PadFile->State = EFI_FILE_HEADER_CONSTRUCTION | EFI_FILE_HEADER_VALID | EFI_FILE_DATA_VALID;\r
1522\r
1523 UpdateFfsFileState (\r
1524 (EFI_FFS_FILE_HEADER *) PadFile,\r
1525 (EFI_FIRMWARE_VOLUME_HEADER *) FvImage->FileImage\r
1526 );\r
1527 //\r
1528 // Update the current FV pointer\r
1529 //\r
1530 FvImage->CurrentFilePointer = FvImage->Eof;\r
1531\r
1532 return EFI_SUCCESS;\r
1533}\r
1534\r
1535EFI_STATUS\r
1536UpdateResetVector (\r
1537 IN MEMORY_FILE *FvImage,\r
1538 IN FV_INFO *FvInfo,\r
1539 IN EFI_FFS_FILE_HEADER *VtfFile\r
1540 )\r
1541/*++\r
1542\r
1543Routine Description:\r
1544\r
1545 This parses the FV looking for the PEI core and then plugs the address into\r
1546 the SALE_ENTRY point of the BSF/VTF for IPF and does BUGBUG TBD action to\r
1547 complete an IA32 Bootstrap FV.\r
1548\r
1549Arguments:\r
1550\r
1551 FvImage Memory file for the FV memory image\r
1552 FvInfo Information read from INF file.\r
1553 VtfFile Pointer to the VTF file in the FV image.\r
1554\r
1555Returns:\r
1556\r
1557 EFI_SUCCESS Function Completed successfully.\r
1558 EFI_ABORTED Error encountered.\r
1559 EFI_INVALID_PARAMETER A required parameter was NULL.\r
1560 EFI_NOT_FOUND PEI Core file not found.\r
1561\r
1562--*/\r
1563{\r
1564 EFI_FFS_FILE_HEADER *PeiCoreFile;\r
1565 EFI_FFS_FILE_HEADER *SecCoreFile;\r
1566 EFI_STATUS Status;\r
1567 EFI_FILE_SECTION_POINTER Pe32Section;\r
1568 UINT32 EntryPoint;\r
1569 UINT32 BaseOfCode;\r
1570 UINT16 MachineType;\r
1571 EFI_PHYSICAL_ADDRESS PeiCorePhysicalAddress;\r
1572 EFI_PHYSICAL_ADDRESS SecCorePhysicalAddress;\r
30fdf114
LG
1573 INT32 Ia32SecEntryOffset;\r
1574 UINT32 *Ia32ResetAddressPtr;\r
1575 UINT8 *BytePointer;\r
1576 UINT8 *BytePointer2;\r
1577 UINT16 *WordPointer;\r
1578 UINT16 CheckSum;\r
fd171542 1579 UINT32 IpiVector;\r
30fdf114
LG
1580 UINTN Index;\r
1581 EFI_FFS_FILE_STATE SavedState;\r
b303ea72 1582 BOOLEAN Vtf0Detected;\r
e8a47801
LG
1583 UINT32 FfsHeaderSize;\r
1584 UINT32 SecHeaderSize;\r
30fdf114
LG
1585\r
1586 //\r
1587 // Verify input parameters\r
1588 //\r
1589 if (FvImage == NULL || FvInfo == NULL || VtfFile == NULL) {\r
1590 return EFI_INVALID_PARAMETER;\r
1591 }\r
1592 //\r
1593 // Initialize FV library\r
1594 //\r
1595 InitializeFvLib (FvImage->FileImage, FvInfo->Size);\r
1596\r
1597 //\r
1598 // Verify VTF file\r
1599 //\r
1600 Status = VerifyFfsFile (VtfFile);\r
1601 if (EFI_ERROR (Status)) {\r
1602 return EFI_INVALID_PARAMETER;\r
1603 }\r
1604\r
b303ea72
LG
1605 if (\r
1606 (((UINTN)FvImage->Eof - (UINTN)FvImage->FileImage) >=\r
1607 IA32_X64_VTF_SIGNATURE_OFFSET) &&\r
1608 (*(UINT32 *)(VOID*)((UINTN) FvImage->Eof -\r
1609 IA32_X64_VTF_SIGNATURE_OFFSET) ==\r
1610 IA32_X64_VTF0_SIGNATURE)\r
1611 ) {\r
1612 Vtf0Detected = TRUE;\r
1613 } else {\r
1614 Vtf0Detected = FALSE;\r
1615 }\r
1616\r
30fdf114
LG
1617 //\r
1618 // Find the Sec Core\r
1619 //\r
1620 Status = GetFileByType (EFI_FV_FILETYPE_SECURITY_CORE, 1, &SecCoreFile);\r
1621 if (EFI_ERROR (Status) || SecCoreFile == NULL) {\r
b303ea72
LG
1622 if (Vtf0Detected) {\r
1623 //\r
1624 // If the SEC core file is not found, but the VTF-0 signature\r
1625 // is found, we'll treat it as a VTF-0 'Volume Top File'.\r
1626 // This means no modifications are required to the VTF.\r
1627 //\r
1628 return EFI_SUCCESS;\r
1629 }\r
1630\r
30fdf114
LG
1631 Error (NULL, 0, 3000, "Invalid", "could not find the SEC core file in the FV.");\r
1632 return EFI_ABORTED;\r
1633 }\r
1634 //\r
1635 // Sec Core found, now find PE32 section\r
1636 //\r
1637 Status = GetSectionByType (SecCoreFile, EFI_SECTION_PE32, 1, &Pe32Section);\r
1638 if (Status == EFI_NOT_FOUND) {\r
1639 Status = GetSectionByType (SecCoreFile, EFI_SECTION_TE, 1, &Pe32Section);\r
1640 }\r
1641\r
1642 if (EFI_ERROR (Status)) {\r
1643 Error (NULL, 0, 3000, "Invalid", "could not find a PE32 section in the SEC core file.");\r
1644 return EFI_ABORTED;\r
1645 }\r
1646\r
e8a47801 1647 SecHeaderSize = GetSectionHeaderLength(Pe32Section.CommonHeader);\r
30fdf114 1648 Status = GetPe32Info (\r
e8a47801 1649 (VOID *) ((UINTN) Pe32Section.Pe32Section + SecHeaderSize),\r
30fdf114
LG
1650 &EntryPoint,\r
1651 &BaseOfCode,\r
1652 &MachineType\r
1653 );\r
1654\r
1655 if (EFI_ERROR (Status)) {\r
1656 Error (NULL, 0, 3000, "Invalid", "could not get the PE32 entry point for the SEC core.");\r
1657 return EFI_ABORTED;\r
f7496d71 1658 }\r
30fdf114 1659\r
b303ea72
LG
1660 if (\r
1661 Vtf0Detected &&\r
1662 (MachineType == EFI_IMAGE_MACHINE_IA32 ||\r
1663 MachineType == EFI_IMAGE_MACHINE_X64)\r
1664 ) {\r
1665 //\r
1666 // If the SEC core code is IA32 or X64 and the VTF-0 signature\r
1667 // is found, we'll treat it as a VTF-0 'Volume Top File'.\r
1668 // This means no modifications are required to the VTF.\r
1669 //\r
1670 return EFI_SUCCESS;\r
1671 }\r
1672\r
30fdf114
LG
1673 //\r
1674 // Physical address is FV base + offset of PE32 + offset of the entry point\r
1675 //\r
1676 SecCorePhysicalAddress = FvInfo->BaseAddress;\r
e8a47801 1677 SecCorePhysicalAddress += (UINTN) Pe32Section.Pe32Section + SecHeaderSize - (UINTN) FvImage->FileImage;\r
30fdf114 1678 SecCorePhysicalAddress += EntryPoint;\r
f7496d71 1679 DebugMsg (NULL, 0, 9, "SecCore physical entry point address", "Address = 0x%llX", (unsigned long long) SecCorePhysicalAddress);\r
30fdf114
LG
1680\r
1681 //\r
1682 // Find the PEI Core\r
1683 //\r
2bb4a7ca 1684 PeiCorePhysicalAddress = 0;\r
30fdf114 1685 Status = GetFileByType (EFI_FV_FILETYPE_PEI_CORE, 1, &PeiCoreFile);\r
2bb4a7ca
CC
1686 if (!EFI_ERROR (Status) && (PeiCoreFile != NULL)) {\r
1687 //\r
1688 // PEI Core found, now find PE32 or TE section\r
1689 //\r
1690 Status = GetSectionByType (PeiCoreFile, EFI_SECTION_PE32, 1, &Pe32Section);\r
1691 if (Status == EFI_NOT_FOUND) {\r
1692 Status = GetSectionByType (PeiCoreFile, EFI_SECTION_TE, 1, &Pe32Section);\r
1693 }\r
30fdf114 1694\r
2bb4a7ca
CC
1695 if (EFI_ERROR (Status)) {\r
1696 Error (NULL, 0, 3000, "Invalid", "could not find either a PE32 or a TE section in PEI core file.");\r
1697 return EFI_ABORTED;\r
1698 }\r
30fdf114 1699\r
2bb4a7ca
CC
1700 SecHeaderSize = GetSectionHeaderLength(Pe32Section.CommonHeader);\r
1701 Status = GetPe32Info (\r
1702 (VOID *) ((UINTN) Pe32Section.Pe32Section + SecHeaderSize),\r
1703 &EntryPoint,\r
1704 &BaseOfCode,\r
1705 &MachineType\r
1706 );\r
30fdf114 1707\r
2bb4a7ca
CC
1708 if (EFI_ERROR (Status)) {\r
1709 Error (NULL, 0, 3000, "Invalid", "could not get the PE32 entry point for the PEI core.");\r
1710 return EFI_ABORTED;\r
1711 }\r
1712 //\r
1713 // Physical address is FV base + offset of PE32 + offset of the entry point\r
1714 //\r
1715 PeiCorePhysicalAddress = FvInfo->BaseAddress;\r
1716 PeiCorePhysicalAddress += (UINTN) Pe32Section.Pe32Section + SecHeaderSize - (UINTN) FvImage->FileImage;\r
1717 PeiCorePhysicalAddress += EntryPoint;\r
1718 DebugMsg (NULL, 0, 9, "PeiCore physical entry point address", "Address = 0x%llX", (unsigned long long) PeiCorePhysicalAddress);\r
30fdf114 1719 }\r
30fdf114 1720\r
8daa4278 1721if (MachineType == EFI_IMAGE_MACHINE_IA32 || MachineType == EFI_IMAGE_MACHINE_X64) {\r
2bb4a7ca
CC
1722 if (PeiCorePhysicalAddress != 0) {\r
1723 //\r
1724 // Get the location to update\r
1725 //\r
1726 Ia32ResetAddressPtr = (UINT32 *) ((UINTN) FvImage->Eof - IA32_PEI_CORE_ENTRY_OFFSET);\r
f7496d71 1727\r
2bb4a7ca
CC
1728 //\r
1729 // Write lower 32 bits of physical address for Pei Core entry\r
1730 //\r
1731 *Ia32ResetAddressPtr = (UINT32) PeiCorePhysicalAddress;\r
1732 }\r
30fdf114
LG
1733 //\r
1734 // Write SecCore Entry point relative address into the jmp instruction in reset vector.\r
f7496d71 1735 //\r
30fdf114 1736 Ia32ResetAddressPtr = (UINT32 *) ((UINTN) FvImage->Eof - IA32_SEC_CORE_ENTRY_OFFSET);\r
f7496d71 1737\r
fd171542 1738 Ia32SecEntryOffset = (INT32) (SecCorePhysicalAddress - (FV_IMAGES_TOP_ADDRESS - IA32_SEC_CORE_ENTRY_OFFSET + 2));\r
30fdf114
LG
1739 if (Ia32SecEntryOffset <= -65536) {\r
1740 Error (NULL, 0, 3000, "Invalid", "The SEC EXE file size is too large, it must be less than 64K.");\r
1741 return STATUS_ERROR;\r
1742 }\r
f7496d71 1743\r
30fdf114
LG
1744 *(UINT16 *) Ia32ResetAddressPtr = (UINT16) Ia32SecEntryOffset;\r
1745\r
1746 //\r
1747 // Update the BFV base address\r
1748 //\r
1749 Ia32ResetAddressPtr = (UINT32 *) ((UINTN) FvImage->Eof - 4);\r
1750 *Ia32ResetAddressPtr = (UINT32) (FvInfo->BaseAddress);\r
fd171542 1751 DebugMsg (NULL, 0, 9, "update BFV base address in the top FV image", "BFV base address = 0x%llX.", (unsigned long long) FvInfo->BaseAddress);\r
30fdf114
LG
1752\r
1753 //\r
1754 // Update the Startup AP in the FVH header block ZeroVector region.\r
1755 //\r
1756 BytePointer = (UINT8 *) ((UINTN) FvImage->FileImage);\r
1757 if (FvInfo->Size <= 0x10000) {\r
1758 BytePointer2 = m64kRecoveryStartupApDataArray;\r
1759 } else if (FvInfo->Size <= 0x20000) {\r
1760 BytePointer2 = m128kRecoveryStartupApDataArray;\r
1761 } else {\r
1762 BytePointer2 = m128kRecoveryStartupApDataArray;\r
1763 //\r
1764 // Find the position to place Ap reset vector, the offset\r
1765 // between the position and the end of Fvrecovery.fv file\r
1766 // should not exceed 128kB to prevent Ap reset vector from\r
1767 // outside legacy E and F segment\r
1768 //\r
1769 Status = FindApResetVectorPosition (FvImage, &BytePointer);\r
1770 if (EFI_ERROR (Status)) {\r
2bcc713e 1771 Error (NULL, 0, 3000, "Invalid", "FV image does not have enough space to place AP reset vector. The FV image needs to reserve at least 4KB of unused space.");\r
30fdf114
LG
1772 return EFI_ABORTED;\r
1773 }\r
1774 }\r
1775\r
1776 for (Index = 0; Index < SIZEOF_STARTUP_DATA_ARRAY; Index++) {\r
1777 BytePointer[Index] = BytePointer2[Index];\r
1778 }\r
1779 //\r
1780 // Calculate the checksum\r
1781 //\r
1782 CheckSum = 0x0000;\r
1783 WordPointer = (UINT16 *) (BytePointer);\r
1784 for (Index = 0; Index < SIZEOF_STARTUP_DATA_ARRAY / 2; Index++) {\r
1785 CheckSum = (UINT16) (CheckSum + ((UINT16) *WordPointer));\r
1786 WordPointer++;\r
1787 }\r
1788 //\r
1789 // Update the checksum field\r
1790 //\r
1791 WordPointer = (UINT16 *) (BytePointer + SIZEOF_STARTUP_DATA_ARRAY - 2);\r
1792 *WordPointer = (UINT16) (0x10000 - (UINT32) CheckSum);\r
f7496d71 1793\r
30fdf114 1794 //\r
f7496d71 1795 // IpiVector at the 4k aligned address in the top 2 blocks in the PEI FV.\r
30fdf114 1796 //\r
fd171542 1797 IpiVector = (UINT32) (FV_IMAGES_TOP_ADDRESS - ((UINTN) FvImage->Eof - (UINTN) BytePointer));\r
1798 DebugMsg (NULL, 0, 9, "Startup AP Vector address", "IpiVector at 0x%X", (unsigned) IpiVector);\r
1799 if ((IpiVector & 0xFFF) != 0) {\r
30fdf114
LG
1800 Error (NULL, 0, 3000, "Invalid", "Startup AP Vector address are not 4K aligned, because the FV size is not 4K aligned");\r
1801 return EFI_ABORTED;\r
1802 }\r
1803 IpiVector = IpiVector >> 12;\r
1804 IpiVector = IpiVector & 0xFF;\r
1805\r
1806 //\r
1807 // Write IPI Vector at Offset FvrecoveryFileSize - 8\r
1808 //\r
1809 Ia32ResetAddressPtr = (UINT32 *) ((UINTN) FvImage->Eof - 8);\r
1810 *Ia32ResetAddressPtr = IpiVector;\r
1811 } else if (MachineType == EFI_IMAGE_MACHINE_ARMT) {\r
1812 //\r
1813 // Since the ARM reset vector is in the FV Header you really don't need a\r
1814 // Volume Top File, but if you have one for some reason don't crash...\r
1815 //\r
4afd3d04
LG
1816 } else if (MachineType == EFI_IMAGE_MACHINE_AARCH64) {\r
1817 //\r
1818 // Since the AArch64 reset vector is in the FV Header you really don't need a\r
1819 // Volume Top File, but if you have one for some reason don't crash...\r
1820 //\r
30fdf114 1821 } else {\r
fd171542 1822 Error (NULL, 0, 3000, "Invalid", "machine type=0x%X in PEI core.", MachineType);\r
30fdf114
LG
1823 return EFI_ABORTED;\r
1824 }\r
1825\r
1826 //\r
1827 // Now update file checksum\r
1828 //\r
1829 SavedState = VtfFile->State;\r
1830 VtfFile->IntegrityCheck.Checksum.File = 0;\r
1831 VtfFile->State = 0;\r
1832 if (VtfFile->Attributes & FFS_ATTRIB_CHECKSUM) {\r
e8a47801 1833 FfsHeaderSize = GetFfsHeaderLength(VtfFile);\r
30fdf114 1834 VtfFile->IntegrityCheck.Checksum.File = CalculateChecksum8 (\r
e8a47801
LG
1835 (UINT8 *) ((UINT8 *)VtfFile + FfsHeaderSize),\r
1836 GetFfsFileLength (VtfFile) - FfsHeaderSize\r
30fdf114
LG
1837 );\r
1838 } else {\r
1839 VtfFile->IntegrityCheck.Checksum.File = FFS_FIXED_CHECKSUM;\r
1840 }\r
1841\r
1842 VtfFile->State = SavedState;\r
1843\r
1844 return EFI_SUCCESS;\r
1845}\r
1846\r
eca22f36
EC
1847EFI_STATUS\r
1848FindCorePeSection(\r
1849 IN VOID *FvImageBuffer,\r
1850 IN UINT64 FvSize,\r
1851 IN EFI_FV_FILETYPE FileType,\r
1852 OUT EFI_FILE_SECTION_POINTER *Pe32Section\r
1853 )\r
1854/*++\r
1855\r
1856Routine Description:\r
1857\r
1858 Recursively searches the FV for the FFS file of specified type (typically\r
1859 SEC or PEI core) and extracts the PE32 section for further processing.\r
1860\r
1861Arguments:\r
1862\r
1863 FvImageBuffer Buffer containing FV data\r
1864 FvSize Size of the FV\r
1865 FileType Type of FFS file to search for\r
1866 Pe32Section PE32 section pointer when FFS file is found.\r
1867\r
1868Returns:\r
1869\r
1870 EFI_SUCCESS Function Completed successfully.\r
1871 EFI_ABORTED Error encountered.\r
1872 EFI_INVALID_PARAMETER A required parameter was NULL.\r
1873 EFI_NOT_FOUND Core file not found.\r
1874\r
1875--*/\r
1876{\r
1877 EFI_STATUS Status;\r
1878 EFI_FIRMWARE_VOLUME_HEADER *OrigFvHeader;\r
1879 UINT32 OrigFvLength;\r
1880 EFI_FFS_FILE_HEADER *CoreFfsFile;\r
1881 UINTN FvImageFileCount;\r
1882 EFI_FFS_FILE_HEADER *FvImageFile;\r
1883 UINTN EncapFvSectionCount;\r
1884 EFI_FILE_SECTION_POINTER EncapFvSection;\r
1885 EFI_FIRMWARE_VOLUME_HEADER *EncapsulatedFvHeader;\r
1886\r
1887 if (Pe32Section == NULL) {\r
1888 return EFI_INVALID_PARAMETER;\r
1889 }\r
1890\r
1891 //\r
1892 // Initialize FV library, saving previous values\r
1893 //\r
1894 OrigFvHeader = (EFI_FIRMWARE_VOLUME_HEADER *)NULL;\r
1895 GetFvHeader (&OrigFvHeader, &OrigFvLength);\r
1896 InitializeFvLib(FvImageBuffer, (UINT32)FvSize);\r
1897\r
1898 //\r
1899 // First see if we can obtain the file directly in outer FV\r
1900 //\r
1901 Status = GetFileByType(FileType, 1, &CoreFfsFile);\r
1902 if (!EFI_ERROR(Status) && (CoreFfsFile != NULL) ) {\r
1903\r
1904 //\r
1905 // Core found, now find PE32 or TE section\r
1906 //\r
1907 Status = GetSectionByType(CoreFfsFile, EFI_SECTION_PE32, 1, Pe32Section);\r
1908 if (EFI_ERROR(Status)) {\r
1909 Status = GetSectionByType(CoreFfsFile, EFI_SECTION_TE, 1, Pe32Section);\r
1910 }\r
1911\r
1912 if (EFI_ERROR(Status)) {\r
1913 Error(NULL, 0, 3000, "Invalid", "could not find a PE32 section in the core file.");\r
1914 return EFI_ABORTED;\r
1915 }\r
1916\r
1917 //\r
1918 // Core PE/TE section, found, return\r
1919 //\r
1920 Status = EFI_SUCCESS;\r
1921 goto EarlyExit;\r
1922 }\r
1923\r
1924 //\r
1925 // File was not found, look for FV Image file\r
1926 //\r
1927\r
1928 // iterate through all FV image files in outer FV\r
1929 for (FvImageFileCount = 1;; FvImageFileCount++) {\r
1930\r
1931 Status = GetFileByType(EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE, FvImageFileCount, &FvImageFile);\r
1932\r
1933 if (EFI_ERROR(Status) || (FvImageFile == NULL) ) {\r
1934 // exit FV image file loop, no more found\r
1935 break;\r
1936 }\r
1937\r
1938 // Found an fv image file, look for an FV image section. The PI spec does not\r
1939 // preclude multiple FV image sections so we loop accordingly.\r
1940 for (EncapFvSectionCount = 1;; EncapFvSectionCount++) {\r
1941\r
1942 // Look for the next FV image section. The section search code will\r
1943 // iterate into encapsulation sections. For example, it will iterate\r
1944 // into an EFI_SECTION_GUID_DEFINED encapsulation section to find the\r
1945 // EFI_SECTION_FIRMWARE_VOLUME_IMAGE sections contained therein.\r
1946 Status = GetSectionByType(FvImageFile, EFI_SECTION_FIRMWARE_VOLUME_IMAGE, EncapFvSectionCount, &EncapFvSection);\r
1947\r
1948 if (EFI_ERROR(Status)) {\r
1949 // exit section inner loop, no more found\r
1950 break;\r
1951 }\r
1952\r
1953 EncapsulatedFvHeader = (EFI_FIRMWARE_VOLUME_HEADER *)((UINT8 *)EncapFvSection.FVImageSection + GetSectionHeaderLength(EncapFvSection.FVImageSection));\r
1954\r
1955 // recurse to search the encapsulated FV for this core file type\r
1956 Status = FindCorePeSection(EncapsulatedFvHeader, EncapsulatedFvHeader->FvLength, FileType, Pe32Section);\r
1957\r
1958 if (!EFI_ERROR(Status)) {\r
1959 // we found the core in the capsulated image, success\r
1960 goto EarlyExit;\r
1961 }\r
1962\r
1963 } // end encapsulated fv image section loop\r
1964 } // end fv image file loop\r
1965\r
1966 // core was not found\r
1967 Status = EFI_NOT_FOUND;\r
1968\r
1969EarlyExit:\r
1970\r
1971 // restore FV lib values\r
1972 if(OrigFvHeader != NULL) {\r
1973 InitializeFvLib(OrigFvHeader, OrigFvLength);\r
1974 }\r
1975\r
1976 return Status;\r
1977}\r
1978\r
1979EFI_STATUS\r
1980GetCoreMachineType(\r
1981 IN EFI_FILE_SECTION_POINTER Pe32Section,\r
1982 OUT UINT16 *CoreMachineType\r
1983 )\r
1984/*++\r
1985\r
1986Routine Description:\r
1987\r
1988 Returns the machine type of a P32 image, typically SEC or PEI core.\r
1989\r
1990Arguments:\r
1991\r
1992 Pe32Section PE32 section data\r
1993 CoreMachineType The extracted machine type\r
1994\r
1995Returns:\r
1996\r
1997 EFI_SUCCESS Function Completed successfully.\r
1998 EFI_ABORTED Error encountered.\r
1999 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2000\r
2001--*/\r
2002{\r
2003 EFI_STATUS Status;\r
2004 UINT32 EntryPoint;\r
2005 UINT32 BaseOfCode;\r
2006\r
2007 if (CoreMachineType == NULL) {\r
2008 return EFI_INVALID_PARAMETER;\r
2009 }\r
2010\r
2011 Status = GetPe32Info(\r
2012 (VOID *)((UINTN)Pe32Section.Pe32Section + GetSectionHeaderLength(Pe32Section.CommonHeader)),\r
2013 &EntryPoint,\r
2014 &BaseOfCode,\r
2015 CoreMachineType\r
2016 );\r
2017 if (EFI_ERROR(Status)) {\r
2018 Error(NULL, 0, 3000, "Invalid", "could not get the PE32 machine type for the core.");\r
2019 return EFI_ABORTED;\r
2020 }\r
2021\r
2022 return EFI_SUCCESS;\r
2023}\r
2024\r
2025EFI_STATUS\r
2026GetCoreEntryPointAddress(\r
2027 IN VOID *FvImageBuffer,\r
2028 IN FV_INFO *FvInfo,\r
2029 IN EFI_FILE_SECTION_POINTER Pe32Section,\r
2030 OUT EFI_PHYSICAL_ADDRESS *CoreEntryAddress\r
2031)\r
2032/*++\r
2033\r
2034Routine Description:\r
2035\r
2036 Returns the physical address of the core (SEC or PEI) entry point.\r
2037\r
2038Arguments:\r
2039\r
2040 FvImageBuffer Pointer to buffer containing FV data\r
2041 FvInfo Info for the parent FV\r
2042 Pe32Section PE32 section data\r
2043 CoreEntryAddress The extracted core entry physical address\r
2044\r
2045Returns:\r
2046\r
2047 EFI_SUCCESS Function Completed successfully.\r
2048 EFI_ABORTED Error encountered.\r
2049 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2050\r
2051--*/\r
2052{\r
2053 EFI_STATUS Status;\r
2054 UINT32 EntryPoint;\r
2055 UINT32 BaseOfCode;\r
2056 UINT16 MachineType;\r
2057 EFI_PHYSICAL_ADDRESS EntryPhysicalAddress;\r
2058\r
2059 if (CoreEntryAddress == NULL) {\r
2060 return EFI_INVALID_PARAMETER;\r
2061 }\r
2062\r
2063 Status = GetPe32Info(\r
2064 (VOID *)((UINTN)Pe32Section.Pe32Section + GetSectionHeaderLength(Pe32Section.CommonHeader)),\r
2065 &EntryPoint,\r
2066 &BaseOfCode,\r
2067 &MachineType\r
2068 );\r
2069 if (EFI_ERROR(Status)) {\r
2070 Error(NULL, 0, 3000, "Invalid", "could not get the PE32 entry point for the core.");\r
2071 return EFI_ABORTED;\r
2072 }\r
2073\r
2074 //\r
2075 // Physical address is FV base + offset of PE32 + offset of the entry point\r
2076 //\r
2077 EntryPhysicalAddress = FvInfo->BaseAddress;\r
2078 EntryPhysicalAddress += (UINTN)Pe32Section.Pe32Section + GetSectionHeaderLength(Pe32Section.CommonHeader) - (UINTN)FvImageBuffer;\r
2079 EntryPhysicalAddress += EntryPoint;\r
2080\r
2081 *CoreEntryAddress = EntryPhysicalAddress;\r
2082\r
2083 return EFI_SUCCESS;\r
2084}\r
30fdf114
LG
2085\r
2086EFI_STATUS\r
2087UpdateArmResetVectorIfNeeded (\r
2088 IN MEMORY_FILE *FvImage,\r
2089 IN FV_INFO *FvInfo\r
2090 )\r
2091/*++\r
2092\r
2093Routine Description:\r
f7496d71 2094 This parses the FV looking for SEC and patches that address into the\r
30fdf114
LG
2095 beginning of the FV header.\r
2096\r
4afd3d04
LG
2097 For ARM32 the reset vector is at 0x00000000 or 0xFFFF0000.\r
2098 For AArch64 the reset vector is at 0x00000000.\r
2099\r
f7496d71 2100 This would commonly map to the first entry in the ROM.\r
4afd3d04 2101 ARM32 Exceptions:\r
f7496d71 2102 Reset +0\r
30fdf114
LG
2103 Undefined +4\r
2104 SWI +8\r
2105 Prefetch Abort +12\r
2106 Data Abort +16\r
2107 IRQ +20\r
2108 FIQ +24\r
2109\r
2110 We support two schemes on ARM.\r
fd171542 2111 1) Beginning of the FV is the reset vector\r
f7496d71 2112 2) Reset vector is data bytes FDF file and that code branches to reset vector\r
30fdf114
LG
2113 in the beginning of the FV (fixed size offset).\r
2114\r
30fdf114
LG
2115 Need to have the jump for the reset vector at location zero.\r
2116 We also need to store the address or PEI (if it exists).\r
f7496d71 2117 We stub out a return from interrupt in case the debugger\r
4afd3d04 2118 is using SWI (not done for AArch64, not enough space in struct).\r
f7496d71
LG
2119 The optional entry to the common exception handler is\r
2120 to support full featured exception handling from ROM and is currently\r
30fdf114
LG
2121 not support by this tool.\r
2122\r
2123Arguments:\r
2124 FvImage Memory file for the FV memory image\r
2125 FvInfo Information read from INF file.\r
2126\r
2127Returns:\r
2128\r
2129 EFI_SUCCESS Function Completed successfully.\r
2130 EFI_ABORTED Error encountered.\r
2131 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2132 EFI_NOT_FOUND PEI Core file not found.\r
2133\r
2134--*/\r
2135{\r
eca22f36
EC
2136 EFI_STATUS Status;\r
2137 EFI_FILE_SECTION_POINTER SecPe32;\r
2138 EFI_FILE_SECTION_POINTER PeiPe32;\r
2139 BOOLEAN UpdateVectorSec = FALSE;\r
2140 BOOLEAN UpdateVectorPei = FALSE;\r
2141 UINT16 MachineType = 0;\r
2142 EFI_PHYSICAL_ADDRESS SecCoreEntryAddress = 0;\r
2143 UINT16 PeiMachineType = 0;\r
2144 EFI_PHYSICAL_ADDRESS PeiCoreEntryAddress = 0;\r
30fdf114
LG
2145\r
2146 //\r
2147 // Verify input parameters\r
2148 //\r
2149 if (FvImage == NULL || FvInfo == NULL) {\r
2150 return EFI_INVALID_PARAMETER;\r
2151 }\r
30fdf114
LG
2152\r
2153 //\r
eca22f36 2154 // Locate an SEC Core instance and if found extract the machine type and entry point address\r
30fdf114 2155 //\r
eca22f36
EC
2156 Status = FindCorePeSection(FvImage->FileImage, FvInfo->Size, EFI_FV_FILETYPE_SECURITY_CORE, &SecPe32);\r
2157 if (!EFI_ERROR(Status)) {\r
30fdf114 2158\r
eca22f36
EC
2159 Status = GetCoreMachineType(SecPe32, &MachineType);\r
2160 if (EFI_ERROR(Status)) {\r
2161 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 machine type for SEC Core.");\r
2162 return EFI_ABORTED;\r
30fdf114
LG
2163 }\r
2164\r
eca22f36
EC
2165 Status = GetCoreEntryPointAddress(FvImage->FileImage, FvInfo, SecPe32, &SecCoreEntryAddress);\r
2166 if (EFI_ERROR(Status)) {\r
2167 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 entry point address for SEC Core.");\r
2168 return EFI_ABORTED;\r
2169 }\r
30fdf114 2170\r
eca22f36
EC
2171 VerboseMsg("UpdateArmResetVectorIfNeeded found SEC core entry at 0x%llx", (unsigned long long)SecCoreEntryAddress);\r
2172 UpdateVectorSec = TRUE;\r
30fdf114
LG
2173 }\r
2174\r
30fdf114 2175 //\r
eca22f36 2176 // Locate a PEI Core instance and if found extract the machine type and entry point address\r
30fdf114 2177 //\r
eca22f36
EC
2178 Status = FindCorePeSection(FvImage->FileImage, FvInfo->Size, EFI_FV_FILETYPE_PEI_CORE, &PeiPe32);\r
2179 if (!EFI_ERROR(Status)) {\r
30fdf114 2180\r
eca22f36
EC
2181 Status = GetCoreMachineType(PeiPe32, &PeiMachineType);\r
2182 if (EFI_ERROR(Status)) {\r
2183 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 machine type for PEI Core.");\r
2184 return EFI_ABORTED;\r
30fdf114 2185 }\r
eca22f36
EC
2186\r
2187 Status = GetCoreEntryPointAddress(FvImage->FileImage, FvInfo, PeiPe32, &PeiCoreEntryAddress);\r
2188 if (EFI_ERROR(Status)) {\r
2189 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 entry point address for PEI Core.");\r
30fdf114
LG
2190 return EFI_ABORTED;\r
2191 }\r
eca22f36
EC
2192\r
2193 VerboseMsg("UpdateArmResetVectorIfNeeded found PEI core entry at 0x%llx", (unsigned long long)PeiCoreEntryAddress);\r
2194\r
2195 // if we previously found an SEC Core make sure machine types match\r
2196 if (UpdateVectorSec && (MachineType != PeiMachineType)) {\r
2197 Error(NULL, 0, 3000, "Invalid", "SEC and PEI machine types do not match, can't update reset vector");\r
30fdf114
LG
2198 return EFI_ABORTED;\r
2199 }\r
eca22f36
EC
2200 else {\r
2201 MachineType = PeiMachineType;\r
2202 }\r
2203\r
2204 UpdateVectorPei = TRUE;\r
30fdf114 2205 }\r
eca22f36
EC
2206\r
2207 if (!UpdateVectorSec && !UpdateVectorPei) {\r
2208 return EFI_SUCCESS;\r
2209 }\r
2210\r
4afd3d04 2211 if (MachineType == EFI_IMAGE_MACHINE_ARMT) {\r
eca22f36
EC
2212 // ARM: Array of 4 UINT32s:\r
2213 // 0 - is branch relative to SEC entry point\r
2214 // 1 - PEI Entry Point\r
2215 // 2 - movs pc,lr for a SWI handler\r
2216 // 3 - Place holder for Common Exception Handler\r
f7496d71 2217 UINT32 ResetVector[4];\r
4afd3d04 2218\r
eca22f36
EC
2219 memset(ResetVector, 0, sizeof (ResetVector));\r
2220\r
2221 // if we found an SEC core entry point then generate a branch instruction\r
2222 // to it and populate a debugger SWI entry as well\r
2223 if (UpdateVectorSec) {\r
ca177387 2224 UINT32 EntryOffset;\r
eca22f36
EC
2225\r
2226 VerboseMsg("UpdateArmResetVectorIfNeeded updating ARM SEC vector");\r
2227\r
ca177387 2228 EntryOffset = (INT32)(SecCoreEntryAddress - FvInfo->BaseAddress);\r
eca22f36 2229\r
ca177387
EC
2230 if (EntryOffset > ARM_JUMP_OFFSET_MAX) {\r
2231 Error(NULL, 0, 3000, "Invalid", "SEC Entry point offset above 1MB of the start of the FV");\r
eca22f36
EC
2232 return EFI_ABORTED;\r
2233 }\r
2234\r
ca177387
EC
2235 if ((SecCoreEntryAddress & 1) != 0) {\r
2236 ResetVector[0] = ARM_JUMP_TO_THUMB(EntryOffset);\r
2237 } else {\r
2238 ResetVector[0] = ARM_JUMP_TO_ARM(EntryOffset);\r
2239 }\r
eca22f36
EC
2240\r
2241 // SWI handler movs pc,lr. Just in case a debugger uses SWI\r
ca177387 2242 ResetVector[2] = ARM_RETURN_FROM_EXCEPTION;\r
eca22f36
EC
2243\r
2244 // Place holder to support a common interrupt handler from ROM.\r
fb0b35e0 2245 // Currently not supported. For this to be used the reset vector would not be in this FV\r
eca22f36
EC
2246 // and the exception vectors would be hard coded in the ROM and just through this address\r
2247 // to find a common handler in the a module in the FV.\r
2248 ResetVector[3] = 0;\r
4afd3d04 2249 }\r
eca22f36
EC
2250\r
2251 // if a PEI core entry was found place its address in the vector area\r
2252 if (UpdateVectorPei) {\r
2253\r
2254 VerboseMsg("UpdateArmResetVectorIfNeeded updating ARM PEI address");\r
2255\r
2256 // Address of PEI Core, if we have one\r
2257 ResetVector[1] = (UINT32)PeiCoreEntryAddress;\r
2258 }\r
2259\r
2260 //\r
2261 // Copy to the beginning of the FV\r
2262 //\r
2263 memcpy(FvImage->FileImage, ResetVector, sizeof (ResetVector));\r
2264\r
4afd3d04 2265 } else if (MachineType == EFI_IMAGE_MACHINE_AARCH64) {\r
eca22f36
EC
2266 // AArch64: Used as UINT64 ResetVector[2]\r
2267 // 0 - is branch relative to SEC entry point\r
2268 // 1 - PEI Entry Point\r
2269 UINT64 ResetVector[2];\r
4afd3d04 2270\r
eca22f36
EC
2271 memset(ResetVector, 0, sizeof (ResetVector));\r
2272\r
2273 /* NOTE:\r
4afd3d04
LG
2274 ARMT above has an entry in ResetVector[2] for SWI. The way we are using the ResetVector\r
2275 array at the moment, for AArch64, does not allow us space for this as the header only\r
2276 allows for a fixed amount of bytes at the start. If we are sure that UEFI will live\r
fb0b35e0 2277 within the first 4GB of addressable RAM we could potentially adopt the same ResetVector\r
4afd3d04
LG
2278 layout as above. But for the moment we replace the four 32bit vectors with two 64bit\r
2279 vectors in the same area of the Image heasder. This allows UEFI to start from a 64bit\r
2280 base.\r
eca22f36 2281 */\r
4afd3d04 2282\r
eca22f36
EC
2283 // if we found an SEC core entry point then generate a branch instruction to it\r
2284 if (UpdateVectorSec) {\r
4afd3d04 2285\r
eca22f36
EC
2286 VerboseMsg("UpdateArmResetVectorIfNeeded updating AArch64 SEC vector");\r
2287\r
2288 ResetVector[0] = (UINT64)(SecCoreEntryAddress - FvInfo->BaseAddress) >> 2;\r
2289\r
2290 // B SecEntryPoint - signed_immed_26 part +/-128MB offset\r
2291 if (ResetVector[0] > 0x03FFFFFF) {\r
2292 Error(NULL, 0, 3000, "Invalid", "SEC Entry point must be within 128MB of the start of the FV");\r
2293 return EFI_ABORTED;\r
2294 }\r
fb0b35e0 2295 // Add opcode for an unconditional branch with no link. i.e.: " B SecEntryPoint"\r
eca22f36
EC
2296 ResetVector[0] |= ARM64_UNCONDITIONAL_JUMP_INSTRUCTION;\r
2297 }\r
2298\r
2299 // if a PEI core entry was found place its address in the vector area\r
2300 if (UpdateVectorPei) {\r
2301\r
2302 VerboseMsg("UpdateArmResetVectorIfNeeded updating AArch64 PEI address");\r
2303\r
2304 // Address of PEI Core, if we have one\r
2305 ResetVector[1] = (UINT64)PeiCoreEntryAddress;\r
4afd3d04 2306 }\r
4afd3d04 2307\r
eca22f36
EC
2308 //\r
2309 // Copy to the beginning of the FV\r
2310 //\r
2311 memcpy(FvImage->FileImage, ResetVector, sizeof (ResetVector));\r
4afd3d04
LG
2312\r
2313 } else {\r
eca22f36 2314 Error(NULL, 0, 3000, "Invalid", "Unknown machine type");\r
4afd3d04
LG
2315 return EFI_ABORTED;\r
2316 }\r
30fdf114 2317\r
30fdf114
LG
2318 return EFI_SUCCESS;\r
2319}\r
2320\r
ad1db975
AC
2321EFI_STATUS\r
2322UpdateRiscvResetVectorIfNeeded (\r
2323 MEMORY_FILE *FvImage,\r
2324 FV_INFO *FvInfo\r
2325 )\r
2326/*++\r
2327\r
2328Routine Description:\r
2329 This parses the FV looking for SEC and patches that address into the\r
2330 beginning of the FV header.\r
2331\r
2332 For RISC-V ISA, the reset vector is at 0xfff~ff00h or 200h\r
2333\r
2334Arguments:\r
2335 FvImage Memory file for the FV memory image/\r
2336 FvInfo Information read from INF file.\r
2337\r
2338Returns:\r
2339\r
2340 EFI_SUCCESS Function Completed successfully.\r
2341 EFI_ABORTED Error encountered.\r
2342 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2343 EFI_NOT_FOUND PEI Core file not found.\r
2344\r
2345--*/\r
2346{\r
2347 EFI_STATUS Status;\r
2348 UINT16 MachineType;\r
2349 EFI_FILE_SECTION_POINTER SecPe32;\r
2350 EFI_PHYSICAL_ADDRESS SecCoreEntryAddress;\r
2351\r
2352 UINT32 bSecCore;\r
2353 UINT32 tmp;\r
2354\r
2355\r
2356 //\r
2357 // Verify input parameters\r
2358 //\r
2359 if (FvImage == NULL || FvInfo == NULL) {\r
2360 return EFI_INVALID_PARAMETER;\r
2361 }\r
2362 //\r
2363 // Initialize FV library\r
2364 //\r
2365 InitializeFvLib (FvImage->FileImage, FvInfo->Size);\r
2366\r
2367 //\r
2368 // Find the Sec Core\r
2369 //\r
2370 Status = FindCorePeSection(FvImage->FileImage, FvInfo->Size, EFI_FV_FILETYPE_SECURITY_CORE, &SecPe32);\r
2371 if(EFI_ERROR(Status)) {\r
2372 printf("skip because Secutiry Core not found\n");\r
2373 return EFI_SUCCESS;\r
2374 }\r
2375\r
2376 DebugMsg (NULL, 0, 9, "Update SEC core in FV Header", NULL);\r
2377\r
2378 Status = GetCoreMachineType(SecPe32, &MachineType);\r
2379 if(EFI_ERROR(Status)) {\r
2380 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 machine type for SEC core.");\r
2381 return EFI_ABORTED;\r
2382 }\r
2383\r
2384 if (MachineType != EFI_IMAGE_MACHINE_RISCV64) {\r
2385 Error(NULL, 0, 3000, "Invalid", "Could not update SEC core because Machine type is not RiscV.");\r
2386 return EFI_ABORTED;\r
2387 }\r
2388\r
2389 Status = GetCoreEntryPointAddress(FvImage->FileImage, FvInfo, SecPe32, &SecCoreEntryAddress);\r
2390 if(EFI_ERROR(Status)) {\r
2391 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 entry point address for SEC Core.");\r
2392 return EFI_ABORTED;\r
2393 }\r
2394\r
2395 VerboseMsg("SecCore entry point Address = 0x%llX", (unsigned long long) SecCoreEntryAddress);\r
2396 VerboseMsg("BaseAddress = 0x%llX", (unsigned long long) FvInfo->BaseAddress);\r
2397 bSecCore = (UINT32)(SecCoreEntryAddress - FvInfo->BaseAddress);\r
2398 VerboseMsg("offset = 0x%llX", bSecCore);\r
2399\r
2400 if(bSecCore > 0x0fffff) {\r
2401 Error(NULL, 0, 3000, "Invalid", "SEC Entry point must be within 1MB of start of the FV");\r
2402 return EFI_ABORTED;\r
2403 }\r
2404\r
2405 tmp = bSecCore;\r
2406 bSecCore = 0;\r
2407 //J-type\r
2408 bSecCore = (tmp&0x100000)<<11; //imm[20] at bit[31]\r
2409 bSecCore |= (tmp&0x0007FE)<<20; //imm[10:1] at bit[30:21]\r
2410 bSecCore |= (tmp&0x000800)<<9; //imm[11] at bit[20]\r
2411 bSecCore |= (tmp&0x0FF000); //imm[19:12] at bit[19:12]\r
2412 bSecCore |= 0x6F; //JAL opcode\r
2413\r
2414 memcpy(FvImage->FileImage, &bSecCore, sizeof(bSecCore));\r
2415\r
2416 return EFI_SUCCESS;\r
2417}\r
2418\r
30fdf114
LG
2419EFI_STATUS\r
2420GetPe32Info (\r
2421 IN UINT8 *Pe32,\r
2422 OUT UINT32 *EntryPoint,\r
2423 OUT UINT32 *BaseOfCode,\r
2424 OUT UINT16 *MachineType\r
2425 )\r
2426/*++\r
2427\r
2428Routine Description:\r
2429\r
f7496d71
LG
2430 Retrieves the PE32 entry point offset and machine type from PE image or TeImage.\r
2431 See EfiImage.h for machine types. The entry point offset is from the beginning\r
30fdf114
LG
2432 of the PE32 buffer passed in.\r
2433\r
2434Arguments:\r
2435\r
2436 Pe32 Beginning of the PE32.\r
2437 EntryPoint Offset from the beginning of the PE32 to the image entry point.\r
2438 BaseOfCode Base address of code.\r
2439 MachineType Magic number for the machine type.\r
2440\r
2441Returns:\r
2442\r
2443 EFI_SUCCESS Function completed successfully.\r
2444 EFI_ABORTED Error encountered.\r
2445 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2446 EFI_UNSUPPORTED The operation is unsupported.\r
2447\r
2448--*/\r
2449{\r
2450 EFI_IMAGE_DOS_HEADER *DosHeader;\r
2451 EFI_IMAGE_OPTIONAL_HEADER_UNION *ImgHdr;\r
2452 EFI_TE_IMAGE_HEADER *TeHeader;\r
2453\r
2454 //\r
2455 // Verify input parameters\r
2456 //\r
2457 if (Pe32 == NULL) {\r
2458 return EFI_INVALID_PARAMETER;\r
2459 }\r
2460\r
2461 //\r
2462 // First check whether it is one TE Image.\r
2463 //\r
2464 TeHeader = (EFI_TE_IMAGE_HEADER *) Pe32;\r
2465 if (TeHeader->Signature == EFI_TE_IMAGE_HEADER_SIGNATURE) {\r
2466 //\r
2467 // By TeImage Header to get output\r
2468 //\r
2469 *EntryPoint = TeHeader->AddressOfEntryPoint + sizeof (EFI_TE_IMAGE_HEADER) - TeHeader->StrippedSize;\r
2470 *BaseOfCode = TeHeader->BaseOfCode + sizeof (EFI_TE_IMAGE_HEADER) - TeHeader->StrippedSize;\r
2471 *MachineType = TeHeader->Machine;\r
2472 } else {\r
f7496d71 2473\r
30fdf114 2474 //\r
f7496d71 2475 // Then check whether\r
30fdf114
LG
2476 // First is the DOS header\r
2477 //\r
2478 DosHeader = (EFI_IMAGE_DOS_HEADER *) Pe32;\r
f7496d71 2479\r
30fdf114
LG
2480 //\r
2481 // Verify DOS header is expected\r
2482 //\r
2483 if (DosHeader->e_magic != EFI_IMAGE_DOS_SIGNATURE) {\r
2484 Error (NULL, 0, 3000, "Invalid", "Unknown magic number in the DOS header, 0x%04X.", DosHeader->e_magic);\r
2485 return EFI_UNSUPPORTED;\r
2486 }\r
2487 //\r
2488 // Immediately following is the NT header.\r
2489 //\r
2490 ImgHdr = (EFI_IMAGE_OPTIONAL_HEADER_UNION *) ((UINTN) Pe32 + DosHeader->e_lfanew);\r
f7496d71 2491\r
30fdf114
LG
2492 //\r
2493 // Verify NT header is expected\r
2494 //\r
2495 if (ImgHdr->Pe32.Signature != EFI_IMAGE_NT_SIGNATURE) {\r
fd171542 2496 Error (NULL, 0, 3000, "Invalid", "Unrecognized image signature 0x%08X.", (unsigned) ImgHdr->Pe32.Signature);\r
30fdf114
LG
2497 return EFI_UNSUPPORTED;\r
2498 }\r
2499 //\r
2500 // Get output\r
2501 //\r
2502 *EntryPoint = ImgHdr->Pe32.OptionalHeader.AddressOfEntryPoint;\r
2503 *BaseOfCode = ImgHdr->Pe32.OptionalHeader.BaseOfCode;\r
2504 *MachineType = ImgHdr->Pe32.FileHeader.Machine;\r
2505 }\r
2506\r
2507 //\r
2508 // Verify machine type is supported\r
2509 //\r
8daa4278 2510 if ((*MachineType != EFI_IMAGE_MACHINE_IA32) && (*MachineType != EFI_IMAGE_MACHINE_X64) && (*MachineType != EFI_IMAGE_MACHINE_EBC) &&\r
ad1db975
AC
2511 (*MachineType != EFI_IMAGE_MACHINE_ARMT) && (*MachineType != EFI_IMAGE_MACHINE_AARCH64) &&\r
2512 (*MachineType != EFI_IMAGE_MACHINE_RISCV64)) {\r
30fdf114
LG
2513 Error (NULL, 0, 3000, "Invalid", "Unrecognized machine type in the PE32 file.");\r
2514 return EFI_UNSUPPORTED;\r
2515 }\r
2516\r
2517 return EFI_SUCCESS;\r
2518}\r
2519\r
2520EFI_STATUS\r
2521GenerateFvImage (\r
2522 IN CHAR8 *InfFileImage,\r
2523 IN UINTN InfFileSize,\r
2524 IN CHAR8 *FvFileName,\r
2525 IN CHAR8 *MapFileName\r
2526 )\r
2527/*++\r
2528\r
2529Routine Description:\r
2530\r
2531 This is the main function which will be called from application.\r
2532\r
2533Arguments:\r
2534\r
2535 InfFileImage Buffer containing the INF file contents.\r
2536 InfFileSize Size of the contents of the InfFileImage buffer.\r
2537 FvFileName Requested name for the FV file.\r
2538 MapFileName Fv map file to log fv driver information.\r
2539\r
2540Returns:\r
2541\r
2542 EFI_SUCCESS Function completed successfully.\r
2543 EFI_OUT_OF_RESOURCES Could not allocate required resources.\r
2544 EFI_ABORTED Error encountered.\r
2545 EFI_INVALID_PARAMETER A required parameter was NULL.\r
2546\r
2547--*/\r
2548{\r
b303ea72
LG
2549 EFI_STATUS Status;\r
2550 MEMORY_FILE InfMemoryFile;\r
2551 MEMORY_FILE FvImageMemoryFile;\r
2552 UINTN Index;\r
2553 EFI_FIRMWARE_VOLUME_HEADER *FvHeader;\r
2554 EFI_FFS_FILE_HEADER *VtfFileImage;\r
2555 UINT8 *FvBufferHeader; // to make sure fvimage header 8 type alignment.\r
2556 UINT8 *FvImage;\r
2557 UINTN FvImageSize;\r
2558 FILE *FvFile;\r
6f30cefd 2559 CHAR8 *FvMapName;\r
b303ea72
LG
2560 FILE *FvMapFile;\r
2561 EFI_FIRMWARE_VOLUME_EXT_HEADER *FvExtHeader;\r
2562 FILE *FvExtHeaderFile;\r
2563 UINTN FileSize;\r
6f30cefd 2564 CHAR8 *FvReportName;\r
52302d4d 2565 FILE *FvReportFile;\r
30fdf114
LG
2566\r
2567 FvBufferHeader = NULL;\r
2568 FvFile = NULL;\r
6f30cefd 2569 FvMapName = NULL;\r
30fdf114 2570 FvMapFile = NULL;\r
6f30cefd 2571 FvReportName = NULL;\r
52302d4d 2572 FvReportFile = NULL;\r
30fdf114
LG
2573\r
2574 if (InfFileImage != NULL) {\r
2575 //\r
2576 // Initialize file structures\r
2577 //\r
2578 InfMemoryFile.FileImage = InfFileImage;\r
2579 InfMemoryFile.CurrentFilePointer = InfFileImage;\r
2580 InfMemoryFile.Eof = InfFileImage + InfFileSize;\r
f7496d71 2581\r
30fdf114
LG
2582 //\r
2583 // Parse the FV inf file for header information\r
2584 //\r
2585 Status = ParseFvInf (&InfMemoryFile, &mFvDataInfo);\r
2586 if (EFI_ERROR (Status)) {\r
2587 Error (NULL, 0, 0003, "Error parsing file", "the input FV INF file.");\r
2588 return Status;\r
2589 }\r
2590 }\r
2591\r
2592 //\r
2593 // Update the file name return values\r
2594 //\r
2595 if (FvFileName == NULL && mFvDataInfo.FvName[0] != '\0') {\r
2596 FvFileName = mFvDataInfo.FvName;\r
2597 }\r
2598\r
2599 if (FvFileName == NULL) {\r
2600 Error (NULL, 0, 1001, "Missing option", "Output file name");\r
2601 return EFI_ABORTED;\r
2602 }\r
f7496d71 2603\r
30fdf114
LG
2604 if (mFvDataInfo.FvBlocks[0].Length == 0) {\r
2605 Error (NULL, 0, 1001, "Missing required argument", "Block Size");\r
2606 return EFI_ABORTED;\r
2607 }\r
f7496d71 2608\r
30fdf114
LG
2609 //\r
2610 // Debug message Fv File System Guid\r
2611 //\r
2612 if (mFvDataInfo.FvFileSystemGuidSet) {\r
f7496d71 2613 DebugMsg (NULL, 0, 9, "FV File System Guid", "%08X-%04X-%04X-%02X%02X-%02X%02X%02X%02X%02X%02X",\r
fd171542 2614 (unsigned) mFvDataInfo.FvFileSystemGuid.Data1,\r
30fdf114
LG
2615 mFvDataInfo.FvFileSystemGuid.Data2,\r
2616 mFvDataInfo.FvFileSystemGuid.Data3,\r
2617 mFvDataInfo.FvFileSystemGuid.Data4[0],\r
2618 mFvDataInfo.FvFileSystemGuid.Data4[1],\r
2619 mFvDataInfo.FvFileSystemGuid.Data4[2],\r
2620 mFvDataInfo.FvFileSystemGuid.Data4[3],\r
2621 mFvDataInfo.FvFileSystemGuid.Data4[4],\r
2622 mFvDataInfo.FvFileSystemGuid.Data4[5],\r
2623 mFvDataInfo.FvFileSystemGuid.Data4[6],\r
2624 mFvDataInfo.FvFileSystemGuid.Data4[7]);\r
2625 }\r
b303ea72
LG
2626\r
2627 //\r
2628 // Add PI FV extension header\r
2629 //\r
2630 FvExtHeader = NULL;\r
2631 FvExtHeaderFile = NULL;\r
2632 if (mFvDataInfo.FvExtHeaderFile[0] != 0) {\r
2633 //\r
2634 // Open the FV Extension Header file\r
2635 //\r
1be2ed90 2636 FvExtHeaderFile = fopen (LongFilePath (mFvDataInfo.FvExtHeaderFile), "rb");\r
22247021
HW
2637 if (FvExtHeaderFile == NULL) {\r
2638 Error (NULL, 0, 0001, "Error opening file", mFvDataInfo.FvExtHeaderFile);\r
2639 return EFI_ABORTED;\r
2640 }\r
b303ea72
LG
2641\r
2642 //\r
2643 // Get the file size\r
2644 //\r
2645 FileSize = _filelength (fileno (FvExtHeaderFile));\r
2646\r
2647 //\r
2648 // Allocate a buffer for the FV Extension Header\r
2649 //\r
2650 FvExtHeader = malloc(FileSize);\r
2651 if (FvExtHeader == NULL) {\r
2652 fclose (FvExtHeaderFile);\r
2653 return EFI_OUT_OF_RESOURCES;\r
2654 }\r
2655\r
2656 //\r
2657 // Read the FV Extension Header\r
2658 //\r
2659 fread (FvExtHeader, sizeof (UINT8), FileSize, FvExtHeaderFile);\r
2660 fclose (FvExtHeaderFile);\r
2661\r
2662 //\r
2663 // See if there is an override for the FV Name GUID\r
2664 //\r
2665 if (mFvDataInfo.FvNameGuidSet) {\r
2666 memcpy (&FvExtHeader->FvName, &mFvDataInfo.FvNameGuid, sizeof (EFI_GUID));\r
2667 }\r
2668 memcpy (&mFvDataInfo.FvNameGuid, &FvExtHeader->FvName, sizeof (EFI_GUID));\r
2669 mFvDataInfo.FvNameGuidSet = TRUE;\r
2670 } else if (mFvDataInfo.FvNameGuidSet) {\r
2671 //\r
2672 // Allocate a buffer for the FV Extension Header\r
2673 //\r
2674 FvExtHeader = malloc(sizeof (EFI_FIRMWARE_VOLUME_EXT_HEADER));\r
2675 if (FvExtHeader == NULL) {\r
2676 return EFI_OUT_OF_RESOURCES;\r
2677 }\r
2678 memcpy (&FvExtHeader->FvName, &mFvDataInfo.FvNameGuid, sizeof (EFI_GUID));\r
2679 FvExtHeader->ExtHeaderSize = sizeof (EFI_FIRMWARE_VOLUME_EXT_HEADER);\r
2680 }\r
2681\r
30fdf114
LG
2682 //\r
2683 // Debug message Fv Name Guid\r
2684 //\r
2685 if (mFvDataInfo.FvNameGuidSet) {\r
f7496d71 2686 DebugMsg (NULL, 0, 9, "FV Name Guid", "%08X-%04X-%04X-%02X%02X-%02X%02X%02X%02X%02X%02X",\r
fd171542 2687 (unsigned) mFvDataInfo.FvNameGuid.Data1,\r
30fdf114
LG
2688 mFvDataInfo.FvNameGuid.Data2,\r
2689 mFvDataInfo.FvNameGuid.Data3,\r
2690 mFvDataInfo.FvNameGuid.Data4[0],\r
2691 mFvDataInfo.FvNameGuid.Data4[1],\r
2692 mFvDataInfo.FvNameGuid.Data4[2],\r
2693 mFvDataInfo.FvNameGuid.Data4[3],\r
2694 mFvDataInfo.FvNameGuid.Data4[4],\r
2695 mFvDataInfo.FvNameGuid.Data4[5],\r
2696 mFvDataInfo.FvNameGuid.Data4[6],\r
2697 mFvDataInfo.FvNameGuid.Data4[7]);\r
2698 }\r
2699\r
2bc3256c
LG
2700 if (CompareGuid (&mFvDataInfo.FvFileSystemGuid, &mEfiFirmwareFileSystem2Guid) == 0 ||\r
2701 CompareGuid (&mFvDataInfo.FvFileSystemGuid, &mEfiFirmwareFileSystem3Guid) == 0) {\r
30fdf114
LG
2702 mFvDataInfo.IsPiFvImage = TRUE;\r
2703 }\r
2704\r
2705 //\r
2706 // FvMap file to log the function address of all modules in one Fvimage\r
2707 //\r
2708 if (MapFileName != NULL) {\r
6f30cefd
HW
2709 if (strlen (MapFileName) > MAX_LONG_FILE_PATH - 1) {\r
2710 Error (NULL, 0, 1003, "Invalid option value", "MapFileName %s is too long!", MapFileName);\r
2711 Status = EFI_ABORTED;\r
2712 goto Finish;\r
2713 }\r
2714\r
2715 FvMapName = malloc (strlen (MapFileName) + 1);\r
2716 if (FvMapName == NULL) {\r
2717 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated!");\r
2718 Status = EFI_OUT_OF_RESOURCES;\r
2719 goto Finish;\r
2720 }\r
2721\r
30fdf114
LG
2722 strcpy (FvMapName, MapFileName);\r
2723 } else {\r
6f30cefd
HW
2724 if (strlen (FvFileName) + strlen (".map") > MAX_LONG_FILE_PATH - 1) {\r
2725 Error (NULL, 0, 1003, "Invalid option value", "FvFileName %s is too long!", FvFileName);\r
2726 Status = EFI_ABORTED;\r
2727 goto Finish;\r
2728 }\r
2729\r
2730 FvMapName = malloc (strlen (FvFileName) + strlen (".map") + 1);\r
2731 if (FvMapName == NULL) {\r
2732 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated!");\r
2733 Status = EFI_OUT_OF_RESOURCES;\r
2734 goto Finish;\r
2735 }\r
2736\r
30fdf114
LG
2737 strcpy (FvMapName, FvFileName);\r
2738 strcat (FvMapName, ".map");\r
2739 }\r
2740 VerboseMsg ("FV Map file name is %s", FvMapName);\r
2741\r
52302d4d
LG
2742 //\r
2743 // FvReport file to log the FV information in one Fvimage\r
2744 //\r
6f30cefd
HW
2745 if (strlen (FvFileName) + strlen (".txt") > MAX_LONG_FILE_PATH - 1) {\r
2746 Error (NULL, 0, 1003, "Invalid option value", "FvFileName %s is too long!", FvFileName);\r
2747 Status = EFI_ABORTED;\r
2748 goto Finish;\r
2749 }\r
2750\r
2751 FvReportName = malloc (strlen (FvFileName) + strlen (".txt") + 1);\r
2752 if (FvReportName == NULL) {\r
2753 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated!");\r
2754 Status = EFI_OUT_OF_RESOURCES;\r
2755 goto Finish;\r
2756 }\r
2757\r
52302d4d
LG
2758 strcpy (FvReportName, FvFileName);\r
2759 strcat (FvReportName, ".txt");\r
2760\r
30fdf114
LG
2761 //\r
2762 // Calculate the FV size and Update Fv Size based on the actual FFS files.\r
2763 // And Update mFvDataInfo data.\r
2764 //\r
2765 Status = CalculateFvSize (&mFvDataInfo);\r
2766 if (EFI_ERROR (Status)) {\r
6db97871 2767 goto Finish;\r
30fdf114 2768 }\r
fd171542 2769 VerboseMsg ("the generated FV image size is %u bytes", (unsigned) mFvDataInfo.Size);\r
f7496d71 2770\r
30fdf114
LG
2771 //\r
2772 // support fv image and empty fv image\r
2773 //\r
2774 FvImageSize = mFvDataInfo.Size;\r
2775\r
2776 //\r
2777 // Allocate the FV, assure FvImage Header 8 byte alignment\r
2778 //\r
2779 FvBufferHeader = malloc (FvImageSize + sizeof (UINT64));\r
2780 if (FvBufferHeader == NULL) {\r
6db97871
HW
2781 Status = EFI_OUT_OF_RESOURCES;\r
2782 goto Finish;\r
30fdf114
LG
2783 }\r
2784 FvImage = (UINT8 *) (((UINTN) FvBufferHeader + 7) & ~7);\r
2785\r
2786 //\r
2787 // Initialize the FV to the erase polarity\r
2788 //\r
2789 if (mFvDataInfo.FvAttributes == 0) {\r
2790 //\r
f7496d71 2791 // Set Default Fv Attribute\r
30fdf114
LG
2792 //\r
2793 mFvDataInfo.FvAttributes = FV_DEFAULT_ATTRIBUTE;\r
2794 }\r
2795 if (mFvDataInfo.FvAttributes & EFI_FVB2_ERASE_POLARITY) {\r
2796 memset (FvImage, -1, FvImageSize);\r
2797 } else {\r
2798 memset (FvImage, 0, FvImageSize);\r
2799 }\r
2800\r
2801 //\r
2802 // Initialize FV header\r
2803 //\r
2804 FvHeader = (EFI_FIRMWARE_VOLUME_HEADER *) FvImage;\r
2805\r
2806 //\r
2807 // Initialize the zero vector to all zeros.\r
2808 //\r
2809 memset (FvHeader->ZeroVector, 0, 16);\r
2810\r
2811 //\r
2812 // Copy the Fv file system GUID\r
2813 //\r
2814 memcpy (&FvHeader->FileSystemGuid, &mFvDataInfo.FvFileSystemGuid, sizeof (EFI_GUID));\r
2815\r
2816 FvHeader->FvLength = FvImageSize;\r
2817 FvHeader->Signature = EFI_FVH_SIGNATURE;\r
2818 FvHeader->Attributes = mFvDataInfo.FvAttributes;\r
2819 FvHeader->Revision = EFI_FVH_REVISION;\r
2820 FvHeader->ExtHeaderOffset = 0;\r
2821 FvHeader->Reserved[0] = 0;\r
f7496d71 2822\r
30fdf114
LG
2823 //\r
2824 // Copy firmware block map\r
2825 //\r
2826 for (Index = 0; mFvDataInfo.FvBlocks[Index].Length != 0; Index++) {\r
2827 FvHeader->BlockMap[Index].NumBlocks = mFvDataInfo.FvBlocks[Index].NumBlocks;\r
2828 FvHeader->BlockMap[Index].Length = mFvDataInfo.FvBlocks[Index].Length;\r
2829 }\r
2830\r
2831 //\r
2832 // Add block map terminator\r
2833 //\r
2834 FvHeader->BlockMap[Index].NumBlocks = 0;\r
2835 FvHeader->BlockMap[Index].Length = 0;\r
2836\r
2837 //\r
2838 // Complete the header\r
2839 //\r
2840 FvHeader->HeaderLength = (UINT16) (((UINTN) &(FvHeader->BlockMap[Index + 1])) - (UINTN) FvImage);\r
2841 FvHeader->Checksum = 0;\r
2842 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
2843\r
2844 //\r
2845 // If there is no FFS file, generate one empty FV\r
2846 //\r
fd171542 2847 if (mFvDataInfo.FvFiles[0][0] == 0 && !mFvDataInfo.FvNameGuidSet) {\r
30fdf114
LG
2848 goto WriteFile;\r
2849 }\r
2850\r
2851 //\r
2852 // Initialize our "file" view of the buffer\r
2853 //\r
2854 FvImageMemoryFile.FileImage = (CHAR8 *)FvImage;\r
2855 FvImageMemoryFile.CurrentFilePointer = (CHAR8 *)FvImage + FvHeader->HeaderLength;\r
2856 FvImageMemoryFile.Eof = (CHAR8 *)FvImage + FvImageSize;\r
2857\r
2858 //\r
2859 // Initialize the FV library.\r
2860 //\r
2861 InitializeFvLib (FvImageMemoryFile.FileImage, FvImageSize);\r
2862\r
2863 //\r
2864 // Initialize the VTF file address.\r
2865 //\r
2866 VtfFileImage = (EFI_FFS_FILE_HEADER *) FvImageMemoryFile.Eof;\r
2867\r
2868 //\r
2869 // Open FvMap file\r
2870 //\r
1be2ed90 2871 FvMapFile = fopen (LongFilePath (FvMapName), "w");\r
30fdf114
LG
2872 if (FvMapFile == NULL) {\r
2873 Error (NULL, 0, 0001, "Error opening file", FvMapName);\r
6db97871
HW
2874 Status = EFI_ABORTED;\r
2875 goto Finish;\r
30fdf114 2876 }\r
f7496d71 2877\r
52302d4d
LG
2878 //\r
2879 // Open FvReport file\r
2880 //\r
1be2ed90 2881 FvReportFile = fopen (LongFilePath (FvReportName), "w");\r
52302d4d
LG
2882 if (FvReportFile == NULL) {\r
2883 Error (NULL, 0, 0001, "Error opening file", FvReportName);\r
6db97871
HW
2884 Status = EFI_ABORTED;\r
2885 goto Finish;\r
52302d4d 2886 }\r
30fdf114
LG
2887 //\r
2888 // record FV size information into FvMap file.\r
2889 //\r
2890 if (mFvTotalSize != 0) {\r
2891 fprintf (FvMapFile, EFI_FV_TOTAL_SIZE_STRING);\r
fd171542 2892 fprintf (FvMapFile, " = 0x%x\n", (unsigned) mFvTotalSize);\r
30fdf114
LG
2893 }\r
2894 if (mFvTakenSize != 0) {\r
2895 fprintf (FvMapFile, EFI_FV_TAKEN_SIZE_STRING);\r
fd171542 2896 fprintf (FvMapFile, " = 0x%x\n", (unsigned) mFvTakenSize);\r
30fdf114
LG
2897 }\r
2898 if (mFvTotalSize != 0 && mFvTakenSize != 0) {\r
2899 fprintf (FvMapFile, EFI_FV_SPACE_SIZE_STRING);\r
fd171542 2900 fprintf (FvMapFile, " = 0x%x\n\n", (unsigned) (mFvTotalSize - mFvTakenSize));\r
30fdf114
LG
2901 }\r
2902\r
52302d4d
LG
2903 //\r
2904 // record FV size information to FvReportFile.\r
2905 //\r
2906 fprintf (FvReportFile, "%s = 0x%x\n", EFI_FV_TOTAL_SIZE_STRING, (unsigned) mFvTotalSize);\r
2907 fprintf (FvReportFile, "%s = 0x%x\n", EFI_FV_TAKEN_SIZE_STRING, (unsigned) mFvTakenSize);\r
2908\r
30fdf114 2909 //\r
b303ea72 2910 // Add PI FV extension header\r
30fdf114 2911 //\r
b303ea72
LG
2912 if (FvExtHeader != NULL) {\r
2913 //\r
2914 // Add FV Extended Header contents to the FV as a PAD file\r
2915 //\r
e8a47801 2916 AddPadFile (&FvImageMemoryFile, 4, VtfFileImage, FvExtHeader, 0);\r
b303ea72 2917\r
30fdf114
LG
2918 //\r
2919 // Fv Extension header change update Fv Header Check sum\r
2920 //\r
2921 FvHeader->Checksum = 0;\r
2922 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
2923 }\r
2924\r
2925 //\r
2926 // Add files to FV\r
2927 //\r
2928 for (Index = 0; mFvDataInfo.FvFiles[Index][0] != 0; Index++) {\r
2929 //\r
2930 // Add the file\r
2931 //\r
52302d4d 2932 Status = AddFile (&FvImageMemoryFile, &mFvDataInfo, Index, &VtfFileImage, FvMapFile, FvReportFile);\r
30fdf114
LG
2933\r
2934 //\r
2935 // Exit if error detected while adding the file\r
2936 //\r
2937 if (EFI_ERROR (Status)) {\r
2938 goto Finish;\r
2939 }\r
2940 }\r
2941\r
2942 //\r
2943 // If there is a VTF file, some special actions need to occur.\r
2944 //\r
2945 if ((UINTN) VtfFileImage != (UINTN) FvImageMemoryFile.Eof) {\r
2946 //\r
2947 // Pad from the end of the last file to the beginning of the VTF file.\r
2948 // If the left space is less than sizeof (EFI_FFS_FILE_HEADER)?\r
2949 //\r
2950 Status = PadFvImage (&FvImageMemoryFile, VtfFileImage);\r
2951 if (EFI_ERROR (Status)) {\r
2952 Error (NULL, 0, 4002, "Resource", "FV space is full, cannot add pad file between the last file and the VTF file.");\r
2953 goto Finish;\r
2954 }\r
ad1db975
AC
2955\r
2956 if (!mArm && !mRiscV) {\r
30fdf114
LG
2957 //\r
2958 // Update reset vector (SALE_ENTRY for IPF)\r
f7496d71 2959 // Now for IA32 and IA64 platform, the fv which has bsf file must have the\r
11eaa7af
YZ
2960 // EndAddress of 0xFFFFFFFF (unless the section was rebased).\r
2961 // Thus, only this type fv needs to update the reset vector.\r
2962 // If the PEI Core is found, the VTF file will probably get\r
2963 // corrupted by updating the entry point.\r
30fdf114 2964 //\r
11eaa7af
YZ
2965 if (mFvDataInfo.ForceRebase == 1 ||\r
2966 (mFvDataInfo.BaseAddress + mFvDataInfo.Size) == FV_IMAGES_TOP_ADDRESS) {\r
30fdf114 2967 Status = UpdateResetVector (&FvImageMemoryFile, &mFvDataInfo, VtfFileImage);\r
f7496d71 2968 if (EFI_ERROR(Status)) {\r
30fdf114 2969 Error (NULL, 0, 3000, "Invalid", "Could not update the reset vector.");\r
f7496d71 2970 goto Finish;\r
30fdf114
LG
2971 }\r
2972 DebugMsg (NULL, 0, 9, "Update Reset vector in VTF file", NULL);\r
2973 }\r
2974 }\r
f7496d71 2975 }\r
30fdf114
LG
2976\r
2977 if (mArm) {\r
2978 Status = UpdateArmResetVectorIfNeeded (&FvImageMemoryFile, &mFvDataInfo);\r
f7496d71 2979 if (EFI_ERROR (Status)) {\r
30fdf114 2980 Error (NULL, 0, 3000, "Invalid", "Could not update the reset vector.");\r
f7496d71
LG
2981 goto Finish;\r
2982 }\r
2983\r
30fdf114
LG
2984 //\r
2985 // Update Checksum for FvHeader\r
2986 //\r
2987 FvHeader->Checksum = 0;\r
2988 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
2989 }\r
f7496d71 2990\r
ad1db975
AC
2991 if (mRiscV) {\r
2992 //\r
2993 // Update RISCV reset vector.\r
2994 //\r
2995 Status = UpdateRiscvResetVectorIfNeeded (&FvImageMemoryFile, &mFvDataInfo);\r
2996 if (EFI_ERROR (Status)) {\r
2997 Error (NULL, 0, 3000, "Invalid", "Could not update the reset vector for RISC-V.");\r
2998 goto Finish;\r
2999 }\r
3000 //\r
3001 // Update Checksum for FvHeader\r
3002 //\r
3003 FvHeader->Checksum = 0;\r
3004 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
3005 }\r
3006\r
30fdf114
LG
3007 //\r
3008 // Update FV Alignment attribute to the largest alignment of all the FFS files in the FV\r
3009 //\r
e8a47801
LG
3010 if (((FvHeader->Attributes & EFI_FVB2_WEAK_ALIGNMENT) != EFI_FVB2_WEAK_ALIGNMENT) &&\r
3011 (((FvHeader->Attributes & EFI_FVB2_ALIGNMENT) >> 16)) < MaxFfsAlignment) {\r
30fdf114
LG
3012 FvHeader->Attributes = ((MaxFfsAlignment << 16) | (FvHeader->Attributes & 0xFFFF));\r
3013 //\r
3014 // Update Checksum for FvHeader\r
3015 //\r
3016 FvHeader->Checksum = 0;\r
3017 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
3018 }\r
3019\r
e8a47801
LG
3020 //\r
3021 // If there are large FFS in FV, the file system GUID should set to system 3 GUID.\r
3022 //\r
3023 if (mIsLargeFfs && CompareGuid (&FvHeader->FileSystemGuid, &mEfiFirmwareFileSystem2Guid) == 0) {\r
3024 memcpy (&FvHeader->FileSystemGuid, &mEfiFirmwareFileSystem3Guid, sizeof (EFI_GUID));\r
3025 FvHeader->Checksum = 0;\r
3026 FvHeader->Checksum = CalculateChecksum16 ((UINT16 *) FvHeader, FvHeader->HeaderLength / sizeof (UINT16));\r
3027 }\r
3028\r
f7496d71 3029WriteFile:\r
30fdf114
LG
3030 //\r
3031 // Write fv file\r
3032 //\r
1be2ed90 3033 FvFile = fopen (LongFilePath (FvFileName), "wb");\r
30fdf114
LG
3034 if (FvFile == NULL) {\r
3035 Error (NULL, 0, 0001, "Error opening file", FvFileName);\r
3036 Status = EFI_ABORTED;\r
3037 goto Finish;\r
3038 }\r
3039\r
3040 if (fwrite (FvImage, 1, FvImageSize, FvFile) != FvImageSize) {\r
3041 Error (NULL, 0, 0002, "Error writing file", FvFileName);\r
3042 Status = EFI_ABORTED;\r
3043 goto Finish;\r
3044 }\r
3045\r
3046Finish:\r
3047 if (FvBufferHeader != NULL) {\r
3048 free (FvBufferHeader);\r
3049 }\r
b303ea72
LG
3050\r
3051 if (FvExtHeader != NULL) {\r
3052 free (FvExtHeader);\r
3053 }\r
6f30cefd
HW
3054\r
3055 if (FvMapName != NULL) {\r
3056 free (FvMapName);\r
3057 }\r
3058\r
3059 if (FvReportName != NULL) {\r
3060 free (FvReportName);\r
3061 }\r
f7496d71 3062\r
30fdf114 3063 if (FvFile != NULL) {\r
52302d4d 3064 fflush (FvFile);\r
30fdf114
LG
3065 fclose (FvFile);\r
3066 }\r
f7496d71 3067\r
30fdf114 3068 if (FvMapFile != NULL) {\r
52302d4d 3069 fflush (FvMapFile);\r
30fdf114
LG
3070 fclose (FvMapFile);\r
3071 }\r
3072\r
52302d4d
LG
3073 if (FvReportFile != NULL) {\r
3074 fflush (FvReportFile);\r
3075 fclose (FvReportFile);\r
3076 }\r
30fdf114
LG
3077 return Status;\r
3078}\r
3079\r
3080EFI_STATUS\r
3081UpdatePeiCoreEntryInFit (\r
3082 IN FIT_TABLE *FitTablePtr,\r
3083 IN UINT64 PeiCorePhysicalAddress\r
3084 )\r
3085/*++\r
3086\r
3087Routine Description:\r
3088\r
3089 This function is used to update the Pei Core address in FIT, this can be used by Sec core to pass control from\r
3090 Sec to Pei Core\r
3091\r
3092Arguments:\r
3093\r
3094 FitTablePtr - The pointer of FIT_TABLE.\r
3095 PeiCorePhysicalAddress - The address of Pei Core entry.\r
3096\r
3097Returns:\r
3098\r
3099 EFI_SUCCESS - The PEI_CORE FIT entry was updated successfully.\r
3100 EFI_NOT_FOUND - Not found the PEI_CORE FIT entry.\r
3101\r
3102--*/\r
3103{\r
3104 FIT_TABLE *TmpFitPtr;\r
3105 UINTN Index;\r
3106 UINTN NumFitComponents;\r
3107\r
3108 TmpFitPtr = FitTablePtr;\r
3109 NumFitComponents = TmpFitPtr->CompSize;\r
3110\r
3111 for (Index = 0; Index < NumFitComponents; Index++) {\r
3112 if ((TmpFitPtr->CvAndType & FIT_TYPE_MASK) == COMP_TYPE_FIT_PEICORE) {\r
3113 TmpFitPtr->CompAddress = PeiCorePhysicalAddress;\r
3114 return EFI_SUCCESS;\r
3115 }\r
3116\r
3117 TmpFitPtr++;\r
3118 }\r
3119\r
3120 return EFI_NOT_FOUND;\r
3121}\r
3122\r
3123VOID\r
3124UpdateFitCheckSum (\r
3125 IN FIT_TABLE *FitTablePtr\r
3126 )\r
3127/*++\r
3128\r
3129Routine Description:\r
3130\r
3131 This function is used to update the checksum for FIT.\r
3132\r
3133\r
3134Arguments:\r
3135\r
3136 FitTablePtr - The pointer of FIT_TABLE.\r
3137\r
3138Returns:\r
3139\r
3140 None.\r
3141\r
3142--*/\r
3143{\r
3144 if ((FitTablePtr->CvAndType & CHECKSUM_BIT_MASK) >> 7) {\r
3145 FitTablePtr->CheckSum = 0;\r
3146 FitTablePtr->CheckSum = CalculateChecksum8 ((UINT8 *) FitTablePtr, FitTablePtr->CompSize * 16);\r
3147 }\r
3148}\r
3149\r
3150EFI_STATUS\r
3151CalculateFvSize (\r
3152 FV_INFO *FvInfoPtr\r
3153 )\r
3154/*++\r
3155Routine Description:\r
3156 Calculate the FV size and Update Fv Size based on the actual FFS files.\r
3157 And Update FvInfo data.\r
3158\r
3159Arguments:\r
3160 FvInfoPtr - The pointer to FV_INFO structure.\r
3161\r
3162Returns:\r
3163 EFI_ABORTED - Ffs Image Error\r
3164 EFI_SUCCESS - Successfully update FvSize\r
3165--*/\r
3166{\r
3167 UINTN CurrentOffset;\r
3ee4f6cb 3168 UINTN OrigOffset;\r
30fdf114
LG
3169 UINTN Index;\r
3170 FILE *fpin;\r
3171 UINTN FfsFileSize;\r
b303ea72 3172 UINTN FvExtendHeaderSize;\r
30fdf114 3173 UINT32 FfsAlignment;\r
e8a47801 3174 UINT32 FfsHeaderSize;\r
30fdf114 3175 EFI_FFS_FILE_HEADER FfsHeader;\r
fd171542 3176 UINTN VtfFileSize;\r
3ee4f6cb 3177 UINTN MaxPadFileSize;\r
f7496d71 3178\r
b303ea72 3179 FvExtendHeaderSize = 0;\r
3ee4f6cb 3180 MaxPadFileSize = 0;\r
fd171542 3181 VtfFileSize = 0;\r
30fdf114
LG
3182 fpin = NULL;\r
3183 Index = 0;\r
3184\r
3185 //\r
3186 // Compute size for easy access later\r
3187 //\r
3188 FvInfoPtr->Size = 0;\r
3189 for (Index = 0; FvInfoPtr->FvBlocks[Index].NumBlocks > 0 && FvInfoPtr->FvBlocks[Index].Length > 0; Index++) {\r
3190 FvInfoPtr->Size += FvInfoPtr->FvBlocks[Index].NumBlocks * FvInfoPtr->FvBlocks[Index].Length;\r
3191 }\r
f7496d71 3192\r
30fdf114 3193 //\r
64957e35 3194 // Calculate the required sizes for all FFS files.\r
30fdf114
LG
3195 //\r
3196 CurrentOffset = sizeof (EFI_FIRMWARE_VOLUME_HEADER);\r
f7496d71 3197\r
30fdf114
LG
3198 for (Index = 1;; Index ++) {\r
3199 CurrentOffset += sizeof (EFI_FV_BLOCK_MAP_ENTRY);\r
3200 if (FvInfoPtr->FvBlocks[Index].NumBlocks == 0 || FvInfoPtr->FvBlocks[Index].Length == 0) {\r
3201 break;\r
3202 }\r
3203 }\r
f7496d71 3204\r
30fdf114
LG
3205 //\r
3206 // Calculate PI extension header\r
3207 //\r
b303ea72 3208 if (mFvDataInfo.FvExtHeaderFile[0] != '\0') {\r
1be2ed90 3209 fpin = fopen (LongFilePath (mFvDataInfo.FvExtHeaderFile), "rb");\r
b303ea72
LG
3210 if (fpin == NULL) {\r
3211 Error (NULL, 0, 0001, "Error opening file", mFvDataInfo.FvExtHeaderFile);\r
3212 return EFI_ABORTED;\r
3213 }\r
3214 FvExtendHeaderSize = _filelength (fileno (fpin));\r
3215 fclose (fpin);\r
e8a47801
LG
3216 if (sizeof (EFI_FFS_FILE_HEADER) + FvExtendHeaderSize >= MAX_FFS_SIZE) {\r
3217 CurrentOffset += sizeof (EFI_FFS_FILE_HEADER2) + FvExtendHeaderSize;\r
3218 mIsLargeFfs = TRUE;\r
3219 } else {\r
3220 CurrentOffset += sizeof (EFI_FFS_FILE_HEADER) + FvExtendHeaderSize;\r
3221 }\r
b303ea72
LG
3222 CurrentOffset = (CurrentOffset + 7) & (~7);\r
3223 } else if (mFvDataInfo.FvNameGuidSet) {\r
30fdf114
LG
3224 CurrentOffset += sizeof (EFI_FFS_FILE_HEADER) + sizeof (EFI_FIRMWARE_VOLUME_EXT_HEADER);\r
3225 CurrentOffset = (CurrentOffset + 7) & (~7);\r
3226 }\r
3227\r
3228 //\r
fb0b35e0 3229 // Accumulate every FFS file size.\r
30fdf114
LG
3230 //\r
3231 for (Index = 0; FvInfoPtr->FvFiles[Index][0] != 0; Index++) {\r
3232 //\r
3233 // Open FFS file\r
3234 //\r
3235 fpin = NULL;\r
1be2ed90 3236 fpin = fopen (LongFilePath (FvInfoPtr->FvFiles[Index]), "rb");\r
30fdf114
LG
3237 if (fpin == NULL) {\r
3238 Error (NULL, 0, 0001, "Error opening file", FvInfoPtr->FvFiles[Index]);\r
3239 return EFI_ABORTED;\r
3240 }\r
3241 //\r
3242 // Get the file size\r
3243 //\r
3244 FfsFileSize = _filelength (fileno (fpin));\r
e8a47801
LG
3245 if (FfsFileSize >= MAX_FFS_SIZE) {\r
3246 FfsHeaderSize = sizeof(EFI_FFS_FILE_HEADER2);\r
3247 mIsLargeFfs = TRUE;\r
3248 } else {\r
3249 FfsHeaderSize = sizeof(EFI_FFS_FILE_HEADER);\r
3250 }\r
30fdf114
LG
3251 //\r
3252 // Read Ffs File header\r
3253 //\r
3254 fread (&FfsHeader, sizeof (UINT8), sizeof (EFI_FFS_FILE_HEADER), fpin);\r
3255 //\r
3256 // close file\r
3257 //\r
3258 fclose (fpin);\r
f7496d71 3259\r
30fdf114 3260 if (FvInfoPtr->IsPiFvImage) {\r
2ff9e575
YZ
3261 //\r
3262 // Check whether this ffs file is vtf file\r
3263 //\r
3264 if (IsVtfFile (&FfsHeader)) {\r
3265 if (VtfFileFlag) {\r
3266 //\r
3267 // One Fv image can't have two vtf files.\r
3268 //\r
3269 Error (NULL, 0, 3000,"Invalid", "One Fv image can't have two vtf files.");\r
3270 return EFI_ABORTED;\r
3271 }\r
3272 VtfFileFlag = TRUE;\r
fd171542 3273 VtfFileSize = FfsFileSize;\r
3274 continue;\r
3275 }\r
3276\r
3277 //\r
f7496d71 3278 // Get the alignment of FFS file\r
fd171542 3279 //\r
3280 ReadFfsAlignment (&FfsHeader, &FfsAlignment);\r
3281 FfsAlignment = 1 << FfsAlignment;\r
3282 //\r
3283 // Add Pad file\r
3284 //\r
e8a47801
LG
3285 if (((CurrentOffset + FfsHeaderSize) % FfsAlignment) != 0) {\r
3286 //\r
3287 // Only EFI_FFS_FILE_HEADER is needed for a pad section.\r
3288 //\r
3ee4f6cb 3289 OrigOffset = CurrentOffset;\r
e8a47801
LG
3290 CurrentOffset = (CurrentOffset + FfsHeaderSize + sizeof(EFI_FFS_FILE_HEADER) + FfsAlignment - 1) & ~(FfsAlignment - 1);\r
3291 CurrentOffset -= FfsHeaderSize;\r
3ee4f6cb
LG
3292 if ((CurrentOffset - OrigOffset) > MaxPadFileSize) {\r
3293 MaxPadFileSize = CurrentOffset - OrigOffset;\r
3294 }\r
fd171542 3295 }\r
f7496d71 3296 }\r
30fdf114
LG
3297\r
3298 //\r
3299 // Add ffs file size\r
3300 //\r
3301 if (FvInfoPtr->SizeofFvFiles[Index] > FfsFileSize) {\r
f7496d71 3302 CurrentOffset += FvInfoPtr->SizeofFvFiles[Index];\r
30fdf114 3303 } else {\r
f7496d71 3304 CurrentOffset += FfsFileSize;\r
30fdf114 3305 }\r
f7496d71 3306\r
30fdf114 3307 //\r
fb0b35e0 3308 // Make next ffs file start at QWord Boundary\r
30fdf114
LG
3309 //\r
3310 if (FvInfoPtr->IsPiFvImage) {\r
f7496d71 3311 CurrentOffset = (CurrentOffset + EFI_FFS_FILE_HEADER_ALIGNMENT - 1) & ~(EFI_FFS_FILE_HEADER_ALIGNMENT - 1);\r
30fdf114
LG
3312 }\r
3313 }\r
fd171542 3314 CurrentOffset += VtfFileSize;\r
64957e35 3315 DebugMsg (NULL, 0, 9, "FvImage size", "The calculated fv image size is 0x%x and the current set fv image size is 0x%x", (unsigned) CurrentOffset, (unsigned) FvInfoPtr->Size);\r
f7496d71
LG
3316\r
3317 if (FvInfoPtr->Size == 0) {\r
30fdf114
LG
3318 //\r
3319 // Update FvInfo data\r
3320 //\r
3321 FvInfoPtr->FvBlocks[0].NumBlocks = CurrentOffset / FvInfoPtr->FvBlocks[0].Length + ((CurrentOffset % FvInfoPtr->FvBlocks[0].Length)?1:0);\r
3322 FvInfoPtr->Size = FvInfoPtr->FvBlocks[0].NumBlocks * FvInfoPtr->FvBlocks[0].Length;\r
3323 FvInfoPtr->FvBlocks[1].NumBlocks = 0;\r
3324 FvInfoPtr->FvBlocks[1].Length = 0;\r
3325 } else if (FvInfoPtr->Size < CurrentOffset) {\r
3326 //\r
3327 // Not invalid\r
3328 //\r
fd171542 3329 Error (NULL, 0, 3000, "Invalid", "the required fv image size 0x%x exceeds the set fv image size 0x%x", (unsigned) CurrentOffset, (unsigned) FvInfoPtr->Size);\r
30fdf114
LG
3330 return EFI_INVALID_PARAMETER;\r
3331 }\r
f7496d71 3332\r
30fdf114
LG
3333 //\r
3334 // Set Fv Size Information\r
3335 //\r
3336 mFvTotalSize = FvInfoPtr->Size;\r
3337 mFvTakenSize = CurrentOffset;\r
3ee4f6cb
LG
3338 if ((mFvTakenSize == mFvTotalSize) && (MaxPadFileSize > 0)) {\r
3339 //\r
3340 // This FV means TOP FFS has been taken. Then, check whether there is padding data for use.\r
3341 //\r
3342 mFvTakenSize = mFvTakenSize - MaxPadFileSize;\r
3343 }\r
30fdf114
LG
3344\r
3345 return EFI_SUCCESS;\r
3346}\r
3347\r
3348EFI_STATUS\r
3349FfsRebaseImageRead (\r
3350 IN VOID *FileHandle,\r
3351 IN UINTN FileOffset,\r
3352 IN OUT UINT32 *ReadSize,\r
3353 OUT VOID *Buffer\r
3354 )\r
3355/*++\r
3356\r
3357Routine Description:\r
3358\r
3359 Support routine for the PE/COFF Loader that reads a buffer from a PE/COFF file\r
3360\r
3361Arguments:\r
3362\r
3363 FileHandle - The handle to the PE/COFF file\r
3364\r
3365 FileOffset - The offset, in bytes, into the file to read\r
3366\r
3367 ReadSize - The number of bytes to read from the file starting at FileOffset\r
3368\r
3369 Buffer - A pointer to the buffer to read the data into.\r
3370\r
3371Returns:\r
3372\r
3373 EFI_SUCCESS - ReadSize bytes of data were read into Buffer from the PE/COFF file starting at FileOffset\r
3374\r
3375--*/\r
3376{\r
3377 CHAR8 *Destination8;\r
3378 CHAR8 *Source8;\r
3379 UINT32 Length;\r
3380\r
3381 Destination8 = Buffer;\r
3382 Source8 = (CHAR8 *) ((UINTN) FileHandle + FileOffset);\r
3383 Length = *ReadSize;\r
3384 while (Length--) {\r
3385 *(Destination8++) = *(Source8++);\r
3386 }\r
3387\r
3388 return EFI_SUCCESS;\r
3389}\r
3390\r
52302d4d
LG
3391EFI_STATUS\r
3392GetChildFvFromFfs (\r
f7496d71 3393 IN FV_INFO *FvInfo,\r
52302d4d
LG
3394 IN EFI_FFS_FILE_HEADER *FfsFile,\r
3395 IN UINTN XipOffset\r
3396 )\r
3397/*++\r
3398\r
3399Routine Description:\r
3400\r
3401 This function gets all child FvImages in the input FfsFile, and records\r
3402 their base address to the parent image.\r
3403\r
3404Arguments:\r
fb0b35e0 3405 FvInfo A pointer to FV_INFO structure.\r
52302d4d
LG
3406 FfsFile A pointer to Ffs file image that may contain FvImage.\r
3407 XipOffset The offset address to the parent FvImage base.\r
3408\r
3409Returns:\r
3410\r
3411 EFI_SUCCESS Base address of child Fv image is recorded.\r
3412--*/\r
3413{\r
3414 EFI_STATUS Status;\r
3415 UINTN Index;\r
3416 EFI_FILE_SECTION_POINTER SubFvSection;\r
3417 EFI_FIRMWARE_VOLUME_HEADER *SubFvImageHeader;\r
3418 EFI_PHYSICAL_ADDRESS SubFvBaseAddress;\r
eca22f36
EC
3419 EFI_FILE_SECTION_POINTER CorePe32;\r
3420 UINT16 MachineType;\r
52302d4d
LG
3421\r
3422 for (Index = 1;; Index++) {\r
3423 //\r
f7496d71 3424 // Find FV section\r
52302d4d
LG
3425 //\r
3426 Status = GetSectionByType (FfsFile, EFI_SECTION_FIRMWARE_VOLUME_IMAGE, Index, &SubFvSection);\r
3427 if (EFI_ERROR (Status)) {\r
3428 break;\r
3429 }\r
e8a47801 3430 SubFvImageHeader = (EFI_FIRMWARE_VOLUME_HEADER *) ((UINT8 *) SubFvSection.FVImageSection + GetSectionHeaderLength(SubFvSection.FVImageSection));\r
eca22f36
EC
3431\r
3432 //\r
3433 // See if there's an SEC core in the child FV\r
3434 Status = FindCorePeSection(SubFvImageHeader, SubFvImageHeader->FvLength, EFI_FV_FILETYPE_SECURITY_CORE, &CorePe32);\r
3435\r
3436 // if we couldn't find the SEC core, look for a PEI core\r
3437 if (EFI_ERROR(Status)) {\r
3438 Status = FindCorePeSection(SubFvImageHeader, SubFvImageHeader->FvLength, EFI_FV_FILETYPE_PEI_CORE, &CorePe32);\r
3439 }\r
3440\r
3441 if (!EFI_ERROR(Status)) {\r
3442 Status = GetCoreMachineType(CorePe32, &MachineType);\r
3443 if (EFI_ERROR(Status)) {\r
3444 Error(NULL, 0, 3000, "Invalid", "Could not get the PE32 machine type for SEC/PEI Core.");\r
3445 return EFI_ABORTED;\r
3446 }\r
3447\r
fb0b35e0 3448 // machine type is ARM, set a flag so ARM reset vector processing occurs\r
eca22f36
EC
3449 if ((MachineType == EFI_IMAGE_MACHINE_ARMT) || (MachineType == EFI_IMAGE_MACHINE_AARCH64)) {\r
3450 VerboseMsg("Located ARM/AArch64 SEC/PEI core in child FV");\r
3451 mArm = TRUE;\r
3452 }\r
3453 }\r
3454\r
52302d4d
LG
3455 //\r
3456 // Rebase on Flash\r
3457 //\r
3458 SubFvBaseAddress = FvInfo->BaseAddress + (UINTN) SubFvImageHeader - (UINTN) FfsFile + XipOffset;\r
3459 mFvBaseAddress[mFvBaseAddressNumber ++ ] = SubFvBaseAddress;\r
3460 }\r
3461\r
3462 return EFI_SUCCESS;\r
3463}\r
3464\r
30fdf114 3465EFI_STATUS\r
f7496d71
LG
3466FfsRebase (\r
3467 IN OUT FV_INFO *FvInfo,\r
3468 IN CHAR8 *FileName,\r
30fdf114
LG
3469 IN OUT EFI_FFS_FILE_HEADER *FfsFile,\r
3470 IN UINTN XipOffset,\r
3471 IN FILE *FvMapFile\r
3472 )\r
3473/*++\r
3474\r
3475Routine Description:\r
3476\r
3477 This function determines if a file is XIP and should be rebased. It will\r
3478 rebase any PE32 sections found in the file using the base address.\r
3479\r
3480Arguments:\r
f7496d71 3481\r
fb0b35e0 3482 FvInfo A pointer to FV_INFO structure.\r
30fdf114
LG
3483 FileName Ffs File PathName\r
3484 FfsFile A pointer to Ffs file image.\r
3485 XipOffset The offset address to use for rebasing the XIP file image.\r
3486 FvMapFile FvMapFile to record the function address in one Fvimage\r
3487\r
3488Returns:\r
3489\r
3490 EFI_SUCCESS The image was properly rebased.\r
3491 EFI_INVALID_PARAMETER An input parameter is invalid.\r
3492 EFI_ABORTED An error occurred while rebasing the input file image.\r
3493 EFI_OUT_OF_RESOURCES Could not allocate a required resource.\r
3494 EFI_NOT_FOUND No compressed sections could be found.\r
3495\r
3496--*/\r
3497{\r
3498 EFI_STATUS Status;\r
3499 PE_COFF_LOADER_IMAGE_CONTEXT ImageContext;\r
f7496d71 3500 PE_COFF_LOADER_IMAGE_CONTEXT OrigImageContext;\r
30fdf114
LG
3501 EFI_PHYSICAL_ADDRESS XipBase;\r
3502 EFI_PHYSICAL_ADDRESS NewPe32BaseAddress;\r
30fdf114
LG
3503 UINTN Index;\r
3504 EFI_FILE_SECTION_POINTER CurrentPe32Section;\r
3505 EFI_FFS_FILE_STATE SavedState;\r
3506 EFI_IMAGE_OPTIONAL_HEADER_UNION *ImgHdr;\r
3507 EFI_TE_IMAGE_HEADER *TEImageHeader;\r
30fdf114
LG
3508 UINT8 *MemoryImagePointer;\r
3509 EFI_IMAGE_SECTION_HEADER *SectionHeader;\r
1be2ed90 3510 CHAR8 PeFileName [MAX_LONG_FILE_PATH];\r
30fdf114
LG
3511 CHAR8 *Cptr;\r
3512 FILE *PeFile;\r
3513 UINT8 *PeFileBuffer;\r
3514 UINT32 PeFileSize;\r
3515 CHAR8 *PdbPointer;\r
e8a47801
LG
3516 UINT32 FfsHeaderSize;\r
3517 UINT32 CurSecHdrSize;\r
30fdf114 3518\r
f7496d71 3519 Index = 0;\r
30fdf114 3520 MemoryImagePointer = NULL;\r
30fdf114
LG
3521 TEImageHeader = NULL;\r
3522 ImgHdr = NULL;\r
3523 SectionHeader = NULL;\r
3524 Cptr = NULL;\r
3525 PeFile = NULL;\r
3526 PeFileBuffer = NULL;\r
3527\r
3528 //\r
79b74a03 3529 // Don't need to relocate image when BaseAddress is zero and no ForceRebase Flag specified.\r
30fdf114 3530 //\r
79b74a03 3531 if ((FvInfo->BaseAddress == 0) && (FvInfo->ForceRebase == -1)) {\r
52302d4d 3532 return EFI_SUCCESS;\r
30fdf114 3533 }\r
f7496d71 3534\r
79b74a03
LG
3535 //\r
3536 // If ForceRebase Flag specified to FALSE, will always not take rebase action.\r
3537 //\r
3538 if (FvInfo->ForceRebase == 0) {\r
3539 return EFI_SUCCESS;\r
3540 }\r
3541\r
3542\r
52302d4d 3543 XipBase = FvInfo->BaseAddress + XipOffset;\r
30fdf114
LG
3544\r
3545 //\r
3546 // We only process files potentially containing PE32 sections.\r
3547 //\r
3548 switch (FfsFile->Type) {\r
3549 case EFI_FV_FILETYPE_SECURITY_CORE:\r
3550 case EFI_FV_FILETYPE_PEI_CORE:\r
3551 case EFI_FV_FILETYPE_PEIM:\r
3552 case EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER:\r
3553 case EFI_FV_FILETYPE_DRIVER:\r
3554 case EFI_FV_FILETYPE_DXE_CORE:\r
3555 break;\r
52302d4d
LG
3556 case EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE:\r
3557 //\r
3558 // Rebase the inside FvImage.\r
3559 //\r
3560 GetChildFvFromFfs (FvInfo, FfsFile, XipOffset);\r
3561\r
3562 //\r
3563 // Search PE/TE section in FV sectin.\r
3564 //\r
3565 break;\r
30fdf114
LG
3566 default:\r
3567 return EFI_SUCCESS;\r
3568 }\r
e8a47801
LG
3569\r
3570 FfsHeaderSize = GetFfsHeaderLength(FfsFile);\r
30fdf114
LG
3571 //\r
3572 // Rebase each PE32 section\r
3573 //\r
3574 Status = EFI_SUCCESS;\r
3575 for (Index = 1;; Index++) {\r
3576 //\r
3577 // Init Value\r
3578 //\r
3579 NewPe32BaseAddress = 0;\r
f7496d71 3580\r
30fdf114
LG
3581 //\r
3582 // Find Pe Image\r
3583 //\r
3584 Status = GetSectionByType (FfsFile, EFI_SECTION_PE32, Index, &CurrentPe32Section);\r
3585 if (EFI_ERROR (Status)) {\r
3586 break;\r
3587 }\r
e8a47801 3588 CurSecHdrSize = GetSectionHeaderLength(CurrentPe32Section.CommonHeader);\r
30fdf114
LG
3589\r
3590 //\r
3591 // Initialize context\r
3592 //\r
3593 memset (&ImageContext, 0, sizeof (ImageContext));\r
e8a47801 3594 ImageContext.Handle = (VOID *) ((UINTN) CurrentPe32Section.Pe32Section + CurSecHdrSize);\r
30fdf114
LG
3595 ImageContext.ImageRead = (PE_COFF_LOADER_READ_FILE) FfsRebaseImageRead;\r
3596 Status = PeCoffLoaderGetImageInfo (&ImageContext);\r
3597 if (EFI_ERROR (Status)) {\r
fd171542 3598 Error (NULL, 0, 3000, "Invalid PeImage", "The input file is %s and the return status is %x", FileName, (int) Status);\r
30fdf114
LG
3599 return Status;\r
3600 }\r
3601\r
4afd3d04
LG
3602 if ( (ImageContext.Machine == EFI_IMAGE_MACHINE_ARMT) ||\r
3603 (ImageContext.Machine == EFI_IMAGE_MACHINE_AARCH64) ) {\r
30fdf114
LG
3604 mArm = TRUE;\r
3605 }\r
3606\r
ad1db975
AC
3607 if (ImageContext.Machine == EFI_IMAGE_MACHINE_RISCV64) {\r
3608 mRiscV = TRUE;\r
3609 }\r
3610\r
30fdf114
LG
3611 //\r
3612 // Keep Image Context for PE image in FV\r
3613 //\r
3614 memcpy (&OrigImageContext, &ImageContext, sizeof (ImageContext));\r
f7496d71 3615\r
30fdf114
LG
3616 //\r
3617 // Get File PdbPointer\r
3618 //\r
3619 PdbPointer = PeCoffLoaderGetPdbPointer (ImageContext.Handle);\r
3620\r
3621 //\r
3622 // Get PeHeader pointer\r
3623 //\r
e8a47801 3624 ImgHdr = (EFI_IMAGE_OPTIONAL_HEADER_UNION *)((UINTN) CurrentPe32Section.Pe32Section + CurSecHdrSize + ImageContext.PeCoffHeaderOffset);\r
30fdf114
LG
3625\r
3626 //\r
3627 // Calculate the PE32 base address, based on file type\r
3628 //\r
3629 switch (FfsFile->Type) {\r
3630 case EFI_FV_FILETYPE_SECURITY_CORE:\r
3631 case EFI_FV_FILETYPE_PEI_CORE:\r
3632 case EFI_FV_FILETYPE_PEIM:\r
3633 case EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER:\r
30fdf114
LG
3634 //\r
3635 // Check if section-alignment and file-alignment match or not\r
3636 //\r
3637 if ((ImgHdr->Pe32.OptionalHeader.SectionAlignment != ImgHdr->Pe32.OptionalHeader.FileAlignment)) {\r
3638 //\r
3639 // Xip module has the same section alignment and file alignment.\r
3640 //\r
3c3277f2 3641 Error (NULL, 0, 3000, "Invalid", "PE image Section-Alignment and File-Alignment do not match : %s.", FileName);\r
30fdf114
LG
3642 return EFI_ABORTED;\r
3643 }\r
3644 //\r
f7496d71 3645 // PeImage has no reloc section. It will try to get reloc data from the original EFI image.\r
30fdf114
LG
3646 //\r
3647 if (ImageContext.RelocationsStripped) {\r
3648 //\r
f7496d71 3649 // Construct the original efi file Name\r
30fdf114 3650 //\r
fc42d0e8
HW
3651 if (strlen (FileName) >= MAX_LONG_FILE_PATH) {\r
3652 Error (NULL, 0, 2000, "Invalid", "The file name %s is too long.", FileName);\r
3653 return EFI_ABORTED;\r
3654 }\r
3655 strncpy (PeFileName, FileName, MAX_LONG_FILE_PATH - 1);\r
3656 PeFileName[MAX_LONG_FILE_PATH - 1] = 0;\r
30fdf114
LG
3657 Cptr = PeFileName + strlen (PeFileName);\r
3658 while (*Cptr != '.') {\r
3659 Cptr --;\r
3660 }\r
3661 if (*Cptr != '.') {\r
3662 Error (NULL, 0, 3000, "Invalid", "The file %s has no .reloc section.", FileName);\r
3663 return EFI_ABORTED;\r
3664 } else {\r
3665 *(Cptr + 1) = 'e';\r
3666 *(Cptr + 2) = 'f';\r
3667 *(Cptr + 3) = 'i';\r
3668 *(Cptr + 4) = '\0';\r
3669 }\r
1be2ed90 3670 PeFile = fopen (LongFilePath (PeFileName), "rb");\r
30fdf114
LG
3671 if (PeFile == NULL) {\r
3672 Warning (NULL, 0, 0, "Invalid", "The file %s has no .reloc section.", FileName);\r
3673 //Error (NULL, 0, 3000, "Invalid", "The file %s has no .reloc section.", FileName);\r
3674 //return EFI_ABORTED;\r
3675 break;\r
3676 }\r
3677 //\r
3678 // Get the file size\r
3679 //\r
3680 PeFileSize = _filelength (fileno (PeFile));\r
3681 PeFileBuffer = (UINT8 *) malloc (PeFileSize);\r
3682 if (PeFileBuffer == NULL) {\r
320ba37a 3683 fclose (PeFile);\r
30fdf114
LG
3684 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated on rebase of %s", FileName);\r
3685 return EFI_OUT_OF_RESOURCES;\r
3686 }\r
3687 //\r
3688 // Read Pe File\r
3689 //\r
3690 fread (PeFileBuffer, sizeof (UINT8), PeFileSize, PeFile);\r
3691 //\r
3692 // close file\r
3693 //\r
3694 fclose (PeFile);\r
3695 //\r
3696 // Handle pointer to the original efi image.\r
3697 //\r
3698 ImageContext.Handle = PeFileBuffer;\r
3699 Status = PeCoffLoaderGetImageInfo (&ImageContext);\r
3700 if (EFI_ERROR (Status)) {\r
fd171542 3701 Error (NULL, 0, 3000, "Invalid PeImage", "The input file is %s and the return status is %x", FileName, (int) Status);\r
30fdf114
LG
3702 return Status;\r
3703 }\r
3704 ImageContext.RelocationsStripped = FALSE;\r
3705 }\r
3706\r
e8a47801 3707 NewPe32BaseAddress = XipBase + (UINTN) CurrentPe32Section.Pe32Section + CurSecHdrSize - (UINTN)FfsFile;\r
30fdf114
LG
3708 break;\r
3709\r
3710 case EFI_FV_FILETYPE_DRIVER:\r
3711 case EFI_FV_FILETYPE_DXE_CORE:\r
52302d4d
LG
3712 //\r
3713 // Check if section-alignment and file-alignment match or not\r
3714 //\r
3715 if ((ImgHdr->Pe32.OptionalHeader.SectionAlignment != ImgHdr->Pe32.OptionalHeader.FileAlignment)) {\r
3716 //\r
3717 // Xip module has the same section alignment and file alignment.\r
3718 //\r
3c3277f2 3719 Error (NULL, 0, 3000, "Invalid", "PE image Section-Alignment and File-Alignment do not match : %s.", FileName);\r
52302d4d 3720 return EFI_ABORTED;\r
30fdf114 3721 }\r
e8a47801 3722 NewPe32BaseAddress = XipBase + (UINTN) CurrentPe32Section.Pe32Section + CurSecHdrSize - (UINTN)FfsFile;\r
30fdf114
LG
3723 break;\r
3724\r
3725 default:\r
3726 //\r
3727 // Not supported file type\r
3728 //\r
3729 return EFI_SUCCESS;\r
3730 }\r
f7496d71 3731\r
30fdf114 3732 //\r
52302d4d 3733 // Relocation doesn't exist\r
30fdf114 3734 //\r
52302d4d
LG
3735 if (ImageContext.RelocationsStripped) {\r
3736 Warning (NULL, 0, 0, "Invalid", "The file %s has no .reloc section.", FileName);\r
3737 continue;\r
3738 }\r
30fdf114 3739\r
52302d4d
LG
3740 //\r
3741 // Relocation exist and rebase\r
3742 //\r
3743 //\r
3744 // Load and Relocate Image Data\r
3745 //\r
3746 MemoryImagePointer = (UINT8 *) malloc ((UINTN) ImageContext.ImageSize + ImageContext.SectionAlignment);\r
3747 if (MemoryImagePointer == NULL) {\r
3748 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated on rebase of %s", FileName);\r
3749 return EFI_OUT_OF_RESOURCES;\r
3750 }\r
3751 memset ((VOID *) MemoryImagePointer, 0, (UINTN) ImageContext.ImageSize + ImageContext.SectionAlignment);\r
b36d134f 3752 ImageContext.ImageAddress = ((UINTN) MemoryImagePointer + ImageContext.SectionAlignment - 1) & (~((UINTN) ImageContext.SectionAlignment - 1));\r
f7496d71 3753\r
52302d4d
LG
3754 Status = PeCoffLoaderLoadImage (&ImageContext);\r
3755 if (EFI_ERROR (Status)) {\r
3756 Error (NULL, 0, 3000, "Invalid", "LocateImage() call failed on rebase of %s", FileName);\r
30fdf114 3757 free ((VOID *) MemoryImagePointer);\r
52302d4d
LG
3758 return Status;\r
3759 }\r
f7496d71 3760\r
52302d4d
LG
3761 ImageContext.DestinationAddress = NewPe32BaseAddress;\r
3762 Status = PeCoffLoaderRelocateImage (&ImageContext);\r
3763 if (EFI_ERROR (Status)) {\r
ad1db975 3764 Error (NULL, 0, 3000, "Invalid", "RelocateImage() call failed on rebase of %s Status=%d", FileName, Status);\r
52302d4d
LG
3765 free ((VOID *) MemoryImagePointer);\r
3766 return Status;\r
3767 }\r
3768\r
3769 //\r
3770 // Copy Relocated data to raw image file.\r
3771 //\r
3772 SectionHeader = (EFI_IMAGE_SECTION_HEADER *) (\r
3773 (UINTN) ImgHdr +\r
f7496d71
LG
3774 sizeof (UINT32) +\r
3775 sizeof (EFI_IMAGE_FILE_HEADER) +\r
52302d4d
LG
3776 ImgHdr->Pe32.FileHeader.SizeOfOptionalHeader\r
3777 );\r
f7496d71 3778\r
52302d4d
LG
3779 for (Index = 0; Index < ImgHdr->Pe32.FileHeader.NumberOfSections; Index ++, SectionHeader ++) {\r
3780 CopyMem (\r
f7496d71
LG
3781 (UINT8 *) CurrentPe32Section.Pe32Section + CurSecHdrSize + SectionHeader->PointerToRawData,\r
3782 (VOID*) (UINTN) (ImageContext.ImageAddress + SectionHeader->VirtualAddress),\r
52302d4d
LG
3783 SectionHeader->SizeOfRawData\r
3784 );\r
3785 }\r
3786\r
3787 free ((VOID *) MemoryImagePointer);\r
3788 MemoryImagePointer = NULL;\r
3789 if (PeFileBuffer != NULL) {\r
3790 free (PeFileBuffer);\r
3791 PeFileBuffer = NULL;\r
30fdf114 3792 }\r
f7496d71 3793\r
30fdf114
LG
3794 //\r
3795 // Update Image Base Address\r
3796 //\r
3797 if (ImgHdr->Pe32.OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {\r
52302d4d 3798 ImgHdr->Pe32.OptionalHeader.ImageBase = (UINT32) NewPe32BaseAddress;\r
30fdf114 3799 } else if (ImgHdr->Pe32Plus.OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR64_MAGIC) {\r
52302d4d 3800 ImgHdr->Pe32Plus.OptionalHeader.ImageBase = NewPe32BaseAddress;\r
30fdf114
LG
3801 } else {\r
3802 Error (NULL, 0, 3000, "Invalid", "unknown PE magic signature %X in PE32 image %s",\r
fd171542 3803 ImgHdr->Pe32.OptionalHeader.Magic,\r
30fdf114
LG
3804 FileName\r
3805 );\r
3806 return EFI_ABORTED;\r
3807 }\r
3808\r
30fdf114
LG
3809 //\r
3810 // Now update file checksum\r
3811 //\r
3812 if (FfsFile->Attributes & FFS_ATTRIB_CHECKSUM) {\r
3813 SavedState = FfsFile->State;\r
3814 FfsFile->IntegrityCheck.Checksum.File = 0;\r
3815 FfsFile->State = 0;\r
b303ea72 3816 FfsFile->IntegrityCheck.Checksum.File = CalculateChecksum8 (\r
e8a47801
LG
3817 (UINT8 *) ((UINT8 *)FfsFile + FfsHeaderSize),\r
3818 GetFfsFileLength (FfsFile) - FfsHeaderSize\r
b303ea72 3819 );\r
30fdf114
LG
3820 FfsFile->State = SavedState;\r
3821 }\r
3822\r
3823 //\r
3824 // Get this module function address from ModulePeMapFile and add them into FvMap file\r
3825 //\r
52302d4d 3826\r
30fdf114
LG
3827 //\r
3828 // Default use FileName as map file path\r
3829 //\r
3830 if (PdbPointer == NULL) {\r
3831 PdbPointer = FileName;\r
3832 }\r
3833\r
79714906 3834 WriteMapFile (FvMapFile, PdbPointer, FfsFile, NewPe32BaseAddress, &OrigImageContext);\r
30fdf114
LG
3835 }\r
3836\r
3837 if (FfsFile->Type != EFI_FV_FILETYPE_SECURITY_CORE &&\r
3838 FfsFile->Type != EFI_FV_FILETYPE_PEI_CORE &&\r
3839 FfsFile->Type != EFI_FV_FILETYPE_PEIM &&\r
52302d4d
LG
3840 FfsFile->Type != EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER &&\r
3841 FfsFile->Type != EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE\r
30fdf114
LG
3842 ) {\r
3843 //\r
3844 // Only Peim code may have a TE section\r
3845 //\r
3846 return EFI_SUCCESS;\r
3847 }\r
f7496d71 3848\r
30fdf114
LG
3849 //\r
3850 // Now process TE sections\r
3851 //\r
3852 for (Index = 1;; Index++) {\r
3853 NewPe32BaseAddress = 0;\r
f7496d71 3854\r
30fdf114
LG
3855 //\r
3856 // Find Te Image\r
3857 //\r
3858 Status = GetSectionByType (FfsFile, EFI_SECTION_TE, Index, &CurrentPe32Section);\r
3859 if (EFI_ERROR (Status)) {\r
3860 break;\r
3861 }\r
e8a47801
LG
3862\r
3863 CurSecHdrSize = GetSectionHeaderLength(CurrentPe32Section.CommonHeader);\r
f7496d71 3864\r
30fdf114
LG
3865 //\r
3866 // Calculate the TE base address, the FFS file base plus the offset of the TE section less the size stripped off\r
3867 // by GenTEImage\r
3868 //\r
e8a47801 3869 TEImageHeader = (EFI_TE_IMAGE_HEADER *) ((UINT8 *) CurrentPe32Section.Pe32Section + CurSecHdrSize);\r
30fdf114
LG
3870\r
3871 //\r
3872 // Initialize context, load image info.\r
3873 //\r
3874 memset (&ImageContext, 0, sizeof (ImageContext));\r
3875 ImageContext.Handle = (VOID *) TEImageHeader;\r
3876 ImageContext.ImageRead = (PE_COFF_LOADER_READ_FILE) FfsRebaseImageRead;\r
3877 Status = PeCoffLoaderGetImageInfo (&ImageContext);\r
3878 if (EFI_ERROR (Status)) {\r
fd171542 3879 Error (NULL, 0, 3000, "Invalid TeImage", "The input file is %s and the return status is %x", FileName, (int) Status);\r
30fdf114
LG
3880 return Status;\r
3881 }\r
3882\r
4afd3d04
LG
3883 if ( (ImageContext.Machine == EFI_IMAGE_MACHINE_ARMT) ||\r
3884 (ImageContext.Machine == EFI_IMAGE_MACHINE_AARCH64) ) {\r
30fdf114
LG
3885 mArm = TRUE;\r
3886 }\r
3887\r
3888 //\r
3889 // Keep Image Context for TE image in FV\r
3890 //\r
3891 memcpy (&OrigImageContext, &ImageContext, sizeof (ImageContext));\r
3892\r
3893 //\r
3894 // Get File PdbPointer\r
3895 //\r
3896 PdbPointer = PeCoffLoaderGetPdbPointer (ImageContext.Handle);\r
30fdf114
LG
3897\r
3898 //\r
3899 // Set new rebased address.\r
3900 //\r
3901 NewPe32BaseAddress = XipBase + (UINTN) TEImageHeader + sizeof (EFI_TE_IMAGE_HEADER) \\r
3902 - TEImageHeader->StrippedSize - (UINTN) FfsFile;\r
3903\r
3904 //\r
3905 // if reloc is stripped, try to get the original efi image to get reloc info.\r
3906 //\r
52302d4d 3907 if (ImageContext.RelocationsStripped) {\r
30fdf114 3908 //\r
f7496d71 3909 // Construct the original efi file name\r
30fdf114 3910 //\r
fc42d0e8
HW
3911 if (strlen (FileName) >= MAX_LONG_FILE_PATH) {\r
3912 Error (NULL, 0, 2000, "Invalid", "The file name %s is too long.", FileName);\r
3913 return EFI_ABORTED;\r
3914 }\r
3915 strncpy (PeFileName, FileName, MAX_LONG_FILE_PATH - 1);\r
3916 PeFileName[MAX_LONG_FILE_PATH - 1] = 0;\r
30fdf114
LG
3917 Cptr = PeFileName + strlen (PeFileName);\r
3918 while (*Cptr != '.') {\r
3919 Cptr --;\r
3920 }\r
3921\r
3922 if (*Cptr != '.') {\r
3923 Error (NULL, 0, 3000, "Invalid", "The file %s has no .reloc section.", FileName);\r
3924 return EFI_ABORTED;\r
3925 } else {\r
3926 *(Cptr + 1) = 'e';\r
3927 *(Cptr + 2) = 'f';\r
3928 *(Cptr + 3) = 'i';\r
3929 *(Cptr + 4) = '\0';\r
3930 }\r
3931\r
1be2ed90 3932 PeFile = fopen (LongFilePath (PeFileName), "rb");\r
30fdf114
LG
3933 if (PeFile == NULL) {\r
3934 Warning (NULL, 0, 0, "Invalid", "The file %s has no .reloc section.", FileName);\r
3935 //Error (NULL, 0, 3000, "Invalid", "The file %s has no .reloc section.", FileName);\r
3936 //return EFI_ABORTED;\r
3937 } else {\r
3938 //\r
3939 // Get the file size\r
3940 //\r
3941 PeFileSize = _filelength (fileno (PeFile));\r
3942 PeFileBuffer = (UINT8 *) malloc (PeFileSize);\r
3943 if (PeFileBuffer == NULL) {\r
320ba37a 3944 fclose (PeFile);\r
30fdf114
LG
3945 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated on rebase of %s", FileName);\r
3946 return EFI_OUT_OF_RESOURCES;\r
3947 }\r
3948 //\r
3949 // Read Pe File\r
3950 //\r
3951 fread (PeFileBuffer, sizeof (UINT8), PeFileSize, PeFile);\r
3952 //\r
3953 // close file\r
3954 //\r
3955 fclose (PeFile);\r
3956 //\r
3957 // Append reloc section into TeImage\r
3958 //\r
3959 ImageContext.Handle = PeFileBuffer;\r
3960 Status = PeCoffLoaderGetImageInfo (&ImageContext);\r
3961 if (EFI_ERROR (Status)) {\r
fd171542 3962 Error (NULL, 0, 3000, "Invalid TeImage", "The input file is %s and the return status is %x", FileName, (int) Status);\r
30fdf114
LG
3963 return Status;\r
3964 }\r
3965 ImageContext.RelocationsStripped = FALSE;\r
3966 }\r
3967 }\r
52302d4d
LG
3968 //\r
3969 // Relocation doesn't exist\r
3970 //\r
3971 if (ImageContext.RelocationsStripped) {\r
3972 Warning (NULL, 0, 0, "Invalid", "The file %s has no .reloc section.", FileName);\r
3973 continue;\r
3974 }\r
30fdf114
LG
3975\r
3976 //\r
3977 // Relocation exist and rebase\r
3978 //\r
52302d4d
LG
3979 //\r
3980 // Load and Relocate Image Data\r
3981 //\r
3982 MemoryImagePointer = (UINT8 *) malloc ((UINTN) ImageContext.ImageSize + ImageContext.SectionAlignment);\r
3983 if (MemoryImagePointer == NULL) {\r
3984 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated on rebase of %s", FileName);\r
3985 return EFI_OUT_OF_RESOURCES;\r
3986 }\r
3987 memset ((VOID *) MemoryImagePointer, 0, (UINTN) ImageContext.ImageSize + ImageContext.SectionAlignment);\r
b36d134f 3988 ImageContext.ImageAddress = ((UINTN) MemoryImagePointer + ImageContext.SectionAlignment - 1) & (~((UINTN) ImageContext.SectionAlignment - 1));\r
52302d4d
LG
3989\r
3990 Status = PeCoffLoaderLoadImage (&ImageContext);\r
3991 if (EFI_ERROR (Status)) {\r
3992 Error (NULL, 0, 3000, "Invalid", "LocateImage() call failed on rebase of %s", FileName);\r
30fdf114 3993 free ((VOID *) MemoryImagePointer);\r
52302d4d
LG
3994 return Status;\r
3995 }\r
3996 //\r
3997 // Reloacate TeImage\r
f7496d71 3998 //\r
52302d4d
LG
3999 ImageContext.DestinationAddress = NewPe32BaseAddress;\r
4000 Status = PeCoffLoaderRelocateImage (&ImageContext);\r
4001 if (EFI_ERROR (Status)) {\r
4002 Error (NULL, 0, 3000, "Invalid", "RelocateImage() call failed on rebase of TE image %s", FileName);\r
4003 free ((VOID *) MemoryImagePointer);\r
4004 return Status;\r
4005 }\r
f7496d71 4006\r
52302d4d
LG
4007 //\r
4008 // Copy the relocated image into raw image file.\r
4009 //\r
4010 SectionHeader = (EFI_IMAGE_SECTION_HEADER *) (TEImageHeader + 1);\r
4011 for (Index = 0; Index < TEImageHeader->NumberOfSections; Index ++, SectionHeader ++) {\r
4012 if (!ImageContext.IsTeImage) {\r
4013 CopyMem (\r
f7496d71
LG
4014 (UINT8 *) TEImageHeader + sizeof (EFI_TE_IMAGE_HEADER) - TEImageHeader->StrippedSize + SectionHeader->PointerToRawData,\r
4015 (VOID*) (UINTN) (ImageContext.ImageAddress + SectionHeader->VirtualAddress),\r
52302d4d
LG
4016 SectionHeader->SizeOfRawData\r
4017 );\r
4018 } else {\r
4019 CopyMem (\r
f7496d71
LG
4020 (UINT8 *) TEImageHeader + sizeof (EFI_TE_IMAGE_HEADER) - TEImageHeader->StrippedSize + SectionHeader->PointerToRawData,\r
4021 (VOID*) (UINTN) (ImageContext.ImageAddress + sizeof (EFI_TE_IMAGE_HEADER) - TEImageHeader->StrippedSize + SectionHeader->VirtualAddress),\r
52302d4d
LG
4022 SectionHeader->SizeOfRawData\r
4023 );\r
30fdf114
LG
4024 }\r
4025 }\r
f7496d71 4026\r
52302d4d
LG
4027 //\r
4028 // Free the allocated memory resource\r
4029 //\r
4030 free ((VOID *) MemoryImagePointer);\r
4031 MemoryImagePointer = NULL;\r
4032 if (PeFileBuffer != NULL) {\r
4033 free (PeFileBuffer);\r
4034 PeFileBuffer = NULL;\r
4035 }\r
f7496d71 4036\r
30fdf114
LG
4037 //\r
4038 // Update Image Base Address\r
4039 //\r
4040 TEImageHeader->ImageBase = NewPe32BaseAddress;\r
4041\r
4042 //\r
4043 // Now update file checksum\r
4044 //\r
4045 if (FfsFile->Attributes & FFS_ATTRIB_CHECKSUM) {\r
4046 SavedState = FfsFile->State;\r
4047 FfsFile->IntegrityCheck.Checksum.File = 0;\r
4048 FfsFile->State = 0;\r
b303ea72 4049 FfsFile->IntegrityCheck.Checksum.File = CalculateChecksum8 (\r
e8a47801
LG
4050 (UINT8 *)((UINT8 *)FfsFile + FfsHeaderSize),\r
4051 GetFfsFileLength (FfsFile) - FfsHeaderSize\r
b303ea72 4052 );\r
30fdf114
LG
4053 FfsFile->State = SavedState;\r
4054 }\r
4055 //\r
4056 // Get this module function address from ModulePeMapFile and add them into FvMap file\r
4057 //\r
52302d4d 4058\r
30fdf114
LG
4059 //\r
4060 // Default use FileName as map file path\r
4061 //\r
4062 if (PdbPointer == NULL) {\r
4063 PdbPointer = FileName;\r
4064 }\r
4065\r
4066 WriteMapFile (\r
f7496d71
LG
4067 FvMapFile,\r
4068 PdbPointer,\r
79714906 4069 FfsFile,\r
f7496d71 4070 NewPe32BaseAddress,\r
30fdf114
LG
4071 &OrigImageContext\r
4072 );\r
4073 }\r
f7496d71 4074\r
30fdf114
LG
4075 return EFI_SUCCESS;\r
4076}\r
4077\r
4078EFI_STATUS\r
4079FindApResetVectorPosition (\r
4080 IN MEMORY_FILE *FvImage,\r
4081 OUT UINT8 **Pointer\r
4082 )\r
4083/*++\r
4084\r
4085Routine Description:\r
4086\r
4087 Find the position in this FvImage to place Ap reset vector.\r
4088\r
4089Arguments:\r
4090\r
4091 FvImage Memory file for the FV memory image.\r
4092 Pointer Pointer to pointer to position.\r
4093\r
4094Returns:\r
4095\r
4096 EFI_NOT_FOUND - No satisfied position is found.\r
4097 EFI_SUCCESS - The suitable position is return.\r
4098\r
4099--*/\r
4100{\r
4101 EFI_FFS_FILE_HEADER *PadFile;\r
4102 UINT32 Index;\r
4103 EFI_STATUS Status;\r
4104 UINT8 *FixPoint;\r
4105 UINT32 FileLength;\r
4106\r
4107 for (Index = 1; ;Index ++) {\r
4108 //\r
4109 // Find Pad File to add ApResetVector info\r
4110 //\r
4111 Status = GetFileByType (EFI_FV_FILETYPE_FFS_PAD, Index, &PadFile);\r
4112 if (EFI_ERROR (Status) || (PadFile == NULL)) {\r
4113 //\r
4114 // No Pad file to be found.\r
4115 //\r
4116 break;\r
4117 }\r
4118 //\r
4119 // Get Pad file size.\r
4120 //\r
e8a47801 4121 FileLength = GetFfsFileLength(PadFile);\r
f7496d71 4122 FileLength = (FileLength + EFI_FFS_FILE_HEADER_ALIGNMENT - 1) & ~(EFI_FFS_FILE_HEADER_ALIGNMENT - 1);\r
30fdf114
LG
4123 //\r
4124 // FixPoint must be align on 0x1000 relative to FvImage Header\r
4125 //\r
e8a47801 4126 FixPoint = (UINT8*) PadFile + GetFfsHeaderLength(PadFile);\r
30fdf114
LG
4127 FixPoint = FixPoint + 0x1000 - (((UINTN) FixPoint - (UINTN) FvImage->FileImage) & 0xFFF);\r
4128 //\r
4129 // FixPoint be larger at the last place of one fv image.\r
4130 //\r
4131 while (((UINTN) FixPoint + SIZEOF_STARTUP_DATA_ARRAY - (UINTN) PadFile) <= FileLength) {\r
4132 FixPoint += 0x1000;\r
4133 }\r
4134 FixPoint -= 0x1000;\r
f7496d71 4135\r
e8a47801 4136 if ((UINTN) FixPoint < ((UINTN) PadFile + GetFfsHeaderLength(PadFile))) {\r
30fdf114
LG
4137 //\r
4138 // No alignment FixPoint in this Pad File.\r
4139 //\r
4140 continue;\r
4141 }\r
4142\r
f7496d71 4143 if ((UINTN) FvImage->Eof - (UINTN)FixPoint <= 0x20000) {\r
30fdf114
LG
4144 //\r
4145 // Find the position to place ApResetVector\r
4146 //\r
4147 *Pointer = FixPoint;\r
4148 return EFI_SUCCESS;\r
4149 }\r
4150 }\r
f7496d71 4151\r
30fdf114
LG
4152 return EFI_NOT_FOUND;\r
4153}\r
4154\r
4155EFI_STATUS\r
4156ParseCapInf (\r
4157 IN MEMORY_FILE *InfFile,\r
4158 OUT CAP_INFO *CapInfo\r
4159 )\r
4160/*++\r
4161\r
4162Routine Description:\r
4163\r
4164 This function parses a Cap.INF file and copies info into a CAP_INFO structure.\r
4165\r
4166Arguments:\r
4167\r
4168 InfFile Memory file image.\r
4169 CapInfo Information read from INF file.\r
4170\r
4171Returns:\r
4172\r
4173 EFI_SUCCESS INF file information successfully retrieved.\r
4174 EFI_ABORTED INF file has an invalid format.\r
4175 EFI_NOT_FOUND A required string was not found in the INF file.\r
4176--*/\r
4177{\r
1be2ed90 4178 CHAR8 Value[MAX_LONG_FILE_PATH];\r
30fdf114
LG
4179 UINT64 Value64;\r
4180 UINTN Index, Number;\r
4181 EFI_STATUS Status;\r
4182\r
4183 //\r
4184 // Initialize Cap info\r
4185 //\r
4186 // memset (CapInfo, 0, sizeof (CAP_INFO));\r
4187 //\r
4188\r
4189 //\r
4190 // Read the Capsule Guid\r
4191 //\r
4192 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_CAPSULE_GUID_STRING, 0, Value);\r
4193 if (Status == EFI_SUCCESS) {\r
4194 //\r
4195 // Get the Capsule Guid\r
4196 //\r
4197 Status = StringToGuid (Value, &CapInfo->CapGuid);\r
4198 if (EFI_ERROR (Status)) {\r
4199 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_CAPSULE_GUID_STRING, Value);\r
4200 return EFI_ABORTED;\r
4201 }\r
4202 DebugMsg (NULL, 0, 9, "Capsule Guid", "%s = %s", EFI_CAPSULE_GUID_STRING, Value);\r
4203 }\r
4204\r
4205 //\r
4206 // Read the Capsule Header Size\r
4207 //\r
4208 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_CAPSULE_HEADER_SIZE_STRING, 0, Value);\r
4209 if (Status == EFI_SUCCESS) {\r
4210 Status = AsciiStringToUint64 (Value, FALSE, &Value64);\r
4211 if (EFI_ERROR (Status)) {\r
4212 Error (NULL, 0, 2000, "Invalid parameter", "%s = %s", EFI_CAPSULE_HEADER_SIZE_STRING, Value);\r
4213 return EFI_ABORTED;\r
4214 }\r
4215 CapInfo->HeaderSize = (UINT32) Value64;\r
4216 DebugMsg (NULL, 0, 9, "Capsule Header size", "%s = %s", EFI_CAPSULE_HEADER_SIZE_STRING, Value);\r
4217 }\r
4218\r
4219 //\r
4220 // Read the Capsule Flag\r
4221 //\r
4222 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_CAPSULE_FLAGS_STRING, 0, Value);\r
4223 if (Status == EFI_SUCCESS) {\r
4224 if (strstr (Value, "PopulateSystemTable") != NULL) {\r
4225 CapInfo->Flags |= CAPSULE_FLAGS_PERSIST_ACROSS_RESET | CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE;\r
fd171542 4226 if (strstr (Value, "InitiateReset") != NULL) {\r
4227 CapInfo->Flags |= CAPSULE_FLAGS_INITIATE_RESET;\r
4228 }\r
30fdf114 4229 } else if (strstr (Value, "PersistAcrossReset") != NULL) {\r
f7496d71 4230 CapInfo->Flags |= CAPSULE_FLAGS_PERSIST_ACROSS_RESET;\r
fd171542 4231 if (strstr (Value, "InitiateReset") != NULL) {\r
4232 CapInfo->Flags |= CAPSULE_FLAGS_INITIATE_RESET;\r
4233 }\r
30fdf114
LG
4234 } else {\r
4235 Error (NULL, 0, 2000, "Invalid parameter", "invalid Flag setting for %s.", EFI_CAPSULE_FLAGS_STRING);\r
4236 return EFI_ABORTED;\r
4237 }\r
4238 DebugMsg (NULL, 0, 9, "Capsule Flag", Value);\r
4239 }\r
4240\r
e8a47801
LG
4241 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_OEM_CAPSULE_FLAGS_STRING, 0, Value);\r
4242 if (Status == EFI_SUCCESS) {\r
4243 Status = AsciiStringToUint64 (Value, FALSE, &Value64);\r
4244 if (EFI_ERROR (Status) || Value64 > 0xffff) {\r
4245 Error (NULL, 0, 2000, "Invalid parameter",\r
4246 "invalid Flag setting for %s. Must be integer value between 0x0000 and 0xffff.",\r
4247 EFI_OEM_CAPSULE_FLAGS_STRING);\r
4248 return EFI_ABORTED;\r
4249 }\r
4250 CapInfo->Flags |= Value64;\r
4251 DebugMsg (NULL, 0, 9, "Capsule Extend Flag", Value);\r
4252 }\r
4253\r
30fdf114
LG
4254 //\r
4255 // Read Capsule File name\r
4256 //\r
4257 Status = FindToken (InfFile, OPTIONS_SECTION_STRING, EFI_FILE_NAME_STRING, 0, Value);\r
4258 if (Status == EFI_SUCCESS) {\r
4259 //\r
4260 // Get output file name\r
4261 //\r
4262 strcpy (CapInfo->CapName, Value);\r
4263 }\r
4264\r
4265 //\r
4266 // Read the Capsule FileImage\r
4267 //\r
4268 Number = 0;\r
4269 for (Index = 0; Index < MAX_NUMBER_OF_FILES_IN_CAP; Index++) {\r
4270 if (CapInfo->CapFiles[Index][0] != '\0') {\r
4271 continue;\r
4272 }\r
4273 //\r
4274 // Read the capsule file name\r
4275 //\r
4276 Status = FindToken (InfFile, FILES_SECTION_STRING, EFI_FILE_NAME_STRING, Number++, Value);\r
4277\r
4278 if (Status == EFI_SUCCESS) {\r
4279 //\r
4280 // Add the file\r
4281 //\r
4282 strcpy (CapInfo->CapFiles[Index], Value);\r
f7496d71 4283 DebugMsg (NULL, 0, 9, "Capsule component file", "the %uth file name is %s", (unsigned) Index, CapInfo->CapFiles[Index]);\r
30fdf114
LG
4284 } else {\r
4285 break;\r
4286 }\r
4287 }\r
f7496d71 4288\r
30fdf114
LG
4289 if (Index == 0) {\r
4290 Warning (NULL, 0, 0, "Capsule components are not specified.", NULL);\r
4291 }\r
4292\r
4293 return EFI_SUCCESS;\r
4294}\r
4295\r
4296EFI_STATUS\r
4297GenerateCapImage (\r
4298 IN CHAR8 *InfFileImage,\r
4299 IN UINTN InfFileSize,\r
4300 IN CHAR8 *CapFileName\r
4301 )\r
4302/*++\r
4303\r
4304Routine Description:\r
4305\r
4306 This is the main function which will be called from application to create UEFI Capsule image.\r
4307\r
4308Arguments:\r
4309\r
4310 InfFileImage Buffer containing the INF file contents.\r
4311 InfFileSize Size of the contents of the InfFileImage buffer.\r
4312 CapFileName Requested name for the Cap file.\r
4313\r
4314Returns:\r
4315\r
4316 EFI_SUCCESS Function completed successfully.\r
4317 EFI_OUT_OF_RESOURCES Could not allocate required resources.\r
4318 EFI_ABORTED Error encountered.\r
4319 EFI_INVALID_PARAMETER A required parameter was NULL.\r
4320\r
4321--*/\r
4322{\r
4323 UINT32 CapSize;\r
4324 UINT8 *CapBuffer;\r
4325 EFI_CAPSULE_HEADER *CapsuleHeader;\r
4326 MEMORY_FILE InfMemoryFile;\r
4327 UINT32 FileSize;\r
4328 UINT32 Index;\r
4329 FILE *fpin, *fpout;\r
4330 EFI_STATUS Status;\r
f7496d71 4331\r
30fdf114
LG
4332 if (InfFileImage != NULL) {\r
4333 //\r
4334 // Initialize file structures\r
4335 //\r
4336 InfMemoryFile.FileImage = InfFileImage;\r
4337 InfMemoryFile.CurrentFilePointer = InfFileImage;\r
4338 InfMemoryFile.Eof = InfFileImage + InfFileSize;\r
f7496d71 4339\r
30fdf114
LG
4340 //\r
4341 // Parse the Cap inf file for header information\r
4342 //\r
4343 Status = ParseCapInf (&InfMemoryFile, &mCapDataInfo);\r
4344 if (Status != EFI_SUCCESS) {\r
4345 return Status;\r
4346 }\r
4347 }\r
f7496d71 4348\r
30fdf114
LG
4349 if (mCapDataInfo.HeaderSize == 0) {\r
4350 //\r
4351 // make header size align 16 bytes.\r
4352 //\r
4353 mCapDataInfo.HeaderSize = sizeof (EFI_CAPSULE_HEADER);\r
4354 mCapDataInfo.HeaderSize = (mCapDataInfo.HeaderSize + 0xF) & ~0xF;\r
4355 }\r
4356\r
4357 if (mCapDataInfo.HeaderSize < sizeof (EFI_CAPSULE_HEADER)) {\r
4358 Error (NULL, 0, 2000, "Invalid parameter", "The specified HeaderSize cannot be less than the size of EFI_CAPSULE_HEADER.");\r
4359 return EFI_INVALID_PARAMETER;\r
4360 }\r
f7496d71 4361\r
30fdf114
LG
4362 if (CapFileName == NULL && mCapDataInfo.CapName[0] != '\0') {\r
4363 CapFileName = mCapDataInfo.CapName;\r
4364 }\r
f7496d71 4365\r
30fdf114
LG
4366 if (CapFileName == NULL) {\r
4367 Error (NULL, 0, 2001, "Missing required argument", "Output Capsule file name");\r
4368 return EFI_INVALID_PARAMETER;\r
4369 }\r
f7496d71 4370\r
30fdf114
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4371 //\r
4372 // Set Default Capsule Guid value\r
4373 //\r
4374 if (CompareGuid (&mCapDataInfo.CapGuid, &mZeroGuid) == 0) {\r
4375 memcpy (&mCapDataInfo.CapGuid, &mDefaultCapsuleGuid, sizeof (EFI_GUID));\r
4376 }\r
4377 //\r
4378 // Calculate the size of capsule image.\r
4379 //\r
4380 Index = 0;\r
4381 FileSize = 0;\r
4382 CapSize = mCapDataInfo.HeaderSize;\r
4383 while (mCapDataInfo.CapFiles [Index][0] != '\0') {\r
1be2ed90 4384 fpin = fopen (LongFilePath (mCapDataInfo.CapFiles[Index]), "rb");\r
30fdf114
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4385 if (fpin == NULL) {\r
4386 Error (NULL, 0, 0001, "Error opening file", mCapDataInfo.CapFiles[Index]);\r
4387 return EFI_ABORTED;\r
4388 }\r
4389 FileSize = _filelength (fileno (fpin));\r
4390 CapSize += FileSize;\r
4391 fclose (fpin);\r
4392 Index ++;\r
4393 }\r
4394\r
4395 //\r
4396 // Allocate buffer for capsule image.\r
4397 //\r
4398 CapBuffer = (UINT8 *) malloc (CapSize);\r
4399 if (CapBuffer == NULL) {\r
4400 Error (NULL, 0, 4001, "Resource", "memory cannot be allocated for creating the capsule.");\r
4401 return EFI_OUT_OF_RESOURCES;\r
4402 }\r
4403\r
4404 //\r
4405 // Initialize the capsule header to zero\r
4406 //\r
4407 memset (CapBuffer, 0, mCapDataInfo.HeaderSize);\r
f7496d71 4408\r
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4409 //\r
4410 // create capsule header and get capsule body\r
4411 //\r
4412 CapsuleHeader = (EFI_CAPSULE_HEADER *) CapBuffer;\r
4413 memcpy (&CapsuleHeader->CapsuleGuid, &mCapDataInfo.CapGuid, sizeof (EFI_GUID));\r
4414 CapsuleHeader->HeaderSize = mCapDataInfo.HeaderSize;\r
4415 CapsuleHeader->Flags = mCapDataInfo.Flags;\r
4416 CapsuleHeader->CapsuleImageSize = CapSize;\r
4417\r
4418 Index = 0;\r
4419 FileSize = 0;\r
4420 CapSize = CapsuleHeader->HeaderSize;\r
4421 while (mCapDataInfo.CapFiles [Index][0] != '\0') {\r
1be2ed90 4422 fpin = fopen (LongFilePath (mCapDataInfo.CapFiles[Index]), "rb");\r
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4423 if (fpin == NULL) {\r
4424 Error (NULL, 0, 0001, "Error opening file", mCapDataInfo.CapFiles[Index]);\r
4425 free (CapBuffer);\r
4426 return EFI_ABORTED;\r
4427 }\r
4428 FileSize = _filelength (fileno (fpin));\r
4429 fread (CapBuffer + CapSize, 1, FileSize, fpin);\r
4430 fclose (fpin);\r
4431 Index ++;\r
4432 CapSize += FileSize;\r
4433 }\r
f7496d71 4434\r
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4435 //\r
4436 // write capsule data into the output file\r
4437 //\r
1be2ed90 4438 fpout = fopen (LongFilePath (CapFileName), "wb");\r
30fdf114
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4439 if (fpout == NULL) {\r
4440 Error (NULL, 0, 0001, "Error opening file", CapFileName);\r
4441 free (CapBuffer);\r
4442 return EFI_ABORTED;\r
4443 }\r
4444\r
4445 fwrite (CapBuffer, 1, CapSize, fpout);\r
4446 fclose (fpout);\r
6db97871 4447 free (CapBuffer);\r
f7496d71 4448\r
fd171542 4449 VerboseMsg ("The size of the generated capsule image is %u bytes", (unsigned) CapSize);\r
30fdf114
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4450\r
4451 return EFI_SUCCESS;\r
4452}\r