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1/** @file\r
2This file contains functions required to generate a boot strap file (BSF) also \r
3known as the Volume Top File (VTF)\r
30fdf114 4\r
1be2ed90 5Copyright (c) 1999 - 2014, Intel Corporation. All rights reserved.<BR>\r
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6This program and the accompanying materials are licensed and made available \r
7under the terms and conditions of the BSD License which accompanies this \r
8distribution. The full text of the license may be found at\r
9http://opensource.org/licenses/bsd-license.php\r
10\r
11THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
12WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
30fdf114 13\r
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14**/\r
15\r
16//\r
17//\r
18//\r
19#include <FvLib.h>\r
20#include <Common/UefiBaseTypes.h>\r
21#include "GenVtf.h"\r
22#include <Guid/PiFirmwareFileSystem.h>\r
23#include "CommonLib.h"\r
24#include "EfiUtilityMsgs.h"\r
25\r
26//\r
27// Global variables\r
28//\r
29UINTN SectionOptionFlag = 0;\r
30UINTN SectionCompFlag = 0;\r
31\r
32UINT64 DebugLevel;\r
33BOOLEAN DebugMode;\r
34\r
35BOOLEAN QuietMode = FALSE;\r
36\r
37BOOLEAN VTF_OUTPUT = FALSE;\r
38CHAR8 *OutFileName1;\r
39CHAR8 *OutFileName2;\r
40CHAR8 *SymFileName;\r
41\r
42CHAR8 **TokenStr;\r
43CHAR8 **OrgStrTokPtr;\r
44\r
45PARSED_VTF_INFO *FileListPtr;\r
46PARSED_VTF_INFO *FileListHeadPtr;\r
47\r
48VOID *Vtf1Buffer;\r
49VOID *Vtf1EndBuffer;\r
50VOID *Vtf2Buffer;\r
51VOID *Vtf2EndBuffer;\r
52\r
53UINTN ValidLineNum = 0;\r
54UINTN ValidFFDFileListNum = 0;\r
55\r
56//\r
57// Section Description and their number of occurences in *.INF file\r
58//\r
59UINTN NumFvFiles = 0;\r
60UINTN SectionOptionNum = 0;\r
61\r
62//\r
63// Global flag which will check for VTF Present, if yes then will be used\r
64// to decide about adding FFS header to pad data\r
65//\r
66BOOLEAN VTFPresent = FALSE;\r
67BOOLEAN SecondVTF = FALSE;\r
68\r
69//\r
70// Address related information\r
71//\r
72UINT64 Fv1BaseAddress = 0;\r
73UINT64 Fv2BaseAddress = 0;\r
74UINT64 Fv1EndAddress = 0;\r
75UINT64 Fv2EndAddress = 0;\r
76UINT32 Vtf1TotalSize = SIZE_TO_OFFSET_PAL_A_END;\r
77UINT64 Vtf1LastStartAddress = 0;\r
78UINT32 Vtf2TotalSize = 0;\r
79UINT64 Vtf2LastStartAddress = 0;\r
80\r
81UINT32 BufferToTop = 0;\r
82\r
83//\r
84// IA32 Reset Vector Bin name\r
85//\r
86CHAR8 IA32BinFile[FILE_NAME_SIZE];\r
87\r
88//\r
89// Function Implementations\r
90//\r
91EFI_STATUS\r
92ConvertVersionInfo (\r
93 IN CHAR8 *Str,\r
94 IN OUT UINT8 *MajorVer,\r
95 IN OUT UINT8 *MinorVer\r
96 )\r
97/*++\r
98Routine Description:\r
99\r
6780eef1 100 This function split version to major version and minor version\r
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101\r
102Arguments:\r
103\r
104 Str - String representing in form XX.XX\r
6780eef1
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105 MajorVer - The major version\r
106 MinorVer - The minor version\r
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107\r
108Returns:\r
109\r
6780eef1 110 EFI_SUCCESS - The function completed successfully.\r
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111\r
112--*/\r
113{\r
9fd2164e 114 CHAR8 TemStr[5] = "0000";\r
fd171542 115 unsigned Major;\r
116 unsigned Minor;\r
9fd2164e 117 UINTN Length;\r
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118\r
119 Major = 0;\r
120 Minor = 0;\r
30fdf114 121\r
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122 if (strstr (Str, ".") != NULL) {\r
123 sscanf (\r
124 Str,\r
125 "%02x.%02x",\r
126 &Major,\r
127 &Minor\r
128 );\r
129 } else {\r
130 Length = strlen(Str);\r
131 if (Length < 4) {\r
132 strncpy (TemStr + 4 - Length, Str, Length);\r
133 } else {\r
134 strncpy (TemStr, Str + Length - 4, 4);\r
135 }\r
136 \r
137 sscanf (\r
138 TemStr,\r
139 "%02x%02x",\r
140 &Major,\r
141 &Minor\r
142 );\r
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143 }\r
144\r
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145 *MajorVer = (UINT8) Major;\r
146 *MinorVer = (UINT8) Minor;\r
147 return EFI_SUCCESS;\r
148}\r
149\r
150VOID\r
151TrimLine (\r
152 IN CHAR8 *Line\r
153 )\r
154/*++\r
155Routine Description:\r
156\r
157 This function cleans up the line by removing all whitespace and\r
158 comments\r
159\r
160Arguments:\r
161\r
162 Line - The pointer of the string\r
163\r
164Returns:\r
165\r
166 None\r
167\r
168--*/\r
169{\r
170 CHAR8 TmpLine[FILE_NAME_SIZE];\r
171 CHAR8 Char;\r
172 CHAR8 *Ptr0;\r
173 UINTN Index;\r
174 UINTN Index2;\r
175\r
176 //\r
177 // Change '#' to '//' for Comment style\r
178 //\r
179 if (((Ptr0 = strchr (Line, '#')) != NULL) || ((Ptr0 = strstr (Line, "//")) != NULL)) {\r
180 Line[Ptr0 - Line] = 0;\r
181 }\r
182\r
183 //\r
184 // Initialize counters\r
185 //\r
186 Index = 0;\r
187 Index2 = 0;\r
188\r
189 while ((Char = Line[Index]) != 0) {\r
190 if ((Char != ' ') && (Char != '\t') && (Char != '\n') && (Char != '\r')) {\r
191 TmpLine[Index2++] = Char;\r
192 }\r
193 Index++;\r
194 }\r
195\r
196 TmpLine[Index2] = 0;\r
197 strcpy (Line, TmpLine);\r
198}\r
199\r
200VOID\r
201ValidLineCount (\r
202 IN FILE *Fp\r
203 )\r
204/*++\r
205\r
206Routine Description:\r
207\r
208 This function calculated number of valid lines in a input file.\r
209\r
210Arguments:\r
211\r
212 Fp - Pointer to a file handle which has been opened.\r
213\r
214Returns:\r
215\r
216 None\r
217\r
218--*/\r
219{\r
220 CHAR8 Buff[FILE_NAME_SIZE];\r
221 while (fgets(Buff, sizeof (Buff), Fp)) {\r
222 TrimLine (Buff);\r
223 if (Buff[0] == 0) {\r
224 continue;\r
225 }\r
226 ValidLineNum++;\r
227 }\r
228}\r
229\r
230EFI_STATUS\r
231ParseInputFile (\r
232 IN FILE *Fp\r
233 )\r
234/*++\r
235\r
236Routine Description:\r
237\r
238 This function parses the input file and tokenize the string\r
239\r
240Arguments:\r
241\r
242 Fp - Pointer to a file handle which has been opened.\r
243\r
244Returns:\r
245\r
246 None\r
247\r
248--*/\r
249{\r
250 CHAR8 *Token;\r
251 CHAR8 Buff[FILE_NAME_SIZE + 1];\r
252 CHAR8 Delimit[] = "=";\r
253\r
254 Buff [FILE_NAME_SIZE] = '\0';\r
255 Token = NULL;\r
256\r
257 while (fgets (Buff, FILE_NAME_SIZE, Fp) != NULL) {\r
258 TrimLine (Buff);\r
259 if (Buff[0] == 0) {\r
260 continue;\r
261 }\r
262 Token = strtok (Buff, Delimit);\r
263 while (Token != NULL) {\r
264 strcpy (*TokenStr, Token);\r
265 TokenStr ++;\r
266 Token = strtok (NULL, Delimit);\r
267 }\r
268 }\r
269 return EFI_SUCCESS;\r
270}\r
271\r
272EFI_STATUS\r
273InitializeComps (\r
274 VOID\r
275 )\r
276/*++\r
277\r
278Routine Description:\r
279\r
fd171542 280 This function initializes the relevant global variable which is being\r
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281 used to store the information retrieved from INF file. This also initializes\r
282 the VTF symbol file.\r
283\r
284Arguments:\r
285\r
286 None\r
287\r
288Returns:\r
289\r
290 EFI_SUCCESS - The function completed successfully\r
291 EFI_OUT_OF_RESOURCES - Malloc failed.\r
292\r
293--*/\r
294{\r
295\r
296 FileListPtr = malloc (sizeof (PARSED_VTF_INFO));\r
297\r
298 if (FileListPtr == NULL) {\r
299 return EFI_OUT_OF_RESOURCES;\r
300 }\r
301\r
302 FileListHeadPtr = FileListPtr;\r
303 memset (FileListPtr, 0, sizeof (PARSED_VTF_INFO));\r
304 FileListPtr->NextVtfInfo = NULL;\r
305\r
306 remove (SymFileName);\r
307 return EFI_SUCCESS;\r
308}\r
309\r
310VOID\r
311ParseAndUpdateComponents (\r
312 IN PARSED_VTF_INFO *VtfInfo\r
313 )\r
314/*++\r
315\r
316Routine Description:\r
317\r
fd171542 318 This function initializes the relevant global variable which is being\r
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319 used to store the information retrieved from INF file.\r
320\r
321Arguments:\r
322\r
323 VtfInfo - A pointer to the VTF Info Structure\r
324\r
325\r
326Returns:\r
327\r
328 None\r
329\r
330--*/\r
331{\r
332 UINT64 StringValue;\r
333\r
334 while (*TokenStr != NULL && (strnicmp (*TokenStr, "COMP_NAME", 9) != 0)) {\r
335\r
336 if (strnicmp (*TokenStr, "COMP_LOC", 8) == 0) {\r
337 TokenStr++;\r
338 if (strnicmp (*TokenStr, "F", 1) == 0) {\r
339 VtfInfo->LocationType = FIRST_VTF;\r
340 } else if (strnicmp (*TokenStr, "S", 1) == 0) {\r
341 VtfInfo->LocationType = SECOND_VTF;\r
342 } else {\r
343 VtfInfo->LocationType = NONE;\r
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344 }\r
345 } else if (strnicmp (*TokenStr, "COMP_TYPE", 9) == 0) {\r
346 TokenStr++;\r
347 if (AsciiStringToUint64 (*TokenStr, FALSE, &StringValue) != EFI_SUCCESS) {\r
fd171542 348 Error (NULL, 0, 5001, "Cannot get: \"0x%s\".", *TokenStr);\r
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349 return ;\r
350 }\r
351\r
352 VtfInfo->CompType = (UINT8) StringValue;\r
353 } else if (strnicmp (*TokenStr, "COMP_VER", 8) == 0) {\r
354 TokenStr++;\r
355 if (strnicmp (*TokenStr, "-", 1) == 0) {\r
356 VtfInfo->VersionPresent = FALSE;\r
357 VtfInfo->MajorVer = 0;\r
358 VtfInfo->MinorVer = 0;\r
359 } else {\r
360 VtfInfo->VersionPresent = TRUE;\r
361 ConvertVersionInfo (*TokenStr, &VtfInfo->MajorVer, &VtfInfo->MinorVer);\r
362 }\r
363 } else if (strnicmp (*TokenStr, "COMP_BIN", 8) == 0) {\r
364 TokenStr++;\r
365 strcpy (VtfInfo->CompBinName, *TokenStr);\r
366 } else if (strnicmp (*TokenStr, "COMP_SYM", 8) == 0) {\r
367 TokenStr++;\r
368 strcpy (VtfInfo->CompSymName, *TokenStr);\r
369 } else if (strnicmp (*TokenStr, "COMP_SIZE", 9) == 0) {\r
370 TokenStr++;\r
371 if (strnicmp (*TokenStr, "-", 1) == 0) {\r
372 VtfInfo->PreferredSize = FALSE;\r
373 VtfInfo->CompSize = 0;\r
374 } else {\r
375 VtfInfo->PreferredSize = TRUE;\r
376 if (AsciiStringToUint64 (*TokenStr, FALSE, &StringValue) != EFI_SUCCESS) {\r
377 Error (NULL, 0, 5001, "Parse error", "Cannot get: %s.", TokenStr);\r
378 return ;\r
379 }\r
380\r
381 VtfInfo->CompSize = (UINTN) StringValue;\r
382 }\r
383\r
384 } else if (strnicmp (*TokenStr, "COMP_CS", 7) == 0) {\r
385 TokenStr++;\r
386 if (strnicmp (*TokenStr, "1", 1) == 0) {\r
387 VtfInfo->CheckSumRequired = 1;\r
388 } else if (strnicmp (*TokenStr, "0", 1) == 0) {\r
389 VtfInfo->CheckSumRequired = 0;\r
390 } else {\r
391 Error (NULL, 0, 3000, "Invaild", "Bad value in INF file required field: Checksum, the value must be '0' or '1'.");\r
392 }\r
393 }\r
394\r
395 TokenStr++;\r
396 if (*TokenStr == NULL) {\r
397 break;\r
398 }\r
399 }\r
400}\r
401\r
402VOID\r
403InitializeInFileInfo (\r
404 VOID\r
405 )\r
406/*++\r
407\r
408Routine Description:\r
409\r
410 This function intializes the relevant global variable which is being\r
411 used to store the information retrieved from INF file.\r
412\r
413Arguments:\r
414\r
415 NONE\r
416\r
417Returns:\r
418\r
419 NONE\r
420\r
421--*/\r
422{\r
423\r
424 SectionOptionFlag = 0;\r
425 SectionCompFlag = 0;\r
426 TokenStr = OrgStrTokPtr;\r
427\r
428 while (*TokenStr != NULL) {\r
429 if (strnicmp (*TokenStr, "[OPTIONS]", 9) == 0) {\r
430 SectionOptionFlag = 1;\r
431 SectionCompFlag = 0;\r
432 }\r
433\r
434 if (strnicmp (*TokenStr, "[COMPONENTS]", 12) == 0) {\r
435 if (FileListPtr == NULL) {\r
436 FileListPtr = FileListHeadPtr;\r
437 }\r
438\r
439 SectionCompFlag = 1;\r
440 SectionOptionFlag = 0;\r
441 TokenStr++;\r
442 }\r
443\r
444 if (SectionOptionFlag) {\r
445 if (stricmp (*TokenStr, "IA32_RST_BIN") == 0) {\r
446 TokenStr++;\r
447 strcpy (IA32BinFile, *TokenStr);\r
448 }\r
449 }\r
450\r
451 if (SectionCompFlag) {\r
452 if (stricmp (*TokenStr, "COMP_NAME") == 0) {\r
453 TokenStr++;\r
454 strcpy (FileListPtr->CompName, *TokenStr);\r
455 TokenStr++;\r
456 ParseAndUpdateComponents (FileListPtr);\r
457 }\r
458\r
459 if (*TokenStr != NULL) {\r
460 FileListPtr->NextVtfInfo = malloc (sizeof (PARSED_VTF_INFO));\r
461 if (FileListPtr->NextVtfInfo == NULL) {\r
462 Error (NULL, 0, 4003, "Resource", "Out of memory resources.", NULL);\r
463 break;\r
464 }\r
465 FileListPtr = FileListPtr->NextVtfInfo;\r
466 memset (FileListPtr, 0, sizeof (PARSED_VTF_INFO));\r
467 FileListPtr->NextVtfInfo = NULL;\r
468 continue;\r
469 } else {\r
470 break;\r
471 }\r
472 }\r
473\r
474 TokenStr++;\r
475 }\r
476}\r
477\r
478EFI_STATUS\r
479GetVtfRelatedInfoFromInfFile (\r
480 IN FILE *FilePointer\r
481 )\r
482/*++\r
483\r
484Routine Description:\r
485\r
486 This function reads the input file, parse it and create a list of tokens\r
487 which is parsed and used, to intialize the data related to VTF\r
488\r
489Arguments:\r
490\r
491 FileName - FileName which needed to be read to parse data\r
492\r
493Returns:\r
494\r
495 EFI_ABORTED - Error in opening file\r
496 EFI_INVALID_PARAMETER - File doesn't contain any valid information\r
497 EFI_OUT_OF_RESOURCES - Malloc Failed\r
498 EFI_SUCCESS - The function completed successfully\r
499\r
500--*/\r
501{\r
502 FILE *Fp;\r
503 UINTN Index;\r
504 UINTN Index1;\r
505 EFI_STATUS Status;\r
506\r
507 Status = EFI_SUCCESS;\r
508 Fp = FilePointer;\r
509 if (Fp == NULL) {\r
510 Error (NULL, 0, 2000, "Invalid parameter", "BSF INF file is invalid!");\r
511 return EFI_ABORTED;\r
512 }\r
513\r
514 ValidLineCount (Fp);\r
515\r
516 if (ValidLineNum == 0) {\r
517 Error (NULL, 0, 2000, "Invalid parameter", "File does not contain any valid information!");\r
518 return EFI_INVALID_PARAMETER;\r
519 }\r
520\r
521 TokenStr = (CHAR8 **) malloc (sizeof (UINTN) * (2 * ValidLineNum + 1));\r
522\r
523 if (TokenStr == NULL) {\r
524 return EFI_OUT_OF_RESOURCES;\r
525 }\r
526\r
527 memset (TokenStr, 0, (sizeof (UINTN) * (2 * ValidLineNum + 1)));\r
528 OrgStrTokPtr = TokenStr;\r
529\r
530 for (Index = 0; Index < (2 * ValidLineNum); Index++) {\r
531 *TokenStr = (CHAR8*)malloc (sizeof (CHAR8) * FILE_NAME_SIZE);\r
532\r
533 if (*TokenStr == NULL) {\r
534 Status = EFI_OUT_OF_RESOURCES;\r
535 goto ParseFileError;\r
536 }\r
537\r
538 memset (*TokenStr, 0, FILE_NAME_SIZE);\r
539 TokenStr++;\r
540 }\r
541\r
542 TokenStr = OrgStrTokPtr;\r
543 fseek (Fp, 0L, SEEK_SET);\r
544\r
545 Status = InitializeComps ();\r
546\r
547 if (Status != EFI_SUCCESS) {\r
548 goto ParseFileError;\r
549 }\r
550\r
551 Status = ParseInputFile (Fp);\r
552 if (Status != EFI_SUCCESS) {\r
553 goto ParseFileError;\r
554 }\r
555\r
556 InitializeInFileInfo ();\r
557\r
558ParseFileError:\r
559\r
560 for (Index1 = 0; Index1 < Index; Index1 ++) {\r
561 free (OrgStrTokPtr[Index1]);\r
562 }\r
563\r
564 free (OrgStrTokPtr);\r
565\r
566 return Status;\r
567}\r
568\r
569VOID\r
570GetRelativeAddressInVtfBuffer (\r
571 IN UINT64 Address,\r
572 IN OUT UINTN *RelativeAddress,\r
573 IN LOC_TYPE LocType\r
574 )\r
575/*++\r
576\r
577Routine Description:\r
578\r
579 This function checks for the address alignmnet for specified data boundary. In\r
580 case the address is not aligned, it returns FALSE and the amount of data in\r
581 terms of byte needed to adjust to get the boundary alignmnet. If data is\r
582 aligned, TRUE will be returned.\r
583\r
584Arguments:\r
585\r
586 Address - The address of the flash map space\r
587 RelativeAddress - The relative address of the Buffer\r
588 LocType - The type of the VTF\r
589\r
590\r
591Returns:\r
592\r
593\r
594--*/\r
595{\r
596 UINT64 TempAddress;\r
597 UINT8 *LocalBuff;\r
598\r
599 if (LocType == FIRST_VTF) {\r
600 LocalBuff = (UINT8 *) Vtf1EndBuffer;\r
601 TempAddress = Fv1EndAddress - Address;\r
602 *RelativeAddress = (UINTN) LocalBuff - (UINTN) TempAddress;\r
603 } else {\r
604 LocalBuff = (UINT8 *) Vtf2EndBuffer;\r
605 TempAddress = Fv2EndAddress - Address;\r
606 *RelativeAddress = (UINTN) LocalBuff - (UINTN) TempAddress;\r
607 }\r
608}\r
609\r
610EFI_STATUS\r
611GetComponentVersionInfo (\r
612 IN OUT PARSED_VTF_INFO *VtfInfo,\r
613 IN UINT8 *Buffer\r
614 )\r
615/*++\r
616Routine Description:\r
617\r
618 This function will extract the version information from File\r
619\r
620Arguments:\r
621\r
622 VtfInfo - A Pointer to the VTF Info Structure\r
623 Buffer - A Pointer to type UINT8\r
624\r
625Returns:\r
626\r
627 EFI_SUCCESS - The function completed successfully\r
628 EFI_INVALID_PARAMETER - The parameter is invalid\r
629\r
630--*/\r
631{\r
632 UINT16 VersionInfo;\r
633 EFI_STATUS Status;\r
634\r
635 switch (VtfInfo->CompType) {\r
636\r
637 case COMP_TYPE_FIT_PAL_A:\r
638 case COMP_TYPE_FIT_PAL_B:\r
639 memcpy (&VersionInfo, (Buffer + 8), sizeof (UINT16));\r
640 VtfInfo->MajorVer = (UINT8) ((VersionInfo & 0xFF00) >> 8);\r
641 VtfInfo->MinorVer = (UINT8) (VersionInfo & 0x00FF);\r
642 Status = EFI_SUCCESS;\r
643 break;\r
644\r
645 default:\r
646 Status = EFI_INVALID_PARAMETER;\r
647 break;\r
648 }\r
649\r
650 return Status;\r
651}\r
652\r
653BOOLEAN\r
654CheckAddressAlignment (\r
655 IN UINT64 Address,\r
656 IN UINT64 AlignmentData,\r
657 IN OUT UINT64 *AlignAdjustByte\r
658 )\r
659/*++\r
660\r
661Routine Description:\r
662\r
663 This function checks for the address alignmnet for specified data boundary. In\r
664 case the address is not aligned, it returns FALSE and the amount of data in\r
665 terms of byte needed to adjust to get the boundary alignmnet. If data is\r
666 aligned, TRUE will be returned.\r
667\r
668Arguments:\r
669\r
670 Address - Pointer to buffer containing byte data of component.\r
671 AlignmentData - DataSize for which address needed to be aligned\r
672 AlignAdjustByte - Number of bytes needed to adjust alignment.\r
673\r
674Returns:\r
675\r
676 TRUE - Address is aligned to specific data size boundary\r
677 FALSE - Address in not aligned to specified data size boundary\r
678 - Add/Subtract AlignAdjustByte to aling the address.\r
679\r
680--*/\r
681{\r
682 //\r
683 // Check if the assigned address is on address boundary. If not, it will\r
684 // return the remaining byte required to adjust the address for specified\r
685 // address boundary\r
686 //\r
687 *AlignAdjustByte = (Address % AlignmentData);\r
688\r
689 if (*AlignAdjustByte == 0) {\r
690 return TRUE;\r
691 } else {\r
692 return FALSE;\r
693 }\r
694}\r
695\r
696EFI_STATUS\r
697GetFitTableStartAddress (\r
698 IN OUT FIT_TABLE **FitTable\r
699 )\r
700/*++\r
701\r
702Routine Description:\r
703\r
704 Get the FIT table start address in VTF Buffer\r
705\r
706Arguments:\r
707\r
708 FitTable - Pointer to available fit table where new component can be added\r
709\r
710Returns:\r
711\r
712 EFI_SUCCESS - The function completed successfully\r
713\r
714--*/\r
715{\r
716 UINT64 FitTableAdd;\r
717 UINT64 FitTableAddOffset;\r
718 UINTN RelativeAddress;\r
719\r
720 //\r
721 // Read the Fit Table address from Itanium-based address map.\r
722 //\r
723 FitTableAddOffset = Fv1EndAddress - (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT + SIZE_FIT_TABLE_ADD);\r
724\r
725 //\r
726 // Translate this Itanium-based address in terms of local buffer address which\r
727 // contains the image for Boot Strapped File. The relative address will be\r
728 // the address of fit table VTF buffer.\r
729 //\r
730 GetRelativeAddressInVtfBuffer (FitTableAddOffset, &RelativeAddress, FIRST_VTF);\r
731 FitTableAdd = *(UINTN *) RelativeAddress;\r
732\r
733 //\r
734 // The FitTableAdd is the extracted Itanium based address pointing to FIT\r
735 // table. The relative address will return its actual location in VTF\r
736 // Buffer.\r
737 //\r
738 GetRelativeAddressInVtfBuffer (FitTableAdd, &RelativeAddress, FIRST_VTF);\r
739\r
740 *FitTable = (FIT_TABLE *) RelativeAddress;\r
741\r
742 return EFI_SUCCESS;\r
743}\r
744\r
745EFI_STATUS\r
746GetNextAvailableFitPtr (\r
747 IN FIT_TABLE **FitPtr\r
748 )\r
749/*++\r
750\r
751Routine Description:\r
752\r
753 Get the FIT table address and locate the free space in fit where we can add\r
754 new component. In this process, this function locates the fit table using\r
755 Fit pointer in Itanium-based address map (as per Intel?Itanium(TM) SAL spec)\r
756 and locate the available location in FIT table to be used by new components.\r
757 If there are any Fit table which areg not being used contains ComponentType\r
758 field as 0x7F. If needed we can change this and spec this out.\r
759\r
760Arguments:\r
761\r
762 FitPtr - Pointer to available fit table where new component can be added\r
763\r
764Returns:\r
765\r
766 EFI_SUCCESS - The function completed successfully\r
767\r
768--*/\r
769{\r
770 FIT_TABLE *TmpFitPtr;\r
771 UINT64 FitTableAdd;\r
772 UINT64 FitTableAddOffset;\r
773 UINTN Index;\r
774 UINTN NumFitComponents;\r
775 UINTN RelativeAddress;\r
776\r
777 //\r
778 // Read the Fit Table address from Itanium-based address map.\r
779 //\r
780 FitTableAddOffset = Fv1EndAddress - (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT + SIZE_FIT_TABLE_ADD);\r
781\r
782 //\r
783 // Translate this Itanium-based address in terms of local buffer address which\r
784 // contains the image for Boot Strapped File. The relative address will be\r
785 // the address of fit table VTF buffer.\r
786 //\r
787 GetRelativeAddressInVtfBuffer (FitTableAddOffset, &RelativeAddress, FIRST_VTF);\r
788 FitTableAdd = *(UINTN *) RelativeAddress;\r
789\r
790 //\r
791 // The FitTableAdd is the extracted Itanium based address pointing to FIT\r
792 // table. The relative address will return its actual location in VTF\r
793 // Buffer.\r
794 //\r
795 GetRelativeAddressInVtfBuffer (FitTableAdd, &RelativeAddress, FIRST_VTF);\r
796\r
797 TmpFitPtr = (FIT_TABLE *) RelativeAddress;\r
798 NumFitComponents = TmpFitPtr->CompSize;\r
799\r
800 for (Index = 0; Index < NumFitComponents; Index++) {\r
801 if ((TmpFitPtr->CvAndType & FIT_TYPE_MASK) == COMP_TYPE_FIT_UNUSED) {\r
802 *FitPtr = TmpFitPtr;\r
803 break;\r
804 }\r
805\r
806 TmpFitPtr++;\r
807 }\r
808\r
809 return EFI_SUCCESS;\r
810}\r
811\r
812int\r
813CompareItems (\r
814 IN const VOID *Arg1,\r
815 IN const VOID *Arg2\r
816 )\r
817/*++\r
818\r
819Routine Description:\r
820\r
821 This function is used by qsort to sort the FIT table based upon Component\r
822 Type in their incresing order.\r
823\r
824Arguments:\r
825\r
826 Arg1 - Pointer to Arg1\r
827 Arg2 - Pointer to Arg2\r
828\r
829Returns:\r
830\r
831 None\r
832\r
833--*/\r
834{\r
835 if ((((FIT_TABLE *) Arg1)->CvAndType & FIT_TYPE_MASK) > (((FIT_TABLE *) Arg2)->CvAndType & FIT_TYPE_MASK)) {\r
836 return 1;\r
837 } else if ((((FIT_TABLE *) Arg1)->CvAndType & FIT_TYPE_MASK) < (((FIT_TABLE *) Arg2)->CvAndType & FIT_TYPE_MASK)) {\r
838 return -1;\r
839 } else {\r
840 return 0;\r
841 }\r
842}\r
843\r
844VOID\r
845SortFitTable (\r
846 IN VOID\r
847 )\r
848/*++\r
849\r
850Routine Description:\r
851\r
852 This function is used by qsort to sort the FIT table based upon Component\r
853 Type in their incresing order.\r
854\r
855Arguments:\r
856\r
857 VOID\r
858\r
859Returns:\r
860\r
861 None\r
862\r
863--*/\r
864{\r
865 FIT_TABLE *FitTable;\r
866 FIT_TABLE *TmpFitPtr;\r
867 UINTN NumFitComponents;\r
868 UINTN Index;\r
869\r
870 GetFitTableStartAddress (&FitTable);\r
871 TmpFitPtr = FitTable;\r
872 NumFitComponents = 0;\r
873 for (Index = 0; Index < FitTable->CompSize; Index++) {\r
874 if ((TmpFitPtr->CvAndType & FIT_TYPE_MASK) != COMP_TYPE_FIT_UNUSED) {\r
875 NumFitComponents += 1;\r
876 }\r
877 TmpFitPtr++;\r
878 }\r
879 qsort ((VOID *) FitTable, NumFitComponents, sizeof (FIT_TABLE), CompareItems);\r
880}\r
881\r
882VOID\r
883UpdateFitEntryForFwVolume (\r
884 IN UINT64 Size\r
885 )\r
886/*++\r
887\r
888Routine Description:\r
889\r
890 This function updates the information about Firmware Volume in FIT TABLE.\r
891 This FIT table has to be immediately below the PAL_A Start and it contains\r
892 component type and address information. Other information can't be\r
893 created this time so we would need to fix it up..\r
894\r
895\r
896Arguments:\r
897\r
898 Size - Firmware Volume Size\r
899\r
900Returns:\r
901\r
902 VOID\r
903\r
904--*/\r
905{\r
906 FIT_TABLE *CompFitPtr;\r
907 UINTN RelativeAddress;\r
908\r
909 //\r
910 // FV Fit table will be located at PAL_A Startaddress - 16 byte location\r
911 //\r
912 Vtf1LastStartAddress -= 0x10;\r
913 Vtf1TotalSize += 0x10;\r
914\r
915 GetRelativeAddressInVtfBuffer (Vtf1LastStartAddress, &RelativeAddress, FIRST_VTF);\r
916\r
917 CompFitPtr = (FIT_TABLE *) RelativeAddress;\r
918 CompFitPtr->CompAddress = Fv1BaseAddress;\r
919\r
920 //\r
921 // Since we don't have any information about its location in Firmware Volume,\r
922 // initialize address to 0. This will be updated once Firmware Volume is\r
923 // being build and its current address will be fixed in FIT table. Currently\r
924 // we haven't implemented it so far and working on architectural clarafication\r
925 //\r
926 //\r
927 // Firmware Volume Size in 16 byte block\r
928 //\r
929 CompFitPtr->CompSize = ((UINT32) Size) / 16;\r
930\r
931 //\r
932 // Since Firmware Volume does not exist by the time we create this FIT info\r
933 // this should be fixedup from Firmware Volume creation tool. We haven't\r
934 // worked out a method so far.\r
935 //\r
936 CompFitPtr->CompVersion = MAKE_VERSION (0, 0);\r
937\r
938 //\r
939 // Since we don't have any info about this file, we are making sure that\r
940 // checksum is not needed.\r
941 //\r
942 CompFitPtr->CvAndType = CV_N_TYPE (0, COMP_TYPE_FIT_FV_BOOT);\r
943\r
944 //\r
945 // Since non VTF component will reside outside the VTF, we will not have its\r
946 // binary image while creating VTF, hence we will not perform checksum at\r
947 // this time. Once Firmware Volume is being created which will contain this\r
948 // VTF, it will fix the FIT table for all the non VTF component and hence\r
949 // checksum\r
950 //\r
951 CompFitPtr->CheckSum = 0;\r
952}\r
953\r
954EFI_STATUS\r
955UpdateFitEntryForNonVTFComp (\r
956 IN PARSED_VTF_INFO *VtfInfo\r
957 )\r
958/*++\r
959\r
960Routine Description:\r
961\r
962 This function updates the information about non VTF component in FIT TABLE.\r
963 Since non VTF componets binaries are not part of VTF binary, we would still\r
964 be required to update its location information in Firmware Volume, inside\r
965 FIT table.\r
966\r
967Arguments:\r
968\r
969 VtfInfo - Pointer to VTF Info Structure\r
970\r
971Returns:\r
972\r
973 EFI_ABORTED - The function fails to update the component in FIT\r
974 EFI_SUCCESS - The function completed successfully\r
975\r
976--*/\r
977{\r
978 FIT_TABLE *CompFitPtr;\r
979\r
980 //\r
981 // Scan the FIT table for available space\r
982 //\r
983 GetNextAvailableFitPtr (&CompFitPtr);\r
984 if (CompFitPtr == NULL) {\r
985 Error (NULL, 0, 5003, "Invalid", "Can't update this component in FIT");\r
986 return EFI_ABORTED;\r
987 }\r
988\r
989 //\r
990 // Since we don't have any information about its location in Firmware Volume,\r
991 // initialize address to 0. This will be updated once Firmware Volume is\r
992 // being build and its current address will be fixed in FIT table\r
993 //\r
994 CompFitPtr->CompAddress = 0;\r
995 CompFitPtr->CompSize = VtfInfo->CompSize;\r
996 CompFitPtr->CompVersion = MAKE_VERSION (VtfInfo->MajorVer, VtfInfo->MinorVer);\r
997 CompFitPtr->CvAndType = CV_N_TYPE (VtfInfo->CheckSumRequired, VtfInfo->CompType);\r
998\r
999 //\r
1000 // Since non VTF component will reside outside the VTF, we will not have its\r
1001 // binary image while creating VTF, hence we will not perform checksum at\r
1002 // this time. Once Firmware Volume is being created which will contain this\r
1003 // VTF, it will fix the FIT table for all the non VTF component and hence\r
1004 // checksum\r
1005 //\r
1006 CompFitPtr->CheckSum = 0;\r
1007\r
1008 //\r
1009 // Fit Type is FV_BOOT which means Firmware Volume, we initialize this to base\r
1010 // address of Firmware Volume in which this VTF will be attached.\r
1011 //\r
1012 if ((CompFitPtr->CvAndType & 0x7F) == COMP_TYPE_FIT_FV_BOOT) {\r
1013 CompFitPtr->CompAddress = Fv1BaseAddress;\r
1014 }\r
1015\r
1016 return EFI_SUCCESS;\r
1017}\r
1018\r
1019//\r
1020// !!!WARNING\r
1021// This function is updating the SALE_ENTRY in Itanium address space as per SAL\r
1022// spec. SALE_ENTRY is being read from SYM file of PEICORE. Once the PEI\r
1023// CORE moves in Firmware Volume, we would need to modify this function to be\r
1024// used with a API which will detect PEICORE component while building Firmware\r
1025// Volume and update its entry in FIT table as well as in Itanium address space\r
1026// as per Intel?Itanium(TM) SAL address space\r
1027//\r
1028EFI_STATUS\r
1029UpdateEntryPoint (\r
1030 IN PARSED_VTF_INFO *VtfInfo,\r
1031 IN UINT64 *CompStartAddress\r
1032 )\r
1033/*++\r
1034\r
1035Routine Description:\r
1036\r
1037 This function updated the architectural entry point in IPF, SALE_ENTRY.\r
1038\r
1039Arguments:\r
1040\r
1041 VtfInfo - Pointer to VTF Info Structure\r
1042 CompStartAddress - Pointer to Component Start Address\r
1043\r
1044Returns:\r
1045\r
1046 EFI_INVALID_PARAMETER - The parameter is invalid\r
1047 EFI_SUCCESS - The function completed successfully\r
1048\r
1049--*/\r
1050{\r
1051 UINTN RelativeAddress;\r
1052 UINT64 SalEntryAdd;\r
1053 FILE *Fp;\r
1054 UINTN Offset;\r
1055\r
1056 CHAR8 Buff[FILE_NAME_SIZE];\r
1057 CHAR8 Buff1[10];\r
1058 CHAR8 Buff2[10];\r
1059 CHAR8 OffsetStr[30];\r
1060 CHAR8 Buff3[10];\r
1061 CHAR8 Buff4[10];\r
1062 CHAR8 Buff5[10];\r
1063 CHAR8 Token[50];\r
1064\r
1be2ed90 1065 Fp = fopen (LongFilePath (VtfInfo->CompSymName), "rb");\r
30fdf114
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1066\r
1067 if (Fp == NULL) {\r
1068 Error (NULL, 0, 0001, "Error opening file", VtfInfo->CompSymName);\r
1069 return EFI_INVALID_PARAMETER;\r
1070 }\r
1071\r
1072 while (fgets (Buff, sizeof (Buff), Fp) != NULL) {\r
1073 fscanf (\r
1074 Fp,\r
1075 "%s %s %s %s %s %s %s",\r
1076 Buff1,\r
1077 Buff2,\r
1078 OffsetStr,\r
1079 Buff3,\r
1080 Buff4,\r
1081 Buff5,\r
1082 Token\r
1083 );\r
1084 if (strnicmp (Token, "SALE_ENTRY", 10) == 0) {\r
1085 break;\r
1086 }\r
1087 }\r
1088\r
1089 Offset = strtoul (OffsetStr, NULL, 16);\r
1090\r
1091 *CompStartAddress += Offset;\r
1092 SalEntryAdd = Fv1EndAddress - (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT);\r
1093\r
1094 GetRelativeAddressInVtfBuffer (SalEntryAdd, &RelativeAddress, FIRST_VTF);\r
1095\r
1096 memcpy ((VOID *) RelativeAddress, (VOID *) CompStartAddress, sizeof (UINT64));\r
1097\r
1098 if (Fp != NULL) {\r
1099 fclose (Fp);\r
1100 }\r
1101\r
1102 return EFI_SUCCESS;\r
1103}\r
1104\r
1105EFI_STATUS\r
1106CreateAndUpdateComponent (\r
1107 IN PARSED_VTF_INFO *VtfInfo\r
1108 )\r
1109/*++\r
1110\r
1111Routine Description:\r
1112\r
1113 This function reads the binary file for each components and update them\r
1114 in VTF Buffer as well as in FIT table. If the component is located in non\r
1115 VTF area, only the FIT table address will be updated\r
1116\r
1117Arguments:\r
1118\r
1119 VtfInfo - Pointer to Parsed Info\r
1120\r
1121Returns:\r
1122\r
1123 EFI_SUCCESS - The function completed successful\r
1124 EFI_ABORTED - Aborted due to one of the many reasons like:\r
1125 (a) Component Size greater than the specified size.\r
1126 (b) Error opening files.\r
1127\r
1128 EFI_INVALID_PARAMETER Value returned from call to UpdateEntryPoint()\r
1129 EFI_OUT_OF_RESOURCES Memory allocation failure.\r
1130\r
1131--*/\r
1132{\r
1133 EFI_STATUS Status;\r
1134 UINT64 CompStartAddress;\r
1135 UINT64 FileSize;\r
30fdf114
LG
1136 UINT64 NumAdjustByte;\r
1137 UINT8 *Buffer;\r
1138 FILE *Fp;\r
1139 FIT_TABLE *CompFitPtr;\r
1140 BOOLEAN Aligncheck;\r
1141\r
1142 if (VtfInfo->LocationType == NONE) {\r
1143 UpdateFitEntryForNonVTFComp (VtfInfo);\r
1144 return EFI_SUCCESS;\r
1145 }\r
1146\r
1be2ed90 1147 Fp = fopen (LongFilePath (VtfInfo->CompBinName), "rb");\r
30fdf114
LG
1148\r
1149 if (Fp == NULL) {\r
1150 Error (NULL, 0, 0001, "Error opening file", VtfInfo->CompBinName);\r
1151 return EFI_ABORTED;\r
1152 }\r
1153\r
1154 FileSize = _filelength (fileno (Fp));\r
1155 if ((VtfInfo->CompType == COMP_TYPE_FIT_PAL_B) || (VtfInfo->CompType == COMP_TYPE_FIT_PAL_A_SPECIFIC)) {\r
1156\r
1157 //\r
1158 // BUGBUG: Satish to correct\r
1159 //\r
1160 FileSize -= SIZE_OF_PAL_HEADER;\r
1161 }\r
1162\r
1163 if (VtfInfo->PreferredSize) {\r
1164 if (FileSize > VtfInfo->CompSize) {\r
1165 Error (NULL, 0, 2000, "Invalid parameter", "The component size is more than specified size.");\r
1166 return EFI_ABORTED;\r
1167 }\r
1168\r
1169 FileSize = VtfInfo->CompSize;\r
1170 }\r
1171\r
1172 Buffer = malloc ((UINTN) FileSize);\r
1173 if (Buffer == NULL) {\r
1174 return EFI_OUT_OF_RESOURCES;\r
1175 }\r
1176 memset (Buffer, 0, (UINTN) FileSize);\r
1177\r
1178 if ((VtfInfo->CompType == COMP_TYPE_FIT_PAL_B) || (VtfInfo->CompType == COMP_TYPE_FIT_PAL_A_SPECIFIC)) {\r
1179\r
1180 //\r
1181 // Read first 64 bytes of PAL header and use it to find version info\r
1182 //\r
0d2711a6 1183 fread (Buffer, sizeof (UINT8), SIZE_OF_PAL_HEADER, Fp);\r
30fdf114
LG
1184\r
1185 //\r
1186 // PAL header contains the version info. Currently, we will use the header\r
1187 // to read version info and then discard.\r
1188 //\r
1189 if (!VtfInfo->VersionPresent) {\r
1190 GetComponentVersionInfo (VtfInfo, Buffer);\r
1191 }\r
1192 }\r
1193\r
0d2711a6 1194 fread (Buffer, sizeof (UINT8), (UINTN) FileSize, Fp);\r
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1195 fclose (Fp);\r
1196\r
1197 //\r
1198 // If it is non PAL_B component, pass the entire buffer to get the version\r
1199 // info and implement any specific case inside GetComponentVersionInfo.\r
1200 //\r
1201 if (VtfInfo->CompType != COMP_TYPE_FIT_PAL_B) {\r
1202 if (!VtfInfo->VersionPresent) {\r
1203 GetComponentVersionInfo (VtfInfo, Buffer);\r
1204 }\r
1205 }\r
1206\r
1207 if (VtfInfo->LocationType == SECOND_VTF) {\r
1208\r
1209 CompStartAddress = (Vtf2LastStartAddress - FileSize);\r
1210 } else {\r
1211 CompStartAddress = (Vtf1LastStartAddress - FileSize);\r
1212 }\r
1213\r
1214 if (VtfInfo->CompType == COMP_TYPE_FIT_PAL_B) {\r
1215 Aligncheck = CheckAddressAlignment (CompStartAddress, 32 * 1024, &NumAdjustByte);\r
1216 } else {\r
1217 Aligncheck = CheckAddressAlignment (CompStartAddress, 8, &NumAdjustByte);\r
1218 }\r
1219\r
1220 if (!Aligncheck) {\r
1221 CompStartAddress -= NumAdjustByte;\r
1222 }\r
1223\r
1224 if (VtfInfo->LocationType == SECOND_VTF && SecondVTF == TRUE) {\r
1225 Vtf2LastStartAddress = CompStartAddress;\r
1226 Vtf2TotalSize += (UINT32) (FileSize + NumAdjustByte);\r
1227 Status = UpdateVtfBuffer (CompStartAddress, Buffer, FileSize, SECOND_VTF);\r
1228 } else if (VtfInfo->LocationType == FIRST_VTF) {\r
1229 Vtf1LastStartAddress = CompStartAddress;\r
1230 Vtf1TotalSize += (UINT32) (FileSize + NumAdjustByte);\r
1231 Status = UpdateVtfBuffer (CompStartAddress, Buffer, FileSize, FIRST_VTF);\r
1232 } else {\r
1233 Error (NULL, 0, 2000,"Invalid Parameter", "There's component in second VTF so second BaseAddress and Size must be specified!");\r
1234 return EFI_INVALID_PARAMETER;\r
1235 }\r
1236\r
1237 if (EFI_ERROR (Status)) {\r
1238 return EFI_ABORTED;\r
1239 }\r
1240\r
1241 GetNextAvailableFitPtr (&CompFitPtr);\r
1242\r
1243 CompFitPtr->CompAddress = CompStartAddress | IPF_CACHE_BIT;\r
1244 if ((FileSize % 16) != 0) {\r
1245 Error (NULL, 0, 2000, "Invalid parameter", "Binary FileSize must be a multiple of 16.");\r
1246 return EFI_INVALID_PARAMETER;\r
1247 }\r
1248 //assert ((FileSize % 16) == 0);\r
1249 CompFitPtr->CompSize = (UINT32) (FileSize / 16);\r
1250 CompFitPtr->CompVersion = MAKE_VERSION (VtfInfo->MajorVer, VtfInfo->MinorVer);\r
1251 CompFitPtr->CvAndType = CV_N_TYPE (VtfInfo->CheckSumRequired, VtfInfo->CompType);\r
1252 if (VtfInfo->CheckSumRequired) {\r
1253 CompFitPtr->CheckSum = 0;\r
1254 CompFitPtr->CheckSum = CalculateChecksum8 (Buffer, (UINTN) FileSize);\r
1255 }\r
1256\r
1257 //\r
1258 // Free the buffer\r
1259 //\r
1260 if (Buffer) {\r
1261 free (Buffer);\r
1262 }\r
1263\r
1264 //\r
1265 // Update the SYM file for this component based on it's start address.\r
1266 //\r
b303ea72 1267 Status = UpdateSymFile (CompStartAddress, SymFileName, VtfInfo->CompSymName, FileSize);\r
30fdf114
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1268 if (EFI_ERROR (Status)) {\r
1269\r
1270 //\r
1271 // At this time, SYM files are not required, so continue on error.\r
1272 //\r
1273 }\r
1274\r
1275 // !!!!!!!!!!!!!!!!!!!!!\r
1276 // BUGBUG:\r
1277 // This part of the code is a temporary line since PEICORE is going to be inside\r
1278 // VTF till we work out how to determine the SALE_ENTRY through it. We will need\r
1279 // to clarify so many related questions\r
1280 // !!!!!!!!!!!!!!!!!!!!!!!\r
1281\r
1282 if (VtfInfo->CompType == COMP_TYPE_FIT_PEICORE) {\r
1283 Status = UpdateEntryPoint (VtfInfo, &CompStartAddress);\r
1284 }\r
1285\r
1286 return Status;\r
1287}\r
1288\r
1289EFI_STATUS\r
1290CreateAndUpdatePAL_A (\r
1291 IN PARSED_VTF_INFO *VtfInfo\r
1292 )\r
1293/*++\r
1294\r
1295Routine Description:\r
1296\r
1297 This function reads the binary file for each components and update them\r
1298 in VTF Buffer as well as FIT table\r
1299\r
1300Arguments:\r
1301\r
1302 VtfInfo - Pointer to Parsed Info\r
1303\r
1304Returns:\r
1305\r
1306 EFI_ABORTED - Due to one of the following reasons:\r
1307 (a)Error Opening File\r
1308 (b)The PAL_A Size is more than specified size status\r
1309 One of the values mentioned below returned from\r
1310 call to UpdateSymFile\r
1311 EFI_SUCCESS - The function completed successfully.\r
1312 EFI_INVALID_PARAMETER - One of the input parameters was invalid.\r
1313 EFI_ABORTED - An error occurred.UpdateSymFile\r
1314 EFI_OUT_OF_RESOURCES - Memory allocation failed.\r
1315\r
1316--*/\r
1317{\r
1318 EFI_STATUS Status;\r
1319 UINT64 PalStartAddress;\r
1320 UINT64 AbsAddress;\r
1321 UINTN RelativeAddress;\r
1322 UINT64 FileSize;\r
30fdf114
LG
1323 UINT8 *Buffer;\r
1324 FILE *Fp;\r
1325 FIT_TABLE *PalFitPtr;\r
1326\r
1be2ed90 1327 Fp = fopen (LongFilePath (VtfInfo->CompBinName), "rb");\r
30fdf114
LG
1328\r
1329 if (Fp == NULL) {\r
1330 Error (NULL, 0, 0001, "Error opening file", VtfInfo->CompBinName);\r
1331 return EFI_ABORTED;\r
1332 }\r
1333\r
1334 FileSize = _filelength (fileno (Fp));\r
1335 if (FileSize < 64) {\r
1336 Error (NULL, 0, 2000, "Invalid parameter", "PAL_A bin header is 64 bytes, so the Bin size must be larger than 64 bytes!");\r
1337 return EFI_INVALID_PARAMETER;\r
1338 }\r
1339 FileSize -= SIZE_OF_PAL_HEADER;\r
1340\r
1341\r
1342 if (VtfInfo->PreferredSize) {\r
1343 if (FileSize > VtfInfo->CompSize) {\r
1344 Error (NULL, 0, 2000, "Invalid parameter", "The PAL_A Size is more than the specified size.");\r
1345 return EFI_ABORTED;\r
1346 }\r
1347\r
1348 FileSize = VtfInfo->CompSize;\r
1349 }\r
1350\r
1351 Buffer = malloc ((UINTN) FileSize);\r
1352 if (Buffer == NULL) {\r
1353 return EFI_OUT_OF_RESOURCES;\r
1354 }\r
1355 memset (Buffer, 0, (UINTN) FileSize);\r
1356\r
1357 //\r
1358 // Read, Get version Info and discard the PAL header.\r
1359 //\r
0d2711a6 1360 fread (Buffer, sizeof (UINT8), SIZE_OF_PAL_HEADER, Fp);\r
30fdf114
LG
1361\r
1362 //\r
1363 // Extract the version info from header of PAL_A. Once done, discrad this buffer\r
1364 //\r
1365 if (!VtfInfo->VersionPresent) {\r
1366 GetComponentVersionInfo (VtfInfo, Buffer);\r
1367 }\r
1368\r
1369 //\r
1370 // Read PAL_A file in a buffer\r
1371 //\r
0d2711a6 1372 fread (Buffer, sizeof (UINT8), (UINTN) FileSize, Fp);\r
30fdf114
LG
1373 fclose (Fp);\r
1374\r
1375 PalStartAddress = Fv1EndAddress - (SIZE_TO_OFFSET_PAL_A_END + FileSize);\r
1376 Vtf1LastStartAddress = PalStartAddress;\r
1377 Vtf1TotalSize += (UINT32) FileSize;\r
1378 Status = UpdateVtfBuffer (PalStartAddress, Buffer, FileSize, FIRST_VTF);\r
1379\r
1380 AbsAddress = Fv1EndAddress - SIZE_TO_PAL_A_FIT;\r
1381 GetRelativeAddressInVtfBuffer (AbsAddress, &RelativeAddress, FIRST_VTF);\r
1382 PalFitPtr = (FIT_TABLE *) RelativeAddress;\r
1383 PalFitPtr->CompAddress = PalStartAddress | IPF_CACHE_BIT;\r
1384 //assert ((FileSize % 16) == 0);\r
1385 if ((FileSize % 16) != 0) {\r
1386 Error (NULL, 0, 2000, "Invalid parameter", "Binary FileSize must be a multiple of 16.");\r
1387 return EFI_INVALID_PARAMETER;\r
1388 }\r
1389\r
1390 PalFitPtr->CompSize = (UINT32) (FileSize / 16);\r
1391 PalFitPtr->CompVersion = MAKE_VERSION (VtfInfo->MajorVer, VtfInfo->MinorVer);\r
1392 PalFitPtr->CvAndType = CV_N_TYPE (VtfInfo->CheckSumRequired, VtfInfo->CompType);\r
1393 if (VtfInfo->CheckSumRequired) {\r
1394 PalFitPtr->CheckSum = 0;\r
1395 PalFitPtr->CheckSum = CalculateChecksum8 (Buffer, (UINTN) FileSize);\r
1396 }\r
1397\r
1398 if (Buffer) {\r
1399 free (Buffer);\r
1400 }\r
1401\r
1402 //\r
1403 // Update the SYM file for this component based on it's start address.\r
1404 //\r
b303ea72 1405 Status = UpdateSymFile (PalStartAddress, SymFileName, VtfInfo->CompSymName, FileSize);\r
30fdf114
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1406 if (EFI_ERROR (Status)) {\r
1407\r
1408 //\r
1409 // At this time, SYM files are not required, so continue on error.\r
1410 //\r
1411 }\r
1412\r
1413 return Status;\r
1414}\r
1415\r
1416EFI_STATUS\r
1417CreateFitTableAndInitialize (\r
1418 IN PARSED_VTF_INFO *VtfInfo\r
1419 )\r
1420/*++\r
1421\r
1422Routine Description:\r
1423\r
1424 This function creates and intializes FIT table which would be used to\r
1425 add component info inside this\r
1426\r
1427Arguments:\r
1428\r
1429 VtfInfo - Pointer to Parsed Info\r
1430\r
1431Returns:\r
1432\r
1433 EFI_ABORTED - Aborted due to no size information\r
1434 EFI_SUCCESS - The function completed successfully\r
1435\r
1436--*/\r
1437{\r
1438 UINT64 PalFitTableAdd;\r
1439 UINT64 FitTableAdd;\r
1440 UINT64 FitTableAddressOffset;\r
1441 FIT_TABLE *PalFitPtr;\r
1442 FIT_TABLE *FitStartPtr;\r
1443 UINTN NumFitComp;\r
1444 UINTN RelativeAddress;\r
1445 UINTN Index;\r
1446\r
1447 if (!VtfInfo->PreferredSize) {\r
1448 Error (NULL, 0, 2000, "Invalid parameter", "FIT could not be allocated because there is no size information.");\r
1449 return EFI_ABORTED;\r
1450 }\r
1451\r
1452 if ((VtfInfo->CompSize % 16) != 0) {\r
1453 Error (NULL, 0, 2000, "Invalid parameter", "Invalid FIT Table Size, it is not a multiple of 16 bytes. Please correct the size.");\r
1454 }\r
1455\r
1456 PalFitTableAdd = Fv1EndAddress - SIZE_TO_PAL_A_FIT;\r
1457 GetRelativeAddressInVtfBuffer (PalFitTableAdd, &RelativeAddress, FIRST_VTF);\r
1458 PalFitPtr = (FIT_TABLE *) RelativeAddress;\r
1459 PalFitTableAdd = (PalFitPtr->CompAddress - VtfInfo->CompSize);\r
1460\r
1461 FitTableAdd = (PalFitPtr->CompAddress - 0x10) - VtfInfo->CompSize;\r
1462 FitTableAddressOffset = Fv1EndAddress - (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT + SIZE_FIT_TABLE_ADD);\r
1463 GetRelativeAddressInVtfBuffer (FitTableAddressOffset, &RelativeAddress, FIRST_VTF);\r
1464 *(UINT64 *) RelativeAddress = FitTableAdd;\r
1465\r
1466 GetRelativeAddressInVtfBuffer (FitTableAdd, &RelativeAddress, FIRST_VTF);\r
1467\r
1468 //\r
1469 // Update Fit Table with FIT Signature and FIT info in first 16 bytes.\r
1470 //\r
1471 FitStartPtr = (FIT_TABLE *) RelativeAddress;\r
1472\r
1473 strncpy ((CHAR8 *) &FitStartPtr->CompAddress, FIT_SIGNATURE, 8); // "_FIT_ "\r
1474 assert (((VtfInfo->CompSize & 0x00FFFFFF) % 16) == 0);\r
1475 FitStartPtr->CompSize = (VtfInfo->CompSize & 0x00FFFFFF) / 16;\r
1476 FitStartPtr->CompVersion = MAKE_VERSION (VtfInfo->MajorVer, VtfInfo->MinorVer);\r
1477\r
1478 //\r
1479 // BUGBUG: If a checksum is required, add code to checksum the FIT table. Also\r
1480 // determine what to do for things like the FV component that aren't easily checksummed.\r
1481 // The checksum will be done once we are done with all the componet update in the FIT\r
1482 // table\r
1483 //\r
1484 FitStartPtr->CvAndType = CV_N_TYPE (VtfInfo->CheckSumRequired, VtfInfo->CompType);\r
1485\r
1486 NumFitComp = FitStartPtr->CompSize;\r
1487\r
1488 FitStartPtr++;\r
1489\r
1490 //\r
1491 // Intialize remaining FIT table space to UNUSED fit component type\r
1492 // so that when we need to create a FIT entry for a component, we can\r
1493 // locate a free one and use it.\r
1494 //\r
1495 for (Index = 0; Index < (NumFitComp - 1); Index++) {\r
1496 FitStartPtr->CvAndType = 0x7F; // Initialize all with UNUSED\r
1497 FitStartPtr++;\r
1498 }\r
1499\r
1500 Vtf1TotalSize += VtfInfo->CompSize;\r
1501 Vtf1LastStartAddress -= VtfInfo->CompSize;\r
1502\r
1503 return EFI_SUCCESS;\r
1504}\r
1505\r
1506EFI_STATUS\r
1507WriteVtfBinary (\r
1508 IN CHAR8 *FileName,\r
1509 IN UINT32 VtfSize,\r
1510 IN LOC_TYPE LocType\r
1511 )\r
1512/*++\r
1513\r
1514Routine Description:\r
1515\r
1516 Write Firmware Volume from memory to a file.\r
1517\r
1518Arguments:\r
1519\r
1520 FileName - Output File Name which needed to be created/\r
1521 VtfSize - FileSize\r
1522 LocType - The type of the VTF\r
1523\r
1524Returns:\r
1525\r
1526 EFI_ABORTED - Returned due to one of the following resons:\r
1527 (a) Error Opening File\r
1528 (b) Failing to copy buffers\r
1529 EFI_SUCCESS - The fuction completes successfully\r
1530\r
1531--*/\r
1532{\r
1533 FILE *Fp;\r
1534 UINTN NumByte;\r
1535 VOID *VtfBuffer;\r
1536 UINTN RelativeAddress;\r
1537\r
1538 if (LocType == FIRST_VTF) {\r
1539 GetRelativeAddressInVtfBuffer (Vtf1LastStartAddress, &RelativeAddress, FIRST_VTF);\r
1540 VtfBuffer = (VOID *) RelativeAddress;\r
1541 } else {\r
1542 GetRelativeAddressInVtfBuffer (Vtf2LastStartAddress, &RelativeAddress, SECOND_VTF);\r
1543 VtfBuffer = (VOID *) RelativeAddress;\r
1544 }\r
1545\r
1be2ed90 1546 Fp = fopen (LongFilePath (FileName), "wb");\r
30fdf114
LG
1547 if (Fp == NULL) {\r
1548 Error (NULL, 0, 0001, "Error opening file", FileName);\r
1549 return EFI_ABORTED;\r
1550 }\r
1551\r
1552 NumByte = fwrite (VtfBuffer, sizeof (UINT8), (UINTN) VtfSize, Fp);\r
1553\r
1554 if (Fp) {\r
1555 fclose (Fp);\r
1556 }\r
1557\r
1558 if (NumByte != (sizeof (UINT8) * VtfSize)) {\r
1559 Error (NULL, 0, 0002, "Error writing file", FileName);\r
1560 return EFI_ABORTED;\r
1561 }\r
1562\r
1563 return EFI_SUCCESS;\r
1564}\r
1565\r
1566EFI_STATUS\r
1567UpdateVtfBuffer (\r
1568 IN UINT64 StartAddress,\r
1569 IN UINT8 *Buffer,\r
1570 IN UINT64 DataSize,\r
1571 IN LOC_TYPE LocType\r
1572 )\r
1573/*++\r
1574\r
1575Routine Description:\r
1576\r
1577 Update the Firmware Volume Buffer with requested buffer data\r
1578\r
1579Arguments:\r
1580\r
1581 StartAddress - StartAddress in buffer. This number will automatically\r
1582 point to right address in buffer where data needed\r
1583 to be updated.\r
1584 Buffer - Buffer pointer from data will be copied to memory mapped buffer.\r
1585 DataSize - Size of the data needed to be copied.\r
1586 LocType - The type of the VTF: First or Second\r
1587\r
1588Returns:\r
1589\r
1590 EFI_ABORTED - The input parameter is error\r
1591 EFI_SUCCESS - The function completed successfully\r
1592\r
1593--*/\r
1594{\r
1595 UINT8 *LocalBufferPtrToWrite;\r
1596\r
1597 if (LocType == FIRST_VTF) {\r
1598 if ((StartAddress | IPF_CACHE_BIT) < (Vtf1LastStartAddress | IPF_CACHE_BIT)) {\r
1599 Error (NULL, 0, 2000, "Invalid parameter", "Start Address is less than the VTF start address.");\r
1600 return EFI_ABORTED;\r
1601 }\r
1602\r
1603 LocalBufferPtrToWrite = (UINT8 *) Vtf1EndBuffer;\r
1604\r
1605 LocalBufferPtrToWrite -= (Fv1EndAddress - StartAddress);\r
1606\r
1607 } else {\r
1608\r
1609 if ((StartAddress | IPF_CACHE_BIT) < (Vtf2LastStartAddress | IPF_CACHE_BIT)) {\r
1610 Error (NULL, 0, 2000, "Invalid parameter", "Error StartAddress");\r
1611 return EFI_ABORTED;\r
1612 }\r
1613 LocalBufferPtrToWrite = (UINT8 *) Vtf2EndBuffer;\r
1614 LocalBufferPtrToWrite -= (Fv2EndAddress - StartAddress);\r
1615 }\r
1616\r
1617 memcpy (LocalBufferPtrToWrite, Buffer, (UINTN) DataSize);\r
1618\r
1619 return EFI_SUCCESS;\r
1620}\r
1621\r
1622EFI_STATUS\r
1623UpdateFfsHeader (\r
1624 IN UINT32 TotalVtfSize,\r
1625 IN LOC_TYPE LocType\r
1626 )\r
1627/*++\r
1628\r
1629Routine Description:\r
1630\r
1631 Update the Firmware Volume Buffer with requested buffer data\r
1632\r
1633Arguments:\r
1634\r
1635 TotalVtfSize - Size of the VTF\r
1636 Fileoffset - The start of the file relative to the start of the FV.\r
1637 LocType - The type of the VTF\r
1638\r
1639Returns:\r
1640\r
1641 EFI_SUCCESS - The function completed successfully\r
1642 EFI_INVALID_PARAMETER - The Ffs File Header Pointer is NULL\r
1643\r
1644--*/\r
1645{\r
1646 EFI_FFS_FILE_HEADER *FileHeader;\r
1647 UINTN RelativeAddress;\r
1648 EFI_GUID EfiFirmwareVolumeTopFileGuid = EFI_FFS_VOLUME_TOP_FILE_GUID;\r
1649\r
1650 //\r
1651 // Find the VTF file header location\r
1652 //\r
1653 if (LocType == FIRST_VTF) {\r
1654 GetRelativeAddressInVtfBuffer (Vtf1LastStartAddress, &RelativeAddress, FIRST_VTF);\r
1655 FileHeader = (EFI_FFS_FILE_HEADER *) RelativeAddress;\r
1656 } else {\r
1657 GetRelativeAddressInVtfBuffer (Vtf2LastStartAddress, &RelativeAddress, SECOND_VTF);\r
1658 FileHeader = (EFI_FFS_FILE_HEADER *) RelativeAddress;\r
1659 }\r
1660\r
1661 if (FileHeader == NULL) {\r
1662 return EFI_INVALID_PARAMETER;\r
1663 }\r
1664\r
1665 //\r
1666 // write header\r
1667 //\r
1668 memset (FileHeader, 0, sizeof (EFI_FFS_FILE_HEADER));\r
1669 memcpy (&FileHeader->Name, &EfiFirmwareVolumeTopFileGuid, sizeof (EFI_GUID));\r
1670 FileHeader->Type = EFI_FV_FILETYPE_RAW;\r
1671 FileHeader->Attributes = FFS_ATTRIB_CHECKSUM;\r
1672\r
1673 //\r
1674 // Now FileSize includes the EFI_FFS_FILE_HEADER\r
1675 //\r
1676 FileHeader->Size[0] = (UINT8) (TotalVtfSize & 0x000000FF);\r
1677 FileHeader->Size[1] = (UINT8) ((TotalVtfSize & 0x0000FF00) >> 8);\r
1678 FileHeader->Size[2] = (UINT8) ((TotalVtfSize & 0x00FF0000) >> 16);\r
1679\r
1680 //\r
1681 // Fill in checksums and state, all three must be zero for the checksums.\r
1682 //\r
1683 FileHeader->IntegrityCheck.Checksum.Header = 0;\r
1684 FileHeader->IntegrityCheck.Checksum.File = 0;\r
1685 FileHeader->State = 0;\r
1686 FileHeader->IntegrityCheck.Checksum.Header = CalculateChecksum8 ((UINT8 *) FileHeader, sizeof (EFI_FFS_FILE_HEADER));\r
b303ea72 1687 FileHeader->IntegrityCheck.Checksum.File = CalculateChecksum8 ((UINT8 *) (FileHeader + 1), TotalVtfSize - sizeof (EFI_FFS_FILE_HEADER));\r
30fdf114
LG
1688 FileHeader->State = EFI_FILE_HEADER_CONSTRUCTION | EFI_FILE_HEADER_VALID | EFI_FILE_DATA_VALID;\r
1689\r
1690 return EFI_SUCCESS;\r
1691}\r
1692\r
1693EFI_STATUS\r
1694ValidateAddressAndSize (\r
1695 IN UINT64 BaseAddress,\r
1696 IN UINT64 FwVolSize\r
1697 )\r
1698/*++\r
1699\r
1700Routine Description:\r
1701\r
1702 Update the Firmware Volume Buffer with requested buffer data\r
1703\r
1704Arguments:\r
1705\r
1706 BaseAddress - Base address for the Fw Volume.\r
1707\r
1708 FwVolSize - Total Size of the FwVolume to which VTF will be attached..\r
1709\r
1710Returns:\r
1711\r
1712 EFI_SUCCESS - The function completed successfully\r
1713 EFI_UNSUPPORTED - The input parameter is error\r
1714\r
1715--*/\r
1716{\r
07355bd5 1717 if ((FwVolSize > 0x40) && ((BaseAddress + FwVolSize) % 8 == 0)) {\r
30fdf114
LG
1718 return EFI_SUCCESS;\r
1719 }\r
1720\r
1721 return EFI_UNSUPPORTED;\r
1722}\r
1723\r
1724EFI_STATUS\r
1725UpdateIA32ResetVector (\r
1726 IN CHAR8 *FileName,\r
1727 IN UINT64 FirstFwVSize\r
1728 )\r
1729/*++\r
1730\r
1731Routine Description:\r
1732\r
1733 Update the 16 byte IA32 Reset vector to maintain the compatibility\r
1734\r
1735Arguments:\r
1736\r
1737 FileName - Binary file name which contains the IA32 Reset vector info..\r
1738 FirstFwVSize - Total Size of the FwVolume to which VTF will be attached..\r
1739\r
1740Returns:\r
1741\r
1742 EFI_SUCCESS - The function completed successfully\r
1743 EFI_ABORTED - Invalid File Size\r
1744 EFI_INVALID_PARAMETER - Bad File Name\r
1745 EFI_OUT_OF_RESOURCES - Memory allocation failed.\r
1746\r
1747--*/\r
1748{\r
1749 UINT8 *Buffer;\r
1750 UINT8 *LocalVtfBuffer;\r
1751 UINTN FileSize;\r
30fdf114
LG
1752 FILE *Fp;\r
1753\r
1754 if (!strcmp (FileName, "")) {\r
1755 return EFI_INVALID_PARAMETER;\r
1756 }\r
1757\r
1be2ed90 1758 Fp = fopen (LongFilePath (FileName), "rb");\r
30fdf114
LG
1759\r
1760 if (Fp == NULL) {\r
1761 Error (NULL, 0, 0001, "Error opening file", FileName);\r
1762 return EFI_ABORTED;\r
1763 }\r
1764\r
1765 FileSize = _filelength (fileno (Fp));\r
1766\r
1767 if (FileSize > 16) {\r
1768 return EFI_ABORTED;\r
1769 }\r
1770\r
1771 Buffer = malloc (FileSize);\r
1772 if (Buffer == NULL) {\r
1773 return EFI_OUT_OF_RESOURCES;\r
1774 }\r
1775\r
0d2711a6 1776 fread (Buffer, sizeof (UINT8), FileSize, Fp);\r
30fdf114
LG
1777\r
1778 LocalVtfBuffer = (UINT8 *) Vtf1EndBuffer - SIZE_IA32_RESET_VECT;\r
1779 memcpy (LocalVtfBuffer, Buffer, FileSize);\r
1780\r
1781 if (Buffer) {\r
1782 free (Buffer);\r
1783 }\r
1784\r
1785 if (Fp != NULL) {\r
1786 fclose (Fp);\r
1787 }\r
1788 return EFI_SUCCESS;\r
1789}\r
1790\r
1791VOID\r
1792CleanUpMemory (\r
1793 VOID\r
1794 )\r
1795/*++\r
1796\r
1797Routine Description:\r
1798\r
1799 This function cleans up any allocated buffer\r
1800\r
1801Arguments:\r
1802\r
1803 NONE\r
1804\r
1805Returns:\r
1806\r
1807 NONE\r
1808\r
1809--*/\r
1810{\r
1811 PARSED_VTF_INFO *TempFileListPtr;\r
1812\r
1813 if (Vtf1Buffer) {\r
1814 free (Vtf1Buffer);\r
1815 }\r
1816\r
1817 if (Vtf2Buffer) {\r
1818 free (Vtf2Buffer);\r
1819 }\r
1820\r
1821 //\r
1822 // Cleanup the buffer which was allocated to read the file names from FV.INF\r
1823 //\r
1824 FileListPtr = FileListHeadPtr;\r
1825 while (FileListPtr != NULL) {\r
1826 TempFileListPtr = FileListPtr->NextVtfInfo;\r
1827 free (FileListPtr);\r
1828 FileListPtr = TempFileListPtr;\r
1829 }\r
1830}\r
1831\r
1832EFI_STATUS\r
1833ProcessAndCreateVtf (\r
1834 IN UINT64 Size\r
1835 )\r
1836/*++\r
1837\r
1838Routine Description:\r
1839\r
1840 This function process the link list created during INF file parsing\r
1841 and create component in VTF and updates its info in FIT table\r
1842\r
1843Arguments:\r
1844\r
1845 Size - Size of the Firmware Volume of which, this VTF belongs to.\r
1846\r
1847Returns:\r
1848\r
1849 EFI_UNSUPPORTED - Unknown FIT type\r
1850 EFI_SUCCESS - The function completed successfully\r
1851\r
1852--*/\r
1853{\r
1854 EFI_STATUS Status;\r
1855 PARSED_VTF_INFO *ParsedInfoPtr;\r
1856\r
1857 Status = EFI_SUCCESS;\r
1858\r
1859 ParsedInfoPtr = FileListHeadPtr;\r
1860\r
1861 while (ParsedInfoPtr != NULL) {\r
1862\r
1863 switch (ParsedInfoPtr->CompType) {\r
1864 //\r
1865 // COMP_TYPE_FIT_HEADER is a special case, hence handle it here\r
1866 //\r
1867 case COMP_TYPE_FIT_HEADER:\r
1868 //COMP_TYPE_FIT_HEADER 0x00\r
1869 Status = CreateFitTableAndInitialize (ParsedInfoPtr);\r
1870 break;\r
1871\r
1872 //\r
1873 // COMP_TYPE_FIT_PAL_A is a special case, hence handle it here\r
1874 //\r
1875 case COMP_TYPE_FIT_PAL_A:\r
1876 //COMP_TYPE_FIT_PAL_A 0x0F\r
1877 Status = CreateAndUpdatePAL_A (ParsedInfoPtr);\r
1878\r
1879 //\r
1880 // Based on VTF specification, once the PAL_A component has been written,\r
1881 // update the Firmware Volume info as FIT table. This will be utilized\r
1882 // to extract the Firmware Volume Start address where this VTF will be\r
1883 // of part.\r
1884 //\r
1885 if (Status == EFI_SUCCESS) {\r
1886 UpdateFitEntryForFwVolume (Size);\r
1887 }\r
1888 break;\r
1889\r
1890 case COMP_TYPE_FIT_FV_BOOT:\r
1891 //COMP_TYPE_FIT_FV_BOOT 0x7E\r
1892 //\r
1893 // Since FIT entry for Firmware Volume has been created and it is\r
1894 // located at (PAL_A start - 16 byte). So we will not process any\r
1895 // Firmware Volume related entry from INF file\r
1896 //\r
1897 Status = EFI_SUCCESS;\r
1898 break;\r
1899\r
1900 default:\r
1901 //\r
1902 // Any other component type should be handled here. This will create the\r
1903 // image in specified VTF and create appropriate entry about this\r
1904 // component in FIT Entry.\r
1905 //\r
1906 Status = CreateAndUpdateComponent (ParsedInfoPtr);\r
1907 if (EFI_ERROR (Status)) {\r
1908 Error (NULL, 0, 0002, "Error updating component", ParsedInfoPtr->CompName);\r
1909 return EFI_ABORTED;\r
1910 } else {\r
1911 break;}\r
1912 }\r
1913\r
1914 ParsedInfoPtr = ParsedInfoPtr->NextVtfInfo;\r
1915 }\r
1916 return Status;\r
1917}\r
1918\r
1919EFI_STATUS\r
1920GenerateVtfImage (\r
1921 IN UINT64 StartAddress1,\r
1922 IN UINT64 Size1,\r
1923 IN UINT64 StartAddress2,\r
1924 IN UINT64 Size2,\r
1925 IN FILE *fp\r
1926 )\r
1927/*++\r
1928\r
1929Routine Description:\r
1930\r
1931 This is the main function which will be called from application.\r
1932\r
1933Arguments:\r
1934\r
1935 StartAddress1 - The start address of the first VTF\r
1936 Size1 - The size of the first VTF\r
1937 StartAddress2 - The start address of the second VTF\r
1938 Size2 - The size of the second VTF\r
1939 fp - The pointer to BSF inf file\r
1940\r
1941Returns:\r
1942\r
1943 EFI_OUT_OF_RESOURCES - Can not allocate memory\r
1944 The return value can be any of the values\r
1945 returned by the calls to following functions:\r
1946 GetVtfRelatedInfoFromInfFile\r
1947 ProcessAndCreateVtf\r
1948 UpdateIA32ResetVector\r
1949 UpdateFfsHeader\r
1950 WriteVtfBinary\r
1951\r
1952--*/\r
1953{\r
1954 EFI_STATUS Status;\r
1955 FILE *VtfFP;\r
1956\r
1957 Status = EFI_UNSUPPORTED;\r
1958 VtfFP = fp;\r
1959\r
1960 if (StartAddress2 == 0) {\r
1961 SecondVTF = FALSE;\r
1962 } else {\r
1963 SecondVTF = TRUE;\r
1964 }\r
1965\r
1966 Fv1BaseAddress = StartAddress1;\r
1967 Fv1EndAddress = Fv1BaseAddress + Size1;\r
fd171542 1968 if (Fv1EndAddress != 0x100000000ULL || Size1 < 0x100000) {\r
30fdf114
LG
1969 Error (NULL, 0, 2000, "Invalid parameter", "Error BaseAddress and Size parameters!");\r
1970 if (Size1 < 0x100000) {\r
1971 Error (NULL, 0, 2000, "Invalid parameter", "The FwVolumeSize must be larger than 1M!");\r
1972 } else if (SecondVTF != TRUE) {\r
1973 Error (NULL, 0, 2000, "Invalid parameter", "BaseAddress + FwVolumeSize must equal 0x100000000!");\r
1974 }\r
1975 Usage();\r
1976 return EFI_INVALID_PARAMETER;\r
1977 }\r
1978\r
1979 //\r
1980 // The image buffer for the First VTF\r
1981 //\r
1982 Vtf1Buffer = malloc ((UINTN) Size1);\r
1983 if (Vtf1Buffer == NULL) {\r
1984 Error (NULL, 0, 4001, "Resource", "Not enough resources available to create memory mapped file for the Boot Strap File!");\r
1985 return EFI_OUT_OF_RESOURCES;\r
1986 }\r
1987 memset (Vtf1Buffer, 0x00, (UINTN) Size1);\r
1988 Vtf1EndBuffer = (UINT8 *) Vtf1Buffer + Size1;\r
1989 Vtf1LastStartAddress = Fv1EndAddress | IPF_CACHE_BIT;\r
1990\r
1991 if (SecondVTF) {\r
1992 Fv2BaseAddress = StartAddress2;\r
1993 Fv2EndAddress = Fv2BaseAddress + Size2;\r
1994 if (Fv2EndAddress != StartAddress1) {\r
1995 Error (NULL, 0, 2000, "Invalid parameter", "Error BaseAddress and Size parameters!");\r
1996 if (SecondVTF == TRUE) {\r
1997 Error (NULL, 0, 2000, "Invalid parameter", "FirstBaseAddress + FirstFwVolumeSize must equal 0x100000000!");\r
1998 Error (NULL, 0, 2000, "Invalid parameter", "SecondBaseAddress + SecondFwVolumeSize must equal FirstBaseAddress!");\r
1999 }\r
2000 Usage();\r
2001 return EFI_INVALID_PARAMETER;\r
2002 }\r
2003\r
2004 //\r
2005 // The image buffer for the second VTF\r
2006 //\r
2007 Vtf2Buffer = malloc ((UINTN) Size2);\r
2008 if (Vtf2Buffer == NULL) {\r
2009 Error (NULL, 0, 4001, "Resource", "Not enough resources available to create memory mapped file for the Boot Strap File!");\r
2010 return EFI_OUT_OF_RESOURCES;\r
2011 }\r
2012 memset (Vtf2Buffer, 0x00, (UINTN) Size2);\r
2013 Vtf2EndBuffer = (UINT8 *) Vtf2Buffer + Size2;\r
2014 Vtf2LastStartAddress = Fv2EndAddress | IPF_CACHE_BIT;\r
2015 }\r
2016\r
2017 Status = GetVtfRelatedInfoFromInfFile (VtfFP);\r
2018\r
2019 if (Status != EFI_SUCCESS) {\r
2020 Error (NULL, 0, 0003, "Error parsing file", "the input file.");\r
2021 CleanUpMemory ();\r
2022 return Status;\r
2023 }\r
2024\r
2025 Status = ProcessAndCreateVtf (Size1);\r
2026 if (Status != EFI_SUCCESS) {\r
2027 CleanUpMemory ();\r
2028 return Status;\r
2029 }\r
2030\r
2031 if (SectionOptionFlag) {\r
2032 Status = UpdateIA32ResetVector (IA32BinFile, Vtf1TotalSize);\r
2033 if (Status != EFI_SUCCESS) {\r
2034 CleanUpMemory ();\r
2035 return Status;\r
2036 }\r
2037 }\r
2038\r
2039 //\r
2040 // Re arrange the FIT Table for Ascending order of their FIT Type..\r
2041 //\r
2042 SortFitTable ();\r
2043\r
2044 //\r
2045 // All components have been updated in FIT table. Now perform the FIT table\r
2046 // checksum. The following function will check if Checksum is required,\r
2047 // if yes, then it will perform the checksum otherwise not.\r
2048 //\r
2049 CalculateFitTableChecksum ();\r
2050\r
2051 //\r
2052 // Write the FFS header\r
2053 //\r
2054 Vtf1TotalSize += sizeof (EFI_FFS_FILE_HEADER);\r
2055 Vtf1LastStartAddress -= sizeof (EFI_FFS_FILE_HEADER);\r
2056\r
2057 Status = UpdateFfsHeader (Vtf1TotalSize, FIRST_VTF);\r
2058 if (Status != EFI_SUCCESS) {\r
2059 CleanUpMemory ();\r
2060 return Status;\r
2061 }\r
2062 //\r
2063 // Update the VTF buffer into specified VTF binary file\r
2064 //\r
2065 Status = WriteVtfBinary (OutFileName1, Vtf1TotalSize, FIRST_VTF);\r
2066\r
2067 if (SecondVTF) {\r
2068 Vtf2TotalSize += sizeof (EFI_FFS_FILE_HEADER);\r
2069 Vtf2LastStartAddress -= sizeof (EFI_FFS_FILE_HEADER);\r
2070 Status = UpdateFfsHeader (Vtf2TotalSize, SECOND_VTF);\r
2071 if (Status != EFI_SUCCESS) {\r
2072 CleanUpMemory ();\r
2073 return Status;\r
2074 }\r
2075\r
2076 //\r
2077 // Update the VTF buffer into specified VTF binary file\r
2078 //\r
2079 Status = WriteVtfBinary (OutFileName2, Vtf2TotalSize, SECOND_VTF);\r
2080 }\r
2081\r
2082 CleanUpMemory ();\r
2083\r
2084 return Status;\r
2085}\r
2086\r
2087EFI_STATUS\r
2088PeimFixupInFitTable (\r
2089 IN UINT64 StartAddress\r
2090 )\r
2091/*++\r
2092\r
2093Routine Description:\r
2094\r
2095 This function is an entry point to fixup SAL-E entry point.\r
2096\r
2097Arguments:\r
2098\r
2099 StartAddress - StartAddress for PEIM.....\r
2100\r
2101Returns:\r
2102\r
2103 EFI_SUCCESS - The function completed successfully\r
2104 EFI_ABORTED - Error Opening File\r
2105 EFI_OUT_OF_RESOURCES - System out of resources for memory allocation.\r
2106\r
2107--*/\r
2108{\r
2109 EFI_STATUS Status;\r
2110 FILE *Fp;\r
2111 UINT64 *StartAddressPtr;\r
2112 UINTN FirstFwVSize;\r
30fdf114
LG
2113\r
2114 StartAddressPtr = malloc (sizeof (UINT64));\r
2115 if (StartAddressPtr == NULL) {\r
2116 return EFI_OUT_OF_RESOURCES;\r
2117 }\r
2118 *StartAddressPtr = StartAddress;\r
2119\r
1be2ed90 2120 Fp = fopen (LongFilePath (OutFileName1), "rb");\r
30fdf114
LG
2121\r
2122 if (Fp == NULL) {\r
2123 Error (NULL, 0, 0001, "Error opening file", OutFileName1);\r
2124 if (StartAddressPtr) {\r
2125 free (StartAddressPtr);\r
2126 }\r
2127 return EFI_ABORTED;\r
2128 }\r
2129\r
2130 FirstFwVSize = _filelength (fileno (Fp));\r
2131 fseek (Fp, (long) (FirstFwVSize - (UINTN) (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT)), SEEK_SET);\r
0d2711a6 2132 fwrite ((VOID *) StartAddressPtr, sizeof (UINT64), 1, Fp);\r
30fdf114
LG
2133\r
2134 if (Fp) {\r
2135 fclose (Fp);\r
2136 }\r
2137\r
2138 if (StartAddressPtr) {\r
2139 free (StartAddressPtr);\r
2140 }\r
2141\r
2142 Status = EFI_SUCCESS;\r
2143 return Status;\r
2144}\r
2145\r
2146EFI_STATUS\r
2147UpdateSymFile (\r
2148 IN UINT64 BaseAddress,\r
2149 IN CHAR8 *DestFileName,\r
b303ea72
LG
2150 IN CHAR8 *SourceFileName,\r
2151 IN UINT64 FileSize\r
2152\r
30fdf114
LG
2153 )\r
2154/*++\r
2155\r
2156Routine Description:\r
2157\r
2158 This function adds the SYM tokens in the source file to the destination file.\r
2159 The SYM tokens are updated to reflect the base address.\r
2160\r
2161Arguments:\r
2162\r
2163 BaseAddress - The base address for the new SYM tokens.\r
2164 DestFileName - The destination file.\r
2165 SourceFileName - The source file.\r
b303ea72 2166 FileSize - Size of bin file.\r
30fdf114
LG
2167\r
2168Returns:\r
2169\r
2170 EFI_SUCCESS - The function completed successfully.\r
2171 EFI_INVALID_PARAMETER - One of the input parameters was invalid.\r
2172 EFI_ABORTED - An error occurred.\r
2173\r
2174--*/\r
2175{\r
2176 FILE *SourceFile;\r
2177 FILE *DestFile;\r
1be2ed90
HC
2178 CHAR8 Buffer[MAX_LONG_FILE_PATH];\r
2179 CHAR8 Type[MAX_LONG_FILE_PATH];\r
2180 CHAR8 Address[MAX_LONG_FILE_PATH];\r
2181 CHAR8 Section[MAX_LONG_FILE_PATH];\r
2182 CHAR8 Token[MAX_LONG_FILE_PATH];\r
2183 CHAR8 BaseToken[MAX_LONG_FILE_PATH];\r
30fdf114 2184 UINT64 TokenAddress;\r
b303ea72 2185 long StartLocation;\r
30fdf114
LG
2186\r
2187 //\r
2188 // Verify input parameters.\r
2189 //\r
2190 if (BaseAddress == 0 || DestFileName == NULL || SourceFileName == NULL) {\r
2191 return EFI_INVALID_PARAMETER;\r
2192 }\r
2193\r
2194 //\r
2195 // Open the source file\r
2196 //\r
1be2ed90 2197 SourceFile = fopen (LongFilePath (SourceFileName), "r");\r
30fdf114
LG
2198 if (SourceFile == NULL) {\r
2199\r
2200 //\r
2201 // SYM files are not required.\r
2202 //\r
2203 return EFI_SUCCESS;\r
2204 }\r
2205\r
2206 //\r
2207 // Use the file name minus extension as the base for tokens\r
2208 //\r
2209 strcpy (BaseToken, SourceFileName);\r
2210 strtok (BaseToken, ". \t\n");\r
2211 strcat (BaseToken, "__");\r
2212\r
2213 //\r
2214 // Open the destination file\r
2215 //\r
1be2ed90 2216 DestFile = fopen (LongFilePath (DestFileName), "a+");\r
30fdf114
LG
2217 if (DestFile == NULL) {\r
2218 fclose (SourceFile);\r
2219 Error (NULL, 0, 0001, "Error opening file", DestFileName);\r
2220 return EFI_ABORTED;\r
2221 }\r
2222\r
2223 //\r
2224 // If this is the beginning of the output file, write the symbol format info.\r
2225 //\r
2226 if (fseek (DestFile, 0, SEEK_END) != 0) {\r
2227 fclose (SourceFile);\r
2228 fclose (DestFile);\r
2229 Error (NULL, 0, 2000, "Invalid parameter", "not at the beginning of the output file.");\r
2230 return EFI_ABORTED;\r
2231 }\r
2232\r
2233 StartLocation = ftell (DestFile);\r
2234\r
2235 if (StartLocation == 0) {\r
2236 fprintf (DestFile, "TEXTSYM format | V1.0\n");\r
2237 } else if (StartLocation == -1) {\r
2238 fclose (SourceFile);\r
2239 fclose (DestFile);\r
2240 Error (NULL, 0, 2000, "Invalid parameter", "StartLocation error");\r
2241 return EFI_ABORTED;\r
2242 }\r
2243\r
2244 //\r
2245 // Read the first line\r
2246 //\r
1be2ed90 2247 if (fgets (Buffer, MAX_LONG_FILE_PATH, SourceFile) == NULL) {\r
30fdf114
LG
2248 Buffer[0] = 0;\r
2249 }\r
2250\r
2251 //\r
2252 // Make sure it matches the expected sym format\r
2253 //\r
2254 if (strcmp (Buffer, "TEXTSYM format | V1.0\n")) {\r
2255 fclose (SourceFile);\r
2256 fclose (DestFile);\r
2257 Error (NULL, 0, 2000, "Invalid parameter", "The symbol file does not match the expected TEXTSYM format (V1.0.)");\r
2258 return EFI_ABORTED;\r
2259 }\r
2260\r
2261 //\r
2262 // Read in the file\r
2263 //\r
2264 while (feof (SourceFile) == 0) {\r
2265\r
2266 //\r
2267 // Read a line\r
2268 //\r
2269 if (fscanf (SourceFile, "%s | %s | %s | %s\n", Type, Address, Section, Token) == 4) {\r
2270\r
2271 //\r
2272 // Get the token address\r
2273 //\r
2274 AsciiStringToUint64 (Address, TRUE, &TokenAddress);\r
b303ea72
LG
2275 if (TokenAddress > FileSize) {\r
2276 //\r
2277 // Symbol offset larger than FileSize. This Symbol can't be in Bin file. Don't print them.\r
2278 //\r
2279 break;\r
2280 }\r
30fdf114
LG
2281\r
2282 //\r
2283 // Add the base address, the size of the FFS file header and the size of the peim header.\r
2284 //\r
2285 TokenAddress += BaseAddress &~IPF_CACHE_BIT;\r
2286\r
b303ea72
LG
2287 fprintf (DestFile, "%s | %016llX | ", Type, (unsigned long long) TokenAddress);\r
2288 fprintf (DestFile, "%s | %s\n %s\n", Section, Token, BaseToken); \r
30fdf114
LG
2289 }\r
2290 }\r
2291\r
2292 fclose (SourceFile);\r
2293 fclose (DestFile);\r
2294 return EFI_SUCCESS;\r
2295}\r
2296\r
2297EFI_STATUS\r
2298CalculateFitTableChecksum (\r
2299 VOID\r
2300 )\r
2301/*++\r
2302\r
2303Routine Description:\r
2304\r
2305 This function will perform byte checksum on the FIT table, if the the checksum required\r
2306 field is set to CheckSum required. If the checksum is not required then checksum byte\r
2307 will have value as 0;.\r
2308\r
2309Arguments:\r
2310\r
2311 NONE\r
2312\r
2313Returns:\r
2314\r
2315 Status - Value returned by call to CalculateChecksum8 ()\r
2316 EFI_SUCCESS - The function completed successfully\r
2317\r
2318--*/\r
2319{\r
2320 FIT_TABLE *TmpFitPtr;\r
2321 UINT64 FitTableAdd;\r
2322 UINT64 FitTableAddOffset;\r
2323 UINTN RelativeAddress;\r
2324 UINTN Size;\r
2325\r
2326 //\r
2327 // Read the Fit Table address from Itanium-based address map.\r
2328 //\r
2329 FitTableAddOffset = Fv1EndAddress - (SIZE_IA32_RESET_VECT + SIZE_SALE_ENTRY_POINT + SIZE_FIT_TABLE_ADD);\r
2330\r
2331 //\r
2332 // Translate this Itanium-based address in terms of local buffer address which\r
2333 // contains the image for Boot Strapped File\r
2334 //\r
2335 GetRelativeAddressInVtfBuffer (FitTableAddOffset, &RelativeAddress, FIRST_VTF);\r
2336 FitTableAdd = *(UINTN *) RelativeAddress;\r
2337\r
2338 GetRelativeAddressInVtfBuffer (FitTableAdd, &RelativeAddress, FIRST_VTF);\r
2339\r
2340 TmpFitPtr = (FIT_TABLE *) RelativeAddress;\r
2341\r
2342 Size = TmpFitPtr->CompSize * 16;\r
2343\r
2344 if ((TmpFitPtr->CvAndType & CHECKSUM_BIT_MASK) >> 7) {\r
2345 TmpFitPtr->CheckSum = 0;\r
2346 TmpFitPtr->CheckSum = CalculateChecksum8 ((UINT8 *) TmpFitPtr, Size);\r
2347 } else {\r
2348 TmpFitPtr->CheckSum = 0;\r
2349 }\r
2350\r
2351 return EFI_SUCCESS;\r
2352}\r
2353\r
2354VOID\r
2355Version (\r
2356 VOID\r
2357 )\r
2358/*++\r
2359\r
2360Routine Description:\r
2361\r
2362 Displays the standard utility information to SDTOUT\r
2363\r
2364Arguments:\r
2365\r
2366 None\r
2367\r
2368Returns:\r
2369\r
2370 None\r
2371\r
2372--*/\r
2373{\r
b36d134f 2374 fprintf (stdout, "%s Version %d.%d %s \n", UTILITY_NAME, UTILITY_MAJOR_VERSION, UTILITY_MINOR_VERSION, __BUILD_VERSION);\r
30fdf114
LG
2375}\r
2376\r
2377VOID\r
2378Usage (\r
2379 VOID\r
2380 )\r
2381/*++\r
2382\r
2383Routine Description:\r
2384\r
2385 Displays the utility usage syntax to STDOUT\r
2386\r
2387Arguments:\r
2388\r
2389 None\r
2390\r
2391Returns:\r
2392\r
2393 None\r
2394\r
2395--*/\r
2396{\r
2397 //\r
2398 // Summary usage\r
2399 //\r
2400 fprintf (stdout, "Usage: %s [options] <-f input_file> <-r BaseAddress> <-s FwVolumeSize>\n\n", UTILITY_NAME);\r
2401\r
2402 //\r
2403 // Copyright declaration\r
2404 //\r
1be2ed90 2405 fprintf (stdout, "Copyright (c) 2007 - 2014, Intel Corporation. All rights reserved.\n\n");\r
30fdf114
LG
2406 //\r
2407 // Details Option\r
2408 //\r
2409 fprintf (stdout, "Options:\n");\r
2410 fprintf (stdout, " -f Input_file, --filename Input_file\n\\r
2411 Input_file is name of the BS Image INF file\n");\r
2412 fprintf (stdout, " -r BaseAddress, --baseaddr BaseAddress\n\\r
2413 BaseAddress is the starting address of Firmware Volume\n\\r
2414 where Boot Strapped Image will reside.\n");\r
2415 fprintf (stdout, " -s FwVolumeSize, --size FwVolumeSize\n\\r
2416 FwVolumeSize is the size of Firmware Volume.\n");\r
2417 fprintf (stdout, " -o FileName, --output FileName\n\\r
2418 File will be created to store the ouput content.\n");\r
2419 fprintf (stdout, " -v, --verbose Turn on verbose output with informational messages.\n");\r
2420 fprintf (stdout, " --version Show program's version number and exit.\n");\r
2421 fprintf (stdout, " -h, --help Show this help message and exit.\n");\r
2422 fprintf (stdout, " -q, --quiet Disable all messages except FATAL ERRORS.\n");\r
2423 fprintf (stdout, " -d, --debug [#, 0-9] Enable debug messages at level #.\n");\r
2424}\r
2425\r
2426int\r
2427main (\r
2428 IN int argc,\r
2429 IN char **argv\r
2430 )\r
2431/*++\r
2432\r
2433Routine Description:\r
2434\r
2435 This utility uses GenVtf.dll to build a Boot Strap File Image which will be\r
2436 part of firmware volume image.\r
2437\r
2438Arguments:\r
2439\r
2440 argc - The count of the parameters\r
2441 argv - The parameters\r
2442\r
2443\r
2444Returns:\r
2445\r
2446 0 - No error conditions detected.\r
2447 1 - One or more of the input parameters is invalid.\r
2448 2 - A resource required by the utility was unavailable.\r
2449 - Most commonly this will be memory allocation or file creation.\r
2450 3 - GenFvImage.dll could not be loaded.\r
2451 4 - Error executing the GenFvImage dll.\r
2452 5 - Now this tool does not support the IA32 platform\r
2453\r
2454--*/\r
2455{\r
2456 UINT8 Index;\r
2457 UINT64 StartAddress1;\r
2458 UINT64 StartAddress2;\r
2459 UINT64 FwVolSize1;\r
2460 UINT64 FwVolSize2;\r
2461 BOOLEAN FirstRoundO;\r
2462 BOOLEAN FirstRoundB;\r
2463 BOOLEAN FirstRoundS;\r
2464 EFI_STATUS Status;\r
2465 FILE *VtfFP;\r
2466 CHAR8 *VtfFileName;\r
2467\r
2468 SetUtilityName (UTILITY_NAME);\r
2469\r
2470 //\r
2471 // Initialize variables\r
2472 //\r
2473 StartAddress1 = 0;\r
2474 StartAddress2 = 0;\r
2475 FwVolSize1 = 0;\r
2476 FwVolSize2 = 0;\r
2477 FirstRoundB = TRUE;\r
2478 FirstRoundS = TRUE;\r
2479 FirstRoundO = TRUE;\r
2480 DebugMode = FALSE;\r
2481 OutFileName1 = NULL;\r
2482 OutFileName2 = NULL;\r
2483 VtfFP = NULL;\r
2484 DebugLevel = 0;\r
2485\r
2486 //\r
2487 // Verify the correct number of arguments\r
2488 //\r
2489 if (argc == 1) {\r
2490 Usage();\r
2491 return 0;\r
2492 }\r
2493\r
2494 if ((strcmp(argv[1], "-h") == 0) || (strcmp(argv[1], "--help") == 0)) {\r
2495 Usage();\r
2496 return 0;\r
2497 }\r
2498\r
2499 if ((strcmp(argv[1], "--version") == 0)) {\r
2500 Version();\r
2501 return 0;\r
2502 }\r
2503\r
2504 //\r
2505 // Parse the command line arguments\r
2506 //\r
2507 for (Index = 1; Index < argc; Index += 2) {\r
2508 if ((stricmp (argv[Index], "-o") == 0) || (stricmp (argv[Index], "--output") == 0)) {\r
2509 if (argv[Index + 1] == NULL || argv[Index + 1][0] == '-') {\r
2510 Error (NULL, 0, 1003, "Invalid option value", "Output file is missing for -o option");\r
2511 goto ERROR;\r
2512 }\r
2513 //\r
2514 // Get the output file name\r
2515 //\r
2516 VTF_OUTPUT = TRUE;\r
2517 if (FirstRoundO) {\r
2518 //\r
2519 // It's the first output file name\r
2520 //\r
2521 OutFileName1 = (CHAR8 *)argv[Index+1];\r
2522 FirstRoundO = FALSE;\r
2523 } else {\r
2524 //\r
2525 //It's the second output file name\r
2526 //\r
2527 OutFileName2 = (CHAR8 *)argv[Index+1];\r
2528 }\r
2529 continue;\r
2530 }\r
2531\r
2532 if ((stricmp (argv[Index], "-f") == 0) || (stricmp (argv[Index], "--filename") == 0)) {\r
2533 if (argv[Index + 1] == NULL || argv[Index + 1][0] == '-') {\r
2534 Error (NULL, 0, 1003, "Invalid option value", "BS Image INF file is missing for -f option");\r
2535 goto ERROR;\r
2536 }\r
2537 //\r
2538 // Get the input VTF file name\r
2539 //\r
2540 VtfFileName = argv[Index+1];\r
1be2ed90 2541 VtfFP = fopen (LongFilePath (VtfFileName), "rb");\r
30fdf114
LG
2542 if (VtfFP == NULL) {\r
2543 Error (NULL, 0, 0001, "Error opening file", VtfFileName);\r
2544 goto ERROR;\r
2545 }\r
2546 continue;\r
2547 }\r
2548 \r
2549 if ((stricmp (argv[Index], "-r") == 0) || (stricmp (argv[Index], "--baseaddr") == 0)) {\r
2550 if (FirstRoundB) {\r
2551 Status = AsciiStringToUint64 (argv[Index + 1], FALSE, &StartAddress1);\r
2552 FirstRoundB = FALSE;\r
2553 } else {\r
2554 Status = AsciiStringToUint64 (argv[Index + 1], FALSE, &StartAddress2);\r
2555 }\r
2556 if (Status != EFI_SUCCESS) {\r
2557 Error (NULL, 0, 2000, "Invalid option value", "%s is Bad FV start address.", argv[Index + 1]);\r
2558 goto ERROR;\r
2559 } \r
2560 continue;\r
2561 }\r
2562\r
2563 if ((stricmp (argv[Index], "-s") == 0) || (stricmp (argv[Index], "--size") == 0)) {\r
2564 if (FirstRoundS) {\r
2565 Status = AsciiStringToUint64 (argv[Index + 1], FALSE, &FwVolSize1);\r
2566 FirstRoundS = FALSE;\r
2567 } else {\r
2568 Status = AsciiStringToUint64 (argv[Index + 1], FALSE, &FwVolSize2);\r
2569 SecondVTF = TRUE;\r
2570 }\r
2571\r
2572 if (Status != EFI_SUCCESS) {\r
2573 Error (NULL, 0, 2000, "Invalid option value", "%s is Bad FV size.", argv[Index + 1]);\r
2574 goto ERROR;\r
2575 }\r
2576 continue;\r
2577 }\r
2578\r
2579 if ((stricmp (argv[Index], "-v") == 0) || (stricmp (argv[Index], "--verbose") == 0)) {\r
2580 VerboseMode = TRUE;\r
2581 Index--;\r
2582 continue;\r
2583 }\r
2584\r
2585 if ((stricmp (argv[Index], "-q") == 0) || (stricmp (argv[Index], "--quiet") == 0)) {\r
2586 QuietMode = TRUE;\r
2587 Index--;\r
2588 continue;\r
2589 }\r
2590\r
2591 if ((stricmp (argv[Index], "-d") == 0) || (stricmp (argv[Index], "--debug") == 0)) {\r
2592 //\r
2593 // debug level specified\r
2594 //\r
2595 Status = AsciiStringToUint64(argv[Index + 1], FALSE, &DebugLevel);\r
2596 if (EFI_ERROR (Status)) {\r
2597 Error (NULL, 0, 1003, "Invalid option value", "%s = %s", argv[Index], argv[Index + 1]);\r
2598 goto ERROR;\r
2599 }\r
2600 if (DebugLevel > 9) {\r
2601 Error (NULL, 0, 2000, "Invalid option value", "Unrecognized argument %s.", argv[Index + 1]);\r
2602 goto ERROR;\r
2603 }\r
2604 if((DebugLevel <= 9) &&(DebugLevel >= 5)) {\r
2605 DebugMode = TRUE;\r
2606 } else {\r
2607 DebugMode = FALSE;\r
2608 }\r
2609 continue;\r
2610 }\r
2611\r
2612 Error (NULL, 0, 2000, "Invalid parameter", "Unrecognized argument %s.", argv[Index]);\r
2613 goto ERROR;\r
2614 }\r
2615\r
2616 if (VtfFP == NULL) {\r
2617 Error (NULL, 0, 2000, "Invalid parameter", "No BS Image INF file is specified");\r
2618 goto ERROR;\r
2619 }\r
2620\r
2621 if (FirstRoundB) {\r
2622 Error (NULL, 0, 2000, "Invalid parameter", "No FV base address is specified");\r
2623 goto ERROR;\r
2624 }\r
2625\r
2626 if (FirstRoundS) {\r
2627 Error (NULL, 0, 2000, "Invalid parameter", "No FV Size is specified");\r
2628 goto ERROR;\r
2629 }\r
2630 //\r
2631 // All Parameters has been parsed, now set the message print level\r
2632 //\r
2633 if (QuietMode) {\r
2634 SetPrintLevel(40);\r
2635 } else if (VerboseMode) {\r
2636 SetPrintLevel(15);\r
2637 } else if (DebugMode) {\r
2638 SetPrintLevel(DebugLevel);\r
2639 }\r
2640\r
2641 if (VerboseMode) {\r
2642 VerboseMsg("%s tool start.\n", UTILITY_NAME);\r
2643 }\r
2644\r
2645 if (VTF_OUTPUT == FALSE) {\r
2646 if (SecondVTF == TRUE) {\r
2647 OutFileName1 = VTF_OUTPUT_FILE1;\r
2648 OutFileName2 = VTF_OUTPUT_FILE2;\r
2649 } else {\r
2650 OutFileName1 = VTF_OUTPUT_FILE1;\r
2651 }\r
2652 SymFileName = VTF_SYM_FILE;\r
2653 } else {\r
2654 INTN OutFileNameLen = strlen(OutFileName1);\r
2655 INTN Index;\r
2656\r
2657 for (Index = OutFileNameLen; Index > 0; --Index) {\r
2658 if (OutFileName1[Index] == '/' || OutFileName1[Index] == '\\') {\r
2659 break;\r
2660 }\r
2661 }\r
2662 if (Index == 0) {\r
2663 SymFileName = VTF_SYM_FILE;\r
2664 } else {\r
2665 INTN SymFileNameLen = Index + 1 + strlen(VTF_SYM_FILE);\r
2666 SymFileName = malloc(SymFileNameLen + 1);\r
2667 memcpy(SymFileName, OutFileName1, Index + 1);\r
2668 memcpy(SymFileName + Index + 1, VTF_SYM_FILE, strlen(VTF_SYM_FILE));\r
2669 SymFileName[SymFileNameLen] = '\0';\r
2670 }\r
2671 if (DebugMode) {\r
2672 DebugMsg(UTILITY_NAME, 0, DebugLevel, SymFileName, NULL);\r
2673 }\r
2674 }\r
2675\r
2676 //\r
2677 // Call the GenVtfImage\r
2678 //\r
2679 if (DebugMode) {\r
2680 DebugMsg(UTILITY_NAME, 0, DebugLevel, "Start to generate the VTF image\n", NULL);\r
2681 }\r
2682 Status = GenerateVtfImage (StartAddress1, FwVolSize1, StartAddress2, FwVolSize2, VtfFP);\r
2683\r
2684 if (EFI_ERROR (Status)) {\r
2685 switch (Status) {\r
2686\r
2687 case EFI_INVALID_PARAMETER:\r
2688 Error (NULL, 0, 2000, "Invalid parameter", "Invalid parameter passed to GenVtf function.");\r
2689 break;\r
2690\r
2691 case EFI_ABORTED:\r
fd171542 2692 Error (NULL, 0, 3000, "Invalid", "Error detected while creating the file image.");\r
30fdf114
LG
2693 break;\r
2694\r
2695 case EFI_OUT_OF_RESOURCES:\r
2696 Error (NULL, 0, 4002, "Resource", "GenVtfImage function could not allocate required resources.");\r
2697 break;\r
2698\r
2699 case EFI_VOLUME_CORRUPTED:\r
fd171542 2700 Error (NULL, 0, 3000, "Invalid", "No base address was specified.");\r
30fdf114
LG
2701 break;\r
2702\r
2703 default:\r
fd171542 2704 Error (NULL, 0, 3000, "Invalid", "GenVtfImage function returned unknown status %x.", (int) Status );\r
30fdf114
LG
2705 break;\r
2706 }\r
2707 }\r
2708ERROR:\r
2709 if (VtfFP != NULL) {\r
2710 fclose (VtfFP);\r
2711 }\r
2712\r
2713 if (DebugMode) {\r
2714 DebugMsg(UTILITY_NAME, 0, DebugLevel, "VTF image generated successful\n", NULL);\r
2715 }\r
2716\r
2717 if (VerboseMode) {\r
2718 VerboseMsg("%s tool done with return code is 0x%x.\n", UTILITY_NAME, GetUtilityStatus ());\r
2719 }\r
2720 return GetUtilityStatus();\r
2721}\r